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SwiftUI architecture patterns, state management with @Observable, view composition, navigation, performance optimization, and modern iOS/macOS UI best practices. Use when building or reviewing SwiftUI views, @Observable state, navigation, or render performance.

Use this Skill: https://skilld.dev/gh/affaan-m/everything-claude-code/swiftui-patterns

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SKILL.md

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SwiftUI Patterns

Modern SwiftUI patterns for building declarative, performant user interfaces on Apple platforms. Covers the Observation framework, view composition, type-safe navigation, and performance optimization.

When to Activate

  • Building SwiftUI views and managing state (@State, @Observable, @Binding)
  • Designing navigation flows with NavigationStack
  • Structuring view models and data flow
  • Optimizing rendering performance for lists and complex layouts
  • Working with environment values and dependency injection in SwiftUI

State Management

Property Wrapper Selection

Choose the simplest wrapper that fits:

Wrapper Use Case
@State View-local value types (toggles, form fields, sheet presentation)
@Binding Two-way reference to parent's @State
@Observable class + @State Owned model with multiple properties
@Observable class (no wrapper) Read-only reference passed from parent
@Bindable Two-way binding to an @Observable property
@Environment Shared dependencies injected via .environment()

@Observable ViewModel

Use @Observable (not ObservableObject) — it tracks property-level changes so SwiftUI only re-renders views that read the changed property:

@Observable
final class ItemListViewModel {
    private(set) var items: [Item] = []
    private(set) var isLoading = false
    var searchText = ""

    private let repository: any ItemRepository

    init(repository: any ItemRepository = DefaultItemRepository()) {
        self.repository = repository
    }

    func load() async {
        isLoading = true
        defer { isLoading = false }
        items = (try? await repository.fetchAll()) ?? []
    }
}

View Consuming the ViewModel

struct ItemListView: View {
    @State private var viewModel: ItemListViewModel

    init(viewModel: ItemListViewModel = ItemListViewModel()) {
        _viewModel = State(initialValue: viewModel)
    }

    var body: some View {
        List(viewModel.items) { item in
            ItemRow(item: item)
        }
        .searchable(text: $viewModel.searchText)
        .overlay { if viewModel.isLoading { ProgressView() } }
        .task { await viewModel.load() }
    }
}

Environment Injection

Replace @EnvironmentObject with @Environment:

// Inject
ContentView()
    .environment(authManager)

// Consume
struct ProfileView: View {
    @Environment(AuthManager.self) private var auth

    var body: some View {
        Text(auth.currentUser?.name ?? "Guest")
    }
}

View Composition

Extract Subviews to Limit Invalidation

Break views into small, focused structs. When state changes, only the subview reading that state re-renders:

struct OrderView: View {
    @State private var viewModel = OrderViewModel()

    var body: some View {
        VStack {
            OrderHeader(title: viewModel.title)
            OrderItemList(items: viewModel.items)
            OrderTotal(total: viewModel.total)
        }
    }
}

ViewModifier for Reusable Styling

struct CardModifier: ViewModifier {
    func body(content: Content) -> some View {
        content
            .padding()
            .background(.regularMaterial)
            .clipShape(RoundedRectangle(cornerRadius: 12))
    }
}

extension View {
    func cardStyle() -> some View {
        modifier(CardModifier())
    }
}

Navigation

Type-Safe NavigationStack

Use NavigationStack with NavigationPath for programmatic, type-safe routing:

@Observable
final class Router {
    var path = NavigationPath()

    func navigate(to destination: Destination) {
        path.append(destination)
    }

    func popToRoot() {
        path = NavigationPath()
    }
}

enum Destination: Hashable {
    case detail(Item.ID)
    case settings
    case profile(User.ID)
}

struct RootView: View {
    @State private var router = Router()

    var body: some View {
        NavigationStack(path: $router.path) {
            HomeView()
                .navigationDestination(for: Destination.self) { dest in
                    switch dest {
                    case .detail(let id): ItemDetailView(itemID: id)
                    case .settings: SettingsView()
                    case .profile(let id): ProfileView(userID: id)
                    }
                }
        }
        .environment(router)
    }
}

