Coverage Report

Created: 2025-08-28 07:12

/src/libvpx/vp8/encoder/pickinter.c
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Count
Source (jump to first uncovered line)
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
#include <limits.h>
13
#include "vpx_config.h"
14
#include "./vpx_dsp_rtcd.h"
15
#include "onyx_int.h"
16
#include "modecosts.h"
17
#include "encodeintra.h"
18
#include "vp8/common/common.h"
19
#include "vp8/common/entropymode.h"
20
#include "pickinter.h"
21
#include "vp8/common/findnearmv.h"
22
#include "encodemb.h"
23
#include "vp8/common/reconinter.h"
24
#include "vp8/common/reconintra.h"
25
#include "vp8/common/reconintra4x4.h"
26
#include "vpx_dsp/variance.h"
27
#include "mcomp.h"
28
#include "vp8/common/vp8_skin_detection.h"
29
#include "rdopt.h"
30
#include "vpx_dsp/vpx_dsp_common.h"
31
#include "vpx_mem/vpx_mem.h"
32
#if CONFIG_TEMPORAL_DENOISING
33
#include "denoising.h"
34
#endif
35
36
#ifdef SPEEDSTATS
37
extern unsigned int cnt_pm;
38
#endif
39
40
extern const int vp8_ref_frame_order[MAX_MODES];
41
extern const MB_PREDICTION_MODE vp8_mode_order[MAX_MODES];
42
43
static int macroblock_corner_grad(unsigned char *signal, int stride,
44
                                  int offsetx, int offsety, int sgnx,
45
17.5k
                                  int sgny) {
46
17.5k
  int y1 = signal[offsetx * stride + offsety];
47
17.5k
  int y2 = signal[offsetx * stride + offsety + sgny];
48
17.5k
  int y3 = signal[(offsetx + sgnx) * stride + offsety];
49
17.5k
  int y4 = signal[(offsetx + sgnx) * stride + offsety + sgny];
50
17.5k
  return VPXMAX(VPXMAX(abs(y1 - y2), abs(y1 - y3)), abs(y1 - y4));
51
17.5k
}
52
53
static int check_dot_artifact_candidate(VP8_COMP *cpi, MACROBLOCK *x,
54
                                        unsigned char *target_last, int stride,
55
                                        unsigned char *last_ref, int mb_row,
56
2.25M
                                        int mb_col, int channel) {
57
2.25M
  int threshold1 = 6;
58
2.25M
  int threshold2 = 3;
59
2.25M
  unsigned int max_num = (cpi->common.MBs) / 10;
60
2.25M
  int grad_last = 0;
61
2.25M
  int grad_source = 0;
62
2.25M
  int index = mb_row * cpi->common.mb_cols + mb_col;
63
  // Threshold for #consecutive (base layer) frames using zero_last mode.
64
2.25M
  int num_frames = 30;
65
2.25M
  int shift = 15;
66
2.25M
  if (channel > 0) {
67
1.50M
    shift = 7;
68
1.50M
  }
69
2.25M
  if (cpi->oxcf.number_of_layers > 1) {
70
0
    num_frames = 20;
71
0
  }
72
2.25M
  x->zero_last_dot_suppress = 0;
73
  // Blocks on base layer frames that have been using ZEROMV_LAST repeatedly
74
  // (i.e, at least |x| consecutive frames are candidates for increasing the
75
  // rd adjustment for zero_last mode.
76
  // Only allow this for at most |max_num| blocks per frame.
77
  // Don't allow this for screen content input.
78
2.25M
  if (cpi->current_layer == 0 &&
79
2.25M
      cpi->consec_zero_last_mvbias[index] > num_frames &&
80
2.25M
      x->mbs_zero_last_dot_suppress < max_num &&
81
2.25M
      !cpi->oxcf.screen_content_mode) {
82
    // If this block is checked here, label it so we don't check it again until
83
    // ~|x| framaes later.
84
2.23k
    x->zero_last_dot_suppress = 1;
85
    // Dot artifact is noticeable as strong gradient at corners of macroblock,
86
    // for flat areas. As a simple detector for now, we look for a high
87
    // corner gradient on last ref, and a smaller gradient on source.
88
    // Check 4 corners, return if any satisfy condition.
89
    // Top-left:
90
2.23k
    grad_last = macroblock_corner_grad(last_ref, stride, 0, 0, 1, 1);
91
2.23k
    grad_source = macroblock_corner_grad(target_last, stride, 0, 0, 1, 1);
92
2.23k
    if (grad_last >= threshold1 && grad_source <= threshold2) {
93
33
      x->mbs_zero_last_dot_suppress++;
94
33
      return 1;
95
33
    }
96
    // Top-right:
97
2.19k
    grad_last = macroblock_corner_grad(last_ref, stride, 0, shift, 1, -1);
98
2.19k
    grad_source = macroblock_corner_grad(target_last, stride, 0, shift, 1, -1);
99
2.19k
    if (grad_last >= threshold1 && grad_source <= threshold2) {
100
19
      x->mbs_zero_last_dot_suppress++;
101
19
      return 1;
102
19
    }
103
    // Bottom-left:
104
2.17k
    grad_last = macroblock_corner_grad(last_ref, stride, shift, 0, -1, 1);
105
2.17k
    grad_source = macroblock_corner_grad(target_last, stride, shift, 0, -1, 1);
106
2.17k
    if (grad_last >= threshold1 && grad_source <= threshold2) {
107
28
      x->mbs_zero_last_dot_suppress++;
108
28
      return 1;
109
28
    }
110
    // Bottom-right:
111
2.15k
    grad_last = macroblock_corner_grad(last_ref, stride, shift, shift, -1, -1);
112
2.15k
    grad_source =
113
2.15k
        macroblock_corner_grad(target_last, stride, shift, shift, -1, -1);
114
2.15k
    if (grad_last >= threshold1 && grad_source <= threshold2) {
115
26
      x->mbs_zero_last_dot_suppress++;
116
26
      return 1;
117
26
    }
118
2.12k
    return 0;
119
2.15k
  }
120
2.24M
  return 0;
121
2.25M
}
122
123
int vp8_skip_fractional_mv_step(MACROBLOCK *mb, BLOCK *b, BLOCKD *d,
124
                                int_mv *bestmv, int_mv *ref_mv,
125
                                int error_per_bit,
126
                                const vp8_variance_fn_ptr_t *vfp,
127
                                int *mvcost[2], int *distortion,
128
0
                                unsigned int *sse) {
129
0
  (void)b;
130
0
  (void)d;
131
0
  (void)ref_mv;
132
0
  (void)error_per_bit;
133
0
  (void)vfp;
134
0
  (void)mb;
135
0
  (void)mvcost;
136
0
  (void)distortion;
137
0
  (void)sse;
138
0
  bestmv->as_mv.row = clamp(bestmv->as_mv.row * 8, SHRT_MIN, SHRT_MAX);
139
0
  bestmv->as_mv.col = clamp(bestmv->as_mv.col * 8, SHRT_MIN, SHRT_MAX);
140
0
  return 0;
141
0
}
142
143
int vp8_get_inter_mbpred_error(MACROBLOCK *mb, const vp8_variance_fn_ptr_t *vfp,
144
1.48M
                               unsigned int *sse, int_mv this_mv) {
145
1.48M
  BLOCK *b = &mb->block[0];
146
1.48M
  BLOCKD *d = &mb->e_mbd.block[0];
147
1.48M
  unsigned char *what = (*(b->base_src) + b->src);
148
1.48M
  int what_stride = b->src_stride;
149
1.48M
  int pre_stride = mb->e_mbd.pre.y_stride;
150
1.48M
  unsigned char *in_what = mb->e_mbd.pre.y_buffer + d->offset;
151
1.48M
  int in_what_stride = pre_stride;
152
1.48M
  int xoffset = this_mv.as_mv.col & 7;
153
1.48M
  int yoffset = this_mv.as_mv.row & 7;
154
155
1.48M
  in_what += (this_mv.as_mv.row >> 3) * pre_stride + (this_mv.as_mv.col >> 3);
156
157
1.48M
  if (xoffset | yoffset) {
158
311k
    return vfp->svf(in_what, in_what_stride, xoffset, yoffset, what,
159
311k
                    what_stride, sse);
