blob: 733d1372a139e04040698c9bf2ff5e3ba11e9b3e [file] [log] [blame]
Anthony Barbier6ff3b192017-09-04 18:44:23 +01001/*
Georgios Pinitas5a594532018-12-03 14:30:05 +00002 * Copyright (c) 2016-2019 ARM Limited.
Anthony Barbier6ff3b192017-09-04 18:44:23 +01003 *
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#include "arm_compute/core/NEON/kernels/NEArithmeticAdditionKernel.h"
25
Anthony Barbiereaefd002018-07-20 17:49:35 +010026#include "arm_compute/core/CPP/Validate.h"
Anthony Barbier6ff3b192017-09-04 18:44:23 +010027#include "arm_compute/core/Error.h"
28#include "arm_compute/core/Helpers.h"
29#include "arm_compute/core/IAccessWindow.h"
30#include "arm_compute/core/ITensor.h"
Michele Di Giorgio81f0d152017-07-11 15:00:52 +010031#include "arm_compute/core/NEON/NEFixedPoint.h"
Georgios Pinitas5a594532018-12-03 14:30:05 +000032#include "arm_compute/core/NEON/wrapper/wrapper.h"
Anthony Barbier6ff3b192017-09-04 18:44:23 +010033#include "arm_compute/core/TensorInfo.h"
34#include "arm_compute/core/Validate.h"
35
36#include <algorithm>
37#include <arm_neon.h>
38#include <cstdint>
39#include <map>
40#include <string>
41
42using namespace arm_compute;
43
44namespace arm_compute
45{
46class Coordinates;
47} // namespace arm_compute
48
49namespace
50{
Georgios Pinitas5a594532018-12-03 14:30:05 +000051template <typename T, bool is_sat>
52void add_same(const ITensor *in1, const ITensor *in2, ITensor *out, ConvertPolicy policy, const Window &window)
Anthony Barbier6ff3b192017-09-04 18:44:23 +010053{
Georgios Pinitas5a594532018-12-03 14:30:05 +000054 ARM_COMPUTE_UNUSED(policy);
Anthony Barbier6ff3b192017-09-04 18:44:23 +010055
Georgios Pinitas5a594532018-12-03 14:30:05 +000056 /** NEON vector tag type. */
57 using ExactTagType = typename wrapper::traits::neon_bitvector_tag_t<T, wrapper::traits::BitWidth::W128>;
58
59 // Create input windows
60 Window input1_win = window.broadcast_if_dimension_le_one(in1->info()->tensor_shape());
61 Window input2_win = window.broadcast_if_dimension_le_one(in2->info()->tensor_shape());
62
63 // Clear X Dimension on execution window as we handle manually
64 Window win = window;
65 win.set(Window::DimX, Window::Dimension(0, 1, 1));
66
67 constexpr int window_step_x = 16 / sizeof(T);
68 const auto window_start_x = static_cast<int>(window.x().start());
69 const auto window_end_x = static_cast<int>(window.x().end());
70 const bool is_broadcast_across_x = (input1_win.x().step() == 0) || (input2_win.x().step() == 0);
71
72 if(is_broadcast_across_x)
Anthony Barbier6ff3b192017-09-04 18:44:23 +010073 {
Georgios Pinitas5a594532018-12-03 14:30:05 +000074 const bool is_broadcast_input_2 = input2_win.x().step() == 0;
75 Window broadcast_win = is_broadcast_input_2 ? input2_win : input1_win;
76 Window non_broadcast_win = !is_broadcast_input_2 ? input2_win : input1_win;
77 const ITensor *broadcast_tensor = is_broadcast_input_2 ? in2 : in1;
78 const ITensor *non_broadcast_tensor = !is_broadcast_input_2 ? in2 : in1;
Anthony Barbier6ff3b192017-09-04 18:44:23 +010079
Georgios Pinitas5a594532018-12-03 14:30:05 +000080 // Clear X Dimension on execution window as we handle manually
81 non_broadcast_win.set(Window::DimX, Window::Dimension(0, 1, 1));
Anthony Barbier6ff3b192017-09-04 18:44:23 +010082
Georgios Pinitas5a594532018-12-03 14:30:05 +000083 Iterator broadcast_input(broadcast_tensor, broadcast_win);
84 Iterator non_broadcast_input(non_broadcast_tensor, non_broadcast_win);
85 Iterator output(out, win);
Anthony Barbier6ff3b192017-09-04 18:44:23 +010086
Michalis Spyroua4f378d2019-04-26 14:54:54 +010087 execute_window_loop(win, [&](const Coordinates &)
Anthony Barbier6ff3b192017-09-04 18:44:23 +010088 {
Georgios Pinitas5a594532018-12-03 14:30:05 +000089 const auto non_broadcast_input_ptr = reinterpret_cast<const T *>(non_broadcast_input.ptr());
90 const auto output_ptr = reinterpret_cast<T *>(output.ptr());
Anthony Barbier6ff3b192017-09-04 18:44:23 +010091
Georgios Pinitas5a594532018-12-03 14:30:05 +000092 const T broadcast_value = *reinterpret_cast<const T *>(broadcast_input.ptr());
93 const auto broadcast_value_vec = wrapper::vdup_n(broadcast_value, ExactTagType{});
Anthony Barbier6ff3b192017-09-04 18:44:23 +010094
Georgios Pinitas5a594532018-12-03 14:30:05 +000095 // Compute S elements per iteration
96 int x = window_start_x;
97 for(; x <= (window_end_x - window_step_x); x += window_step_x)
98 {
99 const auto non_broadcast_v = wrapper::vloadq(non_broadcast_input_ptr + x);
100 const auto res = is_sat ? wrapper::vqadd(broadcast_value_vec, non_broadcast_v) : wrapper::vadd(broadcast_value_vec, non_broadcast_v);
101 wrapper::vstore(output_ptr + x, res);
102 }
103
104 // Compute left-over elements
105 for(; x < window_end_x; ++x)
106 {
107 const auto non_broadcast_v = *(non_broadcast_input_ptr + x);
108 *(output_ptr + x) = is_sat ? wrapper::add_sat(broadcast_value, non_broadcast_v) : broadcast_value + non_broadcast_v;
109 }
110 },
111 broadcast_input, non_broadcast_input, output);
112 }
113 else
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100114 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000115 // Clear X Dimension on execution window as we handle manually
116 input1_win.set(Window::DimX, Window::Dimension(0, 1, 1));
117 input2_win.set(Window::DimX, Window::Dimension(0, 1, 1));
118
