xref: /llvm-project/clang/test/SemaCXX/lambda-expressions.cpp (revision 202ad47fe1bd652ee5cc7612e696a2479398c44f)
1 // RUN: %clang_cc1 -std=c++11 -Wno-unused-value -fsyntax-only -verify=expected,not-cxx03,cxx03-cxx11,cxx11,expected-cxx14 -fblocks %s
2 // RUN: %clang_cc1 -std=c++03 -Wno-unused-value -fsyntax-only -verify=expected,cxx03,cxx03-cxx11,expected-cxx14 -fblocks %s -Ddecltype=__decltype -Dstatic_assert=_Static_assert -Wno-c++11-extensions
3 // RUN: %clang_cc1 -std=c++14 -Wno-unused-value -fsyntax-only -verify=expected,not-cxx03,expected-cxx14 -fblocks %s
4 // RUN: %clang_cc1 -std=c++17 -Wno-unused-value -verify=expected,not-cxx03 -ast-dump -fblocks %s | FileCheck %s
5 
6 // RUN: %clang_cc1 -std=c++11 -Wno-unused-value -fsyntax-only -verify=expected,not-cxx03,cxx03-cxx11,cxx11,expected-cxx14 -fblocks %s -fexperimental-new-constant-interpreter
7 // RUN: %clang_cc1 -std=c++03 -Wno-unused-value -fsyntax-only -verify=expected,cxx03,cxx03-cxx11,expected-cxx14 -fblocks %s -Ddecltype=__decltype -Dstatic_assert=_Static_assert -Wno-c++11-extensions -fexperimental-new-constant-interpreter
8 // RUN: %clang_cc1 -std=c++14 -Wno-unused-value -fsyntax-only -verify=expected,not-cxx03,expected-cxx14 -fblocks %s -fexperimental-new-constant-interpreter
9 // RUN: %clang_cc1 -std=c++17 -Wno-unused-value -verify=expected,not-cxx03 -ast-dump -fblocks %s -fexperimental-new-constant-interpreter| FileCheck %s
10 
11 namespace std { class type_info; };
12 
13 namespace ExplicitCapture {
14   class C {
15     int Member;
16 
17     static void Overload(int);
18     void Overload();
19     virtual C& Overload(float);
20 
21     void ImplicitThisCapture() {
22       []() { (void)Member; };     // expected-error {{'this' cannot be implicitly captured in this context}} expected-note {{explicitly capture 'this'}}
23       const int var = []() {(void)Member; return 0; }(); // expected-error {{'this' cannot be implicitly captured in this context}} expected-note {{explicitly capture 'this'}}
24       [&](){(void)Member;};
25 
26       [this](){(void)Member;};
27       [this]{[this]{};};
28       []{[this]{};};// expected-error {{'this' cannot be implicitly captured in this context}}
29       []{Overload(3);};
30       [] { Overload(); }; // expected-error {{'this' cannot be implicitly captured in this context}} expected-note {{explicitly capture 'this'}}
31       []{(void)typeid(Overload());};
32       [] { (void)typeid(Overload(.5f)); }; // expected-error {{'this' cannot be implicitly captured in this context}} expected-note {{explicitly capture 'this'}}
33     }
34   };
35 
36   void f() {
37     [this] () {}; // expected-error {{'this' cannot be captured in this context}}
38   }
39 }
40 
41 namespace ReturnDeduction {
42   void test() {
43     [](){ return 1; };
44     [](){ return 1; };
45     [](){ return ({return 1; 1;}); };
46     [](){ return ({return 'c'; 1;}); }; // expected-error {{must match previous return type}}
47     []()->int{ return 'c'; return 1; };
48     [](){ return 'c'; return 1; };  // expected-error {{must match previous return type}}
49     []() { return; return (void)0; };
50     [](){ return 1; return 1; };
51   }
52 }
53 
54 namespace ImplicitCapture {
55   void test() {
