1 // RUN: %clang_cc1 %s -triple i686-pc-win32 -fsyntax-only -Wmicrosoft -Wc++11-extensions -Wno-long-long -verify -fms-extensions -fexceptions -fcxx-exceptions -DTEST1
2 // RUN: %clang_cc1 -std=c++98 %s -triple i686-pc-win32 -fsyntax-only -Wmicrosoft -Wc++11-extensions -Wno-long-long -verify -fms-extensions -fexceptions -fcxx-exceptions -DTEST1
3 // RUN: %clang_cc1 -std=c++11 %s -triple i686-pc-win32 -fsyntax-only -Wmicrosoft -Wc++11-extensions -Wno-long-long -verify -fms-extensions -fexceptions -fcxx-exceptions -DTEST1
4 // RUN: %clang_cc1 %s -triple i686-pc-win32 -fsyntax-only -Wmicrosoft -Wc++11-extensions -Wno-long-long -verify -fexceptions -fcxx-exceptions -DTEST2
5 // RUN: %clang_cc1 %s -triple i686-pc-win32 -fsyntax-only -std=c++11 -fms-compatibility -verify -DTEST3
6 
7 #if TEST1
8 
9 // MSVC allows type definition in anonymous union and struct
10 struct A
11 {
12   union
13   {
14     int a;
15     struct B  // expected-warning {{types declared in an anonymous union are a Microsoft extension}}
16     {
17       int c;
18     } d;
19 
20     union C   // expected-warning {{types declared in an anonymous union are a Microsoft extension}}
21     {
22       int e;
23       int ee;
24     } f;
25 
26     typedef int D;  // expected-warning {{types declared in an anonymous union are a Microsoft extension}}
27     struct F;  // expected-warning {{types declared in an anonymous union are a Microsoft extension}}
28   };
29 
30   struct
31   {
32     int a2;
33 
34     struct B2  // expected-warning {{types declared in an anonymous struct are a Microsoft extension}}
35     {
36       int c2;
37     } d2;
38 
39 	union C2  // expected-warning {{types declared in an anonymous struct are a Microsoft extension}}
40     {
41       int e2;
42       int ee2;
43     } f2;
44 
45     typedef int D2;  // expected-warning {{types declared in an anonymous struct are a Microsoft extension}}
46     struct F2;  // expected-warning {{types declared in an anonymous struct are a Microsoft extension}}
47   };
48 };
49 
50 // __stdcall handling
51 struct M {
52     int __stdcall addP();
53     float __stdcall subtractP();
54 };
55 
56 // __unaligned handling
57 typedef char __unaligned *aligned_type;
58 typedef struct UnalignedTag { int f; } __unaligned *aligned_type2;
59 typedef char __unaligned aligned_type3;
60 
61 struct aligned_type4 {
62   int i;
63 };
64 
65 __unaligned int aligned_type4::*p1_aligned_type4 = &aligned_type4::i;
66 int aligned_type4::* __unaligned p2_aligned_type4 = &aligned_type4::i;
67 __unaligned int aligned_type4::* __unaligned p3_aligned_type4 = &aligned_type4::i;
68 void (aligned_type4::*__unaligned p4_aligned_type4)();
69 
70 // Check that __unaligned qualifier can be used for overloading
foo_unaligned(int * arg)71 void foo_unaligned(int *arg) {}
foo_unaligned(__unaligned int * arg)72 void foo_unaligned(__unaligned int *arg) {}
foo_unaligned(int arg)73 void foo_unaligned(int arg) {} // expected-note {{previous definition is here}}
foo_unaligned(__unaligned int arg)74 void foo_unaligned(__unaligned int arg) {} // expected-error {{redefinition of 'foo_unaligned'}}
75 class A_unaligned {};
76 class B_unaligned : public A_unaligned {};
foo_unaligned(__unaligned A_unaligned * arg)77 int foo_unaligned(__unaligned A_unaligned *arg) { return 0; }
foo_unaligned(B_unaligned * arg)78 void *foo_unaligned(B_unaligned *arg) { return 0; }
79 
