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f13a69eccf
2002-07-30 Benjamin Kosnik <bkoz@redhat.com> Gabriel Dos Reis <gdr@nerim.net> * include/bits/char_traits.h: Remove generic definitions. * include/bits/streambuf_iterator.h (istreambuf_iterator): Use eof, not -2. * include/bits/istream.tcc (istream::readsome): Don't check against eof, instead use constants. (istream::sync): Same. (istream::sentry::sentry): Use eq_int_type. (istream::get): Same. * include/bits/ostream.tcc: Change __pad to __pad<_CharT, _Traits>::_S_pad. * include/bits/locale_facets.h: Add __pad_traits generic and ostreambuf_iterator specialization. * include/bits/locale_facets.tcc: Change __pad into struct __pad with a _CharT and _Traits template parameter and _S_pad static member function. * src/locale-inst.cc: Update __pad instantiations. * include/std/std_fstream.h: Declare _M_underflow_common specializations. * src/fstream.cc: New. Add _M_underflow_common specializations. * include/bits/fstream.tcc (filebuf::close): Use traits_type. (filebuf::_M_underflow_common(bool)): Remove generic version, as sys_ungetc and custom int_types don't get along. * include/std/std_streambuf.h: Add _M_pos. * src/Makefile.am (sources): Add fstream.cc. * src/Makefile.in: Regenerate. * testsuite/21_strings/capacity.cc: Add char_traits specializations. * testsuite/22_locale/codecvt_members_unicode_char.cc: Same. * testsuite/22_locale/codecvt_members_unicode_wchar_t.cc: Same. * testsuite/22_locale/ctor_copy_dtor.cc: Same. * testsuite/27_io/filebuf_virtuals.cc (test07): Move to... * testsuite/27_io/filebuf.cc: ...here. * testsuite/testsuite_hooks.h: Add gnu_char, gnu_int, char_traits specialization for both. * testsuite/27_io/streambuf.cc: Add instantiation test, testsuite_hooks include. * testsuite/27_io/istream.cc: Same. * testsuite/27_io/ostream.cc: Same. * testsuite/27_io/fstream.cc: Same. * testsuite/27_io/stringstream.cc: Same. * testsuite/27_io/filebuf.cc: Same. * testsuite/27_io/stringbuf.cc: Same. Co-Authored-By: Gabriel Dos Reis <gdr@nerim.net> From-SVN: r55893
283 lines
6.8 KiB
C++
283 lines
6.8 KiB
C++
// 1999-05-11 bkoz
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// Copyright (C) 1999, 2002 Free Software Foundation, Inc.
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//
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// This file is part of the GNU ISO C++ Library. This library is free
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// software; you can redistribute it and/or modify it under the
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// terms of the GNU General Public License as published by the
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// Free Software Foundation; either version 2, or (at your option)
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// any later version.
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License along
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// with this library; see the file COPYING. If not, write to the Free
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// Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307,
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// USA.
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// 21.3.3 string capacity
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#include <string>
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#include <testsuite_hooks.h>
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template<typename T>
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struct A { };
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template<typename T>
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bool
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operator==(const A<T>& a, const A<T>& b) { return true; }
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template<typename T>
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bool
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operator<(const A<T>& a, const A<T>& b) { return true; }
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struct B { };
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// char_traits specialization
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namespace std
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{
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template<>
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struct char_traits<A<B> >
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{
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typedef A<B> char_type;
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// Unsigned as wint_t in unsigned.
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typedef unsigned long int_type;
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typedef streampos pos_type;
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typedef streamoff off_type;
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typedef mbstate_t state_type;
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static void
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assign(char_type& __c1, const char_type& __c2)
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{ __c1 = __c2; }
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static bool
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eq(const char_type& __c1, const char_type& __c2)
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{ return __c1 == __c2; }
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static bool
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lt(const char_type& __c1, const char_type& __c2)
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{ return __c1 < __c2; }
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static int
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compare(const char_type* __s1, const char_type* __s2, size_t __n)
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{
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for (size_t __i = 0; __i < __n; ++__i)
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if (!eq(__s1[__i], __s2[__i]))
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return lt(__s1[__i], __s2[__i]) ? -1 : 1;
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return 0;
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}
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static size_t
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length(const char_type* __s)
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{
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const char_type* __p = __s;
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while (__p)
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++__p;
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return (__p - __s);
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}
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static const char_type*
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find(const char_type* __s, size_t __n, const char_type& __a)
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{
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for (const char_type* __p = __s; size_t(__p - __s) < __n; ++__p)
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if (*__p == __a) return __p;
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return 0;
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}
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static char_type*
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move(char_type* __s1, const char_type* __s2, size_t __n)
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{ return (char_type*) memmove(__s1, __s2, __n * sizeof(char_type)); }
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static char_type*
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copy(char_type* __s1, const char_type* __s2, size_t __n)
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{ return (char_type*) memcpy(__s1, __s2, __n * sizeof(char_type)); }
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static char_type*
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assign(char_type* __s, size_t __n, char_type __a)
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{
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for (char_type* __p = __s; __p < __s + __n; ++__p)
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assign(*__p, __a);
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return __s;
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}
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static char_type
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to_char_type(const int_type& __c)
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{ return char_type(); }
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static int_type
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to_int_type(const char_type& __c) { return int_type(); }
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static bool
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eq_int_type(const int_type& __c1, const int_type& __c2)
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{ return __c1 == __c2; }
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static int_type
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eof() { return static_cast<int_type>(-1); }
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static int_type
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not_eof(const int_type& __c)
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{ return eq_int_type(__c, eof()) ? int_type(0) : __c; }
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};
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} // namespace std
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void test01()
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{
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// 1 POD types : resize, capacity, reserve
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bool test = true;
