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Michalis Spyrou16934a52018-08-21 18:03:58 +01001/*
Michele Di Giorgio4fc10b32021-04-30 18:30:41 +01002 * Copyright (c) 2018-2021 Arm Limited.
Michalis Spyrou16934a52018-08-21 18:03:58 +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#ifndef ARM_COMPUTE_TEST_SPACE_TO_BATCH_LAYER_FIXTURE
25#define ARM_COMPUTE_TEST_SPACE_TO_BATCH_LAYER_FIXTURE
26
27#include "tests/Globals.h"
28#include "tests/framework/Asserts.h"
29#include "tests/framework/Fixture.h"
30#include "tests/validation/reference/SpaceToBatch.h"
31
32namespace arm_compute
33{
34namespace test
35{
36namespace validation
37{
38template <typename TensorType, typename AccessorType, typename FunctionType, typename T>
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010039class SpaceToBatchLayerValidationGenericFixture : public framework::Fixture
Michalis Spyrou16934a52018-08-21 18:03:58 +010040{
41public:
42 template <typename...>
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010043 void setup(TensorShape input_shape, TensorShape block_shape_shape, TensorShape paddings_shape, TensorShape output_shape,
44 DataType data_type, DataLayout data_layout, QuantizationInfo quantization_info)
Michalis Spyrou16934a52018-08-21 18:03:58 +010045 {
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010046 _target = compute_target(input_shape, block_shape_shape, paddings_shape, output_shape, data_type, data_layout, quantization_info);
47 _reference = compute_reference(input_shape, block_shape_shape, paddings_shape, output_shape, data_type, quantization_info);
Michalis Spyrou16934a52018-08-21 18:03:58 +010048 }
49
50protected:
51 template <typename U>
52 void fill(U &&tensor, int i)
53 {
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010054 library->fill_tensor_uniform(tensor, i);
Michalis Spyrou16934a52018-08-21 18:03:58 +010055 }
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010056
Michalis Spyrou16934a52018-08-21 18:03:58 +010057 template <typename U>
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010058 void fill_pad(U &&tensor)
Michalis Spyrou16934a52018-08-21 18:03:58 +010059 {
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010060 library->fill_tensor_value(tensor, 0);
Michalis Spyrou16934a52018-08-21 18:03:58 +010061 }
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010062
Michalis Spyrou13a51e12018-09-18 13:09:30 +010063 TensorType compute_target(TensorShape input_shape, const TensorShape &block_shape_shape, const TensorShape &paddings_shape, TensorShape output_shape,
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010064 DataType data_type, DataLayout data_layout, QuantizationInfo quantization_info)
Michalis Spyrou16934a52018-08-21 18:03:58 +010065 {
Michalis Spyrou13a51e12018-09-18 13:09:30 +010066 if(data_layout == DataLayout::NHWC)
67 {
68 permute(input_shape, PermutationVector(2U, 0U, 1U));
69 permute(output_shape, PermutationVector(2U, 0U, 1U));
70 }
71
Michalis Spyrou16934a52018-08-21 18:03:58 +010072 // Create tensors
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010073 TensorType input = create_tensor<TensorType>(input_shape, data_type, 1, quantization_info, data_layout);
Michalis Spyrou16934a52018-08-21 18:03:58 +010074 TensorType block_shape = create_tensor<TensorType>(block_shape_shape, DataType::S32);
75 TensorType paddings = create_tensor<TensorType>(paddings_shape, DataType::S32);
Michele Di Giorgio93c70b82019-08-08 11:59:14 +010076 TensorType output = create_tensor<TensorType>(output_shape, data_type, 1, quantization_info, data_layout);
Michalis Spyrou16934a52018-08-21 18:03:58 +010077
78 // Create and configure function
79 FunctionType space_to_batch;
80 space_to_batch.configure(&input, &block_shape, &paddings, &output);
81
Michele Di Giorgio4fc10b32021-04-30 18:30:41 +010082 ARM_COMPUTE_ASSERT(input.info()->is_resizable());
83 ARM_COMPUTE_ASSERT(block_shape.info()->is_resizable());
84 ARM_COMPUTE_ASSERT(paddings.info()->is_resizable());
85 ARM_COMPUTE_ASSERT(output.info()->is_resizable());
Michalis Spyrou16934a52018-08-21 18:03:58 +010086
