xref: /aosp_15_r20/external/XNNPACK/src/f16-igemm/gen/5x16-minmax-avx2-broadcast.c (revision 4bdc94577ba0e567308109d787f7fec7b531ce36)
1 // Auto-generated file. Do not edit!
2 //   Template: src/f16-igemm/avx2-broadcast.c.in
3 //   Generator: tools/xngen
4 //
5 // Copyright 2022 Google LLC
6 //
7 // This source code is licensed under the BSD-style license found in the
8 // LICENSE file in the root directory of this source tree.
9 
10 #include <assert.h>
11 
12 #include <immintrin.h>
13 
14 #include <xnnpack/igemm.h>
15 #include <xnnpack/intrinsics-polyfill.h>
16 
17 
xnn_f16_igemm_minmax_ukernel_5x16__avx2_broadcast(size_t mr,size_t nc,size_t kc,size_t ks,const void ** restrict a,const void * restrict w,void * restrict c,size_t cm_stride,size_t cn_stride,size_t a_offset,const void * zero,const union xnn_f16_minmax_params params[restrict XNN_MIN_ELEMENTS (1)])18 void xnn_f16_igemm_minmax_ukernel_5x16__avx2_broadcast(
19     size_t mr,
20     size_t nc,
21     size_t kc,
22     size_t ks,
23     const void**restrict a,
24     const void*restrict w,
25     void*restrict c,
26     size_t cm_stride,
27     size_t cn_stride,
28     size_t a_offset,
29     const void* zero,
30     const union xnn_f16_minmax_params params[restrict XNN_MIN_ELEMENTS(1)])
31 {
32   assert(mr != 0);
33   assert(mr <= 5);
34   assert(nc != 0);
35   assert(kc != 0);
36   assert(kc % sizeof(uint16_t) == 0);
37   assert(ks != 0);
38   assert(ks % (5 * sizeof(void*)) == 0);
39   assert(a_offset % sizeof(uint16_t) == 0);
40   assert(a != NULL);
41   assert(w != NULL);
42   assert(c != NULL);
43 
44   uint16_t* c0 = c;
45   uint16_t* c1 = (uint16_t*) ((uintptr_t) c0 + cm_stride);
46   if XNN_UNPREDICTABLE(mr < 2) {
47     c1 = c0;
48   }
49   uint16_t* c2 = (uint16_t*) ((uintptr_t) c1 + cm_stride);
50   if XNN_UNPREDICTABLE(mr <= 2) {
51     c2 = c1;
52   }
53   uint16_t* c3 = (uint16_t*) ((uintptr_t) c2 + cm_stride);
54   if XNN_UNPREDICTABLE(mr < 4) {
55     c3 = c2;
56   }
57   uint16_t* c4 = (uint16_t*) ((uintptr_t) c3 + cm_stride);
58   if XNN_UNPREDICTABLE(mr <= 4) {
59     c4 = c3;
60   }
61 
62   do {
63     __m256 vacc0x01234567 = _mm256_cvtph_ps(_mm_load_si128((const __m128i*) w));
64     __m256 vacc0x89ABCDEF = _mm256_cvtph_ps(_mm_load_si128((const __m128i*) ((const uint16_t*) w + 8)));
65     __m256 vacc1x01234567 = vacc0x01234567;
66     __m256 vacc1x89ABCDEF = vacc0x89ABCDEF;
67     __m256 vacc2x01234567 = vacc0x01234567;
68     __m256 vacc2x89ABCDEF = vacc0x89ABCDEF;
69     __m256 vacc3x01234567 = vacc0x01234567;
70     __m256 vacc3x89ABCDEF = vacc0x89ABCDEF;
71     __m256 vacc4x01234567 = vacc0x01234567;
72     __m256 vacc4x89ABCDEF = vacc0x89ABCDEF;
73     w = (const uint16_t*) w + 16;
74 
75     size_t p = ks;
76     do {
77       const uint16_t* restrict a0 = (const uint16_t*) a[0];
78       assert(a0 != NULL);
79       if XNN_UNPREDICTABLE(a0 != zero) {
80         a0 = (const uint16_t*) ((uintptr_t) a0 + a_offset);
81       }
82       const uint16_t* restrict a1 = (const uint16_t*) a[1];
