Coverage Report

Created: 2026-09-02 06:43

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/vvenc/source/Lib/CommonLib/SampleAdaptiveOffset.cpp
Line
Count
Source
1
/* -----------------------------------------------------------------------------
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The copyright in this software is being made available under the Clear BSD
3
License, included below. No patent rights, trademark rights and/or 
4
other Intellectual Property Rights other than the copyrights concerning 
5
the Software are granted under this license.
6
7
The Clear BSD License
8
9
Copyright (c) 2019-2026, Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. & The VVenC Authors.
10
All rights reserved.
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Redistribution and use in source and binary forms, with or without modification,
13
are permitted (subject to the limitations in the disclaimer below) provided that
14
the following conditions are met:
15
16
     * Redistributions of source code must retain the above copyright notice,
17
     this list of conditions and the following disclaimer.
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19
     * Redistributions in binary form must reproduce the above copyright
20
     notice, this list of conditions and the following disclaimer in the
21
     documentation and/or other materials provided with the distribution.
22
23
     * Neither the name of the copyright holder nor the names of its
24
     contributors may be used to endorse or promote products derived from this
25
     software without specific prior written permission.
26
27
NO EXPRESS OR IMPLIED LICENSES TO ANY PARTY'S PATENT RIGHTS ARE GRANTED BY
28
THIS LICENSE. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND
29
CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
30
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
31
PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
32
CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
33
EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
34
PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
35
BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
36
IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
37
ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
38
POSSIBILITY OF SUCH DAMAGE.
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40
41
------------------------------------------------------------------------------------------- */
42
43
44
/** \file     SampleAdaptiveOffset.cpp
45
    \brief    sample adaptive offset class
46
*/
47
48
#include "SampleAdaptiveOffset.h"
49
#include "UnitTools.h"
50
#include "UnitPartitioner.h"
51
#include "CodingStructure.h"
52
#include "dtrace_codingstruct.h"
53
#include "dtrace_buffer.h"
54
55
#include <string.h>
56
#include <stdlib.h>
57
#include <math.h>
58
59
//! \ingroup CommonLib
60
//! \{
61
62
namespace vvenc {
63
64
void offsetBlock_core(const int channelBitDepth, const ClpRng& clpRng, int typeIdx, int* offset, int startIdx, 
65
                      const Pel* srcBlk, Pel* resBlk, ptrdiff_t srcStride, ptrdiff_t resStride, int width, int height, 
66
                      uint8_t availMask, std::vector<int8_t> &signLineBuf1, std::vector<int8_t> &signLineBuf2)
67
34
{
68
34
  int x, y, startX, startY, endX, endY, edgeType;
69
34
  int firstLineStartX, firstLineEndX, lastLineStartX, lastLineEndX;
70
34
  int8_t signLeft, signRight, signDown;
71
72
34
  const Pel* srcLine = srcBlk;
73
34
  Pel* resLine = resBlk;
74
75
34
  switch (typeIdx)
76
34
  {
77
0
  case SAO_TYPE_EO_0:
78
0
  {
79
0
    offset += 2;
80
0
    startX = availMask&LeftAvail ? 0 : 1;
81
0
    endX = availMask&RightAvail ? width : (width - 1);
82
0
