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Man Pages
std::uninitialized_fill(3) C++ Standard Libary std::uninitialized_fill(3)

std::uninitialized_fill - std::uninitialized_fill


Defined in header <memory>
template< class ForwardIt, class T >
void uninitialized_fill( ForwardIt first, ForwardIt last, const T& (1)
value );
template< class ExecutionPolicy, class ForwardIt, class T >
void uninitialized_fill( ExecutionPolicy&& policy, ForwardIt (2) (since C++17)
first, ForwardIt last, const T& value );


1) Copies the given value to an uninitialized memory area, defined by the range
[first, last) as if by


for (; first != last; ++first)
::new (/*VOIDIFY*/(*first))
typename std::iterator_traits<ForwardIt>::value_type(value);


where /*VOIDIFY*/(e) is:


static_cast<void*>(&e) (until C++11)
static_cast<void*>(std::addressof(e)) (since C++11)
(until C++20)
const_cast<void*>(static_cast<const volatile (since C++20)
void*>(std::addressof(e)))


If an exception is thrown during the initialization, the objects already constructed
are destroyed in an unspecified order.
2) Same as (1), but executed according to policy. This overload does not participate
in overload resolution unless
std::is_execution_policy_v<std::decay_t<ExecutionPolicy>>
(until C++20)
std::is_execution_policy_v<std::remove_cvref_t<ExecutionPolicy>>
(since C++20) is true.


first, last - the range of the elements to initialize
value - the value to construct the elements with
policy - the execution policy to use. See execution policy for
details.


-
ForwardIt must meet the requirements of LegacyForwardIterator.
-
No increment, assignment, comparison, or indirection through valid instances of
ForwardIt may throw exceptions.
Applying &* to a ForwardIt value must yield a pointer to its value type.
(until C++11)


(none)


Linear in the distance between first and last.


The overload with a template parameter named ExecutionPolicy reports errors as
follows:


* If execution of a function invoked as part of the algorithm throws an exception
and ExecutionPolicy is one of the standard policies, std::terminate is called.
For any other ExecutionPolicy, the behavior is implementation-defined.
* If the algorithm fails to allocate memory, std::bad_alloc is thrown.


template<class ForwardIt, class T>
void uninitialized_fill(ForwardIt first, ForwardIt last, const T& value)
{
using V = typename std::iterator_traits<ForwardIt>::value_type;
ForwardIt current = first;
try {
for (; current != last; ++current) {
::new (const_cast<void*>(static_cast<const volatile void*>(
std::addressof(*current)))) V(value);
}
} catch (...) {
for (; first != current; ++first) {
first->~V();
}
throw;
}
}

// Run this code


#include <algorithm>
#include <iostream>
#include <memory>
#include <string>
#include <tuple>


int main()
{
std::string* p;
std::size_t sz;
std::tie(p, sz) = std::get_temporary_buffer<std::string>(4);


std::uninitialized_fill(p, p+sz, "Example");


for (std::string* i = p; i != p+sz; ++i) {
std::cout << *i << '\n';
i->~basic_string<char>();
}
std::return_temporary_buffer(p);
}


copies an object to an uninitialized area of memory,
uninitialized_fill_n defined by a start and a count
(function template)
ranges::uninitialized_fill copies an object to an uninitialized area of memory,
(C++20) defined by a range
(niebloid)

2022.07.31 http://cppreference.com

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