1 //===- IdentifierResolver.cpp - Lexical Scope Name lookup -------*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements the IdentifierResolver class, which is used for lexical
11 // scoped lookup, based on declaration names.
12 //
13 //===----------------------------------------------------------------------===//
14 
15 #include "clang/Sema/IdentifierResolver.h"
16 #include "clang/AST/Decl.h"
17 #include "clang/Basic/LangOptions.h"
18 #include "clang/Lex/ExternalPreprocessorSource.h"
19 #include "clang/Lex/Preprocessor.h"
20 #include "clang/Sema/Scope.h"
21 
22 using namespace clang;
23 
24 //===----------------------------------------------------------------------===//
25 // IdDeclInfoMap class
26 //===----------------------------------------------------------------------===//
27 
28 /// IdDeclInfoMap - Associates IdDeclInfos with declaration names.
29 /// Allocates 'pools' (vectors of IdDeclInfos) to avoid allocating each
30 /// individual IdDeclInfo to heap.
31 class IdentifierResolver::IdDeclInfoMap {
32   static const unsigned int POOL_SIZE = 512;
33 
34   /// We use our own linked-list implementation because it is sadly
35   /// impossible to add something to a pre-C++0x STL container without
36   /// a completely unnecessary copy.
37   struct IdDeclInfoPool {
38     IdDeclInfoPool(IdDeclInfoPool *Next) : Next(Next) {}
39 
40     IdDeclInfoPool *Next;
41     IdDeclInfo Pool[POOL_SIZE];
42   };
43 
44   IdDeclInfoPool *CurPool;
45   unsigned int CurIndex;
46 
47 public:
48   IdDeclInfoMap() : CurPool(0), CurIndex(POOL_SIZE) {}
49 
50   ~IdDeclInfoMap() {
51     IdDeclInfoPool *Cur = CurPool;
52     while (IdDeclInfoPool *P = Cur) {
53       Cur = Cur->Next;
54       delete P;
55     }
56   }
57 
58   /// Returns the IdDeclInfo associated to the DeclarationName.
59   /// It creates a new IdDeclInfo if one was not created before for this id.
60   IdDeclInfo &operator[](DeclarationName Name);
61 };
62 
63 
64 //===----------------------------------------------------------------------===//
65 // IdDeclInfo Implementation
66 //===----------------------------------------------------------------------===//
67 
68 /// RemoveDecl - Remove the decl from the scope chain.
69 /// The decl must already be part of the decl chain.
70 void IdentifierResolver::IdDeclInfo::RemoveDecl(NamedDecl *D) {
71   for (DeclsTy::iterator I = Decls.end(); I != Decls.begin(); --I) {
72     if (D == *(I-1)) {
73       Decls.erase(I-1);
74       return;
75     }
76   }
77 
78   llvm_unreachable("Didn't find this decl on its identifier's chain!");
79 }
80 
81 //===----------------------------------------------------------------------===//
82 // IdentifierResolver Implementation
83 //===----------------------------------------------------------------------===//
84 
85 IdentifierResolver::IdentifierResolver(Preprocessor &PP)
86   : LangOpt(PP.getLangOpts()), PP(PP),
87     IdDeclInfos(new IdDeclInfoMap) {
88 }
89 
90 IdentifierResolver::~IdentifierResolver() {
91   delete IdDeclInfos;
92 }
93 
94 /// isDeclInScope - If 'Ctx' is a function/method, isDeclInScope returns true
95 /// if 'D' is in Scope 'S', otherwise 'S' is ignored and isDeclInScope returns
96 /// true if 'D' belongs to the given declaration context.
97 bool IdentifierResolver::isDeclInScope(Decl *D, DeclContext *Ctx, Scope *S,
98                                        bool AllowInlineNamespace) const {
99   Ctx = Ctx->getRedeclContext();
100 
101   if (Ctx->isFunctionOrMethod() || S->isFunctionPrototypeScope()) {
102     // Ignore the scopes associated within transparent declaration contexts.
