Merge from mainline (165734:167278).
[official-gcc/graphite-test-results.git] / libstdc++-v3 / include / bits / basic_string.h
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1 // Components for manipulating sequences of characters -*- C++ -*-
3 // Copyright (C) 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005,
4 // 2006, 2007, 2008, 2009, 2010
5 // Free Software Foundation, Inc.
6 //
7 // This file is part of the GNU ISO C++ Library. This library is free
8 // software; you can redistribute it and/or modify it under the
9 // terms of the GNU General Public License as published by the
10 // Free Software Foundation; either version 3, or (at your option)
11 // any later version.
13 // This library is distributed in the hope that it will be useful,
14 // but WITHOUT ANY WARRANTY; without even the implied warranty of
15 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 // GNU General Public License for more details.
18 // Under Section 7 of GPL version 3, you are granted additional
19 // permissions described in the GCC Runtime Library Exception, version
20 // 3.1, as published by the Free Software Foundation.
22 // You should have received a copy of the GNU General Public License and
23 // a copy of the GCC Runtime Library Exception along with this program;
24 // see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
25 // <http://www.gnu.org/licenses/>.
27 /** @file basic_string.h
28 * This is an internal header file, included by other library headers.
29 * You should not attempt to use it directly.
33 // ISO C++ 14882: 21 Strings library
36 #ifndef _BASIC_STRING_H
37 #define _BASIC_STRING_H 1
39 #pragma GCC system_header
41 #include <ext/atomicity.h>
42 #include <debug/debug.h>
43 #include <initializer_list>
45 _GLIBCXX_BEGIN_NAMESPACE(std)
47 /**
48 * @class basic_string basic_string.h <string>
49 * @brief Managing sequences of characters and character-like objects.
51 * @ingroup strings
52 * @ingroup sequences
54 * Meets the requirements of a <a href="tables.html#65">container</a>, a
55 * <a href="tables.html#66">reversible container</a>, and a
56 * <a href="tables.html#67">sequence</a>. Of the
57 * <a href="tables.html#68">optional sequence requirements</a>, only
58 * @c push_back, @c at, and @c %array access are supported.
60 * @doctodo
63 * Documentation? What's that?
64 * Nathan Myers <ncm@cantrip.org>.
66 * A string looks like this:
68 * @code
69 * [_Rep]
70 * _M_length
71 * [basic_string<char_type>] _M_capacity
72 * _M_dataplus _M_refcount
73 * _M_p ----------------> unnamed array of char_type
74 * @endcode
76 * Where the _M_p points to the first character in the string, and
77 * you cast it to a pointer-to-_Rep and subtract 1 to get a
78 * pointer to the header.
80 * This approach has the enormous advantage that a string object
81 * requires only one allocation. All the ugliness is confined
82 * within a single %pair of inline functions, which each compile to
83 * a single @a add instruction: _Rep::_M_data(), and
84 * string::_M_rep(); and the allocation function which gets a
85 * block of raw bytes and with room enough and constructs a _Rep
86 * object at the front.
88 * The reason you want _M_data pointing to the character %array and
89 * not the _Rep is so that the debugger can see the string
90 * contents. (Probably we should add a non-inline member to get
91 * the _Rep for the debugger to use, so users can check the actual
92 * string length.)
94 * Note that the _Rep object is a POD so that you can have a
95 * static <em>empty string</em> _Rep object already @a constructed before
96 * static constructors have run. The reference-count encoding is
97 * chosen so that a 0 indicates one reference, so you never try to
98 * destroy the empty-string _Rep object.
100 * All but the last paragraph is considered pretty conventional
101 * for a C++ string implementation.
103 // 21.3 Template class basic_string
104 template<typename _CharT, typename _Traits, typename _Alloc>
105 class basic_string
107 typedef typename _Alloc::template rebind<_CharT>::other _CharT_alloc_type;
109 // Types:
110 public:
111 typedef _Traits traits_type;
112 typedef typename _Traits::char_type value_type;
113 typedef _Alloc allocator_type;
114 typedef typename _CharT_alloc_type::size_type size_type;
115 typedef typename _CharT_alloc_type::difference_type difference_type;
116 typedef typename _CharT_alloc_type::reference reference;
117 typedef typename _CharT_alloc_type::const_reference const_reference;
118 typedef typename _CharT_alloc_type::pointer pointer;
119 typedef typename _CharT_alloc_type::const_pointer const_pointer;
120 typedef __gnu_cxx::__normal_iterator<pointer, basic_string> iterator;
121 typedef __gnu_cxx::__normal_iterator<const_pointer, basic_string>
122 const_iterator;
123 typedef std::reverse_iterator<const_iterator> const_reverse_iterator;
124 typedef std::reverse_iterator<iterator> reverse_iterator;
126 private:
127 // _Rep: string representation
128 // Invariants:
129 // 1. String really contains _M_length + 1 characters: due to 21.3.4
130 // must be kept null-terminated.
131 // 2. _M_capacity >= _M_length
132 // Allocated memory is always (_M_capacity + 1) * sizeof(_CharT).
133 // 3. _M_refcount has three states:
134 // -1: leaked, one reference, no ref-copies allowed, non-const.
135 // 0: one reference, non-const.
136 // n>0: n + 1 references, operations require a lock, const.
137 // 4. All fields==0 is an empty string, given the extra storage
138 // beyond-the-end for a null terminator; thus, the shared
139 // empty string representation needs no constructor.
141 struct _Rep_base
143 size_type _M_length;
144 size_type _M_capacity;
145 _Atomic_word _M_refcount;
148 struct _Rep : _Rep_base
150 // Types:
151 typedef typename _Alloc::template rebind<char>::other _Raw_bytes_alloc;
153 // (Public) Data members:
155 // The maximum number of individual char_type elements of an
156 // individual string is determined by _S_max_size. This is the
157 // value that will be returned by max_size(). (Whereas npos
158 // is the maximum number of bytes the allocator can allocate.)
159 // If one was to divvy up the theoretical largest size string,
160 // with a terminating character and m _CharT elements, it'd
161 // look like this:
162 // npos = sizeof(_Rep) + (m * sizeof(_CharT)) + sizeof(_CharT)
163 // Solving for m:
164 // m = ((npos - sizeof(_Rep))/sizeof(CharT)) - 1
165 // In addition, this implementation quarters this amount.
166 static const size_type _S_max_size;
167 static const _CharT _S_terminal;
169 // The following storage is init'd to 0 by the linker, resulting
170 // (carefully) in an empty string with one reference.
171 static size_type _S_empty_rep_storage[];
173 static _Rep&
174 _S_empty_rep()
176 // NB: Mild hack to avoid strict-aliasing warnings. Note that
177 // _S_empty_rep_storage is never modified and the punning should
178 // be reasonably safe in this case.
179 void* __p = reinterpret_cast<void*>(&_S_empty_rep_storage);
180 return *reinterpret_cast<_Rep*>(__p);
183 bool
184 _M_is_leaked() const
185 { return this->_M_refcount < 0; }
187 bool
188 _M_is_shared() const
189 { return this->_M_refcount > 0; }
191 void
192 _M_set_leaked()
193 { this->_M_refcount = -1; }
195 void
196 _M_set_sharable()
197 { this->_M_refcount = 0; }
199 void
200 _M_set_length_and_sharable(size_type __n)
202 #ifndef _GLIBCXX_FULLY_DYNAMIC_STRING
203 if (__builtin_expect(this != &_S_empty_rep(), false))
204 #endif
206 this->_M_set_sharable(); // One reference.
207 this->_M_length = __n;
208 traits_type::assign(this->_M_refdata()[__n], _S_terminal);
209 // grrr. (per 21.3.4)
210 // You cannot leave those LWG people alone for a second.
214 _CharT*
215 _M_refdata() throw()
216 { return reinterpret_cast<_CharT*>(this + 1); }
218 _CharT*
219 _M_grab(const _Alloc& __alloc1, const _Alloc& __alloc2)
221 return (!_M_is_leaked() && __alloc1 == __alloc2)
222 ? _M_refcopy() : _M_clone(__alloc1);
225 // Create & Destroy
226 static _Rep*
227 _S_create(size_type, size_type, const _Alloc&);
229 void
230 _M_dispose(const _Alloc& __a)
232 #ifndef _GLIBCXX_FULLY_DYNAMIC_STRING
233 if (__builtin_expect(this != &_S_empty_rep(), false))
234 #endif
236 // Be race-detector-friendly. For more info see bits/c++config.
237 _GLIBCXX_SYNCHRONIZATION_HAPPENS_BEFORE(&this->_M_refcount);
238 if (__gnu_cxx::__exchange_and_add_dispatch(&this->_M_refcount,
239 -1) <= 0)
241 _GLIBCXX_SYNCHRONIZATION_HAPPENS_AFTER(&this->_M_refcount);
242 _M_destroy(__a);
245 } // XXX MT
247 void
248 _M_destroy(const _Alloc&) throw();
250 _CharT*
251 _M_refcopy() throw()
253 #ifndef _GLIBCXX_FULLY_DYNAMIC_STRING
254 if (__builtin_expect(this != &_S_empty_rep(), false))
255 #endif
256 __gnu_cxx::__atomic_add_dispatch(&this->_M_refcount, 1);
257 return _M_refdata();
258 } // XXX MT
260 _CharT*
261 _M_clone(const _Alloc&, size_type __res = 0);
264 // Use empty-base optimization: http://www.cantrip.org/emptyopt.html
265 struct _Alloc_hider : _Alloc
267 _Alloc_hider(_CharT* __dat, const _Alloc& __a)
268 : _Alloc(__a), _M_p(__dat) { }
270 _CharT* _M_p; // The actual data.
273 public:
274 // Data Members (public):
275 // NB: This is an unsigned type, and thus represents the maximum
276 // size that the allocator can hold.
277 /// Value returned by various member functions when they fail.
278 static const size_type npos = static_cast<size_type>(-1);
280 private:
281 // Data Members (private):
282 mutable _Alloc_hider _M_dataplus;
284 _CharT*
285 _M_data() const
286 { return _M_dataplus._M_p; }
288 _CharT*
289 _M_data(_CharT* __p)
290 { return (_M_dataplus._M_p = __p); }
292 _Rep*
293 _M_rep() const
294 { return &((reinterpret_cast<_Rep*> (_M_data()))[-1]); }
296 // For the internal use we have functions similar to `begin'/`end'
297 // but they do not call _M_leak.
298 iterator
299 _M_ibegin() const
300 { return iterator(_M_data()); }
302 iterator
303 _M_iend() const
304 { return iterator(_M_data() + this->size()); }
306 void
307 _M_leak() // for use in begin() & non-const op[]
309 if (!_M_rep()->_M_is_leaked())
310 _M_leak_hard();
313 size_type
314 _M_check(size_type __pos, const char* __s) const
316 if (__pos > this->size())
317 __throw_out_of_range(__N(__s));
318 return __pos;
321 void
322 _M_check_length(size_type __n1, size_type __n2, const char* __s) const
324 if (this->max_size() - (this->size() - __n1) < __n2)
325 __throw_length_error(__N(__s));
328 // NB: _M_limit doesn't check for a bad __pos value.
329 size_type
330 _M_limit(size_type __pos, size_type __off) const
332 const bool __testoff = __off < this->size() - __pos;
333 return __testoff ? __off : this->size() - __pos;
336 // True if _Rep and source do not overlap.
337 bool
338 _M_disjunct(const _CharT* __s) const
340 return (less<const _CharT*>()(__s, _M_data())
341 || less<const _CharT*>()(_M_data() + this->size(), __s));
344 // When __n = 1 way faster than the general multichar
345 // traits_type::copy/move/assign.
346 static void
347 _M_copy(_CharT* __d, const _CharT* __s, size_type __n)
349 if (__n == 1)
350 traits_type::assign(*__d, *__s);
351 else
352 traits_type::copy(__d, __s, __n);
355 static void
356 _M_move(_CharT* __d, const _CharT* __s, size_type __n)
358 if (__n == 1)
359 traits_type::assign(*__d, *__s);
360 else
361 traits_type::move(__d, __s, __n);
364 static void
365 _M_assign(_CharT* __d, size_type __n, _CharT __c)
367 if (__n == 1)
368 traits_type::assign(*__d, __c);
369 else
370 traits_type::assign(__d, __n, __c);
373 // _S_copy_chars is a separate template to permit specialization
374 // to optimize for the common case of pointers as iterators.
