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Diff for /pegasus/src/Pegasus/ControlProviders/InteropProvider/InteropProvider.cpp between version 1.5.2.2 and 1.66.4.1

version 1.5.2.2, 2004/02/02 23:48:24 version 1.66.4.1, 2007/04/04 11:04:46
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 //%2003////////////////////////////////////////////////////////////////////////  //%2006////////////////////////////////////////////////////////////////////////
 // //
 // Copyright (c) 2000, 2001, 2002  BMC Software, Hewlett-Packard Development  // Copyright (c) 2000, 2001, 2002 BMC Software; Hewlett-Packard Development
 // Company, L. P., IBM Corp., 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.; // Copyright (c) 2003 BMC Software; Hewlett-Packard Development Company, L. P.;
 // IBM Corp.; EMC Corporation, The Open Group. // 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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 // WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. // WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
 // //
 //============================================================================== //==============================================================================
 //  
 // Author: Karl Schopmeyer (k.schopmeyer@opengroup.org)  
 //  
 // Modified By: Carol Ann Krug Graves, Hewlett-Packard Company  
 //                (carolann_graves@hp.com)  
 //              Karl Schopmeyer - Add Cim_Namespace capabilities.  
 //              Karl Schopmeyer - Temp added objectmanager and communication classes  
 //  
 //%////////////////////////////////////////////////////////////////////////////  
   
  
 /////////////////////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////////////////////
 //  Interop Provider - This provider services those classes from the //  Interop Provider - This provider services those classes from the
 //  DMTF Interop schema association with the CIMOM itself  //  DMTF Interop schema in an implementation compliant with the SMI-S v1.1
   //  Server Profile
 // //
 //  This provider services the following classes:  //  Please see PG_ServerProfile20.mof in the directory
 //      CIMObjectManager  //  $(PEGASUS_ROOT)/Schemas/Pegasus/InterOp/VER20 for retails regarding the
 //      CIM_ObjectManagerCommunicationMechanism  //  classes supported by this control provider.
 //      CIM_CIMXMLCommunicationMechanism  //
 //      CIM_ProtocolAdapter  //  Interop forces all creates to the PEGASUS_NAMESPACENAME_INTEROP
 //      CIM_Namespace  //  namespace. There is a test on each operation that returns
 //  //  the Invalid Class CIMDError
 //      It also services the Interop associations tied to these classes  //  This is a control provider and as such uses the Tracer functions
 //      including:  //  for data and function traces.  Since we do not expect high volume
 //      CIM_NamespaceInManager  //  use we added a number of traces to help diagnostics.
 //      ...  
   
 //      CIM Version: Interop Provider was written for CIM 2.7 adn 2.8.  
 //       Note: all 2.8 functions are controlled by a flag and can be  
 //      disabled.  
 /////////////////////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////////////////////
  
 /* STATUS: In process but running 12 August 2003 KS */  
   
 #include <Pegasus/Common/Config.h> #include <Pegasus/Common/Config.h>
 #include <Pegasus/Common/PegasusVersion.h> #include <Pegasus/Common/PegasusVersion.h>
  
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 #include <iostream> #include <iostream>
  
 #include "InteropProvider.h" #include "InteropProvider.h"
 #include <Pegasus/Common/String.h>  #include "InteropProviderUtils.h"
 #include <Pegasus/Common/System.h>  #include "InteropConstants.h"
 #include <Pegasus/Common/ArrayInternal.h>  
 #include <Pegasus/Common/CIMName.h>  
 #include <Pegasus/Common/CIMType.h>  
 #include <Pegasus/Common/CIMInstance.h>  
 #include <Pegasus/Common/CIMObjectPath.h>  
 #include <Pegasus/Common/InternalException.h>  
 #include <Pegasus/Common/CIMStatusCode.h>  
 #include <Pegasus/Common/Tracer.h>  
 #include <Pegasus/Common/OperationContext.h>  
 #include <Pegasus/Config/ConfigManager.h>  
   
   
 #include <Pegasus/Common/XmlWriter.h>  
   
 #include <sstream>  
 #include <string>  
 //#include <iomanip>  
 //#include <windows.h>  
  
 PEGASUS_USING_STD;  #include <Pegasus/Common/StatisticalData.h>
  
   PEGASUS_USING_STD;
 PEGASUS_NAMESPACE_BEGIN PEGASUS_NAMESPACE_BEGIN
  
 //#define CDEBUG(X)  /*****************************************************************************
 #define CDEBUG(X) PEGASUS_STD(cout) << "InteropProvider " << X << PEGASUS_STD(endl)   *
 //#define CDEBUG(X) Logger::put (Logger::DEBUG_LOG, "Linux_ProcessorProvider", Logger::INFORMATION, "$0", X)   * The following are constants representing property names for the classes
 //#define CDEBUG(X) {std::stringstream ss; std::string r;ss << X;ss>>r; PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4, r)}   * managed by the Interop Provider. Where multiple classes have properties of
    * the same name, there will be a common CIMName object defined, and a macro
 static const String PegasusInstanceIDGlobalPrefix = "PEG";   * defined that points to the common CIMName object, but whose macro name
 //    Constants representing the class names processed   * reflects the class in which the property is used.
    *
 /**   *****************************************************************************/
     The constants representing the class names we process  
 */  //
 static const CIMName __NAMESPACE_CLASSNAME  = CIMName ("__Namespace");  // Constructor for the InteropProvider control provider
 static const CIMName CIM_NAMESPACE_CLASSNAME  = CIMName ("CIM_Namespace");  //
 static const CIMName CIM_OBJECTMANAGER_CLASSNAME  = CIMName ("CIM_ObjectManager");  InteropProvider::InteropProvider(CIMRepository * rep) : repository(rep),
 static const CIMName CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM_CLASSNAME  =      hostName(System::getHostName()), providerInitialized(false),
         CIMName ("CIM_ObjectManagerCommunicationMechanism");      profileIds(Array<String>()), conformingElements(Array<CIMNameArray>()),
 static const CIMName CIM_CIMXMLCOMMUNICATIONMECHANISM_CLASSNAME  =      elementNamespaces(Array<CIMNamespaceArray>())
         CIMName ("CIM_CIMXMLCommunicationMechanism");  
   
   
 // Property Names for __Namespace Class  
 static const CIMName NAMESPACE_PROPERTYNAME  = CIMName ("Name");  
 static const CIMNamespaceName ROOTNS  = CIMNamespaceName ("root");  
   
   
 // Property names for CIM_ObjectManager Class  
 static const CIMName OM_GATHERSTATISTICALDATA  =  
  CIMName ("GatherStatisticalData");  
 // Property for the slp template.  
 static const CIMName OM_DESCRIPTION =  
     CIMName("Description");  
   
   
 // Property Names for ObjectManagerCommunicationMechanism Class  
 static const CIMName OM_COMMUNICATIONMECHANISM  =  
         CIMName ("CommunicationMechanism");  
 static const CIMName OM_FUNCTIONALPROFILESSUPPORTED  =  
  CIMName ("FunctionalProfilesSupported");  
 static const CIMName OM_FUNCTIONALPROFILEDESCRIPTIONS  =  
  CIMName ("FunctionalProfileDescriptions");  
 static const CIMName OM_AUTHENTICATIONMECHANISMSSUPPORTED  =  
  CIMName ("AuthenticationMechanismsSupported");  
 static const CIMName OM_AUTHENTICATIONMECHANISMDESCRIPTIONS  =  
  CIMName ("AuthenticationMechanismDescriptions");  
 static const CIMName OM_MULTIPLEOPERATIONSSUPPORTED  =  
  CIMName ("MultipleOperationsSupported");  
 static const CIMName OM_VERSION  =  
  CIMName ("Version");  
   
 // Property Names for CIMXML CommunicationMechanism  
   
 static const CIMName CIMVALIDATED  =  
  CIMName ("CIMValidated");  
   
 static const String CIMXMLProtocolVersion = "1.0";  
   
 // Property names for CIM_Namespace Class  
   
 static const CIMName CIM_NAMESPACE_PROPERTY_SYSTEMCREATIONCLASSNAME =  
         CIMName ("SystemCreationClassName");  
 static const CIMName CIM_NAMESPACE_PROPERTY_SYSTEMNAME =  
         CIMName ("SystemName");  
 static const CIMName CIM_NAMESPACE_PROPERTY_OBJECTMANAGERCREATIONCLASSNAME =  
         CIMName ("ObjectManagerCreationClassName");  
 static const CIMName CIM_NAMESPACE_PROPERTY_OBJECTMANAGERNAME =  
         CIMName ("ObjectManagerName");  
 static const CIMName CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME =  
         CIMName ("CreationClassName");  
 static const CIMName CIM_NAMESPACE_PROPERTY_NAME  = CIMName ("Name");  
 static const CIMName CIM_NAMESPACE_PROPERTY_CLASSINFO =  
         CIMName ("ClassInfo");  
 static const CIMName CIM_NAMESPACE_PROPERTY_DESCRIPTIONOFCLASSINFO =  
         CIMName ("DescriptionOfClassInfo");  
   
   
   
 // Defines to serve as the ENUM for class selection for instance  
 // operations.  
   
 enum targetClass{  
      __NAMESPACE = 1,  
      CIM_NAMESPACE = 2,  
      CIM_OBJECTMANAGER = 3,  
      CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM = 4,  
      CIM_CIMXMLCOMMUNICATIONMECHANISM = 5  
      };  
   
 //***************************************************************  
 // Provider Utility Functions  
 //***************************************************************  
   
 /** Builds the UUID string for this CIMOM.  
 **/  
 String buildUUIDString()  
 {  
   
    //UUID Generation code starts  
    //Uses "libuuid.a" in /usr/lib directory. Make sure it's there. Also Makefile has "-luuid" added to $EXTRA_LIBRARIES  
    /*  
    uuid_t outUUID;  
    int j;  
    char strUUID[37], tempstrUUID[3];  
   
    uuid_generate_random(outUUID);  
    strcpy(strUUID, "");  
    //uuid(6B29FC40-CA47-1067-B31D-00DD010662DA)  
    for(j=0;j<16;j++)  
    {  
        sprintf(tempstrUUID, "%2.2x", outUUID[j]);  
        tempstrUUID[2]='\0';  
        strcat(strUUID,tempstrUUID);  
        if(j==3 || j==7 || j==11)  
            strcat(strUUID,"-");  
    }  
    strUUID[36]='\0';  
    strUUID = "TESTUUID1234567890"  
    */  
    //UUID Generation code ends  
   
     String strUUID = "6B29FC40-CA47-1067-B31D-00DD010662DA";  
     //strUUID[36]='\0';  
     return (String(strUUID));  
 }  
   
 /* Test the keys in the CIM_Namespace for valid values  
    This includes all of the keys above the name key.  
    THis is a dummy for now.  
    ATTN: KS Extend and finish this function.  
 */  
 Boolean _validateProperties(const CIMObjectPath& path)  
 { {
     return true;      PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,"InteropProvider::InteropProvider");
 }  
 Boolean _validateProperties(const CIMInstance& instance)  
 {  
     return true;  
 }  
  
