segment.hpp 8.7 KB

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  1. /* Copyright 2016-2017 Joaquin M Lopez Munoz.
  2. * Distributed under the Boost Software License, Version 1.0.
  3. * (See accompanying file LICENSE_1_0.txt or copy at
  4. * http://www.boost.org/LICENSE_1_0.txt)
  5. *
  6. * See http://www.boost.org/libs/poly_collection for library home page.
  7. */
  8. #ifndef BOOST_POLY_COLLECTION_DETAIL_SEGMENT_HPP
  9. #define BOOST_POLY_COLLECTION_DETAIL_SEGMENT_HPP
  10. #if defined(_MSC_VER)
  11. #pragma once
  12. #endif
  13. #include <iterator>
  14. #include <memory>
  15. #include <type_traits>
  16. #include <utility>
  17. namespace boost{
  18. namespace poly_collection{
  19. namespace detail{
  20. /* segment<Model,Allocator> encapsulates implementations of
  21. * Model::segment_backend virtual interface under a value-semantics type for
  22. * use by poly_collection. The techique is described by Sean Parent at slides
  23. * 157-205 of
  24. * https://github.com/sean-parent/sean-parent.github.com/wiki/
  25. * presentations/2013-09-11-cpp-seasoning/cpp-seasoning.pdf
  26. * with one twist: when the type of the implementation can be known at compile
  27. * time, a downcast is done and non-virtual member functions (named with a nv_
  28. * prefix) are used: this increases the performance of some operations.
  29. */
  30. template<typename Model,typename Allocator>
  31. class segment
  32. {
  33. public:
  34. using value_type=typename Model::value_type;
  35. using base_iterator=typename Model::base_iterator;
  36. using const_base_iterator=typename Model::const_base_iterator;
  37. using base_sentinel=typename Model::base_sentinel;
  38. using const_base_sentinel=typename Model::const_base_sentinel;
  39. template<typename T>
  40. using iterator=typename Model::template iterator<T>;
  41. template<typename T>
  42. using const_iterator=typename Model::template const_iterator<T>;
  43. template<typename T>
  44. static segment make(const Allocator& al)
  45. {
  46. return Model::template make<T>(al);
  47. }
  48. /* clones the implementation of x with no elements */
  49. static segment make_from_prototype(const segment& x)
  50. {
  51. return {from_prototype{},x};
  52. }
  53. segment(const segment& x):pimpl{x.impl().copy()}{set_sentinel();}
  54. segment(segment&& x)=default;
  55. segment& operator=(segment x) // TODO: Why do we need this?
  56. {
  57. pimpl=std::move(x.pimpl);
  58. snt=x.snt;
  59. return *this;
  60. }
  61. friend bool operator==(const segment& x,const segment& y)
  62. {
  63. if(typeid(*(x.pimpl))!=typeid(*(y.pimpl)))return false;
  64. else return x.impl().equal(y.impl());
  65. }
  66. friend bool operator!=(const segment& x,const segment& y){return !(x==y);}
  67. base_iterator begin()const noexcept{return impl().begin();}
  68. template<typename U>
  69. base_iterator begin()const noexcept{return impl<U>().nv_begin();}
  70. base_iterator end()const noexcept{return impl().end();}
  71. template<typename U>
  72. base_iterator end()const noexcept{return impl<U>().nv_end();}
  73. base_sentinel sentinel()const noexcept{return snt;}
  74. bool empty()const noexcept{return impl().empty();}
  75. template<typename U>
  76. bool empty()const noexcept{return impl<U>().nv_empty();}
  77. std::size_t size()const noexcept{return impl().size();}
  78. template<typename U>
  79. std::size_t size()const noexcept{return impl<U>().nv_size();}
  80. std::size_t max_size()const noexcept{return impl().max_size();}
  81. template<typename U>
  82. std::size_t max_size()const noexcept
  83. {return impl<U>().nv_max_size();}
  84. void reserve(std::size_t n){filter(impl().reserve(n));}
  85. template<typename U>
  86. void reserve(std::size_t n){filter(impl<U>().nv_reserve(n));}
  87. std::size_t capacity()const noexcept{return impl().capacity();}
  88. template<typename U>
  89. std::size_t capacity()const noexcept
  90. {return impl<U>().nv_capacity();}
  91. void shrink_to_fit(){filter(impl().shrink_to_fit());}
  92. template<typename U>
  93. void shrink_to_fit(){filter(impl<U>().nv_shrink_to_fit());}
  94. template<typename U,typename Iterator,typename... Args>
  95. base_iterator emplace(Iterator it,Args&&... args)
  96. {
  97. return filter(impl<U>().nv_emplace(it,std::forward<Args>(args)...));
  98. }
  99. template<typename U,typename... Args>
  100. base_iterator emplace_back(Args&&... args)
  101. {
  102. return filter(impl<U>().nv_emplace_back(std::forward<Args>(args)...));
  103. }
  104. template<typename T>
  105. base_iterator push_back(const T& x)
  106. {
  107. return filter(impl().push_back(subaddress(x)));
  108. }
  109. template<
  110. typename T,
  111. typename std::enable_if<
  112. !std::is_lvalue_reference<T>::value&&!std::is_const<T>::value
  113. >::type* =nullptr
  114. >
