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vp9dsp.h (5714B)


      1 /*
      2 * VP9 compatible video decoder
      3 *
      4 * Copyright (C) 2013 Ronald S. Bultje <rsbultje gmail com>
      5 * Copyright (C) 2013 Clément Bœsch <u pkh me>
      6 *
      7 * This file is part of FFmpeg.
      8 *
      9 * FFmpeg is free software; you can redistribute it and/or
     10 * modify it under the terms of the GNU Lesser General Public
     11 * License as published by the Free Software Foundation; either
     12 * version 2.1 of the License, or (at your option) any later version.
     13 *
     14 * FFmpeg is distributed in the hope that it will be useful,
     15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
     16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
     17 * Lesser General Public License for more details.
     18 *
     19 * You should have received a copy of the GNU Lesser General Public
     20 * License along with FFmpeg; if not, write to the Free Software
     21 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
     22 */
     23 
     24 #ifndef AVCODEC_VP9DSP_H
     25 #define AVCODEC_VP9DSP_H
     26 
     27 #include <stddef.h>
     28 #include <stdint.h>
     29 
     30 #include "libavcodec/vp9.h"
     31 #include "libavutil/attributes_internal.h"
     32 
     33 typedef void (*vp9_mc_func)(uint8_t *dst, ptrdiff_t dst_stride,
     34                            const uint8_t *ref, ptrdiff_t ref_stride,
     35                            int h, int mx, int my);
     36 typedef void (*vp9_scaled_mc_func)(uint8_t *dst, ptrdiff_t dst_stride,
     37                                   const uint8_t *ref, ptrdiff_t ref_stride,
     38                                   int h, int mx, int my, int dx, int dy);
     39 
     40 typedef struct VP9DSPContext {
     41    /*
     42     * dimension 1: 0=4x4, 1=8x8, 2=16x16, 3=32x32
     43     * dimension 2: intra prediction modes
     44     *
     45     * dst/left/top is aligned by transform-size (i.e. 4, 8, 16 or 32 pixels)
     46     * stride is aligned by 16 pixels
     47     * top[-1] is top/left; top[4,7] is top-right for 4x4
     48     */
     49    // FIXME(rbultje) maybe replace left/top pointers with HAVE_TOP/
     50    // HAVE_LEFT/HAVE_TOPRIGHT flags instead, and then handle it in-place?
     51    // also needs to fit in with what H.264/VP8/etc do
     52    void (*intra_pred[N_TXFM_SIZES][N_INTRA_PRED_MODES])(uint8_t *dst,
     53                                                         ptrdiff_t stride,
     54                                                         const uint8_t *left,
     55                                                         const uint8_t *top);
     56 
     57    /*
     58     * dimension 1: 0=4x4, 1=8x8, 2=16x16, 3=32x32, 4=lossless (3-4=dct only)
     59     * dimension 2: 0=dct/dct, 1=dct/adst, 2=adst/dct, 3=adst/adst
     60     *
     61     * dst is aligned by transform-size (i.e. 4, 8, 16 or 32 pixels)
     62     * stride is aligned by 16 pixels
     63     * block is 16-byte aligned
     64     * eob indicates the position (+1) of the last non-zero coefficient,
     65     * in scan-order. This can be used to write faster versions, e.g. a
     66     * dc-only 4x4/8x8/16x16/32x32, or a 4x4-only (eob<10) 8x8/16x16/32x32,
     67     * etc.
     68     */
     69    // FIXME also write idct_add_block() versions for whole (inter) pred
     70    // blocks, so we can do 2 4x4s at once
     71    void (*itxfm_add[N_TXFM_SIZES + 1][N_TXFM_TYPES])(uint8_t *dst,
     72                                                      ptrdiff_t stride,
     73                                                      int16_t *block, int eob);
     74 
     75    /*
     76     * dimension 1: width of filter (0=4, 1=8, 2=16)
     77     * dimension 2: 0=col-edge filter (h), 1=row-edge filter (v)
     78     *
     79     * dst/stride are aligned by 8
     80     */
     81    void (*loop_filter_8[3][2])(uint8_t *dst, ptrdiff_t stride,
     82                                int mb_lim, int lim, int hev_thr);
     83 
     84    /*
     85     * dimension 1: 0=col-edge filter (h), 1=row-edge filter (v)
     86     *
     87     * The width of filter is assumed to be 16; dst/stride are aligned by 16
     88     */
     89    void (*loop_filter_16[2])(uint8_t *dst, ptrdiff_t stride,
     90                              int mb_lim, int lim, int hev_thr);
     91 
     92    /*
     93     * dimension 1/2: width of filter (0=4, 1=8) for each filter half
     94     * dimension 3: 0=col-edge filter (h), 1=row-edge filter (v)
     95     *
     96     * dst/stride are aligned by operation size
     97     * this basically calls loop_filter[d1][d3][0](), followed by
     98     * loop_filter[d2][d3][0]() on the next 8 pixels
     99     * mb_lim/lim/hev_thr contain two values in the lowest two bytes of the
    100     * integer.
    101     */
    102    // FIXME perhaps a mix4 that operates on 32px (for AVX2)
    103    void (*loop_filter_mix2[2][2][2])(uint8_t *dst, ptrdiff_t stride,
    104                                      int mb_lim, int lim, int hev_thr);
    105 
    106    /*
    107     * dimension 1: hsize (0: 64, 1: 32, 2: 16, 3: 8, 4: 4)
    108     * dimension 2: filter type (0: smooth, 1: regular, 2: sharp, 3: bilin)
    109     * dimension 3: averaging type (0: put, 1: avg)
    110     * dimension 4: x subpel interpolation (0: none, 1: 8tap/bilin)
    111     * dimension 5: y subpel interpolation (0: none, 1: 8tap/bilin)
    112     *
    113     * dst/stride are aligned by hsize
    114     */
    115    vp9_mc_func mc[5][N_FILTERS][2][2][2];
    116 
    117    /*
    118     * for scalable MC, first 3 dimensions identical to above, the other two
    119     * don't exist since it changes per stepsize.
    120     */
    121    vp9_scaled_mc_func smc[5][N_FILTERS][2];
    122 } VP9DSPContext;
    123 
    124 extern const int16_t attribute_visibility_hidden ff_vp9_subpel_filters[3][16][8];
    125 
    126 void ff_vp9dsp_init(VP9DSPContext *dsp, int bpp, int bitexact);
    127 
    128 void ff_vp9dsp_init_8(VP9DSPContext *dsp);
    129 void ff_vp9dsp_init_10(VP9DSPContext *dsp);
    130 void ff_vp9dsp_init_12(VP9DSPContext *dsp);
    131 
    132 void ff_vp9dsp_init_aarch64(VP9DSPContext *dsp, int bpp);
    133 void ff_vp9dsp_init_arm(VP9DSPContext *dsp, int bpp);
    134 void ff_vp9dsp_init_riscv(VP9DSPContext *dsp, int bpp, int bitexact);
    135 void ff_vp9dsp_init_x86(VP9DSPContext *dsp, int bpp, int bitexact);
    136 void ff_vp9dsp_init_mips(VP9DSPContext *dsp, int bpp);
    137 void ff_vp9dsp_init_loongarch(VP9DSPContext *dsp, int bpp);
    138 
    139 #endif /* AVCODEC_VP9DSP_H */