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Diff for /pegasus/src/Pegasus/Common/HTTPAcceptor.cpp between version 1.37 and 1.81.8.12

version 1.37, 2003/10/05 23:25:43 version 1.81.8.12, 2006/10/18 04:24:42
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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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 //         Jenny Yu, Hewlett-Packard Company (jenny_yu@hp.com) //         Jenny Yu, Hewlett-Packard Company (jenny_yu@hp.com)
 //         Nag Boranna, Hewlett-Packard Company (nagaraja_boranna@hp.com) //         Nag Boranna, Hewlett-Packard Company (nagaraja_boranna@hp.com)
 //         Dave Rosckes (rosckes@us.ibm.com) //         Dave Rosckes (rosckes@us.ibm.com)
   //          Denise Eckstein (denise.eckstein@hp.com)
   //          Alagaraja Ramasubramanian (alags_raj@in.ibm.com) for Bug#1090
   //          Amit Arora, IBM (amita@in.ibm.com) for Bug#2541
   //          Roger Kumpf, Hewlett-Packard Company (roger_kumpf@hp.com)
   //          Sean Keenan, Hewlett-Packard Company (sean.keenan@hp.com)
   //          Josephine Eskaline Joyce, IBM (jojustin@in.ibm.com) for Bug#2065
   //          David Dillard, Symantec Corp. (david_dillard@symantec.com)
   //          John Alex, IBM (johnalex@us.ibm.com) for Bug#3312
 // //
 //%///////////////////////////////////////////////////////////////////////////// //%/////////////////////////////////////////////////////////////////////////////
  
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 #include <iostream> #include <iostream>
 #include "Socket.h" #include "Socket.h"
  
 #ifdef PEGASUS_PLATFORM_WIN32_IX86_MSVC  #ifdef PEGASUS_OS_TYPE_WINDOWS
 #include <windows.h> #include <windows.h>
 #else #else
 # include <cctype> # include <cctype>
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 # include <fcntl.h> # include <fcntl.h>
 # include <netdb.h> # include <netdb.h>
 # include <netinet/in.h> # include <netinet/in.h>
   # include <netinet/tcp.h>
 # include <arpa/inet.h> # include <arpa/inet.h>
 # include <sys/socket.h> # include <sys/socket.h>
 # ifdef PEGASUS_LOCAL_DOMAIN_SOCKET  
   #ifndef PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET
 # include <unistd.h> # include <unistd.h>
 #  include <sys/un.h> #  include <sys/un.h>
 # endif # endif
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 #include "Tracer.h" #include "Tracer.h"
 #include <Pegasus/Common/MessageLoader.h> //l10n #include <Pegasus/Common/MessageLoader.h> //l10n
  
   #ifdef PEGASUS_PLATFORM_OS400_ISERIES_IBM
   # include "OS400ConvertChar.h"
   #endif
   
   
 PEGASUS_USING_STD; PEGASUS_USING_STD;
  
 PEGASUS_NAMESPACE_BEGIN PEGASUS_NAMESPACE_BEGIN
  
   
   static int MAX_CONNECTION_QUEUE_LENGTH = -1;
   
 //////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
 // //
 // HTTPAcceptorRep // HTTPAcceptorRep
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     {     {
         if (local)         if (local)
         {         {
 #ifdef PEGASUS_LOCAL_DOMAIN_SOCKET  
   #ifndef PEGASUS_OS_TYPE_WINDOWS
   # ifndef PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET
   
             address = reinterpret_cast<struct sockaddr*>(new struct sockaddr_un);             address = reinterpret_cast<struct sockaddr*>(new struct sockaddr_un);
             address_size = sizeof(struct sockaddr_un);             address_size = sizeof(struct sockaddr_un);
 #else #else
             PEGASUS_ASSERT(false);             PEGASUS_ASSERT(false);
 #endif #endif
   
   #endif
         }         }
         else         else
         {         {
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             address_size = sizeof(struct sockaddr_in);             address_size = sizeof(struct sockaddr_in);
         }         }
     }     }
       ~HTTPAcceptorRep()
       {
           delete address;
       }
     struct sockaddr* address;     struct sockaddr* address;
  
 #if defined(PEGASUS_PLATFORM_ZOS_ZSERIES_IBM)      PEGASUS_SOCKLEN_T address_size;
    size_t address_size;  
 #elif defined(PEGASUS_PLATFORM_AIX_RS_IBMCXX) || defined(PEGASUS_PLATFORM_LINUX_GENERIC_GNU) || (defined(PEGASUS_PLATFORM_SOLARIS_SPARC_CC) && !defined(SUNOS_5_6))  
    socklen_t address_size;  
 #else  
    int address_size;  
 #endif  
       Mutex _connection_mut;       Mutex _connection_mut;
  
       Sint32 socket;      PEGASUS_SOCKET socket;
   
   // Added for NamedPipe implementation for windows
   #if defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET)
       NamedPipeServer* namedPipeServer;
   #endif
       Array<HTTPConnection*> connections;       Array<HTTPConnection*> connections;
 }; };
  
   //------------------------------------------------------------------------------
   //
   // _setTCPNoDelay()
   //
   //------------------------------------------------------------------------------
   
   inline void _setTCPNoDelay(PEGASUS_SOCKET socket)
   {
       // This function disables "Nagle's Algorithm" also known as "the TCP delay
       // algorithm", which causes read operations to obtain whatever data is
       // already in the input queue and then wait a little longer to see if
       // more data arrives. This algorithm optimizes the case in which data is
       // sent in only one direction but severely impairs performance of round
       // trip servers. Disabling TCP delay is a standard technique for round
       // trip servers.
   
