forked from OSchip/llvm-project
only update the llvm type for a struct when we used the struct
previously in an opaque context. If we didn't do this, computing its layout could be wasted: just be lazy. llvm-svn: 46802
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@ -128,23 +128,19 @@ const llvm::Type *CodeGenTypes::ConvertTypeForMem(QualType T) {
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/// UpdateCompletedType - When we find the full definition for a TagDecl,
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/// replace the 'opaque' type we previously made for it if applicable.
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void CodeGenTypes::UpdateCompletedType(const TagDecl *TD) {
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// Get the LLVM type for this TagDecl. If it is non-opaque or if this decl
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// is still a forward declaration, just return.
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QualType NewTy = Context.getTagDeclType(const_cast<TagDecl *>(TD));
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const llvm::Type *T = ConvertType(NewTy);
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if (!isa<llvm::OpaqueType>(T))
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return;
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// Remember the opaque LLVM type for this tagdecl.
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llvm::DenseMap<const TagDecl*, llvm::PATypeHolder>::iterator TDTI =
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TagDeclTypes.find(TD);
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TagDeclTypes.find(TD);
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if (TDTI == TagDeclTypes.end()) return;
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// Remember the opaque LLVM type for this tagdecl.
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llvm::PATypeHolder OpaqueHolder = TDTI->second;
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assert(isa<llvm::OpaqueType>(OpaqueHolder.get()) &&
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"Forcing compilation of non-opaque type?");
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"Updating compilation of an already non-opaque type?");
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// Remove it from TagDeclTypes so that it will be regenerated.
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TagDeclTypes.erase(TDTI);
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QualType NewTy = Context.getTagDeclType(const_cast<TagDecl*>(TD));
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const llvm::Type *NT = ConvertNewType(NewTy);
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// If getting the type didn't itself refine it, refine it to its actual type
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