#ifndef BASE_CONTAINERS_CONTAINS_H_
#define BASE_CONTAINERS_CONTAINS_H_
#include <type_traits>
#include <utility>
#include "base/ranges/algorithm.h"
#include "base/ranges/ranges.h"
namespace base {
namespace internal {
template <typename T, typename SFINAE = void>
struct HasKeyType : std::false_type {};
template <typename T>
struct HasKeyType<T, std::void_t<typename T::key_type>> : std::true_type {};
template <typename Container, typename Value>
constexpr auto ContainsImpl(const Container& container,
const Value& value,
priority_tag<2>)
-> decltype(container.contains(value)) {
return container.contains(value);
}
template <typename Container, typename Value>
constexpr auto ContainsImpl(const Container& container,
const Value& value,
priority_tag<1>)
-> decltype(container.find(value) != container.end()) {
return container.find(value) != container.end();
}
template <typename Container, typename Value>
constexpr auto ContainsImpl(const Container& container,
const Value& value,
priority_tag<1>)
-> decltype(container.find(value) != Container::npos) {
return container.find(value) != Container::npos;
}
template <typename Container, typename Value>
constexpr bool ContainsImpl(const Container& container,
const Value& value,
priority_tag<0>) {
static_assert(
!HasKeyType<Container>::value,
"Error: About to perform linear search on an associative container. "
"Either use a more generic comparator (e.g. std::less<>) or, if a linear "
"search is desired, provide an explicit projection parameter.");
return ranges::find(container, value) != ranges::end(container);
}
}
template <typename Container, typename Value>
constexpr bool Contains(const Container& container, const Value& value) {
return internal::ContainsImpl(container, value, internal::priority_tag<2>());
}
template <typename Container, typename Value, typename Proj>
constexpr bool Contains(const Container& container,
const Value& value,
Proj proj) {
return ranges::find(container, value, std::move(proj)) !=
ranges::end(container);
}
}
#endif