/*************************************************************************
* ModernUO *
* Copyright 2019-2020 - ModernUO Development Team *
* Email: hi@modernuo.com *
* File: BufferReader.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 . *
*************************************************************************/
using System;
using System.Buffers.Binary;
using System.Collections.Generic;
using System.IO;
using System.Net;
using System.Text;
using Server.Guilds;
namespace Server
{
public class BufferReader : IGenericReader
{
private readonly Encoding _encoding;
private byte[] _buffer;
public int Position { get; private set; }
public BufferReader(byte[] buffer)
{
_buffer = buffer;
_encoding = Utility.UTF8;
}
public string ReadString()
{
if (!ReadBool())
{
return null;
}
var length = ReadEncodedInt();
if (length <= 0)
{
return "";
}
var s = _encoding.GetString(_buffer.AsSpan(Position, length));
Position += length;
return s;
}
public DateTime ReadDateTime() => new(ReadLong(), DateTimeKind.Utc);
public TimeSpan ReadTimeSpan() => new(ReadLong());
public DateTime ReadDeltaTime() => new(ReadLong() + DateTime.UtcNow.Ticks, DateTimeKind.Utc);
public decimal ReadDecimal() => new(new[] { ReadInt(), ReadInt(), ReadInt(), ReadInt() });
public long ReadLong()
{
var v = BinaryPrimitives.ReadInt64LittleEndian(_buffer.AsSpan(Position, 8));
Position += 8;
return v;
}
public ulong ReadULong()
{
var v = BinaryPrimitives.ReadUInt64LittleEndian(_buffer.AsSpan(Position, 8));
Position += 8;
return v;
}
public int ReadInt()
{
var v = BinaryPrimitives.ReadInt32LittleEndian(_buffer.AsSpan(Position, 4));
Position += 4;
return v;
}
public uint ReadUInt()
{
var v = BinaryPrimitives.ReadUInt32LittleEndian(_buffer.AsSpan(Position, 4));
Position += 4;
return v;
}
public short ReadShort()
{
var v = BinaryPrimitives.ReadInt16LittleEndian(_buffer.AsSpan(Position, 2));
Position += 2;
return v;
}
public ushort ReadUShort()
{
var v = BinaryPrimitives.ReadUInt16LittleEndian(_buffer.AsSpan(Position, 2));
Position += 2;
return v;
}
public double ReadDouble()
{
var v = BinaryPrimitives.ReadDoubleLittleEndian(_buffer.AsSpan(Position, 8));
Position += 8;
return v;
}
public float ReadFloat()
{
var v = BinaryPrimitives.ReadSingleLittleEndian(_buffer.AsSpan(Position, 4));
Position += 4;
return v;
}
public byte ReadByte() => _buffer[Position++];
public sbyte ReadSByte() => (sbyte)_buffer[Position++];
public bool ReadBool() => _buffer[Position++] != 0;
public int ReadEncodedInt()
{
int v = 0, shift = 0;
byte b;
do
{
b = ReadByte();
v |= (b & 0x7F) << shift;
shift += 7;
} while (b >= 0x80);
return v;
}
public IPAddress ReadIPAddress()
{
byte length = ReadByte();
// Either 2 ushorts, or 8 ushorts
Span integer = stackalloc byte[length];
Read(integer);
return new IPAddress(integer);
}
public Point3D ReadPoint3D() => new(ReadInt(), ReadInt(), ReadInt());
public Point2D ReadPoint2D() => new(ReadInt(), ReadInt());
public Rectangle2D ReadRect2D() => new(ReadPoint2D(), ReadPoint2D());
public Rectangle3D ReadRect3D() => new(ReadPoint3D(), ReadPoint3D());
public Map ReadMap() => Map.Maps[ReadByte()];
public T ReadEntity() where T : class, ISerializable
{
Serial serial = ReadUInt();
// Special case for now:
if (typeof(T).IsAssignableTo(typeof(BaseGuild)))
{
return World.FindGuild(serial) as T;
}
return World.FindEntity(serial) as T;
}
public List ReadEntityList() where T : class, ISerializable
{
var count = ReadInt();
var list = new List(count);
for (var i = 0; i < count; ++i)
{
var entity = ReadEntity();
if (entity != null)
{
list.Add(entity);
}
}
return list;
}
public HashSet ReadEntitySet() where T : class, ISerializable
{
var count = ReadInt();
var set = new HashSet(count);
for (var i = 0; i < count; ++i)
{
var entity = ReadEntity();
if (entity != null)
{
set.Add(entity);
}
}
return set;
}
public Race ReadRace() => Race.Races[ReadByte()];
public int Read(Span buffer)
{
var length = buffer.Length;
if (length > _buffer.Length - Position)
{
throw new OutOfMemoryException();
}
_buffer.AsSpan(Position, length).CopyTo(buffer);
Position += length;
return length;
}
public virtual int Seek(int offset, SeekOrigin origin)
{
return origin switch
{
SeekOrigin.Current => Position += offset,
SeekOrigin.End => Position = _buffer.Length - offset,
_ => Position = offset // Begin
};
}
}
}