1 /*
2   Copyright (c) 2010 The WebM project authors. All Rights Reserved.
3  *
4  *  Use of this source code is governed by a BSD-style license
5  *  that can be found in the LICENSE file in the root of the source
6  *  tree. An additional intellectual property rights grant can be found
7  *  in the file PATENTS.  All contributing project authors may
8  *  be found in the AUTHORS file in the root of the source tree.
9  */
10 
11 #include <assert.h>
12 
13 #include "vp9/common/vp9_common.h"
14 #include "vp9/common/vp9_entropy.h"
15 #include "vp9/common/vp9_entropymode.h"
16 #include "vp9/common/vp9_entropymv.h"
17 #include "vp9/common/vp9_mvref_common.h"
18 #include "vp9/common/vp9_pred_common.h"
19 #include "vp9/common/vp9_reconinter.h"
20 #include "vp9/common/vp9_seg_common.h"
21 
22 #include "vp9/decoder/vp9_decodemv.h"
23 #include "vp9/decoder/vp9_decodeframe.h"
24 
25 #include "vpx_dsp/vpx_dsp_common.h"
26 
read_intra_mode(vpx_reader * r,const vpx_prob * p)27 static PREDICTION_MODE read_intra_mode(vpx_reader *r, const vpx_prob *p) {
28   return (PREDICTION_MODE)vpx_read_tree(r, vp9_intra_mode_tree, p);
29 }
30 
read_intra_mode_y(VP9_COMMON * cm,MACROBLOCKD * xd,vpx_reader * r,int size_group)31 static PREDICTION_MODE read_intra_mode_y(VP9_COMMON *cm, MACROBLOCKD *xd,
32                                          vpx_reader *r, int size_group) {
33   const PREDICTION_MODE y_mode =
34       read_intra_mode(r, cm->fc->y_mode_prob[size_group]);
35   FRAME_COUNTS *counts = xd->counts;
36   if (counts) ++counts->y_mode[size_group][y_mode];
37   return y_mode;
38 }
39 
read_intra_mode_uv(VP9_COMMON * cm,MACROBLOCKD * xd,vpx_reader * r,PREDICTION_MODE y_mode)40 static PREDICTION_MODE read_intra_mode_uv(VP9_COMMON *cm, MACROBLOCKD *xd,
41                                           vpx_reader *r,
42                                           PREDICTION_MODE y_mode) {
43   const PREDICTION_MODE uv_mode =
44       read_intra_mode(r, cm->fc->uv_mode_prob[y_mode]);
45   FRAME_COUNTS *counts = xd->counts;
46   if (counts) ++counts->uv_mode[y_mode][uv_mode];
47   return uv_mode;
48 }
49 
read_inter_mode(VP9_COMMON * cm,MACROBLOCKD * xd,vpx_reader * r,int ctx)50 static PREDICTION_MODE read_inter_mode(VP9_COMMON *cm, MACROBLOCKD *xd,
51                                        vpx_reader *r, int ctx) {
52   const int mode =
53       vpx_read_tree(r, vp9_inter_mode_tree, cm->fc->inter_mode_probs[ctx]);
54   FRAME_COUNTS *counts = xd->counts;
55   if (counts) ++counts->inter_mode[ctx][mode];
56 
57   return NEARESTMV + mode;
58 }
59 
read_segment_id(vpx_reader * r,const struct segmentation * seg)60 static int read_segment_id(vpx_reader *r, const struct segmentation *seg) {
61   return vpx_read_tree(r, vp9_segment_tree, seg->tree_probs);
62 }
63 
read_selected_tx_size(VP9_COMMON * cm,MACROBLOCKD * xd,TX_SIZE max_tx_size,vpx_reader * r)64 static TX_SIZE read_selected_tx_size(VP9_COMMON *cm, MACROBLOCKD *xd,
65                                      TX_SIZE max_tx_size, vpx_reader *r) {
66   FRAME_COUNTS *counts = xd->counts;
67   const int ctx = get_tx_size_context(xd);
68   const vpx_prob *tx_probs = get_tx_probs(max_tx_size, ctx, &cm->fc->tx_probs);
69   int tx_size = vpx_read(r, tx_probs[0]);
70   if (tx_size != TX_4X4 && max_tx_size >= TX_16X16) {
71     tx_size += vpx_read(r, tx_probs[1]);
72     if (tx_size != TX_8X8 && max_tx_size >= TX_32X32)
73       tx_size += vpx_read(r, tx_probs[2]);
74   }
75 
76   if (counts) ++get_tx_counts(max_tx_size, ctx, &counts->tx)[tx_size];
77   return (TX_SIZE)tx_size;
78 }
79 
read_tx_size(VP9_COMMON * cm,MACROBLOCKD * xd,int allow_select,vpx_reader * r)80 static INLINE TX_SIZE read_tx_size(VP9_COMMON *cm, MACROBLOCKD *xd,
81                                    int allow_select, vpx_reader *r) {
82   TX_MODE tx_mode = cm->tx_mode;
83   BLOCK_SIZE bsize = xd->mi[0]->sb_type;
84   const TX_SIZE max_tx_size = max_txsize_lookup[bsize];
85   if (allow_select && tx_mode == TX_MODE_SELECT && bsize >= BLOCK_8X8)
86     return read_selected_tx_size(cm, xd, max_tx_size, r);
87   else
88     return VPXMIN(max_tx_size, tx_mode_to_biggest_tx_size[tx_mode]);
89 }
90 
dec_get_segment_id(const VP9_COMMON * cm,const uint8_t * segment_ids,int mi_offset,int x_mis,int y_mis)91 static int dec_get_segment_id(const VP9_COMMON *cm, const uint8_t *segment_ids,
92                               int mi_offset, int x_mis, int y_mis) {
93   int x, y, segment_id = INT_MAX;
94 
95   for (y = 0; y < y_mis; y++)
96     for (x = 0; x < x_mis; x++)
97       segment_id =
98           VPXMIN(segment_id, segment_ids[mi_offset + y * cm->mi_cols + x]);
99 
100   assert(segment_id >= 0 && segment_id < MAX_SEGMENTS);
101   return segment_id;
102 }
