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Diff for /pegasus/src/Pegasus/Common/Monitor.cpp between version 1.31.2.1 and 1.122

version 1.31.2.1, 2002/10/25 20:49:43 version 1.122, 2007/10/19 18:12:26
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 //%/////////////////////////////////////////////////////////////////////////////  //%2006////////////////////////////////////////////////////////////////////////
 // //
 // Copyright (c) 2000, 2001, 2002 BMC Software, Hewlett-Packard Company, IBM,  // Copyright (c) 2000, 2001, 2002 BMC Software; Hewlett-Packard Development
 // The Open Group, Tivoli Systems  // Company, L.P.; IBM Corp.; The Open Group; Tivoli Systems.
   // Copyright (c) 2003 BMC Software; Hewlett-Packard Development Company, L.P.;
   // IBM Corp.; EMC Corporation, The Open Group.
   // Copyright (c) 2004 BMC Software; Hewlett-Packard Development Company, L.P.;
   // IBM Corp.; EMC Corporation; VERITAS Software Corporation; The Open Group.
   // Copyright (c) 2005 Hewlett-Packard Development Company, L.P.; IBM Corp.;
   // EMC Corporation; VERITAS Software Corporation; The Open Group.
   // Copyright (c) 2006 Hewlett-Packard Development Company, L.P.; IBM Corp.;
   // EMC Corporation; Symantec Corporation; The Open Group.
 // //
 // Permission is hereby granted, free of charge, to any person obtaining a copy // Permission is hereby granted, free of charge, to any person obtaining a copy
 // of this software and associated documentation files (the "Software"), to // of this software and associated documentation files (the "Software"), to
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 // //
 //============================================================================== //==============================================================================
 // //
 // Author: Mike Brasher (mbrasher@bmc.com)  
 //  
 // Modified By:  
 //  
 //%///////////////////////////////////////////////////////////////////////////// //%/////////////////////////////////////////////////////////////////////////////
  
   #include "Network.h"
 #include <Pegasus/Common/Config.h> #include <Pegasus/Common/Config.h>
 #include <cstring> #include <cstring>
 #include "Monitor.h" #include "Monitor.h"
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 #include "Socket.h" #include "Socket.h"
 #include <Pegasus/Common/Tracer.h> #include <Pegasus/Common/Tracer.h>
 #include <Pegasus/Common/HTTPConnection.h> #include <Pegasus/Common/HTTPConnection.h>
   #include <Pegasus/Common/MessageQueueService.h>
   #include <Pegasus/Common/Exception.h>
   #include "ArrayIterator.h"
   #include "HostAddress.h"
   #include <errno.h>
  
 #ifdef PEGASUS_OS_TYPE_WINDOWS  PEGASUS_USING_STD;
 # if defined(FD_SETSIZE) && FD_SETSIZE != 1024  
 #  error "FD_SETSIZE was not set to 1024 prior to the last inclusion \  PEGASUS_NAMESPACE_BEGIN
 of <winsock.h>. It may have been indirectly included (e.g., by including \  
 <windows.h>). Finthe inclusion of that header which is visible to this \  static AtomicInt _connections(0);
 compilation unit and #define FD_SETZIE to 1024 prior to that inclusion; \  
 otherwise, less than 64 clients (the default) will be able to connect to the \  ////////////////////////////////////////////////////////////////////////////////
 CIMOM. PLEASE DO NOT SUPPRESS THIS WARNING; PLEASE FIX THE PROBLEM."  //
   // Tickler
   //
   ////////////////////////////////////////////////////////////////////////////////
   
   Tickler::Tickler()
       : _listenSocket(PEGASUS_INVALID_SOCKET),
         _clientSocket(PEGASUS_INVALID_SOCKET),
         _serverSocket(PEGASUS_INVALID_SOCKET)
   {
   }
   
   Tickler::~Tickler()
   {
       uninitialize();
   }
   
   Boolean Tickler::initialize()
   {
       //
       // Set up the addresses for the listen, client, and server sockets
       // based on whether IPv6 is enabled.
       //
   
   #ifdef PEGASUS_ENABLE_IPV6
       struct sockaddr_storage listenAddress;
       struct sockaddr_storage clientAddress;
       struct sockaddr_storage serverAddress;
   #else
       struct sockaddr_in listenAddress;
       struct sockaddr_in clientAddress;
       struct sockaddr_in serverAddress;
   #endif
   
       int addressFamily;
       SocketLength addressLength;
   
