1f8a1b7d9SAlexander Kabaev // Locale support (codecvt) -*- C++ -*-
2f8a1b7d9SAlexander Kabaev
3f8a1b7d9SAlexander Kabaev // Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005, 2006
4f8a1b7d9SAlexander Kabaev // Free Software Foundation, Inc.
5f8a1b7d9SAlexander Kabaev //
6f8a1b7d9SAlexander Kabaev // This file is part of the GNU ISO C++ Library. This library is free
7f8a1b7d9SAlexander Kabaev // software; you can redistribute it and/or modify it under the
8f8a1b7d9SAlexander Kabaev // terms of the GNU General Public License as published by the
9f8a1b7d9SAlexander Kabaev // Free Software Foundation; either version 2, or (at your option)
10f8a1b7d9SAlexander Kabaev // any later version.
11f8a1b7d9SAlexander Kabaev
12f8a1b7d9SAlexander Kabaev // This library is distributed in the hope that it will be useful,
13f8a1b7d9SAlexander Kabaev // but WITHOUT ANY WARRANTY; without even the implied warranty of
14f8a1b7d9SAlexander Kabaev // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15f8a1b7d9SAlexander Kabaev // GNU General Public License for more details.
16f8a1b7d9SAlexander Kabaev
17f8a1b7d9SAlexander Kabaev // You should have received a copy of the GNU General Public License along
18f8a1b7d9SAlexander Kabaev // with this library; see the file COPYING. If not, write to the Free
19f8a1b7d9SAlexander Kabaev // Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
20f8a1b7d9SAlexander Kabaev // USA.
21f8a1b7d9SAlexander Kabaev
22f8a1b7d9SAlexander Kabaev // As a special exception, you may use this file as part of a free software
23f8a1b7d9SAlexander Kabaev // library without restriction. Specifically, if other files instantiate
24f8a1b7d9SAlexander Kabaev // templates or use macros or inline functions from this file, or you compile
25f8a1b7d9SAlexander Kabaev // this file and link it with other files to produce an executable, this
26f8a1b7d9SAlexander Kabaev // file does not by itself cause the resulting executable to be covered by
27f8a1b7d9SAlexander Kabaev // the GNU General Public License. This exception does not however
28f8a1b7d9SAlexander Kabaev // invalidate any other reasons why the executable file might be covered by
29f8a1b7d9SAlexander Kabaev // the GNU General Public License.
30f8a1b7d9SAlexander Kabaev
31f8a1b7d9SAlexander Kabaev //
32f8a1b7d9SAlexander Kabaev // ISO C++ 14882: 22.2.1.5 Template class codecvt
33f8a1b7d9SAlexander Kabaev //
34f8a1b7d9SAlexander Kabaev
35f8a1b7d9SAlexander Kabaev // Written by Benjamin Kosnik <[email protected]>
36f8a1b7d9SAlexander Kabaev
37f8a1b7d9SAlexander Kabaev /** @file ext/codecvt_specializations.h
38f8a1b7d9SAlexander Kabaev * This file is a GNU extension to the Standard C++ Library.
39f8a1b7d9SAlexander Kabaev */
40f8a1b7d9SAlexander Kabaev
41f8a1b7d9SAlexander Kabaev #ifndef _EXT_CODECVT_SPECIALIZATIONS_H
42f8a1b7d9SAlexander Kabaev #define _EXT_CODECVT_SPECIALIZATIONS_H 1
43f8a1b7d9SAlexander Kabaev
44f8a1b7d9SAlexander Kabaev #include <bits/c++config.h>
45f8a1b7d9SAlexander Kabaev
46f8a1b7d9SAlexander Kabaev #ifdef _GLIBCXX_USE_ICONV
47f8a1b7d9SAlexander Kabaev
48f8a1b7d9SAlexander Kabaev #include <locale>
49f8a1b7d9SAlexander Kabaev #include <iconv.h>
50f8a1b7d9SAlexander Kabaev
51f8a1b7d9SAlexander Kabaev // XXX
52f8a1b7d9SAlexander Kabaev // Define this here so codecvt.cc can have _S_max_size definition.
53f8a1b7d9SAlexander Kabaev #define _GLIBCXX_USE_ENCODING_STATE 1
54f8a1b7d9SAlexander Kabaev
_GLIBCXX_BEGIN_NAMESPACE(__gnu_cxx)55f8a1b7d9SAlexander Kabaev _GLIBCXX_BEGIN_NAMESPACE(__gnu_cxx)
56f8a1b7d9SAlexander Kabaev
57f8a1b7d9SAlexander Kabaev /// @brief Extension to use icov for dealing with character encodings.
58f8a1b7d9SAlexander Kabaev // This includes conversions and comparisons between various character
59f8a1b7d9SAlexander Kabaev // sets. This object encapsulates data that may need to be shared between
60f8a1b7d9SAlexander Kabaev // char_traits, codecvt and ctype.
