Skill-Details

threat-detection

Security detection engineering.

ÜbereinstimmungDirektGeprüft für ingenieurwesen
Quellealirezarezvani/claude-skillsExterne Quelle
Gemeldete InstallationenNicht gemeldetNur Popularitätssignal

Vor Nutzung prüfen

Die automatische Prüfung bewertet Relevanz, nicht Sicherheit oder Empfehlung. Lies vor der Nutzung die Quellanweisungen.

Gespeicherte Quellvorschau

SKILL.md

Dieser Auszug wurde bei der Prüfung gespeichert. Die externe Quelle enthält die vollständige und aktuelle Version.

---
name: "threat-detection"
description: "Use when hunting for threats in an environment, analyzing IOCs, or detecting behavioral anomalies in telemetry. Covers hypothesis-driven threat hunting, IOC sweep generation, z-score anomaly detection, and MITRE ATT&CK-mapped signal prioritization."
---

# Threat Detection

Threat detection skill for proactive discovery of attacker activity through hypothesis-driven hunting, IOC analysis, and behavioral anomaly detection. This is NOT incident response (see incident-response) or red team operations (see red-team) — this is about finding threats that have evaded automated controls.

---

## Table of Contents

- [Overview](#overview)
- [Threat Signal Analyzer](#threat-signal-analyzer)
- [Threat Hunting Methodology](#threat-hunting-methodology)
- [IOC Analysis](#ioc-analysis)
- [Anomaly Detection](#anomaly-detection)
- [MITRE ATT&CK Signal Prioritization](#mitre-attck-signal-prioritization)
- [Deception and Honeypot Integration](#deception-and-honeypot-integration)
- [Workflows](#workflows)
- [Anti-Patterns](#anti-patterns)
- [Cross-References](#cross-references)

---

## Overview

### What This Skill Does

This skill provides the methodology and tooling for **proactive threat detection** — finding attacker activity through structured hunting hypotheses, IOC analysis, and statistical anomaly detection before alerts fire.

### Distinction from Other Security Skills

| Skill | Focus | Approach |
|-------|-------|----------|
| **threat-detection** (this) | Finding hidden threats | Proactive — hunt before alerts |
| incident-response | Active incidents | Reactive — contain and investigate declared incidents |
| red-team | Offensive simulation | Offensive — test defenses from attacker perspective |
| cloud-security | Cloud misconfigurations | Posture — IAM, S3, network exposure |

### Prerequisites

Read access to SIEM/EDR telemetry, endpoint logs, and network flow data. IOC feeds require freshness within 30 days to avoid false positives. Hunting hypotheses must be scoped to the environment before execution.

---

## Threat Signal Analyzer

The `threat_signal_analyzer.py` tool supports three modes: `hunt` (hypothesis scoring), `ioc` (sweep generation), and `anomaly` (statistical detection).

```bash
# Hunt mode: score a hypothesis against MITRE ATT&CK coverage
python3 scripts/threat_signal_analyzer.py --mode hunt \
  --hypothesis "Lateral movement via PtH using compromised service account" \
  --actor-relevance 3 --control-gap 2 --data-availability 2 --json

# IOC mode: generate sweep targets from an IOC feed file
python3 scripts/threat_signal_analyzer.py --mode ioc \
  --ioc-file iocs.json --json

# Anomaly mode: detect statistical outliers in telemetry events
python3 scripts/threat_signal_analyzer.py --mode anomaly \
  --events-file telemetry.json \
  --baseline-mean 100 --baseline-std 25 --json

# List all supported MITRE ATT&CK techniques
python3 scripts/threat_signal_analyzer.py --list-techniques
```

### IOC file format

```json
{
  "ips": ["1.2.3.4", "5.6.7.8"],
  "domains": ["malicious.example.com"],
  "hashes": ["abc123def456..."]
}
```

### Telemetry events file format

```json
[
  {"timestamp": "2024-01-15T14:32:00Z", "entity": "host-01", "action": "dns_query", "volume": 450},
  {"timestamp": "2024-01-15T14:33:00Z", "entity": "host-02", "action": "dns_query", "volume": 95}
]
```

### Exit codes

| Code | Meaning |
|------|---------|
| 0 | No high-priority findings |
| 1 | Medium-priority signals detected |
| 2 | High-priority confirmed findings |

---

## Threat Hunting Methodology

Structured threat hunting follows a five-step loop: hypothesis → data source identification → query execution → finding triage → feedback to detection engineering.

### Hypothesis Scoring

| Factor | Weight | Description |
|--------|--------|-------------|
| Actor relevance | ×3 | How closely does this TTP match known threat actors in your sector? |
| Control gap | ×2 | How many of your existing controls
Vollständige Quelle auf GitHub lesen (öffnet externe Seite)
Kontext

Verwandte Arbeit