 /* validate that the property exists, is string type and  #ifndef PEGASUS_DISABLE_PERFINST
    optionally the value itself. Note processes only String      try
    properties  
    @param - Instance to search for property.  
    @param - Property Name  
    @value - String value. If not String::EMPTY, compare to  
    value in the property  
    @return - ture if passes all tests  
 */  
 Boolean _validateRequiredProperty(const CIMInstance& instance,  
                           const CIMName& propertyName,  
                           const String& value)  
 {  
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,  
             "InteropProvider::_validateRequiredProperty()");  
     Uint32 pos;  
     if ((pos = instance.findProperty (propertyName)) == PEG_NOT_FOUND)  
         return(false);  
     //  
     //  Get the property  
     //  
     CIMConstProperty theProperty = instance.getProperty(pos);  
     const CIMValue theValue = theProperty.getValue ();  
     String valueField;  
     theValue.get(valueField);  
     //  
     //  Required property must have a non-null value  
     //  
     if ((theValue.getType() != CIMTYPE_STRING) || (theValue.isNull()))  
     {     {
         PEG_METHOD_EXIT();          initProvider();
         return(false);  
     }     }
     if ((value == String::EMPTY) || (valueField == value))      catch(const Exception & e)
     {     {
         PEG_METHOD_EXIT();          // Provider initialization may fail if the repository is not
         return(true);          // populated
     }     }
     PEG_METHOD_EXIT();  #endif
     return(false);  
 }  
   
 Boolean _validateRequiredProperty(const CIMInstance& instance,  
                           const CIMName& propertyName,  
                           const Uint16& value)  
 {  
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,  
         "InteropProvider::_validateRequiredProperty()");  
  
     PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4, "Validate "  
         + propertyName.getString());  
     Uint32 pos;  
     if ((pos = instance.findProperty (propertyName)) == PEG_NOT_FOUND)  
     {  
         PEG_METHOD_EXIT();         PEG_METHOD_EXIT();
         return(false);  
     }     }
   
     //     //
     //  Get the property  // Local version of getInstance to be used by other functions in the the
     //  // provider. Returns a single instance. Note that it always returns an
     CIMConstProperty theProperty = instance.getProperty(pos);  // instance. If none was found, it is uninialitized.
     CIMValue theValue = theProperty.getValue ();  
     //  
     //  Required property must have a non-null value  
     //     //
     if ((theValue.getType() != CIMTYPE_UINT16)  CIMInstance InteropProvider::localGetInstance(
         || (theValue.isNull())  )      const OperationContext & context,
 //        || (theValue.getValue != value()) )      const CIMObjectPath & instanceName,
     {      const CIMPropertyList & propertyList)
         PEG_METHOD_EXIT();  
         return(false);  
     }  
     PEG_METHOD_EXIT();  
     return(true);  
 }  
 Boolean _validateRequiredProperty(const CIMObjectPath& objectPath,  
                           const CIMName& propertyName,  
                           const String value)  
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,      PEG_METHOD_ENTER(TRC_CONTROLPROVIDER, "InteropProvider::localGetInstance");
             "InteropProvider::_validateRequiedProperty()");  
     Array<CIMKeyBinding> kbArray = objectPath.getKeyBindings();  
  
     // find the correct key binding      PEG_TRACE((TRC_CONTROLPROVIDER, Tracer::LEVEL4,
     for (Uint32 i = 0; i < kbArray.size(); i++)          "%s getInstance. instanceName= %s , PropertyList= %s",
     {          thisProvider,
         if (kbArray[i].getName() == propertyName)          (const char *)instanceName.toString().getCString(),
         {          (const char *)propertyListToString(propertyList).getCString()));
             if (value != String::EMPTY)  
             {      // Test if we're looking for something outside of our namespace. This will
                 if (value !=kbArray[i].getValue())      // happen during associators calls from PG_RegisteredProfile instances
       // through the PG_ElementConformsToProfile association
       CIMNamespaceName opNamespace = instanceName.getNameSpace();
       CIMName opClass = instanceName.getClassName();
       if(opNamespace != PEGASUS_NAMESPACENAME_INTEROP &&
           opClass != PEGASUS_CLASSNAME_PG_ELEMENTCONFORMSTOPROFILE)
                 {                 {
                     PEG_METHOD_EXIT();          AutoMutex mut(interopMut);
                     return(true);          return cimomHandle.getInstance(context, opNamespace,
                 }              instanceName, false, false, false, propertyList);
             }  
         }  
     }  
     PEG_METHOD_EXIT();  
     return(true);  
 } }
  
 /* Query the repository for array of all namespacenames      // Create reference from host, namespace, class components of
 */      // instance name
 Array<CIMNamespaceName> InteropProvider::_enumerateNameSpaces()      CIMObjectPath ref;
 {      ref.setHost(instanceName.getHost());
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,      ref.setClassName(opClass);
             "InteropProvider::_enumerateNameSpaces()");      ref.setNameSpace(opNamespace);
     Array<CIMNamespaceName> namespaceNames;  
  
     try      // Enumerate instances for this class. Returns all instances
     {      // Note that this returns paths setup and instances already
         namespaceNames = _repository->enumerateNameSpaces();      // filtered per the input criteria.
     }      Array<CIMInstance> instances =  localEnumerateInstances(
     catch(CIMException& e)          context,
     {          ref,
         PEG_METHOD_EXIT();          propertyList);
         throw e;  
     }  
     catch(Exception& e)  
     {  
         PEG_METHOD_EXIT();  
         throw e;  
     }  
  
     PEG_METHOD_EXIT();      // deliver a single instance if found.
     return(namespaceNames);      CIMInstance retInstance;
 }  
  
 /* get a class defintion. Gets the class defined by      bool found = false;
     the parameters. Generates exception of class not defined.      for(Uint32 i = 0, n = instances.size(); i < n; i++)
    @param namespace in which to look for the class.  
    @param name of class to get.  
    @return the CIMClass object  
    @Exceptions any repository exceptions if class not found.  
 */  
 CIMClass InteropProvider::_getClass(const CIMNamespaceName& nameSpace,  
                                     const CIMName& className)  
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,          CIMObjectPath currentInstRef = instances[i].getPath();
             "InteropProvider::_getClass");          currentInstRef.setHost(instanceName.getHost());
     CIMClass myClass;          currentInstRef.setNameSpace(instanceName.getNameSpace());
     CDEBUG("_getClass: Get Class from repository. Namespace= " << nameSpace << " Class= " <<  className.getString());          if(instanceName == currentInstRef)
     // ATTN: The inUnitialized function is NOT necessary.  
     if (myClass.isUninitialized())  
     {     {
         try              retInstance = instances[i];
         {              found = true;
             myClass = _repository->getClass(nameSpace, className );              break;
         }         }
         catch(CIMException& e)  
         {  
             CDEBUG("_getClass CIMException: " << e.getMessage());  
             PEG_METHOD_EXIT();  
             throw e;  
         }         }
         catch(Exception& e)  
       if(!found)
         {         {
             CDEBUG("_getClass CIMException: " << e.getMessage());        cout << "Coule not find instance: " << instanceName.toString() << endl;
             PEG_METHOD_EXIT();  
             throw e;  
         }         }
     }  
     CDEBUG("_getClass: Class Acquired");  
     PEG_METHOD_EXIT();     PEG_METHOD_EXIT();
     return myClass;      return retInstance;
 } }
  
  
 /* Verify that this is one of the legal classnames and  //
    return indicator which.  // Local version of enumerateInstances to be used by other functions in the
    @param - Classname  // provider. Note that this delivers instances as a group rather than one
    @return - Uint32 indicating type  // at a time. This design point may need to be revisited if this provider
    @Exceptions - throws CIMNotSupportedException if invalid class.  // is used in environments such that returning segmented responses would have
 */  // significant performance advantages. For now, that doesn't seem to be the
 targetClass _verifyValidClassInput(const CIMName& className)  // case.
   //
   Array<CIMInstance> InteropProvider::localEnumerateInstances(
       const OperationContext & context,
       const CIMObjectPath & ref,
       const CIMPropertyList& propertyList)
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,
             "InteropProvider::_verifyValidClassInput()");          "InteropProvider::localEnumerateInstances()");
     CDEBUG("Class Name Input = " << className.getString());      const CIMName & className = ref.getClassName();
       PEG_TRACE((TRC_CONTROLPROVIDER, Tracer::LEVEL4,
           "%s enumerateInstances. referenc= %s , PropertyList= %s",
           thisProvider,
           (const char *)className.getString().getCString(),
           (const char *)propertyListToString(propertyList).getCString()));
  
     if (className.equal(CIM_NAMESPACE_CLASSNAME))      // Verify that ClassName is correct and get its enum value
     {      TARGET_CLASS classEnum  = translateClassInput(className);
         PEG_METHOD_EXIT();  
         return CIM_NAMESPACE;  
     }  
  
     if (className.equal(CIM_OBJECTMANAGER_CLASSNAME))      Array<CIMInstance> instances;
       switch(classEnum)
     {     {
         PEG_METHOD_EXIT();          case PG_OBJECTMANAGER:
         return CIM_OBJECTMANAGER;  
     }  
   
     if (className.equal(CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM_CLASSNAME))  
     {     {
         PEG_METHOD_EXIT();              instances.append(getObjectManagerInstance());
         return CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM;              break;
     }     }
           case PG_CIMXMLCOMMUNICATIONMECHANISM:
     if (className.equal(CIM_CIMXMLCOMMUNICATIONMECHANISM_CLASSNAME))  
     {     {
         PEG_METHOD_EXIT();              instances = enumCIMXMLCommunicationMechanismInstances();
         return CIM_CIMXMLCOMMUNICATIONMECHANISM;              break;
     }     }
           case PG_NAMESPACEINMANAGER:
     // Last entry, reverse test and returnOK if CIM_Namespace  
     if (!className.equal(CIM_NAMESPACE_CLASSNAME))  
     {     {
         CDEBUG("Invalid Class received " << className.getString());              instances = enumNamespaceInManagerInstances();
         PEG_METHOD_EXIT();              break;
         throw CIMNotSupportedException  
             (className.getString() + " not supported by Interop Provider");  
     }     }
           case PG_COMMMECHANISMFORMANAGER:
     PEG_METHOD_EXIT();  
     return CIM_NAMESPACE;  
 }  
   
 /* validate the authorization of the user name against the namespace.  
 */  
 String _validateUserID(const OperationContext & context)  
 { {
     //ATTN-DME-P3-20020522: ADD AUTHORIZATION CHECK TO __NAMESPACE PROVIDER              instances = enumCommMechanismForManagerInstances();
     String userName;              break;
     try  
     {  
         IdentityContainer container = context.get(IdentityContainer::NAME);  
         userName = container.getUserName();  
     }     }
     catch (...)          case PG_NAMESPACE:
     {     {
        userName = String::EMPTY;              instances = enumNamespaceInstances();
               break;
     }     }
     return userName;          case PG_REGISTEREDPROFILE:
 }  
   
 /** Add the keys common to a number of the Interop instances to the provided  
     instance. This includes SystemCreationClassName and System Name  
     @param instance of CIMInstance to which these are to be added.  
 */  
 void _buildInstanceCommonKeys(CIMInstance& instance)  
 { {
               instances = enumRegisteredProfileInstances();
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,              break;
             "InteropProvider::_buildInstanceCommonKeys()");  
   
