vp3.c 83.7 KB
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/*
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 * Copyright (C) 2003-2004 the ffmpeg project
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 *
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 * This file is part of FFmpeg.
 *
 * 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
 * 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
 * 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
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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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 * @file libavcodec/vp3.c
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 * On2 VP3 Video Decoder
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 *
 * VP3 Video Decoder by Mike Melanson (mike at multimedia.cx)
 * For more information about the VP3 coding process, visit:
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 *   http://wiki.multimedia.cx/index.php?title=On2_VP3
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 *
 * Theora decoder by Alex Beregszaszi
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 */

#include <stdio.h>
#include <stdlib.h>
#include <string.h>

#include "avcodec.h"
#include "dsputil.h"
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#include "get_bits.h"
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#include "vp3data.h"
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#include "xiph.h"
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#define FRAGMENT_PIXELS 8

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typedef struct Coeff {
    struct Coeff *next;
    DCTELEM coeff;
    uint8_t index;
} Coeff;

//FIXME split things out into their own arrays
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typedef struct Vp3Fragment {
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    Coeff *next_coeff;
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    /* address of first pixel taking into account which plane the fragment
     * lives on as well as the plane stride */
    int first_pixel;
    /* this is the macroblock that the fragment belongs to */
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    uint16_t macroblock;
    uint8_t coding_method;
    int8_t motion_x;
    int8_t motion_y;
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    uint8_t qpi;
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} Vp3Fragment;

#define SB_NOT_CODED        0
#define SB_PARTIALLY_CODED  1
#define SB_FULLY_CODED      2

#define MODE_INTER_NO_MV      0
#define MODE_INTRA            1
#define MODE_INTER_PLUS_MV    2
#define MODE_INTER_LAST_MV    3
#define MODE_INTER_PRIOR_LAST 4
#define MODE_USING_GOLDEN     5
#define MODE_GOLDEN_MV        6
#define MODE_INTER_FOURMV     7
#define CODING_MODE_COUNT     8

/* special internal mode */
#define MODE_COPY             8

/* There are 6 preset schemes, plus a free-form scheme */
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static const int ModeAlphabet[6][CODING_MODE_COUNT] =
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{
    /* scheme 1: Last motion vector dominates */
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    {    MODE_INTER_LAST_MV,    MODE_INTER_PRIOR_LAST,
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         MODE_INTER_PLUS_MV,    MODE_INTER_NO_MV,
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         MODE_INTRA,            MODE_USING_GOLDEN,
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         MODE_GOLDEN_MV,        MODE_INTER_FOURMV },

    /* scheme 2 */
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    {    MODE_INTER_LAST_MV,    MODE_INTER_PRIOR_LAST,
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         MODE_INTER_NO_MV,      MODE_INTER_PLUS_MV,
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         MODE_INTRA,            MODE_USING_GOLDEN,
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         MODE_GOLDEN_MV,        MODE_INTER_FOURMV },

    /* scheme 3 */
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    {    MODE_INTER_LAST_MV,    MODE_INTER_PLUS_MV,
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         MODE_INTER_PRIOR_LAST, MODE_INTER_NO_MV,
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         MODE_INTRA,            MODE_USING_GOLDEN,
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         MODE_GOLDEN_MV,        MODE_INTER_FOURMV },

    /* scheme 4 */
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    {    MODE_INTER_LAST_MV,    MODE_INTER_PLUS_MV,
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         MODE_INTER_NO_MV,      MODE_INTER_PRIOR_LAST,
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         MODE_INTRA,            MODE_USING_GOLDEN,
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         MODE_GOLDEN_MV,        MODE_INTER_FOURMV },

    /* scheme 5: No motion vector dominates */
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    {    MODE_INTER_NO_MV,      MODE_INTER_LAST_MV,
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         MODE_INTER_PRIOR_LAST, MODE_INTER_PLUS_MV,
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         MODE_INTRA,            MODE_USING_GOLDEN,
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         MODE_GOLDEN_MV,        MODE_INTER_FOURMV },

    /* scheme 6 */
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    {    MODE_INTER_NO_MV,      MODE_USING_GOLDEN,
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         MODE_INTER_LAST_MV,    MODE_INTER_PRIOR_LAST,
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         MODE_INTER_PLUS_MV,    MODE_INTRA,
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         MODE_GOLDEN_MV,        MODE_INTER_FOURMV },

};

#define MIN_DEQUANT_VAL 2

typedef struct Vp3DecodeContext {
    AVCodecContext *avctx;
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    int theora, theora_tables;
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    int version;
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    int width, height;
    AVFrame golden_frame;
    AVFrame last_frame;
    AVFrame current_frame;
    int keyframe;
    DSPContext dsp;
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    int flipped_image;
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    int qps[3];
    int nqps;
    int last_qps[3];
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    int superblock_count;
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    int y_superblock_width;
    int y_superblock_height;
    int c_superblock_width;
    int c_superblock_height;
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    int u_superblock_start;
    int v_superblock_start;
    unsigned char *superblock_coding;

    int macroblock_count;
    int macroblock_width;
    int macroblock_height;

    int fragment_count;
    int fragment_width;
    int fragment_height;

    Vp3Fragment *all_fragments;
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    uint8_t *coeff_counts;
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    Coeff *coeffs;
    Coeff *next_coeff;
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    int fragment_start[3];
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    ScanTable scantable;
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    /* tables */
    uint16_t coded_dc_scale_factor[64];
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    uint32_t coded_ac_scale_factor[64];
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    uint8_t base_matrix[384][64];
    uint8_t qr_count[2][3];
    uint8_t qr_size [2][3][64];
    uint16_t qr_base[2][3][64];
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    /* this is a list of indexes into the all_fragments array indicating
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     * which of the fragments are coded */
    int *coded_fragment_list;
    int coded_fragment_list_index;
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    int pixel_addresses_initialized;
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    VLC dc_vlc[16];
    VLC ac_vlc_1[16];
    VLC ac_vlc_2[16];
    VLC ac_vlc_3[16];
    VLC ac_vlc_4[16];

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    VLC superblock_run_length_vlc;
    VLC fragment_run_length_vlc;
    VLC mode_code_vlc;
    VLC motion_vector_vlc;

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    /* these arrays need to be on 16-byte boundaries since SSE2 operations
     * index into them */
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    DECLARE_ALIGNED_16(int16_t, qmat[3][2][3][64]);     //<qmat[qpi][is_inter][plane]
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    /* This table contains superblock_count * 16 entries. Each set of 16
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     * numbers corresponds to the fragment indexes 0..15 of the superblock.
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     * An entry will be -1 to indicate that no entry corresponds to that
     * index. */
    int *superblock_fragments;

    /* This table contains superblock_count * 4 entries. Each set of 4
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     * numbers corresponds to the macroblock indexes 0..3 of the superblock.
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     * An entry will be -1 to indicate that no entry corresponds to that
     * index. */
    int *superblock_macroblocks;

    /* This table contains macroblock_count * 6 entries. Each set of 6
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     * numbers corresponds to the fragment indexes 0..5 which comprise
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     * the macroblock (4 Y fragments and 2 C fragments). */
    int *macroblock_fragments;
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    /* This is an array that indicates how a particular macroblock
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     * is coded. */
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    unsigned char *macroblock_coding;
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    int first_coded_y_fragment;
    int first_coded_c_fragment;
    int last_coded_y_fragment;
    int last_coded_c_fragment;

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    uint8_t edge_emu_buffer[9*2048]; //FIXME dynamic alloc
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    int8_t qscale_table[2048]; //FIXME dynamic alloc (width+15)/16
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    /* Huffman decode */
    int hti;
    unsigned int hbits;
    int entries;
    int huff_code_size;
    uint16_t huffman_table[80][32][2];

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    uint8_t filter_limit_values[64];
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    DECLARE_ALIGNED_8(int, bounding_values_array[256+2]);
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} Vp3DecodeContext;

/************************************************************************
 * VP3 specific functions
 ************************************************************************/

/*
 * This function sets up all of the various blocks mappings:
 * superblocks <-> fragments, macroblocks <-> fragments,
 * superblocks <-> macroblocks
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 *
 * Returns 0 is successful; returns 1 if *anything* went wrong.
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 */
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static int init_block_mapping(Vp3DecodeContext *s)
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{
    int i, j;
    signed int hilbert_walk_mb[4];

    int current_fragment = 0;
    int current_width = 0;
    int current_height = 0;
    int right_edge = 0;
    int bottom_edge = 0;
    int superblock_row_inc = 0;
    int mapping_index = 0;

    int current_macroblock;
    int c_fragment;

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    static const signed char travel_width[16] = {
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         1,  1,  0, -1,
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         0,  0,  1,  0,
         1,  0,  1,  0,
         0, -1,  0,  1
    };

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    static const signed char travel_height[16] = {
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         0,  0,  1,  0,
         1,  1,  0, -1,
         0,  1,  0, -1,
        -1,  0, -1,  0
    };

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    static const signed char travel_width_mb[4] = {
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         1,  0,  1,  0
    };

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    static const signed char travel_height_mb[4] = {
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         0,  1,  0, -1
    };

    hilbert_walk_mb[0] = 1;
    hilbert_walk_mb[1] = s->macroblock_width;
    hilbert_walk_mb[2] = 1;
    hilbert_walk_mb[3] = -s->macroblock_width;

    /* iterate through each superblock (all planes) and map the fragments */
    for (i = 0; i < s->superblock_count; i++) {
        /* time to re-assign the limits? */
        if (i == 0) {

            /* start of Y superblocks */
            right_edge = s->fragment_width;
            bottom_edge = s->fragment_height;
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            current_width = -1;
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            current_height = 0;
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            superblock_row_inc = 3 * s->fragment_width -
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                (s->y_superblock_width * 4 - s->fragment_width);
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            /* the first operation for this variable is to advance by 1 */
            current_fragment = -1;

        } else if (i == s->u_superblock_start) {

            /* start of U superblocks */
            right_edge = s->fragment_width / 2;
            bottom_edge = s->fragment_height / 2;
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            current_width = -1;
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            current_height = 0;
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            superblock_row_inc = 3 * (s->fragment_width / 2) -
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                (s->c_superblock_width * 4 - s->fragment_width / 2);
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            /* the first operation for this variable is to advance by 1 */
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            current_fragment = s->fragment_start[1] - 1;
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        } else if (i == s->v_superblock_start) {

            /* start of V superblocks */
            right_edge = s->fragment_width / 2;
            bottom_edge = s->fragment_height / 2;
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            current_width = -1;
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            current_height = 0;
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            superblock_row_inc = 3 * (s->fragment_width / 2) -
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                (s->c_superblock_width * 4 - s->fragment_width / 2);
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            /* the first operation for this variable is to advance by 1 */
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            current_fragment = s->fragment_start[2] - 1;
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        }

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        if (current_width >= right_edge - 1) {
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            /* reset width and move to next superblock row */
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            current_width = -1;
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            current_height += 4;

            /* fragment is now at the start of a new superblock row */
            current_fragment += superblock_row_inc;
        }

        /* iterate through all 16 fragments in a superblock */
        for (j = 0; j < 16; j++) {
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            current_fragment += travel_width[j] + right_edge * travel_height[j];
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            current_width += travel_width[j];
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            current_height += travel_height[j];

            /* check if the fragment is in bounds */
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            if ((current_width < right_edge) &&
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                (current_height < bottom_edge)) {
                s->superblock_fragments[mapping_index] = current_fragment;
            } else {
                s->superblock_fragments[mapping_index] = -1;
            }

            mapping_index++;
        }
    }

    /* initialize the superblock <-> macroblock mapping; iterate through
     * all of the Y plane superblocks to build this mapping */
    right_edge = s->macroblock_width;
    bottom_edge = s->macroblock_height;
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    current_width = -1;
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    current_height = 0;
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    superblock_row_inc = s->macroblock_width -
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        (s->y_superblock_width * 2 - s->macroblock_width);
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    mapping_index = 0;
    current_macroblock = -1;
    for (i = 0; i < s->u_superblock_start; i++) {

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        if (current_width >= right_edge - 1) {
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            /* reset width and move to next superblock row */
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            current_width = -1;
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            current_height += 2;

