1 // RUN: %clang_cc1 -fsyntax-only -std=c++11 -Wc++98-compat -verify %s
2 // RUN: %clang_cc1 -fsyntax-only -std=c++14 -Wc++98-compat -verify %s -DCXX14COMPAT
3 // RUN: %clang_cc1 -fsyntax-only -std=c++17 -Wc++98-compat -verify %s -DCXX14COMPAT -DCXX17COMPAT
4 
5 namespace std {
6   struct type_info;
7   using size_t = decltype(sizeof(0)); // expected-warning {{decltype}} expected-warning {{alias}}
8   template<typename T> struct initializer_list {
9     initializer_list(T*, size_t);
10     T *p;
11     size_t n;
12     T *begin();
13     T *end();
14   };
15 }
16 
17 template<typename ...T>  // expected-warning {{variadic templates are incompatible with C++98}}
18 class Variadic1 {};
19 
20 template<template<typename> class ...T>  // expected-warning {{variadic templates are incompatible with C++98}}
21 class Variadic2 {};
22 
23 template<int ...I>  // expected-warning {{variadic templates are incompatible with C++98}}
24 class Variadic3 {};
25 
26 alignas(8) int with_alignas; // expected-warning {{'alignas' is incompatible with C++98}}
27 int with_attribute [[ ]]; // expected-warning {{C++11 attribute syntax is incompatible with C++98}}
28 
Literals()29 void Literals() {
30   (void)u8"str"; // expected-warning {{unicode literals are incompatible with C++98}}
31   (void)u"str"; // expected-warning {{unicode literals are incompatible with C++98}}
32   (void)U"str"; // expected-warning {{unicode literals are incompatible with C++98}}
33   (void)u'x'; // expected-warning {{unicode literals are incompatible with C++98}}
34   (void)U'x'; // expected-warning {{unicode literals are incompatible with C++98}}
35 
36   (void)u8R"X(str)X"; // expected-warning {{raw string literals are incompatible with C++98}}
37   (void)uR"X(str)X"; // expected-warning {{raw string literals are incompatible with C++98}}
38   (void)UR"X(str)X"; // expected-warning {{raw string literals are incompatible with C++98}}
39   (void)R"X(str)X"; // expected-warning {{raw string literals are incompatible with C++98}}
40   (void)LR"X(str)X"; // expected-warning {{raw string literals are incompatible with C++98}}
41 }
42 
43 template<typename T> struct S {};
44 namespace TemplateParsing {
45   S<::S<void> > s; // expected-warning {{'<::' is treated as digraph '<:' (aka '[') followed by ':' in C++98}}
46   S< ::S<void>> t; // expected-warning {{consecutive right angle brackets are incompatible with C++98 (use '> >')}}
47 }
48 
Lambda()49 void Lambda() {
50   []{}(); // expected-warning {{lambda expressions are incompatible with C++98}}
51   // Don't warn about implicit "-> auto" here.
52   [](){}(); // expected-warning {{lambda expressions are incompatible with C++98}}
53 }
54 
55 struct Ctor {
56   Ctor(int, char);
57   Ctor(double, long);
58 };
59 struct InitListCtor {
60   InitListCtor(std::initializer_list<bool>);
61 };
62 
InitList(int i={})63 int InitList(int i = {}) { // expected-warning {{generalized initializer lists are incompatible with C++98}} \
64                            // expected-warning {{scalar initialized from empty initializer list is incompatible with C++98}}
65   (void)new int {}; // expected-warning {{generalized initializer lists are incompatible with C++98}} \
66                     // expected-warning {{scalar initialized from empty initializer list is incompatible with C++98}}
67   (void)int{}; // expected-warning {{generalized initializer lists are incompatible with C++98}} \
68                // expected-warning {{scalar initialized from empty initializer list is incompatible with C++98}}
69   int x { 0 }; // expected-warning {{generalized initializer lists are incompatible with C++98}}
70   S<int> s = {}; // ok, aggregate
71   s = {}; // expected-warning {{generalized initializer lists are incompatible with C++98}}
72   std::initializer_list<int> xs = { 1, 2, 3 }; // expected-warning {{initialization of initializer_list object is incompatible with C++98}}
73   auto ys = { 1, 2, 3 }; // expected-warning {{initialization of initializer_list object is incompatible with C++98}} \
74                          // expected-warning {{'auto' type specifier is incompatible with C++98}}
75   Ctor c1 = { 1, 2 }; // expected-warning {{constructor call from initializer list is incompatible with C++98}}
76   Ctor c2 = { 3.0, 4l }; // expected-warning {{constructor call from initializer list is incompatible with C++98}}
