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SOC Automation Framework

$49

Automate Tier-1 SOC operations with detection playbooks, alert triage workflows, enrichment scripts, and response automation.

📁 9 files
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📁 File Structure 9 files

soc-automation-framework/ ├── LICENSE ├── README.md ├── free-sample.zip ├── guide/ │ ├── 01-soc-automation-architecture.md │ ├── 02-alert-ingestion-and-normalization.md │ ├── 03-playbook-engine-and-automated-triage.md │ ├── 04-enrichment,-case-management,-escalation.md │ └── 05-metrics,-reporting,-and-continuous-impro.md └── index.html

📖 Documentation Preview README excerpt

SOC Automation Framework

Automate Tier-1 SOC Operations with Playbooks

Automation framework for SOC alert triage, enrichment, and response.


What's Included

Guide Chapters

  • Chapter 1: SOC Automation Architecture
  • Chapter 2: Alert Ingestion and Normalization
  • Chapter 3: Playbook Engine and Automated Triage
  • Chapter 4: Enrichment, Case Management, Escalation
  • Chapter 5: Metrics, Reporting, and Continuous Improvement

Features

  • Pluggable playbook engine with YAML workflows
  • Alert normalization from 15+ SIEM/EDR sources
  • Automated enrichment: VirusTotal, Shodan, OTX
  • Case management: TheHive, Cortex, Jira, ServiceNow
  • Automated containment via firewall, EDR, IAM APIs
  • SLA tracking with configurable escalation policies
  • MITRE ATT&CK mapping for alert classification

Technical Stack

Python, TheHive, Cortex, SIEM


Quick Start

1. Start with the interactive reader (index.html) or browse the guide chapters directly

2. Chapter 1 provides a free preview -- explore the full product after purchase

3. Each chapter includes code examples, configuration snippets, and best practices

4. Use the search and theme toggle in the reader to customize your experience

Requirements

  • No specialized software required for reading the guides
  • Code examples include setup instructions within each chapter
  • Python 3.8+ recommended for running example scripts
  • A modern web browser for the interactive reader

File Structure


soc-automation-framework/
+-- README.md           # This file
+-- LICENSE             # MIT License
+-- index.html          # Interactive reader (free preview)
+-- free-sample.zip     # Free sample with Chapter 1
+-- guide/
    +-- 01-*.md through 05-*.md

... continues with setup instructions, usage examples, and more.

📄 Content Sample guide/01-soc-automation-architecture.md

Chapter 1: SOC Automation Architecture

Duration: 45-60 minutes | Difficulty: Intermediate | Prerequisites: Basic familiarity with Python, TheHive, Cortex, SIEM

Learning Objectives

By the end of this chapter, you will be able to:

1. Define the core architectural patterns and principles

2. Design a reference architecture aligned to business requirements

3. Identify the appropriate building blocks for each layer

4. Evaluate trade-offs between different design approaches

5. Create an implementation roadmap from architecture to production

6. Apply Python patterns to production scenarios


1. Understanding the Fundamentals

Before diving into implementation, it is essential to establish a solid conceptual foundation. SOC Automation Architecture forms a critical pillar of the SOC Automation Framework framework, and getting the fundamentals right determines the success of everything built on top.

1.1 Core Concepts

The core concepts underlying this chapter are rooted in established industry patterns and best practices. Each concept builds on the previous one, creating a coherent framework for reasoning about complex systems.

ConceptDescriptionApplication
Foundation LayerThe core primitives and building blocksEstablish base capabilities for all higher-level patterns
Integration LayerInterfaces and connectors between componentsDefine clear boundaries and contracts between subsystems
Orchestration LayerCoordination and workflow managementManage multi-step processes with error handling
Observability LayerMonitoring, logging, and tracingProvide visibility into system behavior and performance
Governance LayerPolicies, controls, and complianceEnsure consistent operation within organizational guardrails

1.2 Why This Matters

In production environments, getting this wrong has measurable consequences. Teams that implement these patterns correctly experience:

  • Reduced incident frequency by 40-60% through proactive detection
  • Faster mean-time-to-resolution through structured procedures
  • Higher team confidence through documented and tested runbooks
  • Lower operational overhead through automation and standardization

2. Implementation Walkthrough

... and much more in the full download.

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