Performance

Use Lazy Containers for Large Collections

LazyVStack and LazyHStack create views only when visible:

ScrollView {
    LazyVStack(spacing: 8) {
        ForEach(items) { item in
            ItemRow(item: item)
        }
    }
}

Stable Identifiers

Always use stable, unique IDs in ForEach — avoid using array indices:

// Use Identifiable conformance or explicit id
ForEach(items, id: \.stableID) { item in
    ItemRow(item: item)
}

Avoid Expensive Work in body

  • Never perform I/O, network calls, or heavy computation inside body
  • Use .task {} for async work — it cancels automatically when the view disappears
  • Use .sensoryFeedback() and .geometryGroup() sparingly in scroll views
  • Minimize .shadow(), .blur(), and .mask() in lists — they trigger offscreen rendering

Equatable Conformance

For views with expensive bodies, conform to Equatable to skip unnecessary re-renders:

struct ExpensiveChartView: View, Equatable {
    let dataPoints: [DataPoint] // DataPoint must conform to Equatable

    static func == (lhs: Self, rhs: Self) -> Bool {
        lhs.dataPoints == rhs.dataPoints
    }

    var body: some View {
        // Complex chart rendering
    }
}

Previews

Use #Preview macro with inline mock data for fast iteration:

#Preview("Empty state") {
    ItemListView(viewModel: ItemListViewModel(repository: EmptyMockRepository()))
}

#Preview("Loaded") {
    ItemListView(viewModel: ItemListViewModel(repository: PopulatedMockRepository()))
}

Anti-Patterns to Avoid

  • Using ObservableObject / @Published / @StateObject / @EnvironmentObject in new code — migrate to @Observable
  • Putting async work directly in body or init — use .task {} or explicit load methods
  • Creating view models as @State inside child views that don't own the data — pass from parent instead
  • Using AnyView type erasure — prefer @ViewBuilder or Group for conditional views
  • Ignoring Sendable requirements when passing data to/from actors

References

See skill: swift-actor-persistence for actor-based persistence patterns. See skill: swift-protocol-di-testing for protocol-based DI and testing with Swift Testing.

Source: SKILL.md on GitHub

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  • Gen Agent Trust Hub1mo

    The skill provides architectural patterns and best practices for SwiftUI development, including state management, navigation, and performance optimization. No security issues were detected.

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    Risk: LOW · No issues

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    Score: 93/100 · 2 sections analyzed

Signed by skilld at c70874f. This ties the file your Agent reads to that commit on GitHub. It does not review the instructions.

Last checked against GitHub 10 hours ago.

Activeupdated 2 days ago
  • Performance
  • swiftui
  • state-management
  • ios
  • macos
  • observable
  • navigation
  • view-composition
  • swift

README badge

README badge for affaan-m/everything-claude-code/swiftui-patterns

Teaches modern SwiftUI patterns including the Observation framework for state management, view composition with property wrappers, type-safe navigation with NavigationStack, and performance optimization for lists and complex layouts. Use this when building declarative UIs on iOS/macOS and need guidance on when to use @State, @Observable, @Environment, and related patterns.

Generated from the current SKILL.md.

Does this skill cover ObservableObject and @StateObject?
No. The skill explicitly recommends @Observable for new code and lists ObservableObject/@StateObject as anti-patterns to migrate away from.
What navigation approach does this skill teach?
Type-safe NavigationStack with a Router observable class and a Destination enum, allowing programmatic routing without string-based paths.
How does this skill handle performance optimization in lists?
It covers LazyVStack/LazyHStack for deferred view creation, stable identifiers in ForEach, avoiding expensive work in body, and Equatable conformance to skip unnecessary re-renders.
Does this cover dependency injection?
Yes. The skill teaches environment injection with @Environment, protocol-based repository patterns in view models, and references a separate skill on protocol-based DI and testing.

Generated from the current SKILL.md. These answers refresh after source changes.