Swiftui View Refactor logo

Swiftui View Refactor

CommunityPopular
Dimillian
swiftui-view-refactor

Refactor and review SwiftUI view files with strong defaults for small dedicated subviews, MV-over-MVVM data flow, stable view trees, explicit dependency injection, and correct Observation usage. Use when cleaning up a SwiftUI view, splitting long bodies, removing inline actions or side effects, reducing computed `some View` helpers, or standardizing `@Observable` and view model initialization patterns.

Overview

PublisherDimillian
RepositorySkills
Skill nameswiftui-view-refactor
Stars
4K
Forks
206
Bundled files
2
LicenseMIT
Links
  • Markdown instructions

    A SKILL.md file the model loads on demand, so it only costs tokens when a request actually matches.

  • Works with any LLM

    AI skills are plain Markdown, not provider-specific code, so this works with GPT, Claude, Gemini, Grok, or a local model.

  • 2 bundled files

    Scripts, templates, and references the model can read while it works. Files are read-only and never executed.

  • Open source

    Published by Dimillian on GitHub. Read the source before you install it.

Installation

Install the Swiftui View Refactor AI skill in TypingMind to use it with any LLM, or drop it into another agent that reads SKILL.md.

1

Install in TypingMind

TypingMind installs a skill straight from its GitHub folder — it reads SKILL.md, bundles the resource files, and stores the result locally.

  1. Open the app and go to Plugins → Skills.
  2. Choose "Install from GitHub".
  3. Paste the skill folder URL below and confirm.
  4. Enable the skill in any chat where you want it available.
Plugins → Skills → Add skill → From GitHub URL, then paste the folder URL and press Continue.
2

Install in another agent

Any agent that reads the Agent Skills format can use this skill — copy the folder into that agent's skills directory.

Claude Code — .claude/skills
git clone --depth 1 https://github.com/Dimillian/Skills.git /tmp/Skills
mkdir -p .claude/skills
cp -r /tmp/Skills/swiftui-view-refactor .claude/skills/swiftui-view-refactor
Restart Claude Code after copying so it picks up the new skill.

Use it in TypingMind

Enable Swiftui View Refactor in any TypingMind chat and the model takes it from there. Its name and description sit in the system prompt, and the moment a request matches, the model loads the full instructions itself — you never invoke it by hand, and it costs no tokens until it is actually used.

The model loads Swiftui View Refactor on its own as soon as a request matches it.

Works with any AI model

AI skills are plain Markdown instructions rather than provider-specific code, so Swiftui View Refactor is not tied to the model it was written for. Install it once in TypingMind and use it with GPT-5, Claude, Gemini, Grok, DeepSeek, Mistral, Llama, or a local model you run yourself — all on your own API keys.

  • Loaded only when it is needed

    The system prompt carries just the name and description. The instructions are fetched on the first matching request, so an idle skill costs nothing.

  • Switch models mid-chat

    Because the skill is instructions rather than code, changing model does not break it — the next model reads the same SKILL.md.

Skill instructions

This is the SKILL.md content the model loads. Read it before installing — a skill is instructions your model will follow.

SwiftUI View Refactor

Overview

Refactor SwiftUI views toward small, explicit, stable view types. Default to vanilla SwiftUI: local state in the view, shared dependencies in the environment, business logic in services/models, and view models only when the request or existing code clearly requires one.

Core Guidelines

1) View ordering (top → bottom)

  • Enforce this ordering unless the existing file has a stronger local convention you must preserve.
  • Environment
  • private/public let
  • @State / other stored properties
  • computed var (non-view)
  • init
  • body
  • computed view builders / other view helpers
  • helper / async functions

2) Default to MV, not MVVM

  • Views should be lightweight state expressions and orchestration points, not containers for business logic.
  • Favor @State, @Environment, @Query, .task, .task(id:), and onChange before reaching for a view model.
  • Inject services and shared models via @Environment; keep domain logic in services/models, not in the view body.
  • Do not introduce a view model just to mirror local view state or wrap environment dependencies.
  • If a screen is getting large, split the UI into subviews before inventing a new view model layer.

