Introduce polymorphic stream constructors
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78df791377
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076b814a15
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@ -21,14 +21,24 @@ fn main() -> Result<(), anyhow::Error> {
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let err_fn = |err| eprintln!("an error occurred on stream: {}", err);
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let data_fn = move |data: &mut cpal::Data| match data.sample_format() {
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cpal::SampleFormat::F32 => write_data::<f32>(data, channels, &mut next_value),
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cpal::SampleFormat::I16 => write_data::<i16>(data, channels, &mut next_value),
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cpal::SampleFormat::U16 => write_data::<u16>(data, channels, &mut next_value),
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let stream = match format.data_type {
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cpal::SampleFormat::F32 => device.build_output_stream(
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&format.shape(),
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move |data: &mut [f32]| write_data(data, channels, &mut next_value),
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err_fn,
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)?,
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cpal::SampleFormat::I16 => device.build_output_stream(
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&format.shape(),
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move |data: &mut [i16]| write_data(data, channels, &mut next_value),
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err_fn,
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)?,
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cpal::SampleFormat::U16 => device.build_output_stream(
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&format.shape(),
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move |data: &mut [u16]| write_data(data, channels, &mut next_value),
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err_fn,
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)?,
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};
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let stream = device.build_output_stream_raw(&format, data_fn, err_fn)?;
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stream.play()?;
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std::thread::sleep(std::time::Duration::from_millis(1000));
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@ -36,11 +46,10 @@ fn main() -> Result<(), anyhow::Error> {
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Ok(())
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}
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fn write_data<T>(output: &mut cpal::Data, channels: usize, next_sample: &mut dyn FnMut() -> f32)
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fn write_data<T>(output: &mut [T], channels: usize, next_sample: &mut dyn FnMut() -> f32)
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where
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T: cpal::Sample,
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{
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let output = output.as_slice_mut::<T>().expect("unexpected sample type");
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for frame in output.chunks_mut(channels) {
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let value: T = cpal::Sample::from::<f32>(&next_sample());
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for sample in frame.iter_mut() {
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@ -29,12 +29,11 @@ fn main() -> Result<(), anyhow::Error> {
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println!("Using default output device: \"{}\"", output_device.name()?);
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// We'll try and use the same format between streams to keep it simple
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let mut format = input_device.default_input_format()?;
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format.data_type = cpal::SampleFormat::F32;
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let shape = input_device.default_input_format()?.shape();
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// Create a delay in case the input and output devices aren't synced.
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let latency_frames = (LATENCY_MS / 1_000.0) * format.sample_rate.0 as f32;
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let latency_samples = latency_frames as usize * format.channels as usize;
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let latency_frames = (LATENCY_MS / 1_000.0) * shape.sample_rate.0 as f32;
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let latency_samples = latency_frames as usize * shape.channels as usize;
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// The buffer to share samples
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let ring = RingBuffer::new(latency_samples * 2);
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@ -47,9 +46,8 @@ fn main() -> Result<(), anyhow::Error> {
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producer.push(0.0).unwrap();
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}
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let input_data_fn = move |data: &cpal::Data| {
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let input_data_fn = move |data: &[f32]| {
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let mut output_fell_behind = false;
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let data = data.as_slice::<f32>().expect("unexpected sample type");
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for &sample in data {
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if producer.push(sample).is_err() {
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output_fell_behind = true;
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@ -60,9 +58,8 @@ fn main() -> Result<(), anyhow::Error> {
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}
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};
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let output_data_fn = move |data: &mut cpal::Data| {
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let output_data_fn = move |data: &mut [f32]| {
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let mut input_fell_behind = None;
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let data = data.as_slice_mut::<f32>().expect("unexpected sample type");
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for sample in data {
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*sample = match consumer.pop() {
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Ok(s) => s,
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@ -81,9 +78,12 @@ fn main() -> Result<(), anyhow::Error> {
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};
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// Build streams.