375 template<class _Iterator>
376 static void
377 _S_copy_chars(_CharT* __p, _Iterator __k1, _Iterator __k2)
379 for (; __k1 != __k2; ++__k1, ++__p)
380 traits_type::assign(*__p, *__k1); // These types are off.
383 static void
384 _S_copy_chars(_CharT* __p, iterator __k1, iterator __k2)
385 { _S_copy_chars(__p, __k1.base(), __k2.base()); }
387 static void
388 _S_copy_chars(_CharT* __p, const_iterator __k1, const_iterator __k2)
389 { _S_copy_chars(__p, __k1.base(), __k2.base()); }
391 static void
392 _S_copy_chars(_CharT* __p, _CharT* __k1, _CharT* __k2)
393 { _M_copy(__p, __k1, __k2 - __k1); }
395 static void
396 _S_copy_chars(_CharT* __p, const _CharT* __k1, const _CharT* __k2)
397 { _M_copy(__p, __k1, __k2 - __k1); }
399 static int
400 _S_compare(size_type __n1, size_type __n2)
402 const difference_type __d = difference_type(__n1 - __n2);
404 if (__d > __gnu_cxx::__numeric_traits<int>::__max)
405 return __gnu_cxx::__numeric_traits<int>::__max;
406 else if (__d < __gnu_cxx::__numeric_traits<int>::__min)
407 return __gnu_cxx::__numeric_traits<int>::__min;
408 else
409 return int(__d);
412 void
413 _M_mutate(size_type __pos, size_type __len1, size_type __len2);
415 void
416 _M_leak_hard();
418 static _Rep&
419 _S_empty_rep()
420 { return _Rep::_S_empty_rep(); }
422 public:
423 // Construct/copy/destroy:
424 // NB: We overload ctors in some cases instead of using default
425 // arguments, per 17.4.4.4 para. 2 item 2.
428 * @brief Default constructor creates an empty string.
430 basic_string()
431 #ifndef _GLIBCXX_FULLY_DYNAMIC_STRING
432 : _M_dataplus(_S_empty_rep()._M_refdata(), _Alloc()) { }
433 #else
434 : _M_dataplus(_S_construct(size_type(), _CharT(), _Alloc()), _Alloc()){ }
435 #endif
438 * @brief Construct an empty string using allocator @a a.
440 explicit
441 basic_string(const _Alloc& __a);
443 // NB: per LWG issue 42, semantics different from IS:
445 * @brief Construct string with copy of value of @a str.
446 * @param str Source string.
448 basic_string(const basic_string& __str);
450 * @brief Construct string as copy of a substring.
451 * @param str Source string.
452 * @param pos Index of first character to copy from.
453 * @param n Number of characters to copy (default remainder).
455 basic_string(const basic_string& __str, size_type __pos,
456 size_type __n = npos);
458 * @brief Construct string as copy of a substring.
459 * @param str Source string.
460 * @param pos Index of first character to copy from.
461 * @param n Number of characters to copy.
462 * @param a Allocator to use.
464 basic_string(const basic_string& __str, size_type __pos,
465 size_type __n, const _Alloc& __a);
468 * @brief Construct string initialized by a character %array.
469 * @param s Source character %array.
470 * @param n Number of characters to copy.
471 * @param a Allocator to use (default is default allocator).
473 * NB: @a s must have at least @a n characters, &apos;\\0&apos;
474 * has no special meaning.
476 basic_string(const _CharT* __s, size_type __n,
477 const _Alloc& __a = _Alloc());
479 * @brief Construct string as copy of a C string.
480 * @param s Source C string.
481 * @param a Allocator to use (default is default allocator).
483 basic_string(const _CharT* __s, const _Alloc& __a = _Alloc());
485 * @brief Construct string as multiple characters.
486 * @param n Number of characters.
487 * @param c Character to use.
488 * @param a Allocator to use (default is default allocator).
490 basic_string(size_type __n, _CharT __c, const _Alloc& __a = _Alloc());
492 #ifdef __GXX_EXPERIMENTAL_CXX0X__
494 * @brief Move construct string.
495 * @param str Source string.
497 * The newly-created string contains the exact contents of @a str.
498 * @a str is a valid, but unspecified string.
500 basic_string(basic_string&& __str)
501 : _M_dataplus(__str._M_dataplus)
503 #ifndef _GLIBCXX_FULLY_DYNAMIC_STRING
504 __str._M_data(_S_empty_rep()._M_refdata());
505 #else
506 __str._M_data(_S_construct(size_type(), _CharT(), get_allocator()));
507 #endif
511 * @brief Construct string from an initializer %list.
512 * @param l std::initializer_list of characters.
513 * @param a Allocator to use (default is default allocator).
515 basic_string(initializer_list<_CharT> __l, const _Alloc& __a = _Alloc());
516 #endif // __GXX_EXPERIMENTAL_CXX0X__
519 * @brief Construct string as copy of a range.
520 * @param beg Start of range.
521 * @param end End of range.
522 * @param a Allocator to use (default is default allocator).
524 template<class _InputIterator>
525 basic_string(_InputIterator __beg, _InputIterator __end,
526 const _Alloc& __a = _Alloc());
529 * @brief Destroy the string instance.
531 ~basic_string()
532 { _M_rep()->_M_dispose(this->get_allocator()); }
535 * @brief Assign the value of @a str to this string.
536 * @param str Source string.
538 basic_string&
539 operator=(const basic_string& __str)
540 { return this->assign(__str); }
543 * @brief Copy contents of @a s into this string.
544 * @param s Source null-terminated string.
546 basic_string&
547 operator=(const _CharT* __s)
548 { return this->assign(__s); }
551 * @brief Set value to string of length 1.
552 * @param c Source character.
554 * Assigning to a character makes this string length 1 and
555 * (*this)[0] == @a c.
557 basic_string&
558 operator=(_CharT __c)
560 this->assign(1, __c);
561 return *this;
564 #ifdef __GXX_EXPERIMENTAL_CXX0X__
566 * @brief Move assign the value of @a str to this string.
567 * @param str Source string.
569 * The contents of @a str are moved into this string (without copying).
570 * @a str is a valid, but unspecified string.
572 basic_string&
573 operator=(basic_string&& __str)
575 // NB: DR 1204.
576 this->swap(__str);
577 return *this;
581 * @brief Set value to string constructed from initializer %list.
582 * @param l std::initializer_list.
584 basic_string&
585 operator=(initializer_list<_CharT> __l)
587 this->assign(__l.begin(), __l.size());
588 return *this;
590 #endif // __GXX_EXPERIMENTAL_CXX0X__
592 // Iterators:
594 * Returns a read/write iterator that points to the first character in
595 * the %string. Unshares the string.
597 iterator
598 begin()
600 _M_leak();
601 return iterator(_M_data());
605 * Returns a read-only (constant) iterator that points to the first
606 * character in the %string.
608 const_iterator
609 begin() const
610 { return const_iterator(_M_data()); }
613 * Returns a read/write iterator that points one past the last
614 * character in the %string. Unshares the string.
616 iterator
617 end()
619 _M_leak();
620 return iterator(_M_data() + this->size());
624 * Returns a read-only (constant) iterator that points one past the
625 * last character in the %string.
627 const_iterator
628 end() const
629 { return const_iterator(_M_data() + this->size()); }
632 * Returns a read/write reverse iterator that points to the last
633 * character in the %string. Iteration is done in reverse element
634 * order. Unshares the string.
636 reverse_iterator
637 rbegin()
638 { return reverse_iterator(this->end()); }
641 * Returns a read-only (constant) reverse iterator that points
642 * to the last character in the %string. Iteration is done in
643 * reverse element order.
645 const_reverse_iterator
646 rbegin() const
647 { return const_reverse_iterator(this->end()); }
650 * Returns a read/write reverse iterator that points to one before the
651 * first character in the %string. Iteration is done in reverse
652 * element order. Unshares the string.
654 reverse_iterator
655 rend()
656 { return reverse_iterator(this->begin()); }
659 * Returns a read-only (constant) reverse iterator that points
660 * to one before the first character in the %string. Iteration
661 * is done in reverse element order.
663 const_reverse_iterator
664 rend() const
665 { return const_reverse_iterator(this->begin()); }
667 #ifdef __GXX_EXPERIMENTAL_CXX0X__
669 * Returns a read-only (constant) iterator that points to the first
670 * character in the %string.
672 const_iterator
673 cbegin() const
674 { return const_iterator(this->_M_data()); }
677 * Returns a read-only (constant) iterator that points one past the
678 * last character in the %string.
680 const_iterator
681 cend() const
682 { return const_iterator(this->_M_data() + this->size()); }
685 * Returns a read-only (constant) reverse iterator that points
686 * to the last character in the %string. Iteration is done in
687 * reverse element order.
689 const_reverse_iterator
690 crbegin() const
691 { return const_reverse_iterator(this->end()); }
694 * Returns a read-only (constant) reverse iterator that points
695 * to one before the first character in the %string. Iteration
696 * is done in reverse element order.
698 const_reverse_iterator
699 crend() const
700 { return const_reverse_iterator(this->begin()); }
701 #endif
703 public:
704 // Capacity:
705 /// Returns the number of characters in the string, not including any
706 /// null-termination.
707 size_type
708 size() const
709 { return _M_rep()->_M_length; }
711 /// Returns the number of characters in the string, not including any
712 /// null-termination.
713 size_type
714 length() const
715 { return _M_rep()->_M_length; }
717 /// Returns the size() of the largest possible %string.
718 size_type
719 max_size() const
720 { return _Rep::_S_max_size; }
723 * @brief Resizes the %string to the specified number of characters.
724 * @param n Number of characters the %string should contain.
725 * @param c Character to fill any new elements.
727 * This function will %resize the %string to the specified
728 * number of characters. If the number is smaller than the
729 * %string's current size the %string is truncated, otherwise
730 * the %string is extended and new elements are %set to @a c.
732 void
733 resize(size_type __n, _CharT __c);
736 * @brief Resizes the %string to the specified number of characters.
737 * @param n Number of characters the %string should contain.
739 * This function will resize the %string to the specified length. If
740 * the new size is smaller than the %string's current size the %string
741 * is truncated, otherwise the %string is extended and new characters
742 * are default-constructed. For basic types such as char, this means
743 * setting them to 0.
745 void
746 resize(size_type __n)
747 { this->resize(__n, _CharT()); }
749 #ifdef __GXX_EXPERIMENTAL_CXX0X__
750 /// A non-binding request to reduce capacity() to size().
751 void
752 shrink_to_fit()
754 __try
755 { reserve(0); }
756 __catch(...)
759 #endif
762 * Returns the total number of characters that the %string can hold
763 * before needing to allocate more memory.
765 size_type
766 capacity() const
767 { return _M_rep()->_M_capacity; }
770 * @brief Attempt to preallocate enough memory for specified number of
771 * characters.
772 * @param res_arg Number of characters required.
773 * @throw std::length_error If @a res_arg exceeds @c max_size().
775 * This function attempts to reserve enough memory for the
776 * %string to hold the specified number of characters. If the
777 * number requested is more than max_size(), length_error is
778 * thrown.
780 * The advantage of this function is that if optimal code is a
781 * necessity and the user can determine the string length that will be
782 * required, the user can reserve the memory in %advance, and thus
783 * prevent a possible reallocation of memory and copying of %string
784 * data.
786 void
787 reserve(size_type __res_arg = 0);
790 * Erases the string, making it empty.
792 void
793 clear()
794 { _M_mutate(0, this->size(), 0); }
797 * Returns true if the %string is empty. Equivalent to
798 * <code>*this == ""</code>.
800 bool
801 empty() const
802 { return this->size() == 0; }
804 // Element access:
806 * @brief Subscript access to the data contained in the %string.
807 * @param pos The index of the character to access.
808 * @return Read-only (constant) reference to the character.
810 * This operator allows for easy, array-style, data access.
811 * Note that data access with this operator is unchecked and
812 * out_of_range lookups are not defined. (For checked lookups
813 * see at().)
815 const_reference
816 operator[] (size_type __pos) const
818 _GLIBCXX_DEBUG_ASSERT(__pos <= size());
819 return _M_data()[__pos];
823 * @brief Subscript access to the data contained in the %string.
824 * @param pos The index of the character to access.
825 * @return Read/write reference to the character.
827 * This operator allows for easy, array-style, data access.
828 * Note that data access with this operator is unchecked and
829 * out_of_range lookups are not defined. (For checked lookups
830 * see at().) Unshares the string.
