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Oracle® Communications Network Integrity Optical UIM Integration Cartridge Guide
Release 7.2.2

Part Number E35809-01
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7 About Design Studio Construction

This chapter describes how the Oracle Communications Network Integrity Optical UIM Integration cartridge is built from the Oracle Communications Design Studio perspective.

Model Collections

The Optical UIM Integration cartridge contains logical device and physical device specifications.

Table 7-1 displays the logical device specifications in the cartridge.

Table 7-1 Logical Device Specifications

Specification Name UIM Entity Type

Network Device

LogicalDevice

E1 Interface

DeviceInterface

E3 Interface

DeviceInterface

E4 Interface

DeviceInterface

STM-1 Interface

DeviceInterface

STM-4 Interface

DeviceInterface

STM-16 Interface

DeviceInterface

STM-64 Interface

DeviceInterface

VC4 Interface

DeviceInterface

VC3 Interface

DeviceInterface

VC12 Interface

DeviceInterface


Table 7-2 displays the physical device specifications in the cartridge.

Table 7-2 Physical Device Specifications

Specification Name UIM Entity Type

Huawei OptiX OSN 3500

PhysicalDevice

Huawei OptiX OSN 3500 Shelf

Equipment (Shelf)

Huawei OptiX OSN 3500 Auxiliary Slot

EquipmentHolder

Huawei OptiX OSN 3500 Fan Slot

EquipmentHolder

Huawei OptiX OSN 3500 Slot

EquipmentHolder

Huawei OptiX OSN 3500 GSCC Slot

EquipmentHolder

Huawei OptiX OSN 3500 Power Interface Unit Slot

EquipmentHolder

Huawei OptiX OSN 3500 XCS Slot

EquipmentHolder

Huawei OptiX OSN AUX

Equipment (Card)

Huawei OptiX OSN D12S

Equipment (Card)

Huawei OptiX OSN D34S

Equipment (Card)

Huawei OptiX OSN EU08

Equipment (Card)

Huawei OptiX OSN FAN

Equipment (Card)

Huawei OptiX OSN FANA

Equipment (Card)

Huawei OptiX OSN FANB

Equipment (Card)

Huawei OptiX OSN GSCC

Equipment (Card)

Huawei OptiX OSN N1OU08

Equipment (Card)

Huawei OptiX OSN N1SLD64

Equipment (Card)

Huawei OptiX OSN N1SLH1

Equipment (Card)

Huawei OptiX OSN N1SLQ16

Equipment (Card)

Huawei OptiX OSN N1SLQ4

Equipment (Card)

Huawei OptiX OSN N2PQ1

Equipment (Card)

Huawei OptiX OSN N2PQ3

Equipment (Card)

Huawei OptiX OSN PIU

Equipment (Card)

Huawei OptiX OSN Q2PIU

Equipment (Card)

Huawei OptiX OSN Q2SLN

Equipment (Card)

Huawei OptiX OSN SCXL

Equipment (Card)

Huawei OptiX OSN SXCSA

Equipment (Card)

Huawei OptiX OSN T2SL64

Equipment (Card)

Huawei OptiX OSN UCXL

Equipment (Card)

Huawei OptiX OSN N1SL4

Equipment (Card)

Huawei OptiX OSN N1SL16

Equipment (Card)

Huawei OptiX OSN N1SL64

Equipment (Card)

Huawei OptiX OSN D12S Port

PhysicalPort

Huawei OptiX OSN N1OU08 Port

PhysicalPort

Huawei OptiX OSN N1SLD64 Port

PhysicalPort

Huawei OptiX OSN N1SLQ16 Port

PhysicalPort

Huawei OptiX OSN N1SLQ4 Port

PhysicalPort

Huawei OptiX OSN D34S Port

PhysicalPort

Huawei OptiX OSN EU08 Port

PhysicalPort

Huawei OptiX OSN N1SL4 Port

PhysicalPort

Huawei OptiX OSN N1SL16 Port

PhysicalPort

Huawei OptiX OSN N1SL64 Port

PhysicalPort


Logical Specification Lineage

This section describes the Device Interface specification hierarchy under a network device that supports the synchronous digital hierarchy (SDH). The discovered TMF814 logical device is mapped to these Logical Device specifications.