     String SystemCreationClassName = System::getSystemCreationClassName ();  
     if (SystemCreationClassName == String::EMPTY)  
     {  
         // This in place because global is often Empty  
         SystemCreationClassName = "CIM_ComputerSystem";  
     }     }
           case PG_REGISTEREDSUBPROFILE:
     // Add property SystemCreationClassName  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_SYSTEMCREATIONCLASSNAME,  
                      SystemCreationClassName)));  
   
     // Add property SystemName  
     String SystemName = System::getHostName();  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_SYSTEMNAME,  
                      SystemName)));  
   
     PEG_METHOD_EXIT();  
 }  
   
   
 /* build instance of the CIMObjectManagerCommunicationClass  
 */  
 CIMInstance _buildInstancCIMObjectManagerCommunicationMechanism()  
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,              instances = enumRegisteredSubProfileInstances();
             "InteropProvider::_buildInstanceCIMObjectCommunicationMechanism()");              break;
   
     CIMInstance instance(CIM_CIMXMLCOMMUNICATIONMECHANISM_CLASSNAME);  
   
     _buildInstanceCommonKeys(instance);  
   
   
     //CreationClassName - Class this instance created from.  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME,  
             CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM_CLASSNAME.getString() )));  
   
     //String name = "PegasusCIMXMLCommunicationMechanism";  
     //Name, this CommunicationMechanism. The use of this name is not  
     // clear right now  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_NAME,  
                      CIM_CIMXMLCOMMUNICATIONMECHANISM_CLASSNAME.getString() )));  
   
     // CommunicationMechanism Property. Set to 2, CIMXML for now.  
     instance.addProperty(  
         (CIMProperty(OM_COMMUNICATIONMECHANISM,  
                      Uint16(2) )));  
   
     //Functional Profiles Supported Property.  
     Array<Uint16> profiles;  
     Array<String> profileDescriptions;  
   
     profiles.append(2); profileDescriptions.append("Basic Read");  
     profiles.append(3); profileDescriptions.append("Basic Write");  
     profiles.append(4); profileDescriptions.append("Schema Manipulation");  
     profiles.append(5); profileDescriptions.append("Instance Manipulation");  
     profiles.append(6); profileDescriptions.append("Association Traversal");  
     profiles.append(8); profileDescriptions.append("Qualifier Declaration");  
     profiles.append(9); profileDescriptions.append("Indications");  
   
     CIMValue profileValue(profiles);  
     CIMValue profileDescriptionsValue(profileDescriptions);  
   
     instance.addProperty(  
         (CIMProperty(OM_FUNCTIONALPROFILESSUPPORTED,  
                      profileValue )));  
     instance.addProperty(  
         (CIMProperty(OM_FUNCTIONALPROFILEDESCRIPTIONS,  
                      profileDescriptionsValue )));  
   
     // Multiple OperationsSupported Property  
     instance.addProperty(  
         (CIMProperty(OM_MULTIPLEOPERATIONSSUPPORTED,  
                      Boolean(false) )));  
   
     // AuthenticationMechanismsSupported Property  
   
     Array<Uint16> authentications;  
     Array<String> authenticationDescriptions;  
   
     // The following is a hack, supplying values from fixed info.  
     authentications.append(3); authenticationDescriptions.append("basic");  
   
     CIMValue authenticationValue(authentications);  
     CIMValue authenticationDescriptionsValue(authenticationDescriptions);  
     instance.addProperty(  
         (CIMProperty(OM_AUTHENTICATIONMECHANISMSSUPPORTED,  
                      authenticationValue )));  
     instance.addProperty(  
         (CIMProperty(OM_AUTHENTICATIONMECHANISMDESCRIPTIONS,  
                      authenticationDescriptionsValue )));  
   
     //Version property  
     instance.addProperty(  
         (CIMProperty(OM_VERSION,  
                      CIMXMLProtocolVersion )));  
   
     PEG_METHOD_EXIT();  
     return(instance);  
 } }
           case PG_REFERENCEDPROFILE:
   
 CIMInstance _buildInstancCIMXMLCommunicationMechanism()  
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,              instances = enumReferencedProfileInstances();
             "InteropProvider::_buildInstanceCIMXMLCommunicationMechanism()");              break;
     CDEBUG("_BuildInstanceCIMXMLCommunicationMechanism");  
     CIMInstance instance(CIM_CIMXMLCOMMUNICATIONMECHANISM_CLASSNAME);  
   
     _buildInstanceCommonKeys(instance);  
   
     //CreationClassName  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME,  
             CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM_CLASSNAME.getString() )));  
   
     //Name, this CommunicationMechanism.  
     String name = "PegasusCommunicationMechanism";  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_NAME,  
                      name )));  
   
     // CommunicationMechanism Property  
     instance.addProperty(  
         (CIMProperty(OM_COMMUNICATIONMECHANISM,  
                      Uint16(2) )));  
   
     // CommunicationMechanism Property  
     // KS why duplicate property add.  Should not work.  
     //instance.addProperty(  
     //    (CIMProperty(OM_COMMUNICATIONMECHANISM,  
     //                 Uint16(2) )));  
   
     //Functional Profiles Supported Property.  
     Array<Uint16> profiles;  
     Array<String> profileDescriptions;  
   
     profiles.append(2); profileDescriptions.append("Basic Read");  
     profiles.append(3); profileDescriptions.append("Basic Write");  
     profiles.append(4); profileDescriptions.append("Schema Manipulation");  
     profiles.append(5); profileDescriptions.append("Instance Manipulation");  
     profiles.append(6); profileDescriptions.append("Association Traversal");  
     profiles.append(8); profileDescriptions.append("Qualifier Declaration");  
     profiles.append(9); profileDescriptions.append("Indications");  
   
     CIMValue profileValue(profiles);  
     CIMValue profileDescriptionsValue(profileDescriptions);  
   
     instance.addProperty(  
         (CIMProperty(OM_FUNCTIONALPROFILESSUPPORTED,  
                      profileValue )));  
     instance.addProperty(  
         (CIMProperty(OM_FUNCTIONALPROFILEDESCRIPTIONS,  
                      profileDescriptionsValue )));  
   
     // Multiple OperationsSupported Property  
     instance.addProperty(  
         (CIMProperty(OM_MULTIPLEOPERATIONSSUPPORTED,  
                      Boolean(false) )));  
   
     // AuthenticationMechanismsSupported Property  
   
     Array<Uint16> authentications;  
     Array<String> authenticationDescriptions;  
   
     authentications.append(3); authenticationDescriptions.append("basic");  
   
     CIMValue authenticationValue(authentications);  
     CIMValue authenticationDescriptionsValue(authenticationDescriptions);  
   
     instance.addProperty(  
         (CIMProperty(OM_AUTHENTICATIONMECHANISMSSUPPORTED,  
                      authenticationValue )));  
     instance.addProperty(  
         (CIMProperty(OM_AUTHENTICATIONMECHANISMDESCRIPTIONS,  
                      authenticationDescriptionsValue )));  
   
     //Version property  
     instance.addProperty(  
         (CIMProperty(OM_VERSION,  
                      CIMXMLProtocolVersion )));  
     PEG_METHOD_EXIT();  
     return(instance);  
 } }
 /* Gets the value for the CIMObjectManager name.  This is a key          case PG_ELEMENTCONFORMSTOPROFILE:
    property with the following characteristics.  
    1. It is persistent. This must be persistent through CIMOM  
    restarts.  We will save it in the instance database to achieve this.  
    2. It must be unique. We cannot create duplicate CIMOM names  
    3. It is based on the DMTF description of how unique InstanceIds  
    are defined (Trademark/etc followed by unique identification.  
    Temporarily we simply get  
    1. Prefix which is in Constants  
    2. Host Name  
    3. Current time  
   
 */  
 String buildObjectManagerName()  
 {  
     String objectManagerName = PegasusInstanceIDGlobalPrefix;  
     objectManagerName.append("_");  
     objectManagerName.append(System::getHostName());  
     objectManagerName.append(System::getCurrentASCIITime());  
   
     String strUUID = "6B29FC40-CA47-1067-B31D-00DD010662DA";  
     return (objectManagerName);  
 }  
   
 CIMInstance InteropProvider::_buildInstanceCIMObjectManager()  
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,              instances = enumElementConformsToProfileInstances(context,
             "InteropProvider::_buildInstanceCIMObjectManager()");                  ref.getNameSpace());
               break;
   
     if (!instanceOfCIMObjectManager.isUninitialized())  
     {  
         PEG_METHOD_EXIT();  
         return(instanceOfCIMObjectManager);  
     }     }
           case PG_SUBPROFILEREQUIRESPROFILE:
     // Try to get persistent instance from repository  
     Array<CIMInstance> instances;  
     try  
     {     {
         instances = _repository->enumerateInstances(_operationNamespace,              instances = enumSubProfileRequiresProfileInstances();
                       CIM_OBJECTMANAGER_CLASSNAME );              break;
     }     }
     catch(CIMException& e)          case PG_SOFTWAREIDENTITY:
     {     {
         PEG_METHOD_EXIT();              instances = enumSoftwareIdentityInstances();
         throw e;              break;
     }     }
     catch(Exception& e)          case PG_ELEMENTSOFTWAREIDENTITY:
     {     {
         PEG_METHOD_EXIT();              instances = enumElementSoftwareIdentityInstances();
         throw e;              break;
     }     }
           case PG_INSTALLEDSOFTWAREIDENTITY:
     if (instances.size() >= 1)  
     {     {
         instanceOfCIMObjectManager = instances[0];              instances = enumInstalledSoftwareIdentityInstances();
         PEG_METHOD_EXIT();              break;
         return(instanceOfCIMObjectManager);  
     }     }
           case PG_COMPUTERSYSTEM:
     //  
     // Must build new instance and save it.  
     //  
     CIMInstance instance(CIM_OBJECTMANAGER_CLASSNAME);  
     instanceOfCIMObjectManager = instance;  
   
     _buildInstanceCommonKeys(instanceOfCIMObjectManager);  
   
     //CreationClassName -- This class.  
     instanceOfCIMObjectManager.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME,  
                      CIM_OBJECTMANAGER_CLASSNAME.getString() )));  
     //Name, this CIMObject Manager.  
     instanceOfCIMObjectManager.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_NAME,  
                      buildObjectManagerName() )));  
   
     // Gets the object manager class for some info  
     CIMClass objMgrClass = _getClass(_operationNamespace, "CIM_ObjectManager");  
     Uint32 pos;  
     String description;  
     if (pos = objMgrClass.findQualifier(CIMName("description")) != PEG_NOT_FOUND)  
     {     {
         CIMQualifier q = objMgrClass.getQualifier(pos);              instances.append(getComputerSystemInstance());
         // ATTN: We should be able to clone the qualifier over.Easier.              break;
         CIMValue v = q.getValue();  
         description = v.toString();  
         instanceOfCIMObjectManager.addQualifier(  
             (CIMQualifier("Description", description)));  
     }     }
           case PG_HOSTEDOBJECTMANAGER:
   
     //Property GatherStatisticalData. Note that today we do not  
     // have a dynamic activation for this value.  
   
