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Zachary Turnerf435a7e2018-07-20 17:27:48 +00001//===- MicrosoftDemangle.cpp ----------------------------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is dual licensed under the MIT and the University of Illinois Open
6// Source Licenses. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file defines a demangler for MSVC-style mangled symbols.
11//
12// This file has no dependencies on the rest of LLVM so that it can be
13// easily reused in other programs such as libcxxabi.
14//
15//===----------------------------------------------------------------------===//
16
17#include "llvm/Demangle/Demangle.h"
18
19#include "Compiler.h"
20#include "StringView.h"
21#include "Utility.h"
22
23#include <cctype>
Zachary Turner5ae08b82018-08-01 18:44:12 +000024#include <cstdio>
Zachary Turnerd742d642018-07-26 19:56:09 +000025#include <tuple>
Zachary Turnerf435a7e2018-07-20 17:27:48 +000026
27// This memory allocator is extremely fast, but it doesn't call dtors
28// for allocated objects. That means you can't use STL containers
29// (such as std::vector) with this allocator. But it pays off --
30// the demangler is 3x faster with this allocator compared to one with
31// STL containers.
32namespace {
Zachary Turnera6869512018-07-30 03:25:27 +000033 constexpr size_t AllocUnit = 4096;
34
Zachary Turnerf435a7e2018-07-20 17:27:48 +000035class ArenaAllocator {
36 struct AllocatorNode {
37 uint8_t *Buf = nullptr;
38 size_t Used = 0;
Zachary Turner71c91f92018-07-30 03:12:34 +000039 size_t Capacity = 0;
Zachary Turnerf435a7e2018-07-20 17:27:48 +000040 AllocatorNode *Next = nullptr;
41 };
42
Zachary Turner71c91f92018-07-30 03:12:34 +000043 void addNode(size_t Capacity) {
44 AllocatorNode *NewHead = new AllocatorNode;
45 NewHead->Buf = new uint8_t[Capacity];
46 NewHead->Next = Head;
47 NewHead->Capacity = Capacity;
48 Head = NewHead;
49 NewHead->Used = 0;
50 }
51
Zachary Turnerf435a7e2018-07-20 17:27:48 +000052public:
Zachary Turnera6869512018-07-30 03:25:27 +000053 ArenaAllocator() { addNode(AllocUnit); }
Zachary Turnerf435a7e2018-07-20 17:27:48 +000054
55 ~ArenaAllocator() {
56 while (Head) {
57 assert(Head->Buf);
58 delete[] Head->Buf;
Reid Klecknerdbae8cd2018-07-23 18:21:43 +000059 AllocatorNode *Next = Head->Next;
60 delete Head;
61 Head = Next;
Zachary Turnerf435a7e2018-07-20 17:27:48 +000062 }
63 }
64
Zachary Turner71c91f92018-07-30 03:12:34 +000065 char *allocUnalignedBuffer(size_t Length) {
66 uint8_t *Buf = Head->Buf + Head->Used;
67
68 Head->Used += Length;
69 if (Head->Used > Head->Capacity) {
70 // It's possible we need a buffer which is larger than our default unit
71 // size, so we need to be careful to add a node with capacity that is at
72 // least as large as what we need.
Zachary Turnera6869512018-07-30 03:25:27 +000073 addNode(std::max(AllocUnit, Length));
Zachary Turner71c91f92018-07-30 03:12:34 +000074 Head->Used = Length;
75 Buf = Head->Buf;
76 }
77
78 return reinterpret_cast<char *>(Buf);
79 }
80
Zachary Turner9d72aa92018-07-20 18:35:06 +000081 template <typename T, typename... Args> T *alloc(Args &&... ConstructorArgs) {
82
83 size_t Size = sizeof(T);
Zachary Turnerf435a7e2018-07-20 17:27:48 +000084 assert(Head && Head->Buf);
85
Zachary Turner9d72aa92018-07-20 18:35:06 +000086 size_t P = (size_t)Head->Buf + Head->Used;
87 uintptr_t AlignedP =
88 (((size_t)P + alignof(T) - 1) & ~(size_t)(alignof(T) - 1));
89 uint8_t *PP = (uint8_t *)AlignedP;
90 size_t Adjustment = AlignedP - P;
91
92 Head->Used += Size + Adjustment;
Zachary Turner71c91f92018-07-30 03:12:34 +000093 if (Head->Used < Head->Capacity)
Zachary Turner9d72aa92018-07-20 18:35:06 +000094 return new (PP) T(std::forward<Args>(ConstructorArgs)...);
Zachary Turnerf435a7e2018-07-20 17:27:48 +000095
Zachary Turnera6869512018-07-30 03:25:27 +000096 addNode(AllocUnit);
Zachary Turner71c91f92018-07-30 03:12:34 +000097 Head->Used = Size;
98 return new (Head->Buf) T(std::forward<Args>(ConstructorArgs)...);
Zachary Turnerf435a7e2018-07-20 17:27:48 +000099 }
100
101private:
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000102 AllocatorNode *Head = nullptr;
103};
104} // namespace
105
106static bool startsWithDigit(StringView S) {
107 return !S.empty() && std::isdigit(S.front());
108}
109
110// Writes a space if the last token does not end with a punctuation.
111static void outputSpaceIfNecessary(OutputStream &OS) {
112 if (OS.empty())
113 return;
114
115 char C = OS.back();
116 if (isalnum(C) || C == '>')
117 OS << " ";
118}
119
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000120// Storage classes
121enum Qualifiers : uint8_t {
122 Q_None = 0,
123 Q_Const = 1 << 0,
124 Q_Volatile = 1 << 1,
125 Q_Far = 1 << 2,
126 Q_Huge = 1 << 3,
127 Q_Unaligned = 1 << 4,
128 Q_Restrict = 1 << 5,
129 Q_Pointer64 = 1 << 6
130};
131
132enum class StorageClass : uint8_t {
133 None,
134 PrivateStatic,
135 ProtectedStatic,
136 PublicStatic,
137 Global,
138 FunctionLocalStatic
139};
140
141enum class QualifierMangleMode { Drop, Mangle, Result };
Zachary Turnerd742d642018-07-26 19:56:09 +0000142
Zachary Turner931e8792018-07-30 23:02:10 +0000143enum class PointerAffinity { Pointer, Reference, RValueReference };
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000144
145// Calling conventions
146enum class CallingConv : uint8_t {
147 None,
148 Cdecl,
149 Pascal,
150 Thiscall,
151 Stdcall,
152 Fastcall,
153 Clrcall,
154 Eabi,
155 Vectorcall,
156 Regcall,
157};
158
159enum class ReferenceKind : uint8_t { None, LValueRef, RValueRef };
160
161// Types
162enum class PrimTy : uint8_t {
163 Unknown,
164 None,
165 Function,
166 Ptr,
Zachary Turnerd742d642018-07-26 19:56:09 +0000167 MemberPtr,
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000168 Array,
169
170 Struct,
171 Union,
172 Class,
173 Enum,
174
175 Void,
176 Bool,
177 Char,
178 Schar,
179 Uchar,
Zachary Turner931e8792018-07-30 23:02:10 +0000180 Char16,
181 Char32,
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000182 Short,
183 Ushort,
184 Int,
185 Uint,
186 Long,
187 Ulong,
188 Int64,
189 Uint64,
190 Wchar,
191 Float,
192 Double,
193 Ldouble,
Zachary Turner931e8792018-07-30 23:02:10 +0000194 Nullptr
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000195};
196
197// Function classes
Zachary Turner29ec67b2018-08-10 21:09:05 +0000198enum FuncClass : uint16_t {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000199 Public = 1 << 0,
200 Protected = 1 << 1,
201 Private = 1 << 2,
202 Global = 1 << 3,
203 Static = 1 << 4,
204 Virtual = 1 << 5,
Zachary Turner91ecedd2018-07-20 18:07:33 +0000205 Far = 1 << 6,
Zachary Turner29ec67b2018-08-10 21:09:05 +0000206 ExternC = 1 << 7,
207 NoPrototype = 1 << 8,
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000208};
209
Zachary Turner58d29cf2018-08-08 00:43:31 +0000210enum NameBackrefBehavior : uint8_t {
211 NBB_None = 0, // don't save any names as backrefs.
212 NBB_Template = 1 << 0, // save template instanations.
213 NBB_Simple = 1 << 1, // save simple names.
214};
215
Zachary Turner44ebbc22018-08-01 18:32:47 +0000216enum class SymbolCategory { Function, Variable };
217
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000218namespace {
219
Zachary Turner172aea12018-08-02 17:08:03 +0000220struct NameResolver {
Zachary Turnerae672182018-08-02 17:33:33 +0000221 virtual ~NameResolver() = default;
Zachary Turner172aea12018-08-02 17:08:03 +0000222 virtual StringView resolve(StringView S) = 0;
223};
224
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000225struct Type;
Zachary Turner931e8792018-07-30 23:02:10 +0000226struct Name;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000227
Zachary Turnerd30700f2018-07-31 17:16:44 +0000228struct FunctionParams {
Zachary Turner38b78a72018-07-26 20:20:10 +0000229 bool IsVariadic = false;
230
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000231 Type *Current = nullptr;
232
Zachary Turnerd30700f2018-07-31 17:16:44 +0000233 FunctionParams *Next = nullptr;
234};
Zachary Turner931e8792018-07-30 23:02:10 +0000235
Zachary Turnerd30700f2018-07-31 17:16:44 +0000236struct TemplateParams {
237 bool IsTemplateTemplate = false;
238 bool IsAliasTemplate = false;
Zachary Turnerdbefc6c2018-08-10 14:31:04 +0000239 bool IsIntegerLiteral = false;
240 bool IntegerLiteralIsNegative = false;
241 bool IsEmptyParameterPack = false;
242 bool PointerToSymbol = false;
243 bool ReferenceToSymbol = false;
244
245 // If IsIntegerLiteral is true, this is a non-type template parameter
246 // whose value is contained in this field.
