Coverage Report

Created: 2026-08-13 07:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/x265/source/common/deblock.cpp
Line
Count
Source
1
/*****************************************************************************
2
* Copyright (C) 2013-2020 MulticoreWare, Inc
3
*
4
* Author: Gopu Govindaswamy <gopu@multicorewareinc.com>
5
*         Min Chen <chenm003@163.com>
6
*
7
* This program is free software; you can redistribute it and/or modify
8
* it under the terms of the GNU General Public License as published by
9
* the Free Software Foundation; either version 2 of the License, or
10
* (at your option) any later version.
11
*
12
* This program is distributed in the hope that it will be useful,
13
* but WITHOUT ANY WARRANTY; without even the implied warranty of
14
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15
* GNU General Public License for more details.
16
*
17
* You should have received a copy of the GNU General Public License
18
* along with this program; if not, write to the Free Software
19
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02111, USA.
20
*
21
* This program is also available under a commercial proprietary license.
22
* For more information, contact us at license @ x265.com.
23
*****************************************************************************/
24
25
#include "common.h"
26
#include "deblock.h"
27
#include "framedata.h"
28
#include "picyuv.h"
29
#include "slice.h"
30
#include "mv.h"
31
32
using namespace X265_NS;
33
34
168k
#define DEBLOCK_SMALLEST_BLOCK  8
35
892k
#define DEFAULT_INTRA_TC_OFFSET 2
36
37
void Deblock::deblockCTU(const CUData* ctu, const CUGeom& cuGeom, int32_t dir)
38
27.6k
{
39
27.6k
    uint8_t blockStrength[MAX_NUM_PARTITIONS];
40
41
27.6k
    memset(blockStrength, 0, sizeof(uint8_t) * cuGeom.numPartitions);
42
43
27.6k
    deblockCU(ctu, cuGeom, dir, blockStrength);
44
27.6k
}
45
46
static inline uint8_t bsCuEdge(const CUData* cu, uint32_t absPartIdx, int32_t dir)
47
84.4k
{
48
84.4k
    if (dir == Deblock::EDGE_VER)
49
42.2k
    {
50
42.2k
        if (cu->m_cuPelX + g_zscanToPelX[absPartIdx] > 0)
51
37.1k
        {
52
37.1k
            uint32_t    tempPartIdx;
53
37.1k
            const CUData* tempCU = cu->getPULeft(tempPartIdx, absPartIdx);
54
37.1k
            return tempCU ? 2 : 0;
55
37.1k
        }
56
42.2k
    }
57
42.2k
    else
58
42.2k
    {
59
42.2k
        if (cu->m_cuPelY + g_zscanToPelY[absPartIdx] > 0)
60
37.6k
        {
61
37.6k
            uint32_t    tempPartIdx;
62
37.6k
            const CUData* tempCU = cu->getPUAbove(tempPartIdx, absPartIdx);
63
37.6k
            return tempCU ? 2 : 0;
64
37.6k
        }
65
42.2k
    }
66
67
9.68k
    return 0;
68
84.4k
}
69
70
/* Deblocking filter process in CU-based (the same function as conventional's)
71
 * param Edge the direction of the edge in block boundary (horizonta/vertical), which is added newly */
72
void Deblock::deblockCU(const CUData* cu, const CUGeom& cuGeom, const int32_t dir, uint8_t blockStrength[])
73
119k
{
74
119k
    uint32_t absPartIdx = cuGeom.absPartIdx;
75
119k
    uint32_t depth = cuGeom.depth;
76
119k
    if (cu->m_predMode[absPartIdx] == MODE_NONE)
77
0
        return;
78
79
119k
    if (cu->m_cuDepth[absPartIdx] > depth)
80
34.7k
    {
81
173k