119 Iterator input1(in1, input1_win);
120 Iterator input2(in2, input2_win);
121 Iterator output(out, win);
122
Michalis Spyroua4f378d2019-04-26 14:54:54 +0100123 execute_window_loop(win, [&](const Coordinates &)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100124 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000125 const auto input1_ptr = reinterpret_cast<const T *>(input1.ptr());
126 const auto input2_ptr = reinterpret_cast<const T *>(input2.ptr());
127 const auto output_ptr = reinterpret_cast<T *>(output.ptr());
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100128
Georgios Pinitas5a594532018-12-03 14:30:05 +0000129 // Compute S elements per iteration
130 int x = window_start_x;
131 for(; x <= (window_end_x - window_step_x); x += window_step_x)
132 {
133 const auto val1 = wrapper::vloadq(input1_ptr + x);
134 const auto val2 = wrapper::vloadq(input2_ptr + x);
135 const auto res = is_sat ? wrapper::vqadd(val1, val2) : wrapper::vadd(val1, val2);
136 wrapper::vstore(output_ptr + x, res);
137 }
138
139 // Compute left-over elements
140 for(; x < window_end_x; ++x)
141 {
142 const auto val1 = *(input1_ptr + x);
143 const auto val2 = *(input2_ptr + x);
144 *(output_ptr + x) = is_sat ? wrapper::add_sat(val1, val2) : val1 + val2;
145 }
146 },
147 input1, input2, output);
148 }
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100149}
150
Georgios Pinitas5a594532018-12-03 14:30:05 +0000151void add_QASYMM8_QASYMM8_QASYMM8(const ITensor *in1, const ITensor *in2, ITensor *out, ConvertPolicy policy, const Window &window)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100152{
Georgios Pinitas5a594532018-12-03 14:30:05 +0000153 ARM_COMPUTE_UNUSED(policy);
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100154
Georgios Pinitas5a594532018-12-03 14:30:05 +0000155 // Create input windows
156 Window input1_win = window.broadcast_if_dimension_le_one(in1->info()->tensor_shape());
157 Window input2_win = window.broadcast_if_dimension_le_one(in2->info()->tensor_shape());
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100158
Georgios Pinitas5a594532018-12-03 14:30:05 +0000159 // Clear X Dimension on execution window as we handle manually
160 Window win = window;
161 win.set(Window::DimX, Window::Dimension(0, 1, 1));
Pablo Tellod1b0ecc2017-07-11 11:27:04 +0100162
Georgios Pinitas5a594532018-12-03 14:30:05 +0000163 const int window_step_x = 16;
164 const auto window_start_x = static_cast<int>(window.x().start());
165 const auto window_end_x = static_cast<int>(window.x().end());
166 const bool is_broadcast_across_x = (input1_win.x().step() == 0) || (input2_win.x().step() == 0);
Pablo Tellod1b0ecc2017-07-11 11:27:04 +0100167
Georgios Pinitas4c5469b2019-05-21 13:32:43 +0100168 const UniformQuantizationInfo iq1_info = in1->info()->quantization_info().uniform();
169 const UniformQuantizationInfo iq2_info = in2->info()->quantization_info().uniform();
170 const UniformQuantizationInfo oq_info = out->info()->quantization_info().uniform();
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000171
Georgios Pinitas4c5469b2019-05-21 13:32:43 +0100172 const float32x4_t vscale1 = vdupq_n_f32(iq1_info.scale);
173 const float32x4_t vscale2 = vdupq_n_f32(iq2_info.scale);
174 const float32x4_t invvscaleo = vdupq_n_f32(1.f / oq_info.scale);
175 const int32x4_t voffset1 = vdupq_n_s32(iq1_info.offset);
176 const int32x4_t voffset2 = vdupq_n_s32(iq2_info.offset);
177 const float32x4_t voffseto = vdupq_n_f32(oq_info.offset);
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000178
Georgios Pinitas5a594532018-12-03 14:30:05 +0000179 if(is_broadcast_across_x)
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000180 {
Georgios Pinitas4c5469b2019-05-21 13:32:43 +0100181 const bool is_broadcast_input_2 = input2_win.x().step() == 0;
182 Window broadcast_win = is_broadcast_input_2 ? input2_win : input1_win;
183 Window non_broadcast_win = !is_broadcast_input_2 ? input2_win : input1_win;
184 const ITensor *broadcast_tensor = is_broadcast_input_2 ? in2 : in1;
185 const ITensor *non_broadcast_tensor = !is_broadcast_input_2 ? in2 : in1;
186 const UniformQuantizationInfo broadcast_qinfo = broadcast_tensor->info()->quantization_info().uniform();
187 const UniformQuantizationInfo non_broadcast_qinfo = non_broadcast_tensor->info()->quantization_info().uniform();
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000188
Georgios Pinitas5a594532018-12-03 14:30:05 +0000189 // Clear X Dimension on execution window as we handle manually
190 non_broadcast_win.set(Window::DimX, Window::Dimension(0, 1, 1));
191
192 Iterator broadcast_input(broadcast_tensor, broadcast_win);
193 Iterator non_broadcast_input(non_broadcast_tensor, non_broadcast_win);
194 Iterator output(out, win);
195
Michalis Spyroua4f378d2019-04-26 14:54:54 +0100196 execute_window_loop(win, [&](const Coordinates &)
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000197 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000198 const auto non_broadcast_input_ptr = reinterpret_cast<const uint8_t *>(non_broadcast_input.ptr());
199 const auto output_ptr = reinterpret_cast<uint8_t *>(output.ptr());
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000200
Georgios Pinitas5a594532018-12-03 14:30:05 +0000201 const uint8_t broadcast_value = *reinterpret_cast<const uint8_t *>(broadcast_input.ptr());
