# Domain Driven Design

> Plan and route Domain-Driven Design work from strategic modeling to tactical implementation and evented architecture patterns.

- Skill: `techwavedev/domain-driven-design` (Agent Skill)
- Install (CLI): `npx skillmds@latest add techwavedev/domain-driven-design`
- Raw SKILL.md: https://api.skillmd.com/api/skills/techwavedev/domain-driven-design/raw
- Safety review: pending
- Works with: Claude Code, Claude.ai, OpenAI Codex
- Category: Coding & Dev Tools
- Author: techwavedev (https://skillmd.com/u/techwavedev)
- Updated: 2026-09-10
- Page: https://skillmd.com/skills/techwavedev/domain-driven-design

---


# Domain-Driven Design

## Use this skill when

- You need to model a complex business domain with explicit boundaries.
- You want to decide whether full DDD is worth the added complexity.
- You need to connect strategic design decisions to implementation patterns.
- You are planning CQRS, event sourcing, sagas, or projections from domain needs.

## Do not use this skill when

- The problem is simple CRUD with low business complexity.
- You only need localized bug fixes.
- There is no access to domain knowledge and no proxy product expert.

## Instructions

1. Run a viability check before committing to full DDD.
2. Produce strategic artifacts first: subdomains, bounded contexts, language glossary.
3. Route to specialized skills based on current task.
4. Define success criteria and evidence for each stage.

### Viability check

Use full DDD only when at least two of these are true:

- Business rules are complex or fast-changing.
- Multiple teams are causing model collisions.
- Integration contracts are unstable.
- Auditability and explicit invariants are critical.

### Routing map

- Strategic model and boundaries: `@ddd-strategic-design`
- Cross-context integrations and translation: `@ddd-context-mapping`
- Tactical code modeling: `@ddd-tactical-patterns`
- Read/write separation: `@cqrs-implementation`
- Event history as source of truth: `@event-sourcing-architect` and `@event-store-design`
- Long-running workflows: `@saga-orchestration`
- Read models: `@projection-patterns`
- Decision log: `@architecture-decision-records`

If templates are needed, open `references/ddd-deliverables.md`.

## Output requirements

Always return:

- Scope and assumptions
- Current stage (strategic, tactical, or evented)
- Explicit artifacts produced
- Open risks and next step recommendation

## Examples

```text
Use @domain-driven-design to assess if this billing platform should adopt full DDD.
Then route to the right next skill and list artifacts we must produce this week.
```

## Limitations

- This skill does not replace direct workshops with domain experts.
- It does not provide framework-specific code generation.
- It should not be used as a justification to over-engineer simple systems.

---

<!-- AGI-INTEGRATION-START -->

## AGI Framework Integration

> **Adapted for [@techwavedev/agi-agent-kit](https://www.npmjs.com/package/@techwavedev/agi-agent-kit)**
> Original source: [antigravity-awesome-skills](https://github.com/sickn33/antigravity-awesome-skills)

### Memory-First Protocol

Retrieve prior Architecture Decision Records (ADRs), trade-off analyses, and system design rationale. Critical for maintaining consistency across long-running projects.

```bash
# Check for prior architecture/design context before starting
python3 execution/memory_manager.py auto --query "architecture decisions and trade-off analysis for Domain Driven Design"
```

### Storing Results

After completing work, store architecture/design decisions for future sessions:

```bash
python3 execution/memory_manager.py store \
  --content "Architecture: event-driven microservices with CQRS, Pulsar for messaging, Qdrant for semantic search" \
  --type decision --project <project> \
  --tags domain-driven-design architecture
```

### Multi-Agent Collaboration

Broadcast architecture decisions to ALL agents so implementation stays aligned with the chosen patterns.

```bash
python3 execution/cross_agent_context.py store \
  --agent "<your-agent>" \
  --action "Completed architecture review — ADR documented, trade-offs analyzed, team aligned" \
  --project <project>
```

### Control Tower Coordination

Register architecture tasks in the Control Tower so all agents across machines know the current system design and constraints.

<!-- AGI-INTEGRATION-END -->