        for (uint32_t subPartIdx = 0; subPartIdx < 4; subPartIdx++)
82
138k
        {
83
138k
            const CUGeom& childGeom = *(&cuGeom + cuGeom.childOffset + subPartIdx);
84
138k
            if (childGeom.flags & CUGeom::PRESENT)
85
91.4k
                deblockCU(cu, childGeom, dir, blockStrength);
86
138k
        }
87
34.7k
        return;
88
34.7k
    }
89
90
84.4k
    uint32_t numUnits = 1 << (cuGeom.log2CUSize - LOG2_UNIT_SIZE);
91
84.4k
    setEdgefilterPU(cu, absPartIdx, dir, blockStrength, numUnits);
92
84.4k
    setEdgefilterTU(cu, absPartIdx, 0, dir, blockStrength);
93
84.4k
    setEdgefilterMultiple(absPartIdx, dir, 0, bsCuEdge(cu, absPartIdx, dir), blockStrength, numUnits);
94
95
84.4k
    uint32_t numParts = cuGeom.numPartitions;
96
2.65M
    for (uint32_t partIdx = absPartIdx; partIdx < absPartIdx + numParts; partIdx++)
97
2.56M
    {
98
2.56M
        uint32_t bsCheck = !(partIdx & (1 << dir));
99
100
2.56M
        if (bsCheck && blockStrength[partIdx])
101
354k
            blockStrength[partIdx] = getBoundaryStrength(cu, dir, partIdx, blockStrength);
102
2.56M
    }
103
104
84.4k
    const uint32_t partIdxIncr = DEBLOCK_SMALLEST_BLOCK >> LOG2_UNIT_SIZE;
105
84.4k
    uint32_t shiftFactor = (dir == EDGE_VER) ? cu->m_hChromaShift : cu->m_vChromaShift;
106
84.4k
    uint32_t chromaMask = ((DEBLOCK_SMALLEST_BLOCK << shiftFactor) >> LOG2_UNIT_SIZE) - 1;
107
84.4k
    uint32_t e0 = (dir == EDGE_VER ? g_zscanToPelX[absPartIdx] : g_zscanToPelY[absPartIdx]) >> LOG2_UNIT_SIZE;
108
        
109
290k
    for (uint32_t e = 0; e < numUnits; e += partIdxIncr)
110
205k
    {
111
205k
        edgeFilterLuma(cu, absPartIdx, depth, dir, e, blockStrength);
112
205k
        if (!((e0 + e) & chromaMask) && cu->m_chromaFormat != X265_CSP_I400)
113
109k
            edgeFilterChroma(cu, absPartIdx, depth, dir, e, blockStrength);
114
205k
    }
115
84.4k
}
116
117
static inline uint32_t calcBsIdx(uint32_t absPartIdx, int32_t dir, int32_t edgeIdx, int32_t baseUnitIdx)
118
2.43M
{
119
2.43M
    if (dir)
120
1.21M
        return g_rasterToZscan[g_zscanToRaster[absPartIdx] + (edgeIdx << LOG2_RASTER_SIZE) + baseUnitIdx];
121
1.21M
    else
122
1.21M
        return g_rasterToZscan[g_zscanToRaster[absPartIdx] + (baseUnitIdx << LOG2_RASTER_SIZE) + edgeIdx];
123
2.43M
}
124
125
void Deblock::setEdgefilterMultiple(uint32_t scanIdx, int32_t dir, int32_t edgeIdx, uint8_t value, uint8_t blockStrength[], uint32_t numUnits)
126
169k
{
127
169k
    X265_CHECK(numUnits > 0, "numUnits edge filter check\n");
128
993k
    for (uint32_t i = 0; i < numUnits; i++)
129
823k
    {
130
823k
        const uint32_t bsidx = calcBsIdx(scanIdx, dir, edgeIdx, i);
131
823k
        blockStrength[bsidx] = value;
132
823k
    }
133
169k
}
134
135
void Deblock::setEdgefilterTU(const CUData* cu, uint32_t absPartIdx, uint32_t tuDepth, int32_t dir, uint8_t blockStrength[])
136
85.6k
{
137
85.6k
    uint32_t log2TrSize = cu->m_log2CUSize[absPartIdx] - tuDepth;
138
85.6k
    if (cu->m_tuDepth[absPartIdx] > tuDepth)
139
308
    {
140
308
        uint32_t qNumParts = 1 << (log2TrSize - LOG2_UNIT_SIZE - 1) * 2;
141
1.54k
        for (uint32_t qIdx = 0; qIdx < 4; ++qIdx, absPartIdx += qNumParts)
142
1.23k
            setEdgefilterTU(cu, absPartIdx, tuDepth + 1, dir, blockStrength);
143
308