83       assert(a1 != NULL);
84       if XNN_UNPREDICTABLE(a1 != zero) {
85         a1 = (const uint16_t*) ((uintptr_t) a1 + a_offset);
86       }
87       const uint16_t* restrict a2 = (const uint16_t*) a[2];
88       assert(a2 != NULL);
89       if XNN_UNPREDICTABLE(a2 != zero) {
90         a2 = (const uint16_t*) ((uintptr_t) a2 + a_offset);
91       }
92       const uint16_t* restrict a3 = (const uint16_t*) a[3];
93       assert(a3 != NULL);
94       if XNN_UNPREDICTABLE(a3 != zero) {
95         a3 = (const uint16_t*) ((uintptr_t) a3 + a_offset);
96       }
97       const uint16_t* restrict a4 = (const uint16_t*) a[4];
98       assert(a4 != NULL);
99       if XNN_UNPREDICTABLE(a4 != zero) {
100         a4 = (const uint16_t*) ((uintptr_t) a4 + a_offset);
101       }
102       a += 5;
103 
104       size_t k = kc;
105       do {
106         const __m256 vb01234567 = _mm256_cvtph_ps(_mm_load_si128((const __m128i*) w));
107         const __m256 vb89ABCDEF = _mm256_cvtph_ps(_mm_load_si128((const __m128i*) ((const uint16_t*) w + 8)));
108         w = (const uint16_t*) w + 16;
109 
110         const __m256 va0 = _mm256_cvtph_ps(_mm_set1_epi16((short) *a0));
111         a0 += 1;
112         const __m256 va1 = _mm256_cvtph_ps(_mm_set1_epi16((short) *a1));
113         a1 += 1;
114         const __m256 va2 = _mm256_cvtph_ps(_mm_set1_epi16((short) *a2));
115         a2 += 1;
116         const __m256 va3 = _mm256_cvtph_ps(_mm_set1_epi16((short) *a3));
117         a3 += 1;
118         const __m256 va4 = _mm256_cvtph_ps(_mm_set1_epi16((short) *a4));
119         a4 += 1;
120 
121         vacc0x01234567 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va0, vb01234567, vacc0x01234567), _MM_FROUND_NO_EXC));
122         vacc0x89ABCDEF = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va0, vb89ABCDEF, vacc0x89ABCDEF), _MM_FROUND_NO_EXC));
123         vacc1x01234567 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va1, vb01234567, vacc1x01234567), _MM_FROUND_NO_EXC));
124         vacc1x89ABCDEF = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va1, vb89ABCDEF, vacc1x89ABCDEF), _MM_FROUND_NO_EXC));
125         vacc2x01234567 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va2, vb01234567, vacc2x01234567), _MM_FROUND_NO_EXC));
126         vacc2x89ABCDEF = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va2, vb89ABCDEF, vacc2x89ABCDEF), _MM_FROUND_NO_EXC));
127         vacc3x01234567 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va3, vb01234567, vacc3x01234567), _MM_FROUND_NO_EXC));
128         vacc3x89ABCDEF = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va3, vb89ABCDEF, vacc3x89ABCDEF), _MM_FROUND_NO_EXC));
129         vacc4x01234567 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va4, vb01234567, vacc4x01234567), _MM_FROUND_NO_EXC));
130         vacc4x89ABCDEF = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_fmadd_ps(va4, vb89ABCDEF, vacc4x89ABCDEF), _MM_FROUND_NO_EXC));
131 
132         k -= sizeof(uint16_t);