160
1.17M
  } else {
161
1.17M
    return vfp->vf(what, what_stride, in_what, in_what_stride, sse);
162
1.17M
  }
163
1.48M
}
164
165
50.5M
static int get_prediction_error(BLOCK *be, BLOCKD *b) {
166
50.5M
  unsigned char *sptr;
167
50.5M
  unsigned char *dptr;
168
50.5M
  sptr = (*(be->base_src) + be->src);
169
50.5M
  dptr = b->predictor;
170
171
50.5M
  return vpx_get4x4sse_cs(sptr, be->src_stride, dptr, 16);
172
50.5M
}
173
174
static int pick_intra4x4block(MACROBLOCK *x, int ib,
175
                              B_PREDICTION_MODE *best_mode,
176
                              const int *mode_costs, int *bestrate,
177
12.6M
                              int *bestdistortion) {
178
12.6M
  BLOCKD *b = &x->e_mbd.block[ib];
179
12.6M
  BLOCK *be = &x->block[ib];
180
12.6M
  int dst_stride = x->e_mbd.dst.y_stride;
181
12.6M
  unsigned char *dst = x->e_mbd.dst.y_buffer + b->offset;
182
12.6M
  B_PREDICTION_MODE mode;
183
12.6M
  int best_rd = INT_MAX;
184
12.6M
  int rate;
185
12.6M
  int distortion;
186
187
12.6M
  unsigned char *Above = dst - dst_stride;
188
12.6M
  unsigned char *yleft = dst - 1;
189
12.6M
  unsigned char top_left = Above[-1];
190
191
63.1M
  for (mode = B_DC_PRED; mode <= B_HE_PRED; ++mode) {
192
50.5M
    int this_rd;
193
194
50.5M
    rate = mode_costs[mode];
195
196
50.5M
    vp8_intra4x4_predict(Above, yleft, dst_stride, mode, b->predictor, 16,
197
50.5M
                         top_left);
198
50.5M
    distortion = get_prediction_error(be, b);
199
50.5M
    this_rd = RDCOST(x->rdmult, x->rddiv, rate, distortion);
200
201
50.5M
    if (this_rd < best_rd) {
202
21.1M
      *bestrate = rate;
203
21.1M
      *bestdistortion = distortion;
204
21.1M
      best_rd = this_rd;
205
21.1M
      *best_mode = mode;
206
21.1M
    }
207
50.5M
  }
208
209
12.6M
  b->bmi.as_mode = *best_mode;
210
12.6M
  vp8_encode_intra4x4block(x, ib);
211
12.6M
  return best_rd;
212
12.6M
}
213
214
830k
static int pick_intra4x4mby_modes(MACROBLOCK *mb, int *Rate, int *best_dist) {
215
830k
  MACROBLOCKD *const xd = &mb->e_mbd;
216
830k
  int i;
217
830k
  int cost = mb->mbmode_cost[xd->frame_type][B_PRED];
218
830k
  int error;
219
830k
  int distortion = 0;
220
830k
  const int *bmode_costs;
221
222
830k
  intra_prediction_down_copy(xd, xd->dst.y_buffer - xd->dst.y_stride + 16);
223
224
830k
  bmode_costs = mb->inter_bmode_costs;
225
226
13.3M
  for (i = 0; i < 16; ++i) {
227
12.6M
    MODE_INFO *const mic = xd->mode_info_context;
228
12.6M
    const int mis = xd->mode_info_stride;
229
230
12.6M
    B_PREDICTION_MODE best_mode = B_MODE_COUNT;
231
12.6M
    int r = 0, d = 0;
232
233
12.6M
    if (mb->e_mbd.frame_type == KEY_FRAME) {
234
9.42M
      const B_PREDICTION_MODE A = above_block_mode(mic, i, mis);
235
9.42M
      const B_PREDICTION_MODE L = left_block_mode(mic, i);
236
237
9.42M
      bmode_costs = mb->bmode_costs[A][L];
238
9.42M
    }
239
240
12.6M
    pick_intra4x4block(mb, i, &best_mode, bmode_costs, &r, &d);
241
242
12.6M
    cost += r;
243
12.6M
    distortion += d;
244
12.6M
    assert(best_mode != B_MODE_COUNT);
245
12.6M
    mic->bmi[i].as_mode = best_mode;
246
247
    /* Break out case where we have already exceeded best so far value
248
     * that was passed in
249
     */
250
12.6M
    if (distortion > *best_dist) break;
251
12.6M
  }
252
253
830k
  *Rate = cost;
254
255
830k
  if (i == 16) {
256
704k
    *best_dist = distortion;
257
704k
    error = RDCOST(mb->rdmult, mb->rddiv, cost, distortion);
258
704k
  } else {
259
125k
    *best_dist = INT_MAX;
260
125k
    error = INT_MAX;
261
125k
  }
262
263
830k
  return error;
264
830k
}
265
266
1.10M
static void pick_intra_mbuv_mode(MACROBLOCK *mb) {
267
1.10M
  MACROBLOCKD *x = &mb->e_mbd;
268
1.10M
  unsigned char *uabove_row = x->dst.u_buffer - x->dst.uv_stride;
269
1.10M
  unsigned char *vabove_row = x->dst.v_buffer - x->dst.uv_stride;
270
1.10M
  unsigned char *usrc_ptr = (mb->block[16].src + *mb->block[16].base_src);
271
1.10M
  unsigned char *vsrc_ptr = (mb->block[20].src + *mb->block[20].base_src);
272
1.10M
  int uvsrc_stride = mb->block[16].src_stride;
273
1.10M
  unsigned char uleft_col[8];
274
1.10M
  unsigned char vleft_col[8];
275
1.10M
  unsigned char utop_left = uabove_row[-1];
276
1.10M
  unsigned char vtop_left = vabove_row[-1];
277
1.10M
  int i, j;
278
1.10M
  int expected_udc;
279
1.10M
  int expected_vdc;
280
1.10M
  int shift;
281
1.10M
  int Uaverage = 0;
282
1.10M
  int Vaverage = 0;
283
1.10M
  int diff;
284
1.10M
  int pred_error[4] = { 0, 0, 0, 0 }, best_error = INT_MAX;
285
1.10M
  MB_PREDICTION_MODE best_mode = MB_MODE_COUNT;
286
287
9.93M
  for (i = 0; i < 8; ++i) {
288
8.82M
    uleft_col[i] = x->dst.u_buffer[i * x->dst.uv_stride - 1];
289
8.82M
    vleft_col[i] = x->dst.v_buffer[i * x->dst.uv_stride - 1];
290
8.82M
  }
291
292
1.10M
  if (!x->up_available && !x->left_available) {
293
25.3k
    expected_udc = 128;
294
25.3k
    expected_vdc = 128;
295
1.07M
  } else {
296
1.07M
    shift = 2;
297
298
1.07M
    if (x->up_available) {
299
6.33M
      for (i = 0; i < 8; ++i) {
300
5.62M
        Uaverage += uabove_row[i];
301
5.62M
        Vaverage += vabove_row[i];
302
5.62M
      }
303
304
703k
      shift++;
305
703k
    }
306
307
1.07M
    if (x->left_available) {
308
9.18M
      for (i = 0; i < 8; ++i) {
309
8.16M
        Uaverage += uleft_col[i];
310
8.16M
        Vaverage += vleft_col[i];
311
8.16M
      }
312
313
1.02M
      shift++;
314
1.02M
    }
315
316
1.07M
    expected_udc = (Uaverage + (1 << (shift - 1))) >> shift;
317
1.07M
    expected_vdc = (Vaverage + (1 << (shift - 1))) >> shift;
318
1.07M
  }
319
320
9.93M
  for (i = 0; i < 8; ++i) {
321
79.4M
    for (j = 0; j < 8; ++j) {
322
70.6M
      int predu = uleft_col[i] + uabove_row[j] - utop_left;
323
70.6M
      int predv = vleft_col[i] + vabove_row[j] - vtop_left;
324
70.6M
      int u_p, v_p;
325
326
70.6M
      u_p = usrc_ptr[j];
327
70.6M
      v_p = vsrc_ptr[j];
328
329
70.6M
      if (predu < 0) predu = 0;
330
331
70.6M
      if (predu > 255) predu = 255;
332
333
70.6M
      if (predv < 0) predv = 0;
334
335
70.6M
      if (predv > 255) predv = 255;
336
337
70.6M
      diff = u_p - expected_udc;
338
70.6M
      pred_error[DC_PRED] += diff * diff;
339
70.6M
      diff = v_p - expected_vdc;
340
70.6M
      pred_error[DC_PRED] += diff * diff;
341
342
70.6M
      diff = u_p - uabove_row[j];
343
70.6M
      pred_error[V_PRED] += diff * diff;
344
70.6M
      diff = v_p - vabove_row[j];
345
70.6M
      pred_error[V_PRED] += diff * diff;
346
347
70.6M
      diff = u_p - uleft_col[i];
348
70.6M
      pred_error[H_PRED] += diff * diff;
349
70.6M
      diff = v_p - vleft_col[i];
