Threat Modeling Techniques
Systematic framework for identifying, analyzing, and mitigating security threats during system design and architecture phases using proven methodologies like STRIDE, attack trees, and risk assessment frameworks.
When to Use This Skill
- Designing new systems or features with security requirements
- Conducting security architecture reviews
- Identifying attack vectors and threat scenarios
- Assessing security risks before implementation
- Creating security requirements and controls
- Evaluating third-party integrations for security impact
- Planning security testing strategies
- Documenting security design decisions
- Training teams on proactive security thinking
- Supporting security compliance initiatives (SOC 2, ISO 27001)
Core Process
Five-Stage Threat Modeling Process:
- Define - Understand the system and create architecture diagrams
- Identify - Enumerate threats using structured methodologies (STRIDE, attack trees)
- Assess - Evaluate risk severity and likelihood (DREAD scoring)
- Mitigate - Design controls and countermeasures
- Validate - Review and test security controls
Quick Reference
| Task |
Load reference |
| STRIDE: Spoofing Identity |
skills/threat-modeling-techniques/references/stride-spoofing.md |
| STRIDE: Tampering with Data |
skills/threat-modeling-techniques/references/stride-tampering.md |
| STRIDE: Repudiation |
skills/threat-modeling-techniques/references/stride-repudiation.md |
| STRIDE: Information Disclosure |
skills/threat-modeling-techniques/references/stride-disclosure.md |
| STRIDE: Denial of Service |
skills/threat-modeling-techniques/references/stride-dos.md |
| STRIDE: Elevation of Privilege |
skills/threat-modeling-techniques/references/stride-elevation.md |
| Attack Trees |
skills/threat-modeling-techniques/references/attack-trees.md |
| Data Flow Diagrams (DFD) |
skills/threat-modeling-techniques/references/data-flow-diagrams.md |
| DREAD Risk Scoring |
skills/threat-modeling-techniques/references/dread-scoring.md |
| Mitigation Strategies |
skills/threat-modeling-techniques/references/mitigation-strategies.md |
| Tools & Process |
skills/threat-modeling-techniques/references/tools-and-process.md |
Core Concepts
STRIDE Methodology
STRIDE categorizes threats into six types:
- Spoofing: Pretending to be someone/something else (authentication bypass, credential theft)
- Tampering: Malicious modification of data (MITM attacks, data corruption)
- Repudiation: Denying actions without proof (lack of audit trails)
- Information Disclosure: Exposing sensitive data (data leaks, verbose errors)
- Denial of Service: Making systems unavailable (resource exhaustion, DDoS)
- Elevation of Privilege: Gaining unauthorized capabilities (privilege escalation, IDOR)
Apply STRIDE to:
- Each component in data flow diagrams
- Every trust boundary crossing
- All data stores and processes
- External integrations and APIs
Attack Trees
Hierarchical diagrams showing attack paths from goals to methods:
[Root: Attack Goal]
|
+-- [OR] Method 1 (alternative paths)
| |
| +-- [AND] Required Step 1.1
| +-- [AND] Required Step 1.2
|
+-- [OR] Method 2 (alternative paths)
Use attack trees to:
- Visualize attack scenarios
- Identify easiest attack paths
- Assign attributes (cost, skill, detection likelihood)
- Prioritize mitigations for high-risk paths
DREAD Risk Scoring
DREAD quantifies threat severity (each criterion scored 0-10, average = risk score):
- Damage Potential: How much damage if exploited?
- Reproducibility: How easy to reproduce?
- Exploitability: How easy to exploit?
- Affected Users: How many users affected?
- Discoverability: How easy to discover?
Risk Levels:
- 7.1-10.0: Critical (immediate action)
- 5.1-7.0: High (next sprint)
- 3.1-5.0: Medium (upcoming releases)
- 0.0-3.0: Low (backlog)
Trust Boundaries
Lines separating different trust levels:
- Network: Internet → DMZ → Internal
- Process: User Mode → Kernel, Container → Host
- User: Anonymous → Authenticated → Admin
At each boundary, verify:
- Authentication required?
- Authorization checks enforced?
- Data encrypted?
- Inputs validated?
- Actions logged?
