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MueLu_BlockedGaussSeidelSmoother_def.hpp
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1// @HEADER
2// *****************************************************************************
3// MueLu: A package for multigrid based preconditioning
4//
5// Copyright 2012 NTESS and the MueLu contributors.
6// SPDX-License-Identifier: BSD-3-Clause
7// *****************************************************************************
8// @HEADER
9
10#ifndef MUELU_BLOCKEDGAUSSSEIDELSMOOTHER_DEF_HPP_
11#define MUELU_BLOCKEDGAUSSSEIDELSMOOTHER_DEF_HPP_
12
13#include "Teuchos_ArrayViewDecl.hpp"
14#include "Teuchos_ScalarTraits.hpp"
15
16#include "MueLu_ConfigDefs.hpp"
17
18#include <Xpetra_BlockReorderManager.hpp>
19#include <Xpetra_Matrix.hpp>
20#include <Xpetra_BlockedCrsMatrix.hpp>
21#include <Xpetra_ReorderedBlockedCrsMatrix.hpp>
22#include <Xpetra_ReorderedBlockedMultiVector.hpp>
23#include <Xpetra_MultiVectorFactory.hpp>
24
26#include "MueLu_Level.hpp"
27#include "MueLu_Monitor.hpp"
28#include "MueLu_HierarchyUtils.hpp"
30
31namespace MueLu {
32
33template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
35 : type_("blocked GaussSeidel")
36 , A_(Teuchos::null) {
37 FactManager_.reserve(10); // TODO fix me!
38}
39
40template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
42
43template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
45 RCP<ParameterList> validParamList = rcp(new ParameterList());
46
47 validParamList->set<RCP<const FactoryBase> >("A", Teuchos::null, "Generating factory of the matrix A");
48 validParamList->set<Scalar>("Damping factor", 1.0, "Damping/Scaling factor in BGS");
49 validParamList->set<LocalOrdinal>("Sweeps", 1, "Number of BGS sweeps (default = 1)");
50
51 return validParamList;
52}
53
54template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
56 TEUCHOS_TEST_FOR_EXCEPTION(pos < 0, Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::AddFactoryManager: parameter \'pos\' must not be negative! error.");
57
58 size_t myPos = Teuchos::as<size_t>(pos);
59
60 if (myPos < FactManager_.size()) {
61 // replace existing entries in FactManager_ vector
62 FactManager_.at(myPos) = FactManager;
63 } else if (myPos == FactManager_.size()) {
64 // append new Factory manager at the end of the vector
65 FactManager_.push_back(FactManager);
66 } else { // if(myPos > FactManager_.size())
67 RCP<Teuchos::FancyOStream> out = Teuchos::fancyOStream(Teuchos::rcpFromRef(std::cout));
68 *out << "Warning: cannot add new FactoryManager at proper position " << pos << ". The FactoryManager is just appended to the end. Check this!" << std::endl;
69
70 // add new Factory manager in the end of the vector
71 FactManager_.push_back(FactManager);
72 }
73}
74
75template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
77 // this->Input(currentLevel, "A");
78 // TODO: check me: why is this->Input not freeing properly A in release mode?
79 currentLevel.DeclareInput("A", this->GetFactory("A").get());
80
81 // loop over all factory managers for the subblocks of blocked operator A
82 std::vector<Teuchos::RCP<const FactoryManagerBase> >::const_iterator it;
83 for (it = FactManager_.begin(); it != FactManager_.end(); ++it) {
84 SetFactoryManager currentSFM(rcpFromRef(currentLevel), *it);
85
86 // request "Smoother" for current subblock row.
