refactor: 拆分 stereo 模块
This commit is contained in:
@@ -1,103 +1,17 @@
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#![cfg(target_os = "linux")]
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use anyhow::{Context, Result};
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use hello::audio::{AudioPlayer, OpusCodec};
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use hello::config::AudioConfig;
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use hello::stereo_core::jitter_buffer::JitterBuffer;
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use hello::stereo_core::protocol::{AudioPacket, ChannelRole, ControlPacket};
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use hello::stereo_core::sync::{ClockSync, now_us};
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use anyhow::Result;
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use hello::stereo_core::alsa::AlsaRedirector;
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use hello::stereo_core::master::run_master;
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use hello::stereo_core::protocol::ChannelRole;
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use hello::stereo_core::slave::run_slave;
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use std::env;
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use std::fs;
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use std::net::SocketAddr;
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use std::process::Command;
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use std::sync::Arc;
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use std::time::Duration;
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use tokio::io::{AsyncReadExt, AsyncWriteExt};
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use tokio::net::{TcpListener, TcpStream, UdpSocket};
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use tokio::sync::{Mutex, mpsc};
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const FIFO_PATH: &str = "/tmp/stereo_out.fifo";
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const REAL_ASOUND_CONF: &str = "/etc/asound.conf";
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const TEMP_ASOUND_CONF: &str = "/tmp/asound.stereo.conf";
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// Default ports
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const DISCOVERY_PORT: u16 = 53530;
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const SERVER_TCP_PORT: u16 = 53531;
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// UDP port will be dynamic or fixed
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struct AlsaRedirector;
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impl AlsaRedirector {
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fn new() -> Result<Self> {
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Self::cleanup(); // Ensure clean state
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let original_conf = fs::read_to_string(REAL_ASOUND_CONF).unwrap_or_default();
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if !original_conf.contains("pcm.original_default") {
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// 重命名原有的 default 逻辑,插入 interceptor
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let mut new_conf = original_conf.replace("pcm.!default", "pcm.original_default");
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new_conf.push_str(&format!(
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r#"
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pcm.!default {{
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type plug
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slave.pcm "stereo_interceptor"
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}}
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pcm.stereo_interceptor {{
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type file
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slave.pcm "null"
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file "{}"
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format "raw"
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}}
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"#,
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FIFO_PATH
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));
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fs::write(TEMP_ASOUND_CONF, new_conf)?;
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// 挂载覆盖 /etc/asound.conf
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let status = Command::new("mount")
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.arg("--bind")
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.arg(TEMP_ASOUND_CONF)
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.arg(REAL_ASOUND_CONF)
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.status()
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.context("Failed to execute mount command")?;
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if !status.success() {
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return Err(anyhow::anyhow!("Failed to mount asound.conf"));
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}
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}
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// Create FIFO
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let _ = Command::new("mkfifo").arg(FIFO_PATH).status();
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let _ = Command::new("chmod").arg("666").arg(FIFO_PATH).status();
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println!("ALSA output redirected to {}", FIFO_PATH);
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Ok(Self)
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}
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fn cleanup() {
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let _ = Command::new("umount")
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.arg("-l")
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.arg(REAL_ASOUND_CONF)
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.status();
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let _ = fs::remove_file(TEMP_ASOUND_CONF);
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let _ = fs::remove_file(FIFO_PATH);
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println!("ALSA configuration restored.");
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}
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}
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impl Drop for AlsaRedirector {
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fn drop(&mut self) {
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Self::cleanup();
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}
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}
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#[tokio::main]
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async fn main() -> Result<()> {
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let args: Vec<String> = env::args().collect();
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if args.len() < 3 {
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eprintln!("Usage: {} [master|slave] [left|right]", args[0]);
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eprintln!("用法: {} [master|slave] [left|right]", args[0]);
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return Ok(());
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}
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@@ -108,7 +22,7 @@ async fn main() -> Result<()> {
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ChannelRole::Right
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};
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// Explicit cleanup at start just in case
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// 启动前先执行清理,确保环境干净
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AlsaRedirector::cleanup();
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if mode == "master" {
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@@ -117,365 +31,3 @@ async fn main() -> Result<()> {
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run_slave(role).await
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}
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}
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async fn run_master(role: ChannelRole) -> Result<()> {
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println!("--- Master Mode ({:?}) ---", role);
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// 0. Setup ALSA redirection (persistent for the life of the master)
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let _alsa_guard = AlsaRedirector::new()?;
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// 1. Setup Network (UDP + TCP)
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let udp_socket = UdpSocket::bind("0.0.0.0:0").await?;
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let udp_port = udp_socket.local_addr()?.port();
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let udp_socket = Arc::new(udp_socket);
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let listener = TcpListener::bind(format!("0.0.0.0:{}", SERVER_TCP_PORT)).await?;
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// 2. Discovery Service
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let _discovery = tokio::spawn(async move {
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let socket = UdpSocket::bind("0.0.0.0:0").await.unwrap();
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socket.set_broadcast(true).unwrap();
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let target: SocketAddr = format!("255.255.255.255:{}", DISCOVERY_PORT)
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.parse()
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.unwrap();
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let msg = postcard::to_allocvec(&ControlPacket::ServerHello {
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udp_port: SERVER_TCP_PORT,
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})
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.unwrap();
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loop {
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let _ = socket.send_to(&msg, target).await;
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tokio::time::sleep(Duration::from_secs(1)).await;
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}
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});
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println!("Waiting for slave on port {}...", SERVER_TCP_PORT);
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loop {
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let (socket, addr) = listener.accept().await?;
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println!("Slave connected: {}", addr);
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let udp_socket = udp_socket.clone();
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let role = role.clone();
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// Spawn connection handler
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tokio::spawn(async move {
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if let Err(e) = handle_master_session(socket, udp_socket, udp_port, role).await {
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eprintln!("Session ended: {:?}", e);
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}
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});
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}
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}
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async fn handle_master_session(
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mut tcp: TcpStream,
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udp: Arc<UdpSocket>,
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_local_udp_port: u16,
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role: ChannelRole,
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) -> Result<()> {
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let mut buf = [0u8; 1024];
