fixed buffer
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c8c00793c0
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@ -5,9 +5,9 @@ authors = ["Tom Gowan <tomrgowan@gmail.com>"]
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build = "build.rs"
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[target.'cfg(any(target_os = "windows"))'.build-dependencies]
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bindgen = "0.33.1"
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bindgen = "0.42.0"
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walkdir = "2"
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cc = "1.0.4"
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cc = "1.0.25"
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[dependencies]
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lazy_static = "1.0.0"
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@ -61,7 +61,10 @@ fn create_lib(cpal_asio_dir: &PathBuf) {
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let walk_a_dir = |dir_to_walk, paths: &mut Vec<PathBuf>| {
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for entry in WalkDir::new(&dir_to_walk).max_depth(1) {
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let entry = match entry {
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Err(_) => continue,
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Err(e) => {
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println!("error: {}", e);
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continue
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},
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Ok(entry) => entry,
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};
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match entry.path().extension().and_then(|s| s.to_str()) {
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@ -47,6 +47,9 @@ impl EventLoop {
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let stream_type = sys::get_data_type(&device.driver_name).expect("Couldn't load data type");
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match sys::prepare_input_stream(&device.driver_name) {
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Ok(stream) => {
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let num_channels = format.channels.clone();
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let cpal_num_samples =
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(stream.buffer_size as usize) * num_channels as usize;
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{
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*self.asio_stream.lock().unwrap() = Some(stream);
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}
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@ -55,63 +58,65 @@ impl EventLoop {
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let asio_stream = self.asio_stream.clone();
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let callbacks = self.callbacks.clone();
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let bytes_per_channel = format.data_type.sample_size();
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let num_channels = format.channels.clone();
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// Create buffers
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let cpal_num_samples =
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(stream.buffer_size as usize) * num_channels as usize;
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let channel_len = cpal_num_samples
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/ num_channels as usize;
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#[derive(Default)]
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struct I16Buffer{
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cpal: Vec<i16>,
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channel: Vec<Vec<i16>>,
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}
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#[derive(Default)]
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struct U16Buffer{
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cpal: Vec<u16>,
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channel: Vec<Vec<u16>>,
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}
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#[derive(Default)]
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struct F32Buffer{
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cpal: Vec<f32>,
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channel: Vec<Vec<f32>>,
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}
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struct BufferTypes<T>(T);
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impl BufferTypes<I16Buffer>{
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fn into_buff(self) -> I16Buffer{
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self.0
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}
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}
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impl BufferTypes<U16Buffer>{
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fn into_buff(self) -> U16Buffer{
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self.0
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}
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}
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impl BufferTypes<F32Buffer>{
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fn into_buff(self) -> F32Buffer{
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self.0
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}
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struct Buffers {
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i16_buff: I16Buffer,
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u16_buff: U16Buffer,
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f32_buff: F32Buffer,
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}
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let mut buffers = match format.data_type{
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SampleFormat::I16 => {
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BufferTypes(I16Buffer{
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Buffers{
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i16_buff: I16Buffer{
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cpal: vec![0 as i16; cpal_num_samples],
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channel: (0..num_channels)
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.map(|_| Vec::with_capacity(channel_len))
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.collect()})
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.collect()},
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u16_buff: U16Buffer::default(),
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f32_buff: F32Buffer::default(),
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}
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}
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SampleFormat::U16 => {
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BufferTypes(U16Buffer{
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Buffers{
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i16_buff: I16Buffer::default(),
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u16_buff: U16Buffer{
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cpal: vec![0 as u16; cpal_num_samples],
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channel: (0..num_channels)
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.map(|_| Vec::with_capacity(channel_len))
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.collect()})
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.collect()},
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f32_buff: F32Buffer::default(),
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}
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}
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SampleFormat::F32 => {
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BufferTypes(F32Buffer{
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Buffers{
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i16_buff: I16Buffer::default(),
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u16_buff: U16Buffer::default(),
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f32_buff: F32Buffer{
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cpal: vec![0 as f32; cpal_num_samples],
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channel: (0..num_channels)
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.map(|_| Vec::with_capacity(channel_len))
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.collect()})
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.collect()},
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}
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}
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};
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@ -128,11 +133,23 @@ impl EventLoop {
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$SampleType:ty,
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$SampleTypeIdent:ident,
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$AsioType:ty,
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$AsioTypeIdent:ident) => {
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$AsioTypeIdent:ident,
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$Buffers:expr,
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$BuffersType:ty,
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$BuffersTypeIdent:ident
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) => {
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// Function for deinterleaving because
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// cpal writes to buffer interleaved
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/*
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fn interleave(channels: &[Vec<$SampleType>],
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buffer: &mut Vec<$SampleType>) {
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*/
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fn interleave(buffers: &mut $BuffersType) {
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let $BuffersTypeIdent {
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cpal: ref mut buffer,
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channel: ref channels,
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} = *buffers;
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let length = channels[0].len();
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for i in 0..length{
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for channel in channels{
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@ -145,7 +162,7 @@ impl EventLoop {
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// the asio buffer
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// Also need to check for Endian
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for (i, channel) in channels.iter_mut().enumerate(){
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for (i, channel) in $Buffers.channel.iter_mut().enumerate(){
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let buff_ptr = asio_stream
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.buffer_infos[i]
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.buffers[index as usize] as *mut $AsioType;
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@ -163,11 +180,11 @@ impl EventLoop {
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// interleave all the channels
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interleave(&channels, &mut cpal_buffer);
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interleave(&mut $Buffers);
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let buff = InputBuffer{
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buffer: &mut cpal_buffer
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buffer: &mut $Buffers.cpal,
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};
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callback(
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StreamId(count),
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@ -184,16 +201,20 @@ impl EventLoop {
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// TODO check for endianess
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match stream_type {
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sys::AsioSampleType::ASIOSTInt32LSB => {
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try_callback!(I16, i16, i16, i32, i32);
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try_callback!(I16, i16, i16, i32, i32,
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buffers.i16_buff, I16Buffer, I16Buffer);
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}
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sys::AsioSampleType::ASIOSTInt16LSB => {
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try_callback!(I16, i16, i16, i16, i16);
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try_callback!(I16, i16, i16, i16, i16,
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buffers.i16_buff, I16Buffer, I16Buffer);
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}
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sys::AsioSampleType::ASIOSTFloat32LSB => {
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try_callback!(F32, f32, f32, f32, f32);
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try_callback!(F32, f32, f32, f32, f32,
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buffers.f32_buff, F32Buffer, F32Buffer);
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}
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sys::AsioSampleType::ASIOSTFloat64LSB => {
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try_callback!(F32, f32, f32, f64, f64);
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try_callback!(F32, f32, f32, f64, f64,
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buffers.f32_buff, F32Buffer, F32Buffer);
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}
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_ => println!("unsupported format {:?}", stream_type),
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}
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