   
 #ifdef PEGASUS_HAS_PERFINST  
     Boolean gatherStatData = true;  
 #else  
     Boolean gatherStatData = false;  
 #endif  
     instanceOfCIMObjectManager.addProperty(  
         (CIMProperty(OM_GATHERSTATISTICALDATA,  
                      Boolean(gatherStatData) )));  
   
     // write the instance to the repository  
     CIMObjectPath instancepath;  
     try  
     {     {
         instancepath = _repository->createInstance(_operationNamespace,              instances.append(getHostedObjectManagerInstance());
                        instanceOfCIMObjectManager );              break;
     }     }
     catch(CIMException& e)          case PG_HOSTEDACCESSPOINT:
     {     {
               instances = enumHostedAccessPointInstances();
               break;
           }
           default:
         PEG_METHOD_EXIT();         PEG_METHOD_EXIT();
         throw e;              throw CIMNotSupportedException(className.getString() +
                 " not supported by Interop Provider enumerate");
     }     }
     catch(Exception& e)  
       // Filter and deliver the resulting instances
       for (Uint32 i = 0 ; i < instances.size() ; i++)
     {     {
     PEG_METHOD_EXIT();          normalizeInstance(instances[i], ref, false,
         throw e;              false, propertyList);
     }     }
  
     PEG_METHOD_EXIT();     PEG_METHOD_EXIT();
     return(instanceOfCIMObjectManager);      return instances;
 } }
  
 /* generate one instance of the CIM_Namespace class with the  //
    properties  // Class that determines whether or not the origin class in an association
    @param namespace name to put into the class  // operation is valid for the given association class, and also determines
    @exceptions - exceptions carried forward from create instance  // the origin and target "roles". These values generally correspond to the
    and addProperty.  // role and resultRole parameter of an associators/associatorNames operation.
 */  //
   bool InteropProvider::validAssocClassForObject(
       const CIMName & assocClass, const CIMName & originClass,
 /* Create an instance of the CIM_Namespace class which is based      const CIMNamespaceName & opNamespace,
    on the following CIM MOF Specification      String & originProperty, String & targetProperty)
 [Version ("2.6.0"), Description (  
     "Namespace provides a domain (in other words, a container), "  
     "in which the instances [of a class] are guaranteed to be "  
     "unique per the KEY qualifier definitions.  It is named "  
     "relative to the CIM_ObjectManager implementation that "  
     "provides such a domain.") ]  
 class CIM_Namespace : CIM_ManagedElement {  
   
     [Propagated("CIM_ObjectManager.SystemCreationClassName"), Key,  
         MaxLen (256), Description (  
            "The scoping System's CreationClassName.") ]  
     string SystemCreationClassName;  
   
     [Propagated("CIM_ObjectManager.SystemName"), Key, MaxLen (256),  
         Description ("The scoping System's Name.") ]  
     string SystemName;  
   
     [Propagated ("CIM_ObjectManager.CreationClassName"), Key,  
         MaxLen (256), Description (  
            "The scoping ObjectManager's CreationClassName.") ]  
     string ObjectManagerCreationClassName;  
   
     [Propagated ("CIM_ObjectManager.Name"), Key, MaxLen (256),  
         Description ("The scoping ObjectManager's Name.") ]  
     string ObjectManagerName;  
   
     [Key, MaxLen (256), Description (  
         "CreationClassName indicates the name of the class or the "  
         "subclass used in the creation of an instance. When used "  
         "with the other key properties of this class, this property "  
         "allows all instances of this class and its subclasses to "  
         "be uniquely identified.") ]  
     string CreationClassName;  
   
     [Key, MaxLen (256), Description (  
         "A string to uniquely identify the Namespace within "  
         "the ObjectManager.") ]  
     string Name;  
   
     [Required, Write, Description (  
         "Enumeration indicating the organization/schema of the "  
         "Namespace's objects. For example, they may be instances "  
         "of classes of a specific CIM version."),  
         ValueMap {"0", "1", "2", "3", "4", "5", "6", "7", "8", "9",  
                   "10", "200", "201", "202"},  
         Values {"Unknown", "Other", "CIM 1.0", "CIM 2.0",  
               "CIM 2.1", "CIM 2.2", "CIM 2.3", "CIM 2.4", "CIM 2.5",  
               "CIM 2.6", "CIM 2.7", "DMI Recast", "SNMP Recast",  
                   "CMIP Recast"},  
         ModelCorrespondence {"CIM_Namespace.DescriptionOfClassInfo"} ]  
     uint16 ClassInfo;  
   
     [Write, Description (  
         "A string providing more detail (beyond the general "  
         "classification in ClassInfo) for the object hierarchy of "  
         "the Namespace."),  
         ModelCorrespondence {"CIM_Namespace.ClassInfo"} ]  
     string DescriptionOfClassInfo;  
 };  
   
 */  
 CIMInstance _buildInstanceCIMNamespace(const CIMNamespaceName & nameSpace)  
 { {
     CDEBUG("_buildInstnaceCIMNamespace enter");  
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,
             "InteropProvider::_buildInstanceCIMNamespace()");          "InteropProvider::validAssocClassForObject()");
       TARGET_CLASS assocClassEnum = translateClassInput(assocClass);
     String ObjectManagerName = "ObjectManagerNameValue";      TARGET_CLASS originClassEnum;
     String ClassInfo = "ClassInfo";      // If the association class is PG_ElementConformsToProfile, we'll have to
     String DescriptionOfClassInfo = "DescriptionOfClassInfo";      // do some special processing in case the origin instance for the operation
       // is managed by another provider.
     CDEBUG("_buildInstnaceCIMNamespace create instance");      if(assocClassEnum == PG_ELEMENTCONFORMSTOPROFILE)
     CIMInstance instance(CIM_NAMESPACE_CLASSNAME);  
   
     /*  The following moved to common create  
     // Add the properties  
     // SystemCreationClassName  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_SYSTEMCREATIONCLASSNAME,  
                      SystemCreationClassName)));  
     // SystemName  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_SYSTEMNAME,  
                      SystemName)));  
     */  
   
     CDEBUG("_buildInstnaceCIMNamespace build common keys");  
     _buildInstanceCommonKeys(instance);  
   
     CDEBUG("_buildInstnaceCIMNamespace add properties");  
     //ObjectManagerCreationClassName  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_OBJECTMANAGERCREATIONCLASSNAME,  
                      CIM_OBJECTMANAGER_CLASSNAME.getString())));  
     //ObjectManagerName  
     // This is the one we have to sort out ATTN: TBD KS P0  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_OBJECTMANAGERNAME,  
                      ObjectManagerName)));  
     //CreationClassName  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME,  
                      CIM_NAMESPACE_CLASSNAME.getString() )));  
     //Name  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_NAME,  
                      nameSpace.getString() )));  
   
     // ATTN: KS 16 Jan 2004 We are not supplying this property right now because we do  
     // not know what to put into it.  
     //ClassInfo  
     /*  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_CLASSINFO,  
                      ClassInfo)));  
   
     //DescriptionofClassInfo  
     instance.addProperty(  
         (CIMProperty(CIM_NAMESPACE_PROPERTY_DESCRIPTIONOFCLASSINFO,  
                      DescriptionOfClassInfo)));  
     */  
     CDEBUG("_buildInstnaceCIMNamespace properties built. returning instance");  
     PEG_METHOD_EXIT();  
     return(instance);  
 }  
 void _validateCIMNamespaceKeys(const CIMObjectPath& objectPath)  
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,          // Test if the origin is an element managed by another provider
             "InteropProvider::_validateCIMNamespaceKeys");          // that has implemented a registered profile.
           if(opNamespace != PEGASUS_NAMESPACENAME_INTEROP ||
     Boolean valid = true;              (originClass != PEGASUS_CLASSNAME_PG_REGISTEREDPROFILE &&
     CIMName propertyName;              originClass != PEGASUS_CLASSNAME_PG_OBJECTMANAGER))
     if (!_validateRequiredProperty(objectPath,  
                 CIM_NAMESPACE_PROPERTY_SYSTEMCREATIONCLASSNAME,  
                 System::getSystemCreationClassName ()))  
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_SYSTEMCREATIONCLASSNAME;              //
         valid = false;              // Search the cached conformingElements list for the originClass,
     }              // returning false if it is not found
     if (!_validateRequiredProperty(objectPath,              //
                 CIM_NAMESPACE_PROPERTY_SYSTEMNAME,              bool found = false;
                 System::getHostName()))  
               PEGASUS_ASSERT(conformingElements.size() ==
                   elementNamespaces.size());
               for(Uint32 i = 0, n = conformingElements.size(); i < n; ++i)
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_SYSTEMNAME;                  CIMNameArray & elementList = conformingElements[i];
         valid = false;                  CIMNamespaceArray & namespaceList = elementNamespaces[i];
     }                  PEGASUS_ASSERT(elementList.size() == namespaceList.size());
     if (!_validateRequiredProperty(objectPath,                  for(Uint32 j = 0, m = elementList.size(); j < m; ++j)
                 CIM_NAMESPACE_PROPERTY_OBJECTMANAGERCREATIONCLASSNAME,  
                 CIM_OBJECTMANAGER_CLASSNAME.getString()))  
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_OBJECTMANAGERCREATIONCLASSNAME;                      CIMName & curElement = elementList[j];
         valid = false;                      if((curElement == originClass ||
     }                        curElement.getString().find(PEGASUS_DYNAMIC) == 0) &&
                         opNamespace == namespaceList[j])
     // ATTN: This one still a problem.  We have to get the name first  
     if (!_validateRequiredProperty(objectPath,  
                 CIM_NAMESPACE_PROPERTY_OBJECTMANAGERNAME,  
                 String::EMPTY))  
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_OBJECTMANAGERNAME;                          found = true;
         valid = false;                          break;
     }     }
     if (!_validateRequiredProperty(objectPath,  
                 CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME,  
                 System::getHostName()))  
     {  
         propertyName = CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME;  
         valid = false;  
     }     }
                   if(found)
     if (!_validateRequiredProperty(objectPath,                      break;
                 CIM_NAMESPACE_PROPERTY_NAME,  
                 String::EMPTY))  
     {  
         propertyName = CIM_NAMESPACE_PROPERTY_NAME;  
         valid = false;  
     }     }
  
     if (false)              if(!found)
     {                  return false;
         PEG_METHOD_EXIT();  
         throw CIMInvalidParameterException(  
             "Invalid key property: " + propertyName.getString());  
     }     }
     PEG_METHOD_EXIT();  
 } }
       else
 void _validateCIMNamespaceKeys(const CIMInstance& instance)  
 {  
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,  
             "InteropProvider::_validateCIMNamespaceKeys");  
     Boolean valid = true;  
     CIMName propertyName;  
     if (!_validateRequiredProperty(instance,  
                 CIM_NAMESPACE_PROPERTY_SYSTEMCREATIONCLASSNAME,  
                 System::getSystemCreationClassName ()))  
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_SYSTEMCREATIONCLASSNAME;          // Otherwise, just get the enum value representing the origin class
         valid = false;          // for this operation
           originClassEnum = translateClassInput(originClass);
     }     }
  
     if (!_validateRequiredProperty(instance,      CIMName expectedTargetRole;
                 CIM_NAMESPACE_PROPERTY_SYSTEMNAME,      CIMName expectedOriginRole;
                 System::getHostName()))  
     {  
         propertyName = CIM_NAMESPACE_PROPERTY_SYSTEMNAME;  
         valid = false;  
     }  
  
     if (!_validateRequiredProperty(instance,      //
                 CIM_NAMESPACE_PROPERTY_OBJECTMANAGERCREATIONCLASSNAME,      // Set the target and origin role values. Note that if these values are
                 CIM_OBJECTMANAGER_CLASSNAME.getString()))      // not set following the switch block, that implies that the origin class
       // is not valid for the supplied association class.
       //
       switch(assocClassEnum)
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_OBJECTMANAGERCREATIONCLASSNAME;        case PG_NAMESPACEINMANAGER:
         valid = false;            if(originClassEnum == PG_OBJECTMANAGER)
     }  
   
