23#include <opm/common/ErrorMacros.hpp>
24#include <opm/common/TimingMacros.hpp>
26#include <opm/simulators/linalg/PreconditionerFactory.hpp>
28#include <opm/simulators/linalg/DILU.hpp>
29#include <opm/simulators/linalg/ExtraSmoothers.hpp>
30#include <opm/simulators/linalg/FlexibleSolver.hpp>
31#include <opm/simulators/linalg/FlowLinearSolverParameters.hpp>
32#include <opm/simulators/linalg/OwningBlockPreconditioner.hpp>
33#include <opm/simulators/linalg/OwningTwoLevelPreconditioner.hpp>
34#include <opm/simulators/linalg/ParallelOverlappingILU0.hpp>
35#include <opm/simulators/linalg/PressureBhpTransferPolicy.hpp>
36#include <opm/simulators/linalg/PressureTransferPolicy.hpp>
37#include <opm/simulators/linalg/PropertyTree.hpp>
38#include <opm/simulators/linalg/WellOperators.hpp>
40#include <opm/simulators/linalg/ilufirstelement.hh>
41#include <opm/simulators/linalg/matrixblock.hh>
43#include <dune/common/unused.hh>
44#include <dune/istl/owneroverlapcopy.hh>
45#include <dune/istl/paamg/amg.hh>
46#include <dune/istl/paamg/fastamg.hh>
47#include <dune/istl/paamg/kamg.hh>
48#include <dune/istl/preconditioners.hh>
51#include <opm/simulators/linalg/PreconditionerFactoryGPUIncludeWrapper.hpp>
54#include <opm/simulators/linalg/HyprePreconditioner.hpp>
58#include <opm/simulators/linalg/AmgxPreconditioner.hpp>
63#include <opm/simulators/linalg/StandardPreconditioners.hpp>
69template <
class Operator,
class Comm>
70PreconditionerFactory<Operator, Comm>::PreconditionerFactory()
75template <
class Operator,
class Comm>
77PreconditionerFactory<Operator, Comm>::instance()
83template <
class Operator,
class Comm>
85PreconditionerFactory<Operator, Comm>::doCreate(
const Operator& op,
87 const std::function<Vector()> weightsCalculator,
88 std::size_t pressureIndex)
91 StandardPreconditioners<Operator, Comm>::add();
94 std::string type = prm.get<std::string>(
"type",
"paroverilu0");
96 std::transform(type.begin(), type.end(), type.begin(), ::tolower);
97 auto it = creators_.find(type);
98 if (it == creators_.end()) {
99 std::ostringstream msg;
100 msg <<
"Preconditioner type " << type <<
" is not registered in the factory. Available types are: ";
101 for (
const auto& prec : creators_) {
102 msg << prec.first <<
' ';
105 OPM_THROW(std::invalid_argument, msg.str());
107 return it->second(op, prm, weightsCalculator, pressureIndex);
110template <
class Operator,
class Comm>
112PreconditionerFactory<Operator, Comm>::doCreate(
const Operator& op,
114 const std::function<Vector()> weightsCalculator,
115 std::size_t pressureIndex,
119 StandardPreconditioners<Operator, Comm>::add();
122 std::string type = prm.get<std::string>(
"type",
"paroverilu0");
124 std::transform(type.begin(), type.end(), type.begin(), ::tolower);
125 auto it = parallel_creators_.find(type);
126 if (it == parallel_creators_.end()) {
127 std::ostringstream msg;
128 msg <<
"Parallel preconditioner type " << type <<
" is not registered in the factory. Available types are: ";
129 for (
const auto& prec : parallel_creators_) {
130 msg << prec.first <<
' ';
133 OPM_THROW(std::invalid_argument, msg.str());
135 return it->second(op, prm, weightsCalculator, pressureIndex, comm);
138template <
class Operator,
class Comm>
140PreconditionerFactory<Operator, Comm>::doAddCreator(
const std::string& type, Creator c)
145template <
class Operator,
class Comm>
147PreconditionerFactory<Operator, Comm>::doAddCreator(
const std::string& type, ParCreator c)
149 parallel_creators_[type] = c;
152template <
class Operator,
class Comm>
156 const std::function<Vector()>& weightsCalculator,
157 std::size_t pressureIndex)
159 return instance().doCreate(op, prm, weightsCalculator, pressureIndex);
162template <
class Operator,
class Comm>
166 const std::function<Vector()>& weightsCalculator,
168 std::size_t pressureIndex)
170 return instance().doCreate(op, prm, weightsCalculator, pressureIndex, comm);
174template <
class Operator,
class Comm>
179 std::size_t pressureIndex)
181 return instance().doCreate(op, prm, std::function<Vector()>(), pressureIndex, comm);
184template <
class Operator,
class Comm>
188 instance().doAddCreator(type, creator);
191template <
class Operator,
class Comm>
195 instance().doAddCreator(type, creator);
198using CommSeq = Dune::Amg::SequentialInformation;
200template<
