Coverage Report

Created: 2025-11-24 06:46

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libhevc/common/ihevc_sao.c
Line
Count
Source
1
/******************************************************************************
2
*
3
* Copyright (C) 2012 Ittiam Systems Pvt Ltd, Bangalore
4
*
5
* Licensed under the Apache License, Version 2.0 (the "License");
6
* you may not use this file except in compliance with the License.
7
* You may obtain a copy of the License at:
8
*
9
* http://www.apache.org/licenses/LICENSE-2.0
10
*
11
* Unless required by applicable law or agreed to in writing, software
12
* distributed under the License is distributed on an "AS IS" BASIS,
13
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14
* See the License for the specific language governing permissions and
15
* limitations under the License.
16
*
17
******************************************************************************/
18
/**
19
*******************************************************************************
20
* @file
21
*  ihevc_sao.c
22
*
23
* @brief
24
*  Contains leaf level function definitions for sample adaptive offset process
25
*
26
* @author
27
*  Srinivas T
28
*
29
* @par List of Functions:
30
*   - ihevc_sao_band_offset_luma()
31
*   - ihevc_sao_band_offset_chroma()
32
*   - ihevc_sao_edge_offset_class0()
33
*   - ihevc_sao_edge_offset_class0_chroma()
34
*   - ihevc_sao_edge_offset_class1()
35
*   - ihevc_sao_edge_offset_class1_chroma()
36
*   - ihevc_sao_edge_offset_class2()
37
*   - ihevc_sao_edge_offset_class2_chroma()
38
*   - ihevc_sao_edge_offset_class3()
39
*   - ihevc_sao_edge_offset_class3_chroma()
40
* @remarks
41
*  None
42
*
43
*******************************************************************************
44
*/
45
#include <stdlib.h>
46
#include <assert.h>
47
#include <string.h>
48
#include "ihevc_typedefs.h"
49
#include "ihevc_macros.h"
50
#include "ihevc_platform_macros.h"
51
#include "ihevc_func_selector.h"
52
#include "ihevc_defs.h"
53
#include "ihevc_structs.h"
54
#include "ihevc_sao.h"
55
56
4.00M
#define NUM_BAND_TABLE  32
57
58
const WORD32 gi4_ihevc_table_edge_idx[5] = { 1, 2, 0, 3, 4 };
59
/**
60
 * au4_avail is an array of flags - one for each neighboring block specifying if the block is available
61
 * au4_avail[0] - left
62
 * au4_avail[1] - right
63
 * au4_avail[2] - top
64
 * au4_avail[3] - bottom
65
 * au4_avail[4] - top-left
66
 * au4_avail[5] - top-right
67
 * au4_avail[6] - bottom-left
68
 * au4_avail[7] - bottom-right
69
 */
70
71
72
void ihevc_sao_band_offset_luma(UWORD8 *pu1_src,
73
                                WORD32 src_strd,
74
                                UWORD8 *pu1_src_left,
75
                                UWORD8 *pu1_src_top,
76
                                UWORD8 *pu1_src_top_left,
77
                                WORD32 sao_band_pos,
78
                                WORD8 *pi1_sao_offset,
79
                                WORD32 wd,
80
                                WORD32 ht)
81
79.0k
{
82
79.0k
    WORD32 band_shift;
83
79.0k
    WORD32 band_table[NUM_BAND_TABLE];
84
79.0k
    WORD32 i;
85
79.0k
    WORD32 row, col;
86
87
    /* Updating left and top and top-left */
88
2.58M
    for(row = 0; row < ht; row++)
89
2.50M
    {
90
2.50M
        pu1_src_left[row] = pu1_src[row * src_strd + (wd - 1)];
91
2.50M
    }
92
79.0k
    pu1_src_top_left[0] = pu1_src_top[wd - 1];
93
2.65M
    for(col = 0; col < wd; col++)
94
2.57M
    {
95
2.57M
        pu1_src_top[col] = pu1_src[(ht - 1) * src_strd + col];
96
2.57M
    }
97
98
79.0k
    band_shift = BIT_DEPTH_LUMA - 5;
99
2.61M
    for(i = 0; i < NUM_BAND_TABLE; i++)
100
2.53M
    {
101
2.53M
        band_table[i] = 0;
102
2.53M
    }
103
395k
    for(i = 0; i < 4; i++)
104
316k
    {
105
316k
        band_table[(i + sao_band_pos) & 31] = i + 1;
106
316k
    }
107
108
2.56M
    for(row = 0; row < ht; row++)
109
2.48M
    {
110
83.7M
        for(col = 0; col < wd; col++)
111
81.2M
        {
112
81.2M
            WORD32 band_idx;
113
114
81.2M
            band_idx = band_table[pu1_src[col] >> band_shift];
115
81.2M
            pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[band_idx], 0, (1 << (band_shift + 5)) - 1);
116
81.2M
        }
117
2.48M
        pu1_src += src_strd;
118
2.48M
    }
119
79.0k
}
120
121
122
123
/* input 'wd' has to be for the interleaved block and not for each color component */
124
void ihevc_sao_band_offset_chroma(UWORD8 *pu1_src,
125
                                  WORD32 src_strd,
126
                                  UWORD8 *pu1_src_left,
127
                                  UWORD8 *pu1_src_top,
128
                                  UWORD8 *pu1_src_top_left,
129
                                  WORD32 sao_band_pos_u,
130
                                  WORD32 sao_band_pos_v,
131
                                  WORD8 *pi1_sao_offset_u,
132
                                  WORD8 *pi1_sao_offset_v,
133
                                  WORD32 wd,
134
                                  WORD32 ht)
135
42.1k
{
136
42.1k
    WORD32 band_shift;
137
42.1k
    WORD32 band_table_u[NUM_BAND_TABLE];
138
42.1k
    WORD32 band_table_v[NUM_BAND_TABLE];
139
42.1k
    WORD32 i;
140
42.1k
    WORD32 row, col;
141
142
    /* Updating left and top and top-left */
143
717k
    for(row = 0; row < ht; row++)
144
675k
    {
145
675k
        pu1_src_left[2 * row] = pu1_src[row * src_strd + (wd - 2)];
146
675k
        pu1_src_left[2 * row + 1] = pu1_src[row * src_strd + (wd - 1)];
147
675k
    }
148
42.1k
    pu1_src_top_left[0] = pu1_src_top[wd - 2];
149
42.1k
    pu1_src_top_left[1] = pu1_src_top[wd - 1];
150
1.41M
    for(col = 0; col < wd; col++)
151
1.36M
    {
152
1.36M
        pu1_src_top[col] = pu1_src[(ht - 1) * src_strd + col];
153
1.36M
    }
154
155
156
42.1k
    band_shift = BIT_DEPTH_CHROMA - 5;
157
1.39M
    for(i = 0; i < NUM_BAND_TABLE; i++)
158
1.34M
    {
159
1.34M
        band_table_u[i] = 0;
160
1.34M
        band_table_v[i] = 0;
161
1.34M
    }
162
210k
    for(i = 0; i < 4; i++)
163
168k
    {
164
168k
        band_table_u[(i + sao_band_pos_u) & 31] = i + 1;
165
168k
        band_table_v[(i + sao_band_pos_v) & 31] = i + 1;
166
168k
    }
167
168
712k
    for(row = 0; row < ht; row++)
169
670k
    {
170
22.5M
        for(col = 0; col < wd; col++)
171
21.9M
        {
172
21.9M
            WORD32 band_idx;
173
21.9M
            WORD8 *pi1_sao_offset;
174
175
21.9M
            pi1_sao_offset = (0 == col % 2) ? pi1_sao_offset_u : pi1_sao_offset_v;
