mirror of
https://github.com/MCCTeam/Minecraft-Console-Client
synced 2025-10-14 21:22:49 +00:00
159 lines
4.6 KiB
C#
159 lines
4.6 KiB
C#
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Text;
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using System.Threading.Tasks;
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using System.Security.Cryptography;
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using System.IO;
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using System.Collections.Concurrent;
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namespace MinecraftClient.Crypto.Streams
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{
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internal class AesCfb8Stream : Stream, IAesStream
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{
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public static readonly int blockSize = 16;
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private Aes aes;
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public System.IO.Stream BaseStream { get; set; }
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private bool inStreamEnded = false;
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private byte[] ReadStreamIV = new byte[16];
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private byte[] WriteStreamIV = new byte[16];
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public AesCfb8Stream(System.IO.Stream stream, byte[] key)
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{
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BaseStream = stream;
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aes = GenerateAES(key);
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Array.Copy(key, ReadStreamIV, 16);
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Array.Copy(key, WriteStreamIV, 16);
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}
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public override bool CanRead
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{
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get { return true; }
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}
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public override bool CanSeek
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{
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get { return false; }
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}
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public override bool CanWrite
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{
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get { return true; }
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}
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public override void Flush()
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{
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BaseStream.Flush();
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}
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public override long Length
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{
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get { throw new NotSupportedException(); }
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}
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public override long Position
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{
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get
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{
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throw new NotSupportedException();
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}
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set
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{
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throw new NotSupportedException();
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}
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}
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public override int ReadByte()
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{
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byte[] temp = new byte[1];
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Read(temp, 0, 1);
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return temp[0];
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}
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public override int Read(byte[] buffer, int outOffset, int required)
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{
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if (this.inStreamEnded)
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return 0;
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byte[] inputBuf = new byte[blockSize + required];
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Array.Copy(ReadStreamIV, inputBuf, blockSize);
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for (int readed = 0, curRead; readed < required; readed += curRead)
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{
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curRead = BaseStream.Read(inputBuf, blockSize + readed, required - readed);
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if (curRead == 0)
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{
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this.inStreamEnded = true;
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return readed;
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}
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OrderablePartitioner<Tuple<int, int>> rangePartitioner = (curRead <= 256) ?
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Partitioner.Create(readed, readed + curRead, 32) : Partitioner.Create(readed, readed + curRead);
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Parallel.ForEach(rangePartitioner, (range, loopState) =>
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{
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Span<byte> blockOutput = stackalloc byte[blockSize];
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for (int idx = range.Item1; idx < range.Item2; idx++)
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{
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ReadOnlySpan<byte> blockInput = new(inputBuf, idx, blockSize);
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aes.EncryptEcb(blockInput, blockOutput, PaddingMode.None);
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buffer[outOffset + idx] = (byte)(blockOutput[0] ^ inputBuf[idx + blockSize]);
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}
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});
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}
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Array.Copy(inputBuf, required, ReadStreamIV, 0, blockSize);
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return required;
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}
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public override long Seek(long offset, System.IO.SeekOrigin origin)
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{
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throw new NotSupportedException();
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}
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public override void SetLength(long value)
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{
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throw new NotSupportedException();
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}
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public override void WriteByte(byte b)
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{
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Write(new byte[] { b }, 0, 1);
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}
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public override void Write(byte[] input, int offset, int required)
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{
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byte[] outputBuf = new byte[blockSize + required];
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Array.Copy(WriteStreamIV, outputBuf, blockSize);
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Span<byte> blockOutput = stackalloc byte[blockSize];
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for (int wirtten = 0; wirtten < required; ++wirtten)
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{
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ReadOnlySpan<byte> blockInput = new(outputBuf, wirtten, blockSize);
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aes.EncryptEcb(blockInput, blockOutput, PaddingMode.None);
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outputBuf[blockSize + wirtten] = (byte)(blockOutput[0] ^ input[offset + wirtten]);
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}
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BaseStream.WriteAsync(outputBuf, blockSize, required);
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Array.Copy(outputBuf, required, WriteStreamIV, 0, blockSize);
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}
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private static Aes GenerateAES(byte[] key)
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{
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Aes aes = Aes.Create();
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aes.BlockSize = 128;
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aes.KeySize = 128;
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aes.Key = key;
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aes.Mode = CipherMode.ECB;
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aes.Padding = PaddingMode.None;
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return aes;
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}
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}
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}
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