view src/DLD-FUNCTIONS/hex2num.cc @ 13219:cf5ebc0e47e4

fix warnings for unused but set variables and shadowed variables * quadcc.cc (Fquadcc): Delete unused variable err_excess. * find.cc (find_nonzero_elem_idx (const PermMatrix&, int, octave_idx_type, int)): Delete unused variable end_nc. * eigs.cc (Feigs): Delete unused variable bmat. * conv2.cc (Fconvn): Delete unused variable separable. * colamd.cc (Fetree, Fsymamd): Delete unused variable nnz. * ccolamd.cc (Fcsymamd): Delete unused variable nnz. * pt-pr-code.cc (tree_print_code::visit_index_expression): Delete unused variable expr_has_parens. * pt-mat.cc (tree_matrix::rvalue1): Delete unused variables all_complex_p and all_strings_p (tm_const::init): Eliminate shadowed variables. * gl-render.cc (opengl_renderer::draw_image): Delete unused variable ok.
author John W. Eaton <jwe@octave.org>
date Sun, 25 Sep 2011 16:52:23 -0400
parents 12df7854fa7c
children 82f3a0c27569
line wrap: on
line source

/*

Copyright (C) 2008-2011 David Bateman

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 <algorithm>

#include "defun-dld.h"
#include "error.h"
#include "gripes.h"
#include "oct-obj.h"
#include "utils.h"

DEFUN_DLD (hex2num, args, ,
  "-*- texinfo -*-\n\
@deftypefn {Loadable Function} {@var{n} =} hex2num (@var{s})\n\
Typecast the 16 character hexadecimal character string to an IEEE 754\n\
double precision number.  If fewer than 16 characters are given the\n\
strings are right padded with '0' characters.\n\
\n\
Given a string matrix, @code{hex2num} treats each row as a separate\n\
number.\n\
\n\
@example\n\
@group\n\
hex2num ([\"4005bf0a8b145769\";\"4024000000000000\"])\n\
@result{} [2.7183; 10.000]\n\
@end group\n\
@end example\n\
@seealso{num2hex, hex2dec, dec2hex}\n\
@end deftypefn")
{
  int nargin = args.length ();
  octave_value retval;

  if (nargin != 1)
    print_usage ();
  else
    {
      const charMatrix cmat = args(0).char_matrix_value ();

      if (cmat.columns () > 16)
        error ("hex2num: S must be no more than 16 characters");
      else if (! error_state)
        {
          octave_idx_type nr = cmat.rows ();
          octave_idx_type nc = cmat.columns ();
          ColumnVector m (nr);

          for (octave_idx_type i = 0; i < nr; i++)
            {
              union
              {
                uint64_t ival;
                double dval;
              } num;

              for (octave_idx_type j = 0; j < nc; j++)
                {
                  unsigned char ch = cmat.elem (i, j);

                  if (isxdigit (ch))
                    {
                      num.ival <<= 4;
                      if (ch >= 'a')
                        num.ival += static_cast<uint64_t> (ch - 'a' + 10);
                      else if (ch >= 'A')
                        num.ival += static_cast<uint64_t> (ch - 'A' + 10);
                      else
                        num.ival += static_cast<uint64_t> (ch - '0');
                    }
                  else
                    {
                      error ("hex2num: illegal character found in string S");
                      break;
                    }
                }

              if (error_state)
                break;
              else
                {
                  if (nc < 16)
                    num.ival <<= (16 - nc) * 4;

                  m(i) = num.dval;
                }
            }

          if (! error_state)
            retval =  m;
        }
    }

  return retval;
}

/*
%!assert (hex2num(['c00';'bff';'000';'3ff';'400']),[-2:2]')
*/

DEFUN_DLD (num2hex, args, ,
  "-*- texinfo -*-\n\
@deftypefn {Loadable Function} {@var{s} =} num2hex (@var{n})\n\
Typecast a double precision number or vector to a 16 character hexadecimal\n\
string of the IEEE 754 representation of the number.  For example:\n\
\n\
@example\n\
@group\n\
num2hex ([-1, 1, e, Inf, NaN, NA]);\n\
@result{} \"bff0000000000000\n\
    3ff0000000000000\n\
    4005bf0a8b145769\n\
    7ff0000000000000\n\
    fff8000000000000\n\
    7ff00000000007a2\"\n\
@end group\n\
@end example\n\
@seealso{hex2num, hex2dec, dec2hex}\n\
@end deftypefn")
{
  int nargin = args.length ();
  octave_value retval;

  if (nargin != 1)
    print_usage ();
  else
    {
      const ColumnVector v (args(0).vector_value ());

      if (! error_state)
        {
          octave_idx_type nr = v.length ();
          charMatrix m (nr, 16);
          const double *pv = v.fortran_vec ();

          for (octave_idx_type i = 0; i < nr; i++)
            {
              union
              {
                uint64_t ival;
                double dval;
              } num;

              num.dval = *pv++;

              for (octave_idx_type j = 0; j < 16; j++)
                {
                  unsigned char ch =
                    static_cast<char> (num.ival >> ((15 - j) * 4) & 0xF);
                  if (ch >= 10)
                    ch += 'a' - 10;
                  else
                    ch += '0';

                  m.elem (i, j) = ch;
                }
            }

          retval = m;
        }
    }

  return retval;
}

/*
%!assert (num2hex (-2:2),['c000000000000000';'bff0000000000000';'0000000000000000';'3ff0000000000000';'4000000000000000'])
*/