Coverage Report

Created: 2026-07-25 07:06

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/vvenc/source/Lib/CommonLib/Buffer.cpp
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Count
Source
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/* -----------------------------------------------------------------------------
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The copyright in this software is being made available under the Clear BSD
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License, included below. No patent rights, trademark rights and/or 
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other Intellectual Property Rights other than the copyrights concerning 
5
the Software are granted under this license.
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The Clear BSD License
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Copyright (c) 2019-2026, Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. & The VVenC Authors.
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All rights reserved.
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Redistribution and use in source and binary forms, with or without modification,
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are permitted (subject to the limitations in the disclaimer below) provided that
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the following conditions are met:
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     * Redistributions of source code must retain the above copyright notice,
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     this list of conditions and the following disclaimer.
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     * Redistributions in binary form must reproduce the above copyright
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     notice, this list of conditions and the following disclaimer in the
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     documentation and/or other materials provided with the distribution.
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     * Neither the name of the copyright holder nor the names of its
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     contributors may be used to endorse or promote products derived from this
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     software without specific prior written permission.
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NO EXPRESS OR IMPLIED LICENSES TO ANY PARTY'S PATENT RIGHTS ARE GRANTED BY
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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
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CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
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BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
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IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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POSSIBILITY OF SUCH DAMAGE.
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------------------------------------------------------------------------------------------- */
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/** \file     Buffer.cpp
45
 *  \brief    Low-overhead class describing 2D memory layout
46
 */
47
48
#define DONT_UNDEF_SIZE_AWARE_PER_EL_OP
49
50
// unit needs to come first due to a forward declaration
51
#include "Unit.h"
52
#include "Slice.h"
53
#include "InterpolationFilter.h"
54
55
//! \ingroup CommonLib
56
//! \{
57
58
namespace vvenc {
59
60
void weightCiipCore( Pel* res, const Pel* src, const int numSamples, int numIntra )
61
0
{
62
0
  if( numIntra == 1 )
63
0
  {
64
0
    for (int n = 0; n < numSamples; n+=2)
65
0
    {
66
0
      res[n  ] = (res[n  ] + src[n  ] + 1) >> 1;
67
0
      res[n+1] = (res[n+1] + src[n+1] + 1) >> 1;
68
0
    }
69
0
  }
70
0
  else
71
0
  {
72
0
    const Pel* scale   = numIntra ? src : res;
73
0
    const Pel* unscale = numIntra ? res : src;
74
75
0
    for (int n = 0; n < numSamples; n+=2)
76
0
    {
77
0
      res[n  ] = (unscale[n  ] + 3*scale[n  ] + 2) >> 2;
78
0
      res[n+1] = (unscale[n+1] + 3*scale[n+1] + 2) >> 2;
79
0
    }
80
0
  }
81
0
}
82
83
template< unsigned inputSize, unsigned outputSize >
84
void mipMatrixMulCore( Pel* res, const Pel* input, const uint8_t* weight, const int maxVal, const int inputOffset, bool transpose )
85
0
{
86
0
  Pel buffer[ outputSize*outputSize];
87
88
0
  int sum = 0;
89
0
  for( int i = 0; i < inputSize; i++ )
90
0
  {
91
0
    sum += input[i];
92
0
  }
93
0
  const int offset = (1 << (MIP_SHIFT_MATRIX - 1)) - MIP_OFFSET_MATRIX * sum + (inputOffset << MIP_SHIFT_MATRIX);
94
0
  CHECK( inputSize != 4 * (inputSize >> 2), "Error, input size not divisible by four" );
95
96
0
  Pel* mat = transpose ? buffer : res;
97
0
  unsigned posRes = 0;
98
0
  for( unsigned n = 0; n < outputSize*outputSize; n++ )
99
0
  {
100
0
    int tmp0 = input[0] * weight[0];
101
0
    int tmp1 = input[1] * weight[1];
102
0
    int tmp2 = input[2] * weight[2];
103
0
    int tmp3 = input[3] * weight[3];
104
0
    if( 8 == inputSize )
105
0
    {
106
0
      tmp0 += input[4] * weight[4];
107
0
      tmp1 += input[5] * weight[5];
108
0
      tmp2 += input[6] * weight[6];
109
0
      tmp3 += input[7] * weight[7];
110
0
    }
111
0
    mat[posRes++] = Clip3<int>( 0, maxVal, ((tmp0 + tmp1 + tmp2 + tmp3 + offset) >> MIP_SHIFT_MATRIX) );
112
113
0
    weight += inputSize;
114
0
  }
115
116
0
  if( transpose )
117
0
  {
118
0
    for( int j = 0; j < outputSize; j++ )
119
0
    {
120
0
      for( int i = 0; i < outputSize; i++ )
121
0
      {
122
0
        res[j * outputSize + i] = buffer[i * outputSize + j];
123
0
      }
124
0
    }
125
0
  }
126
0
}
Unexecuted instantiation: void vvenc::mipMatrixMulCore<4u, 4u>(short*, short const*, unsigned char const*, int, int, bool)
Unexecuted instantiation: void vvenc::mipMatrixMulCore<8u, 4u>(short*, short const*, unsigned char const*, int, int, bool)
Unexecuted instantiation: void vvenc::mipMatrixMulCore<8u, 8u>(short*, short const*, unsigned char const*, int, int, bool)
127
128
template< typename T >
129
void addAvgCore( const T* src1, int src1Stride, const T* src2, int src2Stride, T* dest, int dstStride, int width, int height, unsigned rshift, int offset, const ClpRng& clpRng )
130
0
{
131
0
#define ADD_AVG_CORE_OP( ADDR ) dest[ADDR] = ClipPel( rightShiftU( ( src1[ADDR] + src2[ADDR] + offset ), rshift ), clpRng )
132
0
#define ADD_AVG_CORE_INC    \
133
0
  src1 += src1Stride;       \
134
0
  src2 += src2Stride;       \
135
0
  dest +=  dstStride;       \
136
0
137
0
  SIZE_AWARE_PER_EL_OP( ADD_AVG_CORE_OP, ADD_AVG_CORE_INC );
