/usr/include/dolfin/la/EpetraMatrix.h is in libdolfin1.0-dev 1.0.0-1.
This file is owned by root:root, with mode 0o644.
The actual contents of the file can be viewed below.
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//
// This file is part of DOLFIN.
//
// DOLFIN 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 3 of the License, or
// (at your option) any later version.
//
// DOLFIN 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 DOLFIN. If not, see <http://www.gnu.org/licenses/>.
//
// Modified by Anders Logg, 2008.
// Modified by Garth N. Wells, 2008, 2009.
//
// First added: 2008-04-21
// Last changed: 2009-09-08
#ifndef __EPETRA_MATRIX_H
#define __EPETRA_MATRIX_H
#ifdef HAS_TRILINOS
#include <boost/shared_ptr.hpp>
#include "GenericMatrix.h"
class Epetra_FECrsMatrix;
class Epetra_CrsGraph;
namespace dolfin
{
/// Forward declarations
class EpetraSparsityPattern;
class GenericSparsityPattern;
/// This class provides a simple matrix class based on Epetra.
/// It is a simple wrapper for an Epetra matrix object (Epetra_FECrsMatrix)
/// implementing the GenericMatrix interface.
///
/// The interface is intentionally simple. For advanced usage,
/// access the Epetra_FECrsMatrix object using the function mat() and
/// use the standard Epetra interface.
class EpetraMatrix : public GenericMatrix
{
public:
/// Create empty matrix
EpetraMatrix();
/// Copy constuctor
EpetraMatrix(const EpetraMatrix& A);
/// Create matrix from given Epetra_FECrsMatrix pointer
explicit EpetraMatrix(boost::shared_ptr<Epetra_FECrsMatrix> A);
/// Create matrix from given Epetra_CrsGraph
explicit EpetraMatrix(const Epetra_CrsGraph& graph);
/// Destructor
virtual ~EpetraMatrix();
//--- Implementation of the GenericTensor interface ---
/// Return true if matrix is distributed
virtual bool distributed() const;
/// Initialize zero tensor using sparsity pattern
virtual void init(const GenericSparsityPattern& sparsity_pattern);
/// Return copy of tensor
virtual EpetraMatrix* copy() const;
/// Return size of given dimension
virtual uint size(uint dim) const;
/// Return local ownership range
virtual std::pair<uint, uint> local_range(uint dim) const;
/// Set all entries to zero and keep any sparse structure
virtual void zero();
/// Finalize assembly of tensor. The following values are recognized
/// for the mode parameter:
///
/// add - corresponding to Epetra GlobalAssemble(Add)
/// insert - corresponding to Epetra GlobalAssemble(Insert)
virtual void apply(std::string mode);
/// Return informal string representation (pretty-print)
virtual std::string str(bool verbose) const;
//--- Implementation of the GenericMatrix interface ---
/// Resize vector y such that is it compatible with matrix for
/// multuplication Ax = b (dim = 0 -> b, dim = 1 -> x) In parallel
/// case, size and layout are important.
virtual void resize(GenericVector& y, uint dim) const;
/// Get block of values
virtual void get(double* block, uint m, const uint* rows, uint n, const uint* cols) const;
/// Set block of values
virtual void set(const double* block, uint m, const uint* rows, uint n, const uint* cols);
/// Add block of values
virtual void add(const double* block, uint m, const uint* rows, uint n, const uint* cols);
/// Add multiple of given matrix (AXPY operation)
virtual void axpy(double a, const GenericMatrix& A, bool same_nonzero_pattern);
/// Return norm of matrix
virtual double norm(std::string norm_type) const;
/// Get non-zero values of given row
virtual void getrow(uint row, std::vector<uint>& columns, std::vector<double>& values) const;
/// Set values for given row
virtual void setrow(uint row, const std::vector<uint>& columns, const std::vector<double>& values);
/// Set given rows to zero
virtual void zero(uint m, const uint* rows);
/// Set given rows to identity matrix
virtual void ident(uint m, const uint* rows);
// Matrix-vector product, y = Ax
virtual void mult(const GenericVector& x, GenericVector& y) const;
// Matrix-vector product, y = A^T x
virtual void transpmult(const GenericVector& x, GenericVector& y) const;
/// Multiply matrix by given number
virtual const EpetraMatrix& operator*= (double a);
/// Divide matrix by given number
virtual const EpetraMatrix& operator/= (double a);
/// Assignment operator
virtual const GenericMatrix& operator= (const GenericMatrix& x);
//--- Special functions ---
/// Return linear algebra backend factory
virtual LinearAlgebraFactory& factory() const;
//--- Special Epetra functions ---
/// Initialize zero tensor using sparsity pattern
virtual void init(const EpetraSparsityPattern& sparsity_pattern);
/// Return Epetra_FECrsMatrix pointer
boost::shared_ptr<Epetra_FECrsMatrix> mat() const;
/// Assignment operator
const EpetraMatrix& operator= (const EpetraMatrix& x);
private:
// Epetra_FECrsMatrix pointer
boost::shared_ptr<Epetra_FECrsMatrix> A;
};
}
#endif // HAS_TRILINOS
#endif // __EPETRA_MATRIX_H
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