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giuros01ba368252019-02-19 13:53:10 +00001/*
2 * Copyright (c) 2019 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#include "arm_compute/core/NEON/kernels/NESpaceToBatchLayerKernel.h"
25
26#include "arm_compute/core/Helpers.h"
27#include "arm_compute/core/ITensor.h"
28#include "arm_compute/core/NEON/wrapper/wrapper.h"
29#include "arm_compute/core/Types.h"
30#include "arm_compute/core/Validate.h"
31#include "arm_compute/core/utils/misc/ShapeCalculator.h"
32#include <arm_neon.h>
33#include <cstdint>
34
35using namespace arm_compute::misc::shape_calculator;
36
37namespace arm_compute
38{
39namespace
40{
41Status validate_arguments(const ITensorInfo *input, const ITensorInfo *block_info, const ITensorInfo *padddings, const ITensorInfo *output)
42{
43 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(input, block_info, padddings, output);
44 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(block_info, 1, DataType::S32);
45 ARM_COMPUTE_RETURN_ERROR_ON(input->num_dimensions() > 4);
46 ARM_COMPUTE_RETURN_ERROR_ON(block_info->num_dimensions() > 1);
47 ARM_COMPUTE_RETURN_ERROR_ON(padddings->num_dimensions() > 2);
48 ARM_COMPUTE_RETURN_ERROR_ON(padddings->tensor_shape()[1] != block_info->tensor_shape()[0]);
49
50 // Validate output if initialized
51 if(output->total_size() != 0)
52 {
53 const DataLayout data_layout = input->data_layout();
54 const int idx_channel = get_data_layout_dimension_index(data_layout, DataLayoutDimension::CHANNEL);
55 ARM_COMPUTE_RETURN_ERROR_ON(input->tensor_shape()[idx_channel] != output->tensor_shape()[idx_channel]);
56 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(input, output);
57 }
58
59 return Status{};
60}
61Status validate_arguments_static(const ITensorInfo *input, const int block_shape_x, const int block_shape_y, const Size2D &padding_left, const Size2D &padding_right,
62 const ITensorInfo *output)
63{
64 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(input, output);
65 ARM_COMPUTE_RETURN_ERROR_ON(block_shape_x < 1 || block_shape_y < 1);
66 ARM_COMPUTE_RETURN_ERROR_ON(input->num_dimensions() > 4);
67
68 // Validate output if initialized
69 if(output->total_size() != 0)
70 {
71 const DataLayout data_layout = input->data_layout();
72 const int idx_width = get_data_layout_dimension_index(data_layout, DataLayoutDimension::WIDTH);
73 const int idx_height = get_data_layout_dimension_index(data_layout, DataLayoutDimension::HEIGHT);
74 const int idx_channel = get_data_layout_dimension_index(data_layout, DataLayoutDimension::CHANNEL);
75 const int idx_batch = get_data_layout_dimension_index(data_layout, DataLayoutDimension::BATCHES);
76 ARM_COMPUTE_RETURN_ERROR_ON(output->tensor_shape()[idx_width] < padding_left.x() + padding_right.y());
77 ARM_COMPUTE_RETURN_ERROR_ON((input->tensor_shape()[idx_width] + padding_left.x() + padding_right.x()) % block_shape_x != 0);
78 ARM_COMPUTE_RETURN_ERROR_ON((input->tensor_shape()[idx_height] + padding_left.y() + padding_right.y()) % block_shape_y != 0);
79 ARM_COMPUTE_RETURN_ERROR_ON(input->tensor_shape()[idx_channel] != output->tensor_shape()[idx_channel]);
80 ARM_COMPUTE_RETURN_ERROR_ON(output->tensor_shape()[idx_batch] % (block_shape_x * block_shape_y) != 0);
81 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(input, output);
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010082 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_QUANTIZATION_INFO(input, output);
giuros01ba368252019-02-19 13:53:10 +000083 }
84
85 return Status{};
86}
87} // namespace
88
89NESpaceToBatchLayerKernel::NESpaceToBatchLayerKernel()
90 : _input(nullptr), _block_shape(nullptr), _paddings(nullptr), _output(nullptr), _padding_left(), _block_shape_x(), _block_shape_y()
91{
92}
93
94void NESpaceToBatchLayerKernel::configure(const ITensor *input, const ITensor *block_shape, const ITensor *paddings, ITensor *output)
95{
96 ARM_COMPUTE_ERROR_ON_NULLPTR(input, output);
97 ARM_COMPUTE_ERROR_THROW_ON(validate_arguments(input->info(), block_shape->info(), paddings->info(), output->info()));
98
99 _input = input;
100 _block_shape = block_shape;
101 _paddings = paddings;
102 _output = output;
103
104 // Configure kernel window
105 Window win = calculate_max_window(*output->info(), Steps());
106 ICPPKernel::configure(win);
107}
108
109void NESpaceToBatchLayerKernel::configure(const ITensor *input, const int block_shape_x, const int block_shape_y, const Size2D &padding_left, const Size2D &padding_right,
110 ITensor *output)
111{
112 ARM_COMPUTE_ERROR_ON_NULLPTR(input, output);
113
114 TensorShape output_shape = misc::shape_calculator::compute_space_to_batch_shape(input->info(), block_shape_x, block_shape_y, padding_left, padding_right);
