vp8.c 65.6 KB
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/**
 * VP8 compatible video decoder
 *
 * Copyright (C) 2010 David Conrad
 * Copyright (C) 2010 Ronald S. Bultje
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 * Copyright (C) 2010 Jason Garrett-Glaser
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 *
 * This file is part of FFmpeg.
 *
 * FFmpeg is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2.1 of the License, or (at your option) any later version.
 *
 * FFmpeg is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
 * License along with FFmpeg; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
 */

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#include "libavcore/imgutils.h"
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#include "avcodec.h"
#include "vp56.h"
#include "vp8data.h"
#include "vp8dsp.h"
#include "h264pred.h"
#include "rectangle.h"

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typedef struct {
    uint8_t filter_level;
    uint8_t inner_limit;
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    uint8_t inner_filter;
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} VP8FilterStrength;

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typedef struct {
    uint8_t skip;
    // todo: make it possible to check for at least (i4x4 or split_mv)
    // in one op. are others needed?
    uint8_t mode;
    uint8_t ref_frame;
    uint8_t partitioning;
    VP56mv mv;
    VP56mv bmv[16];
} VP8Macroblock;

typedef struct {
    AVCodecContext *avctx;
    DSPContext dsp;
    VP8DSPContext vp8dsp;
    H264PredContext hpc;
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    vp8_mc_func put_pixels_tab[3][3][3];
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    AVFrame frames[4];
    AVFrame *framep[4];
    uint8_t *edge_emu_buffer;
    VP56RangeCoder c;   ///< header context, includes mb modes and motion vectors
    int profile;

    int mb_width;   /* number of horizontal MB */
    int mb_height;  /* number of vertical MB */
    int linesize;
    int uvlinesize;

    int keyframe;
    int invisible;
    int update_last;    ///< update VP56_FRAME_PREVIOUS with the current one
    int update_golden;  ///< VP56_FRAME_NONE if not updated, or which frame to copy if so
    int update_altref;
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    int deblock_filter;
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    /**
     * If this flag is not set, all the probability updates
     * are discarded after this frame is decoded.
     */
    int update_probabilities;

    /**
     * All coefficients are contained in separate arith coding contexts.
     * There can be 1, 2, 4, or 8 of these after the header context.
     */
    int num_coeff_partitions;
    VP56RangeCoder coeff_partition[8];

    VP8Macroblock *macroblocks;
    VP8Macroblock *macroblocks_base;
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    VP8FilterStrength *filter_strength;
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    uint8_t *intra4x4_pred_mode_top;
    uint8_t intra4x4_pred_mode_left[4];
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    uint8_t *segmentation_map;
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    /**
     * Cache of the top row needed for intra prediction
     * 16 for luma, 8 for each chroma plane
     */
    uint8_t (*top_border)[16+8+8];

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    /**
     * For coeff decode, we need to know whether the above block had non-zero
     * coefficients. This means for each macroblock, we need data for 4 luma
     * blocks, 2 u blocks, 2 v blocks, and the luma dc block, for a total of 9
     * per macroblock. We keep the last row in top_nnz.
     */
    uint8_t (*top_nnz)[9];
    DECLARE_ALIGNED(8, uint8_t, left_nnz)[9];

    /**
     * This is the index plus one of the last non-zero coeff
     * for each of the blocks in the current macroblock.
     * So, 0 -> no coeffs
     *     1 -> dc-only (special transform)
     *     2+-> full transform
     */
    DECLARE_ALIGNED(16, uint8_t, non_zero_count_cache)[6][4];
    DECLARE_ALIGNED(16, DCTELEM, block)[6][4][16];
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    DECLARE_ALIGNED(16, DCTELEM, block_dc)[16];
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    uint8_t intra4x4_pred_mode_mb[16];
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    int chroma_pred_mode;    ///< 8x8c pred mode of the current macroblock
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    int segment;             ///< segment of the current macroblock
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    int mbskip_enabled;
    int sign_bias[4]; ///< one state [0, 1] per ref frame type
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    int ref_count[3];
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    /**
     * Base parameters for segmentation, i.e. per-macroblock parameters.
     * These must be kept unchanged even if segmentation is not used for
     * a frame, since the values persist between interframes.
     */
    struct {
        int enabled;
        int absolute_vals;
        int update_map;
        int8_t base_quant[4];
        int8_t filter_level[4];     ///< base loop filter level
    } segmentation;

    /**
     * Macroblocks can have one of 4 different quants in a frame when
     * segmentation is enabled.
     * If segmentation is disabled, only the first segment's values are used.
     */
    struct {
        // [0] - DC qmul  [1] - AC qmul
        int16_t luma_qmul[2];
        int16_t luma_dc_qmul[2];    ///< luma dc-only block quant
        int16_t chroma_qmul[2];
    } qmat[4];

    struct {
        int simple;
        int level;
        int sharpness;
    } filter;

    struct {
        int enabled;    ///< whether each mb can have a different strength based on mode/ref

        /**
         * filter strength adjustment for the following macroblock modes:
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         * [0-3] - i16x16 (always zero)
         * [4]   - i4x4
         * [5]   - zero mv
         * [6]   - inter modes except for zero or split mv
         * [7]   - split mv
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         *  i16x16 modes never have any adjustment
         */
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        int8_t mode[VP8_MVMODE_SPLIT+1];
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        /**
         * filter strength adjustment for macroblocks that reference:
         * [0] - intra / VP56_FRAME_CURRENT
         * [1] - VP56_FRAME_PREVIOUS
         * [2] - VP56_FRAME_GOLDEN
         * [3] - altref / VP56_FRAME_GOLDEN2
         */
        int8_t ref[4];
    } lf_delta;

    /**
     * These are all of the updatable probabilities for binary decisions.
     * They are only implictly reset on keyframes, making it quite likely
     * for an interframe to desync if a prior frame's header was corrupt
     * or missing outright!
     */
    struct {
        uint8_t segmentid[3];
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        uint8_t mbskip;
        uint8_t intra;
        uint8_t last;
        uint8_t golden;
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        uint8_t pred16x16[4];
        uint8_t pred8x8c[3];
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        /* Padded to allow overreads */
        uint8_t token[4][17][3][NUM_DCT_TOKENS-1];
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        uint8_t mvc[2][19];
    } prob[2];
} VP8Context;

static void vp8_decode_flush(AVCodecContext *avctx)
{
    VP8Context *s = avctx->priv_data;
    int i;

    for (i = 0; i < 4; i++)
        if (s->frames[i].data[0])
            avctx->release_buffer(avctx, &s->frames[i]);
    memset(s->framep, 0, sizeof(s->framep));

    av_freep(&s->macroblocks_base);
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    av_freep(&s->filter_strength);
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    av_freep(&s->intra4x4_pred_mode_top);
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    av_freep(&s->top_nnz);
    av_freep(&s->edge_emu_buffer);
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    av_freep(&s->top_border);
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    av_freep(&s->segmentation_map);
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    s->macroblocks        = NULL;
}

static int update_dimensions(VP8Context *s, int width, int height)
{
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    if (av_image_check_size(width, height, 0, s->avctx))
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        return AVERROR_INVALIDDATA;

    vp8_decode_flush(s->avctx);

    avcodec_set_dimensions(s->avctx, width, height);

    s->mb_width  = (s->avctx->coded_width +15) / 16;
    s->mb_height = (s->avctx->coded_height+15) / 16;

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    s->macroblocks_base        = av_mallocz((s->mb_width+s->mb_height*2+1)*sizeof(*s->macroblocks));
    s->filter_strength         = av_mallocz(s->mb_width*sizeof(*s->filter_strength));
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    s->intra4x4_pred_mode_top  = av_mallocz(s->mb_width*4);
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    s->top_nnz                 = av_mallocz(s->mb_width*sizeof(*s->top_nnz));
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    s->top_border              = av_mallocz((s->mb_width+1)*sizeof(*s->top_border));
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    s->segmentation_map        = av_mallocz(s->mb_width*s->mb_height);
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    if (!s->macroblocks_base || !s->filter_strength || !s->intra4x4_pred_mode_top ||
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        !s->top_nnz || !s->top_border || !s->segmentation_map)
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        return AVERROR(ENOMEM);

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    s->macroblocks        = s->macroblocks_base + 1;
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    return 0;
}

static void parse_segment_info(VP8Context *s)
{
    VP56RangeCoder *c = &s->c;
    int i;

    s->segmentation.update_map = vp8_rac_get(c);

    if (vp8_rac_get(c)) { // update segment feature data
        s->segmentation.absolute_vals = vp8_rac_get(c);

        for (i = 0; i < 4; i++)
            s->segmentation.base_quant[i]   = vp8_rac_get_sint(c, 7);

        for (i = 0; i < 4; i++)
            s->segmentation.filter_level[i] = vp8_rac_get_sint(c, 6);
    }
    if (s->segmentation.update_map)
        for (i = 0; i < 3; i++)
            s->prob->segmentid[i] = vp8_rac_get(c) ? vp8_rac_get_uint(c, 8) : 255;
}

static void update_lf_deltas(VP8Context *s)
{
    VP56RangeCoder *c = &s->c;
    int i;

    for (i = 0; i < 4; i++)
        s->lf_delta.ref[i]  = vp8_rac_get_sint(c, 6);

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    for (i = MODE_I4x4; i <= VP8_MVMODE_SPLIT; i++)
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        s->lf_delta.mode[i] = vp8_rac_get_sint(c, 6);
}

static int setup_partitions(VP8Context *s, const uint8_t *buf, int buf_size)
{
    const uint8_t *sizes = buf;
    int i;

    s->num_coeff_partitions = 1 << vp8_rac_get_uint(&s->c, 2);

    buf      += 3*(s->num_coeff_partitions-1);
    buf_size -= 3*(s->num_coeff_partitions-1);
    if (buf_size < 0)
        return -1;

    for (i = 0; i < s->num_coeff_partitions-1; i++) {
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        int size = AV_RL24(sizes + 3*i);
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        if (buf_size - size < 0)
            return -1;