176
21.9M
            band_idx = (0 == col % 2) ? band_table_u[pu1_src[col] >> band_shift] : band_table_v[pu1_src[col] >> band_shift];
177
21.9M
            pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[band_idx], 0, (1 << (band_shift + 5)) - 1);
178
21.9M
        }
179
670k
        pu1_src += src_strd;
180
670k
    }
181
42.1k
}
182
183
184
185
/* Horizontal filtering */
186
void ihevc_sao_edge_offset_class0(UWORD8 *pu1_src,
187
                                  WORD32 src_strd,
188
                                  UWORD8 *pu1_src_left,
189
                                  UWORD8 *pu1_src_top,
190
                                  UWORD8 *pu1_src_top_left,
191
                                  UWORD8 *pu1_src_top_right,
192
                                  UWORD8 *pu1_src_bot_left,
193
                                  UWORD8 *pu1_avail,
194
                                  WORD8 *pi1_sao_offset,
195
                                  WORD32 wd,
196
                                  WORD32 ht)
197
238k
{
198
238k
    WORD32 row, col;
199
238k
    UWORD8 au1_mask[MAX_CTB_SIZE];
200
238k
    UWORD8 au1_src_left_tmp[MAX_CTB_SIZE];
201
238k
    WORD8 u1_sign_left, u1_sign_right;
202
238k
    WORD32 bit_depth;
203
238k
    UNUSED(pu1_src_top_right);
204
238k
    UNUSED(pu1_src_bot_left);
205
238k
    bit_depth = BIT_DEPTH_LUMA;
206
207
    /* Initialize the mask values */
208
238k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
209
210
    /* Update top and top-left arrays */
211
238k
    *pu1_src_top_left = pu1_src_top[wd - 1];
212
14.3M
    for(row = 0; row < ht; row++)
213
14.0M
    {
214
14.0M
        au1_src_left_tmp[row] = pu1_src[row * src_strd + wd - 1];
215
14.0M
    }
216
14.4M
    for(col = 0; col < wd; col++)
217
14.1M
    {
218
14.1M
        pu1_src_top[col] = pu1_src[(ht - 1) * src_strd + col];
219
14.1M
    }
220
221
    /* Update masks based on the availability flags */
222
238k
    if(0 == pu1_avail[0])
223
97.1k
    {
224
97.1k
        au1_mask[0] = 0;
225
97.1k
    }
226
238k
    if(0 == pu1_avail[1])
227
98.5k
    {
228
98.5k
        au1_mask[wd - 1] = 0;
229
98.5k
    }
230
231
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
232
238k
    {
233
14.3M
        for(row = 0; row < ht; row++)
234
14.0M
        {
235
14.0M
            u1_sign_left = SIGN(pu1_src[0] - pu1_src_left[row]);
236
868M
            for(col = 0; col < wd; col++)
237
854M
            {
238
854M
                WORD32 edge_idx;
239
240
854M
                u1_sign_right = SIGN(pu1_src[col] - pu1_src[col + 1]);
241
854M
                edge_idx = 2 + u1_sign_left + u1_sign_right;
242
854M
                u1_sign_left = -u1_sign_right;
243
244
854M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col];
245
246
854M
                if(0 != edge_idx)
247
37.6M
                {
248
37.6M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
249
37.6M
                }
250
854M
            }
251
252
14.0M
            pu1_src += src_strd;
253
14.0M
        }
254
238k
    }
255
256
    /* Update left array */
257
14.3M
    for(row = 0; row < ht; row++)
258
14.0M
    {
259
14.0M
        pu1_src_left[row] = au1_src_left_tmp[row];
260
14.0M
    }
261
262
238k
}
263
264
265
266
267
/* input 'wd' has to be for the interleaved block and not for each color component */
268
void ihevc_sao_edge_offset_class0_chroma(UWORD8 *pu1_src,
269
                                         WORD32 src_strd,
270
                                         UWORD8 *pu1_src_left,
271
                                         UWORD8 *pu1_src_top,
272
                                         UWORD8 *pu1_src_top_left,
273
                                         UWORD8 *pu1_src_top_right,
274
                                         UWORD8 *pu1_src_bot_left,
275
                                         UWORD8 *pu1_avail,
276
                                         WORD8 *pi1_sao_offset_u,
277
                                         WORD8 *pi1_sao_offset_v,
278
                                         WORD32 wd,
279
                                         WORD32 ht)
280
110k
{
281
110k
    WORD32 row, col;
282
110k
    UWORD8 au1_mask[MAX_CTB_SIZE];
283
110k
    UWORD8 au1_src_left_tmp[2 * MAX_CTB_SIZE];
284
110k
    WORD8 u1_sign_left_u, u1_sign_right_u;
285
110k
    WORD8 u1_sign_left_v, u1_sign_right_v;
286
110k
    WORD32 bit_depth;
287
110k
    UNUSED(pu1_src_top_right);
288
110k
    UNUSED(pu1_src_bot_left);
289
110k
    bit_depth = BIT_DEPTH_CHROMA;
290
291
    /* Initialize the mask values */
292
110k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
293
294
    /* Update left, top and top-left arrays */
295
110k
    pu1_src_top_left[0] = pu1_src_top[wd - 2];
296
110k
    pu1_src_top_left[1] = pu1_src_top[wd - 1];
297
3.32M
    for(row = 0; row < ht; row++)
298
3.21M
    {
299
3.21M
        au1_src_left_tmp[2 * row] = pu1_src[row * src_strd + wd - 2];
300
3.21M
        au1_src_left_tmp[2 * row + 1] = pu1_src[row * src_strd + wd - 1];
301
3.21M
    }
302
6.58M
    for(col = 0; col < wd; col++)
303
6.46M
    {
304
6.46M
        pu1_src_top[col] = pu1_src[(ht - 1) * src_strd + col];
305
6.46M
    }
306
307
    /* Update masks based on the availability flags */
308
110k
    if(0 == pu1_avail[0])
309
36.2k
    {
310
36.2k
        au1_mask[0] = 0;
311
36.2k
    }
312
110k
    if(0 == pu1_avail[1])
313
37.7k
    {
314
37.7k
        au1_mask[(wd - 1) >> 1] = 0;
315
37.7k
    }
316
317
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
318
110k
    {
319
3.32M
        for(row = 0; row < ht; row++)
320
3.20M
        {
321
3.20M
            u1_sign_left_u = SIGN(pu1_src[0] - pu1_src_left[2 * row]);
322
3.20M
            u1_sign_left_v = SIGN(pu1_src[1] - pu1_src_left[2 * row + 1]);
323
195M
            for(col = 0; col < wd; col++)
324
192M
            {
325
192M
                WORD32 edge_idx;
326
192M
                WORD8 *pi1_sao_offset;
327
328
192M
                if(0 == col % 2)
329
96.1M
                {
330
96.1M
                    pi1_sao_offset = pi1_sao_offset_u;
331
96.1M
                    u1_sign_right_u = SIGN(pu1_src[col] - pu1_src[col + 2]);
332
96.1M
                    edge_idx = 2 + u1_sign_left_u + u1_sign_right_u;
333
96.1M
                    u1_sign_left_u = -u1_sign_right_u;
334
96.1M
                }
335
96.1M
                else
336
96.1M
                {
337
96.1M
                    pi1_sao_offset = pi1_sao_offset_v;
338
96.1M
