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9dbdabe0e0
Include all required headers explicitly, avoid avcodec.h dependency.
218 lines
8.3 KiB
C
218 lines
8.3 KiB
C
/*
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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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#ifndef AVCODEC_CBS_INTERNAL_H
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#define AVCODEC_CBS_INTERNAL_H
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#include <stdint.h>
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#include "libavutil/buffer.h"
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#include "libavutil/log.h"
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#include "cbs.h"
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#include "codec_id.h"
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#include "get_bits.h"
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#include "put_bits.h"
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enum CBSContentType {
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// Unit content is a simple structure.
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CBS_CONTENT_TYPE_POD,
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// Unit content contains some references to other structures, but all
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// managed via buffer reference counting. The descriptor defines the
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// structure offsets of every buffer reference.
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CBS_CONTENT_TYPE_INTERNAL_REFS,
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// Unit content is something more complex. The descriptor defines
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// special functions to manage the content.
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CBS_CONTENT_TYPE_COMPLEX,
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};
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enum {
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// Maximum number of unit types described by the same unit type
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// descriptor.
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CBS_MAX_UNIT_TYPES = 3,
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// Maximum number of reference buffer offsets in any one unit.
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CBS_MAX_REF_OFFSETS = 2,
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// Special value used in a unit type descriptor to indicate that it
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// applies to a large range of types rather than a set of discrete
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// values.
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CBS_UNIT_TYPE_RANGE = -1,
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};
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typedef const struct CodedBitstreamUnitTypeDescriptor {
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// Number of entries in the unit_types array, or the special value
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// CBS_UNIT_TYPE_RANGE to indicate that the range fields should be
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// used instead.
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int nb_unit_types;
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// Array of unit types that this entry describes.
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const CodedBitstreamUnitType unit_types[CBS_MAX_UNIT_TYPES];
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// Start and end of unit type range, used if nb_unit_types is
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// CBS_UNIT_TYPE_RANGE.
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const CodedBitstreamUnitType unit_type_range_start;
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const CodedBitstreamUnitType unit_type_range_end;
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// The type of content described.
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enum CBSContentType content_type;
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// The size of the structure which should be allocated to contain
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// the decomposed content of this type of unit.
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size_t content_size;
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// Number of entries in the ref_offsets array. Only used if the
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// content_type is CBS_CONTENT_TYPE_INTERNAL_REFS.
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int nb_ref_offsets;
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// The structure must contain two adjacent elements:
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// type *field;
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// AVBufferRef *field_ref;
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// where field points to something in the buffer referred to by
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// field_ref. This offset is then set to offsetof(struct, field).
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size_t ref_offsets[CBS_MAX_REF_OFFSETS];
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void (*content_free)(void *opaque, uint8_t *data);
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int (*content_clone)(AVBufferRef **ref, CodedBitstreamUnit *unit);
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} CodedBitstreamUnitTypeDescriptor;
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typedef struct CodedBitstreamType {
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enum AVCodecID codec_id;
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// A class for the private data, used to declare private AVOptions.
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// This field is NULL for types that do not declare any options.
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// If this field is non-NULL, the first member of the filter private data
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// must be a pointer to AVClass.
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const AVClass *priv_class;
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size_t priv_data_size;
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// List of unit type descriptors for this codec.
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// Terminated by a descriptor with nb_unit_types equal to zero.
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const CodedBitstreamUnitTypeDescriptor *unit_types;
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// Split frag->data into coded bitstream units, creating the
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// frag->units array. Fill data but not content on each unit.
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// The header argument should be set if the fragment came from
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// a header block, which may require different parsing for some
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// codecs (e.g. the AVCC header in H.264).
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int (*split_fragment)(CodedBitstreamContext *ctx,
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CodedBitstreamFragment *frag,
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int header);
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// Read the unit->data bitstream and decompose it, creating
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// unit->content.
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int (*read_unit)(CodedBitstreamContext *ctx,
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CodedBitstreamUnit *unit);
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// Write the data bitstream from unit->content into pbc.
