PlayaSimpleBlockOpImpl.hpp
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00003 // 
00004 //                 Playa: Programmable Linear Algebra
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00039 
00040 /* @HEADER@ */
00041 
00042 #ifndef PLAYA_SIMPLEBLOCKOP_IMPL_HPP
00043 #define PLAYA_SIMPLEBLOCKOP_IMPL_HPP
00044 
00045 #include "PlayaTabs.hpp"
00046 #include "PlayaExceptions.hpp"
00047 #include "PlayaSimpleBlockOpDecl.hpp"
00048 #include "PlayaSimpleZeroOpDecl.hpp"
00049 
00050 #ifndef HAVE_TEUCHOS_EXPLICIT_INSTANTIATION
00051 #include "PlayaLinearOperatorImpl.hpp"
00052 #include "PlayaSimpleZeroOpImpl.hpp"
00053 #endif
00054 
00055 
00056 
00057 namespace Playa
00058 {
00059 using namespace Teuchos;
00060 
00061 
00062 
00063 /* ---- Simplified linear op with spaces ------- */
00064 
00065 template <class Scalar> inline
00066 SimpleBlockOp<Scalar>::SimpleBlockOp(
00067   const VectorSpace<Scalar>& domain,
00068   const VectorSpace<Scalar>& range)
00069   : LinearOpWithSpaces<Scalar>(domain, range), blocks_(range.numBlocks())
00070 {
00071   for (int i=0; i<blocks_.size(); i++) 
00072   {
00073     blocks_[i] = Array<LinearOperator<Scalar> >(domain.numBlocks());
00074     for (int j=0; j<blocks_[i].size(); j++)
00075     {
00076       blocks_[i][j] = zeroOperator(domain.getBlock(j), range.getBlock(i));
00077     }
00078   }
00079 }
00080 
00081 template <class Scalar> inline
00082 int SimpleBlockOp<Scalar>::numBlockRows() const
00083 {
00084   return blocks_.size();
00085 }
00086 
00087 template <class Scalar> inline
00088 int SimpleBlockOp<Scalar>::numBlockCols() const
00089 {
00090   return blocks_[0].size();
00091 }
00092 
00093 template <class Scalar> inline
00094 const LinearOperator<Scalar>& SimpleBlockOp<Scalar>::getBlock(int i, int j) const 
00095 {
00096   return blocks_[i][j];
00097 }
00098 
00099 template <class Scalar> inline
00100 LinearOperator<Scalar> SimpleBlockOp<Scalar>::getNonconstBlock(int i, int j) 
00101 {
00102   return blocks_[i][j];
00103 }
00104 
00105 
00106 template <class Scalar> inline
00107 void SimpleBlockOp<Scalar>::setBlock(int i, int j, 
00108   const LinearOperator<Scalar>& Aij) 
00109 {
00110   blocks_[i][j] = Aij;
00111 }
00112 
00113 template <class Scalar> inline
00114 void SimpleBlockOp<Scalar>::apply(Teuchos::ETransp transApplyType,
00115   const Vector<Scalar>& in,
00116   Vector<Scalar> out) const
00117 {
00118   Tabs tab(0);
00119   PLAYA_MSG2(this->verb(), tab << "SimpleBlockOp::apply()");
00120   if (transApplyType == Teuchos::NO_TRANS)
00121   {
00122     out.zero();
00123     for (int i=0; i<this->numBlockRows(); i++)
00124     {
00125       for (int j=0; j<this->numBlockCols(); j++)
00126       {
00127         Vector<Scalar> tmp; 
00128         blocks_[i][j].apply(in.getBlock(j), tmp);
00129         out.getNonConstBlock(i).update(1.0, tmp);
00130       }
00131     }
00132   }
00133 
00134   else if (transApplyType == Teuchos::TRANS)
00135   {
00136     for (int i=0; i<this->numBlockCols(); i++)
00137     {
00138       out.zero();
00139       for (int j=0; j<this->numBlockRows(); j++)
00140       {
00141         Vector<Scalar> tmp;
00142         blocks_[j][i].applyTranspose(in.getBlock(j),tmp);
00143         out.getNonConstBlock(i).update(1.0, tmp);
00144       }
00145     }
00146   }
00147   else
00148   {
00149     TEUCHOS_TEST_FOR_EXCEPT(transApplyType != Teuchos::TRANS && transApplyType != Teuchos::NO_TRANS);
00150   }
00151   PLAYA_MSG2(this->verb(), tab << "done SimpleBlockOp::apply()");
00152 }
00153 
00154 
00155 template <class Scalar> inline
00156 LinearOperator<Scalar> makeBlockOperator(
00157   const VectorSpace<Scalar>& domain,
00158   const VectorSpace<Scalar>& range
00159   )
00160 {
00161   RCP<SimpleBlockOp<Scalar> > b = 
00162     rcp(new SimpleBlockOp<Scalar>(domain, range));
00163   RCP<LinearOperatorBase<Scalar> > p = b;
00164   return p;
00165 }
00166 
00167 
00168 
00169 }
00170 
00171 #endif

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