        return;
144
308
    }
145
146
85.3k
    uint32_t numUnits = 1 << (log2TrSize - LOG2_UNIT_SIZE);
147
85.3k
    setEdgefilterMultiple(absPartIdx, dir, 0, 2, blockStrength, numUnits);
148
85.3k
}
149
150
void Deblock::setEdgefilterPU(const CUData* cu, uint32_t absPartIdx, int32_t dir, uint8_t blockStrength[], uint32_t numUnits)
151
84.4k
{
152
84.4k
    const uint32_t hNumUnits = numUnits >> 1;
153
84.4k
    const uint32_t qNumUnits = numUnits >> 2;
154
155
84.4k
    switch (cu->m_partSize[absPartIdx])
156
84.4k
    {
157
0
    case SIZE_2NxN:
158
0
        if (EDGE_HOR == dir)
159
0
            setEdgefilterMultiple(absPartIdx, dir, hNumUnits, 1, blockStrength, numUnits);
160
0
        break;
161
0
    case SIZE_Nx2N:
162
0
        if (EDGE_VER == dir)
163
0
            setEdgefilterMultiple(absPartIdx, dir, hNumUnits, 1, blockStrength, numUnits);
164
0
        break;
165
0
    case SIZE_NxN:
166
0
        setEdgefilterMultiple(absPartIdx, dir, hNumUnits, 1, blockStrength, numUnits);
167
0
        break;
168
0
    case SIZE_2NxnU:
169
0
        if (EDGE_HOR == dir)
170
0
            setEdgefilterMultiple(absPartIdx, dir, qNumUnits, 1, blockStrength, numUnits);
171
0
        break;
172
0
    case SIZE_nLx2N:
173
0
        if (EDGE_VER == dir)
174
0
            setEdgefilterMultiple(absPartIdx, dir, qNumUnits, 1, blockStrength, numUnits);
175
0
        break;
176
0
    case SIZE_2NxnD:
177
0
        if (EDGE_HOR == dir)
178
0
            setEdgefilterMultiple(absPartIdx, dir, numUnits - qNumUnits, 1, blockStrength, numUnits);
179
0
        break;
180
0
    case SIZE_nRx2N:
181
0
        if (EDGE_VER == dir)
182
0
            setEdgefilterMultiple(absPartIdx, dir, numUnits - qNumUnits, 1, blockStrength, numUnits);
183
0
        break;
184
185
84.4k
    case SIZE_2Nx2N:
186
84.4k
    default:
187
84.4k
        break;
188
84.4k
    }
189
84.4k
}
190
191
uint8_t Deblock::getBoundaryStrength(const CUData* cuQ, int32_t dir, uint32_t partQ, const uint8_t blockStrength[])
192
354k
{
193
    // Calculate block index
194
354k
    uint32_t partP;
195
354k
    const CUData* cuP = (dir == EDGE_VER ? cuQ->getPULeft(partP, partQ) : cuQ->getPUAbove(partP, partQ));
196
197
    // Set BS for Intra MB : BS = 2
198
354k
    if (cuP->isIntra(partP) || cuQ->isIntra(partQ))
199
354k
        return 2;
200
201
    // Set BS for not Intra MB : BS = 1 or 0
202
0
    if (blockStrength[partQ] > 1 &&
203
0
        (cuQ->getCbf(partQ, TEXT_LUMA, cuQ->m_tuDepth[partQ]) ||
204
0
         cuP->getCbf(partP, TEXT_LUMA, cuP->m_tuDepth[partP])))
205
0
        return 1;
206
207
0
    static const MV zeroMv(0, 0);
208
0
    const Slice* const sliceQ = cuQ->m_slice;
209
0
    const Slice* const sliceP = cuP->m_slice;
210
0
    const Frame* refP0 = (cuP->m_refIdx[0][partP] >= 0) ? sliceP->m_refFrameList[0][cuP->m_refIdx[0][partP]] : NULL;
211
0
    const Frame* refQ0 = (cuQ->m_refIdx[0][partQ] >= 0) ? sliceQ->m_refFrameList[0][cuQ->m_refIdx[0][partQ]] : NULL;
212
0
    const MV& mvP0 = refP0 ? cuP->m_mv[0][partP] : zeroMv;
213
0
    const MV& mvQ0 = refQ0 ? cuQ->m_mv[0][partQ] : zeroMv;
214
0
    if (sliceQ->isInterP() && sliceP->isInterP())
215
0
    {
216
0
        return ((refP0 != refQ0) ||
217
0
                (abs(mvQ0.x - mvP0.x) >= 4) || (abs(mvQ0.y - mvP0.y) >= 4)) ? 1 : 0;
