Coverage Report

Created: 2026-07-25 07:52

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/theora/lib/mcenc.c
Line
Count
Source
1
/********************************************************************
2
 *                                                                  *
3
 * THIS FILE IS PART OF THE OggTheora SOFTWARE CODEC SOURCE CODE.   *
4
 * USE, DISTRIBUTION AND REPRODUCTION OF THIS LIBRARY SOURCE IS     *
5
 * GOVERNED BY A BSD-STYLE SOURCE LICENSE INCLUDED WITH THIS SOURCE *
6
 * IN 'COPYING'. PLEASE READ THESE TERMS BEFORE DISTRIBUTING.       *
7
 *                                                                  *
8
 * THE Theora SOURCE CODE IS COPYRIGHT (C) 2002-2009                *
9
 * by the Xiph.Org Foundation https://www.xiph.org/                 *
10
 *                                                                  *
11
 ********************************************************************
12
13
  function:
14
15
 ********************************************************************/
16
#include <stdlib.h>
17
#include <limits.h>
18
#include <string.h>
19
#include "encint.h"
20
21
22
23
typedef struct oc_mcenc_ctx           oc_mcenc_ctx;
24
25
26
27
/*Temporary state used for motion estimation.*/
28
struct oc_mcenc_ctx{
29
  /*The candidate motion vectors.*/
30
  int                candidates[13][2];
31
  /*The start of the Set B candidates.*/
32
  int                setb0;
33
  /*The total number of candidates.*/
34
  int                ncandidates;
35
};
36
37
38
39
/*The maximum Y plane SAD value for accepting the median predictor.*/
40
438k
#define OC_YSAD_THRESH1            (256)
41
/*The amount to right shift the minimum error by when inflating it for
42
   computing the second maximum Y plane SAD threshold.*/
43
373k
#define OC_YSAD_THRESH2_SCALE_BITS (4)
44
/*The amount to add to the second maximum Y plane threshold when inflating
45
   it.*/
46
373k
#define OC_YSAD_THRESH2_OFFSET     (64)
47
48
/*The vector offsets in the X direction for each search site in the square
49
   pattern.*/
50
static const int OC_SQUARE_DX[9]={-1,0,1,-1,0,1,-1,0,1};
51
/*The vector offsets in the Y direction for each search site in the square
52
   pattern.*/
53
static const int OC_SQUARE_DY[9]={-1,-1,-1,0,0,0,1,1,1};
54
/*The number of sites to search for each boundary condition in the square
55
   pattern.
56
  Bit flags for the boundary conditions are as follows:
57
  1: -16==dx
58
  2:      dx==15(.5)
59
  4: -16==dy
60
  8:      dy==15(.5)*/
61
static const int OC_SQUARE_NSITES[11]={8,5,5,0,5,3,3,0,5,3,3};
62
/*The list of sites to search for each boundary condition in the square
63
   pattern.*/
64
static const int OC_SQUARE_SITES[11][8]={
65
  /* -15.5<dx<31,       -15.5<dy<15(.5)*/
66
  {0,1,2,3,5,6,7,8},
67
  /*-15.5==dx,          -15.5<dy<15(.5)*/
68
  {1,2,5,7,8},
69
  /*     dx==15(.5),    -15.5<dy<15(.5)*/
70
  {0,1,3,6,7},
71
  /*-15.5==dx==15(.5),  -15.5<dy<15(.5)*/
72
  {-1},
73
  /* -15.5<dx<15(.5),  -15.5==dy*/
74
  {3,5,6,7,8},
75
  /*-15.5==dx,         -15.5==dy*/
76
  {5,7,8},
77
  /*     dx==15(.5),   -15.5==dy*/
78
  {3,6,7},
79
  /*-15.5==dx==15(.5), -15.5==dy*/
80
  {-1},
81
  /*-15.5dx<15(.5),           dy==15(.5)*/
82
  {0,1,2,3,5},
83
  /*-15.5==dx,                dy==15(.5)*/
84
  {1,2,5},
85
  /*       dx==15(.5),        dy==15(.5)*/
86
  {0,1,3}
87
};
88
89
90
static void oc_mcenc_find_candidates_a(oc_enc_ctx *_enc,oc_mcenc_ctx *_mcenc,
91
438k
 oc_mv _accum,int _mbi,int _frame){
92
438k
  oc_mb_enc_info *embs;
93
438k
  int             accum_x;
94
438k
  int             accum_y;
95
438k
  int             a[3][2];
96
438k
  int             ncandidates;
97
438k
  unsigned        nmbi;
98
438k
  int             i;
99
438k
  embs=_enc->mb_info;
100
  /*Skip a position to store the median predictor in.*/
101
438k
  ncandidates=1;
102
438k
  if(embs[_mbi].ncneighbors>0){
103
    /*Fill in the first part of set A: the vectors from adjacent blocks.*/
104
1.07M
