blob: 6d566a61b41c078f0647f62d1a633c34b8b63663 [file] [log] [blame]
Sadik Armagan89c5a9e2021-01-20 17:48:07 +00001//
Ryan OShea238ecd92023-03-07 11:44:23 +00002// Copyright © 2021, 2023 Arm Ltd and Contributors. All rights reserved.
Sadik Armagan89c5a9e2021-01-20 17:48:07 +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>
Sadik Armagan89c5a9e2021-01-20 17:48:07 +000012
13#include <flatbuffers/flatbuffers.h>
Sadik Armagan89c5a9e2021-01-20 17:48:07 +000014#include <tensorflow/lite/kernels/register.h>
Sadik Armagan89c5a9e2021-01-20 17:48:07 +000015#include <tensorflow/lite/version.h>
16
17#include <doctest/doctest.h>
18
19namespace
20{
21std::vector<char> CreateSpaceDepthTfLiteModel(tflite::BuiltinOperator spaceDepthOperatorCode,
22 tflite::TensorType tensorType,
23 const std::vector <int32_t>& inputTensorShape,
24 const std::vector <int32_t>& outputTensorShape,
25 int32_t blockSize)
26{
27 using namespace tflite;
28 flatbuffers::FlatBufferBuilder flatBufferBuilder;
29
30 auto quantizationParameters =
31 CreateQuantizationParameters(flatBufferBuilder,
32 0,
33 0,
34 flatBufferBuilder.CreateVector<float>({ 1.0f }),
35 flatBufferBuilder.CreateVector<int64_t>({ 0 }));
36
37 std::vector<flatbuffers::Offset<tflite::Buffer>> buffers;
Ryan OShea238ecd92023-03-07 11:44:23 +000038 buffers.push_back(CreateBuffer(flatBufferBuilder));
39 buffers.push_back(CreateBuffer(flatBufferBuilder));
40 buffers.push_back(CreateBuffer(flatBufferBuilder));
Sadik Armagan89c5a9e2021-01-20 17:48:07 +000041
42 std::array<flatbuffers::Offset<Tensor>, 2> tensors;
43 tensors[0] = CreateTensor(flatBufferBuilder,
44 flatBufferBuilder.CreateVector<int32_t>(inputTensorShape.data(),
45 inputTensorShape.size()),
46 tensorType,
Ryan OShea238ecd92023-03-07 11:44:23 +000047 1,
Sadik Armagan89c5a9e2021-01-20 17:48:07 +000048 flatBufferBuilder.CreateString("input"),
49 quantizationParameters);
50 tensors[1] = CreateTensor(flatBufferBuilder,
51 flatBufferBuilder.CreateVector<int32_t>(outputTensorShape.data(),
52 outputTensorShape.size()),
53 tensorType,
Ryan OShea238ecd92023-03-07 11:44:23 +000054 2,
Sadik Armagan89c5a9e2021-01-20 17:48:07 +000055 flatBufferBuilder.CreateString("output"),
56 quantizationParameters);
57
58 const std::vector<int32_t> operatorInputs({0});
59 const std::vector<int32_t> operatorOutputs({1});
60
61 flatbuffers::Offset<Operator> spaceDepthOperator;
62 flatbuffers::Offset<flatbuffers::String> modelDescription;
63 flatbuffers::Offset<OperatorCode> operatorCode;
64
65 switch (spaceDepthOperatorCode)
66 {
67 case tflite::BuiltinOperator_SPACE_TO_DEPTH:
68 spaceDepthOperator =
69 CreateOperator(flatBufferBuilder,
70 0,
71 flatBufferBuilder.CreateVector<int32_t>(operatorInputs.data(), operatorInputs.size()),
72 flatBufferBuilder.CreateVector<int32_t>(operatorOutputs.data(), operatorOutputs.size()),
73 BuiltinOptions_SpaceToDepthOptions,
74 CreateSpaceToDepthOptions(flatBufferBuilder, blockSize).Union());
75 modelDescription = flatBufferBuilder.CreateString("ArmnnDelegate: SPACE_TO_DEPTH Operator Model");
76 operatorCode = CreateOperatorCode(flatBufferBuilder,
77 tflite::BuiltinOperator_SPACE_TO_DEPTH);
78 break;
79 case tflite::BuiltinOperator_DEPTH_TO_SPACE:
80 spaceDepthOperator =
81 CreateOperator(flatBufferBuilder,
82 0,
83 flatBufferBuilder.CreateVector<int32_t>(operatorInputs.data(), operatorInputs.size()),
84 flatBufferBuilder.CreateVector<int32_t>(operatorOutputs.data(), operatorOutputs.size()),
85 BuiltinOptions_DepthToSpaceOptions,
86 CreateDepthToSpaceOptions(flatBufferBuilder, blockSize).Union());
87 flatBufferBuilder.CreateString("ArmnnDelegate: DEPTH_TO_SPACE Operator Model");
