1use crate::error::{Error, Result};
4
5pub const TS_PACKET_SIZE: usize = 188;
7pub const TS_SYNC_BYTE: u8 = 0x47;
9const MAX_SECTION_SIZE: usize = 4098;
14
15const TEI_MASK: u8 = 0x80;
17const PUSI_MASK: u8 = 0x40;
19pub const PID_MASK_HI: u8 = 0x1F;
21pub const SCRAMBLING_MASK: u8 = 0xC0;
23pub const ADAPTATION_FLAG: u8 = 0x20;
25pub const PAYLOAD_FLAG: u8 = 0x10;
27pub const CC_MASK: u8 = 0x0F;
29
30#[derive(Clone, Debug, PartialEq, Eq)]
32#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
33pub struct TsHeader {
34 pub tei: bool,
37 pub pusi: bool,
40 pub pid: u16,
42 pub scrambling: u8,
44 pub has_adaptation: bool,
46 pub has_payload: bool,
48 pub continuity_counter: u8,
50}
51
52#[derive(Clone, Debug)]
59#[cfg_attr(feature = "serde", derive(serde::Serialize))]
60pub struct TsPacket<'a> {
61 pub header: TsHeader,
63 pub payload: Option<&'a [u8]>,
66 #[cfg_attr(feature = "serde", serde(skip))]
68 pub raw: &'a [u8; TS_PACKET_SIZE],
69}
70
71impl TsHeader {
72 pub fn parse(raw4: &[u8]) -> Option<Self> {
76 if raw4.len() < 4 {
77 return None;
78 }
79 let b1 = raw4[1];
80 let b2 = raw4[2];
81 let b3 = raw4[3];
82
83 let tei = (b1 & TEI_MASK) != 0;
84 let pusi = (b1 & PUSI_MASK) != 0;
85 let pid = (((b1 & PID_MASK_HI) as u16) << 8) | (b2 as u16);
86 let scrambling = (b3 & SCRAMBLING_MASK) >> 6;
87 let has_adaptation = (b3 & ADAPTATION_FLAG) != 0;
88 let has_payload = (b3 & PAYLOAD_FLAG) != 0;
89 let continuity_counter = b3 & CC_MASK;
90
91 Some(Self {
92 tei,
93 pusi,
94 pid,
95 scrambling,
96 has_adaptation,
97 has_payload,
98 continuity_counter,
99 })
100 }
101
102 pub fn serialize_into(&self, buf: &mut [u8]) {
106 assert!(
107 buf.len() >= 4,
108 "buffer must have at least 4 bytes for TS header"
109 );
110 buf[0] = TS_SYNC_BYTE;
111 buf[1] = 0;
112 if self.tei {
113 buf[1] |= TEI_MASK;
114 }
115 if self.pusi {
116 buf[1] |= PUSI_MASK;
117 }
118 buf[1] |= ((self.pid >> 8) as u8) & PID_MASK_HI;
119 buf[2] = (self.pid & 0xFF) as u8;
120 buf[3] = (self.scrambling << 6) & SCRAMBLING_MASK;
121 if self.has_adaptation {
122 buf[3] |= ADAPTATION_FLAG;
123 }
124 if self.has_payload {
125 buf[3] |= PAYLOAD_FLAG;
126 }
127 buf[3] |= self.continuity_counter & CC_MASK;
128 }
129}
130
131impl<'a> TsPacket<'a> {
132 pub fn parse(buf: &'a [u8]) -> Result<Self> {
138 if buf.len() < TS_PACKET_SIZE {
139 return Err(Error::BufferTooShort {
140 need: TS_PACKET_SIZE,
141 have: buf.len(),
142 what: "TsPacket::parse",
143 });
144 }
145 if buf[0] != TS_SYNC_BYTE {
146 return Err(Error::InvalidSyncByte { found: buf[0] });
147 }
148
149 let raw: &[u8; TS_PACKET_SIZE] =
150 buf[..TS_PACKET_SIZE]
151 .try_into()
152 .map_err(|_| Error::BufferTooShort {
153 need: TS_PACKET_SIZE,
154 have: buf.len(),
155 what: "TsPacket::parse (array conversion)",
156 })?;
157
158 let header = TsHeader::parse(&raw[..4])
159 .expect("raw is 188 bytes so first 4 bytes are always present");
160
161 let mut cursor = 4usize;
162 let mut payload = None;
163
164 if header.has_adaptation && cursor < TS_PACKET_SIZE {
166 let af_len = raw[cursor] as usize;
167 cursor += 1 + af_len;
168 }
169
170 if header.has_payload && cursor < TS_PACKET_SIZE {
171 payload = Some(&raw[cursor..]);
172 }
173
174 Ok(TsPacket {
175 header,
176 payload,
177 raw,
178 })
179 }
180}
181
182#[derive(Default)]
187pub struct SectionReassembler {
188 buf: bytes::BytesMut,
189 expected: usize,
190 ready: std::collections::VecDeque<bytes::Bytes>,
191}
192
193impl SectionReassembler {
194 pub fn feed(&mut self, payload: &[u8], pusi: bool) {
200 if pusi {
201 if payload.is_empty() {
204 self.buf.clear();
205 self.expected = 0;
206 return;