3) Strongly prefer dedicated subview types over computed some View helpers

  • Flag body properties that are longer than roughly one screen or contain multiple logical sections.
  • Prefer extracting dedicated View types for non-trivial sections, especially when they have state, async work, branching, or deserve their own preview.
  • Keep computed some View helpers rare and small. Do not build an entire screen out of private var header: some View-style fragments.
  • Pass small, explicit inputs (data, bindings, callbacks) into extracted subviews instead of handing down the entire parent state.
  • If an extracted subview becomes reusable or independently meaningful, move it to its own file.

Prefer:

swift
var body: some View {
    List {
        HeaderSection(title: title, subtitle: subtitle)
        FilterSection(
            filterOptions: filterOptions,
            selectedFilter: $selectedFilter
        )
        ResultsSection(items: filteredItems)
        FooterSection()
    }
}

private struct HeaderSection: View {
    let title: String
    let subtitle: String

    var body: some View {
        VStack(alignment: .leading, spacing: 6) {
            Text(title).font(.title2)
            Text(subtitle).font(.subheadline)
        }
    }
}

private struct FilterSection: View {
    let filterOptions: [FilterOption]
    @Binding var selectedFilter: FilterOption

    var body: some View {
        ScrollView(.horizontal, showsIndicators: false) {
            HStack {
                ForEach(filterOptions, id: \.self) { option in
                    FilterChip(option: option, isSelected: option == selectedFilter)
                        .onTapGesture { selectedFilter = option }
                }
            }
        }
    }
}

Avoid:

swift
var body: some View {
    List {
        header
        filters
        results
        footer
    }
}

private var header: some View {
    VStack(alignment: .leading, spacing: 6) {
        Text(title).font(.title2)
        Text(subtitle).font(.subheadline)
    }
}

3b) Extract actions and side effects out of body

  • Do not keep non-trivial button actions inline in the view body.
  • Do not bury business logic inside .task, .onAppear, .onChange, or .refreshable.
  • Prefer calling small private methods from the view, and move real business logic into services/models.
  • The body should read like UI, not like a view controller.
swift
Button("Save", action: save)
    .disabled(isSaving)

.task(id: searchText) {
    await reload(for: searchText)
}

private func save() {
    Task { await saveAsync() }
}

private func reload(for searchText: String) async {
    guard !searchText.isEmpty else {
        results = []
        return
    }
    await searchService.search(searchText)
}

4) Keep a stable view tree (avoid top-level conditional view swapping)

  • Avoid body or computed views that return completely different root branches via if/else.
  • Prefer a single stable base view with conditions inside sections/modifiers (overlay, opacity, disabled, toolbar, etc.).
  • Root-level branch swapping causes identity churn, broader invalidation, and extra recomputation.

Prefer:

swift
var body: some View {
    List {
        documentsListContent
    }
    .toolbar {
        if canEdit {
            editToolbar
        }
    }
}

Avoid:

swift
var documentsListView: some View {
    if canEdit {
        editableDocumentsList
    } else {
        readOnlyDocumentsList
    }
}

5) View model handling (only if already present or explicitly requested)

  • Treat view models as a legacy or explicit-need pattern, not the default.
  • Do not introduce a view model unless the request or existing code clearly calls for one.
  • If a view model exists, make it non-optional when possible.
  • Pass dependencies to the view via init, then create the view model in the view's init.
  • Avoid bootstrapIfNeeded patterns and other delayed setup workarounds.

Example (Observation-based):

swift
@State private var viewModel: SomeViewModel

init(dependency: Dependency) {
    _viewModel = State(initialValue: SomeViewModel(dependency: dependency))
}

6) Observation usage

  • For @Observable reference types on iOS 17+, store them as @State in the owning view.
  • Pass observables down explicitly; avoid optional state unless the UI genuinely needs it.
  • If the deployment target includes iOS 16 or earlier, use @StateObject at the owner and @ObservedObject when injecting legacy observable models.

