1// Versatile string -*- C++ -*-
2
3// Copyright (C) 2005, 2006, 2007, 2008, 2009, 2010, 2011
4// Free Software Foundation, Inc.
5//
6// This file is part of the GNU ISO C++ Library.  This library is free
7// software; you can redistribute it and/or modify it under the
8// terms of the GNU General Public License as published by the
9// Free Software Foundation; either version 3, or (at your option)
10// any later version.
11
12// This library is distributed in the hope that it will be useful,
13// but WITHOUT ANY WARRANTY; without even the implied warranty of
14// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15// GNU General Public License for more details.
16
17// Under Section 7 of GPL version 3, you are granted additional
18// permissions described in the GCC Runtime Library Exception, version
19// 3.1, as published by the Free Software Foundation.
20
21// You should have received a copy of the GNU General Public License and
22// a copy of the GCC Runtime Library Exception along with this program;
23// see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
24// <http://www.gnu.org/licenses/>.
25
26/** @file ext/vstring.h
27 *  This file is a GNU extension to the Standard C++ Library.
28 */
29
30#ifndef _VSTRING_H
31#define _VSTRING_H 1
32
33#pragma GCC system_header
34
35#include <initializer_list>
36#include <ext/vstring_util.h>
37#include <ext/rc_string_base.h>
38#include <ext/sso_string_base.h>
39
40#if __google_stl_debug_string && !defined(_GLIBCXX_DEBUG)
41# undef _GLIBCXX_DEBUG_ASSERT
42# undef _GLIBCXX_DEBUG_PEDASSERT
43// Perform additional checks (but only in this file).
44# define _GLIBCXX_DEBUG_ASSERT(_Condition)                             \
45  if (! (_Condition)) {                                                \
46    char buf[512];                                                     \
47    __builtin_snprintf(buf, sizeof(buf),                               \
48                      "%s:%d: %s: Assertion '%s' failed.\n",           \
49                      __FILE__, __LINE__, __func__, # _Condition);     \
50    std::__throw_runtime_error(buf);                                   \
51  }
52# define _GLIBCXX_DEBUG_PEDASSERT(_Condition) _GLIBCXX_DEBUG_ASSERT(_Condition)
53#endif
54
55namespace __gnu_cxx _GLIBCXX_VISIBILITY(default)
56{
57_GLIBCXX_BEGIN_NAMESPACE_VERSION
58
59  /**
60   *  @class __versa_string vstring.h
61   *  @brief  Template class __versa_string.
62   *  @ingroup extensions
63   *
64   *  Data structure managing sequences of characters and
65   *  character-like objects.
66   */
67  template<typename _CharT, typename _Traits, typename _Alloc,
68	   template <typename, typename, typename> class _Base>
69    class __versa_string
70    : private _Base<_CharT, _Traits, _Alloc>
71    {
72      typedef _Base<_CharT, _Traits, _Alloc>                __vstring_base;
73      typedef typename __vstring_base::_CharT_alloc_type    _CharT_alloc_type;
74
75      // Types:
76    public:
77      typedef _Traits					    traits_type;
78      typedef typename _Traits::char_type		    value_type;
79      typedef _Alloc					    allocator_type;
80      typedef typename _CharT_alloc_type::size_type	    size_type;
81      typedef typename _CharT_alloc_type::difference_type   difference_type;
82      typedef value_type&               	            reference;
83      typedef const value_type&                             const_reference;
84      typedef typename _CharT_alloc_type::pointer	    pointer;
85      typedef typename _CharT_alloc_type::const_pointer	    const_pointer;
86      typedef __gnu_cxx::__normal_iterator<pointer, __versa_string>  iterator;
87      typedef __gnu_cxx::__normal_iterator<const_pointer, __versa_string>
88                                                            const_iterator;
89      typedef std::reverse_iterator<const_iterator>	const_reverse_iterator;
90      typedef std::reverse_iterator<iterator>		    reverse_iterator;
91
92      // Data Member (public):
93      ///  Value returned by various member functions when they fail.
94      static const size_type	npos = static_cast<size_type>(-1);
95
96    private:
97      size_type
98      _M_check(size_type __pos, const char* __s) const
99      {
100	if (__pos > this->size())
101	  std::__throw_out_of_range(__N(__s));
102	return __pos;
103      }
104
105      void
106      _M_check_length(size_type __n1, size_type __n2, const char* __s) const
107      {
108	if (this->max_size() - (this->size() - __n1) < __n2)
109	  std::__throw_length_error(__N(__s));
110      }
111
112      // NB: _M_limit doesn't check for a bad __pos value.
113      size_type
114      _M_limit(size_type __pos, size_type __off) const
115      {
116	const bool __testoff =  __off < this->size() - __pos;
117	return __testoff ? __off : this->size() - __pos;
118      }
119
120      // True if _Rep and source do not overlap.
121      bool
122      _M_disjunct(const _CharT* __s) const
123      {
124	return (std::less<const _CharT*>()(__s, this->_M_data())
125		|| std::less<const _CharT*>()(this->_M_data()
126					      + this->size(), __s));
127      }
128
129      // For the internal use we have functions similar to `begin'/`end'
130      // but they do not call _M_leak.
131      iterator
132      _M_ibegin() const
133      { return iterator(this->_M_data()); }
134
135      iterator
136      _M_iend() const
137      { return iterator(this->_M_data() + this->_M_length()); }
138
139    public:
140      // Construct/copy/destroy:
141      // NB: We overload ctors in some cases instead of using default
142      // arguments, per 17.4.4.4 para. 2 item 2.
143
144      /**
145       *  @brief  Default constructor creates an empty string.
146       */
147      __versa_string()
148      : __vstring_base() { }
149
150      /**
151       *  @brief  Construct an empty string using allocator @a a.
152       */
153      explicit
154      __versa_string(const _Alloc& __a)
155      : __vstring_base(__a) { }
156
157      // NB: per LWG issue 42, semantics different from IS:
158      /**
159       *  @brief  Construct string with copy of value of @a str.
160       *  @param  __str  Source string.
161       */
162      __versa_string(const __versa_string& __str)
163      : __vstring_base(__str) { }
164
165#ifdef __GXX_EXPERIMENTAL_CXX0X__
166      /**
167       *  @brief  String move constructor.
168       *  @param  __str  Source string.
169       *
170       *  The newly-constructed %string contains the exact contents of
171       *  @a str.  The contents of @a str are a valid, but unspecified
172       *  string.
173       */
174      __versa_string(__versa_string&& __str)
175      : __vstring_base(std::move(__str)) { }
176
177      /**
178       *  @brief  Construct string from an initializer list.
179       *  @param  __l  std::initializer_list of characters.
180       *  @param  __a  Allocator to use (default is default allocator).
181       */
182      __versa_string(std::initializer_list<_CharT> __l,
183		     const _Alloc& __a = _Alloc())
184      : __vstring_base(__l.begin(), __l.end(), __a) { }
185#endif
186
187      /**
188       *  @brief  Construct string as copy of a substring.
189       *  @param  __str  Source string.
190       *  @param  __pos  Index of first character to copy from.
191       *  @param  __n  Number of characters to copy (default remainder).
192       */
193      __versa_string(const __versa_string& __str, size_type __pos,
194		     size_type __n = npos)
195      : __vstring_base(__str._M_data()
196		       + __str._M_check(__pos,
197					"__versa_string::__versa_string"),
198		       __str._M_data() + __str._M_limit(__pos, __n)
199		       + __pos, _Alloc()) { }
200
201      /**
202       *  @brief  Construct string as copy of a substring.
203       *  @param  __str  Source string.
204       *  @param  __pos  Index of first character to copy from.
205       *  @param  __n  Number of characters to copy.
206       *  @param  __a  Allocator to use.
207       */
208      __versa_string(const __versa_string& __str, size_type __pos,
209		     size_type __n, const _Alloc& __a)
210      : __vstring_base(__str._M_data()
211		       + __str._M_check(__pos,
212					"__versa_string::__versa_string"),
213		       __str._M_data() + __str._M_limit(__pos, __n)
214		       + __pos, __a) { }
215
216      /**
217       *  @brief  Construct string initialized by a character array.
218       *  @param  __s  Source character array.
219       *  @param  __n  Number of characters to copy.
220       *  @param  __a  Allocator to use (default is default allocator).
221       *
222       *  NB: @a __s must have at least @a __n characters, '\\0' has no special
223       *  meaning.
224       */
225      __versa_string(const _CharT* __s, size_type __n,
226		     const _Alloc& __a = _Alloc())
227      : __vstring_base(__s, __s + __n, __a) { }
228
229      /**
230       *  @brief  Construct string as copy of a C string.
231       *  @param  __s  Source C string.
232       *  @param  __a  Allocator to use (default is default allocator).
233       */
234      __versa_string(const _CharT* __s, const _Alloc& __a = _Alloc())
235      : __vstring_base(__s, __s ? __s + traits_type::length(__s) :
236		       __s + npos, __a) { }
237
238      /**
239       *  @brief  Construct string as multiple characters.
240       *  @param  __n  Number of characters.
241       *  @param  __c  Character to use.
242       *  @param  __a  Allocator to use (default is default allocator).
243       */
244      __versa_string(size_type __n, _CharT __c, const _Alloc& __a = _Alloc())
245      : __vstring_base(__n, __c, __a) { }
246
247      /**
248       *  @brief  Construct string as copy of a range.
249       *  @param  __beg  Start of range.
250       *  @param  __end  End of range.
251       *  @param  __a  Allocator to use (default is default allocator).
252       */
253      template<class _InputIterator>
254        __versa_string(_InputIterator __beg, _InputIterator __end,
255		       const _Alloc& __a = _Alloc())
256	: __vstring_base(__beg, __end, __a) { }
257
258      /**
259       *  @brief  Destroy the string instance.
260       */
261      ~__versa_string() { }
262
263      /**
264       *  @brief  Assign the value of @a str to this string.
265       *  @param  __str  Source string.
266       */
267      __versa_string&
268      operator=(const __versa_string& __str)
269      { return this->assign(__str); }
270
271#ifdef __GXX_EXPERIMENTAL_CXX0X__
272      /**
273       *  @brief  String move assignment operator.
274       *  @param  __str  Source string.
275       *
276       *  The contents of @a __str are moved into this string (without
277       *  copying).  @a __str is a valid, but unspecified string.
278       */
279      __versa_string&
280      operator=(__versa_string&& __str)
281      {
282	// NB: DR 1204.
283	this->swap(__str);
284	return *this;
285      }
286
287      /**
288       *  @brief  Set value to string constructed from initializer list.
289       *  @param  __l  std::initializer_list.
290       */
291      __versa_string&
292      operator=(std::initializer_list<_CharT> __l)
293      {
294	this->assign(__l.begin(), __l.end());
295	return *this;
296      }
297#endif
298
299      /**
300       *  @brief  Copy contents of @a __s into this string.
301       *  @param  __s  Source null-terminated string.
302       */
303      __versa_string&
304      operator=(const _CharT* __s)
305      { return this->assign(__s); }
306
307      /**
308       *  @brief  Set value to string of length 1.
309       *  @param  __c  Source character.
310       *
311       *  Assigning to a character makes this string length 1 and
312       *  (*this)[0] == @a __c.
313       */
314      __versa_string&
315      operator=(_CharT __c)
316      {
317	this->assign(1, __c);
318	return *this;
319      }
320
321      // Iterators:
322      /**
323       *  Returns a read/write iterator that points to the first character in
324       *  the %string.  Unshares the string.
325       */
326      iterator
327      begin()
328      {
329	this->_M_leak();
330	return iterator(this->_M_data());
331      }
332
333      /**
334       *  Returns a read-only (constant) iterator that points to the first
335       *  character in the %string.
336       */
337      const_iterator
338      begin() const
339      { return const_iterator(this->_M_data()); }
340
341      /**
342       *  Returns a read/write iterator that points one past the last
343       *  character in the %string.  Unshares the string.
344       */
345      iterator
346      end()
347      {
348	this->_M_leak();
349	return iterator(this->_M_data() + this->size());
350      }
351
352      /**
353       *  Returns a read-only (constant) iterator that points one past the
354       *  last character in the %string.
355       */
356      const_iterator
357      end() const
358      { return const_iterator(this->_M_data() + this->size()); }
359
360      /**
361       *  Returns a read/write reverse iterator that points to the last
362       *  character in the %string.  Iteration is done in reverse element
363       *  order.  Unshares the string.
364       */
365      reverse_iterator
366      rbegin()
367      { return reverse_iterator(this->end()); }
368
369      /**
370       *  Returns a read-only (constant) reverse iterator that points
371       *  to the last character in the %string.  Iteration is done in
372       *  reverse element order.
373       */
374      const_reverse_iterator
375      rbegin() const
376      { return const_reverse_iterator(this->end()); }
377
378      /**
379       *  Returns a read/write reverse iterator that points to one before the
380       *  first character in the %string.  Iteration is done in reverse
381       *  element order.  Unshares the string.
382       */
383      reverse_iterator
384      rend()
385      { return reverse_iterator(this->begin()); }
386
387      /**
388       *  Returns a read-only (constant) reverse iterator that points
389       *  to one before the first character in the %string.  Iteration
390       *  is done in reverse element order.
391       */
392      const_reverse_iterator
393      rend() const
394      { return const_reverse_iterator(this->begin()); }
395
396#ifdef __GXX_EXPERIMENTAL_CXX0X__
397      /**
398       *  Returns a read-only (constant) iterator that points to the first
399       *  character in the %string.