202 const uint8x16_t broadcast_value_vec = vdupq_n_u8(broadcast_value);
203
204 const float32x4x4_t bf =
205 {
206 {
207 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_low_u8(broadcast_value_vec))))), voffset2)), vscale2),
208 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_low_u8(broadcast_value_vec))))), voffset2)), vscale2),
209 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_high_u8(broadcast_value_vec))))), voffset2)), vscale2),
210 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_high_u8(broadcast_value_vec))))), voffset2)), vscale2),
211 }
212 };
213 const float bfs = static_cast<int32_t>(broadcast_value - broadcast_qinfo.offset) * broadcast_qinfo.scale;
214
215 // Compute S elements per iteration
216 int x = window_start_x;
217 for(; x <= (window_end_x - window_step_x); x += window_step_x)
218 {
219 const uint8x16_t a = vld1q_u8(non_broadcast_input_ptr + x);
220 const float32x4x4_t af =
221 {
222 {
223 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_low_u8(a))))), voffset1)), vscale1),
224 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_low_u8(a))))), voffset1)), vscale1),
225 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_high_u8(a))))), voffset1)), vscale1),
226 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_high_u8(a))))), voffset1)), vscale1),
227 }
228 };
229
230 const int32x4x4_t rf =
231 {
232 {
Vidhya Sudhan Loganathanf8b65202019-02-01 09:49:50 +0000233#ifdef __aarch64__
234 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
235 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
236 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[2], bf.val[2]), invvscaleo)),
237 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[3], bf.val[3]), invvscaleo)),
Michalis Spyroua4f378d2019-04-26 14:54:54 +0100238#else //__aarch64__
Georgios Pinitas5a594532018-12-03 14:30:05 +0000239 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
240 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
241 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[2], bf.val[2]), invvscaleo)),
242 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[3], bf.val[3]), invvscaleo)),
Vidhya Sudhan Loganathanf8b65202019-02-01 09:49:50 +0000243#endif //__aarch64__
Georgios Pinitas5a594532018-12-03 14:30:05 +0000244 }
245 };
246
247 const uint8x8_t pa = vqmovun_s16(vcombine_s16(vqmovn_s32(rf.val[0]), vqmovn_s32(rf.val[1])));
248 const uint8x8_t pb = vqmovun_s16(vcombine_s16(vqmovn_s32(rf.val[2]), vqmovn_s32(rf.val[3])));
249 vst1q_u8(output_ptr + x, vcombine_u8(pa, pb));
250 }
251
252 // Compute left-over elements
253 for(; x < window_end_x; ++x)
254 {
255 const float afs = static_cast<int32_t>(*(non_broadcast_input_ptr + x) - non_broadcast_qinfo.offset) * non_broadcast_qinfo.scale;
Georgios Pinitas4c5469b2019-05-21 13:32:43 +0100256 *(output_ptr + x) = quantize_qasymm8((afs + bfs), oq_info);
Georgios Pinitas5a594532018-12-03 14:30:05 +0000257 }
258 },
259 broadcast_input, non_broadcast_input, output);
260 }
261 else
262 {
263 // Clear X Dimension on execution window as we handle manually
264 input1_win.set(Window::DimX, Window::Dimension(0, 1, 1));
265 input2_win.set(Window::DimX, Window::Dimension(0, 1, 1));
266
Georgios Pinitas5a594532018-12-03 14:30:05 +0000267 Iterator input1(in1, input1_win);
268 Iterator input2(in2, input2_win);
269 Iterator output(out, win);
270
Michalis Spyroua4f378d2019-04-26 14:54:54 +0100271 execute_window_loop(win, [&](const Coordinates &)
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000272 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000273 const auto input1_ptr = reinterpret_cast<const uint8_t *>(input1.ptr());
274 const auto input2_ptr = reinterpret_cast<const uint8_t *>(input2.ptr());
275 const auto output_ptr = reinterpret_cast<uint8_t *>(output.ptr());
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000276
Georgios Pinitas5a594532018-12-03 14:30:05 +0000277 // Compute S elements per iteration
278 int x = window_start_x;
279 for(; x <= (window_end_x - window_step_x); x += window_step_x)
280 {
281 const uint8x16_t a = vld1q_u8(input1_ptr + x);
282 const uint8x16_t b = vld1q_u8(input2_ptr + x);
283
284 const float32x4x4_t af =
285 {
286 {
287 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_low_u8(a))))), voffset1)), vscale1),
288 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_low_u8(a))))), voffset1)), vscale1),
289 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_high_u8(a))))), voffset1)), vscale1),
290 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_high_u8(a))))), voffset1)), vscale1),
291 }
292 };
293
294 const float32x4x4_t bf =
295 {
296 {
297 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_low_u8(b))))), voffset2)), vscale2),
298 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_low_u8(b))))), voffset2)), vscale2),
299 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_low_u16(vmovl_u8(vget_high_u8(b))))), voffset2)), vscale2),
300 vmulq_f32(vcvtq_f32_s32(vsubq_s32(vreinterpretq_s32_u32(vmovl_u16(vget_high_u16(vmovl_u8(vget_high_u8(b))))), voffset2)), vscale2),
301 }
302 };
303
304 const int32x4x4_t rf =
305 {
306 {
Vidhya Sudhan Loganathanf8b65202019-02-01 09:49:50 +0000307#ifdef __aarch64__
