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Moritz Pflanzerc7d15032017-07-18 16:21:16 +01001/*
2 * Copyright (c) 2017 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 "Validation.h"
25
26#include "arm_compute/core/Coordinates.h"
27#include "arm_compute/core/Error.h"
28#include "arm_compute/core/TensorShape.h"
29#include "arm_compute/runtime/Tensor.h"
Moritz Pflanzere49e2662017-07-21 15:55:28 +010030#include "tests/validation/half.h"
Moritz Pflanzerc7d15032017-07-18 16:21:16 +010031
32#include <array>
33#include <cmath>
34#include <cstddef>
35#include <cstdint>
36
Moritz Pflanzerc7d15032017-07-18 16:21:16 +010037namespace arm_compute
38{
39namespace test
40{
41namespace validation
42{
43namespace
44{
45/** Get the data from *ptr after casting according to @p data_type and then convert the data to double.
46 *
47 * @param[in] ptr Pointer to value.
48 * @param[in] data_type Data type of both values.
49 *
50 * @return The data from the ptr after converted to double.
51 */
52double get_double_data(const void *ptr, DataType data_type)
53{
54 if(ptr == nullptr)
55 {
56 ARM_COMPUTE_ERROR("Can't dereference a null pointer!");
57 }
58
59 switch(data_type)
60 {
61 case DataType::U8:
62 return *reinterpret_cast<const uint8_t *>(ptr);
63 case DataType::S8:
64 return *reinterpret_cast<const int8_t *>(ptr);
65 case DataType::QS8:
66 return *reinterpret_cast<const qint8_t *>(ptr);
67 case DataType::U16:
68 return *reinterpret_cast<const uint16_t *>(ptr);
69 case DataType::S16:
70 return *reinterpret_cast<const int16_t *>(ptr);
71 case DataType::QS16:
72 return *reinterpret_cast<const qint16_t *>(ptr);
73 case DataType::U32:
74 return *reinterpret_cast<const uint32_t *>(ptr);
75 case DataType::S32:
76 return *reinterpret_cast<const int32_t *>(ptr);
77 case DataType::U64:
78 return *reinterpret_cast<const uint64_t *>(ptr);
79 case DataType::S64:
80 return *reinterpret_cast<const int64_t *>(ptr);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +010081 case DataType::F16:
Moritz Pflanzere49e2662017-07-21 15:55:28 +010082 return *reinterpret_cast<const half_float::half *>(ptr);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +010083 case DataType::F32:
84 return *reinterpret_cast<const float *>(ptr);
85 case DataType::F64:
86 return *reinterpret_cast<const double *>(ptr);
87 case DataType::SIZET:
88 return *reinterpret_cast<const size_t *>(ptr);
89 default:
90 ARM_COMPUTE_ERROR("NOT SUPPORTED!");
91 }
92}
93
94void check_border_element(const IAccessor &tensor, const Coordinates &id,
95 const BorderMode &border_mode, const void *border_value,
96 int64_t &num_elements, int64_t &num_mismatches)
97{
98 const size_t channel_size = element_size_from_data_type(tensor.data_type());
99 const auto ptr = static_cast<const uint8_t *>(tensor(id));
100
101 if(border_mode == BorderMode::REPLICATE)
102 {
103 Coordinates border_id{ id };
104
105 if(id.x() < 0)
106 {
107 border_id.set(0, 0);
108 }
109 else if(static_cast<size_t>(id.x()) >= tensor.shape().x())
110 {
111 border_id.set(0, tensor.shape().x() - 1);
112 }
113
114 if(id.y() < 0)
115 {
116 border_id.set(1, 0);
117 }
118 else if(static_cast<size_t>(id.y()) >= tensor.shape().y())
119 {
120 border_id.set(1, tensor.shape().y() - 1);
121 }
122
123 border_value = tensor(border_id);
124 }
125
126 // Iterate over all channels within one element
127 for(int channel = 0; channel < tensor.num_channels(); ++channel)
128 {
129 const size_t channel_offset = channel * channel_size;
130 const double target = get_double_data(ptr + channel_offset, tensor.data_type());
131 const double ref = get_double_data(static_cast<const uint8_t *>(border_value) + channel_offset, tensor.data_type());