   #ifdef PEGASUS_ENABLE_IPV6
       if (System::isIPv6StackActive())
       {
           // Use the IPv6 loopback address for the listen sockets
           HostAddress::convertTextToBinary(
               HostAddress::AT_IPV6,
               "::1",
               &reinterpret_cast<struct sockaddr_in6*>(&listenAddress)->sin6_addr);
           listenAddress.ss_family = AF_INET6;
           reinterpret_cast<struct sockaddr_in6*>(&listenAddress)->sin6_port = 0;
  
           addressFamily = AF_INET6;
           addressLength = sizeof(struct sockaddr_in6);
       }
       else
 # endif # endif
 # define FD_SETSIZE 1024      {
 # include <windows.h>          // Use the IPv4 loopback address for the listen sockets
           HostAddress::convertTextToBinary(
               HostAddress::AT_IPV4,
               "127.0.0.1",
               &reinterpret_cast<struct sockaddr_in*>(
                   &listenAddress)->sin_addr.s_addr);
           reinterpret_cast<struct sockaddr_in*>(&listenAddress)->sin_family =
               AF_INET;
           reinterpret_cast<struct sockaddr_in*>(&listenAddress)->sin_port = 0;
   
           addressFamily = AF_INET;
           addressLength = sizeof(struct sockaddr_in);
       }
   
       // Use the same address for the client socket as the listen socket
       clientAddress = listenAddress;
   
       //
       // Set up a listen socket to allow the tickle client and server to connect
       //
   
       // Create the listen socket
       if ((_listenSocket = Socket::createSocket(addressFamily, SOCK_STREAM, 0)) ==
                PEGASUS_INVALID_SOCKET)
       {
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_CREATE",
               "Received error number $0 while creating the internal socket.",
               getSocketError());
           throw Exception(parms);
       }
   
       // Bind the listen socket to the loopback address
       if (::bind(
               _listenSocket,
               reinterpret_cast<struct sockaddr*>(&listenAddress),
               addressLength) < 0)
       {
   #ifdef PEGASUS_OS_ZOS
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_BIND_LONG",
               "Received error:$0 while binding the internal socket.",
               strerror(errno));
 #else #else
 # include <sys/types.h>          MessageLoaderParms parms(
 # include <sys/socket.h>              "Common.Monitor.TICKLE_BIND",
 # include <sys/time.h>              "Received error number $0 while binding the internal socket.",
 # include <netinet/in.h>              getSocketError());
 # include <netdb.h>  
 # include <arpa/inet.h>  
 # include <unistd.h>  
 #endif #endif
           throw Exception(parms);
       }
  
 PEGASUS_USING_STD;      // Listen for a connection from the tickle client
       if ((::listen(_listenSocket, 3)) < 0)
       {
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_LISTEN",
               "Received error number $0 while listening to the internal socket.",
               getSocketError());
           throw Exception(parms);
       }
  
 PEGASUS_NAMESPACE_BEGIN      // Verify we have the correct listen socket
       SocketLength tmpAddressLength = addressLength;
       int sock = ::getsockname(
           _listenSocket,
           reinterpret_cast<struct sockaddr*>(&listenAddress),
           &tmpAddressLength);
       if (sock < 0)
       {
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_SOCKNAME",
               "Received error number $0 while getting the internal socket name.",
               getSocketError());
           throw Exception(parms);
       }
  
       //
       // Set up the client side of the tickle connection.
       //
  
 static AtomicInt _connections = 0;      // Create the client socket
       if ((_clientSocket = Socket::createSocket(addressFamily, SOCK_STREAM, 0)) ==
                PEGASUS_INVALID_SOCKET)
       {
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_CLIENT_CREATE",
               "Received error number $0 while creating the internal client "
                   "socket.",
               getSocketError());
           throw Exception(parms);
       }
  
       // Bind the client socket to the loopback address
       if (::bind(
               _clientSocket,
               reinterpret_cast<struct sockaddr*>(&clientAddress),
               addressLength) < 0)
       {
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_CLIENT_BIND",
               "Received error number $0 while binding the internal client "
                   "socket.",
               getSocketError());
           throw Exception(parms);
       }
  
 static struct timeval create_time = {0, 1};      // Connect the client socket to the listen socket address
 static struct timeval destroy_time = {15, 0};      if (::connect(
 static struct timeval deadlock_time = {0, 0};              _clientSocket,
               reinterpret_cast<struct sockaddr*>(&listenAddress),
               addressLength) < 0)
       {
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_CLIENT_CONNECT",
               "Received error number $0 while connecting the internal client "
                   "socket.",
               getSocketError());
           throw Exception(parms);
       }
  