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        ff_vp56_init_range_decoder(&s->coeff_partition[i], buf, size);
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        buf      += size;
        buf_size -= size;
    }
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    ff_vp56_init_range_decoder(&s->coeff_partition[i], buf, buf_size);
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    return 0;
}

static void get_quants(VP8Context *s)
{
    VP56RangeCoder *c = &s->c;
    int i, base_qi;

    int yac_qi     = vp8_rac_get_uint(c, 7);
    int ydc_delta  = vp8_rac_get_sint(c, 4);
    int y2dc_delta = vp8_rac_get_sint(c, 4);
    int y2ac_delta = vp8_rac_get_sint(c, 4);
    int uvdc_delta = vp8_rac_get_sint(c, 4);
    int uvac_delta = vp8_rac_get_sint(c, 4);

    for (i = 0; i < 4; i++) {
        if (s->segmentation.enabled) {
            base_qi = s->segmentation.base_quant[i];
            if (!s->segmentation.absolute_vals)
                base_qi += yac_qi;
        } else
            base_qi = yac_qi;

        s->qmat[i].luma_qmul[0]    =       vp8_dc_qlookup[av_clip(base_qi + ydc_delta , 0, 127)];
        s->qmat[i].luma_qmul[1]    =       vp8_ac_qlookup[av_clip(base_qi             , 0, 127)];
        s->qmat[i].luma_dc_qmul[0] =   2 * vp8_dc_qlookup[av_clip(base_qi + y2dc_delta, 0, 127)];
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        s->qmat[i].luma_dc_qmul[1] = 155 * vp8_ac_qlookup[av_clip(base_qi + y2ac_delta, 0, 127)] / 100;
        s->qmat[i].chroma_qmul[0]  =       vp8_dc_qlookup[av_clip(base_qi + uvdc_delta, 0, 127)];
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        s->qmat[i].chroma_qmul[1]  =       vp8_ac_qlookup[av_clip(base_qi + uvac_delta, 0, 127)];
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        s->qmat[i].luma_dc_qmul[1] = FFMAX(s->qmat[i].luma_dc_qmul[1], 8);
        s->qmat[i].chroma_qmul[0]  = FFMIN(s->qmat[i].chroma_qmul[0], 132);
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    }
}

/**
 * Determine which buffers golden and altref should be updated with after this frame.
 * The spec isn't clear here, so I'm going by my understanding of what libvpx does
 *
 * Intra frames update all 3 references
 * Inter frames update VP56_FRAME_PREVIOUS if the update_last flag is set
 * If the update (golden|altref) flag is set, it's updated with the current frame
 *      if update_last is set, and VP56_FRAME_PREVIOUS otherwise.
 * If the flag is not set, the number read means:
 *      0: no update
 *      1: VP56_FRAME_PREVIOUS
 *      2: update golden with altref, or update altref with golden
 */
static VP56Frame ref_to_update(VP8Context *s, int update, VP56Frame ref)
{
    VP56RangeCoder *c = &s->c;

    if (update)
        return VP56_FRAME_CURRENT;

    switch (vp8_rac_get_uint(c, 2)) {
    case 1:
        return VP56_FRAME_PREVIOUS;
    case 2:
        return (ref == VP56_FRAME_GOLDEN) ? VP56_FRAME_GOLDEN2 : VP56_FRAME_GOLDEN;
    }
    return VP56_FRAME_NONE;
}

static void update_refs(VP8Context *s)
{
    VP56RangeCoder *c = &s->c;

    int update_golden = vp8_rac_get(c);
    int update_altref = vp8_rac_get(c);

    s->update_golden = ref_to_update(s, update_golden, VP56_FRAME_GOLDEN);
    s->update_altref = ref_to_update(s, update_altref, VP56_FRAME_GOLDEN2);
}

static int decode_frame_header(VP8Context *s, const uint8_t *buf, int buf_size)
{
    VP56RangeCoder *c = &s->c;
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    int header_size, hscale, vscale, i, j, k, l, m, ret;
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    int width  = s->avctx->width;
    int height = s->avctx->height;

    s->keyframe  = !(buf[0] & 1);
    s->profile   =  (buf[0]>>1) & 7;
    s->invisible = !(buf[0] & 0x10);
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    header_size  = AV_RL24(buf) >> 5;
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    buf      += 3;
    buf_size -= 3;

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    if (s->profile > 3)
        av_log(s->avctx, AV_LOG_WARNING, "Unknown profile %d\n", s->profile);

    if (!s->profile)
        memcpy(s->put_pixels_tab, s->vp8dsp.put_vp8_epel_pixels_tab, sizeof(s->put_pixels_tab));
    else    // profile 1-3 use bilinear, 4+ aren't defined so whatever
        memcpy(s->put_pixels_tab, s->vp8dsp.put_vp8_bilinear_pixels_tab, sizeof(s->put_pixels_tab));
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    if (header_size > buf_size - 7*s->keyframe) {
        av_log(s->avctx, AV_LOG_ERROR, "Header size larger than data provided\n");
        return AVERROR_INVALIDDATA;
    }

    if (s->keyframe) {
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        if (AV_RL24(buf) != 0x2a019d) {
            av_log(s->avctx, AV_LOG_ERROR, "Invalid start code 0x%x\n", AV_RL24(buf));
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            return AVERROR_INVALIDDATA;
        }
        width  = AV_RL16(buf+3) & 0x3fff;
        height = AV_RL16(buf+5) & 0x3fff;
        hscale = buf[4] >> 6;
        vscale = buf[6] >> 6;
        buf      += 7;
        buf_size -= 7;

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        if (hscale || vscale)
            av_log_missing_feature(s->avctx, "Upscaling", 1);

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        s->update_golden = s->update_altref = VP56_FRAME_CURRENT;
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        for (i = 0; i < 4; i++)
            for (j = 0; j < 16; j++)
                memcpy(s->prob->token[i][j], vp8_token_default_probs[i][vp8_coeff_band[j]],
                       sizeof(s->prob->token[i][j]));
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        memcpy(s->prob->pred16x16, vp8_pred16x16_prob_inter, sizeof(s->prob->pred16x16));
        memcpy(s->prob->pred8x8c , vp8_pred8x8c_prob_inter , sizeof(s->prob->pred8x8c));
        memcpy(s->prob->mvc      , vp8_mv_default_prob     , sizeof(s->prob->mvc));
        memset(&s->segmentation, 0, sizeof(s->segmentation));
    }

    if (!s->macroblocks_base || /* first frame */
        width != s->avctx->width || height != s->avctx->height) {
        if ((ret = update_dimensions(s, width, height) < 0))
            return ret;
    }

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    ff_vp56_init_range_decoder(c, buf, header_size);
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    buf      += header_size;
    buf_size -= header_size;

    if (s->keyframe) {
        if (vp8_rac_get(c))
            av_log(s->avctx, AV_LOG_WARNING, "Unspecified colorspace\n");
        vp8_rac_get(c); // whether we can skip clamping in dsp functions
    }

    if ((s->segmentation.enabled = vp8_rac_get(c)))
        parse_segment_info(s);
    else
        s->segmentation.update_map = 0; // FIXME: move this to some init function?

    s->filter.simple    = vp8_rac_get(c);
    s->filter.level     = vp8_rac_get_uint(c, 6);
    s->filter.sharpness = vp8_rac_get_uint(c, 3);

    if ((s->lf_delta.enabled = vp8_rac_get(c)))
        if (vp8_rac_get(c))
            update_lf_deltas(s);

    if (setup_partitions(s, buf, buf_size)) {
        av_log(s->avctx, AV_LOG_ERROR, "Invalid partitions\n");
        return AVERROR_INVALIDDATA;
    }

    get_quants(s);

    if (!s->keyframe) {
        update_refs(s);
        s->sign_bias[VP56_FRAME_GOLDEN]               = vp8_rac_get(c);
        s->sign_bias[VP56_FRAME_GOLDEN2 /* altref */] = vp8_rac_get(c);
    }

    // if we aren't saving this frame's probabilities for future frames,
    // make a copy of the current probabilities
    if (!(s->update_probabilities = vp8_rac_get(c)))
        s->prob[1] = s->prob[0];

    s->update_last = s->keyframe || vp8_rac_get(c);

    for (i = 0; i < 4; i++)
        for (j = 0; j < 8; j++)
            for (k = 0; k < 3; k++)
                for (l = 0; l < NUM_DCT_TOKENS-1; l++)
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                    if (vp56_rac_get_prob_branchy(c, vp8_token_update_probs[i][j][k][l])) {
                        int prob = vp8_rac_get_uint(c, 8);
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                        for (m = 0; vp8_coeff_band_indexes[j][m] >= 0; m++)
                            s->prob->token[i][vp8_coeff_band_indexes[j][m]][k][l] = prob;
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                    }
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    if ((s->mbskip_enabled = vp8_rac_get(c)))
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        s->prob->mbskip = vp8_rac_get_uint(c, 8);
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    if (!s->keyframe) {
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        s->prob->intra  = vp8_rac_get_uint(c, 8);
        s->prob->last   = vp8_rac_get_uint(c, 8);
        s->prob->golden = vp8_rac_get_uint(c, 8);
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        if (vp8_rac_get(c))
            for (i = 0; i < 4; i++)
                s->prob->pred16x16[i] = vp8_rac_get_uint(c, 8);
        if (vp8_rac_get(c))
            for (i = 0; i < 3; i++)
                s->prob->pred8x8c[i]  = vp8_rac_get_uint(c, 8);

        // 17.2 MV probability update
        for (i = 0; i < 2; i++)
            for (j = 0; j < 19; j++)
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                if (vp56_rac_get_prob_branchy(c, vp8_mv_update_prob[i][j]))
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                    s->prob->mvc[i][j] = vp8_rac_get_nn(c);
    }

    return 0;
}

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static av_always_inline
void clamp_mv(VP8Context *s, VP56mv *dst, const VP56mv *src, int mb_x, int mb_y)
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{
#define MARGIN (16 << 2)
    dst->x = av_clip(src->x, -((mb_x << 6) + MARGIN),
                     ((s->mb_width  - 1 - mb_x) << 6) + MARGIN);
    dst->y = av_clip(src->y, -((mb_y << 6) + MARGIN),
                     ((s->mb_height - 1 - mb_y) << 6) + MARGIN);
}

