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Diff for /pegasus/src/Pegasus/Common/Monitor.cpp between version 1.1.2.2 and 1.32.2.5

version 1.1.2.2, 2001/07/26 20:34:06 version 1.32.2.5, 2002/10/31 15:24:27
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 //%///////////////////////////////////////////////////////////////////////////// //%/////////////////////////////////////////////////////////////////////////////
 // //
 // Copyright (c) 2000, 2001 The Open group, BMC Software, Tivoli Systems, IBM  // Copyright (c) 2000, 2001, 2002 BMC Software, Hewlett-Packard Company, IBM,
   // The Open Group, Tivoli Systems
 // //
 // 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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 // //
 //%///////////////////////////////////////////////////////////////////////////// //%/////////////////////////////////////////////////////////////////////////////
  
 #define FD_SETSIZE 1024  
 #include <winsock.h>  
 #include <cstring>  
 #include "Monitor.h" #include "Monitor.h"
 #include "MessageQueue.h"  
   
 PEGASUS_USING_STD;  
  
 PEGASUS_NAMESPACE_BEGIN  #ifdef PEGASUS_OS_TYPE_WINDOWS
   # if defined(FD_SETSIZE) && FD_SETSIZE != 1024
   #  error "FD_SETSIZE was not set to 1024 prior to the last inclusion \
   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 \
   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."
  
 ////////////////////////////////////////////////////////////////////////////////  # endif
 //  # define FD_SETSIZE 1024
 // Routines for starting and stoping socket interface.  # include <windows.h>
 //  #else
 ////////////////////////////////////////////////////////////////////////////////  # include <sys/types.h>
   # include <sys/socket.h>
   # include <sys/time.h>
   # include <netinet/in.h>
   # include <netdb.h>
   # include <arpa/inet.h>
   # include <unistd.h>
   #endif
  
 extern Uint32 _socketInterfaceInitCount;  PEGASUS_USING_STD;
  
 static void _OpenSocketInterface()  PEGASUS_NAMESPACE_BEGIN
 {  
     if (_socketInterfaceInitCount == 0)  
     {  
         WSADATA tmp;  
  
         if (WSAStartup(0x202, &tmp) == SOCKET_ERROR)  
             WSACleanup();  
     }  
  
     _socketInterfaceInitCount++;  static AtomicInt _connections = 0;
 }  
  
 static void _CloseSocketInterface()  
 {  
     _socketInterfaceInitCount--;  
  
     if (_socketInterfaceInitCount == 0)  static struct timeval create_time = {0, 1};
         WSACleanup();  static struct timeval destroy_time = {15, 0};
 }  static struct timeval deadlock_time = {300, 0};
  
 //////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
 // //
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 //////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
  
 Monitor::Monitor() Monitor::Monitor()
      : _async(false)
 { {
     _OpenSocketInterface();      Socket::initializeInterface();
       _rep = 0;
     _rep = new MonitorRep;      _entries.reserveCapacity(32);
     FD_ZERO(&_rep->rd_fd_set);      int i = 0;
     FD_ZERO(&_rep->wr_fd_set);      for( ; i < 32; i++ )
     FD_ZERO(&_rep->ex_fd_set);      {
     FD_ZERO(&_rep->active_rd_fd_set);         _MonitorEntry entry(0, 0, 0);
     FD_ZERO(&_rep->active_wr_fd_set);         _entries.append(entry);
     FD_ZERO(&_rep->active_ex_fd_set);      }
 } }
  
 Monitor::~Monitor()  Monitor::Monitor(Boolean async)
      : _async(async)
   {
       Socket::initializeInterface();
       _rep = 0;
       _entries.reserveCapacity(32);
       int i = 0;
       for( ; i < 32; i++ )
 { {
     _CloseSocketInterface();         _MonitorEntry entry(0, 0, 0);
          _entries.append(entry);
 } }
  
 Boolean Monitor::run(Uint32 milliseconds)      if( _async == true )
   
 { {
     // Windows select() has a strange little bug. It returns immediately if         _thread_pool = new ThreadPool(0,
     // there are no descriptors in the set even if the timeout is non-zero.                                       "Monitor",
     // To work around this, we call Sleep() for now:                                       1,
                                        0,
                                        create_time,
                                        destroy_time,
                                        deadlock_time);
       }
       else
          _thread_pool = 0;
   }
  
     if (_entries.size() == 0)  Monitor::~Monitor()
         Sleep(milliseconds);  {
       Tracer::trace(TRC_HTTP, Tracer::LEVEL4,
                     "deregistering with module controller");
  
     // Check for events on the selected file descriptors. Only do this if  
     // there were no undispatched events from last time.  
  