    for(i=0;i<embs[_mbi].ncneighbors;i++){
105
710k
      nmbi=embs[_mbi].cneighbors[i];
106
710k
      _mcenc->candidates[ncandidates][0]=
107
710k
       OC_MV_X(embs[nmbi].analysis_mv[0][_frame]);
108
710k
      _mcenc->candidates[ncandidates][1]=
109
710k
       OC_MV_Y(embs[nmbi].analysis_mv[0][_frame]);
110
710k
      ncandidates++;
111
710k
    }
112
360k
  }
113
438k
  accum_x=OC_MV_X(_accum);
114
438k
  accum_y=OC_MV_Y(_accum);
115
  /*Add a few additional vectors to set A: the vectors used in the previous
116
     frames and the (0,0) vector.*/
117
438k
  _mcenc->candidates[ncandidates][0]=accum_x;
118
438k
  _mcenc->candidates[ncandidates][1]=accum_y;
119
438k
  ncandidates++;
120
438k
  _mcenc->candidates[ncandidates][0]=OC_CLAMPI(-31,
121
438k
   OC_MV_X(embs[_mbi].analysis_mv[1][_frame])+accum_x,31);
122
438k
  _mcenc->candidates[ncandidates][1]=OC_CLAMPI(-31,
123
438k
   OC_MV_Y(embs[_mbi].analysis_mv[1][_frame])+accum_y,31);
124
438k
  ncandidates++;
125
438k
  _mcenc->candidates[ncandidates][0]=0;
126
438k
  _mcenc->candidates[ncandidates][1]=0;
127
438k
  ncandidates++;
128
  /*Use the first three vectors of set A to find our best predictor: their
129
     median.*/
130
438k
  memcpy(a,_mcenc->candidates+1,sizeof(a));
131
438k
  OC_SORT2I(a[0][0],a[1][0]);
132
438k
  OC_SORT2I(a[0][1],a[1][1]);
133
438k
  OC_SORT2I(a[1][0],a[2][0]);
134
438k
  OC_SORT2I(a[1][1],a[2][1]);
135
438k
  OC_SORT2I(a[0][0],a[1][0]);
136
438k
  OC_SORT2I(a[0][1],a[1][1]);
137
438k
  _mcenc->candidates[0][0]=a[1][0];
138
438k
  _mcenc->candidates[0][1]=a[1][1];
139
438k
  _mcenc->setb0=ncandidates;
140
438k
}
141
142
static void oc_mcenc_find_candidates_b(oc_enc_ctx *_enc,oc_mcenc_ctx *_mcenc,
143
104k
 oc_mv _accum,int _mbi,int _frame){
144
104k
  oc_mb_enc_info *embs;
145
104k
  int             accum_x;
146
104k
  int             accum_y;
147
104k
  int             ncandidates;
148
104k
  embs=_enc->mb_info;
149
104k
  accum_x=OC_MV_X(_accum);
150
104k
  accum_y=OC_MV_Y(_accum);
151
  /*Fill in set B: accelerated predictors for this and adjacent macro blocks.*/
152
104k
  ncandidates=_mcenc->setb0;
153
  /*Use only the current block. Using more did not appear to be helpful
154
    with the current selection logic due to escaping the local search too
155
    quickly.*/
156
104k
  _mcenc->candidates[ncandidates][0]=OC_CLAMPI(-31,
157
104k
   2*OC_MV_X(embs[_mbi].analysis_mv[1][_frame])
158
104k
   -OC_MV_X(embs[_mbi].analysis_mv[2][_frame])+accum_x,31);
159
104k
  _mcenc->candidates[ncandidates][1]=OC_CLAMPI(-31,
160
104k
   2*OC_MV_Y(embs[_mbi].analysis_mv[1][_frame])
161
104k
   -OC_MV_Y(embs[_mbi].analysis_mv[2][_frame])+accum_y,31);
162
104k
  ncandidates++;
163
104k
  _mcenc->ncandidates=ncandidates;
164
104k
}
165
166
static unsigned oc_sad16_halfpel(const oc_enc_ctx *_enc,
167
 const ptrdiff_t *_frag_buf_offs,const ptrdiff_t _fragis[4],
168
 int _mvoffset0,int _mvoffset1,const unsigned char *_src,
169
0
 const unsigned char *_ref,int _ystride,unsigned _best_err){
170
0
  unsigned err;
171
0
  int      bi;
172
0
  err=0;
173
0
  for(bi=0;bi<4;bi++){
174
0
    ptrdiff_t frag_offs;
175
0
    frag_offs=_frag_buf_offs[_fragis[bi]];
176
0
    err+=oc_enc_frag_sad2_thresh(_enc,_src+frag_offs,_ref+frag_offs+_mvoffset0,
177
0
     _ref+frag_offs+_mvoffset1,_ystride,_best_err-err);
178
0
  }
179
0
  return err;
180
0
}
181
182
static unsigned oc_satd16_halfpel(const oc_enc_ctx *_enc,
183
 const ptrdiff_t *_frag_buf_offs,const ptrdiff_t _fragis[4],
184
 int _mvoffset0,int _mvoffset1,const unsigned char *_src,
185
2.19M
 const unsigned char *_ref,int _ystride,unsigned _best_err){
186
2.19M
  unsigned err;
187
2.19M
  int      dc;
188
2.19M
  int      bi;
189
2.19M
  err=0;
190
10.9M
  for(bi=0;bi<4;bi++){
191
8.78M
    ptrdiff_t frag_offs;
192
8.78M
    frag_offs=_frag_buf_offs[_fragis[bi]];
193
8.78M
    err+=oc_enc_frag_satd2(_enc,&dc,_src+frag_offs,
194
8.78M
     _ref+frag_offs+_mvoffset0,_ref+frag_offs+_mvoffset1,_ystride);
