685 lines
22 KiB
C++
685 lines
22 KiB
C++
///\file
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/******************************************************************************
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The MIT License(MIT)
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Embedded Template Library.
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https://github.com/ETLCPP/etl
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https://www.etlcpp.com
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Copyright(c) 2014 John Wellbelove
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files(the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and / or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions :
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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******************************************************************************/
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#ifndef ETL_IPOOL_INCLUDED
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#define ETL_IPOOL_INCLUDED
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#include "platform.h"
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#include "error_handler.h"
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#include "exception.h"
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#include "iterator.h"
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#include "memory.h"
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#include "placement_new.h"
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#include "static_assert.h"
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#include "utility.h"
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#define ETL_POOL_CPP03_CODE 0
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namespace etl
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{
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//***************************************************************************
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/// The base class for pool exceptions.
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///\ingroup pool
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//***************************************************************************
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class pool_exception : public exception
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{
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public:
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pool_exception(string_type reason_, string_type file_name_, numeric_type line_number_)
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: exception(reason_, file_name_, line_number_)
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{
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}
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};
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//***************************************************************************
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/// The exception thrown when the pool has no more free items.
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///\ingroup pool
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//***************************************************************************
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class pool_no_allocation : public pool_exception
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{
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public:
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explicit pool_no_allocation(string_type file_name_, numeric_type line_number_)
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: pool_exception(ETL_ERROR_TEXT("pool:allocation", ETL_POOL_FILE_ID"A"), file_name_, line_number_)
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{
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}
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};
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//***************************************************************************
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/// The exception thrown when an object is released which does not belong to
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/// the pool.
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///\ingroup pool
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//***************************************************************************
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class pool_object_not_in_pool : public pool_exception
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{
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public:
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pool_object_not_in_pool(string_type file_name_, numeric_type line_number_)
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: pool_exception(ETL_ERROR_TEXT("pool:not in pool", ETL_POOL_FILE_ID"B"), file_name_, line_number_)
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{
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}
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};
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//***************************************************************************
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/// The exception thrown when an the type requested is larger than the element
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/// size.
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///\ingroup pool
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//***************************************************************************
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class pool_element_size : public pool_exception
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{
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public:
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pool_element_size(string_type file_name_, numeric_type line_number_)
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: pool_exception(ETL_ERROR_TEXT("pool:element size", ETL_POOL_FILE_ID"C"), file_name_, line_number_)
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{
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}
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};
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//***************************************************************************
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///\ingroup pool
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//***************************************************************************
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class ipool
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{
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public:
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typedef size_t size_type;
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private:
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//***************************************************************************
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/// Iterator helper functions
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//***************************************************************************
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const char* buffer_end() const
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{
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return p_buffer + Item_Size * items_initialised;
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}
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//***************************************************************************
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/// Optimization: a candidate for being in free list, but no guarantee
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/// if false, cannot be part of free list, and therefore is allocated
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/// if true, possibly in free list, but still needs to be checked via free
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/// list
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//***************************************************************************
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bool is_pointing_into_pool_or_end_or_nullptr(const char* address) const
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{
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return address == ETL_NULLPTR || (p_buffer <= address && address <= buffer_end());
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}
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//***************************************************************************
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/// Iterate free list to confirm specified address is included or not
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//***************************************************************************
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bool is_in_free_list(const char* address) const
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{
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const char* i = p_next;
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while (i != ETL_NULLPTR)
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{
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if (address == i)
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{
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return true;
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}
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i = *reinterpret_cast<const char* const*>(i);
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}
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return false;
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}
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public:
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//***************************************************************************
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template <bool is_const>
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class ipool_iterator
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{
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public:
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friend class ipool;
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typedef typename etl::conditional<is_const, const char*, char*>::type value_type;
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typedef typename etl::conditional<is_const, const char*&, char*&>::type reference;
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typedef typename etl::conditional<is_const, const char**, char**>::type pointer;
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typedef ptrdiff_t difference_type;
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typedef ETL_OR_STD::forward_iterator_tag iterator_category;
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typedef typename etl::conditional<is_const, const void*, void*>::type void_type;
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typedef typename etl::conditional<is_const, const ipool, ipool>::type pool_type;
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typedef typename etl::conditional<is_const, const char* const*, char**>::type pointer_type;
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//***************************************************************************
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ipool_iterator(const ipool_iterator& other)
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: p_current(other.p_current)
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, p_pool(other.p_pool)
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{
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find_allocated();
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}
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//***************************************************************************
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ipool_iterator& operator++()
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{
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p_current = p_current + p_pool->Item_Size;
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find_allocated();
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return *this;
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}
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//***************************************************************************
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ipool_iterator operator++(int)
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{
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ipool_iterator temp(*this);
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p_current = p_current + p_pool->Item_Size;
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find_allocated();
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return temp;
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}
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//***************************************************************************
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ipool_iterator& operator=(const ipool_iterator& other)
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{
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p_current = other.p_current;
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p_pool = other.p_pool;
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return *this;
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}
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//***************************************************************************
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void_type operator*() const
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{
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return p_current;
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}
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//***************************************************************************
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template <typename T>
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T& get() const
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{
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return *reinterpret_cast<T*>(p_current);
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}
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//***************************************************************************
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friend bool operator==(const ipool_iterator& lhs, const ipool_iterator& rhs)
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{
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return lhs.p_current == rhs.p_current;
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}
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//***************************************************************************
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friend bool operator!=(const ipool_iterator& lhs, const ipool_iterator& rhs)
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{
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return !(lhs == rhs);
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}
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private:
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//***************************************************************************
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/// Find allocated item by increasing p_current, starting at p_current.
