Carry per-picture truth and byte-exact source provenance THROUGH the stream so the muxer (and the upcoming video index) read MEASURED facts instead of assuming them. Honest data in, honest data out. - codec/coding.rs: codec-agnostic PictureInfo (CodingType / FieldOrder + the accessors field_order/coding_type/nb_fields/progressive/keyframe). Each codec folds its raw signals in; consumers use only accessors, never branch on codec. - mpeg2: builds PictureInfo from the picture coding extension and carries it + SourcePos (source_marks, parallel to pts_marks) on every emitted frame. - pes / codec::Frame: additive `coding` + `source`, forwarded through the highway; None for audio/subtitle and the network/stdio deserialize hop. - mkvstream: DEFER muxer construction until the first coded picture, set the video track's FieldOrder from the MEASURED value, THEN write the header — right the first time, no guess, no seek-back. An interlaced track that arrives with no measured order is LOGGED loudly and left UNDETERMINED, never faked. - mkv: MkvTrack::video no longer guesses TFF (a bitstream property the scan cannot know is UNDETERMINED at build). Removed VideoStream::top_field_first (the dead scan-time guess) crate-wide. - Tests: parser population (every PictureInfo facet + per-PES source carry) and mux-stream consumption (measured -> correct; missing -> UNDETERMINED, not faked). Two obsolete tests updated only after confirming (their own comments) they existed to enforce the deleted hardcoded-TFF.
213 lines
7.6 KiB
Rust
213 lines
7.6 KiB
Rust
//! M2tsStream — BD transport stream write sink.
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//!
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//! Write: prepends FMKV metadata header, then muxes PES frames into
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//! BD-TS. The read direction lives on the pipeline highway —
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//! `m2ts://` URLs route through
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//! [`super::resolve::input`] → `build_m2ts_pipeline` →
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//! [`super::pipelined_stream::PipelinedPesStream`], so this type is
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//! write-only.
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use super::meta;
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use crate::disc::{DiscTitle, Stream as DiscStream};
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use std::io::{self, Write};
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/// BD transport stream write sink with embedded FMKV metadata
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/// header.
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pub struct M2tsStream {
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disc_title: DiscTitle,
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muxer: super::tsmux::TsMuxer<Box<dyn Write + Send>>,
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}
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impl M2tsStream {
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/// Create for writing PES frames → BD-TS output.
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/// Writes FMKV metadata header, then muxes PES frames into BD transport stream.
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pub fn create(mut writer: impl Write + Send + 'static, title: &DiscTitle) -> io::Result<Self> {
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// Write FMKV metadata header unconditionally. An empty streams
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// array is valid JSON and round-trips fine; skipping the header
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// for a zero-stream title would make the output indistinguishable
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// from a non-FMKV file on read-back (read_header returns
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// Ok(None) → PMT fallback) even though M2tsStream produced it.
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let m = meta::M2tsMeta::from_title(title);
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meta::write_header(&mut writer, &m)?;
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let pids: Vec<u16> = title
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.streams
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.iter()
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.map(|s| match s {
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DiscStream::Video(v) => v.pid,
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DiscStream::Audio(a) => a.pid,
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DiscStream::Subtitle(s) => s.pid,
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})
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.collect();
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let boxed: Box<dyn Write + Send> = Box::new(writer);
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let mut muxer = super::tsmux::TsMuxer::new(boxed, &pids);
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for (i, cp) in title.codec_privates.iter().enumerate() {
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// codec_privates is parallel to streams/pids; ignore any
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// trailing entries that exceed the track count rather than
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// surfacing a track-range error for a benign metadata overrun.
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if i >= pids.len() {
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break;
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}
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if let Some(data) = cp {
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muxer.set_codec_private(i, data.clone())?;
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}
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}
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Ok(Self {
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disc_title: title.clone(),
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muxer,
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})
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}
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}
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impl crate::pes::Stream for M2tsStream {
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fn read(&mut self) -> io::Result<Option<crate::pes::PesFrame>> {
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// Write-only sink. The m2ts:// read direction is served by
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// `super::resolve::build_m2ts_pipeline` →
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// `PipelinedPesStream`; routing through this type for reads
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// was removed when the highway became the only ingress.
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Err(crate::error::Error::StreamWriteOnly.into())
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}
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fn write(&mut self, frame: &crate::pes::PesFrame) -> io::Result<()> {
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self.muxer
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.write_frame(frame.track, frame.pts, frame.keyframe, &frame.data)
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}
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fn finish(&mut self) -> io::Result<()> {
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self.muxer.finish()
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}
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fn info(&self) -> &crate::disc::DiscTitle {
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&self.disc_title
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}
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fn codec_private(&self, _track: usize) -> Option<Vec<u8>> {
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// Write side doesn't have parsers; codec_private flows in
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// via the title metadata at `create` time and gets baked
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// into the FMKV header. Nothing to surface back here.
