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- Don't attempt to insert fixes if there are restrictions present, they'd inform the failures. Inserting fixes too early doesn't help the solver because restriction matching logic would record the same fixes. - Adjust impact of the fixes. Optional conversions shouldn't impact the score in any way because they are not the source of the issue. - Look through one level of optional when failure is related to optional injection. The diagnostic is going to be about underlying type, so there is no reason to print optional on right-hand side.
332 lines
8.5 KiB
Swift
332 lines
8.5 KiB
Swift
// RUN: %target-typecheck-verify-swift
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// https://github.com/apple/swift/issues/43735
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// Test constraint simplification of chains of binary operators.
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do {
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let a: String? = "a"
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let b: String? = "b"
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let c: String? = "c"
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let _: String? = a! + b! + c!
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let x: Double = 1
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_ = x + x + x
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// https://github.com/apple/swift/issues/46071
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let y1: Double? = 1
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_ = y1! + y1! + y1!
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// https://github.com/apple/swift/issues/45241
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let y2: [String: Double] = ["pizza": 10.99, "ice cream": 4.99, "salad": 7.99]
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_ = y2["pizza"]!
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_ = y2["pizza"]! + y2["salad"]!
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_ = y2["pizza"]! + y2["salad"]! + y2["ice cream"]!
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}
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// Use operators defined within a type.
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struct S0 {
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static func +(lhs: S0, rhs: S0) -> S0 { return lhs }
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}
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func useS0(lhs: S0, rhs: S0) {
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_ = lhs + rhs
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}
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// Use operators defined within a generic type.
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struct S0b<T> {
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static func + <U>(lhs: S0b<T>, rhs: U) -> S0b<U> { return S0b<U>() }
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}
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func useS0b(s1i: S0b<Int>, s: String) {
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var s1s = s1i + s
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s1s = S0b<String>()
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_ = s1s
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}
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// Use operators defined within a protocol extension.
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infix operator %%%
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infix operator %%%%
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protocol P1 {
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static func %%%(lhs: Self, rhs: Self) -> Bool
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}
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extension P1 {
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static func %%%%(lhs: Self, rhs: Self) -> Bool {
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return !(lhs %%% rhs)
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}
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}
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func useP1Directly<T : P1>(lhs: T, rhs: T) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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struct S1 : P1 {
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static func %%%(lhs: S1, rhs: S1) -> Bool { return false }
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}
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func useP1Model(lhs: S1, rhs: S1) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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struct S1b<T> : P1 {
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static func %%%(lhs: S1b<T>, rhs: S1b<T>) -> Bool { return false }
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}
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func useP1ModelB(lhs: S1b<Int>, rhs: S1b<Int>) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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func useP1ModelBGeneric<T>(lhs: S1b<T>, rhs: S1b<T>) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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// Use operators defined within a protocol extension to satisfy a requirement.
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protocol P2 {
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static func %%%(lhs: Self, rhs: Self) -> Bool
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static func %%%%(lhs: Self, rhs: Self) -> Bool
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}
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extension P2 {
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static func %%%%(lhs: Self, rhs: Self) -> Bool {
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return !(lhs %%% rhs)
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}
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}
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func useP2Directly<T : P2>(lhs: T, rhs: T) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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struct S2 : P2 {
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static func %%%(lhs: S2, rhs: S2) -> Bool { return false }
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}
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func useP2Model(lhs: S2, rhs: S2) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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struct S2b<T> : P2 {
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static func %%%(lhs: S2b<T>, rhs: S2b<T>) -> Bool { return false }
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}
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func useP2Model2(lhs: S2b<Int>, rhs: S2b<Int>) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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func useP2Model2Generic<T>(lhs: S2b<T>, rhs: S2b<T>) {
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_ = lhs %%% rhs
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_ = lhs %%%% rhs
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}
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// Using an extension of one protocol to satisfy another conformance.
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protocol P3 { }
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extension P3 {
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static func ==(lhs: Self, rhs: Self) -> Bool {
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return true
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}
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}
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struct S3 : P3, Equatable { }
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// rdar://problem/30220565
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func shrinkTooFar(_ : Double, closure : ()->()) {}
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func testShrinkTooFar() {
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shrinkTooFar(0*0*0) {}
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}
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// rdar://problem/33759839
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enum E_33759839 {
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case foo
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case bar(String)
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}
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let foo_33759839 = ["a", "b", "c"]
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let bar_33759839 = ["A", "B", "C"]
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let _: [E_33759839] = foo_33759839.map { .bar($0) } +
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bar_33759839.map { .bar($0) } +
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[E_33759839.foo] // Ok
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// rdar://problem/28688585
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class B_28688585 {
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var value: Int
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init(value: Int) {
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self.value = value
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}
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func add(_ other: B_28688585) -> B_28688585 {
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return B_28688585(value: value + other.value)
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}
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}
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class D_28688585 : B_28688585 {
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}
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func + (lhs: B_28688585, rhs: B_28688585) -> B_28688585 {
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return lhs.add(rhs)
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}
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let var_28688585 = D_28688585(value: 1)
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_ = var_28688585 + var_28688585 + var_28688585 // Ok
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// rdar://problem/35740653 - Fix `LinkedExprAnalyzer` greedy operator linking
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struct S_35740653 {
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var v: Double = 42
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static func value(_ value: Double) -> S_35740653 {
