Release Notes for Cisco ASR 9000 Series Routers, IOS XR Release 6.1.2
Note |
This software release has reached end-of-life status. For more information, see the End-of-Life and End-of-Sale Notices. |
Note |
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Cisco ASR 9000 Series Aggregation Services Routers (ASR 9000 Series) deliver unprecedented scale, service flexibility, and high availability for service providers’ fixed and mobile networks, data centers, and transport networks. The routers are powered by Cisco IOS XR Software, an innovative, self-healing, distributed operating system designed for always-on operation while scaling system capacity into multiple terabits per second (Tbps).
Cisco IOS XR Software is a distributed operating system designed for continuous system operation combined with service flexibility and higher performance.
This release notes describe the features provided in the Cisco IOS XR Software Release 6.1.2 for the Cisco ASR 9000 Series router. See the Software Features Introduced in Cisco IOS XR Software Release 6.1.2 section in this document for information about new features provided on the Cisco ASR 9000 Series.
From Release 6.1.1 onwards, Cisco introduces support for the 64 bit Linux-based IOS XR operating system. Extensive feature parity is maintained between legacy 32-bit and new 64 bit environments.
IOS XR 64 bit on ASR 9000 is the next generation IOS XR running in virtualized environment with underlying 64 bit Linux kernel. Cisco IOS XR operating system delivers greater agility, automation and simplicity, while reducing the cost of operating the networks. Here are a few key capabilities:
-
Flexible Packaging—Flexible packaging is an enhancement that modularizes and delivers the Cisco IOS XR operating system as RPM packages. The base software is becoming leaner that contains only required mandatory packages. Other optional packages are separated out and made available as individually installable RPM packages. Users have the flexibility to select and install the services they want by choosing relevant RPMs. Redhat Packet Manager (RPM) based delivery of packages enable easier and faster system updates.
-
Data Models—Data models are a programmatic and standards-based way of configuring and collecting operational data of a network device, replacing the process of manual configuration. Using Data models, Cisco IOS XR operating system supports the automating of configurations that belong to multiple routers across the network. Data models are written in a standard, industry-defined language, which can define a new configuration and state an existing configuration on a network. Cisco IOS XR supports the YANG data modeling language. YANG can be used with the Network Configuration Protocol (Netconf) or with gRPC (google-defined Remote Procedure Calls) to automate programmable network operations.
-
Application Hosting—Application hosting gives administrators a platform for leveraging their own tools and utilities. Cisco IOS XR supports third-party off-the-shelf applications built using Linux tool chains. Users can run custom applications cross-compiled with the software development kit that Cisco provides. Application hosting is offered in two variants: Native and Container. Cisco IOS XR uses a 64 bit Linux-based operating system that simplifies the integration of applications, configuration management tools, and industry-standard zero touch provisioning mechanisms to meet the DevOps style workflows for service providers.
-
Telemetry—Streaming telemetry lets users direct data to a configured receiver for analysis and troubleshooting purposes in order to maintain the health of the network. This is achieved by leveraging the capabilities of machine-to-machine communication. Tuning a network based on real-time data is crucial for seamless operation of the network. Instead of a pull model, using a push model to continuously stream data out of the network enhances the operational performance and reduces the troubleshooting time. Data can be pushed out at intervals determined by the administrator, at a cadence as low as 10 seconds. Using sophisticated algorithms, a back-end server can then analyze data received from the Cisco IOS XR operating system. The data can be encoded in JavaScript Object Notation (JSON) or Google Protocol Buffers (GPB). This analysis enables back-end management systems to measure and even predict control-plane and data-plane trends.
To migrate from Cisco IOS XR to Cisco IOS XR 64 bit operating system on the ASR 9000 series routers, see Migrating from IOS XR to IOS XR 64 Bit guide.
For a list of software caveats that apply to this Release, see the Caveats section. The caveats are updated for every release and are described at:
Supported Packages and System Requirements
This section describes the system requirements for Cisco ASR 9000 Series Aggregation Services Router Software Release 6.1.2
Feature Set Table
Cisco IOS XR
The Cisco ASR 9000 Series Aggregation Services Router Software is packaged in feature sets (also called software images). Each feature set contains a specific set of Cisco ASR 9000 Series Aggregation Services Router Software Release 6.1.2.
This table lists the Cisco ASR 9000 Series Aggregation Services Router Software feature set matrix (PX PIE files) and associated filenames available for the Cisco IOS XR Release 6.1.2 supported on the Cisco ASR 9000 Series Aggregation Services Router.
Composite Package |
||
Feature Set |
Filename |
Description |
Cisco IOS XR IP Unicast Routing Core Bundle |
asr9k-mini-px.pie-6.1.2 |
Contains the required core packages, including OS, Admin, Base, Forwarding, Modular Services Card, Routing, SNMP Agent, and Alarm Correlation. The mini pie file is used for upgrading to the new release |
Cisco IOS XR IP Unicast Routing Core Bundle |
asr9k-mini-px.vm-6.1.2 |
Contains the required core packages including OS, Admin, Base, Forwarding, Routing, SNMP Agent, Diagnostic Utilities, and Alarm Correlation. The mini VM file is used for turbobooting the device. |
Individually-Installable Optional Packages | ||
Feature Set |
Filename |
Description |
Cisco IOS XR Manageability Package |
asr9k-mgbl-px.pie-6.1.2 |
CORBA2 agent, XML3 Parser, and HTTP server packages. This PIE also contains some SNMP MIB infrastructure. Certain MIBs won't work if this PIE is not installed. IPSLA and environment MIBs are part of the mgbl pie. |
Cisco IOS XR CGv6 VSM Package |
asr9k-services-infra.pie- 6.1.2 |
Contains iso images and version details of System Admin Virtual Machine (VM) and Kernel-based Virtual Machine (KVM). |
Cisco IOS XR MPLS Package |
asr9k-mpls-px.pie-6.1.2 |
MPLS Traffic Engineering (MPLS-TE), Label Distribution Protocol (LDP), MPLS Forwarding, MPLS Operations, Administration, and Maintenance (OAM), Link Manager Protocol (LMP), Optical User Network Interface (OUNI), Resource Reservation Protocol (RSVP), and Layer-3 VPN. |
Cisco IOS XR Multicast Package |
asr9k-mcast-px.pie-6.1.2 |
Multicast Routing Protocols (PIM, Multicast Source Discovery Protocol [MSDP], Internet Group Management Protocol [IGMP], Auto-RP), Tools (SAP, MTrace), and Infrastructure [(Multicast Routing Information Base [MRIB], Multicast-Unicast RIB [MURIB], Multicast forwarding [MFWD]), and Bidirectional Protocol Independent Multicast (BIDIR-PIM). |
Cisco IOS XR Advanced Video Package |
asr9k-video-px.pie-6.1.2 |
Software providing the vidmon and video quality monitoring feature for Cisco ASR 9000 Series Router chassis. |
Cisco IOS XR Optics Package |
asr9k-optic-px.pie-6.1.2 |
Firmware for the optics feature for Cisco ASR 9000 Series Aggregation Services Router Chassis. It enables Transport / OTN feature under interfaces. |
Cisco IOS XR FPD Package |
asr9k-fpd-px.pie-6.1.2 |
Firmware pie for all LC and RSP FPGAs and ASICs. |
Cisco IOS XR Services Package |
asr9k-services.pie-6.1.2 |
Includes binaries to support CGv6 on VSM. |
Cisco IOS XR Documentation Package |
asr9k-doc-px.pie-6.1.2 |
.man pages for Cisco IOS XR Software on the Cisco ASR 9000 Series Aggregation Services Router Chassis. |
Cisco IOS XR Satellite Package - ASR9000v |
asr9000v-nV-px.pie-6.1.2 |
Includes binaries to support Cisco ASR9000v Series Router Software and to support Cisco ASR 9000v Series Router as a satellite for Cisco ASR 9000 Series Router. |
Cisco IOS XR Satellite Package - NCS 5001 and 5002 |
asr9k-ncs500x-nV-px.pie-6.1.2 |
Includes binaries to support Cisco NCS 5001/5002 Series Router Software and to support Cisco NCS 5001/5002 Series Router as a satellite for Cisco ASR 9000 Series Router. |
Cisco IOS XR BNG Package |
asr9k-bng-px.pie-6.1.2 |
Includes binaries to support BNG features. |
Cisco IOS XR Lawful Intercept (LI) Package |
asr9k-li-px.pie-6.1.2 |
Includes LI software images. |
Cisco IOS XR Security Package |
asr9k-k9sec-px.pie-6.1.2 |
Support for Encryption, Decryption,, Secure Shell (SSH), Secure Socket Layer (SSL), and Public-key infrastructure (PKI). |
Note |
|
This table lists the Cisco IOS XR Software feature set matrix (TAR files) and associated filenames available for the Cisco IOS XR Software Release 6.1.2 supported on the Cisco ASR 9000 Series Aggregation Services Router.
Feature Set |
Filename |
Description |
---|---|---|
Cisco IOS XR IP/MPLS Core Software [for RSP440, RSP880 and RP systems] |
ASR9K-iosxr-px-6.1.2-turboboot.tar |
Contains only the mini.vm package. |
Cisco IOS XR IP/MPLS Core Software [for RSP440, RSP880 and RP systems] |
ASR9K-iosxr-px-6.1.2-pies.tar |
|
Cisco IOS XR IP/MPLS Core Software 3DES [for RSP-2, RSP440, RSP880 and RP systems] |
ASR9K-iosxr-px-6.1.2-k9-pies.tar |
|
Cisco IOS XR Bridge and SMUs |
ASR9k-iosxr-px-6.1.2-bridge_smus.tar |
Contains all bridge SMUs |
Cisco IOS XR 64 bit
From Release 6.1.2 onwards, Cisco introduces support for the 64-bit IOS XR operating system. The Cisco IOS XR 64 bit software is packaged in feature sets or also called software images.
This table lists the feature set matrix (ISO and RPM files) and associated filenames available for the Cisco IOS XR 64 bit Release supported on the Cisco ASR 9000 Series Aggregation Services Router.
Composite Package |
||
Feature Set |
Filename |
Description |
Cisco IOS XR 64-bit IP Unicast, Multicast, L2, L3 Routing Full Bundle |
asr9k-full-x64-6.1.2.iso |
|
Cisco IOS XR 64-bit IP Unicast, Multicast, L2, L3 Routing Full Bundle and Cisco IOS XR 64-bit Security Package |
asr9k-fullk9-x64-6.1.2.iso |
|
Cisco IOS XR IP Unicast Routing Core Bundle |
asr9k-mini-x64.iso-6.1.2.iso |
Contains the required core packages, including OS, Admin, Base,Forwarding, Modular Services Card, Routing, SNMP Agent, and Alarm Correlation. The mini iso file is used for upgrading to the new release |
Cisco IOS XR 64-bit IP Unicast Routing Core bundle and Cisco IOS XR Security Package |
asr9k-minik9-x64.iso-6.1.2.iso |
Contains the required core packages, including OS, Admin, Base,Forwarding, Modular Services Card, Routing, SNMP Agent, and Alarm Correlation. Support for Encryption, Decryption, SecureShell (SSH), SecureSocket Layer (SSL), and Public-key infrastructure (PKI). The mini iso file is used for upgrading to the new release. |
Individually-Installable Optional Packages | ||
Feature Set |
Filename |
Description |
Cisco IOS XR 64-bit EIGRP package |
asr9k-eigrp-x64-1.0.0.0-r612.x86_64.rpm |
Includes EIGRP protocol support software |
Cisco IOS XR 64-bit ISIS package |
asr9k-isis-x64-1.1.0.0-r612.x86_64.rpm |
Includes IS-IS Link state protocol support software |
Cisco IOS XR 64-bit OSPF package |
asr9k-ospf-x64-1.1.0.0-r612.x86_64.rpm |
Includes OSPF link state protocol support software |
Cisco IOS XR 64-bit M2M package |
asr9k-m2m-x64-2.0.0.0-r612.x86_64.rpm |
Machine to Machine communication software |
Cisco IOS XR Manageability Package |
asr9k-mgbl-x64-3.0.0.0-r612.x86_64.rpm |
CORBA2 agent, XML3 Parser, and HTTP server packages. This PIE also contains some SNMP MIB infrastructure. Certain MIBs won't work if this RPM is not installed. IPSLA and environment MIBs are part of the mgbl rpm. |
Cisco IOS XR 64-bit MPLS-TE and RSVP package |
asr9k-mpls-te-rsvp-x64-1.2.0.0-r612.x86_64.rpm |
MPLS Traffic Engineering (MPLS-TE), Resource Reservation Protocol (RSVP). |
Cisco IOS XR 64-bit MPLS Package |
asr9k-mpls-x64-2.1.0.0-r612.x86_64.rpm |
Label Distribution Protocol (LDP), MPLS Forwarding, MPLS Operations, Administration, and Maintenance (OAM), Link Manager Protocol (LMP), Optical User Network Interface (OUNI) and Layer-3 VPN. |
Cisco IOS XR 64-bit Multicast Package |
asr9k-mcast-x64-2.0.0.0-r612.x86_64.rpm |
Multicast Routing Protocols (PIM, Multicast Source Discovery Protocol [MSDP], Internet Group Management Protocol [IGMP], Auto-RP), Tools (SAP, MTrace), and Infrastructure [(Multicast Routing Information Base [MRIB], Multicast-Unicast RIB [MURIB], Multicast forwarding [MFWD]), and Bidirectional Protocol Independent Multicast (BIDIR-PIM). |
Cisco IOS XR 64-bit Optics Package |
asr9k-optic-x64-1.0.0.0-r612.x86_64.rpm |
Firmware for the optics feature for Cisco ASR 9000 Series Aggregation Services Router Chassis. It enables Transport / OTN feature under interfaces. |
Cisco IOS XR 64-bit Lawful Intercept (LI) Package |
asr9k-li-x64-1.1.0.0-r612.x86_64.rpm |
Includes LI software images. |
Cisco IOS XR Security Package |
asr9k-k9sec-x64-3.1.0.0-r612.x86_64.rpm |
Support for Encryption, Decryption,, Secure Shell (SSH), Secure Socket Layer (SSL), and Public-key infrastructure (PKI). |
Memory Requirements
Caution |
If you remove the media in which the software image or configuration is stored, the router may become unstable and fail. |
The minimum memory requirements for Cisco ASR 9000 Series Aggregation Services Router running Cisco IOS XR Software Release consist of the following:
-
minimum 16 GB memory on the RSP880, RSP880-LT, RP2, A99-RSP-TR and A99-RSP-SE
-
minimum 16 GB memory on the RP2 transport optimised (TR) variant and 32 GB memory on the RP2 service edge (SE) variant
-
minimum 2 GB compact flash on route switch processors (RSPs)
-
minimum 4 GB memory on the line cards (LCs) running Cisco IOS XR 32 bit image
-
minimum 8 GB memory on the line cards (LCs) running Cisco IOS XR 64 bit image
Supported Hardware
The following table lists the supported hardware components on the Cisco ASR 9000 Series Router and the minimum required software versions. For more information, see the Firmware Support section.
All hardware features are supported on Cisco IOS XR Software, subject to the memory requirements specified in the "Memory Requirements" section.
For information on the end-of-sale and end-of-life dates for the Cisco ASR 9000 Series Router hardware, refer to the End-of-Life and End-of-Sale Notices page.
