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station_obscurum_unity/Assets/FishNet/Runtime/Object/Helping/Hashing.cs

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2023-05-31 17:32:21 +02:00
namespace FishNet.Object.Helping
{
public static class Hashing
{
private const uint FNV_offset_basis32 = 2166136261;
private const uint FNV_prime32 = 16777619;
private const ulong FNV_offset_basis64 = 14695981039346656037;
private const ulong FNV_prime64 = 1099511628211;
/// <summary>
/// non cryptographic stable hash code,
/// it will always return the same hash for the same
/// string.
///
/// This is simply an implementation of FNV-1 32 bit xor folded to 16 bit
/// https://en.wikipedia.org/wiki/Fowler%E2%80%93Noll%E2%80%93Vo_hash_function
/// </summary>
/// <returns>The stable hash32.</returns>
/// <param name="txt">Text.</param>
internal static ushort GetStableHash16(this string txt)
{
uint hash32 = txt.GetStableHash32();
return (ushort)((hash32 >> 16) ^ hash32);
}
/// <summary>
/// non cryptographic stable hash code,
/// it will always return the same hash for the same
/// string.
///
/// This is simply an implementation of FNV-1 32 bit
/// https://en.wikipedia.org/wiki/Fowler%E2%80%93Noll%E2%80%93Vo_hash_function
/// </summary>
/// <returns>The stable hash32.</returns>
/// <param name="txt">Text.</param>
public static uint GetStableHash32(this string txt)
{
unchecked
{
uint hash = FNV_offset_basis32;
for (int i = 0; i < txt.Length; i++)
{
uint ch = txt[i];
hash = hash * FNV_prime32;
hash = hash ^ ch;
}
return hash;
}
}
/// <summary>
/// non cryptographic stable hash code,
/// it will always return the same hash for the same
/// string.
///
/// This is simply an implementation of FNV-1 64 bit
/// https://en.wikipedia.org/wiki/Fowler%E2%80%93Noll%E2%80%93Vo_hash_function
/// </summary>
/// <returns>The stable hash32.</returns>
/// <param name="txt">Text.</param>
internal static ulong GetStableHash64(this string txt)
{
unchecked
{
ulong hash = FNV_offset_basis64;
for (int i = 0; i < txt.Length; i++)
{
ulong ch = txt[i];
hash = hash * FNV_prime64;
hash = hash ^ ch;
}
return hash;
}
}
///// <summary>
///// non cryptographic stable hash code,
///// it will always return the same hash for the same
///// string.
/////
///// This is simply an implementation of FNV-1 32 bit xor folded to 16 bit
///// https://en.wikipedia.org/wiki/Fowler%E2%80%93Noll%E2%80%93Vo_hash_function
///// </summary>
///// <returns>The stable hash32.</returns>
///// <param name="bytes">Text.</param>
//internal static ushort GetStableHash16(this byte[] bytes)
//{
// uint hash32 = bytes.GetStableHash32();
// return (ushort)((hash32 >> 16) ^ hash32);
//}
///// <summary>
///// non cryptographic stable hash code,
///// it will always return the same hash for the same
///// string.
/////
///// This is simply an implementation of FNV-1 32 bit
///// https://en.wikipedia.org/wiki/Fowler%E2%80%93Noll%E2%80%93Vo_hash_function
///// </summary>
///// <returns>The stable hash32.</returns>
///// <param name="bytes">Text.</param>
//internal static uint GetStableHash32(this byte[] bytes)
//{
// unchecked
// {
// uint hash = FNV_offset_basis32;
// for (int i = 0; i < bytes.Length; i++)
// {
// uint bt = bytes[i];
// hash = hash * FNV_prime32;
// hash = hash ^ bt;
// }
// return hash;
// }
//}
///// <summary>
///// non cryptographic stable hash code,
///// it will always return the same hash for the same
///// string.
/////
///// This is simply an implementation of FNV-1 64 bit
///// https://en.wikipedia.org/wiki/Fowler%E2%80%93Noll%E2%80%93Vo_hash_function
///// </summary>
///// <returns>The stable hash32.</returns>
///// <param name="bytes">Text.</param>
//internal static ulong GetStableHash64(this byte[] bytes)
//{
// unchecked
// {
// ulong hash = FNV_offset_basis64;
// for (int i = 0; i < bytes.Length; i++)
// {
// ulong bt = bytes[i];
// hash = hash * FNV_prime64;
// hash = hash ^ bt;
// }
// return hash;
// }
//}
}
}