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let len = tcp.read(&mut buf).await?;
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match postcard::from_bytes::<ControlPacket>(&buf[..len])? {
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ControlPacket::ClientIdentify { role: _r } => {}
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_ => return Err(anyhow::anyhow!("Invalid handshake")),
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};
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let hello = ControlPacket::ServerHello {
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udp_port: udp.local_addr()?.port(),
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};
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tcp.write_all(&postcard::to_allocvec(&hello)?).await?;
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let mut buf = [0u8; 128];
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let (_, client_udp_addr) = udp.recv_from(&mut buf).await?;
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println!("Client UDP address confirmed: {}", client_udp_addr);
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let config = AudioConfig {
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sample_rate: 48000,
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channels: 2,
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frame_size: 960,
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bitrate: 64000,
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..AudioConfig::default()
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};
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let mono_config = AudioConfig {
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channels: 1,
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..config.clone()
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};
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let mut codec = OpusCodec::new(&mono_config)?;
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let playback_config = AudioConfig {
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channels: 1,
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playback_device: "plug:original_default".into(),
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..config.clone()
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};
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let player = AudioPlayer::new(&playback_config)?;
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let mut raw_buf = vec![0u8; config.frame_size * 2 * 2];
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let mut opus_out = vec![0u8; 1500];
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let mut seq = 0u32;
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let frame_duration_us =
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(config.frame_size as f64 / config.sample_rate as f64 * 1_000_000.0) as u128;
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let delay_us = 200_000;
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println!("Starting session loop...");
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// Use into_split for owned ReadHalf/WriteHalf to move into tasks
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let (mut tcp_rx, mut tcp_tx) = tcp.into_split();
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let (stop_tx, mut stop_rx) = tokio::sync::mpsc::channel::<()>(1);
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tokio::spawn(async move {
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let mut buf = [0u8; 1024];
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loop {
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match tcp_rx.read(&mut buf).await {
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Ok(0) | Err(_) => {
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let _ = stop_tx.send(()).await;
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break;
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}
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Ok(n) => {
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if let Ok(ControlPacket::Ping { client_ts, seq }) =
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postcard::from_bytes(&buf[..n])
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{
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let pong = ControlPacket::Pong {
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client_ts,
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server_ts: now_us(),
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seq,
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};
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if tcp_tx
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.write_all(&postcard::to_allocvec(&pong).unwrap())
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.await
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.is_err()
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{
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let _ = stop_tx.send(()).await;
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break;
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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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loop {
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// Open FIFO. This will block until a writer opens it.
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// We use select to allow exiting if the slave disconnects while we wait.
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let mut fifo = tokio::select! {
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_ = stop_rx.recv() => {
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println!("Slave disconnected while waiting for FIFO.");
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return Ok(());
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}
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f = tokio::fs::File::open(FIFO_PATH) => f?,
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};
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println!("Audio stream started...");
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let mut stream_start_ts = 0;
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let stream_start_seq = seq;
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loop {
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// Read from FIFO with timeout/select to check for disconnection
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let read_res = tokio::select! {
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_ = stop_rx.recv() => {
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println!("Slave disconnected during streaming.");
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return Ok(());
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}
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res = fifo.read_exact(&mut raw_buf) => res,
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};
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if let Err(_) = read_res {
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println!("Audio stream ended (FIFO EOF).");
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break;
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}
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let now = now_us();
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if stream_start_ts == 0 {
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stream_start_ts = now;
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}
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let mut local_pcm = Vec::with_capacity(config.frame_size);
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let mut remote_pcm = Vec::with_capacity(config.frame_size);
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for i in 0..config.frame_size {
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let l = i16::from_le_bytes([raw_buf[i * 4], raw_buf[i * 4 + 1]]);
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let r = i16::from_le_bytes([raw_buf[i * 4 + 2], raw_buf[i * 4 + 3]]);
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if role == ChannelRole::Left {
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local_pcm.push(l);
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remote_pcm.push(r);
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} else {
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local_pcm.push(r);
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remote_pcm.push(l);
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}
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}
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let len = codec.encode(&remote_pcm, &mut opus_out)?;
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let target_ts =
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stream_start_ts + ((seq - stream_start_seq) as u128 * frame_duration_us) + delay_us;
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let packet = AudioPacket {
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seq,
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timestamp: target_ts,
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data: opus_out[..len].to_vec(),
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};
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let bytes = postcard::to_allocvec(&packet)?;
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if let Err(e) = udp.send_to(&bytes, client_udp_addr).await {
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eprintln!("UDP send error: {:?}", e);
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return Err(e.into());
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}
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let now = now_us();
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if now < target_ts {
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let wait = target_ts - now;
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if wait > 1000 {
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tokio::time::sleep(Duration::from_micros(wait as u64)).await;
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}
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}
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player.write(&local_pcm)?;
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seq += 1;
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}
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}
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}
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async fn run_slave(role: ChannelRole) -> Result<()> {
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println!("--- Slave Mode ({:?}) ---", role);
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println!("Scanning for Master...");
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let udp_disc = UdpSocket::bind(format!("0.0.0.0:{}", DISCOVERY_PORT)).await?;
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let mut buf = [0u8; 1024];
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let (len, master_addr) = udp_disc.recv_from(&mut buf).await?;
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let master_tcp_port = match postcard::from_bytes::<ControlPacket>(&buf[..len])? {
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ControlPacket::ServerHello { udp_port: p } => p,
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_ => return Err(anyhow::anyhow!("Invalid discovery packet")),
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};
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let master_ip = master_addr.ip();
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let master_tcp_addr = format!("{}:{}", master_ip, master_tcp_port);
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println!("Found Master at {}", master_tcp_addr);
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let mut tcp = TcpStream::connect(master_tcp_addr).await?;
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tcp.write_all(&postcard::to_allocvec(&ControlPacket::ClientIdentify {
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role: role.clone(),
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})?)