    for (y = 0; y < height; y++)
83
0
    {
84
0
      signLeft = (int8_t)sgn(srcLine[startX] - srcLine[startX - 1]);
85
0
      for (x = startX; x < endX; x++)
86
0
      {
87
0
        signRight = (int8_t)sgn(srcLine[x] - srcLine[x + 1]);
88
0
        edgeType = signRight + signLeft;
89
0
        signLeft = -signRight;
90
91
0
        resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
92
0
      }
93
0
      srcLine += srcStride;
94
0
      resLine += resStride;
95
0
    }
96
97
0
  }
98
0
  break;
99
0
  case SAO_TYPE_EO_90:
100
0
  {
101
0
    offset += 2;
102
0
    int8_t *signUpLine = &signLineBuf1[0];
103
104
0
    startY = availMask&AboveAvail ? 0 : 1;
105
0
    endY = availMask&BelowAvail ? height : height - 1;
106
0
    if (!(availMask&AboveAvail))
107
0
    {
108
0
      srcLine += srcStride;
109
0
      resLine += resStride;
110
0
    }
111
112
0
    const Pel* srcLineAbove = srcLine - srcStride;
113
0
    for (x = 0; x < width; x++)
114
0
    {
115
0
      signUpLine[x] = (int8_t)sgn(srcLine[x] - srcLineAbove[x]);
116
0
    }
117
118
0
    const Pel* srcLineBelow;
119
0
    for (y = startY; y < endY; y++)
120
0
    {
121
0
      srcLineBelow = srcLine + srcStride;
122
123
0
      for (x = 0; x < width; x++)
124
0
      {
125
0
        signDown = (int8_t)sgn(srcLine[x] - srcLineBelow[x]);
126
0
        edgeType = signDown + signUpLine[x];
127
0
        signUpLine[x] = -signDown;
128
129
0
        resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
130
0
      }
131
0
      srcLine += srcStride;
132
0
      resLine += resStride;
133
0
    }
134
135
0
  }
136
0
  break;
137
0
  case SAO_TYPE_EO_135:
138
0
  {
139
0
    offset += 2;
140
0
    int8_t *signUpLine, *signDownLine, *signTmpLine;
141
142
0
    signUpLine = &signLineBuf1[0];
143
0
    signDownLine = &signLineBuf2[0];
144
145
0
    startX = availMask&LeftAvail ? 0 : 1;
146
0
    endX = availMask&RightAvail ? width : (width - 1);
147
148
    //prepare 2nd line's upper sign
149
0
    const Pel* srcLineBelow = srcLine + srcStride;
150
0
    for (x = startX; x < endX + 1; x++)
151
0
    {
152
0
      signUpLine[x] = (int8_t)sgn(srcLineBelow[x] - srcLine[x - 1]);
153
0
    }
154
155
    //1st line
156
0
    const Pel* srcLineAbove = srcLine - srcStride;
157
0
    firstLineStartX = availMask&AboveLeftAvail ? 0 : 1;
158
0
    firstLineEndX = availMask&AboveAvail ? endX : 1;
159
0
    for (x = firstLineStartX; x < firstLineEndX; x++)
160
0
    {
161
0
      edgeType = sgn(srcLine[x] - srcLineAbove[x - 1]) - signUpLine[x + 1];
162
163
0
      resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
164
0
    }
165
0
    srcLine += srcStride;
166
0
    resLine += resStride;
167
168
169
    //middle lines
170
0
    for (y = 1; y < height - 1; y++)
171
0
    {
172
0
      srcLineBelow = srcLine + srcStride;
173
174
0
      for (x = startX; x < endX; x++)
175
0
      {
176
0
        signDown = (int8_t)sgn(srcLine[x] - srcLineBelow[x + 1]);
177
0
        edgeType = signDown + signUpLine[x];
178
0
        resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
179
180
0
        signDownLine[x + 1] = -signDown;
181
0
      }
182
0
      signDownLine[startX] = (int8_t)sgn(srcLineBelow[startX] - srcLine[startX - 1]);
183
184
0
      signTmpLine = signUpLine;
185
0
      signUpLine = signDownLine;
186
0
      signDownLine = signTmpLine;
187
188
0
      srcLine += srcStride;
189
0
      resLine += resStride;
190
0
    }
191
192
    //last line
193
0
    srcLineBelow = srcLine + srcStride;
194
0
    lastLineStartX = availMask&BelowAvail ? startX : (width - 1);
195
0
    lastLineEndX = availMask&BelowRightAvail ? width : (width - 1);
196
0
    for (x = lastLineStartX; x < lastLineEndX; x++)
197
0
    {
198
0