61f8a1b7d9SAlexander Kabaev class encoding_state
62f8a1b7d9SAlexander Kabaev {
63f8a1b7d9SAlexander Kabaev public:
64f8a1b7d9SAlexander Kabaev // Types:
65f8a1b7d9SAlexander Kabaev // NB: A conversion descriptor subsumes and enhances the
66f8a1b7d9SAlexander Kabaev // functionality of a simple state type such as mbstate_t.
67f8a1b7d9SAlexander Kabaev typedef iconv_t descriptor_type;
68f8a1b7d9SAlexander Kabaev
69f8a1b7d9SAlexander Kabaev protected:
70f8a1b7d9SAlexander Kabaev // Name of internal character set encoding.
71f8a1b7d9SAlexander Kabaev std::string _M_int_enc;
72f8a1b7d9SAlexander Kabaev
73f8a1b7d9SAlexander Kabaev // Name of external character set encoding.
74f8a1b7d9SAlexander Kabaev std::string _M_ext_enc;
75f8a1b7d9SAlexander Kabaev
76f8a1b7d9SAlexander Kabaev // Conversion descriptor between external encoding to internal encoding.
77f8a1b7d9SAlexander Kabaev descriptor_type _M_in_desc;
78f8a1b7d9SAlexander Kabaev
79f8a1b7d9SAlexander Kabaev // Conversion descriptor between internal encoding to external encoding.
80f8a1b7d9SAlexander Kabaev descriptor_type _M_out_desc;
81f8a1b7d9SAlexander Kabaev
82f8a1b7d9SAlexander Kabaev // The byte-order marker for the external encoding, if necessary.
83f8a1b7d9SAlexander Kabaev int _M_ext_bom;
84f8a1b7d9SAlexander Kabaev
85f8a1b7d9SAlexander Kabaev // The byte-order marker for the internal encoding, if necessary.
86f8a1b7d9SAlexander Kabaev int _M_int_bom;
87f8a1b7d9SAlexander Kabaev
88f8a1b7d9SAlexander Kabaev // Number of external bytes needed to construct one complete
89f8a1b7d9SAlexander Kabaev // character in the internal encoding.
90f8a1b7d9SAlexander Kabaev // NB: -1 indicates variable, or stateful, encodings.
91f8a1b7d9SAlexander Kabaev int _M_bytes;
92f8a1b7d9SAlexander Kabaev
93f8a1b7d9SAlexander Kabaev public:
94f8a1b7d9SAlexander Kabaev explicit
95f8a1b7d9SAlexander Kabaev encoding_state()
96f8a1b7d9SAlexander Kabaev : _M_in_desc(0), _M_out_desc(0), _M_ext_bom(0), _M_int_bom(0), _M_bytes(0)
97f8a1b7d9SAlexander Kabaev { }
98f8a1b7d9SAlexander Kabaev
99f8a1b7d9SAlexander Kabaev explicit
100f8a1b7d9SAlexander Kabaev encoding_state(const char* __int, const char* __ext,
101f8a1b7d9SAlexander Kabaev int __ibom = 0, int __ebom = 0, int __bytes = 1)
102f8a1b7d9SAlexander Kabaev : _M_int_enc(__int), _M_ext_enc(__ext), _M_in_desc(0), _M_out_desc(0),
103f8a1b7d9SAlexander Kabaev _M_ext_bom(__ebom), _M_int_bom(__ibom), _M_bytes(__bytes)
104f8a1b7d9SAlexander Kabaev { init(); }
105f8a1b7d9SAlexander Kabaev
106f8a1b7d9SAlexander Kabaev // 21.1.2 traits typedefs
107f8a1b7d9SAlexander Kabaev // p4
108f8a1b7d9SAlexander Kabaev // typedef STATE_T state_type
109f8a1b7d9SAlexander Kabaev // requires: state_type shall meet the requirements of
110f8a1b7d9SAlexander Kabaev // CopyConstructible types (20.1.3)
111f8a1b7d9SAlexander Kabaev // NB: This does not preseve the actual state of the conversion
112f8a1b7d9SAlexander Kabaev // descriptor member, but it does duplicate the encoding
113f8a1b7d9SAlexander Kabaev // information.
114f8a1b7d9SAlexander Kabaev encoding_state(const encoding_state& __obj) : _M_in_desc(0), _M_out_desc(0)
115f8a1b7d9SAlexander Kabaev { construct(__obj); }
116f8a1b7d9SAlexander Kabaev
117f8a1b7d9SAlexander Kabaev // Need assignment operator as well.
