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1 /*
2  * Copyright (c) 2016, Alliance for Open Media. All rights reserved
3  *
4  * This source code is subject to the terms of the BSD 2 Clause License and
5  * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
6  * was not distributed with this source code in the LICENSE file, you can
7  * obtain it at www.aomedia.org/license/software. If the Alliance for Open
8  * Media Patent License 1.0 was not distributed with this source code in the
9  * PATENTS file, you can obtain it at www.aomedia.org/license/patent.
10  */
11 
12 #include <math.h>
13 
14 #include "av1/common/common.h"
15 #include "av1/common/entropymode.h"
16 
17 #include "av1/encoder/cost.h"
18 #include "av1/encoder/encodemv.h"
19 
20 #include "aom_dsp/aom_dsp_common.h"
21 #include "aom_ports/bitops.h"
22 
update_mv_component_stats(int comp,nmv_component * mvcomp,MvSubpelPrecision precision)23 static void update_mv_component_stats(int comp, nmv_component *mvcomp,
24                                       MvSubpelPrecision precision) {
25   assert(comp != 0);
26   int offset;
27   const int sign = comp < 0;
28   const int mag = sign ? -comp : comp;
29   const int mv_class = av1_get_mv_class(mag - 1, &offset);
30   const int d = offset >> 3;         // int mv data
31   const int fr = (offset >> 1) & 3;  // fractional mv data
32   const int hp = offset & 1;         // high precision mv data
33 
34   // Sign
35   update_cdf(mvcomp->sign_cdf, sign, 2);
36 
37   // Class
38   update_cdf(mvcomp->classes_cdf, mv_class, MV_CLASSES);
39 
40   // Integer bits
41   if (mv_class == MV_CLASS_0) {
42     update_cdf(mvcomp->class0_cdf, d, CLASS0_SIZE);
43   } else {
44     const int n = mv_class + CLASS0_BITS - 1;  // number of bits
45     for (int i = 0; i < n; ++i)
46       update_cdf(mvcomp->bits_cdf[i], (d >> i) & 1, 2);
47   }
48   // Fractional bits
49   if (precision > MV_SUBPEL_NONE) {
50     aom_cdf_prob *fp_cdf =
51         mv_class == MV_CLASS_0 ? mvcomp->class0_fp_cdf[d] : mvcomp->fp_cdf;
52     update_cdf(fp_cdf, fr, MV_FP_SIZE);
53   }
54 
55   // High precision bit
56   if (precision > MV_SUBPEL_LOW_PRECISION) {
57     aom_cdf_prob *hp_cdf =
58         mv_class == MV_CLASS_0 ? mvcomp->class0_hp_cdf : mvcomp->hp_cdf;
59     update_cdf(hp_cdf, hp, 2);
60   }
61 }
62 
av1_update_mv_stats(const MV * mv,const MV * ref,nmv_context * mvctx,MvSubpelPrecision precision)63 void av1_update_mv_stats(const MV *mv, const MV *ref, nmv_context *mvctx,
64                          MvSubpelPrecision precision) {
65   const MV diff = { mv->row - ref->row, mv->col - ref->col };
66   const MV_JOINT_TYPE j = av1_get_mv_joint(&diff);
67 
68   update_cdf(mvctx->joints_cdf, j, MV_JOINTS);
69 
70   if (mv_joint_vertical(j))
71     update_mv_component_stats(diff.row, &mvctx->comps[0], precision);
72 
73   if (mv_joint_horizontal(j))
74     update_mv_component_stats(diff.col, &mvctx->comps[1], precision);
75 }
76 
encode_mv_component(aom_writer * w,int comp,nmv_component * mvcomp,MvSubpelPrecision precision)77 static void encode_mv_component(aom_writer *w, int comp, nmv_component *mvcomp,
78                                 MvSubpelPrecision precision) {
79   assert(comp != 0);
80   int offset;
81   const int sign = comp < 0;
82   const int mag = sign ? -comp : comp;
83   const int mv_class = av1_get_mv_class(mag - 1, &offset);
84   const int d = offset >> 3;         // int mv data
85   const int fr = (offset >> 1) & 3;  // fractional mv data
86   const int hp = offset & 1;         // high precision mv data
87 
88   // Sign
89   aom_write_symbol(w, sign, mvcomp->sign_cdf, 2);
90 
91   // Class
92   aom_write_symbol(w, mv_class, mvcomp->classes_cdf, MV_CLASSES);
93 
94   // Integer bits
95   if (mv_class == MV_CLASS_0) {
96     aom_write_symbol(w, d, mvcomp->class0_cdf, CLASS0_SIZE);
97   } else {
98     int i;
99     const int n = mv_class + CLASS0_BITS - 1;  // number of bits
