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h264_parser.c
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1 /*
2  * H.26L/H.264/AVC/JVT/14496-10/... parser
3  * Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
4  *
5  * This file is part of FFmpeg.
6  *
7  * FFmpeg is free software; you can redistribute it and/or
8  * modify it under the terms of the GNU Lesser General Public
9  * License as published by the Free Software Foundation; either
10  * version 2.1 of the License, or (at your option) any later version.
11  *
12  * FFmpeg is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15  * Lesser General Public License for more details.
16  *
17  * You should have received a copy of the GNU Lesser General Public
18  * License along with FFmpeg; if not, write to the Free Software
19  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20  */
21 
22 /**
23  * @file
24  * H.264 / AVC / MPEG4 part10 parser.
25  * @author Michael Niedermayer <michaelni@gmx.at>
26  */
27 
28 #define UNCHECKED_BITSTREAM_READER 1
29 
30 #include "libavutil/attributes.h"
31 #include "parser.h"
32 #include "h264data.h"
33 #include "golomb.h"
34 #include "internal.h"
35 #include "mpegutils.h"
36 
37 
39  int buf_size)
40 {
41  int i, j;
42  uint32_t state;
43  ParseContext *pc = &h->parse_context;
44  int next_avc= h->is_avc ? 0 : buf_size;
45 
46 // mb_addr= pc->mb_addr - 1;
47  state = pc->state;
48  if (state > 13)
49  state = 7;
50 
51  if (h->is_avc && !h->nal_length_size)
52  av_log(h->avctx, AV_LOG_ERROR, "AVC-parser: nal length size invalid\n");
53 
54  for (i = 0; i < buf_size; i++) {
55  if (i >= next_avc) {
56  int nalsize = 0;
57  i = next_avc;
58  for (j = 0; j < h->nal_length_size; j++)
59  nalsize = (nalsize << 8) | buf[i++];
60  if (nalsize <= 0 || nalsize > buf_size - i) {
61  av_log(h->avctx, AV_LOG_ERROR, "AVC-parser: nal size %d remaining %d\n", nalsize, buf_size - i);
62  return buf_size;
63  }
64  next_avc = i + nalsize;
65  state = 5;
66  }
67 
68  if (state == 7) {
69  i += h->h264dsp.h264_find_start_code_candidate(buf + i, next_avc - i);
70  if (i < next_avc)
71  state = 2;
72  } else if (state <= 2) {
73  if (buf[i] == 1)
74  state ^= 5; // 2->7, 1->4, 0->5
75  else if (buf[i])
76  state = 7;
77  else
78  state >>= 1; // 2->1, 1->0, 0->0
79  } else if (state <= 5) {
80  int nalu_type = buf[i] & 0x1F;
81  if (nalu_type == NAL_SEI || nalu_type == NAL_SPS ||
82  nalu_type == NAL_PPS || nalu_type == NAL_AUD) {
83  if (pc->frame_start_found) {
84  i++;
85  goto found;
86  }
87  } else if (nalu_type == NAL_SLICE || nalu_type == NAL_DPA ||
88  nalu_type == NAL_IDR_SLICE) {
89  state += 8;
90  continue;
91  }
92  state = 7;
93  } else {
94  h->parse_history[h->parse_history_count++]= buf[i];
95  if (h->parse_history_count>3) {
96  unsigned int mb, last_mb= h->parse_last_mb;
97  GetBitContext gb;
98 
100  h->parse_history_count=0;
101  mb= get_ue_golomb_long(&gb);
102  last_mb= h->parse_last_mb;
103  h->parse_last_mb= mb;
104  if (pc->frame_start_found) {
105  if (mb <= last_mb)
106  goto found;
107  } else
108  pc->frame_start_found = 1;
109  state = 7;
110  }
111  }
112  }
113  pc->state = state;
114  if (h->is_avc)
115  return next_avc;
116  return END_NOT_FOUND;
117 
118 found:
119  pc->state = 7;
120  pc->frame_start_found = 0;
121  if (h->is_avc)
122  return next_avc;
123  return i - (state & 5) - 3 * (state > 7);
124 }
125 
127 {
128  H264Context *h = s->priv_data;
129 
