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Rather than simply saying "X is not a class or namespace", clarify what X is by providing the aka type in the case where X is a type, or pointing to the named declaration if there's an unambiguous one to refer to. In the ambiguous case, the ambiguities are already enumerated (though could be clarified by describing what kind of entities they are) Included a few FIXMEs in tests where some further improvements could be made. llvm-svn: 201038
293 lines
7.7 KiB
C++
293 lines
7.7 KiB
C++
// RUN: %clang_cc1 -Wreorder -fsyntax-only -verify %s
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class A {
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int m;
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public:
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A() : A::m(17) { } // expected-error {{member initializer 'm' does not name a non-static data member or base class}}
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A(int);
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};
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class B : public A {
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public:
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B() : A(), m(1), n(3.14) { }
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private:
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int m;
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float n;
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};
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class C : public virtual B {
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public:
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C() : B() { }
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};
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class D : public C {
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public:
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D() : B(), C() { }
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};
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class E : public D, public B {
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public:
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E() : B(), D() { } // expected-error{{base class initializer 'B' names both a direct base class and an inherited virtual base class}}
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};
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typedef int INT;
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class F : public B {
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public:
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int B;
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F() : B(17),
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m(17), // expected-error{{member initializer 'm' does not name a non-static data member or base class}}
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INT(17) // expected-error{{constructor initializer 'INT' (aka 'int') does not name a class}}
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{
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}
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};
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class G : A {
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G() : A(10); // expected-error{{expected '{'}}
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};
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void f() : a(242) { } // expected-error{{only constructors take base initializers}}
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class H : A {
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H();
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};
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H::H() : A(10) { }
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class X {};
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class Y {};
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struct S : Y, virtual X {
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S ();
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};
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struct Z : S {
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Z() : X(), S(), E() {} // expected-error {{type 'E' is not a direct or virtual base of 'Z'}}
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};
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class U {
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union { int a; char* p; };
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union { int b; double d; };
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U() : a(1), // expected-note {{previous initialization is here}}
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p(0), // expected-error {{initializing multiple members of union}}
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d(1.0) {}
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};
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struct V {};
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struct Base {};
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struct Base1 {};
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struct Derived : Base, Base1, virtual V {
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Derived ();
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};
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struct Current : Derived {
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int Derived;
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Current() : Derived(1), ::Derived(), // expected-warning {{field 'Derived' will be initialized after base '::Derived'}} \
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// expected-warning {{base class '::Derived' will be initialized after base 'Derived::V'}}
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::Derived::Base(), // expected-error {{type '::Derived::Base' is not a direct or virtual base of 'Current'}}
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Derived::Base1(), // expected-error {{type 'Derived::Base1' is not a direct or virtual base of 'Current'}}
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Derived::V(),
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::NonExisting(), // expected-error {{member initializer 'NonExisting' does not name a non-static data member or}}
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INT::NonExisting() {} // expected-error {{'INT' (aka 'int') is not a class, namespace, or scoped enumeration}} \
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// expected-error {{member initializer 'NonExisting' does not name a non-static data member or}}
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};
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struct M { // expected-note 2 {{candidate constructor (the implicit copy constructor)}} \
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// expected-note {{declared here}} \
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// expected-note {{declared here}}
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M(int i, int j); // expected-note 2 {{candidate constructor}}
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};
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struct N : M {
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N() : M(1), // expected-error {{no matching constructor for initialization of 'M'}}
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m1(100) { } // expected-error {{no matching constructor for initialization of 'M'}}
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M m1;
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};
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struct P : M {
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P() { } // expected-error {{constructor for 'P' must explicitly initialize the base class 'M' which does not have a default constructor}} \
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// expected-error {{member 'm'}}
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M m; // expected-note {{member is declared here}}
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};
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struct Q {
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Q() : f1(1,2), // expected-error {{excess elements in scalar initializer}}
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pf(0.0) { } // expected-error {{cannot initialize a member subobject of type 'float *' with an rvalue of type 'double'}}
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float f1;
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float *pf;
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};
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// A silly class used to demonstrate field-is-uninitialized in constructors with
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// multiple params.
