mirror of
https://codeberg.org/unspeaker/tek.git
synced 2025-12-07 12:16:42 +01:00
430 lines
14 KiB
Rust
430 lines
14 KiB
Rust
use crate::*;
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/// The sampler plugin plays sounds.
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pub struct Sampler<E: Engine> {
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_engine: PhantomData<E>,
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pub jack: Arc<RwLock<JackClient>>,
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pub name: String,
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pub cursor: (usize, usize),
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pub editing: Option<Arc<RwLock<Sample>>>,
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pub mapped: BTreeMap<u7, Arc<RwLock<Sample>>>,
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pub unmapped: Vec<Arc<RwLock<Sample>>>,
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pub voices: Arc<RwLock<Vec<Voice>>>,
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pub ports: JackPorts,
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pub buffer: Vec<Vec<f32>>,
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pub modal: Arc<Mutex<Option<Box<dyn Exit + Send>>>>,
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pub output_gain: f32
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}
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impl<E: Engine> Sampler<E> {
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pub fn new (
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jack: &Arc<RwLock<JackClient>>,
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name: &str,
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mapped: Option<BTreeMap<u7, Arc<RwLock<Sample>>>>
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) -> Usually<JackDevice<E>> {
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Jack::new(name)?
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.midi_in("midi")
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.audio_in("recL")
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.audio_in("recR")
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.audio_out("outL")
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.audio_out("outR")
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.run(|ports|Box::new(Self {
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_engine: Default::default(),
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jack: jack.clone(),
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name: name.into(),
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cursor: (0, 0),
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editing: None,
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mapped: mapped.unwrap_or_else(||BTreeMap::new()),
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unmapped: vec![],
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voices: Arc::new(RwLock::new(vec![])),
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ports,
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buffer: vec![vec![0.0;16384];2],
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output_gain: 0.5,
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modal: Default::default()
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}))
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}
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/// Immutable reference to sample at cursor.
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pub fn sample (&self) -> Option<&Arc<RwLock<Sample>>> {
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for (i, sample) in self.mapped.values().enumerate() {
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if i == self.cursor.0 {
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return Some(sample)
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}
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}
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for (i, sample) in self.unmapped.iter().enumerate() {
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if i + self.mapped.len() == self.cursor.0 {
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return Some(sample)
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}
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}
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None
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}
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/// Create [Voice]s from [Sample]s in response to MIDI input.
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pub fn process_midi_in (&mut self, scope: &ProcessScope) {
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for RawMidi { time, bytes } in self.ports.midi_ins.get("midi").unwrap().iter(scope) {
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if let LiveEvent::Midi { message, .. } = LiveEvent::parse(bytes).unwrap() {
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if let MidiMessage::NoteOn { ref key, ref vel } = message {
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if let Some(sample) = self.mapped.get(key) {
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self.voices.write().unwrap().push(Sample::play(sample, time as usize, vel));
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}
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}
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}
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}
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}
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/// Zero the output buffer.
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pub fn clear_output_buffer (&mut self) {
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for buffer in self.buffer.iter_mut() {
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buffer.fill(0.0);
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}
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}
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/// Mix all currently playing samples into the output.
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pub fn process_audio_out (&mut self, scope: &ProcessScope) {
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let channel_count = self.buffer.len();
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self.voices.write().unwrap().retain_mut(|voice|{
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for index in 0..scope.n_frames() as usize {
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if let Some(frame) = voice.next() {
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for (channel, sample) in frame.iter().enumerate() {
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// Averaging mixer:
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//self.buffer[channel % channel_count][index] = (
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//(self.buffer[channel % channel_count][index] + sample * self.output_gain) / 2.0
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//);
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self.buffer[channel % channel_count][index] +=
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sample * self.output_gain;
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}
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} else {
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return false
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}
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}
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return true
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});
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}
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/// Write output buffer to output ports.
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pub fn write_output_buffer (&mut self, scope: &ProcessScope) {
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for (i, port) in self.ports.audio_outs.values_mut().enumerate() {
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let buffer = &self.buffer[i];
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for (i, value) in port.as_mut_slice(scope).iter_mut().enumerate() {
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*value = *buffer.get(i).unwrap_or(&0.0);
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}
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}
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}
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}
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/// A sound sample.
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#[derive(Default, Debug)]
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pub struct Sample {
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pub name: String,
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pub start: usize,
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pub end: usize,
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pub channels: Vec<Vec<f32>>,
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pub rate: Option<usize>,
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}
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impl Sample {
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pub fn new (name: &str, start: usize, end: usize, channels: Vec<Vec<f32>>) -> Self {
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Self { name: name.to_string(), start, end, channels, rate: None }
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}
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pub fn play (sample: &Arc<RwLock<Self>>, after: usize, velocity: &u7) -> Voice {
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Voice {
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sample: sample.clone(),
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after,
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position: sample.read().unwrap().start,
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velocity: velocity.as_int() as f32 / 127.0,
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}
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}
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}
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/// Load sample from WAV and assign to MIDI note.