      edgeType = sgn(srcLine[x] - srcLineBelow[x + 1]) + signUpLine[x];
199
0
      resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
200
201
0
    }
202
0
  }
203
0
  break;
204
0
  case SAO_TYPE_EO_45:
205
0
  {
206
0
    offset += 2;
207
0
    int8_t *signUpLine = &signLineBuf1[1];
208
209
0
    startX = availMask&LeftAvail ? 0 : 1;
210
0
    endX = availMask&RightAvail ? width : (width - 1);
211
212
    //prepare 2nd line upper sign
213
0
    const Pel* srcLineBelow = srcLine + srcStride;
214
0
    for (x = startX - 1; x < endX; x++)
215
0
    {
216
0
      signUpLine[x] = (int8_t)sgn(srcLineBelow[x] - srcLine[x + 1]);
217
0
    }
218
219
220
    //first line
221
0
    const Pel* srcLineAbove = srcLine - srcStride;
222
0
    firstLineStartX = availMask&AboveAvail ? startX : (width - 1);
223
0
    firstLineEndX = availMask&AboveRightAvail ? width : (width - 1);
224
0
    for (x = firstLineStartX; x < firstLineEndX; x++)
225
0
    {
226
0
      edgeType = sgn(srcLine[x] - srcLineAbove[x + 1]) - signUpLine[x - 1];
227
0
      resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
228
0
    }
229
0
    srcLine += srcStride;
230
0
    resLine += resStride;
231
232
    //middle lines
233
0
    for (y = 1; y < height - 1; y++)
234
0
    {
235
0
      srcLineBelow = srcLine + srcStride;
236
237
0
      for (x = startX; x < endX; x++)
238
0
      {
239
0
        signDown = (int8_t)sgn(srcLine[x] - srcLineBelow[x - 1]);
240
0
        edgeType = signDown + signUpLine[x];
241
0
        resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
242
0
        signUpLine[x - 1] = -signDown;
243
0
      }
244
0
      signUpLine[endX - 1] = (int8_t)sgn(srcLineBelow[endX - 1] - srcLine[endX]);
245
0
      srcLine += srcStride;
246
0
      resLine += resStride;
247
0
    }
248
249
    //last line
250
0
    srcLineBelow = srcLine + srcStride;
251
0
    lastLineStartX = availMask&BelowLeftAvail ? 0 : 1;
252
0
    lastLineEndX = availMask&BelowAvail ? endX : 1;
253
0
    for (x = lastLineStartX; x < lastLineEndX; x++)
254
0
    {
255
0
      edgeType = sgn(srcLine[x] - srcLineBelow[x - 1]) + signUpLine[x];
256
0
      resLine[x] = ClipPel<int>(srcLine[x] + offset[edgeType], clpRng);
257
258
0
    }
259
0
  }
260
0
  break;
261
34
  case SAO_TYPE_BO:
262
34
  {
263
34
    const int shiftBits = channelBitDepth - NUM_SAO_BO_CLASSES_LOG2;
264
2.51k
    for (y = 0; y < height; y++)
265
2.48k
    {
266
172k
      for (x = 0; x < width; x++)
267
169k
      {
268
169k
        resLine[x] = ClipPel<int>(srcLine[x] + offset[srcLine[x] >> shiftBits], clpRng);
269
169k
      }
270
2.48k
      srcLine += srcStride;
271
2.48k
      resLine += resStride;
272
2.48k
    }
273
34
  }
274
34
  break;
275
0
  default:
276
0
  {
277
0
    THROW("Not a supported SAO types\n");
278
0
  }
279
34
  }
280
34
}
281
void calcSaoStatisticsEo0_Core(int width,int startX,int endX,int endY,Pel*  srcLine,Pel*  orgLine,int srcStride,int orgStride,int64_t  *count, int64_t *diff)
282
10.7k
{
283
10.7k
  int iNaRight=width-endX;
284
10.7k
  srcLine      = srcLine + startX;
285
10.7k
  orgLine      =orgLine + startX;
286
10.7k
  int iNaWidth = startX + iNaRight;
287
10.7k
  int i,j;
288
10.7k
  diff +=2;
289
10.7k
  count+=2;
290
628k
  for ( i = 0; i < endY; i++ )
291
617k
  {
292
617k
    int iSignLeft = sgn( *srcLine - *(srcLine - 1) );
293
39.1M
    for ( j = 0; j < width - iNaWidth; j++, srcLine++, orgLine++ )
294
38.5M
    {
295
38.5M
      int iSignRight       = sgn( *srcLine - *(srcLine + 1) );
296
38.5M
      int iType            = iSignLeft + iSignRight;
297
38.5M
      iSignLeft            = -1 * iSignRight;
298
38.5M
      diff[iType]  += (*orgLine - *srcLine);
299
38.5M
      count[iType] += 1;
300
38.5M
    }
301
617k