     // ATTN: This one still a problem.  We have to get the name first  
     if (!_validateRequiredProperty(instance,  
                 CIM_NAMESPACE_PROPERTY_OBJECTMANAGERNAME,  
                 String::EMPTY))  
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_OBJECTMANAGERNAME;                expectedTargetRole = PROPERTY_DEPENDENT;
         valid = false;                expectedOriginRole = PROPERTY_ANTECEDENT;
     }     }
     if (!_validateRequiredProperty(instance,            else if(originClassEnum == PG_NAMESPACE)
                 CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME,  
                 System::getHostName()))  
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_CREATIONCLASSNAME;                expectedTargetRole = PROPERTY_ANTECEDENT;
         valid = false;                expectedOriginRole = PROPERTY_DEPENDENT;
     }     }
             break;
     if (!_validateRequiredProperty(instance,        case PG_COMMMECHANISMFORMANAGER:
                 CIM_NAMESPACE_PROPERTY_NAME,            if(originClassEnum == PG_OBJECTMANAGER)
                 String::EMPTY))  
     {     {
         propertyName = CIM_NAMESPACE_PROPERTY_NAME;                expectedTargetRole = PROPERTY_DEPENDENT;
         valid = false;                expectedOriginRole = PROPERTY_ANTECEDENT;
     }     }
             else if(originClassEnum == PG_CIMXMLCOMMUNICATIONMECHANISM)
     if (false)  
     {     {
         PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,                expectedTargetRole = PROPERTY_ANTECEDENT;
             "Invalid CIM_Namespace Key Property " +  propertyName.getString());                expectedOriginRole = PROPERTY_DEPENDENT;
         PEG_METHOD_EXIT();  
         throw CIMInvalidParameterException(  
             "Invalid CIM_Namespace key property: " + propertyName.getString());  
     }     }
     PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4, "CIM_Namespace Keys Valid");            break;
     PEG_METHOD_EXIT();        case PG_ELEMENTCONFORMSTOPROFILE:
 }            if(originClass.equal(PEGASUS_CLASSNAME_PG_REGISTEREDPROFILE))
   
 /* Given a namespace name, class and instance build the instance path for a  
    the object.  This builds all components of the path  
    @param namespace name to build  
    @return CIMObjectPath containing namespace, class and keybinding  
    components of path  
    @exceptions - TBD  
 */  
 // ATTN: KS Build path from instance and instance from class.  Not sure  
 //   we want to always do this.  Consider change to build keys directly  
   
 CIMObjectPath InteropProvider::_buildInstancePath(const CIMNamespaceName& name,  
                                            const CIMName className,  
                                            const CIMInstance& instance)  
 { {
     PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,                expectedTargetRole =
             "InteropProvider::_buildInstancePath");                    ELEMENTCONFORMSTOPROFILE_PROPERTY_MANAGEDELEMENT;
                 expectedOriginRole =
     // get the class CIM_Namespace class to use in building path                    ELEMENTCONFORMSTOPROFILE_PROPERTY_CONFORMANTSTANDARD;
   
     // Exception out if Class does not exist in this namespace  
     CIMClass thisClass = _getClass(_operationNamespace, className);  
   
     // XmlWriter::printInstanceElement(instance);  
   
     CIMObjectPath ref = instance.buildPath(thisClass);  
   
     CDEBUG("_buildInstancePath. Built path. path = " << ref.toString() );  
     PEG_METHOD_EXIT();  
     return(ref);  
 } }
             else
   
 /* _isNamespace determines if the namespace in the second  
    parameter is in the array in the first parameter.  
     @param array of possible namespaces  
     @param canidate namespace  
     @return - true if found  
 */  
 Boolean _isNamespace(  
         Array<CIMNamespaceName>& namespaceNames,  
         CIMNamespaceName& namespaceName)  
   
 {  
      Boolean found = false;  
      for(Uint32 i = 0; i < namespaceNames.size(); i++)  
      {  
         if(namespaceNames[i].equal ( namespaceName))  
         {         {
             return true;                expectedTargetRole =
         }                    ELEMENTCONFORMSTOPROFILE_PROPERTY_CONFORMANTSTANDARD;
      }                expectedOriginRole =
      return false;                    ELEMENTCONFORMSTOPROFILE_PROPERTY_MANAGEDELEMENT;
 } }
             break;
 Boolean _isChild(        case PG_SUBPROFILEREQUIRESPROFILE:
         CIMNamespaceName& parentNamespaceName,            if(originClassEnum == PG_REGISTEREDPROFILE)
         CIMNamespaceName& namespaceName)  
   
 { {
     String parent = parentNamespaceName.getString();                expectedTargetRole = PROPERTY_DEPENDENT;
     String child = namespaceName.getString();                expectedOriginRole = PROPERTY_ANTECEDENT;
    //  
    //  If length of namespace name is shorter than or equal to the  
    //  length of parent namespace name, cannot be a child  
    //  
    if (child.size () <= parent.size ())  
    {  
       return false;  
    }    }
             else if(originClassEnum == PG_REGISTEREDSUBPROFILE)
    //  
    //  Compare prefix substring of namespace name with parent namespace name  
    //  
    else if (String::equalNoCase (child.subString (0, parent.size ()), parent))  
    {    {
       return true;                expectedTargetRole = PROPERTY_ANTECEDENT;
    }                expectedOriginRole = PROPERTY_DEPENDENT;
    return false;  
 } }
 //**************************************************************            break;
 // Overloaded functions to get key value with different params        case PG_ELEMENTSOFTWAREIDENTITY:
 //**************************************************************            if(originClassEnum == PG_SOFTWAREIDENTITY)
   
 /* find the name key in the keybindings and return the value.  
     Executes exception if the key not found  
     @param object path we will search  
     @param keyName - Name of the key to find.  
     @return value of name property  
     @exceptions CIMInvalidParameterException  
 */  
 String _getKeyValue(const CIMObjectPath& instanceName, const CIMName& keyName)  
 {  
     Array<CIMKeyBinding> kbArray = instanceName.getKeyBindings();  
   
     // find the correct key binding  
     for (Uint32 i = 0; i < kbArray.size(); i++)  
     {  
         if (kbArray[i].getName() == keyName)  
         {         {
             return (kbArray[i].getValue());                expectedTargetRole = PROPERTY_DEPENDENT;
                 expectedOriginRole = PROPERTY_ANTECEDENT;
         }         }
     }            else if(originClassEnum == PG_REGISTEREDPROFILE ||
     throw CIMInvalidParameterException("Invalid key property: " + keyName.getString());                originClassEnum == PG_REGISTEREDSUBPROFILE)
 }  
   
 String _getKeyValue(const CIMInstance& instance, const CIMName& keyName)  
 { {
     Uint32 pos;                expectedTargetRole = PROPERTY_ANTECEDENT;
     CIMValue propertyValue;                expectedOriginRole = PROPERTY_DEPENDENT;
   
     pos = instance.findProperty(keyName);  
     if (pos == PEG_NOT_FOUND)  
     {  
        throw CIMPropertyNotFoundException  
            (NAMESPACE_PROPERTYNAME.getString());  
     }     }
             break;
     propertyValue = instance.getProperty(pos).getValue();        case PG_INSTALLEDSOFTWAREIDENTITY:
     if (propertyValue.getType() != CIMTYPE_STRING)            if(originClassEnum == PG_SOFTWAREIDENTITY)
     {     {
        throw CIMInvalidParameterException("Invalid type for property: "                expectedTargetRole = INSTALLEDSOFTWAREIDENTITY_PROPERTY_SYSTEM;
                              + NAMESPACE_PROPERTYNAME.getString());                expectedOriginRole =
     }                    INSTALLEDSOFTWAREIDENTITY_PROPERTY_INSTALLEDSOFTWARE;
     String name;  
     propertyValue.get(name);  
     return(name);  
     //ATTN: KS Returns String whereas below returns CIMNamespaceName.  
 } }
             else if(originClassEnum == PG_COMPUTERSYSTEM)
 /* gets the key value for the __Namespace property "name"  
    from the instance provided. Sets childNamespaceName and  
    isRelativeName fields  
    This overload called if instance provided.  
 */  
 void _getKeyValue (  
     const CIMInstance& namespaceInstance,  
         CIMNamespaceName& childNamespaceName,  
         Boolean& isRelativeName)  
   
 { {
     //Validate key property                expectedTargetRole =
                     INSTALLEDSOFTWAREIDENTITY_PROPERTY_INSTALLEDSOFTWARE;
     Uint32 pos;                expectedOriginRole = INSTALLEDSOFTWAREIDENTITY_PROPERTY_SYSTEM;
     CIMValue propertyValue;  
   
     // [Key, MaxLen (256), Description (  
     //       "A string that uniquely identifies the Namespace "  
     //       "within the ObjectManager.") ]  
     // string Name;  
   
     pos = namespaceInstance.findProperty(NAMESPACE_PROPERTYNAME);  
     if (pos == PEG_NOT_FOUND)  
     {  
        throw CIMPropertyNotFoundException  
            (NAMESPACE_PROPERTYNAME.getString());  
     }     }
             break;
     propertyValue = namespaceInstance.getProperty(pos).getValue();        case PG_HOSTEDACCESSPOINT:
     if (propertyValue.getType() != CIMTYPE_STRING)            if(originClassEnum == PG_COMPUTERSYSTEM)
     {     {
        throw CIMInvalidParameterException("Invalid type for property: "                expectedTargetRole = PROPERTY_DEPENDENT;
                              + NAMESPACE_PROPERTYNAME.getString());                expectedOriginRole = PROPERTY_ANTECEDENT;
     }     }
             else if(originClassEnum == PG_CIMXMLCOMMUNICATIONMECHANISM)
     String cnsName;  
     propertyValue.get(cnsName);  
     childNamespaceName = CIMNamespaceName (cnsName);  
   
     isRelativeName = !(childNamespaceName.isNull());  
   
 }  
 /* gets the key value for the __Namespace property "name"  
    from the instance provided. Sets childNamespaceName and  
    isRelativeName fields  
    This overload called if object path provided.  
 */  
   
 void _getKeyValue (  
         const CIMObjectPath&  instanceName,  
         CIMNamespaceName& childNamespaceName,  
         Boolean& isRelativeName)  
 { {
                 expectedTargetRole = PROPERTY_ANTECEDENT;
     Array<CIMKeyBinding> kbArray = instanceName.getKeyBindings();                expectedOriginRole = PROPERTY_DEPENDENT;
     if ((kbArray.size() == 1) &&            }
             (kbArray[0].getName() == NAMESPACE_PROPERTYNAME))        case PG_HOSTEDOBJECTMANAGER:
             if(originClassEnum == PG_COMPUTERSYSTEM)
     {     {
        childNamespaceName = CIMNamespaceName (kbArray[0].getValue());                expectedTargetRole = PROPERTY_DEPENDENT;
        isRelativeName = !(childNamespaceName.isNull());                expectedOriginRole = PROPERTY_ANTECEDENT;
     }     }
     else            else if(originClassEnum == PG_OBJECTMANAGER)
     {     {
        throw CIMInvalidParameterException("Invalid key property:  ");                expectedTargetRole = PROPERTY_ANTECEDENT;
                 expectedOriginRole = PROPERTY_DEPENDENT;
     }     }
             break;
         default:
             break;
 } }
  
