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00001 // @HEADER 00002 // *********************************************************************** 00003 // 00004 // Thyra: Interfaces and Support for Abstract Numerical Algorithms 00005 // Copyright (2004) Sandia Corporation 00006 // 00007 // Under terms of Contract DE-AC04-94AL85000, there is a non-exclusive 00008 // license for use of this work by or on behalf of the U.S. Government. 00009 // 00010 // Redistribution and use in source and binary forms, with or without 00011 // modification, are permitted provided that the following conditions are 00012 // met: 00013 // 00014 // 1. Redistributions of source code must retain the above copyright 00015 // notice, this list of conditions and the following disclaimer. 00016 // 00017 // 2. Redistributions in binary form must reproduce the above copyright 00018 // notice, this list of conditions and the following disclaimer in the 00019 // documentation and/or other materials provided with the distribution. 00020 // 00021 // 3. Neither the name of the Corporation nor the names of the 00022 // contributors may be used to endorse or promote products derived from 00023 // this software without specific prior written permission. 00024 // 00025 // THIS SOFTWARE IS PROVIDED BY SANDIA CORPORATION "AS IS" AND ANY 00026 // EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 00027 // IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 00028 // PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL SANDIA CORPORATION OR THE 00029 // CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 00030 // EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 00031 // PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR 00032 // PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF 00033 // LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING 00034 // NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS 00035 // SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 00036 // 00037 // Questions? Contact Roscoe A. Bartlett (bartlettra@ornl.gov) 00038 // 00039 // *********************************************************************** 00040 // @HEADER 00041 00042 #ifndef THYRA_TPETRA_THYRA_WRAPPERS_HPP 00043 #define THYRA_TPETRA_THYRA_WRAPPERS_HPP 00044 00045 00046 #include "Thyra_TpetraThyraWrappers.hpp" 00047 #include "Thyra_TpetraVectorSpace.hpp" 00048 #include "Thyra_TpetraVector.hpp" 00049 #include "Thyra_TpetraMultiVector.hpp" 00050 #include "Thyra_TpetraLinearOp.hpp" 00051 00052 00053 namespace Thyra { 00054 00055 00056 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00057 Teuchos::RCP<const TpetraVectorSpace<Scalar,LocalOrdinal,GlobalOrdinal,Node> > 00058 getOrCreateTpetraVectorSpace( 00059 const RCP<const VectorSpaceBase<Scalar> > space, 00060 const RCP<const Tpetra::Map<LocalOrdinal,GlobalOrdinal,Node> > &tpetraMap 00061 ) 00062 { 00063 using Teuchos::rcp_dynamic_cast; 00064 typedef TpetraVectorSpace<Scalar,LocalOrdinal,GlobalOrdinal,Node> TpetraVectorSpace_t; 00065 RCP<const TpetraVectorSpace_t> tpetraSpace; 00066 if (nonnull(space)) { 00067 tpetraSpace = rcp_dynamic_cast<const TpetraVectorSpace_t>(space, true); 00068 } 00069 else { 00070 tpetraSpace = tpetraVectorSpace<Scalar>(tpetraMap); 00071 } 00072 return tpetraSpace; 00073 } 00074 00075 00076 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00077 Teuchos::RCP<const ScalarProdVectorSpaceBase<Scalar> > 00078 getOrCreateLocallyReplicatedTpetraVectorSpace( 00079 const RCP<const VectorSpaceBase<Scalar> > space, 00080 const RCP<const Teuchos::Comm<int> > &tpetraComm, 00081 const RCP<Node> &tpetraNode, 00082 const int numCols 00083 ) 00084 { 00085 using Teuchos::rcp_dynamic_cast; 00086 typedef TpetraVectorSpace<Scalar,LocalOrdinal,GlobalOrdinal,Node> TpetraVectorSpace_t; 00087 RCP<const TpetraVectorSpace_t> tpetraSpace; 00088 if (nonnull(space)) { 00089 tpetraSpace = rcp_dynamic_cast<const TpetraVectorSpace_t>(space, true); 00090 } 00091 else { 00092 tpetraSpace = tpetraVectorSpace<Scalar>( 00093 Tpetra::createLocalMapWithNode<LocalOrdinal,GlobalOrdinal>( 00094 numCols, tpetraComm, tpetraNode 00095 ) 00096 ); 00097 } 00098 return tpetraSpace; 00099 } 00100 00101 00102 } // namespace Thyra 00103 00104 00105 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00106 Teuchos::RCP<const Thyra::VectorSpaceBase<Scalar> > 00107 Thyra::createVectorSpace( 00108 const RCP<const Tpetra::Map<LocalOrdinal,GlobalOrdinal,Node> > &tpetraMap 00109 ) 00110 { 00111 return tpetraVectorSpace<Scalar>(tpetraMap); 00112 } 00113 00114 00115 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00116 Teuchos::RCP<Thyra::VectorBase<Scalar> > 00117 Thyra::createVector( 00118 const RCP<Tpetra::Vector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > &tpetraVector_in, 00119 const RCP<const VectorSpaceBase<Scalar> > space_in 00120 ) 00121 { 00122 return tpetraVector( 00123 getOrCreateTpetraVectorSpace(space_in, tpetraVector_in->getMap()), 00124 tpetraVector_in 00125 ); 00126 } 00127 00128 00129 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00130 Teuchos::RCP<const Thyra::VectorBase<Scalar> > 00131 Thyra::createConstVector( 00132 const RCP<const Tpetra::Vector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > &tpetraVector_in, 00133 const RCP<const VectorSpaceBase<Scalar> > space 00134 ) 00135 { 00136 return constTpetraVector( 00137 getOrCreateTpetraVectorSpace(space, tpetraVector_in->getMap()), 00138 tpetraVector_in 00139 ); 00140 } 00141 00142 00143 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00144 Teuchos::RCP<Thyra::MultiVectorBase<Scalar> > 00145 Thyra::createMultiVector( 00146 const RCP<Tpetra::MultiVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > &tpetraMultiVector_in, 00147 const RCP<const VectorSpaceBase<Scalar> > rangeSpace, 00148 const RCP<const VectorSpaceBase<Scalar> > domainSpace 00149 ) 00150 { 00151 return tpetraMultiVector( 00152 getOrCreateTpetraVectorSpace(rangeSpace, tpetraMultiVector_in->getMap()), 00153 getOrCreateLocallyReplicatedTpetraVectorSpace<Scalar, LocalOrdinal, GlobalOrdinal, Node>( 00154 domainSpace, tpetraMultiVector_in->getMap()->getComm(), 00155 tpetraMultiVector_in->getMap()->getNode(), 00156 tpetraMultiVector_in->getNumVectors() 00157 ), 00158 tpetraMultiVector_in 00159 ); 00160 } 00161 00162 00163 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00164 Teuchos::RCP<const Thyra::MultiVectorBase<Scalar> > 00165 Thyra::createConstMultiVector( 00166 const RCP<const Tpetra::MultiVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > &tpetraMultiVector_in, 00167 const