Files
clang-p2996/clang/test/CodeGenObjC/encode-test.m
John McCall 5fb5df9c83 Restructure how the driver communicates information about the
target Objective-C runtime down to the frontend:  break this
down into a single target runtime kind and version, and compute
all the relevant information from that.  This makes it
relatively painless to add support for new runtimes to the
compiler.  Make the new -cc1 flag, -fobjc-runtime=blah-x.y.z,
available at the driver level as a better and more general
alternative to -fgnu-runtime and -fnext-runtime.  This new
concept of an Objective-C runtime also encompasses what we
were previously separating out as the "Objective-C ABI", so
fragile vs. non-fragile runtimes are now really modelled as
different kinds of runtime, paving the way for better overall
differentiation.

As a sort of special case, continue to accept the -cc1 flag
-fobjc-runtime-has-weak, as a sop to PLCompatibilityWeak.

I won't go so far as to say "no functionality change", even
ignoring the new driver flag, but subtle changes in driver
semantics are almost certainly not intended.

llvm-svn: 158793
2012-06-20 06:18:46 +00:00

168 lines
3.0 KiB
Objective-C

// RUN: %clang_cc1 -triple i686-apple-darwin9 -fobjc-runtime=macosx-fragile-10.5 -emit-llvm -o %t %s
// RUN: FileCheck < %t %s
//
// CHECK: @"\01L_OBJC_METH_VAR_TYPE_34" = internal global [16 x i8] c"v12@0:4[3[4@]]8\00"
@class Int1;
struct Innermost {
unsigned char a, b;
};
@interface Int1 {
signed char a, b;
struct Innermost *innermost;
}
@end
@implementation Int1
@end
@interface Base
{
struct objc_class *isa;
int full;
int full2: 32;
int _refs: 8;
int field2: 3;
unsigned f3: 8;
short cc;
unsigned g: 16;
int r2: 8;
int r3: 8;
int r4: 2;
int r5: 8;
char c;
}
@end
@interface Derived: Base
{
char d;
int _field3: 6;
}
@end
@implementation Base
@end
@implementation Derived
@end
@interface B1
{
struct objc_class *isa;
Int1 *sBase;
char c;
}
@end
@implementation B1
@end
@interface Test
{
int ivar;
__attribute__((objc_gc(weak))) SEL selector;
}
-(void) test3: (Test* [3] [4])b ;
- (SEL**) meth : (SEL) arg : (SEL*****) arg1 : (SEL*)arg2 : (SEL**) arg3;
@end
@implementation Test
-(void) test3: (Test* [3] [4])b {}
- (SEL**) meth : (SEL) arg : (SEL*****) arg1 : (SEL*)arg2 : (SEL**) arg3 {}
@end
struct S { int iS; };
@interface Object
{
Class isa;
}
@end
typedef Object MyObj;
int main()
{
const char *en = @encode(Derived);
const char *eb = @encode(B1);
const char *es = @encode(const struct S *);
const char *ec = @encode(const struct S);
const char *ee = @encode(MyObj *const);
}
// CHECK: @g0 = constant [15 x i8] c"{Innermost=CC}\00"
const char g0[] = @encode(struct Innermost);
// CHECK: @g1 = constant [38 x i8] c"{Derived=#ib32b8b3b8sb16b8b8b2b8ccb6}\00"
const char g1[] = @encode(Derived);
// CHECK: @g2 = constant [9 x i8] c"{B1=#@c}\00"
const char g2[] = @encode(B1);
// CHECK: @g3 = constant [8 x i8] c"r^{S=i}\00"
const char g3[] = @encode(const struct S *);
// CHECK: @g4 = constant [6 x i8] c"{S=i}\00"
const char g4[] = @encode(const struct S);
// CHECK: @g5 = constant [12 x i8] c"^{Object=#}\00"
const char g5[] = @encode(MyObj * const);
////
enum Enum1X { one, two, three, four };
@interface Base1X {
unsigned a: 2;
int b: 3;
enum Enum1X c: 4;
unsigned d: 5;
}
@end
@interface Derived1X: Base1X {
signed e: 5;
int f: 4;
enum Enum1X g: 3;
}
@end
@implementation Base1X @end
@implementation Derived1X @end
// CHECK: @g6 = constant [18 x i8] c"{Base1X=b2b3b4b5}\00"
const char g6[] = @encode(Base1X);
// CHECK: @g7 = constant [27 x i8] c"{Derived1X=b2b3b4b5b5b4b3}\00"
const char g7[] = @encode(Derived1X);
// CHECK: @g8 = constant [7 x i8] c"{s8=D}\00"
struct s8 {
long double x;
};
const char g8[] = @encode(struct s8);
// CHECK: @g9 = constant [11 x i8] c"{S9=i[0i]}\00"
struct S9 {
int x;
int flex[];
};
const char g9[] = @encode(struct S9);
struct f
{
int i;
struct{} g[4];
int tt;
};
// CHECK: @g10 = constant [14 x i8] c"{f=i[0{?=}]i}\00"
const char g10[] = @encode(struct f);
// rdar://9622422
// CHECK: @g11 = constant [2 x i8] c"v\00"
const char g11[] = @encode(void);