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Matthew Sloyana35b40b2021-02-05 17:22:28 +00001//
Colm Donelan7bcae3c2024-01-22 10:07:14 +00002// Copyright © 2021, 2023-2024 Arm Ltd and Contributors. All rights reserved.
Matthew Sloyana35b40b2021-02-05 17:22:28 +00003// SPDX-License-Identifier: MIT
4//
5
6#pragma once
7
8#include "TestUtils.hpp"
9
10#include <armnn_delegate.hpp>
Matthew Sloyanebe392d2023-03-30 10:12:08 +010011#include <DelegateTestInterpreter.hpp>
Matthew Sloyana35b40b2021-02-05 17:22:28 +000012
Matthew Sloyana35b40b2021-02-05 17:22:28 +000013#include <tensorflow/lite/version.h>
14
Matthew Sloyana35b40b2021-02-05 17:22:28 +000015namespace
16{
17
18std::vector<char> CreateBatchSpaceTfLiteModel(tflite::BuiltinOperator batchSpaceOperatorCode,
19 tflite::TensorType tensorType,
20 std::vector<int32_t>& inputTensorShape,
21 std::vector <int32_t>& outputTensorShape,
22 std::vector<unsigned int>& blockData,
23 std::vector<std::pair<unsigned int, unsigned int>>& cropsPadData,
24 float quantScale = 1.0f,
25 int quantOffset = 0)
26{
27 using namespace tflite;
28 flatbuffers::FlatBufferBuilder flatBufferBuilder;
29
Ryan OShea238ecd92023-03-07 11:44:23 +000030 std::array<flatbuffers::Offset<tflite::Buffer>, 5> buffers;
31 buffers[0] = CreateBuffer(flatBufferBuilder);
32 buffers[1] = CreateBuffer(flatBufferBuilder);
33 buffers[2] = CreateBuffer(flatBufferBuilder,
Matthew Sloyana35b40b2021-02-05 17:22:28 +000034 flatBufferBuilder.CreateVector(reinterpret_cast<const uint8_t*>(blockData.data()),
35 sizeof(int32_t) * blockData.size()));
Ryan OShea238ecd92023-03-07 11:44:23 +000036 buffers[3] = CreateBuffer(flatBufferBuilder,
Matthew Sloyana35b40b2021-02-05 17:22:28 +000037 flatBufferBuilder.CreateVector(reinterpret_cast<const uint8_t*>(cropsPadData.data()),
38 sizeof(int64_t) * cropsPadData.size()));
Ryan OShea238ecd92023-03-07 11:44:23 +000039 buffers[4] = CreateBuffer(flatBufferBuilder);
Matthew Sloyana35b40b2021-02-05 17:22:28 +000040
41 auto quantizationParameters =
42 CreateQuantizationParameters(flatBufferBuilder,
43 0,
44 0,
45 flatBufferBuilder.CreateVector<float>({ quantScale }),
46 flatBufferBuilder.CreateVector<int64_t>({ quantOffset }));
47
48 std::string cropsOrPadding =
49 batchSpaceOperatorCode == tflite::BuiltinOperator_BATCH_TO_SPACE_ND ? "crops" : "padding";
50
51 std::vector<int32_t> blockShape { 2 };
52 std::vector<int32_t> cropsOrPaddingShape { 2, 2 };
53
54 std::array<flatbuffers::Offset<Tensor>, 4> tensors;
55 tensors[0] = CreateTensor(flatBufferBuilder,
56 flatBufferBuilder.CreateVector<int32_t>(inputTensorShape.data(),
57 inputTensorShape.size()),
58 tensorType,
Ryan OShea238ecd92023-03-07 11:44:23 +000059 1,
Matthew Sloyana35b40b2021-02-05 17:22:28 +000060 flatBufferBuilder.CreateString("input"),
61 quantizationParameters);
62
63 tensors[1] = CreateTensor(flatBufferBuilder,
64 flatBufferBuilder.CreateVector<int32_t>(blockShape.data(),
65 blockShape.size()),
66 ::tflite::TensorType_INT32,
Ryan OShea238ecd92023-03-07 11:44:23 +000067 2,
Matthew Sloyana35b40b2021-02-05 17:22:28 +000068 flatBufferBuilder.CreateString("block"),
69 quantizationParameters);
70
71 tensors[2] = CreateTensor(flatBufferBuilder,
72 flatBufferBuilder.CreateVector<int32_t>(cropsOrPaddingShape.data(),
73 cropsOrPaddingShape.size()),
74 ::tflite::TensorType_INT32,
Ryan OShea238ecd92023-03-07 11:44:23 +000075 3,
Matthew Sloyana35b40b2021-02-05 17:22:28 +000076 flatBufferBuilder.CreateString(cropsOrPadding),
77 quantizationParameters);
78
79 // Create output tensor
80 tensors[3] = CreateTensor(flatBufferBuilder,
81 flatBufferBuilder.CreateVector<int32_t>(outputTensorShape.data(),
82 outputTensorShape.size()),
83 tensorType,
Ryan OShea238ecd92023-03-07 11:44:23 +000084 4,
Matthew Sloyana35b40b2021-02-05 17:22:28 +000085 flatBufferBuilder.CreateString("output"),
86 quantizationParameters);
87
88 // Create operator
89 tflite::BuiltinOptions operatorBuiltinOptionsType = tflite::BuiltinOptions_NONE;
90 flatbuffers::Offset<void> operatorBuiltinOptions = 0;
91 switch (batchSpaceOperatorCode)
92 {
93 case tflite::BuiltinOperator_BATCH_TO_SPACE_ND:
94 {
95 operatorBuiltinOptionsType = tflite::BuiltinOptions_BatchToSpaceNDOptions;
96 operatorBuiltinOptions = CreateBatchToSpaceNDOptions(flatBufferBuilder).Union();
97 break;
98 }
99 case tflite::BuiltinOperator_SPACE_TO_BATCH_ND:
100 {
101 operatorBuiltinOptionsType = tflite::BuiltinOptions_SpaceToBatchNDOptions;
102 operatorBuiltinOptions = CreateSpaceToBatchNDOptions(flatBufferBuilder).Union();
103 break;
104 }
105 default:
106 break;
107 }
108
109 const std::vector<int> operatorInputs{ {0, 1, 2} };
110 const std::vector<int> operatorOutputs{ 3 };
