Files
pmomusic/pmoparadise/examples/stream_block.rs
Claude ac2d5c9501 Fix REAL bug: HTTP timeout was truncating Radio Paradise blocks
ROOT CAUSE IDENTIFIED:
The previous "wait for playback duration" workaround was masking the real
issue. Radio Paradise blocks last ~20 minutes (1200s), but the HTTP timeout
was only 180 seconds, causing premature stream termination.

With backpressure from the audio pipeline, HTTP download proceeds at real-time
pace. A 20-minute block takes ~20 minutes to download. The 180s timeout
was killing the connection after 3 minutes, resulting in incomplete blocks.

Changes:
1. **Increase HTTP block_timeout: 180s → 7200s (2 hours)**
   - Allows complete download of even the longest blocks
   - Comment explains why such a long timeout is needed

2. **Increase MPSC channel sizes: 16 → 60 chunks**
   - Matches TimerNode max_lead_time (3.0s / 0.05s = 60 chunks)
   - Prevents stop-and-go backpressure pattern
   - Allows smooth buffering as intended

3. **Replace workaround with proper channel drainage**
   - Use tx.closed().await instead of sleep()
   - Guarantees all buffered chunks are processed
   - More architecturally sound solution

4. **Add comprehensive diagnostic traces**
   - Log expected vs actual block duration
   - Detect premature EOF (< 95% of expected duration)
   - Track bytes decoded and HTTP Content-Length
   - Monitor backpressure blocking with timing

This fixes the streaming completely. The block will now:
- Download for the full ~20 minutes (real-time with backpressure)
- Decode all audio data without truncation
- Process all chunks before pipeline shutdown
2025-11-12 10:32:47 +00:00

