Coverage Report

Created: 2026-08-17 07:50

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/qtbase/src/gui/painting/qdrawhelper_sse4.cpp
Line
Count
Source
1
// Copyright (C) 2016 The Qt Company Ltd.
2
// SPDX-License-Identifier: LicenseRef-Qt-Commercial OR LGPL-3.0-only OR GPL-2.0-only OR GPL-3.0-only
3
// Qt-Security score:significant reason:default
4
5
#include <private/qdrawhelper_p.h>
6
#include <private/qdrawingprimitive_sse2_p.h>
7
#include <private/qpaintengine_raster_p.h>
8
#include <private/qpixellayout_p.h>
9
10
#if defined(QT_COMPILER_SUPPORTS_SSE4_1)
11
12
QT_BEGIN_NAMESPACE
13
14
#ifndef __haswell__
15
template<bool RGBA>
16
static void convertARGBToARGB32PM_sse4(uint *buffer, const uint *src, int count)
17
0
{
18
0
    int i = 0;
19
0
    const __m128i alphaMask = _mm_set1_epi32(0xff000000);
20
0
    const __m128i rgbaMask = _mm_setr_epi8(2, 1, 0, 3, 6, 5, 4, 7, 10, 9, 8, 11, 14, 13, 12, 15);
21
0
    const __m128i shuffleMask = _mm_setr_epi8(6, 7, 6, 7, 6, 7, 6, 7, 14, 15, 14, 15, 14, 15, 14, 15);
22
0
    const __m128i half = _mm_set1_epi16(0x0080);
23
0
    const __m128i zero = _mm_setzero_si128();
24
25
0
    for (; i < count - 3; i += 4) {
26
0
        __m128i srcVector = _mm_loadu_si128((const __m128i *)&src[i]);
27
0
        if (!_mm_testz_si128(srcVector, alphaMask)) {
28
0
            if (!_mm_testc_si128(srcVector, alphaMask)) {
29
0
                if (RGBA)
30
0
                    srcVector = _mm_shuffle_epi8(srcVector, rgbaMask);
31
0
                __m128i src1 = _mm_unpacklo_epi8(srcVector, zero);
32
0
                __m128i src2 = _mm_unpackhi_epi8(srcVector, zero);
33
0
                __m128i alpha1 = _mm_shuffle_epi8(src1, shuffleMask);
34
0
                __m128i alpha2 = _mm_shuffle_epi8(src2, shuffleMask);
35
0
                src1 = _mm_mullo_epi16(src1, alpha1);
36
0
                src2 = _mm_mullo_epi16(src2, alpha2);
37
0
                src1 = _mm_add_epi16(src1, _mm_srli_epi16(src1, 8));
38
0
                src2 = _mm_add_epi16(src2, _mm_srli_epi16(src2, 8));
39
0
                src1 = _mm_add_epi16(src1, half);
40
0
                src2 = _mm_add_epi16(src2, half);
41
0
                src1 = _mm_srli_epi16(src1, 8);
42
0
                src2 = _mm_srli_epi16(src2, 8);
43
0
                src1 = _mm_blend_epi16(src1, alpha1, 0x88);
44
0
                src2 = _mm_blend_epi16(src2, alpha2, 0x88);
45
0
                srcVector = _mm_packus_epi16(src1, src2);
46
0
                _mm_storeu_si128((__m128i *)&buffer[i], srcVector);
47
0
            } else {
48
0
                if (RGBA)
49
0
                    _mm_storeu_si128((__m128i *)&buffer[i], _mm_shuffle_epi8(srcVector, rgbaMask));
50
0
                else if (buffer != src)
51
0
                    _mm_storeu_si128((__m128i *)&buffer[i], srcVector);
52
0
            }
53
0
        } else {
54
0
            _mm_storeu_si128((__m128i *)&buffer[i], zero);
55
0
        }
56
0
    }
57
58
0
    SIMD_EPILOGUE(i, count, 3) {
59
0
        uint v = qPremultiply(src[i]);
60
0
        buffer[i] = RGBA ? RGBA2ARGB(v) : v;
61
0
    }
62
0
}
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBToARGB32PM_sse4<false>(unsigned int*, unsigned int const*, int)
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBToARGB32PM_sse4<true>(unsigned int*, unsigned int const*, int)
63
64
template<bool RGBA>
65
static void convertARGBToRGBA64PM_sse4(QRgba64 *buffer, const uint *src, int count)
66
0
{
67
0
    int i = 0;
68
0
    const __m128i alphaMask = _mm_set1_epi32(0xff000000);
69
0
    const __m128i rgbaMask = _mm_setr_epi8(2, 1, 0, 3, 6, 5, 4, 7, 10, 9, 8, 11, 14, 13, 12, 15);
70
0
    const __m128i shuffleMask = _mm_setr_epi8(6, 7, 6, 7, 6, 7, 6, 7, 14, 15, 14, 15, 14, 15, 14, 15);
71
0
    const __m128i zero = _mm_setzero_si128();
72
73
0
    for (; i < count - 3; i += 4) {
74
0
        __m128i srcVector = _mm_loadu_si128((const __m128i *)&src[i]);
75
0
        if (!_mm_testz_si128(srcVector, alphaMask)) {
