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Peter Collingbourne14110472011-01-13 18:57:25 +00001//===--- MicrosoftMangle.cpp - Microsoft Visual C++ Name Mangling ---------===//
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//
Chris Lattnerfc8f0e12011-04-15 05:22:18 +000010// This provides C++ name mangling targeting the Microsoft Visual C++ ABI.
Peter Collingbourne14110472011-01-13 18:57:25 +000011//
12//===----------------------------------------------------------------------===//
13
14#include "clang/AST/Mangle.h"
15#include "clang/AST/ASTContext.h"
16#include "clang/AST/CharUnits.h"
17#include "clang/AST/Decl.h"
18#include "clang/AST/DeclCXX.h"
19#include "clang/AST/DeclObjC.h"
20#include "clang/AST/DeclTemplate.h"
21#include "clang/AST/ExprCXX.h"
22#include "clang/Basic/ABI.h"
23
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +000024#include <map>
25
Peter Collingbourne14110472011-01-13 18:57:25 +000026using namespace clang;
27
28namespace {
29
30/// MicrosoftCXXNameMangler - Manage the mangling of a single name for the
31/// Microsoft Visual C++ ABI.
32class MicrosoftCXXNameMangler {
33 MangleContext &Context;
Chris Lattner5f9e2722011-07-23 10:55:15 +000034 raw_ostream &Out;
Peter Collingbourne14110472011-01-13 18:57:25 +000035
Timur Iskhodzhanovd93c5ff2012-07-25 08:16:41 +000036 // FIXME: audit the performance of BackRefMap as it might do way too many
37 // copying of strings.
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +000038 typedef std::map<std::string, unsigned> BackRefMap;
39 BackRefMap NameBackReferences;
40 bool UseNameBackReferences;
41
42 typedef llvm::DenseMap<void*, unsigned> ArgBackRefMap;
43 ArgBackRefMap TypeBackReferences;
Richard Smith06e767d2012-06-21 02:52:27 +000044
Peter Collingbourne14110472011-01-13 18:57:25 +000045 ASTContext &getASTContext() const { return Context.getASTContext(); }
46
47public:
Chris Lattner5f9e2722011-07-23 10:55:15 +000048 MicrosoftCXXNameMangler(MangleContext &C, raw_ostream &Out_)
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +000049 : Context(C), Out(Out_), UseNameBackReferences(true) { }
Peter Collingbourne14110472011-01-13 18:57:25 +000050
Charles Davise0deb032012-06-13 00:18:14 +000051 raw_ostream &getStream() const { return Out; }
52
53 void mangle(const NamedDecl *D, StringRef Prefix = "\01?");
Peter Collingbourne14110472011-01-13 18:57:25 +000054 void mangleName(const NamedDecl *ND);
55 void mangleFunctionEncoding(const FunctionDecl *FD);
56 void mangleVariableEncoding(const VarDecl *VD);
57 void mangleNumber(int64_t Number);
Charles Davis9fd23592012-05-26 23:12:19 +000058 void mangleNumber(const llvm::APSInt &Value);
Charles Davise0deb032012-06-13 00:18:14 +000059 void mangleType(QualType T, SourceRange Range);
Peter Collingbourne14110472011-01-13 18:57:25 +000060
61private:
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +000062 void disableBackReferences() { UseNameBackReferences = false; }
Peter Collingbourne14110472011-01-13 18:57:25 +000063 void mangleUnqualifiedName(const NamedDecl *ND) {
64 mangleUnqualifiedName(ND, ND->getDeclName());
65 }
66 void mangleUnqualifiedName(const NamedDecl *ND, DeclarationName Name);
67 void mangleSourceName(const IdentifierInfo *II);
68 void manglePostfix(const DeclContext *DC, bool NoFunction=false);
Charles Davise0deb032012-06-13 00:18:14 +000069 void mangleOperatorName(OverloadedOperatorKind OO, SourceLocation Loc);
Peter Collingbourne14110472011-01-13 18:57:25 +000070 void mangleQualifiers(Qualifiers Quals, bool IsMember);
71
Charles Davis9fd23592012-05-26 23:12:19 +000072 void mangleUnscopedTemplateName(const TemplateDecl *ND);
73 void mangleTemplateInstantiationName(const TemplateDecl *TD,
Charles Davise0deb032012-06-13 00:18:14 +000074 const SmallVectorImpl<TemplateArgumentLoc> &TemplateArgs);
Peter Collingbourne14110472011-01-13 18:57:25 +000075 void mangleObjCMethodName(const ObjCMethodDecl *MD);
Charles Davise0deb032012-06-13 00:18:14 +000076 void mangleLocalName(const FunctionDecl *FD);
Peter Collingbourne14110472011-01-13 18:57:25 +000077
Timur Iskhodzhanov3f835682012-06-23 00:54:17 +000078 void mangleTypeRepeated(QualType T, SourceRange Range);
79
Peter Collingbourne14110472011-01-13 18:57:25 +000080 // Declare manglers for every type class.
81#define ABSTRACT_TYPE(CLASS, PARENT)
82#define NON_CANONICAL_TYPE(CLASS, PARENT)
Charles Davise0deb032012-06-13 00:18:14 +000083#define TYPE(CLASS, PARENT) void mangleType(const CLASS##Type *T, \
84 SourceRange Range);
Peter Collingbourne14110472011-01-13 18:57:25 +000085#include "clang/AST/TypeNodes.def"
Charles Davise0deb032012-06-13 00:18:14 +000086#undef ABSTRACT_TYPE
87#undef NON_CANONICAL_TYPE
88#undef TYPE
Peter Collingbourne14110472011-01-13 18:57:25 +000089
90 void mangleType(const TagType*);
91 void mangleType(const FunctionType *T, const FunctionDecl *D,
92 bool IsStructor, bool IsInstMethod);
93 void mangleType(const ArrayType *T, bool IsGlobal);
94 void mangleExtraDimensions(QualType T);
95 void mangleFunctionClass(const FunctionDecl *FD);
96 void mangleCallingConvention(const FunctionType *T, bool IsInstMethod = false);
Charles Davis9fd23592012-05-26 23:12:19 +000097 void mangleIntegerLiteral(QualType T, const llvm::APSInt &Number);
Peter Collingbourne14110472011-01-13 18:57:25 +000098 void mangleThrowSpecification(const FunctionProtoType *T);
99
Charles Davise0deb032012-06-13 00:18:14 +0000100 void mangleTemplateArgs(
101 const SmallVectorImpl<TemplateArgumentLoc> &TemplateArgs);
Charles Davis9fd23592012-05-26 23:12:19 +0000102
Peter Collingbourne14110472011-01-13 18:57:25 +0000103};
104
105/// MicrosoftMangleContext - Overrides the default MangleContext for the
106/// Microsoft Visual C++ ABI.
107class MicrosoftMangleContext : public MangleContext {
108public:
109 MicrosoftMangleContext(ASTContext &Context,
David Blaikied6471f72011-09-25 23:23:43 +0000110 DiagnosticsEngine &Diags) : MangleContext(Context, Diags) { }
Peter Collingbourne14110472011-01-13 18:57:25 +0000111 virtual bool shouldMangleDeclName(const NamedDecl *D);
Chris Lattner5f9e2722011-07-23 10:55:15 +0000112 virtual void mangleName(const NamedDecl *D, raw_ostream &Out);
Peter Collingbourne14110472011-01-13 18:57:25 +0000113 virtual void mangleThunk(const CXXMethodDecl *MD,
114 const ThunkInfo &Thunk,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000115 raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000116 virtual void mangleCXXDtorThunk(const CXXDestructorDecl *DD, CXXDtorType Type,
117 const ThisAdjustment &ThisAdjustment,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000118 raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000119 virtual void mangleCXXVTable(const CXXRecordDecl *RD,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000120 raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000121 virtual void mangleCXXVTT(const CXXRecordDecl *RD,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000122 raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000123 virtual void mangleCXXCtorVTable(const CXXRecordDecl *RD, int64_t Offset,
124 const CXXRecordDecl *Type,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000125 raw_ostream &);
126 virtual void mangleCXXRTTI(QualType T, raw_ostream &);
127 virtual void mangleCXXRTTIName(QualType T, raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000128 virtual void mangleCXXCtor(const CXXConstructorDecl *D, CXXCtorType Type,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000129 raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000130 virtual void mangleCXXDtor(const CXXDestructorDecl *D, CXXDtorType Type,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000131 raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000132 virtual void mangleReferenceTemporary(const clang::VarDecl *,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000133 raw_ostream &);
Peter Collingbourne14110472011-01-13 18:57:25 +0000134};
135
136}
137
138static bool isInCLinkageSpecification(const Decl *D) {
139 D = D->getCanonicalDecl();
140 for (const DeclContext *DC = D->getDeclContext();
141 !DC->isTranslationUnit(); DC = DC->getParent()) {
142 if (const LinkageSpecDecl *Linkage = dyn_cast<LinkageSpecDecl>(DC))
143 return Linkage->getLanguage() == LinkageSpecDecl::lang_c;
144 }
145
146 return false;
147}
148
149bool MicrosoftMangleContext::shouldMangleDeclName(const NamedDecl *D) {
150 // In C, functions with no attributes never need to be mangled. Fastpath them.
David Blaikie4e4d0842012-03-11 07:00:24 +0000151 if (!getASTContext().getLangOpts().CPlusPlus && !D->hasAttrs())
Peter Collingbourne14110472011-01-13 18:57:25 +0000152 return false;
153
154 // Any decl can be declared with __asm("foo") on it, and this takes precedence
155 // over all other naming in the .o file.
156 if (D->hasAttr<AsmLabelAttr>())
157 return true;
158
159 // Clang's "overloadable" attribute extension to C/C++ implies name mangling
160 // (always) as does passing a C++ member function and a function
161 // whose name is not a simple identifier.
162 const FunctionDecl *FD = dyn_cast<FunctionDecl>(D);
163 if (FD && (FD->hasAttr<OverloadableAttr>() || isa<CXXMethodDecl>(FD) ||
164 !FD->getDeclName().isIdentifier()))
165 return true;
166
167 // Otherwise, no mangling is done outside C++ mode.
David Blaikie4e4d0842012-03-11 07:00:24 +0000168 if (!getASTContext().getLangOpts().CPlusPlus)
Peter Collingbourne14110472011-01-13 18:57:25 +0000169 return false;
170
171 // Variables at global scope with internal linkage are not mangled.
172 if (!FD) {
173 const DeclContext *DC = D->getDeclContext();
174 if (DC->isTranslationUnit() && D->getLinkage() == InternalLinkage)
175 return false;
176 }
177
178 // C functions and "main" are not mangled.
179 if ((FD && FD->isMain()) || isInCLinkageSpecification(D))
180 return false;
181
182 return true;
183}
184
185void MicrosoftCXXNameMangler::mangle(const NamedDecl *D,
Chris Lattner5f9e2722011-07-23 10:55:15 +0000186 StringRef Prefix) {
Peter Collingbourne14110472011-01-13 18:57:25 +0000187 // MSVC doesn't mangle C++ names the same way it mangles extern "C" names.
188 // Therefore it's really important that we don't decorate the
Charles Davise0deb032012-06-13 00:18:14 +0000189 // name with leading underscores or leading/trailing at signs. So, by
190 // default, we emit an asm marker at the start so we get the name right.
