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https://gitee.com/openharmony/third_party_ffmpeg
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7c92eaace2
All cbs-functions to write units share a common pattern: 1. They check whether they have a write buffer (that is used to store the unit's data until the needed size becomes known after writing the unit when a dedicated buffer will be allocated). 2. They use this buffer for a PutBitContext. 3. The (codec-specific) writing takes place through the PutBitContext. 4. The return value is checked. AVERROR(ENOSPC) here always indicates that the buffer was too small and leads to a reallocation of said buffer. 5. The final buffer will be allocated and the data copied. This commit factors this common code out in a single function in cbs.c. Signed-off-by: Andreas Rheinhardt <andreas.rheinhardt@gmail.com>
214 lines
5.3 KiB
C
214 lines
5.3 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_VP9_H
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#define AVCODEC_CBS_VP9_H
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#include <stddef.h>
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#include <stdint.h>
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#include "cbs.h"
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// Miscellaneous constants (section 3).
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enum {
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VP9_REFS_PER_FRAME = 3,
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VP9_MIN_TILE_WIDTH_B64 = 4,
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VP9_MAX_TILE_WIDTH_B64 = 64,
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VP9_NUM_REF_FRAMES = 8,
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VP9_MAX_REF_FRAMES = 4,
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VP9_MAX_SEGMENTS = 8,
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VP9_SEG_LVL_MAX = 4,
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};
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// Frame types (section 7.2).
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enum {
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VP9_KEY_FRAME = 0,
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VP9_NON_KEY_FRAME = 1,
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};
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// Frame sync bytes (section 7.2.1).
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enum {
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VP9_FRAME_SYNC_0 = 0x49,
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VP9_FRAME_SYNC_1 = 0x83,
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VP9_FRAME_SYNC_2 = 0x42,
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};
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// Color space values (section 7.2.2).
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enum {
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VP9_CS_UNKNOWN = 0,
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VP9_CS_BT_601 = 1,
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VP9_CS_BT_709 = 2,
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VP9_CS_SMPTE_170 = 3,
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VP9_CS_SMPTE_240 = 4,
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VP9_CS_BT_2020 = 5,
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VP9_CS_RESERVED = 6,
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VP9_CS_RGB = 7,
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};
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// Reference frame types (section 7.4.12).
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enum {
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VP9_INTRA_FRAME = 0,
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VP9_LAST_FRAME = 1,
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VP9_GOLDEN_FRAME = 2,
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VP9_ALTREF_FRAME = 3,
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};
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// Superframe properties (section B.3).
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enum {
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VP9_MAX_FRAMES_IN_SUPERFRAME = 8,
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VP9_SUPERFRAME_MARKER = 6,
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};
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typedef struct VP9RawFrameHeader {
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uint8_t frame_marker;
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uint8_t profile_low_bit;
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uint8_t profile_high_bit;
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uint8_t show_existing_frame;
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uint8_t frame_to_show_map_idx;
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uint8_t frame_type;
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uint8_t show_frame;
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uint8_t error_resilient_mode;
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// Color config.
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uint8_t ten_or_twelve_bit;
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uint8_t color_space;
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uint8_t color_range;
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uint8_t subsampling_x;
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uint8_t subsampling_y;
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uint8_t refresh_frame_flags;
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uint8_t intra_only;
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uint8_t reset_frame_context;
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uint8_t ref_frame_idx[VP9_REFS_PER_FRAME];
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uint8_t ref_frame_sign_bias[VP9_MAX_REF_FRAMES];
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uint8_t allow_high_precision_mv;
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uint8_t refresh_frame_context;
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uint8_t frame_parallel_decoding_mode;
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uint8_t frame_context_idx;
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// Frame/render size.
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uint8_t found_ref[VP9_REFS_PER_FRAME];
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uint16_t frame_width_minus_1;
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uint16_t frame_height_minus_1;
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uint8_t render_and_frame_size_different;
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uint16_t render_width_minus_1;
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uint16_t render_height_minus_1;
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// Interpolation filter.
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uint8_t is_filter_switchable;
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uint8_t raw_interpolation_filter_type;
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// Loop filter params.
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uint8_t loop_filter_level;
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uint8_t loop_filter_sharpness;
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uint8_t loop_filter_delta_enabled;
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uint8_t loop_filter_delta_update;
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uint8_t update_ref_delta[VP9_MAX_REF_FRAMES];
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int8_t loop_filter_ref_deltas[VP9_MAX_REF_FRAMES];
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uint8_t update_mode_delta[2];
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int8_t loop_filter_mode_deltas[2];
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// Quantization params.
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uint8_t base_q_idx;
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int8_t delta_q_y_dc;
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int8_t delta_q_uv_dc;
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int8_t delta_q_uv_ac;
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// Segmentation params.
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uint8_t segmentation_enabled;
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uint8_t segmentation_update_map;
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uint8_t segmentation_tree_probs[7];
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uint8_t segmentation_temporal_update;
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uint8_t segmentation_pred_prob[3];
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uint8_t segmentation_update_data;
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uint8_t segmentation_abs_or_delta_update;
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uint8_t feature_enabled[VP9_MAX_SEGMENTS][VP9_SEG_LVL_MAX];
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uint8_t feature_value[VP9_MAX_SEGMENTS][VP9_SEG_LVL_MAX];
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uint8_t feature_sign[VP9_MAX_SEGMENTS][VP9_SEG_LVL_MAX];
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// Tile info.
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uint8_t tile_cols_log2;
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uint8_t tile_rows_log2;
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uint16_t header_size_in_bytes;
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} VP9RawFrameHeader;
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typedef struct VP9RawFrame {
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VP9RawFrameHeader header;
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uint8_t *data;
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size_t data_size;
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AVBufferRef *data_ref;
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} VP9RawFrame;
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typedef struct VP9RawSuperframeIndex {
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uint8_t superframe_marker;
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uint8_t bytes_per_framesize_minus_1;
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uint8_t frames_in_superframe_minus_1;
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uint32_t frame_sizes[VP9_MAX_FRAMES_IN_SUPERFRAME];
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} VP9RawSuperframeIndex;
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typedef struct VP9RawSuperframe {
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VP9RawFrame frames[VP9_MAX_FRAMES_IN_SUPERFRAME];
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VP9RawSuperframeIndex index;
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} VP9RawSuperframe;
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typedef struct VP9ReferenceFrameState {
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int frame_width; // RefFrameWidth
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int frame_height; // RefFrameHeight
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int subsampling_x; // RefSubsamplingX
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int subsampling_y; // RefSubsamplingY
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int bit_depth; // RefBitDepth
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} VP9ReferenceFrameState;
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typedef struct CodedBitstreamVP9Context {
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int profile;
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// Frame dimensions in 8x8 mode info blocks.
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uint16_t mi_cols;
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uint16_t mi_rows;
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// Frame dimensions in 64x64 superblocks.
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uint16_t sb64_cols;
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uint16_t sb64_rows;
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int frame_width;
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int frame_height;
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uint8_t subsampling_x;
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uint8_t subsampling_y;
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int bit_depth;
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VP9ReferenceFrameState ref[VP9_NUM_REF_FRAMES];
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} CodedBitstreamVP9Context;
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#endif /* AVCODEC_CBS_VP9_H */
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