            /* macroblock is now at the start of a new superblock row */
            current_macroblock += superblock_row_inc;
        }

        /* iterate through each potential macroblock in the superblock */
        for (j = 0; j < 4; j++) {
            current_macroblock += hilbert_walk_mb[j];
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            current_width += travel_width_mb[j];
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            current_height += travel_height_mb[j];

            /* check if the macroblock is in bounds */
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            if ((current_width < right_edge) &&
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                (current_height < bottom_edge)) {
                s->superblock_macroblocks[mapping_index] = current_macroblock;
            } else {
                s->superblock_macroblocks[mapping_index] = -1;
            }

            mapping_index++;
        }
    }

    /* initialize the macroblock <-> fragment mapping */
    current_fragment = 0;
    current_macroblock = 0;
    mapping_index = 0;
    for (i = 0; i < s->fragment_height; i += 2) {

        for (j = 0; j < s->fragment_width; j += 2) {

            s->all_fragments[current_fragment].macroblock = current_macroblock;
            s->macroblock_fragments[mapping_index++] = current_fragment;

            if (j + 1 < s->fragment_width) {
                s->all_fragments[current_fragment + 1].macroblock = current_macroblock;
                s->macroblock_fragments[mapping_index++] = current_fragment + 1;
            } else
                s->macroblock_fragments[mapping_index++] = -1;

            if (i + 1 < s->fragment_height) {
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                s->all_fragments[current_fragment + s->fragment_width].macroblock =
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                    current_macroblock;
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                s->macroblock_fragments[mapping_index++] =
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                    current_fragment + s->fragment_width;
            } else
                s->macroblock_fragments[mapping_index++] = -1;

            if ((j + 1 < s->fragment_width) && (i + 1 < s->fragment_height)) {
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                s->all_fragments[current_fragment + s->fragment_width + 1].macroblock =
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                    current_macroblock;
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                s->macroblock_fragments[mapping_index++] =
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                    current_fragment + s->fragment_width + 1;
            } else
                s->macroblock_fragments[mapping_index++] = -1;

            /* C planes */
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            c_fragment = s->fragment_start[1] +
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                (i * s->fragment_width / 4) + (j / 2);
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            s->all_fragments[c_fragment].macroblock = s->macroblock_count;
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            s->macroblock_fragments[mapping_index++] = c_fragment;

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            c_fragment = s->fragment_start[2] +
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                (i * s->fragment_width / 4) + (j / 2);
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            s->all_fragments[c_fragment].macroblock = s->macroblock_count;
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            s->macroblock_fragments[mapping_index++] = c_fragment;

            if (j + 2 <= s->fragment_width)
                current_fragment += 2;
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            else
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                current_fragment++;
            current_macroblock++;
        }

        current_fragment += s->fragment_width;
    }
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    return 0;  /* successful path out */
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}

/*
 * This function wipes out all of the fragment data.
 */
static void init_frame(Vp3DecodeContext *s, GetBitContext *gb)
{
    int i;

    /* zero out all of the fragment information */
    s->coded_fragment_list_index = 0;
    for (i = 0; i < s->fragment_count; i++) {
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        s->coeff_counts[i] = 0;
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        s->all_fragments[i].motion_x = 127;
        s->all_fragments[i].motion_y = 127;
        s->all_fragments[i].next_coeff= NULL;
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        s->all_fragments[i].qpi = 0;
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        s->coeffs[i].index=
        s->coeffs[i].coeff=0;
        s->coeffs[i].next= NULL;
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    }
}

/*
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 * This function sets up the dequantization tables used for a particular
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 * frame.
 */
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static void init_dequantizer(Vp3DecodeContext *s, int qpi)
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{
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    int ac_scale_factor = s->coded_ac_scale_factor[s->qps[qpi]];
    int dc_scale_factor = s->coded_dc_scale_factor[s->qps[qpi]];
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    int i, plane, inter, qri, bmi, bmj, qistart;
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    for(inter=0; inter<2; inter++){
        for(plane=0; plane<3; plane++){
            int sum=0;
            for(qri=0; qri<s->qr_count[inter][plane]; qri++){
                sum+= s->qr_size[inter][plane][qri];
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                if(s->qps[qpi] <= sum)
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                    break;
            }
            qistart= sum - s->qr_size[inter][plane][qri];
            bmi= s->qr_base[inter][plane][qri  ];
            bmj= s->qr_base[inter][plane][qri+1];
            for(i=0; i<64; i++){
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                int coeff= (  2*(sum    -s->qps[qpi])*s->base_matrix[bmi][i]
                            - 2*(qistart-s->qps[qpi])*s->base_matrix[bmj][i]
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                            + s->qr_size[inter][plane][qri])
                           / (2*s->qr_size[inter][plane][qri]);

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                int qmin= 8<<(inter + !i);
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                int qscale= i ? ac_scale_factor : dc_scale_factor;

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                s->qmat[qpi][inter][plane][s->dsp.idct_permutation[i]]= av_clip((qscale * coeff)/100 * 4, qmin, 4096);
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            }
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            // all DC coefficients use the same quant so as not to interfere with DC prediction
            s->qmat[qpi][inter][plane][0] = s->qmat[0][inter][plane][0];
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        }
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    }
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    memset(s->qscale_table, (FFMAX(s->qmat[0][0][0][1], s->qmat[0][0][1][1])+8)/16, 512); //FIXME finetune
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}

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/*
 * This function initializes the loop filter boundary limits if the frame's
 * quality index is different from the previous frame's.
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 *
 * The filter_limit_values may not be larger than 127.
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 */
static void init_loop_filter(Vp3DecodeContext *s)
{
    int *bounding_values= s->bounding_values_array+127;
    int filter_limit;
    int x;
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    int value;
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    filter_limit = s->filter_limit_values[s->qps[0]];
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    /* set up the bounding values */
    memset(s->bounding_values_array, 0, 256 * sizeof(int));
    for (x = 0; x < filter_limit; x++) {
        bounding_values[-x] = -x;
        bounding_values[x] = x;
    }
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    for (x = value = filter_limit; x < 128 && value; x++, value--) {
        bounding_values[ x] =  value;
        bounding_values[-x] = -value;
    }
    if (value)
        bounding_values[128] = value;
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    bounding_values[129] = bounding_values[130] = filter_limit * 0x02020202;
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}

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/*
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 * This function unpacks all of the superblock/macroblock/fragment coding
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 * information from the bitstream.
 */
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static int unpack_superblocks(Vp3DecodeContext *s, GetBitContext *gb)
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{
    int bit = 0;
    int current_superblock = 0;
    int current_run = 0;
    int decode_fully_flags = 0;
    int decode_partial_blocks = 0;
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    int first_c_fragment_seen;
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    int i, j;
    int current_fragment;

    if (s->keyframe) {
        memset(s->superblock_coding, SB_FULLY_CODED, s->superblock_count);

    } else {

        /* unpack the list of partially-coded superblocks */
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        bit = get_bits1(gb);
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        /* toggle the bit because as soon as the first run length is
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         * fetched the bit will be toggled again */
        bit ^= 1;
        while (current_superblock < s->superblock_count) {
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            if (current_run-- == 0) {
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                bit ^= 1;
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                current_run = get_vlc2(gb,
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                    s->superblock_run_length_vlc.table, 6, 2);
                if (current_run == 33)
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                    current_run += get_bits(gb, 12);
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                /* if any of the superblocks are not partially coded, flag
                 * a boolean to decode the list of fully-coded superblocks */
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                if (bit == 0) {
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                    decode_fully_flags = 1;
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                } else {
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                    /* make a note of the fact that there are partially coded
                     * superblocks */
                    decode_partial_blocks = 1;
                }
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            }
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            s->superblock_coding[current_superblock++] = bit;
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        }

        /* unpack the list of fully coded superblocks if any of the blocks were
         * not marked as partially coded in the previous step */
        if (decode_fully_flags) {

            current_superblock = 0;
            current_run = 0;
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            bit = get_bits1(gb);
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            /* toggle the bit because as soon as the first run length is
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             * fetched the bit will be toggled again */
            bit ^= 1;
            while (current_superblock < s->superblock_count) {

                /* skip any superblocks already marked as partially coded */
                if (s->superblock_coding[current_superblock] == SB_NOT_CODED) {

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                    if (current_run-- == 0) {
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                        bit ^= 1;
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                        current_run = get_vlc2(gb,
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                            s->superblock_run_length_vlc.table, 6, 2);
                        if (current_run == 33)
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                            current_run += get_bits(gb, 12);
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                    }
616
                    s->superblock_coding[current_superblock] = 2*bit;
617 618 619 620 621 622 623 624 625 626
                }
                current_superblock++;
            }
        }

        /* if there were partial blocks, initialize bitstream for
         * unpacking fragment codings */
        if (decode_partial_blocks) {

            current_run = 0;
627
            bit = get_bits1(gb);
628
            /* toggle the bit because as soon as the first run length is
629 630 631 632 633 634 635 636
             * fetched the bit will be toggled again */
            bit ^= 1;
        }
    }

    /* figure out which fragments are coded; iterate through each
     * superblock (all planes) */
    s->coded_fragment_list_index = 0;
637
    s->next_coeff= s->coeffs + s->fragment_count;
638 639
    s->first_coded_y_fragment = s->first_coded_c_fragment = 0;
    s->last_coded_y_fragment = s->last_coded_c_fragment = -1;
640
    first_c_fragment_seen = 0;
641
    memset(s->macroblock_coding, MODE_COPY, s->macroblock_count);
642 643 644 645 646 647 648
    for (i = 0; i < s->superblock_count; i++) {

        /* iterate through all 16 fragments in a superblock */
        for (j = 0; j < 16; j++) {

            /* if the fragment is in bounds, check its coding status */
            current_fragment = s->superblock_fragments[i * 16 + j];
649
            if (current_fragment >= s->fragment_count) {
650
                av_log(s->avctx, AV_LOG_ERROR, "  vp3:unpack_superblocks(): bad fragment number (%d >= %d)\n",
651 652 653
                    current_fragment, s->fragment_count);
                return 1;
            }
654 655 656 657
            if (current_fragment != -1) {
                if (s->superblock_coding[i] == SB_NOT_CODED) {

                    /* copy all the fragments from the prior frame */
658
                    s->all_fragments[current_fragment].coding_method =
659 660 661 662 663 664
                        MODE_COPY;

                } else if (s->superblock_coding[i] == SB_PARTIALLY_CODED) {

                    /* fragment may or may not be coded; this is the case
                     * that cares about the fragment coding runs */
665
                    if (current_run-- == 0) {
666
                        bit ^= 1;
667
                        current_run = get_vlc2(gb,
668
                            s->fragment_run_length_vlc.table, 5, 2);
669 670 671
                    }

                    if (bit) {
672
                        /* default mode; actual mode will be decoded in
673
                         * the next phase */
674
                        s->all_fragments[current_fragment].coding_method =
675
                            MODE_INTER_NO_MV;
676
                        s->all_fragments[current_fragment].next_coeff= s->coeffs + current_fragment;
677
                        s->coded_fragment_list[s->coded_fragment_list_index] =
678
                            current_fragment;
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679
                        if ((current_fragment >= s->fragment_start[1]) &&
680 681
                            (s->last_coded_y_fragment == -1) &&
                            (!first_c_fragment_seen)) {
682 683
                            s->first_coded_c_fragment = s->coded_fragment_list_index;
                            s->last_coded_y_fragment = s->first_coded_c_fragment - 1;
684
                            first_c_fragment_seen = 1;
685 686
                        }
                        s->coded_fragment_list_index++;
687
                        s->macroblock_coding[s->all_fragments[current_fragment].macroblock] = MODE_INTER_NO_MV;
688 689 690 691 692 693 694 695 696 697
                    } else {
                        /* not coded; copy this fragment from the prior frame */
                        s->all_fragments[current_fragment].coding_method =
                            MODE_COPY;
                    }