344 lines
15 KiB
Rust

//! Streams a Radio Paradise block via HTTP using pmoserver
//!
//! This example demonstrates streaming a single Radio Paradise block
//! using the StreamingFlacSink over HTTP via pmoserver. Perfect for
//! testing with VLC or other media players that support HTTP streaming.
//!
//! Architecture:
//! ```text
//! RadioParadiseStreamSource → TimerNode → StreamingFlacSink
//! ↓
//! StreamHandle
//! ↓
//! pmoserver (Axum)
//! ↓
//! VLC / Media Player Client
//! ```
//!
//! Usage:
//! cargo run --example stream_block --features full -- <channel_id>
//!
//! Example:
//! cargo run --example stream_block --features full -- 0 # Main Mix
//!
//! Then open in VLC:
//! vlc http://localhost:8080/test/stream (pure FLAC)
//! vlc http://localhost:8080/test/stream-ogg (OGG-FLAC streaming container)
//! vlc http://localhost:8080/test/stream-icy (FLAC + ICY metadata)
//!
//! To check current metadata:
//! curl http://localhost:8080/test/metadata
use axum::{
body::Body,
extract::State,
http::{HeaderMap, StatusCode},
response::{IntoResponse, Response},
};
use pmoaudio::{AudioPipelineNode, TimerNode};
use pmoaudio_ext::{StreamingFlacSink, StreamingOggFlacSink};
use pmoflac::EncoderOptions;
use pmoparadise::{RadioParadiseClient, RadioParadiseStreamSource};
use pmoserver::{ServerBuilder, init_logging};
use std::env;
use std::sync::Arc;
use tokio_util::io::ReaderStream;
use tokio_util::sync::CancellationToken;
/// Shared application state
struct AppState {
stream_handle: pmoaudio_ext::StreamHandle,
ogg_handle: pmoaudio_ext::OggFlacStreamHandle,
}
/// Main HTTP handler for streaming (pure FLAC, no ICY metadata)
async fn stream_handler(
State(state): State<Arc<AppState>>,
_headers: HeaderMap,
) -> Result<Response, StatusCode> {
tracing::info!("New client connected (pure FLAC mode)");
// Pure FLAC stream without ICY metadata
let flac_stream = state.stream_handle.subscribe_flac();
Ok(Response::builder()
.status(StatusCode::OK)
.header("Content-Type", "audio/flac")
.header("Cache-Control", "no-cache, no-store")
.body(Body::from_stream(ReaderStream::new(flac_stream)))
.unwrap())
}
/// ICY streaming handler (FLAC with embedded metadata)
async fn stream_icy_handler(
State(state): State<Arc<AppState>>,
_headers: HeaderMap,
) -> Result<Response, StatusCode> {
tracing::info!("New client connected (ICY mode)");
// FLAC stream with ICY metadata
let icy_stream = state.stream_handle.subscribe_icy();
Ok(Response::builder()
.status(StatusCode::OK)
.header("Content-Type", "audio/flac")
.header("icy-metaint", "16000")
.header("icy-name", "Radio Paradise Stream Test")
.header("icy-genre", "Eclectic")
.header("icy-pub", "1")
.header("Cache-Control", "no-cache, no-store")
.body(Body::from_stream(ReaderStream::new(icy_stream)))
.unwrap())
}
/// OGG-FLAC streaming handler
async fn stream_ogg_handler(
State(state): State<Arc<AppState>>,
_headers: HeaderMap,
) -> Result<Response, StatusCode> {
tracing::info!("New client connected (OGG-FLAC mode)");
// OGG-FLAC stream
let ogg_stream = state.ogg_handle.subscribe();
Ok(Response::builder()
.status(StatusCode::OK)
.header("Content-Type", "audio/ogg")
.header("Cache-Control", "no-cache, no-store")
.body(Body::from_stream(ReaderStream::new(ogg_stream)))
.unwrap())
}
/// Metadata endpoint (JSON)
async fn metadata_handler(State(state): State<Arc<AppState>>) -> impl IntoResponse {
let metadata = state.stream_handle.get_metadata().await;
axum::Json(metadata)
}
/// Health check endpoint
async fn health_handler() -> &'static str {
"OK"
}
#[tokio::main]
async fn main() -> Result<(), Box<dyn std::error::Error>> {
// Initialize logging via pmoserver
let _log_state = init_logging();
tracing::info!("=== Radio Paradise HTTP Streaming Test ===");
// Parse arguments
let args: Vec<String> = env::args().collect();
if args.len() < 2 {
eprintln!("Usage: {} <channel_id>", args[0]);
eprintln!();
eprintln!("Streams a Radio Paradise block via HTTP for testing.");
eprintln!();
eprintln!("Channel IDs:");
eprintln!(" 0 - Main Mix (eclectic, diverse mix)");
eprintln!(" 1 - Mellow Mix (smooth, chilled music)");
eprintln!(" 2 - Rock Mix (classic & modern rock)");
eprintln!(" 3 - World/Etc Mix (global sounds)");
eprintln!();
eprintln!("After starting, open in VLC:");
eprintln!(" vlc http://localhost:8080/test/stream (pure FLAC)");
eprintln!(" vlc http://localhost:8080/test/stream-ogg (OGG-FLAC container)");
eprintln!(" vlc http://localhost:8080/test/stream-icy (FLAC + ICY metadata)");
std::process::exit(1);
}
let channel_id: u8 = match args[1].parse() {
Ok(id) if id <= 3 => id,
_ => {
eprintln!("Error: channel_id must be a number between 0 and 3");
std::process::exit(1);
}
};
tracing::info!("Channel ID: {}", channel_id);
// ═══════════════════════════════════════════════════════════════════════════
// Fetch block metadata
// ═══════════════════════════════════════════════════════════════════════════
tracing::info!("Fetching current block metadata...");
let client = RadioParadiseClient::builder()
.channel(channel_id)
.build()
.await?;
let block = client.get_block(None).await?;
tracing::info!("Block Information:");
tracing::info!(" Event ID: {}", block.event);
tracing::info!(" Songs: {}", block.song_count());
tracing::info!(" Duration: {:.1} minutes", block.length as f64 / 60000.0);
tracing::info!("");
tracing::info!("Tracklist:");
for (index, song) in block.songs_ordered() {
tracing::info!(
" {:2}. {} - {} ({})",
index + 1,
song.artist,
song.title,
song.album.as_deref().unwrap_or("Unknown Album")
);
}
tracing::info!("");
// ═══════════════════════════════════════════════════════════════════════════
// Create streaming pipelines (FLAC and OGG-FLAC)
// ═══════════════════════════════════════════════════════════════════════════
tracing::info!("Creating streaming pipelines...");
// Encoder options (shared)
let encoder_options = EncoderOptions {
