home/src/hash.hh

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#ifndef hash_hh_INCLUDED
#define hash_hh_INCLUDED
#include <type_traits>
#include <functional>
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#include <cstddef>
namespace Kakoune
{
size_t hash_data(const char* data, size_t len);
template<typename... Type>
size_t hash_value(const Type&... val)
{
static_assert(sizeof...(Type) == 1, "");
return std::hash<Type...>()(val...);
}
template<typename Type>
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std::enable_if_t<std::is_enum<Type>::value, size_t>
hash_value(const Type& val)
{
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return hash_value((std::underlying_type_t<Type>)val);
}
template<typename Type>
size_t hash_values(Type&& t)
{
return hash_value(std::forward<Type>(t));
}
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inline size_t combine_hash(size_t lhs, size_t rhs)
{
return lhs ^ (rhs + 0x9e3779b9 + (lhs << 6) + (lhs >> 2));
}
template<typename Type, typename... RemainingTypes>
size_t hash_values(Type&& t, RemainingTypes&&... rt)
{
size_t seed = hash_values(std::forward<RemainingTypes>(rt)...);
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return combine_hash(seed, hash_value(std::forward<Type>(t)));
}
template<typename T1, typename T2>
size_t hash_value(const std::pair<T1, T2>& val)
{
return hash_values(val.first, val.second);
}
template<typename Type>
struct Hash
{
size_t operator()(const Type& val) const
{
return hash_value(val);
}
};
// Traits specifying if two types have compatible hashing, that is,
// if lhs == rhs => hash_value(lhs) == hash_value(rhs)
template<typename Lhs, typename Rhs>
struct HashCompatible : std::false_type {};
template<typename T> struct HashCompatible<T, T> : std::true_type {};
template<typename Lhs, typename Rhs>
constexpr bool IsHashCompatible = HashCompatible<Lhs, Rhs>::value;
}
#endif // hash_hh_INCLUDED