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 6 #if TEST1 7 8 // Microsoft doesn't validate exception specification. 9 namespace microsoft_exception_spec { 10 11 void foo(); // expected-note {{previous declaration}} 12 void foo() throw(); // expected-warning {{exception specification in declaration does not match previous declaration}} 13 14 void r6() throw(...); // expected-note {{previous declaration}} 15 void r6() throw(int); // expected-warning {{exception specification in declaration does not match previous declaration}} 16 17 struct Base { 18 virtual void f2(); 19 virtual void f3() throw(...); 20 }; 21 22 struct Derived : Base { 23 virtual void f2() throw(...); 24 virtual void f3(); 25 }; 26 27 class A { 28 virtual ~A() throw(); 29 #if __cplusplus <= 199711L 30 // expected-note@-2 {{overridden virtual function is here}} 31 #endif 32 }; 33 34 class B : public A { 35 virtual ~B(); 36 #if __cplusplus <= 199711L 37 // expected-warning@-2 {{exception specification of overriding function is more lax than base version}} 38 #endif 39 }; 40 41 } 42 43 // MSVC allows type definition in anonymous union and struct 44 struct A 45 { 46 union 47 { 48 int a; 49 struct B // expected-warning {{types declared in an anonymous union are a Microsoft extension}} 50 { 51 int c; 52 } d; 53 54 union C // expected-warning {{types declared in an anonymous union are a Microsoft extension}} 55 { 56 int e; 57 int ee; 58 } f; 59 60 typedef int D; // expected-warning {{types declared in an anonymous union are a Microsoft extension}} 61 struct F; // expected-warning {{types declared in an anonymous union are a Microsoft extension}} 62 }; 63 64 struct 65 { 66 int a2; 67 68 struct B2 // expected-warning {{types declared in an anonymous struct are a Microsoft extension}} 69 { 70 int c2; 71 } d2; 72 73 union C2 // expected-warning {{types declared in an anonymous struct are a Microsoft extension}} 74 { 75 int e2; 76 int ee2; 77 } f2; 78 79 typedef int D2; // expected-warning {{types declared in an anonymous struct are a Microsoft extension}} 80 struct F2; // expected-warning {{types declared in an anonymous struct are a Microsoft extension}} 81 }; 82 }; 83 84 // __stdcall handling 85 struct M { 86 int __stdcall addP(); 87 float __stdcall subtractP(); 88 }; 89 90 // __unaligned handling 91 typedef char __unaligned *aligned_type; 92 typedef struct UnalignedTag { int f; } __unaligned *aligned_type2; 93 typedef char __unaligned aligned_type3; 94 95 struct aligned_type4 { 96 int i; 97 }; 98 99 __unaligned int aligned_type4::*p1_aligned_type4 = &aligned_type4::i; 100 int aligned_type4::* __unaligned p2_aligned_type4 = &aligned_type4::i; 101 __unaligned int aligned_type4::* __unaligned p3_aligned_type4 = &aligned_type4::i; 102 void (aligned_type4::*__unaligned p4_aligned_type4)(); 103 104 // Check that __unaligned qualifier can be used for overloading 105 void foo_unaligned(int *arg) {} 106 void foo_unaligned(__unaligned int *arg) {} 107 void foo_unaligned(int arg) {} // expected-note {{previous definition is here}} 108 void foo_unaligned(__unaligned int arg) {} // expected-error {{redefinition of 'foo_unaligned'}} 109 class A_unaligned {}; 110 class B_unaligned : public A_unaligned {}; 111 int foo_unaligned(__unaligned A_unaligned *arg) { return 0; } 112 void *foo_unaligned(B_unaligned *arg) { return 0; } 113 114 void test_unaligned() { 115 int *p1 = 0; 116 foo_unaligned(p1); 117 118 __unaligned int *p2 = 0; 119 foo_unaligned(p2); 120 121 __unaligned B_unaligned *p3 = 0; 122 int p4 = foo_unaligned(p3); 123 124 B_unaligned *p5 = p3; // expected-error {{cannot initialize a variable of type 'B_unaligned *' with an lvalue of type '__unaligned B_unaligned *'}} 125 126 __unaligned B_unaligned *p6 = p3; 127 128 p1_aligned_type4 = p2_aligned_type4; 129 p2_aligned_type4 = p1_aligned_type4; // expected-error {{assigning to 'int