    srcLine += srcStride - ( width - iNaWidth );
302
617k
    orgLine += orgStride - ( width - iNaWidth );
303
617k
  }
304
10.7k
}
305
void calcSaoStatisticsEo90_Core(int width,int endX,int startY,int endY,Pel*  srcLine,Pel*  orgLine,int srcStride,int orgStride,int64_t  *count, int64_t *diff,int8_t *signUpLine)
306
10.7k
{
307
10.7k
  diff +=2;
308
10.7k
  count+=2;
309
10.7k
  int x,y,edgeType;
310
10.7k
  Pel* srcLineAbove = srcLine - srcStride;
311
10.7k
  int8_t signDown;
312
608k
  for (x=0; x<endX; x++)
313
598k
  {
314
598k
    signUpLine[x] = (int8_t)sgn(srcLine[x] - srcLineAbove[x]);
315
598k
  }
316
10.7k
  Pel* srcLineBelow;
317
616k
  for (y=startY; y<endY; y++)
318
605k
  {
319
605k
    srcLineBelow = srcLine + srcStride;
320
39.1M
    for (x=0; x<endX; x++)
321
38.5M
    {
322
38.5M
      signDown  = (int8_t)sgn(srcLine[x] - srcLineBelow[x]);
323
38.5M
      edgeType  = signDown + signUpLine[x];
324
38.5M
      signUpLine[x]= -signDown;
325
38.5M
      diff [edgeType] += (orgLine[x] - srcLine[x]);
326
38.5M
      count[edgeType] ++;
327
38.5M
    }
328
605k
    srcLine += srcStride;
329
605k
    orgLine += orgStride;
330
605k
  }
331
10.7k
}
332
333
334
void calcSaoStatisticsEo135_Core(int width,int startX,int endX,int endY,Pel*  srcLine,Pel*  orgLine,int srcStride,int orgStride,int64_t  *count, int64_t *diff,int8_t *signUpLine,int8_t *signDownLine)
335
10.7k
{
336
10.7k
  int x,y,edgeType;
337
10.7k
  int8_t signDown;
338
10.7k
  int8_t *signTmpLine;
339
10.7k
  Pel* srcLineBelow = srcLine + srcStride;
340
  //middle lines
341
611k
   for (y=1; y<endY; y++)
342
601k
   {
343
601k
     srcLineBelow = srcLine + srcStride;
344
38.2M
     for (x=startX; x<endX; x++)
345
37.6M
     {
346
37.6M
       signDown = (int8_t)sgn(srcLine[x] - srcLineBelow[x+1]);
347
37.6M
       edgeType = signDown + signUpLine[x];
348
37.6M
       diff [edgeType] += (orgLine[x] - srcLine[x]);
349
37.6M
       count[edgeType] ++;
350
37.6M
       signDownLine[x+1] = -signDown;
351
37.6M
     }
352
601k
     signDownLine[startX] = (int8_t)sgn(srcLineBelow[startX] - srcLine[startX-1]);
353
601k
     signTmpLine  = signUpLine;
354
601k
     signUpLine   = signDownLine;
355
601k
     signDownLine = signTmpLine;
356
601k
     srcLine += srcStride;
357
601k
     orgLine += orgStride;
358
601k
   }
359
10.7k
}
360
void calcSaoStatisticsEo45_Core(int width,int startX,int endX,int endY,Pel*  srcLine,Pel*  orgLine,int srcStride,int orgStride,int64_t  *count, int64_t *diff,int8_t *signUpLine)
361
10.7k
{
362
10.7k
  int x,y,edgeType;
363
10.7k
  int8_t signDown;
364
10.7k
  Pel* srcLineBelow = srcLine + srcStride;
365
  //middle lines
366
611k
  for (y=1; y<endY; y++)
367
601k
  {
368
601k
    srcLineBelow = srcLine + srcStride;
369
370
38.2M
    for(x=startX; x<endX; x++)
371
37.6M
    {
372
37.6M
      signDown = (int8_t)sgn(srcLine[x] - srcLineBelow[x-1]);
373
37.6M
      edgeType = signDown + signUpLine[x];
374
37.6M
      diff [edgeType] += (orgLine[x] - srcLine[x]);
375
37.6M
      count[edgeType] ++;
376
37.6M
      signUpLine[x-1] = -signDown;
377
37.6M
    }
378
601k
    signUpLine[endX-1] = (int8_t)sgn(srcLineBelow[endX-1] - srcLine[endX]);
379
601k
    srcLine  += srcStride;
380
601k
    orgLine  += orgStride;
381
601k
  }
382
10.7k
}
383
void calcSaoStatisticsBo_Core(int width,int endX,int endY,Pel*  srcLine,Pel*  orgLine,int srcStride,int orgStride,int channelBitDepth, int64_t *count,int64_t  *diff)
384
10.7k
{
385
10.7k
  int x,y;
386
10.7k
  int startX=0;
387
10.7k
  int shiftBits = channelBitDepth - NUM_SAO_BO_CLASSES_LOG2;
388
628k
  for (y=0; y< endY; y++)
389
617k
  {
390
39.8M
    for (x=startX; x< endX; x++)
391
39.2M
    {
392
39.2M
      int bandIdx= srcLine[x] >> shiftBits;
393
39.2M
