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src
Teko_MultPreconditionerFactory.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_MultPreconditionerFactory.hpp"
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namespace
Teko {
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using
Teuchos::RCP;
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void
MultPrecsLinearOp::implicitApply
(
const
Teko::BlockedMultiVector & r, Teko::BlockedMultiVector & y,
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const
double
/* alpha */
,
const
double
/* beta */
)
const
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{
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// Casting is a bit delicate. We basically use
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//
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// 1) deepcopy to copy & cast BlockedMultiVectors to MultiVectors.
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//
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// 2) toMultiVector to cast BlockedMultiVectors to MultiVectors.
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//
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Teko::MultiVector MOne_r =
Teko::deepcopy
(r);
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Teko::MultiVector t =
Teko::deepcopy
(r);
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Teko::MultiVector w =
Teko::toMultiVector
(y);
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Teko::applyOp(M1_, r, MOne_r);
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Teko::applyOp(A_, MOne_r, t);
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Teko::update(1.,r,-1.,t);
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Teko::applyOp(M2_, t, w);
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Teko::update(1.,MOne_r, 1., w);
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}
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MultPreconditionerFactory
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::MultPreconditionerFactory(
const
RCP<const Teko::BlockPreconditionerFactory> & FirstFactory,
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const
RCP<const Teko::BlockPreconditionerFactory> & SecondFactory)
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: FirstFactory_(FirstFactory), SecondFactory_(SecondFactory)
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{ }
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MultPreconditionerFactory::MultPreconditionerFactory
()
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{ }
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RCP<Teko::PreconditionerState>
MultPreconditionerFactory::buildPreconditionerState
()
const
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{
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MultPrecondState
* mystate =
new
MultPrecondState
();
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mystate->StateOne_ = Teuchos::rcp_dynamic_cast<BlockPreconditionerState>(FirstFactory_->buildPreconditionerState());
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mystate->StateTwo_ = Teuchos::rcp_dynamic_cast<BlockPreconditionerState>(SecondFactory_->buildPreconditionerState());
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return
rcp(mystate);
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}
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Teko::LinearOp MultPreconditionerFactory
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::buildPreconditionerOperator(Teko::BlockedLinearOp & blockOp,
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Teko::BlockPreconditionerState
& state)
const
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{
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MultPrecondState
*MyState =
dynamic_cast<
MultPrecondState
*
>
(&state);
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TEUCHOS_ASSERT(MyState != 0);
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Teko::LinearOp M1 = FirstFactory_->buildPreconditionerOperator(blockOp, *MyState->StateOne_);
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Teko::LinearOp M2 = SecondFactory_->buildPreconditionerOperator(blockOp, *MyState->StateTwo_);
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/*************************************************************************
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A different way to create the same preconditioner using the funky
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matrix representation discussed above. At the present time, there
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appears to be some kind of bug in Thrya so this doesn't work.
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const RCP<const Thyra::LinearOpBase<double>> Mat1= Thyra::block2x1(Teko::identity(Teko::rangeSpace(M1)) ,M1);
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const RCP<const Thyra::LinearOpBase<double>> Mat3= Thyra::block1x2(M2,Teko::identity(Teko::rangeSpace(M1)));
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const RCP<const Thyra::LinearOpBase<double>> Mat2= Thyra::block2x2(
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Teko::identity(Teko::rangeSpace(M1)), Teko::scale(-1.,Teko::toLinearOp(blockOp)),
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Thyra::zero<double>(Teko::rangeSpace(M1),Teko::domainSpace(M1)), Teko::identity(Teko::rangeSpace(M1)));
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Teko::LinearOp invA = Teko::multiply(Mat3,Mat2,Mat1);
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return invA;
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*************************************************************************/
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// construct an implicit operator corresponding to multiplicative
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// preconditioning, wrap it in an rcp pointer and return.