 ////////////////////////////////////////////////////////////////////////////////  
 // //
 // MonitorRep      // Set up the server side of the tickle connection.
 // //
 ////////////////////////////////////////////////////////////////////////////////  
  
 struct MonitorRep      tmpAddressLength = addressLength;
   
       // Accept the client socket connection.  The accept call may fail with
       // EAGAIN.  Try a max of 20 times to establish this connection.
       unsigned int retries = 0;
       do
       {
           _serverSocket = ::accept(
               _listenSocket,
               reinterpret_cast<struct sockaddr*>(&serverAddress),
               &tmpAddressLength);
   
           if ((_serverSocket != PEGASUS_SOCKET_ERROR) ||
               (getSocketError() != PEGASUS_NETWORK_TRYAGAIN))
           {
               break;
           }
   
           Threads::sleep(1);
           retries++;
       } while (retries <= 20);
   
       if (_serverSocket == PEGASUS_SOCKET_ERROR)
       {
           if (getSocketError() == PEGASUS_NETWORK_TCPIP_STOPPED)
           {
               // TCP/IP is down
               uninitialize();
               return false;
           }
   
           MessageLoaderParms parms(
               "Common.Monitor.TICKLE_ACCEPT",
               "Received error number $0 while accepting the internal socket "
                   "connection.",
               getSocketError());
           throw Exception(parms);
       }
   
       //
       // Close the listen socket and make the other sockets non-blocking
       //
   
       Socket::close(_listenSocket);
       _listenSocket = PEGASUS_INVALID_SOCKET;
   
       Socket::disableBlocking(_serverSocket);
       Socket::disableBlocking(_clientSocket);
       return true;
   }
   
   void Tickler::uninitialize()
 { {
     fd_set rd_fd_set;      PEG_TRACE_CSTRING(TRC_HTTP, Tracer::LEVEL4, "uninitializing interface");
     fd_set wr_fd_set;  
     fd_set ex_fd_set;      try
     fd_set active_rd_fd_set;      {
     fd_set active_wr_fd_set;          if (_serverSocket != PEGASUS_INVALID_SOCKET)
     fd_set active_ex_fd_set;          {
 };              Socket::close(_serverSocket);
               _serverSocket = PEGASUS_INVALID_SOCKET;
           }
           if (_clientSocket != PEGASUS_INVALID_SOCKET)
           {
               Socket::close(_clientSocket);
               _clientSocket = PEGASUS_INVALID_SOCKET;
           }
           if (_listenSocket != PEGASUS_INVALID_SOCKET)
           {
               Socket::close(_listenSocket);
               _listenSocket = PEGASUS_INVALID_SOCKET;
           }
       }
       catch (...)
       {
           PEG_TRACE_CSTRING(TRC_HTTP, Tracer::LEVEL4,
               "Failed to close tickle sockets");
       }
   }
   
  
 //////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
 // //
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 // //
 //////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
  
   #define MAX_NUMBER_OF_MONITOR_ENTRIES  32
 Monitor::Monitor() Monitor::Monitor()
    : _module_handle(0), _controller(0), _async(false)     : _stopConnections(0),
        _stopConnectionsSem(0),
        _solicitSocketCount(0)
 { {
       int numberOfMonitorEntriesToAllocate = MAX_NUMBER_OF_MONITOR_ENTRIES;
     Socket::initializeInterface();     Socket::initializeInterface();
     _rep = 0;      _entries.reserveCapacity(numberOfMonitorEntriesToAllocate);
     _entries.reserveCapacity(32);  
     int i = 0;      // setup the tickler
     for( ; i < 32; i++ )      initializeTickler();
   
       // Start the count at 1 because initilizeTickler()
       // has added an entry in the first position of the
       // _entries array
       for (int i = 1; i < numberOfMonitorEntriesToAllocate; i++)
     {     {
        _MonitorEntry entry(0, 0, 0);        _MonitorEntry entry(0, 0, 0);
        _entries.append(entry);        _entries.append(entry);
     }     }
 } }
  