103 
set_segment_id(VP9_COMMON * cm,int mi_offset,int x_mis,int y_mis,int segment_id)104 static void set_segment_id(VP9_COMMON *cm, int mi_offset, int x_mis, int y_mis,
105                            int segment_id) {
106   int x, y;
107 
108   assert(segment_id >= 0 && segment_id < MAX_SEGMENTS);
109 
110   for (y = 0; y < y_mis; y++)
111     for (x = 0; x < x_mis; x++)
112       cm->current_frame_seg_map[mi_offset + y * cm->mi_cols + x] = segment_id;
113 }
114 
copy_segment_id(const VP9_COMMON * cm,const uint8_t * last_segment_ids,uint8_t * current_segment_ids,int mi_offset,int x_mis,int y_mis)115 static void copy_segment_id(const VP9_COMMON *cm,
116                             const uint8_t *last_segment_ids,
117                             uint8_t *current_segment_ids, int mi_offset,
118                             int x_mis, int y_mis) {
119   int x, y;
120 
121   for (y = 0; y < y_mis; y++)
122     for (x = 0; x < x_mis; x++)
123       current_segment_ids[mi_offset + y * cm->mi_cols + x] =
124           last_segment_ids ? last_segment_ids[mi_offset + y * cm->mi_cols + x]
125                            : 0;
126 }
127 
read_intra_segment_id(VP9_COMMON * const cm,int mi_offset,int x_mis,int y_mis,vpx_reader * r)128 static int read_intra_segment_id(VP9_COMMON *const cm, int mi_offset, int x_mis,
129                                  int y_mis, vpx_reader *r) {
130   struct segmentation *const seg = &cm->seg;
131   int segment_id;
132 
133   if (!seg->enabled) return 0;  // Default for disabled segmentation
134 
135   if (!seg->update_map) {
136     copy_segment_id(cm, cm->last_frame_seg_map, cm->current_frame_seg_map,
137                     mi_offset, x_mis, y_mis);
138     return 0;
139   }
140 
141   segment_id = read_segment_id(r, seg);
142   set_segment_id(cm, mi_offset, x_mis, y_mis, segment_id);
143   return segment_id;
144 }
145 
read_inter_segment_id(VP9_COMMON * const cm,MACROBLOCKD * const xd,int mi_row,int mi_col,vpx_reader * r,int x_mis,int y_mis)146 static int read_inter_segment_id(VP9_COMMON *const cm, MACROBLOCKD *const xd,
147                                  int mi_row, int mi_col, vpx_reader *r,
148                                  int x_mis, int y_mis) {
149   struct segmentation *const seg = &cm->seg;
150   MODE_INFO *const mi = xd->mi[0];
151   int predicted_segment_id, segment_id;
152   const int mi_offset = mi_row * cm->mi_cols + mi_col;
153 
154   if (!seg->enabled) return 0;  // Default for disabled segmentation
155 
156   predicted_segment_id = cm->last_frame_seg_map
157                              ? dec_get_segment_id(cm, cm->last_frame_seg_map,
158                                                   mi_offset, x_mis, y_mis)
159                              : 0;
160 
161   if (!seg->update_map) {
162     copy_segment_id(cm, cm->last_frame_seg_map, cm->current_frame_seg_map,
163                     mi_offset, x_mis, y_mis);
164     return predicted_segment_id;
165   }
166 
167   if (seg->temporal_update) {
168     const vpx_prob pred_prob = vp9_get_pred_prob_seg_id(seg, xd);
169     mi->seg_id_predicted = vpx_read(r, pred_prob);
170     segment_id =
171         mi->seg_id_predicted ? predicted_segment_id : read_segment_id(r, seg);
172   } else {
173     segment_id = read_segment_id(r, seg);
174   }
175   set_segment_id(cm, mi_offset, x_mis, y_mis, segment_id);
176   return segment_id;
177 }
178 
read_skip(VP9_COMMON * cm,const MACROBLOCKD * xd,int segment_id,vpx_reader * r)179 static int read_skip(VP9_COMMON *cm, const MACROBLOCKD *xd, int segment_id,
180                      vpx_reader *r) {
181   if (segfeature_active(&cm->seg, segment_id, SEG_LVL_SKIP)) {
182     return 1;
183   } else {
184     const int ctx = vp9_get_skip_context(xd);
185     const int skip = vpx_read(r, cm->fc->skip_probs[ctx]);
186     FRAME_COUNTS *counts = xd->counts;
187     if (counts) ++counts->skip[ctx][skip];
188     return skip;
189   }
190 }
191 
read_intra_frame_mode_info(VP9_COMMON * const cm,MACROBLOCKD * const xd,int mi_row,int mi_col,vpx_reader * r,int x_mis,int y_mis)192 static void read_intra_frame_mode_info(VP9_COMMON *const cm,
193                                        MACROBLOCKD *const xd, int mi_row,
194                                        int mi_col, vpx_reader *r, int x_mis,
195                                        int y_mis) {
196   MODE_INFO *const mi = xd->mi[0];
197   const MODE_INFO *above_mi = xd->above_mi;
198   const MODE_INFO *left_mi = xd->left_mi;
199   const BLOCK_SIZE bsize = mi->sb_type;
200   int i;
201   const int mi_offset = mi_row * cm->mi_cols + mi_col;
202 
203   mi->segment_id = read_intra_segment_id(cm, mi_offset, x_mis, y_mis, r);
204   mi->skip = read_skip(cm, xd, mi->segment_id, r);