308 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
309 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
310 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[2], bf.val[2]), invvscaleo)),
311 vcvtnq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[3], bf.val[3]), invvscaleo)),
Michalis Spyroua4f378d2019-04-26 14:54:54 +0100312#else //__aarch64__
Georgios Pinitas5a594532018-12-03 14:30:05 +0000313 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
314 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
315 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[2], bf.val[2]), invvscaleo)),
316 vcvtq_s32_f32(vmlaq_f32(voffseto, vaddq_f32(af.val[3], bf.val[3]), invvscaleo)),
Vidhya Sudhan Loganathanf8b65202019-02-01 09:49:50 +0000317#endif //__aarch64__
Georgios Pinitas5a594532018-12-03 14:30:05 +0000318 }
319 };
320
321 const uint8x8_t pa = vqmovun_s16(vcombine_s16(vqmovn_s32(rf.val[0]), vqmovn_s32(rf.val[1])));
322 const uint8x8_t pb = vqmovun_s16(vcombine_s16(vqmovn_s32(rf.val[2]), vqmovn_s32(rf.val[3])));
323 vst1q_u8(output_ptr + x, vcombine_u8(pa, pb));
324 }
325
326 // Compute left-over elements
327 for(; x < window_end_x; ++x)
328 {
Georgios Pinitas4c5469b2019-05-21 13:32:43 +0100329 const float afs = static_cast<int32_t>((*(input1_ptr + x)) - iq1_info.offset) * iq1_info.scale;
330 const float bfs = static_cast<int32_t>((*(input2_ptr + x)) - iq2_info.offset) * iq2_info.scale;
331 *(output_ptr + x) = quantize_qasymm8((afs + bfs), out->info()->quantization_info());
Georgios Pinitas5a594532018-12-03 14:30:05 +0000332 }
333 },
334 input1, input2, output);
335 }
336}
337
Manuel Bottini3689fcd2019-06-14 17:18:12 +0100338void add_QSYMM16_QSYMM16_QSYMM16(const ITensor *in1, const ITensor *in2, ITensor *out, ConvertPolicy policy, const Window &window)
339{
340 ARM_COMPUTE_UNUSED(policy);
341
342 // Create input windows
343 Window input1_win = window.broadcast_if_dimension_le_one(in1->info()->tensor_shape());
344 Window input2_win = window.broadcast_if_dimension_le_one(in2->info()->tensor_shape());
345
346 // Clear X Dimension on execution window as we handle manually
347 Window win = window;
348 win.set(Window::DimX, Window::Dimension(0, 1, 1));
349
350 const int window_step_x = 8;
351 const auto window_start_x = static_cast<int>(window.x().start());
352 const auto window_end_x = static_cast<int>(window.x().end());
353 const bool is_broadcast_across_x = (input1_win.x().step() == 0) || (input2_win.x().step() == 0);
354
355 const UniformQuantizationInfo iq1_info = in1->info()->quantization_info().uniform();
356 const UniformQuantizationInfo iq2_info = in2->info()->quantization_info().uniform();
357 const UniformQuantizationInfo oq_info = out->info()->quantization_info().uniform();
358
359 const float32x4_t vscale1 = vdupq_n_f32(iq1_info.scale);
360 const float32x4_t vscale2 = vdupq_n_f32(iq2_info.scale);
361 const float32x4_t invvscaleo = vdupq_n_f32(1.f / oq_info.scale);
362
363 if(is_broadcast_across_x)
364 {
365 const bool is_broadcast_input_2 = input2_win.x().step() == 0;
366 Window broadcast_win = is_broadcast_input_2 ? input2_win : input1_win;
367 Window non_broadcast_win = !is_broadcast_input_2 ? input2_win : input1_win;
368 const ITensor *broadcast_tensor = is_broadcast_input_2 ? in2 : in1;
369 const ITensor *non_broadcast_tensor = !is_broadcast_input_2 ? in2 : in1;
370 const UniformQuantizationInfo broadcast_qinfo = broadcast_tensor->info()->quantization_info().uniform();
371 const UniformQuantizationInfo non_broadcast_qinfo = non_broadcast_tensor->info()->quantization_info().uniform();
372
373 // Clear X Dimension on execution window as we handle manually
374 non_broadcast_win.set(Window::DimX, Window::Dimension(0, 1, 1));
375
376 Iterator broadcast_input(broadcast_tensor, broadcast_win);
377 Iterator non_broadcast_input(non_broadcast_tensor, non_broadcast_win);
378 Iterator output(out, win);
379
380 execute_window_loop(win, [&](const Coordinates &)
381 {
382 const auto non_broadcast_input_ptr = reinterpret_cast<const int16_t *>(non_broadcast_input.ptr());
383 const auto output_ptr = reinterpret_cast<int16_t *>(output.ptr());
384
385 const int16_t broadcast_value = *reinterpret_cast<const int16_t *>(broadcast_input.ptr());
386 const int16x8_t broadcast_value_vec = vdupq_n_s16(broadcast_value);
387
388 const float32x4x2_t bf =
389 {
390 {
391 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_low_s16(broadcast_value_vec))), vscale2),
392 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_high_s16(broadcast_value_vec))), vscale2),
393 }
394 };
395 const float bfs = static_cast<int32_t>(broadcast_value) * broadcast_qinfo.scale;
396
397 // Compute S elements per iteration
398 int x = window_start_x;
399 for(; x <= (window_end_x - window_step_x); x += window_step_x)
400 {
401 const int16x8_t a = vld1q_s16(non_broadcast_input_ptr + x);
402 const float32x4x2_t af =
403 {
404 {
405 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_low_s16(a))), vscale1),
406 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_high_s16(a))), vscale1),
407 }
408 };
409
410 const int32x4x4_t rf =
411 {
412 {
413#ifdef __aarch64__
414 vcvtnq_s32_f32(vmulq_f32(vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
415 vcvtnq_s32_f32(vmulq_f32(vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
416#else //__aarch64__