                    u1_sign_right_v = SIGN(pu1_src[col] - pu1_src[col + 2]);
339
96.1M
                    edge_idx = 2 + u1_sign_left_v + u1_sign_right_v;
340
96.1M
                    u1_sign_left_v = -u1_sign_right_v;
341
96.1M
                }
342
343
192M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col >> 1];
344
345
192M
                if(0 != edge_idx)
346
8.73M
                {
347
8.73M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
348
8.73M
                }
349
192M
            }
350
351
3.20M
            pu1_src += src_strd;
352
3.20M
        }
353
110k
    }
354
355
6.53M
    for(row = 0; row < 2 * ht; row++)
356
6.42M
    {
357
6.42M
        pu1_src_left[row] = au1_src_left_tmp[row];
358
6.42M
    }
359
360
110k
}
361
362
363
364
/* Vertical filtering */
365
void ihevc_sao_edge_offset_class1(UWORD8 *pu1_src,
366
                                  WORD32 src_strd,
367
                                  UWORD8 *pu1_src_left,
368
                                  UWORD8 *pu1_src_top,
369
                                  UWORD8 *pu1_src_top_left,
370
                                  UWORD8 *pu1_src_top_right,
371
                                  UWORD8 *pu1_src_bot_left,
372
                                  UWORD8 *pu1_avail,
373
                                  WORD8 *pi1_sao_offset,
374
                                  WORD32 wd,
375
                                  WORD32 ht)
376
160k
{
377
160k
    WORD32 row, col;
378
160k
    UWORD8 au1_mask[MAX_CTB_SIZE];
379
160k
    UWORD8 au1_src_top_tmp[MAX_CTB_SIZE];
380
160k
    WORD8 au1_sign_up[MAX_CTB_SIZE];
381
160k
    WORD8 u1_sign_down;
382
160k
    WORD32 bit_depth;
383
160k
    UNUSED(pu1_src_top_right);
384
160k
    UNUSED(pu1_src_bot_left);
385
386
160k
    bit_depth = BIT_DEPTH_LUMA;
387
388
    /* Initialize the mask values */
389
160k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
390
391
    /* Update left, top and top-left arrays */
392
160k
    *pu1_src_top_left = pu1_src_top[wd - 1];
393
9.52M
    for(row = 0; row < ht; row++)
394
9.36M
    {
395
9.36M
        pu1_src_left[row] = pu1_src[row * src_strd + wd - 1];
396
9.36M
    }
397
9.56M
    for(col = 0; col < wd; col++)
398
9.40M
    {
399
9.40M
        au1_src_top_tmp[col] = pu1_src[(ht - 1) * src_strd + col];
400
9.40M
    }
401
402
    /* Update height and source pointers based on the availability flags */
403
160k
    if(0 == pu1_avail[2])
404
88.3k
    {
405
88.3k
        pu1_src += src_strd;
406
88.3k
        ht--;
407
5.47M
        for(col = 0; col < wd; col++)
408
5.38M
        {
409
5.38M
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src[col - src_strd]);
410
5.38M
        }
411
88.3k
    }
412
72.3k
    else
413
72.3k
    {
414
4.09M
        for(col = 0; col < wd; col++)
415
4.02M
        {
416
4.02M
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src_top[col]);
417
4.02M
        }
418
72.3k
    }
419
160k
    if(0 == pu1_avail[3])
420
88.3k
    {
421
88.3k
        ht--;
422
88.3k
    }
423
424
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
425
160k
    {
426
9.34M
        for(row = 0; row < ht; row++)
427
9.18M
        {
428
562M
            for(col = 0; col < wd; col++)
429
553M
            {
430
553M
                WORD32 edge_idx;
431
432
553M
                u1_sign_down = SIGN(pu1_src[col] - pu1_src[col + src_strd]);
433
553M
                edge_idx = 2 + au1_sign_up[col] + u1_sign_down;
434
553M
                au1_sign_up[col] = -u1_sign_down;
435
436
553M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col];
437
438
553M
                if(0 != edge_idx)
439
25.6M
                {
440
25.6M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
441
25.6M
                }
442
553M
            }
443
444
9.18M
            pu1_src += src_strd;
445
9.18M
        }
446
160k
    }
447
448
9.56M
    for(col = 0; col < wd; col++)
449
9.40M
    {
450
9.40M
        pu1_src_top[col] = au1_src_top_tmp[col];
451
9.40M
    }
452
453
160k
}
454
455
456
457
/* input 'wd' has to be for the interleaved block and not for each color component */
458
void ihevc_sao_edge_offset_class1_chroma(UWORD8 *pu1_src,
459
                                         WORD32 src_strd,
460
                                         UWORD8 *pu1_src_left,
461
                                         UWORD8 *pu1_src_top,
462
                                         UWORD8 *pu1_src_top_left,
463
                                         UWORD8 *pu1_src_top_right,
464
                                         UWORD8 *pu1_src_bot_left,
465
                                         UWORD8 *pu1_avail,
466
                                         WORD8 *pi1_sao_offset_u,
467
                                         WORD8 *pi1_sao_offset_v,
468
                                         WORD32 wd,
469
                                         WORD32 ht)
470
34.7k
{
471
34.7k
    WORD32 row, col;
472
34.7k
    UWORD8 au1_mask[MAX_CTB_SIZE];
473
34.7k
    UWORD8 au1_src_top_tmp[MAX_CTB_SIZE];
474
34.7k
    WORD8 au1_sign_up[MAX_CTB_SIZE];
475
34.7k
    WORD8 u1_sign_down;
476
34.7k
    WORD32 bit_depth;
477
34.7k
    UNUSED(pu1_src_top_right);
478
34.7k
    UNUSED(pu1_src_bot_left);
479
480
34.7k
    bit_depth = BIT_DEPTH_CHROMA;
481
482
    /* Initialize the mask values */
483
34.7k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
484
485
    /* Update left, top and top-left arrays */
486
34.7k
    pu1_src_top_left[0] = pu1_src_top[wd - 2];
487
34.7k
    pu1_src_top_left[1] = pu1_src_top[wd - 1];
488
914k
    for(row = 0; row < ht; row++)
489
879k
    {
490
879k
        pu1_src_left[2 * row] = pu1_src[row * src_strd + wd - 2];
491
879k
        pu1_src_left[2 * row + 1] = pu1_src[row * src_strd + wd - 1];
492
879k
    }
493
1.80M
    for(col = 0; col < wd; col++)
494
1.76M
    {
495
1.76M
        au1_src_top_tmp[col] = pu1_src[(ht - 1) * src_strd + col];
496
1.76M
    }
497
498
    /* Update height and source pointers based on the availability flags */
499
34.7k
    if(0 == pu1_avail[2])
500
17.9k
    {
501
17.9k
        pu1_src += src_strd;
502
17.9k
        ht--;
503
1.05M
        for(col = 0; col < wd; col++)
504
1.03M
        {
505
1.03M
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src[col - src_strd]);
506
1.03M
        }
507
17.9k
    }
508
16.8k
    else
509
16.8k
    {
510
751k
        for(col = 0; col < wd; col++)
511
734k
        {
512
734k
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src_top[col]);
513
734k
