Audit fixes (14 critical, 22 warnings): - UDF: bounds checks on all ICB/FID parsing from disc data - SCSI Linux: saturating_sub on residual, CDB length guard, buffer size guard - SCSI macOS: SCSITaskStatus u32 (was u8 — stack corruption) - AACS: EC mod_inv returns infinity instead of panic, key reduced mod n - AACS: do_handshake tries all host certs (was returning on first failure) - H.264: bounds check on SPS < 4 bytes - ContentReader: error on missing unit key (was zero-fill) - KEYDB: flat redirect loop (was recursive), 100MB response limit, Windows HOME fallback - ISO writer: AVDP extent order, partition length, allocation cap - Network: removed TCP_NODELAY on bulk stream - MKV: guard on u64::MAX seek - disc.rs: saturating_sub on extent offset, simplified dead region code - cargo fmt (610 violations), cargo clippy --fix (55 auto-fixes) DVD support (new files): - src/ifo.rs — IFO parser (VIDEO_TS.IFO, VTS_XX_0.IFO, PGC chains, cells, streams) — 13 tests - src/mux/ps.rs — MPEG-2 Program Stream demuxer (pack headers, PES, private stream 1) — 12 tests - src/mux/codec/mpeg2.rs — MPEG-2 video parser (sequence headers, I-frame detection) — 15 tests - src/css/crack.rs — split-attack algorithm (LFSR cipher needs verification — test ignored) 226 tests total (was 186), 1 ignored (CSS crack needs cipher verification).
95 lines
2.4 KiB
Rust
95 lines
2.4 KiB
Rust
//! Dolby TrueHD / Atmos elementary stream parser.
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//!
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//! TrueHD major sync: 0xF8726FBA at a 4-byte aligned position.
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//! Access units consist of a major sync followed by minor syncs.
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//! An embedded AC3 core is in substream 0 for backward compatibility.
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//! All access units are keyframes.
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//! Each PES packet = one access unit.
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use super::{pts_to_ns, CodecParser, Frame, PesPacket};
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pub struct TrueHdParser;
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impl Default for TrueHdParser {
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fn default() -> Self {
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Self::new()
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}
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}
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impl TrueHdParser {
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pub fn new() -> Self {
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Self
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}
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}
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impl CodecParser for TrueHdParser {
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fn parse(&mut self, pes: &PesPacket) -> Vec<Frame> {
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if pes.data.is_empty() {
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return Vec::new();
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}
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let pts_ns = pes.pts.map(pts_to_ns).unwrap_or(0);
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vec![Frame {
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pts_ns,
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keyframe: true,
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data: pes.data.clone(),
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}]
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}
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fn codec_private(&self) -> Option<Vec<u8>> {
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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::mux::ts::PesPacket;
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fn make_pes(data: Vec<u8>, pts: Option<i64>) -> PesPacket {
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PesPacket {
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pid: 0x1100,
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pts,
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dts: None,
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data,
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}
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}
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#[test]
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fn parse_basic_frame() {
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let mut parser = TrueHdParser::new();
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// TrueHD major sync: F8 72 6F BA (at 4-byte aligned position) + payload
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let data = vec![0xF8, 0x72, 0x6F, 0xBA, 0x01, 0x02, 0x03, 0x04];
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let pes = make_pes(data.clone(), Some(90000));
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let frames = parser.parse(&pes);
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assert_eq!(frames.len(), 1);
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assert_eq!(frames[0].data, data);
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assert_eq!(frames[0].pts_ns, 1_000_000_000);
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}
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#[test]
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fn all_keyframes() {
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let mut parser = TrueHdParser::new();
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for i in 0..3 {
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let data = vec![0xF8, 0x72, 0x6F, 0xBA, i];
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let pes = make_pes(data, Some(90000 * i as i64));
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let frames = parser.parse(&pes);
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assert_eq!(frames.len(), 1);
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assert!(frames[0].keyframe, "TrueHD frame should always be keyframe");
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}
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}
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#[test]
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fn codec_private_none() {
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let parser = TrueHdParser::new();
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assert!(parser.codec_private().is_none());
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}
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#[test]
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fn parse_empty_pes() {
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let mut parser = TrueHdParser::new();
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let pes = make_pes(Vec::new(), Some(0));
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assert!(parser.parse(&pes).is_empty());
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}
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}
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