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affaan-m/ECC/skills/accessibility/SKILL.md

accessibility

Design, implement, and audit inclusive digital products using WCAG 2.2 Level AA standards. Use this skill to generate semantic ARIA for Web and accessibility traits for Web and Native platforms (iOS/Android).

Source repository stars
234,327
Declared platforms
0
Static risk flags
0
Last source update
2026-07-27
Source checked
2026-07-28

Decision brief

What it does—and where it fits

This skill ensures that digital interfaces are Perceivable, Operable, Understandable, and Robust (POUR) for all users, including those using screen readers, switch controls, or keyboard navigation. It focuses on the technical implementation of WCAG 2.2 success criteria.

Best for

  • Defining UI component specifications for Web, iOS, or Android.
  • Auditing existing code for accessibility barriers or compliance gaps.
  • Implementing new WCAG 2.2 standards like Target Size (Minimum) and Focus Appearance.

Not for

  • Div-Buttons: Using a or for a click event without adding a role and keyboard support.
  • Color-Only Meaning: Indicating an error or status only with a color change (e.g., turning a border red).

Compatibility matrix

Platform support, with evidence labels

PlatformStatusEvidenceWhat to check
CodexNot declaredNo explicit evidencePortability before use
Claude CodeNot declaredNo explicit evidencePortability before use
CursorNot declaredNo explicit evidencePortability before use
Gemini CLINot declaredNo explicit evidencePortability before use
Open the compatibility checker

Installation

Inspect first. Install second.

The source command is displayed only when detected. A safe inspection prompt is always available so your agent can explain every action before execution.

Source-detected install commandSource
npx skills add https://github.com/affaan-m/ECC --skill "skills/accessibility"
Safe inspection promptEditorial

Inspect the Agent Skill "accessibility" from https://github.com/affaan-m/ECC/blob/4e973d3eaf92d97f8d2e2d8abb39d8bdc8711b38/skills/accessibility/SKILL.md at commit 4e973d3eaf92d97f8d2e2d8abb39d8bdc8711b38. List every install step, command, network request, credential, file read/write, external action, and rollback step. Explain whether it fits my task. Do not install or execute anything until I approve.

Workflow

What the source asks the agent to do

  1. 01

    Step 1: Identify the Component Role

    Determine the functional purpose (e.g., Is this a button, a link, or a tab?). Use the most semantic native element available before resorting to custom roles.

    Determine the functional purpose (e.g., Is this a button, a link, or a tab?). Use the most semantic native element available before resorting to custom roles.
  2. 02

    Step 2: Define Perceivable Attributes

    Ensure text contrast meets 4.5:1 (normal) or 3:1 (large/UI).

    Ensure text contrast meets 4.5:1 (normal) or 3:1 (large/UI).Add text alternatives for non-text content (images, icons).Implement responsive reflow (up to 400% zoom without loss of function).
  3. 03

    Step 3: Implement Operable Controls

    Ensure a minimum 24x24 CSS pixel target size (WCAG 2.2 SC 2.5.8).

    Ensure a minimum 24x24 CSS pixel target size (WCAG 2.2 SC 2.5.8).Verify all interactive elements are reachable via keyboard and have a visible focus indicator (SC 2.4.11).Provide single-pointer alternatives for dragging movements.
  4. 04

    Step 4: Ensure Understandable Logic

    Use consistent navigation patterns.

    Use consistent navigation patterns.Provide descriptive error messages and suggestions for correction (SC 3.3.3).Implement "Redundant Entry" (SC 3.3.7) to prevent asking for the same data twice.
  5. 05

    Step 5: Verify Robust Compatibility

    Use correct Name, Role, Value patterns.

    Use correct Name, Role, Value patterns.Implement aria-live or live regions for dynamic status updates.- Use correct Name, Role, Value patterns. - Implement aria-live or live regions for dynamic status updates.

Permission review

Static risk signals and limitations

No configured static risk pattern was detected

This is not proof of safety. Runtime behavior, indirect dependencies, and hidden external systems are outside the static scan.

Evidence record

Why each signal appears

EvidenceSourceComputedTestedEditorial
SignalValueEvidence typeMeaning
Quality score89/100ComputedDocumentation, specificity, maintenance, and trust rules
Repository stars234,327SourceRepository attention, not individual Skill quality
Compatibility0 platformsSourceDeclared in the catalog source record
Usage guideautomated source guideEditorialGenerated or reviewed according to the visible evidence level

Pinned source

Provenance and original SKILL.md

Repository
affaan-m/ECC
Skill path
skills/accessibility/SKILL.md
Commit
4e973d3eaf92d97f8d2e2d8abb39d8bdc8711b38
License
MIT
Collected
2026-07-28
Default branch
main
View the original SKILL.md

Accessibility (WCAG 2.2)

This skill ensures that digital interfaces are Perceivable, Operable, Understandable, and Robust (POUR) for all users, including those using screen readers, switch controls, or keyboard navigation. It focuses on the technical implementation of WCAG 2.2 success criteria.

