view liboctave/util/lo-utils.cc @ 31605:e88a07dec498 stable

maint: Use macros to begin/end C++ namespaces. * oct-conf-post-public.in.h: Define two macros (OCTAVE_BEGIN_NAMESPACE, OCTAVE_END_NAMESPACE) that can be used to start/end a namespace. * mk-opts.pl, build-env.h, build-env.in.cc, __betainc__.cc, __contourc__.cc, __dsearchn__.cc, __eigs__.cc, __expint__.cc, __ftp__.cc, __gammainc__.cc, __ichol__.cc, __ilu__.cc, __isprimelarge__.cc, __lin_interpn__.cc, __magick_read__.cc, __pchip_deriv__.cc, __qp__.cc, amd.cc, auto-shlib.cc, auto-shlib.h, balance.cc, base-text-renderer.cc, base-text-renderer.h, besselj.cc, bitfcns.cc, bsxfun.cc, c-file-ptr-stream.cc, c-file-ptr-stream.h, call-stack.cc, call-stack.h, ccolamd.cc, cellfun.cc, chol.cc, colamd.cc, colloc.cc, conv2.cc, daspk.cc, dasrt.cc, dassl.cc, data.cc, data.h, debug.cc, defaults.cc, defaults.h, defun-int.h, defun.cc, det.cc, dirfns.cc, display.cc, display.h, dlmread.cc, dmperm.cc, dot.cc, dynamic-ld.cc, dynamic-ld.h, eig.cc, ellipj.cc, environment.cc, environment.h, error.cc, error.h, errwarn.h, event-manager.cc, event-manager.h, event-queue.cc, event-queue.h, fcn-info.cc, fcn-info.h, fft.cc, fft2.cc, fftn.cc, file-io.cc, filter.cc, find.cc, ft-text-renderer.cc, ft-text-renderer.h, gcd.cc, getgrent.cc, getpwent.cc, getrusage.cc, givens.cc, gl-render.cc, gl-render.h, gl2ps-print.cc, gl2ps-print.h, graphics-toolkit.cc, graphics-toolkit.h, graphics.cc, graphics.in.h, gsvd.cc, gtk-manager.cc, gtk-manager.h, hash.cc, help.cc, help.h, hess.cc, hex2num.cc, hook-fcn.cc, hook-fcn.h, input.cc, input.h, interpreter-private.cc, interpreter-private.h, interpreter.cc, interpreter.h, inv.cc, jsondecode.cc, jsonencode.cc, kron.cc, latex-text-renderer.cc, latex-text-renderer.h, load-path.cc, load-path.h, load-save.cc, load-save.h, lookup.cc, ls-ascii-helper.cc, ls-ascii-helper.h, ls-oct-text.cc, ls-utils.cc, ls-utils.h, lsode.cc, lu.cc, mappers.cc, matrix_type.cc, max.cc, mex-private.h, mex.cc, mgorth.cc, nproc.cc, oct-fstrm.cc, oct-fstrm.h, oct-hdf5-types.cc, oct-hdf5-types.h, oct-hist.cc, oct-hist.h, oct-iostrm.cc, oct-iostrm.h, oct-opengl.h, oct-prcstrm.cc, oct-prcstrm.h, oct-procbuf.cc, oct-procbuf.h, oct-process.cc, oct-process.h, oct-stdstrm.h, oct-stream.cc, oct-stream.h, oct-strstrm.cc, oct-strstrm.h, oct-tex-lexer.in.ll, oct-tex-parser.yy, ordqz.cc, ordschur.cc, pager.cc, pager.h, pinv.cc, pow2.cc, pr-flt-fmt.cc, pr-output.cc, procstream.cc, procstream.h, psi.cc, qr.cc, quad.cc, quadcc.cc, qz.cc, rand.cc, rcond.cc, regexp.cc, schur.cc, settings.cc, settings.h, sighandlers.cc, sighandlers.h, sparse-xdiv.cc, sparse-xdiv.h, sparse-xpow.cc, sparse-xpow.h, sparse.cc, spparms.cc, sqrtm.cc, stack-frame.cc, stack-frame.h