FFmpeg
decode.c
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1 /*
2  * generic decoding-related code
3  *
4  * This file is part of FFmpeg.
5  *
6  * FFmpeg is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU Lesser General Public
8  * License as published by the Free Software Foundation; either
9  * version 2.1 of the License, or (at your option) any later version.
10  *
11  * FFmpeg is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14  * Lesser General Public License for more details.
15  *
16  * You should have received a copy of the GNU Lesser General Public
17  * License along with FFmpeg; if not, write to the Free Software
18  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
19  */
20 
21 #include <stdint.h>
22 #include <stdbool.h>
23 #include <string.h>
24 
25 #include "config.h"
26 
27 #if CONFIG_ICONV
28 # include <iconv.h>
29 #endif
30 
31 #include "libavutil/avassert.h"
33 #include "libavutil/common.h"
34 #include "libavutil/emms.h"
35 #include "libavutil/frame.h"
36 #include "libavutil/hwcontext.h"
37 #include "libavutil/imgutils.h"
38 #include "libavutil/internal.h"
40 #include "libavutil/mem.h"
41 #include "libavutil/stereo3d.h"
42 
43 #include "avcodec.h"
44 #include "avcodec_internal.h"
45 #include "bytestream.h"
46 #include "bsf.h"
47 #include "codec_desc.h"
48 #include "codec_internal.h"
49 #include "decode.h"
50 #include "exif.h"
51 #include "hwaccel_internal.h"
52 #include "hwconfig.h"
53 #include "internal.h"
54 #include "lcevcdec.h"
55 #include "packet_internal.h"
56 #include "progressframe.h"
57 #include "libavutil/refstruct.h"
58 #include "thread.h"
59 #include "threadprogress.h"
60 
61 typedef struct DecodeContext {
63 
64  /**
65  * This is set to AV_FRAME_FLAG_KEY for decoders of intra-only formats
66  * (those whose codec descriptor has AV_CODEC_PROP_INTRA_ONLY set)
67  * to set the flag generically.
68  */
70 
71  /**
72  * This is set to AV_PICTURE_TYPE_I for intra only video decoders
73  * and to AV_PICTURE_TYPE_NONE for other decoders. It is used to set
74  * the AVFrame's pict_type before the decoder receives it.
75  */
77 
78  /* to prevent infinite loop on errors when draining */
80 
81  /**
82  * The caller has submitted a NULL packet on input.
83  */
85 
86  int64_t pts_correction_num_faulty_pts; /// Number of incorrect PTS values so far
87  int64_t pts_correction_num_faulty_dts; /// Number of incorrect DTS values so far
88  int64_t pts_correction_last_pts; /// PTS of the last frame
89  int64_t pts_correction_last_dts; /// DTS of the last frame
90 
91  /**
92  * Bitmask indicating for which side data types we prefer user-supplied
93  * (global or attached to packets) side data over bytestream.
94  */
96 
99  int width;
100  int height;
101 } DecodeContext;
102 
104 {
105  return (DecodeContext *)avci;
106 }
107 
108 static int apply_param_change(AVCodecContext *avctx, const AVPacket *avpkt)
109 {
110  int ret;
111  size_t size;
112  const uint8_t *data;
113  uint32_t flags;
114  int64_t val;
115 
117  if (!data)
118  return 0;
119 
120  if (!(avctx->codec->capabilities & AV_CODEC_CAP_PARAM_CHANGE)) {
121  av_log(avctx, AV_LOG_ERROR, "This decoder does not support parameter "
122  "changes, but PARAM_CHANGE side data was sent to it.\n");
123  ret = AVERROR(EINVAL);
124  goto fail2;
125  }
126 
127  if (size < 4)
128  goto fail;
129 
130  flags = bytestream_get_le32(&data);
131  size -= 4;
132 
134  if (size < 4)
135  goto fail;
136  val = bytestream_get_le32(&data);
137  if (val <= 0 || val > INT_MAX) {
138  av_log(avctx, AV_LOG_ERROR, "Invalid sample rate");
140  goto fail2;
141  }
142  avctx->sample_rate = val;
143  size -= 4;
144  }
146  if (size < 8)
147  goto fail;
148  avctx->width = bytestream_get_le32(&data);
149  avctx->height = bytestream_get_le32(&data);
150  size -= 8;
151  ret = ff_set_dimensions(avctx, avctx->width, avctx->height);
152  if (ret < 0)
153  goto fail2;
154  }
155 
156  return 0;
157 fail:
158  av_log(avctx, AV_LOG_ERROR, "PARAM_CHANGE side data too small.\n");
160 fail2:
161  if (ret < 0) {
162  av_log(avctx, AV_LOG_ERROR, "Error applying parameter changes.\n");
163  if (avctx->err_recognition & AV_EF_EXPLODE)
164  return ret;
165  }
166  return 0;
167 }
168 
170 {
171  int ret = 0;
172 
174  if (pkt) {
176  }
177  return ret;
178 }
179 
181 {
182  AVCodecInternal *avci = avctx->internal;
183  const FFCodec *const codec = ffcodec(avctx->codec);
184  int ret;
185 
186  if (avci->bsf)
187  return 0;
188 
189  ret = av_bsf_list_parse_str(codec->bsfs, &avci->bsf);
190  if (ret < 0) {
191  av_log(avctx, AV_LOG_ERROR, "Error parsing decoder bitstream filters '%s': %s\n", codec->bsfs, av_err2str(ret));
192  if (ret != AVERROR(ENOMEM))
193  ret = AVERROR_BUG;
194  goto fail;
195  }
196 
197  /* We do not currently have an API for passing the input timebase into decoders,
198  * but no filters used here should actually need it.
199  * So we make up some plausible-looking number (the MPEG 90kHz timebase) */
200  avci->bsf->time_base_in = (AVRational){ 1, 90000 };
202  if (ret < 0)
203  goto fail;
204 
205  ret = av_bsf_init(avci->bsf);
206  if (ret < 0)
207  goto fail;
208 
209  return 0;
210 fail:
211  av_bsf_free(&avci->bsf);
212  return ret;
213 }
214 
215 #if !HAVE_THREADS
216 #define ff_thread_get_packet(avctx, pkt) (AVERROR_BUG)
217 #define ff_thread_receive_frame(avctx, frame) (AVERROR_BUG)
218 #endif
219 
221 {
222  AVCodecInternal *avci = avctx->internal;
223  int ret;
224 
225  ret = av_bsf_receive_packet(avci->bsf, pkt);
226  if (ret < 0)
227  return ret;
228 
231  if (ret < 0)
232  goto finish;
233  }
234 
235  ret = apply_param_change(avctx, pkt);
236  if (ret < 0)
237  goto finish;
238 
239  return 0;
240 finish:
242  return ret;
243 }
244 
246 {
247  AVCodecInternal *avci = avctx->internal;
248  DecodeContext *dc = decode_ctx(avci);
249 
250  if (avci->draining)
251  return AVERROR_EOF;
252 
253  /* If we are a worker thread, get the next packet from the threading
254  * context. Otherwise we are the main (user-facing) context, so we get the
255  * next packet from the input filterchain.
256  */
257  if (avctx->internal->is_frame_mt)
258  return ff_thread_get_packet(avctx, pkt);
259 
260  while (1) {
261  int ret = decode_get_packet(avctx, pkt);
262  if (ret == AVERROR(EAGAIN) &&
263  (!AVPACKET_IS_EMPTY(avci->buffer_pkt) || dc->draining_started)) {
264  ret = av_bsf_send_packet(avci->bsf, avci->buffer_pkt);
265  if (ret >= 0)
266  continue;
267 
269  }
270 
271  if (ret == AVERROR_EOF)
272  avci->draining = 1;
273  return ret;
274  }
275 }
276 
277 /**
278  * Attempt to guess proper monotonic timestamps for decoded video frames
279  * which might have incorrect times. Input timestamps may wrap around, in
280  * which case the output will as well.
281  *
282  * @param pts the pts field of the decoded AVPacket, as passed through
283  * AVFrame.pts
284  * @param dts the dts field of the decoded AVPacket
285  * @return one of the input values, may be AV_NOPTS_VALUE
286  */
288  int64_t reordered_pts, int64_t dts)
289 {
291 
292  if (dts != AV_NOPTS_VALUE) {
293  dc->pts_correction_num_faulty_dts += dts <= dc->pts_correction_last_dts;
294  dc->pts_correction_last_dts = dts;
295  } else if (reordered_pts != AV_NOPTS_VALUE)
296  dc->pts_correction_last_dts = reordered_pts;
297 
298  if (reordered_pts != AV_NOPTS_VALUE) {
299  dc->pts_correction_num_faulty_pts += reordered_pts <= dc->pts_correction_last_pts;
300  dc->pts_correction_last_pts = reordered_pts;
301  } else if(dts != AV_NOPTS_VALUE)
302  dc->pts_correction_last_pts = dts;
303 
304  if ((dc->pts_correction_num_faulty_pts<=dc->pts_correction_num_faulty_dts || dts == AV_NOPTS_VALUE)
305  && reordered_pts != AV_NOPTS_VALUE)
306  pts = reordered_pts;
307  else
308  pts = dts;
309 
310  return pts;
311 }
312 
313 static int discard_samples(AVCodecContext *avctx, AVFrame *frame, int64_t *discarded_samples)
314 {
315  AVCodecInternal *avci = avctx->internal;
316  AVFrameSideData *side;
317  uint32_t discard_padding = 0;
318  uint8_t skip_reason = 0;
319  uint8_t discard_reason = 0;
320 
322  if (side && side->size >= 10) {
323  avci->skip_samples = AV_RL32(side->data);
324  avci->skip_samples = FFMAX(0, avci->skip_samples);
325  discard_padding = AV_RL32(side->data + 4);
326  av_log(avctx, AV_LOG_DEBUG, "skip %d / discard %d samples due to side data\n",
327  avci->skip_samples, (int)discard_padding);
328  skip_reason = AV_RL8(side->data + 8);
329  discard_reason = AV_RL8(side->data + 9);
330  }
331 
332  if ((avctx->flags2 & AV_CODEC_FLAG2_SKIP_MANUAL)) {
333  if (!side && (avci->skip_samples || discard_padding))
335  if (side && (avci->skip_samples || discard_padding)) {
336  AV_WL32(side->data, avci->skip_samples);
337  AV_WL32(side->data + 4, discard_padding);
338  AV_WL8(side->data + 8, skip_reason);
339  AV_WL8(side->data + 9, discard_reason);
340  avci->skip_samples = 0;
341  }
342  return 0;
343  }
345 
346  if ((frame->flags & AV_FRAME_FLAG_DISCARD)) {
347  avci->skip_samples = FFMAX(0, avci->skip_samples - frame->nb_samples);
348  *discarded_samples += frame->nb_samples;
349  return AVERROR(EAGAIN);
350  }
351 
352  if (avci->skip_samples > 0) {
353  if (frame->nb_samples <= avci->skip_samples){
354  *discarded_samples += frame->nb_samples;
355  avci->skip_samples -= frame->nb_samples;
356  av_log(avctx, AV_LOG_DEBUG, "skip whole frame, skip left: %d\n",
357  avci->skip_samples);
358  return AVERROR(EAGAIN);
359  } else {
360  av_samples_copy(frame->extended_data, frame->extended_data, 0, avci->skip_samples,
361  frame->nb_samples - avci->skip_samples, avctx->ch_layout.nb_channels, frame->format);
362  if (avctx->pkt_timebase.num && avctx->sample_rate) {
363  int64_t diff_ts = av_rescale_q(avci->skip_samples,
364  (AVRational){1, avctx->sample_rate},
365  avctx->pkt_timebase);
366  if (frame->pts != AV_NOPTS_VALUE)
367  frame->pts += diff_ts;
368  if (frame->pkt_dts != AV_NOPTS_VALUE)
369  frame->pkt_dts += diff_ts;
370  if (frame->duration >= diff_ts)
371  frame->duration -= diff_ts;
372  } else
373  av_log(avctx, AV_LOG_WARNING, "Could not update timestamps for skipped samples.\n");
374 
375  av_log(avctx, AV_LOG_DEBUG, "skip %d/%d samples\n",
376  avci->skip_samples, frame->nb_samples);
377  *discarded_samples += avci->skip_samples;
378  frame->nb_samples -= avci->skip_samples;
379  avci->skip_samples = 0;
380  }
381  }
382 
383  if (discard_padding > 0 && discard_padding <= frame->nb_samples) {
384  if (discard_padding == frame->nb_samples) {
385  *discarded_samples += frame->nb_samples;
386  return AVERROR(EAGAIN);
387  } else {
388  if (avctx->pkt_timebase.num && avctx->sample_rate) {
389  int64_t diff_ts = av_rescale_q(frame->nb_samples - discard_padding,
390  (AVRational){1, avctx->sample_rate},
391  avctx->pkt_timebase);
392  frame->duration = diff_ts;
393  } else
394  av_log(avctx, AV_LOG_WARNING, "Could not update timestamps for discarded samples.\n");
395 
396  av_log(avctx, AV_LOG_DEBUG, "discard %d/%d samples\n",
397  (int)discard_padding, frame->nb_samples);
398  frame->nb_samples -= discard_padding;
399  }
400  }
401 
402  return 0;
403 }
404 
405 /*
406  * The core of the receive_frame_wrapper for the decoders implementing
407  * the simple API. Certain decoders might consume partial packets without
408  * returning any output, so this function needs to be called in a loop until it
409  * returns EAGAIN.
410  **/
411 static inline int decode_simple_internal(AVCodecContext *avctx, AVFrame *frame, int64_t *discarded_samples)
412 {
413  AVCodecInternal *avci = avctx->internal;
414  DecodeContext *dc = decode_ctx(avci);
415  AVPacket *const pkt = avci->in_pkt;
416  const FFCodec *const codec = ffcodec(avctx->codec);
417  int got_frame, consumed;
418  int ret;
419 
420  if (!pkt->data && !avci->draining) {
422  ret = ff_decode_get_packet(avctx, pkt);
423  if (ret < 0 && ret != AVERROR_EOF)
424  return ret;
425  }
426 
427  // Some codecs (at least wma lossless) will crash when feeding drain packets
428  // after EOF was signaled.
429  if (avci->draining_done)
430  return AVERROR_EOF;
431 
432  if (!pkt->data &&
434  return AVERROR_EOF;
435 
436  got_frame = 0;
437 
438  frame->pict_type = dc->initial_pict_type;
439  frame->flags |= dc->intra_only_flag;
440  consumed = codec->cb.decode(avctx, frame, &got_frame, pkt);
441 
443  frame->pkt_dts = pkt->dts;
444  emms_c();
445 
446  if (avctx->codec->type == AVMEDIA_TYPE_VIDEO) {
447  ret = (!got_frame || frame->flags & AV_FRAME_FLAG_DISCARD)
448  ? AVERROR(EAGAIN)
449  : 0;
450  } else if (avctx->codec->type == AVMEDIA_TYPE_AUDIO) {
451  ret = !got_frame ? AVERROR(EAGAIN)
452  : discard_samples(avctx, frame, discarded_samples);
453  } else
454  av_assert0(0);
455 
456  if (ret == AVERROR(EAGAIN))
458 
459  // FF_CODEC_CB_TYPE_DECODE decoders must not return AVERROR EAGAIN
460  // code later will add AVERROR(EAGAIN) to a pointer
461  av_assert0(consumed != AVERROR(EAGAIN));
462  if (consumed < 0)
463  ret = consumed;
464  if (consumed >= 0 && avctx->codec->type == AVMEDIA_TYPE_VIDEO)
465  consumed = pkt->size;
466 
467  if (!ret)
468  av_assert0(frame->buf[0]);
469  if (ret == AVERROR(EAGAIN))
470  ret = 0;
471 
472  /* do not stop draining when got_frame != 0 or ret < 0 */
473  if (avci->draining && !got_frame) {
474  if (ret < 0) {
475  /* prevent infinite loop if a decoder wrongly always return error on draining */
476  /* reasonable nb_errors_max = maximum b frames + thread count */
477  int nb_errors_max = 20 + (HAVE_THREADS && avctx->active_thread_type & FF_THREAD_FRAME ?
