1 //===--- ASTDiagnostic.cpp - Diagnostic Printing Hooks for AST Nodes ------===//
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 a diagnostic formatting hook for AST elements.
11 //
12 //===----------------------------------------------------------------------===//
13 #include "clang/AST/ASTDiagnostic.h"
14 
15 #include "clang/AST/ASTContext.h"
16 #include "clang/AST/DeclObjC.h"
17 #include "clang/AST/Type.h"
18 #include "llvm/Support/raw_ostream.h"
19 
20 using namespace clang;
21 
22 // Returns a desugared version of the QualType, and marks ShouldAKA as true
23 // whenever we remove significant sugar from the type.
24 static QualType Desugar(ASTContext &Context, QualType QT, bool &ShouldAKA) {
25   QualifierCollector QC;
26 
27   while (true) {
28     const Type *Ty = QC.strip(QT);
29 
30     // Don't aka just because we saw an elaborated type...
31     if (const ElaboratedType *ET = dyn_cast<ElaboratedType>(Ty)) {
32       QT = ET->desugar();
33       continue;
34     }
35     // ... or a paren type ...
36     if (const ParenType *PT = dyn_cast<ParenType>(Ty)) {
37       QT = PT->desugar();
38       continue;
39     }
40     // ...or a substituted template type parameter ...
41     if (const SubstTemplateTypeParmType *ST =
42           dyn_cast<SubstTemplateTypeParmType>(Ty)) {
43       QT = ST->desugar();
44       continue;
45     }
46     // ...or an attributed type...
47     if (const AttributedType *AT = dyn_cast<AttributedType>(Ty)) {
48       QT = AT->desugar();
49       continue;
50     }
51     // ... or an auto type.
52     if (const AutoType *AT = dyn_cast<AutoType>(Ty)) {
53       if (!AT->isSugared())
54         break;
55       QT = AT->desugar();
56       continue;
57     }
58 
59     // Don't desugar template specializations, unless it's an alias template.
60     if (const TemplateSpecializationType *TST
61           = dyn_cast<TemplateSpecializationType>(Ty))
62       if (!TST->isTypeAlias())
63         break;
64 
65     // Don't desugar magic Objective-C types.
66     if (QualType(Ty,0) == Context.getObjCIdType() ||
67         QualType(Ty,0) == Context.getObjCClassType() ||
68         QualType(Ty,0) == Context.getObjCSelType() ||
69         QualType(Ty,0) == Context.getObjCProtoType())
70       break;
71 
72     // Don't desugar va_list.
73     if (QualType(Ty,0) == Context.getBuiltinVaListType())
74       break;
75 
76     // Otherwise, do a single-step desugar.
77     QualType Underlying;
78     bool IsSugar = false;
79     switch (Ty->getTypeClass()) {
80 #define ABSTRACT_TYPE(Class, Base)
81 #define TYPE(Class, Base) \
82 case Type::Class: { \
83 const Class##Type *CTy = cast<Class##Type>(Ty); \
84 if (CTy->isSugared()) { \
85 IsSugar = true; \
86 Underlying = CTy->desugar(); \
87 } \
88 break; \
89 }
90 #include "clang/AST/TypeNodes.def"
91     }
92 
93     // If it wasn't sugared, we're done.
94     if (!IsSugar)
95       break;
96 
97     // If the desugared type is a vector type, we don't want to expand
98     // it, it will turn into an attribute mess. People want their "vec4".
99     if (isa<VectorType>(Underlying))
100       break;
101 
102     // Don't desugar through the primary typedef of an anonymous type.
103     if (const TagType *UTT = Underlying->getAs<TagType>())
104       if (const TypedefType *QTT = dyn_cast<TypedefType>(QT))
105         if (UTT->getDecl()->getTypedefNameForAnonDecl() == QTT->getDecl())
106           break;
107 
108     // Record that we actually looked through an opaque type here.
109     ShouldAKA = true;
110     QT = Underlying;
111   }
112 
113   // If we have a pointer-like type, desugar the pointee as well.
114   // FIXME: Handle other pointer-like types.