      int opt = 1;
      setsockopt(socket, IPPROTO_TCP, TCP_NODELAY, (char*)&opt, sizeof(opt));
   }
   
 //////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////
 // //
 // HTTPAcceptor // HTTPAcceptor
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                            MessageQueue* outputMessageQueue,                            MessageQueue* outputMessageQueue,
                            Boolean localConnection,                            Boolean localConnection,
                            Uint32 portNumber,                            Uint32 portNumber,
                            SSLContext * sslcontext)                             SSLContext * sslcontext,
                              Boolean exportConnection,
                              ReadWriteSem* sslContextObjectLock)
    : Base(PEGASUS_QUEUENAME_HTTPACCEPTOR),  // ATTN: Need unique names?    : Base(PEGASUS_QUEUENAME_HTTPACCEPTOR),  // ATTN: Need unique names?
      _monitor(monitor),      _monitor(monitor),
      _outputMessageQueue(outputMessageQueue),      _outputMessageQueue(outputMessageQueue),
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      _entry_index(-1),      _entry_index(-1),
      _localConnection(localConnection),      _localConnection(localConnection),
      _portNumber(portNumber),      _portNumber(portNumber),
      _sslcontext(sslcontext)       _sslcontext(sslcontext),
        _exportConnection(exportConnection),
        _sslContextObjectLock(sslContextObjectLock)
 { {
    Socket::initializeInterface();    Socket::initializeInterface();
   
      /*
           Platforms interpret the value of MAX_CONNECTION_QUEUE_LENGTH differently.  Some platforms interpret
           the value literally, while others multiply a fudge factor. When the server is under
           stress from multiple clients with multiple requests, toggling this number may prevent clients from
           being dropped.  Instead of hard coding the value, we allow an environment variable to be set which
           specifies a number greater than the maximum concurrent client connections possible.  If this environment
           var is not specified, then MAX_CONNECTION_QUEUE_LENGTH = 15.
      */
   
   //To engage runtime backlog queue length: uncomment the following block AND comment out the line MAX_CONNECTION_QUEUE_LENGTH = 15
   
   /*
      if(MAX_CONNECTION_QUEUE_LENGTH == -1){
   #ifdef PEGASUS_PLATFORM_OS400_ISERIES_IBM
   #pragma convert(37)
       const char* env = getenv("PEGASUS_MAX_BACKLOG_CONNECTION_QUEUE");
       EtoA(env);
   #pragma convert(0)
   #else
       const char* env = getenv("PEGASUS_MAX_BACKLOG_CONNECTION_QUEUE");
   #endif
       if(!env){
           MAX_CONNECTION_QUEUE_LENGTH = 15;
       }else{
           char *end = NULL;
           MAX_CONNECTION_QUEUE_LENGTH = strtol(env, &end, 10);
           if(*end)
               MAX_CONNECTION_QUEUE_LENGTH = 15;
           cout << " MAX_CONNECTION_QUEUE_LENGTH = " << MAX_CONNECTION_QUEUE_LENGTH << endl;
       }
      }
   */
      MAX_CONNECTION_QUEUE_LENGTH = 15;
   
 } }
  
 HTTPAcceptor::~HTTPAcceptor() HTTPAcceptor::~HTTPAcceptor()
 { {
      destroyConnections();
    unbind();    unbind();
    // ATTN: Is this correct in a multi-HTTPAcceptor server?    // ATTN: Is this correct in a multi-HTTPAcceptor server?
    Socket::uninitializeInterface();    Socket::uninitializeInterface();
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    if (! message)    if (! message)
       return;       return;
  
      PEGASUS_ASSERT(_rep != 0);
    switch (message->getType())    switch (message->getType())
    {    {
       case SOCKET_MESSAGE:       case SOCKET_MESSAGE:
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          // If this is a connection request:          // If this is a connection request:
  
          if (socketMessage->socket == _rep->socket &&          if (socketMessage->socket == _rep->socket &&
              socketMessage->events | SocketMessage::READ)               socketMessage->events & SocketMessage::READ)
          {          {
             _acceptConnection();             _acceptConnection();
          }          }
          else          else
          {          {
             // ATTN! this can't happen!             // ATTN! this can't happen!
               Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                 "HTTPAcceptor::handleEnqueue: Invalid SOCKET_MESSAGE received.");
          }          }
  
          break;          break;
       }       }
  
   // Added for NamedPipe implementation for windows
   #if defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET)
         case NAMEDPIPE_MESSAGE:
         {
            NamedPipeMessage* namedPipeMessage = (NamedPipeMessage*)message;
   
            if (((namedPipeMessage->namedPipe.getPipe()) == ( _rep->namedPipeServer->getPipe())) &&
                (namedPipeMessage->events & NamedPipeMessage::READ))
            {
                _acceptNamedPipeConnection();
            }
            else
            {
               // ATTN! this can't happen!
               Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                 "HTTPAcceptor::handleEnqueue: Invalid NAMEDPIPE_MESSAGE received.");
            }
            break;
         }
   #endif
        // may Need to close connection for Named Pipe too.....??
       case CLOSE_CONNECTION_MESSAGE:       case CLOSE_CONNECTION_MESSAGE:
       {       {
          CloseConnectionMessage* closeConnectionMessage          CloseConnectionMessage* closeConnectionMessage
             = (CloseConnectionMessage*)message;             = (CloseConnectionMessage*)message;
  