76
0
            bool cf = _mm_testc_si128(srcVector, alphaMask);
77
78
0
            if (!RGBA)
79
0
                srcVector = _mm_shuffle_epi8(srcVector, rgbaMask);
80
0
            const __m128i src1 = _mm_unpacklo_epi8(srcVector, srcVector);
81
0
            const __m128i src2 = _mm_unpackhi_epi8(srcVector, srcVector);
82
0
            if (!cf) {
83
0
                __m128i alpha1 = _mm_shuffle_epi8(src1, shuffleMask);
84
0
                __m128i alpha2 = _mm_shuffle_epi8(src2, shuffleMask);
85
0
                __m128i dst1 = _mm_mulhi_epu16(src1, alpha1);
86
0
                __m128i dst2 = _mm_mulhi_epu16(src2, alpha2);
87
                // Map 0->0xfffe to 0->0xffff
88
0
                dst1 = _mm_add_epi16(dst1, _mm_srli_epi16(dst1, 15));
89
0
                dst2 = _mm_add_epi16(dst2, _mm_srli_epi16(dst2, 15));
90
                // correct alpha value:
91
0
                dst1 = _mm_blend_epi16(dst1, src1, 0x88);
92
0
                dst2 = _mm_blend_epi16(dst2, src2, 0x88);
93
0
                _mm_storeu_si128((__m128i *)&buffer[i], dst1);
94
0
                _mm_storeu_si128((__m128i *)&buffer[i + 2], dst2);
95
0
            } else {
96
0
                _mm_storeu_si128((__m128i *)&buffer[i], src1);
97
0
                _mm_storeu_si128((__m128i *)&buffer[i + 2], src2);
98
0
            }
99
0
        } else {
100
0
            _mm_storeu_si128((__m128i *)&buffer[i], zero);
101
0
            _mm_storeu_si128((__m128i *)&buffer[i + 2], zero);
102
0
        }
103
0
    }
104
105
0
    SIMD_EPILOGUE(i, count, 3) {
106
0
        const uint s = RGBA ? RGBA2ARGB(src[i]) : src[i];
107
0
        buffer[i] = QRgba64::fromArgb32(s).premultiplied();
108
0
    }
109
0
}
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBToRGBA64PM_sse4<false>(QRgba64*, unsigned int const*, int)
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBToRGBA64PM_sse4<true>(QRgba64*, unsigned int const*, int)
110
#endif // __haswell__
111
112
static inline __m128 Q_DECL_VECTORCALL reciprocal_mul_ps(__m128 a, float mul)
113
0
{
114
0
    __m128 ia = _mm_rcp_ps(a); // Approximate 1/a
115
    // Improve precision of ia using Newton-Raphson
116
0
    ia = _mm_sub_ps(_mm_add_ps(ia, ia), _mm_mul_ps(ia, _mm_mul_ps(ia, a)));
117
0
    ia = _mm_mul_ps(ia, _mm_set1_ps(mul));
118
0
    return ia;
119
0
}
120
121
template<bool RGBA, bool RGBx>
122
static inline void convertARGBFromARGB32PM_sse4(uint *buffer, const uint *src, int count)
123
0
{
124
0
    int i = 0;
125
0
    if ((_MM_GET_EXCEPTION_MASK() & _MM_MASK_INVALID) == 0) {
126
0
        for (; i < count; ++i) {
127
0
            uint v = qUnpremultiply(src[i]);
128
0
            if (RGBx)
129
0
                v = 0xff000000 | v;
130
0
            if (RGBA)
131
0
                v = ARGB2RGBA(v);
132
0
            buffer[i] = v;
133
0
        }
134
0
        return;
135
0
    }
136
0
    const __m128i alphaMask = _mm_set1_epi32(0xff000000);
137
0
    const __m128i rgbaMask = _mm_setr_epi8(2, 1, 0, 3, 6, 5, 4, 7, 10, 9, 8, 11, 14, 13, 12, 15);
138
0
    const __m128i zero = _mm_setzero_si128();
139
140
0
    for (; i < count - 3; i += 4) {
141
0
        __m128i srcVector = _mm_loadu_si128((const __m128i *)&src[i]);
142
0
        if (!_mm_testz_si128(srcVector, alphaMask)) {
143
0
            if (!_mm_testc_si128(srcVector, alphaMask)) {
144
0
                __m128i srcVectorAlpha = _mm_srli_epi32(srcVector, 24);
145
0
                if (RGBA)
146
0
                    srcVector = _mm_shuffle_epi8(srcVector, rgbaMask);
147
0
                const __m128 a = _mm_cvtepi32_ps(srcVectorAlpha);
148
0
                const __m128 ia = reciprocal_mul_ps(a, 255.0f);
149
0
                __m128i src1 = _mm_unpacklo_epi8(srcVector, zero);
150
0
                __m128i src3 = _mm_unpackhi_epi8(srcVector, zero);
151
0
                __m128i src2 = _mm_unpackhi_epi16(src1, zero);
152
0
                __m128i src4 = _mm_unpackhi_epi16(src3, zero);
153
0
