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https://github.com/FFmpeg/FFmpeg.git
synced 2025-01-13 21:28:01 +02:00
h264: eliminate default_ref_list
According to the spec, the reference list for a slice should be constructed by first generating an initial (what we now call "default") reference list and then optionally applying modifications to it. Our code has an optimization where the initial reference list is constructed for the first inter slice and then rebuilt for other slices if needed. This, however, adds complexity to the code, requires an extra 2.5kB array in the codec context and there is no reason to think that it has any positive effect on performance. Therefore, simplify the code by generating the reference list from scratch for each slice.
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e7078e842d
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741b494fa8
@ -600,7 +600,6 @@ typedef struct H264Context {
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*/
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int max_pic_num;
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H264Ref default_ref_list[2][32]; ///< base reference list for all slices of a coded picture
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H264Picture *short_ref[32];
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H264Picture *long_ref[32];
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H264Picture *delayed_pic[MAX_DELAYED_PIC_COUNT + 2]; // FIXME size?
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@ -645,7 +644,6 @@ typedef struct H264Context {
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enum AVPictureType pict_type;
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int last_slice_type;
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/** @} */
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/**
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@ -804,11 +802,6 @@ int ff_h264_get_slice_type(const H264SliceContext *sl);
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*/
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int ff_h264_alloc_tables(H264Context *h);
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/**
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* Fill the default_ref_list.
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*/
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int ff_h264_fill_default_ref_list(H264Context *h, H264SliceContext *sl);
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int ff_h264_decode_ref_pic_list_reordering(H264Context *h, H264SliceContext *sl);
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void ff_h264_fill_mbaff_ref_list(H264Context *h, H264SliceContext *sl);
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void ff_h264_remove_all_refs(H264Context *h);
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@ -119,7 +119,7 @@ static int add_sorted(H264Picture **sorted, H264Picture **src, int len, int limi
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return out_i;
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}
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int ff_h264_fill_default_ref_list(H264Context *h, H264SliceContext *sl)
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static void h264_initialise_ref_list(H264Context *h, H264SliceContext *sl)
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{
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int i, len;
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@ -138,52 +138,51 @@ int ff_h264_fill_default_ref_list(H264Context *h, H264SliceContext *sl)
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len += add_sorted(sorted + len, h->short_ref, h->short_ref_count, cur_poc, 0 ^ list);
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assert(len <= 32);
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len = build_def_list(h->default_ref_list[list], FF_ARRAY_ELEMS(h->default_ref_list[0]),
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len = build_def_list(sl->ref_list[list], FF_ARRAY_ELEMS(sl->ref_list[0]),
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sorted, len, 0, h->picture_structure);
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len += build_def_list(h->default_ref_list[list] + len,
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FF_ARRAY_ELEMS(h->default_ref_list[0]) - len,
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len += build_def_list(sl->ref_list[list] + len,
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FF_ARRAY_ELEMS(sl->ref_list[0]) - len,
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h->long_ref, 16, 1, h->picture_structure);
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if (len < sl->ref_count[list])
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memset(&h->default_ref_list[list][len], 0, sizeof(H264Ref) * (sl->ref_count[list] - len));
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memset(&sl->ref_list[list][len], 0, sizeof(H264Ref) * (sl->ref_count[list] - len));
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lens[list] = len;
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}
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if (lens[0] == lens[1] && lens[1] > 1) {
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for (i = 0; i < lens[0] &&
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h->default_ref_list[0][i].parent->f->buf[0]->buffer ==
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h->default_ref_list[1][i].parent->f->buf[0]->buffer; i++);
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sl->ref_list[0][i].parent->f->buf[0]->buffer ==
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sl->ref_list[1][i].parent->f->buf[0]->buffer; i++);
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if (i == lens[0]) {
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FFSWAP(H264Ref, h->default_ref_list[1][0], h->default_ref_list[1][1]);
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FFSWAP(H264Ref, sl->ref_list[1][0], sl->ref_list[1][1]);
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}
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}
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} else {
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len = build_def_list(h->default_ref_list[0], FF_ARRAY_ELEMS(h->default_ref_list[0]),
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len = build_def_list(sl->ref_list[0], FF_ARRAY_ELEMS(sl->ref_list[0]),
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h->short_ref, h->short_ref_count, 0, h->picture_structure);
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len += build_def_list(h->default_ref_list[0] + len,
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FF_ARRAY_ELEMS(h->default_ref_list[0]) - len,
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len += build_def_list(sl->ref_list[0] + len,
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FF_ARRAY_ELEMS(sl->ref_list[0]) - len,
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h-> long_ref, 16, 1, h->picture_structure);
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if (len < sl->ref_count[0])
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memset(&h->default_ref_list[0][len], 0, sizeof(H264Ref) * (sl->ref_count[0] - len));
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memset(&sl->ref_list[0][len], 0, sizeof(H264Ref) * (sl->ref_count[0] - len));
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}
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#ifdef TRACE
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for (i = 0; i < sl->ref_count[0]; i++) {
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ff_tlog(h->avctx, "List0: %s fn:%d 0x%p\n",
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(h->default_ref_list[0][i].long_ref ? "LT" : "ST"),
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h->default_ref_list[0][i].pic_id,
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h->default_ref_list[0][i].f->data[0]);