195
8.78M
    err+=abs(dc);
196
8.78M
  }
197
2.19M
  return err;
198
2.19M
}
199
200
static unsigned oc_mcenc_ysad_check_mbcandidate_fullpel(const oc_enc_ctx *_enc,
201
 const ptrdiff_t *_frag_buf_offs,const ptrdiff_t _fragis[4],int _dx,int _dy,
202
 const unsigned char *_src,const unsigned char *_ref,int _ystride,
203
3.63M
 unsigned _block_err[4]){
204
3.63M
  unsigned err;
205
3.63M
  int      mvoffset;
206
3.63M
  int      bi;
207
3.63M
  mvoffset=_dx+_dy*_ystride;
208
3.63M
  err=0;
209
18.1M
  for(bi=0;bi<4;bi++){
210
14.5M
    ptrdiff_t frag_offs;
211
14.5M
    unsigned  block_err;
212
14.5M
    frag_offs=_frag_buf_offs[_fragis[bi]];
213
14.5M
    block_err=oc_enc_frag_sad(_enc,
214
14.5M
     _src+frag_offs,_ref+frag_offs+mvoffset,_ystride);
215
14.5M
    _block_err[bi]=block_err;
216
14.5M
    err+=block_err;
217
14.5M
  }
218
3.63M
  return err;
219
3.63M
}
220
221
static int oc_mcenc_ysatd_check_mbcandidate_fullpel(const oc_enc_ctx *_enc,
222
 const ptrdiff_t *_frag_buf_offs,const ptrdiff_t _fragis[4],int _dx,int _dy,
223
438k
 const unsigned char *_src,const unsigned char *_ref,int _ystride){
224
438k
  int mvoffset;
225
438k
  int err;
226
438k
  int bi;
227
438k
  mvoffset=_dx+_dy*_ystride;
228
438k
  err=0;
229
2.19M
  for(bi=0;bi<4;bi++){
230
1.75M
    ptrdiff_t frag_offs;
231
1.75M
    int       dc;
232
1.75M
    frag_offs=_frag_buf_offs[_fragis[bi]];
233
1.75M
    if(_enc->sp_level<OC_SP_LEVEL_NOSATD){
234
1.75M
      err+=oc_enc_frag_satd(_enc,&dc,
235
1.75M
       _src+frag_offs,_ref+frag_offs+mvoffset,_ystride);
236
1.75M
      err+=abs(dc);
237
1.75M
    }
238
0
    else{
239
0
      err+=oc_enc_frag_sad(_enc,
240
0
       _src+frag_offs,_ref+frag_offs+mvoffset,_ystride);
241
0
    }
242
1.75M
  }
243
438k
  return err;
244
438k
}
245
246
static unsigned oc_mcenc_ysatd_check_bcandidate_fullpel(const oc_enc_ctx *_enc,
247
 ptrdiff_t _frag_offs,int _dx,int _dy,
248
877k
 const unsigned char *_src,const unsigned char *_ref,int _ystride){
249
877k
  unsigned err;
250
877k
  int      dc;
251
877k
  err=oc_enc_frag_satd(_enc,&dc,
252
877k
   _src+_frag_offs,_ref+_frag_offs+_dx+_dy*_ystride,_ystride);
253
877k
  return err+abs(dc);
254
877k
}
255
256
/*Perform a motion vector search for this macro block against a single
257
   reference frame.
258
  As a bonus, individual block motion vectors are computed as well, as much of
259
   the work can be shared.
260
  The actual motion vector is stored in the appropriate place in the
261
   oc_mb_enc_info structure.
262
  _accum:      Drop frame/golden MV accumulators.
263
  _mbi:        The macro block index.
264
  _frame:      The frame to use for SATD calculations and refinement,
265
                either OC_FRAME_PREV or OC_FRAME_GOLD.
266
  _frame_full: The frame to perform the 1px search on, one of OC_FRAME_PREV,
267
                OC_FRAME_GOLD, OC_FRAME_PREV_ORIG, or OC_FRAME_GOLD_ORIG.*/
268
void oc_mcenc_search_frame(oc_enc_ctx *_enc,oc_mv _accum,int _mbi,int _frame,
269
438k
 int _frame_full){
270
  /*Note: Traditionally this search is done using a rate-distortion objective
271
     function of the form D+lambda*R.
272
    However, xiphmont tested this and found it produced a small degradation,
273
     while requiring extra computation.
274
    This is most likely due to Theora's peculiar MV encoding scheme: MVs are
275
     not coded relative to a predictor, and the only truly cheap way to use a
276
     MV is in the LAST or LAST2 MB modes, which are not being considered here.
277
    Therefore if we use the MV found here, it's only because both LAST and
278
     LAST2 performed poorly, and therefore the MB is not likely to be uniform
279
     or suffer from the aperture problem.
280
    Furthermore we would like to reuse the MV found here for as many MBs as
281
     possible, so picking a slightly sub-optimal vector to save a bit or two
282
     may cause increased degradation in many blocks to come.