Cisco ASR 9000 Series Aggregation Services Router Route Switch Processor Cards |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
ASR 9000 Route Switch Processor 5 for Service Edge |
A9K-RSP5-SE |
Not Supported |
Release 6.5.15 |
ASR 9000 Route Switch Processor 5 for Packet Transport |
A9K-RSP5-TR |
Not Supported |
Release 6.5.15 |
Cisco ASR 9000 Series Aggregation Services Router RSP4-S, Service Edge Optimized for ASR 9910 from Release 6.0.1. |
A99-RSP-SE |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router RSP4-S, Packet Transport Optimized for ASR 9910 from Release 6.0.1. |
A99-RSP-TR |
Release 6.0.1 |
Upcoming Release |
ASR9K Route Switch Processor with 880G/slot and 32 GB for Service Edge |
A9K-RSP880-SE |
Release 5.3.0 |
Release 6.1.2 |
ASR9K Route Switch Processor with 880G/slot and 16 GB for Packet Transport |
A9K-RSP880-TR |
Release 5.3.0 |
Release 6.1.2 |
ASR Route Processor 32 GB for Service Edge |
A99-RP2-SE |
Release 5.3.0 |
Release 6.1.2 |
ASR Route Processor 16 GB for Packet Transport |
A99-RP2-TR |
Release 5.3.0 |
Release 6.1.2 |
ASR 9001 Route Switch Processor 8 GB |
ASR9001-RP |
Release 4.2.1 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router Next Generation Route Switch Processor, Service Edge Optimized |
A9K-RSP-440-SE |
Release 4.2.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router Next Generation Route Switch Processor, Service Edge Optimized |
A9K-RSP-440-TR |
Release 4.2.0 |
Unsupported |
ASR 9900 Route Processor 12 GB for Service Edge |
ASR-9900-RP-SE |
4.3.2 |
Unsupported |
ASR 9900 Route Processor 6 GB for Packet Transport |
ASR-9900-RP-TR |
4.3.2 |
Unsupported |
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Series Aggregation Services Router 4-Slot |
|||
Cisco ASR 9000 Series Aggregation Services Router 4-Slot 2 Line Card Slot AC Chassis w/ PEM V2 |
ASR-9904-AC |
Release 5.1.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4-Slot 2 Line Card Slot DC Chassis w/ PEM V2 |
ASR-9904-DC |
Release 5.1.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4-Slot Fan Tray |
ASR-9904-FAN |
Release 5.1.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4-Slot Filter |
ASR-9904-FILTER |
Release 5.1.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4-Slot Baffle |
ASR-9904-BAFFLE |
Release 5.1.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 12-Slot |
|||
Cisco ASR 9000 Series Aggregation Services Router 12-Slot 10 Line Card Slot AC Chassis w/ PEM V2 |
ASR-9912-AC |
Release 4.3.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 12-Slot 10 Line Card Slot DC Chassis w/ PEM V2 |
ASR-9912-DC |
Release 4.3.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 12-Slot Fan Tray |
ASR-9912-FAN |
Release 4.3.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Fabric Card |
A99-SFC2 |
Release 5.3.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot 20 Line Card Slot AC Chassis w/ PEM V2 |
ASR-9922-AC |
Release 4.2.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot 20 Line Card Slot DC Chassis w/ PEM V2 |
ASR-9922-DC |
Release 4.2.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Accessory Kit with grounding locks, guide rails etc |
ASR-9922-ACC-KIT |
NA |
NA |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Accessory - Cover for Power Shelves and Modules |
ASR-9922-PWR-COV |
NA |
NA |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Air Reflector |
ASR-9922-AIRREF |
NA |
NA |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Accessory - Door (with lock) and Fan Tray Covers |
ASR-9922-DOOR |
NA |
NA |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Fan Tray |
ASR-9922-FAN |
Release 4.2.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Air Filter with Media, Center |
ASR-9922-FLTR-CEN |
Release 4.2.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Air Filter with Media, Left & Right |
ASR-9922-FLTR-LR |
Release 4.2.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Route Processor Filler |
ASR-9922-RP-FILR |
Release 4.2.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Route Processor 12GB for Service Edge |
ASR-9922-RP-SE |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Route Processor 6GB for Packet Transport |
ASR-9922-RP-TR |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Switch Fabric Card Slot Filler |
ASR-9922-SFC-FILR |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Switch Fabric Card/110G |
ASR-9922-SFC110 |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 22-Slot Version 2 Fan Tray |
ASR-9922-FAN-V2 |
Release 5.2.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 2-RU |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Series Aggregation Services Router 2RU |
ASR-9001 |
Release 4.2.1 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 2-Slot Fan Tray |
ASR-9001-FAN |
Release 4.2.1 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 2-Slot Line Card |
ASR-9001-LC |
Release 4.2.1 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router |
ASR-9001-TRAY |
Release 4.2.1 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot System |
ASR-9006-SYS |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot Fan Tray |
ASR-9006-FAN |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot Door Kit |
ASR-9006-DOOR |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot AC Chassis |
ASR-9006-AC |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot DC Chassis |
ASR-9006-DC |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot Air |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Series Aggregation Services Router 6-Slot Air Filter |
ASR-9006-FILTER |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot |
|||
Cisco ASR 9000 Series Aggregation Services Router 10-Slot System |
ASR-9010-SYS |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot Fan Tray |
ASR-9010-FAN |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot Door Kit |
ASR-9010-DOOR |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot AC Chassis |
ASR-9010-AC |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot DC Chassis |
ASR-9010-DC |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 2 Post Mounting Kit |
ASR-9010-2P-KIT |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregration Services Router 4 Post Mounting Kit |
ASR-9010-2P-KIT |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot Air |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot Air Filter |
ASR-9010-FILTER |
Release 3.7.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot External Exhaust Air Shaper |
ASR-9010-AIRSHPR |
NA |
NA |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot Air Inlet Grill |
ASR-9010-GRL |
NA |
NA |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot 21 RU |
|||
Cisco ASR 9000 Series Aggregation Services Router 10-Slot (9910) System |
ASR-9910 |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot(9910) Fan Tray |
ASR-9910-FAN |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot (9910) Accessory Kit |
ASR-9910-ACC-KIT |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot (9910) 4 Post Rack Mounting Kit |
ASR-9910-4P-KIT |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot (9910) 2 Post Rack Mounting Kit |
ASR-9910-2P-KIT |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot (9910) Air Reflector |
ASR-9910-AIRREF |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot (9910) Air Filter |
ASR-9910-FILTER |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 10-Slot (9910) Switch Fabric Card |
A99-SFC-S |
Release 6.0.1 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router Power |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Series Aggregation Services Router 2KW DC Power Module, version 2 |
PWR-2KW-DC-V2 |
Release 4.2.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 3KW AC Power Module, version 2 |
PWR-3KW-AC-V2 |
Release 4.2.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router AC Power Entry Module Version 2 |
A9K-AC-PEM-V2 |
Release 4.2.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router DC Power Entry Module Version 2 |
A9K-DC-PEM-V2 |
Release 4.2.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router Power Entry Module Version 2 Filler |
A9K-PEM-V2-FILR |
Release 4.2.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 1.5kW DC Power Module |
A9K-1.5KW-DC |
Release 3.7.2 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 2kW DC Power Module |
A9K-2KW-DC |
Release 3.7.2 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 3kW AC Power Module |
A9K-3KW-AC |
Release 3.7.2 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router AC Power Enclosure Module Version 3 |
A9K-AC-PEM-V3 |
Release 5.3.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router DC Power Enclosure Module Version 3 |
A9K-DC-PEM-V3 |
Release 5.3.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 6kW AC Power Module Version 3 |
PWR-6KW-AC-V3 |
Release 5.3.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4.4kW DC Power Module Version 3 |
PWR-4.4KW-DC-V3 |
Release 5.3.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router Line Cards |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
ASR 9900 8-port 100GE Service Edge optimized |
A99-8X100GE-SE |
Release 6.0.1 |
Release 6.1.2 |
ASR 9900 8-port 100GE Packet Transport optimized |
A99-8X100GE-TR |
Release 6.0.1 |
Release 6.1.2 |
ASR 9900 8-port 100GE Consumption Model |
A99-8X100GE-CM |
Release 6.0.1 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 12-Port 100-Gigabit Ethernet Line Card |
A99-12X100GE |
Release 6.0.1 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 12-port 100GE Ethernet Line card CM |
A99-12X100GE-CM |
Release 6.0.1 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 8-Port 100- Gigabit Ethernet, Consumption Model Optimized with CPAK |
A9K-8X100GE-CM |
Release 5.3.2 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 8-Port 100- Gigabit Ethernet, Service Edge Optimized |
A9K-8X100GE-SE |
Release 5.3.1 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 8-Port 100-Gigabit Ethernet, Packet Transport Optimized |
A9K-8X100GE-TR |
Release 5.3.1 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4--Port 100-Gigabit Ethernet, Service Edge Optimized |
A9K-4X100GE-SE |
Release 5.3.1 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4-Port 100- Gigabit Ethernet, Packet Transport Optimized |
A9K-4X100GE-TR |
Release 5.3.1 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 8-port High Density 100GE Ethernet Line Card, Service Edge Optimized |
A9K-8X100GE-L-SE |
Release 5.3.0 |
Release 6.1.2 |
Cisco ASR 9000 Series Aggregation Services Router 4-Port Ten Gigabit Ethernet + Cisco ASR 9000 Series Aggregation Services Router 16-Port Gigabit Ethernet, Packet Transport Optimized |
A9K-4T16GE-TR |
Release 5.3.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 4-Port Ten Gigabit Ethernet + Cisco ASR 9000 Series Aggregation Services Router 16-Port Gigabit Ethernet, Service Edge Optimized |
A9k-4T16GE-SE |
Release 5.3.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router Virtualized Services Module (VSM) line card |
A9K-VSM-500 |
Release 5.1.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 1-port 100GE, Service Edge Optimized |
A9K-1X100GE-SE |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 1-port 100GE, Packet Transport Optimized |
A9K-1X100GE-TR |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 36-port 10GE, Service Edge Optimized |
A9K-36X10GE-SE |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 36-port 10GE, Packet Transport Optimized LC |
A9K-36X10GE-TR |
Release 4.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router Line Card Filler |
A9K-LC-FILR |
Release 3.7.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 2-Port Hundred Gigabit Ethernet, Service Edge Optimized |
A9K-2X100GE-SE |
Release 4.2.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 2-Port Hundred Gigabit Ethernet, Packet Transport Optimized |
A9K-2X100GE-TR |
Release 4.2.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 24-Port Ten Gigabit Ethernet, Service Edge Optimized |
A9K-24X10GE-SE |
Release 4.2.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 24-Port Ten Gigabit Ethernet, Packet Transport Optimized |
A9K-24X10GE-TR |
Release 4.2.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 40-Port Ten Gigabit Ethernet, Packet Transport Optimized |
A9K-40GE-TR |
Release 5.2.2 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 40-Port Ten Gigabit Ethernet, Service Edge Optimized |
A9K-40GE-SE |
Release 5.2.2 |
Unsupported |
2-Port 100G + 20-Port 10 GE Combination IPoDWDM Line Card with CFP2 and SFP+, Packet Transport Optimized |
A9K-400GE-DWDM-TR |
Release 5.3.2 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router Modular Line Cards |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 Series Aggregation Services Router 200 Gigabit Modular Line Card, Packet Transport Optimized Cisco ASR 9000 Series Aggregation Services Router 200 Gigabit Modular Line Card, Service Edge Optimized |
A9K-MOD200-TR A9K-MOD200-SE |
Release 6.0.1 |
Release 6.3.1 |
Cisco ASR 9000 Modular 400G Consumption Model Line Card Bundle |
A9K-MOD400-CM-BUN |
Release 6.1.2 |
Upcoming Release |
Cisco ASR 9000 Modular 400G Consumption Model Line Card |
A9K-MOD400-CM |
Release 6.1.2 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 400 Gigabyte Modular Line Card, Service Edge Optimized |
A9K-MOD400-SE |
Release 5.3.2 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 400 Gigabyte Modular Line Card, Packet Transport Optimized |
A9K-MOD400-TR |
Release 5.3.2 |
Upcoming Release |
Cisco ASR 9000 Series Aggregation Services Router 80 Gig Modular Line Card, Service Edge Optimized |
A9K-MOD80-SE |
Release 4.2.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 80 Gig Modular Line Card, Packet Transport Optimized |
A9K-MOD80-TR |
Release 4.2.0 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 160 Gig Modular Line Card, Service Edge Optimized |
A9K-MOD160-SE |
Release 4.2.1 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router 160 Gig Modular Line Card, Packet Transport Optimized |
A9K-MOD160-TR |
Release 4.2.1 |
Unsupported |
Cisco ASR 9000 Series Aggregation Services Router Modular Port Adapters (MPAs) |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 20x10GE Consumption Model MPA |
A9K-MPA20X10GE-CM |
Release 6.1.2 |
Release 6.5.1 |
Cisco ASR 9000 2x100GE Consumption Model MPA |
A9K-MPA2X100GE-CM |
Release 6.1.2 |
Release 6.5.1 |
Cisco ASR 9000 Series Aggregation Services Router 1-port 100-Gigabit Modular Port Adapter |
A9K-MPA-1X100GE |
Release 6.0.1 |
Release 6.3.1 |
Cisco ASR 9000 Series Aggregation Services Router 2-port 100-Gigabit Modular Port Adapter |
A9K-MPA-2X100GE |
Release 6.0.1 |
Release 6.2.2 |
20-Port 10-Gigabit Ethernet Modular Port Adapter with SFP+ |
A9K-MPA-20x10GE |
Release 5.3.2 |
Release 6.2.1 |
Cisco ASR 9000 Series Aggregation Services Router 8-port 10GE Modular Port Adapter |
A9K-MPA-8X10GE |
Release 4.3.1 |
Release 6.3.2 |
Cisco ASR 9000 Series Aggregation Services Router 1-port 40GE Modular Port Adapter |
A9K-MPA-1X40GE |
Release 4.2.3 |
Release 6.3.1 |
Cisco ASR 9000 Series Aggregation Services Router 4-port 10GE Modular Port Adapter |
A9K-MPA-4X10GE |
Release 4.2.0 |
Release 6.2.1 |
Cisco ASR 9000 Series Aggregation Services Router 20-port 1GE Modular Port Adapter |
A9K-MPA-20X1GE |
Release 4.2.0 |
Release 6.2.1 |
Cisco ASR 9000 Series Aggregation Services Router 2-port 10GE Modular Port Adapter |
A9K-MPA-2X10GE |
Release 4.2.1 |
Release 6.3.2 |
Cisco ASR 9000 Series Aggregation Services Router 2-port 40GE Modular Port Adapter |
A9K-MPA-2X40GE |
Release 4.2.1 |
Release 6.3.1 |
Cisco ASR 9000v Satellite Shelf |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000v Satellite Shelf Version 2 DC power ANSI chassis |
A9KV-V2-DC-A= |
Release 5.2.2 |
Release 6.2.1 |
Cisco ASR 9000v Satellite Shelf Version 2 DC power chassis |
A9KV-V2-DC-E= |
Release 5.2.2 |
Release 6.2.1 |
Cisco ASR 9000v Satellite Shelf AC power chassis |
A9KV-V2-AC= |
Release 5.2.2 |
Release 6.2.1 |
Cisco ASR 9000v Satellite Shelf Version 2 Fan Tray |
A9KV-V2-FAN= |
Release 5.2.2 |
Release 6.2.1 |
Cisco NCS 5000 Satellite Shelf |
|||
Cisco NCS 5001 Series Router |
NCS-5001 |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5002 Series Router |
NCS-5002 |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5001 Router Accessory Kit |
NCS-5001-ACSR |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5002 Router Accessory Kit |
NCS-5002-ACSR |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5001 Router Fan Back to Front AirFlow |
NCS-5001-FN-BK |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5002 Router Fan Back to Front AirFlow |
NCS-5002-FN-BK |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5001 Air Filter Back to Front Airflow |
NCS-5001-FLT-BK |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5002 Air Filter Back to Front Airflow |
NCS-5002-FLT-BK |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5001 Fan Front to Back Airflow |
NCS-5001-FN-FR |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5002 Fan Front to Back Airflow |
NCS-5002-FN-FR |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5001 Air Filter Front to Back Airflow |
NCS-5001-FLT-FR |
Release 6.0.1 |
Release 6.2.1 |
Cisco NCS 5002 Air Filter Front to Back Airflow |
NCS-5002-FLT-FR |
Release 6.0.1 |
Release 6.2.1 |
Cisco ASR 9000 Series Aggregation Services Router SIP and SPA Cards |
|||
Component |
Part Number |
Support Initially Provided in IOS XR Release |
Support Initially Provided in IOS XR 64 bit Release |
Cisco ASR 9000 SIP-700 SPA interface processor |
A9K-SIP-700 |
Release 3.9.0 |
Unsupported |
2-Port Channelized OC-12/DS0 SPA |
SPA-2XCHOC12/DS0 |
Release 3.9.0 |
Unsupported |
1-Port Channelized OC48/STM16 DS3 SPA |
SPA-1XCHOC48/DS3 |
Release 4.0.1 |
Unsupported |
2-Port OC-48/STM16 SPA |
SPA-2XOC48POS/RPR |
Release 4.0.1 |
Unsupported |
Cisco 4-Port OC-12c/STM-4 POS SPA |
SPA-4XOC12-POS |
Release 6.4.2 |
Unsupported |
8-Port OC12/STM4 SPA |
SPA-8XOC12-POS |
Release 4.0.1 |
Unsupported |
1-Port OC-192/STM-64 POS/RPR SPA |
SPA-OC192POS-XFP |
Release 4.0.1 |
Unsupported |
4-Port Clear Channel T3/E3 SPA |
SPA-4XT3E3 |
Release 4.0.1 |
Unsupported |
2-Port Clear Channel T3/E3 SPA |
SPA-2XT3E3 |
Release 4.0.1 |
Unsupported |
1-Port Channelized OC-3/STM-1 SPA |
SPA-1XCHSTM1/OC3 |
Release 4.0.1 |
Unsupported |
4-Port OC-3/STM-1 POS SPA |
SPA-4XOC3 |
Release 4.0.1 |
Unsupported |
8-Port OC-3/STM-1 POS SPA |
SPA-8XOC3 |
Release 4.0.1 |
Unsupported |
4-Port Channelized T3 to DS0 SPA |
SPA-4XCT3/DS0 |
Release 4.1.0 |
Unsupported |
8-Port Channelized T1/E1 SPA |
SPA-8XCHT1/E1 |
Release 4.1.0 |
Unsupported |
1-Port and 3-Port Clear Channel OC-3 ATM SPA |
SPA-1/3XOC3ATM |
Release 4.2.0 |
Unsupported |
1-Port Clear Channel OC-12 ATM SPA |
SPA-1XOC12ATM |
Release 4.2.0 |
Unsupported |
1-Port Channelized OC-3 ATM CEoP SPA |
SPA-1XOC3-CE-ATM |
Release 4.2.0 |
Unsupported |
1000BASE-BX40-D for Single-Fiber Bidirectional Applications |
GLC-BX40-DA-I GLC-BX40-D-I |
Release 5.1.2 |
Release 6.3.2 |
1000BASE-BX40-U for Single-Fiber Bidirectional Applications |
GLC-BX40-U-I |
Release 5.1.2 |
Unsupported |
1000BASE-BX80-D for Single-Fiber Bidirectional Applications |
GLC-BX80-D-I |
Release 5.1.2 |
Unsupported |
1000BASE-BX80-U for Single-Fiber Bidirectional Applications |
GLC-BX80-U-I |
Release 5.1.2 |
Unsupported |
The Cisco 10GBASE Coarse Wavelength-Division Multiplexing (CWDM) Small Form-Factor Pluggable (SFP+) |
CWDM-SFP10G-1470 CWDM-SFP10G-1490 CWDM-SFP10G-1510 CWDM-SFP10G-1530 CWDM-SFP10G-1550 CWDM-SFP10G-1570 CWDM-SFP10G-1590 CWDM-SFP10G-1610 |
Release 5.2.2 |
Unsupported |
The Cisco Dense Wavelength-Division Multiplexing (DWDM) Tunable SFP+ 10 Gigabit Ethernet Transceiver Module |
DWDM-SFP10G-C |
Release 5.2.2 |
Unsupported |
1000BASE-TX Extended Temperature SFP |
GLC-TE |
Release 5.2.2 |
Release 7.0.1 |
10GBASE-DWDM single wavelength Edge Performance XFP , dual LC connector, individual wavelength pluggable module |
ONS-XC-10G-EPXX.Y |
Release 5.2.2 |
Unsupported |
10GBASE-DWDM single wavelength Edge Performance SFP+ pluggable module |
ONS-SC-10G-EPXX.Y |
Release 5.2.2 |
Unsupported |
Dual Rate SFP |
GLC-GE-DR-LX Dual Rate 100M/1G) |
Release 5.2.2 |
Unsupported |
1-Port 40G CPAK adapter module |
CVR-CPAK-QSFP40 |
Release 5.3.2 |
Unsupported |
Software Compatibility
Cisco IOS XR Software Release 6.1.2 is compatible with the following Cisco ASR 9000 Series Aggregation Services Router systems.
