0c73d13351
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/trunk@51474 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
355 lines
9.5 KiB
C++
355 lines
9.5 KiB
C++
///////////////////////////////////////////////////////////////////////////////
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// Name: wx/vector.h
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// Purpose: STL vector clone
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// Author: Lindsay Mathieson
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// Modified by: Vaclav Slavik - make it a template
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// Created: 30.07.2001
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// Copyright: (c) 2001 Lindsay Mathieson <lindsay@mathieson.org>,
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// 2007 Vaclav Slavik <vslavik@fastmail.fm>
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// Licence: wxWindows licence
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///////////////////////////////////////////////////////////////////////////////
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#ifndef _WX_VECTOR_H_
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#define _WX_VECTOR_H_
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#include "wx/defs.h"
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#if wxUSE_STL
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#include <vector>
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#define wxVector std::vector
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#else // !wxUSE_STL
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#include "wx/utils.h"
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#include "wx/meta/movable.h"
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#include "wx/meta/if.h"
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#include "wx/beforestd.h"
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#include <new> // for placement new
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#include "wx/afterstd.h"
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namespace wxPrivate
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{
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// These templates encapsulate memory operations for use by wxVector; there are
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// two implementations, both in generic way for any C++ types and as an
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// optimized version for "movable" types that uses realloc() and memmove().
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// version for movable types:
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template<typename T>
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struct wxVectorMemOpsMovable
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{
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static void Free(T* array)
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{ free(array); }
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static T* Realloc(T* old, size_t newCapacity, size_t WXUNUSED(occupiedSize))
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{ return (T*)realloc(old, newCapacity * sizeof(T)); }
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static void MemmoveBackward(T* dest, T* source, size_t count)
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{ memmove(dest, source, count * sizeof(T)); }
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static void MemmoveForward(T* dest, T* source, size_t count)
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{ memmove(dest, source, count * sizeof(T)); }
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};
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// generic version for non-movable types:
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template<typename T>
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struct wxVectorMemOpsGeneric
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{
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static void Free(T* array)
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{ ::operator delete(array); }
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static T* Realloc(T* old, size_t newCapacity, size_t occupiedSize)
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{
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T *mem = (T*)::operator new(newCapacity * sizeof(T));
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for ( size_t i = 0; i < occupiedSize; i++ )
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{
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new(mem + i) T(old[i]);
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old[i].~T();
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}
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::operator delete(old);
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return mem;
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}
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static void MemmoveBackward(T* dest, T* source, size_t count)
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{
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wxASSERT( dest < source );
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T* destptr = dest;
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T* sourceptr = source;
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for ( size_t i = count; i > 0; --i, ++destptr, ++sourceptr )
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{
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new(destptr) T(*sourceptr);
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sourceptr->~T();
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}
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}
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static void MemmoveForward(T* dest, T* source, size_t count)
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{
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wxASSERT( dest > source );
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T* destptr = dest + count - 1;
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T* sourceptr = source + count - 1;
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for ( size_t i = count; i > 0; --i, --destptr, --sourceptr )
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{
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new(destptr) T(*sourceptr);
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sourceptr->~T();
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}
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}
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};
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} // namespace wxPrivate
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template<typename T>
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class wxVector
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{
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private:
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// This cryptic expression means "typedef Ops to wxVectorMemOpsMovable if
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// type T is movable type, otherwise to wxVectorMemOpsGeneric".
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//
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// Note that we use typedef instead of privately deriving from this (which
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// would allowed us to omit "Ops::" prefixes below) to keep VC6 happy,
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// it can't compile code that derives from wxIf<...>::value.
