1 /*
2  *
3  * Copyright (c) 2004
4  * John Maddock
5  *
6  * Use, modification and distribution are subject to the
7  * Boost Software License, Version 1.0. (See accompanying file
8  * LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
9  *
10  */
11 
12  /*
13   *   LOCATION:    see http://www.boost.org for most recent version.
14   *   FILE         w32_regex_traits.hpp
15   *   VERSION      see <boost/version.hpp>
16   *   DESCRIPTION: Declares regular expression traits class w32_regex_traits.
17   */
18 
19 #ifndef BOOST_W32_REGEX_TRAITS_HPP_INCLUDED
20 #define BOOST_W32_REGEX_TRAITS_HPP_INCLUDED
21 
22 #ifndef BOOST_RE_PAT_EXCEPT_HPP
23 #include <boost/regex/pattern_except.hpp>
24 #endif
25 #ifndef BOOST_REGEX_TRAITS_DEFAULTS_HPP_INCLUDED
26 #include <boost/regex/v4/regex_traits_defaults.hpp>
27 #endif
28 #ifdef BOOST_HAS_THREADS
29 #include <boost/regex/pending/static_mutex.hpp>
30 #endif
31 #ifndef BOOST_REGEX_PRIMARY_TRANSFORM
32 #include <boost/regex/v4/primary_transform.hpp>
33 #endif
34 #ifndef BOOST_REGEX_OBJECT_CACHE_HPP
35 #include <boost/regex/pending/object_cache.hpp>
36 #endif
37 
38 #ifdef BOOST_MSVC
39 #pragma warning(push)
40 #pragma warning(disable: 4103)
41 #endif
42 #ifdef BOOST_HAS_ABI_HEADERS
43 #  include BOOST_ABI_PREFIX
44 #endif
45 #ifdef BOOST_MSVC
46 #pragma warning(pop)
47 #endif
48 
49 #ifdef BOOST_MSVC
50 #pragma warning(push)
51 #pragma warning(disable:4786)
52 #pragma warning(disable:4800)
53 #endif
54 
55 namespace boost{
56 
57 //
58 // forward declaration is needed by some compilers:
59 //
60 template <class charT>
61 class w32_regex_traits;
62 
63 namespace re_detail{
64 
65 //
66 // start by typedeffing the types we'll need:
67 //
68 typedef ::boost::uint32_t lcid_type;   // placeholder for LCID.
69 typedef ::boost::shared_ptr<void> cat_type; // placeholder for dll HANDLE.
70 
71 //
72 // then add wrappers around the actual Win32 API's (ie implementation hiding):
73 //
74 BOOST_REGEX_DECL lcid_type BOOST_REGEX_CALL w32_get_default_locale();
75 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is_lower(char, lcid_type);
76 #ifndef BOOST_NO_WREGEX
77 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is_lower(wchar_t, lcid_type);
78 #ifdef BOOST_REGEX_HAS_OTHER_WCHAR_T
79 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is_lower(unsigned short ca, lcid_type state_id);
80 #endif
81 #endif
82 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is_upper(char, lcid_type);
83 #ifndef BOOST_NO_WREGEX
84 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is_upper(wchar_t, lcid_type);
85 #ifdef BOOST_REGEX_HAS_OTHER_WCHAR_T
86 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is_upper(unsigned short ca, lcid_type state_id);
87 #endif
88 #endif
89 BOOST_REGEX_DECL cat_type BOOST_REGEX_CALL w32_cat_open(const std::string& name);
90 BOOST_REGEX_DECL std::string BOOST_REGEX_CALL w32_cat_get(const cat_type& cat, lcid_type state_id, int i, const std::string& def);
91 #ifndef BOOST_NO_WREGEX
92 BOOST_REGEX_DECL std::wstring BOOST_REGEX_CALL w32_cat_get(const cat_type& cat, lcid_type state_id, int i, const std::wstring& def);
93 #ifdef BOOST_REGEX_HAS_OTHER_WCHAR_T
94 BOOST_REGEX_DECL std::basic_string<unsigned short> BOOST_REGEX_CALL w32_cat_get(const cat_type& cat, lcid_type, int i, const std::basic_string<unsigned short>& def);
95 #endif
96 #endif
97 BOOST_REGEX_DECL std::string BOOST_REGEX_CALL w32_transform(lcid_type state_id, const char* p1, const char* p2);
98 #ifndef BOOST_NO_WREGEX
