std::is_heap_until (3) Linux Manual Page
std::is_heap_until – std::is_heap_until
Synopsis
Defined in header <algorithm>
template< class RandomIt > (since C++11)
RandomIt is_heap_until( RandomIt first, RandomIt last ); (until C++20)
template< class RandomIt > (since C++20)
constexpr RandomIt is_heap_until( RandomIt first, RandomIt last );
template< class ExecutionPolicy, class RandomIt > (2) (since C++17)
RandomIt is_heap_until( ExecutionPolicy&& policy, RandomIt first, RandomIt last ); (1)
template< class RandomIt, class Compare > (since C++11)
RandomIt is_heap_until( RandomIt first, RandomIt last, Compare comp ); (until C++20)
template< class RandomIt, class Compare > (3) (since C++20)
constexpr RandomIt is_heap_until( RandomIt first, RandomIt last, Compare comp );
template< class ExecutionPolicy, class RandomIt, class Compare > (4) (since C++17)
RandomIt is_heap_until( ExecutionPolicy&& policy, RandomIt first, RandomIt last, Compare comp );
Examines the range [first, last) and finds the largest range beginning at first which is a max heap.
1) Elements are compared using operator<.
3) Elements are compared using the given binary comparison function comp.
2,4) Same as (1,3), but executed according to policy. These overloads do not participate in overload resolution unless std::is_execution_policy_v<std::decay_t<ExecutionPolicy>> is true
Parameters
first, last – the range of elements to examine
policy – the execution policy to use. See execution_policy for details.
comp – While the signature does not need to have const &, the function must not modify the objects passed to it and must be able to accept all values of type (possibly const) Type1 and Type2 regardless of value_category (thus, Type1 & is not allowed
Type requirements
–
RandomIt must meet the requirements of LegacyRandomAccessIterator.
Return value
The upper bound of the largest range beginning at first which is a max heap. That is, the last iterator it for which range [first, it) is a max heap.
Complexity
Linear in the distance between first and last
Exceptions
The overloads with a template parameter named ExecutionPolicy report 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.
Notes
A max heap is a range of elements [f,l) that has the following properties:
Example
// Run this code
#include <iostream>
#include <algorithm>
#include <vector>
int main()
{
std::vector<int> v{3, 1, 4, 1, 5, 9};
std::make_heap(v.begin(), v.end());
// probably mess up the heap
v.push_back(2);
v.push_back(6);
auto heap_end = std::is_heap_until(v.begin(), v.end());
std::cout << "all of v: ";
for (auto i : v)
std::cout << i << ' ';
std::cout << '\n';
std::cout << "only heap: ";
for (auto i = v.begin(); i != heap_end; ++i)
std::cout << *i << ' ';
std::cout << '\n';
}
Output:
See also
is_heap checks if the given range is a max heap
(C++11)