283
    We could artificially reduce lambda to compensate, but it's faster to just
284
     disable it entirely, and use D (the distortion) as the sole criterion.*/
285
438k
  oc_mcenc_ctx         mcenc;
286
438k
  const ptrdiff_t     *frag_buf_offs;
287
438k
  const ptrdiff_t     *fragis;
288
438k
  const unsigned char *src;
289
438k
  const unsigned char *ref;
290
438k
  const unsigned char *satd_ref;
291
438k
  int                  ystride;
292
438k
  oc_mb_enc_info      *embs;
293
438k
  ogg_int32_t          hit_cache[31];
294
438k
  ogg_int32_t          hitbit;
295
438k
  unsigned             best_block_err[4];
296
438k
  unsigned             block_err[4];
297
438k
  unsigned             best_err;
298
438k
  int                  best_vec[2];
299
438k
  int                  best_block_vec[4][2];
300
438k
  int                  candx;
301
438k
  int                  candy;
302
438k
  int                  bi;
303
438k
  embs=_enc->mb_info;
304
  /*Find some candidate motion vectors.*/
305
438k
  oc_mcenc_find_candidates_a(_enc,&mcenc,_accum,_mbi,_frame);
306
  /*Clear the cache of locations we've examined.*/
307
438k
  memset(hit_cache,0,sizeof(hit_cache));
308
  /*Start with the median predictor.*/
309
438k
  candx=OC_DIV2(mcenc.candidates[0][0]);
310
438k
  candy=OC_DIV2(mcenc.candidates[0][1]);
311
438k
  hit_cache[candy+15]|=(ogg_int32_t)1<<candx+15;
312
438k
  frag_buf_offs=_enc->state.frag_buf_offs;
313
438k
  fragis=_enc->state.mb_maps[_mbi][0];
314
438k
  src=_enc->state.ref_frame_data[OC_FRAME_IO];
315
438k
  ref=_enc->state.ref_frame_data[_frame_full];
316
438k
  satd_ref=_enc->state.ref_frame_data[_frame];
317
438k
  ystride=_enc->state.ref_ystride[0];
318
  /*TODO: customize error function for speed/(quality+size) tradeoff.*/
319
438k
  best_err=oc_mcenc_ysad_check_mbcandidate_fullpel(_enc,
320
438k
   frag_buf_offs,fragis,candx,candy,src,ref,ystride,block_err);
321
438k
  best_vec[0]=candx;
322
438k
  best_vec[1]=candy;
323
438k
  if(_frame==OC_FRAME_PREV){
324
1.09M
    for(bi=0;bi<4;bi++){
325
877k
      best_block_err[bi]=block_err[bi];
326
877k
      best_block_vec[bi][0]=candx;
327
877k
      best_block_vec[bi][1]=candy;
328
877k
    }
329
219k
  }
330
  /*If this predictor fails, move on to set A.*/
331
438k
  if(best_err>OC_YSAD_THRESH1){
332
373k
    unsigned err;
333
373k
    unsigned t2;
334
373k
    int      ncs;
335
373k
    int      ci;
336
    /*Compute the early termination threshold for set A.*/
337
373k
    t2=embs[_mbi].error[_frame];
338
373k
    ncs=OC_MINI(3,embs[_mbi].ncneighbors);
339
973k
    for(ci=0;ci<ncs;ci++){
340
599k
      t2=OC_MAXI(t2,embs[embs[_mbi].cneighbors[ci]].error[_frame]);
341
599k
    }
342
373k
    t2+=(t2>>OC_YSAD_THRESH2_SCALE_BITS)+OC_YSAD_THRESH2_OFFSET;
343
    /*Examine the candidates in set A.*/
344
2.10M
    for(ci=1;ci<mcenc.setb0;ci++){
345
1.73M
      candx=OC_DIV2(mcenc.candidates[ci][0]);
346
1.73M
      candy=OC_DIV2(mcenc.candidates[ci][1]);
347
      /*If we've already examined this vector, then we would be using it if it
348
         was better than what we are using.*/
349
1.73M
      hitbit=(ogg_int32_t)1<<candx+15;
350
1.73M
      if(hit_cache[candy+15]&hitbit)continue;
351
683k
      hit_cache[candy+15]|=hitbit;
352
683k
      err=oc_mcenc_ysad_check_mbcandidate_fullpel(_enc,
353
683k
       frag_buf_offs,fragis,candx,candy,src,ref,ystride,block_err);
354
683k
      if(err<best_err){
355
257k
        best_err=err;
356
257k
        best_vec[0]=candx;
357
257k
        best_vec[1]=candy;
358
257k
      }
359
683k
      if(_frame==OC_FRAME_PREV){
360
1.50M
        for(bi=0;bi<4;bi++)if(block_err[bi]<best_block_err[bi]){
361
456k
          best_block_err[bi]=block_err[bi];
362
456k
          best_block_vec[bi][0]=candx;
363
456k
          best_block_vec[bi][1]=candy;
364
456k
        }
365
301k
      }
366
683k
    }
367
373k
    if(best_err>t2){
368
104k
      oc_mcenc_find_candidates_b(_enc,&mcenc,_accum,_mbi,_frame);
369
      /*Examine the candidates in set B.*/
370
209k
      for(;ci<mcenc.ncandidates;ci++){
371
104k
        candx=OC_DIV2(mcenc.candidates[ci][0]);
372
104k
        candy=OC_DIV2(mcenc.candidates[ci][1]);
373
104k
        hitbit=(ogg_int32_t)1<<candx+15;
374
104k
        if(hit_cache[candy+15]&hitbit)continue;
375
44.7k
        hit_cache[candy+15]|=hitbit;
376
44.7k
        err=oc_mcenc_ysad_check_mbcandidate_fullpel(_enc,
377
44.7k
         frag_buf_offs,fragis,candx,candy,src,ref,ystride,block_err);
378
44.7k
        if(err<best_err){
379
13.5k
          best_err=err;
380
13.5k
          best_vec[0]=candx;