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/// Leave p_current at buffer_end() if no further allocated item found.
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//***************************************************************************
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void find_allocated()
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{
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while (p_current < p_pool->buffer_end())
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{
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value_type value = *reinterpret_cast<pointer_type>(p_current);
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if (!p_pool->is_pointing_into_pool_or_end_or_nullptr(value))
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{
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return;
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}
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if (!p_pool->is_in_free_list(p_current))
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{
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return;
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}
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p_current += p_pool->Item_Size;
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}
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}
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//***************************************************************************
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/// Constructor
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//***************************************************************************
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ipool_iterator(value_type p, pool_type* pool_)
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: p_current(p)
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, p_pool(pool_)
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{
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find_allocated();
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}
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value_type p_current;
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pool_type* p_pool;
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};
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template <bool is_const>
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friend class ipool_iterator;
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typedef ipool_iterator<false> iterator;
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//***************************************************************************
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class const_iterator : public ipool_iterator<true>
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{
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public:
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const_iterator(const ipool_iterator& other)
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: ipool_iterator(other)
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{
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}
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const_iterator(const ipool_iterator<false>& other)
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: ipool_iterator(other.p_current, other.p_pool)
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{
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}
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const_iterator(value_type p, pool_type* pool_)
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: ipool_iterator<true>(p, pool_)
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{
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}
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};
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//***************************************************************************
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iterator begin()
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{
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return iterator(p_buffer, this);
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}
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//***************************************************************************
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iterator end()
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{
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return iterator(p_buffer + Item_Size * items_initialised, this);
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}
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//***************************************************************************
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const_iterator begin() const
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{
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return const_iterator(p_buffer, this);
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}
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//***************************************************************************
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const_iterator end() const
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{
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return const_iterator(p_buffer + Item_Size * items_initialised, this);
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}
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//***************************************************************************
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const_iterator cbegin() const
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{
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return const_iterator(p_buffer, this);
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}
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//***************************************************************************
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const_iterator cend() const
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{
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return const_iterator(p_buffer + Item_Size * items_initialised, this);
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}
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//*************************************************************************
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/// Allocate storage for an object from the pool.
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/// If asserts or exceptions are enabled and there are no more free items an
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/// etl::pool_no_allocation if thrown, otherwise a null pointer is returned.
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//*************************************************************************
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template <typename T>
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T* allocate()
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{
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if (sizeof(T) > Item_Size)
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{
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ETL_ASSERT(false, ETL_ERROR(etl::pool_element_size));
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}
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return reinterpret_cast<T*>(allocate_item());
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}
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#if ETL_CPP11_NOT_SUPPORTED || ETL_POOL_CPP03_CODE || ETL_USING_STLPORT
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//*************************************************************************
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/// Allocate storage for an object from the pool and create default.
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/// If asserts or exceptions are enabled and there are no more free items an
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/// etl::pool_no_allocation if thrown, otherwise a null pointer is returned.