test_unaligned()80 void test_unaligned() {
81   int *p1 = 0;
82   foo_unaligned(p1);
83 
84   __unaligned int *p2 = 0;
85   foo_unaligned(p2);
86 
87   __unaligned B_unaligned *p3 = 0;
88   int p4 = foo_unaligned(p3); // expected-error {{cannot initialize a variable of type 'int' with an rvalue of type 'void *'}}
89   // expected-warning@-1 {{implicit cast from type '__unaligned B_unaligned *' to type 'B_unaligned *' drops __unaligned qualifier}}
90 
91   B_unaligned *p5 = p3;
92   // expected-warning@-1 {{implicit cast from type '__unaligned B_unaligned *' to type 'B_unaligned *' drops __unaligned qualifier}}
93 
94   __unaligned B_unaligned *p6 = p3;
95 
96   p1_aligned_type4 = p2_aligned_type4;
97   p2_aligned_type4 = p1_aligned_type4;
98   // expected-warning@-1 {{implicit cast from type '__unaligned int aligned_type4::*' to type 'int aligned_type4::*' drops __unaligned qualifier}}
99   p3_aligned_type4 = p1_aligned_type4;
100 
101   __unaligned int a[10];
102   int *b = a;
103   // expected-warning@-1 {{implicit cast from type '__unaligned int[10]' to type 'int *' drops __unaligned qualifier}}
104 }
105 
106 // Test from PR27367
107 // We should accept assignment of an __unaligned pointer to a non-__unaligned
108 // pointer to void
109 typedef struct _ITEMIDLIST { int i; } ITEMIDLIST;
110 typedef ITEMIDLIST __unaligned *LPITEMIDLIST;
111 extern "C" __declspec(dllimport) void __stdcall CoTaskMemFree(void* pv);
FreeIDListArray(LPITEMIDLIST * ppidls)112 __inline void FreeIDListArray(LPITEMIDLIST *ppidls) {
113   CoTaskMemFree(*ppidls);
114   __unaligned int *x = 0;
115   void *y = x;
116 }
117 
118 // Test from PR27666
119 // We should accept type conversion of __unaligned to non-__unaligned references
120 typedef struct in_addr {
121 public:
in_addrin_addr122   in_addr(in_addr &a) {} // expected-note {{candidate constructor not viable: expects an lvalue for 1st argument}}
in_addrin_addr123   in_addr(in_addr *a) {} // expected-note {{candidate constructor not viable: no known conversion from 'IN_ADDR' (aka 'in_addr') to 'in_addr *' for 1st argument}}
124 } IN_ADDR;
125 
f(IN_ADDR __unaligned * a)126 void f(IN_ADDR __unaligned *a) {
127   IN_ADDR local_addr = *a;
128   // FIXME: MSVC accepts the following; not sure why clang tries to
129   // copy-construct an in_addr.
130   IN_ADDR local_addr2 = a; // expected-error {{no viable constructor copying variable of type 'IN_ADDR' (aka 'in_addr')}}
131   // expected-warning@-1 {{implicit cast from type '__unaligned IN_ADDR *' (aka '__unaligned in_addr *') to type 'in_addr *' drops __unaligned qualifier}}
132   IN_ADDR local_addr3(a);
133   // expected-warning@-1 {{implicit cast from type '__unaligned IN_ADDR *' (aka '__unaligned in_addr *') to type 'in_addr *' drops __unaligned qualifier}}
134 }
135 
h1(T (__stdcall M::* const)())136 template<typename T> void h1(T (__stdcall M::* const )()) { }
137 
m1()138 void m1() {
139   h1<int>(&M::addP);
140   h1(&M::subtractP);
141 }
142 
143 
144 namespace signed_hex_i64 {
145 void f(long long); // expected-note {{candidate function}}
146 void f(int); // expected-note {{candidate function}}
g()147 void g() {
148   // This used to be controlled by -fms-extensions, but it is now under
149   // -fms-compatibility.
150   f(0xffffffffffffffffLL); // expected-error {{call to 'f' is ambiguous}}
151   f(0xffffffffffffffffi64);
152 }
153 }
154 
155 // Enumeration types with a fixed underlying type.
