// // Copyright © 2019 Arm Ltd and Contributors. All rights reserved. // SPDX-License-Identifier: MIT // #include "NeonInstanceNormalizationWorkload.hpp" #include "NeonWorkloadUtils.hpp" #include #include #include using namespace armnn::armcomputetensorutils; namespace armnn { arm_compute::Status NeonInstanceNormalizationWorkloadValidate(const TensorInfo& input, const TensorInfo& output, const InstanceNormalizationDescriptor& descriptor) { const arm_compute::TensorInfo aclInputInfo = BuildArmComputeTensorInfo(input, descriptor.m_DataLayout); const arm_compute::TensorInfo aclOutputInfo = BuildArmComputeTensorInfo(output, descriptor.m_DataLayout); return arm_compute::NEInstanceNormalizationLayer::validate(&aclInputInfo, &aclOutputInfo, descriptor.m_Gamma, descriptor.m_Beta, descriptor.m_Eps); } NeonInstanceNormalizationWorkload::NeonInstanceNormalizationWorkload( const InstanceNormalizationQueueDescriptor& descriptor, const WorkloadInfo& info) : NeonBaseWorkload(descriptor, info) { // Report Profiling Details ARMNN_REPORT_PROFILING_WORKLOAD_DESC("NeonInstanceNormalizationWorkload_Construct", descriptor.m_Parameters, info, this->GetGuid()); m_Data.ValidateInputsOutputs("NeonInstanceNormalizationWorkload", 1, 1); arm_compute::ITensor& input = static_cast(m_Data.m_Inputs[0])->GetTensor(); arm_compute::ITensor& output = static_cast(m_Data.m_Outputs[0])->GetTensor(); arm_compute::DataLayout aclDataLayout = ConvertDataLayout(m_Data.m_Parameters.m_DataLayout); input.info()->set_data_layout(aclDataLayout); output.info()->set_data_layout(aclDataLayout); m_Layer.configure(&input, &output, descriptor.m_Parameters.m_Gamma, descriptor.m_Parameters.m_Beta, descriptor.m_Parameters.m_Eps); }; void NeonInstanceNormalizationWorkload::Execute() const { ARMNN_SCOPED_PROFILING_EVENT_NEON_GUID("NeonInstanceNormalizationWorkload_Execute", this->GetGuid()); m_Layer.run(); } } // namespace armnn