improve-ui
ibelick/ui-skills
Audit UI surfaces against design evidence and write implementation plans without modifying source.
What is improve-ui?
Audit an existing product interface against its own design system, identify verified UI problems grounded in documented design decisions, and write self-contained implementation plans for another agent to execute. Use this when reviewing, refining, or cleaning up an interface while preserving its identity, investigating design-system drift, or preparing a design handoff.
- Traces rendered paths through components, tokens, and styles to establish design connections
- Reconstructs the local design system from DESIGN.md and surface-local documentation
- Proves findings against three criteria: contract (documented rule), runtime (traced path), and correction (deterministic change)
- Identifies UI problems grounded in contradictions within the same task or violations of binding design decisions
- Writes self-contained implementation plans that another agent can execute independently
- Operates strictly read-only on product source; creates plans only under design-plans/
How to install improve-ui
npx skills add https://github.com/ibelick/ui-skills --skill improve-uiHow to use improve-ui
- 1.Describe the product surface you want to audit (e.g., a specific page, component family, or user flow)
- 2.Provide or point to design documentation (DESIGN.md, design tokens, component definitions) that governs the surface
- 3.The skill will trace the rendered path, reconstruct the local design system, and identify verified UI problems
- 4.Review the findings table and select which problems to turn into implementation plans
- 5.The skill will write self-contained plans under design-plans/ for another agent to execute
Use cases
- Review a product surface for design-system drift and inconsistencies before a release
- Prepare a design handoff by auditing an interface and writing implementation plans for another team
- Investigate why a UI component behaves differently across surfaces and identify the governing design rule
- Clean up a legacy interface by identifying contradictions between its current state and documented design decisions
- Audit responsive behavior or variant presentation for internal contradictions
- Design systems engineers auditing product surfaces
- Product designers preparing handoffs or design documentation
- Frontend teams investigating design-system compliance
- Developers reviewing UI consistency before refactoring
improve-ui FAQ
No. The skill operates strictly read-only on product source and only creates or edits files under design-plans/. It never installs dependencies, runs formatters, commits, or mutates the working tree.
A finding must have three proofs: a binding design contract (documented rule or direct contradiction), runtime evidence (traced path through code), and a deterministic correction. Findings about hierarchy, usability, or perceived coherence without rendered evidence are rejected.
No, unless you explicitly request it or a product-specific design contract governs it. The skill focuses on visual presentation, interface copy, layout, component styling, and conformance to documented design rules.
Absence of design documentation is not a finding. The skill will reconstruct the local system from what exists (tokens, components, styles) and identify contradictions within the surface itself.
The skill reports up to three findings, ordered by confidence, user impact, reach, and correction cost. If no candidates survive the proof gate, it will report no supported findings.
Full instructions (SKILL.md)
Source of truth, from ibelick/ui-skills.
name: improve-ui description: Audit an existing product surface against its own design evidence, identify verified UI problems, and write self-contained implementation plans for another agent. Strictly read-only on product source. Use when asked to review, refine, improve, or clean up an interface without replacing its identity; investigate design-system drift; or prepare a design handoff.
Improve UI
Audit one coherent product surface against the system that actually governs it. Preserve the product's identity, reuse existing owners, and prefer no finding to an unsupported one. Write plans only for changes the user selects; another agent executes them.
Boundaries
- Never modify product source. Create or edit files only under
design-plans/. - Do not install dependencies, run formatters, commit, push, or otherwise mutate the working tree.
- Do not update design documentation. Record accepted documentation changes in the plan for its executor.
- Use rendered evidence only when the user provides it or explicitly requests visual inspection.
- Make every plan self-contained; its executor has no context from the audit or conversation.
1. Select the surface
Honor the user's scope. If the request is broad, select one deployable application and one coherent surface family representing a primary product task. State the selection; do not synthesize the whole repository into one product.
Start from the surface's routes and layouts. Trace the rendered path through compositions, shared components, variants, resolved tokens, and styles. Do not begin with a repository-wide search for inconsistencies.
A connection exists only when it is proven through rendering, imports, props, resolved configuration, CSS inheritance, or a generated artifact loaded by the surface. Shared names, similar tokens, repository proximity, and conceptual relationships do not establish a connection. Exclude other applications, previews, configurators, generated registries, legacy systems, and enterprise variants unless they participate in the traced path.