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println!("Attempting to build both streams with `{:?}`.", format);
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let input_stream = input_device.build_input_stream_raw(&format, input_data_fn, err_fn)?;
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let output_stream = output_device.build_output_stream_raw(&format, output_data_fn, err_fn)?;
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println!(
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"Attempting to build both streams with f32 samples and `{:?}`.",
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shape
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);
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let input_stream = input_device.build_input_stream(&shape, input_data_fn, err_fn)?;
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let output_stream = output_device.build_output_stream(&shape, output_data_fn, err_fn)?;
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println!("Successfully built streams.");
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// Play the streams.
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@ -40,14 +40,24 @@ fn main() -> Result<(), anyhow::Error> {
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eprintln!("an error occurred on stream: {}", err);
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};
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let data_fn = move |data: &cpal::Data| match data.sample_format() {
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cpal::SampleFormat::F32 => write_input_data::<f32, f32>(data, &writer_2),
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cpal::SampleFormat::I16 => write_input_data::<i16, i16>(data, &writer_2),
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cpal::SampleFormat::U16 => write_input_data::<u16, i16>(data, &writer_2),
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let stream = match format.data_type {
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cpal::SampleFormat::F32 => device.build_input_stream(
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&format.shape(),
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move |data| write_input_data::<f32, f32>(data, &writer_2),
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err_fn,
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)?,
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cpal::SampleFormat::I16 => device.build_input_stream(
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&format.shape(),
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move |data| write_input_data::<i16, i16>(data, &writer_2),
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err_fn,
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)?,
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cpal::SampleFormat::U16 => device.build_input_stream(
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&format.shape(),
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move |data| write_input_data::<u16, i16>(data, &writer_2),
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err_fn,
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)?,
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};
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let stream = device.build_input_stream_raw(&format, data_fn, err_fn)?;
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stream.play()?;
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// Let recording go for roughly three seconds.
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@ -77,12 +87,11 @@ fn wav_spec_from_format(format: &cpal::Format) -> hound::WavSpec {
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type WavWriterHandle = Arc<Mutex<Option<hound::WavWriter<BufWriter<File>>>>>;
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fn write_input_data<T, U>(input: &cpal::Data, writer: &WavWriterHandle)
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fn write_input_data<T, U>(input: &[T], writer: &WavWriterHandle)
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where
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T: cpal::Sample,
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U: cpal::Sample + hound::Sample,
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{
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let input = input.as_slice::<T>().expect("unexpected sample format");
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if let Ok(mut guard) = writer.try_lock() {
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if let Some(writer) = guard.as_mut() {
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for &sample in input.iter() {
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60
src/lib.rs
60
src/lib.rs
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@ -59,10 +59,10 @@
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//! use cpal::traits::{DeviceTrait, HostTrait, StreamTrait};
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//! # let host = cpal::default_host();
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//! # let device = host.default_output_device().unwrap();
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//! # let format = device.default_output_format().unwrap();
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//! let stream = device.build_output_stream_raw(
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//! &format,
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//! move |data: &mut Data| {
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//! # let shape = device.default_output_format().unwrap().shape();
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//! let stream = device.build_output_stream(
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//! &shape,
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//! move |data: &mut [f32]| {
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//! // react to stream events and read or write stream data here.
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//! },
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//! move |err| {
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@ -93,15 +93,14 @@
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//! # let device = host.default_output_device().unwrap();
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//! # let format = device.default_output_format().unwrap();
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//! let err_fn = |err| eprintln!("an error occurred on the output audio stream: {}", err);
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//! let data_fn = move |data: &mut Data| match data.sample_format() {
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//! SampleFormat::F32 => write_silence::<f32>(data),
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//! SampleFormat::I16 => write_silence::<i16>(data),
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//! SampleFormat::U16 => write_silence::<u16>(data),
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//! };
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//! let stream = device.build_output_stream_raw(&format, data_fn, err_fn).unwrap();
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//! let shape = format.shape();
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//! let stream = match format.data_type {
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//! SampleFormat::F32 => device.build_output_stream(&shape, write_silence::<f32>, err_fn),
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//! SampleFormat::I16 => device.build_output_stream(&shape, write_silence::<i16>, err_fn),
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//! SampleFormat::U16 => device.build_output_stream(&shape, write_silence::<u16>, err_fn),
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//! }.unwrap();
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//!