400       */
401      const_iterator
402      cbegin() const
403      { return const_iterator(this->_M_data()); }
404
405      /**
406       *  Returns a read-only (constant) iterator that points one past the
407       *  last character in the %string.
408       */
409      const_iterator
410      cend() const
411      { return const_iterator(this->_M_data() + this->size()); }
412
413      /**
414       *  Returns a read-only (constant) reverse iterator that points
415       *  to the last character in the %string.  Iteration is done in
416       *  reverse element order.
417       */
418      const_reverse_iterator
419      crbegin() const
420      { return const_reverse_iterator(this->end()); }
421
422      /**
423       *  Returns a read-only (constant) reverse iterator that points
424       *  to one before the first character in the %string.  Iteration
425       *  is done in reverse element order.
426       */
427      const_reverse_iterator
428      crend() const
429      { return const_reverse_iterator(this->begin()); }
430#endif
431
432    public:
433      // Capacity:
434      ///  Returns the number of characters in the string, not including any
435      ///  null-termination.
436      size_type
437      size() const
438      { return this->_M_length(); }
439
440      ///  Returns the number of characters in the string, not including any
441      ///  null-termination.
442      size_type
443      length() const
444      { return this->_M_length(); }
445
446      /// Returns the size() of the largest possible %string.
447      size_type
448      max_size() const
449      { return this->_M_max_size(); }
450
451      /**
452       *  @brief  Resizes the %string to the specified number of characters.
453       *  @param  __n  Number of characters the %string should contain.
454       *  @param  __c  Character to fill any new elements.
455       *
456       *  This function will %resize the %string to the specified
457       *  number of characters.  If the number is smaller than the
458       *  %string's current size the %string is truncated, otherwise
459       *  the %string is extended and new elements are set to @a __c.
460       */
461      void
462      resize(size_type __n, _CharT __c);
463
464      /**
465       *  @brief  Resizes the %string to the specified number of characters.
466       *  @param  __n  Number of characters the %string should contain.
467       *
468       *  This function will resize the %string to the specified
469       *  length.  If the new size is smaller than the %string's
470       *  current size the %string is truncated, otherwise the %string
471       *  is extended and new characters are default-constructed.  For
472       *  basic types such as char, this means setting them to 0.
473       */
474      void
475      resize(size_type __n)
476      { this->resize(__n, _CharT()); }
477
478#ifdef __GXX_EXPERIMENTAL_CXX0X__
479      /// A non-binding request to reduce capacity() to size().
480      void
481      shrink_to_fit()
482      {
483	__try
484	  { this->reserve(0); }
485	__catch(...)
486	  { }
487      }
488#endif
489
490      /**
491       *  Returns the total number of characters that the %string can
492       *  hold before needing to allocate more memory.
493       */
494      size_type
495      capacity() const
496      { return this->_M_capacity(); }
497
498      /**
499       *  @brief  Attempt to preallocate enough memory for specified number of
500       *          characters.
501       *  @param  __res_arg  Number of characters required.
502       *  @throw  std::length_error  If @a __res_arg exceeds @c max_size().
503       *
504       *  This function attempts to reserve enough memory for the
505       *  %string to hold the specified number of characters.  If the
506       *  number requested is more than max_size(), length_error is
507       *  thrown.
508       *
509       *  The advantage of this function is that if optimal code is a
510       *  necessity and the user can determine the string length that
511       *  will be required, the user can reserve the memory in
512       *  %advance, and thus prevent a possible reallocation of memory
513       *  and copying of %string data.
514       */
515      void
516      reserve(size_type __res_arg = 0)
517      { this->_M_reserve(__res_arg); }
518
519      /**
520       *  Erases the string, making it empty.
521       */
522      void
523      clear()
524      { this->_M_clear(); }
525
526      /**
527       *  Returns true if the %string is empty.  Equivalent to
528       *  <code>*this == ""</code>.
529       */
530      bool
531      empty() const
532      { return this->size() == 0; }
533
534      // Element access:
535      /**
536       *  @brief  Subscript access to the data contained in the %string.
537       *  @param  __pos  The index of the character to access.
538       *  @return  Read-only (constant) reference to the character.
539       *
540       *  This operator allows for easy, array-style, data access.
541       *  Note that data access with this operator is unchecked and
542       *  out_of_range lookups are not defined. (For checked lookups
543       *  see at().)
544       */
545      const_reference
546      operator[] (size_type __pos) const
547      {
548	_GLIBCXX_DEBUG_ASSERT(__pos <= this->size());
549	return this->_M_data()[__pos];
550      }
551
552      /**
553       *  @brief  Subscript access to the data contained in the %string.
554       *  @param  __pos  The index of the character to access.
555       *  @return  Read/write reference to the character.
556       *
557       *  This operator allows for easy, array-style, data access.
558       *  Note that data access with this operator is unchecked and
559       *  out_of_range lookups are not defined. (For checked lookups
560       *  see at().)  Unshares the string.
561       */
562      reference
563      operator[](size_type __pos)
564      {
565        // allow pos == size() as v3 extension:
566	_GLIBCXX_DEBUG_ASSERT(__pos <= this->size());
567        // but be strict in pedantic mode:
568	_GLIBCXX_DEBUG_PEDASSERT(__pos < this->size());
569	this->_M_leak();
570	return this->_M_data()[__pos];
571      }
572
573      /**
574       *  @brief  Provides access to the data contained in the %string.
575       *  @param __n The index of the character to access.
576       *  @return  Read-only (const) reference to the character.
577       *  @throw  std::out_of_range  If @a __n is an invalid index.
578       *
579       *  This function provides for safer data access.  The parameter
580       *  is first checked that it is in the range of the string.  The
581       *  function throws out_of_range if the check fails.
582       */
583      const_reference
584      at(size_type __n) const
585      {
586	if (__n >= this->size())
587	  std::__throw_out_of_range(__N("__versa_string::at"));
588	return this->_M_data()[__n];
589      }
590
591      /**
592       *  @brief  Provides access to the data contained in the %string.
593       *  @param __n The index of the character to access.
594       *  @return  Read/write reference to the character.
595       *  @throw  std::out_of_range  If @a __n is an invalid index.
596       *
597       *  This function provides for safer data access.  The parameter
598       *  is first checked that it is in the range of the string.  The
599       *  function throws out_of_range if the check fails.  Success
600       *  results in unsharing the string.
601       */
602      reference
603      at(size_type __n)
604      {
605	if (__n >= this->size())
606	  std::__throw_out_of_range(__N("__versa_string::at"));
607	this->_M_leak();
608	return this->_M_data()[__n];
609      }
610
611#ifdef __GXX_EXPERIMENTAL_CXX0X__
612      /**
613       *  Returns a read/write reference to the data at the first
614       *  element of the %string.
615       */
616      reference
617      front()
618      { return operator[](0); }
619
620      /**
621       *  Returns a read-only (constant) reference to the data at the first
622       *  element of the %string.
623       */
624      const_reference
625      front() const
626      { return operator[](0); }
627
628      /**
629       *  Returns a read/write reference to the data at the last
630       *  element of the %string.
631       */
632      reference
633      back()
634      { return operator[](this->size() - 1); }
635
636      /**
637       *  Returns a read-only (constant) reference to the data at the
638       *  last element of the %string.
639       */
640      const_reference
641      back() const
642      { return operator[](this->size() - 1); }
643#endif
644
645      // Modifiers:
646      /**
647       *  @brief  Append a string to this string.
648       *  @param __str  The string to append.
649       *  @return  Reference to this string.
650       */
651      __versa_string&
652      operator+=(const __versa_string& __str)
653      { return this->append(__str); }
654
655      /**
656       *  @brief  Append a C string.
657       *  @param __s  The C string to append.
658       *  @return  Reference to this string.
659       */
660      __versa_string&
661      operator+=(const _CharT* __s)
662      { return this->append(__s); }
663
664      /**
665       *  @brief  Append a character.
666       *  @param __c  The character to append.
667       *  @return  Reference to this string.
668       */
669      __versa_string&
670      operator+=(_CharT __c)
671      {
672	this->push_back(__c);
673	return *this;
674      }
675
676#ifdef __GXX_EXPERIMENTAL_CXX0X__
677      /**
678       *  @brief  Append an initializer_list of characters.
679       *  @param __l  The initializer_list of characters to be appended.
680       *  @return  Reference to this string.
681       */
682      __versa_string&
683      operator+=(std::initializer_list<_CharT> __l)
684      { return this->append(__l.begin(), __l.end()); }
685#endif // __GXX_EXPERIMENTAL_CXX0X__
686
687      /**
688       *  @brief  Append a string to this string.
689       *  @param __str  The string to append.
690       *  @return  Reference to this string.
691       */
692      __versa_string&
693      append(const __versa_string& __str)
694      { return _M_append(__str._M_data(), __str.size()); }
695
696      /**
697       *  @brief  Append a substring.
698       *  @param __str  The string to append.
699       *  @param __pos  Index of the first character of str to append.
700       *  @param __n  The number of characters to append.
701       *  @return  Reference to this string.
702       *  @throw  std::out_of_range if @a pos is not a valid index.
703       *
704       *  This function appends @a __n characters from @a __str
705       *  starting at @a __pos to this string.  If @a __n is is larger
706       *  than the number of available characters in @a __str, the
707       *  remainder of @a __str is appended.
708       */
709      __versa_string&
710      append(const __versa_string& __str, size_type __pos, size_type __n)
711      { return _M_append(__str._M_data()
712			 + __str._M_check(__pos, "__versa_string::append"),
713			 __str._M_limit(__pos, __n)); }
714
715      /**
716       *  @brief  Append a C substring.
717       *  @param __s  The C string to append.
718       *  @param __n  The number of characters to append.
719       *  @return  Reference to this string.
720       */
721      __versa_string&
722      append(const _CharT* __s, size_type __n)
723      {
724	__glibcxx_requires_string_len(__s, __n);
725	_M_check_length(size_type(0), __n, "__versa_string::append");
726	return _M_append(__s, __n);
727      }
728
729      /**
730       *  @brief  Append a C string.
731       *  @param __s  The C string to append.
732       *  @return  Reference to this string.
733       */
734      __versa_string&
735      append(const _CharT* __s)
736      {
737	__glibcxx_requires_string(__s);
738	const size_type __n = traits_type::length(__s);
739	_M_check_length(size_type(0), __n, "__versa_string::append");
740	return _M_append(__s, __n);
741      }
742
743      /**
744       *  @brief  Append multiple characters.
745       *  @param __n  The number of characters to append.
746       *  @param __c  The character to use.
747       *  @return  Reference to this string.
748       *
749       *  Appends n copies of c to this string.
750       */
751      __versa_string&
752      append(size_type __n, _CharT __c)
753      { return _M_replace_aux(this->size(), size_type(0), __n, __c); }
754
755#ifdef __GXX_EXPERIMENTAL_CXX0X__
756      /**
757       *  @brief  Append an initializer_list of characters.
758       *  @param __l  The initializer_list of characters to append.
759       *  @return  Reference to this string.
760       */
761      __versa_string&
762      append(std::initializer_list<_CharT> __l)
763      { return this->append(__l.begin(), __l.end()); }
764#endif // __GXX_EXPERIMENTAL_CXX0X__
765
766      /**
767       *  @brief  Append a range of characters.
768       *  @param __first  Iterator referencing the first character to append.
769       *  @param __last  Iterator marking the end of the range.
770       *  @return  Reference to this string.
771       *
772       *  Appends characters in the range [first,last) to this string.
773       */
774      template<class _InputIterator>
775        __versa_string&
776        append(_InputIterator __first, _InputIterator __last)
777        { return this->replace(_M_iend(), _M_iend(), __first, __last); }
778
779      /**
780       *  @brief  Append a single character.
781       *  @param __c  Character to append.
782       */
783      void
784      push_back(_CharT __c)
785      {
786	const size_type __size = this->size();
787	if (__size + 1 > this->capacity() || this->_M_is_shared())
788	  this->_M_mutate(__size, size_type(0), 0, size_type(1));
789	traits_type::assign(this->_M_data()[__size], __c);
790	this->_M_set_length(__size + 1);
791      }
792
793      /**
794       *  @brief  Set value to contents of another string.
795       *  @param  __str  Source string to use.
796       *  @return  Reference to this string.
797       */
798      __versa_string&
799      assign(const __versa_string& __str)
800      {
801	this->_M_assign(__str);
802	return *this;
803      }
804
805#ifdef __GXX_EXPERIMENTAL_CXX0X__
806      /**
807       *  @brief  Set value to contents of another string.
808       *  @param  __str  Source string to use.
809       *  @return  Reference to this string.
810       *
811       *  This function sets this string to the exact contents of @a __str.
812       *  @a __str is a valid, but unspecified string.
813       */
814      __versa_string&
815      assign(__versa_string&& __str)
816      {
817	this->swap(__str);
818	return *this;
819      }
820#endif // __GXX_EXPERIMENTAL_CXX0X__
821
822      /**
823       *  @brief  Set value to a substring of a string.
824       *  @param __str  The string to use.
825       *  @param __pos  Index of the first character of str.
826       *  @param __n  Number of characters to use.
827       *  @return  Reference to this string.
828       *  @throw  std::out_of_range if @a __pos is not a valid index.
829       *
830       *  This function sets this string to the substring of @a __str
831       *  consisting of @a __n characters at @a __pos.  If @a __n is
832       *  is larger than the number of available characters in @a
833       *  __str, the remainder of @a __str is used.
834       */
835      __versa_string&
836      assign(const __versa_string& __str, size_type __pos, size_type __n)
837      { return _M_replace(size_type(0), this->size(), __str._M_data()
838			  + __str._M_check(__pos, "__versa_string::assign"),
839			  __str._M_limit(__pos, __n)); }
840
841      /**
842       *  @brief  Set value to a C substring.