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.await?;
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let len = tcp.read(&mut buf).await?;
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let server_udp_port = match postcard::from_bytes::<ControlPacket>(&buf[..len])? {
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ControlPacket::ServerHello { udp_port } => udp_port,
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_ => return Err(anyhow::anyhow!("Expected ServerHello")),
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};
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let udp = UdpSocket::bind("0.0.0.0:0").await?;
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let punch_packet = vec![0u8; 1];
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udp.send_to(&punch_packet, format!("{}:{}", master_ip, server_udp_port))
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.await?;
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let config = AudioConfig {
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sample_rate: 48000,
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channels: 1,
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frame_size: 960,
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bitrate: 64000,
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..AudioConfig::default()
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};
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let player = AudioPlayer::new(&config)?;
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let mut codec = OpusCodec::new(&config)?;
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let mut jitter = JitterBuffer::new(50_000);
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let clock = ClockSync::new(100);
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// Use into_split for owned ReadHalf/WriteHalf to move into tasks
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let (mut tcp_rx, mut tcp_tx) = tcp.into_split();
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let udp = Arc::new(udp);
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let udp_rx = udp.clone();
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let _sync_handle = tokio::spawn(async move {
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let mut seq = 0;
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loop {
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let t1 = now_us();
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let msg = ControlPacket::Ping { client_ts: t1, seq };
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if tcp_tx
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.write_all(&postcard::to_allocvec(&msg).unwrap())
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.await
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.is_err()
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{
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break;
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}
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tokio::time::sleep(Duration::from_secs(1)).await;
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seq += 1;
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}
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});
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let clock = Arc::new(Mutex::new(clock));
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let clock_updater = clock.clone();
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tokio::spawn(async move {
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let mut buf = [0u8; 1024];
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loop {
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match tcp_rx.read(&mut buf).await {
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Ok(n) if n > 0 => {
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if let Ok(ControlPacket::Pong {
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client_ts,
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server_ts,
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..
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}) = postcard::from_bytes(&buf[..n])
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{
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let t4 = now_us();
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clock_updater.lock().await.update(client_ts, server_ts, t4);
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}
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}