191 // Callers can override this with a custom prefix.
Peter Collingbourne14110472011-01-13 18:57:25 +0000192
193 // Any decl can be declared with __asm("foo") on it, and this takes precedence
194 // over all other naming in the .o file.
195 if (const AsmLabelAttr *ALA = D->getAttr<AsmLabelAttr>()) {
196 // If we have an asm name, then we use it as the mangling.
Charles Davise0deb032012-06-13 00:18:14 +0000197 Out << '\01' << ALA->getLabel();
Peter Collingbourne14110472011-01-13 18:57:25 +0000198 return;
199 }
200
201 // <mangled-name> ::= ? <name> <type-encoding>
202 Out << Prefix;
203 mangleName(D);
204 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D))
205 mangleFunctionEncoding(FD);
206 else if (const VarDecl *VD = dyn_cast<VarDecl>(D))
207 mangleVariableEncoding(VD);
Charles Davise0deb032012-06-13 00:18:14 +0000208 else {
209 // TODO: Fields? Can MSVC even mangle them?
210 // Issue a diagnostic for now.
211 DiagnosticsEngine &Diags = Context.getDiags();
212 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
213 "cannot mangle this declaration yet");
214 Diags.Report(D->getLocation(), DiagID)
215 << D->getSourceRange();
216 }
Peter Collingbourne14110472011-01-13 18:57:25 +0000217}
218
219void MicrosoftCXXNameMangler::mangleFunctionEncoding(const FunctionDecl *FD) {
220 // <type-encoding> ::= <function-class> <function-type>
221
222 // Don't mangle in the type if this isn't a decl we should typically mangle.
223 if (!Context.shouldMangleDeclName(FD))
224 return;
225
226 // We should never ever see a FunctionNoProtoType at this point.
227 // We don't even know how to mangle their types anyway :).
Richard Smithbd1d18e2012-06-04 22:46:59 +0000228 const FunctionProtoType *FT = FD->getType()->castAs<FunctionProtoType>();
Peter Collingbourne14110472011-01-13 18:57:25 +0000229
230 bool InStructor = false, InInstMethod = false;
231 const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(FD);
232 if (MD) {
233 if (MD->isInstance())
234 InInstMethod = true;
235 if (isa<CXXConstructorDecl>(MD) || isa<CXXDestructorDecl>(MD))
236 InStructor = true;
237 }
238
239 // First, the function class.
240 mangleFunctionClass(FD);
241
242 mangleType(FT, FD, InStructor, InInstMethod);
243}
244
245void MicrosoftCXXNameMangler::mangleVariableEncoding(const VarDecl *VD) {
246 // <type-encoding> ::= <storage-class> <variable-type>
247 // <storage-class> ::= 0 # private static member
248 // ::= 1 # protected static member
249 // ::= 2 # public static member
250 // ::= 3 # global
251 // ::= 4 # static local
252
253 // The first character in the encoding (after the name) is the storage class.
254 if (VD->isStaticDataMember()) {
255 // If it's a static member, it also encodes the access level.
256 switch (VD->getAccess()) {
257 default:
258 case AS_private: Out << '0'; break;
259 case AS_protected: Out << '1'; break;
260 case AS_public: Out << '2'; break;
261 }
262 }
263 else if (!VD->isStaticLocal())
264 Out << '3';
265 else
266 Out << '4';
267 // Now mangle the type.
268 // <variable-type> ::= <type> <cvr-qualifiers>
269 // ::= <type> A # pointers, references, arrays
270 // Pointers and references are odd. The type of 'int * const foo;' gets
271 // mangled as 'QAHA' instead of 'PAHB', for example.
Charles Davise0deb032012-06-13 00:18:14 +0000272 TypeLoc TL = VD->getTypeSourceInfo()->getTypeLoc();
273 QualType Ty = TL.getType();
Peter Collingbourne14110472011-01-13 18:57:25 +0000274 if (Ty->isPointerType() || Ty->isReferenceType()) {
Charles Davise0deb032012-06-13 00:18:14 +0000275 mangleType(Ty, TL.getSourceRange());
Peter Collingbourne14110472011-01-13 18:57:25 +0000276 Out << 'A';
Richard Smithc0838d22012-06-08 00:37:04 +0000277 } else if (const ArrayType *AT = getASTContext().getAsArrayType(Ty)) {
Peter Collingbourne14110472011-01-13 18:57:25 +0000278 // Global arrays are funny, too.
Richard Smithc0838d22012-06-08 00:37:04 +0000279 mangleType(AT, true);
Peter Collingbourne14110472011-01-13 18:57:25 +0000280 Out << 'A';
281 } else {
Charles Davise0deb032012-06-13 00:18:14 +0000282 mangleType(Ty.getLocalUnqualifiedType(), TL.getSourceRange());
Peter Collingbourne14110472011-01-13 18:57:25 +0000283 mangleQualifiers(Ty.getLocalQualifiers(), false);
284 }
285}
286
287void MicrosoftCXXNameMangler::mangleName(const NamedDecl *ND) {
288 // <name> ::= <unscoped-name> {[<named-scope>]+ | [<nested-name>]}? @
289 const DeclContext *DC = ND->getDeclContext();
290
291 // Always start with the unqualified name.
292 mangleUnqualifiedName(ND);
293
294 // If this is an extern variable declared locally, the relevant DeclContext
295 // is that of the containing namespace, or the translation unit.
296 if (isa<FunctionDecl>(DC) && ND->hasLinkage())
297 while (!DC->isNamespace() && !DC->isTranslationUnit())
298 DC = DC->getParent();
299
300 manglePostfix(DC);
301
302 // Terminate the whole name with an '@'.
303 Out << '@';
304}
305
306void MicrosoftCXXNameMangler::mangleNumber(int64_t Number) {
Charles Davis9fd23592012-05-26 23:12:19 +0000307 // <number> ::= [?] <decimal digit> # 1 <= Number <= 10
308 // ::= [?] <hex digit>+ @ # 0 or > 9; A = 0, B = 1, etc...
309 // ::= [?] @ # 0 (alternate mangling, not emitted by VC)
Peter Collingbourne14110472011-01-13 18:57:25 +0000310 if (Number < 0) {
311 Out << '?';
312 Number = -Number;
313 }
Charles Davise0deb032012-06-13 00:18:14 +0000314 // There's a special shorter mangling for 0, but Microsoft
315 // chose not to use it. Instead, 0 gets mangled as "A@". Oh well...
Charles Davis9fd23592012-05-26 23:12:19 +0000316 if (Number >= 1 && Number <= 10)
Peter Collingbourne14110472011-01-13 18:57:25 +0000317 Out << Number-1;
Charles Davis9fd23592012-05-26 23:12:19 +0000318 else {
Peter Collingbourne14110472011-01-13 18:57:25 +0000319 // We have to build up the encoding in reverse order, so it will come
320 // out right when we write it out.
321 char Encoding[16];
322 char *EndPtr = Encoding+sizeof(Encoding);
323 char *CurPtr = EndPtr;
Charles Davis9fd23592012-05-26 23:12:19 +0000324 do {
Peter Collingbourne14110472011-01-13 18:57:25 +0000325 *--CurPtr = 'A' + (Number % 16);
326 Number /= 16;
Charles Davis9fd23592012-05-26 23:12:19 +0000327 } while (Number);
Peter Collingbourne14110472011-01-13 18:57:25 +0000328 Out.write(CurPtr, EndPtr-CurPtr);
329 Out << '@';
330 }
331}
332
Charles Davis9fd23592012-05-26 23:12:19 +0000333void MicrosoftCXXNameMangler::mangleNumber(const llvm::APSInt &Value) {
334 if (Value.isSigned() && Value.isNegative()) {
335 Out << '?';
336 mangleNumber(llvm::APSInt(Value.abs()));
337 return;
338 }
Charles Davisc4d76752012-05-29 07:01:45 +0000339 llvm::APSInt Temp(Value);
340 if (Value.uge(1) && Value.ule(10)) {
341 --Temp;
342 Temp.print(Out, false);
343 } else {
Charles Davis9fd23592012-05-26 23:12:19 +0000344 // We have to build up the encoding in reverse order, so it will come
345 // out right when we write it out.
346 char Encoding[64];
347 char *EndPtr = Encoding+sizeof(Encoding);
348 char *CurPtr = EndPtr;
Charles Davis104e51f2012-05-28 03:54:22 +0000349 llvm::APSInt NibbleMask(Value.getBitWidth(), Value.isUnsigned());
Lang Hamesf17523b2012-05-27 21:39:49 +0000350 NibbleMask = 0xf;
Charles Davis9fd23592012-05-26 23:12:19 +0000351 for (int i = 0, e = Value.getActiveBits() / 4; i != e; ++i) {
Charles Davisc4d76752012-05-29 07:01:45 +0000352 *--CurPtr = 'A' + Temp.And(NibbleMask).getLimitedValue(0xf);
353 Temp = Temp.lshr(4);
Charles Davise0deb032012-06-13 00:18:14 +0000354 }
Charles Davis9fd23592012-05-26 23:12:19 +0000355 Out.write(CurPtr, EndPtr-CurPtr);
356 Out << '@';
357 }
358}
359
360static const TemplateDecl *
Charles Davise0deb032012-06-13 00:18:14 +0000361isTemplate(const NamedDecl *ND,
362 SmallVectorImpl<TemplateArgumentLoc> &TemplateArgs) {
Charles Davis9fd23592012-05-26 23:12:19 +0000363 // Check if we have a function template.
364 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(ND)){
365 if (const TemplateDecl *TD = FD->getPrimaryTemplate()) {
Charles Davise0deb032012-06-13 00:18:14 +0000366 if (FD->getTemplateSpecializationArgsAsWritten()) {
367 const ASTTemplateArgumentListInfo *ArgList =
368 FD->getTemplateSpecializationArgsAsWritten();
369 TemplateArgs.append(ArgList->getTemplateArgs(),
370 ArgList->getTemplateArgs() +
371 ArgList->NumTemplateArgs);
372 } else {
373 const TemplateArgumentList *ArgList =
374 FD->getTemplateSpecializationArgs();
375 TemplateArgumentListInfo LI;
376 for (unsigned i = 0, e = ArgList->size(); i != e; ++i)
377 TemplateArgs.push_back(TemplateArgumentLoc(ArgList->get(i),
378 FD->getTypeSourceInfo()));
379 }
Charles Davis9fd23592012-05-26 23:12:19 +0000380 return TD;
381 }
382 }
383
384 // Check if we have a class template.
