Coverage Report

Created: 2026-07-15 07:31

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/src/ffmpeg/libavutil/frame.h
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/*
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 * This file is part of FFmpeg.
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 *
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 * FFmpeg is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU Lesser General Public
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 * License as published by the Free Software Foundation; either
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 * version 2.1 of the License, or (at your option) any later version.
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 *
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 * FFmpeg is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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 * Lesser General Public License for more details.
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 *
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 * You should have received a copy of the GNU Lesser General Public
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 * License along with FFmpeg; if not, write to the Free Software
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 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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 */
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/**
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 * @file
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 * @ingroup lavu_frame
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 * reference-counted frame API
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 */
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#ifndef AVUTIL_FRAME_H
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#define AVUTIL_FRAME_H
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#include <stddef.h>
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#include <stdint.h>
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#include "avutil.h"
32
#include "buffer.h"
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#include "channel_layout.h"
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#include "dict.h"
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#include "rational.h"
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#include "samplefmt.h"
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#include "pixfmt.h"
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#include "version.h"
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40
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/**
42
 * @defgroup lavu_frame AVFrame
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 * @ingroup lavu_data
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 *
45
 * @{
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 * AVFrame is an abstraction for reference-counted raw multimedia data.
47
 */
48
49
enum AVFrameSideDataType {
50
    /**
51
     * The data is the AVPanScan struct defined in libavcodec.
52
     */
53
    AV_FRAME_DATA_PANSCAN,
54
    /**
55
     * ATSC A53 Part 4 Closed Captions.
56
     * A53 CC bitstream is stored as uint8_t in AVFrameSideData.data.
57
     * The number of bytes of CC data is AVFrameSideData.size.
58
     */
59
    AV_FRAME_DATA_A53_CC,
60
    /**
61
     * Stereoscopic 3d metadata.
62
     * The data is the AVStereo3D struct defined in libavutil/stereo3d.h.
63
     */
64
    AV_FRAME_DATA_STEREO3D,
65
    /**
66
     * The data is the AVMatrixEncoding enum defined in libavutil/channel_layout.h.
67
     */
68
    AV_FRAME_DATA_MATRIXENCODING,
69
    /**
70
     * Metadata relevant to a downmix procedure.
71
     * The data is the AVDownmixInfo struct defined in libavutil/downmix_info.h.
72
     */
73
    AV_FRAME_DATA_DOWNMIX_INFO,
74
    /**
75
     * ReplayGain information in the form of the AVReplayGain struct.
76
     */
77
    AV_FRAME_DATA_REPLAYGAIN,
78
    /**
79
     * This side data contains a 3x3 transformation matrix describing an affine
80
     * transformation that needs to be applied to the frame for correct
81
     * presentation.
82
     *
83
     * See libavutil/display.h for a detailed description of the data.
84
     */
85
    AV_FRAME_DATA_DISPLAYMATRIX,
86
    /**
87
     * Active Format Description data consisting of a single byte as specified
88
     * in ETSI TS 101 154 using AVActiveFormatDescription enum.
89
     */
90
    AV_FRAME_DATA_AFD,
91
    /**
92
     * Motion vectors exported by some codecs (on demand through the export_mvs
93
     * flag set in the libavcodec AVCodecContext flags2 option).
94
     * The data is the AVMotionVector struct defined in
95
     * libavutil/motion_vector.h.
96
     */
97
    AV_FRAME_DATA_MOTION_VECTORS,
98
    /**
99
     * Recommends skipping the specified number of samples. This is exported
100
     * only if the "skip_manual" AVOption is set in libavcodec.
101
     * This has the same format as AV_PKT_DATA_SKIP_SAMPLES.
102
     * @code
103
     * u32le number of samples to skip from start of this packet
104
     * u32le number of samples to skip from end of this packet
105
     * u8    reason for start skip
106
     * u8    reason for end   skip (0=padding silence, 1=convergence)
107
     * @endcode
108
     */
109
    AV_FRAME_DATA_SKIP_SAMPLES,
110
    /**
111
     * This side data must be associated with an audio frame and corresponds to
112
     * enum AVAudioServiceType defined in avcodec.h.
113
     */
114
    AV_FRAME_DATA_AUDIO_SERVICE_TYPE,
115
    /**
116
     * Mastering display metadata associated with a video frame. The payload is
117
     * an AVMasteringDisplayMetadata type and contains information about the
118
     * mastering display color volume.
119
     */
120
    AV_FRAME_DATA_MASTERING_DISPLAY_METADATA,
121
    /**
122
     * The GOP timecode in 25 bit timecode format. Data format is 64-bit integer.
123
     * This is set on the first frame of a GOP that has a temporal reference of 0.
124
     */
125
    AV_FRAME_DATA_GOP_TIMECODE,
126
127
    /**
128
     * The data represents the AVSphericalMapping structure defined in
129
     * libavutil/spherical.h.
130
     */
131
    AV_FRAME_DATA_SPHERICAL,
132
133
    /**
134
     * Content light level (based on CTA-861.3). This payload contains data in
135
     * the form of the AVContentLightMetadata struct.
136
     */
137
    AV_FRAME_DATA_CONTENT_LIGHT_LEVEL,
138
139
    /**
140
     * The data contains an ICC profile as an opaque octet buffer following the
141
     * format described by ISO 15076-1 with an optional name defined in the
142
     * metadata key entry "name".
143
     */
144
    AV_FRAME_DATA_ICC_PROFILE,
145
146
    /**
147
     * Timecode which conforms to SMPTE ST 12-1. The data is an array of 4 uint32_t
148
     * where the first uint32_t describes how many (1-3) of the other timecodes are used.
149
     * The timecode format is described in the documentation of av_timecode_get_smpte_from_framenum()
150
     * function in libavutil/timecode.h.
151
     */
152
    AV_FRAME_DATA_S12M_TIMECODE,
153
154
    /**
155
     * HDR dynamic metadata associated with a video frame. The payload is
156
     * an AVDynamicHDRPlus type and contains information for color
157
     * volume transform - application 4 of SMPTE 2094-40:2016 standard.
158
     */
159
    AV_FRAME_DATA_DYNAMIC_HDR_PLUS,
160
161
    /**
162
     * Regions Of Interest, the data is an array of AVRegionOfInterest type, the number of
163
     * array element is implied by AVFrameSideData.size / AVRegionOfInterest.self_size.
164
     */
165
    AV_FRAME_DATA_REGIONS_OF_INTEREST,
166
167
    /**
168
     * Encoding parameters for a video frame, as described by AVVideoEncParams.
169
     */
170
    AV_FRAME_DATA_VIDEO_ENC_PARAMS,
171
172
    /**
173
     * User data unregistered metadata associated with a video frame.