247 uint64_t IntegralValue = 0;
Zachary Turnerd30700f2018-07-31 17:16:44 +0000248
249 // Type can be null if this is a template template parameter. In that case
250 // only Name will be valid.
251 Type *ParamType = nullptr;
252
253 // Name can be valid if this is a template template parameter (see above) or
254 // this is a function declaration (e.g. foo<&SomeFunc>). In the latter case
255 // Name contains the name of the function and Type contains the signature.
256 Name *ParamName = nullptr;
257
258 TemplateParams *Next = nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000259};
260
261// The type class. Mangled symbols are first parsed and converted to
262// this type and then converted to string.
263struct Type {
264 virtual ~Type() {}
265
266 virtual Type *clone(ArenaAllocator &Arena) const;
267
268 // Write the "first half" of a given type. This is a static functions to
269 // give the code a chance to do processing that is common to a subset of
270 // subclasses
Zachary Turner172aea12018-08-02 17:08:03 +0000271 static void outputPre(OutputStream &OS, Type &Ty, NameResolver &Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000272
273 // Write the "second half" of a given type. This is a static functions to
274 // give the code a chance to do processing that is common to a subset of
275 // subclasses
Zachary Turner172aea12018-08-02 17:08:03 +0000276 static void outputPost(OutputStream &OS, Type &Ty, NameResolver &Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000277
Zachary Turner172aea12018-08-02 17:08:03 +0000278 virtual void outputPre(OutputStream &OS, NameResolver &Resolver);
279 virtual void outputPost(OutputStream &OS, NameResolver &Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000280
281 // Primitive type such as Int.
282 PrimTy Prim = PrimTy::Unknown;
283
284 Qualifiers Quals = Q_None;
285 StorageClass Storage = StorageClass::None; // storage class
286};
287
288// Represents an identifier which may be a template.
289struct Name {
Zachary Turner44ebbc22018-08-01 18:32:47 +0000290 bool IsTemplateInstantiation = false;
291 bool IsOperator = false;
Zachary Turner172aea12018-08-02 17:08:03 +0000292 bool IsBackReference = false;
Zachary Turnera17721c2018-08-10 15:04:56 +0000293 bool IsConversionOperator = false;
294
295 // Name read from an MangledName string.
296 StringView Str;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000297
Zachary Turner44ebbc22018-08-01 18:32:47 +0000298 // Template parameters. Only valid if Flags contains NF_TemplateInstantiation.
Zachary Turnerd30700f2018-07-31 17:16:44 +0000299 TemplateParams *TParams = nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000300
301 // Nested BackReferences (e.g. "A::B::C") are represented as a linked list.
302 Name *Next = nullptr;
303};
304
305struct PointerType : public Type {
306 Type *clone(ArenaAllocator &Arena) const override;
Zachary Turner172aea12018-08-02 17:08:03 +0000307 void outputPre(OutputStream &OS, NameResolver &Resolver) override;
308 void outputPost(OutputStream &OS, NameResolver &Resolver) override;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000309
Zachary Turner931e8792018-07-30 23:02:10 +0000310 PointerAffinity Affinity;
311
Zachary Turnerd742d642018-07-26 19:56:09 +0000312 // Represents a type X in "a pointer to X", "a reference to X",
313 // "an array of X", or "a function returning X".
314 Type *Pointee = nullptr;
315};
316
317struct MemberPointerType : public Type {
318 Type *clone(ArenaAllocator &Arena) const override;
Zachary Turner172aea12018-08-02 17:08:03 +0000319 void outputPre(OutputStream &OS, NameResolver &Resolver) override;
320 void outputPost(OutputStream &OS, NameResolver &Resolver) override;
Zachary Turnerd742d642018-07-26 19:56:09 +0000321
322 Name *MemberName = nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000323
324 // Represents a type X in "a pointer to X", "a reference to X",
325 // "an array of X", or "a function returning X".
326 Type *Pointee = nullptr;
327};
328
329struct FunctionType : public Type {
330 Type *clone(ArenaAllocator &Arena) const override;
Zachary Turner172aea12018-08-02 17:08:03 +0000331 void outputPre(OutputStream &OS, NameResolver &Resolver) override;
332 void outputPost(OutputStream &OS, NameResolver &Resolver) override;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000333
Zachary Turner024e1762018-07-26 20:33:48 +0000334 // True if this FunctionType instance is the Pointee of a PointerType or
335 // MemberPointerType.
336 bool IsFunctionPointer = false;
337
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000338 Type *ReturnType = nullptr;
339 // If this is a reference, the type of reference.
340 ReferenceKind RefKind;
341
342 CallingConv CallConvention;
343 FuncClass FunctionClass;
344
Zachary Turnerd30700f2018-07-31 17:16:44 +0000345 FunctionParams Params;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000346};
347
348struct UdtType : public Type {
349 Type *clone(ArenaAllocator &Arena) const override;
Zachary Turner172aea12018-08-02 17:08:03 +0000350 void outputPre(OutputStream &OS, NameResolver &Resolver) override;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000351
352 Name *UdtName = nullptr;
353};
354
Zachary Turnerdbefc6c2018-08-10 14:31:04 +0000355struct ArrayDimension {
356 uint64_t Dim = 0;
357 ArrayDimension *Next = nullptr;
358};
359
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000360struct ArrayType : public Type {
361 Type *clone(ArenaAllocator &Arena) const override;
Zachary Turner172aea12018-08-02 17:08:03 +0000362 void outputPre(OutputStream &OS, NameResolver &Resolver) override;
363 void outputPost(OutputStream &OS, NameResolver &Resolver) override;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000364
365 // Either NextDimension or ElementType will be valid.
Zachary Turnerdbefc6c2018-08-10 14:31:04 +0000366 ArrayDimension *Dims = nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000367
368 Type *ElementType = nullptr;
369};
370
371} // namespace
372
Zachary Turnerd742d642018-07-26 19:56:09 +0000373static bool isMemberPointer(StringView MangledName) {
374 switch (MangledName.popFront()) {
Zachary Turner931e8792018-07-30 23:02:10 +0000375 case '$':
376 // This is probably an rvalue reference (e.g. $$Q), and you cannot have an
377 // rvalue reference to a member.
378 return false;
Zachary Turnerd742d642018-07-26 19:56:09 +0000379 case 'A':
380 // 'A' indicates a reference, and you cannot have a reference to a member
Zachary Turner931e8792018-07-30 23:02:10 +0000381 // function or member.
Zachary Turnerd742d642018-07-26 19:56:09 +0000382 return false;
383 case 'P':
384 case 'Q':
385 case 'R':
386 case 'S':
387 // These 4 values indicate some kind of pointer, but we still don't know
388 // what.
389 break;
390 default:
391 assert(false && "Ty is not a pointer type!");
392 }
393
394 // If it starts with a number, then 6 indicates a non-member function
395 // pointer, and 8 indicates a member function pointer.
396 if (startsWithDigit(MangledName)) {
397 assert(MangledName[0] == '6' || MangledName[0] == '8');
398 return (MangledName[0] == '8');
399 }
400
401 // Remove ext qualifiers since those can appear on either type and are
402 // therefore not indicative.
403 MangledName.consumeFront('E'); // 64-bit
404 MangledName.consumeFront('I'); // restrict
405 MangledName.consumeFront('F'); // unaligned
406
407 assert(!MangledName.empty());
408
409 // The next value should be either ABCD (non-member) or QRST (member).
410 switch (MangledName.front()) {
411 case 'A':
412 case 'B':
413 case 'C':
414 case 'D':
415 return false;
416 case 'Q':
417 case 'R':
418 case 'S':
419 case 'T':
420 return true;
421 default:
422 assert(false);
423 }
424 return false;
425}
426
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000427static void outputCallingConvention(OutputStream &OS, CallingConv CC) {
428 outputSpaceIfNecessary(OS);
429
430 switch (CC) {
431 case CallingConv::Cdecl:
432 OS << "__cdecl";
433 break;
434 case CallingConv::Fastcall:
435 OS << "__fastcall";
436 break;
437 case CallingConv::Pascal:
438 OS << "__pascal";
439 break;
440 case CallingConv::Regcall:
441 OS << "__regcall";
442 break;
443 case CallingConv::Stdcall:
444 OS << "__stdcall";
445 break;
446 case CallingConv::Thiscall:
447 OS << "__thiscall";
448 break;
449 case CallingConv::Eabi:
450 OS << "__eabi";
451 break;
452 case CallingConv::Vectorcall:
453 OS << "__vectorcall";
454 break;
455 case CallingConv::Clrcall:
456 OS << "__clrcall";
457 break;
458 default:
459 break;
460 }
461}
462
Zachary Turner71c91f92018-07-30 03:12:34 +0000463static bool startsWithLocalScopePattern(StringView S) {
464 if (!S.consumeFront('?'))
465 return false;
466 if (S.size() < 2)
467 return false;
468
469 size_t End = S.find('?');
470 if (End == StringView::npos)
471 return false;
472 StringView Candidate = S.substr(0, End);
473 if (Candidate.empty())
474 return false;
475
476 // \?[0-9]\?
477 // ?@? is the discriminator 0.
478 if (Candidate.size() == 1)
479 return Candidate[0] == '@' || (Candidate[0] >= '0' && Candidate[0] <= '9');
480
481 // If it's not 0-9, then it's an encoded number terminated with an @
482 if (Candidate.back() != '@')
483 return false;
484 Candidate = Candidate.dropBack();
485
486 // An encoded number starts with B-P and all subsequent digits are in A-P.
487 // Note that the reason the first digit cannot be A is two fold. First, it
488 // would create an ambiguity with ?A which delimits the beginning of an
489 // anonymous namespace. Second, A represents 0, and you don't start a multi
490 // digit number with a leading 0. Presumably the anonymous namespace
491 // ambiguity is also why single digit encoded numbers use 0-9 rather than A-J.
