pass the astconsumer into Sema's ctor, clean up some stuff in

Sema::ActOnTranslationUnitScope.  The various ObjC pieces at the top
of Sema.cpp should be moved into SemaObjC or something.



git-svn-id: https://llvm.org/svn/llvm-project/cfe/trunk@46787 91177308-0d34-0410-b5e6-96231b3b80d8
This commit is contained in:
Chris Lattner 2008-02-06 00:46:58 +00:00
Родитель e91c134d8f
Коммит 2ae34ed8ca
5 изменённых файлов: 47 добавлений и 36 удалений

Просмотреть файл

@ -38,7 +38,7 @@ void clang::ParseAST(Preprocessor &PP, ASTConsumer *Consumer, bool PrintStats) {
ASTContext Context(PP.getSourceManager(), PP.getTargetInfo(),
PP.getIdentifierTable(), PP.getSelectorTable());
Parser P(PP, *new Sema(PP, Context));
Parser P(PP, *new Sema(PP, Context, *Consumer));
PP.EnterMainSourceFile();
// Initialize the parser.

Просмотреть файл

@ -42,43 +42,44 @@ bool Sema::isObjCObjectPointerType(QualType type) const {
void Sema::ActOnTranslationUnitScope(SourceLocation Loc, Scope *S) {
TUScope = S;
if (PP.getLangOptions().ObjC1) {
TypedefType *t;
// Add the built-in ObjC types.
t = dyn_cast<TypedefType>(Context.getObjCIdType().getTypePtr());
t->getDecl()->getIdentifier()->setFETokenInfo(t->getDecl());
TUScope->AddDecl(t->getDecl());
t = dyn_cast<TypedefType>(Context.getObjCClassType().getTypePtr());
t->getDecl()->getIdentifier()->setFETokenInfo(t->getDecl());
TUScope->AddDecl(t->getDecl());
ObjCInterfaceType *it = dyn_cast<ObjCInterfaceType>(Context.getObjCProtoType());
ObjCInterfaceDecl *IDecl = it->getDecl();
IDecl->getIdentifier()->setFETokenInfo(IDecl);
TUScope->AddDecl(IDecl);
t = dyn_cast<TypedefType>(Context.getObjCSelType().getTypePtr());
t->getDecl()->getIdentifier()->setFETokenInfo(t->getDecl());
TUScope->AddDecl(t->getDecl());
}
if (!PP.getLangOptions().ObjC1) return;
TypedefType *t;
// Add the built-in ObjC types.
t = cast<TypedefType>(Context.getObjCIdType().getTypePtr());
t->getDecl()->getIdentifier()->setFETokenInfo(t->getDecl());
TUScope->AddDecl(t->getDecl());
t = cast<TypedefType>(Context.getObjCClassType().getTypePtr());
t->getDecl()->getIdentifier()->setFETokenInfo(t->getDecl());
TUScope->AddDecl(t->getDecl());
ObjCInterfaceType *it = cast<ObjCInterfaceType>(Context.getObjCProtoType());
ObjCInterfaceDecl *IDecl = it->getDecl();
IDecl->getIdentifier()->setFETokenInfo(IDecl);
TUScope->AddDecl(IDecl);
t = cast<TypedefType>(Context.getObjCSelType().getTypePtr());
t->getDecl()->getIdentifier()->setFETokenInfo(t->getDecl());
TUScope->AddDecl(t->getDecl());
}
Sema::Sema(Preprocessor &pp, ASTContext &ctxt)
: PP(pp), Context(ctxt), CurFunctionDecl(0), CurMethodDecl(0) {
Sema::Sema(Preprocessor &pp, ASTContext &ctxt, ASTConsumer &consumer)
: PP(pp), Context(ctxt), Consumer(consumer),
CurFunctionDecl(0), CurMethodDecl(0) {
// Get IdentifierInfo objects for known functions for which we
// do extra checking.
IdentifierTable& IT = PP.getIdentifierTable();
IdentifierTable &IT = PP.getIdentifierTable();
KnownFunctionIDs[ id_printf ] = &IT.get("printf");
KnownFunctionIDs[ id_fprintf ] = &IT.get("fprintf");
KnownFunctionIDs[ id_sprintf ] = &IT.get("sprintf");
KnownFunctionIDs[ id_snprintf ] = &IT.get("snprintf");
KnownFunctionIDs[ id_asprintf ] = &IT.get("asprintf");
KnownFunctionIDs[ id_vsnprintf ] = &IT.get("vsnprintf");
KnownFunctionIDs[ id_vasprintf ] = &IT.get("vasprintf");
KnownFunctionIDs[ id_vfprintf ] = &IT.get("vfprintf");
KnownFunctionIDs[ id_vsprintf ] = &IT.get("vsprintf");
KnownFunctionIDs[ id_vprintf ] = &IT.get("vprintf");
KnownFunctionIDs[id_printf] = &IT.get("printf");
KnownFunctionIDs[id_fprintf] = &IT.get("fprintf");
KnownFunctionIDs[id_sprintf] = &IT.get("sprintf");
KnownFunctionIDs[id_snprintf] = &IT.get("snprintf");
KnownFunctionIDs[id_asprintf] = &IT.get("asprintf");
KnownFunctionIDs[id_vsnprintf] = &IT.get("vsnprintf");
KnownFunctionIDs[id_vasprintf] = &IT.get("vasprintf");
KnownFunctionIDs[id_vfprintf] = &IT.get("vfprintf");
KnownFunctionIDs[id_vsprintf] = &IT.get("vsprintf");
KnownFunctionIDs[id_vprintf] = &IT.get("vprintf");
if (PP.getLangOptions().ObjC1) {
// Synthesize "typedef struct objc_class *Class;"

