vtk-m/vtkm/filter/Lagrangian.h
Kenneth Moreland bddad9b386 Remove TryExecute from filters
Now that the dispatcher does its own TryExecute, filters do not need to
do that. This change requires all worklets called by filters to be able
to execute without knowing the device a priori.
2018-10-16 15:59:53 -06:00

121 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.
//
// Copyright 2017 National Technology & Engineering Solutions of Sandia, LLC (NTESS).
// Copyright 2017 UT-Battelle, LLC.
// Copyright 2017 Los Alamos National Security.
//
// Under the terms of Contract DE-NA0003525 with NTESS,
// the U.S. Government retains certain rights in this software.
//
// Under the terms of Contract DE-AC52-06NA25396 with Los Alamos National
// Laboratory (LANL), the U.S. Government retains certain rights in
// this software.
//============================================================================
#ifndef vtk_m_filter_Lagrangian_h
#define vtk_m_filter_Lagrangian_h
#include <vtkm/filter/FilterDataSetWithField.h>
namespace vtkm
{
namespace filter
{
class Lagrangian : public vtkm::filter::FilterDataSetWithField<Lagrangian>
{
public:
VTKM_CONT
Lagrangian();
VTKM_CONT
void SetRank(vtkm::Id val) { this->rank = val; }
VTKM_CONT
void SetInitFlag(bool val) { this->initFlag = val; }
VTKM_CONT
void SetExtractFlows(bool val) { this->extractFlows = val; }
VTKM_CONT
void SetResetParticles(bool val) { this->resetParticles = val; }
VTKM_CONT
void SetStepSize(vtkm::Float32 val) { this->stepSize = val; }
VTKM_CONT
void SetWriteFrequency(vtkm::Id val) { this->writeFrequency = val; }
VTKM_CONT
void SetSeedResolutionInX(vtkm::Id val) { this->x_res = val; }
VTKM_CONT
void SetSeedResolutionInY(vtkm::Id val) { this->y_res = val; }
VTKM_CONT
void SetSeedResolutionInZ(vtkm::Id val) { this->z_res = val; }
VTKM_CONT
void SetCustomSeedResolution(vtkm::Id val) { this->cust_res = val; }
VTKM_CONT
void SetSeedingResolution(vtkm::Id3 val) { this->SeedRes = val; }
VTKM_CONT
void UpdateSeedResolution(vtkm::cont::DataSet input);
VTKM_CONT
void WriteDataSet(vtkm::Id cycle, std::string filename, vtkm::cont::DataSet dataset);
VTKM_CONT
void InitializeUniformSeeds(const vtkm::cont::DataSet& input);
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,
vtkm::filter::PolicyBase<DerivedPolicy> policy);
template <typename T, typename StorageType, typename DerivedPolicy>
VTKM_CONT bool DoMapField(vtkm::cont::DataSet& result,
const vtkm::cont::ArrayHandle<T, StorageType>& input,
const vtkm::filter::FieldMetadata& fieldMeta,
vtkm::filter::PolicyBase<DerivedPolicy> policy);
private:
vtkm::Id rank;
bool initFlag;
bool extractFlows;
bool resetParticles;
vtkm::Float32 stepSize;
vtkm::Id x_res, y_res, z_res;
vtkm::Id cust_res;
vtkm::Id3 SeedRes;
vtkm::Id writeFrequency;
};
template <>
class FilterTraits<Lagrangian>
{
public:
struct TypeListTagLagrangian
: vtkm::ListTagBase<vtkm::Vec<vtkm::Float32, 3>, vtkm::Vec<vtkm::Float64, 3>>
{
};
using InputFieldTypeList = TypeListTagLagrangian;
};
}
} // namespace vtkm::filter
#include <vtkm/filter/Lagrangian.hxx>
#endif // vtk_m_filter_Lagrangian_h