205   mi->tx_size = read_tx_size(cm, xd, 1, r);
206   mi->ref_frame[0] = INTRA_FRAME;
207   mi->ref_frame[1] = NONE;
208 
209   switch (bsize) {
210     case BLOCK_4X4:
211       for (i = 0; i < 4; ++i)
212         mi->bmi[i].as_mode =
213             read_intra_mode(r, get_y_mode_probs(mi, above_mi, left_mi, i));
214       mi->mode = mi->bmi[3].as_mode;
215       break;
216     case BLOCK_4X8:
217       mi->bmi[0].as_mode = mi->bmi[2].as_mode =
218           read_intra_mode(r, get_y_mode_probs(mi, above_mi, left_mi, 0));
219       mi->bmi[1].as_mode = mi->bmi[3].as_mode = mi->mode =
220           read_intra_mode(r, get_y_mode_probs(mi, above_mi, left_mi, 1));
221       break;
222     case BLOCK_8X4:
223       mi->bmi[0].as_mode = mi->bmi[1].as_mode =
224           read_intra_mode(r, get_y_mode_probs(mi, above_mi, left_mi, 0));
225       mi->bmi[2].as_mode = mi->bmi[3].as_mode = mi->mode =
226           read_intra_mode(r, get_y_mode_probs(mi, above_mi, left_mi, 2));
227       break;
228     default:
229       mi->mode = read_intra_mode(r, get_y_mode_probs(mi, above_mi, left_mi, 0));
230   }
231 
232   mi->uv_mode = read_intra_mode(r, vp9_kf_uv_mode_prob[mi->mode]);
233 }
234 
read_mv_component(vpx_reader * r,const nmv_component * mvcomp,int usehp)235 static int read_mv_component(vpx_reader *r, const nmv_component *mvcomp,
236                              int usehp) {
237   int mag, d, fr, hp;
238   const int sign = vpx_read(r, mvcomp->sign);
239   const int mv_class = vpx_read_tree(r, vp9_mv_class_tree, mvcomp->classes);
240   const int class0 = mv_class == MV_CLASS_0;
241 
242   // Integer part
243   if (class0) {
244     d = vpx_read(r, mvcomp->class0[0]);
245     mag = 0;
246   } else {
247     int i;
248     const int n = mv_class + CLASS0_BITS - 1;  // number of bits
249 
250     d = 0;
251     for (i = 0; i < n; ++i) d |= vpx_read(r, mvcomp->bits[i]) << i;
252     mag = CLASS0_SIZE << (mv_class + 2);
253   }
254 
255   // Fractional part
256   fr = vpx_read_tree(r, vp9_mv_fp_tree,
257                      class0 ? mvcomp->class0_fp[d] : mvcomp->fp);
258 
259   // High precision part (if hp is not used, the default value of the hp is 1)
260   hp = usehp ? vpx_read(r, class0 ? mvcomp->class0_hp : mvcomp->hp) : 1;
261 
262   // Result
263   mag += ((d << 3) | (fr << 1) | hp) + 1;
264   return sign ? -mag : mag;
265 }
266 
read_mv(vpx_reader * r,MV * mv,const MV * ref,const nmv_context * ctx,nmv_context_counts * counts,int allow_hp)267 static INLINE void read_mv(vpx_reader *r, MV *mv, const MV *ref,
268                            const nmv_context *ctx, nmv_context_counts *counts,
269                            int allow_hp) {
270   const MV_JOINT_TYPE joint_type =
271       (MV_JOINT_TYPE)vpx_read_tree(r, vp9_mv_joint_tree, ctx->joints);
272   const int use_hp = allow_hp && use_mv_hp(ref);
273   MV diff = { 0, 0 };
274 
275   if (mv_joint_vertical(joint_type))
276     diff.row = read_mv_component(r, &ctx->comps[0], use_hp);
277 
278   if (mv_joint_horizontal(joint_type))
279     diff.col = read_mv_component(r, &ctx->comps[1], use_hp);
280 
281   vp9_inc_mv(&diff, counts);
282 
283   mv->row = ref->row + diff.row;
284   mv->col = ref->col + diff.col;
285 }
286 
read_block_reference_mode(VP9_COMMON * cm,const MACROBLOCKD * xd,vpx_reader * r)287 static REFERENCE_MODE read_block_reference_mode(VP9_COMMON *cm,
288                                                 const MACROBLOCKD *xd,
289                                                 vpx_reader *r) {
290   if (cm->reference_mode == REFERENCE_MODE_SELECT) {
291     const int ctx = vp9_get_reference_mode_context(cm, xd);
292     const REFERENCE_MODE mode =
293         (REFERENCE_MODE)vpx_read(r, cm->fc->comp_inter_prob[ctx]);
294     FRAME_COUNTS *counts = xd->counts;
295     if (counts) ++counts->comp_inter[ctx][mode];
296     return mode;  // SINGLE_REFERENCE or COMPOUND_REFERENCE
297   } else {
298     return cm->reference_mode;
299   }
300 }
301 
302 // Read the referncence frame
read_ref_frames(VP9_COMMON * const cm,MACROBLOCKD * const xd,vpx_reader * r,int segment_id,MV_REFERENCE_FRAME ref_frame[2])303 static void read_ref_frames(VP9_COMMON *const cm, MACROBLOCKD *const xd,
304                             vpx_reader *r, int segment_id,
305                             MV_REFERENCE_FRAME ref_frame[2]) {
306   FRAME_CONTEXT *const fc = cm->fc;
307   FRAME_COUNTS *counts = xd->counts;
308 
309   if (segfeature_active(&cm->seg, segment_id, SEG_LVL_REF_FRAME)) {
310     ref_frame[0] = (MV_REFERENCE_FRAME)get_segdata(&cm->seg, segment_id,
311                                                    SEG_LVL_REF_FRAME);
312     ref_frame[1] = NONE;
313   } else {
