Defined in header <type_traits> | ||
|---|---|---|
template< class T > struct is_reference; | (since C++11) |
If T is a reference type (lvalue reference or rvalue reference), provides the member constant value equal true. For any other type, value is false.
The behavior of a program that adds specializations for is_reference or is_reference_v (since C++17) is undefined.
| T | - | a type to check |
template< class T > inline constexpr bool is_reference_v = is_reference<T>::value; | (since C++17) |
| value
[static] | true if T is a reference type, false otherwise (public static member constant) |
| operator bool | converts the object to bool, returns value (public member function) |
| operator()
(C++14) | returns value (public member function) |
| Type | Definition |
|---|---|
value_type | bool |
type | std::integral_constant<bool, value> |
template<class T> struct is_reference : std::false_type {};
template<class T> struct is_reference<T&> : std::true_type {};
template<class T> struct is_reference<T&&> : std::true_type {}; |
#include <iostream>
#include <type_traits>
class A {};
int main()
{
# define REF(x) << #x " ?: " << x << '\n'
std::cout << std::boolalpha
REF(std::is_reference_v<A>)
REF(std::is_reference_v<A&>)
REF(std::is_reference_v<A&&>)
REF(std::is_reference_v<long>)
REF(std::is_reference_v<long&>)
REF(std::is_reference_v<long&&>)
REF(std::is_reference_v<double*>)
REF(std::is_reference_v<double*&>)
REF(std::is_reference_v<double*&&>);
# undef REF
}Output:
std::is_reference_v<A> ?: false std::is_reference_v<A&> ?: true std::is_reference_v<A&&> ?: true std::is_reference_v<long> ?: false std::is_reference_v<long&> ?: true std::is_reference_v<long&&> ?: true std::is_reference_v<double*> ?: false std::is_reference_v<double*&> ?: true std::is_reference_v<double*&&> ?: true
|
(C++11) | checks if a type is an lvalue reference (class template) |
|
(C++11) | checks if a type is an rvalue reference (class template) |
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