1// SGI's rope class -*- C++ -*-
 
    3// Copyright (C) 2001-2021 Free Software Foundation, Inc.
 
    5// This file is part of the GNU ISO C++ Library.  This library is free
 
    6// software; you can redistribute it and/or modify it under the
 
    7// terms of the GNU General Public License as published by the
 
    8// Free Software Foundation; either version 3, or (at your option)
 
   11// This library is distributed in the hope that it will be useful,
 
   12// but WITHOUT ANY WARRANTY; without even the implied warranty of
 
   13// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 
   14// GNU General Public License for more details.
 
   16// Under Section 7 of GPL version 3, you are granted additional
 
   17// permissions described in the GCC Runtime Library Exception, version
 
   18// 3.1, as published by the Free Software Foundation.
 
   20// You should have received a copy of the GNU General Public License and
 
   21// a copy of the GCC Runtime Library Exception along with this program;
 
   22// see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
 
   23// <http://www.gnu.org/licenses/>.
 
   27 * Silicon Graphics Computer Systems, Inc.
 
   29 * Permission to use, copy, modify, distribute and sell this software
 
   30 * and its documentation for any purpose is hereby granted without fee,
 
   31 * provided that the above copyright notice appear in all copies and
 
   32 * that both that copyright notice and this permission notice appear
 
   33 * in supporting documentation.  Silicon Graphics makes no
 
   34 * representations about the suitability of this software for any
 
   35 * purpose.  It is provided "as is" without express or implied warranty.
 
   39 *  This file is a GNU extension to the Standard C++ Library (possibly
 
   40 *  containing extensions from the HP/SGI STL subset). 
 
   46#pragma GCC system_header
 
   50#include <bits/stl_construct.h>
 
   51#include <bits/stl_uninitialized.h>
 
   52#include <bits/stl_function.h>
 
   53#include <bits/stl_numeric.h>
 
   54#include <bits/allocator.h>
 
   56#include <ext/alloc_traits.h>
 
   57#include <tr1/functional>
 
   60#   define __GC_CONST const
 
   62#   define __GC_CONST   // constant except for deallocation
 
   65#include <ext/memory> // For uninitialized_copy_n
 
   67namespace __gnu_cxx _GLIBCXX_VISIBILITY(default)
 
   69_GLIBCXX_BEGIN_NAMESPACE_VERSION
 
   73    enum { _S_max_rope_depth = 45 };
 
   74    enum _Tag {_S_leaf, _S_concat, _S_substringfn, _S_function};
 
   75  } // namespace __detail
 
   77  // See libstdc++/36832.
 
   78  template<typename _ForwardIterator, typename _Allocator>
 
   80    _Destroy_const(_ForwardIterator __first,
 
   81                   _ForwardIterator __last, _Allocator __alloc)
 
   83      for (; __first != __last; ++__first)
 
   84        __alloc.destroy(&*__first);
 
   87  template<typename _ForwardIterator, typename _Tp>
 
   89    _Destroy_const(_ForwardIterator __first,
 
   90                   _ForwardIterator __last, std::allocator<_Tp>)
 
   91    { std::_Destroy(__first, __last); }
 
   93  // The _S_eos function is used for those functions that
 
   94  // convert to/from C-like strings to detect the end of the string.
 
   96  // The end-of-C-string character.
 
   97  // This is what the draft standard says it should be.
 
   98  template <class _CharT>
 
  103  // Test for basic character types.
 
  104  // For basic character types leaves having a trailing eos.
 
  105  template <class _CharT>
 
  107    _S_is_basic_char_type(_CharT*)
 
  110  template <class _CharT>
 
  112    _S_is_one_byte_char_type(_CharT*)
 
  116  _S_is_basic_char_type(char*)
 
  120  _S_is_one_byte_char_type(char*)
 
  124  _S_is_basic_char_type(wchar_t*)
 
  127  // Store an eos iff _CharT is a basic character type.
 
  128  // Do not reference _S_eos if it isn't.
 
  129  template <class _CharT>
 
  131    _S_cond_store_eos(_CharT&) { }
 
  134  _S_cond_store_eos(char& __c)
 
  138  _S_cond_store_eos(wchar_t& __c)
 
  141  // char_producers are logically functions that generate a section of
 
  142  // a string.  These can be converted to ropes.  The resulting rope
 
  143  // invokes the char_producer on demand.  This allows, for example,
 
  144  // files to be viewed as ropes without reading the entire file.
 
  145  template <class _CharT>
 
  149      virtual ~char_producer() { }
 
  152      operator()(std::size_t __start_pos, std::size_t __len,
 
  153                 _CharT* __buffer) = 0;
 
  154      // Buffer should really be an arbitrary output iterator.
 
  155      // That way we could flatten directly into an ostream, etc.
 
  156      // This is thoroughly impossible, since iterator types don't
 
  157      // have runtime descriptions.
 
  162  // Sequence must provide an append operation that appends an
 
  163  // array to the sequence.  Sequence buffers are useful only if
 
  164  // appending an entire array is cheaper than appending element by element.
 
  165  // This is true for many string representations.
 
  166  // This should  perhaps inherit from ostream<sequence::value_type>
 
  167  // and be implemented correspondingly, so that they can be used
 
  168  // for formatted.  For the sake of portability, we don't do this yet.
 
  170  // For now, sequence buffers behave as output iterators.  But they also
 
  171  // behave a little like basic_ostringstream<sequence::value_type> and a
 
  172  // little like containers.
 
  174  template<class _Sequence, std::size_t _Buf_sz = 100>
 
  175    class sequence_buffer
 
  176    : public std::iterator<std::output_iterator_tag, void, void, void, void>
 
  179      typedef typename _Sequence::value_type value_type;
 
  181      _Sequence* _M_prefix;
 
  182      value_type _M_buffer[_Buf_sz];
 
  183      std::size_t _M_buf_count;
 
  189        _M_prefix->append(_M_buffer, _M_buffer + _M_buf_count);
 
  197      : _M_prefix(0), _M_buf_count(0) { }
 
  199      sequence_buffer(const sequence_buffer& __x)
 
  201        _M_prefix = __x._M_prefix;
 
  202        _M_buf_count = __x._M_buf_count;
 
  203        std::copy(__x._M_buffer, __x._M_buffer + __x._M_buf_count, _M_buffer);
 
  206      sequence_buffer(sequence_buffer& __x)
 
  209        _M_prefix = __x._M_prefix;
 
  213      sequence_buffer(_Sequence& __s)
 
  214      : _M_prefix(&__s), _M_buf_count(0) { }
 
  217      operator=(sequence_buffer& __x)
 
  220        _M_prefix = __x._M_prefix;
 
  226      operator=(const sequence_buffer& __x)
 
  228        _M_prefix = __x._M_prefix;
 
  229        _M_buf_count = __x._M_buf_count;
 
  230        std::copy(__x._M_buffer, __x._M_buffer + __x._M_buf_count, _M_buffer);
 
  235      push_back(value_type __x)
 
  237        if (_M_buf_count < _Buf_sz)
 
  239            _M_buffer[_M_buf_count] = __x;
 
  251      append(value_type* __s, std::size_t __len)
 
  253        if (__len + _M_buf_count <= _Buf_sz)
 
  255            std::size_t __i = _M_buf_count;
 
  256            for (std::size_t __j = 0; __j < __len; __i++, __j++)
 
  257              _M_buffer[__i] = __s[__j];
 
  258            _M_buf_count += __len;
 
  260        else if (0 == _M_buf_count)
 
  261          _M_prefix->append(__s, __s + __len);
 
  270      write(value_type* __s, std::size_t __len)
 
  284      operator=(const value_type& __rhs)
 
  303  // The following should be treated as private, at least for now.
 
  304  template<class _CharT>
 
  305    class _Rope_char_consumer
 
  308      // If we had member templates, these should not be virtual.
 
  309      // For now we need to use run-time parametrization where
 
  310      // compile-time would do.  Hence this should all be private
 
  312      // The symmetry with char_producer is accidental and temporary.
 
  313      virtual ~_Rope_char_consumer() { }
 
  316      operator()(const _CharT* __buffer, std::size_t __len) = 0;
 
  319  // First a lot of forward declarations.  The standard seems to require
 
  320  // much stricter "declaration before use" than many of the implementations
 
  322  template<class _CharT, class _Alloc = std::allocator<_CharT> >
 
  325  template<class _CharT, class _Alloc>
 
  326    struct _Rope_RopeConcatenation;
 
  328  template<class _CharT, class _Alloc>
 
  329    struct _Rope_RopeLeaf;
 
  331  template<class _CharT, class _Alloc>
 
  332    struct _Rope_RopeFunction;
 
  334  template<class _CharT, class _Alloc>
 
  335    struct _Rope_RopeSubstring;
 
  337  template<class _CharT, class _Alloc>
 
  338    class _Rope_iterator;
 
  340  template<class _CharT, class _Alloc>
 
  341    class _Rope_const_iterator;
 
  343  template<class _CharT, class _Alloc>
 
  344    class _Rope_char_ref_proxy;
 
  346  template<class _CharT, class _Alloc>
 
  347    class _Rope_char_ptr_proxy;
 
  349  template<class _CharT, class _Alloc>
 
  351    operator==(const _Rope_char_ptr_proxy<_CharT, _Alloc>& __x,
 
  352               const _Rope_char_ptr_proxy<_CharT, _Alloc>& __y);
 
  354  template<class _CharT, class _Alloc>
 
  355    _Rope_const_iterator<_CharT, _Alloc>
 
  356    operator-(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
  359  template<class _CharT, class _Alloc>
 
  360    _Rope_const_iterator<_CharT, _Alloc>
 
  361    operator+(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
  364  template<class _CharT, class _Alloc>
 
  365    _Rope_const_iterator<_CharT, _Alloc>
 
  366    operator+(std::ptrdiff_t __n,
 
  367              const _Rope_const_iterator<_CharT, _Alloc>& __x);
 
  369  template<class _CharT, class _Alloc>
 
  371    operator==(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
  372               const _Rope_const_iterator<_CharT, _Alloc>& __y);
 
  374  template<class _CharT, class _Alloc>
 
  376    operator<(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
  377              const _Rope_const_iterator<_CharT, _Alloc>& __y);
 
  379  template<class _CharT, class _Alloc>
 
  381    operator-(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
  382              const _Rope_const_iterator<_CharT, _Alloc>& __y);
 
  384  template<class _CharT, class _Alloc>
 
  385    _Rope_iterator<_CharT, _Alloc>
 
  386    operator-(const _Rope_iterator<_CharT, _Alloc>& __x, std::ptrdiff_t __n);
 
  388  template<class _CharT, class _Alloc>
 
  389    _Rope_iterator<_CharT, _Alloc>
 
  390    operator+(const _Rope_iterator<_CharT, _Alloc>& __x, std::ptrdiff_t __n);
 
  392  template<class _CharT, class _Alloc>
 
  393    _Rope_iterator<_CharT, _Alloc>
 
  394    operator+(std::ptrdiff_t __n, const _Rope_iterator<_CharT, _Alloc>& __x);
 
  396  template<class _CharT, class _Alloc>
 
  398    operator==(const _Rope_iterator<_CharT, _Alloc>& __x,
 
  399               const _Rope_iterator<_CharT, _Alloc>& __y);
 
  401  template<class _CharT, class _Alloc>
 
  403    operator<(const _Rope_iterator<_CharT, _Alloc>& __x,
 
  404              const _Rope_iterator<_CharT, _Alloc>& __y);
 
  406  template<class _CharT, class _Alloc>
 
  408    operator-(const _Rope_iterator<_CharT, _Alloc>& __x,
 
  409              const _Rope_iterator<_CharT, _Alloc>& __y);
 
  411  template<class _CharT, class _Alloc>
 
  413    operator+(const rope<_CharT, _Alloc>& __left,
 
  414              const rope<_CharT, _Alloc>& __right);
 
  416  template<class _CharT, class _Alloc>
 
  418    operator+(const rope<_CharT, _Alloc>& __left, const _CharT* __right);
 
  420  template<class _CharT, class _Alloc>
 
  422    operator+(const rope<_CharT, _Alloc>& __left, _CharT __right);
 
  424  // Some helpers, so we can use power on ropes.
 
  425  // See below for why this isn't local to the implementation.
 
  427  // This uses a nonstandard refcount convention.
 
  428  // The result has refcount 0.
 