100     for (i = 0; i < n; ++i)
101       aom_write_symbol(w, (d >> i) & 1, mvcomp->bits_cdf[i], 2);
102   }
103   // Fractional bits
104   if (precision > MV_SUBPEL_NONE) {
105     aom_write_symbol(
106         w, fr,
107         mv_class == MV_CLASS_0 ? mvcomp->class0_fp_cdf[d] : mvcomp->fp_cdf,
108         MV_FP_SIZE);
109   }
110 
111   // High precision bit
112   if (precision > MV_SUBPEL_LOW_PRECISION)
113     aom_write_symbol(
114         w, hp, mv_class == MV_CLASS_0 ? mvcomp->class0_hp_cdf : mvcomp->hp_cdf,
115         2);
116 }
117 
build_nmv_component_cost_table(int * mvcost,const nmv_component * const mvcomp,MvSubpelPrecision precision)118 static void build_nmv_component_cost_table(int *mvcost,
119                                            const nmv_component *const mvcomp,
120                                            MvSubpelPrecision precision) {
121   int i, v;
122   int sign_cost[2], class_cost[MV_CLASSES], class0_cost[CLASS0_SIZE];
123   int bits_cost[MV_OFFSET_BITS][2];
124   int class0_fp_cost[CLASS0_SIZE][MV_FP_SIZE], fp_cost[MV_FP_SIZE];
125   int class0_hp_cost[2], hp_cost[2];
126 
127   av1_cost_tokens_from_cdf(sign_cost, mvcomp->sign_cdf, NULL);
128   av1_cost_tokens_from_cdf(class_cost, mvcomp->classes_cdf, NULL);
129   av1_cost_tokens_from_cdf(class0_cost, mvcomp->class0_cdf, NULL);
130   for (i = 0; i < MV_OFFSET_BITS; ++i) {
131     av1_cost_tokens_from_cdf(bits_cost[i], mvcomp->bits_cdf[i], NULL);
132   }
133 
134   for (i = 0; i < CLASS0_SIZE; ++i)
135     av1_cost_tokens_from_cdf(class0_fp_cost[i], mvcomp->class0_fp_cdf[i], NULL);
136   av1_cost_tokens_from_cdf(fp_cost, mvcomp->fp_cdf, NULL);
137 
138   if (precision > MV_SUBPEL_LOW_PRECISION) {
139     av1_cost_tokens_from_cdf(class0_hp_cost, mvcomp->class0_hp_cdf, NULL);
140     av1_cost_tokens_from_cdf(hp_cost, mvcomp->hp_cdf, NULL);
141   }
142   mvcost[0] = 0;
143   for (v = 1; v <= MV_MAX; ++v) {
144     int z, c, o, d, e, f, cost = 0;
145     z = v - 1;
146     c = av1_get_mv_class(z, &o);
147     cost += class_cost[c];
148     d = (o >> 3);     /* int mv data */
149     f = (o >> 1) & 3; /* fractional pel mv data */
150     e = (o & 1);      /* high precision mv data */
151     if (c == MV_CLASS_0) {
152       cost += class0_cost[d];
153     } else {
154       const int b = c + CLASS0_BITS - 1; /* number of bits */
155       for (i = 0; i < b; ++i) cost += bits_cost[i][((d >> i) & 1)];
156     }
157     if (precision > MV_SUBPEL_NONE) {
158       if (c == MV_CLASS_0) {
159         cost += class0_fp_cost[d][f];
160       } else {
161         cost += fp_cost[f];
162       }
163       if (precision > MV_SUBPEL_LOW_PRECISION) {
164         if (c == MV_CLASS_0) {
165           cost += class0_hp_cost[e];
166         } else {
167           cost += hp_cost[e];
168         }
169       }
170     }
171     mvcost[v] = cost + sign_cost[0];
172     mvcost[-v] = cost + sign_cost[1];
173   }
174 }
175 
av1_encode_mv(AV1_COMP * cpi,aom_writer * w,const MV * mv,const MV * ref,nmv_context * mvctx,int usehp)176 void av1_encode_mv(AV1_COMP *cpi, aom_writer *w, const MV *mv, const MV *ref,
177                    nmv_context *mvctx, int usehp) {
178   const MV diff = { mv->row - ref->row, mv->col - ref->col };
179   const MV_JOINT_TYPE j = av1_get_mv_joint(&diff);
180   // If the mv_diff is zero, then we should have used near or nearest instead.
181   assert(j != MV_JOINT_ZERO);
182   if (cpi->common.features.cur_frame_force_integer_mv) {
183     usehp = MV_SUBPEL_NONE;
184   }
185   aom_write_symbol(w, j, mvctx->joints_cdf, MV_JOINTS);
186   if (mv_joint_vertical(j))
187     encode_mv_component(w, diff.row, &mvctx->comps[0], usehp);
188 
189   if (mv_joint_horizontal(j))
190     encode_mv_component(w, diff.col, &mvctx->comps[1], usehp);
191 
192   // If auto_mv_step_size is enabled then keep track of the largest
193   // motion vector component used.