56     int a = 0; // expected-note 5 {{declared}}
57     []() { return a; }; // expected-error {{variable 'a' cannot be implicitly captured in a lambda with no capture-default specified}} expected-note {{begins here}} expected-note 2 {{capture 'a' by}} expected-note 2 {{default capture by}}
58     [&]() { return a; };
59     [=]() { return a; };
60     [=]() { int* b = &a; }; // expected-error {{cannot initialize a variable of type 'int *' with an rvalue of type 'const int *'}}
61     [=]() { return [&]() { return a; }; };
62     []() { return [&]() { return a; }; }; // expected-error {{variable 'a' cannot be implicitly captured in a lambda with no capture-default specified}} expected-note {{lambda expression begins here}} expected-note 2 {{capture 'a' by}} expected-note 2 {{default capture by}}
63     []() { return ^{ return a; }; };// expected-error {{variable 'a' cannot be implicitly captured in a lambda with no capture-default specified}} expected-note {{lambda expression begins here}} expected-note 2 {{capture 'a' by}} expected-note 2 {{default capture by}}
64     []() { return [&a] { return a; }; }; // expected-error 2 {{variable 'a' cannot be implicitly captured in a lambda with no capture-default specified}} expected-note 2 {{lambda expression begins here}}  expected-note 4 {{capture 'a' by}} expected-note 4 {{default capture by}}
65     [=]() { return [&a] { return a; }; }; //
66 
67     const int b = 2;
68     []() { return b; };
69 
70     union { // expected-note {{declared}}
71       int c;
72       float d;
73     };
74     d = 3;
75     [=]() { return c; }; // expected-error {{unnamed variable cannot be implicitly captured in a lambda expression}}
76 
77     __block int e; // expected-note 2{{declared}}
78     [&]() { return e; }; // expected-error {{__block variable 'e' cannot be captured in a lambda expression}}
79     [&e]() { return e; }; // expected-error {{__block variable 'e' cannot be captured in a lambda expression}}
80 
81     int f[10]; // expected-note {{declared}}
82     [&]() { return f[2]; };
83     (void) ^{ return []() { return f[2]; }; }; // expected-error {{variable 'f' cannot be implicitly captured in a lambda with no capture-default specified}} \
84     // expected-note{{lambda expression begins here}} expected-note 2 {{capture 'f' by}} expected-note 2 {{default capture by}}
85 
86     struct G { G(); G(G&); int a; }; // expected-note 6 {{not viable}}
87     G g;
88     [=]() { const G* gg = &g; return gg->a; };
89     [=]() { return [=]{ const G* gg = &g; return gg->a; }(); }; // expected-error {{no matching constructor for initialization of 'G'}}
90     (void)^{ return [=]{ const G* gg = &g; return gg->a; }(); }; // expected-error 2 {{no matching constructor for initialization of 'const G'}}
91 
92     const int h = a; // expected-note {{declared}}
93     []() { return h; }; // expected-error {{variable 'h' cannot be implicitly captured in a lambda with no capture-default specified}} expected-note {{lambda expression begins here}} expected-note 2 {{capture 'h' by}} expected-note 2 {{default capture by}}
94 
95     // References can appear in constant expressions if they are initialized by
96     // reference constant expressions.
