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hevc_refs.c
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1 /*
2  * HEVC video decoder
3  *
4  * Copyright (C) 2012 - 2013 Guillaume Martres
5  * Copyright (C) 2012 - 2013 Gildas Cocherel
6  *
7  * This file is part of FFmpeg.
8  *
9  * FFmpeg is free software; you can redistribute it and/or
10  * modify it under the terms of the GNU Lesser General Public
11  * License as published by the Free Software Foundation; either
12  * version 2.1 of the License, or (at your option) any later version.
13  *
14  * FFmpeg is distributed in the hope that it will be useful,
15  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17  * Lesser General Public License for more details.
18  *
19  * You should have received a copy of the GNU Lesser General Public
20  * License along with FFmpeg; if not, write to the Free Software
21  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
22  */
23 
24 #include "libavutil/pixdesc.h"
25 
26 #include "internal.h"
27 #include "thread.h"
28 #include "hevc.h"
29 
31 {
32  /* frame->frame can be NULL if context init failed */
33  if (!frame->frame || !frame->frame->buf[0])
34  return;
35 
36  frame->flags &= ~flags;
37  if (!frame->flags) {
38  ff_thread_release_buffer(s->avctx, &frame->tf);
39 
41  frame->tab_mvf = NULL;
42 
43  av_buffer_unref(&frame->rpl_buf);
45  frame->rpl_tab = NULL;
46  frame->refPicList = NULL;
47 
48  frame->collocated_ref = NULL;
49  }
50 }
51 
53 {
54  if (x0 < 0 || y0 < 0) {
55  return s->ref->refPicList;
56  } else {
57  int x_cb = x0 >> s->sps->log2_ctb_size;
58  int y_cb = y0 >> s->sps->log2_ctb_size;
59  int pic_width_cb = (s->sps->width + (1 << s->sps->log2_ctb_size) - 1) >>
60  s->sps->log2_ctb_size;
61  int ctb_addr_ts = s->pps->ctb_addr_rs_to_ts[y_cb * pic_width_cb + x_cb];
62  return (RefPicList *)ref->rpl_tab[ctb_addr_ts];
63  }
64 }
65 
67 {
68  int i;
69  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++)
70  ff_hevc_unref_frame(s, &s->DPB[i],
73 }
74 
76 {
77  int i;
78  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++)
79  ff_hevc_unref_frame(s, &s->DPB[i], ~0);
80 }
81 
83 {
84  int i, j, ret;
85  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++) {
86  HEVCFrame *frame = &s->DPB[i];
87  if (frame->frame->buf[0])
88  continue;
89 
90  ret = ff_thread_get_buffer(s->avctx, &frame->tf,
92  if (ret < 0)
93  return NULL;
94 
95  frame->rpl_buf = av_buffer_allocz(s->nb_nals * sizeof(RefPicListTab));
96  if (!frame->rpl_buf)
97  goto fail;
98 
100  if (!frame->tab_mvf_buf)
101  goto fail;
102  frame->tab_mvf = (MvField *)frame->tab_mvf_buf->data;
103 
105  if (!frame->rpl_tab_buf)
106  goto fail;
107  frame->rpl_tab = (RefPicListTab **)frame->rpl_tab_buf->data;
108  frame->ctb_count = s->sps->ctb_width * s->sps->ctb_height;
109  for (j = 0; j < frame->ctb_count; j++)
110  frame->rpl_tab[j] = (RefPicListTab *)frame->rpl_buf->data;
111 
114  return frame;
115 fail:
116  ff_hevc_unref_frame(s, frame, ~0);
117  return NULL;
118  }
119  av_log(s->avctx, AV_LOG_ERROR, "Error allocating frame, DPB full.\n");
120  return NULL;
121 }
122 
124 {
125  HEVCFrame *ref;
126  int i;
127 