aligned_type4::*' from incompatible type '__unaligned int aligned_type4::*'}} 130 p3_aligned_type4 = p1_aligned_type4; 131 132 __unaligned int a[10]; 133 int *b = a; // expected-error {{cannot initialize a variable of type 'int *' with an lvalue of type '__unaligned int [10]'}} 134 } 135 136 // Test from PR27367 137 // We should accept assignment of an __unaligned pointer to a non-__unaligned 138 // pointer to void 139 typedef struct _ITEMIDLIST { int i; } ITEMIDLIST; 140 typedef ITEMIDLIST __unaligned *LPITEMIDLIST; 141 extern "C" __declspec(dllimport) void __stdcall CoTaskMemFree(void* pv); 142 __inline void FreeIDListArray(LPITEMIDLIST *ppidls) { 143 CoTaskMemFree(*ppidls); 144 __unaligned int *x = 0; 145 void *y = x; 146 } 147 148 // Test from PR27666 149 // We should accept type conversion of __unaligned to non-__unaligned references 150 typedef struct in_addr { 151 public: 152 in_addr(in_addr &a) {} // expected-note {{candidate constructor not viable: no known conversion from '__unaligned IN_ADDR *' (aka '__unaligned in_addr *') to 'in_addr &' for 1st argument; dereference the argument with *}} 153 in_addr(in_addr *a) {} // expected-note {{candidate constructor not viable: 1st argument ('__unaligned IN_ADDR *' (aka '__unaligned in_addr *')) would lose __unaligned qualifier}} 154 } IN_ADDR; 155 156 void f(IN_ADDR __unaligned *a) { 157 IN_ADDR local_addr = *a; 158 IN_ADDR local_addr2 = a; // expected-error {{no viable conversion from '__unaligned IN_ADDR *' (aka '__unaligned in_addr *') to 'IN_ADDR' (aka 'in_addr')}} 159 } 160 161 template<typename T> void h1(T (__stdcall M::* const )()) { } 162 163 void m1() { 164 h1<int>(&M::addP); 165 h1(&M::subtractP); 166 } 167 168 169 namespace signed_hex_i64 { 170 void f(long long); // expected-note {{candidate function}} 171 void f(int); // expected-note {{candidate function}} 172 void g() { 173 // This used to be controlled by -fms-extensions, but it is now under 174 // -fms-compatibility. 175 f(0xffffffffffffffffLL); // expected-error {{call to 'f' is ambiguous}} 176 f(0xffffffffffffffffi64); 177 } 178 } 179 180 // Enumeration types with a fixed underlying type. 181 const int seventeen = 17; 182 typedef int Int; 183 184 struct X0 { 185 enum E1 : Int { SomeOtherValue } field; 186 #if __cplusplus <= 199711L 187 // expected-warning@-2 {{enumeration types with a fixed underlying type are a C++11 extension}} 188 #endif 189 190 enum E1 : seventeen; 191 }; 192 193 #if __cplusplus <= 199711L 194 // expected-warning@+2 {{enumeration types with a fixed underlying type are a C++11 extension}} 195 #endif 196 enum : long long { 197 SomeValue = 0x100000000 198 }; 199 200 201 class AAA { 202 __declspec(dllimport) void f(void) { } 203 void f2(void); // expected-note{{previous declaration is here}} 204 }; 205 206 __declspec(dllimport) void AAA::f2(void) { // expected-error{{dllimport cannot be applied to non-inline function definition}} 207 // expected-error@-1{{redeclaration of 'AAA::f2' cannot add 'dllimport' attribute}} 208 209 } 210 211 212 213 template <class T> 214 class BB { 215 public: 216 void f(int g = 10 ); // expected-note {{previous definition is here}} 217 }; 218 219 template <class T> 220 void BB<T>::f(int g = 0) { } // expected-warning {{redefinition of default argument}} 221 222 223 224 extern void static_func(); 225 void static_func(); // expected-note {{previous declaration is here}} 226 227 228 static void static_func() // expected-warning {{redeclaring non-static 'static_func' as static is a Microsoft extension}} 229 { 230 231 } 232 233 extern const int static_var; // expected-note {{previous declaration is here}} 234 static const int static_var = 3; // expected-warning {{redeclaring non-static 'static_var' as static is a Microsoft extension}} 235 236 void pointer_to_integral_type_conv(char* ptr) { 237 char ch = (char)ptr; 238 short sh = (short)ptr; 239 ch = (char)ptr; 240 sh = (short)ptr; 241 242 // These are valid C++. 