forked from OSchip/llvm-project
Add a quick-and-dirty hack to give a better diagnostic for [class.protected]
restrictions. The note's not really on the right place given its wording, but putting a second note on the call site (or muddying the wording) doesn't appeal. There are corner cases where this can be wrong, but I'm not concerned. llvm-svn: 112950
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@ -567,6 +567,8 @@ def note_access_natural : Note<
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def note_access_constrained_by_path : Note<
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"constrained by %select{|implicitly }1%select{private|protected}0"
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" inheritance here">;
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def note_access_protected_restricted : Note<
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"object type %select{|%1 }0must derive from context type %2">;
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// C++ name lookup
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def err_incomplete_nested_name_spec : Error<
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@ -930,6 +930,57 @@ static CXXBasePath *FindBestPath(Sema &S,
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return BestPath;
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}
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/// Given that an entity has protected natural access, check whether
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/// access might be denied because of the protected member access
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/// restriction.
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///
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/// \return true if a note was emitted
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static bool TryDiagnoseProtectedAccess(Sema &S, const EffectiveContext &EC,
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AccessTarget &Target) {
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// Only applies to instance accesses.
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if (!Target.hasInstanceContext())
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return false;
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assert(Target.isMemberAccess());
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NamedDecl *D = Target.getTargetDecl();
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const CXXRecordDecl *DeclaringClass = Target.getDeclaringClass();
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DeclaringClass = DeclaringClass->getCanonicalDecl();
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for (EffectiveContext::record_iterator
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I = EC.Records.begin(), E = EC.Records.end(); I != E; ++I) {
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const CXXRecordDecl *ECRecord = *I;
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switch (IsDerivedFromInclusive(ECRecord, DeclaringClass)) {
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case AR_accessible: break;
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case AR_inaccessible: continue;
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case AR_dependent: continue;
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}
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// The effective context is a subclass of the declaring class.
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// If that class isn't a superclass of the instance context,
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// then the [class.protected] restriction applies.
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// To get this exactly right, this might need to be checked more
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// holistically; it's not necessarily the case that gaining
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// access here would grant us access overall.
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const CXXRecordDecl *InstanceContext = Target.resolveInstanceContext(S);
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assert(InstanceContext && "diagnosing dependent access");
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switch (IsDerivedFromInclusive(InstanceContext, ECRecord)) {
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case AR_accessible: continue;
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case AR_dependent: continue;
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case AR_inaccessible:
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S.Diag(D->getLocation(), diag::note_access_protected_restricted)
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<< (InstanceContext != Target.getNamingClass()->getCanonicalDecl())
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<< S.Context.getTypeDeclType(InstanceContext)
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<< S.Context.getTypeDeclType(ECRecord);
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return true;
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}
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}
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return false;
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}
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/// Diagnose the path which caused the given declaration or base class
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/// to become inaccessible.
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static void DiagnoseAccessPath(Sema &S,
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@ -948,6 +999,10 @@ static void DiagnoseAccessPath(Sema &S,
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if (D && (Access == D->getAccess() || D->getAccess() == AS_private)) {
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switch (HasAccess(S, EC, DeclaringClass, D->getAccess(), Entity)) {
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case AR_inaccessible: {
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if (Access == AS_protected &&
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TryDiagnoseProtectedAccess(S, EC, Entity))
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return;
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S.Diag(D->getLocation(), diag::note_access_natural)
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<< (unsigned) (Access == AS_protected)
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<< /*FIXME: not implicitly*/ 0;
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@ -68,7 +68,7 @@ namespace test1 {
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namespace test2 {
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class A {
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protected: int x; // expected-note 3 {{declared}}
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protected: int x; // expected-note 3 {{object type must derive}}
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static int sx;
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static void test(A&);
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};
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@ -103,7 +103,7 @@ namespace test2 {
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namespace test3 {
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class B;
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class A {
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protected: int x; // expected-note {{declared}}
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protected: int x; // expected-note {{object type must derive}}
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static int sx;
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static void test(B&);
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};
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@ -138,7 +138,7 @@ namespace test3 {
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namespace test4 {
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class C;
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class A {
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protected: int x; // expected-note 3 {{declared}}
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protected: int x; // expected-note {{declared}} expected-note 2 {{object type must derive}}
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static int sx; // expected-note 3{{member is declared here}}
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static void test(C&);
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};
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@ -215,7 +215,7 @@ namespace test6 {
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class Static {};
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class A {
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protected:
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void foo(int); // expected-note 3 {{declared}}
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void foo(int); // expected-note 3 {{object type must derive}}
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void foo(long);
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static void foo(Static);
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@ -253,7 +253,7 @@ namespace test7 {
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class Static {};
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class A {
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protected:
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void foo(int); // expected-note 3 {{declared}}
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void foo(int); // expected-note 3 {{object type must derive}}
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void foo(long);
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static void foo(Static);
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@ -291,7 +291,7 @@ namespace test8 {
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class Static {};
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class A {
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protected:
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void foo(int); // expected-note 3 {{declared}}
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void foo(int); // expected-note 3 {{object type must derive}}
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void foo(long);
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static void foo(Static);
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@ -329,7 +329,7 @@ namespace test8 {
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namespace test9 {
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class A { // expected-note {{member is declared here}}
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protected: int foo(); // expected-note 7 {{declared}}
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protected: int foo(); // expected-note 4 {{declared}} expected-note 2 {{object type must derive}} expected-note {{object type 'test9::A' must derive}}
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};
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class B : public A { // expected-note {{member is declared here}}
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@ -372,7 +372,7 @@ namespace test15 {
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int private_foo; // expected-note {{declared private here}}
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static int private_sfoo; // expected-note {{declared private here}}
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protected:
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int protected_foo; // expected-note 4 {{declared protected here}}
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int protected_foo; // expected-note 3 {{declared protected here}} // expected-note {{object type must derive from context type 'test15::B<int>'}}
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static int protected_sfoo; // expected-note 3 {{declared protected here}}
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int test1(A<int> &a) {
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