      diff [bandIdx] += (orgLine[x] - srcLine[x]);
394
39.2M
      count[bandIdx] ++;
395
39.2M
    }
396
617k
    srcLine += srcStride;
397
617k
    orgLine += orgStride;
398
617k
  }
399
10.7k
}
400
401
void SAOOffset::reset()
402
190k
{
403
190k
  modeIdc = SAO_MODE_OFF;
404
190k
  typeIdc = -1;
405
190k
  typeAuxInfo = -1;
406
190k
  ::memset(offset, 0, sizeof(int)* MAX_NUM_SAO_CLASSES);
407
190k
}
408
409
void SAOBlkParam::reset()
410
29.8k
{
411
119k
  for(int compIdx = 0; compIdx < MAX_NUM_COMP; compIdx++)
412
89.6k
  {
413
89.6k
    SAOOffsets[compIdx].reset();
414
89.6k
  }
415
29.8k
}
416
417
SampleAdaptiveOffset::SampleAdaptiveOffset( bool enableOpt )
418
8.12k
{
419
8.12k
  offsetBlock = offsetBlock_core;
420
8.12k
  calcSaoStatisticsEo90 = calcSaoStatisticsEo90_Core;
421
8.12k
  calcSaoStatisticsEo135 = calcSaoStatisticsEo135_Core;
422
8.12k
  calcSaoStatisticsEo45 = calcSaoStatisticsEo45_Core;
423
8.12k
  calcSaoStatisticsEo0 = calcSaoStatisticsEo0_Core;
424
8.12k
  calcSaoStatisticsBo = calcSaoStatisticsBo_Core;
425
426
8.12k
  if( enableOpt )
427
8.12k
  {
428
#if ENABLE_SIMD_OPT_SAO && defined( TARGET_SIMD_X86 )
429
    initSampleAdaptiveOffsetX86();
430
#endif
431
#if ENABLE_SIMD_OPT_SAO && defined( TARGET_SIMD_ARM )
432
    initSampleAdaptiveOffsetARM();
433
#endif
434
8.12k
  }
435
8.12k
}
436
437
438
SampleAdaptiveOffset::~SampleAdaptiveOffset()
439
8.12k
{
440
8.12k
  m_signLineBuf1.clear();
441
8.12k
  m_signLineBuf2.clear();
442
8.12k
}
443
444
void SampleAdaptiveOffset::init( ChromaFormat format, uint32_t maxCUWidth, uint32_t maxCUHeight, uint32_t lumaBitShift, uint32_t chromaBitShift )
445
8.12k
{
446
  //bit-depth related
447
32.4k
  for(int compIdx = 0; compIdx < MAX_NUM_COMP; compIdx++)
448
24.3k
  {
449
24.3k
    m_offsetStepLog2  [compIdx] = isLuma(ComponentID(compIdx))? lumaBitShift : chromaBitShift;
450
24.3k
  }
451
8.12k
  m_numberOfComponents = getNumberValidComponents(format);
452
453
8.12k
  size_t lineBufferSize = std::max( maxCUWidth, maxCUHeight ) + 1;
454
8.12k
  if( m_signLineBuf1.size() < lineBufferSize )
455
8.12k
  {
456
8.12k
    m_signLineBuf1.resize( lineBufferSize );
457
8.12k
    m_signLineBuf2.resize( lineBufferSize );
458
8.12k
  }
459
8.12k
}
460
461
void SampleAdaptiveOffset::invertQuantOffsets(ComponentID compIdx, int typeIdc, int typeAuxInfo, int* dstOffsets, int* srcOffsets)
462
53.8k
{
463
53.8k
  int codedOffset[MAX_NUM_SAO_CLASSES];
464
465
53.8k
  ::memcpy(codedOffset, srcOffsets, sizeof(int)*MAX_NUM_SAO_CLASSES);
466
53.8k
  ::memset(dstOffsets, 0, sizeof(int)*MAX_NUM_SAO_CLASSES);
467
468
53.8k
  if(typeIdc == SAO_TYPE_START_BO)
469
10.7k
  {
470
53.9k
    for(int i=0; i< 4; i++)
471
43.1k
    {
472
43.1k
      dstOffsets[(typeAuxInfo+ i)%NUM_SAO_BO_CLASSES] = codedOffset[(typeAuxInfo+ i)%NUM_SAO_BO_CLASSES]*(1<<m_offsetStepLog2[compIdx]);
473
43.1k
    }
474
10.7k
  }
475
43.0k
  else //EO
476
43.0k
  {
477
258k
    for(int i=0; i< NUM_SAO_EO_CLASSES; i++)
478
215k
    {
479
215k
      dstOffsets[i] = codedOffset[i] *(1<<m_offsetStepLog2[compIdx]);
480
215k
    }
481
43.0k
    CHECK(dstOffsets[SAO_CLASS_EO_PLAIN] != 0, "EO offset is not '0'"); //keep EO plain offset as zero
482
43.0k
  }
483
484
53.8k
}
485
486
int SampleAdaptiveOffset::getMergeList(CodingStructure& cs, int ctuRsAddr, SAOBlkParam* blkParams, SAOBlkParam* mergeList[NUM_SAO_MERGE_TYPES])
487
3.59k
{
488
3.59k
  const PreCalcValues& pcv = *cs.pcv;
489
490
3.59k
  int ctuX = ctuRsAddr % pcv.widthInCtus;
491
3.59k
  int ctuY = ctuRsAddr / pcv.widthInCtus;
492
3.59k
  const CodingUnit& cu = *cs.getCU(Position(ctuX*pcv.maxCUSize, ctuY*pcv.maxCUSize), CH_L, TREE_D);
493
3.59k
  int mergedCTUPos;
494
3.59k
  int numValidMergeCandidates = 0;
495
496
10.7k
