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mtkleinc9adb052015-03-30 10:50:27 -07001/*
2 * Copyright 2015 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
8#ifndef SkNx_sse_DEFINED
9#define SkNx_sse_DEFINED
10
mtkleine18fa442016-06-09 13:40:56 -070011#include <immintrin.h>
mtklein244a6532016-04-19 14:21:30 -070012
mtkleinc9adb052015-03-30 10:50:27 -070013// This file may assume <= SSE2, but must check SK_CPU_SSE_LEVEL for anything more recent.
mtkleine4c0bee2016-02-09 10:35:27 -080014// If you do, make sure this is in a static inline function... anywhere else risks violating ODR.
mtkleinaa999cb2015-05-22 17:18:21 -070015
Mike Klein1e764642016-10-14 17:09:03 -040016namespace {
17
mtkleinc9adb052015-03-30 10:50:27 -070018template <>
mtklein6c221b42015-11-20 13:53:19 -080019class SkNx<2, float> {
mtkleinc9adb052015-03-30 10:50:27 -070020public:
Mike Klein7c78f3a2016-10-19 09:21:11 -040021 AI SkNx(const __m128& vec) : fVec(vec) {}
mtkleinc9adb052015-03-30 10:50:27 -070022
Mike Klein7c78f3a2016-10-19 09:21:11 -040023 AI SkNx() {}
24 AI SkNx(float val) : fVec(_mm_set1_ps(val)) {}
25 AI static SkNx Load(const void* ptr) {
mtklein507ef6d2016-01-31 08:02:47 -080026 return _mm_castsi128_ps(_mm_loadl_epi64((const __m128i*)ptr));
mtkleinc9adb052015-03-30 10:50:27 -070027 }
Mike Klein7c78f3a2016-10-19 09:21:11 -040028 AI SkNx(float a, float b) : fVec(_mm_setr_ps(a,b,0,0)) {}
mtkleinc9adb052015-03-30 10:50:27 -070029
Mike Klein7c78f3a2016-10-19 09:21:11 -040030 AI void store(void* ptr) const { _mm_storel_pi((__m64*)ptr, fVec); }
mtkleinc9adb052015-03-30 10:50:27 -070031
Mike Klein7c78f3a2016-10-19 09:21:11 -040032 AI SkNx operator + (const SkNx& o) const { return _mm_add_ps(fVec, o.fVec); }
33 AI SkNx operator - (const SkNx& o) const { return _mm_sub_ps(fVec, o.fVec); }
34 AI SkNx operator * (const SkNx& o) const { return _mm_mul_ps(fVec, o.fVec); }
35 AI SkNx operator / (const SkNx& o) const { return _mm_div_ps(fVec, o.fVec); }
mtkleinc9adb052015-03-30 10:50:27 -070036
Mike Klein7c78f3a2016-10-19 09:21:11 -040037 AI SkNx operator == (const SkNx& o) const { return _mm_cmpeq_ps (fVec, o.fVec); }
38 AI SkNx operator != (const SkNx& o) const { return _mm_cmpneq_ps(fVec, o.fVec); }
39 AI SkNx operator < (const SkNx& o) const { return _mm_cmplt_ps (fVec, o.fVec); }
40 AI SkNx operator > (const SkNx& o) const { return _mm_cmpgt_ps (fVec, o.fVec); }
41 AI SkNx operator <= (const SkNx& o) const { return _mm_cmple_ps (fVec, o.fVec); }
42 AI SkNx operator >= (const SkNx& o) const { return _mm_cmpge_ps (fVec, o.fVec); }
mtkleinc9adb052015-03-30 10:50:27 -070043
Mike Klein7c78f3a2016-10-19 09:21:11 -040044 AI static SkNx Min(const SkNx& l, const SkNx& r) { return _mm_min_ps(l.fVec, r.fVec); }
45 AI static SkNx Max(const SkNx& l, const SkNx& r) { return _mm_max_ps(l.fVec, r.fVec); }
mtkleinc9adb052015-03-30 10:50:27 -070046
Mike Klein7c78f3a2016-10-19 09:21:11 -040047 AI SkNx sqrt() const { return _mm_sqrt_ps (fVec); }
48 AI SkNx rsqrt() const { return _mm_rsqrt_ps(fVec); }
49 AI SkNx invert() const { return _mm_rcp_ps(fVec); }
mtkleinc9adb052015-03-30 10:50:27 -070050
Mike Klein7c78f3a2016-10-19 09:21:11 -040051 AI float operator[](int k) const {
mtkleinc9adb052015-03-30 10:50:27 -070052 SkASSERT(0 <= k && k < 2);
53 union { __m128 v; float fs[4]; } pun = {fVec};
mtkleina156a8f2015-04-03 06:16:13 -070054 return pun.fs[k&1];
mtkleinc9adb052015-03-30 10:50:27 -070055 }
56
Mike Klein7c78f3a2016-10-19 09:21:11 -040057 AI bool allTrue() const { return 0xff == (_mm_movemask_epi8(_mm_castps_si128(fVec)) & 0xff); }
58 AI bool anyTrue() const { return 0x00 != (_mm_movemask_epi8(_mm_castps_si128(fVec)) & 0xff); }
mtkleinb5e86112015-06-24 15:18:39 -070059
mtkleinc9adb052015-03-30 10:50:27 -070060 __m128 fVec;
61};
62
63template <>
mtklein6c221b42015-11-20 13:53:19 -080064class SkNx<4, float> {
mtkleinc9adb052015-03-30 10:50:27 -070065public:
Mike Klein7c78f3a2016-10-19 09:21:11 -040066 AI SkNx(const __m128& vec) : fVec(vec) {}
mtkleinc9adb052015-03-30 10:50:27 -070067
Mike Klein7c78f3a2016-10-19 09:21:11 -040068 AI SkNx() {}
69 AI SkNx(float val) : fVec( _mm_set1_ps(val) ) {}
70 AI SkNx(float a, float b, float c, float d) : fVec(_mm_setr_ps(a,b,c,d)) {}
mtkleinc9adb052015-03-30 10:50:27 -070071
Mike Klein7c78f3a2016-10-19 09:21:11 -040072 AI static SkNx Load(const void* ptr) { return _mm_loadu_ps((const float*)ptr); }
73 AI void store(void* ptr) const { _mm_storeu_ps((float*)ptr, fVec); }
mtklein9db43ac2015-12-01 07:10:21 -080074
Mike Klein7c78f3a2016-10-19 09:21:11 -040075 AI static void Load4(const void* ptr, SkNx* r, SkNx* g, SkNx* b, SkNx* a) {
Mike Klein33cbfd72016-10-06 11:09:27 -040076 __m128 v0 = _mm_loadu_ps(((float*)ptr) + 0),