RCP<const VectorSpaceBase<Scalar> > rangeSpace, 00168 const RCP<const VectorSpaceBase<Scalar> > domainSpace 00169 ) 00170 { 00171 return constTpetraMultiVector( 00172 getOrCreateTpetraVectorSpace(rangeSpace, tpetraMultiVector_in->getMap()), 00173 getOrCreateLocallyReplicatedTpetraVectorSpace<Scalar, LocalOrdinal, GlobalOrdinal, Node>( 00174 domainSpace, tpetraMultiVector_in->getMap()->getComm(), 00175 tpetraMultiVector_in->getMap()->getNode(), 00176 tpetraMultiVector_in->getNumVectors() 00177 ), 00178 tpetraMultiVector_in 00179 ); 00180 } 00181 00182 00183 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00184 Teuchos::RCP<Thyra::LinearOpBase<Scalar> > 00185 Thyra::createLinearOp( 00186 const RCP<Tpetra::Operator<Scalar,LocalOrdinal,GlobalOrdinal,Node> > &tpetraOperator_in, 00187 const RCP<const VectorSpaceBase<Scalar> > rangeSpace, 00188 const RCP<const VectorSpaceBase<Scalar> > domainSpace 00189 ) 00190 { 00191 return tpetraLinearOp<Scalar,LocalOrdinal,GlobalOrdinal,Node>( 00192 getOrCreateTpetraVectorSpace(rangeSpace, tpetraOperator_in->getRangeMap()), 00193 getOrCreateTpetraVectorSpace(domainSpace, tpetraOperator_in->getDomainMap()), 00194 tpetraOperator_in 00195 ); 00196 } 00197 00198 00199 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00200 Teuchos::RCP<const Thyra::LinearOpBase<Scalar> > 00201 Thyra::createConstLinearOp( 00202 const RCP<const Tpetra::Operator<Scalar,LocalOrdinal,GlobalOrdinal,Node> > &tpetraOperator_in, 00203 const RCP<const VectorSpaceBase<Scalar> > rangeSpace, 00204 const RCP<const VectorSpaceBase<Scalar> > domainSpace 00205 ) 00206 { 00207 return constTpetraLinearOp<Scalar,LocalOrdinal,GlobalOrdinal,Node>( 00208 getOrCreateTpetraVectorSpace(rangeSpace, tpetraOperator_in->getRangeMap()), 00209 getOrCreateTpetraVectorSpace(domainSpace, tpetraOperator_in->getDomainMap()), 00210 tpetraOperator_in 00211 ); 00212 } 00213 00214 00215 namespace Thyra { 00216 00217 00218 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00219 RCP<Tpetra::Vector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > 00220 TpetraOperatorVectorExtraction<Scalar,LocalOrdinal,GlobalOrdinal,Node>:: 00221 getTpetraVector(const RCP<VectorBase<Scalar> > &v) 00222 { 00223 typedef TpetraVector<Scalar, LocalOrdinal, GlobalOrdinal, Node> TpetraVector_t; 00224 return Teuchos::rcp_dynamic_cast<TpetraVector_t>(v, true)->getTpetraVector(); 00225 } 00226 00227 00228 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00229 RCP<const Tpetra::Vector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > 00230 TpetraOperatorVectorExtraction<Scalar,LocalOrdinal,GlobalOrdinal,Node>:: 00231 getConstTpetraVector(const RCP<const VectorBase<Scalar> > &v) 00232 { 00233 typedef TpetraVector<Scalar, LocalOrdinal, GlobalOrdinal, Node> TpetraVector_t; 00234 return Teuchos::rcp_dynamic_cast<const TpetraVector_t>(v, true)->getConstTpetraVector(); 00235 } 00236 00237 00238 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00239 RCP<Tpetra::MultiVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > 00240 TpetraOperatorVectorExtraction<Scalar,LocalOrdinal,GlobalOrdinal,Node>:: 00241 getTpetraMultiVector(const RCP<MultiVectorBase<Scalar> > &mv) 00242 { 00243 00244 #ifdef THYRA_DEBUG 00245 TEUCHOS_ASSERT(nonnull(mv)); 00246 #endif 00247 00248 using