118f8a1b7d9SAlexander Kabaev encoding_state&
119f8a1b7d9SAlexander Kabaev operator=(const encoding_state& __obj)
120f8a1b7d9SAlexander Kabaev {
121f8a1b7d9SAlexander Kabaev construct(__obj);
122f8a1b7d9SAlexander Kabaev return *this;
123f8a1b7d9SAlexander Kabaev }
124f8a1b7d9SAlexander Kabaev
125f8a1b7d9SAlexander Kabaev ~encoding_state()
126f8a1b7d9SAlexander Kabaev { destroy(); }
127f8a1b7d9SAlexander Kabaev
128f8a1b7d9SAlexander Kabaev bool
129f8a1b7d9SAlexander Kabaev good() const throw()
130f8a1b7d9SAlexander Kabaev {
131*05a636f0SPedro F. Giffuni const descriptor_type __err = (iconv_t)(-1);
132f8a1b7d9SAlexander Kabaev bool __test = _M_in_desc && _M_in_desc != __err;
133f8a1b7d9SAlexander Kabaev __test &= _M_out_desc && _M_out_desc != __err;
134f8a1b7d9SAlexander Kabaev return __test;
135f8a1b7d9SAlexander Kabaev }
136f8a1b7d9SAlexander Kabaev
137f8a1b7d9SAlexander Kabaev int
138f8a1b7d9SAlexander Kabaev character_ratio() const
139f8a1b7d9SAlexander Kabaev { return _M_bytes; }
140f8a1b7d9SAlexander Kabaev
141f8a1b7d9SAlexander Kabaev const std::string
142f8a1b7d9SAlexander Kabaev internal_encoding() const
143f8a1b7d9SAlexander Kabaev { return _M_int_enc; }
144f8a1b7d9SAlexander Kabaev
145f8a1b7d9SAlexander Kabaev int
146f8a1b7d9SAlexander Kabaev internal_bom() const
147f8a1b7d9SAlexander Kabaev { return _M_int_bom; }
148f8a1b7d9SAlexander Kabaev
149f8a1b7d9SAlexander Kabaev const std::string
150f8a1b7d9SAlexander Kabaev external_encoding() const
151f8a1b7d9SAlexander Kabaev { return _M_ext_enc; }
152f8a1b7d9SAlexander Kabaev
153f8a1b7d9SAlexander Kabaev int
154f8a1b7d9SAlexander Kabaev external_bom() const
155f8a1b7d9SAlexander Kabaev { return _M_ext_bom; }
156f8a1b7d9SAlexander Kabaev
157f8a1b7d9SAlexander Kabaev const descriptor_type&
158f8a1b7d9SAlexander Kabaev in_descriptor() const
159f8a1b7d9SAlexander Kabaev { return _M_in_desc; }
160f8a1b7d9SAlexander Kabaev
161f8a1b7d9SAlexander Kabaev const descriptor_type&
162f8a1b7d9SAlexander Kabaev out_descriptor() const
163f8a1b7d9SAlexander Kabaev { return _M_out_desc; }
164f8a1b7d9SAlexander Kabaev
165f8a1b7d9SAlexander Kabaev protected:
166f8a1b7d9SAlexander Kabaev void
167f8a1b7d9SAlexander Kabaev init()
168f8a1b7d9SAlexander Kabaev {
169*05a636f0SPedro F. Giffuni const descriptor_type __err = (iconv_t)(-1);
170f8a1b7d9SAlexander Kabaev const bool __have_encodings = _M_int_enc.size() && _M_ext_enc.size();
171f8a1b7d9SAlexander Kabaev if (!_M_in_desc && __have_encodings)
172f8a1b7d9SAlexander Kabaev {
173f8a1b7d9SAlexander Kabaev _M_in_desc = iconv_open(_M_int_enc.c_str(), _M_ext_enc.c_str());
174f8a1b7d9SAlexander Kabaev if (_M_in_desc == __err)
175f8a1b7d9SAlexander Kabaev std::__throw_runtime_error(__N("encoding_state::_M_init "
176f8a1b7d9SAlexander Kabaev "creating iconv input descriptor failed"));
177f8a1b7d9SAlexander Kabaev }
178f8a1b7d9SAlexander Kabaev if (!_M_out_desc && __have_encodings)
179f8a1b7d9SAlexander Kabaev {
180f8a1b7d9SAlexander Kabaev _M_out_desc = iconv_open(_M_ext_enc.c_str(), _M_int_enc.c_str());
181f8a1b7d9SAlexander Kabaev if (_M_out_desc == __err)
182f8a1b7d9SAlexander Kabaev std::__throw_runtime_error(__N("encoding_state::_M_init "
183f8a1b7d9SAlexander Kabaev "creating iconv output descriptor failed"));
184f8a1b7d9SAlexander Kabaev }
185f8a1b7d9SAlexander Kabaev }
186f8a1b7d9SAlexander Kabaev
187f8a1b7d9SAlexander Kabaev void
188f8a1b7d9SAlexander Kabaev construct(const encoding_state& __obj)
189f8a1b7d9SAlexander Kabaev {
190f8a1b7d9SAlexander Kabaev destroy();
191f8a1b7d9SAlexander Kabaev _M_int_enc = __obj._M_int_enc;
192f8a1b7d9SAlexander Kabaev _M_ext_enc = __obj._M_ext_enc;
193f8a1b7d9SAlexander Kabaev _M_ext_bom = __obj._M_ext_bom;
194f8a1b7d9SAlexander Kabaev _M_int_bom = __obj._M_int_bom;
195f8a1b7d9SAlexander Kabaev _M_bytes = __obj._M_bytes;
196f8a1b7d9SAlexander Kabaev init();
197f8a1b7d9SAlexander Kabaev }
198f8a1b7d9SAlexander Kabaev
199f8a1b7d9SAlexander Kabaev void
200f8a1b7d9SAlexander Kabaev destroy() throw()
201f8a1b7d9SAlexander Kabaev {
202*05a636f0SPedro F. Giffuni const descriptor_type __err = (iconv_t)(-1);
203f8a1b7d9SAlexander Kabaev if (_M_in_desc && _M_in_desc != __err)
204f8a1b7d9SAlexander Kabaev {
205f8a1b7d9SAlexander Kabaev iconv_close(_M_in_desc);
206f8a1b7d9SAlexander Kabaev _M_in_desc = 0;
207f8a1b7d9SAlexander Kabaev }
208f8a1b7d9SAlexander Kabaev if (_M_out_desc && _M_out_desc != __err)
209f8a1b7d9SAlexander Kabaev {
210f8a1b7d9SAlexander Kabaev iconv_close(_M_out_desc);
211f8a1b7d9SAlexander Kabaev _M_out_desc = 0;
212f8a1b7d9SAlexander Kabaev }
213f8a1b7d9SAlexander Kabaev }
214f8a1b7d9SAlexander Kabaev };
215f8a1b7d9SAlexander Kabaev
216f8a1b7d9SAlexander Kabaev /// @brief encoding_char_traits.