350
70.6M
      pred_error[H_PRED] += diff * diff;
351
352
70.6M
      diff = u_p - predu;
353
70.6M
      pred_error[TM_PRED] += diff * diff;
354
70.6M
      diff = v_p - predv;
355
70.6M
      pred_error[TM_PRED] += diff * diff;
356
70.6M
    }
357
358
8.82M
    usrc_ptr += uvsrc_stride;
359
8.82M
    vsrc_ptr += uvsrc_stride;
360
361
8.82M
    if (i == 3) {
362
1.10M
      usrc_ptr = (mb->block[18].src + *mb->block[18].base_src);
363
1.10M
      vsrc_ptr = (mb->block[22].src + *mb->block[22].base_src);
364
1.10M
    }
365
8.82M
  }
366
367
5.51M
  for (i = DC_PRED; i <= TM_PRED; ++i) {
368
4.41M
    if (best_error > pred_error[i]) {
369
1.37M
      best_error = pred_error[i];
370
1.37M
      best_mode = (MB_PREDICTION_MODE)i;
371
1.37M
    }
372
4.41M
  }
373
374
1.10M
  assert(best_mode != MB_MODE_COUNT);
375
1.10M
  mb->e_mbd.mode_info_context->mbmi.uv_mode = best_mode;
376
1.10M
}
377
378
750k
static void update_mvcount(MACROBLOCK *x, int_mv *best_ref_mv) {
379
750k
  MACROBLOCKD *xd = &x->e_mbd;
380
  /* Split MV modes currently not supported when RD is nopt enabled,
381
   * therefore, only need to modify MVcount in NEWMV mode. */
382
750k
  if (xd->mode_info_context->mbmi.mode == NEWMV) {
383
121k
    const int row_val =
384
121k
        ((xd->mode_info_context->mbmi.mv.as_mv.row - best_ref_mv->as_mv.row) >>
385
121k
         1);
386
121k
    const int row_idx = mv_max + row_val;
387
121k
    const int col_val =
388
121k
        ((xd->mode_info_context->mbmi.mv.as_mv.col - best_ref_mv->as_mv.col) >>
389
121k
         1);
390
121k
    const int col_idx = mv_max + col_val;
391
121k
    if (row_idx >= 0 && row_idx < MVvals && col_idx >= 0 && col_idx < MVvals) {
392
121k
      x->MVcount[0][row_idx]++;
393
121k
      x->MVcount[1][col_idx]++;
394
121k
    }
395
121k
  }
396
750k
}
397
398
#if CONFIG_MULTI_RES_ENCODING
399
static void get_lower_res_motion_info(VP8_COMP *cpi, MACROBLOCKD *xd,
400
                                      int *dissim, int *parent_ref_frame,
401
                                      MB_PREDICTION_MODE *parent_mode,
402
                                      int_mv *parent_ref_mv, int mb_row,
403
                                      int mb_col) {
404
  LOWER_RES_MB_INFO *store_mode_info =
405
      ((LOWER_RES_FRAME_INFO *)cpi->oxcf.mr_low_res_mode_info)->mb_info;
406
  unsigned int parent_mb_index;
407
408
  /* Consider different down_sampling_factor.  */
409
  {
410
    /* TODO: Removed the loop that supports special down_sampling_factor
411
     * such as 2, 4, 8. Will revisit it if needed.
412
     * Should also try using a look-up table to see if it helps
413
     * performance. */
414
    int parent_mb_row, parent_mb_col;
415
416
    parent_mb_row = mb_row * cpi->oxcf.mr_down_sampling_factor.den /
417
                    cpi->oxcf.mr_down_sampling_factor.num;
418
    parent_mb_col = mb_col * cpi->oxcf.mr_down_sampling_factor.den /
419
                    cpi->oxcf.mr_down_sampling_factor.num;
420
    parent_mb_index = parent_mb_row * cpi->mr_low_res_mb_cols + parent_mb_col;
421
  }
422
423
  /* Read lower-resolution mode & motion result from memory.*/
424
  *parent_ref_frame = store_mode_info[parent_mb_index].ref_frame;
425
  *parent_mode = store_mode_info[parent_mb_index].mode;
426
  *dissim = store_mode_info[parent_mb_index].dissim;
427
428
  /* For highest-resolution encoder, adjust dissim value. Lower its quality
429
   * for good performance. */
430
  if (cpi->oxcf.mr_encoder_id == (cpi->oxcf.mr_total_resolutions - 1))
431
    *dissim >>= 1;
432
433
  if (*parent_ref_frame != INTRA_FRAME) {
434
    /* Consider different down_sampling_factor.
435
     * The result can be rounded to be more precise, but it takes more time.
436
     */
437
    (*parent_ref_mv).as_mv.row = store_mode_info[parent_mb_index].mv.as_mv.row *
438
                                 cpi->oxcf.mr_down_sampling_factor.num /
439
                                 cpi->oxcf.mr_down_sampling_factor.den;
440
    (*parent_ref_mv).as_mv.col = store_mode_info[parent_mb_index].mv.as_mv.col *
441
                                 cpi->oxcf.mr_down_sampling_factor.num /
442
                                 cpi->oxcf.mr_down_sampling_factor.den;
443
444
    vp8_clamp_mv2(parent_ref_mv, xd);
445
  }
446
}
447
#endif
448
449
1.98M
static void check_for_encode_breakout(unsigned int sse, MACROBLOCK *x) {
450
1.98M
  MACROBLOCKD *xd = &x->e_mbd;
451
452
1.98M
  unsigned int threshold =
453
1.98M
      (xd->block[0].dequant[1] * xd->block[0].dequant[1] >> 4);
454
455
1.98M
  if (threshold < x->encode_breakout) threshold = x->encode_breakout;
456
457
1.98M
  if (sse < threshold) {
458
    /* Check u and v to make sure skip is ok */
459
41.2k
    unsigned int sse2 = 0;
460
461
41.2k
    sse2 = VP8_UVSSE(x);
462
463
41.2k
    if (sse2 * 2 < x->encode_breakout) {
464
0
      x->skip = 1;
465
41.2k
    } else {
466
41.2k
      x->skip = 0;
467
41.2k
    }
468
41.2k
  }
469
1.98M
}
470
471
static int evaluate_inter_mode(unsigned int *sse, int rate2, int *distortion2,
472
1.98M
                               VP8_COMP *cpi, MACROBLOCK *x, int rd_adj) {
473
1.98M
  MB_PREDICTION_MODE this_mode = x->e_mbd.mode_info_context->mbmi.mode;
474
1.98M
  int_mv mv = x->e_mbd.mode_info_context->mbmi.mv;
475
1.98M
  int this_rd;
476
1.98M
  int denoise_aggressive = 0;
477
  /* Exit early and don't compute the distortion if this macroblock
478
   * is marked inactive. */
479
1.98M
  if (cpi->active_map_enabled && x->active_ptr[0] == 0) {
480
0
    *sse = 0;
481
0
    *distortion2 = 0;
482
0
    x->skip = 1;
483
0
    return INT_MAX;
484
0
  }
485
486
1.98M
  if ((this_mode != NEWMV) || !(cpi->sf.half_pixel_search) ||
487
1.98M
      cpi->common.full_pixel == 1) {
488
1.48M
    *distortion2 =
489
1.48M
        vp8_get_inter_mbpred_error(x, &cpi->fn_ptr[BLOCK_16X16], sse, mv);
490
1.48M
  }
491
492
1.98M
  this_rd = RDCOST(x->rdmult, x->rddiv, rate2, *distortion2);
493
494
1.98M
#if CONFIG_TEMPORAL_DENOISING
495
1.98M
  if (cpi->oxcf.noise_sensitivity > 0) {
496
0
    denoise_aggressive =
497
0
        (cpi->denoiser.denoiser_mode == kDenoiserOnYUVAggressive) ? 1 : 0;
498
0
  }
499
1.98M
#endif
500
501
  // Adjust rd for ZEROMV and LAST, if LAST is the closest reference frame.
502
  // TODO: We should also add condition on distance of closest to current.
503
1.98M
  if (!cpi->oxcf.screen_content_mode && this_mode == ZEROMV &&
504
1.98M
      x->e_mbd.mode_info_context->mbmi.ref_frame == LAST_FRAME &&
505
1.98M
      (denoise_aggressive || (cpi->closest_reference_frame == LAST_FRAME))) {
506
    // No adjustment if block is considered to be skin area.
