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Anthony Barbier6ff3b192017-09-04 18:44:23 +01001/*
Michalis Spyrou780db4e2017-11-23 09:49:51 +00002 * Copyright (c) 2016, 2017, 2018 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 */
Jaroslaw Rzepecki0a878ae2017-11-22 17:16:39 +000024
Anthony Barbier6ff3b192017-09-04 18:44:23 +010025#include "arm_compute/core/Utils.h"
26
27#include "arm_compute/core/FixedPoint.h"
28
Jaroslaw Rzepecki0a878ae2017-11-22 17:16:39 +000029#include "support/ToolchainSupport.h"
30
Anthony Barbier6ff3b192017-09-04 18:44:23 +010031#include <algorithm>
32#include <cmath>
33#include <cstdint>
34#include <fstream>
35#include <map>
36#include <string>
37
38using namespace arm_compute;
39
40std::string arm_compute::build_information()
41{
42 static const std::string information =
43#include "arm_compute_version.embed"
44 ;
45 return information;
46}
47
48std::string arm_compute::read_file(const std::string &filename, bool binary)
49{
50 std::string out;
51 std::ifstream fs;
52
53 try
54 {
55 fs.exceptions(std::ifstream::failbit | std::ifstream::badbit);
56 std::ios_base::openmode mode = std::ios::in;
57
58 if(binary)
59 {
60 mode |= std::ios::binary;
61 }
62
63 fs.open(filename, mode);
64
65 // Go to the end of the file
66 fs.seekg(0, std::ios::end);
67 // Reserve the memory required to store the file's content
68 out.reserve(fs.tellg());
69 // Go back to the beginning of the file
70 fs.seekg(0, std::ios::beg);
71 // Copy the content of the file
72 out.assign(std::istreambuf_iterator<char>(fs), std::istreambuf_iterator<char>());
73 }
74 catch(const std::ifstream::failure &e)
75 {
76 ARM_COMPUTE_ERROR("Accessing %s: %s", filename.c_str(), e.what());
77 }
78
79 return out;
80}
81
82const std::string &arm_compute::string_from_format(Format format)
83{
84 static std::map<Format, const std::string> formats_map =
85 {
86 { Format::UNKNOWN, "UNKNOWN" },
87 { Format::U8, "U8" },
88 { Format::S16, "S16" },
89 { Format::U16, "U16" },
90 { Format::S32, "S32" },
91 { Format::U32, "U32" },
92 { Format::F16, "F16" },
93 { Format::F32, "F32" },
94 { Format::UV88, "UV88" },
95 { Format::RGB888, "RGB888" },
96 { Format::RGBA8888, "RGBA8888" },
97 { Format::YUV444, "YUV444" },
98 { Format::YUYV422, "YUYV422" },
99 { Format::NV12, "NV12" },
100 { Format::NV21, "NV21" },
101 { Format::IYUV, "IYUV" },
102 { Format::UYVY422, "UYVY422" }
103 };
104
105 return formats_map[format];
106}
107
108const std::string &arm_compute::string_from_channel(Channel channel)
109{
110 static std::map<Channel, const std::string> channels_map =
111 {
112 { Channel::UNKNOWN, "UNKNOWN" },
113 { Channel::R, "R" },
114 { Channel::G, "G" },
115 { Channel::B, "B" },
116 { Channel::A, "A" },
117 { Channel::Y, "Y" },
118 { Channel::U, "U" },
119 { Channel::V, "V" },
120 { Channel::C0, "C0" },
121 { Channel::C1, "C1" },
122 { Channel::C2, "C2" },
123 { Channel::C3, "C3" }
124 };
125
126 return channels_map[channel];
127}
128
Michele Di Giorgiobf3c6622018-03-08 11:52:27 +0000129const std::string &arm_compute::string_from_data_layout(DataLayout dl)
130{
131 static std::map<DataLayout, const std::string> dl_map =
132 {
133 { DataLayout::UNKNOWN, "UNKNOWN" },
134 { DataLayout::NCHW, "NCHW" },
135 { DataLayout::NHWC, "NHWC" },
136 };
137
138 return dl_map[dl];
139}
140
