/* * (non-Javadoc) * * @see * com.emc.storageos.volumecontroller.BlockStorageDevice#doWaitForSynchronized * (java.lang.Class, com.emc.storageos.db.client.model.StorageSystem, * java.net.URI, com.emc.storageos.volumecontroller.TaskCompleter) */ @Override public void doWaitForSynchronized( Class<? extends BlockObject> clazz, StorageSystem storageObj, URI target, TaskCompleter completer) { log.info("START waitForSynchronized for {}", target); try { Volume targetObj = dbClient.queryObject(Volume.class, target); // Source could be either Volume or BlockSnapshot BlockObject sourceObj = BlockObject.fetch(dbClient, targetObj.getAssociatedSourceVolume()); // We split the pair which causes the data to be synchronized. // When the split is complete that data is synchronized. HDSApiClient hdsApiClient = hdsApiFactory.getClient( HDSUtils.getHDSServerManagementServerInfo(storageObj), storageObj.getSmisUserName(), storageObj.getSmisPassword()); HDSApiProtectionManager hdsApiProtectionManager = hdsApiClient.getHdsApiProtectionManager(); String replicationGroupObjectID = hdsApiProtectionManager.getReplicationGroupObjectId(); ReplicationInfo replicationInfo = hdsApiProtectionManager.getReplicationInfoFromSystem( sourceObj.getNativeId(), targetObj.getNativeId()) .first; hdsApiProtectionManager.modifyShadowImagePair( replicationGroupObjectID, replicationInfo.getObjectID(), HDSApiProtectionManager.ShadowImageOperationType.split); // Update state in case we are waiting for synchronization // after creation of a new full copy that was not created // inactive. String state = targetObj.getReplicaState(); if (!ReplicationState.SYNCHRONIZED.name().equals(state)) { targetObj.setSyncActive(true); targetObj.setReplicaState(ReplicationState.SYNCHRONIZED.name()); dbClient.persistObject(targetObj); } // Queue job to wait for replication status to move to split. ControllerServiceImpl.enqueueJob( new QueueJob( new HDSReplicationSyncJob( storageObj.getId(), sourceObj.getNativeId(), targetObj.getNativeId(), ReplicationStatus.SPLIT, completer))); } catch (Exception e) { log.error("Exception occurred while waiting for synchronization", e); ServiceError serviceError = DeviceControllerException.errors.jobFailed(e); completer.error(dbClient, serviceError); } log.info("completed doWaitForSynchronized"); }
/* * (non-Javadoc) * * @see com.emc.storageos.volumecontroller.CloneOperations#createSingleClone( * com.emc.storageos.db.client.model.StorageSystem, java.net.URI, java.net.URI, * java.lang.Boolean, * com.emc.storageos.volumecontroller.TaskCompleter) */ @Override public void createSingleClone( StorageSystem storageSystem, URI sourceObject, URI cloneVolume, Boolean createInactive, TaskCompleter taskCompleter) { log.info("START createSingleClone operation"); boolean isVolumeClone = true; try { BlockObject sourceObj = BlockObject.fetch(dbClient, sourceObject); URI tenantUri = null; if (sourceObj instanceof BlockSnapshot) { // In case of snapshot, get the tenant from its parent volume NamedURI parentVolUri = ((BlockSnapshot) sourceObj).getParent(); Volume parentVolume = dbClient.queryObject(Volume.class, parentVolUri); tenantUri = parentVolume.getTenant().getURI(); isVolumeClone = false; } else { // This is a default flow tenantUri = ((Volume) sourceObj).getTenant().getURI(); isVolumeClone = true; } Volume cloneObj = dbClient.queryObject(Volume.class, cloneVolume); StoragePool targetPool = dbClient.queryObject(StoragePool.class, cloneObj.getPool()); TenantOrg tenantOrg = dbClient.queryObject(TenantOrg.class, tenantUri); // String cloneLabel = generateLabel(tenantOrg, cloneObj); CinderEndPointInfo ep = CinderUtils.getCinderEndPoint(storageSystem.getActiveProviderURI(), dbClient); log.info( "Getting the cinder APi for the provider with id " + storageSystem.getActiveProviderURI()); CinderApi cinderApi = cinderApiFactory.getApi(storageSystem.getActiveProviderURI(), ep); String volumeId = ""; if (isVolumeClone) { volumeId = cinderApi.cloneVolume( cloneObj.getLabel(), (cloneObj.getCapacity() / (1024 * 1024 * 1024)), targetPool.getNativeId(), sourceObj.getNativeId()); } else { volumeId = cinderApi.createVolumeFromSnapshot( cloneObj.getLabel(), (cloneObj.getCapacity() / (1024 * 1024 * 1024)), targetPool.getNativeId(), sourceObj.getNativeId()); } log.debug("Creating