381
13.5k
          best_vec[1]=candy;
382
13.5k
        }
383
44.7k
        if(_frame==OC_FRAME_PREV){
384
118k
          for(bi=0;bi<4;bi++)if(block_err[bi]<best_block_err[bi]){
385
28.7k
            best_block_err[bi]=block_err[bi];
386
28.7k
            best_block_vec[bi][0]=candx;
387
28.7k
            best_block_vec[bi][1]=candy;
388
28.7k
          }
389
23.7k
        }
390
44.7k
      }
391
      /*Use the same threshold for set B as in set A.*/
392
104k
      if(best_err>t2){
393
100k
        int best_site;
394
100k
        int nsites;
395
100k
        int sitei;
396
100k
        int site;
397
100k
        int b;
398
        /*Square pattern search.*/
399
458k
        for(;;){
400
458k
          best_site=4;
401
          /*Compose the bit flags for boundary conditions.*/
402
458k
          b=OC_DIV16(-best_vec[0]+1)|OC_DIV16(best_vec[0]+1)<<1|
403
458k
           OC_DIV16(-best_vec[1]+1)<<2|OC_DIV16(best_vec[1]+1)<<3;
404
458k
          nsites=OC_SQUARE_NSITES[b];
405
3.88M
          for(sitei=0;sitei<nsites;sitei++){
406
3.42M
            site=OC_SQUARE_SITES[b][sitei];
407
3.42M
            candx=best_vec[0]+OC_SQUARE_DX[site];
408
3.42M
            candy=best_vec[1]+OC_SQUARE_DY[site];
409
3.42M
            hitbit=(ogg_int32_t)1<<candx+15;
410
3.42M
            if(hit_cache[candy+15]&hitbit)continue;
411
1.96M
            hit_cache[candy+15]|=hitbit;
412
1.96M
            err=oc_mcenc_ysad_check_mbcandidate_fullpel(_enc,
413
1.96M
             frag_buf_offs,fragis,candx,candy,src,ref,ystride,block_err);
414
1.96M
            if(err<best_err){
415
567k
              best_err=err;
416
567k
              best_site=site;
417
567k
            }
418
1.96M
            if(_frame==OC_FRAME_PREV){
419
5.43M
              for(bi=0;bi<4;bi++)if(block_err[bi]<best_block_err[bi]){
420
709k
                best_block_err[bi]=block_err[bi];
421
709k
                best_block_vec[bi][0]=candx;
422
709k
                best_block_vec[bi][1]=candy;
423
709k
              }
424
1.08M
            }
425
1.96M
          }
426
458k
          if(best_site==4)break;
427
357k
          best_vec[0]+=OC_SQUARE_DX[best_site];
428
357k
          best_vec[1]+=OC_SQUARE_DY[best_site];
429
357k
        }
430
        /*Final 4-MV search.*/
431
        /*Simply use 1/4 of the macro block set A and B threshold as the
432
           individual block threshold.*/
433
100k
        if(_frame==OC_FRAME_PREV){
434
54.1k
          t2>>=2;
435
270k
          for(bi=0;bi<4;bi++){
436
216k
            if(best_block_err[bi]>t2){
437
              /*Square pattern search.
438
                We do this in a slightly interesting manner.
439
                We continue to check the SAD of all four blocks in the
440
                 macro block.
441
                This gives us two things:
442
                 1) We can continue to use the hit_cache to avoid duplicate
443
                     checks.
444
                    Otherwise we could continue to read it, but not write to it
445
                     without saving and restoring it for each block.
446
                    Note that we could still eliminate a large number of
447
                     duplicate checks by taking into account the site we came
448
                     from when choosing the site list.
449
                    We can still do that to avoid extra hit_cache queries, and
450
                     it might even be a speed win.
451
                 2) It gives us a slightly better chance of escaping local
452
                     minima.
453
                    We would not be here if we weren't doing a fairly bad job
454
                     in finding a good vector, and checking these vectors can
455
                     save us from 100 to several thousand points off our SAD 1
456
                     in 15 times.
457
                TODO: Is this a good idea?
458
                Who knows.
459
                It needs more testing.*/
460
181k
              for(;;){
461
181k
                int bestx;
462
181k
                int besty;
463
181k
                int bj;
464
181k
                bestx=best_block_vec[bi][0];
465
181k
                besty=best_block_vec[bi][1];
466
                /*Compose the bit flags for boundary conditions.*/
467
181k
                b=OC_DIV16(-bestx+1)|OC_DIV16(bestx+1)<<1|
468
181k
                 OC_DIV16(-besty+1)<<2|OC_DIV16(besty+1)<<3;
469
181k
                nsites=OC_SQUARE_NSITES[b];
470
1.55M
                for(sitei=0;sitei<nsites;sitei++){
471
1.36M
                  site=OC_SQUARE_SITES[b][sitei];
