cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
314 lines
7.7 KiB
C++
314 lines
7.7 KiB
C++
// RUN: %clang_cc1 -verify -fsyntax-only -triple i386-linux -Wredundant-parens -pedantic-errors -fcxx-exceptions -fexceptions %s
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// RUN: %clang_cc1 -verify -fsyntax-only -triple i386-linux -Wredundant-parens -pedantic-errors -fcxx-exceptions -fexceptions -std=c++98 %s
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// RUN: %clang_cc1 -verify -fsyntax-only -triple i386-linux -Wredundant-parens -pedantic-errors -fcxx-exceptions -fexceptions -std=c++11 %s
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const char const *x10; // expected-error {{duplicate 'const' declaration specifier}}
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int x(*g); // expected-error {{use of undeclared identifier 'g'}}
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private int cplusplus_is_not_opencl; // expected-error {{expected unqualified-id}}
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struct Type {
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int Type;
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};
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typedef char bool; // expected-error {{redeclaration of C++ built-in type 'bool'}}
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// PR4451 - We should recover well from the typo of '::' as ':' in a2.
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namespace y {
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struct a { };
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typedef int b;
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}
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y::a a1;
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y:a a2; // expected-error {{unexpected ':' in nested name specifier}}
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y::a a3 = a2;
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// Some valid colons:
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void foo() {
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y: // label
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y::a s;
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int a = 4;
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a = a ? a : a+1;
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}
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struct b : y::a {};
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template <typename T>
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class someclass {
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int bar() {
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T *P;
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return 1 ? P->x : P->y;
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}
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};
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class asm_class_test {
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void foo() __asm__("baz");
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};
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enum { fooenum = 1, };
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#if __cplusplus <= 199711L
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// expected-error@-2 {{commas at the end of enumerator lists are a C++11 extension}}
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#endif
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struct a {
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int Type : fooenum;
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};
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void test(struct Type *P) {
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int Type;
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Type = 1 ? P->Type : Type;
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Type = (y:b) 4; // expected-error {{unexpected ':' in nested name specifier}}
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Type = 1 ? (
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(y:b) // expected-error {{unexpected ':' in nested name specifier}}
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4) : 5;
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}
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struct test4 {
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int x // expected-error {{expected ';' at end of declaration list}}
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int y;
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int z // expected-error {{expected ';' at end of declaration list}}
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};
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// Make sure we know these are legitimate commas and not typos for ';'.
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namespace Commas {
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struct S {
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static int a;
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int c,
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operator()();
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};
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int global1,
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__attribute__(()) global2,
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(global5), // expected-warning {{redundant parentheses surrounding declarator}}
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*global6,
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&global7 = global1,
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&&global8 = static_cast<int&&>(global1),
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#if __cplusplus <= 199711L
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// expected-error@-2 2{{rvalue references are a C++11 extension}}
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#endif
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S::a,
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global9,
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global10 = 0,
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global11 == 0, // expected-error {{did you mean '='}}
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global12 __attribute__(()),
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global13(0),
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global14[2],
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global15;
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void g() {
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static int a,
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b __asm__("ebx"), // expected-error {{expected ';' at end of declaration}}
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Statics:return;
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}
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}
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// PR5825
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struct test5 {};
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::new(static_cast<void*>(0)) test5; // expected-error {{expected unqualified-id}}
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// PR6782
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template<class T>
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class Class1;
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class Class2 {
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} // expected-error {{expected ';' after class}}
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typedef Class1<Class2> Type1;
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struct CodeCompleteConsumer {
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};
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void CodeCompleteConsumer::() { // expected-error {{xpected unqualified-id}}
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}
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;
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// PR4111
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void f(sqrgl); // expected-error {{unknown type name 'sqrgl'}}
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// PR9903
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struct S {
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typedef void a() { }; // expected-error {{function definition declared 'typedef'}}
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typedef void c() try { } catch(...) { } // expected-error {{function definition declared 'typedef'}}
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int n, m;
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typedef S() : n(1), m(2) { } // expected-error {{function definition declared 'typedef'}}
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};
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namespace TestIsValidAfterTypeSpecifier {
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struct s {} v;
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namespace a {
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struct s operator++(struct s a)
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{ return a; }
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}
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namespace b {
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// The newline after s should make no difference.
