view liboctave/numeric/fEIG.h @ 20263:00cf2847355d

Deprecate Array::nelem() and Range::nelem() in favour of ::numel(). * liboctave/array/Array.h (Array::nelem) deprecate in favour of numel(). (Array::capacity, Array:: length): change to call numel() directly. These methods will be deprecated soon. * liboctave/array/PermMatrix.h (PermMatrix::nelem): deprecate in favour of numel(). * liboctave/array/Range.h (Range::numel) new method to replace nelem(). (Range::nelem) deprecate in favour of the new method numel. * liboctave/array/Sparse.h (Sparse::nelem) deprecate in favour of nzmax(). This one is secially bad because unlike the other classes, it is different from numel(). * libinterp/corefcn/debug.cc, libinterp/corefcn/jit-typeinfo.cc, libinterp/corefcn/ls-mat4.cc, libinterp/corefcn/lu.cc, libinterp/corefcn/luinc.cc, libinterp/corefcn/max.cc, libinterp/corefcn/pr-output.cc, libinterp/corefcn/rand.cc, libinterp/corefcn/xpow.cc, libinterp/dldfcn/__magick_read__.cc, libinterp/dldfcn/audioread.cc, libinterp/octave-value/ov-base-int.cc, libinterp/octave-value/ov-bool-mat.cc, libinterp/octave-value/ov-flt-re-mat.cc, libinterp/octave-value/ov-perm.cc, libinterp/octave-value/ov-range.cc, libinterp/octave-value/ov-range.h, libinterp/octave-value/ov-re-mat.cc, libinterp/parse-tree/pt-eval.cc, liboctave/array/Array.cc, liboctave/array/CNDArray.cc, liboctave/array/Range.cc, liboctave/array/dNDArray.cc, liboctave/array/fCNDArray.cc, liboctave/array/fNDArray.cc, liboctave/array/idx-vector.cc, liboctave/array/intNDArray.cc, liboctave/numeric/SparseCmplxLU.cc, liboctave/numeric/SparsedbleLU.cc: replace use of nelem() with numel().
author Carnë Draug <carandraug@octave.org>
date Sun, 24 May 2015 02:41:37 +0100
parents 4197fc428c7d
children
line wrap: on
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/*

Copyright (C) 1994-2015 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/>.

*/

#if !defined (octave_fEIG_h)
#define octave_fEIG_h 1

#include <iosfwd>

#include "fMatrix.h"
#include "fCMatrix.h"
#include "fCColVector.h"

class
OCTAVE_API
FloatEIG
{
  friend class FloatMatrix;
  friend class FloatComplexMatrix;

public:

  FloatEIG (void)
    : lambda (), v () { }

  FloatEIG (const FloatMatrix& a, bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    init (a, calc_eigenvectors);
  }

  FloatEIG (const FloatMatrix& a, octave_idx_type& info,
            bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    info = init (a, calc_eigenvectors);
  }

  FloatEIG (const FloatMatrix& a, const FloatMatrix& b,
            bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    init (a, b, calc_eigenvectors);
  }

  FloatEIG (const FloatMatrix& a, const FloatMatrix& b, octave_idx_type& info,
            bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    info = init (a, b, calc_eigenvectors);
  }

  FloatEIG (const FloatComplexMatrix& a, bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    init (a, calc_eigenvectors);
  }

  FloatEIG (const FloatComplexMatrix& a, octave_idx_type& info,
            bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    info = init (a, calc_eigenvectors);
  }

  FloatEIG (const FloatComplexMatrix& a, const FloatComplexMatrix& b,
            bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    init (a, b, calc_eigenvectors);
  }

  FloatEIG (const FloatComplexMatrix& a, const FloatComplexMatrix& b,
            octave_idx_type& info, bool calc_eigenvectors = true)
    : lambda (), v ()
  {
    info = init (a, b, calc_eigenvectors);
  }

  FloatEIG (const FloatEIG& a) : lambda (a.lambda), v (a.v) { }

  FloatEIG& operator = (const FloatEIG& a)
  {
    if (this != &a)
      {
        lambda = a.lambda;
        v = a.v;
      }
    return *this;
  }

  ~FloatEIG (void) { }

  FloatComplexColumnVector eigenvalues (void) const { return lambda; }

  FloatComplexMatrix eigenvectors (void) const { return v; }

  friend std::ostream&  operator << (std::ostream& os, const FloatEIG& a);

private:

  FloatComplexColumnVector lambda;
  FloatComplexMatrix v;

  octave_idx_type init (const FloatMatrix& a, bool calc_eigenvectors);
  octave_idx_type init (const FloatMatrix& a, const FloatMatrix& b,
                        bool calc_eigenvectors);
  octave_idx_type init (const FloatComplexMatrix& a, bool calc_eigenvectors);
  octave_idx_type init (const FloatComplexMatrix& a,
                        const FloatComplexMatrix& b, bool calc_eigenvectors);

  octave_idx_type symmetric_init (const FloatMatrix& a, bool calc_eigenvectors);
  octave_idx_type symmetric_init (const FloatMatrix& a, const FloatMatrix& b,
                                  bool calc_eigenvectors);
  octave_idx_type hermitian_init (const FloatComplexMatrix& a,
                                  bool calc_eigenvectors);
  octave_idx_type hermitian_init (const FloatComplexMatrix& a,
                                  const FloatComplexMatrix& b,
                                  bool calc_eigenvectors);
};

#endif