472
1.36M
                  candx=bestx+OC_SQUARE_DX[site];
473
1.36M
                  candy=besty+OC_SQUARE_DY[site];
474
1.36M
                  hitbit=(ogg_int32_t)1<<candx+15;
475
1.36M
                  if(hit_cache[candy+15]&hitbit)continue;
476
499k
                  hit_cache[candy+15]|=hitbit;
477
499k
                  err=oc_mcenc_ysad_check_mbcandidate_fullpel(_enc,
478
499k
                   frag_buf_offs,fragis,candx,candy,src,ref,ystride,block_err);
479
499k
                  if(err<best_err){
480
41.5k
                    best_err=err;
481
41.5k
                    best_vec[0]=candx;
482
41.5k
                    best_vec[1]=candy;
483
41.5k
                  }
484
2.49M
                  for(bj=0;bj<4;bj++)if(block_err[bj]<best_block_err[bj]){
485
201k
                    best_block_err[bj]=block_err[bj];
486
201k
                    best_block_vec[bj][0]=candx;
487
201k
                    best_block_vec[bj][1]=candy;
488
201k
                  }
489
499k
                }
490
181k
                if(best_block_vec[bi][0]==bestx&&best_block_vec[bi][1]==besty){
491
93.3k
                  break;
492
93.3k
                }
493
181k
              }
494
93.3k
            }
495
216k
          }
496
54.1k
        }
497
100k
      }
498
104k
    }
499
373k
  }
500
438k
  embs[_mbi].error[_frame]=(ogg_uint16_t)best_err;
501
438k
  candx=best_vec[0];
502
438k
  candy=best_vec[1];
503
438k
  embs[_mbi].satd[_frame]=oc_mcenc_ysatd_check_mbcandidate_fullpel(_enc,
504
438k
   frag_buf_offs,fragis,candx,candy,src,satd_ref,ystride);
505
438k
  embs[_mbi].analysis_mv[0][_frame]=OC_MV(candx<<1,candy<<1);
506
438k
  if(_frame==OC_FRAME_PREV&&_enc->sp_level<OC_SP_LEVEL_FAST_ANALYSIS){
507
1.09M
    for(bi=0;bi<4;bi++){
508
877k
      candx=best_block_vec[bi][0];
509
877k
      candy=best_block_vec[bi][1];
510
877k
      embs[_mbi].block_satd[bi]=oc_mcenc_ysatd_check_bcandidate_fullpel(_enc,
511
877k
       frag_buf_offs[fragis[bi]],candx,candy,src,satd_ref,ystride);
512
877k
      embs[_mbi].block_mv[bi]=OC_MV(candx<<1,candy<<1);
513
877k
    }
514
219k
  }
515
438k
}
516
517
219k
void oc_mcenc_search(oc_enc_ctx *_enc,int _mbi){
518
219k
  oc_mv2 *mvs;
519
219k
  oc_mv   accum_p;
520
219k
  oc_mv   accum_g;
521
219k
  oc_mv   mv2_p;
522
219k
  mvs=_enc->mb_info[_mbi].analysis_mv;
523
219k
  if(_enc->prevframe_dropped)accum_p=mvs[0][OC_FRAME_PREV];
524
189k
  else accum_p=0;
525
219k
  accum_g=mvs[2][OC_FRAME_GOLD];
526
  /*Move the motion vector predictors back a frame.*/
527
219k
  mv2_p=mvs[2][OC_FRAME_PREV];
528
219k
  mvs[2][OC_FRAME_GOLD]=mvs[1][OC_FRAME_GOLD];
529
219k
  mvs[2][OC_FRAME_PREV]=mvs[1][OC_FRAME_PREV];
530
219k
  mvs[1][OC_FRAME_GOLD]=mvs[0][OC_FRAME_GOLD];
531
219k
  mvs[1][OC_FRAME_PREV]=OC_MV_SUB(mvs[0][OC_FRAME_PREV],mv2_p);
532
  /*Search the last frame.*/
533
219k
  oc_mcenc_search_frame(_enc,accum_p,_mbi,OC_FRAME_PREV,OC_FRAME_PREV_ORIG);
534
219k
  mvs[2][OC_FRAME_PREV]=accum_p;
535
  /*GOLDEN MVs are different from PREV MVs in that they're each absolute
536
     offsets from some frame in the past rather than relative offsets from the
537
     frame before.
538
    For predictor calculation to make sense, we need them to be in the same
539
     form as PREV MVs.*/
540
219k
  mvs[1][OC_FRAME_GOLD]=OC_MV_SUB(mvs[1][OC_FRAME_GOLD],mvs[2][OC_FRAME_GOLD]);
541
219k
  mvs[2][OC_FRAME_GOLD]=OC_MV_SUB(mvs[2][OC_FRAME_GOLD],accum_g);
542
  /*Search the golden frame.*/
543
219k
  oc_mcenc_search_frame(_enc,accum_g,_mbi,OC_FRAME_GOLD,OC_FRAME_GOLD_ORIG);
544
  /*Put GOLDEN MVs back into absolute offset form.
545
    The newest MV is already an absolute offset.*/
546
219k
  mvs[2][OC_FRAME_GOLD]=OC_MV_ADD(mvs[2][OC_FRAME_GOLD],accum_g);
547
219k
  mvs[1][OC_FRAME_GOLD]=OC_MV_ADD(mvs[1][OC_FRAME_GOLD],mvs[2][OC_FRAME_GOLD]);
548
219k
}
549
550
#if 0
551
static int oc_mcenc_ysad_halfpel_mbrefine(const oc_enc_ctx *_enc,int _mbi,
552
 int _vec[2],int _best_err,int _frame){
553
  const unsigned char *src;
554
  const unsigned char *ref;
555
  const ptrdiff_t     *frag_buf_offs;
556
  const ptrdiff_t     *fragis;
557
  int                  offset_y[9];
558
  int                  ystride;
559
  int                  mvoffset_base;
560
  int                  best_site;
561
  int                  sitei;
562
  int                  err;
563
  src=_enc->state.ref_frame_data[OC_FRAME_IO];
564
  ref=_enc->state.ref_frame_data[_framei];
565
  frag_buf_offs=_enc->state.frag_buf_offs;
566
  fragis=_enc->state.mb_maps[_mbi][0];
567
  ystride=_enc->state.ref_ystride[0];
568