130  h->slice_type_nos = s->pict_type & 3;
131 
133  get_ue_golomb(&h->gb); // redundant_pic_count
134 
135  if (ff_set_ref_count(h) < 0)
136  return AVERROR_INVALIDDATA;
137 
138  if (h->slice_type_nos != AV_PICTURE_TYPE_I) {
139  int list;
140  for (list = 0; list < h->list_count; list++) {
141  if (get_bits1(&h->gb)) {
142  int index;
143  for (index = 0; ; index++) {
144  unsigned int reordering_of_pic_nums_idc = get_ue_golomb_31(&h->gb);
145 
146  if (reordering_of_pic_nums_idc < 3)
147  get_ue_golomb(&h->gb);
148  else if (reordering_of_pic_nums_idc > 3) {
150  "illegal reordering_of_pic_nums_idc %d\n",
151  reordering_of_pic_nums_idc);
152  return AVERROR_INVALIDDATA;
153  } else
154  break;
155 
156  if (index >= h->ref_count[list]) {
158  "reference count %d overflow\n", index);
159  return AVERROR_INVALIDDATA;
160  }
161  }
162  }
163  }
164  }
165 
169 
170  if (get_bits1(&h->gb)) { // adaptive_ref_pic_marking_mode_flag
171  int i;
172  for (i = 0; i < MAX_MMCO_COUNT; i++) {
173  MMCOOpcode opcode = get_ue_golomb_31(&h->gb);
174  if (opcode > (unsigned) MMCO_LONG) {
176  "illegal memory management control operation %d\n",
177  opcode);
178  return AVERROR_INVALIDDATA;
179  }
180  if (opcode == MMCO_END)
181  return 0;
182  else if (opcode == MMCO_RESET)
183  return 1;
184 
185  if (opcode == MMCO_SHORT2UNUSED || opcode == MMCO_SHORT2LONG)
186  get_ue_golomb(&h->gb);
187  if (opcode == MMCO_SHORT2LONG || opcode == MMCO_LONG2UNUSED ||
188  opcode == MMCO_LONG || opcode == MMCO_SET_MAX_LONG)
189  get_ue_golomb_31(&h->gb);
190  }
191  }
192 
193  return 0;
194 }
195 
196 /**
197  * Parse NAL units of found picture and decode some basic information.
198  *
199  * @param s parser context.
200  * @param avctx codec context.
201  * @param buf buffer with field/frame data.
202  * @param buf_size size of the buffer.
203  */
205  AVCodecContext *avctx,
206  const uint8_t *buf, int buf_size)
207 {
208  H264Context *h = s->priv_data;
209  const uint8_t *buf_end = buf + buf_size;
210  unsigned int pps_id;
211  unsigned int slice_type;
212  int state = -1, got_reset = 0;
213  const uint8_t *ptr;
214  int q264 = buf_size >=4 && !memcmp("Q264", buf, 4);
215  int field_poc[2];
216 
217  /* set some sane default values */
219  s->key_frame = 0;
221 
222  h->avctx = avctx;
225 
226  if (!buf_size)
227  return 0;
228 
229  for (;;) {
230  int src_length, dst_length, consumed, nalsize = 0;
231  if (h->is_avc) {
232  int i;
233  if (h->nal_length_size >= buf_end - buf) break;
234  nalsize = 0;
235  for (i = 0; i < h->nal_length_size; i++)
236  nalsize = (nalsize << 8) | *buf++;
237  if (nalsize <= 0 || nalsize > buf_end - buf) {
238  av_log(h->avctx, AV_LOG_ERROR, "AVC: nal size %d\n", nalsize);
239  break;
240  }
241  src_length = nalsize;
242  } else {
243  buf = avpriv_find_start_code(buf, buf_end, &state);
244  if (buf >= buf_end)
245  break;
246  --buf;
247  src_length = buf_end - buf;
248  }
249  switch (state & 0x1f) {
250  case NAL_SLICE:
251  case NAL_IDR_SLICE:
252  // Do not walk the whole buffer just to decode slice header
253  if ((state & 0x1f) == NAL_IDR_SLICE || ((state >> 5) & 0x3) == 0) {
254  /* IDR or disposable slice
255  * No need to decode many bytes because MMCOs shall not be present. */
256  if (src_length > 60)
257  src_length = 60;
258  } else {
259  /* To decode up to MMCOs */
260  if (src_length > 1000)
261  src_length = 1000;
262  }
263  break;
264  }
265  ptr = ff_h264_decode_nal(h, buf, &dst_length, &consumed, src_length);
