ArmNN
 24.11
RefElementwiseBinaryWorkload.cpp
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1 //
2 // Copyright © 2023-2024 Arm Ltd and Contributors. All rights reserved.
3 // SPDX-License-Identifier: MIT
4 //
5 
7 
8 #include "Decoders.hpp"
10 #include "Encoders.hpp"
11 #include "RefWorkloadUtils.hpp"
12 #include "Maximum.hpp"
13 #include "Minimum.hpp"
14 #include "SquaredDifference.hpp"
15 #include "Power.hpp"
16 #include "FloorDiv.hpp"
17 
18 #include <Profiling.hpp>
19 
20 #include <armnn/TypesUtils.hpp>
21 
22 #include <functional>
23 
24 namespace armnn
25 {
26 
27 template<typename DataType>
28 void ExecuteFunction(std::vector<ITensorHandle*> inputs,
29  std::vector<ITensorHandle*> outputs,
30  BinaryOperation operation)
31 {
32  const TensorInfo& inputInfo0 = GetTensorInfo(inputs[0]);
33  const TensorInfo& inputInfo1 = GetTensorInfo(inputs[1]);
34  const TensorInfo& outputInfo = GetTensorInfo(outputs[0]);
35 
36  const TensorShape& inShape0 = inputInfo0.GetShape();
37  const TensorShape& inShape1 = inputInfo1.GetShape();
38  const TensorShape& outShape = outputInfo.GetShape();
39 
40  std::unique_ptr<Decoder<DataType>> input0 = MakeDecoder<DataType>(inputInfo0, inputs[0]->Map());
41  std::unique_ptr<Decoder<DataType>> input1 = MakeDecoder<DataType>(inputInfo1, inputs[1]->Map());
42  std::unique_ptr<Encoder<DataType>> output = MakeEncoder<DataType>(outputInfo, outputs[0]->Map());
43 
53 
54  switch (operation)
55  {
57  {
58  AddFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
59  break;
60  }
62  {
63  DivFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
64  break;
65  }
67  {
68  FloorDivFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
69  break;
70  }
72  {
73  MaximumFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
74  break;
75  }
77  {
78  MinimumFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
79  break;
80  }
82  {
83  MulFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
84  break;
85  }
87  {
88  PowerFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
89  break;
90  }
92  {
93  SubFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
94  break;
95  }
97  {
98  SqDiffFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
99  break;
100  }
101  default:
102  {
103  throw InvalidArgumentException(std::string("Unsupported binary operation ") +
105  }
106  }
107 }
108 
110  const WorkloadInfo& info)
112 {}
113 
115 {
117 }
118 
120 {
121 
122  WorkingMemDescriptor* workingMemDescriptor = static_cast<WorkingMemDescriptor*>(executionData.m_Data);
123  Execute(workingMemDescriptor->m_Inputs, workingMemDescriptor->m_Outputs);
124 }
125 
126 void RefElementwiseBinaryWorkload::Execute(std::vector<ITensorHandle*> inputs,
127  std::vector<ITensorHandle*> outputs) const
128 {
129  ARMNN_SCOPED_PROFILING_EVENT_REF_NAME_GUID("RefElementwiseBinaryWorkload_Execute");
130 
131  if (GetTensorInfo(inputs[0]).GetDataType() == DataType::Signed32)
132  {
133  ExecuteFunction<int32_t>(inputs, outputs, m_Data.m_Parameters.m_Operation);
134  }
135  else
136  {
137  ExecuteFunction<float>(inputs, outputs, m_Data.m_Parameters.m_Operation);
138  }
139 }
140 
141 } // namespace armnn
armnn::GetBinaryOperationAsCString
constexpr char const * GetBinaryOperationAsCString(BinaryOperation operation)
Definition: TypesUtils.hpp:76
armnn::BinaryOperation::Mul
@ Mul
armnn::BinaryOperation::Add
@ Add
Minimum.hpp
armnn::experimental::ExecutionData::m_Data
void * m_Data
Definition: ExecutionData.hpp:16
TypesUtils.hpp
armnn::TensorInfo
Definition: Tensor.hpp:152
armnn::BinaryOperation::Sub
@ Sub
armnn::RefElementwiseBinaryWorkload::RefElementwiseBinaryWorkload
RefElementwiseBinaryWorkload(const ElementwiseBinaryQueueDescriptor &descriptor, const WorkloadInfo &info)
Definition: RefElementwiseBinaryWorkload.cpp:109
armnn::RefElementwiseBinaryWorkload::Execute
void Execute() const override
Definition: RefElementwiseBinaryWorkload.cpp:114
CHECK_LOCATION
#define CHECK_LOCATION()
Definition: Exceptions.hpp:203
Profiling.hpp
ARMNN_SCOPED_PROFILING_EVENT_REF_NAME_GUID
#define ARMNN_SCOPED_PROFILING_EVENT_REF_NAME_GUID(label)
Creates a profiling event that uses GetGuid() and GetName() from the calling class.
