140 lines
5.3 KiB
C#
140 lines
5.3 KiB
C#
using System;
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using System.Net;
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using System.Net.Sockets;
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using System.Text;
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using System.Text.RegularExpressions;
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namespace PerformanceSolution
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{
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public enum WebServerMessageType
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{
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Binance,
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Bitfinex
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}
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public struct WebSocketServerClientConnectionEvent
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{
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public readonly string Description;
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public WebSocketServerClientConnectionEvent(string description)
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{
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Description = description;
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}
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}
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public struct StreamDataObject
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{
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public readonly object Object;
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public StreamDataObject(object aObject)
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{
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Object = aObject;
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}
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}
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public readonly struct WebSocketData
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{
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public readonly WebServerMessageType WebServerMessageType;
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}
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public sealed class BlueSocketServerSingleton
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{
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void StartServer()
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{
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string ip = "127.0.0-preview.7.22376.2.1";
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int port = 80;
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var server = new TcpListener(IPAddress.Parse(ip), port);
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server.Start();
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Console.WriteLine("Server has started on {0}:{1}, Waiting for a connection...", ip, port);
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TcpClient client = server.AcceptTcpClient();
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Console.WriteLine("A client connected.");
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NetworkStream stream = client.GetStream();
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// enter to an infinite cycle to be able to handle every change in stream
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while (true)
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{
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while (!stream.DataAvailable) ;
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while (client.Available < 3) ; // match against "get"
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byte[] bytes = new byte[client.Available];
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stream.Read(bytes, 0, client.Available);
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string s = Encoding.UTF8.GetString(bytes);
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if (Regex.IsMatch(s, "^GET", RegexOptions.IgnoreCase))
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{
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Console.WriteLine("=====Handshaking from client=====\n{0}", s);
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// 1. Obtain the value of the "Sec-WebSocket-Key" request header without any leading or trailing whitespace
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// 2. Concatenate it with "258EAFA5-E914-47DA-95CA-C5AB0DC85B11" (a special GUID specified by RFC 6455)
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// 3. Compute SHA-1 and Base64 hash of the new value
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// 4. Write the hash back as the value of "Sec-WebSocket-Accept" response header in an HTTP response
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string swk = Regex.Match(s, "Sec-WebSocket-Key: (.*)").Groups[1].Value.Trim();
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string swka = swk + "258EAFA5-E914-47DA-95CA-C5AB0DC85B11";
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byte[] swkaSha1 = System.Security.Cryptography.SHA1.Create()
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.ComputeHash(Encoding.UTF8.GetBytes(swka));
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string swkaSha1Base64 = Convert.ToBase64String(swkaSha1);
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// HTTP/1.1 defines the sequence CR LF as the end-of-line marker
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byte[] response = Encoding.UTF8.GetBytes(
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"HTTP/1.1 101 Switching Protocols\r\n" +
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"Connection: Upgrade\r\n" +
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"Upgrade: websocket\r\n" +
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"Sec-WebSocket-Accept: " + swkaSha1Base64 + "\r\n\r\n");
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stream.Write(response, 0, response.Length);
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}
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else
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{
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bool fin = (bytes[0] & 0b10000000) != 0,
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mask = (bytes[1] & 0b10000000) !=
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0; // must be true, "All messages from the client to the server have this bit set"
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int opcode = bytes[0] & 0b00001111, // expecting 1 - text message
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msglen = bytes[1] - 128, // & 0111 1111
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offset = 2;
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if (msglen == 126)
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{
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// was ToUInt16(bytes, offset) but the result is incorrect
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msglen = BitConverter.ToUInt16(new byte[] {bytes[3], bytes[2]}, 0);
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offset = 4;
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}
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else if (msglen == 127)
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{
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Console.WriteLine("TODO: msglen == 127, needs qword to store msglen");
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// i don't really know the byte order, please edit this
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// msglen = BitConverter.ToUInt64(new byte[] { bytes[5], bytes[4], bytes[3], bytes[2], bytes[9], bytes[8], bytes[7], bytes[6] }, 0);
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// offset = 10;
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}
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if (msglen == 0)
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Console.WriteLine("msglen == 0");
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else if (mask)
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{
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byte[] decoded = new byte[msglen];
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byte[] masks = new byte[4]
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{bytes[offset], bytes[offset + 1], bytes[offset + 2], bytes[offset + 3]};
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offset += 4;
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for (int i = 0; i < msglen; ++i)
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decoded[i] = (byte) (bytes[offset + i] ^ masks[i % 4]);
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string text = Encoding.UTF8.GetString(decoded);
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Console.WriteLine("{0}", text);
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}
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else
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Console.WriteLine("mask bit not set");
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Console.WriteLine();
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}
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}
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}
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}
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}
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