174
     * This is the H.26[45] UDU SEI message, and shouldn't be used for any other purpose
175
     * The data is stored as uint8_t in AVFrameSideData.data which is 16 bytes of
176
     * uuid_iso_iec_11578 followed by AVFrameSideData.size - 16 bytes of user_data_payload_byte.
177
     */
178
    AV_FRAME_DATA_SEI_UNREGISTERED,
179
180
    /**
181
     * Film grain parameters for a frame, described by AVFilmGrainParams.
182
     * Must be present for every frame which should have film grain applied.
183
     *
184
     * May be present multiple times, for example when there are multiple
185
     * alternative parameter sets for different video signal characteristics.
186
     * The user should select the most appropriate set for the application.
187
     */
188
    AV_FRAME_DATA_FILM_GRAIN_PARAMS,
189
190
    /**
191
     * Bounding boxes for object detection and classification,
192
     * as described by AVDetectionBBoxHeader.
193
     */
194
    AV_FRAME_DATA_DETECTION_BBOXES,
195
196
    /**
197
     * Dolby Vision RPU raw data, suitable for passing to x265
198
     * or other libraries. Array of uint8_t, with NAL emulation
199
     * bytes intact.
200
     */
201
    AV_FRAME_DATA_DOVI_RPU_BUFFER,
202
203
    /**
204
     * Parsed Dolby Vision metadata, suitable for passing to a software
205
     * implementation. The payload is the AVDOVIMetadata struct defined in
206
     * libavutil/dovi_meta.h.
207
     */
208
    AV_FRAME_DATA_DOVI_METADATA,
209
210
    /**
211
     * HDR Vivid dynamic metadata associated with a video frame. The payload is
212
     * an AVDynamicHDRVivid type and contains information for color
213
     * volume transform - CUVA 005.1-2021.
214
     */
215
    AV_FRAME_DATA_DYNAMIC_HDR_VIVID,
216
217
    /**
218
     * Ambient viewing environment metadata, as defined by H.274.
219
     */
220
    AV_FRAME_DATA_AMBIENT_VIEWING_ENVIRONMENT,
221
222
    /**
223
     * Provide encoder-specific hinting information about changed/unchanged
224
     * portions of a frame.  It can be used to pass information about which
225
     * macroblocks can be skipped because they didn't change from the
226
     * corresponding ones in the previous frame. This could be useful for
227
     * applications which know this information in advance to speed up
228
     * encoding.
229
     */
230
    AV_FRAME_DATA_VIDEO_HINT,
231
232
    /**
233
     * Raw LCEVC payload data, as a uint8_t array, with NAL emulation
234
     * bytes intact.
235
     */
236
    AV_FRAME_DATA_LCEVC,
237
238
    /**
239
     * This side data must be associated with a video frame.
240
     * The presence of this side data indicates that the video stream is
241
     * composed of multiple views (e.g. stereoscopic 3D content,
242
     * cf. H.264 Annex H or H.265 Annex G).
243
     * The data is an int storing the view ID.
244
     */
245
    AV_FRAME_DATA_VIEW_ID,
246
247
    /**
248
     * This side data contains information about the reference display width(s)
249
     * and reference viewing distance(s) as well as information about the
250
     * corresponding reference stereo pair(s), i.e., the pair(s) of views to be
251
     * displayed for the viewer's left and right eyes on the reference display
252
     * at the reference viewing distance.
253
     * The payload is the AV3DReferenceDisplaysInfo struct defined in
254
     * libavutil/tdrdi.h.
255
     */
256
    AV_FRAME_DATA_3D_REFERENCE_DISPLAYS,
257
258
    /**
259
     * Exchangeable image file format metadata. The payload is a buffer containing
260
     * EXIF metadata, starting with either 49 49 2a 00, or 4d 4d 00 2a. These four
261
     * bytes signify the endianness, and occur as the first part of the TIFF header.
262
     */
263
    AV_FRAME_DATA_EXIF,
264
265
    /**
266
     * HDR dynamic metadata associated with a video frame. The payload is
267
     * an AVDynamicHDRSmpte2094App5 type and contains information for color
268
     * volume transform as specified in the SMPTE 2094-50 standard.
269
     */
270
    AV_FRAME_DATA_DYNAMIC_HDR_SMPTE_2094_APP5,
271
272
    /**
273
     * IAMF Mix Gain Parameter Data associated with the audio frame. This metadata
274
     * is in the form of the AVIAMFParamDefinition struct and contains information
275
     * defined in sections 3.6.1 and 3.8.1 of the Immersive Audio Model and
276
     * Formats standard.
277
     */
278
    AV_FRAME_DATA_IAMF_MIX_GAIN_PARAM,
279
280
    /**
281
    * IAMF Demixing Info Parameter Data associated with the audio frame. This
282
    * metadata is in the form of the AVIAMFParamDefinition struct and contains
283
    * information defined in sections 3.6.1 and 3.8.2 of the Immersive Audio Model
284
    * and Formats standard.
285
    */
286
    AV_FRAME_DATA_IAMF_DEMIXING_INFO_PARAM,
287
288
    /**
289
    * IAMF Recon Gain Info Parameter Data associated with the audio frame. This
290
    * metadata is in the form of the AVIAMFParamDefinition struct and contains
291
    * information defined in sections 3.6.1 and 3.8.3 of the Immersive Audio Model
292
    * and Formats standard.
293
    */
294
    AV_FRAME_DATA_IAMF_RECON_GAIN_INFO_PARAM,
295
296
    /**
297
     * Color information from a RAW camera codecs, needed to correctly process
298
     * the video data. The payload is an AVRawColorParams struct defined in
299
     * libavutil/raw_color_params.h.
300
     */
301
    AV_FRAME_DATA_RAW_COLOR_PARAMS,
302
303
    /**
304
     * Metadata relevant to a downmix procedure in the form of a remixig matrix.
305
     * The data is the AVDownmixMatrix struct defined in libavutil/downmix_info.h.
306
     */
307
    AV_FRAME_DATA_DOWNMIX_MATRIX,
308
};
309
310
enum AVActiveFormatDescription {
311
    AV_AFD_SAME         = 8,
312
    AV_AFD_4_3          = 9,
313
    AV_AFD_16_9         = 10,
314
    AV_AFD_14_9         = 11,
315
    AV_AFD_4_3_SP_14_9  = 13,
316
    AV_AFD_16_9_SP_14_9 = 14,
317
    AV_AFD_SP_4_3       = 15,
318
};
319
320
321
/**
322
 * Structure to hold side data for an AVFrame.
323
 *
324
 * sizeof(AVFrameSideData) is not a part of the public ABI, so new fields may be added
325
 * to the end with a minor bump.