77   InitListCtor ilc = { true, false }; // expected-warning {{initialization of initializer_list object is incompatible with C++98}}
78   const int &r = { 0 }; // expected-warning {{reference initialized from initializer list is incompatible with C++98}}
79   struct { int a; const int &r; } rr = { 0, {0} }; // expected-warning {{reference initialized from initializer list is incompatible with C++98}}
80   return { 0 }; // expected-warning {{generalized initializer lists are incompatible with C++98}} expected-warning {{scalar}}
81 }
82 struct DelayedDefaultArgumentParseInitList {
fDelayedDefaultArgumentParseInitList83   void f(int i = {1}) { // expected-warning {{generalized initializer lists are incompatible with C++98}} expected-warning {{scalar}}
84   }
85 };
86 
87 int operator"" _hello(const char *); // expected-warning {{literal operators are incompatible with C++98}}
88 
89 enum EnumFixed : int { // expected-warning {{enumeration types with a fixed underlying type are incompatible with C++98}}
90 };
91 
92 enum class EnumScoped { // expected-warning {{scoped enumerations are incompatible with C++98}}
93 };
94 
95 void Deleted() = delete; // expected-warning {{deleted function definitions are incompatible with C++98}}
96 struct Defaulted {
97   Defaulted() = default; // expected-warning {{defaulted function definitions are incompatible with C++98}}
98 };
99 
100 int &&RvalueReference = 0; // expected-warning {{rvalue references are incompatible with C++98}}
101 struct RefQualifier {
102   void f() &; // expected-warning {{reference qualifiers on functions are incompatible with C++98}}
103 };
104 
105 auto f() -> int; // expected-warning {{trailing return types are incompatible with C++98}}
106 #ifdef CXX14COMPAT
ff()107 auto ff() { return 5; } // expected-warning {{'auto' type specifier is incompatible with C++98}}
108 // expected-warning@-1 {{return type deduction is incompatible with C++ standards before C++14}}
109 #endif
110 
RangeFor()111 void RangeFor() {
112   int xs[] = {1, 2, 3};
113   for (int &a : xs) { // expected-warning {{range-based for loop is incompatible with C++98}}
114   }
115   for (auto &b : {1, 2, 3}) {
116   // expected-warning@-1 {{range-based for loop is incompatible with C++98}}
117   // expected-warning@-2 {{'auto' type specifier is incompatible with C++98}}
118   // expected-warning@-3 {{initialization of initializer_list object is incompatible with C++98}}
119   // expected-warning@-4 {{reference initialized from initializer list is incompatible with C++98}}
120   }
121   struct Agg { int a, b; } const &agg = { 1, 2 }; // expected-warning {{reference initialized from initializer list is incompatible with C++98}}
122 }
123 
124 struct InClassInit {
125   int n = 0; // expected-warning {{in-class initialization of non-static data members is incompatible with C++98}}
126 };
127 
128 struct OverrideControlBase {
129   virtual void f();
130   virtual void g();
131 };
132 struct OverrideControl final : OverrideControlBase { // expected-warning {{'final' keyword is incompatible with C++98}}
133   virtual void f() override; // expected-warning {{'override' keyword is incompatible with C++98}}
134   virtual void g() final; // expected-warning {{'final' keyword is incompatible with C++98}}
135 };
136 
137 using AliasDecl = int; // expected-warning {{alias declarations are incompatible with C++98}}
138 template<typename T> using AliasTemplate = T; // expected-warning {{alias declarations are incompatible with C++98}}
139 
140 inline namespace InlineNS { // expected-warning {{inline namespaces are incompatible with C++98}}
141 }
142 
143 auto auto_deduction = 0; // expected-warning {{'auto' type specifier is incompatible with C++98}}
144 int *p = new auto(0); // expected-warning {{'auto' type specifier is incompatible with C++98}}
145 
146 const int align_of = alignof(int); // expected-warning {{alignof expressions are incompatible with C++98}}
147 char16_t c16 = 0; // expected-warning {{'char16_t' type specifier is incompatible with C++98}}
148 char32_t c32 = 0; // expected-warning {{'char32_t' type specifier is incompatible with C++98}}
149 constexpr int const_expr = 0; // expected-warning {{'constexpr' specifier is incompatible with C++98}}
150 decltype(const_expr) decl_type = 0; // expected-warning {{'decltype' type specifier is incompatible with C++98}}
