system-design
Guide architectural design decisions for software systems. Use this skill when designing new systems, evaluating architecture trade-offs, or creating technical design documents. Helps produce clear, well-structured design artifacts including component diagrams, data flow, and decision records.
How do I install this agent skill?
npx skills add https://github.com/s-hiraoku/synapse-a2a --skill system-designIs this agent skill safe to install?
- Gen Agent Trust Hubpass
The 'system-design' skill is a purely instructional guide for architectural planning and documentation. It contains no executable scripts, network operations, or tool invocations, making it inherently safe to use.
- Socketpass
No alerts
- Snykpass
Risk: LOW · No issues
- Runlayerpass
1 file scanned · No issues
What does this agent skill do?
System Design
Guide architectural decisions and produce structured design artifacts.
When to Use
- Designing a new system or major feature from scratch
- Evaluating trade-offs between architectural approaches
- Creating Architecture Decision Records (ADRs)
- Reviewing existing architecture for scalability, reliability, or maintainability concerns
- Decomposing a monolith or planning a migration
Workflow
Step 1: Clarify Requirements
Before designing, gather:
- Functional requirements - What must the system do?
- Non-functional requirements - Performance, availability, security, cost constraints
- Scope boundaries - What is explicitly out of scope?
- Existing constraints - Current tech stack, team skills, timeline
Ask the user to clarify any ambiguous requirements before proceeding.
Step 2: Identify Components
Break the system into components:
- Data stores - What data exists? How is it accessed?
- Services / modules - What are the logical units of work?
- Interfaces - How do components communicate? (API, events, shared DB, files)
- External dependencies - Third-party services, APIs, infrastructure
Step 3: Evaluate Alternatives
For each significant decision, document at least 2 options:
| Criterion | Option A | Option B |
|---|---|---|
| Complexity | ... | ... |
| Scalability | ... | ... |
| Operational cost | ... | ... |
| Team familiarity | ... | ... |
Recommend one option with clear reasoning.
Step 4: Produce Design Artifact
Output a structured design document:
# Design: <Title>
## Context
[Problem statement and motivation]
## Requirements
- Functional: ...
- Non-functional: ...
## Architecture
[Component diagram or description]
## Key Decisions
| Decision | Choice | Rationale |
|----------|--------|-----------|
| ... | ... | ... |
## Data Model
[Schema or entity relationships]
## API Surface
[Key endpoints or interfaces]
## Risks & Mitigations
| Risk | Impact | Mitigation |
|------|--------|------------|
| ... | ... | ... |
## Open Questions
- ...
Step 5: Review Checklist
Before finalizing, verify:
- Single responsibility per component
- No circular dependencies between modules
- Failure modes identified and handled
- Data consistency model is explicit (strong vs eventual)
- Security boundaries are defined
- Observability points (logging, metrics, tracing) are planned
Principles
- Start simple - Add complexity only when requirements demand it
- Make trade-offs explicit - Every choice has a cost; document it
- Design for change - Interfaces should be stable; implementations should be replaceable
- Separate concerns - Data, logic, and presentation should not be entangled
- Fail gracefully - Design for partial failures, not just the happy path
How can the creator link this skill?
Add the canonical catalog link to the repository README so users can inspect current installs and available audits. The publishing guide covers the complete discovery path.
<a href="https://skillzs.dev/skills/s-hiraoku/synapse-a2a/system-design">View system-design on skillZs</a>