          _rep->_connection_mut.lock(pegasus_thread_self());          AutoMutex autoMut(_rep->_connection_mut);
  
          for (Uint32 i = 0, n = _rep->connections.size(); i < n; i++)          for (Uint32 i = 0, n = _rep->connections.size(); i < n; i++)
          {          {
             HTTPConnection* connection = _rep->connections[i];             HTTPConnection* connection = _rep->connections[i];
             Sint32 socket = connection->getSocket();  // Added for NamedPipe implementation for windows
   #if defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET)
               if(!connection->isNamedPipeConnection())
               {
   #endif
                   PEGASUS_SOCKET socket = connection->getSocket();
  
             if (socket == closeConnectionMessage->socket)             if (socket == closeConnectionMessage->socket)
             {             {
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                delete connection;                delete connection;
                break;                break;
             }             }
   // Added for NamedPipe implementation for windows
   #if defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET)
          }          }
          _rep->_connection_mut.unlock();              else
               {
                   NamedPipe namedPipe = connection->getNamedPipe();
                   //NamedPipeMessage* namedPipeMessage = (NamedPipeMessage*)message;
   
                   if (namedPipe.getPipe() == closeConnectionMessage->namedPipe.getPipe())
                   {
                       _monitor->unsolicitPipeMessages(namedPipe);
                       _rep->connections.remove(i);
                       delete connection;
                       break;
                   }
               }
   #endif
           }
   
           break;
       }       }
  
       default:       default:
       // ATTN: need unexpected message error!       // ATTN: need unexpected message error!
         Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
              "HTTPAcceptor::handleEnqueue: Invalid MESSAGE received.");
       break;       break;
    };    };
  
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    Message* message = dequeue();    Message* message = dequeue();
  
    if (!message)    if (!message)
      {
         Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
              "HTTPAcceptor::handleEnqueue(): No message on queue.");
       return;       return;
      }
  
    handleEnqueue(message);    handleEnqueue(message);
  
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       MessageLoaderParms parms("Common.HTTPAcceptor.ALREADY_BOUND",       MessageLoaderParms parms("Common.HTTPAcceptor.ALREADY_BOUND",
                                "HTTPAcceptor already bound");                                "HTTPAcceptor already bound");
  
         Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
              "HTTPAcceptor::bind: HTTPAcceptor already bound.");
       throw BindFailedException(parms);       throw BindFailedException(parms);
    }    }
  
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 /** /**
    _bind - creates a new server socket and bind socket to the port address.    _bind - creates a new server socket and bind socket to the port address.
    If PEGASUS_LOCAL_DOMAIN_SOCKET is defined, the port number is ignored and     If PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET is not defined, the port number is ignored and
    a domain socket is bound.    a domain socket is bound.
 */ */
 void HTTPAcceptor::_bind() void HTTPAcceptor::_bind()
 { {
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
       {
           AutoMutex automut(Monitor::_cout_mut);
           PEGASUS_STD(cout) << "in HTTPAcceptor::_bind at the begining" << PEGASUS_STD(endl);
           PEGASUS_STD(cout) << "in HTTPAcceptor::_bind before ASSERT" << PEGASUS_STD(endl);
       }
   #endif
      PEGASUS_ASSERT(_rep != 0);
    // Create address:    // Create address:
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
      {
          AutoMutex automut(Monitor::_cout_mut);
          PEGASUS_STD(cout) << "in HTTPAcceptor::_bind before memset" << PEGASUS_STD(endl);
      }
   #endif
   
  
   #if defined PEGASUS_OS_TYPE_WINDOWS
      if (!_localConnection)
      {
   #endif
    memset(_rep->address, 0, sizeof(*_rep->address));    memset(_rep->address, 0, sizeof(*_rep->address));
   #if defined PEGASUS_OS_TYPE_WINDOWS
      }
   #endif
   
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
      {
          AutoMutex automut(Monitor::_cout_mut);
          PEGASUS_STD(cout) << "in HTTPAcceptor::_bind After memset" << PEGASUS_STD(endl);
      }
   #endif
  
    if (_localConnection)    if (_localConnection)
    {    {
 #ifdef PEGASUS_LOCAL_DOMAIN_SOCKET  // Added for NamedPipe implementation for windows
   #ifndef PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET
   
   # ifdef PEGASUS_OS_TYPE_WINDOWS
   #  ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
          {
              AutoMutex automut(Monitor::_cout_mut);
              PEGASUS_STD(cout) << "in HTTPAcceptor::_bind before calling _createNamedPipe() "
                                << PEGASUS_STD(endl);
          }
   #  endif
          _createNamedPipe();
   # ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
          {
              AutoMutex automut(Monitor::_cout_mut);
              PEGASUS_STD(cout) << "in HTTPAcceptor::_bind after calling _createNamedPipe() " << PEGASUS_STD(endl);
          }
   # endif
          return;
   # else // Other than Windows platform
        reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_family =        reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_family =
            AF_UNIX;            AF_UNIX;
        strcpy(reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path,         strcpy(
              reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path,
               PEGASUS_LOCAL_DOMAIN_SOCKET_PATH);               PEGASUS_LOCAL_DOMAIN_SOCKET_PATH);
   
   #ifdef PEGASUS_PLATFORM_OS400_ISERIES_IBM
          AtoE(reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path);
   #endif
        ::unlink(reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path);        ::unlink(reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path);
   # endif
   
 #else #else
        PEGASUS_ASSERT(false);        PEGASUS_ASSERT(false);
 #endif #endif
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    }    }
  