        }
514
16.8k
    }
515
34.7k
    if(0 == pu1_avail[3])
516
17.1k
    {
517
17.1k
        ht--;
518
17.1k
    }
519
520
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
521
34.7k
    {
522
878k
        for(row = 0; row < ht; row++)
523
843k
        {
524
46.9M
            for(col = 0; col < wd; col++)
525
46.0M
            {
526
46.0M
                WORD32 edge_idx;
527
46.0M
                WORD8 *pi1_sao_offset;
528
529
46.0M
                pi1_sao_offset = (0 == col % 2) ? pi1_sao_offset_u : pi1_sao_offset_v;
530
531
46.0M
                u1_sign_down = SIGN(pu1_src[col] - pu1_src[col + src_strd]);
532
46.0M
                edge_idx = 2 + au1_sign_up[col] + u1_sign_down;
533
46.0M
                au1_sign_up[col] = -u1_sign_down;
534
535
46.0M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col >> 1];
536
537
46.0M
                if(0 != edge_idx)
538
3.48M
                {
539
3.48M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
540
3.48M
                }
541
46.0M
            }
542
543
843k
            pu1_src += src_strd;
544
843k
        }
545
34.7k
    }
546
547
1.80M
    for(col = 0; col < wd; col++)
548
1.76M
    {
549
1.76M
        pu1_src_top[col] = au1_src_top_tmp[col];
550
1.76M
    }
551
552
34.7k
}
553
554
555
556
/* 135 degree filtering */
557
void ihevc_sao_edge_offset_class2(UWORD8 *pu1_src,
558
                                  WORD32 src_strd,
559
                                  UWORD8 *pu1_src_left,
560
                                  UWORD8 *pu1_src_top,
561
                                  UWORD8 *pu1_src_top_left,
562
                                  UWORD8 *pu1_src_top_right,
563
                                  UWORD8 *pu1_src_bot_left,
564
                                  UWORD8 *pu1_avail,
565
                                  WORD8 *pi1_sao_offset,
566
                                  WORD32 wd,
567
                                  WORD32 ht)
568
149k
{
569
149k
    WORD32 row, col;
570
149k
    UWORD8 au1_mask[MAX_CTB_SIZE];
571
149k
    UWORD8 au1_src_left_tmp[MAX_CTB_SIZE], au1_src_top_tmp[MAX_CTB_SIZE];
572
149k
    UWORD8 u1_src_top_left_tmp;
573
149k
    WORD8 au1_sign_up[MAX_CTB_SIZE + 1], au1_sign_up_tmp[MAX_CTB_SIZE + 1];
574
149k
    WORD8 u1_sign_down;
575
149k
    WORD8 *pu1_sign_up;
576
149k
    WORD8 *pu1_sign_up_tmp;
577
149k
    UWORD8 *pu1_src_left_cpy;
578
579
149k
    WORD32 bit_depth;
580
149k
    UWORD8 u1_pos_0_0_tmp;
581
149k
    UWORD8 u1_pos_wd_ht_tmp;
582
149k
    UNUSED(pu1_src_top_right);
583
149k
    UNUSED(pu1_src_bot_left);
584
585
149k
    bit_depth = BIT_DEPTH_LUMA;
586
149k
    pu1_sign_up = au1_sign_up;
587
149k
    pu1_sign_up_tmp = au1_sign_up_tmp;
588
149k
    pu1_src_left_cpy = pu1_src_left;
589
590
    /* Initialize the mask values */
591
149k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
592
593
    /* Update left, top and top-left arrays */
594
149k
    u1_src_top_left_tmp = pu1_src_top[wd - 1];
595
8.93M
    for(row = 0; row < ht; row++)
596
8.78M
    {
597
8.78M
        au1_src_left_tmp[row] = pu1_src[row * src_strd + wd - 1];
598
8.78M
    }
599
8.98M
    for(col = 0; col < wd; col++)
600
8.83M
    {
601
8.83M
        au1_src_top_tmp[col] = pu1_src[(ht - 1) * src_strd + col];
602
8.83M
    }
603
604
605
    /* If top-left is available, process separately */
606
149k
    if(0 != pu1_avail[4])
607
54.8k
    {
608
54.8k
        WORD32 edge_idx;
609
610
54.8k
        edge_idx = 2 + SIGN(pu1_src[0] - pu1_src_top_left[0]) +
611
54.8k
                        SIGN(pu1_src[0] - pu1_src[1 + src_strd]);
612
613
54.8k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
614
615
54.8k
        if(0 != edge_idx)
616
5.66k
        {
617
5.66k
            u1_pos_0_0_tmp = CLIP3(pu1_src[0] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
618
5.66k
        }
619
49.2k
        else
620
49.2k
        {
621
49.2k
            u1_pos_0_0_tmp = pu1_src[0];
622
49.2k
        }
623
54.8k
    }
624
94.7k
    else
625
94.7k
    {
626
94.7k
        u1_pos_0_0_tmp = pu1_src[0];
627
94.7k
    }
628
629
    /* If bottom-right is available, process separately */
630
149k
    if(0 != pu1_avail[7])
631
54.8k
    {
632
54.8k
        WORD32 edge_idx;
633
634
54.8k
        edge_idx = 2 + SIGN(pu1_src[wd - 1 + (ht - 1) * src_strd] - pu1_src[wd - 1 + (ht - 1) * src_strd - 1 - src_strd]) +
635
54.8k
                        SIGN(pu1_src[wd - 1 + (ht - 1) * src_strd] - pu1_src[wd - 1 + (ht - 1) * src_strd + 1 + src_strd]);
636
637
54.8k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
638
639
54.8k
        if(0 != edge_idx)
640
6.30k
        {
641
6.30k
            u1_pos_wd_ht_tmp = CLIP3(pu1_src[wd - 1 + (ht - 1) * src_strd] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
642
6.30k
        }
643
48.5k
        else
644
48.5k
        {
645
48.5k
            u1_pos_wd_ht_tmp = pu1_src[wd - 1 + (ht - 1) * src_strd];
646
48.5k
        }
647
54.8k
    }
648
94.7k
    else
649
94.7k
    {
650
94.7k
        u1_pos_wd_ht_tmp = pu1_src[wd - 1 + (ht - 1) * src_strd];
651
94.7k
    }
652
653
    /* If Left is not available */
654
149k
    if(0 == pu1_avail[0])
655
69.0k
    {
656
69.0k
        au1_mask[0] = 0;
657
69.0k
    }
658
659
    /* If Top is not available */
660
149k
    if(0 == pu1_avail[2])
661
81.2k
    {
662
81.2k
        pu1_src += src_strd;
663
81.2k
        ht--;
664
81.2k
        pu1_src_left_cpy += 1;
665
4.93M
        for(col = 1; col < wd; col++)
666
4.85M
        {
667
4.85M
            pu1_sign_up[col] = SIGN(pu1_src[col] - pu1_src[col - 1 - src_strd]);
668
4.85M
        }
669
81.2k
    }
670
68.3k
    else
671
68.3k
    {
672
3.89M
        for(col = 1; col < wd; col++)
673
3.82M
        {
674
3.82M
            pu1_sign_up[col] = SIGN(pu1_src[col] - pu1_src_top[col - 1]);
675
3.82M
        }
676
68.3k
    }
677
678
    /* If Right is not available */
679
149k
    if(0 == pu1_avail[1])
680
69.3k
    {
681
69.3k
        au1_mask[wd - 1] = 0;
682
69.3k
    }
683
684
    /* If Bottom is not available */
685
149k
    if(0 == pu1_avail[3])
686
80.9k
    {
687
80.9k
        ht--;
688
80.9k
    }
689
690
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
691
149k
    {
692
8.76M
        for(row = 0; row < ht; row++)
693
8.61M
        {
694
8.61M
            pu1_sign_up[0] = SIGN(pu1_src[0] - pu1_src_left_cpy[row - 1]);
695
530M
            for(col = 0; col < wd; col++)
696
521M
            {
697
521M
                WORD32 edge_idx;
698
699
521M
