Swift Language Patterns
Apply current Swift language syntax without changing behavior or evaluation order.
Route deep decoding to swift-codable, formatting to swift-formatstyle, naming
to swift-api-design-guidelines, concurrency to swift-concurrency, and SwiftUI
state/view work to swiftui-patterns.
Contents
- If/Switch Expressions
- Typed Throws
- Result Builders
- Property Wrappers
- Opaque and Existential Types
- Guard Patterns
- Never Type
- Regex Builders
- Codable Best Practices
- Modern Collection APIs
- FormatStyle
- String Interpolation
- Common Mistakes
- Review Checklist
- References
If/Switch Expressions
For modernization, pin current behavior and evaluation order, make one semantic rewrite, compile the affected module, and run focused fixtures/tests. Fix any change before continuing; repeat until behavior is preserved.
Swift 5.9+ allows if and switch as expressions that return values. Use them
to assign, return, or initialize directly.
Rules:
- Every branch must produce a value of the same type.
- Multi-statement branches are not allowed -- each branch is a single expression.
- Wrap in parentheses when used as a function argument to avoid ambiguity.
Typed Throws
Swift 6+ allows specifying the error type a function throws.
Rules:
- Use
throws(SomeError)only when callers benefit from exhaustive error handling. For mixed error sources, use untypedthrows. - When modernizing a helper with one local error enum, prefer
throws(ErrorEnum)and note Swift 6+. throws(Never)marks a function that syntactically throws but never actually does -- useful in generic contexts.- Typed throws propagate: a function calling
throws(A)andthrows(B)must itself throw a type that covers both (or use untypedthrows).
Result Builders
@resultBuilder enables DSL-style syntax. SwiftUI's @ViewBuilder is the most
common example, but you can create custom builders for any domain.
Builder methods: buildBlock (combine statements), buildExpression (single value), buildOptional (if without else), buildEither (if/else), buildArray (for..in), buildFinalResult (optional post-processing).
Property Wrappers
Custom @propertyWrapper types encapsulate storage and access patterns.
Design rules:
wrappedValueis the primary getter/setter.projectedValue(accessed via$property) provides metadata or bindings.- Property wrappers can be composed:
@A @B var xapplies outer wrapper first. - Do not use property wrappers when a simple computed property suffices.
Opaque and Existential Types
some Protocol (Opaque Type)
The caller does not know the concrete type, but the compiler does. A -> some P
return has one fixed underlying concrete type across all return branches.
Use some for:
- Return types when you want to hide implementation but preserve type identity.
- Parameter types (Swift 5.7+):
some Pis shorthand for an unnamed generic parameter such as<T: P>.
any Protocol (Existential Type)
An existential box that can hold any conforming type at runtime. It uses dynamic dispatch and may allocate when the value does not fit in the inline buffer.
When to choose
Rule of thumb: Default to some. Use any only when you need a
heterogeneous collection or runtime type flexibility.
Guard Patterns
guard enforces preconditions and enables early exit. It keeps the happy path
left-aligned and reduces nesting.
Best practices:
- Use
guardfor preconditions,iffor branching logic. - Combine related guards:
guard let a, let b else { return }. - The
elseblock must exit scope:return,throw,continue,break, orfatalError(). - Use shorthand unwrap:
guard let value else { ... }(Swift 5.7+).
Never Type
Never is an uninhabited type for code paths that never produce a value. It
behaves like Swift's bottom type only where a value expression can be used or
inferred; it is not a universal type witness, does not implicitly conform to
arbitrary protocols, and cannot satisfy generic constraints such as T: P
unless the constraint is otherwise valid for Never.
Regex Builders
Swift 5.7+ Regex builder DSL provides compile-time checked, readable patterns.
When to use builder vs. literal:
- Builder: complex patterns, reusable components, strong typing on captures.
- Literal (
/pattern/): simple patterns, familiarity with regex syntax. - Both can be mixed: embed
/.../literals inside builder blocks.
Codable Best Practices
Use CodingKeys for simple renames and custom decoding only for real payload
shape or transformation mismatches. Load
extended Swift patterns [blocked] for a compact
language example; use swift-codable for implementation and verification.
Modern Collection APIs
Prefer these modern APIs over manual loops:
FormatStyle
Use .formatted() and Text(_:format:) for basic display. Route style
selection, parsing, localization testing, and reusable formatter design to
swift-formatstyle.
String Interpolation
Extend DefaultStringInterpolation for domain-specific formatting. Use """ for multi-line strings (indentation is relative to the closing """). See references/swift-patterns-extended.md [blocked] for custom interpolation examples.
Common Mistakes
- Using
anywhensomeworks. Default tosomefor return types and parameters, but every-> some Pbranch must return the same concrete type. - Manual loops or
.filter { }.countinstead of collection APIs. Usecount(where:)for conditional counts, pluscontains(where:),compactMap, andflatMapinstead of extra iteration or arrays. DateFormatterinstead of FormatStyle..formatted()is simpler, type-safe, and handles localization automatically.- Force-unwrapping Codable decodes. Use
decodeIfPresentwith defaults for optional or missing keys. - Reordering preconditions during modernization. Use
guardwithout moving normalization or transformations before validation. - Invalid
@csignatures. SayUnsafeBufferPointeris a Swift struct/value wrapper, then rejectString,Array, closures, and generic placeholders. - Ignoring typed throws. When a function has a single, clear error type, typed throws give callers exhaustive switch without casting.
- Overusing property wrappers. A computed property is simpler when there is no reuse or projected value needed.
- Underspecifying
Never. ForResult<T, Never>orthrows(Never), write the caveat explicitly: Never does not implicitly conform to arbitrary protocols, cannot satisfy arbitraryT: Pconstraints, and is bottom-like only in valid expression/inference contexts. - Owning sibling implementation. Name the owner skill and stop. Avoid
snippets for
CodingKeys, decoders, formatters, SwiftUI, or concurrency.
Review Checklist
-
someused only when every opaque-return branch has one concrete type -
guardfor preconditions;count(where:)instead of manual counting or.filter { }.count -
.formatted()used instead ofDateFormatter/NumberFormatter - Codable types use
CodingKeysfor API mapping;decodeIfPresentwith defaults for optional fields - if/switch expressions for conditional assignment; property wrappers have clear reuse justification
- Regex builder used for complex patterns (literal OK for simple ones)
- Typed throws used for single local error domains, with Swift 6+ compatibility noted
-
@ccorrections callUnsafeBufferPointera Swift struct/value wrapper and enumerate rejected Swift-only types by name -
Neverguidance uses uninhabited and bottom-like, and says no implicit arbitrary protocol/generic conformance - deep Codable to
swift-codable; FormatStyle APIs toswift-formatstyle; market/localized-display QA toios-localization; naming/concurrency/SwiftUI routed to sibling skills
References
- Extended patterns and Codable examples: references/swift-patterns-extended.md [blocked]
- Attributes and C interop: references/swift-attributes-interop.md [blocked]


