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Sadik Armagan581742d2019-08-12 14:11:37 +01001//
Mike Kelly7cbe7812023-07-25 17:37:33 +01002// Copyright © 2019-2023 Arm Ltd and Contributors. All rights reserved.
Sadik Armagan581742d2019-08-12 14:11:37 +01003// SPDX-License-Identifier: MIT
4//
5#include "NeonTransposeConvolution2dWorkload.hpp"
6
7#include "NeonWorkloadUtils.hpp"
8
9#include <Profiling.hpp>
10
11#include <armnn/Types.hpp>
Jan Eilersbb446e52020-04-02 13:56:54 +010012#include <armnn/utility/PolymorphicDowncast.hpp>
Sadik Armagan581742d2019-08-12 14:11:37 +010013
14#include <aclCommon/ArmComputeTensorUtils.hpp>
15
Colm Donelan0c479742021-12-10 12:43:54 +000016#include <armnn/backends/TensorHandle.hpp>
Sadik Armagan581742d2019-08-12 14:11:37 +010017
18#include <neon/workloads/NeonWorkloadUtils.hpp>
19
Sadik Armagan581742d2019-08-12 14:11:37 +010020namespace armnn
21{
22
23using namespace armcomputetensorutils;
24
25arm_compute::Status NeonTransposeConvolution2dWorkloadValidate(const TensorInfo& input,
26 const TensorInfo& output,
27 const TransposeConvolution2dDescriptor& descriptor,
28 const TensorInfo& weights,
29 const Optional<TensorInfo>& biases)
30{
31 const arm_compute::TensorInfo aclInputInfo = BuildArmComputeTensorInfo(input, descriptor.m_DataLayout);
32 const arm_compute::TensorInfo aclOutputInfo = BuildArmComputeTensorInfo(output, descriptor.m_DataLayout);
33 const arm_compute::TensorInfo aclWeightsInfo = BuildArmComputeTensorInfo(weights, descriptor.m_DataLayout);
34
35 arm_compute::TensorInfo aclBiasesInfo;
36 arm_compute::TensorInfo *optionalAclBiasesInfo = nullptr;
37
38 if (descriptor.m_BiasEnabled)
39 {
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +010040 ARMNN_ASSERT(biases.has_value());
Sadik Armagan581742d2019-08-12 14:11:37 +010041
42 aclBiasesInfo = BuildArmComputeTensorInfo(biases.value(), descriptor.m_DataLayout);
43 optionalAclBiasesInfo = &aclBiasesInfo;
44 }
45
46 arm_compute::PadStrideInfo layerInfo = BuildArmComputePadStrideInfo(descriptor);
47
48 return arm_compute::NEDeconvolutionLayer::validate(&aclInputInfo,
49 &aclWeightsInfo,
50 optionalAclBiasesInfo,
51 &aclOutputInfo,
52 layerInfo);
53}
54
55NeonTransposeConvolution2dWorkload::NeonTransposeConvolution2dWorkload(
56 const TransposeConvolution2dQueueDescriptor& descriptor, const WorkloadInfo& info,
57 std::shared_ptr<arm_compute::MemoryManagerOnDemand>& memoryManager)
Teresa Charlin588cbdf2022-01-19 15:55:37 +000058 : NeonBaseWorkload<TransposeConvolution2dQueueDescriptor>(descriptor, info)
Sadik Armagan581742d2019-08-12 14:11:37 +010059{
60 m_Data.ValidateInputsOutputs("NeonTransposeConvolution2dWorkload", 1, 1);
61
Jan Eilersbb446e52020-04-02 13:56:54 +010062 arm_compute::ITensor& input = PolymorphicDowncast<IAclTensorHandle*>(m_Data.m_Inputs[0])->GetTensor();
63 arm_compute::ITensor& output = PolymorphicDowncast<IAclTensorHandle*>(m_Data.m_Outputs[0])->GetTensor();
Sadik Armagan581742d2019-08-12 14:11:37 +010064
65 arm_compute::DataLayout aclDataLayout = ConvertDataLayout(m_Data.m_Parameters.m_DataLayout);
66 input.info()->set_data_layout(aclDataLayout);
67 output.info()->set_data_layout(aclDataLayout);
68
69 m_KernelTensor = std::make_unique<arm_compute::Tensor>();
70 BuildArmComputeTensor(*m_KernelTensor, m_Data.m_Weight->GetTensorInfo(), m_Data.m_Parameters.m_DataLayout);
71
72 if (m_Data.m_Parameters.m_BiasEnabled)
73 {
74 m_BiasTensor = std::make_unique<arm_compute::Tensor>();
75 BuildArmComputeTensor(*m_BiasTensor, m_Data.m_Bias->GetTensorInfo(), m_Data.m_Parameters.m_DataLayout);
76 }
77
78 arm_compute::PadStrideInfo padStrideInfo = BuildArmComputePadStrideInfo(m_Data.m_Parameters);
79
Keith Davis2d0679f2021-08-05 11:35:00 +010080 // Add details for profiling output
81 WorkloadInfo detailsInfo;
82
83 detailsInfo.m_InputTensorInfos = info.m_InputTensorInfos;
84 detailsInfo.m_OutputTensorInfos = info.m_OutputTensorInfos;
85 detailsInfo.m_WeightsTensorInfo = armnn::Optional<armnn::TensorInfo>(descriptor.m_Weight->GetTensorInfo());
86 if (descriptor.m_Parameters.m_BiasEnabled)
87 {
88 detailsInfo.m_BiasTensorInfo = armnn::Optional<armnn::TensorInfo>(descriptor.m_Bias->GetTensorInfo());
89 }
90
91 // Report Profiling Details
92 ARMNN_REPORT_PROFILING_WORKLOAD_DESC("NeonTransposeConvolution2dWorkload_Construct",
93 descriptor.m_Parameters,
94 detailsInfo,
95 this->GetGuid());
96
Sadik Armagan581742d2019-08-12 14:11:37 +010097 m_Layer = std::make_unique<arm_compute::NEDeconvolutionLayer>(memoryManager);
98 m_Layer->configure(&input, m_KernelTensor.get(), m_BiasTensor.get(), &output, padStrideInfo);
99
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100100 ARMNN_ASSERT(m_Layer);
Sadik Armagan581742d2019-08-12 14:11:37 +0100101
102 InitializeArmComputeTensorData(*m_KernelTensor, m_Data.m_Weight);
103
104 if (m_Data.m_Parameters.m_BiasEnabled)
105 {
106 InitializeArmComputeTensorData(*m_BiasTensor, m_Data.m_Bias);
107 }
108
109 m_Layer->prepare();
110 FreeUnusedTensors();
111}
112
113void NeonTransposeConvolution2dWorkload::Execute() const
114{
Mike Kelly7cbe7812023-07-25 17:37:33 +0100115 ARMNN_SCOPED_PROFILING_EVENT_NEON_NAME_GUID("NeonTransposeConvolution2dWorkload_Execute");
Sadik Armagan581742d2019-08-12 14:11:37 +0100116 m_Layer->run();
117}
118
119void NeonTransposeConvolution2dWorkload::FreeUnusedTensors()
120{
121 FreeTensorIfUnused(m_KernelTensor);
122 FreeTensorIfUnused(m_BiasTensor);
123}
124
125} // namespace armnn