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_ => break,
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}
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}
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});
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let (audio_tx, mut audio_rx) = mpsc::channel(100);
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tokio::spawn(async move {
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let mut buf = [0u8; 2048];
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loop {
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if let Ok((len, _)) = udp_rx.recv_from(&mut buf).await {
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if let Ok(packet) = postcard::from_bytes::<AudioPacket>(&buf[..len]) {
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let _ = audio_tx.send(packet).await;
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}
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}
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}
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});
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let mut pcm_buf = vec![0i16; config.frame_size];
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println!("Listening for audio...");
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let mut last_seq: Option<u32> = None;
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loop {
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while let Ok(pkt) = audio_rx.try_recv() {
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jitter.push(pkt);
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}
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let now = now_us();
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let current_server_time = {
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let c = clock.lock().await;
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c.to_server_time(now)
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};
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if let Some((seq, data)) = jitter.pop_frame(current_server_time) {
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// PLC logic
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let mut _lost = false;
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if let Some(last) = last_seq {
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if seq > last + 1 {
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println!("Packet loss detected: {} -> {}", last, seq);
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_lost = true;
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// Conceal missing frames
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for _ in 0..(seq - last - 1) {
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if let Ok(len) = codec.decode_loss(&mut pcm_buf) {
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let _ = player.write(&pcm_buf[..len]);
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}
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}
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}
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}
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last_seq = Some(seq);
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let len = codec.decode(&data, &mut pcm_buf)?;
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player.write(&pcm_buf[..len])?;
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} else {
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||||
tokio::time::sleep(Duration::from_millis(1)).await;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -0,0 +1,70 @@
|
||||
#![cfg(target_os = "linux")]
|
||||
use anyhow::{Context, Result};
|
||||
use std::fs;
|
||||
use std::process::Command;
|
||||
|
||||
const FIFO_PATH: &str = "/tmp/stereo_out.fifo";
|
||||
const REAL_ASOUND_CONF: &str = "/etc/asound.conf";
|
||||
const TEMP_ASOUND_CONF: &str = "/tmp/asound.stereo.conf";
|
||||
|
||||
/// ALSA 音频重定向器,用于拦截系统音频输出到 FIFO 管道
|
||||
pub struct AlsaRedirector;
|
||||
|
||||
impl AlsaRedirector {
|
||||
pub fn new() -> Result<Self> {
|
||||
Self::cleanup(); // 确保环境干净
|
||||
|
||||
let original_conf = fs::read_to_string(REAL_ASOUND_CONF).unwrap_or_default();
|
||||
|
||||
if !original_conf.contains("pcm.original_default") {
|
||||
// 重命名原有的 default 逻辑,插入拦截器
|
||||
let mut new_conf = original_conf.replace("pcm.!default", "pcm.original_default");
|
||||
new_conf.push_str(&format!(
|
||||
"\npcm.!default {{ type plug slave.pcm \"stereo_interceptor\" }}\n\
|
||||