843       *  @param __s  The C string to use.
844       *  @param __n  Number of characters to use.
845       *  @return  Reference to this string.
846       *
847       *  This function sets the value of this string to the first @a
848       *  __n characters of @a __s.  If @a __n is is larger than the
849       *  number of available characters in @a __s, the remainder of
850       *  @a __s is used.
851       */
852      __versa_string&
853      assign(const _CharT* __s, size_type __n)
854      {
855	__glibcxx_requires_string_len(__s, __n);
856	return _M_replace(size_type(0), this->size(), __s, __n);
857      }
858
859      /**
860       *  @brief  Set value to contents of a C string.
861       *  @param __s  The C string to use.
862       *  @return  Reference to this string.
863       *
864       *  This function sets the value of this string to the value of
865       *  @a __s.  The data is copied, so there is no dependence on @a
866       *  __s once the function returns.
867       */
868      __versa_string&
869      assign(const _CharT* __s)
870      {
871	__glibcxx_requires_string(__s);
872	return _M_replace(size_type(0), this->size(), __s,
873			  traits_type::length(__s));
874      }
875
876      /**
877       *  @brief  Set value to multiple characters.
878       *  @param __n  Length of the resulting string.
879       *  @param __c  The character to use.
880       *  @return  Reference to this string.
881       *
882       *  This function sets the value of this string to @a __n copies of
883       *  character @a __c.
884       */
885      __versa_string&
886      assign(size_type __n, _CharT __c)
887      { return _M_replace_aux(size_type(0), this->size(), __n, __c); }
888
889      /**
890       *  @brief  Set value to a range of characters.
891       *  @param __first  Iterator referencing the first character to append.
892       *  @param __last  Iterator marking the end of the range.
893       *  @return  Reference to this string.
894       *
895       *  Sets value of string to characters in the range
896       *  [first,last).
897      */
898      template<class _InputIterator>
899        __versa_string&
900        assign(_InputIterator __first, _InputIterator __last)
901        { return this->replace(_M_ibegin(), _M_iend(), __first, __last); }
902
903#ifdef __GXX_EXPERIMENTAL_CXX0X__
904      /**
905       *  @brief  Set value to an initializer_list of characters.
906       *  @param __l  The initializer_list of characters to assign.
907       *  @return  Reference to this string.
908       */
909      __versa_string&
910      assign(std::initializer_list<_CharT> __l)
911      { return this->assign(__l.begin(), __l.end()); }
912#endif // __GXX_EXPERIMENTAL_CXX0X__
913
914      /**
915       *  @brief  Insert multiple characters.
916       *  @param __p  Iterator referencing location in string to insert at.
917       *  @param __n  Number of characters to insert
918       *  @param __c  The character to insert.
919       *  @throw  std::length_error  If new length exceeds @c max_size().
920       *
921       *  Inserts @a __n copies of character @a __c starting at the
922       *  position referenced by iterator @a __p.  If adding
923       *  characters causes the length to exceed max_size(),
924       *  length_error is thrown.  The value of the string doesn't
925       *  change if an error is thrown.
926      */
927      void
928      insert(iterator __p, size_type __n, _CharT __c)
929      {	this->replace(__p, __p, __n, __c);  }
930
931      /**
932       *  @brief  Insert a range of characters.
933       *  @param __p  Iterator referencing location in string to insert at.
934       *  @param __beg  Start of range.
935       *  @param __end  End of range.
936       *  @throw  std::length_error  If new length exceeds @c max_size().
937       *
938       *  Inserts characters in range [beg,end).  If adding characters
939       *  causes the length to exceed max_size(), length_error is
940       *  thrown.  The value of the string doesn't change if an error
941       *  is thrown.
942      */
943      template<class _InputIterator>
944        void
945        insert(iterator __p, _InputIterator __beg, _InputIterator __end)
946        { this->replace(__p, __p, __beg, __end); }
947
948#ifdef __GXX_EXPERIMENTAL_CXX0X__
949      /**
950       *  @brief  Insert an initializer_list of characters.
951       *  @param __p  Iterator referencing location in string to insert at.
952       *  @param __l  The initializer_list of characters to insert.
953       *  @throw  std::length_error  If new length exceeds @c max_size().
954       */
955      void
956      insert(iterator __p, std::initializer_list<_CharT> __l)
957      { this->insert(__p, __l.begin(), __l.end()); }
958#endif // __GXX_EXPERIMENTAL_CXX0X__
959
960      /**
961       *  @brief  Insert value of a string.
962       *  @param __pos1  Iterator referencing location in string to insert at.
963       *  @param __str  The string to insert.
964       *  @return  Reference to this string.
965       *  @throw  std::length_error  If new length exceeds @c max_size().
966       *
967       *  Inserts value of @a __str starting at @a __pos1.  If adding
968       *  characters causes the length to exceed max_size(),
969       *  length_error is thrown.  The value of the string doesn't
970       *  change if an error is thrown.
971      */
972      __versa_string&
973      insert(size_type __pos1, const __versa_string& __str)
974      { return this->replace(__pos1, size_type(0),
975			     __str._M_data(), __str.size()); }
976
977      /**
978       *  @brief  Insert a substring.
979       *  @param __pos1  Iterator referencing location in string to insert at.
980       *  @param __str  The string to insert.
981       *  @param __pos2  Start of characters in str to insert.
982       *  @param __n  Number of characters to insert.
983       *  @return  Reference to this string.
984       *  @throw  std::length_error  If new length exceeds @c max_size().
985       *  @throw  std::out_of_range  If @a __pos1 > size() or
986       *  @a __pos2 > @a __str.size().
987       *
988       *  Starting at @a __pos1, insert @a __n character of @a __str
989       *  beginning with @a __pos2.  If adding characters causes the
990       *  length to exceed max_size(), length_error is thrown.  If @a
991       *  __pos1 is beyond the end of this string or @a __pos2 is
992       *  beyond the end of @a __str, out_of_range is thrown.  The
993       *  value of the string doesn't change if an error is thrown.
994      */
995      __versa_string&
996      insert(size_type __pos1, const __versa_string& __str,
997	     size_type __pos2, size_type __n)
998      { return this->replace(__pos1, size_type(0), __str._M_data()
999			     + __str._M_check(__pos2, "__versa_string::insert"),
1000			     __str._M_limit(__pos2, __n)); }
1001
1002      /**
1003       *  @brief  Insert a C substring.
1004       *  @param __pos  Iterator referencing location in string to insert at.
1005       *  @param __s  The C string to insert.
1006       *  @param __n  The number of characters to insert.
1007       *  @return  Reference to this string.
1008       *  @throw  std::length_error  If new length exceeds @c max_size().
1009       *  @throw  std::out_of_range  If @a __pos is beyond the end of this
1010       *  string.
1011       *
1012       *  Inserts the first @a __n characters of @a __s starting at @a
1013       *  __pos.  If adding characters causes the length to exceed
1014       *  max_size(), length_error is thrown.  If @a __pos is beyond
1015       *  end(), out_of_range is thrown.  The value of the string
1016       *  doesn't change if an error is thrown.
1017      */
1018      __versa_string&
1019      insert(size_type __pos, const _CharT* __s, size_type __n)
1020      { return this->replace(__pos, size_type(0), __s, __n); }
1021
1022      /**
1023       *  @brief  Insert a C string.
1024       *  @param __pos  Iterator referencing location in string to insert at.
1025       *  @param __s  The C string to insert.
1026       *  @return  Reference to this string.
1027       *  @throw  std::length_error  If new length exceeds @c max_size().
1028       *  @throw  std::out_of_range  If @a __pos is beyond the end of this
1029       *  string.
1030       *
1031       *  Inserts the first @a __n characters of @a __s starting at @a
1032       *  __pos.  If adding characters causes the length to exceed
1033       *  max_size(), length_error is thrown.  If @a __pos is beyond
1034       *  end(), out_of_range is thrown.  The value of the string
1035       *  doesn't change if an error is thrown.
1036      */
1037      __versa_string&
1038      insert(size_type __pos, const _CharT* __s)
1039      {
1040	__glibcxx_requires_string(__s);
1041	return this->replace(__pos, size_type(0), __s,
1042			     traits_type::length(__s));
1043      }
1044
1045      /**
1046       *  @brief  Insert multiple characters.
1047       *  @param __pos  Index in string to insert at.
1048       *  @param __n  Number of characters to insert
1049       *  @param __c  The character to insert.
1050       *  @return  Reference to this string.
1051       *  @throw  std::length_error  If new length exceeds @c max_size().
1052       *  @throw  std::out_of_range  If @a __pos is beyond the end of this
1053       *  string.
1054       *
1055       *  Inserts @a __n copies of character @a __c starting at index
1056       *  @a __pos.  If adding characters causes the length to exceed
1057       *  max_size(), length_error is thrown.  If @a __pos > length(),
1058       *  out_of_range is thrown.  The value of the string doesn't
1059       *  change if an error is thrown.
1060      */
1061      __versa_string&
1062      insert(size_type __pos, size_type __n, _CharT __c)
1063      { return _M_replace_aux(_M_check(__pos, "__versa_string::insert"),
1064			      size_type(0), __n, __c); }
1065
1066      /**
1067       *  @brief  Insert one character.
1068       *  @param __p  Iterator referencing position in string to insert at.
1069       *  @param __c  The character to insert.
1070       *  @return  Iterator referencing newly inserted char.
1071       *  @throw  std::length_error  If new length exceeds @c max_size().
1072       *
1073       *  Inserts character @a __c at position referenced by @a __p.
1074       *  If adding character causes the length to exceed max_size(),
1075       *  length_error is thrown.  If @a __p is beyond end of string,
1076       *  out_of_range is thrown.  The value of the string doesn't
1077       *  change if an error is thrown.
1078      */
1079      iterator
1080      insert(iterator __p, _CharT __c)
1081      {
1082	_GLIBCXX_DEBUG_PEDASSERT(__p >= _M_ibegin() && __p <= _M_iend());
1083	const size_type __pos = __p - _M_ibegin();
1084	_M_replace_aux(__pos, size_type(0), size_type(1), __c);
1085	this->_M_set_leaked();
1086	return iterator(this->_M_data() + __pos);
1087      }
1088
1089      /**
1090       *  @brief  Remove characters.
1091       *  @param __pos  Index of first character to remove (default 0).
1092       *  @param __n  Number of characters to remove (default remainder).
1093       *  @return  Reference to this string.
1094       *  @throw  std::out_of_range  If @a __pos is beyond the end of this
1095       *  string.
1096       *
1097       *  Removes @a __n characters from this string starting at @a
1098       *  __pos.  The length of the string is reduced by @a __n.  If
1099       *  there are < @a __n characters to remove, the remainder of
1100       *  the string is truncated.  If @a __p is beyond end of string,
1101       *  out_of_range is thrown.  The value of the string doesn't
1102       *  change if an error is thrown.
1103      */
1104      __versa_string&
1105      erase(size_type __pos = 0, size_type __n = npos)
1106      {
1107	this->_M_erase(_M_check(__pos, "__versa_string::erase"),
1108		       _M_limit(__pos, __n));
1109	return *this;
1110      }
1111
1112      /**
1113       *  @brief  Remove one character.
1114       *  @param __position  Iterator referencing the character to remove.
1115       *  @return  iterator referencing same location after removal.
1116       *
1117       *  Removes the character at @a __position from this string. The
1118       *  value of the string doesn't change if an error is thrown.
1119      */
1120      iterator
1121      erase(iterator __position)
1122      {
1123	_GLIBCXX_DEBUG_PEDASSERT(__position >= _M_ibegin()
1124				 && __position < _M_iend());
1125	const size_type __pos = __position - _M_ibegin();
1126	this->_M_erase(__pos, size_type(1));
1127	this->_M_set_leaked();
1128	return iterator(this->_M_data() + __pos);
1129      }
1130
1131      /**
1132       *  @brief  Remove a range of characters.
1133       *  @param __first  Iterator referencing the first character to remove.
1134       *  @param __last  Iterator referencing the end of the range.
1135       *  @return  Iterator referencing location of first after removal.
1136       *
1137       *  Removes the characters in the range [first,last) from this
1138       *  string.  The value of the string doesn't change if an error
1139       *  is thrown.
1140      */
1141      iterator
1142      erase(iterator __first, iterator __last)
1143      {
1144	_GLIBCXX_DEBUG_PEDASSERT(__first >= _M_ibegin() && __first <= __last
1145				 && __last <= _M_iend());
1146        const size_type __pos = __first - _M_ibegin();
1147	this->_M_erase(__pos, __last - __first);
1148	this->_M_set_leaked();
1149	return iterator(this->_M_data() + __pos);
1150      }
1151
1152      /**
1153       *  @brief  Replace characters with value from another string.
1154       *  @param __pos  Index of first character to replace.
1155       *  @param __n  Number of characters to be replaced.
1156       *  @param __str  String to insert.
1157       *  @return  Reference to this string.
1158       *  @throw  std::out_of_range  If @a __pos is beyond the end of this
1159       *  string.
1160       *  @throw  std::length_error  If new length exceeds @c max_size().
1161       *
1162       *  Removes the characters in the range [pos,pos+n) from this
1163       *  string.  In place, the value of @a __str is inserted.  If @a
1164       *  __pos is beyond end of string, out_of_range is thrown.  If
1165       *  the length of the result exceeds max_size(), length_error is
1166       *  thrown.  The value of the string doesn't change if an error
1167       *  is thrown.