97     int i;
98     int &ref_i = i; // expected-note {{declared}}
99     [] { return ref_i; }; // expected-error {{variable 'ref_i' cannot be implicitly captured in a lambda with no capture-default specified}} expected-note {{lambda expression begins here}} expected-note 2 {{capture 'ref_i' by}} expected-note 2 {{default capture by}}
100 
101     static int j;
102     int &ref_j = j; // cxx03-note {{declared here}}
103     [] { return ref_j; }; // cxx03-error {{variable 'ref_j' cannot be implicitly captured in a lambda with no capture-default specified}} cxx03-note 4 {{capture}} cxx03-note {{lambda expression begins here}}
104   }
105 }
106 
107 namespace SpecialMembers {
108   void f() {
109     auto a = []{}; // expected-note 2{{here}} expected-note {{candidate}} not-cxx03-note {{candidate}}
110     decltype(a) b; // expected-error {{no matching constructor}}
111     decltype(a) c = a;
112     decltype(a) d = static_cast<decltype(a)&&>(a);
113     a = a; // expected-error {{copy assignment operator is implicitly deleted}}
114     a = static_cast<decltype(a)&&>(a); // expected-error {{copy assignment operator is implicitly deleted}}
115   }
116   struct P {
117     P(const P&) = delete; //expected-note {{deleted here}} // expected-cxx14-note {{deleted here}}
118   };
119   struct Q {
120     ~Q() = delete; // expected-note {{deleted here}}
121   };
122   struct R {
123     R(const R&) = default;
124     R(R&&) = delete;
125     R &operator=(const R&) = delete;
126     R &operator=(R&&) = delete;
127   };
128   void g(P &p, Q &q, R &r) {
129     // FIXME: The note attached to the second error here is just amazingly bad.
130     auto pp = [p]{}; // expected-error {{deleted constructor}} expected-cxx14-error {{deleted copy constructor of '(lambda}}
131     // expected-cxx14-note-re@-1 {{copy constructor of '(lambda at {{.*}})' is implicitly deleted because field '' has a deleted copy constructor}}
132     auto qq = [q]{}; // expected-error {{deleted function}} expected-note {{because}}
133 
134     auto a = [r]{}; // expected-note 2{{here}}
135     decltype(a) b = a;
136     decltype(a) c = static_cast<decltype(a)&&>(a); // ok, copies R
137     a = a; // expected-error {{copy assignment operator is implicitly deleted}}
138     a = static_cast<decltype(a)&&>(a); // expected-error {{copy assignment operator is implicitly deleted}}
139   }
140 }
141 
142 namespace PR12031 {
143   struct X {
144     template<typename T>
145     X(const T&);
146     ~X();
147   };
148 
149   void f(int i, X x);
150   void g() {
151     const int v = 10;
152     f(v, [](){});
153   }
154 }
155 
156 namespace Array {
157   int &f(int *p);
158   char &f(...);
159   void g() {
160     int n = -1;   // expected-note {{declared here}}
161     [=] {
162       int arr[n]; // expected-warning {{variable length arrays in C++ are a Clang extension}} \
163                      expected-note {{read of non-const variable 'n' is not allowed in a constant expression}}
164     } ();
165 
166     const int m = -1;
167     [] {
168       int arr[m]; // expected-error{{negative size}}
169     } ();
170 
171     [&] {
172       int arr[m]; // expected-error{{negative size}}
173     } ();
174 
175     [=] {
176       int arr[m]; // expected-error{{negative size}}
177     } ();
178 
179     [m] {
180       int arr[m]; // expected-error{{negative size}}
181     } ();
182   }
183 }
184 
185 void PR12248()
186 {
187   unsigned int result = 0;
188   auto l = [&]() { ++result; };
189 }
190 
191 namespace ModifyingCapture {
192   void test() {
193     int n = 0;
194     [=] {
195       n = 1; // expected-error {{cannot assign to a variable captured by copy in a non-mutable lambda}}
196     };
197   }
198 }
199 
200 namespace VariadicPackExpansion {
201   template<typename T, typename U> using Fst = T;
202   template<typename...Ts> bool g(Fst<bool, Ts> ...bools);
203   template<typename...Ts> bool f(Ts &&...ts) {
204     return g<Ts...>([&ts] {
205       if (!ts)
206         return false;
207       --ts;
208       return true;
209     } () ...);
210   }
211   void h() {
212     int a = 5, b = 2, c = 3;
213     while (f(a, b, c)) {
214     }
215   }
216 
217   struct sink {
218     template<typename...Ts> sink(Ts &&...) {}
219   };
220 
221   template<typename...Ts> void local_class() {
222     sink s(
223       [] (Ts t) {
224         struct S : Ts {
225           void f(Ts t) {
226             Ts &that = *this;
227             that = t;
228           }
229           Ts g() { return *this; };
230         };
231         S s;
232         s.f(t);
233         return s;
234       } (Ts()).g() ...
