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Dana Zlotnika538ae52022-02-21 13:12:41 +02001/*
2 * Copyright (c) 2021-2022 Arm Limited.
3 *
4 * SPDX-License-Identifier: MIT
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to
8 * deal in the Software without restriction, including without limitation the
9 * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
10 * sell copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in all
14 * copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
19 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
22 * SOFTWARE.
23 */
24
25#include "src/cpu/kernels/softmax/generic/sve2/impl.h"
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010026
Dana Zlotnika538ae52022-02-21 13:12:41 +020027#include "arm_compute/core/Types.h"
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010028
Dana Zlotnika538ae52022-02-21 13:12:41 +020029#include "src/core/NEON/wrapper/wrapper.h"
30
31namespace arm_compute
32{
33namespace cpu
34{
35template <typename ScalarType>
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010036void sve2_softmax_logits_1d_quantized(
37 const ITensor *in, const ITensor *max, void *const tmp, ITensor *out, float beta, bool is_log, const Window &window)
Dana Zlotnika538ae52022-02-21 13:12:41 +020038{
39 const int start_x = in->info()->valid_region().anchor.x();
40 const int input_width = in->info()->valid_region().shape.x();
41
42 const float scale_beta = -beta * in->info()->quantization_info().uniform().scale;
43 const auto scale_beta_vec = svdup_n_f32(scale_beta);
44
45 Iterator in_it(in, window);
46 Iterator max_it(max, window);
47 Iterator out_it(out, window);
48 const auto all_true_pg = wrapper::svptrue<ScalarType>();
49 using SVEType = typename wrapper::traits::sve_vector<ScalarType>::type;
50
51 const int inc_1 = static_cast<int>(svcntw());
52 const int inc_2 = static_cast<int>(2 * svcntw());
53 const int inc_3 = static_cast<int>(3 * svcntw());
54
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010055 execute_window_loop(
56 window,
57 [&](const Coordinates &)
Dana Zlotnika538ae52022-02-21 13:12:41 +020058 {
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010059 /* Get pointers */
60 const auto in_ptr = reinterpret_cast<const ScalarType *>(in_it.ptr()) + start_x;
61 const auto out_ptr = reinterpret_cast<ScalarType *>(out_it.ptr()) + start_x;
62 const auto tmp_ptr = reinterpret_cast<float *>(tmp);
Dana Zlotnika538ae52022-02-21 13:12:41 +020063
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010064 float sum{};
Dana Zlotnika538ae52022-02-21 13:12:41 +020065
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010066 /* Compute exponentials and sum */
Dana Zlotnika538ae52022-02-21 13:12:41 +020067 {
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010068 /* Get max value */
69 const auto max_val = *reinterpret_cast<const ScalarType *>(max_it.ptr());
70 const auto vec_max = wrapper::svdup_n(max_val);
Dana Zlotnika538ae52022-02-21 13:12:41 +020071
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010072 /* Init sum to zero */
73 auto vec_sum_0 = svdup_n_f32(0.f);
74 auto vec_sum_1 = svdup_n_f32(0.f);
75 auto vec_sum_2 = svdup_n_f32(0.f);
76 auto vec_sum_3 = svdup_n_f32(0.f);
Dana Zlotnika538ae52022-02-21 13:12:41 +020077