1168      */
1169      __versa_string&
1170      replace(size_type __pos, size_type __n, const __versa_string& __str)
1171      { return this->replace(__pos, __n, __str._M_data(), __str.size()); }
1172
1173      /**
1174       *  @brief  Replace characters with value from another string.
1175       *  @param __pos1  Index of first character to replace.
1176       *  @param __n1  Number of characters to be replaced.
1177       *  @param __str  String to insert.
1178       *  @param __pos2  Index of first character of str to use.
1179       *  @param __n2  Number of characters from str to use.
1180       *  @return  Reference to this string.
1181       *  @throw  std::out_of_range  If @a __pos1 > size() or @a __pos2 >
1182       *  str.size().
1183       *  @throw  std::length_error  If new length exceeds @c max_size().
1184       *
1185       *  Removes the characters in the range [pos1,pos1 + n) from
1186       *  this string.  In place, the value of @a __str is inserted.
1187       *  If @a __pos is beyond end of string, out_of_range is thrown.
1188       *  If the length of the result exceeds max_size(), length_error
1189       *  is thrown.  The value of the string doesn't change if an
1190       *  error is thrown.
1191      */
1192      __versa_string&
1193      replace(size_type __pos1, size_type __n1, const __versa_string& __str,
1194	      size_type __pos2, size_type __n2)
1195      {
1196	return this->replace(__pos1, __n1, __str._M_data()
1197			     + __str._M_check(__pos2,
1198					      "__versa_string::replace"),
1199			     __str._M_limit(__pos2, __n2));
1200      }
1201
1202      /**
1203       *  @brief  Replace characters with value of a C substring.
1204       *  @param __pos  Index of first character to replace.
1205       *  @param __n1  Number of characters to be replaced.
1206       *  @param __s  C string to insert.
1207       *  @param __n2  Number of characters from @a __s to use.
1208       *  @return  Reference to this string.
1209       *  @throw  std::out_of_range  If @a __pos1 > size().
1210       *  @throw  std::length_error  If new length exceeds @c max_size().
1211       *
1212       *  Removes the characters in the range [pos,pos + n1) from this
1213       *  string.  In place, the first @a __n2 characters of @a __s
1214       *  are inserted, or all of @a __s if @a __n2 is too large.  If
1215       *  @a __pos is beyond end of string, out_of_range is thrown.
1216       *  If the length of result exceeds max_size(), length_error is
1217       *  thrown.  The value of the string doesn't change if an error
1218       *  is thrown.
1219      */
1220      __versa_string&
1221      replace(size_type __pos, size_type __n1, const _CharT* __s,
1222	      size_type __n2)
1223      {
1224	__glibcxx_requires_string_len(__s, __n2);
1225	return _M_replace(_M_check(__pos, "__versa_string::replace"),
1226			  _M_limit(__pos, __n1), __s, __n2);
1227      }
1228
1229      /**
1230       *  @brief  Replace characters with value of a C string.
1231       *  @param __pos  Index of first character to replace.
1232       *  @param __n1  Number of characters to be replaced.
1233       *  @param __s  C string to insert.
1234       *  @return  Reference to this string.
1235       *  @throw  std::out_of_range  If @a __pos > size().
1236       *  @throw  std::length_error  If new length exceeds @c max_size().
1237       *
1238       *  Removes the characters in the range [pos,pos + n1) from this
1239       *  string.  In place, the characters of @a __s are inserted.  If
1240       *  @a pos is beyond end of string, out_of_range is thrown.  If
1241       *  the length of result exceeds max_size(), length_error is thrown.
1242       *  The value of the string doesn't change if an error is thrown.
1243      */
1244      __versa_string&
1245      replace(size_type __pos, size_type __n1, const _CharT* __s)
1246      {
1247	__glibcxx_requires_string(__s);
1248	return this->replace(__pos, __n1, __s, traits_type::length(__s));
1249      }
1250
1251      /**
1252       *  @brief  Replace characters with multiple characters.
1253       *  @param __pos  Index of first character to replace.
1254       *  @param __n1  Number of characters to be replaced.
1255       *  @param __n2  Number of characters to insert.
1256       *  @param __c  Character to insert.
1257       *  @return  Reference to this string.
1258       *  @throw  std::out_of_range  If @a __pos > size().
1259       *  @throw  std::length_error  If new length exceeds @c max_size().
1260       *
1261       *  Removes the characters in the range [pos,pos + n1) from this
1262       *  string.  In place, @a __n2 copies of @a __c are inserted.
1263       *  If @a __pos is beyond end of string, out_of_range is thrown.
1264       *  If the length of result exceeds max_size(), length_error is
1265       *  thrown.  The value of the string doesn't change if an error
1266       *  is thrown.
1267      */
1268      __versa_string&
1269      replace(size_type __pos, size_type __n1, size_type __n2, _CharT __c)
1270      { return _M_replace_aux(_M_check(__pos, "__versa_string::replace"),
1271			      _M_limit(__pos, __n1), __n2, __c); }
1272
1273      /**
1274       *  @brief  Replace range of characters with string.
1275       *  @param __i1  Iterator referencing start of range to replace.
1276       *  @param __i2  Iterator referencing end of range to replace.
1277       *  @param __str  String value to insert.
1278       *  @return  Reference to this string.
1279       *  @throw  std::length_error  If new length exceeds @c max_size().
1280       *
1281       *  Removes the characters in the range [i1,i2).  In place, the
1282       *  value of @a __str is inserted.  If the length of result
1283       *  exceeds max_size(), length_error is thrown.  The value of
1284       *  the string doesn't change if an error is thrown.
1285      */
1286      __versa_string&
1287      replace(iterator __i1, iterator __i2, const __versa_string& __str)
1288      { return this->replace(__i1, __i2, __str._M_data(), __str.size()); }
1289
1290      /**
1291       *  @brief  Replace range of characters with C substring.
1292       *  @param __i1  Iterator referencing start of range to replace.
1293       *  @param __i2  Iterator referencing end of range to replace.
1294       *  @param __s  C string value to insert.
1295       *  @param __n  Number of characters from s to insert.
1296       *  @return  Reference to this string.
1297       *  @throw  std::length_error  If new length exceeds @c max_size().
1298       *
1299       *  Removes the characters in the range [i1,i2).  In place, the
1300       *  first @a n characters of @a __s are inserted.  If the length
1301       *  of result exceeds max_size(), length_error is thrown.  The
1302       *  value of the string doesn't change if an error is thrown.
1303      */
1304      __versa_string&
1305      replace(iterator __i1, iterator __i2, const _CharT* __s, size_type __n)
1306      {
1307	_GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1308				 && __i2 <= _M_iend());
1309	return this->replace(__i1 - _M_ibegin(), __i2 - __i1, __s, __n);
1310      }
1311
1312      /**
1313       *  @brief  Replace range of characters with C string.
1314       *  @param __i1  Iterator referencing start of range to replace.
1315       *  @param __i2  Iterator referencing end of range to replace.
1316       *  @param __s  C string value to insert.
1317       *  @return  Reference to this string.
1318       *  @throw  std::length_error  If new length exceeds @c max_size().
1319       *
1320       *  Removes the characters in the range [i1,i2).  In place, the
1321       *  characters of @a __s are inserted.  If the length of result
1322       *  exceeds max_size(), length_error is thrown.  The value of
1323       *  the string doesn't change if an error is thrown.
1324      */
1325      __versa_string&
1326      replace(iterator __i1, iterator __i2, const _CharT* __s)
1327      {
1328	__glibcxx_requires_string(__s);
1329	return this->replace(__i1, __i2, __s, traits_type::length(__s));
1330      }
1331
1332      /**
1333       *  @brief  Replace range of characters with multiple characters
1334       *  @param __i1  Iterator referencing start of range to replace.
1335       *  @param __i2  Iterator referencing end of range to replace.
1336       *  @param __n  Number of characters to insert.
1337       *  @param __c  Character to insert.
1338       *  @return  Reference to this string.
1339       *  @throw  std::length_error  If new length exceeds @c max_size().
1340       *
1341       *  Removes the characters in the range [i1,i2).  In place, @a
1342       *  __n copies of @a __c are inserted.  If the length of result
1343       *  exceeds max_size(), length_error is thrown.  The value of
1344       *  the string doesn't change if an error is thrown.
1345      */
1346      __versa_string&
1347      replace(iterator __i1, iterator __i2, size_type __n, _CharT __c)
1348      {
1349	_GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1350				 && __i2 <= _M_iend());
1351	return _M_replace_aux(__i1 - _M_ibegin(), __i2 - __i1, __n, __c);
1352      }
1353
1354      /**
1355       *  @brief  Replace range of characters with range.
1356       *  @param __i1  Iterator referencing start of range to replace.
1357       *  @param __i2  Iterator referencing end of range to replace.
1358       *  @param __k1  Iterator referencing start of range to insert.
1359       *  @param __k2  Iterator referencing end of range to insert.
1360       *  @return  Reference to this string.
1361       *  @throw  std::length_error  If new length exceeds @c max_size().
1362       *
1363       *  Removes the characters in the range [i1,i2).  In place,
1364       *  characters in the range [k1,k2) are inserted.  If the length
1365       *  of result exceeds max_size(), length_error is thrown.  The
1366       *  value of the string doesn't change if an error is thrown.
1367      */
1368      template<class _InputIterator>
1369        __versa_string&
1370        replace(iterator __i1, iterator __i2,
1371		_InputIterator __k1, _InputIterator __k2)
1372        {
1373	  _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1374				   && __i2 <= _M_iend());
1375	  __glibcxx_requires_valid_range(__k1, __k2);
1376	  typedef typename std::__is_integer<_InputIterator>::__type _Integral;
1377	  return this->_M_replace_dispatch(__i1, __i2, __k1, __k2, _Integral());
1378	}
1379
1380      // Specializations for the common case of pointer and iterator:
1381      // useful to avoid the overhead of temporary buffering in _M_replace.
1382      __versa_string&
1383      replace(iterator __i1, iterator __i2, _CharT* __k1, _CharT* __k2)
1384      {
1385	_GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1386				 && __i2 <= _M_iend());
1387	__glibcxx_requires_valid_range(__k1, __k2);
1388	return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1389			     __k1, __k2 - __k1);
1390      }
1391
1392      __versa_string&
1393      replace(iterator __i1, iterator __i2,
1394	      const _CharT* __k1, const _CharT* __k2)
1395      {
1396	_GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1397				 && __i2 <= _M_iend());
1398	__glibcxx_requires_valid_range(__k1, __k2);
1399	return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1400			     __k1, __k2 - __k1);
1401      }
1402
1403      __versa_string&
1404      replace(iterator __i1, iterator __i2, iterator __k1, iterator __k2)
1405      {
1406	_GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1407				 && __i2 <= _M_iend());
1408	__glibcxx_requires_valid_range(__k1, __k2);
1409	return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1410			     __k1.base(), __k2 - __k1);
1411      }
1412
1413      __versa_string&
1414      replace(iterator __i1, iterator __i2,
1415	      const_iterator __k1, const_iterator __k2)
1416      {
1417	_GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1418				 && __i2 <= _M_iend());
1419	__glibcxx_requires_valid_range(__k1, __k2);
1420	return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1421			     __k1.base(), __k2 - __k1);
1422      }
1423
1424#ifdef __GXX_EXPERIMENTAL_CXX0X__
1425      /**
1426       *  @brief  Replace range of characters with initializer_list.
1427       *  @param __i1  Iterator referencing start of range to replace.
1428       *  @param __i2  Iterator referencing end of range to replace.
1429       *  @param __l  The initializer_list of characters to insert.
1430       *  @return  Reference to this string.
1431       *  @throw  std::length_error  If new length exceeds @c max_size().
1432       *
1433       *  Removes the characters in the range [i1,i2).  In place,
1434       *  characters in the range [k1,k2) are inserted.  If the length
1435       *  of result exceeds max_size(), length_error is thrown.  The
1436       *  value of the string doesn't change if an error is thrown.
1437      */
1438      __versa_string& replace(iterator __i1, iterator __i2,
1439			      std::initializer_list<_CharT> __l)
1440      { return this->replace(__i1, __i2, __l.begin(), __l.end()); }
1441#endif // __GXX_EXPERIMENTAL_CXX0X__
1442
1443    private:
1444      template<class _Integer>
1445	__versa_string&
1446	_M_replace_dispatch(iterator __i1, iterator __i2, _Integer __n,
1447			    _Integer __val, std::__true_type)
1448        { return _M_replace_aux(__i1 - _M_ibegin(), __i2 - __i1, __n, __val); }
1449
1450      template<class _InputIterator>
1451	__versa_string&
1452	_M_replace_dispatch(iterator __i1, iterator __i2, _InputIterator __k1,
1453			    _InputIterator __k2, std::__false_type);
1454
1455      __versa_string&
1456      _M_replace_aux(size_type __pos1, size_type __n1, size_type __n2,
1457		     _CharT __c);
1458
1459      __versa_string&
1460      _M_replace(size_type __pos, size_type __len1, const _CharT* __s,
1461		 const size_type __len2);
1462
1463      __versa_string&
1464      _M_append(const _CharT* __s, size_type __n);
1465
1466    public:
1467
1468      /**
1469       *  @brief  Copy substring into C string.
1470       *  @param __s  C string to copy value into.
1471       *  @param __n  Number of characters to copy.
1472       *  @param __pos  Index of first character to copy.
1473       *  @return  Number of characters actually copied
1474       *  @throw  std::out_of_range  If pos > size().
1475       *
1476       *  Copies up to @a __n characters starting at @a __pos into the
1477       *  C string @a s.  If @a __pos is greater than size(),
1478       *  out_of_range is thrown.