                } else {

                    /* fragments are fully coded in this superblock; actual
                     * coding will be determined in next step */
698
                    s->all_fragments[current_fragment].coding_method =
699
                        MODE_INTER_NO_MV;
700
                    s->all_fragments[current_fragment].next_coeff= s->coeffs + current_fragment;
701
                    s->coded_fragment_list[s->coded_fragment_list_index] =
702
                        current_fragment;
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703
                    if ((current_fragment >= s->fragment_start[1]) &&
704 705
                        (s->last_coded_y_fragment == -1) &&
                        (!first_c_fragment_seen)) {
706 707
                        s->first_coded_c_fragment = s->coded_fragment_list_index;
                        s->last_coded_y_fragment = s->first_coded_c_fragment - 1;
708
                        first_c_fragment_seen = 1;
709 710
                    }
                    s->coded_fragment_list_index++;
711
                    s->macroblock_coding[s->all_fragments[current_fragment].macroblock] = MODE_INTER_NO_MV;
712 713 714 715
                }
            }
        }
    }
716

717 718
    if (!first_c_fragment_seen)
        /* only Y fragments coded in this frame */
719
        s->last_coded_y_fragment = s->coded_fragment_list_index - 1;
720
    else
721
        /* end the list of coded C fragments */
722
        s->last_coded_c_fragment = s->coded_fragment_list_index - 1;
723

724
    return 0;
725 726 727 728 729 730
}

/*
 * This function unpacks all the coding mode data for individual macroblocks
 * from the bitstream.
 */
731
static int unpack_modes(Vp3DecodeContext *s, GetBitContext *gb)
732 733 734 735 736 737
{
    int i, j, k;
    int scheme;
    int current_macroblock;
    int current_fragment;
    int coding_mode;
738
    int custom_mode_alphabet[CODING_MODE_COUNT];
739 740 741 742 743 744 745 746 747 748 749 750

    if (s->keyframe) {
        for (i = 0; i < s->fragment_count; i++)
            s->all_fragments[i].coding_method = MODE_INTRA;

    } else {

        /* fetch the mode coding scheme for this frame */
        scheme = get_bits(gb, 3);

        /* is it a custom coding scheme? */
        if (scheme == 0) {
751 752
            for (i = 0; i < 8; i++)
                custom_mode_alphabet[i] = MODE_INTER_NO_MV;
753
            for (i = 0; i < 8; i++)
754
                custom_mode_alphabet[get_bits(gb, 3)] = i;
755 756 757 758 759 760 761 762 763
        }

        /* iterate through all of the macroblocks that contain 1 or more
         * coded fragments */
        for (i = 0; i < s->u_superblock_start; i++) {

            for (j = 0; j < 4; j++) {
                current_macroblock = s->superblock_macroblocks[i * 4 + j];
                if ((current_macroblock == -1) ||
764
                    (s->macroblock_coding[current_macroblock] == MODE_COPY))
765
                    continue;
766
                if (current_macroblock >= s->macroblock_count) {
767
                    av_log(s->avctx, AV_LOG_ERROR, "  vp3:unpack_modes(): bad macroblock number (%d >= %d)\n",
768 769 770
                        current_macroblock, s->macroblock_count);
                    return 1;
                }
771 772 773 774

                /* mode 7 means get 3 bits for each coding mode */
                if (scheme == 7)
                    coding_mode = get_bits(gb, 3);
775 776 777
                else if(scheme == 0)
                    coding_mode = custom_mode_alphabet
                        [get_vlc2(gb, s->mode_code_vlc.table, 3, 3)];
778
                else
779
                    coding_mode = ModeAlphabet[scheme-1]
780
                        [get_vlc2(gb, s->mode_code_vlc.table, 3, 3)];
781

782
                s->macroblock_coding[current_macroblock] = coding_mode;
783
                for (k = 0; k < 6; k++) {
784
                    current_fragment =
785
                        s->macroblock_fragments[current_macroblock * 6 + k];
786 787 788
                    if (current_fragment == -1)
                        continue;
                    if (current_fragment >= s->fragment_count) {
789
                        av_log(s->avctx, AV_LOG_ERROR, "  vp3:unpack_modes(): bad fragment number (%d >= %d)\n",
790 791 792
                            current_fragment, s->fragment_count);
                        return 1;
                    }
793
                    if (s->all_fragments[current_fragment].coding_method !=
794 795 796 797 798 799 800
                        MODE_COPY)
                        s->all_fragments[current_fragment].coding_method =
                            coding_mode;
                }
            }
        }
    }
801 802

    return 0;
803 804
}

805 806 807 808
/*
 * This function unpacks all the motion vectors for the individual
 * macroblocks from the bitstream.
 */
809
static int unpack_vectors(Vp3DecodeContext *s, GetBitContext *gb)
810
{
811
    int i, j, k, l;
812 813 814 815 816 817 818 819 820 821
    int coding_mode;
    int motion_x[6];
    int motion_y[6];
    int last_motion_x = 0;
    int last_motion_y = 0;
    int prior_last_motion_x = 0;
    int prior_last_motion_y = 0;
    int current_macroblock;
    int current_fragment;

D
David Conrad 已提交
822
    if (s->keyframe)
823
        return 0;
D
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824

D
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825 826
    memset(motion_x, 0, 6 * sizeof(int));
    memset(motion_y, 0, 6 * sizeof(int));
827

D
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828 829
    /* coding mode 0 is the VLC scheme; 1 is the fixed code scheme */
    coding_mode = get_bits1(gb);
830

D
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831 832 833
    /* iterate through all of the macroblocks that contain 1 or more
     * coded fragments */
    for (i = 0; i < s->u_superblock_start; i++) {
834

D
David Conrad 已提交
835 836 837 838 839 840 841 842 843 844
        for (j = 0; j < 4; j++) {
            current_macroblock = s->superblock_macroblocks[i * 4 + j];
            if ((current_macroblock == -1) ||
                (s->macroblock_coding[current_macroblock] == MODE_COPY))
                continue;
            if (current_macroblock >= s->macroblock_count) {
                av_log(s->avctx, AV_LOG_ERROR, "  vp3:unpack_vectors(): bad macroblock number (%d >= %d)\n",
                    current_macroblock, s->macroblock_count);
                return 1;
            }
845

D
David Conrad 已提交
846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862
            current_fragment = s->macroblock_fragments[current_macroblock * 6];
            if (current_fragment >= s->fragment_count) {
                av_log(s->avctx, AV_LOG_ERROR, "  vp3:unpack_vectors(): bad fragment number (%d >= %d\n",
                    current_fragment, s->fragment_count);
                return 1;
            }
            switch (s->macroblock_coding[current_macroblock]) {

            case MODE_INTER_PLUS_MV:
            case MODE_GOLDEN_MV:
                /* all 6 fragments use the same motion vector */
                if (coding_mode == 0) {
                    motion_x[0] = motion_vector_table[get_vlc2(gb, s->motion_vector_vlc.table, 6, 2)];
                    motion_y[0] = motion_vector_table[get_vlc2(gb, s->motion_vector_vlc.table, 6, 2)];
                } else {
                    motion_x[0] = fixed_motion_vector_table[get_bits(gb, 6)];
                    motion_y[0] = fixed_motion_vector_table[get_bits(gb, 6)];
863
                }
864

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865 866 867 868
                for (k = 1; k < 6; k++) {
                    motion_x[k] = motion_x[0];
                    motion_y[k] = motion_y[0];
                }
869

D
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870 871 872
                /* vector maintenance, only on MODE_INTER_PLUS_MV */
                if (s->macroblock_coding[current_macroblock] ==
                    MODE_INTER_PLUS_MV) {
873 874
                    prior_last_motion_x = last_motion_x;
                    prior_last_motion_y = last_motion_y;
D
David Conrad 已提交
875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895
                    last_motion_x = motion_x[0];
                    last_motion_y = motion_y[0];
                }
                break;

            case MODE_INTER_FOURMV:
                /* vector maintenance */
                prior_last_motion_x = last_motion_x;
                prior_last_motion_y = last_motion_y;

                /* fetch 4 vectors from the bitstream, one for each
                 * Y fragment, then average for the C fragment vectors */
                motion_x[4] = motion_y[4] = 0;
                for (k = 0; k < 4; k++) {
                    for (l = 0; l < s->coded_fragment_list_index; l++)
                        if (s->coded_fragment_list[l] == s->macroblock_fragments[6*current_macroblock + k])
                            break;
                    if (l < s->coded_fragment_list_index) {
                        if (coding_mode == 0) {
                            motion_x[k] = motion_vector_table[get_vlc2(gb, s->motion_vector_vlc.table, 6, 2)];
                            motion_y[k] = motion_vector_table[get_vlc2(gb, s->motion_vector_vlc.table, 6, 2)];
896
                        } else {
D
David Conrad 已提交
897 898
                            motion_x[k] = fixed_motion_vector_table[get_bits(gb, 6)];
                            motion_y[k] = fixed_motion_vector_table[get_bits(gb, 6)];
899
                        }
D
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900 901 902 903 904
                        last_motion_x = motion_x[k];
                        last_motion_y = motion_y[k];
                    } else {
                        motion_x[k] = 0;
                        motion_y[k] = 0;
905
                    }
D
David Conrad 已提交
906 907 908
                    motion_x[4] += motion_x[k];
                    motion_y[4] += motion_y[k];
                }
909

D
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910 911 912 913 914 915 916 917 918 919 920 921 922 923
                motion_x[5]=
                motion_x[4]= RSHIFT(motion_x[4], 2);
                motion_y[5]=
                motion_y[4]= RSHIFT(motion_y[4], 2);
                break;

            case MODE_INTER_LAST_MV:
                /* all 6 fragments use the last motion vector */
                motion_x[0] = last_motion_x;
                motion_y[0] = last_motion_y;
                for (k = 1; k < 6; k++) {
                    motion_x[k] = motion_x[0];
                    motion_y[k] = motion_y[0];
                }
924

D
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925 926 927 928 929 930 931 932 933 934 935 936 937
                /* no vector maintenance (last vector remains the
                 * last vector) */
                break;

            case MODE_INTER_PRIOR_LAST:
                /* all 6 fragments use the motion vector prior to the
                 * last motion vector */
                motion_x[0] = prior_last_motion_x;
                motion_y[0] = prior_last_motion_y;
                for (k = 1; k < 6; k++) {
                    motion_x[k] = motion_x[0];
                    motion_y[k] = motion_y[0];
                }
938

D
David Conrad 已提交
939 940 941 942 943 944
                /* vector maintenance */
                prior_last_motion_x = last_motion_x;
                prior_last_motion_y = last_motion_y;
                last_motion_x = motion_x[0];
                last_motion_y = motion_y[0];
                break;
945

D
David Conrad 已提交
946 947 948 949
            default:
                /* covers intra, inter without MV, golden without MV */
                memset(motion_x, 0, 6 * sizeof(int));
                memset(motion_y, 0, 6 * sizeof(int));
950

D
David Conrad 已提交
951 952 953
                /* no vector maintenance */
                break;
            }
954