 /* generate the full namespace name from the parent and child  
    components  
    @param namespaceNames - List of all namespaces  
    @param parentNamespaceName  
    @param childNamespaceName  
    @param Boolean isrelative  
    @return full namespacename created from parent + child  
    Note that if isrelative is true, parent is tested for validty  
 */  
 CIMNamespaceName _generateFullNamespaceName(  
         Array<CIMNamespaceName>& namespaceNames,  
         CIMNamespaceName& parentNamespaceName,  
         CIMNamespaceName& childNamespaceName,  
         Boolean isRelativeName)  
   
 {  
     // If isRelativeName is true, then the parentNamespace  
     // MUST exist  
     //     //
     CIMNamespaceName fullNamespaceName;      // The rest of this method checks to see if target role and origin roles
       // were found for the association and origin class combination and, if
     if (isRelativeName)      // found, checks against the input target and origin roles if provided.
     {      // Failure for any of these tests points to an invalid association
       if (!_isNamespace(namespaceNames, parentNamespaceName))      // traversal request.
       {      //
          throw CIMObjectNotFoundException("Parent namespace does not exist: "      if(expectedTargetRole.isNull() ||
                                   + parentNamespaceName.getString());          expectedOriginRole.isNull())
       }  
       // Create full namespace name by prepending parentNamespaceName  
       fullNamespaceName = CIMNamespaceName (parentNamespaceName.getString()  
           + "/" + childNamespaceName.getString());  
     }  
     else  
     {     {
       fullNamespaceName = parentNamespaceName;          PEG_METHOD_EXIT();
     }          return false;
     return(fullNamespaceName);  
   
 } }
  
 //***************************************************************************      if(targetProperty.size() == 0)
 //  The following section is the Instance Operation processors  
 //***************************************************************************  
 //                createInstance  
 //***************************************************************************  
 void InteropProvider::createInstance(  
         const OperationContext & context,  
         const CIMObjectPath & instanceReference,  
     const CIMInstance& myInstance,  
         ObjectPathResponseHandler & handler)  
     {  
         PEG_METHOD_ENTER(TRC_CONTROLPROVIDER, "InteropProvider::createInstance()");  
   
         CIMNamespaceName childNamespaceName;  
         CIMNamespaceName newNamespaceName;  
         Boolean isRelativeName;  
         CDEBUG("CreateInstance " << instanceReference.toString());  
         // operation namespace needed internally to get class.  
         _operationNamespace = instanceReference.getNameSpace();  
   
         // Verify that ClassName is correct and get value  
         targetClass classEnum  = _verifyValidClassInput(instanceReference.getClassName());  
         CDEBUG("Class Validated");  
         String userName = _validateUserID(context);  
         CIMObjectPath newInstanceReference;  
         CDEBUG("UserIDValidated");  
         if ((classEnum == CIM_OBJECTMANAGER) ||  
             (classEnum == CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM)||  
             (classEnum == CIM_CIMXMLCOMMUNICATIONMECHANISM))  
             throw CIMNotSupportedException("InteropProvider, Create Not allowed");  
   
         CDEBUG("CreateInstance: No test for CIM_NamepsaceClass");  
         if (classEnum == CIM_NAMESPACE)  
         {  
             CDEBUG("Create Class from CIM_Namespace");  
   
             // Validate that keys are as required. Does its own exception.  
             _validateCIMNamespaceKeys(myInstance);  
             CDEBUG("_validateCIMNamespaceKeys passed");  
             String namespaceName;  
             newNamespaceName = _getKeyValue(myInstance, CIM_NAMESPACE_PROPERTY_NAME);  
             CDEBUG("CreateInstance: rtn form _getKeyValue ");  
   
             CIMInstance instance = _buildInstanceCIMNamespace(namespaceName);  
             CDEBUG("CreateInstance:Rtn from _BuildInstanceCIMNamespace for namespace= " << namespaceName);  
             newInstanceReference = _buildInstancePath(CIMNamespaceName(namespaceName),  
                                         CIM_NAMESPACE_CLASSNAME, instance);  
             CDEBUG("CreateInstance:Go to common create functions");  
         }  
   
         else   // Process the __Namespace request to get namespace name value  
         {  
             CDEBUG("CreateInstance: Fell through to __Namespace processing");  
             _getKeyValue(myInstance, childNamespaceName, isRelativeName);  
             CIMNamespaceName parentNamespaceName = instanceReference.getNameSpace();  
   
             PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                "childNamespaceName = " + childNamespaceName.getString() +  
                ", isRelativeName = " +  
                (isRelativeName?String("true"):String("false")) +  
                ", parentNamespaceName = " + parentNamespaceName.getString());  
             CDEBUG("__Namespace Process. parent= " << parentNamespaceName.getString() );  
             Array<CIMNamespaceName> namespaceNames;  
             namespaceNames = _enumerateNameSpaces();  
   
             newNamespaceName = _generateFullNamespaceName(  
                 namespaceNames, parentNamespaceName,  
                          childNamespaceName, isRelativeName);  
   
             // return key (i.e., CIMObjectPath) for newly created namespace  
   
             Array<CIMKeyBinding> keyBindings;  
             keyBindings.append(CIMKeyBinding(NAMESPACE_PROPERTYNAME,  
                  isRelativeName?childNamespaceName.getString():  
                                     parentNamespaceName.getString(),  
                                          CIMKeyBinding::STRING));  
             //Add namespace class and keybindings  
             newInstanceReference.set(String::EMPTY, parentNamespaceName,  
                                          __NAMESPACE_CLASSNAME, keyBindings);  
         }  
         // Create the new namespace  
         try  
         {         {
             CDEBUG("Create namespace " << newNamespaceName.getString());          targetProperty = expectedTargetRole.getString();
             PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                 "Namespace = " + newNamespaceName.getString() +  
                     " to be created.");  
   
             _repository->createNameSpace(newNamespaceName);  
   
             PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                 "Namespace = " + newNamespaceName.getString() +  
                     " successfully created.");  
             // ATTN: Add standardlog entry here.  
         }         }
         catch(CIMException& e)      else if(!expectedTargetRole.equal(targetProperty))
         {         {
            PEG_METHOD_EXIT();            PEG_METHOD_EXIT();
            throw e;          return false;
         }         }
         catch(Exception& e)  
       if(originProperty.size() == 0)
       {
           originProperty = expectedOriginRole.getString();
       }
       else if(!expectedOriginRole.equal(originProperty))
         {         {
            PEG_METHOD_EXIT();            PEG_METHOD_EXIT();
            throw e;          return false;
         }         }
  
         // begin processing the request  
         handler.processing();  
   
   
        handler.deliver(newInstanceReference);  
   
        // complete processing the request  
        handler.complete();  
   
        PEG_METHOD_EXIT();        PEG_METHOD_EXIT();
        return;      return true;
    }    }
  
 //***************************************************************************  //
 //                deleteInstance  // Local version of the references operation. It validates the input
 //***************************************************************************  // parameters, setting the origin and target property values if not set
 void InteropProvider::deleteInstance(  // already, and then performs an enumeration on the association class. It then
   // filters the results of that enumeration to see if one of the reference
   // properties matches the objectName parameter passed into the method. If so,
   // then it is added to the array of association instances to be returned.
   //
   Array<CIMInstance> InteropProvider::localReferences(
         const OperationContext & context,         const OperationContext & context,
         const CIMObjectPath & instanceName,      const CIMObjectPath & objectName,
         ResponseHandler & handler)      const CIMName & assocClass,
       String & originProperty,
       String & targetProperty,
       const CIMPropertyList & propertyList,
       const CIMName & targetClass)
     {     {
         PEG_METHOD_ENTER(TRC_CONTROLPROVIDER, "InteropProvider::deleteInstance");      PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,
         CDEBUG("deleteInstance" << instanceName.toString());          "InteropProvider::localReferences()");
         CIMNamespaceName childNamespaceName;  
         CIMNamespaceName deleteNamespaceName;  
         Boolean isRelativeName;  
   
         // Verify that ClassName is correct and get value  
         targetClass classEnum  = _verifyValidClassInput(instanceName.getClassName());  
   
         String userName = _validateUserID(context);  
   
         Array<CIMNamespaceName> namespaceNames;  
         namespaceNames = _enumerateNameSpaces();  
  
         if ((classEnum == CIM_OBJECTMANAGER) ||      Array<CIMInstance> instances;
             (classEnum == CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM)||      CIMName originClass = objectName.getClassName();
             (classEnum == CIM_CIMXMLCOMMUNICATIONMECHANISM))  
             throw CIMNotSupportedException("Delete Not allowed");  
  
         if (classEnum == CIM_NAMESPACE)      Array<CIMName> targetSubclasses;
       CIMNamespaceName lastTargetNamespace;
       CIMNamespaceName originNamespace(objectName.getNameSpace());
   
       // Check that the association traversal request is valid
       if(validAssocClassForObject(assocClass, objectName.getClassName(),
           originNamespace, originProperty, targetProperty))
       {
           // retrieve all of the association class instances
           Array<CIMInstance> localInstances = localEnumerateInstances(context,
               CIMObjectPath(hostName, originNamespace,
                   assocClass));
           // Filter the association class instances based on the origin instance
           // and other input parameters.
           for(Uint32 i = 0, n = localInstances.size(); i < n; ++i)
           {
               CIMInstance & currentInstance = localInstances[i];
               CIMObjectPath originPath = getRequiredValue<CIMObjectPath>(
                   currentInstance, originProperty);
               originPath.setNameSpace(objectName.getNameSpace());
               originPath.setHost(objectName.getHost());
               // Only include instances where the origin instance is present in
               // the association.
               if(originPath.identical(objectName))
               {
                   if(!targetClass.isNull())
                   {
                       // Have to check if the target reference is of the
                       // targetClass type. We first must determine all the
                       // possible subclasses of the targetClass in the target
                       // namespace.
                       CIMObjectPath targetPath = getRequiredValue<CIMObjectPath>(
                           currentInstance, targetProperty);
   
                       CIMNamespaceName targetNamespace(
                           targetPath.getNameSpace());
                       if(targetNamespace.isNull())
         {         {
             // validate requred keys.  Exception out if not valid                          targetNamespace = originNamespace;
             _validateCIMNamespaceKeys(instanceName);                          targetPath.setNameSpace(targetNamespace);
   
             deleteNamespaceName = _getKeyValue(instanceName, CIM_NAMESPACE_PROPERTY_NAME);  
             CDEBUG("Delete namespace = " << deleteNamespaceName );  
         }         }
         else  // Procesing for __namespace                      if(targetNamespace != lastTargetNamespace)
         {         {
                           try
            _getKeyValue(instanceName, childNamespaceName, isRelativeName);                          {
            CIMNamespaceName parentNamespaceName = instanceName.getNameSpace();                              targetSubclasses = repository->enumerateClassNames(
                                   targetNamespace, targetClass, true);
            PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                "childNamespaceName = " + childNamespaceName.getString() +  
                (isRelativeName?String("true"):String("false")) +  
                ", parentNamespaceName = " + parentNamespaceName.getString());  
   