    // Create socket:    // Create socket:
   
    if (_localConnection)    if (_localConnection)
    {    {
        _rep->socket = socket(AF_UNIX, SOCK_STREAM, 0);        _rep->socket = socket(AF_UNIX, SOCK_STREAM, 0);
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    else    else
    {    {
        _rep->socket = socket(PF_INET, SOCK_STREAM, IPPROTO_TCP);        _rep->socket = socket(PF_INET, SOCK_STREAM, IPPROTO_TCP);
   
          _setTCPNoDelay(_rep->socket);
    }    }
  
    if (_rep->socket < 0)    if (_rep->socket < 0)
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       //throw BindFailedException("Failed to create socket");       //throw BindFailedException("Failed to create socket");
       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_CREATE_SOCKET",       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_CREATE_SOCKET",
                                "Failed to create socket");                                "Failed to create socket");
         Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
              "HTTPAcceptor::_bind _rep->socket < 0");
       throw BindFailedException(parms);       throw BindFailedException(parms);
    }    }
  
  
 // set the close-on-exec bit for this file handle. // set the close-on-exec bit for this file handle.
 // any unix that forks needs this bit set. // any unix that forks needs this bit set.
 #ifndef PEGASUS_PLATFORM_WIN32_IX86_MSVC  #if !defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_OS_VMS)
    int sock_flags;    int sock_flags;
  if( (sock_flags = fcntl(_rep->socket, F_GETFD, 0)) < 0)  if( (sock_flags = fcntl(_rep->socket, F_GETFD, 0)) < 0)
    {    {
        PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                         "HTTPAcceptor: fcntl(F_GETFD) failed");                    "HTTPAcceptor::_bind: fcntl(F_GETFD) failed");
    }    }
    else    else
    {    {
       sock_flags |= FD_CLOEXEC;       sock_flags |= FD_CLOEXEC;
       if (fcntl(_rep->socket, F_SETFD, sock_flags) < 0)       if (fcntl(_rep->socket, F_SETFD, sock_flags) < 0)
       {       {
        PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                         "HTTPAcceptor: fcntl(F_SETFD) failed");                    "HTTPAcceptor::_bind: fcntl(F_SETFD) failed");
       }       }
    }    }
 #endif #endif
  
   
    //    //
    // Set the socket option SO_REUSEADDR to reuse the socket address so    // Set the socket option SO_REUSEADDR to reuse the socket address so
    // that we can rebind to a new socket using the same address when we    // that we can rebind to a new socket using the same address when we
Line 319 
Line 523 
       //throw BindFailedException("Failed to set socket option");       //throw BindFailedException("Failed to set socket option");
       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_SET_SOCKET_OPTION",       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_SET_SOCKET_OPTION",
                                "Failed to set socket option");                                "Failed to set socket option");
         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                      "HTTPAcceptor::_bind: Failed to set socket option.");
       throw BindFailedException(parms);       throw BindFailedException(parms);
    }    }
  
      //
    // Bind socket to port:    // Bind socket to port:
      //
    if (::bind(_rep->socket, _rep->address, _rep->address_size) < 0)    if (::bind(_rep->socket, _rep->address, _rep->address_size) < 0)
    {    {
       Socket::close(_rep->socket);       Socket::close(_rep->socket);
Line 333 
Line 540 
       //throw BindFailedException("Failed to bind socket");       //throw BindFailedException("Failed to bind socket");
       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_BIND_SOCKET",       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_BIND_SOCKET",
                                "Failed to bind socket");                                "Failed to bind socket");
         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                           "HTTPAcceptor::_bind: Failed to bind socket.");
       throw BindFailedException(parms);       throw BindFailedException(parms);
    }    }
  
    // Set up listening on the given socket:     //
      // Get the actual port value used if the caller specified a port value of 0.
      //
      if ( _portNumber == 0 )
      {
         sockaddr_in buf;
         PEGASUS_SOCKLEN_T bufSize = sizeof(buf);
         if ( getsockname(_rep->socket, reinterpret_cast<sockaddr *>(&buf), &bufSize) == 0 )
         {
             _portNumber = ntohs(buf.sin_port);
         }
      }
  
    int const MAX_CONNECTION_QUEUE_LENGTH = 5;     //
      //  Change permissions on Linux local domain socket to allow writes by others.
      //
   #if !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET) && defined(PEGASUS_PLATFORM_LINUX_GENERIC_GNU)
      if (_localConnection)
      {
        if (::chmod( PEGASUS_LOCAL_DOMAIN_SOCKET_PATH,
                     S_IRUSR | S_IWUSR | S_IXUSR |
                     S_IRGRP | S_IWGRP | S_IXGRP |
                     S_IROTH | S_IWOTH | S_IXOTH ) < 0 )
        {
          Socket::close(_rep->socket);
          delete _rep;
          _rep = 0;
          //l10n
          //throw BindFailedException("Failed to bind socket");
          MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_BIND_SOCKET",
                      "Failed to bind socket");
          PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                 "HTTPAcceptor::_bind: Failed to set domain socket permissions.");
          throw BindFailedException(parms);
        }
      }
   #endif
   
      // Set up listening on the given socket:
      //int const MAX_CONNECTION_QUEUE_LENGTH = 15;
  
    if (listen(_rep->socket, MAX_CONNECTION_QUEUE_LENGTH) < 0)    if (listen(_rep->socket, MAX_CONNECTION_QUEUE_LENGTH) < 0)
    {    {
Line 349 
Line 595 
       //throw BindFailedException("Failed to bind socket");       //throw BindFailedException("Failed to bind socket");
       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_BIND_SOCKET",       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_BIND_SOCKET",
                                "Failed to bind socket");                                "Failed to bind socket");
         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                     "HTTPAcceptor::_bind: Failed to bind socket(1).");
       throw BindFailedException(parms);       throw BindFailedException(parms);
    }    }
  