 Monitor::Monitor(Boolean async)  Monitor::~Monitor()
    : _module_handle(0), _controller(0), _async(async)  
 { {
     Socket::initializeInterface();      _tickler.uninitialize();
     _rep = 0;      Socket::uninitializeInterface();
     _entries.reserveCapacity(32);      PEG_TRACE_CSTRING(TRC_HTTP, Tracer::LEVEL4,
     int i = 0;                    "returning from monitor destructor");
     for( ; i < 32; i++ )  }
   
   void Monitor::initializeTickler()
     {     {
        _MonitorEntry entry(0, 0, 0);      while (!_tickler.initialize())
        _entries.append(entry);      {
           // Retry until TCP/IP is started
     }     }
  
     if( _async == true )      // Create a MonitorEntry for the tickler and set its state to IDLE so the
       // Monitor will watch for its events.
       _MonitorEntry entry(_tickler.getServerSocket(), 1, INTERNAL);
       entry._status = _MonitorEntry::IDLE;
   
       if (_entries.size() == 0)
     {     {
        _thread_pool = new ThreadPool(0,          // The tickler has not been initialized before; add its entry at the
                                      "Monitor",          // beginning of the list.
                                      1,          _entries.append(entry);
                                      0,  
                                      create_time,  
                                      destroy_time,  
                                      deadlock_time);  
     }     }
     else     else
        _thread_pool = 0;      {
           // Overwrite the existing tickler entry.
           _entries[0] = entry;
       }
 } }
  
 Monitor::~Monitor()  void Monitor::tickle()
 { {
     Tracer::trace(TRC_HTTP, Tracer::LEVEL4,      AutoMutex autoMutex(_tickleMutex);
                   "deregistering with module controller");      Socket::write(_tickler.getClientSocket(), "\0\0", 2);
   }
  
     if(_module_handle != NULL)  void Monitor::setState(
       Uint32 index,
       _MonitorEntry::entry_status status)
     {     {
        _controller->deregister_module(PEGASUS_MODULENAME_MONITOR);      AutoMutex autoEntryMutex(_entry_mut);
        _controller = 0;      // Set the state to requested state
        delete _module_handle;      _entries[index]._status = status;
     }     }
     Tracer::trace(TRC_HTTP, Tracer::LEVEL4, "deleting rep");  
  
     Tracer::trace(TRC_HTTP, Tracer::LEVEL4, "uninitializing interface");  void Monitor::run(Uint32 milliseconds)
     Socket::uninitializeInterface();  {
     Tracer::trace(TRC_HTTP, Tracer::LEVEL4,      struct timeval tv = {milliseconds/1000, milliseconds%1000*1000};
                   "returning from monitor destructor");  
     if(_async == true)  
        delete _thread_pool;  
 }  
  
       fd_set fdread;
       FD_ZERO(&fdread);
  
 int Monitor::kill_idle_threads()      AutoMutex autoEntryMutex(_entry_mut);
 {  
    static struct timeval now, last;  
    gettimeofday(&now, NULL);  
    int dead_threads = 0;  
  
    if( now.tv_sec - last.tv_sec > 300 )      ArrayIterator<_MonitorEntry> entries(_entries);
   
       // Check the stopConnections flag.  If set, clear the Acceptor monitor
       // entries
       if (_stopConnections.get() == 1)
    {    {
       PEGASUS_STD(cout) << "Monitor Thread Pool currently has " <<          for ( int indx = 0; indx < (int)entries.size(); indx++)
          _thread_pool->running_count() +          {
          _thread_pool->pool_count() << " Threads." << PEGASUS_STD(endl);              if (entries[indx]._type == Monitor::ACCEPTOR)
       gettimeofday(&last, NULL);  
       try  
       {       {
          dead_threads =  _thread_pool->kill_dead_threads();                  if ( entries[indx]._status.get() != _MonitorEntry::EMPTY)
                   {
                      if ( entries[indx]._status.get() == _MonitorEntry::IDLE ||
                           entries[indx]._status.get() == _MonitorEntry::DYING )
                      {
                          // remove the entry
                          entries[indx]._status = _MonitorEntry::EMPTY;
       }       }
       catch(IPCException& )                     else
       {       {
                          // set status to DYING
                         entries[indx]._status = _MonitorEntry::DYING;
                      }
       }       }
   
    }    }
    return dead_threads;  
 } }
           _stopConnections = 0;
           _stopConnectionsSem.signal();
       }
   
       for (int indx = 0; indx < (int)entries.size(); indx++)
       {
           const _MonitorEntry &entry = entries[indx];
           if ((entry._status.get() == _MonitorEntry::DYING) &&
               (entry._type == Monitor::CONNECTION))
           {
               MessageQueue *q = MessageQueue::lookup(entry.queueId);
               PEGASUS_ASSERT(q != 0);
               HTTPConnection &h = *static_cast<HTTPConnection *>(q);
   
               if (h._connectionClosePending == false)
                   continue;
  