87 currentLevel.DeclareInput("PreSmoother", (*it)->GetFactory("Smoother").get());
88
89 // request "A" for current subblock row (only needed for Thyra mode)
90 currentLevel.DeclareInput("A", (*it)->GetFactory("A").get());
91 }
92}
93
94template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
96 RCP<Teuchos::FancyOStream> out = Teuchos::fancyOStream(Teuchos::rcpFromRef(std::cout));
97
98 FactoryMonitor m(*this, "Setup blocked Gauss-Seidel Smoother", currentLevel);
99 if (SmootherPrototype::IsSetup() == true) this->GetOStream(Warnings0) << "MueLu::BlockedGaussSeidelSmoother::Setup(): Setup() has already been called";
100
101 // extract blocked operator A from current level
102 A_ = Factory::Get<RCP<Matrix> >(currentLevel, "A"); // A needed for extracting map extractors
103 RCP<BlockedCrsMatrix> bA = Teuchos::rcp_dynamic_cast<BlockedCrsMatrix>(A_);
104 TEUCHOS_TEST_FOR_EXCEPTION(bA == Teuchos::null, Exceptions::BadCast, "MueLu::BlockedPFactory::Build: input matrix A is not of type BlockedCrsMatrix! error.");
105
106 // plausibility check
107 TEUCHOS_TEST_FOR_EXCEPTION(bA->Rows() != FactManager_.size(), Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Setup: number of block rows of A is " << bA->Rows() << " and does not match number of SubFactoryManagers " << FactManager_.size() << ". error.");
108 TEUCHOS_TEST_FOR_EXCEPTION(bA->Cols() != FactManager_.size(), Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Setup: number of block cols of A is " << bA->Cols() << " and does not match number of SubFactoryManagers " << FactManager_.size() << ". error.");
109
110 // store map extractors
111 rangeMapExtractor_ = bA->getRangeMapExtractor();
112 domainMapExtractor_ = bA->getDomainMapExtractor();
113
114 // loop over all factory managers for the subblocks of blocked operator A
115 std::vector<Teuchos::RCP<const FactoryManagerBase> >::const_iterator it;
116 for (it = FactManager_.begin(); it != FactManager_.end(); ++it) {
117 SetFactoryManager currentSFM(rcpFromRef(currentLevel), *it);
118
119 // extract Smoother for current block row (BGS ordering)
120 RCP<const SmootherBase> Smoo = currentLevel.Get<RCP<SmootherBase> >("PreSmoother", (*it)->GetFactory("Smoother").get());
121 Inverse_.push_back(Smoo);
122
123 // store whether subblock matrix is blocked or not!
124 RCP<Matrix> Aii = currentLevel.Get<RCP<Matrix> >("A", (*it)->GetFactory("A").get());
125 bIsBlockedOperator_.push_back(Teuchos::rcp_dynamic_cast<BlockedCrsMatrix>(Aii) != Teuchos::null);
126 }
127
129}
130
131template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
132void BlockedGaussSeidelSmoother<Scalar, LocalOrdinal, GlobalOrdinal, Node>::Apply(MultiVector &X, const MultiVector &B, bool InitialGuessIsZero) const {
133 TEUCHOS_TEST_FOR_EXCEPTION(SmootherPrototype::IsSetup() == false, Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Apply(): Setup() has not been called");
134
135#if 0 // def HAVE_MUELU_DEBUG
136 // TODO simplify this debug check
137 RCP<MultiVector> rcpDebugX = Teuchos::rcpFromRef(X);
138 RCP<const MultiVector> rcpDebugB = Teuchos::rcpFromRef(B);
139 RCP<BlockedMultiVector> rcpBDebugX = Teuchos::rcp_dynamic_cast<BlockedMultiVector>(rcpDebugX);
140 RCP<const BlockedMultiVector> rcpBDebugB = Teuchos::rcp_dynamic_cast<const BlockedMultiVector>(rcpDebugB);
141 //RCP<BlockedCrsMatrix> bA = Teuchos::rcp_dynamic_cast<BlockedCrsMatrix>(A_);
142 if(rcpBDebugB.is_null() == false) {
143 //this->GetOStream(Runtime1) << "BlockedGaussSeidel: B is a BlockedMultiVector of size " << B.getMap()->getGlobalNumElements() << " with " << rcpBDebugB->getBlockedMap()->getNumMaps() << " blocks." << std::endl;
144 //TEUCHOS_TEST_FOR_EXCEPTION(A_->getRangeMap()->isSameAs(*(B.getMap())) == false, Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Apply(): The map of RHS vector B is not the same as range map of the blocked operator A. Please check the map of B and A.");
