Swift Development
SkillAI & modelsSwift language patterns and best practices including concurrency, performance, and modern idioms. Use for Swift language-level code review or architecture guidance.
Available today. Use it from your connected AI after setup.
No other account needed.
Connect ahel once, and every AI you use reads what you have installed.
Then ask your AI: use the Swift Development skill
What this skill tells your AI
The instructions your AI receives, as published by rshankras/claude-code-apple-skills in skills/swift/SKILL.md and read by ahel’s review.
Swift language-level guidance that applies across all Apple platforms.
When This Skill Activates
Use this skill when the user:
- Asks about Swift concurrency (async/await, actors, Sendable, TaskGroup)
- Needs help with Swift 6 strict concurrency migration
- Has data race or actor isolation errors
- Asks about InlineArray, Span, or low-level memory performance
- Wants to eliminate heap allocations or replace unsafe pointers
- Asks about modern Swift patterns independent of any specific platform
- Wants complexity/size limits (SwiftLint thresholds) on agent-written code
Available Modules
concurrency-patterns/
Swift concurrency architecture and patterns.
- Swift 6.2 approachable concurrency features (incl.
nonisolated(nonsending), Apple's adoption doctrine) - Structured concurrency (async let, TaskGroup, .task modifier, task-local values)
- Actors, isolation, reentrancy, @MainActor, Sendable
- Runtime internals + profiling (cooperative pool, unsafe primitives, Swift Concurrency Instrument)
- Continuations for bridging legacy APIs
- Swift 6 strict concurrency migration guide
concurrency/
Swift 6.2 concurrency updates reference — the what-changed view (async-stays-on-caller, default MainActor inference, isolated conformances, @concurrent) with migration steps from 6.0/6.1 and top mistakes. Overlaps concurrency-patterns/swift62-concurrency.md by design: use this file when the question is "what changed in 6.2?", use concurrency-patterns when building or reviewing async code.
code-size/
Complexity and size limits for Swift code — SwiftLint threshold rules (cyclomatic complexity, function/type/file length, parameter count) with a violations-baseline adoption path so existing code never blocks. Part of the deterministic gauntlet with testing/fitness-functions and testing/coverage-ratchet.
memory/
InlineArray, Span, and the Swift performance cost model.
- InlineArray: fixed-size, stack-allocated collections with zero heap overhead
- Span family: safe, non-escapable access to contiguous memory (+ OutputRawSpan, swift-binary-parsing)
- Lifetime dependencies and non-escapable type constraints
swift-performance.md: the cost model — allocation, ARC/retain-release, exclusivity checks, dispatch, generics vs existentials, closures,~Copyableownership
How to Use
- Identify user's need from their question
- Read relevant module files from subdirectories
- Apply the guidance to their specific context
- Cross-reference with platform-specific skills (ios/, macos/) as needed
Signals
- GitHub stars
- 727
- Forks
- 70
- Last commit
- Jul 2026
Advanced
- Catalog kind
- skill
- Gateway key
swift-development- Source
- github.com/rshankras/claude-code-apple-skills