207 }
208 let pointer = payload[0] as usize;
209 let start = 1 + pointer;
210 if start >= payload.len() {
211 self.buf.clear();
212 return;
213 }
214 self.buf.clear();
215 let new_data = &payload[start..];
216 if self.buf.len() + new_data.len() > MAX_SECTION_SIZE {
217 self.buf.clear();
218 self.expected = 0;
219 return;
220 }
221 self.buf.extend_from_slice(new_data);
222 if self.buf.len() >= 3 {
223 self.expected = 3 + (((self.buf[1] & 0x0F) as usize) << 8 | self.buf[2] as usize);
224 }
225 } else {
226 if self.buf.is_empty() {
227 return;
228 }
229 if self.buf.len() + payload.len() > MAX_SECTION_SIZE {
230 self.buf.clear();
231 self.expected = 0;
232 return;
233 }
234 self.buf.extend_from_slice(payload);
235 }
236
237 if self.expected > 0 && self.buf.len() >= self.expected {
238 let section = self.buf.split_to(self.expected).freeze();
241 self.ready.push_back(section);
242 self.expected = 0;
243 }
244 }
245
246 pub fn pop_section(&mut self) -> Option<bytes::Bytes> {
248 self.ready.pop_front()
249 }
250
251 pub fn len(&self) -> usize {
253 self.buf.len()
254 }
255
256 pub fn is_empty(&self) -> bool {
258 self.buf.is_empty()
259 }
260}
261
262#[cfg(test)]
263mod tests {
264 use super::*;
265
266 fn make_packet(b1: u8, b2: u8, b3: u8, payload_data: &[u8]) -> [u8; TS_PACKET_SIZE] {
268 let mut pkt = [0u8; TS_PACKET_SIZE];
269 pkt[0] = TS_SYNC_BYTE;
270 pkt[1] = b1;
271 pkt[2] = b2;
272 pkt[3] = b3;
273 let payload_start = 4;
274 let end = (payload_start + payload_data.len()).min(TS_PACKET_SIZE);
275 let len = (end - payload_start).min(payload_data.len());
276 pkt[payload_start..payload_start + len].copy_from_slice(&payload_data[..len]);
277 pkt
278 }
279
280 #[test]
281 fn parse_rejects_non_0x47_sync_byte() {
282 let mut pkt = [0u8; TS_PACKET_SIZE];
283 pkt[0] = 0x46; let err = TsPacket::parse(&pkt).unwrap_err();
285 match err {
286 Error::InvalidSyncByte { found } => assert_eq!(found, 0x46),
287 other => panic!("expected InvalidSyncByte, got {other:?}"),
288 }
289 }
290
291 #[test]
292 fn parse_extracts_pid_and_continuity_counter() {
293 let pkt = make_packet(0x12, 0x34, 0x05, &[]);
300 let pkt = TsPacket::parse(&pkt).unwrap();
301 assert_eq!(pkt.header.pid, 0x1234);
302 assert_eq!(pkt.header.continuity_counter, 5);
303 }
304
305 #[test]
306 fn payload_unit_start_indicator_flag_extracted() {
307 let pkt1 = make_packet(0x40, 0x00, 0x00, &[]);
309 let pkt1 = TsPacket::parse(&pkt1).unwrap();
310 assert!(pkt1.header.pusi);
311
312 let pkt2 = make_packet(0x00, 0x00, 0x00, &[]);
314 let pkt2 = TsPacket::parse(&pkt2).unwrap();
315 assert!(!pkt2.header.pusi);
316 }
317
318 fn build_pusi_payload(pointer_field: u8, previous_tail: &[u8], section: &[u8]) -> Vec<u8> {
323 assert_eq!(pointer_field as usize, previous_tail.len());
324 let mut v = Vec::with_capacity(1 + previous_tail.len() + section.len());
325 v.push(pointer_field);
326 v.extend_from_slice(previous_tail);
327 v.extend_from_slice(section);
328 v
329 }
330
331 fn build_section(table_id: u8, body_after_length: &[u8]) -> Vec<u8> {
335 let section_length = body_after_length.len() as u16;
336 let mut v = Vec::with_capacity(3 + section_length as usize);
337 v.push(table_id);
338 v.push(0xB0 | ((section_length >> 8) as u8 & 0x0F));
340 v.push((section_length & 0xFF) as u8);
341 v.extend_from_slice(body_after_length);
342 v
343 }
344
345 #[test]
351 fn reassembler_accumulates_multi_packet_section() {
352 let body = vec![0xAAu8; 197];
354 let section = build_section(0x02, &body);
355 assert_eq!(section.len(), 200);
356
357 let first_chunk = 100;
358 let payload1 = build_pusi_payload(0, &[], §ion[..first_chunk]);
