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InfoScale™ 9.0 Storage Foundation and High Availability Configuration and Upgrade Guide - Solaris
Last Published:
2025-04-18
Product(s):
InfoScale & Storage Foundation (9.0)
Platform: Solaris
- Section I. Introduction to SFHA
- Section II. Configuration of SFHA
- Preparing to configure
- Preparing to configure SFHA clusters for data integrity
- About planning to configure I/O fencing
- Setting up the CP server
- Configuring the CP server manually
- Configuring CP server using response files
- Configuring SFHA
- Configuring Storage Foundation High Availability using the installer
- Configuring a secure cluster node by node
- Verifying and updating licenses on the system
- Configuring Storage Foundation High Availability using the installer
- Configuring SFHA clusters for data integrity
- Setting up disk-based I/O fencing using installer
- Setting up server-based I/O fencing using installer
- Manually configuring SFHA 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 SFHA cluster manually
- Setting up non-SCSI-3 fencing in virtual environments manually
- Setting up majority-based I/O fencing manually
- Performing an automated SFHA configuration using response files
- Performing an automated I/O fencing configuration using response files
- Section III. Upgrade of SFHA
- Planning to upgrade SFHA
- Preparing to upgrade SFHA
- Upgrading Storage Foundation and High Availability
- Performing a rolling upgrade of SFHA
- Performing a phased upgrade of SFHA
- About phased upgrade
- Performing a phased upgrade using the product installer
- Performing an automated SFHA upgrade using response files
- Upgrading SFHA using Boot Environment upgrade
- Performing post-upgrade tasks
- Post-upgrade tasks when VCS agents for VVR are configured
- Upgrading the Array Support Library
- About enabling LDAP authentication for clusters that run in secure mode
- Planning to upgrade SFHA
- Section IV. Post-installation tasks
- Section V. Adding and removing nodes
- Adding a node to SFHA clusters
- Adding the node to a cluster manually
- Adding a node using response files
- Configuring server-based fencing on the new node
- Removing a node from SFHA clusters
- Removing a node from a SFHA cluster
- Removing a node from a SFHA cluster
- Adding a node to SFHA clusters
- Section VI. Configuration and upgrade reference
- Appendix A. Installation scripts
- Appendix B. SFHA services and ports
- Appendix C. Configuration files
- Appendix D. Configuring the secure shell or the remote shell for communications
- Appendix E. Sample SFHA cluster setup diagrams for CP server-based I/O fencing
- Appendix F. Reconciling major/minor numbers for NFS shared disks
- Appendix G. Configuring LLT over UDP
- Using the UDP layer for LLT
- Manually configuring LLT over UDP using IPv4
- Using the UDP layer of IPv6 for LLT
- Manually configuring LLT over UDP using IPv6
Sample response file for SFHA configuration
The following example shows a response file for configuring Storage Foundation High Availability.
############################################## #Auto generated sfha responsefile # ############################################## our %CFG; $CFG{accepteula}=1; $CFG{opt}{rsh}=1; $CFG{vcs_allowcomms}=1; $CFG{opt}{gco}=1; $CFG{opt}{vvr}=1; $CFG{opt}{prodmode}="SF Enterprise HA"; $CFG{opt}{configure}=1; $CFG{activecomponent}=[ qw(SFHA90) ]; $CFG{prod}="ENTERPRISE90"; $CFG{systems}=[ qw( sys1 sys2 ) ]; $CFG{vm_restore_cfg}{sys1}=0; $CFG{vm_restore_cfg}{sys2}=0; $CFG{vcs_clusterid}=127; $CFG{vcs_clustername}="clus1"; $CFG{vcs_username}=[ qw(admin operator) ]; $CFG{vcs_userenpw}=[ qw(JlmElgLimHmmKumGlj bQOsOUnVQoOUnTQsOSnUQuOUnPQtOS) ]; $CFG{vcs_userpriv}=[ qw(Administrators Operators) ]; $CFG{vcs_lltlink1}{"sys1"}="bge1"; $CFG{vcs_lltlink2}{"sys1"}="bge2"; $CFG{vcs_lltlink1}{"sys2"}="bge1"; $CFG{vcs_lltlink2}{"sys2"}="bge2"; $CFG{opt}{logpath}="/opt/VRTS/install/logs/installer-xxxxxx/installer-xxxxxx.response"; 1;