385 if (const ClassTemplateSpecializationDecl *Spec =
386 dyn_cast<ClassTemplateSpecializationDecl>(ND)) {
Charles Davise0deb032012-06-13 00:18:14 +0000387 TypeSourceInfo *TSI = Spec->getTypeAsWritten();
388 if (TSI) {
389 TemplateSpecializationTypeLoc &TSTL =
390 cast<TemplateSpecializationTypeLoc>(TSI->getTypeLoc());
391 TemplateArgumentListInfo LI(TSTL.getLAngleLoc(), TSTL.getRAngleLoc());
392 for (unsigned i = 0, e = TSTL.getNumArgs(); i != e; ++i)
393 TemplateArgs.push_back(TSTL.getArgLoc(i));
394 } else {
395 TemplateArgumentListInfo LI;
396 const TemplateArgumentList &ArgList =
397 Spec->getTemplateArgs();
398 for (unsigned i = 0, e = ArgList.size(); i != e; ++i)
399 TemplateArgs.push_back(TemplateArgumentLoc(ArgList[i],
400 TemplateArgumentLocInfo()));
401 }
Charles Davis9fd23592012-05-26 23:12:19 +0000402 return Spec->getSpecializedTemplate();
403 }
404
405 return 0;
406}
407
Peter Collingbourne14110472011-01-13 18:57:25 +0000408void
409MicrosoftCXXNameMangler::mangleUnqualifiedName(const NamedDecl *ND,
410 DeclarationName Name) {
411 // <unqualified-name> ::= <operator-name>
412 // ::= <ctor-dtor-name>
413 // ::= <source-name>
Charles Davis9fd23592012-05-26 23:12:19 +0000414 // ::= <template-name>
Charles Davise0deb032012-06-13 00:18:14 +0000415 SmallVector<TemplateArgumentLoc, 2> TemplateArgs;
Charles Davis9fd23592012-05-26 23:12:19 +0000416 // Check if we have a template.
417 if (const TemplateDecl *TD = isTemplate(ND, TemplateArgs)) {
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +0000418 // We have a template.
419 // Here comes the tricky thing: if we need to mangle something like
420 // void foo(A::X<Y>, B::X<Y>),
421 // the X<Y> part is aliased. However, if you need to mangle
422 // void foo(A::X<A::Y>, A::X<B::Y>),
423 // the A::X<> part is not aliased.
424 // That said, from the mangler's perspective we have a structure like this:
425 // namespace[s] -> type[ -> template-parameters]
426 // but from the Clang perspective we have
427 // type [ -> template-parameters]
428 // \-> namespace[s]
429 // What we do is we create a new mangler, mangle the same type (without
430 // a namespace suffix) using the extra mangler with back references
431 // disabled (to avoid infinite recursion) and then use the mangled type
432 // name as a key to check the mangling of different types for aliasing.
433
434 std::string BackReferenceKey;
435 BackRefMap::iterator Found;
436 if (UseNameBackReferences) {
437 llvm::raw_string_ostream Stream(BackReferenceKey);
438 MicrosoftCXXNameMangler Extra(Context, Stream);
439 Extra.disableBackReferences();
440 Extra.mangleUnqualifiedName(ND, Name);
441 Stream.flush();
442
443 Found = NameBackReferences.find(BackReferenceKey);
444 }
445 if (!UseNameBackReferences || Found == NameBackReferences.end()) {
446 mangleTemplateInstantiationName(TD, TemplateArgs);
447 if (UseNameBackReferences && NameBackReferences.size() < 10) {
448 size_t Size = NameBackReferences.size();
449 NameBackReferences[BackReferenceKey] = Size;
450 }
451 } else {
452 Out << Found->second;
453 }
Charles Davis9fd23592012-05-26 23:12:19 +0000454 return;
455 }
456
Peter Collingbourne14110472011-01-13 18:57:25 +0000457 switch (Name.getNameKind()) {
458 case DeclarationName::Identifier: {
459 if (const IdentifierInfo *II = Name.getAsIdentifierInfo()) {
460 mangleSourceName(II);
461 break;
462 }
463
464 // Otherwise, an anonymous entity. We must have a declaration.
465 assert(ND && "mangling empty name without declaration");
466
467 if (const NamespaceDecl *NS = dyn_cast<NamespaceDecl>(ND)) {
468 if (NS->isAnonymousNamespace()) {
469 Out << "?A";
470 break;
471 }
472 }
473
474 // We must have an anonymous struct.
475 const TagDecl *TD = cast<TagDecl>(ND);
Richard Smith162e1c12011-04-15 14:24:37 +0000476 if (const TypedefNameDecl *D = TD->getTypedefNameForAnonDecl()) {
Peter Collingbourne14110472011-01-13 18:57:25 +0000477 assert(TD->getDeclContext() == D->getDeclContext() &&
478 "Typedef should not be in another decl context!");
479 assert(D->getDeclName().getAsIdentifierInfo() &&
480 "Typedef was not named!");
481 mangleSourceName(D->getDeclName().getAsIdentifierInfo());
482 break;
483 }
484
485 // When VC encounters an anonymous type with no tag and no typedef,
486 // it literally emits '<unnamed-tag>'.
487 Out << "<unnamed-tag>";
488 break;
489 }
490
491 case DeclarationName::ObjCZeroArgSelector:
492 case DeclarationName::ObjCOneArgSelector:
493 case DeclarationName::ObjCMultiArgSelector:
David Blaikieb219cfc2011-09-23 05:06:16 +0000494 llvm_unreachable("Can't mangle Objective-C selector names here!");
Peter Collingbourne14110472011-01-13 18:57:25 +0000495
496 case DeclarationName::CXXConstructorName:
Michael J. Spencer50118da2011-12-01 09:55:00 +0000497 Out << "?0";
498 break;
Peter Collingbourne14110472011-01-13 18:57:25 +0000499
500 case DeclarationName::CXXDestructorName:
Michael J. Spencer50118da2011-12-01 09:55:00 +0000501 Out << "?1";
502 break;
Peter Collingbourne14110472011-01-13 18:57:25 +0000503
504 case DeclarationName::CXXConversionFunctionName:
505 // <operator-name> ::= ?B # (cast)
506 // The target type is encoded as the return type.
507 Out << "?B";
508 break;
509
510 case DeclarationName::CXXOperatorName:
Charles Davise0deb032012-06-13 00:18:14 +0000511 mangleOperatorName(Name.getCXXOverloadedOperator(), ND->getLocation());
Peter Collingbourne14110472011-01-13 18:57:25 +0000512 break;
513
Charles Davise0deb032012-06-13 00:18:14 +0000514 case DeclarationName::CXXLiteralOperatorName: {
Peter Collingbourne14110472011-01-13 18:57:25 +0000515 // FIXME: Was this added in VS2010? Does MS even know how to mangle this?
Charles Davise0deb032012-06-13 00:18:14 +0000516 DiagnosticsEngine Diags = Context.getDiags();
517 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
518 "cannot mangle this literal operator yet");
519 Diags.Report(ND->getLocation(), DiagID);
520 break;
521 }
Peter Collingbourne14110472011-01-13 18:57:25 +0000522
523 case DeclarationName::CXXUsingDirective:
David Blaikieb219cfc2011-09-23 05:06:16 +0000524 llvm_unreachable("Can't mangle a using directive name!");
Peter Collingbourne14110472011-01-13 18:57:25 +0000525 }
526}
527
528void MicrosoftCXXNameMangler::manglePostfix(const DeclContext *DC,
529 bool NoFunction) {
530 // <postfix> ::= <unqualified-name> [<postfix>]
Peter Collingbourne14110472011-01-13 18:57:25 +0000531 // ::= <substitution> [<postfix>]
532
533 if (!DC) return;
534
535 while (isa<LinkageSpecDecl>(DC))
536 DC = DC->getParent();
537
538 if (DC->isTranslationUnit())
539 return;
540
541 if (const BlockDecl *BD = dyn_cast<BlockDecl>(DC)) {
Rafael Espindolac4850c22011-02-10 23:59:36 +0000542 Context.mangleBlock(BD, Out);
543 Out << '@';
Peter Collingbourne14110472011-01-13 18:57:25 +0000544 return manglePostfix(DC->getParent(), NoFunction);
545 }
546
547 if (NoFunction && (isa<FunctionDecl>(DC) || isa<ObjCMethodDecl>(DC)))
548 return;
549 else if (const ObjCMethodDecl *Method = dyn_cast<ObjCMethodDecl>(DC))
550 mangleObjCMethodName(Method);
Charles Davise0deb032012-06-13 00:18:14 +0000551 else if (const FunctionDecl *Func = dyn_cast<FunctionDecl>(DC))
552 mangleLocalName(Func);
Peter Collingbourne14110472011-01-13 18:57:25 +0000553 else {
554 mangleUnqualifiedName(cast<NamedDecl>(DC));
555 manglePostfix(DC->getParent(), NoFunction);
556 }
557}
558
Charles Davise0deb032012-06-13 00:18:14 +0000559void MicrosoftCXXNameMangler::mangleOperatorName(OverloadedOperatorKind OO,
560 SourceLocation Loc) {
Peter Collingbourne14110472011-01-13 18:57:25 +0000561 switch (OO) {
562 // ?0 # constructor
563 // ?1 # destructor
564 // <operator-name> ::= ?2 # new
565 case OO_New: Out << "?2"; break;
566 // <operator-name> ::= ?3 # delete
567 case OO_Delete: Out << "?3"; break;
568 // <operator-name> ::= ?4 # =
569 case OO_Equal: Out << "?4"; break;
570 // <operator-name> ::= ?5 # >>
571 case OO_GreaterGreater: Out << "?5"; break;
572 // <operator-name> ::= ?6 # <<
573 case OO_LessLess: Out << "?6"; break;
574 // <operator-name> ::= ?7 # !