                u1_sign_down = SIGN(pu1_src[col] - pu1_src[col + 1 + src_strd]);
700
521M
                edge_idx = 2 + pu1_sign_up[col] + u1_sign_down;
701
521M
                pu1_sign_up_tmp[col + 1] = -u1_sign_down;
702
703
521M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col];
704
705
521M
                if(0 != edge_idx)
706
28.5M
                {
707
28.5M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
708
28.5M
                }
709
521M
            }
710
711
            /* Swapping pu1_sign_up_tmp and pu1_sign_up */
712
8.61M
            {
713
8.61M
                WORD8 *pu1_swap_tmp = pu1_sign_up;
714
8.61M
                pu1_sign_up = pu1_sign_up_tmp;
715
8.61M
                pu1_sign_up_tmp = pu1_swap_tmp;
716
8.61M
            }
717
718
8.61M
            pu1_src += src_strd;
719
8.61M
        }
720
721
149k
        pu1_src[-(pu1_avail[2] ? ht : ht + 1) * src_strd] = u1_pos_0_0_tmp;
722
149k
        pu1_src[(pu1_avail[3] ? wd - 1 - src_strd : wd - 1)] = u1_pos_wd_ht_tmp;
723
149k
    }
724
725
149k
    if(0 == pu1_avail[2])
726
81.2k
        ht++;
727
149k
    if(0 == pu1_avail[3])
728
80.9k
        ht++;
729
149k
    *pu1_src_top_left = u1_src_top_left_tmp;
730
8.93M
    for(row = 0; row < ht; row++)
731
8.78M
    {
732
8.78M
        pu1_src_left[row] = au1_src_left_tmp[row];
733
8.78M
    }
734
8.98M
    for(col = 0; col < wd; col++)
735
8.83M
    {
736
8.83M
        pu1_src_top[col] = au1_src_top_tmp[col];
737
8.83M
    }
738
739
149k
}
740
741
742
743
744
/* 135 degree filtering */
745
void ihevc_sao_edge_offset_class2_chroma(UWORD8 *pu1_src,
746
                                         WORD32 src_strd,
747
                                         UWORD8 *pu1_src_left,
748
                                         UWORD8 *pu1_src_top,
749
                                         UWORD8 *pu1_src_top_left,
750
                                         UWORD8 *pu1_src_top_right,
751
                                         UWORD8 *pu1_src_bot_left,
752
                                         UWORD8 *pu1_avail,
753
                                         WORD8 *pi1_sao_offset_u,
754
                                         WORD8 *pi1_sao_offset_v,
755
                                         WORD32 wd,
756
                                         WORD32 ht)
757
25.5k
{
758
25.5k
    WORD32 row, col;
759
25.5k
    UWORD8 au1_mask[MAX_CTB_SIZE];
760
25.5k
    UWORD8 au1_src_left_tmp[2 * MAX_CTB_SIZE], au1_src_top_tmp[MAX_CTB_SIZE];
761
25.5k
    UWORD8 au1_src_top_left_tmp[2];
762
25.5k
    WORD8 au1_sign_up[MAX_CTB_SIZE + 2], au1_sign_up_tmp[MAX_CTB_SIZE + 2];
763
25.5k
    WORD8 u1_sign_down;
764
25.5k
    WORD8 *pu1_sign_up;
765
25.5k
    WORD8 *pu1_sign_up_tmp;
766
25.5k
    UWORD8 *pu1_src_left_cpy;
767
768
25.5k
    WORD32 bit_depth;
769
770
25.5k
    UWORD8 u1_pos_0_0_tmp_u;
771
25.5k
    UWORD8 u1_pos_0_0_tmp_v;
772
25.5k
    UWORD8 u1_pos_wd_ht_tmp_u;
773
25.5k
    UWORD8 u1_pos_wd_ht_tmp_v;
774
25.5k
    UNUSED(pu1_src_top_right);
775
25.5k
    UNUSED(pu1_src_bot_left);
776
777
778
25.5k
    bit_depth = BIT_DEPTH_CHROMA;
779
25.5k
    pu1_sign_up = au1_sign_up;
780
25.5k
    pu1_sign_up_tmp = au1_sign_up_tmp;
781
25.5k
    pu1_src_left_cpy = pu1_src_left;
782
783
    /* Initialize the mask values */
784
25.5k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
785
786
    /* Update left, top and top-left arrays */
787
25.5k
    au1_src_top_left_tmp[0] = pu1_src_top[wd - 2];
788
25.5k
    au1_src_top_left_tmp[1] = pu1_src_top[wd - 1];
789
645k
    for(row = 0; row < ht; row++)
790
619k
    {
791
619k
        au1_src_left_tmp[2 * row] = pu1_src[row * src_strd + wd - 2];
792
619k
        au1_src_left_tmp[2 * row + 1] = pu1_src[row * src_strd + wd - 1];
793
619k
    }
794
1.29M
    for(col = 0; col < wd; col++)
795
1.27M
    {
796
1.27M
        au1_src_top_tmp[col] = pu1_src[(ht - 1) * src_strd + col];
797
1.27M
    }
798
799
800
    /* If top-left is available, process separately */
801
25.5k
    if(0 != pu1_avail[4])
802
12.7k
    {
803
12.7k
        WORD32 edge_idx;
804
805
        /* U */
806
12.7k
        edge_idx = 2 + SIGN(pu1_src[0] - pu1_src_top_left[0]) +
807
12.7k
                        SIGN(pu1_src[0] - pu1_src[2 + src_strd]);
808
809
12.7k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
810
811
12.7k
        if(0 != edge_idx)
812
1.80k
        {
813
1.80k
            u1_pos_0_0_tmp_u = CLIP3(pu1_src[0] + pi1_sao_offset_u[edge_idx], 0, (1 << bit_depth) - 1);
814
1.80k
        }
815
10.9k
        else
816
10.9k
        {
817
10.9k
            u1_pos_0_0_tmp_u = pu1_src[0];
818
10.9k
        }
819
820
        /* V */
821
12.7k
        edge_idx = 2 + SIGN(pu1_src[1] - pu1_src_top_left[1]) +
822
12.7k
                        SIGN(pu1_src[1] - pu1_src[1 + 2 + src_strd]);
823
824
12.7k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
825
826
12.7k
        if(0 != edge_idx)
827
1.89k
        {
828
1.89k
            u1_pos_0_0_tmp_v = CLIP3(pu1_src[1] + pi1_sao_offset_v[edge_idx], 0, (1 << bit_depth) - 1);
829
1.89k
        }
830
10.8k
        else
831
10.8k
        {
832
10.8k
            u1_pos_0_0_tmp_v = pu1_src[1];
833
10.8k
        }
834
12.7k
    }
835
12.8k
    else
836
12.8k
    {
837
12.8k
        u1_pos_0_0_tmp_u = pu1_src[0];
838
12.8k
        u1_pos_0_0_tmp_v = pu1_src[1];
839
12.8k
    }
840
841
    /* If bottom-right is available, process separately */
842
25.5k
    if(0 != pu1_avail[7])
843
12.5k
    {
844
12.5k
        WORD32 edge_idx;
845
846
        /* U */
847
12.5k
        edge_idx = 2 + SIGN(pu1_src[wd - 2 + (ht - 1) * src_strd] - pu1_src[wd - 2 + (ht - 1) * src_strd - 2 - src_strd]) +
848
12.5k
                        SIGN(pu1_src[wd - 2 + (ht - 1) * src_strd] - pu1_src[wd - 2 + (ht - 1) * src_strd + 2 + src_strd]);
849
850
12.5k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
851
852
12.5k
        if(0 != edge_idx)
853
1.93k
        {
854
1.93k
            u1_pos_wd_ht_tmp_u = CLIP3(pu1_src[wd - 2 + (ht - 1) * src_strd] + pi1_sao_offset_u[edge_idx], 0, (1 << bit_depth) - 1);
855
1.93k
        }
856
10.5k
        else
857
10.5k
        {
858
10.5k
            u1_pos_wd_ht_tmp_u = pu1_src[wd - 2 + (ht - 1) * src_strd];
859
10.5k
        }
860
861
        /* V */
862
12.5k
        edge_idx = 2 + SIGN(pu1_src[wd - 1 + (ht - 1) * src_strd] - pu1_src[wd - 1 + (ht - 1) * src_strd - 2 - src_strd]) +
863
12.5k
                        SIGN(pu1_src[wd - 1 + (ht - 1) * src_strd] - pu1_src[wd - 1 + (ht - 1) * src_strd + 2 + src_strd]);
