/* * VP8 compatible video decoder * * Copyright (C) 2010 David Conrad * Copyright (C) 2010 Ronald S. Bultje * Copyright (C) 2010 Fiona Glaser * Copyright (C) 2012 Daniel Kang * * This file is part of FFmpeg. * * FFmpeg is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * FFmpeg is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with FFmpeg; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
typedefstruct VP8Macroblock {
uint8_t skip; // TODO: make it possible to check for at least (i4x4 or split_mv) // in one op. are others needed?
uint8_t mode;
uint8_t ref_frame;
uint8_t partitioning;
uint8_t chroma_pred_mode;
uint8_t segment;
uint8_t intra4x4_pred_mode_mb[16];
DECLARE_ALIGNED(4, uint8_t, intra4x4_pred_mode_top)[4];
VP8mv mv;
VP8mv bmv[16];
} VP8Macroblock;
typedefstruct VP8intmv { int x; int y;
} VP8intmv;
typedefstruct VP8ThreadData {
DECLARE_ALIGNED(16, int16_t, block)[6][4][16];
DECLARE_ALIGNED(16, int16_t, block_dc)[16]; /** * This is the index plus one of the last non-zero coeff * for each of the blocks in the current macroblock. * So, 0 -> no coeffs * 1 -> dc-only (special transform) * 2+-> full transform
*/
DECLARE_ALIGNED(16, uint8_t, non_zero_count_cache)[6][4]; /** * For coeff decode, we need to know whether the above block had non-zero * coefficients. This means for each macroblock, we need data for 4 luma * blocks, 2 u blocks, 2 v blocks, and the luma dc block, for a total of 9 * per macroblock. We keep the last row in top_nnz.
*/
DECLARE_ALIGNED(8, uint8_t, left_nnz)[9]; int thread_nr; #if HAVE_THREADS
pthread_mutex_t lock;
pthread_cond_t cond; #endif
atomic_int thread_mb_pos; // (mb_y << 16) | (mb_x & 0xFFFF)
atomic_int wait_mb_pos; // What the current thread is waiting on.
int8_t sign_bias[4]; ///< one state [0, 1] per ref frame type int ref_count[3];
/** * Base parameters for segmentation, i.e. per-macroblock parameters. * These must be kept unchanged even if segmentation is not used for * a frame, since the values persist between interframes.
*/ struct {
uint8_t enabled;
uint8_t absolute_vals;
uint8_t update_map;
uint8_t update_feature_data;
int8_t base_quant[4];
int8_t filter_level[4]; ///< base loop filter level
} segmentation;
/** * Macroblocks can have one of 4 different quants in a frame when * segmentation is enabled. * If segmentation is disabled, only the first segment's values are used.
*/ struct { // [0] - DC qmul [1] - AC qmul
int16_t luma_qmul[2];
int16_t luma_dc_qmul[2]; ///< luma dc-only block quant
int16_t chroma_qmul[2];
} qmat[4];
// Raw quantisation values, which may be needed by hwaccel decode. struct { int yac_qi; int ydc_delta; int y2dc_delta; int y2ac_delta; int uvdc_delta; int uvac_delta;
} quant;
struct {
uint8_t enabled; ///< whether each mb can have a different strength based on mode/ref
uint8_t update;
/** * filter strength adjustment for the following macroblock modes: * [0-3] - i16x16 (always zero) * [4] - i4x4 * [5] - zero mv * [6] - inter modes except for zero or split mv * [7] - split mv * i16x16 modes never have any adjustment
*/
int8_t mode[VP8_MVMODE_SPLIT + 1];
VPXRangeCoder c; ///< header context, includes mb modes and motion vectors
/* This contains the entropy coder state at the end of the header * block, in the form specified by the standard. For use by * hwaccels, so that a hardware decoder has the information to * start decoding at the macroblock layer.
*/ struct { const uint8_t *input;
uint32_t range;
uint32_t value; int bit_count;
} coder_state_at_header_end;
int header_partition_size;
/** * These are all of the updatable probabilities for binary decisions. * They are only implicitly reset on keyframes, making it quite likely * for an interframe to desync if a prior frame's header was corrupt * or missing outright!
*/ struct {
uint8_t segmentid[3];
uint8_t mbskip;
uint8_t intra;
uint8_t last;
uint8_t golden;
uint8_t pred16x16[4];
uint8_t pred8x8c[3];
uint8_t token[4][16][3][NUM_DCT_TOKENS - 1];
uint8_t mvc[2][19];
uint8_t scan[16];
} prob[2];
VP8Macroblock *macroblocks_base; int invisible; int update_last; ///< update VP8_FRAME_PREVIOUS with the current one int update_golden; ///< VP8_FRAME_NONE if not updated, or which frame to copy if so int update_altref;
/** * If this flag is not set, all the probability updates * are discarded after this frame is decoded.
*/ int update_probabilities;
/** * All coefficients are contained in separate arith coding contexts. * There can be 1, 2, 4, or 8 of these after the header context.
*/ int num_coeff_partitions;
VPXRangeCoder coeff_partition[8]; int coeff_partition_size[8];
VideoDSPContext vdsp;
VP8DSPContext vp8dsp;
H264PredContext hpc;
vp8_mc_func put_pixels_tab[3][3][3];
VP8Frame frames[5];
uint8_t colorspace; ///< 0 is the only value allowed (meaning bt601)
uint8_t fullrange; ///< whether we can skip clamping in dsp functions
int num_jobs; /** * This describes the macroblock memory layout. * 0 -> Only width+height*2+1 macroblocks allocated (frame/single thread). * 1 -> Macroblocks for entire frame allocated (sliced thread).
*/ int mb_layout;
int (*decode_mb_row_no_filter)(AVCodecContext *avctx, void *tdata, int jobnr, int threadnr); void (*filter_mb_row)(AVCodecContext *avctx, void *tdata, int jobnr, int threadnr);
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