235     );
236   };
237   struct X {}; struct Y {};
238   template void local_class<X, Y>();
239 
240   template<typename...Ts> void nested(Ts ...ts) {
241     f(
242       // Each expansion of this lambda implicitly captures all of 'ts', because
243       // the inner lambda also expands 'ts'.
244       [&] {
245         return ts + [&] { return f(ts...); } ();
246       } () ...
247     );
248   }
249   template void nested(int, int, int);
250 
251   template<typename...Ts> void nested2(Ts ...ts) { // expected-note 2{{here}}
252     // Capture all 'ts', use only one.
253     f([&ts...] { return ts; } ()...);
254     // Capture each 'ts', use it.
255     f([&ts] { return ts; } ()...);
256     // Capture all 'ts', use all of them.
257     f([&ts...] { return (int)f(ts...); } ());
258     // Capture each 'ts', use all of them. Ill-formed. In more detail:
259     //
260     // We instantiate two lambdas here; the first captures ts$0, the second
261     // captures ts$1. Both of them reference both ts parameters, so both are
262     // ill-formed because ts can't be implicitly captured.
263     //
264     // FIXME: This diagnostic does not explain what's happening. We should
265     // specify which 'ts' we're referring to in its diagnostic name. We should
266     // also say which slice of the pack expansion is being performed in the
267     // instantiation backtrace.
268     f([&ts] { return (int)f(ts...); } ()...); // \
269     // expected-error 2{{'ts' cannot be implicitly captured}} \
270     // expected-note 2{{lambda expression begins here}} \
271     // expected-note 4 {{capture 'ts' by}} \
272     // expected-note 2 {{while substituting into a lambda}}
273   }
274   template void nested2(int); // ok
275   template void nested2(int, int); // expected-note 2 {{in instantiation of}}
276 }
277 
278 namespace PR13860 {
279   void foo() {
280     auto x = PR13860UndeclaredIdentifier(); // expected-error {{use of undeclared identifier 'PR13860UndeclaredIdentifier'}}
281     auto y = [x]() { };
282     static_assert(sizeof(y), "");
283   }
284 }
285 
286 namespace PR13854 {
287   auto l = [](void){};
288 }
289 
290 namespace PR14518 {
291   auto f = [](void) { return __func__; }; // no-warning
292 }
293 
294 namespace PR16708 {
295   auto L = []() {
296     auto ret = 0;
297     return ret;
298     return 0;
299   };
300 }
301 
302 namespace TypeDeduction {
303   struct S {};
304   void f() {
305     const S s = S();
306     S &&t = [&] { return s; } ();
307 #if __cplusplus > 201103L
308     S &&u = [&] () -> auto { return s; } ();
309 #endif
310   }
311 }
312 
313 
314 namespace lambdas_in_NSDMIs {
315   template<class T>
316   struct L {
317       T t = T();
318       T t2 = ([](int a) { return [](int b) { return b; };})(t)(t);
319   };
320   L<int> l;
321 
322   namespace non_template {
323     struct L {
324       int t = 0;
325       int t2 = ([](int a) { return [](int b) { return b; };})(t)(t);
326     };
327     L l;
328   }
329 }
330 
331 // PR18477: don't try to capture 'this' from an NSDMI encountered while parsing
332 // a lambda.