832 reference
833 operator[](size_type __pos)
835 // allow pos == size() as v3 extension:
836 _GLIBCXX_DEBUG_ASSERT(__pos <= size());
837 // but be strict in pedantic mode:
838 _GLIBCXX_DEBUG_PEDASSERT(__pos < size());
839 _M_leak();
840 return _M_data()[__pos];
844 * @brief Provides access to the data contained in the %string.
845 * @param n The index of the character to access.
846 * @return Read-only (const) reference to the character.
847 * @throw std::out_of_range If @a n is an invalid index.
849 * This function provides for safer data access. The parameter is
850 * first checked that it is in the range of the string. The function
851 * throws out_of_range if the check fails.
853 const_reference
854 at(size_type __n) const
856 if (__n >= this->size())
857 __throw_out_of_range(__N("basic_string::at"));
858 return _M_data()[__n];
861 #ifdef __GXX_EXPERIMENTAL_CXX0X__
863 * Returns a read/write reference to the data at the first
864 * element of the %string.
866 reference
867 front()
868 { return operator[](0); }
871 * Returns a read-only (constant) reference to the data at the first
872 * element of the %string.
874 const_reference
875 front() const
876 { return operator[](0); }
879 * Returns a read/write reference to the data at the last
880 * element of the %string.
882 reference
883 back()
884 { return operator[](this->size() - 1); }
887 * Returns a read-only (constant) reference to the data at the
888 * last element of the %string.
890 const_reference
891 back() const
892 { return operator[](this->size() - 1); }
893 #endif
896 * @brief Provides access to the data contained in the %string.
897 * @param n The index of the character to access.
898 * @return Read/write reference to the character.
899 * @throw std::out_of_range If @a n is an invalid index.
901 * This function provides for safer data access. The parameter is
902 * first checked that it is in the range of the string. The function
903 * throws out_of_range if the check fails. Success results in
904 * unsharing the string.
906 reference
907 at(size_type __n)
909 if (__n >= size())
910 __throw_out_of_range(__N("basic_string::at"));
911 _M_leak();
912 return _M_data()[__n];
915 // Modifiers:
917 * @brief Append a string to this string.
918 * @param str The string to append.
919 * @return Reference to this string.
921 basic_string&
922 operator+=(const basic_string& __str)
923 { return this->append(__str); }
926 * @brief Append a C string.
927 * @param s The C string to append.
928 * @return Reference to this string.
930 basic_string&
931 operator+=(const _CharT* __s)
932 { return this->append(__s); }
935 * @brief Append a character.
936 * @param c The character to append.
937 * @return Reference to this string.
939 basic_string&
940 operator+=(_CharT __c)
942 this->push_back(__c);
943 return *this;
946 #ifdef __GXX_EXPERIMENTAL_CXX0X__
948 * @brief Append an initializer_list of characters.
949 * @param l The initializer_list of characters to be appended.
950 * @return Reference to this string.
952 basic_string&
953 operator+=(initializer_list<_CharT> __l)
954 { return this->append(__l.begin(), __l.size()); }
955 #endif // __GXX_EXPERIMENTAL_CXX0X__
958 * @brief Append a string to this string.
959 * @param str The string to append.
960 * @return Reference to this string.
962 basic_string&
963 append(const basic_string& __str);
966 * @brief Append a substring.
967 * @param str The string to append.
968 * @param pos Index of the first character of str to append.
969 * @param n The number of characters to append.
970 * @return Reference to this string.
971 * @throw std::out_of_range if @a pos is not a valid index.
973 * This function appends @a n characters from @a str starting at @a pos
974 * to this string. If @a n is is larger than the number of available
975 * characters in @a str, the remainder of @a str is appended.
977 basic_string&
978 append(const basic_string& __str, size_type __pos, size_type __n);
981 * @brief Append a C substring.
982 * @param s The C string to append.
983 * @param n The number of characters to append.
984 * @return Reference to this string.
986 basic_string&
987 append(const _CharT* __s, size_type __n);
990 * @brief Append a C string.
991 * @param s The C string to append.
992 * @return Reference to this string.
994 basic_string&
995 append(const _CharT* __s)
997 __glibcxx_requires_string(__s);
998 return this->append(__s, traits_type::length(__s));
1002 * @brief Append multiple characters.
1003 * @param n The number of characters to append.
1004 * @param c The character to use.
1005 * @return Reference to this string.
1007 * Appends n copies of c to this string.
1009 basic_string&
1010 append(size_type __n, _CharT __c);
1012 #ifdef __GXX_EXPERIMENTAL_CXX0X__
1014 * @brief Append an initializer_list of characters.
1015 * @param l The initializer_list of characters to append.
1016 * @return Reference to this string.
1018 basic_string&
1019 append(initializer_list<_CharT> __l)
1020 { return this->append(__l.begin(), __l.size()); }
1021 #endif // __GXX_EXPERIMENTAL_CXX0X__
1024 * @brief Append a range of characters.
1025 * @param first Iterator referencing the first character to append.
1026 * @param last Iterator marking the end of the range.
1027 * @return Reference to this string.
1029 * Appends characters in the range [first,last) to this string.
1031 template<class _InputIterator>
1032 basic_string&
1033 append(_InputIterator __first, _InputIterator __last)
1034 { return this->replace(_M_iend(), _M_iend(), __first, __last); }
1037 * @brief Append a single character.
1038 * @param c Character to append.
1040 void
1041 push_back(_CharT __c)
1043 const size_type __len = 1 + this->size();
1044 if (__len > this->capacity() || _M_rep()->_M_is_shared())
1045 this->reserve(__len);
1046 traits_type::assign(_M_data()[this->size()], __c);
1047 _M_rep()->_M_set_length_and_sharable(__len);
1051 * @brief Set value to contents of another string.
1052 * @param str Source string to use.
1053 * @return Reference to this string.
1055 basic_string&
1056 assign(const basic_string& __str);
1058 #ifdef __GXX_EXPERIMENTAL_CXX0X__
1060 * @brief Set value to contents of another string.
1061 * @param str Source string to use.
1062 * @return Reference to this string.
1064 * This function sets this string to the exact contents of @a str.
1065 * @a str is a valid, but unspecified string.
1067 basic_string&
1068 assign(basic_string&& __str)
1070 this->swap(__str);
1071 return *this;
1073 #endif // __GXX_EXPERIMENTAL_CXX0X__
1076 * @brief Set value to a substring of a string.
1077 * @param str The string to use.
1078 * @param pos Index of the first character of str.
1079 * @param n Number of characters to use.
1080 * @return Reference to this string.
1081 * @throw std::out_of_range if @a pos is not a valid index.
1083 * This function sets this string to the substring of @a str consisting
1084 * of @a n characters at @a pos. If @a n is is larger than the number
1085 * of available characters in @a str, the remainder of @a str is used.
1087 basic_string&
1088 assign(const basic_string& __str, size_type __pos, size_type __n)
1089 { return this->assign(__str._M_data()
1090 + __str._M_check(__pos, "basic_string::assign"),
1091 __str._M_limit(__pos, __n)); }
1094 * @brief Set value to a C substring.
1095 * @param s The C string to use.
1096 * @param n Number of characters to use.
1097 * @return Reference to this string.
1099 * This function sets the value of this string to the first @a n
1100 * characters of @a s. If @a n is is larger than the number of
1101 * available characters in @a s, the remainder of @a s is used.
1103 basic_string&
1104 assign(const _CharT* __s, size_type __n);
1107 * @brief Set value to contents of a C string.
1108 * @param s The C string to use.
1109 * @return Reference to this string.
1111 * This function sets the value of this string to the value of @a s.
1112 * The data is copied, so there is no dependence on @a s once the
1113 * function returns.
1115 basic_string&
1116 assign(const _CharT* __s)
1118 __glibcxx_requires_string(__s);
1119 return this->assign(__s, traits_type::length(__s));
1123 * @brief Set value to multiple characters.
1124 * @param n Length of the resulting string.
1125 * @param c The character to use.
1126 * @return Reference to this string.
1128 * This function sets the value of this string to @a n copies of
1129 * character @a c.
1131 basic_string&
1132 assign(size_type __n, _CharT __c)
1133 { return _M_replace_aux(size_type(0), this->size(), __n, __c); }
1136 * @brief Set value to a range of characters.
1137 * @param first Iterator referencing the first character to append.
1138 * @param last Iterator marking the end of the range.
1139 * @return Reference to this string.
1141 * Sets value of string to characters in the range [first,last).
1143 template<class _InputIterator>
1144 basic_string&
1145 assign(_InputIterator __first, _InputIterator __last)
1146 { return this->replace(_M_ibegin(), _M_iend(), __first, __last); }
1148 #ifdef __GXX_EXPERIMENTAL_CXX0X__
1150 * @brief Set value to an initializer_list of characters.
1151 * @param l The initializer_list of characters to assign.
1152 * @return Reference to this string.
1154 basic_string&
1155 assign(initializer_list<_CharT> __l)
1156 { return this->assign(__l.begin(), __l.size()); }
1157 #endif // __GXX_EXPERIMENTAL_CXX0X__
1160 * @brief Insert multiple characters.
1161 * @param p Iterator referencing location in string to insert at.
1162 * @param n Number of characters to insert
1163 * @param c The character to insert.
1164 * @throw std::length_error If new length exceeds @c max_size().
1166 * Inserts @a n copies of character @a c starting at the position
1167 * referenced by iterator @a p. If adding characters causes the length
1168 * to exceed max_size(), length_error is thrown. The value of the
1169 * string doesn't change if an error is thrown.
1171 void
1172 insert(iterator __p, size_type __n, _CharT __c)
1173 { this->replace(__p, __p, __n, __c); }
1176 * @brief Insert a range of characters.
1177 * @param p Iterator referencing location in string to insert at.
1178 * @param beg Start of range.
1179 * @param end End of range.
1180 * @throw std::length_error If new length exceeds @c max_size().
1182 * Inserts characters in range [beg,end). If adding characters causes
1183 * the length to exceed max_size(), length_error is thrown. The value
1184 * of the string doesn't change if an error is thrown.
1186 template<class _InputIterator>
1187 void
1188 insert(iterator __p, _InputIterator __beg, _InputIterator __end)
1189 { this->replace(__p, __p, __beg, __end); }
1191 #ifdef __GXX_EXPERIMENTAL_CXX0X__
1193 * @brief Insert an initializer_list of characters.
1194 * @param p Iterator referencing location in string to insert at.
1195 * @param l The initializer_list of characters to insert.
1196 * @throw std::length_error If new length exceeds @c max_size().
1198 void
1199 insert(iterator __p, initializer_list<_CharT> __l)
1201 _GLIBCXX_DEBUG_PEDASSERT(__p >= _M_ibegin() && __p <= _M_iend());
1202 this->insert(__p - _M_ibegin(), __l.begin(), __l.size());
1204 #endif // __GXX_EXPERIMENTAL_CXX0X__
1207 * @brief Insert value of a string.
1208 * @param pos1 Iterator referencing location in string to insert at.
1209 * @param str The string to insert.
1210 * @return Reference to this string.
1211 * @throw std::length_error If new length exceeds @c max_size().
1213 * Inserts value of @a str starting at @a pos1. If adding characters
1214 * causes the length to exceed max_size(), length_error is thrown. The
1215 * value of the string doesn't change if an error is thrown.
1217 basic_string&
1218 insert(size_type __pos1, const basic_string& __str)
1219 { return this->insert(__pos1, __str, size_type(0), __str.size()); }
1222 * @brief Insert a substring.
1223 * @param pos1 Iterator referencing location in string to insert at.
1224 * @param str The string to insert.
1225 * @param pos2 Start of characters in str to insert.
1226 * @param n Number of characters to insert.
1227 * @return Reference to this string.
1228 * @throw std::length_error If new length exceeds @c max_size().
1229 * @throw std::out_of_range If @a pos1 > size() or
1230 * @a pos2 > @a str.size().
1232 * Starting at @a pos1, insert @a n character of @a str beginning with
1233 * @a pos2. If adding characters causes the length to exceed
1234 * max_size(), length_error is thrown. If @a pos1 is beyond the end of
1235 * this string or @a pos2 is beyond the end of @a str, out_of_range is
1236 * thrown. The value of the string doesn't change if an error is
1237 * thrown.
1239 basic_string&
1240 insert(size_type __pos1, const basic_string& __str,
1241 size_type __pos2, size_type __n)
1242 { return this->insert(__pos1, __str._M_data()
1243 + __str._M_check(__pos2, "basic_string::insert"),
1244 __str._M_limit(__pos2, __n)); }
1247 * @brief Insert a C substring.