Definition: RefWorkloadUtils.hpp:22
FloorDiv.hpp
armnn::ElementwiseBinaryFunction
Definition: ElementwiseFunction.hpp:15
armnn::TensorShape
Definition: Tensor.hpp:20
armnn::BinaryOperation::Maximum
@ Maximum
armnn::ElementwiseBinaryQueueDescriptor
Definition: WorkloadData.hpp:671
armnn::BinaryOperation::SqDiff
@ SqDiff
armnn::QueueDescriptorWithParameters::m_Parameters
LayerDescriptor m_Parameters
Definition: WorkloadData.hpp:66
RefElementwiseBinaryWorkload.hpp
armnn::ExecuteFunction
void ExecuteFunction(std::vector< ITensorHandle * > inputs, std::vector< ITensorHandle * > outputs, BinaryOperation operation)
Definition: RefElementwiseBinaryWorkload.cpp:28
armnn::WorkloadInfo
Contains information about TensorInfos of a layer.
Definition: WorkloadInfo.hpp:16
armnn::InvalidArgumentException
Definition: Exceptions.hpp:80
armnn::GetTensorInfo
const TensorInfo & GetTensorInfo(const ITensorHandle *tensorHandle)
float32 helpers
Definition: RefWorkloadUtils.hpp:33
armnn::BoostLogSeverityMapping::info
@ info
armnn::BinaryOperation::Power
@ Power
armnn::QueueDescriptor::m_Outputs
std::vector< ITensorHandle * > m_Outputs
Definition: WorkloadData.hpp:27
armnn::RefElementwiseBinaryWorkload::ExecuteAsync
void ExecuteAsync(ExecutionData &executionData) override
Definition: RefElementwiseBinaryWorkload.cpp:119
armnn::DataType::Signed32
@ Signed32
SquaredDifference.hpp
RefWorkloadUtils.hpp
armnn::BinaryOperation::FloorDiv
@ FloorDiv
armnn::BinaryOperation
BinaryOperation
Definition: Types.hpp:138
armnn::BaseWorkload< ElementwiseBinaryQueueDescriptor >::m_Data
ElementwiseBinaryQueueDescriptor m_Data
Definition: Workload.hpp:89
armnn::TensorInfo::GetShape
const TensorShape & GetShape() const
Definition: Tensor.hpp:193
ElementwiseFunction.hpp
armnn::ElementwiseBinaryDescriptor::m_Operation
BinaryOperation m_Operation
Specifies the elementwiseBinary operation to execute.
Definition: Descriptors.hpp:125
Decoders.hpp
Maximum.hpp
armnn::BinaryOperation::Minimum
@ Minimum
armnn::LayerType::Map
@ Map
armnn::experimental::WorkingMemDescriptor::m_Inputs
std::vector< ITensorHandle * > m_Inputs
Definition: WorkingMemDescriptor.hpp:20
armnn
Copyright (c) 2021 ARM Limited and Contributors.
Definition: 01_00_quick_start.dox:6
armnn::experimental::WorkingMemDescriptor
Definition: WorkingMemDescriptor.hpp:18
Power.hpp
armnn::BinaryOperation::Div
@ Div
Encoders.hpp
armnn::RefBaseWorkload
Definition: RefBaseWorkload.hpp:13
armnn::experimental::WorkingMemDescriptor::m_Outputs
std::vector< ITensorHandle * > m_Outputs
Definition: WorkingMemDescriptor.hpp:21
armnn::QueueDescriptor::m_Inputs
std::vector< ITensorHandle * > m_Inputs
Definition: WorkloadData.hpp:26
armnn::experimental::ExecutionData
Definition: ExecutionData.hpp:14