333 namespace NSDMIs_in_lambdas {
334   template<typename T> struct S { int a = 0; int b = a; };
335   void f() { []() { S<int> s; }; }
336 
337   auto x = []{ struct S { int n, m = n; }; };
338   auto y = [&]{ struct S { int n, m = n; }; }; // expected-error {{non-local lambda expression cannot have a capture-default}}
339   void g() { auto z = [&]{ struct S { int n, m = n; }; }; }
340 }
341 
342 namespace CaptureIncomplete {
343   struct Incomplete; // expected-note 2{{forward decl}}
344   void g(const Incomplete &a);
345   void f(Incomplete &a) {
346     (void) [a] {}; // expected-error {{incomplete}}
347     (void) [&a] {};
348 
349     (void) [=] { g(a); }; // expected-error {{incomplete}}
350     (void) [&] { f(a); };
351   }
352 }
353 
354 #if __cplusplus >= 201103L
355 namespace CaptureAbstract {
356   struct S {
357     virtual void f() = 0; // expected-note {{unimplemented}}
358     int n = 0;
359   };
360   struct T : S {
361     constexpr T() {}
362     void f();
363   };
364   void f() {
365     constexpr T t = T();
366     S &s = const_cast<T&>(t);
367     // FIXME: Once we properly compute odr-use per DR712, this should be
368     // accepted (and should not capture 's').
369     [=] { return s.n; }; // expected-error {{abstract}}
370   }
371 }
372 #endif
373 
374 namespace PR18128 {
375   auto l = [=]{}; // expected-error {{non-local lambda expression cannot have a capture-default}}
376 
377   struct S {
378     int n;
379     int (*f())[true ? 1 : ([=]{ return n; }(), 0)];
380     // expected-error@-1 {{non-local lambda expression cannot have a capture-default}}
381     // expected-error@-2 {{invalid use of non-static data member 'n'}}
382     // expected-cxx14-error@-3 {{a lambda expression may not appear inside of a constant expression}}
383     // cxx03-error@-4 {{function declaration cannot have variably modified type}}
384     // cxx03-warning@-5 {{variable length arrays in C++ are a Clang extension}}
385     int g(int k = ([=]{ return n; }(), 0));
386     // expected-error@-1 {{non-local lambda expression cannot have a capture-default}}
387     // expected-error@-2 {{invalid use of non-static data member 'n'}}
388 
389     int a = [=]{ return n; }(); // ok
390     int b = [=]{ return [=]{ return n; }(); }(); // ok
391     int c = []{ int k = 0; return [=]{ return k; }(); }(); // ok
392     int d = [] { return [=] { return n; }(); }();          // expected-error {{'this' cannot be implicitly captured in this context}} expected-note {{explicitly capture 'this'}}
393   };
394 }
395 
396 namespace gh67687 {
397 struct S {
398   int n;
399   int a = (4, []() { return n; }());  // expected-error {{'this' cannot be implicitly captured in this context}} \
400                                       // expected-note {{explicitly capture 'this'}}
401 };
402 }
403 
404 namespace PR18473 {
405   template<typename T> void f() {
406     T t(0);
407     (void) [=]{ int n = t; }; // expected-error {{deleted}}
408   }
409 
410   template void f<int>();
411   struct NoCopy {
412     NoCopy(int);
413     NoCopy(const NoCopy &) = delete; // expected-note {{deleted}}
414     operator int() const;
415   };
416   template void f<NoCopy>(); // expected-note {{instantiation}}
417 }
418 
419 void PR19249() {
420   auto x = [&x]{}; // expected-error {{cannot appear in its own init}}
421 }
422 
423 namespace PR20731 {
424 template <class L, int X = sizeof(L)>
425 void Job(L l);
426 
427 template <typename... Args>
428 void Logger(Args &&... args) {
429   auto len = Invalid_Function((args)...);