507
750k
    if (x->is_skin) rd_adj = 100;
508
509
750k
    this_rd = (int)(((int64_t)this_rd) * rd_adj / 100);
510
750k
  }
511
512
1.98M
  check_for_encode_breakout(*sse, x);
513
1.98M
  return this_rd;
514
1.98M
}
515
516
static void calculate_zeromv_rd_adjustment(VP8_COMP *cpi, MACROBLOCK *x,
517
750k
                                           int *rd_adjustment) {
518
750k
  MODE_INFO *mic = x->e_mbd.mode_info_context;
519
750k
  int_mv mv_l, mv_a, mv_al;
520
750k
  int local_motion_check = 0;
521
522
750k
  if (cpi->lf_zeromv_pct > 40) {
523
    /* left mb */
524
79.0k
    mic -= 1;
525
79.0k
    mv_l = mic->mbmi.mv;
526
527
79.0k
    if (mic->mbmi.ref_frame != INTRA_FRAME) {
528
54.2k
      if (abs(mv_l.as_mv.row) < 8 && abs(mv_l.as_mv.col) < 8) {
529
51.2k
        local_motion_check++;
530
51.2k
      }
531
54.2k
    }
532
533
    /* above-left mb */
534
79.0k
    mic -= x->e_mbd.mode_info_stride;
535
79.0k
    mv_al = mic->mbmi.mv;
536
537
79.0k
    if (mic->mbmi.ref_frame != INTRA_FRAME) {
538
40.3k
      if (abs(mv_al.as_mv.row) < 8 && abs(mv_al.as_mv.col) < 8) {
539
38.0k
        local_motion_check++;
540
38.0k
      }
541
40.3k
    }
542
543
    /* above mb */
544
79.0k
    mic += 1;
545
79.0k
    mv_a = mic->mbmi.mv;
546
547
79.0k
    if (mic->mbmi.ref_frame != INTRA_FRAME) {
548
53.7k
      if (abs(mv_a.as_mv.row) < 8 && abs(mv_a.as_mv.col) < 8) {
549
50.8k
        local_motion_check++;
550
50.8k
      }
551
53.7k
    }
552
553
79.0k
    if (((!x->e_mbd.mb_to_top_edge || !x->e_mbd.mb_to_left_edge) &&
554
79.0k
         local_motion_check > 0) ||
555
79.0k
        local_motion_check > 2) {
556
62.8k
      *rd_adjustment = 80;
557
62.8k
    } else if (local_motion_check > 0) {
558
2.28k
      *rd_adjustment = 90;
559
2.28k
    }
560
79.0k
  }
561
750k
}
562
563
void vp8_pick_inter_mode(VP8_COMP *cpi, MACROBLOCK *x, int recon_yoffset,
564
                         int recon_uvoffset, int *returnrate,
565
                         int *returndistortion, int *returnintra, int mb_row,
566
750k
                         int mb_col) {
567
750k
  BLOCK *b = &x->block[0];
568
750k
  BLOCKD *d = &x->e_mbd.block[0];
569
750k
  MACROBLOCKD *xd = &x->e_mbd;
570
750k
  MB_MODE_INFO best_mbmode;
571
572
750k
  int_mv best_ref_mv_sb[2] = { { 0 }, { 0 } };
573
750k
  int_mv mode_mv_sb[2][MB_MODE_COUNT];
574
750k
  int_mv best_ref_mv;
575
750k
  int_mv *mode_mv;
576
750k
  MB_PREDICTION_MODE this_mode;
577
750k
  int num00;
578
750k
  int mdcounts[4];
579
750k
  int best_rd = INT_MAX;
580
750k
  int rd_adjustment = 100;
581
750k
  int best_intra_rd = INT_MAX;
582
750k
  int mode_index;
583
750k
  int rate;
584
750k
  int rate2;
585
750k
  int distortion2;
586
750k
  int bestsme = INT_MAX;
587
750k
  int best_mode_index = 0;
588
750k
  unsigned int sse = UINT_MAX, best_rd_sse = UINT_MAX;
589
750k
#if CONFIG_TEMPORAL_DENOISING
590
750k
  unsigned int zero_mv_sse = UINT_MAX, best_sse = UINT_MAX;
591
750k
#endif
592
593
750k
  int sf_improved_mv_pred = cpi->sf.improved_mv_pred;
594
595
#if CONFIG_MULTI_RES_ENCODING
596
  int dissim = INT_MAX;
597
  int parent_ref_frame = 0;
598
  int_mv parent_ref_mv;
599
  MB_PREDICTION_MODE parent_mode = 0;
600
  int parent_ref_valid = 0;
601
#endif
602
603
750k
  int_mv mvp;
604
605
750k
  int near_sadidx[8] = { 0, 1, 2, 3, 4, 5, 6, 7 };
606
750k
  int saddone = 0;
607
  /* search range got from mv_pred(). It uses step_param levels. (0-7) */
608
750k
  int sr = 0;
609
610
750k
  unsigned char *plane[4][3] = { { 0, 0 } };
611
750k
  int ref_frame_map[4];
612
750k
  int sign_bias = 0;
613
750k
  int dot_artifact_candidate = 0;
614
750k
  get_predictor_pointers(cpi, plane, recon_yoffset, recon_uvoffset);
615
616
  // If the current frame is using LAST as a reference, check for
617
  // biasing the mode selection for dot artifacts.
618
750k
  if (cpi->ref_frame_flags & VP8_LAST_FRAME) {
619
750k
    unsigned char *target_y = x->src.y_buffer;
620
750k
    unsigned char *target_u = x->block[16].src + *x->block[16].base_src;
621
750k
    unsigned char *target_v = x->block[20].src + *x->block[20].base_src;
622
750k
    int stride = x->src.y_stride;
623
750k
    int stride_uv = x->block[16].src_stride;
624
750k
#if CONFIG_TEMPORAL_DENOISING
625
750k
    if (cpi->oxcf.noise_sensitivity) {
626
0
      const int uv_denoise = (cpi->oxcf.noise_sensitivity >= 2) ? 1 : 0;
627
0
      target_y =
628
0
          cpi->denoiser.yv12_running_avg[LAST_FRAME].y_buffer + recon_yoffset;
629
0
      stride = cpi->denoiser.yv12_running_avg[LAST_FRAME].y_stride;
630
0
      if (uv_denoise) {
631
0
        target_u = cpi->denoiser.yv12_running_avg[LAST_FRAME].u_buffer +
632
0
                   recon_uvoffset;
633
0
        target_v = cpi->denoiser.yv12_running_avg[LAST_FRAME].v_buffer +
634
0
                   recon_uvoffset;
635
0
        stride_uv = cpi->denoiser.yv12_running_avg[LAST_FRAME].uv_stride;
636
0
      }
637
0
    }
638
750k
#endif
639
750k
    assert(plane[LAST_FRAME][0] != NULL);
640
750k
    dot_artifact_candidate = check_dot_artifact_candidate(
641
750k
        cpi, x, target_y, stride, plane[LAST_FRAME][0], mb_row, mb_col, 0);
642
    // If not found in Y channel, check UV channel.
643
750k
    if (!dot_artifact_candidate) {
644
750k
      assert(plane[LAST_FRAME][1] != NULL);
645
750k
      dot_artifact_candidate = check_dot_artifact_candidate(
646
750k
          cpi, x, target_u, stride_uv, plane[LAST_FRAME][1], mb_row, mb_col, 1);
647
750k
      if (!dot_artifact_candidate) {
648
750k
        assert(plane[LAST_FRAME][2] != NULL);
649
750k
        dot_artifact_candidate = check_dot_artifact_candidate(
650
750k
            cpi, x, target_v, stride_uv, plane[LAST_FRAME][2], mb_row, mb_col,
651
750k
            2);
652
750k
      }
653
750k
    }
654
750k
  }
655
656
#if CONFIG_MULTI_RES_ENCODING
657
  // |parent_ref_valid| will be set here if potentially we can do mv resue for
658
  // this higher resol (|cpi->oxcf.mr_encoder_id| > 0) frame.
659
  // |parent_ref_valid| may be reset depending on |parent_ref_frame| for
660
  // the current macroblock below.
661
  parent_ref_valid = cpi->oxcf.mr_encoder_id && cpi->mr_low_res_mv_avail;
662
  if (parent_ref_valid) {
663
    int parent_ref_flag;
664
665
    get_lower_res_motion_info(cpi, xd, &dissim, &parent_ref_frame, &parent_mode,
666
                              &parent_ref_mv, mb_row, mb_col);
667
668
    /* TODO(jkoleszar): The references available (ref_frame_flags) to the
669
     * lower res encoder should match those available to this encoder, but
670
     * there seems to be a situation where this mismatch can happen in the
671
     * case of frame dropping and temporal layers. For example,
672
     * GOLD being disallowed in ref_frame_flags, but being returned as
673
     * parent_ref_frame.
674
     *
675
     * In this event, take the conservative approach of disabling the
676
     * lower res info for this MB.
677
     */
678
679
    parent_ref_flag = 0;
680
    // Note availability for mv reuse is only based on last and golden.
681
    if (parent_ref_frame == LAST_FRAME)
682
      parent_ref_flag = (cpi->ref_frame_flags & VP8_LAST_FRAME);
683
    else if (parent_ref_frame == GOLDEN_FRAME)
684
      parent_ref_flag = (cpi->ref_frame_flags & VP8_GOLD_FRAME);
685
686
    // assert(!parent_ref_frame || parent_ref_flag);
687
688
    // If |parent_ref_frame| did not match either last or golden then
689
    // shut off mv reuse.
690
    if (parent_ref_frame && !parent_ref_flag) parent_ref_valid = 0;
691
692
    // Don't do mv reuse since we want to allow for another mode besides
693
    // ZEROMV_LAST to remove dot artifact.