151 __decltype(const_expr) decl_type2 = 0; // ok
152 void no_except() noexcept; // expected-warning {{noexcept specifications are incompatible with C++98}}
153 bool no_except_expr = noexcept(1 + 1); // expected-warning {{noexcept expressions are incompatible with C++98}}
154 void *null = nullptr; // expected-warning {{'nullptr' is incompatible with C++98}}
155 static_assert(true, "!"); // expected-warning {{static_assert declarations are incompatible with C++98}}
156 
157 struct InhCtorBase {
158   InhCtorBase(int);
159 };
160 struct InhCtorDerived : InhCtorBase {
161   using InhCtorBase::InhCtorBase; // expected-warning {{inheriting constructors are incompatible with C++98}}
162 };
163 
164 struct FriendMember {
165   static void MemberFn();
166   friend void FriendMember::MemberFn(); // expected-warning {{friend declaration naming a member of the declaring class is incompatible with C++98}}
167 };
168 
169 struct DelegCtor {
DelegCtorDelegCtor170   DelegCtor(int) : DelegCtor() {} // expected-warning {{delegating constructors are incompatible with C++98}}
171   DelegCtor();
172 };
173 
174 template<int n = 0> void DefaultFuncTemplateArg(); // expected-warning {{default template arguments for a function template are incompatible with C++98}}
175 
TemplateFn(T)176 template<typename T> int TemplateFn(T) { return 0; }
LocalTemplateArg()177 void LocalTemplateArg() {
178   struct S {};
179   TemplateFn(S()); // expected-warning {{local type 'S' as template argument is incompatible with C++98}}
180 }
181 struct {} obj_of_unnamed_type; // expected-note {{here}}
182 int UnnamedTemplateArg = TemplateFn(obj_of_unnamed_type); // expected-warning {{unnamed type as template argument is incompatible with C++98}}
183 
184 // FIXME: We do not implement C++98 compatibility warnings for the C++17
185 // template argument evaluation rules.
186 #ifndef CXX17COMPAT
187 namespace RedundantParensInAddressTemplateParam {
188   int n;
189   template<int*p> struct S {};
190   S<(&n)> s; // expected-warning {{redundant parentheses surrounding address non-type template argument are incompatible with C++98}}
191   S<(((&n)))> t; // expected-warning {{redundant parentheses surrounding address non-type template argument are incompatible with C++98}}
192 }
193 #endif
194 
195 namespace TemplateSpecOutOfScopeNs {
196   template<typename T> struct S {};
197 }
198 template<> struct TemplateSpecOutOfScopeNs::S<char> {};
199 
200 struct Typename {
201   template<typename T> struct Inner {};
202 };
203 typename ::Typename TypenameOutsideTemplate(); // expected-warning {{use of 'typename' outside of a template is incompatible with C++98}}
204 Typename::template Inner<int> TemplateOutsideTemplate(); // expected-warning {{use of 'template' keyword outside of a template is incompatible with C++98}}
205 
206 struct TrivialButNonPOD {
207   int f(int);
208 private:
209   int k;
210 };
211 void Ellipsis(int n, ...);
TrivialButNonPODThroughEllipsis()212 void TrivialButNonPODThroughEllipsis() {
213   Ellipsis(1, TrivialButNonPOD()); // expected-warning {{passing object of trivial but non-POD type 'TrivialButNonPOD' through variadic function is incompatible with C++98}}
214 }
215 
216 struct HasExplicitConversion {
217   explicit operator bool(); // expected-warning {{explicit conversion functions are incompatible with C++98}}
218 };
219 
220 struct Struct {};
221 enum Enum { enum_val = 0 };
222 struct BadFriends {
223   friend enum ::Enum; // expected-warning {{befriending enumeration type 'enum ::Enum' is incompatible with C++98}}
224   friend int; // expected-warning {{non-class friend type 'int' is incompatible with C++98}}
225   friend Struct; // expected-warning {{befriending 'Struct' without 'struct' keyword is incompatible with C++98}}
226 };
227 
228 int n = {}; // expected-warning {{scalar initialized from empty initializer list is incompatible with C++98}}
229 
230 class PrivateMember {
231   struct ImPrivate {};
232 };
SFINAEAccessControl(T t)233 template<typename T> typename T::ImPrivate SFINAEAccessControl(T t) { // expected-warning {{substitution failure due to access control is incompatible with C++98}}
234   return typename T::ImPrivate();
235 }
SFINAEAccessControl(...)236 int SFINAEAccessControl(...) { return 0; }
237 int CheckSFINAEAccessControl = SFINAEAccessControl(PrivateMember()); // expected-note {{while substituting deduced template arguments into function template 'SFINAEAccessControl' [with T = PrivateMember]}}
