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Extend new requirement failure diagnostics by adding "same-type" generic requirement failures.
248 lines
6.5 KiB
Swift
248 lines
6.5 KiB
Swift
// RUN: %target-typecheck-verify-swift
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// Test various tuple constraints.
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func f0(x: Int, y: Float) {}
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var i : Int
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var j : Int
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var f : Float
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func f1(y: Float, rest: Int...) {}
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func f2(_: (_ x: Int, _ y: Int) -> Int) {}
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func f2xy(x: Int, y: Int) -> Int {}
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func f2ab(a: Int, b: Int) -> Int {}
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func f2yx(y: Int, x: Int) -> Int {}
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func f3(_ x: (_ x: Int, _ y: Int) -> ()) {}
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func f3a(_ x: Int, y: Int) {}
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func f3b(_: Int) {}
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func f4(_ rest: Int...) {}
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func f5(_ x: (Int, Int)) {}
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func f6(_: (i: Int, j: Int), k: Int = 15) {}
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//===----------------------------------------------------------------------===//
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// Conversions and shuffles
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//===----------------------------------------------------------------------===//
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// Variadic functions.
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f4()
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f4(1)
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f4(1, 2, 3)
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f2(f2xy)
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f2(f2ab)
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f2(f2yx)
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f3(f3a)
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f3(f3b) // expected-error{{cannot convert value of type '(Int) -> ()' to expected argument type '(Int, Int) -> ()'}}
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func getIntFloat() -> (int: Int, float: Float) {}
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var values = getIntFloat()
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func wantFloat(_: Float) {}
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wantFloat(values.float)
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var e : (x: Int..., y: Int) // expected-error{{cannot create a variadic tuple}}
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typealias Interval = (a:Int, b:Int)
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func takeInterval(_ x: Interval) {}
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takeInterval(Interval(1, 2))
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f5((1,1))
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// Tuples with existentials
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var any : Any = ()
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any = (1, 2)
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any = (label: 4)
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// Scalars don't have .0/.1/etc
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i = j.0 // expected-error{{value of type 'Int' has no member '0'}}
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any.1 // expected-error{{value of type 'Any' has no member '1'}}
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// expected-note@-1{{cast 'Any' to 'AnyObject' or use 'as!' to force downcast to a more specific type to access members}}
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any = (5.0, 6.0) as (Float, Float)
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_ = (any as! (Float, Float)).1
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// Fun with tuples
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protocol PosixErrorReturn {
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static func errorReturnValue() -> Self
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}
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extension Int : PosixErrorReturn {
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static func errorReturnValue() -> Int { return -1 }
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}
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func posixCantFail<A, T : Comparable & PosixErrorReturn>
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(_ f: @escaping (A) -> T) -> (_ args:A) -> T
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{
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return { args in
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let result = f(args)
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assert(result != T.errorReturnValue())
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return result
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}
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}
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func open(_ name: String, oflag: Int) -> Int { }
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var foo: Int = 0
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var fd = posixCantFail(open)(("foo", 0))
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// Tuples and lvalues
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class C {
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init() {}
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func f(_: C) {}
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}
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func testLValue(_ c: C) {
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var c = c
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c.f(c)
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let x = c
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c = x
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}
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// <rdar://problem/21444509> Crash in TypeChecker::coercePatternToType
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func invalidPatternCrash(_ k : Int) {
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switch k {
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case (k, cph_: k) as UInt8: // expected-error {{tuple pattern cannot match values of the non-tuple type 'UInt8'}} expected-warning {{cast from 'Int' to unrelated type 'UInt8' always fails}}
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break
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}
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}
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// <rdar://problem/21875219> Tuple to tuple conversion with IdentityExpr / AnyTryExpr hang
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class Paws {
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init() throws {}
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}
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func scruff() -> (AnyObject?, Error?) {
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do {
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return try (Paws(), nil)
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} catch {
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return (nil, error)
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}
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}
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// Test variadics with trailing closures.
