view src/ov-base-scalar.h @ 12312:b10ea6efdc58 release-3-4-x ss-3-3-91

version is now 3.3.91
author John W. Eaton <jwe@octave.org>
date Mon, 31 Jan 2011 08:36:58 -0500
parents 12df7854fa7c
children e38fb1910563
line wrap: on
line source

/*

Copyright (C) 1996-2011 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_base_scalar_h)
#define octave_base_scalar_h 1

#include <cstdlib>

#include <iosfwd>
#include <string>

#include "lo-mappers.h"
#include "lo-utils.h"
#include "oct-alloc.h"
#include "str-vec.h"
#include "MatrixType.h"

#include "ov-base.h"
#include "ov-typeinfo.h"

// Real scalar values.

template <class ST>
class
octave_base_scalar : public octave_base_value
{
public:

  octave_base_scalar (void)
    : octave_base_value (), scalar () { }

  octave_base_scalar (const ST& s)
    : octave_base_value (), scalar (s) { }

  octave_base_scalar (const octave_base_scalar& s)
    : octave_base_value (), scalar (s.scalar) { }

  ~octave_base_scalar (void) { }

  octave_value squeeze (void) const { return scalar; }

  octave_value full_value (void) const { return scalar; }

  octave_value subsref (const std::string& type,
                        const std::list<octave_value_list>& idx);

  octave_value_list subsref (const std::string& type,
                             const std::list<octave_value_list>& idx, int)
    { return subsref (type, idx); }

  octave_value subsasgn (const std::string& type,
                         const std::list<octave_value_list>& idx,
                         const octave_value& rhs);

  bool is_constant (void) const { return true; }

  bool is_defined (void) const { return true; }

  dim_vector dims (void) const { static dim_vector dv (1, 1); return dv; }

  octave_idx_type numel (void) const { return 1; }

  int ndims (void) const { return 2; }

  octave_idx_type nnz (void) const { return (scalar != ST ()) ? 1 : 0; }

  octave_value permute (const Array<int>&, bool = false) const;

  octave_value reshape (const dim_vector& new_dims) const;

  size_t byte_size (void) const { return sizeof (ST); }

  octave_value all (int = 0) const { return (scalar != ST ()); }

  octave_value any (int = 0) const { return (scalar != ST ()); }

  octave_value diag (octave_idx_type k = 0) const;

  octave_value sort (octave_idx_type, sortmode) const
    { return octave_value (scalar); }
  octave_value sort (Array<octave_idx_type> &sidx, octave_idx_type,
                     sortmode) const
    {
      sidx.resize (dim_vector (1, 1));
      sidx(0) = 0;
      return octave_value (scalar);
    }

  sortmode is_sorted (sortmode mode = UNSORTED) const
    { return mode ? mode : ASCENDING; }

  Array<octave_idx_type> sort_rows_idx (sortmode) const
    { return Array<octave_idx_type> (dim_vector (1, 0)); }

  sortmode is_sorted_rows (sortmode mode = UNSORTED) const
    { return mode ? mode : ASCENDING; }

  MatrixType matrix_type (void) const { return MatrixType::Diagonal; }
  MatrixType matrix_type (const MatrixType&) const
    { return matrix_type (); }

  bool is_scalar_type (void) const { return true; }

  bool is_numeric_type (void) const { return true; }

  bool is_true (void) const;

  void print (std::ostream& os, bool pr_as_read_syntax = false) const;

  void print_raw (std::ostream& os, bool pr_as_read_syntax = false) const;

  bool print_name_tag (std::ostream& os, const std::string& name) const;

  // Unsafe.  This function exists to support the MEX interface.
  // You should not use it anywhere else.
  void *mex_get_data (void) const { return const_cast<ST *> (&scalar); }

  const ST& scalar_ref (void) const { return scalar; }

  ST& scalar_ref (void) { return scalar; }

  bool fast_elem_insert_self (void *where, builtin_type_t btyp) const;

protected:

  // The value of this scalar.
  ST scalar;
};

#endif