194   if (cpi->sf.mv_sf.auto_mv_step_size) {
195     int maxv = AOMMAX(abs(mv->row), abs(mv->col)) >> 3;
196     cpi->mv_search_params.max_mv_magnitude =
197         AOMMAX(maxv, cpi->mv_search_params.max_mv_magnitude);
198   }
199 }
200 
av1_encode_dv(aom_writer * w,const MV * mv,const MV * ref,nmv_context * mvctx)201 void av1_encode_dv(aom_writer *w, const MV *mv, const MV *ref,
202                    nmv_context *mvctx) {
203   // DV and ref DV should not have sub-pel.
204   assert((mv->col & 7) == 0);
205   assert((mv->row & 7) == 0);
206   assert((ref->col & 7) == 0);
207   assert((ref->row & 7) == 0);
208   const MV diff = { mv->row - ref->row, mv->col - ref->col };
209   const MV_JOINT_TYPE j = av1_get_mv_joint(&diff);
210 
211   aom_write_symbol(w, j, mvctx->joints_cdf, MV_JOINTS);
212   if (mv_joint_vertical(j))
213     encode_mv_component(w, diff.row, &mvctx->comps[0], MV_SUBPEL_NONE);
214 
215   if (mv_joint_horizontal(j))
216     encode_mv_component(w, diff.col, &mvctx->comps[1], MV_SUBPEL_NONE);
217 }
218 
av1_build_nmv_cost_table(int * mvjoint,int * mvcost[2],const nmv_context * ctx,MvSubpelPrecision precision)219 void av1_build_nmv_cost_table(int *mvjoint, int *mvcost[2],
220                               const nmv_context *ctx,
221                               MvSubpelPrecision precision) {
222   av1_cost_tokens_from_cdf(mvjoint, ctx->joints_cdf, NULL);
223   build_nmv_component_cost_table(mvcost[0], &ctx->comps[0], precision);
224   build_nmv_component_cost_table(mvcost[1], &ctx->comps[1], precision);
225 }
226 
av1_get_ref_mv_from_stack(int ref_idx,const MV_REFERENCE_FRAME * ref_frame,int ref_mv_idx,const MB_MODE_INFO_EXT * mbmi_ext)227 int_mv av1_get_ref_mv_from_stack(int ref_idx,
228                                  const MV_REFERENCE_FRAME *ref_frame,
229                                  int ref_mv_idx,
230                                  const MB_MODE_INFO_EXT *mbmi_ext) {
231   const int8_t ref_frame_type = av1_ref_frame_type(ref_frame);
232   const CANDIDATE_MV *curr_ref_mv_stack =
233       mbmi_ext->ref_mv_stack[ref_frame_type];
234 
235   if (ref_frame[1] > INTRA_FRAME) {
236     assert(ref_idx == 0 || ref_idx == 1);
237     return ref_idx ? curr_ref_mv_stack[ref_mv_idx].comp_mv
238                    : curr_ref_mv_stack[ref_mv_idx].this_mv;
239   }
240 
241   assert(ref_idx == 0);
242   return ref_mv_idx < mbmi_ext->ref_mv_count[ref_frame_type]
243              ? curr_ref_mv_stack[ref_mv_idx].this_mv
244              : mbmi_ext->global_mvs[ref_frame_type];
245 }
246 
av1_get_ref_mv(const MACROBLOCK * x,int ref_idx)247 int_mv av1_get_ref_mv(const MACROBLOCK *x, int ref_idx) {
248   const MACROBLOCKD *xd = &x->e_mbd;
249   const MB_MODE_INFO *mbmi = xd->mi[0];
250   int ref_mv_idx = mbmi->ref_mv_idx;
251   if (mbmi->mode == NEAR_NEWMV || mbmi->mode == NEW_NEARMV) {
252     assert(has_second_ref(mbmi));
253     ref_mv_idx += 1;
254   }
255   return av1_get_ref_mv_from_stack(ref_idx, mbmi->ref_frame, ref_mv_idx,
256                                    x->mbmi_ext);
257 }
258 
av1_find_best_ref_mvs_from_stack(int allow_hp,const MB_MODE_INFO_EXT * mbmi_ext,MV_REFERENCE_FRAME ref_frame,int_mv * nearest_mv,int_mv * near_mv,int is_integer)259 void av1_find_best_ref_mvs_from_stack(int allow_hp,
260                                       const MB_MODE_INFO_EXT *mbmi_ext,
261                                       MV_REFERENCE_FRAME ref_frame,
262                                       int_mv *nearest_mv, int_mv *near_mv,
263                                       int is_integer) {
264   const int ref_idx = 0;
265   MV_REFERENCE_FRAME ref_frames[2] = { ref_frame, NONE_FRAME };
266   *nearest_mv = av1_get_ref_mv_from_stack(ref_idx, ref_frames, 0, mbmi_ext);
267   lower_mv_precision(&nearest_mv->as_mv, allow_hp, is_integer);
268   *near_mv = av1_get_ref_mv_from_stack(ref_idx, ref_frames, 1, mbmi_ext);
269   lower_mv_precision(&near_mv->as_mv, allow_hp, is_integer);
270 }
271