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1 // Copyright 2019 Google LLC
2 //
3 // This source code is licensed under the BSD-style license found in the
4 // LICENSE file in the root directory of this source tree.
5 
6 #include <assert.h>
7 
8 #include <arm_neon.h>
9 
10 #include <xnnpack/avgpool.h>
11 
12 
xnn_f32_avgpool_ukernel_up9__neon(size_t n,size_t ks,size_t kc,const float ** input,const float * zero,float * output,size_t input_increment,size_t output_increment,const union xnn_f32_avgpool_params params[restrict static1])13 void xnn_f32_avgpool_ukernel_up9__neon(
14     size_t n,
15     size_t ks,
16     size_t kc,
17     const float** input,
18     const float* zero,
19     float* output,
20     size_t input_increment,
21     size_t output_increment,
22     const union xnn_f32_avgpool_params params[restrict static 1])
23 {
24   assert(n != 0);
25   assert(ks != 0);
26   assert(ks <= 9);
27   assert(kc != 0);
28 
29   const float32x4_t vmultiplier = vld1q_dup_f32(&params->scalar.multiplier);
30   const float32x4_t voutput_min = vld1q_dup_f32(&params->scalar.output_min);
31   const float32x4_t voutput_max = vld1q_dup_f32(&params->scalar.output_max);
32 
33   do {
34     const float* i0 = input[0];
35     const float* i1 = input[1];
36     const float* i2 = input[2];
37     const float* i3 = input[3];
38     const float* i4 = input[4];
39     const float* i5 = input[5];
40     const float* i6 = input[6];
41     const float* i7 = input[7];
42     const float* i8 = input[8];
43     input = (const float**) ((uintptr_t) input + input_increment);
44     if (ks < 2) {
45       i1 = zero;
46     }
47     if (ks <= 2) {
48       i2 = zero;
49     }
50     if (ks < 4) {
51       i3 = zero;
52     }
53     if (ks <= 4) {
54       i4 = zero;
55     }
56     if (ks < 6) {
57       i5 = zero;
58     }
59     if (ks <= 6) {
60       i6 = zero;
61     }
62     if (ks < 8) {
63       i7 = zero;
64     }
65     if (ks <= 8) {
66       i8 = zero;
67     }
68 
69     size_t k = kc;
70     while (k >= 4) {
71       const float32x4_t vi0 = vld1q_f32(i0); i0 += 4;
72       const float32x4_t vi1 = vld1q_f32(i1); i1 += 4;
73       const float32x4_t vi2 = vld1q_f32(i2); i2 += 4;
74       const float32x4_t vi3 = vld1q_f32(i3); i3 += 4;
75       const float32x4_t vi4 = vld1q_f32(i4); i4 += 4;
76       const float32x4_t vi5 = vld1q_f32(i5); i5 += 4;
77       const float32x4_t vi6 = vld1q_f32(i6); i6 += 4;
78       const float32x4_t vi7 = vld1q_f32(i7); i7 += 4;
79       const float32x4_t vi8 = vld1q_f32(i8); i8 += 4;
80 
81       const float32x4_t vsum01 = vaddq_f32(vi0, vi1);
82       const float32x4_t vsum23 = vaddq_f32(vi2, vi3);
83       const float32x4_t vsum45 = vaddq_f32(vi4, vi5);
84       const float32x4_t vsum67 = vaddq_f32(vi6, vi7);
85       const float32x4_t vsum018 = vaddq_f32(vsum01, vi8);
86       const float32x4_t vsum2345 = vaddq_f32(vsum23, vsum45);
87       const float32x4_t vsum01678 = vaddq_f32(vsum018, vsum67);
88       const float32x4_t vsum = vaddq_f32(vsum2345, vsum01678);
89 
90       float32x4_t vout = vmulq_f32(vsum, vmultiplier);
91       vout = vmaxq_f32(vout, voutput_min);
92       vout = vminq_f32(vout, voutput_max);
93 
94       vst1q_f32(output, vout); output += 4;
95 
96       k -= 4;
97     }
98     if (k != 0) {
99       const float32x4_t vi0 = vld1q_f32(i0);
100       const float32x4_t vi1 = vld1q_f32(i1);
101       const float32x4_t vi2 = vld1q_f32(i2);
102       const float32x4_t vi3 = vld1q_f32(i3);
103       const float32x4_t vi4 = vld1q_f32(i4);
104       const float32x4_t vi5 = vld1q_f32(i5);
105       const float32x4_t vi6 = vld1q_f32(i6);
106       const float32x4_t vi7 = vld1q_f32(i7);
107       const float32x4_t vi8 = vld1q_f32(i8);
108 
109       const float32x4_t vsum01 = vaddq_f32(vi0, vi1);
110       const float32x4_t vsum23 = vaddq_f32(vi2, vi3);
111       const float32x4_t vsum45 = vaddq_f32(vi4, vi5);
112       const float32x4_t vsum67 = vaddq_f32(vi6, vi7);
113       const float32x4_t vsum018 = vaddq_f32(vsum01, vi8);
114       const float32x4_t vsum2345 = vaddq_f32(vsum23, vsum45);
115       const float32x4_t vsum01678 = vaddq_f32(vsum018, vsum67);
116       const float32x4_t vsum = vaddq_f32(vsum2345, vsum01678);
117 
118       float32x4_t vout = vmulq_f32(vsum, vmultiplier);
119       vout = vmaxq_f32(vout, voutput_min);
120       vout = vminq_f32(vout, voutput_max);
121 
122       float32x2_t vout_lo = vget_low_f32(vout);
123       if (k & 2) {
124         vst1_f32(output, vout_lo); output += 2;
125         vout_lo = vget_high_f32(vout);
126       }
127       if (k & 1) {
128         vst1_lane_f32(output, vout_lo, 0); output += 1;
129       }
130     }
131     output = (float*) ((uintptr_t) output + output_increment);
132   } while (--n != 0);
133 }
134