138
139
0
#undef ADD_AVG_CORE_OP
140
0
#undef ADD_AVG_CORE_INC
141
0
}
142
143
template<typename T>
144
void addWeightedAvgCore( const T* src1, int src1Stride, const T* src2, int src2Stride, T* dest, int destStride, int width, int height, unsigned rshift, int offset, int w0, int w1, const ClpRng& clpRng )
145
0
{
146
0
#define ADD_WGHT_AVG_OP( ADDR ) dest[ADDR] = ClipPel( rightShiftU( ( src1[ADDR]*w0 + src2[ADDR]*w1 + offset ), rshift ), clpRng )
147
0
#define ADD_WGHT_AVG_INC     \
148
0
    src1 += src1Stride; \
149
0
    src2 += src2Stride; \
150
0
    dest += destStride; \
151
0
152
0
  SIZE_AWARE_PER_EL_OP( ADD_WGHT_AVG_OP, ADD_WGHT_AVG_INC );
153
154
0
#undef ADD_WGHT_AVG_OP
155
0
#undef ADD_WGHT_AVG_INC
156
0
}
157
158
template<typename T>
159
void subsCore( const T* src0, int src0Stride, const T* src1, int src1Stride, T* dest, int destStride, int width, int height )
160
0
{
161
0
#define SUBS_INC                \
162
0
  dest += destStride;  \
163
0
  src0 += src0Stride;  \
164
0
  src1 += src1Stride;  \
165
0
166
0
#define SUBS_OP( ADDR ) dest[ADDR] = src0[ADDR] - src1[ADDR]
167
168
0
  SIZE_AWARE_PER_EL_OP( SUBS_OP, SUBS_INC );
169
170
0
#undef SUBS_OP
171
0
#undef SUBS_INC
172
0
}
173
174
void removeHighFreq(int16_t* dst, int dstStride, const int16_t* src, int srcStride, int width, int height)
175
0
{
176
0
#define REM_HF_INC  \
177
0
 src += srcStride; \
178
0
 dst += dstStride; \
179
0
180
0
#define REM_HF_OP( ADDR )      dst[ADDR] =             2 * dst[ADDR] - src[ADDR]
181
182
0
 SIZE_AWARE_PER_EL_OP(REM_HF_OP, REM_HF_INC);
183
184
0
#undef REM_HF_INC
185
0
#undef REM_HF_OP
186
0
#undef REM_HF_OP_CLIP
187
0
}
188
189
template<typename T>
190
void reconstructCore( const T* src1, int src1Stride, const T* src2, int src2Stride, T* dest, int dstStride, int width, int height, const ClpRng& clpRng )
191
0
{
192
0
#define RECO_CORE_OP( ADDR ) dest[ADDR] = ClipPel( src1[ADDR] + src2[ADDR], clpRng )
193
0
#define RECO_CORE_INC     \
194
0
  src1 += src1Stride;     \
195
0
  src2 += src2Stride;     \
196
0
  dest +=  dstStride;     \
197
0
198
0
  SIZE_AWARE_PER_EL_OP( RECO_CORE_OP, RECO_CORE_INC );
199
200
0
#undef RECO_CORE_OP
201
0
#undef RECO_CORE_INC
202
0
}
203
204
template<typename T>
205
void recoCore( const T* src1, const T* src2, T* dest, int numSamples, const ClpRng& clpRng )
206
0
{
207
0
  for( int n = 0; n < numSamples; n+=2)
208
0
  {
209
0
    dest[n]   = ClipPel( src1[n]   + src2[n], clpRng );
210
0
    dest[n+1] = ClipPel( src1[n+1] + src2[n+1], clpRng );
211
0
  }
212
0
}
213
214
template<typename T>
215
void copyClipCore( const T* src, Pel* dst, int numSamples, const ClpRng& clpRng )
216
0
{
217
0
  for( int n = 0; n < numSamples; n+=2)
218
0
  {
219
0
    dst[n]   = ClipPel( src[n]   , clpRng );
220
0
    dst[n+1] = ClipPel( src[n+1] , clpRng );
221
0
  }
222
0
}
223
224
template< typename T >
225
void addAvgCore( const T* src1, const T* src2, T* dest, int numSamples, unsigned rshift, int offset, const ClpRng& clpRng )
226
0
{
227
0
  for( int n = 0; n < numSamples; n+=2)
228
0
  {
229
0
    dest[n]   = ClipPel( rightShiftU( ( src1[n]   + src2[n]   + offset ), rshift ), clpRng );
230
0
    dest[n+1] = ClipPel( rightShiftU( ( src1[n+1] + src2[n+1] + offset ), rshift ), clpRng );
231
0
  }
232
0
}
233
234
template< typename T >
235
void roundGeoCore( const T* src, T* dest, const int numSamples, unsigned rshift, int offset, const ClpRng &clpRng)
236
0
{
237
0
  for( int i = 0; i < numSamples; i+=2)
238
0
  {
239
0
    dest[i]   = ClipPel(rightShiftU(src[i  ] + offset, rshift), clpRng);
240
0
    dest[i+1] = ClipPel(rightShiftU(src[i+1] + offset, rshift), clpRng);
241
0
  }
242
0
}
243
244
template<typename T>
245
void linTfCore( const T* src, int srcStride, Pel* dst, int dstStride, int width, int height, int scale, unsigned shift, int offset, const ClpRng& clpRng, bool bClip )
246
0
{
247
0
#define LINTF_CORE_INC  \
248
0
  src += srcStride;     \
249
0
  dst += dstStride;     \
250
0
251
0
  if( bClip )
252
0
  {
253
0
#define LINTF_CORE_OP( ADDR ) dst[ADDR] = ( Pel ) ClipPel( rightShiftU( scale * src[ADDR], shift ) + offset, clpRng )
254
255
0
  SIZE_AWARE_PER_EL_OP( LINTF_CORE_OP, LINTF_CORE_INC );
256
257
0
#undef LINTF_CORE_OP
258
0
  }
259
0
  else
260
0
  {
261
0
#define LINTF_CORE_OP( ADDR ) dst[ADDR] = ( Pel ) ( rightShiftU( scale * src[ADDR], shift ) + offset )
262
263
0
  SIZE_AWARE_PER_EL_OP( LINTF_CORE_OP, LINTF_CORE_INC );
264
265
0
#undef LINTF_CORE_OP
266
0
  }
267
0
#undef LINTF_CORE_INC
268
0
}
269
270
template<typename T, int N>
271
void transposeNxNCore( const Pel* src, int srcStride, Pel* dst, int dstStride )
272
0
{
273
0
  for( int i = 0; i < N; i++ )
274
0
  {
275
0
    for( int j = 0; j < N; j++ )
276
0
    {
277
0
      dst[j * dstStride] = src[j];
278
0
    }
279
280
0
    dst++;
281
0
    src += srcStride;
282
0
  }
283
0
}
Unexecuted instantiation: void vvenc::transposeNxNCore<short, 4>(short const*, int, short*, int)
Unexecuted instantiation: void vvenc::transposeNxNCore<short, 8>(short const*, int, short*, int)
284
285
template<typename T>
286
void copyClipCore( const T* src, int srcStride, Pel* dst, int dstStride, int width, int height, const ClpRng& clpRng )
287
0
{
288
0
#define RECO_OP( ADDR ) dst[ADDR] = ClipPel( src[ADDR], clpRng )
289
0
#define RECO_INC      \
290
0
    src += srcStride; \
291
0
    dst += dstStride; \
292
0
293
0
  SIZE_AWARE_PER_EL_OP( RECO_OP, RECO_INC );
294
295
0
#undef RECO_OP
296
0
#undef RECO_INC
297
0
}
298
299
void copyBufferCore( const char* src, int srcStride, char* dst, int dstStride, int numBytes, int height)
300
0
{
301
0
  for( int i = 0; i < height; i++, src += srcStride, dst += dstStride )
302
0
  {
303
0
    memcpy( dst, src, numBytes );
304
0
  }
305
0
}
306
307
void applyLutCore( const Pel* src, const ptrdiff_t srcStride, Pel* dst, const ptrdiff_t dstStride, int width, int height, const Pel* lut )
308
0
{
309
0
#define RSP_SGNL_OP( ADDR ) dst[ADDR] = lut[src[ADDR]]
310
0
#define RSP_SGNL_INC        src      += srcStride; dst += dstStride;
311
312
0
  SIZE_AWARE_PER_EL_OP( RSP_SGNL_OP, RSP_SGNL_INC )
313
314
0
#undef RSP_SGNL_OP
315
0
#undef RSP_SGNL_INC
316
0
}
317
318
void fillMapPtr_Core( void** ptrMap, const ptrdiff_t mapStride, int width, int height, void* val )
319
0
{
320
0
  if( width == mapStride )
321
0
  {
322
0
    std::fill_n( ptrMap, width * height, val );
323
0
  }
324
0
  else
325
0
  {
326
0
    while( height-- )
327
0
    {
328
0
      std::fill_n( ptrMap, width, val );
329
0
      ptrMap += mapStride;
330
0
    }
331
0
  }
332
0
}
333
334
uint64_t AvgHighPassCore( const int width, const int height, const Pel* pSrc, const int iSrcStride)