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100141const std::string &arm_compute::string_from_data_type(DataType dt)
142{
143 static std::map<DataType, const std::string> dt_map =
144 {
145 { DataType::UNKNOWN, "UNKNOWN" },
146 { DataType::S8, "S8" },
147 { DataType::U8, "U8" },
148 { DataType::QS8, "QS8" },
149 { DataType::S16, "S16" },
150 { DataType::U16, "U16" },
151 { DataType::QS16, "QS16" },
152 { DataType::S32, "S32" },
153 { DataType::U32, "U32" },
154 { DataType::S64, "S64" },
155 { DataType::U64, "U64" },
156 { DataType::F16, "F16" },
157 { DataType::F32, "F32" },
158 { DataType::F64, "F64" },
159 { DataType::SIZET, "SIZET" },
Isabella Gottardi01a214a2018-04-09 16:00:52 +0100160 { DataType::QASYMM8, "QASYMM8" },
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100161 };
162
163 return dt_map[dt];
164}
165
166const std::string &arm_compute::string_from_activation_func(ActivationLayerInfo::ActivationFunction act)
167{
168 static std::map<ActivationLayerInfo::ActivationFunction, const std::string> act_map =
169 {
170 { ActivationLayerInfo::ActivationFunction::ABS, "ABS" },
171 { ActivationLayerInfo::ActivationFunction::LINEAR, "LINEAR" },
172 { ActivationLayerInfo::ActivationFunction::LOGISTIC, "LOGISTIC" },
173 { ActivationLayerInfo::ActivationFunction::RELU, "RELU" },
174 { ActivationLayerInfo::ActivationFunction::BOUNDED_RELU, "BRELU" },
Georgios Pinitas64ebe5b2017-09-01 17:44:24 +0100175 { ActivationLayerInfo::ActivationFunction::LU_BOUNDED_RELU, "LU_BRELU" },
Georgios Pinitas579c0492017-07-12 16:12:12 +0100176 { ActivationLayerInfo::ActivationFunction::LEAKY_RELU, "LRELU" },
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100177 { ActivationLayerInfo::ActivationFunction::SOFT_RELU, "SRELU" },
178 { ActivationLayerInfo::ActivationFunction::SQRT, "SQRT" },
179 { ActivationLayerInfo::ActivationFunction::SQUARE, "SQUARE" },
180 { ActivationLayerInfo::ActivationFunction::TANH, "TANH" },
181 };
182
183 return act_map[act];
184}
185
186const std::string &arm_compute::string_from_matrix_pattern(MatrixPattern pattern)
187{
188 static std::map<MatrixPattern, const std::string> pattern_map =
189 {
190 { MatrixPattern::BOX, "BOX" },
191 { MatrixPattern::CROSS, "CROSS" },
192 { MatrixPattern::DISK, "DISK" },
193 { MatrixPattern::OTHER, "OTHER" },
194 };
195
196 return pattern_map[pattern];
197}
198
199const std::string &arm_compute::string_from_non_linear_filter_function(NonLinearFilterFunction function)
200{
201 static std::map<NonLinearFilterFunction, const std::string> func_map =
202 {
203 { NonLinearFilterFunction::MAX, "MAX" },
204 { NonLinearFilterFunction::MEDIAN, "MEDIAN" },
205 { NonLinearFilterFunction::MIN, "MIN" },
206 };
207
208 return func_map[function];
209}
210
211const std::string &arm_compute::string_from_interpolation_policy(InterpolationPolicy policy)
212{
213 static std::map<InterpolationPolicy, const std::string> interpolation_policy_map =
214 {
215 { InterpolationPolicy::AREA, "AREA" },
216 { InterpolationPolicy::BILINEAR, "BILINEAR" },
217 { InterpolationPolicy::NEAREST_NEIGHBOR, "NEAREST_NEIGHBOUR" },
218 };
219
220 return interpolation_policy_map[policy];
221}
222
223const std::string &arm_compute::string_from_border_mode(BorderMode border_mode)
224{
225 static std::map<BorderMode, const std::string> border_mode_map =
226 {
227 { BorderMode::UNDEFINED, "UNDEFINED" },
228 { BorderMode::CONSTANT, "CONSTANT" },