Workflow

  1. Reorder the view to match the ordering rules.
  2. Remove inline actions and side effects from body; move business logic into services/models and keep only thin orchestration in the view.
  3. Shorten long bodies by extracting dedicated subview types; avoid rebuilding the screen out of many computed some View helpers.
  4. Ensure stable view structure: avoid top-level if-based branch swapping; move conditions to localized sections/modifiers.
  5. If a view model exists or is explicitly required, replace optional view models with a non-optional @State view model initialized in init.
  6. Confirm Observation usage: @State for root @Observable models on iOS 17+, legacy wrappers only when the deployment target requires them.
  7. Keep behavior intact: do not change layout or business logic unless requested.

Notes

  • Prefer small, explicit view types over large conditional blocks and large computed some View properties.
  • Keep computed view builders below body and non-view computed vars above init.
  • A good SwiftUI refactor should make the view read top-to-bottom as data flow plus layout, not as mixed layout and imperative logic.
  • For MV-first guidance and rationale, see references/mv-patterns.md.

Large-view handling

When a SwiftUI view file exceeds ~300 lines, split it aggressively. Extract meaningful sections into dedicated View types instead of hiding complexity in many computed properties. Use private extensions with // MARK: - comments for actions and helpers, but do not treat extensions as a substitute for breaking a giant screen into smaller view types. If an extracted subview is reused or independently meaningful, move it into its own file.

Bundled files

The model reads these on demand while the skill is loaded. They are exposed as readable files and are never executed.

Frequently asked questions

What does the Swiftui View Refactor AI skill do?

Refactor and review SwiftUI view files with strong defaults for small dedicated subviews, MV-over-MVVM data flow, stable view trees, explicit dependency injection, and correct Observation usage. Use when cleaning up a SwiftUI view, splitting long bodies, removing inline actions or side effects, reducing computed `some View` helpers, or standardizing `@Observable` and view model initialization patterns.

Why use Swiftui View Refactor on TypingMind?

Because you install it once and use it with any model. Swiftui View Refactor is plain Markdown rather than provider-specific code, so the same skill runs on GPT-5, Claude, Gemini, Grok, or a local model — and you can switch model mid-chat without it breaking. TypingMind runs on your own API keys, so you pay providers directly instead of a per-seat subscription, and your skills and chats stay in your own storage.

How do I install Swiftui View Refactor in TypingMind?

Open Plugins → Skills → Install from GitHub in TypingMind and paste https://github.com/Dimillian/Skills/tree/main/swiftui-view-refactor. TypingMind reads its SKILL.md and bundles its files and installs it as a skill you can enable per chat.

Which AI models can use Swiftui View Refactor?

Any model you connect in TypingMind. AI skills are plain Markdown instructions rather than provider-specific code, so GPT, Claude, Gemini, Grok, and local models can all load this skill when a request matches it.

How many AI models can I use with Swiftui View Refactor?

As many as you like. As long as a model supports skills, you can use Swiftui View Refactor with it — GPT, Claude, Gemini, Grok, DeepSeek, Mistral, Llama and more — all on TypingMind with your own API keys.

Is the Swiftui View Refactor AI skill free?

Yes. It is published on GitHub by Dimillian under the MIT license. You only pay your own AI provider for the tokens you use.

What are AI skills?

An AI skill is a reusable instruction bundle that teaches an AI model how to do one specific task. It follows the open Agent Skills format: a SKILL.md file with a name and description, plus any scripts, templates or reference files the model may need. The model reads the instructions only when your request matches the skill, so an installed skill costs nothing until it is used.

How are AI skills different from plugins or MCP servers?

A plugin or MCP server gives a model new tools to call — code that runs somewhere and returns a result. An AI skill gives the model knowledge and process instead: how to approach a task, which steps to follow, what good output looks like. Skills are plain Markdown, so they need no server, no API key and no runtime, and they work with any model.

View all

Set up your own AI workspace now

Get notified about new features and future giveaways by subscribing to our newsletter 👇