335
0
{
336
0
  uint64_t saAct = 0;
337
0
  for (int y = 1; y < height - 1; y++)
338
0
  {
339
0
    for (int x = 1; x < width - 1; x++) // center cols
340
0
    {
341
0
      const int s = 12 * (int) pSrc[x  ] - 2 * ((int) pSrc[x-1] + (int) pSrc[x+1] + (int) pSrc[x  -iSrcStride] + (int) pSrc[x  +iSrcStride])
342
0
                             - ((int) pSrc[x-1-iSrcStride] + (int) pSrc[x+1-iSrcStride] + (int) pSrc[x-1+iSrcStride] + (int) pSrc[x+1+iSrcStride]);
343
0
      saAct += abs (s);
344
0
    }
345
0
    pSrc += iSrcStride;
346
0
  }
347
0
  return saAct;
348
0
}
349
350
uint64_t HDHighPassCore  (const int width, const int height,const Pel*  pSrc,const Pel* pSM1,const int iSrcStride,const int iSM1Stride)
351
0
{
352
0
  uint64_t taAct = 0;
353
0
  for (int y = 1; y < height - 1; y++)
354
0
  {
355
0
    for (int x = 1; x < width - 1; x++)  // cnt cols
356
0
    {
357
0
      const int t = (int) pSrc[x] - (int) pSM1[x];
358
0
      taAct += (1 + 3 * abs (t)) >> 1;
359
0
    }
360
0
    pSrc += iSrcStride;
361
0
    pSM1 += iSM1Stride;
362
0
  }
363
0
  return taAct;
364
0
}
365
366
uint64_t  HDHighPass2Core  (const int width, const int height,const Pel*  pSrc,const Pel* pSM1,const Pel* pSM2,const int iSrcStride,const int iSM1Stride,const int iSM2Stride)
367
0
{
368
0
  uint64_t taAct = 0;
369
0
  for (int y = 1; y < height - 1; y++)
370
0
  {
371
0
    for (int x = 1; x < width - 1; x++)  // cnt cols
372
0
    {
373
0
      const int t = (int) pSrc[x] - 2 * (int) pSM1[x] + (int) pSM2[x];
374
0
      taAct += abs (t);
375
0
    }
376
0
    pSrc += iSrcStride;
377
0
    pSM1 += iSM1Stride;
378
0
    pSM2 += iSM2Stride;
379
0
  }
380
0
  return taAct;
381
0
}
382
uint64_t AvgHighPassWithDownsamplingCore( const int width, const int height, const Pel* pSrc, const int iSrcStride)
383
0
{
384
0
  uint64_t saAct = 0;
385
0
  pSrc -= iSrcStride;
386
0
  pSrc -= iSrcStride;
387
0
 for (int y = 2; y < height - 2; y += 2)
388
0
 {
389
0
   for (int x = 2; x < width - 2; x += 2)
390
0
   {
391
0
     const int f = 12 * ((int)pSrc[ y   *iSrcStride + x  ] + (int)pSrc[ y   *iSrcStride + x+1] + (int)pSrc[(y+1)*iSrcStride + x  ] + (int)pSrc[(y+1)*iSrcStride + x+1])
392
0
                  - 3 * ((int)pSrc[(y-1)*iSrcStride + x  ] + (int)pSrc[(y-1)*iSrcStride + x+1] + (int)pSrc[(y+2)*iSrcStride + x  ] + (int)pSrc[(y+2)*iSrcStride + x+1])
393
0
                  - 3 * ((int)pSrc[ y   *iSrcStride + x-1] + (int)pSrc[ y   *iSrcStride + x+2] + (int)pSrc[(y+1)*iSrcStride + x-1] + (int)pSrc[(y+1)*iSrcStride + x+2])
394
0
                  - 2 * ((int)pSrc[(y-1)*iSrcStride + x-1] + (int)pSrc[(y-1)*iSrcStride + x+2] + (int)pSrc[(y+2)*iSrcStride + x-1] + (int)pSrc[(y+2)*iSrcStride + x+2])
395
0
                      - ((int)pSrc[(y-2)*iSrcStride + x-1] + (int)pSrc[(y-2)*iSrcStride + x  ] + (int)pSrc[(y-2)*iSrcStride + x+1] + (int)pSrc[(y-2)*iSrcStride + x+2]
396
0
                       + (int)pSrc[(y+3)*iSrcStride + x-1] + (int)pSrc[(y+3)*iSrcStride + x  ] + (int)pSrc[(y+3)*iSrcStride + x+1] + (int)pSrc[(y+3)*iSrcStride + x+2]
397
0
                       + (int)pSrc[(y-1)*iSrcStride + x-2] + (int)pSrc[ y   *iSrcStride + x-2] + (int)pSrc[(y+1)*iSrcStride + x-2] + (int)pSrc[(y+2)*iSrcStride + x-2]
398
0
                       + (int)pSrc[(y-1)*iSrcStride + x+3] + (int)pSrc[ y   *iSrcStride + x+3] + (int)pSrc[(y+1)*iSrcStride + x+3] + (int)pSrc[(y+2)*iSrcStride + x+3]);
399
0
     saAct += (uint64_t) abs(f);
400
0
   }
401
0
 }
402
0
 return saAct;
403
0
}
404
uint64_t AvgHighPassWithDownsamplingDiff1stCore (const int width, const int  height, const Pel* pSrc,const Pel* pSrcM1, const int iSrcStride, const int iSrcM1Stride)
405
0
{
406
0
  uint64_t taAct = 0;
407
0
  pSrc -= iSrcStride;
408
0
  pSrc -= iSrcStride;
409
0
  pSrcM1-=iSrcM1Stride;
410
0
  pSrcM1-=iSrcM1Stride;
411
412
0
  for (uint32_t y = 2; y < height-2; y += 2)
413
0
  {
414
0
    for (uint32_t x = 2; x < width-2; x += 2)
415
0
    {
416
0
      const int t = (int)pSrc  [y*iSrcStride + x] + (int)pSrc  [y*iSrcStride + x+1] + (int)pSrc  [(y+1)*iSrcStride + x] + (int)pSrc  [(y+1)*iSrcStride + x+1]
417
0
                 - ((int)pSrcM1[y*iSrcM1Stride + x] + (int)pSrcM1[y*iSrcM1Stride + x+1] + (int)pSrcM1[(y+1)*iSrcM1Stride + x] + (int)pSrcM1[(y+1)*iSrcM1Stride + x+1]);
418
0
      taAct += (1 + 3 * abs (t)) >> 1;
419
0
    }
420
0
  }
421
0
  return (taAct );
422
0
}
423
424
uint64_t AvgHighPassWithDownsamplingDiff2ndCore (const int width,const int height,const Pel* pSrc,const Pel* pSrcM1,const Pel* pSrcM2,const int iSrcStride,const int iSM1Stride,const int iSM2Stride)
425
0
{
426
0
  uint64_t taAct = 0;
427
428
0
  pSrc -= iSrcStride;
429
0
  pSrc -= iSrcStride;
430
0
  pSrcM1-=iSM1Stride;
431
0
  pSrcM1-=iSM1Stride;
432
0
  pSrcM2-=iSM2Stride;
433
0
  pSrcM2-=iSM2Stride;
434
435
0
  for (uint32_t y = 2; y < height-2; y += 2)
436
0
  {
437
0
    for (uint32_t x = 2; x < width-2; x += 2)
438
0
    {
439
0
      const int t = (int)pSrc  [y*iSrcStride + x] + (int)pSrc  [y*iSrcStride + x+1] + (int)pSrc  [(y+1)*iSrcStride + x] + (int)pSrc  [(y+1)*iSrcStride + x+1]
440
0
                            - 2 * ((int)pSrcM1[y*iSM1Stride + x] + (int)pSrcM1[y*iSM1Stride + x+1] + (int)pSrcM1[(y+1)*iSM1Stride + x] + (int)pSrcM1[(y+1)*iSM1Stride + x+1])
441
0
                            + (int)pSrcM2[y*iSM2Stride + x] + (int)pSrcM2[y*iSM2Stride + x+1] + (int)pSrcM2[(y+1)*iSM2Stride + x] + (int)pSrcM2[(y+1)*iSM2Stride + x+1];
442
0
      taAct += (uint64_t) abs(t);
443
0
    }
444
0
  }
445
0
  return (taAct);
446
0
}
447
448
PelBufferOps::PelBufferOps()
449
253
{
450
253
  addAvg            = addAvgCore<Pel>;
451
253
  reco              = recoCore<Pel>;
452
253
  copyClip          = copyClipCore<Pel>;
453
253
  roundGeo          = roundGeoCore<Pel>;
454
455
253
  addAvg4           = addAvgCore<Pel>;
456
253
  addAvg8           = addAvgCore<Pel>;
457
253
  addAvg16          = addAvgCore<Pel>;
458
459
253
  sub4              = subsCore<Pel>;
460
253
  sub8              = subsCore<Pel>;
461
462
253
  wghtAvg4          = addWeightedAvgCore<Pel>;
463
253
  wghtAvg8          = addWeightedAvgCore<Pel>;
464
465
253
  copyClip4         = copyClipCore<Pel>;
466
253
  copyClip8         = copyClipCore<Pel>;
467
468
253
  reco4             = reconstructCore<Pel>;
469
253
  reco8             = reconstructCore<Pel>;
470
471
253
  linTf4            = linTfCore<Pel>;
472
253
  linTf8            = linTfCore<Pel>;
473
474
253
  copyBuffer        = copyBufferCore;
475
476
253
  removeHighFreq8   = removeHighFreq;
477
253
  removeHighFreq4   = removeHighFreq;
478
479
253
  transpose4x4      = transposeNxNCore<Pel,4>;
480
253