217f8a1b7d9SAlexander Kabaev // Custom traits type with encoding_state for the state type, and the
218f8a1b7d9SAlexander Kabaev // associated fpos<encoding_state> for the position type, all other
219f8a1b7d9SAlexander Kabaev // bits equivalent to the required char_traits instantiations.
220f8a1b7d9SAlexander Kabaev template<typename _CharT>
221f8a1b7d9SAlexander Kabaev struct encoding_char_traits : public std::char_traits<_CharT>
222f8a1b7d9SAlexander Kabaev {
223f8a1b7d9SAlexander Kabaev typedef encoding_state state_type;
224f8a1b7d9SAlexander Kabaev typedef typename std::fpos<state_type> pos_type;
225f8a1b7d9SAlexander Kabaev };
226f8a1b7d9SAlexander Kabaev
227f8a1b7d9SAlexander Kabaev _GLIBCXX_END_NAMESPACE
228f8a1b7d9SAlexander Kabaev
229f8a1b7d9SAlexander Kabaev
230f8a1b7d9SAlexander Kabaev _GLIBCXX_BEGIN_NAMESPACE(std)
231f8a1b7d9SAlexander Kabaev
232f8a1b7d9SAlexander Kabaev using __gnu_cxx::encoding_state;
233f8a1b7d9SAlexander Kabaev
234f8a1b7d9SAlexander Kabaev /// @brief codecvt<InternT, _ExternT, encoding_state> specialization.
235f8a1b7d9SAlexander Kabaev // This partial specialization takes advantage of iconv to provide
236f8a1b7d9SAlexander Kabaev // code conversions between a large number of character encodings.
237f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
238f8a1b7d9SAlexander Kabaev class codecvt<_InternT, _ExternT, encoding_state>
239f8a1b7d9SAlexander Kabaev : public __codecvt_abstract_base<_InternT, _ExternT, encoding_state>
240f8a1b7d9SAlexander Kabaev {
241f8a1b7d9SAlexander Kabaev public:
242f8a1b7d9SAlexander Kabaev // Types:
243f8a1b7d9SAlexander Kabaev typedef codecvt_base::result result;
244f8a1b7d9SAlexander Kabaev typedef _InternT intern_type;
245f8a1b7d9SAlexander Kabaev typedef _ExternT extern_type;
246f8a1b7d9SAlexander Kabaev typedef __gnu_cxx::encoding_state state_type;
247f8a1b7d9SAlexander Kabaev typedef state_type::descriptor_type descriptor_type;
248f8a1b7d9SAlexander Kabaev
249f8a1b7d9SAlexander Kabaev // Data Members:
250f8a1b7d9SAlexander Kabaev static locale::id id;
251f8a1b7d9SAlexander Kabaev
252f8a1b7d9SAlexander Kabaev explicit
253f8a1b7d9SAlexander Kabaev codecvt(size_t __refs = 0)
254f8a1b7d9SAlexander Kabaev : __codecvt_abstract_base<intern_type, extern_type, state_type>(__refs)
255f8a1b7d9SAlexander Kabaev { }
256f8a1b7d9SAlexander Kabaev
257f8a1b7d9SAlexander Kabaev explicit
258f8a1b7d9SAlexander Kabaev codecvt(state_type& __enc, size_t __refs = 0)
259f8a1b7d9SAlexander Kabaev : __codecvt_abstract_base<intern_type, extern_type, state_type>(__refs)
260f8a1b7d9SAlexander Kabaev { }
261f8a1b7d9SAlexander Kabaev
262f8a1b7d9SAlexander Kabaev protected:
263f8a1b7d9SAlexander Kabaev virtual
~codecvt()264f8a1b7d9SAlexander Kabaev ~codecvt() { }
265f8a1b7d9SAlexander Kabaev
266f8a1b7d9SAlexander Kabaev virtual result
267f8a1b7d9SAlexander Kabaev do_out(state_type& __state, const intern_type* __from,
268f8a1b7d9SAlexander Kabaev const intern_type* __from_end, const intern_type*& __from_next,
269f8a1b7d9SAlexander Kabaev extern_type* __to, extern_type* __to_end,
270f8a1b7d9SAlexander Kabaev extern_type*& __to_next) const;
271f8a1b7d9SAlexander Kabaev
272f8a1b7d9SAlexander Kabaev virtual result
273f8a1b7d9SAlexander Kabaev do_unshift(state_type& __state, extern_type* __to,
274f8a1b7d9SAlexander Kabaev extern_type* __to_end, extern_type*& __to_next) const;
275f8a1b7d9SAlexander Kabaev
276f8a1b7d9SAlexander Kabaev virtual result
277f8a1b7d9SAlexander Kabaev do_in(state_type& __state, const extern_type* __from,