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//*************************************************************************
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template <typename T>
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T* create()
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{
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T* p = allocate<T>();
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if (p)
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{
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::new (p) T();
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}
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return p;
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}
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//*************************************************************************
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/// Allocate storage for an object from the pool and create with 1
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/// parameter. If asserts or exceptions are enabled and there are no more
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/// free items an etl::pool_no_allocation if thrown, otherwise a null
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/// pointer is returned.
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//*************************************************************************
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template <typename T, typename T1>
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T* create(const T1& value1)
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{
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T* p = allocate<T>();
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if (p)
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{
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::new (p) T(value1);
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}
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return p;
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}
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template <typename T, typename T1, typename T2>
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T* create(const T1& value1, const T2& value2)
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{
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T* p = allocate<T>();
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if (p)
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{
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::new (p) T(value1, value2);
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}
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return p;
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}
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template <typename T, typename T1, typename T2, typename T3>
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T* create(const T1& value1, const T2& value2, const T3& value3)
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{
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T* p = allocate<T>();
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if (p)
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{
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::new (p) T(value1, value2, value3);
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}
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return p;
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}
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template <typename T, typename T1, typename T2, typename T3, typename T4>
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T* create(const T1& value1, const T2& value2, const T3& value3, const T4& value4)
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{
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T* p = allocate<T>();
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if (p)
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{
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::new (p) T(value1, value2, value3, value4);
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}
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return p;
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}
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#else
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//*************************************************************************
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/// Emplace with variadic constructor parameters.
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//*************************************************************************
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template <typename T, typename... Args>
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T* create(Args&&... args)
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{
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T* p = allocate<T>();
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if (p)
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{
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::new (p) T(etl::forward<Args>(args)...);
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}
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return p;
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}
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#endif
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//*************************************************************************
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/// Destroys the object.
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/// Undefined behaviour if the pool does not contain a 'T'.
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/// \param p_object A pointer to the object to be destroyed.
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//*************************************************************************
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template <typename T>
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void destroy(const T* const p_object)
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{
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if (sizeof(T) > Item_Size)
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{
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ETL_ASSERT(false, ETL_ERROR(etl::pool_element_size));
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}
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p_object->~T();
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release(p_object);
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}
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//*************************************************************************
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/// Release an object in the pool.
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/// If asserts or exceptions are enabled and the object does not belong to
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/// this pool then an etl::pool_object_not_in_pool is thrown. \param
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/// p_object A pointer to the object to be released.
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//*************************************************************************
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void release(const void* const p_object)
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{
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const uintptr_t p = uintptr_t(p_object);
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release_item((char*)p);
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}
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//*************************************************************************
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/// Release all objects in the pool.
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//*************************************************************************
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void release_all()
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{
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items_allocated = 0;
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items_initialised = 0;
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p_next = p_buffer;
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}
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//*************************************************************************
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/// Check to see if the object belongs to the pool.
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/// \param p_object A pointer to the object to be checked.
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/// \return <b>true<\b> if it does, otherwise <b>false</b>
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//*************************************************************************
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bool is_in_pool(const void* const p_object) const
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{
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const uintptr_t p = uintptr_t(p_object);
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return is_item_in_pool((const char*)p);
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}
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//*************************************************************************
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/// Returns the maximum number of items in the pool.
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//*************************************************************************
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size_t max_size() const
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{
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return Max_Size;
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}
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//*************************************************************************
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/// Returns the maximum size of an item in the pool.
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//*************************************************************************
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size_t max_item_size() const
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{
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return Item_Size;
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}
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//*************************************************************************
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/// Returns the maximum number of items in the pool.
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//*************************************************************************
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size_t capacity() const
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{
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return Max_Size;
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}
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//*************************************************************************
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/// Returns the number of free items in the pool.
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//*************************************************************************
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size_t available() const
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{
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return Max_Size - items_allocated;
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}
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//*************************************************************************
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/// Returns the number of allocated items in the pool.
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//*************************************************************************
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size_t size() const
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{
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return items_allocated;
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}
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//*************************************************************************
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/// Checks to see if there are no allocated items in the pool.
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/// \return <b>true</b> if there are none allocated.
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//*************************************************************************
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bool empty() const
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{
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return items_allocated == 0;
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}
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//*************************************************************************
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/// Checks to see if there are no free items in the pool.
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/// \return <b>true</b> if there are none free.