417 vcvtq_s32_f32(vmulq_f32(vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
418 vcvtq_s32_f32(vmulq_f32(vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
419#endif //__aarch64__
420 }
421 };
422
423 const int16x8_t pa = vcombine_s16(vqmovn_s32(rf.val[0]), vqmovn_s32(rf.val[1]));
424 vst1q_s16(output_ptr + x, pa);
425 }
426
427 // Compute left-over elements
428 for(; x < window_end_x; ++x)
429 {
430 const float afs = static_cast<int32_t>(*(non_broadcast_input_ptr + x)) * non_broadcast_qinfo.scale;
431 *(output_ptr + x) = quantize_qsymm16((afs + bfs), oq_info);
432 }
433 },
434 broadcast_input, non_broadcast_input, output);
435 }
436 else
437 {
438 // Clear X Dimension on execution window as we handle manually
439 input1_win.set(Window::DimX, Window::Dimension(0, 1, 1));
440 input2_win.set(Window::DimX, Window::Dimension(0, 1, 1));
441
442 Iterator input1(in1, input1_win);
443 Iterator input2(in2, input2_win);
444 Iterator output(out, win);
445
446 execute_window_loop(win, [&](const Coordinates &)
447 {
448 const auto input1_ptr = reinterpret_cast<const int16_t *>(input1.ptr());
449 const auto input2_ptr = reinterpret_cast<const int16_t *>(input2.ptr());
450 const auto output_ptr = reinterpret_cast<int16_t *>(output.ptr());
451
452 // Compute S elements per iteration
453 int x = window_start_x;
454 for(; x <= (window_end_x - window_step_x); x += window_step_x)
455 {
456 const int16x8_t a = vld1q_s16(input1_ptr + x);
457 const int16x8_t b = vld1q_s16(input2_ptr + x);
458
459 const float32x4x2_t af =
460 {
461 {
462 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_low_s16(a))), vscale1),
463 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_high_s16(a))), vscale1),
464 }
465 };
466
467 const float32x4x2_t bf =
468 {
469 {
470 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_low_s16(b))), vscale2),
471 vmulq_f32(vcvtq_f32_s32(vmovl_s16(vget_high_s16(b))), vscale2),
472 }
473 };
474
475 const int32x4x2_t rf =
476 {
477 {
478#ifdef __aarch64__
479 vcvtnq_s32_f32(vmulq_f32(vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
480 vcvtnq_s32_f32(vmulq_f32(vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
481#else //__aarch64__
482 vcvtq_s32_f32(vmulq_f32(vaddq_f32(af.val[0], bf.val[0]), invvscaleo)),
483 vcvtq_s32_f32(vmulq_f32(vaddq_f32(af.val[1], bf.val[1]), invvscaleo)),
484#endif //__aarch64__
485 }
486 };
487
488 const int16x8_t pa = vcombine_s16(vqmovn_s32(rf.val[0]), vqmovn_s32(rf.val[1]));
489 vst1q_s16(output_ptr + x, pa);
490 }
491
492 // Compute left-over elements
493 for(; x < window_end_x; ++x)
494 {
495 const float afs = static_cast<int32_t>((*(input1_ptr + x))) * iq1_info.scale;
496 const float bfs = static_cast<int32_t>((*(input2_ptr + x))) * iq2_info.scale;
497 *(output_ptr + x) = quantize_qsymm16((afs + bfs), out->info()->quantization_info());
498 }
499 },
500 input1, input2, output);
501 }
502}
503
Georgios Pinitas5a594532018-12-03 14:30:05 +0000504void add_S16_U8_S16(const ITensor *in1, const ITensor *in2, ITensor *out, ConvertPolicy policy, const Window &window)
505{
506 // Create input windows
507 Window win = window;
508 Window input1_win = window.broadcast_if_dimension_le_one(in1->info()->tensor_shape());
509 Window input2_win = window.broadcast_if_dimension_le_one(in2->info()->tensor_shape());
510
511 // Clear X Dimension on execution window as we handle manually
512 win.set(Window::DimX, Window::Dimension(0, 1, 1));
513 input1_win.set(Window::DimX, Window::Dimension(0, 1, 1));
514 input2_win.set(Window::DimX, Window::Dimension(0, 1, 1));
515
516 Iterator input1(in1, input1_win);
517 Iterator input2(in2, input2_win);
518 Iterator output(out, win);
519
520 const int window_step_x = 8;
521 const auto window_start_x = static_cast<int>(window.x().start());
522 const auto window_end_x = static_cast<int>(window.x().end());
523
Michalis Spyroua4f378d2019-04-26 14:54:54 +0100524 execute_window_loop(win, [&](const Coordinates &)
Georgios Pinitas5a594532018-12-03 14:30:05 +0000525 {
526 const auto input1_ptr = reinterpret_cast<const int16_t *>(input1.ptr());
527 const auto input2_ptr = reinterpret_cast<const uint8_t *>(input2.ptr());
528 const auto output_ptr = reinterpret_cast<int16_t *>(output.ptr());
529
530 if(policy == ConvertPolicy::WRAP)
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000531 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000532 // Compute S elements per iteration
533 int x = window_start_x;
534 for(; x <= (window_end_x - window_step_x); x += window_step_x)
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000535 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000536 const auto vin1 = wrapper::vloadq(input1_ptr + x);
537 const auto vin2 = vreinterpretq_s16_u16(wrapper::vmovl(wrapper::vload(input2_ptr + x)));
538 wrapper::vstore(output_ptr + x, wrapper::vadd(vin1, vin2));
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000539 }
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000540
Georgios Pinitas5a594532018-12-03 14:30:05 +0000541 // Compute left-over elements
542 for(; x < window_end_x; ++x)
543 {
544 *(output_ptr + x) = *(input1_ptr + x) + static_cast<int16_t>(*(input2_ptr + x));
545 }
546 }
547 else
548 {
549 // Compute S elements per iteration
550 int x = window_start_x;
