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If a generic parameter is not referred to from a function signature, it can never be inferred and thus such a function can never be invoked.
We now produce the following error:
generic parameter 'T' is not used in function signature
func f8<T> (x: Int) {}
This commit takes Jordan't comments on r28181 into account:
- it produces a shorter error message
- it does not change the compiler_crashers_fixed test and add a new expected error instead
Swift SVN r28194
464 lines
16 KiB
Swift
464 lines
16 KiB
Swift
// RUN: %target-parse-verify-swift
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protocol EmptyProtocol { }
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protocol DefinitionsInProtocols {
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init() {} // expected-error {{protocol initializers may not have bodies}}
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deinit {} // expected-error {{deinitializers may only be declared within a class}}
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}
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// Protocol decl.
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protocol Test {
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func setTitle(_: String)
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func erase() -> Bool
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var creator: String { get }
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var major : Int { get }
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var minor : Int { get }
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var subminor : Int // expected-error {{property in protocol must have explicit { get } or { get set } specifier}}
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static var staticProperty: Int // expected-error{{static stored properties not yet supported in generic types}} expected-error{{property in protocol must have explicit { get } or { get set } specifier}}
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}
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protocol Test2 {
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var property: Int { get }
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var title: String = "The Art of War" { get } // expected-error{{initial value is not allowed here}} expected-error {{property in protocol must have explicit { get } or { get set } specifier}}
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static var title2: String = "The Art of War" // expected-error{{initial value is not allowed here}} expected-error {{property in protocol must have explicit { get } or { get set } specifier}} expected-error {{static stored properties not yet supported in generic types}}
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typealias mytype
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typealias mybadtype = Int
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}
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func test1() {
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var v1: Test
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var s: String
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v1.setTitle(s)
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v1.creator = "Me" // expected-error {{cannot assign to 'creator' in 'v1'}}
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}
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protocol Bogus : Int {} // expected-error{{inheritance from non-protocol type 'Int'}}
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// Explicit conformance checks (successful).
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protocol Any { }
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protocol CustomStringConvertible { func print() } // expected-note{{protocol requires function 'print()' with type '() -> ()'}} expected-note{{protocol requires}} expected-note{{protocol requires}} expected-note{{protocol requires}}
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struct TestFormat { }
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protocol FormattedPrintable : CustomStringConvertible {
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func print(format format: TestFormat)
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}
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struct X0 : Any, CustomStringConvertible {
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func print() {}
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}
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class X1 : Any, CustomStringConvertible {
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func print() {}
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}
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enum X2 : Any { }
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extension X2 : CustomStringConvertible {
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func print() {}
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}
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// Explicit conformance checks (unsuccessful)
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struct NotPrintableS : Any, CustomStringConvertible {} // expected-error{{type 'NotPrintableS' does not conform to protocol 'CustomStringConvertible'}}
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class NotPrintableC : CustomStringConvertible, Any {} // expected-error{{type 'NotPrintableC' does not conform to protocol 'CustomStringConvertible'}}
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enum NotPrintableO : Any, CustomStringConvertible {} // expected-error{{type 'NotPrintableO' does not conform to protocol 'CustomStringConvertible'}}
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struct NotFormattedPrintable : FormattedPrintable { // expected-error{{type 'NotFormattedPrintable' does not conform to protocol 'CustomStringConvertible'}}
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func print(format format: TestFormat) {} // expected-note{{candidate has non-matching type '(format: TestFormat) -> ()'}}
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}
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// Circular protocols
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protocol CircleMiddle : CircleStart { func circle_middle() } // expected-error{{circular protocol inheritance 'CircleMiddle' -> 'CircleStart' -> 'CircleEnd' -> 'CircleMiddle'}}
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protocol CircleStart : CircleEnd { func circle_start() } // expected-note{{protocol 'CircleStart' declared here}}
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protocol CircleEnd : CircleMiddle { func circle_end()} // expected-note{{protocol 'CircleEnd' declared here}}
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struct Circle {
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func circle_start() {}
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func circle_middle() {}
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func circle_end() {}
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}
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func testCircular(circle: Circle) {
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// FIXME: It would be nice if this failure were suppressed because the protocols
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// have circular definitions.