1479      */
1480      size_type
1481      copy(_CharT* __s, size_type __n, size_type __pos = 0) const;
1482
1483      /**
1484       *  @brief  Swap contents with another string.
1485       *  @param __s  String to swap with.
1486       *
1487       *  Exchanges the contents of this string with that of @a __s in
1488       *  constant time.
1489      */
1490      void
1491      swap(__versa_string& __s)
1492      { this->_M_swap(__s); }
1493
1494      // String operations:
1495      /**
1496       *  @brief  Return const pointer to null-terminated contents.
1497       *
1498       *  This is a handle to internal data.  Do not modify or dire things may
1499       *  happen.
1500      */
1501      const _CharT*
1502      c_str() const
1503      { return this->_M_data(); }
1504
1505      /**
1506       *  @brief  Return const pointer to contents.
1507       *
1508       *  This is a handle to internal data.  Do not modify or dire things may
1509       *  happen.
1510      */
1511      const _CharT*
1512      data() const
1513      { return this->_M_data(); }
1514
1515      /**
1516       *  @brief  Return copy of allocator used to construct this string.
1517      */
1518      allocator_type
1519      get_allocator() const
1520      { return allocator_type(this->_M_get_allocator()); }
1521
1522      /**
1523       *  @brief  Find position of a C substring.
1524       *  @param __s  C string to locate.
1525       *  @param __pos  Index of character to search from.
1526       *  @param __n  Number of characters from @a __s to search for.
1527       *  @return  Index of start of first occurrence.
1528       *
1529       *  Starting from @a __pos, searches forward for the first @a
1530       *  __n characters in @a __s within this string.  If found,
1531       *  returns the index where it begins.  If not found, returns
1532       *  npos.
1533      */
1534      size_type
1535      find(const _CharT* __s, size_type __pos, size_type __n) const;
1536
1537      /**
1538       *  @brief  Find position of a string.
1539       *  @param __str  String to locate.
1540       *  @param __pos  Index of character to search from (default 0).
1541       *  @return  Index of start of first occurrence.
1542       *
1543       *  Starting from @a __pos, searches forward for value of @a
1544       *  __str within this string.  If found, returns the index where
1545       *  it begins.  If not found, returns npos.
1546      */
1547      size_type
1548      find(const __versa_string& __str, size_type __pos = 0) const
1549      { return this->find(__str.data(), __pos, __str.size()); }
1550
1551      /**
1552       *  @brief  Find position of a C string.
1553       *  @param __s  C string to locate.
1554       *  @param __pos  Index of character to search from (default 0).
1555       *  @return  Index of start of first occurrence.
1556       *
1557       *  Starting from @a __pos, searches forward for the value of @a
1558       *  __s within this string.  If found, returns the index where
1559       *  it begins.  If not found, returns npos.
1560      */
1561      size_type
1562      find(const _CharT* __s, size_type __pos = 0) const
1563      {
1564	__glibcxx_requires_string(__s);
1565	return this->find(__s, __pos, traits_type::length(__s));
1566      }
1567
1568      /**
1569       *  @brief  Find position of a character.
1570       *  @param __c  Character to locate.
1571       *  @param __pos  Index of character to search from (default 0).
1572       *  @return  Index of first occurrence.
1573       *
1574       *  Starting from @a __pos, searches forward for @a __c within
1575       *  this string.  If found, returns the index where it was
1576       *  found.  If not found, returns npos.
1577      */
1578      size_type
1579      find(_CharT __c, size_type __pos = 0) const;
1580
1581      /**
1582       *  @brief  Find last position of a string.
1583       *  @param __str  String to locate.
1584       *  @param __pos  Index of character to search back from (default end).
1585       *  @return  Index of start of last occurrence.
1586       *
1587       *  Starting from @a __pos, searches backward for value of @a
1588       *  __str within this string.  If found, returns the index where
1589       *  it begins.  If not found, returns npos.
1590      */
1591      size_type
1592      rfind(const __versa_string& __str, size_type __pos = npos) const
1593      { return this->rfind(__str.data(), __pos, __str.size()); }
1594
1595      /**
1596       *  @brief  Find last position of a C substring.
1597       *  @param __s  C string to locate.
1598       *  @param __pos  Index of character to search back from.
1599       *  @param __n  Number of characters from s to search for.
1600       *  @return  Index of start of last occurrence.
1601       *
1602       *  Starting from @a __pos, searches backward for the first @a
1603       *  __n characters in @a __s within this string.  If found,
1604       *  returns the index where it begins.  If not found, returns
1605       *  npos.
1606      */
1607      size_type
1608      rfind(const _CharT* __s, size_type __pos, size_type __n) const;
1609
1610      /**
1611       *  @brief  Find last position of a C string.
1612       *  @param __s  C string to locate.
1613       *  @param __pos  Index of character to start search at (default end).
1614       *  @return  Index of start of  last occurrence.
1615       *
1616       *  Starting from @a __pos, searches backward for the value of
1617       *  @a __s within this string.  If found, returns the index
1618       *  where it begins.  If not found, returns npos.
1619      */
1620      size_type
1621      rfind(const _CharT* __s, size_type __pos = npos) const
1622      {
1623	__glibcxx_requires_string(__s);
1624	return this->rfind(__s, __pos, traits_type::length(__s));
1625      }
1626
1627      /**
1628       *  @brief  Find last position of a character.
1629       *  @param __c  Character to locate.
1630       *  @param __pos  Index of character to search back from (default end).
1631       *  @return  Index of last occurrence.
1632       *
1633       *  Starting from @a __pos, searches backward for @a __c within
1634       *  this string.  If found, returns the index where it was
1635       *  found.  If not found, returns npos.
1636      */
1637      size_type
1638      rfind(_CharT __c, size_type __pos = npos) const;
1639
1640      /**
1641       *  @brief  Find position of a character of string.
1642       *  @param __str  String containing characters to locate.
1643       *  @param __pos  Index of character to search from (default 0).
1644       *  @return  Index of first occurrence.
1645       *
1646       *  Starting from @a __pos, searches forward for one of the characters of
1647       *  @a __str within this string.  If found, returns the index where it was
1648       *  found.  If not found, returns npos.
1649      */
1650      size_type
1651      find_first_of(const __versa_string& __str, size_type __pos = 0) const
1652      { return this->find_first_of(__str.data(), __pos, __str.size()); }
1653
1654      /**
1655       *  @brief  Find position of a character of C substring.
1656       *  @param __s  String containing characters to locate.
1657       *  @param __pos  Index of character to search from.
1658       *  @param __n  Number of characters from s to search for.
1659       *  @return  Index of first occurrence.
1660       *
1661       *  Starting from @a __pos, searches forward for one of the
1662       *  first @a __n characters of @a __s within this string.  If
1663       *  found, returns the index where it was found.  If not found,
1664       *  returns npos.
1665      */
1666      size_type
1667      find_first_of(const _CharT* __s, size_type __pos, size_type __n) const;
1668
1669      /**
1670       *  @brief  Find position of a character of C string.
1671       *  @param __s  String containing characters to locate.
1672       *  @param __pos  Index of character to search from (default 0).
1673       *  @return  Index of first occurrence.
1674       *
1675       *  Starting from @a __pos, searches forward for one of the
1676       *  characters of @a __s within this string.  If found, returns
1677       *  the index where it was found.  If not found, returns npos.
1678      */
1679      size_type
1680      find_first_of(const _CharT* __s, size_type __pos = 0) const
1681      {
1682	__glibcxx_requires_string(__s);
1683	return this->find_first_of(__s, __pos, traits_type::length(__s));
1684      }
1685
1686      /**
1687       *  @brief  Find position of a character.
1688       *  @param __c  Character to locate.
1689       *  @param __pos  Index of character to search from (default 0).
1690       *  @return  Index of first occurrence.
1691       *
1692       *  Starting from @a __pos, searches forward for the character
1693       *  @a __c within this string.  If found, returns the index
1694       *  where it was found.  If not found, returns npos.
1695       *
1696       *  Note: equivalent to find(c, pos).
1697      */
1698      size_type
1699      find_first_of(_CharT __c, size_type __pos = 0) const
1700      { return this->find(__c, __pos); }
1701
1702      /**
1703       *  @brief  Find last position of a character of string.
1704       *  @param __str  String containing characters to locate.
1705       *  @param __pos  Index of character to search back from (default end).
1706       *  @return  Index of last occurrence.
1707       *
1708       *  Starting from @a __pos, searches backward for one of the
1709       *  characters of @a __str within this string.  If found,
1710       *  returns the index where it was found.  If not found, returns
1711       *  npos.
1712      */
1713      size_type
1714      find_last_of(const __versa_string& __str, size_type __pos = npos) const
1715      { return this->find_last_of(__str.data(), __pos, __str.size()); }
1716
1717      /**
1718       *  @brief  Find last position of a character of C substring.
1719       *  @param __s  C string containing characters to locate.
1720       *  @param __pos  Index of character to search back from.
1721       *  @param __n  Number of characters from s to search for.
1722       *  @return  Index of last occurrence.
1723       *
1724       *  Starting from @a __pos, searches backward for one of the
1725       *  first @a __n characters of @a __s within this string.  If
1726       *  found, returns the index where it was found.  If not found,
1727       *  returns npos.
1728      */
1729      size_type
1730      find_last_of(const _CharT* __s, size_type __pos, size_type __n) const;
1731
1732      /**
1733       *  @brief  Find last position of a character of C string.
1734       *  @param __s  C string containing characters to locate.
1735       *  @param __pos  Index of character to search back from (default end).
1736       *  @return  Index of last occurrence.
1737       *
1738       *  Starting from @a __pos, searches backward for one of the
1739       *  characters of @a __s within this string.  If found, returns
1740       *  the index where it was found.  If not found, returns npos.
1741      */
1742      size_type
1743      find_last_of(const _CharT* __s, size_type __pos = npos) const
1744      {
1745	__glibcxx_requires_string(__s);
1746	return this->find_last_of(__s, __pos, traits_type::length(__s));
1747      }
1748
1749      /**
1750       *  @brief  Find last position of a character.
1751       *  @param __c  Character to locate.
1752       *  @param __pos  Index of character to search back from (default end).
1753       *  @return  Index of last occurrence.
1754       *
1755       *  Starting from @a __pos, searches backward for @a __c within
1756       *  this string.  If found, returns the index where it was
1757       *  found.  If not found, returns npos.
1758       *
1759       *  Note: equivalent to rfind(c, pos).
1760      */
1761      size_type
1762      find_last_of(_CharT __c, size_type __pos = npos) const
1763      { return this->rfind(__c, __pos); }
1764
1765      /**
1766       *  @brief  Find position of a character not in string.
1767       *  @param __str  String containing characters to avoid.
1768       *  @param __pos  Index of character to search from (default 0).
1769       *  @return  Index of first occurrence.
1770       *
1771       *  Starting from @a __pos, searches forward for a character not
1772       *  contained in @a __str within this string.  If found, returns
1773       *  the index where it was found.  If not found, returns npos.
1774      */
1775      size_type
1776      find_first_not_of(const __versa_string& __str, size_type __pos = 0) const
1777      { return this->find_first_not_of(__str.data(), __pos, __str.size()); }
1778
1779      /**
1780       *  @brief  Find position of a character not in C substring.
1781       *  @param __s  C string containing characters to avoid.
1782       *  @param __pos  Index of character to search from.
1783       *  @param __n  Number of characters from s to consider.
1784       *  @return  Index of first occurrence.
1785       *
1786       *  Starting from @a __pos, searches forward for a character not
1787       *  contained in the first @a __n characters of @a __s within
1788       *  this string.  If found, returns the index where it was
1789       *  found.  If not found, returns npos.
1790      */
1791      size_type
1792      find_first_not_of(const _CharT* __s, size_type __pos,
1793			size_type __n) const;
1794
1795      /**
1796       *  @brief  Find position of a character not in C string.
1797       *  @param __s  C string containing characters to avoid.
1798       *  @param __pos  Index of character to search from (default 0).
1799       *  @return  Index of first occurrence.
1800       *
1801       *  Starting from @a __pos, searches forward for a character not
1802       *  contained in @a __s within this string.  If found, returns
1803       *  the index where it was found.  If not found, returns npos.
1804      */
1805      size_type
1806      find_first_not_of(const _CharT* __s, size_type __pos = 0) const
1807      {
1808	__glibcxx_requires_string(__s);
1809	return this->find_first_not_of(__s, __pos, traits_type::length(__s));
1810      }
1811
1812      /**
1813       *  @brief  Find position of a different character.
1814       *  @param __c  Character to avoid.
1815       *  @param __pos  Index of character to search from (default 0).
1816       *  @return  Index of first occurrence.
1817       *
1818       *  Starting from @a __pos, searches forward for a character
1819       *  other than @a __c within this string.  If found, returns the
1820       *  index where it was found.  If not found, returns npos.
1821      */
1822      size_type
1823      find_first_not_of(_CharT __c, size_type __pos = 0) const;
1824
1825      /**
1826       *  @brief  Find last position of a character not in string.
1827       *  @param __str  String containing characters to avoid.
1828       *  @param __pos  Index of character to search back from (default end).
1829       *  @return  Index of last occurrence.
1830       *
1831       *  Starting from @a __pos, searches backward for a character
1832       *  not contained in @a __str within this string.  If found,
1833       *  returns the index where it was found.  If not found, returns
1834       *  npos.