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static av_always_inline
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void find_near_mvs(VP8Context *s, VP8Macroblock *mb,
533
                   VP56mv near[2], VP56mv *best, uint8_t cnt[4])
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{
535 536 537
    VP8Macroblock *mb_edge[3] = { mb + 2 /* top */,
                                  mb - 1 /* left */,
                                  mb + 1 /* top-left */ };
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    enum { EDGE_TOP, EDGE_LEFT, EDGE_TOPLEFT };
    VP56mv near_mv[4]  = {{ 0 }};
    enum { CNT_ZERO, CNT_NEAREST, CNT_NEAR, CNT_SPLITMV };
541
    int idx = CNT_ZERO;
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    int best_idx = CNT_ZERO;
543 544
    int cur_sign_bias = s->sign_bias[mb->ref_frame];
    int *sign_bias = s->sign_bias;
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    /* Process MB on top, left and top-left */
547 548 549 550 551 552 553 554 555
    #define MV_EDGE_CHECK(n)\
    {\
        VP8Macroblock *edge = mb_edge[n];\
        int edge_ref = edge->ref_frame;\
        if (edge_ref != VP56_FRAME_CURRENT) {\
            uint32_t mv = AV_RN32A(&edge->mv);\
            if (mv) {\
                if (cur_sign_bias != sign_bias[edge_ref]) {\
                    /* SWAR negate of the values in mv. */\
556 557
                    mv = ~mv;\
                    mv = ((mv&0x7fff7fff) + 0x00010001) ^ (mv&0x80008000);\
558 559 560 561 562 563 564
                }\
                if (!n || mv != AV_RN32A(&near_mv[idx]))\
                    AV_WN32A(&near_mv[++idx], mv);\
                cnt[idx]      += 1 + (n != 2);\
            } else\
                cnt[CNT_ZERO] += 1 + (n != 2);\
        }\
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    }
566 567 568
    MV_EDGE_CHECK(0)
    MV_EDGE_CHECK(1)
    MV_EDGE_CHECK(2)
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570 571
    /* If we have three distinct MVs, merge first and last if they're the same */
    if (cnt[CNT_SPLITMV] && AV_RN32A(&near_mv[1+EDGE_TOP]) == AV_RN32A(&near_mv[1+EDGE_TOPLEFT]))
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        cnt[CNT_NEAREST] += 1;

    cnt[CNT_SPLITMV] = ((mb_edge[EDGE_LEFT]->mode   == VP8_MVMODE_SPLIT) +
                        (mb_edge[EDGE_TOP]->mode    == VP8_MVMODE_SPLIT)) * 2 +
                       (mb_edge[EDGE_TOPLEFT]->mode == VP8_MVMODE_SPLIT);

    /* Swap near and nearest if necessary */
    if (cnt[CNT_NEAR] > cnt[CNT_NEAREST]) {
580 581
        FFSWAP(uint8_t,     cnt[CNT_NEAREST],     cnt[CNT_NEAR]);
        FFSWAP( VP56mv, near_mv[CNT_NEAREST], near_mv[CNT_NEAR]);
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    }

    /* Choose the best mv out of 0,0 and the nearest mv */
    if (cnt[CNT_NEAREST] >= cnt[CNT_ZERO])
        best_idx = CNT_NEAREST;

588
    mb->mv  = near_mv[best_idx];
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    near[0] = near_mv[CNT_NEAREST];
    near[1] = near_mv[CNT_NEAR];
}

/**
 * Motion vector coding, 17.1.
 */
static int read_mv_component(VP56RangeCoder *c, const uint8_t *p)
{
598
    int bit, x = 0;
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600
    if (vp56_rac_get_prob_branchy(c, p[0])) {
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        int i;

        for (i = 0; i < 3; i++)
            x += vp56_rac_get_prob(c, p[9 + i]) << i;
        for (i = 9; i > 3; i--)
            x += vp56_rac_get_prob(c, p[9 + i]) << i;
        if (!(x & 0xFFF0) || vp56_rac_get_prob(c, p[12]))
            x += 8;
609 610 611 612 613 614 615 616 617 618 619
    } else {
        // small_mvtree
        const uint8_t *ps = p+2;
        bit = vp56_rac_get_prob(c, *ps);
        ps += 1 + 3*bit;
        x  += 4*bit;
        bit = vp56_rac_get_prob(c, *ps);
        ps += 1 + bit;
        x  += 2*bit;
        x  += vp56_rac_get_prob(c, *ps);
    }
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    return (x && vp56_rac_get_prob(c, p[1])) ? -x : x;
}

624 625
static av_always_inline
const uint8_t *get_submv_prob(uint32_t left, uint32_t top)
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{
627 628 629
    if (left == top)
        return vp8_submv_prob[4-!!left];
    if (!top)
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        return vp8_submv_prob[2];
631
    return vp8_submv_prob[1-!!left];
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}

/**
 * Split motion vector prediction, 16.4.
636
 * @returns the number of motion vectors parsed (2, 4 or 16)
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 */
638 639
static av_always_inline
int decode_splitmvs(VP8Context *s, VP56RangeCoder *c, VP8Macroblock *mb)
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640
{
641 642
    int part_idx;
    int n, num;
643
    VP8Macroblock *top_mb  = &mb[2];
644 645 646
    VP8Macroblock *left_mb = &mb[-1];
    const uint8_t *mbsplits_left = vp8_mbsplits[left_mb->partitioning],
                  *mbsplits_top = vp8_mbsplits[top_mb->partitioning],
647
                  *mbsplits_cur, *firstidx;
648 649 650
    VP56mv *top_mv  = top_mb->bmv;
    VP56mv *left_mv = left_mb->bmv;
    VP56mv *cur_mv  = mb->bmv;
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652 653 654 655 656 657 658 659 660 661 662 663 664 665 666
    if (vp56_rac_get_prob_branchy(c, vp8_mbsplit_prob[0])) {
        if (vp56_rac_get_prob_branchy(c, vp8_mbsplit_prob[1])) {
            part_idx = VP8_SPLITMVMODE_16x8 + vp56_rac_get_prob(c, vp8_mbsplit_prob[2]);
        } else {
            part_idx = VP8_SPLITMVMODE_8x8;
        }
    } else {
        part_idx = VP8_SPLITMVMODE_4x4;
    }

    num = vp8_mbsplit_count[part_idx];
    mbsplits_cur = vp8_mbsplits[part_idx],
    firstidx = vp8_mbfirstidx[part_idx];
    mb->partitioning = part_idx;

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    for (n = 0; n < num; n++) {
668
        int k = firstidx[n];
669
        uint32_t left, above;
670 671
        const uint8_t *submv_prob;

672 673 674 675 676 677 678 679
        if (!(k & 3))
            left = AV_RN32A(&left_mv[mbsplits_left[k + 3]]);
        else
            left  = AV_RN32A(&cur_mv[mbsplits_cur[k - 1]]);
        if (k <= 3)
            above = AV_RN32A(&top_mv[mbsplits_top[k + 12]]);
        else
            above = AV_RN32A(&cur_mv[mbsplits_cur[k - 4]]);
680 681

        submv_prob = get_submv_prob(left, above);
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683 684 685 686 687 688 689 690 691 692 693 694
        if (vp56_rac_get_prob_branchy(c, submv_prob[0])) {
            if (vp56_rac_get_prob_branchy(c, submv_prob[1])) {
                if (vp56_rac_get_prob_branchy(c, submv_prob[2])) {
                    mb->bmv[n].y = mb->mv.y + read_mv_component(c, s->prob->mvc[0]);
                    mb->bmv[n].x = mb->mv.x + read_mv_component(c, s->prob->mvc[1]);
                } else {
                    AV_ZERO32(&mb->bmv[n]);
                }
            } else {
                AV_WN32A(&mb->bmv[n], above);
            }
        } else {
695
            AV_WN32A(&mb->bmv[n], left);
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        }
    }
698 699

    return num;
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}

702
static av_always_inline
703 704
void decode_intra4x4_modes(VP8Context *s, VP56RangeCoder *c,
                           int mb_x, int keyframe)
D
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705
{
706
    uint8_t *intra4x4 = s->intra4x4_pred_mode_mb;
707
    if (keyframe) {
708 709 710
        int x, y;
        uint8_t* const top = s->intra4x4_pred_mode_top + 4 * mb_x;
        uint8_t* const left = s->intra4x4_pred_mode_left;
711 712
        for (y = 0; y < 4; y++) {
            for (x = 0; x < 4; x++) {
713 714 715 716 717
                const uint8_t *ctx;
                ctx = vp8_pred4x4_prob_intra[top[x]][left[y]];
                *intra4x4 = vp8_rac_get_tree(c, vp8_pred4x4_tree, ctx);
                left[y] = top[x] = *intra4x4;
                intra4x4++;
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718 719
            }
        }
720
    } else {
721
        int i;
722 723
        for (i = 0; i < 16; i++)
            intra4x4[i] = vp8_rac_get_tree(c, vp8_pred4x4_tree, vp8_pred4x4_prob_inter);
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724 725 726
    }
}

727
static av_always_inline
728
void decode_mb_mode(VP8Context *s, VP8Macroblock *mb, int mb_x, int mb_y, uint8_t *segment)
D
David Conrad 已提交
729 730 731 732
{
    VP56RangeCoder *c = &s->c;

    if (s->segmentation.update_map)
733
        *segment = vp8_rac_get_tree(c, vp8_segmentid_tree, s->prob->segmentid);
734
    s->segment = *segment;
D
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735

736
    mb->skip = s->mbskip_enabled ? vp56_rac_get_prob(c, s->prob->mbskip) : 0;
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737 738 739 740 741

    if (s->keyframe) {
        mb->mode = vp8_rac_get_tree(c, vp8_pred16x16_tree_intra, vp8_pred16x16_prob_intra);

        if (mb->mode == MODE_I4x4) {
742 743 744 745 746 747
            decode_intra4x4_modes(s, c, mb_x, 1);
        } else {
            const uint32_t modes = vp8_pred4x4_mode[mb->mode] * 0x01010101u;
            AV_WN32A(s->intra4x4_pred_mode_top + 4 * mb_x, modes);
            AV_WN32A(s->intra4x4_pred_mode_left, modes);
        }
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        s->chroma_pred_mode = vp8_rac_get_tree(c, vp8_pred8x8c_tree, vp8_pred8x8c_prob_intra);
        mb->ref_frame = VP56_FRAME_CURRENT;
751
    } else if (vp56_rac_get_prob_branchy(c, s->prob->intra)) {
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        VP56mv near[2], best;
753
        uint8_t cnt[4] = { 0 };
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754 755

        // inter MB, 16.2
756 757
        if (vp56_rac_get_prob_branchy(c, s->prob->last))
            mb->ref_frame = vp56_rac_get_prob(c, s->prob->golden) ?
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                VP56_FRAME_GOLDEN2 /* altref */ : VP56_FRAME_GOLDEN;
        else
            mb->ref_frame = VP56_FRAME_PREVIOUS;
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761
        s->ref_count[mb->ref_frame-1]++;
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762 763

        // motion vectors, 16.3
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Pascal Massimino 已提交
764
        find_near_mvs(s, mb, near, &best, cnt);
765
        if (vp56_rac_get_prob_branchy(c, vp8_mode_contexts[cnt[0]][0])) {
766
            mb->mode = VP8_MVMODE_MV;
767 768 769 770 771 772 773 774
            if (vp56_rac_get_prob_branchy(c, vp8_mode_contexts[cnt[1]][1])) {
                if (vp56_rac_get_prob_branchy(c, vp8_mode_contexts[cnt[2]][2])) {
                    if (vp56_rac_get_prob_branchy(c, vp8_mode_contexts[cnt[3]][3])) {
                        mb->mode = VP8_MVMODE_SPLIT;
                        clamp_mv(s, &mb->mv, &mb->mv, mb_x, mb_y);
                        mb->mv = mb->bmv[decode_splitmvs(s, c, mb) - 1];
                    } else {
                        clamp_mv(s, &mb->mv, &mb->mv, mb_x, mb_y);
775 776
                        mb->mv.y += read_mv_component(c, s->prob->mvc[0]);
                        mb->mv.x += read_mv_component(c, s->prob->mvc[1]);
777
                    }
778
                } else
779
                    clamp_mv(s, &mb->mv, &near[1], mb_x, mb_y);
780
            } else
781 782 783
                clamp_mv(s, &mb->mv, &near[0], mb_x, mb_y);
        } else {
            mb->mode = VP8_MVMODE_ZERO;
784
            AV_ZERO32(&mb->mv);
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        }
        if (mb->mode != VP8_MVMODE_SPLIT) {
787 788
            mb->partitioning = VP8_SPLITMVMODE_NONE;
            mb->bmv[0] = mb->mv;
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        }
    } else {
        // intra MB, 16.1
        mb->mode = vp8_rac_get_tree(c, vp8_pred16x16_tree_inter, s->prob->pred16x16);