551 for(; x <= (window_end_x - window_step_x); x += window_step_x)
552 {
553 const auto vin1 = wrapper::vloadq(input1_ptr + x);
554 const auto vin2 = vreinterpretq_s16_u16(wrapper::vmovl(wrapper::vload(input2_ptr + x)));
555 wrapper::vstore(output_ptr + x, wrapper::vqadd(vin1, vin2));
556 }
557
558 // Compute left-over elements
559 for(; x < window_end_x; ++x)
560 {
561 *(output_ptr + x) = wrapper::add_sat(*(input1_ptr + x), static_cast<int16_t>(*(input2_ptr + x)));
562 }
563 }
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000564 },
565 input1, input2, output);
566}
567
Georgios Pinitas5a594532018-12-03 14:30:05 +0000568inline void add_U8_S16_S16(const ITensor *input1, const ITensor *input2, ITensor *output, ConvertPolicy policy, const Window &window)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100569{
Georgios Pinitas5a594532018-12-03 14:30:05 +0000570 // Simply swap the two input buffers:
571 add_S16_U8_S16(input2, input1, output, policy, window);
572}
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100573
Georgios Pinitas5a594532018-12-03 14:30:05 +0000574void add_U8_U8_S16(const ITensor *in1, const ITensor *in2, ITensor *out, ConvertPolicy policy, const Window &window)
575{
576 // Create input windows
577 Window win = window;
578 Window input1_win = window.broadcast_if_dimension_le_one(in1->info()->tensor_shape());
579 Window input2_win = window.broadcast_if_dimension_le_one(in2->info()->tensor_shape());
580
581 // Clear X Dimension on execution window as we handle manually
582 win.set(Window::DimX, Window::Dimension(0, 1, 1));
583 input1_win.set(Window::DimX, Window::Dimension(0, 1, 1));
584 input2_win.set(Window::DimX, Window::Dimension(0, 1, 1));
585
586 Iterator input1(in1, input1_win);
587 Iterator input2(in2, input2_win);
588 Iterator output(out, win);
589
590 const int window_step_x = 8;
591 const auto window_start_x = static_cast<int>(window.x().start());
592 const auto window_end_x = static_cast<int>(window.x().end());
593
Michalis Spyroua4f378d2019-04-26 14:54:54 +0100594 execute_window_loop(win, [&](const Coordinates &)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100595 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000596 const auto input1_ptr = reinterpret_cast<const uint8_t *>(input1.ptr());
597 const auto input2_ptr = reinterpret_cast<const uint8_t *>(input2.ptr());
598 const auto output_ptr = reinterpret_cast<int16_t *>(output.ptr());
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100599
Georgios Pinitas5a594532018-12-03 14:30:05 +0000600 if(policy == ConvertPolicy::WRAP)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100601 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000602 // Compute S elements per iteration
603 int x = window_start_x;
604 for(; x <= (window_end_x - window_step_x); x += window_step_x)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100605 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000606 const auto vin1 = vreinterpretq_s16_u16(wrapper::vmovl(wrapper::vload(input1_ptr + x)));
607 const auto vin2 = vreinterpretq_s16_u16(wrapper::vmovl(wrapper::vload(input2_ptr + x)));
608 wrapper::vstore(output_ptr + x, wrapper::vadd(vin1, vin2));
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100609 }
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100610
Georgios Pinitas5a594532018-12-03 14:30:05 +0000611 // Compute left-over elements
612 for(; x < window_end_x; ++x)
613 {
614 *(output_ptr + x) = static_cast<int16_t>(*(input1_ptr + x)) + static_cast<int16_t>(*(input2_ptr + x));
615 }
616 }
617 else
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100618 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000619 // Compute S elements per iteration
620 int x = window_start_x;
621 for(; x <= (window_end_x - window_step_x); x += window_step_x)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100622 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000623 const auto vin1 = vreinterpretq_s16_u16(wrapper::vmovl(wrapper::vload(input1_ptr + x)));
624 const auto vin2 = vreinterpretq_s16_u16(wrapper::vmovl(wrapper::vload(input2_ptr + x)));
625 wrapper::vstore(output_ptr + x, wrapper::vqadd(vin1, vin2));
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100626 }
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100627
Georgios Pinitas5a594532018-12-03 14:30:05 +0000628 // Compute left-over elements
629 for(; x < window_end_x; ++x)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100630 {
Georgios Pinitas5a594532018-12-03 14:30:05 +0000631 *(output_ptr + x) = wrapper::add_sat(static_cast<int16_t>(*(input1_ptr + x)),
632 static_cast<int16_t>(*(input2_ptr + x)));
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100633 }
Georgios Pinitas5a594532018-12-03 14:30:05 +0000634 }
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100635 },
636 input1, input2, output);
637}
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000638
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000639Status validate_arguments(const ITensorInfo &input1, const ITensorInfo &input2, const ITensorInfo &output, ConvertPolicy policy)
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000640{
641 ARM_COMPUTE_UNUSED(policy);
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000642