575 case OO_Exclaim: Out << "?7"; break;
576 // <operator-name> ::= ?8 # ==
577 case OO_EqualEqual: Out << "?8"; break;
578 // <operator-name> ::= ?9 # !=
579 case OO_ExclaimEqual: Out << "?9"; break;
580 // <operator-name> ::= ?A # []
581 case OO_Subscript: Out << "?A"; break;
582 // ?B # conversion
583 // <operator-name> ::= ?C # ->
584 case OO_Arrow: Out << "?C"; break;
585 // <operator-name> ::= ?D # *
586 case OO_Star: Out << "?D"; break;
587 // <operator-name> ::= ?E # ++
588 case OO_PlusPlus: Out << "?E"; break;
589 // <operator-name> ::= ?F # --
590 case OO_MinusMinus: Out << "?F"; break;
591 // <operator-name> ::= ?G # -
592 case OO_Minus: Out << "?G"; break;
593 // <operator-name> ::= ?H # +
594 case OO_Plus: Out << "?H"; break;
595 // <operator-name> ::= ?I # &
596 case OO_Amp: Out << "?I"; break;
597 // <operator-name> ::= ?J # ->*
598 case OO_ArrowStar: Out << "?J"; break;
599 // <operator-name> ::= ?K # /
600 case OO_Slash: Out << "?K"; break;
601 // <operator-name> ::= ?L # %
602 case OO_Percent: Out << "?L"; break;
603 // <operator-name> ::= ?M # <
604 case OO_Less: Out << "?M"; break;
605 // <operator-name> ::= ?N # <=
606 case OO_LessEqual: Out << "?N"; break;
607 // <operator-name> ::= ?O # >
608 case OO_Greater: Out << "?O"; break;
609 // <operator-name> ::= ?P # >=
610 case OO_GreaterEqual: Out << "?P"; break;
611 // <operator-name> ::= ?Q # ,
612 case OO_Comma: Out << "?Q"; break;
613 // <operator-name> ::= ?R # ()
614 case OO_Call: Out << "?R"; break;
615 // <operator-name> ::= ?S # ~
616 case OO_Tilde: Out << "?S"; break;
617 // <operator-name> ::= ?T # ^
618 case OO_Caret: Out << "?T"; break;
619 // <operator-name> ::= ?U # |
620 case OO_Pipe: Out << "?U"; break;
621 // <operator-name> ::= ?V # &&
622 case OO_AmpAmp: Out << "?V"; break;
623 // <operator-name> ::= ?W # ||
624 case OO_PipePipe: Out << "?W"; break;
625 // <operator-name> ::= ?X # *=
626 case OO_StarEqual: Out << "?X"; break;
627 // <operator-name> ::= ?Y # +=
628 case OO_PlusEqual: Out << "?Y"; break;
629 // <operator-name> ::= ?Z # -=
630 case OO_MinusEqual: Out << "?Z"; break;
631 // <operator-name> ::= ?_0 # /=
632 case OO_SlashEqual: Out << "?_0"; break;
633 // <operator-name> ::= ?_1 # %=
634 case OO_PercentEqual: Out << "?_1"; break;
635 // <operator-name> ::= ?_2 # >>=
636 case OO_GreaterGreaterEqual: Out << "?_2"; break;
637 // <operator-name> ::= ?_3 # <<=
638 case OO_LessLessEqual: Out << "?_3"; break;
639 // <operator-name> ::= ?_4 # &=
640 case OO_AmpEqual: Out << "?_4"; break;
641 // <operator-name> ::= ?_5 # |=
642 case OO_PipeEqual: Out << "?_5"; break;
643 // <operator-name> ::= ?_6 # ^=
644 case OO_CaretEqual: Out << "?_6"; break;
645 // ?_7 # vftable
646 // ?_8 # vbtable
647 // ?_9 # vcall
648 // ?_A # typeof
649 // ?_B # local static guard
650 // ?_C # string
651 // ?_D # vbase destructor
652 // ?_E # vector deleting destructor
653 // ?_F # default constructor closure
654 // ?_G # scalar deleting destructor
655 // ?_H # vector constructor iterator
656 // ?_I # vector destructor iterator
657 // ?_J # vector vbase constructor iterator
658 // ?_K # virtual displacement map
659 // ?_L # eh vector constructor iterator
660 // ?_M # eh vector destructor iterator
661 // ?_N # eh vector vbase constructor iterator
662 // ?_O # copy constructor closure
663 // ?_P<name> # udt returning <name>
664 // ?_Q # <unknown>
665 // ?_R0 # RTTI Type Descriptor
666 // ?_R1 # RTTI Base Class Descriptor at (a,b,c,d)
667 // ?_R2 # RTTI Base Class Array
668 // ?_R3 # RTTI Class Hierarchy Descriptor
669 // ?_R4 # RTTI Complete Object Locator
670 // ?_S # local vftable
671 // ?_T # local vftable constructor closure
672 // <operator-name> ::= ?_U # new[]
673 case OO_Array_New: Out << "?_U"; break;
674 // <operator-name> ::= ?_V # delete[]
675 case OO_Array_Delete: Out << "?_V"; break;
676
Charles Davise0deb032012-06-13 00:18:14 +0000677 case OO_Conditional: {
678 DiagnosticsEngine &Diags = Context.getDiags();
679 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
680 "cannot mangle this conditional operator yet");
681 Diags.Report(Loc, DiagID);
682 break;
683 }
Peter Collingbourne14110472011-01-13 18:57:25 +0000684
685 case OO_None:
686 case NUM_OVERLOADED_OPERATORS:
David Blaikieb219cfc2011-09-23 05:06:16 +0000687 llvm_unreachable("Not an overloaded operator");
Peter Collingbourne14110472011-01-13 18:57:25 +0000688 }
689}
690
691void MicrosoftCXXNameMangler::mangleSourceName(const IdentifierInfo *II) {
692 // <source name> ::= <identifier> @
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +0000693 std::string key = II->getNameStart();
694 BackRefMap::iterator Found;
695 if (UseNameBackReferences)
696 Found = NameBackReferences.find(key);
697 if (!UseNameBackReferences || Found == NameBackReferences.end()) {
Richard Smith06e767d2012-06-21 02:52:27 +0000698 Out << II->getName() << '@';
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +0000699 if (UseNameBackReferences && NameBackReferences.size() < 10) {
Timur Iskhodzhanov3f835682012-06-23 00:54:17 +0000700 size_t Size = NameBackReferences.size();
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +0000701 NameBackReferences[key] = Size;
Richard Smith06e767d2012-06-21 02:52:27 +0000702 }
703 } else {
704 Out << Found->second;
705 }
Peter Collingbourne14110472011-01-13 18:57:25 +0000706}
707
Charles Davise0deb032012-06-13 00:18:14 +0000708void MicrosoftCXXNameMangler::mangleObjCMethodName(const ObjCMethodDecl *MD) {
709 Context.mangleObjCMethodName(MD, Out);
710}
711
712// Find out how many function decls live above this one and return an integer
713// suitable for use as the number in a numbered anonymous scope.
714// TODO: Memoize.
715static unsigned getLocalNestingLevel(const FunctionDecl *FD) {
716 const DeclContext *DC = FD->getParent();
717 int level = 1;
718
719 while (DC && !DC->isTranslationUnit()) {
720 if (isa<FunctionDecl>(DC) || isa<ObjCMethodDecl>(DC)) level++;
721 DC = DC->getParent();
722 }
723
724 return 2*level;
725}
726
727void MicrosoftCXXNameMangler::mangleLocalName(const FunctionDecl *FD) {
728 // <nested-name> ::= <numbered-anonymous-scope> ? <mangled-name>
729 // <numbered-anonymous-scope> ::= ? <number>
730 // Even though the name is rendered in reverse order (e.g.
731 // A::B::C is rendered as C@B@A), VC numbers the scopes from outermost to
732 // innermost. So a method bar in class C local to function foo gets mangled
733 // as something like:
734 // ?bar@C@?1??foo@@YAXXZ@QAEXXZ
735 // This is more apparent when you have a type nested inside a method of a
736 // type nested inside a function. A method baz in class D local to method
737 // bar of class C local to function foo gets mangled as:
738 // ?baz@D@?3??bar@C@?1??foo@@YAXXZ@QAEXXZ@QAEXXZ
739 // This scheme is general enough to support GCC-style nested
740 // functions. You could have a method baz of class C inside a function bar
741 // inside a function foo, like so:
742 // ?baz@C@?3??bar@?1??foo@@YAXXZ@YAXXZ@QAEXXZ
743 int NestLevel = getLocalNestingLevel(FD);
744 Out << '?';
745 mangleNumber(NestLevel);
746 Out << '?';
747 mangle(FD, "?");
748}
749
750void MicrosoftCXXNameMangler::mangleTemplateInstantiationName(
751 const TemplateDecl *TD,
752 const SmallVectorImpl<TemplateArgumentLoc> &TemplateArgs) {
Charles Davis9fd23592012-05-26 23:12:19 +0000753 // <template-name> ::= <unscoped-template-name> <template-args>
754 // ::= <substitution>
755 // Always start with the unqualified name.
Timur Iskhodzhanov4285f842012-06-26 22:29:50 +0000756
757 // Templates have their own context for back references.
758 BackRefMap TemplateContext;
759 NameBackReferences.swap(TemplateContext);
760
Charles Davis9fd23592012-05-26 23:12:19 +0000761 mangleUnscopedTemplateName(TD);
Charles Davise0deb032012-06-13 00:18:14 +0000762 mangleTemplateArgs(TemplateArgs);
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +0000763
Timur Iskhodzhanov4285f842012-06-26 22:29:50 +0000764 NameBackReferences.swap(TemplateContext);
Peter Collingbourne14110472011-01-13 18:57:25 +0000765}
766
Charles Davis9fd23592012-05-26 23:12:19 +0000767void
768MicrosoftCXXNameMangler::mangleUnscopedTemplateName(const TemplateDecl *TD) {
769 // <unscoped-template-name> ::= ?$ <unqualified-name>
770 Out << "?$";
771 mangleUnqualifiedName(TD);
772}
773
774void
Charles Davise0deb032012-06-13 00:18:14 +0000775MicrosoftCXXNameMangler::mangleIntegerLiteral(QualType T,
776 const llvm::APSInt &Value) {
Charles Davis9fd23592012-05-26 23:12:19 +0000777 // <integer-literal> ::= $0 <number>
778 Out << "$0";
779 // Make sure booleans are encoded as 0/1.
780 if (T->isBooleanType())
781 Out << (Value.getBoolValue() ? "0" : "A@");
782 else
783 mangleNumber(Value);
784}
785
786void
Charles Davise0deb032012-06-13 00:18:14 +0000787MicrosoftCXXNameMangler::mangleTemplateArgs(
788 const SmallVectorImpl<TemplateArgumentLoc> &TemplateArgs) {
Charles Davis9fd23592012-05-26 23:12:19 +0000789 // <template-args> ::= {<type> | <integer-literal>}+ @
Charles Davise0deb032012-06-13 00:18:14 +0000790 unsigned NumTemplateArgs = TemplateArgs.size();
791 for (unsigned i = 0; i < NumTemplateArgs; ++i) {
792 const TemplateArgumentLoc &TAL = TemplateArgs[i];
793 const TemplateArgument &TA = TAL.getArgument();
Charles Davis9fd23592012-05-26 23:12:19 +0000794 switch (TA.getKind()) {
Charles Davise0deb032012-06-13 00:18:14 +0000795 case TemplateArgument::Null:
796 llvm_unreachable("Can't mangle null template arguments!");
Charles Davis9fd23592012-05-26 23:12:19 +0000797 case TemplateArgument::Type:
Charles Davise0deb032012-06-13 00:18:14 +0000798 mangleType(TA.getAsType(), TAL.getSourceRange());
Charles Davis9fd23592012-05-26 23:12:19 +0000799 break;
800 case TemplateArgument::Integral:
Benjamin Kramer85524372012-06-07 15:09:51 +0000801 mangleIntegerLiteral(TA.getIntegralType(), TA.getAsIntegral());
Charles Davis9fd23592012-05-26 23:12:19 +0000802 break;
Charles Davis3facb622012-06-23 00:27:49 +0000803 case TemplateArgument::Expression: {
804 // See if this is a constant expression.
805 Expr *TAE = TA.getAsExpr();
806 llvm::APSInt Value;
807 if (TAE->isIntegerConstantExpr(Value, Context.getASTContext())) {
808 mangleIntegerLiteral(TAE->getType(), Value);
809 break;
810 }
811 /* fallthrough */
812 } default: {
Charles Davise0deb032012-06-13 00:18:14 +0000813 // Issue a diagnostic.
814 DiagnosticsEngine &Diags = Context.getDiags();
815 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
816 "cannot mangle this %select{ERROR|ERROR|pointer/reference|ERROR|"
817 "template|template pack expansion|expression|parameter pack}0 "
818 "template argument yet");
819 Diags.Report(TAL.getLocation(), DiagID)
820 << TA.getKind()
821 << TAL.getSourceRange();
Charles Davis9fd23592012-05-26 23:12:19 +0000822 }
823 }
824 }
825 Out << '@';
826}
827
Peter Collingbourne14110472011-01-13 18:57:25 +0000828void MicrosoftCXXNameMangler::mangleQualifiers(Qualifiers Quals,
829 bool IsMember) {
830 // <cvr-qualifiers> ::= [E] [F] [I] <base-cvr-qualifiers>
831 // 'E' means __ptr64 (32-bit only); 'F' means __unaligned (32/64-bit only);
832 // 'I' means __restrict (32/64-bit).