128  /* check that this POC doesn't already exist */
129  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++) {
130  HEVCFrame *frame = &s->DPB[i];
131 
132  if (frame->frame->buf[0] && frame->sequence == s->seq_decode &&
133  frame->poc == poc) {
134  av_log(s->avctx, AV_LOG_ERROR, "Duplicate POC in a sequence: %d.\n",
135  poc);
136  return AVERROR_INVALIDDATA;
137  }
138  }
139 
140  ref = alloc_frame(s);
141  if (!ref)
142  return AVERROR(ENOMEM);
143 
144  *frame = ref->frame;
145  s->ref = ref;
146 
147  ref->poc = poc;
149  ref->sequence = s->seq_decode;
150  ref->window = s->sps->output_window;
151 
152  return 0;
153 }
154 
156 {
157  do {
158  int nb_output = 0;
159  int min_poc = INT_MAX;
160  int i, min_idx, ret;
161 
162  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++) {
163  HEVCFrame *frame = &s->DPB[i];
164  if ((frame->flags & HEVC_FRAME_FLAG_OUTPUT) &&
165  frame->sequence == s->seq_output) {
166  nb_output++;
167  if (frame->poc < min_poc) {
168  min_poc = frame->poc;
169  min_idx = i;
170  }
171  }
172  }
173 
174  /* wait for more frames before output */
175  if (!flush && s->seq_output == s->seq_decode && s->sps &&
176  nb_output <= s->sps->temporal_layer[s->sps->max_sub_layers - 1].num_reorder_pics)
177  return 0;
178 
179  if (nb_output) {
180  HEVCFrame *frame = &s->DPB[min_idx];
181  AVFrame *dst = out;
182  AVFrame *src = frame->frame;
183  const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(src->format);
184  int pixel_shift = !!(desc->comp[0].depth_minus1 > 7);
185 
186  ret = av_frame_ref(out, src);
188  if (ret < 0)
189  return ret;
190 
191  for (i = 0; i < 3; i++) {
192  int hshift = (i > 0) ? desc->log2_chroma_w : 0;
193  int vshift = (i > 0) ? desc->log2_chroma_h : 0;
194  int off = ((frame->window.left_offset >> hshift) << pixel_shift) +
195  (frame->window.top_offset >> vshift) * dst->linesize[i];
196  dst->data[i] += off;
197  }
199  "Output frame with POC %d.\n", frame->poc);
200  return 1;
201  }
202 
203  if (s->seq_output != s->seq_decode)
204  s->seq_output = (s->seq_output + 1) & 0xff;
205  else
206  break;
207  } while (1);
208 
209  return 0;
210 }
211 
213 {
214  HEVCFrame *frame = s->ref;
215  int ctb_count = frame->ctb_count;
216  int ctb_addr_ts = s->pps->ctb_addr_rs_to_ts[s->sh.slice_segment_addr];
217  int i;
218 
219  if (s->slice_idx >= frame->rpl_buf->size / sizeof(RefPicListTab))
220  return AVERROR_INVALIDDATA;
221 
222  for (i = ctb_addr_ts; i < ctb_count; i++)
223  frame->rpl_tab[i] = (RefPicListTab *)frame->rpl_buf->data + s->slice_idx;
224 
225  frame->refPicList = (RefPicList *)frame->rpl_tab[ctb_addr_ts];
226 
227  return 0;
228 }
229 
231 {
232  SliceHeader *sh = &s->sh;
233 
234  uint8_t nb_list = sh->slice_type == B_SLICE ? 2 : 1;
235  uint8_t list_idx;
236  int i, j, ret;
237 
238  ret = init_slice_rpl(s);
239  if (ret < 0)
240  return ret;
241 
242  if (!(s->rps[ST_CURR_BEF].nb_refs + s->rps[ST_CURR_AFT].nb_refs +
243  s->rps[LT_CURR].nb_refs)) {
244  av_log(s->avctx, AV_LOG_ERROR, "Zero refs in the frame RPS.\n");
245  return AVERROR_INVALIDDATA;
246  }
247 
248  for (list_idx = 0; list_idx < nb_list; list_idx++) {
249  RefPicList rpl_tmp = { { 0 } };
