mirror of
https://github.com/OPM/opm-simulators.git
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229 lines
8.6 KiB
C++
229 lines
8.6 KiB
C++
/*
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Copyright 2015 Dr. Blatt - HPC-Simulation-Software & Services
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Copyright 2015 Statoil AS
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This file is part of the Open Porous Media project (OPM).
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OPM is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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OPM is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with OPM. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef OPM_PARALLELRESTRICTEDADDITIVESCHWARZ_HEADER_INCLUDED
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#define OPM_PARALLELRESTRICTEDADDITIVESCHWARZ_HEADER_INCLUDED
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#include <opm/common/utility/platform_dependent/disable_warnings.h>
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#include <dune/istl/preconditioner.hh>
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#include <dune/istl/paamg/smoother.hh>
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#include <opm/common/utility/platform_dependent/reenable_warnings.h>
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namespace Opm
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{
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template<class X, class Y, class C, class T>
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class ParallelRestrictedOverlappingSchwarz;
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} // end namespace Opm
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namespace Dune
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{
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namespace Amg
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{
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/// \brief Tells AMG how to construct the Opm::ParallelOverlappingILU0 smoother
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/// \tparam Domain The type of the Vector representing the domain.
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/// \tparam Range The type of the Vector representing the range.
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/// \tparam ParallelInfo The type of the parallel information object
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/// used, e.g. Dune::OwnerOverlapCommunication
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/// \tparam SeqPreconditioner The underlying sequential preconditioner to use.
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template<class Range, class Domain, class ParallelInfo, class SeqPreconditioner>
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struct ConstructionTraits<Opm::ParallelRestrictedOverlappingSchwarz<Range,
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Domain,
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ParallelInfo,
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SeqPreconditioner> >
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{
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typedef DefaultParallelConstructionArgs<SeqPreconditioner,ParallelInfo> Arguments;
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typedef ConstructionTraits<SeqPreconditioner> SeqConstructionTraits;
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/// \brief Construct a parallel restricted overlapping schwarz preconditioner.
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#if DUNE_VERSION_NEWER(DUNE_ISTL, 2, 7)
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typedef std::shared_ptr< Opm::ParallelRestrictedOverlappingSchwarz<Range,
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Domain,
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ParallelInfo,
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SeqPreconditioner> > ParallelRestrictedOverlappingSchwarzPointer;
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#else
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typedef Opm::ParallelRestrictedOverlappingSchwarz<Range,
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Domain,
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ParallelInfo,
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SeqPreconditioner>* ParallelRestrictedOverlappingSchwarzPointer;
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#endif
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static inline ParallelRestrictedOverlappingSchwarzPointer
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construct(Arguments& args)
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{
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return
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#if DUNE_VERSION_NEWER(DUNE_ISTL, 2, 7)
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std::make_shared(
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#endif
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new Opm::ParallelRestrictedOverlappingSchwarz
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<Range,Domain,ParallelInfo,SeqPreconditioner>(*SeqConstructionTraits ::construct(args),
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args.getComm())
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#if DUNE_VERSION_NEWER(DUNE_ISTL, 2, 7)
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);
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#else
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;
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#endif
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}
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/// \brief Deconstruct and free a parallel restricted overlapping schwarz preconditioner.
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static inline void deconstruct(Opm::ParallelRestrictedOverlappingSchwarz
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<Range,Domain,ParallelInfo,SeqPreconditioner>* bp)
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{
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SeqConstructionTraits
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::deconstruct(static_cast<SeqPreconditioner*>(&bp->preconditioner));
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delete bp;
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}
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};
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/// \brief Tells AMG how to use Opm::ParallelOverlappingILU0 smoother
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/// \tparam Domain The type of the Vector representing the domain.
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/// \tparam Range The type of the Vector representing the range.
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/// \tparam ParallelInfo The type of the parallel information object
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/// used, e.g. Dune::OwnerOverlapCommunication
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/// \tparam SeqPreconditioner The underlying sequential preconditioner to use.