266  if (ptr == NULL || dst_length < 0)
267  break;
268 
269  init_get_bits(&h->gb, ptr, 8 * dst_length);
270  switch (h->nal_unit_type) {
271  case NAL_SPS:
273  break;
274  case NAL_PPS:
276  break;
277  case NAL_SEI:
279  break;
280  case NAL_IDR_SLICE:
281  s->key_frame = 1;
282 
283  h->prev_frame_num = 0;
284  h->prev_frame_num_offset = 0;
285  h->prev_poc_msb =
286  h->prev_poc_lsb = 0;
287  /* fall through */
288  case NAL_SLICE:
289  get_ue_golomb_long(&h->gb); // skip first_mb_in_slice
290  slice_type = get_ue_golomb_31(&h->gb);
291  s->pict_type = golomb_to_pict_type[slice_type % 5];
292  if (h->sei_recovery_frame_cnt >= 0) {
293  /* key frame, since recovery_frame_cnt is set */
294  s->key_frame = 1;
295  }
296  pps_id = get_ue_golomb(&h->gb);
297  if (pps_id >= MAX_PPS_COUNT) {
299  "pps_id %u out of range\n", pps_id);
300  return -1;
301  }
302  if (!h->pps_buffers[pps_id]) {
304  "non-existing PPS %u referenced\n", pps_id);
305  return -1;
306  }
307  h->pps = *h->pps_buffers[pps_id];
308  if (!h->sps_buffers[h->pps.sps_id]) {
310  "non-existing SPS %u referenced\n", h->pps.sps_id);
311  return -1;
312  }
313  h->sps = *h->sps_buffers[h->pps.sps_id];
315 
316  if(h->sps.ref_frame_count <= 1 && h->pps.ref_count[0] <= 1 && s->pict_type == AV_PICTURE_TYPE_I)
317  s->key_frame = 1;
318 
319  avctx->profile = ff_h264_get_profile(&h->sps);
320  avctx->level = h->sps.level_idc;
321 
322  if (h->sps.frame_mbs_only_flag) {
324  } else {
325  if (get_bits1(&h->gb)) { // field_pic_flag
326  h->picture_structure = PICT_TOP_FIELD + get_bits1(&h->gb); // bottom_field_flag
327  } else {
329  }
330  }
331 
332  if (h->nal_unit_type == NAL_IDR_SLICE)
333  get_ue_golomb(&h->gb); /* idr_pic_id */
334  if (h->sps.poc_type == 0) {
335  h->poc_lsb = get_bits(&h->gb, h->sps.log2_max_poc_lsb);
336 
337  if (h->pps.pic_order_present == 1 &&
340  }
341 
342  if (h->sps.poc_type == 1 &&
344  h->delta_poc[0] = get_se_golomb(&h->gb);
345 
346  if (h->pps.pic_order_present == 1 &&
348  h->delta_poc[1] = get_se_golomb(&h->gb);
349  }
350 
351  /* Decode POC of this picture.
352  * The prev_ values needed for decoding POC of the next picture are not set here. */
353  field_poc[0] = field_poc[1] = INT_MAX;
354  ff_init_poc(h, field_poc, &s->output_picture_number);
355 
356  /* Continue parsing to check if MMCO_RESET is present.
357  * FIXME: MMCO_RESET could appear in non-first slice.
358  * Maybe, we should parse all undisposable non-IDR slice of this
359  * picture until encountering MMCO_RESET in a slice of it. */
360  if (h->nal_ref_idc && h->nal_unit_type != NAL_IDR_SLICE) {
361  got_reset = scan_mmco_reset(s);
362  if (got_reset < 0)
363  return got_reset;
364  }
365 
366  /* Set up the prev_ values for decoding POC of the next picture. */
367  h->prev_frame_num = got_reset ? 0 : h->frame_num;
368  h->prev_frame_num_offset = got_reset ? 0 : h->frame_num_offset;
369  if (h->nal_ref_idc != 0) {
370  if (!got_reset) {
371  h->prev_poc_msb = h->poc_msb;
372  h->prev_poc_lsb = h->poc_lsb;
373  } else {
374  h->prev_poc_msb = 0;
375  h->prev_poc_lsb =
376  h->picture_structure == PICT_BOTTOM_FIELD ? 0 : field_poc[0];
377  }
378  }
379 
380  if (h->sps.pic_struct_present_flag) {
381  switch (h->sei_pic_struct) {
384  s->repeat_pict = 0;
385  break;
389  s->repeat_pict = 1;
390  break;
393  s->repeat_pict = 2;
394  break;
396  s->repeat_pict = 3;
397  break;
399  s->repeat_pict = 5;
