/src/qtbase/src/gui/painting/qdrawhelper_sse4.cpp
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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 |