1248 * @param pos Iterator referencing location in string to insert at.
1249 * @param s The C string to insert.
1250 * @param n The number of characters to insert.
1251 * @return Reference to this string.
1252 * @throw std::length_error If new length exceeds @c max_size().
1253 * @throw std::out_of_range If @a pos is beyond the end of this
1254 * string.
1256 * Inserts the first @a n characters of @a s starting at @a pos. If
1257 * adding characters causes the length to exceed max_size(),
1258 * length_error is thrown. If @a pos is beyond end(), out_of_range is
1259 * thrown. The value of the string doesn't change if an error is
1260 * thrown.
1262 basic_string&
1263 insert(size_type __pos, const _CharT* __s, size_type __n);
1266 * @brief Insert a C string.
1267 * @param pos Iterator referencing location in string to insert at.
1268 * @param s The C string to insert.
1269 * @return Reference to this string.
1270 * @throw std::length_error If new length exceeds @c max_size().
1271 * @throw std::out_of_range If @a pos is beyond the end of this
1272 * string.
1274 * Inserts the first @a n characters of @a s starting at @a pos. If
1275 * adding characters causes the length to exceed max_size(),
1276 * length_error is thrown. If @a pos is beyond end(), out_of_range is
1277 * thrown. The value of the string doesn't change if an error is
1278 * thrown.
1280 basic_string&
1281 insert(size_type __pos, const _CharT* __s)
1283 __glibcxx_requires_string(__s);
1284 return this->insert(__pos, __s, traits_type::length(__s));
1288 * @brief Insert multiple characters.
1289 * @param pos Index in string to insert at.
1290 * @param n Number of characters to insert
1291 * @param c The character to insert.
1292 * @return Reference to this string.
1293 * @throw std::length_error If new length exceeds @c max_size().
1294 * @throw std::out_of_range If @a pos is beyond the end of this
1295 * string.
1297 * Inserts @a n copies of character @a c starting at index @a pos. If
1298 * adding characters causes the length to exceed max_size(),
1299 * length_error is thrown. If @a pos > length(), out_of_range is
1300 * thrown. The value of the string doesn't change if an error is
1301 * thrown.
1303 basic_string&
1304 insert(size_type __pos, size_type __n, _CharT __c)
1305 { return _M_replace_aux(_M_check(__pos, "basic_string::insert"),
1306 size_type(0), __n, __c); }
1309 * @brief Insert one character.
1310 * @param p Iterator referencing position in string to insert at.
1311 * @param c The character to insert.
1312 * @return Iterator referencing newly inserted char.
1313 * @throw std::length_error If new length exceeds @c max_size().
1315 * Inserts character @a c at position referenced by @a p. If adding
1316 * character causes the length to exceed max_size(), length_error is
1317 * thrown. If @a p is beyond end of string, out_of_range is thrown.
1318 * The value of the string doesn't change if an error is thrown.
1320 iterator
1321 insert(iterator __p, _CharT __c)
1323 _GLIBCXX_DEBUG_PEDASSERT(__p >= _M_ibegin() && __p <= _M_iend());
1324 const size_type __pos = __p - _M_ibegin();
1325 _M_replace_aux(__pos, size_type(0), size_type(1), __c);
1326 _M_rep()->_M_set_leaked();
1327 return iterator(_M_data() + __pos);
1331 * @brief Remove characters.
1332 * @param pos Index of first character to remove (default 0).
1333 * @param n Number of characters to remove (default remainder).
1334 * @return Reference to this string.
1335 * @throw std::out_of_range If @a pos is beyond the end of this
1336 * string.
1338 * Removes @a n characters from this string starting at @a pos. The
1339 * length of the string is reduced by @a n. If there are < @a n
1340 * characters to remove, the remainder of the string is truncated. If
1341 * @a p is beyond end of string, out_of_range is thrown. The value of
1342 * the string doesn't change if an error is thrown.
1344 basic_string&
1345 erase(size_type __pos = 0, size_type __n = npos)
1347 _M_mutate(_M_check(__pos, "basic_string::erase"),
1348 _M_limit(__pos, __n), size_type(0));
1349 return *this;
1353 * @brief Remove one character.
1354 * @param position Iterator referencing the character to remove.
1355 * @return iterator referencing same location after removal.
1357 * Removes the character at @a position from this string. The value
1358 * of the string doesn't change if an error is thrown.
1360 iterator
1361 erase(iterator __position)
1363 _GLIBCXX_DEBUG_PEDASSERT(__position >= _M_ibegin()
1364 && __position < _M_iend());
1365 const size_type __pos = __position - _M_ibegin();
1366 _M_mutate(__pos, size_type(1), size_type(0));
1367 _M_rep()->_M_set_leaked();
1368 return iterator(_M_data() + __pos);
1372 * @brief Remove a range of characters.
1373 * @param first Iterator referencing the first character to remove.
1374 * @param last Iterator referencing the end of the range.
1375 * @return Iterator referencing location of first after removal.
1377 * Removes the characters in the range [first,last) from this string.
1378 * The value of the string doesn't change if an error is thrown.
1380 iterator
1381 erase(iterator __first, iterator __last);
1384 * @brief Replace characters with value from another string.
1385 * @param pos Index of first character to replace.
1386 * @param n Number of characters to be replaced.
1387 * @param str String to insert.
1388 * @return Reference to this string.
1389 * @throw std::out_of_range If @a pos is beyond the end of this
1390 * string.
1391 * @throw std::length_error If new length exceeds @c max_size().
1393 * Removes the characters in the range [pos,pos+n) from this string.
1394 * In place, the value of @a str is inserted. If @a pos is beyond end
1395 * of string, out_of_range is thrown. If the length of the result
1396 * exceeds max_size(), length_error is thrown. The value of the string
1397 * doesn't change if an error is thrown.
1399 basic_string&
1400 replace(size_type __pos, size_type __n, const basic_string& __str)
1401 { return this->replace(__pos, __n, __str._M_data(), __str.size()); }
1404 * @brief Replace characters with value from another string.
1405 * @param pos1 Index of first character to replace.
1406 * @param n1 Number of characters to be replaced.
1407 * @param str String to insert.
1408 * @param pos2 Index of first character of str to use.
1409 * @param n2 Number of characters from str to use.
1410 * @return Reference to this string.
1411 * @throw std::out_of_range If @a pos1 > size() or @a pos2 >
1412 * str.size().
1413 * @throw std::length_error If new length exceeds @c max_size().
1415 * Removes the characters in the range [pos1,pos1 + n) from this
1416 * string. In place, the value of @a str is inserted. If @a pos is
1417 * beyond end of string, out_of_range is thrown. If the length of the
1418 * result exceeds max_size(), length_error is thrown. The value of the
1419 * string doesn't change if an error is thrown.
1421 basic_string&
1422 replace(size_type __pos1, size_type __n1, const basic_string& __str,
1423 size_type __pos2, size_type __n2)
1424 { return this->replace(__pos1, __n1, __str._M_data()
1425 + __str._M_check(__pos2, "basic_string::replace"),
1426 __str._M_limit(__pos2, __n2)); }
1429 * @brief Replace characters with value of a C substring.
1430 * @param pos Index of first character to replace.
1431 * @param n1 Number of characters to be replaced.
1432 * @param s C string to insert.
1433 * @param n2 Number of characters from @a s to use.
1434 * @return Reference to this string.
1435 * @throw std::out_of_range If @a pos1 > size().
1436 * @throw std::length_error If new length exceeds @c max_size().
1438 * Removes the characters in the range [pos,pos + n1) from this string.
1439 * In place, the first @a n2 characters of @a s are inserted, or all
1440 * of @a s if @a n2 is too large. If @a pos is beyond end of string,
1441 * out_of_range is thrown. If the length of result exceeds max_size(),
1442 * length_error is thrown. The value of the string doesn't change if
1443 * an error is thrown.
1445 basic_string&
1446 replace(size_type __pos, size_type __n1, const _CharT* __s,
1447 size_type __n2);
1450 * @brief Replace characters with value of a C string.
1451 * @param pos Index of first character to replace.
1452 * @param n1 Number of characters to be replaced.
1453 * @param s C string to insert.
1454 * @return Reference to this string.
1455 * @throw std::out_of_range If @a pos > size().
1456 * @throw std::length_error If new length exceeds @c max_size().
1458 * Removes the characters in the range [pos,pos + n1) from this string.
1459 * In place, the characters of @a s are inserted. If @a pos is beyond
1460 * end of string, out_of_range is thrown. If the length of result
1461 * exceeds max_size(), length_error is thrown. The value of the string
1462 * doesn't change if an error is thrown.
1464 basic_string&
1465 replace(size_type __pos, size_type __n1, const _CharT* __s)
1467 __glibcxx_requires_string(__s);
1468 return this->replace(__pos, __n1, __s, traits_type::length(__s));
1472 * @brief Replace characters with multiple characters.
1473 * @param pos Index of first character to replace.
1474 * @param n1 Number of characters to be replaced.
1475 * @param n2 Number of characters to insert.
1476 * @param c Character to insert.
1477 * @return Reference to this string.
1478 * @throw std::out_of_range If @a pos > size().
1479 * @throw std::length_error If new length exceeds @c max_size().
1481 * Removes the characters in the range [pos,pos + n1) from this string.
1482 * In place, @a n2 copies of @a c are inserted. If @a pos is beyond
1483 * end of string, out_of_range is thrown. If the length of result
1484 * exceeds max_size(), length_error is thrown. The value of the string
1485 * doesn't change if an error is thrown.
1487 basic_string&
1488 replace(size_type __pos, size_type __n1, size_type __n2, _CharT __c)
1489 { return _M_replace_aux(_M_check(__pos, "basic_string::replace"),
1490 _M_limit(__pos, __n1), __n2, __c); }
1493 * @brief Replace range of characters with string.
1494 * @param i1 Iterator referencing start of range to replace.
1495 * @param i2 Iterator referencing end of range to replace.
1496 * @param str String value to insert.
1497 * @return Reference to this string.
1498 * @throw std::length_error If new length exceeds @c max_size().
1500 * Removes the characters in the range [i1,i2). In place, the value of
1501 * @a str is inserted. If the length of result exceeds max_size(),
1502 * length_error is thrown. The value of the string doesn't change if
1503 * an error is thrown.
1505 basic_string&
1506 replace(iterator __i1, iterator __i2, const basic_string& __str)
1507 { return this->replace(__i1, __i2, __str._M_data(), __str.size()); }
1510 * @brief Replace range of characters with C substring.
1511 * @param i1 Iterator referencing start of range to replace.
1512 * @param i2 Iterator referencing end of range to replace.
1513 * @param s C string value to insert.
1514 * @param n Number of characters from s to insert.
1515 * @return Reference to this string.
1516 * @throw std::length_error If new length exceeds @c max_size().
1518 * Removes the characters in the range [i1,i2). In place, the first @a
1519 * n characters of @a s are inserted. If the length of result exceeds
1520 * max_size(), length_error is thrown. The value of the string doesn't
1521 * change if an error is thrown.
1523 basic_string&
1524 replace(iterator __i1, iterator __i2, const _CharT* __s, size_type __n)
1526 _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1527 && __i2 <= _M_iend());
1528 return this->replace(__i1 - _M_ibegin(), __i2 - __i1, __s, __n);
1532 * @brief Replace range of characters with C string.
1533 * @param i1 Iterator referencing start of range to replace.
1534 * @param i2 Iterator referencing end of range to replace.
1535 * @param s C string value to insert.
1536 * @return Reference to this string.
1537 * @throw std::length_error If new length exceeds @c max_size().
1539 * Removes the characters in the range [i1,i2). In place, the
1540 * characters of @a s are inserted. If the length of result exceeds
1541 * max_size(), length_error is thrown. The value of the string doesn't
1542 * change if an error is thrown.
1544 basic_string&
1545 replace(iterator __i1, iterator __i2, const _CharT* __s)
1547 __glibcxx_requires_string(__s);
1548 return this->replace(__i1, __i2, __s, traits_type::length(__s));
1552 * @brief Replace range of characters with multiple characters
1553 * @param i1 Iterator referencing start of range to replace.
1554 * @param i2 Iterator referencing end of range to replace.
1555 * @param n Number of characters to insert.
1556 * @param c Character to insert.
1557 * @return Reference to this string.
1558 * @throw std::length_error If new length exceeds @c max_size().
1560 * Removes the characters in the range [i1,i2). In place, @a n copies
1561 * of @a c are inserted. If the length of result exceeds max_size(),
1562 * length_error is thrown. The value of the string doesn't change if
1563 * an error is thrown.