229 { BorderMode::REPLICATE, "REPLICATE" },
230 };
231
232 return border_mode_map[border_mode];
233}
234
235const std::string &arm_compute::string_from_norm_type(NormType type)
236{
237 static std::map<NormType, const std::string> norm_type_map =
238 {
239 { NormType::IN_MAP_1D, "IN_MAP_1D" },
240 { NormType::IN_MAP_2D, "IN_MAP_2D" },
241 { NormType::CROSS_MAP, "CROSS_MAP" },
242 };
243
244 return norm_type_map[type];
245}
246
Georgios Pinitascdf51452017-08-31 14:21:36 +0100247const std::string &arm_compute::string_from_pooling_type(PoolingType type)
248{
249 static std::map<PoolingType, const std::string> pool_type_map =
250 {
251 { PoolingType::MAX, "MAX" },
252 { PoolingType::AVG, "AVG" },
253 { PoolingType::L2, "L2" },
254 };
255
256 return pool_type_map[type];
257}
258
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100259std::string arm_compute::lower_string(const std::string &val)
260{
261 std::string res = val;
262 std::transform(res.begin(), res.end(), res.begin(), ::tolower);
263 return res;
264}
265
Georgios Pinitas4074c992018-01-30 18:13:46 +0000266PadStrideInfo arm_compute::calculate_same_pad(TensorShape input_shape, TensorShape weights_shape, PadStrideInfo conv_info)
267{
268 const auto &strides = conv_info.stride();
269 const int out_width = std::ceil(float(input_shape.x()) / float(strides.first));
270 const int out_height = std::ceil(float(input_shape.y()) / float(strides.second));
271 const int pad_width = ((out_width - 1) * strides.first + weights_shape.x() - input_shape.x());
272 const int pad_height = ((out_height - 1) * strides.second + weights_shape.y() - input_shape.y());
273 const int same_pad_left = pad_width / 2;
274 const int same_pad_top = pad_height / 2;
275 const int same_pad_right = pad_width - same_pad_left;
276 const int same_pad_bottom = pad_height - same_pad_top;
277
278 return PadStrideInfo(strides.first, strides.second, same_pad_left, same_pad_right, same_pad_top, same_pad_bottom, DimensionRoundingType::CEIL);
279}
280
Pablo Tellof5f34bb2017-08-22 13:34:13 +0100281TensorShape arm_compute::deconvolution_output_shape(const std::pair<unsigned int, unsigned int> &out_dims, TensorShape input, TensorShape weights)
282{
283 TensorShape out_shape(input);
284 out_shape.set(0, out_dims.first);
285 out_shape.set(1, out_dims.second);
286 out_shape.set(2, weights[3]);
287 return out_shape;
288}
289
290const std::pair<unsigned int, unsigned int> arm_compute::deconvolution_output_dimensions(
291 unsigned int in_width, unsigned int in_height, unsigned int kernel_width, unsigned int kernel_height, unsigned int padx, unsigned int pady,
Michalis Spyrou780db4e2017-11-23 09:49:51 +0000292 unsigned int inner_border_right, unsigned int inner_border_top, unsigned int stride_x, unsigned int stride_y)
Pablo Tellof5f34bb2017-08-22 13:34:13 +0100293{
294 ARM_COMPUTE_ERROR_ON(in_width < 1 || in_height < 1);
Michalis Spyrou780db4e2017-11-23 09:49:51 +0000295 ARM_COMPUTE_ERROR_ON(((in_width - 1) * stride_x + kernel_width + inner_border_right) < 2 * padx);
296 ARM_COMPUTE_ERROR_ON(((in_height - 1) * stride_y + kernel_height + inner_border_top) < 2 * pady);
297 const int padx_deconv = (kernel_width - padx - 1);
298 const int pady_deconv = (kernel_height - pady - 1);
299 ARM_COMPUTE_ERROR_ON(padx_deconv < 0);
300 ARM_COMPUTE_ERROR_ON(pady_deconv < 0);
