forked from boostorg/unordered
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@@ -3,71 +3,93 @@
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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#include <boost/unordered/detail/implementation.hpp>
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#include <boost/detail/lightweight_test.hpp>
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#include <boost/type_traits/is_same.hpp>
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#include <boost/static_assert.hpp>
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#include <boost/limits.hpp>
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#include <boost/static_assert.hpp>
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#include <boost/type_traits/is_same.hpp>
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#include <boost/unordered/detail/implementation.hpp>
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// Boilerplate
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#define ALLOCATOR_METHODS(name) \
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template <typename U> struct rebind { \
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typedef name<U> other; \
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}; \
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\
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name() {} \
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template <typename Y> name(name<Y> const&) {} \
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T* address(T& r) { return &r;} \
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T const* address(T const& r) { return &r; } \
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T* allocate(std::size_t n) \
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{ return static_cast<T*>(::operator new(n * sizeof(T))); } \
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T* allocate(std::size_t n, void const*) \
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{ return static_cast<T*>(::operator new(n * sizeof(T))); } \
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void deallocate(T* p, std::size_t) { ::operator delete((void*) p); } \
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void construct(T* p, T const& t) { new(p) T(t); } \
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void destroy(T* p) { p->~T(); } \
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std::size_t max_size() const \
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{ return (std::numeric_limits<std::size_t>::max)(); } \
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bool operator==(name<T> const&) { return true; } \
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bool operator!=(name<T> const&) { return false; } \
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#define ALLOCATOR_METHODS(name) \
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template <typename U> struct rebind \
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{ \
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typedef name<U> other; \
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}; \
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\
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name() {} \
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template <typename Y> name(name<Y> const&) {} \
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T* address(T& r) { return &r; } \
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T const* address(T const& r) { return &r; } \
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T* allocate(std::size_t n) \
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{ \
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return static_cast<T*>(::operator new(n * sizeof(T))); \
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} \
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T* allocate(std::size_t n, void const*) \
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{ \
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return static_cast<T*>(::operator new(n * sizeof(T))); \
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} \
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void deallocate(T* p, std::size_t) { ::operator delete((void*)p); } \
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void construct(T* p, T const& t) { new (p) T(t); } \
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void destroy(T* p) { p->~T(); } \
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std::size_t max_size() const \
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{ \
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return (std::numeric_limits<std::size_t>::max)(); \
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} \
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bool operator==(name<T> const&) { return true; } \
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bool operator!=(name<T> const&) { return false; } \
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/**/
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#define ALLOCATOR_METHODS_TYPEDEFS(name) \
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template <typename U> struct rebind { \
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typedef name<U> other; \
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}; \
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\
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name() {} \
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template <typename Y> name(name<Y> const&) {} \
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pointer address(T& r) { return &r;} \
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const_pointer address(T const& r) { return &r; } \
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pointer allocate(std::size_t n) \
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{ return pointer(::operator new(n * sizeof(T))); } \
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pointer allocate(std::size_t n, void const*) \
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{ return pointer(::operator new(n * sizeof(T))); } \
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void deallocate(pointer p, std::size_t) \
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{ ::operator delete((void*) p); } \
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void construct(T* p, T const& t) { new(p) T(t); } \
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void destroy(T* p) { p->~T(); } \
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size_type max_size() const \
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{ return (std::numeric_limits<size_type>::max)(); } \
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bool operator==(name<T> const&) { return true; } \
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bool operator!=(name<T> const&) { return false; } \
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#define ALLOCATOR_METHODS_TYPEDEFS(name) \
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template <typename U> struct rebind \
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{ \
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typedef name<U> other; \
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}; \
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\
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name() {} \
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template <typename Y> name(name<Y> const&) {} \
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pointer address(T& r) { return &r; } \
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const_pointer address(T const& r) { return &r; } \
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pointer allocate(std::size_t n) \
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{ \
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return pointer(::operator new(n * sizeof(T))); \
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} \
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pointer allocate(std::size_t n, void const*) \
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{ \
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return pointer(::operator new(n * sizeof(T))); \
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} \
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void deallocate(pointer p, std::size_t) { ::operator delete((void*)p); } \
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void construct(T* p, T const& t) { new (p) T(t); } \
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void destroy(T* p) { p->~T(); } \
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size_type max_size() const \
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{ \
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return (std::numeric_limits<size_type>::max)(); \
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} \
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bool operator==(name<T> const&) { return true; } \
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bool operator!=(name<T> const&) { return false; } \
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/**/
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struct yes_type { enum { value = true }; };
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struct no_type { enum { value = false }; };
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struct yes_type
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{
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enum
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{
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value = true
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};
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};
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struct no_type
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{
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enum
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{
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value = false
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};
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};
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// For tracking calls...