  for(int mergeType=0; mergeType< NUM_SAO_MERGE_TYPES; mergeType++)
497
7.18k
  {
498
7.18k
    SAOBlkParam* mergeCandidate = NULL;
499
500
7.18k
    switch(mergeType)
501
7.18k
    {
502
3.59k
    case SAO_MERGE_ABOVE:
503
3.59k
      {
504
3.59k
        if(ctuY > 0)
505
1.63k
        {
506
1.63k
          mergedCTUPos = ctuRsAddr- pcv.widthInCtus;
507
1.63k
          if(cs.getCURestricted(Position(ctuX*pcv.maxCUSize, (ctuY-1)*pcv.maxCUSize), cu, cu.chType))
508
1.63k
          {
509
1.63k
            mergeCandidate = &(blkParams[mergedCTUPos]);
510
1.63k
          }
511
1.63k
        }
512
3.59k
      }
513
3.59k
      break;
514
3.59k
    case SAO_MERGE_LEFT:
515
3.59k
      {
516
3.59k
        if(ctuX > 0)
517
1.56k
        {
518
1.56k
          mergedCTUPos = ctuRsAddr- 1;
519
1.56k
          if(cs.getCURestricted(Position((ctuX-1)*pcv.maxCUSize, ctuY*pcv.maxCUSize), cu, cu.chType))
520
1.56k
          {
521
1.56k
            mergeCandidate = &(blkParams[mergedCTUPos]);
522
1.56k
          }
523
1.56k
        }
524
3.59k
      }
525
3.59k
      break;
526
0
    default:
527
0
      {
528
0
        THROW("not a supported merge type");
529
0
      }
530
7.18k
    }
531
532
7.18k
    mergeList[mergeType]=mergeCandidate;
533
7.18k
    if (mergeCandidate != NULL)
534
3.19k
    {
535
3.19k
      numValidMergeCandidates++;
536
3.19k
    }
537
7.18k
  }
538
539
3.59k
  return numValidMergeCandidates;
540
3.59k
}
541
542
543
void SampleAdaptiveOffset::reconstructBlkSAOParam(SAOBlkParam& recParam, SAOBlkParam* mergeList[NUM_SAO_MERGE_TYPES])
544
3.59k
{
545
3.59k
  const int numberOfComponents = m_numberOfComponents;
546
14.3k
  for(int compIdx = 0; compIdx < numberOfComponents; compIdx++)
547
10.7k
  {
548
10.7k
    const ComponentID component = ComponentID(compIdx);
549
10.7k
    SAOOffset& offsetParam = recParam[component];
550
551
10.7k
    if(offsetParam.modeIdc == SAO_MODE_OFF)
552
3.42k
    {
553
3.42k
      continue;
554
3.42k
    }
555
556
7.34k
    switch(offsetParam.modeIdc)
557
7.34k
    {
558
20
    case SAO_MODE_NEW:
559
20
      {
560
20
        invertQuantOffsets(component, offsetParam.typeIdc, offsetParam.typeAuxInfo, offsetParam.offset, offsetParam.offset);
561
20
      }
562
20
      break;
563
7.32k
    case SAO_MODE_MERGE:
564
7.32k
      {
565
7.32k
        SAOBlkParam* mergeTarget = mergeList[offsetParam.typeIdc];
566
7.32k
        CHECK(mergeTarget == NULL, "Merge target does not exist");
567
568
7.32k
        offsetParam = (*mergeTarget)[component];
569
7.32k
      }
570
0
      break;
571
0
    default:
572
0
      {
573
0
        THROW("Not a supported mode");
574
7.32k
      }
575
7.34k
    }
576
7.34k
  }
577
3.59k
}
578
579
void SampleAdaptiveOffset::xReconstructBlkSAOParams(CodingStructure& cs, SAOBlkParam* saoBlkParams)
580
0
{
581
0
  for(uint32_t compIdx = 0; compIdx < MAX_NUM_COMP; compIdx++)
582
0
  {
583
0
    m_picSAOEnabled[compIdx] = false;
584
0
  }
585
586
0
  const uint32_t numberOfComponents = getNumberValidComponents(cs.pcv->chrFormat);
587
588
0
  for(int ctuRsAddr=0; ctuRsAddr< cs.pcv->sizeInCtus; ctuRsAddr++)
589
0
  {
590
0
    SAOBlkParam* mergeList[NUM_SAO_MERGE_TYPES] = { NULL };
591
0
    getMergeList(cs, ctuRsAddr, saoBlkParams, mergeList);
592
593
0
    reconstructBlkSAOParam(saoBlkParams[ctuRsAddr], mergeList);
594
595
0
    for(uint32_t compIdx = 0; compIdx < numberOfComponents; compIdx++)
596
0
    {
597
0
      if(saoBlkParams[ctuRsAddr][compIdx].modeIdc != SAO_MODE_OFF)
598
0
      {
599
0
        m_picSAOEnabled[compIdx] = true;
600
0
      }
601
0
    }
602
0
  }
603
0
}
604
605
void SampleAdaptiveOffset::offsetCTU( const UnitArea& area, const CPelUnitBuf& src, PelUnitBuf& res, SAOBlkParam& saoblkParam, CodingStructure& cs)
