Defined in header <type_traits> | ||
---|---|---|
template< class T > struct is_unsigned; | (since C++11) |
If T
is an arithmetic type, provides the member constant value
equal true
if T(0) < T(-1)
: this results in true
for the unsigned integer types and the type bool
and in false
for the signed integer types and the floating-point types.
For any other type, value
is false
.
T | - | a type to check |
template< class T > inline constexpr bool is_unsigned_v = is_unsigned<T>::value; | (since C++17) |
value
[static] | true if T is an unsigned arithmetic 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> |
namespace detail { template<typename T,bool = std::is_arithmetic<T>::value> struct is_unsigned : std::integral_constant<bool, T(0) < T(-1)> {}; template<typename T> struct is_unsigned<T,false> : std::false_type {}; } // namespace detail template<typename T> struct is_unsigned : detail::is_unsigned<T>::type {}; |
#include <iostream> #include <type_traits> class A {}; enum B : unsigned {}; enum class C : unsigned {}; int main() { std::cout << std::boolalpha; std::cout << std::is_unsigned<A>::value << '\n'; std::cout << std::is_unsigned<float>::value << '\n'; std::cout << std::is_unsigned<signed int>::value << '\n'; std::cout << std::is_unsigned<unsigned int>::value << '\n'; std::cout << std::is_unsigned<B>::value << '\n'; std::cout << std::is_unsigned<C>::value << '\n'; }
Output:
false false false true false false
(C++11) | checks if a type is a signed arithmetic type (class template) |
(C++11) | checks if a type is an arithmetic type (class template) |
(C++11) | makes the given integral type signed (class template) |
(C++11) | makes the given integral type unsigned (class template) |
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