77 v1 = _mm_loadu_ps(((float*)ptr) + 4),
78 v2 = _mm_loadu_ps(((float*)ptr) + 8),
79 v3 = _mm_loadu_ps(((float*)ptr) + 12);
80 _MM_TRANSPOSE4_PS(v0, v1, v2, v3);
81 *r = v0;
82 *g = v1;
83 *b = v2;
84 *a = v3;
85 }
Mike Klein7c78f3a2016-10-19 09:21:11 -040086 AI static void Store4(void* dst, const SkNx& r, const SkNx& g, const SkNx& b, const SkNx& a) {
Mike Klein33cbfd72016-10-06 11:09:27 -040087 __m128 v0 = r.fVec,
88 v1 = g.fVec,
89 v2 = b.fVec,
90 v3 = a.fVec;
91 _MM_TRANSPOSE4_PS(v0, v1, v2, v3);
92 _mm_storeu_ps(((float*) dst) + 0, v0);
93 _mm_storeu_ps(((float*) dst) + 4, v1);
94 _mm_storeu_ps(((float*) dst) + 8, v2);
95 _mm_storeu_ps(((float*) dst) + 12, v3);
96 }
97
Mike Klein7c78f3a2016-10-19 09:21:11 -040098 AI SkNx operator + (const SkNx& o) const { return _mm_add_ps(fVec, o.fVec); }
99 AI SkNx operator - (const SkNx& o) const { return _mm_sub_ps(fVec, o.fVec); }
100 AI SkNx operator * (const SkNx& o) const { return _mm_mul_ps(fVec, o.fVec); }
101 AI SkNx operator / (const SkNx& o) const { return _mm_div_ps(fVec, o.fVec); }
mtkleinc9adb052015-03-30 10:50:27 -0700102
Mike Klein7c78f3a2016-10-19 09:21:11 -0400103 AI SkNx operator == (const SkNx& o) const { return _mm_cmpeq_ps (fVec, o.fVec); }
104 AI SkNx operator != (const SkNx& o) const { return _mm_cmpneq_ps(fVec, o.fVec); }
105 AI SkNx operator < (const SkNx& o) const { return _mm_cmplt_ps (fVec, o.fVec); }
106 AI SkNx operator > (const SkNx& o) const { return _mm_cmpgt_ps (fVec, o.fVec); }
107 AI SkNx operator <= (const SkNx& o) const { return _mm_cmple_ps (fVec, o.fVec); }
108 AI SkNx operator >= (const SkNx& o) const { return _mm_cmpge_ps (fVec, o.fVec); }
mtkleinc9adb052015-03-30 10:50:27 -0700109
Mike Klein7c78f3a2016-10-19 09:21:11 -0400110 AI static SkNx Min(const SkNx& l, const SkNx& r) { return _mm_min_ps(l.fVec, r.fVec); }
111 AI static SkNx Max(const SkNx& l, const SkNx& r) { return _mm_max_ps(l.fVec, r.fVec); }
mtkleinc9adb052015-03-30 10:50:27 -0700112
Mike Klein7c78f3a2016-10-19 09:21:11 -0400113 AI SkNx abs() const { return _mm_andnot_ps(_mm_set1_ps(-0.0f), fVec); }
114 AI SkNx floor() const {
mtklein5608e2e2016-07-11 09:59:21 -0700115 #if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSE41
116 return _mm_floor_ps(fVec);
117 #else
mtklein244a6532016-04-19 14:21:30 -0700118 // Emulate _mm_floor_ps() with SSE2:
119 // - roundtrip through integers via truncation
120 // - subtract 1 if that's too big (possible for negative values).
121 // This restricts the domain of our inputs to a maximum somehwere around 2^31.
122 // Seems plenty big.
123 __m128 roundtrip = _mm_cvtepi32_ps(_mm_cvttps_epi32(fVec));
124 __m128 too_big = _mm_cmpgt_ps(roundtrip, fVec);
125 return _mm_sub_ps(roundtrip, _mm_and_ps(too_big, _mm_set1_ps(1.0f)));
mtklein5608e2e2016-07-11 09:59:21 -0700126 #endif
mtklein244a6532016-04-19 14:21:30 -0700127 }
mtkleinc33065a2016-01-15 12:16:40 -0800128
Mike Klein7c78f3a2016-10-19 09:21:11 -0400129 AI SkNx sqrt() const { return _mm_sqrt_ps (fVec); }
130 AI SkNx rsqrt() const { return _mm_rsqrt_ps(fVec); }
131 AI SkNx invert() const { return _mm_rcp_ps(fVec); }
mtkleinc9adb052015-03-30 10:50:27 -0700132
Mike Klein7c78f3a2016-10-19 09:21:11 -0400133 AI float operator[](int k) const {
mtkleinc9adb052015-03-30 10:50:27 -0700134 SkASSERT(0 <= k && k < 4);
135 union { __m128 v; float fs[4]; } pun = {fVec};
mtkleina156a8f2015-04-03 06:16:13 -0700136 return pun.fs[k&3];
mtkleinc9adb052015-03-30 10:50:27 -0700137 }
138
Mike Klein7c78f3a2016-10-19 09:21:11 -0400139 AI bool allTrue() const { return 0xffff == _mm_movemask_epi8(_mm_castps_si128(fVec)); }
140 AI bool anyTrue() const { return 0x0000 != _mm_movemask_epi8(_mm_castps_si128(fVec)); }
mtkleinb5e86112015-06-24 15:18:39 -0700141
Mike Klein7c78f3a2016-10-19 09:21:11 -0400142 AI SkNx thenElse(const SkNx& t, const SkNx& e) const {
mtklein5608e2e2016-07-11 09:59:21 -0700143 #if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSE41
msarettd2809572016-06-20 06:07:45 -0700144 return _mm_blendv_ps(e.fVec, t.fVec, fVec);
mtklein5608e2e2016-07-11 09:59:21 -0700145 #else
mtklein2aab22a2015-06-26 10:46:31 -0700146 return _mm_or_ps(_mm_and_ps (fVec, t.fVec),
147 _mm_andnot_ps(fVec, e.fVec));
mtklein5608e2e2016-07-11 09:59:21 -0700148 #endif
mtklein2aab22a2015-06-26 10:46:31 -0700149 }
150
mtkleinc9adb052015-03-30 10:50:27 -0700151 __m128 fVec;
152};
153
mtklein115acee2015-04-14 14:02:52 -0700154template <>
mtkleind05a8752016-07-29 10:10:15 -0700155class SkNx<4, int32_t> {
mtklein8273ca42016-02-09 11:32:51 -0800156public:
Mike Klein7c78f3a2016-10-19 09:21:11 -0400157 AI SkNx(const __m128i& vec) : fVec(vec) {}
mtklein8273ca42016-02-09 11:32:51 -0800158
Mike Klein7c78f3a2016-10-19 09:21:11 -0400159 AI SkNx() {}