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return
Teuchos::rcp(
new
MultPrecsLinearOp
(blockOp,M1,M2));
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}
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void
MultPreconditionerFactory::initializeFromParameterList
(
const
Teuchos::ParameterList & pl)
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{
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RCP<const InverseLibrary> invLib =
getInverseLibrary
();
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// get string specifying inverse
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std::string aStr=
""
, bStr=
""
;
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// "parse" the parameter list
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aStr = pl.get<std::string>(
"Preconditioner A"
);
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bStr = pl.get<std::string>(
"Preconditioner B"
);
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RCP<const Teuchos::ParameterList> aSettings = invLib->getParameterList(aStr);
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RCP<const Teuchos::ParameterList> bSettings = invLib->getParameterList(bStr);
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// build preconditioner from the parameters
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std::string aType = aSettings->get<std::string>(
"Preconditioner Type"
);
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RCP<Teko::PreconditionerFactory> precA
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=
Teko::BlockPreconditionerFactory::buildPreconditionerFactory
(aType,aSettings->sublist(
"Preconditioner Settings"
),invLib);
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// build preconditioner from the parameters
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std::string bType = bSettings->get<std::string>(
"Preconditioner Type"
);
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RCP<Teko::PreconditionerFactory> precB
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=
Teko::BlockPreconditionerFactory::buildPreconditionerFactory
(bType,bSettings->sublist(
"Preconditioner Settings"
),invLib);
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// set preconditioners
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FirstFactory_ = Teuchos::rcp_dynamic_cast<const Teko::BlockPreconditionerFactory>(precA);
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SecondFactory_ = Teuchos::rcp_dynamic_cast<const Teko::BlockPreconditionerFactory>(precB);
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}
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}
// end namespace Teko
Teko::toMultiVector
MultiVector toMultiVector(BlockedMultiVector &bmv)
Convert to a MultiVector from a BlockedMultiVector.
Definition
Teko_Utilities.hpp:219
Teko::deepcopy
MultiVector deepcopy(const MultiVector &v)
Perform a deep copy of the vector.
Definition
Teko_Utilities.hpp:237
Teko::BlockPreconditionerState
An implementation of a state object for block preconditioners.
Definition
Teko_BlockPreconditionerFactory.hpp:80
Teko::MultPrecondState
Definition
Teko_MultPreconditionerFactory.hpp:60
Teko::MultPreconditionerFactory::MultPreconditionerFactory
MultPreconditionerFactory(const Teuchos::RCP< const Teko::BlockPreconditionerFactory > &FirstFactory, const Teuchos::RCP< const Teko::BlockPreconditionerFactory > &SecondFactory)
Constructor.
Teko::MultPreconditionerFactory::buildPreconditionerState
virtual Teuchos::RCP< Teko::PreconditionerState > buildPreconditionerState() const
Build the MultPrecondState object.
Definition
Teko_MultPreconditionerFactory.cpp:84
Teko::MultPreconditionerFactory::initializeFromParameterList
virtual void initializeFromParameterList(const Teuchos::ParameterList &pl)
Initialize from a parameter list.
Definition
Teko_MultPreconditionerFactory.cpp:129
Teko::MultPrecsLinearOp
Definition
Teko_MultPreconditionerFactory.hpp:91
Teko::MultPrecsLinearOp::implicitApply
virtual void implicitApply(const Teko::BlockedMultiVector &r, Teko::BlockedMultiVector &y, const double alpha=1.0, const double beta=0.0) const
Perform a matrix vector multiply with this implicitly defined blocked operator.
Definition
Teko_MultPreconditionerFactory.cpp:53
Teko::PreconditionerFactory::buildPreconditionerFactory
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).
Definition
Teko_PreconditionerFactory.cpp:229
Teko::PreconditionerFactory::getInverseLibrary
Teuchos::RCP< const InverseLibrary > getInverseLibrary() const
Get the inverse library used by this preconditioner factory.
Definition
Teko_PreconditionerFactory.cpp:182
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