833 // Note that the MSVC __restrict keyword isn't the same as the C99 restrict
834 // keyword!
835 // <base-cvr-qualifiers> ::= A # near
836 // ::= B # near const
837 // ::= C # near volatile
838 // ::= D # near const volatile
839 // ::= E # far (16-bit)
840 // ::= F # far const (16-bit)
841 // ::= G # far volatile (16-bit)
842 // ::= H # far const volatile (16-bit)
843 // ::= I # huge (16-bit)
844 // ::= J # huge const (16-bit)
845 // ::= K # huge volatile (16-bit)
846 // ::= L # huge const volatile (16-bit)
847 // ::= M <basis> # based
848 // ::= N <basis> # based const
849 // ::= O <basis> # based volatile
850 // ::= P <basis> # based const volatile
851 // ::= Q # near member
852 // ::= R # near const member
853 // ::= S # near volatile member
854 // ::= T # near const volatile member
855 // ::= U # far member (16-bit)
856 // ::= V # far const member (16-bit)
857 // ::= W # far volatile member (16-bit)
858 // ::= X # far const volatile member (16-bit)
859 // ::= Y # huge member (16-bit)
860 // ::= Z # huge const member (16-bit)
861 // ::= 0 # huge volatile member (16-bit)
862 // ::= 1 # huge const volatile member (16-bit)
863 // ::= 2 <basis> # based member
864 // ::= 3 <basis> # based const member
865 // ::= 4 <basis> # based volatile member
866 // ::= 5 <basis> # based const volatile member
867 // ::= 6 # near function (pointers only)
868 // ::= 7 # far function (pointers only)
869 // ::= 8 # near method (pointers only)
870 // ::= 9 # far method (pointers only)
871 // ::= _A <basis> # based function (pointers only)
872 // ::= _B <basis> # based function (far?) (pointers only)
873 // ::= _C <basis> # based method (pointers only)
874 // ::= _D <basis> # based method (far?) (pointers only)
875 // ::= _E # block (Clang)
876 // <basis> ::= 0 # __based(void)
877 // ::= 1 # __based(segment)?
878 // ::= 2 <name> # __based(name)
879 // ::= 3 # ?
880 // ::= 4 # ?
881 // ::= 5 # not really based
882 if (!IsMember) {
883 if (!Quals.hasVolatile()) {
884 if (!Quals.hasConst())
885 Out << 'A';
886 else
887 Out << 'B';
888 } else {
889 if (!Quals.hasConst())
890 Out << 'C';
891 else
892 Out << 'D';
893 }
894 } else {
895 if (!Quals.hasVolatile()) {
896 if (!Quals.hasConst())
897 Out << 'Q';
898 else
899 Out << 'R';
900 } else {
901 if (!Quals.hasConst())
902 Out << 'S';
903 else
904 Out << 'T';
905 }
906 }
907
908 // FIXME: For now, just drop all extension qualifiers on the floor.
909}
910
Timur Iskhodzhanov3f835682012-06-23 00:54:17 +0000911void MicrosoftCXXNameMangler::mangleTypeRepeated(QualType T, SourceRange Range) {
912 void *TypePtr = getASTContext().getCanonicalType(T).getAsOpaquePtr();
Timur Iskhodzhanovf5e0b222012-07-24 09:37:54 +0000913 ArgBackRefMap::iterator Found = TypeBackReferences.find(TypePtr);
Timur Iskhodzhanov3f835682012-06-23 00:54:17 +0000914
915 if (Found == TypeBackReferences.end()) {
916 size_t OutSizeBefore = Out.GetNumBytesInBuffer();
917
918 mangleType(T,Range);
919
920 // See if it's worth creating a back reference.
921 // Only types longer than 1 character are considered
922 // and only 10 back references slots are available:
923 bool LongerThanOneChar = (Out.GetNumBytesInBuffer() - OutSizeBefore > 1);
924 if (LongerThanOneChar && TypeBackReferences.size() < 10) {
925 size_t Size = TypeBackReferences.size();
926 TypeBackReferences[TypePtr] = Size;
927 }
928 } else {
929 Out << Found->second;
930 }
931}
932
Charles Davise0deb032012-06-13 00:18:14 +0000933void MicrosoftCXXNameMangler::mangleType(QualType T, SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +0000934 // Only operate on the canonical type!
935 T = getASTContext().getCanonicalType(T);
936
937 Qualifiers Quals = T.getLocalQualifiers();
938 if (Quals) {
939 // We have to mangle these now, while we still have enough information.
940 // <pointer-cvr-qualifiers> ::= P # pointer
941 // ::= Q # const pointer
942 // ::= R # volatile pointer
943 // ::= S # const volatile pointer
944 if (T->isAnyPointerType() || T->isMemberPointerType() ||
945 T->isBlockPointerType()) {
946 if (!Quals.hasVolatile())
947 Out << 'Q';
948 else {
949 if (!Quals.hasConst())
950 Out << 'R';
951 else
952 Out << 'S';
953 }
954 } else
955 // Just emit qualifiers like normal.
956 // NB: When we mangle a pointer/reference type, and the pointee
957 // type has no qualifiers, the lack of qualifier gets mangled
958 // in there.
959 mangleQualifiers(Quals, false);
960 } else if (T->isAnyPointerType() || T->isMemberPointerType() ||
961 T->isBlockPointerType()) {
962 Out << 'P';
963 }
964 switch (T->getTypeClass()) {
965#define ABSTRACT_TYPE(CLASS, PARENT)
966#define NON_CANONICAL_TYPE(CLASS, PARENT) \
Charles Davise0deb032012-06-13 00:18:14 +0000967 case Type::CLASS: \
968 llvm_unreachable("can't mangle non-canonical type " #CLASS "Type"); \
969 return;
Peter Collingbourne14110472011-01-13 18:57:25 +0000970#define TYPE(CLASS, PARENT) \
Charles Davise0deb032012-06-13 00:18:14 +0000971 case Type::CLASS: \
972 mangleType(static_cast<const CLASS##Type*>(T.getTypePtr()), Range); \
973 break;
Peter Collingbourne14110472011-01-13 18:57:25 +0000974#include "clang/AST/TypeNodes.def"
Charles Davise0deb032012-06-13 00:18:14 +0000975#undef ABSTRACT_TYPE
976#undef NON_CANONICAL_TYPE
977#undef TYPE
Peter Collingbourne14110472011-01-13 18:57:25 +0000978 }
979}
980
Charles Davise0deb032012-06-13 00:18:14 +0000981void MicrosoftCXXNameMangler::mangleType(const BuiltinType *T,
982 SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +0000983 // <type> ::= <builtin-type>
984 // <builtin-type> ::= X # void
985 // ::= C # signed char
986 // ::= D # char
987 // ::= E # unsigned char
988 // ::= F # short
989 // ::= G # unsigned short (or wchar_t if it's not a builtin)
990 // ::= H # int
991 // ::= I # unsigned int
992 // ::= J # long
993 // ::= K # unsigned long
994 // L # <none>
995 // ::= M # float
996 // ::= N # double
997 // ::= O # long double (__float80 is mangled differently)
Peter Collingbourne14110472011-01-13 18:57:25 +0000998 // ::= _J # long long, __int64
999 // ::= _K # unsigned long long, __int64
1000 // ::= _L # __int128
1001 // ::= _M # unsigned __int128
1002 // ::= _N # bool
1003 // _O # <array in parameter>
1004 // ::= _T # __float80 (Intel)
1005 // ::= _W # wchar_t
1006 // ::= _Z # __float80 (Digital Mars)
1007 switch (T->getKind()) {
1008 case BuiltinType::Void: Out << 'X'; break;
1009 case BuiltinType::SChar: Out << 'C'; break;
1010 case BuiltinType::Char_U: case BuiltinType::Char_S: Out << 'D'; break;
1011 case BuiltinType::UChar: Out << 'E'; break;
1012 case BuiltinType::Short: Out << 'F'; break;
1013 case BuiltinType::UShort: Out << 'G'; break;
1014 case BuiltinType::Int: Out << 'H'; break;
1015 case BuiltinType::UInt: Out << 'I'; break;
1016 case BuiltinType::Long: Out << 'J'; break;
1017 case BuiltinType::ULong: Out << 'K'; break;
1018 case BuiltinType::Float: Out << 'M'; break;
1019 case BuiltinType::Double: Out << 'N'; break;
1020 // TODO: Determine size and mangle accordingly
1021 case BuiltinType::LongDouble: Out << 'O'; break;
Peter Collingbourne14110472011-01-13 18:57:25 +00001022 case BuiltinType::LongLong: Out << "_J"; break;
1023 case BuiltinType::ULongLong: Out << "_K"; break;
1024 case BuiltinType::Int128: Out << "_L"; break;
1025 case BuiltinType::UInt128: Out << "_M"; break;
1026 case BuiltinType::Bool: Out << "_N"; break;
1027 case BuiltinType::WChar_S:
1028 case BuiltinType::WChar_U: Out << "_W"; break;
1029
John McCalle0a22d02011-10-18 21:02:43 +00001030#define BUILTIN_TYPE(Id, SingletonId)
1031#define PLACEHOLDER_TYPE(Id, SingletonId) \
1032 case BuiltinType::Id:
1033#include "clang/AST/BuiltinTypes.def"
Peter Collingbourne14110472011-01-13 18:57:25 +00001034 case BuiltinType::Dependent:
John McCalle0a22d02011-10-18 21:02:43 +00001035 llvm_unreachable("placeholder types shouldn't get to name mangling");
1036
Peter Collingbourne14110472011-01-13 18:57:25 +00001037 case BuiltinType::ObjCId: Out << "PAUobjc_object@@"; break;
1038 case BuiltinType::ObjCClass: Out << "PAUobjc_class@@"; break;
1039 case BuiltinType::ObjCSel: Out << "PAUobjc_selector@@"; break;
Richard Smith06e767d2012-06-21 02:52:27 +00001040
1041 case BuiltinType::NullPtr: Out << "$$T"; break;
Peter Collingbourne14110472011-01-13 18:57:25 +00001042
1043 case BuiltinType::Char16:
1044 case BuiltinType::Char32:
Richard Smith06e767d2012-06-21 02:52:27 +00001045 case BuiltinType::Half: {
Charles Davise0deb032012-06-13 00:18:14 +00001046 DiagnosticsEngine &Diags = Context.getDiags();
1047 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1048 "cannot mangle this built-in %0 type yet");
1049 Diags.Report(Range.getBegin(), DiagID)
1050 << T->getName(Context.getASTContext().getPrintingPolicy())
1051 << Range;
Richard Smith06e767d2012-06-21 02:52:27 +00001052 break;
Charles Davise0deb032012-06-13 00:18:14 +00001053 }
Peter Collingbourne14110472011-01-13 18:57:25 +00001054 }
1055}
1056
1057// <type> ::= <function-type>
Charles Davise0deb032012-06-13 00:18:14 +00001058void MicrosoftCXXNameMangler::mangleType(const FunctionProtoType *T,
1059 SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001060 // Structors only appear in decls, so at this point we know it's not a
1061 // structor type.
1062 // I'll probably have mangleType(MemberPointerType) call the mangleType()
1063 // method directly.