492 if (Candidate[0] < 'B' || Candidate[0] > 'P')
493 return false;
494 Candidate = Candidate.dropFront();
495 while (!Candidate.empty()) {
496 if (Candidate[0] < 'A' || Candidate[0] > 'P')
497 return false;
498 Candidate = Candidate.dropFront();
499 }
500
501 return true;
502}
503
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000504// Write a function or template parameter list.
Zachary Turner172aea12018-08-02 17:08:03 +0000505static void outputParameterList(OutputStream &OS, const FunctionParams &Params,
506 NameResolver &Resolver) {
Zachary Turnerd30700f2018-07-31 17:16:44 +0000507 if (!Params.Current) {
508 OS << "void";
Zachary Turner38b78a72018-07-26 20:20:10 +0000509 return;
510 }
511
Zachary Turnerd30700f2018-07-31 17:16:44 +0000512 const FunctionParams *Head = &Params;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000513 while (Head) {
Zachary Turner172aea12018-08-02 17:08:03 +0000514 Type::outputPre(OS, *Head->Current, Resolver);
515 Type::outputPost(OS, *Head->Current, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000516
517 Head = Head->Next;
518
519 if (Head)
520 OS << ", ";
521 }
522}
523
Zachary Turnera17721c2018-08-10 15:04:56 +0000524static void outputName(OutputStream &OS, const Name *TheName, const Type *Ty,
Zachary Turner172aea12018-08-02 17:08:03 +0000525 NameResolver &Resolver);
526
527static void outputParameterList(OutputStream &OS, const TemplateParams &Params,
528 NameResolver &Resolver) {
Zachary Turnerdbefc6c2018-08-10 14:31:04 +0000529 if (Params.IsEmptyParameterPack) {
Zachary Turnerd30700f2018-07-31 17:16:44 +0000530 OS << "<>";
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000531 return;
Zachary Turnerd30700f2018-07-31 17:16:44 +0000532 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000533
534 OS << "<";
Zachary Turnerd30700f2018-07-31 17:16:44 +0000535 const TemplateParams *Head = &Params;
536 while (Head) {
537 // Type can be null if this is a template template parameter,
538 // and Name can be null if this is a simple type.
539
Zachary Turnerdbefc6c2018-08-10 14:31:04 +0000540 if (Head->IsIntegerLiteral) {
541 if (Head->IntegerLiteralIsNegative)
542 OS << '-';
543 OS << Head->IntegralValue;
544 } else if (Head->PointerToSymbol || Head->ReferenceToSymbol) {
545 if (Head->PointerToSymbol)
546 OS << "&";
Zachary Turner172aea12018-08-02 17:08:03 +0000547 Type::outputPre(OS, *Head->ParamType, Resolver);
Zachary Turnera17721c2018-08-10 15:04:56 +0000548 outputName(OS, Head->ParamName, Head->ParamType, Resolver);
Zachary Turner172aea12018-08-02 17:08:03 +0000549 Type::outputPost(OS, *Head->ParamType, Resolver);
Zachary Turnerd30700f2018-07-31 17:16:44 +0000550 } else if (Head->ParamType) {
551 // simple type.
Zachary Turner172aea12018-08-02 17:08:03 +0000552 Type::outputPre(OS, *Head->ParamType, Resolver);
553 Type::outputPost(OS, *Head->ParamType, Resolver);
Zachary Turnerd30700f2018-07-31 17:16:44 +0000554 } else {
555 // Template alias.
Zachary Turnera17721c2018-08-10 15:04:56 +0000556 outputName(OS, Head->ParamName, Head->ParamType, Resolver);
Zachary Turnerd30700f2018-07-31 17:16:44 +0000557 }
558
559 Head = Head->Next;
560
561 if (Head)
562 OS << ", ";
563 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000564 OS << ">";
565}
566
Zachary Turner172aea12018-08-02 17:08:03 +0000567static void outputNameComponent(OutputStream &OS, const Name &N,
568 NameResolver &Resolver) {
Zachary Turnera17721c2018-08-10 15:04:56 +0000569 if (N.IsConversionOperator) {
570 OS << " conv";
571 } else {
572 StringView S = N.Str;
Zachary Turner172aea12018-08-02 17:08:03 +0000573
Zachary Turnera17721c2018-08-10 15:04:56 +0000574 if (N.IsBackReference)
575 S = Resolver.resolve(N.Str);
576 OS << S;
577 }
Zachary Turner172aea12018-08-02 17:08:03 +0000578
Zachary Turnera17721c2018-08-10 15:04:56 +0000579 if (N.IsTemplateInstantiation && N.TParams)
Zachary Turner172aea12018-08-02 17:08:03 +0000580 outputParameterList(OS, *N.TParams, Resolver);
581}
582
Zachary Turnera17721c2018-08-10 15:04:56 +0000583static void outputName(OutputStream &OS, const Name *TheName, const Type *Ty,
Zachary Turner172aea12018-08-02 17:08:03 +0000584 NameResolver &Resolver) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000585 if (!TheName)
586 return;
587
588 outputSpaceIfNecessary(OS);
589
Zachary Turnera7dffb12018-07-28 22:10:42 +0000590 const Name *Previous = nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000591 // Print out namespaces or outer class BackReferences.
592 for (; TheName->Next; TheName = TheName->Next) {
Zachary Turnera7dffb12018-07-28 22:10:42 +0000593 Previous = TheName;
Zachary Turner172aea12018-08-02 17:08:03 +0000594 outputNameComponent(OS, *TheName, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000595 OS << "::";
596 }
597
598 // Print out a regular name.
Zachary Turner44ebbc22018-08-01 18:32:47 +0000599 if (!TheName->IsOperator) {
Zachary Turner172aea12018-08-02 17:08:03 +0000600 outputNameComponent(OS, *TheName, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000601 return;
602 }
603
604 // Print out ctor or dtor.
Zachary Turner44ebbc22018-08-01 18:32:47 +0000605 if (TheName->Str == "dtor")
Zachary Turnera7dffb12018-07-28 22:10:42 +0000606 OS << "~";
607
Zachary Turner44ebbc22018-08-01 18:32:47 +0000608 if (TheName->Str == "ctor" || TheName->Str == "dtor") {
Zachary Turner172aea12018-08-02 17:08:03 +0000609 outputNameComponent(OS, *Previous, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000610 return;
611 }
612
Zachary Turnera17721c2018-08-10 15:04:56 +0000613 if (TheName->IsConversionOperator) {
614 OS << "operator";
615 if (TheName->IsTemplateInstantiation && TheName->TParams)
616 outputParameterList(OS, *TheName->TParams, Resolver);
617 OS << " ";
618 if (Ty) {
619 const FunctionType *FTy = static_cast<const FunctionType *>(Ty);
620 Type::outputPre(OS, *FTy->ReturnType, Resolver);
621 Type::outputPost(OS, *FTy->ReturnType, Resolver);
622 } else {
623 OS << "<conversion>";
624 }
625 } else {
626 // Print out an overloaded operator.
627 OS << "operator";
628 outputNameComponent(OS, *TheName, Resolver);
629 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000630}
631
632namespace {
633
634Type *Type::clone(ArenaAllocator &Arena) const {
Zachary Turner9d72aa92018-07-20 18:35:06 +0000635 return Arena.alloc<Type>(*this);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000636}
637
638// Write the "first half" of a given type.
Zachary Turner172aea12018-08-02 17:08:03 +0000639void Type::outputPre(OutputStream &OS, Type &Ty, NameResolver &Resolver) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000640 // Function types require custom handling of const and static so we
641 // handle them separately. All other types use the same decoration
642 // for these modifiers, so handle them here in common code.
643 if (Ty.Prim == PrimTy::Function) {
Zachary Turner172aea12018-08-02 17:08:03 +0000644 Ty.outputPre(OS, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000645 return;
646 }
647
648 switch (Ty.Storage) {
649 case StorageClass::PrivateStatic:
650 case StorageClass::PublicStatic:
651 case StorageClass::ProtectedStatic:
652 OS << "static ";
653 default:
654 break;
655 }
Zachary Turner172aea12018-08-02 17:08:03 +0000656 Ty.outputPre(OS, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000657
658 if (Ty.Quals & Q_Const) {
659 outputSpaceIfNecessary(OS);
660 OS << "const";
661 }
662
663 if (Ty.Quals & Q_Volatile) {
664 outputSpaceIfNecessary(OS);
665 OS << "volatile";
666 }
Zachary Turnerca7aef12018-07-26 20:25:35 +0000667
668 if (Ty.Quals & Q_Restrict) {
669 outputSpaceIfNecessary(OS);
670 OS << "__restrict";
671 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000672}
673
674// Write the "second half" of a given type.