218
0
    }
219
    // (sliceQ->isInterB() || sliceP->isInterB())
220
0
    const Frame* refP1 = (cuP->m_refIdx[1][partP] >= 0) ? sliceP->m_refFrameList[1][cuP->m_refIdx[1][partP]] : NULL;
221
0
    const Frame* refQ1 = (cuQ->m_refIdx[1][partQ] >= 0) ? sliceQ->m_refFrameList[1][cuQ->m_refIdx[1][partQ]] : NULL;
222
0
    const MV& mvP1 = refP1 ? cuP->m_mv[1][partP] : zeroMv;
223
0
    const MV& mvQ1 = refQ1 ? cuQ->m_mv[1][partQ] : zeroMv;
224
225
0
    if (((refP0 == refQ0) && (refP1 == refQ1)) || ((refP0 == refQ1) && (refP1 == refQ0)))
226
0
    {
227
0
        if (refP0 != refP1) // Different L0 & L1
228
0
        {
229
0
            if (refP0 == refQ0)
230
0
                return ((abs(mvQ0.x - mvP0.x) >= 4) || (abs(mvQ0.y - mvP0.y) >= 4) ||
231
0
                        (abs(mvQ1.x - mvP1.x) >= 4) || (abs(mvQ1.y - mvP1.y) >= 4)) ? 1 : 0;
232
0
            else
233
0
                return ((abs(mvQ1.x - mvP0.x) >= 4) || (abs(mvQ1.y - mvP0.y) >= 4) ||
234
0
                        (abs(mvQ0.x - mvP1.x) >= 4) || (abs(mvQ0.y - mvP1.y) >= 4)) ? 1 : 0;
235
0
        }
236
0
        else // Same L0 & L1
237
0
        {
238
0
            return (((abs(mvQ0.x - mvP0.x) >= 4) || (abs(mvQ0.y - mvP0.y) >= 4) ||
239
0
                     (abs(mvQ1.x - mvP1.x) >= 4) || (abs(mvQ1.y - mvP1.y) >= 4)) &&
240
0
                    ((abs(mvQ1.x - mvP0.x) >= 4) || (abs(mvQ1.y - mvP0.y) >= 4) ||
241
0
                     (abs(mvQ0.x - mvP1.x) >= 4) || (abs(mvQ0.y - mvP1.y) >= 4))) ? 1 : 0;
242
0
        }
243
0
    }
244
        
245
    // for all different Ref_Idx
246
0
    return 1;
247
0
}
248
249
static inline int32_t calcDP(pixel* src, intptr_t offset)
250
526k
{
251
526k
    return abs(static_cast<int32_t>(src[-offset * 3]) - 2 * src[-offset * 2] + src[-offset]);
252
526k
}
253
254
static inline int32_t calcDQ(pixel* src, intptr_t offset)
255
526k
{
256
526k
    return abs(static_cast<int32_t>(src[0]) - 2 * src[offset] + src[offset * 2]);
257
526k
}
258
259
static inline bool useStrongFiltering(intptr_t offset, int32_t beta, int32_t tc, pixel* src)
260
379k
{
261
379k
    int16_t m4     = (int16_t)src[0];
262
379k
    int16_t m3     = (int16_t)src[-offset];
263
379k
    int16_t m7     = (int16_t)src[offset * 3];
264
379k
    int16_t m0     = (int16_t)src[-offset * 4];
265
379k
    int32_t strong = abs(m0 - m3) + abs(m7 - m4);
266
267
379k
    return (strong < (beta >> 3)) && (abs(m3 - m4) < ((tc * 5 + 1) >> 1));
268
379k
}
269
270
/* Deblocking for the luminance component with strong or weak filter
271
 * \param src     pointer to picture data
272
 * \param offset  offset value for picture data
273
 * \param tc      tc value
274
 * \param maskP   indicator to enable filtering on partP
275
 * \param maskQ   indicator to enable filtering on partQ
276
 * \param maskP1  decision weak filter/no filter for partP
277
 * \param maskQ1  decision weak filter/no filter for partQ */
278
static inline void pelFilterLuma(pixel* src, intptr_t srcStep, intptr_t offset, int32_t tc, int32_t maskP, int32_t maskQ,
279
                                 int32_t maskP1, int32_t maskQ1)
280
7.18k
{
281
7.18k
    int32_t thrCut = tc * 10;
282
7.18k
    int32_t tc2 = tc >> 1;
283
7.18k
    maskP1 &= maskP;
284
7.18k
    maskQ1 &= maskQ;