1064 mangleType(T, NULL, false, false);
1065}
Charles Davise0deb032012-06-13 00:18:14 +00001066void MicrosoftCXXNameMangler::mangleType(const FunctionNoProtoType *T,
1067 SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001068 llvm_unreachable("Can't mangle K&R function prototypes");
1069}
1070
1071void MicrosoftCXXNameMangler::mangleType(const FunctionType *T,
1072 const FunctionDecl *D,
1073 bool IsStructor,
1074 bool IsInstMethod) {
1075 // <function-type> ::= <this-cvr-qualifiers> <calling-convention>
1076 // <return-type> <argument-list> <throw-spec>
1077 const FunctionProtoType *Proto = cast<FunctionProtoType>(T);
1078
1079 // If this is a C++ instance method, mangle the CVR qualifiers for the
1080 // this pointer.
1081 if (IsInstMethod)
1082 mangleQualifiers(Qualifiers::fromCVRMask(Proto->getTypeQuals()), false);
1083
1084 mangleCallingConvention(T, IsInstMethod);
1085
1086 // <return-type> ::= <type>
1087 // ::= @ # structors (they have no declared return type)
1088 if (IsStructor)
1089 Out << '@';
Richard Smith06e767d2012-06-21 02:52:27 +00001090 else {
1091 QualType Result = Proto->getResultType();
1092 const Type* RT = Result.getTypePtr();
1093 if(isa<TagType>(RT) && !RT->isAnyPointerType() && !RT->isReferenceType())
1094 Out << "?A";
Charles Davise0deb032012-06-13 00:18:14 +00001095 // FIXME: Get the source range for the result type. Or, better yet,
1096 // implement the unimplemented stuff so we don't need accurate source
1097 // location info anymore :).
Richard Smith06e767d2012-06-21 02:52:27 +00001098 mangleType(Result, SourceRange());
1099 }
Peter Collingbourne14110472011-01-13 18:57:25 +00001100
1101 // <argument-list> ::= X # void
1102 // ::= <type>+ @
1103 // ::= <type>* Z # varargs
1104 if (Proto->getNumArgs() == 0 && !Proto->isVariadic()) {
1105 Out << 'X';
1106 } else {
1107 if (D) {
John McCall3a8ac072012-05-01 02:33:44 +00001108 // If we got a decl, use the type-as-written to make sure arrays
1109 // get mangled right. Note that we can't rely on the TSI
1110 // existing if (for example) the parameter was synthesized.
Peter Collingbourne14110472011-01-13 18:57:25 +00001111 for (FunctionDecl::param_const_iterator Parm = D->param_begin(),
John McCall3a8ac072012-05-01 02:33:44 +00001112 ParmEnd = D->param_end(); Parm != ParmEnd; ++Parm) {
Richard Smith06e767d2012-06-21 02:52:27 +00001113 TypeSourceInfo *TSI = (*Parm)->getTypeSourceInfo();
1114 QualType Type = TSI ? TSI->getType() : (*Parm)->getType();
Timur Iskhodzhanov3f835682012-06-23 00:54:17 +00001115 mangleTypeRepeated(Type, (*Parm)->getSourceRange());
John McCall3a8ac072012-05-01 02:33:44 +00001116 }
Peter Collingbourne14110472011-01-13 18:57:25 +00001117 } else {
Timur Iskhodzhanov3f835682012-06-23 00:54:17 +00001118 // Happens for function pointer type arguments for example.
Peter Collingbourne14110472011-01-13 18:57:25 +00001119 for (FunctionProtoType::arg_type_iterator Arg = Proto->arg_type_begin(),
1120 ArgEnd = Proto->arg_type_end();
1121 Arg != ArgEnd; ++Arg)
Timur Iskhodzhanov3f835682012-06-23 00:54:17 +00001122 mangleTypeRepeated(*Arg, SourceRange());
Peter Collingbourne14110472011-01-13 18:57:25 +00001123 }
1124 // <builtin-type> ::= Z # ellipsis
1125 if (Proto->isVariadic())
1126 Out << 'Z';
1127 else
1128 Out << '@';
1129 }
1130
1131 mangleThrowSpecification(Proto);
1132}
1133
1134void MicrosoftCXXNameMangler::mangleFunctionClass(const FunctionDecl *FD) {
1135 // <function-class> ::= A # private: near
1136 // ::= B # private: far
1137 // ::= C # private: static near
1138 // ::= D # private: static far
1139 // ::= E # private: virtual near
1140 // ::= F # private: virtual far
1141 // ::= G # private: thunk near
1142 // ::= H # private: thunk far
1143 // ::= I # protected: near
1144 // ::= J # protected: far
1145 // ::= K # protected: static near
1146 // ::= L # protected: static far
1147 // ::= M # protected: virtual near
1148 // ::= N # protected: virtual far
1149 // ::= O # protected: thunk near
1150 // ::= P # protected: thunk far
1151 // ::= Q # public: near
1152 // ::= R # public: far
1153 // ::= S # public: static near
1154 // ::= T # public: static far
1155 // ::= U # public: virtual near
1156 // ::= V # public: virtual far
1157 // ::= W # public: thunk near
1158 // ::= X # public: thunk far
1159 // ::= Y # global near
1160 // ::= Z # global far
1161 if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(FD)) {
1162 switch (MD->getAccess()) {
1163 default:
1164 case AS_private:
1165 if (MD->isStatic())
1166 Out << 'C';
1167 else if (MD->isVirtual())
1168 Out << 'E';
1169 else
1170 Out << 'A';
1171 break;
1172 case AS_protected:
1173 if (MD->isStatic())
1174 Out << 'K';
1175 else if (MD->isVirtual())
1176 Out << 'M';
1177 else
1178 Out << 'I';
1179 break;
1180 case AS_public:
1181 if (MD->isStatic())
1182 Out << 'S';
1183 else if (MD->isVirtual())
1184 Out << 'U';
1185 else
1186 Out << 'Q';
1187 }
1188 } else
1189 Out << 'Y';
1190}
1191void MicrosoftCXXNameMangler::mangleCallingConvention(const FunctionType *T,
1192 bool IsInstMethod) {
1193 // <calling-convention> ::= A # __cdecl
1194 // ::= B # __export __cdecl
1195 // ::= C # __pascal
1196 // ::= D # __export __pascal
1197 // ::= E # __thiscall
1198 // ::= F # __export __thiscall
1199 // ::= G # __stdcall
1200 // ::= H # __export __stdcall
1201 // ::= I # __fastcall
1202 // ::= J # __export __fastcall
1203 // The 'export' calling conventions are from a bygone era
1204 // (*cough*Win16*cough*) when functions were declared for export with
1205 // that keyword. (It didn't actually export them, it just made them so
1206 // that they could be in a DLL and somebody from another module could call
1207 // them.)
1208 CallingConv CC = T->getCallConv();
Timur Iskhodzhanov8f88a1d2012-07-12 09:50:54 +00001209 if (CC == CC_Default) {
1210 if (IsInstMethod) {
1211 const FunctionProtoType *FPT =
1212 T->getCanonicalTypeUnqualified().getAs<FunctionProtoType>();
1213 bool isVariadic = FPT->isVariadic();
1214 CC = getASTContext().getDefaultCXXMethodCallConv(isVariadic);
1215 } else {
1216 CC = CC_C;
1217 }
1218 }
Peter Collingbourne14110472011-01-13 18:57:25 +00001219 switch (CC) {
Anton Korobeynikov414d8962011-04-14 20:06:49 +00001220 default:
David Blaikieb219cfc2011-09-23 05:06:16 +00001221 llvm_unreachable("Unsupported CC for mangling");
Peter Collingbourne14110472011-01-13 18:57:25 +00001222 case CC_Default:
1223 case CC_C: Out << 'A'; break;
1224 case CC_X86Pascal: Out << 'C'; break;
1225 case CC_X86ThisCall: Out << 'E'; break;
1226 case CC_X86StdCall: Out << 'G'; break;
1227 case CC_X86FastCall: Out << 'I'; break;
1228 }
1229}
1230void MicrosoftCXXNameMangler::mangleThrowSpecification(
1231 const FunctionProtoType *FT) {
1232 // <throw-spec> ::= Z # throw(...) (default)
1233 // ::= @ # throw() or __declspec/__attribute__((nothrow))
1234 // ::= <type>+
1235 // NOTE: Since the Microsoft compiler ignores throw specifications, they are
1236 // all actually mangled as 'Z'. (They're ignored because their associated
1237 // functionality isn't implemented, and probably never will be.)
1238 Out << 'Z';
1239}
1240
Charles Davise0deb032012-06-13 00:18:14 +00001241void MicrosoftCXXNameMangler::mangleType(const UnresolvedUsingType *T,
1242 SourceRange Range) {
1243 // Probably should be mangled as a template instantiation; need to see what
1244 // VC does first.
1245 DiagnosticsEngine &Diags = Context.getDiags();
1246 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1247 "cannot mangle this unresolved dependent type yet");
1248 Diags.Report(Range.getBegin(), DiagID)
1249 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001250}
1251
1252// <type> ::= <union-type> | <struct-type> | <class-type> | <enum-type>
1253// <union-type> ::= T <name>
1254// <struct-type> ::= U <name>
1255// <class-type> ::= V <name>
1256// <enum-type> ::= W <size> <name>
Charles Davise0deb032012-06-13 00:18:14 +00001257void MicrosoftCXXNameMangler::mangleType(const EnumType *T, SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001258 mangleType(static_cast<const TagType*>(T));
1259}
Charles Davise0deb032012-06-13 00:18:14 +00001260void MicrosoftCXXNameMangler::mangleType(const RecordType *T, SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001261 mangleType(static_cast<const TagType*>(T));
1262}
1263void MicrosoftCXXNameMangler::mangleType(const TagType *T) {
1264 switch (T->getDecl()->getTagKind()) {
1265 case TTK_Union:
1266 Out << 'T';
1267 break;
1268 case TTK_Struct:
1269 Out << 'U';
1270 break;
1271 case TTK_Class:
1272 Out << 'V';
1273 break;
1274 case TTK_Enum:
1275 Out << 'W';
1276 Out << getASTContext().getTypeSizeInChars(
1277 cast<EnumDecl>(T->getDecl())->getIntegerType()).getQuantity();
1278 break;
1279 }
1280 mangleName(T->getDecl());
1281}
1282
1283// <type> ::= <array-type>
1284// <array-type> ::= P <cvr-qualifiers> [Y <dimension-count> <dimension>+]
1285// <element-type> # as global
1286// ::= Q <cvr-qualifiers> [Y <dimension-count> <dimension>+]
1287// <element-type> # as param
1288// It's supposed to be the other way around, but for some strange reason, it
1289// isn't. Today this behavior is retained for the sole purpose of backwards
1290// compatibility.
1291void MicrosoftCXXNameMangler::mangleType(const ArrayType *T, bool IsGlobal) {
1292 // This isn't a recursive mangling, so now we have to do it all in this
1293 // one call.
