Articoli correlati a RANSOMWARE RESILIENCE ENGINEERING: Design Systems That...

RANSOMWARE RESILIENCE ENGINEERING: Design Systems That Limit Damage, Protect Recovery, and Survive Destructive Attacks - Brossura

Frost, Rion

 
9798172967153: RANSOMWARE RESILIENCE ENGINEERING: Design Systems That Limit Damage, Protect Recovery, and Survive Destructive Attacks

Sinossi

A backup is not a recovery strategy if the attacker can delete it. A segmented network is not resilient if one privileged identity can still administer everything.

Modern ransomware attacks do more than encrypt files. They exploit identity, administrative tools, cloud control planes, virtualization platforms, remote-management systems, third-party access, backup infrastructure, and the dependencies organizations rely on to recover.

Ransomware Resilience Engineering is a practical guide to designing systems that can survive destructive cyberattacks without allowing one compromise to become an uncontrolled business failure.

Instead of focusing only on prevention, this book teaches a systems-engineering approach built around bounded failure, protected recovery, controlled privilege, trustworthy restoration, and measurable resilience.

Inside, you'll learn how to:

  • Model ransomware as a chain of attacker capabilities rather than a single malware event
  • Measure maximum credible blast radius across identities, systems, management platforms, and vendors
  • Protect identity providers, privileged accounts, emergency access, help-desk recovery, tokens, and service credentials
  • Apply phishing-resistant MFA and administrative tiering where compromise would have the greatest consequences
  • Separate ordinary workload traffic from management, security, backup, and recovery paths
  • Constrain RMM platforms, remote scripting, hypervisors, CI/CD systems, and other administrative amplifiers
  • Design backup systems around independent control planes, immutability, protected catalogs, multiple failure domains, and tested restore capacity
  • Build clean recovery environments that do not depend entirely on potentially compromised production identity
  • Restore identity, DNS, certificates, secrets, networks, databases, applications, and observability in dependency-aware order
  • Extend resilience into cloud accounts, SaaS, containers, virtualization, and infrastructure-as-code environments
  • Detect the behaviors that create destructive capability before widespread encryption begins
  • Preserve security evidence outside the attacker's easy reach
  • Run destructive-event incident command with clear authority, out-of-band communication, containment decisions, and trust classification
  • Design minimum viable operations so critical business functions can continue during technology disruption
  • Control third-party, MSP, RMM, and software-supply-chain blast radius
  • Turn exercises into funded engineering improvements instead of presentation-only tabletop events
  • Measure recovery using time to trusted service, not simply whether a server boots
  • Build an evidence-based ransomware resilience program with maturity levels, scorecards, architecture reviews, and a twelve-month transformation roadmap

The book includes a substantial Ransomware Resilience Engineering Field Guide with critical-service reviews, privileged-identity reviews, management-plane assessments, backup and clean-recovery checks, incident-command readiness reviews, architecture questions, technical-recovery exercises, executive tabletop scenarios, common resilience anti-patterns, a recovery evidence pack, and a first-24-hours technical checklist.

It also provides a 12-week applied learning path that moves from mapping critical services and privilege through protected recovery testing, destructive-behavior detection, clean-room restoration, executive decision exercises, and a funded resilience roadmap.

Build for compromise. Bound the consequences. Preserve recovery. Restore trust.

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