1565 basic_string&
1566 replace(iterator __i1, iterator __i2, size_type __n, _CharT __c)
1568 _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1569 && __i2 <= _M_iend());
1570 return _M_replace_aux(__i1 - _M_ibegin(), __i2 - __i1, __n, __c);
1574 * @brief Replace range of characters with range.
1575 * @param i1 Iterator referencing start of range to replace.
1576 * @param i2 Iterator referencing end of range to replace.
1577 * @param k1 Iterator referencing start of range to insert.
1578 * @param k2 Iterator referencing end of range to insert.
1579 * @return Reference to this string.
1580 * @throw std::length_error If new length exceeds @c max_size().
1582 * Removes the characters in the range [i1,i2). In place, characters
1583 * in the range [k1,k2) are inserted. If the length of result exceeds
1584 * max_size(), length_error is thrown. The value of the string doesn't
1585 * change if an error is thrown.
1587 template<class _InputIterator>
1588 basic_string&
1589 replace(iterator __i1, iterator __i2,
1590 _InputIterator __k1, _InputIterator __k2)
1592 _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1593 && __i2 <= _M_iend());
1594 __glibcxx_requires_valid_range(__k1, __k2);
1595 typedef typename std::__is_integer<_InputIterator>::__type _Integral;
1596 return _M_replace_dispatch(__i1, __i2, __k1, __k2, _Integral());
1599 // Specializations for the common case of pointer and iterator:
1600 // useful to avoid the overhead of temporary buffering in _M_replace.
1601 basic_string&
1602 replace(iterator __i1, iterator __i2, _CharT* __k1, _CharT* __k2)
1604 _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1605 && __i2 <= _M_iend());
1606 __glibcxx_requires_valid_range(__k1, __k2);
1607 return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1608 __k1, __k2 - __k1);
1611 basic_string&
1612 replace(iterator __i1, iterator __i2,
1613 const _CharT* __k1, const _CharT* __k2)
1615 _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1616 && __i2 <= _M_iend());
1617 __glibcxx_requires_valid_range(__k1, __k2);
1618 return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1619 __k1, __k2 - __k1);
1622 basic_string&
1623 replace(iterator __i1, iterator __i2, iterator __k1, iterator __k2)
1625 _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1626 && __i2 <= _M_iend());
1627 __glibcxx_requires_valid_range(__k1, __k2);
1628 return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1629 __k1.base(), __k2 - __k1);
1632 basic_string&
1633 replace(iterator __i1, iterator __i2,
1634 const_iterator __k1, const_iterator __k2)
1636 _GLIBCXX_DEBUG_PEDASSERT(_M_ibegin() <= __i1 && __i1 <= __i2
1637 && __i2 <= _M_iend());
1638 __glibcxx_requires_valid_range(__k1, __k2);
1639 return this->replace(__i1 - _M_ibegin(), __i2 - __i1,
1640 __k1.base(), __k2 - __k1);
1643 #ifdef __GXX_EXPERIMENTAL_CXX0X__
1645 * @brief Replace range of characters with initializer_list.
1646 * @param i1 Iterator referencing start of range to replace.
1647 * @param i2 Iterator referencing end of range to replace.
1648 * @param l The initializer_list of characters to insert.
1649 * @return Reference to this string.
1650 * @throw std::length_error If new length exceeds @c max_size().
1652 * Removes the characters in the range [i1,i2). In place, characters
1653 * in the range [k1,k2) are inserted. If the length of result exceeds
1654 * max_size(), length_error is thrown. The value of the string doesn't
1655 * change if an error is thrown.
1657 basic_string& replace(iterator __i1, iterator __i2,
1658 initializer_list<_CharT> __l)
1659 { return this->replace(__i1, __i2, __l.begin(), __l.end()); }
1660 #endif // __GXX_EXPERIMENTAL_CXX0X__
1662 private:
1663 template<class _Integer>
1664 basic_string&
1665 _M_replace_dispatch(iterator __i1, iterator __i2, _Integer __n,
1666 _Integer __val, __true_type)
1667 { return _M_replace_aux(__i1 - _M_ibegin(), __i2 - __i1, __n, __val); }
1669 template<class _InputIterator>
1670 basic_string&
1671 _M_replace_dispatch(iterator __i1, iterator __i2, _InputIterator __k1,
1672 _InputIterator __k2, __false_type);
1674 basic_string&
1675 _M_replace_aux(size_type __pos1, size_type __n1, size_type __n2,
1676 _CharT __c);
1678 basic_string&
1679 _M_replace_safe(size_type __pos1, size_type __n1, const _CharT* __s,
1680 size_type __n2);
1682 // _S_construct_aux is used to implement the 21.3.1 para 15 which
1683 // requires special behaviour if _InIter is an integral type
1684 template<class _InIterator>
1685 static _CharT*
1686 _S_construct_aux(_InIterator __beg, _InIterator __end,
1687 const _Alloc& __a, __false_type)
1689 typedef typename iterator_traits<_InIterator>::iterator_category _Tag;
1690 return _S_construct(__beg, __end, __a, _Tag());
1693 // _GLIBCXX_RESOLVE_LIB_DEFECTS
1694 // 438. Ambiguity in the "do the right thing" clause
1695 template<class _Integer>
1696 static _CharT*
1697 _S_construct_aux(_Integer __beg, _Integer __end,
1698 const _Alloc& __a, __true_type)
1699 { return _S_construct_aux_2(static_cast<size_type>(__beg),
1700 __end, __a); }
1702 static _CharT*
1703 _S_construct_aux_2(size_type __req, _CharT __c, const _Alloc& __a)
1704 { return _S_construct(__req, __c, __a); }
1706 template<class _InIterator>
1707 static _CharT*
1708 _S_construct(_InIterator __beg, _InIterator __end, const _Alloc& __a)
1710 typedef typename std::__is_integer<_InIterator>::__type _Integral;
1711 return _S_construct_aux(__beg, __end, __a, _Integral());
1714 // For Input Iterators, used in istreambuf_iterators, etc.
1715 template<class _InIterator>
1716 static _CharT*
1717 _S_construct(_InIterator __beg, _InIterator __end, const _Alloc& __a,
1718 input_iterator_tag);
1720 // For forward_iterators up to random_access_iterators, used for
1721 // string::iterator, _CharT*, etc.
1722 template<class _FwdIterator>
1723 static _CharT*
1724 _S_construct(_FwdIterator __beg, _FwdIterator __end, const _Alloc& __a,
1725 forward_iterator_tag);
1727 static _CharT*
1728 _S_construct(size_type __req, _CharT __c, const _Alloc& __a);
1730 public:
1733 * @brief Copy substring into C string.
1734 * @param s C string to copy value into.
1735 * @param n Number of characters to copy.
1736 * @param pos Index of first character to copy.
1737 * @return Number of characters actually copied
1738 * @throw std::out_of_range If pos > size().
1740 * Copies up to @a n characters starting at @a pos into the C string @a
1741 * s. If @a pos is %greater than size(), out_of_range is thrown.
1743 size_type
1744 copy(_CharT* __s, size_type __n, size_type __pos = 0) const;
1747 * @brief Swap contents with another string.
1748 * @param s String to swap with.
1750 * Exchanges the contents of this string with that of @a s in constant
1751 * time.
1753 void
1754 swap(basic_string& __s);
1756 // String operations:
1758 * @brief Return const pointer to null-terminated contents.
1760 * This is a handle to internal data. Do not modify or dire things may
1761 * happen.
1763 const _CharT*
1764 c_str() const
1765 { return _M_data(); }
1768 * @brief Return const pointer to contents.
1770 * This is a handle to internal data. Do not modify or dire things may
1771 * happen.
1773 const _CharT*
1774 data() const
1775 { return _M_data(); }
1778 * @brief Return copy of allocator used to construct this string.
1780 allocator_type
1781 get_allocator() const
1782 { return _M_dataplus; }
1785 * @brief Find position of a C substring.
1786 * @param s C string to locate.
1787 * @param pos Index of character to search from.
1788 * @param n Number of characters from @a s to search for.
1789 * @return Index of start of first occurrence.
1791 * Starting from @a pos, searches forward for the first @a n characters
1792 * in @a s within this string. If found, returns the index where it
1793 * begins. If not found, returns npos.
1795 size_type
1796 find(const _CharT* __s, size_type __pos, size_type __n) const;
1799 * @brief Find position of a string.
1800 * @param str String to locate.
1801 * @param pos Index of character to search from (default 0).
1802 * @return Index of start of first occurrence.
1804 * Starting from @a pos, searches forward for value of @a str within
1805 * this string. If found, returns the index where it begins. If not
1806 * found, returns npos.
1808 size_type
1809 find(const basic_string& __str, size_type __pos = 0) const
1810 { return this->find(__str.data(), __pos, __str.size()); }
1813 * @brief Find position of a C string.
1814 * @param s C string to locate.
1815 * @param pos Index of character to search from (default 0).
1816 * @return Index of start of first occurrence.
1818 * Starting from @a pos, searches forward for the value of @a s within
1819 * this string. If found, returns the index where it begins. If not
1820 * found, returns npos.
1822 size_type
1823 find(const _CharT* __s, size_type __pos = 0) const
1825 __glibcxx_requires_string(__s);
1826 return this->find(__s, __pos, traits_type::length(__s));
1830 * @brief Find position of a character.
1831 * @param c Character to locate.
1832 * @param pos Index of character to search from (default 0).
1833 * @return Index of first occurrence.
1835 * Starting from @a pos, searches forward for @a c within this string.
1836 * If found, returns the index where it was found. If not found,
1837 * returns npos.
1839 size_type
1840 find(_CharT __c, size_type __pos = 0) const;
1843 * @brief Find last position of a string.
1844 * @param str String to locate.
1845 * @param pos Index of character to search back from (default end).
1846 * @return Index of start of last occurrence.
1848 * Starting from @a pos, searches backward for value of @a str within
1849 * this string. If found, returns the index where it begins. If not
1850 * found, returns npos.
1852 size_type
1853 rfind(const basic_string& __str, size_type __pos = npos) const
1854 { return this->rfind(__str.data(), __pos, __str.size()); }
1857 * @brief Find last position of a C substring.
1858 * @param s C string to locate.
1859 * @param pos Index of character to search back from.
1860 * @param n Number of characters from s to search for.
1861 * @return Index of start of last occurrence.
1863 * Starting from @a pos, searches backward for the first @a n
1864 * characters in @a s within this string. If found, returns the index
1865 * where it begins. If not found, returns npos.
1867 size_type
1868 rfind(const _CharT* __s, size_type __pos, size_type __n) const;
1871 * @brief Find last position of a C string.
1872 * @param s C string to locate.
1873 * @param pos Index of character to start search at (default end).
1874 * @return Index of start of last occurrence.
1876 * Starting from @a pos, searches backward for the value of @a s within
1877 * this string. If found, returns the index where it begins. If not
1878 * found, returns npos.
1880 size_type
1881 rfind(const _CharT* __s, size_type __pos = npos) const
1883 __glibcxx_requires_string(__s);
1884 return this->rfind(__s, __pos, traits_type::length(__s));
1888 * @brief Find last position of a character.
1889 * @param c Character to locate.
1890 * @param pos Index of character to search back from (default end).
1891 * @return Index of last occurrence.
1893 * Starting from @a pos, searches backward for @a c within this string.
1894 * If found, returns the index where it was found. If not found,
1895 * returns npos.
1897 size_type
1898 rfind(_CharT __c, size_type __pos = npos) const;
1901 * @brief Find position of a character of string.
1902 * @param str String containing characters to locate.
1903 * @param pos Index of character to search from (default 0).
1904 * @return Index of first occurrence.
1906 * Starting from @a pos, searches forward for one of the characters of
1907 * @a str within this string. If found, returns the index where it was
1908 * found. If not found, returns npos.
1910 size_type
1911 find_first_of(const basic_string& __str, size_type __pos = 0) const
1912 { return this->find_first_of(__str.data(), __pos, __str.size()); }
1915 * @brief Find position of a character of C substring.
1916 * @param s String containing characters to locate.
1917 * @param pos Index of character to search from.
1918 * @param n Number of characters from s to search for.
1919 * @return Index of first occurrence.
1921 * Starting from @a pos, searches forward for one of the first @a n
1922 * characters of @a s within this string. If found, returns the index
1923 * where it was found. If not found, returns npos.
1925 size_type
1926 find_first_of(const _CharT* __s, size_type __pos, size_type __n) const;
1929 * @brief Find position of a character of C string.