D
David Conrad 已提交
955 956 957 958 959 960 961 962 963 964
            /* assign the motion vectors to the correct fragments */
            for (k = 0; k < 6; k++) {
                current_fragment =
                    s->macroblock_fragments[current_macroblock * 6 + k];
                if (current_fragment == -1)
                    continue;
                if (current_fragment >= s->fragment_count) {
                    av_log(s->avctx, AV_LOG_ERROR, "  vp3:unpack_vectors(): bad fragment number (%d >= %d)\n",
                        current_fragment, s->fragment_count);
                    return 1;
965
                }
D
David Conrad 已提交
966 967
                s->all_fragments[current_fragment].motion_x = motion_x[k];
                s->all_fragments[current_fragment].motion_y = motion_y[k];
968 969
            }
        }
D
David Conrad 已提交
970
    }
971 972

    return 0;
973 974
}

975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015
static int unpack_block_qpis(Vp3DecodeContext *s, GetBitContext *gb)
{
    int qpi, i, j, bit, run_length, blocks_decoded, num_blocks_at_qpi;
    int num_blocks = s->coded_fragment_list_index;

    for (qpi = 0; qpi < s->nqps-1 && num_blocks > 0; qpi++) {
        i = blocks_decoded = num_blocks_at_qpi = 0;

        bit = get_bits1(gb);

        do {
            run_length = get_vlc2(gb, s->superblock_run_length_vlc.table, 6, 2) + 1;
            if (run_length == 34)
                run_length += get_bits(gb, 12);
            blocks_decoded += run_length;

            if (!bit)
                num_blocks_at_qpi += run_length;

            for (j = 0; j < run_length; i++) {
                if (i > s->coded_fragment_list_index)
                    return -1;

                if (s->all_fragments[s->coded_fragment_list[i]].qpi == qpi) {
                    s->all_fragments[s->coded_fragment_list[i]].qpi += bit;
                    j++;
                }
            }

            if (run_length == 4129)
                bit = get_bits1(gb);
            else
                bit ^= 1;
        } while (blocks_decoded < num_blocks);

        num_blocks -= num_blocks_at_qpi;
    }

    return 0;
}

1016
/*
1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034
 * This function is called by unpack_dct_coeffs() to extract the VLCs from
 * the bitstream. The VLCs encode tokens which are used to unpack DCT
 * data. This function unpacks all the VLCs for either the Y plane or both
 * C planes, and is called for DC coefficients or different AC coefficient
 * levels (since different coefficient types require different VLC tables.
 *
 * This function returns a residual eob run. E.g, if a particular token gave
 * instructions to EOB the next 5 fragments and there were only 2 fragments
 * left in the current fragment range, 3 would be returned so that it could
 * be passed into the next call to this same function.
 */
static int unpack_vlcs(Vp3DecodeContext *s, GetBitContext *gb,
                        VLC *table, int coeff_index,
                        int first_fragment, int last_fragment,
                        int eob_run)
{
    int i;
    int token;
1035 1036
    int zero_run = 0;
    DCTELEM coeff = 0;
1037
    Vp3Fragment *fragment;
1038
    int bits_to_get;
1039

1040 1041 1042 1043 1044 1045 1046
    /* local references to structure members to avoid repeated deferences */
    uint8_t *perm= s->scantable.permutated;
    int *coded_fragment_list = s->coded_fragment_list;
    Vp3Fragment *all_fragments = s->all_fragments;
    uint8_t *coeff_counts = s->coeff_counts;
    VLC_TYPE (*vlc_table)[2] = table->table;

1047
    if ((first_fragment >= s->fragment_count) ||
1048 1049
        (last_fragment >= s->fragment_count)) {

1050
        av_log(s->avctx, AV_LOG_ERROR, "  vp3:unpack_vlcs(): bad fragment number (%d -> %d ?)\n",
1051
            first_fragment, last_fragment);
1052
        return 0;
1053 1054
    }

1055
    for (i = first_fragment; i <= last_fragment; i++) {
1056
        int fragment_num = coded_fragment_list[i];
1057

1058
        if (coeff_counts[fragment_num] > coeff_index)
1059
            continue;
1060
        fragment = &all_fragments[fragment_num];
1061 1062 1063

        if (!eob_run) {
            /* decode a VLC into a token */
1064
            token = get_vlc2(gb, vlc_table, 5, 3);
1065
            /* use the token to get a zero run, a coefficient, and an eob run */
1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081
            if (token <= 6) {
                eob_run = eob_run_base[token];
                if (eob_run_get_bits[token])
                    eob_run += get_bits(gb, eob_run_get_bits[token]);
                coeff = zero_run = 0;
            } else {
                bits_to_get = coeff_get_bits[token];
                if (!bits_to_get)
                    coeff = coeff_tables[token][0];
                else
                    coeff = coeff_tables[token][get_bits(gb, bits_to_get)];

                zero_run = zero_run_base[token];
                if (zero_run_get_bits[token])
                    zero_run += get_bits(gb, zero_run_get_bits[token]);
            }
1082 1083 1084
        }

        if (!eob_run) {
1085 1086
            coeff_counts[fragment_num] += zero_run;
            if (coeff_counts[fragment_num] < 64){
1087
                fragment->next_coeff->coeff= coeff;
1088
                fragment->next_coeff->index= perm[coeff_counts[fragment_num]++]; //FIXME perm here already?
1089 1090 1091 1092
                fragment->next_coeff->next= s->next_coeff;
                s->next_coeff->next=NULL;
                fragment->next_coeff= s->next_coeff++;
            }
1093
        } else {
1094
            coeff_counts[fragment_num] |= 128;
1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105
            eob_run--;
        }
    }

    return eob_run;
}

/*
 * This function unpacks all of the DCT coefficient data from the
 * bitstream.
 */
1106
static int unpack_dct_coeffs(Vp3DecodeContext *s, GetBitContext *gb)
1107 1108 1109 1110 1111 1112 1113 1114
{
    int i;
    int dc_y_table;
    int dc_c_table;
    int ac_y_table;
    int ac_c_table;
    int residual_eob_run = 0;

1115
    /* fetch the DC table indexes */
1116 1117 1118 1119
    dc_y_table = get_bits(gb, 4);
    dc_c_table = get_bits(gb, 4);

    /* unpack the Y plane DC coefficients */
1120
    residual_eob_run = unpack_vlcs(s, gb, &s->dc_vlc[dc_y_table], 0,
1121
        s->first_coded_y_fragment, s->last_coded_y_fragment, residual_eob_run);
1122 1123 1124

    /* unpack the C plane DC coefficients */
    residual_eob_run = unpack_vlcs(s, gb, &s->dc_vlc[dc_c_table], 0,
1125
        s->first_coded_c_fragment, s->last_coded_c_fragment, residual_eob_run);
1126

1127
    /* fetch the AC table indexes */
1128 1129 1130
    ac_y_table = get_bits(gb, 4);
    ac_c_table = get_bits(gb, 4);

1131
    /* unpack the group 1 AC coefficients (coeffs 1-5) */
1132
    for (i = 1; i <= 5; i++) {
1133
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_1[ac_y_table], i,
1134
            s->first_coded_y_fragment, s->last_coded_y_fragment, residual_eob_run);
1135

1136
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_1[ac_c_table], i,
1137
            s->first_coded_c_fragment, s->last_coded_c_fragment, residual_eob_run);
1138 1139
    }

1140
    /* unpack the group 2 AC coefficients (coeffs 6-14) */
1141
    for (i = 6; i <= 14; i++) {
1142
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_2[ac_y_table], i,
1143
            s->first_coded_y_fragment, s->last_coded_y_fragment, residual_eob_run);
1144

1145
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_2[ac_c_table], i,
1146
            s->first_coded_c_fragment, s->last_coded_c_fragment, residual_eob_run);
1147 1148
    }

1149
    /* unpack the group 3 AC coefficients (coeffs 15-27) */
1150
    for (i = 15; i <= 27; i++) {
1151
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_3[ac_y_table], i,
1152
            s->first_coded_y_fragment, s->last_coded_y_fragment, residual_eob_run);
1153

1154
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_3[ac_c_table], i,
1155
            s->first_coded_c_fragment, s->last_coded_c_fragment, residual_eob_run);
1156 1157
    }

1158
    /* unpack the group 4 AC coefficients (coeffs 28-63) */
1159
    for (i = 28; i <= 63; i++) {
1160
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_4[ac_y_table], i,
1161
            s->first_coded_y_fragment, s->last_coded_y_fragment, residual_eob_run);
1162

1163
        residual_eob_run = unpack_vlcs(s, gb, &s->ac_vlc_4[ac_c_table], i,
1164
            s->first_coded_c_fragment, s->last_coded_c_fragment, residual_eob_run);
1165
    }
1166 1167

    return 0;
1168 1169 1170 1171
}

/*
 * This function reverses the DC prediction for each coded fragment in
1172
 * the frame. Much of this function is adapted directly from the original
1173 1174 1175 1176 1177
 * VP3 source code.
 */
#define COMPATIBLE_FRAME(x) \
  (compatible_frame[s->all_fragments[x].coding_method] == current_frame_type)
#define FRAME_CODED(x) (s->all_fragments[x].coding_method != MODE_COPY)
1178
#define DC_COEFF(u) (s->coeffs[u].index ? 0 : s->coeffs[u].coeff) //FIXME do somethin to simplify this
1179 1180 1181 1182

static void reverse_dc_prediction(Vp3DecodeContext *s,
                                  int first_fragment,
                                  int fragment_width,
1183
                                  int fragment_height)
1184 1185 1186 1187 1188 1189 1190 1191 1192 1193
{

#define PUL 8
#define PU 4
#define PUR 2
#define PL 1

    int x, y;
    int i = first_fragment;

1194
    int predicted_dc;
1195 1196 1197 1198

    /* DC values for the left, up-left, up, and up-right fragments */
    int vl, vul, vu, vur;

1199
    /* indexes for the left, up-left, up, and up-right fragments */
1200 1201
    int l, ul, u, ur;

1202
    /*
1203 1204 1205 1206 1207 1208
     * The 6 fields mean:
     *   0: up-left multiplier
     *   1: up multiplier
     *   2: up-right multiplier
     *   3: left multiplier
     */
1209
    static const int predictor_transform[16][4] = {
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1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225
        {  0,  0,  0,  0},
        {  0,  0,  0,128},        // PL
        {  0,  0,128,  0},        // PUR
        {  0,  0, 53, 75},        // PUR|PL
        {  0,128,  0,  0},        // PU
        {  0, 64,  0, 64},        // PU|PL
        {  0,128,  0,  0},        // PU|PUR
        {  0,  0, 53, 75},        // PU|PUR|PL
        {128,  0,  0,  0},        // PUL
        {  0,  0,  0,128},        // PUL|PL
        { 64,  0, 64,  0},        // PUL|PUR
        {  0,  0, 53, 75},        // PUL|PUR|PL
        {  0,128,  0,  0},        // PUL|PU
       {-104,116,  0,116},        // PUL|PU|PL
        { 24, 80, 24,  0},        // PUL|PU|PUR
       {-104,116,  0,116}         // PUL|PU|PUR|PL
1226 1227 1228 1229 1230
    };

    /* This table shows which types of blocks can use other blocks for
     * prediction. For example, INTRA is the only mode in this table to
     * have a frame number of 0. That means INTRA blocks can only predict
1231
     * from other INTRA blocks. There are 2 golden frame coding types;
1232 1233
     * blocks encoding in these modes can only predict from other blocks
     * that were encoded with these 1 of these 2 modes. */
1234
    static const unsigned char compatible_frame[8] = {
1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262
        1,    /* MODE_INTER_NO_MV */
        0,    /* MODE_INTRA */
        1,    /* MODE_INTER_PLUS_MV */
        1,    /* MODE_INTER_LAST_MV */
        1,    /* MODE_INTER_PRIOR_MV */
        2,    /* MODE_USING_GOLDEN */
        2,    /* MODE_GOLDEN_MV */
        1     /* MODE_INTER_FOUR_MV */
    };
    int current_frame_type;

    /* there is a last DC predictor for each of the 3 frame types */
    short last_dc[3];

    int transform = 0;

    vul = vu = vur = vl = 0;
    last_dc[0] = last_dc[1] = last_dc[2] = 0;

    /* for each fragment row... */
    for (y = 0; y < fragment_height; y++) {

        /* for each fragment in a row... */
        for (x = 0; x < fragment_width; x++, i++) {

            /* reverse prediction if this block was coded */
            if (s->all_fragments[i].coding_method != MODE_COPY) {

1263
                current_frame_type =
1264 1265
                    compatible_frame[s->all_fragments[i].coding_method];

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1266 1267 1268
                transform= 0;
                if(x){
                    l= i-1;
1269
                    vl = DC_COEFF(l);
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1270 1271
                    if(FRAME_CODED(l) && COMPATIBLE_FRAME(l))
                        transform |= PL;
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1272 1273 1274
                }
                if(y){
                    u= i-fragment_width;
1275
                    vu = DC_COEFF(u);
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1276 1277
                    if(FRAME_CODED(u) && COMPATIBLE_FRAME(u))
                        transform |= PU;
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1278 1279 1280
                    if(x){
                        ul= i-fragment_width-1;
                        vul = DC_COEFF(ul);
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1281 1282
                        if(FRAME_CODED(ul) && COMPATIBLE_FRAME(ul))
                            transform |= PUL;
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1283 1284 1285 1286
                    }
                    if(x + 1 < fragment_width){
                        ur= i-fragment_width+1;
                        vur = DC_COEFF(ur);
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1287 1288
                        if(FRAME_CODED(ur) && COMPATIBLE_FRAME(ur))
                            transform |= PUR;
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1289
                    }
1290 1291 1292 1293 1294 1295
                }

                if (transform == 0) {

                    /* if there were no fragments to predict from, use last
                     * DC saved */
1296
                    predicted_dc = last_dc[current_frame_type];
1297 1298 1299 1300 1301 1302 1303 1304 1305
                } else {