When to Use

  • Defining UI component specifications for Web, iOS, or Android.
  • Auditing existing code for accessibility barriers or compliance gaps.
  • Implementing new WCAG 2.2 standards like Target Size (Minimum) and Focus Appearance.
  • Mapping high-level design requirements to technical attributes (ARIA roles, traits, hints).

Core Concepts

  • POUR Principles: The foundation of WCAG (Perceivable, Operable, Understandable, Robust).
  • Semantic Mapping: Using native elements over generic containers to provide built-in accessibility.
  • Accessibility Tree: The representation of the UI that assistive technologies actually "read."
  • Focus Management: Controlling the order and visibility of the keyboard/screen reader cursor.
  • Labeling & Hints: Providing context through aria-label, accessibilityLabel, and contentDescription.

How It Works

Step 1: Identify the Component Role

Determine the functional purpose (e.g., Is this a button, a link, or a tab?). Use the most semantic native element available before resorting to custom roles.

Step 2: Define Perceivable Attributes

  • Ensure text contrast meets 4.5:1 (normal) or 3:1 (large/UI).
  • Add text alternatives for non-text content (images, icons).
  • Implement responsive reflow (up to 400% zoom without loss of function).

Step 3: Implement Operable Controls

  • Ensure a minimum 24x24 CSS pixel target size (WCAG 2.2 SC 2.5.8).
  • Verify all interactive elements are reachable via keyboard and have a visible focus indicator (SC 2.4.11).
  • Provide single-pointer alternatives for dragging movements.

Step 4: Ensure Understandable Logic

  • Use consistent navigation patterns.
  • Provide descriptive error messages and suggestions for correction (SC 3.3.3).
  • Implement "Redundant Entry" (SC 3.3.7) to prevent asking for the same data twice.

Step 5: Verify Robust Compatibility

  • Use correct Name, Role, Value patterns.
  • Implement aria-live or live regions for dynamic status updates.

Accessibility Architecture Diagram

flowchart TD
  UI["UI Component"] --> Platform{Platform?}
  Platform -->|Web| ARIA["WAI-ARIA + HTML5"]
  Platform -->|iOS| SwiftUI["Accessibility Traits + Labels"]
  Platform -->|Android| Compose["Semantics + ContentDesc"]

  ARIA --> AT["Assistive Technology (Screen Readers, Switches)"]
  SwiftUI --> AT
  Compose --> AT

Cross-Platform Mapping

FeatureWeb (HTML/ARIA)iOS (SwiftUI)Android (Compose)
Primary Labelaria-label / <label>.accessibilityLabel()contentDescription
Secondary Hintaria-describedby.accessibilityHint()Modifier.semantics { stateDescription = ... }
Action Rolerole="button".accessibilityAddTraits(.isButton)Modifier.semantics { role = Role.Button }
Live Updatesaria-live="polite".accessibilityLiveRegion(.polite)Modifier.semantics { liveRegion = LiveRegionMode.Polite }

Examples

Web: Accessible Search

<form role="search">
  <label for="search-input" class="sr-only">Search products</label>
  <input type="search" id="search-input" placeholder="Search..." />
  <button type="submit" aria-label="Submit Search">
    <svg aria-hidden="true">...</svg>
  </button>
</form>

iOS: Accessible Action Button

Button(action: deleteItem) {
    Image(systemName: "trash")
}
.accessibilityLabel("Delete item")
.accessibilityHint("Permanently removes this item from your list")
.accessibilityAddTraits(.isButton)

Android: Accessible Toggle

Switch(
    checked = isEnabled,
    onCheckedChange = { onToggle() },
    modifier = Modifier.semantics {
        contentDescription = "Enable notifications"
    }
)

Anti-Patterns to Avoid

  • Div-Buttons: Using a <div> or <span> for a click event without adding a role and keyboard support.
  • Color-Only Meaning: Indicating an error or status only with a color change (e.g., turning a border red).
  • Uncontained Modal Focus: Modals that don't trap focus, allowing keyboard users to navigate background content while the modal is open. Focus must be contained and escapable via the Escape key or an explicit close button (WCAG SC 2.1.2).
  • Redundant Alt Text: Using "Image of..." or "Picture of..." in alt text (screen readers already announce the role "Image").

Best Practices Checklist

  • Interactive elements meet the 24x24px (Web) or 44x44pt (Native) target size.
  • Focus indicators are clearly visible and high-contrast.
  • Modals contain focus while open, and release it cleanly on close (Escape key or close button).
  • Dropdowns and menus restore focus to the trigger element on close.
  • Forms provide text-based error suggestions.
  • All icon-only buttons have a descriptive text label.
  • Content reflows properly when text is scaled.

References

Related Skills

  • frontend-patterns
  • design-system
  • liquid-glass-design
  • swiftui-patterns

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