314     const REFERENCE_MODE mode = read_block_reference_mode(cm, xd, r);
315     // FIXME(rbultje) I'm pretty sure this breaks segmentation ref frame coding
316     if (mode == COMPOUND_REFERENCE) {
317       const int idx = cm->ref_frame_sign_bias[cm->comp_fixed_ref];
318       const int ctx = vp9_get_pred_context_comp_ref_p(cm, xd);
319       const int bit = vpx_read(r, fc->comp_ref_prob[ctx]);
320       if (counts) ++counts->comp_ref[ctx][bit];
321       ref_frame[idx] = cm->comp_fixed_ref;
322       ref_frame[!idx] = cm->comp_var_ref[bit];
323     } else if (mode == SINGLE_REFERENCE) {
324       const int ctx0 = vp9_get_pred_context_single_ref_p1(xd);
325       const int bit0 = vpx_read(r, fc->single_ref_prob[ctx0][0]);
326       if (counts) ++counts->single_ref[ctx0][0][bit0];
327       if (bit0) {
328         const int ctx1 = vp9_get_pred_context_single_ref_p2(xd);
329         const int bit1 = vpx_read(r, fc->single_ref_prob[ctx1][1]);
330         if (counts) ++counts->single_ref[ctx1][1][bit1];
331         ref_frame[0] = bit1 ? ALTREF_FRAME : GOLDEN_FRAME;
332       } else {
333         ref_frame[0] = LAST_FRAME;
334       }
335 
336       ref_frame[1] = NONE;
337     } else {
338       assert(0 && "Invalid prediction mode.");
339     }
340   }
341 }
342 
read_switchable_interp_filter(VP9_COMMON * const cm,MACROBLOCKD * const xd,vpx_reader * r)343 static INLINE INTERP_FILTER read_switchable_interp_filter(VP9_COMMON *const cm,
344                                                           MACROBLOCKD *const xd,
345                                                           vpx_reader *r) {
346   const int ctx = get_pred_context_switchable_interp(xd);
347   const INTERP_FILTER type = (INTERP_FILTER)vpx_read_tree(
348       r, vp9_switchable_interp_tree, cm->fc->switchable_interp_prob[ctx]);
349   FRAME_COUNTS *counts = xd->counts;
350   if (counts) ++counts->switchable_interp[ctx][type];
351   return type;
352 }
353 
read_intra_block_mode_info(VP9_COMMON * const cm,MACROBLOCKD * const xd,MODE_INFO * mi,vpx_reader * r)354 static void read_intra_block_mode_info(VP9_COMMON *const cm,
355                                        MACROBLOCKD *const xd, MODE_INFO *mi,
356                                        vpx_reader *r) {
357   const BLOCK_SIZE bsize = mi->sb_type;
358   int i;
359 
360   switch (bsize) {
361     case BLOCK_4X4:
362       for (i = 0; i < 4; ++i)
363         mi->bmi[i].as_mode = read_intra_mode_y(cm, xd, r, 0);
364       mi->mode = mi->bmi[3].as_mode;
365       break;
366     case BLOCK_4X8:
367       mi->bmi[0].as_mode = mi->bmi[2].as_mode = read_intra_mode_y(cm, xd, r, 0);
368       mi->bmi[1].as_mode = mi->bmi[3].as_mode = mi->mode =
369           read_intra_mode_y(cm, xd, r, 0);
370       break;
371     case BLOCK_8X4:
372       mi->bmi[0].as_mode = mi->bmi[1].as_mode = read_intra_mode_y(cm, xd, r, 0);
373       mi->bmi[2].as_mode = mi->bmi[3].as_mode = mi->mode =
374           read_intra_mode_y(cm, xd, r, 0);
375       break;
376     default: mi->mode = read_intra_mode_y(cm, xd, r, size_group_lookup[bsize]);
377   }
378 
379   mi->uv_mode = read_intra_mode_uv(cm, xd, r, mi->mode);
380 
381   // Initialize interp_filter here so we do not have to check for inter block
382   // modes in get_pred_context_switchable_interp()
383   mi->interp_filter = SWITCHABLE_FILTERS;
384 
385   mi->ref_frame[0] = INTRA_FRAME;
386   mi->ref_frame[1] = NONE;
387 }
388 
is_mv_valid(const MV * mv)389 static INLINE int is_mv_valid(const MV *mv) {
390   return mv->row > MV_LOW && mv->row < MV_UPP && mv->col > MV_LOW &&
391          mv->col < MV_UPP;
392 }
393 
copy_mv_pair(int_mv * dst,const int_mv * src)394 static INLINE void copy_mv_pair(int_mv *dst, const int_mv *src) {
395   memcpy(dst, src, sizeof(*dst) * 2);
396 }
397 
zero_mv_pair(int_mv * dst)398 static INLINE void zero_mv_pair(int_mv *dst) {
399   memset(dst, 0, sizeof(*dst) * 2);
400 }
401 
assign_mv(VP9_COMMON * cm,MACROBLOCKD * xd,PREDICTION_MODE mode,int_mv mv[2],int_mv ref_mv[2],int_mv near_nearest_mv[2],int is_compound,int allow_hp,vpx_reader * r)402 static INLINE int assign_mv(VP9_COMMON *cm, MACROBLOCKD *xd,
403                             PREDICTION_MODE mode, int_mv mv[2],
404                             int_mv ref_mv[2], int_mv near_nearest_mv[2],
405                             int is_compound, int allow_hp, vpx_reader *r) {
406   int i;
407   int ret = 1;
408 
409   switch (mode) {
410     case NEWMV: {
411       FRAME_COUNTS *counts = xd->counts;
412       nmv_context_counts *const mv_counts = counts ? &counts->mv : NULL;
413       for (i = 0; i < 1 + is_compound; ++i) {
414         read_mv(r, &mv[i].as_mv, &ref_mv[i].as_mv, &cm->fc->nmvc, mv_counts,