pcm.stereo_interceptor {{ type file slave.pcm \"null\" file \"{}\" format \"raw\" }}\n",
|
||||
FIFO_PATH
|
||||
));
|
||||
|
||||
fs::write(TEMP_ASOUND_CONF, new_conf)?;
|
||||
|
||||
// 挂载覆盖 /etc/asound.conf
|
||||
let status = Command::new("mount")
|
||||
.arg("--bind")
|
||||
.arg(TEMP_ASOUND_CONF)
|
||||
.arg(REAL_ASOUND_CONF)
|
||||
.status()
|
||||
.context("执行 mount 命令失败")?;
|
||||
|
||||
if !status.success() {
|
||||
return Err(anyhow::anyhow!("挂载 asound.conf 失败"));
|
||||
}
|
||||
}
|
||||
|
||||
// 创建 FIFO 管道
|
||||
let _ = Command::new("mkfifo").arg(FIFO_PATH).status();
|
||||
let _ = Command::new("chmod").arg("666").arg(FIFO_PATH).status();
|
||||
|
||||
println!("ALSA 输出已重定向至 {}", FIFO_PATH);
|
||||
Ok(Self)
|
||||
}
|
||||
|
||||
pub fn cleanup() {
|
||||
let _ = Command::new("sh")
|
||||
.arg("-c")
|
||||
.arg(format!("umount -l {} >/dev/null 2>&1", REAL_ASOUND_CONF))
|
||||
.status();
|
||||
let _ = fs::remove_file(TEMP_ASOUND_CONF);
|
||||
let _ = fs::remove_file(FIFO_PATH);
|
||||
println!("ALSA 配置已恢复。");
|
||||
}
|
||||
|
||||
pub fn fifo_path() -> &'static str {
|
||||
FIFO_PATH
|
||||
}
|
||||
}
|
||||
|
||||
impl Drop for AlsaRedirector {
|
||||
fn drop(&mut self) {
|
||||
Self::cleanup();
|
||||
}
|
||||
}
|
||||
@@ -22,6 +22,7 @@ impl Ord for OrderedPacket {
|
||||
}
|
||||
}
|
||||
|
||||
/// 抖动缓冲区,用于处理网络延迟和乱序
|
||||
pub struct JitterBuffer {
|
||||
buffer: BinaryHeap<OrderedPacket>,
|
||||
last_played_seq: Option<u32>,
|
||||
@@ -38,6 +39,7 @@ impl JitterBuffer {
|
||||
}
|
||||
|
||||
pub fn push(&mut self, packet: AudioPacket) {
|
||||
// 丢弃已经播放过的数据包
|
||||
if let Some(last) = self.last_played_seq {
|
||||
if packet.seq <= last {
|
||||
return;
|
||||
@@ -46,6 +48,7 @@ impl JitterBuffer {
|
||||
self.buffer.push(OrderedPacket(packet));
|
||||
}
|
||||
|
||||
/// 根据当前时间弹出待播放的帧
|
||||
pub fn pop_frame(&mut self, current_time: u128) -> Option<(u32, Vec<u8>)> {
|
||||
if let Some(OrderedPacket(pkt)) = self.buffer.peek() {
|
||||
if current_time >= pkt.timestamp {
|
||||
|
||||
@@ -0,0 +1,241 @@
|
||||
#![cfg(target_os = "linux")]
|
||||
use anyhow::Result;
|
||||
use crate::audio::{AudioPlayer, OpusCodec};
|
||||
use crate::config::AudioConfig;
|
||||
use std::net::SocketAddr;
|
||||
use std::sync::Arc;
|
||||
use std::time::Duration;
|
||||
use tokio::io::{AsyncReadExt, AsyncWriteExt};
|
||||
use tokio::net::{TcpListener, TcpStream, UdpSocket};
|
||||
use crate::stereo_core::alsa::AlsaRedirector;
|
||||
use crate::stereo_core::protocol::{AudioPacket, ChannelRole, ControlPacket};
|
||||
use crate::stereo_core::sync::now_us;
|
||||
|
||||
pub const SERVER_TCP_PORT: u16 = 53531;
|
||||
pub const DISCOVERY_PORT: u16 = 53530;
|
||||
|
||||
/// 运行主节点模式
|
||||
pub async fn run_master(role: ChannelRole) -> Result<()> {
|
||||
println!("--- 主节点模式 ({:?}) ---", role);
|
||||
|
||||
// 0. 设置 ALSA 重定向 (在主节点生命周期内持续有效)
|
||||
let _alsa_guard = AlsaRedirector::new()?;
|
||||
|
||||
// 1. 设置网络 (UDP + TCP)
|
||||
let udp_socket = UdpSocket::bind("0.0.0.0:0").await?;
|
||||
let udp_port = udp_socket.local_addr()?.port();
|
||||
let udp_socket = Arc::new(udp_socket);
|
||||
|
||||
let listener = TcpListener::bind(format!("0.0.0.0:{}", SERVER_TCP_PORT)).await?;
|
||||
|
||||
// 2. 发现服务
|
||||
let _discovery = tokio::spawn(async move {
|
||||
let socket = UdpSocket::bind("0.0.0.0:0").await.unwrap();
|
||||
socket.set_broadcast(true).unwrap();
|
||||
let target: SocketAddr = format!("255.255.255.255:{}", DISCOVERY_PORT)
|
||||
.parse()
|
||||
.unwrap();
|
||||
let msg = postcard::to_allocvec(&ControlPacket::ServerHello {
|
||||
udp_port: SERVER_TCP_PORT,
|
||||
})
|
||||
.unwrap();
|
||||
loop {
|
||||
let _ = socket.send_to(&msg, target).await;
|
||||
tokio::time::sleep(Duration::from_secs(1)).await;
|
||||
}
|
||||
});
|
||||
|
||||
println!("正在端口 {} 等待从节点连接...", SERVER_TCP_PORT);
|
||||
|
||||
loop {
|
||||
let (socket, addr) = listener.accept().await?;
|
||||
println!("从节点已连接: {}", addr);
|
||||
|
||||
let udp_socket = udp_socket.clone();
|
||||
let role = role.clone();
|
||||
|
||||
// 启动会话处理句柄
|
||||
tokio::spawn(async move {
|
||||
if let Err(e) = handle_master_session(socket, udp_socket, udp_port, role).await {
|
||||
eprintln!("会话结束: {:?}", e);
|
||||
}
|
||||
});
|
||||
}
|
||||
}
|
||||
|
||||
/// 处理主节点与从节点的会话
|
||||
async fn handle_master_session(
|
||||
mut tcp: TcpStream,
|
||||
udp: Arc<UdpSocket>,
|
||||
_local_udp_port: u16,
|
||||
role: ChannelRole,
|
||||
) -> Result<()> {
|
||||
let mut buf = [0u8; 1024];
|
||||
|
||||
// 握手
|
||||
let len = tcp.read(&mut buf).await?;
|
||||
match postcard::from_bytes::<ControlPacket>(&buf[..len])? {
|
||||