478  avctx->thread_count : 1);
479 
480  if (decode_ctx(avci)->nb_draining_errors++ >= nb_errors_max) {
481  av_log(avctx, AV_LOG_ERROR, "Too many errors when draining, this is a bug. "
482  "Stop draining and force EOF.\n");
483  avci->draining_done = 1;
484  ret = AVERROR_BUG;
485  }
486  } else {
487  avci->draining_done = 1;
488  }
489  }
490 
491  if (consumed >= pkt->size || ret < 0) {
493  } else {
494  pkt->data += consumed;
495  pkt->size -= consumed;
501  }
502  }
503 
504  return ret;
505 }
506 
507 #if CONFIG_LCMS2
508 static int detect_colorspace(AVCodecContext *avctx, AVFrame *frame)
509 {
510  AVCodecInternal *avci = avctx->internal;
512  AVColorPrimariesDesc coeffs;
513  enum AVColorPrimaries prim;
514  cmsHPROFILE profile;
515  AVFrameSideData *sd;
516  int ret;
517  if (!(avctx->flags2 & AV_CODEC_FLAG2_ICC_PROFILES))
518  return 0;
519 
521  if (!sd || !sd->size)
522  return 0;
523 
524  if (!avci->icc.avctx) {
525  ret = ff_icc_context_init(&avci->icc, avctx);
526  if (ret < 0)
527  return ret;
528  }
529 
530  profile = cmsOpenProfileFromMemTHR(avci->icc.ctx, sd->data, sd->size);
531  if (!profile)
532  return AVERROR_INVALIDDATA;
533 
534  ret = ff_icc_profile_sanitize(&avci->icc, profile);
535  if (!ret)
536  ret = ff_icc_profile_read_primaries(&avci->icc, profile, &coeffs);
537  if (!ret)
538  ret = ff_icc_profile_detect_transfer(&avci->icc, profile, &trc);
539  cmsCloseProfile(profile);
540  if (ret < 0)
541  return ret;
542 
543  prim = av_csp_primaries_id_from_desc(&coeffs);
544  if (prim != AVCOL_PRI_UNSPECIFIED)
545  frame->color_primaries = prim;
546  if (trc != AVCOL_TRC_UNSPECIFIED)
547  frame->color_trc = trc;
548  return 0;
549 }
550 #else /* !CONFIG_LCMS2 */
552 {
553  return 0;
554 }
555 #endif
556 
557 static int fill_frame_props(const AVCodecContext *avctx, AVFrame *frame)
558 {
559  int ret;
560 
561  if (frame->color_primaries == AVCOL_PRI_UNSPECIFIED)
562  frame->color_primaries = avctx->color_primaries;
563  if (frame->color_trc == AVCOL_TRC_UNSPECIFIED)
564  frame->color_trc = avctx->color_trc;
565  if (frame->colorspace == AVCOL_SPC_UNSPECIFIED)
566  frame->colorspace = avctx->colorspace;
567  if (frame->color_range == AVCOL_RANGE_UNSPECIFIED)
568  frame->color_range = avctx->color_range;
569  if (frame->chroma_location == AVCHROMA_LOC_UNSPECIFIED)
570  frame->chroma_location = avctx->chroma_sample_location;
571  if (frame->alpha_mode == AVALPHA_MODE_UNSPECIFIED)
572  frame->alpha_mode = avctx->alpha_mode;
573 
574  if (avctx->codec_type == AVMEDIA_TYPE_VIDEO) {
575  if (!frame->sample_aspect_ratio.num) frame->sample_aspect_ratio = avctx->sample_aspect_ratio;
576  if (frame->format == AV_PIX_FMT_NONE) frame->format = avctx->pix_fmt;
577  } else if (avctx->codec->type == AVMEDIA_TYPE_AUDIO) {
578  if (frame->format == AV_SAMPLE_FMT_NONE)
579  frame->format = avctx->sample_fmt;
580  if (!frame->ch_layout.nb_channels) {
581  ret = av_channel_layout_copy(&frame->ch_layout, &avctx->ch_layout);
582  if (ret < 0)
583  return ret;
584  }
585  if (!frame->sample_rate)
586  frame->sample_rate = avctx->sample_rate;
587  }
588 
589  return 0;
590 }
591 
593 {
594  int ret;
595  int64_t discarded_samples = 0;
596 
597  while (!frame->buf[0]) {
598  if (discarded_samples > avctx->max_samples)
599  return AVERROR(EAGAIN);
600  ret = decode_simple_internal(avctx, frame, &discarded_samples);
601  if (ret < 0)
602  return ret;
603  }
604 
605  return 0;
606 }
607 
609 {
610  AVCodecInternal *avci = avctx->internal;
611  DecodeContext *dc = decode_ctx(avci);
612  const FFCodec *const codec = ffcodec(avctx->codec);
613  int ret;
614 
615  av_assert0(!frame->buf[0]);
616 
617  if (codec->cb_type == FF_CODEC_CB_TYPE_RECEIVE_FRAME) {
618  while (1) {
619  frame->pict_type = dc->initial_pict_type;
620  frame->flags |= dc->intra_only_flag;
621  ret = codec->cb.receive_frame(avctx, frame);
622  emms_c();
623  if (!ret) {
624  if (avctx->codec->type == AVMEDIA_TYPE_AUDIO) {
625  int64_t discarded_samples = 0;
626  ret = discard_samples(avctx, frame, &discarded_samples);
627  }
628  if (ret == AVERROR(EAGAIN) || (frame->flags & AV_FRAME_FLAG_DISCARD)) {
630  continue;
631  }
632  }
633  break;
634  }
635  } else
637 
638  if (ret == AVERROR_EOF)
639  avci->draining_done = 1;
640 
641  return ret;
642 }
643 
645 {
646  AVCodecInternal *avci = avctx->internal;
647  DecodeContext *dc = decode_ctx(avci);
648  int ret, ok;
649 
650  if (avctx->active_thread_type & FF_THREAD_FRAME)
652  else
654 
655  /* preserve ret */
656  ok = detect_colorspace(avctx, frame);
657  if (ok < 0) {
659  return ok;
660  }
661 
662  if (!ret) {
663  if (avctx->codec_type == AVMEDIA_TYPE_VIDEO) {
664  if (!frame->width)
665  frame->width = avctx->width;
666  if (!frame->height)
667  frame->height = avctx->height;
668  }
669 
670  ret = fill_frame_props(avctx, frame);
671  if (ret < 0) {
673  return ret;
674  }
675 
676  frame->best_effort_timestamp = guess_correct_pts(dc,
677  frame->pts,
678  frame->pkt_dts);
679 
680  /* the only case where decode data is not set should be decoders
681  * that do not call ff_get_buffer() */
682  av_assert0(frame->private_ref ||
683  !(avctx->codec->capabilities & AV_CODEC_CAP_DR1));
684 
685  if (frame->private_ref) {
686  FrameDecodeData *fdd = frame->private_ref;
687 
688  if (fdd->post_process) {
689  ret = fdd->post_process(avctx, frame);
690  if (ret < 0) {
692  return ret;
693  }
694  }
695  }
696  }
697 
698  /* free the per-frame decode data */
699  av_refstruct_unref(&frame->private_ref);
700 
701  return ret;
702 }
703 
705 {
706  AVCodecInternal *avci = avctx->internal;
707  DecodeContext *dc = decode_ctx(avci);
708  int ret;
709 
710  if (!avcodec_is_open(avctx) || !av_codec_is_decoder(avctx->codec))
711  return AVERROR(EINVAL);
712 
713  if (dc->draining_started)
714  return AVERROR_EOF;
715 
716  if (avpkt && !avpkt->size && avpkt->data)
717  return AVERROR(EINVAL);
718 
719  if (avpkt && (avpkt->data || avpkt->side_data_elems)) {
720  if (!AVPACKET_IS_EMPTY(avci->buffer_pkt))
721  return AVERROR(EAGAIN);
722  ret = av_packet_ref(avci->buffer_pkt, avpkt);
723  if (ret < 0)
724  return ret;
725  } else
726  dc->draining_started = 1;
727 
728  if (!avci->buffer_frame->buf[0] && !dc->draining_started) {
730  if (ret < 0 && ret != AVERROR(EAGAIN) && ret != AVERROR_EOF)
731  return ret;
732  }
733 
734  return 0;
735 }
736 
738 {
739  /* make sure we are noisy about decoders returning invalid cropping data */
740  if (frame->crop_left >= INT_MAX - frame->crop_right ||
741  frame->crop_top >= INT_MAX - frame->crop_bottom ||
742  (frame->crop_left + frame->crop_right) >= frame->width ||
743  (frame->crop_top + frame->crop_bottom) >= frame->height) {
744  av_log(avctx, AV_LOG_WARNING,
745  "Invalid cropping information set by a decoder: "
747  "(frame size %dx%d). This is a bug, please report it\n",
748  frame->crop_left, frame->crop_right, frame->crop_top, frame->crop_bottom,
749  frame->width, frame->height);
750  frame->crop_left = 0;
751  frame->crop_right = 0;
752  frame->crop_top = 0;
753  frame->crop_bottom = 0;
754  return 0;
755  }
756 
757  if (!avctx->apply_cropping)
758  return 0;
759 
762 }
763 
764 // make sure frames returned to the caller are valid
766 {
767  if (!frame->buf[0] || frame->format < 0)
768  goto fail;
769 
770  switch (avctx->codec_type) {
771  case AVMEDIA_TYPE_VIDEO:
772  if (frame->width <= 0 || frame->height <= 0)
773  goto fail;
774  break;
775  case AVMEDIA_TYPE_AUDIO:
776  if (!av_channel_layout_check(&frame->ch_layout) ||
777  frame->sample_rate <= 0)
778  goto fail;
779 
780  break;
781  default: av_assert0(0);
782  }
783 
784  return 0;
785 fail:
786  av_log(avctx, AV_LOG_ERROR, "An invalid frame was output by a decoder. "
787  "This is a bug, please report it.\n");
788  return AVERROR_BUG;
789 }
790 
792 {
793  AVCodecInternal *avci = avctx->internal;
794  int ret;
795 
796  if (avci->buffer_frame->buf[0]) {
798  } else {
800  if (ret < 0)
801  return ret;
802  }
803 
804  ret = frame_validate(avctx, frame);
805  if (ret < 0)
806  goto fail;
807 
808  if (avctx->codec_type == AVMEDIA_TYPE_VIDEO) {
809  ret = apply_cropping(avctx, frame);
810  if (ret < 0)
811  goto fail;
812  }
813 
814  avctx->frame_num++;
815 
816  return 0;
817 fail:
819  return ret;
820 }
821 
823 {
824  memset(sub, 0, sizeof(*sub));
825  sub->pts = AV_NOPTS_VALUE;
826 }
827 
828 #define UTF8_MAX_BYTES 4 /* 5 and 6 bytes sequences should not be used */
829 static int recode_subtitle(AVCodecContext *avctx, const AVPacket **outpkt,
830  const AVPacket *inpkt, AVPacket *buf_pkt)
831 {
832 #if CONFIG_ICONV
833  iconv_t cd = (iconv_t)-1;
834  int ret = 0;
835  char *inb, *outb;
836  size_t inl, outl;
837 #endif
838 
839  if (avctx->sub_charenc_mode != FF_SUB_CHARENC_MODE_PRE_DECODER || inpkt->size == 0) {
840  *outpkt = inpkt;
841  return 0;
842  }
843 
844 #if CONFIG_ICONV
845  inb = inpkt->data;
846  inl = inpkt->size;
847 
848  if (inl >= INT_MAX / UTF8_MAX_BYTES - AV_INPUT_BUFFER_PADDING_SIZE) {
849  av_log(avctx, AV_LOG_ERROR, "Subtitles packet is too big for recoding\n");
850  return AVERROR(ERANGE);
851  }
852 
853  cd = iconv_open("UTF-8", avctx->sub_charenc);
854  av_assert0(cd != (iconv_t)-1);
855 
856  ret = av_new_packet(buf_pkt, inl * UTF8_MAX_BYTES);
857  if (ret < 0)
858  goto end;
859  ret = av_packet_copy_props(buf_pkt, inpkt);
860  if (ret < 0)
861  goto end;
862  outb = buf_pkt->data;
863  outl = buf_pkt->size;
864 
865  if (iconv(cd, &inb, &inl, &outb, &outl) == (size_t)-1 ||
866  iconv(cd, NULL, NULL, &outb, &outl) == (size_t)-1 ||
867  outl >= buf_pkt->size || inl != 0) {
868  ret = FFMIN(AVERROR(errno), -1);
869  av_log(avctx, AV_LOG_ERROR, "Unable to recode subtitle event \"%s\" "
870  "from %s to UTF-8\n", inpkt->data, avctx->sub_charenc);
871  goto end;
872  }
873  buf_pkt->size -= outl;
874  memset(buf_pkt->data + buf_pkt->size, 0, outl);
875  *outpkt = buf_pkt;
876 
877  ret = 0;
878 end:
879  if (ret < 0)
880  av_packet_unref(buf_pkt);
881  if (cd != (iconv_t)-1)
882  iconv_close(cd);
883  return ret;
884 #else
885  av_log(avctx, AV_LOG_ERROR, "requesting subtitles recoding without iconv");
886  return AVERROR(EINVAL);
887 #endif
888 }
889 
890 static int utf8_check(const uint8_t *str)
891 {
892  const uint8_t *byte;
893  uint32_t codepoint, min;
894 
895  while (*str) {
896  byte = str;
897  GET_UTF8(codepoint, *(byte++), return 0;);
898  min = byte - str == 1 ? 0 : byte - str == 2 ? 0x80 :
899  1 << (5 * (byte - str) - 4);
900  if (codepoint < min || codepoint >= 0x110000 ||
901  codepoint == 0xFFFE /* BOM */ ||
902  codepoint >= 0xD800 && codepoint <= 0xDFFF /* surrogates */)
903  return 0;
904  str = byte;
905  }
906  return 1;
907 }
908 
910  int *got_sub_ptr, const AVPacket *avpkt)
911 {
912  int ret = 0;
913 
914  if (!avpkt->data && avpkt->size) {
915  av_log(avctx, AV_LOG_ERROR, "invalid packet: NULL data, size != 0\n");
916  return AVERROR(EINVAL);
917  }
918  if (!avctx->codec)
919  return AVERROR(EINVAL);
921  av_log(avctx, AV_LOG_ERROR, "Codec not subtitle decoder\n");
922  return AVERROR(EINVAL);
923  }
924 
925  *got_sub_ptr = 0;
927 
928  if ((avctx->codec->capabilities & AV_CODEC_CAP_DELAY) || avpkt->size) {
929  AVCodecInternal *avci = avctx->internal;
930  const AVPacket *pkt;
931 
932  ret = recode_subtitle(avctx, &pkt, avpkt, avci->buffer_pkt);
933  if (ret < 0)
934  return ret;
935 
936  if (avctx->pkt_timebase.num && avpkt->pts != AV_NOPTS_VALUE)
937  sub->pts = av_rescale_q(avpkt->pts,
938  avctx->pkt_timebase, AV_TIME_BASE_Q);
939  ret = ffcodec(avctx->codec)->cb.decode_sub(avctx, sub, got_sub_ptr, pkt);
940  if (pkt == avci->buffer_pkt) // did we recode?
942  if (ret < 0) {
943  *got_sub_ptr = 0;
944  avsubtitle_free(sub);
945  return ret;
946  }
947  av_assert1(!sub->num_rects || *got_sub_ptr);
948 
949  if (sub->num_rects && !sub->end_display_time && avpkt->duration &&
950  avctx->pkt_timebase.num) {
951  AVRational ms = { 1, 1000 };
952  sub->end_display_time = av_rescale_q(avpkt->duration,
953  avctx->pkt_timebase, ms);
954  }
955 
957  sub->format = 0;
958  else if (avctx->codec_descriptor->props & AV_CODEC_PROP_TEXT_SUB)
959  sub->format = 1;
960 
961  for (unsigned i = 0; i < sub->num_rects; i++) {
963  sub->rects[i]->ass && !utf8_check(sub->rects[i]->ass)) {
964  av_log(avctx, AV_LOG_ERROR,
965  "Invalid UTF-8 in decoded subtitles text; "
966  "maybe missing -sub_charenc option\n");
967  avsubtitle_free(sub);
968  *got_sub_ptr = 0;
969  return AVERROR_INVALIDDATA;
970  }
971  }
972 
973  if (*got_sub_ptr)
974  avctx->frame_num++;
975  }
976 
977  return ret;
978 }
979 
981  const enum AVPixelFormat *fmt)
982 {
983  const AVPixFmtDescriptor *desc;
984  const AVCodecHWConfig *config;
985  int i, n;
986 
987  // If a device was supplied when the codec was opened, assume that the
988  // user wants to use it.
989  if (avctx->hw_device_ctx && ffcodec(avctx->codec)->hw_configs) {
990  AVHWDeviceContext *device_ctx =
992  for (i = 0;; i++) {
993  config = &ffcodec(avctx->codec)->hw_configs[i]->public;
994  if (!config)
995  break;
996  if (!(config->methods &
998  continue;
999  if (device_ctx->type != config->device_type)
1000  continue;
1001  for (n = 0; fmt[n] != AV_PIX_FMT_NONE; n++) {
1002  if (config->pix_fmt == fmt[n])
1003  return fmt[n];
1004  }
1005  }
1006  }
1007  // No device or other setup, so we have to choose from things which
1008  // don't any other external information.
1009 
1010  // If the last element of the list is a software format, choose it
1011  // (this should be best software format if any exist).
1012  for (n = 0; fmt[n] != AV_PIX_FMT_NONE; n++);
1013  desc = av_pix_fmt_desc_get(fmt[n - 1]);
1014  if (!(desc->flags & AV_PIX_FMT_FLAG_HWACCEL))
1015  return fmt[n - 1];
1016 
1017  // Finally, traverse the list in order and choose the first entry
1018  // with no external dependencies (if there is no hardware configuration
1019  // information available then this just picks the first entry).
1020  for (n = 0; fmt[n] != AV_PIX_FMT_NONE; n++) {
1021  for (i = 0;; i++) {
1022  config = avcodec_get_hw_config(avctx->codec, i);
1023  if (!config)
1024  break;
1025  if (config->pix_fmt == fmt[n])
1026  break;
1027  }
1028  if (!config) {
1029  // No specific config available, so the decoder must be able
1030  // to handle this format without any additional setup.
1031  return fmt[n];
1032  }
1033  if (config->methods & AV_CODEC_HW_CONFIG_METHOD_INTERNAL) {
1034  // Usable with only internal setup.
1035  return fmt[n];
1036  }
1037  }
1038 
1039  // Nothing is usable, give up.
1040  return AV_PIX_FMT_NONE;
1041 }
1042 
1044  enum AVHWDeviceType dev_type)
1045 {
1046  AVHWDeviceContext *device_ctx;
1047  AVHWFramesContext *frames_ctx;
1048  int ret;
1049 
1050  if (!avctx->hwaccel)
1051  return AVERROR(ENOSYS);
1052 
1053  if (avctx->hw_frames_ctx)
1054  return 0;
1055  if (!avctx->hw_device_ctx) {
1056  av_log(avctx, AV_LOG_ERROR, "A hardware frames or device context is "
1057  "required for hardware accelerated decoding.\n");
1058  return AVERROR(EINVAL);
1059  }
1060 
1061  device_ctx = (AVHWDeviceContext *)avctx->hw_device_ctx->data;
1062  if (device_ctx->type != dev_type) {
1063  av_log(avctx, AV_LOG_ERROR, "Device type %s expected for hardware "
1064  "decoding, but got %s.\n", av_hwdevice_get_type_name(dev_type),
1065  av_hwdevice_get_type_name(device_ctx->type));
1066  return AVERROR(EINVAL);
1067  }
1068 
1070  avctx->hw_device_ctx,
1071  avctx->hwaccel->pix_fmt,
1072  &avctx->hw_frames_ctx);
1073  if (ret < 0)
1074  return ret;
1075 
1076  frames_ctx = (AVHWFramesContext*)avctx->hw_frames_ctx->data;
1077 
1078 
1079  if (frames_ctx->initial_pool_size) {
1080  // We guarantee 4 base work surfaces. The function above guarantees 1
1081  // (the absolute minimum), so add the missing count.
1082  frames_ctx->initial_pool_size += 3;
1083  }
1084 
1086  if (ret < 0) {
1087  av_buffer_unref(&avctx->hw_frames_ctx);
1088  return ret;
1089  }
1090 
1091  return 0;
1092 }
1093 
1095  AVBufferRef *device_ref,
1097  AVBufferRef **out_frames_ref)
1098 {
1099  AVBufferRef *frames_ref = NULL;
1100  const AVCodecHWConfigInternal *hw_config;
1101  const FFHWAccel *hwa;
1102  int i, ret;
1103  bool clean_priv_data = false;
1104 
1105  for (i = 0;; i++) {
1106  hw_config = ffcodec(avctx->codec)->hw_configs[i];
1107  if (!hw_config)
1108  return AVERROR(ENOENT);
1109  if (hw_config->public.pix_fmt == hw_pix_fmt)
1110  break;
1111  }
1112 
1113  hwa = hw_config->hwaccel;
1114  if (!hwa || !hwa->frame_params)
1115  return AVERROR(ENOENT);
1116 
1117  frames_ref = av_hwframe_ctx_alloc(device_ref);
1118  if (!frames_ref)
1119  return AVERROR(ENOMEM);
1120 
1121  if (!avctx->internal->hwaccel_priv_data) {
1122  avctx->internal->hwaccel_priv_data =
1123  av_mallocz(hwa->priv_data_size);
1124  if (!avctx->internal->hwaccel_priv_data) {
1125  av_buffer_unref(&frames_ref);
1126  return AVERROR(ENOMEM);
1127  }
1128  clean_priv_data = true;
1129  }
1130 
1131  ret = hwa->frame_params(avctx, frames_ref);
1132  if (ret >= 0) {
1133  AVHWFramesContext *frames_ctx = (AVHWFramesContext*)frames_ref->data;
1134 
1135  if (frames_ctx->initial_pool_size) {
1136  // If the user has requested that extra output surfaces be
1137  // available then add them here.
1138  if (avctx->extra_hw_frames > 0)
1139  frames_ctx->initial_pool_size += avctx->extra_hw_frames;
1140 
1141  // If frame threading is enabled then an extra surface per thread
1142  // is also required.
1143  if (avctx->active_thread_type & FF_THREAD_FRAME)
1144  frames_ctx->initial_pool_size += avctx->thread_count;
1145  }
1146 
1147  *out_frames_ref = frames_ref;
1148  } else {
1149  if (clean_priv_data)
1151  av_buffer_unref(&frames_ref);
1152  }
1153  return ret;
1154 }
1155 
1156 static int hwaccel_init(AVCodecContext *avctx,
1157  const FFHWAccel *hwaccel)
1158 {
1159  int err;
1160 
1161  if (hwaccel->p.capabilities & AV_HWACCEL_CODEC_CAP_EXPERIMENTAL &&
1163  av_log(avctx, AV_LOG_WARNING, "Ignoring experimental hwaccel: %s\n",
1164  hwaccel->p.name);
1165  return AVERROR_PATCHWELCOME;
1166  }
1167 
1168  if (!avctx->internal->hwaccel_priv_data && hwaccel->priv_data_size) {
1169  avctx->internal->hwaccel_priv_data =
1170  av_mallocz(hwaccel->priv_data_size);
1171  if (!avctx->internal->hwaccel_priv_data)
1172  return AVERROR(ENOMEM);
1173  }
1174 
1175  avctx->hwaccel = &hwaccel->p;
1176  if (hwaccel->init) {
1177  err = hwaccel->init(avctx);
1178  if (err < 0) {
1179  av_log(avctx, AV_LOG_ERROR, "Failed setup for format %s: "
1180  "hwaccel initialisation returned error.\n",
1181  av_get_pix_fmt_name(hwaccel->p.pix_fmt));
1183  avctx->hwaccel = NULL;
1184  return err;
1185  }
1186  }
1187 
1188  return 0;
1189 }
1190 
1192 {
1193  if (FF_HW_HAS_CB(avctx, uninit))
1194  FF_HW_SIMPLE_CALL(avctx, uninit);
1195 
1197 
1198  avctx->hwaccel = NULL;
1199 
1200  av_buffer_unref(&avctx->hw_frames_ctx);
1201 }
1202 
1203 int ff_get_format(AVCodecContext *avctx, const enum AVPixelFormat *fmt)
1204 {
1205  const AVPixFmtDescriptor *desc;
1206  enum AVPixelFormat *choices;
1207  enum AVPixelFormat ret, user_choice;
1208  const AVCodecHWConfigInternal *hw_config;
1209  const AVCodecHWConfig *config;
1210  int i, n, err;
1211 
1212  // Find end of list.
1213  for (n = 0; fmt[n] != AV_PIX_FMT_NONE; n++);
1214  // Must contain at least one entry.
1215  av_assert0(n >= 1);
1216  // If a software format is available, it must be the last entry.
1217  desc = av_pix_fmt_desc_get(fmt[n - 1]);
1218  if (desc->flags & AV_PIX_FMT_FLAG_HWACCEL) {
1219  // No software format is available.