430   // expected-error@-1 {{use of undeclared identifier 'Invalid_Function'}}
431   Job([len]() {});
432 }
433 
434 void GetMethod() {
435   Logger();
436   // expected-note@-1 {{in instantiation of function template specialization 'PR20731::Logger<>' requested here}}
437 }
438 
439 template <typename T>
440 struct A {
441   T t;
442   // expected-error@-1 {{field has incomplete type 'void'}}
443 };
444 
445 template <typename F>
446 void g(F f) {
447   auto a = A<decltype(f())>();
448   // expected-note@-1 {{in instantiation of template class 'PR20731::A<void>' requested here}}
449   auto xf = [a, f]() {};
450   int x = sizeof(xf);
451 };
452 void f() {
453   g([] {}); // cxx03-warning {{template argument uses local type}}
454   // expected-note-re@-1 {{in instantiation of function template specialization 'PR20731::g<(lambda at {{.*}}>' requested here}}
455 }
456 
457 template <class _Rp> struct function {
458   template <class _Fp>
459   function(_Fp) {
460     static_assert(sizeof(_Fp) > 0, "Type must be complete.");
461   }
462 };
463 
464 template <typename T> void p(T t) {
465   auto l = some_undefined_function(t);
466   // expected-error@-1 {{use of undeclared identifier 'some_undefined_function'}}
467   function<void()>(([l]() {}));
468 }
469 void q() { p(0); }
470 // expected-note@-1 {{in instantiation of function template specialization 'PR20731::p<int>' requested here}}
471 }
472 
473 namespace lambda_in_default_mem_init {
474   template<typename T> void f() {
475     struct S { int n = []{ return 0; }(); };
476   }
477   template void f<int>();
478 
479   template<typename T> void g() {
480     struct S { int n = [](int n){ return n; }(0); };
481   }
482   template void g<int>();
483 }
484 
485 namespace error_in_transform_prototype {
486   template<class T>
487   void f(T t) {
488     // expected-error@+2 {{type 'int' cannot be used prior to '::' because it has no members}}
489     // expected-error@+1 {{no member named 'ns' in 'error_in_transform_prototype::S'}}
490     auto x = [](typename T::ns::type &k) {};
491   }
492   class S {};
493   void foo() {
494     f(5); // expected-note {{requested here}}
495     f(S()); // expected-note {{requested here}}
496   }
497 }
498 
499 namespace PR21857 {
500   template<typename Fn> struct fun : Fn {
501     fun() = default;
502     using Fn::operator();
503   };
504   template<typename Fn> fun<Fn> wrap(Fn fn); // cxx03-warning {{template argument uses unnamed type}}
505   auto x = wrap([](){}); // cxx03-warning {{template argument uses unnamed type}} cxx03-note 2 {{unnamed type used in template argument was declared here}}
506 }
507 
508 namespace PR13987 {
509 class Enclosing {
510   void Method(char c = []()->char {
511     int d = []()->int {
512         struct LocalClass {
513           int Method() { return 0; }
514         };
515       return 0;
516     }();
517     return d; }()
518   );
519 };
520 }
521 
522 namespace PR23860 {
523 template <class> struct A {
524   void f(int x = []() {
525     struct B {
526       void g() {}
527     };
528     return 0;
529   }());
530 };
531 
532 int main() {
533 }
534 
535 A<int> a;
536 }
537 
538 namespace rdar22032373 {
539 void foo() {
540   auto blk = [](bool b) {
541     if (b)
542       return undeclared_error; // expected-error {{use of undeclared identifier}}
543     return 0;
544   };
545   auto bar = []() {
546     return undef(); // expected-error {{use of undeclared identifier}}
547     return 0; // verify no init_conversion_failed diagnostic emitted.