               // NOTE: do not attempt to delete while there are pending responses
               // coming thru. The last response to come thru after a
               // _connectionClosePending will reset _responsePending to false
               // and then cause the monitor to rerun this code and clean up.
               // (see HTTPConnection.cpp)
  
 Boolean Monitor::run(Uint32 milliseconds)              if (h._responsePending == true)
 { {
                   PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
                       "Monitor::run - Ignoring connection delete request "
                           "because responses are still pending. "
                           "connection=0x%p, socket=%d\n",
                       (void *)&h, h.getSocket()));
                   continue;
               }
               h._connectionClosePending = false;
               MessageQueue &o = h.get_owner();
               Message* message= new CloseConnectionMessage(entry.socket);
               message->dest = o.getQueueId();
  
     Boolean handled_events = false;              // HTTPAcceptor is responsible for closing the connection.
     int i = 0;              // The lock is released to allow HTTPAcceptor to call
               // unsolicitSocketMessages to free the entry.
               // Once HTTPAcceptor completes processing of the close
               // connection, the lock is re-requested and processing of
               // the for loop continues.  This is safe with the current
               // implementation of the entries object.  Note that the
               // loop condition accesses the entries.size() on each
               // iteration, so that a change in size while the mutex is
               // unlocked will not result in an ArrayIndexOutOfBounds
               // exception.
  
     struct timeval tv = {0,1};              _entry_mut.unlock();
     fd_set fdread;              o.enqueue(message);
     FD_ZERO(&fdread);              _entry_mut.lock();
  
     for( int indx = 0; indx < (int)_entries.size(); indx++)              // After enqueue a message and the autoEntryMutex has been
               // released and locked again, the array of _entries can be
               // changed. The ArrayIterator has be reset with the original
               // _entries.
               entries.reset(_entries);
           }
       }
   
       Uint32 _idleEntries = 0;
   
       /*
           We will keep track of the maximum socket number and pass this value
           to the kernel as a parameter to SELECT.  This loop seems like a good
           place to calculate the max file descriptor (maximum socket number)
           because we have to traverse the entire array.
       */
       SocketHandle maxSocketCurrentPass = 0;
       for (int indx = 0; indx < (int)entries.size(); indx++)
     {     {
        if(_entries[indx]._status.value() == _MonitorEntry::IDLE)         if (maxSocketCurrentPass < entries[indx].socket)
              maxSocketCurrentPass = entries[indx].socket;
   
          if (entries[indx]._status.get() == _MonitorEntry::IDLE)
        {        {
           FD_SET(_entries[indx].socket, &fdread);             _idleEntries++;
              FD_SET(entries[indx].socket, &fdread);
        }        }
     }     }
  
     int events = select(FD_SETSIZE, &fdread, NULL, NULL, &tv);      /*
           Add 1 then assign maxSocket accordingly. We add 1 to account for
           descriptors starting at 0.
       */
       maxSocketCurrentPass++;
   
       _entry_mut.unlock();
  
       //
       // The first argument to select() is ignored on Windows and it is not
       // a socket value.  The original code assumed that the number of sockets
       // and a socket value have the same type.  On Windows they do not.
       //
 #ifdef PEGASUS_OS_TYPE_WINDOWS #ifdef PEGASUS_OS_TYPE_WINDOWS
     if(events && events != SOCKET_ERROR )      int events = select(0, &fdread, NULL, NULL, &tv);
 #else #else
     if(events && events != -1 )      int events = select(maxSocketCurrentPass, &fdread, NULL, NULL, &tv);
 #endif #endif
       _entry_mut.lock();
   
       // After enqueue a message and the autoEntryMutex has been released and
       // locked again, the array of _entries can be changed. The ArrayIterator
       // has be reset with the original _entries
       entries.reset(_entries);
   
       if (events == PEGASUS_SOCKET_ERROR)
       {
           PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
               "Monitor::run - errorno = %d has occurred on select.", errno));
           // The EBADF error indicates that one or more or the file
           // descriptions was not valid. This could indicate that
           // the entries structure has been corrupted or that
           // we have a synchronization error.
   
