Remove unused parts of ts example
Signed-off-by: Aron Heinecke <aron.heinecke@t-online.de>
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3 changed files with 10 additions and 197 deletions
14
src/main.rs
14
src/main.rs
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@ -1,18 +1,13 @@
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use std::{collections::HashMap, env, sync::Arc, time::Duration};
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use std::{collections::HashMap, sync::Arc, time::Duration};
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use serde::Deserialize;
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use tsclientlib::{ClientId, Connection, DisconnectOptions, Identity, StreamItem};
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use tsproto_packets::packets::{AudioData, CodecType, OutAudio, OutPacket};
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use audiopus::coder::Encoder;
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use futures::{lock::Mutex, prelude::*};
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use sdl2::audio::{AudioCallback, AudioDevice, AudioSpec, AudioSpecDesired, AudioStatus};
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use sdl2::AudioSubsystem;
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use slog::{debug, info, o, Drain, Logger};
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use tokio::{sync::mpsc, task};
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use slog::{debug, o, Drain, Logger};
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use tokio::{task};
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use tokio::task::LocalSet;
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use anyhow::*;
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use tsproto_packets::packets::{Direction, InAudioBuf};
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use songbird::opus;
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mod ts_voice;
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mod discord;
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@ -68,7 +63,8 @@ impl TypeMapKey for ListenerHolder {
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const TICK_TIME: u64 = 15;
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const FRAME_SIZE_MS: usize = 20;
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const STEREO_20MS: usize = 48000 * 2 * FRAME_SIZE_MS / 1000;
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/// The maximum size of an opus frame is 1275 as from RFC6716.
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const MAX_OPUS_FRAME_SIZE: usize = 1275;
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#[tokio::main]
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async fn main() -> Result<()> {
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tracing_subscriber::fmt::init();
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@ -1,181 +0,0 @@
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use std::sync::{Arc, Mutex};
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use anyhow::{format_err, Result};
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use audiopus::coder::Encoder;
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use futures::prelude::*;
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use sdl2::audio::{AudioCallback, AudioDevice, AudioSpec, AudioSpecDesired, AudioStatus};
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use sdl2::AudioSubsystem;
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use slog::{debug, error, o, Logger};
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use tokio::sync::mpsc;
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use tokio::task::LocalSet;
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use tokio::time::{self, Duration};
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use tokio_stream::wrappers::IntervalStream;
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use tsproto_packets::packets::{AudioData, CodecType, OutAudio, OutPacket};
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use super::*;
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pub struct AudioToTs {
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logger: Logger,
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audio_subsystem: AudioSubsystem,
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listener: Arc<Mutex<Option<mpsc::Sender<OutPacket>>>>,
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device: AudioDevice<SdlCallback>,
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is_playing: bool,
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volume: Arc<Mutex<f32>>,
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}
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struct SdlCallback {
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logger: Logger,
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spec: AudioSpec,
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encoder: Encoder,
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listener: Arc<Mutex<Option<mpsc::Sender<OutPacket>>>>,
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volume: Arc<Mutex<f32>>,
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opus_output: [u8; MAX_OPUS_FRAME_SIZE],
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}
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impl AudioToTs {
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pub fn new(
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logger: Logger, audio_subsystem: AudioSubsystem, local_set: &LocalSet,
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) -> Result<Arc<Mutex<Self>>> {
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let logger = logger.new(o!("pipeline" => "audio-to-ts"));
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let listener = Arc::new(Mutex::new(Default::default()));
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let volume = Arc::new(Mutex::new(1.0));
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let device =
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Self::open_capture(logger.clone(), &audio_subsystem, listener.clone(), volume.clone())?;
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let res = Arc::new(Mutex::new(Self {
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logger,
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audio_subsystem,
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listener,
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device,
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is_playing: false,
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volume,
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}));
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Self::start(res.clone(), local_set);
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Ok(res)
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}
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fn open_capture(
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logger: Logger, audio_subsystem: &AudioSubsystem,
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listener: Arc<Mutex<Option<mpsc::Sender<OutPacket>>>>, volume: Arc<Mutex<f32>>,
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) -> Result<AudioDevice<SdlCallback>> {
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let desired_spec = AudioSpecDesired {
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freq: Some(48000),
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channels: Some(1),
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// Default sample size, 20 ms per packet
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samples: Some(48000 / 50),
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};
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audio_subsystem.open_capture(None, &desired_spec, |spec| {
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// This spec will always be the desired spec, the sdl wrapper passes
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// zero as `allowed_changes`.
