Exemplo n.º 1
0
static int vp5_parse_header(VP56Context *s, const uint8_t *buf, int buf_size,
                            int *golden_frame)
{
    VP56RangeCoder *c = &s->c;
    int rows, cols;

    vp56_init_range_decoder(&s->c, buf, buf_size);
    s->framep[VP56_FRAME_CURRENT]->key_frame = !vp56_rac_get(c);
    vp56_rac_get(c);
    vp56_init_dequant(s, vp56_rac_gets(c, 6));
    if (s->framep[VP56_FRAME_CURRENT]->key_frame)
    {
        vp56_rac_gets(c, 8);
        if(vp56_rac_gets(c, 5) > 5)
            return 0;
        vp56_rac_gets(c, 2);
        if (vp56_rac_get(c)) {
            av_log(s->avctx, AV_LOG_ERROR, "interlacing not supported\n");
            return 0;
        }
        rows = vp56_rac_gets(c, 8);  /* number of stored macroblock rows */
        cols = vp56_rac_gets(c, 8);  /* number of stored macroblock cols */
        vp56_rac_gets(c, 8);  /* number of displayed macroblock rows */
        vp56_rac_gets(c, 8);  /* number of displayed macroblock cols */
        vp56_rac_gets(c, 2);
        if (!s->macroblocks || /* first frame */
            16*cols != s->avctx->coded_width ||
            16*rows != s->avctx->coded_height) {
            avcodec_set_dimensions(s->avctx, 16*cols, 16*rows);
            return 2;
        }
    } else if (!s->macroblocks)
        return 0;
    return 1;
}
Exemplo n.º 2
0
static int vp5_parse_header(VP56Context *s, const uint8_t *buf, int buf_size)
{
    VP56RangeCoder *c = &s->c;
    int rows, cols;

    ff_vp56_init_range_decoder(&s->c, buf, buf_size);
    s->frames[VP56_FRAME_CURRENT]->key_frame = !vp56_rac_get(c);
    vp56_rac_get(c);
    ff_vp56_init_dequant(s, vp56_rac_gets(c, 6));
    if (s->frames[VP56_FRAME_CURRENT]->key_frame)
    {
        vp56_rac_gets(c, 8);
        if(vp56_rac_gets(c, 5) > 5)
            return AVERROR_INVALIDDATA;
        vp56_rac_gets(c, 2);
        if (vp56_rac_get(c)) {
            av_log(s->avctx, AV_LOG_ERROR, "interlacing not supported\n");
            return AVERROR_PATCHWELCOME;
        }
        rows = vp56_rac_gets(c, 8);  /* number of stored macroblock rows */
        cols = vp56_rac_gets(c, 8);  /* number of stored macroblock cols */
        if (!rows || !cols) {
            av_log(s->avctx, AV_LOG_ERROR, "Invalid size %dx%d\n",
                   cols << 4, rows << 4);
            return AVERROR_INVALIDDATA;
        }
        vp56_rac_gets(c, 8);  /* number of displayed macroblock rows */
        vp56_rac_gets(c, 8);  /* number of displayed macroblock cols */
        vp56_rac_gets(c, 2);
        if (!s->macroblocks || /* first frame */
            16*cols != s->avctx->coded_width ||
            16*rows != s->avctx->coded_height) {
            int ret = ff_set_dimensions(s->avctx, 16 * cols, 16 * rows);
            if (ret < 0)
                return ret;
            return VP56_SIZE_CHANGE;
        }
    } else if (!s->macroblocks)
        return AVERROR_INVALIDDATA;
    return 0;
}
Exemplo n.º 3
0
static void vp5_parse_coeff(VP56Context *s)
{
    VP56RangeCoder *c = &s->c;
    VP56Model *model = s->modelp;
    uint8_t *permute = s->scantable.permutated;
    uint8_t *model1, *model2;
    int coeff, sign, coeff_idx;
    int b, i, cg, idx, ctx, ctx_last;
    int pt = 0;    /* plane type (0 for Y, 1 for U or V) */

    for (b=0; b<6; b++) {
        int ct = 1;    /* code type */

        if (b > 3) pt = 1;

        ctx = 6*s->coeff_ctx[vp56_b6to4[b]][0]
              + s->above_blocks[s->above_block_idx[b]].not_null_dc;
        model1 = model->coeff_dccv[pt];
        model2 = model->coeff_dcct[pt][ctx];

