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InfoScale™ 9.0 Replication Administrator's Guide - AIX
Last Published:
2025-04-14
Product(s):
InfoScale & Storage Foundation (9.0)
Platform: AIX
- Section I. Getting started with Volume Replicator
- Introducing Volume Replicator
- Understanding how Volume Replicator works
- How VVR uses kernel buffers for replication
- Replication in a shared disk group environment
- Using SmartTier with VVR
- Understanding the VVR snapshot feature
- About VVR compression
- Planning and configuring replication
- Before you begin configuring
- Choosing the mode of volume replication
- Planning the network
- Sizing the SRL
- Understanding replication settings for a Secondary
- Configuring VVR in a VCS environment
- Using the primary-elect feature to choose the primary site after a site disaster or network disruption
- Requirements for configuring VVR in a VCS environment
- Example setting up VVR in a VCS environment
- Configuring the agents for a bunker replication configuration
- Section II. Setting up and administering VVR
- Setting up replication
- Creating a Replicated Data Set
- Creating a Primary RVG of an RDS
- Adding a Secondary to an RDS
- Changing the replication settings for a Secondary
- Synchronizing the Secondary and starting replication
- Starting replication when the data volumes are zero initialized
- Displaying configuration information
- Displaying RVG and RDS information
- Displaying information about data volumes and volume sets
- Displaying information about Secondaries
- Displaying statistics with the vrstat display commands
- Collecting consolidated statistics of the VVR components
- Displaying network performance data
- Administering Volume Replicator
- Administering data volumes
- Associating a volume to a Replicated Data Set
- Associating a volume set to an RDS
- Associating a Data Change Map to a data volume as a log plex
- Resizing a data volume in a Replicated Data Set
- Administering the SRL
- Incrementally synchronizing the Secondary after SRL overflow
- Administering replication
- Administering the Replicated Data Set
- Administering Storage Checkpoints
- Creating RVG snapshots
- Using the instant snapshot feature
- About instant full snapshots
- Preparing the volumes prior to using the instant snapshot feature
- Creating instant full snapshots
- About instant space-optimized snapshots
- Creating instant space-optimized snapshots
- About instant plex-breakoff snapshots
- Administering snapshots
- Using the traditional snapshot feature
- Using Veritas Volume Manager FastResync
- Verifying the DR readiness of a VVR setup
- Backing up the Secondary
- Administering data volumes
- Using VVR for off-host processing
- Transferring the Primary role
- Migrating the Primary
- About taking over from an original Primary
- Failing back to the original Primary
- Choosing the Primary site after a site disaster or network disruption
- Troubleshooting the primary-elect feature
- Replication using a bunker site
- Introduction to replication using a bunker site
- Setting up replication using a bunker site
- Using a bunker for disaster recovery
- Replication using a bunker site in a VCS environment
- Configuring and administering VVR using System Management Interface Tool
- Accessing Volume Replicator interface in SMIT
- Setting up a simple Volume Replicator configuration using SMIT
- Displaying configuration information using SMIT
- Administering Volume Replicator using SMIT
- Taking instant snapshot of data volumes of an RVG using SMIT
- Associating a volume to a Replicated Data Set using SMIT
- Transferring the Primary role using SMIT
- Troubleshooting VVR
- Recovery from configuration errors
- Errors during an RLINK attach
- Errors during modification of an RVG
- Recovery on the Primary or Secondary
- Recovering from Primary data volume error
- Primary SRL volume error cleanup and restart
- Primary SRL header error cleanup and recovery
- Secondary data volume error cleanup and recovery
- Tuning replication performance
- SRL layout
- Tuning Volume Replicator
- VVR buffer space
- Tuning VVR compression
- VVR buffer space
- Setting up replication
- Section III. Analyzing your environment with Volume Replicator Advisor