, stream-euler.cc, strfind.cc, strfns.cc, sub2ind.cc, svd.cc, sylvester.cc, symbfact.cc, syminfo.cc, syminfo.h, symrcm.cc, symrec.cc, symrec.h, symscope.cc, symscope.h, symtab.cc, symtab.h, syscalls.cc, sysdep.cc, sysdep.h, text-engine.cc, text-engine.h, text-renderer.cc, text-renderer.h, time.cc, toplev.cc, tril.cc, tsearch.cc, typecast.cc, url-handle-manager.cc, url-handle-manager.h, urlwrite.cc, utils.cc, utils.h, variables.cc, variables.h, xdiv.cc, xdiv.h, xnorm.cc, xnorm.h, xpow.cc, xpow.h, __delaunayn__.cc, __fltk_uigetfile__.cc, __glpk__.cc, __init_fltk__.cc, __init_gnuplot__.cc, __ode15__.cc, __voronoi__.cc, audiodevinfo.cc, audioread.cc, convhulln.cc, fftw.cc, gzip.cc, mk-build-env-features.sh, mk-builtins.pl, cdef-class.cc, cdef-class.h, cdef-fwd.h, cdef-manager.cc, cdef-manager.h, cdef-method.cc, cdef-method.h, cdef-object.cc, cdef-object.h, cdef-package.cc, cdef-package.h, cdef-property.cc, cdef-property.h, cdef-utils.cc, cdef-utils.h, ov-base.cc, ov-base.h, ov-bool-mat.cc, ov-builtin.h, ov-cell.cc, ov-class.cc, ov-class.h, ov-classdef.cc, ov-classdef.h, ov-complex.cc, ov-fcn-handle.cc, ov-fcn-handle.h, ov-fcn.h, ov-java.cc, ov-java.h, ov-mex-fcn.h, ov-null-mat.cc, ov-oncleanup.cc, ov-struct.cc, ov-typeinfo.cc, ov-typeinfo.h, ov-usr-fcn.cc, ov-usr-fcn.h, ov.cc, ov.h, octave.cc, octave.h, mk-ops.sh, op-b-b.cc, op-b-bm.cc, op-b-sbm.cc, op-bm-b.cc, op-bm-bm.cc, op-bm-sbm.cc, op-cdm-cdm.cc, op-cell.cc, op-chm.cc, op-class.cc, op-cm-cm.cc, op-cm-cs.cc, op-cm-m.cc, op-cm-s.cc, op-cm-scm.cc, op-cm-sm.cc, op-cs-cm.cc, op-cs-cs.cc, op-cs-m.cc, op-cs-s.cc, op-cs-scm.cc, op-cs-sm.cc, op-dm-dm.cc, op-dm-scm.cc, op-dm-sm.cc, op-dm-template.cc, op-dms-template.cc, op-fcdm-fcdm.cc, op-fcm-fcm.cc, op-fcm-fcs.cc, op-fcm-fm.cc, op-fcm-fs.cc, op-fcn.cc, op-fcs-fcm.cc, op-fcs-fcs.cc, op-fcs-fm.cc, op-fcs-fs.cc, op-fdm-fdm.cc, op-fm-fcm.cc, op-fm-fcs.cc, op-fm-fm.cc, op-fm-fs.cc, op-fs-fcm.cc, op-fs-fcs.cc, op-fs-fm.cc, op-fs-fs.cc, op-i16-i16.cc, op-i32-i32.cc, op-i64-i64.cc, op-i8-i8.cc, op-int-concat.cc, op-m-cm.cc, op-m-cs.cc, op-m-m.cc, op-m-s.cc, op-m-scm.cc, op-m-sm.cc, op-mi.cc, op-pm-pm.cc, op-pm-scm.cc, op-pm-sm.cc, op-pm-template.cc, op-range.cc, op-s-cm.cc, op-s-cs.cc, op-s-m.cc, op-s-s.cc, op-s-scm.cc, op-s-sm.cc, op-sbm-b.cc, op-sbm-bm.cc, op-sbm-sbm.cc, op-scm-cm.cc, op-scm-cs.cc, op-scm-m.cc, op-scm-s.cc, op-scm-scm.cc, op-scm-sm.cc, op-sm-cm.cc, op-sm-cs.cc, op-sm-m.cc, op-sm-s.cc, op-sm-scm.cc, op-sm-sm.cc, op-str-m.cc, op-str-s.cc, op-str-str.cc, op-struct.cc, op-ui16-ui16.cc, op-ui32-ui32.cc, op-ui64-ui64.cc, op-ui8-ui8.cc, ops.h, anon-fcn-validator.cc, anon-fcn-validator.h, bp-table.cc, bp-table.h, comment-list.cc, comment-list.h, filepos.h, lex.h