87 // Allocate tensors
88 input.allocator()->allocate();
89 block_shape.allocator()->allocate();
90 paddings.allocator()->allocate();
91 output.allocator()->allocate();
92
Michele Di Giorgio4fc10b32021-04-30 18:30:41 +010093 ARM_COMPUTE_ASSERT(!input.info()->is_resizable());
94 ARM_COMPUTE_ASSERT(!block_shape.info()->is_resizable());
95 ARM_COMPUTE_ASSERT(!paddings.info()->is_resizable());
96 ARM_COMPUTE_ASSERT(!output.info()->is_resizable());
Michalis Spyrou16934a52018-08-21 18:03:58 +010097
98 // Fill tensors
99 fill(AccessorType(input), 0);
Michele Di Giorgio93c70b82019-08-08 11:59:14 +0100100 fill_pad(AccessorType(paddings));
Michalis Spyrou16934a52018-08-21 18:03:58 +0100101 {
Michalis Spyrou13a51e12018-09-18 13:09:30 +0100102 auto block_shape_data = AccessorType(block_shape);
103 const int idx_width = get_data_layout_dimension_index(data_layout, DataLayoutDimension::WIDTH);
Michalis Spyrou16934a52018-08-21 18:03:58 +0100104 for(unsigned int i = 0; i < block_shape_shape.x(); ++i)
105 {
Michalis Spyrou13a51e12018-09-18 13:09:30 +0100106 static_cast<int32_t *>(block_shape_data.data())[i] = input_shape[i + idx_width] / output_shape[i + idx_width];
Michalis Spyrou16934a52018-08-21 18:03:58 +0100107 }
108 }
109 // Compute function
110 space_to_batch.run();
111
112 return output;
113 }
114
115 SimpleTensor<T> compute_reference(const TensorShape &input_shape, const TensorShape &block_shape_shape, const TensorShape &paddings_shape,
Michele Di Giorgio93c70b82019-08-08 11:59:14 +0100116 const TensorShape &output_shape, DataType data_type, QuantizationInfo quantization_info)
Michalis Spyrou16934a52018-08-21 18:03:58 +0100117 {
118 // Create reference
Michele Di Giorgio93c70b82019-08-08 11:59:14 +0100119 SimpleTensor<T> input{ input_shape, data_type, 1, quantization_info };
Michalis Spyrou16934a52018-08-21 18:03:58 +0100120 SimpleTensor<int32_t> block_shape{ block_shape_shape, DataType::S32 };
121 SimpleTensor<int32_t> paddings{ paddings_shape, DataType::S32 };
122
123 // Fill reference
124 fill(input, 0);
Michele Di Giorgio93c70b82019-08-08 11:59:14 +0100125 fill_pad(paddings);
Michalis Spyrou16934a52018-08-21 18:03:58 +0100126 for(unsigned int i = 0; i < block_shape_shape.x(); ++i)
127 {
128 block_shape[i] = input_shape[i] / output_shape[i];
129 }
130
131 // Compute reference
132 return reference::space_to_batch(input, block_shape, paddings, output_shape);
133 }
134
135 TensorType _target{};
136 SimpleTensor<T> _reference{};
137};
Michele Di Giorgio93c70b82019-08-08 11:59:14 +0100138
139template <typename TensorType, typename AccessorType, typename FunctionType, typename T>
140class SpaceToBatchLayerValidationFixture : public SpaceToBatchLayerValidationGenericFixture<TensorType, AccessorType, FunctionType, T>
141{
142public:
143 template <typename...>
144 void setup(TensorShape input_shape, TensorShape block_shape_shape, TensorShape paddings_shape, TensorShape output_shape,
145 DataType data_type, DataLayout data_layout)
146 {
147 SpaceToBatchLayerValidationGenericFixture<TensorType, AccessorType, FunctionType, T>::setup(input_shape, block_shape_shape, paddings_shape, output_shape, data_type, data_layout, QuantizationInfo());
148 }
149};
150
151template <typename TensorType, typename AccessorType, typename FunctionType, typename T>
152class SpaceToBatchLayerValidationQuantizedFixture : public SpaceToBatchLayerValidationGenericFixture<TensorType, AccessorType, FunctionType, T>
153{
154public:
155 template <typename...>
156 void setup(TensorShape input_shape, TensorShape block_shape_shape, TensorShape paddings_shape, TensorShape output_shape,
157 DataType data_type, DataLayout data_layout, QuantizationInfo quantization_info)
158 {
159 SpaceToBatchLayerValidationGenericFixture<TensorType, AccessorType, FunctionType, T>::setup(input_shape, block_shape_shape, paddings_shape, output_shape, data_type, data_layout, quantization_info);
160 }
161};
Michalis Spyrou16934a52018-08-21 18:03:58 +0100162} // namespace validation
163} // namespace test
164} // namespace arm_compute
165#endif /* ARM_COMPUTE_TEST_SPACE_TO_BATCH_LAYER_FIXTURE */