        for (coeff_idx=0; coeff_idx<64; ) {
            if (vp56_rac_get_prob(c, model2[0])) {
                if (vp56_rac_get_prob(c, model2[2])) {
                    if (vp56_rac_get_prob(c, model2[3])) {
                        s->coeff_ctx[vp56_b6to4[b]][coeff_idx] = 4;
                        idx = vp56_rac_get_tree(c, vp56_pc_tree, model1);
                        sign = vp56_rac_get(c);
                        coeff = vp56_coeff_bias[idx+5];
                        for (i=vp56_coeff_bit_length[idx]; i>=0; i--)
                            coeff += vp56_rac_get_prob(c, vp56_coeff_parse_table[idx][i]) << i;
                    } else {
                        if (vp56_rac_get_prob(c, model2[4])) {
                            coeff = 3 + vp56_rac_get_prob(c, model1[5]);
                            s->coeff_ctx[vp56_b6to4[b]][coeff_idx] = 3;
                        } else {
                            coeff = 2;
                            s->coeff_ctx[vp56_b6to4[b]][coeff_idx] = 2;
                        }
                        sign = vp56_rac_get(c);
                    }
                    ct = 2;
                } else {
                    ct = 1;
                    s->coeff_ctx[vp56_b6to4[b]][coeff_idx] = 1;
                    sign = vp56_rac_get(c);
                    coeff = 1;
                }
                coeff = (coeff ^ -sign) + sign;
                if (coeff_idx)
                    coeff *= s->dequant_ac;
                s->block_coeff[b][permute[coeff_idx]] = coeff;
            } else {
                if (ct && !vp56_rac_get_prob(c, model2[1]))
                    break;
                ct = 0;
                s->coeff_ctx[vp56_b6to4[b]][coeff_idx] = 0;
            }

            cg = vp5_coeff_groups[++coeff_idx];
            ctx = s->coeff_ctx[vp56_b6to4[b]][coeff_idx];
            model1 = model->coeff_ract[pt][ct][cg];
            model2 = cg > 2 ? model1 : model->coeff_acct[pt][ct][cg][ctx];
        }

        ctx_last = FFMIN(s->coeff_ctx_last[vp56_b6to4[b]], 24);
        s->coeff_ctx_last[vp56_b6to4[b]] = coeff_idx;
        if (coeff_idx < ctx_last)
            for (i=coeff_idx; i<=ctx_last; i++)
                s->coeff_ctx[vp56_b6to4[b]][i] = 5;
        s->above_blocks[s->above_block_idx[b]].not_null_dc = s->coeff_ctx[vp56_b6to4[b]][0];
    }
}
Exemplo n.º 4
0
static void vp56_parse_mb_type_models(VP56Context *s)
{
    VP56RangeCoder *c = &s->c;
    VP56Model *model = s->modelp;
    int i, ctx, type;

    for (ctx=0; ctx<3; ctx++) {
        if (vp56_rac_get_prob(c, 174)) {
            int idx = vp56_rac_gets(c, 4);
            memcpy(model->mb_types_stats[ctx],
                   vp56_pre_def_mb_type_stats[idx][ctx],
                   sizeof(model->mb_types_stats[ctx]));
        }
        if (vp56_rac_get_prob(c, 254)) {
            for (type=0; type<10; type++) {
                for(i=0; i<2; i++) {
                    if (vp56_rac_get_prob(c, 205)) {
                        int delta, sign = vp56_rac_get(c);

                        delta = vp56_rac_get_tree(c, vp56_pmbtm_tree,
                                                  vp56_mb_type_model_model);
                        if (!delta)
                            delta = 4 * vp56_rac_gets(c, 7);
                        model->mb_types_stats[ctx][type][i] += (delta ^ -sign) + sign;
                    }
                }
            }
        }
    }

    /* compute MB type probability tables based on previous MB type */
    for (ctx=0; ctx<3; ctx++) {
        int p[10];

        for (type=0; type<10; type++)
            p[type] = 100 * model->mb_types_stats[ctx][type][1];

        for (type=0; type<10; type++) {
            int p02, p34, p0234, p17, p56, p89, p5689, p156789;

            /* conservative MB type probability */
            model->mb_type[ctx][type][0] = 255 - (255 * model->mb_types_stats[ctx][type][0]) / (1 + model->mb_types_stats[ctx][type][0] + model->mb_types_stats[ctx][type][1]);

            p[type] = 0;    /* same MB type => weight is null */

            /* binary tree parsing probabilities */
            p02 = p[0] + p[2];
            p34 = p[3] + p[4];
            p0234 = p02 + p34;
            p17 = p[1] + p[7];
            p56 = p[5] + p[6];
            p89 = p[8] + p[9];
            p5689 = p56 + p89;
            p156789 = p17 + p5689;

            model->mb_type[ctx][type][1] = 1 + 255 * p0234/(1+p0234+p156789);
            model->mb_type[ctx][type][2] = 1 + 255 * p02  / (1+p0234);
            model->mb_type[ctx][type][3] = 1 + 255 * p17  / (1+p156789);
            model->mb_type[ctx][type][4] = 1 + 255 * p[0] / (1+p02);
            model->mb_type[ctx][type][5] = 1 + 255 * p[3] / (1+p34);
            model->mb_type[ctx][type][6] = 1 + 255 * p[1] / (1+p17);
            model->mb_type[ctx][type][7] = 1 + 255 * p56  / (1+p5689);
            model->mb_type[ctx][type][8] = 1 + 255 * p[5] / (1+p56);
            model->mb_type[ctx][type][9] = 1 + 255 * p[8] / (1+p89);

            /* restore initial value */
            p[type] = 100 * model->mb_types_stats[ctx][type][1];
        }
    }
}