238 
239 namespace UnionOrAnonStructMembers {
240   struct NonTrivCtor {
241     NonTrivCtor(); // expected-note 2{{user-provided default constructor}}
242   };
243   struct NonTrivCopy {
244     NonTrivCopy(const NonTrivCopy&); // expected-note 2{{user-provided copy constructor}}
245   };
246   struct NonTrivDtor {
247     ~NonTrivDtor(); // expected-note 2{{user-provided destructor}}
248   };
249   union BadUnion {
250     NonTrivCtor ntc; // expected-warning {{union member 'ntc' with a non-trivial default constructor is incompatible with C++98}}
251     NonTrivCopy ntcp; // expected-warning {{union member 'ntcp' with a non-trivial copy constructor is incompatible with C++98}}
252     NonTrivDtor ntd; // expected-warning {{union member 'ntd' with a non-trivial destructor is incompatible with C++98}}
253   };
254   struct Wrap {
255     struct {
256       NonTrivCtor ntc; // expected-warning {{anonymous struct member 'ntc' with a non-trivial default constructor is incompatible with C++98}}
257       NonTrivCopy ntcp; // expected-warning {{anonymous struct member 'ntcp' with a non-trivial copy constructor is incompatible with C++98}}
258       NonTrivDtor ntd; // expected-warning {{anonymous struct member 'ntd' with a non-trivial destructor is incompatible with C++98}}
259     };
260   };
261   union WithStaticDataMember {
262     static constexpr double d = 0.0; // expected-warning {{static data member 'd' in union is incompatible with C++98}} expected-warning {{'constexpr' specifier is incompatible with C++98}}
263     static const int n = 0; // expected-warning {{static data member 'n' in union is incompatible with C++98}}
264     static int k; // expected-warning {{static data member 'k' in union is incompatible with C++98}}
265   };
266 }
267 
268 int EnumNNS = Enum::enum_val; // expected-warning {{enumeration type in nested name specifier is incompatible with C++98}}
EnumNNSFn()269 template<typename T> void EnumNNSFn() {
270   int k = T::enum_val; // expected-warning {{enumeration type in nested name specifier is incompatible with C++98}}
271 };
272 template void EnumNNSFn<Enum>(); // expected-note {{in instantiation}}
273 
JumpDiagnostics(int n)274 void JumpDiagnostics(int n) {
275   goto DirectJump; // expected-warning {{jump from this goto statement to its label is incompatible with C++98}}
276   TrivialButNonPOD tnp1; // expected-note {{jump bypasses initialization of non-POD variable}}
277 
278 DirectJump:
279   void *Table[] = {&&DirectJump, &&Later};
280   goto *Table[n]; // expected-warning {{jump from this indirect goto statement to one of its possible targets is incompatible with C++98}}
281 
282   TrivialButNonPOD tnp2; // expected-note {{jump bypasses initialization of non-POD variable}}
283 Later: // expected-note {{possible target of indirect goto statement}}
284   switch (n) {
285     TrivialButNonPOD tnp3; // expected-note {{jump bypasses initialization of non-POD variable}}
286   default: // expected-warning {{jump from switch statement to this case label is incompatible with C++98}}
287     return;
288   }
289 }
290 
291 namespace UnevaluatedMemberAccess {
292   struct S {
293     int n;
fUnevaluatedMemberAccess::S294     int f() { return sizeof(S::n); } // ok
295   };
296   int k = sizeof(S::n); // expected-warning {{use of non-static data member 'n' in an unevaluated context is incompatible with C++98}}
297   const std::type_info &ti = typeid(S::n); // expected-warning {{use of non-static data member 'n' in an unevaluated context is incompatible with C++98}}
298 }
299 
300 namespace LiteralUCNs {
301   char c1 = '\u001e'; // expected-warning {{universal character name referring to a control character is incompatible with C++98}}
302   wchar_t c2 = L'\u0041'; // expected-warning {{specifying character 'A' with a universal character name is incompatible with C++98}}
303   const char *s1 = "foo\u0031"; // expected-warning {{specifying character '1' with a universal character name is incompatible with C++98}}
304   const wchar_t *s2 = L"bar\u0085"; // expected-warning {{universal character name referring to a control character is incompatible with C++98}}
305 }
306 
307 // FIXME: We do not implement C++98 compatibility warnings for the C++17
308 // template argument evaluation rules.