160 AI SkNx(int32_t val) : fVec(_mm_set1_epi32(val)) {}
161 AI static SkNx Load(const void* ptr) { return _mm_loadu_si128((const __m128i*)ptr); }
162 AI SkNx(int32_t a, int32_t b, int32_t c, int32_t d) : fVec(_mm_setr_epi32(a,b,c,d)) {}
mtklein8273ca42016-02-09 11:32:51 -0800163
Mike Klein7c78f3a2016-10-19 09:21:11 -0400164 AI void store(void* ptr) const { _mm_storeu_si128((__m128i*)ptr, fVec); }
mtklein8273ca42016-02-09 11:32:51 -0800165
Mike Klein7c78f3a2016-10-19 09:21:11 -0400166 AI SkNx operator + (const SkNx& o) const { return _mm_add_epi32(fVec, o.fVec); }
167 AI SkNx operator - (const SkNx& o) const { return _mm_sub_epi32(fVec, o.fVec); }
168 AI SkNx operator * (const SkNx& o) const {
mtklein8273ca42016-02-09 11:32:51 -0800169 __m128i mul20 = _mm_mul_epu32(fVec, o.fVec),
170 mul31 = _mm_mul_epu32(_mm_srli_si128(fVec, 4), _mm_srli_si128(o.fVec, 4));
171 return _mm_unpacklo_epi32(_mm_shuffle_epi32(mul20, _MM_SHUFFLE(0,0,2,0)),
172 _mm_shuffle_epi32(mul31, _MM_SHUFFLE(0,0,2,0)));
173 }
174
Mike Klein7c78f3a2016-10-19 09:21:11 -0400175 AI SkNx operator & (const SkNx& o) const { return _mm_and_si128(fVec, o.fVec); }
176 AI SkNx operator | (const SkNx& o) const { return _mm_or_si128(fVec, o.fVec); }
177 AI SkNx operator ^ (const SkNx& o) const { return _mm_xor_si128(fVec, o.fVec); }
mtklein64f061a2016-06-17 12:09:16 -0700178
Mike Klein7c78f3a2016-10-19 09:21:11 -0400179 AI SkNx operator << (int bits) const { return _mm_slli_epi32(fVec, bits); }
180 AI SkNx operator >> (int bits) const { return _mm_srai_epi32(fVec, bits); }
mtklein8273ca42016-02-09 11:32:51 -0800181
Mike Klein7c78f3a2016-10-19 09:21:11 -0400182 AI SkNx operator == (const SkNx& o) const { return _mm_cmpeq_epi32 (fVec, o.fVec); }
183 AI SkNx operator < (const SkNx& o) const { return _mm_cmplt_epi32 (fVec, o.fVec); }
184 AI SkNx operator > (const SkNx& o) const { return _mm_cmpgt_epi32 (fVec, o.fVec); }
mtklein58e389b2016-07-15 07:00:11 -0700185
Mike Klein7c78f3a2016-10-19 09:21:11 -0400186 AI int32_t operator[](int k) const {
mtklein8273ca42016-02-09 11:32:51 -0800187 SkASSERT(0 <= k && k < 4);
mtkleind05a8752016-07-29 10:10:15 -0700188 union { __m128i v; int32_t is[4]; } pun = {fVec};
mtklein8273ca42016-02-09 11:32:51 -0800189 return pun.is[k&3];
190 }
mtklein8273ca42016-02-09 11:32:51 -0800191
Mike Klein7c78f3a2016-10-19 09:21:11 -0400192 AI SkNx thenElse(const SkNx& t, const SkNx& e) const {
mtklein58e389b2016-07-15 07:00:11 -0700193 #if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSE41
194 return _mm_blendv_epi8(e.fVec, t.fVec, fVec);
195 #else
196 return _mm_or_si128(_mm_and_si128 (fVec, t.fVec),
197 _mm_andnot_si128(fVec, e.fVec));
198 #endif
199 }
200
Yuqian Li7da6ba22017-07-12 13:36:05 -0400201 AI SkNx abs() const {
202#if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSSE3
203 return _mm_abs_epi32(fVec);
204#else
205 SkNx mask = (*this) >> 31;
206 return (mask ^ (*this)) - mask;
207#endif
208 }
209
210 AI static SkNx Min(const SkNx& x, const SkNx& y) {
211#if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSE41
212 return _mm_min_epi32(x.fVec, y.fVec);
213#else
Yuqian Lie94865e2017-07-14 10:17:04 -0400214 return (x < y).thenElse(x, y);
Yuqian Li7da6ba22017-07-12 13:36:05 -0400215#endif
216 }
217
218 AI static SkNx Max(const SkNx& x, const SkNx& y) {
219#if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSE41
220 return _mm_max_epi32(x.fVec, y.fVec);
221#else
Yuqian Lie94865e2017-07-14 10:17:04 -0400222 return (x > y).thenElse(x, y);
Yuqian Li7da6ba22017-07-12 13:36:05 -0400223#endif
224 }
225
mtklein8273ca42016-02-09 11:32:51 -0800226 __m128i fVec;
227};
228
229template <>
mtkleind05a8752016-07-29 10:10:15 -0700230class SkNx<4, uint32_t> {
231public:
Mike Klein7c78f3a2016-10-19 09:21:11 -0400232 AI SkNx(const __m128i& vec) : fVec(vec) {}
mtkleind05a8752016-07-29 10:10:15 -0700233
Mike Klein7c78f3a2016-10-19 09:21:11 -0400234 AI SkNx() {}
235 AI SkNx(uint32_t val) : fVec(_mm_set1_epi32(val)) {}
236 AI static SkNx Load(const void* ptr) { return _mm_loadu_si128((const __m128i*)ptr); }
237 AI SkNx(uint32_t a, uint32_t b, uint32_t c, uint32_t d) : fVec(_mm_setr_epi32(a,b,c,d)) {}
mtkleind05a8752016-07-29 10:10:15 -0700238
Mike Klein7c78f3a2016-10-19 09:21:11 -0400239 AI void store(void* ptr) const { _mm_storeu_si128((__m128i*)ptr, fVec); }
mtkleind05a8752016-07-29 10:10:15 -0700240
Mike Klein7c78f3a2016-10-19 09:21:11 -0400241 AI SkNx operator + (const SkNx& o) const { return _mm_add_epi32(fVec, o.fVec); }
242 AI SkNx operator - (const SkNx& o) const { return _mm_sub_epi32(fVec, o.fVec); }
mtkleind05a8752016-07-29 10:10:15 -0700243 // Not quite sure how to best do operator * in SSE2. We probably don't use it.
