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performing-threat-modeling-with-owasp-threat-dragon使用 owasp Threat Dragon 执行威胁建模

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performing-threat-modeling-with-owasp-threat-dragon 用于查找、检索和筛选相关信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要根据关键词、任务场景或来源线索快速定位候选结果时使用。可结合来源仓库、安装命令和原始 README 继续核验具体用法。安装前建议确认权限范围、维护状态,以及是否会触发联网、命令执行或文件读写。

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安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

来源状态

来源可访问

安装方式

通过对话安装

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请帮我安装这个 Agent Skill:performing-threat-modeling-with-owasp-threat-dragon(使用 owasp Threat Dragon 执行威胁建模)
来源仓库:https://github.com/mukul975/anthropic-cybersecurity-skills
仓库路径:skills/performing-threat-modeling-with-owasp-threat-dragon
安装命令:
npx skills add https://github.com/mukul975/anthropic-cybersecurity-skills --skill performing-threat-modeling-with-owasp-threat-dragon
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

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skills.shnpx skills
npx skills add https://github.com/mukul975/anthropic-cybersecurity-skills --skill performing-threat-modeling-with-owasp-threat-dragon

简介

使用 OWASP Threat Dragon 可视化建模系统安全架构与风险点。

  • 适合在设计阶段识别数据流、信任边界与潜在攻击路径。
  • 通过 GitHub 仓库安装,支持离线编辑与团队协作功能。
  • 模型输出需由专业人员复核,避免遗漏关键控制措施。
  • performing-threat-modeling-with-owasp-threat-dragon 属于研究检索类 Skill,可作为该场景下的辅助能力补充。

SKILL.md

Performing Threat Modeling with OWASP Threat Dragon

Overview

OWASP Threat Dragon is an open-source threat modeling tool that enables security teams and developers to create threat model diagrams, identify threats using established methodologies (STRIDE, LINDDUN, CIA, DIE, PLOT4ai), and generate comprehensive reports. Threat Dragon runs as both a web application and desktop application (Windows, macOS, Linux), supporting distributed teams working collaboratively on threat models. Version 2.x provides drag-and-drop diagram creation, an auto-generation rule engine for threats and mitigations, and PDF report output for documentation and GRC compliance.

When to Use

  • When conducting security assessments that involve performing threat modeling with owasp threat dragon
  • When following incident response procedures for related security events
  • When performing scheduled security testing or auditing activities
  • When validating security controls through hands-on testing

Prerequisites

  • OWASP Threat Dragon desktop application or web instance
  • Understanding of data flow diagram (DFD) notation
  • Familiarity with STRIDE or LINDDUN threat classification
  • Application architecture documentation and network diagrams
  • Stakeholder access for design review sessions

Threat Modeling Methodologies

STRIDE

CategoryThreat TypeDescriptionExample
SSpoofingImpersonating a user or systemStolen session tokens
TTamperingModifying data in transit or at restSQL injection altering records
RRepudiationDenying an action occurredMissing audit logs
IInformation DisclosureExposing sensitive dataAPI returning excessive fields
DDenial of ServiceMaking a service unavailableResource exhaustion attack
EElevation of PrivilegeGaining unauthorized accessBroken access control

LINDDUN (Privacy-Focused)

CategoryThreat TypeDescription
LLinkabilityAssociating data items across contexts
IIdentifiabilityIdentifying an individual from data
NNon-repudiationInability to deny an action (privacy risk)
DDetectabilityDetermining if data about a subject exists
DDisclosureExposing personal information
UUnawarenessUser unaware of data collection
NNon-complianceViolating privacy regulations

Workflow

Step 1 --- Install Threat Dragon

Desktop Application: Download the installer from the OWASP Threat Dragon releases page for Windows (.exe), macOS (.dmg), or Linux (.AppImage/.deb/.rpm).

Web Application (Docker):

docker run -p 3000:3000 \
  -e ENCRYPTION_JWT_SIGNING_KEY=$(openssl rand -hex 32) \
  -e ENCRYPTION_JWT_REFRESH_SIGNING_KEY=$(openssl rand -hex 32) \
  -e ENCRYPTION_KEYS='[{"isPrimary":true,"id":0,"value":"'$(openssl rand -hex 16)'"}]' \
  -e NODE_ENV=production \
  owasp/threat-dragon:latest

Step 2 --- Define the Scope

Before creating diagrams, document the scope:

  • System name and description
  • Assets being protected (user data, credentials, payment info)
  • External dependencies (third-party APIs, cloud services)
  • Compliance requirements (GDPR, HIPAA, PCI DSS)
  • Trust boundaries (network segments, authentication zones)

Step 3 --- Create Data Flow Diagrams

In Threat Dragon, create a new threat model and add diagrams using the following DFD elements:

Processes: Applications, microservices, API endpoints that transform data. Represented as circles/rounded rectangles.