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typedef typename wxIf< wxIsMovable<T>::value,
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wxPrivate::wxVectorMemOpsMovable<T>,
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wxPrivate::wxVectorMemOpsGeneric<T> >::value
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Ops;
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public:
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typedef size_t size_type;
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typedef T value_type;
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typedef value_type* iterator;
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typedef const value_type* const_iterator;
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typedef value_type& reference;
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wxVector() : m_size(0), m_capacity(0), m_values(NULL) {}
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wxVector(const wxVector& c)
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{
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Copy(c);
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}
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~wxVector()
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{
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clear();
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}
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void clear()
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{
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// call destructors of stored objects:
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for ( size_type i = 0; i < m_size; i++ )
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{
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m_values[i].~T();
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}
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Ops::Free(m_values);
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m_values = NULL;
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m_size = m_capacity = 0;
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}
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void reserve(size_type n)
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{
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if ( n <= m_capacity )
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return;
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// increase the size twice, unless we're already too big or unless
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// more is requested
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//
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// NB: casts to size_type are needed to suppress mingw32 warnings about
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// mixing enums and ints in the same expression
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const size_type increment = m_size > 0
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? wxMin(m_size, (size_type)ALLOC_MAX_SIZE)
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: (size_type)ALLOC_INITIAL_SIZE;
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if ( m_capacity + increment > n )
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n = m_capacity + increment;
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m_values = Ops::Realloc(m_values, n * sizeof(value_type), m_size);
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m_capacity = n;
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}
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size_type size() const
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{
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return m_size;
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}
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size_type capacity() const
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{
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return m_capacity;
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}
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bool empty() const
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{
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return size() == 0;
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}
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wxVector& operator=(const wxVector& vb)
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{
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Copy(vb);
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return *this;
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}
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void push_back(const value_type& v)
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{
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reserve(size() + 1);
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// use placement new to initialize new object in preallocated place in
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// m_values and store 'v' in it:
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void* const place = m_values + m_size;
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new(place) value_type(v);
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// only increase m_size if the ctor didn't throw an exception; notice
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// that if it _did_ throw, everything is OK, because we only increased
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// vector's capacity so far and possibly written some data to
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// uninitialized memory at the end of m_values
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m_size++;
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}
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void pop_back()
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{
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erase(end() - 1);
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}
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const value_type& at(size_type idx) const
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{
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wxASSERT(idx < m_size);
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return m_values[idx];
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}
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value_type& at(size_type idx)
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{
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wxASSERT(idx < m_size);
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return m_values[idx];
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}
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const value_type& operator[](size_type idx) const { return at(idx); }
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value_type& operator[](size_type idx) { return at(idx); }
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const value_type& front() const { return at(0); }
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value_type& front() { return at(0); }
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const value_type& back() const { return at(size() - 1); }
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value_type& back() { return at(size() - 1); }
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const_iterator begin() const { return m_values; }
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iterator begin() { return m_values; }
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const_iterator end() const { return m_values + size(); }
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iterator end() { return m_values + size(); }
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iterator insert(iterator it, const value_type& v = value_type())
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{
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// NB: this must be done before reserve(), because reserve()
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// invalidates iterators!
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const size_t idx = it - begin();
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const size_t after = end() - it;
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reserve(size() + 1);
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// unless we're inserting at the end, move following elements out of
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// the way:
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if ( after > 0 )
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{
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Ops::MemmoveForward(m_values + idx + 1, m_values + idx, after);
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}
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#if wxUSE_EXCEPTIONS
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try
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{
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#endif
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// use placement new to initialize new object in preallocated place
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// in m_values and store 'v' in it:
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void* const place = m_values + idx;
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new(place) value_type(v);
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#if wxUSE_EXCEPTIONS
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}
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catch ( ... )
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{
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// if the ctor threw an exception, we need to move all the elements
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// back to their original positions in m_values
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if ( after > 0 )
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{
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Ops::MemmoveBackward(m_values + idx, m_values + idx + 1, after);
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}
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throw; // rethrow the exception
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}
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#endif // wxUSE_EXCEPTIONS
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// increment m_size only if ctor didn't throw -- if it did, we'll be
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// left with m_values larger than necessary, but number of elements will
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// be the same
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m_size++;
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return begin() + idx;
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}
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iterator erase(iterator it)
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{
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return erase(it, it + 1);
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}
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iterator erase(iterator first, iterator last)
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{
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if ( first == last )
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return first;
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wxASSERT( first < end() && last <= end() );
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const size_type idx = first - begin();
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const size_type count = last - first;
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const size_type after = end() - last;
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// erase elements by calling their destructors:
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for ( iterator i = first; i < last; ++i )
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i->~T();
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// once that's done, move following elements over to the freed space:
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if ( after > 0 )
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{
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Ops::MemmoveBackward(m_values + idx, m_values + idx + count, after);
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}
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m_size -= count;
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return begin() + idx;
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}
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#if WXWIN_COMPATIBILITY_2_8
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wxDEPRECATED( size_type erase(size_type n) );
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#endif // WXWIN_COMPATIBILITY_2_8
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private:
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// VC6 can't compile static const int members
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enum { ALLOC_INITIAL_SIZE = 16 };
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enum { ALLOC_MAX_SIZE = 4096 };
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void Copy(const wxVector& vb)
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{
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clear();
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reserve(vb.size());
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for ( const_iterator i = vb.begin(); i != vb.end(); ++i )
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push_back(*i);
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}
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private:
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size_type m_size,
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m_capacity;
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value_type *m_values;
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};
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#if WXWIN_COMPATIBILITY_2_8
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template<typename T>
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inline typename wxVector<T>::size_type wxVector<T>::erase(size_type n)
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{
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erase(begin() + n);
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return n;
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}
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#endif // WXWIN_COMPATIBILITY_2_8
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#endif // wxUSE_STL/!wxUSE_STL
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#if WXWIN_COMPATIBILITY_2_8
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#define WX_DECLARE_VECTORBASE(obj, cls) typedef wxVector<obj> cls
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#define _WX_DECLARE_VECTOR(obj, cls, exp) WX_DECLARE_VECTORBASE(obj, cls)
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#define WX_DECLARE_VECTOR(obj, cls) WX_DECLARE_VECTORBASE(obj, cls)
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#endif // WXWIN_COMPATIBILITY_2_8
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#endif // _WX_VECTOR_H_
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