244
Mike Klein7c78f3a2016-10-19 09:21:11 -0400245 AI SkNx operator & (const SkNx& o) const { return _mm_and_si128(fVec, o.fVec); }
246 AI SkNx operator | (const SkNx& o) const { return _mm_or_si128(fVec, o.fVec); }
247 AI SkNx operator ^ (const SkNx& o) const { return _mm_xor_si128(fVec, o.fVec); }
mtkleind05a8752016-07-29 10:10:15 -0700248
Mike Klein7c78f3a2016-10-19 09:21:11 -0400249 AI SkNx operator << (int bits) const { return _mm_slli_epi32(fVec, bits); }
250 AI SkNx operator >> (int bits) const { return _mm_srli_epi32(fVec, bits); }
mtkleind05a8752016-07-29 10:10:15 -0700251
Mike Klein7c78f3a2016-10-19 09:21:11 -0400252 AI SkNx operator == (const SkNx& o) const { return _mm_cmpeq_epi32 (fVec, o.fVec); }
mtkleind05a8752016-07-29 10:10:15 -0700253 // operator < and > take a little extra fiddling to make work for unsigned ints.
254
Mike Klein7c78f3a2016-10-19 09:21:11 -0400255 AI uint32_t operator[](int k) const {
mtkleind05a8752016-07-29 10:10:15 -0700256 SkASSERT(0 <= k && k < 4);
257 union { __m128i v; uint32_t us[4]; } pun = {fVec};
258 return pun.us[k&3];
259 }
260
Mike Klein7c78f3a2016-10-19 09:21:11 -0400261 AI SkNx thenElse(const SkNx& t, const SkNx& e) const {
mtkleind05a8752016-07-29 10:10:15 -0700262 #if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSE41
263 return _mm_blendv_epi8(e.fVec, t.fVec, fVec);
264 #else
265 return _mm_or_si128(_mm_and_si128 (fVec, t.fVec),
266 _mm_andnot_si128(fVec, e.fVec));
267 #endif
268 }
269
270 __m128i fVec;
271};
272
273
274template <>
mtklein6c221b42015-11-20 13:53:19 -0800275class SkNx<4, uint16_t> {
mtklein115acee2015-04-14 14:02:52 -0700276public:
Mike Klein7c78f3a2016-10-19 09:21:11 -0400277 AI SkNx(const __m128i& vec) : fVec(vec) {}
mtklein115acee2015-04-14 14:02:52 -0700278
Mike Klein7c78f3a2016-10-19 09:21:11 -0400279 AI SkNx() {}
280 AI SkNx(uint16_t val) : fVec(_mm_set1_epi16(val)) {}
281 AI SkNx(uint16_t a, uint16_t b, uint16_t c, uint16_t d)
282 : fVec(_mm_setr_epi16(a,b,c,d,0,0,0,0)) {}
mtklein115acee2015-04-14 14:02:52 -0700283
Mike Klein7c78f3a2016-10-19 09:21:11 -0400284 AI static SkNx Load(const void* ptr) { return _mm_loadl_epi64((const __m128i*)ptr); }
285 AI void store(void* ptr) const { _mm_storel_epi64((__m128i*)ptr, fVec); }
mtklein115acee2015-04-14 14:02:52 -0700286
Mike Klein7c78f3a2016-10-19 09:21:11 -0400287 AI static void Load4(const void* ptr, SkNx* r, SkNx* g, SkNx* b, SkNx* a) {
Mike Klein33cbfd72016-10-06 11:09:27 -0400288 __m128i lo = _mm_loadu_si128(((__m128i*)ptr) + 0),
289 hi = _mm_loadu_si128(((__m128i*)ptr) + 1);
290 __m128i even = _mm_unpacklo_epi16(lo, hi), // r0 r2 g0 g2 b0 b2 a0 a2
291 odd = _mm_unpackhi_epi16(lo, hi); // r1 r3 ...
292 __m128i rg = _mm_unpacklo_epi16(even, odd), // r0 r1 r2 r3 g0 g1 g2 g3
293 ba = _mm_unpackhi_epi16(even, odd); // b0 b1 ... a0 a1 ...
294 *r = rg;
295 *g = _mm_srli_si128(rg, 8);
296 *b = ba;
297 *a = _mm_srli_si128(ba, 8);
298 }
Matt Sarett5bee0b62017-01-19 12:04:32 -0500299 AI static void Load3(const void* ptr, SkNx* r, SkNx* g, SkNx* b) {
300 // The idea here is to get 4 vectors that are R G B _ _ _ _ _.
301 // The second load is at a funny location to make sure we don't read past
302 // the bounds of memory. This is fine, we just need to shift it a little bit.