794
        if (mb->mode == MODE_I4x4)
795
            decode_intra4x4_modes(s, c, mb_x, 0);
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        s->chroma_pred_mode = vp8_rac_get_tree(c, vp8_pred8x8c_tree, s->prob->pred8x8c);
        mb->ref_frame = VP56_FRAME_CURRENT;
799
        mb->partitioning = VP8_SPLITMVMODE_NONE;
800
        AV_ZERO32(&mb->bmv[0]);
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    }
}

/**
805 806 807
 * @param c arithmetic bitstream reader context
 * @param block destination for block coefficients
 * @param probs probabilities to use when reading trees from the bitstream
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 * @param i initial coeff index, 0 unless a separate DC block is coded
 * @param zero_nhood the initial prediction context for number of surrounding
 *                   all-zero blocks (only left/top, so 0-2)
811
 * @param qmul array holding the dc/ac dequant factor at position 0/1
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 * @return 0 if no coeffs were decoded
 *         otherwise, the index of the last coeff decoded plus one
 */
815 816 817
static int decode_block_coeffs_internal(VP56RangeCoder *c, DCTELEM block[16],
                                        uint8_t probs[8][3][NUM_DCT_TOKENS-1],
                                        int i, uint8_t *token_prob, int16_t qmul[2])
D
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818
{
819
    goto skip_eob;
820
    do {
821
        int coeff;
822
        if (!vp56_rac_get_prob_branchy(c, token_prob[0]))   // DCT_EOB
823
            return i;
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David Conrad 已提交
824

825 826
skip_eob:
        if (!vp56_rac_get_prob_branchy(c, token_prob[1])) { // DCT_0
827
            if (++i == 16)
828
                return i; // invalid input; blocks should end with EOB
829
            token_prob = probs[i][0];
830
            goto skip_eob;
831 832 833 834
        }

        if (!vp56_rac_get_prob_branchy(c, token_prob[2])) { // DCT_1
            coeff = 1;
835
            token_prob = probs[i+1][1];
836 837
        } else {
            if (!vp56_rac_get_prob_branchy(c, token_prob[3])) { // DCT 2,3,4
838
                coeff = vp56_rac_get_prob_branchy(c, token_prob[4]);
839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859
                if (coeff)
                    coeff += vp56_rac_get_prob(c, token_prob[5]);
                coeff += 2;
            } else {
                // DCT_CAT*
                if (!vp56_rac_get_prob_branchy(c, token_prob[6])) {
                    if (!vp56_rac_get_prob_branchy(c, token_prob[7])) { // DCT_CAT1
                        coeff  = 5 + vp56_rac_get_prob(c, vp8_dct_cat1_prob[0]);
                    } else {                                    // DCT_CAT2
                        coeff  = 7;
                        coeff += vp56_rac_get_prob(c, vp8_dct_cat2_prob[0]) << 1;
                        coeff += vp56_rac_get_prob(c, vp8_dct_cat2_prob[1]);
                    }
                } else {    // DCT_CAT3 and up
                    int a = vp56_rac_get_prob(c, token_prob[8]);
                    int b = vp56_rac_get_prob(c, token_prob[9+a]);
                    int cat = (a<<1) + b;
                    coeff  = 3 + (8<<cat);
                    coeff += vp8_rac_get_coeff(c, vp8_dct_cat_prob[cat]);
                }
            }
860
            token_prob = probs[i+1][2];
861 862
        }
        block[zigzag_scan[i]] = (vp8_rac_get(c) ? -coeff : coeff) * qmul[!!i];
863
    } while (++i < 16);
864

865
    return i;
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866 867
}

868 869 870 871 872 873 874 875 876 877 878
static av_always_inline
int decode_block_coeffs(VP56RangeCoder *c, DCTELEM block[16],
                        uint8_t probs[8][3][NUM_DCT_TOKENS-1],
                        int i, int zero_nhood, int16_t qmul[2])
{
    uint8_t *token_prob = probs[i][zero_nhood];
    if (!vp56_rac_get_prob_branchy(c, token_prob[0]))   // DCT_EOB
        return 0;
    return decode_block_coeffs_internal(c, block, probs, i, token_prob, qmul);
}

879 880 881
static av_always_inline
void decode_mb_coeffs(VP8Context *s, VP56RangeCoder *c, VP8Macroblock *mb,
                      uint8_t t_nnz[9], uint8_t l_nnz[9])
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882 883 884
{
    int i, x, y, luma_start = 0, luma_ctx = 3;
    int nnz_pred, nnz, nnz_total = 0;
885
    int segment = s->segment;
886
    int block_dc = 0;
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887 888 889 890 891

    if (mb->mode != MODE_I4x4 && mb->mode != VP8_MVMODE_SPLIT) {
        nnz_pred = t_nnz[8] + l_nnz[8];

        // decode DC values and do hadamard
892
        nnz = decode_block_coeffs(c, s->block_dc, s->prob->token[1], 0, nnz_pred,
D
David Conrad 已提交
893 894
                                  s->qmat[segment].luma_dc_qmul);
        l_nnz[8] = t_nnz[8] = !!nnz;
895 896 897 898 899 900 901 902
        if (nnz) {
            nnz_total += nnz;
            block_dc = 1;
            if (nnz == 1)
                s->vp8dsp.vp8_luma_dc_wht_dc(s->block, s->block_dc);
            else
                s->vp8dsp.vp8_luma_dc_wht(s->block, s->block_dc);
        }
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        luma_start = 1;
        luma_ctx = 0;
    }

    // luma blocks
    for (y = 0; y < 4; y++)
        for (x = 0; x < 4; x++) {
J
Jason Garrett-Glaser 已提交
910
            nnz_pred = l_nnz[y] + t_nnz[x];
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911
            nnz = decode_block_coeffs(c, s->block[y][x], s->prob->token[luma_ctx], luma_start,
J
Jason Garrett-Glaser 已提交
912
                                      nnz_pred, s->qmat[segment].luma_qmul);
913 914
            // nnz+block_dc may be one more than the actual last index, but we don't care
            s->non_zero_count_cache[y][x] = nnz + block_dc;
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            t_nnz[x] = l_nnz[y] = !!nnz;
            nnz_total += nnz;
        }

    // chroma blocks
    // TODO: what to do about dimensions? 2nd dim for luma is x,
    // but for chroma it's (y<<1)|x
    for (i = 4; i < 6; i++)
        for (y = 0; y < 2; y++)
            for (x = 0; x < 2; x++) {
                nnz_pred = l_nnz[i+2*y] + t_nnz[i+2*x];
                nnz = decode_block_coeffs(c, s->block[i][(y<<1)+x], s->prob->token[2], 0,
                                          nnz_pred, s->qmat[segment].chroma_qmul);
                s->non_zero_count_cache[i][(y<<1)+x] = nnz;
                t_nnz[i+2*x] = l_nnz[i+2*y] = !!nnz;
                nnz_total += nnz;
            }

    // if there were no coded coeffs despite the macroblock not being marked skip,
    // we MUST not do the inner loop filter and should not do IDCT
    // Since skip isn't used for bitstream prediction, just manually set it.
    if (!nnz_total)
        mb->skip = 1;
}

940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960
static av_always_inline
void backup_mb_border(uint8_t *top_border, uint8_t *src_y, uint8_t *src_cb, uint8_t *src_cr,
                      int linesize, int uvlinesize, int simple)
{
    AV_COPY128(top_border, src_y + 15*linesize);
    if (!simple) {
        AV_COPY64(top_border+16, src_cb + 7*uvlinesize);
        AV_COPY64(top_border+24, src_cr + 7*uvlinesize);
    }
}

static av_always_inline
void xchg_mb_border(uint8_t *top_border, uint8_t *src_y, uint8_t *src_cb, uint8_t *src_cr,
                    int linesize, int uvlinesize, int mb_x, int mb_y, int mb_width,
                    int simple, int xchg)
{
    uint8_t *top_border_m1 = top_border-32;     // for TL prediction
    src_y  -=   linesize;
    src_cb -= uvlinesize;
    src_cr -= uvlinesize;

M
Måns Rullgård 已提交
961 962 963 964
#define XCHG(a,b,xchg) do {                     \
        if (xchg) AV_SWAP64(b,a);               \
        else      AV_COPY64(b,a);               \
    } while (0)
965 966 967 968

    XCHG(top_border_m1+8, src_y-8, xchg);
    XCHG(top_border,      src_y,   xchg);
    XCHG(top_border+8,    src_y+8, 1);
969
    if (mb_x < mb_width-1)
970
        XCHG(top_border+32, src_y+16, 1);
971

972 973 974 975 976 977 978 979 980 981
    // only copy chroma for normal loop filter
    // or to initialize the top row to 127
    if (!simple || !mb_y) {
        XCHG(top_border_m1+16, src_cb-8, xchg);
        XCHG(top_border_m1+24, src_cr-8, xchg);
        XCHG(top_border+16,    src_cb, 1);
        XCHG(top_border+24,    src_cr, 1);
    }
}