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var circular : CircleStart = circle // expected-error{{type 'Circle' does not conform to protocol 'CircleStart'}}
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}
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// <rdar://problem/14750346>
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protocol Q : C, H { }
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protocol C : E { }
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protocol H : E { }
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protocol E { }
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struct disallownonglobal { protocol P {} } // expected-error {{declaration is only valid at file scope}}
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protocol disallownestp { protocol P {} } // expected-error {{type not allowed here}}
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protocol disallownests { struct S {} } // expected-error {{type not allowed here}}
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protocol disallownestc { class C {} } // expected-error {{type not allowed here}}
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protocol disallownesto { enum O {} } // expected-error {{type not allowed here}}
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//===----------------------------------------------------------------------===//
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// Associated types
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//===----------------------------------------------------------------------===//
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protocol SimpleAssoc {
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typealias Associated // expected-note{{protocol requires nested type 'Associated'}}
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}
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struct IsSimpleAssoc : SimpleAssoc {
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struct Associated {}
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}
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struct IsNotSimpleAssoc : SimpleAssoc {} // expected-error{{type 'IsNotSimpleAssoc' does not conform to protocol 'SimpleAssoc'}}
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protocol StreamWithAssoc {
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typealias Element
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func get() -> Element // expected-note{{protocol requires function 'get()' with type '() -> Element'}}
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}
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struct AnRange<Int> : StreamWithAssoc {
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typealias Element = Int
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func get() -> Int {}
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}
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// Okay: Word is a typealias for Int
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struct AWordStreamType : StreamWithAssoc {
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typealias Element = Int
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func get() -> Word {}
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}
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struct NotAStreamType : StreamWithAssoc { // expected-error{{type 'NotAStreamType' does not conform to protocol 'StreamWithAssoc'}}
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typealias Element = Float
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func get() -> Int {} // expected-note{{candidate has non-matching type '() -> Int'}}
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}
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// Okay: Infers Element == Int
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struct StreamTypeWithInferredAssociatedTypes : StreamWithAssoc {
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func get() -> Int {}
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}
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protocol SequenceViaStream {
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typealias SequenceStreamTypeType : GeneratorType // expected-note{{protocol requires nested type 'SequenceStreamTypeType'}}
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func generate() -> SequenceStreamTypeType
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}
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struct IntGeneratorType : GeneratorType /*, SequenceType, ReplPrintable*/ {
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typealias Element = Int
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var min : Int
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var max : Int
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var stride : Int
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mutating func next() -> Int? {
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if min >= max { return .None }
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var prev = min
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min += stride
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return prev
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}
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typealias Generator = IntGeneratorType
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func generate() -> IntGeneratorType {
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return self
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}
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}
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extension IntGeneratorType : SequenceViaStream {
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typealias SequenceStreamTypeType = IntGeneratorType
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}
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struct NotSequence : SequenceViaStream { // expected-error{{type 'NotSequence' does not conform to protocol 'SequenceViaStream'}}
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typealias SequenceStreamTypeType = Int // expected-note{{possibly intended match 'SequenceStreamTypeType' does not conform to 'GeneratorType'}}
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func generate() -> Int {}
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}
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protocol GetATuple {
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typealias Tuple
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func getATuple() -> Tuple
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}
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struct IntStringGetter : GetATuple {
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typealias Tuple = (i: Int, s: String)
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func getATuple() -> Tuple {}
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}
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//===----------------------------------------------------------------------===//
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// Default arguments
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//===----------------------------------------------------------------------===//
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// FIXME: Actually make use of default arguments, check substitutions, etc.