            // begin processing the request  
   
            deleteNamespaceName = _generateFullNamespaceName(  
                namespaceNames, parentNamespaceName,  
                          childNamespaceName, isRelativeName);  
         }         }
                           catch(...)
             // ATTN: KS Why THis???  
         if (deleteNamespaceName.equal (ROOTNS))  
        {        {
            throw CIMNotSupportedException("root namespace cannot be deleted.");                              // If an exception was thrown during enumeration,
                               // then the base class didn't exist in the
                               // namespace, so the target instance retrieved
                               // must not match the targetClass parameter.
                               continue;
        }        }
                           targetSubclasses.append(targetClass);
            _repository->deleteNameSpace(deleteNamespaceName);                          lastTargetNamespace = targetNamespace;
   
            PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                "Namespace = " + deleteNamespaceName.getString() +  
                " successfully deleted.");  
   
        Logger::put(Logger::STANDARD_LOG, System::CIMSERVER, Logger::INFORMATION,  
            "Interop Provider Delete Namespace: $0",  
            deleteNamespaceName.getString());  
   
        handler.processing();  
   
        // complete processing the request  
        handler.complete();  
   
        PEG_METHOD_EXIT();  
        return ;  
     }     }
  
 //***************************************************************************                      // Try to find the targetPath's class in the search space
 //                getInstance                      CIMName targetPathClass = targetPath.getClassName();
 //***************************************************************************                      for(Uint32 j = 0, m = targetSubclasses.size(); j < m; ++j)
 void InteropProvider::getInstance(  
     const OperationContext & context,  
     const CIMObjectPath & instanceName,  
     const Boolean includeQualifiers,  
     const Boolean includeClassOrigin,  
     const CIMPropertyList & properatyList,  
     InstanceResponseHandler & handler)  
     {     {
         PEG_METHOD_ENTER(TRC_CONTROLPROVIDER, "InteropProvider::getInstance");                          if(targetPathClass == targetSubclasses[j])
   
         // Verify that ClassName is correct and get value  
         targetClass classEnum  = _verifyValidClassInput(instanceName.getClassName());  
   
         String userName = _validateUserID(context);  
   
         // begin processing the request  
         handler.processing();  
         if (classEnum == CIM_OBJECTMANAGER)  
         {         {
             CIMInstance instance = _buildInstanceCIMObjectManager();                              instances.append(currentInstance);
             handler.deliver(instance);                              break;
             handler.complete();  
             PEG_METHOD_EXIT();  
             return;  
         }         }
   
         if (classEnum == CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM)  
         {  
             // At this point there are no instances of this class.  
             // It is specialized to CIMXMLCommunicationMechanism  
             //CIMInstance instance = _buildInstancCIMObjectCommunicationMechanism();  
             //handler.deliver(instance);  
             handler.complete();  
             PEG_METHOD_EXIT();  
             return;  
         }         }
   
   
         if (classEnum == CIM_CIMXMLCOMMUNICATIONMECHANISM)  
         {  
             CIMInstance instance = _buildInstancCIMXMLCommunicationMechanism();  
             handler.deliver(instance);  
             handler.complete();  
             PEG_METHOD_EXIT();  
             return;  
   
         }         }
                   else
         // Get List of namespaces  
         Array<CIMNamespaceName> namespaceNames;  
         namespaceNames = _enumerateNameSpaces();  
         CIMInstance instance;  
   
   
         if (classEnum == CIM_NAMESPACE)  
         {  
             // Not clear what we have to take into account here.  
             // get the namespace from the name value.  
             // should check the other keys to see if valid.  
             CIMNamespaceName namespaceName;  
             namespaceName = _getKeyValue(instanceName, CIM_NAMESPACE_PROPERTY_NAME);  
             // ATTN: Why this CIMNamespaceName parentNamespaceName = instanceName.getNameSpace();  
   
             if (!_isNamespace(namespaceNames, namespaceName))  
             {             {
                 throw CIMObjectNotFoundException("Namespace does not exist: "                      instances.append(currentInstance);
                                      + namespaceName.getString());                  }
               }
             }             }
             PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                "Namespace = " + namespaceName.getString() + " successfully found.");  
             instance = _buildInstanceCIMNamespace(namespaceName);  
         }         }
         else  // processing for __Namespace  
         {  
             CIMNamespaceName childNamespaceName;  
             CIMNamespaceName getNamespaceName;  
             Boolean isRelativeName;  
   
             _getKeyValue(instanceName, childNamespaceName, isRelativeName);  
             CIMNamespaceName parentNamespaceName = instanceName.getNameSpace();  
   
             PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                "childNamespaceName = " + childNamespaceName.getString() +  
                (isRelativeName?String("true"):String("false")) +  
                ", parentNamespaceName = " + parentNamespaceName.getString());  
   
   
             getNamespaceName = _generateFullNamespaceName(  
                 namespaceNames, parentNamespaceName,  
                          childNamespaceName, isRelativeName);  
  
             // exception if not valid namespace      PEG_METHOD_EXIT();
             if (!_isNamespace(namespaceNames, getNamespaceName))      return instances;
             {  
               throw CIMObjectNotFoundException("Namespace deos not exist: "  
                                      + getNamespaceName.getString());  
             }             }
             PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                "Namespace = " + getNamespaceName.getString() +  
                    " successfully found.");  
  
             //Set name of class  
             CIMInstance instance(__NAMESPACE_CLASSNAME);  
  
             //             //
             // construct the instance  // Builds an instance of the class named className. Gets Class defintion and
   // fills in the correct properties from the class.  This requires a repository
   // getClass request for each instance built. The skeleton is built by
   // creating the instance and copying qualifiers and properties from
   // the class. Finally the instance is cloned to separate it from the
   // original objects.
   // NOTE: This is very inefficient for anything larger than a few instances.
   // We should separate the get from the createSkeleton.
   // @param className CIMName of the class for which the instance is to be built
   // @return CIMInstance of this class with properties complete.
   // @exception passes on any exceptions received from the repository request.
             //             //
             instance.addProperty(CIMProperty(NAMESPACE_PROPERTYNAME,  CIMInstance InteropProvider::buildInstanceSkeleton(
             isRelativeName?childNamespaceName.getString():        const CIMNamespaceName & nameSpace,
                               parentNamespaceName.getString()));        const CIMName& className,
             //instance.setPath(instanceName);        CIMClass& returnedClass)
        }  {
       PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,
        handler.deliver(instance);          "InteropProvider::_buildInstanceSkeleton()");
       // get class with lo = false, qualifier = true classorig = true
        // complete processing the request      returnedClass = repository->getClass(nameSpace,
        handler.complete();          className, false, true, true);
       CIMInstance skeleton = returnedClass.buildInstance(true,true,
           CIMPropertyList());
  
        PEG_METHOD_EXIT();        PEG_METHOD_EXIT();
        return ;      return skeleton;
     }     }
  
 //***************************************************************************  
 //                enumerateInstances  
 //***************************************************************************  
 void InteropProvider::enumerateInstances(  
     const OperationContext & context,  
     const CIMObjectPath & ref,  
     const Boolean includeQualifiers,  
     const Boolean includeClassOrigin,  
     const CIMPropertyList& propertyList,  
     InstanceResponseHandler & handler)  
     {  
         PEG_METHOD_ENTER(TRC_CONTROLPROVIDER, "InteropProvider::enumerateInstances()");  
         // Verify that ClassName is correct and get value  
  
         targetClass classEnum  = _verifyValidClassInput(ref.getClassName());  CIMInstance InteropProvider::buildDependencyInstance(
       const String & antecedentId,
       const CIMName & antecedentClass,
       const String & dependentId,
       const CIMName & dependentClass,
       const CIMClass & dependencyClass)
   {
       Array<CIMKeyBinding> dependentKeys;
  
         // operation namespace needed internally to get class.      dependentKeys.append(CIMKeyBinding(
         _operationNamespace = ref.getNameSpace();          COMMON_PROPERTY_INSTANCEID,
         //String userName = _validateUserID(context);          dependentId,CIMKeyBinding::STRING));
  
         // The following 3 classes deliver a single instance because      return buildDependencyInstanceFromPaths(
         // that is all there is today.          buildDependencyReference(hostName, antecedentId, antecedentClass),
         if (classEnum == CIM_OBJECTMANAGER)          buildDependencyReference(hostName, dependentId, dependentClass),
         {          dependencyClass);
             CIMInstance instance = _buildInstanceCIMObjectManager();  
             handler.deliver(instance);  
             handler.complete();  
             PEG_METHOD_EXIT();  
             return;  
         }         }
  
         if (classEnum == CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM)  void InteropProvider::initProvider()
         {         {
             // At this point there are instances of this class.  It is specialized      if(providerInitialized)
             // to the CIMXMLCommunicationMechanism class.  
             //CIMInstance instance = _buildInstancCIMObjectCommunicationMechanism();  
             //handler.deliver(instance);  
             handler.complete();  
             PEG_METHOD_EXIT();  
             return;             return;
         }      // Placed METHOD_ENTER trace statement after checking whether the
       // provider is initialized because this method will be called for every
       // operation through the InteropProvider, and this method is only
       // interesting the first time it is successfully run.
       PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,
           "InteropProvider::initProvider()");
  
         if (classEnum == CIM_CIMXMLCOMMUNICATIONMECHANISM)      AutoMutex lock(interopMut);
       if(!providerInitialized)
         {         {
             CIMInstance instance = _buildInstancCIMXMLCommunicationMechanism();          //
             handler.deliver(instance);          // Initialize the object manager instance for the CIM Server, and
             handler.complete();          // retrieve the object manager's name property. This is retrieved once
             PEG_METHOD_EXIT();          // and stored for use in constructing other instances requiring its
             return;          // value.
           //
         }          CIMInstance objectManager = getObjectManagerInstance();
           objectManager.getProperty(objectManager.findProperty(
         // ATTN: Fix this up.  should not be here.              OM_PROPERTY_NAME)).getValue().get(objectManagerName);
         CIMNamespaceName parentNamespaceName = ref.getNameSpace();  
   
         // ATTN KS Fix this so references both types of namespace  
         PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
            "parentNamespaceName = " + parentNamespaceName.getString());  
   
         // begin processing the request  
         handler.processing();  
   
         Array<CIMNamespaceName> namespaceNames = _enumerateNameSpaces();  
  
         Array<CIMInstance> instanceArray;          //
         CDEBUG("Found " << namespaceNames.size() << " namespaces.");          // Determine whether the CIMOM should be gathering statistical data
         // Build response objects based on class requested          // based on the GatherStatisticalData property in the object manager.
         for (Uint32 i = 0; i < namespaceNames.size(); i++)          //
           Uint32 gatherDataIndex = objectManager.findProperty(
               OM_PROPERTY_GATHERSTATISTICALDATA);
           if(gatherDataIndex != PEG_NOT_FOUND)
         {         {
             CDEBUG("For namespace' " << namespaceNames[i].getString());              CIMConstProperty gatherDataProp =
             CDEBUG("Evaluate ClassEnum" << classEnum);                  objectManager.getProperty(gatherDataIndex);
             if (classEnum == CIM_NAMESPACE)              if (gatherDataProp.getType() == CIMTYPE_BOOLEAN)
             {             {
                 CDEBUG("Evaluate CIM_Namespace" << classEnum);                  CIMValue gatherDataVal  = gatherDataProp.getValue();
                 // Create a valid CIM_Namespace Instance                  if (!gatherDataVal.isNull())
                 CIMInstance instance = _buildInstanceCIMNamespace(namespaceNames[i]);  
                 instanceArray.append(instance);  
   
