The local bridging headers needed two new definitions:
- NSErrorDomain
- NS_OPTIONS
These can be used by the SILGen tests to build against a stubbed
Foundation rather than requiring the host to provide it.
When trying to figure out errors from an import failure, the nullability
completeness warnings would clutter the output making it difficult to
identify the errors. Sprinkle the declaarations with
`_Null_unspecified` to maintain the current nullability semantics and
silence the warnings. NFC.
Use the modern spelling for the nullability attributes in the test mock
headers. Currently, this was relying on the predefined macros from
clang to work. However, those are only available on Darwin targets.
This is needed to make the mock environments more portable.
This can get introduced by somewhat pathological behavior in the
importer combined with SILGenApply's reliance on parallel tuple
destructuring. Both of these should be fixed, but this patch is
much simpler.
rdar://34913800
Implements SE-0055: https://github.com/apple/swift-evolution/blob/master/proposals/0055-optional-unsafe-pointers.md
- Add NULL as an extra inhabitant of Builtin.RawPointer (currently
hardcoded to 0 rather than being target-dependent).
- Import non-object pointers as Optional/IUO when nullable/null_unspecified
(like everything else).
- Change the type checker's *-to-pointer conversions to handle a layer of
optional.
- Use 'AutoreleasingUnsafeMutablePointer<NSError?>?' as the type of error
parameters exported to Objective-C.
- Drop NilLiteralConvertible conformance for all pointer types.
- Update the standard library and then all the tests.
I've decided to leave this commit only updating existing tests; any new
tests will come in the following commits. (That may mean some additional
implementation work to follow.)
The other major piece that's missing here is migration. I'm hoping we get
a lot of that with Swift 1.1's work for optional object references, but
I still need to investigate.
Most of this is in updating the standard library, SDK overlays, and
piles of test cases to use the new names. No surprises here, although
this shows us some potential heuristic tweaks.
There is one substantive compiler change that needs to be factored out
involving synthesizing calls to copyWithZone()/copy(zone:). Aside from
that, there are four failing tests:
Swift :: ClangModules/objc_parse.swift
Swift :: Interpreter/SDK/Foundation_test.swift
Swift :: Interpreter/SDK/archiving_generic_swift_class.swift
Swift :: Interpreter/SDK/objc_currying.swift
due to two independent remaining compiler bugs:
* We're not getting partial ordering between NSCoder's
encode(AnyObject, forKey: String) and NSKeyedArchiver's version of
that method, and
* Dynamic lookup (into AnyObject) doesn't know how to find the new
names. We need the Swift name lookup tables enabled to address this.
- If a @convention(block) function parameter was also marked @noescape, then during type-checking, we would accidentally propagate the convention directly onto a literal closure expr, instead of going through a function_conversion, which SILGen didn't handle. Fixes rdar://problem/23261912.
- If an Objective-C API declared a block parameter with a _Nonnull return of a bridged type, such as NSString *_Nonnull, then native-to-bridged thunking would fail to recognize this case, since we still bridge to an Optional type in the lowered ObjC interface. Fixes rdar://problem/23285766.
This allows SILGen to recognize them as foreign declarations, fixing a bug when classes with subscripts defined in Objective-C were extended to conform to Swift protocols with subscript requirements. rdar://problem/20371661
Swift SVN r27998
We have an SPI between the Swift compiler and Foundation based on the
SWIFT_SDK_OVERLAY_FOUNDATION_EPOCH preprocessor macro that allows us to
request the new API. rdar://20270080 tracks removing it.
Swift SVN r26475
Semantically, a dynamic property must always be dispatched in case it gets replaced at runtime, and an @NSManaged property may not have static accessors at all. Use ordinary access to the computed property accessors in materializeForSet when a property is dynamic or ObjC-originated. More rdar://problem/18706056.
There's still a problem--we try to vtable-dispatch materializeForSet, which is redundant for native classes, but impossible for imported ObjC classes. We should suppress this, but trying to make materializeForSet "final" breaks subclassing if the property is overridden.
This time, update test/SILGen/objc_properties.swift to avoid a false negative test failure.
