view liboctave/array/fCDiagMatrix.cc @ 17822:ebb3ef964372

maint: Use common #define syntax "octave_filename_h" in h_files. * libgui/src/dialog.h, libgui/src/find-files-dialog.h, libgui/src/find-files-model.h, libgui/src/m-editor/file-editor-tab.h, libgui/src/m-editor/octave-qscintilla.h, libgui/src/main-window.h, libgui/src/octave-dock-widget.h, libgui/src/workspace-model.h, libgui/src/workspace-view.h, libinterp/corefcn/Cell.h, libinterp/corefcn/gl-render.h, libinterp/corefcn/gl2ps-renderer.h, libinterp/corefcn/graphics.in.h, libinterp/corefcn/oct-errno.h, libinterp/corefcn/oct-fstrm.h, libinterp/corefcn/oct-handle.h, libinterp/corefcn/oct-hdf5.h, libinterp/corefcn/oct-hist.h, libinterp/corefcn/oct-iostrm.h, libinterp/corefcn/oct-lvalue.h, libinterp/corefcn/oct-prcstrm.h, libinterp/corefcn/oct-procbuf.h, libinterp/corefcn/oct-stdstrm.h, libinterp/corefcn/oct-stream.h, libinterp/corefcn/oct-strstrm.h, libinterp/corefcn/octave-link.h, libinterp/corefcn/pt-jit.h, libinterp/octave-value/ov-base-diag.h, libinterp/octave-value/ov-base-int.h, libinterp/octave-value/ov-base-mat.h, libinterp/octave-value/ov-base-scalar.h, libinterp/octave-value/ov-base-sparse.h, libinterp/octave-value/ov-base.h, libinterp/octave-value/ov-bool-mat.h, libinterp/octave-value/ov-bool-sparse.h, libinterp/octave-value/ov-bool.h, libinterp/octave-value/ov-builtin.h, libinterp/octave-value/ov-cell.h, libinterp/octave-value/ov-ch-mat.h, libinterp/octave-value/ov-class.h, libinterp/octave-value/ov-colon.h, libinterp/octave-value/ov-complex.h, libinterp/octave-value/ov-cs-list.h, libinterp/octave-value/ov-cx-diag.h, libinterp/octave-value/ov-cx-mat.h, libinterp/octave-value/ov-cx-sparse.h, libinterp/octave-value/ov-dld-fcn.h, libinterp/octave-value/ov-fcn-handle.h, libinterp/octave-value/ov-fcn-inline.h, libinterp/octave-value/ov-fcn.h, libinterp/octave-value/ov-float.h, libinterp/octave-value/ov-flt-complex.h, libinterp/octave-value/ov-flt-cx-diag.h, libinterp/octave-value/ov-flt-cx-mat.h, libinterp/octave-value/ov-flt-re-diag.h, libinterp/octave-value/ov-flt-re-mat.h, libinterp/octave-value/ov-int-traits.h, libinterp/octave-value/ov-int16.h, libinterp/octave-value/ov-int32.h, libinterp/octave-value/ov-int64.h, libinterp/octave-value/ov-int8.h, libinterp/octave-value/ov-java.h, libinterp/octave-value/ov-lazy-idx.h, libinterp/octave-value/ov-mex-fcn.h, libinterp/octave-value/ov-null-mat.h, libinterp/octave-value/ov-perm.h, libinterp/octave-value/ov-range.h, libinterp/octave-value/ov-re-diag.h, libinterp/octave-value/ov-re-mat.h, libinterp/octave-value/ov-re-sparse.h, libinterp/octave-value/ov-scalar.h, libinterp/octave-value/ov-str-mat.h, libinterp/octave-value/ov-struct.h, libinterp/octave-value/ov-typeinfo.h, libinterp/octave-value/ov-uint16.h, libinterp/octave-value/ov-uint32.h, libinterp/octave-value/ov-uint64.h, libinterp/octave-value/ov-uint8.h, libinterp/octave-value/ov-usr-fcn.h, libinterp/octave-value/ov.h, libinterp/parse-tree/pt-all.h, libinterp/parse-tree/pt-arg-list.h, libinterp/parse-tree/pt-array-list.h, libinterp/parse-tree/pt-assign.h, libinterp/parse-tree/pt-binop.h, libinterp/parse-tree/pt-bp.h, libinterp/parse-tree/pt-cbinop.h, libinterp/parse-tree/pt-cell.h, libinterp/parse-tree/pt-check.h, libinterp/parse-tree/pt-cmd.h, libinterp/parse-tree/pt-colon.h, libinterp/parse-tree/pt-const.h, libinterp/parse-tree/pt-decl.h, libinterp/parse-tree/pt-eval.h, libinterp/parse-tree/pt-except.h, libinterp/parse-tree/pt-exp.h, libinterp/parse-tree/pt-fcn-handle.h, libinterp/parse-tree/pt-id.h, libinterp/parse-tree/pt-idx.h, libinterp/parse-tree/pt-jump.h, libinterp/parse-tree/pt-loop.h, libinterp/parse-tree/pt-mat.h, libinterp/parse-tree/pt-misc.h, libinterp/parse-tree/pt-pr-code.h, libinterp/parse-tree/pt-select.h, libinterp/parse-tree/pt-stmt.h, libinterp/parse-tree/pt-unop.h, libinterp/parse-tree/pt-walk.h, libinterp/parse-tree/pt.h, liboctave/array/CColVector.h, liboctave/array/CDiagMatrix.h, liboctave/array/CMatrix.h, liboctave/array/CNDArray.h, liboctave/array/CRowVector.h, liboctave/array/boolMatrix.h, liboctave/array/chMatrix.h, liboctave/array/chNDArray.h, liboctave/array/dColVector.h, liboctave/array/dDiagMatrix.h, liboctave/array/dMatrix.h, liboctave/array/dNDArray.h, liboctave/array/dRowVector.h, liboctave/array/fCColVector.h, liboctave/array/fCDiagMatrix.h, liboctave/array/fCMatrix.h, liboctave/array/fCNDArray.h, liboctave/array/fCRowVector.h, liboctave/array/fColVector.h, liboctave/array/fDiagMatrix.h, liboctave/array/fMatrix.h, liboctave/array/fNDArray.h, liboctave/array/fRowVector.h, liboctave/cruft/misc/lo-error.h, liboctave/numeric/CmplxAEPBAL.h, liboctave/numeric/CmplxCHOL.h, liboctave/numeric/CmplxGEPBAL.h, liboctave/numeric/CmplxHESS.h, liboctave/numeric/CmplxLU.h, liboctave/numeric/CmplxQR.h, liboctave/numeric/CmplxQRP.h, liboctave/numeric/CmplxSCHUR.h, liboctave/numeric/CmplxSVD.h, liboctave/numeric/Quad.h, liboctave/numeric/SparseCmplxCHOL.h, liboctave/numeric/SparseCmplxLU.h, liboctave/numeric/SparseCmplxQR.h, liboctave/numeric/SparseQR.h, liboctave/numeric/SparsedbleCHOL.h, liboctave/numeric/SparsedbleLU.h, liboctave/numeric/bsxfun.h, liboctave/numeric/dbleAEPBAL.h, liboctave/numeric/dbleCHOL.h, liboctave/numeric/dbleGEPBAL.h, liboctave/numeric/dbleHESS.h, liboctave/numeric/dbleLU.h, liboctave/numeric/dbleQR.h, liboctave/numeric/dbleQRP.h, liboctave/numeric/dbleSCHUR.h, liboctave/numeric/dbleSVD.h, liboctave/numeric/fCmplxAEPBAL.h, liboctave/numeric/fCmplxCHOL.h, liboctave/numeric/fCmplxGEPBAL.h, liboctave/numeric/fCmplxHESS.h, liboctave/numeric/fCmplxLU.h, liboctave/numeric/fCmplxQR.h, liboctave/numeric/fCmplxQRP.h, liboctave/numeric/fCmplxSCHUR.h, liboctave/numeric/fCmplxSVD.h, liboctave/numeric/fEIG.h, liboctave/numeric/floatAEPBAL.h, liboctave/numeric/floatCHOL.h, liboctave/numeric/floatGEPBAL.h, liboctave/numeric/floatHESS.h, liboctave/numeric/floatLU.h, liboctave/numeric/floatQR.h, liboctave/numeric/floatQRP.h, liboctave/numeric/floatSCHUR.h, liboctave/numeric/floatSVD.h, liboctave/numeric/lo-mappers.h, liboctave/numeric/lo-specfun.h, liboctave/numeric/oct-convn.h, liboctave/numeric/oct-norm.h, liboctave/numeric/oct-rand.h, liboctave/operators/Sparse-diag-op-defs.h, liboctave/operators/Sparse-op-defs.h, liboctave/operators/Sparse-perm-op-defs.h, liboctave/system/lo-sysdep.h, liboctave/system/oct-env.h, liboctave/system/oct-group.h, liboctave/system/oct-openmp.h, liboctave/system/oct-passwd.h, liboctave/system/oct-syscalls.h, liboctave/system/oct-time.h, liboctave/system/oct-uname.h, liboctave/util/lo-array-gripes.h, liboctave/util/lo-cutils.h, liboctave/util/lo-ieee.h, liboctave/util/lo-macros.h, liboctave/util/lo-math.h, liboctave/util/lo-regexp.h, liboctave/util/lo-traits.h, liboctave/util/lo-utils.h, liboctave/util/oct-base64.h, liboctave/util/oct-binmap.h, liboctave/util/oct-glob.h, liboctave/util/oct-inttypes.h, liboctave/util/oct-locbuf.h, liboctave/util/oct-mem.h, liboctave/util/oct-mutex.h, liboctave/util/oct-refcount.h, liboctave/util/oct-rl-edit.h, liboctave/util/oct-rl-hist.h, liboctave/util/oct-shlib.h, liboctave/util/oct-sort.h, liboctave/util/oct-sparse.h: Use common #define syntax "octave_filename_h" in h_files.
author Rik <rik@octave.org>
date Thu, 31 Oct 2013 22:19:07 -0700
parents 49a5a4be04a1
children 8e056300994b
line wrap: on
line source

