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std::is_trivially_move_constructible

STD::是[医]移动[医]可构造的,STD::is[医]琐碎[医]移动[医]可构造的,STD::is[医]无抛[医]移动[医]可构造

Defined in header
template< class T > struct is_move_constructible;(1)(since C++11)
template< class T > struct is_trivially_move_constructible;(2)(since C++11)
template< class T > struct is_nothrow_move_constructible;(3)(since C++11)

1%29T不是可引用的类型%28i。E.,可能是cv-符合条件的void类的函数类型。简历-限定符-seq或者是参-限定符%29,提供成员常量。value等于false否则,提供成员常量。value等于std::is_constructible<T, T&&>::value...

2%29与%281%29相同,但使用std::is_trivially_constructible<T, T&&>...

3%29与%281%29相同,但使用std::is_nothrow_constructible<T, T&&>...

T为完整类型,%28可能是cv-合格%29void,或者一系列未知的界限。否则,行为就没有定义。

辅助变量模板

template< class T > inline constexpr bool is_move_constructible_v = is_move_constructible::value;(since C++17)
template< class T > inline constexpr bool is_trivially_move_constructible_v = is_trivially_move_constructible<T>::value;(since C++17)
template< class T > inline constexpr bool is_nothrow_move_constructible_v = is_nothrow_move_constructible<T>::value;(since C++17)

继承自STD:积分[医]常量

成员常数

value statictrue if T is move-constructible , false otherwise (public static member constant)

成员函数

operator boolconverts the object to bool, returns value (public member function)
operator() (C++14)returns value (public member function)

成员类型

TypeDefinition
value_typebool
typestd::integral_constant<bool, value>

可能的实施

模板<class T>结构是[医]移动[医]可构造性:std::is[医]可构造<T,type Name std::add[医]r值[医]参照系<T>*类型>{};模板<class T>结构是[医]琐碎[医]移动[医]可构造性:std::is[医]琐碎[医]可构造<T,type Name std::add[医]r值[医]参照系<T>*类型>{};模板<class T>结构是[医]无抛[医]移动[医]可构造性:std::is[医]无抛[医]可构造<T,type Name std::add[医]r值[医]参照系<T>*类型>{};

*。

注记

类型,但不使用移动构造函数,而是使用可接受的复制构造函数。const T&论点,满足std::is_move_constructible...

Move构造函数通常为NoOPTION,因为否则它们在任何提供强异常保证的代码中都是不可用的。

在许多实现中,is_nothrow_move_constructible还检查析构函数是否抛出,因为它有效。noexept(T(arg)).同样适用于is_trivially_move_constructible,在这些实现中,还要求析构函数是微不足道的:gcc bug 51452lwg第2116期...

二次

#include <iostream> #include <type_traits> struct Ex1 { std::string str; // member has a non-trivial but non-throwing move ctor }; struct Ex2 { int n; Ex2(Ex2&&) = default; // trivial and non-throwing }; struct NoMove { // prevents implicit declaration of default move constructor // however, the class is still move-constructible because its // copy constructor can bind to an rvalue argument NoMove(const NoMove&) {} }; int main() { std::cout << std::boolalpha << "Ex1 is move-constructible? " << std::is_move_constructible<Ex1>::value << '\n' << "Ex1 is trivially move-constructible? " << std::is_trivially_move_constructible<Ex1>::value << '\n' << "Ex1 is nothrow move-constructible? " << std::is_nothrow_move_constructible<Ex1>::value << '\n' << "Ex2 is trivially move-constructible? " << std::is_trivially_move_constructible<Ex2>::value << '\n' << "Ex2 is nothrow move-constructible? " << std::is_nothrow_move_constructible<Ex2>::value << '\n'; std::cout << std::boolalpha << "NoMove is move-constructible? " << std::is_move_constructible<NoMove>::value << '\n' << "NoMove is nothrow move-constructible? " << std::is_nothrow_move_constructible<NoMove>::value << '\n'; }

二次

产出:

二次

Ex1 is move-constructible? true Ex1 is trivially move-constructible? false Ex1 is nothrow move-constructible? true Ex2 is trivially move-constructible? true Ex2 is nothrow move-constructible? true NoMove is move-constructible? true NoMove is nothrow move-constructible? false

二次

另见

is_constructibleis_trivially_constructibleis_nothrow_constructible (C++11)(C++11)(C++11)checks if a type has a constructor for specific arguments (class template)
is_default_constructibleis_trivially_default_constructibleis_nothrow_default_constructible (C++11)(C++11)(C++11)checks if a type has a default constructor (class template)
is_copy_constructibleis_trivially_copy_constructibleis_nothrow_copy_constructible (C++11)(C++11)(C++11)checks if a type has a copy constructor (class template)
move_if_noexcept (C++11)obtains an rvalue reference if the move constructor does not throw (function template)

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