Anthony Barbiereaefd002018-07-20 17:49:35 +0100643 ARM_COMPUTE_RETURN_ERROR_ON_CPU_F16_UNSUPPORTED(&input1);
Manuel Bottini3689fcd2019-06-14 17:18:12 +0100644 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(&input1, 1, DataType::U8, DataType::QASYMM8, DataType::S16, DataType::QSYMM16, DataType::F16, DataType::F32);
645 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(&input2, 1, DataType::U8, DataType::QASYMM8, DataType::S16, DataType::QSYMM16, DataType::F16, DataType::F32);
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000646
647 const TensorShape out_shape = TensorShape::broadcast_shape(input1.tensor_shape(), input2.tensor_shape());
648
649 ARM_COMPUTE_RETURN_ERROR_ON_MSG(out_shape.total_size() == 0, "Inputs are not broadcast compatible");
Georgios Pinitas5a594532018-12-03 14:30:05 +0000650 ARM_COMPUTE_RETURN_ERROR_ON_MSG((input1.tensor_shape().x() != input2.tensor_shape().x()) && ((input1.data_type() != input2.data_type()) || (input1.data_type() != output.data_type())
651 || (input2.data_type() != output.data_type())),
652 "Broadcasting across width is supported on configurations where all tensors have the same data type");
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000653
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000654 // Validate in case of configured output
655 if(output.total_size() > 0)
656 {
657 ARM_COMPUTE_RETURN_ERROR_ON_MSG(
Vidhya Sudhan Loganathan7485d5a2018-07-04 09:34:00 +0100658 !(input1.data_type() == DataType::U8 && input2.data_type() == DataType::U8 && output.data_type() == DataType::U8)
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000659 && !(input1.data_type() == DataType::U8 && input2.data_type() == DataType::U8 && output.data_type() == DataType::S16)
660 && !(input1.data_type() == DataType::U8 && input2.data_type() == DataType::S16 && output.data_type() == DataType::S16)
661 && !(input1.data_type() == DataType::S16 && input2.data_type() == DataType::U8 && output.data_type() == DataType::S16)
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000662 && !(input1.data_type() == DataType::S16 && input2.data_type() == DataType::S16 && output.data_type() == DataType::S16)
663 && !(input1.data_type() == DataType::F32 && input2.data_type() == DataType::F32 && output.data_type() == DataType::F32)
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000664 && !(input1.data_type() == DataType::F16 && input2.data_type() == DataType::F16 && output.data_type() == DataType::F16)
Manuel Bottini3689fcd2019-06-14 17:18:12 +0100665 && !(input1.data_type() == DataType::QASYMM8 && input2.data_type() == DataType::QASYMM8 && output.data_type() == DataType::QASYMM8)
666 && !(input1.data_type() == DataType::QSYMM16 && input2.data_type() == DataType::QSYMM16 && output.data_type() == DataType::QSYMM16),
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000667 "You called addition with the wrong image formats");
668
669 ARM_COMPUTE_RETURN_ERROR_ON_MSG(detail::have_different_dimensions(out_shape, output.tensor_shape(), 0),
670 "Wrong shape for output");
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000671 }
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000672
Georgios Pinitas631c41a2017-12-06 11:53:03 +0000673 return Status{};
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000674}
675
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000676std::pair<Status, Window> validate_and_configure_window(ITensorInfo &input1, ITensorInfo &input2, ITensorInfo &output)
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000677{
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000678 const std::pair<TensorShape, ValidRegion> broadcast_pair = ITensorInfo::broadcast_shape_and_valid_region(input1, input2);
679 const TensorShape &out_shape = broadcast_pair.first;
680 const ValidRegion &valid_region = broadcast_pair.second;
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000681
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000682 // Auto initialize output if not initialized
683 {
684 set_shape_if_empty(output, out_shape);
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000685
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000686 if(input1.data_type() == DataType::S16 || input2.data_type() == DataType::S16)
687 {
688 set_format_if_unknown(output, Format::S16);
689 }
690 else if(input1.data_type() == DataType::F16 && input2.data_type() == DataType::F16)
691 {
692 set_format_if_unknown(output, Format::F16);
693 }
694 else if(input1.data_type() == DataType::F32 || input2.data_type() == DataType::F32)
695 {
696 set_format_if_unknown(output, Format::F32);
697 }
Manuel Bottini3689fcd2019-06-14 17:18:12 +0100698 else if(input1.data_type() == DataType::QASYMM8)
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000699 {
700 set_data_type_if_unknown(output, DataType::QASYMM8);
701 }
Manuel Bottini3689fcd2019-06-14 17:18:12 +0100702 else if(input1.data_type() == DataType::QSYMM16)
703 {
704 set_data_type_if_unknown(output, DataType::QSYMM16);
705 }
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000706 }
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000707
Georgios Pinitas5a594532018-12-03 14:30:05 +0000708 Window win = calculate_max_window(valid_region, Steps());
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000709
