// // Copyright © 2017-2024 Arm Ltd and Contributors. All rights reserved. // SPDX-License-Identifier: MIT // #include "ConvertFp16ToFp32Layer.hpp" #include "LayerCloneBase.hpp" #include #include #include namespace armnn { ConvertFp16ToFp32Layer::ConvertFp16ToFp32Layer(const char* name) : Layer(1, 1, LayerType::ConvertFp16ToFp32, name) { } std::unique_ptr ConvertFp16ToFp32Layer::CreateWorkload(const IWorkloadFactory& factory) const { ConvertFp16ToFp32QueueDescriptor descriptor; SetAdditionalInfo(descriptor); return factory.CreateWorkload(LayerType::ConvertFp16ToFp32, descriptor, PrepInfoAndDesc(descriptor)); } ConvertFp16ToFp32Layer* ConvertFp16ToFp32Layer::Clone(Graph& graph) const { return CloneBase(graph, GetName()); } void ConvertFp16ToFp32Layer::ValidateTensorShapesFromInputs() { VerifyLayerConnections(1, CHECK_LOCATION()); const TensorShape& outputShape = GetOutputSlot(0).GetTensorInfo().GetShape(); VerifyShapeInferenceType(outputShape, m_ShapeInferenceMethod); auto inferredShapes = InferOutputShapes({ GetInputSlot(0).GetTensorInfo().GetShape() }); if (inferredShapes.size() != 1) { throw armnn::LayerValidationException("inferredShapes has " + std::to_string(inferredShapes.size()) + " elements - should only have 1."); } ValidateAndCopyShape(outputShape, inferredShapes[0], m_ShapeInferenceMethod, "ConvertFp16ToFp32Layer"); } void ConvertFp16ToFp32Layer::ExecuteStrategy(IStrategy& strategy) const { strategy.ExecuteStrategy(this, GetParameters(), {}, GetName()); } } // namespace armnn