, lex.ll, oct-lvalue.cc, oct-lvalue.h, oct-parse.yy, parse.h, profiler.cc, profiler.h, pt-anon-scopes.cc, pt-anon-scopes.h, pt-arg-list.cc, pt-arg-list.h, pt-args-block.cc, pt-args-block.h, pt-array-list.cc, pt-array-list.h, pt-assign.cc, pt-assign.h, pt-binop.cc, pt-binop.h, pt-bp.cc, pt-bp.h, pt-cbinop.cc, pt-cbinop.h, pt-cell.cc, pt-cell.h, pt-check.cc, pt-check.h, pt-classdef.cc, pt-classdef.h, pt-cmd.h, pt-colon.cc, pt-colon.h, pt-const.cc, pt-const.h, pt-decl.cc, pt-decl.h, pt-eval.cc, pt-eval.h, pt-except.cc, pt-except.h, pt-exp.cc, pt-exp.h, pt-fcn-handle.cc, pt-fcn-handle.h, pt-id.cc, pt-id.h, pt-idx.cc, pt-idx.h, pt-jump.h, pt-loop.cc, pt-loop.h, pt-mat.cc, pt-mat.h, pt-misc.cc, pt-misc.h, pt-pr-code.cc, pt-pr-code.h, pt-select.cc, pt-select.h, pt-spmd.cc, pt-spmd.h, pt-stmt.cc, pt-stmt.h, pt-tm-const.cc, pt-tm-const.h, pt-unop.cc, pt-unop.h, pt-vm-eval.cc, pt-walk.cc, pt-walk.h, pt.cc, pt.h, token.cc, token.h, Range.cc, Range.h, idx-vector.cc, idx-vector.h, range-fwd.h, CollocWt.cc, CollocWt.h, aepbalance.cc, aepbalance.h, chol.cc, chol.h, gepbalance.cc, gepbalance.h, gsvd.cc, gsvd.h, hess.cc, hess.h, lo-mappers.cc, lo-mappers.h, lo-specfun.cc, lo-specfun.h, lu.cc, lu.h, oct-convn.cc, oct-convn.h, oct-fftw.cc, oct-fftw.h, oct-norm.cc, oct-norm.h, oct-rand.cc, oct-rand.h, oct-spparms.cc, oct-spparms.h, qr.cc, qr.h, qrp.cc, qrp.h, randgamma.cc, randgamma.h, randmtzig.cc, randmtzig.h, randpoisson.cc, randpoisson.h, schur.cc, schur.h, sparse-chol.cc, sparse-chol.h, sparse-lu.cc, sparse-lu.h, sparse-qr.cc, sparse-qr.h, svd.cc, svd.h, child-list.cc, child-list.h, dir-ops.cc, dir-ops.h, file-ops.cc, file-ops.h, file-stat.cc, file-stat.h, lo-sysdep.cc, lo-sysdep.h, lo-sysinfo.cc, lo-sysinfo.h, mach-info.cc, mach-info.h, oct-env.cc, oct-env.h, oct-group.cc, oct-group.h, oct-password.cc, oct-password.h, oct-syscalls.cc, oct-syscalls.h, oct-time.cc, oct-time.h, oct-uname.cc, oct-uname.h, action-container.cc, action-container.h, base-list.h, cmd-edit.cc, cmd-edit.h, cmd-hist.cc, cmd-hist.h, f77-fcn.h, file-info.cc, file-info.h, lo-array-errwarn.cc, lo-array-errwarn.h, lo-hash.cc, lo-hash.h, lo-ieee.h, lo-regexp.cc, lo-regexp.h, lo-utils.cc, lo-utils.h, oct-base64.cc, oct-base64.h, oct-glob.cc, oct-glob.h, oct-inttypes.h, oct-mutex.cc, oct-mutex.h, oct-refcount.h, oct-shlib.cc, oct-shlib.h, oct-sparse.cc, oct-sparse.h, oct-string.h, octave-preserve-stream-state.h, pathsearch.cc, pathsearch.h, quit.cc, quit.h, unwind-prot.cc, unwind-prot.h, url-transfer.cc, url-transfer.h : Use new macros to begin/end C++ namespaces.
author Rik <rik@octave.org>
date Thu, 01 Dec 2022 14:23:45 -0800
parents 796f54d4ddbf
children dfa5d9c3ae72 aac27ad79be6
line wrap: on
line source