Просмотреть файл

@ -29,6 +29,7 @@ namespace llvm {
namespace clang {
class ASTContext;
class ASTConsumer;
class Preprocessor;
class Decl;
class ScopedDecl;
@ -60,8 +61,8 @@ namespace clang {
/// Sema - This implements semantic analysis and AST building for C.
class Sema : public Action {
Preprocessor &PP;
ASTContext &Context;
ASTConsumer &Consumer;
/// CurFunctionDecl - If inside of a function body, this contains a pointer to
/// the function decl for the function being parsed.
@ -139,7 +140,7 @@ class Sema : public Action {
llvm::DenseMap<Selector, ObjCMethodList> InstanceMethodPool;
llvm::DenseMap<Selector, ObjCMethodList> FactoryMethodPool;
public:
Sema(Preprocessor &pp, ASTContext &ctxt);
Sema(Preprocessor &pp, ASTContext &ctxt, ASTConsumer &consumer);
const LangOptions &getLangOptions() const;

Просмотреть файл

@ -624,8 +624,8 @@
DEC8D98B0A9433BC00353FCA /* AST */ = {
isa = PBXGroup;
children = (
35BFBD2B0C9EDE1E006CB644 /* ASTConsumer.h */,
DEC8D9A30A94346E00353FCA /* AST.h */,
35BFBD2B0C9EDE1E006CB644 /* ASTConsumer.h */,
DE75ED280B044DC90020CF81 /* ASTContext.h */,
DED676D00B6C786700AAD4A3 /* Builtins.def */,
DED676F90B6C797B00AAD4A3 /* Builtins.h */,

Просмотреть файл

@ -17,6 +17,8 @@
namespace clang {
class ASTContext;
class Decl;
class TagDecl;
class HandleTagDeclDefinition;
/// ASTConsumer - This is an abstract interface that should be implemented by
/// clients that read ASTs. This abstraction layer allows the client to be
@ -31,7 +33,7 @@ public:
/// HandleTopLevelDecl - Handle the specified top-level declaration. This is
/// called by HandleTopLevelDeclaration to process every top-level Decl*.
virtual void HandleTopLevelDecl(Decl *D) {};
virtual void HandleTopLevelDecl(Decl *D) {}
/// HandleTopLevelDeclaration - Handle the specified top-level declaration.
@ -40,6 +42,13 @@ public:
/// can override its behavior; by default it calls HandleTopLevelDecl
/// for every Decl* in a decl chain.
virtual void HandleTopLevelDeclaration(Decl *D);
/// HandleTagDeclDefinition - This callback is invoked each time a TagDecl
/// (e.g. struct, union, enum, class) is completed. This allows the client to
/// hack on the type, which can occur at any point in the file (because these
/// can be defined in declspecs).
virtual void HandleTagDeclDefinition(TagDecl *D) {}
/// PrintStats - If desired, print any statistics.
virtual void PrintStats() {