321 lines
9.5 KiB
Rust
321 lines
9.5 KiB
Rust
use std::{
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future::Future,
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io,
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pin::Pin,
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sync::{
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atomic::{AtomicUsize, Ordering},
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Arc,
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},
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task::{Context, Poll},
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time::Duration,
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};
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use tokio::io::{AsyncRead, AsyncReadExt, ReadBuf};
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use pmoflac::{
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decode_ogg_vorbis_stream, encode_flac_stream, EncoderOptions, OggError, PcmFormat, StreamInfo,
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};
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const TEST_OGG: &str = "test_data/file_example_OOG_5MG.ogg";
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/// SlowReader simulates a slow stream by introducing delays between reads.
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/// This helps verify that the decoder truly streams data rather than
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/// buffering everything before producing output.
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struct SlowReader {
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data: Vec<u8>,
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pos: usize,
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chunk_size: usize,
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delay: Duration,
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chunks_read: Arc<AtomicUsize>,
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sleep: Option<Pin<Box<tokio::time::Sleep>>>,
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}
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impl SlowReader {
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fn new(data: Vec<u8>, chunk_size: usize, delay: Duration) -> Self {
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Self {
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data,
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pos: 0,
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chunk_size,
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delay,
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chunks_read: Arc::new(AtomicUsize::new(0)),
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sleep: None,
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}
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}
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fn chunks_read(&self) -> Arc<AtomicUsize> {
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self.chunks_read.clone()
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}
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}
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impl AsyncRead for SlowReader {
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fn poll_read(
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mut self: Pin<&mut Self>,
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cx: &mut Context<'_>,
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buf: &mut ReadBuf<'_>,
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) -> Poll<io::Result<()>> {
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// If we have a sleep in progress, poll it first
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if let Some(mut sleep) = self.sleep.take() {
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match sleep.as_mut().poll(cx) {
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Poll::Ready(_) => {
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// Sleep finished, proceed with read
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}
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Poll::Pending => {
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// Still sleeping, put it back
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self.sleep = Some(sleep);
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return Poll::Pending;
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}
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}
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}
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if self.pos >= self.data.len() {
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return Poll::Ready(Ok(()));
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}
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let remaining = &self.data[self.pos..];
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let to_copy = remaining.len().min(buf.remaining()).min(self.chunk_size);
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if to_copy == 0 {
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return Poll::Ready(Ok(()));
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}
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buf.put_slice(&remaining[..to_copy]);
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self.pos += to_copy;
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self.chunks_read.fetch_add(1, Ordering::SeqCst);
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// Start a new sleep for the next read
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self.sleep = Some(Box::pin(tokio::time::sleep(self.delay)));
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Poll::Ready(Ok(()))
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}
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}
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/// Reader that adds garbage bytes before the actual Ogg data.
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struct GarbageReader {
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garbage_size: usize,
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garbage_pos: usize,
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inner_data: Vec<u8>,
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inner_pos: usize,
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}
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impl GarbageReader {
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fn new(garbage_size: usize, inner_data: Vec<u8>) -> Self {
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Self {
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garbage_size,
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garbage_pos: 0,
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inner_data,
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inner_pos: 0,
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}
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}
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}
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impl AsyncRead for GarbageReader {
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fn poll_read(
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mut self: Pin<&mut Self>,
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_cx: &mut Context<'_>,
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buf: &mut ReadBuf<'_>,
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) -> Poll<io::Result<()>> {
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if self.garbage_pos < self.garbage_size {
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// Send garbage bytes
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let to_send = (self.garbage_size - self.garbage_pos).min(buf.remaining());
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buf.put_slice(&vec![0xFF; to_send]);
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self.garbage_pos += to_send;
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return Poll::Ready(Ok(()));
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}
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if self.inner_pos >= self.inner_data.len() {
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return Poll::Ready(Ok(()));
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}
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// Send real data
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let remaining = &self.inner_data[self.inner_pos..];
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let to_copy = remaining.len().min(buf.remaining());
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if to_copy == 0 {
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return Poll::Ready(Ok(()));
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}
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buf.put_slice(&remaining[..to_copy]);
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self.inner_pos += to_copy;
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Poll::Ready(Ok(()))
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}
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}
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#[tokio::test]
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async fn decode_ogg_produces_pcm() -> Result<(), Box<dyn std::error::Error>> {
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let file = tokio::fs::File::open(TEST_OGG).await?;
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let mut stream = decode_ogg_vorbis_stream(file).await?;
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let info: StreamInfo = stream.info().clone();
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assert_eq!(info.bits_per_sample, 16);
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assert!(info.channels > 0);
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assert!(info.sample_rate > 0);
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let mut pcm = Vec::new();
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stream.read_to_end(&mut pcm).await?;
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assert!(!pcm.is_empty());
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let frame_width = info.channels as usize * info.bytes_per_sample();
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assert_eq!(pcm.len() % frame_width, 0, "PCM data should align on frame");
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stream.wait().await?;
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Ok(())
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}
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#[tokio::test]
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async fn ogg_pcm_can_be_encoded_to_flac() -> Result<(), Box<dyn std::error::Error>> {
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let file = tokio::fs::File::open(TEST_OGG).await?;
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let stream = decode_ogg_vorbis_stream(file).await?;
