vtk-m/vtkm/filter/LagrangianStructures.h
Abhishek Yenpure 4c781374c2 Removing virtuals v1
-- Remove virtuals from Integrators, Fields, Particles
-- Remaining virtuals are in the CellInterpolationHelpers
2021-03-22 23:00:36 -07:00

92 lines
3.4 KiB
C++

//============================================================================
// Copyright (c) Kitware, Inc.
// All rights reserved.
// See LICENSE.txt for details.
//
// This software is distributed WITHOUT ANY WARRANTY; without even
// the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
// PURPOSE. See the above copyright notice for more information.
//============================================================================
#ifndef vtk_m_filter_LagrangianStructures_h
#define vtk_m_filter_LagrangianStructures_h
#include <vtkm/cont/DataSetBuilderUniform.h>
#include <vtkm/filter/FilterDataSetWithField.h>
#include <vtkm/worklet/ParticleAdvection.h>
#include <vtkm/worklet/particleadvection/GridEvaluators.h>
#include <vtkm/worklet/particleadvection/Stepper.h>
namespace vtkm
{
namespace filter
{
class LagrangianStructures : public vtkm::filter::FilterDataSetWithField<LagrangianStructures>
{
public:
using SupportedTypes = vtkm::TypeListFieldVec3;
LagrangianStructures();
void SetStepSize(vtkm::FloatDefault s) { this->StepSize = s; }
vtkm::FloatDefault GetStepSize() { return this->StepSize; }
void SetNumberOfSteps(vtkm::Id n) { this->NumberOfSteps = n; }
vtkm::Id GetNumberOfSteps() { return this->NumberOfSteps; }
void SetAdvectionTime(vtkm::FloatDefault advectionTime) { this->AdvectionTime = advectionTime; }
vtkm::FloatDefault GetAdvectionTime() { return this->AdvectionTime; }
void SetUseAuxiliaryGrid(bool useAuxiliaryGrid) { this->UseAuxiliaryGrid = useAuxiliaryGrid; }
bool GetUseAuxiliaryGrid() { return this->UseAuxiliaryGrid; }
void SetAuxiliaryGridDimensions(vtkm::Id3 auxiliaryDims) { this->AuxiliaryDims = auxiliaryDims; }
vtkm::Id3 GetAuxiliaryGridDimensions() { return this->AuxiliaryDims; }
void SetUseFlowMapOutput(bool useFlowMapOutput) { this->UseFlowMapOutput = useFlowMapOutput; }
bool GetUseFlowMapOutput() { return this->UseFlowMapOutput; }
void SetOutputFieldName(std::string outputFieldName) { this->OutputFieldName = outputFieldName; }
std::string GetOutputFieldName() { return this->OutputFieldName; }
inline void SetFlowMapOutput(vtkm::cont::ArrayHandle<vtkm::Vec3f>& flowMap)
{
this->FlowMapOutput = flowMap;
}
inline vtkm::cont::ArrayHandle<vtkm::Vec3f> GetFlowMapOutput() { return this->FlowMapOutput; }
template <typename T, typename StorageType, typename DerivedPolicy>
VTKM_CONT vtkm::cont::DataSet DoExecute(
const vtkm::cont::DataSet& input,
const vtkm::cont::ArrayHandle<vtkm::Vec<T, 3>, StorageType>& field,
const vtkm::filter::FieldMetadata& fieldMeta,
const vtkm::filter::PolicyBase<DerivedPolicy>& policy);
//Map a new field onto the resulting dataset after running the filter
//this call is only valid after calling DoExecute
template <typename DerivedPolicy>
VTKM_CONT bool MapFieldOntoOutput(vtkm::cont::DataSet& result,
const vtkm::cont::Field& field,
vtkm::filter::PolicyBase<DerivedPolicy> policy);
private:
vtkm::FloatDefault StepSize;
vtkm::Id NumberOfSteps;
vtkm::FloatDefault AdvectionTime;
bool UseAuxiliaryGrid = false;
vtkm::Id3 AuxiliaryDims;
bool UseFlowMapOutput = false;
std::string OutputFieldName;
vtkm::cont::ArrayHandle<vtkm::Vec3f> FlowMapOutput;
};
} // namespace filter
} // namespace vtkm
#include <vtkm/filter/LagrangianStructures.hxx>
#endif // vtk_m_filter_LagrangianStructures_h