548   };
549 }
550 }
551 
552 namespace nested_lambda {
553 template <int N>
554 class S {};
555 
556 void foo() {
557   const int num = 18;
558   auto outer = []() {
559     auto inner = [](S<num> &X) {};
560   };
561 }
562 }
563 
564 namespace PR27994 {
565 struct A { template <class T> A(T); };
566 
567 template <class T>
568 struct B {
569   int x;
570   A a = [&] { int y = x; };
571   A b = [&] { [&] { [&] { int y = x; }; }; };
572   A d = [&](auto param) { int y = x; }; // cxx03-cxx11-error {{'auto' not allowed in lambda parameter}}
573   A e = [&](auto param) { [&] { [&](auto param2) { int y = x; }; }; }; // cxx03-cxx11-error 2 {{'auto' not allowed in lambda parameter}}
574 };
575 
576 B<int> b;
577 
578 template <class T> struct C {
579   struct D {
580     int x;
581     A f = [&] { int y = x; };
582   };
583 };
584 
585 int func() {
586   C<int> a;
587   decltype(a)::D b;
588 }
589 }
590 
591 namespace PR30566 {
592 int name1; // expected-note {{'name1' declared here}}
593 
594 struct S1 {
595   template<class T>
596   S1(T t) { s = sizeof(t); }
597   int s;
598 };
599 
600 void foo1() {
601   auto s0 = S1([name=]() {}); // expected-error {{expected expression}}
602   auto s1 = S1([name=name]() {}); // expected-error {{use of undeclared identifier 'name'; did you mean 'name1'?}}
603                                   // cxx03-cxx11-warning@-1 {{initialized lambda captures are a C++14 extension}}
604 }
605 }
606 
607 namespace PR25627_dont_odr_use_local_consts {
608 
609   template<int> struct X {};
610 
611   void foo() {
612     const int N = 10;
613     (void) [] { X<N> x; };
614   }
615 }
616 
617 namespace PR94764 {
618   struct X {
619     int x;
620     void foo() {
621       [x](){}; // expected-error{{class member 'x' cannot appear in capture list as it is not a variable}}
622     }
623   };
624 }
625 
626 namespace ConversionOperatorDoesNotHaveDeducedReturnType {
627   auto x = [](int){};
628   auto y = [](auto &v) -> void { v.n = 0; }; // cxx03-cxx11-error {{'auto' not allowed in lambda parameter}} cxx03-cxx11-note {{candidate function not viable}} cxx03-cxx11-note {{conversion candidate}}
629   using T = decltype(x);
630   using U = decltype(y);
631   using ExpectedTypeT = void (*)(int);
632   template<typename T>
633     using ExpectedTypeU = void (*)(T&);
634 
635   struct X {
636 #if __cplusplus > 201402L
637     friend constexpr auto T::operator()(int) const;
638     friend constexpr T::operator ExpectedTypeT() const noexcept;
639 
640     template<typename T>
641       friend constexpr void U::operator()(T&) const;
642     // FIXME: This should not match; the return type is specified as behaving
643     // "as if it were a decltype-specifier denoting the return type of
644     // [operator()]", which is not equivalent to this alias template.
645     template<typename T>
646       friend constexpr U::operator ExpectedTypeU<T>() const noexcept;
647 #else
648     friend auto T::operator()(int) const; // cxx11-error {{'auto' return without trailing return type; deduced return types are a C++14 extension}} \
649                                              cxx03-error {{'auto' not allowed in function return type}}
650     friend T::operator ExpectedTypeT() const;
651 
652     template<typename T>
653       friend void U::operator()(T&) const; // cxx03-cxx11-error {{friend declaration of 'operator()' does not match any declaration}}
654     // FIXME: This should not match, as above.
655     template<typename T>
656       friend U::operator ExpectedTypeU<T>() const; // cxx03-cxx11-error {{friend declaration of 'operator void (*)(type-parameter-0-0 &)' does not match any declaration}}
657 #endif
658 
659   private:
660     int n;
661   };
662 
663   // Should be OK in C++14 and later: lambda's call operator is a friend.
664   void use(X &x) { y(x); } // cxx03-cxx11-error {{no matching function for call to object}}
665 
666   // This used to crash in return type deduction for the conversion opreator.