309 #ifndef CXX17COMPAT
310 namespace NonTypeTemplateArgs {
311   template<typename T, T v> struct S {};
312   const int k = 5; // expected-note {{here}}
f()313   static void f() {} // expected-note {{here}}
314   S<const int&, k> s1; // expected-warning {{non-type template argument referring to object 'k' with internal linkage is incompatible with C++98}}
315   S<void(&)(), f> s2; // expected-warning {{non-type template argument referring to function 'f' with internal linkage is incompatible with C++98}}
316 }
317 
318 namespace NullPointerTemplateArg {
319   struct A {};
320   template<int*> struct X {};
321   template<int A::*> struct Y {};
322   X<(int*)0> x; // expected-warning {{use of null pointer as non-type template argument is incompatible with C++98}}
323   Y<(int A::*)0> y; // expected-warning {{use of null pointer as non-type template argument is incompatible with C++98}}
324 }
325 #endif
326 
327 namespace PR13480 {
328   struct basic_iterator {
basic_iteratorPR13480::basic_iterator329     basic_iterator(const basic_iterator &it) {} // expected-note {{because type 'PR13480::basic_iterator' has a user-provided copy constructor}}
basic_iteratorPR13480::basic_iterator330     basic_iterator(basic_iterator &it) {}
331   };
332 
333   union test {
334     basic_iterator it; // expected-warning {{union member 'it' with a non-trivial copy constructor is incompatible with C++98}}
335   };
336 }
337 
338 namespace AssignOpUnion {
339   struct a {
operator =AssignOpUnion::a340     void operator=(const a &it) {} // expected-note {{because type 'AssignOpUnion::a' has a user-provided copy assignment operator}}
operator =AssignOpUnion::a341     void operator=(a &it) {}
342   };
343 
344   struct b {
operator =AssignOpUnion::b345     void operator=(const b &it) {} // expected-note {{because type 'AssignOpUnion::b' has a user-provided copy assignment operator}}
346   };
347 
348   union test1 {
349     a x; // expected-warning {{union member 'x' with a non-trivial copy assignment operator is incompatible with C++98}}
350     b y; // expected-warning {{union member 'y' with a non-trivial copy assignment operator is incompatible with C++98}}
351   };
352 }
353 
354 namespace rdar11736429 {
355   struct X { // expected-note {{because type 'rdar11736429::X' has no default constructor}}
356     X(const X&) = delete; // expected-warning{{deleted function definitions are incompatible with C++98}} \
357     // expected-note {{implicit default constructor suppressed by user-declared constructor}}
358   };
359 
360   union S {
361     X x; // expected-warning{{union member 'x' with a non-trivial default constructor is incompatible with C++98}}
362   };
363 }
364 
365 template<typename T> T var = T(10);
366 #ifdef CXX14COMPAT
367 // expected-warning@-2 {{variable templates are incompatible with C++ standards before C++14}}
368 #else
369 // expected-warning@-4 {{variable templates are a C++14 extension}}
370 #endif
371 
372 // No diagnostic for specializations of variable templates; we will have
373 // diagnosed the primary template.
374 template<typename T> T* var<T*> = new T();
375 template<> int var<int> = 10;
376 template char var<char>;
377 float fvar = var<float>;
378 
379 class A {
380   template<typename T> static T var = T(10);
381 #ifdef CXX14COMPAT
382 // expected-warning@-2 {{variable templates are incompatible with C++ standards before C++14}}
383 #else
384 // expected-warning@-4 {{variable templates are a C++14 extension}}
385 #endif
386 
387   template<typename T> static T* var<T*> = new T();
388 };
389 
390 struct B {  template<typename T> static T v; };
391 #ifdef CXX14COMPAT
392 // expected-warning@-2 {{variable templates are incompatible with C++ standards before C++14}}
393 #else
394 // expected-warning@-4 {{variable templates are a C++14 extension}}
395 #endif
396 
397 template<typename T> T B::v = T();
398 #ifdef CXX14COMPAT
399 // expected-warning@-2 {{variable templates are incompatible with C++ standards before C++14}}
400 #else
401 // expected-warning@-4 {{variable templates are a C++14 extension}}
402 #endif
403 
404 template<typename T> T* B::v<T*> = new T();
405 template<> int B::v<int> = 10;
406 template char B::v<char>;
407 float fsvar = B::v<float>;
408 
409 #ifdef CXX14COMPAT
410 int digit_seps = 123'456; // expected-warning {{digit separators are incompatible with C++ standards before C++14}}
411 #endif
412 
413 #ifdef CXX17COMPAT
414 template<class T> struct CTAD {};
ctad_test()415 void ctad_test() {
416   CTAD<int> s;
417   CTAD t = s; // expected-warning {{class template argument deduction is incompatible with C++ standards before C++17}}
418 }
419 #endif
420