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return S_35740653(v: value)
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}
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static func / (lhs: S_35740653, rhs: S_35740653) -> Double {
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return lhs.v / rhs.v
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}
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}
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func rdar35740653(val: S_35740653) {
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let _ = 0...Int(val / .value(1.0 / 42.0)) // Ok
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}
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protocol P_37290898 {}
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struct S_37290898: P_37290898 {}
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func rdar37290898(_ arr: inout [P_37290898], _ element: S_37290898?) {
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arr += [element].compactMap { $0 } // Ok
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}
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// https://github.com/apple/swift/issues/50753
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infix operator ??=
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func ??= <T>(lhs: inout T?, rhs: T?) {}
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var c: Int = 0 // expected-note {{change variable type to 'Int?' if it doesn't need to be declared as 'Int'}}
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c ??= 5 // expected-error{{inout argument could be set to a value with a type other than 'Int'; use a value declared as type 'Int?' instead}}
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func rdar46459603() {
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enum E {
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case foo(value: String)
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}
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let e = E.foo(value: "String")
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var arr = ["key": e]
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_ = arr.values == [e]
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// expected-error@-1 {{referencing operator function '==' on 'Equatable' requires that 'Dictionary<String, E>.Values' conform to 'Equatable'}}
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// expected-error@-2 {{cannot convert value of type '[E]' to expected argument type 'Dictionary<String, E>.Values'}}
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_ = [arr.values] == [[e]]
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// expected-error@-1 {{referencing operator function '==' on 'Array' requires that 'E' conform to 'Equatable'}} expected-note@-1 {{binary operator '==' cannot be synthesized for enums with associated values}}
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// expected-error@-2 {{cannot convert value of type 'Dictionary<String, E>.Values' to expected element type '[E]'}}
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}
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// https://github.com/apple/swift/issues/53233
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infix operator ^^^
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func ^^^ (lhs: String, rhs: String) {}
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// FIXME: Operator lookup does not reach local types so this must be a
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// top-level struct (https://github.com/apple/swift/issues/51378).
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struct S_53233 {
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static func ^^^ (lhs: S_53233, rhs: S_53233) {}
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}
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do {
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let s = S_53233()
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(^^^)(s, s)
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_ = (==)(0, 0)
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}
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// https://github.com/apple/swift/issues/53359
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precedencegroup PowerPrecedence {
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lowerThan: BitwiseShiftPrecedence
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higherThan: AdditionPrecedence
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associativity: right
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}
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infix operator ^^ : PowerPrecedence
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extension Int {
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static func ^^ (lhs: Int, rhs: Int) -> Int {
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var result = 1
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for _ in 1...rhs { result *= lhs }
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return result
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}
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}
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_ = 1 ^^ 2 ^^ 3 * 4 // expected-error {{adjacent operators are in unordered precedence groups 'PowerPrecedence' and 'MultiplicationPrecedence'}}
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// rdar://problem/60185506 - Ambiguity with Float comparison
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func rdar_60185506() {
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struct X {
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var foo: Float
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}
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func test(x: X?) {
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let _ = (x?.foo ?? 0) <= 0.5 // Ok
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}
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}
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// rdar://problem/60727310
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func rdar60727310() {
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func myAssertion<T>(_ a: T, _ op: ((T,T)->Bool), _ b: T) {}
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var e: Error? = nil
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myAssertion(e, ==, nil) // expected-error {{cannot convert value of type '(any Error)?' to expected argument type '(any Any.Type)?'}}
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}
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// https://github.com/apple/swift/issues/54877
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// FIXME: Bad diagnostic.
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func f_54877(_ e: Error) {
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func foo<T>(_ a: T, _ op: ((T, T) -> Bool)) {}
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foo(e, ==) // expected-error {{type of expression is ambiguous without a type annotation}}
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}
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// rdar://problem/62054241 - Swift compiler crashes when passing < as the sort function in sorted(by:) and the type of the array is not comparable
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func rdar_62054241() {
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struct Foo {
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let a: Int
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}
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func test(_ arr: [Foo]) -> [Foo] {
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return arr.sorted(by: <) // expected-error {{no exact matches in reference to operator function '<'}}
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// expected-note@-1 {{found candidate with type '(Foo, Foo) -> Bool'}}
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}
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}
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// https://github.com/apple/swift/issues/53800
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// Operator returning IUO doesn't implicitly unwrap
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postfix operator ^^^
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postfix func ^^^ (lhs: Int) -> Int! { 0 }
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let x: Int = 1^^^
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// https://github.com/apple/swift/issues/44672 - DiagnosticsQoI
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do {
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enum TestEnum: Int {
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case First, Second
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}
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let number = 1
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let test = true || number == .First.rawValue // expected-error {{type 'Int' has no member 'First'}}
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}
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// https://github.com/apple/swift/issues/60954
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enum I60954 {
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// expected-error@+1{{operator implementation without matching operator declaration}}
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func ?= (pattern: I60954?, version: Self) { // expected-error{{operator '?=' declared in type 'I60954' must be 'static'}}
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// expected-error@+2{{operator is not a known binary operator}}
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// expected-error@+1{{initializer 'init(_:)' requires that 'I60954' conform to 'StringProtocol'}}
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pattern ?= .init(version) // expected-error{{value of optional type 'I60954?' must be unwrapped to a value of type 'I60954'}}
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// expected-note@-1{{coalesce using '??' to provide a default when the optional value contains 'nil'}}
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// expected-note@-2{{force-unwrap using '!' to abort execution if the optional value contains 'nil'}}
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}
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init?<S>(_ string: S) where S: StringProtocol {} // expected-note{{where 'S' = 'I60954'}}
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}
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