1294 if (IsGlobal)
1295 Out << 'P';
1296 else
1297 Out << 'Q';
1298 mangleExtraDimensions(T->getElementType());
1299}
Charles Davise0deb032012-06-13 00:18:14 +00001300void MicrosoftCXXNameMangler::mangleType(const ConstantArrayType *T,
1301 SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001302 mangleType(static_cast<const ArrayType *>(T), false);
1303}
Charles Davise0deb032012-06-13 00:18:14 +00001304void MicrosoftCXXNameMangler::mangleType(const VariableArrayType *T,
1305 SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001306 mangleType(static_cast<const ArrayType *>(T), false);
1307}
Charles Davise0deb032012-06-13 00:18:14 +00001308void MicrosoftCXXNameMangler::mangleType(const DependentSizedArrayType *T,
1309 SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001310 mangleType(static_cast<const ArrayType *>(T), false);
1311}
Charles Davise0deb032012-06-13 00:18:14 +00001312void MicrosoftCXXNameMangler::mangleType(const IncompleteArrayType *T,
1313 SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001314 mangleType(static_cast<const ArrayType *>(T), false);
1315}
1316void MicrosoftCXXNameMangler::mangleExtraDimensions(QualType ElementTy) {
Chris Lattner5f9e2722011-07-23 10:55:15 +00001317 SmallVector<llvm::APInt, 3> Dimensions;
Peter Collingbourne14110472011-01-13 18:57:25 +00001318 for (;;) {
Richard Smithc0838d22012-06-08 00:37:04 +00001319 if (const ConstantArrayType *CAT =
1320 getASTContext().getAsConstantArrayType(ElementTy)) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001321 Dimensions.push_back(CAT->getSize());
1322 ElementTy = CAT->getElementType();
1323 } else if (ElementTy->isVariableArrayType()) {
Charles Davise0deb032012-06-13 00:18:14 +00001324 const VariableArrayType *VAT =
1325 getASTContext().getAsVariableArrayType(ElementTy);
1326 DiagnosticsEngine &Diags = Context.getDiags();
1327 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1328 "cannot mangle this variable-length array yet");
1329 Diags.Report(VAT->getSizeExpr()->getExprLoc(), DiagID)
1330 << VAT->getBracketsRange();
1331 return;
Peter Collingbourne14110472011-01-13 18:57:25 +00001332 } else if (ElementTy->isDependentSizedArrayType()) {
1333 // The dependent expression has to be folded into a constant (TODO).
Charles Davise0deb032012-06-13 00:18:14 +00001334 const DependentSizedArrayType *DSAT =
1335 getASTContext().getAsDependentSizedArrayType(ElementTy);
1336 DiagnosticsEngine &Diags = Context.getDiags();
1337 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1338 "cannot mangle this dependent-length array yet");
1339 Diags.Report(DSAT->getSizeExpr()->getExprLoc(), DiagID)
1340 << DSAT->getBracketsRange();
1341 return;
Peter Collingbourne14110472011-01-13 18:57:25 +00001342 } else if (ElementTy->isIncompleteArrayType()) continue;
1343 else break;
1344 }
1345 mangleQualifiers(ElementTy.getQualifiers(), false);
1346 // If there are any additional dimensions, mangle them now.
1347 if (Dimensions.size() > 0) {
1348 Out << 'Y';
1349 // <dimension-count> ::= <number> # number of extra dimensions
1350 mangleNumber(Dimensions.size());
1351 for (unsigned Dim = 0; Dim < Dimensions.size(); ++Dim) {
1352 mangleNumber(Dimensions[Dim].getLimitedValue());
1353 }
1354 }
Charles Davise0deb032012-06-13 00:18:14 +00001355 mangleType(ElementTy.getLocalUnqualifiedType(), SourceRange());
Peter Collingbourne14110472011-01-13 18:57:25 +00001356}
1357
1358// <type> ::= <pointer-to-member-type>
1359// <pointer-to-member-type> ::= <pointer-cvr-qualifiers> <cvr-qualifiers>
1360// <class name> <type>
Charles Davise0deb032012-06-13 00:18:14 +00001361void MicrosoftCXXNameMangler::mangleType(const MemberPointerType *T,
1362 SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001363 QualType PointeeType = T->getPointeeType();
Richard Smithc0838d22012-06-08 00:37:04 +00001364 if (const FunctionProtoType *FPT = PointeeType->getAs<FunctionProtoType>()) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001365 Out << '8';
Richard Smithc0838d22012-06-08 00:37:04 +00001366 mangleName(T->getClass()->castAs<RecordType>()->getDecl());
Peter Collingbourne14110472011-01-13 18:57:25 +00001367 mangleType(FPT, NULL, false, true);
1368 } else {
1369 mangleQualifiers(PointeeType.getQualifiers(), true);
Richard Smithc0838d22012-06-08 00:37:04 +00001370 mangleName(T->getClass()->castAs<RecordType>()->getDecl());
Charles Davise0deb032012-06-13 00:18:14 +00001371 mangleType(PointeeType.getLocalUnqualifiedType(), Range);
Peter Collingbourne14110472011-01-13 18:57:25 +00001372 }
1373}
1374
Charles Davise0deb032012-06-13 00:18:14 +00001375void MicrosoftCXXNameMangler::mangleType(const TemplateTypeParmType *T,
1376 SourceRange Range) {
1377 DiagnosticsEngine &Diags = Context.getDiags();
1378 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1379 "cannot mangle this template type parameter type yet");
1380 Diags.Report(Range.getBegin(), DiagID)
1381 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001382}
1383
Douglas Gregorc3069d62011-01-14 02:55:32 +00001384void MicrosoftCXXNameMangler::mangleType(
Charles Davise0deb032012-06-13 00:18:14 +00001385 const SubstTemplateTypeParmPackType *T,
1386 SourceRange Range) {
1387 DiagnosticsEngine &Diags = Context.getDiags();
1388 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1389 "cannot mangle this substituted parameter pack yet");
1390 Diags.Report(Range.getBegin(), DiagID)
1391 << Range;
Douglas Gregorc3069d62011-01-14 02:55:32 +00001392}
1393
Peter Collingbourne14110472011-01-13 18:57:25 +00001394// <type> ::= <pointer-type>
1395// <pointer-type> ::= <pointer-cvr-qualifiers> <cvr-qualifiers> <type>
Charles Davise0deb032012-06-13 00:18:14 +00001396void MicrosoftCXXNameMangler::mangleType(const PointerType *T,
1397 SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001398 QualType PointeeTy = T->getPointeeType();
1399 if (PointeeTy->isArrayType()) {
1400 // Pointers to arrays are mangled like arrays.
Richard Smithc0838d22012-06-08 00:37:04 +00001401 mangleExtraDimensions(PointeeTy);
1402 } else if (const FunctionType *FT = PointeeTy->getAs<FunctionType>()) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001403 // Function pointers are special.
1404 Out << '6';
Richard Smithc0838d22012-06-08 00:37:04 +00001405 mangleType(FT, NULL, false, false);
Peter Collingbourne14110472011-01-13 18:57:25 +00001406 } else {
1407 if (!PointeeTy.hasQualifiers())
1408 // Lack of qualifiers is mangled as 'A'.
1409 Out << 'A';
Charles Davise0deb032012-06-13 00:18:14 +00001410 mangleType(PointeeTy, Range);
Peter Collingbourne14110472011-01-13 18:57:25 +00001411 }
1412}
Charles Davise0deb032012-06-13 00:18:14 +00001413void MicrosoftCXXNameMangler::mangleType(const ObjCObjectPointerType *T,
1414 SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001415 // Object pointers never have qualifiers.
1416 Out << 'A';
Charles Davise0deb032012-06-13 00:18:14 +00001417 mangleType(T->getPointeeType(), Range);
Peter Collingbourne14110472011-01-13 18:57:25 +00001418}
1419
1420// <type> ::= <reference-type>
1421// <reference-type> ::= A <cvr-qualifiers> <type>
Charles Davise0deb032012-06-13 00:18:14 +00001422void MicrosoftCXXNameMangler::mangleType(const LValueReferenceType *T,
1423 SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001424 Out << 'A';
1425 QualType PointeeTy = T->getPointeeType();
1426 if (!PointeeTy.hasQualifiers())
1427 // Lack of qualifiers is mangled as 'A'.
1428 Out << 'A';
Charles Davise0deb032012-06-13 00:18:14 +00001429 mangleType(PointeeTy, Range);
Peter Collingbourne14110472011-01-13 18:57:25 +00001430}
1431
Richard Smith06e767d2012-06-21 02:52:27 +00001432// <type> ::= <r-value-reference-type>
1433// <r-value-reference-type> ::= $$Q <cvr-qualifiers> <type>
Charles Davise0deb032012-06-13 00:18:14 +00001434void MicrosoftCXXNameMangler::mangleType(const RValueReferenceType *T,
1435 SourceRange Range) {
Richard Smith06e767d2012-06-21 02:52:27 +00001436 Out << "$$Q";
1437 QualType PointeeTy = T->getPointeeType();
1438 if (!PointeeTy.hasQualifiers())
1439 // Lack of qualifiers is mangled as 'A'.
1440 Out << 'A';
1441 mangleType(PointeeTy, Range);
Peter Collingbourne14110472011-01-13 18:57:25 +00001442}
1443
Charles Davise0deb032012-06-13 00:18:14 +00001444void MicrosoftCXXNameMangler::mangleType(const ComplexType *T,
1445 SourceRange Range) {
1446 DiagnosticsEngine &Diags = Context.getDiags();
1447 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1448 "cannot mangle this complex number type yet");
1449 Diags.Report(Range.getBegin(), DiagID)
1450 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001451}
1452
Charles Davise0deb032012-06-13 00:18:14 +00001453void MicrosoftCXXNameMangler::mangleType(const VectorType *T,
1454 SourceRange Range) {
1455 DiagnosticsEngine &Diags = Context.getDiags();
1456 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1457 "cannot mangle this vector type yet");
1458 Diags.Report(Range.getBegin(), DiagID)
1459 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001460}
Charles Davise0deb032012-06-13 00:18:14 +00001461void MicrosoftCXXNameMangler::mangleType(const ExtVectorType *T,
1462 SourceRange Range) {
1463 DiagnosticsEngine &Diags = Context.getDiags();
1464 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1465 "cannot mangle this extended vector type yet");
1466 Diags.Report(Range.getBegin(), DiagID)
1467 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001468}
Charles Davise0deb032012-06-13 00:18:14 +00001469void MicrosoftCXXNameMangler::mangleType(const DependentSizedExtVectorType *T,
1470 SourceRange Range) {
1471 DiagnosticsEngine &Diags = Context.getDiags();
1472 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1473 "cannot mangle this dependent-sized extended vector type yet");
1474 Diags.Report(Range.getBegin(), DiagID)
1475 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001476}
1477
Charles Davise0deb032012-06-13 00:18:14 +00001478void MicrosoftCXXNameMangler::mangleType(const ObjCInterfaceType *T,
1479 SourceRange) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001480 // ObjC interfaces have structs underlying them.
1481 Out << 'U';
1482 mangleName(T->getDecl());
1483}
1484
Charles Davise0deb032012-06-13 00:18:14 +00001485void MicrosoftCXXNameMangler::mangleType(const ObjCObjectType *T,
1486 SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001487 // We don't allow overloading by different protocol qualification,
1488 // so mangling them isn't necessary.