                 PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                 "Namespace = " + namespaceNames[i].getString());  
   
             }  
             else // the else covers __NAMESPACE  
             {             {
                 // Build the instances. For now simply build the __Namespace instances                      Boolean gatherData;
                 // the only property is name.                      gatherDataVal.get(gatherData);
                 if (_isChild(parentNamespaceName, namespaceNames[i]))                      if (gatherData == true)
                 {                 {
                     CIMInstance instance(__NAMESPACE_CLASSNAME);                          StatisticalData* sd = StatisticalData::current();
                     instance.addProperty(                          sd->setCopyGSD(true);
                         (CIMProperty(NAMESPACE_PROPERTYNAME,  
                         namespaceNames[i].getString().subString  
                             (parentNamespaceName.getString().size()+1,  
                             namespaceNames[i].getString().size()-  
                         parentNamespaceName.getString().size()-1))));  
   
                     instanceArray.append(instance);  
   
                     //instance.setPath(instanceName);  
                     PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                     "childNamespace = " + namespaceNames[i].getString());  
                 }                 }
             }             }
         }         }
         handler.deliver(instanceArray);  
   
         // complete processing the request  
         handler.complete();  
   
         PEG_METHOD_EXIT();  
     }     }
  
 //***************************************************************************          // Cache this class definition for use later.
 //                enumerateInstanceNames          profileCapabilitiesClass = repository->getClass(
 //***************************************************************************              PEGASUS_NAMESPACENAME_INTEROP,
               PEGASUS_CLASSNAME_PG_PROVIDERPROFILECAPABILITIES,
               false, true, false);
  
 void InteropProvider::enumerateInstanceNames(          providerClassifications.append(Uint16(5)); // "Instrumentation"
         const OperationContext & context,  
         const CIMObjectPath & classReference,  
         ObjectPathResponseHandler & handler)  
     {  
         PEG_METHOD_ENTER(TRC_CONTROLPROVIDER,  
                 "InteropProvider::enumerateInstanceNames()");  
  
         // operation namespace needed internally to get class.          //
         _operationNamespace = classReference.getNameSpace();          // Initialize the namespaces so that all namespaces with the
           // CIM_ElementConformsToProfile class also have the
         targetClass classEnum  = _verifyValidClassInput(classReference.getClassName());          // PG_ElementConformsToProfile class. Needed in order to implement
           // the cross-namespace ElementConformsToProfile association in both
         String userName = _validateUserID(context);          // directions.
         // begin processing the request          //
         handler.processing();          Array<CIMNamespaceName> namespaceNames =
               repository->enumerateNameSpaces();
         // The following 3 classes deliver a single instance because          CIMClass conformsClass = repository->getClass(
         // that is all there is today.              PEGASUS_NAMESPACENAME_INTEROP,
         if (classEnum == CIM_OBJECTMANAGER)              PEGASUS_CLASSNAME_PG_ELEMENTCONFORMSTOPROFILE);
         {          CIMClass profileClass = repository->getClass(
             CIMInstance instance = _buildInstanceCIMObjectManager();              PEGASUS_NAMESPACENAME_INTEROP,
             CIMObjectPath ref = _buildInstancePath(CIMNamespaceName(),              PEGASUS_CLASSNAME_PG_REGISTEREDPROFILE);
                 CIM_OBJECTMANAGER_CLASSNAME, instance);          for(Uint32 i = 0, n = namespaceNames.size(); i < n; ++i)
             handler.deliver(ref);          {
             handler.complete();              // Check if the PG_ElementConformsToProfile class is present
             PEG_METHOD_EXIT();              CIMNamespaceName & currentNamespace = namespaceNames[i];
             return;  
         }  
  
         if (classEnum == CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM)              CIMClass tmpCimClass;
               CIMClass tmpPgClass;
               CIMClass tmpPgProfileClass;
               try
         {         {
             // At this point there are no instances of this class. It is specialized                  // Look for these classes in the same try-block since the
             // to CIMXMLCommunicationMechanism.                  // second depends on the first
             //CIMInstance instance = _buildInstancCIMObjectCommunicationMechanism();                  tmpCimClass = repository->getClass(currentNamespace,
             //CIMObjectPath ref = _buildInstancePath(CIMNamespaceName(),                      PEGASUS_CLASSNAME_CIM_ELEMENTCONFORMSTOPROFILE);
             //    CIM_OBJECTMANAGERCOMMUNICATIONMECHANISM_CLASSNAME, instance);                  tmpPgClass = repository->getClass(currentNamespace,
             //handler.deliver(ref);                      PEGASUS_CLASSNAME_PG_ELEMENTCONFORMSTOPROFILE);
             //handler.complete();  
             PEG_METHOD_EXIT();  
             return;  
         }         }
               catch(const Exception &)
   
         if (classEnum == CIM_CIMXMLCOMMUNICATIONMECHANISM)  
         {         {
             CIMInstance instance = _buildInstancCIMXMLCommunicationMechanism();  
             CIMObjectPath ref = _buildInstancePath(CIMNamespaceName(),  
                 CIM_CIMXMLCOMMUNICATIONMECHANISM_CLASSNAME, instance);  
             handler.deliver(ref);  
             handler.complete();  
             PEG_METHOD_EXIT();  
             return;  
   
         }         }
               try
   
         // ATTN: Move this trace  
         CIMNamespaceName parentNamespaceName = classReference.getNameSpace();  
         PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
            "parentNamespaceName = " + parentNamespaceName.getString());  
         CDEBUG("Enumerate Instance Names. ns = " << parentNamespaceName.getString());  
   
         // Get list of all namespaces  
         Array<CIMNamespaceName> namespaceNames = _enumerateNameSpaces();  
   
         // Build the cimObjectPath for each namespace found  
         for (Uint32 i = 0; i < namespaceNames.size(); i++)  
         {         {
             if (classEnum == CIM_NAMESPACE)                  tmpPgProfileClass = repository->getClass(currentNamespace,
                       PEGASUS_CLASSNAME_PG_REGISTEREDPROFILE);
               }
               catch(const Exception &)
             {             {
                   // Note: if any of the above three classes aren't found,
                 CDEBUG("Calling BuildInstancePath for "<< namespaceNames[i].getString() );                  // an exception will be thrown, which we can ignore since it's
                 CIMInstance instance = _buildInstanceCIMNamespace(namespaceNames[i]);                  // an expected case
                 CIMObjectPath ref = _buildInstancePath(CIMNamespaceName(namespaceNames[i]),                  // TBD: Log trace message?
                                             CIM_NAMESPACE_CLASSNAME, instance);  
   
                 handler.deliver(ref);  
   
                 PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                     "namespace = " + namespaceNames[i].getString());  
             }             }
             else  
               // If the CIM_ElementConformsToProfile class is present, but
               // the PG_ElementConformsToProfile or PG_RegisteredProfile
               // class is not, then add it to that namespace.
               //
               // Note that we don't have to check for the
               // CIM_RegisteredProfile class because if the
               // CIM_ElementConformsToProfile class is present, the
               // CIM_RegisteredProfile class must also be present.
               if(!tmpCimClass.isUninitialized())
             {             {
                 Array<CIMKeyBinding> keyBindings;                  if(tmpPgClass.isUninitialized())
                 // Build the __Namespace objectpath  
                 // Note that for the moment, the only property is name.  
                 if (_isChild(parentNamespaceName, namespaceNames[i]))  
                 {                 {
                     keyBindings.clear();                      CIMObjectPath newPath = conformsClass.getPath();
                       keyBindings.append(CIMKeyBinding(NAMESPACE_PROPERTYNAME,                      newPath.setNameSpace(currentNamespace);
                           namespaceNames[i].getString().subString                      conformsClass.setPath(newPath);
                           (parentNamespaceName.getString().size()+1,                      repository->createClass(currentNamespace,
                           namespaceNames[i].getString().size()-                          conformsClass);
                           parentNamespaceName.getString().size()-1),  
                           CIMKeyBinding::STRING));  
   
                       CIMObjectPath ref(String::EMPTY, parentNamespaceName,  
                       __NAMESPACE_CLASSNAME, keyBindings);  
   
                       handler.deliver(ref);  
                       PEG_TRACE_STRING(TRC_CONTROLPROVIDER, Tracer::LEVEL4,  
                           "childNamespace = " + namespaceNames[i].getString());  
                 }                 }
                   if(tmpPgProfileClass.isUninitialized())
                   {
                       CIMObjectPath newPath = conformsClass.getPath();
                       newPath.setNameSpace(currentNamespace);
                       conformsClass.setPath(newPath);
                       repository->createClass(currentNamespace,
                           profileClass);
             }             }
         }         }
   
         handler.complete();  
   
         PEG_METHOD_EXIT();  
     }  
   
   
 //**************************************************************  
 //**************************************************************  
 // Association Functions  
 //**************************************************************  
 //**************************************************************  
   
 void InteropProvider::associators(  
         const OperationContext & context,  
         const CIMObjectPath & objectName,  
         const CIMName & associationClass,  
         const CIMName & resultClass,  
         const String & role,  
         const String & resultRole,  
         const Boolean includeQualifiers,  
         const Boolean includeClassOrigin,  
         const CIMPropertyList & propertyList,  
         ObjectResponseHandler & handler)  
 {  
         throw CIMNotSupportedException("AssociationProvider::associators");  
 } }
  
 void InteropProvider::associatorNames(          // Now cache the Registration info used for ElementConformsToProfile
         const OperationContext & context,          cacheProfileRegistrationInfo();
         const CIMObjectPath & objectName,  
         const CIMName & associationClass,  
         const CIMName & resultClass,  
         const String & role,  
         const String & resultRole,  
         ObjectPathResponseHandler & handler)  
 {  
         throw CIMNotSupportedException("AssociationProvider::associatorNames");  
 }  
  
 void InteropProvider::references(          providerInitialized = true;
         const OperationContext & context,  
         const CIMObjectPath & objectName,  
         const CIMName & resultClass,  
         const String & role,  
         const Boolean includeQualifiers,  
         const Boolean includeClassOrigin,  
         const CIMPropertyList & propertyList,  
         ObjectResponseHandler & handler)  
 {  
         throw CIMNotSupportedException("AssociationProvider::references");  
 } }
  
 void InteropProvider::referenceNames(      PEG_METHOD_EXIT();
         const OperationContext & context,  
         const CIMObjectPath & objectName,  
         const CIMName & resultClass,  
         const String & role,  
         ObjectPathResponseHandler & handler)  
 {  
         throw CIMNotSupportedException("AssociationProvider::referenceNames");  
 } }
  
 PEGASUS_NAMESPACE_END PEGASUS_NAMESPACE_END
 // END_OF_FILE  
   // END OF FILE


Legend:
Removed from v.1.5.2.2  
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  Added in v.1.66.4.1

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