145 } else {
146 //this->GetOStream(Runtime1) << "BlockedGaussSeidel: B is a MultiVector of size " << B.getMap()->getGlobalNumElements() << std::endl;
147 //TEUCHOS_TEST_FOR_EXCEPTION(bA->getFullRangeMap()->isSameAs(*(B.getMap())) == false, Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Apply(): The map of RHS vector B is not the same as range map of the blocked operator A. Please check the map of B and A.");
148 }
149 if(rcpBDebugX.is_null() == false) {
150 //this->GetOStream(Runtime1) << "BlockedGaussSeidel: X is a BlockedMultiVector of size " << X.getMap()->getGlobalNumElements() << " with " << rcpBDebugX->getBlockedMap()->getNumMaps() << " blocks." << std::endl;
151 //TEUCHOS_TEST_FOR_EXCEPTION(A_->getDomainMap()->isSameAs(*(X.getMap())) == false, Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Apply(): The map of the solution vector X is not the same as domain map of the blocked operator A. Please check the map of X and A.");
152 } else {
153 //this->GetOStream(Runtime1) << "BlockedGaussSeidel: X is a MultiVector of size " << X.getMap()->getGlobalNumElements() << std::endl;
154 //TEUCHOS_TEST_FOR_EXCEPTION(bA->getFullDomainMap()->isSameAs(*(X.getMap())) == false, Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Apply(): The map of the solution vector X is not the same as domain map of the blocked operator A. Please check the map of X and A.");
155 }
156#endif
157 SC zero = Teuchos::ScalarTraits<SC>::zero(), one = Teuchos::ScalarTraits<SC>::one();
158
159 // Input variables used for the rest of the algorithm
160 RCP<MultiVector> rcpX = Teuchos::rcpFromRef(X);
161 RCP<const MultiVector> rcpB = Teuchos::rcpFromRef(B);
162
163 // make sure that both rcpX and rcpB are BlockedMultiVector objects
164 bool bCopyResultX = false;
165 bool bReorderX = false;
166 bool bReorderB = false;
167 RCP<BlockedCrsMatrix> bA = Teuchos::rcp_dynamic_cast<BlockedCrsMatrix>(A_);
168 MUELU_TEST_FOR_EXCEPTION(bA.is_null() == true, Exceptions::RuntimeError, "MueLu::BlockedGaussSeidelSmoother::Apply(): A_ must be a BlockedCrsMatrix");
169 RCP<BlockedMultiVector> bX = Teuchos::rcp_dynamic_cast<BlockedMultiVector>(rcpX);
170 RCP<const BlockedMultiVector> bB = Teuchos::rcp_dynamic_cast<const BlockedMultiVector>(rcpB);
171
172 // check the type of operator
173 RCP<Xpetra::ReorderedBlockedCrsMatrix<Scalar, LocalOrdinal, GlobalOrdinal, Node> > rbA =
174 Teuchos::rcp_dynamic_cast<Xpetra::ReorderedBlockedCrsMatrix<Scalar, LocalOrdinal, GlobalOrdinal, Node> >(bA);
175
176 if (rbA.is_null() == false) {
177 // A is a ReorderedBlockedCrsMatrix and thus uses nested maps, retrieve BlockedCrsMatrix and use plain blocked
178 // map for the construction of the blocked multivectors
179
180 // check type of X vector
181 if (bX.is_null() == true) {
182 RCP<MultiVector> vectorWithBlockedMap = Teuchos::rcp(new BlockedMultiVector(rbA->getBlockedCrsMatrix()->getBlockedDomainMap(), rcpX));
183 rcpX.swap(vectorWithBlockedMap);
184 bCopyResultX = true;
185 bReorderX = true;
186 }
187
188 // check type of B vector
189 if (bB.is_null() == true) {
190 RCP<const MultiVector> vectorWithBlockedMap = Teuchos::rcp(new BlockedMultiVector(rbA->getBlockedCrsMatrix()->getBlockedRangeMap(), rcpB));
191 rcpB.swap(vectorWithBlockedMap);
192 bReorderB = true;
193 }
194 } else {
195 // A is a BlockedCrsMatrix and uses a plain blocked map
196 if (bX.is_null() == true) {
197 RCP<MultiVector> vectorWithBlockedMap = Teuchos::rcp(new BlockedMultiVector(bA->getBlockedDomainMap(), rcpX));
198 rcpX.swap(vectorWithBlockedMap);
199 bCopyResultX = true;
200 }
201
202 if (bB.is_null() == true) {
203 RCP<const MultiVector> vectorWithBlockedMap = Teuchos::rcp(new BlockedMultiVector(bA->getBlockedRangeMap(), rcpB));