     static int count = 0;      Tracer::trace(TRC_HTTP, Tracer::LEVEL4, "deleting rep");
  
     if (count == 0)      Tracer::trace(TRC_HTTP, Tracer::LEVEL4, "uninitializing interface");
     {      Socket::uninitializeInterface();
         memcpy(&_rep->active_rd_fd_set, &_rep->rd_fd_set, sizeof(fd_set));      Tracer::trace(TRC_HTTP, Tracer::LEVEL4,
         memcpy(&_rep->active_wr_fd_set, &_rep->wr_fd_set, sizeof(fd_set));                    "returning from monitor destructor");
         memcpy(&_rep->active_ex_fd_set, &_rep->ex_fd_set, sizeof(fd_set));      if(_async == true)
          delete _thread_pool;
   }
  
         const Uint32 SEC = milliseconds / 1000;  
         const Uint32 USEC = (milliseconds % 1000) * 1000;  
         struct timeval tv = { SEC, USEC };  
  
         count = select(  int Monitor::kill_idle_threads()
             FD_SETSIZE,  {
             &_rep->active_rd_fd_set,     static struct timeval now, last;
             &_rep->active_wr_fd_set,     gettimeofday(&now, NULL);
             &_rep->active_ex_fd_set,     int dead_threads = 0;
             &tv);  
  
         if (count == 0)     if( now.tv_sec - last.tv_sec > 300 )
             return false;  
         else if (count == SOCKET_ERROR)  
         {         {
             count = 0;        PEGASUS_STD(cout) << "Monitor Thread Pool currently has " <<
             return false;           _thread_pool->running_count() +
         }           _thread_pool->pool_count() << " Threads." << PEGASUS_STD(endl);
         gettimeofday(&last, NULL);
         try
         {
            dead_threads =  _thread_pool->kill_dead_threads();
     }     }
         catch(IPCException& )
     for (Uint32 i = 0, n = _entries.size(); i < n; i++)  
     {     {
         Sint32 socket = _entries[i].socket;        }
         Uint32 events = 0;  
   
         if (FD_ISSET(socket, &_rep->active_rd_fd_set))  
             events |= SocketMessage::READ;  
  
         if (FD_ISSET(socket, &_rep->active_wr_fd_set))     }
             events |= SocketMessage::WRITE;     return dead_threads;
   }
  
         if (FD_ISSET(socket, &_rep->active_ex_fd_set))  
             events |= SocketMessage::EXCEPTION;  
  
         if (events)  Boolean Monitor::run(Uint32 milliseconds)
         {         {
             MessageQueue* queue = MessageQueue::lookup(_entries[i].queueId);  
  
             if (!queue)      Boolean handled_events = false;
                 unsolicitSocketMessages(_entries[i].queueId);      int i = 0;
   
       struct timeval tv = {0,1};
       fd_set fdread;
       FD_ZERO(&fdread);
       _entry_mut.lock(pegasus_thread_self());
  
             if (events & SocketMessage::WRITE)      for( int indx = 0; indx < (int)_entries.size(); indx++)
       {
          if(_entries[indx]._status.value() == _MonitorEntry::IDLE)
             {             {
                 FD_CLR(socket, &_rep->active_wr_fd_set);            FD_SET(_entries[indx].socket, &fdread);
             }             }
       }
   
  
             if (events & SocketMessage::EXCEPTION)      int events = select(FD_SETSIZE, &fdread, NULL, NULL, &tv);
   
   #ifdef PEGASUS_OS_TYPE_WINDOWS
       if(events && events != SOCKET_ERROR )
   #else
       if(events && events != -1 )
   #endif
       {
          for( int indx = 0; indx < (int)_entries.size(); indx++)
          {
             if(FD_ISSET(_entries[indx].socket, &fdread))
             {             {
                 FD_CLR(socket, &_rep->active_ex_fd_set);               MessageQueue *q = MessageQueue::lookup(_entries[indx].queueId);
                if(q == 0)
                {
                   PEGASUS_STD(cout) << "Monitor:: found an empty connection slot" << PEGASUS_STD(endl);
                   try
                   {
                      _entries[indx]._status = _MonitorEntry::EMPTY;
             }             }
                   catch(...)
                   {
  