Teuchos::rcp_dynamic_cast; 00249 00250 typedef Thyra::TpetraMultiVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> 00251 ThyraTpetraMultiVector_t; 00252 const RCP<ThyraTpetraMultiVector_t> tmv = 00253 rcp_dynamic_cast<ThyraTpetraMultiVector_t>(mv); 00254 if (nonnull(tmv)) { 00255 return tmv->getTpetraMultiVector(); 00256 } 00257 00258 typedef Thyra::TpetraVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> 00259 ThyraTpetraVector_t; 00260 const RCP<ThyraTpetraVector_t> tv = 00261 rcp_dynamic_cast<ThyraTpetraVector_t>(mv); 00262 if (nonnull(tv)) { 00263 return tv->getTpetraVector(); 00264 } 00265 00266 TEUCHOS_TEST_FOR_EXCEPTION(true, std::logic_error, 00267 "Error, the input mv = " << mv->description() << " does not support the" 00268 " Thyra::TpetraMultiVector or the Thyra::TpetraVector interfaces!"); 00269 00270 return Teuchos::null; 00271 00272 } 00273 00274 00275 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00276 RCP<const Tpetra::MultiVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> > 00277 TpetraOperatorVectorExtraction<Scalar,LocalOrdinal,GlobalOrdinal,Node>:: 00278 getConstTpetraMultiVector(const RCP<const MultiVectorBase<Scalar> > &mv) 00279 { 00280 00281 #ifdef THYRA_DEBUG 00282 TEUCHOS_ASSERT(nonnull(mv)); 00283 #endif 00284 00285 using Teuchos::rcp_dynamic_cast; 00286 00287 typedef Thyra::TpetraMultiVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> 00288 ThyraTpetraMultiVector_t; 00289 const RCP<const ThyraTpetraMultiVector_t> tmv = 00290 rcp_dynamic_cast<const ThyraTpetraMultiVector_t>(mv); 00291 if (nonnull(tmv)) { 00292 return tmv->getConstTpetraMultiVector(); 00293 } 00294 00295 typedef Thyra::TpetraVector<Scalar,LocalOrdinal,GlobalOrdinal,Node> 00296 ThyraTpetraVector_t; 00297 const RCP<const ThyraTpetraVector_t> tv = 00298 rcp_dynamic_cast<const ThyraTpetraVector_t>(mv); 00299 if (nonnull(tv)) { 00300 return tv->getConstTpetraVector(); 00301 } 00302 00303 TEUCHOS_TEST_FOR_EXCEPTION(true, std::logic_error, 00304 "Error, the input mv = " << mv->description() << " does not support the" 00305 " Thyra::TpetraMultiVector or the Thyra::TpetraVector interfaces!"); 00306 00307 return Teuchos::null; 00308 00309 } 00310 00311 00312 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00313 RCP<Tpetra::Operator<Scalar,LocalOrdinal,GlobalOrdinal,Node> > 00314 TpetraOperatorVectorExtraction<Scalar,LocalOrdinal,GlobalOrdinal,Node>:: 00315 getTpetraOperator(const RCP<LinearOpBase<Scalar> > &op) 00316 { 00317 typedef TpetraLinearOp<Scalar, LocalOrdinal, GlobalOrdinal, Node> TpetraLinearOp_t; 00318 return Teuchos::rcp_dynamic_cast<TpetraLinearOp_t>(op, true)->getTpetraOperator(); 00319 } 00320 00321 00322 template <class Scalar, class LocalOrdinal, class GlobalOrdinal, class Node> 00323 RCP<const Tpetra::Operator<Scalar,LocalOrdinal,GlobalOrdinal,Node> > 00324 TpetraOperatorVectorExtraction<Scalar,LocalOrdinal,GlobalOrdinal,Node>:: 00325 getConstTpetraOperator(const RCP<const LinearOpBase<Scalar> > &op) 00326 { 00327 typedef TpetraLinearOp<Scalar, LocalOrdinal, GlobalOrdinal, Node> TpetraLinearOp_t; 00328 return Teuchos::rcp_dynamic_cast<const TpetraLinearOp_t>(op, true)->getConstTpetraOperator(); 00329 } 00330 00331 00332 } // namespace Thyra 00333 00334 00335 #endif // THYRA_TPETRA_THYRA_WRAPPERS_HPP
1.7.6.1