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// Return value AVERROR(ENOSPC) indicates that pbc was too small.
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int (*write_unit)(CodedBitstreamContext *ctx,
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CodedBitstreamUnit *unit,
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PutBitContext *pbc);
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// Read the data from all of frag->units and assemble it into
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// a bitstream for the whole fragment.
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int (*assemble_fragment)(CodedBitstreamContext *ctx,
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CodedBitstreamFragment *frag);
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// Reset the codec internal state.
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void (*flush)(CodedBitstreamContext *ctx);
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// Free the codec internal state.
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void (*close)(CodedBitstreamContext *ctx);
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} CodedBitstreamType;
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// Helper functions for trace output.
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void ff_cbs_trace_header(CodedBitstreamContext *ctx,
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const char *name);
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void ff_cbs_trace_syntax_element(CodedBitstreamContext *ctx, int position,
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const char *name, const int *subscripts,
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const char *bitstring, int64_t value);
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// Helper functions for read/write of common bitstream elements, including
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// generation of trace output.
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int ff_cbs_read_unsigned(CodedBitstreamContext *ctx, GetBitContext *gbc,
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int width, const char *name,
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const int *subscripts, uint32_t *write_to,
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uint32_t range_min, uint32_t range_max);
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int ff_cbs_write_unsigned(CodedBitstreamContext *ctx, PutBitContext *pbc,
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int width, const char *name,
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const int *subscripts, uint32_t value,
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uint32_t range_min, uint32_t range_max);
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int ff_cbs_read_signed(CodedBitstreamContext *ctx, GetBitContext *gbc,
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int width, const char *name,
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const int *subscripts, int32_t *write_to,
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int32_t range_min, int32_t range_max);
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int ff_cbs_write_signed(CodedBitstreamContext *ctx, PutBitContext *pbc,
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int width, const char *name,
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const int *subscripts, int32_t value,
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int32_t range_min, int32_t range_max);
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// The largest unsigned value representable in N bits, suitable for use as
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// range_max in the above functions.
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#define MAX_UINT_BITS(length) ((UINT64_C(1) << (length)) - 1)
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// The largest signed value representable in N bits, suitable for use as
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// range_max in the above functions.
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#define MAX_INT_BITS(length) ((INT64_C(1) << ((length) - 1)) - 1)
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// The smallest signed value representable in N bits, suitable for use as
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// range_min in the above functions.
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#define MIN_INT_BITS(length) (-(INT64_C(1) << ((length) - 1)))
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#define CBS_UNIT_TYPE_POD(type, structure) { \
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.nb_unit_types = 1, \
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.unit_types = { type }, \
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.content_type = CBS_CONTENT_TYPE_POD, \
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.content_size = sizeof(structure), \
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}
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#define CBS_UNIT_TYPE_INTERNAL_REF(type, structure, ref_field) { \
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.nb_unit_types = 1, \
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.unit_types = { type }, \
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.content_type = CBS_CONTENT_TYPE_INTERNAL_REFS, \
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.content_size = sizeof(structure), \
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.nb_ref_offsets = 1, \
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.ref_offsets = { offsetof(structure, ref_field) }, \
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}
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#define CBS_UNIT_TYPE_COMPLEX(type, structure, free_func) { \
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.nb_unit_types = 1, \
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.unit_types = { type }, \
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.content_type = CBS_CONTENT_TYPE_COMPLEX, \
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.content_size = sizeof(structure), \
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.content_free = free_func, \
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}
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#define CBS_UNIT_TYPE_END_OF_LIST { .nb_unit_types = 0 }
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extern const CodedBitstreamType ff_cbs_type_av1;
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extern const CodedBitstreamType ff_cbs_type_h264;
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extern const CodedBitstreamType ff_cbs_type_h265;
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extern const CodedBitstreamType ff_cbs_type_jpeg;
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extern const CodedBitstreamType ff_cbs_type_mpeg2;
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extern const CodedBitstreamType ff_cbs_type_vp9;
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#endif /* AVCODEC_CBS_INTERNAL_H */
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