278f8a1b7d9SAlexander Kabaev const extern_type* __from_end, const extern_type*& __from_next,
279f8a1b7d9SAlexander Kabaev intern_type* __to, intern_type* __to_end,
280f8a1b7d9SAlexander Kabaev intern_type*& __to_next) const;
281f8a1b7d9SAlexander Kabaev
282f8a1b7d9SAlexander Kabaev virtual int
283f8a1b7d9SAlexander Kabaev do_encoding() const throw();
284f8a1b7d9SAlexander Kabaev
285f8a1b7d9SAlexander Kabaev virtual bool
286f8a1b7d9SAlexander Kabaev do_always_noconv() const throw();
287f8a1b7d9SAlexander Kabaev
288f8a1b7d9SAlexander Kabaev virtual int
289f8a1b7d9SAlexander Kabaev do_length(state_type&, const extern_type* __from,
290f8a1b7d9SAlexander Kabaev const extern_type* __end, size_t __max) const;
291f8a1b7d9SAlexander Kabaev
292f8a1b7d9SAlexander Kabaev virtual int
293f8a1b7d9SAlexander Kabaev do_max_length() const throw();
294f8a1b7d9SAlexander Kabaev };
295f8a1b7d9SAlexander Kabaev
296f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
297f8a1b7d9SAlexander Kabaev locale::id
298f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::id;
299f8a1b7d9SAlexander Kabaev
300f8a1b7d9SAlexander Kabaev // This adaptor works around the signature problems of the second
301f8a1b7d9SAlexander Kabaev // argument to iconv(): SUSv2 and others use 'const char**', but glibc 2.2
302f8a1b7d9SAlexander Kabaev // uses 'char**', which matches the POSIX 1003.1-2001 standard.
303f8a1b7d9SAlexander Kabaev // Using this adaptor, g++ will do the work for us.
304f8a1b7d9SAlexander Kabaev template<typename _Tp>
305f8a1b7d9SAlexander Kabaev inline size_t
__iconv_adaptor(size_t (* __func)(iconv_t,_Tp,size_t *,char **,size_t *),iconv_t __cd,char ** __inbuf,size_t * __inbytes,char ** __outbuf,size_t * __outbytes)306f8a1b7d9SAlexander Kabaev __iconv_adaptor(size_t(*__func)(iconv_t, _Tp, size_t*, char**, size_t*),
307f8a1b7d9SAlexander Kabaev iconv_t __cd, char** __inbuf, size_t* __inbytes,
308f8a1b7d9SAlexander Kabaev char** __outbuf, size_t* __outbytes)
309f8a1b7d9SAlexander Kabaev { return __func(__cd, (_Tp)__inbuf, __inbytes, __outbuf, __outbytes); }
310f8a1b7d9SAlexander Kabaev
311f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
312f8a1b7d9SAlexander Kabaev codecvt_base::result
313f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::
do_out(state_type & __state,const intern_type * __from,const intern_type * __from_end,const intern_type * & __from_next,extern_type * __to,extern_type * __to_end,extern_type * & __to_next)314f8a1b7d9SAlexander Kabaev do_out(state_type& __state, const intern_type* __from,
315f8a1b7d9SAlexander Kabaev const intern_type* __from_end, const intern_type*& __from_next,
316f8a1b7d9SAlexander Kabaev extern_type* __to, extern_type* __to_end,
317f8a1b7d9SAlexander Kabaev extern_type*& __to_next) const
318f8a1b7d9SAlexander Kabaev {
319f8a1b7d9SAlexander Kabaev result __ret = codecvt_base::error;
320f8a1b7d9SAlexander Kabaev if (__state.good())
321f8a1b7d9SAlexander Kabaev {
322f8a1b7d9SAlexander Kabaev const descriptor_type& __desc = __state.out_descriptor();
323f8a1b7d9SAlexander Kabaev const size_t __fmultiple = sizeof(intern_type);
324f8a1b7d9SAlexander Kabaev size_t __fbytes = __fmultiple * (__from_end - __from);
325f8a1b7d9SAlexander Kabaev const size_t __tmultiple = sizeof(extern_type);
326f8a1b7d9SAlexander Kabaev size_t __tbytes = __tmultiple * (__to_end - __to);
327f8a1b7d9SAlexander Kabaev
328f8a1b7d9SAlexander Kabaev // Argument list for iconv specifies a byte sequence. Thus,
329f8a1b7d9SAlexander Kabaev // all to/from arrays must be brutally casted to char*.