Practical Workflow
1. Scope Definition (30 min)
- Identify system components in scope
- Define trust boundaries
- List assets requiring protection
- Identify compliance requirements
2. Architecture Decomposition (1 hour)
- Create data flow diagrams (DFDs)
- Document external dependencies
- Identify authentication/authorization points
- Map data storage locations
3. Threat Identification (1-2 hours)
- Apply STRIDE to each DFD element
- Create attack trees for high-value assets
- Brainstorm threat scenarios with team
- Use threat modeling tools for suggestions
4. Risk Assessment (1 hour)
- Apply DREAD scoring to each threat
- Prioritize threats by risk score
- Consider business context and compliance
- Identify quick wins vs. long-term efforts
5. Mitigation Planning (1 hour)
- Design security controls (eliminate, reduce, transfer, accept)
- Document mitigation strategies
- Create security requirements (SEC-### format)
- Assign ownership for implementation
6. Documentation (30 min)
- Export threat model diagrams
- Create security requirements document
- Document risk acceptance decisions
- Share with stakeholders
Common Mistakes
Avoid:
- Threat modeling too late (after implementation complete)
- Focusing only on external threats (ignore insider threats)
- Creating static threat models (never updating them)
- Over-complicating diagrams (too much detail)
- Ignoring low-likelihood, high-impact threats
- Failing to document assumptions and decisions
- Not following through on mitigations
Best Practices
Team Involvement:
- Developers: Implementation details, code-level threats
- Architects: System design, integration points
- Security Team: Threat expertise, attack scenarios
- Operations: Deployment, monitoring, incident response
- Product Owners: Business impact, risk acceptance decisions
Process Integration:
- Design phase: Threat model before implementation
- Development: Implement controls, create security tests
- Deployment: Verify controls, enable monitoring
- Maintenance: Update model when features change
Tools
Microsoft Threat Modeling Tool: Visual DFD editor, automated STRIDE threat generation
OWASP Threat Dragon: Open source, cross-platform, web and desktop versions
IriusRisk: Commercial platform, DevSecOps integration, compliance mapping
ThreatModeler: Collaborative, cloud architecture support
Resources
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1---2name: threat-modeling-techniques3description: Threat modeling methodologies using STRIDE, attack trees, and risk assessment for proactive security analysis. Use when designing secure systems, conducting security reviews, or identifying potential attack vectors in applications. Use when this capability is needed.4---56# Threat Modeling Techniques78Systematic framework for identifying, analyzing, and mitigating security threats during system design and architecture phases using proven methodologies like STRIDE, attack trees, and risk assessment frameworks.910## When to Use This Skill1112- Designing new systems or features with security requirements13- Conducting security architecture reviews14- Identifying attack vectors and threat scenarios15- Assessing security risks before implementation16- Creating security requirements and controls17- Evaluating third-party integrations for security impact18- Planning security testing strategies19- Documenting security design decisions20- Training teams on proactive security thinking21- Supporting security compliance initiatives (SOC 2, ISO 27001)2223## Core Process2425**Five-Stage Threat Modeling Process:**26271. **Define** - Understand the system and create architecture diagrams282. **Identify** - Enumerate threats using structured methodologies (STRIDE, attack trees)293. **Assess** - Evaluate risk severity and likelihood (DREAD scoring)304. **Mitigate** - Design controls and countermeasures315. **Validate** - Review and test security controls3233## Quick Reference3435| Task | Load reference |36| --- | --- |37| STRIDE: Spoofing Identity | `skills/threat-modeling-techniques/references/stride-spoofing.md` |38| STRIDE: Tampering with Data | `skills/threat-modeling-techniques/references/stride-tampering.md` |39| STRIDE: Repudiation | `skills/threat-modeling-techniques/references/stride-repudiation.md` |40| STRIDE: Information Disclosure | `skills/threat-modeling-techniques/references/stride-disclosure.md` |41| STRIDE: Denial of Service | `skills/threat-modeling-techniques/references/stride-dos.md` |42| STRIDE: Elevation of Privilege | `skills/threat-modeling-techniques/references/stride-elevation.md` |43| Attack Trees | `skills/threat-modeling-techniques/references/attack-trees.md` |44| Data Flow Diagrams (DFD) | `skills/threat-modeling-techniques/references/data-flow-diagrams.md` |45| DREAD Risk Scoring | `skills/threat-modeling-techniques/references/dread-scoring.md` |46| Mitigation Strategies | `skills/threat-modeling-techniques/references/mitigation-strategies.md` |47| Tools & Process | `skills/threat-modeling-techniques/references/tools-and-process.md` |4849## Core Concepts5051### STRIDE Methodology5253**STRIDE** categorizes threats into six types:5455- **S**poofing: Pretending to be