303 const uint8_t* ptr8 = (const uint8_t*) ptr;
304 __m128i rgb0 = _mm_loadu_si128((const __m128i*) (ptr8 + 0));
305 __m128i rgb1 = _mm_srli_si128(rgb0, 3*2);
306 __m128i rgb2 = _mm_srli_si128(_mm_loadu_si128((const __m128i*) (ptr8 + 4*2)), 2*2);
307 __m128i rgb3 = _mm_srli_si128(rgb2, 3*2);
308
309 __m128i rrggbb01 = _mm_unpacklo_epi16(rgb0, rgb1);
310 __m128i rrggbb23 = _mm_unpacklo_epi16(rgb2, rgb3);
311 *r = _mm_unpacklo_epi32(rrggbb01, rrggbb23);
312 *g = _mm_srli_si128(r->fVec, 4*2);
313 *b = _mm_unpackhi_epi32(rrggbb01, rrggbb23);
314 }
Mike Klein7c78f3a2016-10-19 09:21:11 -0400315 AI static void Store4(void* dst, const SkNx& r, const SkNx& g, const SkNx& b, const SkNx& a) {
Mike Klein33cbfd72016-10-06 11:09:27 -0400316 __m128i rg = _mm_unpacklo_epi16(r.fVec, g.fVec);
317 __m128i ba = _mm_unpacklo_epi16(b.fVec, a.fVec);
318 __m128i lo = _mm_unpacklo_epi32(rg, ba);
319 __m128i hi = _mm_unpackhi_epi32(rg, ba);
320 _mm_storeu_si128(((__m128i*) dst) + 0, lo);
321 _mm_storeu_si128(((__m128i*) dst) + 1, hi);
322 }
323
Mike Klein7c78f3a2016-10-19 09:21:11 -0400324 AI SkNx operator + (const SkNx& o) const { return _mm_add_epi16(fVec, o.fVec); }
325 AI SkNx operator - (const SkNx& o) const { return _mm_sub_epi16(fVec, o.fVec); }
326 AI SkNx operator * (const SkNx& o) const { return _mm_mullo_epi16(fVec, o.fVec); }
Matt Sarett379938e2017-01-12 18:34:29 -0500327 AI SkNx operator & (const SkNx& o) const { return _mm_and_si128(fVec, o.fVec); }
328 AI SkNx operator | (const SkNx& o) const { return _mm_or_si128(fVec, o.fVec); }
mtklein115acee2015-04-14 14:02:52 -0700329
Mike Klein7c78f3a2016-10-19 09:21:11 -0400330 AI SkNx operator << (int bits) const { return _mm_slli_epi16(fVec, bits); }
331 AI SkNx operator >> (int bits) const { return _mm_srli_epi16(fVec, bits); }
mtklein115acee2015-04-14 14:02:52 -0700332
Mike Klein7c78f3a2016-10-19 09:21:11 -0400333 AI uint16_t operator[](int k) const {
mtklein115acee2015-04-14 14:02:52 -0700334 SkASSERT(0 <= k && k < 4);
mtkleine4c0bee2016-02-09 10:35:27 -0800335 union { __m128i v; uint16_t us[8]; } pun = {fVec};
336 return pun.us[k&3];
mtklein115acee2015-04-14 14:02:52 -0700337 }
mtkleind2ffd362015-05-12 06:11:21 -0700338
mtklein115acee2015-04-14 14:02:52 -0700339 __m128i fVec;
340};
341
342template <>
mtklein6c221b42015-11-20 13:53:19 -0800343class SkNx<8, uint16_t> {
mtklein115acee2015-04-14 14:02:52 -0700344public:
Mike Klein7c78f3a2016-10-19 09:21:11 -0400345 AI SkNx(const __m128i& vec) : fVec(vec) {}
mtklein115acee2015-04-14 14:02:52 -0700346
Mike Klein7c78f3a2016-10-19 09:21:11 -0400347 AI SkNx() {}
348 AI SkNx(uint16_t val) : fVec(_mm_set1_epi16(val)) {}
349 AI SkNx(uint16_t a, uint16_t b, uint16_t c, uint16_t d,
350 uint16_t e, uint16_t f, uint16_t g, uint16_t h)
351 : fVec(_mm_setr_epi16(a,b,c,d,e,f,g,h)) {}
mtklein115acee2015-04-14 14:02:52 -0700352
Mike Klein7c78f3a2016-10-19 09:21:11 -0400353 AI static SkNx Load(const void* ptr) { return _mm_loadu_si128((const __m128i*)ptr); }
354 AI void store(void* ptr) const { _mm_storeu_si128((__m128i*)ptr, fVec); }
mtklein115acee2015-04-14 14:02:52 -0700355
Mike Klein7c78f3a2016-10-19 09:21:11 -0400356 AI static void Load4(const void* ptr, SkNx* r, SkNx* g, SkNx* b, SkNx* a) {
Mike Klein04adfda2016-10-12 09:52:55 -0400357 __m128i _01 = _mm_loadu_si128(((__m128i*)ptr) + 0),
358 _23 = _mm_loadu_si128(((__m128i*)ptr) + 1),
359 _45 = _mm_loadu_si128(((__m128i*)ptr) + 2),
360 _67 = _mm_loadu_si128(((__m128i*)ptr) + 3);
361
362 __m128i _02 = _mm_unpacklo_epi16(_01, _23), // r0 r2 g0 g2 b0 b2 a0 a2
363 _13 = _mm_unpackhi_epi16(_01, _23), // r1 r3 g1 g3 b1 b3 a1 a3
364 _46 = _mm_unpacklo_epi16(_45, _67),
365 _57 = _mm_unpackhi_epi16(_45, _67);
366
367 __m128i rg0123 = _mm_unpacklo_epi16(_02, _13), // r0 r1 r2 r3 g0 g1 g2 g3
368 ba0123 = _mm_unpackhi_epi16(_02, _13), // b0 b1 b2 b3 a0 a1 a2 a3
369 rg4567 = _mm_unpacklo_epi16(_46, _57),
370 ba4567 = _mm_unpackhi_epi16(_46, _57);
371
372 *r = _mm_unpacklo_epi64(rg0123, rg4567);
373 *g = _mm_unpackhi_epi64(rg0123, rg4567);
374 *b = _mm_unpacklo_epi64(ba0123, ba4567);
375 *a = _mm_unpackhi_epi64(ba0123, ba4567);
376 }
Matt Sarett5bee0b62017-01-19 12:04:32 -0500377 AI static void Load3(const void* ptr, SkNx* r, SkNx* g, SkNx* b) {
Matt Sarett5bee0b62017-01-19 12:04:32 -0500378 const uint8_t* ptr8 = (const uint8_t*) ptr;
379 __m128i rgb0 = _mm_loadu_si128((const __m128i*) (ptr8 + 0*2));