// DiagMatrix manipulations.
/*

Copyright (C) 1994-2013 John W. Eaton
Copyright (C) 2009 VZLU Prague

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 <iostream>

#include "Array-util.h"
#include "lo-error.h"
#include "lo-ieee.h"
#include "mx-base.h"
#include "mx-inlines.cc"
#include "oct-cmplx.h"

// FloatComplex Diagonal Matrix class

FloatComplexDiagMatrix::FloatComplexDiagMatrix (const FloatDiagMatrix& a)
  : MDiagArray2<FloatComplex> (a.rows (), a.cols ())
{
  for (octave_idx_type i = 0; i < length (); i++)
    elem (i, i) = a.elem (i, i);
}

bool
FloatComplexDiagMatrix::operator == (const FloatComplexDiagMatrix& a) const
{
  if (rows () != a.rows () || cols () != a.cols ())
    return 0;

  return mx_inline_equal (length (), data (), a.data ());
}

bool
FloatComplexDiagMatrix::operator != (const FloatComplexDiagMatrix& a) const
{
  return !(*this == a);
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (float val)
{
  for (octave_idx_type i = 0; i < length (); i++)
    elem (i, i) = val;
  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatComplex& val)
{
  for (octave_idx_type i = 0; i < length (); i++)
    elem (i, i) = val;
  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (float val,
                              octave_idx_type beg, octave_idx_type end)
{
  if (beg < 0 || end >= length () || end < beg)
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = beg; i <= end; i++)
    elem (i, i) = val;