compression_level: 5,
verify: false,
..Default::default()
};
// ─────────────────────────────────────────────────────────────────────────
// Pipeline 1: FLAC streaming
// ─────────────────────────────────────────────────────────────────────────
let mut source_flac = RadioParadiseStreamSource::new(client.clone());
source_flac.push_block_id(block.event);
tracing::debug!("RadioParadiseStreamSource (FLAC) created with block {}", block.event);
// Calculate channel size to match max_lead_time
// With 50ms chunks and 3.0s lead time: 3.0 / 0.05 = 60 chunks
let max_lead_time = 3.0;
let chunk_duration_sec = 0.05;
let channel_size = ((max_lead_time / chunk_duration_sec) as usize).max(16);
tracing::debug!("Calculated channel size: {} chunks ({:.1}s buffer)", channel_size, channel_size as f64 * chunk_duration_sec);
let mut timer_flac = TimerNode::with_channel_size(max_lead_time, channel_size);
tracing::debug!("TimerNode (FLAC) created with {:.1}s max lead time, {} chunk buffer", max_lead_time, channel_size);
let (streaming_sink, stream_handle) = StreamingFlacSink::new(encoder_options.clone(), channel_size.min(255) as u8);
tracing::debug!("StreamingFlacSink created with {} chunk buffer", channel_size);
timer_flac.register(Box::new(streaming_sink));
source_flac.register(Box::new(timer_flac));
tracing::info!("Pipeline 1 connected: RadioParadiseStreamSource → TimerNode → StreamingFlacSink");
// ─────────────────────────────────────────────────────────────────────────
// Pipeline 2: OGG-FLAC streaming
// ─────────────────────────────────────────────────────────────────────────
let mut source_ogg = RadioParadiseStreamSource::new(client);
source_ogg.push_block_id(block.event);
tracing::debug!("RadioParadiseStreamSource (OGG) created with block {}", block.event);
let mut timer_ogg = TimerNode::with_channel_size(max_lead_time, channel_size);
tracing::debug!("TimerNode (OGG) created with {:.1}s max lead time, {} chunk buffer", max_lead_time, channel_size);
let (ogg_sink, ogg_handle) = StreamingOggFlacSink::new(encoder_options, channel_size.min(255) as u8);
tracing::debug!("StreamingOggFlacSink created with {} chunk buffer", channel_size);
timer_ogg.register(Box::new(ogg_sink));
source_ogg.register(Box::new(timer_ogg));
tracing::info!("Pipeline 2 connected: RadioParadiseStreamSource → TimerNode → StreamingOggFlacSink");
// ═══════════════════════════════════════════════════════════════════════════
// Setup pmoserver with streaming routes
// ═══════════════════════════════════════════════════════════════════════════
tracing::info!("Setting up pmoserver...");
let mut server = ServerBuilder::new("RadioParadiseStreamTest", "http://localhost", 8080)
.build();
let app_state = Arc::new(AppState {
stream_handle,
ogg_handle,
});
// Add streaming routes
server.add_handler_with_state("/test/stream", stream_handler, app_state.clone()).await;
server.add_handler_with_state("/test/stream-icy", stream_icy_handler, app_state.clone()).await;
server.add_handler_with_state("/test/stream-ogg", stream_ogg_handler, app_state.clone()).await;
// Add metadata route
server.add_handler_with_state("/test/metadata", metadata_handler, app_state.clone()).await;
// Add health check
server.add_handler("/test/health", health_handler).await;
tracing::info!("");
tracing::info!("========================================");
tracing::info!("Ready to stream!");
tracing::info!("");
tracing::info!("Pure FLAC stream (for VLC, standard players):");
tracing::info!(" vlc http://localhost:8080/test/stream");
tracing::info!("");
tracing::info!("OGG-FLAC stream (streaming container with metadata support):");
tracing::info!(" vlc http://localhost:8080/test/stream-ogg");
tracing::info!("");
tracing::info!("FLAC + ICY metadata stream (for ICY-aware clients):");
tracing::info!(" http://localhost:8080/test/stream-icy");
tracing::info!("");
tracing::info!("Metadata endpoint (JSON):");
tracing::info!(" curl http://localhost:8080/test/metadata");
tracing::info!("========================================");
tracing::info!("");
// ═══════════════════════════════════════════════════════════════════════════
// Start pipelines and server
// ═══════════════════════════════════════════════════════════════════════════
let stop_token = CancellationToken::new();
let stop_token_flac = stop_token.clone();
let stop_token_ogg = stop_token.clone();
// Start FLAC pipeline in background
let pipeline_flac_handle = tokio::spawn(async move {
tracing::info!("[PIPELINE-FLAC] Starting...");
let result = Box::new(source_flac).run(stop_token_flac).await;
match &result {
Ok(()) => tracing::info!("[PIPELINE-FLAC] Completed successfully"),
Err(e) => tracing::error!("[PIPELINE-FLAC] Error: {}", e),
}
result
});
// Start OGG-FLAC pipeline in background
let pipeline_ogg_handle = tokio::spawn(async move {
tracing::info!("[PIPELINE-OGG] Starting...");
let result = Box::new(source_ogg).run(stop_token_ogg).await;
match &result {
Ok(()) => tracing::info!("[PIPELINE-OGG] Completed successfully"),
Err(e) => tracing::error!("[PIPELINE-OGG] Error: {}", e),
}
result
});
// Start pmoserver (blocks until Ctrl+C)
tracing::info!("[SERVER] Starting pmoserver...");
server.start().await;
server.wait().await;
// Server stopped, cancel pipelines
tracing::info!("Server stopped, canceling pipelines...");
stop_token.cancel();
// Wait for both pipelines to finish
match pipeline_flac_handle.await {
Ok(Ok(())) => tracing::info!("FLAC pipeline completed successfully"),
Ok(Err(e)) => tracing::error!("FLAC pipeline error: {}", e),
Err(e) => tracing::error!("FLAC pipeline task error: {}", e),
}
match pipeline_ogg_handle.await {
Ok(Ok(())) => tracing::info!("OGG-FLAC pipeline completed successfully"),
Ok(Err(e)) => tracing::error!("OGG-FLAC pipeline error: {}", e),
Err(e) => tracing::error!("OGG-FLAC pipeline task error: {}", e),
}
tracing::info!("Shutdown complete");
Ok(())
}