Data Stores: Databases, file systems, caches, message queues that persist data. Represented as parallel lines.

External Entities: Users, external systems, third-party services outside the trust boundary. Represented as rectangles.

Data Flows: Communication channels between elements showing data direction. Represented as arrows with labels describing the data.

Trust Boundaries: Dashed lines separating zones of different trust levels (internet/DMZ/internal network, user/admin).

Step 4 --- Identify Threats

For each DFD element, apply the STRIDE methodology:

Element TypeApplicable STRIDE Categories
External EntitySpoofing, Repudiation
ProcessSpoofing, Tampering, Repudiation, Information Disclosure, DoS, Elevation of Privilege
Data StoreTampering, Information Disclosure, DoS
Data FlowTampering, Information Disclosure, DoS

Threat Dragon's rule engine automatically suggests threats based on element types. Review each suggestion and mark as:

  • Mitigated: Existing controls address the threat
  • Not Applicable: Threat does not apply to this context
  • Open: Threat needs to be addressed (assign priority and owner)

Step 5 --- Define Mitigations

For each open threat, document:

  • Mitigation strategy (prevent, detect, respond, transfer)
  • Specific technical controls (encryption, authentication, rate limiting)
  • Owner responsible for implementation
  • Priority and timeline for remediation

Step 6 --- Generate Reports

Threat Dragon produces PDF reports containing:

  • Executive summary of the threat model
  • Data flow diagrams with annotations
  • Threat inventory with severity ratings
  • Mitigation status and recommendations
  • Compliance mapping where applicable

Step 7 --- Integrate into SDLC

  • Conduct threat modeling during the design phase of new features
  • Update threat models when architecture changes occur
  • Review threat models during security design reviews
  • Store threat model files in version control alongside code
  • Reference threat model findings in security acceptance criteria

Threat Model File Format

Threat Dragon uses JSON format for threat models, enabling version control and programmatic manipulation:

{
  "version": "2.2.0",
  "summary": {
    "title": "E-Commerce Application",
    "owner": "Security Team",
    "description": "Threat model for the checkout flow"
  },
  "detail": {
    "contributors": [
      {"name": "Security Architect"}
    ],
    "diagrams": [
      {
        "id": 0,
        "title": "Checkout Flow",
        "diagramType": "STRIDE",
        "cells": []
      }
    ]
  }
}

CycloneDX TMBOM Integration

Threat Dragon participates in the CycloneDX Threat Model Bill of Materials (TMBOM) effort, enabling export to a common format that can be consumed by other threat modeling tools and GRC platforms, preventing vendor lock-in.

Best Practices

  1. Start simple: Begin with high-level DFDs (Level 0) before decomposing into detailed diagrams
  2. Involve developers: Include development team members in threat modeling sessions for realistic threat assessment
  3. Time-box sessions: Limit initial sessions to 90 minutes; iterate in follow-up sessions
  4. Prioritize by risk: Use severity ratings (Critical, High, Medium, Low) to prioritize mitigations
  5. Living documents: Treat threat models as living documents that evolve with the system
  6. Automate where possible: Use the rule engine for initial threat generation, then refine manually

References

适合场景

01

研究助手

02

事实核查

03

知识库问答

04

带来源的搜索总结

能力概览

能力 1

组合搜索和大模型调用

能力 2

支持多来源检索和总结

能力 3

强调引用来源和事实核查

能力 4

适合研究型 Agent 流程

安装后应在对应宿主中按原始 README 的触发条件使用;具体调用方式请以来源页面和 README 为准。

平台分布

Codex

36.39%
按下载量换算40

Claude

32.33%
按下载量换算35

Cursor

18.88%
按下载量换算21

Gemini CLI

10.32%
按下载量换算11

安全审计

Gen Agent Trust Hub

通过

Socket

通过

Snyk

通过

权限和风险

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安装前确认

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