694
    if (dot_artifact_candidate) parent_ref_valid = 0;
695
  }
696
#endif
697
698
  // Check if current macroblock is in skin area.
699
750k
  x->is_skin = 0;
700
750k
  if (!cpi->oxcf.screen_content_mode) {
701
750k
    int block_index = mb_row * cpi->common.mb_cols + mb_col;
702
750k
    x->is_skin = cpi->skin_map[block_index];
703
750k
  }
704
750k
#if CONFIG_TEMPORAL_DENOISING
705
750k
  if (cpi->oxcf.noise_sensitivity) {
706
    // Under aggressive denoising mode, should we use skin map to reduce
707
    // denoiser
708
    // and ZEROMV bias? Will need to revisit the accuracy of this detection for
709
    // very noisy input. For now keep this as is (i.e., don't turn it off).
710
    // if (cpi->denoiser.denoiser_mode == kDenoiserOnYUVAggressive)
711
    //   x->is_skin = 0;
712
0
  }
713
750k
#endif
714
715
750k
  mode_mv = mode_mv_sb[sign_bias];
716
750k
  best_ref_mv.as_int = 0;
717
750k
  memset(mode_mv_sb, 0, sizeof(mode_mv_sb));
718
750k
  memset(&best_mbmode, 0, sizeof(best_mbmode));
719
720
/* Setup search priorities */
721
#if CONFIG_MULTI_RES_ENCODING
722
  if (parent_ref_valid && parent_ref_frame && dissim < 8) {
723
    ref_frame_map[0] = -1;
724
    ref_frame_map[1] = parent_ref_frame;
725
    ref_frame_map[2] = -1;
726
    ref_frame_map[3] = -1;
727
  } else
728
#endif
729
750k
    get_reference_search_order(cpi, ref_frame_map);
730
731
  /* Check to see if there is at least 1 valid reference frame that we need
732
   * to calculate near_mvs.
733
   */
734
750k
  if (ref_frame_map[1] > 0) {
735
750k
    sign_bias = vp8_find_near_mvs_bias(
736
750k
        &x->e_mbd, x->e_mbd.mode_info_context, mode_mv_sb, best_ref_mv_sb,
737
750k
        mdcounts, ref_frame_map[1], cpi->common.ref_frame_sign_bias);
738
739
750k
    mode_mv = mode_mv_sb[sign_bias];
740
750k
    best_ref_mv.as_int = best_ref_mv_sb[sign_bias].as_int;
741
750k
  }
742
743
  /* Count of the number of MBs tested so far this frame */
744
750k
  x->mbs_tested_so_far++;
745
746
750k
  *returnintra = INT_MAX;
747
750k
  x->skip = 0;
748
749
750k
  x->e_mbd.mode_info_context->mbmi.ref_frame = INTRA_FRAME;
750
751
  /* If the frame has big static background and current MB is in low
752
   *  motion area, its mode decision is biased to ZEROMV mode.
753
   *  No adjustment if cpu_used is <= -12 (i.e., cpi->Speed >= 12).
754
   *  At such speed settings, ZEROMV is already heavily favored.
755
   */
756
750k
  if (cpi->Speed < 12) {
757
750k
    calculate_zeromv_rd_adjustment(cpi, x, &rd_adjustment);
758
750k
  }
759
760
750k
#if CONFIG_TEMPORAL_DENOISING
761
750k
  if (cpi->oxcf.noise_sensitivity) {
762
0
    rd_adjustment = (int)(rd_adjustment *
763
0
                          cpi->denoiser.denoise_pars.pickmode_mv_bias / 100);
764
0
  }
765
750k
#endif
766
767
750k
  if (dot_artifact_candidate) {
768
    // Bias against ZEROMV_LAST mode.
769
106
    rd_adjustment = 150;
770
106
  }
771
772
  /* if we encode a new mv this is important
773
   * find the best new motion vector
774
   */
775
15.7M
  for (mode_index = 0; mode_index < MAX_MODES; ++mode_index) {
776
15.0M
    int frame_cost;
777
15.0M
    int this_rd = INT_MAX;
778
15.0M
    int this_ref_frame = ref_frame_map[vp8_ref_frame_order[mode_index]];
779
780
15.0M
    if (best_rd <= x->rd_threshes[mode_index]) continue;
781
782
8.70M
    if (this_ref_frame < 0) continue;
783
784
6.28M
    x->e_mbd.mode_info_context->mbmi.ref_frame = this_ref_frame;
785
786
    /* everything but intra */
787
6.28M
    if (x->e_mbd.mode_info_context->mbmi.ref_frame) {
788
3.80M
      x->e_mbd.pre.y_buffer = plane[this_ref_frame][0];
789
3.80M
      x->e_mbd.pre.u_buffer = plane[this_ref_frame][1];
790
3.80M
      x->e_mbd.pre.v_buffer = plane[this_ref_frame][2];
791
792
3.80M
      if (sign_bias != cpi->common.ref_frame_sign_bias[this_ref_frame]) {
793
0
        sign_bias = cpi->common.ref_frame_sign_bias[this_ref_frame];
794
0
        mode_mv = mode_mv_sb[sign_bias];
795
0
        best_ref_mv.as_int = best_ref_mv_sb[sign_bias].as_int;
796
0
      }
797
798
#if CONFIG_MULTI_RES_ENCODING
799
      if (parent_ref_valid) {
800
        if (vp8_mode_order[mode_index] == NEARESTMV &&
801
            mode_mv[NEARESTMV].as_int == 0)
802
          continue;
803
        if (vp8_mode_order[mode_index] == NEARMV && mode_mv[NEARMV].as_int == 0)
804
          continue;
805
806
        if (vp8_mode_order[mode_index] == NEWMV && parent_mode == ZEROMV &&
807
            best_ref_mv.as_int == 0)
808
          continue;
809
        else if (vp8_mode_order[mode_index] == NEWMV && dissim == 0 &&
810
                 best_ref_mv.as_int == parent_ref_mv.as_int)
811
          continue;
812
      }
813
#endif
814
3.80M
    }
815
816
    /* Check to see if the testing frequency for this mode is at its max
817
     * If so then prevent it from being tested and increase the threshold
818
     * for its testing */
819
6.28M
    if (x->mode_test_hit_counts[mode_index] &&
820
6.28M
        (cpi->mode_check_freq[mode_index] > 1)) {
821
1.68M
      if (x->mbs_tested_so_far <= (cpi->mode_check_freq[mode_index] *
822
1.68M
                                   x->mode_test_hit_counts[mode_index])) {
823
        /* Increase the threshold for coding this mode to make it less
824
         * likely to be chosen */
825
897k
        x->rd_thresh_mult[mode_index] += 4;
826
827
897k
        if (x->rd_thresh_mult[mode_index] > MAX_THRESHMULT) {
828
382k
          x->rd_thresh_mult[mode_index] = MAX_THRESHMULT;
829
382k
        }
830
831
897k
        x->rd_threshes[mode_index] =
832
897k
            (cpi->rd_baseline_thresh[mode_index] >> 7) *
833
897k
            x->rd_thresh_mult[mode_index];
834
897k
        continue;
835
897k
      }
836
1.68M
    }
837
838
    /* We have now reached the point where we are going to test the current
839
     * mode so increment the counter for the number of times it has been
840
     * tested */
841
5.38M
    x->mode_test_hit_counts[mode_index]++;
842
843
5.38M
    rate2 = 0;
844
5.38M
    distortion2 = 0;
845
846
5.38M
    this_mode = vp8_mode_order[mode_index];
847
848
5.38M
    x->e_mbd.mode_info_context->mbmi.mode = this_mode;
849
5.38M
    x->e_mbd.mode_info_context->mbmi.uv_mode = DC_PRED;
850
851
    /* Work out the cost assosciated with selecting the reference frame */
852
5.38M
    frame_cost = x->ref_frame_cost[x->e_mbd.mode_info_context->mbmi.ref_frame];
853
5.38M
    rate2 += frame_cost;
854
855
    /* Only consider ZEROMV/ALTREF_FRAME for alt ref frame,
856
     * unless ARNR filtering is enabled in which case we want
857
     * an unfiltered alternative */
858
5.38M
    if (cpi->is_src_frame_alt_ref && (cpi->oxcf.arnr_max_frames == 0)) {
859
0
      if (this_mode != ZEROMV ||
860
0
          x->e_mbd.mode_info_context->mbmi.ref_frame != ALTREF_FRAME) {
861
0
        continue;
862
0
      }
863
0
    }
864
865
5.38M
    switch (this_mode) {
866
227k
      case B_PRED:
867
        /* Pass best so far to pick_intra4x4mby_modes to use as breakout */