326
 */
327
typedef struct AVFrameSideData {
328
    enum AVFrameSideDataType type;
329
    uint8_t *data;
330
    size_t   size;
331
    AVDictionary *metadata;
332
    AVBufferRef *buf;
333
} AVFrameSideData;
334
335
enum AVSideDataProps {
336
    /**
337
     * The side data type can be used in stream-global structures.
338
     * Side data types without this property are only meaningful on per-frame
339
     * basis.
340
     */
341
    AV_SIDE_DATA_PROP_GLOBAL = (1 << 0),
342
343
    /**
344
     * Multiple instances of this side data type can be meaningfully present in
345
     * a single side data array.
346
     */
347
    AV_SIDE_DATA_PROP_MULTI  = (1 << 1),
348
349
    /**
350
     * Side data depends on the video dimensions. Side data with this property
351
     * loses its meaning when rescaling or cropping the image, unless
352
     * either recomputed or adjusted to the new resolution.
353
     */
354
    AV_SIDE_DATA_PROP_SIZE_DEPENDENT = (1 << 2),
355
356
    /**
357
     * Side data depends on the video color space. Side data with this property
358
     * loses its meaning when changing the video color encoding, e.g. by
359
     * adapting to a different set of primaries or transfer characteristics.
360
     */
361
    AV_SIDE_DATA_PROP_COLOR_DEPENDENT = (1 << 3),
362
363
    /**
364
     * Side data depends on the channel layout. Side data with this property
365
     * loses its meaning when downmixing or upmixing, unless either recomputed
366
     * or adjusted to the new layout.
367
     */
368
    AV_SIDE_DATA_PROP_CHANNEL_DEPENDENT = (1 << 4),
369
};
370
371
/**
372
 * This struct describes the properties of a side data type. Its instance
373
 * corresponding to a given type can be obtained from av_frame_side_data_desc().
374
 */
375
typedef struct AVSideDataDescriptor {
376
    /**
377
     * Human-readable side data description.
378
     */
379
    const char      *name;
380
381
    /**
382
     * Side data property flags, a combination of AVSideDataProps values.
383
     */
384
    unsigned         props;
385
} AVSideDataDescriptor;
386
387
/**
388
 * Structure describing a single Region Of Interest.
389
 *
390
 * When multiple regions are defined in a single side-data block, they
391
 * should be ordered from most to least important - some encoders are only
392
 * capable of supporting a limited number of distinct regions, so will have
393
 * to truncate the list.
394
 *
395
 * When overlapping regions are defined, the first region containing a given
396
 * area of the frame applies.
397
 */
398
typedef struct AVRegionOfInterest {
399
    /**
400
     * Must be set to the size of this data structure (that is,
401
     * sizeof(AVRegionOfInterest)).
402
     */
403
    uint32_t self_size;
404
    /**
405
     * Distance in pixels from the top edge of the frame to the top and
406
     * bottom edges and from the left edge of the frame to the left and
407
     * right edges of the rectangle defining this region of interest.
408
     *
409
     * The constraints on a region are encoder dependent, so the region
410
     * actually affected may be slightly larger for alignment or other
411
     * reasons.
412
     */
413
    int top;
414
    int bottom;
415
    int left;
416
    int right;
417
    /**
418
     * Quantisation offset.
419
     *
420
     * Must be in the range -1 to +1.  A value of zero indicates no quality
421
     * change.  A negative value asks for better quality (less quantisation),
422
     * while a positive value asks for worse quality (greater quantisation).
423
     *
424
     * The range is calibrated so that the extreme values indicate the
425
     * largest possible offset - if the rest of the frame is encoded with the
426
     * worst possible quality, an offset of -1 indicates that this region
427
     * should be encoded with the best possible quality anyway.  Intermediate
428
     * values are then interpolated in some codec-dependent way.
429
     *
430
     * For example, in 10-bit H.264 the quantisation parameter varies between
431
     * -12 and 51.  A typical qoffset value of -1/10 therefore indicates that
432
     * this region should be encoded with a QP around one-tenth of the full
433
     * range better than the rest of the frame.  So, if most of the frame
434
     * were to be encoded with a QP of around 30, this region would get a QP
435
     * of around 24 (an offset of approximately -1/10 * (51 - -12) = -6.3).
436
     * An extreme value of -1 would indicate that this region should be
437
     * encoded with the best possible quality regardless of the treatment of
438
     * the rest of the frame - that is, should be encoded at a QP of -12.
439
     */
440
    AVRational qoffset;
441
} AVRegionOfInterest;
442
443
/**
444
 * This structure describes decoded (raw) audio or video data.
445
 *
446
 * AVFrame must be allocated using av_frame_alloc(). Note that this only
447
 * allocates the AVFrame itself, the buffers for the data must be managed
448
 * through other means (see below).
449
 * AVFrame must be freed with av_frame_free().
450
 *
451
 * AVFrame is typically allocated once and then reused multiple times to hold
452
 * different data (e.g. a single AVFrame to hold frames received from a
453
 * decoder). In such a case, av_frame_unref() will free any references held by
454
 * the frame and reset it to its original clean state before it
455
 * is reused again.
456
 *
457
 * The data described by an AVFrame is usually reference counted through the
458
 * AVBuffer API. The underlying buffer references are stored in AVFrame.buf /
459
 * AVFrame.extended_buf. An AVFrame is considered to be reference counted if at
460
 * least one reference is set, i.e. if AVFrame.buf[0] != NULL. In such a case,
461
 * every single data plane must be contained in one of the buffers in
462
 * AVFrame.buf or AVFrame.extended_buf.
463
 * There may be a single buffer for all the data, or one separate buffer for
464
 * each plane, or anything in between.
465
 *
466
 * sizeof(AVFrame) is not a part of the public ABI, so new fields may be added
467
 * to the end with a minor bump.
468
 *
469
 * Fields can be accessed through AVOptions, the name string used, matches the
470
 * C structure field name for fields accessible through AVOptions.
471
 */
472
typedef struct AVFrame {
473
0
#define AV_NUM_DATA_POINTERS 8
474
    /**
475
     * pointer to the picture/channel planes.
476
     * This might be different from the first allocated byte. For video,
477
     * it could even point to the end of the image data.
478
     *
479
     * All pointers in data and extended_data must point into one of the
480
     * AVBufferRef in buf or extended_buf.
481
     *
482
     * Some decoders access areas outside 0,0 - width,height, please
483
     * see avcodec_align_dimensions2(). Some filters and swscale can read
484
     * up to 16 bytes beyond the planes, if these filters are to be used,
485
     * then 16 extra bytes must be allocated.
486
     *
487
     * NOTE: Pointers not needed by the format MUST be set to NULL.
488
     *
489
     * @attention In case of video, the data[] pointers can point to the
490
     * end of image data in order to reverse line order, when used in
491
     * combination with negative values in the linesize[] array.