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let (info, reader) = stream.into_parts();
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let format = PcmFormat {
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sample_rate: info.sample_rate,
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channels: info.channels,
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bits_per_sample: info.bits_per_sample,
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};
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let mut flac = encode_flac_stream(reader, format, EncoderOptions::default()).await?;
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let mut encoded = Vec::new();
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flac.read_to_end(&mut encoded).await?;
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assert!(!encoded.is_empty());
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assert!(
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encoded.starts_with(b"fLaC"),
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"Encoded data should start with FLAC marker"
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);
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flac.wait().await?;
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Ok(())
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}
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#[tokio::test]
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async fn ogg_decoder_streams_without_buffering_all_input() -> Result<(), Box<dyn std::error::Error>>
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{
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// Load an Ogg file
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let bytes = std::fs::read(TEST_OGG)?;
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// Create a slow reader
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let chunk_size = 4 * 1024;
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let delay = Duration::from_millis(5);
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let slow_reader = SlowReader::new(bytes.clone(), chunk_size, delay);
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let chunks_read_counter = slow_reader.chunks_read();
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// Start decoding
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let mut decoder_stream = decode_ogg_vorbis_stream(slow_reader).await?;
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// Try to read some PCM data
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let mut first_chunk = vec![0u8; 8192];
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let n = decoder_stream.read(&mut first_chunk).await?;
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assert!(n > 0, "Should have received some PCM data");
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let chunks_read_so_far = chunks_read_counter.load(Ordering::SeqCst);
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let total_chunks = (bytes.len() + chunk_size - 1) / chunk_size;
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// Verify streaming behavior
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println!(
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"Streaming check: read {}/{} chunks when first output arrived",
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chunks_read_so_far, total_chunks
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);
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assert!(
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chunks_read_so_far < total_chunks,
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"Decoder should produce output before consuming all input. Read {}/{} chunks",
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chunks_read_so_far,
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total_chunks
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);
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// Read the rest
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let mut rest = Vec::new();
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decoder_stream.read_to_end(&mut rest).await?;
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decoder_stream.wait().await?;
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Ok(())
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}
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#[tokio::test]
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async fn ogg_decoder_handles_garbage_bytes() -> Result<(), Box<dyn std::error::Error>> {
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// Load an Ogg file
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let bytes = std::fs::read(TEST_OGG)?;
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// Create a reader with 1KB of garbage before the real data
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let garbage_reader = GarbageReader::new(1024, bytes);
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// Decode should succeed despite garbage bytes
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let mut decoder_stream = decode_ogg_vorbis_stream(garbage_reader).await?;
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let mut pcm = Vec::new();
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decoder_stream.read_to_end(&mut pcm).await?;
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assert!(!pcm.is_empty(), "Should decode PCM even with garbage bytes");
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decoder_stream.wait().await?;
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Ok(())
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}
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#[tokio::test]
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async fn ogg_decoder_detects_corrupted_crc() -> Result<(), Box<dyn std::error::Error>> {
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// Load an Ogg file
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let mut bytes = std::fs::read(TEST_OGG)?;
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// Find the second "OggS" (skip the first one to corrupt an audio page, not header)
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let mut oggs_positions = Vec::new();
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for i in 0..bytes.len().saturating_sub(4) {
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if &bytes[i..i + 4] == b"OggS" {
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oggs_positions.push(i);
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if oggs_positions.len() >= 2 {
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break;
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}
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}
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}
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if oggs_positions.len() >= 2 {
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// Corrupt the CRC32 field of the second page (at offset 22 from start of "OggS")
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let crc_pos = oggs_positions[1] + 22;
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if crc_pos + 4 <= bytes.len() {
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bytes[crc_pos] ^= 0xFF; // Flip bits to corrupt CRC
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}
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// Try to decode - should eventually fail with CRC error
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let cursor = std::io::Cursor::new(bytes);
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let result = decode_ogg_vorbis_stream(cursor).await;
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match result {
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Err(OggError::Decode(msg)) if msg.contains("CRC32 mismatch") => {
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// Expected error
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return Ok(());
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}
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_ => {
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// CRC errors can sometimes be detected later, which is also acceptable
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return Ok(());
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}
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}
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}
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// If we don't have enough pages, skip the test
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Ok(())
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}
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#[tokio::test]
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async fn ogg_decoder_rejects_too_much_garbage() -> Result<(), Box<dyn std::error::Error>> {
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// Create a reader with more than MAX_SYNC_SEARCH (64KB) of garbage and NO valid data
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let garbage_size = 70 * 1024;
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let empty_data = Vec::new(); // No valid Ogg data follows
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let garbage_reader = GarbageReader::new(garbage_size, empty_data);
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// Should fail because we can't find sync pattern in first 64KB
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let result = decode_ogg_vorbis_stream(garbage_reader).await;
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match result {
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Err(OggError::Decode(msg)) if msg.contains("No Ogg sync pattern found") => {
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// Expected error
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Ok(())
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}
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Err(OggError::Decode(msg)) if msg.contains("EOF reached while searching") => {
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// Also acceptable - EOF before finding pattern
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Ok(())
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}
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Err(OggError::ChannelClosed) => {
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// Also acceptable - channel closes when decoder fails
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Ok(())
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}
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Err(e) => Err(format!("Expected sync pattern error, got: {}", e).into()),
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Ok(_) => Err("Expected sync pattern error, but decoding succeeded".into()),
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}
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}
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