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ObjectScale is a software-defined object storage solution that is based on containerized architecture. ObjectScale storage is Kubernetes-based and has the following features:
For more information, see ObjectScale 1.3.x Product Documentation.
ObjectScale is deployable on OpenShift Container Platform 4.14. Dell Technologies recommends deploying ObjectScale on a standard OpenShift cluster with dedicated control-plane nodes to ensure high availability (HA).
ObjectScale uses various Erasure Coding (EC) schemes for data protection. EC is a method of data protection in which data is broken into fragments, expanded, and then encoded with redundant data pieces. The data pieces are stored across different locations or storage media. The goal of EC is to enable data that becomes corrupted in the disk storage process to be reconstructed by using information that is stored elsewhere in ObjectScale. EC schemes are often used instead of traditional RAID because of their ability to reduce the time overhead that is required to reconstruct data and potentially to provide greater data resiliency.
The minimum disk requirements for ObjectScale vary based on EC requirements. When you create an object store, you specify the total raw capacity and EC scheme. The number and size of storage server (SS) instances in an object store represent the persistent storage capacity that is allocated for raw user data. SS instances attach to PVs on disks using PVCs. ObjectScale writes data for best protection, taking account of the number of volumes on disk, disks per SS, and SS instances across the cluster.
The following table shows the number of nodes that are required for varying levels of fault tolerance:
Erasure coding scheme | Number of nodes | Data availability during component failures |
12+4 | 4 to 5 nodes |
|
12+4 | 6 to 9 nodes |
|
12+4 | Up to 10 nodes |
|