492
     */
493
    uint8_t *data[AV_NUM_DATA_POINTERS];
494
495
    /**
496
     * For video, a positive or negative value, which is typically indicating
497
     * the size in bytes of each picture line, but it can also be:
498
     * - the negative byte size of lines for vertical flipping
499
     *   (with data[n] pointing to the end of the data
500
     * - a positive or negative multiple of the byte size as for accessing
501
     *   even and odd fields of a frame (possibly flipped)
502
     *
503
     * For audio, only linesize[0] may be set. For planar audio, each channel
504
     * plane must be the same size.
505
     *
506
     * For video the linesizes should be multiples of the CPUs alignment
507
     * preference, this is 16 or 32 for modern desktop CPUs.
508
     * Some code requires such alignment other code can be slower without
509
     * correct alignment, for yet other it makes no difference.
510
     *
511
     * @note The linesize may be larger than the size of usable data -- there
512
     * may be extra padding present for performance reasons.
513
     *
514
     * @attention In case of video, line size values can be negative to achieve
515
     * a vertically inverted iteration over image lines.
516
     */
517
    int linesize[AV_NUM_DATA_POINTERS];
518
519
    /**
520
     * pointers to the data planes/channels.
521
     *
522
     * For video, this should simply point to data[].
523
     *
524
     * For planar audio, each channel has a separate data pointer, and
525
     * linesize[0] contains the size of each channel buffer.
526
     * For packed audio, there is just one data pointer, and linesize[0]
527
     * contains the total size of the buffer for all channels.
528
     *
529
     * Note: Both data and extended_data should always be set in a valid frame,
530
     * but for planar audio with more channels that can fit in data,
531
     * extended_data must be used in order to access all channels.
532
     */
533
    uint8_t **extended_data;
534
535
    /**
536
     * @name Video dimensions
537
     * Video frames only. The coded dimensions (in pixels) of the video frame,
538
     * i.e. the size of the rectangle that contains some well-defined values.
539
     *
540
     * @note The part of the frame intended for display/presentation is further
541
     * restricted by the @ref cropping "Cropping rectangle".
542
     * @{
543
     */
544
    int width, height;
545
    /**
546
     * @}
547
     */
548
549
    /**
550
     * number of audio samples (per channel) described by this frame
551
     */
552
    int nb_samples;
553
554
    /**
555
     * format of the frame, -1 if unknown or unset
556
     * Values correspond to enum AVPixelFormat for video frames,
557
     * enum AVSampleFormat for audio)
558
     */
559
    int format;
560
561
    /**
562
     * Picture type of the frame.
563
     */
564
    enum AVPictureType pict_type;
565
566
    /**
567
     * Sample aspect ratio for the video frame, 0/1 if unknown/unspecified.
568
     */
569
    AVRational sample_aspect_ratio;
570
571
    /**
572
     * Presentation timestamp in time_base units (time when frame should be shown to user).
573
     */
574
    int64_t pts;
575
576
    /**
577
     * DTS copied from the AVPacket that triggered returning this frame. (if frame threading isn't used)
578
     * This is also the Presentation time of this AVFrame calculated from
579
     * only AVPacket.dts values without pts values.
580
     */
581
    int64_t pkt_dts;
582
583
    /**
584
     * Time base for the timestamps in this frame.
585
     * In the future, this field may be set on frames output by decoders or
586
     * filters, but its value will be by default ignored on input to encoders
587
     * or filters.
588
     */
589
    AVRational time_base;
590
591
    /**
592
     * quality (between 1 (good) and FF_LAMBDA_MAX (bad))
593
     */
594
    int quality;
595
596
    /**
597
     * Frame owner's private data.
598
     *
599
     * This field may be set by the code that allocates/owns the frame data.
600
     * It is then not touched by any library functions, except:
601
     * - it is copied to other references by av_frame_copy_props() (and hence by
602
     *   av_frame_ref());
603
     * - it is set to NULL when the frame is cleared by av_frame_unref()
604
     * - on the caller's explicit request. E.g. libavcodec encoders/decoders
605
     *   will copy this field to/from @ref AVPacket "AVPackets" if the caller sets
606
     *   @ref AV_CODEC_FLAG_COPY_OPAQUE.
607
     *
608
     * @see opaque_ref the reference-counted analogue
609
     */
610
    void *opaque;
611
612
    /**
613
     * Number of fields in this frame which should be repeated, i.e. the total
614
     * duration of this frame should be repeat_pict + 2 normal field durations.
615
     *
616
     * For interlaced frames this field may be set to 1, which signals that this
617
     * frame should be presented as 3 fields: beginning with the first field (as
618
     * determined by AV_FRAME_FLAG_TOP_FIELD_FIRST being set or not), followed
619
     * by the second field, and then the first field again.
620
     *
621
     * For progressive frames this field may be set to a multiple of 2, which
622
     * signals that this frame's duration should be (repeat_pict + 2) / 2
623
     * normal frame durations.
624
     *
625
     * @note This field is computed from MPEG2 repeat_first_field flag and its
626
     * associated flags, H.264 pic_struct from picture timing SEI, and
627
     * their analogues in other codecs. Typically it should only be used when
628
     * higher-layer timing information is not available.
629
     */
630
    int repeat_pict;
631
632
    /**
633
     * Sample rate of the audio data.
634
     */
635
    int sample_rate;
636
637
    /**
638
     * AVBuffer references backing the data for this frame. All the pointers in
639
     * data and extended_data must point inside one of the buffers in buf or
640
     * extended_buf. This array must be filled contiguously -- if buf[i] is
641
     * non-NULL then buf[j] must also be non-NULL for all j < i.
642
     *
643
     * There may be at most one AVBuffer per data plane, so for video this array
644
     * always contains all the references. For planar audio with more than
645
     * AV_NUM_DATA_POINTERS channels, there may be more buffers than can fit in
646
     * this array. Then the extra AVBufferRef pointers are stored in the
647
     * extended_buf array.
648
     */
649
    AVBufferRef *buf[AV_NUM_DATA_POINTERS];
650
651
    /**
652
     * For planar audio which requires more than AV_NUM_DATA_POINTERS
653
     * AVBufferRef pointers, this array will hold all the references which
654
     * cannot fit into AVFrame.buf.
655
     *
656
     * Note that this is different from AVFrame.extended_data, which always
657
     * contains all the pointers. This array only contains the extra pointers,
658
     * which cannot fit into AVFrame.buf.
659
     *
660
     * This array is always allocated using av_malloc() by whoever constructs
661
     * the frame. It is freed in av_frame_unref().
662
     */
663
    AVBufferRef **extended_buf;
664
    /**
665
     * Number of elements in extended_buf.