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#[macro_export] macro_rules! sample {
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($note:expr, $name:expr, $src:expr) => {{
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let (end, data) = read_sample_data($src)?;
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(
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u7::from_int_lossy($note).into(),
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Sample::new($name, 0, end, data).into()
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)
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}};
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}
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/// Read WAV from file
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pub fn read_sample_data (src: &str) -> Usually<(usize, Vec<Vec<f32>>)> {
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let mut channels: Vec<wavers::Samples<f32>> = vec![];
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for channel in wavers::Wav::from_path(src)?.channels() {
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channels.push(channel);
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}
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let mut end = 0;
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let mut data: Vec<Vec<f32>> = vec![];
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for samples in channels.iter() {
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let channel = Vec::from(samples.as_ref());
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end = end.max(channel.len());
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data.push(channel);
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}
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Ok((end, data))
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}
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use std::fs::File;
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use symphonia::core::codecs::CODEC_TYPE_NULL;
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use symphonia::core::errors::Error;
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use symphonia::core::io::MediaSourceStream;
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use symphonia::core::probe::Hint;
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use symphonia::core::audio::SampleBuffer;
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use symphonia::default::get_codecs;
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pub struct AddSampleModal {
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exited: bool,
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dir: PathBuf,
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subdirs: Vec<OsString>,
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files: Vec<OsString>,
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cursor: usize,
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offset: usize,
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sample: Arc<RwLock<Sample>>,
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voices: Arc<RwLock<Vec<Voice>>>,
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_search: Option<String>,
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}
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impl Exit for AddSampleModal {
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fn exited (&self) -> bool {
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self.exited
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}
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fn exit (&mut self) {
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self.exited = true
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}
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}
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impl AddSampleModal {
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pub fn new (
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sample: &Arc<RwLock<Sample>>,
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voices: &Arc<RwLock<Vec<Voice>>>
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) -> Usually<Self> {
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let dir = std::env::current_dir()?;
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let (subdirs, files) = scan(&dir)?;
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Ok(Self {
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exited: false,
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dir,
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subdirs,
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files,
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cursor: 0,
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offset: 0,
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sample: sample.clone(),
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voices: voices.clone(),
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_search: None
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})
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}
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fn rescan (&mut self) -> Usually<()> {
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scan(&self.dir).map(|(subdirs, files)|{
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self.subdirs = subdirs;
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self.files = files;
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})
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}
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fn prev (&mut self) {
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self.cursor = self.cursor.saturating_sub(1);
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}
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fn next (&mut self) {
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self.cursor = self.cursor + 1;
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}
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fn try_preview (&mut self) -> Usually<()> {
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if let Some(path) = self.cursor_file() {
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if let Ok(sample) = Sample::from_file(&path) {
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*self.sample.write().unwrap() = sample;
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self.voices.write().unwrap().push(
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Sample::play(&self.sample, 0, &u7::from(100u8))
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);
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}
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//load_sample(&path)?;
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//let src = std::fs::File::open(&path)?;
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//let mss = MediaSourceStream::new(Box::new(src), Default::default());
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//let mut hint = Hint::new();
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//if let Some(ext) = path.extension() {
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//hint.with_extension(&ext.to_string_lossy());
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//}
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//let meta_opts: MetadataOptions = Default::default();
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//let fmt_opts: FormatOptions = Default::default();
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//if let Ok(mut probed) = symphonia::default::get_probe()
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//.format(&hint, mss, &fmt_opts, &meta_opts)
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//{
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//panic!("{:?}", probed.format.metadata());
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//};
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}
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Ok(())
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}
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fn cursor_dir (&self) -> Option<PathBuf> {
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if self.cursor < self.subdirs.len() {
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Some(self.dir.join(&self.subdirs[self.cursor]))
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} else {
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None
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}
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}
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fn cursor_file (&self) -> Option<PathBuf> {
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if self.cursor < self.subdirs.len() {
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return None
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}
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let index = self.cursor.saturating_sub(self.subdirs.len());
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if index < self.files.len() {
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Some(self.dir.join(&self.files[index]))
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} else {
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None
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}
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}
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fn pick (&mut self) -> Usually<bool> {
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if self.cursor == 0 {
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if let Some(parent) = self.dir.parent() {
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self.dir = parent.into();
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self.rescan()?;
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self.cursor = 0;
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return Ok(false)
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}
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}
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if let Some(dir) = self.cursor_dir() {
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self.dir = dir;
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self.rescan()?;
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self.cursor = 0;
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return Ok(false)
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}
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if let Some(path) = self.cursor_file() {
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let (end, channels) = read_sample_data(&path.to_string_lossy())?;
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let mut sample = self.sample.write().unwrap();
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sample.name = path.file_name().unwrap().to_string_lossy().into();
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sample.end = end;