  115. base_iterator push_back(T&& x)
  116. {
  117. return filter(impl().push_back_move(subaddress(x)));
  118. }
  119. template<typename U>
  120. base_iterator push_back_terminal(U&& x)
  121. {
  122. return filter(
  123. impl<typename std::decay<U>::type>().nv_push_back(std::forward<U>(x)));
  124. }
  125. template<typename T>
  126. base_iterator insert(const_base_iterator it,const T& x)
  127. {
  128. return filter(impl().insert(it,subaddress(x)));
  129. }
  130. template<typename U,typename T>
  131. base_iterator insert(const_iterator<U> it,const T& x)
  132. {
  133. return filter(
  134. impl<U>().nv_insert(it,*static_cast<const U*>(subaddress(x))));
  135. }
  136. template<
  137. typename T,
  138. typename std::enable_if<
  139. !std::is_lvalue_reference<T>::value&&!std::is_const<T>::value
  140. >::type* =nullptr
  141. >
  142. base_iterator insert(const_base_iterator it,T&& x)
  143. {
  144. return filter(impl().insert_move(it,subaddress(x)));
  145. }
  146. template<
  147. typename U,typename T,
  148. typename std::enable_if<
  149. !std::is_lvalue_reference<T>::value&&!std::is_const<T>::value
  150. >::type* =nullptr
  151. >
  152. base_iterator insert(const_iterator<U> it,T&& x)
  153. {
  154. return filter(
  155. impl<U>().nv_insert(it,std::move(*static_cast<U*>(subaddress(x)))));
  156. }
  157. template<typename InputIterator>
  158. base_iterator insert(InputIterator first,InputIterator last)
  159. {
  160. return filter(
  161. impl<typename std::iterator_traits<InputIterator>::value_type>().
  162. nv_insert(first,last));
  163. }
  164. template<typename InputIterator>
  165. base_iterator insert(
  166. const_base_iterator it,InputIterator first,InputIterator last)
  167. {
  168. return insert(
  169. const_iterator<
  170. typename std::iterator_traits<InputIterator>::value_type>(it),
  171. first,last);
  172. }
  173. template<typename U,typename InputIterator>
  174. base_iterator insert(
  175. const_iterator<U> it,InputIterator first,InputIterator last)
  176. {
  177. return filter(impl<U>().nv_insert(it,first,last));
  178. }
  179. base_iterator erase(const_base_iterator it)
  180. {
  181. return filter(impl().erase(it));
  182. }
  183. template<typename U>
  184. base_iterator erase(const_iterator<U> it)
  185. {
  186. return filter(impl<U>().nv_erase(it));
  187. }
  188. base_iterator erase(const_base_iterator f,const_base_iterator l)
  189. {
  190. return filter(impl().erase(f,l));
  191. }
  192. template<typename U>
  193. base_iterator erase(const_iterator<U> f,const_iterator<U> l)
  194. {
  195. return filter(impl<U>().nv_erase(f,l));
  196. }
  197. template<typename Iterator>
  198. base_iterator erase_till_end(Iterator f)
  199. {
  200. return filter(impl().erase_till_end(f));
  201. }
  202. template<typename Iterator>
  203. base_iterator erase_from_begin(Iterator l)
  204. {
  205. return filter(impl().erase_from_begin(l));
  206. }
  207. void clear()noexcept{filter(impl().clear());}
  208. template<typename U>
  209. void clear()noexcept{filter(impl<U>().nv_clear());}
  210. private:
  211. using segment_backend=typename Model::segment_backend;
  212. template<typename Concrete>
  213. using segment_backend_implementation=typename Model::
  214. template segment_backend_implementation<Concrete,Allocator>;
  215. using segment_backend_unique_ptr=
  216. typename segment_backend::segment_backend_unique_ptr;
  217. using range=typename segment_backend::range;
  218. struct from_prototype{};
  219. segment(segment_backend_unique_ptr&& pimpl):
  220. pimpl{std::move(pimpl)}{set_sentinel();}
  221. segment(from_prototype,const segment& x):
  222. pimpl{x.impl().empty_copy()}{set_sentinel();}
  223. segment_backend& impl()noexcept{return *pimpl;}
  224. const segment_backend& impl()const noexcept{return *pimpl;}
  225. template<typename Concrete>
  226. segment_backend_implementation<Concrete>& impl()noexcept
  227. {
  228. return static_cast<segment_backend_implementation<Concrete>&>(impl());
  229. }
  230. template<typename Concrete>
  231. const segment_backend_implementation<Concrete>& impl()const noexcept
  232. {
  233. return
  234. static_cast<const segment_backend_implementation<Concrete>&>(impl());
  235. }
  236. template<typename T>
  237. static void* subaddress(T& x){return Model::subaddress(x);}
  238. template<typename T>
  239. static const void* subaddress(const T& x){return Model::subaddress(x);}
  240. void set_sentinel(){filter(impl().end());}
  241. void filter(base_sentinel x){snt=x;}
  242. base_iterator filter(const range& x){snt=x.second;return x.first;}
  243. segment_backend_unique_ptr pimpl;
  244. base_sentinel snt;
  245. };
  246. } /* namespace poly_collection::detail */
  247. } /* namespace poly_collection */
  248. } /* namespace boost */
  249. #endif