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1 /*
2  *
3  * Copyright (c) 2003
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         regex_iterator.hpp
15   *   VERSION      see <boost/version.hpp>
16   *   DESCRIPTION: Provides regex_iterator implementation.
17   */
18
19 #ifndef BOOST_REGEX_V4_REGEX_ITERATOR_HPP
20 #define BOOST_REGEX_V4_REGEX_ITERATOR_HPP
21
22 #include <boost/shared_ptr.hpp>
23
24 namespace boost{
25
26 #ifdef BOOST_MSVC
27 #pragma warning(push)
28 #pragma warning(disable: 4103)
29 #endif
30 #ifdef BOOST_HAS_ABI_HEADERS
31 #  include BOOST_ABI_PREFIX
32 #endif
33 #ifdef BOOST_MSVC
34 #pragma warning(pop)
35 #endif
36
37 template <class BidirectionalIterator, 
38           class charT,
39           class traits>
40 class regex_iterator_implementation 
41 {
42    typedef basic_regex<charT, traits> regex_type;
43
44    match_results<BidirectionalIterator> what;  // current match
45    BidirectionalIterator                base;  // start of sequence
46    BidirectionalIterator                end;   // end of sequence
47    const regex_type                     re;   // the expression
48    match_flag_type                      flags; // flags for matching
49
50 public:
51    regex_iterator_implementation(const regex_type* p, BidirectionalIterator last, match_flag_type f)
52       : base(), end(last), re(*p), flags(f){}
53    bool init(BidirectionalIterator first)
54    {
55       base = first;
56       return regex_search(first, end, what, re, flags);
57    }
58    bool compare(const regex_iterator_implementation& that)
59    {
60       if(this == &that) return true;
61       return (&re.get_data() == &that.re.get_data()) && (end == that.end) && (flags == that.flags) && (what[0].first == that.what[0].first) && (what[0].second == that.what[0].second);
62    }
63    const match_results<BidirectionalIterator>& get()
64    { return what; }
65    bool next()
66    {
67       //if(what.prefix().first != what[0].second)
68       //   flags |= match_prev_avail;
69       BidirectionalIterator next_start = what[0].second;
70       match_flag_type f(flags);
71       if(!what.length() || (f & regex_constants::match_posix))
72          f |= regex_constants::match_not_initial_null;
73       //if(base != next_start)
74       //   f |= regex_constants::match_not_bob;
75       bool result = regex_search(next_start, end, what, re, f, base);
76       if(result)
77          what.set_base(base);
78       return result;
79    }
80 private:
81    regex_iterator_implementation& operator=(const regex_iterator_implementation&);
82 };
83
84 template <class BidirectionalIterator, 
85           class charT = BOOST_DEDUCED_TYPENAME BOOST_REGEX_DETAIL_NS::regex_iterator_traits<BidirectionalIterator>::value_type,
86           class traits = regex_traits<charT> >
87 class regex_iterator 
88 #ifndef BOOST_NO_STD_ITERATOR
89    : public std::iterator<
90          std::forward_iterator_tag, 
91          match_results<BidirectionalIterator>,
92          typename BOOST_REGEX_DETAIL_NS::regex_iterator_traits<BidirectionalIterator>::difference_type,
93          const match_results<BidirectionalIterator>*,
94          const match_results<BidirectionalIterator>& >         
95 #endif
96 {
97 private:
98    typedef regex_iterator_implementation<BidirectionalIterator, charT, traits> impl;
99    typedef shared_ptr<impl> pimpl;
100 public:
101    typedef          basic_regex<charT, traits>                   regex_type;
102    typedef          match_results<BidirectionalIterator>                    value_type;
103    typedef typename BOOST_REGEX_DETAIL_NS::regex_iterator_traits<BidirectionalIterator>::difference_type 
104                                                                             difference_type;
105    typedef          const value_type*                                       pointer;
106    typedef          const value_type&                                       reference; 
107    typedef          std::forward_iterator_tag                               iterator_category;
108    
109    regex_iterator(){}
110    regex_iterator(BidirectionalIterator a, BidirectionalIterator b, 
111                   const regex_type& re, 
112                   match_flag_type m = match_default)
113                   : pdata(new impl(&re, b, m))
114    {
115       if(!pdata->init(a))
116       {
117          pdata.reset();
118       }
119    }
120    regex_iterator(const regex_iterator& that)
121       : pdata(that.pdata) {}
122    regex_iterator& operator=(const regex_iterator& that)
123    {
124       pdata = that.pdata;
125       return *this;
126    }
127    bool operator==(const regex_iterator& that)const
128    { 
129       if((pdata.get() == 0) || (that.pdata.get() == 0))
130          return pdata.get() == that.pdata.get();
131       return pdata->compare(*(that.pdata.get())); 
132    }
133    bool operator!=(const regex_iterator& that)const
134    { return !(*this == that); }
135    const value_type& operator*()const
136    { return pdata->get(); }
137    const value_type* operator->()const
138    { return &(pdata->get()); }
139    regex_iterator& operator++()
140    {
141       cow();
142       if(0 == pdata->next())
143       {
144          pdata.reset();
145       }
146       return *this;
147    }
148    regex_iterator operator++(int)
149    {
150       regex_iterator result(*this);
151       ++(*this);
152       return result;
153    }
154 private:
155
156    pimpl pdata;
157
158    void cow()
159    {
160       // copy-on-write
161       if(pdata.get() && !pdata.unique())
162       {
163          pdata.reset(new impl(*(pdata.get())));
164       }
165    }
166 };
167
168 typedef regex_iterator<const char*> cregex_iterator;
169 typedef regex_iterator<std::string::const_iterator> sregex_iterator;
170 #ifndef BOOST_NO_WREGEX
171 typedef regex_iterator<const wchar_t*> wcregex_iterator;
172 typedef regex_iterator<std::wstring::const_iterator> wsregex_iterator;
173 #endif
174
175 // make_regex_iterator:
176 template <class charT, class traits>
177 inline regex_iterator<const charT*, charT, traits> make_regex_iterator(const charT* p, const basic_regex<charT, traits>& e, regex_constants::match_flag_type m = regex_constants::match_default)
178 {
179    return regex_iterator<const charT*, charT, traits>(p, p+traits::length(p), e, m);
180 }
181 template <class charT, class traits, class ST, class SA>
182 inline regex_iterator<typename std::basic_string<charT, ST, SA>::const_iterator, charT, traits> make_regex_iterator(const std::basic_string<charT, ST, SA>& p, const basic_regex<charT, traits>& e, regex_constants::match_flag_type m = regex_constants::match_default)
183 {
184    return regex_iterator<typename std::basic_string<charT, ST, SA>::const_iterator, charT, traits>(p.begin(), p.end(), e, m);
185 }
186
187 #ifdef BOOST_MSVC
188 #pragma warning(push)
189 #pragma warning(disable: 4103)
190 #endif
191 #ifdef BOOST_HAS_ABI_HEADERS
192 #  include BOOST_ABI_SUFFIX
193 #endif
194 #ifdef BOOST_MSVC
195 #pragma warning(pop)
196 #endif
197
198 } // namespace boost
199
200 #endif // BOOST_REGEX_V4_REGEX_ITERATOR_HPP
201