1 // Auto-generated file. Do not edit!
2 // Template: src/f16-spmm/neonfp16arith.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 <arm_neon.h>
13
14 #include <xnnpack/spmm.h>
15
16
xnn_f16_spmm_ukernel_16x1__neonfp16arith(uint32_t m,uint32_t n,const void * restrict input,const void * restrict weights,const int32_t * restrict widx_dmap,const uint32_t * restrict nidx_nnzmap,void * restrict output,const struct xnn_f16_output_params params[restrict static1])17 void xnn_f16_spmm_ukernel_16x1__neonfp16arith(
18 uint32_t m,
19 uint32_t n,
20 const void*restrict input,
21 const void*restrict weights,
22 const int32_t*restrict widx_dmap,
23 const uint32_t*restrict nidx_nnzmap,
24 void*restrict output,
25 const struct xnn_f16_output_params params[restrict static 1])
26 {
27 assert(m != 0);
28
29 const __fp16*restrict a = input;
30 __fp16*restrict c = output;
31
32 const float16x8_t vscale = vld1q_dup_f16((const __fp16*) ¶ms->scale);
33 const float16x8_t vmax = vld1q_dup_f16((const __fp16*) ¶ms->max);
34 const float16x8_t vmin = vld1q_dup_f16((const __fp16*) ¶ms->min);
35
36 size_t i = m;
37 while XNN_LIKELY(i >= 16) {
38 const __fp16*restrict w = weights;
39 const int32_t* dmap = widx_dmap;
40 const uint32_t* nnzmap = nidx_nnzmap;
41 size_t j = n;
42 do {
43 uint32_t nnz = *nnzmap++;
44 float16x8_t vacc01234567 = vld1q_dup_f16(w); w += 1;
45 float16x8_t vacc89ABCDEF = vacc01234567;
46 if XNN_LIKELY(nnz != 0) {
47 do {
48 const intptr_t diff = *dmap++;
49 const float16x8_t va01234567 = vld1q_f16(a);
50 const float16x8_t va89ABCDEF = vld1q_f16(a + 8);
51 a = (const __fp16*restrict) ((uintptr_t) a + (uintptr_t) diff);
52 const float16x8_t vb = vld1q_dup_f16(w); w += 1;
53 vacc01234567 = vfmaq_f16(vacc01234567, va01234567, vb);
54 vacc89ABCDEF = vfmaq_f16(vacc89ABCDEF, va89ABCDEF, vb);
55 } while (--nnz != 0);
56 }
57 float16x8_t vout01234567 = vmulq_f16(vacc01234567, vscale);
58 float16x8_t vout89ABCDEF = vmulq_f16(vacc89ABCDEF, vscale);
59 vout01234567 = vminq_f16(vout01234567, vmax);
60 vout89ABCDEF = vminq_f16(vout89ABCDEF, vmax);
61 vout01234567 = vmaxq_f16(vout01234567, vmin);
62 vout89ABCDEF = vmaxq_f16(vout89ABCDEF, vmin);
63 vst1q_f16(c, vout01234567);
64 vst1q_f16(c + 8, vout89ABCDEF);
65 c += m;
66 } while (--j != 0);
67 c -= m * n;
68 c += 16;
69 a += 16;
70 i -= 16;
71 }
72 if XNN_UNLIKELY(i != 0) {
73 if (i & 8) {
74 const __fp16*restrict w = weights;
75 const int32_t* dmap = widx_dmap;
76 const uint32_t* nnzmap = nidx_nnzmap;
77 size_t j = n;
78 do {
79 uint32_t nnz = *nnzmap++;
80 float16x8_t vacc01234567 = vld1q_dup_f16(w); w += 1;
81 if XNN_LIKELY(nnz != 0) {
82 do {
83 const intptr_t diff = *dmap++;
84 const float16x8_t va01234567 = vld1q_f16(a);
85 a = (const __fp16*restrict) ((uintptr_t) a + (uintptr_t) diff);