400  break;
401  default:
402  s->repeat_pict = h->picture_structure == PICT_FRAME ? 1 : 0;
403  break;
404  }
405  } else {
406  s->repeat_pict = h->picture_structure == PICT_FRAME ? 1 : 0;
407  }
408 
409  if (h->picture_structure == PICT_FRAME) {
411  if (h->sps.pic_struct_present_flag) {
412  switch (h->sei_pic_struct) {
416  break;
420  break;
421  default:
423  break;
424  }
425  } else {
426  if (field_poc[0] < field_poc[1])
428  else if (field_poc[0] > field_poc[1])
430  else
432  }
433  } else {
436  else
439  }
440 
441  return 0; /* no need to evaluate the rest */
442  }
443  buf += h->is_avc ? nalsize : consumed;
444  }
445  if (q264)
446  return 0;
447  /* didn't find a picture! */
448  av_log(h->avctx, AV_LOG_ERROR, "missing picture in access unit with size %d\n", buf_size);
449  return -1;
450 }
451 
453  AVCodecContext *avctx,
454  const uint8_t **poutbuf, int *poutbuf_size,
455  const uint8_t *buf, int buf_size)
456 {
457  H264Context *h = s->priv_data;
458  ParseContext *pc = &h->parse_context;
459  int next;
460 
461  if (!h->got_first) {
462  h->got_first = 1;
463  if (avctx->extradata_size) {
464  h->avctx = avctx;
465  // must be done like in decoder, otherwise opening the parser,
466  // letting it create extradata and then closing and opening again
467  // will cause has_b_frames to be always set.
468  // Note that estimate_timings_from_pts does exactly this.
469  if (!avctx->has_b_frames)
470  h->low_delay = 1;
472  }
473  }
474 
476  next = buf_size;
477  } else {
478  next = h264_find_frame_end(h, buf, buf_size);
479 
480  if (ff_combine_frame(pc, next, &buf, &buf_size) < 0) {
481  *poutbuf = NULL;
482  *poutbuf_size = 0;
483  return buf_size;
484  }
485 
486  if (next < 0 && next != END_NOT_FOUND) {
487  av_assert1(pc->last_index + next >= 0);
488  h264_find_frame_end(h, &pc->buffer[pc->last_index + next], -next); // update state
489  }
490  }
491 
492  parse_nal_units(s, avctx, buf, buf_size);
493 
494  if (h->sei_cpb_removal_delay >= 0) {
498  } else {
499  s->dts_sync_point = INT_MIN;
500  s->dts_ref_dts_delta = INT_MIN;
501  s->pts_dts_delta = INT_MIN;
502  }
503 
504  if (s->flags & PARSER_FLAG_ONCE) {
506  }
507 
508  *poutbuf = buf;
509  *poutbuf_size = buf_size;
510  return next;
511 }
512 
513 static int h264_split(AVCodecContext *avctx,
514  const uint8_t *buf, int buf_size)
515 {
516  int i;
517  uint32_t state = -1;
518  int has_sps = 0;
519 
520  for (i = 0; i <= buf_size; i++) {
521  if ((state & 0xFFFFFF1F) == 0x107)
522  has_sps = 1;
523  /* if ((state&0xFFFFFF1F) == 0x101 ||
524  * (state&0xFFFFFF1F) == 0x102 ||
525  * (state&0xFFFFFF1F) == 0x105) {
526  * }
527  */
528  if ((state & 0xFFFFFF00) == 0x100 && (state & 0xFFFFFF1F) != 0x107 &&
529  (state & 0xFFFFFF1F) != 0x108 && (state & 0xFFFFFF1F) != 0x109) {
530  if (has_sps) {
531  while (i > 4 && buf[i - 5] == 0)
532  i--;
533  return i - 4;
534  }
535  }
536  if (i < buf_size)
537  state = (state << 8) | buf[i];
538  }
539  return 0;
540 }
541 
543 {
544  H264Context *h = s->priv_data;
545  ParseContext *pc = &h->parse_context;
546 
547  av_free(pc->buffer);
549 }
550 
552 {
553  H264Context *h = s->priv_data;
554  h->thread_context[0] = h;
555  h->slice_context_count = 1;
556  ff_h264dsp_init(&h->h264dsp, 8, 1);
557  return 0;
558 }
559 
562  .priv_data_size = sizeof(H264Context),
563  .parser_init = init,
564  .parser_parse = h264_parse,
565  .parser_close = close,
566  .split = h264_split,
567 };