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//! fn write_silence<T: Sample>(data: &mut Data) {
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//! let data = data.as_slice_mut::<T>().unwrap();
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//! fn write_silence<T: Sample>(data: &mut [T]) {
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//! for sample in data.iter_mut() {
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//! *sample = Sample::from(&0.0);
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//! }
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@ -181,6 +180,38 @@ pub struct Format {
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pub data_type: SampleFormat,
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}
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impl Format {
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/// Construct a format having a particular `shape` and `data_type`.
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pub fn with_shape(shape: &Shape, data_type: SampleFormat) -> Self {
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Self {
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channels: shape.channels,
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sample_rate: shape.sample_rate,
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data_type,
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}
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}
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/// Extract aspects of the format independent of the data type.
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pub fn shape(&self) -> Shape {
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self.clone().into()
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}
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}
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/// The properties of an input or output audio stream excluding its data type.
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct Shape {
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pub channels: ChannelCount,
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pub sample_rate: SampleRate,
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}
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impl From<Format> for Shape {
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fn from(x: Format) -> Self {
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Self {
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channels: x.channels,
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sample_rate: x.sample_rate,
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}
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}
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}
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/// Describes a range of supported stream formats.
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct SupportedFormat {
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@ -193,9 +224,10 @@ pub struct SupportedFormat {
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pub data_type: SampleFormat,
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}
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/// Represents a buffer of audio data, delivered via a user's stream data callback function.
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/// A buffer of dynamically typed audio data, passed to raw stream callbacks.
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///
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/// Input stream callbacks receive `&Data`, while output stream callbacks expect `&mut Data`.
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/// Raw input stream callbacks receive `&Data`, while raw output stream callbacks expect `&mut
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/// Data`.
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#[derive(Debug)]
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pub struct Data {
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data: *mut (),
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@ -2,8 +2,8 @@
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use {
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BuildStreamError, Data, DefaultFormatError, DeviceNameError, DevicesError, Format,
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InputDevices, OutputDevices, PauseStreamError, PlayStreamError, StreamError, SupportedFormat,
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SupportedFormatsError,
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InputDevices, OutputDevices, PauseStreamError, PlayStreamError, Sample, Shape, StreamError,
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SupportedFormat, SupportedFormatsError,
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};
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/// A **Host** provides access to the available audio devices on the system.
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@ -113,6 +113,54 @@ pub trait DeviceTrait {
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fn default_output_format(&self) -> Result<Format, DefaultFormatError>;
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/// Create an input stream.
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fn build_input_stream<T, D, E>(
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&self,
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shape: &Shape,
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mut data_callback: D,
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error_callback: E,
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) -> Result<Self::Stream, BuildStreamError>
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where
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T: Sample,
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D: FnMut(&[T]) + Send + 'static,
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E: FnMut(StreamError) + Send + 'static,
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{
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self.build_input_stream_raw(
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&Format::with_shape(shape, T::FORMAT),
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move |data| {
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data_callback(
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data.as_slice()
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.expect("host supplied incorrect sample type"),
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)
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},
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error_callback,
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)
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}
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/// Create an output stream.
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fn build_output_stream<T, D, E>(
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&self,
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shape: &Shape,
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mut data_callback: D,
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error_callback: E,
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) -> Result<Self::Stream, BuildStreamError>
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where
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T: Sample,
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D: FnMut(&mut [T]) + Send + 'static,
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E: FnMut(StreamError) + Send + 'static,
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{
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self.build_output_stream_raw(
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&Format::with_shape(shape, T::FORMAT),
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move |data| {
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data_callback(
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data.as_slice_mut()
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.expect("host supplied incorrect sample type"),
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)
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},
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error_callback,
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)
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}
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/// Create a dynamically typed input stream.
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fn build_input_stream_raw<D, E>(
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&self,
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format: &Format,
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@ -123,7 +171,7 @@ pub trait DeviceTrait {
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D: FnMut(&Data) + Send + 'static,
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E: FnMut(StreamError) + Send + 'static;
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/// Create an output stream.
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/// Create a dynamically typed output stream.
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fn build_output_stream_raw<D, E>(
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&self,
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format: &Format,
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