99 BOOST_REGEX_DECL std::wstring BOOST_REGEX_CALL w32_transform(lcid_type state_id, const wchar_t* p1, const wchar_t* p2);
100 #ifdef BOOST_REGEX_HAS_OTHER_WCHAR_T
101 BOOST_REGEX_DECL std::basic_string<unsigned short> BOOST_REGEX_CALL w32_transform(lcid_type state_id, const unsigned short* p1, const unsigned short* p2);
102 #endif
103 #endif
104 BOOST_REGEX_DECL char BOOST_REGEX_CALL w32_tolower(char c, lcid_type);
105 #ifndef BOOST_NO_WREGEX
106 BOOST_REGEX_DECL wchar_t BOOST_REGEX_CALL w32_tolower(wchar_t c, lcid_type);
107 #ifdef BOOST_REGEX_HAS_OTHER_WCHAR_T
108 BOOST_REGEX_DECL unsigned short BOOST_REGEX_CALL w32_tolower(unsigned short c, lcid_type state_id);
109 #endif
110 #endif
111 BOOST_REGEX_DECL char BOOST_REGEX_CALL w32_toupper(char c, lcid_type);
112 #ifndef BOOST_NO_WREGEX
113 BOOST_REGEX_DECL wchar_t BOOST_REGEX_CALL w32_toupper(wchar_t c, lcid_type);
114 #endif
115 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is(lcid_type, boost::uint32_t mask, char c);
116 #ifndef BOOST_NO_WREGEX
117 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is(lcid_type, boost::uint32_t mask, wchar_t c);
118 #ifdef BOOST_REGEX_HAS_OTHER_WCHAR_T
119 BOOST_REGEX_DECL bool BOOST_REGEX_CALL w32_is(lcid_type state_id, boost::uint32_t m, unsigned short c);
120 #endif
121 #endif
122 //
123 // class w32_regex_traits_base:
124 // acts as a container for locale and the facets we are using.
125 //
126 template <class charT>
127 struct w32_regex_traits_base
128 {
w32_regex_traits_baseboost::re_detail::w32_regex_traits_base129    w32_regex_traits_base(lcid_type l)
130    { imbue(l); }
131    lcid_type imbue(lcid_type l);
132 
133    lcid_type m_locale;
134 };
135 
136 template <class charT>
imbue(lcid_type l)137 inline lcid_type w32_regex_traits_base<charT>::imbue(lcid_type l)
138 {
139    lcid_type result(m_locale);
140    m_locale = l;
141    return result;
142 }
143 
144 //
145 // class w32_regex_traits_char_layer:
146 // implements methods that require specialisation for narrow characters:
147 //
148 template <class charT>
149 class w32_regex_traits_char_layer : public w32_regex_traits_base<charT>
150 {
151    typedef std::basic_string<charT> string_type;
152    typedef std::map<charT, regex_constants::syntax_type> map_type;
153    typedef typename map_type::const_iterator map_iterator_type;
154 public:
155    w32_regex_traits_char_layer(const lcid_type l);
156 
syntax_type(charT c) const157    regex_constants::syntax_type syntax_type(charT c)const
158    {
159       map_iterator_type i = m_char_map.find(c);
160       return ((i == m_char_map.end()) ? 0 : i->second);
161    }
escape_syntax_type(charT c) const162    regex_constants::escape_syntax_type escape_syntax_type(charT c) const
163    {
164       map_iterator_type i = m_char_map.find(c);
165       if(i == m_char_map.end())
166       {
167          if(::boost::re_detail::w32_is_lower(c, this->m_locale)) return regex_constants::escape_type_class;
168          if(::boost::re_detail::w32_is_upper(c, this->m_locale)) return regex_constants::escape_type_not_class;
169          return 0;
170       }
171       return i->second;
172    }
tolower(charT c) const173    charT tolower(charT c)const
174    {
175       return ::boost::re_detail::w32_tolower(c, this->m_locale);
176    }
isctype(boost::uint32_t mask,charT c) const177    bool isctype(boost::uint32_t mask, charT c)const
178    {
179       return ::boost::re_detail::w32_is(this->m_locale, mask, c);
180    }
181 
182 private:
183    string_type get_default_message(regex_constants::syntax_type);
184    // TODO: use a hash table when available!