285
286
35.9k
    for (int32_t i = 0; i < UNIT_SIZE; i++, src += srcStep)
287
28.7k
    {
288
28.7k
        int16_t m4  = (int16_t)src[0];
289
28.7k
        int16_t m3  = (int16_t)src[-offset];
290
28.7k
        int16_t m5  = (int16_t)src[offset];
291
28.7k
        int16_t m2  = (int16_t)src[-offset * 2];
292
293
28.7k
        int32_t delta = (9 * (m4 - m3) - 3 * (m5 - m2) + 8) >> 4;
294
295
28.7k
        if (abs(delta) < thrCut)
296
28.7k
        {
297
28.7k
            delta = x265_clip3(-tc, tc, delta);
298
299
28.7k
            src[-offset] = x265_clip(m3 + (delta & maskP));
300
28.7k
            src[0] = x265_clip(m4 - (delta & maskQ));
301
28.7k
            if (maskP1)
302
28.7k
            {
303
28.7k
                int16_t m1  = (int16_t)src[-offset * 3];
304
28.7k
                int32_t delta1 = x265_clip3(-tc2, tc2, ((((m1 + m3 + 1) >> 1) - m2 + delta) >> 1));
305
28.7k
                src[-offset * 2] = x265_clip(m2 + delta1);
306
28.7k
            }
307
28.7k
            if (maskQ1)
308
28.7k
            {
309
28.7k
                int16_t m6  = (int16_t)src[offset * 2];
310
28.7k
                int32_t delta2 = x265_clip3(-tc2, tc2, ((((m6 + m4 + 1) >> 1) - m5 - delta) >> 1));
311
28.7k
                src[offset] = x265_clip(m5 + delta2);
312
28.7k
            }
313
28.7k
        }
314
28.7k
    }
315
7.18k
}
316
317
void Deblock::edgeFilterLuma(const CUData* cuQ, uint32_t absPartIdx, uint32_t depth, int32_t dir, int32_t edge, const uint8_t blockStrength[])
318
205k
{
319
205k
    PicYuv* reconPic = cuQ->m_encData->m_reconPic[0];
320
205k
    pixel* src = reconPic->getLumaAddr(cuQ->m_cuAddr, absPartIdx);
321
205k
    intptr_t stride = reconPic->m_stride;
322
205k
    const PPS* pps = cuQ->m_slice->m_pps;
323
324
205k
    intptr_t offset, srcStep;
325
326
205k
    int32_t maskP = -1;
327
205k
    int32_t maskQ = -1;
328
205k
    int32_t betaOffset = pps->deblockingFilterBetaOffsetDiv2 << 1;
329
205k
    int32_t tcOffset = pps->deblockingFilterTcOffsetDiv2 << 1;
330
205k
    bool bCheckNoFilter = pps->bTransquantBypassEnabled;
331
332
205k
    if (dir == EDGE_VER)
333
102k
    {
334
102k
        offset = 1;
335
102k
        srcStep = stride;
336
102k
        src += (edge << LOG2_UNIT_SIZE);
337
102k
    }
338
102k
    else // (dir == EDGE_HOR)
339
102k
    {
340
102k
        offset = stride;
341
102k
        srcStep = 1;
342
102k
        src += (edge << LOG2_UNIT_SIZE) * stride;
343
102k
    }
344
345
205k
    uint32_t numUnits = cuQ->m_slice->m_sps->numPartInCUSize >> depth;
346
1.48M
    for (uint32_t idx = 0; idx < numUnits; idx++)
347
1.28M
    {
348
1.28M
        uint32_t partQ = calcBsIdx(absPartIdx, dir, edge, idx);
349
1.28M
        uint32_t bs = blockStrength[partQ];
350
351
1.28M
        if (!bs)
352
928k
            continue;
353
354
        // Derive neighboring PU index
355
354k
        uint32_t partP;
356
354k
        const CUData* cuP = (dir == EDGE_VER ? cuQ->getPULeft(partP, partQ) : cuQ->getPUAbove(partP, partQ));
357
358
354k
        if (bCheckNoFilter)
359
91.3k
        {
360
            // check if each of PUs is lossless coded
361
91.3k
            maskP = cuP->m_tqBypass[partP] - 1;
362
91.3k
            maskQ = cuQ->m_tqBypass[partQ] - 1;
363
91.3k
            if (!(maskP | maskQ))
364