  429  template<class _CharT, class _Alloc>
 
  430    struct _Rope_Concat_fn
 
  431    : public std::binary_function<rope<_CharT, _Alloc>, rope<_CharT, _Alloc>,
 
  432                                  rope<_CharT, _Alloc> >
 
  435      operator()(const rope<_CharT, _Alloc>& __x,
 
  436                 const rope<_CharT, _Alloc>& __y)
 
  437      { return __x + __y; }
 
  440  template <class _CharT, class _Alloc>
 
  441    inline rope<_CharT, _Alloc>
 
  442    identity_element(_Rope_Concat_fn<_CharT, _Alloc>)
 
  443    { return rope<_CharT, _Alloc>(); }
 
  445  // Class _Refcount_Base provides a type, _RC_t, a data member,
 
  446  // _M_ref_count, and member functions _M_incr and _M_decr, which perform
 
  447  // atomic preincrement/predecrement.  The constructor initializes
 
  449  struct _Refcount_Base
 
  452    typedef std::size_t _RC_t;
 
  454    // The data member _M_ref_count
 
  458#ifdef __GTHREAD_MUTEX_INIT
 
  459    __gthread_mutex_t _M_ref_count_lock = __GTHREAD_MUTEX_INIT;
 
  461    __gthread_mutex_t _M_ref_count_lock;
 
  464    _Refcount_Base(_RC_t __n) : _M_ref_count(__n)
 
  466#ifndef __GTHREAD_MUTEX_INIT
 
  467#ifdef __GTHREAD_MUTEX_INIT_FUNCTION
 
  468      __GTHREAD_MUTEX_INIT_FUNCTION (&_M_ref_count_lock);
 
  470#error __GTHREAD_MUTEX_INIT or __GTHREAD_MUTEX_INIT_FUNCTION should be defined by gthr.h abstraction layer, report problem to 
[email protected].
 
  475#ifndef __GTHREAD_MUTEX_INIT
 
  477    { __gthread_mutex_destroy(&_M_ref_count_lock); }
 
  483      __gthread_mutex_lock(&_M_ref_count_lock);
 
  485      __gthread_mutex_unlock(&_M_ref_count_lock);
 
  491      __gthread_mutex_lock(&_M_ref_count_lock);
 
  492      _RC_t __tmp = --_M_ref_count;
 
  493      __gthread_mutex_unlock(&_M_ref_count_lock);
 
  499  // What follows should really be local to rope.  Unfortunately,
 
  500  // that doesn't work, since it makes it impossible to define generic
 
  501  // equality on rope iterators.  According to the draft standard, the
 
  502  // template parameters for such an equality operator cannot be inferred
 
  503  // from the occurrence of a member class as a parameter.
 
  504  // (SGI compilers in fact allow this, but the __result wouldn't be
 
  506  // Similarly, some of the static member functions are member functions
 
  507  // only to avoid polluting the global namespace, and to circumvent
 
  508  // restrictions on type inference for template functions.
 
  512  // The internal data structure for representing a rope.  This is
 
  513  // private to the implementation.  A rope is really just a pointer
 
  516  // A few basic functions for manipulating this data structure
 
  517  // are members of _RopeRep.  Most of the more complex algorithms
 
  518  // are implemented as rope members.
 
  520  // Some of the static member functions of _RopeRep have identically
 
  521  // named functions in rope that simply invoke the _RopeRep versions.
 
  523#define __ROPE_DEFINE_ALLOCS(__a) \
 
  524        __ROPE_DEFINE_ALLOC(_CharT,_Data) /* character data */ \
 
  525        typedef _Rope_RopeConcatenation<_CharT,__a> __C; \
 
  526        __ROPE_DEFINE_ALLOC(__C,_C) \
 
  527        typedef _Rope_RopeLeaf<_CharT,__a> __L; \
 
  528        __ROPE_DEFINE_ALLOC(__L,_L) \
 
  529        typedef _Rope_RopeFunction<_CharT,__a> __F; \
 
  530        __ROPE_DEFINE_ALLOC(__F,_F) \
 
  531        typedef _Rope_RopeSubstring<_CharT,__a> __S; \
 
  532        __ROPE_DEFINE_ALLOC(__S,_S)
 
  534  //  Internal rope nodes potentially store a copy of the allocator
 
  535  //  instance used to allocate them.  This is mostly redundant.
 
  536  //  But the alternative would be to pass allocator instances around
 
  537  //  in some form to nearly all internal functions, since any pointer
 
  538  //  assignment may result in a zero reference count and thus require
 
  541#define __STATIC_IF_SGI_ALLOC  /* not static */
 
  543  template <class _CharT, class _Alloc>
 
  544    struct _Rope_rep_base
 
  547      typedef std::size_t size_type;
 
  548      typedef _Alloc allocator_type;
 
  551      get_allocator() const
 
  552      { return *static_cast<const _Alloc*>(this); }
 
  556      { return *static_cast<_Alloc*>(this); }
 
  558      const allocator_type&
 
  559      _M_get_allocator() const
 
  560      { return *static_cast<const _Alloc*>(this); }
 
  562      _Rope_rep_base(size_type __size, const allocator_type&)
 
  563      : _M_size(__size) { }
 
  567# define __ROPE_DEFINE_ALLOC(_Tp, __name) \
 
  569          __alloc_traits<_Alloc>::template rebind<_Tp>::other __name##Alloc; \
 
  570        static _Tp* __name##_allocate(size_type __n) \
 
  571          { return __name##Alloc().allocate(__n); } \
 
  572        static void __name##_deallocate(_Tp *__p, size_type __n) \
 
  573          { __name##Alloc().deallocate(__p, __n); }
 
  574      __ROPE_DEFINE_ALLOCS(_Alloc)
 
  575# undef __ROPE_DEFINE_ALLOC
 
  578  template<class _CharT, class _Alloc>
 
  580    : public _Rope_rep_base<_CharT, _Alloc>
 
  586      __detail::_Tag _M_tag:8;
 
  587      bool _M_is_balanced:8;
 
  588      unsigned char _M_depth;
 
  589      __GC_CONST _CharT* _M_c_string;
 
  590#ifdef __GTHREAD_MUTEX_INIT
 
  591      __gthread_mutex_t _M_c_string_lock = __GTHREAD_MUTEX_INIT;
 
  593      __gthread_mutex_t _M_c_string_lock;
 
  595                        /* Flattened version of string, if needed.  */
 
  597                        /* If it's not 0, then the memory is owned  */
 
  599                        /* In the case of a leaf, this may point to */
 
  600                        /* the same memory as the data field.       */
 
  601      typedef typename _Rope_rep_base<_CharT, _Alloc>::allocator_type
 
  603      typedef std::size_t size_type;
 
  605      using _Rope_rep_base<_CharT, _Alloc>::get_allocator;
 
  606      using _Rope_rep_base<_CharT, _Alloc>::_M_get_allocator;
 
  608      _Rope_RopeRep(__detail::_Tag __t, int __d, bool __b, size_type __size,
 
  609                    const allocator_type& __a)
 
  610      : _Rope_rep_base<_CharT, _Alloc>(__size, __a),
 
  614        _M_tag(__t), _M_is_balanced(__b), _M_depth(__d), _M_c_string(0)
 
  615#ifdef __GTHREAD_MUTEX_INIT
 
  618      { __GTHREAD_MUTEX_INIT_FUNCTION (&_M_c_string_lock); }
 
  620      { __gthread_mutex_destroy (&_M_c_string_lock); }
 
  627      _S_free_string(__GC_CONST _CharT*, size_type __len,
 
  628                     allocator_type& __a);
 
  629#define __STL_FREE_STRING(__s, __l, __a) _S_free_string(__s, __l, __a);
 
  630                        // Deallocate data section of a leaf.
 
  631                        // This shouldn't be a member function.
 
  632                        // But its hard to do anything else at the
 
  633                        // moment, because it's templatized w.r.t.
 
  635                        // Does nothing if __GC is defined.
 
  637      void _M_free_c_string();
 
  639      // Deallocate t. Assumes t is not 0.
 
  652      _S_unref(_Rope_RopeRep* __t)
 
  655          __t->_M_unref_nonnil();
 
  659      _S_ref(_Rope_RopeRep* __t)
 
  666      _S_free_if_unref(_Rope_RopeRep* __t)
 
  668        if (0 != __t && 0 == __t->_M_ref_count)
 
  672      void _M_unref_nonnil() { }
 
  673      void _M_ref_nonnil() { }
 
  674      static void _S_unref(_Rope_RopeRep*) { }
 
  675      static void _S_ref(_Rope_RopeRep*) { }
 
  676      static void _S_free_if_unref(_Rope_RopeRep*) { }
 
  680      operator=(const _Rope_RopeRep&);
 
  682      _Rope_RopeRep(const _Rope_RopeRep&);
 
  685  template<class _CharT, class _Alloc>
 
  686    struct _Rope_RopeLeaf
 
  687    : public _Rope_RopeRep<_CharT, _Alloc>
 
  689      typedef std::size_t size_type;
 
  691      // Apparently needed by VC++
 
  692      // The data fields of leaves are allocated with some
 
  693      // extra space, to accommodate future growth and for basic
 
  694      // character types, to hold a trailing eos character.
 
  695      enum { _S_alloc_granularity = 8 };
 
  698      _S_rounded_up_size(size_type __n)
 
  700        size_type __size_with_eos;
 
  702        if (_S_is_basic_char_type((_CharT*)0))
 
  703          __size_with_eos = __n + 1;
 
  705          __size_with_eos = __n;
 
  707        return __size_with_eos;
 
  709        // Allow slop for in-place expansion.
 
  710        return ((__size_with_eos + size_type(_S_alloc_granularity) - 1)
 
  711                &~ (size_type(_S_alloc_granularity) - 1));
 
  714      __GC_CONST _CharT* _M_data; /* Not necessarily 0 terminated. */
 
  715                                  /* The allocated size is         */
 
  716                                  /* _S_rounded_up_size(size), except */
 
  717                                  /* in the GC case, in which it   */
 
  718                                  /* doesn't matter.               */
 
  719      typedef typename _Rope_rep_base<_CharT,_Alloc>::allocator_type
 
  722      _Rope_RopeLeaf(__GC_CONST _CharT* __d, size_type __size,
 
  723                     const allocator_type& __a)
 
  724      : _Rope_RopeRep<_CharT, _Alloc>(__detail::_S_leaf, 0, true,
 
  725                                      __size, __a), _M_data(__d)
 
  727        if (_S_is_basic_char_type((_CharT *)0))
 
  729            // already eos terminated.
 
  730            this->_M_c_string = __d;
 
  733      // The constructor assumes that d has been allocated with
 
  734      // the proper allocator and the properly padded size.
 
  735      // In contrast, the destructor deallocates the data:
 
  737      ~_Rope_RopeLeaf() throw()
 
  739        if (_M_data != this->_M_c_string)
 
  740          this->_M_free_c_string();
 
  742        this->__STL_FREE_STRING(_M_data, this->_M_size, this->_M_get_allocator());
 
  747      operator=(const _Rope_RopeLeaf&);
 
  749      _Rope_RopeLeaf(const _Rope_RopeLeaf&);
 
  752  template<class _CharT, class _Alloc>
 
  753    struct _Rope_RopeConcatenation
 
  754    : public _Rope_RopeRep<_CharT, _Alloc>
 
  757      _Rope_RopeRep<_CharT, _Alloc>* _M_left;
 
  758      _Rope_RopeRep<_CharT, _Alloc>* _M_right;
 
  760      typedef typename _Rope_rep_base<_CharT, _Alloc>::allocator_type
 
  763      _Rope_RopeConcatenation(_Rope_RopeRep<_CharT, _Alloc>* __l,
 
  764                              _Rope_RopeRep<_CharT, _Alloc>* __r,
 
  765                              const allocator_type& __a)
 
  766        : _Rope_RopeRep<_CharT, _Alloc>(__detail::_S_concat,
 
  767                                      std::max(__l->_M_depth,
 
  770                                      __l->_M_size + __r->_M_size, __a),
 
  771        _M_left(__l), _M_right(__r)
 
  774      ~_Rope_RopeConcatenation() throw()
 
  776        this->_M_free_c_string();
 
  777        _M_left->_M_unref_nonnil();
 
  778        _M_right->_M_unref_nonnil();
 
  782      _Rope_RopeConcatenation&
 
  783      operator=(const _Rope_RopeConcatenation&);
 
  785      _Rope_RopeConcatenation(const _Rope_RopeConcatenation&);
 
  788  template<class _CharT, class _Alloc>
 
  789    struct _Rope_RopeFunction
 
  790    : public _Rope_RopeRep<_CharT, _Alloc>
 
  793      char_producer<_CharT>* _M_fn;
 
  795      bool _M_delete_when_done; // Char_producer is owned by the
 
  796                                // rope and should be explicitly
 
  797                                // deleted when the rope becomes
 
  800      // In the GC case, we either register the rope for
 
  801      // finalization, or not.  Thus the field is unnecessary;
 
  802      // the information is stored in the collector data structures.
 