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static int selected;
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void reset() {
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selected = 0;
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}
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void reset() { selected = 0; }
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template <typename Allocator>
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int call_select()
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template <typename Allocator> int call_select()
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{
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typedef boost::unordered::detail::allocator_traits<Allocator> traits;
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Allocator a;
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@@ -79,8 +101,7 @@ int call_select()
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// Empty allocator test
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template <typename T>
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struct empty_allocator
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template <typename T> struct empty_allocator
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{
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typedef T value_type;
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ALLOCATOR_METHODS(empty_allocator)
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@@ -94,11 +115,14 @@ void test_empty_allocator()
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BOOST_STATIC_ASSERT((boost::is_same<traits::size_type,
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std::make_unsigned<std::ptrdiff_t>::type>::value));
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#else
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BOOST_STATIC_ASSERT((boost::is_same<traits::size_type, std::size_t>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::size_type, std::size_t>::value));
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#endif
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BOOST_STATIC_ASSERT((boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::pointer, int*>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::const_pointer, int const*>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::const_pointer, int const*>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::value_type, int>::value));
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BOOST_TEST(!traits::propagate_on_container_copy_assignment::value);
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BOOST_TEST(!traits::propagate_on_container_move_assignment::value);
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@@ -108,17 +132,17 @@ void test_empty_allocator()
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// allocator 1
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template <typename T>
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struct allocator1
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template <typename T> struct allocator1
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{
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typedef T value_type;
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ALLOCATOR_METHODS(allocator1)
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typedef yes_type propagate_on_container_copy_assignment;
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typedef yes_type propagate_on_container_move_assignment;
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typedef yes_type propagate_on_container_swap;
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allocator1<T> select_on_container_copy_construction() const {
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allocator1<T> select_on_container_copy_construction() const
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{
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++selected;
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return allocator1<T>();
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}
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@@ -132,11 +156,14 @@ void test_allocator1()
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BOOST_STATIC_ASSERT((boost::is_same<traits::size_type,
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std::make_unsigned<std::ptrdiff_t>::type>::value));
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#else
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BOOST_STATIC_ASSERT((boost::is_same<traits::size_type, std::size_t>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::size_type, std::size_t>::value));
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#endif
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BOOST_STATIC_ASSERT((boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::pointer, int*>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::const_pointer, int const*>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::const_pointer, int const*>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::value_type, int>::value));
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BOOST_TEST(traits::propagate_on_container_copy_assignment::value);
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BOOST_TEST(traits::propagate_on_container_move_assignment::value);
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@@ -146,25 +173,24 @@ void test_allocator1()
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// allocator 2
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template <typename Alloc>
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struct allocator2_base
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template <typename Alloc> struct allocator2_base
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{
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Alloc select_on_container_copy_construction() const {
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Alloc select_on_container_copy_construction() const
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{
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++selected;
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return Alloc();
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}
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};
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template <typename T>
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struct allocator2 : allocator2_base<allocator2<T> >
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template <typename T> struct allocator2 : allocator2_base<allocator2<T> >
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{
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typedef T value_type;
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typedef T* pointer;
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typedef T const* const_pointer;
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typedef std::size_t size_type;
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ALLOCATOR_METHODS(allocator2)
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typedef no_type propagate_on_container_copy_assignment;
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typedef no_type propagate_on_container_move_assignment;
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typedef no_type propagate_on_container_swap;
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@@ -174,10 +200,13 @@ void test_allocator2()
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{
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typedef allocator2<int> allocator;
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typedef boost::unordered::detail::allocator_traits<allocator> traits;
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BOOST_STATIC_ASSERT((boost::is_same<traits::size_type, std::size_t>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::size_type, std::size_t>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::pointer, int*>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::const_pointer, int const*>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::const_pointer, int const*>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::value_type, int>::value));
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BOOST_TEST(!traits::propagate_on_container_copy_assignment::value);
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BOOST_TEST(!traits::propagate_on_container_move_assignment::value);
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@@ -187,31 +216,27 @@ void test_allocator2()
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// allocator 3
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template <typename T>
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struct ptr
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template <typename T> struct ptr
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{
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T* value_;
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ptr(void* v) : value_((T*) v) {}
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ptr(void* v) : value_((T*)v) {}
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T& operator*() const { return *value_; }
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};
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template <>
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struct ptr<void>
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template <> struct ptr<void>
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{
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void* value_;
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ptr(void* v) : value_(v) {}
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};
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template <>
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struct ptr<const void>
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template <> struct ptr<const void>
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{
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void const* value_;
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ptr(void const* v) : value_(v) {}
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};
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template <typename T>
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struct allocator3
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template <typename T> struct allocator3
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{
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typedef T value_type;
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typedef ptr<T> pointer;
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@@ -219,11 +244,12 @@ struct allocator3
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typedef unsigned short size_type;
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ALLOCATOR_METHODS_TYPEDEFS(allocator3)
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typedef yes_type propagate_on_container_copy_assignment;
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typedef no_type propagate_on_container_move_assignment;
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allocator3<T> select_on_container_copy_construction() const {
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allocator3<T> select_on_container_copy_construction() const
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{
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++selected;
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return allocator3<T>();
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}
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@@ -233,10 +259,13 @@ void test_allocator3()
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{
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typedef allocator3<int> allocator;
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typedef boost::unordered::detail::allocator_traits<allocator> traits;
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BOOST_STATIC_ASSERT((boost::is_same<traits::size_type, unsigned short>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::size_type, unsigned short>::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::difference_type, std::ptrdiff_t>::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::pointer, ptr<int> >::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::const_pointer, ptr<int const> >::value));
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BOOST_STATIC_ASSERT(
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(boost::is_same<traits::const_pointer, ptr<int const> >::value));
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BOOST_STATIC_ASSERT((boost::is_same<traits::value_type, int>::value));
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BOOST_TEST(traits::propagate_on_container_copy_assignment::value);
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BOOST_TEST(!traits::propagate_on_container_move_assignment::value);
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