1835      */
1836      size_type
1837      find_last_not_of(const __versa_string& __str,
1838		       size_type __pos = npos) const
1839      { return this->find_last_not_of(__str.data(), __pos, __str.size()); }
1840
1841      /**
1842       *  @brief  Find last position of a character not in C substring.
1843       *  @param __s  C string containing characters to avoid.
1844       *  @param __pos  Index of character to search back from.
1845       *  @param __n  Number of characters from s to consider.
1846       *  @return  Index of last occurrence.
1847       *
1848       *  Starting from @a __pos, searches backward for a character
1849       *  not contained in the first @a __n characters of @a __s
1850       *  within this string.  If found, returns the index where it
1851       *  was found.  If not found, returns npos.
1852      */
1853      size_type
1854      find_last_not_of(const _CharT* __s, size_type __pos,
1855		       size_type __n) const;
1856      /**
1857       *  @brief  Find last position of a character not in C string.
1858       *  @param __s  C string containing characters to avoid.
1859       *  @param __pos  Index of character to search back from (default end).
1860       *  @return  Index of last occurrence.
1861       *
1862       *  Starting from @a __pos, searches backward for a character
1863       *  not contained in @a __s within this string.  If found,
1864       *  returns the index where it was found.  If not found, returns
1865       *  npos.
1866      */
1867      size_type
1868      find_last_not_of(const _CharT* __s, size_type __pos = npos) const
1869      {
1870	__glibcxx_requires_string(__s);
1871	return this->find_last_not_of(__s, __pos, traits_type::length(__s));
1872      }
1873
1874      /**
1875       *  @brief  Find last position of a different character.
1876       *  @param __c  Character to avoid.
1877       *  @param __pos  Index of character to search back from (default end).
1878       *  @return  Index of last occurrence.
1879       *
1880       *  Starting from @a __pos, searches backward for a character
1881       *  other than @a __c within this string.  If found, returns the
1882       *  index where it was found.  If not found, returns npos.
1883      */
1884      size_type
1885      find_last_not_of(_CharT __c, size_type __pos = npos) const;
1886
1887      /**
1888       *  @brief  Get a substring.
1889       *  @param __pos  Index of first character (default 0).
1890       *  @param __n  Number of characters in substring (default remainder).
1891       *  @return  The new string.
1892       *  @throw  std::out_of_range  If pos > size().
1893       *
1894       *  Construct and return a new string using the @a __n
1895       *  characters starting at @a __pos.  If the string is too
1896       *  short, use the remainder of the characters.  If @a __pos is
1897       *  beyond the end of the string, out_of_range is thrown.
1898      */
1899      __versa_string
1900      substr(size_type __pos = 0, size_type __n = npos) const
1901      {
1902	return __versa_string(*this, _M_check(__pos, "__versa_string::substr"),
1903			      __n);
1904      }
1905
1906      /**
1907       *  @brief  Compare to a string.
1908       *  @param __str  String to compare against.
1909       *  @return  Integer < 0, 0, or > 0.
1910       *
1911       *  Returns an integer < 0 if this string is ordered before @a
1912       *  __str, 0 if their values are equivalent, or > 0 if this
1913       *  string is ordered after @a __str.  Determines the effective
1914       *  length rlen of the strings to compare as the smallest of
1915       *  size() and str.size().  The function then compares the two
1916       *  strings by calling traits::compare(data(), str.data(),rlen).
1917       *  If the result of the comparison is nonzero returns it,
1918       *  otherwise the shorter one is ordered first.
1919      */
1920      int
1921      compare(const __versa_string& __str) const
1922      {
1923	if (this->_M_compare(__str))
1924	  return 0;
1925
1926	const size_type __size = this->size();
1927	const size_type __osize = __str.size();
1928	const size_type __len = std::min(__size, __osize);
1929
1930	int __r = traits_type::compare(this->_M_data(), __str.data(), __len);
1931	if (!__r)
1932	  __r = this->_S_compare(__size, __osize);
1933	return __r;
1934      }
1935
1936      /**
1937       *  @brief  Compare substring to a string.
1938       *  @param __pos  Index of first character of substring.
1939       *  @param __n  Number of characters in substring.
1940       *  @param __str  String to compare against.
1941       *  @return  Integer < 0, 0, or > 0.
1942       *
1943       *  Form the substring of this string from the @a __n characters
1944       *  starting at @a __pos.  Returns an integer < 0 if the
1945       *  substring is ordered before @a __str, 0 if their values are
1946       *  equivalent, or > 0 if the substring is ordered after @a
1947       *  __str.  Determines the effective length rlen of the strings
1948       *  to compare as the smallest of the length of the substring
1949       *  and @a __str.size().  The function then compares the two
1950       *  strings by calling
1951       *  traits::compare(substring.data(),str.data(),rlen).  If the
1952       *  result of the comparison is nonzero returns it, otherwise
1953       *  the shorter one is ordered first.
1954      */
1955      int
1956      compare(size_type __pos, size_type __n,
1957	      const __versa_string& __str) const;
1958
1959      /**
1960       *  @brief  Compare substring to a substring.
1961       *  @param __pos1  Index of first character of substring.
1962       *  @param __n1  Number of characters in substring.
1963       *  @param __str  String to compare against.
1964       *  @param __pos2  Index of first character of substring of str.
1965       *  @param __n2  Number of characters in substring of str.
1966       *  @return  Integer < 0, 0, or > 0.
1967       *
1968       *  Form the substring of this string from the @a __n1
1969       *  characters starting at @a __pos1.  Form the substring of @a
1970       *  __str from the @a __n2 characters starting at @a __pos2.
1971       *  Returns an integer < 0 if this substring is ordered before
1972       *  the substring of @a __str, 0 if their values are equivalent,
1973       *  or > 0 if this substring is ordered after the substring of
1974       *  @a __str.  Determines the effective length rlen of the
1975       *  strings to compare as the smallest of the lengths of the
1976       *  substrings.  The function then compares the two strings by
1977       *  calling
1978       *  traits::compare(substring.data(),str.substr(pos2,n2).data(),rlen).
1979       *  If the result of the comparison is nonzero returns it,
1980       *  otherwise the shorter one is ordered first.
1981      */
1982      int
1983      compare(size_type __pos1, size_type __n1, const __versa_string& __str,
1984	      size_type __pos2, size_type __n2) const;
1985
1986      /**
1987       *  @brief  Compare to a C string.
1988       *  @param __s  C string to compare against.
1989       *  @return  Integer < 0, 0, or > 0.
1990       *
1991       *  Returns an integer < 0 if this string is ordered before @a
1992       *  __s, 0 if their values are equivalent, or > 0 if this string
1993       *  is ordered after @a __s.  Determines the effective length
1994       *  rlen of the strings to compare as the smallest of size() and
1995       *  the length of a string constructed from @a __s.  The
1996       *  function then compares the two strings by calling
1997       *  traits::compare(data(),s,rlen).  If the result of the
1998       *  comparison is nonzero returns it, otherwise the shorter one
1999       *  is ordered first.
2000      */
2001      int
2002      compare(const _CharT* __s) const;
2003
2004      // _GLIBCXX_RESOLVE_LIB_DEFECTS
2005      // 5 String::compare specification questionable
2006      /**
2007       *  @brief  Compare substring to a C string.
2008       *  @param __pos  Index of first character of substring.
2009       *  @param __n1  Number of characters in substring.
2010       *  @param __s  C string to compare against.
2011       *  @return  Integer < 0, 0, or > 0.
2012       *
2013       *  Form the substring of this string from the @a __n1
2014       *  characters starting at @a __pos.  Returns an integer < 0 if
2015       *  the substring is ordered before @a __s, 0 if their values
2016       *  are equivalent, or > 0 if the substring is ordered after @a
2017       *  __s.  Determines the effective length rlen of the strings to
2018       *  compare as the smallest of the length of the substring and
2019       *  the length of a string constructed from @a __s.  The
2020       *  function then compares the two string by calling
2021       *  traits::compare(substring.data(),s,rlen).  If the result of
2022       *  the comparison is nonzero returns it, otherwise the shorter
2023       *  one is ordered first.
2024      */
2025      int
2026      compare(size_type __pos, size_type __n1, const _CharT* __s) const;
2027
2028      /**
2029       *  @brief  Compare substring against a character array.
2030       *  @param __pos1  Index of first character of substring.
2031       *  @param __n1  Number of characters in substring.
2032       *  @param __s  character array to compare against.
2033       *  @param __n2  Number of characters of s.
2034       *  @return  Integer < 0, 0, or > 0.
2035       *
2036       *  Form the substring of this string from the @a __n1
2037       *  characters starting at @a __pos1.  Form a string from the
2038       *  first @a __n2 characters of @a __s.  Returns an integer < 0
2039       *  if this substring is ordered before the string from @a __s,
2040       *  0 if their values are equivalent, or > 0 if this substring
2041       *  is ordered after the string from @a __s.  Determines the
2042       *  effective length rlen of the strings to compare as the
2043       *  smallest of the length of the substring and @a __n2.  The
2044       *  function then compares the two strings by calling
2045       *  traits::compare(substring.data(),s,rlen).  If the result of
2046       *  the comparison is nonzero returns it, otherwise the shorter
2047       *  one is ordered first.
2048       *
2049       *  NB: s must have at least n2 characters, <em>\\0</em> has no special
2050       *  meaning.
2051      */
2052      int
2053      compare(size_type __pos, size_type __n1, const _CharT* __s,
2054	      size_type __n2) const;
2055    };
2056
2057  // operator+
2058  /**
2059   *  @brief  Concatenate two strings.
2060   *  @param __lhs  First string.
2061   *  @param __rhs  Last string.
2062   *  @return  New string with value of @a __lhs followed by @a __rhs.
2063   */
2064  template<typename _CharT, typename _Traits, typename _Alloc,
2065	   template <typename, typename, typename> class _Base>
2066    __versa_string<_CharT, _Traits, _Alloc, _Base>
2067    operator+(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2068	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs);
2069
2070  /**
2071   *  @brief  Concatenate C string and string.
2072   *  @param __lhs  First string.
2073   *  @param __rhs  Last string.
2074   *  @return  New string with value of @a __lhs followed by @a __rhs.
2075   */
2076  template<typename _CharT, typename _Traits, typename _Alloc,
2077	   template <typename, typename, typename> class _Base>
2078    __versa_string<_CharT, _Traits, _Alloc, _Base>
2079    operator+(const _CharT* __lhs,
2080	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs);
2081
2082  /**
2083   *  @brief  Concatenate character and string.
2084   *  @param __lhs  First string.
2085   *  @param __rhs  Last string.
2086   *  @return  New string with @a __lhs followed by @a __rhs.
2087   */
2088  template<typename _CharT, typename _Traits, typename _Alloc,
2089	   template <typename, typename, typename> class _Base>
2090    __versa_string<_CharT, _Traits, _Alloc, _Base>
2091    operator+(_CharT __lhs,
2092	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs);
2093
2094  /**
2095   *  @brief  Concatenate string and C string.
2096   *  @param __lhs  First string.
2097   *  @param __rhs  Last string.
2098   *  @return  New string with @a __lhs followed by @a __rhs.
2099   */
2100  template<typename _CharT, typename _Traits, typename _Alloc,
2101	   template <typename, typename, typename> class _Base>
2102    __versa_string<_CharT, _Traits, _Alloc, _Base>
2103    operator+(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2104	      const _CharT* __rhs);
2105
2106  /**
2107   *  @brief  Concatenate string and character.
2108   *  @param __lhs  First string.
2109   *  @param __rhs  Last string.
2110   *  @return  New string with @a __lhs followed by @a __rhs.
2111   */
2112  template<typename _CharT, typename _Traits, typename _Alloc,
2113	   template <typename, typename, typename> class _Base>
2114    __versa_string<_CharT, _Traits, _Alloc, _Base>
2115    operator+(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2116	      _CharT __rhs);
2117
2118#ifdef __GXX_EXPERIMENTAL_CXX0X__
2119  template<typename _CharT, typename _Traits, typename _Alloc,
2120	   template <typename, typename, typename> class _Base>
2121    inline __versa_string<_CharT, _Traits, _Alloc, _Base>
2122    operator+(__versa_string<_CharT, _Traits, _Alloc, _Base>&& __lhs,
2123	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2124    { return std::move(__lhs.append(__rhs)); }
2125
2126  template<typename _CharT, typename _Traits, typename _Alloc,
2127	   template <typename, typename, typename> class _Base>
2128    inline __versa_string<_CharT, _Traits, _Alloc, _Base>
2129    operator+(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2130	      __versa_string<_CharT, _Traits, _Alloc, _Base>&& __rhs)
2131    { return std::move(__rhs.insert(0, __lhs)); }
2132
2133  template<typename _CharT, typename _Traits, typename _Alloc,
2134	   template <typename, typename, typename> class _Base>
2135    inline __versa_string<_CharT, _Traits, _Alloc, _Base>
2136    operator+(__versa_string<_CharT, _Traits, _Alloc, _Base>&& __lhs,
2137	      __versa_string<_CharT, _Traits, _Alloc, _Base>&& __rhs)
2138    {
2139      const auto __size = __lhs.size() + __rhs.size();
2140      const bool __cond = (__size > __lhs.capacity()
2141			   && __size <= __rhs.capacity());
2142      return __cond ? std::move(__rhs.insert(0, __lhs))
2143	            : std::move(__lhs.append(__rhs));
2144    }
2145
2146  template<typename _CharT, typename _Traits, typename _Alloc,
2147	   template <typename, typename, typename> class _Base>
2148    inline __versa_string<_CharT, _Traits, _Alloc, _Base>
2149    operator+(const _CharT* __lhs,
2150	      __versa_string<_CharT, _Traits, _Alloc, _Base>&& __rhs)
2151    { return std::move(__rhs.insert(0, __lhs)); }
2152
2153  template<typename _CharT, typename _Traits, typename _Alloc,
2154	   template <typename, typename, typename> class _Base>
2155    inline __versa_string<_CharT, _Traits, _Alloc, _Base>
2156    operator+(_CharT __lhs,
2157	      __versa_string<_CharT, _Traits, _Alloc, _Base>&& __rhs)
2158    { return std::move(__rhs.insert(0, 1, __lhs)); }
2159
2160  template<typename _CharT, typename _Traits, typename _Alloc,
2161	   template <typename, typename, typename> class _Base>
2162    inline __versa_string<_CharT, _Traits, _Alloc, _Base>
2163    operator+(__versa_string<_CharT, _Traits, _Alloc, _Base>&& __lhs,
2164	      const _CharT* __rhs)
2165    { return std::move(__lhs.append(__rhs)); }
2166
2167  template<typename _CharT, typename _Traits, typename _Alloc,
2168	   template <typename, typename, typename> class _Base>
2169    inline __versa_string<_CharT, _Traits, _Alloc, _Base>
2170    operator+(__versa_string<_CharT, _Traits, _Alloc, _Base>&& __lhs,
2171	      _CharT __rhs)
2172    { return std::move(__lhs.append(1, __rhs)); }
2173#endif
2174
2175  // operator ==
2176  /**
2177   *  @brief  Test equivalence of two strings.