Zachary Turner172aea12018-08-02 17:08:03 +0000675void Type::outputPost(OutputStream &OS, Type &Ty, NameResolver &Resolver) {
676 Ty.outputPost(OS, Resolver);
677}
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000678
Zachary Turner172aea12018-08-02 17:08:03 +0000679void Type::outputPre(OutputStream &OS, NameResolver &Resolver) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000680 switch (Prim) {
681 case PrimTy::Void:
682 OS << "void";
683 break;
684 case PrimTy::Bool:
685 OS << "bool";
686 break;
687 case PrimTy::Char:
688 OS << "char";
689 break;
690 case PrimTy::Schar:
691 OS << "signed char";
692 break;
693 case PrimTy::Uchar:
694 OS << "unsigned char";
695 break;
Zachary Turner931e8792018-07-30 23:02:10 +0000696 case PrimTy::Char16:
697 OS << "char16_t";
698 break;
699 case PrimTy::Char32:
700 OS << "char32_t";
701 break;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000702 case PrimTy::Short:
703 OS << "short";
704 break;
705 case PrimTy::Ushort:
706 OS << "unsigned short";
707 break;
708 case PrimTy::Int:
709 OS << "int";
710 break;
711 case PrimTy::Uint:
712 OS << "unsigned int";
713 break;
714 case PrimTy::Long:
715 OS << "long";
716 break;
717 case PrimTy::Ulong:
718 OS << "unsigned long";
719 break;
720 case PrimTy::Int64:
721 OS << "__int64";
722 break;
723 case PrimTy::Uint64:
724 OS << "unsigned __int64";
725 break;
726 case PrimTy::Wchar:
727 OS << "wchar_t";
728 break;
729 case PrimTy::Float:
730 OS << "float";
731 break;
732 case PrimTy::Double:
733 OS << "double";
734 break;
735 case PrimTy::Ldouble:
736 OS << "long double";
737 break;
Zachary Turner931e8792018-07-30 23:02:10 +0000738 case PrimTy::Nullptr:
739 OS << "std::nullptr_t";
740 break;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000741 default:
742 assert(false && "Invalid primitive type!");
743 }
744}
Zachary Turner172aea12018-08-02 17:08:03 +0000745void Type::outputPost(OutputStream &OS, NameResolver &Resolver) {}
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000746
747Type *PointerType::clone(ArenaAllocator &Arena) const {
Zachary Turner9d72aa92018-07-20 18:35:06 +0000748 return Arena.alloc<PointerType>(*this);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000749}
750
Zachary Turner024e1762018-07-26 20:33:48 +0000751static void outputPointerIndicator(OutputStream &OS, PointerAffinity Affinity,
Zachary Turner172aea12018-08-02 17:08:03 +0000752 const Name *MemberName, const Type *Pointee,
753 NameResolver &Resolver) {
Zachary Turner024e1762018-07-26 20:33:48 +0000754 // "[]" and "()" (for function parameters) take precedence over "*",
755 // so "int *x(int)" means "x is a function returning int *". We need
756 // parentheses to supercede the default precedence. (e.g. we want to
757 // emit something like "int (*x)(int)".)
758 if (Pointee->Prim == PrimTy::Function || Pointee->Prim == PrimTy::Array) {
759 OS << "(";
760 if (Pointee->Prim == PrimTy::Function) {
761 const FunctionType *FTy = static_cast<const FunctionType *>(Pointee);
762 assert(FTy->IsFunctionPointer);
763 outputCallingConvention(OS, FTy->CallConvention);
764 OS << " ";
765 }
766 }
767
768 if (MemberName) {
Zachary Turnera17721c2018-08-10 15:04:56 +0000769 outputName(OS, MemberName, Pointee, Resolver);
Zachary Turner024e1762018-07-26 20:33:48 +0000770 OS << "::";
771 }
772
773 if (Affinity == PointerAffinity::Pointer)
774 OS << "*";
Zachary Turner931e8792018-07-30 23:02:10 +0000775 else if (Affinity == PointerAffinity::Reference)
Zachary Turner024e1762018-07-26 20:33:48 +0000776 OS << "&";
Zachary Turner931e8792018-07-30 23:02:10 +0000777 else
778 OS << "&&";
Zachary Turner024e1762018-07-26 20:33:48 +0000779}
780
Zachary Turner172aea12018-08-02 17:08:03 +0000781void PointerType::outputPre(OutputStream &OS, NameResolver &Resolver) {
782 Type::outputPre(OS, *Pointee, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000783
784 outputSpaceIfNecessary(OS);
785
786 if (Quals & Q_Unaligned)
787 OS << "__unaligned ";
788
Zachary Turner172aea12018-08-02 17:08:03 +0000789 outputPointerIndicator(OS, Affinity, nullptr, Pointee, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000790
Zachary Turner91ecedd2018-07-20 18:07:33 +0000791 // FIXME: We should output this, but it requires updating lots of tests.
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000792 // if (Ty.Quals & Q_Pointer64)
793 // OS << " __ptr64";
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000794}
795
Zachary Turner172aea12018-08-02 17:08:03 +0000796void PointerType::outputPost(OutputStream &OS, NameResolver &Resolver) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000797 if (Pointee->Prim == PrimTy::Function || Pointee->Prim == PrimTy::Array)
798 OS << ")";
799
Zachary Turner172aea12018-08-02 17:08:03 +0000800 Type::outputPost(OS, *Pointee, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000801}
802
Zachary Turnerd742d642018-07-26 19:56:09 +0000803Type *MemberPointerType::clone(ArenaAllocator &Arena) const {
804 return Arena.alloc<MemberPointerType>(*this);
805}
806
Zachary Turner172aea12018-08-02 17:08:03 +0000807void MemberPointerType::outputPre(OutputStream &OS, NameResolver &Resolver) {
808 Type::outputPre(OS, *Pointee, Resolver);
Zachary Turnerd742d642018-07-26 19:56:09 +0000809
810 outputSpaceIfNecessary(OS);
811
Zachary Turner172aea12018-08-02 17:08:03 +0000812 outputPointerIndicator(OS, PointerAffinity::Pointer, MemberName, Pointee,
813 Resolver);
Zachary Turnerd742d642018-07-26 19:56:09 +0000814
815 // FIXME: We should output this, but it requires updating lots of tests.
816 // if (Ty.Quals & Q_Pointer64)
817 // OS << " __ptr64";
818 if (Quals & Q_Restrict)
819 OS << " __restrict";
820}
821
Zachary Turner172aea12018-08-02 17:08:03 +0000822void MemberPointerType::outputPost(OutputStream &OS, NameResolver &Resolver) {
Zachary Turnerd742d642018-07-26 19:56:09 +0000823 if (Pointee->Prim == PrimTy::Function || Pointee->Prim == PrimTy::Array)
824 OS << ")";
825
Zachary Turner172aea12018-08-02 17:08:03 +0000826 Type::outputPost(OS, *Pointee, Resolver);
Zachary Turnerd742d642018-07-26 19:56:09 +0000827}
828
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000829Type *FunctionType::clone(ArenaAllocator &Arena) const {
Zachary Turner9d72aa92018-07-20 18:35:06 +0000830 return Arena.alloc<FunctionType>(*this);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000831}
832
Zachary Turner172aea12018-08-02 17:08:03 +0000833void FunctionType::outputPre(OutputStream &OS, NameResolver &Resolver) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000834 if (!(FunctionClass & Global)) {
835 if (FunctionClass & Static)
836 OS << "static ";
837 }
Zachary Turner29ec67b2018-08-10 21:09:05 +0000838 if (FunctionClass & ExternC) {
839 OS << "extern \"C\" ";
840 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000841
Zachary Turner38b78a72018-07-26 20:20:10 +0000842 if (ReturnType) {
Zachary Turner172aea12018-08-02 17:08:03 +0000843 Type::outputPre(OS, *ReturnType, Resolver);
Zachary Turner38b78a72018-07-26 20:20:10 +0000844 OS << " ";
845 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000846
Zachary Turner024e1762018-07-26 20:33:48 +0000847 // Function pointers print the calling convention as void (__cdecl *)(params)
848 // rather than void __cdecl (*)(params). So we need to let the PointerType
849 // class handle this.
850 if (!IsFunctionPointer)
851 outputCallingConvention(OS, CallConvention);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000852}
853
Zachary Turner172aea12018-08-02 17:08:03 +0000854void FunctionType::outputPost(OutputStream &OS, NameResolver &Resolver) {
Zachary Turner29ec67b2018-08-10 21:09:05 +0000855 // extern "C" functions don't have a prototype.
856 if (FunctionClass & NoPrototype)
857 return;
858
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000859 OS << "(";
Zachary Turner172aea12018-08-02 17:08:03 +0000860 outputParameterList(OS, Params, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000861 OS << ")";
862 if (Quals & Q_Const)
863 OS << " const";
864 if (Quals & Q_Volatile)
865 OS << " volatile";
Zachary Turner931e8792018-07-30 23:02:10 +0000866 if (Quals & Q_Restrict)
867 OS << " __restrict";
868 if (Quals & Q_Unaligned)
869 OS << " __unaligned";
870
871 if (RefKind == ReferenceKind::LValueRef)
872 OS << " &";
873 else if (RefKind == ReferenceKind::RValueRef)
874 OS << " &&";
Zachary Turner38b78a72018-07-26 20:20:10 +0000875
876 if (ReturnType)
Zachary Turner172aea12018-08-02 17:08:03 +0000877 Type::outputPost(OS, *ReturnType, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000878 return;
879}
880
881Type *UdtType::clone(ArenaAllocator &Arena) const {
Zachary Turner9d72aa92018-07-20 18:35:06 +0000882 return Arena.alloc<UdtType>(*this);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000883}
884
Zachary Turner172aea12018-08-02 17:08:03 +0000885void UdtType::outputPre(OutputStream &OS, NameResolver &Resolver) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000886 switch (Prim) {
887 case PrimTy::Class:
888 OS << "class ";
889 break;
890 case PrimTy::Struct:
891 OS << "struct ";
892 break;
893 case PrimTy::Union:
894 OS << "union ";
895 break;
896 case PrimTy::Enum:
897 OS << "enum ";
898 break;
899 default:
900 assert(false && "Not a udt type!");
901 }
902
Zachary Turnera17721c2018-08-10 15:04:56 +0000903 outputName(OS, UdtName, this, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000904}
905
906Type *ArrayType::clone(ArenaAllocator &Arena) const {
Zachary Turner9d72aa92018-07-20 18:35:06 +0000907 return Arena.alloc<ArrayType>(*this);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000908}
909
Zachary Turner172aea12018-08-02 17:08:03 +0000910void ArrayType::outputPre(OutputStream &OS, NameResolver &Resolver) {
911 Type::outputPre(OS, *ElementType, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000912}
913
Zachary Turner172aea12018-08-02 17:08:03 +0000914void ArrayType::outputPost(OutputStream &OS, NameResolver &Resolver) {
Zachary Turnerdbefc6c2018-08-10 14:31:04 +0000915 ArrayDimension *D = Dims;
916 while (D) {
917 OS << "[";
918 if (D->Dim > 0)
919 OS << D->Dim;
920 OS << "]";
921 D = D->Next;
922 }
923
924 Type::outputPost(OS, *ElementType, Resolver);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000925}
926
Zachary Turner316109b2018-07-29 16:38:02 +0000927struct Symbol {
Zachary Turner44ebbc22018-08-01 18:32:47 +0000928 SymbolCategory Category;
929
Zachary Turner316109b2018-07-29 16:38:02 +0000930 Name *SymbolName = nullptr;
931 Type *SymbolType = nullptr;
932};
933
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000934} // namespace
935
936namespace {
937
Zachary Turnerd346cba2018-08-08 17:17:04 +0000938struct BackrefContext {
939 static constexpr size_t Max = 10;
940
941 Type *FunctionParams[Max];
942 size_t FunctionParamCount = 0;
943
944 // The first 10 BackReferences in a mangled name can be back-referenced by
945 // special name @[0-9]. This is a storage for the first 10 BackReferences.