666
     */
667
    int        nb_extended_buf;
668
669
    AVFrameSideData **side_data;
670
    int            nb_side_data;
671
672
/**
673
 * @defgroup lavu_frame_flags AV_FRAME_FLAGS
674
 * @ingroup lavu_frame
675
 * Flags describing additional frame properties.
676
 *
677
 * @{
678
 */
679
680
/**
681
 * The frame data may be corrupted, e.g. due to decoding errors.
682
 */
683
#define AV_FRAME_FLAG_CORRUPT       (1 << 0)
684
/**
685
 * A flag to mark frames that are keyframes.
686
 */
687
0
#define AV_FRAME_FLAG_KEY (1 << 1)
688
/**
689
 * A flag to mark the frames which need to be decoded, but shouldn't be output.
690
 */
691
0
#define AV_FRAME_FLAG_DISCARD   (1 << 2)
692
/**
693
 * A flag to mark frames whose content is interlaced.
694
 */
695
0
#define AV_FRAME_FLAG_INTERLACED (1 << 3)
696
/**
697
 * A flag to mark frames where the top field is displayed first if the content
698
 * is interlaced.
699
 */
700
#define AV_FRAME_FLAG_TOP_FIELD_FIRST (1 << 4)
701
/**
702
 * A decoder can use this flag to mark frames which were originally encoded losslessly.
703
 *
704
 * For coding bitstream formats which support both lossless and lossy
705
 * encoding, it is sometimes possible for a decoder to determine which method
706
 * was used when the bitstream was encoded.
707
 */
708
#define AV_FRAME_FLAG_LOSSLESS        (1 << 5)
709
/**
710
 * @}
711
 */
712
713
    /**
714
     * Frame flags, a combination of @ref lavu_frame_flags
715
     */
716
    int flags;
717
718
    /**
719
     * MPEG vs JPEG YUV range.
720
     * - encoding: Set by user
721
     * - decoding: Set by libavcodec
722
     */
723
    enum AVColorRange color_range;
724
725
    enum AVColorPrimaries color_primaries;
726
727
    enum AVColorTransferCharacteristic color_trc;
728
729
    /**
730
     * YUV colorspace type.
731
     * - encoding: Set by user
732
     * - decoding: Set by libavcodec
733
     */
734
    enum AVColorSpace colorspace;
735
736
    enum AVChromaLocation chroma_location;
737
738
    /**
739
     * frame timestamp estimated using various heuristics, in stream time base
740
     * - encoding: unused
741
     * - decoding: set by libavcodec, read by user.
742
     */
743
    int64_t best_effort_timestamp;
744
745
    /**
746
     * metadata.
747
     * - encoding: Set by user.
748
     * - decoding: Set by libavcodec.
749
     */
750
    AVDictionary *metadata;
751
752
    /**
753
     * decode error flags of the frame, set to a combination of
754
     * FF_DECODE_ERROR_xxx flags if the decoder produced a frame, but there
755
     * were errors during the decoding.
756
     * - encoding: unused
757
     * - decoding: set by libavcodec, read by user.
758
     */
759
    int decode_error_flags;
760
#define FF_DECODE_ERROR_INVALID_BITSTREAM   1
761
#define FF_DECODE_ERROR_MISSING_REFERENCE   2
762
#define FF_DECODE_ERROR_CONCEALMENT_ACTIVE  4
763
#define FF_DECODE_ERROR_DECODE_SLICES       8
764
765
    /**
766
     * For hwaccel-format frames, this should be a reference to the
767
     * AVHWFramesContext describing the frame.
768
     */
769
    AVBufferRef *hw_frames_ctx;
770
771
    /**
772
     * Frame owner's private data.
773
     *
774
     * This field may be set by the code that allocates/owns the frame data.
775
     * It is then not touched by any library functions, except:
776
     * - a new reference to the underlying buffer is propagated by
777
     *   av_frame_copy_props() (and hence by av_frame_ref());
778
     * - it is unreferenced in av_frame_unref();
779
     * - on the caller's explicit request. E.g. libavcodec encoders/decoders
780
     *   will propagate a new reference to/from @ref AVPacket "AVPackets" if the
781
     *   caller sets @ref AV_CODEC_FLAG_COPY_OPAQUE.
782
     *
783
     * @see opaque the plain pointer analogue
784
     */
785
    AVBufferRef *opaque_ref;
786
787
    /**
788
     * @anchor cropping
789
     * @name Cropping
790
     * Video frames only. The number of pixels to discard from the
791
     * top/bottom/left/right border of the frame to obtain the sub-rectangle of
792
     * the frame intended for presentation.
793
     * @{
794
     */
795
    size_t crop_top;
796
    size_t crop_bottom;
797
    size_t crop_left;
798
    size_t crop_right;
799
    /**
800
     * @}
801
     */
802
803
    /**
804
     * RefStruct reference for internal use by a single libav* library.
805
     * Must not be used to transfer data between libraries.
806
     * Has to be NULL when ownership of the frame leaves the respective library.
807
     *
808
     * Code outside the FFmpeg libs must never check or change private_ref.
809
     */
810
    void *private_ref;
811
812
    /**
813
     * Channel layout of the audio data.
814
     */
815
    AVChannelLayout ch_layout;
816
817
    /**
818
     * Duration of the frame, in the same units as pts. 0 if unknown.
819
     */
820
    int64_t duration;
821
822
    /**
823
     * Indicates how the alpha channel of the video is to be handled.
824
     * - encoding: Set by user
825
     * - decoding: Set by libavcodec
826
     */
827
    enum AVAlphaMode alpha_mode;
828
} AVFrame;
829
830
831
/**
832
 * Allocate an AVFrame and set its fields to default values.  The resulting
833
 * struct must be freed using av_frame_free().
834
 *
835
 * @return An AVFrame filled with default values or NULL on failure.
836
 *
837
 * @note this only allocates the AVFrame itself, not the data buffers. Those
838
 * must be allocated through other means, e.g. with av_frame_get_buffer() or
839
 * manually.
840
 */
841
AVFrame *av_frame_alloc(void);
842
843
/**
844
 * Free the frame and any dynamically allocated objects in it,
845
 * e.g. extended_data. If the frame is reference counted, it will be
846
 * unreferenced first.
847
 *
848
 * @param frame frame to be freed. The pointer will be set to NULL.
849
 */
850
void av_frame_free(AVFrame **frame);
851
852
/**
853
 * Set up a new reference to the data described by the source frame.
854
 *
855
 * Copy frame properties from src to dst and create a new reference for each
856
 * AVBufferRef from src.
857
 *
858
 * If src is not reference counted, new buffers are allocated and the data is
859
 * copied.
860
 *
861
 * @warning: dst MUST have been either unreferenced with av_frame_unref(dst),
862
 *           or newly allocated with av_frame_alloc() before calling this
863
 *           function, or undefined behavior will occur.