someone/something else (authentication bypass, credential theft)56- **T**ampering: Malicious modification of data (MITM attacks, data corruption)57- **R**epudiation: Denying actions without proof (lack of audit trails)58- **I**nformation Disclosure: Exposing sensitive data (data leaks, verbose errors)59- **D**enial of Service: Making systems unavailable (resource exhaustion, DDoS)60- **E**levation of Privilege: Gaining unauthorized capabilities (privilege escalation, IDOR)6162**Apply STRIDE to:**63- Each component in data flow diagrams64- Every trust boundary crossing65- All data stores and processes66- External integrations and APIs6768### Attack Trees6970Hierarchical diagrams showing attack paths from goals to methods:7172```73[Root: Attack Goal]74 |75 +-- [OR] Method 1 (alternative paths)76 | |77 | +-- [AND] Required Step 1.178 | +-- [AND] Required Step 1.279 |80 +-- [OR] Method 2 (alternative paths)81```8283**Use attack trees to:**84- Visualize attack scenarios85- Identify easiest attack paths86- Assign attributes (cost, skill, detection likelihood)87- Prioritize mitigations for high-risk paths8889### DREAD Risk Scoring9091**DREAD** quantifies threat severity (each criterion scored 0-10, average = risk score):9293- **D**amage Potential: How much damage if exploited?94- **R**eproducibility: How easy to reproduce?95- **E**xploitability: How easy to exploit?96- **A**ffected Users: How many users affected?97- **D**iscoverability: How easy to discover?9899**Risk Levels:**100- 7.1-10.0: Critical (immediate action)101- 5.1-7.0: High (next sprint)102- 3.1-5.0: Medium (upcoming releases)103- 0.0-3.0: Low (backlog)104105### Trust Boundaries106107Lines separating different trust levels:108109- **Network**: Internet → DMZ → Internal110- **Process**: User Mode → Kernel, Container → Host111- **User**: Anonymous → Authenticated → Admin112113**At each boundary, verify:**114- Authentication required?115- Authorization checks enforced?116- Data encrypted?117- Inputs validated?118- Actions logged?119120## Practical Workflow121122### 1. Scope Definition (30 min)123- Identify system components in scope124- Define trust boundaries125- List assets requiring protection126- Identify compliance requirements127128### 2. Architecture Decomposition (1 hour)129- Create data flow diagrams (DFDs)130- Document external dependencies131- Identify authentication/authorization points132- Map data storage locations133134### 3. Threat Identification (1-2 hours)135- Apply STRIDE to each DFD element136- Create attack trees for high-value assets137- Brainstorm threat scenarios with team138- Use threat modeling tools for suggestions139140### 4. Risk Assessment (1 hour)141- Apply DREAD scoring to each threat142- Prioritize threats by risk score143- Consider business context and compliance144- Identify quick wins vs. long-term efforts145146### 5. Mitigation Planning (1 hour)147- Design security controls (eliminate, reduce, transfer, accept)148- Document mitigation strategies149- Create security requirements (SEC-### format)150- Assign ownership for implementation151152### 6. Documentation (30 min)153- Export threat model diagrams154- Create security requirements document155- Document risk acceptance decisions156- Share with stakeholders157158## Common Mistakes159160**Avoid:**161- Threat modeling too late (after implementation complete)162- Focusing only on external threats (ignore insider threats)163- Creating static threat models (never updating them)164- Over-complicating diagrams (too much detail)165- Ignoring low-likelihood, high-impact threats166- Failing to document assumptions and decisions167- Not following through on mitigations168169## Best Practices170171**Team Involvement:**172- Developers: Implementation details, code-level threats173- Architects: System design, integration points174- Security Team: Threat expertise, attack scenarios175- Operations: Deployment, monitoring, incident response176- Product Owners: Business impact, risk acceptance decisions177178**Process Integration:**179- Design phase: Threat model before implementation180- Development: Implement controls, create security tests181- Deployment: Verify controls, enable monitoring182- Maintenance: Update model when features change183184## Tools185186**Microsoft Threat Modeling Tool**: Visual DFD editor, automated STRIDE threat generation187**OWASP Threat Dragon**: Open source, cross-platform, web and desktop versions188**IriusRisk**: Commercial platform, DevSecOps integration, compliance mapping189**ThreatModeler**: Collaborative, cloud architecture support190191## Resources192193- **Microsoft Threat Modeling Tool**: https://aka.ms/threatmodelingtool194- **OWASP Threat Dragon**: https://owasp.org/www-project-threat-dragon/195- **STRIDE Documentation**: https://learn.microsoft.com/en-us/azure/security/develop/threat-modeling-tool-threats196- **Threat Modeling Manifesto**: https://www.threatmodelingmanifesto.org/197- **NIST Threat Modeling**: https://csrc.nist.gov/projects/threat-modeling198199---200> Converted and distributed by [TomeVault](https://tomevault.io/claim/nickcrew) — claim your Tome and manage your conversions.201<!-- tomevault:4.0:skill_md:2026-04-11 -->