204 rcpB.swap(vectorWithBlockedMap);
205 }
206 }
207
208 // we now can guarantee that X and B are blocked multi vectors
209 bX = Teuchos::rcp_dynamic_cast<BlockedMultiVector>(rcpX);
210 bB = Teuchos::rcp_dynamic_cast<const BlockedMultiVector>(rcpB);
211
212 // Finally we can do a reordering of the blocked multivectors if A is a ReorderedBlockedCrsMatrix
213 if (rbA.is_null() == false) {
214 Teuchos::RCP<const Xpetra::BlockReorderManager> brm = rbA->getBlockReorderManager();
215
216 // check type of X vector
217 if (bX->getBlockedMap()->getNumMaps() != bA->getDomainMapExtractor()->NumMaps() || bReorderX) {
218 // X is a blocked multi vector but incompatible to the reordered blocked operator A
219 Teuchos::RCP<MultiVector> reorderedBlockedVector = buildReorderedBlockedMultiVector(brm, bX);
220 rcpX.swap(reorderedBlockedVector);
221 }
222
223 if (bB->getBlockedMap()->getNumMaps() != bA->getRangeMapExtractor()->NumMaps() || bReorderB) {
224 // B is a blocked multi vector but incompatible to the reordered blocked operator A
225 Teuchos::RCP<const MultiVector> reorderedBlockedVector = buildReorderedBlockedMultiVector(brm, bB);
226 rcpB.swap(reorderedBlockedVector);
227 }
228 }
229
230 // Throughout the rest of the algorithm rcpX and rcpB are used for solution vector and RHS
231
232 RCP<MultiVector> residual = MultiVectorFactory::Build(rcpB->getMap(), rcpB->getNumVectors());
233 RCP<MultiVector> tempres = MultiVectorFactory::Build(rcpB->getMap(), rcpB->getNumVectors());
234
235 // extract parameters from internal parameter list
236 const ParameterList &pL = Factory::GetParameterList();
237 LocalOrdinal nSweeps = pL.get<LocalOrdinal>("Sweeps");
238 Scalar omega = pL.get<Scalar>("Damping factor");
239
240 // Clear solution from previos V cycles in case it is still stored
241 if (InitialGuessIsZero == true)
242 rcpX->putScalar(Teuchos::ScalarTraits<Scalar>::zero());
243
244 // outer Richardson loop
245 for (LocalOrdinal run = 0; run < nSweeps; ++run) {
246 // one BGS sweep
247 // loop over all block rows
248 for (size_t i = 0; i < Inverse_.size(); i++) {
249 // calculate block residual r = B-A*X
250 // note: A_ is the full blocked operator
251 residual->update(1.0, *rcpB, 0.0); // r = B
252 if (InitialGuessIsZero == false || i > 0 || run > 0)
253 bA->bgs_apply(*rcpX, *residual, i, Teuchos::NO_TRANS, -1.0, 1.0);
254
255 // extract corresponding subvectors from X and residual
256 bool bRangeThyraMode = rangeMapExtractor_->getThyraMode();
257 bool bDomainThyraMode = domainMapExtractor_->getThyraMode();
258 Teuchos::RCP<MultiVector> Xi = domainMapExtractor_->ExtractVector(rcpX, i, bDomainThyraMode);
259 Teuchos::RCP<MultiVector> ri = rangeMapExtractor_->ExtractVector(residual, i, bRangeThyraMode);
260 Teuchos::RCP<MultiVector> tXi = domainMapExtractor_->getVector(i, X.getNumVectors(), bDomainThyraMode);
261
262 // apply solver/smoother
263 Inverse_.at(i)->Apply(*tXi, *ri, false);
264
265 // update vector
266 Xi->update(omega, *tXi, 1.0); // X_{i+1} = X_i + omega \Delta X_i
267 }
268 }
269
270 if (bCopyResultX == true) {
271 RCP<MultiVector> Xmerged = bX->Merge();
272 X.update(one, *Xmerged, zero);
273 }
274}
275
276template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
277RCP<MueLu::SmootherPrototype<Scalar, LocalOrdinal, GlobalOrdinal, Node> > BlockedGaussSeidelSmoother<Scalar, LocalOrdinal, GlobalOrdinal, Node>::Copy() const {
278 return rcp(new BlockedGaussSeidelSmoother(*this));
279}
280
281template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
283 std::ostringstream out;
285 out << "{type = " << type_ << "}";
286 return out.str();
287}
288
289template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
292
293 // extract parameters from internal parameter list