-
Cisco ASR 9900 Series Chassis
-
22-Slot (ASR-9922) Line Card Chassis
-
12-Slot (ASR-9912) Line Card Chassis
-
10-Slot (ASR-9910) Line Card Chassis
-
6-Slot (ASR-9906) Line Card Chassis
-
4-slot (ASR-9904) Line Card Chassis
-
1-Slot (ASR-9901) Line Card Chassis
-
-
Cisco ASR 9000 Series Chassis
-
10-Slot (ASR-9010) Line Card Chassis
-
6-Slot (ASR-9006) Line Card Chassis
-
1-Slot (ASR-9001) Line Card Chassis
-
For Cisco license support, please contact your Cisco Sales Representative or Customer Service at 800- 553-NETS (6387) or 408-526-4000. For questions on the program other than ordering, please send e-mail to: cwm-license@cisco.com.
Cisco ASR 9000 Series Aggregration Services Router Right-To-Use (RTU) Licensing
http://www.cisco.com/en/US/docs/routers/asr9000/hardware/Prodlicense/A9k-AIP-LIC-B.html
http://www.cisco.com/en/US/docs/routers/asr9000/hardware/Prodlicense/A9k-AIP-LIC-E.html
Note |
Layer 3 VPNs are only to be used after you have purchased a license. Cisco will enforce the RTU of L3VPNs in follow on releases. You should contact Cisco, or check the release notes for the follow on release before upgrading for directions on how to install the license as part of the upgrade - otherwise the L3VPN feature may be affected. |
The activation of VRF capability still requires the use of the appropriate per line card license (A9K-IVRF-LIC / A9K-AIP-LIC-B / A9K-AIP-LIC-E). Please contact your sales representative for more details.
Determining Installed Packages
To determine the version of Cisco IOS XR Software packages installed on your router, log in to the router and enter the show install commit summary command
Cisco IOS XR
RP/0/RSP0/CPU0:router# show install committed summary
Default Profile:
SDRs:
Owner
Committed Packages:
disk0:asr9k-9000v-nV-px-6.1.2
disk0:asr9k-bng-px-6.1.2
disk0:asr9k-doc-px-6.1.2
disk0:asr9k-fpd-px-6.1.2
disk0:asr9k-infra-test-px-6.1.2
disk0:asr9k-k9sec-px-6.1.2
disk0:asr9k-mcast-px-6.1.2
disk0:asr9k-mgbl-px-6.1.2
disk0:asr9k-mini-px-6.1.2
disk0:asr9k-mpls-px-6.1.2
disk0:asr9k-ncs500x-nV-px-6.1.2
disk0:asr9k-optic-px-6.1.2
disk0:asr9k-services-px-6.1.2
disk0:asr9k-video-px-6.1.2
Cisco IOS XR 64 bit
RP/0/RSP0/CPU0:router# show install committed summary
Node 0/RP0/CPU0 [RP]
Boot Partition: xr_lv74
Committed Packages: 12
asr9k-xr-6.1.2 version=6.1.2 [Boot image]
asr9k-m2m-x64-2.0.0.0-r612
asr9k-li-x64-1.1.0.0-r612
asr9k-optic-x64-1.0.0.0-r612
asr9k-eigrp-x64-1.0.0.0-r612
asr9k-isis-x64-1.1.0.0-r612
asr9k-ospf-x64-1.1.0.0-r612
asr9k-mpls-x64-2.1.0.0-r612
asr9k-mpls-te-rsvp-x64-1.2.0.0-r612
asr9k-mcast-x64-2.0.0.0-r612
asr9k-mgbl-x64-3.0.0.0-r612
asr9k-k9sec-x64-2.2.0.0-r612
Software Features Introduced in Cisco IOS XR Software Release 6.1.2
Platform Automated Monitoring
Platform Automated Monitoring (PAM) is a system monitoring tool integrated into Cisco IOS XR software image to monitor issues such as process crash, memory leak, CPU hog, tracebacks, syslog and disk usage. PAM is enabled by default on all Cisco IOS XR 64 bit platforms. When the PAM tool detects any of these system issues, it collects the required data to troubleshoot the issue, and generates a syslog message stating the issue. The auto-collected troubleshooting information is then stored as a separate file in harddisk:/cisco_support/ or in /misc/disk1/cisco_support/ directory.
For more information about this feature, see the Implementing Logging Services chapter in System Monitoring Configuration Guide for Cisco ASR 9000 Series Routers. For complete command reference, see the Logging Services Commands chapter in System Monitoring Command Reference for Cisco ASR 9000 Series Routers.
Prefix Suppression for OSPF
Transit-only networks that connect two routers are usually configured with routing IP addresses that are advertised in the Links State Advertisements (LSAs). However, these prefixes are not needed for data traffic. Suppressing these prefixes would reduce the number of links in LSAs, thereby improving convergence and also reducing the vulnerability of potential remote attacks. Prefixes can be suppressed for an OSPF process, an OSPF area, or for specific interfaces of a router. Prefix suppression is supported for OSPF and OSPFv3.
For more information, see the Configuring Prefix Suppression for OSPF and Configuring Prefix Suppression for OSPFv3 sections in the Cisco ASR 9000 Series Aggregation Services Router Routing Configuration Guide, Release 6.1.x
EVPN VXLAN Layer 2 Data Center Interconnect Gateway
The Cisco ASR 9000 Series Router serve as a Data Center Interconnect (DCI) Layer 2 gateway to provide Layer 2 connectivity between EVPN-VXLAN based data centers over a MPLS based L2VPN network. The data centers are connected through the intermediate service provider network. This feature provides redundancy, resiliency, and ease of provisioning.
For more information on this feature, see the Implementing VXLAN chapter in the Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide.
EVPN ESI Multipath
The Ethernet VPN (EVPN) Ethernet Segment Identifier (ESI) Multipath feature supports multi-path traffic to active-active dual-homed Top of Racks (TORs) and DCIs to provide redundant connectivity within the data center. ESI multi paths are discovered by ASR9k DCI router via EVPN signalling. The selection of path is based on Ethernet Segment Identifier (ESI) and EVPN instance (EVI).
For more information on this feature, see the Implementing VXLAN chapter in the Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide.
OpFlex
OpFlex is an open and extensible policy protocol used for transferring the policy information between a network policy controller such as the Cisco Application Policy Infrastructure Controller (APIC) and network element such as routers that are configured as Data Center Interconnect (DCI) gateway. The policies are distributed using the Cisco® Application Centric Infrastructure (ACI) infrastructure within the fabric to the spine nodes. The spine nodes send the policies to the DCI gateway through the OpFlex framework. Policies configure the DCI service for a given tenant on the DCI gateway.
For more information on this feature, see the Implementing DCI VXLAN Layer 3 Gateway chapter in the Cisco ASR 9000 Series Aggregation Services Router MPLS Layer 3 VPN Configuration Guide.
MACsec Technology as a Service
MACsec can now be deployed as a service for L2 and L3 VPN sessions over a provider network. This provides a mechanism to provide encryption/decryption service on the Provider-Edge router for selected traffic across the WAN.
For more information see Implementing MACsec Encryption chapter in the Cisco ASR 9000 Series Aggregation Services Router System Security Configuration Guide.
BNG Geo Redundancy Features
BNG geo redundancy supports these new features:
For more information about these features, see the BNG Geo Redundancy chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide. For complete command reference, see the Subscriber Commands chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Command Reference.
Active-active Session Support for Geo Redundancy
Active-active session support for BNG geo redundancy is an enhancement where a subscriber redundancy group (SRG) can be primary on a BNG node while being subordinate on the pair BNG node, and simultaneously another SRG can be primary on the pair BNG node while being subordinate on the primary BNG node. So, a BNG node can be a primary for one SRG and at the same time subordinate for another SRG. This feature provides better load balancing for subscriber sessions across both BNG nodes.
State Control Route for Geo Redundancy
State control route is a loss-of-signal (LOS) based solution for Broadband Network Gateway (BNG) geo redundancy, where the route advertisement to the core network is controlled based on the role of the subscriber redundancy group (SRG). Only a summary of subscriber routes from the primary SRG group get advertised to the core network with the help of routing protocols. The routes from the subordinate SRG are not advertised. When a switchover happens, the new subordinate SRG withdraws the previously advertised routes from the core. This solution provides a sub-second traffic convergence and prevents traffic back hole. This feature is mainly useful in BNG deployments where optical line terminals (OLTs) do not support access protocols (like BFDs, CFM, and so on) to detect link failures in the access or core network.
Subscriber Redundancy Group Revertive Timer
The subscriber redundancy group (SRG) revertive timer feature is an enhancement in BNG geo redundancy where, based on certain conditions, the primary BNG node for which the preferred role is set as primary, automatically regains the primary role (from subordinate role) after an SRG fail-over. An auto-revertive timer starts when the preferred primary BNG becomes subordinate due to SRG fail-over and when access-tracking and core-tracking are restored. When the timer expires, the preferred primary BNG regains the primary role. This switch back to the preferred primary role is required, as the new primary SRG may not be equipped to handle the entire subscriber load in the case of a fail-over.
Subscriber Redundancy Group-aware IPv6 Neighbor Discovery
Subscriber Redundancy Group-aware (SRG-aware) IPv6 Neighbor Discovery (ND) is an enhancement in BNG geo redundancy where, the Router Advertisement (RA) message in response to the IPv6 ND message for IPv6 deployments, is sent based on the SRG role of the parent interface. Only the primary node sends out RA message in response to the IPv6 ND message and brings up the session. The RS (Router Solicitation) or Neighbor Solicitation (NS) message is dropped on the subordinate node, but the sessions still come up in that subordinate node. That way, the routes are not advertised to the core from the standby node.
Peer-to-peer Traffic Flow with BNG Geo Redundancy
Peer-to-peer traffic flow is an enhancement in BNG Geo Redundancy where subscribers in different subscriber redundancy groups (SRGs) in the primary and subordinate nodes can send traffic to each other through the BNG nodes. This is feasible as the primary SRGs from both the BNG nodes advertise the respective summary routes to the core.
Accounting Trigger Cause for Geo Redundancy
A new Cisco-Attribute Value Pair (AVP), Acct-Trigger-Cause , is introduced to send the reason of accounting start and accounting stop messages triggered during an SRG switchover. The accounting stop record, sent from the old primary BNG node, and the accounting start record, sent from the new primary BNG node, specify the Acct-Trigger-Cause to be nas-switchover . This, in turn, helps the backend servers to identify the reason for the new accounting trigger thereby preventing the existing accounting records of the subscriber sessions from getting deleted.
BNG Smart Licensing
BNG supports Cisco Smart Software Licensing that provides a simplified way for the customers to purchase licenses and to manage them across their network. Smart licensing provides a customizable consumption-based model that aligns to the network growth of the customer. It also provides the flexibility to quickly modify or upgrade software feature configurations to deploy new services over time.
For more information about this feature, see the Broadband Network Gateway Overview chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide. For complete command reference, see the Subscriber Commands chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Command Reference.
BNG DIAMETER-Geo Redundancy Interworking
BNG extends the geo redundancy feature to support DIAMETER protocol for the northbound interfaces. DIAMETER being a stateful protocol, unlike RADIUS which is a stateless protocol, the northbound interface convergence with respect to the NASREQ, Gx and Gy applications is taken care in the case of BNG switchovers. This functionality is mainly useful for the back end servers to seamlessly maintain the subscriber accounting information of prepaid customers in the case of node fail overs.
For more information about this feature, see the BNG Geo Redundancy chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide. For complete command reference, see the DIAMETER Commands and Subscriber Commands chapters in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Command Reference.
BNG on Cisco NCS 5000 Series Router
BNG supports the use of Cisco NCS 5000 Series Router as a satellite.
For details on nV Satellite configuration, see nV System Configuration Guide for Cisco ASR 9000 Series Routers. For details on BNG configuration, see Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide.
BNG on Cisco ASR 9000 High Density 100GE Ethernet Line Card
BNG support is extended to these Cisco ASR 9000 High Density 100GE Ethernet line cards:
-
8-port 100GE, Service Edge Optimized Line Card
-
8-port 100GE, Packet Transport Optimized Line Card
For more details on hardware support on BNG , see the Broadband Network Gateway Overview chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide.