volume with the id " + volumeId + " on Openstack cinder node"); if (volumeId != null) { Map<String, URI> volumeIds = new HashMap<String, URI>(); volumeIds.put(volumeId, cloneObj.getId()); ControllerServiceImpl.enqueueJob( new QueueJob( new CinderSingleVolumeCreateJob( volumeId, cloneObj.getLabel(), storageSystem.getId(), CinderConstants.ComponentType.volume.name(), ep, taskCompleter, targetPool.getId(), volumeIds))); } } catch (InternalException e) { String errorMsg = String.format(CREATE_ERROR_MSG_FORMAT, sourceObject, cloneVolume); log.error(errorMsg, e); taskCompleter.error(dbClient, e); } catch (Exception e) { String errorMsg = String.format(CREATE_ERROR_MSG_FORMAT, sourceObject, cloneVolume); log.error(errorMsg, e); ServiceError serviceError = DeviceControllerErrors.cinder.operationFailed("createSingleClone", e.getMessage()); taskCompleter.error(dbClient, serviceError); } }
/** {@inheritDoc} */ @Override public void updateStatus(JobContext jobContext) throws Exception { JobStatus jobStatus = getJobStatus(); CloseableIterator<CIMObjectPath> volumeIter = null; try { DbClient dbClient = jobContext.getDbClient(); TaskCompleter completer = getTaskCompleter(); BlockSnapshot snapshot = dbClient.queryObject(BlockSnapshot.class, _snapshotURI); if (jobStatus == JobStatus.IN_PROGRESS) { return; } if (jobStatus == JobStatus.SUCCESS) { s_logger.info( "Post-processing successful link snapshot session target {} for task {}", snapshot.getId(), completer.getOpId()); // Get the snapshot session to which the target is being linked. BlockSnapshotSession snapSession = dbClient.queryObject(BlockSnapshotSession.class, completer.getId()); // Get the snapshot device ID and set it against the BlockSnapshot object. BlockObject sourceObj = BlockObject.fetch(dbClient, snapshot.getParent().getURI()); CIMConnectionFactory cimConnectionFactory = jobContext.getCimConnectionFactory(); WBEMClient client = getWBEMClient(dbClient, cimConnectionFactory); volumeIter = client.associatorNames(getCimJob(), null, SmisConstants.CIM_STORAGE_VOLUME, null, null); while (volumeIter.hasNext()) { // Get the sync volume native device id CIMObjectPath volumePath = volumeIter.next(); s_logger.info("volumePath: {}", volumePath.toString()); CIMInstance volume = client.getInstance(volumePath, false, false, null); String volumeDeviceId = volumePath.getKey(SmisConstants.CP_DEVICE_ID).getValue().toString(); s_logger.info("volumeDeviceId: {}", volumeDeviceId); if (volumeDeviceId.equals(sourceObj.getNativeId())) { // Don't want the source, we want the linked target. continue; } String volumeElementName = CIMPropertyFactory.getPropertyValue(volume, SmisConstants.CP_ELEMENT_NAME); s_logger.info("volumeElementName: {}", volumeElementName); String volumeWWN = CIMPropertyFactory.getPropertyValue(volume, SmisConstants.CP_WWN_NAME); s_logger.info("volumeWWN: {}", volumeWWN); String volumeAltName = CIMPropertyFactory.getPropertyValue(volume, SmisConstants.CP_NAME); s_logger.info("volumeAltName: {}", volumeAltName); StorageSystem system = dbClient.queryObject(StorageSystem.class, getStorageSystemURI()); snapshot.setNativeId(volumeDeviceId); snapshot.setNativeGuid(NativeGUIDGenerator.generateNativeGuid(system, snapshot)); snapshot.setDeviceLabel(volumeElementName); snapshot.setInactive(false); snapshot.setIsSyncActive(Boolean.TRUE); snapshot.setCreationTime(Calendar.getInstance()); snapshot.setWWN(volumeWWN.toUpperCase()); snapshot.setAlternateName(volumeAltName); snapshot.setSettingsInstance(snapSession.getSessionInstance()); commonSnapshotUpdate( snapshot, volume, client, system, sourceObj.getNativeId(), volumeDeviceId, false, dbClient); s_logger.info( String.format( "For target volume path %1$s, going to set blocksnapshot %2$s nativeId to %3$s (%4$s). Associated volume is %5$s (%6$s)", volumePath.toString(), snapshot.getId().toString(), volumeDeviceId, volumeElementName, sourceObj.getNativeId(), sourceObj.getDeviceLabel())); dbClient.updateObject(snapshot); } } else if (jobStatus == JobStatus.FAILED || jobStatus == JobStatus.FATAL_ERROR) { s_logger.info( "Failed to link snapshot session target {} for task {}", snapshot.getId(), completer.getOpId()); snapshot.setInactive(true); dbClient.updateObject(snapshot); } } catch (Exception e) { setPostProcessingErrorStatus( "Encountered an internal error in link snapshot session target job status processing: " + e.getMessage()); s_logger.error( "Encountered an internal error in link snapshot session target job status processing", e); } finally { if (volumeIter != null) { volumeIter.close(); } super.updateStatus(jobContext); } }