415                 allow_hp);
416         ret = ret && is_mv_valid(&mv[i].as_mv);
417       }
418       break;
419     }
420     case NEARMV:
421     case NEARESTMV: {
422       copy_mv_pair(mv, near_nearest_mv);
423       break;
424     }
425     case ZEROMV: {
426       zero_mv_pair(mv);
427       break;
428     }
429     default: { return 0; }
430   }
431   return ret;
432 }
433 
read_is_inter_block(VP9_COMMON * const cm,MACROBLOCKD * const xd,int segment_id,vpx_reader * r)434 static int read_is_inter_block(VP9_COMMON *const cm, MACROBLOCKD *const xd,
435                                int segment_id, vpx_reader *r) {
436   if (segfeature_active(&cm->seg, segment_id, SEG_LVL_REF_FRAME)) {
437     return get_segdata(&cm->seg, segment_id, SEG_LVL_REF_FRAME) != INTRA_FRAME;
438   } else {
439     const int ctx = get_intra_inter_context(xd);
440     const int is_inter = vpx_read(r, cm->fc->intra_inter_prob[ctx]);
441     FRAME_COUNTS *counts = xd->counts;
442     if (counts) ++counts->intra_inter[ctx][is_inter];
443     return is_inter;
444   }
445 }
446 
447 // This macro is used to add a motion vector mv_ref list if it isn't
448 // already in the list.  If it's the second motion vector or early_break
449 // it will also skip all additional processing and jump to Done!
450 #define ADD_MV_REF_LIST_EB(mv, refmv_count, mv_ref_list, Done) \
451   do {                                                         \
452     if (refmv_count) {                                         \
453       if ((mv).as_int != (mv_ref_list)[0].as_int) {            \
454         (mv_ref_list)[(refmv_count)] = (mv);                   \
455         refmv_count++;                                         \
456         goto Done;                                             \
457       }                                                        \
458     } else {                                                   \
459       (mv_ref_list)[(refmv_count)++] = (mv);                   \
460       if (early_break) goto Done;                              \
461     }                                                          \
462   } while (0)
463 
464 // If either reference frame is different, not INTRA, and they
465 // are different from each other scale and add the mv to our list.
466 #define IF_DIFF_REF_FRAME_ADD_MV_EB(mbmi, ref_frame, ref_sign_bias,       \
467                                     refmv_count, mv_ref_list, Done)       \
468   do {                                                                    \
469     if (is_inter_block(mbmi)) {                                           \
470       if ((mbmi)->ref_frame[0] != ref_frame)                              \
471         ADD_MV_REF_LIST_EB(scale_mv((mbmi), 0, ref_frame, ref_sign_bias), \
472                            refmv_count, mv_ref_list, Done);               \
473       if (has_second_ref(mbmi) && (mbmi)->ref_frame[1] != ref_frame &&    \
474           (mbmi)->mv[1].as_int != (mbmi)->mv[0].as_int)                   \
475         ADD_MV_REF_LIST_EB(scale_mv((mbmi), 1, ref_frame, ref_sign_bias), \
476                            refmv_count, mv_ref_list, Done);               \
477     }                                                                     \
478   } while (0)
479 
480 // This function searches the neighborhood of a given MB/SB
481 // to try and find candidate reference vectors.
dec_find_mv_refs(const VP9_COMMON * cm,const MACROBLOCKD * xd,PREDICTION_MODE mode,MV_REFERENCE_FRAME ref_frame,const POSITION * const mv_ref_search,int_mv * mv_ref_list,int mi_row,int mi_col,int block)482 static int dec_find_mv_refs(const VP9_COMMON *cm, const MACROBLOCKD *xd,
483                             PREDICTION_MODE mode, MV_REFERENCE_FRAME ref_frame,
484                             const POSITION *const mv_ref_search,
485                             int_mv *mv_ref_list, int mi_row, int mi_col,
486                             int block) {
487   const int *ref_sign_bias = cm->ref_frame_sign_bias;
488   int i, refmv_count = 0;
489   int different_ref_found = 0;
490   const MV_REF *const prev_frame_mvs =
491       cm->use_prev_frame_mvs
492           ? cm->prev_frame->mvs + mi_row * cm->mi_cols + mi_col
493           : NULL;
494   const TileInfo *const tile = &xd->tile;
495   // If mode is nearestmv or newmv (uses nearestmv as a reference) then stop
496   // searching after the first mv is found.
497   const int early_break = (mode != NEARMV);
498 
499   // Blank the reference vector list
500   memset(mv_ref_list, 0, sizeof(*mv_ref_list) * MAX_MV_REF_CANDIDATES);
501 
502   i = 0;
503   if (block >= 0) {
504     // If the size < 8x8 we get the mv from the bmi substructure for the
505     // nearest two blocks.