946 StringView Names[Max];
947 size_t NamesCount = 0;
948};
949
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000950// Demangler class takes the main role in demangling symbols.
951// It has a set of functions to parse mangled symbols into Type instances.
952// It also has a set of functions to cnovert Type instances to strings.
Zachary Turner172aea12018-08-02 17:08:03 +0000953class Demangler : public NameResolver {
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000954public:
Zachary Turner316109b2018-07-29 16:38:02 +0000955 Demangler() = default;
Zachary Turner5b0456d2018-08-02 17:18:01 +0000956 virtual ~Demangler() = default;
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000957
958 // You are supposed to call parse() first and then check if error is true. If
959 // it is false, call output() to write the formatted name to the given stream.
Zachary Turner316109b2018-07-29 16:38:02 +0000960 Symbol *parse(StringView &MangledName);
961 void output(const Symbol *S, OutputStream &OS);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000962
Zachary Turner172aea12018-08-02 17:08:03 +0000963 StringView resolve(StringView N) override;
964
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000965 // True if an error occurred.
966 bool Error = false;
967
Zachary Turner3a758e22018-08-01 18:33:04 +0000968 void dumpBackReferences();
969
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000970private:
Zachary Turner316109b2018-07-29 16:38:02 +0000971 Type *demangleVariableEncoding(StringView &MangledName);
972 Type *demangleFunctionEncoding(StringView &MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000973
Zachary Turner316109b2018-07-29 16:38:02 +0000974 Qualifiers demanglePointerExtQualifiers(StringView &MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000975
976 // Parser functions. This is a recursive-descent parser.
Zachary Turner316109b2018-07-29 16:38:02 +0000977 Type *demangleType(StringView &MangledName, QualifierMangleMode QMM);
978 Type *demangleBasicType(StringView &MangledName);
979 UdtType *demangleClassType(StringView &MangledName);
980 PointerType *demanglePointerType(StringView &MangledName);
981 MemberPointerType *demangleMemberPointerType(StringView &MangledName);
982 FunctionType *demangleFunctionType(StringView &MangledName, bool HasThisQuals,
983 bool IsFunctionPointer);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000984
Zachary Turner316109b2018-07-29 16:38:02 +0000985 ArrayType *demangleArrayType(StringView &MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000986
Zachary Turnerd30700f2018-07-31 17:16:44 +0000987 TemplateParams *demangleTemplateParameterList(StringView &MangledName);
988 FunctionParams demangleFunctionParameterList(StringView &MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000989
Zachary Turnerdbefc6c2018-08-10 14:31:04 +0000990 std::pair<uint64_t, bool> demangleNumber(StringView &MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000991
Zachary Turnerf435a7e2018-07-20 17:27:48 +0000992 void memorizeString(StringView s);
Zachary Turner71c91f92018-07-30 03:12:34 +0000993
994 /// Allocate a copy of \p Borrowed into memory that we own.
995 StringView copyString(StringView Borrowed);
996
Zachary Turner316109b2018-07-29 16:38:02 +0000997 Name *demangleFullyQualifiedTypeName(StringView &MangledName);
998 Name *demangleFullyQualifiedSymbolName(StringView &MangledName);
Zachary Turnera7dffb12018-07-28 22:10:42 +0000999
Zachary Turner44ebbc22018-08-01 18:32:47 +00001000 Name *demangleUnqualifiedTypeName(StringView &MangledName, bool Memorize);
Zachary Turner58d29cf2018-08-08 00:43:31 +00001001 Name *demangleUnqualifiedSymbolName(StringView &MangledName,
1002 NameBackrefBehavior NBB);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001003
Zachary Turner316109b2018-07-29 16:38:02 +00001004 Name *demangleNameScopeChain(StringView &MangledName, Name *UnqualifiedName);
1005 Name *demangleNameScopePiece(StringView &MangledName);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001006
Zachary Turner316109b2018-07-29 16:38:02 +00001007 Name *demangleBackRefName(StringView &MangledName);
Zachary Turner58d29cf2018-08-08 00:43:31 +00001008 Name *demangleTemplateInstantiationName(StringView &MangledName,
1009 NameBackrefBehavior NBB);
Zachary Turner316109b2018-07-29 16:38:02 +00001010 Name *demangleOperatorName(StringView &MangledName);
1011 Name *demangleSimpleName(StringView &MangledName, bool Memorize);
1012 Name *demangleAnonymousNamespaceName(StringView &MangledName);
Zachary Turner71c91f92018-07-30 03:12:34 +00001013 Name *demangleLocallyScopedNamePiece(StringView &MangledName);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001014
Zachary Turner931e8792018-07-30 23:02:10 +00001015 StringView demangleSimpleString(StringView &MangledName, bool Memorize);
1016
Zachary Turner316109b2018-07-29 16:38:02 +00001017 FuncClass demangleFunctionClass(StringView &MangledName);
1018 CallingConv demangleCallingConvention(StringView &MangledName);
1019 StorageClass demangleVariableStorageClass(StringView &MangledName);
1020 ReferenceKind demangleReferenceKind(StringView &MangledName);
1021 void demangleThrowSpecification(StringView &MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001022
Zachary Turner316109b2018-07-29 16:38:02 +00001023 std::pair<Qualifiers, bool> demangleQualifiers(StringView &MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001024
1025 // Memory allocator.
1026 ArenaAllocator Arena;
1027
Zachary Turner23df1312018-07-26 22:13:39 +00001028 // A single type uses one global back-ref table for all function params.
1029 // This means back-refs can even go "into" other types. Examples:
1030 //
1031 // // Second int* is a back-ref to first.
1032 // void foo(int *, int*);
1033 //
1034 // // Second int* is not a back-ref to first (first is not a function param).
1035 // int* foo(int*);
1036 //
1037 // // Second int* is a back-ref to first (ALL function types share the same
1038 // // back-ref map.
1039 // using F = void(*)(int*);
1040 // F G(int *);
Zachary Turnerd346cba2018-08-08 17:17:04 +00001041 BackrefContext Backrefs;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001042};
1043} // namespace
1044
Zachary Turner71c91f92018-07-30 03:12:34 +00001045StringView Demangler::copyString(StringView Borrowed) {
1046 char *Stable = Arena.allocUnalignedBuffer(Borrowed.size() + 1);
1047 std::strcpy(Stable, Borrowed.begin());
1048
1049 return {Stable, Borrowed.size()};
1050}
1051
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001052// Parser entry point.
Zachary Turner316109b2018-07-29 16:38:02 +00001053Symbol *Demangler::parse(StringView &MangledName) {
1054 Symbol *S = Arena.alloc<Symbol>();
1055
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001056 // MSVC-style mangled symbols must start with '?'.
1057 if (!MangledName.consumeFront("?")) {
Zachary Turner316109b2018-07-29 16:38:02 +00001058 S->SymbolName = Arena.alloc<Name>();
1059 S->SymbolName->Str = MangledName;
1060 S->SymbolType = Arena.alloc<Type>();
1061 S->SymbolType->Prim = PrimTy::Unknown;
1062 return S;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001063 }
1064
1065 // What follows is a main symbol name. This may include
1066 // namespaces or class BackReferences.
Zachary Turner316109b2018-07-29 16:38:02 +00001067 S->SymbolName = demangleFullyQualifiedSymbolName(MangledName);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001068 if (Error)
1069 return nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001070 // Read a variable.
Zachary Turner29ec67b2018-08-10 21:09:05 +00001071 if (startsWithDigit(MangledName) && !MangledName.startsWith('9')) {
1072 // 9 is a special marker for an extern "C" function with
1073 // no prototype.
