1 //
2 // Copyright © 2020 Arm Ltd. All rights reserved.
3 // SPDX-License-Identifier: MIT
4 //
5
6 #include "NeonComparisonWorkload.hpp"
7 #include <aclCommon/ArmComputeUtils.hpp>
8 #include <aclCommon/ArmComputeTensorUtils.hpp>
9 #include <armnn/utility/PolymorphicDowncast.hpp>
10 #include <backendsCommon/CpuTensorHandle.hpp>
11
12 namespace armnn
13 {
14 using namespace armcomputetensorutils;
15
NeonComparisonWorkloadValidate(const TensorInfo & input0,const TensorInfo & input1,const TensorInfo & output,const ComparisonDescriptor & descriptor)16 arm_compute::Status NeonComparisonWorkloadValidate(const TensorInfo& input0,
17 const TensorInfo& input1,
18 const TensorInfo& output,
19 const ComparisonDescriptor& descriptor)
20 {
21 const arm_compute::TensorInfo aclInput0 = BuildArmComputeTensorInfo(input0);
22 const arm_compute::TensorInfo aclInput1 = BuildArmComputeTensorInfo(input1);
23 const arm_compute::TensorInfo aclOutput = BuildArmComputeTensorInfo(output);
24
25 const arm_compute::ComparisonOperation comparisonOperation = ConvertComparisonOperationToAcl(descriptor);
26
27 const arm_compute::Status aclStatus = arm_compute::NEElementwiseComparison::validate(&aclInput0,
28 &aclInput1,
29 &aclOutput,
30 comparisonOperation);
31 return aclStatus;
32 }
33
NeonComparisonWorkload(const ComparisonQueueDescriptor & descriptor,const WorkloadInfo & info)34 NeonComparisonWorkload::NeonComparisonWorkload(const ComparisonQueueDescriptor& descriptor, const WorkloadInfo& info)
35 : BaseWorkload<ComparisonQueueDescriptor>(descriptor, info)
36 {
37 m_Data.ValidateInputsOutputs("NeonComparisonWorkload", 2, 1);
38
39 arm_compute::ITensor& input0 = PolymorphicDowncast<IAclTensorHandle*>(m_Data.m_Inputs[0])->GetTensor();
40 arm_compute::ITensor& input1 = PolymorphicDowncast<IAclTensorHandle*>(m_Data.m_Inputs[1])->GetTensor();
41 arm_compute::ITensor& output = PolymorphicDowncast<IAclTensorHandle*>(m_Data.m_Outputs[0])->GetTensor();
42
43 const arm_compute::ComparisonOperation comparisonOperation = ConvertComparisonOperationToAcl(m_Data.m_Parameters);
44
45 m_ComparisonLayer.configure(&input0, &input1, &output, comparisonOperation);
46 }
47
Execute() const48 void NeonComparisonWorkload::Execute() const
49 {
50 ARMNN_SCOPED_PROFILING_EVENT_NEON("NeonComparisonWorkload_Execute");
51 m_ComparisonLayer.run();
52 }
53
54 } //namespace armnn