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src
Epetra
Teko_InverseFactoryOperator.cpp
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/*
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// @HEADER
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//
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// ***********************************************************************
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//
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// Teko: A package for block and physics based preconditioning
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// Copyright 2010 Sandia Corporation
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//
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// Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation,
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// the U.S. Government retains certain rights in this software.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// 1. Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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//
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// 2. Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in the
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// documentation and/or other materials provided with the distribution.
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//
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// 3. Neither the name of the Corporation nor the names of the
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// contributors may be used to endorse or promote products derived from
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// this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY SANDIA CORPORATION "AS IS" AND ANY
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// EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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// IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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// PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL SANDIA CORPORATION OR THE
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// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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// EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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// PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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// PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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// LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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// NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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// Questions? Contact Eric C. Cyr (eccyr@sandia.gov)
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//
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// ***********************************************************************
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//
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// @HEADER
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*/
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#include "Teko_InverseFactoryOperator.hpp"
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// Teko includes
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#include "Teko_BasicMappingStrategy.hpp"
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// Thyra includes
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#include "Thyra_EpetraLinearOp.hpp"
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using
Teuchos::RCP;
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using
Teuchos::rcp;
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using
Teuchos::rcpFromRef;
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using
Teuchos::rcp_dynamic_cast;
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namespace
Teko {
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namespace
Epetra {
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InverseFactoryOperator::InverseFactoryOperator
(
const
Teuchos::RCP<const InverseFactory> & ifp)
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: inverseFactory_(ifp), firstBuildComplete_(false), setConstFwdOp_(true)
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{
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}
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void
InverseFactoryOperator::initInverse
(
bool
clearOld)
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{
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if
(not clearOld)
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return
;
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invOperator_ = Teuchos::null;
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}
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void
InverseFactoryOperator::buildInverseOperator
(
const
Teuchos::RCP<const Epetra_Operator> & A,
bool
clear)
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{
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Teko_DEBUG_SCOPE(
"InverseFactoryOperator::buildInverseOperator"
,10);
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// extract EpetraOperatorWrapper (throw on failure) and corresponding thyra operator
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RCP<const Thyra::LinearOpBase<double> > thyraA = extractLinearOp(A);
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// set the mapping strategy
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SetMapStrategy(rcp(
new
InverseMappingStrategy
(extractMappingStrategy(A))));
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initInverse
(clear);
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// actually build the inverse operator
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invOperator_ = Teko::buildInverse(*inverseFactory_,thyraA);
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SetOperator(invOperator_,
false
);
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firstBuildComplete_ =
true
;
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if
(setConstFwdOp_)
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fwdOp_ = A;
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setConstFwdOp_ =
true
;
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TEUCHOS_ASSERT(invOperator_!=Teuchos::null);
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TEUCHOS_ASSERT(
getForwardOp
()!=Teuchos::null);
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TEUCHOS_ASSERT(
getThyraOp
()!=Teuchos::null);
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TEUCHOS_ASSERT(
getMapStrategy
()!=Teuchos::null);
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TEUCHOS_ASSERT(firstBuildComplete_==
true
);
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}
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void
InverseFactoryOperator::buildInverseOperator
(
const
Teuchos::RCP<Epetra_Operator> & A,
bool
/* clear */
)