Line 367 
Line 615 
       //throw BindFailedException("Failed to solicit socket messaeges");       //throw BindFailedException("Failed to solicit socket messaeges");
       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_SOLICIT_SOCKET_MESSAGES",       MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_SOLICIT_SOCKET_MESSAGES",
                                "Failed to solicit socket messaeges");                                "Failed to solicit socket messaeges");
         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                     "HTTPAcceptor::_bind: Failed to solicit socket messages(2).");
       throw BindFailedException(parms);       throw BindFailedException(parms);
    }    }
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
      {
          AutoMutex automut(Monitor::_cout_mut);
          PEGASUS_STD(cout) << "in HTTPAcceptor::_bind at the End" << PEGASUS_STD(endl);
      }
   #endif
   
 } }
  
 /** /**
Line 386 
Line 643 
  
       // close the socket       // close the socket
       Socket::close(_rep->socket);       Socket::close(_rep->socket);
         // Unlink Local Domain Socket Bug# 3312
         if (_localConnection)
         {
   #ifndef PEGASUS_OS_TYPE_WINDOWS
   # ifndef PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET
             PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,
                           "HTTPAcceptor::closeConnectionSocket Unlinking local connection." );
            ::unlink(
                reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path);
   # else
            PEGASUS_ASSERT(false);
   # endif
   #endif
         }
   
      }
      else
      {
         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                           "HTTPAcceptor::closeConnectionSocket failure _rep is null." );
    }    }
 } }
  
Line 398 
Line 675 
    {    {
       _bind();       _bind();
    }    }
      else
      {
         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                           "HTTPAcceptor::reopenConnectionSocket failure _rep is null." );
      }
 } }
  
 /** /**
    getOutstandingRequestCount - returns the number of outstanding requests.    getOutstandingRequestCount - returns the number of outstanding requests.
 */ */
 Uint32 HTTPAcceptor::getOutstandingRequestCount()  Uint32 HTTPAcceptor::getOutstandingRequestCount() const
 { {
    Uint32 count = 0;    Uint32 count = 0;
      if (_rep)
    _rep->_connection_mut.lock(pegasus_thread_self());     {
         AutoMutex autoMut(_rep->_connection_mut);
    if (_rep->connections.size() > 0)    if (_rep->connections.size() > 0)
    {    {
       HTTPConnection* connection = _rep->connections[0];       HTTPConnection* connection = _rep->connections[0];
       count = connection->getRequestCount();       count = connection->getRequestCount();
    }    }
    _rep->_connection_mut.unlock();     }
    return count;    return count;
 } }
  
   
   /**
       getPortNumber - returns the port number used for the connection
   */
   Uint32 HTTPAcceptor::getPortNumber() const
   {
       return _portNumber;
   }
   
 void HTTPAcceptor::unbind() void HTTPAcceptor::unbind()
 { {
    if (_rep)    if (_rep)
    {    {
         _portNumber = 0;
       Socket::close(_rep->socket);       Socket::close(_rep->socket);
  
       if (_localConnection)       if (_localConnection)
       {       {
 #ifdef PEGASUS_LOCAL_DOMAIN_SOCKET  #ifndef PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET
   # ifndef PEGASUS_OS_TYPE_WINDOWS
   
          ::unlink(          ::unlink(
              reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path);              reinterpret_cast<struct sockaddr_un*>(_rep->address)->sun_path);
   # endif
 #else #else
          PEGASUS_ASSERT(false);          PEGASUS_ASSERT(false);
 #endif #endif
Line 436 
Line 732 
       delete _rep;       delete _rep;
       _rep = 0;       _rep = 0;
    }    }
      else
      {
         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                 "HTTPAcceptor::unbind failure _rep is null." );
      }
 } }
  
 void HTTPAcceptor::destroyConnections() void HTTPAcceptor::destroyConnections()
 { {
      if (_rep)
      {
    // For each connection created by this object:    // For each connection created by this object:
  
    _rep->_connection_mut.lock(pegasus_thread_self());       AutoMutex autoMut(_rep->_connection_mut);
    for (Uint32 i = 0, n = _rep->connections.size(); i < n; i++)    for (Uint32 i = 0, n = _rep->connections.size(); i < n; i++)
    {    {
       HTTPConnection* connection = _rep->connections[i];       HTTPConnection* connection = _rep->connections[i];
       Sint32 socket = connection->getSocket();  // Added for NamedPipe implementation for windows
   #if defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET)
           if(!connection->isNamedPipeConnection())
           {
   #endif
               PEGASUS_SOCKET socket = connection->getSocket();
  
       // Unsolicit SocketMessages:       // Unsolicit SocketMessages:
  
       _monitor->unsolicitSocketMessages(socket);       _monitor->unsolicitSocketMessages(socket);
  
   // Added for NamedPipe implementation for windows
       // Destroy the connection (causing it to close):       // Destroy the connection (causing it to close):
   #if defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET)
       while (connection->refcount.value()) { }          }
           else
           {
               NamedPipe namedPipe = connection->getNamedPipe();
               _monitor->unsolicitPipeMessages(namedPipe);
           }
   #endif
           while (connection->refcount.get()) { }
       delete connection;       delete connection;
    }    }
  
    _rep->connections.clear();    _rep->connections.clear();
    _rep->_connection_mut.unlock();     }
 } }
  
 void HTTPAcceptor::_acceptConnection() void HTTPAcceptor::_acceptConnection()
Line 474 
Line 788 
       return;       return;
  
