| name | product-design |
| description | Orchestrator for the Product Design skill set — turn early ideas into reviewable prototypes. Routes to the right sub-skill (get-context, research, audit, ideate, image-to-code, url-to-code, prototype, qa, share) based on where you are in the design process. Use when the user gives a high-level design goal like "design a UI for X", "prototype this idea", "rebuild this screen", "review our flow", or isn't sure which design step they need. Delegates to design-* skills. |
Product Design — Orchestrator
The umbrella for the 9 design-* skills. Your job: read the request, locate it in the design process, route to the right sub-skill. Don't do the work here — dispatch. You're the design lead sequencing the work, not the IC executing each step.
When to use
- The user gives a broad design goal ("design a UI for X", "prototype this idea") and the step is ambiguous.
- A design project spans multiple stages and needs sequencing.
- The user doesn't know which sub-skill they need.
When NOT to use
- The user named a step explicitly ("audit this screen") → go straight to that sub-skill.
- It's visual-asset creation (ads, product shots, moodboards), not UI/UX →
creative-production orchestrator.
The pipeline
FRAME EXPLORE BUILD SHIP
design-get-context ─► design-research ──► design-ideate ─► design-image-to-code ─┐
design-audit design-url-to-code ├─► design-prototype ─► design-qa ─► design-share
Frame the problem → explore options → build the chosen one → gate quality → ship for review.
Routing table
| User intent / phrasing | Route to |
|---|
| new design task, brief unclear | design-get-context (almost always start here) |
| "how do others do X", competitor/pattern scan | design-research |
| "what's wrong with this UI", review existing | design-audit |
| "give me layout options/directions" | design-ideate |
| "build this mockup/screenshot" | design-image-to-code |
| "clone/rebuild this live site" | design-url-to-code |
| "make it clickable", "wire the flow" | design-prototype |
| "does it match the design/spec" | design-qa |
| "share it", "give me a link", "publish" | design-share |
How to orchestrate
- Frame first. Unless
./design/context.md already exists, start with design-get-context. The cheapest fix is the question asked before building.
- Explore with
research/audit as needed, then ideate directions.
- Build: turn the chosen direction into code via
image-to-code (from a mockup) or url-to-code (from a live site), then prototype to wire interactivity.
- Gate with
design-qa before design-share. Don't ship HIGH-severity drift.
context.md is the shared source of truth — every sub-skill reads it; keep it current.
Worked example
Request: "Our onboarding loses people. Can you redesign it and give me something clickable to test?"
plan:
1. frame → design-get-context → goal: ↓ step-2 drop-off; success: 60%→80%
2. explore → design-research → competitor onboarding patterns + pains
design-audit → audit current flow (3 HIGH issues found)
3. options → design-ideate → 3 directions; user picks "Guided Wizard"
4. build → design-image-to-code → implement the wizard screens
design-prototype → wire Welcome→Template→Name→Dashboard + error state
5. gate → design-qa → conformance vs context (fix 2 items, re-QA → PASS)
6. ship → design-share → local link + review note
dispatch order respects: frame → explore → build → gate → ship
Quality bar
- The brief is framed (
context.md) before any building begins.
- On multi-stage requests, the user sees the plan (which skills, what order) before execution.
- QA gates sharing — nothing stakeholder-facing ships with unresolved HIGH issues.
- Success criteria from
get-context are what design-qa checks against (closed loop).
Common pitfalls
- Doing the work here — this skill decides WHICH skill; the sub-skill executes.
- Skipping the frame — building before goal/user/success are known is the top rework cause.
- Shipping before QA —
design-share without design-qa circulates drift.
- Losing context.md between stages — sub-skills lose the source of truth and drift.
Tooling
Sub-skills use vision, browser-automation, web-fetch, and optional image tools as needed. The orchestrator itself needs no tooling — it sequences and dispatches. If a sub-skill's tool is unavailable, it degrades gracefully and flags what's unverified.