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatComplex& val,
                              octave_idx_type beg, octave_idx_type end)
{
  if (beg < 0 || end >= length () || end < beg)
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = beg; i <= end; i++)
    elem (i, i) = val;

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatColumnVector& a)
{
  octave_idx_type len = length ();
  if (a.length () != len)
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < len; i++)
    elem (i, i) = a.elem (i);

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatComplexColumnVector& a)
{
  octave_idx_type len = length ();
  if (a.length () != len)
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < len; i++)
    elem (i, i) = a.elem (i);

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatRowVector& a)
{
  octave_idx_type len = length ();
  if (a.length () != len)
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < len; i++)
    elem (i, i) = a.elem (i);

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatComplexRowVector& a)
{
  octave_idx_type len = length ();
  if (a.length () != len)
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < len; i++)
    elem (i, i) = a.elem (i);

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatColumnVector& a, octave_idx_type beg)
{
  octave_idx_type a_len = a.length ();
  if (beg < 0 || beg + a_len >= length ())
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < a_len; i++)
    elem (i+beg, i+beg) = a.elem (i);

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatComplexColumnVector& a,
                              octave_idx_type beg)
{
  octave_idx_type a_len = a.length ();
  if (beg < 0 || beg + a_len >= length ())
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < a_len; i++)
    elem (i+beg, i+beg) = a.elem (i);

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatRowVector& a, octave_idx_type beg)
{
  octave_idx_type a_len = a.length ();
  if (beg < 0 || beg + a_len >= length ())
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < a_len; i++)
    elem (i+beg, i+beg) = a.elem (i);

  return *this;
}

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::fill (const FloatComplexRowVector& a,
                              octave_idx_type beg)
{
  octave_idx_type a_len = a.length ();
  if (beg < 0 || beg + a_len >= length ())
    {
      (*current_liboctave_error_handler) ("range error for fill");
      return *this;
    }

  for (octave_idx_type i = 0; i < a_len; i++)
    elem (i+beg, i+beg) = a.elem (i);

  return *this;
}

FloatDiagMatrix
FloatComplexDiagMatrix::abs (void) const
{
  return FloatDiagMatrix (extract_diag ().abs (), rows (), columns ());
}

FloatComplexDiagMatrix
conj (const FloatComplexDiagMatrix& a)
{
  return FloatComplexDiagMatrix (conj (a.extract_diag ()), a.rows (),
                                 a.columns ());
}

// resize is the destructive analog for this one

FloatComplexMatrix
FloatComplexDiagMatrix::extract (octave_idx_type r1, octave_idx_type c1,
                                 octave_idx_type r2, octave_idx_type c2) const
{
  if (r1 > r2) { std::swap (r1, r2); }
  if (c1 > c2) { std::swap (c1, c2); }

  octave_idx_type new_r = r2 - r1 + 1;
  octave_idx_type new_c = c2 - c1 + 1;

  FloatComplexMatrix result (new_r, new_c);

  for (octave_idx_type j = 0; j < new_c; j++)
    for (octave_idx_type i = 0; i < new_r; i++)
      result.elem (i, j) = elem (r1+i, c1+j);

  return result;
}

// extract row or column i.

FloatComplexRowVector
FloatComplexDiagMatrix::row (octave_idx_type i) const
{
  octave_idx_type r = rows ();
  octave_idx_type c = cols ();
  if (i < 0 || i >= r)
    {
      (*current_liboctave_error_handler) ("invalid row selection");
      return FloatComplexRowVector ();
    }

  FloatComplexRowVector retval (c, 0.0);
  if (r <= c || (r > c && i < c))
    retval.elem (i) = elem (i, i);

  return retval;
}

FloatComplexRowVector
FloatComplexDiagMatrix::row (char *s) const
{
  if (! s)
    {
      (*current_liboctave_error_handler) ("invalid row selection");
      return FloatComplexRowVector ();
    }

  char c = *s;
  if (c == 'f' || c == 'F')
    return row (static_cast<octave_idx_type>(0));
  else if (c == 'l' || c == 'L')
    return row (rows () - 1);
  else
    {
      (*current_liboctave_error_handler) ("invalid row selection");
      return FloatComplexRowVector ();
    }
}

