design

Propose 2-3 system architectures with trade-offs for Kubernetes/OpenShift environments.

1|1|Updated Apr 11, 2026
One-click install
npx skills add https://github.com/wangke19/my-claude-skills --skill design-wangke19
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: design
Source: https://github.com/wangke19/my-claude-skills/tree/main/plugins/ask/skills/design
Command: npx skills add https://github.com/wangke19/my-claude-skills --skill design-wangke19

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Decompose complex design challenges and provide 2-3 architecture options with trade-offs, enabling defensible, production-ready recommendations grounded in real-world constraints.

Core Features & Use Cases

  • Problem framing: break down a design request into core constraints, risks, and success criteria.
  • Architecture alternatives: generate multiple viable designs with clear trade-offs and avoidance of scope creep.
  • Risk-aware recommendation: select a recommended approach with justification and concrete considerations for deployment in Kubernetes/OpenShift or cloud environments.

Quick Start

Describe 2-3 architecture options for a Kubernetes-based service and compare their trade-offs.

Frequently Asked Questions about design

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I compare Kubernetes architecture trade-offs for a production service?

To compare Kubernetes architecture trade-offs, this Skill proposes 2-3 realistic system architectures with clear constraints, enabling defensible, production-ready recommendations for your service.

What is the best way to frame a complex system design problem before proposing solutions?

Framing a complex system design problem involves breaking down the design request into core constraints, risks, and success criteria before generating multiple viable architecture options.

Can I use this to generate system designs for OpenShift cloud environments?

Yes, you can use this to generate system designs for OpenShift cloud environments, as it provides risk-aware recommendations with concrete considerations for deployment in Kubernetes or OpenShift.

How do I evaluate risk-aware recommendations when choosing between architecture options?

Evaluating risk-aware recommendations involves selecting a proposed architecture approach with clear justification and concrete production constraints for your cloud environment.

Does this approach help avoid scope creep when proposing architecture alternatives?

Yes, this approach helps avoid scope creep when proposing architecture alternatives by generating multiple viable designs strictly grounded in real-world constraints and clear trade-offs.