Send Rich DHCP Options from RADIUS to DHCP Server
Rich DHCP options are options derived from the RADIUS and some of these options enable customisation of benefits or services available to subscribers on a per-subscriber basis.
Rich DHCP option enhances the DHCPv4 server profile whereby BNG provides subscriber-based DHCP options to the client through DHCP messages. These options are retrieved by BNG as Cisco attribute-value pairs (AVPs) from the AAA server. Cisco AVP, dhcpv4-option , is used to send various DHCPv4 option types from the AAA server to the DHCP server.
Note |
Rich DHCP options are supported only on DHCP server profile. |
For more information about this feature, see the Establishing Subscriber Sessions chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide. For complete command reference, see the BNG DHCP Commands chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Command Reference.
The following figure illustrates that when multiple clients send DHCP requests to the DHCP server, unique and subscriber-based Rich DHCP Options are sent from the AAA server to the DHCP server.
The following figure illustrates that when multiple clients send DHCP requests to the DHCP proxy, unique and subscriber-based Rich DHCP Options are sent from the AAA server to the DHCP proxy. DHCP proxy sends the options to the DHCP server.
Note |
The numbers mentioned in parenthesis represent Option IDs. |
-
DHCPv4 options
-
-
Relay Agent Information (82)
-
Client Id (61)
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Address Request (50)
-
-
DHCPv6 options
-
Subscriber-ID (38)
-
Interface-ID (18)
-
DHCP Options Support for BNG DHCPv6 Proxy Mode
This is a DHCP enhancement where BNG DHCPv6 proxy supports addition of PPPoE attributes like Remote-Id, Circuit-Id and Username as DHCPv6 options in the Relay-forward message sent to the external DHCPv6 server. The DHCPv6 options are sent as Remote-Id, Interface-Id and Relay-Agent-Subscriber-Id respectively. The MAC-address can also be included as Link-layer Address option in Relay-forward message. These fields can then be used by the external DHCPv6 server while performing IPv6 prefix allocation for the end user. This feature helps in identifying subscribers based on the Interface-Id and Remote-Id attributes in PPPoE.
For more information about this feature, see the Establishing Subscriber Sessions chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide. For complete command reference, see the BNG DHCP Commands chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Command Reference.
DHCP Option 60 Filtering
DHCP option 60 filtering in BNG provides support to either block or allow subscribers based on the DHCPv4 option 60 (Vendor-Id or Class-Id) field. This feature provides administrator the flexibility to drop illegal clients (with Vendor-Id in the blocked list) at an early stage of DHCP session handling.
For more information about this feature, see the Establishing Subscriber Sessions chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide. For complete command reference, see the BNG DHCP Commands chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Command Reference.
DHCP Duplicate MAC Session With Exclude VLAN Option
From Cisco IOS XR Software Release 6.1.2 onwards, DHCP duplicate MAC session feature is enhanced with an option to exclude inner and outer VLANs from the client key. Only MAC and interface are used to form the client key. The exclude-vlan option is added to the duplicate-mac-allowed command to exclude the VLANs.
For more information about this feature, see the Establishing Subscriber Sessions chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Configuration Guide. For complete command reference, see the BNG DHCP Commands chapter in the Cisco ASR 9000 Series Aggregation Services Router Broadband Network Gateway Command Reference.
NSH Based Service Chaining
Network Services Header (NSH) is a technology to group (“service chain”) different applications running on physical appliances or as virtualized loads. It decouples the service topology from the actual network topology, offering a unified data plane.
NSH describes a sequence of service nodes that a packet must be routed prior to reaching its destination and adds this metadata information about the packet and/or service chain to an IP/MPLS packet.
For information about configuration procedures, see the Implementing NSH Based Service Chaining section in the Cisco ASR 9000 Series Aggregation Services Router IP Addresses and Services Configuration Guide, Release 6.1.x
For information about the commands, see the NSH Based Service Chaining Commands section in the IP Addresses and Services Command Reference for Cisco ASR 9000 Series Routers.
IPv6 Support for RFC 4191 and RFC 6106
RFC 4191: Using the Neighbour Discovery (ND) Router Advertisement (RA) messages, a host has a choice to select the default router based on the "router-preference" option.
RFC 6106: You can configure RA-based DNS in networks where an IPv6 host's address is auto-configured through IPv6 stateless address auto configuration and where there is either no DHCP IPv6 infrastructure or some hosts do not have a DHCP IPv6 client. IPv6 RA options also allow IPv6 routers to advertise a list of DNS recursive server addresses and a DNS search list to IPv6 hosts.
For information about configuration procedures, see the Implementing IPv6 Support for RFC 4191 and RFC 6106 section in the Cisco ASR 9000 Series Aggregation Services Router IP Addresses and Services Configuration Guide, Release 6.1.x
For information about the commands, see the Commands for IPv6 Support for RFC 4191 and RFC 6106 section in the IP Addresses and Services Command Reference for Cisco ASR 9000 Series Routers.
Native Image and SMU Push Support for Cisco NCS 5000 Series Satellites
Cisco ASR 9000 Series Router host supports the capability to push native Cisco NCS 5000 Series Satellite XR VM images and SMU fixes from the Cisco ASR 9000 Series Router host similar to satellite nV pie image upgrades from Cisco IOS XR Software Release 6.1.2 onwards.
This provides the flexibility of managing the software images and pies on the satellite and also offers the zero touch provisioning model of nV satellites. The commands can be run on the Cisco ASR 9000 Series Router host for addition and activation of both upgrade images and mandatory SMUs and this allows a fast turnaround time for any critical fixes on Cisco NCS 5000 Series Satellite.
For more information, see Cisco ASR 9000 Series Aggregation Services Router nV System Configuration Guide.
Support of 10x10G ICLs on Cisco NCS 5000 Series Satellites
A maximum of 10x10G ICL ports can be connected from the Cisco NCS 5000 Series Satellite to each of the Cisco ASR 9000 Series Router host in a Layer 1 Hub and Spoke topology (both single and dual head) using this feature. The ICLs could be either a 10G ICL or one of the 4x100G ICLs, amounting to a maximum of 10 physical links with each of the hosts.
The 10G ICLs have to be configured using the configurable fabric port feature. The 10x10G ICL links can be configured as members of a Bundle ICL or Physical ICL. If they are used as members of a Bundle ICL, then members must be distributed across NPs or line cards to achieve redundancy and overcome access port scale constraints. Furthermore, the bundle ICL can take up to 10x10G members and still have 100G links as ICLs in a mixed bundle and physical ICL connectivity for 10G to 100G fabric transitions for each of the hosts.
New feature support for nV satellites
On Cisco NCS 5000 Series Satellites the following features are supported:
-
Qos offload and
-
Fabric CFM for both physical and bundle ICLs and dual head topologies.
Similarly, fabric CFM on bundle ICLs in Layer 1 Hub and Spoke topology is supported for Cisco ASR 9000v Satellites.
For more information, see Cisco ASR 9000 Series Aggregation Services Router nV System Configuration Guide.
L2TPv3 over IPv4
Layer 2 Tunneling Protocol version 3 (L2TPv3) over IPv4 provides a dynamic mechanism for tunneling Layer 2 (L2) circuits across a packet-oriented data network, with multiple attachment circuits multiplexed over a single pair of IP address endpoints, using the L2TPv3 session ID as a circuit discriminator.
For more information, see Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide, Release 6.1.x. For complete command reference, see Cisco ASR 9000 Series Aggregation Services Router VPN and Ethernet Services Command Reference.
Note |
L2TPv3 over IPv4 feature is supported only on Cisco ASR 9000 High Density 100GE Ethernet line cards. |
Note |
nV satellite access interfaces do not support L2TPv3 over IPv4. |
Service Path Preference for L2VPN
Service Path Preference feature (SPP) helps control transport path for L2VPN services in traffic engineering (TE) tunnels. SPP feature provides a way for services to influence path selection while forwarding in Multiprotocol Label Switching (MPLS) networks. SPP is achieved by associating a control plane policy with a forward-class. SPP is supported for per-service path selection for VPLS with BGP AD, and EVI for PBB-EVPN and EVPN.
For more information, see Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide, Release 6.1.x. For complete command reference for L2VPN SPP commands, see Cisco ASR 9000 Series Aggregation Services Router VPN and Ethernet Services Command Reference.
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Path selection - classify incoming traffic on a per service basis.
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Path setup - set up paths with forward-class service.
L2VPN Route Policy
L2VPN route-policy feature enables the export community configuration for L2VPN VPWS and L2VPN VPLS with BGP autodiscovery. BGP executes the route-policy. This functionality is similar to the route-policy support under BGP submode for L3VPN services.
For more information, see Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide, Release 6.1.x. For complete command reference of the L2VPN route-policy commands, see Cisco ASR 9000 Series Aggregation Services Router VPN and Ethernet Services Command Reference.
Seamless Bidirectional Forwarding Detection
Bidirectional forwarding detection (BFD) provides low-overhead, short-duration detection of failures in the path between adjacent forwarding engines. BFD allows a single mechanism to be used for failure detection over any media and at any protocol layer, with a wide range of detection times and overhead.
In BFD, each end of the connection maintains a BFD state and transmits packets periodically over a forwarding path. Seamless BFD (SBFD) is unidirectional, resulting in faster session activation. The BFD state and client context is maintained on the head-end (initiator) only. The tail-end (reflector) validates the BFD packet and responds, so there’s no need to maintain the BFD state on the tail-end.
For more information, see the Cisco ASR 9000 Series Aggregation Services Router Segment Routing Configuration Guide
Autoroute Destination
The autoroute destination feature allows you to automatically route traffic through a segment routing tunnel instead of manually configuring static routes. Static routes are always added with zero-cost metric, which can result in traffic that is mapped on multiple tunnels to always load-balance due to ECMP. This load-balancing may be undesirable when some of those tunnels have sub-optimal paths. With autoroute destination, only the tunnel whose IGP cost to its endpoint is lowest will be considered for carrying traffic.
For more information, see the Cisco ASR 9000 Series Aggregation Services Router Segment Routing Configuration Guide
Border Gateway Protocol Link-State
Border gateway protocol link-state (BGP LS) is an Address Family Identifier (AFI) and Sub-address Family Identifier (SAFI) defined to carry interior gateway protocol (IGP) link-state database through BGP. BGP LS delivers network topology information to topology servers and Application Layer Traffic Optimization (ALTO) servers. BGP LS supports IS-IS and OSPFv2.
For more information, see the Cisco ASR 9000 Series Aggregation Services Router Segment Routing Configuration Guide
Node and Shared Risk Link Groups Protection with Topology-Independent Loop-Free Alternate
The Topology-Independent Loop-Free Alternate (TI-LFA) node protection functionality provides protection from node failures. The neighbor node is excluded during the post convergence backup path calculation.
The TI-LFA Shared Risk Link Groups (SRLG) protection functionality attempts to find the post-convergence backup path, which excludes the SRLGs of the protected link. All local links that share any SRLG with the protecting link are excluded during the post convergence backup path calculation.
For more information, see the Cisco ASR 9000 Series Aggregation Services Router Segment Routing Configuration Guide.
Segment Routing Egress Peer Engineering
Segment routing egress peer engineering (EPE) uses a controller to instruct an ingress provider edge or a content source within the segment routing domain to use a specific egress provider edge and a specific external interface to reach a destination. BGP peer SIDs are used to express source-routed inter-domain paths. Controllers learn BGP peer SIDs and the external topology of the egress border router through BGP-LS EPE routes. EPE functionality is only required at EPE egress border router and EPE controller.
For more information about the EPE feature, see the Cisco ASR 9000 Series Aggregation Services Router Segment Routing Configuration Guide
BGP Optimal Route Reflector
BGP-ORR (optimal route reflector) enables virtual route reflector (vRR) to calculate the best path from a route reflector (RR) client's point of view.
BGP ORR calculates the best path by:
-
Running SPF multiple times in the context of its RR clients or RR clusters (set of RR clients)
-
Saving the result of different SPF runs in separate databases
-
Using these databases to manipulate BGP best path decision and thereby allowing BGP to use and announce best path that is optimal from the client’s point of view
Note |
Enabling the ORR feature increases the memory footprint of BGP and RIB. With increased number of vRR configured in the network, ORR adversely impacts convergence for BGP. For more information on BGP ORR, see the Implementing BGP chapter in the Cisco ASR 9000 Series Aggregation Services Router Routing Configuration Guide. |
Named Tunnel
The named tunnel feature lets you name the TE tunnels in the network with unique tunnel IDs to be able to manage the network with more ease. This feature allows you to provision TE tunnels using STRING names.
For more information about the Named Tunnel feature, see Implementing MPLS Traffic Engineering chapter in the Cisco ASR 9000 Series Aggregation Services Router MPLS Configuration Guide.
Layer 3 Multicast Bundle Subinterface Load Balancing
The Layer 3 (L3) multicast bundle subinterface load balancing feature allows you statically configure hash values to gain more control for bandwidth allocation (to ensure there is no oversubscription) and QoS (Quality of Service).
For information about the Layer 3 Multicast Bundle Subinterface Load Balancing feature, see Implementing Layer-3 Multicast Routing on Cisco IOS XR Software chapter in the Cisco ASR 9000 Series Aggregation Services Router Multicast Configuration Guide.
BGP Neighbor Capability Suppression
A BGP speaker can learn about BGP extensions that are supported by a peer by using the capabilities negotiation feature. Capabilities negotiation allows BGP to use only the set of features supported by both BGP peers on a link. The neighbor capability suppression feature will turn off neighbor capabilities negotiation during Open message exchange. This is required for interoperability with very old customer premises equipment devices that do not understand Capabilities option.
For more information on this feature, see the topic under Implementing BGP chapter in the Cisco ASR 9000 Series Aggregation Services Router Routing Configuration Guide.
Software Enhancements in Cisco IOS XR Software Release 6.1.2
SyncE Support on IOS XR 64 bit
SyncE is now supported on Cisco IOS XR 64 bit for the line cards, A9K-8X100GE-SE/TR and A9K-4X100GE-SE/TR, on 100G (LAN and OTN transport modes) and 10G (LAN, WAN, and OTN transport modes) interfaces.
For more information on SyncE Support, see Configuring Frequency Synchronization chapter in Cisco ASR 9000 Series Aggregation Services Router System Management Configuration Guide, Release 6.1.x.
Fabric Configuration Commands for A99-8x100GE-SE/TR Line Cards
The fabric configuration commands, fabric enable mode A99-highbandwidth and fabric fia soft-error-monitor <1/2> location <> , have moved from admin plane to XR plane.
The fabric enable mode highbandwidth command has been deprecated from Release 6.1.2.
Install activate and deactivate commands
The install activate and deactivate commands are now supported on Cisco IOS XR 64 bit.
Command syntax for install activate (IOS XR 64 bit) command is:
install activate package_name OR install activate id operation_id
Command syntax for install deactivate (IOS XR 64 bit) command is:
install deactivate package_name OR install deactivate id operation_id
For more information on these commands, see Software Package Management Commands chapter in Cisco ASR 9000 Series Aggregation Services Router System Management Command Reference, Release 6.1.x.
set next-hop self in VPN address family
Route reflector does not normally allocate a local label for VPN routes, because it is not next-hop and merely reflects the label from the real next-hop. When the route reflector becomes next-hop, it needs a local label.
With this feature, we will have a route reflector set next-hop-self in a neighbor outbound policy in a VPN address family, either vpnv4 or vpnv6.
BFD on Bundle Manager Domain
A configuration to enable or disable BFD to run over a bundle interface can be in the bundle manager domain. The bundle manager can apply these configuration changes, and based on the configuration changes, request the BFD server to enable or disable BFD on certain bundle interfaces as well as member links related to those bundle interfaces.
For more information on this feature, see the
UBRL Policer Scale Information for ASR 9000 High Density 100GE Ethernet LCs on Cisco IOS XR
Cisco ASR 9000 High Density 100GE Ethernet LCs supports a maximum of 368000 unique flows and minimum of 1000 unique flow entries per NP.
For more information about the feature, see chapter Configuring Flow Aware QoS in the Cisco ASR 9000 Series Aggregation Services Router Modular Quality of Service Configuration Guide.
Set VRF and Open Flow Match
Set forward IPv4/IPv6 packet based on VRF (OpenFlow basic class) is now supported on ASR9000. For more information about the feature, see chapter Open Flow Agent in the Cisco ASR 9000 Series Aggregation Services Router System Management Configuration Guide.