86 const float16x8_t vb = vld1q_dup_f16(w); w += 1;
87 vacc01234567 = vfmaq_f16(vacc01234567, va01234567, vb);
88 } while (--nnz != 0);
89 }
90 float16x8_t vout01234567 = vminq_f16(vacc01234567, vmax);
91 vout01234567 = vmaxq_f16(vout01234567, vmin);
92 vst1q_f16(c, vout01234567);
93 c += m;
94 } while (--j != 0);
95 c -= m * n;
96 c += 8;
97 a += 8;
98 }
99 if (i & 4) {
100 const __fp16*restrict w = weights;
101 const int32_t* dmap = widx_dmap;
102 const uint32_t* nnzmap = nidx_nnzmap;
103 size_t j = n;
104 do {
105 uint32_t nnz = *nnzmap++;
106 float16x4_t vacc0123 = vld1_dup_f16(w); w += 1;
107 if XNN_LIKELY(nnz != 0) {
108 do {
109 const intptr_t diff = *dmap++;
110 const float16x4_t va0123 = vld1_f16(a);
111 a = (const __fp16*restrict) ((uintptr_t) a + (uintptr_t) diff);
112 const float16x4_t vb = vld1_dup_f16(w); w += 1;
113 vacc0123 = vfma_f16(vacc0123, va0123, vb);
114 } while (--nnz != 0);
115 }
116 float16x4_t vout0123 = vmin_f16(vacc0123, vget_low_f16(vmax));
117 vout0123 = vmax_f16(vout0123, vget_low_f16(vmin));
118 vst1_f16(c, vout0123);
119 c += m;
120 } while (--j != 0);
121 c -= m * n;
122 c += 4;
123 a += 4;
124 }
125 if (i & 2) {
126 const __fp16*restrict w = weights;
127 const int32_t* dmap = widx_dmap;
128 const uint32_t* nnzmap = nidx_nnzmap;
129 size_t j = n;
130 do {
131 uint32_t nnz = *nnzmap++;
132 float16x4_t vacc01 = vld1_dup_f16(w); w += 1;
133 if XNN_LIKELY(nnz != 0) {
134 do {
135 const intptr_t diff = *dmap++;
136 const float16x4_t va01 = vreinterpret_f32_f16(vld1_dup_f32(__builtin_assume_aligned(a, 1)));
137 a = (const __fp16*restrict) ((uintptr_t) a + (uintptr_t) diff);
138 const float16x4_t vb = vld1_dup_f16(w); w += 1;
139 vacc01 = vfma_f16(vacc01, va01, vb);
140 } while (--nnz != 0);
141 }
142 float16x4_t vout01 = vmin_f16(vacc01, vget_low_f16(vmax));
143 vout01 = vmax_f16(vout01, vget_low_f16(vmin));
144 vst1_lane_f32(__builtin_assume_aligned(c, 1), vreinterpret_f16_f32(vout01), 0);
145 c += m;
146 } while (--j != 0);
147 c -= m * n;
148 c += 2;
149 a += 2;
150 }
151 if (i & 1) {
152 const __fp16*restrict w = weights;
153 const int32_t* dmap = widx_dmap;
154 const uint32_t* nnzmap = nidx_nnzmap;
155 size_t j = n;
156 do {
157 uint32_t nnz = *nnzmap++;
158 float16x4_t vacc0 = vld1_dup_f16(w); w += 1;
159 if XNN_LIKELY(nnz != 0) {
160 do {
161 const intptr_t diff = *dmap++;
162 const float16x4_t va0 = vld1_dup_f16(a);
163 a = (const __fp16*restrict) ((uintptr_t) a + (uintptr_t) diff);
164 const float16x4_t vb = vld1_dup_f16(w); w += 1;
165 vacc0 = vfma_f16(vacc0, va0, vb);
166 } while (--nnz != 0);
167 }
168 float16x4_t vout0 = vmin_f16(vacc0, vget_low_f16(vmax));
169 vout0 = vmax_f16(vout0, vget_low_f16(vmin));
170 vst1_lane_f16(c, vout0, 0);
171 c += m;
172 } while (--j != 0);
173 c -= m * n;
174 c += 1;
175 a += 1;
176 }
177 }
178 }
179