1220  } else {
1221  avctx->sw_pix_fmt = fmt[n - 1];
1222  }
1223 
1224  choices = av_memdup(fmt, (n + 1) * sizeof(*choices));
1225  if (!choices)
1226  return AV_PIX_FMT_NONE;
1227 
1228  for (;;) {
1229  // Remove the previous hwaccel, if there was one.
1230  ff_hwaccel_uninit(avctx);
1231 
1232  user_choice = avctx->get_format(avctx, choices);
1233  if (user_choice == AV_PIX_FMT_NONE) {
1234  // Explicitly chose nothing, give up.
1235  ret = AV_PIX_FMT_NONE;
1236  break;
1237  }
1238 
1239  desc = av_pix_fmt_desc_get(user_choice);
1240  if (!desc) {
1241  av_log(avctx, AV_LOG_ERROR, "Invalid format returned by "
1242  "get_format() callback.\n");
1243  ret = AV_PIX_FMT_NONE;
1244  break;
1245  }
1246  av_log(avctx, AV_LOG_DEBUG, "Format %s chosen by get_format().\n",
1247  desc->name);
1248 
1249  for (i = 0; i < n; i++) {
1250  if (choices[i] == user_choice)
1251  break;
1252  }
1253  if (i == n) {
1254  av_log(avctx, AV_LOG_ERROR, "Invalid return from get_format(): "
1255  "%s not in possible list.\n", desc->name);
1256  ret = AV_PIX_FMT_NONE;
1257  break;
1258  }
1259 
1260  if (ffcodec(avctx->codec)->hw_configs) {
1261  for (i = 0;; i++) {
1262  hw_config = ffcodec(avctx->codec)->hw_configs[i];
1263  if (!hw_config)
1264  break;
1265  if (hw_config->public.pix_fmt == user_choice)
1266  break;
1267  }
1268  } else {
1269  hw_config = NULL;
1270  }
1271 
1272  if (!hw_config) {
1273  // No config available, so no extra setup required.
1274  ret = user_choice;
1275  break;
1276  }
1277  config = &hw_config->public;
1278 
1279  if (config->methods &
1281  avctx->hw_frames_ctx) {
1282  const AVHWFramesContext *frames_ctx =
1284  if (frames_ctx->format != user_choice) {
1285  av_log(avctx, AV_LOG_ERROR, "Invalid setup for format %s: "
1286  "does not match the format of the provided frames "
1287  "context.\n", desc->name);
1288  goto try_again;
1289  }
1290  } else if (config->methods &
1292  avctx->hw_device_ctx) {
1293  const AVHWDeviceContext *device_ctx =
1295  if (device_ctx->type != config->device_type) {
1296  av_log(avctx, AV_LOG_ERROR, "Invalid setup for format %s: "
1297  "does not match the type of the provided device "
1298  "context.\n", desc->name);
1299  goto try_again;
1300  }
1301  } else if (config->methods &
1303  // Internal-only setup, no additional configuration.
1304  } else if (config->methods &
1306  // Some ad-hoc configuration we can't see and can't check.
1307  } else {
1308  av_log(avctx, AV_LOG_ERROR, "Invalid setup for format %s: "
1309  "missing configuration.\n", desc->name);
1310  goto try_again;
1311  }
1312  if (hw_config->hwaccel) {
1313  av_log(avctx, AV_LOG_DEBUG, "Format %s requires hwaccel %s "
1314  "initialisation.\n", desc->name, hw_config->hwaccel->p.name);
1315  err = hwaccel_init(avctx, hw_config->hwaccel);
1316  if (err < 0)
1317  goto try_again;
1318  }
1319  ret = user_choice;
1320  break;
1321 
1322  try_again:
1323  av_log(avctx, AV_LOG_DEBUG, "Format %s not usable, retrying "
1324  "get_format() without it.\n", desc->name);
1325  for (i = 0; i < n; i++) {
1326  if (choices[i] == user_choice)
1327  break;
1328  }
1329  for (; i + 1 < n; i++)
1330  choices[i] = choices[i + 1];
1331  --n;
1332  }
1333 
1334  if (ret < 0)
1335  ff_hwaccel_uninit(avctx);
1336 
1337  av_freep(&choices);
1338  return ret;
1339 }
1340 
1341 static const AVPacketSideData*
1344 {
1345  for (int i = 0; i < nb_sd; i++)
1346  if (sd[i].type == type)
1347  return &sd[i];
1348 
1349  return NULL;
1350 }
1351 
1354 {
1356 }
1357 
1359  const AVPacketSideData *sd_pkt)
1360 {
1361  const AVStereo3D *src;
1362  AVStereo3D *dst;
1363  int ret;
1364 
1365  ret = av_buffer_make_writable(&sd_frame->buf);
1366  if (ret < 0)
1367  return ret;
1368  sd_frame->data = sd_frame->buf->data;
1369 
1370  dst = ( AVStereo3D*)sd_frame->data;
1371  src = (const AVStereo3D*)sd_pkt->data;
1372 
1373  if (dst->type == AV_STEREO3D_UNSPEC)
1374  dst->type = src->type;
1375 
1376  if (dst->view == AV_STEREO3D_VIEW_UNSPEC)
1377  dst->view = src->view;
1378 
1379  if (dst->primary_eye == AV_PRIMARY_EYE_NONE)
1380  dst->primary_eye = src->primary_eye;
1381 
1382  if (!dst->baseline)
1383  dst->baseline = src->baseline;
1384 
1385  if (!dst->horizontal_disparity_adjustment.num)
1386  dst->horizontal_disparity_adjustment = src->horizontal_disparity_adjustment;
1387 
1388  if (!dst->horizontal_field_of_view.num)
1389  dst->horizontal_field_of_view = src->horizontal_field_of_view;
1390 
1391  return 0;
1392 }
1393 
1395 {
1396  AVExifMetadata ifd = { 0 };
1397  AVExifEntry *entry = NULL;
1398  AVBufferRef *buf = NULL;
1399  AVFrameSideData *sd_frame;
1400  int ret;
1401 
1402  ret = av_exif_parse_buffer(NULL, sd_pkt->data, sd_pkt->size, &ifd,
1404  if (ret < 0)
1405  return ret;
1406 
1407  ret = av_exif_get_entry(NULL, &ifd, av_exif_get_tag_id("Orientation"), 0, &entry);
1408  if (ret < 0)
1409  goto end;
1410 
1411  if (!entry) {
1412  ret = av_exif_ifd_to_dict(NULL, &ifd, &dst->metadata);
1413  if (ret < 0)
1414  goto end;
1415 
1416  sd_frame = av_frame_side_data_new(&dst->side_data, &dst->nb_side_data, AV_FRAME_DATA_EXIF,
1417  sd_pkt->size, 0);
1418  if (sd_frame)
1419  memcpy(sd_frame->data, sd_pkt->data, sd_pkt->size);
1420  ret = sd_frame ? 0 : AVERROR(ENOMEM);
1421 
1422  goto end;
1423  } else if (entry->count <= 0 || entry->type != AV_TIFF_SHORT) {
1425  goto end;
1426  }
1427 
1428  // If a display matrix already exists in the frame, give it priority
1429  if (av_frame_side_data_get(dst->side_data, dst->nb_side_data, AV_FRAME_DATA_DISPLAYMATRIX))
1430  goto finish;
1431 
1432  sd_frame = av_frame_side_data_new(&dst->side_data, &dst->nb_side_data, AV_FRAME_DATA_DISPLAYMATRIX,
1433  sizeof(int32_t) * 9, 0);
1434  if (!sd_frame) {
1435  ret = AVERROR(ENOMEM);
1436  goto end;
1437  }
1438 
1439  ret = av_exif_orientation_to_matrix((int32_t *)sd_frame->data, entry->value.uint[0]);
1440  if (ret < 0)
1441  goto end;
1442 
1443 finish:
1444  av_exif_remove_entry(NULL, &ifd, entry->id, 0);
1445 
1446  ret = av_exif_ifd_to_dict(NULL, &ifd, &dst->metadata);
1447  if (ret < 0)
1448  goto end;
1449 
1450  ret = av_exif_write(NULL, &ifd, &buf, AV_EXIF_TIFF_HEADER);
1451  if (ret < 0)
1452  goto end;
1453 
1454  if (!av_frame_side_data_add(&dst->side_data, &dst->nb_side_data, AV_FRAME_DATA_EXIF, &buf, 0)) {
1455  ret = AVERROR(ENOMEM);
1456  goto end;
1457  }
1458 
1459  ret = 0;
1460 end:
1461  av_buffer_unref(&buf);
1462  av_exif_free(&ifd);
1463  return ret;
1464 }
1465 
1467  const AVPacketSideData *sd_src, int nb_sd_src,
1468  const SideDataMap *map)
1469 
1470 {
1471  for (int i = 0; map[i].packet < AV_PKT_DATA_NB; i++) {
1472  const enum AVPacketSideDataType type_pkt = map[i].packet;
1473  const enum AVFrameSideDataType type_frame = map[i].frame;
1474  const AVPacketSideData *sd_pkt;
1475  AVFrameSideData *sd_frame;
1476 
1477  sd_pkt = packet_side_data_get(sd_src, nb_sd_src, type_pkt);
1478  if (!sd_pkt)
1479  continue;
1480 
1481  sd_frame = av_frame_get_side_data(dst, type_frame);
1482  if (sd_frame) {
1483  if (type_frame == AV_FRAME_DATA_STEREO3D) {
1484  int ret = side_data_stereo3d_merge(sd_frame, sd_pkt);
1485  if (ret < 0)
1486  return ret;
1487  }
1488 
1489  continue;
1490  }
1491 
1492  switch (type_pkt) {
1493  case AV_PKT_DATA_EXIF: {
1494  int ret = side_data_exif_parse(dst, sd_pkt);
1495  if (ret < 0)
1496  return ret;
1497  break;
1498  }
1499  default:
1500  sd_frame = av_frame_new_side_data(dst, type_frame, sd_pkt->size);
1501  if (!sd_frame)
1502  return AVERROR(ENOMEM);
1503 
1504  memcpy(sd_frame->data, sd_pkt->data, sd_pkt->size);
1505  break;
1506  }
1507  }
1508 
1509  return 0;
1510 }
1511 
1513 {
1514  size_t size;
1515  const uint8_t *side_metadata;
1516 
1517  AVDictionary **frame_md = &frame->metadata;
1518 
1519  side_metadata = av_packet_get_side_data(avpkt,
1521  return av_packet_unpack_dictionary(side_metadata, size, frame_md);
1522 }
1523 
1525  AVFrame *frame, const AVPacket *pkt)
1526 {
1527  static const SideDataMap sd[] = {
1534  { AV_PKT_DATA_NB }
1535  };
1536 
1537  int ret = 0;
1538 
1539  frame->pts = pkt->pts;
1540  frame->duration = pkt->duration;
1541 
1543  if (ret < 0)
1544  return ret;
1545 
1547  if (ret < 0)
1548  return ret;
1549 
1551 
1552  if (pkt->flags & AV_PKT_FLAG_DISCARD) {
1553  frame->flags |= AV_FRAME_FLAG_DISCARD;
1554  }
1555 
1556  if (avctx->flags & AV_CODEC_FLAG_COPY_OPAQUE) {
1557  int ret = av_buffer_replace(&frame->opaque_ref, pkt->opaque_ref);
1558  if (ret < 0)
1559  return ret;
1560  frame->opaque = pkt->opaque;
1561  }
1562 
1563  return 0;
1564 }
1565 
1567 {
1568  int ret;
1569 
1572  if (ret < 0)
1573  return ret;
1574 
1575  for (int i = 0; i < avctx->nb_decoded_side_data; i++) {
1576  const AVFrameSideData *src = avctx->decoded_side_data[i];
1577  if (av_frame_get_side_data(frame, src->type))
1578  continue;
1579  ret = av_frame_side_data_clone(&frame->side_data, &frame->nb_side_data, src, 0);
1580  if (ret < 0)
1581  return ret;
1582  }
1583 
1585  const AVPacket *pkt = avctx->internal->last_pkt_props;
1586 
1588  if (ret < 0)
1589  return ret;
1590  }
1591 
1592  ret = fill_frame_props(avctx, frame);
1593  if (ret < 0)
1594  return ret;
1595 
1596  switch (avctx->codec->type) {
1597  case AVMEDIA_TYPE_VIDEO:
1598  if (frame->width && frame->height &&
1599  av_image_check_sar(frame->width, frame->height,
1600  frame->sample_aspect_ratio) < 0) {
1601  av_log(avctx, AV_LOG_WARNING, "ignoring invalid SAR: %u/%u\n",
1602  frame->sample_aspect_ratio.num,
1603  frame->sample_aspect_ratio.den);
1604  frame->sample_aspect_ratio = (AVRational){ 0, 1 };
1605  }
1606  break;
1607  }
1608  return 0;
1609 }
1610 
1612 {
1613  if (avctx->codec_type == AVMEDIA_TYPE_VIDEO) {
1614  int i;
1615  int num_planes = av_pix_fmt_count_planes(frame->format);
1617  int flags = desc ? desc->flags : 0;
1618  if (num_planes == 1 && (flags & AV_PIX_FMT_FLAG_PAL))
1619  num_planes = 2;
1620  for (i = 0; i < num_planes; i++) {
1621  av_assert0(frame->data[i]);
1622  }
1623  // For formats without data like hwaccel allow unused pointers to be non-NULL.
1624  for (i = num_planes; num_planes > 0 && i < FF_ARRAY_ELEMS(frame->data); i++) {
1625  if (frame->data[i])
1626  av_log(avctx, AV_LOG_ERROR, "Buffer returned by get_buffer2() did not zero unused plane pointers\n");
1627  frame->data[i] = NULL;
1628  }
1629  }
1630 }
1631 
1632 static void decode_data_free(AVRefStructOpaque unused, void *obj)
1633 {
1634  FrameDecodeData *fdd = obj;
1635 
1636  if (fdd->post_process_opaque_free)
1638 
1639  if (fdd->hwaccel_priv_free)
1640  fdd->hwaccel_priv_free(fdd->hwaccel_priv);
1641 }
1642 
1644 {
1645  FrameDecodeData *fdd;
1646 
1647  av_assert1(!frame->private_ref);
1648  av_refstruct_unref(&frame->private_ref);
1649 
1650  fdd = av_refstruct_alloc_ext(sizeof(*fdd), 0, NULL, decode_data_free);
1651  if (!fdd)
1652  return AVERROR(ENOMEM);
1653 
1654  frame->private_ref = fdd;
1655 
1656  return 0;
1657 }
1658 
1660 {
1661  AVCodecInternal *avci = avctx->internal;
1662  DecodeContext *dc = decode_ctx(avci);
1663 
1664  dc->lcevc_frame = dc->lcevc && avctx->codec_type == AVMEDIA_TYPE_VIDEO &&
1666 
1667  if (dc->lcevc_frame) {
1668  dc->width = frame->width;
1669  dc->height = frame->height;
1670  frame->width = frame->width * 2 / FFMAX(frame->sample_aspect_ratio.den, 1);
1671  frame->height = frame->height * 2 / FFMAX(frame->sample_aspect_ratio.num, 1);
1672  }
1673 }
1674 
1676 {
1677  AVCodecInternal *avci = avctx->internal;
1678  DecodeContext *dc = decode_ctx(avci);
1679 
1680  if (dc->lcevc_frame) {
1681  FrameDecodeData *fdd = frame->private_ref;
1682  FFLCEVCFrame *frame_ctx;
1683  int ret;
1684 
1685  frame_ctx = av_mallocz(sizeof(*frame_ctx));
1686  if (!frame_ctx)
1687  return AVERROR(ENOMEM);
1688 
1689  frame_ctx->frame = av_frame_alloc();
1690  if (!frame_ctx->frame) {
1691  av_free(frame_ctx);
1692  return AVERROR(ENOMEM);
1693  }
1694 
1695  frame_ctx->lcevc = av_refstruct_ref(dc->lcevc);
1696  frame_ctx->frame->width = frame->width;
1697  frame_ctx->frame->height = frame->height;
1698  frame_ctx->frame->format = frame->format;
1699 
1700  frame->width = dc->width;
1701  frame->height = dc->height;
1702 
1703  ret = avctx->get_buffer2(avctx, frame_ctx->frame, 0);
1704  if (ret < 0) {
1705  ff_lcevc_unref(frame_ctx);
1706  return ret;
1707  }
1708 
1709  validate_avframe_allocation(avctx, frame_ctx->frame);
1710 
1711  fdd->post_process_opaque = frame_ctx;
1714  }
1715  dc->lcevc_frame = 0;
1716 
1717  return 0;
1718 }
1719 
1721 {
1722  const FFHWAccel *hwaccel = ffhwaccel(avctx->hwaccel);
1723  int override_dimensions = 1;
1724  int ret;
1725 
1727 
1728  if (avctx->codec_type == AVMEDIA_TYPE_VIDEO) {
1729  if ((unsigned)avctx->width > INT_MAX - STRIDE_ALIGN ||
1730  (ret = av_image_check_size2(FFALIGN(avctx->width, STRIDE_ALIGN), avctx->height, avctx->max_pixels, AV_PIX_FMT_NONE, 0, avctx)) < 0 || avctx->pix_fmt<0) {
1731  av_log(avctx, AV_LOG_ERROR, "video_get_buffer: image parameters invalid\n");
1732  ret = AVERROR(EINVAL);
1733  goto fail;
1734  }
1735 
1736  if (frame->width <= 0 || frame->height <= 0) {
1737  frame->width = FFMAX(avctx->width, AV_CEIL_RSHIFT(avctx->coded_width, avctx->lowres));
1738  frame->height = FFMAX(avctx->height, AV_CEIL_RSHIFT(avctx->coded_height, avctx->lowres));
1739  override_dimensions = 0;
1740  }
1741 
1742  if (frame->data[0] || frame->data[1] || frame->data[2] || frame->data[3]) {
1743  av_log(avctx, AV_LOG_ERROR, "pic->data[*]!=NULL in get_buffer_internal\n");
1744  ret = AVERROR(EINVAL);
1745  goto fail;
1746  }
1747  } else if (avctx->codec_type == AVMEDIA_TYPE_AUDIO) {
1748  if (frame->nb_samples * (int64_t)avctx->ch_layout.nb_channels > avctx->max_samples) {
1749  av_log(avctx, AV_LOG_ERROR, "samples per frame %d, exceeds max_samples %"PRId64"\n", frame->nb_samples, avctx->max_samples);
1750  ret = AVERROR(EINVAL);
1751  goto fail;
1752  }
1753  }
1754  ret = ff_decode_frame_props(avctx, frame);
1755  if (ret < 0)
1756  goto fail;
1757 
1758  if (hwaccel) {
1759  if (hwaccel->alloc_frame) {
1760  ret = hwaccel->alloc_frame(avctx, frame);
1761  goto end;
1762  }
1763  } else {
1764  avctx->sw_pix_fmt = avctx->pix_fmt;
1765  update_frame_props(avctx, frame);
1766  }
1767 
1768  ret = avctx->get_buffer2(avctx, frame, flags);
1769  if (ret < 0)
1770  goto fail;
1771 
1773 
1775  if (ret < 0)
1776  goto fail;
1777 
1779  if (ret < 0)
1780  goto fail;
1781 
1782 end:
1783  if (avctx->codec_type == AVMEDIA_TYPE_VIDEO && !override_dimensions &&
1785  frame->width = avctx->width;
1786  frame->height = avctx->height;
1787  }
1788 
1789 fail:
1790  if (ret < 0) {
1791  av_log(avctx, AV_LOG_ERROR, "get_buffer() failed\n");
1793  }
1794 
1795  return ret;
1796 }
1797 
1799 {
1800  AVFrame *tmp;
1801  int ret;
1802 
1804 
1805  // make sure the discard flag does not persist
1806  frame->flags &= ~AV_FRAME_FLAG_DISCARD;
1807 
1808  if (frame->data[0] && (frame->width != avctx->width || frame->height != avctx->height || frame->format != avctx->pix_fmt)) {
1809  av_log(avctx, AV_LOG_WARNING, "Picture changed from size:%dx%d fmt:%s to size:%dx%d fmt:%s in reget buffer()\n",
1810  frame->width, frame->height, av_get_pix_fmt_name(frame->format), avctx->width, avctx->height, av_get_pix_fmt_name(avctx->pix_fmt));
1812  }
1813 
1814  if (!frame->data[0])
1815  return ff_get_buffer(avctx, frame, AV_GET_BUFFER_FLAG_REF);
1816 
1817  av_frame_side_data_free(&frame->side_data, &frame->nb_side_data);
1818 
1820  return ff_decode_frame_props(avctx, frame);
1821 
1822  tmp = av_frame_alloc();