667   struct A { int n; void f() { +[](decltype(n)) {}; } };
668 }
669 
670 namespace TypoCorrection {
671 template <typename T> struct X {};
672 // expected-note@-1 {{template parameter is declared here}}
673 
674 template <typename T>
675 void Run(const int& points) {
676 // expected-note@-1 {{'points' declared here}}
677   auto outer_lambda = []() {
678     auto inner_lambda = [](const X<Points>&) {};
679     // expected-error@-1 {{use of undeclared identifier 'Points'; did you mean 'points'?}}
680     // expected-error@-2 {{template argument for template type parameter must be a type}}
681   };
682 }
683 }
684 
685 void operator_parens() {
686   [&](int x){ operator()(); }(0); // expected-error {{undeclared 'operator()'}}
687 }
688 
689 namespace captured_name {
690 void Test() {
691   union {           // expected-note {{'' declared here}}
692     int i;
693   };
694   [] { return i; }; // expected-error {{variable '' cannot be implicitly captured in a lambda with no capture-default specified}}
695                     // expected-note@-1 {{lambda expression begins here}}
696                     // expected-note@-2 2 {{default capture by}}
697 }
698 };
699 
700 namespace GH60518 {
701 // Lambdas should not try to capture
702 // function parameters that are used in enable_if
703 struct StringLiteral {
704 template <int N>
705 StringLiteral(const char (&array)[N]) // cxx03-note {{declared here}}
706     __attribute__((enable_if(__builtin_strlen(array) == 2, // cxx03-error {{'enable_if' attribute expression never produces a constant expression}} cxx03-note {{read of variable}}
707                               "invalid string literal")));
708 };
709 
710 namespace cpp_attribute {
711 struct StringLiteral {
712 template <int N>
713 StringLiteral(const char (&array)[N]) [[clang::annotate_type("test", array)]];
714 };
715 }
716 
717 void Func1() {
718   [[maybe_unused]] auto y = [&](decltype(StringLiteral("xx"))) {}; // cxx03-note {{in instantiation of function template specialization}}
719   [[maybe_unused]] auto z = [&](decltype(cpp_attribute::StringLiteral("xx"))) {};
720 }
721 
722 }
723 
724 #if __cplusplus > 201402L
725 namespace GH60936 {
726 struct S {
727   int i;
728   // `&i` in default initializer causes implicit `this` access.
729   int *p = &i;
730 };
731 
732 static_assert([]() constexpr {
733   S r = S{2};
734   return r.p != nullptr;
735 }());
736 } // namespace GH60936
737 #endif
738 
739 // Call operator attributes refering to a variable should
740 // be properly handled after D124351
741 #if __cplusplus >= 201103L
742 constexpr int i = 2;
743 void foo() {
744   (void)[=][[gnu::aligned(i)]] () {}; // expected-warning{{C++23 extension}}
745   // CHECK: AlignedAttr
746   // CHECK-NEXT: ConstantExpr
747   // CHECK-NEXT: value: Int 2
748 }
749 #endif
750 
751 void GH48527() {
752   auto a = []()__attribute__((b(({ return 0; })))){}; // expected-warning {{unknown attribute 'b' ignored}}
753 }
754 
755 #if __cplusplus >= 201103L
756 void GH67492() {
757   constexpr auto test = 42;
758   auto lambda = (test, []() noexcept(true) {});
759 }
760 #endif
761 
762 // FIXME: This currently causes clang to crash in C++11 mode.
763 #if __cplusplus >= 201402L
764 namespace GH83267 {
765 auto l = [](auto a) { return 1; };
766 using type = decltype(l);
767 
768 template<>
769 auto type::operator()(int a) const { // expected-error{{lambda call operator should not be explicitly specialized or instantiated}}
770   return c; // expected-error {{use of undeclared identifier 'c'}}
771 }
772 
773 auto ll = [](auto a) { return 1; }; // expected-error{{lambda call operator should not be explicitly specialized or instantiated}}
774 using t = decltype(ll);
775 template auto t::operator()<int>(int a) const; // expected-note {{in instantiation}}
776 
777 }
778 #endif
779