Figure 7-1 shows the Logical specification lineage.

Figure 7-1 Logical Specification Lineage

Shows Logical Specification lineage

Physical Specification Lineage

This section describes the Huawei Physical Device specification hierarchy. The discovered TMF814 physical device is mapped to these Physical Device and Equipment specifications. The device that has the TMF814 value <tmf:productName>OptiX OSN 3500</tmf:productName> is modeled physically.

The following example shows the Physical specification lineage:

Huawei OptiX OSN 3500 (Physical Device)
                        Huawei OptiX OSN 3500 Shelf (Equipment)
                                                                 Huawei OptiX OSN 3500 Auxiliary Slot (EquipmentHolder)
                                                                 Huawei OptiX OSN 3500 Fan Slot (EquipmentHolder)
                                                                                Huawei OptiX OSN 3500 Slot (EquipmentHolder)
                                                                                Huawei OptiX OSN 3500 GSCC Slot (EquipmentHolder)
                                                                                Huawei OptiX OSN 3500 Power Interface Unit Slot (EquipmentHolder)
                                                                                Huawei OptiX OSN 3500 XCS Slot (EquipmentHolder)

The cartridge is modeled using Studio for Inventory as well as a visual equipment model to represent the shelf and slots of the device.

Figure 7-2 shows the visual model of a Huawei slot distribution.

Figure 7-2 Visual Model of Huawei Slot Distribution

Shows the visual model of Huawei Slot Distribution

Table 7-3 shows how slots in a Huawei device are distributed.

Table 7-3 Huawei OptiX OSN Board Slot Range Distribution

Board Type Distributed Slot Ranges

Service interface boards

19 to 26 and 29 to 36

Service processing boards

1 to 8 and 11 to 17

XCS boards

9 to 10

GSCC boards

17 to 18 (slot 17 can also hold a service processing board)

Power interface boards

27 to 28

Auxiliary interface boards

37


There are many different cards that the OSN 3500 can support. The Optical UIM Integration cartridge uses a subset of cards. You can add more cards by extending the cartridge. The cartridge also does not restrict placement of cards in specific slot types.

Actions

The following tables describe the Design Studio construction of actions and associated components in the Optical UIM Integration cartridge:

Note:

Parameter values are case-sensitive and must be entered in capital letters when commands are run from a command-line interface.

Table 7-4 describes how actions in the Optical UIM Integration cartridge are constructed in Design Studio.

Table 7-4 Design Studio Construction of Actions

Action Result Category Address Handler Scan Parameter Group Processors

Discover Enhanced Huawei U2000

Device

CorbaURLAddressHandler

TMF814 scan parameter group. See Table 7-5.

  • Processors inherited from the Discover Huawei U2000 action

  • Huawei Logical Device Remodeler

  • Huawei Physical Device Remodeler

Discover Enhanced TMF814

Device

CORBA Address Handler

TMF814 scan parameter group. See Table 7-5.

  • Processors inherited from the Discover TMF814 action

  • Logical Network Device Remodeler

UIM Detect Huawei Device Discrepancies

Device

N/A

N/A

  • Processors inherited from the Abstract Detect UIM Discrepancies action

  • Optical UIM Huawei DD Filters

UIM Detect TMF814 Device Discrepancies

Device

N/A

N/A

  • Processors inherited from the Abstract Detect UIM Discrepancies action

  • Optical UIM TMF DD Filters

Import Optical from UIM

Device

N/A

N/A

  • Processors inherited from the Abstract Import from UIM action

  • Scan Params Physical Optical UIM Init

Import Logical Optical from UIM

Device

N/A

N/A

  • Processors inherited from the Abstract Import from UIM action

  • Scan Parameters Optical UIM Initializer

Resolve Optical in UIM

Device

N/A

N/A

  • Processors inherited from the Abstract Resolve in UIM action


Scan Parameter Groups

Table 7-5 describes how scan parameter groups are configured in Design Studio.

