SwiftUI Liquid Glass
Attribution: Sourced from steipete/agent-scripts by Peter Steinberger. Originally created by @Dimillian from Dimillian/Skills (2025-12-31).
When to Use
- Implementing iOS 26+ Liquid Glass effects in SwiftUI
- Reviewing correctness of
glassEffectandGlassEffectContainerusage - Refactoring existing UI to adopt the Liquid Glass design language
Overview
Use this skill to build or review SwiftUI features that fully align with the iOS 26+ Liquid Glass API. Prioritize native APIs (glassEffect, GlassEffectContainer, glass button styles) and Apple design guidance. Keep usage consistent, interactive where needed, and performance aware.
Workflow Decision Tree
1) Review an existing feature
- Inspect where Liquid Glass should be used and where it should not.
- Verify correct modifier order, shape usage, and container placement.
- Check for iOS 26+ availability handling and sensible fallbacks.
2) Improve a feature using Liquid Glass
- Identify target components for glass treatment (surfaces, chips, buttons, cards).
- Refactor to use
GlassEffectContainerwhere multiple glass elements appear. - Introduce interactive glass only for tappable or focusable elements.
3) Implement a new feature using Liquid Glass
- Design the glass surfaces and interactions first (shape, prominence, grouping).
- Add glass modifiers after layout/appearance modifiers.
- Add morphing transitions only when the view hierarchy changes with animation.
Core Guidelines
- Prefer native Liquid Glass APIs over custom blurs.
- Use
GlassEffectContainerwhen multiple glass elements coexist. - Apply
.glassEffect(...)after layout and visual modifiers. - Use
.interactive()for elements that respond to touch/pointer. - Keep shapes consistent across related elements for a cohesive look.
- Gate with
#available(iOS 26, *)and provide a non-glass fallback.
Review Checklist
- Availability:
#available(iOS 26, *)present with fallback UI. - Composition: Multiple glass views wrapped in
GlassEffectContainer. - Modifier order:
glassEffectapplied after layout/appearance modifiers. - Interactivity:
interactive()only where user interaction exists. - Transitions:
glassEffectIDused with@Namespacefor morphing. - Consistency: Shapes, tinting, and spacing align across the feature.
Quick Snippets
if #available(iOS 26, *) {
Text("Hello")
.padding()
.glassEffect(.regular.interactive(), in: .rect(cornerRadius: 16))
} else {
Text("Hello")
.padding()
.background(.ultraThinMaterial, in: RoundedRectangle(cornerRadius: 16))
}
GlassEffectContainer(spacing: 24) {
HStack(spacing: 24) {
Image(systemName: "scribble.variable")
.frame(width: 72, height: 72)
.font(.system(size: 32))
.glassEffect()
Image(systemName: "eraser.fill")
.frame(width: 72, height: 72)
.font(.system(size: 32))
.glassEffect()
}
}
Button("Confirm") { }
.buttonStyle(.glassProminent)
Implementation Checklist
- Target elements and desired glass prominence defined
- Grouped glass elements wrapped in
GlassEffectContainer -
.glassEffect(.regular.tint(...).interactive(), in: .rect(cornerRadius: ...))applied as needed -
.buttonStyle(.glass)/.buttonStyle(.glassProminent)for actions - Morphing transitions with
glassEffectIDwhen hierarchy changes - Fallback materials and visuals for earlier iOS versions provided