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struct s
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operator++(struct s a)
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{ return a; }
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}
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struct X {
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struct s
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friend f();
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struct s
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virtual f();
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};
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struct s
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&r0 = v;
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struct s
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bitand r2 = v;
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}
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struct DIE {
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void foo() {}
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};
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void test (DIE die, DIE *Die, DIE INT, DIE *FLOAT) {
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DIE.foo(); // expected-error {{cannot use dot operator on a type}}
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die.foo();
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DIE->foo(); // expected-error {{cannot use arrow operator on a type}}
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Die->foo();
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int.foo(); // expected-error {{cannot use dot operator on a type}}
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INT.foo();
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float->foo(); // expected-error {{cannot use arrow operator on a type}}
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FLOAT->foo();
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}
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namespace PR15017 {
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template<typename T = struct X { int i; }> struct S {}; // expected-error {{'PR15017::X' cannot be defined in a type specifier}}
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}
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// Ensure we produce at least some diagnostic for attributes in C++98.
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[[]] struct S; // expected-error {{misplaced attributes}}
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#if __cplusplus < 201103L
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// expected-error@-2 {{[[]] attributes are a C++11 extension}}
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#endif
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namespace test7 {
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struct Foo {
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void a();
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void b();
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};
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void Foo::
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// Comment!
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a() {}
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void Foo:: // expected-error {{expected unqualified-id}}
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// Comment!
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}
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void test8() {
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struct {} o;
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// This used to crash.
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(&o)->(); // expected-error{{expected unqualified-id}}
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}
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namespace PR5066 {
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template<typename T> struct X {};
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X<int N> x; // expected-error {{type-id cannot have a name}}
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using T = int (*T)(); // expected-error {{type-id cannot have a name}}
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#if __cplusplus <= 199711L
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// expected-error@-2 {{alias declarations are a C++11 extensio}}
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#endif
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}
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namespace PR17255 {
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void foo() {
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typename A::template B<> c; // expected-error {{use of undeclared identifier 'A'}}
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#if __cplusplus <= 199711L
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// expected-error@-2 {{'template' keyword outside of a template}}
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#endif
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}
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}
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namespace PR17567 {
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struct Foobar { // expected-note 2{{declared here}}
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FooBar(); // expected-error {{missing return type for function 'FooBar'; did you mean the constructor name 'Foobar'?}}
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~FooBar(); // expected-error {{undeclared identifier 'FooBar' in destructor name}}
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};
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FooBar::FooBar() {} // expected-error {{undeclared}} expected-error {{missing return type}}
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FooBar::~FooBar() {} // expected-error 2{{undeclared}}
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}
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namespace DuplicateFriend {
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struct A {
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friend void friend f(); // expected-warning {{duplicate 'friend' declaration specifier}}
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friend struct B friend; // expected-warning {{duplicate 'friend' declaration specifier}}
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};
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}
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namespace NNS {
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struct A {};
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namespace B { extern A C1, C2, *C3, C4[], C5; }
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// Do not produce a redundant parentheses warning here; removing these parens
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// changes the meaning of the program.
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A (::NNS::B::C1);
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A (NNS::B::C2); // expected-warning {{redundant parentheses surrounding declarator}}
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A (*::NNS::B::C3); // expected-warning {{redundant parentheses surrounding declarator}}
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A (::NNS::B::C4[2]);
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// Removing one of these sets of parentheses would be reasonable.
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A ((::NNS::B::C5)); // expected-warning {{redundant parentheses surrounding declarator}}
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void f() {
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// FIXME: A vexing-parse warning here would be useful.
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A(::NNS::B::C1); // expected-error {{definition or redeclaration}}
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A(NNS::B::C1); // expected-warning {{redundant paren}} expected-error {{definition or redeclaration}}
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}
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}
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inline namespace ParensAroundFriend { // expected-error 0-1{{C++11}}
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struct A {};
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struct B {
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static A C();
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};
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namespace X {
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struct B {};
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struct D {
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// No warning here: while this could be written as
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// friend (::B::C)();
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// we do need parentheses *somewhere* here.
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friend A (::B::C());
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};
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}
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}
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namespace rdar37099386 {
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class A typename A; // expected-error {{expected a qualified name after 'typename'}}
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// expected-error@-1 {{cannot combine with previous 'class' declaration specifier}}
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}
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// PR8380
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extern "" // expected-error {{unknown linkage language}}
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test6a { ;// expected-error {{a type specifier is required for all declarations}}
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#if __cplusplus <= 199711L
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// expected-error@-2 {{expected ';' after top level declarator}}
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#else
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// expected-error@-4 {{expected expression}}
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// expected-note@-5 {{to match this}}
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#endif
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int test6b;
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#if __cplusplus >= 201103L
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// expected-error@+3 {{expected}}
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// expected-error@-3 {{expected ';' after top level declarator}}
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#endif
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