133       } while (k != 0);
134       p -= 5 * sizeof(void*);
135     } while (p != 0);
136 
137     const __m256 vmin = _mm256_load_ps(params->avx.min);
138     vacc0x01234567 = _mm256_max_ps(vacc0x01234567, vmin);
139     vacc1x01234567 = _mm256_max_ps(vacc1x01234567, vmin);
140     vacc2x01234567 = _mm256_max_ps(vacc2x01234567, vmin);
141     vacc3x01234567 = _mm256_max_ps(vacc3x01234567, vmin);
142     vacc4x01234567 = _mm256_max_ps(vacc4x01234567, vmin);
143     vacc0x89ABCDEF = _mm256_max_ps(vacc0x89ABCDEF, vmin);
144     vacc1x89ABCDEF = _mm256_max_ps(vacc1x89ABCDEF, vmin);
145     vacc2x89ABCDEF = _mm256_max_ps(vacc2x89ABCDEF, vmin);
146     vacc3x89ABCDEF = _mm256_max_ps(vacc3x89ABCDEF, vmin);
147     vacc4x89ABCDEF = _mm256_max_ps(vacc4x89ABCDEF, vmin);
148 
149     const __m256 vmax = _mm256_load_ps(params->avx.max);
150     vacc0x01234567 = _mm256_min_ps(vacc0x01234567, vmax);
151     vacc1x01234567 = _mm256_min_ps(vacc1x01234567, vmax);
152     vacc2x01234567 = _mm256_min_ps(vacc2x01234567, vmax);
153     vacc3x01234567 = _mm256_min_ps(vacc3x01234567, vmax);
154     vacc4x01234567 = _mm256_min_ps(vacc4x01234567, vmax);
155     vacc0x89ABCDEF = _mm256_min_ps(vacc0x89ABCDEF, vmax);
156     vacc1x89ABCDEF = _mm256_min_ps(vacc1x89ABCDEF, vmax);
157     vacc2x89ABCDEF = _mm256_min_ps(vacc2x89ABCDEF, vmax);
158     vacc3x89ABCDEF = _mm256_min_ps(vacc3x89ABCDEF, vmax);
159     vacc4x89ABCDEF = _mm256_min_ps(vacc4x89ABCDEF, vmax);
160 
161     if XNN_LIKELY(nc >= 16) {
162       _mm_storeu_si128((__m128i*) c4, _mm256_cvtps_ph(vacc4x01234567, _MM_FROUND_NO_EXC));
163       _mm_storeu_si128((__m128i*) (c4 + 8), _mm256_cvtps_ph(vacc4x89ABCDEF, _MM_FROUND_NO_EXC));
164       c4 = (uint16_t*) ((uintptr_t) c4 + cn_stride);
165       _mm_storeu_si128((__m128i*) c3, _mm256_cvtps_ph(vacc3x01234567, _MM_FROUND_NO_EXC));
166       _mm_storeu_si128((__m128i*) (c3 + 8), _mm256_cvtps_ph(vacc3x89ABCDEF, _MM_FROUND_NO_EXC));
167       c3 = (uint16_t*) ((uintptr_t) c3 + cn_stride);
168       _mm_storeu_si128((__m128i*) c2, _mm256_cvtps_ph(vacc2x01234567, _MM_FROUND_NO_EXC));
169       _mm_storeu_si128((__m128i*) (c2 + 8), _mm256_cvtps_ph(vacc2x89ABCDEF, _MM_FROUND_NO_EXC));
170       c2 = (uint16_t*) ((uintptr_t) c2 + cn_stride);
171       _mm_storeu_si128((__m128i*) c1, _mm256_cvtps_ph(vacc1x01234567, _MM_FROUND_NO_EXC));
172       _mm_storeu_si128((__m128i*) (c1 + 8), _mm256_cvtps_ph(vacc1x89ABCDEF, _MM_FROUND_NO_EXC));
173       c1 = (uint16_t*) ((uintptr_t) c1 + cn_stride);
174       _mm_storeu_si128((__m128i*) c0, _mm256_cvtps_ph(vacc0x01234567, _MM_FROUND_NO_EXC));
175       _mm_storeu_si128((__m128i*) (c0 + 8), _mm256_cvtps_ph(vacc0x89ABCDEF, _MM_FROUND_NO_EXC));
176       c0 = (uint16_t*) ((uintptr_t) c0 + cn_stride);
177 
178       a = (const void**restrict) ((uintptr_t) a - ks);
179       nc -= 16;
180     } else {
181       __m128i vh4x01234567 = _mm256_cvtps_ph(vacc4x01234567, _MM_FROUND_NO_EXC);
182       __m128i vh3x01234567 = _mm256_cvtps_ph(vacc3x01234567, _MM_FROUND_NO_EXC);