2178   *  @param __lhs  First string.
2179   *  @param __rhs  Second string.
2180   *  @return  True if @a __lhs.compare(@a __rhs) == 0.  False otherwise.
2181   */
2182  template<typename _CharT, typename _Traits, typename _Alloc,
2183	   template <typename, typename, typename> class _Base>
2184    inline bool
2185    operator==(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2186	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2187    { return __lhs.compare(__rhs) == 0; }
2188
2189  template<typename _CharT,
2190	   template <typename, typename, typename> class _Base>
2191    inline typename __enable_if<std::__is_char<_CharT>::__value, bool>::__type
2192    operator==(const __versa_string<_CharT, std::char_traits<_CharT>,
2193	       std::allocator<_CharT>, _Base>& __lhs,
2194	       const __versa_string<_CharT, std::char_traits<_CharT>,
2195	       std::allocator<_CharT>, _Base>& __rhs)
2196    { return (__lhs.size() == __rhs.size()
2197	      && !std::char_traits<_CharT>::compare(__lhs.data(), __rhs.data(),
2198						    __lhs.size())); }
2199
2200  /**
2201   *  @brief  Test equivalence of C string and string.
2202   *  @param __lhs  C string.
2203   *  @param __rhs  String.
2204   *  @return  True if @a __rhs.compare(@a __lhs) == 0.  False otherwise.
2205   */
2206  template<typename _CharT, typename _Traits, typename _Alloc,
2207	   template <typename, typename, typename> class _Base>
2208    inline bool
2209    operator==(const _CharT* __lhs,
2210	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2211    { return __rhs.compare(__lhs) == 0; }
2212
2213  /**
2214   *  @brief  Test equivalence of string and C string.
2215   *  @param __lhs  String.
2216   *  @param __rhs  C string.
2217   *  @return  True if @a __lhs.compare(@a __rhs) == 0.  False otherwise.
2218   */
2219  template<typename _CharT, typename _Traits, typename _Alloc,
2220	   template <typename, typename, typename> class _Base>
2221    inline bool
2222    operator==(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2223	       const _CharT* __rhs)
2224    { return __lhs.compare(__rhs) == 0; }
2225
2226  // operator !=
2227  /**
2228   *  @brief  Test difference of two strings.
2229   *  @param __lhs  First string.
2230   *  @param __rhs  Second string.
2231   *  @return  True if @a __lhs.compare(@a __rhs) != 0.  False otherwise.
2232   */
2233  template<typename _CharT, typename _Traits, typename _Alloc,
2234	   template <typename, typename, typename> class _Base>
2235    inline bool
2236    operator!=(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2237	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2238    { return !(__lhs == __rhs); }
2239
2240  /**
2241   *  @brief  Test difference of C string and string.
2242   *  @param __lhs  C string.
2243   *  @param __rhs  String.
2244   *  @return  True if @a __rhs.compare(@a __lhs) != 0.  False otherwise.
2245   */
2246  template<typename _CharT, typename _Traits, typename _Alloc,
2247	   template <typename, typename, typename> class _Base>
2248    inline bool
2249    operator!=(const _CharT* __lhs,
2250	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2251    { return !(__lhs == __rhs); }
2252
2253  /**
2254   *  @brief  Test difference of string and C string.
2255   *  @param __lhs  String.
2256   *  @param __rhs  C string.
2257   *  @return  True if @a __lhs.compare(@a __rhs) != 0.  False otherwise.
2258   */
2259  template<typename _CharT, typename _Traits, typename _Alloc,
2260	   template <typename, typename, typename> class _Base>
2261    inline bool
2262    operator!=(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2263	       const _CharT* __rhs)
2264    { return !(__lhs == __rhs); }
2265
2266  // operator <
2267  /**
2268   *  @brief  Test if string precedes string.
2269   *  @param __lhs  First string.
2270   *  @param __rhs  Second string.
2271   *  @return  True if @a __lhs precedes @a __rhs.  False otherwise.
2272   */
2273  template<typename _CharT, typename _Traits, typename _Alloc,
2274	   template <typename, typename, typename> class _Base>
2275    inline bool
2276    operator<(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2277	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2278    { return __lhs.compare(__rhs) < 0; }
2279
2280  /**
2281   *  @brief  Test if string precedes C string.
2282   *  @param __lhs  String.
2283   *  @param __rhs  C string.
2284   *  @return  True if @a __lhs precedes @a __rhs.  False otherwise.
2285   */
2286  template<typename _CharT, typename _Traits, typename _Alloc,
2287	   template <typename, typename, typename> class _Base>
2288    inline bool
2289    operator<(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2290	      const _CharT* __rhs)
2291    { return __lhs.compare(__rhs) < 0; }
2292
2293  /**
2294   *  @brief  Test if C string precedes string.
2295   *  @param __lhs  C string.
2296   *  @param __rhs  String.
2297   *  @return  True if @a __lhs precedes @a __rhs.  False otherwise.
2298   */
2299  template<typename _CharT, typename _Traits, typename _Alloc,
2300	   template <typename, typename, typename> class _Base>
2301    inline bool
2302    operator<(const _CharT* __lhs,
2303	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2304    { return __rhs.compare(__lhs) > 0; }
2305
2306  // operator >
2307  /**
2308   *  @brief  Test if string follows string.
2309   *  @param __lhs  First string.
2310   *  @param __rhs  Second string.
2311   *  @return  True if @a __lhs follows @a __rhs.  False otherwise.
2312   */
2313  template<typename _CharT, typename _Traits, typename _Alloc,
2314	   template <typename, typename, typename> class _Base>
2315    inline bool
2316    operator>(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2317	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2318    { return __lhs.compare(__rhs) > 0; }
2319
2320  /**
2321   *  @brief  Test if string follows C string.
2322   *  @param __lhs  String.
2323   *  @param __rhs  C string.
2324   *  @return  True if @a __lhs follows @a __rhs.  False otherwise.
2325   */
2326  template<typename _CharT, typename _Traits, typename _Alloc,
2327	   template <typename, typename, typename> class _Base>
2328    inline bool
2329    operator>(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2330	      const _CharT* __rhs)
2331    { return __lhs.compare(__rhs) > 0; }
2332
2333  /**
2334   *  @brief  Test if C string follows string.
2335   *  @param __lhs  C string.
2336   *  @param __rhs  String.
2337   *  @return  True if @a __lhs follows @a __rhs.  False otherwise.
2338   */
2339  template<typename _CharT, typename _Traits, typename _Alloc,
2340	   template <typename, typename, typename> class _Base>
2341    inline bool
2342    operator>(const _CharT* __lhs,
2343	      const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2344    { return __rhs.compare(__lhs) < 0; }
2345
2346  // operator <=
2347  /**
2348   *  @brief  Test if string doesn't follow string.
2349   *  @param __lhs  First string.
2350   *  @param __rhs  Second string.
2351   *  @return  True if @a __lhs doesn't follow @a __rhs.  False otherwise.
2352   */
2353  template<typename _CharT, typename _Traits, typename _Alloc,
2354	   template <typename, typename, typename> class _Base>
2355    inline bool
2356    operator<=(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2357	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2358    { return __lhs.compare(__rhs) <= 0; }
2359
2360  /**
2361   *  @brief  Test if string doesn't follow C string.
2362   *  @param __lhs  String.
2363   *  @param __rhs  C string.
2364   *  @return  True if @a __lhs doesn't follow @a __rhs.  False otherwise.
2365   */
2366  template<typename _CharT, typename _Traits, typename _Alloc,
2367	   template <typename, typename, typename> class _Base>
2368    inline bool
2369    operator<=(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2370	       const _CharT* __rhs)
2371    { return __lhs.compare(__rhs) <= 0; }
2372
2373  /**
2374   *  @brief  Test if C string doesn't follow string.
2375   *  @param __lhs  C string.
2376   *  @param __rhs  String.
2377   *  @return  True if @a __lhs doesn't follow @a __rhs.  False otherwise.
2378   */
2379  template<typename _CharT, typename _Traits, typename _Alloc,
2380	   template <typename, typename, typename> class _Base>
2381    inline bool
2382    operator<=(const _CharT* __lhs,
2383	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2384    { return __rhs.compare(__lhs) >= 0; }
2385
2386  // operator >=
2387  /**
2388   *  @brief  Test if string doesn't precede string.
2389   *  @param __lhs  First string.
2390   *  @param __rhs  Second string.
2391   *  @return  True if @a __lhs doesn't precede @a __rhs.  False otherwise.
2392   */
2393  template<typename _CharT, typename _Traits, typename _Alloc,
2394	   template <typename, typename, typename> class _Base>
2395    inline bool
2396    operator>=(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2397	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2398    { return __lhs.compare(__rhs) >= 0; }
2399
2400  /**
2401   *  @brief  Test if string doesn't precede C string.
2402   *  @param __lhs  String.
2403   *  @param __rhs  C string.
2404   *  @return  True if @a __lhs doesn't precede @a __rhs.  False otherwise.
2405   */
2406  template<typename _CharT, typename _Traits, typename _Alloc,
2407	   template <typename, typename, typename> class _Base>
2408    inline bool
2409    operator>=(const __versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2410	       const _CharT* __rhs)
2411    { return __lhs.compare(__rhs) >= 0; }
2412
2413  /**
2414   *  @brief  Test if C string doesn't precede string.
2415   *  @param __lhs  C string.
2416   *  @param __rhs  String.
2417   *  @return  True if @a __lhs doesn't precede @a __rhs.  False otherwise.
2418   */
2419  template<typename _CharT, typename _Traits, typename _Alloc,
2420	   template <typename, typename, typename> class _Base>
2421    inline bool
2422    operator>=(const _CharT* __lhs,
2423	       const __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2424    { return __rhs.compare(__lhs) <= 0; }
2425
2426  /**
2427   *  @brief  Swap contents of two strings.
2428   *  @param __lhs  First string.
2429   *  @param __rhs  Second string.
2430   *
2431   *  Exchanges the contents of @a __lhs and @a __rhs in constant time.
2432   */
2433  template<typename _CharT, typename _Traits, typename _Alloc,
2434	   template <typename, typename, typename> class _Base>
2435    inline void
2436    swap(__versa_string<_CharT, _Traits, _Alloc, _Base>& __lhs,
2437	 __versa_string<_CharT, _Traits, _Alloc, _Base>& __rhs)
2438    { __lhs.swap(__rhs); }
2439
2440_GLIBCXX_END_NAMESPACE_VERSION
2441} // namespace
2442
2443namespace std _GLIBCXX_VISIBILITY(default)
2444{
2445_GLIBCXX_BEGIN_NAMESPACE_VERSION
2446
2447  /**
2448   *  @brief  Read stream into a string.
2449   *  @param __is  Input stream.
2450   *  @param __str  Buffer to store into.
2451   *  @return  Reference to the input stream.
2452   *
2453   *  Stores characters from @a __is into @a __str until whitespace is
2454   *  found, the end of the stream is encountered, or str.max_size()
2455   *  is reached.  If is.width() is non-zero, that is the limit on the
2456   *  number of characters stored into @a __str.  Any previous
2457   *  contents of @a __str are erased.
2458   */
2459  template<typename _CharT, typename _Traits, typename _Alloc,
2460           template <typename, typename, typename> class _Base>
2461    basic_istream<_CharT, _Traits>&
2462    operator>>(basic_istream<_CharT, _Traits>& __is,
2463	       __gnu_cxx::__versa_string<_CharT, _Traits,
2464	                                 _Alloc, _Base>& __str);
2465
2466  /**
2467   *  @brief  Write string to a stream.
2468   *  @param __os  Output stream.
2469   *  @param __str  String to write out.
2470   *  @return  Reference to the output stream.
2471   *
2472   *  Output characters of @a __str into os following the same rules as for
2473   *  writing a C string.
2474   */
2475  template<typename _CharT, typename _Traits, typename _Alloc,
2476	   template <typename, typename, typename> class _Base>
2477    inline basic_ostream<_CharT, _Traits>&
2478    operator<<(basic_ostream<_CharT, _Traits>& __os,
2479	       const __gnu_cxx::__versa_string<_CharT, _Traits, _Alloc,
2480	       _Base>& __str)
2481    {
2482      // _GLIBCXX_RESOLVE_LIB_DEFECTS
2483      // 586. string inserter not a formatted function
2484      return __ostream_insert(__os, __str.data(), __str.size());
2485    }
2486
2487  /**
2488   *  @brief  Read a line from stream into a string.