FloatComplexColumnVector
FloatComplexDiagMatrix::column (octave_idx_type i) const
{
  octave_idx_type r = rows ();
  octave_idx_type c = cols ();
  if (i < 0 || i >= c)
    {
      (*current_liboctave_error_handler) ("invalid column selection");
      return FloatComplexColumnVector ();
    }

  FloatComplexColumnVector retval (r, 0.0);
  if (r >= c || (r < c && i < r))
    retval.elem (i) = elem (i, i);

  return retval;
}

FloatComplexColumnVector
FloatComplexDiagMatrix::column (char *s) const
{
  if (! s)
    {
      (*current_liboctave_error_handler) ("invalid column selection");
      return FloatComplexColumnVector ();
    }

  char c = *s;
  if (c == 'f' || c == 'F')
    return column (static_cast<octave_idx_type>(0));
  else if (c == 'l' || c == 'L')
    return column (cols () - 1);
  else
    {
      (*current_liboctave_error_handler) ("invalid column selection");
      return FloatComplexColumnVector ();
    }
}

FloatComplexDiagMatrix
FloatComplexDiagMatrix::inverse (void) const
{
  octave_idx_type info;
  return inverse (info);
}

FloatComplexDiagMatrix
FloatComplexDiagMatrix::inverse (octave_idx_type& info) const
{
  octave_idx_type r = rows ();
  octave_idx_type c = cols ();
  if (r != c)
    {
      (*current_liboctave_error_handler) ("inverse requires square matrix");
      return FloatComplexDiagMatrix ();
    }

  FloatComplexDiagMatrix retval (r, c);

  info = 0;
  for (octave_idx_type i = 0; i < length (); i++)
    {
      if (elem (i, i) == static_cast<float> (0.0))
        {
          info = -1;
          return *this;
        }
      else
        retval.elem (i, i) = static_cast<float> (1.0) / elem (i, i);
    }

  return retval;
}

FloatComplexDiagMatrix
FloatComplexDiagMatrix::pseudo_inverse (void) const
{
  octave_idx_type r = rows ();
  octave_idx_type c = cols ();
  octave_idx_type len = length ();

  FloatComplexDiagMatrix retval (c, r);

  for (octave_idx_type i = 0; i < len; i++)
    {
      if (elem (i, i) != 0.0f)
        retval.elem (i, i) = 1.0f / elem (i, i);
      else
        retval.elem (i, i) = 0.0f;
    }

  return retval;
}

bool
FloatComplexDiagMatrix::all_elements_are_real (void) const
{
  return mx_inline_all_real (length (), data ());
}

// diagonal matrix by diagonal matrix -> diagonal matrix operations

FloatComplexDiagMatrix&
FloatComplexDiagMatrix::operator += (const FloatDiagMatrix& a)
{
  octave_idx_type r = rows ();
  octave_idx_type c = cols ();

  octave_idx_type a_nr = a.rows ();
  octave_idx_type a_nc = a.cols ();

  if (r != a_nr || c != a_nc)
    {
      gripe_nonconformant ("operator +=", r, c, a_nr, a_nc);
      return *this;
    }

  if (r == 0 || c == 0)
    return *this;

  FloatComplex *d = fortran_vec (); // Ensures only 1 reference to my privates!

  mx_inline_add2 (length (), d, a.data ());
  return *this;
}

FloatComplexDiagMatrix
operator * (const FloatComplexDiagMatrix& a, const FloatDiagMatrix& b)
{
  octave_idx_type a_nr = a.rows ();
  octave_idx_type a_nc = a.cols ();

  octave_idx_type b_nr = b.rows ();
  octave_idx_type b_nc = b.cols ();

  if (a_nc != b_nr)
    gripe_nonconformant ("operator *", a_nr, a_nc, b_nr, b_nc);

