246 lines
9.4 KiB
Plaintext
246 lines
9.4 KiB
Plaintext
///////////////////////////////////////////////////////////////////////////////
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//
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// Microsoft Research Singularity
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//
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// Copyright (c) Microsoft Corporation. All rights reserved.
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//
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// File: ConsoleOutput.sg
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//
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// Note:
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//
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using System;
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using System.Text;
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using System.Threading;
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using System.Runtime.CompilerServices; //StructAlign attribute
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using System.Runtime.InteropServices; //structLayout attribute
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using System.GCs;
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using Microsoft.SingSharp;
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using Microsoft.Singularity;
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using Microsoft.Singularity.Channels;
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using Microsoft.Singularity.Directory;
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using Microsoft.Singularity.Io;
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using Microsoft.Singularity.Hal;
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using Allocation = Microsoft.Singularity.V1.Services.SharedHeapService.Allocation;
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namespace Microsoft.Singularity.Io
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{
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//////////////////////////////////////////////////////////////////////////
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//
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// The ConsoleOutput class has a single message pump that manages messages
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// to/from the "/dev/conout" namespace and incoming play requests.
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//
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public class ConsoleOutput
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{
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private static HalScreen! screen;
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private static Thread! worker;
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private static bool stopWork;
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public static void Initialize()
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{
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screen = (!)Console.Screen;
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stopWork = false;
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worker = Thread.CreateThread(null, new ThreadStart(Pump));
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worker.Start();
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}
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public static void Finalize()
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{
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stopWork = true;
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worker.Join();
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}
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public static void Pump()
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{
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byte[] side = new byte [160];
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// Create a ServiceProvider channel
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ServiceProviderContract.Imp! imp;
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ServiceProviderContract.Exp! sp;
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ServiceProviderContract.NewChannel(out imp, out sp);
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// Connect the service provider to the namespace.
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DirectoryServiceContract.Imp nc = DirectoryService.NewClientEndpoint();
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// Register the device using the namespace.
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try {
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nc.SendRegister(Bitter.FromString2("/dev/conout"), imp);
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switch receive {
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case nc.AckRegister():
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break;
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case nc.NakRegister(rejected, error):
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DebugStub.Break();
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if (rejected != null) {
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delete rejected;
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}
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break;
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case unsatisfiable:
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DebugStub.Print("unable to register /dev/conout with name service\n");
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DebugStub.Break();
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delete sp;
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return;
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}
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}
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finally {
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delete nc;
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}
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Tracing.Log(Tracing.Audit, "conout Registered");
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// create a set of all client endpoints connected to the sound device
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ESet<ConsoleDeviceContract.Exp:Ready> clients
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= new ESet<ConsoleDeviceContract.Exp:Ready>();
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try {
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while (!stopWork) {
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switch receive {
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// Listen for new connections
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case sp.Connect(candidate): {
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ConsoleDeviceContract.Exp newClient
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= candidate as ConsoleDeviceContract.Exp;
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if (newClient != null) {
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newClient.SendSuccess();
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clients.Add(newClient);
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sp.SendAckConnect();
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}
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else {
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sp.SendNackConnect(candidate);
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}
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break;
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}
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case ep.Clear() in clients: {
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screen.Clear();
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ep.SendAckClear();
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clients.Add(ep); // add client endpoint back into set.
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break;
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}
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case ep.GetDisplayDimensions() in clients: {
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int columns, rows;
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screen.GetDisplayDimensions(out columns, out rows);
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ep.SendDisplayDimensions(columns, rows);
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clients.Add(ep);
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break;
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}
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case ep.GetCursorPosition() in clients: {
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int column, row;
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screen.GetCursorPosition(out column, out row);
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ep.SendCursorPosition(column, row);
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clients.Add(ep);
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break;
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}
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case ep.SetCursorPosition(column, row) in clients: {
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if (screen.SetCursorPosition(column, row)) {
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ep.SendAckSetCursorPosition();
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}
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else {
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ep.SendInvalidPosition();
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}
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clients.Add(ep);
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break;
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}
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case ep.SetCursorSize(cursorSize) in clients:
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if (cursorSize == CursorSize.Large) {
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screen.SetCursorSizeLarge();
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}
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else {
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screen.SetCursorSizeSmall();
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}
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ep.SendAckSetCursorSize();
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clients.Add(ep);
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break;
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case ep.Write(buffer, offset, count) in clients: {
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if (buffer != null) {
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if (side.Length < count) {
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side = new byte [count];
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}
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for (int i = 0; i < count; i++) {
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side[i] = (byte)buffer[offset + i];
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}
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screen.Write(side, 0, count);
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}
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ep.SendAckWrite(buffer);
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clients.Add(ep); // add client endpoint back into set.
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break;
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}
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case ep.PutChar(char c) in clients:
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screen.PutChar(c);
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ep.SendAckPutChar();
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clients.Add(ep);
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break;
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case ep.PutCharAt(char c, int column, int row) in clients:
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if (screen.PutCharAt(c, column, row)) {
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ep.SendAckPutCharAt();
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}
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else {
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ep.SendInvalidPosition();
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}
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clients.Add(ep); // add client endpoint back into set.
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break;
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case ep.ClearCursorToEndOfLine() in clients:
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screen.ClearCursorToEndOfLine();
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ep.SendAckClearCursorToEndOfLine();
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clients.Add(ep);
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break;
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case ep.CursorFlash() in clients: {
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screen.CursorFlash();
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ep.SendAckCursorFlash();
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clients.Add(ep); // add client endpoint back into set.
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break;
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}
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case ep.CursorHide() in clients: {
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screen.CursorHide();
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ep.SendAckCursorHide();
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clients.Add(ep); // add client endpoint back into set.
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break;
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}
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case ep.CursorShow() in clients: {
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screen.CursorShow();
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ep.SendAckCursorShow();
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clients.Add(ep); // add client endpoint back into set.
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break;
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}
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// Listen for client departure
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case ep.ChannelClosed() in clients: {
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Tracing.Log(Tracing.Debug, "Client channel closes.");
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delete ep;
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break;
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}
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case unsatisfiable: {
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Tracing.Log(Tracing.Debug, "Received unknown message.");
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DebugStub.Break();
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stopWork = true;
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break;
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}
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}
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}
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}
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finally {
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Tracing.Log(Tracing.Debug, "conout finished message pump.");
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clients.Dispose();
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delete sp;
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}
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Tracing.Log(Tracing.Audit, "Shutdown");
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}
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}
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}
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