                    /* apply the appropriate predictor transform */
                    predicted_dc =
                        (predictor_transform[transform][0] * vul) +
                        (predictor_transform[transform][1] * vu) +
                        (predictor_transform[transform][2] * vur) +
                        (predictor_transform[transform][3] * vl);

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                    predicted_dc /= 128;
1307 1308 1309 1310

                    /* check for outranging on the [ul u l] and
                     * [ul u ur l] predictors */
                    if ((transform == 13) || (transform == 15)) {
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                        if (FFABS(predicted_dc - vu) > 128)
1312
                            predicted_dc = vu;
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1313
                        else if (FFABS(predicted_dc - vl) > 128)
1314
                            predicted_dc = vl;
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1315
                        else if (FFABS(predicted_dc - vul) > 128)
1316 1317 1318 1319
                            predicted_dc = vul;
                    }
                }

1320 1321 1322 1323 1324 1325 1326 1327
                /* at long last, apply the predictor */
                if(s->coeffs[i].index){
                    *s->next_coeff= s->coeffs[i];
                    s->coeffs[i].index=0;
                    s->coeffs[i].coeff=0;
                    s->coeffs[i].next= s->next_coeff++;
                }
                s->coeffs[i].coeff += predicted_dc;
1328
                /* save the DC */
1329
                last_dc[current_frame_type] = DC_COEFF(i);
1330 1331
                if(DC_COEFF(i) && !(s->coeff_counts[i]&127)){
                    s->coeff_counts[i]= 129;
1332 1333 1334 1335
//                    s->all_fragments[i].next_coeff= s->next_coeff;
                    s->coeffs[i].next= s->next_coeff;
                    (s->next_coeff++)->next=NULL;
                }
1336 1337 1338 1339 1340
            }
        }
    }
}

1341 1342 1343 1344 1345 1346
/*
 * Perform the final rendering for a particular slice of data.
 * The slice number ranges from 0..(macroblock_height - 1).
 */
static void render_slice(Vp3DecodeContext *s, int slice)
{
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1347
    int x;
1348
    int16_t *dequantizer;
1349
    DECLARE_ALIGNED_16(DCTELEM, block[64]);
1350 1351 1352 1353 1354 1355 1356 1357 1358 1359
    int motion_x = 0xdeadbeef, motion_y = 0xdeadbeef;
    int motion_halfpel_index;
    uint8_t *motion_source;
    int plane;
    int current_macroblock_entry = slice * s->macroblock_width * 6;

    if (slice >= s->macroblock_height)
        return;

    for (plane = 0; plane < 3; plane++) {
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1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370
        uint8_t *output_plane = s->current_frame.data    [plane];
        uint8_t *  last_plane = s->   last_frame.data    [plane];
        uint8_t *golden_plane = s-> golden_frame.data    [plane];
        int stride            = s->current_frame.linesize[plane];
        int plane_width       = s->width  >> !!plane;
        int plane_height      = s->height >> !!plane;
        int y =        slice *  FRAGMENT_PIXELS << !plane ;
        int slice_height = y + (FRAGMENT_PIXELS << !plane);
        int i = s->macroblock_fragments[current_macroblock_entry + plane + 3*!!plane];

        if (!s->flipped_image) stride = -stride;
1371

1372

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1373
        if(FFABS(stride) > 2048)
1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393
            return; //various tables are fixed size

        /* for each fragment row in the slice (both of them)... */
        for (; y < slice_height; y += 8) {

            /* for each fragment in a row... */
            for (x = 0; x < plane_width; x += 8, i++) {

                if ((i < 0) || (i >= s->fragment_count)) {
                    av_log(s->avctx, AV_LOG_ERROR, "  vp3:render_slice(): bad fragment number (%d)\n", i);
                    return;
                }

                /* transform if this block was coded */
                if ((s->all_fragments[i].coding_method != MODE_COPY) &&
                    !((s->avctx->flags & CODEC_FLAG_GRAY) && plane)) {

                    if ((s->all_fragments[i].coding_method == MODE_USING_GOLDEN) ||
                        (s->all_fragments[i].coding_method == MODE_GOLDEN_MV))
                        motion_source= golden_plane;
1394
                    else
1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431
                        motion_source= last_plane;

                    motion_source += s->all_fragments[i].first_pixel;
                    motion_halfpel_index = 0;

                    /* sort out the motion vector if this fragment is coded
                     * using a motion vector method */
                    if ((s->all_fragments[i].coding_method > MODE_INTRA) &&
                        (s->all_fragments[i].coding_method != MODE_USING_GOLDEN)) {
                        int src_x, src_y;
                        motion_x = s->all_fragments[i].motion_x;
                        motion_y = s->all_fragments[i].motion_y;
                        if(plane){
                            motion_x= (motion_x>>1) | (motion_x&1);
                            motion_y= (motion_y>>1) | (motion_y&1);
                        }

                        src_x= (motion_x>>1) + x;
                        src_y= (motion_y>>1) + y;
                        if ((motion_x == 127) || (motion_y == 127))
                            av_log(s->avctx, AV_LOG_ERROR, " help! got invalid motion vector! (%X, %X)\n", motion_x, motion_y);

                        motion_halfpel_index = motion_x & 0x01;
                        motion_source += (motion_x >> 1);

                        motion_halfpel_index |= (motion_y & 0x01) << 1;
                        motion_source += ((motion_y >> 1) * stride);

                        if(src_x<0 || src_y<0 || src_x + 9 >= plane_width || src_y + 9 >= plane_height){
                            uint8_t *temp= s->edge_emu_buffer;
                            if(stride<0) temp -= 9*stride;
                            else temp += 9*stride;

                            ff_emulated_edge_mc(temp, motion_source, stride, 9, 9, src_x, src_y, plane_width, plane_height);
                            motion_source= temp;
                        }
                    }
1432

1433 1434 1435 1436

                    /* first, take care of copying a block from either the
                     * previous or the golden frame */
                    if (s->all_fragments[i].coding_method != MODE_INTRA) {
1437 1438 1439
                        /* Note, it is possible to implement all MC cases with
                           put_no_rnd_pixels_l2 which would look more like the
                           VP3 source but this would be slower as
1440 1441 1442 1443 1444 1445 1446 1447 1448
                           put_no_rnd_pixels_tab is better optimzed */
                        if(motion_halfpel_index != 3){
                            s->dsp.put_no_rnd_pixels_tab[1][motion_halfpel_index](
                                output_plane + s->all_fragments[i].first_pixel,
                                motion_source, stride, 8);
                        }else{
                            int d= (motion_x ^ motion_y)>>31; // d is 0 if motion_x and _y have the same sign, else -1
                            s->dsp.put_no_rnd_pixels_l2[1](
                                output_plane + s->all_fragments[i].first_pixel,
1449 1450
                                motion_source - d,
                                motion_source + stride + 1 + d,
1451 1452
                                stride, 8);
                        }
1453
                        dequantizer = s->qmat[s->all_fragments[i].qpi][1][plane];
1454
                    }else{
1455
                        dequantizer = s->qmat[s->all_fragments[i].qpi][0][plane];
1456 1457 1458 1459 1460
                    }

                    /* dequantize the DCT coefficients */
                    if(s->avctx->idct_algo==FF_IDCT_VP3){
                        Coeff *coeff= s->coeffs + i;
L
Loren Merritt 已提交
1461
                        s->dsp.clear_block(block);
1462 1463 1464 1465 1466 1467
                        while(coeff->next){
                            block[coeff->index]= coeff->coeff * dequantizer[coeff->index];
                            coeff= coeff->next;
                        }
                    }else{
                        Coeff *coeff= s->coeffs + i;
L
Loren Merritt 已提交
1468
                        s->dsp.clear_block(block);
1469 1470 1471 1472 1473 1474 1475
                        while(coeff->next){
                            block[coeff->index]= (coeff->coeff * dequantizer[coeff->index] + 2)>>2;
                            coeff= coeff->next;
                        }
                    }

                    /* invert DCT and place (or add) in final output */
1476

1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498
                    if (s->all_fragments[i].coding_method == MODE_INTRA) {
                        if(s->avctx->idct_algo!=FF_IDCT_VP3)
                            block[0] += 128<<3;
                        s->dsp.idct_put(
                            output_plane + s->all_fragments[i].first_pixel,
                            stride,
                            block);
                    } else {
                        s->dsp.idct_add(
                            output_plane + s->all_fragments[i].first_pixel,
                            stride,
                            block);
                    }
                } else {

                    /* copy directly from the previous frame */
                    s->dsp.put_pixels_tab[1][0](
                        output_plane + s->all_fragments[i].first_pixel,
                        last_plane + s->all_fragments[i].first_pixel,
                        stride, 8);

                }
1499
#if 0
1500 1501 1502 1503 1504 1505 1506
                /* perform the left edge filter if:
                 *   - the fragment is not on the left column
                 *   - the fragment is coded in this frame
                 *   - the fragment is not coded in this frame but the left
                 *     fragment is coded in this frame (this is done instead
                 *     of a right edge filter when rendering the left fragment
                 *     since this fragment is not available yet) */
1507
                if ((x > 0) &&
1508 1509 1510
                    ((s->all_fragments[i].coding_method != MODE_COPY) ||
                     ((s->all_fragments[i].coding_method == MODE_COPY) &&
                      (s->all_fragments[i - 1].coding_method != MODE_COPY)) )) {
1511
                    horizontal_filter(
1512
                        output_plane + s->all_fragments[i].first_pixel + 7*stride,
M
Michael Niedermayer 已提交
1513
                        -stride, s->bounding_values_array + 127);
1514 1515
                }

1516 1517 1518 1519 1520 1521 1522
                /* perform the top edge filter if:
                 *   - the fragment is not on the top row
                 *   - the fragment is coded in this frame
                 *   - the fragment is not coded in this frame but the above
                 *     fragment is coded in this frame (this is done instead
                 *     of a bottom edge filter when rendering the above
                 *     fragment since this fragment is not available yet) */
1523
                if ((y > 0) &&
1524 1525 1526
                    ((s->all_fragments[i].coding_method != MODE_COPY) ||
                     ((s->all_fragments[i].coding_method == MODE_COPY) &&
                      (s->all_fragments[i - fragment_width].coding_method != MODE_COPY)) )) {
1527
                    vertical_filter(
1528
                        output_plane + s->all_fragments[i].first_pixel - stride,
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Michael Niedermayer 已提交
1529
                        -stride, s->bounding_values_array + 127);
1530
                }
1531
#endif
1532 1533 1534 1535 1536 1537 1538
            }
        }
    }

     /* this looks like a good place for slice dispatch... */
     /* algorithm:
      *   if (slice == s->macroblock_height - 1)
1539 1540 1541
      *     dispatch (both last slice & 2nd-to-last slice);
      *   else if (slice > 0)
      *     dispatch (slice - 1);
1542 1543 1544 1545 1546
      */

    emms_c();
}

1547 1548
static void apply_loop_filter(Vp3DecodeContext *s)
{
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Michael Niedermayer 已提交
1549 1550
    int plane;
    int x, y;
1551
    int *bounding_values= s->bounding_values_array+127;
1552

1553
#if 0
1554
    int bounding_values_array[256];
1555 1556 1557 1558 1559 1560 1561
    int filter_limit;

    /* find the right loop limit value */
    for (x = 63; x >= 0; x--) {
        if (vp31_ac_scale_factor[x] >= s->quality_index)
            break;
    }
1562
    filter_limit = vp31_filter_limit_values[s->quality_index];
1563 1564

