Veritas InfoScale™ 7.4.1 Virtualization Guide - Linux on ESXi
- Section I. Overview
- About Veritas InfoScale solutions in a VMware environment
- Section II. Deploying Veritas InfoScale products in a VMware environment
- Getting started
- Understanding Storage Configuration
- Configuring storage
- Enabling disk UUID on virtual machines
- Installing Array Support Library (ASL) for VMDK on cluster nodes
- Excluding the boot disk from the Volume Manager configuration
- Creating the VMDK files
- Mapping the VMDKs to each virtual machine (VM)
- Enabling the multi-write flag
- Getting consistent names across nodes
- Creating a file system
- Section III. Use cases for Veritas InfoScale product components in a VMware environment
- Application availability using Cluster Server
- Multi-tier business service support
- Improving storage visibility, availability, and I/O performance using Dynamic Multi-Pathing
- Use cases for Dynamic Multi-Pathing (DMP) in the VMware environment
- How DMP works
- Achieving storage visibility using Dynamic Multi-Pathing in the hypervisor
- Achieving storage availability using Dynamic Multi-Pathing in the hypervisor
- Improving I/O performance with Dynamic Multi-Pathing in the hypervisor
- Achieving simplified management using Dynamic Multi-Pathing in the hypervisor and guest
- Improving data protection, storage optimization, data migration, and database performance
- Use cases for InfoScale product components in a VMware guest
- Protecting data with InfoScale product components in the VMware guest
- Optimizing storage with InfoScale product components in the VMware guest
- About SmartTier in the VMware environment
- About compression with InfoScale product components in the VMware guest
- About thin reclamation with InfoScale product components in the VMware guest
- About SmartMove with InfoScale product components in the VMware guest
- About SmartTier for Oracle with InfoScale product components in the VMware guest
- Migrating data with InfoScale product components in the VMware guest
- Improving database performance with InfoScale product components in the VMware guest
- Setting up virtual machines for fast failover using Storage Foundation Cluster File System High Availability on VMware disks
- About use cases for InfoScale Enterprise in the VMware guest
- Storage Foundation Cluster File System High Availability operation in VMware virtualized environments
- Storage Foundation functionality and compatibility matrix
- About setting up Storage Foundation Cluster File High System High Availability on VMware ESXi
- Planning a Storage Foundation Cluster File System High Availability (SFCFSHA) configuration
- Enable Password-less SSH
- Enabling TCP traffic to coordination point (CP) Server and management ports
- Configuring coordination point (CP) servers
- Deploying Storage Foundation Cluster File System High Availability (SFCFSHA) software
- Configuring Storage Foundation Cluster File System High Availability (SFCFSHA)
- Configuring non-SCSI3 fencing
- Section IV. Reference
How InfoScale product components enhance VMware capabilities
In VMware vSphere, VMFS does not have the capability to mirror storage. This forces users to use mirrored LUN's to provide this functionality to the virtual machines. With Veritas Volume Manager running in the virtual machine, utilizing raw device mapping, data can be protected with mirroring in the virtual machine, including the ability to mirror between storage arrays.
With SFCFSHA and Flexible Storage Sharing, you can also mirror storage on local disks directly attached to an ESXi host to local disks directly attached to a remote ESXi host, whether these disks are presented as raw device mappings or VMDK files.
Storage Foundation can make painful migrations of data from physical to virtual environments easier and safer to execute. With Storage Foundation there is no need to actually copy any data from source to destination; rather, the administrator re-assigns the same storage (or a copy of it for a test migration) to the virtual environment. Once the storage is assigned and configured into the virtual machine, Veritas Volume Manager will scan the device tree and discover the disk group and volume structure.
Figure: Migration workflow describes an example workflow.
Veritas Volume Manager is agnostic to the actual physical device entry. That is, Veritas Volume Manager does not care if the device is /dev/sdb or /dev/sdaz. This transparency makes it easy to move storage from one node to another, or between physical and virtual machines.