301 const int w = stride_x * (in_width - 1) + kernel_width + inner_border_right - 2 * padx_deconv;
302 const int h = stride_y * (in_height - 1) + kernel_height + inner_border_top - 2 * pady_deconv;
Pablo Tellof5f34bb2017-08-22 13:34:13 +0100303 return std::make_pair<unsigned int, unsigned int>(w, h);
304}
305
Gian Marco Iodice4e288692017-06-27 11:41:59 +0100306const std::pair<unsigned int, unsigned int> arm_compute::scaled_dimensions(unsigned int width, unsigned int height,
307 unsigned int kernel_width, unsigned int kernel_height,
Alex Gilday7da29b62018-03-23 14:16:00 +0000308 const PadStrideInfo &pad_stride_info,
309 const Size2D &dilation)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100310{
Jaroslaw Rzepeckia1ed41f2017-10-13 11:13:58 +0100311 const unsigned int pad_left = pad_stride_info.pad_left();
312 const unsigned int pad_top = pad_stride_info.pad_top();
313 const unsigned int pad_right = pad_stride_info.pad_right();
314 const unsigned int pad_bottom = pad_stride_info.pad_bottom();
315 const unsigned int stride_x = pad_stride_info.stride().first;
316 const unsigned int stride_y = pad_stride_info.stride().second;
317 unsigned int w = 0;
318 unsigned int h = 0;
Gian Marco Iodice4e288692017-06-27 11:41:59 +0100319 switch(pad_stride_info.round())
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100320 {
321 case DimensionRoundingType::FLOOR:
Alex Gilday7da29b62018-03-23 14:16:00 +0000322 w = static_cast<unsigned int>(std::floor((static_cast<float>(width + pad_left + pad_right - (dilation.x() * (kernel_width - 1) + 1)) / stride_x) + 1));
323 h = static_cast<unsigned int>(std::floor((static_cast<float>(height + pad_top + pad_bottom - (dilation.y() * (kernel_height - 1) + 1)) / stride_y) + 1));
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100324 break;
325 case DimensionRoundingType::CEIL:
Alex Gilday7da29b62018-03-23 14:16:00 +0000326 w = static_cast<unsigned int>(std::ceil((static_cast<float>(width + pad_left + pad_right - (dilation.x() * (kernel_width - 1) + 1)) / stride_x) + 1));
327 h = static_cast<unsigned int>(std::ceil((static_cast<float>(height + pad_top + pad_bottom - (dilation.y() * (kernel_height - 1) + 1)) / stride_y) + 1));
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100328 break;
329 default:
330 ARM_COMPUTE_ERROR("Unsupported rounding type");
331 }
332
333 // Make sure that border operations will start from inside the input and not the padded area
Jaroslaw Rzepeckia1ed41f2017-10-13 11:13:58 +0100334 if(((w - 1) * stride_x) >= (width + pad_left))
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100335 {
336 --w;
337 }
Jaroslaw Rzepeckia1ed41f2017-10-13 11:13:58 +0100338 if(((h - 1) * stride_y) >= (height + pad_top))
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100339 {
340 --h;
341 }
Jaroslaw Rzepeckia1ed41f2017-10-13 11:13:58 +0100342 ARM_COMPUTE_ERROR_ON(((w - 1) * stride_x) >= (width + pad_left));
343 ARM_COMPUTE_ERROR_ON(((h - 1) * stride_y) >= (height + pad_top));
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100344
345 return std::make_pair(w, h);
346}
347
348void arm_compute::print_consecutive_elements(std::ostream &s, DataType dt, const uint8_t *ptr, unsigned int n, int stream_width, const std::string &element_delim)
349{
350 switch(dt)
351 {
Georgios Pinitas55186712018-01-08 17:37:12 +0000352 case DataType::QASYMM8:
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100353 case DataType::U8:
354 print_consecutive_elements_impl<uint8_t>(s, ptr, n, stream_width, element_delim);
355 break;
356 case DataType::QS8:
357 case DataType::S8:
358 print_consecutive_elements_impl<int8_t>(s, reinterpret_cast<const int8_t *>(ptr), n, stream_width, element_delim);
359 break;
360 case DataType::U16:
361 print_consecutive_elements_impl<uint16_t>(s, reinterpret_cast<const uint16_t *>(ptr), n, stream_width, element_delim);
362 break;
Georgios Pinitasccc65d42017-06-27 17:39:11 +0100363 case DataType::QS16:
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100364 case DataType::S16:
365 print_consecutive_elements_impl<int16_t>(s, reinterpret_cast<const int16_t *>(ptr), n, stream_width, element_delim);
366 break;
367 case DataType::U32:
368 print_consecutive_elements_impl<uint32_t>(s, reinterpret_cast<const uint32_t *>(ptr), n, stream_width, element_delim);
369 break;
370 case DataType::S32:
371 print_consecutive_elements_impl<int32_t>(s, reinterpret_cast<const int32_t *>(ptr), n, stream_width, element_delim);
372 break;
373 case DataType::F32:
374 print_consecutive_elements_impl<float>(s, reinterpret_cast<const float *>(ptr), n, stream_width, element_delim);
375 break;
376 case DataType::F16:
Anthony Barbier7068f992017-10-26 15:23:08 +0100377 print_consecutive_elements_impl<half>(s, reinterpret_cast<const half *>(ptr), n, stream_width, element_delim);
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100378 break;
379 default:
380 ARM_COMPUTE_ERROR("Undefined element size for given data type");
381 }
382}
383
384int arm_compute::max_consecutive_elements_display_width(std::ostream &s, DataType dt, const uint8_t *ptr, unsigned int n)
385{
386 switch(dt)
387 {
Georgios Pinitas55186712018-01-08 17:37:12 +0000388 case DataType::QASYMM8:
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100389 case DataType::U8:
390 return max_consecutive_elements_display_width_impl<uint8_t>(s, ptr, n);
391 case DataType::QS8:
392 case DataType::S8:
393 return max_consecutive_elements_display_width_impl<int8_t>(s, reinterpret_cast<const int8_t *>(ptr), n);
394 case DataType::U16:
395 return max_consecutive_elements_display_width_impl<uint16_t>(s, reinterpret_cast<const uint16_t *>(ptr), n);
Georgios Pinitasccc65d42017-06-27 17:39:11 +0100396 case DataType::QS16:
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100397 case DataType::S16:
398 return max_consecutive_elements_display_width_impl<int16_t>(s, reinterpret_cast<const int16_t *>(ptr), n);
399 case DataType::U32:
400 return max_consecutive_elements_display_width_impl<uint32_t>(s, reinterpret_cast<const uint32_t *>(ptr), n);
401 case DataType::S32:
402 return max_consecutive_elements_display_width_impl<int32_t>(s, reinterpret_cast<const int32_t *>(ptr), n);
403 case DataType::F32:
404 return max_consecutive_elements_display_width_impl<float>(s, reinterpret_cast<const float *>(ptr), n);
405 case DataType::F16:
Anthony Barbier7068f992017-10-26 15:23:08 +0100406 return max_consecutive_elements_display_width_impl<half>(s, reinterpret_cast<const half *>(ptr), n);
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100407 default:
408 ARM_COMPUTE_ERROR("Undefined element size for given data type");
409 }
Georgios Pinitas3faea252017-10-30 14:13:50 +0000410 return 0;
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100411}