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sample.channels = channels;
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return Ok(true)
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}
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return Ok(false)
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}
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}
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pub const KEYMAP_ADD_SAMPLE: &'static [KeyBinding<AddSampleModal>] = keymap!(AddSampleModal {
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[Esc, NONE, "sampler/add/close", "close help dialog", |modal: &mut AddSampleModal|{
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modal.exit();
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Ok(true)
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}],
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[Up, NONE, "sampler/add/prev", "select previous entry", |modal: &mut AddSampleModal|{
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modal.prev();
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Ok(true)
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}],
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[Down, NONE, "sampler/add/next", "select next entry", |modal: &mut AddSampleModal|{
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modal.next();
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Ok(true)
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}],
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[Enter, NONE, "sampler/add/enter", "activate selected entry", |modal: &mut AddSampleModal|{
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if modal.pick()? {
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modal.exit();
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}
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Ok(true)
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}],
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[Char('p'), NONE, "sampler/add/preview", "preview selected entry", |modal: &mut AddSampleModal|{
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modal.try_preview()?;
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Ok(true)
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}]
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});
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fn scan (dir: &PathBuf) -> Usually<(Vec<OsString>, Vec<OsString>)> {
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let (mut subdirs, mut files) = read_dir(dir)?
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.fold((vec!["..".into()], vec![]), |(mut subdirs, mut files), entry|{
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let entry = entry.expect("failed to read drectory entry");
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let meta = entry.metadata().expect("failed to read entry metadata");
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if meta.is_file() {
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files.push(entry.file_name());
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} else if meta.is_dir() {
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subdirs.push(entry.file_name());
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}
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(subdirs, files)
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});
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subdirs.sort();
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files.sort();
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Ok((subdirs, files))
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}
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impl Sample {
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fn from_file (path: &PathBuf) -> Usually<Self> {
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let mut sample = Self::default();
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sample.name = path.file_name().unwrap().to_string_lossy().into();
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// Use file extension if present
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let mut hint = Hint::new();
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if let Some(ext) = path.extension() {
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hint.with_extension(&ext.to_string_lossy());
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}
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let probed = symphonia::default::get_probe().format(
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&hint,
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MediaSourceStream::new(
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Box::new(File::open(path)?),
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Default::default(),
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),
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&Default::default(),
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&Default::default()
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)?;
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let mut format = probed.format;
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let mut decoder = get_codecs().make(
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&format.tracks().iter()
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.find(|t| t.codec_params.codec != CODEC_TYPE_NULL)
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.expect("no tracks found")
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.codec_params,
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&Default::default()
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)?;
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loop {
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match format.next_packet() {
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Ok(packet) => {
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// Decode a packet
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let decoded = match decoder.decode(&packet) {
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Ok(decoded) => decoded,
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Err(err) => { return Err(err.into()); }
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};
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// Determine sample rate
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let spec = *decoded.spec();
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if let Some(rate) = sample.rate {
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if rate != spec.rate as usize {
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panic!("sample rate changed");
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}
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} else {
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sample.rate = Some(spec.rate as usize);
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}
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// Determine channel count
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while sample.channels.len() < spec.channels.count() {
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sample.channels.push(vec![]);
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}
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// Load sample
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let mut samples = SampleBuffer::new(
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decoded.frames() as u64,
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spec
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);
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if samples.capacity() > 0 {
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samples.copy_interleaved_ref(decoded);
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for frame in samples.samples().chunks(spec.channels.count()) {
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for (chan, frame) in frame.iter().enumerate() {
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sample.channels[chan].push(*frame)
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}
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}
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}
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},
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Err(Error::IoError(_)) => break decoder.last_decoded(),
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Err(err) => return Err(err.into()),
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};
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};
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sample.end = sample.channels.iter().fold(0, |l, c|l + c.len());
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Ok(sample)
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}
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}
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/// A currently playing instance of a sample.
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pub struct Voice {
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pub sample: Arc<RwLock<Sample>>,
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pub after: usize,
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pub position: usize,
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pub velocity: f32,
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}
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impl Iterator for Voice {
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type Item = [f32;2];
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fn next (&mut self) -> Option<Self::Item> {
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if self.after > 0 {
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self.after = self.after - 1;
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return Some([0.0, 0.0])
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}
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let sample = self.sample.read().unwrap();
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if self.position < sample.end {
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let position = self.position;
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self.position = self.position + 1;
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return sample.channels[0].get(position).map(|_amplitude|[
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sample.channels[0][position] * self.velocity,
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sample.channels[0][position] * self.velocity,
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])
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}
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None
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}
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}
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