blob: 4d48c806e89f38b0a9c7a722750bb6e1809501e5 [file] [log] [blame]
Marat Dukhanfda12b82019-11-21 12:27:59 -08001// Auto-generated file. Do not edit!
2// Template: src/f32-igemm/avx-broadcast.c.in
3// Generator: tools/xngen
4//
5// Copyright 2019 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
16
17void xnn_f32_igemm_ukernel_4x8__avx_broadcast(
18 size_t mr,
19 size_t nc,
20 size_t kc,
21 size_t ks,
22 const float**restrict a,
23 const float*restrict w,
24 float*restrict c,
25 size_t cm_stride,
26 size_t cn_stride,
27 size_t a_offset,
28 const float* zero,
Marat Dukhaneb09a6b2020-04-08 17:34:32 -070029 const union xnn_f32_minmax_params params[restrict static 1])
Marat Dukhanfda12b82019-11-21 12:27:59 -080030{
31 assert(mr != 0);
32 assert(mr <= 4);
33 assert(nc != 0);
34 assert(kc != 0);
35 assert(kc % sizeof(float) == 0);
36 assert(ks != 0);
37 assert(ks % (4 * sizeof(void*)) == 0);
38 assert(a_offset % sizeof(float) == 0);
39 assert(a != NULL);
40 assert(w != NULL);
41 assert(c != NULL);
42
43 float* c0 = c;
44 float* c1 = (float*) ((uintptr_t) c0 + cm_stride);
45 if XNN_UNPREDICTABLE(mr < 2) {
46 c1 = c0;
47 }
48 float* c2 = (float*) ((uintptr_t) c1 + cm_stride);
49 if XNN_UNPREDICTABLE(mr <= 2) {
50 c2 = c1;
51 }
52 float* c3 = (float*) ((uintptr_t) c2 + cm_stride);
53 if XNN_UNPREDICTABLE(mr != 4) {
54 c3 = c2;
55 }
56
57 do {
58 __m256 vacc0x01234567 = _mm256_load_ps(w);
59 __m256 vacc1x01234567 = vacc0x01234567;
60 __m256 vacc2x01234567 = vacc0x01234567;
61 __m256 vacc3x01234567 = vacc0x01234567;
62 w += 8;
63
64 size_t p = ks;
65 do {
66 const float* restrict a0 = a[0];
67 assert(a0 != NULL);
68 if XNN_UNPREDICTABLE(a0 != zero) {
69 a0 = (const float*) ((uintptr_t) a0 + a_offset);
70 }
71 const float* restrict a1 = a[1];
72 assert(a1 != NULL);
73 if XNN_UNPREDICTABLE(a1 != zero) {
74 a1 = (const float*) ((uintptr_t) a1 + a_offset);
75 }
76 const float* restrict a2 = a[2];
77 assert(a2 != NULL);
78 if XNN_UNPREDICTABLE(a2 != zero) {
79 a2 = (const float*) ((uintptr_t) a2 + a_offset);
80 }
81 const float* restrict a3 = a[3];
82 assert(a3 != NULL);
83 if XNN_UNPREDICTABLE(a3 != zero) {
84 a3 = (const float*) ((uintptr_t) a3 + a_offset);
85 }
86 a += 4;
87
88 size_t k = kc;
89 do {
90 const __m256 vb01234567 = _mm256_load_ps(w);
91 w += 8;
92
93 const __m256 va0 = _mm256_broadcast_ss(a0);
94 a0 += 1;
95 const __m256 va1 = _mm256_broadcast_ss(a1);
96 a1 += 1;
97 const __m256 va2 = _mm256_broadcast_ss(a2);
98 a2 += 1;
99 const __m256 va3 = _mm256_broadcast_ss(a3);
100 a3 += 1;
101
102 vacc0x01234567 = _mm256_add_ps(vacc0x01234567, _mm256_mul_ps(va0, vb01234567));
103 vacc1x01234567 = _mm256_add_ps(vacc1x01234567, _mm256_mul_ps(va1, vb01234567));