Openflow match on inner IP header with MPLS label and MPLS BoS bit is now supported on ASR9000. For more information about the feature, see chapter Open Flow Agent in the Cisco ASR 9000 Series Aggregation Services Router System Management Configuration Guide.
Diagnostics Commands
Diagnostics commands are now supported on Cisco IOS XR 64 bit. Use the diagnostics commands in XR Config mode or XR EXEC mode.
For more information about diagnostics commands, see chapter Diagnostics Commands on the Cisco ASR 9000 Series Aggregation Services Router in the Cisco ASR 9000 Series Aggregation Services Router System Monitoring Command Reference.
hw-module-qos Commads
The hw-module-qos commands are now supported on Cisco IOS XR 64 bit. Use the hw-module-qos commands in XR Config mode.
For more information about hw-module-qos commands, see chapters Packet Classification Commands, Congestion Management Commands, and Congestion Avoidance Commands in the Cisco ASR 9000 Series Aggregation Services Router Modular Quality of Service Command Reference.
Enhancement to the Netflow Records to Capture BGP IPv6 Next-hop
This enhancement enables Netflow records to download recursive IPv6 global next-hops instead of IPv6 link-local next-hops for directly connected eBGP IPv6 neighbors. Downloading the IPv6 global next-hops helps Netflow records to capture BGP attributes (source AS and BGP IPv6 nexthop).
To enable this feature, use the set next-hop ipv6-global command in route-policy configuration mode.
For information on how to configure this feature, see Cisco ASR 9000 Series Aggregation Services Router Routing Configuration Guide
For information on the commands used in this feature, see Cisco ASR 9000 Series Aggregation Services Router Routing Command Reference Guide
ITU-T G.8275.1 Telecom Profile
Cisco IOS XR software now supports G.8275.1 ITU-T Telecom Profile for PTP. G.8275.1 profile that is based on IEEE-2008 standard, fulfills the time-of-day and phase synchronization requirements in telecom networks with all network devices participating in the PTP protocol. G.8275.1 profile network with SyncE provides better frequency stability for the time-of-day and phase synchronization.
The clock-selection telecom-profile and clock-advertisement telecom-profile commands are deprecated from Release 6.1.2. They are replaced by the clock profile command to configure the PTP profile and clock type when G.8275.1 profile is selected. The local-priority command lets you configure priority for a port in the G.8275.1 profile.
For more information on G.8275.1 profile, see ITU-T Telecom Profiles for PTP in Cisco ASR 9000 Series Aggregation Services Router System Management Configuration Guide, Release 6.1.x.
For more information on PTP commands, see PTP Commands chapter in Cisco ASR 9000 Series Aggregation Services Router System Management Command Reference Guide, Release 6.1.x.
L2VPN PI Support for In-Service System Upgrade
L2VPN is now ISSU-compliant.
A new command show l2vpn process fsm was added to display the status of the l2vpn process finite state machine, including ISSU status.
For more information, see Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide. For complete command reference, see Cisco ASR 9000 Series Aggregation Services Router VPN and Ethernet Services Command Reference.
EVPN-VPWS Extensions
EVPN-VPWS feature is extended to support the PWHE interface configuration and the bridge domain access pseudowire configuration.
For more information, see Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide. For complete command reference of the L2VPN EVPN Commands, see Cisco ASR 9000 Series Aggregation Services Router VPN and Ethernet Services Command Reference.
Per-VLAN Rapid Spanning Tree Scalability Enhancement
PVRST supports up to 8000 Port Tree Instances (PTIs) per line card and 16000 PTIs per system. PTI refers to the product of the number of ports and VLANs. For example, PVRST can support 100 VLANs over 160 ports or 1000 VLANs over 16 ports.
For more information, see Cisco ASR 9000 Series Aggregation Services Router L2VPN and Ethernet Services Configuration Guide. For complete command reference, see Cisco ASR 9000 Series Aggregation Services Router VPN and Ethernet Services Command Reference.
Software Features Not Supported on IOS XR 64 bit
nV satellite, Precision time protocol and DHCP (except relay) are not supported.
L3 features:
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IP/MPLS PM
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Entropy label
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Cluster Support
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ucode bundles
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Video monitoring
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BNG
L2 features:
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AToM Interworking
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Cluster Support
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Base L2VPN
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Base Bundles
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Base Ether Infra
Multicast features:
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Ingress Vidmon
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PPPoE Subscriber Interfaces
Hardware Features and Enhancements Introduced in Cisco IOS XR Software Release 6.1.2
Hardware Enhancements for the ASR 9000 Platform:
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The 8-port 100 GE line card is supported on the IOS XR 64-bit platform.
For more information, see chapter Overview in the Cisco ASR 9000 Series Aggregation Services Router Ethernet Line Card Installation Guide. -
The 12-Port 100 GE line card is supported on the IOS XR 64-bit platform.
-
MACsec encryption technology is supported on the MOD-200 and MOD-400 line card. The supported MPA's are :
A9K-MPA-20X10GE
A9K-MPA-1X100GE and
A9K-MPA-2X100GE.
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MOD-400 consumption-model (A9K-MOD400-CM) is supported along with following MPAs:
A9K-MPA-20X10GE-CM
A9K-MPA-2X100GE-CM.
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The 2x40 GE MPA supports QSFP-40G-ER4 module.
For more information, see Modular Line Cards and Modular Port Adapters in the Cisco ASR 9000 Series Aggregation Services Router Ethernet Line Card Installation Guide.
-
S-Class optic supports only LAN mode, OTN/WAN are not supported.
For more information, see Modular Line Cards and Modular Port Adapters in the Cisco ASR 9000 Series Aggregation Services Router Ethernet Line Card Installation Guide.
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The S-class SFP+optics are supported for the following line cards:
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A9K-24X10GE-SE
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A9K-24X10GE-TR
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A9K-36X10GE-SE
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A9K-36X10GE-TR
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A9K-8X10GE MPA
S-Class optic supports only LAN mode, OTN/WAN are not supported.
For more information, see Modular Line Cards and Modular Port Adapters section and 10-Gigabit Ethernet Line Cards section in the Cisco ASR 9000 Series Aggregation Services Router Ethernet Line Card Installation Guide.
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Behavior Change Introduced
In previous releases (older than IOS XR Release 5.3.4 ), Egress LSRs were sending BFD control packets encapsulated in a MPLS label stack to Ingress LSRs using multi-hop IP routing with destination port as 4784.
From IOS XR Release 5.3.4 onwards, Egress LSRs will send BFD control packets encapsulated in a MPLS label stack with destination port as 3784. Also, the destination address will be randomly selected from the range 127/8 for IPv4 addresses. This change is to comply with IETF standards for BFD over MPLS.
Firmware Support on Cisco IOS XR
To check the firmware code running on the Cisco ASR 9000 Series Router, run the show fpd package command in admin mode.
Refer to the documents at http://www.cisco.com/web/Cisco_IOS_XR_Software/index.html for upgrade instructions.
RP/0/RSP0/CPU0:router(admin)#show fpd package
=============================== ================================================
Field Programmable Device Package
================================================
SW Min Req Min Req
Card Type FPD Description Type Subtype Version SW Ver HW Vers
========================= ========================== ==== ======= =========== ======== =========
ASR-9910-BPID2 Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
Can Bus Ctrl (CBC) BP2 lc cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9904-BPID2 Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9912-BPID2 Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
Can Bus Ctrl (CBC) BP2 lc cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9922-BPID2 Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
Can Bus Ctrl (CBC) BP2 lc cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-BPID2-E-10-SLOT Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-BPID2-E-6-SLOT Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-BPID2-10-SLOT Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
Can Bus Ctrl (CBC) BP2 lc cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-BPID2-6-SLOT Can Bus Ctrl (CBC) BP2 bp cbc 7.105 0.00 0.1
Can Bus Ctrl (CBC) BP2 lc cbc 7.105 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9922-SFC110 Can Bus Ctrl (CBC) MTFC fc cbc 28.06 0.00 0.1
Fabric Ctrl0 MTFC fc fpga7 1.03 0.00 0.1
Can Bus Ctrl (CBC) MTFC lc cbc 28.06 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9912-SFC110 Can Bus Ctrl (CBC) SSFC fc cbc 32.05 0.00 0.1
Fabric Ctrl0 MTFC fc fpga7 1.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A99-SFC2 Can Bus Ctrl (CBC) MTFC fc cbc 37.20 0.00 0.1
Fabric Ctrl0 MTFC fc fcfsbl 1.79 0.00 0.1
Fabric Ctrl0 MTFC fc fclnxfw 1.79 0.00 0.1
Fabric Ctrl0 MTFC fc fpga8 0.33 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9912-SFC220 Can Bus Ctrl (CBC) MTFC fc cbc 37.20 0.00 0.1
Fabric Ctrl0 MTFC fc fcfsbl 1.79 0.00 0.1
Fabric Ctrl0 MTFC fc fclnxfw 1.79 0.00 0.1
Fabric Ctrl0 MTFC fc fpga8 0.33 0.00 0.1
-------------------------------------------------------------------------------------------------
A99-SFC-S Can Bus Ctrl (CBC) SHFC fc cbc 44.02 0.00 0.1
Fabric Ctrl0 SHFC fc fcfsbl 1.80 0.00 0.1
Fabric Ctrl0 SHFC fc fclnxfw 1.80 0.00 0.1
Fabric Ctrl0 SHFC fc fpga8 0.32 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9010-FAN Can Bus Ctrl (CBC) FAN ft cbc 4.03 0.00 0.1
Can Bus Ctrl (CBC) FAN lc cbc 4.03 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9006-FAN Can Bus Ctrl (CBC) FAN ft cbc 5.04 0.00 0.1
Can Bus Ctrl (CBC) FAN lc cbc 5.04 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9922-FAN Can Bus Ctrl (CBC) MFAN ft cbc 29.12 0.00 0.1
Can Bus Ctrl (CBC) MFAN lc cbc 29.12 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9912-FAN Can Bus Ctrl (CBC) SFAN ft cbc 31.05 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9010-FAN-V2 Can Bus Ctrl (CBC) FAN ft cbc 29.12 0.00 0.1
Can Bus Ctrl (CBC) FAN lc cbc 29.12 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9904-FAN Can Bus Ctrl (CBC) SFAN ft cbc 31.05 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9922-FAN-V2 Can Bus Ctrl (CBC) MFAN ft cbc 40.07 0.00 0.1
Fan Controller MFAN ft fpga9 2.04 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9006-FAN-V2 Can Bus Ctrl (CBC) FAN ft cbc 5.04 0.00 0.1
Can Bus Ctrl (CBC) FAN lc cbc 5.04 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9910-FAN Can Bus Ctrl (CBC) SHFAN ft cbc 45.02 0.00 0.1
Fan Controller SHFAN ft fpga9 2.06 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9001-FAN Can Bus Ctrl (CBC) FAN ft cbc 24.115 0.00 0.1
Can Bus Ctrl (CBC) FAN lc cbc 24.115 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9001-FAN-V2 Can Bus Ctrl (CBC) FAN ft cbc 24.115 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-SIP-700 Can Bus Ctrl (CBC) LC5 lc cbc 3.06 0.00 0.1
CPUCtrl LC5 lc cpld1 0.15 0.00 0.1
QFPCPUBridge LC5 lc fpga2 5.14 0.00 0.1
NPUXBarBridge LC5 lc fpga1 0.24 0.00 0.1
ROMMONB LC5 lc rommon 1.04 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-SIP-500 Can Bus Ctrl (CBC) LC5 lc cbc 3.06 0.00 0.1
CPUCtrl LC5 lc cpld1 0.15 0.00 0.1
QFPCPUBridge LC5 lc fpga2 5.14 0.00 0.1
NPUXBarBridge LC5 lc fpga1 0.24 0.00 0.1
ROMMONB LC5 lc rommon 1.04 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-SIP-700-8G Can Bus Ctrl (CBC) LC5 lc cbc 3.06 0.00 0.1
CPUCtrl LC5 lc cpld1 0.15 0.00 0.1
QFPCPUBridge LC5 lc fpga2 5.14 0.00 0.1
NPUXBarBridge LC5 lc fpga1 0.24 0.00 0.1
ROMMONB LC5 lc rommon 1.35 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-RSP440-TR Can Bus Ctrl (CBC) RSP3 lc cbc 16.116 0.00 0.1
ClockCtrl0 RSP3 lc fpga2 1.09 0.00 0.1
UTI RSP3 lc fpga3 4.09 0.00 0.1
CPUCtrl RSP3 lc fpga1 0.11 0.00 0.1
ROMMONB RSP3 lc rommon 0.76 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-RSP440-SE Can Bus Ctrl (CBC) RSP3 lc cbc 16.116 0.00 0.1
ClockCtrl0 RSP3 lc fpga2 1.09 0.00 0.1
UTI RSP3 lc fpga3 4.09 0.00 0.1
CPUCtrl RSP3 lc fpga1 0.11 0.00 0.1
ROMMONB RSP3 lc rommon 0.76 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9922-RP-TR Can Bus Ctrl (CBC) MTRP lc cbc 25.03 0.00 0.1
Fabric Ctrl3 MTFC lc fpga10 1.03 0.00 0.1
Fabric Ctrl4 MTFC lc fpga11 1.03 0.00 0.1
Fabric Ctrl5 MTFC lc fpga12 1.03 0.00 0.1
Fabric Ctrl6 MTFC lc fpga13 1.03 0.00 0.1
CPUCtrl1 lc fpga2 1.03 0.00 0.1
ClkCtrl lc fpga3 1.05 0.00 0.1
IntCtrl lc fpga4 1.04 0.00 0.1
UTI lc fpga5 4.09 0.00 0.1
Timex lc fpga6 0.02 0.00 0.1
Fabric Ctrl0 MTFC lc fpga7 1.03 0.00 0.1
Fabric Ctrl1 MTFC lc fpga8 1.03 0.00 0.1
Fabric Ctrl2 MTFC lc fpga9 1.03 0.00 0.1
CPUCtrl0 lc fpga1 1.05 0.00 0.1
ROMMONB MTRP lc rommon 5.16 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9922-RP-SE Can Bus Ctrl (CBC) MTRP lc cbc 25.03 0.00 0.1
Fabric Ctrl3 MTFC lc fpga10 1.03 0.00 0.1
Fabric Ctrl4 MTFC lc fpga11 1.03 0.00 0.1