           PEGASUS_ASSERT(errno != EBADF);
       }
       else if (events)
       {
           PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
               "Monitor::run select event received events = %d, monitoring %d "
                   "idle entries",
               events, _idleEntries));
           for (int indx = 0; indx < (int)entries.size(); indx++)
           {
               // The Monitor should only look at entries in the table that are
               // IDLE (i.e., owned by the Monitor).
               if ((entries[indx]._status.get() == _MonitorEntry::IDLE) &&
                   (FD_ISSET(entries[indx].socket, &fdread)))
               {
                   MessageQueue *q = MessageQueue::lookup(entries[indx].queueId);
                   PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
                       "Monitor::run indx = %d, queueId =  %d, q = %p",
                       indx, entries[indx].queueId, q));
                   PEGASUS_ASSERT(q !=0);
   
                   try
     {     {
        for( int indx = 0; indx < (int)_entries.size(); indx++)                      if (entries[indx]._type == Monitor::CONNECTION)
        {  
           if(FD_ISSET(_entries[indx].socket, &fdread))  
           {  
              MessageQueue *q = MessageQueue::lookup(_entries[indx].queueId);  
              if(q == 0)  
              {              {
                 PEGASUS_STD(cout) << "Monitor:: found an empty connection slot" << PEGASUS_STD(endl);                          PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
                               "entries[indx].type for indx = %d is "
                                   "Monitor::CONNECTION",
                               indx));
                           static_cast<HTTPConnection *>(q)->_entry_index = indx;
   
                           // Do not update the entry just yet. The entry gets
                           // updated once the request has been read.
                           //entries[indx]._status = _MonitorEntry::BUSY;
   
                           // If allocate_and_awaken failure, retry on next
                           // iteration
   /* Removed for PEP 183.
                           if (!MessageQueueService::get_thread_pool()->
                                   allocate_and_awaken((void *)q, _dispatch))
                           {
                               PEG_TRACE_CSTRING(TRC_DISCARDED_DATA,
                                   Tracer::LEVEL2,
                                   "Monitor::run: Insufficient resources to "
                                       "process request.");
                               entries[indx]._status = _MonitorEntry::IDLE;
                               return true;
                           }
   */
   // Added for PEP 183
                           HTTPConnection *dst =
                               reinterpret_cast<HTTPConnection *>(q);
                           PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
                               "Monitor::_dispatch: entering run() for "
                                   "indx = %d, queueId = %d, q = %p",
                               dst->_entry_index,
                               dst->_monitor->_entries[dst->_entry_index].queueId,
                               dst));
   
                 try                 try
                 {                 {
                       _entries[indx]._status = _MonitorEntry::EMPTY;                              dst->run(1);
                 }                 }
                 catch(...)                 catch(...)
                 {                 {
                               PEG_TRACE_CSTRING(TRC_HTTP, Tracer::LEVEL4,
                                   "Monitor::_dispatch: exception received");
                 }                 }
                 return true;                          PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
                               "Monitor::_dispatch: exited run() for index %d",
                               dst->_entry_index));
   
                           // It is possible the entry status may not be set to
                           // busy.  The following will fail in that case.
                           // PEGASUS_ASSERT(dst->_monitor->_entries[
                           //     dst->_entry_index]._status.get() ==
                           //    _MonitorEntry::BUSY);
                           // Once the HTTPConnection thread has set the status
                           // value to either Monitor::DYING or Monitor::IDLE,
                           // it has returned control of the connection to the
                           // Monitor.  It is no longer permissible to access
                           // the connection or the entry in the _entries table.
   
                           // The following is not relevant as the worker thread
                           // or the reader thread will update the status of the
                           // entry.
                           //if (dst->_connectionClosePending)
                           //{
                           //  dst->_monitor->_entries[dst->_entry_index]._status =
                           //    _MonitorEntry::DYING;
                           //}
                           //else
                           //{
                           //  dst->_monitor->_entries[dst->_entry_index]._status =
                           //    _MonitorEntry::IDLE;
                           //}
   // end Added for PEP 183
                       }
                       else if (entries[indx]._type == Monitor::INTERNAL)
                       {
                           // set ourself to BUSY,
                           // read the data
                           // and set ourself back to IDLE
   
                           entries[indx]._status = _MonitorEntry::BUSY;
                           static char buffer[2];
                           Sint32 amt =
                               Socket::read(entries[indx].socket,&buffer, 2);
   
