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James Conroyaba90cd2020-11-06 16:28:18 +00001//
Matthew Sloyan21a6a1a2022-06-30 17:13:04 +01002// Copyright © 2022 Arm Ltd and Contributors. All rights reserved.
James Conroyaba90cd2020-11-06 16:28:18 +00003// SPDX-License-Identifier: MIT
4//
5
6#include "RefLogicalBinaryWorkload.hpp"
7
8#include "Decoders.hpp"
9#include "ElementwiseFunction.hpp"
10#include "Encoders.hpp"
11#include "RefWorkloadUtils.hpp"
12
13#include <Profiling.hpp>
14
15#include <armnn/TypesUtils.hpp>
16
17namespace armnn
18{
19
20RefLogicalBinaryWorkload::RefLogicalBinaryWorkload(const LogicalBinaryQueueDescriptor& desc,
21 const WorkloadInfo& info)
Finn Williams73c547d2022-02-15 20:47:34 +000022 : RefBaseWorkload<LogicalBinaryQueueDescriptor>(desc, info)
James Conroyaba90cd2020-11-06 16:28:18 +000023{}
24
Finn Williamsb8181f72021-04-07 10:23:21 +010025void RefLogicalBinaryWorkload::Execute() const
James Conroyaba90cd2020-11-06 16:28:18 +000026{
Finn Williamsb8181f72021-04-07 10:23:21 +010027 Execute(m_Data.m_Inputs, m_Data.m_Outputs);
James Conroyaba90cd2020-11-06 16:28:18 +000028}
29
Matthew Sloyan21a6a1a2022-06-30 17:13:04 +010030void RefLogicalBinaryWorkload::ExecuteAsync(ExecutionData& executionData)
Finn Williamsb8181f72021-04-07 10:23:21 +010031{
Matthew Sloyan21a6a1a2022-06-30 17:13:04 +010032 WorkingMemDescriptor* workingMemDescriptor = static_cast<WorkingMemDescriptor*>(executionData.m_Data);
33 Execute(workingMemDescriptor->m_Inputs, workingMemDescriptor->m_Outputs);
Finn Williamsb8181f72021-04-07 10:23:21 +010034}
35
36void RefLogicalBinaryWorkload::Execute(std::vector<ITensorHandle*> inputs, std::vector<ITensorHandle*> outputs) const
James Conroyaba90cd2020-11-06 16:28:18 +000037{
38 ARMNN_SCOPED_PROFILING_EVENT(Compute::CpuRef, "RefLogicalBinaryWorkload_Execute");
39
Finn Williamsb8181f72021-04-07 10:23:21 +010040 const TensorInfo& inputInfo0 = GetTensorInfo(inputs[0]);
41 const TensorInfo& inputInfo1 = GetTensorInfo(inputs[1]);
42 const TensorInfo& outputInfo = GetTensorInfo(outputs[0]);
James Conroyaba90cd2020-11-06 16:28:18 +000043
44 const TensorShape& inShape0 = inputInfo0.GetShape();
45 const TensorShape& inShape1 = inputInfo1.GetShape();
46 const TensorShape& outShape = outputInfo.GetShape();
47
Finn Williamsb8181f72021-04-07 10:23:21 +010048 std::unique_ptr<Decoder<InType>> input0 = MakeDecoder<InType>(inputInfo0, inputs[0]->Map());
49 std::unique_ptr<Decoder<InType>> input1 = MakeDecoder<InType>(inputInfo1, inputs[1]->Map());
50 std::unique_ptr<Encoder<OutType>> output = MakeEncoder<OutType>(outputInfo, outputs[0]->Map());
James Conroyaba90cd2020-11-06 16:28:18 +000051
52 using AndFunction = LogicalBinaryFunction<std::logical_and<bool>>;
53 using OrFunction = LogicalBinaryFunction<std::logical_or<bool>>;
54
55 switch (m_Data.m_Parameters.m_Operation)
56 {
57 case LogicalBinaryOperation::LogicalAnd:
58 {
Finn Williamsb8181f72021-04-07 10:23:21 +010059 AndFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
James Conroyaba90cd2020-11-06 16:28:18 +000060 break;
61 }
62 case LogicalBinaryOperation::LogicalOr:
63 {
Finn Williamsb8181f72021-04-07 10:23:21 +010064 OrFunction(inShape0, inShape1, outShape, *input0, *input1, *output);
James Conroyaba90cd2020-11-06 16:28:18 +000065 break;
66 }
67 default:
68 {
69 throw InvalidArgumentException(std::string("Unsupported Logical Binary operation") +
70 GetLogicalBinaryOperationAsCString(m_Data.m_Parameters.m_Operation), CHECK_LOCATION());
71 }
72 }
73}
74
75} // namespace armnn