1823  if (!tmp)
1824  return AVERROR(ENOMEM);
1825 
1827 
1829  if (ret < 0) {
1830  av_frame_free(&tmp);
1831  return ret;
1832  }
1833 
1835  av_frame_free(&tmp);
1836 
1837  return 0;
1838 }
1839 
1841 {
1842  int ret = reget_buffer_internal(avctx, frame, flags);
1843  if (ret < 0)
1844  av_log(avctx, AV_LOG_ERROR, "reget_buffer() failed\n");
1845  return ret;
1846 }
1847 
1848 typedef struct ProgressInternal {
1850  struct AVFrame *f;
1852 
1854 {
1855  av_assert1(!!f->f == !!f->progress);
1856  av_assert1(!f->progress || f->progress->f == f->f);
1857 }
1858 
1860 {
1862 
1863  av_assert1(!f->f && !f->progress);
1864 
1865  f->progress = av_refstruct_pool_get(pool);
1866  if (!f->progress)
1867  return AVERROR(ENOMEM);
1868 
1869  f->f = f->progress->f;
1870  return 0;
1871 }
1872 
1874 {
1875  int ret = ff_progress_frame_alloc(avctx, f);
1876  if (ret < 0)
1877  return ret;
1878 
1879  ret = ff_thread_get_buffer(avctx, f->progress->f, flags);
1880  if (ret < 0) {
1881  f->f = NULL;
1882  av_refstruct_unref(&f->progress);
1883  return ret;
1884  }
1885  return 0;
1886 }
1887 
1889 {
1890  av_assert1(src->progress && src->f && src->f == src->progress->f);
1891  av_assert1(!dst->f && !dst->progress);
1892  dst->f = src->f;
1893  dst->progress = av_refstruct_ref(src->progress);
1894 }
1895 
1897 {
1899  f->f = NULL;
1900  av_refstruct_unref(&f->progress);
1901 }
1902 
1904 {
1905  if (dst == src)
1906  return;
1909  if (src->f)
1911 }
1912 
1914 {
1915  ff_thread_progress_report(&f->progress->progress, n);
1916 }
1917 
1919 {
1920  ff_thread_progress_await(&f->progress->progress, n);
1921 }
1922 
1923 #if !HAVE_THREADS
1925 {
1927 }
1928 #endif /* !HAVE_THREADS */
1929 
1931 {
1932  const AVCodecContext *avctx = opaque.nc;
1933  ProgressInternal *progress = obj;
1934  int ret;
1935 
1937  if (ret < 0)
1938  return ret;
1939 
1940  progress->f = av_frame_alloc();
1941  if (!progress->f)
1942  return AVERROR(ENOMEM);
1943 
1944  return 0;
1945 }
1946 
1947 static void progress_frame_pool_reset_cb(AVRefStructOpaque unused, void *obj)
1948 {
1949  ProgressInternal *progress = obj;
1950 
1951  ff_thread_progress_reset(&progress->progress);
1952  av_frame_unref(progress->f);
1953 }
1954 
1956 {
1957  ProgressInternal *progress = obj;
1958 
1960  av_frame_free(&progress->f);
1961 }
1962 
1964 {
1965  AVCodecInternal *avci = avctx->internal;
1966  DecodeContext *dc = decode_ctx(avci);
1967  int ret = 0;
1968 
1969  dc->initial_pict_type = AV_PICTURE_TYPE_NONE;
1971  dc->intra_only_flag = AV_FRAME_FLAG_KEY;
1972  if (avctx->codec_type == AVMEDIA_TYPE_VIDEO)
1973  dc->initial_pict_type = AV_PICTURE_TYPE_I;
1974  }
1975 
1976  /* if the decoder init function was already called previously,
1977  * free the already allocated subtitle_header before overwriting it */
1978  av_freep(&avctx->subtitle_header);
1979 
1980  if (avctx->codec->max_lowres < avctx->lowres || avctx->lowres < 0) {
1981  av_log(avctx, AV_LOG_WARNING, "The maximum value for lowres supported by the decoder is %d\n",
1982  avctx->codec->max_lowres);
1983  avctx->lowres = avctx->codec->max_lowres;
1984  }
1985  if (avctx->sub_charenc) {
1986  if (avctx->codec_type != AVMEDIA_TYPE_SUBTITLE) {
1987  av_log(avctx, AV_LOG_ERROR, "Character encoding is only "
1988  "supported with subtitles codecs\n");
1989  return AVERROR(EINVAL);
1990  } else if (avctx->codec_descriptor->props & AV_CODEC_PROP_BITMAP_SUB) {
1991  av_log(avctx, AV_LOG_WARNING, "Codec '%s' is bitmap-based, "
1992  "subtitles character encoding will be ignored\n",
1993  avctx->codec_descriptor->name);
1995  } else {
1996  /* input character encoding is set for a text based subtitle
1997  * codec at this point */
2000 
2002 #if CONFIG_ICONV
2003  iconv_t cd = iconv_open("UTF-8", avctx->sub_charenc);
2004  if (cd == (iconv_t)-1) {
2005  ret = AVERROR(errno);
2006  av_log(avctx, AV_LOG_ERROR, "Unable to open iconv context "
2007  "with input character encoding \"%s\"\n", avctx->sub_charenc);
2008  return ret;
2009  }
2010  iconv_close(cd);
2011 #else
2012  av_log(avctx, AV_LOG_ERROR, "Character encoding subtitles "
2013  "conversion needs a libavcodec built with iconv support "
2014  "for this codec\n");
2015  return AVERROR(ENOSYS);
2016 #endif
2017  }
2018  }
2019  }
2020 
2021  dc->pts_correction_num_faulty_pts =
2022  dc->pts_correction_num_faulty_dts = 0;
2023  dc->pts_correction_last_pts =
2024  dc->pts_correction_last_dts = INT64_MIN;
2025 
2026  if ( !CONFIG_GRAY && avctx->flags & AV_CODEC_FLAG_GRAY
2028  av_log(avctx, AV_LOG_WARNING,
2029  "gray decoding requested but not enabled at configuration time\n");
2030  if (avctx->flags2 & AV_CODEC_FLAG2_EXPORT_MVS) {
2032  }
2033 
2034  if (avctx->nb_side_data_prefer_packet == 1 &&
2035  avctx->side_data_prefer_packet[0] == -1)
2036  dc->side_data_pref_mask = ~0ULL;
2037  else {
2038  for (unsigned i = 0; i < avctx->nb_side_data_prefer_packet; i++) {
2039  int val = avctx->side_data_prefer_packet[i];
2040 
2041  if (val < 0 || val >= AV_PKT_DATA_NB) {
2042  av_log(avctx, AV_LOG_ERROR, "Invalid side data type: %d\n", val);
2043  return AVERROR(EINVAL);
2044  }
2045 
2046  for (unsigned j = 0; ff_sd_global_map[j].packet < AV_PKT_DATA_NB; j++) {
2047  if (ff_sd_global_map[j].packet == val) {
2048  val = ff_sd_global_map[j].frame;
2049 
2050  // this code will need to be changed when we have more than
2051  // 64 frame side data types
2052  if (val >= 64) {
2053  av_log(avctx, AV_LOG_ERROR, "Side data type too big\n");
2054  return AVERROR_BUG;
2055  }
2056 
2057  dc->side_data_pref_mask |= 1ULL << val;
2058  }
2059  }
2060  }
2061  }
2062 
2063  avci->in_pkt = av_packet_alloc();
2064  avci->last_pkt_props = av_packet_alloc();
2065  if (!avci->in_pkt || !avci->last_pkt_props)
2066  return AVERROR(ENOMEM);
2067 
2069  avci->progress_frame_pool =
2075  if (!avci->progress_frame_pool)
2076  return AVERROR(ENOMEM);
2077  }
2078  ret = decode_bsfs_init(avctx);
2079  if (ret < 0)
2080  return ret;
2081 
2083  ret = ff_lcevc_alloc(&dc->lcevc);
2084  if (ret < 0 && (avctx->err_recognition & AV_EF_EXPLODE))
2085  return ret;
2086  }
2087 
2088  return 0;
2089 }
2090 
2091 /**
2092  * Check side data preference and clear existing side data from frame
2093  * if needed.
2094  *
2095  * @retval 0 side data of this type can be added to frame
2096  * @retval 1 side data of this type should not be added to frame
2097  */
2098 static int side_data_pref(const AVCodecContext *avctx, AVFrameSideData ***sd,
2099  int *nb_sd, enum AVFrameSideDataType type)
2100 {
2101  DecodeContext *dc = decode_ctx(avctx->internal);
2102 
2103  // Note: could be skipped for `type` without corresponding packet sd
2104  if (av_frame_side_data_get(*sd, *nb_sd, type)) {
2105  if (dc->side_data_pref_mask & (1ULL << type))
2106  return 1;
2107  av_frame_side_data_remove(sd, nb_sd, type);
2108  }
2109 
2110  return 0;
2111 }
2112 
2113 
2115  enum AVFrameSideDataType type, size_t size,
2116  AVFrameSideData **psd)
2117 {
2118  AVFrameSideData *sd;
2119 
2120  if (side_data_pref(avctx, &frame->side_data, &frame->nb_side_data, type)) {
2121  if (psd)
2122  *psd = NULL;
2123  return 0;
2124  }
2125 
2127  if (psd)
2128  *psd = sd;
2129 
2130  return sd ? 0 : AVERROR(ENOMEM);
2131 }
2132 
2134  AVFrameSideData ***sd, int *nb_sd,
2136  AVBufferRef **buf)
2137 {
2138  int ret = 0;
2139 
2140  if (side_data_pref(avctx, sd, nb_sd, type))
2141  goto finish;
2142 
2143  if (!av_frame_side_data_add(sd, nb_sd, type, buf, 0))
2144  ret = AVERROR(ENOMEM);
2145 
2146 finish:
2148 
2149  return ret;
2150 }
2151 
2154  AVBufferRef **buf)
2155 {
2157  &frame->side_data, &frame->nb_side_data,
2158  type, buf);
2159 }
2160 
2162  AVFrameSideData ***sd, int *nb_sd,
2163  struct AVMasteringDisplayMetadata **mdm)
2164 {
2165  AVBufferRef *buf;
2166  size_t size;
2167 
2169  *mdm = NULL;
2170  return 0;
2171  }
2172 
2174  if (!*mdm)
2175  return AVERROR(ENOMEM);
2176 
2177  buf = av_buffer_create((uint8_t *)*mdm, size, NULL, NULL, 0);
2178  if (!buf) {
2179  av_freep(mdm);
2180  return AVERROR(ENOMEM);
2181  }
2182 
2184  &buf, 0)) {
2185  *mdm = NULL;
2186  av_buffer_unref(&buf);
2187  return AVERROR(ENOMEM);
2188  }
2189 
2190  return 0;
2191 }
2192 
2195 {
2196  if (side_data_pref(avctx, &frame->side_data, &frame->nb_side_data,
2198  *mdm = NULL;
2199  return 0;
2200  }
2201 
2203  return *mdm ? 0 : AVERROR(ENOMEM);
2204 }
2205 
2207  AVFrameSideData ***sd, int *nb_sd,
2208  AVContentLightMetadata **clm)
2209 {
2210  AVBufferRef *buf;
2211  size_t size;
2212 
2213  if (side_data_pref(avctx, sd, nb_sd, AV_FRAME_DATA_CONTENT_LIGHT_LEVEL)) {
2214  *clm = NULL;
2215  return 0;
2216  }
2217 
2219  if (!*clm)
2220  return AVERROR(ENOMEM);
2221 
2222  buf = av_buffer_create((uint8_t *)*clm, size, NULL, NULL, 0);
2223  if (!buf) {
2224  av_freep(clm);
2225  return AVERROR(ENOMEM);
2226  }
2227 
2229  &buf, 0)) {
2230  *clm = NULL;
2231  av_buffer_unref(&buf);
2232  return AVERROR(ENOMEM);
2233  }
2234 
2235  return 0;
2236 }
2237 
2239  AVContentLightMetadata **clm)
2240 {
2241  if (side_data_pref(avctx, &frame->side_data, &frame->nb_side_data,
2243  *clm = NULL;
2244  return 0;
2245  }
2246 
2248  return *clm ? 0 : AVERROR(ENOMEM);
2249 }
2250 
2251 int ff_copy_palette(void *dst, const AVPacket *src, void *logctx)
2252 {
2253  size_t size;
2254  const void *pal = av_packet_get_side_data(src, AV_PKT_DATA_PALETTE, &size);
2255 
2256  if (pal && size == AVPALETTE_SIZE) {
2257  memcpy(dst, pal, AVPALETTE_SIZE);
2258  return 1;
2259  } else if (pal) {
2260  av_log(logctx, AV_LOG_ERROR,
2261  "Palette size %"SIZE_SPECIFIER" is wrong\n", size);
2262  }
2263  return 0;
2264 }
2265 
2266 int ff_hwaccel_frame_priv_alloc(AVCodecContext *avctx, void **hwaccel_picture_private)
2267 {
2268  const FFHWAccel *hwaccel = ffhwaccel(avctx->hwaccel);
2269 
2270  if (!hwaccel || !hwaccel->frame_priv_data_size)
2271  return 0;
2272 
2273  av_assert0(!*hwaccel_picture_private);
2274 
2275  if (hwaccel->free_frame_priv) {
2276  AVHWFramesContext *frames_ctx;
2277 
2278  if (!avctx->hw_frames_ctx)
2279  return AVERROR(EINVAL);
2280 
2281  frames_ctx = (AVHWFramesContext *) avctx->hw_frames_ctx->data;
2282  *hwaccel_picture_private = av_refstruct_alloc_ext(hwaccel->frame_priv_data_size, 0,
2283  frames_ctx->device_ctx,
2284  hwaccel->free_frame_priv);
2285  } else {
2286  *hwaccel_picture_private = av_refstruct_allocz(hwaccel->frame_priv_data_size);
2287  }
2288 
2289  if (!*hwaccel_picture_private)
2290  return AVERROR(ENOMEM);
2291 
2292  return 0;
2293 }
2294 
2296 {
2297  AVCodecInternal *avci = avctx->internal;
2298  DecodeContext *dc = decode_ctx(avci);
2299 
2301  av_packet_unref(avci->in_pkt);
2302 
2303  dc->pts_correction_last_pts =
2304  dc->pts_correction_last_dts = INT64_MIN;
2305 
2306  if (avci->bsf)
2307  av_bsf_flush(avci->bsf);
2308 
2309  dc->nb_draining_errors = 0;
2310  dc->draining_started = 0;
2311 }
2312 
2314 {
2315  return av_mallocz(sizeof(DecodeContext));
2316 }
2317 
2319 {
2320  const DecodeContext *src_dc = decode_ctx(src->internal);
2321  DecodeContext *dst_dc = decode_ctx(dst->internal);
2322 
2323  av_refstruct_replace(&dst_dc->lcevc, src_dc->lcevc);
2324 }
2325 
2327 {
2328  AVCodecInternal *avci = avctx->internal;
2329  DecodeContext *dc = decode_ctx(avci);
2330 
2331  av_refstruct_unref(&dc->lcevc);
2332 }
2333 
2334 static int attach_displaymatrix(AVCodecContext *avctx, AVFrame *frame, int orientation)
2335 {
2336  AVFrameSideData *sd = NULL;
2337  int32_t *matrix;
2338  int ret;
2339  /* invalid orientation */
2340  if (orientation < 1 || orientation > 8)
2341  return AVERROR_INVALIDDATA;
2343  if (ret < 0) {
2344  av_log(avctx, AV_LOG_ERROR, "Could not allocate frame side data: %s\n", av_err2str(ret));
2345  return ret;
2346  }
2347  if (sd) {
2348  matrix = (int32_t *) sd->data;
2349  ret = av_exif_orientation_to_matrix(matrix, orientation);
2350  }
2351 
2352  return ret;
2353 }
2354 
2355 static int exif_attach_ifd(AVCodecContext *avctx, AVFrame *frame, const AVExifMetadata *ifd, AVBufferRef **pbuf)
2356 {
2357  const AVExifEntry *orient = NULL;
2358  AVExifMetadata *cloned = NULL;
2359  int ret;
2360 
2361  for (size_t i = 0; i < ifd->count; i++) {
2362  const AVExifEntry *entry = &ifd->entries[i];
2363  if (entry->id == av_exif_get_tag_id("Orientation") &&
2364  entry->count > 0 && entry->type == AV_TIFF_SHORT) {
2365  orient = entry;
2366  break;
2367  }
2368  }
2369 
2370  if (orient) {
2371  av_log(avctx, AV_LOG_DEBUG, "found EXIF orientation: %" PRIu64 "\n", orient->value.uint[0]);
2372  ret = attach_displaymatrix(avctx, frame, orient->value.uint[0]);
2373  if (ret < 0) {
2374  av_log(avctx, AV_LOG_WARNING, "unable to attach displaymatrix from EXIF\n");
2375  } else {
2376  cloned = av_exif_clone_ifd(ifd);
2377  if (!cloned) {
2378  ret = AVERROR(ENOMEM);
2379  goto end;
2380  }
2381  av_exif_remove_entry(avctx, cloned, orient->id, 0);
2382  ifd = cloned;
2383  }
2384  }
2385 
2386  ret = av_exif_ifd_to_dict(avctx, ifd, &frame->metadata);
2387  if (ret < 0)
2388  goto end;
2389 
2390  if (cloned || !*pbuf) {
2391  av_buffer_unref(pbuf);
2392  ret = av_exif_write(avctx, ifd, pbuf, AV_EXIF_TIFF_HEADER);
2393  if (ret < 0)
2394  goto end;
2395  }
2396 
2398  if (ret < 0)
2399  goto end;
2400 
2401  ret = 0;
2402 
2403 end:
2404  av_buffer_unref(pbuf);
2405  av_exif_free(cloned);
2406  av_free(cloned);
2407  return ret;
2408 }
2409 
2411 {
2412  AVBufferRef *dummy = NULL;
2413  return exif_attach_ifd(avctx, frame, ifd, &dummy);
2414 }
2415 
2417  enum AVExifHeaderMode header_mode)
2418 {
2419  int ret;
2420  AVBufferRef *data = *pbuf;
2421  AVExifMetadata ifd = { 0 };
2422 
2423  ret = av_exif_parse_buffer(avctx, data->data, data->size, &ifd, header_mode);
2424  if (ret < 0)
2425  goto end;
2426 
2427  ret = exif_attach_ifd(avctx, frame, &ifd, pbuf);
2428 
2429 end:
2430  av_buffer_unref(pbuf);
2431  av_exif_free(&ifd);
2432  return ret;
2433 }
lcevcdec.h
flags
const SwsFlags flags[]
Definition: swscale.c:61
ff_get_coded_side_data
const AVPacketSideData * ff_get_coded_side_data(const AVCodecContext *avctx, enum AVPacketSideDataType type)
Get side data of the given type from a decoding context.
Definition: decode.c:1352
DecodeContext::intra_only_flag
int intra_only_flag
This is set to AV_FRAME_FLAG_KEY for decoders of intra-only formats (those whose codec descriptor has...
Definition: decode.c:69
AVSubtitle
Definition: avcodec.h:2082
hwconfig.h
ff_progress_frame_report
void ff_progress_frame_report(ProgressFrame *f, int n)
Notify later decoding threads when part of their reference frame is ready.
Definition: decode.c:1913
av_samples_copy
int av_samples_copy(uint8_t *const *dst, uint8_t *const *src, int dst_offset, int src_offset, int nb_samples, int nb_channels, enum AVSampleFormat sample_fmt)
Copy samples from src to dst.
Definition: samplefmt.c:222
av_packet_unref
void av_packet_unref(AVPacket *pkt)
Wipe the packet.
Definition: packet.c:433
AVCodecContext::hwaccel
const struct AVHWAccel * hwaccel
Hardware accelerator in use.
Definition: avcodec.h:1405
exif_attach_ifd
static int exif_attach_ifd(AVCodecContext *avctx, AVFrame *frame, const AVExifMetadata *ifd, AVBufferRef **pbuf)
Definition: decode.c:2355
FFCodec::receive_frame
int(* receive_frame)(struct AVCodecContext *avctx, struct AVFrame *frame)
Decode API with decoupled packet/frame dataflow.
Definition: codec_internal.h:218
AVMEDIA_TYPE_SUBTITLE
@ AVMEDIA_TYPE_SUBTITLE
Definition: avutil.h:203
AVBSFContext::par_in
AVCodecParameters * par_in
Parameters of the input stream.