////////////////////////////////////////////////////////////////////////
//
// Copyright (C) 1996-2022 The Octave Project Developers
//
// See the file COPYRIGHT.md in the top-level directory of this
// distribution or <https://octave.org/copyright/>.
//
// 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
// <https://www.gnu.org/licenses/>.
//
////////////////////////////////////////////////////////////////////////

#if defined (HAVE_CONFIG_H)
#  include "config.h"
#endif

#include <cstdlib>
#include <cstring>

#include <complex>
#include <istream>
#include <limits>
#include <ostream>
#include <string>

#include "quit.h"

#include "intprops-wrappers.h"
#include "lo-error.h"
#include "lo-ieee.h"
#include "lo-mappers.h"
#include "lo-utils.h"
#include "oct-inttypes.h"

OCTAVE_BEGIN_NAMESPACE(octave)

  bool is_int_or_inf_or_nan (double x)
  {
    return math::isnan (x) || math::x_nint (x) == x;
  }

  bool too_large_for_float (double x)
  {
    return (math::isfinite (x)
            && fabs (x) > std::numeric_limits<float>::max ());
  }

  bool too_large_for_float (const Complex& x)
  {
    return (too_large_for_float (x.real ())
            || too_large_for_float (x.imag ()));
  }

  bool is_int_or_inf_or_nan (float x)
  {
    return math::isnan (x) || math::x_nint (x) == x;
  }

  // Save a string.

  char * strsave (const char *s)
  {
    if (! s)
      return nullptr;

    int len = strlen (s);
    char *tmp = new char [len+1];
    tmp = strcpy (tmp, s);
    return tmp;
  }

  std::string fgets (FILE *f)
  {
    bool eof;
    return fgets (f, eof);
  }

  std::string fgets (FILE *f, bool& eof)
  {
    eof = false;

    std::string retval;

    int grow_size = 1024;
    int max_size = grow_size;

    char *buf = static_cast<char *> (std::malloc (max_size));
    if (! buf)
      (*current_liboctave_error_handler) ("octave_fgets: unable to malloc %d bytes", max_size);

    char *bufptr = buf;
    int len = 0;

    do
      {
        if (std::fgets (bufptr, grow_size, f))
          {
            len = strlen (bufptr);

            if (len == grow_size - 1)
              {
                int tmp = bufptr - buf + grow_size - 1;
                grow_size *= 2;
                max_size += grow_size;
                auto tmpbuf = static_cast<char *> (std::realloc (buf, max_size));
                if (! tmpbuf)
                  {
                    free (buf);
                    (*current_liboctave_error_handler) ("octave_fgets: unable to realloc %d bytes", max_size);
                  }
                buf = tmpbuf;
                bufptr = buf + tmp;

                if (*(bufptr-1) == '\n')
                  {
                    *bufptr = '\0';
                    retval = buf;
                  }
              }
            else if (bufptr[len-1] != '\n')
              {
                bufptr[len++] = '\n';
                bufptr[len] = '\0';
                retval = buf;
              }
            else
              retval = buf;
          }
        else
          {
            if (len == 0)
              {
                eof = true;

                free (buf);

                buf = nullptr;
              }

            break;
          }
      }
    while (retval.empty ());

    free (buf);

    octave_quit ();

    return retval;
  }

  std::string fgetl (FILE *f)
  {
    bool eof;
    return fgetl (f, eof);
  }

  std::string fgetl (FILE *f, bool& eof)
  {
    std::string retval = fgets (f, eof);

    if (! retval.empty () && retval.back () == '\n')
      retval.pop_back ();

    return retval;
  }

  template <typename T>
  T
  read_value (std::istream& is)
  {
    T retval;
    is >> retval;
    return retval;
  }

  template OCTAVE_API bool read_value<bool> (std::istream& is);
  template OCTAVE_API octave_int8 read_value<octave_int8> (std::istream& is);
  template OCTAVE_API octave_int16 read_value<octave_int16> (std::istream& is);
  template OCTAVE_API octave_int32 read_value<octave_int32> (std::istream& is);
  template OCTAVE_API octave_int64 read_value<octave_int64> (std::istream& is);
  template OCTAVE_API octave_uint8 read_value<octave_uint8> (std::istream& is);
  template OCTAVE_API octave_uint16 read_value<octave_uint16> (std::istream& is);
  template OCTAVE_API octave_uint32 read_value<octave_uint32> (std::istream& is);
  template OCTAVE_API octave_uint64 read_value<octave_uint64> (std::istream& is);