    // Accept the connection (populate the address):    // Accept the connection (populate the address):
   
    struct sockaddr* accept_address;    struct sockaddr* accept_address;
 #if defined(PEGASUS_PLATFORM_ZOS_ZSERIES_IBM)     PEGASUS_SOCKLEN_T address_size;
    size_t address_size;  
 #elif defined(PEGASUS_PLATFORM_AIX_RS_IBMCXX) || defined(PEGASUS_PLATFORM_LINUX_GENERIC_GNU) || (defined(PEGASUS_PLATFORM_SOLARIS_SPARC_CC) && !defined(SUNOS_5_6))  
    socklen_t address_size;  
 #else  
    int address_size;  
 #endif  
  
    if (_localConnection)    if (_localConnection)
    {    {
 #ifdef PEGASUS_LOCAL_DOMAIN_SOCKET  #ifndef PEGASUS_OS_TYPE_WINDOWS
   # ifndef PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET
        accept_address = reinterpret_cast<struct sockaddr*>(new struct sockaddr_un);        accept_address = reinterpret_cast<struct sockaddr*>(new struct sockaddr_un);
        address_size = sizeof(struct sockaddr_un);        address_size = sizeof(struct sockaddr_un);
 #else #else
        PEGASUS_ASSERT(false);        PEGASUS_ASSERT(false);
 #endif #endif
   #endif
    }    }
    else    else
    {    {
Line 499 
Line 808 
        address_size = sizeof(struct sockaddr_in);        address_size = sizeof(struct sockaddr_in);
    }    }
  
    Sint32 socket = accept(_rep->socket, accept_address, &address_size);     PEGASUS_SOCKET socket = accept(_rep->socket, accept_address, &address_size);
  
    delete accept_address;    delete accept_address;
  
Line 510 
Line 819 
                    "HTTPAcceptor - accept() failure.  errno: $0"                    "HTTPAcceptor - accept() failure.  errno: $0"
                    ,errno);                    ,errno);
  
        PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                         "HTTPAcceptor: accept() failed");                         "HTTPAcceptor: accept() failed");
       return;       return;
    }    }
  
 // set the close on exec flag // set the close on exec flag
 #ifndef PEGASUS_PLATFORM_WIN32_IX86_MSVC  #if !defined(PEGASUS_OS_TYPE_WINDOWS) && !defined(PEGASUS_OS_VMS)
    int sock_flags;    int sock_flags;
  if( (sock_flags = fcntl(socket, F_GETFD, 0)) < 0)  if( (sock_flags = fcntl(socket, F_GETFD, 0)) < 0)
    {    {
        PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                         "HTTPAcceptor: fcntl(F_GETFD) failed");                         "HTTPAcceptor: fcntl(F_GETFD) failed");
    }    }
    else    else
Line 528 
Line 837 
       sock_flags |= FD_CLOEXEC;       sock_flags |= FD_CLOEXEC;
       if (fcntl(socket, F_SETFD, sock_flags) < 0)       if (fcntl(socket, F_SETFD, sock_flags) < 0)
       {       {
        PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                         "HTTPAcceptor: fcntl(F_SETFD) failed");                         "HTTPAcceptor: fcntl(F_SETFD) failed");
       }       }
    }    }
 #endif #endif
  
  
    Logger::put(Logger::STANDARD_LOG, System::CIMSERVER, Logger::TRACE,     PEG_LOGGER_TRACE((Logger::STANDARD_LOG, System::CIMSERVER, 0,
                "HTTPAcceptor - accept() success.  Socket: $1"         "HTTPAcceptor - accept() success.  Socket: $1" ,socket));
                ,socket);  
      AutoPtr<MP_Socket> mp_socket(new MP_Socket(
          socket, _sslcontext, _sslContextObjectLock, _exportConnection));
  
    // Create a new conection and add it to the connection list:     // Perform the SSL handshake, if applicable.  Make the socket non-blocking
      // for this operation so we can send it back to the Monitor's select() loop
      // if it takes a while.
  
    MP_Socket * mp_socket = new MP_Socket(socket, _sslcontext);     mp_socket->disableBlocking();
    if (mp_socket->accept() < 0)     Sint32 socketAcceptStatus = mp_socket->accept();
      mp_socket->enableBlocking();
   
      if (socketAcceptStatus < 0)
    {    {
        PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
                         "HTTPAcceptor: SSL_accept() failed");                         "HTTPAcceptor: SSL_accept() failed");
          mp_socket->close();
       return;       return;
    }    }
  
    HTTPConnection* connection = new HTTPConnection(     // Create a new connection and add it to the connection list:
       _monitor, mp_socket, this, static_cast<MessageQueue *>(_outputMessageQueue));  
      HTTPConnection* connection = new HTTPConnection(_monitor, mp_socket,
          this, static_cast<MessageQueue *>(_outputMessageQueue), _exportConnection);
   
      if (socketAcceptStatus == 0)
      {
          PEG_TRACE_STRING(TRC_HTTP, Tracer::LEVEL2,
              "HTTPAcceptor: SSL_accept() pending");
          connection->_acceptPending = true;
      }
  
