// // Copyright © 2019 Arm Ltd and Contributors. All rights reserved. // SPDX-License-Identifier: MIT // #include "RefElementwiseUnaryWorkload.hpp" #include "Decoders.hpp" #include "ElementwiseFunction.hpp" #include "Encoders.hpp" #include "RefWorkloadUtils.hpp" #include "Abs.hpp" #include "Exp.hpp" #include "Log.hpp" #include "Rsqrt.hpp" #include "Sin.hpp" #include "Sqrt.hpp" #include #include #include namespace armnn { RefElementwiseUnaryWorkload::RefElementwiseUnaryWorkload(const ElementwiseUnaryQueueDescriptor& desc, const WorkloadInfo& info) : BaseWorkload(desc, info) {} void RefElementwiseUnaryWorkload::Execute() const { Execute(m_Data.m_Inputs, m_Data.m_Outputs); } void RefElementwiseUnaryWorkload::ExecuteAsync(WorkingMemDescriptor &workingMemDescriptor) { Execute(workingMemDescriptor.m_Inputs, workingMemDescriptor.m_Outputs); } void RefElementwiseUnaryWorkload::Execute(std::vector inputs, std::vector outputs) const { ARMNN_SCOPED_PROFILING_EVENT(Compute::CpuRef, "RefElementwiseUnaryWorkload_Execute"); const TensorInfo& inputInfo = GetTensorInfo(inputs[0]); const TensorInfo& outputInfo = GetTensorInfo(outputs[0]); const TensorShape& inShape = inputInfo.GetShape(); const TensorShape& outShape = outputInfo.GetShape(); std::unique_ptr> input = MakeDecoder(inputInfo, inputs[0]->Map()); std::unique_ptr> output= MakeEncoder(outputInfo, outputs[0]->Map()); using AbsFunction = ElementwiseUnaryFunction>; using ExpFunction = ElementwiseUnaryFunction>; using LogFunction = ElementwiseUnaryFunction>; using NegFunction = ElementwiseUnaryFunction>; using RsqrtFunction = ElementwiseUnaryFunction>; using SinFunction = ElementwiseUnaryFunction>; using SqrtFunction = ElementwiseUnaryFunction>; switch (m_Data.m_Parameters.m_Operation) { case UnaryOperation::Abs: { AbsFunction(inShape, outShape, *input, *output); break; } case UnaryOperation::Exp: { ExpFunction(inShape, outShape, *input, *output); break; } case UnaryOperation::Log: { LogFunction(inShape, outShape, *input, *output); break; } case UnaryOperation::Neg: { NegFunction(inShape, outShape, *input, *output); break; } case UnaryOperation::Rsqrt: { RsqrtFunction(inShape, outShape, *input, *output); break; } case UnaryOperation::Sin: { SinFunction(inShape, outShape, *input, *output); break; } case UnaryOperation::Sqrt: { SqrtFunction(inShape, outShape, *input, *output); break; } default: { throw InvalidArgumentException(std::string("Unsupported unary operation ") + GetUnaryOperationAsCString(m_Data.m_Parameters.m_Operation), CHECK_LOCATION()); } } } } // namespace armnn