Zachary Turner44ebbc22018-08-01 18:32:47 +00001074 S->Category = SymbolCategory::Variable;
1075 S->SymbolType = demangleVariableEncoding(MangledName);
1076 } else {
1077 S->Category = SymbolCategory::Function;
1078 S->SymbolType = demangleFunctionEncoding(MangledName);
1079 }
1080
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001081 if (Error)
1082 return nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001083
Zachary Turner316109b2018-07-29 16:38:02 +00001084 return S;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001085}
1086
1087// <type-encoding> ::= <storage-class> <variable-type>
1088// <storage-class> ::= 0 # private static member
1089// ::= 1 # protected static member
1090// ::= 2 # public static member
1091// ::= 3 # global
1092// ::= 4 # static local
1093
Zachary Turner316109b2018-07-29 16:38:02 +00001094Type *Demangler::demangleVariableEncoding(StringView &MangledName) {
1095 StorageClass SC = demangleVariableStorageClass(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001096
Zachary Turner316109b2018-07-29 16:38:02 +00001097 Type *Ty = demangleType(MangledName, QualifierMangleMode::Drop);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001098
1099 Ty->Storage = SC;
1100
1101 // <variable-type> ::= <type> <cvr-qualifiers>
1102 // ::= <type> <pointee-cvr-qualifiers> # pointers, references
1103 switch (Ty->Prim) {
1104 case PrimTy::Ptr:
Zachary Turnerd742d642018-07-26 19:56:09 +00001105 case PrimTy::MemberPtr: {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001106 Qualifiers ExtraChildQuals = Q_None;
Zachary Turner316109b2018-07-29 16:38:02 +00001107 Ty->Quals =
1108 Qualifiers(Ty->Quals | demanglePointerExtQualifiers(MangledName));
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001109
Zachary Turnerd742d642018-07-26 19:56:09 +00001110 bool IsMember = false;
Zachary Turner316109b2018-07-29 16:38:02 +00001111 std::tie(ExtraChildQuals, IsMember) = demangleQualifiers(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001112
Zachary Turnerd742d642018-07-26 19:56:09 +00001113 if (Ty->Prim == PrimTy::MemberPtr) {
1114 assert(IsMember);
Zachary Turner316109b2018-07-29 16:38:02 +00001115 Name *BackRefName = demangleFullyQualifiedTypeName(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001116 (void)BackRefName;
Zachary Turnerd742d642018-07-26 19:56:09 +00001117 MemberPointerType *MPTy = static_cast<MemberPointerType *>(Ty);
1118 MPTy->Pointee->Quals = Qualifiers(MPTy->Pointee->Quals | ExtraChildQuals);
1119 } else {
1120 PointerType *PTy = static_cast<PointerType *>(Ty);
1121 PTy->Pointee->Quals = Qualifiers(PTy->Pointee->Quals | ExtraChildQuals);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001122 }
1123
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001124 break;
1125 }
1126 default:
Zachary Turner316109b2018-07-29 16:38:02 +00001127 Ty->Quals = demangleQualifiers(MangledName).first;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001128 break;
1129 }
1130
1131 return Ty;
1132}
1133
1134// Sometimes numbers are encoded in mangled symbols. For example,
1135// "int (*x)[20]" is a valid C type (x is a pointer to an array of
1136// length 20), so we need some way to embed numbers as part of symbols.
1137// This function parses it.
1138//
1139// <number> ::= [?] <non-negative integer>
1140//
1141// <non-negative integer> ::= <decimal digit> # when 1 <= Number <= 10
1142// ::= <hex digit>+ @ # when Numbrer == 0 or >= 10
1143//
1144// <hex-digit> ::= [A-P] # A = 0, B = 1, ...
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001145std::pair<uint64_t, bool> Demangler::demangleNumber(StringView &MangledName) {
1146 bool IsNegative = MangledName.consumeFront('?');
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001147
1148 if (startsWithDigit(MangledName)) {
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001149 uint64_t Ret = MangledName[0] - '0' + 1;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001150 MangledName = MangledName.dropFront(1);
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001151 return {Ret, IsNegative};
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001152 }
1153
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001154 uint64_t Ret = 0;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001155 for (size_t i = 0; i < MangledName.size(); ++i) {
1156 char C = MangledName[i];
1157 if (C == '@') {
1158 MangledName = MangledName.dropFront(i + 1);
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001159 return {Ret, IsNegative};
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001160 }
1161 if ('A' <= C && C <= 'P') {
1162 Ret = (Ret << 4) + (C - 'A');
1163 continue;
1164 }
1165 break;
1166 }
1167
1168 Error = true;
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001169 return {0ULL, false};
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001170}
1171
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001172// First 10 strings can be referenced by special BackReferences ?0, ?1, ..., ?9.
1173// Memorize it.
1174void Demangler::memorizeString(StringView S) {
Zachary Turnerd346cba2018-08-08 17:17:04 +00001175 if (Backrefs.NamesCount >= BackrefContext::Max)
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001176 return;
Zachary Turnerd346cba2018-08-08 17:17:04 +00001177 for (size_t i = 0; i < Backrefs.NamesCount; ++i)
1178 if (S == Backrefs.Names[i])
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001179 return;
Zachary Turnerd346cba2018-08-08 17:17:04 +00001180 Backrefs.Names[Backrefs.NamesCount++] = S;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001181}
1182
Zachary Turner316109b2018-07-29 16:38:02 +00001183Name *Demangler::demangleBackRefName(StringView &MangledName) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001184 assert(startsWithDigit(MangledName));
Zachary Turnera7dffb12018-07-28 22:10:42 +00001185 Name *Node = Arena.alloc<Name>();
Zachary Turner172aea12018-08-02 17:08:03 +00001186 Node->IsBackReference = true;
1187 Node->Str = {MangledName.begin(), 1};
1188 MangledName = MangledName.dropFront();
Zachary Turnera7dffb12018-07-28 22:10:42 +00001189 return Node;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001190}
1191
Zachary Turner58d29cf2018-08-08 00:43:31 +00001192Name *Demangler::demangleTemplateInstantiationName(StringView &MangledName,
1193 NameBackrefBehavior NBB) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001194 assert(MangledName.startsWith("?$"));
1195 MangledName.consumeFront("?$");
1196
Zachary Turnerd346cba2018-08-08 17:17:04 +00001197 BackrefContext OuterContext;
1198 std::swap(OuterContext, Backrefs);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001199
Zachary Turnerd346cba2018-08-08 17:17:04 +00001200 Name *Node = demangleUnqualifiedSymbolName(MangledName, NBB_None);
1201 if (!Error)
1202 Node->TParams = demangleTemplateParameterList(MangledName);
1203
1204 std::swap(OuterContext, Backrefs);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001205 if (Error)
1206 return nullptr;
Zachary Turner71c91f92018-07-30 03:12:34 +00001207
Zachary Turner44ebbc22018-08-01 18:32:47 +00001208 Node->IsTemplateInstantiation = true;
1209
Zachary Turner58d29cf2018-08-08 00:43:31 +00001210 if (NBB & NBB_Template) {
1211 // Render this class template name into a string buffer so that we can
1212 // memorize it for the purpose of back-referencing.
1213 OutputStream OS = OutputStream::create(nullptr, nullptr, 1024);
Zachary Turnera17721c2018-08-10 15:04:56 +00001214 outputName(OS, Node, nullptr, *this);
Zachary Turner58d29cf2018-08-08 00:43:31 +00001215 OS << '\0';
1216 char *Name = OS.getBuffer();
Zachary Turner71c91f92018-07-30 03:12:34 +00001217
Zachary Turner58d29cf2018-08-08 00:43:31 +00001218 StringView Owned = copyString(Name);
1219 memorizeString(Owned);
1220 std::free(Name);
1221 }
Zachary Turner71c91f92018-07-30 03:12:34 +00001222
Zachary Turnera7dffb12018-07-28 22:10:42 +00001223 return Node;
1224}
1225
Zachary Turner316109b2018-07-29 16:38:02 +00001226Name *Demangler::demangleOperatorName(StringView &MangledName) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001227 assert(MangledName.startsWith('?'));
1228 MangledName.consumeFront('?');
1229
Zachary Turner316109b2018-07-29 16:38:02 +00001230 auto NameString = [this, &MangledName]() -> StringView {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001231 switch (MangledName.popFront()) {
1232 case '0':
1233 return "ctor";
1234 case '1':
1235 return "dtor";
1236 case '2':
1237 return " new";
1238 case '3':
1239 return " delete";
1240 case '4':
1241 return "=";
1242 case '5':
1243 return ">>";
1244 case '6':
1245 return "<<";
1246 case '7':
1247 return "!";
1248 case '8':
1249 return "==";
1250 case '9':
1251 return "!=";
1252 case 'A':
1253 return "[]";
1254 case 'C':
1255 return "->";
1256 case 'D':
1257 return "*";
1258 case 'E':
1259 return "++";
1260 case 'F':
1261 return "--";
1262 case 'G':
1263 return "-";
1264 case 'H':
1265 return "+";
1266 case 'I':
1267 return "&";
1268 case 'J':
1269 return "->*";
1270 case 'K':
1271 return "/";
1272 case 'L':
1273 return "%";
1274 case 'M':
1275 return "<";
1276 case 'N':
1277 return "<=";
1278 case 'O':
1279 return ">";
1280 case 'P':
1281 return ">=";
1282 case 'Q':
1283 return ",";
1284 case 'R':
1285 return "()";
1286 case 'S':
1287 return "~";
1288 case 'T':
1289 return "^";
1290 case 'U':
1291 return "|";
1292 case 'V':
1293 return "&&";
1294 case 'W':
1295 return "||";
1296 case 'X':
1297 return "*=";
1298 case 'Y':
1299 return "+=";
1300 case 'Z':
1301 return "-=";
1302 case '_': {
1303 if (MangledName.empty())
1304 break;
1305
1306 switch (MangledName.popFront()) {
1307 case '0':
1308 return "/=";
1309 case '1':
1310 return "%=";
1311 case '2':
1312 return ">>=";
1313 case '3':
1314 return "<<=";
1315 case '4':
1316 return "&=";
1317 case '5':
1318 return "|=";
1319 case '6':
1320 return "^=";
1321 case 'U':
1322 return " new[]";
1323 case 'V':
1324 return " delete[]";
1325 case '_':
1326 if (MangledName.consumeFront("L"))
1327 return " co_await";
Zachary Turner931e8792018-07-30 23:02:10 +00001328 if (MangledName.consumeFront("K")) {
1329 size_t EndPos = MangledName.find('@');
1330 if (EndPos == StringView::npos)
1331 break;
1332 StringView OpName = demangleSimpleString(MangledName, false);
1333 size_t FullSize = OpName.size() + 3; // <space>""OpName
1334 char *Buffer = Arena.allocUnalignedBuffer(FullSize);
1335 Buffer[0] = ' ';
1336 Buffer[1] = '"';
1337 Buffer[2] = '"';
1338 std::memcpy(Buffer + 3, OpName.begin(), OpName.size());
1339 return {Buffer, FullSize};
1340 }
Zachary Turnera7dffb12018-07-28 22:10:42 +00001341 }
1342 }
1343 }
1344 Error = true;
1345 return "";
1346 };
1347
1348 Name *Node = Arena.alloc<Name>();
Zachary Turnera17721c2018-08-10 15:04:56 +00001349 if (MangledName.consumeFront('B')) {
1350 // Handle conversion operator specially.