1930 * @param s String containing characters to locate.
1931 * @param pos Index of character to search from (default 0).
1932 * @return Index of first occurrence.
1934 * Starting from @a pos, searches forward for one of the characters of
1935 * @a s within this string. If found, returns the index where it was
1936 * found. If not found, returns npos.
1938 size_type
1939 find_first_of(const _CharT* __s, size_type __pos = 0) const
1941 __glibcxx_requires_string(__s);
1942 return this->find_first_of(__s, __pos, traits_type::length(__s));
1946 * @brief Find position of a character.
1947 * @param c Character to locate.
1948 * @param pos Index of character to search from (default 0).
1949 * @return Index of first occurrence.
1951 * Starting from @a pos, searches forward for the character @a c within
1952 * this string. If found, returns the index where it was found. If
1953 * not found, returns npos.
1955 * Note: equivalent to find(c, pos).
1957 size_type
1958 find_first_of(_CharT __c, size_type __pos = 0) const
1959 { return this->find(__c, __pos); }
1962 * @brief Find last position of a character of string.
1963 * @param str String containing characters to locate.
1964 * @param pos Index of character to search back from (default end).
1965 * @return Index of last occurrence.
1967 * Starting from @a pos, searches backward for one of the characters of
1968 * @a str within this string. If found, returns the index where it was
1969 * found. If not found, returns npos.
1971 size_type
1972 find_last_of(const basic_string& __str, size_type __pos = npos) const
1973 { return this->find_last_of(__str.data(), __pos, __str.size()); }
1976 * @brief Find last position of a character of C substring.
1977 * @param s C string containing characters to locate.
1978 * @param pos Index of character to search back from.
1979 * @param n Number of characters from s to search for.
1980 * @return Index of last occurrence.
1982 * Starting from @a pos, searches backward for one of the first @a n
1983 * characters of @a s within this string. If found, returns the index
1984 * where it was found. If not found, returns npos.
1986 size_type
1987 find_last_of(const _CharT* __s, size_type __pos, size_type __n) const;
1990 * @brief Find last position of a character of C string.
1991 * @param s C string containing characters to locate.
1992 * @param pos Index of character to search back from (default end).
1993 * @return Index of last occurrence.
1995 * Starting from @a pos, searches backward for one of the characters of
1996 * @a s within this string. If found, returns the index where it was
1997 * found. If not found, returns npos.
1999 size_type
2000 find_last_of(const _CharT* __s, size_type __pos = npos) const
2002 __glibcxx_requires_string(__s);
2003 return this->find_last_of(__s, __pos, traits_type::length(__s));
2007 * @brief Find last position of a character.
2008 * @param c Character to locate.
2009 * @param pos Index of character to search back from (default end).
2010 * @return Index of last occurrence.
2012 * Starting from @a pos, searches backward for @a c within this string.
2013 * If found, returns the index where it was found. If not found,
2014 * returns npos.
2016 * Note: equivalent to rfind(c, pos).
2018 size_type
2019 find_last_of(_CharT __c, size_type __pos = npos) const
2020 { return this->rfind(__c, __pos); }
2023 * @brief Find position of a character not in string.
2024 * @param str String containing characters to avoid.
2025 * @param pos Index of character to search from (default 0).
2026 * @return Index of first occurrence.
2028 * Starting from @a pos, searches forward for a character not contained
2029 * in @a str within this string. If found, returns the index where it
2030 * was found. If not found, returns npos.
2032 size_type
2033 find_first_not_of(const basic_string& __str, size_type __pos = 0) const
2034 { return this->find_first_not_of(__str.data(), __pos, __str.size()); }
2037 * @brief Find position of a character not in C substring.
2038 * @param s C string containing characters to avoid.
2039 * @param pos Index of character to search from.
2040 * @param n Number of characters from s to consider.
2041 * @return Index of first occurrence.
2043 * Starting from @a pos, searches forward for a character not contained
2044 * in the first @a n characters of @a s within this string. If found,
2045 * returns the index where it was found. If not found, returns npos.
2047 size_type
2048 find_first_not_of(const _CharT* __s, size_type __pos,
2049 size_type __n) const;
2052 * @brief Find position of a character not in C string.
2053 * @param s C string containing characters to avoid.
2054 * @param pos Index of character to search from (default 0).
2055 * @return Index of first occurrence.
2057 * Starting from @a pos, searches forward for a character not contained
2058 * in @a s within this string. If found, returns the index where it
2059 * was found. If not found, returns npos.
2061 size_type
2062 find_first_not_of(const _CharT* __s, size_type __pos = 0) const
2064 __glibcxx_requires_string(__s);
2065 return this->find_first_not_of(__s, __pos, traits_type::length(__s));
2069 * @brief Find position of a different character.
2070 * @param c Character to avoid.
2071 * @param pos Index of character to search from (default 0).
2072 * @return Index of first occurrence.
2074 * Starting from @a pos, searches forward for a character other than @a c
2075 * within this string. If found, returns the index where it was found.
2076 * If not found, returns npos.
2078 size_type
2079 find_first_not_of(_CharT __c, size_type __pos = 0) const;
2082 * @brief Find last position of a character not in string.
2083 * @param str String containing characters to avoid.
2084 * @param pos Index of character to search back from (default end).
2085 * @return Index of last occurrence.
2087 * Starting from @a pos, searches backward for a character not
2088 * contained in @a str within this string. If found, returns the index
2089 * where it was found. If not found, returns npos.
2091 size_type
2092 find_last_not_of(const basic_string& __str, size_type __pos = npos) const
2093 { return this->find_last_not_of(__str.data(), __pos, __str.size()); }
2096 * @brief Find last position of a character not in C substring.
2097 * @param s C string containing characters to avoid.
2098 * @param pos Index of character to search back from.
2099 * @param n Number of characters from s to consider.
2100 * @return Index of last occurrence.
2102 * Starting from @a pos, searches backward for a character not
2103 * contained in the first @a n characters of @a s within this string.
2104 * If found, returns the index where it was found. If not found,
2105 * returns npos.
2107 size_type
2108 find_last_not_of(const _CharT* __s, size_type __pos,
2109 size_type __n) const;
2111 * @brief Find last position of a character not in C string.
2112 * @param s C string containing characters to avoid.
2113 * @param pos Index of character to search back from (default end).
2114 * @return Index of last occurrence.
2116 * Starting from @a pos, searches backward for a character not
2117 * contained in @a s within this string. If found, returns the index
2118 * where it was found. If not found, returns npos.
2120 size_type
2121 find_last_not_of(const _CharT* __s, size_type __pos = npos) const
2123 __glibcxx_requires_string(__s);
2124 return this->find_last_not_of(__s, __pos, traits_type::length(__s));
2128 * @brief Find last position of a different character.
2129 * @param c Character to avoid.
2130 * @param pos Index of character to search back from (default end).
2131 * @return Index of last occurrence.
2133 * Starting from @a pos, searches backward for a character other than
2134 * @a c within this string. If found, returns the index where it was
2135 * found. If not found, returns npos.
2137 size_type
2138 find_last_not_of(_CharT __c, size_type __pos = npos) const;
2141 * @brief Get a substring.
2142 * @param pos Index of first character (default 0).
2143 * @param n Number of characters in substring (default remainder).
2144 * @return The new string.
2145 * @throw std::out_of_range If pos > size().
2147 * Construct and return a new string using the @a n characters starting
2148 * at @a pos. If the string is too short, use the remainder of the
2149 * characters. If @a pos is beyond the end of the string, out_of_range
2150 * is thrown.
2152 basic_string
2153 substr(size_type __pos = 0, size_type __n = npos) const
2154 { return basic_string(*this,
2155 _M_check(__pos, "basic_string::substr"), __n); }
2158 * @brief Compare to a string.
2159 * @param str String to compare against.
2160 * @return Integer < 0, 0, or > 0.
2162 * Returns an integer < 0 if this string is ordered before @a str, 0 if
2163 * their values are equivalent, or > 0 if this string is ordered after
2164 * @a str. Determines the effective length rlen of the strings to
2165 * compare as the smallest of size() and str.size(). The function
2166 * then compares the two strings by calling traits::compare(data(),
2167 * str.data(),rlen). If the result of the comparison is nonzero returns
2168 * it, otherwise the shorter one is ordered first.
2171 compare(const basic_string& __str) const
2173 const size_type __size = this->size();
2174 const size_type __osize = __str.size();
2175 const size_type __len = std::min(__size, __osize);
2177 int __r = traits_type::compare(_M_data(), __str.data(), __len);
2178 if (!__r)
2179 __r = _S_compare(__size, __osize);
2180 return __r;
2184 * @brief Compare substring to a string.
2185 * @param pos Index of first character of substring.
2186 * @param n Number of characters in substring.
2187 * @param str String to compare against.
2188 * @return Integer < 0, 0, or > 0.
2190 * Form the substring of this string from the @a n characters starting
2191 * at @a pos. Returns an integer < 0 if the substring is ordered
2192 * before @a str, 0 if their values are equivalent, or > 0 if the
2193 * substring is ordered after @a str. Determines the effective length
2194 * rlen of the strings to compare as the smallest of the length of the
2195 * substring and @a str.size(). The function then compares the two
2196 * strings by calling traits::compare(substring.data(),str.data(),rlen).
2197 * If the result of the comparison is nonzero returns it, otherwise the
2198 * shorter one is ordered first.
2201 compare(size_type __pos, size_type __n, const basic_string& __str) const;
2204 * @brief Compare substring to a substring.
2205 * @param pos1 Index of first character of substring.
2206 * @param n1 Number of characters in substring.
2207 * @param str String to compare against.
2208 * @param pos2 Index of first character of substring of str.
2209 * @param n2 Number of characters in substring of str.
2210 * @return Integer < 0, 0, or > 0.
2212 * Form the substring of this string from the @a n1 characters starting
2213 * at @a pos1. Form the substring of @a str from the @a n2 characters
2214 * starting at @a pos2. Returns an integer < 0 if this substring is
2215 * ordered before the substring of @a str, 0 if their values are
2216 * equivalent, or > 0 if this substring is ordered after the substring
2217 * of @a str. Determines the effective length rlen of the strings
2218 * to compare as the smallest of the lengths of the substrings. The
2219 * function then compares the two strings by calling
2220 * traits::compare(substring.data(),str.substr(pos2,n2).data(),rlen).
2221 * If the result of the comparison is nonzero returns it, otherwise the
2222 * shorter one is ordered first.
2225 compare(size_type __pos1, size_type __n1, const basic_string& __str,
2226 size_type __pos2, size_type __n2) const;
2229 * @brief Compare to a C string.
2230 * @param s C string to compare against.
2231 * @return Integer < 0, 0, or > 0.
2233 * Returns an integer < 0 if this string is ordered before @a s, 0 if
2234 * their values are equivalent, or > 0 if this string is ordered after
2235 * @a s. Determines the effective length rlen of the strings to
2236 * compare as the smallest of size() and the length of a string
2237 * constructed from @a s. The function then compares the two strings
2238 * by calling traits::compare(data(),s,rlen). If the result of the
2239 * comparison is nonzero returns it, otherwise the shorter one is
2240 * ordered first.
2243 compare(const _CharT* __s) const;
2245 // _GLIBCXX_RESOLVE_LIB_DEFECTS
2246 // 5 String::compare specification questionable
2248 * @brief Compare substring to a C string.
2249 * @param pos Index of first character of substring.
2250 * @param n1 Number of characters in substring.
2251 * @param s C string to compare against.
2252 * @return Integer < 0, 0, or > 0.
2254 * Form the substring of this string from the @a n1 characters starting
2255 * at @a pos. Returns an integer < 0 if the substring is ordered
2256 * before @a s, 0 if their values are equivalent, or > 0 if the
2257 * substring is ordered after @a s. Determines the effective length
2258 * rlen of the strings to compare as the smallest of the length of the
2259 * substring and the length of a string constructed from @a s. The
2260 * function then compares the two string by calling
2261 * traits::compare(substring.data(),s,rlen). If the result of the
2262 * comparison is nonzero returns it, otherwise the shorter one is
2263 * ordered first.
2266 compare(size_type __pos, size_type __n1, const _CharT* __s) const;
2269 * @brief Compare substring against a character %array.
2270 * @param pos1 Index of first character of substring.
2271 * @param n1 Number of characters in substring.
2272 * @param s character %array to compare against.
2273 * @param n2 Number of characters of s.
2274 * @return Integer < 0, 0, or > 0.
