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https://github.com/FFmpeg/FFmpeg.git
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7bd3b73716
This already fixes a race in the vp9-encparams test. In this test, side data is added to the current frame after having been decoded (and therefore after ff_thread_finish_setup() has been called). Yet the update_thread_context callback called ff_thread_ref_frame() and therefore av_frame_ref() with this frame as source frame and the ensuing read was unsynchronised with adding the side data, i.e. there was a data race. By switching to the ProgressFrame API the implicit av_frame_ref() is removed and the race fixed except if this frame is later reused by a show-existing-frame which uses an explicit av_frame_ref(). The vp9-encparams test does not cover this, so this commit already fixes all the races in this test. This decoder kept multiple references to the same ThreadFrames in the same context and therefore had lots of implicit av_frame_ref() even when decoding single-threaded. This incurred lots of small allocations: When decoding an ordinary 10s video in single-threaded mode the number of allocations reported by Valgrind went down from 57,814 to 20,908; for 10 threads it went down from 84,223 to 21,901. Reviewed-by: Anton Khirnov <anton@khirnov.net> Signed-off-by: Andreas Rheinhardt <andreas.rheinhardt@outlook.com>
259 lines
7.6 KiB
C
259 lines
7.6 KiB
C
/*
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* VP9 compatible video decoder
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*
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* Copyright (C) 2013 Ronald S. Bultje <rsbultje gmail com>
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* Copyright (C) 2013 Clément Bœsch <u pkh me>
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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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#ifndef AVCODEC_VP9DEC_H
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#define AVCODEC_VP9DEC_H
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#include <stddef.h>
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#include <stdint.h>
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#include <stdatomic.h>
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#include "libavutil/mem_internal.h"
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#include "libavutil/pixfmt.h"
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#include "libavutil/thread.h"
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#include "get_bits.h"
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#include "videodsp.h"
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#include "vp9.h"
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#include "vp9dsp.h"
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#include "vp9shared.h"
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#include "vpx_rac.h"
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#define REF_INVALID_SCALE 0xFFFF
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enum MVJoint {
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MV_JOINT_ZERO,
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MV_JOINT_H,
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MV_JOINT_V,
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MV_JOINT_HV,
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};
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typedef struct ProbContext {
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uint8_t y_mode[4][9];
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uint8_t uv_mode[10][9];
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uint8_t filter[4][2];
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uint8_t mv_mode[7][3];
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uint8_t intra[4];
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uint8_t comp[5];
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uint8_t single_ref[5][2];
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uint8_t comp_ref[5];
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uint8_t tx32p[2][3];
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uint8_t tx16p[2][2];
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uint8_t tx8p[2];
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uint8_t skip[3];
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uint8_t mv_joint[3];
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struct {
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uint8_t sign;
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uint8_t classes[10];
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uint8_t class0;
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uint8_t bits[10];
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uint8_t class0_fp[2][3];
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uint8_t fp[3];
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uint8_t class0_hp;
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uint8_t hp;
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} mv_comp[2];
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uint8_t partition[4][4][3];
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} ProbContext;
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typedef struct VP9Filter {
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uint8_t level[8 * 8];
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uint8_t /* bit=col */ mask[2 /* 0=y, 1=uv */][2 /* 0=col, 1=row */]
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[8 /* rows */][4 /* 0=16, 1=8, 2=4, 3=inner4 */];
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} VP9Filter;
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typedef struct VP9Block {
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uint8_t seg_id, intra, comp, ref[2], mode[4], uvmode, skip;
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enum FilterMode filter;
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VP9mv mv[4 /* b_idx */][2 /* ref */];
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enum BlockSize bs;
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enum TxfmMode tx, uvtx;
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enum BlockLevel bl;
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enum BlockPartition bp;
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} VP9Block;
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typedef struct VP9TileData VP9TileData;
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typedef struct VP9Context {
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VP9SharedContext s;
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VP9TileData *td;
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VP9DSPContext dsp;
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VideoDSPContext vdsp;
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GetBitContext gb;
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VPXRangeCoder c;
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int pass, active_tile_cols;
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#if HAVE_THREADS
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pthread_mutex_t progress_mutex;
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pthread_cond_t progress_cond;
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atomic_int *entries;
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unsigned pthread_init_cnt;
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#endif
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uint8_t ss_h, ss_v;
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uint8_t last_bpp, bpp_index, bytesperpixel;
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uint8_t last_keyframe;
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// sb_cols/rows, rows/cols and last_fmt are used for allocating all internal
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// arrays, and are thus per-thread. w/h and gf_fmt are synced between threads
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// and are therefore per-stream. pix_fmt represents the value in the header
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// of the currently processed frame.
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int w, h;
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enum AVPixelFormat pix_fmt, last_fmt, gf_fmt;
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unsigned sb_cols, sb_rows, rows, cols;
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ProgressFrame next_refs[8];
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struct {
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uint8_t lim_lut[64];
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uint8_t mblim_lut[64];
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} filter_lut;
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struct {
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ProbContext p;
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uint8_t coef[4][2][2][6][6][3];
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} prob_ctx[4];
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struct {
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ProbContext p;
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uint8_t coef[4][2][2][6][6][11];
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} prob;
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// contextual (above) cache
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uint8_t *above_partition_ctx;
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uint8_t *above_mode_ctx;
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// FIXME maybe merge some of the below in a flags field?
