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Sprout/sprout/detail/algorithm.hpp

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#ifndef SPROUT_DETAIL_ALGORITHM_HPP
#define SPROUT_DETAIL_ALGORITHM_HPP
#include <iterator>
#include <sprout/config.hpp>
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#include <sprout/iterator/operation.hpp>
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namespace sprout {
namespace detail {
//
// min
//
template<typename T>
SPROUT_CONSTEXPR T const& min(T const& a, T const& b) {
return b < a ? b : a;
}
template<typename T, typename Compare>
SPROUT_CONSTEXPR T const& min(T const& a, T const& b, Compare comp) {
return comp(b, a) ? b : a;
}
//
// max
//
template<typename T>
SPROUT_CONSTEXPR T const& max(T const& a, T const& b) {
return a < b ? b : a;
}
template<typename T, typename Compare>
SPROUT_CONSTEXPR T const& max(T const& a, T const& b, Compare comp) {
return comp(a, b) ? b : a;
}
//
// count
//
template<typename InputIterator, typename T>
SPROUT_CONSTEXPR typename std::iterator_traits<InputIterator>::difference_type count(
InputIterator first,
InputIterator last,
T const& value
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)
{
return first == last
? 0
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: (*first == value ? 1 : 0) + sprout::detail::count(sprout::next(first), last, value)
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;
}
//
// count_if
//
template<typename InputIterator, typename Predicate>
SPROUT_CONSTEXPR typename std::iterator_traits<InputIterator>::difference_type count_if(
InputIterator first,
InputIterator last,
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Predicate pred
)
{
return first == last
? 0
: (pred(*first) ? 1 : 0) + sprout::detail::count_if(sprout::next(first), last, pred)
;
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}
//
// equal
//
template<typename InputIterator1, typename InputIterator2>
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SPROUT_CONSTEXPR bool equal(
InputIterator1 first1,
InputIterator1 last1,
InputIterator2 first2
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)
{
return first1 == last1
? true
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: *first1 == *first2 && sprout::detail::equal(sprout::next(first1), last1, sprout::next(first2))
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;
}
template<typename InputIterator1, typename InputIterator2, typename Predicate>
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SPROUT_CONSTEXPR bool equal(
InputIterator1 first1,
InputIterator1 last1,
InputIterator2 first2,
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Predicate pred
)
{
return first1 == last1
? true
: pred(*first1, *first2) && sprout::detail::equal(sprout::next(first1), last1, sprout::next(first2), pred)
;
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}
//
// lexicographical_compare
//
template<typename InputIterator1, typename InputIterator2>
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SPROUT_CONSTEXPR bool lexicographical_compare(
InputIterator1 first1,
InputIterator1 last1,
InputIterator2 first2,
InputIterator2 last2
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)
{
return first2 == last2
? false
: first1 == last1 || *first1 < *first2
? true
: *first2 < *first1
? false
: sprout::detail::lexicographical_compare(sprout::next(first1), last1, sprout::next(first2), last2)
;
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}
template<typename InputIterator1, typename InputIterator2, typename Compare>
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SPROUT_CONSTEXPR bool lexicographical_compare(
InputIterator1 first1,
InputIterator1 last1,
InputIterator2 first2,
InputIterator2 last2,
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Compare comp
)
{
return first2 == last2
? false
: first1 == last1 || comp(*first1, *first2)
? true
: comp(*first2, *first1)
? false
: sprout::detail::lexicographical_compare(sprout::next(first1), last1, sprout::next(first2), last2, comp)
;
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}
//
// find
//
template<typename InputIterator, typename T>
SPROUT_CONSTEXPR InputIterator find(InputIterator first, InputIterator last, T const& value) {
return first == last || *first == value
? first
: sprout::detail::find(sprout::next(first), last, value)
;
}
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} // namespace detail
} // namespace sprout
#endif // #ifndef SPROUT_DETAIL_ALGORITHM_HPP