2276 * Form the substring of this string from the @a n1 characters starting
2277 * at @a pos1. Form a string from the first @a n2 characters of @a s.
2278 * Returns an integer < 0 if this substring is ordered before the string
2279 * from @a s, 0 if their values are equivalent, or > 0 if this substring
2280 * is ordered after the string from @a s. Determines the effective
2281 * length rlen of the strings to compare as the smallest of the length
2282 * of the substring and @a n2. The function then compares the two
2283 * strings by calling traits::compare(substring.data(),s,rlen). If the
2284 * result of the comparison is nonzero returns it, otherwise the shorter
2285 * one is ordered first.
2287 * NB: s must have at least n2 characters, &apos;\\0&apos; has
2288 * no special meaning.
2291 compare(size_type __pos, size_type __n1, const _CharT* __s,
2292 size_type __n2) const;
2295 // operator+
2297 * @brief Concatenate two strings.
2298 * @param lhs First string.
2299 * @param rhs Last string.
2300 * @return New string with value of @a lhs followed by @a rhs.
2302 template<typename _CharT, typename _Traits, typename _Alloc>
2303 basic_string<_CharT, _Traits, _Alloc>
2304 operator+(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2305 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2307 basic_string<_CharT, _Traits, _Alloc> __str(__lhs);
2308 __str.append(__rhs);
2309 return __str;
2313 * @brief Concatenate C string and string.
2314 * @param lhs First string.
2315 * @param rhs Last string.
2316 * @return New string with value of @a lhs followed by @a rhs.
2318 template<typename _CharT, typename _Traits, typename _Alloc>
2319 basic_string<_CharT,_Traits,_Alloc>
2320 operator+(const _CharT* __lhs,
2321 const basic_string<_CharT,_Traits,_Alloc>& __rhs);
2324 * @brief Concatenate character and string.
2325 * @param lhs First string.
2326 * @param rhs Last string.
2327 * @return New string with @a lhs followed by @a rhs.
2329 template<typename _CharT, typename _Traits, typename _Alloc>
2330 basic_string<_CharT,_Traits,_Alloc>
2331 operator+(_CharT __lhs, const basic_string<_CharT,_Traits,_Alloc>& __rhs);
2334 * @brief Concatenate string and C string.
2335 * @param lhs First string.
2336 * @param rhs Last string.
2337 * @return New string with @a lhs followed by @a rhs.
2339 template<typename _CharT, typename _Traits, typename _Alloc>
2340 inline basic_string<_CharT, _Traits, _Alloc>
2341 operator+(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2342 const _CharT* __rhs)
2344 basic_string<_CharT, _Traits, _Alloc> __str(__lhs);
2345 __str.append(__rhs);
2346 return __str;
2350 * @brief Concatenate string and character.
2351 * @param lhs First string.
2352 * @param rhs Last string.
2353 * @return New string with @a lhs followed by @a rhs.
2355 template<typename _CharT, typename _Traits, typename _Alloc>
2356 inline basic_string<_CharT, _Traits, _Alloc>
2357 operator+(const basic_string<_CharT, _Traits, _Alloc>& __lhs, _CharT __rhs)
2359 typedef basic_string<_CharT, _Traits, _Alloc> __string_type;
2360 typedef typename __string_type::size_type __size_type;
2361 __string_type __str(__lhs);
2362 __str.append(__size_type(1), __rhs);
2363 return __str;
2366 // operator ==
2368 * @brief Test equivalence of two strings.
2369 * @param lhs First string.
2370 * @param rhs Second string.
2371 * @return True if @a lhs.compare(@a rhs) == 0. False otherwise.
2373 template<typename _CharT, typename _Traits, typename _Alloc>
2374 inline bool
2375 operator==(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2376 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2377 { return __lhs.compare(__rhs) == 0; }
2379 template<typename _CharT>
2380 inline
2381 typename __gnu_cxx::__enable_if<__is_char<_CharT>::__value, bool>::__type
2382 operator==(const basic_string<_CharT>& __lhs,
2383 const basic_string<_CharT>& __rhs)
2384 { return (__lhs.size() == __rhs.size()
2385 && !std::char_traits<_CharT>::compare(__lhs.data(), __rhs.data(),
2386 __lhs.size())); }
2389 * @brief Test equivalence of C string and string.
2390 * @param lhs C string.
2391 * @param rhs String.
2392 * @return True if @a rhs.compare(@a lhs) == 0. False otherwise.
2394 template<typename _CharT, typename _Traits, typename _Alloc>
2395 inline bool
2396 operator==(const _CharT* __lhs,
2397 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2398 { return __rhs.compare(__lhs) == 0; }
2401 * @brief Test equivalence of string and C string.
2402 * @param lhs String.
2403 * @param rhs C string.
2404 * @return True if @a lhs.compare(@a rhs) == 0. False otherwise.
2406 template<typename _CharT, typename _Traits, typename _Alloc>
2407 inline bool
2408 operator==(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2409 const _CharT* __rhs)
2410 { return __lhs.compare(__rhs) == 0; }
2412 // operator !=
2414 * @brief Test difference of two strings.
2415 * @param lhs First string.
2416 * @param rhs Second string.
2417 * @return True if @a lhs.compare(@a rhs) != 0. False otherwise.
2419 template<typename _CharT, typename _Traits, typename _Alloc>
2420 inline bool
2421 operator!=(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2422 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2423 { return !(__lhs == __rhs); }
2426 * @brief Test difference of C string and string.
2427 * @param lhs C string.
2428 * @param rhs String.
2429 * @return True if @a rhs.compare(@a lhs) != 0. False otherwise.
2431 template<typename _CharT, typename _Traits, typename _Alloc>
2432 inline bool
2433 operator!=(const _CharT* __lhs,
2434 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2435 { return !(__lhs == __rhs); }
2438 * @brief Test difference of string and C string.
2439 * @param lhs String.
2440 * @param rhs C string.
2441 * @return True if @a lhs.compare(@a rhs) != 0. False otherwise.
2443 template<typename _CharT, typename _Traits, typename _Alloc>
2444 inline bool
2445 operator!=(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2446 const _CharT* __rhs)
2447 { return !(__lhs == __rhs); }
2449 // operator <
2451 * @brief Test if string precedes string.
2452 * @param lhs First string.
2453 * @param rhs Second string.
2454 * @return True if @a lhs precedes @a rhs. False otherwise.
2456 template<typename _CharT, typename _Traits, typename _Alloc>
2457 inline bool
2458 operator<(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2459 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2460 { return __lhs.compare(__rhs) < 0; }
2463 * @brief Test if string precedes C string.
2464 * @param lhs String.
2465 * @param rhs C string.
2466 * @return True if @a lhs precedes @a rhs. False otherwise.
2468 template<typename _CharT, typename _Traits, typename _Alloc>
2469 inline bool
2470 operator<(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2471 const _CharT* __rhs)
2472 { return __lhs.compare(__rhs) < 0; }
2475 * @brief Test if C string precedes string.
2476 * @param lhs C string.
2477 * @param rhs String.
2478 * @return True if @a lhs precedes @a rhs. False otherwise.
2480 template<typename _CharT, typename _Traits, typename _Alloc>
2481 inline bool
2482 operator<(const _CharT* __lhs,
2483 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2484 { return __rhs.compare(__lhs) > 0; }
2486 // operator >
2488 * @brief Test if string follows string.
2489 * @param lhs First string.
2490 * @param rhs Second string.
2491 * @return True if @a lhs follows @a rhs. False otherwise.
2493 template<typename _CharT, typename _Traits, typename _Alloc>
2494 inline bool
2495 operator>(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2496 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2497 { return __lhs.compare(__rhs) > 0; }
2500 * @brief Test if string follows C string.
2501 * @param lhs String.
2502 * @param rhs C string.
2503 * @return True if @a lhs follows @a rhs. False otherwise.
2505 template<typename _CharT, typename _Traits, typename _Alloc>
2506 inline bool
2507 operator>(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2508 const _CharT* __rhs)
2509 { return __lhs.compare(__rhs) > 0; }
2512 * @brief Test if C string follows string.
2513 * @param lhs C string.
2514 * @param rhs String.
2515 * @return True if @a lhs follows @a rhs. False otherwise.
2517 template<typename _CharT, typename _Traits, typename _Alloc>
2518 inline bool
2519 operator>(const _CharT* __lhs,
2520 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2521 { return __rhs.compare(__lhs) < 0; }
2523 // operator <=
2525 * @brief Test if string doesn't follow string.
2526 * @param lhs First string.
2527 * @param rhs Second string.
2528 * @return True if @a lhs doesn't follow @a rhs. False otherwise.
2530 template<typename _CharT, typename _Traits, typename _Alloc>
2531 inline bool
2532 operator<=(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2533 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2534 { return __lhs.compare(__rhs) <= 0; }
2537 * @brief Test if string doesn't follow C string.
2538 * @param lhs String.
2539 * @param rhs C string.
2540 * @return True if @a lhs doesn't follow @a rhs. False otherwise.
2542 template<typename _CharT, typename _Traits, typename _Alloc>
2543 inline bool
2544 operator<=(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2545 const _CharT* __rhs)
2546 { return __lhs.compare(__rhs) <= 0; }
2549 * @brief Test if C string doesn't follow string.
2550 * @param lhs C string.
2551 * @param rhs String.
2552 * @return True if @a lhs doesn't follow @a rhs. False otherwise.
2554 template<typename _CharT, typename _Traits, typename _Alloc>
2555 inline bool
2556 operator<=(const _CharT* __lhs,
2557 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2558 { return __rhs.compare(__lhs) >= 0; }
2560 // operator >=
2562 * @brief Test if string doesn't precede string.
2563 * @param lhs First string.
2564 * @param rhs Second string.
2565 * @return True if @a lhs doesn't precede @a rhs. False otherwise.
2567 template<typename _CharT, typename _Traits, typename _Alloc>
2568 inline bool
2569 operator>=(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2570 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2571 { return __lhs.compare(__rhs) >= 0; }
2574 * @brief Test if string doesn't precede C string.
2575 * @param lhs String.
2576 * @param rhs C string.
2577 * @return True if @a lhs doesn't precede @a rhs. False otherwise.
2579 template<typename _CharT, typename _Traits, typename _Alloc>
2580 inline bool
2581 operator>=(const basic_string<_CharT, _Traits, _Alloc>& __lhs,
2582 const _CharT* __rhs)
2583 { return __lhs.compare(__rhs) >= 0; }
2586 * @brief Test if C string doesn't precede string.
2587 * @param lhs C string.
2588 * @param rhs String.
2589 * @return True if @a lhs doesn't precede @a rhs. False otherwise.
2591 template<typename _CharT, typename _Traits, typename _Alloc>
2592 inline bool
2593 operator>=(const _CharT* __lhs,
2594 const basic_string<_CharT, _Traits, _Alloc>& __rhs)
2595 { return __rhs.compare(__lhs) <= 0; }
2598 * @brief Swap contents of two strings.
2599 * @param lhs First string.
2600 * @param rhs Second string.
2602 * Exchanges the contents of @a lhs and @a rhs in constant time.
2604 template<typename _CharT, typename _Traits, typename _Alloc>
2605 inline void
2606 swap(basic_string<_CharT, _Traits, _Alloc>& __lhs,
2607 basic_string<_CharT, _Traits, _Alloc>& __rhs)
2608 { __lhs.swap(__rhs); }
2611 * @brief Read stream into a string.
2612 * @param is Input stream.
2613 * @param str Buffer to store into.
2614 * @return Reference to the input stream.
2616 * Stores characters from @a is into @a str until whitespace is found, the
2617 * end of the stream is encountered, or str.max_size() is reached. If
2618 * is.width() is non-zero, that is the limit on the number of characters
2619 * stored into @a str. Any previous contents of @a str are erased.
2621 template<typename _CharT, typename _Traits, typename _Alloc>
2622 basic_istream<_CharT, _Traits>&
2623 operator>>(basic_istream<_CharT, _Traits>& __is,
2624 basic_string<_CharT, _Traits, _Alloc>& __str);
2626 template<>
2627 basic_istream<char>&
2628 operator>>(basic_istream<char>& __is, basic_string<char>& __str);
2631 * @brief Write string to a stream.
2632 * @param os Output stream.
2633 * @param str String to write out.
2634 * @return Reference to the output stream.
2636 * Output characters of @a str into os following the same rules as for
2637 * writing a C string.