ControlPacket::ClientIdentify { role: _r } => {}
|
||||
_ => return Err(anyhow::anyhow!("无效的握手协议")),
|
||||
};
|
||||
|
||||
let hello = ControlPacket::ServerHello {
|
||||
udp_port: udp.local_addr()?.port(),
|
||||
};
|
||||
tcp.write_all(&postcard::to_allocvec(&hello)?).await?;
|
||||
|
||||
// 等待 UDP 打洞/确认
|
||||
let mut buf = [0u8; 128];
|
||||
let (_, client_udp_addr) = udp.recv_from(&mut buf).await?;
|
||||
println!("从节点 UDP 地址已确认: {}", client_udp_addr);
|
||||
|
||||
// 配置音频
|
||||
let config = AudioConfig {
|
||||
sample_rate: 48000,
|
||||
channels: 2,
|
||||
frame_size: 960,
|
||||
bitrate: 64000,
|
||||
..AudioConfig::default()
|
||||
};
|
||||
|
||||
let mono_config = AudioConfig {
|
||||
channels: 1,
|
||||
..config.clone()
|
||||
};
|
||||
let mut codec = OpusCodec::new(&mono_config)?;
|
||||
let playback_config = AudioConfig {
|
||||
channels: 1,
|
||||
playback_device: "plug:original_default".into(),
|
||||
..config.clone()
|
||||
};
|
||||
let player = AudioPlayer::new(&playback_config)?;
|
||||
|
||||
let mut raw_buf = vec![0u8; config.frame_size * 2 * 2];
|
||||
let mut opus_out = vec![0u8; 1500];
|
||||
let mut seq = 0u32;
|
||||
|
||||
let frame_duration_us =
|
||||
(config.frame_size as f64 / config.sample_rate as f64 * 1_000_000.0) as u128;
|
||||
let delay_us = 200_000;
|
||||
|
||||
println!("开始会话循环...");
|
||||
|
||||
// 分离 TCP 读写,以便在不同任务中使用
|
||||
let (mut tcp_rx, mut tcp_tx) = tcp.into_split();
|
||||
let (stop_tx, mut stop_rx) = tokio::sync::mpsc::channel::<()>(1);
|
||||
|
||||
// 处理来自从节点的控制消息(如 Ping/Pong 进行时间同步)
|
||||
tokio::spawn(async move {
|
||||
let mut buf = [0u8; 1024];
|
||||
loop {
|
||||
match tcp_rx.read(&mut buf).await {
|
||||
Ok(0) | Err(_) => {
|
||||
let _ = stop_tx.send(()).await;
|
||||
break;
|
||||
}
|
||||
Ok(n) => {
|
||||
if let Ok(ControlPacket::Ping { client_ts, seq }) =
|
||||
postcard::from_bytes(&buf[..n])
|
||||
{
|
||||
let pong = ControlPacket::Pong {
|
||||
client_ts,
|
||||
server_ts: now_us(),
|
||||
seq,
|
||||
};
|
||||
if tcp_tx
|
||||
.write_all(&postcard::to_allocvec(&pong).unwrap())
|
||||
.await
|
||||
.is_err()
|
||||
{
|
||||
let _ = stop_tx.send(()).await;
|
||||
break;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
});
|
||||
|
||||
loop {
|
||||
// 打开 FIFO。这会阻塞直到有写入者打开它。
|
||||
// 使用 select 以便在等待 FIFO 时如果从节点断开连接可以退出。
|
||||
let mut fifo = tokio::select! {
|
||||
_ = stop_rx.recv() => {
|
||||
println!("等待 FIFO 时从节点断开连接。");
|
||||
return Ok(());
|
||||
}
|
||||
f = tokio::fs::File::open(AlsaRedirector::fifo_path()) => f?,
|
||||
};
|
||||
|
||||
println!("音频流已启动...");
|
||||
let mut stream_start_ts = 0;
|
||||
let stream_start_seq = seq;
|
||||
|
||||
loop {
|
||||
// 从 FIFO 读取,带超时/select 以检查断开连接
|
||||
let read_res = tokio::select! {
|
||||
_ = stop_rx.recv() => {
|
||||
println!("串流过程中从节点断开连接。");
|
||||
return Ok(());
|
||||
}
|
||||
res = fifo.read_exact(&mut raw_buf) => res,
|
||||
};
|
||||
|
||||
if let Err(_) = read_res {
|
||||
println!("音频流结束 (FIFO 读取完毕)。");
|
||||
break;
|
||||
}
|
||||
|
||||
let now = now_us();
|
||||
if stream_start_ts == 0 {
|
||||
stream_start_ts = now;
|
||||
}
|
||||
|
||||
let mut local_pcm = Vec::with_capacity(config.frame_size);
|
||||
let mut remote_pcm = Vec::with_capacity(config.frame_size);
|
||||
|
||||
// 提取左右声道
|
||||
for i in 0..config.frame_size {
|
||||
let l = i16::from_le_bytes([raw_buf[i * 4], raw_buf[i * 4 + 1]]);
|
||||
let r = i16::from_le_bytes([raw_buf[i * 4 + 2], raw_buf[i * 4 + 3]]);
|
||||
if role == ChannelRole::Left {
|
||||
local_pcm.push(l);
|
||||
remote_pcm.push(r);
|
||||
} else {
|
||||
local_pcm.push(r);
|
||||
remote_pcm.push(l);
|
||||
}
|
||||
}
|
||||
|
||||
// 编码并发送给从节点
|
||||
let len = codec.encode(&remote_pcm, &mut opus_out)?;
|
||||
let target_ts =
|
||||
stream_start_ts + ((seq - stream_start_seq) as u128 * frame_duration_us) + delay_us;
|
||||
|
||||
let packet = AudioPacket {
|
||||
seq,
|
||||
timestamp: target_ts,
|
||||
data: opus_out[..len].to_vec(),
|
||||
};
|
||||
|
||||
let bytes = postcard::to_allocvec(&packet)?;
|
||||
if let Err(e) = udp.send_to(&bytes, client_udp_addr).await {
|
||||
eprintln!("UDP 发送错误: {:?}", e);
|
||||
return Err(e.into());
|
||||
}
|
||||
|
||||
// 本地回放同步
|
||||
let now = now_us();
|
||||
if now < target_ts {
|
||||
let wait = target_ts - now;
|
||||
if wait > 1000 {
|
||||
tokio::time::sleep(Duration::from_micros(wait as u64)).await;
|
||||
}
|
||||
}
|
||||
player.write(&local_pcm)?;
|
||||
|
||||
seq += 1;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,3 +1,6 @@
|
||||
pub mod alsa;
|
||||
pub mod jitter_buffer;
|
||||
pub mod master;
|
||||