982
static av_always_inline
983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003
int check_dc_pred8x8_mode(int mode, int mb_x, int mb_y)
{
    if (!mb_x) {
        return mb_y ? TOP_DC_PRED8x8 : DC_128_PRED8x8;
    } else {
        return mb_y ? mode : LEFT_DC_PRED8x8;
    }
}

static av_always_inline
int check_tm_pred8x8_mode(int mode, int mb_x, int mb_y)
{
    if (!mb_x) {
        return mb_y ? VERT_PRED8x8 : DC_129_PRED8x8;
    } else {
        return mb_y ? mode : HOR_PRED8x8;
    }
}

static av_always_inline
int check_intra_pred8x8_mode(int mode, int mb_x, int mb_y)
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{
    if (mode == DC_PRED8x8) {
1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054
        return check_dc_pred8x8_mode(mode, mb_x, mb_y);
    } else {
        return mode;
    }
}

static av_always_inline
int check_intra_pred8x8_mode_emuedge(int mode, int mb_x, int mb_y)
{
    switch (mode) {
    case DC_PRED8x8:
        return check_dc_pred8x8_mode(mode, mb_x, mb_y);
    case VERT_PRED8x8:
        return !mb_y ? DC_127_PRED8x8 : mode;
    case HOR_PRED8x8:
        return !mb_x ? DC_129_PRED8x8 : mode;
    case PLANE_PRED8x8 /*TM*/:
        return check_tm_pred8x8_mode(mode, mb_x, mb_y);
    }
    return mode;
}

static av_always_inline
int check_tm_pred4x4_mode(int mode, int mb_x, int mb_y)
{
    if (!mb_x) {
        return mb_y ? VERT_VP8_PRED : DC_129_PRED;
    } else {
        return mb_y ? mode : HOR_VP8_PRED;
    }
}

static av_always_inline
int check_intra_pred4x4_mode_emuedge(int mode, int mb_x, int mb_y, int *copy_buf)
{
    switch (mode) {
    case VERT_PRED:
        if (!mb_x && mb_y) {
            *copy_buf = 1;
            return mode;
        }
        /* fall-through */
    case DIAG_DOWN_LEFT_PRED:
    case VERT_LEFT_PRED:
        return !mb_y ? DC_127_PRED : mode;
    case HOR_PRED:
        if (!mb_y) {
            *copy_buf = 1;
            return mode;
1055
        }
1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067
        /* fall-through */
    case HOR_UP_PRED:
        return !mb_x ? DC_129_PRED : mode;
    case TM_VP8_PRED:
        return check_tm_pred4x4_mode(mode, mb_x, mb_y);
    case DC_PRED: // 4x4 DC doesn't use the same "H.264-style" exceptions as 16x16/8x8 DC
    case DIAG_DOWN_RIGHT_PRED:
    case VERT_RIGHT_PRED:
    case HOR_DOWN_PRED:
        if (!mb_y || !mb_x)
            *copy_buf = 1;
        return mode;
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    }
    return mode;
}

1072 1073
static av_always_inline
void intra_predict(VP8Context *s, uint8_t *dst[3], VP8Macroblock *mb,
1074
                   int mb_x, int mb_y)
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1075
{
1076
    AVCodecContext *avctx = s->avctx;
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1077 1078
    int x, y, mode, nnz, tr;

1079 1080
    // for the first row, we need to run xchg_mb_border to init the top edge to 127
    // otherwise, skip it if we aren't going to deblock
1081
    if (!(avctx->flags & CODEC_FLAG_EMU_EDGE && !mb_y) && (s->deblock_filter || !mb_y))
1082 1083 1084 1085
        xchg_mb_border(s->top_border[mb_x+1], dst[0], dst[1], dst[2],
                       s->linesize, s->uvlinesize, mb_x, mb_y, s->mb_width,
                       s->filter.simple, 1);

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1086
    if (mb->mode < MODE_I4x4) {
1087 1088 1089 1090 1091
        if (avctx->flags & CODEC_FLAG_EMU_EDGE) { // tested
            mode = check_intra_pred8x8_mode_emuedge(mb->mode, mb_x, mb_y);
        } else {
            mode = check_intra_pred8x8_mode(mb->mode, mb_x, mb_y);
        }
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1092 1093 1094
        s->hpc.pred16x16[mode](dst[0], s->linesize);
    } else {
        uint8_t *ptr = dst[0];
1095
        uint8_t *intra4x4 = s->intra4x4_pred_mode_mb;
1096
        uint8_t tr_top[4] = { 127, 127, 127, 127 };
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        // all blocks on the right edge of the macroblock use bottom edge
        // the top macroblock for their topright edge
        uint8_t *tr_right = ptr - s->linesize + 16;

        // if we're on the right edge of the frame, said edge is extended
        // from the top macroblock
1104 1105
        if (!(!mb_y && avctx->flags & CODEC_FLAG_EMU_EDGE) &&
            mb_x == s->mb_width-1) {
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            tr = tr_right[-1]*0x01010101;
            tr_right = (uint8_t *)&tr;
        }

1110 1111 1112
        if (mb->skip)
            AV_ZERO128(s->non_zero_count_cache);

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1113 1114 1115
        for (y = 0; y < 4; y++) {
            uint8_t *topright = ptr + 4 - s->linesize;
            for (x = 0; x < 4; x++) {
1116 1117 1118 1119 1120 1121 1122
                int copy = 0, linesize = s->linesize;
                uint8_t *dst = ptr+4*x;
                DECLARE_ALIGNED(4, uint8_t, copy_dst)[5*8];

                if ((y == 0 || x == 3) && mb_y == 0 && avctx->flags & CODEC_FLAG_EMU_EDGE) {
                    topright = tr_top;
                } else if (x == 3)
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                    topright = tr_right;

1125 1126 1127 1128 1129 1130 1131
                if (avctx->flags & CODEC_FLAG_EMU_EDGE) { // mb_x+x or mb_y+y is a hack but works
                    mode = check_intra_pred4x4_mode_emuedge(intra4x4[x], mb_x + x, mb_y + y, &copy);
                    if (copy) {
                        dst = copy_dst + 12;
                        linesize = 8;
                        if (!(mb_y + y)) {
                            copy_dst[3] = 127U;
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Ronald S. Bultje 已提交
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                            AV_WN32A(copy_dst+4, 127U * 0x01010101U);
1133
                        } else {
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Ronald S. Bultje 已提交
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                            AV_COPY32(copy_dst+4, ptr+4*x-s->linesize);
1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157
                            if (!(mb_x + x)) {
                                copy_dst[3] = 129U;
                            } else {
                                copy_dst[3] = ptr[4*x-s->linesize-1];
                            }
                        }
                        if (!(mb_x + x)) {
                            copy_dst[11] =
                            copy_dst[19] =
                            copy_dst[27] =
                            copy_dst[35] = 129U;
                        } else {
                            copy_dst[11] = ptr[4*x              -1];
                            copy_dst[19] = ptr[4*x+s->linesize  -1];
                            copy_dst[27] = ptr[4*x+s->linesize*2-1];
                            copy_dst[35] = ptr[4*x+s->linesize*3-1];
                        }
                    }
                } else {
                    mode = intra4x4[x];
                }
                s->hpc.pred4x4[mode](dst, topright, linesize);
                if (copy) {
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                    AV_COPY32(ptr+4*x              , copy_dst+12);
                    AV_COPY32(ptr+4*x+s->linesize  , copy_dst+20);
                    AV_COPY32(ptr+4*x+s->linesize*2, copy_dst+28);
                    AV_COPY32(ptr+4*x+s->linesize*3, copy_dst+36);
1162
                }
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                nnz = s->non_zero_count_cache[y][x];
                if (nnz) {
                    if (nnz == 1)
                        s->vp8dsp.vp8_idct_dc_add(ptr+4*x, s->block[y][x], s->linesize);
                    else
                        s->vp8dsp.vp8_idct_add(ptr+4*x, s->block[y][x], s->linesize);
                }
                topright += 4;
            }

            ptr   += 4*s->linesize;
1175
            intra4x4 += 4;
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        }
    }

1179 1180 1181 1182 1183
    if (avctx->flags & CODEC_FLAG_EMU_EDGE) {
        mode = check_intra_pred8x8_mode_emuedge(s->chroma_pred_mode, mb_x, mb_y);
    } else {
        mode = check_intra_pred8x8_mode(s->chroma_pred_mode, mb_x, mb_y);
    }
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    s->hpc.pred8x8[mode](dst[1], s->uvlinesize);
    s->hpc.pred8x8[mode](dst[2], s->uvlinesize);
1186

1187
    if (!(avctx->flags & CODEC_FLAG_EMU_EDGE && !mb_y) && (s->deblock_filter || !mb_y))
1188 1189 1190
        xchg_mb_border(s->top_border[mb_x+1], dst[0], dst[1], dst[2],
                       s->linesize, s->uvlinesize, mb_x, mb_y, s->mb_width,
                       s->filter.simple, 0);
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}

1193 1194 1195 1196 1197 1198 1199
static const uint8_t subpel_idx[3][8] = {
    { 0, 1, 2, 1, 2, 1, 2, 1 }, // nr. of left extra pixels,
                                // also function pointer index
    { 0, 3, 5, 3, 5, 3, 5, 3 }, // nr. of extra pixels required
    { 0, 2, 3, 2, 3, 2, 3, 2 }, // nr. of right extra pixels
};

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/**
 * Generic MC function.
 *
 * @param s VP8 decoding context
 * @param luma 1 for luma (Y) planes, 0 for chroma (Cb/Cr) planes
 * @param dst target buffer for block data at block position
 * @param src reference picture buffer at origin (0, 0)
 * @param mv motion vector (relative to block position) to get pixel data from
 * @param x_off horizontal position of block from origin (0, 0)
 * @param y_off vertical position of block from origin (0, 0)
 * @param block_w width of block (16, 8 or 4)
 * @param block_h height of block (always same as block_w)
 * @param width width of src/dst plane data
 * @param height height of src/dst plane data
 * @param linesize size of a single line of plane data, including padding
1215
 * @param mc_func motion compensation function pointers (bilinear or sixtap MC)
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 */
1217
static av_always_inline
1218 1219 1220 1221
void vp8_mc_luma(VP8Context *s, uint8_t *dst, uint8_t *src, const VP56mv *mv,
                 int x_off, int y_off, int block_w, int block_h,
                 int width, int height, int linesize,
                 vp8_mc_func mc_func[3][3])
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{
1223
    if (AV_RN32A(mv)) {
1224 1225 1226 1227 1228 1229

        int mx = (mv->x << 1)&7, mx_idx = subpel_idx[0][mx];
        int my = (mv->y << 1)&7, my_idx = subpel_idx[0][my];

        x_off += mv->x >> 2;
        y_off += mv->y >> 2;
1230 1231 1232

        // edge emulation
        src += y_off * linesize + x_off;
1233 1234
        if (x_off < mx_idx || x_off >= width  - block_w - subpel_idx[2][mx] ||
            y_off < my_idx || y_off >= height - block_h - subpel_idx[2][my]) {
1235
            s->dsp.emulated_edge_mc(s->edge_emu_buffer, src - my_idx * linesize - mx_idx, linesize,
1236 1237
                                    block_w + subpel_idx[1][mx], block_h + subpel_idx[1][my],
                                    x_off - mx_idx, y_off - my_idx, width, height);
1238
            src = s->edge_emu_buffer + mx_idx + linesize * my_idx;
1239 1240 1241 1242
        }
        mc_func[my_idx][mx_idx](dst, linesize, src, linesize, block_h, mx, my);
    } else
        mc_func[0][0](dst, linesize, src + y_off * linesize + x_off, linesize, block_h, 0, 0);
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}

