//! Real audio output isolated from the backend actor and UI thread. use std::fs::File; use std::io; use std::path::PathBuf; use std::sync::Arc; use std::sync::atomic::{AtomicU64, Ordering}; use std::sync::mpsc::{Receiver, RecvTimeoutError, Sender}; use std::time::Duration; use rodio::{Decoder, DeviceSinkBuilder, Player, stream::MixerDeviceSink}; pub trait TrackReadSeek: std::io::Read + std::io::Seek + Send + Sync {} impl TrackReadSeek for T where T: std::io::Read + std::io::Seek + Send + Sync {} pub type TrackReader = Box; #[derive(Debug)] pub enum Event { Started, Finished, Failed(String), } enum Command { Play { path: PathBuf, volume: f32, }, PlayStream { reader: TrackReader, mime_type: String, volume: f32, }, Pause, Resume, Stop, Seek(Duration), SetVolume(f32), } #[derive(Debug, Default)] pub struct Shared { position_ms: AtomicU64, } impl Shared { pub fn position_seconds(&self) -> f64 { Duration::from_millis(self.position_ms.load(Ordering::Relaxed)).as_secs_f64() } } #[derive(Clone)] pub struct Controller { commands: Sender, pub shared: Arc, } impl Controller { pub fn play(&self, path: PathBuf, volume: f32) { self.shared.position_ms.store(0, Ordering::Relaxed); let _ = self.commands.send(Command::Play { path, volume }); } pub fn play_stream(&self, reader: TrackReader, mime_type: String, volume: f32) { self.shared.position_ms.store(0, Ordering::Relaxed); let _ = self.commands.send(Command::PlayStream { reader, mime_type, volume, }); } pub fn pause(&self) { let _ = self.commands.send(Command::Pause); } pub fn resume(&self) { let _ = self.commands.send(Command::Resume); } pub fn stop(&self) { let _ = self.commands.send(Command::Stop); } pub fn seek(&self, position: Duration) { let millis = u64::try_from(position.as_millis()).unwrap_or(u64::MAX); self.shared.position_ms.store(millis, Ordering::Relaxed); let _ = self.commands.send(Command::Seek(position)); } pub fn set_volume(&self, volume: f32) { let _ = self.commands.send(Command::SetVolume(volume)); } } pub fn spawn(on_event: impl Fn(Event) + Send + 'static) -> io::Result { let (commands, receiver) = std::sync::mpsc::channel(); let shared = Arc::new(Shared::default()); let thread_shared = Arc::clone(&shared); std::thread::Builder::new() .name("furumi-audio".into()) .spawn(move || run(&receiver, &thread_shared, &on_event))?; Ok(Controller { commands, shared }) } struct Output { _device: MixerDeviceSink, player: Player, } fn run(receiver: &Receiver, shared: &Arc, on_event: &impl Fn(Event)) { let mut output: Option = None; let mut track_loaded = false; let mut previous_queue_len = 0; loop { match receiver.recv_timeout(Duration::from_millis(50)) { Ok(command) => { handle(command, shared, &mut output, &mut track_loaded, on_event); previous_queue_len = output.as_ref().map_or(0, |output| output.player.len()); } Err(RecvTimeoutError::Timeout) => { if let Some(output) = &output { let millis = u64::try_from(output.player.get_pos().as_millis()).unwrap_or(u64::MAX); shared.position_ms.store(millis, Ordering::Relaxed); let queue_len = output.player.len(); if track_loaded && queue_len < previous_queue_len { track_loaded = false; on_event(Event::Finished); } previous_queue_len = queue_len; } } Err(RecvTimeoutError::Disconnected) => return, } } } #[allow(clippy::too_many_lines, reason = "exhaustive audio command dispatcher")] fn handle( command: Command, shared: &Arc, output: &mut Option, track_loaded: &mut bool, on_event: &impl Fn(Event), ) { match command { Command::Play { path, volume } => { let output = match ensure_output(output) { Ok(output) => output, Err(error) => { on_event(Event::Failed(format!("cannot open audio output: {error}"))); return; } }; let file = match File::open(&path) { Ok(file) => file, Err(error) => { on_event(Event::Failed(format!( "cannot open {}: {error}", path.display() ))); return; } }; let byte_len = file.metadata().ok().map(|metadata| metadata.len()); let mut decoder = Decoder::builder() .with_data(file) .with_seekable(true) .with_gapless(true); if let Some(byte_len) = byte_len { decoder = decoder.with_byte_len(byte_len); } match decoder.build() { Ok(source) => { output.player.stop(); output.player.set_volume(amplitude(volume)); output.player.append(source); output.player.play(); shared.position_ms.store(0, Ordering::Relaxed); *track_loaded = true; on_event(Event::Started); } Err(error) => on_event(Event::Failed(format!( "cannot decode {}: {error}", path.display() ))), } } Command::PlayStream { reader, mime_type, volume, } => { let output = match ensure_output(output) { Ok(output) => output, Err(error) => { on_event(Event::Failed(format!("cannot open audio output: {error}"))); return; } }; match Decoder::builder() .with_data(reader) .with_mime_type(&mime_type) .with_seekable(false) .with_gapless(true) .build() { Ok(source) => { output.player.stop(); output.player.set_volume(amplitude(volume)); output.player.append(source); output.player.play(); shared.position_ms.store(0, Ordering::Relaxed); *track_loaded = true; on_event(Event::Started); } Err(error) => on_event(Event::Failed(format!( "cannot decode federated stream: {error}" ))), } } Command::Pause => { if let Some(output) = output { output.player.pause(); } } Command::Resume => { if let Some(output) = output { output.player.play(); } } Command::Stop => { if let Some(output) = output { output.player.stop(); } shared.position_ms.store(0, Ordering::Relaxed); *track_loaded = false; } Command::Seek(position) => { if let Some(output) = output && let Err(error) = output.player.try_seek(position) { on_event(Event::Failed(format!("cannot seek: {error}"))); } } Command::SetVolume(volume) => { if let Some(output) = output { output.player.set_volume(amplitude(volume)); } } } } fn ensure_output(output: &mut Option) -> Result<&Output, rodio::stream::DeviceSinkError> { if output.is_none() { let device = DeviceSinkBuilder::open_default_sink()?; let player = Player::connect_new(device.mixer()); *output = Some(Output { _device: device, player, }); } Ok(output.as_ref().expect("audio output initialized above")) } fn amplitude(volume: f32) -> f32 { volume.clamp(0.0, 1.0).powi(3) } #[cfg(test)] mod tests { use super::amplitude; #[test] fn perceptual_volume_is_clamped_and_cubic() { assert!(amplitude(-1.0).abs() < f32::EPSILON); assert!((amplitude(0.5) - 0.125).abs() < f32::EPSILON); assert!((amplitude(2.0) - 1.0).abs() < f32::EPSILON); } }