Fabric Ctrl5 MTFC lc fpga12 1.03 0.00 0.1
Fabric Ctrl6 MTFC lc fpga13 1.03 0.00 0.1
CPUCtrl1 lc fpga2 1.03 0.00 0.1
ClkCtrl lc fpga3 1.05 0.00 0.1
IntCtrl lc fpga4 1.04 0.00 0.1
UTI lc fpga5 4.09 0.00 0.1
Timex lc fpga6 0.02 0.00 0.1
Fabric Ctrl0 MTFC lc fpga7 1.03 0.00 0.1
Fabric Ctrl1 MTFC lc fpga8 1.03 0.00 0.1
Fabric Ctrl2 MTFC lc fpga9 1.03 0.00 0.1
CPUCtrl0 lc fpga1 1.05 0.00 0.1
ROMMONB MTRP lc rommon 5.16 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9900-RP-TR Can Bus Ctrl (CBC) MTRP lc cbc 25.03 0.00 0.1
Fabric Ctrl3 MTFC lc fpga10 1.03 0.00 0.1
Fabric Ctrl4 MTFC lc fpga11 1.03 0.00 0.1
Fabric Ctrl5 MTFC lc fpga12 1.03 0.00 0.1
Fabric Ctrl6 MTFC lc fpga13 1.03 0.00 0.1
CPUCtrl1 lc fpga2 1.03 0.00 0.1
ClkCtrl lc fpga3 1.05 0.00 0.1
IntCtrl lc fpga4 1.04 0.00 0.1
UTI lc fpga5 4.09 0.00 0.1
Timex lc fpga6 0.02 0.00 0.1
Fabric Ctrl0 MTFC lc fpga7 1.03 0.00 0.1
Fabric Ctrl1 MTFC lc fpga8 1.03 0.00 0.1
Fabric Ctrl2 MTFC lc fpga9 1.03 0.00 0.1
CPUCtrl0 lc fpga1 1.05 0.00 0.1
ROMMONB MTRP lc rommon 5.16 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR-9900-RP-SE Can Bus Ctrl (CBC) MTRP lc cbc 25.03 0.00 0.1
Fabric Ctrl3 MTFC lc fpga10 1.03 0.00 0.1
Fabric Ctrl4 MTFC lc fpga11 1.03 0.00 0.1
Fabric Ctrl5 MTFC lc fpga12 1.03 0.00 0.1
Fabric Ctrl6 MTFC lc fpga13 1.03 0.00 0.1
CPUCtrl1 lc fpga2 1.03 0.00 0.1
ClkCtrl lc fpga3 1.05 0.00 0.1
IntCtrl lc fpga4 1.04 0.00 0.1
UTI lc fpga5 4.09 0.00 0.1
Timex lc fpga6 0.02 0.00 0.1
Fabric Ctrl0 MTFC lc fpga7 1.03 0.00 0.1
Fabric Ctrl1 MTFC lc fpga8 1.03 0.00 0.1
Fabric Ctrl2 MTFC lc fpga9 1.03 0.00 0.1
CPUCtrl0 lc fpga1 1.05 0.00 0.1
ROMMONB MTRP lc rommon 5.16 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-RSP440-LT Can Bus Ctrl (CBC) RSP3 lc cbc 16.116 0.00 0.1
ClockCtrl0 RSP3 lc fpga2 1.11 0.00 0.1
UTI RSP3 lc fpga3 4.09 0.00 0.1
CPUCtrl RSP3 lc fpga1 0.11 0.00 0.1
ROMMONB RSP3 lc rommon 0.76 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-RSP880-TR Can Bus Ctrl (CBC) RSP4 lc cbc 34.38 0.00 0.0
MB CPUCtrl lc fpga2 0.50 0.00 0.0
DBCtrl lc fpga3 0.14 0.00 0.0
DBCtrl lc fpga4 0.13 0.00 0.0
DBCtrl lc fpga5 0.12 0.00 0.0
PUNT FPGA lc fpga6 0.05 0.00 0.0
Fsbl lc fsbl 1.90 0.00 0.0
LinuxFW lc lnxfw 1.90 0.00 0.0
ROMMONB RSP4 lc rommon 10.54 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-RSP880-SE Can Bus Ctrl (CBC) RSP4 lc cbc 34.38 0.00 0.0
MB CPUCtrl lc fpga2 0.50 0.00 0.0
DBCtrl lc fpga3 0.14 0.00 0.0
DBCtrl lc fpga4 0.13 0.00 0.0
DBCtrl lc fpga5 0.12 0.00 0.0
PUNT FPGA lc fpga6 0.05 0.00 0.0
Fsbl lc fsbl 1.90 0.00 0.0
LinuxFW lc lnxfw 1.90 0.00 0.0
ROMMONB RSP4 lc rommon 10.54 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-RSP-TR Can Bus Ctrl (CBC) RSP4S lc cbc 43.02 0.00 0.1
MB CPUCtrl lc fpga2 0.40 0.00 0.0
DBCtrl lc fpga3 0.14 0.00 0.0
DBCtrl lc fpga4 0.11 0.00 0.0
DBCtrl lc fpga5 0.12 0.00 0.0
PUNT FPGA lc fpga6 0.05 0.00 0.0
Fsbl lc fsbl 1.81 0.00 0.0
LinuxFW lc lnxfw 1.81 0.00 0.0
ROMMONB RSP4SHW lc rommon 16.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-RSP-SE Can Bus Ctrl (CBC) RSP4S lc cbc 43.02 0.00 0.1
MB CPUCtrl lc fpga2 0.40 0.00 0.0
DBCtrl lc fpga3 0.14 0.00 0.0
DBCtrl lc fpga4 0.11 0.00 0.0
DBCtrl lc fpga5 0.12 0.00 0.0
PUNT FPGA lc fpga6 0.05 0.00 0.0
Fsbl lc fsbl 1.81 0.00 0.0
LinuxFW lc lnxfw 1.81 0.00 0.0
ROMMONB RSP4SHW lc rommon 16.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-RP2-TR Can Bus Ctrl (CBC) MTRP lc cbc 35.12 0.00 0.1
MB CPUCtrl lc fpga2 0.50 0.00 0.0
DBCtrl lc fpga3 0.14 0.00 0.0
DBCtrl lc fpga4 0.13 0.00 0.0
DBCtrl lc fpga5 0.12 0.00 0.0
PUNT FPGA lc fpga6 0.05 0.00 0.0
Fsbl lc fsbl 1.90 0.00 0.0
LinuxFW lc lnxfw 1.90 0.00 0.0
ROMMONB RP2 lc rommon 14.24 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-RP2-SE Can Bus Ctrl (CBC) MTRP lc cbc 35.12 0.00 0.1
MB CPUCtrl lc fpga2 0.50 0.00 0.0
DBCtrl lc fpga3 0.14 0.00 0.0
DBCtrl lc fpga4 0.13 0.00 0.0
DBCtrl lc fpga5 0.12 0.00 0.0
PUNT FPGA lc fpga6 0.05 0.00 0.0
Fsbl lc fsbl 1.90 0.00 0.0
LinuxFW lc lnxfw 1.90 0.00 0.0
ROMMONB RP2 lc rommon 14.24 0.00 0.0
-------------------------------------------------------------------------------------------------
ASR9001-RP Can Bus Ctrl (CBC) IMRP lc cbc 22.114 0.00 0.1
MB CPUCtrl lc fpga2 1.15 0.00 0.0
ROMMONB IM RP lc rommon 2.04 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-24x10GE-SE Can Bus Ctrl (CBC) LC6 lc cbc 19.112 0.00 0.0
DBCtrl LC6 lc fpga2 1.03 0.00 0.0
LinkCtrl LC6 lc fpga3 1.01 0.00 0.0
LCCPUCtrl LC6 lc fpga4 1.07 0.00 0.0
ROMMONB LC6 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-2x100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 21.111 0.00 0.1
DB IO FPGA1 lc cpld1 1.03 0.00 0.0
MB CPUCtrl lc fpga2 1.08 0.00 0.0
PortCtrl lc fpga3 1.05 0.00 0.0
Imux lc fpga4 1.04 0.00 0.0
Emux lc fpga5 1.04 0.00 0.0
100GIGMAC lc fpga6 41.00 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD80-SE Can Bus Ctrl (CBC) LC4 lc cbc 20.118 0.00 0.1
DB Ctrl lc fpga2 1.04 0.00 0.0
MB CPUCtrl lc fpga4 1.05 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-MOD160-SE Can Bus Ctrl (CBC) LC4 lc cbc 20.118 0.00 0.1
DB Ctrl lc fpga2 1.04 0.00 0.0
MB CPUCtrl lc fpga4 1.05 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-24x10GE-TR Can Bus Ctrl (CBC) LC6 lc cbc 19.112 0.00 0.0
DBCtrl LC6 lc fpga2 1.03 0.00 0.0
LinkCtrl LC6 lc fpga3 1.01 0.00 0.0
LCCPUCtrl LC6 lc fpga4 1.07 0.00 0.0
ROMMONB LC6 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-2x100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 21.111 0.00 0.1
DB IO FPGA1 lc cpld1 1.03 0.00 0.0
MB CPUCtrl lc fpga2 1.08 0.00 0.0
PortCtrl lc fpga3 1.05 0.00 0.0
Imux lc fpga4 1.04 0.00 0.0
Emux lc fpga5 1.04 0.00 0.0
100GIGMAC lc fpga6 41.00 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD80-TR Can Bus Ctrl (CBC) LC4 lc cbc 20.118 0.00 0.1
DB Ctrl lc fpga2 1.04 0.00 0.0
MB CPUCtrl lc fpga4 1.05 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-MOD160-TR Can Bus Ctrl (CBC) LC4 lc cbc 20.118 0.00 0.1
DB Ctrl lc fpga2 1.04 0.00 0.0
MB CPUCtrl lc fpga4 1.05 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-36x10GE-SE Can Bus Ctrl (CBC) LC6 lc cbc 15.104 0.00 0.0
DBCtrl LC6 lc fpga2 1.01 0.00 0.0
LinkCtrl LC6 lc fpga3 1.00 0.00 0.0
LCCPUCtrl LC6 lc fpga4 1.03 0.00 0.0
ROMMONB LC6 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-36x10GE_SC7-SE Can Bus Ctrl (CBC) LC6 lc cbc 15.104 0.00 0.0
DBCtrl LC6 lc fpga2 1.01 0.00 0.0
LinkCtrl LC6 lc fpga3 1.00 0.00 0.0
LCCPUCtrl LC6 lc fpga4 1.03 0.00 0.0
ROMMONB LC6 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-36x10GE-TR Can Bus Ctrl (CBC) LC6 lc cbc 15.104 0.00 0.0
DBCtrl LC6 lc fpga2 1.01 0.00 0.0
LinkCtrl LC6 lc fpga3 1.00 0.00 0.0
LCCPUCtrl LC6 lc fpga4 1.03 0.00 0.0
ROMMONB LC6 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-36x10GE_SC7-TR Can Bus Ctrl (CBC) LC6 lc cbc 15.104 0.00 0.0
DBCtrl LC6 lc fpga2 1.01 0.00 0.0
LinkCtrl LC6 lc fpga3 1.00 0.00 0.0
LCCPUCtrl LC6 lc fpga4 1.03 0.00 0.0
ROMMONB LC6 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-1x100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 21.111 0.00 0.1
DB IO FPGA1 lc cpld1 1.03 0.00 0.0
MB CPUCtrl lc fpga2 1.08 0.00 0.0
PortCtrl lc fpga3 1.05 0.00 0.0
Imux lc fpga4 1.04 0.00 0.0
Emux lc fpga5 1.04 0.00 0.0
100GIGMAC lc fpga6 41.00 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-1x100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 21.111 0.00 0.1
DB IO FPGA1 lc cpld1 1.03 0.00 0.0
MB CPUCtrl lc fpga2 1.08 0.00 0.0
PortCtrl lc fpga3 1.05 0.00 0.0
Imux lc fpga4 1.04 0.00 0.0
Emux lc fpga5 1.04 0.00 0.0
100GIGMAC lc fpga6 41.00 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-VSM-500 CPUCtrl Forge lc cbc 33.05 0.00 0.1
CPUCtrl Forge lc fpga1 1.26 0.00 0.1
CPUCtrl Forge lc ibmc 5.08 0.00 0.1
CPUCtrl Forge lc rommon 3.07 0.00 0.1
-------------------------------------------------------------------------------------------------
A99-8X100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-8X100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-4X100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-4X100GE-SE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-4X100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-4X100GE-TR-TAA Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-4X100GE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-4X100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-4X100GE-SE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-4X100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-4X100GE-TR-TAA Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-4X100GE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-MOD200-SE Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-200MOD-SE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-MOD200-TR Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-MOD200-TR-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD200-SE Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD200-SE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD200-TR Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD200-TR-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD200-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-MOD400-SE Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-MOD400-SE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-MOD400-TR Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99K-MOD400-TR-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD400-SE Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD400-SE-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD400-TR Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD400-TR-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD400-TAA Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-8X100GE-L-SE Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-8X100GE-L-TR Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-8X100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-8X100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99L-4X100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99L-4X100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9KL-4X100GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9KL-4X100GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-400G-DWDM-TR Can Bus Ctrl (CBC) LC4 lc cbc 42.03 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
DBCtrl lc fpga4 1.03 0.00 0.0
DBCtrl lc fpga5 1.05 0.00 0.0
DBCtrl lc fpga6 3.56 0.00 1.0
DBCtrl lc fpga7 49.00 0.00 0.0
CFP2 V2 lc fpga8 5.21 0.00 2.0
CFP2 V1 lc fpga8 4.38 0.00 1.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-4X100GE-L Can Bus Ctrl (CBC) LC4 lc cbc 46.06 0.00 0.0
MB CPUCtrl lc fpga2 1.80 0.00 0.0
DBCtrl lc fpga3 1.02 0.00 0.0
PortCtrl lc fpga4 1.02 0.00 0.0
Fsbl lc fsbl 1.92 0.00 0.0
LinuxFW lc lnxfw 1.92 0.00 0.0
ROMMONB LC1 lc rommon 9.21 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-12X100GE Can Bus Ctrl (CBC) LC4 lc cbc 46.06 0.00 0.0
MB CPUCtrl lc fpga2 1.80 0.00 0.0
DBCtrl lc fpga3 1.02 0.00 0.0
PortCtrl lc fpga4 1.02 0.00 0.0
Fsbl lc fsbl 1.92 0.00 0.0
LinuxFW lc lnxfw 1.92 0.00 0.0
ROMMONB LC1 lc rommon 9.21 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-8X100GE-CM Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-8X100GE-CM Can Bus Ctrl (CBC) LC4 lc cbc 38.23 0.00 0.0
MB CPUCtrl lc fpga2 1.86 0.00 0.0
DBCtrl lc fpga3 1.06 0.00 0.0
PortCtrl lc fpga4 1.09 0.00 0.0
CPAK LR4 lc fpga5 1.16 0.00 0.0
CPAK SR10 lc fpga6 2.02 0.00 0.0
Fsbl lc fsbl 1.91 0.00 0.0
LinuxFW lc lnxfw 1.91 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A99-12X100GE-CM Can Bus Ctrl (CBC) LC4 lc cbc 46.06 0.00 0.0
MB CPUCtrl lc fpga2 1.80 0.00 0.0
DBCtrl lc fpga3 1.02 0.00 0.0
PortCtrl lc fpga4 1.02 0.00 0.0
Fsbl lc fsbl 1.92 0.00 0.0
LinuxFW lc lnxfw 1.92 0.00 0.0
ROMMONB LC1 lc rommon 9.21 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MOD400-CM Can Bus Ctrl (CBC) LC4 lc cbc 39.06 0.00 0.0
DBCtrl lc fpga10 1.19 0.00 0.0
MB CPUCtrl lc fpga2 1.84 0.00 0.0
Fsbl lc fsbl 1.84 0.00 0.0
LinuxFW lc lnxfw 1.84 0.00 0.0
ROMMONB LC1 lc rommon 8.43 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-40GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 41.104 0.00 0.1
PortCtrl lc fpga2 0.08 0.00 0.0
PortCtrl lc fpga3 0.08 0.00 0.0
MB CPUCtrl lc fpga4 0.06 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-4T16GE-SE Can Bus Ctrl (CBC) LC4 lc cbc 41.104 0.00 0.1
PortCtrl lc fpga2 0.08 0.00 0.0
PortCtrl lc fpga3 1.00 0.00 0.0
MB CPUCtrl lc fpga4 0.06 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-40GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 41.104 0.00 0.1
PortCtrl lc fpga2 0.08 0.00 0.0
PortCtrl lc fpga3 0.08 0.00 0.0
MB CPUCtrl lc fpga4 0.06 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-4T16GE-TR Can Bus Ctrl (CBC) LC4 lc cbc 41.104 0.00 0.1
PortCtrl lc fpga2 0.08 0.00 0.0
PortCtrl lc fpga3 1.00 0.00 0.0
MB CPUCtrl lc fpga4 0.06 0.00 0.0
ROMMONB LC4 lc rommon 3.03 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR9001-LC Can Bus Ctrl (CBC) IMLC lc cbc 23.114 0.00 0.1
DB CPUCtrl lc fpga2 1.18 0.00 0.0
EP Gambit lc fpga3 1.00 0.00 0.0
MB CPUCtrl lc fpga4 2.10 0.00 0.0
EP Rogue lc fpga6 1.06 0.00 0.0
EP I/O FPGA lc fpga7 1.02 0.00 0.0
ROMMONB IM LC lc rommon 2.04 0.00 0.1
-------------------------------------------------------------------------------------------------
ASR9001-LC-S Can Bus Ctrl (CBC) IMLC lc cbc 23.114 0.00 0.1
DB CPUCtrl lc fpga2 1.18 0.00 0.0
EP Gambit lc fpga3 1.00 0.00 0.0
MB CPUCtrl lc fpga4 2.10 0.00 0.0
EP Rogue lc fpga6 1.06 0.00 0.0
EP I/O FPGA lc fpga7 1.02 0.00 0.0
ROMMONB IM LC lc rommon 2.04 0.00 0.1
-------------------------------------------------------------------------------------------------
A9K-ISM-100 Can Bus Ctrl (CBC) LC6 lc cbc 18.08 0.00 0.1
CPUCtrl LC6 lc cpld1 0.01 0.00 0.1
Maintenance LC6 lc fpga2 2.13 0.00 0.1
Amistad LC6 lc fpga1 0.33 0.00 0.20
ROMMONB LC6 lc rommon 1.02 0.00 0.1
-------------------------------------------------------------------------------------------------
PWR-3KW-AC-V2 Delta AC logic PM pm fpga11 6.04 0.00 0.1
Delta AC primary PM pm fpga12 6.02 0.00 0.1