1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283
static av_always_inline
void vp8_mc_chroma(VP8Context *s, uint8_t *dst1, uint8_t *dst2, uint8_t *src1,
                   uint8_t *src2, const VP56mv *mv, int x_off, int y_off,
                   int block_w, int block_h, int width, int height, int linesize,
                   vp8_mc_func mc_func[3][3])
{
    if (AV_RN32A(mv)) {
        int mx = mv->x&7, mx_idx = subpel_idx[0][mx];
        int my = mv->y&7, my_idx = subpel_idx[0][my];

        x_off += mv->x >> 3;
        y_off += mv->y >> 3;

        // edge emulation
        src1 += y_off * linesize + x_off;
        src2 += y_off * linesize + x_off;
        if (x_off < mx_idx || x_off >= width  - block_w - subpel_idx[2][mx] ||
            y_off < my_idx || y_off >= height - block_h - subpel_idx[2][my]) {
            s->dsp.emulated_edge_mc(s->edge_emu_buffer, src1 - my_idx * linesize - mx_idx, linesize,
                                    block_w + subpel_idx[1][mx], block_h + subpel_idx[1][my],
                                    x_off - mx_idx, y_off - my_idx, width, height);
            src1 = s->edge_emu_buffer + mx_idx + linesize * my_idx;
            mc_func[my_idx][mx_idx](dst1, linesize, src1, linesize, block_h, mx, my);

            s->dsp.emulated_edge_mc(s->edge_emu_buffer, src2 - my_idx * linesize - mx_idx, linesize,
                                    block_w + subpel_idx[1][mx], block_h + subpel_idx[1][my],
                                    x_off - mx_idx, y_off - my_idx, width, height);
            src2 = s->edge_emu_buffer + mx_idx + linesize * my_idx;
            mc_func[my_idx][mx_idx](dst2, linesize, src2, linesize, block_h, mx, my);
        } else {
            mc_func[my_idx][mx_idx](dst1, linesize, src1, linesize, block_h, mx, my);
            mc_func[my_idx][mx_idx](dst2, linesize, src2, linesize, block_h, mx, my);
        }
    } else {
        mc_func[0][0](dst1, linesize, src1 + y_off * linesize + x_off, linesize, block_h, 0, 0);
        mc_func[0][0](dst2, linesize, src2 + y_off * linesize + x_off, linesize, block_h, 0, 0);
    }
}

1284 1285 1286 1287 1288 1289
static av_always_inline
void vp8_mc_part(VP8Context *s, uint8_t *dst[3],
                 AVFrame *ref_frame, int x_off, int y_off,
                 int bx_off, int by_off,
                 int block_w, int block_h,
                 int width, int height, VP56mv *mv)
1290 1291 1292 1293
{
    VP56mv uvmv = *mv;

    /* Y */
1294 1295 1296 1297
    vp8_mc_luma(s, dst[0] + by_off * s->linesize + bx_off,
                ref_frame->data[0], mv, x_off + bx_off, y_off + by_off,
                block_w, block_h, width, height, s->linesize,
                s->put_pixels_tab[block_w == 8]);
1298 1299 1300 1301 1302 1303 1304 1305 1306 1307

    /* U/V */
    if (s->profile == 3) {
        uvmv.x &= ~7;
        uvmv.y &= ~7;
    }
    x_off   >>= 1; y_off   >>= 1;
    bx_off  >>= 1; by_off  >>= 1;
    width   >>= 1; height  >>= 1;
    block_w >>= 1; block_h >>= 1;
1308 1309 1310 1311 1312
    vp8_mc_chroma(s, dst[1] + by_off * s->uvlinesize + bx_off,
                  dst[2] + by_off * s->uvlinesize + bx_off, ref_frame->data[1],
                  ref_frame->data[2], &uvmv, x_off + bx_off, y_off + by_off,
                  block_w, block_h, width, height, s->uvlinesize,
                  s->put_pixels_tab[1 + (block_w == 4)]);
1313 1314
}

1315 1316
/* Fetch pixels for estimated mv 4 macroblocks ahead.
 * Optimized for 64-byte cache lines.  Inspired by ffh264 prefetch_motion. */
1317
static av_always_inline void prefetch_motion(VP8Context *s, VP8Macroblock *mb, int mb_x, int mb_y, int mb_xy, int ref)
1318
{
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Jason Garrett-Glaser 已提交
1319 1320
    /* Don't prefetch refs that haven't been used very often this frame. */
    if (s->ref_count[ref-1] > (mb_xy >> 5)) {
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1321
        int x_off = mb_x << 4, y_off = mb_y << 4;
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1322 1323
        int mx = (mb->mv.x>>2) + x_off + 8;
        int my = (mb->mv.y>>2) + y_off;
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1324 1325 1326 1327 1328 1329
        uint8_t **src= s->framep[ref]->data;
        int off= mx + (my + (mb_x&3)*4)*s->linesize + 64;
        s->dsp.prefetch(src[0]+off, s->linesize, 4);
        off= (mx>>1) + ((my>>1) + (mb_x&7))*s->uvlinesize + 64;
        s->dsp.prefetch(src[1]+off, src[2]-src[1], 2);
    }
1330 1331
}

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/**
 * Apply motion vectors to prediction buffer, chapter 18.
 */
1335 1336 1337
static av_always_inline
void inter_predict(VP8Context *s, uint8_t *dst[3], VP8Macroblock *mb,
                   int mb_x, int mb_y)
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1338 1339 1340
{
    int x_off = mb_x << 4, y_off = mb_y << 4;
    int width = 16*s->mb_width, height = 16*s->mb_height;
1341 1342
    AVFrame *ref = s->framep[mb->ref_frame];
    VP56mv *bmv = mb->bmv;
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1343

1344 1345
    switch (mb->partitioning) {
    case VP8_SPLITMVMODE_NONE:
1346
        vp8_mc_part(s, dst, ref, x_off, y_off,
1347
                    0, 0, 16, 16, width, height, &mb->mv);
1348
        break;
1349
    case VP8_SPLITMVMODE_4x4: {
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1350
        int x, y;
1351
        VP56mv uvmv;
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1352 1353 1354 1355

        /* Y */
        for (y = 0; y < 4; y++) {
            for (x = 0; x < 4; x++) {
1356 1357 1358 1359 1360
                vp8_mc_luma(s, dst[0] + 4*y*s->linesize + x*4,
                            ref->data[0], &bmv[4*y + x],
                            4*x + x_off, 4*y + y_off, 4, 4,
                            width, height, s->linesize,
                            s->put_pixels_tab[2]);
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1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375
            }
        }

        /* U/V */
        x_off >>= 1; y_off >>= 1; width >>= 1; height >>= 1;
        for (y = 0; y < 2; y++) {
            for (x = 0; x < 2; x++) {
                uvmv.x = mb->bmv[ 2*y    * 4 + 2*x  ].x +
                         mb->bmv[ 2*y    * 4 + 2*x+1].x +
                         mb->bmv[(2*y+1) * 4 + 2*x  ].x +
                         mb->bmv[(2*y+1) * 4 + 2*x+1].x;
                uvmv.y = mb->bmv[ 2*y    * 4 + 2*x  ].y +
                         mb->bmv[ 2*y    * 4 + 2*x+1].y +
                         mb->bmv[(2*y+1) * 4 + 2*x  ].y +
                         mb->bmv[(2*y+1) * 4 + 2*x+1].y;
1376 1377
                uvmv.x = (uvmv.x + 2 + (uvmv.x >> (INT_BIT-1))) >> 2;
                uvmv.y = (uvmv.y + 2 + (uvmv.y >> (INT_BIT-1))) >> 2;
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1378 1379 1380 1381
                if (s->profile == 3) {
                    uvmv.x &= ~7;
                    uvmv.y &= ~7;
                }
1382 1383 1384 1385 1386 1387
                vp8_mc_chroma(s, dst[1] + 4*y*s->uvlinesize + x*4,
                              dst[2] + 4*y*s->uvlinesize + x*4,
                              ref->data[1], ref->data[2], &uvmv,
                              4*x + x_off, 4*y + y_off, 4, 4,
                              width, height, s->uvlinesize,
                              s->put_pixels_tab[2]);
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1388 1389
            }
        }
1390 1391 1392
        break;
    }
    case VP8_SPLITMVMODE_16x8:
1393 1394 1395 1396
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    0, 0, 16, 8, width, height, &bmv[0]);
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    0, 8, 16, 8, width, height, &bmv[1]);
1397 1398
        break;
    case VP8_SPLITMVMODE_8x16:
1399 1400 1401 1402
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    0, 0, 8, 16, width, height, &bmv[0]);
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    8, 0, 8, 16, width, height, &bmv[1]);
1403 1404
        break;
    case VP8_SPLITMVMODE_8x8:
1405 1406 1407 1408 1409 1410 1411 1412
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    0, 0, 8, 8, width, height, &bmv[0]);
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    8, 0, 8, 8, width, height, &bmv[1]);
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    0, 8, 8, 8, width, height, &bmv[2]);
        vp8_mc_part(s, dst, ref, x_off, y_off,
                    8, 8, 8, 8, width, height, &bmv[3]);
1413
        break;
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David Conrad 已提交
1414 1415 1416
    }
}

1417
static av_always_inline void idct_mb(VP8Context *s, uint8_t *dst[3], VP8Macroblock *mb)
D
David Conrad 已提交
1418
{
1419
    int x, y, ch;
D
David Conrad 已提交
1420

J
Jason Garrett-Glaser 已提交
1421 1422
    if (mb->mode != MODE_I4x4) {
        uint8_t *y_dst = dst[0];
D
David Conrad 已提交
1423
        for (y = 0; y < 4; y++) {
1424
            uint32_t nnz4 = AV_RL32(s->non_zero_count_cache[y]);
1425 1426
            if (nnz4) {
                if (nnz4&~0x01010101) {
J
Jason Garrett-Glaser 已提交
1427
                    for (x = 0; x < 4; x++) {
1428 1429 1430 1431 1432 1433 1434
                        if ((uint8_t)nnz4 == 1)
                            s->vp8dsp.vp8_idct_dc_add(y_dst+4*x, s->block[y][x], s->linesize);
                        else if((uint8_t)nnz4 > 1)
                            s->vp8dsp.vp8_idct_add(y_dst+4*x, s->block[y][x], s->linesize);
                        nnz4 >>= 8;
                        if (!nnz4)
                            break;
J
Jason Garrett-Glaser 已提交
1435 1436
                    }
                } else {
1437
                    s->vp8dsp.vp8_idct_dc_add4y(y_dst, s->block[y], s->linesize);
D
David Conrad 已提交
1438 1439 1440 1441
                }
            }
            y_dst += 4*s->linesize;
        }
J
Jason Garrett-Glaser 已提交
1442
    }
D
David Conrad 已提交
1443