330f8a1b7d9SAlexander Kabaev char* __cto = reinterpret_cast<char*>(__to);
331f8a1b7d9SAlexander Kabaev char* __cfrom;
332f8a1b7d9SAlexander Kabaev size_t __conv;
333f8a1b7d9SAlexander Kabaev
334f8a1b7d9SAlexander Kabaev // Some encodings need a byte order marker as the first item
335f8a1b7d9SAlexander Kabaev // in the byte stream, to designate endian-ness. The default
336f8a1b7d9SAlexander Kabaev // value for the byte order marker is NULL, so if this is
337f8a1b7d9SAlexander Kabaev // the case, it's not necessary and we can just go on our
338f8a1b7d9SAlexander Kabaev // merry way.
339f8a1b7d9SAlexander Kabaev int __int_bom = __state.internal_bom();
340f8a1b7d9SAlexander Kabaev if (__int_bom)
341f8a1b7d9SAlexander Kabaev {
342f8a1b7d9SAlexander Kabaev size_t __size = __from_end - __from;
343f8a1b7d9SAlexander Kabaev intern_type* __cfixed = static_cast<intern_type*>
344f8a1b7d9SAlexander Kabaev (__builtin_alloca(sizeof(intern_type) * (__size + 1)));
345f8a1b7d9SAlexander Kabaev __cfixed[0] = static_cast<intern_type>(__int_bom);
346f8a1b7d9SAlexander Kabaev char_traits<intern_type>::copy(__cfixed + 1, __from, __size);
347f8a1b7d9SAlexander Kabaev __cfrom = reinterpret_cast<char*>(__cfixed);
348f8a1b7d9SAlexander Kabaev __conv = __iconv_adaptor(iconv, __desc, &__cfrom,
349f8a1b7d9SAlexander Kabaev &__fbytes, &__cto, &__tbytes);
350f8a1b7d9SAlexander Kabaev }
351f8a1b7d9SAlexander Kabaev else
352f8a1b7d9SAlexander Kabaev {
353f8a1b7d9SAlexander Kabaev intern_type* __cfixed = const_cast<intern_type*>(__from);
354f8a1b7d9SAlexander Kabaev __cfrom = reinterpret_cast<char*>(__cfixed);
355f8a1b7d9SAlexander Kabaev __conv = __iconv_adaptor(iconv, __desc, &__cfrom, &__fbytes,
356f8a1b7d9SAlexander Kabaev &__cto, &__tbytes);
357f8a1b7d9SAlexander Kabaev }
358f8a1b7d9SAlexander Kabaev
359f8a1b7d9SAlexander Kabaev if (__conv != size_t(-1))
360f8a1b7d9SAlexander Kabaev {
361f8a1b7d9SAlexander Kabaev __from_next = reinterpret_cast<const intern_type*>(__cfrom);
362f8a1b7d9SAlexander Kabaev __to_next = reinterpret_cast<extern_type*>(__cto);
363f8a1b7d9SAlexander Kabaev __ret = codecvt_base::ok;
364f8a1b7d9SAlexander Kabaev }
365f8a1b7d9SAlexander Kabaev else
366f8a1b7d9SAlexander Kabaev {
367f8a1b7d9SAlexander Kabaev if (__fbytes < __fmultiple * (__from_end - __from))
368f8a1b7d9SAlexander Kabaev {
369f8a1b7d9SAlexander Kabaev __from_next = reinterpret_cast<const intern_type*>(__cfrom);
370f8a1b7d9SAlexander Kabaev __to_next = reinterpret_cast<extern_type*>(__cto);
371f8a1b7d9SAlexander Kabaev __ret = codecvt_base::partial;
372f8a1b7d9SAlexander Kabaev }
373f8a1b7d9SAlexander Kabaev else
374f8a1b7d9SAlexander Kabaev __ret = codecvt_base::error;
375f8a1b7d9SAlexander Kabaev }
376f8a1b7d9SAlexander Kabaev }
377f8a1b7d9SAlexander Kabaev return __ret;
378f8a1b7d9SAlexander Kabaev }
379f8a1b7d9SAlexander Kabaev
380f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
381f8a1b7d9SAlexander Kabaev codecvt_base::result
382f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::
do_unshift(state_type & __state,extern_type * __to,extern_type * __to_end,extern_type * & __to_next)383f8a1b7d9SAlexander Kabaev do_unshift(state_type& __state, extern_type* __to,
384f8a1b7d9SAlexander Kabaev extern_type* __to_end, extern_type*& __to_next) const
385f8a1b7d9SAlexander Kabaev {
386f8a1b7d9SAlexander Kabaev result __ret = codecvt_base::error;
387f8a1b7d9SAlexander Kabaev if (__state.good())
388f8a1b7d9SAlexander Kabaev {
389f8a1b7d9SAlexander Kabaev const descriptor_type& __desc = __state.in_descriptor();
390f8a1b7d9SAlexander Kabaev const size_t __tmultiple = sizeof(intern_type);
391f8a1b7d9SAlexander Kabaev size_t __tlen = __tmultiple * (__to_end - __to);
392f8a1b7d9SAlexander Kabaev
393f8a1b7d9SAlexander Kabaev // Argument list for iconv specifies a byte sequence. Thus,
394f8a1b7d9SAlexander Kabaev // all to/from arrays must be brutally casted to char*.