294 const ParameterList &pL = Factory::GetParameterList();
295 LocalOrdinal nSweeps = pL.get<LocalOrdinal>("Sweeps");
296 Scalar omega = pL.get<Scalar>("Damping factor");
297
298 if (verbLevel & Parameters0) {
299 out0 << "Prec. type: " << type_ << " Sweeps: " << nSweeps << " damping: " << omega << std::endl;
300 }
301
302 if (verbLevel & Debug) {
303 out0 << "IsSetup: " << Teuchos::toString(SmootherPrototype::IsSetup()) << std::endl;
304 }
305}
306template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node>
308 // FIXME: This is a placeholder
309 return Teuchos::OrdinalTraits<size_t>::invalid();
310}
311
312} // namespace MueLu
313
314#endif /* MUELU_BLOCKEDGAUSSSEIDELSMOOTHER_DEF_HPP_ */
#define MUELU_DESCRIBE
Helper macro for implementing Describable::describe() for BaseClass objects.
#define MUELU_TEST_FOR_EXCEPTION(throw_exception_test, Exception, msg)
MueLu::DefaultLocalOrdinal LocalOrdinal
MueLu::DefaultScalar Scalar
void DeclareInput(Level &currentLevel) const
Input.
std::vector< Teuchos::RCP< const FactoryManagerBase > > FactManager_
vector of factory managers
std::vector< Teuchos::RCP< const SmootherBase > > Inverse_
vector of smoother/solver factories
RCP< const MapExtractorClass > domainMapExtractor_
domain map extractor (from A_ generated by AFact)
std::string description() const
Return a simple one-line description of this object.
size_t getNodeSmootherComplexity() const
Get a rough estimate of cost per iteration.
void AddFactoryManager(RCP< const FactoryManagerBase > FactManager, int pos)
Add a factory manager.
RCP< const ParameterList > GetValidParameterList() const
Input.
RCP< const MapExtractorClass > rangeMapExtractor_
range map extractor (from A_ generated by AFact)
std::vector< bool > bIsBlockedOperator_
vector storing whether sub-block is a blocked operator (needed for nested blocked smoothers using Thy...
void Apply(MultiVector &X, const MultiVector &B, bool InitialGuessIsZero=false) const
Apply the direct solver. Solves the linear system AX=B using the constructed solver.
RCP< Matrix > A_
internal blocked operator "A" generated by AFact_
void print(Teuchos::FancyOStream &out, const VerbLevel verbLevel=Default) const
Print the object with some verbosity level verbLevel to an FancyOStream object out.
void Setup(Level &currentLevel)
Setup routine In the Setup method the Inverse_ vector is filled with the corresponding SmootherBase o...
virtual std::string description() const
Return a simple one-line description of this object.
Exception indicating invalid cast attempted.
Exception throws to report errors in the internal logical of the program.
T Get(Level &level, const std::string &varName) const
const RCP< const FactoryBase > GetFactory(const std::string &varName) const
Default implementation of FactoryAcceptor::GetFactory().
Timer to be used in factories. Similar to Monitor but with additional timers.
Class that holds all level-specific information.
void DeclareInput(const std::string &ename, const FactoryBase *factory, const FactoryBase *requestedBy=NoFactory::get())
Callback from FactoryBase::CallDeclareInput() and FactoryBase::DeclareInput().
T & Get(const std::string &ename, const FactoryBase *factory=NoFactory::get())
Get data without decrementing associated storage counter (i.e., read-only access)....
virtual const Teuchos::ParameterList & GetParameterList() const =0
An exception safe way to call the method 'Level::SetFactoryManager()'.
bool IsSetup() const
Get the state of a smoother prototype.
Teuchos::FancyOStream & GetOStream(MsgType type, int thisProcRankOnly=0) const
Get an output stream for outputting the input message type.
Namespace for MueLu classes and methods.
@ Warnings0
Important warning messages (one line).
@ Debug
Print additional debugging information.
@ Parameters0
Print class parameters.