  // Note that the caller is responsible for repositioning the stream on
  // failure.

  template <typename T>
  T
  read_inf_nan_na (std::istream& is, char c0)
  {
    T val = 0.0;

    switch (c0)
      {
      case 'i': case 'I':
        {
          char c1 = is.get ();
          if (c1 == 'n' || c1 == 'N')
            {
              char c2 = is.get ();
              if (c2 == 'f' || c2 == 'F')
                val = std::numeric_limits<T>::infinity ();
              else
                is.setstate (std::ios::failbit);
            }
          else
            is.setstate (std::ios::failbit);
        }
        break;

      case 'n': case 'N':
        {
          char c1 = is.get ();
          if (c1 == 'a' || c1 == 'A')
            {
              char c2 = is.get ();
              if (c2 == 'n' || c2 == 'N')
                val = std::numeric_limits<T>::quiet_NaN ();
              else
                {
                  val = numeric_limits<T>::NA ();
                  if (c2 != std::istream::traits_type::eof ())
                    is.putback (c2);
                  else
                    is.clear (is.rdstate () & ~std::ios::failbit);
                }
            }
          else
            is.setstate (std::ios::failbit);
        }
        break;

      default:
        (*current_liboctave_error_handler)
          ("read_inf_nan_na: invalid character '%c'", c0);
      }

    return val;
  }

  // Read a double value.  Discard any sign on NaN and NA.

  template <typename T>
  double
  read_fp_value (std::istream& is)
  {
    T val = 0.0;

    // FIXME: resetting stream position is likely to fail unless we are
    // reading from a file.
    std::streampos pos = is.tellg ();

    char c1 = ' ';

    while (isspace (c1))
      c1 = is.get ();

    bool neg = false;

    switch (c1)
      {
      case '-':
        neg = true;
        OCTAVE_FALLTHROUGH;

      case '+':
        {
          char c2 = 0;
          c2 = is.get ();
          if (c2 == 'i' || c2 == 'I' || c2 == 'n' || c2 == 'N')
            val = read_inf_nan_na<T> (is, c2);
          else
            {
              is.putback (c2);
              is >> val;
            }

          if (neg && ! is.fail ())
            val = -val;
        }
        break;

      case 'i': case 'I':
      case 'n': case 'N':
        val = read_inf_nan_na<T> (is, c1);
        break;

      default:
        is.putback (c1);
        is >> val;
        break;
      }

    std::ios::iostate status = is.rdstate ();
    if (status & std::ios::failbit)
      {
        // Convert MAX_VAL returned by C++ streams for very large numbers to Inf
        if (val == std::numeric_limits<T>::max ())
          {
            if (neg)
              val = -std::numeric_limits<T>::infinity ();
            else
              val = std::numeric_limits<T>::infinity ();
            is.clear (status & ~std::ios::failbit);
          }
        else
          {
            // True error.  Reset stream to original position and pass status on.
            is.clear ();
            is.seekg (pos);
            is.setstate (status);
          }
      }

    return val;
  }

  template <typename T>
  std::complex<T>
  read_cx_fp_value (std::istream& is)
  {
    T re = 0.0;
    T im = 0.0;

    std::complex<T> cx = 0.0;

    char ch = ' ';

    while (isspace (ch))
      ch = is.get ();

    if (ch == '(')
      {
        re = read_value<T> (is);
        ch = is.get ();

        if (ch == ',')
          {
            im = read_value<T> (is);
            ch = is.get ();

            if (ch == ')')
              cx = std::complex<T> (re, im);
            else
              is.setstate (std::ios::failbit);
          }
        else if (ch == ')')
          cx = re;
        else
          is.setstate (std::ios::failbit);
      }
    else
      {
        is.putback (ch);
        cx = read_value<T> (is);
      }

    return cx;
  }

  // FIXME: Could we use traits and enable_if to avoid duplication in the
  // following specializations?