395f8a1b7d9SAlexander Kabaev char* __cto = reinterpret_cast<char*>(__to);
396f8a1b7d9SAlexander Kabaev size_t __conv = __iconv_adaptor(iconv,__desc, NULL, NULL,
397f8a1b7d9SAlexander Kabaev &__cto, &__tlen);
398f8a1b7d9SAlexander Kabaev
399f8a1b7d9SAlexander Kabaev if (__conv != size_t(-1))
400f8a1b7d9SAlexander Kabaev {
401f8a1b7d9SAlexander Kabaev __to_next = reinterpret_cast<extern_type*>(__cto);
402f8a1b7d9SAlexander Kabaev if (__tlen == __tmultiple * (__to_end - __to))
403f8a1b7d9SAlexander Kabaev __ret = codecvt_base::noconv;
404f8a1b7d9SAlexander Kabaev else if (__tlen == 0)
405f8a1b7d9SAlexander Kabaev __ret = codecvt_base::ok;
406f8a1b7d9SAlexander Kabaev else
407f8a1b7d9SAlexander Kabaev __ret = codecvt_base::partial;
408f8a1b7d9SAlexander Kabaev }
409f8a1b7d9SAlexander Kabaev else
410f8a1b7d9SAlexander Kabaev __ret = codecvt_base::error;
411f8a1b7d9SAlexander Kabaev }
412f8a1b7d9SAlexander Kabaev return __ret;
413f8a1b7d9SAlexander Kabaev }
414f8a1b7d9SAlexander Kabaev
415f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
416f8a1b7d9SAlexander Kabaev codecvt_base::result
417f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::
do_in(state_type & __state,const extern_type * __from,const extern_type * __from_end,const extern_type * & __from_next,intern_type * __to,intern_type * __to_end,intern_type * & __to_next)418f8a1b7d9SAlexander Kabaev do_in(state_type& __state, const extern_type* __from,
419f8a1b7d9SAlexander Kabaev const extern_type* __from_end, const extern_type*& __from_next,
420f8a1b7d9SAlexander Kabaev intern_type* __to, intern_type* __to_end,
421f8a1b7d9SAlexander Kabaev intern_type*& __to_next) const
422f8a1b7d9SAlexander Kabaev {
423f8a1b7d9SAlexander Kabaev result __ret = codecvt_base::error;
424f8a1b7d9SAlexander Kabaev if (__state.good())
425f8a1b7d9SAlexander Kabaev {
426f8a1b7d9SAlexander Kabaev const descriptor_type& __desc = __state.in_descriptor();
427f8a1b7d9SAlexander Kabaev const size_t __fmultiple = sizeof(extern_type);
428f8a1b7d9SAlexander Kabaev size_t __flen = __fmultiple * (__from_end - __from);
429f8a1b7d9SAlexander Kabaev const size_t __tmultiple = sizeof(intern_type);
430f8a1b7d9SAlexander Kabaev size_t __tlen = __tmultiple * (__to_end - __to);
431f8a1b7d9SAlexander Kabaev
432f8a1b7d9SAlexander Kabaev // Argument list for iconv specifies a byte sequence. Thus,
433f8a1b7d9SAlexander Kabaev // all to/from arrays must be brutally casted to char*.
434f8a1b7d9SAlexander Kabaev char* __cto = reinterpret_cast<char*>(__to);
435f8a1b7d9SAlexander Kabaev char* __cfrom;
436f8a1b7d9SAlexander Kabaev size_t __conv;
437f8a1b7d9SAlexander Kabaev
438f8a1b7d9SAlexander Kabaev // Some encodings need a byte order marker as the first item
439f8a1b7d9SAlexander Kabaev // in the byte stream, to designate endian-ness. The default
440f8a1b7d9SAlexander Kabaev // value for the byte order marker is NULL, so if this is
441f8a1b7d9SAlexander Kabaev // the case, it's not necessary and we can just go on our
442f8a1b7d9SAlexander Kabaev // merry way.