2639 template<typename _CharT, typename _Traits, typename _Alloc>
2640 inline basic_ostream<_CharT, _Traits>&
2641 operator<<(basic_ostream<_CharT, _Traits>& __os,
2642 const basic_string<_CharT, _Traits, _Alloc>& __str)
2644 // _GLIBCXX_RESOLVE_LIB_DEFECTS
2645 // 586. string inserter not a formatted function
2646 return __ostream_insert(__os, __str.data(), __str.size());
2650 * @brief Read a line from stream into a string.
2651 * @param is Input stream.
2652 * @param str Buffer to store into.
2653 * @param delim Character marking end of line.
2654 * @return Reference to the input stream.
2656 * Stores characters from @a is into @a str until @a delim is found, the
2657 * end of the stream is encountered, or str.max_size() is reached. If
2658 * is.width() is non-zero, that is the limit on the number of characters
2659 * stored into @a str. Any previous contents of @a str are erased. If @a
2660 * delim was encountered, it is extracted but not stored into @a str.
2662 template<typename _CharT, typename _Traits, typename _Alloc>
2663 basic_istream<_CharT, _Traits>&
2664 getline(basic_istream<_CharT, _Traits>& __is,
2665 basic_string<_CharT, _Traits, _Alloc>& __str, _CharT __delim);
2668 * @brief Read a line from stream into a string.
2669 * @param is Input stream.
2670 * @param str Buffer to store into.
2671 * @return Reference to the input stream.
2673 * Stores characters from is into @a str until &apos;\n&apos; is
2674 * found, the end of the stream is encountered, or str.max_size()
2675 * is reached. If is.width() is non-zero, that is the limit on the
2676 * number of characters stored into @a str. Any previous contents
2677 * of @a str are erased. If end of line was encountered, it is
2678 * extracted but not stored into @a str.
2680 template<typename _CharT, typename _Traits, typename _Alloc>
2681 inline basic_istream<_CharT, _Traits>&
2682 getline(basic_istream<_CharT, _Traits>& __is,
2683 basic_string<_CharT, _Traits, _Alloc>& __str)
2684 { return getline(__is, __str, __is.widen('\n')); }
2686 template<>
2687 basic_istream<char>&
2688 getline(basic_istream<char>& __in, basic_string<char>& __str,
2689 char __delim);
2691 #ifdef _GLIBCXX_USE_WCHAR_T
2692 template<>
2693 basic_istream<wchar_t>&
2694 getline(basic_istream<wchar_t>& __in, basic_string<wchar_t>& __str,
2695 wchar_t __delim);
2696 #endif
2698 _GLIBCXX_END_NAMESPACE
2700 #if (defined(__GXX_EXPERIMENTAL_CXX0X__) && defined(_GLIBCXX_USE_C99) \
2701 && !defined(_GLIBCXX_HAVE_BROKEN_VSWPRINTF))
2703 #include <ext/string_conversions.h>
2705 _GLIBCXX_BEGIN_NAMESPACE(std)
2707 // 21.4 Numeric Conversions [string.conversions].
2708 inline int
2709 stoi(const string& __str, size_t* __idx = 0, int __base = 10)
2710 { return __gnu_cxx::__stoa<long, int>(&std::strtol, "stoi", __str.c_str(),
2711 __idx, __base); }
2713 inline long
2714 stol(const string& __str, size_t* __idx = 0, int __base = 10)
2715 { return __gnu_cxx::__stoa(&std::strtol, "stol", __str.c_str(),
2716 __idx, __base); }
2718 inline unsigned long
2719 stoul(const string& __str, size_t* __idx = 0, int __base = 10)
2720 { return __gnu_cxx::__stoa(&std::strtoul, "stoul", __str.c_str(),
2721 __idx, __base); }
2723 inline long long
2724 stoll(const string& __str, size_t* __idx = 0, int __base = 10)
2725 { return __gnu_cxx::__stoa(&std::strtoll, "stoll", __str.c_str(),
2726 __idx, __base); }
2728 inline unsigned long long
2729 stoull(const string& __str, size_t* __idx = 0, int __base = 10)
2730 { return __gnu_cxx::__stoa(&std::strtoull, "stoull", __str.c_str(),
2731 __idx, __base); }
2733 // NB: strtof vs strtod.
2734 inline float
2735 stof(const string& __str, size_t* __idx = 0)
2736 { return __gnu_cxx::__stoa(&std::strtof, "stof", __str.c_str(), __idx); }
2738 inline double
2739 stod(const string& __str, size_t* __idx = 0)
2740 { return __gnu_cxx::__stoa(&std::strtod, "stod", __str.c_str(), __idx); }
2742 inline long double
2743 stold(const string& __str, size_t* __idx = 0)
2744 { return __gnu_cxx::__stoa(&std::strtold, "stold", __str.c_str(), __idx); }
2746 // NB: (v)snprintf vs sprintf.
2748 // DR 1261.
2749 inline string
2750 to_string(int __val)
2751 { return __gnu_cxx::__to_xstring<string>(&std::vsnprintf, 4 * sizeof(int),
2752 "%d", __val); }
2754 inline string
2755 to_string(unsigned __val)
2756 { return __gnu_cxx::__to_xstring<string>(&std::vsnprintf,
2757 4 * sizeof(unsigned),
2758 "%u", __val); }
2760 inline string
2761 to_string(long __val)
2762 { return __gnu_cxx::__to_xstring<string>(&std::vsnprintf, 4 * sizeof(long),
2763 "%ld", __val); }
2765 inline string
2766 to_string(unsigned long __val)
2767 { return __gnu_cxx::__to_xstring<string>(&std::vsnprintf,
2768 4 * sizeof(unsigned long),
2769 "%lu", __val); }
2771 inline string
2772 to_string(long long __val)
2773 { return __gnu_cxx::__to_xstring<string>(&std::vsnprintf,
2774 4 * sizeof(long long),
2775 "%lld", __val); }
2777 inline string
2778 to_string(unsigned long long __val)
2779 { return __gnu_cxx::__to_xstring<string>(&std::vsnprintf,
2780 4 * sizeof(unsigned long long),
2781 "%llu", __val); }
2783 inline string
2784 to_string(float __val)
2786 const int __n =
2787 __gnu_cxx::__numeric_traits<float>::__max_exponent10 + 20;
2788 return __gnu_cxx::__to_xstring<string>(&std::vsnprintf, __n,
2789 "%f", __val);
2792 inline string
2793 to_string(double __val)
2795 const int __n =
2796 __gnu_cxx::__numeric_traits<double>::__max_exponent10 + 20;
2797 return __gnu_cxx::__to_xstring<string>(&std::vsnprintf, __n,
2798 "%f", __val);
2801 inline string
2802 to_string(long double __val)
2804 const int __n =
2805 __gnu_cxx::__numeric_traits<long double>::__max_exponent10 + 20;
2806 return __gnu_cxx::__to_xstring<string>(&std::vsnprintf, __n,
2807 "%Lf", __val);
2810 #ifdef _GLIBCXX_USE_WCHAR_T
2811 inline int
2812 stoi(const wstring& __str, size_t* __idx = 0, int __base = 10)
2813 { return __gnu_cxx::__stoa<long, int>(&std::wcstol, "stoi", __str.c_str(),
2814 __idx, __base); }
2816 inline long
2817 stol(const wstring& __str, size_t* __idx = 0, int __base = 10)
2818 { return __gnu_cxx::__stoa(&std::wcstol, "stol", __str.c_str(),
2819 __idx, __base); }
2821 inline unsigned long
2822 stoul(const wstring& __str, size_t* __idx = 0, int __base = 10)
2823 { return __gnu_cxx::__stoa(&std::wcstoul, "stoul", __str.c_str(),
2824 __idx, __base); }
2826 inline long long
2827 stoll(const wstring& __str, size_t* __idx = 0, int __base = 10)
2828 { return __gnu_cxx::__stoa(&std::wcstoll, "stoll", __str.c_str(),
2829 __idx, __base); }
2831 inline unsigned long long
2832 stoull(const wstring& __str, size_t* __idx = 0, int __base = 10)
2833 { return __gnu_cxx::__stoa(&std::wcstoull, "stoull", __str.c_str(),
2834 __idx, __base); }
2836 // NB: wcstof vs wcstod.
2837 inline float
2838 stof(const wstring& __str, size_t* __idx = 0)
2839 { return __gnu_cxx::__stoa(&std::wcstof, "stof", __str.c_str(), __idx); }
2841 inline double
2842 stod(const wstring& __str, size_t* __idx = 0)
2843 { return __gnu_cxx::__stoa(&std::wcstod, "stod", __str.c_str(), __idx); }
2845 inline long double
2846 stold(const wstring& __str, size_t* __idx = 0)
2847 { return __gnu_cxx::__stoa(&std::wcstold, "stold", __str.c_str(), __idx); }
2849 // DR 1261.
2850 inline wstring
2851 to_wstring(int __val)
2852 { return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf, 4 * sizeof(int),
2853 L"%d", __val); }
2855 inline wstring
2856 to_wstring(unsigned __val)
2857 { return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf,
2858 4 * sizeof(unsigned),
2859 L"%u", __val); }
2861 inline wstring
2862 to_wstring(long __val)
2863 { return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf, 4 * sizeof(long),
2864 L"%ld", __val); }
2866 inline wstring
2867 to_wstring(unsigned long __val)
2868 { return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf,
2869 4 * sizeof(unsigned long),
2870 L"%lu", __val); }
2872 inline wstring
2873 to_wstring(long long __val)
2874 { return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf,
2875 4 * sizeof(long long),
2876 L"%lld", __val); }
2878 inline wstring
2879 to_wstring(unsigned long long __val)
2880 { return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf,
2881 4 * sizeof(unsigned long long),
2882 L"%llu", __val); }
2884 inline wstring
2885 to_wstring(float __val)
2887 const int __n =
2888 __gnu_cxx::__numeric_traits<float>::__max_exponent10 + 20;
2889 return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf, __n,
2890 L"%f", __val);
2893 inline wstring
2894 to_wstring(double __val)
2896 const int __n =
2897 __gnu_cxx::__numeric_traits<double>::__max_exponent10 + 20;
2898 return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf, __n,
2899 L"%f", __val);
2902 inline wstring
2903 to_wstring(long double __val)
2905 const int __n =
2906 __gnu_cxx::__numeric_traits<long double>::__max_exponent10 + 20;
2907 return __gnu_cxx::__to_xstring<wstring>(&std::vswprintf, __n,
2908 L"%Lf", __val);
2910 #endif
2912 _GLIBCXX_END_NAMESPACE
2914 #endif /* __GXX_EXPERIMENTAL_CXX0X__ && _GLIBCXX_USE_C99 ... */
2916 #ifdef __GXX_EXPERIMENTAL_CXX0X__
2918 #include <bits/functional_hash.h>
2920 _GLIBCXX_BEGIN_NAMESPACE(std)
2922 // DR 1182.
2924 #ifndef _GLIBCXX_COMPATIBILITY_CXX0X
2925 /// std::hash specialization for string.
2926 template<>
2927 struct hash<string>
2928 : public __hash_base<size_t, string>
2930 size_t
2931 operator()(const string& __s) const
2932 { return std::_Hash_impl::hash(__s.data(), __s.length()); }
2935 #ifdef _GLIBCXX_USE_WCHAR_T
2936 /// std::hash specialization for wstring.
2937 template<>
2938 struct hash<wstring>
2939 : public __hash_base<size_t, wstring>
2941 size_t
2942 operator()(const wstring& __s) const
2943 { return std::_Hash_impl::hash(__s.data(),
2944 __s.length() * sizeof(wchar_t)); }
2946 #endif
2947 #endif /* _GLIBCXX_COMPATIBILITY_CXX0X */
2949 #ifdef _GLIBCXX_USE_C99_STDINT_TR1
2950 /// std::hash specialization for u16string.
2951 template<>
2952 struct hash<u16string>
2953 : public __hash_base<size_t, u16string>
2955 size_t
2956 operator()(const u16string& __s) const
2957 { return std::_Hash_impl::hash(__s.data(),
2958 __s.length() * sizeof(char16_t)); }
2961 /// std::hash specialization for u32string.
2962 template<>
2963 struct hash<u32string>
2964 : public __hash_base<size_t, u32string>
2966 size_t
2967 operator()(const u32string& __s) const
2968 { return std::_Hash_impl::hash(__s.data(),
2969 __s.length() * sizeof(char32_t)); }
2971 #endif
2973 _GLIBCXX_END_NAMESPACE
2975 #endif /* __GXX_EXPERIMENTAL_CXX0X__ */
2977 #endif /* _BASIC_STRING_H */