  transpose8x8      = transposeNxNCore<Pel,8>;
481
253
  mipMatrixMul_4_4  = mipMatrixMulCore<4,4>;
482
253
  mipMatrixMul_8_4  = mipMatrixMulCore<8,4>;
483
253
  mipMatrixMul_8_8  = mipMatrixMulCore<8,8>;
484
253
  weightCiip        = weightCiipCore;
485
253
  roundIntVector    = nullptr;
486
487
253
  applyLut          = applyLutCore;
488
489
253
  fillPtrMap        = fillMapPtr_Core;
490
253
  AvgHighPassWithDownsampling = AvgHighPassWithDownsamplingCore;
491
253
  AvgHighPass = AvgHighPassCore;
492
253
  AvgHighPassWithDownsamplingDiff1st = AvgHighPassWithDownsamplingDiff1stCore;
493
253
  AvgHighPassWithDownsamplingDiff2nd = AvgHighPassWithDownsamplingDiff2ndCore;
494
253
  HDHighPass = HDHighPassCore;
495
253
  HDHighPass2 = HDHighPass2Core;
496
253
}
497
498
void PelBufferOps::initPelBufOps( bool enableOpt )
499
0
{
500
0
  if( isInitSIMDDone )
501
0
  {
502
0
    return;
503
0
  }
504
0
  isInitSIMDDone = true;
505
506
0
  if( enableOpt )
507
0
  {
508
0
#if ENABLE_SIMD_OPT_BUFFER
509
0
#  if defined( TARGET_SIMD_X86 )
510
0
    g_pelBufOP.initPelBufOpsX86();
511
0
#  endif
512
#  if defined( TARGET_SIMD_ARM )
513
    g_pelBufOP.initPelBufOpsARM();
514
#  endif
515
0
#endif   // ENABLE_SIMD_OPT_BUFFER
516
0
  }
517
0
}
518
519
PelBufferOps g_pelBufOP = PelBufferOps();
520
521
template<>
522
void AreaBuf<Pel>::addWeightedAvg(const AreaBuf<const Pel>& other1, const AreaBuf<const Pel>& other2, const ClpRng& clpRng, const int8_t BcwIdx)
523
0
{
524
0
  const int8_t w0 = getBcwWeight( BcwIdx, REF_PIC_LIST_0 );
525
0
  const int8_t w1 = getBcwWeight( BcwIdx, REF_PIC_LIST_1 );
526
0
  const int8_t log2WeightBase = g_BcwLog2WeightBase;
527
0
  const Pel* src0 = other1.buf;
528
0
  const Pel* src2 = other2.buf;
529
0
        Pel* dest =        buf;
530
531
0
  const int src1Stride = other1.stride;
532
0
  const int src2Stride = other2.stride;
533
0
  const int destStride =        stride;
534
0
  const int clipbd     = clpRng.bd;
535
0
  const int shiftNum   = std::max<int>( 2, ( IF_INTERNAL_PREC - clipbd ) ) + log2WeightBase;
536
0
  const int offset     = ( 1 << ( shiftNum - 1 ) ) + ( IF_INTERNAL_OFFS << log2WeightBase );
537
538
0
  if( ( width & 7 ) == 0 )
539
0
  {
540
0
    g_pelBufOP.wghtAvg8( src0, src1Stride, src2, src2Stride, dest, destStride, width, height, shiftNum, offset, w0, w1, clpRng );
541
0
  }
542
0
  else if( ( width & 3 ) == 0 )
543
0
  {
544
0
    g_pelBufOP.wghtAvg4( src0, src1Stride, src2, src2Stride, dest, destStride, width, height, shiftNum, offset, w0, w1, clpRng );
545
0
  }
546
0
  else
547
0
  {
548
0
#define WGHT_AVG_OP( ADDR ) dest[ADDR] = ClipPel( rightShiftU( ( src0[ADDR]*w0 + src2[ADDR]*w1 + offset ), shiftNum ), clpRng )
549
0
#define WGHT_AVG_INC    \
550
0
    src0 += src1Stride; \
551
0
    src2 += src2Stride; \
552
0
    dest += destStride; \
553
0
554
0
    SIZE_AWARE_PER_EL_OP( WGHT_AVG_OP, WGHT_AVG_INC );
555
556
0
#undef WGHT_AVG_OP
557
0
#undef WGHT_AVG_INC
558
0
  }
559
0
}
560
561
template<>
562
void AreaBuf<Pel>::rspSignal( const Pel* pLUT)
563
0
{
564
0
  g_pelBufOP.applyLut( buf, stride, buf, stride, width, height, pLUT );
565
0
}
566
567
568
template<>
569
void AreaBuf<Pel>::rspSignal( const AreaBuf<const Pel>& other, const Pel* pLUT)
570
0
{
571
0
  g_pelBufOP.applyLut( other.buf, other.stride, buf, stride, width, height, pLUT );
572
0
}
573
574
template<>
575
void AreaBuf<Pel>::scaleSignal(const int scale, const bool dir, const ClpRng& clpRng)
576
0
{
577
0
        Pel* dst = buf;
578
0
  const Pel* src = buf;
579
0
  const int maxAbsclipBD = (1<<clpRng.bd) - 1;
580
581
0
  if (dir) // forward
582
0
  {
583
0
    if (width == 1)
584
0
    {
585
0
      THROW("Blocks of width = 1 not supported");
586
0
    }
587
0
    else
588
0
    {
589
0
      for (unsigned y = 0; y < height; y++)
590
0
      {
591
0
        for (unsigned x = 0; x < width; x++)
592
0
        {
593
0
          int sign = src[x] >= 0 ? 1 : -1;
594
0
          int absval = sign * src[x];
595
0
          dst[x] = (Pel)Clip3(-maxAbsclipBD, maxAbsclipBD, sign * (((absval << CSCALE_FP_PREC) + (scale >> 1)) / scale));
596
0
        }
597
0
        dst += stride;
598
0
        src += stride;
599
0
      }
600
0
    }
601
0
  }
602
0
  else // inverse
603
0
  {
604
0
    for (unsigned y = 0; y < height; y++)
605
0
    {
606
0
      for (unsigned x = 0; x < width; x++)
607
0
      {
608
0
        int val    = Clip3<int>((-maxAbsclipBD - 1), maxAbsclipBD, (int)src[x]);
609
0
        int sign   = src[x] >= 0 ? 1 : -1;
610
0
        int absval = sign * val;
611
0
               val = sign * ((absval * scale + (1 << (CSCALE_FP_PREC - 1))) >> CSCALE_FP_PREC);
612
0
        if (sizeof(Pel) == 2) // avoid overflow when storing data
613
0
        {
614
0
          val = Clip3<int>(-32768, 32767, val);
615
0
        }
616
0
        dst[x] = (Pel)val;
617
0
      }
618
0
      dst += stride;
619
0
      src += stride;
620
0
    }
621
0
  }
622
0
}
623
624
template<>
625
void AreaBuf<Pel>::addAvg( const AreaBuf<const Pel>& other1, const AreaBuf<const Pel>& other2, const ClpRng& clpRng)
626
0
{
627
0
  const Pel* src0 = other1.buf;
628
0
  const Pel* src2 = other2.buf;
629
0
        Pel* dest =        buf;
630
631
0
  const unsigned src1Stride = other1.stride;
632
0
  const unsigned src2Stride = other2.stride;
633
0
  const unsigned destStride =        stride;
634
0
  const int      clipbd     = clpRng.bd;
635
0
  const unsigned shiftNum   = std::max<int>(2, (IF_INTERNAL_PREC - clipbd)) + 1;
636
0
  const int      offset     = (1 << (shiftNum - 1)) + 2 * IF_INTERNAL_OFFS;
637
638
0
#if ENABLE_SIMD_OPT_BUFFER
639
0
  if( destStride == width )
640
0
  {
641
0
    g_pelBufOP.addAvg(src0, src2, dest, width * height, shiftNum, offset, clpRng);
642
0
  }
643
0
  else if ((width & 15) == 0)
644
0
  {
645
0
    g_pelBufOP.addAvg16(src0, src1Stride, src2, src2Stride, dest, destStride, width, height, shiftNum, offset, clpRng);
646
0
  }
647
0
  else if( ( width & 7 ) == 0 )
648
0
  {
649
0
    g_pelBufOP.addAvg8( src0, src1Stride, src2, src2Stride, dest, destStride, width, height, shiftNum, offset, clpRng );
650
0
  }
651
0
  else if( ( width & 3 ) == 0 )
652
0
  {
653
0
    g_pelBufOP.addAvg4( src0, src1Stride, src2, src2Stride, dest, destStride, width, height, shiftNum, offset, clpRng );
654
0
  }
655
0
  else
656
0
#endif
657
0
  {
658
0
#define ADD_AVG_OP( ADDR ) dest[ADDR] = ClipPel( rightShiftU( ( src0[ADDR] + src2[ADDR] + offset ), shiftNum ), clpRng )
659
0
#define ADD_AVG_INC     \
660
0
    src0 += src1Stride; \
661
0
    src2 += src2Stride; \
662
0
    dest += destStride; \
663
0
664
0
    SIZE_AWARE_PER_EL_OP( ADD_AVG_OP, ADD_AVG_INC );
665
666
0
#undef ADD_AVG_OP
667
0
#undef ADD_AVG_INC