156 const int seventeen = 17;
157 typedef int Int;
158 
159 struct X0 {
160   enum E1 : Int { SomeOtherValue } field;
161 #if __cplusplus <= 199711L
162   // expected-warning@-2 {{enumeration types with a fixed underlying type are a C++11 extension}}
163 #endif
164 
165   enum E1 : seventeen;
166 #if __cplusplus >= 201103L
167   // expected-error@-2 {{bit-field}}
168 #endif
169 };
170 
171 #if __cplusplus <= 199711L
172 // expected-warning@+2 {{enumeration types with a fixed underlying type are a C++11 extension}}
173 #endif
174 enum : long long {
175   SomeValue = 0x100000000
176 };
177 
178 
179 class AAA {
f(void)180 __declspec(dllimport) void f(void) { }
181 void f2(void); // expected-note{{previous declaration is here}}
182 };
183 
f2(void)184 __declspec(dllimport) void AAA::f2(void) { // expected-error{{dllimport cannot be applied to non-inline function definition}}
185                                            // expected-error@-1{{redeclaration of 'AAA::f2' cannot add 'dllimport' attribute}}
186 
187 }
188 
189 
190 
191 template <class T>
192 class BB {
193 public:
194    void f(int g = 10 ); // expected-note {{previous definition is here}}
195 };
196 
197 template <class T>
f(int g=0)198 void BB<T>::f(int g = 0) { } // expected-warning {{redefinition of default argument}}
199 
200 
201 
202 extern void static_func();
203 void static_func(); // expected-note {{previous declaration is here}}
204 
205 
static_func()206 static void static_func() // expected-warning {{redeclaring non-static 'static_func' as static is a Microsoft extension}}
207 {
208 
209 }
210 
211 extern const int static_var; // expected-note {{previous declaration is here}}
212 static const int static_var = 3; // expected-warning {{redeclaring non-static 'static_var' as static is a Microsoft extension}}
213 
pointer_to_integral_type_conv(char * ptr)214 void pointer_to_integral_type_conv(char* ptr) {
215   char ch = (char)ptr;   // expected-warning {{cast to smaller integer type 'char' from 'char *'}}
216   short sh = (short)ptr; // expected-warning {{cast to smaller integer type 'short' from 'char *'}}
217   ch = (char)ptr;        // expected-warning {{cast to smaller integer type 'char' from 'char *'}}
218   sh = (short)ptr;       // expected-warning {{cast to smaller integer type 'short' from 'char *'}}
219 
220   // These are valid C++.
221   bool b = (bool)ptr;
222   b = static_cast<bool>(ptr);
223 
224   // This is bad.
225   b = reinterpret_cast<bool>(ptr); // expected-error {{cast from pointer to smaller type 'bool' loses information}}
226 }
227 
void_pointer_to_integral_type_conv(void * ptr)228 void void_pointer_to_integral_type_conv(void *ptr) {
229   char ch = (char)ptr;   // expected-warning {{cast to smaller integer type 'char' from 'void *'}}
230   short sh = (short)ptr; // expected-warning {{cast to smaller integer type 'short' from 'void *'}}
231   ch = (char)ptr;        // expected-warning {{cast to smaller integer type 'char' from 'void *'}}
232   sh = (short)ptr;       // expected-warning {{cast to smaller integer type 'short' from 'void *'}}
233 
234   // These are valid C++.
235   bool b = (bool)ptr;
236   b = static_cast<bool>(ptr);
237 
238   // This is bad.
239   b = reinterpret_cast<bool>(ptr); // expected-error {{cast from pointer to smaller type 'bool' loses information}}
240 }
241 
242 struct PR11150 {
243   class X {
244     virtual void f() = 0;
245   };
246 
247   int array[__is_abstract(X)? 1 : -1];
248 };
249 
f()250 void f() { int __except = 0; }
251 
252 void ::f(); // expected-warning{{extra qualification on member 'f'}}
253 
254 class C {
255   C::C(); // expected-warning{{extra qualification on member 'C'}}
256 };
257 
258 struct StructWithProperty {
259   __declspec(property(get=GetV)) int V1;
260   __declspec(property(put=SetV)) int V2;