                src1 = _mm_unpacklo_epi16(src1, zero);
154
0
                src3 = _mm_unpacklo_epi16(src3, zero);
155
0
                __m128 ia1 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(0, 0, 0, 0));
156
0
                __m128 ia2 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(1, 1, 1, 1));
157
0
                __m128 ia3 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(2, 2, 2, 2));
158
0
                __m128 ia4 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(3, 3, 3, 3));
159
0
                src1 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src1), ia1));
160
0
                src2 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src2), ia2));
161
0
                src3 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src3), ia3));
162
0
                src4 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src4), ia4));
163
0
                src1 = _mm_packus_epi32(src1, src2);
164
0
                src3 = _mm_packus_epi32(src3, src4);
165
0
                src1 = _mm_packus_epi16(src1, src3);
166
                // Handle potential alpha == 0 values:
167
0
                __m128i srcVectorAlphaMask = _mm_cmpeq_epi32(srcVectorAlpha, zero);
168
0
                src1 = _mm_andnot_si128(srcVectorAlphaMask, src1);
169
                // Fixup alpha values:
170
0
                if (RGBx)
171
0
                    srcVector = _mm_or_si128(src1, alphaMask);
172
0
                else
173
0
                    srcVector = _mm_blendv_epi8(src1, srcVector, alphaMask);
174
0
                _mm_storeu_si128((__m128i *)&buffer[i], srcVector);
175
0
            } else {
176
0
                if (RGBA)
177
0
                    _mm_storeu_si128((__m128i *)&buffer[i], _mm_shuffle_epi8(srcVector, rgbaMask));
178
0
                else if (buffer != src)
179
0
                    _mm_storeu_si128((__m128i *)&buffer[i], srcVector);
180
0
            }
181
0
        } else {
182
0
            if (RGBx)
183
0
                _mm_storeu_si128((__m128i *)&buffer[i], alphaMask);
184
0
            else
185
0
                _mm_storeu_si128((__m128i *)&buffer[i], zero);
186
0
        }
187
0
    }
188
189
0
    SIMD_EPILOGUE(i, count, 3) {
190
0
        uint v = qUnpremultiply_sse4(src[i]);
191
0
        if (RGBx)
192
0
            v = 0xff000000 | v;
193
0
        if (RGBA)
194
0
            v = ARGB2RGBA(v);
195
0
        buffer[i] = v;
196
0
    }
197
0
}
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBFromARGB32PM_sse4<false, true>(unsigned int*, unsigned int const*, int)
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBFromARGB32PM_sse4<false, false>(unsigned int*, unsigned int const*, int)
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBFromARGB32PM_sse4<true, false>(unsigned int*, unsigned int const*, int)
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBFromARGB32PM_sse4<true, true>(unsigned int*, unsigned int const*, int)
198
199
template<bool RGBA>
200
static inline void convertARGBFromRGBA64PM_sse4(uint *buffer, const QRgba64 *src, int count)
201
0
{
202
0
    int i = 0;
203
0
    if ((_MM_GET_EXCEPTION_MASK() & _MM_MASK_INVALID) == 0) {
204
0
        for (; i < count; ++i) {
205
0
            const QRgba64 v = src[i].unpremultiplied();
206
0
            buffer[i] = RGBA ? toRgba8888(v) : toArgb32(v);
207
0
        }
208
0
        return;
209
0
    }
210
0
    const __m128i alphaMask = _mm_set1_epi64x(qint64(Q_UINT64_C(0xffff) << 48));
211
0
    const __m128i alphaMask32 = _mm_set1_epi32(0xff000000);
212
0
    const __m128i rgbaMask = _mm_setr_epi8(2, 1, 0, 3, 6, 5, 4, 7, 10, 9, 8, 11, 14, 13, 12, 15);
213
0
    const __m128i zero = _mm_setzero_si128();
214
215
0
    for (; i < count - 3; i += 4) {
216
0
        __m128i srcVector1 = _mm_loadu_si128((const __m128i *)&src[i]);
217
0
        __m128i srcVector2 = _mm_loadu_si128((const __m128i *)&src[i + 2]);
218
0
        bool transparent1 = _mm_testz_si128(srcVector1, alphaMask);
219
0
