view liboctave/dbleGEPBAL.cc @ 8987:542015fada9e

Eliminate the workspace in sparse transpose. The output's cidx (column start offset array) can serve as the workspace, so the routines operate in the space of their output.
author Jason Riedy <jason@acm.org>
date Mon, 16 Mar 2009 17:03:07 -0400
parents eb63fbe60fab
children 829e69ec3110
line wrap: on
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/*

Copyright (C) 1994, 1995, 1996, 1997, 2000, 2002, 2003, 2004, 2005,
              2007, 2008 John W. Eaton

This file is part of Octave.

Octave is free software; you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by the
Free Software Foundation; either version 3 of the License, or (at your
option) any later version.

Octave 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 General Public License
for more details.

You should have received a copy of the GNU General Public License
along with Octave; see the file COPYING.  If not, see
<http://www.gnu.org/licenses/>.

*/

#ifdef HAVE_CONFIG_H
#include <config.h>
#endif

#include <string>
#include <vector>

#include "dbleGEPBAL.h"
#include "Array-util.h"
#include "f77-fcn.h"
#include "oct-locbuf.h"

extern "C"
{
  F77_RET_T
  F77_FUNC (dggbal, DGGBAL) (F77_CONST_CHAR_ARG_DECL, const octave_idx_type& N,
			     double* A, const octave_idx_type& LDA, double* B,
			     const octave_idx_type& LDB, octave_idx_type& ILO, octave_idx_type& IHI,
			     double* LSCALE, double* RSCALE,
			     double* WORK, octave_idx_type& INFO
			     F77_CHAR_ARG_LEN_DECL);

  F77_RET_T
  F77_FUNC (dggbak, DGGBAK) (F77_CONST_CHAR_ARG_DECL,
			     F77_CONST_CHAR_ARG_DECL,
			     const octave_idx_type& N, const octave_idx_type& ILO,
			     const octave_idx_type& IHI, const double* LSCALE,
			     const double* RSCALE, octave_idx_type& M, double* V,
			     const octave_idx_type& LDV, octave_idx_type& INFO
			     F77_CHAR_ARG_LEN_DECL
			     F77_CHAR_ARG_LEN_DECL);

}

octave_idx_type
GEPBALANCE::init (const Matrix& a, const Matrix& b, 
		  const std::string& balance_job)
{
  octave_idx_type n = a.cols ();

  if (a.rows () != n)
    {
      (*current_liboctave_error_handler) ("GEPBALANCE requires square matrix");
      return -1;
    }

  if (a.dims() != b.dims ())
    {
      gripe_nonconformant ("GEPBALANCE", n, n, b.rows(), b.cols());
      return -1;
    } 

  octave_idx_type info;
  octave_idx_type ilo;
  octave_idx_type ihi;

  OCTAVE_LOCAL_BUFFER (double, plscale, n);
  OCTAVE_LOCAL_BUFFER (double, prscale, n);
  OCTAVE_LOCAL_BUFFER (double, pwork, 6 * n);

  balanced_mat = a;
  double *p_balanced_mat = balanced_mat.fortran_vec ();
  balanced_mat2 = b;
  double *p_balanced_mat2 = balanced_mat2.fortran_vec ();

  char job = balance_job[0];

  F77_XFCN (dggbal, DGGBAL, (F77_CONST_CHAR_ARG2 (&job, 1),
			     n, p_balanced_mat, n, p_balanced_mat2,
			     n, ilo, ihi, plscale, prscale, pwork, info
			     F77_CHAR_ARG_LEN  (1)));

  balancing_mat = Matrix (n, n, 0.0);
  balancing_mat2 = Matrix (n, n, 0.0);
  for (octave_idx_type i = 0; i < n; i++)
    {
      OCTAVE_QUIT;
      balancing_mat.elem (i ,i) = 1.0;
      balancing_mat2.elem (i ,i) = 1.0;
    }

  double *p_balancing_mat = balancing_mat.fortran_vec ();
  double *p_balancing_mat2 = balancing_mat2.fortran_vec ();

  // first left
  F77_XFCN (dggbak, DGGBAK, (F77_CONST_CHAR_ARG2 (&job, 1),
			     F77_CONST_CHAR_ARG2 ("L", 1),
			     n, ilo, ihi, plscale, prscale,
			     n, p_balancing_mat, n, info
			     F77_CHAR_ARG_LEN (1)
			     F77_CHAR_ARG_LEN (1)));
      
  // then right
  F77_XFCN (dggbak, DGGBAK, (F77_CONST_CHAR_ARG2 (&job, 1),
			     F77_CONST_CHAR_ARG2 ("R", 1),
			     n, ilo, ihi, plscale, prscale,
			     n, p_balancing_mat2, n, info
			     F77_CHAR_ARG_LEN (1)
			     F77_CHAR_ARG_LEN (1)));

  return info;
}

/*
;;; Local Variables: ***
;;; mode: C++ ***
;;; End: ***
*/