111 flatbuffers::Offset <Operator> batchSpaceOperator =
112 CreateOperator(flatBufferBuilder,
113 0,
114 flatBufferBuilder.CreateVector<int32_t>(operatorInputs.data(), operatorInputs.size()),
115 flatBufferBuilder.CreateVector<int32_t>(operatorOutputs.data(), operatorOutputs.size()),
116 operatorBuiltinOptionsType,
117 operatorBuiltinOptions);
118
119 const std::vector<int> subgraphInputs{ {0, 1, 2} };
120 const std::vector<int> subgraphOutputs{ 3 };
121 flatbuffers::Offset <SubGraph> subgraph =
122 CreateSubGraph(flatBufferBuilder,
123 flatBufferBuilder.CreateVector(tensors.data(), tensors.size()),
124 flatBufferBuilder.CreateVector<int32_t>(subgraphInputs.data(), subgraphInputs.size()),
125 flatBufferBuilder.CreateVector<int32_t>(subgraphOutputs.data(), subgraphOutputs.size()),
126 flatBufferBuilder.CreateVector(&batchSpaceOperator, 1));
127
128 flatbuffers::Offset <flatbuffers::String> modelDescription =
129 flatBufferBuilder.CreateString("ArmnnDelegate: BatchSpace Operator Model");
130 flatbuffers::Offset <OperatorCode> operatorCode = CreateOperatorCode(flatBufferBuilder, batchSpaceOperatorCode);
131
132 flatbuffers::Offset <Model> flatbufferModel =
133 CreateModel(flatBufferBuilder,
134 TFLITE_SCHEMA_VERSION,
135 flatBufferBuilder.CreateVector(&operatorCode, 1),
136 flatBufferBuilder.CreateVector(&subgraph, 1),
137 modelDescription,
138 flatBufferBuilder.CreateVector(buffers.data(), buffers.size()));
139
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100140 flatBufferBuilder.Finish(flatbufferModel, armnnDelegate::FILE_IDENTIFIER);
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000141
142 return std::vector<char>(flatBufferBuilder.GetBufferPointer(),
143 flatBufferBuilder.GetBufferPointer() + flatBufferBuilder.GetSize());
144}
145
146template <typename T>
147void BatchSpaceTest(tflite::BuiltinOperator controlOperatorCode,
148 tflite::TensorType tensorType,
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000149 std::vector<int32_t>& inputShape,
150 std::vector<int32_t>& expectedOutputShape,
151 std::vector<T>& inputValues,
152 std::vector<unsigned int>& blockShapeValues,
153 std::vector<std::pair<unsigned int, unsigned int>>& cropsPaddingValues,
154 std::vector<T>& expectedOutputValues,
155 float quantScale = 1.0f,
Colm Donelaneff204a2023-11-28 15:46:09 +0000156 int quantOffset = 0,
157 const std::vector<armnn::BackendId>& backends = {})
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000158{
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100159 using namespace delegateTestInterpreter;
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000160 std::vector<char> modelBuffer = CreateBatchSpaceTfLiteModel(controlOperatorCode,
161 tensorType,
162 inputShape,
163 expectedOutputShape,
164 blockShapeValues,
165 cropsPaddingValues,
166 quantScale,
167 quantOffset);
168
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100169 // Setup interpreter with just TFLite Runtime.
170 auto tfLiteInterpreter = DelegateTestInterpreter(modelBuffer);
171 CHECK(tfLiteInterpreter.AllocateTensors() == kTfLiteOk);
172 CHECK(tfLiteInterpreter.FillInputTensor(inputValues, 0) == kTfLiteOk);
173 CHECK(tfLiteInterpreter.Invoke() == kTfLiteOk);
174 std::vector<T> tfLiteOutputValues = tfLiteInterpreter.GetOutputResult<T>(0);
175 std::vector<int32_t> tfLiteOutputShape = tfLiteInterpreter.GetOutputShape(0);
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000176
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100177 // Setup interpreter with Arm NN Delegate applied.
Colm Donelaneff204a2023-11-28 15:46:09 +0000178 auto armnnInterpreter = DelegateTestInterpreter(modelBuffer, CaptureAvailableBackends(backends));
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100179 CHECK(armnnInterpreter.AllocateTensors() == kTfLiteOk);
180 CHECK(armnnInterpreter.FillInputTensor(inputValues, 0) == kTfLiteOk);
181 CHECK(armnnInterpreter.Invoke() == kTfLiteOk);
182 std::vector<T> armnnOutputValues = armnnInterpreter.GetOutputResult<T>(0);
183 std::vector<int32_t> armnnOutputShape = armnnInterpreter.GetOutputShape(0);
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000184
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100185 armnnDelegate::CompareOutputData<T>(tfLiteOutputValues, armnnOutputValues, expectedOutputValues);
186 armnnDelegate::CompareOutputShape(tfLiteOutputShape, armnnOutputShape, expectedOutputShape);
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000187
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100188 tfLiteInterpreter.Cleanup();
189 armnnInterpreter.Cleanup();
Matthew Sloyana35b40b2021-02-05 17:22:28 +0000190}
191
192} // anonymous namespace