        bool opaque1 = _mm_testc_si128(srcVector1, alphaMask);
220
0
        bool transparent2 = _mm_testz_si128(srcVector2, alphaMask);
221
0
        bool opaque2 = _mm_testc_si128(srcVector2, alphaMask);
222
223
0
        if (!(transparent1 && transparent2)) {
224
0
            if (!(opaque1 && opaque2)) {
225
0
                __m128i srcVector1Alpha = _mm_srli_epi64(srcVector1, 48);
226
0
                __m128i srcVector2Alpha = _mm_srli_epi64(srcVector2, 48);
227
0
                __m128i srcVectorAlpha = _mm_packus_epi32(srcVector1Alpha, srcVector2Alpha);
228
0
                const __m128 a = _mm_cvtepi32_ps(srcVectorAlpha);
229
                // Convert srcVectorAlpha to final 8-bit alpha channel
230
0
                srcVectorAlpha = _mm_add_epi32(srcVectorAlpha, _mm_set1_epi32(128));
231
0
                srcVectorAlpha = _mm_sub_epi32(srcVectorAlpha, _mm_srli_epi32(srcVectorAlpha, 8));
232
0
                srcVectorAlpha = _mm_srli_epi32(srcVectorAlpha, 8);
233
0
                srcVectorAlpha = _mm_slli_epi32(srcVectorAlpha, 24);
234
0
                const __m128 ia = reciprocal_mul_ps(a, 255.0f);
235
0
                __m128i src1 = _mm_unpacklo_epi16(srcVector1, zero);
236
0
                __m128i src2 = _mm_unpackhi_epi16(srcVector1, zero);
237
0
                __m128i src3 = _mm_unpacklo_epi16(srcVector2, zero);
238
0
                __m128i src4 = _mm_unpackhi_epi16(srcVector2, zero);
239
0
                __m128 ia1 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(0, 0, 0, 0));
240
0
                __m128 ia2 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(1, 1, 1, 1));
241
0
                __m128 ia3 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(2, 2, 2, 2));
242
0
                __m128 ia4 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(3, 3, 3, 3));
243
0
                src1 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src1), ia1));
244
0
                src2 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src2), ia2));
245
0
                src3 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src3), ia3));
246
0
                src4 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src4), ia4));
247
0
                src1 = _mm_packus_epi32(src1, src2);
248
0
                src3 = _mm_packus_epi32(src3, src4);
249
                // Handle potential alpha == 0 values:
250
0
                __m128i srcVector1AlphaMask = _mm_cmpeq_epi64(srcVector1Alpha, zero);
251
0
                __m128i srcVector2AlphaMask = _mm_cmpeq_epi64(srcVector2Alpha, zero);
252
0
                src1 = _mm_andnot_si128(srcVector1AlphaMask, src1);
253
0
                src3 = _mm_andnot_si128(srcVector2AlphaMask, src3);
254
0
                src1 = _mm_packus_epi16(src1, src3);
255
                // Fixup alpha values:
256
0
                src1 = _mm_blendv_epi8(src1, srcVectorAlpha, alphaMask32);
257
                // Fix RGB order
258
0
                if (!RGBA)
259
0
                    src1 = _mm_shuffle_epi8(src1, rgbaMask);
260
0
                _mm_storeu_si128((__m128i *)&buffer[i], src1);
261
0
            } else {
262
0
                __m128i src1 = _mm_unpacklo_epi16(srcVector1, zero);
263
0
                __m128i src2 = _mm_unpackhi_epi16(srcVector1, zero);
264
0
                __m128i src3 = _mm_unpacklo_epi16(srcVector2, zero);
265
0
                __m128i src4 = _mm_unpackhi_epi16(srcVector2, zero);
266
0
                src1 = _mm_add_epi32(src1, _mm_set1_epi32(128));
267
0
                src2 = _mm_add_epi32(src2, _mm_set1_epi32(128));
268
0
                src3 = _mm_add_epi32(src3, _mm_set1_epi32(128));
269
0
                src4 = _mm_add_epi32(src4, _mm_set1_epi32(128));
270
0
                src1 = _mm_sub_epi32(src1, _mm_srli_epi32(src1, 8));
271
0
                src2 = _mm_sub_epi32(src2, _mm_srli_epi32(src2, 8));
272
0
                src3 = _mm_sub_epi32(src3, _mm_srli_epi32(src3, 8));
273
0
                src4 = _mm_sub_epi32(src4, _mm_srli_epi32(src4, 8));