103     while (S->getEntity() && S->getEntity()->isTransparentContext())
104       S = S->getParent();
105 
106     if (S->isDeclScope(D))
107       return true;
108     if (LangOpt.CPlusPlus) {
109       // C++ 3.3.2p3:
110       // The name declared in a catch exception-declaration is local to the
111       // handler and shall not be redeclared in the outermost block of the
112       // handler.
113       // C++ 3.3.2p4:
114       // Names declared in the for-init-statement, and in the condition of if,
115       // while, for, and switch statements are local to the if, while, for, or
116       // switch statement (including the controlled statement), and shall not be
117       // redeclared in a subsequent condition of that statement nor in the
118       // outermost block (or, for the if statement, any of the outermost blocks)
119       // of the controlled statement.
120       //
121       assert(S->getParent() && "No TUScope?");
122       if (S->getParent()->getFlags() & Scope::ControlScope) {
123         S = S->getParent();
124         if (S->isDeclScope(D))
125           return true;
126       }
127       if (S->getFlags() & Scope::FnTryCatchScope)
128         return S->getParent()->isDeclScope(D);
129     }
130     return false;
131   }
132 
133   DeclContext *DCtx = D->getDeclContext()->getRedeclContext();
134   return AllowInlineNamespace ? Ctx->InEnclosingNamespaceSetOf(DCtx)
135                               : Ctx->Equals(DCtx);
136 }
137 
138 /// AddDecl - Link the decl to its shadowed decl chain.
139 void IdentifierResolver::AddDecl(NamedDecl *D) {
140   DeclarationName Name = D->getDeclName();
141   if (IdentifierInfo *II = Name.getAsIdentifierInfo())
142     updatingIdentifier(*II);
143 
144   void *Ptr = Name.getFETokenInfo<void>();
145 
146   if (!Ptr) {
147     Name.setFETokenInfo(D);
148     return;
149   }
150 
151   IdDeclInfo *IDI;
152 
153   if (isDeclPtr(Ptr)) {
154     Name.setFETokenInfo(NULL);
155     IDI = &(*IdDeclInfos)[Name];
156     NamedDecl *PrevD = static_cast<NamedDecl*>(Ptr);
157     IDI->AddDecl(PrevD);
158   } else
159     IDI = toIdDeclInfo(Ptr);
160 
161   IDI->AddDecl(D);
162 }
163 
164 void IdentifierResolver::InsertDeclAfter(iterator Pos, NamedDecl *D) {
165   DeclarationName Name = D->getDeclName();
166   if (IdentifierInfo *II = Name.getAsIdentifierInfo())
167     updatingIdentifier(*II);
168 
169   void *Ptr = Name.getFETokenInfo<void>();
170 
171   if (!Ptr) {
172     AddDecl(D);
173     return;
174   }
175 
176   if (isDeclPtr(Ptr)) {
177     // We only have a single declaration: insert before or after it,
178     // as appropriate.
179     if (Pos == iterator()) {
180       // Add the new declaration before the existing declaration.
181       NamedDecl *PrevD = static_cast<NamedDecl*>(Ptr);
182       RemoveDecl(PrevD);
183       AddDecl(D);
184       AddDecl(PrevD);
185     } else {
186       // Add new declaration after the existing declaration.
187       AddDecl(D);
188     }
189 
190     return;
191   }
192 
193   // General case: insert the declaration at the appropriate point in the
194   // list, which already has at least two elements.
195   IdDeclInfo *IDI = toIdDeclInfo(Ptr);
196   if (Pos.isIterator()) {
197     IDI->InsertDecl(Pos.getIterator() + 1, D);
198   } else
199     IDI->InsertDecl(IDI->decls_begin(), D);
200 }
201 
202 /// RemoveDecl - Unlink the decl from its shadowed decl chain.