  803      // We do need a finalization procedure to be invoked by the
 
  806      _S_fn_finalization_proc(void * __tree, void *)
 
  807      { delete ((_Rope_RopeFunction *)__tree) -> _M_fn; }
 
  809    typedef typename _Rope_rep_base<_CharT, _Alloc>::allocator_type
 
  812      _Rope_RopeFunction(char_producer<_CharT>* __f, std::size_t __size,
 
  813                        bool __d, const allocator_type& __a)
 
  814      : _Rope_RopeRep<_CharT, _Alloc>(__detail::_S_function, 0, true, __size, __a)
 
  817        , _M_delete_when_done(__d)
 
  823            GC_REGISTER_FINALIZER(this, _Rope_RopeFunction::
 
  824                                  _S_fn_finalization_proc, 0, 0, 0);
 
  829      ~_Rope_RopeFunction() throw()
 
  831        this->_M_free_c_string();
 
  832        if (_M_delete_when_done)
 
  838      operator=(const _Rope_RopeFunction&);
 
  840      _Rope_RopeFunction(const _Rope_RopeFunction&);
 
  842  // Substring results are usually represented using just
 
  843  // concatenation nodes.  But in the case of very long flat ropes
 
  844  // or ropes with a functional representation that isn't practical.
 
  845  // In that case, we represent the __result as a special case of
 
  846  // RopeFunction, whose char_producer points back to the rope itself.
 
  847  // In all cases except repeated substring operations and
 
  848  // deallocation, we treat the __result as a RopeFunction.
 
  849  template<class _CharT, class _Alloc>
 
  850    struct _Rope_RopeSubstring
 
  851    : public _Rope_RopeFunction<_CharT, _Alloc>,
 
  852      public char_producer<_CharT>
 
  854      typedef std::size_t size_type;
 
  856      // XXX this whole class should be rewritten.
 
  857      _Rope_RopeRep<_CharT,_Alloc>* _M_base;      // not 0
 
  861      operator()(size_type __start_pos, size_type __req_len,
 
  864        switch(_M_base->_M_tag)
 
  866          case __detail::_S_function:
 
  867          case __detail::_S_substringfn:
 
  869              char_producer<_CharT>* __fn =
 
  870                ((_Rope_RopeFunction<_CharT,_Alloc>*)_M_base)->_M_fn;
 
  871              (*__fn)(__start_pos + _M_start, __req_len, __buffer);
 
  874          case __detail::_S_leaf:
 
  876              __GC_CONST _CharT* __s =
 
  877                ((_Rope_RopeLeaf<_CharT,_Alloc>*)_M_base)->_M_data;
 
  878              uninitialized_copy_n(__s + __start_pos + _M_start, __req_len,
 
  887      typedef typename _Rope_rep_base<_CharT, _Alloc>::allocator_type
 
  890      _Rope_RopeSubstring(_Rope_RopeRep<_CharT, _Alloc>* __b, size_type __s,
 
  891                          size_type __l, const allocator_type& __a)
 
  892      : _Rope_RopeFunction<_CharT, _Alloc>(this, __l, false, __a),
 
  893        char_producer<_CharT>(), _M_base(__b), _M_start(__s)
 
  896        _M_base->_M_ref_nonnil();
 
  898        this->_M_tag = __detail::_S_substringfn;
 
  900    virtual ~_Rope_RopeSubstring() throw()
 
  903        _M_base->_M_unref_nonnil();
 
  904        // _M_free_c_string();  -- done by parent class
 
  909  // Self-destructing pointers to Rope_rep.
 
  910  // These are not conventional smart pointers.  Their
 
  911  // only purpose in life is to ensure that unref is called
 
  912  // on the pointer either at normal exit or if an exception
 
  913  // is raised.  It is the caller's responsibility to
 
  914  // adjust reference counts when these pointers are initialized
 
  915  // or assigned to.  (This convention significantly reduces
 
  916  // the number of potentially expensive reference count
 
  919  template<class _CharT, class _Alloc>
 
  920    struct _Rope_self_destruct_ptr
 
  922      _Rope_RopeRep<_CharT, _Alloc>* _M_ptr;
 
  924      ~_Rope_self_destruct_ptr()
 
  925      { _Rope_RopeRep<_CharT, _Alloc>::_S_unref(_M_ptr); }
 
  927      _Rope_self_destruct_ptr() : _M_ptr(0) { }
 
  929      _Rope_self_destruct_ptr() { }
 
  931      _Rope_self_destruct_ptr(_Rope_RopeRep<_CharT, _Alloc>* __p)
 
  934      _Rope_RopeRep<_CharT, _Alloc>&
 
  938      _Rope_RopeRep<_CharT, _Alloc>*
 
  942      operator _Rope_RopeRep<_CharT, _Alloc>*()
 
  945      _Rope_self_destruct_ptr&
 
  946      operator=(_Rope_RopeRep<_CharT, _Alloc>* __x)
 
  947      { _M_ptr = __x; return *this; }
 
  951  // Dereferencing a nonconst iterator has to return something
 
  952  // that behaves almost like a reference.  It's not possible to
 
  953  // return an actual reference since assignment requires extra
 
  954  // work.  And we would get into the same problems as with the
 
  955  // CD2 version of basic_string.
 
  956  template<class _CharT, class _Alloc>
 
  957    class _Rope_char_ref_proxy
 
  959      friend class rope<_CharT, _Alloc>;
 
  960      friend class _Rope_iterator<_CharT, _Alloc>;
 
  961      friend class _Rope_char_ptr_proxy<_CharT, _Alloc>;
 
  963      typedef _Rope_RopeRep<_CharT, _Alloc>* _Self_destruct_ptr;
 
  965      typedef _Rope_self_destruct_ptr<_CharT, _Alloc> _Self_destruct_ptr;
 
  967      typedef _Rope_RopeRep<_CharT, _Alloc> _RopeRep;
 
  968      typedef rope<_CharT, _Alloc> _My_rope;
 
  971      bool _M_current_valid;
 
  972      _My_rope* _M_root;     // The whole rope.
 
  974      _Rope_char_ref_proxy(_My_rope* __r, std::size_t __p)
 
  975      :  _M_pos(__p), _M_current(), _M_current_valid(false), _M_root(__r) { }
 
  977      _Rope_char_ref_proxy(const _Rope_char_ref_proxy& __x)
 
  978      : _M_pos(__x._M_pos), _M_current(__x._M_current), 
 
  979        _M_current_valid(false), _M_root(__x._M_root) { }
 
  981      // Don't preserve cache if the reference can outlive the
 
  982      // expression.  We claim that's not possible without calling
 
  983      // a copy constructor or generating reference to a proxy
 
  984      // reference.  We declare the latter to have undefined semantics.
 
  985      _Rope_char_ref_proxy(_My_rope* __r, std::size_t __p, _CharT __c)
 
  986      : _M_pos(__p), _M_current(__c), _M_current_valid(true), _M_root(__r) { }
 
  988      inline operator _CharT () const;
 
  990      _Rope_char_ref_proxy&
 
  991      operator=(_CharT __c);
 
  993      _Rope_char_ptr_proxy<_CharT, _Alloc> operator&() const;
 
  995      _Rope_char_ref_proxy&
 
  996      operator=(const _Rope_char_ref_proxy& __c)
 
  997      { return operator=((_CharT)__c); }
 
 1000  template<class _CharT, class __Alloc>
 
 1002    swap(_Rope_char_ref_proxy <_CharT, __Alloc > __a,
 
 1003         _Rope_char_ref_proxy <_CharT, __Alloc > __b)
 
 1010  template<class _CharT, class _Alloc>
 
 1011    class _Rope_char_ptr_proxy
 
 1013      // XXX this class should be rewritten.
 
 1014      friend class _Rope_char_ref_proxy<_CharT, _Alloc>;
 
 1016      rope<_CharT,_Alloc>* _M_root;     // The whole rope.
 
 1018      _Rope_char_ptr_proxy(const _Rope_char_ref_proxy<_CharT,_Alloc>& __x)
 
 1019      : _M_pos(__x._M_pos), _M_root(__x._M_root) { }
 
 1021      _Rope_char_ptr_proxy(const _Rope_char_ptr_proxy& __x)
 
 1022      : _M_pos(__x._M_pos), _M_root(__x._M_root) { }
 
 1024      _Rope_char_ptr_proxy() { }
 
 1026      _Rope_char_ptr_proxy(_CharT* __x)
 
 1027      : _M_root(0), _M_pos(0) { }
 
 1029      _Rope_char_ptr_proxy&
 
 1030      operator=(const _Rope_char_ptr_proxy& __x)
 
 1032        _M_pos = __x._M_pos;
 
 1033        _M_root = __x._M_root;
 
 1037      template<class _CharT2, class _Alloc2>
 
 1039        operator==(const _Rope_char_ptr_proxy<_CharT2, _Alloc2>& __x,
 
 1040                   const _Rope_char_ptr_proxy<_CharT2, _Alloc2>& __y);
 
 1042      _Rope_char_ref_proxy<_CharT, _Alloc> operator*() const
 
 1043      { return _Rope_char_ref_proxy<_CharT, _Alloc>(_M_root, _M_pos); }
 
 1047  // Unlike in the C version, we cache only part of the stack
 
 1048  // for rope iterators, since they must be efficiently copyable.
 
 1049  // When we run out of cache, we have to reconstruct the iterator
 
 1051  // Pointers from iterators are not included in reference counts.
 
 1052  // Iterators are assumed to be thread private.  Ropes can
 
 1055  template<class _CharT, class _Alloc>
 
 1056    class _Rope_iterator_base
 
 1057    : public std::iterator<std::random_access_iterator_tag, _CharT>
 
 1059      friend class rope<_CharT, _Alloc>;
 
 1061      typedef _Alloc _allocator_type; // used in _Rope_rotate, VC++ workaround
 
 1062      typedef _Rope_RopeRep<_CharT, _Alloc> _RopeRep;
 
 1063      // Borland doesn't want this to be protected.
 
 1065      enum { _S_path_cache_len = 4 }; // Must be <= 9.
 
 1066      enum { _S_iterator_buf_len = 15 };
 
 1067      std::size_t _M_current_pos;
 
 1068      _RopeRep* _M_root;     // The whole rope.
 
 1069      std::size_t _M_leaf_pos; // Starting position for current leaf
 
 1070      __GC_CONST _CharT* _M_buf_start;
 
 1072                             // containing current char.
 
 1073      __GC_CONST _CharT* _M_buf_ptr;
 
 1074                             // Pointer to current char in buffer.
 
 1075                             // != 0 ==> buffer valid.
 
 1076      __GC_CONST _CharT* _M_buf_end;
 
 1077                             // One past __last valid char in buffer.
 
 1078      // What follows is the path cache.  We go out of our
 
 1079      // way to make this compact.
 
 1080      // Path_end contains the bottom section of the path from
 
 1081      // the root to the current leaf.
 
 1082      const _RopeRep* _M_path_end[_S_path_cache_len];
 
 1083      int _M_leaf_index;     // Last valid __pos in path_end;
 
 1084                             // _M_path_end[0] ... _M_path_end[leaf_index-1]
 
 1085                             // point to concatenation nodes.
 
 1086      unsigned char _M_path_directions;
 
 1087                          // (path_directions >> __i) & 1 is 1
 
 1088                          // iff we got from _M_path_end[leaf_index - __i - 1]
 
 1089                          // to _M_path_end[leaf_index - __i] by going to the
 
 1090                          // __right. Assumes path_cache_len <= 9.
 
 1091      _CharT _M_tmp_buf[_S_iterator_buf_len];
 
 1092                        // Short buffer for surrounding chars.
 
 1093                        // This is useful primarily for
 
 1094                        // RopeFunctions.  We put the buffer
 
 1095                        // here to avoid locking in the
 
 1096                        // multithreaded case.
 
 1097      // The cached path is generally assumed to be valid
 
 1098      // only if the buffer is valid.
 