864
865
12.5k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
866
867
12.5k
        if(0 != edge_idx)
868
1.86k
        {
869
1.86k
            u1_pos_wd_ht_tmp_v = CLIP3(pu1_src[wd - 1 + (ht - 1) * src_strd] + pi1_sao_offset_v[edge_idx], 0, (1 << bit_depth) - 1);
870
1.86k
        }
871
10.6k
        else
872
10.6k
        {
873
10.6k
            u1_pos_wd_ht_tmp_v = pu1_src[wd - 1 + (ht - 1) * src_strd];
874
10.6k
        }
875
12.5k
    }
876
13.0k
    else
877
13.0k
    {
878
13.0k
        u1_pos_wd_ht_tmp_u = pu1_src[wd - 2 + (ht - 1) * src_strd];
879
13.0k
        u1_pos_wd_ht_tmp_v = pu1_src[wd - 1 + (ht - 1) * src_strd];
880
13.0k
    }
881
882
    /* If Left is not available */
883
25.5k
    if(0 == pu1_avail[0])
884
8.64k
    {
885
8.64k
        au1_mask[0] = 0;
886
8.64k
    }
887
888
    /* If Top is not available */
889
25.5k
    if(0 == pu1_avail[2])
890
10.3k
    {
891
10.3k
        pu1_src += src_strd;
892
10.3k
        pu1_src_left_cpy += 2;
893
10.3k
        ht--;
894
573k
        for(col = 2; col < wd; col++)
895
562k
        {
896
562k
            pu1_sign_up[col] = SIGN(pu1_src[col] - pu1_src[col - 2 - src_strd]);
897
562k
        }
898
10.3k
    }
899
15.2k
    else
900
15.2k
    {
901
673k
        for(col = 2; col < wd; col++)
902
658k
        {
903
658k
            pu1_sign_up[col] = SIGN(pu1_src[col] - pu1_src_top[col - 2]);
904
658k
        }
905
15.2k
    }
906
907
    /* If Right is not available */
908
25.5k
    if(0 == pu1_avail[1])
909
8.90k
    {
910
8.90k
        au1_mask[(wd - 1) >> 1] = 0;
911
8.90k
    }
912
913
    /* If Bottom is not available */
914
25.5k
    if(0 == pu1_avail[3])
915
10.3k
    {
916
10.3k
        ht--;
917
10.3k
    }
918
919
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
920
25.5k
    {
921
624k
        for(row = 0; row < ht; row++)
922
598k
        {
923
598k
            pu1_sign_up[0] = SIGN(pu1_src[0] - pu1_src_left_cpy[2 * (row - 1)]);
924
598k
            pu1_sign_up[1] = SIGN(pu1_src[1] - pu1_src_left_cpy[2 * (row - 1) + 1]);
925
32.7M
            for(col = 0; col < wd; col++)
926
32.1M
            {
927
32.1M
                WORD32 edge_idx;
928
32.1M
                WORD8 *pi1_sao_offset;
929
930
32.1M
                pi1_sao_offset = (0 == col % 2) ? pi1_sao_offset_u : pi1_sao_offset_v;
931
932
32.1M
                u1_sign_down = SIGN(pu1_src[col] - pu1_src[col + 2 + src_strd]);
933
32.1M
                edge_idx = 2 + pu1_sign_up[col] + u1_sign_down;
934
32.1M
                pu1_sign_up_tmp[col + 2] = -u1_sign_down;
935
936
32.1M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col >> 1];
937
938
32.1M
                if(0 != edge_idx)
939
3.05M
                {
940
3.05M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
941
3.05M
                }
942
32.1M
            }
943
944
            /* Swapping pu1_sign_up_tmp and pu1_sign_up */
945
598k
            {
946
598k
                WORD8 *pu1_swap_tmp = pu1_sign_up;
947
598k
                pu1_sign_up = pu1_sign_up_tmp;
948
598k
                pu1_sign_up_tmp = pu1_swap_tmp;
949
598k
            }
950
951
598k
            pu1_src += src_strd;
952
598k
        }
953
954
25.5k
        pu1_src[-(pu1_avail[2] ? ht : ht + 1) * src_strd] = u1_pos_0_0_tmp_u;
955
25.5k
        pu1_src[-(pu1_avail[2] ? ht : ht + 1) * src_strd + 1] = u1_pos_0_0_tmp_v;
956
25.5k
        pu1_src[(pu1_avail[3] ? wd - 2 - src_strd : wd - 2)] = u1_pos_wd_ht_tmp_u;
957
25.5k
        pu1_src[(pu1_avail[3] ? wd - 1 - src_strd : wd - 1)] = u1_pos_wd_ht_tmp_v;
958
25.5k
    }
959
960
25.5k
    if(0 == pu1_avail[2])
961
10.3k
        ht++;
962
25.5k
    if(0 == pu1_avail[3])
963
10.3k
        ht++;
964
25.5k
    pu1_src_top_left[0] = au1_src_top_left_tmp[0];
965
25.5k
    pu1_src_top_left[1] = au1_src_top_left_tmp[1];
966
1.26M
    for(row = 0; row < 2 * ht; row++)
967
1.23M
    {
968
1.23M
        pu1_src_left[row] = au1_src_left_tmp[row];
969
1.23M
    }
970
1.29M
    for(col = 0; col < wd; col++)
971
1.27M
    {
972
1.27M
        pu1_src_top[col] = au1_src_top_tmp[col];
973
1.27M
    }
974
975
25.5k
}
976
977
978
979
980
/* 45 degree filtering */
981
void ihevc_sao_edge_offset_class3(UWORD8 *pu1_src,
982
                                  WORD32 src_strd,
983
                                  UWORD8 *pu1_src_left,
984
                                  UWORD8 *pu1_src_top,
985
                                  UWORD8 *pu1_src_top_left,
986
                                  UWORD8 *pu1_src_top_right,
987
                                  UWORD8 *pu1_src_bot_left,
988
                                  UWORD8 *pu1_avail,
989
                                  WORD8 *pi1_sao_offset,
990
                                  WORD32 wd,
991
                                  WORD32 ht)
992
152k
{
993
152k
    WORD32 row, col;
994
152k
    UWORD8 au1_mask[MAX_CTB_SIZE];
995
152k
    UWORD8 au1_src_top_tmp[MAX_CTB_SIZE];
996
152k
    UWORD8 au1_src_left_tmp[MAX_CTB_SIZE];
997
152k
    UWORD8 u1_src_top_left_tmp;
998
152k
    WORD8 au1_sign_up[MAX_CTB_SIZE];
999
152k
    UWORD8 *pu1_src_left_cpy;
1000
152k
    WORD8 u1_sign_down;
1001
152k
    WORD32 bit_depth;
1002
1003
152k
    UWORD8 u1_pos_0_ht_tmp;
1004
152k
    UWORD8 u1_pos_wd_0_tmp;
1005
1006
152k
    bit_depth = BIT_DEPTH_LUMA;
1007
152k
    pu1_src_left_cpy = pu1_src_left;
1008
1009
    /* Initialize the mask values */
1010
152k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
1011
1012
    /* Update left, top and top-left arrays */
1013
152k
    u1_src_top_left_tmp = pu1_src_top[wd - 1];
1014
9.01M
    for(row = 0; row < ht; row++)
1015
8.85M
    {
1016
8.85M
        au1_src_left_tmp[row] = pu1_src[row * src_strd + wd - 1];
1017
8.85M
    }
1018
9.06M
    for(col = 0; col < wd; col++)
1019
8.91M
    {
1020
8.91M
        au1_src_top_tmp[col] = pu1_src[(ht - 1) * src_strd + col];
1021
8.91M
    }
1022
1023
    /* If top-right is available, process separately */
1024
152k
    if(0 != pu1_avail[5])
1025
55.8k
    {
1026
55.8k
        WORD32 edge_idx;
1027
1028
55.8k
        edge_idx = 2 + SIGN(pu1_src[wd - 1] - pu1_src_top_right[0]) +
1029
55.8k
                        SIGN(pu1_src[wd - 1] - pu1_src[wd - 1 - 1 + src_strd]);
1030
1031
55.8k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
1032
1033
55.8k
        if(0 != edge_idx)
1034
6.13k
        {
1035
6.13k
            u1_pos_wd_0_tmp = CLIP3(pu1_src[wd - 1] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
1036
6.13k
        }
1037
49.7k