359 let payload2 = section[first_chunk..].to_vec();
360
361 let mut reasm = SectionReassembler::default();
362 reasm.feed(&payload1, true);
363 reasm.feed(&payload2, false);
364
365 let out = reasm.pop_section().expect("section should be ready");
366 assert_eq!(out.len(), 200);
367 assert_eq!(out.as_ref(), §ion[..]);
368 }
369
370 #[test]
371 fn reassembler_yields_complete_section_once_length_satisfied() {
372 let section = build_section(0x42, &[0xAA]);
374 assert_eq!(section.len(), 4);
375 let payload = build_pusi_payload(0, &[], §ion);
376
377 let mut reasm = SectionReassembler::default();
378 reasm.feed(&payload, true);
379
380 let out = reasm
381 .pop_section()
382 .expect("single-packet section should pop");
383 assert_eq!(out.as_ref(), §ion[..]);
384 }
385
386 #[test]
387 fn reassembler_discards_on_buffer_overflow() {
388 let mut section = Vec::with_capacity(3 + 4095);
392 section.push(0x00); section.push(0xB0 | ((4095u16 >> 8) as u8 & 0x0F));
394 section.push(0xFF);
395 section.extend_from_slice(&[0u8; 160]);
396 let payload1 = build_pusi_payload(0, &[], §ion);
397
398 let mut reasm = SectionReassembler::default();
399 reasm.feed(&payload1, true);
400 assert!(reasm.pop_section().is_none());
401
402 let filler = vec![0u8; 180];
404 for _ in 0..(MAX_SECTION_SIZE / 180 + 1) {
405 reasm.feed(&filler, false);
406 }
407 assert!(
408 reasm.pop_section().is_none(),
409 "no section should pop after overflow reset"
410 );
411
412 let valid_section = build_section(0x00, &[0xAA]);
414 let payload2 = build_pusi_payload(0, &[], &valid_section);
415 reasm.feed(&payload2, true);
416 let out = reasm
417 .pop_section()
418 .expect("fresh section should pop after reset");
419 assert_eq!(out.as_ref(), &valid_section[..]);
420 }
421
422 #[test]
423 fn reassembler_handles_pusi_with_nonzero_pointer_field() {
424 let prior_tail = vec![0x11, 0x22, 0x33];
426 let new_section = build_section(0x02, &[0xBB]);
427 assert_eq!(new_section.len(), 4);
428 let payload = build_pusi_payload(3, &prior_tail, &new_section);
429
430 let mut reasm = SectionReassembler::default();
431 reasm.feed(&payload, true);
432
433 let out = reasm
434 .pop_section()
435 .expect("section after pointer_field skip should pop");
436 assert_eq!(out.as_ref(), &new_section[..]);
437 }
438
439 #[test]
440 fn reassembler_ignores_continuation_before_pusi() {
441 let pkt = make_packet(0x00, 0x00, PAYLOAD_FLAG, &[0xAA, 0xBB, 0xCC]);
444
445 let mut reasm = SectionReassembler::default();
446 reasm.feed(&pkt[4..], false); assert!(
449 reasm.pop_section().is_none(),
450 "no section should appear without prior PUSI"
451 );
452 assert!(
453 reasm.pop_section().is_none(),
454 "second pop should also be none"
455 );
456 }
457
458 #[test]
461 fn reassembler_empty_pusi_payload_does_not_panic() {
462 let mut reasm = SectionReassembler::default();
463 reasm.feed(&[], true);
464 assert!(reasm.pop_section().is_none());
465 let mut payload = vec![0x00u8, 0x72, 0x70, 0x01, 0x00];
467 payload.resize(5, 0);
468 reasm.feed(&payload, true);
469 assert!(reasm.pop_section().is_some());
470 }
471
472 #[test]
476 fn reassembler_accepts_maximal_private_section() {
477 let mut section = vec![0x80u8, 0x7F, 0xFF]; section.resize(3 + 0xFFF, 0xAB);
479
480 let mut reasm = SectionReassembler::default();
481 let mut first = vec![0x00];
483 first.extend_from_slice(§ion[..183]);
484 reasm.feed(&first, true);
485 for chunk in section[183..].chunks(184) {
486 reasm.feed(chunk, false);
487 }
488 let out = reasm.pop_section().expect("4098-byte section should pop");
489 assert_eq!(out.len(), 4098);
490 assert_eq!(out.as_ref(), §ion[..]);
491 }
492}