  FloatComplexDiagMatrix c (a_nr, b_nc);

  octave_idx_type len = c.length (), lenm = len < a_nc ? len : a_nc;

  for (octave_idx_type i = 0; i < lenm; i++)
    c.dgxelem (i) = a.dgelem (i) * b.dgelem (i);
  for (octave_idx_type i = lenm; i < len; i++)
    c.dgxelem (i) = 0.0f;

  return c;
}

FloatComplexDiagMatrix
operator * (const FloatDiagMatrix& a, const FloatComplexDiagMatrix& b)
{
  octave_idx_type a_nr = a.rows ();
  octave_idx_type a_nc = a.cols ();

  octave_idx_type b_nr = b.rows ();
  octave_idx_type b_nc = b.cols ();

  if (a_nc != b_nr)
    {
      gripe_nonconformant ("operator *", a_nr, a_nc, b_nr, b_nc);
      return FloatComplexDiagMatrix ();
    }

  if (a_nr == 0 || a_nc == 0 || b_nc == 0)
    return FloatComplexDiagMatrix (a_nr, a_nc, 0.0);

  FloatComplexDiagMatrix c (a_nr, b_nc);

  octave_idx_type len = a_nr < b_nc ? a_nr : b_nc;

  for (octave_idx_type i = 0; i < len; i++)
    {
      float a_element = a.elem (i, i);
      FloatComplex b_element = b.elem (i, i);

      c.elem (i, i) = a_element * b_element;
    }

  return c;
}

FloatComplexDiagMatrix
operator * (const FloatComplexDiagMatrix& a, const FloatComplexDiagMatrix& b)
{
  octave_idx_type a_nr = a.rows ();
  octave_idx_type a_nc = a.cols ();

  octave_idx_type b_nr = b.rows ();
  octave_idx_type b_nc = b.cols ();

  if (a_nc != b_nr)
    {
      gripe_nonconformant ("operator *", a_nr, a_nc, b_nr, b_nc);
      return FloatComplexDiagMatrix ();
    }

  if (a_nr == 0 || a_nc == 0 || b_nc == 0)
    return FloatComplexDiagMatrix (a_nr, a_nc, 0.0);

  FloatComplexDiagMatrix c (a_nr, b_nc);

  octave_idx_type len = a_nr < b_nc ? a_nr : b_nc;

  for (octave_idx_type i = 0; i < len; i++)
    {
      FloatComplex a_element = a.elem (i, i);
      FloatComplex b_element = b.elem (i, i);

      c.elem (i, i) = a_element * b_element;
    }

  return c;
}

// other operations

FloatComplexDET
FloatComplexDiagMatrix::determinant (void) const
{
  FloatComplexDET det (1.0f);
  if (rows () != cols ())
    {
      (*current_liboctave_error_handler) ("determinant requires square matrix");
      det = FloatComplexDET (0.0);
    }
  else
    {
      octave_idx_type len = length ();
      for (octave_idx_type i = 0; i < len; i++)
        det *= elem (i, i);
    }

  return det;
}

float
FloatComplexDiagMatrix::rcond (void) const
{
  FloatColumnVector av = extract_diag (0).map<float> (std::abs);
  float amx = av.max (), amn = av.min ();
  return amx == 0 ? 0.0f : amn / amx;
}

// i/o

std::ostream&
operator << (std::ostream& os, const FloatComplexDiagMatrix& a)
{
  FloatComplex ZERO (0.0);
//  int field_width = os.precision () + 7;
  for (octave_idx_type i = 0; i < a.rows (); i++)
    {
      for (octave_idx_type j = 0; j < a.cols (); j++)
        {
          if (i == j)
            os << " " /* setw (field_width) */ << a.elem (i, i);
          else
            os << " " /* setw (field_width) */ << ZERO;
        }
      os << "\n";
    }
  return os;
}