185    map_type m_char_map;
186 };
187 
188 template <class charT>
w32_regex_traits_char_layer(::boost::re_detail::lcid_type l)189 w32_regex_traits_char_layer<charT>::w32_regex_traits_char_layer(::boost::re_detail::lcid_type l)
190    : w32_regex_traits_base<charT>(l)
191 {
192    // we need to start by initialising our syntax map so we know which
193    // character is used for which purpose:
194    cat_type cat;
195    std::string cat_name(w32_regex_traits<charT>::get_catalog_name());
196    if(cat_name.size())
197    {
198       cat = ::boost::re_detail::w32_cat_open(cat_name);
199       if(!cat)
200       {
201          std::string m("Unable to open message catalog: ");
202          std::runtime_error err(m + cat_name);
203          boost::re_detail::raise_runtime_error(err);
204       }
205    }
206    //
207    // if we have a valid catalog then load our messages:
208    //
209    if(cat)
210    {
211       for(regex_constants::syntax_type i = 1; i < regex_constants::syntax_max; ++i)
212       {
213          string_type mss = ::boost::re_detail::w32_cat_get(cat, this->m_locale, i, get_default_message(i));
214          for(typename string_type::size_type j = 0; j < mss.size(); ++j)
215          {
216             this->m_char_map[mss[j]] = i;
217          }
218       }
219    }
220    else
221    {
222       for(regex_constants::syntax_type i = 1; i < regex_constants::syntax_max; ++i)
223       {
224          const char* ptr = get_default_syntax(i);
225          while(ptr && *ptr)
226          {
227             this->m_char_map[static_cast<charT>(*ptr)] = i;
228             ++ptr;
229          }
230       }
231    }
232 }
233 
234 template <class charT>
235 typename w32_regex_traits_char_layer<charT>::string_type
get_default_message(regex_constants::syntax_type i)236    w32_regex_traits_char_layer<charT>::get_default_message(regex_constants::syntax_type i)
237 {
238    const char* ptr = get_default_syntax(i);
239    string_type result;
240    while(ptr && *ptr)
241    {
242       result.append(1, static_cast<charT>(*ptr));
243       ++ptr;
244    }
245    return result;
246 }
247 
248 //
249 // specialised version for narrow characters:
250 //
251 template <>
252 class BOOST_REGEX_DECL w32_regex_traits_char_layer<char> : public w32_regex_traits_base<char>
253 {
254    typedef std::string string_type;
255 public:
w32_regex_traits_char_layer(::boost::re_detail::lcid_type l)256    w32_regex_traits_char_layer(::boost::re_detail::lcid_type l)
257    : w32_regex_traits_base<char>(l)
258    {
259       init();
260    }
261 
syntax_type(char c) const262    regex_constants::syntax_type syntax_type(char c)const
263    {
264       return m_char_map[static_cast<unsigned char>(c)];
265    }
escape_syntax_type(char c) const266    regex_constants::escape_syntax_type escape_syntax_type(char c) const
267    {
268       return m_char_map[static_cast<unsigned char>(c)];
269    }
tolower(char c) const270    char tolower(char c)const
271    {
272       return m_lower_map[static_cast<unsigned char>(c)];
273    }
isctype(boost::uint32_t mask,char c) const274    bool isctype(boost::uint32_t mask, char c)const
275    {
276       return m_type_map[static_cast<unsigned char>(c)] & mask;
277    }
278 
279 private:
280    regex_constants::syntax_type m_char_map[1u << CHAR_BIT];
281    char m_lower_map[1u << CHAR_BIT];
282    boost::uint16_t m_type_map[1u << CHAR_BIT];
283    void init();
284 };
285 
286 //
287 // class w32_regex_traits_implementation:
288 // provides pimpl implementation for w32_regex_traits.