261   __declspec(property(get=GetV, put=SetV_NotExist)) int V3;
262   __declspec(property(get=GetV_NotExist, put=SetV)) int V4;
263   __declspec(property(get=GetV, put=SetV)) int V5;
264 
GetVStructWithProperty265   int GetV() { return 123; }
SetVStructWithProperty266   void SetV(int i) {}
267 };
TestProperty()268 void TestProperty() {
269   StructWithProperty sp;
270   int i = sp.V2; // expected-error{{no getter defined for property 'V2'}}
271   sp.V1 = 12; // expected-error{{no setter defined for property 'V1'}}
272   int j = sp.V4; // expected-error{{no member named 'GetV_NotExist' in 'StructWithProperty'}} expected-error{{cannot find suitable getter for property 'V4'}}
273   sp.V3 = 14; // expected-error{{no member named 'SetV_NotExist' in 'StructWithProperty'}} expected-error{{cannot find suitable setter for property 'V3'}}
274   int k = sp.V5;
275   sp.V5 = k++;
276 }
277 
278 /* 4 tests for PseudoObject, begin */
279 struct SP1
280 {
operator ()SP1281   bool operator()() { return true; }
282 };
283 struct SP2
284 {
285   __declspec(property(get=GetV)) SP1 V;
GetVSP2286   SP1 GetV() { return SP1(); }
287 };
TestSP2()288 void TestSP2() {
289   SP2 sp2;
290   bool b = sp2.V();
291 }
292 
293 struct SP3 {
294   template <class T>
fSP3295   void f(T t) {}
296 };
297 template <class T>
298 struct SP4
299 {
300   __declspec(property(get=GetV)) int V;
GetVSP4301   int GetV() { return 123; }
fSP4302   void f() { SP3 s2; s2.f(V); }
303 };
TestSP4()304 void TestSP4() {
305   SP4<int> s;
306   s.f();
307 }
308 
309 template <class T>
310 struct SP5
311 {
312   __declspec(property(get=GetV)) T V;
GetVSP5313   int GetV() { return 123; }
fSP5314   void f() { int *p = new int[V]; }
315 };
316 
317 template <class T>
318 struct SP6
319 {
320 public:
321   __declspec(property(get=GetV)) T V;
GetVSP6322   T GetV() { return 123; }
fSP6323   void f() { int t = V; }
324 };
TestSP6()325 void TestSP6() {
326   SP6<int> c;
327   c.f();
328 }
329 /* 4 tests for PseudoObject, end */
330 
331 // Property access: explicit, implicit, with Qualifier
332 struct SP7 {
333   __declspec(property(get=GetV, put=SetV)) int V;
GetVSP7334   int GetV() { return 123; }
SetVSP7335   void SetV(int v) {}
336 
ImplicitAccessSP7337   void ImplicitAccess() { int i = V; V = i; }
ExplicitAccessSP7338   void ExplicitAccess() { int i = this->V; this->V = i; }
339 };
340 struct SP8: public SP7 {
AccessWithQualifierSP8341   void AccessWithQualifier() { int i = SP7::V; SP7::V = i; }
342 };
343 
344 // Property usage
345 template <class T>
346 struct SP9 {
347   __declspec(property(get=GetV, put=SetV)) T V;
GetVSP9348   T GetV() { return 0; }
SetVSP9349   void SetV(T v) {}
fSP9350   bool f() { V = this->V; return V < this->V; }
gSP9351   void g() { V++; }
hSP9352   void h() { V*=2; }
353 };
354 struct SP10 {
SP10SP10355   SP10(int v) {}
operator <SP10356   bool operator<(const SP10& v) { return true; }
operator *SP10357   SP10 operator*(int v) { return *this; }
operator +SP10358   SP10 operator+(int v) { return *this; }
operator =SP10359   SP10& operator=(const SP10& v) { return *this; }
360 };
TestSP9()361 void TestSP9() {
362   SP9<int> c;
363   int i = c.V; // Decl initializer
364   i = c.V; // Binary op operand
365   c.SetV(c.V); // CallExpr arg
366   int *p = new int[c.V + 1]; // Array size
367   p[c.V] = 1; // Array index
368 
369   c.V = 123; // Setter
370 
371   c.V++; // Unary op operand
372   c.V *= 2; // Unary op operand
373 
374   SP9<int*> c2;
375   c2.V[0] = 123; // Array
376 
377   SP9<SP10> c3;
378   c3.f(); // Overloaded binary op operand
379   c3.g(); // Overloaded incdec op operand
380   c3.h(); // Overloaded unary op operand
381 }
382 
383 union u {
384   int *i1;
385   int &i2;  // expected-warning {{union member 'i2' has reference type 'int &', which is a Microsoft extension}}
386 };
387 
388 // Property getter using reference.