- Introducing Volume Replicator Advisor (VRAdvisor)
- Collecting the sample of data
- About collecting the sample of data
- Collecting the sample of data on UNIX
- Collecting the sample of data on Windows
- Analyzing the sample of data
- About analyzing the sample of data
- Analyzing the collected data
- Understanding the results of the analysis
- Viewing the analysis results
- Recalculating the analysis results
- Installing Volume Replicator Advisor (VRAdvisor)
- Section IV. VVR reference
- Appendix A. VVR command reference
- Appendix B. Using the In-band Control Messaging utility vxibc and the IBC programming API
- Using the IBC messaging command-line utility
- Examples - Off-host processing
- In-band Control Messaging API
- Appendix C. Volume Replicator object states
- Appendix D. Alternate methods for synchronizing the Secondary
- Using the full synchronization feature
- Using block-level backup and Storage Checkpoint
- Using difference-based synchronization
- Examples for setting up a simple Volume Replicator configuration
- Appendix E. Migrating VVR from IPv4 to IPv6
- Migrating VVR to support IPv6 or dual stack
- About migrating to IPv6 when VCS global clustering and VVR agents are not configured
- About migrating to IPv6 when VCS global clustering and VVR agents are configured
- About migrating to IPv6 when VCS global clustering and VVR agents are configured in the presence of a bunker
- Migrating to IPv6 when VCS global clustering and VVR agents are configured in the presence of a bunker
- Appendix F. Sample main.cf files
Understanding the current IPv4 configuration when VCS global clustering and VVR agents are configured in the presence of a bunker
VVR is configured between the Primary site and the Secondary site and between the Primary site and the bunker site using the IPv4 network. VCS global clustering and VVR agents are configured on the Primary site and the Secondary site.
The VCS global clustering and VVR agents are configured using IPV4 addresses.
There are three sites: the Primary site, the Secondary site, and the bunker site.
Replication is in progress from the Primary to the Secondary and from the Primary to the bunker using IPv4 addresses.
When the VVR global clustering agents are configured, the main.cf
file on the Primary site looks similar to the following:
cluster sfha_site1 ( ClusterAddress = "10.209.87.170" SecureClus = 1 ) remotecluster sfha_site2 ( ClusterAddress = "10.209.87.171" ) heartbeat Icmp ( ClusterList = { sfha_site2 } Arguments @sfha_site2 = { "10.209.87.171" } ) system swax25 ( ) system swax26 ( ) group App_Group ( SystemList = { swax25 = 0, swax26 = 1 } ClusterList = { sfha_site1 = 1, sfha_site2 = 2 } Authority = 1 AutoStartList = { swax25, swax26 } ClusterFailOverPolicy = Manual ) Mount res_mnt ( MountPoint = "/hr_mnt" BlockDevice = "/dev/vx/dsk/hrdg/hr_dv01" FSType = vxfs FsckOpt = "-n" ) RVGPrimary Rvg_Pri ( RvgResourceName = hr_rvg ) requires group VVRGRP online local hard res_mnt requires Rvg_Pri // resource dependency tree // // group App_Group // { // Mount res_mnt // { // RVGPrimary Rvg_Pri // } // } group ClusterService ( SystemList = { swax25 = 0, swax26 = 1 } AutoStartList = { swax25, swax26 } OnlineRetryLimit = 3 OnlineRetryInterval = 120 ) Application wac ( StartProgram = "/opt/VRTSvcs/bin/wacstart" StopProgram = "/opt/VRTSvcs/bin/wacstop" MonitorProcesses = { "/opt/VRTSvcs/bin/wac" } RestartLimit = 3 ) IP gcoip ( Device = en0 Address = "10.209.87.206" NetMask = "255.255.252.0" ) NIC gconic ( Device = en0 NetworkHosts = { "10.209.85.3" } ) gcoip requires gconic wac requires gcoip // resource dependency tree // // group ClusterService // { // Application wac // { // IP gcoip // { // NIC gconic // } // } // } group VVRGRP ( SystemList = { swax25 = 0, swax26 = 1 } AutoStartList = { swax25, swax26 } ) DiskGroup res_dg ( DiskGroup = hrdg ) IP ipres ( Device = en0 Address = "10.209.87.170" NetMask = "255.255.252.0" ) NIC nicres ( Device = en0 NetworkHosts = { "10.209.84.1" } ) RVG res_rvg ( RVG = hr_rvg DiskGroup = hrdg ) ipres requires nicres res_rvg requires res_dg res_rvg requires ipres // resource dependency tree // // group VVRGRP // { // RVG res_rvg // { // DiskGroup res_dg // IP ipres // { // NIC nicres // } // } // }