868
227k
        distortion2 = best_rd_sse;
869
227k
        pick_intra4x4mby_modes(x, &rate, &distortion2);
870
871
227k
        if (distortion2 == INT_MAX) {
872
71.5k
          this_rd = INT_MAX;
873
156k
        } else {
874
156k
          rate2 += rate;
875
156k
          distortion2 = vpx_variance16x16(*(b->base_src), b->src_stride,
876
156k
                                          x->e_mbd.predictor, 16, &sse);
877
156k
          this_rd = RDCOST(x->rdmult, x->rddiv, rate2, distortion2);
878
879
156k
          if (this_rd < best_intra_rd) {
880
132k
            best_intra_rd = this_rd;
881
132k
            *returnintra = distortion2;
882
132k
          }
883
156k
        }
884
885
227k
        break;
886
887
0
      case SPLITMV:
888
889
        /* Split MV modes currently not supported when RD is not enabled. */
890
0
        break;
891
892
750k
      case DC_PRED:
893
984k
      case V_PRED:
894
1.21M
      case H_PRED:
895
1.65M
      case TM_PRED:
896
1.65M
        vp8_build_intra_predictors_mby_s(
897
1.65M
            xd, xd->dst.y_buffer - xd->dst.y_stride, xd->dst.y_buffer - 1,
898
1.65M
            xd->dst.y_stride, xd->predictor, 16);
899
1.65M
        distortion2 = vpx_variance16x16(*(b->base_src), b->src_stride,
900
1.65M
                                        x->e_mbd.predictor, 16, &sse);
901
1.65M
        rate2 += x->mbmode_cost[x->e_mbd.frame_type]
902
1.65M
                               [x->e_mbd.mode_info_context->mbmi.mode];
903
1.65M
        this_rd = RDCOST(x->rdmult, x->rddiv, rate2, distortion2);
904
905
1.65M
        if (this_rd < best_intra_rd) {
906
889k
          best_intra_rd = this_rd;
907
889k
          *returnintra = distortion2;
908
889k
        }
909
1.65M
        break;
910
911
526k
      case NEWMV: {
912
526k
        int thissme;
913
526k
        int step_param;
914
526k
        int further_steps;
915
526k
        int n = 0;
916
526k
        int sadpb = x->sadperbit16;
917
526k
        int_mv mvp_full;
918
919
526k
        int col_min = ((best_ref_mv.as_mv.col + 7) >> 3) - MAX_FULL_PEL_VAL;
920
526k
        int row_min = ((best_ref_mv.as_mv.row + 7) >> 3) - MAX_FULL_PEL_VAL;
921
526k
        int col_max = (best_ref_mv.as_mv.col >> 3) + MAX_FULL_PEL_VAL;
922
526k
        int row_max = (best_ref_mv.as_mv.row >> 3) + MAX_FULL_PEL_VAL;
923
924
526k
        int tmp_col_min = x->mv_col_min;
925
526k
        int tmp_col_max = x->mv_col_max;
926
526k
        int tmp_row_min = x->mv_row_min;
927
526k
        int tmp_row_max = x->mv_row_max;
928
929
526k
        int speed_adjust = (cpi->Speed > 5) ? ((cpi->Speed >= 8) ? 3 : 2) : 1;
930
931
        /* Further step/diamond searches as necessary */
932
526k
        step_param = cpi->sf.first_step + speed_adjust;
933
934
#if CONFIG_MULTI_RES_ENCODING
935
        /* If lower-res frame is not available for mv reuse (because of
936
           frame dropping or different temporal layer pattern), then higher
937
           resol encoder does motion search without any previous knowledge.
938
           Also, since last frame motion info is not stored, then we can not
939
           use improved_mv_pred. */
940
        if (cpi->oxcf.mr_encoder_id) sf_improved_mv_pred = 0;
941
942
        // Only use parent MV as predictor if this candidate reference frame
943
        // (|this_ref_frame|) is equal to |parent_ref_frame|.
944
        if (parent_ref_valid && (parent_ref_frame == this_ref_frame)) {
945
          /* Use parent MV as predictor. Adjust search range
946
           * accordingly.
947
           */
948
          mvp.as_int = parent_ref_mv.as_int;
949
          mvp_full.as_mv.col = parent_ref_mv.as_mv.col >> 3;
950
          mvp_full.as_mv.row = parent_ref_mv.as_mv.row >> 3;
951
952
          if (dissim <= 32)
953
            step_param += 3;
954
          else if (dissim <= 128)
955
            step_param += 2;
956
          else
957
            step_param += 1;
958
        } else
959
#endif
960
526k
        {
961
526k
          if (sf_improved_mv_pred) {
962
526k
            if (!saddone) {
963
438k
              vp8_cal_sad(cpi, xd, x, recon_yoffset, &near_sadidx[0]);
964
438k
              saddone = 1;
965
438k
            }
966
967
526k
            vp8_mv_pred(cpi, &x->e_mbd, x->e_mbd.mode_info_context, &mvp,
968
526k
                        x->e_mbd.mode_info_context->mbmi.ref_frame,
969
526k
                        cpi->common.ref_frame_sign_bias, &sr, &near_sadidx[0]);
970
971
526k
            sr += speed_adjust;
972
            /* adjust search range according to sr from mv prediction */
973
526k
            if (sr > step_param) step_param = sr;
974
975
526k
            mvp_full.as_mv.col = mvp.as_mv.col >> 3;
976
526k
            mvp_full.as_mv.row = mvp.as_mv.row >> 3;
977
526k
          } else {
978
0
            mvp.as_int = best_ref_mv.as_int;
979
0
            mvp_full.as_mv.col = best_ref_mv.as_mv.col >> 3;
980
0
            mvp_full.as_mv.row = best_ref_mv.as_mv.row >> 3;
981
0
          }
982
526k
        }
983
984
#if CONFIG_MULTI_RES_ENCODING
985
        if (parent_ref_valid && (parent_ref_frame == this_ref_frame) &&
986
            dissim <= 2 &&
987
            VPXMAX(abs(best_ref_mv.as_mv.row - parent_ref_mv.as_mv.row),
988
                   abs(best_ref_mv.as_mv.col - parent_ref_mv.as_mv.col)) <= 4) {
989
          d->bmi.mv.as_int = mvp_full.as_int;
990
          mode_mv[NEWMV].as_int = mvp_full.as_int;
991
992
          cpi->find_fractional_mv_step(
993
              x, b, d, &d->bmi.mv, &best_ref_mv, x->errorperbit,
994
              &cpi->fn_ptr[BLOCK_16X16], cpi->mb.mvcost, &distortion2, &sse);
995
        } else
996
#endif
997
526k
        {
998
          /* Get intersection of UMV window and valid MV window to
999
           * reduce # of checks in diamond search. */
1000
526k
          if (x->mv_col_min < col_min) x->mv_col_min = col_min;
1001
526k
          if (x->mv_col_max > col_max) x->mv_col_max = col_max;
1002
526k
          if (x->mv_row_min < row_min) x->mv_row_min = row_min;
1003
526k
          if (x->mv_row_max > row_max) x->mv_row_max = row_max;
1004
1005
526k
          further_steps =
1006
526k
              (cpi->Speed >= 8)
1007
526k
                  ? 0
1008
526k
                  : (cpi->sf.max_step_search_steps - 1 - step_param);
1009
1010
526k
          if (cpi->sf.search_method == HEX) {
1011
#if CONFIG_MULTI_RES_ENCODING
1012
            /* TODO: In higher-res pick_inter_mode, step_param is used to
1013
             * modify hex search range. Here, set step_param to 0 not to
1014
             * change the behavior in lowest-resolution encoder.
1015
             * Will improve it later.
1016
             */
1017
            /* Set step_param to 0 to ensure large-range motion search
1018
             * when mv reuse if not valid (i.e. |parent_ref_valid| = 0),
1019
             * or if this candidate reference frame (|this_ref_frame|) is
1020
             * not equal to |parent_ref_frame|.