289 //
290 template <class charT>
291 class w32_regex_traits_implementation : public w32_regex_traits_char_layer<charT>
292 {
293 public:
294    typedef typename w32_regex_traits<charT>::char_class_type char_class_type;
295    BOOST_STATIC_CONSTANT(char_class_type, mask_word = 0x0400); // must be C1_DEFINED << 1
296    BOOST_STATIC_CONSTANT(char_class_type, mask_unicode = 0x0800); // must be C1_DEFINED << 2
297    BOOST_STATIC_CONSTANT(char_class_type, mask_horizontal = 0x1000); // must be C1_DEFINED << 3
298    BOOST_STATIC_CONSTANT(char_class_type, mask_vertical = 0x2000); // must be C1_DEFINED << 4
299    BOOST_STATIC_CONSTANT(char_class_type, mask_base = 0x3ff);  // all the masks used by the CT_CTYPE1 group
300 
301    typedef std::basic_string<charT> string_type;
302    typedef charT char_type;
303    w32_regex_traits_implementation(::boost::re_detail::lcid_type l);
error_string(regex_constants::error_type n) const304    std::string error_string(regex_constants::error_type n) const
305    {
306       if(!m_error_strings.empty())
307       {
308          std::map<int, std::string>::const_iterator p = m_error_strings.find(n);
309          return (p == m_error_strings.end()) ? std::string(get_default_error_string(n)) : p->second;
310       }
311       return get_default_error_string(n);
312    }
lookup_classname(const charT * p1,const charT * p2) const313    char_class_type lookup_classname(const charT* p1, const charT* p2) const
314    {
315       char_class_type result = lookup_classname_imp(p1, p2);
316       if(result == 0)
317       {
318          typedef typename string_type::size_type size_type;
319          string_type temp(p1, p2);
320          for(size_type i = 0; i < temp.size(); ++i)
321             temp[i] = this->tolower(temp[i]);
322          result = lookup_classname_imp(&*temp.begin(), &*temp.begin() + temp.size());
323       }
324       return result;
325    }
326    string_type lookup_collatename(const charT* p1, const charT* p2) const;
327    string_type transform_primary(const charT* p1, const charT* p2) const;
transform(const charT * p1,const charT * p2) const328    string_type transform(const charT* p1, const charT* p2) const
329    {
330       return ::boost::re_detail::w32_transform(this->m_locale, p1, p2);
331    }
332 private:
333    std::map<int, std::string>     m_error_strings;   // error messages indexed by numberic ID
334    std::map<string_type, char_class_type>  m_custom_class_names; // character class names
335    std::map<string_type, string_type>      m_custom_collate_names; // collating element names
336    unsigned                       m_collate_type;    // the form of the collation string
337    charT                          m_collate_delim;   // the collation group delimiter
338    //
339    // helpers:
340    //
341    char_class_type lookup_classname_imp(const charT* p1, const charT* p2) const;
342 };
343 
344 template <class charT>
345 typename w32_regex_traits_implementation<charT>::string_type
transform_primary(const charT * p1,const charT * p2) const346    w32_regex_traits_implementation<charT>::transform_primary(const charT* p1, const charT* p2) const
347 {
348    string_type result;
349    //
350    // What we do here depends upon the format of the sort key returned by
351    // sort key returned by this->transform:
352    //
353    switch(m_collate_type)
354    {
355    case sort_C:
356    case sort_unknown:
357       // the best we can do is translate to lower case, then get a regular sort key:
358       {
359          result.assign(p1, p2);
360          typedef typename string_type::size_type size_type;
361          for(size_type i = 0; i < result.size(); ++i)
362             result[i] = this->tolower(result[i]);