 1099      static void _S_setbuf(_Rope_iterator_base& __x);
 
 1100                                        // Set buffer contents given
 
 1102      static void _S_setcache(_Rope_iterator_base& __x);
 
 1103                                        // Set buffer contents and
 
 1105      static void _S_setcache_for_incr(_Rope_iterator_base& __x);
 
 1106                                        // As above, but assumes path
 
 1107                                        // cache is valid for previous posn.
 
 1108      _Rope_iterator_base() { }
 
 1110      _Rope_iterator_base(_RopeRep* __root, std::size_t __pos)
 
 1111      : _M_current_pos(__pos), _M_root(__root), _M_buf_ptr(0) { }
 
 1113      void _M_incr(std::size_t __n);
 
 1114      void _M_decr(std::size_t __n);
 
 1118      { return _M_current_pos; }
 
 1120      _Rope_iterator_base(const _Rope_iterator_base& __x)
 
 1122        if (0 != __x._M_buf_ptr && __x._M_buf_start != __x._M_tmp_buf)
 
 1126            _M_current_pos = __x._M_current_pos;
 
 1127            _M_root = __x._M_root;
 
 1133  template<class _CharT, class _Alloc>
 
 1134    class _Rope_iterator;
 
 1136  template<class _CharT, class _Alloc>
 
 1137    class _Rope_const_iterator
 
 1138    : public _Rope_iterator_base<_CharT, _Alloc>
 
 1140      friend class rope<_CharT, _Alloc>;
 
 1142      typedef _Rope_RopeRep<_CharT, _Alloc> _RopeRep;
 
 1143      // The one from the base class may not be directly visible.
 
 1144      _Rope_const_iterator(const _RopeRep* __root, std::size_t __pos)
 
 1145      : _Rope_iterator_base<_CharT, _Alloc>(const_cast<_RopeRep*>(__root),
 
 1147                   // Only nonconst iterators modify root ref count
 
 1150      typedef _CharT reference;   // Really a value.  Returning a reference
 
 1151                                  // Would be a mess, since it would have
 
 1152                                  // to be included in refcount.
 
 1153      typedef const _CharT* pointer;
 
 1156      _Rope_const_iterator() { }
 
 1158      _Rope_const_iterator(const _Rope_const_iterator& __x)
 
 1159      : _Rope_iterator_base<_CharT,_Alloc>(__x) { }
 
 1161      _Rope_const_iterator(const _Rope_iterator<_CharT,_Alloc>& __x);
 
 1163      _Rope_const_iterator(const rope<_CharT, _Alloc>& __r, std::size_t __pos)
 
 1164      : _Rope_iterator_base<_CharT,_Alloc>(__r._M_tree_ptr, __pos) { }
 
 1166      _Rope_const_iterator&
 
 1167      operator=(const _Rope_const_iterator& __x)
 
 1169        if (0 != __x._M_buf_ptr && __x._M_buf_start != __x._M_tmp_buf)
 
 1170          *(static_cast<_Rope_iterator_base<_CharT, _Alloc>*>(this)) = __x;
 
 1173            this->_M_current_pos = __x._M_current_pos;
 
 1174            this->_M_root = __x._M_root;
 
 1175            this->_M_buf_ptr = 0;
 
 1183        if (0 == this->_M_buf_ptr)
 
 1184          this->_S_setcache(*this);
 
 1185        return *this->_M_buf_ptr;
 
 1188      // Without this const version, Rope iterators do not meet the
 
 1189      // requirements of an Input Iterator.
 
 1193        return *const_cast<_Rope_const_iterator&>(*this);
 
 1196      _Rope_const_iterator&
 
 1199        __GC_CONST _CharT* __next;
 
 1200        if (0 != this->_M_buf_ptr
 
 1201            && (__next = this->_M_buf_ptr + 1) < this->_M_buf_end)
 
 1203            this->_M_buf_ptr = __next;
 
 1204            ++this->_M_current_pos;
 
 1211      _Rope_const_iterator&
 
 1212      operator+=(std::ptrdiff_t __n)
 
 1217          this->_M_decr(-__n);
 
 1221      _Rope_const_iterator&
 
 1228      _Rope_const_iterator&
 
 1229      operator-=(std::ptrdiff_t __n)
 
 1234          this->_M_incr(-__n);
 
 1238      _Rope_const_iterator
 
 1241        std::size_t __old_pos = this->_M_current_pos;
 
 1243        return _Rope_const_iterator<_CharT,_Alloc>(this->_M_root, __old_pos);
 
 1244        // This makes a subsequent dereference expensive.
 
 1245        // Perhaps we should instead copy the iterator
 
 1246        // if it has a valid cache?
 
 1249      _Rope_const_iterator
 
 1252        std::size_t __old_pos = this->_M_current_pos;
 
 1254        return _Rope_const_iterator<_CharT,_Alloc>(this->_M_root, __old_pos);
 
 1257      template<class _CharT2, class _Alloc2>
 
 1258        friend _Rope_const_iterator<_CharT2, _Alloc2>
 
 1259        operator-(const _Rope_const_iterator<_CharT2, _Alloc2>& __x,
 
 1260                  std::ptrdiff_t __n);
 
 1262      template<class _CharT2, class _Alloc2>
 
 1263        friend _Rope_const_iterator<_CharT2, _Alloc2>
 
 1264        operator+(const _Rope_const_iterator<_CharT2, _Alloc2>& __x,
 
 1265                  std::ptrdiff_t __n);
 
 1267      template<class _CharT2, class _Alloc2>
 
 1268        friend _Rope_const_iterator<_CharT2, _Alloc2>
 
 1269        operator+(std::ptrdiff_t __n,
 
 1270                  const _Rope_const_iterator<_CharT2, _Alloc2>& __x);
 
 1273      operator[](std::size_t __n)
 
 1274      { return rope<_CharT, _Alloc>::_S_fetch(this->_M_root,
 
 1275                                              this->_M_current_pos + __n); }
 
 1277      template<class _CharT2, class _Alloc2>
 
 1279        operator==(const _Rope_const_iterator<_CharT2, _Alloc2>& __x,
 
 1280                   const _Rope_const_iterator<_CharT2, _Alloc2>& __y);
 
 1282      template<class _CharT2, class _Alloc2>
 
 1284        operator<(const _Rope_const_iterator<_CharT2, _Alloc2>& __x,
 
 1285                  const _Rope_const_iterator<_CharT2, _Alloc2>& __y);
 
 1287      template<class _CharT2, class _Alloc2>
 
 1288        friend std::ptrdiff_t
 
 1289        operator-(const _Rope_const_iterator<_CharT2, _Alloc2>& __x,
 
 1290                  const _Rope_const_iterator<_CharT2, _Alloc2>& __y);
 
 1293  template<class _CharT, class _Alloc>
 
 1294    class _Rope_iterator
 
 1295    : public _Rope_iterator_base<_CharT, _Alloc>
 
 1297      friend class rope<_CharT, _Alloc>;
 
 1299      typedef typename _Rope_iterator_base<_CharT, _Alloc>::_RopeRep _RopeRep;
 
 1300      rope<_CharT, _Alloc>* _M_root_rope;
 
 1302      // root is treated as a cached version of this, and is used to
 
 1303      // detect changes to the underlying rope.
 
 1305      // Root is included in the reference count.  This is necessary
 
 1306      // so that we can detect changes reliably.  Unfortunately, it
 
 1307      // requires careful bookkeeping for the nonGC case.
 
 1308      _Rope_iterator(rope<_CharT, _Alloc>* __r, std::size_t __pos)
 
 1309      : _Rope_iterator_base<_CharT, _Alloc>(__r->_M_tree_ptr, __pos),
 
 1311      { _RopeRep::_S_ref(this->_M_root);
 
 1312        if (!(__r -> empty()))
 
 1313          this->_S_setcache(*this);
 
 1318      typedef _Rope_char_ref_proxy<_CharT, _Alloc>  reference;
 
 1319      typedef _Rope_char_ref_proxy<_CharT, _Alloc>* pointer;
 
 1321      rope<_CharT, _Alloc>&
 
 1323      { return *_M_root_rope; }
 
 1327        this->_M_root = 0;  // Needed for reference counting.
 
 1330      _Rope_iterator(const _Rope_iterator& __x)
 
 1331      : _Rope_iterator_base<_CharT, _Alloc>(__x)
 
 1333        _M_root_rope = __x._M_root_rope;
 
 1334        _RopeRep::_S_ref(this->_M_root);
 
 1337      _Rope_iterator(rope<_CharT, _Alloc>& __r, std::size_t __pos);
 
 1340      { _RopeRep::_S_unref(this->_M_root); }
 
 1343      operator=(const _Rope_iterator& __x)
 
 1345        _RopeRep* __old = this->_M_root;
 
 1347        _RopeRep::_S_ref(__x._M_root);
 
 1348        if (0 != __x._M_buf_ptr && __x._M_buf_start != __x._M_tmp_buf)
 
 1350            _M_root_rope = __x._M_root_rope;
 
 1351            *(static_cast<_Rope_iterator_base<_CharT, _Alloc>*>(this)) = __x;
 
 1355            this->_M_current_pos = __x._M_current_pos;
 
 1356            this->_M_root = __x._M_root;
 
 1357            _M_root_rope = __x._M_root_rope;
 
 1358            this->_M_buf_ptr = 0;
 
 1360        _RopeRep::_S_unref(__old);
 
 1368        if (0 == this->_M_buf_ptr)
 
 1369          return _Rope_char_ref_proxy<_CharT, _Alloc>(_M_root_rope,
 
 1370                                                      this->_M_current_pos);
 
 1372          return _Rope_char_ref_proxy<_CharT, _Alloc>(_M_root_rope,
 
 1373                                                      this->_M_current_pos,
 
 1377      // See above comment.
 
 1381        return *const_cast<_Rope_iterator&>(*this);
 
 1392      operator+=(std::ptrdiff_t __n)
 
 1397          this->_M_decr(-__n);
 
 1409      operator-=(std::ptrdiff_t __n)
 
 1414          this->_M_incr(-__n);
 
 1421        std::size_t __old_pos = this->_M_current_pos;
 
 1423        return _Rope_iterator<_CharT,_Alloc>(_M_root_rope, __old_pos);
 
 1429        std::size_t __old_pos = this->_M_current_pos;
 
 1431        return _Rope_iterator<_CharT,_Alloc>(_M_root_rope, __old_pos);
 
 1435      operator[](std::ptrdiff_t __n)
 
 1436      { return _Rope_char_ref_proxy<_CharT, _Alloc>(_M_root_rope,
 
 1437                                                    this->_M_current_pos
 
 1440      template<class _CharT2, class _Alloc2>
 
 1442        operator==(const _Rope_iterator<_CharT2, _Alloc2>& __x,
 
 1443                   const _Rope_iterator<_CharT2, _Alloc2>& __y);
 
 1445      template<class _CharT2, class _Alloc2>
 
 1447        operator<(const _Rope_iterator<_CharT2, _Alloc2>& __x,
 
 1448                  const _Rope_iterator<_CharT2, _Alloc2>& __y);
 
 1450      template<class _CharT2, class _Alloc2>
 
 1451        friend std::ptrdiff_t
 
 1452        operator-(const _Rope_iterator<_CharT2, _Alloc2>& __x,
 
 1453                  const _Rope_iterator<_CharT2, _Alloc2>& __y);
 
 1455      template<class _CharT2, class _Alloc2>
 
 1456        friend _Rope_iterator<_CharT2, _Alloc2>
 
 1457        operator-(const _Rope_iterator<_CharT2, _Alloc2>& __x,
 
 1458                  std::ptrdiff_t __n);
 
 1460      template<class _CharT2, class _Alloc2>
 
 1461        friend _Rope_iterator<_CharT2, _Alloc2>
 
 1462        operator+(const _Rope_iterator<_CharT2, _Alloc2>& __x,
 
 1463                  std::ptrdiff_t __n);
 
 1465      template<class _CharT2, class _Alloc2>
 
 1466        friend _Rope_iterator<_CharT2, _Alloc2>
 
 1467        operator+(std::ptrdiff_t __n,
 
 1468                  const _Rope_iterator<_CharT2, _Alloc2>& __x);
 
 1472  template <class _CharT, class _Alloc>
 
 1476      typedef _Alloc allocator_type;
 
 1479      get_allocator() const
 
 1480      { return *static_cast<const _Alloc*>(this); }
 
 1484      { return *static_cast<_Alloc*>(this); }
 
 1486      const allocator_type&
 
 1487      _M_get_allocator() const
 
 1488      { return *static_cast<const _Alloc*>(this); }
 
 1490      typedef _Rope_RopeRep<_CharT, _Alloc> _RopeRep;
 
 1491      // The one in _Base may not be visible due to template rules.
 