1351 Node->IsConversionOperator = true;
1352 } else {
1353 Node->Str = NameString();
1354 }
Zachary Turner44ebbc22018-08-01 18:32:47 +00001355 Node->IsOperator = true;
Zachary Turnera7dffb12018-07-28 22:10:42 +00001356 return Node;
1357}
1358
Zachary Turner316109b2018-07-29 16:38:02 +00001359Name *Demangler::demangleSimpleName(StringView &MangledName, bool Memorize) {
Zachary Turner931e8792018-07-30 23:02:10 +00001360 StringView S = demangleSimpleString(MangledName, Memorize);
1361 if (Error)
1362 return nullptr;
1363
Zachary Turnera7dffb12018-07-28 22:10:42 +00001364 Name *Node = Arena.alloc<Name>();
Zachary Turner931e8792018-07-30 23:02:10 +00001365 Node->Str = S;
1366 return Node;
1367}
1368
1369StringView Demangler::demangleSimpleString(StringView &MangledName,
1370 bool Memorize) {
1371 StringView S;
Zachary Turnera7dffb12018-07-28 22:10:42 +00001372 for (size_t i = 0; i < MangledName.size(); ++i) {
1373 if (MangledName[i] != '@')
1374 continue;
Zachary Turner931e8792018-07-30 23:02:10 +00001375 S = MangledName.substr(0, i);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001376 MangledName = MangledName.dropFront(i + 1);
1377
1378 if (Memorize)
Zachary Turner931e8792018-07-30 23:02:10 +00001379 memorizeString(S);
1380 return S;
Zachary Turnera7dffb12018-07-28 22:10:42 +00001381 }
1382
1383 Error = true;
Zachary Turner931e8792018-07-30 23:02:10 +00001384 return {};
Zachary Turnera7dffb12018-07-28 22:10:42 +00001385}
1386
Zachary Turner316109b2018-07-29 16:38:02 +00001387Name *Demangler::demangleAnonymousNamespaceName(StringView &MangledName) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001388 assert(MangledName.startsWith("?A"));
1389 MangledName.consumeFront("?A");
1390
1391 Name *Node = Arena.alloc<Name>();
1392 Node->Str = "`anonymous namespace'";
1393 if (MangledName.consumeFront('@'))
1394 return Node;
1395
1396 Error = true;
1397 return nullptr;
1398}
1399
Zachary Turner71c91f92018-07-30 03:12:34 +00001400Name *Demangler::demangleLocallyScopedNamePiece(StringView &MangledName) {
1401 assert(startsWithLocalScopePattern(MangledName));
1402
1403 Name *Node = Arena.alloc<Name>();
1404 MangledName.consumeFront('?');
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001405 auto Number = demangleNumber(MangledName);
1406 assert(!Number.second);
Zachary Turner71c91f92018-07-30 03:12:34 +00001407
1408 // One ? to terminate the number
1409 MangledName.consumeFront('?');
1410
1411 assert(!Error);
1412 Symbol *Scope = parse(MangledName);
1413 if (Error)
1414 return nullptr;
1415
1416 // Render the parent symbol's name into a buffer.
1417 OutputStream OS = OutputStream::create(nullptr, nullptr, 1024);
1418 OS << '`';
1419 output(Scope, OS);
1420 OS << '\'';
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00001421 OS << "::`" << Number.first << "'";
Zachary Turner71c91f92018-07-30 03:12:34 +00001422 OS << '\0';
1423 char *Result = OS.getBuffer();
1424 Node->Str = copyString(Result);
1425 std::free(Result);
1426 return Node;
1427}
1428
Zachary Turnera7dffb12018-07-28 22:10:42 +00001429// Parses a type name in the form of A@B@C@@ which represents C::B::A.
Zachary Turner316109b2018-07-29 16:38:02 +00001430Name *Demangler::demangleFullyQualifiedTypeName(StringView &MangledName) {
Zachary Turner44ebbc22018-08-01 18:32:47 +00001431 Name *TypeName = demangleUnqualifiedTypeName(MangledName, true);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001432 if (Error)
1433 return nullptr;
Zachary Turnera7dffb12018-07-28 22:10:42 +00001434 assert(TypeName);
1435
Zachary Turner316109b2018-07-29 16:38:02 +00001436 Name *QualName = demangleNameScopeChain(MangledName, TypeName);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001437 if (Error)
1438 return nullptr;
Zachary Turnera7dffb12018-07-28 22:10:42 +00001439 assert(QualName);
1440 return QualName;
1441}
1442
1443// Parses a symbol name in the form of A@B@C@@ which represents C::B::A.
1444// Symbol names have slightly different rules regarding what can appear
1445// so we separate out the implementations for flexibility.
Zachary Turner316109b2018-07-29 16:38:02 +00001446Name *Demangler::demangleFullyQualifiedSymbolName(StringView &MangledName) {
Zachary Turner58d29cf2018-08-08 00:43:31 +00001447 // This is the final component of a symbol name (i.e. the leftmost component
1448 // of a mangled name. Since the only possible template instantiation that
1449 // can appear in this context is a function template, and since those are
1450 // not saved for the purposes of name backreferences, only backref simple
1451 // names.
1452 Name *SymbolName = demangleUnqualifiedSymbolName(MangledName, NBB_Simple);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001453 if (Error)
1454 return nullptr;
Zachary Turnera7dffb12018-07-28 22:10:42 +00001455 assert(SymbolName);
1456
Zachary Turner316109b2018-07-29 16:38:02 +00001457 Name *QualName = demangleNameScopeChain(MangledName, SymbolName);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00001458 if (Error)
1459 return nullptr;
Zachary Turnera7dffb12018-07-28 22:10:42 +00001460 assert(QualName);
1461 return QualName;
1462}
1463
Zachary Turner44ebbc22018-08-01 18:32:47 +00001464Name *Demangler::demangleUnqualifiedTypeName(StringView &MangledName,
1465 bool Memorize) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001466 // An inner-most name can be a back-reference, because a fully-qualified name
1467 // (e.g. Scope + Inner) can contain other fully qualified names inside of
1468 // them (for example template parameters), and these nested parameters can
1469 // refer to previously mangled types.
1470 if (startsWithDigit(MangledName))
Zachary Turner316109b2018-07-29 16:38:02 +00001471 return demangleBackRefName(MangledName);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001472
1473 if (MangledName.startsWith("?$"))
Zachary Turner58d29cf2018-08-08 00:43:31 +00001474 return demangleTemplateInstantiationName(MangledName, NBB_Template);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001475
Zachary Turner44ebbc22018-08-01 18:32:47 +00001476 return demangleSimpleName(MangledName, Memorize);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001477}
1478
Zachary Turner44ebbc22018-08-01 18:32:47 +00001479Name *Demangler::demangleUnqualifiedSymbolName(StringView &MangledName,
Zachary Turner58d29cf2018-08-08 00:43:31 +00001480 NameBackrefBehavior NBB) {
Zachary Turner71c91f92018-07-30 03:12:34 +00001481 if (startsWithDigit(MangledName))
1482 return demangleBackRefName(MangledName);
1483 if (MangledName.startsWith("?$"))
Zachary Turner58d29cf2018-08-08 00:43:31 +00001484 return demangleTemplateInstantiationName(MangledName, NBB);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001485 if (MangledName.startsWith('?'))