274
0
                src1 = _mm_srli_epi32(src1, 8);
275
0
                src2 = _mm_srli_epi32(src2, 8);
276
0
                src3 = _mm_srli_epi32(src3, 8);
277
0
                src4 = _mm_srli_epi32(src4, 8);
278
0
                src1 = _mm_packus_epi32(src1, src2);
279
0
                src3 = _mm_packus_epi32(src3, src4);
280
0
                src1 = _mm_packus_epi16(src1, src3);
281
0
                if (!RGBA)
282
0
                    src1 = _mm_shuffle_epi8(src1, rgbaMask);
283
0
                _mm_storeu_si128((__m128i *)&buffer[i], src1);
284
0
            }
285
0
        } else {
286
0
            _mm_storeu_si128((__m128i *)&buffer[i], zero);
287
0
        }
288
0
    }
289
290
0
    SIMD_EPILOGUE(i, count, 3) {
291
0
        buffer[i] = qConvertRgba64ToRgb32_sse4<RGBA ? PixelOrderRGB : PixelOrderBGR>(src[i]);
292
0
    }
293
0
}
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBFromRGBA64PM_sse4<false>(unsigned int*, QRgba64 const*, int)
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertARGBFromRGBA64PM_sse4<true>(unsigned int*, QRgba64 const*, int)
294
295
template<bool mask>
296
static inline void convertRGBA64FromRGBA64PM_sse4(QRgba64 *buffer, const QRgba64 *src, int count)
297
0
{
298
0
    int i = 0;
299
0
    if ((_MM_GET_EXCEPTION_MASK() & _MM_MASK_INVALID) == 0) {
300
0
        for (; i < count; ++i) {
301
0
            QRgba64 v = src[i].unpremultiplied();
302
0
            if (mask)
303
0
                v.setAlpha(65535);
304
0
            buffer[i] = v;
305
0
        }
306
0
        return;
307
0
    }
308
0
    const __m128i alphaMask = _mm_set1_epi64x(qint64(Q_UINT64_C(0xffff) << 48));
309
0
    const __m128i zero = _mm_setzero_si128();
310
311
0
    for (; i < count - 3; i += 4) {
312
0
        __m128i srcVector1 = _mm_loadu_si128((const __m128i *)&src[i + 0]);
313
0
        __m128i srcVector2 = _mm_loadu_si128((const __m128i *)&src[i + 2]);
314
0
        bool transparent1 = _mm_testz_si128(srcVector1, alphaMask);
315
0
        bool opaque1 = _mm_testc_si128(srcVector1, alphaMask);
316
0
        bool transparent2 = _mm_testz_si128(srcVector2, alphaMask);
317
0
        bool opaque2 = _mm_testc_si128(srcVector2, alphaMask);
318
319
0
        if (!(transparent1 && transparent2)) {
320
0
            if (!(opaque1 && opaque2)) {
321
0
                __m128i srcVector1Alpha = _mm_srli_epi64(srcVector1, 48);
322
0
                __m128i srcVector2Alpha = _mm_srli_epi64(srcVector2, 48);
323
0
                __m128i srcVectorAlpha = _mm_packus_epi32(srcVector1Alpha, srcVector2Alpha);
324
0
                const __m128 a = _mm_cvtepi32_ps(srcVectorAlpha);
325
0
                const __m128 ia = reciprocal_mul_ps(a, 65535.0f);
326
0
                __m128i src1 = _mm_unpacklo_epi16(srcVector1, zero);
327
0
                __m128i src2 = _mm_unpackhi_epi16(srcVector1, zero);
328
0
                __m128i src3 = _mm_unpacklo_epi16(srcVector2, zero);
329
0
                __m128i src4 = _mm_unpackhi_epi16(srcVector2, zero);
330
0
                __m128 ia1 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(0, 0, 0, 0));
331
0
                __m128 ia2 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(1, 1, 1, 1));
332
0
                __m128 ia3 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(2, 2, 2, 2));
333
0
                __m128 ia4 = _mm_shuffle_ps(ia, ia, _MM_SHUFFLE(3, 3, 3, 3));
334
0
                src1 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src1), ia1));
335
0
                src2 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src2), ia2));
336
0
                src3 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src3), ia3));
337
0
                src4 = _mm_cvtps_epi32(_mm_mul_ps(_mm_cvtepi32_ps(src4), ia4));
338
0
                src1 = _mm_packus_epi32(src1, src2);
339
0
                src3 = _mm_packus_epi32(src3, src4);
340
                // Handle potential alpha == 0 values:
341
0