363          result = this->transform(&*result.begin(), &*result.begin() + result.size());
364          break;
365       }
366    case sort_fixed:
367       {
368          // get a regular sort key, and then truncate it:
369          result.assign(this->transform(p1, p2));
370          result.erase(this->m_collate_delim);
371          break;
372       }
373    case sort_delim:
374          // get a regular sort key, and then truncate everything after the delim:
375          result.assign(this->transform(p1, p2));
376          std::size_t i;
377          for(i = 0; i < result.size(); ++i)
378          {
379             if(result[i] == m_collate_delim)
380                break;
381          }
382          result.erase(i);
383          break;
384    }
385    if(result.empty())
386       result = string_type(1, charT(0));
387    return result;
388 }
389 
390 template <class charT>
391 typename w32_regex_traits_implementation<charT>::string_type
lookup_collatename(const charT * p1,const charT * p2) const392    w32_regex_traits_implementation<charT>::lookup_collatename(const charT* p1, const charT* p2) const
393 {
394    typedef typename std::map<string_type, string_type>::const_iterator iter_type;
395    if(m_custom_collate_names.size())
396    {
397       iter_type pos = m_custom_collate_names.find(string_type(p1, p2));
398       if(pos != m_custom_collate_names.end())
399          return pos->second;
400    }
401 #if !defined(BOOST_NO_TEMPLATED_ITERATOR_CONSTRUCTORS)\
402                && !BOOST_WORKAROUND(BOOST_MSVC, < 1300)\
403                && !BOOST_WORKAROUND(__BORLANDC__, <= 0x0551)
404    std::string name(p1, p2);
405 #else
406    std::string name;
407    const charT* p0 = p1;
408    while(p0 != p2)
409       name.append(1, char(*p0++));
410 #endif
411    name = lookup_default_collate_name(name);
412 #if !defined(BOOST_NO_TEMPLATED_ITERATOR_CONSTRUCTORS)\
413                && !BOOST_WORKAROUND(BOOST_MSVC, < 1300)\
414                && !BOOST_WORKAROUND(__BORLANDC__, <= 0x0551)
415    if(name.size())
416       return string_type(name.begin(), name.end());
417 #else
418    if(name.size())
419    {
420       string_type result;
421       typedef std::string::const_iterator iter;
422       iter b = name.begin();
423       iter e = name.end();
424       while(b != e)
425          result.append(1, charT(*b++));
426       return result;
427    }
428 #endif
429    if(p2 - p1 == 1)
430       return string_type(1, *p1);
431    return string_type();
432 }
433 
434 template <class charT>
w32_regex_traits_implementation(::boost::re_detail::lcid_type l)435 w32_regex_traits_implementation<charT>::w32_regex_traits_implementation(::boost::re_detail::lcid_type l)
436 : w32_regex_traits_char_layer<charT>(l)
437 {
438    cat_type cat;
439    std::string cat_name(w32_regex_traits<charT>::get_catalog_name());
440    if(cat_name.size())
441    {
442       cat = ::boost::re_detail::w32_cat_open(cat_name);
443       if(!cat)
444       {
445          std::string m("Unable to open message catalog: ");
446          std::runtime_error err(m + cat_name);
447          boost::re_detail::raise_runtime_error(err);
448       }
449    }
450    //
451    // if we have a valid catalog then load our messages:
452    //
453    if(cat)
454    {
455       //
456       // Error messages:
457       //
458       for(boost::regex_constants::error_type i = static_cast<boost::regex_constants::error_type>(0);
459          i <= boost::regex_constants::error_unknown;
460          i = static_cast<boost::regex_constants::error_type>(i + 1))
461       {
462          const char* p = get_default_error_string(i);
463          string_type default_message;
464          while(*p)
465          {
466             default_message.append(1, static_cast<charT>(*p));
467             ++p;
468          }
