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PrintAsClang is supposed to emit declarations in the same order regardless of the compiler’s internal state, but we have repeatedly found that our current criteria are inadequate, resulting in non-functionality-affecting changes to generated header content. Add a diagnostic that’s emitted when this happens soliciting a bug report. Since there *should* be no cases where the compiler fails to order declarations, this diagnostic is never actually emitted. Instead, we test this change by enabling `-verify` on nearly all PrintAsClang tests to make sure they are unaffected. This did demonstrate a missing criterion that only mattered in C++ mode: extensions that varied only in their generic signature were not sorted stably. Add a sort criterion for this.
148 lines
3.4 KiB
C++
148 lines
3.4 KiB
C++
// RUN: %empty-directory(%t)
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// RUN: split-file %s %t
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// RUN: %target-swift-frontend %t/use-optional.swift -module-name UseOptional -enable-experimental-cxx-interop -typecheck -verify -emit-clang-header-path %t/UseOptional.h
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// RUN: %target-interop-build-clangxx -fno-exceptions -std=gnu++20 -c %t/optional-execution.cpp -I %t -o %t/swift-stdlib-execution.o
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// RUN: %target-build-swift %t/use-optional.swift -o %t/swift-stdlib-execution -Xlinker %t/swift-stdlib-execution.o -module-name UseOptional -Xfrontend -entry-point-function-name -Xfrontend swiftMain
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// RUN: %target-codesign %t/swift-stdlib-execution
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// RUN: %target-run %t/swift-stdlib-execution | %FileCheck %s
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// REQUIRES: executable_test
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//--- use-optional.swift
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@_expose(Cxx)
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public struct SmallStruct {
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public let x: Int16
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}
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@_expose(Cxx)
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public enum RawEnum: Int16 {
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case first = 1
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case second = 3
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}
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@_expose(Cxx)
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public class Klass {
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public let x: Int16
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init(_ x: Int16) {
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self.x = x
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print("init-Klass")
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}
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deinit {
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print("deinit-Klass")
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}
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}
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@_expose(Cxx)
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public func createCIntOpt(_ val: CInt) -> Optional<CInt> {
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return val
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}
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@_expose(Cxx)
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public func takeCIntOpt(_ val: Optional<CInt>) {
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print(String(describing: val))
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}
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@_expose(Cxx)
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public func createSmallStructOpt(_ val: Int16) -> Optional<SmallStruct> {
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return SmallStruct(x: val)
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}
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@_expose(Cxx)
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public func takeSmallStructOpt(_ val: Optional<SmallStruct>) {
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print(String(describing: val))
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}
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@_expose(Cxx)
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public func createKlassOpt(_ val: Int16) -> Klass? {
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return Klass(val)
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}
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@_expose(Cxx)
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public func takeKlassOpt(_ val: Klass?) {
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print(String(describing: val))
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}
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@_expose(Cxx)
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public func resetOpt<T>(_ val: inout Optional<T>) {
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val = .none
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}
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//--- optional-execution.cpp
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#include <cassert>
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#include "UseOptional.h"
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int main() {
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using namespace swift;
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using namespace UseOptional;
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{
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auto val = createCIntOpt(2);
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takeCIntOpt(val);
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assert((bool)val);
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assert(val.isSome());
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assert(val.getUnsafelyUnwrapped() == 2);
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assert(val.get() == 2);
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resetOpt(val);
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assert(!(bool)val);
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assert(val.isNone());
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takeCIntOpt(val);
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}
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// CHECK: Optional(2)
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// CHECK-NEXT: nil
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{
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auto val = Optional<int>::some(-97);
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takeCIntOpt(val);
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assert((bool)val);
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assert(val.get() == -97);
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auto val2 = Optional<int>::none();
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assert(!(bool)val2);
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takeCIntOpt(val2);
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}
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// CHECK-NEXT: Optional(-97)
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// CHECK-NEXT: nil
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{
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auto val = createSmallStructOpt(0xFA);
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takeSmallStructOpt(val);
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assert((bool)val);
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assert(val.isSome());
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assert(val.getUnsafelyUnwrapped().getX() == 0xFA);
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assert(val.get().getX() == 0xFA);
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resetOpt(val);
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assert(!(bool)val);
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assert(val.isNone());
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takeSmallStructOpt(val);
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}
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// CHECK-NEXT: Optional(UseOptional.SmallStruct(x: 250))
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// CHECK-NEXT: nil
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{
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auto val = createKlassOpt(-256);
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takeKlassOpt(val);
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assert(val.isSome());
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auto ptr = val.getUnsafelyUnwrapped();
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assert(ptr.getX() == -256);
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resetOpt(val);
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assert(val.isNone());
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takeKlassOpt(val);
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}
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// CHECK-NEXT: init-Klass
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// CHECK-NEXT: Optional(UseOptional.Klass)
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// CHECK-NEXT: nil
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// CHECK-NEXT: deinit-Klass
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{
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auto val = RawEnum::init(1);
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assert(val.isSome());
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assert(val.getUnsafelyUnwrapped() == RawEnum::first);
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assert(val.getUnsafelyUnwrapped().getRawValue() == 1);
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auto val2 = RawEnum::init(2);
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assert(val2.isNone());
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}
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return 0;
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}
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