668
0
  }
669
0
}
670
671
template<>
672
void AreaBuf<Pel>::subtract( const AreaBuf<const Pel>& minuend, const AreaBuf<const Pel>& subtrahend )
673
0
{
674
0
  CHECKD( width  != minuend.width,     "Incompatible size" );
675
0
  CHECKD( height != minuend.height,    "Incompatible size" );
676
0
  CHECKD( width  != subtrahend.width,  "Incompatible size");
677
0
  CHECKD( height != subtrahend.height, "Incompatible size");
678
  
679
0
        Pel* dest =            buf;
680
0
  const Pel* mins = minuend   .buf;
681
0
  const Pel* subs = subtrahend.buf;
682
683
684
0
#if ENABLE_SIMD_OPT_BUFFER
685
0
  const unsigned destStride =            stride;
686
0
  const unsigned minsStride = minuend.   stride;
687
0
  const unsigned subsStride = subtrahend.stride;
688
689
0
  if( ( width & 7 ) == 0 )
690
0
  {
691
0
    g_pelBufOP.sub8( mins, minsStride, subs, subsStride, dest, destStride, width, height );
692
0
  }
693
0
  else if( ( width & 3 ) == 0 )
694
0
  {
695
0
    g_pelBufOP.sub4( mins, minsStride, subs, subsStride, dest, destStride, width, height );
696
0
  }
697
0
  else
698
0
#endif
699
0
  {
700
0
#define SUBS_INC                \
701
0
    dest +=            stride;  \
702
0
    mins += minuend   .stride;  \
703
0
    subs += subtrahend.stride;  \
704
0
705
0
#define SUBS_OP( ADDR ) dest[ADDR] = mins[ADDR] - subs[ADDR]
706
707
0
    SIZE_AWARE_PER_EL_OP( SUBS_OP, SUBS_INC );
708
709
0
#undef SUBS_OP
710
0
#undef SUBS_INC
711
0
  }
712
0
}
713
714
template<>
715
void AreaBuf<const Pel>::calcVarianceSplit( const AreaBuf<const Pel>& Org, const uint32_t  size, int& varh,int& varv) const
716
0
{
717
0
  CHECK( Org.width != Org.height, "Incompatible size!" );
718
0
  int stride = Org.stride;
719
0
  const Pel* src;
720
0
  Pel data;
721
0
  double variance=0;
722
0
  double mean=0;
723
0
  int64_t sum[4]={0,0,0,0};
724
0
  int64_t sum_sqr[4]={0,0,0,0};
725
0
  uint32_t halfsize =size>>1;
726
0
  uint32_t off[4]={0,halfsize,size*halfsize,size*halfsize+halfsize};
727
0
  int n,x,y;
728
729
0
  for( n = 0; n < 4; n++)
730
0
  {
731
0
    src = Org.buf+off[n];
732
0
    for( y = 0; y < halfsize; y++)
733
0
    {
734
0
      for(x = 0; x < halfsize; x++)
735
0
      {
736
0
        data=src[y*stride+x];
737
0
        sum[n]+=data;
738
0
        sum_sqr[n]+= data*data;
739
0
      }
740
0
    }
741
0
  }
742
0
  int num=size*(size>>1);
743
  // varhu
744
0
  mean=(double)(sum[0]+sum[1])/(num);
745
0
  variance =  (double)(sum_sqr[0]+sum_sqr[1])/(num) - (mean*mean);
746
0
  varh =(int)(variance+0.5);
747
  // varhl
748
0
  mean=(double)(sum[2]+sum[3])/(num);
749
0
  variance =  (double)(sum_sqr[2]+sum_sqr[3])/(num) - (mean*mean);
750
0
  varh +=(int)(variance+0.5);
751
  // varvl
752
0
  mean=(double)(sum[0]+sum[2])/(num);
753
0
  variance =  (double)(sum_sqr[0]+sum_sqr[2])/(num) - (mean*mean);
754
0
  varv =(int)(variance+0.5);
755
  // varvr
756
0
  mean=(double)(sum[1]+sum[3])/(num);
757
0
  variance =  (double)(sum_sqr[1]+sum_sqr[3])/(num) - (mean*mean);
758
0
  varv +=(int)(variance+0.5);
759
0
}
760
761
template<>
762
void AreaBuf<Pel>::copyClip( const AreaBuf<const Pel>& src, const ClpRng& clpRng )
763
0
{
764
0
  const Pel* srcp = src.buf;
765
0
        Pel* dest =     buf;
766
767
0
  const unsigned srcStride  = src.stride;
768
0
  const unsigned destStride = stride;
769
770
0
  if( destStride == width)
771
0
  {
772
0
    g_pelBufOP.copyClip(srcp, dest, width * height, clpRng);
773
0
  }
774
0
  else if ((width & 7) == 0)
775
0
  {
776
0
    g_pelBufOP.copyClip8(srcp, srcStride, dest, destStride, width, height, clpRng);
777
0
  }
778
0
  else if ((width & 3) == 0)
779
0
  {
780
0
    g_pelBufOP.copyClip4(srcp, srcStride, dest, destStride, width, height, clpRng);
781
0
  }
782
0
  else
783
0
  {
784
0
    for( int y = 0; y < height; y++ )
785
0
    {
786
0
      dest[0] = ClipPel( srcp[0], clpRng);
787
0
      dest[1] = ClipPel( srcp[1], clpRng);
788
0
      srcp += srcStride;
789
0
      dest += destStride;
790
0
    }                                                         \
791
0
  }
792
0
}
793
794
template<>
795
void AreaBuf<Pel>::reconstruct( const AreaBuf<const Pel>& pred, const AreaBuf<const Pel>& resi, const ClpRng& clpRng )
796
0
{
797
0
  const Pel* src1 = pred.buf;
798
0
  const Pel* src2 = resi.buf;
799
0
        Pel* dest =      buf;
800
801
0
  const unsigned src1Stride = pred.stride;
802
0
  const unsigned src2Stride = resi.stride;
803
0
  const unsigned destStride =      stride;
804
0
  if( src2Stride == width )
805
0
  {
806
0
    g_pelBufOP.reco( pred.buf, resi.buf, buf, width * height, clpRng );
807
0
  }
808
0
  else if( ( width & 7 ) == 0 )
809
0
  {
810
0
    g_pelBufOP.reco8( src1, src1Stride, src2, src2Stride, dest, destStride, width, height, clpRng );
811
0
  }
812
0
  else if( ( width & 3 ) == 0 )
813
0
  {
814
0
    g_pelBufOP.reco4( src1, src1Stride, src2, src2Stride, dest, destStride, width, height, clpRng );
815
0
  }
816
0
  else if( ( width & 1 ) == 0 )
817
0
  {
818
0
    for( int y = 0; y < height; y++ )
819
0
    {
820
0
      dest[0] = ClipPel( src1[0] + src2[0], clpRng);
821
0
      dest[1] = ClipPel( src1[1] + src2[1], clpRng);
822
0
      src1 += src1Stride;
823
0
      src2 += src2Stride;
824
0
      dest += destStride;
825
0
    }                        
826
0
  }
827
0
  else
828
0
  {
829
0
    CHECKD( width != 1, "Expecting width to be '1'!" );
830
831
0
    for( int y = 0; y < height; y++ )
832
0
    {
833
0
      dest[0] = ClipPel( src1[0] + src2[0], clpRng );
834
835
0
      src1 += src1Stride;
836
0
      src2 += src2Stride;
837
0
      dest += destStride;
838
0
    }
839
0
  }
840
0
}
841
842
template<>
843
void AreaBuf<Pel>::linearTransform( const int scale, const unsigned shift, const int offset, bool bClip, const ClpRng& clpRng )
844
0
{
845
0
  const Pel* src = buf;
846
0
        Pel* dst = buf;
847
848
0
  if( stride == width)
849
0
  {
850
0
    if( width > 2 && height > 2 )
851
0
    {
852
0
      g_pelBufOP.linTf8( src, stride<<2, dst, stride<<2, width<<2, height>>2, scale, shift, offset, clpRng, bClip );
853
0
    }
854
0
    else
855
0
    {
856
0
      g_pelBufOP.linTf4( src, stride<<1, dst, stride<<1, width<<1, height>>1, scale, shift, offset, clpRng, bClip );
857
0
    }
858
0
  }
859
0
  else if( ( width & 7 ) == 0 )
860
0
  {
861
0
    g_pelBufOP.linTf8( src, stride, dst, stride, width, height, scale, shift, offset, clpRng, bClip );
862
0
  }
863
0
  else if( ( width & 3 ) == 0 )
864
0
  {
865
0
    g_pelBufOP.linTf4( src, stride, dst, stride, width, height, scale, shift, offset, clpRng, bClip );
866
0
  }
867
0
  else
868
0
  {
869
0
    if( bClip )
870
0
    {
871
0
      for( int y = 0; y < height; y++ )