506     for (i = 0; i < 2; ++i) {
507       const POSITION *const mv_ref = &mv_ref_search[i];
508       if (is_inside(tile, mi_col, mi_row, cm->mi_rows, mv_ref)) {
509         const MODE_INFO *const candidate_mi =
510             xd->mi[mv_ref->col + mv_ref->row * xd->mi_stride];
511         different_ref_found = 1;
512 
513         if (candidate_mi->ref_frame[0] == ref_frame)
514           ADD_MV_REF_LIST_EB(
515               get_sub_block_mv(candidate_mi, 0, mv_ref->col, block),
516               refmv_count, mv_ref_list, Done);
517         else if (candidate_mi->ref_frame[1] == ref_frame)
518           ADD_MV_REF_LIST_EB(
519               get_sub_block_mv(candidate_mi, 1, mv_ref->col, block),
520               refmv_count, mv_ref_list, Done);
521       }
522     }
523   }
524 
525   // Check the rest of the neighbors in much the same way
526   // as before except we don't need to keep track of sub blocks or
527   // mode counts.
528   for (; i < MVREF_NEIGHBOURS; ++i) {
529     const POSITION *const mv_ref = &mv_ref_search[i];
530     if (is_inside(tile, mi_col, mi_row, cm->mi_rows, mv_ref)) {
531       const MODE_INFO *const candidate =
532           xd->mi[mv_ref->col + mv_ref->row * xd->mi_stride];
533       different_ref_found = 1;
534 
535       if (candidate->ref_frame[0] == ref_frame)
536         ADD_MV_REF_LIST_EB(candidate->mv[0], refmv_count, mv_ref_list, Done);
537       else if (candidate->ref_frame[1] == ref_frame)
538         ADD_MV_REF_LIST_EB(candidate->mv[1], refmv_count, mv_ref_list, Done);
539     }
540   }
541 
542   // Check the last frame's mode and mv info.
543   if (prev_frame_mvs) {
544     if (prev_frame_mvs->ref_frame[0] == ref_frame) {
545       ADD_MV_REF_LIST_EB(prev_frame_mvs->mv[0], refmv_count, mv_ref_list, Done);
546     } else if (prev_frame_mvs->ref_frame[1] == ref_frame) {
547       ADD_MV_REF_LIST_EB(prev_frame_mvs->mv[1], refmv_count, mv_ref_list, Done);
548     }
549   }
550 
551   // Since we couldn't find 2 mvs from the same reference frame
552   // go back through the neighbors and find motion vectors from
553   // different reference frames.
554   if (different_ref_found) {
555     for (i = 0; i < MVREF_NEIGHBOURS; ++i) {
556       const POSITION *mv_ref = &mv_ref_search[i];
557       if (is_inside(tile, mi_col, mi_row, cm->mi_rows, mv_ref)) {
558         const MODE_INFO *const candidate =
559             xd->mi[mv_ref->col + mv_ref->row * xd->mi_stride];
560 
561         // If the candidate is INTRA we don't want to consider its mv.
562         IF_DIFF_REF_FRAME_ADD_MV_EB(candidate, ref_frame, ref_sign_bias,
563                                     refmv_count, mv_ref_list, Done);
564       }
565     }
566   }
567 
568   // Since we still don't have a candidate we'll try the last frame.
569   if (prev_frame_mvs) {
570     if (prev_frame_mvs->ref_frame[0] != ref_frame &&
571         prev_frame_mvs->ref_frame[0] > INTRA_FRAME) {
572       int_mv mv = prev_frame_mvs->mv[0];
573       if (ref_sign_bias[prev_frame_mvs->ref_frame[0]] !=
574           ref_sign_bias[ref_frame]) {
575         mv.as_mv.row *= -1;
576         mv.as_mv.col *= -1;
577       }
578       ADD_MV_REF_LIST_EB(mv, refmv_count, mv_ref_list, Done);
579     }
580 
581     if (prev_frame_mvs->ref_frame[1] > INTRA_FRAME &&
582         prev_frame_mvs->ref_frame[1] != ref_frame &&
583         prev_frame_mvs->mv[1].as_int != prev_frame_mvs->mv[0].as_int) {
584       int_mv mv = prev_frame_mvs->mv[1];
585       if (ref_sign_bias[prev_frame_mvs->ref_frame[1]] !=
586           ref_sign_bias[ref_frame]) {
587         mv.as_mv.row *= -1;
588         mv.as_mv.col *= -1;
589       }
590       ADD_MV_REF_LIST_EB(mv, refmv_count, mv_ref_list, Done);
591     }
592   }
593 
594   if (mode == NEARMV)
595     refmv_count = MAX_MV_REF_CANDIDATES;
596   else
597     // we only care about the nearestmv for the remaining modes
598     refmv_count = 1;
599 
600 Done:
601   // Clamp vectors
602   for (i = 0; i < refmv_count; ++i) clamp_mv_ref(&mv_ref_list[i].as_mv, xd);
603 
604   return refmv_count;
605 }
606 
append_sub8x8_mvs_for_idx(VP9_COMMON * cm,MACROBLOCKD * xd,const POSITION * const mv_ref_search,PREDICTION_MODE b_mode,int block,int ref,int mi_row,int mi_col,int_mv * best_sub8x8)607 static void append_sub8x8_mvs_for_idx(VP9_COMMON *cm, MACROBLOCKD *xd,
608                                       const POSITION *const mv_ref_search,
609                                       PREDICTION_MODE b_mode, int block,
610                                       int ref, int mi_row, int mi_col,
611                                       int_mv *best_sub8x8) {
612   int_mv mv_list[MAX_MV_REF_CANDIDATES];
613   MODE_INFO *const mi = xd->mi[0];
614   b_mode_info *bmi = mi->bmi;
615   int n;
616   int refmv_count;
617 