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func variadicWithTrailingClosure(_ x: Int..., y: Int = 2, fn: (Int, Int) -> Int) {
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}
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variadicWithTrailingClosure(1, 2, 3) { $0 + $1 }
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variadicWithTrailingClosure(1) { $0 + $1 }
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variadicWithTrailingClosure() { $0 + $1 }
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variadicWithTrailingClosure { $0 + $1 }
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variadicWithTrailingClosure(1, 2, 3, y: 0) { $0 + $1 }
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variadicWithTrailingClosure(1, y: 0) { $0 + $1 }
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variadicWithTrailingClosure(y: 0) { $0 + $1 }
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variadicWithTrailingClosure(1, 2, 3, y: 0, fn: +)
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variadicWithTrailingClosure(1, y: 0, fn: +)
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variadicWithTrailingClosure(y: 0, fn: +)
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variadicWithTrailingClosure(1, 2, 3, fn: +)
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variadicWithTrailingClosure(1, fn: +)
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variadicWithTrailingClosure(fn: +)
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// <rdar://problem/23700031> QoI: Terrible diagnostic in tuple assignment
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func gcd_23700031<T>(_ a: T, b: T) {
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var a = a
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var b = b
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(a, b) = (b, a % b) // expected-error {{binary operator '%' cannot be applied to two 'T' operands}}
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// expected-note @-1 {{overloads for '%' exist with these partially matching parameter lists: (UInt8, UInt8), (Int8, Int8), (UInt16, UInt16), (Int16, Int16), (UInt32, UInt32), (Int32, Int32), (UInt64, UInt64), (Int64, Int64), (UInt, UInt), (Int, Int)}}
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}
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// <rdar://problem/24210190>
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// Don't ignore tuple labels in same-type constraints or stronger.
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protocol Kingdom {
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associatedtype King
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}
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struct Victory<General> {
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init<K: Kingdom>(_ king: K) where K.King == General {} // expected-note {{where 'General' = '(x: Int, y: Int)', 'K.King' = '(Int, Int)'}}
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}
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struct MagicKingdom<K> : Kingdom {
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typealias King = K
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}
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func magify<T>(_ t: T) -> MagicKingdom<T> { return MagicKingdom() }
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func foo(_ pair: (Int, Int)) -> Victory<(x: Int, y: Int)> {
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return Victory(magify(pair)) // expected-error {{initializer 'init' requires the types '(x: Int, y: Int)' and '(Int, Int)' be equivalent}}
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}
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// https://bugs.swift.org/browse/SR-596
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// Compiler crashes when accessing a non-existent property of a closure parameter
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func call(_ f: (C) -> Void) {}
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func makeRequest() {
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call { obj in
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print(obj.invalidProperty) // expected-error {{value of type 'C' has no member 'invalidProperty'}}
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}
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}
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// <rdar://problem/25271859> QoI: Misleading error message when expression result can't be inferred from closure
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struct r25271859<T> {
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}
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extension r25271859 {
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func map<U>(f: (T) -> U) -> r25271859<U> {
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}
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func andThen<U>(f: (T) -> r25271859<U>) {
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}
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}
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func f(a : r25271859<(Float, Int)>) {
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a.map { $0.0 }
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.andThen { _ in // expected-error {{unable to infer complex closure return type; add explicit type to disambiguate}} {{18-18=-> r25271859<String> }}
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print("hello") // comment this out and it runs, leave any form of print in and it doesn't
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return r25271859<String>()
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}
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}
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// LValue to rvalue conversions.
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func takesRValue(_: (Int, (Int, Int))) {}
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func takesAny(_: Any) {}
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var x = 0
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var y = 0
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let _ = (x, (y, 0))
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takesRValue((x, (y, 0)))
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takesAny((x, (y, 0)))
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// SR-2600 - Closure cannot infer tuple parameter names
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typealias Closure<A, B> = ((a: A, b: B)) -> String
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func invoke<A, B>(a: A, b: B, _ closure: Closure<A,B>) {
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print(closure((a, b)))
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}
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invoke(a: 1, b: "B") { $0.b }
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invoke(a: 1, b: "B") { $0.1 }
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invoke(a: 1, b: "B") { (c: (a: Int, b: String)) in
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return c.b
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}
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invoke(a: 1, b: "B") { c in
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return c.b
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}
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// Crash with one-element tuple with labeled element
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class Dinner {}
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func microwave() -> Dinner? {
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let d: Dinner? = nil
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return (n: d) // expected-error{{cannot convert return expression of type '(n: Dinner?)' to return type 'Dinner?'}}
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}
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func microwave() -> Dinner {
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let d: Dinner? = nil
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return (n: d) // expected-error{{cannot convert return expression of type '(n: Dinner?)' to return type 'Dinner'}}
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}
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