                __m128i srcVector1AlphaMask = _mm_cmpeq_epi64(srcVector1Alpha, zero);
342
0
                __m128i srcVector2AlphaMask = _mm_cmpeq_epi64(srcVector2Alpha, zero);
343
0
                src1 = _mm_andnot_si128(srcVector1AlphaMask, src1);
344
0
                src3 = _mm_andnot_si128(srcVector2AlphaMask, src3);
345
                // Fixup alpha values:
346
0
                if (mask) {
347
0
                    src1 = _mm_or_si128(src1, alphaMask);
348
0
                    src3 = _mm_or_si128(src3, alphaMask);
349
0
                } else {
350
0
                    src1 = _mm_blendv_epi8(src1, srcVector1, alphaMask);
351
0
                    src3 = _mm_blendv_epi8(src3, srcVector2, alphaMask);
352
0
                }
353
0
                _mm_storeu_si128((__m128i *)&buffer[i + 0], src1);
354
0
                _mm_storeu_si128((__m128i *)&buffer[i + 2], src3);
355
0
            } else {
356
0
                if (mask) {
357
0
                    srcVector1 = _mm_or_si128(srcVector1, alphaMask);
358
0
                    srcVector2 = _mm_or_si128(srcVector2, alphaMask);
359
0
                }
360
0
                if (mask || src != buffer) {
361
0
                    _mm_storeu_si128((__m128i *)&buffer[i + 0], srcVector1);
362
0
                    _mm_storeu_si128((__m128i *)&buffer[i + 2], srcVector2);
363
0
                }
364
0
            }
365
0
        } else {
366
0
            _mm_storeu_si128((__m128i *)&buffer[i + 0], zero);
367
0
            _mm_storeu_si128((__m128i *)&buffer[i + 2], zero);
368
0
        }
369
0
    }
370
371
0
    SIMD_EPILOGUE(i, count, 3) {
372
0
        QRgba64 v = src[i].unpremultiplied();
373
0
        if (mask)
374
0
            v.setAlpha(65535);
375
0
        buffer[i] = v;
376
0
    }
377
0
}
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertRGBA64FromRGBA64PM_sse4<false>(QRgba64*, QRgba64 const*, int)
Unexecuted instantiation: qdrawhelper_sse4.cpp:void convertRGBA64FromRGBA64PM_sse4<true>(QRgba64*, QRgba64 const*, int)
378
379
#ifndef __haswell__
380
void QT_FASTCALL convertARGB32ToARGB32PM_sse4(uint *buffer, int count, const QList<QRgb> *)
381
0
{
382
0
    convertARGBToARGB32PM_sse4<false>(buffer, buffer, count);
383
0
}
384
385
void QT_FASTCALL convertRGBA8888ToARGB32PM_sse4(uint *buffer, int count, const QList<QRgb> *)
386
0
{
387
0
    convertARGBToARGB32PM_sse4<true>(buffer, buffer, count);
388
0
}
389
390
const QRgba64 * QT_FASTCALL convertARGB32ToRGBA64PM_sse4(QRgba64 *buffer, const uint *src, int count,
391
                                                         const QList<QRgb> *, QDitherInfo *)
392
0
{
393
0
    convertARGBToRGBA64PM_sse4<false>(buffer, src, count);
394
0
    return buffer;
395
0
}
396
397
const QRgba64 * QT_FASTCALL convertRGBA8888ToRGBA64PM_sse4(QRgba64 *buffer, const uint *src, int count,
398
                                                           const QList<QRgb> *, QDitherInfo *)
399
0
{
400
0
    convertARGBToRGBA64PM_sse4<true>(buffer, src, count);
401
0
    return buffer;
402
0
}
403
404
const uint *QT_FASTCALL fetchARGB32ToARGB32PM_sse4(uint *buffer, const uchar *src, int index, int count,
405
                                                  const QList<QRgb> *, QDitherInfo *)
406
0
{
407
0
    convertARGBToARGB32PM_sse4<false>(buffer, reinterpret_cast<const uint *>(src) + index, count);
408
0
    return buffer;
409
0
}
410
411
const uint *QT_FASTCALL fetchRGBA8888ToARGB32PM_sse4(uint *buffer, const uchar *src, int index, int count,
412
                                                     const QList<QRgb> *, QDitherInfo *)
413
0
{
414
0
    convertARGBToARGB32PM_sse4<true>(buffer, reinterpret_cast<const uint *>(src) + index, count);
415
0
    return buffer;
416
0
}
417
418
const QRgba64 *QT_FASTCALL fetchARGB32ToRGBA64PM_sse4(QRgba64 *buffer, const uchar *src, int index, int count,
419
                                                      const QList<QRgb> *, QDitherInfo *)
420
0
{
421
0