Definition: bsf.h:90
hwaccel_init
static int hwaccel_init(AVCodecContext *avctx, const FFHWAccel *hwaccel)
Definition: decode.c:1156
AV_LOG_WARNING
#define AV_LOG_WARNING
Something somehow does not look correct.
Definition: log.h:216
ff_decode_get_packet
int ff_decode_get_packet(AVCodecContext *avctx, AVPacket *pkt)
Called by decoders to get the next packet for decoding.
Definition: decode.c:245
hw_pix_fmt
static enum AVPixelFormat hw_pix_fmt
Definition: hw_decode.c:46
AVPixelFormat
AVPixelFormat
Pixel format.
Definition: pixfmt.h:71
Frame::width
int width
Definition: ffplay.c:159
entry
#define entry
Definition: aom_film_grain_template.c:66
AV_EF_EXPLODE
#define AV_EF_EXPLODE
abort decoding on minor error detection
Definition: defs.h:51
ff_thread_progress_report
void ff_thread_progress_report(ThreadProgress *pro, int n)
This function is a no-op in no-op mode; otherwise it notifies other threads that a certain level of p...
Definition: threadprogress.c:53
AVCodecContext::alpha_mode
enum AVAlphaMode alpha_mode
Indicates how the alpha channel of the video is represented.
Definition: avcodec.h:1932
AVERROR
Filter the word “frame” indicates either a video frame or a group of audio as stored in an AVFrame structure Format for each input and each output the list of supported formats For video that means pixel format For audio that means channel sample they are references to shared objects When the negotiation mechanism computes the intersection of the formats supported at each end of a all references to both lists are replaced with a reference to the intersection And when a single format is eventually chosen for a link amongst the remaining all references to the list are updated That means that if a filter requires that its input and output have the same format amongst a supported all it has to do is use a reference to the same list of formats query_formats can leave some formats unset and return AVERROR(EAGAIN) to cause the negotiation mechanism toagain later. That can be used by filters with complex requirements to use the format negotiated on one link to set the formats supported on another. Frame references ownership and permissions
AVSubtitle::rects
AVSubtitleRect ** rects
Definition: avcodec.h:2087
threadprogress.h
AVCodecContext::get_format
enum AVPixelFormat(* get_format)(struct AVCodecContext *s, const enum AVPixelFormat *fmt)
Callback to negotiate the pixel format.
Definition: avcodec.h:761
ff_icc_profile_read_primaries
int ff_icc_profile_read_primaries(FFIccContext *s, cmsHPROFILE profile, AVColorPrimariesDesc *out_primaries)
Read the color primaries and white point coefficients encoded by an ICC profile, and return the raw v...
Definition: fflcms2.c:255
AV_WL32
#define AV_WL32(p, v)
Definition: intreadwrite.h:422
av_exif_parse_buffer
int av_exif_parse_buffer(void *logctx, const uint8_t *buf, size_t size, AVExifMetadata *ifd, enum AVExifHeaderMode header_mode)
Decodes the EXIF data provided in the buffer and writes it into the struct *ifd.
Definition: exif.c:764
AVCodecContext::colorspace
enum AVColorSpace colorspace
YUV colorspace type.
Definition: avcodec.h:659
AVColorTransferCharacteristic
AVColorTransferCharacteristic
Color Transfer Characteristic.
Definition: pixfmt.h:661
AVCodecContext::decoded_side_data
AVFrameSideData ** decoded_side_data
Array containing static side data, such as HDR10 CLL / MDCV structures.
Definition: avcodec.h:1924
attach_post_process_data
static int attach_post_process_data(AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:1675
ff_get_format
int ff_get_format(AVCodecContext *avctx, const enum AVPixelFormat *fmt)
Select the (possibly hardware accelerated) pixel format.
Definition: decode.c:1203
apply_cropping
static int apply_cropping(AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:737
ThreadProgress
ThreadProgress is an API to easily notify other threads about progress of any kind as long as it can ...
Definition: threadprogress.h:43
AVCodecContext::sample_rate
int sample_rate
samples per second
Definition: avcodec.h:1024
av_frame_get_side_data
AVFrameSideData * av_frame_get_side_data(const AVFrame *frame, enum AVFrameSideDataType type)
Definition: frame.c:659
AVExifEntry
Definition: exif.h:85
av_frame_new_side_data
AVFrameSideData * av_frame_new_side_data(AVFrame *frame, enum AVFrameSideDataType type, size_t size)
Add a new side data to a frame.
Definition: frame.c:647
av_exif_write
int av_exif_write(void *logctx, const AVExifMetadata *ifd, AVBufferRef **buffer, enum AVExifHeaderMode header_mode)
Allocates a buffer using av_malloc of an appropriate size and writes the EXIF data represented by ifd...
Definition: exif.c:703
AVExifMetadata
Definition: exif.h:76
AVColorPrimariesDesc
Struct that contains both white point location and primaries location, providing the complete descrip...
Definition: csp.h:78
DecodeContext::initial_pict_type
enum AVPictureType initial_pict_type
This is set to AV_PICTURE_TYPE_I for intra only video decoders and to AV_PICTURE_TYPE_NONE for other ...
Definition: decode.c:76
av_pix_fmt_desc_get
const AVPixFmtDescriptor * av_pix_fmt_desc_get(enum AVPixelFormat pix_fmt)
Definition: pixdesc.c:3447
AVERROR_EOF
#define AVERROR_EOF
End of file.
Definition: error.h:57
AVBufferRef::data
uint8_t * data
The data buffer.
Definition: buffer.h:90
ff_lcevc_alloc
int ff_lcevc_alloc(FFLCEVCContext **plcevc)
Definition: lcevcdec.c:312
AV_HWACCEL_CODEC_CAP_EXPERIMENTAL
#define AV_HWACCEL_CODEC_CAP_EXPERIMENTAL
HWAccel is experimental and is thus avoided in favor of non experimental codecs.
Definition: avcodec.h:1983
AV_FRAME_DATA_A53_CC
@ AV_FRAME_DATA_A53_CC
ATSC A53 Part 4 Closed Captions.
Definition: frame.h:59
AVRefStructOpaque
RefStruct is an API for creating reference-counted objects with minimal overhead.
Definition: refstruct.h:58
matrix
Definition: vc1dsp.c:43
AV_PKT_FLAG_DISCARD
#define AV_PKT_FLAG_DISCARD
Flag is used to discard packets which are required to maintain valid decoder state but are not requir...
Definition: packet.h:620
AVHWFramesContext::format
enum AVPixelFormat format
The pixel format identifying the underlying HW surface type.
Definition: hwcontext.h:200
AVPictureType
AVPictureType
Definition: avutil.h:276
av_exif_ifd_to_dict
int av_exif_ifd_to_dict(void *logctx, const AVExifMetadata *ifd, AVDictionary **metadata)
Recursively reads all tags from the IFD and stores them in the provided metadata dictionary.
Definition: exif.c:914
AVCodecInternal::skip_samples
int skip_samples
Number of audio samples to skip at the start of the next decoded frame.
Definition: internal.h:125
AVCodecContext::err_recognition
int err_recognition
Error recognition; may misdetect some more or less valid parts as errors.
Definition: avcodec.h:1398
AV_CODEC_FLAG_UNALIGNED
#define AV_CODEC_FLAG_UNALIGNED
Allow decoders to produce frames with data planes that are not aligned to CPU requirements (e....
Definition: avcodec.h:209
AVCodecContext::codec_descriptor
const struct AVCodecDescriptor * codec_descriptor
AVCodecDescriptor.
Definition: avcodec.h:1704
AV_TIME_BASE_Q
#define AV_TIME_BASE_Q
Internal time base represented as fractional value.
Definition: avutil.h:263
AVCodecDescriptor::name
const char * name
Name of the codec described by this descriptor.
Definition: codec_desc.h:46
AV_WL8
#define AV_WL8(p, d)
Definition: intreadwrite.h:395
AVCodecContext::coded_side_data
AVPacketSideData * coded_side_data
Additional data associated with the entire coded stream.
Definition: avcodec.h:1763
int64_t
long long int64_t
Definition: coverity.c:34
av_exif_orientation_to_matrix
int av_exif_orientation_to_matrix(int32_t *matrix, int orientation)
Convert an orientation constant used by EXIF's orientation tag into a display matrix used by AV_FRAME...
Definition: exif.c:1192
AVSubtitle::num_rects
unsigned num_rects
Definition: avcodec.h:2086
AVExifHeaderMode
AVExifHeaderMode
Definition: exif.h:58
av_unused
#define av_unused
Definition: attributes.h:131
decode_simple_receive_frame
static int decode_simple_receive_frame(AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:592
AV_FRAME_DATA_S12M_TIMECODE
@ AV_FRAME_DATA_S12M_TIMECODE
Timecode which conforms to SMPTE ST 12-1.
Definition: frame.h:152
FFHWAccel::p
AVHWAccel p
The public AVHWAccel.
Definition: hwaccel_internal.h:38
av_frame_free
void av_frame_free(AVFrame **frame)
Free the frame and any dynamically allocated objects in it, e.g.
Definition: frame.c:64
AVFrame::opaque
void * opaque
Frame owner's private data.
Definition: frame.h:565
FrameDecodeData
This struct stores per-frame lavc-internal data and is attached to it via private_ref.
Definition: decode.h:33
av_hwframe_ctx_init
int av_hwframe_ctx_init(AVBufferRef *ref)
Finalize the context before use.
Definition: hwcontext.c:337
DecodeContext::pts_correction_last_pts
int64_t pts_correction_last_pts
Number of incorrect DTS values so far.
Definition: decode.c:88
AVFrame
This structure describes decoded (raw) audio or video data.
Definition: frame.h:427
AVFrameSideData::buf
AVBufferRef * buf
Definition: frame.h:287
AVCodecContext::color_trc
enum AVColorTransferCharacteristic color_trc
Color Transfer Characteristic.
Definition: avcodec.h:652
AVFrame::width
int width
Definition: frame.h:499
AVPacketSideData
This structure stores auxiliary information for decoding, presenting, or otherwise processing the cod...
Definition: packet.h:409
AVCodec::capabilities
int capabilities
Codec capabilities.
Definition: codec.h:191
FFHWAccel::frame_params
int(* frame_params)(AVCodecContext *avctx, AVBufferRef *hw_frames_ctx)
Fill the given hw_frames context with current codec parameters.
Definition: hwaccel_internal.h:146
av_hwframe_ctx_alloc
AVBufferRef * av_hwframe_ctx_alloc(AVBufferRef *device_ref_in)
Allocate an AVHWFramesContext tied to a given device context.
Definition: hwcontext.c:263
internal.h
AVPacket::data
uint8_t * data
Definition: packet.h:558
FFLCEVCContext
Definition: lcevcdec.h:31
AVCOL_TRC_UNSPECIFIED
@ AVCOL_TRC_UNSPECIFIED
Definition: pixfmt.h:664
ff_progress_frame_get_buffer
int ff_progress_frame_get_buffer(AVCodecContext *avctx, ProgressFrame *f, int flags)
Wrapper around ff_progress_frame_alloc() and ff_thread_get_buffer().
Definition: decode.c:1873
data
const char data[16]
Definition: mxf.c:149
AV_PKT_DATA_S12M_TIMECODE
@ AV_PKT_DATA_S12M_TIMECODE
Timecode which conforms to SMPTE ST 12-1:2014.
Definition: packet.h:288
FFCodec
Definition: codec_internal.h:127
AVCodecContext::subtitle_header
uint8_t * subtitle_header
Definition: avcodec.h:1739
AV_SIDE_DATA_PARAM_CHANGE_SAMPLE_RATE
@ AV_SIDE_DATA_PARAM_CHANGE_SAMPLE_RATE
Definition: packet.h:635
FrameDecodeData::hwaccel_priv_free
void(* hwaccel_priv_free)(void *priv)
Definition: decode.h:52
FF_HW_SIMPLE_CALL
#define FF_HW_SIMPLE_CALL(avctx, function)
Definition: hwaccel_internal.h:176
AV_FRAME_DATA_DISPLAYMATRIX
@ AV_FRAME_DATA_DISPLAYMATRIX
This side data contains a 3x3 transformation matrix describing an affine transformation that needs to...
Definition: frame.h:85
AVPacket::duration
int64_t duration
Duration of this packet in AVStream->time_base units, 0 if unknown.
Definition: packet.h:576
FF_COMPLIANCE_EXPERIMENTAL
#define FF_COMPLIANCE_EXPERIMENTAL
Allow nonstandardized experimental things.
Definition: defs.h:62
FF_SUB_CHARENC_MODE_PRE_DECODER
#define FF_SUB_CHARENC_MODE_PRE_DECODER
the AVPacket data needs to be recoded to UTF-8 before being fed to the decoder, requires iconv
Definition: avcodec.h:1722
AVDictionary
Definition: dict.c:32
FFMAX
#define FFMAX(a, b)
Definition: macros.h:47
AVColorPrimaries
AVColorPrimaries
Chromaticity coordinates of the source primaries.
Definition: pixfmt.h:636
avcodec_default_get_format
enum AVPixelFormat avcodec_default_get_format(struct AVCodecContext *avctx, const enum AVPixelFormat *fmt)
Definition: decode.c:980
av_frame_side_data_clone
int av_frame_side_data_clone(AVFrameSideData ***sd, int *nb_sd, const AVFrameSideData *src, unsigned int flags)
Add a new side data entry to an array based on existing side data, taking a reference towards the con...
Definition: side_data.c:248
avcodec_is_open
int avcodec_is_open(AVCodecContext *s)
Definition: avcodec.c:703
AVChannelLayout::nb_channels
int nb_channels
Number of channels in this layout.
Definition: channel_layout.h:329
ff_thread_receive_frame
#define ff_thread_receive_frame(avctx, frame)
Definition: decode.c:217
AVFrame::buf
AVBufferRef * buf[AV_NUM_DATA_POINTERS]
AVBuffer references backing the data for this frame.
Definition: frame.h:604
AV_RL8
#define AV_RL8(x)
Definition: intreadwrite.h:394
ff_set_dimensions
int ff_set_dimensions(AVCodecContext *s, int width, int height)
Check that the provided frame dimensions are valid and set them on the codec context.
Definition: utils.c:91
AV_FRAME_CROP_UNALIGNED
@ AV_FRAME_CROP_UNALIGNED
Apply the maximum possible cropping, even if it requires setting the AVFrame.data[] entries to unalig...
Definition: frame.h:1002
decode_ctx
static DecodeContext * decode_ctx(AVCodecInternal *avci)
Definition: decode.c:103
av_bsf_free
void av_bsf_free(AVBSFContext **pctx)
Free a bitstream filter context and everything associated with it; write NULL into the supplied point...
Definition: bsf.c:52
FF_SUB_CHARENC_MODE_AUTOMATIC
#define FF_SUB_CHARENC_MODE_AUTOMATIC
libavcodec will select the mode itself
Definition: avcodec.h:1721
AV_STEREO3D_VIEW_UNSPEC
@ AV_STEREO3D_VIEW_UNSPEC
Content is unspecified.
Definition: stereo3d.h:168
tf_sess_config.config
config
Definition: tf_sess_config.py:33
thread.h
AV_STEREO3D_UNSPEC
@ AV_STEREO3D_UNSPEC
Video is stereoscopic but the packing is unspecified.
Definition: stereo3d.h:143
av_frame_apply_cropping
int av_frame_apply_cropping(AVFrame *frame, int flags)
Crop the given video AVFrame according to its crop_left/crop_top/crop_right/ crop_bottom fields.
Definition: frame.c:760
DecodeContext::pts_correction_num_faulty_dts
int64_t pts_correction_num_faulty_dts
Number of incorrect PTS values so far.
Definition: decode.c:87
ff_hwaccel_uninit
void ff_hwaccel_uninit(AVCodecContext *avctx)
Definition: decode.c:1191
av_memdup
void * av_memdup(const void *p, size_t size)
Duplicate a buffer with av_malloc().
Definition: mem.c:304
AVContentLightMetadata
Content light level needed by to transmit HDR over HDMI (CTA-861.3).
Definition: mastering_display_metadata.h:107
decode_get_packet
static int decode_get_packet(AVCodecContext *avctx, AVPacket *pkt)
Definition: decode.c:220
AVCodec::max_lowres
uint8_t max_lowres
maximum value for lowres supported by the decoder
Definition: codec.h:192
AVPacketSideData::size
size_t size
Definition: packet.h:411
AV_TIFF_SHORT
@ AV_TIFF_SHORT
Definition: exif.h:45
av_pix_fmt_count_planes
int av_pix_fmt_count_planes(enum AVPixelFormat pix_fmt)
Definition: pixdesc.c:3487
DecodeContext::nb_draining_errors
int nb_draining_errors
Definition: decode.c:79
AV_CODEC_FLAG_COPY_OPAQUE
#define AV_CODEC_FLAG_COPY_OPAQUE
Definition: avcodec.h:279
finish
static void finish(void)
Definition: movenc.c:374
FFHWAccel
Definition: hwaccel_internal.h:34
bsf.h
guess_correct_pts
static int64_t guess_correct_pts(DecodeContext *dc, int64_t reordered_pts, int64_t dts)
Attempt to guess proper monotonic timestamps for decoded video frames which might have incorrect time...
Definition: decode.c:287
AVCodecContext::codec
const struct AVCodec * codec
Definition: avcodec.h:440
AV_PKT_DATA_PALETTE
@ AV_PKT_DATA_PALETTE
An AV_PKT_DATA_PALETTE side data packet contains exactly AVPALETTE_SIZE bytes worth of palette.
Definition: packet.h:47
AVPacket::opaque_ref
AVBufferRef * opaque_ref
AVBufferRef for free use by the API user.
Definition: packet.h:594
STRIDE_ALIGN
#define STRIDE_ALIGN
Definition: internal.h:46
AVCodecContext::ch_layout
AVChannelLayout ch_layout
Audio channel layout.
Definition: avcodec.h:1039
fail
#define fail()
Definition: checkasm.h:200
ff_icc_context_init
int ff_icc_context_init(FFIccContext *s, void *avctx)
Initializes an FFIccContext.
Definition: fflcms2.c:30
AVCodecContext::thread_count
int thread_count
thread count is used to decide how many independent tasks should be passed to execute()
Definition: avcodec.h:1561
AV_PIX_FMT_FLAG_HWACCEL
#define AV_PIX_FMT_FLAG_HWACCEL
Pixel format is an HW accelerated format.
Definition: pixdesc.h:128
AV_CODEC_HW_CONFIG_METHOD_HW_FRAMES_CTX
@ AV_CODEC_HW_CONFIG_METHOD_HW_FRAMES_CTX
The codec supports this format via the hw_frames_ctx interface.
Definition: codec.h:311
dummy
int dummy
Definition: motion.c:66
AV_CODEC_HW_CONFIG_METHOD_AD_HOC
@ AV_CODEC_HW_CONFIG_METHOD_AD_HOC
The codec supports this format by some ad-hoc method.
Definition: codec.h:327
ff_lcevc_process
int ff_lcevc_process(void *logctx, AVFrame *frame)
Definition: lcevcdec.c:281
av_exif_free
void av_exif_free(AVExifMetadata *ifd)
Frees all resources associated with the given EXIF metadata struct.
Definition: exif.c:609
FF_SUB_CHARENC_MODE_DO_NOTHING
#define FF_SUB_CHARENC_MODE_DO_NOTHING
do nothing (demuxer outputs a stream supposed to be already in UTF-8, or the codec is bitmap for inst...
Definition: avcodec.h:1720
AVCodecContext::flags
int flags
AV_CODEC_FLAG_*.
Definition: avcodec.h:488
val
static double val(void *priv, double ch)
Definition: aeval.c:77
FrameDecodeData::post_process_opaque_free
void(* post_process_opaque_free)(void *opaque)
Definition: decode.h:46
type
it s the only field you need to keep assuming you have a context There is some magic you don t need to care about around this just let it vf type
Definition: writing_filters.txt:86
ff_decode_frame_props_from_pkt
int ff_decode_frame_props_from_pkt(const AVCodecContext *avctx, AVFrame *frame, const AVPacket *pkt)
Set various frame properties from the provided packet.
Definition: decode.c:1524
pts
static int64_t pts
Definition: transcode_aac.c:644
add_metadata_from_side_data
static int add_metadata_from_side_data(const AVPacket *avpkt, AVFrame *frame)
Definition: decode.c:1512
AVCodecContext::coded_height
int coded_height
Definition: avcodec.h:607
AVCodecContext::max_samples
int64_t max_samples
The number of samples per frame to maximally accept.
Definition: avcodec.h:1825
AVRational::num
int num
Numerator.
