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/******************************************************************************
* SOFA, Simulation Open-Framework Architecture, version 1.0 beta 4 *
* (c) 2006-2009 MGH, INRIA, USTL, UJF, CNRS *
* *
* This library is free software; you can redistribute it and/or modify it *
* under the terms of the GNU Lesser General Public License as published by *
* the Free Software Foundation; either version 2.1 of the License, or (at *
* your option) any later version. *
* *
* This library is distributed in the hope that it will be useful, but WITHOUT *
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or *
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License *
* for more details. *
* *
* You should have received a copy of the GNU Lesser General Public License *
* along with this library; if not, write to the Free Software Foundation, *
* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. *
*******************************************************************************
* SOFA :: Modules *
* *
* Authors: The SOFA Team and external contributors (see Authors.txt) *
* *
* Contact information: contact@sofa-framework.org *
******************************************************************************/
// Author: Hadrien Courtecuisse
//
// Copyright: See COPYING file that comes with this distribution
#include <sofa/component/linearsolver/JacobiPreconditioner.h>
#include <sofa/component/linearsolver/NewMatMatrix.h>
#include <sofa/component/linearsolver/FullMatrix.h>
#include <sofa/component/linearsolver/SparseMatrix.h>
#include <sofa/core/ObjectFactory.h>
#include <iostream>
#include "sofa/helper/system/thread/CTime.h"
#include <sofa/core/objectmodel/BaseContext.h>
#include <sofa/core/componentmodel/behavior/LinearSolver.h>
#include <sofa/helper/system/thread/CTime.h>
namespace sofa {
namespace component {
namespace linearsolver {
using namespace sofa::defaulttype;
using namespace sofa::core::componentmodel::behavior;
using namespace sofa::simulation;
using namespace sofa::core::objectmodel;
using sofa::helper::system::thread::CTime;
using sofa::helper::system::thread::ctime_t;
using std::cerr;
using std::endl;
template<class TMatrix, class TVector>
JacobiPreconditioner<TMatrix,TVector>::JacobiPreconditioner()
: f_verbose( initData(&f_verbose,false,"verbose","Dump system state at each iteration") )
, f_graph( initData(&f_graph,"graph","Graph of residuals at each iteration") ) {
f_graph.setWidget("graph");
f_graph.setReadOnly(true);
}
/// Solve P^-1 Mx= P^-1 b
// P[i][j] = M[i][j] ssi i=j
//P^-1[i][j] = 1/M[i][j]
template<class TMatrix, class TVector>
void JacobiPreconditioner<TMatrix,TVector>::solve (Matrix& M, Vector& z, Vector& r) {
//double t2 = CTime::getRefTime();
for (unsigned i=0;i<z.size();i++) z.set(i,r.element(i) / M.element(i,i)); //si i==j;
//printf("%f ",(CTime::getRefTime() - t2) / (double)CTime::getRefTicksPerSec());
}
SOFA_DECL_CLASS(JacobiPreconditioner)
int JacobiPreconditionerClass = core::RegisterObject("Linear system solver using the conjugate gradient iterative algorithm")
//.add< JacobiPreconditioner<GraphScatteredMatrix,GraphScatteredVector> >(true)
.add< JacobiPreconditioner< SparseMatrix<double>, FullVector<double> > >()
.add< JacobiPreconditioner<NewMatBandMatrix,NewMatVector> >(true)
.add< JacobiPreconditioner<NewMatMatrix,NewMatVector> >()
.add< JacobiPreconditioner<NewMatSymmetricMatrix,NewMatVector> >()
.add< JacobiPreconditioner<NewMatSymmetricBandMatrix,NewMatVector> >()
.add< JacobiPreconditioner< FullMatrix<double>, FullVector<double> > >()
.addAlias("JCGSolver")
.addAlias("JConjugateGradient")
;
} // namespace linearsolver
} // namespace component
} // namespace sofa
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