    convertARGBToRGBA64PM_sse4<false>(buffer, reinterpret_cast<const uint *>(src) + index, count);
422
0
    return buffer;
423
0
}
424
425
const QRgba64 *QT_FASTCALL fetchRGBA8888ToRGBA64PM_sse4(QRgba64 *buffer, const uchar *src, int index, int count,
426
                                                        const QList<QRgb> *, QDitherInfo *)
427
0
{
428
0
    convertARGBToRGBA64PM_sse4<true>(buffer, reinterpret_cast<const uint *>(src) + index, count);
429
0
    return buffer;
430
0
}
431
#endif // __haswell__
432
433
void QT_FASTCALL storeRGB32FromARGB32PM_sse4(uchar *dest, const uint *src, int index, int count,
434
                                             const QList<QRgb> *, QDitherInfo *)
435
0
{
436
0
    uint *d = reinterpret_cast<uint *>(dest) + index;
437
0
    convertARGBFromARGB32PM_sse4<false,true>(d, src, count);
438
0
}
439
440
void QT_FASTCALL storeARGB32FromARGB32PM_sse4(uchar *dest, const uint *src, int index, int count,
441
                                              const QList<QRgb> *, QDitherInfo *)
442
0
{
443
0
    uint *d = reinterpret_cast<uint *>(dest) + index;
444
0
    convertARGBFromARGB32PM_sse4<false,false>(d, src, count);
445
0
}
446
447
void QT_FASTCALL storeRGBA8888FromARGB32PM_sse4(uchar *dest, const uint *src, int index, int count,
448
                                                const QList<QRgb> *, QDitherInfo *)
449
0
{
450
0
    uint *d = reinterpret_cast<uint *>(dest) + index;
451
0
    convertARGBFromARGB32PM_sse4<true,false>(d, src, count);
452
0
}
453
454
void QT_FASTCALL storeRGBXFromARGB32PM_sse4(uchar *dest, const uint *src, int index, int count,
455
                                            const QList<QRgb> *, QDitherInfo *)
456
0
{
457
0
    uint *d = reinterpret_cast<uint *>(dest) + index;
458
0
    convertARGBFromARGB32PM_sse4<true,true>(d, src, count);
459
0
}
460
461
template<QtPixelOrder PixelOrder>
462
void QT_FASTCALL storeA2RGB30PMFromARGB32PM_sse4(uchar *dest, const uint *src, int index, int count,
463
                                                 const QList<QRgb> *, QDitherInfo *)
464
0
{
465
0
    uint *d = reinterpret_cast<uint *>(dest) + index;
466
0
    for (int i = 0; i < count; ++i)
467
0
        d[i] = qConvertArgb32ToA2rgb30_sse4<PixelOrder>(src[i]);
468
0
}
Unexecuted instantiation: void storeA2RGB30PMFromARGB32PM_sse4<(QtPixelOrder)1>(unsigned char*, unsigned int const*, int, int, QList<unsigned int> const*, QDitherInfo*)
Unexecuted instantiation: void storeA2RGB30PMFromARGB32PM_sse4<(QtPixelOrder)0>(unsigned char*, unsigned int const*, int, int, QList<unsigned int> const*, QDitherInfo*)
469
470
template
471
void QT_FASTCALL storeA2RGB30PMFromARGB32PM_sse4<PixelOrderBGR>(uchar *dest, const uint *src, int index, int count,
472
                                                                const QList<QRgb> *, QDitherInfo *);
473
template
474
void QT_FASTCALL storeA2RGB30PMFromARGB32PM_sse4<PixelOrderRGB>(uchar *dest, const uint *src, int index, int count,
475
                                                                const QList<QRgb> *, QDitherInfo *);
476
477
#if QT_CONFIG(raster_64bit)
478
void QT_FASTCALL destStore64ARGB32_sse4(QRasterBuffer *rasterBuffer, int x, int y, const QRgba64 *buffer, int length)
479
0
{
480
0
    uint *dest = (uint*)rasterBuffer->scanLine(y) + x;
481
0
    convertARGBFromRGBA64PM_sse4<false>(dest, buffer, length);
482
0
}
483
484
void QT_FASTCALL destStore64RGBA8888_sse4(QRasterBuffer *rasterBuffer, int x, int y, const QRgba64 *buffer, int length)
485
0
{
486
0
    uint *dest = (uint*)rasterBuffer->scanLine(y) + x;
487
0
    convertARGBFromRGBA64PM_sse4<true>(dest, buffer, length);
488
0
}
489
#endif
490
491
void QT_FASTCALL storeARGB32FromRGBA64PM_sse4(uchar *dest, const QRgba64 *src, int index, int count,
492
                                              const QList<QRgb> *, QDitherInfo *)
493
0
{
494
0
    uint *d = (uint*)dest + index;
495
0
    convertARGBFromRGBA64PM_sse4<false>(d, src, count);