    /* set up the bounding values */
1565
    memset(bounding_values_array, 0, 256 * sizeof(int));
1566 1567 1568 1569 1570 1571
    for (x = 0; x < filter_limit; x++) {
        bounding_values[-x - filter_limit] = -filter_limit + x;
        bounding_values[-x] = -x;
        bounding_values[x] = x;
        bounding_values[x + filter_limit] = filter_limit - x;
    }
1572
#endif
1573 1574

    for (plane = 0; plane < 3; plane++) {
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1575 1576 1577 1578 1579
        int width           = s->fragment_width  >> !!plane;
        int height          = s->fragment_height >> !!plane;
        int fragment        = s->fragment_start        [plane];
        int stride          = s->current_frame.linesize[plane];
        uint8_t *plane_data = s->current_frame.data    [plane];
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1580
        if (!s->flipped_image) stride = -stride;
1581 1582

        for (y = 0; y < height; y++) {
1583

1584 1585 1586 1587
            for (x = 0; x < width; x++) {
                /* do not perform left edge filter for left columns frags */
                if ((x > 0) &&
                    (s->all_fragments[fragment].coding_method != MODE_COPY)) {
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1588
                    s->dsp.vp3_h_loop_filter(
M
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1589
                        plane_data + s->all_fragments[fragment].first_pixel,
1590 1591 1592 1593 1594 1595
                        stride, bounding_values);
                }

                /* do not perform top edge filter for top row fragments */
                if ((y > 0) &&
                    (s->all_fragments[fragment].coding_method != MODE_COPY)) {
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1596
                    s->dsp.vp3_v_loop_filter(
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1597
                        plane_data + s->all_fragments[fragment].first_pixel,
1598 1599 1600 1601 1602 1603 1604 1605 1606
                        stride, bounding_values);
                }

                /* do not perform right edge filter for right column
                 * fragments or if right fragment neighbor is also coded
                 * in this frame (it will be filtered in next iteration) */
                if ((x < width - 1) &&
                    (s->all_fragments[fragment].coding_method != MODE_COPY) &&
                    (s->all_fragments[fragment + 1].coding_method == MODE_COPY)) {
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1607
                    s->dsp.vp3_h_loop_filter(
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1608
                        plane_data + s->all_fragments[fragment + 1].first_pixel,
1609 1610 1611 1612 1613 1614 1615 1616 1617
                        stride, bounding_values);
                }

                /* do not perform bottom edge filter for bottom row
                 * fragments or if bottom fragment neighbor is also coded
                 * in this frame (it will be filtered in the next row) */
                if ((y < height - 1) &&
                    (s->all_fragments[fragment].coding_method != MODE_COPY) &&
                    (s->all_fragments[fragment + width].coding_method == MODE_COPY)) {
D
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1618
                    s->dsp.vp3_v_loop_filter(
M
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1619
                        plane_data + s->all_fragments[fragment + width].first_pixel,
1620 1621 1622 1623 1624 1625 1626
                        stride, bounding_values);
                }

                fragment++;
            }
        }
    }
1627 1628
}

1629
/*
1630 1631 1632 1633
 * This function computes the first pixel addresses for each fragment.
 * This function needs to be invoked after the first frame is allocated
 * so that it has access to the plane strides.
 */
1634
static void vp3_calculate_pixel_addresses(Vp3DecodeContext *s)
1635
{
1636 1637
#define Y_INITIAL(chroma_shift)  s->flipped_image ? 1  : s->fragment_height >> chroma_shift
#define Y_FINISHED(chroma_shift) s->flipped_image ? y <= s->fragment_height >> chroma_shift : y > 0
1638 1639

    int i, x, y;
1640
    const int y_inc = s->flipped_image ? 1 : -1;
1641 1642 1643 1644

    /* figure out the first pixel addresses for each of the fragments */
    /* Y plane */
    i = 0;
1645
    for (y = Y_INITIAL(0); Y_FINISHED(0); y += y_inc) {
1646
        for (x = 0; x < s->fragment_width; x++) {
1647
            s->all_fragments[i++].first_pixel =
1648 1649 1650 1651 1652 1653 1654
                s->golden_frame.linesize[0] * y * FRAGMENT_PIXELS -
                    s->golden_frame.linesize[0] +
                    x * FRAGMENT_PIXELS;
        }
    }

    /* U plane */
M
Michael Niedermayer 已提交
1655
    i = s->fragment_start[1];
1656
    for (y = Y_INITIAL(1); Y_FINISHED(1); y += y_inc) {
1657
        for (x = 0; x < s->fragment_width / 2; x++) {
1658
            s->all_fragments[i++].first_pixel =
1659 1660 1661 1662 1663 1664 1665
                s->golden_frame.linesize[1] * y * FRAGMENT_PIXELS -
                    s->golden_frame.linesize[1] +
                    x * FRAGMENT_PIXELS;
        }
    }

    /* V plane */
M
Michael Niedermayer 已提交
1666
    i = s->fragment_start[2];
1667
    for (y = Y_INITIAL(1); Y_FINISHED(1); y += y_inc) {
1668
        for (x = 0; x < s->fragment_width / 2; x++) {
1669
            s->all_fragments[i++].first_pixel =
1670 1671 1672 1673 1674 1675 1676
                s->golden_frame.linesize[2] * y * FRAGMENT_PIXELS -
                    s->golden_frame.linesize[2] +
                    x * FRAGMENT_PIXELS;
        }
    }
}

1677 1678 1679
/*
 * This is the ffmpeg/libavcodec API init function.
 */
1680
static av_cold int vp3_decode_init(AVCodecContext *avctx)
1681 1682
{
    Vp3DecodeContext *s = avctx->priv_data;
1683
    int i, inter, plane;
1684 1685 1686 1687
    int c_width;
    int c_height;
    int y_superblock_count;
    int c_superblock_count;
1688

A
Alex Beregszaszi 已提交
1689
    if (avctx->codec_tag == MKTAG('V','P','3','0'))
1690
        s->version = 0;
A
Alex Beregszaszi 已提交
1691
    else
1692
        s->version = 1;
A
Alex Beregszaszi 已提交
1693

1694
    s->avctx = avctx;
1695 1696
    s->width = FFALIGN(avctx->width, 16);
    s->height = FFALIGN(avctx->height, 16);
1697
    avctx->pix_fmt = PIX_FMT_YUV420P;
1698
    avctx->chroma_sample_location = AVCHROMA_LOC_CENTER;
1699 1700
    if(avctx->idct_algo==FF_IDCT_AUTO)
        avctx->idct_algo=FF_IDCT_VP3;
1701
    dsputil_init(&s->dsp, avctx);
1702

M
Michael Niedermayer 已提交
1703
    ff_init_scantable(s->dsp.idct_permutation, &s->scantable, ff_zigzag_direct);
1704 1705 1706

    /* initialize to an impossible value which will force a recalculation
     * in the first frame decode */
1707 1708
    for (i = 0; i < 3; i++)
        s->qps[i] = -1;
1709

1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723
    s->y_superblock_width = (s->width + 31) / 32;
    s->y_superblock_height = (s->height + 31) / 32;
    y_superblock_count = s->y_superblock_width * s->y_superblock_height;

    /* work out the dimensions for the C planes */
    c_width = s->width / 2;
    c_height = s->height / 2;
    s->c_superblock_width = (c_width + 31) / 32;
    s->c_superblock_height = (c_height + 31) / 32;
    c_superblock_count = s->c_superblock_width * s->c_superblock_height;

    s->superblock_count = y_superblock_count + (c_superblock_count * 2);
    s->u_superblock_start = y_superblock_count;
    s->v_superblock_start = s->u_superblock_start + c_superblock_count;
1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734
    s->superblock_coding = av_malloc(s->superblock_count);

    s->macroblock_width = (s->width + 15) / 16;
    s->macroblock_height = (s->height + 15) / 16;
    s->macroblock_count = s->macroblock_width * s->macroblock_height;

    s->fragment_width = s->width / FRAGMENT_PIXELS;
    s->fragment_height = s->height / FRAGMENT_PIXELS;

    /* fragment count covers all 8x8 blocks for all 3 planes */
    s->fragment_count = s->fragment_width * s->fragment_height * 3 / 2;
M
Michael Niedermayer 已提交
1735 1736
    s->fragment_start[1] = s->fragment_width * s->fragment_height;
    s->fragment_start[2] = s->fragment_width * s->fragment_height * 5 / 4;
1737 1738

    s->all_fragments = av_malloc(s->fragment_count * sizeof(Vp3Fragment));
1739
    s->coeff_counts = av_malloc(s->fragment_count * sizeof(*s->coeff_counts));
1740
    s->coeffs = av_malloc(s->fragment_count * sizeof(Coeff) * 65);
1741
    s->coded_fragment_list = av_malloc(s->fragment_count * sizeof(int));
D
Diego Biurrun 已提交
1742
    s->pixel_addresses_initialized = 0;
1743

1744 1745
    if (!s->theora_tables)
    {
M
cleanup  
Michael Niedermayer 已提交
1746
        for (i = 0; i < 64; i++) {
1747 1748
            s->coded_dc_scale_factor[i] = vp31_dc_scale_factor[i];
            s->coded_ac_scale_factor[i] = vp31_ac_scale_factor[i];
1749 1750 1751
            s->base_matrix[0][i] = vp31_intra_y_dequant[i];
            s->base_matrix[1][i] = vp31_intra_c_dequant[i];
            s->base_matrix[2][i] = vp31_inter_dequant[i];
1752
            s->filter_limit_values[i] = vp31_filter_limit_values[i];
M
cleanup  
Michael Niedermayer 已提交
1753
        }
1754

1755 1756 1757 1758 1759 1760 1761 1762 1763
        for(inter=0; inter<2; inter++){
            for(plane=0; plane<3; plane++){
                s->qr_count[inter][plane]= 1;
                s->qr_size [inter][plane][0]= 63;
                s->qr_base [inter][plane][0]=
                s->qr_base [inter][plane][1]= 2*inter + (!!plane)*!inter;
            }
        }

1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795
        /* init VLC tables */
        for (i = 0; i < 16; i++) {

            /* DC histograms */
            init_vlc(&s->dc_vlc[i], 5, 32,
                &dc_bias[i][0][1], 4, 2,
                &dc_bias[i][0][0], 4, 2, 0);

            /* group 1 AC histograms */
            init_vlc(&s->ac_vlc_1[i], 5, 32,
                &ac_bias_0[i][0][1], 4, 2,
                &ac_bias_0[i][0][0], 4, 2, 0);

            /* group 2 AC histograms */
            init_vlc(&s->ac_vlc_2[i], 5, 32,
                &ac_bias_1[i][0][1], 4, 2,
                &ac_bias_1[i][0][0], 4, 2, 0);

            /* group 3 AC histograms */
            init_vlc(&s->ac_vlc_3[i], 5, 32,
                &ac_bias_2[i][0][1], 4, 2,
                &ac_bias_2[i][0][0], 4, 2, 0);

            /* group 4 AC histograms */
            init_vlc(&s->ac_vlc_4[i], 5, 32,
                &ac_bias_3[i][0][1], 4, 2,
                &ac_bias_3[i][0][0], 4, 2, 0);
        }
    } else {
        for (i = 0; i < 16; i++) {

            /* DC histograms */
1796
            if (init_vlc(&s->dc_vlc[i], 5, 32,
1797
                &s->huffman_table[i][0][1], 4, 2,
1798 1799
                &s->huffman_table[i][0][0], 4, 2, 0) < 0)
                goto vlc_fail;
1800 1801

            /* group 1 AC histograms */
1802
            if (init_vlc(&s->ac_vlc_1[i], 5, 32,
1803
                &s->huffman_table[i+16][0][1], 4, 2,
1804 1805
                &s->huffman_table[i+16][0][0], 4, 2, 0) < 0)
                goto vlc_fail;
1806 1807

            /* group 2 AC histograms */
1808
            if (init_vlc(&s->ac_vlc_2[i], 5, 32,
1809
                &s->huffman_table[i+16*2][0][1], 4, 2,
1810 1811
                &s->huffman_table[i+16*2][0][0], 4, 2, 0) < 0)
                goto vlc_fail;
1812 1813

            /* group 3 AC histograms */
1814
            if (init_vlc(&s->ac_vlc_3[i], 5, 32,
1815
                &s->huffman_table[i+16*3][0][1], 4, 2,
1816 1817
                &s->huffman_table[i+16*3][0][0], 4, 2, 0) < 0)
                goto vlc_fail;
1818 1819