pub mod protocol;
|
||||
pub mod slave;
|
||||
pub mod sync;
|
||||
|
||||
@@ -8,15 +8,15 @@ pub enum ChannelRole {
|
||||
|
||||
#[derive(Serialize, Deserialize, Debug, Clone)]
|
||||
pub enum ControlPacket {
|
||||
// Discovery
|
||||
// 发现协议
|
||||
ServerHello {
|
||||
udp_port: u16, // Port for UDP audio stream
|
||||
udp_port: u16, // UDP 音频流端口
|
||||
},
|
||||
// Handshake
|
||||
// 握手协议
|
||||
ClientIdentify {
|
||||
role: ChannelRole,
|
||||
},
|
||||
// Time Sync (Continuous)
|
||||
// 时间同步 (持续进行)
|
||||
Ping {
|
||||
client_ts: u128,
|
||||
seq: u32,
|
||||
@@ -26,14 +26,13 @@ pub enum ControlPacket {
|
||||
server_ts: u128,
|
||||
seq: u32,
|
||||
},
|
||||
// Control
|
||||
Volume(u8), // 0-100
|
||||
// 控制协议
|
||||
Volume(u8), // 音量 0-100
|
||||
}
|
||||
|
||||
#[derive(Serialize, Deserialize, Debug, Clone)]
|
||||
pub struct AudioPacket {
|
||||
pub seq: u32, // Sequence number for packet loss detection
|
||||
pub timestamp: u128, // Target playback time (server time)
|
||||
pub data: Vec<u8>, // Opus encoded data
|
||||
pub seq: u32, // 序列号,用于丢包检测
|
||||
pub timestamp: u128, // 目标播放时间 (主节点时间)
|
||||
pub data: Vec<u8>, // Opus 编码数据
|
||||
}
|
||||
|
||||
|
||||
@@ -0,0 +1,168 @@
|
||||
#![cfg(target_os = "linux")]
|
||||
use anyhow::Result;
|
||||
use crate::audio::{AudioPlayer, OpusCodec};
|
||||
use crate::config::AudioConfig;
|
||||
use std::sync::Arc;
|
||||
use std::time::Duration;
|
||||
use tokio::io::{AsyncReadExt, AsyncWriteExt};
|
||||
use tokio::net::{TcpStream, UdpSocket};
|
||||
use tokio::sync::{Mutex, mpsc};
|
||||
use crate::stereo_core::jitter_buffer::JitterBuffer;
|
||||
use crate::stereo_core::protocol::{AudioPacket, ChannelRole, ControlPacket};
|
||||
use crate::stereo_core::sync::{ClockSync, now_us};
|
||||
use crate::stereo_core::master::{DISCOVERY_PORT};
|
||||
|
||||
/// 运行从节点模式
|
||||
pub async fn run_slave(role: ChannelRole) -> Result<()> {
|
||||
println!("--- 从节点模式 ({:?}) ---", role);
|
||||
|
||||
println!("正在扫描主节点...");
|
||||
let udp_disc = UdpSocket::bind(format!("0.0.0.0:{}", DISCOVERY_PORT)).await?;
|
||||
let mut buf = [0u8; 1024];
|
||||
let (len, master_addr) = udp_disc.recv_from(&mut buf).await?;
|
||||
|
||||
let master_tcp_port = match postcard::from_bytes::<ControlPacket>(&buf[..len])? {
|
||||
ControlPacket::ServerHello { udp_port: p } => p,
|
||||
_ => return Err(anyhow::anyhow!("无效的发现数据包")),
|
||||
};
|
||||
|
||||
let master_ip = master_addr.ip();
|
||||
let master_tcp_addr = format!("{}:{}", master_ip, master_tcp_port);
|
||||
println!("在 {} 发现主节点", master_tcp_addr);
|
||||
|
||||
let mut tcp = TcpStream::connect(master_tcp_addr).await?;
|
||||
|
||||
// 身份认证
|
||||
tcp.write_all(&postcard::to_allocvec(&ControlPacket::ClientIdentify {
|
||||
role: role.clone(),
|
||||
})?)
|
||||
.await?;
|
||||
|
||||
let len = tcp.read(&mut buf).await?;
|
||||
let server_udp_port = match postcard::from_bytes::<ControlPacket>(&buf[..len])? {
|
||||
ControlPacket::ServerHello { udp_port } => udp_port,
|
||||
_ => return Err(anyhow::anyhow!("应答应为 ServerHello")),
|
||||
};
|
||||
|
||||
// UDP 打洞以接收音频流
|
||||
let udp = UdpSocket::bind("0.0.0.0:0").await?;
|
||||
let punch_packet = vec![0u8; 1];
|
||||
udp.send_to(&punch_packet, format!("{}:{}", master_ip, server_udp_port))
|
||||
.await?;
|
||||
|
||||
// 音频配置
|
||||
let config = AudioConfig {
|
||||
sample_rate: 48000,
|
||||
channels: 1,
|
||||
frame_size: 960,
|
||||
bitrate: 64000,
|
||||
..AudioConfig::default()
|
||||
};
|
||||
|
||||
let player = AudioPlayer::new(&config)?;
|
||||
let mut codec = OpusCodec::new(&config)?;
|
||||
let mut jitter = JitterBuffer::new(50_000);
|
||||
let clock = ClockSync::new(100);
|
||||
|
||||
// 分离读写
|
||||
let (mut tcp_rx, mut tcp_tx) = tcp.into_split();
|
||||
let udp = Arc::new(udp);
|
||||
let udp_rx = udp.clone();
|
||||
|
||||
// 定时发送 Ping 进行时间同步
|
||||
let _sync_handle = tokio::spawn(async move {
|
||||
let mut seq = 0;
|
||||
loop {
|
||||
let t1 = now_us();
|
||||
let msg = ControlPacket::Ping { client_ts: t1, seq };
|
||||
if tcp_tx
|
||||
.write_all(&postcard::to_allocvec(&msg).unwrap())
|
||||
.await
|
||||
.is_err()
|
||||
{
|
||||
break;
|
||||
}
|
||||
tokio::time::sleep(Duration::from_secs(1)).await;
|
||||
seq += 1;
|
||||
}
|
||||
});
|
||||
|
||||
let clock = Arc::new(Mutex::new(clock));
|
||||
let clock_updater = clock.clone();
|
||||
|
||||
// 接收 Pong 并更新时钟偏移
|
||||
tokio::spawn(async move {
|
||||
let mut buf = [0u8; 1024];
|
||||
loop {
|
||||
match tcp_rx.read(&mut buf).await {
|
||||
Ok(n) if n > 0 => {
|
||||
if let Ok(ControlPacket::Pong {
|
||||
client_ts,
|
||||
server_ts,
|
||||
..