496
0
}
497
498
void QT_FASTCALL storeRGBA8888FromRGBA64PM_sse4(uchar *dest, const QRgba64 *src, int index, int count,
499
                                                const QList<QRgb> *, QDitherInfo *)
500
0
{
501
0
    uint *d = (uint*)dest + index;
502
0
    convertARGBFromRGBA64PM_sse4<true>(d, src, count);
503
0
}
504
505
void QT_FASTCALL storeRGBA64FromRGBA64PM_sse4(uchar *dest, const QRgba64 *src, int index, int count,
506
                                              const QList<QRgb> *, QDitherInfo *)
507
0
{
508
0
    QRgba64 *d = (QRgba64 *)dest + index;
509
0
    convertRGBA64FromRGBA64PM_sse4<false>(d, src, count);
510
0
}
511
512
void QT_FASTCALL storeRGBx64FromRGBA64PM_sse4(uchar *dest, const QRgba64 *src, int index, int count,
513
                                              const QList<QRgb> *, QDitherInfo *)
514
0
{
515
0
    QRgba64 *d = (QRgba64 *)dest + index;
516
0
    convertRGBA64FromRGBA64PM_sse4<true>(d, src, count);
517
0
}
518
519
#if QT_CONFIG(raster_fp)
520
const QRgbaFloat32 *QT_FASTCALL fetchRGBA32FToRGBA32F_sse4(QRgbaFloat32 *buffer, const uchar *src, int index, int count,
521
                                                       const QList<QRgb> *, QDitherInfo *)
522
0
{
523
0
    const QRgbaFloat32 *s = reinterpret_cast<const QRgbaFloat32 *>(src) + index;
524
0
    for (int i = 0; i < count; ++i) {
525
0
        __m128 vsf = _mm_load_ps(reinterpret_cast<const float *>(s + i));
526
0
        __m128 vsa = _mm_shuffle_ps(vsf, vsf, _MM_SHUFFLE(3, 3, 3, 3));
527
0
        vsf = _mm_mul_ps(vsf, vsa);
528
0
        vsf = _mm_insert_ps(vsf, vsa, 0x30);
529
0
        _mm_store_ps(reinterpret_cast<float *>(buffer + i), vsf);
530
0
    }
531
0
    return buffer;
532
0
}
533
534
void QT_FASTCALL storeRGBX32FFromRGBA32F_sse4(uchar *dest, const QRgbaFloat32 *src, int index, int count,
535
                                              const QList<QRgb> *, QDitherInfo *)
536
0
{
537
0
    QRgbaFloat32 *d = reinterpret_cast<QRgbaFloat32 *>(dest) + index;
538
0
    const __m128 zero = _mm_set_ps(1.0f, 0.0f, 0.0f, 0.0f);
539
0
    for (int i = 0; i < count; ++i) {
540
0
        __m128 vsf = _mm_load_ps(reinterpret_cast<const float *>(src + i));
541
0
        const __m128 vsa = _mm_shuffle_ps(vsf, vsf, _MM_SHUFFLE(3, 3, 3, 3));
542
0
        const float a = _mm_cvtss_f32(vsa);
543
0
        if (a == 1.0f)
544
0
        { }
545
0
        else if (a == 0.0f)
546
0
            vsf = zero;
547
0
        else {
548
0
            __m128 vsr = _mm_rcp_ps(vsa);
549
0
            vsr = _mm_sub_ps(_mm_add_ps(vsr, vsr), _mm_mul_ps(vsr, _mm_mul_ps(vsr, vsa)));
550
0
            vsf = _mm_mul_ps(vsf, vsr);
551
0
            vsf = _mm_insert_ps(vsf, _mm_set_ss(1.0f), 0x30);
552
0
        }
553
0
        _mm_store_ps(reinterpret_cast<float *>(d + i), vsf);
554
0
    }
555
0
}
556
557
void QT_FASTCALL storeRGBA32FFromRGBA32F_sse4(uchar *dest, const QRgbaFloat32 *src, int index, int count,
558
                                              const QList<QRgb> *, QDitherInfo *)
559
0
{
560
0
    QRgbaFloat32 *d = reinterpret_cast<QRgbaFloat32 *>(dest) + index;
561
0
    const __m128 zero = _mm_set1_ps(0.0f);
562
0
    for (int i = 0; i < count; ++i) {
563
0
        __m128 vsf = _mm_load_ps(reinterpret_cast<const float *>(src + i));
564
0
        const __m128 vsa = _mm_shuffle_ps(vsf, vsf, _MM_SHUFFLE(3, 3, 3, 3));
565
0
        const float a = _mm_cvtss_f32(vsa);
566
0
        if (a == 1.0f)
567
0
        { }
568
0
        else if (a == 0.0f)
569
0
            vsf = zero;
570
0
        else {
571
0
            __m128 vsr = _mm_rcp_ps(vsa);
572
0
            vsr = _mm_sub_ps(_mm_add_ps(vsr, vsr), _mm_mul_ps(vsr, _mm_mul_ps(vsr, vsa)));
573
            vsr = _mm_insert_ps(vsr, _mm_set_ss(1.0f), 0x30);
574
0
            vsf = _mm_mul_ps(vsf, vsr);
575
0
        }
576
0
        _mm_store_ps(reinterpret_cast<float *>(d + i), vsf);
577
0
    }
578
0
}
579
#endif
580
581
582
QT_END_NAMESPACE
583
584
#endif