91.3k
                continue;
365
91.3k
        }
366
367
263k
        int32_t qpQ = cuQ->m_qp[partQ];
368
263k
        int32_t qpP = cuP->m_qp[partP];
369
263k
        int32_t qp  = (qpP + qpQ + 1) >> 1;
370
371
263k
        int32_t indexB = x265_clip3(0, QP_MAX_SPEC, qp + betaOffset);
372
373
263k
        const int32_t bitdepthShift = X265_DEPTH - 8;
374
263k
        int32_t beta = s_betaTable[indexB] << bitdepthShift;
375
376
263k
        intptr_t unitOffset = idx * srcStep << LOG2_UNIT_SIZE;
377
263k
        int32_t dp0 = calcDP(src + unitOffset              , offset);
378
263k
        int32_t dq0 = calcDQ(src + unitOffset              , offset);
379
263k
        int32_t dp3 = calcDP(src + unitOffset + srcStep * 3, offset);
380
263k
        int32_t dq3 = calcDQ(src + unitOffset + srcStep * 3, offset);
381
263k
        int32_t d0 = dp0 + dq0;
382
263k
        int32_t d3 = dp3 + dq3;
383
384
263k
        int32_t d =  d0 + d3;
385
386
263k
        if (d >= beta)
387
69.9k
            continue;
388
389
193k
        int32_t indexTC = x265_clip3(0, QP_MAX_SPEC + DEFAULT_INTRA_TC_OFFSET, int32_t(qp + DEFAULT_INTRA_TC_OFFSET * (bs - 1) + tcOffset));
390
193k
        int32_t tc = s_tcTable[indexTC] << bitdepthShift;
391
392
193k
        bool sw = (2 * d0 < (beta >> 2) &&
393
193k
                   2 * d3 < (beta >> 2) &&
394
193k
                   useStrongFiltering(offset, beta, tc, src + unitOffset              ) &&
395
186k
                   useStrongFiltering(offset, beta, tc, src + unitOffset + srcStep * 3));
396
397
193k
        if (sw)
398
186k
        {
399
186k
            int32_t tc2 = 2 * tc;
400
186k
            int32_t tcP = (tc2 & maskP);
401
186k
            int32_t tcQ = (tc2 & maskQ);
402
186k
            primitives.pelFilterLumaStrong[dir](src + unitOffset, srcStep, offset, tcP, tcQ);
403
186k
        }
404
7.18k
        else
405
7.18k
        {
406
7.18k
            int32_t sideThreshold = (beta + (beta >> 1)) >> 3;
407
7.18k
            int32_t dp = dp0 + dp3;
408
7.18k
            int32_t dq = dq0 + dq3;
409
7.18k
            int32_t maskP1 = (dp < sideThreshold ? -1 : 0);
410
7.18k
            int32_t maskQ1 = (dq < sideThreshold ? -1 : 0);
411
412
7.18k
            pelFilterLuma(src + unitOffset, srcStep, offset, tc, maskP, maskQ, maskP1, maskQ1);
413
7.18k
        }
414
193k
    }
415
205k
}
416
417
void Deblock::edgeFilterChroma(const CUData* cuQ, uint32_t absPartIdx, uint32_t depth, int32_t dir, int32_t edge, const uint8_t blockStrength[])
418
109k
{
419
109k
    int32_t chFmt = cuQ->m_chromaFormat, chromaShift;
420
109k
    intptr_t offset, srcStep;
421
109k
    const PPS* pps = cuQ->m_slice->m_pps;
422
423
109k
    int32_t maskP = -1;
424
109k
    int32_t maskQ = -1;
425
109k
    int32_t tcOffset = pps->deblockingFilterTcOffsetDiv2 << 1;
426
427
109k
    X265_CHECK(((dir == EDGE_VER)
428
109k
                ? ((g_zscanToPelX[absPartIdx] + edge * UNIT_SIZE) >> cuQ->m_hChromaShift)
429
109k
                : ((g_zscanToPelY[absPartIdx] + edge * UNIT_SIZE) >> cuQ->m_vChromaShift)) % DEBLOCK_SMALLEST_BLOCK == 0,
430
109k
               "invalid edge\n");
431
432
109k
    PicYuv* reconPic = cuQ->m_encData->m_reconPic[0];
433
109k
    intptr_t stride = reconPic->m_strideC;
434
109k