2. Reconstruct the local system
Check for DESIGN.md, repository guidance, and surface-local design documentation. Use a source only after proving it is current and governs the selected surface; drafts, proposals, migrations, and task lists describe future intent unless explicitly accepted and current. Absence of design documentation is not a finding.
Inspect only the tokens, variables, themes, primitives, variants, and compositions relevant to the traced path. Resolve aliases and variants to their definitions. Classify an implementation as local or legacy only when the repository says so.
Record:
## Design language
- Audited surface:
- Design sources:
- Documented decisions:
- Governing owners and consumers:
- Explicit exceptions:
Write None documented under Explicit exceptions unless a cited source explicitly identifies the exception.
3. Prove findings
Before applying the proof gate, inspect every traced surface's user-facing labels, active-state presentation, responsive branches, and sibling variants for internal contradictions. Treat the results only as candidates.
A finding is in scope only when its correction primarily changes visual presentation, interface copy, layout, component styling, or conformance to a documented design rule. If the correction primarily changes whether product behavior works, reject it.
Search results, repetition, and implementation differences produce candidates, not findings. Keep a candidate only when all three proofs exist:
- Contract — Cite a binding design decision for this property and scope, or a direct contradiction in user-facing presentation or content within the same task. “Prefer,” “generally,” names, omissions, repetition, and absence of an exception do not establish a contract.
- Runtime — Prove that the cited owner, value, or behavior reaches the affected surface through the traced runtime path. Do not compare separate ownership layers or lifecycle states.
- Correction — State one change required by the evidence. If it depends on an existing token, variant, primitive, or exemplar, name it exactly. If the evidence cannot determine the correct choice, the intended condition is ambiguous, the proposal contains alternatives, or the correction requires inventing product intent, reject the candidate.
Source can prove token, typography, color, spacing, layout, copy, component-variant, responsive-presentation, and explicit design-contract violations. It cannot turn functional behavior, state management, or interaction correctness into design findings. Hierarchy, prominence, density, clarity, discoverability, usability, and perceived coherence require rendered or user evidence.
Discard accessibility and HTML/ARIA semantic findings unless the user explicitly requests them. Discard broken routes, redirects, data wiring, action failures, metadata, package API, performance, architecture, and code-quality findings unless the user requested them or a product-specific design contract governs them.
Assign confidence only after all proofs pass. Reuse an existing owner when the evidence supports it; do not create a shared primitive from repetition alone.
4. Vet findings
Before reporting, re-open every cited source and try to falsify each candidate. Delete it when:
- The problem does not exactly match the cited implementation.
- The rule does not govern that property and surface.
- Counterevidence shows the difference is valid or deliberate.
- The evidence supports multiple corrections.
- The correction invents product intent.
- Another finding describes the same root problem.
Only findings that survive this pass may enter the table.
5. Report
Order surviving findings by confidence, user impact, reach, and correction cost. Stop at three.
Use this structure:
## Design language
- Audited surface:
- Design sources:
- Documented decisions:
- Governing owners and consumers:
- Explicit exceptions:
## Findings
| # | Problem | Evidence | Proposed change | Scope | Confidence |
| --- | --- | --- | --- | --- | --- |
## Improve first
<Highest-leverage finding and why, or no supported recommendation.>
Evidence must establish the contract, runtime relationship, and deterministic interface consequence. Proposed change must contain one correction. Delete unsupported or overlapping rows before returning.
Delete any finding that does not include every required column, including Confidence.
Under Improve first, select one surviving finding with the strongest evidence and highest leverage. Never combine findings.
If no candidate survives, write No supported findings were found. under ## Findings and No supported recommendation. under ## Improve first.
If findings survive, stop and ask which to turn into plans. If the user already selected a finding or explicitly requested a plan for a described improvement, continue with that scope. If asked to fix or improve directly, offer a plan; never implement it.
6. Specify selected changes
Read references/plan-template.md. Write one plan per selected change, never one per symptom.
Before writing, re-open every cited source, record the current commit when available, identify exact reusable primitives and exemplars, and trace affected surfaces. Reconcile an existing plan instead of duplicating it.
Do not invent values when the repository provides a token or component contract. Introduce a primitive only after proving why the existing system cannot express the decision and which consumers should share it.
If asked to reconcile, recheck existing plans against current source and documented decisions; update stale evidence, affected surfaces, and status.
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