203 /// The decl must already be part of the decl chain.
204 void IdentifierResolver::RemoveDecl(NamedDecl *D) {
205   assert(D && "null param passed");
206   DeclarationName Name = D->getDeclName();
207   if (IdentifierInfo *II = Name.getAsIdentifierInfo())
208     updatingIdentifier(*II);
209 
210   void *Ptr = Name.getFETokenInfo<void>();
211 
212   assert(Ptr && "Didn't find this decl on its identifier's chain!");
213 
214   if (isDeclPtr(Ptr)) {
215     assert(D == Ptr && "Didn't find this decl on its identifier's chain!");
216     Name.setFETokenInfo(NULL);
217     return;
218   }
219 
220   return toIdDeclInfo(Ptr)->RemoveDecl(D);
221 }
222 
223 /// begin - Returns an iterator for decls with name 'Name'.
224 IdentifierResolver::iterator
225 IdentifierResolver::begin(DeclarationName Name) {
226   if (IdentifierInfo *II = Name.getAsIdentifierInfo())
227     readingIdentifier(*II);
228 
229   void *Ptr = Name.getFETokenInfo<void>();
230   if (!Ptr) return end();
231 
232   if (isDeclPtr(Ptr))
233     return iterator(static_cast<NamedDecl*>(Ptr));
234 
235   IdDeclInfo *IDI = toIdDeclInfo(Ptr);
236 
237   IdDeclInfo::DeclsTy::iterator I = IDI->decls_end();
238   if (I != IDI->decls_begin())
239     return iterator(I-1);
240   // No decls found.
241   return end();
242 }
243 
244 namespace {
245   enum DeclMatchKind {
246     DMK_Different,
247     DMK_Replace,
248     DMK_Ignore
249   };
250 }
251 
252 /// \brief Compare two declarations to see whether they are different or,
253 /// if they are the same, whether the new declaration should replace the
254 /// existing declaration.
255 static DeclMatchKind compareDeclarations(NamedDecl *Existing, NamedDecl *New) {
256   // If the declarations are identical, ignore the new one.
257   if (Existing == New)
258     return DMK_Ignore;
259 
260   // If the declarations have different kinds, they're obviously different.
261   if (Existing->getKind() != New->getKind())
262     return DMK_Different;
263 
264   // If the declarations are redeclarations of each other, keep the newest one.
265   if (Existing->getCanonicalDecl() == New->getCanonicalDecl()) {
266     // If either of these is the most recent declaration, use it.
267     Decl *MostRecent = Existing->getMostRecentDecl();
268     if (Existing == MostRecent)
269       return DMK_Ignore;
270 
271     if (New == MostRecent)
272       return DMK_Replace;
273 
274     // If the existing declaration is somewhere in the previous declaration
275     // chain of the new declaration, then prefer the new declaration.
276     for (Decl::redecl_iterator RD = New->redecls_begin(),
277                             RDEnd = New->redecls_end();
278          RD != RDEnd; ++RD) {
279       if (*RD == Existing)
280         return DMK_Replace;
281 
282       if (RD->isCanonicalDecl())
283         break;
284     }
285 
286     return DMK_Ignore;
287   }
288 
289   return DMK_Different;
290 }
291 
292 bool IdentifierResolver::tryAddTopLevelDecl(NamedDecl *D, DeclarationName Name){
293   if (IdentifierInfo *II = Name.getAsIdentifierInfo())
294     readingIdentifier(*II);
295 
296   void *Ptr = Name.getFETokenInfo<void>();
297 
298   if (!Ptr) {
299     Name.setFETokenInfo(D);
300     return true;
301   }
302 
303   IdDeclInfo *IDI;
304 
305   if (isDeclPtr(Ptr)) {
306     NamedDecl *PrevD = static_cast<NamedDecl*>(Ptr);
307 
308     switch (compareDeclarations(PrevD, D)) {
309     case DMK_Different:
310       break;
311 
312     case DMK_Ignore:
313       return false;
314 
315     case DMK_Replace:
316       Name.setFETokenInfo(D);
317       return true;
318     }
319 
320     Name.setFETokenInfo(NULL);
321     IDI = &(*IdDeclInfos)[Name];
322 
323     // If the existing declaration is not visible in translation unit scope,
324     // then add the new top-level declaration first.