Michele Di Giorgio93c70b82019-08-08 11:59:14 +0100115 auto_init_if_empty(*output->info(), output_shape, 1, input->info()->data_type(), input->info()->quantization_info());
giuros01ba368252019-02-19 13:53:10 +0000116
117 ARM_COMPUTE_ERROR_THROW_ON(validate_arguments_static(input->info(), block_shape_x, block_shape_y, padding_left, padding_right, output->info()));
118
119 _input = input;
120 _output = output;
121 _block_shape_x = block_shape_x;
122 _block_shape_y = block_shape_y;
123 _padding_left = padding_left;
124
125 // Configure kernel window
126 Window win = calculate_max_window(*output->info(), Steps());
127 INEKernel::configure(win);
128}
129
130Status NESpaceToBatchLayerKernel::validate(const ITensorInfo *input, const ITensorInfo *block_shape, const ITensorInfo *paddings, const ITensorInfo *output)
131{
132 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments(input, block_shape, paddings, output));
133 return Status{};
134}
135Status NESpaceToBatchLayerKernel::validate(const ITensorInfo *input, const int block_shape_x, const int block_shape_y, const Size2D &padding_left, const Size2D &padding_right,
136 const ITensorInfo *output)
137{
138 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments_static(input, block_shape_x, block_shape_y, padding_left, padding_right, output));
139 return Status{};
140}
141
142void NESpaceToBatchLayerKernel::run(const Window &window, const ThreadInfo &info)
143{
144 ARM_COMPUTE_UNUSED(info);
145 ARM_COMPUTE_ERROR_ON_UNCONFIGURED_KERNEL(this);
146 ARM_COMPUTE_ERROR_ON_INVALID_SUBWINDOW(ICPPKernel::window(), window);
147
148 if(_block_shape != nullptr)
149 {
150 // Retrieve the block shapes dynamically
151 _block_shape_x = *(reinterpret_cast<const int *>(_block_shape->ptr_to_element(0)));
152 _block_shape_y = *(reinterpret_cast<const int *>(_block_shape->ptr_to_element(1)));
153 }
154
155 if(_paddings != nullptr)
156 {
157 const size_t pad_left_x = *reinterpret_cast<const size_t *>(_paddings->ptr_to_element({ 0, 0 }));
158 const size_t pad_left_y = *reinterpret_cast<const size_t *>(_paddings->ptr_to_element({ 1, 0 }));
159 _padding_left = Size2D(pad_left_x, pad_left_y);
160 }
161 const DataLayout data_layout = _input->info()->data_layout();
162 const int height_idx = get_data_layout_dimension_index(data_layout, DataLayoutDimension::HEIGHT);
163 const int width_idx = get_data_layout_dimension_index(data_layout, DataLayoutDimension::WIDTH);
164 const int element_size = _input->info()->element_size();
165
166 const size_t height = _input->info()->dimension(height_idx);
167 const size_t width = _input->info()->dimension(width_idx);
168 const size_t batch_size = _input->info()->dimension(3);
169
170 Window slice_out = window.first_slice_window_3D();
giuros01ba368252019-02-19 13:53:10 +0000171
172 int batch_id = 0;
173
174 // Main loop for NCHW and NHWC
175 if(_output->info()->data_layout() == DataLayout::NCHW)
176 {
177 do
178 {
179 Iterator out(_output, slice_out);
180 execute_window_loop(slice_out, [&](const Coordinates & id)
181 {
182 const size_t out_x = id.x();
183 const size_t out_y = id.y();
184 const size_t z = id.z();
185 const size_t pos_x = out_x * _block_shape_x + (batch_id / batch_size) % _block_shape_x;
186 const size_t pos_y = out_y * _block_shape_y + (batch_id / batch_size) / _block_shape_x;
187 if(pos_y >= _padding_left.y() && pos_y < _padding_left.y() + height && pos_x >= _padding_left.x() && pos_x < _padding_left.x() + width)
188 {
189 const int w = batch_id % batch_size;
190 const int in_x = pos_x - _padding_left.x();
191 const int in_y = pos_y - _padding_left.y();
192 Coordinates input_coords{ in_x, in_y, z, w };
193 memcpy(out.ptr(), _input->ptr_to_element(input_coords), element_size);
194 }
195 },
196 out);
197 ++batch_id;
198 }
199 while(window.slide_window_slice_3D(slice_out));
200 }
201 else
202 {
203 do
204 {
205 Iterator out(_output, slice_out);
206 execute_window_loop(slice_out, [&](const Coordinates & id)
207 {
208 const size_t out_x = id.y();
209 const size_t out_y = id.z();
210 const size_t z = id.x();
211 const size_t pos_x = out_x * _block_shape_x + (batch_id / batch_size) % _block_shape_x;
212 const size_t pos_y = out_y * _block_shape_y + (batch_id / batch_size) / _block_shape_x;
213 if(pos_y >= _padding_left.y() && pos_y < _padding_left.y() + height && pos_x >= _padding_left.x() && pos_x < _padding_left.x() + width)
214 {
215 const int w = batch_id % batch_size;
216 const int in_x = pos_x - _padding_left.x();
217 const int in_y = pos_y - _padding_left.y();
218 Coordinates input_coords{ z, in_x, in_y, w };
219 memcpy(out.ptr(), _input->ptr_to_element(input_coords), element_size);
220 }
221 },
222 out);
223 ++batch_id;
224 }
225 while(window.slide_window_slice_3D(slice_out));
226 }
227}
228} // namespace arm_compute