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//*************************************************************************
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bool full() const
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{
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return items_allocated == Max_Size;
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}
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protected:
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//*************************************************************************
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/// Constructor
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//*************************************************************************
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ipool(char* p_buffer_, uint32_t item_size_, uint32_t max_size_)
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: p_buffer(p_buffer_)
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, p_next(p_buffer_)
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, items_allocated(0)
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, items_initialised(0)
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, Item_Size(item_size_)
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, Max_Size(max_size_)
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{
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}
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private:
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static ETL_CONSTANT uintptr_t invalid_item_ptr = 1;
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//*************************************************************************
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/// Allocate an item from the pool.
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//*************************************************************************
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char* allocate_item()
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{
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char* p_value = ETL_NULLPTR;
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// Any free space left?
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if (items_allocated < Max_Size)
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{
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// Initialise another one if necessary.
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if (items_initialised < Max_Size)
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{
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char* p = p_buffer + (items_initialised * Item_Size);
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char* np = p + Item_Size;
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*reinterpret_cast<char**>(p) = np;
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++items_initialised;
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}
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// Get the address of new allocated item.
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p_value = p_next;
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++items_allocated;
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if (items_allocated < Max_Size)
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{
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// Set up the pointer to the next free item
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p_next = *reinterpret_cast<char**>(p_next);
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}
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else
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{
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// No more left!
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p_next = ETL_NULLPTR;
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}
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// invalid pointer, outside pool
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// needs to be different from ETL_NULLPTR since ETL_NULLPTR is used
|
|
// as list endmarker
|
|
*reinterpret_cast<uintptr_t*>(p_value) = invalid_item_ptr;
|
|
}
|
|
else
|
|
{
|
|
ETL_ASSERT(false, ETL_ERROR(pool_no_allocation));
|
|
}
|
|
|
|
return p_value;
|
|
}
|
|
|
|
//*************************************************************************
|
|
/// Release an item back to the pool.
|
|
//*************************************************************************
|
|
void release_item(char* p_value)
|
|
{
|
|
// Does it belong to us?
|
|
ETL_ASSERT(is_item_in_pool(p_value), ETL_ERROR(pool_object_not_in_pool));
|
|
|
|
if (items_allocated > 0)
|
|
{
|
|
// Point it to the current free item.
|
|
*(uintptr_t*)p_value = reinterpret_cast<uintptr_t>(p_next);
|
|
|
|
p_next = p_value;
|
|
|
|
--items_allocated;
|
|
}
|
|
else
|
|
{
|
|
ETL_ASSERT_FAIL(ETL_ERROR(pool_no_allocation));
|
|
}
|
|
}
|
|
|
|
//*************************************************************************
|
|
/// Check if the item belongs to this pool.
|
|
//*************************************************************************
|
|
bool is_item_in_pool(const char* p) const
|
|
{
|
|
// Within the range of the buffer?
|
|
intptr_t distance = p - p_buffer;
|
|
bool is_within_range = (distance >= 0) && (distance <= intptr_t((Item_Size * Max_Size) - Item_Size));
|
|
|
|
// Modulus and division can be slow on some architectures, so only do this
|
|
// in debug.
|
|
#if ETL_IS_DEBUG_BUILD
|
|
// Is the address on a valid object boundary?
|
|
bool is_valid_address = ((distance % Item_Size) == 0);
|
|
#else
|
|
bool is_valid_address = true;
|
|
#endif
|
|
|
|
return is_within_range && is_valid_address;
|
|
}
|
|
|
|
// Disable copy construction and assignment.
|
|
ipool(const ipool&);
|
|
ipool& operator=(const ipool&);
|
|
|
|
char* p_buffer;
|
|
char* p_next;
|
|
|
|
uint32_t items_allocated; ///< The number of items allocated.
|
|
uint32_t items_initialised; ///< The number of items initialised.
|
|
|
|
const uint32_t Item_Size; ///< The size of allocated items.
|
|
const uint32_t Max_Size; ///< The maximum number of objects that can be allocated.
|
|
|
|
//*************************************************************************
|
|
/// Destructor.
|
|
//*************************************************************************
|
|
#if defined(ETL_POLYMORPHIC_POOL) || defined(ETL_POLYMORPHIC_CONTAINERS)
|
|
|
|
public:
|
|
|
|
virtual ~ipool() {}
|
|
#else
|
|
|
|
protected:
|
|
|
|
~ipool() {}
|
|
#endif
|
|
};
|
|
} // namespace etl
|
|
|
|
#endif
|