380 __m128i rgb1 = _mm_srli_si128(rgb0, 3*2);
381 __m128i rgb2 = _mm_loadu_si128((const __m128i*) (ptr8 + 6*2));
382 __m128i rgb3 = _mm_srli_si128(rgb2, 3*2);
383 __m128i rgb4 = _mm_loadu_si128((const __m128i*) (ptr8 + 12*2));
384 __m128i rgb5 = _mm_srli_si128(rgb4, 3*2);
385 __m128i rgb6 = _mm_srli_si128(_mm_loadu_si128((const __m128i*) (ptr8 + 16*2)), 2*2);
386 __m128i rgb7 = _mm_srli_si128(rgb6, 3*2);
387
388 __m128i rgb01 = _mm_unpacklo_epi16(rgb0, rgb1);
389 __m128i rgb23 = _mm_unpacklo_epi16(rgb2, rgb3);
390 __m128i rgb45 = _mm_unpacklo_epi16(rgb4, rgb5);
391 __m128i rgb67 = _mm_unpacklo_epi16(rgb6, rgb7);
392
393 __m128i rg03 = _mm_unpacklo_epi32(rgb01, rgb23);
394 __m128i bx03 = _mm_unpackhi_epi32(rgb01, rgb23);
395 __m128i rg47 = _mm_unpacklo_epi32(rgb45, rgb67);
396 __m128i bx47 = _mm_unpackhi_epi32(rgb45, rgb67);
397
398 *r = _mm_unpacklo_epi64(rg03, rg47);
399 *g = _mm_unpackhi_epi64(rg03, rg47);
400 *b = _mm_unpacklo_epi64(bx03, bx47);
401 }
Mike Klein7c78f3a2016-10-19 09:21:11 -0400402 AI static void Store4(void* ptr, const SkNx& r, const SkNx& g, const SkNx& b, const SkNx& a) {
Mike Klein04adfda2016-10-12 09:52:55 -0400403 __m128i rg0123 = _mm_unpacklo_epi16(r.fVec, g.fVec), // r0 g0 r1 g1 r2 g2 r3 g3
404 rg4567 = _mm_unpackhi_epi16(r.fVec, g.fVec), // r4 g4 r5 g5 r6 g6 r7 g7
405 ba0123 = _mm_unpacklo_epi16(b.fVec, a.fVec),
406 ba4567 = _mm_unpackhi_epi16(b.fVec, a.fVec);
407
408 _mm_storeu_si128((__m128i*)ptr + 0, _mm_unpacklo_epi32(rg0123, ba0123));
409 _mm_storeu_si128((__m128i*)ptr + 1, _mm_unpackhi_epi32(rg0123, ba0123));
410 _mm_storeu_si128((__m128i*)ptr + 2, _mm_unpacklo_epi32(rg4567, ba4567));
411 _mm_storeu_si128((__m128i*)ptr + 3, _mm_unpackhi_epi32(rg4567, ba4567));
412 }
413
Mike Klein7c78f3a2016-10-19 09:21:11 -0400414 AI SkNx operator + (const SkNx& o) const { return _mm_add_epi16(fVec, o.fVec); }
415 AI SkNx operator - (const SkNx& o) const { return _mm_sub_epi16(fVec, o.fVec); }
416 AI SkNx operator * (const SkNx& o) const { return _mm_mullo_epi16(fVec, o.fVec); }
Matt Sarett379938e2017-01-12 18:34:29 -0500417 AI SkNx operator & (const SkNx& o) const { return _mm_and_si128(fVec, o.fVec); }
418 AI SkNx operator | (const SkNx& o) const { return _mm_or_si128(fVec, o.fVec); }
mtklein115acee2015-04-14 14:02:52 -0700419
Mike Klein7c78f3a2016-10-19 09:21:11 -0400420 AI SkNx operator << (int bits) const { return _mm_slli_epi16(fVec, bits); }
421 AI SkNx operator >> (int bits) const { return _mm_srli_epi16(fVec, bits); }
mtklein115acee2015-04-14 14:02:52 -0700422
Mike Klein7c78f3a2016-10-19 09:21:11 -0400423 AI static SkNx Min(const SkNx& a, const SkNx& b) {
mtklein27e517a2015-05-14 17:53:04 -0700424 // No unsigned _mm_min_epu16, so we'll shift into a space where we can use the
425 // signed version, _mm_min_epi16, then shift back.
426 const uint16_t top = 0x8000; // Keep this separate from _mm_set1_epi16 or MSVC will whine.
427 const __m128i top_8x = _mm_set1_epi16(top);
428 return _mm_add_epi8(top_8x, _mm_min_epi16(_mm_sub_epi8(a.fVec, top_8x),
429 _mm_sub_epi8(b.fVec, top_8x)));
430 }
431
Mike Klein7c78f3a2016-10-19 09:21:11 -0400432 AI SkNx thenElse(const SkNx& t, const SkNx& e) const {
mtklein4be181e2015-07-14 10:54:19 -0700433 return _mm_or_si128(_mm_and_si128 (fVec, t.fVec),
434 _mm_andnot_si128(fVec, e.fVec));
435 }
436
Mike Klein7c78f3a2016-10-19 09:21:11 -0400437 AI uint16_t operator[](int k) const {
mtklein115acee2015-04-14 14:02:52 -0700438 SkASSERT(0 <= k && k < 8);
mtkleine4c0bee2016-02-09 10:35:27 -0800439 union { __m128i v; uint16_t us[8]; } pun = {fVec};
440 return pun.us[k&7];
mtklein115acee2015-04-14 14:02:52 -0700441 }
mtkleind2ffd362015-05-12 06:11:21 -0700442
443 __m128i fVec;
444};
445
446template <>
mtklein6f37b4a2015-12-14 11:25:18 -0800447class SkNx<4, uint8_t> {
448public:
Mike Klein7c78f3a2016-10-19 09:21:11 -0400449 AI SkNx() {}
450 AI SkNx(const __m128i& vec) : fVec(vec) {}
451 AI SkNx(uint8_t a, uint8_t b, uint8_t c, uint8_t d)
herbfd5a2602016-03-01 07:01:23 -0800452 : fVec(_mm_setr_epi8(a,b,c,d, 0,0,0,0, 0,0,0,0, 0,0,0,0)) {}
453
454
Mike Klein7c78f3a2016-10-19 09:21:11 -0400455 AI static SkNx Load(const void* ptr) { return _mm_cvtsi32_si128(*(const int*)ptr); }
456 AI void store(void* ptr) const { *(int*)ptr = _mm_cvtsi128_si32(fVec); }
mtklein6f37b4a2015-12-14 11:25:18 -0800457
Mike Klein7c78f3a2016-10-19 09:21:11 -0400458 AI uint8_t operator[](int k) const {