Definition: rational.h:59
progressframe.h
AVFrameSideDataType
AVFrameSideDataType
Definition: frame.h:49
refstruct.h
AVSubtitleRect::ass
char * ass
0 terminated ASS/SSA compatible event line.
Definition: avcodec.h:2079
av_image_check_size2
int av_image_check_size2(unsigned int w, unsigned int h, int64_t max_pixels, enum AVPixelFormat pix_fmt, int log_offset, void *log_ctx)
Check if the given dimension of an image is valid, meaning that all bytes of a plane of an image with...
Definition: imgutils.c:289
ff_frame_new_side_data_from_buf
int ff_frame_new_side_data_from_buf(const AVCodecContext *avctx, AVFrame *frame, enum AVFrameSideDataType type, AVBufferRef **buf)
Similar to ff_frame_new_side_data, but using an existing buffer ref.
Definition: decode.c:2152
avsubtitle_free
void avsubtitle_free(AVSubtitle *sub)
Free all allocated data in the given subtitle struct.
Definition: avcodec.c:412
av_refstruct_allocz
static void * av_refstruct_allocz(size_t size)
Equivalent to av_refstruct_alloc_ext(size, 0, NULL, NULL)
Definition: refstruct.h:105
AVHWDeviceContext
This struct aggregates all the (hardware/vendor-specific) "high-level" state, i.e.
Definition: hwcontext.h:63
av_frame_alloc
AVFrame * av_frame_alloc(void)
Allocate an AVFrame and set its fields to default values.
Definition: frame.c:52
AVCodecContext::get_buffer2
int(* get_buffer2)(struct AVCodecContext *s, AVFrame *frame, int flags)
This callback is called at the beginning of each frame to get data buffer(s) for it.
Definition: avcodec.h:1200
GET_UTF8
#define GET_UTF8(val, GET_BYTE, ERROR)
Convert a UTF-8 character (up to 4 bytes) to its 32-bit UCS-4 encoded form.
Definition: common.h:488
avcodec_decode_subtitle2
int avcodec_decode_subtitle2(AVCodecContext *avctx, AVSubtitle *sub, int *got_sub_ptr, const AVPacket *avpkt)
Decode a subtitle message.
Definition: decode.c:909
ff_decode_content_light_new_ext
int ff_decode_content_light_new_ext(const AVCodecContext *avctx, AVFrameSideData ***sd, int *nb_sd, AVContentLightMetadata **clm)
Same as ff_decode_content_light_new, but taking a AVFrameSideData array directly instead of an AVFram...
Definition: decode.c:2206
avassert.h
FF_CODEC_CAP_USES_PROGRESSFRAMES
#define FF_CODEC_CAP_USES_PROGRESSFRAMES
The decoder might make use of the ProgressFrame API.
Definition: codec_internal.h:68
AVCodecContext::color_primaries
enum AVColorPrimaries color_primaries
Chromaticity coordinates of the source primaries.
Definition: avcodec.h:645
AV_PKT_DATA_PARAM_CHANGE
@ AV_PKT_DATA_PARAM_CHANGE
An AV_PKT_DATA_PARAM_CHANGE side data packet is laid out as follows:
Definition: packet.h:69
pkt
AVPacket * pkt
Definition: movenc.c:60
AV_LOG_ERROR
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered.
Definition: log.h:210
AVFrameSideData::size
size_t size
Definition: frame.h:285
FF_ARRAY_ELEMS
#define FF_ARRAY_ELEMS(a)
Definition: sinewin_tablegen.c:29
av_cold
#define av_cold
Definition: attributes.h:90
ff_decode_receive_frame
int ff_decode_receive_frame(AVCodecContext *avctx, AVFrame *frame)
avcodec_receive_frame() implementation for decoders.
Definition: decode.c:791
AV_FRAME_FLAG_KEY
#define AV_FRAME_FLAG_KEY
A flag to mark frames that are keyframes.
Definition: frame.h:642
emms_c
#define emms_c()
Definition: emms.h:63
ff_progress_frame_ref
void ff_progress_frame_ref(ProgressFrame *dst, const ProgressFrame *src)
Set dst->f to src->f and make dst a co-owner of src->f.
Definition: decode.c:1888
AV_SIDE_DATA_PARAM_CHANGE_DIMENSIONS
@ AV_SIDE_DATA_PARAM_CHANGE_DIMENSIONS
Definition: packet.h:636
AVCodecContext::side_data_prefer_packet
int * side_data_prefer_packet
Decoding only.
Definition: avcodec.h:1908
stereo3d.h
ff_hwaccel_frame_priv_alloc
int ff_hwaccel_frame_priv_alloc(AVCodecContext *avctx, void **hwaccel_picture_private)
Allocate a hwaccel frame private data if the provided avctx uses a hwaccel method that needs it.
Definition: decode.c:2266
get_subtitle_defaults
static void get_subtitle_defaults(AVSubtitle *sub)
Definition: decode.c:822
FrameDecodeData::post_process_opaque
void * post_process_opaque
Definition: decode.h:45
av_new_packet
int av_new_packet(AVPacket *pkt, int size)
Allocate the payload of a packet and initialize its fields with default values.
Definition: packet.c:99
validate_avframe_allocation
static void validate_avframe_allocation(AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:1611
AVCodecInternal::buffer_pkt
AVPacket * buffer_pkt
Temporary buffers for newly received or not yet output packets/frames.
Definition: internal.h:144
av_bsf_flush
void av_bsf_flush(AVBSFContext *ctx)
Reset the internal bitstream filter state.
Definition: bsf.c:190
AV_CEIL_RSHIFT
#define AV_CEIL_RSHIFT(a, b)
Definition: common.h:60
FFHWAccel::priv_data_size
int priv_data_size
Size of the private data to allocate in AVCodecInternal.hwaccel_priv_data.
Definition: hwaccel_internal.h:114
AVCodecContext::nb_decoded_side_data
int nb_decoded_side_data
Definition: avcodec.h:1925
AV_GET_BUFFER_FLAG_REF
#define AV_GET_BUFFER_FLAG_REF
The decoder will keep a reference to the frame and may reuse it later.
Definition: avcodec.h:411
AVMEDIA_TYPE_AUDIO
@ AVMEDIA_TYPE_AUDIO
Definition: avutil.h:201
ff_thread_get_buffer
int ff_thread_get_buffer(AVCodecContext *avctx, AVFrame *f, int flags)
Wrapper around get_buffer() for frame-multithreaded codecs.
Definition: pthread_frame.c:1048
av_assert0
#define av_assert0(cond)
assert() equivalent, that is always enabled.
Definition: avassert.h:41
AVHWDeviceType
AVHWDeviceType
Definition: hwcontext.h:27
AVCodecDescriptor::type
enum AVMediaType type
Definition: codec_desc.h:40
av_refstruct_alloc_ext
static void * av_refstruct_alloc_ext(size_t size, unsigned flags, void *opaque, void(*free_cb)(AVRefStructOpaque opaque, void *obj))
A wrapper around av_refstruct_alloc_ext_c() for the common case of a non-const qualified opaque.
Definition: refstruct.h:94
av_exif_clone_ifd
AVExifMetadata * av_exif_clone_ifd(const AVExifMetadata *ifd)
Allocates a duplicate of the provided EXIF metadata struct.
Definition: exif.c:1143
AV_LOG_DEBUG
#define AV_LOG_DEBUG
Stuff which is only useful for libav* developers.
Definition: log.h:231
AVPacketSideData::data
uint8_t * data
Definition: packet.h:410
AVRefStructPool
AVRefStructPool is an API for a thread-safe pool of objects managed via the RefStruct API.
Definition: refstruct.c:183
ff_progress_frame_unref
void ff_progress_frame_unref(ProgressFrame *f)
Give up a reference to the underlying frame contained in a ProgressFrame and reset the ProgressFrame,...
Definition: decode.c:1896
decode.h
AVBSFContext::time_base_in
AVRational time_base_in
The timebase used for the timestamps of the input packets.
Definition: bsf.h:102
av_rescale_q
int64_t av_rescale_q(int64_t a, AVRational bq, AVRational cq)
Rescale a 64-bit integer by 2 rational numbers.
Definition: mathematics.c:142
AVCodecHWConfig::pix_fmt
enum AVPixelFormat pix_fmt
For decoders, a hardware pixel format which that decoder may be able to decode to if suitable hardwar...
Definition: codec.h:339
AVSubtitle::pts
int64_t pts
Same as packet pts, in AV_TIME_BASE.
Definition: avcodec.h:2088
av_csp_primaries_id_from_desc
enum AVColorPrimaries av_csp_primaries_id_from_desc(const AVColorPrimariesDesc *prm)
Detects which enum AVColorPrimaries constant corresponds to the given complete gamut description.
Definition: csp.c:110
AVCodecContext::max_pixels
int64_t max_pixels
The number of pixels per image to maximally accept.
Definition: avcodec.h:1782
AV_PKT_DATA_LCEVC
@ AV_PKT_DATA_LCEVC
Raw LCEVC payload data, as a uint8_t array, with NAL emulation bytes intact.
Definition: packet.h:346
av_hwdevice_get_type_name
const char * av_hwdevice_get_type_name(enum AVHWDeviceType type)
Get the string name of an AVHWDeviceType.
Definition: hwcontext.c:120
progress_frame_pool_init_cb
static av_cold int progress_frame_pool_init_cb(AVRefStructOpaque opaque, void *obj)
Definition: decode.c:1930
AVPacket::opaque
void * opaque
for some private data of the user
Definition: packet.h:583
ProgressInternal
Definition: decode.c:1848
AVCOL_PRI_UNSPECIFIED
@ AVCOL_PRI_UNSPECIFIED
Definition: pixfmt.h:639
AVCodecHWConfigInternal::hwaccel
const struct FFHWAccel * hwaccel
If this configuration uses a hwaccel, a pointer to it.
Definition: hwconfig.h:35
check_progress_consistency
static void check_progress_consistency(const ProgressFrame *f)
Definition: decode.c:1853
av_content_light_metadata_alloc
AVContentLightMetadata * av_content_light_metadata_alloc(size_t *size)
Allocate an AVContentLightMetadata structure and set its fields to default values.
Definition: mastering_display_metadata.c:72
FFCodec::decode
int(* decode)(struct AVCodecContext *avctx, struct AVFrame *frame, int *got_frame_ptr, struct AVPacket *avpkt)
Decode to an AVFrame.
Definition: codec_internal.h:201
tmp
static uint8_t tmp[40]
Definition: aes_ctr.c:52
discard_samples
static int discard_samples(AVCodecContext *avctx, AVFrame *frame, int64_t *discarded_samples)
Definition: decode.c:313
ff_decode_get_hw_frames_ctx
int ff_decode_get_hw_frames_ctx(AVCodecContext *avctx, enum AVHWDeviceType dev_type)
Make sure avctx.hw_frames_ctx is set.
Definition: decode.c:1043
ff_decode_mastering_display_new
int ff_decode_mastering_display_new(const AVCodecContext *avctx, AVFrame *frame, AVMasteringDisplayMetadata **mdm)
Wrapper around av_mastering_display_metadata_create_side_data(), which rejects side data overridden b...
Definition: decode.c:2193
DecodeContext::draining_started
int draining_started
The caller has submitted a NULL packet on input.
Definition: decode.c:84
ff_thread_get_packet
#define ff_thread_get_packet(avctx, pkt)
Definition: decode.c:216
AVCodecDescriptor::props
int props
Codec properties, a combination of AV_CODEC_PROP_* flags.
Definition: codec_desc.h:54
if
if(ret)
Definition: filter_design.txt:179
AVCodecContext::sub_charenc
char * sub_charenc
Character encoding of the input subtitles file.
Definition: avcodec.h:1711
ff_decode_internal_alloc
AVCodecInternal * ff_decode_internal_alloc(void)
Definition: decode.c:2313
AV_CODEC_FLAG2_SKIP_MANUAL
#define AV_CODEC_FLAG2_SKIP_MANUAL
Do not skip samples and export skip information as frame side data.
Definition: avcodec.h:368
AV_CODEC_PROP_INTRA_ONLY
#define AV_CODEC_PROP_INTRA_ONLY
Codec uses only intra compression.
Definition: codec_desc.h:72
AVCodecInternal::progress_frame_pool
struct AVRefStructPool * progress_frame_pool
Definition: internal.h:71
av_exif_get_tag_id
int32_t av_exif_get_tag_id(const char *name)
Retrieves the tag ID associated with the provided tag string name.
Definition: exif.c:225
ff_thread_progress_await
void ff_thread_progress_await(const ThreadProgress *pro_c, int n)
This function is a no-op in no-op mode; otherwise it waits until other threads have reached a certain...
Definition: threadprogress.c:64
AV_PKT_DATA_EXIF
@ AV_PKT_DATA_EXIF
Extensible image file format metadata.
Definition: packet.h:369
ff_decode_exif_attach_ifd
int ff_decode_exif_attach_ifd(AVCodecContext *avctx, AVFrame *frame, const AVExifMetadata *ifd)
Definition: decode.c:2410
av_bsf_init
int av_bsf_init(AVBSFContext *ctx)
Prepare the filter for use, after all the parameters and options have been set.
Definition: bsf.c:149
utf8_check
static int utf8_check(const uint8_t *str)
Definition: decode.c:890
update_frame_props
static void update_frame_props(AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:1659
NULL
#define NULL
Definition: coverity.c:32
AVERROR_PATCHWELCOME
#define AVERROR_PATCHWELCOME
Not yet implemented in FFmpeg, patches welcome.
Definition: error.h:64
ff_decode_flush_buffers
void ff_decode_flush_buffers(AVCodecContext *avctx)
Definition: decode.c:2295
AVCodecContext::apply_cropping
int apply_cropping
Video decoding only.
Definition: avcodec.h:1809
AVCodecContext::color_range
enum AVColorRange color_range
MPEG vs JPEG YUV range.
Definition: avcodec.h:669
av_buffer_unref
void av_buffer_unref(AVBufferRef **buf)
Free a given reference and automatically free the buffer if there are no more references to it.
Definition: buffer.c:139
AV_EXIF_TIFF_HEADER
@ AV_EXIF_TIFF_HEADER
The TIFF header starts with 0x49492a00, or 0x4d4d002a.
Definition: exif.h:63
hwaccel_internal.h
av_bsf_receive_packet
int av_bsf_receive_packet(AVBSFContext *ctx, AVPacket *pkt)
Retrieve a filtered packet.
Definition: bsf.c:230
AVCodec::type
enum AVMediaType type
Definition: codec.h:185
AVRational
Rational number (pair of numerator and denominator).
Definition: rational.h:58
AVCodecContext::nb_coded_side_data
int nb_coded_side_data
Definition: avcodec.h:1764
AVCodecContext::internal
struct AVCodecInternal * internal
Private context used for internal data.
Definition: avcodec.h:466
av_frame_side_data_remove
void av_frame_side_data_remove(AVFrameSideData ***sd, int *nb_sd, enum AVFrameSideDataType type)
Remove and free all side data instances of the given type from an array.
Definition: side_data.c:102
FF_CODEC_CB_TYPE_DECODE_SUB
@ FF_CODEC_CB_TYPE_DECODE_SUB
Definition: codec_internal.h:112
AVPALETTE_SIZE
#define AVPALETTE_SIZE
Definition: pixfmt.h:32
AV_PICTURE_TYPE_I
@ AV_PICTURE_TYPE_I
Intra.
Definition: avutil.h:278
ff_lcevc_unref
void ff_lcevc_unref(void *opaque)
Definition: lcevcdec.c:324
AV_CODEC_PROP_BITMAP_SUB
#define AV_CODEC_PROP_BITMAP_SUB
Subtitle codec is bitmap based Decoded AVSubtitle data can be read from the AVSubtitleRect->pict fiel...
Definition: codec_desc.h:103
AV_FRAME_DATA_ICC_PROFILE
@ AV_FRAME_DATA_ICC_PROFILE
The data contains an ICC profile as an opaque octet buffer following the format described by ISO 1507...
Definition: frame.h:144
av_refstruct_pool_alloc_ext
static AVRefStructPool * av_refstruct_pool_alloc_ext(size_t size, unsigned flags, void *opaque, int(*init_cb)(AVRefStructOpaque opaque, void *obj), void(*reset_cb)(AVRefStructOpaque opaque, void *obj), void(*free_entry_cb)(AVRefStructOpaque opaque, void *obj), void(*free_cb)(AVRefStructOpaque opaque))
A wrapper around av_refstruct_pool_alloc_ext_c() for the common case of a non-const qualified opaque.
Definition: refstruct.h:258
AV_FRAME_DATA_MASTERING_DISPLAY_METADATA
@ AV_FRAME_DATA_MASTERING_DISPLAY_METADATA
Mastering display metadata associated with a video frame.
Definition: frame.h:120
av_refstruct_pool_get
void * av_refstruct_pool_get(AVRefStructPool *pool)
Get an object from the pool, reusing an old one from the pool when available.
Definition: refstruct.c:297
FFLCEVCFrame::lcevc
FFLCEVCContext * lcevc
Definition: lcevcdec.h:39
AV_CODEC_HW_CONFIG_METHOD_INTERNAL
@ AV_CODEC_HW_CONFIG_METHOD_INTERNAL
The codec supports this format by some internal method.
Definition: codec.h:318
AV_REFSTRUCT_POOL_FLAG_FREE_ON_INIT_ERROR
#define AV_REFSTRUCT_POOL_FLAG_FREE_ON_INIT_ERROR
If this flag is set and both init_cb and free_entry_cb callbacks are provided, then free_cb will be c...
Definition: refstruct.h:213
DecodeContext::pts_correction_last_dts
int64_t pts_correction_last_dts
PTS of the last frame.
Definition: decode.c:89
AV_CODEC_FLAG2_ICC_PROFILES
#define AV_CODEC_FLAG2_ICC_PROFILES
Generate/parse ICC profiles on encode/decode, as appropriate for the type of file.
Definition: avcodec.h:378
ff_icc_profile_detect_transfer
int ff_icc_profile_detect_transfer(FFIccContext *s, cmsHPROFILE profile, enum AVColorTransferCharacteristic *out_trc)
Attempt detecting the transfer characteristic that best approximates the transfer function encoded by...
Definition: fflcms2.c:302
av_packet_ref
int av_packet_ref(AVPacket *dst, const AVPacket *src)
Setup a new reference to the data described by a given packet.
Definition: packet.c:441
AVCodecInternal::draining_done
int draining_done
Definition: internal.h:146
FF_HW_HAS_CB
#define FF_HW_HAS_CB(avctx, function)
Definition: hwaccel_internal.h:179
UTF8_MAX_BYTES
#define UTF8_MAX_BYTES
Definition: decode.c:828
AVPACKET_IS_EMPTY
#define AVPACKET_IS_EMPTY(pkt)
Definition: packet_internal.h:26
AV_FRAME_DATA_AFD
@ AV_FRAME_DATA_AFD
Active Format Description data consisting of a single byte as specified in ETSI TS 101 154 using AVAc...
Definition: frame.h:90
ff_sd_global_map
const SideDataMap ff_sd_global_map[]
A map between packet and frame side data types.
Definition: avcodec.c:58
av_exif_remove_entry
int av_exif_remove_entry(void *logctx, AVExifMetadata *ifd, uint16_t id, int flags)
Remove an entry from the provided EXIF metadata struct.
Definition: exif.c:1138
AVCOL_RANGE_UNSPECIFIED
@ AVCOL_RANGE_UNSPECIFIED
Definition: pixfmt.h:733
AV_CODEC_EXPORT_DATA_ENHANCEMENTS
#define AV_CODEC_EXPORT_DATA_ENHANCEMENTS
Decoding only.
Definition: avcodec.h:406
c
Undefined Behavior In the C some operations are like signed integer dereferencing freed accessing outside allocated Undefined Behavior must not occur in a C it is not safe even if the output of undefined operations is unused The unsafety may seem nit picking but Optimizing compilers have in fact optimized code on the assumption that no undefined Behavior occurs Optimizing code based on wrong assumptions can and has in some cases lead to effects beyond the output of computations The signed integer overflow problem in speed critical code Code which is highly optimized and works with signed integers sometimes has the problem that often the output of the computation does not c
Definition: undefined.txt:32
AVCodecInternal::last_pkt_props
AVPacket * last_pkt_props
Properties (timestamps+side data) extracted from the last packet passed for decoding.
Definition: internal.h:90
av_buffer_create
AVBufferRef * av_buffer_create(uint8_t *data, size_t size, void(*free)(void *opaque, uint8_t *data), void *opaque, int flags)
Create an AVBuffer from an existing array.
Definition: buffer.c:55
AV_PKT_DATA_NB
@ AV_PKT_DATA_NB
The number of side data types.