        else
1038
49.7k
        {
1039
49.7k
            u1_pos_wd_0_tmp = pu1_src[wd - 1];
1040
49.7k
        }
1041
55.8k
    }
1042
96.2k
    else
1043
96.2k
    {
1044
96.2k
        u1_pos_wd_0_tmp = pu1_src[wd - 1];
1045
96.2k
    }
1046
1047
    /* If bottom-left is available, process separately */
1048
152k
    if(0 != pu1_avail[6])
1049
57.1k
    {
1050
57.1k
        WORD32 edge_idx;
1051
1052
57.1k
        edge_idx = 2 + SIGN(pu1_src[(ht - 1) * src_strd] - pu1_src[(ht - 1) * src_strd + 1 - src_strd]) +
1053
57.1k
                        SIGN(pu1_src[(ht - 1) * src_strd] - pu1_src_bot_left[0]);
1054
1055
57.1k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
1056
1057
57.1k
        if(0 != edge_idx)
1058
6.91k
        {
1059
6.91k
            u1_pos_0_ht_tmp = CLIP3(pu1_src[(ht - 1) * src_strd] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
1060
6.91k
        }
1061
50.2k
        else
1062
50.2k
        {
1063
50.2k
            u1_pos_0_ht_tmp = pu1_src[(ht - 1) * src_strd];
1064
50.2k
        }
1065
57.1k
    }
1066
95.0k
    else
1067
95.0k
    {
1068
95.0k
        u1_pos_0_ht_tmp = pu1_src[(ht - 1) * src_strd];
1069
95.0k
    }
1070
1071
    /* If Left is not available */
1072
152k
    if(0 == pu1_avail[0])
1073
70.0k
    {
1074
70.0k
        au1_mask[0] = 0;
1075
70.0k
    }
1076
1077
    /* If Top is not available */
1078
152k
    if(0 == pu1_avail[2])
1079
82.1k
    {
1080
82.1k
        pu1_src += src_strd;
1081
82.1k
        ht--;
1082
82.1k
        pu1_src_left_cpy += 1;
1083
4.96M
        for(col = 0; col < wd - 1; col++)
1084
4.88M
        {
1085
4.88M
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src[col + 1 - src_strd]);
1086
4.88M
        }
1087
82.1k
    }
1088
69.9k
    else
1089
69.9k
    {
1090
3.94M
        for(col = 0; col < wd - 1; col++)
1091
3.87M
        {
1092
3.87M
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src_top[col + 1]);
1093
3.87M
        }
1094
69.9k
    }
1095
1096
    /* If Right is not available */
1097
152k
    if(0 == pu1_avail[1])
1098
70.1k
    {
1099
70.1k
        au1_mask[wd - 1] = 0;
1100
70.1k
    }
1101
1102
    /* If Bottom is not available */
1103
152k
    if(0 == pu1_avail[3])
1104
81.1k
    {
1105
81.1k
        ht--;
1106
81.1k
    }
1107
1108
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
1109
152k
    {
1110
8.84M
        for(row = 0; row < ht; row++)
1111
8.69M
        {
1112
8.69M
            au1_sign_up[wd - 1] = SIGN(pu1_src[wd - 1] - pu1_src[wd - 1 + 1 - src_strd]);
1113
532M
            for(col = 0; col < wd; col++)
1114
523M
            {
1115
523M
                WORD32 edge_idx;
1116
1117
523M
                u1_sign_down = SIGN(pu1_src[col] - ((col == 0) ? pu1_src_left_cpy[row + 1] :
1118
523M
                                                                 pu1_src[col - 1 + src_strd]));
1119
523M
                edge_idx = 2 + au1_sign_up[col] + u1_sign_down;
1120
523M
                if(col > 0)
1121
514M
                    au1_sign_up[col - 1] = -u1_sign_down;
1122
1123
523M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col];
1124
1125
523M
                if(0 != edge_idx)
1126
28.7M
                {
1127
28.7M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
1128
28.7M
                }
1129
523M
            }
1130
1131
8.69M
            pu1_src += src_strd;
1132
8.69M
        }
1133
1134
152k
        pu1_src[-(pu1_avail[2] ? ht : ht + 1) * src_strd + wd - 1] = u1_pos_wd_0_tmp;
1135
152k
        pu1_src[(pu1_avail[3] ?  (-src_strd) : 0)] = u1_pos_0_ht_tmp;
1136
152k
    }
1137
1138
152k
    if(0 == pu1_avail[2])
1139
82.1k
        ht++;
1140
152k
    if(0 == pu1_avail[3])
1141
81.1k
        ht++;
1142
152k
    *pu1_src_top_left = u1_src_top_left_tmp;
1143
9.01M
    for(row = 0; row < ht; row++)
1144
8.85M
    {
1145
8.85M
        pu1_src_left[row] = au1_src_left_tmp[row];
1146
8.85M
    }
1147
9.06M
    for(col = 0; col < wd; col++)
1148
8.91M
    {
1149
8.91M
        pu1_src_top[col] = au1_src_top_tmp[col];
1150
8.91M
    }
1151
1152
152k
}
1153
1154
1155
1156
1157
void ihevc_sao_edge_offset_class3_chroma(UWORD8 *pu1_src,
1158
                                         WORD32 src_strd,
1159
                                         UWORD8 *pu1_src_left,
1160
                                         UWORD8 *pu1_src_top,
1161
                                         UWORD8 *pu1_src_top_left,
1162
                                         UWORD8 *pu1_src_top_right,
1163
                                         UWORD8 *pu1_src_bot_left,
1164
                                         UWORD8 *pu1_avail,
1165
                                         WORD8 *pi1_sao_offset_u,
1166
                                         WORD8 *pi1_sao_offset_v,
1167
                                         WORD32 wd,
1168
                                         WORD32 ht)
1169
27.2k
{
1170
27.2k
    WORD32 row, col;
1171
27.2k
    UWORD8 au1_mask[MAX_CTB_SIZE];
1172
27.2k
    UWORD8 au1_src_left_tmp[2 * MAX_CTB_SIZE], au1_src_top_tmp[MAX_CTB_SIZE];
1173
27.2k
    UWORD8 au1_src_top_left_tmp[2];
1174
27.2k
    WORD8 au1_sign_up[MAX_CTB_SIZE];
1175
27.2k
    UWORD8 *pu1_src_left_cpy;
1176
27.2k
    WORD8 u1_sign_down;
1177
27.2k
    WORD32 bit_depth;
1178
1179
27.2k
    UWORD8 u1_pos_wd_0_tmp_u;
1180
27.2k
    UWORD8 u1_pos_wd_0_tmp_v;
1181
27.2k
    UWORD8 u1_pos_0_ht_tmp_u;
1182
27.2k
    UWORD8 u1_pos_0_ht_tmp_v;
1183
1184
27.2k
    bit_depth = BIT_DEPTH_CHROMA;
1185
27.2k
    pu1_src_left_cpy = pu1_src_left;
1186
1187
    /* Initialize the mask values */
1188
27.2k
    memset(au1_mask, 0xFF, MAX_CTB_SIZE);
1189
1190
    /* Update left, top and top-left arrays */
1191
27.2k
    au1_src_top_left_tmp[0] = pu1_src_top[wd - 2];
1192
27.2k
    au1_src_top_left_tmp[1] = pu1_src_top[wd - 1];
1193
657k
    for(row = 0; row < ht; row++)
1194
630k
    {
1195
630k
        au1_src_left_tmp[2 * row] = pu1_src[row * src_strd + wd - 2];
1196
630k
        au1_src_left_tmp[2 * row + 1] = pu1_src[row * src_strd + wd - 1];
1197
630k
    }
1198
1.29M
    for(col = 0; col < wd; col++)
1199
1.27M
    {
1200
1.27M
        au1_src_top_tmp[col] = pu1_src[(ht - 1) * src_strd + col];
1201
1.27M
    }
1202
1203
1204
    /* If top-right is available, process separately */
1205
27.2k
    if(0 != pu1_avail[5])
1206
14.5k
    {
1207
14.5k
        WORD32 edge_idx;
1208
1209
        /* U */
1210
14.5k
        edge_idx = 2 + SIGN(pu1_src[wd - 2] - pu1_src_top_right[0]) +
1211
14.5k
