10#include "Teko_Config.h"
11#include "Teko_PreconditionerFactory.hpp"
13#include "Teko_InverseLibrary.hpp"
14#include "Teko_Preconditioner.hpp"
17#include "Teko_JacobiPreconditionerFactory.hpp"
18#include "Teko_GaussSeidelPreconditionerFactory.hpp"
19#include "Teko_HierarchicalGaussSeidelPreconditionerFactory.hpp"
20#include "Teko_AddPreconditionerFactory.hpp"
21#include "Teko_MultPreconditionerFactory.hpp"
22#include "Teko_LU2x2PreconditionerFactory.hpp"
23#include "Teko_IterativePreconditionerFactory.hpp"
24#include "Teko_DiagnosticPreconditionerFactory.hpp"
25#include "Teko_DiagonallyScaledPreconditionerFactory.hpp"
26#include "Teko_DiagonalPreconditionerFactory.hpp"
27#include "Teko_AdaptivePreconditionerFactory.hpp"
28#ifdef TEKO_HAVE_EPETRA
29#include "Teko_ProbingPreconditionerFactory.hpp"
31#include "Teko_IdentityPreconditionerFactory.hpp"
32#include "NS/Teko_LSCPreconditionerFactory.hpp"
33#include "NS/Teko_SIMPLEPreconditionerFactory.hpp"
34#include "NS/Teko_TimingsSIMPLEPreconditionerFactory.hpp"
36#ifdef Teko_ENABLE_ML_SMOOTHERS
37#include "Teko_SmootherPreconditionerFactory.hpp"
38#include "Teko_MLPreconditionerFactory.hpp"
41#include "Thyra_DefaultPreconditioner.hpp"
51 RCP<const Thyra::LinearOpBase<double> > A = fwdOpSrc.getOp();
52 return A != Teuchos::null;
60 bp->getStateObject()->setInitialized(
false);
67 PreconditionerBase<double> *prec,
68 const ESupportSolveUse )
const {
70 LinearOp A = Teuchos::rcp_const_cast<Thyra::LinearOpBase<double> >(ASrc->getOp());
73 TEUCHOS_ASSERT(blkPrec != 0);
77 state->setInitialized(
false);
83 setOpRequestHandler(*
this, M);
86 DefaultPreconditioner<double> &dPrec = Teuchos::dyn_cast<DefaultPreconditioner<double> >(*prec);
87 dPrec.initializeUnspecified(Teuchos::rcp_const_cast<LinearOpBase<double> >(M));
92 const RCP<
const LinearOpSourceBase<double> > &ASrc,
93 const RCP<
const Thyra::MultiVectorBase<double> > &solnVec, PreconditionerBase<double> *prec,
94 const ESupportSolveUse supportSolveUse)
const {
95 Preconditioner *blkPrec =
dynamic_cast<Preconditioner *
>(prec);
96 blkPrec->
setSourceVector(Teuchos::rcp_const_cast<Thyra::MultiVectorBase<double> >(solnVec));
103 PreconditionerBase<double> * ,
104 RCP<
const LinearOpSourceBase<double> > * ,
105 ESupportSolveUse * )
const {
109 TEUCHOS_TEST_FOR_EXCEPT_MSG(
true,
"\"PreconditionerFactory::uninitializePrec not implemented\"");
125 RCP<Teuchos::ParameterList> _paramList =
paramList_;
132 inverseLibrary_ = il;
138 if (inverseLibrary_ == Teuchos::null)
return InverseLibrary::buildFromStratimikos();
140 return inverseLibrary_;
149 const LinearOp &op) {
150 ModifiableLinearOp mlo = Teuchos::rcp_const_cast<Thyra::LinearOpBase<double> >(op);
153 RCP<RequestHandlerContainer> reqHandCont =
154 Teuchos::rcp_dynamic_cast<RequestHandlerContainer>(mlo);
155 if (reqHandCont != Teuchos::null) {
180 const std::string &name,
const Teuchos::ParameterList &settings,
181 const RCP<const InverseLibrary> &invLib) {
182 Teko_DEBUG_SCOPE(
"PreconditionerFactory::buildPreconditionerFactory", 10);
185 if (precFactoryBuilder_.cloneCount() == 0) initializePrecFactoryBuilder();
188 RCP<PreconditionerFactory> precFact = precFactoryBuilder_.build(name);
190 Teko_DEBUG_MSG_BEGIN(5);
191 DEBUG_STREAM <<
"Looked up \"" << name <<
"\"" << std::endl;
192 DEBUG_STREAM <<
"Built " << precFact << std::endl;
193 Teko_DEBUG_MSG_END();
195 if (precFact == Teuchos::null)
return Teuchos::null;
198 if (invLib != Teuchos::null) {
199 precFact->setInverseLibrary(invLib);
200 precFact->setRequestHandler(invLib->getRequestHandler());
205 precFact->initializeFromParameterList(settings);
224 const RCP<Cloneable> &clone) {
226 if (precFactoryBuilder_.cloneCount() == 0) initializePrecFactoryBuilder();
229 precFactoryBuilder_.addClone(name, clone);
233void PreconditionerFactory::initializePrecFactoryBuilder() {
234 RCP<Cloneable> clone;
238 precFactoryBuilder_.addClone(
"Block LU2x2", clone);
241 precFactoryBuilder_.addClone(
"Block Jacobi", clone);
244 precFactoryBuilder_.addClone(