325     if (!PrevD->getDeclContext()->getRedeclContext()->isTranslationUnit()) {
326       IDI->AddDecl(D);
327       IDI->AddDecl(PrevD);
328     } else {
329       IDI->AddDecl(PrevD);
330       IDI->AddDecl(D);
331     }
332     return true;
333   }
334 
335   IDI = toIdDeclInfo(Ptr);
336 
337   // See whether this declaration is identical to any existing declarations.
338   // If not, find the right place to insert it.
339   for (IdDeclInfo::DeclsTy::iterator I = IDI->decls_begin(),
340                                   IEnd = IDI->decls_end();
341        I != IEnd; ++I) {
342 
343     switch (compareDeclarations(*I, D)) {
344     case DMK_Different:
345       break;
346 
347     case DMK_Ignore:
348       return false;
349 
350     case DMK_Replace:
351       *I = D;
352       return true;
353     }
354 
355     if (!(*I)->getDeclContext()->getRedeclContext()->isTranslationUnit()) {
356       // We've found a declaration that is not visible from the translation
357       // unit (it's in an inner scope). Insert our declaration here.
358       IDI->InsertDecl(I, D);
359       return true;
360     }
361   }
362 
363   // Add the declaration to the end.
364   IDI->AddDecl(D);
365   return true;
366 }
367 
368 void IdentifierResolver::readingIdentifier(IdentifierInfo &II) {
369   if (II.isOutOfDate())
370     PP.getExternalSource()->updateOutOfDateIdentifier(II);
371 }
372 
373 void IdentifierResolver::updatingIdentifier(IdentifierInfo &II) {
374   if (II.isOutOfDate())
375     PP.getExternalSource()->updateOutOfDateIdentifier(II);
376 
377   if (II.isFromAST())
378     II.setChangedSinceDeserialization();
379 }
380 
381 //===----------------------------------------------------------------------===//
382 // IdDeclInfoMap Implementation
383 //===----------------------------------------------------------------------===//
384 
385 /// Returns the IdDeclInfo associated to the DeclarationName.
386 /// It creates a new IdDeclInfo if one was not created before for this id.
387 IdentifierResolver::IdDeclInfo &
388 IdentifierResolver::IdDeclInfoMap::operator[](DeclarationName Name) {
389   void *Ptr = Name.getFETokenInfo<void>();
390 
391   if (Ptr) return *toIdDeclInfo(Ptr);
392 
393   if (CurIndex == POOL_SIZE) {
394     CurPool = new IdDeclInfoPool(CurPool);
395     CurIndex = 0;
396   }
397   IdDeclInfo *IDI = &CurPool->Pool[CurIndex];
398   Name.setFETokenInfo(reinterpret_cast<void*>(
399                               reinterpret_cast<uintptr_t>(IDI) | 0x1)
400                                                                      );
401   ++CurIndex;
402   return *IDI;
403 }
404 
405 void IdentifierResolver::iterator::incrementSlowCase() {
406   NamedDecl *D = **this;
407   void *InfoPtr = D->getDeclName().getFETokenInfo<void>();
408   assert(!isDeclPtr(InfoPtr) && "Decl with wrong id ?");
409   IdDeclInfo *Info = toIdDeclInfo(InfoPtr);
410 
411   BaseIter I = getIterator();
412   if (I != Info->decls_begin())
413     *this = iterator(I-1);
414   else // No more decls.
415     *this = iterator();
416 }
417