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Marat Dukhan0f349c42019-11-27 11:58:54 -08001// 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$assert NR % 16 == 0
7$ABC = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ"
8#include <assert.h>
9
10#include <immintrin.h>
11
12#include <xnnpack/gemm.h>
Marat Dukhancfb31342019-12-05 10:42:57 -080013#include <xnnpack/intrinsics-polyfill.h>
Marat Dukhan0f349c42019-11-27 11:58:54 -080014
15
Marat Dukhande06f492020-04-09 00:19:31 -070016void xnn_f32_gemm${"inc" if INC else ""}_minmax_ukernel_${MR}x${NR}__avx512f_broadcast(
Marat Dukhan0f349c42019-11-27 11:58:54 -080017 size_t mr,
18 size_t nc,
19 size_t kc,
20 const float*restrict a,
21 size_t a_stride,
22 const float*restrict w,
23 float*restrict c,
24 size_t cm_stride,
25 size_t cn_stride,
26 $if INC:
27 const float*restrict acc,
Marat Dukhanf196d012020-04-15 11:50:03 -070028 const union xnn_f32_minmax_params params[restrict XNN_MIN_ELEMENTS(1)])
Marat Dukhan0f349c42019-11-27 11:58:54 -080029{
30 assert(mr != 0);
31 assert(mr <= ${MR});
32 assert(nc != 0);
33 assert(kc != 0);
34 assert(kc % sizeof(float) == 0);
35 assert(a != NULL);
36 assert(w != NULL);
37 assert(c != NULL);
38 $if INC:
39 assert(acc != NULL);
40
41 const float* a0 = a;
42 float* c0 = c;
43 $for M in range(1, MR):
44 const float* a${M} = (const float*) ((uintptr_t) a${M-1} + a_stride);
45 float* c${M} = (float*) ((uintptr_t) c${M-1} + cm_stride);
46 $if M % 2 == 0:
47 if XNN_UNPREDICTABLE(mr <= ${M}) {
48 a${M} = a${M-1};
49 c${M} = c${M-1};
50 }
51 $elif M + 1 == MR:
52 if XNN_UNPREDICTABLE(mr != ${M+1}) {
53 a${M} = a${M-1};
54 c${M} = c${M-1};
55 }
56 $else:
57 if XNN_UNPREDICTABLE(mr < ${M+1}) {
58 a${M} = a${M-1};
59 c${M} = c${M-1};
60 }
61
62 do {
63 $if INC:
64 $for M in range(MR):
65 $for N in range(0, NR, 16):
66 __m512 vacc${M}x${ABC[N:N+16]} = _mm512_load_ps(acc + ${M*NR+N});
67 acc += ${MR*NR};
68 $else:
69 __m512 vacc0x${ABC[0:16]} = _mm512_load_ps(w);
70 $for N in range(16, NR, 16):
71 __m512 vacc0x${ABC[N:N+16]} = _mm512_load_ps(w + ${N});
72 $for M in range(1, MR):
73 $for N in range(0, NR, 16):
74 __m512 vacc${M}x${ABC[N:N+16]} = vacc0x${ABC[N:N+16]};
75 w += ${NR};
76
77 size_t k = kc;
78 do {
79 const __m512 vb${ABC[0:16]} = _mm512_load_ps(w);
80 $for N in range(16, NR, 16):
81 const __m512 vb${ABC[N:N+16]} = _mm512_load_ps(w + ${N});
82 w += ${NR};
83
84 $for N in range(0, NR, 16):
85 $for M in range(MR):
86 vacc${M}x${ABC[N:N+16]} = _mm512_fmadd_ps(_mm512_set1_ps(*a${M}), vb${ABC[N:N+16]}, vacc${M}x${ABC[N:N+16]});
87
88 $for M in range(MR):
89 a${M} += 1;
90
91 k -= sizeof(float);
92 } while (k != 0);
93
Marat Dukhan104ae5e2021-05-24 13:41:57 -070094 const __m512 vmin = _mm512_set1_ps(params->scalar.min);
Marat Dukhan0f349c42019-11-27 11:58:54 -080095 $for N in range(0, NR, 16):
96 $for M in range(MR):
97 vacc${M}x${ABC[N:N+16]} = _mm512_max_ps(vacc${M}x${ABC[N:N+16]}, vmin);
98
Marat Dukhan104ae5e2021-05-24 13:41:57 -070099 const __m512 vmax = _mm512_set1_ps(params->scalar.max);
100 $for N in range(0, NR, 16):
101 $for M in range(MR):
102 vacc${M}x${ABC[N:N+16]} = _mm512_min_ps(vacc${M}x${ABC[N:N+16]}, vmax);
103
Marat Dukhan0f349c42019-11-27 11:58:54 -0800104 if XNN_LIKELY(nc >= ${NR}) {
105 $for M in reversed(range(MR)):
106 _mm512_storeu_ps(c${M}, vacc${M}x${ABC[0:16]});
107 $for N in range(16, NR, 16):
108 _mm512_storeu_ps(c${M} + ${N}, vacc${M}x${ABC[N:N+16]});
109 c${M} = (float*) ((uintptr_t) c${M} + cn_stride);
110
111 $for M in reversed(range(MR)):
112 a${M} = (const float*) ((uintptr_t) a${M} - kc);
113
114 nc -= ${NR};
115 } else {
116 $for LOG2N in reversed(range(4, NR.bit_length())):
117 $if NR != 1 << LOG2N:
118 if (nc & ${1 << LOG2N}) {
119 $if LOG2N >= 4:
120 $for M in reversed(range(MR)):
121 _mm512_storeu_ps(c${M}, vacc${M}x${ABC[0:16]});
122 $for N in range(16, 1 << LOG2N, 16):
123 _mm512_storeu_ps(c${M} + ${N}, vacc${M}x${ABC[N:N+16]});
124
125 $for M in reversed(range(MR)):
126 $for N in range(0, 1 << (LOG2N - 1), 16):
127 vacc${M}x${ABC[N:N+16]} = vacc${M}x${ABC[N + (1 << LOG2N):N + (1 << LOG2N)+16]};
128
129 $for M in reversed(range(MR)):
130 c${M} += ${1 << LOG2N};
131 }
132 $if LOG2N == 4:
133 if (nc & 15) {
134 // Prepare mask for valid 32-bit elements (depends on nc).
135 const __mmask16 vmask = _cvtu32_mask16((uint16_t) ((uint32_t) (UINT32_C(1) << nc) - UINT32_C(1)));
136
137 $for M in reversed(range(MR)):
138 _mm512_mask_storeu_ps(c${M}, vmask, vacc${M}x${ABC[0:16]});
139 }
140
141 nc = 0;
142 }
143 } while (nc != 0);
144}