gcc/libstdc++-v3/testsuite/22_locale/members.cc
Benjamin Kosnik 04d930e6d4 *.cc: Remove spaces, make sure testcases return zero.
2001-05-11   Benjamin Kosnik  <bkoz@redhat.com>

	* testsuite/*/*.cc: Remove spaces, make sure testcases return zero.
	* testsuite/config/default.exp: Update bugs email address.

From-SVN: r41997
2001-05-12 16:53:08 +00:00

138 lines
3.9 KiB
C++

// 2001-01-19 Benjamin Kosnik <bkoz@redhat.com>
// Copyright (C) 2001 Free Software Foundation
//
// This file is part of the GNU ISO C++ Library. This library 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 2, or (at your option)
// any later version.
// This library 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 this library; see the file COPYING. If not, write to the Free
// Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307,
// USA.
// 22.2.3.1.1 numpunct members
#include <locale>
#include <string>
#include <debug_assert.h>
// creating unnamed locales 1 using new + combine
void
test01()
{
using namespace std;
bool test = true;
const string name_c("C");
const string str_unnamed("*");
string str;
// construct a locale object with the specialized facet.
locale loc_c = locale::classic();
locale loc_1(locale::classic(), new numpunct<char>);
// check names
VERIFY( loc_c.name() == name_c );
VERIFY( loc_1.name() == str_unnamed );
// sanity check the constructed locale has the specialized facet.
VERIFY( has_facet<numpunct<char> >(loc_1) );
VERIFY( has_facet<numpunct<char> >(loc_c) );
// extract facet
const numpunct<char>& f_nump_1 = use_facet<numpunct<char> >(loc_1);
const numpunct<char>& f_nump_c = use_facet<numpunct<char> >(loc_c);
// attempt to re-synthesize classic locale
locale loc_2 = loc_1.combine<numpunct<char> >(loc_c);
VERIFY( loc_2.name() == str_unnamed );
VERIFY( loc_2 != loc_c );
}
void
test02()
{
using namespace std;
bool test = true;
const string name_c("C");
const string name_no("*");
string str;
// construct a locale object with the specialized facet.
locale loc_c = locale::classic();
locale loc_1(locale::classic(),
new numpunct_byname<char>("fr_FR"));
locale loc_fr("fr_FR");
// check names
VERIFY( loc_c.name() == name_c );
VERIFY( loc_1.name() == name_no );
// sanity check the constructed locale has the specialized facet.
VERIFY( has_facet<numpunct<char> >(loc_1) );
VERIFY( has_facet<numpunct<char> >(loc_c) );
// attempt to re-synthesize classic locale
locale loc_2 = loc_1.combine<numpunct<char> >(loc_c);
VERIFY( loc_2.name() == name_no );
VERIFY( loc_2 != loc_c );
// extract facet
const numpunct<char>& f_nump_1 = use_facet<numpunct<char> >(loc_1);
const numpunct<char>& f_nump_2 = use_facet<numpunct<char> >(loc_2);
const numpunct<char>& f_nump_c = use_facet<numpunct<char> >(loc_c);
const numpunct<char>& f_nump_fr = use_facet<numpunct<char> >(loc_fr);
// sanity check the data is correct.
char dp1 = f_nump_c.decimal_point();
char th1 = f_nump_c.thousands_sep();
string g1 = f_nump_c.grouping();
string t1 = f_nump_c.truename();
string f1 = f_nump_c.falsename();
char dp2 = f_nump_1.decimal_point();
char th2 = f_nump_1.thousands_sep();
string g2 = f_nump_1.grouping();
string t2 = f_nump_1.truename();
string f2 = f_nump_1.falsename();
char dp3 = f_nump_2.decimal_point();
char th3 = f_nump_2.thousands_sep();
string g3 = f_nump_2.grouping();
string t3 = f_nump_2.truename();
string f3 = f_nump_2.falsename();
char dp4 = f_nump_fr.decimal_point();
char th4 = f_nump_fr.thousands_sep();
string g4 = f_nump_fr.grouping();
string t4 = f_nump_fr.truename();
string f4 = f_nump_fr.falsename();
#if 0
// XXX these should not be the same if named locales are working correctly.
VERIFY( dp1 != dp2 );
VERIFY( th1 != th2 );
#endif
VERIFY( dp1 == dp3 );
VERIFY( th1 == th3 );
VERIFY( t1 == t3 );
VERIFY( f1 == f3 );
}
int main()
{
test01();
test02();
return 0;
}