  template <> OCTAVE_API double read_value (std::istream& is)
  {
    return read_fp_value<double> (is);
  }

  template <> OCTAVE_API Complex read_value (std::istream& is)
  {
    return read_cx_fp_value<double> (is);
  }

  template <> OCTAVE_API float read_value (std::istream& is)
  {
    return read_fp_value<float> (is);
  }

  template <> OCTAVE_API FloatComplex read_value (std::istream& is)
  {
    return read_cx_fp_value<float> (is);
  }

  template <typename T>
  void
  write_value (std::ostream& os, const T& value)
  {
    os << value;
  }

  template OCTAVE_API void
  write_value<bool> (std::ostream& os, const bool& value);
  template OCTAVE_API void
  write_value<octave_int8> (std::ostream& os, const octave_int8& value);
  template OCTAVE_API void
  write_value<octave_int16> (std::ostream& os, const octave_int16& value);
  template OCTAVE_API void
  write_value<octave_int32> (std::ostream& os, const octave_int32& value);
  template OCTAVE_API void
  write_value<octave_int64> (std::ostream& os, const octave_int64& value);
  template OCTAVE_API void
  write_value<octave_uint8> (std::ostream& os, const octave_uint8& value);
  template OCTAVE_API void
  write_value<octave_uint16> (std::ostream& os, const octave_uint16& value);
  template OCTAVE_API void
  write_value<octave_uint32> (std::ostream& os, const octave_uint32& value);
  template OCTAVE_API void
  write_value<octave_uint64> (std::ostream& os, const octave_uint64& value);

  // Note: precision is supposed to be managed outside of this function by
  // setting stream parameters.

  template <> OCTAVE_API void
  write_value (std::ostream& os, const double& value)
  {
    if (lo_ieee_is_NA (value))
      os << "NA";
    else if (lo_ieee_isnan (value))
      os << "NaN";
    else if (lo_ieee_isinf (value))
      os << (value < 0 ? "-Inf" : "Inf");
    else
      os << value;
  }

  template <> OCTAVE_API void
  write_value (std::ostream& os, const Complex& value)
  {
    os << '(';
    write_value<double> (os, real (value));
    os << ',';
    write_value<double> (os, imag (value));
    os << ')';
  }

  // Note: precision is supposed to be managed outside of this function by
  // setting stream parameters.

  template <> OCTAVE_API void
  write_value (std::ostream& os, const float& value)
  {
    if (lo_ieee_is_NA (value))
      os << "NA";
    else if (lo_ieee_isnan (value))
      os << "NaN";
    else if (lo_ieee_isinf (value))
      os << (value < 0 ? "-Inf" : "Inf");
    else
      os << value;
  }

  template <> OCTAVE_API void
  write_value (std::ostream& os, const FloatComplex& value)
  {
    os << '(';
    write_value<float> (os, real (value));
    os << ',';
    write_value<float> (os, imag (value));
    os << ')';
  }

OCTAVE_BEGIN_NAMESPACE(math)

    bool int_multiply_overflow (int a, int b, int *r)
    {
      return octave_i_multiply_overflow_wrapper (a, b, r);
    }

    bool int_multiply_overflow (long int a, long int b, long int *r)
    {
      return octave_li_multiply_overflow_wrapper (a, b, r);
    }

#if defined (OCTAVE_HAVE_LONG_LONG_INT)
    bool int_multiply_overflow (long long int a, long long int b,
                                long long int *r)
    {
      return octave_lli_multiply_overflow_wrapper (a, b, r);
    }
#endif

    bool int_multiply_overflow (unsigned int a, unsigned int b,
                                unsigned int *r)
    {
      return octave_ui_multiply_overflow_wrapper (a, b, r);
    }

    bool int_multiply_overflow (unsigned long int a, unsigned long int b,
                                unsigned long int *r)
    {
      return octave_uli_multiply_overflow_wrapper (a, b, r);
    }

#if defined (OCTAVE_HAVE_UNSIGNED_LONG_LONG_INT)
    bool int_multiply_overflow (unsigned long long int a,
                                unsigned long long int b,
                                unsigned long long int *r)
    {
      return octave_ulli_multiply_overflow_wrapper (a, b, r);
    }
#endif

OCTAVE_END_NAMESPACE(math)
OCTAVE_END_NAMESPACE(octave)