469          string_type s = ::boost::re_detail::w32_cat_get(cat, this->m_locale, i+200, default_message);
470          std::string result;
471          for(std::string::size_type j = 0; j < s.size(); ++j)
472          {
473             result.append(1, static_cast<char>(s[j]));
474          }
475          m_error_strings[i] = result;
476       }
477       //
478       // Custom class names:
479       //
480       static const char_class_type masks[14] =
481       {
482          0x0104u, // C1_ALPHA | C1_DIGIT
483          0x0100u, // C1_ALPHA
484          0x0020u, // C1_CNTRL
485          0x0004u, // C1_DIGIT
486          (~(0x0020u|0x0008u) & 0x01ffu) | 0x0400u, // not C1_CNTRL or C1_SPACE
487          0x0002u, // C1_LOWER
488          (~0x0020u & 0x01ffu) | 0x0400, // not C1_CNTRL
489          0x0010u, // C1_PUNCT
490          0x0008u, // C1_SPACE
491          0x0001u, // C1_UPPER
492          0x0080u, // C1_XDIGIT
493          0x0040u, // C1_BLANK
494          w32_regex_traits_implementation<charT>::mask_word,
495          w32_regex_traits_implementation<charT>::mask_unicode,
496       };
497       static const string_type null_string;
498       for(unsigned int j = 0; j <= 13; ++j)
499       {
500          string_type s(::boost::re_detail::w32_cat_get(cat, this->m_locale, j+300, null_string));
501          if(s.size())
502             this->m_custom_class_names[s] = masks[j];
503       }
504    }
505    //
506    // get the collation format used by m_pcollate:
507    //
508    m_collate_type = re_detail::find_sort_syntax(this, &m_collate_delim);
509 }
510 
511 template <class charT>
512 typename w32_regex_traits_implementation<charT>::char_class_type
lookup_classname_imp(const charT * p1,const charT * p2) const513    w32_regex_traits_implementation<charT>::lookup_classname_imp(const charT* p1, const charT* p2) const
514 {
515    static const char_class_type masks[22] =
516    {
517       0,
518       0x0104u, // C1_ALPHA | C1_DIGIT
519       0x0100u, // C1_ALPHA
520       0x0040u, // C1_BLANK
521       0x0020u, // C1_CNTRL
522       0x0004u, // C1_DIGIT
523       0x0004u, // C1_DIGIT
524       (~(0x0020u|0x0008u|0x0040) & 0x01ffu) | 0x0400u, // not C1_CNTRL or C1_SPACE or C1_BLANK
525       w32_regex_traits_implementation<charT>::mask_horizontal,
526       0x0002u, // C1_LOWER
527       0x0002u, // C1_LOWER
528       (~0x0020u & 0x01ffu) | 0x0400, // not C1_CNTRL
529       0x0010u, // C1_PUNCT
530       0x0008u, // C1_SPACE
531       0x0008u, // C1_SPACE
532       0x0001u, // C1_UPPER
533       w32_regex_traits_implementation<charT>::mask_unicode,
534       0x0001u, // C1_UPPER
535       w32_regex_traits_implementation<charT>::mask_vertical,
536       0x0104u | w32_regex_traits_implementation<charT>::mask_word,
537       0x0104u | w32_regex_traits_implementation<charT>::mask_word,
538       0x0080u, // C1_XDIGIT
539    };
540    if(m_custom_class_names.size())
541    {
542       typedef typename std::map<std::basic_string<charT>, char_class_type>::const_iterator map_iter;
543       map_iter pos = m_custom_class_names.find(string_type(p1, p2));
544       if(pos != m_custom_class_names.end())
545          return pos->second;
546    }
547    std::size_t state_id = 1 + re_detail::get_default_class_id(p1, p2);
548    if(state_id < sizeof(masks) / sizeof(masks[0]))
549       return masks[state_id];
550    return masks[0];
551 }
552 
553 
554 template <class charT>
create_w32_regex_traits(::boost::re_detail::lcid_type l BOOST_APPEND_EXPLICIT_TEMPLATE_TYPE (charT))555 boost::shared_ptr<const w32_regex_traits_implementation<charT> > create_w32_regex_traits(::boost::re_detail::lcid_type l BOOST_APPEND_EXPLICIT_TEMPLATE_TYPE(charT))
556 {
557    // TODO: create a cache for previously constructed objects.