250  RefPicList *rpl = &s->ref->refPicList[list_idx];
251 
252  /* The order of the elements is
253  * ST_CURR_BEF - ST_CURR_AFT - LT_CURR for the L0 and
254  * ST_CURR_AFT - ST_CURR_BEF - LT_CURR for the L1 */
255  int cand_lists[3] = { list_idx ? ST_CURR_AFT : ST_CURR_BEF,
256  list_idx ? ST_CURR_BEF : ST_CURR_AFT,
257  LT_CURR };
258 
259  /* concatenate the candidate lists for the current frame */
260  while (rpl_tmp.nb_refs < sh->nb_refs[list_idx]) {
261  for (i = 0; i < FF_ARRAY_ELEMS(cand_lists); i++) {
262  RefPicList *rps = &s->rps[cand_lists[i]];
263  for (j = 0; j < rps->nb_refs && rpl_tmp.nb_refs < MAX_REFS; j++) {
264  rpl_tmp.list[rpl_tmp.nb_refs] = rps->list[j];
265  rpl_tmp.ref[rpl_tmp.nb_refs] = rps->ref[j];
266  rpl_tmp.isLongTerm[rpl_tmp.nb_refs] = i == 2;
267  rpl_tmp.nb_refs++;
268  }
269  }
270  }
271 
272  /* reorder the references if necessary */
273  if (sh->rpl_modification_flag[list_idx]) {
274  for (i = 0; i < sh->nb_refs[list_idx]; i++) {
275  int idx = sh->list_entry_lx[list_idx][i];
276 
277  if (idx >= rpl_tmp.nb_refs) {
278  av_log(s->avctx, AV_LOG_ERROR, "Invalid reference index.\n");
279  return AVERROR_INVALIDDATA;
280  }
281 
282  rpl->list[i] = rpl_tmp.list[idx];
283  rpl->ref[i] = rpl_tmp.ref[idx];
284  rpl->isLongTerm[i] = rpl_tmp.isLongTerm[idx];
285  rpl->nb_refs++;
286  }
287  } else {
288  memcpy(rpl, &rpl_tmp, sizeof(*rpl));
289  rpl->nb_refs = FFMIN(rpl->nb_refs, sh->nb_refs[list_idx]);
290  }
291 
292  if (sh->collocated_list == list_idx &&
293  sh->collocated_ref_idx < rpl->nb_refs)
294  s->ref->collocated_ref = rpl->ref[sh->collocated_ref_idx];
295  }
296 
297  return 0;
298 }
299 
301 {
302  int i;
303  int LtMask = (1 << s->sps->log2_max_poc_lsb) - 1;
304 
305  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++) {
306  HEVCFrame *ref = &s->DPB[i];
307  if (ref->frame->buf[0] && (ref->sequence == s->seq_decode)) {
308  if ((ref->poc & LtMask) == poc)
309  return ref;
310  }
311  }
312 
313  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++) {
314  HEVCFrame *ref = &s->DPB[i];
315  if (ref->frame->buf[0] && ref->sequence == s->seq_decode) {
316  if (ref->poc == poc || (ref->poc & LtMask) == poc)
317  return ref;
318  }
319  }
320 
322  "Could not find ref with POC %d\n", poc);
323  return NULL;
324 }
325 
326 static void mark_ref(HEVCFrame *frame, int flag)
327 {
329  frame->flags |= flag;
330 }
331 
333 {
334  HEVCFrame *frame;
335  int i, x, y;
336 
337  frame = alloc_frame(s);
338  if (!frame)
339  return NULL;
340 
341  if (!s->sps->pixel_shift) {
342  for (i = 0; frame->frame->buf[i]; i++)
343  memset(frame->frame->buf[i]->data, 1 << (s->sps->bit_depth - 1),
344  frame->frame->buf[i]->size);
345  } else {
346  for (i = 0; frame->frame->data[i]; i++)
347  for (y = 0; y < (s->sps->height >> s->sps->vshift[i]); y++)
348  for (x = 0; x < (s->sps->width >> s->sps->hshift[i]); x++) {
349  AV_WN16(frame->frame->data[i] + y * frame->frame->linesize[i] + 2 * x,
350  1 << (s->sps->bit_depth - 1));
351  }
352  }
353 
354  frame->poc = poc;
355  frame->sequence = s->seq_decode;
356  frame->flags = 0;
357 
358  if (s->threads_type == FF_THREAD_FRAME)