606
3.59k
{
607
3.59k
  const uint32_t numberOfComponents = getNumberValidComponents( area.chromaFormat );
608
3.59k
  bool bAllOff=true;
609
14.3k
  for( uint32_t compIdx = 0; compIdx < numberOfComponents; compIdx++)
610
10.7k
  {
611
10.7k
    if (saoblkParam[compIdx].modeIdc != SAO_MODE_OFF)
612
34
    {
613
34
      bAllOff=false;
614
34
    }
615
10.7k
  }
616
3.59k
  if (bAllOff)
617
3.55k
  {
618
3.55k
    return;
619
3.55k
  }
620
621
33
  uint8_t availMask;
622
  //block boundary availability
623
33
  deriveLoopFilterBoundaryAvailibility(cs, area.Y(), availMask);
624
625
33
  const size_t lineBufferSize = area.Y().width + 1;
626
33
  if (m_signLineBuf1.size() < lineBufferSize)
627
0
  {
628
0
    m_signLineBuf1.resize(lineBufferSize);
629
0
    m_signLineBuf2.resize(lineBufferSize);
630
0
  }
631
632
132
  for(int compIdx = 0; compIdx < numberOfComponents; compIdx++)
633
99
  {
634
99
    const ComponentID compID = ComponentID(compIdx);
635
99
    const CompArea& compArea = area.block(compID);
636
99
    SAOOffset& ctbOffset     = saoblkParam[compIdx];
637
638
99
    if(ctbOffset.modeIdc != SAO_MODE_OFF)
639
34
    {
640
34
      int  srcStride    = src.get(compID).stride;
641
34
      const Pel* srcBlk = src.get(compID).bufAt(compArea);
642
34
      int  resStride    = res.get(compID).stride;
643
34
      Pel* resBlk       = res.get(compID).bufAt(compArea);
644
645
34
      offsetBlock( cs.sps->bitDepths[toChannelType(compID)],
646
34
                   cs.slice->clpRngs[compID],
647
34
                   ctbOffset.typeIdc, ctbOffset.offset, ctbOffset.typeAuxInfo
648
34
                  , srcBlk, resBlk, srcStride, resStride, compArea.width, compArea.height, availMask
649
34
                  , m_signLineBuf1, m_signLineBuf2 );
650
34
    }
651
99
  } //compIdx
652
33
}
653
654
void SampleAdaptiveOffset::deriveLoopFilterBoundaryAvailibility(CodingStructure& cs, const Position& pos, uint8_t& availMask ) const
655
33
{
656
33
  const int cuSize = cs.pcv->maxCUSize;
657
33
  CodingUnit *cuLeft, *cuRight, *cuAbove, *cuBelow, *cuAboveLeft, *cuAboveRight, *cuBelowLeft, *cuBelowRight;
658
33
  const CodingUnit *cuCurr = cs.getCU( pos, CH_L, TREE_D );
659
660
33
  if (!cs.pps->getSubPicFromCU(*cuCurr).loopFilterAcrossSubPicEnabled)
661
0
  {
662
0
    THROW("no support");
663
0
  }
664
665
33
  if( !cs.pps->loopFilterAcrossSlicesEnabled || !cs.pps->loopFilterAcrossTilesEnabled )
666
0
  {
667
0
    const int ctuX = pos.x >> cs.pcv->maxCUSizeLog2;
668
0
    const int ctuY = pos.y >> cs.pcv->maxCUSizeLog2;
669
0
    const PPS* pps = cs.slice->pps;
670
0
    const int Xmax = pps->pcv->widthInCtus  - 1;
671
0
    const int Ymax = pps->pcv->heightInCtus - 1;
672
0
    cuLeft       = ctuX > 0                   && pps->canFilterCtuBdry( ctuX, ctuY, -1, 0 ) ? cs.getCU( pos.offset( -cuSize, 0       ), CH_L, TREE_D ): nullptr;
673
0
    cuRight      = ctuX < Xmax                && pps->canFilterCtuBdry( ctuX, ctuY,  1, 0 ) ? cs.getCU( pos.offset( cuSize , 0       ), CH_L, TREE_D ): nullptr;
674
0
    cuAbove      =                ctuY > 0    && pps->canFilterCtuBdry( ctuX, ctuY,  0,-1 ) ? cs.getCU( pos.offset( 0      , -cuSize ), CH_L, TREE_D ): nullptr;
675
0
    cuBelow      =                ctuY < Ymax && pps->canFilterCtuBdry( ctuX, ctuY,  0, 1 ) ? cs.getCU( pos.offset( 0      , cuSize  ), CH_L, TREE_D ): nullptr;
676
0
    cuAboveLeft  = ctuX > 0    && ctuY > 0    && pps->canFilterCtuBdry( ctuX, ctuY, -1,-1 ) ? cs.getCU( pos.offset( -cuSize, -cuSize ), CH_L, TREE_D ): nullptr;
677
0
    cuAboveRight = ctuX < Xmax && ctuY > 0    && pps->canFilterCtuBdry( ctuX, ctuY,  1,-1 ) ? cs.getCU( pos.offset( cuSize , -cuSize ), CH_L, TREE_D ): nullptr;
678
0