104 vacc2x01234567 = _mm256_add_ps(vacc2x01234567, _mm256_mul_ps(va2, vb01234567));
105 vacc3x01234567 = _mm256_add_ps(vacc3x01234567, _mm256_mul_ps(va3, vb01234567));
106 k -= sizeof(float);
107 } while (k != 0);
108 p -= 4 * sizeof(void*);
109 } while (p != 0);
110
111 const __m256 vmax = _mm256_broadcast_ps((const __m128*) params->sse.max);
112 vacc0x01234567 = _mm256_min_ps(vacc0x01234567, vmax);
113 vacc1x01234567 = _mm256_min_ps(vacc1x01234567, vmax);
114 vacc2x01234567 = _mm256_min_ps(vacc2x01234567, vmax);
115 vacc3x01234567 = _mm256_min_ps(vacc3x01234567, vmax);
116
117 const __m256 vmin = _mm256_broadcast_ps((const __m128*) params->sse.min);
118 vacc0x01234567 = _mm256_max_ps(vacc0x01234567, vmin);
119 vacc1x01234567 = _mm256_max_ps(vacc1x01234567, vmin);
120 vacc2x01234567 = _mm256_max_ps(vacc2x01234567, vmin);
121 vacc3x01234567 = _mm256_max_ps(vacc3x01234567, vmin);
122
123 if XNN_LIKELY(nc >= 8) {
124 _mm256_storeu_ps(c3, vacc3x01234567);
125 c3 = (float*) ((uintptr_t) c3 + cn_stride);
126 _mm256_storeu_ps(c2, vacc2x01234567);
127 c2 = (float*) ((uintptr_t) c2 + cn_stride);
128 _mm256_storeu_ps(c1, vacc1x01234567);
129 c1 = (float*) ((uintptr_t) c1 + cn_stride);
130 _mm256_storeu_ps(c0, vacc0x01234567);
131 c0 = (float*) ((uintptr_t) c0 + cn_stride);
132
133 a = (const float**restrict) ((uintptr_t) a - ks);
134 nc -= 8;
135 } else {
136 __m128 vacc3x0123 = _mm256_castps256_ps128(vacc3x01234567);
137 __m128 vacc2x0123 = _mm256_castps256_ps128(vacc2x01234567);
138 __m128 vacc1x0123 = _mm256_castps256_ps128(vacc1x01234567);
139 __m128 vacc0x0123 = _mm256_castps256_ps128(vacc0x01234567);
140 if (nc & 4) {
141 _mm_storeu_ps(c3, vacc3x0123);
142 _mm_storeu_ps(c2, vacc2x0123);
143 _mm_storeu_ps(c1, vacc1x0123);
144 _mm_storeu_ps(c0, vacc0x0123);
145
146 vacc3x0123 = _mm256_extractf128_ps(vacc3x01234567, 1);
147 vacc2x0123 = _mm256_extractf128_ps(vacc2x01234567, 1);
148 vacc1x0123 = _mm256_extractf128_ps(vacc1x01234567, 1);
149 vacc0x0123 = _mm256_extractf128_ps(vacc0x01234567, 1);
150
151 c3 += 4;
152 c2 += 4;
153 c1 += 4;
154 c0 += 4;
155 }
156 if (nc & 2) {
157 _mm_storel_pi((__m64*) c3, vacc3x0123);
158 _mm_storel_pi((__m64*) c2, vacc2x0123);
159 _mm_storel_pi((__m64*) c1, vacc1x0123);
160 _mm_storel_pi((__m64*) c0, vacc0x0123);
161
162 vacc3x0123 = _mm_movehl_ps(vacc3x0123, vacc3x0123);
163 vacc2x0123 = _mm_movehl_ps(vacc2x0123, vacc2x0123);
164 vacc1x0123 = _mm_movehl_ps(vacc1x0123, vacc1x0123);
165 vacc0x0123 = _mm_movehl_ps(vacc0x0123, vacc0x0123);
166
167 c3 += 2;
168 c2 += 2;
169 c1 += 2;
170 c0 += 2;
171 }
172 if (nc & 1) {
173 _mm_store_ss(c3, vacc3x0123);
174 _mm_store_ss(c2, vacc2x0123);
175 _mm_store_ss(c1, vacc1x0123);
176 _mm_store_ss(c0, vacc0x0123);
177 }
178
179 nc = 0;
180 }
181 } while (nc != 0);
182}