183       __m128i vh2x01234567 = _mm256_cvtps_ph(vacc2x01234567, _MM_FROUND_NO_EXC);
184       __m128i vh1x01234567 = _mm256_cvtps_ph(vacc1x01234567, _MM_FROUND_NO_EXC);
185       __m128i vh0x01234567 = _mm256_cvtps_ph(vacc0x01234567, _MM_FROUND_NO_EXC);
186       if (nc & 8) {
187         _mm_storeu_si128((__m128i*) c4, vh4x01234567);
188         _mm_storeu_si128((__m128i*) c3, vh3x01234567);
189         _mm_storeu_si128((__m128i*) c2, vh2x01234567);
190         _mm_storeu_si128((__m128i*) c1, vh1x01234567);
191         _mm_storeu_si128((__m128i*) c0, vh0x01234567);
192 
193         vh4x01234567 = _mm256_cvtps_ph(vacc4x89ABCDEF, _MM_FROUND_NO_EXC);
194         vh3x01234567 = _mm256_cvtps_ph(vacc3x89ABCDEF, _MM_FROUND_NO_EXC);
195         vh2x01234567 = _mm256_cvtps_ph(vacc2x89ABCDEF, _MM_FROUND_NO_EXC);
196         vh1x01234567 = _mm256_cvtps_ph(vacc1x89ABCDEF, _MM_FROUND_NO_EXC);
197         vh0x01234567 = _mm256_cvtps_ph(vacc0x89ABCDEF, _MM_FROUND_NO_EXC);
198 
199         c4 += 8;
200         c3 += 8;
201         c2 += 8;
202         c1 += 8;
203         c0 += 8;
204       }
205       if (nc & 4) {
206         _mm_storel_epi64((__m128i*) c4, vh4x01234567);
207         _mm_storel_epi64((__m128i*) c3, vh3x01234567);
208         _mm_storel_epi64((__m128i*) c2, vh2x01234567);
209         _mm_storel_epi64((__m128i*) c1, vh1x01234567);
210         _mm_storel_epi64((__m128i*) c0, vh0x01234567);
211 
212         vh4x01234567 = _mm_unpackhi_epi64(vh4x01234567, vh4x01234567);
213         vh3x01234567 = _mm_unpackhi_epi64(vh3x01234567, vh3x01234567);
214         vh2x01234567 = _mm_unpackhi_epi64(vh2x01234567, vh2x01234567);
215         vh1x01234567 = _mm_unpackhi_epi64(vh1x01234567, vh1x01234567);
216         vh0x01234567 = _mm_unpackhi_epi64(vh0x01234567, vh0x01234567);
217 
218         c4 += 4;
219         c3 += 4;
220         c2 += 4;
221         c1 += 4;
222         c0 += 4;
223       }
224       if (nc & 2) {
225         _mm_storeu_si32(c4, vh4x01234567);
226         _mm_storeu_si32(c3, vh3x01234567);
227         _mm_storeu_si32(c2, vh2x01234567);
228         _mm_storeu_si32(c1, vh1x01234567);
229         _mm_storeu_si32(c0, vh0x01234567);
230 
231         vh4x01234567 = _mm_srli_epi64(vh4x01234567, 32);
232         vh3x01234567 = _mm_srli_epi64(vh3x01234567, 32);
233         vh2x01234567 = _mm_srli_epi64(vh2x01234567, 32);
234         vh1x01234567 = _mm_srli_epi64(vh1x01234567, 32);
235         vh0x01234567 = _mm_srli_epi64(vh0x01234567, 32);
236 
237         c4 += 2;
238         c3 += 2;
239         c2 += 2;
240         c1 += 2;
241         c0 += 2;
242       }
243       if (nc & 1) {
244         *c4 = _mm_extract_epi16(vh4x01234567, 0);
245         *c3 = _mm_extract_epi16(vh3x01234567, 0);
246         *c2 = _mm_extract_epi16(vh2x01234567, 0);
247         *c1 = _mm_extract_epi16(vh1x01234567, 0);
248         *c0 = _mm_extract_epi16(vh0x01234567, 0);
249       }
250 
251       nc = 0;
252     }
253   } while (nc != 0);
254 }
255