  mvoffset_base=_vec[0]+_vec[1]*ystride;
569
  offset_y[0]=offset_y[1]=offset_y[2]=-ystride;
570
  offset_y[3]=offset_y[5]=0;
571
  offset_y[6]=offset_y[7]=offset_y[8]=ystride;
572
  best_site=4;
573
  for(sitei=0;sitei<8;sitei++){
574
    int site;
575
    int xmask;
576
    int ymask;
577
    int dx;
578
    int dy;
579
    int mvoffset0;
580
    int mvoffset1;
581
    site=OC_SQUARE_SITES[0][sitei];
582
    dx=OC_SQUARE_DX[site];
583
    dy=OC_SQUARE_DY[site];
584
    /*The following code SHOULD be equivalent to
585
        oc_state_get_mv_offsets(&_mcenc->enc.state,&mvoffset0,&mvoffset1,
586
         (_vec[0]<<1)+dx,(_vec[1]<<1)+dy,ref_ystride,0);
587
      However, it should also be much faster, as it involves no multiplies and
588
       doesn't have to handle chroma vectors.*/
589
    xmask=OC_SIGNMASK(((_vec[0]<<1)+dx)^dx);
590
    ymask=OC_SIGNMASK(((_vec[1]<<1)+dy)^dy);
591
    mvoffset0=mvoffset_base+(dx&xmask)+(offset_y[site]&ymask);
592
    mvoffset1=mvoffset_base+(dx&~xmask)+(offset_y[site]&~ymask);
593
    err=oc_sad16_halfpel(_enc,frag_buf_offs,fragis,
594
     mvoffset0,mvoffset1,src,ref,ystride,_best_err);
595
    if(err<_best_err){
596
      _best_err=err;
597
      best_site=site;
598
    }
599
  }
600
  _vec[0]=(_vec[0]<<1)+OC_SQUARE_DX[best_site];
601
  _vec[1]=(_vec[1]<<1)+OC_SQUARE_DY[best_site];
602
  return _best_err;
603
}
604
#endif
605
606
static unsigned oc_mcenc_ysatd_halfpel_mbrefine(const oc_enc_ctx *_enc,
607
274k
 int _mbi,int _vec[2],unsigned _best_err,int _frame){
608
274k
  const unsigned char *src;
609
274k
  const unsigned char *ref;
610
274k
  const ptrdiff_t     *frag_buf_offs;
611
274k
  const ptrdiff_t     *fragis;
612
274k
  int                  offset_y[9];
613
274k
  int                  ystride;
614
274k
  int                  mvoffset_base;
615
274k
  int                  best_site;
616
274k
  int                  sitei;
617
274k
  int                  err;
618
274k
  src=_enc->state.ref_frame_data[OC_FRAME_IO];
619
274k
  ref=_enc->state.ref_frame_data[_frame];
620
274k
  frag_buf_offs=_enc->state.frag_buf_offs;
621
274k
  fragis=_enc->state.mb_maps[_mbi][0];
622
274k
  ystride=_enc->state.ref_ystride[0];
623
274k
  mvoffset_base=_vec[0]+_vec[1]*ystride;
624
274k
  offset_y[0]=offset_y[1]=offset_y[2]=-ystride;
625
274k
  offset_y[3]=offset_y[5]=0;
626
274k
  offset_y[6]=offset_y[7]=offset_y[8]=ystride;
627
274k
  best_site=4;
628
2.47M
  for(sitei=0;sitei<8;sitei++){
629
2.19M
    int site;
630
2.19M
    int xmask;
631
2.19M
    int ymask;
632
2.19M
    int dx;
633
2.19M
    int dy;
634
2.19M
    int mvoffset0;
635
2.19M
    int mvoffset1;
636
2.19M
    site=OC_SQUARE_SITES[0][sitei];
637
2.19M
    dx=OC_SQUARE_DX[site];
638
2.19M
    dy=OC_SQUARE_DY[site];
639
    /*The following code SHOULD be equivalent to
640
        oc_state_get_mv_offsets(&_mcenc->enc.state,&mvoffset0,&mvoffset1,
641
         (_vec[0]<<1)+dx,(_vec[1]<<1)+dy,ref_ystride,0);
642
      However, it should also be much faster, as it involves no multiplies and
643
       doesn't have to handle chroma vectors.*/
644
2.19M
    xmask=OC_SIGNMASK(((_vec[0]<<1)+dx)^dx);
645
2.19M
    ymask=OC_SIGNMASK(((_vec[1]<<1)+dy)^dy);
646
2.19M
    mvoffset0=mvoffset_base+(dx&xmask)+(offset_y[site]&ymask);
647
2.19M
    mvoffset1=mvoffset_base+(dx&~xmask)+(offset_y[site]&~ymask);
648
2.19M
    if(_enc->sp_level<OC_SP_LEVEL_NOSATD){
649
2.19M
      err=oc_satd16_halfpel(_enc,frag_buf_offs,fragis,
650
2.19M
       mvoffset0,mvoffset1,src,ref,ystride,_best_err);
651
2.19M
    }
652
0
    else{
653
0
      err=oc_sad16_halfpel(_enc,frag_buf_offs,fragis,
654
0
           mvoffset0,mvoffset1,src,ref,ystride,_best_err);
655
0
    }
656
2.19M
    if(err<_best_err){
657
505k
      _best_err=err;
658
505k
      best_site=site;
659
505k
    }
660
2.19M
  }
661
274k
  _vec[0]=(_vec[0]<<1)+OC_SQUARE_DX[best_site];
662
274k
  _vec[1]=(_vec[1]<<1)+OC_SQUARE_DY[best_site];
663
274k
  return _best_err;
664
274k
}
665
666
274k
void oc_mcenc_refine1mv(oc_enc_ctx *_enc,int _mbi,int _frame){
667
274k
  oc_mb_enc_info *embs;
668
274k
  int             vec[2];
669
274k
  embs=_enc->mb_info;
670
274k
  vec[0]=OC_DIV2(OC_MV_X(embs[_mbi].analysis_mv[0][_frame]));
671
274k
  vec[1]=OC_DIV2(OC_MV_Y(embs[_mbi].analysis_mv[0][_frame]));
672
274k
  embs[_mbi].satd[_frame]=oc_mcenc_ysatd_halfpel_mbrefine(_enc,
673
274k
   _mbi,vec,embs[_mbi].satd[_frame],_frame);
674
274k
  embs[_mbi].analysis_mv[0][_frame]=OC_MV(vec[0],vec[1]);
675
274k
}
676
677
#if 0
678
static int oc_mcenc_ysad_halfpel_brefine(const oc_enc_ctx *_enc,
679