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debug!(logger, "Got capture spec"; "spec" => ?spec, "driver" => audio_subsystem.current_audio_driver());
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let opus_channels = if spec.channels == 1 {
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audiopus::Channels::Mono
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} else {
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audiopus::Channels::Stereo
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};
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let encoder = Encoder::new(audiopus::SampleRate::Hz48000,
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opus_channels, audiopus::Application::Voip)
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.expect("Could not create encoder");
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SdlCallback {
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logger,
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spec,
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encoder,
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listener,
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volume,
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opus_output: [0; MAX_OPUS_FRAME_SIZE],
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}
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}).map_err(|e| format_err!("SDL error: {}", e))
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}
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pub fn set_listener(&self, sender: mpsc::Sender<OutPacket>) {
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let mut listener = self.listener.lock().unwrap();
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*listener = Some(sender);
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}
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pub fn set_volume(&mut self, volume: f32) { *self.volume.lock().unwrap() = volume; }
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pub fn set_playing(&mut self, playing: bool) {
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if playing {
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self.device.resume();
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} else {
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self.device.pause();
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}
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self.is_playing = playing;
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}
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fn start(a2t: Arc<Mutex<Self>>, local_set: &LocalSet) {
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local_set.spawn_local(
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IntervalStream::new(time::interval(Duration::from_secs(1))).for_each(move |_| {
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let mut a2t = a2t.lock().unwrap();
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if a2t.device.status() == AudioStatus::Stopped {
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// Try to reconnect to audio
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match Self::open_capture(
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a2t.logger.clone(),
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&a2t.audio_subsystem,
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a2t.listener.clone(),
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a2t.volume.clone(),
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) {
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Ok(d) => {
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a2t.device = d;
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debug!(a2t.logger, "Reconnected to capture device");
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if a2t.is_playing {
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a2t.device.resume();
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}
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}
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Err(e) => {
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error!(a2t.logger, "Failed to open capture device"; "error" => %e);
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}
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};
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}
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future::ready(())
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}),
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);
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}
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}
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impl AudioCallback for SdlCallback {
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type Channel = f32;
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fn callback(&mut self, buffer: &mut [Self::Channel]) {
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// Handle volume
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let volume = *self.volume.lock().unwrap();
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if volume != 1.0 {
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for d in &mut *buffer {
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*d *= volume;
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}
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}
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match self.encoder.encode_float(buffer, &mut self.opus_output[..]) {
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Err(e) => {
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error!(self.logger, "Failed to encode opus"; "error" => %e);
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}
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Ok(len) => {
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// Create packet
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let codec = if self.spec.channels == 1 {
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CodecType::OpusVoice
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} else {
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CodecType::OpusMusic
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};
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let packet =
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OutAudio::new(&AudioData::C2S { id: 0, codec, data: &self.opus_output[..len] });
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// Write into packet sink
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let mut listener = self.listener.lock().unwrap();
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if let Some(lis) = &mut *listener {
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match lis.try_send(packet) {
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Err(mpsc::error::TrySendError::Closed(_)) => *listener = None,
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_ => {}
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}
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}
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}
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}
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}
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}
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@ -4,10 +4,10 @@ use anyhow::Result;
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use slog::Logger;
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use tokio::task::LocalSet;
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use audio_to_ts::AudioToTs;
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use ts_to_audio::TsToAudio;
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pub mod audio_to_ts;
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pub mod ts_to_audio;
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/// The usual frame size.
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@ -16,12 +16,10 @@ pub mod ts_to_audio;
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/// This means 1920 samples and 7.5 kiB.
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const USUAL_FRAME_SIZE: usize = 48000 / 50;
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/// The maximum size of an opus frame is 1275 as from RFC6716.
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const MAX_OPUS_FRAME_SIZE: usize = 1275;
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#[derive(Clone)]
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pub struct AudioData {
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pub a2ts: Arc<Mutex<AudioToTs>>,
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pub ts2a: Arc<Mutex<TsToAudio>>,
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}
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@ -35,7 +33,7 @@ pub fn start(logger: Logger, local_set: &LocalSet) -> Result<AudioData> {
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}
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let ts2a = TsToAudio::new(logger.clone(), audio_subsystem.clone(), local_set)?;
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let a2ts = AudioToTs::new(logger.clone(), audio_subsystem, local_set)?;
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Ok(AudioData { a2ts, ts2a })
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Ok(AudioData { ts2a })
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}
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