2489   *  @param __is  Input stream.
2490   *  @param __str  Buffer to store into.
2491   *  @param __delim  Character marking end of line.
2492   *  @return  Reference to the input stream.
2493   *
2494   *  Stores characters from @a __is into @a __str until @a __delim is
2495   *  found, the end of the stream is encountered, or str.max_size()
2496   *  is reached.  If is.width() is non-zero, that is the limit on the
2497   *  number of characters stored into @a __str.  Any previous
2498   *  contents of @a __str are erased.  If @a delim was encountered,
2499   *  it is extracted but not stored into @a __str.
2500   */
2501  template<typename _CharT, typename _Traits, typename _Alloc,
2502           template <typename, typename, typename> class _Base>
2503    basic_istream<_CharT, _Traits>&
2504    getline(basic_istream<_CharT, _Traits>& __is,
2505	    __gnu_cxx::__versa_string<_CharT, _Traits, _Alloc, _Base>& __str,
2506	    _CharT __delim);
2507
2508  /**
2509   *  @brief  Read a line from stream into a string.
2510   *  @param __is  Input stream.
2511   *  @param __str  Buffer to store into.
2512   *  @return  Reference to the input stream.
2513   *
2514   *  Stores characters from is into @a __str until &apos;\n&apos; is
2515   *  found, the end of the stream is encountered, or str.max_size()
2516   *  is reached.  If is.width() is non-zero, that is the limit on the
2517   *  number of characters stored into @a __str.  Any previous
2518   *  contents of @a __str are erased.  If end of line was
2519   *  encountered, it is extracted but not stored into @a __str.
2520   */
2521  template<typename _CharT, typename _Traits, typename _Alloc,
2522           template <typename, typename, typename> class _Base>
2523    inline basic_istream<_CharT, _Traits>&
2524    getline(basic_istream<_CharT, _Traits>& __is,
2525	    __gnu_cxx::__versa_string<_CharT, _Traits, _Alloc, _Base>& __str)
2526    { return getline(__is, __str, __is.widen('\n')); }
2527
2528_GLIBCXX_END_NAMESPACE_VERSION
2529} // namespace
2530
2531#if (defined(__GXX_EXPERIMENTAL_CXX0X__) && defined(_GLIBCXX_USE_C99))
2532
2533#include <ext/string_conversions.h>
2534
2535namespace __gnu_cxx _GLIBCXX_VISIBILITY(default)
2536{
2537_GLIBCXX_BEGIN_NAMESPACE_VERSION
2538
2539  // 21.4 Numeric Conversions [string.conversions].
2540  inline int
2541  stoi(const __vstring& __str, std::size_t* __idx = 0, int __base = 10)
2542  { return __gnu_cxx::__stoa<long, int>(&std::strtol, "stoi", __str.c_str(),
2543					__idx, __base); }
2544
2545  inline long
2546  stol(const __vstring& __str, std::size_t* __idx = 0, int __base = 10)
2547  { return __gnu_cxx::__stoa(&std::strtol, "stol", __str.c_str(),
2548			     __idx, __base); }
2549
2550  inline unsigned long
2551  stoul(const __vstring& __str, std::size_t* __idx = 0, int __base = 10)
2552  { return __gnu_cxx::__stoa(&std::strtoul, "stoul", __str.c_str(),
2553			     __idx, __base); }
2554
2555  inline long long
2556  stoll(const __vstring& __str, std::size_t* __idx = 0,	int __base = 10)
2557  { return __gnu_cxx::__stoa(&std::strtoll, "stoll", __str.c_str(),
2558			     __idx, __base); }
2559
2560  inline unsigned long long
2561  stoull(const __vstring& __str, std::size_t* __idx, int __base = 10)
2562  { return __gnu_cxx::__stoa(&std::strtoull, "stoull", __str.c_str(),
2563			     __idx, __base); }
2564
2565  // NB: strtof vs strtod.
2566  inline float
2567  stof(const __vstring& __str, std::size_t* __idx = 0)
2568  { return __gnu_cxx::__stoa(&std::strtof, "stof", __str.c_str(), __idx); }
2569
2570  inline double
2571  stod(const __vstring& __str, std::size_t* __idx = 0)
2572  { return __gnu_cxx::__stoa(&std::strtod, "stod", __str.c_str(), __idx); }
2573
2574  inline long double
2575  stold(const __vstring& __str, std::size_t* __idx = 0)
2576  { return __gnu_cxx::__stoa(&std::strtold, "stold", __str.c_str(), __idx); }
2577
2578  // NB: (v)snprintf vs sprintf.
2579
2580  // DR 1261.
2581  inline __vstring
2582  to_string(int __val)
2583  { return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf, 4 * sizeof(int),
2584					      "%d", __val); }
2585
2586  inline __vstring
2587  to_string(unsigned __val)
2588  { return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf,
2589					      4 * sizeof(unsigned),
2590					      "%u", __val); }
2591
2592  inline __vstring
2593  to_string(long __val)
2594  { return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf,
2595					      4 * sizeof(long),
2596					      "%ld", __val); }
2597
2598  inline __vstring
2599  to_string(unsigned long __val)
2600  { return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf,
2601					      4 * sizeof(unsigned long),
2602					      "%lu", __val); }
2603
2604
2605  inline __vstring
2606  to_string(long long __val)
2607  { return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf,
2608					      4 * sizeof(long long),
2609					      "%lld", __val); }
2610
2611  inline __vstring
2612  to_string(unsigned long long __val)
2613  { return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf,
2614					      4 * sizeof(unsigned long long),
2615					      "%llu", __val); }
2616
2617  inline __vstring
2618  to_string(float __val)
2619  {
2620    const int __n = __numeric_traits<float>::__max_exponent10 + 20;
2621    return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf, __n,
2622					      "%f", __val);
2623  }
2624
2625  inline __vstring
2626  to_string(double __val)
2627  {
2628    const int __n = __numeric_traits<double>::__max_exponent10 + 20;
2629    return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf, __n,
2630					      "%f", __val);
2631  }
2632
2633  inline __vstring
2634  to_string(long double __val)
2635  {
2636    const int __n = __numeric_traits<long double>::__max_exponent10 + 20;
2637    return __gnu_cxx::__to_xstring<__vstring>(&std::vsnprintf, __n,
2638					      "%Lf", __val);
2639  }
2640
2641#ifdef _GLIBCXX_USE_WCHAR_T
2642  inline int
2643  stoi(const __wvstring& __str, std::size_t* __idx = 0, int __base = 10)
2644  { return __gnu_cxx::__stoa<long, int>(&std::wcstol, "stoi", __str.c_str(),
2645					__idx, __base); }
2646
2647  inline long
2648  stol(const __wvstring& __str, std::size_t* __idx = 0, int __base = 10)
2649  { return __gnu_cxx::__stoa(&std::wcstol, "stol", __str.c_str(),
2650			     __idx, __base); }
2651
2652  inline unsigned long
2653  stoul(const __wvstring& __str, std::size_t* __idx = 0, int __base = 10)
2654  { return __gnu_cxx::__stoa(&std::wcstoul, "stoul", __str.c_str(),
2655			     __idx, __base); }
2656
2657  inline long long
2658  stoll(const __wvstring& __str, std::size_t* __idx = 0, int __base = 10)
2659  { return __gnu_cxx::__stoa(&std::wcstoll, "stoll", __str.c_str(),
2660			     __idx, __base); }
2661
2662  inline unsigned long long
2663  stoull(const __wvstring& __str, std::size_t* __idx = 0, int __base = 10)
2664  { return __gnu_cxx::__stoa(&std::wcstoull, "stoull", __str.c_str(),
2665			     __idx, __base); }
2666
2667  // NB: wcstof vs wcstod.
2668  inline float
2669  stof(const __wvstring& __str, std::size_t* __idx = 0)
2670  { return __gnu_cxx::__stoa(&std::wcstof, "stof", __str.c_str(), __idx); }
2671
2672  inline double
2673  stod(const __wvstring& __str, std::size_t* __idx = 0)
2674  { return __gnu_cxx::__stoa(&std::wcstod, "stod", __str.c_str(), __idx); }
2675
2676  inline long double
2677  stold(const __wvstring& __str, std::size_t* __idx = 0)
2678  { return __gnu_cxx::__stoa(&std::wcstold, "stold", __str.c_str(), __idx); }
2679
2680#ifndef _GLIBCXX_HAVE_BROKEN_VSWPRINTF
2681  // DR 1261.
2682  inline __wvstring
2683  to_wstring(int __val)
2684  { return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf,
2685					       4 * sizeof(int),
2686					       L"%d", __val); }
2687
2688  inline __wvstring
2689  to_wstring(unsigned __val)
2690  { return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf,
2691					       4 * sizeof(unsigned),
2692					       L"%u", __val); }
2693
2694  inline __wvstring
2695  to_wstring(long __val)
2696  { return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf,
2697					       4 * sizeof(long),
2698					       L"%ld", __val); }
2699
2700  inline __wvstring
2701  to_wstring(unsigned long __val)
2702  { return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf,
2703					       4 * sizeof(unsigned long),
2704					       L"%lu", __val); }
2705
2706  inline __wvstring
2707  to_wstring(long long __val)
2708  { return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf,
2709					       4 * sizeof(long long),
2710					       L"%lld", __val); }
2711
2712  inline __wvstring
2713  to_wstring(unsigned long long __val)
2714  { return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf,
2715					       4 * sizeof(unsigned long long),
2716					       L"%llu", __val); }
2717
2718  inline __wvstring
2719  to_wstring(float __val)
2720  {
2721    const int __n = __numeric_traits<float>::__max_exponent10 + 20;
2722    return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf, __n,
2723					       L"%f", __val);
2724  }
2725
2726  inline __wvstring
2727  to_wstring(double __val)
2728  {
2729    const int __n = __numeric_traits<double>::__max_exponent10 + 20;
2730    return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf, __n,
2731					       L"%f", __val);
2732  }
2733
2734  inline __wvstring
2735  to_wstring(long double __val)
2736  {
2737    const int __n = __numeric_traits<long double>::__max_exponent10 + 20;
2738    return __gnu_cxx::__to_xstring<__wvstring>(&std::vswprintf, __n,
2739					       L"%Lf", __val);
2740  }
2741#endif
2742#endif
2743
2744_GLIBCXX_END_NAMESPACE_VERSION
2745} // namespace
2746
2747#endif
2748
2749#ifdef __GXX_EXPERIMENTAL_CXX0X__
2750
2751#include <bits/functional_hash.h>
2752
2753namespace std _GLIBCXX_VISIBILITY(default)
2754{
2755_GLIBCXX_BEGIN_NAMESPACE_VERSION
2756
2757  /// std::hash specialization for __vstring.
2758  template<>
2759    struct hash<__gnu_cxx::__vstring>
2760    : public __hash_base<size_t, __gnu_cxx::__vstring>
2761    {
2762      size_t
2763      operator()(const __gnu_cxx::__vstring& __s) const noexcept
2764      { return std::_Hash_impl::hash(__s.data(), __s.length()); }
2765    };
2766
2767#ifdef _GLIBCXX_USE_WCHAR_T
2768  /// std::hash specialization for __wvstring.
2769  template<>
2770    struct hash<__gnu_cxx::__wvstring>
2771    : public __hash_base<size_t, __gnu_cxx::__wvstring>
2772    {
2773      size_t
2774      operator()(const __gnu_cxx::__wvstring& __s) const noexcept
2775      { return std::_Hash_impl::hash(__s.data(),
2776                                     __s.length() * sizeof(wchar_t)); }
2777    };
2778#endif
2779
2780#ifdef _GLIBCXX_USE_C99_STDINT_TR1
2781  /// std::hash specialization for __u16vstring.
2782  template<>
2783    struct hash<__gnu_cxx::__u16vstring>
2784    : public __hash_base<size_t, __gnu_cxx::__u16vstring>
2785    {
2786      size_t
2787      operator()(const __gnu_cxx::__u16vstring& __s) const noexcept
2788      { return std::_Hash_impl::hash(__s.data(),
2789                                     __s.length() * sizeof(char16_t)); }
2790    };
2791
2792  /// std::hash specialization for __u32vstring.
2793  template<>
2794    struct hash<__gnu_cxx::__u32vstring>
2795    : public __hash_base<size_t, __gnu_cxx::__u32vstring>
2796    {
2797      size_t
2798      operator()(const __gnu_cxx::__u32vstring& __s) const noexcept
2799      { return std::_Hash_impl::hash(__s.data(),
2800                                     __s.length() * sizeof(char32_t)); }
2801    };
2802#endif
2803
2804_GLIBCXX_END_NAMESPACE_VERSION
2805} // namespace
2806
2807#endif /* __GXX_EXPERIMENTAL_CXX0X__ */
2808
2809#include "vstring.tcc"
2810
2811#if __google_stl_debug_string && !defined(_GLIBCXX_DEBUG)
2812// Undo our defines, so they don't affect anything else.
2813# undef _GLIBCXX_DEBUG_ASSERT
2814# undef _GLIBCXX_DEBUG_PEDASSERT
2815# define _GLIBCXX_DEBUG_ASSERT(_Condition)
2816# define _GLIBCXX_DEBUG_PEDASSERT(_Condition)
2817#endif
2818
2819#endif /* _VSTRING_H */
2820