864
 *
865
 * @return 0 on success, a negative AVERROR on error
866
 */
867
int av_frame_ref(AVFrame *dst, const AVFrame *src);
868
869
/**
870
 * Ensure the destination frame refers to the same data described by the source
871
 * frame, either by creating a new reference for each AVBufferRef from src if
872
 * they differ from those in dst, by allocating new buffers and copying data if
873
 * src is not reference counted, or by unreferencing it if src is empty.
874
 *
875
 * Frame properties on dst will be replaced by those from src.
876
 *
877
 * @return 0 on success, a negative AVERROR on error. On error, dst is
878
 *         unreferenced.
879
 */
880
int av_frame_replace(AVFrame *dst, const AVFrame *src);
881
882
/**
883
 * Create a new frame that references the same data as src.
884
 *
885
 * This is a shortcut for av_frame_alloc()+av_frame_ref().
886
 *
887
 * @return newly created AVFrame on success, NULL on error.
888
 */
889
AVFrame *av_frame_clone(const AVFrame *src);
890
891
/**
892
 * Unreference all the buffers referenced by frame and reset the frame fields.
893
 */
894
void av_frame_unref(AVFrame *frame);
895
896
/**
897
 * Move everything contained in src to dst and reset src.
898
 *
899
 * @warning: dst is not unreferenced, but directly overwritten without reading
900
 *           or deallocating its contents. Call av_frame_unref(dst) manually
901
 *           before calling this function to ensure that no memory is leaked.
902
 */
903
void av_frame_move_ref(AVFrame *dst, AVFrame *src);
904
905
/**
906
 * Allocate new buffer(s) for audio or video data.
907
 *
908
 * The following fields must be set on frame before calling this function:
909
 * - format (pixel format for video, sample format for audio)
910
 * - width and height for video
911
 * - nb_samples and ch_layout for audio
912
 *
913
 * This function will fill AVFrame.data and AVFrame.buf arrays and, if
914
 * necessary, allocate and fill AVFrame.extended_data and AVFrame.extended_buf.
915
 * For planar formats, one buffer will be allocated for each plane.
916
 *
917
 * @warning: if frame already has been allocated, calling this function will
918
 *           leak memory. In addition, undefined behavior can occur in certain
919
 *           cases.
920
 *
921
 * @param frame frame in which to store the new buffers.
922
 * @param align Required buffer size and data pointer alignment. If equal to 0,
923
 *              alignment will be chosen automatically for the current CPU.
924
 *              It is highly recommended to pass 0 here unless you know what
925
 *              you are doing.
926
 *
927
 * @return 0 on success, a negative AVERROR on error.
928
 */
929
int av_frame_get_buffer(AVFrame *frame, int align);
930
931
/**
932
 * Check if the frame data is writable.
933
 *
934
 * @return A positive value if the frame data is writable (which is true if and
935
 * only if each of the underlying buffers has only one reference, namely the one
936
 * stored in this frame). Return 0 otherwise.
937
 *
938
 * If 1 is returned the answer is valid until av_buffer_ref() is called on any
939
 * of the underlying AVBufferRefs (e.g. through av_frame_ref() or directly).
940
 *
941
 * @see av_frame_make_writable(), av_buffer_is_writable()
942
 */
943
int av_frame_is_writable(AVFrame *frame);
944
945
/**
946
 * Ensure that the frame data is writable, avoiding data copy if possible.
947
 *
948
 * Do nothing if the frame is writable, allocate new buffers and copy the data
949
 * if it is not. Non-refcounted frames behave as non-writable, i.e. a copy
950
 * is always made.
951
 *
952
 * @return 0 on success, a negative AVERROR on error.
953
 *
954
 * @see av_frame_is_writable(), av_buffer_is_writable(),
955
 * av_buffer_make_writable()
956
 */
957
int av_frame_make_writable(AVFrame *frame);
958
959
/**
960
 * Copy the frame data from src to dst.
961
 *
962
 * This function does not allocate anything, dst must be already initialized and
963
 * allocated with the same parameters as src.
964
 *
965
 * This function only copies the frame data (i.e. the contents of the data /
966
 * extended data arrays), not any other properties.
967
 *
968
 * @return >= 0 on success, a negative AVERROR on error.
969
 */
970
int av_frame_copy(AVFrame *dst, const AVFrame *src);
971
972
/**
973
 * Copy only "metadata" fields from src to dst.
974
 *
975
 * Metadata for the purpose of this function are those fields that do not affect
976
 * the data layout in the buffers.  E.g. pts, sample rate (for audio) or sample
977
 * aspect ratio (for video), but not width/height or channel layout.
978
 * Side data is also copied.
979
 */
980
int av_frame_copy_props(AVFrame *dst, const AVFrame *src);
981
982
/**
983
 * Get the buffer reference a given data plane is stored in.
984
 *
985
 * @param frame the frame to get the plane's buffer from
986
 * @param plane index of the data plane of interest in frame->extended_data.
987
 *
988
 * @return the buffer reference that contains the plane or NULL if the input
989
 * frame is not valid.
990
 */
991
AVBufferRef *av_frame_get_plane_buffer(const AVFrame *frame, int plane);
992
993
/**
994
 * Add a new side data to a frame.
995
 *
996
 * @param frame a frame to which the side data should be added
997
 * @param type type of the added side data
998
 * @param size size of the side data
999
 *
1000
 * @return newly added side data on success, NULL on error
1001
 */
1002
AVFrameSideData *av_frame_new_side_data(AVFrame *frame,
1003
                                        enum AVFrameSideDataType type,
1004
                                        size_t size);
1005
1006
/**
1007
 * Add a new side data to a frame from an existing AVBufferRef
1008
 *
1009
 * @param frame a frame to which the side data should be added
1010
 * @param type  the type of the added side data
1011
 * @param buf   an AVBufferRef to add as side data. The ownership of
1012
 *              the reference is transferred to the frame.
1013
 *
1014
 * @return newly added side data on success, NULL on error. On failure
1015
 *         the frame is unchanged and the AVBufferRef remains owned by
1016
 *         the caller.
1017
 */
1018
AVFrameSideData *av_frame_new_side_data_from_buf(AVFrame *frame,
1019
                                                 enum AVFrameSideDataType type,
1020
                                                 AVBufferRef *buf);
1021
1022
/**
1023
 * @return a pointer to the side data of a given type on success, NULL if there
1024
 * is no side data with such type in this frame.
1025
 */
1026
AVFrameSideData *av_frame_get_side_data(const AVFrame *frame,
1027
                                        enum AVFrameSideDataType type);
1028
1029
/**
1030
 * Remove and free all side data instances of the given type.
1031
 */
1032
void av_frame_remove_side_data(AVFrame *frame, enum AVFrameSideDataType type);
1033
1034
1035
/**
1036
 * Flags for frame cropping.