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int IntParam(int i) { return 0; };
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class TwoInOne { public: TwoInOne(TwoInOne a, TwoInOne b) {} };
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class InitializeUsingSelfTest {
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bool A;
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char* B;
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int C;
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TwoInOne D;
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int E;
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InitializeUsingSelfTest(int F)
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: A(A), // expected-warning {{field 'A' is uninitialized when used here}}
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B((((B)))), // expected-warning {{field 'B' is uninitialized when used here}}
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C(A && InitializeUsingSelfTest::C), // expected-warning {{field 'C' is uninitialized when used here}}
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D(D, // expected-warning {{field 'D' is uninitialized when used here}}
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D), // expected-warning {{field 'D' is uninitialized when used here}}
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E(IntParam(E)) {} // expected-warning {{field 'E' is uninitialized when used here}}
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};
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int IntWrapper(int &i) { return 0; };
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class InitializeUsingSelfExceptions {
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int A;
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int B;
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int C;
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void *P;
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InitializeUsingSelfExceptions(int B)
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: A(IntWrapper(A)), // Due to a conservative implementation, we do not report warnings inside function/ctor calls even though it is possible to do so.
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B(B), // Not a warning; B is a local variable.
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C(sizeof(C)), // sizeof doesn't reference contents, do not warn
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P(&P) {} // address-of doesn't reference contents (the pointer may be dereferenced in the same expression but it would be rare; and weird)
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};
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class CopyConstructorTest {
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bool A, B, C;
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CopyConstructorTest(const CopyConstructorTest& rhs)
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: A(rhs.A),
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B(B), // expected-warning {{field 'B' is uninitialized when used here}}
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C(rhs.C || C) { } // expected-warning {{field 'C' is uninitialized when used here}}
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};
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// Make sure we aren't marking default constructors when we shouldn't be.
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template<typename T>
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struct NDC {
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T &ref;
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NDC() { }
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NDC(T &ref) : ref(ref) { }
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};
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struct X0 : NDC<int> {
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X0(int &ref) : NDC<int>(ref), ndc(ref) { }
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NDC<int> ndc;
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};
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namespace Test0 {
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struct A { A(); };
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struct B {
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B() { }
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const A a;
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};
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}
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namespace Test1 {
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struct A {
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enum Kind { Foo } Kind;
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A() : Kind(Foo) {}
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};
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}
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namespace Test2 {
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struct A {
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A(const A&);
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};
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struct B : virtual A { };
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struct C : A, B { };
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C f(C c) {
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return c;
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}
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}
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// Don't build implicit initializers for anonymous union fields when we already
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// have an explicit initializer for another field in the union.
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namespace PR7402 {
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struct S {
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union {
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void* ptr_;
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struct { int i_; };
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};
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template <typename T> S(T) : ptr_(0) { }
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};
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void f() {
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S s(3);
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}
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}
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// <rdar://problem/8308215>: don't crash.
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// Lots of questionable recovery here; errors can change.
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namespace test3 {
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class A : public std::exception {}; // expected-error {{undeclared identifier}} expected-error {{expected class name}} expected-note 2 {{candidate}}
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class B : public A {
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public:
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B(const String& s, int e=0) // expected-error {{unknown type name}}
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: A(e), m_String(s) , m_ErrorStr(__null) {} // expected-error {{no matching constructor}} expected-error {{does not name}}
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B(const B& e)
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: A(e), m_String(e.m_String), m_ErrorStr(__null) { // expected-error {{does not name}} \
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// expected-error {{no member named 'm_String' in 'test3::B'}}
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}
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};
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}
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// PR8075
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namespace PR8075 {
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struct S1 {
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enum { FOO = 42 };
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static const int bar = 42;
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static int baz();
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S1(int);
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};
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const int S1::bar;
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struct S2 {
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S1 s1;
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S2() : s1(s1.FOO) {}
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};
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struct S3 {
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S1 s1;
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S3() : s1(s1.bar) {}
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};
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struct S4 {
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S1 s1;
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S4() : s1(s1.baz()) {}
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};
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}
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namespace PR12049 {
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int function();
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class Class
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{
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public:
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Class() : member(function() {} // expected-note {{to match this '('}}
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int member; // expected-error {{expected ')'}}
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};
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}
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namespace PR14073 {
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struct S1 { union { int n; }; S1() : n(n) {} }; // expected-warning {{field 'n' is uninitialized when used here}}
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struct S2 { union { union { int n; }; char c; }; S2() : n(n) {} }; // expected-warning {{field 'n' is uninitialized when used here}}
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struct S3 { struct { int n; }; S3() : n(n) {} }; // expected-warning {{field 'n' is uninitialized when used here}}
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}
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