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protocol ProtoWithDefaultArg {
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func increment(value: Int = 1) // expected-error{{default argument not permitted in a protocol method}}
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}
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struct HasNoDefaultArg : ProtoWithDefaultArg {
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func increment(_: Int) {}
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}
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//===----------------------------------------------------------------------===//
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// Variadic function requirements
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//===----------------------------------------------------------------------===//
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protocol IntMaxable {
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func intmax(first first: Int, rest: Int...) -> Int // expected-note 2{{protocol requires function 'intmax(first:rest:)' with type '(first: Int, rest: Int...) -> Int'}}
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}
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struct HasIntMax : IntMaxable {
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func intmax(first first: Int, rest: Int...) -> Int {}
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}
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struct NotIntMax1 : IntMaxable { // expected-error{{type 'NotIntMax1' does not conform to protocol 'IntMaxable'}}
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func intmax(first first: Int, rest: [Int]) -> Int {} // expected-note{{candidate has non-matching type '(first: Int, rest: [Int]) -> Int'}}
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}
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struct NotIntMax2 : IntMaxable { // expected-error{{type 'NotIntMax2' does not conform to protocol 'IntMaxable'}}
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func intmax(first first: Int, rest: Int) -> Int {} // expected-note{{candidate has non-matching type '(first: Int, rest: Int) -> Int'}}
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}
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//===----------------------------------------------------------------------===//
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// 'Self' type
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//===----------------------------------------------------------------------===//
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protocol IsEqualComparable {
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func isEqual(other other: Self) -> Bool // expected-note{{protocol requires function 'isEqual(other:)' with type '(other: WrongIsEqual) -> Bool'}}
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}
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struct HasIsEqual : IsEqualComparable {
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func isEqual(other other: HasIsEqual) -> Bool {}
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}
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struct WrongIsEqual : IsEqualComparable { // expected-error{{type 'WrongIsEqual' does not conform to protocol 'IsEqualComparable'}}
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func isEqual(other other: Int) -> Bool {} // expected-note{{candidate has non-matching type '(other: Int) -> Bool'}}
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}
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//===----------------------------------------------------------------------===//
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// Using values of existential type.
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//===----------------------------------------------------------------------===//
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func existentialSequence(e: SequenceType) { // expected-error{{has Self or associated type requirements}}
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// FIXME: Need a more specific diagnostic here.
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var x = e.generate() // expected-error{{'SequenceType' does not have a member named 'generate'}}
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x.next()
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x.nonexistent()
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}
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protocol HasSequenceAndStream {
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typealias R : GeneratorType, SequenceType
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func getR() -> R
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}
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func existentialSequenceAndStreamType(h: HasSequenceAndStream) { // expected-error{{has Self or associated type requirements}}
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// FIXME: Crummy diagnostics.
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var x = h.getR() // expected-error{{'HasSequenceAndStream' does not have a member named 'getR'}}
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x.generate()
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x.next()
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x.nonexistent()
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}
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//===----------------------------------------------------------------------===//
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// Subscripting
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//===----------------------------------------------------------------------===//
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protocol IntIntSubscriptable {
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subscript (i: Int) -> Int { get }
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}
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protocol IntSubscriptable {
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typealias Element
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subscript (i: Int) -> Element { get }
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}
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struct DictionaryIntInt {
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subscript (i: Int) -> Int {
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get {
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return i
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}
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}
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}
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func testSubscripting(iis: IntIntSubscriptable, i_s: IntSubscriptable) { // expected-error{{has Self or associated type requirements}}
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var i: Int = iis[17]
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// FIXME: Crummy diagnostics.
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var i2 = i_s[17] // expected-error{{'IntSubscriptable' does not have a member named 'subscript'}}
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}
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//===----------------------------------------------------------------------===//
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// Static methods
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//===----------------------------------------------------------------------===//
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protocol StaticP {
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static func f()
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}
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protocol InstanceP {
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func f() // expected-note{{protocol requires function 'f()' with type '() -> ()'}}
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}
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struct StaticS1 : StaticP {
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static func f() {}
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}
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struct StaticS2 : InstanceP { // expected-error{{type 'StaticS2' does not conform to protocol 'InstanceP'}}
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static func f() {} // expected-note{{candidate operates on a type, not an instance as required}}
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}
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struct StaticAndInstanceS : InstanceP {
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static func f() {}
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func f() {}
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}
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func StaticProtocolFunc() {
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var a: StaticP = StaticS1()
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a.f() // expected-error{{'StaticP' does not have a member named 'f'}}
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}
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func StaticProtocolGenericFunc<t : StaticP>(_: t) {
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t.f()
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}
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//===----------------------------------------------------------------------===//
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// Operators
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//===----------------------------------------------------------------------===//
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protocol Eq {
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func ==(lhs: Self, rhs: Self) -> Bool
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}
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extension Int : Eq { }
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// Matching prefix/postfix.