1037
 */
1038
enum {
1039
    /**
1040
     * Apply the maximum possible cropping, even if it requires setting the
1041
     * AVFrame.data[] entries to unaligned pointers. Passing unaligned data
1042
     * to FFmpeg API is generally not allowed, and causes undefined behavior
1043
     * (such as crashes). You can pass unaligned data only to FFmpeg APIs that
1044
     * are explicitly documented to accept it. Use this flag only if you
1045
     * absolutely know what you are doing.
1046
     */
1047
    AV_FRAME_CROP_UNALIGNED     = 1 << 0,
1048
};
1049
1050
/**
1051
 * Crop the given video AVFrame according to its crop_left/crop_top/crop_right/
1052
 * crop_bottom fields. If cropping is successful, the function will adjust the
1053
 * data pointers and the width/height fields, and set the crop fields to 0.
1054
 *
1055
 * In all cases, the cropping boundaries will be rounded to the inherent
1056
 * alignment of the pixel format. In some cases, such as for opaque hwaccel
1057
 * formats, the left/top cropping is ignored. The crop fields are set to 0 even
1058
 * if the cropping was rounded or ignored.
1059
 *
1060
 * @param frame the frame which should be cropped
1061
 * @param flags Some combination of AV_FRAME_CROP_* flags, or 0.
1062
 *
1063
 * @return >= 0 on success, a negative AVERROR on error. If the cropping fields
1064
 * were invalid, AVERROR(ERANGE) is returned, and nothing is changed.
1065
 */
1066
int av_frame_apply_cropping(AVFrame *frame, int flags);
1067
1068
/**
1069
 * @return a string identifying the side data type
1070
 */
1071
const char *av_frame_side_data_name(enum AVFrameSideDataType type);
1072
1073
/**
1074
 * @return side data descriptor corresponding to a given side data type, NULL
1075
 *         when not available.
1076
 */
1077
const AVSideDataDescriptor *av_frame_side_data_desc(enum AVFrameSideDataType type);
1078
1079
/**
1080
 * Free all side data entries and their contents, then zeroes out the
1081
 * values which the pointers are pointing to.
1082
 *
1083
 * @param sd    pointer to array of side data to free. Will be set to NULL
1084
 *              upon return.
1085
 * @param nb_sd pointer to an integer containing the number of entries in
1086
 *              the array. Will be set to 0 upon return.
1087
 */
1088
void av_frame_side_data_free(AVFrameSideData ***sd, int *nb_sd);
1089
1090
/**
1091
 * Remove existing entries before adding new ones.
1092
 */
1093
0
#define AV_FRAME_SIDE_DATA_FLAG_UNIQUE (1 << 0)
1094
/**
1095
 * Don't add a new entry if another of the same type exists.
1096
 * Applies only for side data types without the AV_SIDE_DATA_PROP_MULTI prop.
1097
 */
1098
0
#define AV_FRAME_SIDE_DATA_FLAG_REPLACE (1 << 1)
1099
/**
1100
 * Create a new reference to the passed in buffer instead of taking ownership
1101
 * of it.
1102
 */
1103
0
#define AV_FRAME_SIDE_DATA_FLAG_NEW_REF (1 << 2)
1104
1105
/**
1106
 * Add new side data entry to an array.
1107
 *
1108
 * @param sd    pointer to array of side data to which to add another entry,
1109
 *              or to NULL in order to start a new array.
1110
 * @param nb_sd pointer to an integer containing the number of entries in
1111
 *              the array.
1112
 * @param type  type of the added side data
1113
 * @param size  size of the side data
1114
 * @param flags Some combination of AV_FRAME_SIDE_DATA_FLAG_* flags, or 0.
1115
 *
1116
 * @return newly added side data on success, NULL on error.
1117
 * @note In case of AV_FRAME_SIDE_DATA_FLAG_UNIQUE being set, entries of
1118
 *       matching AVFrameSideDataType will be removed before the addition
1119
 *       is attempted.
1120
 * @note In case of AV_FRAME_SIDE_DATA_FLAG_REPLACE being set, if an
1121
 *       entry of the same type already exists, it will be replaced instead.
1122
 */
1123
AVFrameSideData *av_frame_side_data_new(AVFrameSideData ***sd, int *nb_sd,
1124
                                        enum AVFrameSideDataType type,
1125
                                        size_t size, unsigned int flags);
1126
1127
/**
1128
 * Add a new side data entry to an array from an existing AVBufferRef.
1129
 *
1130
 * @param sd    pointer to array of side data to which to add another entry,
1131
 *              or to NULL in order to start a new array.
1132
 * @param nb_sd pointer to an integer containing the number of entries in
1133
 *              the array.
1134
 * @param type  type of the added side data
1135
 * @param buf   Pointer to AVBufferRef to add to the array. On success,
1136
 *              the function takes ownership of the AVBufferRef and *buf is
1137
 *              set to NULL, unless AV_FRAME_SIDE_DATA_FLAG_NEW_REF is set
1138
 *              in which case the ownership will remain with the caller.
1139
 * @param flags Some combination of AV_FRAME_SIDE_DATA_FLAG_* flags, or 0.
1140
 *
1141
 * @return newly added side data on success, NULL on error.
1142
 * @note In case of AV_FRAME_SIDE_DATA_FLAG_UNIQUE being set, entries of
1143
 *       matching AVFrameSideDataType will be removed before the addition
1144
 *       is attempted.
1145
 * @note In case of AV_FRAME_SIDE_DATA_FLAG_REPLACE being set, if an
1146
 *       entry of the same type already exists, it will be replaced instead.
1147
 *
1148
 */
1149
AVFrameSideData *av_frame_side_data_add(AVFrameSideData ***sd, int *nb_sd,
1150
                                        enum AVFrameSideDataType type,
1151
                                        AVBufferRef **buf, unsigned int flags);
1152
1153
/**
1154
 * Add a new side data entry to an array based on existing side data, taking
1155
 * a reference towards the contained AVBufferRef.
1156
 *
1157
 * @param sd    pointer to array of side data to which to add another entry,
1158
 *              or to NULL in order to start a new array.
1159
 * @param nb_sd pointer to an integer containing the number of entries in
1160
 *              the array.
1161
 * @param src   side data to be cloned, with a new reference utilized
1162
 *              for the buffer.
1163
 * @param flags Some combination of AV_FRAME_SIDE_DATA_FLAG_* flags, or 0.
1164
 *
1165
 * @return negative error code on failure, >=0 on success.
1166
 * @note In case of AV_FRAME_SIDE_DATA_FLAG_UNIQUE being set, entries of
1167
 *       matching AVFrameSideDataType will be removed before the addition
1168
 *       is attempted.