389 struct SP11 {
390   __declspec(property(get=GetV)) int V;
391   int _v;
GetVSP11392   int& GetV() { return _v; }
393   void UseV();
TakePtrSP11394   void TakePtr(int *) {}
TakeRefSP11395   void TakeRef(int &) {}
TakeValSP11396   void TakeVal(int) {}
397 };
398 
UseV()399 void SP11::UseV() {
400   TakePtr(&V);
401   TakeRef(V);
402   TakeVal(V);
403 }
404 
405 struct StructWithUnnamedMember {
406   __declspec(property(get=GetV)) int : 10; // expected-error {{anonymous property is not supported}}
407 };
408 
409 struct MSPropertyClass {
getMSPropertyClass410   int get() { return 42; }
411   int __declspec(property(get = get)) n;
412 };
413 
f(MSPropertyClass & x)414 int *f(MSPropertyClass &x) {
415   return &x.n; // expected-error {{address of property expression requested}}
416 }
g()417 int MSPropertyClass::*g() {
418   return &MSPropertyClass::n; // expected-error {{address of property expression requested}}
419 }
420 
421 namespace rdar14250378 {
422   class Bar {};
423 
424   namespace NyNamespace {
425     class Foo {
426     public:
427       Bar* EnsureBar();
428     };
429 
430     class Baz : public Foo {
431     public:
432       friend class Bar;
433     };
434 
EnsureBar()435     Bar* Foo::EnsureBar() {
436       return 0;
437     }
438   }
439 }
440 
441 // expected-error@+1 {{'sealed' keyword not permitted with interface types}}
442 __interface InterfaceWithSealed sealed {
443 };
444 
445 struct SomeBase {
446   virtual void OverrideMe();
447 
448   // expected-note@+2 {{overridden virtual function is here}}
449   // expected-warning@+1 {{'sealed' keyword is a Microsoft extension}}
450   virtual void SealedFunction() sealed; // expected-note {{overridden virtual function is here}}
451 };
452 
453 // expected-note@+2 {{'SealedType' declared here}}
454 // expected-warning@+1 {{'sealed' keyword is a Microsoft extension}}
455 struct SealedType sealed : SomeBase {
456   // expected-error@+2 {{declaration of 'SealedFunction' overrides a 'sealed' function}}
457   // FIXME. warning can be suppressed if we're also issuing error for overriding a 'final' function.
458   virtual void SealedFunction(); // expected-warning {{'SealedFunction' overrides a member function but is not marked 'override'}}
459 
460 #if __cplusplus <= 199711L
461   // expected-warning@+2 {{'override' keyword is a C++11 extension}}
462 #endif
463   virtual void OverrideMe() override;
464 };
465 
466 // expected-error@+1 {{base 'SealedType' is marked 'sealed'}}
467 struct InheritFromSealed : SealedType {};
468 
469 class SealedDestructor { // expected-note {{mark 'SealedDestructor' as 'sealed' to silence this warning}}
470     // expected-warning@+1 {{'sealed' keyword is a Microsoft extension}}
471     virtual ~SealedDestructor() sealed; // expected-warning {{class with destructor marked 'sealed' cannot be inherited from}}
472 };
473 
474 // expected-warning@+1 {{'abstract' keyword is a Microsoft extension}}
475 class AbstractClass abstract {
476   int i;
477 };
478 
479 // expected-error@+1 {{variable type 'AbstractClass' is an abstract class}}
480 AbstractClass abstractInstance;
481 
482 // expected-warning@+4 {{abstract class is marked 'sealed'}}
483 // expected-note@+3 {{'AbstractAndSealedClass' declared here}}
484 // expected-warning@+2 {{'abstract' keyword is a Microsoft extension}}
485 // expected-warning@+1 {{'sealed' keyword is a Microsoft extension}}
486 class AbstractAndSealedClass abstract sealed {}; // Does no really make sense, but allowed
487 
488 // expected-error@+1 {{variable type 'AbstractAndSealedClass' is an abstract class}}
489 AbstractAndSealedClass abstractAndSealedInstance;
490 // expected-error@+1 {{base 'AbstractAndSealedClass' is marked 'sealed'}}
491 class InheritFromAbstractAndSealed : AbstractAndSealedClass {};
492 
493 #if __cplusplus <= 199711L
494 // expected-warning@+4 {{'final' keyword is a C++11 extension}}
495 // expected-warning@+3 {{'final' keyword is a C++11 extension}}
496 #endif
497 // expected-error@+1 {{class already marked 'final'}}
498 class TooManyVirtSpecifiers1 final final {};
499 #if __cplusplus <= 199711L
500 // expected-warning@+4 {{'final' keyword is a C++11 extension}}
501 #endif
502 // expected-warning@+2 {{'sealed' keyword is a Microsoft extension}}