88 operatorCode = CreateOperatorCode(flatBufferBuilder,
89 tflite::BuiltinOperator_DEPTH_TO_SPACE);
90 break;
91 default:
92 break;
93 }
94 const std::vector<int32_t> subgraphInputs({0});
95 const std::vector<int32_t> subgraphOutputs({1});
96 flatbuffers::Offset<SubGraph> subgraph =
97 CreateSubGraph(flatBufferBuilder,
98 flatBufferBuilder.CreateVector(tensors.data(), tensors.size()),
99 flatBufferBuilder.CreateVector<int32_t>(subgraphInputs.data(), subgraphInputs.size()),
100 flatBufferBuilder.CreateVector<int32_t>(subgraphOutputs.data(), subgraphOutputs.size()),
101 flatBufferBuilder.CreateVector(&spaceDepthOperator, 1));
102 flatbuffers::Offset<Model> flatbufferModel =
103 CreateModel(flatBufferBuilder,
104 TFLITE_SCHEMA_VERSION,
105 flatBufferBuilder.CreateVector(&operatorCode, 1),
106 flatBufferBuilder.CreateVector(&subgraph, 1),
107 modelDescription,
108 flatBufferBuilder.CreateVector(buffers.data(), buffers.size()));
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100109 flatBufferBuilder.Finish(flatbufferModel, armnnDelegate::FILE_IDENTIFIER);
Sadik Armagan89c5a9e2021-01-20 17:48:07 +0000110 return std::vector<char>(flatBufferBuilder.GetBufferPointer(),
111 flatBufferBuilder.GetBufferPointer() + flatBufferBuilder.GetSize());
112}
113
114template <typename T>
115void SpaceDepthTest(tflite::BuiltinOperator spaceDepthOperatorCode,
116 tflite::TensorType tensorType,
117 std::vector<armnn::BackendId>& backends,
118 std::vector<int32_t>& inputShape,
119 std::vector<int32_t>& outputShape,
120 std::vector<T>& inputValues,
121 std::vector<T>& expectedOutputValues,
122 int32_t blockSize = 2)
123{
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100124 using namespace delegateTestInterpreter;
Sadik Armagan89c5a9e2021-01-20 17:48:07 +0000125 std::vector<char> modelBuffer = CreateSpaceDepthTfLiteModel(spaceDepthOperatorCode,
126 tensorType,
127 inputShape,
128 outputShape,
129 blockSize);
130
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100131 // Setup interpreter with just TFLite Runtime.
132 auto tfLiteInterpreter = DelegateTestInterpreter(modelBuffer);
133 CHECK(tfLiteInterpreter.AllocateTensors() == kTfLiteOk);
134 CHECK(tfLiteInterpreter.FillInputTensor<T>(inputValues, 0) == kTfLiteOk);
135 CHECK(tfLiteInterpreter.Invoke() == kTfLiteOk);
136 std::vector<T> tfLiteOutputValues = tfLiteInterpreter.GetOutputResult<T>(0);
137 std::vector<int32_t> tfLiteOutputShape = tfLiteInterpreter.GetOutputShape(0);
Sadik Armagan89c5a9e2021-01-20 17:48:07 +0000138
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100139 // Setup interpreter with Arm NN Delegate applied.
140 auto armnnInterpreter = DelegateTestInterpreter(modelBuffer, backends);
141 CHECK(armnnInterpreter.AllocateTensors() == kTfLiteOk);
142 CHECK(armnnInterpreter.FillInputTensor<T>(inputValues, 0) == kTfLiteOk);
143 CHECK(armnnInterpreter.Invoke() == kTfLiteOk);
144 std::vector<T> armnnOutputValues = armnnInterpreter.GetOutputResult<T>(0);
145 std::vector<int32_t> armnnOutputShape = armnnInterpreter.GetOutputShape(0);
Sadik Armagan89c5a9e2021-01-20 17:48:07 +0000146
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100147 armnnDelegate::CompareOutputData<T>(tfLiteOutputValues, armnnOutputValues, expectedOutputValues);
148 armnnDelegate::CompareOutputShape(tfLiteOutputShape, armnnOutputShape, outputShape);
Sadik Armagan89c5a9e2021-01-20 17:48:07 +0000149
Matthew Sloyanebe392d2023-03-30 10:12:08 +0100150 tfLiteInterpreter.Cleanup();
151 armnnInterpreter.Cleanup();
Sadik Armagan89c5a9e2021-01-20 17:48:07 +0000152}
153
154} // anonymous namespace