618   assert(MAX_MV_REF_CANDIDATES == 2);
619 
620   switch (block) {
621     case 0:
622       refmv_count =
623           dec_find_mv_refs(cm, xd, b_mode, mi->ref_frame[ref], mv_ref_search,
624                            mv_list, mi_row, mi_col, block);
625       best_sub8x8->as_int = mv_list[refmv_count - 1].as_int;
626       break;
627     case 1:
628     case 2:
629       if (b_mode == NEARESTMV) {
630         best_sub8x8->as_int = bmi[0].as_mv[ref].as_int;
631       } else {
632         dec_find_mv_refs(cm, xd, b_mode, mi->ref_frame[ref], mv_ref_search,
633                          mv_list, mi_row, mi_col, block);
634         best_sub8x8->as_int = 0;
635         for (n = 0; n < 2; ++n)
636           if (bmi[0].as_mv[ref].as_int != mv_list[n].as_int) {
637             best_sub8x8->as_int = mv_list[n].as_int;
638             break;
639           }
640       }
641       break;
642     case 3:
643       if (b_mode == NEARESTMV) {
644         best_sub8x8->as_int = bmi[2].as_mv[ref].as_int;
645       } else {
646         best_sub8x8->as_int = 0;
647         if (bmi[2].as_mv[ref].as_int != bmi[1].as_mv[ref].as_int) {
648           best_sub8x8->as_int = bmi[1].as_mv[ref].as_int;
649           break;
650         }
651         if (bmi[2].as_mv[ref].as_int != bmi[0].as_mv[ref].as_int) {
652           best_sub8x8->as_int = bmi[0].as_mv[ref].as_int;
653           break;
654         }
655         dec_find_mv_refs(cm, xd, b_mode, mi->ref_frame[ref], mv_ref_search,
656                          mv_list, mi_row, mi_col, block);
657         for (n = 0; n < 2; ++n)
658           if (bmi[2].as_mv[ref].as_int != mv_list[n].as_int) {
659             best_sub8x8->as_int = mv_list[n].as_int;
660             break;
661           }
662       }
663       break;
664     default: assert(0 && "Invalid block index.");
665   }
666 }
667 
get_mode_context(const VP9_COMMON * cm,const MACROBLOCKD * xd,const POSITION * const mv_ref_search,int mi_row,int mi_col)668 static uint8_t get_mode_context(const VP9_COMMON *cm, const MACROBLOCKD *xd,
669                                 const POSITION *const mv_ref_search, int mi_row,
670                                 int mi_col) {
671   int i;
672   int context_counter = 0;
673   const TileInfo *const tile = &xd->tile;
674 
675   // Get mode count from nearest 2 blocks
676   for (i = 0; i < 2; ++i) {
677     const POSITION *const mv_ref = &mv_ref_search[i];
678     if (is_inside(tile, mi_col, mi_row, cm->mi_rows, mv_ref)) {
679       const MODE_INFO *const candidate =
680           xd->mi[mv_ref->col + mv_ref->row * xd->mi_stride];
681       // Keep counts for entropy encoding.
682       context_counter += mode_2_counter[candidate->mode];
683     }
684   }
685 
686   return counter_to_context[context_counter];
687 }
688 
read_inter_block_mode_info(VP9Decoder * const pbi,MACROBLOCKD * const xd,MODE_INFO * const mi,int mi_row,int mi_col,vpx_reader * r)689 static void read_inter_block_mode_info(VP9Decoder *const pbi,
690                                        MACROBLOCKD *const xd,
691                                        MODE_INFO *const mi, int mi_row,
692                                        int mi_col, vpx_reader *r) {
693   VP9_COMMON *const cm = &pbi->common;
694   const BLOCK_SIZE bsize = mi->sb_type;
695   const int allow_hp = cm->allow_high_precision_mv;
696   int_mv best_ref_mvs[2] = { { 0 }, { 0 } };
697   int ref, is_compound;
698   uint8_t inter_mode_ctx;
699   const POSITION *const mv_ref_search = mv_ref_blocks[bsize];
700 
701   read_ref_frames(cm, xd, r, mi->segment_id, mi->ref_frame);
702   is_compound = has_second_ref(mi);
703   inter_mode_ctx = get_mode_context(cm, xd, mv_ref_search, mi_row, mi_col);
704 
705   if (segfeature_active(&cm->seg, mi->segment_id, SEG_LVL_SKIP)) {
706     mi->mode = ZEROMV;
707     if (bsize < BLOCK_8X8) {
708       vpx_internal_error(xd->error_info, VPX_CODEC_UNSUP_BITSTREAM,
709                          "Invalid usage of segement feature on small blocks");
710       return;
711     }
712   } else {
713     if (bsize >= BLOCK_8X8)
714       mi->mode = read_inter_mode(cm, xd, r, inter_mode_ctx);
715   }
716 
717   mi->interp_filter = (cm->interp_filter == SWITCHABLE)
718                           ? read_switchable_interp_filter(cm, xd, r)
719                           : cm->interp_filter;
720 
721   if (bsize < BLOCK_8X8) {
722     const int num_4x4_w = 1 << xd->bmode_blocks_wl;
723     const int num_4x4_h = 1 << xd->bmode_blocks_hl;
724     int idx, idy;
725     PREDICTION_MODE b_mode;
726     int got_mv_refs_for_new = 0;
727     int_mv best_sub8x8[2];
728     const uint32_t invalid_mv = 0x80008000;
729     // Initialize the 2nd element as even though it won't be used meaningfully
730     // if is_compound is false, copying/clamping it may trigger a MSan warning.