359  ff_thread_report_progress(&frame->tf, INT_MAX, 0);
360 
361  return frame;
362 }
363 
364 /* add a reference with the given poc to the list and mark it as used in DPB */
366  int poc, int ref_flag)
367 {
368  HEVCFrame *ref = find_ref_idx(s, poc);
369 
370  if (ref == s->ref)
371  return AVERROR_INVALIDDATA;
372 
373  if (!ref) {
374  ref = generate_missing_ref(s, poc);
375  if (!ref)
376  return AVERROR(ENOMEM);
377  }
378 
379  list->list[list->nb_refs] = ref->poc;
380  list->ref[list->nb_refs] = ref;
381  list->nb_refs++;
382 
383  mark_ref(ref, ref_flag);
384  return 0;
385 }
386 
388 {
389  const ShortTermRPS *short_rps = s->sh.short_term_rps;
390  const LongTermRPS *long_rps = &s->sh.long_term_rps;
391  RefPicList *rps = s->rps;
392  int i, ret;
393 
394  if (!short_rps) {
395  rps[0].nb_refs = rps[1].nb_refs = 0;
396  return 0;
397  }
398 
399  /* clear the reference flags on all frames except the current one */
400  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++) {
401  HEVCFrame *frame = &s->DPB[i];
402 
403  if (frame == s->ref)
404  continue;
405 
406  mark_ref(frame, 0);
407  }
408 
409  for (i = 0; i < NB_RPS_TYPE; i++)
410  rps[i].nb_refs = 0;
411 
412  /* add the short refs */
413  for (i = 0; i < short_rps->num_delta_pocs; i++) {
414  int poc = s->poc + short_rps->delta_poc[i];
415  int list;
416 
417  if (!short_rps->used[i])
418  list = ST_FOLL;
419  else if (i < short_rps->num_negative_pics)
420  list = ST_CURR_BEF;
421  else
422  list = ST_CURR_AFT;
423 
424  ret = add_candidate_ref(s, &rps[list], poc, HEVC_FRAME_FLAG_SHORT_REF);
425  if (ret < 0)
426  return ret;
427  }
428 
429  /* add the long refs */
430  for (i = 0; i < long_rps->nb_refs; i++) {
431  int poc = long_rps->poc[i];
432  int list = long_rps->used[i] ? LT_CURR : LT_FOLL;
433 
434  ret = add_candidate_ref(s, &rps[list], poc, HEVC_FRAME_FLAG_LONG_REF);
435  if (ret < 0)
436  return ret;
437  }
438 
439  /* release any frames that are now unused */
440  for (i = 0; i < FF_ARRAY_ELEMS(s->DPB); i++)
441  ff_hevc_unref_frame(s, &s->DPB[i], 0);
442 
443  return 0;
444 }
445 
447 {
448  int max_poc_lsb = 1 << s->sps->log2_max_poc_lsb;
449  int prev_poc_lsb = s->pocTid0 % max_poc_lsb;
450  int prev_poc_msb = s->pocTid0 - prev_poc_lsb;
451  int poc_msb;
452 
453  if (poc_lsb < prev_poc_lsb && prev_poc_lsb - poc_lsb >= max_poc_lsb / 2)
454  poc_msb = prev_poc_msb + max_poc_lsb;
455  else if (poc_lsb > prev_poc_lsb && poc_lsb - prev_poc_lsb > max_poc_lsb / 2)
456  poc_msb = prev_poc_msb - max_poc_lsb;
457  else
458  poc_msb = prev_poc_msb;
459 
460  // For BLA picture types, POCmsb is set to 0.
461  if (s->nal_unit_type == NAL_BLA_W_LP ||
464  poc_msb = 0;
465 
466  return poc_msb + poc_lsb;
467 }
468 
470 {
471  int ret = 0;
472  int i;
473  const ShortTermRPS *rps = s->sh.short_term_rps;
474  LongTermRPS *long_rps = &s->sh.long_term_rps;
475 
476  if (rps) {
477  for (i = 0; i < rps->num_negative_pics; i++)
478  ret += !!rps->used[i];
479  for (; i < rps->num_delta_pocs; i++)
480  ret += !!rps->used[i];
481  }
482 
483  if (long_rps) {
484  for (i = 0; i < long_rps->nb_refs; i++)
485  ret += !!long_rps->used[i];
486  }
487  return ret;
488 }