Delta AC secondary PM pm fpga13 6.02 0.00 0.1
Emerson AC logic PM pm fpga14 3.18 0.00 0.1
Emerson AC primary PM pm fpga15 3.06 0.00 0.1
Emerson AC secondary PM pm fpga16 3.12 0.00 0.1
-------------------------------------------------------------------------------------------------
PWR-2KW-DC-V2 Delta DC logic PM pm fpga11 6.03 0.00 0.1
Delta DC primary PM pm fpga12 6.03 0.00 0.1
Delta DC secondary PM pm fpga13 6.02 0.00 0.1
Emerson DC logic PM pm fpga14 3.19 0.00 0.1
Emerson DC primary PM pm fpga15 3.12 0.00 0.1
Emerson DC secondary PM pm fpga16 3.19 0.00 0.1
-------------------------------------------------------------------------------------------------
PWR-6KW-AC-V3 Delta V3 AC logic PM pm fpga11 4.03 0.00 0.1
Delta V3 AC primary PM pm fpga12 4.01 0.00 0.1
Delta V3 AC secondary PM pm fpga13 4.02 0.00 0.1
Acbel V3 AC logic PM pm fpga14 1.00 0.00 0.1
Acbel V3 AC primary PM pm fpga15 1.00 0.00 0.1
Acbel V3 AC secondary PM pm fpga16 1.00 0.00 0.1
-------------------------------------------------------------------------------------------------
PWR-4.4KW-DC-V3 Delta V3 DC logic PM pm fpga11 3.00 0.00 0.1
Delta V3 DC primary PM pm fpga12 3.00 0.00 0.1
Delta V3 DC secondary PM pm fpga13 3.00 0.00 0.1
Acbel V3 DC logic PM pm fpga14 1.00 0.00 0.1
Acbel V3 DC primary PM pm fpga15 1.00 0.00 0.1
Acbel V3 DC secondary PM pm fpga16 1.00 0.00 0.1
-------------------------------------------------------------------------------------------------
PWR-3KW-HVDC Delta HVDC logic PM pm fpga11 2.03 0.00 0.1
Delta HVDC primary PM pm fpga12 2.02 0.00 0.1
Delta HVDC secondary PM pm fpga13 2.02 0.00 0.1
-------------------------------------------------------------------------------------------------
SPA-4XT3/E3 SPA E3 Subrate FPGA spa fpga2 1.04 0.00 0.0
SPA T3 Subrate FPGA spa fpga3 1.04 0.00 0.0
SPA I/O FPGA spa fpga1 1.01 0.00 0.0
SPA ROMMON spa rommon 2.12 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-4XCT3/DS0 SPA T3 Subrate FPGA spa fpga2 0.11 0.00 0.100
SPA T3 Subrate FPGA spa fpga2 1.04 0.00 0.200
SPA I/O FPGA spa fpga1 2.08 0.00 0.100
SPA ROMMON spa rommon 2.12 0.00 0.100
-------------------------------------------------------------------------------------------------
SPA-OC192POS-XFP SPA FPGA swv1.101 hwv3 spa fpga2 1.101 0.00 3.0
SPA FPGA swv1.2 hwv2 spa fpga1 1.02 0.00 2.0
-------------------------------------------------------------------------------------------------
SPA-1XCHSTM1/OC3 SPA T3 Subrate FPGA spa fpga2 1.04 0.00 0.0
SPA I/O FPGA spa fpga1 1.08 0.00 0.0
SPA ROMMON spa rommon 2.12 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-1XOC48POS/RPR SPA FPGA swv1.101 hwv3 spa fpga2 1.101 0.00 3.0
-------------------------------------------------------------------------------------------------
SPA-24CHT1-CE-ATM SPA T3 Subrate FPGA spa fpga2 1.10 0.00 1.0
SPA I/O FPGA spa fpga1 2.32 0.00 1.0
SPA ROMMON spa rommon 1.03 0.00 1.0
-------------------------------------------------------------------------------------------------
SPA-2CHT3-CE-ATM SPA T3 Subrate FPGA spa fpga2 1.11 0.00 1.0
SPA I/O FPGA spa fpga1 2.22 0.00 1.0
SPA ROMMON spa rommon 1.04 0.00 1.0
-------------------------------------------------------------------------------------------------
SPA-1CHOC3-CE-ATM SPA OC3 Subrate FPGA spa fpga2 2.23 0.00 0.0
SPA I/O FPGA spa fpga1 2.23 0.00 2.0
SPA ROMMON spa rommon 1.04 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-1XCHOC48/DS3 SPA I/O FPGA spa fpga2 1.00 0.00 0.49
SPA I/O FPGA spa fpga3 1.00 0.00 0.52
SPA I/O FPGA spa fpga1 1.36 0.00 0.49
SPA ROMMON spa rommon 2.02 0.00 0.49
-------------------------------------------------------------------------------------------------
SPA-1XOC3-ATM-V2 SPA FPGA swv2.104 hwv2 spa fpga2 2.104 0.00 2.8
SPA FPGA swv1.2 spa fpga1 2.02 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-3XOC3-ATM-V2 SPA FPGA swv2.104 hwv2 spa fpga2 2.104 0.00 2.8
SPA FPGA swv1.2 spa fpga1 2.02 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-1XOC12-ATM-V2 SPA FPGA swv2.104 hwv2 spa fpga2 2.104 0.00 2.8
SPA FPGA swv1.2 spa fpga1 2.02 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-2XCHOC12/DS0 SPA FPGA2 swv1.00 spa fpga2 1.00 0.00 0.0
SPA FPGA swv1.36 spa fpga1 1.36 0.00 0.49
SPA ROMMON swv2.2 spa rommon 2.02 0.00 0.49
-------------------------------------------------------------------------------------------------
A9K-MPA-20X1GE EP I/O FPGA spa fpga3 1.00 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-20X10GE EP I/O FPGA spa fpga5 1.14 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA20X10GE-CM EP I/O FPGA spa fpga5 1.14 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-2X10GE EP I/O FPGA spa fpga6 1.06 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-4X10GE EP I/O FPGA spa fpga6 1.06 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-2X40GE EP I/O FPGA spa fpga7 1.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-1X40GE EP I/O FPGA spa fpga7 1.03 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-8X10GE EP I/O FPGA spa fpga8 1.07 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-2X100GE EP I/O FPGA spa fpga9 1.02 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA-1X100GE EP I/O FPGA spa fpga9 1.02 0.00 0.0
-------------------------------------------------------------------------------------------------
A9K-MPA2X100GE-CM EP I/O FPGA spa fpga9 1.02 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-8XOC12-POS SPA FPGA swv1.0 spa fpga1 1.00 0.00 0.5
-------------------------------------------------------------------------------------------------
SPA-8XCHT1/E1 SPA I/O FPGA spa fpga1 2.08 0.00 0.0
SPA ROMMON spa rommon 2.12 0.00 0.140
-------------------------------------------------------------------------------------------------
SPA-2XOC48POS/RPR SPA FPGA swv1.0 spa fpga1 1.00 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-4XOC48POS/RPR SPA FPGA swv1.0 spa fpga1 1.00 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-8XOC3-POS SPA FPGA swv1.0 spa fpga1 1.00 0.00 0.5
-------------------------------------------------------------------------------------------------
SPA-2XOC12-POS SPA FPGA swv1.0 spa fpga1 1.00 0.00 0.5
-------------------------------------------------------------------------------------------------
SPA-4XOC12-POS SPA FPGA swv1.0 spa fpga1 1.00 0.00 0.5
-------------------------------------------------------------------------------------------------
SPA-10X1GE-V2 SPA FPGA swv1.10 spa fpga1 1.10 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-4XOC3-POS-V2 SPA FPGA swv1.0 spa fpga1 1.00 0.00 0.5
-------------------------------------------------------------------------------------------------
SPA-2XOC3-ATM-V2 SPA FPGA swv1.2 spa fpga1 2.02 0.00 0.0
-------------------------------------------------------------------------------------------------
SPA-8XCHT1/E1-V2 SPA I/O FPGA spa fpga1 1.02 0.00 1.0
SPA ROMMON spa rommon 1.00 0.00 1.0
-------------------------------------------------------------------------------------------------
SPA-1CHSTM1/OC3V2 SPA I/O FPGA spa fpga1 1.00 0.00 0.1
SPA ROMMON spa rommon 1.00 0.00 0.1
-------------------------------------------------------------------------------------------------
SPA-2XCT3/DS0-V2 SPA I/O FPGA spa fpga1 1.01 0.00 1.0
SPA ROMMON spa rommon 1.00 0.00 1.0
-------------------------------------------------------------------------------------------------
SPA-4XCT3/DS0-V2 SPA I/O FPGA spa fpga1 1.01 0.00 1.0
SPA ROMMON spa rommon 1.00 0.00 1.0
-------------------------------------------------------------------------------------------------
SPA-2XT3/E3-V2 SPA FPGA swv1.1 hwv3 spa fpga1 1.01 0.00 1.0
SPA ROMMON spa rommon 1.00 0.00 1.0
-------------------------------------------------------------------------------------------------
SPA-4XT3/E3-V2 SPA FPGA swv1.1 hwv3 spa fpga1 1.01 0.00 1.0
SPA ROMMON spa rommon 1.00 0.00 1.0
-------------------------------------------------------------------------------------------------
Firmware Support on Cisco IOS XR 64 bit
To check the firmware code running on the Cisco ASR 9000 Series Router, run the show fpd package command in admin mode
RP/0/RSP0/CPU0:router(admin)#show fpd package
=============================== ================================================
Field Programmable Device Package
================================================
Req SW Min Req Min Req
Card Type FPD Description Reload Ver SW Ver Board Ver
=================== ========================== ====== ======= ======== =========
--------------------------------------------------------------------------------
A99-4x100GE-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-4x100GE-SE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-4x100GE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-4x100GE-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-4x100GE-TR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-8X100GE-CM CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-8x100GE-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-8x100GE-SE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-8x100GE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-8x100GE-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-8x100GE-TR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99-RP2-SE Alpha-FPGA(A) YES 0.14 0.14 0.0
CBC-0(A) NO 35.12 35.12 0.0
CBC-1(A) NO 35.12 35.12 0.0
Cha-FPGA(A) YES 0.05 0.05 0.0
IPU-FPGA(A) YES 0.50 0.50 0.0
IPU-FSBL(A) YES 1.90 1.90 0.0
IPU-Linux(A) YES 1.90 1.90 0.0
Omega-FPGA(A) YES 0.13 0.13 0.0
Optimus-FPGA(A) YES 0.12 0.12 0.0
Primary-BIOS(A) YES 14.24 14.24 0.0
--------------------------------------------------------------------------------
A99-RP2-TR Alpha-FPGA(A) YES 0.14 0.14 0.0
CBC-0(A) NO 35.12 35.12 0.0
CBC-1(A) NO 35.12 35.12 0.0
Cha-FPGA(A) YES 0.05 0.05 0.0
IPU-FPGA(A) YES 0.50 0.50 0.0
IPU-FSBL(A) YES 1.90 1.90 0.0
IPU-Linux(A) YES 1.90 1.90 0.0
Omega-FPGA(A) YES 0.13 0.13 0.0
Optimus-FPGA(A) YES 0.12 0.12 0.0
Primary-BIOS(A) YES 14.24 14.24 0.0
--------------------------------------------------------------------------------
A99-SFC2 CBC(A) NO 37.20 37.20 0.0
IPU-FPGA(A) YES 0.33 0.33 0.0
IPU-FSBL(A) YES 1.79 1.79 0.0
IPU-Linux(A) YES 1.79 1.79 0.0
--------------------------------------------------------------------------------
A99KL-12x100GE-SE CBC(A) NO 46.06 46.06 0.1
IPU-FPGA(A) YES 1.80 1.80 0.1
IPU-FSBL(A) YES 1.92 1.92 0.1
IPU-Linux(A) YES 1.92 1.92 0.1
Morra-0(A) YES 1.02 1.02 0.1
Morra-1(A) YES 1.02 1.02 0.1
Primary-BIOS(A) YES 9.21 9.21 0.1
Sideswipe-0(A) YES 1.02 1.02 0.1
Sideswipe-1(A) YES 1.02 1.02 0.1
--------------------------------------------------------------------------------
A99KL-12x100GE-SE-CM CBC(A) NO 46.06 46.06 0.1
IPU-FPGA(A) YES 1.80 1.80 0.1
IPU-FSBL(A) YES 1.92 1.92 0.1
IPU-Linux(A) YES 1.92 1.92 0.1
Morra-0(A) YES 1.02 1.02 0.1
Morra-1(A) YES 1.02 1.02 0.1
Primary-BIOS(A) YES 9.21 9.21 0.1
Sideswipe-0(A) YES 1.02 1.02 0.1
Sideswipe-1(A) YES 1.02 1.02 0.1
--------------------------------------------------------------------------------
A99L-4x100GE-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-4x100GE-SE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-4x100GE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-4x100GE-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-4x100GE-TR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-8x100GE-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-8x100GE-SE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-8x100GE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-8x100GE-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A99L-8x100GE-TR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-400G-DWDM-TR CBC(A) NO 42.02 42.02 0.0
Doran(A) YES 1.01 1.01 0.0
Frenzy(A) YES 49.00 49.00 0.0
IPU-FPGA(A) YES 1.77 1.77 0.1
IPU-FSBL(A) YES 1.78 1.78 0.1
IPU-Linux(A) YES 1.78 1.78 0.1
Martell(A) YES 1.01 1.01 0.0
Meldun(A) YES 1.04 1.04 0.1
Primary-BIOS(A) YES 8.38 8.38 0.1
--------------------------------------------------------------------------------
A9K-4x100GE-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-4x100GE-SE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-4x100GE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-4x100GE-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-4x100GE-TR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8X100GE-CM CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8x100GE-L-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8x100GE-L-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8x100GE-L-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8x100GE-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8X100GE-SE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8X100GE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8x100GE-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8X100GE-TR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8x100GELSE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-8x100GELTR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9K-RP2-64G Alpha-FPGA(A) YES 0.14 0.14 0.0
CBC-0(A) NO 35.12 35.12 0.0
CBC-1(A) NO 35.12 35.12 0.0
Cha-FPGA(A) YES 0.05 0.05 0.0
IPU-FPGA(A) YES 0.50 0.50 0.0
IPU-FSBL(A) YES 1.90 1.90 0.0
IPU-Linux(A) YES 1.90 1.90 0.0
Omega-FPGA(A) YES 0.13 0.13 0.0
Optimus-FPGA(A) YES 0.12 0.12 0.0
Primary-BIOS(A) YES 14.24 14.24 0.0
--------------------------------------------------------------------------------
A9K-RSP4-64G Alpha-FPGA(A) YES 0.14 0.14 0.0
CBC(A) NO 34.38 34.38 0.0
Cha-FPGA(A) YES 0.05 0.05 0.0
IPU-FPGA(A) YES 0.50 0.50 0.0
IPU-FSBL(A) YES 1.90 1.90 0.0
IPU-Linux(A) YES 1.90 1.90 0.0
Omega-FPGA(A) YES 0.13 0.13 0.0
Optimus-FPGA(A) YES 0.12 0.12 0.0
Primary-BIOS(A) YES 10.54 10.54 0.0
--------------------------------------------------------------------------------
A9K-RSP880-SE Alpha-FPGA(A) YES 0.14 0.14 0.0
CBC(A) NO 34.38 34.38 0.0
Cha-FPGA(A) YES 0.05 0.05 0.0
IPU-FPGA(A) YES 0.50 0.50 0.0
IPU-FSBL(A) YES 1.90 1.90 0.0
IPU-Linux(A) YES 1.90 1.90 0.0
Omega-FPGA(A) YES 0.13 0.13 0.0
Optimus-FPGA(A) YES 0.12 0.12 0.0
Primary-BIOS(A) YES 10.54 10.54 0.0