1169
 * @note In case of AV_FRAME_SIDE_DATA_FLAG_REPLACE being set, if an
1170
 *       entry of the same type already exists, it will be replaced instead.
1171
 */
1172
int av_frame_side_data_clone(AVFrameSideData ***sd, int *nb_sd,
1173
                             const AVFrameSideData *src, unsigned int flags);
1174
1175
/**
1176
 * Get a side data entry of a specific type from an array.
1177
 *
1178
 * @param sd    array of side data.
1179
 * @param nb_sd integer containing the number of entries in the array.
1180
 * @param type  type of side data to be queried
1181
 *
1182
 * @return a pointer to the side data of a given type on success, NULL if there
1183
 *         is no side data with such type in this set.
1184
 */
1185
const AVFrameSideData *av_frame_side_data_get_c(const AVFrameSideData * const *sd,
1186
                                                const int nb_sd,
1187
                                                enum AVFrameSideDataType type);
1188
1189
/**
1190
 * Wrapper around av_frame_side_data_get_c() to workaround the limitation
1191
 * that for any type T the conversion from T * const * to const T * const *
1192
 * is not performed automatically in C.
1193
 * @see av_frame_side_data_get_c()
1194
 */
1195
static inline
1196
const AVFrameSideData *av_frame_side_data_get(AVFrameSideData * const *sd,
1197
                                              const int nb_sd,
1198
                                              enum AVFrameSideDataType type)
1199
0
{
1200
0
    return av_frame_side_data_get_c((const AVFrameSideData * const *)sd,
1201
0
                                    nb_sd, type);
1202
0
}
Unexecuted instantiation: avfiltergraph.c:av_frame_side_data_get
Unexecuted instantiation: buffersink.c:av_frame_side_data_get
Unexecuted instantiation: buffersrc.c:av_frame_side_data_get
Unexecuted instantiation: formats.c:av_frame_side_data_get
Unexecuted instantiation: framequeue.c:av_frame_side_data_get
Unexecuted instantiation: graphparser.c:av_frame_side_data_get
Unexecuted instantiation: pthread.c:av_frame_side_data_get
Unexecuted instantiation: video.c:av_frame_side_data_get
Unexecuted instantiation: allfilters.c:av_frame_side_data_get
Unexecuted instantiation: avfilter.c:av_frame_side_data_get
Unexecuted instantiation: framepool.c:av_frame_side_data_get
Unexecuted instantiation: audio.c:av_frame_side_data_get
Unexecuted instantiation: swscale.c:av_frame_side_data_get
Unexecuted instantiation: utils.c:av_frame_side_data_get
Unexecuted instantiation: vscale.c:av_frame_side_data_get
Unexecuted instantiation: yuv2rgb.c:av_frame_side_data_get
Unexecuted instantiation: alphablend.c:av_frame_side_data_get
Unexecuted instantiation: format.c:av_frame_side_data_get
Unexecuted instantiation: graph.c:av_frame_side_data_get
Unexecuted instantiation: hscale_fast_bilinear.c:av_frame_side_data_get
Unexecuted instantiation: input.c:av_frame_side_data_get
Unexecuted instantiation: lut3d.c:av_frame_side_data_get
Unexecuted instantiation: ops.c:av_frame_side_data_get
Unexecuted instantiation: ops_dispatch.c:av_frame_side_data_get
Unexecuted instantiation: ops_memcpy.c:av_frame_side_data_get
Unexecuted instantiation: ops_optimizer.c:av_frame_side_data_get
Unexecuted instantiation: options.c:av_frame_side_data_get
Unexecuted instantiation: output.c:av_frame_side_data_get
Unexecuted instantiation: rgb2rgb.c:av_frame_side_data_get
Unexecuted instantiation: slice.c:av_frame_side_data_get
Unexecuted instantiation: swscale_unscaled.c:av_frame_side_data_get
Unexecuted instantiation: uops_backend.c:av_frame_side_data_get
Unexecuted instantiation: cms.c:av_frame_side_data_get
Unexecuted instantiation: csputils.c:av_frame_side_data_get
Unexecuted instantiation: filters.c:av_frame_side_data_get
Unexecuted instantiation: gamma.c:av_frame_side_data_get
Unexecuted instantiation: hscale.c:av_frame_side_data_get
Unexecuted instantiation: ops_chain.c:av_frame_side_data_get
Unexecuted instantiation: uops.c:av_frame_side_data_get
Unexecuted instantiation: avformat.c:av_frame_side_data_get
Unexecuted instantiation: demux.c:av_frame_side_data_get
Unexecuted instantiation: seek.c:av_frame_side_data_get
Unexecuted instantiation: allcodecs.c:av_frame_side_data_get
Unexecuted instantiation: avcodec.c:av_frame_side_data_get
Unexecuted instantiation: codec_desc.c:av_frame_side_data_get
Unexecuted instantiation: codec_par.c:av_frame_side_data_get
Unexecuted instantiation: decode.c:av_frame_side_data_get
Unexecuted instantiation: encode.c:av_frame_side_data_get
Unexecuted instantiation: exif.c:av_frame_side_data_get
Unexecuted instantiation: get_buffer.c:av_frame_side_data_get
Unexecuted instantiation: parser.c:av_frame_side_data_get
Unexecuted instantiation: parsers.c:av_frame_side_data_get
Unexecuted instantiation: profiles.c:av_frame_side_data_get
Unexecuted instantiation: pthread_frame.c:av_frame_side_data_get
Unexecuted instantiation: pthread_slice.c:av_frame_side_data_get
Unexecuted instantiation: raw.c:av_frame_side_data_get
Unexecuted instantiation: threadprogress.c:av_frame_side_data_get
Unexecuted instantiation: to_upper4.c:av_frame_side_data_get
Unexecuted instantiation: container_fifo.c:av_frame_side_data_get
Unexecuted instantiation: frame.c:av_frame_side_data_get
Unexecuted instantiation: hwcontext.c:av_frame_side_data_get
Unexecuted instantiation: mastering_display_metadata.c:av_frame_side_data_get
Unexecuted instantiation: side_data.c:av_frame_side_data_get
1203
1204
/**
1205
 * Remove and free all side data instances of the given type from an array.
1206
 */
1207
void av_frame_side_data_remove(AVFrameSideData ***sd, int *nb_sd,
1208
                               enum AVFrameSideDataType type);
1209
1210
/**
1211
 * Remove and free all side data instances that match any of the given
1212
 * side data properties. (See enum AVSideDataProps)
1213
 */
1214
void av_frame_side_data_remove_by_props(AVFrameSideData ***sd, int *nb_sd,
1215
                                        int props);
1216
1217
/**
1218
 * @}
1219
 */
1220
1221
#endif /* AVUTIL_FRAME_H */