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Cluster Server 7.3.1 Configuration and Upgrade Guide - Solaris
Last Published:
2019-04-17
Product(s):
InfoScale & Storage Foundation (7.3.1)
Platform: Solaris
- Section I. Configuring Cluster Server using the script-based installer
- I/O fencing requirements
- Preparing to configure VCS clusters for data integrity
- About planning to configure I/O fencing
- Setting up the CP server
- Configuring VCS
- Configuring a secure cluster node by node
- Verifying and updating licenses on the system
- Configuring VCS clusters for data integrity
- Setting up disk-based I/O fencing using installer
- Setting up server-based I/O fencing using installer
- Section II. Automated configuration using response files
- Performing an automated VCS configuration
- Performing an automated I/O fencing configuration using response files
- Section III. Manual configuration
- Manually configuring VCS
- Configuring LLT manually
- Configuring VCS manually
- Configuring VCS in single node mode
- Modifying the VCS configuration
- Manually configuring the clusters for data integrity
- Setting up disk-based I/O fencing manually
- Setting up server-based I/O fencing manually
- Configuring server-based fencing on the VCS cluster manually
- Setting up non-SCSI-3 fencing in virtual environments manually
- Setting up majority-based I/O fencing manually
- Manually configuring VCS
- Section IV. Upgrading VCS
- Planning to upgrade VCS
- Performing a VCS upgrade using the installer
- Tasks to perform after upgrading to 2048 bit key and SHA256 signature certificates
- Performing an online upgrade
- Performing a rolling upgrade of VCS
- Performing a phased upgrade of VCS
- About phased upgrade
- Performing a phased upgrade using the product installer
- Performing an automated VCS upgrade using response files
- Upgrading VCS using Live Upgrade and Boot Environment upgrade
- Planning to upgrade VCS
- Section V. Adding and removing cluster nodes
- Adding a node to a single-node cluster
- Adding a node to a single-node cluster
- Adding a node to a multi-node VCS cluster
- Manually adding a node to a cluster
- Setting up the node to run in secure mode
- Configuring I/O fencing on the new node
- Adding a node using response files
- Removing a node from a VCS cluster
- Removing a node from a VCS cluster
- Removing a node from a VCS cluster
- Adding a node to a single-node cluster
- Section VI. Installation reference
- Appendix A. Services and ports
- Appendix B. Configuration files
- Appendix C. Configuring LLT over UDP
- Using the UDP layer for LLT
- Manually configuring LLT over UDP using IPv4
- Manually configuring LLT over UDP using IPv6
- Appendix D. Configuring the secure shell or the remote shell for communications
- Appendix E. Installation script options
- Appendix F. Troubleshooting VCS configuration
- Appendix G. Sample VCS cluster setup diagrams for CP server-based I/O fencing
- Appendix H. Reconciling major/minor numbers for NFS shared disks
- Appendix I. Upgrading the Steward process
Sample main.cf file for CP server hosted on a two-node SFHA cluster
The following is an example of a main.cf, where the CP server is hosted on an SFHA cluster.
For this CP server hosted on an SFHA cluster main.cf, note the following values:
Cluster name: cps1
Nodes in the cluster: cps1, cps2
include "types.cf" include "CFSTypes.cf" include "CVMTypes.cf" include "/opt/VRTScps/bin/Quorum/QuorumTypes.cf" // cluster: cps1 // CP servers: // cps1 // cps2 cluster cps1 ( UserNames = { admin = ajkCjeJgkFkkIskEjh, "cps1.example.com@root@vx" = JK, "cps2.example.com@root@vx" = dl } Administrators = { admin, "cps1.example.com@root@vx", "cps2.example.com@root@vx" } SecureClus = 1 ) system cps1 ( ) system cps2 ( ) group CPSSG ( SystemList = { cps1 = 0, cps2 = 1 } AutoStartList = { cps1, cps2 } ) DiskGroup cpsdg ( DiskGroup = cps_dg ) IP cpsvip1 ( Critical = 0 Device @cps1 = bge0 Device @cps2 = bge0 Address = "10.209.81.88" NetMask = "255.255.252.0" ) IP cpsvip2 ( Critical = 0 Device @cps1 = bge1 Device @cps2 = bge1 Address = "10.209.81.89" NetMask = "255.255.252.0" ) Mount cpsmount ( MountPoint = "/etc/VRTScps/db" BlockDevice = "/dev/vx/dsk/cps_dg/cps_volume" FSType = vxfs FsckOpt = "-y" ) NIC cpsnic1 ( Critical = 0 Device @cps1 = bge0 Device @cps2 = bge0 PingOptimize = 0 NetworkHosts @cps1 = { "10.209.81.10 } ) NIC cpsnic2 ( Critical = 0 Device @cps1 = bge1 Device @cps2 = bge1 PingOptimize = 0 ) Process vxcpserv ( PathName = "/opt/VRTScps/bin/vxcpserv" ) Quorum quorum ( QuorumResources = { cpsvip1, cpsvip2 } ) Volume cpsvol ( Volume = cps_volume DiskGroup = cps_dg ) cpsmount requires cpsvol cpsvip1 requires cpsnic1 cpsvip2 requires cpsnic2 cpsvol requires cpsdg vxcpserv requires cpsmount vxcpserv requires quorum // resource dependency tree // // group CPSSG // { // IP cpsvip1 // { // NIC cpsnic1 // } // IP cpsvip2 // { // NIC cpsnic2 // } // Process vxcpserv // { // Quorum quorum // Mount cpsmount // { // Volume cpsvol // { // DiskGroup cpsdg // } // } // } // }