--------------------------------------------------------------------------------
A9K-RSP880-TR Alpha-FPGA(A) YES 0.14 0.14 0.0
CBC(A) NO 34.38 34.38 0.0
Cha-FPGA(A) YES 0.05 0.05 0.0
IPU-FPGA(A) YES 0.50 0.50 0.0
IPU-FSBL(A) YES 1.90 1.90 0.0
IPU-Linux(A) YES 1.90 1.90 0.0
Omega-FPGA(A) YES 0.13 0.13 0.0
Optimus-FPGA(A) YES 0.12 0.12 0.0
Primary-BIOS(A) YES 10.54 10.54 0.0
--------------------------------------------------------------------------------
A9KL-4x100GE CBC(A) NO 46.06 46.06 0.1
IPU-FPGA(A) YES 1.80 1.80 0.1
IPU-FSBL(A) YES 1.92 1.92 0.1
IPU-Linux(A) YES 1.92 1.92 0.1
Morra-0(A) YES 1.02 1.02 0.1
Morra-1(A) YES 1.02 1.02 0.1
Primary-BIOS(A) YES 9.21 9.21 0.1
Sideswipe-0(A) YES 1.02 1.02 0.1
Sideswipe-1(A) YES 1.02 1.02 0.1
--------------------------------------------------------------------------------
A9KL-4x100GE-SE CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9KL-4x100GE-SE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9KL-4x100GE-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9KL-4x100GE-TR CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
A9KL-4x100GE-TR-TAA CBC(A) NO 38.23 38.23 0.0
Dalla(A) YES 1.09 1.09 0.0
IPU-FPGA(A) YES 1.86 1.86 0.0
IPU-FSBL(A) YES 1.91 1.91 0.0
IPU-Linux(A) YES 1.91 1.91 0.0
Meldun-0(A) YES 1.06 1.06 0.0
Meldun-1(A) YES 1.06 1.06 0.0
Primary-BIOS(A) YES 8.43 8.43 0.0
--------------------------------------------------------------------------------
ASR-9006-AC CBC(A) NO 7.105 7.105 0.0
--------------------------------------------------------------------------------
ASR-9006-AC-V2 CBC(A) NO 7.105 7.105 0.0
--------------------------------------------------------------------------------
ASR-9006-FAN CBC(A) NO 5.04 5.04 0.0
--------------------------------------------------------------------------------
ASR-9006-FAN-V2 CBC(A) NO 5.04 5.04 0.0
--------------------------------------------------------------------------------
ASR-9010-AC CBC(A) NO 7.105 7.105 0.0
--------------------------------------------------------------------------------
ASR-9010-AC-V2 CBC(A) NO 7.105 7.105 0.0
--------------------------------------------------------------------------------
ASR-9010-FAN CBC(A) NO 4.03 4.03 0.0
--------------------------------------------------------------------------------
ASR-9010-FAN-V2 CBC(A) NO 29.12 29.12 0.0
--------------------------------------------------------------------------------
ASR-9904-AC CBC(A) NO 7.105 7.105 0.0
--------------------------------------------------------------------------------
ASR-9904-FAN CBC(A) NO 31.05 31.05 0.0
--------------------------------------------------------------------------------
ASR-9912-AC CBC(A) NO 7.105 7.105 0.0
--------------------------------------------------------------------------------
ASR-9912-FAN CBC(A) NO 31.05 31.05 0.0
--------------------------------------------------------------------------------
ASR-9912-SFC220 CBC(A) NO 37.20 37.20 0.0
IPU-FPGA(A) YES 0.33 0.33 0.0
IPU-FSBL(A) YES 1.79 1.79 0.0
IPU-Linux(A) YES 1.79 1.79 0.0
--------------------------------------------------------------------------------
ASR-9922-AC CBC-0(A) NO 7.105 7.105 0.0
CBC-1(A) NO 7.105 7.105 0.0
--------------------------------------------------------------------------------
ASR-9922-FAN CBC(A) NO 29.12 29.12 0.0
--------------------------------------------------------------------------------
ASR-9922-FAN-V2 CBC(A) NO 40.07 40.07 0.0
PSOC(A) NO 2.04 2.04 0.0
--------------------------------------------------------------------------------
PWR-2KW-DC-V2 DT-PriMCU(A) NO 6.03 6.03 0.12
DT-Sec54vMCU(A) NO 6.02 6.02 0.12
DT-Sec5vMCU(A) NO 6.03 6.03 0.12
EM-PriMCU(A) NO 3.12 3.12 0.12
EM-Sec54vMCU(A) NO 3.19 3.19 0.12
EM-Sec5vMCU(A) NO 3.19 3.19 0.12
--------------------------------------------------------------------------------
PWR-3KW-AC-V2 DT-PriMCU(A) NO 6.02 6.02 1.0
DT-Sec54vMCU(A) NO 6.02 6.02 1.0
DT-Sec5vMCU(A) NO 6.04 6.04 1.0
EM-Sec54vMCU(A) NO 3.12 3.12 0.21
EM-Sec5vMCU(A) NO 3.18 3.18 0.21
--------------------------------------------------------------------------------
PWR-4.4KW-DC-V3 DT-Pri0MCU(A) NO 3.00 3.00 0.1
DT-Pri1MCU(A) NO 3.00 3.00 0.1
DT-Sec054vMCU(A) NO 3.00 3.00 0.1
DT-Sec154vMCU(A) NO 3.00 3.00 0.1
DT-Sec5vMCU(A) NO 3.00 3.00 0.1
--------------------------------------------------------------------------------
PWR-6KW-AC-V3 DT-Pri0MCU(A) NO 4.01 4.01 0.1
DT-Pri1MCU(A) NO 4.01 4.01 0.1
DT-Sec054vMCU(A) NO 4.02 4.02 0.1
DT-Sec154vMCU(A) NO 4.02 4.02 0.1
DT-Sec5vMCU(A) NO 4.03 4.03 0.1
Other Important Information
-
A9K-VSM-500 and A9K-SIP-700 are not supported on Cisco IOS XR 64 bit image.
-
Cisco IOS XR Release 5.3.0 and later does not support combination of Cisco ASR 9000 High Density 100GE Ethernet Line Card and Cisco ASR 9000 Ethernet Line Card in a single chassis.
For the list of ASR 9000 Series line card types, see: http://www.cisco.com/c/en/us/support/docs/routers/asr-9000-series-aggregation-services-routers/116726-qanda-product-00.html#anc2
-
ISM (Integrated Services Module) is not supported on the ASR 9000 series routers with any cards last supported release is Cisco IOS XR Release 5.3.3.
-
From Release 6.0, A9K-RSP-4G, A9K-RSP-8G and the ASR 9000 Ethernet Line Cards also known as the first generation ASR 9000 LCs are not supported. For a detailed listing, see End-of-Life and End-of-Sale Notices
-
From Release 6.0, the onePK toolkit is not supported.
-
Country-specific laws, regulations, and licenses—In certain countries, use of these products may be prohibited and subject to laws, regulations, or licenses, including requirements applicable to the use of the products under telecommunications and other laws and regulations; customers must comply with all such applicable laws in the countries in which they intend to use the products.
-
Card fan controller, and RSP removal—For all card removal and replacement (including fabric cards, line cards, fan controller, and RSP) follow the instructions provided by Cisco to avoid impact to traffic. See the Cisco ASR 9000 Series Aggregation Services Router Getting Started Guide for procedures.
-
Exceeding Cisco testing—If you intend to test beyond the combined maximum configuration tested and published by Cisco, contact your Cisco Technical Support representative to discuss how to engineer a large-scale configuration for your purpose.
-
Installing a Line Card—For a fully populated 40-port high density Line Card with cable optics, maintenance time required for card replacement is higher. For more information about Line Card installation and removal, refer to the Cisco ASR 9000 Aggregation Services Router Ethernet Line Card Installation Guide.
-
Serial Interfaces Out of Order in show ipv4 interface brief or show ipv6 interface briefcommand—The show ip interface brief command might display interfaces out of order if different types of serialization are used on the SPA cards.
The serial interfaces are displayed in the show ip interface brief command output in the order shown in the example below:
The ordering is based on:
-
Slot
-
SPA
-
Type
-
T3
-
T3/T1
-
vt15-T1
-
multilink
This may be different from the usual order (as the interfaces appear out of order) for the user who is accustomed to IOS.
Example output:
With multiple cards:
Serial0/2/0/1/1/1:0 (t3/t1) Serial0/2/0/1/2/1:0 Serial0/2/0/1/3/1:0 Serial0/2/0/1/4/1:0 Serial0/2/0/1/5/1:0 Serial0/2/0/1/6/1:0 Serial0/2/0/1/7/1:0 Serial0/2/0/1/8/1:0 Serial0/2/0/1/9/1:0 Serial0/2/0/1/10/1:0 Serial0/2/0/1/11/1:0 Serial0/2/0/1/12/1:0 Serial0/2/0/0/1/1/1:0 (vt15) Serial0/2/0/0/2/1/1:0 Serial0/2/0/0/3/1/1:0 Serial0/2/0/0/4/1/1:0 Serial0/2/0/0/5/1/1:0 Serial0/2/0/0/6/1/1:0 Serial0/2/0/0/7/1/1:0 Serial0/2/0/0/8/1/1:0 Serial0/2/0/0/9/1/1:0 Serial0/2/0/0/10/1/1:0 Serial0/2/0/0/11/1/1:0 Serial0/2/0/0/12/1/1:0 Multilink 0/2/0/0/1 Serial0/2/1/0/1 (t3) Serial0/2/1/1/1/1:0 (t3/t1) Serial0/2/1/1/2/1:0 Serial0/2/1/1/3/1:0 Serial0/2/1/1/4/1:0 Serial0/2/1/1/5/1:0 Serial0/2/1/1/6/1:0 Serial0/2/1/1/7/1:0 Serial0/2/1/1/8/1:0 Serial0/2/1/1/9/1:0 Serial0/2/1/1/10/1:0 Serial0/2/1/1/11/1:0 Serial0/2/1/1/12/1:0 Serial0/6/0/1/1/1:0 Serial0/6/0/1/2/1:0 Serial0/6/0/1/3/1:0 Serial0/6/0/1/4/1:0 Serial0/6/0/1/5/1:0 Serial0/6/0/1/6/1:0 Serial0/6/0/1/7/1:0 Serial0/6/0/1/8/1:0 Serial0/6/0/1/9/1:0 Serial0/6/0/1/10/1:0 Serial0/6/0/1/11/1:0 Serial0/6/0/1/12/1:0 Serial0/6/0/0/1/1/1:0 Serial0/6/0/0/2/1/1:0 Serial0/6/0/0/3/1/1:0 Serial0/6/0/0/4/1/1:0 Serial0/6/0/0/5/1/1:0 Serial0/6/0/0/6/1/1:0 Serial0/6/0/0/7/1/1:0 Serial0/6/0/0/8/1/1:0 Serial0/6/0/0/9/1/1:0 Serial0/6/0/0/10/1/1:0 Serial0/6/0/0/11/1/1:0 Serial0/6/0/0/12/1/1:0 Multilink 0/6/0/0/1 Serial0/6/1/0/1 Serial0/6/1/1/1/1:0 Serial0/6/1/1/2/1:0 Serial0/6/1/1/3/1:0 Serial0/6/1/1/4/1:0 Serial0/6/1/1/5/1:0 Serial0/6/1/1/6/1:0 Serial0/6/1/1/7/1:0 Serial0/6/1/1/8/1:0 Serial0/6/1/1/9/1:0 Serial0/6/1/1/10/1:0 Serial0/6/1/1/11/1:0 Serial0/6/1/1/12/1:0
-
Caveats
Caveats describe unexpected behavior in Cisco IOS XR Software releases. Severity-1 caveats are the most critical caveats; severity-2 caveats are less critical.
This section contains the caveats for Cisco ASR 9000 Series Aggregation Services Router Software Release 6.1.2 and the Cisco ASR 9000 Series Aggregation Services Router platform.
Cisco IOS XR Caveats
There are no caveats specific to Cisco IOS XR Software Release.
There are no caveats specific to Cisco IOS XR Software Release.
Caveats Specific to the Cisco ASR 9000 Series Aggregation Services Router
Identifier |
Description |
---|---|
CFM process blocked , all CFM cmd time out for an hour after upgrade |
|
L3GOLF: Standby RP ipv4_arm leaks memory with unconfig/re-config 1K scale global VRFs script running |
Cisco IOS XR 64 bit
There are no caveats in this release for Cisco IOS XR 64-bit
Caveats Specific to the ASR 9001 Router
There are no caveats for ASR 9001 in this release.
Upgrading Cisco IOS XR Software
Cisco IOS XR Software is installed and activated from modular packages, allowing specific features or software patches to be installed, upgraded, or downgraded without affecting unrelated processes. Software packages can be upgraded or downgraded on all supported card types, or on a single card (node).
Software packages are installed from package installation envelope (PIE) files that contain one or more software components.
Caution |
Before upgrading to a new release, you must install all available bridge SMUs of the current release. For information on the bridge SMUs, refer the upgrade document. |
We recommend you to upgrade all FPGAs on a given node using the upgrade hw-module fpd all location command. Do not upgrade a card using the upgrade hw-module fpd fpga-type location command as this results in FPGA inconsistencies therefore causes card boot failure.
Troubleshooting
For information on troubleshooting Cisco IOS XR Software, see the Cisco ASR 9000 Series Aggregation Services Routers Getting Started Guide and the Cisco ASR 9000 Series Router Troubleshooting Feature Module
Resolving Upgrade File Issues
Note |
In some very rare cases inconsistencies in the content of the internal configuration files can appear. In such situations, to avoid configuration loss during upgrade, the following steps can be optionally done before activating packages: |
-
Clear the NVGEN cache:
RP/0/RSP0/CPU0:router# run nvgen -F 1
-
Create a dummy config commit:
RP/0/RSP0/CPU0:router# config RP/0/RSP0/CPU0:router(config)# hostname <hostname> RP/0/RSP0/CPU0:rotuer(config)# commit RP/0/RSP0/CPU0:router(config)# end
-
Force a commit update by using the reload command. Press n when the confirmation prompt appears:
RP/0/RSP0/CPU0:router# reload Updating Commit Database. Please wait...[OK] Proceed with reload? [confirm]
-
Press n
In some cases other activity may preclude a reload. The following message may display:
RP/0/RSP0/CPU0:router# reload Preparing system for backup. This may take a few minutes ............System configuration backup in progress [Retry later]
If you receive this message wait and then retry the command after some time.
Related Documentation
The most current Cisco ASR 9000 router hardware documentation is located at the following URL:
https://www.cisco.com/c/en/us/support/routers/asr-9000-series-aggregation-services-routers/products-installation-guides-list.htmlThe Cisco IOS XR Software documentation set includes the Cisco IOS XR software configuration guides and command references.
-
The configuration guides are located at this URL:
https://www.cisco.com/c/en/us/support/routers/asr-9000-series-aggregation-services-routers/products-installation-and-configuration-guides-list.html -
The command reference guides are located at this URL:
https://www.cisco.com/c/en/us/support/routers/asr-9000-series-aggregation-services-routers/products-command-reference-list.html
The document containing Cisco IOS XR System Error Messages (SEM) is located at this URL:
https://www.cisco.com/c/en/us/td/docs/ios_xr_sw/error/message/ios-xr-sem-guide.htmlProduction Software Maintenance Updates (SMUs)
A production SMU is a SMU that is formally requested, developed, tested, and released. Production SMUs are intended for use in a live network environment and are formally supported by the Cisco TAC and the relevant development teams. Software bugs identified through software recommendations or Bug Search Tools are not a basis for production SMU requests.
For information on production SMU types, refer the Production SMU Types section of the IOS XR Software Maintenance Updates (SMUs) guide.
Communications, Services, and Additional Information
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To obtain general networking, training, and certification titles, visit Cisco Press.
-
To find warranty information for a specific product or product family, access Cisco Warranty Finder.
Cisco Bug Search Tool
Cisco Bug Search Tool (BST) is a web-based tool that acts as a gateway to the Cisco bug tracking system that maintains a comprehensive list of defects and vulnerabilities in Cisco products and software. BST provides you with detailed defect information about your products and software.