                           if (amt == PEGASUS_SOCKET_ERROR &&
                               getSocketError() == PEGASUS_NETWORK_TCPIP_STOPPED)
                           {
                               PEG_TRACE_CSTRING(TRC_HTTP, Tracer::LEVEL4,
                                   "Monitor::run: Tickler socket got an IO error. "
                                       "Going to re-create Socket and wait for "
                                       "TCP/IP restart.");
                               _tickler.uninitialize();
                               initializeTickler();
              }              }
              try                          else
              {  
                 if(_entries[indx]._type == Monitor::CONNECTION)  
                 {  
                    static_cast<HTTPConnection *>(q)->_entry_index = indx;  
                    if(static_cast<HTTPConnection *>(q)->_dying.value() > 0 )  
                    {                    {
                       _entries[indx]._status = _MonitorEntry::DYING;                              entries[indx]._status = _MonitorEntry::IDLE;
                       MessageQueue & o = static_cast<HTTPConnection *>(q)->get_owner();  
                       Message* message= new CloseConnectionMessage(_entries[indx].socket);  
                       message->dest = o.getQueueId();  
                       o.enqueue(message);  
                       return true;  
                    }                    }
                    _entries[indx]._status = _MonitorEntry::BUSY;  
                    _thread_pool->allocate_and_awaken((void *)q, _dispatch);  
                 }                 }
                 else                 else
                 {                 {
                           PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
                               "Non-connection entry, indx = %d, has been "
                                   "received.",
                               indx));
                    int events = 0;                    int events = 0;
                    events |= SocketMessage::READ;                    events |= SocketMessage::READ;
                    Message *msg = new SocketMessage(_entries[indx].socket, events);                          Message* msg = new SocketMessage(
                    _entries[indx]._status = _MonitorEntry::BUSY;                              entries[indx].socket, events);
                           entries[indx]._status = _MonitorEntry::BUSY;
                           _entry_mut.unlock();
                    q->enqueue(msg);                    q->enqueue(msg);
                    _entries[indx]._status = _MonitorEntry::IDLE;                          _entry_mut.lock();
                    return true;  
                           // After enqueue a message and the autoEntryMutex has
                           // been released and locked again, the array of
                           // entries can be changed. The ArrayIterator has be
                           // reset with the original _entries
                           entries.reset(_entries);
                           entries[indx]._status = _MonitorEntry::IDLE;
                 }                 }
              }              }
              catch(...)              catch(...)
              {              {
              }              }
              handled_events = true;  
           }           }
        }        }
     }     }
     return(handled_events);  }
   
   void Monitor::stopListeningForConnections(Boolean wait)
   {
       PEG_METHOD_ENTER(TRC_HTTP, "Monitor::stopListeningForConnections()");
       // set boolean then tickle the server to recognize _stopConnections
       _stopConnections = 1;
       tickle();
   
       if (wait)
       {
         // Wait for the monitor to notice _stopConnections.  Otherwise the
         // caller of this function may unbind the ports while the monitor
         // is still accepting connections on them.
         _stopConnectionsSem.wait();
       }
   
       PEG_METHOD_EXIT();
 } }
  
  
 int  Monitor::solicitSocketMessages( int  Monitor::solicitSocketMessages(
     Sint32 socket,      SocketHandle socket,
     Uint32 events,     Uint32 events,
     Uint32 queueId,     Uint32 queueId,
     int type)     int type)
 { {
       PEG_METHOD_ENTER(TRC_HTTP, "Monitor::solicitSocketMessages");
       AutoMutex autoMut(_entry_mut);
       // Check to see if we need to dynamically grow the _entries array
       // We always want the _entries array to 2 bigger than the
       // current connections requested
       _solicitSocketCount++;  // bump the count
       int size = (int)_entries.size();
       if ((int)_solicitSocketCount >= (size-1))
       {
           for (int i = 0; i < ((int)_solicitSocketCount - (size-1)); i++)
           {
               _MonitorEntry entry(0, 0, 0);
               _entries.append(entry);
           }
       }
  
    PEG_METHOD_ENTER(TRC_HTTP, "Monitor::solictSocketMessage");      int index;
       for (index = 1; index < (int)_entries.size(); index++)
    int index = -1;  
    for(index = 0; index < (int)_entries.size(); index++)  
    {    {
       try       try
       {       {
          if(_entries[index]._status.value() == _MonitorEntry::EMPTY)              if (_entries[index]._status.get() == _MonitorEntry::EMPTY)
          {          {
   