872
0
      {
873
0
        dst[0] = ( Pel ) ClipPel( rightShiftU( scale * src[0], shift ) + offset, clpRng );
874
0
        dst[1] = ( Pel ) ClipPel( rightShiftU( scale * src[1], shift ) + offset, clpRng );
875
0
        src += stride;
876
0
        dst += stride;
877
0
      }
878
0
    }
879
0
    else
880
0
    {
881
0
      for( int y = 0; y < height; y++ )
882
0
      {
883
0
        dst[0] = ( Pel ) ( rightShiftU( scale * src[0], shift ) + offset );
884
0
        dst[1] = ( Pel ) ( rightShiftU( scale * src[1], shift ) + offset );
885
0
        src += stride;
886
0
        dst += stride;
887
0
      }
888
0
    }
889
0
  }
890
0
}
891
892
#if ENABLE_SIMD_OPT_BUFFER
893
894
template<>
895
void AreaBuf<Pel>::transposedFrom( const AreaBuf<const Pel>& other )
896
0
{
897
0
  CHECK( width != other.height || height != other.width, "Incompatible size" );
898
899
0
  if( ( ( width | height ) & 7 ) == 0 )
900
0
  {
901
0
    const Pel* src = other.buf;
902
903
0
    for( unsigned y = 0; y < other.height; y += 8 )
904
0
    {
905
0
      Pel* dst = buf + y;
906
907
0
      for( unsigned x = 0; x < other.width; x += 8 )
908
0
      {
909
0
        g_pelBufOP.transpose8x8( &src[x], other.stride, dst, stride );
910
911
0
        dst += 8 * stride;
912
0
      }
913
914
0
      src += 8 * other.stride;
915
0
    }
916
0
  }
917
0
  else if( ( ( width | height ) & 3 ) == 0 )
918
0
  {
919
0
    const Pel* src = other.buf;
920
921
0
    for( unsigned y = 0; y < other.height; y += 4 )
922
0
    {
923
0
      Pel* dst = buf + y;
924
925
0
      for( unsigned x = 0; x < other.width; x += 4 )
926
0
      {
927
0
        g_pelBufOP.transpose4x4( &src[x], other.stride, dst, stride );
928
929
0
        dst += 4 * stride;
930
0
      }
931
932
0
      src += 4 * other.stride;
933
0
    }
934
0
  }
935
0
  else
936
0
  {
937
0
          Pel* dst =       buf;
938
0
    const Pel* src = other.buf;
939
0
    width          = other.height;
940
0
    height         = other.width;
941
0
    stride         = stride < width ? width : stride;
942
943
0
    for( unsigned y = 0; y < other.height; y++ )
944
0
    {
945
0
      for( unsigned x = 0; x < other.width; x++ )
946
0
      {
947
0
        dst[y + x*stride] = src[x + y * other.stride];
948
0
      }
949
0
    }
950
0
  }
951
0
}
952
#endif
953
954
template<>
955
void AreaBuf<Pel>::weightCiip( const AreaBuf<const Pel>& intra, const int numIntra )
956
0
{
957
0
  CHECK(width == 2, "Width of 2 is not supported");
958
0
  g_pelBufOP.weightCiip( buf, intra.buf, width * height, numIntra );
959
0
}
960
961
template<>
962
void AreaBuf<MotionInfo>::fill( const MotionInfo& val )
963
0
{
964
0
  if( width == stride )
965
0
  {
966
0
    std::fill_n( buf, width * height, val );
967
0
  }
968
0
  else
969
0
  {
970
0
    MotionInfo* dst = buf;
971
972
0
    for( int y = 0; y < height; y++, dst += stride )
973
0
    {
974
0
      std::fill_n( dst, width, val );
975
0
    }
976
0
  }
977
0
}
978
979
PelStorage::PelStorage()
980
0
{
981
0
  for( uint32_t i = 0; i < MAX_NUM_COMP; i++ )
982
0
  {
983
0
    m_origin[i] = nullptr;
984
0
  }
985
0
}
986
987
PelStorage::~PelStorage()
988
0
{
989
0
  destroy();
990
0
}
991
992
void PelStorage::create( const UnitArea& _UnitArea )
993
0
{
994
0
  create( _UnitArea.chromaFormat, _UnitArea.blocks[0] );
995
0
  m_maxArea = _UnitArea;
996
0
}
997
998
void PelStorage::create( const ChromaFormat &_chromaFormat, const Area& _area )
999
0
{
1000
0
  CHECK( !bufs.empty(), "Trying to re-create an already initialized buffer" );
1001
1002
0
  chromaFormat = _chromaFormat;
1003
1004
0
  const uint32_t numComp = getNumberValidComponents( _chromaFormat );
1005
1006
0
  uint32_t bufSize = 0;
1007
0
  for( uint32_t i = 0; i < numComp; i++ )
1008
0
  {
1009
0
    const ComponentID compID = ComponentID( i );
1010
0
    const unsigned totalWidth  = _area.width  >> getComponentScaleX( compID, _chromaFormat );
1011
0
    const unsigned totalHeight = _area.height >> getComponentScaleY( compID, _chromaFormat );
1012
1013
0
    const uint32_t area = totalWidth * totalHeight;
1014
0
    CHECK( !area, "Trying to create a buffer with zero area" );
1015
0
    bufSize += area;
1016
0
  }
1017
1018
0
  bufSize += 1; // for SIMD DMVR on the bottom right corner, which overreads the lines by 1 sample
1019
1020
  //allocate one buffer
1021
0
  m_origin[0] = ( Pel* ) xMalloc( Pel, bufSize );
1022
1023
0
  Pel* topLeft = m_origin[0];
1024
0
  for( uint32_t i = 0; i < numComp; i++ )
1025
0
  {
1026
0
    const ComponentID compID = ComponentID( i );
1027
0
    const unsigned totalWidth  = _area.width  >> getComponentScaleX( compID, _chromaFormat );
1028
0
    const unsigned totalHeight = _area.height >> getComponentScaleY( compID, _chromaFormat );
1029
0
    const uint32_t area = totalWidth * totalHeight;
1030
1031
0
    bufs.push_back( PelBuf( topLeft, totalWidth, totalWidth, totalHeight ) );
1032
0
    topLeft += area;
1033
0
  }
1034
1035
0
  m_maxArea = UnitArea( _chromaFormat, _area );
1036
0
}
1037
1038
void PelStorage::create( const ChromaFormat &_chromaFormat, const Area& _area, const unsigned _maxCUSize, const unsigned _margin, const unsigned _alignment, const bool _scaleChromaMargin )
1039
0
{
1040
0
  CHECK( !bufs.empty(), "Trying to re-create an already initialized buffer" );
1041
1042
0
  chromaFormat = _chromaFormat;
1043
1044
0
  const uint32_t numComp = getNumberValidComponents( _chromaFormat );
1045
1046
0
  unsigned extHeight = _area.height;
1047
0
  unsigned extWidth  = _area.width;
1048
1049
0
  if( _maxCUSize )
1050
0
  {
1051
0
    extHeight = ( ( _area.height + _maxCUSize - 1 ) / _maxCUSize ) * _maxCUSize;
1052
0
    extWidth  = ( ( _area.width  + _maxCUSize - 1 ) / _maxCUSize ) * _maxCUSize;
1053
0
  }
1054
1055
0
  for( uint32_t i = 0; i < numComp; i++ )
1056
0
  {
1057
0
    const ComponentID compID = ComponentID( i );
1058
0
    const unsigned scaleX = getComponentScaleX( compID, _chromaFormat );
1059
0
    const unsigned scaleY = getComponentScaleY( compID, _chromaFormat );
1060
1061
0
    unsigned scaledHeight = extHeight >> scaleY;
1062
0
    unsigned scaledWidth  = extWidth  >> scaleX;
1063
0
    unsigned ymargin      = _margin >> (_scaleChromaMargin?scaleY:0);
1064
0
    unsigned xmargin      = _margin >> (_scaleChromaMargin?scaleX:0);
1065
0
    unsigned totalWidth   = scaledWidth + 2*xmargin;
1066
0
    unsigned totalHeight  = scaledHeight +2*ymargin;
1067
1068
0
    if( _alignment )
1069
0
    {
1070
      // make sure buffer lines are align
1071
0
      CHECK( _alignment != MEMORY_ALIGN_DEF_SIZE, "Unsupported alignment" );
1072
0
      totalWidth = ( ( totalWidth + _alignment - 1 ) / _alignment ) * _alignment;
