Continuity and Resilience
Recovery you have proven, not recovery you have promised.
Disaster Recovery & High Availability is an application-level continuity platform. It recovers the application itself — namespaces, workloads, stateful sets, services, configuration, secrets and persistent volumes — in dependency order, to a running and verified state. Conventional tools restore machines and leave the operations team to work out what to start, and in what order, while the incident is still running.
Downtime in a regulated organisation is not only lost revenue; it is a supervisory event. Supervisors increasingly ask for documented recovery objectives that have been tested in practice, and for an audit trail showing they hold. Neor gives you objectives you can configure, rehearse and evidence, on infrastructure you own and inside a boundary you control.
Architecture
Namespace-level restore with label-selector filtering, so a single failed service can be brought back without touching the workloads beside it.
Continuous health polling of every registered cluster; once a cluster stays unhealthy beyond its grace period, the engine taints it, drains pods through graceful eviction and reschedules them onto healthy capacity.
A management cluster you host yourself, holding cross-site scheduling, failover policy and health state for the whole estate.
Production, standby and dedicated recovery clusters, in your own data centres or hosted environments, register as managed members, with workloads placed by weight or by available capacity.
Scheduled full and incremental snapshots of application namespaces and cluster state, written to the storage backend you nominate: S3-compatible object storage, on-premises NFS, or a private object store.
Recovers namespaces, deployments, stateful sets, services, config maps, secrets and persistent volumes in dependency order to a running application state, not a machine image you still have to reassemble.
Cluster health is monitored continuously; when a cluster crosses its unhealthy threshold, eviction and rescheduling begin automatically, without waiting for an operator to intervene.
Failover runs between clusters in one site, between separate data centres, and between on-premises and hosted environments, including geo-distributed deployments across availability zones and regions.
Both topologies are supported under the same control plane, with continuous health monitoring and configurable eviction tolerances.
Monitoring intervals, unhealthy grace periods and eviction timeouts are set explicitly, so RPO and RTO become engineering parameters you can read, change and report rather than numbers in a policy document.
A drill exercises the same automated path a real incident would take, and every run leaves an auditable record, so recovery is demonstrated rather than asserted.
Namespace-level restore handles a single service failing in production; full snapshot restore handles the loss of an entire cluster, limiting blast radius in the first case and rebuild time in the second.
The platform runs entirely inside your environment, with no call-home requirement, so failover decisions, recovery playbooks and backup data never cross a boundary you do not control.
What you end up with
A continuity capability you own outright: recovery objectives that are configured, automated, rehearsed and evidenced, running on your own infrastructure and inside your own jurisdiction.
Infrastructure as a Service
Virtual machines and containers on one control plane.
Platform as a Service
The cloud-native operating system for your estate.
AI Platform as a Service
Your complete AI factory, inside your own boundary.
Kubernetes as a Service
Production Kubernetes, operated by us, owned by you.
GPU Platform as a Service
Turn the accelerators you already own into a metered service.
High-Performance Computing
Simulation and AI on one cluster, inside your own borders.
Unified Multi-Cloud Management
One control plane across every cloud, regulated data kept in country.
Cloud to Edge
Run every site from one console, even when the link drops.
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