Swift SVN r24888
Semantically, a dynamic property must always be dispatched in case it gets replaced at runtime, and an @NSManaged property may not have static accessors at all. Use ordinary access to the computed property accessors in materializeForSet when a property is dynamic or ObjC-originated. More rdar://problem/18706056.
There's still a problem--we try to vtable-dispatch materializeForSet, which is redundant for native classes, but impossible for imported ObjC classes. We should suppress this, but trying to make materializeForSet "final" breaks subclassing if the property is overridden.
Swift SVN r24882
Add the following functionality to the Swift compiler:
* covariant subtyping of Set
* upcasting, downcasting of Set
* automatic bridging between Set and NSSet, including
* NSSet params/return values in ObjC are imported as Set<NSObject>
* Set params/return values in Swift are visible to ObjC as NSSet
<rdar://problem/18853078> Implement Set<T> up and downcasting
Swift SVN r23751
It's not always correct to map a Swift Bool back to ObjCBool in C land, since Bool could have originally been a proper _Bool. Pass the clang::Decl down to type lowering so we can recognize this. We still don't have a great solution for block types, because there's no decl to refer to, and Swift's user-level type system erases the distinction between void(^)(_Bool) and void(^)(BOOL). However, this is enough to let us start using C APIs that traffic in _Bool.
Swift SVN r23546
r21096 introduces an optimization barrier for failing initializers
that allows the pattern
let x: NSFoo? = NSFoo()
be used to detect whether NSFoo() returned nil, even though the type
system says it cannot. Extend this check to Objective-C methods and
properties, where the non-optional annotation may be incorrect
<rdar://problem/17984530>.
Swift SVN r21176
If a source file contains the main class for its module, then implicitly emit a top_level_code that invokes UIApplicationMain with the name of the marked class.
Swift SVN r18088
We now allow bridging so long as both K and V can be bridged to
Objective-C, as determined by _BridgedToObjectiveC conformance. Note
that Dictionary's implementation still needs to handle this, which is
tracked separately.
Swift SVN r17859
Eliminate the duplicate half-broken bridging logic in emitClassConstructorAllocator by referencing foreign initializers through their foreign-to-native thunks, which SILGen knows how to emit already. Do the same thing for factory initializers by suppressing their normal allocating initializer codegen and just referencing the usual foreign-to-native thunk for them. This fixes <rdar://problem/16853205> because we get the ownership thunking right now.
Swift SVN r17840
Specifically, introduce an ObjectiveC model written in Objective-C, and put the relevant, de-duplicated bits (such as NSObject) there. Use -I %S/Inputs -enable-source-import wherever we need to use this bridging SDK.
Swift SVN r17836
This keeps us from prematurely releasing values before they're needed by the underlying initializer, which caused a crash if you tried to pass a Swift array into NSArray(objects:count:) via pointer bridging. <rdar://problem/16738050>
Swift SVN r17812
We can enter here without an importing scope if we become more lazy, as can happen when <rdar://problem/16807886> is fixed. Add a regression test that fails when that patch is attached (but not yet on ToT).
Swift SVN r17513
NSCopying protocol and diagnosing it nicely, instead of just barfing in the
synthesized function.
The implementation of getNSCopyingProtocol is not right here (it is doing an
unqualified lookup for the protocol). I could not find another way to get
the NSCopying protocol. Suggestions appreciated.
Swift SVN r16560
wire it up, do basic semantic analysis and code gen a simple case of it. There is
more type checking work to come, so it isn't complete yet.
This is the first step to:
<rdar://problem/15864836> Need a @NSCopying attribute for Cocoa types that aren't manually bridged
Swift SVN r16345
Allows AnyObject[] to occur in @objc methods/properties/etc., then
bridges between the two in SILGen based on the new array
implementation. <rdar://problem/16535097>.
Note that this commit does not change the Clang module importer to
import NSArray* as AnyObject[] (yet).
Swift SVN r16004
and check for CF_ENUM/CF_OPTIONS, which NS_ENUM/NS_OPTIONS expand to.
This:
- Simplifies code
- Handles CF_ENUM/CF_OPTIONS enums
- Handles correctly an NS_ENUM/NS_OPTIONS enum that was itself expanded from another macro.
Swift SVN r11542