1073
0
    }
1074
0
    uint32_t area = totalWidth * totalHeight;
1075
0
    CHECK( !area, "Trying to create a buffer with zero area" );
1076
1077
0
    m_origin[i] = ( Pel* ) xMalloc( Pel, area );
1078
0
    Pel* topLeft = m_origin[i] + totalWidth * ymargin + xmargin;
1079
0
    bufs.push_back( PelBuf( topLeft, totalWidth, _area.width >> scaleX, _area.height >> scaleY ) );
1080
0
  }
1081
1082
0
  m_maxArea = UnitArea( _chromaFormat, _area );
1083
0
}
1084
1085
void PelStorage::createFromBuf( PelUnitBuf buf )
1086
0
{
1087
0
  chromaFormat = buf.chromaFormat;
1088
1089
0
  const uint32_t numCh = getNumberValidComponents( chromaFormat );
1090
1091
0
  bufs.resize(numCh);
1092
1093
0
  for( uint32_t i = 0; i < numCh; i++ )
1094
0
  {
1095
0
    PelBuf cPelBuf = buf.get( ComponentID( i ) );
1096
0
    bufs[i] = PelBuf( cPelBuf.bufAt( 0, 0 ), cPelBuf.stride, cPelBuf.width, cPelBuf.height );
1097
0
  }
1098
0
}
1099
1100
void PelStorage::compactResize( const UnitArea& area )
1101
0
{
1102
0
  CHECK( bufs.size() < area.blocks.size(), "Cannot increase buffer size when compacting!" );
1103
1104
0
  for( uint32_t i = 0; i < area.blocks.size(); i++ )
1105
0
  {
1106
0
    CHECK( m_maxArea.blocks[i].area() < area.blocks[i].area(), "Cannot increase buffer size when compacting!" );
1107
1108
0
    bufs[i].Size::operator=( area.blocks[i].size() );
1109
0
    bufs[i].stride = bufs[i].width;
1110
0
  }
1111
0
}
1112
1113
void PelStorage::takeOwnership( PelStorage& other )
1114
0
{
1115
0
  chromaFormat = other.chromaFormat;
1116
1117
0
  const uint32_t numCh = getNumberValidComponents( chromaFormat );
1118
1119
0
  bufs.resize(numCh);
1120
1121
0
  for( uint32_t i = 0; i < numCh; i++ )
1122
0
  {
1123
0
    PelBuf cPelBuf = other.get( ComponentID( i ) );
1124
0
    bufs[i] = PelBuf( cPelBuf.bufAt( 0, 0 ), cPelBuf.stride, cPelBuf.width, cPelBuf.height );
1125
0
    std::swap( m_origin[i], other.m_origin[i]);
1126
0
  }
1127
1128
0
  m_maxArea = other.m_maxArea;
1129
1130
0
  other.destroy();
1131
0
}
1132
1133
1134
void PelStorage::swap( PelStorage& other )
1135
0
{
1136
0
  const uint32_t numCh = getNumberValidComponents( chromaFormat );
1137
1138
0
  for( uint32_t i = 0; i < numCh; i++ )
1139
0
  {
1140
    // check this otherwise it would turn out to get very weird
1141
0
    CHECK( chromaFormat                   != other.chromaFormat                  , "Incompatible formats" );
1142
0
    CHECK( get( ComponentID( i ) )        != other.get( ComponentID( i ) )       , "Incompatible formats" );
1143
0
    CHECK( get( ComponentID( i ) ).stride != other.get( ComponentID( i ) ).stride, "Incompatible formats" );
1144
1145
0
    std::swap( bufs[i].buf,    other.bufs[i].buf );
1146
0
    std::swap( bufs[i].stride, other.bufs[i].stride );
1147
0
    std::swap( m_origin[i],    other.m_origin[i] );
1148
0
  }
1149
0
}
1150
1151
void PelStorage::destroy()
1152
0
{
1153
0
  chromaFormat = NUM_CHROMA_FORMAT;
1154
0
  for( uint32_t i = 0; i < MAX_NUM_COMP; i++ )
1155
0
  {
1156
0
    if( m_origin[i] )
1157
0
    {
1158
0
      xFree( m_origin[i] );
1159
0
      m_origin[i] = nullptr;
1160
0
    }
1161
0
  }
1162
0
  bufs.clear();
1163
0
}
1164
1165
PelBuf PelStorage::getBuf( const ComponentID CompID )
1166
0
{
1167
0
  return bufs[CompID];
1168
0
}
1169
1170
const CPelBuf PelStorage::getBuf( const ComponentID CompID ) const
1171
0
{
1172
0
  return bufs[CompID];
1173
0
}
1174
1175
PelBuf PelStorage::getBuf( const CompArea& blk )
1176
0
{
1177
0
  const PelBuf& r = bufs[blk.compID];
1178
0
  return PelBuf( r.buf + rsAddr( blk, r.stride ), r.stride, blk );
1179
0
}
1180
1181
const CPelBuf PelStorage::getBuf( const CompArea& blk ) const
1182
0
{
1183
0
  const PelBuf& r = bufs[blk.compID];
1184
0
  return CPelBuf( r.buf + rsAddr( blk, r.stride ), r.stride, blk );
1185
0
}
1186
1187
PelUnitBuf PelStorage::getBuf( const UnitArea& unit )
1188
0
{
1189
0
  return ( chromaFormat == CHROMA_400 ) ? PelUnitBuf( chromaFormat, getBuf( unit.Y() ) ) : PelUnitBuf( chromaFormat, getBuf( unit.Y() ), getBuf( unit.Cb() ), getBuf( unit.Cr() ) );
1190
0
}
1191
1192
const CPelUnitBuf PelStorage::getBuf( const UnitArea& unit ) const
1193
0
{
1194
0
  return ( chromaFormat == CHROMA_400 ) ? CPelUnitBuf( chromaFormat, getBuf( unit.Y() ) ) : CPelUnitBuf( chromaFormat, getBuf( unit.Y() ), getBuf( unit.Cb() ), getBuf( unit.Cr() ) );
1195
0
}
1196
1197
PelUnitBuf PelStorage::getBuf(const int strY, const int strCb, const int strCr, const UnitArea& unit)
1198
0
{
1199
0
  CHECKD( unit.Y().width > bufs[COMP_Y].width && unit.Y().height > bufs[COMP_Y].height, "unsuported request" );
1200
0
  CHECKD( strY > bufs[COMP_Y].stride, "unsuported request" );
1201
0
  CHECKD( strCb > bufs[COMP_Cb].stride, "unsuported request" );
1202
0
  CHECKD( strCr > bufs[COMP_Cr].stride, "unsuported request" );
1203
0
  return (chromaFormat == CHROMA_400) ? PelUnitBuf(chromaFormat, PelBuf( bufs[COMP_Y].buf, strY, unit.Y())) : PelUnitBuf(chromaFormat, PelBuf( bufs[COMP_Y].buf, strY, unit.Y()), PelBuf( bufs[COMP_Cb].buf, strCb, unit.Cb()), PelBuf( bufs[COMP_Cr].buf, strCr, unit.Cr()));
1204
0
}
1205
1206
const CPelUnitBuf PelStorage::getBuf(const int strY, const int strCb, const int strCr, const UnitArea& unit) const
1207
0
{
1208
0
  CHECKD( unit.Y().width > bufs[COMP_Y].width && unit.Y().height > bufs[COMP_Y].height, "unsuported request" );
1209
0
  CHECKD( strY > bufs[COMP_Y].stride, "unsuported request" );
1210
0
  CHECKD( strCb > bufs[COMP_Cb].stride, "unsuported request" );
1211
0
  CHECKD( strCr > bufs[COMP_Cr].stride, "unsuported request" );
1212
0
  return (chromaFormat == CHROMA_400) ? CPelUnitBuf(chromaFormat, CPelBuf( bufs[COMP_Y].buf, strY, unit.Y())) : CPelUnitBuf(chromaFormat, CPelBuf( bufs[COMP_Y].buf, strY, unit.Y()), CPelBuf( bufs[COMP_Cb].buf, strCb, unit.Cb()), CPelBuf( bufs[COMP_Cr].buf, strCr, unit.Cr()));
1213
0
}
1214
1215
PelUnitBuf PelStorage::getBufPart(const UnitArea& unit)
1216
0
{
1217
0
  CHECKD( unit.Y().width > bufs[COMP_Y].width && unit.Y().height > bufs[COMP_Y].height, "unsuported request" );
1218
0
  return (chromaFormat == CHROMA_400) ? PelUnitBuf(chromaFormat, PelBuf( bufs[COMP_Y].buf, bufs[COMP_Y].stride, unit.Y())) : PelUnitBuf(chromaFormat, PelBuf( bufs[COMP_Y].buf, bufs[COMP_Y].stride, unit.Y()), PelBuf( bufs[COMP_Cb].buf, bufs[COMP_Cb].stride, unit.Cb()), PelBuf( bufs[COMP_Cr].buf, bufs[COMP_Cr].stride, unit.Cr()));
1219
0
}
1220
1221
const CPelUnitBuf PelStorage::getBufPart(const UnitArea& unit) const
1222
0
{
1223
0
  CHECKD(unit.Y().width > bufs[COMP_Y].width && unit.Y().height > bufs[COMP_Y].height, "unsuported request");
1224
0