                        SIGN(pu1_src[wd - 2] - pu1_src[wd - 2 - 2 + src_strd]);
1212
1213
14.5k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
1214
1215
14.5k
        if(0 != edge_idx)
1216
2.29k
        {
1217
2.29k
            u1_pos_wd_0_tmp_u = CLIP3(pu1_src[wd - 2] + pi1_sao_offset_u[edge_idx], 0, (1 << bit_depth) - 1);
1218
2.29k
        }
1219
12.2k
        else
1220
12.2k
        {
1221
12.2k
            u1_pos_wd_0_tmp_u = pu1_src[wd - 2];
1222
12.2k
        }
1223
1224
        /* V */
1225
14.5k
        edge_idx = 2 + SIGN(pu1_src[wd - 1] - pu1_src_top_right[1]) +
1226
14.5k
                        SIGN(pu1_src[wd - 1] - pu1_src[wd - 1 - 2 + src_strd]);
1227
1228
14.5k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
1229
1230
14.5k
        if(0 != edge_idx)
1231
2.17k
        {
1232
2.17k
            u1_pos_wd_0_tmp_v = CLIP3(pu1_src[wd - 1] + pi1_sao_offset_v[edge_idx], 0, (1 << bit_depth) - 1);
1233
2.17k
        }
1234
12.3k
        else
1235
12.3k
        {
1236
12.3k
            u1_pos_wd_0_tmp_v = pu1_src[wd - 1];
1237
12.3k
        }
1238
14.5k
    }
1239
12.6k
    else
1240
12.6k
    {
1241
12.6k
        u1_pos_wd_0_tmp_u = pu1_src[wd - 2];
1242
12.6k
        u1_pos_wd_0_tmp_v = pu1_src[wd - 1];
1243
12.6k
    }
1244
1245
    /* If bottom-left is available, process separately */
1246
27.2k
    if(0 != pu1_avail[6])
1247
14.2k
    {
1248
14.2k
        WORD32 edge_idx;
1249
1250
        /* U */
1251
14.2k
        edge_idx = 2 + SIGN(pu1_src[(ht - 1) * src_strd] - pu1_src[(ht - 1) * src_strd + 2 - src_strd]) +
1252
14.2k
                        SIGN(pu1_src[(ht - 1) * src_strd] - pu1_src_bot_left[0]);
1253
1254
14.2k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
1255
1256
14.2k
        if(0 != edge_idx)
1257
2.09k
        {
1258
2.09k
            u1_pos_0_ht_tmp_u = CLIP3(pu1_src[(ht - 1) * src_strd] + pi1_sao_offset_u[edge_idx], 0, (1 << bit_depth) - 1);
1259
2.09k
        }
1260
12.2k
        else
1261
12.2k
        {
1262
12.2k
            u1_pos_0_ht_tmp_u = pu1_src[(ht - 1) * src_strd];
1263
12.2k
        }
1264
1265
        /* V */
1266
14.2k
        edge_idx = 2 + SIGN(pu1_src[(ht - 1) * src_strd + 1] - pu1_src[(ht - 1) * src_strd + 1 + 2 - src_strd]) +
1267
14.2k
                        SIGN(pu1_src[(ht - 1) * src_strd + 1] - pu1_src_bot_left[1]);
1268
1269
14.2k
        edge_idx = gi4_ihevc_table_edge_idx[edge_idx];
1270
1271
14.2k
        if(0 != edge_idx)
1272
2.10k
        {
1273
2.10k
            u1_pos_0_ht_tmp_v = CLIP3(pu1_src[(ht - 1) * src_strd + 1] + pi1_sao_offset_v[edge_idx], 0, (1 << bit_depth) - 1);
1274
2.10k
        }
1275
12.1k
        else
1276
12.1k
        {
1277
12.1k
            u1_pos_0_ht_tmp_v = pu1_src[(ht - 1) * src_strd + 1];
1278
12.1k
        }
1279
14.2k
    }
1280
12.9k
    else
1281
12.9k
    {
1282
12.9k
        u1_pos_0_ht_tmp_u = pu1_src[(ht - 1) * src_strd];
1283
12.9k
        u1_pos_0_ht_tmp_v = pu1_src[(ht - 1) * src_strd + 1];
1284
12.9k
    }
1285
1286
    /* If Left is not available */
1287
27.2k
    if(0 == pu1_avail[0])
1288
9.09k
    {
1289
9.09k
        au1_mask[0] = 0;
1290
9.09k
    }
1291
1292
    /* If Top is not available */
1293
27.2k
    if(0 == pu1_avail[2])
1294
10.1k
    {
1295
10.1k
        pu1_src += src_strd;
1296
10.1k
        ht--;
1297
10.1k
        pu1_src_left_cpy += 2;
1298
555k
        for(col = 0; col < wd - 2; col++)
1299
545k
        {
1300
545k
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src[col + 2 - src_strd]);
1301
545k
        }
1302
10.1k
    }
1303
17.0k
    else
1304
17.0k
    {
1305
688k
        for(col = 0; col < wd - 2; col++)
1306
671k
        {
1307
671k
            au1_sign_up[col] = SIGN(pu1_src[col] - pu1_src_top[col + 2]);
1308
671k
        }
1309
17.0k
    }
1310
1311
    /* If Right is not available */
1312
27.2k
    if(0 == pu1_avail[1])
1313
9.18k
    {
1314
9.18k
        au1_mask[(wd - 1) >> 1] = 0;
1315
9.18k
    }
1316
1317
    /* If Bottom is not available */
1318
27.2k
    if(0 == pu1_avail[3])
1319
10.5k
    {
1320
10.5k
        ht--;
1321
10.5k
    }
1322
1323
    /* Processing is done on the intermediate buffer and the output is written to the source buffer */
1324
27.2k
    {
1325
636k
        for(row = 0; row < ht; row++)
1326
609k
        {
1327
609k
            au1_sign_up[wd - 2] = SIGN(pu1_src[wd - 2] - pu1_src[wd - 2 + 2 - src_strd]);
1328
609k
            au1_sign_up[wd - 1] = SIGN(pu1_src[wd - 1] - pu1_src[wd - 1 + 2 - src_strd]);
1329
32.2M
            for(col = 0; col < wd; col++)
1330
31.6M
            {
1331
31.6M
                WORD32 edge_idx;
1332
31.6M
                WORD8 *pi1_sao_offset;
1333
1334
31.6M
                pi1_sao_offset = (0 == col % 2) ? pi1_sao_offset_u : pi1_sao_offset_v;
1335
1336
31.6M
                u1_sign_down = SIGN(pu1_src[col] - ((col < 2) ? pu1_src_left_cpy[2 * (row + 1) + col] :
1337
31.6M
                                                                pu1_src[col - 2 + src_strd]));
1338
31.6M
                edge_idx = 2 + au1_sign_up[col] + u1_sign_down;
1339
31.6M
                if(col > 1)
1340
30.3M
                    au1_sign_up[col - 2] = -u1_sign_down;
1341
1342
31.6M
                edge_idx = gi4_ihevc_table_edge_idx[edge_idx] & au1_mask[col >> 1];
1343
1344
31.6M
                if(0 != edge_idx)
1345
3.19M
                {
1346
3.19M
                    pu1_src[col] = CLIP3(pu1_src[col] + pi1_sao_offset[edge_idx], 0, (1 << bit_depth) - 1);
1347
3.19M
                }
1348
31.6M
            }
1349
1350
609k
            pu1_src += src_strd;
1351
609k
        }
1352
1353
27.2k
        pu1_src[-(pu1_avail[2] ? ht : ht + 1) * src_strd + wd - 2] = u1_pos_wd_0_tmp_u;
1354
27.2k
        pu1_src[-(pu1_avail[2] ? ht : ht + 1) * src_strd + wd - 1] = u1_pos_wd_0_tmp_v;
1355
27.2k
        pu1_src[(pu1_avail[3] ?  (-src_strd) : 0)] = u1_pos_0_ht_tmp_u;
1356
27.2k
        pu1_src[(pu1_avail[3] ?  (-src_strd) : 0) + 1] = u1_pos_0_ht_tmp_v;
1357
27.2k
    }
1358
1359
27.2k
    if(0 == pu1_avail[2])
1360
10.1k
        ht++;
1361
27.2k
    if(0 == pu1_avail[3])
1362
10.5k
        ht++;
1363
27.2k
    pu1_src_top_left[0] = au1_src_top_left_tmp[0];
1364
27.2k
    pu1_src_top_left[1] = au1_src_top_left_tmp[1];
1365
1.28M
    for(row = 0; row < 2 * ht; row++)
1366
1.26M
    {
1367
1.26M
        pu1_src_left[row] = au1_src_left_tmp[row];
1368
1.26M
    }
1369
1.29M
    for(col = 0; col < wd; col++)
1370
1.27M
    {
1371
1.27M
        pu1_src_top[col] = au1_src_top_tmp[col];
1372
1.27M
    }
1373
1374
27.2k
}