    cuBelowLeft  = ctuX > 0    && ctuY < Ymax && pps->canFilterCtuBdry( ctuX, ctuY, -1, 1 ) ? cs.getCU( pos.offset( -cuSize, cuSize  ), CH_L, TREE_D ): nullptr;
679
0
    cuBelowRight = ctuX < Xmax && ctuY < Ymax && pps->canFilterCtuBdry( ctuX, ctuY,  1, 1 ) ? cs.getCU( pos.offset( cuSize , cuSize  ), CH_L, TREE_D ): nullptr;
680
0
  }
681
33
  else
682
33
  {
683
33
    cuLeft       = cs.getCU( pos.offset( -cuSize,       0 ), CH_L, TREE_D );
684
33
    cuRight      = cs.getCU( pos.offset(  cuSize,       0 ), CH_L, TREE_D );
685
33
    cuAbove      = cs.getCU( pos.offset(       0, -cuSize ), CH_L, TREE_D );
686
33
    cuBelow      = cs.getCU( pos.offset(       0,  cuSize ), CH_L, TREE_D );
687
33
    cuAboveLeft  = cs.getCU( pos.offset( -cuSize, -cuSize ), CH_L, TREE_D );
688
33
    cuAboveRight = cs.getCU( pos.offset(  cuSize, -cuSize ), CH_L, TREE_D );
689
33
    cuBelowLeft  = cs.getCU( pos.offset( -cuSize,  cuSize ), CH_L, TREE_D );
690
33
    cuBelowRight = cs.getCU( pos.offset(  cuSize,  cuSize ), CH_L, TREE_D );
691
33
  }
692
33
  availMask = 0;
693
694
  // check cross slice flags
695
33
  if( cs.pps->loopFilterAcrossSlicesEnabled )
696
33
  {
697
33
    availMask |= (cuLeft       != NULL) ? LeftAvail : 0;
698
33
    availMask |= (cuAbove      != NULL) ? AboveAvail : 0;
699
33
    availMask |= (cuRight      != NULL) ? RightAvail : 0;
700
33
    availMask |= (cuBelow      != NULL) ? BelowAvail : 0;
701
33
    availMask |= (cuAboveLeft  != NULL) ? AboveLeftAvail : 0;
702
33
    availMask |= (cuBelowRight != NULL) ? BelowRightAvail : 0;
703
33
    availMask |= (cuAboveRight != NULL) ? AboveRightAvail : 0;
704
33
    availMask |= (cuBelowLeft  != NULL) ? BelowLeftAvail : 0;
705
33
  }
706
0
  else
707
0
  {
708
0
    availMask |= ((cuLeft       != NULL) && CU::isSameSlice(*cuCurr, *cuLeft) ) ? LeftAvail : 0;
709
0
    availMask |= ((cuAbove      != NULL) && CU::isSameSlice(*cuCurr, *cuAbove) ) ? AboveAvail : 0;
710
0
    availMask |= ((cuRight      != NULL) && CU::isSameSlice(*cuCurr, *cuRight)) ? RightAvail : 0;
711
0
    availMask |= ((cuBelow      != NULL) && CU::isSameSlice(*cuCurr, *cuBelow) ) ? BelowAvail : 0;
712
0
    availMask |= ((cuAboveLeft  != NULL) && CU::isSameSlice(*cuCurr, *cuAboveLeft)) ?  AboveLeftAvail : 0;
713
0
    availMask |= ((cuBelowRight != NULL) && CU::isSameSlice(*cuCurr, *cuBelowRight) ) ? BelowRightAvail : 0;
714
0
    availMask |= ((cuAboveRight != NULL) && CU::isSameSlice(*cuCurr, *cuAboveRight) ) ? AboveRightAvail : 0;
715
0
    availMask |= ( (cuBelowLeft != NULL) && CU::isSameSlice(*cuCurr, *cuBelowLeft) ) ? BelowLeftAvail : 0;
716
0
  }
717
718
  // check cross tile flags
719
33
  if (!cs.pps->loopFilterAcrossTilesEnabled)
720
0
  {
721
0
    uint8_t availMaskTile = 0;
722
0
    availMaskTile |= (availMask&LeftAvail       && CU::isSameTile(*cuCurr, *cuLeft)) ? LeftAvail : 0;
723
0
    availMaskTile |= (availMask&AboveAvail      && CU::isSameTile(*cuCurr, *cuAbove)) ? AboveAvail : 0;
724
0
    availMaskTile |= (availMask&RightAvail      && CU::isSameTile(*cuCurr, *cuRight)) ? RightAvail : 0;
725
0
    availMaskTile |= (availMask&BelowAvail      && CU::isSameTile(*cuCurr, *cuBelow)) ? BelowAvail : 0;
726
0
    availMaskTile |= (availMask&AboveLeftAvail  && CU::isSameTile(*cuCurr, *cuAboveLeft)) ? AboveLeftAvail : 0;
727
0
    availMaskTile |= (availMask&AboveRightAvail &&CU::isSameTile(*cuCurr, *cuAboveRight)) ? AboveRightAvail : 0;
728
0
    availMaskTile |= (availMask&BelowLeftAvail  && CU::isSameTile(*cuCurr, *cuBelowLeft)) ? BelowLeftAvail : 0;
729
0
    availMaskTile |= (availMask&BelowRightAvail && CU::isSameTile(*cuCurr, *cuBelowRight)) ? BelowRightAvail : 0;
730
0
    availMask = availMaskTile;
731
0
  }
732
33
}
733
734
} // namespace vvenc
735
736
//! \}
737