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010078 /* Loop over row and compute exponentials and sum */
79 int x = 0;
80 svbool_t pg = wrapper::svwhilelt<ScalarType>(x, input_width);
81 svbool_t pg_0 = svunpklo(svunpklo(pg));
82 svbool_t pg_1 = svunpkhi(svunpklo(pg));
83 svbool_t pg_2 = svunpklo(svunpkhi(pg));
84 svbool_t pg_3 = svunpkhi(svunpkhi(pg));
85 do
Dana Zlotnika538ae52022-02-21 13:12:41 +020086 {
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010087 const auto vec_elements = svld1(pg, in_ptr + x);
88 const auto vec_elements_sub = svreinterpret_u8(svsub_z(pg, vec_max, vec_elements));
Dana Zlotnika538ae52022-02-21 13:12:41 +020089
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010090 auto vec_elements_flt_0 = svcvt_f32_z(pg_0, svunpklo(svunpklo(vec_elements_sub)));
91 auto vec_elements_flt_1 = svcvt_f32_z(pg_1, svunpkhi(svunpklo(vec_elements_sub)));
92 auto vec_elements_flt_2 = svcvt_f32_z(pg_2, svunpklo(svunpkhi(vec_elements_sub)));
93 auto vec_elements_flt_3 = svcvt_f32_z(pg_3, svunpkhi(svunpkhi(vec_elements_sub)));
Dana Zlotnika538ae52022-02-21 13:12:41 +020094
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010095 if (is_log)
Dana Zlotnika538ae52022-02-21 13:12:41 +020096 {
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +010097 vec_elements_flt_0 = svmul_f32_z(pg_0, vec_elements_flt_0, scale_beta_vec);
98 vec_elements_flt_1 = svmul_f32_z(pg_1, vec_elements_flt_1, scale_beta_vec);
99 vec_elements_flt_2 = svmul_f32_z(pg_2, vec_elements_flt_2, scale_beta_vec);
100 vec_elements_flt_3 = svmul_f32_z(pg_3, vec_elements_flt_3, scale_beta_vec);
101 vec_sum_0 = svadd_f32_m(pg_0, vec_sum_0, svexp_f32_z(pg_0, vec_elements_flt_0));
102 vec_sum_1 = svadd_f32_m(pg_1, vec_sum_1, svexp_f32_z(pg_1, vec_elements_flt_1));
103 vec_sum_2 = svadd_f32_m(pg_2, vec_sum_2, svexp_f32_z(pg_2, vec_elements_flt_2));
104 vec_sum_3 = svadd_f32_m(pg_3, vec_sum_3, svexp_f32_z(pg_3, vec_elements_flt_3));
Dana Zlotnika538ae52022-02-21 13:12:41 +0200105 }
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +0100106 else
107 {
108 vec_elements_flt_0 = svexp_f32_z(pg_0, svmul_f32_z(pg_0, vec_elements_flt_0, scale_beta_vec));
109 vec_elements_flt_1 = svexp_f32_z(pg_1, svmul_f32_z(pg_1, vec_elements_flt_1, scale_beta_vec));
110 vec_elements_flt_2 = svexp_f32_z(pg_2, svmul_f32_z(pg_2, vec_elements_flt_2, scale_beta_vec));
111 vec_elements_flt_3 = svexp_f32_z(pg_3, svmul_f32_z(pg_3, vec_elements_flt_3, scale_beta_vec));
112 vec_sum_0 = svadd_f32_m(pg_0, vec_sum_0, vec_elements_flt_0);
113 vec_sum_1 = svadd_f32_m(pg_1, vec_sum_1, vec_elements_flt_1);
114 vec_sum_2 = svadd_f32_m(pg_2, vec_sum_2, vec_elements_flt_2);
115 vec_sum_3 = svadd_f32_m(pg_3, vec_sum_3, vec_elements_flt_3);
116 }
Dana Zlotnika538ae52022-02-21 13:12:41 +0200117
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +0100118 svst1_f32(pg_0, tmp_ptr + x, vec_elements_flt_0);
119 svst1_f32(pg_1, tmp_ptr + x + inc_1, vec_elements_flt_1);
120 svst1_f32(pg_2, tmp_ptr + x + inc_2, vec_elements_flt_2);
121 svst1_f32(pg_3, tmp_ptr + x + inc_3, vec_elements_flt_3);
122
123 x += wrapper::svcnt<ScalarType>();
124 pg = wrapper::svwhilelt<ScalarType>(x, input_width);
125 pg_0 = svunpklo(svunpklo(pg));
126 pg_1 = svunpkhi(svunpklo(pg));