731     best_sub8x8[1].as_int = invalid_mv;
732     for (idy = 0; idy < 2; idy += num_4x4_h) {
733       for (idx = 0; idx < 2; idx += num_4x4_w) {
734         const int j = idy * 2 + idx;
735         b_mode = read_inter_mode(cm, xd, r, inter_mode_ctx);
736 
737         if (b_mode == NEARESTMV || b_mode == NEARMV) {
738           for (ref = 0; ref < 1 + is_compound; ++ref)
739             append_sub8x8_mvs_for_idx(cm, xd, mv_ref_search, b_mode, j, ref,
740                                       mi_row, mi_col, &best_sub8x8[ref]);
741         } else if (b_mode == NEWMV && !got_mv_refs_for_new) {
742           for (ref = 0; ref < 1 + is_compound; ++ref) {
743             int_mv tmp_mvs[MAX_MV_REF_CANDIDATES];
744             const MV_REFERENCE_FRAME frame = mi->ref_frame[ref];
745 
746             dec_find_mv_refs(cm, xd, NEWMV, frame, mv_ref_search, tmp_mvs,
747                              mi_row, mi_col, -1);
748 
749             lower_mv_precision(&tmp_mvs[0].as_mv, allow_hp);
750             best_ref_mvs[ref] = tmp_mvs[0];
751             got_mv_refs_for_new = 1;
752           }
753         }
754 
755         if (!assign_mv(cm, xd, b_mode, mi->bmi[j].as_mv, best_ref_mvs,
756                        best_sub8x8, is_compound, allow_hp, r)) {
757           xd->corrupted |= 1;
758           break;
759         }
760 
761         if (num_4x4_h == 2) mi->bmi[j + 2] = mi->bmi[j];
762         if (num_4x4_w == 2) mi->bmi[j + 1] = mi->bmi[j];
763       }
764     }
765 
766     mi->mode = b_mode;
767 
768     copy_mv_pair(mi->mv, mi->bmi[3].as_mv);
769   } else {
770     if (mi->mode != ZEROMV) {
771       for (ref = 0; ref < 1 + is_compound; ++ref) {
772         int_mv tmp_mvs[MAX_MV_REF_CANDIDATES];
773         const MV_REFERENCE_FRAME frame = mi->ref_frame[ref];
774         int refmv_count =
775             dec_find_mv_refs(cm, xd, mi->mode, frame, mv_ref_search, tmp_mvs,
776                              mi_row, mi_col, -1);
777         lower_mv_precision(&tmp_mvs[refmv_count - 1].as_mv, allow_hp);
778         best_ref_mvs[ref] = tmp_mvs[refmv_count - 1];
779       }
780     }
781     xd->corrupted |= !assign_mv(cm, xd, mi->mode, mi->mv, best_ref_mvs,
782                                 best_ref_mvs, is_compound, allow_hp, r);
783   }
784 }
785 
read_inter_frame_mode_info(VP9Decoder * const pbi,MACROBLOCKD * const xd,int mi_row,int mi_col,vpx_reader * r,int x_mis,int y_mis)786 static void read_inter_frame_mode_info(VP9Decoder *const pbi,
787                                        MACROBLOCKD *const xd, int mi_row,
788                                        int mi_col, vpx_reader *r, int x_mis,
789                                        int y_mis) {
790   VP9_COMMON *const cm = &pbi->common;
791   MODE_INFO *const mi = xd->mi[0];
792   int inter_block;
793 
794   mi->segment_id =
795       read_inter_segment_id(cm, xd, mi_row, mi_col, r, x_mis, y_mis);
796   mi->skip = read_skip(cm, xd, mi->segment_id, r);
797   inter_block = read_is_inter_block(cm, xd, mi->segment_id, r);
798   mi->tx_size = read_tx_size(cm, xd, !mi->skip || !inter_block, r);
799 
800   if (inter_block)
801     read_inter_block_mode_info(pbi, xd, mi, mi_row, mi_col, r);
802   else
803     read_intra_block_mode_info(cm, xd, mi, r);
804 }
805 
copy_ref_frame_pair(MV_REFERENCE_FRAME * dst,const MV_REFERENCE_FRAME * src)806 static INLINE void copy_ref_frame_pair(MV_REFERENCE_FRAME *dst,
807                                        const MV_REFERENCE_FRAME *src) {
808   memcpy(dst, src, sizeof(*dst) * 2);
809 }
810 
vp9_read_mode_info(TileWorkerData * twd,VP9Decoder * const pbi,int mi_row,int mi_col,int x_mis,int y_mis)811 void vp9_read_mode_info(TileWorkerData *twd, VP9Decoder *const pbi, int mi_row,
812                         int mi_col, int x_mis, int y_mis) {
813   vpx_reader *r = &twd->bit_reader;
814   MACROBLOCKD *const xd = &twd->xd;
815   VP9_COMMON *const cm = &pbi->common;
816   MODE_INFO *const mi = xd->mi[0];
817   MV_REF *frame_mvs = cm->cur_frame->mvs + mi_row * cm->mi_cols + mi_col;
818   int w, h;
819 
820   if (frame_is_intra_only(cm)) {
821     read_intra_frame_mode_info(cm, xd, mi_row, mi_col, r, x_mis, y_mis);
822   } else {
823     read_inter_frame_mode_info(pbi, xd, mi_row, mi_col, r, x_mis, y_mis);
824 
825     for (h = 0; h < y_mis; ++h) {
826       for (w = 0; w < x_mis; ++w) {
827         MV_REF *const mv = frame_mvs + w;
828         copy_ref_frame_pair(mv->ref_frame, mi->ref_frame);
829         copy_mv_pair(mv->mv, mi->mv);
830       }
831       frame_mvs += cm->mi_cols;
832     }
833   }
834 #if 0   // CONFIG_BETTER_HW_COMPATIBILITY && CONFIG_VP9_HIGHBITDEPTH
835   if ((xd->cur_buf->flags & YV12_FLAG_HIGHBITDEPTH) &&
836       (xd->above_mi == NULL || xd->left_mi == NULL) &&
837       !is_inter_block(mi) && need_top_left[mi->uv_mode])
838     assert(0);
839 #endif  // CONFIG_BETTER_HW_COMPATIBILITY && CONFIG_VP9_HIGHBITDEPTH
840 }
841