132 const bool equal = is_equal(target, ref);
133
134 ARM_COMPUTE_TEST_INFO("id = " << id);
135 ARM_COMPUTE_TEST_INFO("channel = " << channel);
136 ARM_COMPUTE_TEST_INFO("target = " << std::setprecision(5) << target);
137 ARM_COMPUTE_TEST_INFO("reference = " << std::setprecision(5) << ref);
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100138 ARM_COMPUTE_EXPECT_EQUAL(target, ref, framework::LogLevel::DEBUG);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100139
140 if(!equal)
141 {
142 ++num_mismatches;
143 }
144
145 ++num_elements;
146 }
147}
148} // namespace
149
150void validate(const arm_compute::ValidRegion &region, const arm_compute::ValidRegion &reference)
151{
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100152 ARM_COMPUTE_EXPECT_EQUAL(region.anchor.num_dimensions(), reference.anchor.num_dimensions(), framework::LogLevel::ERRORS);
153 ARM_COMPUTE_EXPECT_EQUAL(region.shape.num_dimensions(), reference.shape.num_dimensions(), framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100154
155 for(unsigned int d = 0; d < region.anchor.num_dimensions(); ++d)
156 {
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100157 ARM_COMPUTE_EXPECT_EQUAL(region.anchor[d], reference.anchor[d], framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100158 }
159
160 for(unsigned int d = 0; d < region.shape.num_dimensions(); ++d)
161 {
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100162 ARM_COMPUTE_EXPECT_EQUAL(region.shape[d], reference.shape[d], framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100163 }
164}
165
166void validate(const arm_compute::PaddingSize &padding, const arm_compute::PaddingSize &reference)
167{
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100168 ARM_COMPUTE_EXPECT_EQUAL(padding.top, reference.top, framework::LogLevel::ERRORS);
169 ARM_COMPUTE_EXPECT_EQUAL(padding.right, reference.right, framework::LogLevel::ERRORS);
170 ARM_COMPUTE_EXPECT_EQUAL(padding.bottom, reference.bottom, framework::LogLevel::ERRORS);
171 ARM_COMPUTE_EXPECT_EQUAL(padding.left, reference.left, framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100172}
173
174void validate(const IAccessor &tensor, const void *reference_value)
175{
176 ARM_COMPUTE_ASSERT(reference_value != nullptr);
177
178 int64_t num_mismatches = 0;
179 int64_t num_elements = 0;
180 const size_t channel_size = element_size_from_data_type(tensor.data_type());
181
182 // Iterate over all elements, e.g. U8, S16, RGB888, ...
183 for(int element_idx = 0; element_idx < tensor.num_elements(); ++element_idx)
184 {
185 const Coordinates id = index2coord(tensor.shape(), element_idx);
186
187 const auto ptr = static_cast<const uint8_t *>(tensor(id));
188
189 // Iterate over all channels within one element
190 for(int channel = 0; channel < tensor.num_channels(); ++channel)
191 {
192 const size_t channel_offset = channel * channel_size;
193 const double target = get_double_data(ptr + channel_offset, tensor.data_type());
194 const double ref = get_double_data(reference_value, tensor.data_type());
195 const bool equal = is_equal(target, ref);
196
197 ARM_COMPUTE_TEST_INFO("id = " << id);
198 ARM_COMPUTE_TEST_INFO("channel = " << channel);
199 ARM_COMPUTE_TEST_INFO("target = " << std::setprecision(5) << target);
200 ARM_COMPUTE_TEST_INFO("reference = " << std::setprecision(5) << ref);
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100201 ARM_COMPUTE_EXPECT_EQUAL(target, ref, framework::LogLevel::DEBUG);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100202
203 if(!equal)
204 {
205 ++num_mismatches;
206 }
207
208 ++num_elements;
209 }
210 }