             _entries[index].socket = socket;             _entries[index].socket = socket;
             _entries[index].queueId  = queueId;             _entries[index].queueId  = queueId;
             _entries[index]._type = type;             _entries[index]._type = type;
             _entries[index]._status = _MonitorEntry::IDLE;             _entries[index]._status = _MonitorEntry::IDLE;
   
             return index;             return index;
          }          }
       }       }
Line 289 
Line 755 
       {       {
       }       }
    }    }
       // decrease the count, if we are here we didn't do anything meaningful
       _solicitSocketCount--;
    PEG_METHOD_EXIT();    PEG_METHOD_EXIT();
    return index;      return -1;
 } }
  
 void Monitor::unsolicitSocketMessages(Sint32 socket)  void Monitor::unsolicitSocketMessages(SocketHandle socket)
 { {
     PEG_METHOD_ENTER(TRC_HTTP, "Monitor::unsolicitSocketMessages");     PEG_METHOD_ENTER(TRC_HTTP, "Monitor::unsolicitSocketMessages");
       AutoMutex autoMut(_entry_mut);
  
     for(int index = 0; index < (int)_entries.size(); index++)      /*
           Start at index = 1 because _entries[0] is the tickle entry which
           never needs to be EMPTY;
       */
       unsigned int index;
       for (index = 1; index < _entries.size(); index++)
     {     {
        if(_entries[index].socket == socket)        if(_entries[index].socket == socket)
        {        {
           _entries[index]._status = _MonitorEntry::EMPTY;           _entries[index]._status = _MonitorEntry::EMPTY;
               _entries[index].socket = PEGASUS_INVALID_SOCKET;
               _solicitSocketCount--;
               break;
        }        }
     }     }
  
       /*
           Dynamic Contraction:
           To remove excess entries we will start from the end of the _entries
           array and remove all entries with EMPTY status until we find the
           first NON EMPTY.  This prevents the positions, of the NON EMPTY
           entries, from being changed.
       */
       index = _entries.size() - 1;
       while (_entries[index]._status.get() == _MonitorEntry::EMPTY)
       {
           if (_entries.size() > MAX_NUMBER_OF_MONITOR_ENTRIES)
                   _entries.remove(index);
           index--;
       }
 PEG_METHOD_EXIT(); PEG_METHOD_EXIT();
 if( _async  == true )  
    PEGASUS_STD(cout) << "Monitor:: running " << _thread_pool->running_count() <<  
    " idle " << _thread_pool->pool_count() << PEGASUS_STD(endl);  
   
 } }
  
   // Note: this is no longer called with PEP 183.
 PEGASUS_THREAD_RETURN PEGASUS_THREAD_CDECL Monitor::_dispatch(void *parm)  ThreadReturnType PEGASUS_THREAD_CDECL Monitor::_dispatch(void* parm)
 { {
    HTTPConnection *dst = reinterpret_cast<HTTPConnection *>(parm);    HTTPConnection *dst = reinterpret_cast<HTTPConnection *>(parm);
       PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
           "Monitor::_dispatch: entering run() for indx  = %d, queueId = %d, "
               "q = %p",
           dst->_entry_index,
           dst->_monitor->_entries[dst->_entry_index].queueId,
           dst));
  
       try
       {
    dst->run(1);    dst->run(1);
    if(  dst->_monitor->_entries.size() > (Uint32)dst->_entry_index )      }
       dst->_monitor->_entries[dst->_entry_index]._status = _MonitorEntry::IDLE;      catch (...)
       {
           PEG_TRACE_CSTRING(TRC_HTTP, Tracer::LEVEL4,
               "Monitor::_dispatch: exception received");
       }
       PEG_TRACE((TRC_HTTP, Tracer::LEVEL4,
           "Monitor::_dispatch: exited run() for index %d", dst->_entry_index));
   
       PEGASUS_ASSERT(dst->_monitor->_entries[dst->_entry_index]._status.get() ==
           _MonitorEntry::BUSY);
  
       // Once the HTTPConnection thread has set the status value to either
       // Monitor::DYING or Monitor::IDLE, it has returned control of the
       // connection to the Monitor.  It is no longer permissible to access the
       // connection or the entry in the _entries table.
       if (dst->_connectionClosePending)
       {
           dst->_monitor->_entries[dst->_entry_index]._status =
               _MonitorEntry::DYING;
       }
       else
       {
           dst->_monitor->_entries[dst->_entry_index]._status =
               _MonitorEntry::IDLE;
       }
    return 0;    return 0;
 } }
  
   
 PEGASUS_NAMESPACE_END PEGASUS_NAMESPACE_END


Legend:
Removed from v.1.31.2.1  
changed lines
  Added in v.1.122

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