243 bool b = (bool)ptr; 244 b = static_cast<bool>(ptr); 245 246 // This is bad. 247 b = reinterpret_cast<bool>(ptr); // expected-error {{cast from pointer to smaller type 'bool' loses information}} 248 } 249 250 struct PR11150 { 251 class X { 252 virtual void f() = 0; 253 }; 254 255 int array[__is_abstract(X)? 1 : -1]; 256 }; 257 258 void f() { int __except = 0; } 259 260 void ::f(); // expected-warning{{extra qualification on member 'f'}} 261 262 class C { 263 C::C(); // expected-warning{{extra qualification on member 'C'}} 264 }; 265 266 struct StructWithProperty { 267 __declspec(property(get=GetV)) int V1; 268 __declspec(property(put=SetV)) int V2; 269 __declspec(property(get=GetV, put=SetV_NotExist)) int V3; 270 __declspec(property(get=GetV_NotExist, put=SetV)) int V4; 271 __declspec(property(get=GetV, put=SetV)) int V5; 272 273 int GetV() { return 123; } 274 void SetV(int i) {} 275 }; 276 void TestProperty() { 277 StructWithProperty sp; 278 int i = sp.V2; // expected-error{{no getter defined for property 'V2'}} 279 sp.V1 = 12; // expected-error{{no setter defined for property 'V1'}} 280 int j = sp.V4; // expected-error{{no member named 'GetV_NotExist' in 'StructWithProperty'}} expected-error{{cannot find suitable getter for property 'V4'}} 281 sp.V3 = 14; // expected-error{{no member named 'SetV_NotExist' in 'StructWithProperty'}} expected-error{{cannot find suitable setter for property 'V3'}} 282 int k = sp.V5; 283 sp.V5 = k++; 284 } 285 286 /* 4 tests for PseudoObject, begin */ 287 struct SP1 288 { 289 bool operator()() { return true; } 290 }; 291 struct SP2 292 { 293 __declspec(property(get=GetV)) SP1 V; 294 SP1 GetV() { return SP1(); } 295 }; 296 void TestSP2() { 297 SP2 sp2; 298 bool b = sp2.V(); 299 } 300 301 struct SP3 { 302 template <class T> 303 void f(T t) {} 304 }; 305 template <class T> 306 struct SP4 307 { 308 __declspec(property(get=GetV)) int V; 309 int GetV() { return 123; } 310 void f() { SP3 s2; s2.f(V); } 311 }; 312 void TestSP4() { 313 SP4<int> s; 314 s.f(); 315 } 316 317 template <class T> 318 struct SP5 319 { 320 __declspec(property(get=GetV)) T V; 321 int GetV() { return 123; } 322 void f() { int *p = new int[V]; } 323 }; 324 325 template <class T> 326 struct SP6 327 { 328 public: 329 __declspec(property(get=GetV)) T V; 330 T GetV() { return 123; } 331 void f() { int t = V; } 332 }; 333 void TestSP6() { 334 SP6<int> c; 335 c.f(); 336 } 337 /* 4 tests for PseudoObject, end */ 338 339 // Property access: explicit, implicit, with Qualifier 340 struct SP7 { 341 __declspec(property(get=GetV, put=SetV)) int V; 342 int GetV() { return 123; } 343 void SetV(int v) {} 344 345 void ImplicitAccess() { int i = V; V = i; } 346 void ExplicitAccess() { int i = this->V; this->V = i; } 347 }; 348 struct SP8: public SP7 { 349 void AccessWithQualifier() { int i = SP7::V; SP7::V = i; } 350 }; 351 352 // Property usage 353 template <class T> 354 struct SP9 { 355 __declspec(property(get=GetV, put=SetV)) T V; 356 T GetV() { return 0; } 357 void SetV(T v) {} 358 bool f() { V = this->V; return V < this->V; } 359 void g() { V++; } 360 void h() { V*=2; } 361 }; 362 struct SP10 { 363 SP10(int v) {} 364 bool operator<(const SP10& v) { return true; } 365 SP10 operator*(int v) { return *this; } 366 SP10 operator+(int v) { return *this; } 367 SP10& operator=(const SP10& v) { return *this; } 368 }; 369 void TestSP9() { 370 SP9<int> c; 371 int i = c.V; // Decl initializer 372 i = c.V; // Binary op operand 373 c.SetV(c.V); // CallExpr arg 374 int *p = new int[c.V + 1]; // Array size 375 p[c.V] = 1; // Array index 376 377 c.V = 123; // Setter 378 379 c.V++; // Unary op operand 380 c.V *= 2; // Unary op operand 381 382 SP9<int*> c2; 383 c2.V[0] = 123; // Array 384 385 SP9<SP10> c3; 386 c3.f(); // Overloaded binary op operand 387 c3.g(); // Overloaded incdec op operand 388 c3.h(); // Overloaded unary op operand 389 } 390 391 union u { 392 int *i1; 393 int &i2; // expected-warning {{union member 'i2' has reference type 'int &', which is a Microsoft extension}} 394 }; 395 396 // Property getter using reference. 