herbfd5a2602016-03-01 07:01:23 -0800459 SkASSERT(0 <= k && k < 4);
460 union { __m128i v; uint8_t us[16]; } pun = {fVec};
461 return pun.us[k&3];
462 }
463
mtklein6f37b4a2015-12-14 11:25:18 -0800464 // TODO as needed
465
466 __m128i fVec;
467};
468
469template <>
mtklein6c221b42015-11-20 13:53:19 -0800470class SkNx<16, uint8_t> {
mtkleind2ffd362015-05-12 06:11:21 -0700471public:
Mike Klein7c78f3a2016-10-19 09:21:11 -0400472 AI SkNx(const __m128i& vec) : fVec(vec) {}
mtkleind2ffd362015-05-12 06:11:21 -0700473
Mike Klein7c78f3a2016-10-19 09:21:11 -0400474 AI SkNx() {}
475 AI SkNx(uint8_t val) : fVec(_mm_set1_epi8(val)) {}
476 AI static SkNx Load(const void* ptr) { return _mm_loadu_si128((const __m128i*)ptr); }
477 AI SkNx(uint8_t a, uint8_t b, uint8_t c, uint8_t d,
478 uint8_t e, uint8_t f, uint8_t g, uint8_t h,
479 uint8_t i, uint8_t j, uint8_t k, uint8_t l,
480 uint8_t m, uint8_t n, uint8_t o, uint8_t p)
mtkleind2ffd362015-05-12 06:11:21 -0700481 : fVec(_mm_setr_epi8(a,b,c,d, e,f,g,h, i,j,k,l, m,n,o,p)) {}
482
Mike Klein7c78f3a2016-10-19 09:21:11 -0400483 AI void store(void* ptr) const { _mm_storeu_si128((__m128i*)ptr, fVec); }
mtkleind2ffd362015-05-12 06:11:21 -0700484
Mike Klein7c78f3a2016-10-19 09:21:11 -0400485 AI SkNx saturatedAdd(const SkNx& o) const { return _mm_adds_epu8(fVec, o.fVec); }
mtklein6cbf18c2015-05-12 15:48:09 -0700486
Mike Klein7c78f3a2016-10-19 09:21:11 -0400487 AI SkNx operator + (const SkNx& o) const { return _mm_add_epi8(fVec, o.fVec); }
488 AI SkNx operator - (const SkNx& o) const { return _mm_sub_epi8(fVec, o.fVec); }
mtkleind2ffd362015-05-12 06:11:21 -0700489
Mike Klein7c78f3a2016-10-19 09:21:11 -0400490 AI static SkNx Min(const SkNx& a, const SkNx& b) { return _mm_min_epu8(a.fVec, b.fVec); }
491 AI SkNx operator < (const SkNx& o) const {
mtkleinb5e86112015-06-24 15:18:39 -0700492 // There's no unsigned _mm_cmplt_epu8, so we flip the sign bits then use a signed compare.
493 auto flip = _mm_set1_epi8(char(0x80));
494 return _mm_cmplt_epi8(_mm_xor_si128(flip, fVec), _mm_xor_si128(flip, o.fVec));
495 }
mtklein27e517a2015-05-14 17:53:04 -0700496
Mike Klein7c78f3a2016-10-19 09:21:11 -0400497 AI uint8_t operator[](int k) const {
mtkleind2ffd362015-05-12 06:11:21 -0700498 SkASSERT(0 <= k && k < 16);
mtkleine4c0bee2016-02-09 10:35:27 -0800499 union { __m128i v; uint8_t us[16]; } pun = {fVec};
500 return pun.us[k&15];
mtkleind2ffd362015-05-12 06:11:21 -0700501 }
502
Mike Klein7c78f3a2016-10-19 09:21:11 -0400503 AI SkNx thenElse(const SkNx& t, const SkNx& e) const {
mtkleinb5e86112015-06-24 15:18:39 -0700504 return _mm_or_si128(_mm_and_si128 (fVec, t.fVec),
505 _mm_andnot_si128(fVec, e.fVec));
506 }
507
mtklein115acee2015-04-14 14:02:52 -0700508 __m128i fVec;
509};
mtkleinc9adb052015-03-30 10:50:27 -0700510
Mike Klein7c78f3a2016-10-19 09:21:11 -0400511template<> AI /*static*/ Sk4f SkNx_cast<float, int32_t>(const Sk4i& src) {
mtklein0cf795f2016-02-17 07:23:36 -0800512 return _mm_cvtepi32_ps(src.fVec);
513}
Mike Klein7c78f3a2016-10-19 09:21:11 -0400514template<> AI /*static*/ Sk4f SkNx_cast<float, uint32_t>(const Sk4u& src) {
mtkleind05a8752016-07-29 10:10:15 -0700515 return SkNx_cast<float>(Sk4i::Load(&src));
516}
mtklein0cf795f2016-02-17 07:23:36 -0800517
Mike Klein7c78f3a2016-10-19 09:21:11 -0400518template <> AI /*static*/ Sk4i SkNx_cast<int32_t, float>(const Sk4f& src) {
mtklein0cf795f2016-02-17 07:23:36 -0800519 return _mm_cvttps_epi32(src.fVec);
520}
mtklein6c221b42015-11-20 13:53:19 -0800521
Mike Klein7c78f3a2016-10-19 09:21:11 -0400522template<> AI /*static*/ Sk4h SkNx_cast<uint16_t, int32_t>(const Sk4i& src) {
mtklein036e1832016-07-15 07:45:53 -0700523#if 0 && SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSE41
524 // TODO: This seems to be causing code generation problems. Investigate?
525 return _mm_packus_epi32(src.fVec);
526#elif SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSSE3
mtklein629f25a2016-02-08 05:54:38 -0800527 // With SSSE3, we can just shuffle the low 2 bytes from each lane right into place.
528 const int _ = ~0;
mtklein036e1832016-07-15 07:45:53 -0700529 return _mm_shuffle_epi8(src.fVec, _mm_setr_epi8(0,1, 4,5, 8,9, 12,13, _,_,_,_,_,_,_,_));
mtklein629f25a2016-02-08 05:54:38 -0800530#else
mtklein036e1832016-07-15 07:45:53 -0700531 // With SSE2, we have to sign extend our input, making _mm_packs_epi32 do the pack we want.