503 // expected-error@+1 {{class already marked 'sealed'}}
504 class TooManyVirtSpecifiers2 final sealed {};
505 #if __cplusplus <= 199711L
506 // expected-warning@+6 {{'final' keyword is a C++11 extension}}
507 // expected-warning@+5 {{'final' keyword is a C++11 extension}}
508 #endif
509 // expected-warning@+3 {{abstract class is marked 'final'}}
510 // expected-warning@+2 {{'abstract' keyword is a Microsoft extension}}
511 // expected-error@+1 {{class already marked 'final'}}
512 class TooManyVirtSpecifiers3 final abstract final {};
513 #if __cplusplus <= 199711L
514 // expected-warning@+6 {{'final' keyword is a C++11 extension}}
515 #endif
516 // expected-warning@+4 {{abstract class is marked 'final'}}
517 // expected-warning@+3 {{'abstract' keyword is a Microsoft extension}}
518 // expected-warning@+2 {{'abstract' keyword is a Microsoft extension}}
519 // expected-error@+1 {{class already marked 'abstract'}}
520 class TooManyVirtSpecifiers4 abstract final abstract {};
521 
522 class Base {
523   virtual void i();
524 };
525 class AbstractFunctionInClass : public Base {
526   // expected-note@+2 {{unimplemented pure virtual method 'f' in 'AbstractFunctionInClass'}}
527   // expected-warning@+1 {{'abstract' keyword is a Microsoft extension}}
528   virtual void f() abstract;
529   // expected-warning@+1 {{'abstract' keyword is a Microsoft extension}}
530   void g() abstract; // expected-error {{'g' is not virtual and cannot be declared pure}}
531   // expected-note@+2 {{unimplemented pure virtual method 'h' in 'AbstractFunctionInClass'}}
532   // expected-warning@+1 {{'abstract' keyword is a Microsoft extension}}
533   virtual void h() abstract = 0; // expected-error {{class member already marked 'abstract'}}
534 #if __cplusplus <= 199711L
535   // expected-warning@+4 {{'override' keyword is a C++11 extension}}
536 #endif
537   // expected-note@+2 {{unimplemented pure virtual method 'i' in 'AbstractFunctionInClass'}}
538   // expected-warning@+1 {{'abstract' keyword is a Microsoft extension}}
539   virtual void i() abstract override;
540 };
541 
542 // expected-error@+1 {{variable type 'AbstractFunctionInClass' is an abstract class}}
543 AbstractFunctionInClass abstractFunctionInClassInstance;
544 
AfterClassBody()545 void AfterClassBody() {
546   // expected-warning@+1 {{attribute 'deprecated' is ignored, place it after "struct" to apply attribute to type declaration}}
547   struct D {} __declspec(deprecated);
548 
549   struct __declspec(align(4)) S {} __declspec(align(8)) s1;
550   S s2;
551   _Static_assert(__alignof(S) == 4, "");
552   _Static_assert(__alignof(s1) == 8, "");
553   _Static_assert(__alignof(s2) == 4, "");
554 }
555 
556 namespace PR24246 {
557 template <typename TX> struct A {
558   template <bool> struct largest_type_select;
559   template <> struct largest_type_select<false> {
560     blah x;  // expected-error {{unknown type name 'blah'}}
561   };
562 };
563 }
564 
565 class PR34109_class {
PR34109_class()566   PR34109_class() {}
~PR34109_class()567   virtual ~PR34109_class() {}
568 };
569 
570 void operator delete(void *) throw();
571 // expected-note@-1 {{previous declaration is here}}
572 __declspec(dllexport) void operator delete(void *) throw();
573 // expected-error@-1  {{redeclaration of 'operator delete' cannot add 'dllexport' attribute}}
574 
PR34109(int * a)575 void PR34109(int* a) {
576   delete a;
577 }
578 
579 namespace PR42089 {
580   struct S {
581     __attribute__((nothrow)) void Foo(); // expected-note {{previous declaration is here}}
582     __attribute__((nothrow)) void Bar();
583   };
Foo()584   void S::Foo(){} // expected-warning {{is missing exception specification}}
Bar()585   __attribute__((nothrow)) void S::Bar(){}
586 }
587 
588 #elif TEST2
589 
590 // Check that __unaligned is not recognized if MS extensions are not enabled
591 typedef char __unaligned *aligned_type; // expected-error {{expected ';' after top level declarator}}
592 
593 #elif TEST3
594 
595 namespace PR32750 {
596 template<typename T> struct A {};
597 template<typename T> struct B : A<A<T>> { A<T>::C::D d; }; // expected-error {{missing 'typename' prior to dependent type name 'A<T>::C::D'}}
598 }
599 
600 #else
601 
602 #error Unknown test mode
603 
604 #endif
605 
606