Table 7-5 TMF814 Scan Parameters Group Design Studio Construction

Parameter Name Parameter Type Description UI Label

UserName

Text box

User name of the element management system (EMS) or network management system (NMS) used for getting details.

Username

Password

Secret text

Password of EMS or NMS system.

Password

EMSNamingService

Text box

EMS Naming Service

The EMS session factory CORBA object name.

EMS Naming Service

EMSNamingServiceFormat

Drop down

List: PLAIN, STRINGIFIED

The EMS session factory CORBA object name format.

EMS Naming Service Format

CollectEquipment

Drop down

List: TRUE, FALSE

Collect Equipment

CollectTP

Drop down

List: ALL, ONLY PTP, ONLY FTP, NONE

Collect Termination Points

CollectCTP

Drop down

List: CURRENT, IN USE, POTENTIAL, NONE

Collect Connection TP

EquipmentFetchSize

Text box

Number of equipment objects to fetch at a time for each EMS call.

Equipment Fetch Size

TPFetchSize

Text box

Number of contained TP objects to fetch at a time for each EMS call.

Termination Point Fetch Size

CTPCollectionDepth

Text box

The depth (level of children objects) to which contained TPs are collected.

Contained TP Collection Depth

ORBProperties

Text box

Semicolon-separated name/value pairs for ORB properties.

ORB Properties

ORBArguments

Text box

Semicolon-separated name/value pairs for ORB arguments.

ORB Arguments

ManagedElementName

Text box

Name of ME. This parameter works in combination with Managed Element Name Qualifier. This parameter helps to filter the scan.

Managed Element Name

ManagedElementNameQualifier

Drop down

List: EQUALS, EQUALS_IGNORE_CASE, CONTAINS, CONTAINS_IGNORE_CASE, STARTS_WITH, STARTS_WITH_IGNORE_CASE, ENDS_WITH, ENDS_WITH_IGNORE_CASE

This parameter works in combination with Managed Element Name to filter the collected MEs by name and qualifier.

Managed Element Name Qualifier

NetworkElementNames

Text Box

Name of NE. This parameter works in combination with Network Element Name Qualifier. This parameter helps to filter the scan.

Network Element Names

NetworkElementNameQualifier

Drop down

List: EQUALS, EQUALS_IGNORE_CASE, CONTAINS, CONTAINS_IGNORE_CASE, STARTS_WITH, STARTS_WITH_IGNORE_CASE, ENDS_WITH, ENDS_WITH_IGNORE_CASE COMMA_DELIMITED_NAMES, COMMA_DELIMITED_NAMES_IGNORE_CASE

This parameter works in combination with Network Element Name to filter the collected NEs by name and qualifier.

Network Element Name Qualifier

CrossConnectCollectionType

Drop down

List: USE_SNC, USE_ME_MANAGER, NONE

This parameter controls how cross-connects are collected. Select None to disable cross-connect collection.

Cross-connect Collection Type

TopologicalLinkCollectionType

Drop down

List: ALL, BETWEEN_SN, INSIDE_SN, NONE

This parameter controls how topological links are collected. Select None to disable topological link collection.

Topological Link Collection Type


Processors

Table 7-6 describes how processors are constructed in Design Studio.

Table 7-6 Design Studio Construction of Processors

Processor Variable

Huawei Logical Device Remodeler

Input:

  • customProperties

  • logicalTree

  • physicalTree

Output: N/A

Huawei Physical Device Remodeler

Input:

  • customProperties

  • logicalTree

  • physicalTree

  • managedElement

Output: N/A

Logical Network Device Remodeler

Input:

  • logicalTree

  • physicalTree

Output: N/A

Scan Parameters Optical UIM Initializer

Input:

  • filters

Output: N/A

Scan Parameters Physical Optical UIM Initializer

Input:

  • filters

Output: N/A

Optical UIM Huawei DD Filters

Input: N/A

Output: N/A

Optical UIM TMF DD Filters

Input: N/A

Output: N/A