  return (chromaFormat == CHROMA_400) ? CPelUnitBuf(chromaFormat, CPelBuf(bufs[COMP_Y].buf, unit.Y().width, unit.Y())) : CPelUnitBuf(chromaFormat, CPelBuf(bufs[COMP_Y].buf, unit.Y().width, unit.Y()), CPelBuf(bufs[COMP_Cb].buf, unit.Cb().width, unit.Cb()), CPelBuf(bufs[COMP_Cr].buf, unit.Cr().width, unit.Cr()));
1225
0
}
1226
1227
const CPelUnitBuf PelStorage::getCompactBuf(const UnitArea& unit) const
1228
0
{
1229
0
  CHECKD( unit.Y().width > bufs[COMP_Y].width && unit.Y().height > bufs[COMP_Y].height, "unsuported request" );
1230
1231
0
  PelUnitBuf ret;
1232
0
  ret.chromaFormat = chromaFormat;
1233
0
  ret.bufs.resize_noinit( chromaFormat == CHROMA_400 ? 1 : 3 );
1234
  
1235
0
  ret.Y   ().buf = bufs[COMP_Y ].buf; ret.Y ().width = ret.Y ().stride = unit.Y ().width; ret.Y ().height = unit.Y ().height;
1236
0
  if( chromaFormat != CHROMA_400 )
1237
0
  {
1238
0
    ret.Cb().buf = bufs[COMP_Cb].buf; ret.Cb().width = ret.Cb().stride = unit.Cb().width; ret.Cb().height = unit.Cb().height;
1239
0
    ret.Cr().buf = bufs[COMP_Cr].buf; ret.Cr().width = ret.Cr().stride = unit.Cr().width; ret.Cr().height = unit.Cr().height;
1240
0
  }
1241
1242
0
  return ret;
1243
0
}
1244
1245
PelUnitBuf PelStorage::getCompactBuf(const UnitArea& unit)
1246
0
{
1247
0
  CHECKD( unit.Y().width > bufs[COMP_Y].width && unit.Y().height > bufs[COMP_Y].height, "unsuported request" );
1248
1249
0
  PelUnitBuf ret;
1250
0
  ret.chromaFormat = chromaFormat;
1251
0
  ret.bufs.resize_noinit( chromaFormat == CHROMA_400 ? 1 : 3 );
1252
1253
0
  ret.Y   ().buf = bufs[COMP_Y ].buf; ret.Y ().width = ret.Y ().stride = unit.Y ().width; ret.Y ().height = unit.Y ().height;
1254
0
  if( chromaFormat != CHROMA_400 )
1255
0
  {
1256
0
    ret.Cb().buf = bufs[COMP_Cb].buf; ret.Cb().width = ret.Cb().stride = unit.Cb().width; ret.Cb().height = unit.Cb().height;
1257
0
    ret.Cr().buf = bufs[COMP_Cr].buf; ret.Cr().width = ret.Cr().stride = unit.Cr().width; ret.Cr().height = unit.Cr().height;
1258
0
  }
1259
1260
0
  return ret;
1261
0
}
1262
1263
const CPelBuf PelStorage::getCompactBuf(const CompArea& carea) const
1264
0
{
1265
0
  return CPelBuf( bufs[carea.compID].buf, carea.width, carea);
1266
0
}
1267
1268
PelBuf PelStorage::getCompactBuf(const CompArea& carea)
1269
0
{
1270
0
  return PelBuf( bufs[carea.compID].buf, carea.width, carea);
1271
0
}
1272
1273
void downsampleYuv(PelBuf& dest, const vvencYUVPlane& yuvPlaneIn, int downsampleStep)
1274
0
{
1275
0
  const int widthd = dest.width;
1276
0
  const int heightd = dest.height;
1277
0
  int difStride = dest.stride - dest.width;
1278
1279
0
  const int16_t* src = yuvPlaneIn.ptr;
1280
0
  const int instride = yuvPlaneIn.stride;
1281
0
  const int width = yuvPlaneIn.width;
1282
0
  int n = 0;
1283
0
  for (int j = 0; j < heightd; j++)
1284
0
  {
1285
0
    int i = 0;
1286
0
    for (i = 0; i < widthd; i++)
1287
0
    {
1288
0
      long int b = 0;
1289
0
      for (int r = 0; r < downsampleStep; r++)
1290
0
      {
1291
0
        int posr = width * r;
1292
0
        for (int n = 0; n < downsampleStep; n++)
1293
0
        {
1294
0
          b += src[posr + n];
1295
0
        }
1296
0
      }
1297
0
      src += downsampleStep;
1298
0
      dest.buf[n] = (int16_t)((b + 2) / (downsampleStep << 1));
1299
0
      n++;
1300
0
    }
1301
0
    n += difStride;
1302
0
    src = src - downsampleStep * i + width;
1303
1304
0
    src += (instride * (downsampleStep - 1));
1305
0
  }
1306
0
}
1307
1308
void copyPadToPelUnitBuf( PelUnitBuf pelUnitBuf, const vvencYUVBuffer& yuvBuffer, const ChromaFormat& chFmt )
1309
0
{
1310
0
  CHECK( pelUnitBuf.bufs.size() == 0, "pelUnitBuf not initialized" );
1311
0
  pelUnitBuf.chromaFormat = chFmt;
1312
0
  const int numComp = getNumberValidComponents( chFmt );
1313
0
  for ( int i = 0; i < numComp; i++ )
1314
0
  {
1315
0
    const vvencYUVPlane& src = yuvBuffer.planes[ i ];
1316
0
    CHECK( src.ptr == nullptr, "yuvBuffer not setup" );
1317
0
    PelBuf& dest = pelUnitBuf.bufs[i];
1318
0
    CHECK( dest.buf == nullptr, "yuvBuffer not setup" );
1319
1320
0
    if (dest.width < src.width)
1321
0
    {
1322
0
      downsampleYuv(dest, src, 2);
1323
0
    }
1324
0
    else
1325
0
    {
1326
0
      for (int y = 0; y < src.height; y++)
1327
0
      {
1328
0
        ::memcpy(dest.buf + y * dest.stride, src.ptr + y * src.stride, src.width * sizeof(int16_t));
1329
1330
        // pad right if required
1331
0
        for (int x = src.width; x < dest.width; x++)
1332
0
        {
1333
0
          dest.buf[x + y * dest.stride] = dest.buf[src.width - 1 + y * dest.stride];
1334
0
        }
1335
0
      }
1336
1337
      // pad bottom if required
1338
0
      for (int y = src.height; y < dest.height; y++)
1339
0
      {
1340
0
        ::memcpy(dest.buf + y * dest.stride, dest.buf + (src.height - 1) * dest.stride, dest.width * sizeof(int16_t));
1341
0
      }
1342
0
    }
1343
0
  }
1344
0
}
1345
1346
/*
1347
void setupPelUnitBuf( const YUVBuffer& yuvBuffer, PelUnitBuf& pelUnitBuf, const ChromaFormat& chFmt )
1348
{
1349
  CHECK( pelUnitBuf.bufs.size() != 0, "pelUnitBuf already in use" );
1350
  pelUnitBuf.chromaFormat = chFmt;
1351
  const int numComp = getNumberValidComponents( chFmt );
1352
  for ( int i = 0; i < numComp; i++ )
1353
  {
1354
    const YUVBuffer::Plane& yuvPlane = yuvBuffer.planes[ i ];
1355
    CHECK( yuvPlane.ptr == nullptr, "yuvBuffer not setup" );
1356
    PelBuf area( yuvPlane.ptr, yuvPlane.stride, yuvPlane.width, yuvPlane.height );
1357
    pelUnitBuf.bufs.push_back( area );
1358
  }
1359
}
1360
*/
1361
void setupYuvBuffer ( const PelUnitBuf& pelUnitBuf, vvencYUVBuffer& yuvBuffer, const Window* confWindow )
1362
0
{
1363
0
  const ChromaFormat chFmt = pelUnitBuf.chromaFormat;
1364
0
  const int numComp        = getNumberValidComponents( chFmt );
1365
0
  for ( int i = 0; i < numComp; i++ )
1366
0
  {
1367
0
    const ComponentID compId = ComponentID( i );
1368
0
          PelBuf area        = pelUnitBuf.get( compId );
1369
0
    const int sx             = getComponentScaleX( compId, chFmt );
1370
0
    const int sy             = getComponentScaleY( compId, chFmt );
1371
0
    vvencYUVPlane& yuvPlane = yuvBuffer.planes[ i ];
1372
0
    CHECK( yuvPlane.ptr != nullptr, "yuvBuffer already in use" );
1373
0
    yuvPlane.ptr             = area.bufAt( confWindow->winLeftOffset >> sx, confWindow->winTopOffset >> sy );
1374
0
    yuvPlane.width           = ( ( area.width  << sx ) - ( confWindow->winLeftOffset + confWindow->winRightOffset  ) ) >> sx;
1375
0
    yuvPlane.height          = ( ( area.height << sy ) - ( confWindow->winTopOffset  + confWindow->winBottomOffset ) ) >> sy;
1376
0
    yuvPlane.stride          = area.stride;
1377
0
  }
1378
0
}
1379
1380
} // namespace vvenc
1381
1382
//! \}
1383