    intptr_t srcOffset = reconPic->getChromaAddrOffset(cuQ->m_cuAddr, absPartIdx);
435
109k
    bool bCheckNoFilter = pps->bTransquantBypassEnabled;
436
437
109k
    if (dir == EDGE_VER)
438
54.4k
    {
439
54.4k
        chromaShift = cuQ->m_vChromaShift;
440
54.4k
        srcOffset += (edge << (LOG2_UNIT_SIZE - cuQ->m_hChromaShift));
441
54.4k
        offset     = 1;
442
54.4k
        srcStep    = stride;
443
54.4k
    }
444
54.7k
    else // (dir == EDGE_HOR)
445
54.7k
    {
446
54.7k
        chromaShift = cuQ->m_hChromaShift;
447
54.7k
        srcOffset += edge * stride << (LOG2_UNIT_SIZE - cuQ->m_vChromaShift);
448
54.7k
        offset     = stride;
449
54.7k
        srcStep    = 1;
450
54.7k
    }
451
452
109k
    pixel* srcChroma[2];
453
109k
    srcChroma[0] = reconPic->m_picOrg[1] + srcOffset;
454
109k
    srcChroma[1] = reconPic->m_picOrg[2] + srcOffset;
455
456
109k
    uint32_t numUnits = cuQ->m_slice->m_sps->numPartInCUSize >> (depth + chromaShift);
457
436k
    for (uint32_t idx = 0; idx < numUnits; idx++)
458
327k
    {
459
327k
        uint32_t partQ = calcBsIdx(absPartIdx, dir, edge, idx << chromaShift);
460
327k
        uint32_t bs = blockStrength[partQ];
461
462
327k
        if (bs <= 1)
463
157k
            continue;
464
465
        // Derive neighboring PU index
466
169k
        uint32_t partP;
467
169k
        const CUData* cuP = (dir == EDGE_VER ? cuQ->getPULeft(partP, partQ) : cuQ->getPUAbove(partP, partQ));
468
469
169k
        if (bCheckNoFilter)
470
43.4k
        {
471
            // check if each of PUs is lossless coded
472
43.4k
            maskP = (cuP->m_tqBypass[partP] ? 0 : -1);
473
43.4k
            maskQ = (cuQ->m_tqBypass[partQ] ? 0 : -1);
474
43.4k
            if (!(maskP | maskQ))
475
43.4k
                continue;
476
43.4k
        }
477
478
126k
        int32_t qpQ = cuQ->m_qp[partQ];
479
126k
        int32_t qpP = cuP->m_qp[partP];
480
126k
        int32_t qpA = (qpP + qpQ + 1) >> 1;
481
482
126k
        intptr_t unitOffset = idx * srcStep << LOG2_UNIT_SIZE;
483
379k
        for (uint32_t chromaIdx = 0; chromaIdx < 2; chromaIdx++)
484
252k
        {
485
252k
            int32_t qp = qpA + pps->chromaQpOffset[chromaIdx];
486
252k
            if (qp >= 30)
487
119k
                qp = chFmt == X265_CSP_I420 ? g_chromaScale[qp] : X265_MIN(qp, QP_MAX_SPEC);
488
489
252k
            int32_t indexTC = x265_clip3(0, QP_MAX_SPEC + DEFAULT_INTRA_TC_OFFSET, int32_t(qp + DEFAULT_INTRA_TC_OFFSET + tcOffset));
490
252k
            const int32_t bitdepthShift = X265_DEPTH - 8;
491
252k
            int32_t tc = s_tcTable[indexTC] << bitdepthShift;
492
252k
            pixel* srcC = srcChroma[chromaIdx];
493
494
252k
            primitives.pelFilterChroma[dir](srcC + unitOffset, srcStep, offset, tc, maskP, maskQ);
495
252k
        }
496
126k
    }
497
109k
}
498
499
const uint8_t Deblock::s_tcTable[54] =
500
{
501
    0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2,
502
    2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 5, 5, 6, 6, 7, 8, 9, 10, 11, 13, 14, 16, 18, 20, 22, 24
503
};
504
505
const uint8_t Deblock::s_betaTable[52] =
506
{
507
    0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17,
508
    18, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 52, 54, 56, 58, 60, 62, 64
509
};
510