             if (events & SocketMessage::READ)                  }
                   continue;
                }
                try
                {
                   if(_entries[indx]._type == Monitor::CONNECTION)
             {             {
                 FD_CLR(socket, &_rep->active_rd_fd_set);                     static_cast<HTTPConnection *>(q)->_entry_index = indx;
                      if(static_cast<HTTPConnection *>(q)->_dying.value() > 0 )
                      {
                         _entries[indx]._status = _MonitorEntry::DYING;
                         MessageQueue & o = static_cast<HTTPConnection *>(q)->get_owner();
                         Message* message= new CloseConnectionMessage(_entries[indx].socket);
                         message->dest = o.getQueueId();
                         _entry_mut.unlock();
                         o.enqueue(message);
                         return true;
             }             }
                      _entries[indx]._status = _MonitorEntry::BUSY;
             count--;                     _thread_pool->allocate_and_awaken((void *)q, _dispatch);
                   }
                   else
                   {
                      int events = 0;
                      events |= SocketMessage::READ;
                      Message *msg = new SocketMessage(_entries[indx].socket, events);
                      _entries[indx]._status = _MonitorEntry::BUSY;
                      _entry_mut.unlock();
                      q->enqueue(msg);
                      _entries[indx]._status = _MonitorEntry::IDLE;
             return true;             return true;
         }         }
     }     }
                catch(...)
     return false;               {
                }
                handled_events = true;
             }
          }
       }
       _entry_mut.unlock();
       return(handled_events);
 } }
  
 Boolean Monitor::solicitSocketMessages(  
   int  Monitor::solicitSocketMessages(
     Sint32 socket,     Sint32 socket,
     Uint32 events,     Uint32 events,
     Uint32 queueId)      Uint32 queueId,
       int type)
 { {
     // See whether a handler is already registered for this one:  
   
     Uint32 pos = _findEntry(socket);  
  
     if (pos != PEGASUS_NOT_FOUND)     PEG_METHOD_ENTER(TRC_HTTP, "Monitor::solictSocketMessage");
         return false;  
  
     // Set the events:     int index = -1;
      _entry_mut.lock(pegasus_thread_self());
  
     if (events & SocketMessage::READ)     for(index = 0; index < (int)_entries.size(); index++)
         FD_SET(socket, &_rep->rd_fd_set);     {
         try
     if (events & SocketMessage::WRITE)        {
         FD_SET(socket, &_rep->wr_fd_set);           if(_entries[index]._status.value() == _MonitorEntry::EMPTY)
            {
     if (events & SocketMessage::EXCEPTION)              _entries[index].socket = socket;
         FD_SET(socket, &_rep->ex_fd_set);              _entries[index].queueId  = queueId;
               _entries[index]._type = type;
     // Add the entry to the list:              _entries[index]._status = _MonitorEntry::IDLE;
               _entry_mut.unlock();
     _MonitorEntry entry = { socket, queueId };  
     _entries.append(entry);  
  
     // Success!              return index;
            }
         }
         catch(...)
         {
         }
  
     return true;     }
         _entry_mut.unlock();
      PEG_METHOD_EXIT();
      return index;
 } }
  
 Boolean Monitor::unsolicitSocketMessages(Sint32 socket)  void Monitor::unsolicitSocketMessages(Sint32 socket)
 { {
     // Look for the given entry and remove it:      PEG_METHOD_ENTER(TRC_HTTP, "Monitor::unsolicitSocketMessages");
       _entry_mut.lock(pegasus_thread_self());
  
     for (Uint32 i = 0, n = _entries.size(); i < n; i++)      for(int index = 0; index < (int)_entries.size(); index++)
     {     {
         if (_entries[i].socket == socket)         if(_entries[index].socket == socket)
         {         {
             Sint32 socket = _entries[i].socket;            _entries[index]._status = _MonitorEntry::EMPTY;
             FD_CLR(socket, &_rep->rd_fd_set);            break;
             FD_CLR(socket, &_rep->wr_fd_set);  
             FD_CLR(socket, &_rep->ex_fd_set);  
             _entries.remove(i);  
             return true;  
         }         }
     }     }
  
     return false;      _entry_mut.unlock();
   
   PEG_METHOD_EXIT();
   if( _async  == true )
      PEGASUS_STD(cout) << "Monitor:: running " << _thread_pool->running_count() <<
      " idle " << _thread_pool->pool_count() << PEGASUS_STD(endl);
   
 } }
  
 Uint32 Monitor::_findEntry(Sint32 socket) const  
 {  PEGASUS_THREAD_RETURN PEGASUS_THREAD_CDECL Monitor::_dispatch(void *parm)
     for (Uint32 i = 0, n = _entries.size(); i < n; i++)  
     {     {
         if (_entries[i].socket == socket)     HTTPConnection *dst = reinterpret_cast<HTTPConnection *>(parm);
             return i;  
     }  
  
     return PEG_NOT_FOUND;     dst->run(1);
      if(  dst->_monitor->_entries.size() > (Uint32)dst->_entry_index )
         dst->_monitor->_entries[dst->_entry_index]._status = _MonitorEntry::IDLE;
   
      return 0;
 } }
  
   
 PEGASUS_NAMESPACE_END PEGASUS_NAMESPACE_END


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  Added in v.1.32.2.5

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