 1493      _Rope_base(_RopeRep* __t, const allocator_type&)
 
 1494      : _M_tree_ptr(__t) { }
 
 1496      _Rope_base(const allocator_type&) { }
 
 1498      // The only data member of a rope:
 
 1499      _RopeRep *_M_tree_ptr;
 
 1501#define __ROPE_DEFINE_ALLOC(_Tp, __name) \
 
 1503          __alloc_traits<_Alloc>::template rebind<_Tp>::other __name##Alloc; \
 
 1504        static _Tp* __name##_allocate(std::size_t __n) \
 
 1505          { return __name##Alloc().allocate(__n); } \
 
 1506        static void __name##_deallocate(_Tp *__p, std::size_t __n) \
 
 1507          { __name##Alloc().deallocate(__p, __n); }
 
 1508      __ROPE_DEFINE_ALLOCS(_Alloc)
 
 1509#undef __ROPE_DEFINE_ALLOC
 
 1513      operator=(const _Rope_base&);
 
 1515      _Rope_base(const _Rope_base&);
 
 1519   *  This is an SGI extension.
 
 1520   *  @ingroup SGIextensions
 
 1523  template <class _CharT, class _Alloc>
 
 1524    class rope : public _Rope_base<_CharT, _Alloc>
 
 1527      typedef _CharT value_type;
 
 1528      typedef std::ptrdiff_t difference_type;
 
 1529      typedef std::size_t size_type;
 
 1530      typedef _CharT const_reference;
 
 1531      typedef const _CharT* const_pointer;
 
 1532      typedef _Rope_iterator<_CharT, _Alloc> iterator;
 
 1533      typedef _Rope_const_iterator<_CharT, _Alloc> const_iterator;
 
 1534      typedef _Rope_char_ref_proxy<_CharT, _Alloc> reference;
 
 1535      typedef _Rope_char_ptr_proxy<_CharT, _Alloc> pointer;
 
 1537      friend class _Rope_iterator<_CharT, _Alloc>;
 
 1538      friend class _Rope_const_iterator<_CharT, _Alloc>;
 
 1539      friend struct _Rope_RopeRep<_CharT, _Alloc>;
 
 1540      friend class _Rope_iterator_base<_CharT, _Alloc>;
 
 1541      friend class _Rope_char_ptr_proxy<_CharT, _Alloc>;
 
 1542      friend class _Rope_char_ref_proxy<_CharT, _Alloc>;
 
 1543      friend struct _Rope_RopeSubstring<_CharT, _Alloc>;
 
 1546      typedef _Rope_base<_CharT, _Alloc> _Base;
 
 1547      typedef typename _Base::allocator_type allocator_type;
 
 1548      using _Base::_M_tree_ptr;
 
 1549      using _Base::get_allocator;
 
 1550      using _Base::_M_get_allocator;
 
 1551      typedef __GC_CONST _CharT* _Cstrptr;
 
 1553      static _CharT _S_empty_c_str[1];
 
 1557      { return __c == _S_eos((_CharT*)0); }
 
 1559      enum { _S_copy_max = 23 };
 
 1560                // For strings shorter than _S_copy_max, we copy to
 
 1563      typedef _Rope_RopeRep<_CharT, _Alloc> _RopeRep;
 
 1564      typedef _Rope_RopeConcatenation<_CharT, _Alloc> _RopeConcatenation;
 
 1565      typedef _Rope_RopeLeaf<_CharT, _Alloc> _RopeLeaf;
 
 1566      typedef _Rope_RopeFunction<_CharT, _Alloc> _RopeFunction;
 
 1567      typedef _Rope_RopeSubstring<_CharT, _Alloc> _RopeSubstring;
 
 1569      // Retrieve a character at the indicated position.
 
 1570      static _CharT _S_fetch(_RopeRep* __r, size_type __pos);
 
 1573      // Obtain a pointer to the character at the indicated position.
 
 1574      // The pointer can be used to change the character.
 
 1575      // If such a pointer cannot be produced, as is frequently the
 
 1576      // case, 0 is returned instead.
 
 1577      // (Returns nonzero only if all nodes in the path have a refcount
 
 1579      static _CharT* _S_fetch_ptr(_RopeRep* __r, size_type __pos);
 
 1583      _S_apply_to_pieces(// should be template parameter
 
 1584                         _Rope_char_consumer<_CharT>& __c,
 
 1585                         const _RopeRep* __r,
 
 1586                         size_type __begin, size_type __end);
 
 1587                         // begin and end are assumed to be in range.
 
 1591      _S_unref(_RopeRep* __t)
 
 1592      { _RopeRep::_S_unref(__t); }
 
 1595      _S_ref(_RopeRep* __t)
 
 1596      { _RopeRep::_S_ref(__t); }
 
 1599      static void _S_unref(_RopeRep*) { }
 
 1600      static void _S_ref(_RopeRep*) { }
 
 1604      typedef _Rope_RopeRep<_CharT, _Alloc>* _Self_destruct_ptr;
 
 1606      typedef _Rope_self_destruct_ptr<_CharT, _Alloc> _Self_destruct_ptr;
 
 1609      // _Result is counted in refcount.
 
 1610      static _RopeRep* _S_substring(_RopeRep* __base,
 
 1611                                    size_type __start, size_type __endp1);
 
 1613      static _RopeRep* _S_concat_char_iter(_RopeRep* __r,
 
 1614                                           const _CharT* __iter,
 
 1616                                           allocator_type& __a);
 
 1617      // Concatenate rope and char ptr, copying __iter.
 
 1618      // Should really take an arbitrary iterator.
 
 1619      // Result is counted in refcount.
 
 1620      static _RopeRep* _S_destr_concat_char_iter(_RopeRep* __r,
 
 1621                                                 const _CharT* __iter,
 
 1623                                                 allocator_type& __a)
 
 1624        // As above, but one reference to __r is about to be
 
 1625        // destroyed.  Thus the pieces may be recycled if all
 
 1626        // relevant reference counts are 1.
 
 1628        // We can't really do anything since refcounts are unavailable.
 
 1629      { return _S_concat_char_iter(__r, __iter, __slen, __a); }
 
 1634      static _RopeRep* _S_concat(_RopeRep* __left, _RopeRep* __right);
 
 1635      // General concatenation on _RopeRep.  _Result
 
 1636      // has refcount of 1.  Adjusts argument refcounts.
 
 1640      apply_to_pieces(size_type __begin, size_type __end,
 
 1641                      _Rope_char_consumer<_CharT>& __c) const
 
 1642      { _S_apply_to_pieces(__c, this->_M_tree_ptr, __begin, __end); }
 
 1647      _S_rounded_up_size(size_type __n)
 
 1648      { return _RopeLeaf::_S_rounded_up_size(__n); }
 
 1651      _S_allocated_capacity(size_type __n)
 
 1653        if (_S_is_basic_char_type((_CharT*)0))
 
 1654          return _S_rounded_up_size(__n) - 1;
 
 1656          return _S_rounded_up_size(__n);
 
 1660      // Allocate and construct a RopeLeaf using the supplied allocator
 
 1661      // Takes ownership of s instead of copying.
 
 1663      _S_new_RopeLeaf(__GC_CONST _CharT *__s,
 
 1664                      size_type __size, allocator_type& __a)
 
 1666        _RopeLeaf* __space = typename _Base::_LAlloc(__a).allocate(1);
 
 1667        return new(__space) _RopeLeaf(__s, __size, __a);
 
 1670      static _RopeConcatenation*
 
 1671      _S_new_RopeConcatenation(_RopeRep* __left, _RopeRep* __right,
 
 1672                               allocator_type& __a)
 
 1674        _RopeConcatenation* __space = typename _Base::_CAlloc(__a).allocate(1);
 
 1675        return new(__space) _RopeConcatenation(__left, __right, __a);
 
 1678      static _RopeFunction*
 
 1679      _S_new_RopeFunction(char_producer<_CharT>* __f,
 
 1680                          size_type __size, bool __d, allocator_type& __a)
 
 1682        _RopeFunction* __space = typename _Base::_FAlloc(__a).allocate(1);
 
 1683        return new(__space) _RopeFunction(__f, __size, __d, __a);
 
 1686      static _RopeSubstring*
 
 1687      _S_new_RopeSubstring(_Rope_RopeRep<_CharT,_Alloc>* __b, size_type __s,
 
 1688                           size_type __l, allocator_type& __a)
 
 1690        _RopeSubstring* __space = typename _Base::_SAlloc(__a).allocate(1);
 
 1691        return new(__space) _RopeSubstring(__b, __s, __l, __a);
 
 1695      _S_RopeLeaf_from_unowned_char_ptr(const _CharT *__s,
 
 1696                                        size_type __size, allocator_type& __a)
 
 1697#define __STL_ROPE_FROM_UNOWNED_CHAR_PTR(__s, __size, __a) \
 
 1698                _S_RopeLeaf_from_unowned_char_ptr(__s, __size, __a)
 
 1702        _CharT* __buf = __a.allocate(_S_rounded_up_size(__size));
 
 1704        __uninitialized_copy_n_a(__s, __size, __buf, __a);
 
 1705        _S_cond_store_eos(__buf[__size]);
 
 1707          { return _S_new_RopeLeaf(__buf, __size, __a); }
 
 1710            _RopeRep::__STL_FREE_STRING(__buf, __size, __a);
 
 1711            __throw_exception_again;
 
 1715      // Concatenation of nonempty strings.
 
 1716      // Always builds a concatenation node.
 
 1717      // Rebalances if the result is too deep.
 
 1718      // Result has refcount 1.
 
 1719      // Does not increment left and right ref counts even though
 
 1720      // they are referenced.
 
 1722      _S_tree_concat(_RopeRep* __left, _RopeRep* __right);
 
 1724      // Concatenation helper functions
 
 1726      _S_leaf_concat_char_iter(_RopeLeaf* __r,
 
 1727                               const _CharT* __iter, size_type __slen);
 
 1728      // Concatenate by copying leaf.
 
 1729      // should take an arbitrary iterator
 
 1730      // result has refcount 1.
 
 1733      _S_destr_leaf_concat_char_iter(_RopeLeaf* __r,
 
 1734                                     const _CharT* __iter, size_type __slen);
 
 1735      // A version that potentially clobbers __r if __r->_M_ref_count == 1.
 
 1740      static size_type _S_char_ptr_len(const _CharT* __s);
 
 1741      // slightly generalized strlen
 
 1743      rope(_RopeRep* __t, const allocator_type& __a = allocator_type())
 
 1744      : _Base(__t, __a) { }
 
 1747      // Copy __r to the _CharT buffer.
 
 1748      // Returns __buffer + __r->_M_size.
 
 1749      // Assumes that buffer is uninitialized.
 
 1750      static _CharT* _S_flatten(_RopeRep* __r, _CharT* __buffer);
 
 1752      // Again, with explicit starting position and length.
 
 1753      // Assumes that buffer is uninitialized.
 
 1754      static _CharT* _S_flatten(_RopeRep* __r,
 
 1755                                size_type __start, size_type __len,
 
 1758      static const unsigned long
 
 1759      _S_min_len[__detail::_S_max_rope_depth + 1];
 
 1762      _S_is_balanced(_RopeRep* __r)
 
 1763      { return (__r->_M_size >= _S_min_len[__r->_M_depth]); }
 
 1766      _S_is_almost_balanced(_RopeRep* __r)
 
 1767      { return (__r->_M_depth == 0
 
 1768                || __r->_M_size >= _S_min_len[__r->_M_depth - 1]); }
 
 1771      _S_is_roughly_balanced(_RopeRep* __r)
 
 1772      { return (__r->_M_depth <= 1
 
 1773                || __r->_M_size >= _S_min_len[__r->_M_depth - 2]); }
 
 1775      // Assumes the result is not empty.
 
 1777      _S_concat_and_set_balanced(_RopeRep* __left, _RopeRep* __right)
 
 1779        _RopeRep* __result = _S_concat(__left, __right);
 
 1780        if (_S_is_balanced(__result))
 
 1781          __result->_M_is_balanced = true;
 
 1785      // The basic rebalancing operation.  Logically copies the
 
 1786      // rope.  The result has refcount of 1.  The client will
 
 1787      // usually decrement the reference count of __r.
 
