|
Teko Version of the Day
|
00001 /* 00002 // @HEADER 00003 // 00004 // *********************************************************************** 00005 // 00006 // Teko: A package for block and physics based preconditioning 00007 // Copyright 2010 Sandia Corporation 00008 // 00009 // Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation, 00010 // the U.S. Government retains certain rights in this software. 00011 // 00012 // Redistribution and use in source and binary forms, with or without 00013 // modification, are permitted provided that the following conditions are 00014 // met: 00015 // 00016 // 1. Redistributions of source code must retain the above copyright 00017 // notice, this list of conditions and the following disclaimer. 00018 // 00019 // 2. Redistributions in binary form must reproduce the above copyright 00020 // notice, this list of conditions and the following disclaimer in the 00021 // documentation and/or other materials provided with the distribution. 00022 // 00023 // 3. Neither the name of the Corporation nor the names of the 00024 // contributors may be used to endorse or promote products derived from 00025 // this software without specific prior written permission. 00026 // 00027 // THIS SOFTWARE IS PROVIDED BY SANDIA CORPORATION "AS IS" AND ANY 00028 // EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 00029 // IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 00030 // PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL SANDIA CORPORATION OR THE 00031 // CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 00032 // EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 00033 // PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR 00034 // PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF 00035 // LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING 00036 // NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS 00037 // SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 00038 // 00039 // Questions? Contact Eric C. Cyr (eccyr@sandia.gov) 00040 // 00041 // *********************************************************************** 00042 // 00043 // @HEADER 00044 00045 */ 00046 00047 #include "Teko_AddPreconditionerFactory.hpp" 00048 00049 namespace Teko { 00050 00051 using Teuchos::RCP; 00052 00053 AddPreconditionerFactory::AddPreconditionerFactory( 00054 const RCP<const BlockPreconditionerFactory> & FirstFactory, 00055 const RCP<const BlockPreconditionerFactory> & SecondFactory) 00056 : FirstFactory_(FirstFactory), SecondFactory_(SecondFactory) 00057 {} 00058 00059 AddPreconditionerFactory::AddPreconditionerFactory() 00060 {} 00061 00063 RCP<PreconditionerState> AddPreconditionerFactory::buildPreconditionerState() const 00064 { 00065 AddPrecondState* mystate = new AddPrecondState(); 00066 mystate->StateOne_ = Teuchos::rcp_dynamic_cast<BlockPreconditionerState>(FirstFactory_->buildPreconditionerState()); 00067 mystate->StateTwo_ = Teuchos::rcp_dynamic_cast<BlockPreconditionerState>(SecondFactory_->buildPreconditionerState()); 00068 return rcp(mystate); 00069 } 00070 00071 // Use the factory to build the preconditioner (this is where the work goes) 00072 LinearOp AddPreconditionerFactory 00073 ::buildPreconditionerOperator(BlockedLinearOp & blockOp, 00074 BlockPreconditionerState & state) const 00075 { 00076 // The main tricky thing here is that we have to take the 'state' object 00077 // associated with AddPreconditionerFactory(), pull out the states for 00078 // the individual preconditioners, and pass these on to 00079 // buildPreconditionerOperator() for each subpreconditioner. 00080 00081 AddPrecondState *MyState = dynamic_cast<AddPrecondState *> (&state); 00082 TEUCHOS_ASSERT(MyState != 0); 00083 00084 LinearOp M1 = FirstFactory_->buildPreconditionerOperator(blockOp, *MyState->StateOne_); 00085 LinearOp M2 = SecondFactory_->buildPreconditionerOperator(blockOp, *MyState->StateTwo_); 00086 00087 LinearOp invA = add(M1, M2); 00088 00089 // return fully constructed preconditioner 00090 return invA; 00091 } 00092 00094 void AddPreconditionerFactory::initializeFromParameterList(const Teuchos::ParameterList & pl) 00095 { 00096 RCP<const InverseLibrary> invLib = getInverseLibrary(); 00097 00098 // get string specifying inverse 00099 std::string aStr="", bStr=""; 00100 00101 // "parse" the parameter list 00102 aStr = pl.get<std::string>("Preconditioner A"); 00103 bStr = pl.get<std::string>("Preconditioner B"); 00104 00105 RCP<const Teuchos::ParameterList> aSettings = invLib->getParameterList(aStr); 00106 RCP<const Teuchos::ParameterList> bSettings = invLib->getParameterList(bStr); 00107 00108 // build preconditioner from the parameters 00109 std::string aType = aSettings->get<std::string>("Preconditioner Type"); 00110 RCP<Teko::PreconditionerFactory> precA 00111 = Teko::PreconditionerFactory::buildPreconditionerFactory(aType,aSettings->sublist("Preconditioner Settings"),invLib); 00112 00113 // build preconditioner from the parameters 00114 std::string bType = bSettings->get<std::string>("Preconditioner Type"); 00115 RCP<Teko::PreconditionerFactory> precB 00116 = Teko::PreconditionerFactory::buildPreconditionerFactory(bType,bSettings->sublist("Preconditioner Settings"),invLib); 00117 00118 // set precondtioners 00119 FirstFactory_ = Teuchos::rcp_dynamic_cast<const Teko::BlockPreconditionerFactory>(precA); 00120 SecondFactory_ = Teuchos::rcp_dynamic_cast<const Teko::BlockPreconditionerFactory>(precB); 00121 } 00122 00123 } // end namespace Teko
1.7.4