    // Solicit events on this new connection's socket:    // Solicit events on this new connection's socket:
    int index;    int index;
  
    if (-1 ==  (index = _monitor->solicitSocketMessages(    if (-1 ==  (index = _monitor->solicitSocketMessages(
           socket,        connection->getSocket(),
           SocketMessage::READ | SocketMessage::EXCEPTION,           SocketMessage::READ | SocketMessage::EXCEPTION,
           connection->getQueueId(), Monitor::CONNECTION)) )           connection->getQueueId(), Monitor::CONNECTION)) )
    {    {
       // ATTN-DE-P2-2003100503::TODO::Need to enhance code to return       // ATTN-DE-P2-2003100503::TODO::Need to enhance code to return
       // an error message to Client application.       // an error message to Client application.
       Tracer::trace(TRC_HTTP, Tracer::LEVEL4,        Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
           "HTTPAcceptor::_acceptConnection. Attempt to allocate entry in _entries table failed.");            "HTTPAcceptor::_acceptConnection: Attempt to allocate entry in _entries table failed.");
       delete connection;       delete connection;
       Socket::close(socket);       Socket::close(socket);
       return;       return;
Line 571 
Line 897 
  
    // Save the socket for cleanup later:    // Save the socket for cleanup later:
    connection->_entry_index = index;    connection->_entry_index = index;
    _rep->_connection_mut.lock(pegasus_thread_self());     AutoMutex autoMut(_rep->_connection_mut);
    _rep->connections.append(connection);    _rep->connections.append(connection);
    _rep->_connection_mut.unlock();  
 } }
  
 AsyncDQueue<pegasus_acceptor> pegasus_acceptor::acceptors(true, 0);  // Added for NamedPipe implementation for windows
   #if defined PEGASUS_OS_TYPE_WINDOWS && !defined(PEGASUS_DISABLE_LOCAL_DOMAIN_SOCKET)
 pegasus_acceptor::pegasus_acceptor(monitor_2* monitor,  void HTTPAcceptor::_createNamedPipe()
                                    MessageQueue* outputMessageQueue,  
                                    Boolean localConnection,  
                                    Uint32 portNumber,  
                                    SSLContext* sslcontext)  
   : _monitor(monitor), _outputMessageQueue(outputMessageQueue),  
     _localConnection(localConnection), _portNumber(portNumber),  
     _sslcontext(sslcontext), connections(true, 0)  
 { {
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
      Socket::initializeInterface();  
      try {  
        acceptors.insert_first(this);  
      }  
      catch(...){  
      }  
   
 }  
   
 pegasus_acceptor::~pegasus_acceptor(void)  
 { {
    unbind();          AutoMutex automut(Monitor::_cout_mut);
    Socket::uninitializeInterface();          PEGASUS_STD(cout) << "Entering  HTTPAcceptor::_createNamedPipe()." << PEGASUS_STD(endl);
    try {  
      acceptors.remove(this);  
    }    }
    catch(...){  #endif
    }      _rep->namedPipeServer = new NamedPipeServer(PEGASUS_NAMEDPIPE_PATH);
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
       {
           AutoMutex automut(Monitor::_cout_mut);
           PEGASUS_STD(cout) << "in HTTPAcceptor::_createNamedPipe() after calling the pipe server constructor" << PEGASUS_STD(endl);
 } }
  
   
 void pegasus_acceptor::bind()  
 { {
           AutoMutex automut(Monitor::_cout_mut);
   PEGASUS_SOCKLEN_SIZE addr_size;          cout << "Named pipe...in _createNamedPipe..." << _rep->namedPipeServer->getPipe() << endl;
   struct sockaddr *addr;      }
   struct sockaddr_in addr_in;  
 # ifdef PEGASUS_LOCAL_DOMAIN_SOCKET  
   struct sockaddr_un addr_un;  
 #endif #endif
       // Register to receive Messages on Connection pipe:
  
   memset(&addr_in, 0, sizeof(addr_in));     if ( -1 == ( _entry_index = _monitor->solicitPipeMessages(
   addr_in.sin_addr.s_addr = INADDR_ANY;        *_rep->namedPipeServer,
   addr_in.sin_family = AF_INET;        NamedPipeMessage::READ | NamedPipeMessage::EXCEPTION,
   addr_in.sin_port = htons(_portNumber);        getQueueId(),
   addr = (struct sockaddr*) &addr_in;        Monitor::ACCEPTOR)))
   addr_size = sizeof(addr_in);     {
          ::CloseHandle(_rep->namedPipeServer->getPipe());
   // first step: determine which kind of socket factory to initialize,         delete _rep;
   // then create the socket and bind it to an address         _rep = 0;
   if(_localConnection == true){         //l10n
 #ifdef PEGASUS_LOCAL_DOMAIN_SOCKET         MessageLoaderParms parms("Common.HTTPAcceptor.FAILED_SOLICIT_SOCKET_MESSAGES",
     unix_socket_factory sf;                      "Failed to solicit socket messaeges");
     pegasus_socket temp(&sf);         PEG_TRACE_STRING(TRC_DISCARDED_DATA, Tracer::LEVEL2,
     _listener = temp;                     "HTTPAcceptor::_bind: Failed to solicit pipe messages(2).");
          throw BindFailedException(parms);
     memset(&addr_un, 0, sizeof(addr_un));  #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
     addr_un.sun_family = AF_UNIX;         {
     strcpy(addr_un.sun_path, PEGASUS_LOCAL_DOMAIN_SOCKET_PATH);             AutoMutex automut(Monitor::_cout_mut); //added
     addr = (struct sockaddr*) &addr_un;             PEGASUS_STD(cout) << "in HTTPAcceptor::_createNamedPipe() _monitor->solicitSocketMessages failed"
     addr_size = sizeof(addr_un);                               << PEGASUS_STD(endl);
     _listener.socket(AF_UNIX, SOCK_STREAM, 0);  
 #else  
     bsd_socket_factory sf;  
     pegasus_socket temp(&sf);  
     _listener = temp;  
     _listener.socket(AF_UNIX, SOCK_STREAM, 0);  
 #endif  
   }   }
   else if( _sslcontext != 0 ) {  
 #ifdef PEGASUS_HAS_SSL  
     ssl_socket_factory sf;  
 #else  
     bsd_socket_factory sf;  
 #endif #endif
     pegasus_socket temp(&sf);  
     _listener = temp;  
     _listener.socket(PF_INET, SOCK_STREAM, 0);  
   }  
   else {  
     bsd_socket_factory sf;  
     pegasus_socket temp(&sf);  
     _listener = temp;  
     _listener.socket(PF_INET, SOCK_STREAM, 0);  
   }  
   