            /* group 4 AC histograms */
1820
            if (init_vlc(&s->ac_vlc_4[i], 5, 32,
1821
                &s->huffman_table[i+16*4][0][1], 4, 2,
1822 1823
                &s->huffman_table[i+16*4][0][0], 4, 2, 0) < 0)
                goto vlc_fail;
1824
        }
1825 1826
    }

1827 1828 1829 1830
    init_vlc(&s->superblock_run_length_vlc, 6, 34,
        &superblock_run_length_vlc_table[0][1], 4, 2,
        &superblock_run_length_vlc_table[0][0], 4, 2, 0);

1831
    init_vlc(&s->fragment_run_length_vlc, 5, 30,
1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842
        &fragment_run_length_vlc_table[0][1], 4, 2,
        &fragment_run_length_vlc_table[0][0], 4, 2, 0);

    init_vlc(&s->mode_code_vlc, 3, 8,
        &mode_code_vlc_table[0][1], 2, 1,
        &mode_code_vlc_table[0][0], 2, 1, 0);

    init_vlc(&s->motion_vector_vlc, 6, 63,
        &motion_vector_vlc_table[0][1], 2, 1,
        &motion_vector_vlc_table[0][0], 2, 1, 0);

1843 1844 1845 1846
    /* work out the block mapping tables */
    s->superblock_fragments = av_malloc(s->superblock_count * 16 * sizeof(int));
    s->superblock_macroblocks = av_malloc(s->superblock_count * 4 * sizeof(int));
    s->macroblock_fragments = av_malloc(s->macroblock_count * 6 * sizeof(int));
1847
    s->macroblock_coding = av_malloc(s->macroblock_count + 1);
1848 1849
    init_block_mapping(s);

1850 1851 1852 1853
    for (i = 0; i < 3; i++) {
        s->current_frame.data[i] = NULL;
        s->last_frame.data[i] = NULL;
        s->golden_frame.data[i] = NULL;
1854 1855
    }

1856
    return 0;
1857 1858 1859 1860

vlc_fail:
    av_log(avctx, AV_LOG_FATAL, "Invalid huffman table\n");
    return -1;
1861 1862 1863 1864 1865
}

/*
 * This is the ffmpeg/libavcodec API frame decode function.
 */
1866
static int vp3_decode_frame(AVCodecContext *avctx,
1867
                            void *data, int *data_size,
1868
                            AVPacket *avpkt)
1869
{
1870 1871
    const uint8_t *buf = avpkt->data;
    int buf_size = avpkt->size;
1872 1873 1874
    Vp3DecodeContext *s = avctx->priv_data;
    GetBitContext gb;
    static int counter = 0;
1875
    int i;
1876 1877

    init_get_bits(&gb, buf, buf_size * 8);
1878

1879 1880
    if (s->theora && get_bits1(&gb))
    {
1881 1882
        av_log(avctx, AV_LOG_ERROR, "Header packet passed to frame decoder, skipping\n");
        return -1;
1883
    }
A
Alex Beregszaszi 已提交
1884 1885 1886

    s->keyframe = !get_bits1(&gb);
    if (!s->theora)
1887
        skip_bits(&gb, 1);
1888 1889
    for (i = 0; i < 3; i++)
        s->last_qps[i] = s->qps[i];
1890

1891
    s->nqps=0;
1892
    do{
1893 1894 1895 1896
        s->qps[s->nqps++]= get_bits(&gb, 6);
    } while(s->theora >= 0x030200 && s->nqps<3 && get_bits1(&gb));
    for (i = s->nqps; i < 3; i++)
        s->qps[i] = -1;
1897

1898
    if (s->avctx->debug & FF_DEBUG_PICT_INFO)
1899
        av_log(s->avctx, AV_LOG_INFO, " VP3 %sframe #%d: Q index = %d\n",
1900
            s->keyframe?"key":"", counter, s->qps[0]);
1901 1902
    counter++;

1903
    if (s->qps[0] != s->last_qps[0])
1904
        init_loop_filter(s);
1905 1906 1907 1908 1909 1910

    for (i = 0; i < s->nqps; i++)
        // reinit all dequantizers if the first one changed, because
        // the DC of the first quantizer must be used for all matrices
        if (s->qps[i] != s->last_qps[i] || s->qps[0] != s->last_qps[0])
            init_dequantizer(s, i);
1911

1912 1913 1914
    if (avctx->skip_frame >= AVDISCARD_NONKEY && !s->keyframe)
        return buf_size;

1915
    if (s->keyframe) {
1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932
        if (!s->theora)
        {
            skip_bits(&gb, 4); /* width code */
            skip_bits(&gb, 4); /* height code */
            if (s->version)
            {
                s->version = get_bits(&gb, 5);
                if (counter == 1)
                    av_log(s->avctx, AV_LOG_DEBUG, "VP version: %d\n", s->version);
            }
        }
        if (s->version || s->theora)
        {
                if (get_bits1(&gb))
                    av_log(s->avctx, AV_LOG_ERROR, "Warning, unsupported keyframe coding type?!\n");
            skip_bits(&gb, 2); /* reserved? */
        }
A
Alex Beregszaszi 已提交
1933

1934 1935 1936
        if (s->last_frame.data[0] == s->golden_frame.data[0]) {
            if (s->golden_frame.data[0])
                avctx->release_buffer(avctx, &s->golden_frame);
1937
            s->last_frame= s->golden_frame; /* ensure that we catch any access to this released frame */
1938 1939 1940 1941 1942 1943
        } else {
            if (s->golden_frame.data[0])
                avctx->release_buffer(avctx, &s->golden_frame);
            if (s->last_frame.data[0])
                avctx->release_buffer(avctx, &s->last_frame);
        }
1944

1945
        s->golden_frame.reference = 3;
1946
        if(avctx->get_buffer(avctx, &s->golden_frame) < 0) {
1947
            av_log(s->avctx, AV_LOG_ERROR, "vp3: get_buffer() failed\n");
1948 1949 1950 1951
            return -1;
        }

        /* golden frame is also the current frame */
M
Michael Niedermayer 已提交
1952
        s->current_frame= s->golden_frame;
1953 1954

        /* time to figure out pixel addresses? */
D
Diego Biurrun 已提交
1955
        if (!s->pixel_addresses_initialized)
1956
        {
D
David Conrad 已提交
1957
            vp3_calculate_pixel_addresses(s);
D
Diego Biurrun 已提交
1958
            s->pixel_addresses_initialized = 1;
1959
        }
1960 1961
    } else {
        /* allocate a new current frame */
1962
        s->current_frame.reference = 3;
D
Diego Biurrun 已提交
1963
        if (!s->pixel_addresses_initialized) {
1964 1965 1966
            av_log(s->avctx, AV_LOG_ERROR, "vp3: first frame not a keyframe\n");
            return -1;
        }
1967
        if(avctx->get_buffer(avctx, &s->current_frame) < 0) {
1968
            av_log(s->avctx, AV_LOG_ERROR, "vp3: get_buffer() failed\n");
1969 1970 1971 1972
            return -1;
        }
    }

M
Michael Niedermayer 已提交
1973 1974 1975
    s->current_frame.qscale_table= s->qscale_table; //FIXME allocate individual tables per AVFrame
    s->current_frame.qstride= 0;

1976 1977
    init_frame(s, &gb);

M
Michael Niedermayer 已提交
1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989
    if (unpack_superblocks(s, &gb)){
        av_log(s->avctx, AV_LOG_ERROR, "error in unpack_superblocks\n");
        return -1;
    }
    if (unpack_modes(s, &gb)){
        av_log(s->avctx, AV_LOG_ERROR, "error in unpack_modes\n");
        return -1;
    }
    if (unpack_vectors(s, &gb)){
        av_log(s->avctx, AV_LOG_ERROR, "error in unpack_vectors\n");
        return -1;
    }
1990 1991 1992 1993
    if (unpack_block_qpis(s, &gb)){
        av_log(s->avctx, AV_LOG_ERROR, "error in unpack_block_qpis\n");
        return -1;
    }
M
Michael Niedermayer 已提交
1994 1995
    if (unpack_dct_coeffs(s, &gb)){
        av_log(s->avctx, AV_LOG_ERROR, "error in unpack_dct_coeffs\n");
1996 1997
        return -1;
    }
1998 1999

    reverse_dc_prediction(s, 0, s->fragment_width, s->fragment_height);
2000
    if ((avctx->flags & CODEC_FLAG_GRAY) == 0) {
M
Michael Niedermayer 已提交
2001
        reverse_dc_prediction(s, s->fragment_start[1],
2002
            s->fragment_width / 2, s->fragment_height / 2);
M
Michael Niedermayer 已提交
2003
        reverse_dc_prediction(s, s->fragment_start[2],
2004
            s->fragment_width / 2, s->fragment_height / 2);
2005 2006 2007 2008
    }

    for (i = 0; i < s->macroblock_height; i++)
        render_slice(s, i);
2009

2010
    apply_loop_filter(s);
2011

2012 2013 2014
    *data_size=sizeof(AVFrame);
    *(AVFrame*)data= s->current_frame;

2015 2016 2017 2018 2019
    /* release the last frame, if it is allocated and if it is not the
     * golden frame */
    if ((s->last_frame.data[0]) &&
        (s->last_frame.data[0] != s->golden_frame.data[0]))
        avctx->release_buffer(avctx, &s->last_frame);
2020

2021
    /* shuffle frames (last = current) */
M
Michael Niedermayer 已提交
2022
    s->last_frame= s->current_frame;
2023
    s->current_frame.data[0]= NULL; /* ensure that we catch any access to this released frame */
2024 2025 2026 2027 2028 2029 2030

    return buf_size;
}

/*
 * This is the ffmpeg/libavcodec API module cleanup function.
 */
2031
static av_cold int vp3_decode_end(AVCodecContext *avctx)
2032 2033
{
    Vp3DecodeContext *s = avctx->priv_data;
2034
    int i;
2035

2036
    av_free(s->superblock_coding);
2037
    av_free(s->all_fragments);
2038
    av_free(s->coeff_counts);
2039
    av_free(s->coeffs);
2040 2041 2042 2043
    av_free(s->coded_fragment_list);
    av_free(s->superblock_fragments);
    av_free(s->superblock_macroblocks);
    av_free(s->macroblock_fragments);
2044
    av_free(s->macroblock_coding);
2045

2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058
    for (i = 0; i < 16; i++) {
        free_vlc(&s->dc_vlc[i]);
        free_vlc(&s->ac_vlc_1[i]);
        free_vlc(&s->ac_vlc_2[i]);
        free_vlc(&s->ac_vlc_3[i]);
        free_vlc(&s->ac_vlc_4[i]);
    }

    free_vlc(&s->superblock_run_length_vlc);
    free_vlc(&s->fragment_run_length_vlc);
    free_vlc(&s->mode_code_vlc);
    free_vlc(&s->motion_vector_vlc);

2059
    /* release all frames */
2060
    if (s->golden_frame.data[0] && s->golden_frame.data[0] != s->last_frame.data[0])
2061 2062 2063 2064 2065
        avctx->release_buffer(avctx, &s->golden_frame);
    if (s->last_frame.data[0])
        avctx->release_buffer(avctx, &s->last_frame);
    /* no need to release the current_frame since it will always be pointing
     * to the same frame as either the golden or last frame */
2066 2067 2068 2069

    return 0;
}

2070 2071 2072 2073
static int read_huffman_tree(AVCodecContext *avctx, GetBitContext *gb)
{
    Vp3DecodeContext *s = avctx->priv_data;