|
||||
}) = postcard::from_bytes(&buf[..n])
|
||||
{
|
||||
let t4 = now_us();
|
||||
clock_updater.lock().await.update(client_ts, server_ts, t4);
|
||||
}
|
||||
}
|
||||
_ => break,
|
||||
}
|
||||
}
|
||||
});
|
||||
|
||||
// 接收音频数据包
|
||||
let (audio_tx, mut audio_rx) = mpsc::channel(100);
|
||||
tokio::spawn(async move {
|
||||
let mut buf = [0u8; 2048];
|
||||
loop {
|
||||
if let Ok((len, _)) = udp_rx.recv_from(&mut buf).await {
|
||||
if let Ok(packet) = postcard::from_bytes::<AudioPacket>(&buf[..len]) {
|
||||
let _ = audio_tx.send(packet).await;
|
||||
}
|
||||
}
|
||||
}
|
||||
});
|
||||
|
||||
let mut pcm_buf = vec![0i16; config.frame_size];
|
||||
println!("正在监听音频数据...");
|
||||
|
||||
let mut last_seq: Option<u32> = None;
|
||||
|
||||
loop {
|
||||
// 将收到的数据包放入抖动缓冲区
|
||||
while let Ok(pkt) = audio_rx.try_recv() {
|
||||
jitter.push(pkt);
|
||||
}
|
||||
|
||||
let now = now_us();
|
||||
let current_server_time = {
|
||||
let c = clock.lock().await;
|
||||
c.to_server_time(now)
|
||||
};
|
||||
|
||||
// 从抖动缓冲区提取待播放帧
|
||||
if let Some((seq, data)) = jitter.pop_frame(current_server_time) {
|
||||
// 丢包处理 (PLC)
|
||||
if let Some(last) = last_seq {
|
||||
if seq > last + 1 {
|
||||
println!("检测到丢包: {} -> {}", last, seq);
|
||||
// 补偿丢失的帧
|
||||
for _ in 0..(seq - last - 1) {
|
||||
if let Ok(len) = codec.decode_loss(&mut pcm_buf) {
|
||||
let _ = player.write(&pcm_buf[..len]);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
last_seq = Some(seq);
|
||||
|
||||
let len = codec.decode(&data, &mut pcm_buf)?;
|
||||
player.write(&pcm_buf[..len])?;
|
||||
} else {
|
||||
// 稍作等待以减少 CPU 占用
|
||||
tokio::time::sleep(Duration::from_millis(1)).await;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,13 +1,15 @@
|
||||
use std::collections::VecDeque;
|
||||
use std::time::{SystemTime, UNIX_EPOCH};
|
||||
|
||||
/// 获取当前微秒级时间戳
|
||||
pub fn now_us() -> u128 {
|
||||
SystemTime::now()
|
||||
.duration_since(UNIX_EPOCH)
|
||||
.expect("Time went backwards")
|
||||
.expect("时间倒流")
|
||||
.as_micros()
|
||||
}
|
||||
|
||||
/// 时钟同步管理器,用于计算主从节点间的时钟偏移
|
||||
pub struct ClockSync {
|
||||
offsets: VecDeque<i128>,
|
||||
pub current_offset: i128,
|
||||
@@ -23,15 +25,16 @@ impl ClockSync {
|
||||
}
|
||||
}
|
||||
|
||||
/// 更新时钟偏移估计
|
||||
pub fn update(&mut self, client_send_ts: u128, server_ts: u128, client_recv_ts: u128) {
|
||||
let rtt = (client_recv_ts - client_send_ts) as i128;
|
||||
// Basic filter: ignore if RTT is absurdly large (e.g. > 100ms on LAN)
|
||||
// 基础过滤:如果 RTT 过大则忽略 (例如局域网内 > 100ms)
|
||||
if rtt > 100_000 {
|
||||
return;
|
||||
}
|
||||
|
||||
// Clock offset = server_time - client_time
|
||||
// server_ts is at time (send + recv)/2
|
||||
// 时钟偏移 = 主节点时间 - 从节点时间
|
||||
// 假设主节点收到 Ping 的时间点在 (发送时间 + 接收时间) / 2
|
||||
let estimated_server_time = server_ts as i128 + rtt / 2;
|
||||
let offset = estimated_server_time - client_recv_ts as i128;
|
||||
|
||||
@@ -40,8 +43,7 @@ impl ClockSync {
|
||||
self.offsets.pop_front();
|
||||
}
|
||||
|
||||
// Calculate median or average offset
|
||||
// Median is more robust to outliers
|
||||
// 计算中位数偏移,以增强抗干扰能力
|
||||
let mut sorted: Vec<i128> = self.offsets.iter().cloned().collect();
|
||||
sorted.sort_unstable();
|
||||
if !sorted.is_empty() {
|
||||
@@ -49,12 +51,13 @@ impl ClockSync {
|
||||
}
|
||||
}
|
||||
|
||||
/// 将本地时间转换为服务器(主节点)时间
|
||||
pub fn to_server_time(&self, client_time: u128) -> u128 {
|
||||
(client_time as i128 + self.current_offset) as u128
|
||||
}
|
||||
|
||||
/// 将服务器(主节点)时间转换为本地时间
|
||||
pub fn to_client_time(&self, server_time: u128) -> u128 {
|
||||
(server_time as i128 - self.current_offset) as u128
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user