532 __m128i x = _mm_srai_epi32(_mm_slli_epi32(src.fVec, 16), 16);
533 return _mm_packs_epi32(x,x);
mtklein629f25a2016-02-08 05:54:38 -0800534#endif
mtklein2d340f22016-02-06 19:38:39 -0800535}
536
Mike Klein7c78f3a2016-10-19 09:21:11 -0400537template<> AI /*static*/ Sk4h SkNx_cast<uint16_t, float>(const Sk4f& src) {
mtkleind05a8752016-07-29 10:10:15 -0700538 return SkNx_cast<uint16_t>(SkNx_cast<int32_t>(src));
mtklein036e1832016-07-15 07:45:53 -0700539}
540
Mike Klein7c78f3a2016-10-19 09:21:11 -0400541template<> AI /*static*/ Sk4b SkNx_cast<uint8_t, float>(const Sk4f& src) {
mtklein97120a72016-02-12 14:19:06 -0800542 auto _32 = _mm_cvttps_epi32(src.fVec);
543#if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSSE3
544 const int _ = ~0;
545 return _mm_shuffle_epi8(_32, _mm_setr_epi8(0,4,8,12, _,_,_,_, _,_,_,_, _,_,_,_));
546#else
547 auto _16 = _mm_packus_epi16(_32, _32);
548 return _mm_packus_epi16(_16, _16);
549#endif
mtkleinc1eb3112016-02-11 08:10:22 -0800550}
551
Mike Klein06a65e22016-11-17 12:39:09 -0500552template<> AI /*static*/ Sk4i SkNx_cast<int32_t, uint8_t>(const Sk4b& src) {
mtklein97120a72016-02-12 14:19:06 -0800553#if SK_CPU_SSE_LEVEL >= SK_CPU_SSE_LEVEL_SSSE3
554 const int _ = ~0;
Mike Klein06a65e22016-11-17 12:39:09 -0500555 return _mm_shuffle_epi8(src.fVec, _mm_setr_epi8(0,_,_,_, 1,_,_,_, 2,_,_,_, 3,_,_,_));
mtklein97120a72016-02-12 14:19:06 -0800556#else
Mike Klein06a65e22016-11-17 12:39:09 -0500557 auto _16 = _mm_unpacklo_epi8(src.fVec, _mm_setzero_si128());
558 return _mm_unpacklo_epi16(_16, _mm_setzero_si128());
mtklein97120a72016-02-12 14:19:06 -0800559#endif
Mike Klein06a65e22016-11-17 12:39:09 -0500560}
561
562template<> AI /*static*/ Sk4f SkNx_cast<float, uint8_t>(const Sk4b& src) {
563 return _mm_cvtepi32_ps(SkNx_cast<int32_t>(src).fVec);
mtkleinc1eb3112016-02-11 08:10:22 -0800564}
mtklein97120a72016-02-12 14:19:06 -0800565
Mike Klein7c78f3a2016-10-19 09:21:11 -0400566template<> AI /*static*/ Sk4f SkNx_cast<float, uint16_t>(const Sk4h& src) {
mtklein97120a72016-02-12 14:19:06 -0800567 auto _32 = _mm_unpacklo_epi16(src.fVec, _mm_setzero_si128());
568 return _mm_cvtepi32_ps(_32);
mtklein2d340f22016-02-06 19:38:39 -0800569}
570
Mike Klein7c78f3a2016-10-19 09:21:11 -0400571template<> AI /*static*/ Sk16b SkNx_cast<uint8_t, float>(const Sk16f& src) {
mtkleinf8f90e42016-03-21 10:04:46 -0700572 Sk8f ab, cd;
573 SkNx_split(src, &ab, &cd);
574
575 Sk4f a,b,c,d;
576 SkNx_split(ab, &a, &b);
577 SkNx_split(cd, &c, &d);
578
579 return _mm_packus_epi16(_mm_packus_epi16(_mm_cvttps_epi32(a.fVec),
580 _mm_cvttps_epi32(b.fVec)),
581 _mm_packus_epi16(_mm_cvttps_epi32(c.fVec),
582 _mm_cvttps_epi32(d.fVec)));
mtklein97120a72016-02-12 14:19:06 -0800583}
584
Mike Klein7c78f3a2016-10-19 09:21:11 -0400585template<> AI /*static*/ Sk4h SkNx_cast<uint16_t, uint8_t>(const Sk4b& src) {
mtklein97120a72016-02-12 14:19:06 -0800586 return _mm_unpacklo_epi8(src.fVec, _mm_setzero_si128());
587}
588
Mike Klein7c78f3a2016-10-19 09:21:11 -0400589template<> AI /*static*/ Sk4b SkNx_cast<uint8_t, uint16_t>(const Sk4h& src) {
mtklein97120a72016-02-12 14:19:06 -0800590 return _mm_packus_epi16(src.fVec, src.fVec);
mtklein550e9b02016-01-20 11:55:51 -0800591}
592
Mike Klein7c78f3a2016-10-19 09:21:11 -0400593template<> AI /*static*/ Sk4i SkNx_cast<int32_t, uint16_t>(const Sk4h& src) {
mtklein58e389b2016-07-15 07:00:11 -0700594 return _mm_unpacklo_epi16(src.fVec, _mm_setzero_si128());
595}
596
Mike Klein7c78f3a2016-10-19 09:21:11 -0400597template<> AI /*static*/ Sk4b SkNx_cast<uint8_t, int32_t>(const Sk4i& src) {
msarett7d3ff712016-07-12 14:55:45 -0700598 return _mm_packus_epi16(_mm_packus_epi16(src.fVec, src.fVec), src.fVec);
599}
600
Mike Klein7c78f3a2016-10-19 09:21:11 -0400601template<> AI /*static*/ Sk4i SkNx_cast<int32_t, uint32_t>(const Sk4u& src) {
msarett15ee3de2016-08-02 11:30:30 -0700602 return src.fVec;
603}
604
Mike Klein7c78f3a2016-10-19 09:21:11 -0400605AI static Sk4i Sk4f_round(const Sk4f& x) {
msarett7d3ff712016-07-12 14:55:45 -0700606 return _mm_cvtps_epi32(x.fVec);
607}
608
Mike Klein1e764642016-10-14 17:09:03 -0400609} // namespace
610
mtkleinc9adb052015-03-30 10:50:27 -0700611#endif//SkNx_sse_DEFINED