Georgios Pinitas5a594532018-12-03 14:30:05 +0000710 // NEArithmeticAdditionKernel doesn't need padding so update_window_and_padding() can be skipped
711 Coordinates coord;
712 coord.set_num_dimensions(output.num_dimensions());
713 output.set_valid_region(valid_region);
Georgios Pinitas5a594532018-12-03 14:30:05 +0000714 return std::make_pair(Status{}, win);
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000715}
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100716} // namespace
717
718NEArithmeticAdditionKernel::NEArithmeticAdditionKernel()
Georgios Pinitas5a594532018-12-03 14:30:05 +0000719 : _func(nullptr), _input1(nullptr), _input2(nullptr), _output(nullptr), _policy()
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100720{
721}
722
723void NEArithmeticAdditionKernel::configure(const ITensor *input1, const ITensor *input2, ITensor *output, ConvertPolicy policy)
724{
725 ARM_COMPUTE_ERROR_ON_NULLPTR(input1, input2, output);
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000726 ARM_COMPUTE_ERROR_THROW_ON(validate_arguments(*input1->info(), *input2->info(), *output->info(), policy));
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100727
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000728 // Configure kernel window
729 auto win_config = validate_and_configure_window(*input1->info(), *input2->info(), *output->info());
730 ARM_COMPUTE_ERROR_THROW_ON(win_config.first);
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100731
732 static std::map<std::string, AddFunction *> map_function =
733 {
Georgios Pinitasa84faff2018-12-05 18:17:24 +0000734 { "add_wrap_QASYMM8_QASYMM8_QASYMM8", &add_QASYMM8_QASYMM8_QASYMM8 },
735 { "add_saturate_QASYMM8_QASYMM8_QASYMM8", &add_QASYMM8_QASYMM8_QASYMM8 },
Manuel Bottini3689fcd2019-06-14 17:18:12 +0100736 { "add_wrap_QSYMM16_QSYMM16_QSYMM16", &add_QSYMM16_QSYMM16_QSYMM16 },
737 { "add_saturate_QSYMM16_QSYMM16_QSYMM16", &add_QSYMM16_QSYMM16_QSYMM16 },
Georgios Pinitas5a594532018-12-03 14:30:05 +0000738 { "add_wrap_U8_U8_U8", &add_same<uint8_t, false> },
739 { "add_saturate_U8_U8_U8", &add_same<uint8_t, true> },
740 { "add_wrap_S16_U8_S16", &add_S16_U8_S16 },
741 { "add_saturate_S16_U8_S16", &add_S16_U8_S16 },
742 { "add_wrap_U8_S16_S16", &add_U8_S16_S16 },
743 { "add_saturate_U8_S16_S16", &add_U8_S16_S16 },
744 { "add_wrap_U8_U8_S16", &add_U8_U8_S16 },
745 { "add_saturate_U8_U8_S16", &add_U8_U8_S16 },
746 { "add_wrap_S16_S16_S16", &add_same<int16_t, false> },
747 { "add_saturate_S16_S16_S16", &add_same<int16_t, true> },
748 { "add_wrap_F32_F32_F32", &add_same<float, false> },
749 { "add_saturate_F32_F32_F32", &add_same<float, false> },
750#ifdef __ARM_FEATURE_FP16_VECTOR_ARITHMETIC
751 { "add_wrap_F16_F16_F16", &add_same<float16_t, false> },
752 { "add_saturate_F16_F16_F16", &add_same<float16_t, false> },
753#endif /* __ARM_FEATURE_FP16_VECTOR_ARITHMETIC */
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100754 };
755
756 _input1 = input1;
757 _input2 = input2;
758 _output = output;
Georgios Pinitas5a594532018-12-03 14:30:05 +0000759 _policy = policy;
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100760
761 std::string function_to_call("add_");
762 function_to_call += policy == ConvertPolicy::WRAP ? "wrap_" : "saturate_";
763 function_to_call += string_from_data_type(input1->info()->data_type()) + "_";
764 function_to_call += string_from_data_type(input2->info()->data_type()) + "_";
765 function_to_call += string_from_data_type(output->info()->data_type());
766
767 auto it = map_function.find(function_to_call);
768
769 if(it != map_function.end())
770 {
771 _func = it->second;
772 }
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100773
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000774 INEKernel::configure(win_config.second);
775}
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100776
Georgios Pinitas631c41a2017-12-06 11:53:03 +0000777Status NEArithmeticAdditionKernel::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, ConvertPolicy policy)
Ioan-Cristian Szabo397d58a2017-11-30 15:19:11 +0000778{
Georgios Pinitascbf39c62018-09-10 15:07:45 +0100779 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(input1, input2, output);
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000780
781 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments(*input1, *input2, *output, policy));
782 ARM_COMPUTE_RETURN_ON_ERROR(validate_and_configure_window(*input1->clone(), *input2->clone(), *output->clone()).first);
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100783
Georgios Pinitas631c41a2017-12-06 11:53:03 +0000784 return Status{};
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100785}
786
Moritz Pflanzerc186b572017-09-07 09:48:04 +0100787void NEArithmeticAdditionKernel::run(const Window &window, const ThreadInfo &info)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100788{
Moritz Pflanzerc186b572017-09-07 09:48:04 +0100789 ARM_COMPUTE_UNUSED(info);
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100790 ARM_COMPUTE_ERROR_ON_UNCONFIGURED_KERNEL(this);
791 ARM_COMPUTE_ERROR_ON_INVALID_SUBWINDOW(INEKernel::window(), window);
792 ARM_COMPUTE_ERROR_ON(_func == nullptr);
793
Georgios Pinitas5a594532018-12-03 14:30:05 +0000794 (*_func)(_input1, _input2, _output, _policy, window);
Diego Lopez Recas0021d752017-12-18 14:42:56 +0000795}