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std::string str01;
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typedef std::string::size_type size_type_s;
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size_type_s sz01 = str01.capacity();
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str01.reserve(100);
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size_type_s sz02 = str01.capacity();
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VERIFY( sz02 >= sz01 );
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VERIFY( sz02 >= 100 );
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str01.reserve();
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sz01 = str01.capacity();
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VERIFY( sz01 >= 0 );
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sz01 = str01.size() + 5;
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str01.resize(sz01);
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sz02 = str01.size();
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VERIFY( sz01 == sz02 );
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sz01 = str01.size() - 5;
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str01.resize(sz01);
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sz02 = str01.size();
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VERIFY( sz01 == sz02 );
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std::string str05(30, 'q');
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std::string str06 = str05;
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str05 = str06 + str05;
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VERIFY( str05.capacity() >= str05.size() );
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VERIFY( str06.capacity() >= str06.size() );
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// 2 non POD types : resize, capacity, reserve
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std::basic_string< A<B> > str02;
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typedef std::basic_string< A<B> >::size_type size_type_o;
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size_type_o sz03;
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size_type_o sz04;
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sz03 = str02.capacity();
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str02.reserve(100);
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sz04 = str02.capacity();
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VERIFY( sz04 >= sz03 );
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VERIFY( sz04 >= 100 );
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str02.reserve();
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sz03 = str02.capacity();
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VERIFY( sz03 >= 0 );
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sz03 = str02.size() + 5;
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str02.resize(sz03);
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sz04 = str02.size();
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VERIFY( sz03 == sz04 );
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sz03 = str02.size() - 5;
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str02.resize(sz03);
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sz04 = str02.size();
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VERIFY( sz03 == sz04 );
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A<B> inst_obj;
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std::basic_string<A<B> > str07(30, inst_obj);
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std::basic_string<A<B> > str08 = str07;
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str07 = str08 + str07;
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VERIFY( str07.capacity() >= str07.size() );
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VERIFY( str08.capacity() >= str08.size() );
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// 3 POD types: size, length, max_size, clear(), empty()
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bool b01;
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std::string str011;
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b01 = str01.empty();
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VERIFY( b01 == true );
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sz01 = str01.size();
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sz02 = str01.length();
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VERIFY( sz01 == sz02 );
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str01.c_str();
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sz01 = str01.size();
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sz02 = str01.length();
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VERIFY( sz01 == sz02 );
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sz01 = str01.length();
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str01.c_str();
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str011 = str01 + "_addendum_";
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str01.c_str();
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sz02 = str01.length();
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VERIFY( sz01 == sz02 );
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sz02 = str011.length();
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VERIFY( sz02 > sz01 );
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// trickster allocator (__USE_MALLOC, luke) issues involved with these:
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std::string str3 = "8-chars_8-chars_";
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const char* p3 = str3.c_str();
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std::string str4 = str3 + "7-chars";
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const char* p4 = str3.c_str();
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sz01 = str01.size();
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sz02 = str01.max_size();
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VERIFY( sz02 >= sz01 );
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sz01 = str01.size();
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str01.clear();
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b01 = str01.empty();
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VERIFY( b01 == true );
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sz02 = str01.size();
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VERIFY( sz01 >= sz02 );
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// 4 non-POD types: size, length, max_size, clear(), empty()
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b01 = str02.empty();
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VERIFY( b01 == true );
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sz03 = str02.size();
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sz04 = str02.length();
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VERIFY( sz03 == sz04 );
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str02.c_str();
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sz03 = str02.size();
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sz04 = str02.length();
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VERIFY( sz03 == sz04 );
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sz03 = str02.max_size();
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VERIFY( sz03 >= sz04 );
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sz03 = str02.size();
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str02.clear();
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b01 = str02.empty();
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VERIFY( b01 == true );
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sz04 = str02.size();
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VERIFY( sz03 >= sz04 );
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}
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// libstdc++/4548
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// http://gcc.gnu.org/ml/libstdc++/2001-11/msg00150.html
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void test02()
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{
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bool test = true;
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std::string str01 = "twelve chars";
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// str01 becomes shared
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std::string str02 = str01;
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str01.reserve(1);
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VERIFY( str01.capacity() == 12 );
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}
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#if !__GXX_WEAK__
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// Explicitly instantiate for systems with no COMDAT or weak support.
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template
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std::basic_string< A<B> >::size_type
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std::basic_string< A<B> >::_Rep::_S_max_size;
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template
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A<B>
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std::basic_string< A<B> >::_Rep::_S_terminal;
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#endif
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int main()
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{
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test01();
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test02();
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return 0;
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}
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