ModernUO/Projects/Server/Serialization/AdhocPersistence.cs
Kamron Batman e1e30998ba
fix: Adds ReadType/Write(Type) and improves type referencing (#1172)
## Changes
* Improves type hashing by introducing xxHash3 (64bit)
* Removes individual `tdb` files in favor of a single `SerializedTypes.db` file. This file is only used to identify a type that is being deserialized, which doesn't exist.
* Adds duplicate type alias detection
* Adds `AssemblyHandler.FindTypeByHash`

View changed files whitespaces: https://github.com/modernuo/ModernUO/pull/1172/files?diff=split&w=1

## SerializedTypes.db
The serialized types file is used to get back the original name of a type in case it no longer exists in code. This can easily be necessary if a class is renamed in code and no `TypeAlias` is provided.

### Format
byte[4] - version
byte[4] - count
--array--
byte[8] - xxHash
byte[1] - flag, 0 - null, 1 - not null
byte[n] - Full class name in UTF8

### Example
<img width="472" alt="SerializedTypes_Example" src="https://user-images.githubusercontent.com/3953314/195255429-31d24293-6bd1-419e-811b-07874dd0f78d.png">

## Benchmarks
Serialized 500 Type fields. The 8192bytes comes from the _ConcurrentQueue_ that would later be used for SerializedTypes.
Note that the queue is never cleared, so it's size grew considerably.
```cs
|               Method |     Mean |    Error |   StdDev | Allocated |
|--------------------- |---------:|---------:|---------:|----------:|
|      BenchmarkXXHash | 18.44 us | 0.278 us | 0.260 us |    8192 B |
| BenchmarkTypeStrings | 25.09 us | 0.292 us | 0.259 us |         - |
```

TODO:
* Add support in the Serialization Generator for `ReadType()` and `Write(Type)`
* Remove `SetTypeRef` from Serialization Generator
2022-10-11 22:17:22 -07:00

130 lines
4.6 KiB
C#

/*************************************************************************
* ModernUO *
* Copyright 2019-2022 - ModernUO Development Team *
* Email: hi@modernuo.com *
* File: AdhocPersistence.cs *
* *
* This program is free software: you can redistribute it and/or modify *
* it under the terms of the GNU General Public License as published by *
* the Free Software Foundation, either version 3 of the License, or *
* (at your option) any later version. *
* *
* You should have received a copy of the GNU General Public License *
* along with this program. If not, see <http://www.gnu.org/licenses/>. *
*************************************************************************/
using System;
using System.Collections.Concurrent;
using System.Collections.Generic;
using System.IO;
using System.IO.MemoryMappedFiles;
using System.Threading.Tasks;
namespace Server;
public static class AdhocPersistence
{
/**
* Serializes to memory synchronously. Optional buffer can be provided.
* Note: The buffer may not be the same after returning from the function if more data is written
* than the initial buffer can handle.
*/
public static BufferWriter Serialize(Action<IGenericWriter> serializer, ConcurrentQueue<Type> types)
{
var saveBuffer = new BufferWriter(true, types);
serializer(saveBuffer);
return saveBuffer;
}
/**
* Writes a buffer to disk. This function should be called asynchronously.
* Writes the filePath for the binary data, and an accompanying SerializedTypes.db file of all possible types.
*/
public static void WriteSnapshot(FileInfo file, Span<byte> buffer)
{
var dirPath = file.DirectoryName;
PathUtility.EnsureDirectory(dirPath);
using var fs = new FileStream(file.FullName, FileMode.Create, FileAccess.Write);
fs.Write(buffer);
}
/**
* Serializes to a memory buffer synchronously, then flushes to the path asynchronously.
* See WriteSnapshot for more info about how the snapshot.
*/
public static void SerializeAndSnapshot(string filePath, Action<IGenericWriter> serializer, ConcurrentQueue<Type> types = null)
{
types ??= new ConcurrentQueue<Type>();
var saveBuffer = Serialize(serializer, types);
Task.Run(
() =>
{
var fullPath = PathUtility.GetFullPath(filePath, Core.BaseDirectory);
var file = new FileInfo(fullPath);
WriteSnapshot(file, saveBuffer.Buffer.AsSpan(0, (int)saveBuffer.Position));
// TODO: Create a PooledHashSet if performance becomes an issue.
var typesSet = new HashSet<Type>();
// Dedupe the queue.
foreach (var type in types)
{
typesSet.Add(type);
}
Persistence.WriteSerializedTypesSnapshot(file.DirectoryName, typesSet);
});
}
public static void Deserialize(string filePath, Action<IGenericReader> deserializer)
{
var fullPath = PathUtility.GetFullPath(filePath, Core.BaseDirectory);
var file = new FileInfo(fullPath);
if (!file.Exists)
{
return;
}
var fileLength = file.Length;
if (fileLength == 0)
{
return;
}
string error;
try
{
using var mmf = MemoryMappedFile.CreateFromFile(fullPath, FileMode.Open);
using var stream = mmf.CreateViewStream();
using var br = new BinaryFileReader(stream);
deserializer(br);
error = br.Position != fileLength
? $"Serialized {fileLength} bytes, but {br.Position} bytes deserialized"
: null;
}
catch (Exception e)
{
error = e.ToString();
}
if (error != null)
{
Console.WriteLine($"***** Bad deserialize of {file.FullName} *****");
Console.WriteLine(error);
Console.WriteLine("Skip this file and continue? (y/n)");
var pressedKey = Console.ReadKey(true).Key;
if (pressedKey != ConsoleKey.Y)
{
throw new Exception("Deserialization failed.");
}
}
}
}