2074
    if (get_bits1(gb)) {
2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092
        int token;
        if (s->entries >= 32) { /* overflow */
            av_log(avctx, AV_LOG_ERROR, "huffman tree overflow\n");
            return -1;
        }
        token = get_bits(gb, 5);
        //av_log(avctx, AV_LOG_DEBUG, "hti %d hbits %x token %d entry : %d size %d\n", s->hti, s->hbits, token, s->entries, s->huff_code_size);
        s->huffman_table[s->hti][token][0] = s->hbits;
        s->huffman_table[s->hti][token][1] = s->huff_code_size;
        s->entries++;
    }
    else {
        if (s->huff_code_size >= 32) {/* overflow */
            av_log(avctx, AV_LOG_ERROR, "huffman tree overflow\n");
            return -1;
        }
        s->huff_code_size++;
        s->hbits <<= 1;
2093 2094
        if (read_huffman_tree(avctx, gb))
            return -1;
2095
        s->hbits |= 1;
2096 2097
        if (read_huffman_tree(avctx, gb))
            return -1;
2098 2099 2100 2101 2102 2103
        s->hbits >>= 1;
        s->huff_code_size--;
    }
    return 0;
}

2104
#if CONFIG_THEORA_DECODER
2105
static int theora_decode_header(AVCodecContext *avctx, GetBitContext *gb)
2106 2107
{
    Vp3DecodeContext *s = avctx->priv_data;
2108
    int visible_width, visible_height;
2109

2110
    s->theora = get_bits_long(gb, 24);
2111
    av_log(avctx, AV_LOG_DEBUG, "Theora bitstream version %X\n", s->theora);
2112

M
Matthieu Castet 已提交
2113
    /* 3.2.0 aka alpha3 has the same frame orientation as original vp3 */
2114
    /* but previous versions have the image flipped relative to vp3 */
M
Matthieu Castet 已提交
2115
    if (s->theora < 0x030200)
2116
    {
2117
        s->flipped_image = 1;
2118 2119
        av_log(avctx, AV_LOG_DEBUG, "Old (<alpha3) Theora bitstream, flipped image\n");
    }
2120

2121 2122
    visible_width  = s->width  = get_bits(gb, 16) << 4;
    visible_height = s->height = get_bits(gb, 16) << 4;
2123

2124
    if(avcodec_check_dimensions(avctx, s->width, s->height)){
2125
        av_log(avctx, AV_LOG_ERROR, "Invalid dimensions (%dx%d)\n", s->width, s->height);
2126 2127 2128
        s->width= s->height= 0;
        return -1;
    }
2129 2130 2131

    if (s->theora >= 0x030400)
    {
2132
        skip_bits(gb, 32); /* total number of superblocks in a frame */
2133
        // fixme, the next field is 36bits long
2134 2135 2136
        skip_bits(gb, 32); /* total number of blocks in a frame */
        skip_bits(gb, 4); /* total number of blocks in a frame */
        skip_bits(gb, 32); /* total number of macroblocks in a frame */
2137
    }
2138

2139
    if (s->theora >= 0x030200) {
D
David Conrad 已提交
2140 2141
        visible_width  = get_bits_long(gb, 24);
        visible_height = get_bits_long(gb, 24);
2142

2143 2144 2145
        skip_bits(gb, 8); /* offset x */
        skip_bits(gb, 8); /* offset y */
    }
2146

2147 2148 2149 2150
    skip_bits(gb, 32); /* fps numerator */
    skip_bits(gb, 32); /* fps denumerator */
    skip_bits(gb, 24); /* aspect numerator */
    skip_bits(gb, 24); /* aspect denumerator */
2151

M
Matthieu Castet 已提交
2152
    if (s->theora < 0x030200)
2153 2154
        skip_bits(gb, 5); /* keyframe frequency force */
    skip_bits(gb, 8); /* colorspace */
2155
    if (s->theora >= 0x030400)
2156 2157
        skip_bits(gb, 2); /* pixel format: 420,res,422,444 */
    skip_bits(gb, 24); /* bitrate */
2158

2159
    skip_bits(gb, 6); /* quality hint */
2160

M
Matthieu Castet 已提交
2161
    if (s->theora >= 0x030200)
2162
    {
2163
        skip_bits(gb, 5); /* keyframe frequency force */
2164

2165
        if (s->theora < 0x030400)
2166
            skip_bits(gb, 5); /* spare bits */
2167
    }
2168

2169
//    align_get_bits(gb);
2170

2171 2172 2173 2174 2175
    if (   visible_width  <= s->width  && visible_width  > s->width-16
        && visible_height <= s->height && visible_height > s->height-16)
        avcodec_set_dimensions(avctx, visible_width, visible_height);
    else
        avcodec_set_dimensions(avctx, s->width, s->height);
2176 2177 2178 2179

    return 0;
}

2180
static int theora_decode_tables(AVCodecContext *avctx, GetBitContext *gb)
2181 2182
{
    Vp3DecodeContext *s = avctx->priv_data;
2183
    int i, n, matrices, inter, plane;
M
Matthieu Castet 已提交
2184 2185

    if (s->theora >= 0x030200) {
2186
        n = get_bits(gb, 3);
2187
        /* loop filter limit values table */
2188
        for (i = 0; i < 64; i++) {
2189
            s->filter_limit_values[i] = get_bits(gb, n);
2190 2191 2192 2193 2194
            if (s->filter_limit_values[i] > 127) {
                av_log(avctx, AV_LOG_ERROR, "filter limit value too large (%i > 127), clamping\n", s->filter_limit_values[i]);
                s->filter_limit_values[i] = 127;
            }
        }
M
Matthieu Castet 已提交
2195
    }
2196

M
Matthieu Castet 已提交
2197
    if (s->theora >= 0x030200)
2198
        n = get_bits(gb, 4) + 1;
M
Matthieu Castet 已提交
2199 2200
    else
        n = 16;
2201 2202
    /* quality threshold table */
    for (i = 0; i < 64; i++)
2203
        s->coded_ac_scale_factor[i] = get_bits(gb, n);
2204

M
Matthieu Castet 已提交
2205
    if (s->theora >= 0x030200)
2206
        n = get_bits(gb, 4) + 1;
M
Matthieu Castet 已提交
2207 2208
    else
        n = 16;
2209 2210
    /* dc scale factor table */
    for (i = 0; i < 64; i++)
2211
        s->coded_dc_scale_factor[i] = get_bits(gb, n);
2212

M
Matthieu Castet 已提交
2213
    if (s->theora >= 0x030200)
2214
        matrices = get_bits(gb, 9) + 1;
M
Matthieu Castet 已提交
2215
    else
2216
        matrices = 3;
2217

2218 2219 2220 2221
    if(matrices > 384){
        av_log(avctx, AV_LOG_ERROR, "invalid number of base matrixes\n");
        return -1;
    }
A
Alex Beregszaszi 已提交
2222

2223
    for(n=0; n<matrices; n++){
2224
        for (i = 0; i < 64; i++)
2225 2226
            s->base_matrix[n][i]= get_bits(gb, 8);
    }
2227

2228 2229 2230 2231
    for (inter = 0; inter <= 1; inter++) {
        for (plane = 0; plane <= 2; plane++) {
            int newqr= 1;
            if (inter || plane > 0)
2232
                newqr = get_bits1(gb);
2233
            if (!newqr) {
2234
                int qtj, plj;
2235
                if(inter && get_bits1(gb)){
2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246
                    qtj = 0;
                    plj = plane;
                }else{
                    qtj= (3*inter + plane - 1) / 3;
                    plj= (plane + 2) % 3;
                }
                s->qr_count[inter][plane]= s->qr_count[qtj][plj];
                memcpy(s->qr_size[inter][plane], s->qr_size[qtj][plj], sizeof(s->qr_size[0][0]));
                memcpy(s->qr_base[inter][plane], s->qr_base[qtj][plj], sizeof(s->qr_base[0][0]));
            } else {
                int qri= 0;
2247
                int qi = 0;
2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260

                for(;;){
                    i= get_bits(gb, av_log2(matrices-1)+1);
                    if(i>= matrices){
                        av_log(avctx, AV_LOG_ERROR, "invalid base matrix index\n");
                        return -1;
                    }
                    s->qr_base[inter][plane][qri]= i;
                    if(qi >= 63)
                        break;
                    i = get_bits(gb, av_log2(63-qi)+1) + 1;
                    s->qr_size[inter][plane][qri++]= i;
                    qi += i;
2261
                }
2262

2263
                if (qi > 63) {
2264
                    av_log(avctx, AV_LOG_ERROR, "invalid qi %d > 63\n", qi);
2265 2266
                    return -1;
                }
2267
                s->qr_count[inter][plane]= qri;
2268 2269 2270 2271
            }
        }
    }

2272
    /* Huffman tables */
2273 2274 2275
    for (s->hti = 0; s->hti < 80; s->hti++) {
        s->entries = 0;
        s->huff_code_size = 1;
2276
        if (!get_bits1(gb)) {
2277
            s->hbits = 0;
2278 2279
            if(read_huffman_tree(avctx, gb))
                return -1;
2280
            s->hbits = 1;
2281 2282
            if(read_huffman_tree(avctx, gb))
                return -1;
2283 2284
        }
    }
2285

2286
    s->theora_tables = 1;
2287

2288 2289 2290
    return 0;
}

2291
static av_cold int theora_decode_init(AVCodecContext *avctx)
2292 2293 2294 2295
{
    Vp3DecodeContext *s = avctx->priv_data;
    GetBitContext gb;
    int ptype;
2296 2297 2298
    uint8_t *header_start[3];
    int header_len[3];
    int i;
2299

2300 2301 2302
    s->theora = 1;

    if (!avctx->extradata_size)
2303 2304
    {
        av_log(avctx, AV_LOG_ERROR, "Missing extradata!\n");
2305
        return -1;
2306
    }
2307

2308 2309 2310 2311 2312
    if (ff_split_xiph_headers(avctx->extradata, avctx->extradata_size,
                              42, header_start, header_len) < 0) {
        av_log(avctx, AV_LOG_ERROR, "Corrupt extradata\n");
        return -1;
    }
2313

2314 2315
  for(i=0;i<3;i++) {
    init_get_bits(&gb, header_start[i], header_len[i]);
2316 2317

    ptype = get_bits(&gb, 8);
2318

2319 2320 2321
     if (!(ptype & 0x80))
     {
        av_log(avctx, AV_LOG_ERROR, "Invalid extradata!\n");
2322
//        return -1;
2323
     }
2324

2325
    // FIXME: Check for this as well.
2326
    skip_bits_long(&gb, 6*8); /* "theora" */
2327

2328 2329 2330
    switch(ptype)
    {
        case 0x80:
2331
            theora_decode_header(avctx, &gb);
2332 2333
                break;
        case 0x81:
2334
// FIXME: is this needed? it breaks sometimes
2335 2336 2337
//            theora_decode_comments(avctx, gb);
            break;
        case 0x82:
2338 2339
            if (theora_decode_tables(avctx, &gb))
                return -1;
2340 2341 2342 2343
            break;
        default:
            av_log(avctx, AV_LOG_ERROR, "Unknown Theora config packet: %d\n", ptype&~0x80);
            break;
2344
    }
2345 2346
    if(ptype != 0x81 && 8*header_len[i] != get_bits_count(&gb))
        av_log(avctx, AV_LOG_WARNING, "%d bits left in packet %X\n", 8*header_len[i] - get_bits_count(&gb), ptype);
2347 2348
    if (s->theora < 0x030200)
        break;
2349
  }
2350

2351
    return vp3_decode_init(avctx);
2352 2353
}

2354 2355
AVCodec theora_decoder = {
    "theora",
2356
    CODEC_TYPE_VIDEO,
2357
    CODEC_ID_THEORA,
2358
    sizeof(Vp3DecodeContext),
2359
    theora_decode_init,
2360 2361 2362
    NULL,
    vp3_decode_end,
    vp3_decode_frame,
2363
    CODEC_CAP_DR1,
2364
    NULL,
2365
    .long_name = NULL_IF_CONFIG_SMALL("Theora"),
2366
};
2367
#endif
2368

2369 2370
AVCodec vp3_decoder = {
    "vp3",
2371
    CODEC_TYPE_VIDEO,
2372
    CODEC_ID_VP3,
2373
    sizeof(Vp3DecodeContext),
2374
    vp3_decode_init,
2375 2376 2377
    NULL,
    vp3_decode_end,
    vp3_decode_frame,
2378
    CODEC_CAP_DR1,
2379
    NULL,
2380
    .long_name = NULL_IF_CONFIG_SMALL("On2 VP3"),
2381
};