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prefix operator <> {}
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postfix operator <> {}
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protocol IndexValue {
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prefix func <> (max: Self) -> Int
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postfix func <> (min: Self) -> Int
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}
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prefix func <> (max: Int) -> Int { return 0 }
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postfix func <> (min: Int) -> Int { return 0 }
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extension Int : IndexValue {}
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//===----------------------------------------------------------------------===//
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// Class protocols
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//===----------------------------------------------------------------------===//
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protocol IntrusiveListNode : class {
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var next : Self { get }
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}
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final class ClassNode : IntrusiveListNode {
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var next : ClassNode = ClassNode()
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}
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struct StructNode : IntrusiveListNode { // expected-error{{non-class type 'StructNode' cannot conform to class protocol 'IntrusiveListNode'}}
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var next : StructNode
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}
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final class ClassNodeByExtension { }
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struct StructNodeByExtension { }
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extension ClassNodeByExtension : IntrusiveListNode {
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var next : ClassNodeByExtension {
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get {
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return self
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}
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set {}
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}
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}
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extension StructNodeByExtension : IntrusiveListNode { // expected-error{{non-class type 'StructNodeByExtension' cannot conform to class protocol 'IntrusiveListNode'}}
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var next : StructNodeByExtension {
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get {
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return self
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}
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set {}
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}
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}
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final class GenericClassNode<T> : IntrusiveListNode {
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var next : GenericClassNode<T> = GenericClassNode()
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}
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struct GenericStructNode<T> : IntrusiveListNode { // expected-error{{non-class type 'GenericStructNode<T>' cannot conform to class protocol 'IntrusiveListNode'}}
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var next : GenericStructNode<T>
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}
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// Refined protocols inherit class-ness
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protocol IntrusiveDListNode : IntrusiveListNode {
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var prev : Self { get }
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}
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final class ClassDNode : IntrusiveDListNode {
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var prev : ClassDNode = ClassDNode()
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var next : ClassDNode = ClassDNode()
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}
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struct StructDNode : IntrusiveDListNode { // expected-error{{non-class type 'StructDNode' cannot conform to class protocol 'IntrusiveDListNode'}}
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// expected-error@-1{{non-class type 'StructDNode' cannot conform to class protocol 'IntrusiveListNode'}}
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var prev : StructDNode
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var next : StructDNode
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}
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@objc protocol ObjCProtocol {
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func foo() // expected-note{{protocol requires function 'foo()' with type '() -> ()'}}
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}
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protocol NonObjCProtocol : class { //expected-note{{protocol 'NonObjCProtocol' declared here}}
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func bar()
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}
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class DoesntConformToObjCProtocol : ObjCProtocol { // expected-error{{type 'DoesntConformToObjCProtocol' does not conform to protocol 'ObjCProtocol'}}
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}
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@objc protocol ObjCProtocolRefinement : ObjCProtocol { }
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@objc protocol ObjCNonObjCProtocolRefinement : NonObjCProtocol { } //expected-error{{@objc protocol 'ObjCNonObjCProtocolRefinement' cannot refine non-@objc protocol 'NonObjCProtocol'}}
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// <rdar://problem/16079878>
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protocol P1 {
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typealias Assoc // expected-note 2{{protocol requires nested type 'Assoc'}}
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}
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protocol P2 {
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}
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struct X3<T : P1 where T.Assoc : P2> { }
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struct X4 : P1 { // expected-error{{type 'X4' does not conform to protocol 'P1'}}
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func getX1() -> X3<X4> { return X3() }
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}
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protocol ShouldntCrash {
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// rdar://16109996
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let fullName: String { get } // expected-error {{'let' declarations cannot be computed properties}}
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// <rdar://problem/17200672> Let in protocol causes unclear errors and crashes
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let fullName2: String // expected-error {{immutable property requirement must be declared as 'var' with a '{ get }' specifier}}
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// <rdar://problem/16789886> Assert on protocol property requirement without a type
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var propertyWithoutType { get } // expected-error {{type annotation missing in pattern}} expected-error {{computed property must have an explicit type}}
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}
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// rdar://problem/18168866
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protocol FirstProtocol {
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weak var delegate : SecondProtocol? { get } // expected-error{{'weak' cannot be applied to non-class type 'SecondProtocol'}}
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}
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protocol SecondProtocol {
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func aMethod(object : FirstProtocol)
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}
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// <rdar://problem/19495341> Can't upcast to parent types of type constraints without forcing
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class C1 : P2 {}
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func f<T : C1>(x : T) {
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x as P2
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}
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class C2 {}
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func g<T : C2>(x : T) {
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x as P2 // expected-error{{'T' is not convertible to 'P2'; did you mean to use 'as!' to force downcast?}}
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}
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class C3 : P1 {} // expected-error{{type 'C3' does not conform to protocol 'P1'}}
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func h<T : C3>(x : T) {
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x as P1 // expected-error{{protocol 'P1' can only be used as a generic constraint because it has Self or associated type requirements}}
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}
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