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template<class Range, class Domain, class ParallelInfo, class SeqPreconditioner>
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struct SmootherTraits<Opm::ParallelRestrictedOverlappingSchwarz<Range,
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Domain,
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ParallelInfo,
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SeqPreconditioner> >
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{
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typedef DefaultSmootherArgs<typename SeqPreconditioner::matrix_type::field_type> Arguments;
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};
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} // end namespace Amg
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} // end namespace Dune
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namespace Opm{
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/// \brief Block parallel preconditioner.
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///
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/// This is essentially a wrapper that takes a sequential
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/// preconditioner. In each step the sequential preconditioner
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/// is applied to the whole subdomain and then all owner data
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/// points are updated on all other processes from the processor
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/// that knows the complete matrix row for this data point (in dune-istl
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/// speak that is the one that owns the data).
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///
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/// Note that this is different from the usual approach in dune-istl where
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/// the application of the sequential preconditioner only takes place on
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/// the (owner) partition of the process disregarding any overlap/ghost region.
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///
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/// For more information see https://www.cs.colorado.edu/~cai/papers/rash.pdf
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///
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/// \tparam Domain The type of the Vector representing the domain.
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/// \tparam Range The type of the Vector representing the range.
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/// \tparam ParallelInfo The type of the parallel information object
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/// used, e.g. Dune::OwnerOverlapCommunication
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/// \tparam SeqPreconditioner The underlying sequential preconditioner to use.
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template<class Range, class Domain, class ParallelInfo, class SeqPreconditioner=Dune::Preconditioner<Range,Domain> >
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class ParallelRestrictedOverlappingSchwarz
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: public Dune::Preconditioner<Range,Domain> {
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friend class Dune::Amg
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::ConstructionTraits<ParallelRestrictedOverlappingSchwarz<Range,
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Domain,
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ParallelInfo,
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SeqPreconditioner> >;
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public:
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//! \brief The domain type of the preconditioner.
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typedef Domain domain_type;
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//! \brief The range type of the preconditioner.
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typedef Range range_type;
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//! \brief The field type of the preconditioner.
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typedef typename Domain::field_type field_type;
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//! \brief The type of the communication object.
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typedef ParallelInfo communication_type;
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// define the category
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enum {
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//! \brief The category the precondtioner is part of.
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category=Dune::SolverCategory::overlapping
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};
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/*! \brief Constructor.
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constructor gets all parameters to operate the prec.
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\param p The sequential preconditioner.
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\param c The communication object for syncing overlap and copy
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data points. (E.~g. OwnerOverlapCommunication )
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*/
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ParallelRestrictedOverlappingSchwarz (SeqPreconditioner& p, const communication_type& c)
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: preconditioner_(p), communication_(c)
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{ }
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/*!
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\brief Prepare the preconditioner.
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\copydoc Preconditioner::pre(X&,Y&)
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*/
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virtual void pre (Domain& x, Range& b)
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{
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communication_.copyOwnerToAll(x,x); // make dirichlet values consistent
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preconditioner_.pre(x,b);
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}
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/*!
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\brief Apply the preconditioner
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\copydoc Preconditioner::apply(X&,const Y&)
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*/
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virtual void apply (Domain& v, const Range& d)
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{
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apply<true>(v, d);
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}
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template<bool forward>
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void apply (Domain& v, const Range& d)
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{
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// hack us a mutable d to prevent copying.
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Range& md = const_cast<Range&>(d);
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communication_.copyOwnerToAll(md,md);
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preconditioner_.template apply<forward>(v,d);
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communication_.copyOwnerToAll(v,v);
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// Make sure that d is the same as at the beginning of apply.
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communication_.project(md);
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}
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/*!
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\brief Clean up.
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\copydoc Preconditioner::post(X&)
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*/
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virtual void post (Range& x)
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{
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preconditioner_.post(x);
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}
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private:
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//! \brief a sequential preconditioner
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SeqPreconditioner& preconditioner_;
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//! \brief the communication object
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const communication_type& communication_;
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};
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} // end namespace OPM
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#endif
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