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{
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setConstFwdOp_ =
false
;
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fwdOp_.initialize(A);
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buildInverseOperator
(A.getConst());
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TEUCHOS_ASSERT(setConstFwdOp_==
true
);
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}
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void
InverseFactoryOperator::rebuildInverseOperator
(
const
Teuchos::RCP<const Epetra_Operator> & A)
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{
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Teko_DEBUG_SCOPE(
"InverseFactoryOperator::rebuildPreconditioner"
,10);
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// if the inverse hasn't been built yet, rebuild from scratch
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if
(not firstBuildComplete_) {
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buildInverseOperator
(A,
false
);
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return
;
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}
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RCP<const Thyra::LinearOpBase<double> > thyraA = extractLinearOp(A);
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Teko::rebuildInverse(*inverseFactory_,thyraA,invOperator_);
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if
(setConstFwdOp_)
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fwdOp_.initialize(A);
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SetOperator(invOperator_,
false
);
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setConstFwdOp_ =
true
;
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TEUCHOS_ASSERT(
getForwardOp
()!=Teuchos::null);
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TEUCHOS_ASSERT(invOperator_!=Teuchos::null);
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TEUCHOS_ASSERT(
getThyraOp
()!=Teuchos::null);
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TEUCHOS_ASSERT(firstBuildComplete_==
true
);
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}
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void
InverseFactoryOperator::rebuildInverseOperator
(
const
Teuchos::RCP<Epetra_Operator> & A)
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{
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setConstFwdOp_ =
false
;
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fwdOp_.initialize(A);
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// build from constant epetra operator
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rebuildInverseOperator
(A.getConst());
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TEUCHOS_ASSERT(setConstFwdOp_==
true
);
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}
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Teuchos::RCP<const Thyra::LinearOpBase<double> > InverseFactoryOperator::extractLinearOp(
const
Teuchos::RCP<const Epetra_Operator> & A)
const
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{
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// extract EpetraOperatorWrapper (throw on failure) and corresponding thyra operator
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const
RCP<const EpetraOperatorWrapper> & eow = rcp_dynamic_cast<const EpetraOperatorWrapper>(A);
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// if it is an EpetraOperatorWrapper, then get the Thyra operator
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if
(eow!=Teuchos::null)
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return
eow->getThyraOp();
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// otherwise wrap it up as a thyra operator
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return
Thyra::epetraLinearOp(A);
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}
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Teuchos::RCP<const MappingStrategy> InverseFactoryOperator::extractMappingStrategy(
const
Teuchos::RCP<const Epetra_Operator> & A)
const
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{
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// extract EpetraOperatorWrapper (throw on failure) and corresponding thyra operator
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const
RCP<const EpetraOperatorWrapper> & eow = rcp_dynamic_cast<const EpetraOperatorWrapper>(A);
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// if it is an EpetraOperatorWrapper, then get the Thyra operator
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if
(eow!=Teuchos::null)
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return
eow->getMapStrategy();
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// otherwise wrap it up as a thyra operator
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RCP<const Epetra_Map> range = rcpFromRef(A->OperatorRangeMap());
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RCP<const Epetra_Map> domain = rcpFromRef(A->OperatorDomainMap());
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return
rcp(
new
BasicMappingStrategy(range,domain,A->Comm()));
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}
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}
// end namespace Epetra
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}
// end namespace Teko
Teko::Epetra::EpetraOperatorWrapper::getMapStrategy
const RCP< const MappingStrategy > getMapStrategy() const
Get the mapping strategy for this wrapper (translate between Thyra and Epetra).
Definition
Teko_EpetraOperatorWrapper.hpp:252
Teko::Epetra::EpetraOperatorWrapper::getThyraOp
const RCP< const Thyra::LinearOpBase< double > > getThyraOp() const
Return the thyra operator associated with this wrapper.
Definition
Teko_EpetraOperatorWrapper.hpp:248
Teko::Epetra::InverseFactoryOperator::buildInverseOperator
virtual void buildInverseOperator(const Teuchos::RCP< const Epetra_Operator > &A, bool clear=true)
Build this inverse operator from an Epetra_Operator passed in to this object.
Definition
Teko_InverseFactoryOperator.cpp:105
Teko::Epetra::InverseFactoryOperator::InverseFactoryOperator
InverseFactoryOperator(const Teuchos::RCP< const InverseFactory > &bfp)
Constructor that takes the InverseFactory that will build the operator.
Definition
Teko_InverseFactoryOperator.cpp:69
Teko::Epetra::InverseFactoryOperator::initInverse
virtual void initInverse(bool clearOld=false)
Build the underlying data structure for the inverse operator.
Definition
Teko_InverseFactoryOperator.cpp:86
Teko::Epetra::InverseFactoryOperator::rebuildInverseOperator
virtual void rebuildInverseOperator(const Teuchos::RCP< const Epetra_Operator > &A)
Rebuild this inverse from an Epetra_Operator passed in this to object.
Definition
Teko_InverseFactoryOperator.cpp:159
Teko::Epetra::InverseFactoryOperator::getForwardOp
Teuchos::RCP< const Epetra_Operator > getForwardOp() const
Definition
Teko_InverseFactoryOperator.hpp:151
Teko::Epetra::InverseMappingStrategy
Flip a mapping strategy object around to give the "inverse" mapping strategy.
Definition
Teko_EpetraOperatorWrapper.hpp:105
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