558    return boost::object_cache< ::boost::re_detail::lcid_type, w32_regex_traits_implementation<charT> >::get(l, 5);
559 }
560 
561 } // re_detail
562 
563 template <class charT>
564 class w32_regex_traits
565 {
566 public:
567    typedef charT                         char_type;
568    typedef std::size_t                   size_type;
569    typedef std::basic_string<char_type>  string_type;
570    typedef ::boost::re_detail::lcid_type locale_type;
571    typedef boost::uint_least32_t         char_class_type;
572 
573    struct boost_extensions_tag{};
574 
w32_regex_traits()575    w32_regex_traits()
576       : m_pimpl(re_detail::create_w32_regex_traits<charT>(::boost::re_detail::w32_get_default_locale()))
577    { }
length(const char_type * p)578    static size_type length(const char_type* p)
579    {
580       return std::char_traits<charT>::length(p);
581    }
syntax_type(charT c) const582    regex_constants::syntax_type syntax_type(charT c)const
583    {
584       return m_pimpl->syntax_type(c);
585    }
escape_syntax_type(charT c) const586    regex_constants::escape_syntax_type escape_syntax_type(charT c) const
587    {
588       return m_pimpl->escape_syntax_type(c);
589    }
translate(charT c) const590    charT translate(charT c) const
591    {
592       return c;
593    }
translate_nocase(charT c) const594    charT translate_nocase(charT c) const
595    {
596       return this->m_pimpl->tolower(c);
597    }
translate(charT c,bool icase) const598    charT translate(charT c, bool icase) const
599    {
600       return icase ? this->m_pimpl->tolower(c) : c;
601    }
tolower(charT c) const602    charT tolower(charT c) const
603    {
604       return this->m_pimpl->tolower(c);
605    }
toupper(charT c) const606    charT toupper(charT c) const
607    {
608       return ::boost::re_detail::w32_toupper(c, this->m_pimpl->m_locale);
609    }
transform(const charT * p1,const charT * p2) const610    string_type transform(const charT* p1, const charT* p2) const
611    {
612       return ::boost::re_detail::w32_transform(this->m_pimpl->m_locale, p1, p2);
613    }
transform_primary(const charT * p1,const charT * p2) const614    string_type transform_primary(const charT* p1, const charT* p2) const
615    {
616       return m_pimpl->transform_primary(p1, p2);
617    }
lookup_classname(const charT * p1,const charT * p2) const618    char_class_type lookup_classname(const charT* p1, const charT* p2) const
619    {
620       return m_pimpl->lookup_classname(p1, p2);
621    }
lookup_collatename(const charT * p1,const charT * p2) const622    string_type lookup_collatename(const charT* p1, const charT* p2) const
623    {
624       return m_pimpl->lookup_collatename(p1, p2);
625    }
isctype(charT c,char_class_type f) const626    bool isctype(charT c, char_class_type f) const
627    {
628       if((f & re_detail::w32_regex_traits_implementation<charT>::mask_base)
629          && (this->m_pimpl->isctype(f & re_detail::w32_regex_traits_implementation<charT>::mask_base, c)))
630          return true;
631       else if((f & re_detail::w32_regex_traits_implementation<charT>::mask_unicode) && re_detail::is_extended(c))
632          return true;
633       else if((f & re_detail::w32_regex_traits_implementation<charT>::mask_word) && (c == '_'))
634          return true;