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uint8_t *above_y_nnz_ctx;
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uint8_t *above_uv_nnz_ctx[2];
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uint8_t *above_skip_ctx; // 1bit
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uint8_t *above_txfm_ctx; // 2bit
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uint8_t *above_segpred_ctx; // 1bit
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uint8_t *above_intra_ctx; // 1bit
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uint8_t *above_comp_ctx; // 1bit
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uint8_t *above_ref_ctx; // 2bit
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uint8_t *above_filter_ctx;
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VP9mv (*above_mv_ctx)[2];
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// whole-frame cache
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uint8_t *intra_pred_data[3];
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VP9Filter *lflvl;
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// block reconstruction intermediates
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int block_alloc_using_2pass;
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uint16_t mvscale[3][2];
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uint8_t mvstep[3][2];
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// frame specific buffer pools
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struct FFRefStructPool *frame_extradata_pool;
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int frame_extradata_pool_size;
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} VP9Context;
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struct VP9TileData {
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const VP9Context *s;
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VPXRangeCoder *c_b;
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VPXRangeCoder *c;
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int row, row7, col, col7;
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uint8_t *dst[3];
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ptrdiff_t y_stride, uv_stride;
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VP9Block *b_base, *b;
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unsigned tile_col_start;
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struct {
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unsigned y_mode[4][10];
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unsigned uv_mode[10][10];
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unsigned filter[4][3];
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unsigned mv_mode[7][4];
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unsigned intra[4][2];
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unsigned comp[5][2];
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unsigned single_ref[5][2][2];
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unsigned comp_ref[5][2];
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unsigned tx32p[2][4];
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unsigned tx16p[2][3];
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unsigned tx8p[2][2];
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unsigned skip[3][2];
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unsigned mv_joint[4];
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struct {
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unsigned sign[2];
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unsigned classes[11];
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unsigned class0[2];
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unsigned bits[10][2];
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unsigned class0_fp[2][4];
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unsigned fp[4];
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unsigned class0_hp[2];
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unsigned hp[2];
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} mv_comp[2];
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unsigned partition[4][4][4];
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unsigned coef[4][2][2][6][6][3];
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unsigned eob[4][2][2][6][6][2];
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} counts;
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// whole-frame cache
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DECLARE_ALIGNED(32, uint8_t, edge_emu_buffer)[135 * 144 * 2];
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// contextual (left) cache
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DECLARE_ALIGNED(16, uint8_t, left_y_nnz_ctx)[16];
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DECLARE_ALIGNED(16, uint8_t, left_mode_ctx)[16];
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DECLARE_ALIGNED(16, VP9mv, left_mv_ctx)[16][2];
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DECLARE_ALIGNED(16, uint8_t, left_uv_nnz_ctx)[2][16];
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DECLARE_ALIGNED(8, uint8_t, left_partition_ctx)[8];
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DECLARE_ALIGNED(8, uint8_t, left_skip_ctx)[8];
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DECLARE_ALIGNED(8, uint8_t, left_txfm_ctx)[8];
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DECLARE_ALIGNED(8, uint8_t, left_segpred_ctx)[8];
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DECLARE_ALIGNED(8, uint8_t, left_intra_ctx)[8];
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DECLARE_ALIGNED(8, uint8_t, left_comp_ctx)[8];
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DECLARE_ALIGNED(8, uint8_t, left_ref_ctx)[8];
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DECLARE_ALIGNED(8, uint8_t, left_filter_ctx)[8];
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// block reconstruction intermediates
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DECLARE_ALIGNED(32, uint8_t, tmp_y)[64 * 64 * 2];
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DECLARE_ALIGNED(32, uint8_t, tmp_uv)[2][64 * 64 * 2];
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struct { int x, y; } min_mv, max_mv;
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int16_t *block_base, *block, *uvblock_base[2], *uvblock[2];
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uint8_t *eob_base, *uveob_base[2], *eob, *uveob[2];
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// error message
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int error_info;
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struct {
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unsigned int row:13;
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unsigned int col:13;
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unsigned int block_size_idx_x:2;
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unsigned int block_size_idx_y:2;
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} *block_structure;
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unsigned int nb_block_structure;
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};
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void ff_vp9_fill_mv(VP9TileData *td, VP9mv *mv, int mode, int sb);
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void ff_vp9_adapt_probs(VP9Context *s);
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void ff_vp9_decode_block(VP9TileData *td, int row, int col,
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VP9Filter *lflvl, ptrdiff_t yoff, ptrdiff_t uvoff,
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enum BlockLevel bl, enum BlockPartition bp);
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void ff_vp9_loopfilter_sb(struct AVCodecContext *avctx, VP9Filter *lflvl,
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int row, int col, ptrdiff_t yoff, ptrdiff_t uvoff);
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void ff_vp9_intra_recon_8bpp(VP9TileData *td,
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ptrdiff_t y_off, ptrdiff_t uv_off);
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void ff_vp9_intra_recon_16bpp(VP9TileData *td,
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ptrdiff_t y_off, ptrdiff_t uv_off);
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void ff_vp9_inter_recon_8bpp(VP9TileData *td);
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void ff_vp9_inter_recon_16bpp(VP9TileData *td);
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#endif /* AVCODEC_VP9DEC_H */
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