Charles Davise0deb032012-06-13 00:18:14 +00001489 mangleType(T->getBaseType(), Range);
Peter Collingbourne14110472011-01-13 18:57:25 +00001490}
1491
Charles Davise0deb032012-06-13 00:18:14 +00001492void MicrosoftCXXNameMangler::mangleType(const BlockPointerType *T,
1493 SourceRange Range) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001494 Out << "_E";
Charles Davise0deb032012-06-13 00:18:14 +00001495 mangleType(T->getPointeeType(), Range);
Peter Collingbourne14110472011-01-13 18:57:25 +00001496}
1497
Charles Davise0deb032012-06-13 00:18:14 +00001498void MicrosoftCXXNameMangler::mangleType(const InjectedClassNameType *T,
1499 SourceRange Range) {
1500 DiagnosticsEngine &Diags = Context.getDiags();
1501 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1502 "cannot mangle this injected class name type yet");
1503 Diags.Report(Range.getBegin(), DiagID)
1504 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001505}
1506
Charles Davise0deb032012-06-13 00:18:14 +00001507void MicrosoftCXXNameMangler::mangleType(const TemplateSpecializationType *T,
1508 SourceRange Range) {
1509 DiagnosticsEngine &Diags = Context.getDiags();
1510 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1511 "cannot mangle this template specialization type yet");
1512 Diags.Report(Range.getBegin(), DiagID)
1513 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001514}
1515
Charles Davise0deb032012-06-13 00:18:14 +00001516void MicrosoftCXXNameMangler::mangleType(const DependentNameType *T,
1517 SourceRange Range) {
1518 DiagnosticsEngine &Diags = Context.getDiags();
1519 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1520 "cannot mangle this dependent name type yet");
1521 Diags.Report(Range.getBegin(), DiagID)
1522 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001523}
1524
1525void MicrosoftCXXNameMangler::mangleType(
Charles Davise0deb032012-06-13 00:18:14 +00001526 const DependentTemplateSpecializationType *T,
1527 SourceRange Range) {
1528 DiagnosticsEngine &Diags = Context.getDiags();
1529 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1530 "cannot mangle this dependent template specialization type yet");
1531 Diags.Report(Range.getBegin(), DiagID)
1532 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001533}
1534
Charles Davise0deb032012-06-13 00:18:14 +00001535void MicrosoftCXXNameMangler::mangleType(const PackExpansionType *T,
1536 SourceRange Range) {
1537 DiagnosticsEngine &Diags = Context.getDiags();
1538 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1539 "cannot mangle this pack expansion yet");
1540 Diags.Report(Range.getBegin(), DiagID)
1541 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001542}
1543
Charles Davise0deb032012-06-13 00:18:14 +00001544void MicrosoftCXXNameMangler::mangleType(const TypeOfType *T,
1545 SourceRange Range) {
1546 DiagnosticsEngine &Diags = Context.getDiags();
1547 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1548 "cannot mangle this typeof(type) yet");
1549 Diags.Report(Range.getBegin(), DiagID)
1550 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001551}
1552
Charles Davise0deb032012-06-13 00:18:14 +00001553void MicrosoftCXXNameMangler::mangleType(const TypeOfExprType *T,
1554 SourceRange Range) {
1555 DiagnosticsEngine &Diags = Context.getDiags();
1556 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1557 "cannot mangle this typeof(expression) yet");
1558 Diags.Report(Range.getBegin(), DiagID)
1559 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001560}
1561
Charles Davise0deb032012-06-13 00:18:14 +00001562void MicrosoftCXXNameMangler::mangleType(const DecltypeType *T,
1563 SourceRange Range) {
1564 DiagnosticsEngine &Diags = Context.getDiags();
1565 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1566 "cannot mangle this decltype() yet");
1567 Diags.Report(Range.getBegin(), DiagID)
1568 << Range;
Peter Collingbourne14110472011-01-13 18:57:25 +00001569}
1570
Charles Davise0deb032012-06-13 00:18:14 +00001571void MicrosoftCXXNameMangler::mangleType(const UnaryTransformType *T,
1572 SourceRange Range) {
1573 DiagnosticsEngine &Diags = Context.getDiags();
1574 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1575 "cannot mangle this unary transform type yet");
1576 Diags.Report(Range.getBegin(), DiagID)
1577 << Range;
Sean Huntca63c202011-05-24 22:41:36 +00001578}
1579
Charles Davise0deb032012-06-13 00:18:14 +00001580void MicrosoftCXXNameMangler::mangleType(const AutoType *T, SourceRange Range) {
1581 DiagnosticsEngine &Diags = Context.getDiags();
1582 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1583 "cannot mangle this 'auto' type yet");
1584 Diags.Report(Range.getBegin(), DiagID)
1585 << Range;
Richard Smith34b41d92011-02-20 03:19:35 +00001586}
1587
Charles Davise0deb032012-06-13 00:18:14 +00001588void MicrosoftCXXNameMangler::mangleType(const AtomicType *T,
1589 SourceRange Range) {
1590 DiagnosticsEngine &Diags = Context.getDiags();
1591 unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1592 "cannot mangle this C11 atomic type yet");
1593 Diags.Report(Range.getBegin(), DiagID)
1594 << Range;
Eli Friedmanb001de72011-10-06 23:00:33 +00001595}
1596
Peter Collingbourne14110472011-01-13 18:57:25 +00001597void MicrosoftMangleContext::mangleName(const NamedDecl *D,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001598 raw_ostream &Out) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001599 assert((isa<FunctionDecl>(D) || isa<VarDecl>(D)) &&
1600 "Invalid mangleName() call, argument is not a variable or function!");
1601 assert(!isa<CXXConstructorDecl>(D) && !isa<CXXDestructorDecl>(D) &&
1602 "Invalid mangleName() call on 'structor decl!");
1603
1604 PrettyStackTraceDecl CrashInfo(D, SourceLocation(),
1605 getASTContext().getSourceManager(),
1606 "Mangling declaration");
1607
Rafael Espindolac4850c22011-02-10 23:59:36 +00001608 MicrosoftCXXNameMangler Mangler(*this, Out);
Peter Collingbourne14110472011-01-13 18:57:25 +00001609 return Mangler.mangle(D);
1610}
1611void MicrosoftMangleContext::mangleThunk(const CXXMethodDecl *MD,
1612 const ThunkInfo &Thunk,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001613 raw_ostream &) {
Charles Davise0deb032012-06-13 00:18:14 +00001614 unsigned DiagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error,
1615 "cannot mangle thunk for this method yet");
1616 getDiags().Report(MD->getLocation(), DiagID);
Peter Collingbourne14110472011-01-13 18:57:25 +00001617}
1618void MicrosoftMangleContext::mangleCXXDtorThunk(const CXXDestructorDecl *DD,
1619 CXXDtorType Type,
1620 const ThisAdjustment &,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001621 raw_ostream &) {
Charles Davise0deb032012-06-13 00:18:14 +00001622 unsigned DiagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error,
1623 "cannot mangle thunk for this destructor yet");
1624 getDiags().Report(DD->getLocation(), DiagID);
Peter Collingbourne14110472011-01-13 18:57:25 +00001625}
1626void MicrosoftMangleContext::mangleCXXVTable(const CXXRecordDecl *RD,
Charles Davise0deb032012-06-13 00:18:14 +00001627 raw_ostream &Out) {
Kaelyn Uhrain28e862a2012-06-13 17:05:13 +00001628 // <mangled-name> ::= ? <operator-name> <class-name> <storage-class>
Charles Davise0deb032012-06-13 00:18:14 +00001629 // <cvr-qualifiers> [<name>] @
1630 // <operator-name> ::= _7 # vftable
1631 // ::= _8 # vbtable
1632 // NOTE: <cvr-qualifiers> here is always 'B' (const). <storage-class>
1633 // is always '6' for vftables and '7' for vbtables. (The difference is
1634 // beyond me.)
1635 // TODO: vbtables.
1636 MicrosoftCXXNameMangler Mangler(*this, Out);
1637 Mangler.getStream() << "\01??_7";
1638 Mangler.mangleName(RD);
1639 Mangler.getStream() << "6B";
1640 // TODO: If the class has more than one vtable, mangle in the class it came
1641 // from.
1642 Mangler.getStream() << '@';
Peter Collingbourne14110472011-01-13 18:57:25 +00001643}
1644void MicrosoftMangleContext::mangleCXXVTT(const CXXRecordDecl *RD,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001645 raw_ostream &) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001646 llvm_unreachable("The MS C++ ABI does not have virtual table tables!");
1647}
1648void MicrosoftMangleContext::mangleCXXCtorVTable(const CXXRecordDecl *RD,
1649 int64_t Offset,
1650 const CXXRecordDecl *Type,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001651 raw_ostream &) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001652 llvm_unreachable("The MS C++ ABI does not have constructor vtables!");
1653}
1654void MicrosoftMangleContext::mangleCXXRTTI(QualType T,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001655 raw_ostream &) {
Charles Davise0deb032012-06-13 00:18:14 +00001656 // FIXME: Give a location...
1657 unsigned DiagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error,
1658 "cannot mangle RTTI descriptors for type %0 yet");
1659 getDiags().Report(DiagID)
1660 << T.getBaseTypeIdentifier();
Peter Collingbourne14110472011-01-13 18:57:25 +00001661}
1662void MicrosoftMangleContext::mangleCXXRTTIName(QualType T,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001663 raw_ostream &) {
Charles Davise0deb032012-06-13 00:18:14 +00001664 // FIXME: Give a location...
1665 unsigned DiagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error,
1666 "cannot mangle the name of type %0 into RTTI descriptors yet");
1667 getDiags().Report(DiagID)
1668 << T.getBaseTypeIdentifier();
Peter Collingbourne14110472011-01-13 18:57:25 +00001669}
1670void MicrosoftMangleContext::mangleCXXCtor(const CXXConstructorDecl *D,
1671 CXXCtorType Type,
Michael J. Spencer50118da2011-12-01 09:55:00 +00001672 raw_ostream & Out) {
1673 MicrosoftCXXNameMangler mangler(*this, Out);
1674 mangler.mangle(D);
Peter Collingbourne14110472011-01-13 18:57:25 +00001675}
1676void MicrosoftMangleContext::mangleCXXDtor(const CXXDestructorDecl *D,
1677 CXXDtorType Type,
Michael J. Spencer50118da2011-12-01 09:55:00 +00001678 raw_ostream & Out) {
1679 MicrosoftCXXNameMangler mangler(*this, Out);
1680 mangler.mangle(D);
Peter Collingbourne14110472011-01-13 18:57:25 +00001681}
Charles Davise0deb032012-06-13 00:18:14 +00001682void MicrosoftMangleContext::mangleReferenceTemporary(const clang::VarDecl *VD,
Chris Lattner5f9e2722011-07-23 10:55:15 +00001683 raw_ostream &) {
Charles Davise0deb032012-06-13 00:18:14 +00001684 unsigned DiagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error,
1685 "cannot mangle this reference temporary yet");
1686 getDiags().Report(VD->getLocation(), DiagID);
Peter Collingbourne14110472011-01-13 18:57:25 +00001687}
1688
1689MangleContext *clang::createMicrosoftMangleContext(ASTContext &Context,
David Blaikied6471f72011-09-25 23:23:43 +00001690 DiagnosticsEngine &Diags) {
Peter Collingbourne14110472011-01-13 18:57:25 +00001691 return new MicrosoftMangleContext(Context, Diags);
1692}