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(sl->ref_list[0][i].long_ref ? "LT" : "ST"),
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sl->ref_list[0][i].pic_id,
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sl->ref_list[0][i].f->data[0]);
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}
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if (sl->slice_type_nos == AV_PICTURE_TYPE_B) {
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for (i = 0; i < sl->ref_count[1]; i++) {
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ff_tlog(h->avctx, "List1: %s fn:%d 0x%p\n",
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(h->default_ref_list[1][i].long_ref ? "LT" : "ST"),
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h->default_ref_list[1][i].pic_id,
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h->default_ref_list[1][i].f->data[0]);
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(sl->ref_list[1][i].long_ref ? "LT" : "ST"),
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sl->ref_list[1][i].pic_id,
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sl->ref_list[1][i].f->data[0]);
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}
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}
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#endif
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return 0;
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}
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static void print_short_term(H264Context *h);
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@ -219,9 +218,9 @@ int ff_h264_decode_ref_pic_list_reordering(H264Context *h, H264SliceContext *sl)
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print_short_term(h);
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print_long_term(h);
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for (list = 0; list < sl->list_count; list++) {
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memcpy(sl->ref_list[list], h->default_ref_list[list], sl->ref_count[list] * sizeof(sl->ref_list[0][0]));
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h264_initialise_ref_list(h, sl);
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for (list = 0; list < sl->list_count; list++) {
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if (get_bits1(&sl->gb)) { // ref_pic_list_modification_flag_l[01]
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int pred = h->curr_pic_num;
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@ -326,10 +325,7 @@ int ff_h264_decode_ref_pic_list_reordering(H264Context *h, H264SliceContext *sl)
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for (index = 0; index < sl->ref_count[list]; index++) {
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if (!sl->ref_list[list][index].parent) {
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av_log(h->avctx, AV_LOG_ERROR, "Missing reference picture\n");
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if (h->default_ref_list[list][0].parent)
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sl->ref_list[list][index] = h->default_ref_list[list][0];
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else
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return -1;
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return -1;
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}
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}
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}
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@ -510,18 +510,13 @@ int ff_h264_update_thread_context(AVCodecContext *dst,
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h->dequant_coeff_pps = h1->dequant_coeff_pps;
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// POC timing
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copy_fields(h, h1, poc_lsb, default_ref_list);
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// reference lists
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copy_fields(h, h1, short_ref, current_slice);
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copy_fields(h, h1, poc_lsb, current_slice);
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copy_picture_range(h->short_ref, h1->short_ref, 32, h, h1);
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copy_picture_range(h->long_ref, h1->long_ref, 32, h, h1);
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copy_picture_range(h->delayed_pic, h1->delayed_pic,
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MAX_DELAYED_PIC_COUNT + 2, h, h1);
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h->last_slice_type = h1->last_slice_type;
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if (!h->cur_pic_ptr)
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return 0;
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@ -1032,7 +1027,6 @@ int ff_h264_decode_slice_header(H264Context *h, H264SliceContext *sl)
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unsigned int pps_id;
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int ret;
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unsigned int slice_type, tmp, i, j;
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int default_ref_list_done = 0;
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int last_pic_structure, last_pic_droppable;
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int needs_reinit = 0;
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int field_pic_flag, bottom_field_flag;
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@ -1073,10 +1067,6 @@ int ff_h264_decode_slice_header(H264Context *h, H264SliceContext *sl)
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sl->slice_type_fixed = 0;
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slice_type = golomb_to_pict_type[slice_type];
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if (slice_type == AV_PICTURE_TYPE_I ||
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(h->current_slice != 0 && slice_type == h->last_slice_type)) {
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default_ref_list_done = 1;
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}
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sl->slice_type = slice_type;
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sl->slice_type_nos = slice_type & 3;
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@ -1491,11 +1481,6 @@ int ff_h264_decode_slice_header(H264Context *h, H264SliceContext *sl)
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ret = ff_set_ref_count(h, sl);
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if (ret < 0)
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return ret;
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else if (ret == 1)
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default_ref_list_done = 0;
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if (!default_ref_list_done)
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ff_h264_fill_default_ref_list(h, sl);
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if (sl->slice_type_nos != AV_PICTURE_TYPE_I) {
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ret = ff_h264_decode_ref_pic_list_reordering(h, sl);
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@ -1635,7 +1620,6 @@ int ff_h264_decode_slice_header(H264Context *h, H264SliceContext *sl)
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h->pps.chroma_qp_index_offset[1]) +
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6 * (h->sps.bit_depth_luma - 8);
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h->last_slice_type = slice_type;
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sl->slice_num = ++h->current_slice;
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if (sl->slice_num >= MAX_SLICES) {
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av_log(h->avctx, AV_LOG_ERROR,
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