115   if (const PointerType *Ty = QT->getAs<PointerType>()) {
116     QT = Context.getPointerType(Desugar(Context, Ty->getPointeeType(),
117                                         ShouldAKA));
118   } else if (const LValueReferenceType *Ty = QT->getAs<LValueReferenceType>()) {
119     QT = Context.getLValueReferenceType(Desugar(Context, Ty->getPointeeType(),
120                                                 ShouldAKA));
121   } else if (const RValueReferenceType *Ty = QT->getAs<RValueReferenceType>()) {
122     QT = Context.getRValueReferenceType(Desugar(Context, Ty->getPointeeType(),
123                                                 ShouldAKA));
124   }
125 
126   return QC.apply(Context, QT);
127 }
128 
129 /// \brief Convert the given type to a string suitable for printing as part of
130 /// a diagnostic.
131 ///
132 /// There are four main criteria when determining whether we should have an
133 /// a.k.a. clause when pretty-printing a type:
134 ///
135 /// 1) Some types provide very minimal sugar that doesn't impede the
136 ///    user's understanding --- for example, elaborated type
137 ///    specifiers.  If this is all the sugar we see, we don't want an
138 ///    a.k.a. clause.
139 /// 2) Some types are technically sugared but are much more familiar
140 ///    when seen in their sugared form --- for example, va_list,
141 ///    vector types, and the magic Objective C types.  We don't
142 ///    want to desugar these, even if we do produce an a.k.a. clause.
143 /// 3) Some types may have already been desugared previously in this diagnostic.
144 ///    if this is the case, doing another "aka" would just be clutter.
145 /// 4) Two different types within the same diagnostic have the same output
146 ///    string.  In this case, force an a.k.a with the desugared type when
147 ///    doing so will provide additional information.
148 ///
149 /// \param Context the context in which the type was allocated
150 /// \param Ty the type to print
151 /// \param QualTypeVals pointer values to QualTypes which are used in the
152 /// diagnostic message
153 static std::string
154 ConvertTypeToDiagnosticString(ASTContext &Context, QualType Ty,
155                               const DiagnosticsEngine::ArgumentValue *PrevArgs,
156                               unsigned NumPrevArgs,
157                               SmallVectorImpl<intptr_t> &QualTypeVals) {
158   // FIXME: Playing with std::string is really slow.
159   bool ForceAKA = false;
160   QualType CanTy = Ty.getCanonicalType();
161   std::string S = Ty.getAsString(Context.getPrintingPolicy());
162   std::string CanS = CanTy.getAsString(Context.getPrintingPolicy());
163 
164   for (SmallVectorImpl<intptr_t>::iterator I = QualTypeVals.begin(),
165        E = QualTypeVals.end(); I != E; ++I) {
166     QualType CompareTy =
167         QualType::getFromOpaquePtr(reinterpret_cast<void*>(*I));
168     if (CompareTy == Ty)
169       continue;  // Same types
170     QualType CompareCanTy = CompareTy.getCanonicalType();
171     if (CompareCanTy == CanTy)
172       continue;  // Same canonical types
173     std::string CompareS = CompareTy.getAsString(Context.getPrintingPolicy());
174     bool aka;
175     QualType CompareDesugar = Desugar(Context, CompareTy, aka);
176     std::string CompareDesugarStr =
177         CompareDesugar.getAsString(Context.getPrintingPolicy());
178     if (CompareS != S && CompareDesugarStr != S)
179       continue;  // The type string is different than the comparison string
180                  // and the desugared comparison string.
181     std::string CompareCanS =
182         CompareCanTy.getAsString(Context.getPrintingPolicy());
183 
184     if (CompareCanS == CanS)
185       continue;  // No new info from canonical type
186 
187     ForceAKA = true;
188     break;
189   }
190 
191   // Check to see if we already desugared this type in this
192   // diagnostic.  If so, don't do it again.
193   bool Repeated = false;
194   for (unsigned i = 0; i != NumPrevArgs; ++i) {
195     // TODO: Handle ak_declcontext case.
196     if (PrevArgs[i].first == DiagnosticsEngine::ak_qualtype) {
197       void *Ptr = (void*)PrevArgs[i].second;
198       QualType PrevTy(QualType::getFromOpaquePtr(Ptr));
199       if (PrevTy == Ty) {
200         Repeated = true;
201         break;
202       }
203     }
204   }
205 
206   // Consider producing an a.k.a. clause if removing all the direct
207   // sugar gives us something "significantly different".