/** * Routine contains logic to create an export mask on the array * * @param workflow - Workflow object to create steps against * @param previousStep - [optional] Identifier of workflow step to wait for * @param device - BlockStorageDevice implementation * @param storage - StorageSystem object representing the underlying array * @param exportGroup - ExportGroup object representing Bourne-level masking * @param initiatorURIs - List of Initiator URIs * @param volumeMap - Map of Volume URIs to requested Integer HLUs * @param zoningStepNeeded - Not required ofr HDS * @param token - Identifier for the operation * @throws Exception */ public boolean determineExportGroupCreateSteps( Workflow workflow, String previousStep, BlockStorageDevice device, StorageSystem storage, ExportGroup exportGroup, List<URI> initiatorURIs, Map<URI, Integer> volumeMap, boolean zoningStepNeeded, String token) throws Exception { Map<String, URI> portNameToInitiatorURI = new HashMap<String, URI>(); List<URI> volumeURIs = new ArrayList<URI>(); volumeURIs.addAll(volumeMap.keySet()); Map<URI, URI> hostToExistingExportMaskMap = new HashMap<URI, URI>(); List<URI> hostURIs = new ArrayList<URI>(); List<String> portNames = new ArrayList<String>(); List<Initiator> initiators = _dbClient.queryObject(Initiator.class, initiatorURIs); // Populate the port WWN/IQNs (portNames) and the // mapping of the WWN/IQNs to Initiator URIs processInitiators(exportGroup, initiatorURIs, portNames, portNameToInitiatorURI, hostURIs); // We always want to have the full list of initiators for the hosts involved in // this export. This will allow the export operation to always find any // existing exports for a given host. queryHostInitiatorsAndAddToList(portNames, portNameToInitiatorURI, initiatorURIs, hostURIs); // Find the export masks that are associated with any or all the ports in // portNames. We will have to do processing differently based on whether // or there is an existing ExportMasks. Map<String, Set<URI>> matchingExportMaskURIs = device.findExportMasks(storage, portNames, false); if (matchingExportMaskURIs.isEmpty()) { _log.info( String.format( "No existing mask found w/ initiators { %s }", Joiner.on(",").join(portNames))); createNewExportMaskWorkflowForInitiators( initiatorURIs, exportGroup, workflow, volumeMap, storage, token, previousStep); } else { _log.info( String.format( "Mask(s) found w/ initiators {%s}. " + "MatchingExportMaskURIs {%s}, portNameToInitiators {%s}", Joiner.on(",").join(portNames), Joiner.on(",").join(matchingExportMaskURIs.values()), Joiner.on(",").join(portNameToInitiatorURI.entrySet()))); // There are some initiators that already exist. We need to create a // workflow that create new masking containers or updates masking // containers as necessary. // These data structures will be used to track new initiators - ones // that don't already exist on the array List<URI> initiatorURIsCopy = new ArrayList<URI>(); initiatorURIsCopy.addAll(initiatorURIs); // This loop will determine a list of volumes to update per export mask Map<URI, Map<URI, Integer>> existingMasksToUpdateWithNewVolumes = new HashMap<URI, Map<URI, Integer>>(); Map<URI, Set<Initiator>> existingMasksToUpdateWithNewInitiators = new HashMap<URI, Set<Initiator>>(); for (Map.Entry<String, Set<URI>> entry : matchingExportMaskURIs.entrySet()) { URI initiatorURI = portNameToInitiatorURI.get(entry.getKey()); Initiator initiator = _dbClient.queryObject(Initiator.class, initiatorURI); // Keep track of those initiators that have been found to exist already // in some export mask on the array initiatorURIsCopy.remove(initiatorURI); // Get a list of the ExportMasks that were matched to the initiator List<URI> exportMaskURIs = new ArrayList<URI>(); exportMaskURIs.addAll(entry.getValue()); List<ExportMask> masks = _dbClient.queryObject(ExportMask.class, exportMaskURIs); _log.info( String.format( "initiator %s masks {%s}", initiator.getInitiatorPort(), Joiner.on(',').join(exportMaskURIs))); for (ExportMask mask : masks) { // ExportMask is created using non-vipr. Set the mask name if it doesn't have. if (null == mask.getMaskName()) { String maskName = ExportMaskUtils.getMaskName(_dbClient, initiators, exportGroup, storage); _log.info("Generated mask name: {}", maskName); mask.setMaskName(maskName); } // Check for NO_VIPR. If found, avoid this mask. if (mask.getMaskName() != null && mask.getMaskName().toUpperCase().contains(ExportUtils.NO_VIPR)) { _log.info( String.format( "ExportMask %s disqualified because the name contains %s (in upper or lower case) to exclude it", mask.getMaskName(), ExportUtils.NO_VIPR)); continue; } _log.info( String.format( "mask %s has initiator %s", mask.getMaskName(), initiator.getInitiatorPort())); if (mask.getCreatedBySystem()) { _log.info( String.format( "initiator %s is in persisted mask %s", initiator.getInitiatorPort(), mask.getMaskName())); // We're still OK if the mask contains ONLY initiators that can be found // in our export group, because we would simply add to them. if (mask.getInitiators() != null) { for (String existingMaskInitiatorStr : mask.getInitiators()) { // Now look at it from a different angle. Which one of our export group initiators // are NOT in the current mask? And if so, if it belongs to the same host as an // existing one, // we should add it to this mask. Iterator<URI> initiatorIter = initiatorURIsCopy.iterator(); while (initiatorIter.hasNext()) { Initiator initiatorCopy = _dbClient.queryObject(Initiator.class, initiatorIter.next()); if (initiatorCopy != null && initiatorCopy.getId() != null && !mask.hasInitiator(initiatorCopy.getId().toString())) { Initiator existingMaskInitiator = _dbClient.queryObject( Initiator.class, URI.create(existingMaskInitiatorStr)); if (existingMaskInitiator != null && initiatorCopy.getHost() != null && initiatorCopy.getHost().equals(existingMaskInitiator.getHost())) { // Add to the list of initiators we need to add to this mask Set<Initiator> existingMaskInitiators = existingMasksToUpdateWithNewInitiators.get(mask.getId()); if (existingMaskInitiators == null) { existingMaskInitiators = new HashSet<Initiator>(); existingMasksToUpdateWithNewInitiators.put( mask.getId(), existingMaskInitiators); } existingMaskInitiators.add(initiatorCopy); initiatorIter .remove(); // remove this from the list of initiators we'll make a new // mask from } } } } } } else { // Insert this initiator into the mask's list of initiators managed by the system. // This will get persisted below. mask.addInitiator(initiator); if (!NullColumnValueGetter.isNullURI(initiator.getHost())) { hostToExistingExportMaskMap.put(initiator.getHost(), mask.getId()); } } // We need to see if the volume also exists the mask, // if it doesn't then we'll add it to the list of volumes to add. for (URI boURI : volumeURIs) { BlockObject bo = BlockObject.fetch(_dbClient, boURI); if (!mask.hasExistingVolume(bo)) { _log.info( String.format( "volume %s is not in mask %s", bo.getNativeGuid(), mask.getMaskName())); // The volume doesn't exist, so we have to add it to // the masking container. Map<URI, Integer> newVolumes = existingMasksToUpdateWithNewVolumes.get(mask.getId()); if (newVolumes == null) { newVolumes = new HashMap<URI, Integer>(); existingMasksToUpdateWithNewVolumes.put(mask.getId(), newVolumes); } // Check if the requested HLU for the volume is // already taken by a pre-existing volume. Integer requestedHLU = volumeMap.get(bo.getId()); StringMap existingVolumesInMask = mask.getExistingVolumes(); if (existingVolumesInMask != null && existingVolumesInMask.containsValue(requestedHLU.toString())) { ExportOrchestrationTask completer = new ExportOrchestrationTask(exportGroup.getId(), token); ServiceError serviceError = DeviceControllerException.errors.exportHasExistingVolumeWithRequestedHLU( boURI.toString(), requestedHLU.toString()); completer.error(_dbClient, serviceError); return false; } newVolumes.put(bo.getId(), requestedHLU); mask.addToUserCreatedVolumes(bo); } } // Update the list of volumes and initiators for the mask Map<URI, Integer> volumeMapForExistingMask = existingMasksToUpdateWithNewVolumes.get(mask.getId()); if (volumeMapForExistingMask != null && !volumeMapForExistingMask.isEmpty()) { mask.addVolumes(volumeMapForExistingMask); } Set<Initiator> initiatorSetForExistingMask = existingMasksToUpdateWithNewInitiators.get(mask.getId()); if (initiatorSetForExistingMask != null && initiatorSetForExistingMask.isEmpty()) { mask.addInitiators(initiatorSetForExistingMask); } updateZoningMap(exportGroup, mask); _dbClient.updateAndReindexObject(mask); // TODO: All export group modifications should be moved to completers exportGroup.addExportMask(mask.getId()); _dbClient.updateAndReindexObject(exportGroup); } } // The initiatorURIsCopy was used in the foreach initiator loop to see // which initiators already exist in a mask. If it is non-empty, // then it means there are initiators that are new, // so let's add them to the main tracker Map<URI, List<URI>> hostInitiatorMap = new HashMap<URI, List<URI>>(); if (!initiatorURIsCopy.isEmpty()) { for (URI newExportMaskInitiator : initiatorURIsCopy) { Initiator initiator = _dbClient.queryObject(Initiator.class, newExportMaskInitiator); List<URI> initiatorSet = hostInitiatorMap.get(initiator.getHost()); if (initiatorSet == null) { initiatorSet = new ArrayList<URI>(); hostInitiatorMap.put(initiator.getHost(), initiatorSet); } initiatorSet.add(initiator.getId()); _log.info( String.format( "host = %s, " + "initiators to add: %d, " + "existingMasksToUpdateWithNewVolumes.size = %d", initiator.getHost(), hostInitiatorMap.get(initiator.getHost()).size(), existingMasksToUpdateWithNewVolumes.size())); } } _log.info( String.format( "existingMasksToUpdateWithNewVolumes.size = %d", existingMasksToUpdateWithNewVolumes.size())); // At this point we have the necessary data structures populated to // determine the workflow steps. We are going to create new masks // and/or add volumes to existing masks. if (!hostInitiatorMap.isEmpty()) { for (URI hostID : hostInitiatorMap.keySet()) { // Check if there is an existing mask (created outside of ViPR) for // the host. If there is we will need to add these intiators // associated with that host to the list if (hostToExistingExportMaskMap.containsKey(hostID)) { URI existingExportMaskURI = hostToExistingExportMaskMap.get(hostID); Set<Initiator> toAddInits = new HashSet<Initiator>(); List<URI> hostInitaitorList = hostInitiatorMap.get(hostID); for (URI initURI : hostInitaitorList) { Initiator initiator = _dbClient.queryObject(Initiator.class, initURI); if (!initiator.getInactive()) { toAddInits.add(initiator); } } _log.info( String.format( "Need to add new initiators to existing mask %s, %s", existingExportMaskURI.toString(), Joiner.on(',').join(hostInitaitorList))); existingMasksToUpdateWithNewInitiators.put(existingExportMaskURI, toAddInits); continue; } // We have some brand new initiators, let's add them to new masks _log.info( String.format( "new export masks %s", Joiner.on(",").join(hostInitiatorMap.get(hostID)))); generateExportMaskCreateWorkflow( workflow, previousStep, storage, exportGroup, hostInitiatorMap.get(hostID), volumeMap, token); } } Map<URI, String> stepMap = new HashMap<URI, String>(); for (Map.Entry<URI, Map<URI, Integer>> entry : existingMasksToUpdateWithNewVolumes.entrySet()) { ExportMask mask = _dbClient.queryObject(ExportMask.class, entry.getKey()); Map<URI, Integer> volumesToAdd = entry.getValue(); _log.info( String.format( "adding these volumes %s to mask %s", Joiner.on(",").join(volumesToAdd.keySet()), mask.getMaskName())); stepMap.put( entry.getKey(), generateExportMaskAddVolumesWorkflow( workflow, null, storage, exportGroup, mask, volumesToAdd)); } for (Entry<URI, Set<Initiator>> entry : existingMasksToUpdateWithNewInitiators.entrySet()) { ExportMask mask = _dbClient.queryObject(ExportMask.class, entry.getKey()); Set<Initiator> initiatorsToAdd = entry.getValue(); List<URI> initiatorsURIs = new ArrayList<URI>(); for (Initiator initiator : initiatorsToAdd) { initiatorsURIs.add(initiator.getId()); } _log.info( String.format( "adding these initiators %s to mask %s", Joiner.on(",").join(initiatorsURIs), mask.getMaskName())); previousStep = stepMap.get(entry.getKey()) == null ? previousStep : stepMap.get(entry.getKey()); generateExportMaskAddInitiatorsWorkflow( workflow, previousStep, storage, exportGroup, mask, initiatorsURIs, null, token); } } return true; }