std::variant
| <variant> .
|
||
template <class... Types> class variant; |
(since C++17) | |
The class template std::variant represents a type-safe union. An instance of std::variant at any given time either holds a value of one of its alternative types, or in the case of error - no value (this state is hard to achieve, see valueless_by_exception).
As with unions, if a variant holds a value of some object type T, the object representation of T is allocated directly within the object representation of the variant itself. Variant is not allowed to allocate additional (dynamic) memory.
A variant is not permitted to hold references, arrays, or the type void. Empty variants are also ill-formed (std::variant<std::monostate> can be used instead).
A variant is permitted to hold the same type more than once, and to hold differently cv-qualified versions of the same type.
Consistent with the behavior of unions during aggregate initialization, a default-constructed variant holds a value of its first alternative, unless that alternative is not default-constructible (in which case the variant is not default-constructible either). The helper class std::monostate can be used to make such variants default-constructible.
Template parameters
| Types | - | the types that may be stored in this variant. All types must meet the Destructible requirements (in particular, array types and non-object types are not allowed). |
Member functions
| variant (public member function) | |
| variant (public member function) | |
| variant (public member function) | |
Observers | |
| the variant 0 (public member function) | |
| variant (public member function) | |
Modifiers | |
| variant (public member function) | |
| variant (public member function) | |
Non-member functions
(C++17) |
variant functor (function template) |
(C++17) |
variant (function template) |
(C++17) |
( ) variant , (function template) |
(C++17) |
( ) , null (function template) |
(C++17) (C++17) (C++17) (C++17) (C++17) (C++17) (C++20) |
variant variant (function template) |
(C++17) |
std::swap (function template) |
Helper classes
(C++17) |
variant (placeholder) (class) |
(C++17) |
variant (class) |
(C++17) |
variant (class template) (variable template) |
| (class template) (alias template) | |
(C++17) |
std::hash (class template specialization) |
Helper objects
(C++17) |
variant (constant) |
Example
#include <variant>
#include <string>
#include <cassert>
#include <iostream>
int main()
{
std::variant<int, float> v, w;
v = 42; // v contains int
int i = std::get<int>(v);
assert(42 == i); // succeeds
w = std::get<int>(v);
w = std::get<0>(v); // same effect as the previous line
w = v; // same effect as the previous line
// std::get<double>(v); // error: no double in [int, float]
// std::get<3>(v); // error: valid index values are 0 and 1
try {
std::get<float>(w); // w contains int, not float: will throw
}
catch (const std::bad_variant_access& ex) {
std::cout << ex.what() << '\n';
}
using namespace std::literals;
std::variant<std::string> x("abc");
// converting constructors work when unambiguous
x = "def"; // converting assignment also works when unambiguous
std::variant<std::string, void const*> y("abc");
// casts to void const * when passed a char const *
assert(std::holds_alternative<void const*>(y)); // succeeds
y = "xyz"s;
assert(std::holds_alternative<std::string>(y)); // succeeds
}
Possible output:
std::get: wrong index for variant
Defect reports
The following behavior-changing defect reports were applied retroactively to previously published C++ standards.
| DR | Applied to | Behavior as published | Correct behavior |
|---|---|---|---|
| LWG 2901 | C++17 | specialization of std::uses_allocator provided, but variant can't properly support allocators
|
specialization removed |
See also
(C++14) |
an object of type in_place_t (function) |
(C++14) |
(class template) |
(C++17) |
CopyConstructible (class) |