635       else if((f & re_detail::w32_regex_traits_implementation<charT>::mask_vertical)
636          && (::boost::re_detail::is_separator(c) || (c == '\v')))
637          return true;
638       else if((f & re_detail::w32_regex_traits_implementation<charT>::mask_horizontal)
639          && this->isctype(c, 0x0008u) && !this->isctype(c, re_detail::w32_regex_traits_implementation<charT>::mask_vertical))
640          return true;
641       return false;
642    }
toi(const charT * & p1,const charT * p2,int radix) const643    int toi(const charT*& p1, const charT* p2, int radix)const
644    {
645       return ::boost::re_detail::global_toi(p1, p2, radix, *this);
646    }
value(charT c,int radix) const647    int value(charT c, int radix)const
648    {
649       int result = ::boost::re_detail::global_value(c);
650       return result < radix ? result : -1;
651    }
imbue(locale_type l)652    locale_type imbue(locale_type l)
653    {
654       ::boost::re_detail::lcid_type result(getloc());
655       m_pimpl = re_detail::create_w32_regex_traits<charT>(l);
656       return result;
657    }
getloc() const658    locale_type getloc()const
659    {
660       return m_pimpl->m_locale;
661    }
error_string(regex_constants::error_type n) const662    std::string error_string(regex_constants::error_type n) const
663    {
664       return m_pimpl->error_string(n);
665    }
666 
667    //
668    // extension:
669    // set the name of the message catalog in use (defaults to "boost_regex").
670    //
671    static std::string catalog_name(const std::string& name);
672    static std::string get_catalog_name();
673 
674 private:
675    boost::shared_ptr<const re_detail::w32_regex_traits_implementation<charT> > m_pimpl;
676    //
677    // catalog name handler:
678    //
679    static std::string& get_catalog_name_inst();
680 
681 #ifdef BOOST_HAS_THREADS
682    static static_mutex& get_mutex_inst();
683 #endif
684 };
685 
686 template <class charT>
catalog_name(const std::string & name)687 std::string w32_regex_traits<charT>::catalog_name(const std::string& name)
688 {
689 #ifdef BOOST_HAS_THREADS
690    static_mutex::scoped_lock lk(get_mutex_inst());
691 #endif
692    std::string result(get_catalog_name_inst());
693    get_catalog_name_inst() = name;
694    return result;
695 }
696 
697 template <class charT>
get_catalog_name_inst()698 std::string& w32_regex_traits<charT>::get_catalog_name_inst()
699 {
700    static std::string s_name;
701    return s_name;
702 }
703 
704 template <class charT>
get_catalog_name()705 std::string w32_regex_traits<charT>::get_catalog_name()
706 {
707 #ifdef BOOST_HAS_THREADS
708    static_mutex::scoped_lock lk(get_mutex_inst());
709 #endif
710    std::string result(get_catalog_name_inst());
711    return result;
712 }
713 
714 #ifdef BOOST_HAS_THREADS
715 template <class charT>
get_mutex_inst()716 static_mutex& w32_regex_traits<charT>::get_mutex_inst()
717 {
718    static static_mutex s_mutex = BOOST_STATIC_MUTEX_INIT;
719    return s_mutex;
720 }
721 #endif
722 
723 
724 } // boost
725 
726 #ifdef BOOST_MSVC
727 #pragma warning(pop)
728 #endif
729 
730 #ifdef BOOST_MSVC
731 #pragma warning(push)
732 #pragma warning(disable: 4103)
733 #endif
734 #ifdef BOOST_HAS_ABI_HEADERS
735 #  include BOOST_ABI_SUFFIX
736 #endif
737 #ifdef BOOST_MSVC
738 #pragma warning(pop)
739 #endif
740 
741 #endif
742