 1788      // The result is within height 2 of balanced by the above
 
 1790      static _RopeRep* _S_balance(_RopeRep* __r);
 
 1792      // Add all unbalanced subtrees to the forest of balanced trees.
 
 1793      // Used only by balance.
 
 1794      static void _S_add_to_forest(_RopeRep*__r, _RopeRep** __forest);
 
 1796      // Add __r to forest, assuming __r is already balanced.
 
 1797      static void _S_add_leaf_to_forest(_RopeRep* __r, _RopeRep** __forest);
 
 1799      // Print to stdout, exposing structure
 
 1800      static void _S_dump(_RopeRep* __r, int __indent = 0);
 
 1802      // Return -1, 0, or 1 if __x < __y, __x == __y, or __x > __y resp.
 
 1803      static int _S_compare(const _RopeRep* __x, const _RopeRep* __y);
 
 1806      _GLIBCXX_NODISCARD bool
 
 1808      { return 0 == this->_M_tree_ptr; }
 
 1810      // Comparison member function.  This is public only for those
 
 1811      // clients that need a ternary comparison.  Others
 
 1812      // should use the comparison operators below.
 
 1814      compare(const rope& __y) const
 
 1815      { return _S_compare(this->_M_tree_ptr, __y._M_tree_ptr); }
 
 1817      rope(const _CharT* __s, const allocator_type& __a = allocator_type())
 
 1821          __STL_ROPE_FROM_UNOWNED_CHAR_PTR(__s, _S_char_ptr_len(__s),
 
 1822                                           _M_get_allocator());
 
 1825      rope(const _CharT* __s, size_type __len,
 
 1826           const allocator_type& __a = allocator_type())
 
 1830          __STL_ROPE_FROM_UNOWNED_CHAR_PTR(__s, __len, _M_get_allocator());
 
 1833      // Should perhaps be templatized with respect to the iterator type
 
 1834      // and use Sequence_buffer.  (It should perhaps use sequence_buffer
 
 1836      rope(const _CharT* __s, const _CharT* __e,
 
 1837           const allocator_type& __a = allocator_type())
 
 1841          __STL_ROPE_FROM_UNOWNED_CHAR_PTR(__s, __e - __s, _M_get_allocator());
 
 1844      rope(const const_iterator& __s, const const_iterator& __e,
 
 1845           const allocator_type& __a = allocator_type())
 
 1846      : _Base(_S_substring(__s._M_root, __s._M_current_pos,
 
 1847                           __e._M_current_pos), __a)
 
 1850      rope(const iterator& __s, const iterator& __e,
 
 1851           const allocator_type& __a = allocator_type())
 
 1852      : _Base(_S_substring(__s._M_root, __s._M_current_pos,
 
 1853                           __e._M_current_pos), __a)
 
 1856      rope(_CharT __c, const allocator_type& __a = allocator_type())
 
 1859        _CharT* __buf = this->_Data_allocate(_S_rounded_up_size(1));
 
 1861        __alloc_traits<allocator_type>::construct(_M_get_allocator(),
 
 1865            this->_M_tree_ptr = _S_new_RopeLeaf(__buf, 1,
 
 1866                                                _M_get_allocator());
 
 1870            _RopeRep::__STL_FREE_STRING(__buf, 1, _M_get_allocator());
 
 1871            __throw_exception_again;
 
 1875      rope(size_type __n, _CharT __c,
 
 1876           const allocator_type& __a = allocator_type());
 
 1878      rope(const allocator_type& __a = allocator_type())
 
 1881      // Construct a rope from a function that can compute its members
 
 1882      rope(char_producer<_CharT> *__fn, size_type __len, bool __delete_fn,
 
 1883           const allocator_type& __a = allocator_type())
 
 1886        this->_M_tree_ptr = (0 == __len)
 
 1888          : _S_new_RopeFunction(__fn, __len, __delete_fn, _M_get_allocator());
 
 1891      rope(const rope& __x, const allocator_type& __a = allocator_type())
 
 1892      : _Base(__x._M_tree_ptr, __a)
 
 1893      { _S_ref(this->_M_tree_ptr); }
 
 1896      { _S_unref(this->_M_tree_ptr); }
 
 1899      operator=(const rope& __x)
 
 1901        _RopeRep* __old = this->_M_tree_ptr;
 
 1902        this->_M_tree_ptr = __x._M_tree_ptr;
 
 1903        _S_ref(this->_M_tree_ptr);
 
 1911        _S_unref(this->_M_tree_ptr);
 
 1912        this->_M_tree_ptr = 0;
 
 1916      push_back(_CharT __x)
 
 1918        allocator_type __a = _M_get_allocator();
 
 1919        _RopeRep* __old = this->_M_tree_ptr;
 
 1921          = _S_destr_concat_char_iter(this->_M_tree_ptr, &__x, 1, __a);
 
 1928        _RopeRep* __old = this->_M_tree_ptr;
 
 1929        this->_M_tree_ptr = _S_substring(this->_M_tree_ptr,
 
 1930                                         0, this->_M_tree_ptr->_M_size - 1);
 
 1936      { return _S_fetch(this->_M_tree_ptr, this->_M_tree_ptr->_M_size - 1); }
 
 1939      push_front(_CharT __x)
 
 1941        _RopeRep* __old = this->_M_tree_ptr;
 
 1943          __STL_ROPE_FROM_UNOWNED_CHAR_PTR(&__x, 1, _M_get_allocator());
 
 1946            this->_M_tree_ptr = _S_concat(__left, this->_M_tree_ptr);
 
 1953            __throw_exception_again;
 
 1960        _RopeRep* __old = this->_M_tree_ptr;
 
 1962          = _S_substring(this->_M_tree_ptr, 1, this->_M_tree_ptr->_M_size);
 
 1968      { return _S_fetch(this->_M_tree_ptr, 0); }
 
 1973        _RopeRep* __old = this->_M_tree_ptr;
 
 1974        this->_M_tree_ptr = _S_balance(this->_M_tree_ptr);
 
 1979      copy(_CharT* __buffer) const
 
 1981        _Destroy_const(__buffer, __buffer + size(), _M_get_allocator());
 
 1982        _S_flatten(this->_M_tree_ptr, __buffer);
 
 1985      // This is the copy function from the standard, but
 
 1986      // with the arguments reordered to make it consistent with the
 
 1987      // rest of the interface.
 
 1988      // Note that this guaranteed not to compile if the draft standard
 
 1989      // order is assumed.
 
 1991      copy(size_type __pos, size_type __n, _CharT* __buffer) const
 
 1993        size_type __size = size();
 
 1994        size_type __len = (__pos + __n > __size? __size - __pos : __n);
 
 1996        _Destroy_const(__buffer, __buffer + __len, _M_get_allocator());
 
 1997        _S_flatten(this->_M_tree_ptr, __pos, __len, __buffer);
 
 2001      // Print to stdout, exposing structure.  May be useful for
 
 2002      // performance debugging.
 
 2005      { _S_dump(this->_M_tree_ptr); }
 
 2007      // Convert to 0 terminated string in new allocated memory.
 
 2008      // Embedded 0s in the input do not terminate the copy.
 
 2009      const _CharT* c_str() const;
 
 2011      // As above, but also use the flattened representation as
 
 2012      // the new rope representation.
 
 2013      const _CharT* replace_with_c_str();
 
 2015      // Reclaim memory for the c_str generated flattened string.
 
 2016      // Intentionally undocumented, since it's hard to say when this
 
 2017      // is safe for multiple threads.
 
 2021        if (0 == this->_M_tree_ptr)
 
 2023        if (__detail::_S_leaf == this->_M_tree_ptr->_M_tag &&
 
 2024            ((_RopeLeaf*)this->_M_tree_ptr)->_M_data ==
 
 2025            this->_M_tree_ptr->_M_c_string)
 
 2027            // Representation shared
 
 2031        this->_M_tree_ptr->_M_free_c_string();
 
 2033        this->_M_tree_ptr->_M_c_string = 0;
 
 2037      operator[] (size_type __pos) const
 
 2038      { return _S_fetch(this->_M_tree_ptr, __pos); }
 
 2041      at(size_type __pos) const
 
 2043        // if (__pos >= size()) throw out_of_range;  // XXX
 
 2044        return (*this)[__pos];
 
 2049      { return(const_iterator(this->_M_tree_ptr, 0)); }
 
 2051      // An easy way to get a const iterator from a non-const container.
 
 2054      { return(const_iterator(this->_M_tree_ptr, 0)); }
 
 2058      { return(const_iterator(this->_M_tree_ptr, size())); }
 
 2062      { return(const_iterator(this->_M_tree_ptr, size())); }
 
 2066      { return(0 == this->_M_tree_ptr? 0 : this->_M_tree_ptr->_M_size); }
 
 2075        return _S_min_len[int(__detail::_S_max_rope_depth) - 1] - 1;
 
 2076        //  Guarantees that the result can be sufficiently
 
 2077        //  balanced.  Longer ropes will probably still work,
 
 2078        //  but it's harder to make guarantees.
 
 2081      typedef std::reverse_iterator<const_iterator> const_reverse_iterator;
 
 2083      const_reverse_iterator
 
 2085      { return const_reverse_iterator(end()); }
 
 2087      const_reverse_iterator
 
 2088      const_rbegin() const
 
 2089      { return const_reverse_iterator(end()); }
 
 2091      const_reverse_iterator
 
 2093      { return const_reverse_iterator(begin()); }
 
 2095      const_reverse_iterator
 
 2097      { return const_reverse_iterator(begin()); }
 
 2099      template<class _CharT2, class _Alloc2>
 
 2100        friend rope<_CharT2, _Alloc2>
 
 2101        operator+(const rope<_CharT2, _Alloc2>& __left,
 
 2102                  const rope<_CharT2, _Alloc2>& __right);
 
 2104      template<class _CharT2, class _Alloc2>
 
 2105        friend rope<_CharT2, _Alloc2>
 
 2106        operator+(const rope<_CharT2, _Alloc2>& __left, const _CharT2* __right);
 
 2108      template<class _CharT2, class _Alloc2>
 
 2109        friend rope<_CharT2, _Alloc2>
 
 2110        operator+(const rope<_CharT2, _Alloc2>& __left, _CharT2 __right);
 
 2112      // The symmetric cases are intentionally omitted, since they're
 
 2113      // presumed to be less common, and we don't handle them as well.
 
 2115      // The following should really be templatized.  The first
 
 2116      // argument should be an input iterator or forward iterator with
 
 2117      // value_type _CharT.
 
 2119      append(const _CharT* __iter, size_type __n)
 
 2121        allocator_type __a = _M_get_allocator();
 
 2122        _RopeRep* __result =
 
 2123          _S_destr_concat_char_iter(this->_M_tree_ptr, __iter, __n, __a);
 
 2124        _S_unref(this->_M_tree_ptr);
 
 2125        this->_M_tree_ptr = __result;
 
 2130      append(const _CharT* __c_string)
 
 2132        size_type __len = _S_char_ptr_len(__c_string);
 
 2133        append(__c_string, __len);
 
 2138      append(const _CharT* __s, const _CharT* __e)
 
 2140        allocator_type __a = _M_get_allocator();
 
 2141        _RopeRep* __result =
 
 2142          _S_destr_concat_char_iter(this->_M_tree_ptr, __s, __e - __s, __a);
 
 2143        _S_unref(this->_M_tree_ptr);
 
 2144        this->_M_tree_ptr = __result;
 
 2149      append(const_iterator __s, const_iterator __e)
 
 2151        _Self_destruct_ptr __appendee(_S_substring(__s._M_root,
 
 2153                                                   __e._M_current_pos));
 
 2154        _RopeRep* __result = _S_concat(this->_M_tree_ptr, 
 
 2155                                       (_RopeRep*)__appendee);
 
 2156        _S_unref(this->_M_tree_ptr);
 
 2157        this->_M_tree_ptr = __result;
 
 2164        allocator_type __a = _M_get_allocator();
 
 2165        _RopeRep* __result =
 
 2166          _S_destr_concat_char_iter(this->_M_tree_ptr, &__c, 1, __a);
 
 2167        _S_unref(this->_M_tree_ptr);
 
 2168        this->_M_tree_ptr = __result;
 
 2174      { return append(_CharT()); }  // XXX why?
 