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None
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use crate::disc::{
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Codec, ColorSpace, ContentFormat, DiscTitle, FrameRate, HdrFormat, Resolution,
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Stream as DiscStream, VideoStream,
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};
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use crate::pes::{PesFrame, Stream as PesStreamTrait};
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const VIDEO_PID: u16 = 0x1011;
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fn make_title() -> DiscTitle {
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DiscTitle {
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playlist: String::new(),
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playlist_id: 0,
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duration_secs: 0.0,
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size_bytes: 0,
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clips: Vec::new(),
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streams: vec![DiscStream::Video(VideoStream {
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pid: VIDEO_PID,
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codec: Codec::Hevc,
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resolution: Resolution::R1080p,
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frame_rate: FrameRate::F24,
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hdr: HdrFormat::Sdr,
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color_space: ColorSpace::Bt709,
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display_aspect: None,
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secondary: false,
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label: String::new(),
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measured_cicp: None,
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})],
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chapters: Vec::new(),
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extents: Vec::new(),
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content_format: ContentFormat::BdTs,
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codec_privates: vec![Some({
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// Minimal hvcC with one VPS-like array entry.
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let marker: &[u8] = &[0x40, 0x01, 0x0C, 0x01];
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let mut hvcc = vec![0u8; 22];
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hvcc.push(1); // numArrays
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hvcc.push(32);
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hvcc.extend_from_slice(&1u16.to_be_bytes()); // numNalus
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hvcc.extend_from_slice(&(marker.len() as u16).to_be_bytes());
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hvcc.extend_from_slice(marker);
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hvcc
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})],
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}
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}
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fn fake_idr_pes_data() -> Vec<u8> {
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// 4-byte length prefix + NAL: type 19 (IDR_W_RADL).
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let mut nal = vec![(19u8 << 1) & 0x7E, 0x01];
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for i in 0..200 {
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nal.push((i & 0xFF) as u8);
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}
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let mut out = Vec::with_capacity(4 + nal.len());
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out.extend_from_slice(&(nal.len() as u32).to_be_bytes());
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out.extend_from_slice(&nal);
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out
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}
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/// Writer wrapper that shares an Arc<Mutex<Vec<u8>>> so the test can
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/// inspect the bytes after the muxer drops.
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struct SharedSink(std::sync::Arc<std::sync::Mutex<Vec<u8>>>);
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impl Write for SharedSink {
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fn write(&mut self, b: &[u8]) -> io::Result<usize> {
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self.0.lock().unwrap().extend_from_slice(b);
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Ok(b.len())
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}
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fn flush(&mut self) -> io::Result<()> {
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Ok(())
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}
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}
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#[test]
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fn m2ts_stream_forwards_keyframe_to_rai() {
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let title = make_title();
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let shared = std::sync::Arc::new(std::sync::Mutex::new(Vec::<u8>::new()));
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let sink = SharedSink(shared.clone());
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let mut stream = M2tsStream::create(sink, &title).unwrap();
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let frame = PesFrame {
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coding: None,
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source: None,
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track: 0,
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pts: 0,
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keyframe: true,
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data: fake_idr_pes_data(),
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duration_ns: None,
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};
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stream.write(&frame).unwrap();
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stream.finish().unwrap();
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drop(stream);
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let buf = shared.lock().unwrap().clone();
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// Skip FMKV metadata header via meta::read_header.
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let mut cursor = std::io::Cursor::new(&buf);
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let _meta = super::meta::read_header(&mut cursor)
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.unwrap()
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.expect("FMKV header present");
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let header_end = cursor.position() as usize;
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let ts_bytes = &buf[header_end..];
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// Find first PUSI packet on VIDEO_PID; verify RAI in AF flags.
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// chunks_exact drops any partial trailing chunk — only whole
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// 192-byte BD-TS packets are valid, and it avoids OOB indexing on a
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// short final chunk.
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let pkt = ts_bytes
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.chunks_exact(192)
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.find(|p| {
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let h = &p[4..];
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let pid = (((h[1] & 0x1F) as u16) << 8) | h[2] as u16;
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pid == VIDEO_PID && (h[1] & 0x40) != 0
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})
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.expect("video PUSI packet present");
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let h = &pkt[4..];
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let afc = (h[3] >> 4) & 0x03;
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assert!(afc & 0b10 != 0, "AF must be present");
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let af_len = h[4] as usize;
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assert!(af_len >= 1, "AF length must include flags byte");
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let flags = h[5];
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assert_eq!(flags & 0x40, 0x40, "RAI bit set");
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}
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}
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