"Block Gauss-Seidel", clone);
247 precFactoryBuilder_.addClone(
"Hierarchical Block Gauss-Seidel", clone);
250 precFactoryBuilder_.addClone(
"Block Add", clone);
253 precFactoryBuilder_.addClone(
"Block Multiply", clone);
256 precFactoryBuilder_.addClone(
"NS LSC", clone);
259 precFactoryBuilder_.addClone(
"NS SIMPLE", clone);
262 precFactoryBuilder_.addClone(
"NS SIMPLE-Timed", clone);
265 precFactoryBuilder_.addClone(
"Iterative Preconditioner", clone);
268 precFactoryBuilder_.addClone(
"Explicit Diagonal Preconditioner", clone);
271 precFactoryBuilder_.addClone(
"Diagnostic Inverse", clone);
274 precFactoryBuilder_.addClone(
"Diagonal Scaling", clone);
277 precFactoryBuilder_.addClone(
"Identity", clone);
280 precFactoryBuilder_.addClone(
"Adaptive", clone);
282#if defined(Teko_ENABLE_Isorropia) && defined(TEKO_HAVE_EPETRA)
284 precFactoryBuilder_.addClone(
"Probing Preconditioner", clone);
287#ifdef Teko_ENABLE_ML_SMOOTHERS
289 precFactoryBuilder_.addClone(
"Blocked ML Preconditioner", clone);
295 if (precFactoryBuilder_.cloneCount() == 0) initializePrecFactoryBuilder();
296 precFactoryBuilder_.getCloneNames(names);
void initializePrec(const Teuchos::RCP< const Thyra::LinearOpSourceBase< double > > &fwdOpSrc, const Teuchos::RCP< const Thyra::MultiVectorBase< double > > &solnVec, Thyra::PreconditionerBase< double > *precOp, const Thyra::ESupportSolveUse supportSolveUse) const
initialize a newly created preconditioner object
Teuchos::RCP< Teuchos::ParameterList > getNonconstParameterList()
Get the parameter list that was set using setParameterList().
void setInverseLibrary(const Teuchos::RCP< const InverseLibrary > &il)
Set the inverse library used by this preconditioner factory.
static Teuchos::RCP< PreconditionerFactory > buildPreconditionerFactory(const std::string &name, const Teuchos::ParameterList &settings, const Teuchos::RCP< const InverseLibrary > &invLib=Teuchos::null)
Builder function for creating preconditioner factories (yes this is a factory factory).
Teuchos::RCP< Thyra::PreconditionerBase< double > > createPrec() const
create an instance of the preconditioner
void setParameterList(const Teuchos::RCP< Teuchos::ParameterList > ¶mList)
Set parameters from a parameter list and return with default values.
Teuchos::RCP< Teuchos::ParameterList > paramList_
for ParameterListAcceptor
static void addPreconditionerFactory(const std::string &name, const Teuchos::RCP< Cloneable > &clone)
Add a preconditioner factory to the builder. This is done using the clone pattern.
virtual LinearOp buildPreconditionerOperator(LinearOp &lo, PreconditionerState &state) const =0
Function that is called to build the preconditioner for the linear operator that is passed in.
void uninitializePrec(Thyra::PreconditionerBase< double > *prec, Teuchos::RCP< const Thyra::LinearOpSourceBase< double > > *fwdOpSrc, Thyra::ESupportSolveUse *supportSolveUse) const
wipe clean a already initialized preconditioner object
bool isCompatible(const Thyra::LinearOpSourceBase< double > &fwdOpSrc) const
is this operator compatiable with the preconditioner factory?
static void getPreconditionerFactoryNames(std::vector< std::string > &names)
Get the names of the block preconditioner factories.
virtual Teuchos::RCP< PreconditionerState > buildPreconditionerState() const
Function that permits the construction of an arbitrary PreconditionerState object.
Teuchos::RCP< const InverseLibrary > getInverseLibrary() const
Get the inverse library used by this preconditioner factory.
Teuchos::RCP< Teuchos::ParameterList > unsetParameterList()
Unset the parameter list that was set using setParameterList().
An extension of the Thyra::DefaultPreconditioner class with some specializations useful for use withi...
virtual void setSourceVector(const RCP< Thyra::MultiVectorBase< double > > &srcVec)
virtual const RCP< PreconditionerState > getStateObject()
virtual Teuchos::RCP< RequestHandler > getRequestHandler() const =0
Get the request handler with pointers to the appropriate callbacks.