| name | implementing-security-chaos-engineering |
| description | Implements security chaos engineering experiments that deliberately disable or degrade security controls to verify detection and response capabilities. Tests WAF bypass, firewall rule removal, log pipeline disruption, and EDR disablement scenarios using boto3 and subprocess. Use when validating SOC detection coverage and resilience.
|
| domain | cybersecurity |
| tags | ["implementing","security","chaos","engineering"] |
| subdomain | security-operations |
| version | 1.0 |
| author | oyi77 |
| license | Apache-2.0 |
| nist_ai_rmf | ["MEASURE-2.7","MAP-5.1","MANAGE-2.4"] |
| atlas_techniques | ["AML.T0070","AML.T0066","AML.T0082"] |
| nist_csf | ["DE.CM-01","RS.MA-01","GV.OV-01","DE.AE-02"] |
Implementing Security Chaos Engineering
Overview
Cybersecurity skill for implementing security chaos engineering. Follows industry best practices and security standards.
When to Use
Trigger phrases:
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"implementing security chaos engineering"
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"When deploying or configuring implementing security chaos engineering capabiliti"
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"When establishing security controls aligned to compliance requirements"
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"When building or improving security architecture for this domain"
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When deploying or configuring implementing security chaos engineering capabilities in your environment
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When establishing security controls aligned to compliance requirements
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When building or improving security architecture for this domain
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When conducting security assessments that require this implementation
When NOT to Use
- When you lack proper authorization for testing
- For production systems without change management
- When the task requires legal or compliance expertise beyond technical scope
Prerequisites
- Familiarity with security operations concepts and tools
- Access to a test or lab environment for safe execution
- Python 3.8+ with required dependencies installed
- Appropriate authorization for any testing activities
Workflow
import re
IOC_PATTERNS = {
"ip": r"\b(?:\d{1,3}\.){3}\d{1,3}\b",
"domain": r"\b[a-z0-9-]+\.[a-z]{2,}\b",
"hash_md5": r"\b[a-f0-9]{32}\b",
"hash_sha256": r"\b[a-f0-9]{64}\b",
}
def extract_iocs(text: str) -> dict:
return {k: re.findall(v, text) for k, v in IOC_PATTERNS.items()}