1021
             */
1022
            if (!parent_ref_valid || (parent_ref_frame != this_ref_frame))
1023
              step_param = 0;
1024
#endif
1025
0
            bestsme = vp8_hex_search(x, b, d, &mvp_full, &d->bmi.mv, step_param,
1026
0
                                     sadpb, &cpi->fn_ptr[BLOCK_16X16],
1027
0
                                     x->mvsadcost, &best_ref_mv);
1028
0
            mode_mv[NEWMV].as_int = d->bmi.mv.as_int;
1029
526k
          } else {
1030
526k
            bestsme = cpi->diamond_search_sad(
1031
526k
                x, b, d, &mvp_full, &d->bmi.mv, step_param, sadpb, &num00,
1032
526k
                &cpi->fn_ptr[BLOCK_16X16], x->mvcost, &best_ref_mv);
1033
526k
            mode_mv[NEWMV].as_int = d->bmi.mv.as_int;
1034
1035
            /* Further step/diamond searches as necessary */
1036
526k
            n = num00;
1037
526k
            num00 = 0;
1038
1039
2.20M
            while (n < further_steps) {
1040
1.67M
              n++;
1041
1042
1.67M
              if (num00) {
1043
101k
                num00--;
1044
1.57M
              } else {
1045
1.57M
                thissme = cpi->diamond_search_sad(
1046
1.57M
                    x, b, d, &mvp_full, &d->bmi.mv, step_param + n, sadpb,
1047
1.57M
                    &num00, &cpi->fn_ptr[BLOCK_16X16], x->mvcost, &best_ref_mv);
1048
1.57M
                if (thissme < bestsme) {
1049
245k
                  bestsme = thissme;
1050
245k
                  mode_mv[NEWMV].as_int = d->bmi.mv.as_int;
1051
1.33M
                } else {
1052
1.33M
                  d->bmi.mv.as_int = mode_mv[NEWMV].as_int;
1053
1.33M
                }
1054
1.57M
              }
1055
1.67M
            }
1056
526k
          }
1057
1058
526k
          x->mv_col_min = tmp_col_min;
1059
526k
          x->mv_col_max = tmp_col_max;
1060
526k
          x->mv_row_min = tmp_row_min;
1061
526k
          x->mv_row_max = tmp_row_max;
1062
1063
526k
          if (bestsme < INT_MAX) {
1064
526k
            cpi->find_fractional_mv_step(
1065
526k
                x, b, d, &d->bmi.mv, &best_ref_mv, x->errorperbit,
1066
526k
                &cpi->fn_ptr[BLOCK_16X16], cpi->mb.mvcost, &distortion2, &sse);
1067
526k
          }
1068
526k
        }
1069
1070
526k
        mode_mv[NEWMV].as_int = d->bmi.mv.as_int;
1071
        // The clamp below is not necessary from the perspective
1072
        // of VP8 bitstream, but is added to improve ChromeCast
1073
        // mirroring's robustness. Please do not remove.
1074
526k
        vp8_clamp_mv2(&mode_mv[this_mode], xd);
1075
        /* mv cost; */
1076
526k
        rate2 +=
1077
526k
            vp8_mv_bit_cost(&mode_mv[NEWMV], &best_ref_mv, cpi->mb.mvcost, 128);
1078
526k
      }
1079
        // fall through
1080
1081
1.56M
      case NEARESTMV:
1082
2.47M
      case NEARMV:
1083
2.47M
        if (mode_mv[this_mode].as_int == 0) continue;
1084
        // fall through
1085
1086
1.98M
      case ZEROMV:
1087
1088
        /* Trap vectors that reach beyond the UMV borders
1089
         * Note that ALL New MV, Nearest MV Near MV and Zero MV code drops
1090
         * through to this point because of the lack of break statements
1091
         * in the previous two cases.
1092
         */
1093
1.98M
        if (((mode_mv[this_mode].as_mv.row >> 3) < x->mv_row_min) ||
1094
1.98M
            ((mode_mv[this_mode].as_mv.row >> 3) > x->mv_row_max) ||
1095
1.98M
            ((mode_mv[this_mode].as_mv.col >> 3) < x->mv_col_min) ||
1096
1.98M
            ((mode_mv[this_mode].as_mv.col >> 3) > x->mv_col_max)) {
1097
0
          continue;
1098
0
        }
1099
1100
1.98M
        rate2 += vp8_cost_mv_ref(this_mode, mdcounts);
1101
1.98M
        x->e_mbd.mode_info_context->mbmi.mv.as_int = mode_mv[this_mode].as_int;
1102
1.98M
        this_rd = evaluate_inter_mode(&sse, rate2, &distortion2, cpi, x,
1103
1.98M
                                      rd_adjustment);
1104
1105
1.98M
        break;
1106
0
      default: break;
1107
5.38M
    }
1108
1109
3.87M
#if CONFIG_TEMPORAL_DENOISING
1110
3.87M
    if (cpi->oxcf.noise_sensitivity) {
1111
      /* Store for later use by denoiser. */
1112
      // Don't denoise with GOLDEN OR ALTREF is they are old reference
1113
      // frames (greater than MAX_GF_ARF_DENOISE_RANGE frames in past).
1114
0
      int skip_old_reference = ((this_ref_frame != LAST_FRAME) &&
1115
0
                                (cpi->common.current_video_frame -
1116
0
                                     cpi->current_ref_frames[this_ref_frame] >
1117
0
                                 MAX_GF_ARF_DENOISE_RANGE))
1118
0
                                   ? 1
1119
0
                                   : 0;
1120
0
      if (this_mode == ZEROMV && sse < zero_mv_sse && !skip_old_reference) {
1121
0
        zero_mv_sse = sse;
1122
0
        x->best_zeromv_reference_frame =
1123
0
            x->e_mbd.mode_info_context->mbmi.ref_frame;
1124
0
      }
1125
1126
      // Store the best NEWMV in x for later use in the denoiser.
1127
0
      if (x->e_mbd.mode_info_context->mbmi.mode == NEWMV && sse < best_sse &&
1128
0
          !skip_old_reference) {
1129
0
        best_sse = sse;
1130
0
        x->best_sse_inter_mode = NEWMV;
1131
0
        x->best_sse_mv = x->e_mbd.mode_info_context->mbmi.mv;
1132
0
        x->need_to_clamp_best_mvs =
1133
0
            x->e_mbd.mode_info_context->mbmi.need_to_clamp_mvs;
1134
0
        x->best_reference_frame = x->e_mbd.mode_info_context->mbmi.ref_frame;
1135
0
      }
1136
0
    }
1137
3.87M
#endif
1138
1139
3.87M
    if (this_rd < best_rd || x->skip) {
1140
      /* Note index of best mode */
1141
1.95M
      best_mode_index = mode_index;
1142
1143
1.95M
      *returnrate = rate2;
1144
1.95M
      *returndistortion = distortion2;
1145
1.95M
      best_rd_sse = sse;
1146
1.95M
      best_rd = this_rd;
1147
1.95M
      memcpy(&best_mbmode, &x->e_mbd.mode_info_context->mbmi,
1148
1.95M
             sizeof(MB_MODE_INFO));
1149
1150
      /* Testing this mode gave rise to an improvement in best error
1151
       * score. Lower threshold a bit for next time
1152
       */
1153
1.95M
      x->rd_thresh_mult[mode_index] =
1154
1.95M
          (x->rd_thresh_mult[mode_index] >= (MIN_THRESHMULT + 2))
1155
1.95M
              ? x->rd_thresh_mult[mode_index] - 2
1156
1.95M
              : MIN_THRESHMULT;
1157
1.95M
      x->rd_threshes[mode_index] = (cpi->rd_baseline_thresh[mode_index] >> 7) *
1158
1.95M
                                   x->rd_thresh_mult[mode_index];
1159
1.95M
    }
1160
1161
    /* If the mode did not help improve the best error case then raise the
1162
     * threshold for testing that mode next time around.