class Scalar,
int Dim>
201using OpFSeq = Dune::MatrixAdapter<Dune::BCRSMatrix<Dune::FieldMatrix<Scalar, Dim, Dim>>,
202 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
203 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>>;
204template<
class Scalar,
int Dim>
205using OpBSeq = Dune::MatrixAdapter<Dune::BCRSMatrix<MatrixBlock<Scalar, Dim, Dim>>,
206 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
207 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>>;
209template<
class Scalar,
int Dim,
bool overlap>
211 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
212 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>>;
214template<
class Scalar,
int Dim,
bool overlap>
216 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
217 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
221using CommPar = Dune::OwnerOverlapCopyCommunication<int, int>;
223template<
class Scalar,
int Dim>
224using OpFPar = Dune::OverlappingSchwarzOperator<Dune::BCRSMatrix<Dune::FieldMatrix<Scalar, Dim, Dim>>,
225 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
226 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
229template<
class Scalar,
int Dim>
230using OpBPar = Dune::OverlappingSchwarzOperator<Dune::BCRSMatrix<MatrixBlock<Scalar, Dim, Dim>>,
231 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
232 Dune::BlockVector<Dune::FieldVector<Scalar, Dim>>,
234template<
class Scalar,
int Dim>
236 Dune::BlockVector<Dune::FieldVector<Scalar,Dim>>,
237 Dune::BlockVector<Dune::FieldVector<Scalar,Dim>>,
240template<
class Scalar,
int Dim>
242 Dune::BlockVector<Dune::FieldVector<Scalar,Dim>>,
243 Dune::BlockVector<Dune::FieldVector<Scalar,Dim>>,
246#define INSTANTIATE_PF_PAR(T,Dim) \
247 template class PreconditionerFactory<OpBSeq<T,Dim>, CommPar>; \
248 template class PreconditionerFactory<OpFPar<T,Dim>, CommPar>; \
249 template class PreconditionerFactory<OpBPar<T,Dim>, CommPar>; \
250 template class PreconditionerFactory<OpGLFPar<T,Dim>, CommPar>; \
251 template class PreconditionerFactory<OpGLBPar<T,Dim>, CommPar>; \
252 template class PreconditionerFactory<OpW<T,Dim, false>, CommPar>; \
253 template class PreconditionerFactory<OpWG<T,Dim, true>, CommPar>; \
254 template class PreconditionerFactory<OpBPar<T,Dim>, CommSeq>; \
255 template class PreconditionerFactory<OpGLBPar<T,Dim>, CommSeq>;
258#define INSTANTIATE_PF_SEQ(T,Dim) \
259 template class PreconditionerFactory<OpFSeq<T,Dim>, CommSeq>; \
260 template class PreconditionerFactory<OpBSeq<T,Dim>, CommSeq>; \
261 template class PreconditionerFactory<OpW<T,Dim, false>, CommSeq>; \
262 template class PreconditionerFactory<OpWG<T,Dim, true>, CommSeq>;
265#define INSTANTIATE_PF(T,Dim) \
266 INSTANTIATE_PF_PAR(T,Dim) \
267 INSTANTIATE_PF_SEQ(T,Dim)
269#define INSTANTIATE_PF(T,Dim) INSTANTIATE_PF_SEQ(T,Dim)
Dune linear operator that assumes ghost rows are ordered after interior rows.
Definition WellOperators.hpp:402
This is an object factory for creating preconditioners.
Definition PreconditionerFactory.hpp:64
std::shared_ptr< Dune::PreconditionerWithUpdate< Vector, Vector > > PrecPtr
The type of pointer returned by create().
Definition PreconditionerFactory.hpp:71
static PrecPtr create(const Operator &op, const PropertyTree &prm, const std::function< Vector()> &weightsCalculator={}, std::size_t pressureIndex=std::numeric_limits< std::size_t >::max())
Create a new serial preconditioner and return a pointer to it.
Definition PreconditionerFactory_impl.hpp:154
static void addCreator(const std::string &type, Creator creator)
Add a creator for a serial preconditioner to the PreconditionerFactory.
Definition PreconditionerFactory_impl.hpp:186
std::function< PrecPtr(const Operator &, const PropertyTree &, const std::function< Vector()> &, std::size_t)> Creator
The type of creator functions passed to addCreator().
Definition PreconditionerFactory.hpp:74
Hierarchical collection of key/value pairs.
Definition PropertyTree.hpp:39
Adapter to combine a matrix and another linear operator into a combined linear operator.
Definition WellOperators.hpp:299
Adapter to combine a matrix and another linear operator into a combined linear operator.
Definition WellOperators.hpp:225
This file contains a set of helper functions used by VFPProd / VFPInj.
Definition blackoilbioeffectsmodules.hh:43