sockscape/server/Libraries/Kneesocks/Pool.cs

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using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading;
namespace Kneesocks {
public class Pool<T> where T : Connection {
// number of threads that should be started when the pool is created
// these threads will run for as long as the pool exists
public int InitialCount { get; set; } = 3;
// amount of connections that should initially be allowed per thread
public int InitialSize { get; set; } = 3;
// amount of additional connections that each thread can handle after
// a new thread is created
public int SizeGrowth { get; set; } = 1;
// maximum amount of connections that a single thread will be assigned
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// 0 means no limit
public int MaxSize { get; set; } = 10;
// maximum number of threads that will be spawned
// 0 means no limit
public int MaxCount { get; set; } = 0;
// maximum number of connections in a thread that exceeds the calculated
// amount for the pool's thread count before the connection redistribution
// function is called
// 0 means never redistribute
public int Tolerance { get; set; } = 0;
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private int _fullThreadCount;
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private volatile bool updateFullThreadCount = true;
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private List<ThreadContext> Threads
= new List<ThreadContext>();
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private long InternalCounter = 0;
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private Dictionary<UInt64, Connection> Connections
= new Dictionary<UInt64, Connection>();
public Pool() {
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for(var i = 0; i < InitialCount; ++i)
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CreateThread(runWithNoClients: true);
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}
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private void IndexConnection(UInt64 id, Connection connection) {
lock(Connections) {
if(id == 0)
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id = (ulong)Interlocked.Increment(ref InternalCounter);
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connection.Id = id;
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Connections.Add(id, connection);
}
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}
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public void InvalidateConnection(UInt64 id) {
lock(Connections) {
Connections.Remove(id);
}
}
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public bool AddConnection(Connection connection, UInt64 id = 0) {
lock(Threads) {
foreach(var thread in Threads) {
if(thread.Stack.Count < FullThreadSize) {
thread.Stack.AddClient(connection);
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IndexConnection(id, connection);
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return true;
}
}
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if(MaxCount == 0 || Threads.Count < MaxCount) {
CreateThread(connection);
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IndexConnection(id, connection);
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return true;
}
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}
return false;
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}
public void InvalidateThread(Stack<T> stackRef) {
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lock(Threads) {
var ctx = Threads.FirstOrDefault(x => Object.ReferenceEquals(x.Stack, stackRef));
if(ctx != null) {
Threads.Remove(ctx);
updateFullThreadCount = true;
}
}
}
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private ThreadContext CreateThread(Connection initialConnection = null, bool runWithNoClients = false) {
var stack = new Stack<T>(this, runWithNoClients, initialConnection);
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var ctx = new ThreadContext {
Stack = stack,
Thread = new Thread(new ThreadStart(stack.ManageStack))
};
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ctx.Thread.Start();
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Threads.Add(ctx);
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updateFullThreadCount = true;
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return ctx;
}
private int FullThreadSize {
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get {
if(updateFullThreadCount) {
_fullThreadCount = Math.Min(
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MaxSize == 0 ? int.MaxValue : MaxSize,
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InitialSize + SizeGrowth * (Threads.Count - InitialCount)
);
}
return _fullThreadCount;
}
}
class ThreadContext {
public Thread Thread { get; set; }
public Stack<T> Stack { get; set; }
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}
}
}