1163
     */
1164
1.91M
    else {
1165
1.91M
      x->rd_thresh_mult[mode_index] += 4;
1166
1167
1.91M
      if (x->rd_thresh_mult[mode_index] > MAX_THRESHMULT) {
1168
760k
        x->rd_thresh_mult[mode_index] = MAX_THRESHMULT;
1169
760k
      }
1170
1171
1.91M
      x->rd_threshes[mode_index] = (cpi->rd_baseline_thresh[mode_index] >> 7) *
1172
1.91M
                                   x->rd_thresh_mult[mode_index];
1173
1.91M
    }
1174
1175
3.87M
    if (x->skip) break;
1176
3.87M
  }
1177
1178
  /* Reduce the activation RD thresholds for the best choice mode */
1179
750k
  if ((cpi->rd_baseline_thresh[best_mode_index] > 0) &&
1180
750k
      (cpi->rd_baseline_thresh[best_mode_index] < (INT_MAX >> 2))) {
1181
329k
    int best_adjustment = (x->rd_thresh_mult[best_mode_index] >> 3);
1182
1183
329k
    x->rd_thresh_mult[best_mode_index] =
1184
329k
        (x->rd_thresh_mult[best_mode_index] >=
1185
329k
         (MIN_THRESHMULT + best_adjustment))
1186
329k
            ? x->rd_thresh_mult[best_mode_index] - best_adjustment
1187
329k
            : MIN_THRESHMULT;
1188
329k
    x->rd_threshes[best_mode_index] =
1189
329k
        (cpi->rd_baseline_thresh[best_mode_index] >> 7) *
1190
329k
        x->rd_thresh_mult[best_mode_index];
1191
329k
  }
1192
1193
750k
  {
1194
750k
    int this_rdbin = (*returndistortion >> 7);
1195
1196
750k
    if (this_rdbin >= 1024) {
1197
367k
      this_rdbin = 1023;
1198
367k
    }
1199
1200
750k
    x->error_bins[this_rdbin]++;
1201
750k
  }
1202
1203
750k
#if CONFIG_TEMPORAL_DENOISING
1204
750k
  if (cpi->oxcf.noise_sensitivity) {
1205
0
    int block_index = mb_row * cpi->common.mb_cols + mb_col;
1206
0
    int reevaluate = 0;
1207
0
    int is_noisy = 0;
1208
0
    if (x->best_sse_inter_mode == DC_PRED) {
1209
      /* No best MV found. */
1210
0
      x->best_sse_inter_mode = best_mbmode.mode;
1211
0
      x->best_sse_mv = best_mbmode.mv;
1212
0
      x->need_to_clamp_best_mvs = best_mbmode.need_to_clamp_mvs;
1213
0
      x->best_reference_frame = best_mbmode.ref_frame;
1214
0
      best_sse = best_rd_sse;
1215
0
    }
1216
    // For non-skin blocks that have selected ZEROMV for this current frame,
1217
    // and have been selecting ZEROMV_LAST (on the base layer frame) at
1218
    // least |x~20| consecutive past frames in a row, label the block for
1219
    // possible increase in denoising strength. We also condition this
1220
    // labeling on there being significant denoising in the scene
1221
0
    if (cpi->oxcf.noise_sensitivity == 4) {
1222
0
      if (cpi->denoiser.nmse_source_diff >
1223
0
          70 * cpi->denoiser.threshold_aggressive_mode / 100) {
1224
0
        is_noisy = 1;
1225
0
      }
1226
0
    } else {
1227
0
      if (cpi->mse_source_denoised > 1000) is_noisy = 1;
1228
0
    }
1229
0
    x->increase_denoising = 0;
1230
0
    if (!x->is_skin && x->best_sse_inter_mode == ZEROMV &&
1231
0
        (x->best_reference_frame == LAST_FRAME ||
1232
0
         x->best_reference_frame == cpi->closest_reference_frame) &&
1233
0
        cpi->consec_zero_last[block_index] >= 20 && is_noisy) {
1234
0
      x->increase_denoising = 1;
1235
0
    }
1236
0
    x->denoise_zeromv = 0;
1237
0
    vp8_denoiser_denoise_mb(&cpi->denoiser, x, best_sse, zero_mv_sse,
1238
0
                            recon_yoffset, recon_uvoffset, &cpi->common.lf_info,
1239
0
                            mb_row, mb_col, block_index,
1240
0
                            cpi->consec_zero_last_mvbias[block_index]);
1241
1242
    // Reevaluate ZEROMV after denoising: for large noise content
1243
    // (i.e., cpi->mse_source_denoised is above threshold), do this for all
1244
    // blocks that did not pick ZEROMV as best mode but are using ZEROMV
1245
    // for denoising. Otherwise, always re-evaluate for blocks that picked
1246
    // INTRA mode as best mode.
1247
    // Avoid blocks that have been biased against ZERO_LAST
1248
    // (i.e., dot artifact candidate blocks).
1249
0
    reevaluate = (best_mbmode.ref_frame == INTRA_FRAME) ||
1250
0
                 (best_mbmode.mode != ZEROMV && x->denoise_zeromv &&
1251
0
                  cpi->mse_source_denoised > 2000);
1252
0
    if (!dot_artifact_candidate && reevaluate &&
1253
0
        x->best_zeromv_reference_frame != INTRA_FRAME) {
1254
0
      int this_rd = 0;
1255
0
      int this_ref_frame = x->best_zeromv_reference_frame;
1256
0
      rd_adjustment = 100;
1257
0
      rate2 =
1258
0
          x->ref_frame_cost[this_ref_frame] + vp8_cost_mv_ref(ZEROMV, mdcounts);
1259
0
      distortion2 = 0;
1260
1261
      /* set up the proper prediction buffers for the frame */
1262
0
      x->e_mbd.mode_info_context->mbmi.ref_frame = this_ref_frame;
1263
0
      x->e_mbd.pre.y_buffer = plane[this_ref_frame][0];
1264
0
      x->e_mbd.pre.u_buffer = plane[this_ref_frame][1];
1265
0
      x->e_mbd.pre.v_buffer = plane[this_ref_frame][2];
1266
1267
0
      x->e_mbd.mode_info_context->mbmi.mode = ZEROMV;
1268
0
      x->e_mbd.mode_info_context->mbmi.uv_mode = DC_PRED;
1269
0
      x->e_mbd.mode_info_context->mbmi.mv.as_int = 0;
1270
0
      this_rd =
1271
0
          evaluate_inter_mode(&sse, rate2, &distortion2, cpi, x, rd_adjustment);
1272
1273
0
      if (this_rd < best_rd) {
1274
0
        memcpy(&best_mbmode, &x->e_mbd.mode_info_context->mbmi,
1275
0
               sizeof(MB_MODE_INFO));
1276
0
      }
1277
0
    }
1278
0
  }
1279
750k
#endif
1280
1281
750k
  if (cpi->is_src_frame_alt_ref &&
1282
750k
      (best_mbmode.mode != ZEROMV || best_mbmode.ref_frame != ALTREF_FRAME)) {
1283
0
    x->e_mbd.mode_info_context->mbmi.mode = ZEROMV;
1284
0
    x->e_mbd.mode_info_context->mbmi.ref_frame = ALTREF_FRAME;
1285
0
    x->e_mbd.mode_info_context->mbmi.mv.as_int = 0;
1286
0
    x->e_mbd.mode_info_context->mbmi.uv_mode = DC_PRED;
1287
0
    x->e_mbd.mode_info_context->mbmi.mb_skip_coeff =
1288
0
        (cpi->common.mb_no_coeff_skip);
1289
0
    x->e_mbd.mode_info_context->mbmi.partitioning = 0;
1290
1291
0
    return;
1292
0
  }
1293
1294
  /* set to the best mb mode, this copy can be skip if x->skip since it
1295
   * already has the right content */
1296
750k
  if (!x->skip) {
1297
750k
    memcpy(&x->e_mbd.mode_info_context->mbmi, &best_mbmode,
1298
750k
           sizeof(MB_MODE_INFO));
1299
750k
  }
1300
1301
750k
  if (best_mbmode.mode <= B_PRED) {
1302
    /* set mode_info_context->mbmi.uv_mode */
1303
500k
    pick_intra_mbuv_mode(x);
1304
500k
  }
1305
1306
750k
  if (sign_bias !=
1307
750k
      cpi->common.ref_frame_sign_bias[xd->mode_info_context->mbmi.ref_frame]) {
1308
0
    best_ref_mv.as_int = best_ref_mv_sb[!sign_bias].as_int;
1309
0
  }
1310
1311
750k
  update_mvcount(x, &best_ref_mv);
1312
750k
}
1313
1314
602k
void vp8_pick_intra_mode(MACROBLOCK *x, int *rate) {
1315
602k
  int error4x4, error16x16 = INT_MAX;
1316
602k
  int rate_, best_rate = 0, distortion, best_sse;
1317
602k
  MB_PREDICTION_MODE mode, best_mode = DC_PRED;
1318
602k
  int this_rd;
1319
602k
  unsigned int sse;
1320
602k
  BLOCK *b = &x->block[0];
1321
602k
  MACROBLOCKD *xd = &x->e_mbd;
1322
1323
602k
  xd->mode_info_context->mbmi.ref_frame = INTRA_FRAME;
1324
1325
602k
  pick_intra_mbuv_mode(x);
1326
1327
3.01M
  for (mode = DC_PRED; mode <= TM_PRED; ++mode) {
1328
2.40M
    xd->mode_info_context->mbmi.mode = mode;
1329
2.40M
    vp8_build_intra_predictors_mby_s(xd, xd->dst.y_buffer - xd->dst.y_stride,
1330
2.40M
                                     xd->dst.y_buffer - 1, xd->dst.y_stride,
1331
2.40M
                                     xd->predictor, 16);
1332
2.40M
    distortion = vpx_variance16x16(*(b->base_src), b->src_stride, xd->predictor,
1333
2.40M
                                   16, &sse);
1334
2.40M
    rate_ = x->mbmode_cost[xd->frame_type][mode];
1335
2.40M
    this_rd = RDCOST(x->rdmult, x->rddiv, rate_, distortion);
1336
1337
2.40M
    if (error16x16 > this_rd) {
1338
802k
      error16x16 = this_rd;
1339
802k
      best_mode = mode;
1340
802k
      best_sse = sse;
1341
802k
      best_rate = rate_;
1342
802k
    }
1343
2.40M
  }
1344
602k
  xd->mode_info_context->mbmi.mode = best_mode;
1345
1346
602k
  error4x4 = pick_intra4x4mby_modes(x, &rate_, &best_sse);
1347
602k
  if (error4x4 < error16x16) {
1348
326k
    xd->mode_info_context->mbmi.mode = B_PRED;
1349
326k
    best_rate = rate_;
1350
326k
  }
1351
1352
602k
  *rate = best_rate;
1353
602k
}