208   if (!Repeated) {
209     bool ShouldAKA = false;
210     QualType DesugaredTy = Desugar(Context, Ty, ShouldAKA);
211     if (ShouldAKA || ForceAKA) {
212       if (DesugaredTy == Ty) {
213         DesugaredTy = Ty.getCanonicalType();
214       }
215       std::string akaStr = DesugaredTy.getAsString(Context.getPrintingPolicy());
216       if (akaStr != S) {
217         S = "'" + S + "' (aka '" + akaStr + "')";
218         return S;
219       }
220     }
221   }
222 
223   S = "'" + S + "'";
224   return S;
225 }
226 
227 void clang::FormatASTNodeDiagnosticArgument(
228     DiagnosticsEngine::ArgumentKind Kind,
229     intptr_t Val,
230     const char *Modifier,
231     unsigned ModLen,
232     const char *Argument,
233     unsigned ArgLen,
234     const DiagnosticsEngine::ArgumentValue *PrevArgs,
235     unsigned NumPrevArgs,
236     SmallVectorImpl<char> &Output,
237     void *Cookie,
238     SmallVectorImpl<intptr_t> &QualTypeVals) {
239   ASTContext &Context = *static_cast<ASTContext*>(Cookie);
240 
241   std::string S;
242   bool NeedQuotes = true;
243 
244   switch (Kind) {
245     default: llvm_unreachable("unknown ArgumentKind");
246     case DiagnosticsEngine::ak_qualtype: {
247       assert(ModLen == 0 && ArgLen == 0 &&
248              "Invalid modifier for QualType argument");
249 
250       QualType Ty(QualType::getFromOpaquePtr(reinterpret_cast<void*>(Val)));
251       S = ConvertTypeToDiagnosticString(Context, Ty, PrevArgs, NumPrevArgs,
252                                         QualTypeVals);
253       NeedQuotes = false;
254       break;
255     }
256     case DiagnosticsEngine::ak_declarationname: {
257       DeclarationName N = DeclarationName::getFromOpaqueInteger(Val);
258       S = N.getAsString();
259 
260       if (ModLen == 9 && !memcmp(Modifier, "objcclass", 9) && ArgLen == 0)
261         S = '+' + S;
262       else if (ModLen == 12 && !memcmp(Modifier, "objcinstance", 12)
263                 && ArgLen==0)
264         S = '-' + S;
265       else
266         assert(ModLen == 0 && ArgLen == 0 &&
267                "Invalid modifier for DeclarationName argument");
268       break;
269     }
270     case DiagnosticsEngine::ak_nameddecl: {
271       bool Qualified;
272       if (ModLen == 1 && Modifier[0] == 'q' && ArgLen == 0)
273         Qualified = true;
274       else {
275         assert(ModLen == 0 && ArgLen == 0 &&
276                "Invalid modifier for NamedDecl* argument");
277         Qualified = false;
278       }
279       const NamedDecl *ND = reinterpret_cast<const NamedDecl*>(Val);
280       ND->getNameForDiagnostic(S, Context.getPrintingPolicy(), Qualified);
281       break;
282     }
283     case DiagnosticsEngine::ak_nestednamespec: {
284       llvm::raw_string_ostream OS(S);
285       reinterpret_cast<NestedNameSpecifier*>(Val)->print(OS,
286                                                         Context.getPrintingPolicy());
287       NeedQuotes = false;
288       break;
289     }
290     case DiagnosticsEngine::ak_declcontext: {
291       DeclContext *DC = reinterpret_cast<DeclContext *> (Val);
292       assert(DC && "Should never have a null declaration context");
293 
294       if (DC->isTranslationUnit()) {
295         // FIXME: Get these strings from some localized place
296         if (Context.getLangOptions().CPlusPlus)
297           S = "the global namespace";
298         else
299           S = "the global scope";
300       } else if (TypeDecl *Type = dyn_cast<TypeDecl>(DC)) {
301         S = ConvertTypeToDiagnosticString(Context,
302                                           Context.getTypeDeclType(Type),
303                                           PrevArgs, NumPrevArgs, QualTypeVals);
304       } else {
305         // FIXME: Get these strings from some localized place
306         NamedDecl *ND = cast<NamedDecl>(DC);
307         if (isa<NamespaceDecl>(ND))
308           S += "namespace ";
309         else if (isa<ObjCMethodDecl>(ND))
310           S += "method ";
311         else if (isa<FunctionDecl>(ND))
312           S += "function ";
313 
314         S += "'";
315         ND->getNameForDiagnostic(S, Context.getPrintingPolicy(), true);
316         S += "'";
317       }
318       NeedQuotes = false;
319       break;
320     }
321   }
322 
323   if (NeedQuotes)
324     Output.push_back('\'');
325 
326   Output.append(S.begin(), S.end());
327 
328   if (NeedQuotes)
329     Output.push_back('\'');
330 }
331