J
Jason Garrett-Glaser 已提交
1444
    for (ch = 0; ch < 2; ch++) {
1445
        uint32_t nnz4 = AV_RL32(s->non_zero_count_cache[4+ch]);
1446
        if (nnz4) {
J
Jason Garrett-Glaser 已提交
1447
            uint8_t *ch_dst = dst[1+ch];
1448 1449 1450
            if (nnz4&~0x01010101) {
                for (y = 0; y < 2; y++) {
                    for (x = 0; x < 2; x++) {
1451 1452 1453 1454 1455 1456 1457
                        if ((uint8_t)nnz4 == 1)
                            s->vp8dsp.vp8_idct_dc_add(ch_dst+4*x, s->block[4+ch][(y<<1)+x], s->uvlinesize);
                        else if((uint8_t)nnz4 > 1)
                            s->vp8dsp.vp8_idct_add(ch_dst+4*x, s->block[4+ch][(y<<1)+x], s->uvlinesize);
                        nnz4 >>= 8;
                        if (!nnz4)
                            break;
J
Jason Garrett-Glaser 已提交
1458
                    }
1459
                    ch_dst += 4*s->uvlinesize;
J
Jason Garrett-Glaser 已提交
1460
                }
1461 1462
            } else {
                s->vp8dsp.vp8_idct_dc_add4uv(ch_dst, s->block[4+ch], s->uvlinesize);
D
David Conrad 已提交
1463 1464 1465 1466 1467
            }
        }
    }
}

1468
static av_always_inline void filter_level_for_mb(VP8Context *s, VP8Macroblock *mb, VP8FilterStrength *f )
D
David Conrad 已提交
1469 1470 1471 1472
{
    int interior_limit, filter_level;

    if (s->segmentation.enabled) {
1473
        filter_level = s->segmentation.filter_level[s->segment];
D
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1474 1475 1476 1477 1478 1479 1480
        if (!s->segmentation.absolute_vals)
            filter_level += s->filter.level;
    } else
        filter_level = s->filter.level;

    if (s->lf_delta.enabled) {
        filter_level += s->lf_delta.ref[mb->ref_frame];
1481
        filter_level += s->lf_delta.mode[mb->mode];
D
David Conrad 已提交
1482
    }
1483 1484 1485 1486

/* Like av_clip for inputs 0 and max, where max is equal to (2^n-1) */
#define POW2CLIP(x,max) (((x) & ~max) ? (-(x))>>31 & max : (x));
    filter_level = POW2CLIP(filter_level, 63);
D
David Conrad 已提交
1487 1488 1489

    interior_limit = filter_level;
    if (s->filter.sharpness) {
1490
        interior_limit >>= (s->filter.sharpness + 3) >> 2;
D
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1491 1492 1493 1494
        interior_limit = FFMIN(interior_limit, 9 - s->filter.sharpness);
    }
    interior_limit = FFMAX(interior_limit, 1);

1495 1496
    f->filter_level = filter_level;
    f->inner_limit = interior_limit;
1497
    f->inner_filter = !mb->skip || mb->mode == MODE_I4x4 || mb->mode == VP8_MVMODE_SPLIT;
D
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1498 1499
}

1500
static av_always_inline void filter_mb(VP8Context *s, uint8_t *dst[3], VP8FilterStrength *f, int mb_x, int mb_y)
D
David Conrad 已提交
1501
{
1502 1503 1504
    int mbedge_lim, bedge_lim, hev_thresh;
    int filter_level = f->filter_level;
    int inner_limit = f->inner_limit;
1505
    int inner_filter = f->inner_filter;
1506 1507
    int linesize = s->linesize;
    int uvlinesize = s->uvlinesize;
1508 1509 1510 1511 1512 1513 1514 1515 1516 1517
    static const uint8_t hev_thresh_lut[2][64] = {
        { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1,
          2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
          3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
          3, 3, 3, 3 },
        { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1,
          1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
          2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
          2, 2, 2, 2 }
    };
D
David Conrad 已提交
1518 1519 1520 1521

    if (!filter_level)
        return;

1522 1523
     bedge_lim = 2*filter_level + inner_limit;
    mbedge_lim = bedge_lim + 4;
1524

1525
    hev_thresh = hev_thresh_lut[s->keyframe][filter_level];
1526

D
David Conrad 已提交
1527
    if (mb_x) {
1528
        s->vp8dsp.vp8_h_loop_filter16y(dst[0],     linesize,
1529
                                       mbedge_lim, inner_limit, hev_thresh);
1530
        s->vp8dsp.vp8_h_loop_filter8uv(dst[1],     dst[2],      uvlinesize,
1531
                                       mbedge_lim, inner_limit, hev_thresh);
D
David Conrad 已提交
1532 1533
    }

1534
    if (inner_filter) {
1535 1536 1537 1538 1539 1540 1541 1542 1543
        s->vp8dsp.vp8_h_loop_filter16y_inner(dst[0]+ 4, linesize, bedge_lim,
                                             inner_limit, hev_thresh);
        s->vp8dsp.vp8_h_loop_filter16y_inner(dst[0]+ 8, linesize, bedge_lim,
                                             inner_limit, hev_thresh);
        s->vp8dsp.vp8_h_loop_filter16y_inner(dst[0]+12, linesize, bedge_lim,
                                             inner_limit, hev_thresh);
        s->vp8dsp.vp8_h_loop_filter8uv_inner(dst[1] + 4, dst[2] + 4,
                                             uvlinesize,  bedge_lim,
                                             inner_limit, hev_thresh);
D
David Conrad 已提交
1544 1545 1546
    }

    if (mb_y) {
1547
        s->vp8dsp.vp8_v_loop_filter16y(dst[0],     linesize,
1548
                                       mbedge_lim, inner_limit, hev_thresh);
1549
        s->vp8dsp.vp8_v_loop_filter8uv(dst[1],     dst[2],      uvlinesize,
1550
                                       mbedge_lim, inner_limit, hev_thresh);
D
David Conrad 已提交
1551 1552
    }

1553
    if (inner_filter) {
1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565
        s->vp8dsp.vp8_v_loop_filter16y_inner(dst[0]+ 4*linesize,
                                             linesize,    bedge_lim,
                                             inner_limit, hev_thresh);
        s->vp8dsp.vp8_v_loop_filter16y_inner(dst[0]+ 8*linesize,
                                             linesize,    bedge_lim,
                                             inner_limit, hev_thresh);
        s->vp8dsp.vp8_v_loop_filter16y_inner(dst[0]+12*linesize,
                                             linesize,    bedge_lim,
                                             inner_limit, hev_thresh);
        s->vp8dsp.vp8_v_loop_filter8uv_inner(dst[1] + 4 * uvlinesize,
                                             dst[2] + 4 * uvlinesize,
                                             uvlinesize,  bedge_lim,
1566
                                             inner_limit, hev_thresh);
D
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1567 1568 1569
    }
}

1570
static av_always_inline void filter_mb_simple(VP8Context *s, uint8_t *dst, VP8FilterStrength *f, int mb_x, int mb_y)
D
David Conrad 已提交
1571
{
1572 1573 1574
    int mbedge_lim, bedge_lim;
    int filter_level = f->filter_level;
    int inner_limit = f->inner_limit;
1575
    int inner_filter = f->inner_filter;
1576
    int linesize = s->linesize;
D
David Conrad 已提交
1577 1578 1579 1580

    if (!filter_level)
        return;

1581 1582
     bedge_lim = 2*filter_level + inner_limit;
    mbedge_lim = bedge_lim + 4;
D
David Conrad 已提交
1583 1584

    if (mb_x)
1585
        s->vp8dsp.vp8_h_loop_filter_simple(dst, linesize, mbedge_lim);
1586
    if (inner_filter) {
1587 1588 1589
        s->vp8dsp.vp8_h_loop_filter_simple(dst+ 4, linesize, bedge_lim);
        s->vp8dsp.vp8_h_loop_filter_simple(dst+ 8, linesize, bedge_lim);
        s->vp8dsp.vp8_h_loop_filter_simple(dst+12, linesize, bedge_lim);
D
David Conrad 已提交
1590 1591 1592
    }

    if (mb_y)
1593
        s->vp8dsp.vp8_v_loop_filter_simple(dst, linesize, mbedge_lim);
1594
    if (inner_filter) {
1595 1596 1597
        s->vp8dsp.vp8_v_loop_filter_simple(dst+ 4*linesize, linesize, bedge_lim);
        s->vp8dsp.vp8_v_loop_filter_simple(dst+ 8*linesize, linesize, bedge_lim);
        s->vp8dsp.vp8_v_loop_filter_simple(dst+12*linesize, linesize, bedge_lim);
D
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1598 1599 1600 1601 1602
    }
}

static void filter_mb_row(VP8Context *s, int mb_y)
{
1603
    VP8FilterStrength *f = s->filter_strength;
D
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1604 1605 1606 1607 1608 1609 1610 1611
    uint8_t *dst[3] = {
        s->framep[VP56_FRAME_CURRENT]->data[0] + 16*mb_y*s->linesize,
        s->framep[VP56_FRAME_CURRENT]->data[1] +  8*mb_y*s->uvlinesize,
        s->framep[VP56_FRAME_CURRENT]->data[2] +  8*mb_y*s->uvlinesize
    };
    int mb_x;

    for (mb_x = 0; mb_x < s->mb_width; mb_x++) {
1612
        backup_mb_border(s->top_border[mb_x+1], dst[0], dst[1], dst[2], s->linesize, s->uvlinesize, 0);
1613
        filter_mb(s, dst, f++, mb_x, mb_y);
D
David Conrad 已提交
1614 1615 1616 1617 1618 1619 1620 1621
        dst[0] += 16;
        dst[1] += 8;
        dst[2] += 8;
    }
}

static void filter_mb_row_simple(VP8Context *s, int mb_y)
{
1622 1623
    VP8FilterStrength *f = s->filter_strength;
    uint8_t *dst = s->framep[VP56_FRAME_CURRENT]->data[0] + 16*mb_y*s->linesize;
D
David Conrad 已提交
1624 1625 1626
    int mb_x;

    for (mb_x = 0; mb_x < s->mb_width; mb_x++) {
1627
        backup_mb_border(s->top_border[mb_x+1], dst, NULL, NULL, s->linesize, 0, 1);
1628
        filter_mb_simple(s, dst, f++, mb_x, mb_y);
D
David Conrad 已提交
1629 1630 1631 1632 1633 1634 1635 1636 1637 1638
        dst += 16;
    }
}

static int vp8_decode_frame(AVCodecContext *avctx, void *data, int *data_size,
                            AVPacket *avpkt)
{
    VP8Context *s = avctx->priv_data;
    int ret, mb_x, mb_y, i, y, referenced;
    enum AVDiscard skip_thresh;
1639
    AVFrame *av_uninit(curframe);
D
David Conrad 已提交
1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653