Definition: packet.h:379
progress_frame_pool_free_entry_cb
static av_cold void progress_frame_pool_free_entry_cb(AVRefStructOpaque opaque, void *obj)
Definition: decode.c:1955
AVExifEntry::value
union AVExifEntry::@120 value
attribute_align_arg
#define attribute_align_arg
Definition: internal.h:50
av_codec_is_decoder
int av_codec_is_decoder(const AVCodec *codec)
Definition: utils.c:85
AVCodecContext::lowres
int lowres
low resolution decoding, 1-> 1/2 size, 2->1/4 size
Definition: avcodec.h:1697
f
f
Definition: af_crystalizer.c:122
AVCodecContext::flags2
int flags2
AV_CODEC_FLAG2_*.
Definition: avcodec.h:495
ff_get_buffer
int ff_get_buffer(AVCodecContext *avctx, AVFrame *frame, int flags)
Get a buffer for a frame.
Definition: decode.c:1720
SideDataMap::packet
enum AVPacketSideDataType packet
Definition: avcodec_internal.h:35
AV_CODEC_CAP_DR1
#define AV_CODEC_CAP_DR1
Codec uses get_buffer() or get_encode_buffer() for allocating buffers and supports custom allocators.
Definition: codec.h:52
AV_CODEC_FLAG_GRAY
#define AV_CODEC_FLAG_GRAY
Only decode/encode grayscale.
Definition: avcodec.h:302
AVPacket::size
int size
Definition: packet.h:559
ff_progress_frame_alloc
int ff_progress_frame_alloc(AVCodecContext *avctx, ProgressFrame *f)
This function sets up the ProgressFrame, i.e.
Definition: decode.c:1859
dc
Tag MUST be and< 10hcoeff half pel interpolation filter coefficients, hcoeff[0] are the 2 middle coefficients[1] are the next outer ones and so on, resulting in a filter like:...eff[2], hcoeff[1], hcoeff[0], hcoeff[0], hcoeff[1], hcoeff[2] ... the sign of the coefficients is not explicitly stored but alternates after each coeff and coeff[0] is positive, so ...,+,-,+,-,+,+,-,+,-,+,... hcoeff[0] is not explicitly stored but found by subtracting the sum of all stored coefficients with signs from 32 hcoeff[0]=32 - hcoeff[1] - hcoeff[2] - ... a good choice for hcoeff and htaps is htaps=6 hcoeff={40,-10, 2} an alternative which requires more computations at both encoder and decoder side and may or may not be better is htaps=8 hcoeff={42,-14, 6,-2}ref_frames minimum of the number of available reference frames and max_ref_frames for example the first frame after a key frame always has ref_frames=1spatial_decomposition_type wavelet type 0 is a 9/7 symmetric compact integer wavelet 1 is a 5/3 symmetric compact integer wavelet others are reserved stored as delta from last, last is reset to 0 if always_reset||keyframeqlog quality(logarithmic quantizer scale) stored as delta from last, last is reset to 0 if always_reset||keyframemv_scale stored as delta from last, last is reset to 0 if always_reset||keyframe FIXME check that everything works fine if this changes between framesqbias dequantization bias stored as delta from last, last is reset to 0 if always_reset||keyframeblock_max_depth maximum depth of the block tree stored as delta from last, last is reset to 0 if always_reset||keyframequant_table quantization tableHighlevel bitstream structure:==============================--------------------------------------------|Header|--------------------------------------------|------------------------------------|||Block0||||split?||||yes no||||......... intra?||||:Block01 :yes no||||:Block02 :....... ..........||||:Block03 ::y DC ::ref index:||||:Block04 ::cb DC ::motion x :||||......... :cr DC ::motion y :||||....... ..........|||------------------------------------||------------------------------------|||Block1|||...|--------------------------------------------|------------ ------------ ------------|||Y subbands||Cb subbands||Cr subbands||||--- ---||--- ---||--- ---|||||LL0||HL0||||LL0||HL0||||LL0||HL0|||||--- ---||--- ---||--- ---||||--- ---||--- ---||--- ---|||||LH0||HH0||||LH0||HH0||||LH0||HH0|||||--- ---||--- ---||--- ---||||--- ---||--- ---||--- ---|||||HL1||LH1||||HL1||LH1||||HL1||LH1|||||--- ---||--- ---||--- ---||||--- ---||--- ---||--- ---|||||HH1||HL2||||HH1||HL2||||HH1||HL2|||||...||...||...|||------------ ------------ ------------|--------------------------------------------Decoding process:=================------------|||Subbands|------------||||------------|Intra DC||||LL0 subband prediction ------------|\ Dequantization ------------------- \||Reference frames|\ IDWT|------- -------|Motion \|||Frame 0||Frame 1||Compensation . OBMC v -------|------- -------|--------------. \------> Frame n output Frame Frame<----------------------------------/|...|------------------- Range Coder:============Binary Range Coder:------------------- The implemented range coder is an adapted version based upon "Range encoding: an algorithm for removing redundancy from a digitised message." by G. N. N. Martin. The symbols encoded by the Snow range coder are bits(0|1). The associated probabilities are not fix but change depending on the symbol mix seen so far. bit seen|new state ---------+----------------------------------------------- 0|256 - state_transition_table[256 - old_state];1|state_transition_table[old_state];state_transition_table={ 0, 0, 0, 0, 0, 0, 0, 0, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 56, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, 68, 69, 70, 71, 72, 73, 74, 75, 75, 76, 77, 78, 79, 80, 81, 82, 83, 84, 85, 86, 87, 88, 89, 90, 91, 92, 93, 94, 94, 95, 96, 97, 98, 99, 100, 101, 102, 103, 104, 105, 106, 107, 108, 109, 110, 111, 112, 113, 114, 114, 115, 116, 117, 118, 119, 120, 121, 122, 123, 124, 125, 126, 127, 128, 129, 130, 131, 132, 133, 133, 134, 135, 136, 137, 138, 139, 140, 141, 142, 143, 144, 145, 146, 147, 148, 149, 150, 151, 152, 152, 153, 154, 155, 156, 157, 158, 159, 160, 161, 162, 163, 164, 165, 166, 167, 168, 169, 170, 171, 171, 172, 173, 174, 175, 176, 177, 178, 179, 180, 181, 182, 183, 184, 185, 186, 187, 188, 189, 190, 190, 191, 192, 194, 194, 195, 196, 197, 198, 199, 200, 201, 202, 202, 204, 205, 206, 207, 208, 209, 209, 210, 211, 212, 213, 215, 215, 216, 217, 218, 219, 220, 220, 222, 223, 224, 225, 226, 227, 227, 229, 229, 230, 231, 232, 234, 234, 235, 236, 237, 238, 239, 240, 241, 242, 243, 244, 245, 246, 247, 248, 248, 0, 0, 0, 0, 0, 0, 0};FIXME Range Coding of integers:------------------------- FIXME Neighboring Blocks:===================left and top are set to the respective blocks unless they are outside of the image in which case they are set to the Null block top-left is set to the top left block unless it is outside of the image in which case it is set to the left block if this block has no larger parent block or it is at the left side of its parent block and the top right block is not outside of the image then the top right block is used for top-right else the top-left block is used Null block y, cb, cr are 128 level, ref, mx and my are 0 Motion Vector Prediction:=========================1. the motion vectors of all the neighboring blocks are scaled to compensate for the difference of reference frames scaled_mv=(mv *(256 *(current_reference+1)/(mv.reference+1))+128)> the median of the scaled top and top right vectors is used as motion vector prediction the used motion vector is the sum of the predictor and(mvx_diff, mvy_diff) *mv_scale Intra DC Prediction block[y][x] dc[1]
Definition: snow.txt:400
byte
uint64_t_TMPL AV_WL64 unsigned int_TMPL AV_WL32 unsigned int_TMPL AV_WL24 unsigned int_TMPL AV_WL16 uint64_t_TMPL AV_WB64 unsigned int_TMPL AV_WB32 unsigned int_TMPL AV_WB24 unsigned int_TMPL AV_WB16 unsigned int_TMPL byte
Definition: bytestream.h:99
ff_decode_exif_attach_buffer
int ff_decode_exif_attach_buffer(AVCodecContext *avctx, AVFrame *frame, AVBufferRef **pbuf, enum AVExifHeaderMode header_mode)
Attach the data buffer to the frame.
Definition: decode.c:2416
AVCodecContext::extra_hw_frames
int extra_hw_frames
Video decoding only.
Definition: avcodec.h:1498
codec_internal.h
FrameDecodeData::post_process
int(* post_process)(void *logctx, AVFrame *frame)
The callback to perform some delayed processing on the frame right before it is returned to the calle...
Definition: decode.h:44
AVCodecInternal::hwaccel_priv_data
void * hwaccel_priv_data
hwaccel-specific private data
Definition: internal.h:130
decode_data_free
static void decode_data_free(AVRefStructOpaque unused, void *obj)
Definition: decode.c:1632
dst
uint8_t ptrdiff_t const uint8_t ptrdiff_t int intptr_t intptr_t int int16_t * dst
Definition: dsp.h:87
av_frame_copy
int av_frame_copy(AVFrame *dst, const AVFrame *src)
Copy the frame data from src to dst.
Definition: frame.c:711
av_bsf_send_packet
int av_bsf_send_packet(AVBSFContext *ctx, AVPacket *pkt)
Submit a packet for filtering.
Definition: bsf.c:202
AV_PKT_DATA_DYNAMIC_HDR10_PLUS
@ AV_PKT_DATA_DYNAMIC_HDR10_PLUS
HDR10+ dynamic metadata associated with a video frame.
Definition: packet.h:296
AVExifEntry::id
uint16_t id
Definition: exif.h:86
av_err2str
#define av_err2str(errnum)
Convenience macro, the return value should be used only directly in function arguments but never stan...
Definition: error.h:122
for
for(k=2;k<=8;++k)
Definition: h264pred_template.c:424
ff_codec_is_decoder
static int ff_codec_is_decoder(const AVCodec *avcodec)
Internal version of av_codec_is_decoder().
Definition: codec_internal.h:308
FF_CODEC_CAP_SETS_FRAME_PROPS
#define FF_CODEC_CAP_SETS_FRAME_PROPS
Codec handles output frame properties internally instead of letting the internal logic derive them fr...
Definition: codec_internal.h:77
AVCodecInternal::bsf
struct AVBSFContext * bsf
Definition: internal.h:84
AVCodecContext::sample_fmt
enum AVSampleFormat sample_fmt
audio sample format
Definition: avcodec.h:1031
AV_FRAME_DATA_LCEVC
@ AV_FRAME_DATA_LCEVC
Raw LCEVC payload data, as a uint8_t array, with NAL emulation bytes intact.
Definition: frame.h:236
AVCodecContext::pkt_timebase
AVRational pkt_timebase
Timebase in which pkt_dts/pts and AVPacket.dts/pts are expressed.
Definition: avcodec.h:542
AV_SAMPLE_FMT_NONE
@ AV_SAMPLE_FMT_NONE
Definition: samplefmt.h:56
FF_CODEC_CAP_EXPORTS_CROPPING
#define FF_CODEC_CAP_EXPORTS_CROPPING
The decoder sets the cropping fields in the output frames manually.
Definition: codec_internal.h:60
size
int size
Definition: twinvq_data.h:10344
AV_NOPTS_VALUE
#define AV_NOPTS_VALUE
Undefined timestamp value.
Definition: avutil.h:247
frame_validate
static int frame_validate(AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:765
ff_frame_new_side_data
int ff_frame_new_side_data(const AVCodecContext *avctx, AVFrame *frame, enum AVFrameSideDataType type, size_t size, AVFrameSideData **psd)
Wrapper around av_frame_new_side_data, which rejects side data overridden by the demuxer.
Definition: decode.c:2114
ff_frame_new_side_data_from_buf_ext
int ff_frame_new_side_data_from_buf_ext(const AVCodecContext *avctx, AVFrameSideData ***sd, int *nb_sd, enum AVFrameSideDataType type, AVBufferRef **buf)
Same as ff_frame_new_side_data_from_buf, but taking a AVFrameSideData array directly instead of an AV...
Definition: decode.c:2133
side_data_pref
static int side_data_pref(const AVCodecContext *avctx, AVFrameSideData ***sd, int *nb_sd, enum AVFrameSideDataType type)
Check side data preference and clear existing side data from frame if needed.
Definition: decode.c:2098
AVFrameSideData::data
uint8_t * data
Definition: frame.h:284
DecodeContext::height
int height
Definition: decode.c:100
ffcodec
static const av_always_inline FFCodec * ffcodec(const AVCodec *codec)
Definition: codec_internal.h:289
av_frame_is_writable
int av_frame_is_writable(AVFrame *frame)
Check if the frame data is writable.
Definition: frame.c:535
fill_frame_props
static int fill_frame_props(const AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:557
AVCHROMA_LOC_UNSPECIFIED
@ AVCHROMA_LOC_UNSPECIFIED
Definition: pixfmt.h:787
AVFrame::format
int format
format of the frame, -1 if unknown or unset Values correspond to enum AVPixelFormat for video frames,...
Definition: frame.h:514
AVCodecHWConfigInternal
Definition: hwconfig.h:25
AV_PICTURE_TYPE_NONE
@ AV_PICTURE_TYPE_NONE
Undefined.
Definition: avutil.h:277
av_buffer_make_writable
int av_buffer_make_writable(AVBufferRef **pbuf)
Create a writable reference from a given buffer reference, avoiding data copy if possible.
Definition: buffer.c:165
AVSubtitle::end_display_time
uint32_t end_display_time
Definition: avcodec.h:2085
frame.h
av_packet_unpack_dictionary
int av_packet_unpack_dictionary(const uint8_t *data, size_t size, AVDictionary **dict)
Unpack a dictionary from side_data.
Definition: packet.c:353
av_frame_remove_side_data
void av_frame_remove_side_data(AVFrame *frame, enum AVFrameSideDataType type)
Remove and free all side data instances of the given type.
Definition: frame.c:725
AVPacket::dts
int64_t dts
Decompression timestamp in AVStream->time_base units; the time at which the packet is decompressed.
Definition: packet.h:557
av_refstruct_ref
void * av_refstruct_ref(void *obj)
Create a new reference to an object managed via this API, i.e.
Definition: refstruct.c:140
ProgressInternal::progress
ThreadProgress progress
Definition: decode.c:1849
AV_PRIMARY_EYE_NONE
@ AV_PRIMARY_EYE_NONE
Neither eye.
Definition: stereo3d.h:178
av_content_light_metadata_create_side_data
AVContentLightMetadata * av_content_light_metadata_create_side_data(AVFrame *frame)
Allocate a complete AVContentLightMetadata and add it to the frame.
Definition: mastering_display_metadata.c:82
offset
it s the only field you need to keep assuming you have a context There is some magic you don t need to care about around this just let it vf offset
Definition: writing_filters.txt:86
SideDataMap::frame
enum AVFrameSideDataType frame
Definition: avcodec_internal.h:36
AVPacket::flags
int flags
A combination of AV_PKT_FLAG values.
Definition: packet.h:564
av_packet_alloc
AVPacket * av_packet_alloc(void)
Allocate an AVPacket and set its fields to default values.
Definition: packet.c:64
ff_progress_frame_await
void ff_progress_frame_await(const ProgressFrame *f, int n)
Wait for earlier decoding threads to finish reference frames.
Definition: decode.c:1918
AVCodecInternal
Definition: internal.h:49
FFCodec::hw_configs
const struct AVCodecHWConfigInternal *const * hw_configs
Array of pointers to hardware configurations supported by the codec, or NULL if no hardware supported...
Definition: codec_internal.h:269
DecodeContext::side_data_pref_mask
uint64_t side_data_pref_mask
DTS of the last frame.
Definition: decode.c:95
FF_THREAD_NO_FRAME_THREADING
@ FF_THREAD_NO_FRAME_THREADING
Definition: thread.h:63
packet_side_data_get
static const AVPacketSideData * packet_side_data_get(const AVPacketSideData *sd, int nb_sd, enum AVPacketSideDataType type)
Definition: decode.c:1342
AVCodecContext::nb_side_data_prefer_packet
unsigned nb_side_data_prefer_packet
Number of entries in side_data_prefer_packet.
Definition: avcodec.h:1912
detect_colorspace
static int detect_colorspace(av_unused AVCodecContext *c, av_unused AVFrame *f)
Definition: decode.c:551
FF_THREAD_FRAME
#define FF_THREAD_FRAME
Decode more than one frame at once.
Definition: avcodec.h:1572
AV_FRAME_DATA_SKIP_SAMPLES
@ AV_FRAME_DATA_SKIP_SAMPLES
Recommends skipping the specified number of samples.
Definition: frame.h:109
av_refstruct_unref
void av_refstruct_unref(void *objp)
Decrement the reference count of the underlying object and automatically free the object if there are...
Definition: refstruct.c:120
av_mastering_display_metadata_alloc_size
AVMasteringDisplayMetadata * av_mastering_display_metadata_alloc_size(size_t *size)
Allocate an AVMasteringDisplayMetadata structure and set its fields to default values.
Definition: mastering_display_metadata.c:44
AVHWAccel::name
const char * name
Name of the hardware accelerated codec.
Definition: avcodec.h:1949
AV_PKT_DATA_STRINGS_METADATA
@ AV_PKT_DATA_STRINGS_METADATA
A list of zero terminated key/value strings.
Definition: packet.h:169
emms.h
AVCodecInternal::is_frame_mt
int is_frame_mt
This field is set to 1 when frame threading is being used and the parent AVCodecContext of this AVCod...
Definition: internal.h:61
avcodec_send_packet
int attribute_align_arg avcodec_send_packet(AVCodecContext *avctx, const AVPacket *avpkt)
Supply raw packet data as input to a decoder.
Definition: decode.c:704
FFCodec::caps_internal
unsigned caps_internal
Internal codec capabilities FF_CODEC_CAP_*.
Definition: codec_internal.h:136
extract_packet_props
static int extract_packet_props(AVCodecInternal *avci, const AVPacket *pkt)
Definition: decode.c:169
uninit
static void uninit(AVBSFContext *ctx)
Definition: pcm_rechunk.c:68
av_packet_copy_props
int av_packet_copy_props(AVPacket *dst, const AVPacket *src)
Copy only "properties" fields from src to dst.
Definition: packet.c:396
AV_FRAME_DATA_CONTENT_LIGHT_LEVEL
@ AV_FRAME_DATA_CONTENT_LIGHT_LEVEL
Content light level (based on CTA-861.3).
Definition: frame.h:137
AVSubtitle::format
uint16_t format
Definition: avcodec.h:2083
i
#define i(width, name, range_min, range_max)
Definition: cbs_h2645.c:256
AVPacket::pts
int64_t pts
Presentation timestamp in AVStream->time_base units; the time at which the decompressed packet will b...
Definition: packet.h:551
av_frame_side_data_free
void av_frame_side_data_free(AVFrameSideData ***sd, int *nb_sd)
Free all side data entries and their contents, then zeroes out the values which the pointers are poin...
Definition: side_data.c:133
reget_buffer_internal
static int reget_buffer_internal(AVCodecContext *avctx, AVFrame *frame, int flags)
Definition: decode.c:1798
av_packet_get_side_data
uint8_t * av_packet_get_side_data(const AVPacket *pkt, enum AVPacketSideDataType type, size_t *size)
Get side information from packet.
Definition: packet.c:253
decode_receive_frame_internal
static int decode_receive_frame_internal(AVCodecContext *avctx, AVFrame *frame)
Definition: decode.c:644
internal.h
ff_decode_receive_frame_internal
int ff_decode_receive_frame_internal(AVCodecContext *avctx, AVFrame *frame)
Do the actual decoding and obtain a decoded frame from the decoder, if available.
Definition: decode.c:608
AVExifMetadata::entries
AVExifEntry * entries
Definition: exif.h:78
common.h
AVCodecInternal::in_pkt
AVPacket * in_pkt
This packet is used to hold the packet given to decoders implementing the .decode API; it is unused b...
Definition: internal.h:83
av_assert1
#define av_assert1(cond)
assert() equivalent, that does not lie in speed critical code.
Definition: avassert.h:57
ff_decode_preinit
int ff_decode_preinit(AVCodecContext *avctx)
Perform decoder initialization and validation.
Definition: decode.c:1963
ff_thread_progress_init
av_cold int ff_thread_progress_init(ThreadProgress *pro, int init_mode)
Initialize a ThreadProgress.
Definition: threadprogress.c:33
AV_FRAME_DATA_STEREO3D
@ AV_FRAME_DATA_STEREO3D
Stereoscopic 3d metadata.
