Checkpoint current state of mobile ip


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Perform the tasks described below on both the primary active and backup standby ICSR systems. Any CRC errors will be displayed in the output of the above command. If any errors appear, check the build and re-transfer it onto the chassis. Confirm that the correct image version and build description is displayed. Health checks are a series of Exec mode show commands to determine the readiness of the system to handle a software update.

These checks are run per context and per service type. As the system reboots, it loads the new operating system software image and its corresponding CLI configuration file using the new boot stack entry configured earlier. After the system reboots, establish a CLI session and enter the show version command to verify that the active software version is correct.

Features in the new operating system may require changes to the configuration file. These changes can be done manually or facilitated by custom scripts prepared by Cisco TAC. Make whatever changes are necessary prior to saving the updated configuration file.

[TL;DR] Fast sync

After the system has successfully booted, verify that the new StarOS version is running by executing the Exec mode show version command. You can run the Exec mode show build command to display additional information about the StarOS build release. The off-chassis copy assures that you will have a fallback, loadable configuration file should a problem be encountered. Allow time for session synchronization to occur between the ICSR chassis before preceding to the next steps. An SRP switchover places the primary chassis in standby mode and makes the backup chassis active.

The secondary chassis is now processing sessions with the upgraded software. If your network deployment requires communication with AAA servers, log into the newly active system and perform an AAA monitor check. Log into the backup standby system and repeat the following tasks to complete the upgrade process on the backup standby system:.

This SRP switchover places the primary system in active mode and returns the backup system to the standby. The primary chassis is now processing sessions with the upgraded software. Once the chassis state is verified and subscribers are migrated, perform new call testing to make sure calls are successful. To revert to the previous configuration and software build, perform the following steps as a user with administrative privileges. Skip to content Skip to footer.

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Book Contents Book Contents. Find Matches in This Book. PDF - Complete Book 8. Updated: October 16, Chapter: Interchassis Session Recovery. Disables the sending of NACK messages from the standby chassis that may trigger a full checkpoint from the active chassis.


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Sending full checkpoints increases SRP bandwidth. This command disables the NACK feature for a specific micro-checkpoint which is failing continuously.

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Initiates a forced audit between ICSR chassis. This audit ensures that two ICSR peers are synchronized and identifies any discrepancies prior to scheduled or unscheduled switchover events. Executes a forced switchover from active to inactive. When executed on the active chassis, this command switches the active chassis to the inactive state and the inactive chassis to an active state.

See Note below. Resets the auth probe monitor failure information to 0. Resets the Diameter monitor failure information to 0. Forcibly terminates post-switchover processing. Validates the configuration for an active chassis. Validates that both active and standby chassis are ready for a planned SRP switchover.

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Displays statistics of an external audit. Displays the history of calls lost during switchover. Displays check pointing statistics on session redundancy data session managers, current call recovery records, etc. Displays Service Redundancy Protocol information context, chassis state, peer, connection state, etc.

Displays SRP monitor information. Displays SRP statistics hello messages sent, configuration validation, resource messages, switchovers, etc. Modify the destination context of core network service by applying the example configuration in Modifying the Destination Context for ICSR. Optional: Disable bulk statistics collection on the standby system by applying the example configuration in Disabling Bulk Statistics Collection on a Standby System.

Verify your primary and backup chassis configuration as described in Verifying the Primary and Backup Configuration. Save your configuration as described in Verifying and Saving Your Configuration. Create the chassis redundancy context and bind it to the IP address of the primary chassis by applying the example configuration in Creating and Binding the SRP Context. Configure the chassis redundancy context with priority, chassis mode, hello interval, dead-interval and peer IP address by applying the example configuration in Configuring SRP Context Parameters.

Configure the SRP context with interface parameters including interface name, IP address and port number for interchassis communication by applying the example configuration in Configuring the SRP Context Interface Parameters. Set the subscriber mode to default by following the steps in Setting Subscriber to Default Mode.

UOP IT 241 Week 7 CheckPoint Current State of Mobile IP

Enter the show configuration srp command on each system Exec mode. Verify that both chassis have the same SRP configuration information. Enter the SRP Context mode and enter the service-redundancy-protocol command. Enter the audit daily-start-time command. Specify the daily start time as an hour and minute. For example, a start time of 06 00 indicates that the audit will begin at AM. Enter the audit periodicity command. Specify the interval in minutes for generating SRP audit statistics as an integer from 60 through For example, a periodicity of 90 indicates that SRP audit statistics will be generated every 90 minutes beginning at the specified start time.

A sample configuration sequence appears below. Access to the Cisco support site and download facility is username and password controlled. The FTP client must be configured to transfer the file using binary mode. Run show card table all grep unknown. No output should be displayed. Run show card table grep offline. Run show resources grep Status. The output should display " Within acceptable limits ".

VPC-DI System Administration Guide, Release 21.3

Run show alarm outstanding. Review the output for any issues that may preclude performing the software update. For each BGP-enabled context, run show ip bgp summary. Repeat for all BGP-enable contexts. The service should be "Started". Repeat for all services running on the chassis. Run the Exec mode show boot command to verify that there are less than 10 entries in the boot.

If priority 1 is in use, you must renumber the existing entries to ensure that at least that priority is available. The maximum number of boot stack entries that can be contained in the boot. If there are already 10 entries in the boot stack, you must delete at least one of these entries typically, the lowest priority and, if necessary, renumber some or all of the other entries before proceeding.


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  • Use the no boot system priority command to delete a book stack entry. For information on using the boot system priority command, refer to the Adding a New Boot Stack Entry section in this guide. Run the show session recovery status verbose command on both chassis. Proceed to the next steps only when no errors are seen in the output of this command. On the standby chassis, run show srp checkpoint statistics more.

    On active chassis, run show subs summary grep Total. Compare the number of subscribers on the active chassis and the number of Current pre-allocated calls: on the standby chassis. Allow a few minutes for systems to complete synchronization. On the primary chassis run the srp initiate-switchover command. All existing sessions will be migrated to the backup chassis and it begins servicing new session requests. Allow the switchover process to complete. On the primary chassis, run the show srp info command. UDP port will help us to find out which one is not sending the keep-alive packets:.