   _listener.bind((struct sockaddr*)addr, addr_size);  
   
   // second step: listen on the socket  
   
   _listener.listen(5);  
   
   // third step: add this listening socket to the monitor  
   
    _monitor->tickle();  
    _monitor->add_entry(_listener, LISTEN, this, this);  
 } }
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
   
 /** Unbind from the given port.  
  */  
 void pegasus_acceptor::unbind()  
 { {
   // remove the socket from the monitor         AutoMutex automut(Monitor::_cout_mut);
   _monitor->remove_entry((Sint32)_listener);         PEGASUS_STD(cout) << "Leaving  HTTPAcceptor::_createNamedPipe()." << PEGASUS_STD(endl);
   
   // close the socket  
   _listener.close();  
 } }
   #endif
      return;
       /** Close the connection socket.  
        */  
 void pegasus_acceptor::closeConnectionSocket()  
 {  
   unbind();  
 } }
  
   void HTTPAcceptor::_acceptNamedPipeConnection()
   {
       PEGASUS_ASSERT(_rep != 0);
  
       /** Reopen the connection socket.      if (!_rep)
        */         return;
 void pegasus_acceptor::reopenConnectionSocket()  #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
 { {
   bind();          AutoMutex automut(Monitor::_cout_mut);
           cout <<"In HTTPAcceptor::_acceptNamedPipeConnection " << endl;
 } }
   #endif
  
  
   /** Returns the number of outstanding requests      NamedPipeServerEndPiont nPSEndPoint = _rep->namedPipeServer->accept();
    */      // Register to receive Messages on Connection pipe:
 Uint32 pegasus_acceptor::getOutstandingRequestCount()  #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
 { {
   return _monitor->getOutstandingRequestCount();          AutoMutex automut(Monitor::_cout_mut);
           cout << " In _acceptNamedPipeConnection -- after calling namedPipeServer->accept()" << endl;
 } }
   #endif
       HTTPConnection* connection = new HTTPConnection(_monitor, nPSEndPoint,
           this, static_cast<MessageQueue *>(_outputMessageQueue), _exportConnection);
  
 Boolean pegasus_acceptor::operator ==(const pegasus_acceptor& pa)      // Solicit events on this new connection's socket:
       int index;
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
 { {
   if(this == &pa)          AutoMutex automut(Monitor::_cout_mut);
     return true;          cout << endl << connection->getNamedPipe().getName() << " has a this as a QueueID " <<
   return false;           connection->getQueueId() << endl;
 } }
   #endif
 Boolean pegasus_acceptor::operator ==(void* pa)      if (-1 ==  (index = _monitor->solicitPipeMessages(
          connection->getNamedPipe(),
          NamedPipeMessage::READ | NamedPipeMessage::EXCEPTION,
          connection->getQueueId(), Monitor::ACCEPTOR)) )
 { {
   if((void*)this == pa)         // ATTN-DE-P2-2003100503::TODO::Need to enhance code to return
     return true;         // an error message to Client application.
   return false;         Tracer::trace(TRC_DISCARDED_DATA, Tracer::LEVEL2,
              "HTTPAcceptor::_acceptPipeConnection: Attempt to allocate entry in _entries table failed.");
          delete connection;
          return;
 } }
  
       // Save the socket for cleanup later:
 pegasus_acceptor* pegasus_acceptor::find_acceptor(Boolean local, Uint32 port)      connection->_entry_index = index;
       AutoMutex autoMut(_rep->_connection_mut);
       _rep->connections.append(connection);
   #ifdef PEGASUS_LOCALDOMAINSOCKET_DEBUG
 { {
   pegasus_acceptor* temp = 0;        AutoMutex automut(Monitor::_cout_mut);
         PEGASUS_STD(cout)
   try {         << "in HTTPAcceptor::_acceptNamedPipeConnection() at the end" << PEGASUS_STD(endl);
     acceptors.try_lock(pegasus_thread_self());  
     temp = acceptors.next(temp);  
     while(temp){  
       if( local == true ){  
         if(temp->_localConnection){  
           acceptors.unlock();  
           return temp;  
         }  
       }  
       if(temp->_localConnection == local && temp->_portNumber ==port){  
         acceptors.unlock();  
         return temp;  
       }  
       temp = acceptors.next(temp);  
     }     }
     acceptors.unlock();  #endif
   }  
   catch(...){  
   }  
   return temp;  
 }  
   
 class m2e_rep;  
   
 void pegasus_acceptor::accept_dispatch(monitor_2_entry *entry)  
 {  
   pegasus_acceptor* myself = (pegasus_acceptor*)entry->get_accept();  
   
   HTTPConnection2* connection = new HTTPConnection2(entry->_rep->psock, myself->_outputMessageQueue);  
   
   // set the entry's dispatch parameter to point to the connection object  
   entry->set_dispatch ((void*)connection);  
   
   monitor_2::insert_connection(connection);  
 } }
   #endif
  
 PEGASUS_NAMESPACE_END PEGASUS_NAMESPACE_END


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  Added in v.1.81.8.12

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