211
212 if(num_elements > 0)
213 {
214 const float percent_mismatches = static_cast<float>(num_mismatches) / num_elements * 100.f;
215
Moritz Pflanzerb9e9cff2017-07-27 15:15:55 +0100216 ARM_COMPUTE_TEST_INFO(num_mismatches << " values (" << std::fixed << std::setprecision(2) << percent_mismatches << "%) mismatched");
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100217 ARM_COMPUTE_EXPECT_EQUAL(num_mismatches, 0, framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100218 }
219}
220
221void validate(const IAccessor &tensor, BorderSize border_size, const BorderMode &border_mode, const void *border_value)
222{
223 if(border_mode == BorderMode::UNDEFINED)
224 {
225 return;
226 }
227 else if(border_mode == BorderMode::CONSTANT)
228 {
229 ARM_COMPUTE_ASSERT(border_value != nullptr);
230 }
231
232 int64_t num_mismatches = 0;
233 int64_t num_elements = 0;
234 const int slice_size = tensor.shape()[0] * tensor.shape()[1];
235
236 for(int element_idx = 0; element_idx < tensor.num_elements(); element_idx += slice_size)
237 {
238 Coordinates id = index2coord(tensor.shape(), element_idx);
239
240 // Top border
241 for(int y = -border_size.top; y < 0; ++y)
242 {
243 id.set(1, y);
244
245 for(int x = -border_size.left; x < static_cast<int>(tensor.shape()[0]) + static_cast<int>(border_size.right); ++x)
246 {
247 id.set(0, x);
248
249 check_border_element(tensor, id, border_mode, border_value, num_elements, num_mismatches);
250 }
251 }
252
253 // Bottom border
254 for(int y = tensor.shape()[1]; y < static_cast<int>(tensor.shape()[1]) + static_cast<int>(border_size.bottom); ++y)
255 {
256 id.set(1, y);
257
258 for(int x = -border_size.left; x < static_cast<int>(tensor.shape()[0]) + static_cast<int>(border_size.right); ++x)
259 {
260 id.set(0, x);
261
262 check_border_element(tensor, id, border_mode, border_value, num_elements, num_mismatches);
263 }
264 }
265
266 // Left/right border
267 for(int y = 0; y < static_cast<int>(tensor.shape()[1]); ++y)
268 {
269 id.set(1, y);
270
271 // Left border
272 for(int x = -border_size.left; x < 0; ++x)
273 {
274 id.set(0, x);
275
276 check_border_element(tensor, id, border_mode, border_value, num_elements, num_mismatches);
277 }
278
279 // Right border
280 for(int x = tensor.shape()[0]; x < static_cast<int>(tensor.shape()[0]) + static_cast<int>(border_size.right); ++x)
281 {
282 id.set(0, x);
283
284 check_border_element(tensor, id, border_mode, border_value, num_elements, num_mismatches);
285 }
286 }
287 }
288
289 if(num_elements > 0)
290 {
291 const float percent_mismatches = static_cast<float>(num_mismatches) / num_elements * 100.f;
292
Moritz Pflanzerb9e9cff2017-07-27 15:15:55 +0100293 ARM_COMPUTE_TEST_INFO(num_mismatches << " values (" << std::fixed << std::setprecision(2) << percent_mismatches << "%) mismatched");
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100294 ARM_COMPUTE_EXPECT_EQUAL(num_mismatches, 0, framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100295 }
296}
297
298void validate(std::vector<unsigned int> classified_labels, std::vector<unsigned int> expected_labels)
299{
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100300 ARM_COMPUTE_EXPECT_EQUAL(classified_labels.size(), expected_labels.size(), framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100301
302 for(unsigned int i = 0; i < expected_labels.size(); ++i)
303 {
Moritz Pflanzer2ac50402017-07-24 15:52:54 +0100304 ARM_COMPUTE_EXPECT_EQUAL(classified_labels[i], expected_labels[i], framework::LogLevel::ERRORS);
Moritz Pflanzerc7d15032017-07-18 16:21:16 +0100305 }
306}
307} // namespace validation
308} // namespace test
309} // namespace arm_compute