443f8a1b7d9SAlexander Kabaev int __ext_bom = __state.external_bom();
444f8a1b7d9SAlexander Kabaev if (__ext_bom)
445f8a1b7d9SAlexander Kabaev {
446f8a1b7d9SAlexander Kabaev size_t __size = __from_end - __from;
447f8a1b7d9SAlexander Kabaev extern_type* __cfixed = static_cast<extern_type*>
448f8a1b7d9SAlexander Kabaev (__builtin_alloca(sizeof(extern_type) * (__size + 1)));
449f8a1b7d9SAlexander Kabaev __cfixed[0] = static_cast<extern_type>(__ext_bom);
450f8a1b7d9SAlexander Kabaev char_traits<extern_type>::copy(__cfixed + 1, __from, __size);
451f8a1b7d9SAlexander Kabaev __cfrom = reinterpret_cast<char*>(__cfixed);
452f8a1b7d9SAlexander Kabaev __conv = __iconv_adaptor(iconv, __desc, &__cfrom,
453f8a1b7d9SAlexander Kabaev &__flen, &__cto, &__tlen);
454f8a1b7d9SAlexander Kabaev }
455f8a1b7d9SAlexander Kabaev else
456f8a1b7d9SAlexander Kabaev {
457f8a1b7d9SAlexander Kabaev extern_type* __cfixed = const_cast<extern_type*>(__from);
458f8a1b7d9SAlexander Kabaev __cfrom = reinterpret_cast<char*>(__cfixed);
459f8a1b7d9SAlexander Kabaev __conv = __iconv_adaptor(iconv, __desc, &__cfrom,
460f8a1b7d9SAlexander Kabaev &__flen, &__cto, &__tlen);
461f8a1b7d9SAlexander Kabaev }
462f8a1b7d9SAlexander Kabaev
463f8a1b7d9SAlexander Kabaev
464f8a1b7d9SAlexander Kabaev if (__conv != size_t(-1))
465f8a1b7d9SAlexander Kabaev {
466f8a1b7d9SAlexander Kabaev __from_next = reinterpret_cast<const extern_type*>(__cfrom);
467f8a1b7d9SAlexander Kabaev __to_next = reinterpret_cast<intern_type*>(__cto);
468f8a1b7d9SAlexander Kabaev __ret = codecvt_base::ok;
469f8a1b7d9SAlexander Kabaev }
470f8a1b7d9SAlexander Kabaev else
471f8a1b7d9SAlexander Kabaev {
472f8a1b7d9SAlexander Kabaev if (__flen < static_cast<size_t>(__from_end - __from))
473f8a1b7d9SAlexander Kabaev {
474f8a1b7d9SAlexander Kabaev __from_next = reinterpret_cast<const extern_type*>(__cfrom);
475f8a1b7d9SAlexander Kabaev __to_next = reinterpret_cast<intern_type*>(__cto);
476f8a1b7d9SAlexander Kabaev __ret = codecvt_base::partial;
477f8a1b7d9SAlexander Kabaev }
478f8a1b7d9SAlexander Kabaev else
479f8a1b7d9SAlexander Kabaev __ret = codecvt_base::error;
480f8a1b7d9SAlexander Kabaev }
481f8a1b7d9SAlexander Kabaev }
482f8a1b7d9SAlexander Kabaev return __ret;
483f8a1b7d9SAlexander Kabaev }
484f8a1b7d9SAlexander Kabaev
485f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
486f8a1b7d9SAlexander Kabaev int
487f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::
do_encoding()488f8a1b7d9SAlexander Kabaev do_encoding() const throw()
489f8a1b7d9SAlexander Kabaev {
490f8a1b7d9SAlexander Kabaev int __ret = 0;
491f8a1b7d9SAlexander Kabaev if (sizeof(_ExternT) <= sizeof(_InternT))
492f8a1b7d9SAlexander Kabaev __ret = sizeof(_InternT) / sizeof(_ExternT);
493f8a1b7d9SAlexander Kabaev return __ret;
494f8a1b7d9SAlexander Kabaev }
495f8a1b7d9SAlexander Kabaev
496f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
497f8a1b7d9SAlexander Kabaev bool
498f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::
do_always_noconv()499f8a1b7d9SAlexander Kabaev do_always_noconv() const throw()
500f8a1b7d9SAlexander Kabaev { return false; }
501f8a1b7d9SAlexander Kabaev
502f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
503f8a1b7d9SAlexander Kabaev int
504f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::
do_length(state_type &,const extern_type * __from,const extern_type * __end,size_t __max)505f8a1b7d9SAlexander Kabaev do_length(state_type&, const extern_type* __from,
506f8a1b7d9SAlexander Kabaev const extern_type* __end, size_t __max) const
507f8a1b7d9SAlexander Kabaev { return std::min(__max, static_cast<size_t>(__end - __from)); }
508f8a1b7d9SAlexander Kabaev
509f8a1b7d9SAlexander Kabaev // _GLIBCXX_RESOLVE_LIB_DEFECTS
510f8a1b7d9SAlexander Kabaev // 74. Garbled text for codecvt::do_max_length
511f8a1b7d9SAlexander Kabaev template<typename _InternT, typename _ExternT>
512f8a1b7d9SAlexander Kabaev int
513f8a1b7d9SAlexander Kabaev codecvt<_InternT, _ExternT, encoding_state>::
do_max_length()514f8a1b7d9SAlexander Kabaev do_max_length() const throw()
515f8a1b7d9SAlexander Kabaev { return 1; }
516f8a1b7d9SAlexander Kabaev
517f8a1b7d9SAlexander Kabaev _GLIBCXX_END_NAMESPACE
518f8a1b7d9SAlexander Kabaev
519f8a1b7d9SAlexander Kabaev #endif
520f8a1b7d9SAlexander Kabaev
521f8a1b7d9SAlexander Kabaev #endif
522