127 pg_2 = svunpklo(svunpkhi(pg));
128 pg_3 = svunpkhi(svunpkhi(pg));
129 } while (svptest_any(all_true_pg, pg));
130
131 /* Reduce sum */
132 const auto vec_sum = svadd_f32_z(all_true_pg, svadd_f32_z(all_true_pg, vec_sum_0, vec_sum_1),
133 svadd_f32_z(all_true_pg, vec_sum_2, vec_sum_3));
134 sum = svaddv_f32(all_true_pg, vec_sum);
135
136 /* Run remaining elements */
137 x = 0;
138 if (is_log)
139 {
140 sum = std::log(sum);
141 }
142 else
143 {
144 sum = 256.f / sum;
145 }
Dana Zlotnika538ae52022-02-21 13:12:41 +0200146 }
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +0100147
148 /* Normalize exponentials */
149 {
150 constexpr bool is_qasymm8_signed = std::is_same<ScalarType, qasymm8_signed_t>::value;
151 /* Loop over row and compute softmax */
152 int x = 0;
153 svbool_t pg = wrapper::svwhilelt<ScalarType>(x, input_width);
154 svbool_t pg_0 = svunpklo(svunpklo(pg));
155 svbool_t pg_1 = svunpkhi(svunpklo(pg));
156 svbool_t pg_2 = svunpklo(svunpkhi(pg));
157 svbool_t pg_3 = svunpkhi(svunpkhi(pg));
158 do
159 {
160 auto vec_in_0 = svld1_f32(pg_0, tmp_ptr + x);
161 auto vec_in_1 = svld1_f32(pg_1, tmp_ptr + x + inc_1);
162 auto vec_in_2 = svld1_f32(pg_2, tmp_ptr + x + inc_2);
163 auto vec_in_3 = svld1_f32(pg_3, tmp_ptr + x + inc_3);
164
165 svfloat32_t res_0{};
166 svfloat32_t res_1{};
167 svfloat32_t res_2{};
168 svfloat32_t res_3{};
169
170 if (is_log)
171 {
172 res_0 = svsub_f32_z(pg_0, vec_in_0, svdup_n_f32(sum));
173 res_1 = svsub_f32_z(pg_1, vec_in_1, svdup_n_f32(sum));
174 res_2 = svsub_f32_z(pg_2, vec_in_2, svdup_n_f32(sum));
175 res_3 = svsub_f32_z(pg_3, vec_in_3, svdup_n_f32(sum));
176 }
177 else
178 {
179 res_0 = svmul_f32_z(pg_0, vec_in_0, svdup_n_f32(sum));
180 res_1 = svmul_f32_z(pg_1, vec_in_1, svdup_n_f32(sum));
181 res_2 = svmul_f32_z(pg_2, vec_in_2, svdup_n_f32(sum));
182 res_3 = svmul_f32_z(pg_3, vec_in_3, svdup_n_f32(sum));
183
184 if (is_qasymm8_signed)
185 {
186 const auto offset_vec = svdup_n_f32(128.f);
187 res_0 = svsub_z(pg_0, res_0, offset_vec);
188 res_1 = svsub_z(pg_1, res_1, offset_vec);
189 res_2 = svsub_z(pg_2, res_2, offset_vec);
190 res_3 = svsub_z(pg_3, res_3, offset_vec);
191 }
192 }
193
194 // Store value
195 const auto out = convert_float_to_int<SVEType>(res_0, res_1, res_2, res_3);
196 svst1(pg, out_ptr + x, out);
197 x += wrapper::svcnt<ScalarType>();
198 pg = wrapper::svwhilelt<ScalarType>(x, input_width);
199 pg_0 = svunpklo(svunpklo(pg));
200 pg_1 = svunpkhi(svunpklo(pg));
201 pg_2 = svunpklo(svunpkhi(pg));
202 pg_3 = svunpkhi(svunpkhi(pg));
203 } while (svptest_any(all_true_pg, pg));
204 }
205 },
206 in_it, max_it, out_it);
Dana Zlotnika538ae52022-02-21 13:12:41 +0200207}
208
Felix Thomasmathibalanafd38f02023-09-27 17:46:17 +0100209template void sve2_softmax_logits_1d_quantized<qasymm8_signed_t>(const ITensor *in,
210 const ITensor *max,
211 void *const tmp,
212 ITensor *out,
213 float beta,
214 bool is_log,
215 const Window &window);
216template void sve2_softmax_logits_1d_quantized<qasymm8_t>(const ITensor *in,
217 const ITensor *max,
218 void *const tmp,
219 ITensor *out,
220 float beta,
221 bool is_log,
222 const Window &window);
Dana Zlotnika538ae52022-02-21 13:12:41 +0200223} // namespace cpu
224} // namespace arm_compute