397 struct SP11 { 398 __declspec(property(get=GetV)) int V; 399 int _v; 400 int& GetV() { return _v; } 401 void UseV(); 402 void TakePtr(int *) {} 403 void TakeRef(int &) {} 404 void TakeVal(int) {} 405 }; 406 407 void SP11::UseV() { 408 TakePtr(&V); 409 TakeRef(V); 410 TakeVal(V); 411 } 412 413 struct StructWithUnnamedMember { 414 __declspec(property(get=GetV)) int : 10; // expected-error {{anonymous property is not supported}} 415 }; 416 417 struct MSPropertyClass { 418 int get() { return 42; } 419 int __declspec(property(get = get)) n; 420 }; 421 422 int *f(MSPropertyClass &x) { 423 return &x.n; // expected-error {{address of property expression requested}} 424 } 425 int MSPropertyClass::*g() { 426 return &MSPropertyClass::n; // expected-error {{address of property expression requested}} 427 } 428 429 namespace rdar14250378 { 430 class Bar {}; 431 432 namespace NyNamespace { 433 class Foo { 434 public: 435 Bar* EnsureBar(); 436 }; 437 438 class Baz : public Foo { 439 public: 440 friend class Bar; 441 }; 442 443 Bar* Foo::EnsureBar() { 444 return 0; 445 } 446 } 447 } 448 449 // expected-error@+1 {{'sealed' keyword not permitted with interface types}} 450 __interface InterfaceWithSealed sealed { 451 }; 452 453 struct SomeBase { 454 virtual void OverrideMe(); 455 456 // expected-note@+2 {{overridden virtual function is here}} 457 // expected-warning@+1 {{'sealed' keyword is a Microsoft extension}} 458 virtual void SealedFunction() sealed; // expected-note {{overridden virtual function is here}} 459 }; 460 461 // expected-note@+2 {{'SealedType' declared here}} 462 // expected-warning@+1 {{'sealed' keyword is a Microsoft extension}} 463 struct SealedType sealed : SomeBase { 464 // expected-error@+2 {{declaration of 'SealedFunction' overrides a 'sealed' function}} 465 // FIXME. warning can be suppressed if we're also issuing error for overriding a 'final' function. 466 virtual void SealedFunction(); // expected-warning {{'SealedFunction' overrides a member function but is not marked 'override'}} 467 468 #if __cplusplus <= 199711L 469 // expected-warning@+2 {{'override' keyword is a C++11 extension}} 470 #endif 471 virtual void OverrideMe() override; 472 }; 473 474 // expected-error@+1 {{base 'SealedType' is marked 'sealed'}} 475 struct InheritFromSealed : SealedType {}; 476 477 void AfterClassBody() { 478 // expected-warning@+1 {{attribute 'deprecated' is ignored, place it after "struct" to apply attribute to type declaration}} 479 struct D {} __declspec(deprecated); 480 481 struct __declspec(align(4)) S {} __declspec(align(8)) s1; 482 S s2; 483 _Static_assert(__alignof(S) == 4, ""); 484 _Static_assert(__alignof(s1) == 8, ""); 485 _Static_assert(__alignof(s2) == 4, ""); 486 } 487 488 namespace PR24246 { 489 template <typename TX> struct A { 490 template <bool> struct largest_type_select; 491 // expected-warning@+1 {{explicit specialization of 'largest_type_select' within class scope is a Microsoft extension}} 492 template <> struct largest_type_select<false> { 493 blah x; // expected-error {{unknown type name 'blah'}} 494 }; 495 }; 496 } 497 498 namespace PR25265 { 499 struct S { 500 int fn() throw(); // expected-note {{previous declaration is here}} 501 }; 502 503 int S::fn() { return 0; } // expected-warning {{is missing exception specification}} 504 } 505 506 #elif TEST2 507 508 // Check that __unaligned is not recognized if MS extensions are not enabled 509 typedef char __unaligned *aligned_type; // expected-error {{expected ';' after top level declarator}} 510 511 #else 512 513 #error Unknown test mode 514 515 #endif 516 517