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vp8: move data from VP8Context->VP8Macroblock
In preparation for sliced threading. Signed-off-by: Luca Barbato <lu_zero@gentoo.org>
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337ade52de
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@ -622,10 +622,11 @@ void decode_mvs(VP8Context *s, VP8Macroblock *mb, int mb_x, int mb_y)
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}
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static av_always_inline
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void decode_intra4x4_modes(VP8Context *s, VP56RangeCoder *c,
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void decode_intra4x4_modes(VP8Context *s, VP56RangeCoder *c, VP8Macroblock *mb,
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int mb_x, int keyframe)
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{
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uint8_t *intra4x4 = s->intra4x4_pred_mode_mb;
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uint8_t *intra4x4 = mb->intra4x4_pred_mode_mb;
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if (keyframe) {
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int x, y;
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uint8_t* const top = s->intra4x4_pred_mode_top + 4 * mb_x;
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@ -655,7 +656,7 @@ void decode_mb_mode(VP8Context *s, VP8Macroblock *mb, int mb_x, int mb_y, uint8_
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*segment = vp8_rac_get_tree(c, vp8_segmentid_tree, s->prob->segmentid);
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else if (s->segmentation.enabled)
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*segment = ref ? *ref : *segment;
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s->segment = *segment;
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mb->segment = *segment;
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mb->skip = s->mbskip_enabled ? vp56_rac_get_prob(c, s->prob->mbskip) : 0;
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@ -663,14 +664,14 @@ void decode_mb_mode(VP8Context *s, VP8Macroblock *mb, int mb_x, int mb_y, uint8_
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mb->mode = vp8_rac_get_tree(c, vp8_pred16x16_tree_intra, vp8_pred16x16_prob_intra);
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if (mb->mode == MODE_I4x4) {
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decode_intra4x4_modes(s, c, mb_x, 1);
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decode_intra4x4_modes(s, c, mb, mb_x, 1);
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} else {
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const uint32_t modes = vp8_pred4x4_mode[mb->mode] * 0x01010101u;
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AV_WN32A(s->intra4x4_pred_mode_top + 4 * mb_x, modes);
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AV_WN32A(s->intra4x4_pred_mode_left, modes);
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}
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s->chroma_pred_mode = vp8_rac_get_tree(c, vp8_pred8x8c_tree, vp8_pred8x8c_prob_intra);
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mb->chroma_pred_mode = vp8_rac_get_tree(c, vp8_pred8x8c_tree, vp8_pred8x8c_prob_intra);
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mb->ref_frame = VP56_FRAME_CURRENT;
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} else if (vp56_rac_get_prob_branchy(c, s->prob->intra)) {
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// inter MB, 16.2
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@ -688,9 +689,9 @@ void decode_mb_mode(VP8Context *s, VP8Macroblock *mb, int mb_x, int mb_y, uint8_
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mb->mode = vp8_rac_get_tree(c, vp8_pred16x16_tree_inter, s->prob->pred16x16);
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if (mb->mode == MODE_I4x4)
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decode_intra4x4_modes(s, c, mb_x, 0);
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decode_intra4x4_modes(s, c, mb, mb_x, 0);
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s->chroma_pred_mode = vp8_rac_get_tree(c, vp8_pred8x8c_tree, s->prob->pred8x8c);
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mb->chroma_pred_mode = vp8_rac_get_tree(c, vp8_pred8x8c_tree, s->prob->pred8x8c);
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mb->ref_frame = VP56_FRAME_CURRENT;
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mb->partitioning = VP8_SPLITMVMODE_NONE;
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AV_ZERO32(&mb->bmv[0]);
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@ -791,7 +792,7 @@ void decode_mb_coeffs(VP8Context *s, VP56RangeCoder *c, VP8Macroblock *mb,
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{
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int i, x, y, luma_start = 0, luma_ctx = 3;
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int nnz_pred, nnz, nnz_total = 0;
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int segment = s->segment;
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int segment = mb->segment;
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int block_dc = 0;
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if (mb->mode != MODE_I4x4 && mb->mode != VP8_MVMODE_SPLIT) {
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@ -1002,7 +1003,7 @@ void intra_predict(VP8Context *s, uint8_t *dst[3], VP8Macroblock *mb,
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s->hpc.pred16x16[mode](dst[0], s->linesize);
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} else {
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uint8_t *ptr = dst[0];
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uint8_t *intra4x4 = s->intra4x4_pred_mode_mb;
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uint8_t *intra4x4 = mb->intra4x4_pred_mode_mb;
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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
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@ -1087,9 +1088,9 @@ void intra_predict(VP8Context *s, uint8_t *dst[3], VP8Macroblock *mb,
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}
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if (avctx->flags & CODEC_FLAG_EMU_EDGE) {
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mode = check_intra_pred8x8_mode_emuedge(s->chroma_pred_mode, mb_x, mb_y);
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mode = check_intra_pred8x8_mode_emuedge(mb->chroma_pred_mode, mb_x, mb_y);
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} else {
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mode = check_intra_pred8x8_mode(s->chroma_pred_mode, mb_x, mb_y);
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mode = check_intra_pred8x8_mode(mb->chroma_pred_mode, mb_x, mb_y);
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}
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s->hpc.pred8x8[mode](dst[1], s->uvlinesize);
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s->hpc.pred8x8[mode](dst[2], s->uvlinesize);
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@ -1408,7 +1409,7 @@ static av_always_inline void filter_level_for_mb(VP8Context *s, VP8Macroblock *m
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int interior_limit, filter_level;
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if (s->segmentation.enabled) {
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filter_level = s->segmentation.filter_level[s->segment];
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filter_level = s->segmentation.filter_level[mb->segment];
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if (!s->segmentation.absolute_vals)
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filter_level += s->filter.level;
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} else
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@ -79,6 +79,10 @@ typedef struct {
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uint8_t mode;
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uint8_t ref_frame;
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uint8_t partitioning;
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uint8_t chroma_pred_mode;
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uint8_t segment;
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uint8_t intra4x4_pred_mode_mb[16];
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uint8_t intra4x4_pred_mode_top[4];
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VP56mv mv;
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VP56mv bmv[16];
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} VP8Macroblock;
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@ -97,8 +101,6 @@ typedef struct {
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uint8_t keyframe;
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uint8_t deblock_filter;
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uint8_t mbskip_enabled;
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uint8_t segment; ///< segment of the current macroblock
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uint8_t chroma_pred_mode; ///< 8x8c pred mode of the current macroblock
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uint8_t profile;
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VP56mv mv_min;
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VP56mv mv_max;
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@ -193,7 +195,6 @@ typedef struct {
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VP56RangeCoder c; ///< header context, includes mb modes and motion vectors
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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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/**
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* These are all of the updatable probabilities for binary decisions.
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