 int _vec[2],const unsigned char *_src,const unsigned char *_ref,int _ystride,
680
 int _offset_y[9],unsigned _best_err){
681
  int mvoffset_base;
682
  int best_site;
683
  int sitei;
684
  mvoffset_base=_vec[0]+_vec[1]*_ystride;
685
  best_site=4;
686
  for(sitei=0;sitei<8;sitei++){
687
    unsigned err;
688
    int      site;
689
    int      xmask;
690
    int      ymask;
691
    int      dx;
692
    int      dy;
693
    int      mvoffset0;
694
    int      mvoffset1;
695
    site=OC_SQUARE_SITES[0][sitei];
696
    dx=OC_SQUARE_DX[site];
697
    dy=OC_SQUARE_DY[site];
698
    /*The following code SHOULD be equivalent to
699
        oc_state_get_mv_offsets(&_mcenc->enc.state,&mvoffset0,&mvoffset1,
700
         (_vec[0]<<1)+dx,(_vec[1]<<1)+dy,ref_ystride,0);
701
      However, it should also be much faster, as it involves no multiplies and
702
       doesn't have to handle chroma vectors.*/
703
    xmask=OC_SIGNMASK(((_vec[0]<<1)+dx)^dx);
704
    ymask=OC_SIGNMASK(((_vec[1]<<1)+dy)^dy);
705
    mvoffset0=mvoffset_base+(dx&xmask)+(_offset_y[site]&ymask);
706
    mvoffset1=mvoffset_base+(dx&~xmask)+(_offset_y[site]&~ymask);
707
    err=oc_enc_frag_sad2_thresh(_enc,_src,
708
     _ref+mvoffset0,_ref+mvoffset1,ystride,_best_err);
709
    if(err<_best_err){
710
      _best_err=err;
711
      best_site=site;
712
    }
713
  }
714
  _vec[0]=(_vec[0]<<1)+OC_SQUARE_DX[best_site];
715
  _vec[1]=(_vec[1]<<1)+OC_SQUARE_DY[best_site];
716
  return _best_err;
717
}
718
#endif
719
720
static unsigned oc_mcenc_ysatd_halfpel_brefine(const oc_enc_ctx *_enc,
721
 int _vec[2],const unsigned char *_src,const unsigned char *_ref,int _ystride,
722
113k
 int _offset_y[9],unsigned _best_err){
723
113k
  int mvoffset_base;
724
113k
  int best_site;
725
113k
  int sitei;
726
113k
  mvoffset_base=_vec[0]+_vec[1]*_ystride;
727
113k
  best_site=4;
728
1.02M
  for(sitei=0;sitei<8;sitei++){
729
911k
    unsigned err;
730
911k
    int      dc;
731
911k
    int      site;
732
911k
    int      xmask;
733
911k
    int      ymask;
734
911k
    int      dx;
735
911k
    int      dy;
736
911k
    int      mvoffset0;
737
911k
    int      mvoffset1;
738
911k
    site=OC_SQUARE_SITES[0][sitei];
739
911k
    dx=OC_SQUARE_DX[site];
740
911k
    dy=OC_SQUARE_DY[site];
741
    /*The following code SHOULD be equivalent to
742
        oc_state_get_mv_offsets(&_enc->state,&mvoffsets,0,
743
         (_vec[0]<<1)+dx,(_vec[1]<<1)+dy);
744
      However, it should also be much faster, as it involves no multiplies and
745
       doesn't have to handle chroma vectors.*/
746
911k
    xmask=OC_SIGNMASK(((_vec[0]<<1)+dx)^dx);
747
911k
    ymask=OC_SIGNMASK(((_vec[1]<<1)+dy)^dy);
748
911k
    mvoffset0=mvoffset_base+(dx&xmask)+(_offset_y[site]&ymask);
749
911k
    mvoffset1=mvoffset_base+(dx&~xmask)+(_offset_y[site]&~ymask);
750
911k
    err=oc_enc_frag_satd2(_enc,&dc,_src,
751
911k
     _ref+mvoffset0,_ref+mvoffset1,_ystride);
752
911k
    err+=abs(dc);
753
911k
    if(err<_best_err){
754
232k
      _best_err=err;
755
232k
      best_site=site;
756
232k
    }
757
911k
  }
758
113k
  _vec[0]=(_vec[0]<<1)+OC_SQUARE_DX[best_site];
759
113k
  _vec[1]=(_vec[1]<<1)+OC_SQUARE_DY[best_site];
760
113k
  return _best_err;
761
113k
}
762
763
28.4k
void oc_mcenc_refine4mv(oc_enc_ctx *_enc,int _mbi){
764
28.4k
  oc_mb_enc_info      *embs;
765
28.4k
  const ptrdiff_t     *frag_buf_offs;
766
28.4k
  const ptrdiff_t     *fragis;
767
28.4k
  const unsigned char *src;
768
28.4k
  const unsigned char *ref;
769
28.4k
  int                  offset_y[9];
770
28.4k
  int                  ystride;
771
28.4k
  int                  bi;
772
28.4k
  ystride=_enc->state.ref_ystride[0];
773
28.4k
  frag_buf_offs=_enc->state.frag_buf_offs;
774
28.4k
  fragis=_enc->state.mb_maps[_mbi][0];
775
28.4k
  src=_enc->state.ref_frame_data[OC_FRAME_IO];
776
28.4k
  ref=_enc->state.ref_frame_data[OC_FRAME_PREV];
777
28.4k
  offset_y[0]=offset_y[1]=offset_y[2]=-ystride;
778
28.4k
  offset_y[3]=offset_y[5]=0;
779
28.4k
  offset_y[6]=offset_y[7]=offset_y[8]=ystride;
780
28.4k
  embs=_enc->mb_info;
781
142k
  for(bi=0;bi<4;bi++){
782
113k
    ptrdiff_t frag_offs;
783
113k
    int       vec[2];
784
113k
    frag_offs=frag_buf_offs[fragis[bi]];
785
113k
    vec[0]=OC_DIV2(OC_MV_X(embs[_mbi].block_mv[bi]));
786
113k
    vec[1]=OC_DIV2(OC_MV_Y(embs[_mbi].block_mv[bi]));
787
113k
    embs[_mbi].block_satd[bi]=oc_mcenc_ysatd_halfpel_brefine(_enc,vec,
788
113k
     src+frag_offs,ref+frag_offs,ystride,offset_y,embs[_mbi].block_satd[bi]);
789
113k
    embs[_mbi].ref_mv[bi]=OC_MV(vec[0],vec[1]);
790
113k
  }
791
28.4k
}