 2177      append(const rope& __y)
 
 2179        _RopeRep* __result = _S_concat(this->_M_tree_ptr, __y._M_tree_ptr);
 
 2180        _S_unref(this->_M_tree_ptr);
 
 2181        this->_M_tree_ptr = __result;
 
 2186      append(size_type __n, _CharT __c)
 
 2188        rope<_CharT,_Alloc> __last(__n, __c);
 
 2189        return append(__last);
 
 2195        _RopeRep* __tmp = this->_M_tree_ptr;
 
 2196        this->_M_tree_ptr = __b._M_tree_ptr;
 
 2197        __b._M_tree_ptr = __tmp;
 
 2201      // Result is included in refcount.
 
 2203      replace(_RopeRep* __old, size_type __pos1,
 
 2204              size_type __pos2, _RopeRep* __r)
 
 2211        _Self_destruct_ptr __left(_S_substring(__old, 0, __pos1));
 
 2212        _Self_destruct_ptr __right(_S_substring(__old, __pos2, __old->_M_size));
 
 2216          __result = _S_concat(__left, __right);
 
 2219            _Self_destruct_ptr __left_result(_S_concat(__left, __r));
 
 2220            __result = _S_concat(__left_result, __right);
 
 2227      insert(size_type __p, const rope& __r)
 
 2229        _RopeRep* __result =
 
 2230          replace(this->_M_tree_ptr, __p, __p, __r._M_tree_ptr);
 
 2231        _S_unref(this->_M_tree_ptr);
 
 2232        this->_M_tree_ptr = __result;
 
 2236      insert(size_type __p, size_type __n, _CharT __c)
 
 2238        rope<_CharT,_Alloc> __r(__n,__c);
 
 2243      insert(size_type __p, const _CharT* __i, size_type __n)
 
 2245        _Self_destruct_ptr __left(_S_substring(this->_M_tree_ptr, 0, __p));
 
 2246        _Self_destruct_ptr __right(_S_substring(this->_M_tree_ptr,
 
 2248        _Self_destruct_ptr __left_result(_S_concat_char_iter(__left, __i, __n,
 
 2249                                                             _M_get_allocator()));
 
 2250        // _S_ destr_concat_char_iter should be safe here.
 
 2251        // But as it stands it's probably not a win, since __left
 
 2252        // is likely to have additional references.
 
 2253        _RopeRep* __result = _S_concat(__left_result, __right);
 
 2254        _S_unref(this->_M_tree_ptr);
 
 2255        this->_M_tree_ptr = __result;
 
 2259      insert(size_type __p, const _CharT* __c_string)
 
 2260      { insert(__p, __c_string, _S_char_ptr_len(__c_string)); }
 
 2263      insert(size_type __p, _CharT __c)
 
 2264      { insert(__p, &__c, 1); }
 
 2267      insert(size_type __p)
 
 2269        _CharT __c = _CharT();
 
 2270        insert(__p, &__c, 1);
 
 2274      insert(size_type __p, const _CharT* __i, const _CharT* __j)
 
 2281      insert(size_type __p, const const_iterator& __i,
 
 2282             const const_iterator& __j)
 
 2289      insert(size_type __p, const iterator& __i,
 
 2290             const iterator& __j)
 
 2296      // (position, length) versions of replace operations:
 
 2299      replace(size_type __p, size_type __n, const rope& __r)
 
 2301        _RopeRep* __result =
 
 2302          replace(this->_M_tree_ptr, __p, __p + __n, __r._M_tree_ptr);
 
 2303        _S_unref(this->_M_tree_ptr);
 
 2304        this->_M_tree_ptr = __result;
 
 2308      replace(size_type __p, size_type __n,
 
 2309              const _CharT* __i, size_type __i_len)
 
 2311        rope __r(__i, __i_len);
 
 2312        replace(__p, __n, __r);
 
 2316      replace(size_type __p, size_type __n, _CharT __c)
 
 2319        replace(__p, __n, __r);
 
 2323      replace(size_type __p, size_type __n, const _CharT* __c_string)
 
 2325        rope __r(__c_string);
 
 2326        replace(__p, __n, __r);
 
 2330      replace(size_type __p, size_type __n,
 
 2331              const _CharT* __i, const _CharT* __j)
 
 2334        replace(__p, __n, __r);
 
 2338      replace(size_type __p, size_type __n,
 
 2339              const const_iterator& __i, const const_iterator& __j)
 
 2342        replace(__p, __n, __r);
 
 2346      replace(size_type __p, size_type __n,
 
 2347              const iterator& __i, const iterator& __j)
 
 2350        replace(__p, __n, __r);
 
 2353      // Single character variants:
 
 2355      replace(size_type __p, _CharT __c)
 
 2357        iterator __i(this, __p);
 
 2362      replace(size_type __p, const rope& __r)
 
 2363      { replace(__p, 1, __r); }
 
 2366      replace(size_type __p, const _CharT* __i, size_type __i_len)
 
 2367      { replace(__p, 1, __i, __i_len); }
 
 2370      replace(size_type __p, const _CharT* __c_string)
 
 2371      { replace(__p, 1, __c_string); }
 
 2374      replace(size_type __p, const _CharT* __i, const _CharT* __j)
 
 2375      { replace(__p, 1, __i, __j); }
 
 2378      replace(size_type __p, const const_iterator& __i,
 
 2379              const const_iterator& __j)
 
 2380      { replace(__p, 1, __i, __j); }
 
 2383      replace(size_type __p, const iterator& __i,
 
 2384              const iterator& __j)
 
 2385      { replace(__p, 1, __i, __j); }
 
 2387      // Erase, (position, size) variant.
 
 2389      erase(size_type __p, size_type __n)
 
 2391        _RopeRep* __result = replace(this->_M_tree_ptr, __p,
 
 2393        _S_unref(this->_M_tree_ptr);
 
 2394        this->_M_tree_ptr = __result;
 
 2397      // Insert, iterator variants.
 
 2399      insert(const iterator& __p, const rope& __r)
 
 2401        insert(__p.index(), __r);
 
 2406      insert(const iterator& __p, size_type __n, _CharT __c)
 
 2408        insert(__p.index(), __n, __c);
 
 2412      iterator insert(const iterator& __p, _CharT __c)
 
 2414        insert(__p.index(), __c);
 
 2419      insert(const iterator& __p )
 
 2421        insert(__p.index());
 
 2426      insert(const iterator& __p, const _CharT* c_string)
 
 2428        insert(__p.index(), c_string);
 
 2433      insert(const iterator& __p, const _CharT* __i, size_type __n)
 
 2435        insert(__p.index(), __i, __n);
 
 2440      insert(const iterator& __p, const _CharT* __i,
 
 2443        insert(__p.index(), __i, __j); 
 
 2448      insert(const iterator& __p,
 
 2449             const const_iterator& __i, const const_iterator& __j)
 
 2451        insert(__p.index(), __i, __j);
 
 2456      insert(const iterator& __p,
 
 2457             const iterator& __i, const iterator& __j)
 
 2459        insert(__p.index(), __i, __j);
 
 2463      // Replace, range variants.
 
 2465      replace(const iterator& __p, const iterator& __q, const rope& __r)
 
 2466      { replace(__p.index(), __q.index() - __p.index(), __r); }
 
 2469      replace(const iterator& __p, const iterator& __q, _CharT __c)
 
 2470      { replace(__p.index(), __q.index() - __p.index(), __c); }
 
 2473      replace(const iterator& __p, const iterator& __q,
 
 2474              const _CharT* __c_string)
 
 2475      { replace(__p.index(), __q.index() - __p.index(), __c_string); }
 
 2478      replace(const iterator& __p, const iterator& __q,
 
 2479              const _CharT* __i, size_type __n)
 
 2480      { replace(__p.index(), __q.index() - __p.index(), __i, __n); }
 
 2483      replace(const iterator& __p, const iterator& __q,
 
 2484              const _CharT* __i, const _CharT* __j)
 
 2485      { replace(__p.index(), __q.index() - __p.index(), __i, __j); }
 
 2488      replace(const iterator& __p, const iterator& __q,
 
 2489              const const_iterator& __i, const const_iterator& __j)
 
 2490      { replace(__p.index(), __q.index() - __p.index(), __i, __j); }
 
 2493      replace(const iterator& __p, const iterator& __q,
 
 2494              const iterator& __i, const iterator& __j)
 
 2495      { replace(__p.index(), __q.index() - __p.index(), __i, __j); }
 
 2497      // Replace, iterator variants.
 
 2499      replace(const iterator& __p, const rope& __r)
 
 2500      { replace(__p.index(), __r); }
 
 2503      replace(const iterator& __p, _CharT __c)
 
 2504      { replace(__p.index(), __c); }
 
 2507      replace(const iterator& __p, const _CharT* __c_string)
 
 2508      { replace(__p.index(), __c_string); }
 
 2511      replace(const iterator& __p, const _CharT* __i, size_type __n)
 
 2512      { replace(__p.index(), __i, __n); }
 
 2515      replace(const iterator& __p, const _CharT* __i, const _CharT* __j)
 
 2516      { replace(__p.index(), __i, __j); }
 
 2519      replace(const iterator& __p, const_iterator __i, const_iterator __j)
 
 2520      { replace(__p.index(), __i, __j); }
 
 2523      replace(const iterator& __p, iterator __i, iterator __j)
 
 2524      { replace(__p.index(), __i, __j); }
 
 2526      // Iterator and range variants of erase
 
 2528      erase(const iterator& __p, const iterator& __q)
 
 2530        size_type __p_index = __p.index();
 
 2531        erase(__p_index, __q.index() - __p_index);
 
 2532        return iterator(this, __p_index);
 
 2536      erase(const iterator& __p)
 
 2538        size_type __p_index = __p.index();
 
 2539        erase(__p_index, 1);
 
 2540        return iterator(this, __p_index);
 
 2544      substr(size_type __start, size_type __len = 1) const
 
 2546        return rope<_CharT, _Alloc>(_S_substring(this->_M_tree_ptr,
 
 2552      substr(iterator __start, iterator __end) const
 
 2554        return rope<_CharT, _Alloc>(_S_substring(this->_M_tree_ptr,
 
 2560      substr(iterator __start) const
 
 2562        size_type __pos = __start.index();
 
 2563        return rope<_CharT, _Alloc>(_S_substring(this->_M_tree_ptr,
 
 2568      substr(const_iterator __start, const_iterator __end) const
 
 2570        // This might eventually take advantage of the cache in the
 
 2572        return rope<_CharT, _Alloc>(_S_substring(this->_M_tree_ptr,
 
 2577      rope<_CharT, _Alloc>
 
 2578      substr(const_iterator __start)
 
 2580        size_type __pos = __start.index();
 
 2581        return rope<_CharT, _Alloc>(_S_substring(this->_M_tree_ptr,
 
 2585      static const size_type npos;
 
 2587      size_type find(_CharT __c, size_type __pos = 0) const;
 
 2590      find(const _CharT* __s, size_type __pos = 0) const
 
 2592        size_type __result_pos;
 
 2593        const_iterator __result =
 
 2594          std::search(const_begin() + __pos, const_end(),
 
 2595                      __s, __s + _S_char_ptr_len(__s));
 
 2596        __result_pos = __result.index();
 
 2597#ifndef __STL_OLD_ROPE_SEMANTICS
 
 2598        if (__result_pos == size())
 
 2599          __result_pos = npos;
 
 2601        return __result_pos;
 
 2606      { return(iterator(this, 0)); }
 
 2610      { return(iterator(this, size())); }
 
 2612      typedef std::reverse_iterator<iterator> reverse_iterator;
 
 2616      { return reverse_iterator(mutable_end()); }
 
 2620      { return reverse_iterator(mutable_begin()); }
 
 2623      mutable_reference_at(size_type __pos)
 
 2624      { return reference(this, __pos); }
 
 2628      operator[] (size_type __pos)
 
 2629      { return _char_ref_proxy(this, __pos); }
 
 2634        // if (__pos >= size()) throw out_of_range;  // XXX
 
 2635        return (*this)[__pos];
 
 2638      void resize(size_type __n, _CharT __c) { }
 
 2639      void resize(size_type __n) { }
 
 2640      void reserve(size_type __res_arg = 0) { }
 
 2644      { return max_size(); }
 
 2646      // Stuff below this line is dangerous because it's error prone.
 
 2647      // I would really like to get rid of it.
 
 2648      // copy function with funny arg ordering.
 
