Backup and recovery

SkillMedia

Protects and restores data — backup coverage and scope, retention, immutability against ransomware, and proving restores actually work. Use this to design a backup regime, verify restores, plan retention, protect backups from ransomware, or recover from data loss.

Available today. Use it from your connected AI after setup.

Connect ahel once, and every AI you use reads what you have installed.

Then ask your AI: use the Backup and recovery skill

What this skill tells your AI

The instructions your AI receives, as published by cbrock84/headcount in plugins/it-operations/skills/backup-and-recovery/SKILL.md and read by ahel’s review.

Nobody wants backups; they want restores. The distinction is not pedantic — organizations discover the difference during the only event that matters.

Recovery objectives and which processes must survive are set by operations:business-continuity-and-resilience. This skill delivers against them.

Coverage is where it fails first

Most backup gaps are things nobody thought to include: a database somebody stood up outside the standard process, configuration that only exists in a running system, data in a SaaS platform assumed to be the vendor's responsibility, or a developer's machine holding the only copy of something.

Reconcile backup coverage against the asset register from it-operations:it-asset-management on a cadence and treat the difference as a finding. An untested assumption of coverage is the normal state of affairs.

Note that SaaS providers protect against their failures, not against your deletion or a malicious insider. Read what the contract actually commits to, rather than what the marketing implies.

The 3-2-1 shape, and why the offline copy matters

Three copies, two media or platforms, one off-site — and, since ransomware, one immutable or offline.

Modern ransomware deliberately targets backups first, using the credentials it found on the way in. A backup system reachable with production credentials will be encrypted alongside production. Immutable storage or genuinely offline copies are what survive this, and it is the difference between an outage and an extinction event.

Retention is a policy decision, not a storage one

Retention has to satisfy operational recovery, legal and regulatory obligations, and data protection requirements — which pull in opposite directions. Data protection law obliges deletion of personal data you no longer have a basis to keep, and indefinite backup retention conflicts with that directly. Settle it with legal-risk:privacy-and-data-protection.

Know how you would satisfy a deletion request that touches backups, before one arrives.

Test restores, or you have nothing

A backup job reporting success proves a file was written. It says nothing about whether the data is complete, uncorrupted, or restorable in a usable time.

Test on a schedule, restore to a separate environment, and verify the application actually works on the restored data rather than that the bytes arrived. Record how long it took — that measurement is the only honest input to an RTO, and it is invariably longer than assumed.

Test the full-scale case at least annually. Restoring one file proves the mechanism; restoring the system proves the plan.

Tooling

Backup platforms: Veeam, Rubrik, Cohesity, Commvault, Acronis, and similar.

SaaS data is the gap people miss. Microsoft 365, Google Workspace, and Salesforce retain for a short window and no longer; Veeam, Druva, AvePoint, Keepit, and similar cover it.

The tool is not the control. An untested restore is not a backup, whatever the console reports.

Never

  • Report backup health from job success rather than tested restores.
  • Leave backups reachable with production credentials.
  • Set retention without reconciling legal obligation against deletion duty.
  • Quote an RTO you have not measured by actually restoring.

Signals

GitHub stars
1k
Forks
209
Last commit
Sep 2026
Advanced
Catalog kind
skill
Gateway key
backup-and-recovery
Source
github.com/cbrock84/headcount