Definition: frame.h:64
DecodeContext::avci
AVCodecInternal avci
Definition: decode.c:62
FFMIN
#define FFMIN(a, b)
Definition: macros.h:49
av_frame_move_ref
void av_frame_move_ref(AVFrame *dst, AVFrame *src)
Move everything contained in src to dst and reset src.
Definition: frame.c:523
av_frame_unref
void av_frame_unref(AVFrame *frame)
Unreference all the buffers referenced by frame and reset the frame fields.
Definition: frame.c:496
DecodeContext::lcevc
FFLCEVCContext * lcevc
Definition: decode.c:97
av_mallocz
void * av_mallocz(size_t size)
Allocate a memory block with alignment suitable for all memory accesses (including vectors if availab...
Definition: mem.c:256
AVExifMetadata::count
unsigned int count
Definition: exif.h:80
AVCodecContext::hw_device_ctx
AVBufferRef * hw_device_ctx
A reference to the AVHWDeviceContext describing the device which will be used by a hardware encoder/d...
Definition: avcodec.h:1475
av_buffer_replace
int av_buffer_replace(AVBufferRef **pdst, const AVBufferRef *src)
Ensure dst refers to the same data as src.
Definition: buffer.c:233
AVCodecContext::chroma_sample_location
enum AVChromaLocation chroma_sample_location
This defines the location of chroma samples.
Definition: avcodec.h:676
AVExifEntry::uint
uint64_t * uint
Definition: exif.h:109
AVMasteringDisplayMetadata
Mastering display metadata capable of representing the color volume of the display used to master the...
Definition: mastering_display_metadata.h:38
FF_CODEC_CAP_SETS_PKT_DTS
#define FF_CODEC_CAP_SETS_PKT_DTS
Decoders marked with FF_CODEC_CAP_SETS_PKT_DTS want to set AVFrame.pkt_dts manually.
Definition: codec_internal.h:49
exif.h
profile
int profile
Definition: mxfenc.c:2278
AVCOL_SPC_UNSPECIFIED
@ AVCOL_SPC_UNSPECIFIED
Definition: pixfmt.h:693
AVCodecContext::height
int height
Definition: avcodec.h:592
decode_simple_internal
static int decode_simple_internal(AVCodecContext *avctx, AVFrame *frame, int64_t *discarded_samples)
Definition: decode.c:411
AVCodecContext::pix_fmt
enum AVPixelFormat pix_fmt
Pixel format, see AV_PIX_FMT_xxx.
Definition: avcodec.h:631
AVCodecContext::hw_frames_ctx
AVBufferRef * hw_frames_ctx
A reference to the AVHWFramesContext describing the input (for encoding) or output (decoding) frames.
Definition: avcodec.h:1453
avcodec.h
FFCodec::decode_sub
int(* decode_sub)(struct AVCodecContext *avctx, struct AVSubtitle *sub, int *got_frame_ptr, const struct AVPacket *avpkt)
Decode subtitle data to an AVSubtitle.
Definition: codec_internal.h:209
FFCodec::cb
union FFCodec::@102 cb
AVCodecContext::sub_charenc_mode
int sub_charenc_mode
Subtitles character encoding mode.
Definition: avcodec.h:1719
AVHWFramesContext
This struct describes a set or pool of "hardware" frames (i.e.
Definition: hwcontext.h:118
AVCodecContext::frame_num
int64_t frame_num
Frame counter, set by libavcodec.
Definition: avcodec.h:1878
avcodec_get_hw_frames_parameters
int avcodec_get_hw_frames_parameters(AVCodecContext *avctx, AVBufferRef *device_ref, enum AVPixelFormat hw_pix_fmt, AVBufferRef **out_frames_ref)
Create and return a AVHWFramesContext with values adequate for hardware decoding.
Definition: decode.c:1094
ff_reget_buffer
int ff_reget_buffer(AVCodecContext *avctx, AVFrame *frame, int flags)
Identical in function to ff_get_buffer(), except it reuses the existing buffer if available.
Definition: decode.c:1840
ret
ret
Definition: filter_design.txt:187
AVHWDeviceContext::type
enum AVHWDeviceType type
This field identifies the underlying API used for hardware access.
Definition: hwcontext.h:75
AVALPHA_MODE_UNSPECIFIED
@ AVALPHA_MODE_UNSPECIFIED
Unknown alpha handling, or no alpha channel.
Definition: pixfmt.h:801
frame
these buffered frames must be flushed immediately if a new input produces new the filter must not call request_frame to get more It must just process the frame or queue it The task of requesting more frames is left to the filter s request_frame method or the application If a filter has several the filter must be ready for frames arriving randomly on any input any filter with several inputs will most likely require some kind of queuing mechanism It is perfectly acceptable to have a limited queue and to drop frames when the inputs are too unbalanced request_frame For filters that do not use the this method is called when a frame is wanted on an output For a it should directly call filter_frame on the corresponding output For a if there are queued frames already one of these frames should be pushed If the filter should request a frame on one of its repeatedly until at least one frame has been pushed Return or at least make progress towards producing a frame
Definition: filter_design.txt:265
AVHWFramesContext::device_ctx
AVHWDeviceContext * device_ctx
The parent AVHWDeviceContext.
Definition: hwcontext.h:137
AVCodecContext::strict_std_compliance
int strict_std_compliance
strictly follow the standard (MPEG-4, ...).
Definition: avcodec.h:1357
AV_CODEC_PROP_TEXT_SUB
#define AV_CODEC_PROP_TEXT_SUB
Subtitle codec is text based.
Definition: codec_desc.h:108
av_channel_layout_check
int av_channel_layout_check(const AVChannelLayout *channel_layout)
Check whether a channel layout is valid, i.e.
Definition: channel_layout.c:783
ff_thread_sync_ref
enum ThreadingStatus ff_thread_sync_ref(AVCodecContext *avctx, size_t offset)
Allows to synchronize objects whose lifetime is the whole decoding process among all frame threads.
Definition: decode.c:1924
hwaccel
static const char * hwaccel
Definition: ffplay.c:353
ff_decode_content_light_new
int ff_decode_content_light_new(const AVCodecContext *avctx, AVFrame *frame, AVContentLightMetadata **clm)
Wrapper around av_content_light_metadata_create_side_data(), which rejects side data overridden by th...
Definition: decode.c:2238
ff_thread_progress_destroy
av_cold void ff_thread_progress_destroy(ThreadProgress *pro)
Destroy a ThreadProgress.
Definition: threadprogress.c:44
AVPacket::side_data
AVPacketSideData * side_data
Additional packet data that can be provided by the container.
Definition: packet.h:569
AV_INPUT_BUFFER_PADDING_SIZE
#define AV_INPUT_BUFFER_PADDING_SIZE
Definition: defs.h:40
AV_RL32
uint64_t_TMPL AV_WL64 unsigned int_TMPL AV_RL32
Definition: bytestream.h:92
ff_progress_frame_replace
void ff_progress_frame_replace(ProgressFrame *dst, const ProgressFrame *src)
Do nothing if dst and src already refer to the same AVFrame; otherwise unreference dst and if src is ...
Definition: decode.c:1903
SIZE_SPECIFIER
#define SIZE_SPECIFIER
Definition: internal.h:129
apply_param_change
static int apply_param_change(AVCodecContext *avctx, const AVPacket *avpkt)
Definition: decode.c:108
ff_decode_frame_props
int ff_decode_frame_props(AVCodecContext *avctx, AVFrame *frame)
Set various frame properties from the codec context / packet data.
Definition: decode.c:1566
AV_FRAME_DATA_DYNAMIC_HDR_PLUS
@ AV_FRAME_DATA_DYNAMIC_HDR_PLUS
HDR dynamic metadata associated with a video frame.
Definition: frame.h:159
AVCodecContext
main external API structure.
Definition: avcodec.h:431
AVFrame::height
int height
Definition: frame.h:499
AVCodecContext::active_thread_type
int active_thread_type
Which multithreading methods are in use by the codec.
Definition: avcodec.h:1580
recode_subtitle
static int recode_subtitle(AVCodecContext *avctx, const AVPacket **outpkt, const AVPacket *inpkt, AVPacket *buf_pkt)
Definition: decode.c:829
channel_layout.h
av_mastering_display_metadata_create_side_data
AVMasteringDisplayMetadata * av_mastering_display_metadata_create_side_data(AVFrame *frame)
Allocate a complete AVMasteringDisplayMetadata and add it to the frame.
Definition: mastering_display_metadata.c:58
avcodec_internal.h
av_frame_side_data_new
AVFrameSideData * av_frame_side_data_new(AVFrameSideData ***sd, int *nb_sd, enum AVFrameSideDataType type, size_t size, unsigned int flags)
Add new side data entry to an array.
Definition: side_data.c:198
av_refstruct_replace
void av_refstruct_replace(void *dstp, const void *src)
Ensure *dstp refers to the same object as src.
Definition: refstruct.c:160
attach_displaymatrix
static int attach_displaymatrix(AVCodecContext *avctx, AVFrame *frame, int orientation)
Definition: decode.c:2334
AV_PIX_FMT_NONE
@ AV_PIX_FMT_NONE
Definition: pixfmt.h:72
ffhwaccel
static const FFHWAccel * ffhwaccel(const AVHWAccel *codec)
Definition: hwaccel_internal.h:168
side_data_stereo3d_merge
static int side_data_stereo3d_merge(AVFrameSideData *sd_frame, const AVPacketSideData *sd_pkt)
Definition: decode.c:1358
AV_PKT_DATA_AFD
@ AV_PKT_DATA_AFD
Active Format Description data consisting of a single byte as specified in ETSI TS 101 154 using AVAc...
Definition: packet.h:258
AV_PKT_DATA_SKIP_SAMPLES
@ AV_PKT_DATA_SKIP_SAMPLES
Recommends skipping the specified number of samples.
Definition: packet.h:153
AVCodecContext::export_side_data
int export_side_data
Bit set of AV_CODEC_EXPORT_DATA_* flags, which affects the kind of metadata exported in frame,...
Definition: avcodec.h:1774
AV_CODEC_CAP_DELAY
#define AV_CODEC_CAP_DELAY
Encoder or decoder requires flushing with NULL input at the end in order to give the complete and cor...
Definition: codec.h:76
AVPacketSideDataType
AVPacketSideDataType
Definition: packet.h:41
FF_CODEC_CB_TYPE_RECEIVE_FRAME
@ FF_CODEC_CB_TYPE_RECEIVE_FRAME
Definition: codec_internal.h:115
ProgressInternal::f
struct AVFrame * f
Definition: decode.c:1850
ff_thread_progress_reset
static void ff_thread_progress_reset(ThreadProgress *pro)
Reset the ThreadProgress.progress counter; must only be called if the ThreadProgress is not in use in...
Definition: threadprogress.h:72
FFCodec::cb_type
unsigned cb_type
This field determines the type of the codec (decoder/encoder) and also the exact callback cb implemen...
Definition: codec_internal.h:154
avcodec_get_hw_config
const AVCodecHWConfig * avcodec_get_hw_config(const AVCodec *codec, int index)
Retrieve supported hardware configurations for a codec.
Definition: utils.c:837
AVCodecInternal::buffer_frame
AVFrame * buffer_frame
Definition: internal.h:145
AV_CODEC_CAP_PARAM_CHANGE
#define AV_CODEC_CAP_PARAM_CHANGE
Codec supports changed parameters at any point.
Definition: codec.h:103
av_channel_layout_copy
int av_channel_layout_copy(AVChannelLayout *dst, const AVChannelLayout *src)
Make a copy of a channel layout.
Definition: channel_layout.c:449
AVCodecInternal::draining
int draining
decoding: AVERROR_EOF has been returned from ff_decode_get_packet(); must not be used by decoders tha...
Definition: internal.h:139
FFCodec::bsfs
const char * bsfs
Decoding only, a comma-separated list of bitstream filters to apply to packets before decoding.
Definition: codec_internal.h:260
AVCodecContext::coded_width
int coded_width
Bitstream width / height, may be different from width/height e.g.
Definition: avcodec.h:607
progress_frame_pool_reset_cb
static void progress_frame_pool_reset_cb(AVRefStructOpaque unused, void *obj)
Definition: decode.c:1947
AVHWFramesContext::initial_pool_size
int initial_pool_size
Initial size of the frame pool.
Definition: hwcontext.h:190
AVCodecContext::codec_type
enum AVMediaType codec_type
Definition: avcodec.h:439
AV_FRAME_FLAG_DISCARD
#define AV_FRAME_FLAG_DISCARD
A flag to mark the frames which need to be decoded, but shouldn't be output.
Definition: frame.h:646
desc
const char * desc
Definition: libsvtav1.c:79
AVMEDIA_TYPE_VIDEO
@ AVMEDIA_TYPE_VIDEO
Definition: avutil.h:200
av_bsf_list_parse_str
int av_bsf_list_parse_str(const char *str, AVBSFContext **bsf_lst)
Parse string describing list of bitstream filters and create single AVBSFContext describing the whole...
Definition: bsf.c:526
ff_decode_mastering_display_new_ext
int ff_decode_mastering_display_new_ext(const AVCodecContext *avctx, AVFrameSideData ***sd, int *nb_sd, struct AVMasteringDisplayMetadata **mdm)
Same as ff_decode_mastering_display_new, but taking a AVFrameSideData array directly instead of an AV...
Definition: decode.c:2161
side_data_map
static int side_data_map(AVFrame *dst, const AVPacketSideData *sd_src, int nb_sd_src, const SideDataMap *map)
Definition: decode.c:1466
AV_PKT_DATA_A53_CC
@ AV_PKT_DATA_A53_CC
ATSC A53 Part 4 Closed Captions.
Definition: packet.h:239
ff_decode_internal_uninit
void ff_decode_internal_uninit(AVCodecContext *avctx)
Definition: decode.c:2326
DecodeContext::width
int width
Definition: decode.c:99
mem.h
AVBufferRef
A reference to a data buffer.
Definition: buffer.h:82
packet_internal.h
AV_CODEC_EXPORT_DATA_MVS
#define AV_CODEC_EXPORT_DATA_MVS
Export motion vectors through frame side data.
Definition: avcodec.h:386
ff_icc_profile_sanitize
int ff_icc_profile_sanitize(FFIccContext *s, cmsHPROFILE profile)
Sanitize an ICC profile to try and fix badly broken values.
Definition: fflcms2.c:213
mastering_display_metadata.h
ff_attach_decode_data
int ff_attach_decode_data(AVFrame *frame)
Definition: decode.c:1643
AV_CODEC_HW_CONFIG_METHOD_HW_DEVICE_CTX
@ AV_CODEC_HW_CONFIG_METHOD_HW_DEVICE_CTX
The codec supports this format via the hw_device_ctx interface.
Definition: codec.h:298
ThreadingStatus
ThreadingStatus
Definition: thread.h:60
avcodec_parameters_from_context
int avcodec_parameters_from_context(struct AVCodecParameters *par, const AVCodecContext *codec)
Fill the parameters struct based on the values from the supplied codec context.
Definition: codec_par.c:138
AVFrameSideData
Structure to hold side data for an AVFrame.
Definition: frame.h:282
AVPixFmtDescriptor
Descriptor that unambiguously describes how the bits of a pixel are stored in the up to 4 data planes...
Definition: pixdesc.h:69
map
const VDPAUPixFmtMap * map
Definition: hwcontext_vdpau.c:71
DecodeContext::lcevc_frame
int lcevc_frame
Definition: decode.c:98
AV_CODEC_FLAG2_EXPORT_MVS
#define AV_CODEC_FLAG2_EXPORT_MVS
Export motion vectors through frame side data.
Definition: avcodec.h:364
av_free
#define av_free(p)
Definition: tableprint_vlc.h:34
ProgressFrame
The ProgressFrame structure.
Definition: progressframe.h:73
FFALIGN
#define FFALIGN(x, a)
Definition: macros.h:78
SideDataMap
Definition: avcodec_internal.h:34
AVPacket
This structure stores compressed data.
Definition: packet.h:535
av_freep
#define av_freep(p)
Definition: tableprint_vlc.h:35
DecodeContext::pts_correction_num_faulty_pts
int64_t pts_correction_num_faulty_pts
Definition: decode.c:86
av_exif_get_entry
int av_exif_get_entry(void *logctx, AVExifMetadata *ifd, uint16_t id, int flags, AVExifEntry **value)
Get an entry with the tagged ID from the EXIF metadata struct.
Definition: exif.c:1049
av_frame_side_data_get
static const AVFrameSideData * av_frame_side_data_get(AVFrameSideData *const *sd, const int nb_sd, enum AVFrameSideDataType type)
Wrapper around av_frame_side_data_get_c() to workaround the limitation that for any type T the conver...
Definition: frame.h:1151
AVCodecContext::width
int width
picture width / height.
Definition: avcodec.h:592
AV_FRAME_DATA_EXIF
@ AV_FRAME_DATA_EXIF
Extensible image file format metadata.
Definition: frame.h:262
int32_t
int32_t
Definition: audioconvert.c:56
bytestream.h
FrameDecodeData::hwaccel_priv
void * hwaccel_priv
Per-frame private data for hwaccels.
Definition: decode.h:51
imgutils.h
hwcontext.h
AVERROR_BUG
#define AVERROR_BUG
Internal bug, also see AVERROR_BUG2.
Definition: error.h:52
av_log
#define av_log(a,...)
Definition: tableprint_vlc.h:27
AVERROR_INVALIDDATA
#define AVERROR_INVALIDDATA
Invalid data found when processing input.
Definition: error.h:61
AVCodecHWConfig
Definition: codec.h:330
AVStereo3D
Stereo 3D type: this structure describes how two videos are packed within a single video surface,...
Definition: stereo3d.h:203
AVCodecContext::sw_pix_fmt
enum AVPixelFormat sw_pix_fmt
Nominal unaccelerated pixel format, see AV_PIX_FMT_xxx.
Definition: avcodec.h:638
av_image_check_sar
int av_image_check_sar(unsigned int w, unsigned int h, AVRational sar)
Check if the given sample aspect ratio of an image is valid.
Definition: imgutils.c:323
ff_copy_palette
int ff_copy_palette(void *dst, const AVPacket *src, void *logctx)
Check whether the side-data of src contains a palette of size AVPALETTE_SIZE; if so,...
Definition: decode.c:2251
AVCodecHWConfigInternal::public
AVCodecHWConfig public
This is the structure which will be returned to the user by avcodec_get_hw_config().
Definition: hwconfig.h:30
decode_bsfs_init
static int decode_bsfs_init(AVCodecContext *avctx)
Definition: decode.c:180
FFLCEVCFrame
Definition: lcevcdec.h:38
codec_desc.h
AV_PIX_FMT_FLAG_PAL
#define AV_PIX_FMT_FLAG_PAL
Pixel format has a palette in data[1], values are indexes in this palette.
Definition: pixdesc.h:120
side_data_exif_parse
static int side_data_exif_parse(AVFrame *dst, const AVPacketSideData *sd_pkt)
Definition: decode.c:1394
FFLCEVCFrame::frame
struct AVFrame * frame
Definition: lcevcdec.h:40
AVHWAccel::pix_fmt
enum AVPixelFormat pix_fmt
Supported pixel format.
Definition: avcodec.h:1970
AVCodecContext::sample_aspect_ratio
AVRational sample_aspect_ratio
sample aspect ratio (0 if unknown) That is the width of a pixel divided by the height of the pixel.
Definition: avcodec.h:616
DecodeContext
Definition: decode.c:61
av_frame_side_data_add
AVFrameSideData * av_frame_side_data_add(AVFrameSideData ***sd, int *nb_sd, enum AVFrameSideDataType type, AVBufferRef **buf, unsigned int flags)
Add a new side data entry to an array from an existing AVBufferRef.
Definition: side_data.c:223
FF_REGET_BUFFER_FLAG_READONLY
#define FF_REGET_BUFFER_FLAG_READONLY
the returned buffer does not need to be writable
Definition: decode.h:128
src
#define src
Definition: vp8dsp.c:248
ff_decode_internal_sync
void ff_decode_internal_sync(AVCodecContext *dst, const AVCodecContext *src)
Definition: decode.c:2318
Frame::height
int height
Definition: ffplay.c:160
AVPacket::side_data_elems
int side_data_elems
Definition: packet.h:570
av_get_pix_fmt_name
const char * av_get_pix_fmt_name(enum AVPixelFormat pix_fmt)
Return the short name for a pixel format, NULL in case pix_fmt is unknown.
Definition: pixdesc.c:3367
FF_SUB_CHARENC_MODE_IGNORE
#define FF_SUB_CHARENC_MODE_IGNORE
neither convert the subtitles, nor check them for valid UTF-8
Definition: avcodec.h:1723
min
float min
Definition: vorbis_enc_data.h:429