 2650      copy(_CharT* __buffer, size_type __n,
 
 2651           size_type __pos = 0) const
 
 2652      { return copy(__pos, __n, __buffer); }
 
 2656      { return mutable_end(); }
 
 2660      { return mutable_begin(); }
 
 2664      { return mutable_rend(); }
 
 2668      { return mutable_rbegin(); }
 
 2673      { return const_end(); }
 
 2677      { return const_begin(); }
 
 2679      const_reverse_iterator
 
 2681      { return const_rend(); }
 
 2683      const_reverse_iterator
 
 2685      { return const_rbegin(); }
 
 2690  template <class _CharT, class _Alloc>
 
 2691    const typename rope<_CharT, _Alloc>::size_type
 
 2692    rope<_CharT, _Alloc>::npos = (size_type)(-1);
 
 2694  template <class _CharT, class _Alloc>
 
 2695    inline bool operator==(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2696                           const _Rope_const_iterator<_CharT, _Alloc>& __y)
 
 2697    { return (__x._M_current_pos == __y._M_current_pos
 
 2698              && __x._M_root == __y._M_root); }
 
 2700  template <class _CharT, class _Alloc>
 
 2701    inline bool operator<(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2702                          const _Rope_const_iterator<_CharT, _Alloc>& __y)
 
 2703    { return (__x._M_current_pos < __y._M_current_pos); }
 
 2705  template <class _CharT, class _Alloc>
 
 2706    inline bool operator!=(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2707                           const _Rope_const_iterator<_CharT, _Alloc>& __y)
 
 2708    { return !(__x == __y); }
 
 2710  template <class _CharT, class _Alloc>
 
 2711    inline bool operator>(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2712                          const _Rope_const_iterator<_CharT, _Alloc>& __y)
 
 2713    { return __y < __x; }
 
 2715  template <class _CharT, class _Alloc>
 
 2717    operator<=(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2718               const _Rope_const_iterator<_CharT, _Alloc>& __y)
 
 2719    { return !(__y < __x); }
 
 2721  template <class _CharT, class _Alloc>
 
 2723    operator>=(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2724               const _Rope_const_iterator<_CharT, _Alloc>& __y)
 
 2725    { return !(__x < __y); }
 
 2727  template <class _CharT, class _Alloc>
 
 2728    inline std::ptrdiff_t
 
 2729    operator-(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2730              const _Rope_const_iterator<_CharT, _Alloc>& __y)
 
 2732      return (std::ptrdiff_t)__x._M_current_pos
 
 2733        - (std::ptrdiff_t)__y._M_current_pos;
 
 2736  template <class _CharT, class _Alloc>
 
 2737    inline _Rope_const_iterator<_CharT, _Alloc>
 
 2738    operator-(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2740    { return _Rope_const_iterator<_CharT, _Alloc>(__x._M_root,
 
 2741                                                  __x._M_current_pos - __n); }
 
 2743  template <class _CharT, class _Alloc>
 
 2744    inline _Rope_const_iterator<_CharT, _Alloc>
 
 2745    operator+(const _Rope_const_iterator<_CharT, _Alloc>& __x,
 
 2747    { return _Rope_const_iterator<_CharT, _Alloc>(__x._M_root,
 
 2748                                                  __x._M_current_pos + __n); }
 
 2750  template <class _CharT, class _Alloc>
 
 2751    inline _Rope_const_iterator<_CharT, _Alloc>
 
 2752    operator+(std::ptrdiff_t __n,
 
 2753              const _Rope_const_iterator<_CharT, _Alloc>& __x)
 
 2754  { return _Rope_const_iterator<_CharT, _Alloc>(__x._M_root,
 
 2755                                                __x._M_current_pos + __n); }
 
 2757  template <class _CharT, class _Alloc>
 
 2759    operator==(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2760               const _Rope_iterator<_CharT, _Alloc>& __y)
 
 2761    {return (__x._M_current_pos == __y._M_current_pos
 
 2762             && __x._M_root_rope == __y._M_root_rope); }
 
 2764  template <class _CharT, class _Alloc>
 
 2766    operator<(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2767              const _Rope_iterator<_CharT, _Alloc>& __y)
 
 2768    { return (__x._M_current_pos < __y._M_current_pos); }
 
 2770  template <class _CharT, class _Alloc>
 
 2772    operator!=(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2773               const _Rope_iterator<_CharT, _Alloc>& __y)
 
 2774    { return !(__x == __y); }
 
 2776  template <class _CharT, class _Alloc>
 
 2778    operator>(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2779              const _Rope_iterator<_CharT, _Alloc>& __y)
 
 2780    { return __y < __x; }
 
 2782  template <class _CharT, class _Alloc>
 
 2784    operator<=(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2785               const _Rope_iterator<_CharT, _Alloc>& __y)
 
 2786    { return !(__y < __x); }
 
 2788  template <class _CharT, class _Alloc>
 
 2790    operator>=(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2791               const _Rope_iterator<_CharT, _Alloc>& __y)
 
 2792    { return !(__x < __y); }
 
 2794  template <class _CharT, class _Alloc>
 
 2795    inline std::ptrdiff_t
 
 2796    operator-(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2797              const _Rope_iterator<_CharT, _Alloc>& __y)
 
 2798    { return ((std::ptrdiff_t)__x._M_current_pos
 
 2799              - (std::ptrdiff_t)__y._M_current_pos); }
 
 2801  template <class _CharT, class _Alloc>
 
 2802    inline _Rope_iterator<_CharT, _Alloc>
 
 2803    operator-(const _Rope_iterator<_CharT, _Alloc>& __x,
 
 2805    { return _Rope_iterator<_CharT, _Alloc>(__x._M_root_rope,
 
 2806                                            __x._M_current_pos - __n); }
 
 2808  template <class _CharT, class _Alloc>
 
 2809    inline _Rope_iterator<_CharT, _Alloc>
 
 2810    operator+(const _Rope_iterator<_CharT, _Alloc>& __x, std::ptrdiff_t __n)
 
 2811    { return _Rope_iterator<_CharT, _Alloc>(__x._M_root_rope,
 
 2812                                            __x._M_current_pos + __n); }
 
 2814  template <class _CharT, class _Alloc>
 
 2815    inline _Rope_iterator<_CharT, _Alloc>
 
 2816    operator+(std::ptrdiff_t __n, const _Rope_iterator<_CharT, _Alloc>& __x)
 
 2817    { return _Rope_iterator<_CharT, _Alloc>(__x._M_root_rope,
 
 2818                                            __x._M_current_pos + __n); }
 
 2820  template <class _CharT, class _Alloc>
 
 2821    inline rope<_CharT, _Alloc>
 
 2822    operator+(const rope<_CharT, _Alloc>& __left,
 
 2823              const rope<_CharT, _Alloc>& __right)
 
 2825      // Inlining this should make it possible to keep __left and
 
 2826      // __right in registers.
 
 2827      typedef rope<_CharT, _Alloc> rope_type;
 
 2828      return rope_type(rope_type::_S_concat(__left._M_tree_ptr, 
 
 2829                                            __right._M_tree_ptr));
 
 2832  template <class _CharT, class _Alloc>
 
 2833    inline rope<_CharT, _Alloc>&
 
 2834    operator+=(rope<_CharT, _Alloc>& __left,
 
 2835               const rope<_CharT, _Alloc>& __right)
 
 2837      __left.append(__right);
 
 2841  template <class _CharT, class _Alloc>
 
 2842    inline rope<_CharT, _Alloc>
 
 2843    operator+(const rope<_CharT, _Alloc>& __left,
 
 2844              const _CharT* __right)
 
 2846      typedef rope<_CharT, _Alloc> rope_type;
 
 2847      std::size_t __rlen = rope_type::_S_char_ptr_len(__right);
 
 2848      _Alloc __a = __left.get_allocator();
 
 2849      return rope_type(rope_type::_S_concat_char_iter(__left._M_tree_ptr,
 
 2850                                                      __right, __rlen, __a));
 
 2853  template <class _CharT, class _Alloc>
 
 2854    inline rope<_CharT, _Alloc>&
 
 2855    operator+=(rope<_CharT, _Alloc>& __left,
 
 2856               const _CharT* __right)
 
 2858      __left.append(__right);
 
 2862  template <class _CharT, class _Alloc>
 
 2863    inline rope<_CharT, _Alloc>
 
 2864    operator+(const rope<_CharT, _Alloc>& __left, _CharT __right)
 
 2866      typedef rope<_CharT, _Alloc> rope_type;
 
 2867      _Alloc __a = __left.get_allocator();
 
 2868      return rope_type(rope_type::_S_concat_char_iter(__left._M_tree_ptr,
 
 2872  template <class _CharT, class _Alloc>
 
 2873    inline rope<_CharT, _Alloc>&
 
 2874    operator+=(rope<_CharT, _Alloc>& __left, _CharT __right)
 
 2876      __left.append(__right);
 
 2880  template <class _CharT, class _Alloc>
 
 2882    operator<(const rope<_CharT, _Alloc>& __left,
 
 2883              const rope<_CharT, _Alloc>& __right)
 
 2884    { return __left.compare(__right) < 0; }
 
 2886  template <class _CharT, class _Alloc>
 
 2888    operator==(const rope<_CharT, _Alloc>& __left,
 
 2889               const rope<_CharT, _Alloc>& __right)
 
 2890    { return __left.compare(__right) == 0; }
 
 2892  template <class _CharT, class _Alloc>
 
 2894    operator==(const _Rope_char_ptr_proxy<_CharT, _Alloc>& __x,
 
 2895               const _Rope_char_ptr_proxy<_CharT, _Alloc>& __y)
 
 2896    { return (__x._M_pos == __y._M_pos && __x._M_root == __y._M_root); }
 
 2898  template <class _CharT, class _Alloc>
 
 2900    operator!=(const rope<_CharT, _Alloc>& __x,
 
 2901               const rope<_CharT, _Alloc>& __y)
 
 2902    { return !(__x == __y); }
 
 2904  template <class _CharT, class _Alloc>
 
 2906    operator>(const rope<_CharT, _Alloc>& __x,
 
 2907              const rope<_CharT, _Alloc>& __y)
 
 2908    { return __y < __x; }
 
 2910  template <class _CharT, class _Alloc>
 
 2912    operator<=(const rope<_CharT, _Alloc>& __x,
 
 2913               const rope<_CharT, _Alloc>& __y)
 
 2914    { return !(__y < __x); }
 
 2916  template <class _CharT, class _Alloc>
 
 2918    operator>=(const rope<_CharT, _Alloc>& __x,
 
 2919               const rope<_CharT, _Alloc>& __y)
 
 2920    { return !(__x < __y); }
 
 2922  template <class _CharT, class _Alloc>
 
 2924    operator!=(const _Rope_char_ptr_proxy<_CharT, _Alloc>& __x,
 
 2925               const _Rope_char_ptr_proxy<_CharT, _Alloc>& __y)
 
 2926    { return !(__x == __y); }
 
 2928  template<class _CharT, class _Traits, class _Alloc>
 
 2929    std::basic_ostream<_CharT, _Traits>&
 
 2930    operator<<(std::basic_ostream<_CharT, _Traits>& __o,
 
 2931               const rope<_CharT, _Alloc>& __r);
 
 2933  typedef rope<char> crope;
 
 2934  typedef rope<wchar_t> wrope;
 
 2936  inline crope::reference
 
 2937  __mutable_reference_at(crope& __c, std::size_t __i)
 
 2938  { return __c.mutable_reference_at(__i); }
 
 2940  inline wrope::reference
 
 2941  __mutable_reference_at(wrope& __c, std::size_t __i)
 
 2942  { return __c.mutable_reference_at(__i); }
 
 2944  template <class _CharT, class _Alloc>
 
 2946    swap(rope<_CharT, _Alloc>& __x, rope<_CharT, _Alloc>& __y)
 
 2949_GLIBCXX_END_NAMESPACE_VERSION
 
 2953namespace std _GLIBCXX_VISIBILITY(default)
 
 2955_GLIBCXX_BEGIN_NAMESPACE_VERSION
 
 2960    struct hash<__gnu_cxx::crope>
 
 2963      operator()(const __gnu_cxx::crope& __str) const
 
 2965        size_t __size = __str.size();
 
 2968        return 13 * __str[0] + 5 * __str[__size - 1] + __size;
 
 2974    struct hash<__gnu_cxx::wrope>
 
 2977      operator()(const __gnu_cxx::wrope& __str) const
 
 2979        size_t __size = __str.size();
 
 2982        return 13 * __str[0] + 5 * __str[__size - 1] + __size;
 
 2987_GLIBCXX_END_NAMESPACE_VERSION
 
 2990# include <ext/ropeimpl.h>