    if ((ret = decode_frame_header(s, avpkt->data, avpkt->size)) < 0)
        return ret;

    referenced = s->update_last || s->update_golden == VP56_FRAME_CURRENT
                                || s->update_altref == VP56_FRAME_CURRENT;

    skip_thresh = !referenced ? AVDISCARD_NONREF :
                    !s->keyframe ? AVDISCARD_NONKEY : AVDISCARD_ALL;

    if (avctx->skip_frame >= skip_thresh) {
        s->invisible = 1;
        goto skip_decode;
    }
1654
    s->deblock_filter = s->filter.level && avctx->skip_loop_filter < skip_thresh;
D
David Conrad 已提交
1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691

    for (i = 0; i < 4; i++)
        if (&s->frames[i] != s->framep[VP56_FRAME_PREVIOUS] &&
            &s->frames[i] != s->framep[VP56_FRAME_GOLDEN] &&
            &s->frames[i] != s->framep[VP56_FRAME_GOLDEN2]) {
            curframe = s->framep[VP56_FRAME_CURRENT] = &s->frames[i];
            break;
        }
    if (curframe->data[0])
        avctx->release_buffer(avctx, curframe);

    curframe->key_frame = s->keyframe;
    curframe->pict_type = s->keyframe ? FF_I_TYPE : FF_P_TYPE;
    curframe->reference = referenced ? 3 : 0;
    if ((ret = avctx->get_buffer(avctx, curframe))) {
        av_log(avctx, AV_LOG_ERROR, "get_buffer() failed!\n");
        return ret;
    }

    // Given that arithmetic probabilities are updated every frame, it's quite likely
    // that the values we have on a random interframe are complete junk if we didn't
    // start decode on a keyframe. So just don't display anything rather than junk.
    if (!s->keyframe && (!s->framep[VP56_FRAME_PREVIOUS] ||
                         !s->framep[VP56_FRAME_GOLDEN] ||
                         !s->framep[VP56_FRAME_GOLDEN2])) {
        av_log(avctx, AV_LOG_WARNING, "Discarding interframe without a prior keyframe!\n");
        return AVERROR_INVALIDDATA;
    }

    s->linesize   = curframe->linesize[0];
    s->uvlinesize = curframe->linesize[1];

    if (!s->edge_emu_buffer)
        s->edge_emu_buffer = av_malloc(21*s->linesize);

    memset(s->top_nnz, 0, s->mb_width*sizeof(*s->top_nnz));

P
Pascal Massimino 已提交
1692 1693
    /* Zero macroblock structures for top/top-left prediction from outside the frame. */
    memset(s->macroblocks + s->mb_height*2 - 1, 0, (s->mb_width+1)*sizeof(*s->macroblocks));
1694

D
David Conrad 已提交
1695
    // top edge of 127 for intra prediction
1696 1697 1698 1699
    if (!(avctx->flags & CODEC_FLAG_EMU_EDGE)) {
        s->top_border[0][15] = s->top_border[0][23] = 127;
        memset(s->top_border[1]-1, 127, s->mb_width*sizeof(*s->top_border)+1);
    }
J
Jason Garrett-Glaser 已提交
1700
    memset(s->ref_count, 0, sizeof(s->ref_count));
1701
    if (s->keyframe)
1702
        memset(s->intra4x4_pred_mode_top, DC_PRED, s->mb_width*4);
D
David Conrad 已提交
1703 1704 1705

    for (mb_y = 0; mb_y < s->mb_height; mb_y++) {
        VP56RangeCoder *c = &s->coeff_partition[mb_y & (s->num_coeff_partitions-1)];
1706
        VP8Macroblock *mb = s->macroblocks + (s->mb_height - mb_y - 1)*2;
P
Pascal Massimino 已提交
1707
        int mb_xy = mb_y*s->mb_width;
D
David Conrad 已提交
1708 1709 1710 1711 1712 1713
        uint8_t *dst[3] = {
            curframe->data[0] + 16*mb_y*s->linesize,
            curframe->data[1] +  8*mb_y*s->uvlinesize,
            curframe->data[2] +  8*mb_y*s->uvlinesize
        };

P
Pascal Massimino 已提交
1714
        memset(mb - 1, 0, sizeof(*mb));   // zero left macroblock
D
David Conrad 已提交
1715
        memset(s->left_nnz, 0, sizeof(s->left_nnz));
1716
        AV_WN32A(s->intra4x4_pred_mode_left, DC_PRED*0x01010101);
D
David Conrad 已提交
1717 1718

        // left edge of 129 for intra prediction
1719
        if (!(avctx->flags & CODEC_FLAG_EMU_EDGE)) {
D
David Conrad 已提交
1720 1721 1722
            for (i = 0; i < 3; i++)
                for (y = 0; y < 16>>!!i; y++)
                    dst[i][y*curframe->linesize[i]-1] = 129;
1723 1724 1725
            if (mb_y == 1) // top left edge is also 129
                s->top_border[0][15] = s->top_border[0][23] = s->top_border[0][31] = 129;
        }
D
David Conrad 已提交
1726

J
Jason Garrett-Glaser 已提交
1727
        for (mb_x = 0; mb_x < s->mb_width; mb_x++, mb_xy++, mb++) {
1728 1729 1730 1731
            /* Prefetch the current frame, 4 MBs ahead */
            s->dsp.prefetch(dst[0] + (mb_x&3)*4*s->linesize + 64, s->linesize, 4);
            s->dsp.prefetch(dst[1] + (mb_x&7)*s->uvlinesize + 64, dst[2] - dst[1], 2);

P
Pascal Massimino 已提交
1732
            decode_mb_mode(s, mb, mb_x, mb_y, s->segmentation_map + mb_xy);
D
David Conrad 已提交
1733

J
Jason Garrett-Glaser 已提交
1734
            prefetch_motion(s, mb, mb_x, mb_y, mb_xy, VP56_FRAME_PREVIOUS);
J
Jason Garrett-Glaser 已提交
1735

D
David Conrad 已提交
1736 1737 1738
            if (!mb->skip)
                decode_mb_coeffs(s, c, mb, s->top_nnz[mb_x], s->left_nnz);

1739
            if (mb->mode <= MODE_I4x4)
1740
                intra_predict(s, dst, mb, mb_x, mb_y);
1741
            else
D
David Conrad 已提交
1742 1743
                inter_predict(s, dst, mb, mb_x, mb_y);

J
Jason Garrett-Glaser 已提交
1744
            prefetch_motion(s, mb, mb_x, mb_y, mb_xy, VP56_FRAME_GOLDEN);
J
Jason Garrett-Glaser 已提交
1745

D
David Conrad 已提交
1746
            if (!mb->skip) {
J
Jason Garrett-Glaser 已提交
1747
                idct_mb(s, dst, mb);
D
David Conrad 已提交
1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758
            } else {
                AV_ZERO64(s->left_nnz);
                AV_WN64(s->top_nnz[mb_x], 0);   // array of 9, so unaligned

                // Reset DC block predictors if they would exist if the mb had coefficients
                if (mb->mode != MODE_I4x4 && mb->mode != VP8_MVMODE_SPLIT) {
                    s->left_nnz[8]      = 0;
                    s->top_nnz[mb_x][8] = 0;
                }
            }

1759 1760 1761
            if (s->deblock_filter)
                filter_level_for_mb(s, mb, &s->filter_strength[mb_x]);

J
Jason Garrett-Glaser 已提交
1762
            prefetch_motion(s, mb, mb_x, mb_y, mb_xy, VP56_FRAME_GOLDEN2);
J
Jason Garrett-Glaser 已提交
1763

D
David Conrad 已提交
1764 1765 1766 1767
            dst[0] += 16;
            dst[1] += 8;
            dst[2] += 8;
        }
1768
        if (s->deblock_filter) {
D
David Conrad 已提交
1769
            if (s->filter.simple)
1770
                filter_mb_row_simple(s, mb_y);
D
David Conrad 已提交
1771
            else
1772
                filter_mb_row(s, mb_y);
D
David Conrad 已提交
1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833
        }
    }

skip_decode:
    // if future frames don't use the updated probabilities,
    // reset them to the values we saved
    if (!s->update_probabilities)
        s->prob[0] = s->prob[1];

    // check if golden and altref are swapped
    if (s->update_altref == VP56_FRAME_GOLDEN &&
        s->update_golden == VP56_FRAME_GOLDEN2)
        FFSWAP(AVFrame *, s->framep[VP56_FRAME_GOLDEN], s->framep[VP56_FRAME_GOLDEN2]);
    else {
        if (s->update_altref != VP56_FRAME_NONE)
            s->framep[VP56_FRAME_GOLDEN2] = s->framep[s->update_altref];

        if (s->update_golden != VP56_FRAME_NONE)
            s->framep[VP56_FRAME_GOLDEN] = s->framep[s->update_golden];
    }

    if (s->update_last) // move cur->prev
        s->framep[VP56_FRAME_PREVIOUS] = s->framep[VP56_FRAME_CURRENT];

    // release no longer referenced frames
    for (i = 0; i < 4; i++)
        if (s->frames[i].data[0] &&
            &s->frames[i] != s->framep[VP56_FRAME_CURRENT] &&
            &s->frames[i] != s->framep[VP56_FRAME_PREVIOUS] &&
            &s->frames[i] != s->framep[VP56_FRAME_GOLDEN] &&
            &s->frames[i] != s->framep[VP56_FRAME_GOLDEN2])
            avctx->release_buffer(avctx, &s->frames[i]);

    if (!s->invisible) {
        *(AVFrame*)data = *s->framep[VP56_FRAME_CURRENT];
        *data_size = sizeof(AVFrame);
    }

    return avpkt->size;
}

static av_cold int vp8_decode_init(AVCodecContext *avctx)
{
    VP8Context *s = avctx->priv_data;

    s->avctx = avctx;
    avctx->pix_fmt = PIX_FMT_YUV420P;

    dsputil_init(&s->dsp, avctx);
    ff_h264_pred_init(&s->hpc, CODEC_ID_VP8);
    ff_vp8dsp_init(&s->vp8dsp);

    return 0;
}

static av_cold int vp8_decode_free(AVCodecContext *avctx)
{
    vp8_decode_flush(avctx);
    return 0;
}

1834
AVCodec ff_vp8_decoder = {
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David Conrad 已提交
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    "vp8",
    AVMEDIA_TYPE_VIDEO,
    CODEC_ID_VP8,
    sizeof(VP8Context),
    vp8_decode_init,
    NULL,
    vp8_decode_free,
    vp8_decode_frame,
    CODEC_CAP_DR1,
    .flush = vp8_decode_flush,
    .long_name = NULL_IF_CONFIG_SMALL("On2 VP8"),
};