Zachary Turner316109b2018-07-29 16:38:02 +00001486 return demangleOperatorName(MangledName);
Zachary Turner58d29cf2018-08-08 00:43:31 +00001487 return demangleSimpleName(MangledName, (NBB & NBB_Simple) != 0);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001488}
1489
Zachary Turner316109b2018-07-29 16:38:02 +00001490Name *Demangler::demangleNameScopePiece(StringView &MangledName) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001491 if (startsWithDigit(MangledName))
Zachary Turner316109b2018-07-29 16:38:02 +00001492 return demangleBackRefName(MangledName);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001493
1494 if (MangledName.startsWith("?$"))
Zachary Turner58d29cf2018-08-08 00:43:31 +00001495 return demangleTemplateInstantiationName(MangledName, NBB_Template);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001496
1497 if (MangledName.startsWith("?A"))
Zachary Turner316109b2018-07-29 16:38:02 +00001498 return demangleAnonymousNamespaceName(MangledName);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001499
Zachary Turner71c91f92018-07-30 03:12:34 +00001500 if (startsWithLocalScopePattern(MangledName))
1501 return demangleLocallyScopedNamePiece(MangledName);
1502
Zachary Turner316109b2018-07-29 16:38:02 +00001503 return demangleSimpleName(MangledName, true);
Zachary Turnera7dffb12018-07-28 22:10:42 +00001504}
1505
Zachary Turner316109b2018-07-29 16:38:02 +00001506Name *Demangler::demangleNameScopeChain(StringView &MangledName,
1507 Name *UnqualifiedName) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001508 Name *Head = UnqualifiedName;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001509
1510 while (!MangledName.consumeFront("@")) {
Zachary Turnera7dffb12018-07-28 22:10:42 +00001511 if (MangledName.empty()) {
1512 Error = true;
1513 return nullptr;
1514 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001515
1516 assert(!Error);
Zachary Turner316109b2018-07-29 16:38:02 +00001517 Name *Elem = demangleNameScopePiece(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001518 if (Error)
1519 return nullptr;
1520
1521 Elem->Next = Head;
1522 Head = Elem;
1523 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001524 return Head;
1525}
1526
Zachary Turner316109b2018-07-29 16:38:02 +00001527FuncClass Demangler::demangleFunctionClass(StringView &MangledName) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001528 SwapAndRestore<StringView> RestoreOnError(MangledName, MangledName);
1529 RestoreOnError.shouldRestore(false);
1530
Zachary Turner29ec67b2018-08-10 21:09:05 +00001531 FuncClass TempFlags = FuncClass(0);
1532 if (MangledName.consumeFront("$$J0"))
1533 TempFlags = ExternC;
1534
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001535 switch (MangledName.popFront()) {
Zachary Turner29ec67b2018-08-10 21:09:05 +00001536 case '9':
1537 return FuncClass(TempFlags | ExternC | NoPrototype);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001538 case 'A':
1539 return Private;
1540 case 'B':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001541 return FuncClass(TempFlags | Private | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001542 case 'C':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001543 return FuncClass(TempFlags | Private | Static);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001544 case 'D':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001545 return FuncClass(TempFlags | Private | Static);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001546 case 'E':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001547 return FuncClass(TempFlags | Private | Virtual);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001548 case 'F':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001549 return FuncClass(TempFlags | Private | Virtual);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001550 case 'I':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001551 return FuncClass(TempFlags | Protected);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001552 case 'J':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001553 return FuncClass(TempFlags | Protected | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001554 case 'K':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001555 return FuncClass(TempFlags | Protected | Static);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001556 case 'L':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001557 return FuncClass(TempFlags | Protected | Static | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001558 case 'M':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001559 return FuncClass(TempFlags | Protected | Virtual);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001560 case 'N':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001561 return FuncClass(TempFlags | Protected | Virtual | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001562 case 'Q':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001563 return FuncClass(TempFlags | Public);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001564 case 'R':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001565 return FuncClass(TempFlags | Public | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001566 case 'S':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001567 return FuncClass(TempFlags | Public | Static);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001568 case 'T':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001569 return FuncClass(TempFlags | Public | Static | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001570 case 'U':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001571 return FuncClass(TempFlags | Public | Virtual);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001572 case 'V':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001573 return FuncClass(TempFlags | Public | Virtual | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001574 case 'Y':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001575 return FuncClass(TempFlags | Global);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001576 case 'Z':
Zachary Turner29ec67b2018-08-10 21:09:05 +00001577 return FuncClass(TempFlags | Global | Far);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001578 }
1579
1580 Error = true;
1581 RestoreOnError.shouldRestore(true);
Zachary Turner38b78a72018-07-26 20:20:10 +00001582 return Public;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001583}
1584
Zachary Turner316109b2018-07-29 16:38:02 +00001585CallingConv Demangler::demangleCallingConvention(StringView &MangledName) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001586 switch (MangledName.popFront()) {
1587 case 'A':
1588 case 'B':
1589 return CallingConv::Cdecl;
1590 case 'C':
1591 case 'D':
1592 return CallingConv::Pascal;
1593 case 'E':
1594 case 'F':
1595 return CallingConv::Thiscall;
1596 case 'G':
1597 case 'H':
1598 return CallingConv::Stdcall;
1599 case 'I':
1600 case 'J':
1601 return CallingConv::Fastcall;
1602 case 'M':
1603 case 'N':
1604 return CallingConv::Clrcall;
1605 case 'O':
1606 case 'P':
1607 return CallingConv::Eabi;
1608 case 'Q':
1609 return CallingConv::Vectorcall;
1610 }
1611
1612 return CallingConv::None;
Martin Storsjo0f2abd82018-07-20 18:43:42 +00001613}
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001614
Zachary Turner316109b2018-07-29 16:38:02 +00001615StorageClass Demangler::demangleVariableStorageClass(StringView &MangledName) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001616 assert(std::isdigit(MangledName.front()));
1617
1618 switch (MangledName.popFront()) {
1619 case '0':
1620 return StorageClass::PrivateStatic;
1621 case '1':
1622 return StorageClass::ProtectedStatic;
1623 case '2':
1624 return StorageClass::PublicStatic;
1625 case '3':
1626 return StorageClass::Global;
1627 case '4':
1628 return StorageClass::FunctionLocalStatic;
1629 }
1630 Error = true;
1631 return StorageClass::None;
1632}
1633
Zachary Turner316109b2018-07-29 16:38:02 +00001634std::pair<Qualifiers, bool>
1635Demangler::demangleQualifiers(StringView &MangledName) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001636
1637 switch (MangledName.popFront()) {
Zachary Turnerd742d642018-07-26 19:56:09 +00001638 // Member qualifiers
1639 case 'Q':
1640 return std::make_pair(Q_None, true);
1641 case 'R':
1642 return std::make_pair(Q_Const, true);
1643 case 'S':
1644 return std::make_pair(Q_Volatile, true);
1645 case 'T':
1646 return std::make_pair(Qualifiers(Q_Const | Q_Volatile), true);
1647 // Non-Member qualifiers
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001648 case 'A':
Zachary Turnerd742d642018-07-26 19:56:09 +00001649 return std::make_pair(Q_None, false);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001650 case 'B':
Zachary Turnerd742d642018-07-26 19:56:09 +00001651 return std::make_pair(Q_Const, false);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001652 case 'C':
Zachary Turnerd742d642018-07-26 19:56:09 +00001653 return std::make_pair(Q_Volatile, false);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001654 case 'D':
Zachary Turnerd742d642018-07-26 19:56:09 +00001655 return std::make_pair(Qualifiers(Q_Const | Q_Volatile), false);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001656 }
1657 Error = true;
Zachary Turnerd742d642018-07-26 19:56:09 +00001658 return std::make_pair(Q_None, false);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001659}
1660
Zachary Turner931e8792018-07-30 23:02:10 +00001661static bool isTagType(StringView S) {
1662 switch (S.front()) {
1663 case 'T': // union
1664 case 'U': // struct
1665 case 'V': // class
1666 case 'W': // enum
1667 return true;
1668 }
1669 return false;
1670}
1671
1672static bool isPointerType(StringView S) {
1673 if (S.startsWith("$$Q")) // foo &&
1674 return true;
1675
1676 switch (S.front()) {
1677 case 'A': // foo &
1678 case 'P': // foo *
1679 case 'Q': // foo *const
1680 case 'R': // foo *volatile
1681 case 'S': // foo *const volatile
1682 return true;
1683 }
1684 return false;
1685}
1686
1687static bool isArrayType(StringView S) { return S[0] == 'Y'; }
1688
1689static bool isFunctionType(StringView S) {
1690 return S.startsWith("$$A8@@") || S.startsWith("$$A6");
1691}
1692
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001693// <variable-type> ::= <type> <cvr-qualifiers>
1694// ::= <type> <pointee-cvr-qualifiers> # pointers, references
Zachary Turner316109b2018-07-29 16:38:02 +00001695Type *Demangler::demangleType(StringView &MangledName,
1696 QualifierMangleMode QMM) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001697 Qualifiers Quals = Q_None;
Zachary Turnerd742d642018-07-26 19:56:09 +00001698 bool IsMember = false;
1699 bool IsMemberKnown = false;
1700 if (QMM == QualifierMangleMode::Mangle) {
Zachary Turner316109b2018-07-29 16:38:02 +00001701 std::tie(Quals, IsMember) = demangleQualifiers(MangledName);
Zachary Turnerd742d642018-07-26 19:56:09 +00001702 IsMemberKnown = true;
1703 } else if (QMM == QualifierMangleMode::Result) {
1704 if (MangledName.consumeFront('?')) {
Zachary Turner316109b2018-07-29 16:38:02 +00001705 std::tie(Quals, IsMember) = demangleQualifiers(MangledName);
Zachary Turnerd742d642018-07-26 19:56:09 +00001706 IsMemberKnown = true;
1707 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001708 }
1709
1710 Type *Ty = nullptr;
Zachary Turner931e8792018-07-30 23:02:10 +00001711 if (isTagType(MangledName))
Zachary Turner316109b2018-07-29 16:38:02 +00001712 Ty = demangleClassType(MangledName);
Zachary Turner931e8792018-07-30 23:02:10 +00001713 else if (isPointerType(MangledName)) {
Zachary Turnerd742d642018-07-26 19:56:09 +00001714 if (!IsMemberKnown)
1715 IsMember = isMemberPointer(MangledName);
Zachary Turner931e8792018-07-30 23:02:10 +00001716
Zachary Turnerd742d642018-07-26 19:56:09 +00001717 if (IsMember)
Zachary Turner316109b2018-07-29 16:38:02 +00001718 Ty = demangleMemberPointerType(MangledName);
Zachary Turnerd742d642018-07-26 19:56:09 +00001719 else
Zachary Turner316109b2018-07-29 16:38:02 +00001720 Ty = demanglePointerType(MangledName);
Zachary Turner931e8792018-07-30 23:02:10 +00001721 } else if (isArrayType(MangledName))
Zachary Turner316109b2018-07-29 16:38:02 +00001722 Ty = demangleArrayType(MangledName);
Zachary Turner931e8792018-07-30 23:02:10 +00001723 else if (isFunctionType(MangledName)) {
1724 if (MangledName.consumeFront("$$A8@@"))
1725 Ty = demangleFunctionType(MangledName, true, false);
1726 else {
1727 assert(MangledName.startsWith("$$A6"));
1728 MangledName.consumeFront("$$A6");
1729 Ty = demangleFunctionType(MangledName, false, false);
1730 }
1731 } else {
Zachary Turner316109b2018-07-29 16:38:02 +00001732 Ty = demangleBasicType(MangledName);
Zachary Turner931e8792018-07-30 23:02:10 +00001733 assert(Ty && !Error);
1734 if (!Ty || Error)
1735 return Ty;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001736 }
Zachary Turner931e8792018-07-30 23:02:10 +00001737
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001738 Ty->Quals = Qualifiers(Ty->Quals | Quals);
1739 return Ty;
1740}
1741
Zachary Turner316109b2018-07-29 16:38:02 +00001742ReferenceKind Demangler::demangleReferenceKind(StringView &MangledName) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001743 if (MangledName.consumeFront('G'))
1744 return ReferenceKind::LValueRef;
1745 else if (MangledName.consumeFront('H'))
1746 return ReferenceKind::RValueRef;
1747 return ReferenceKind::None;
1748}
1749
Zachary Turner316109b2018-07-29 16:38:02 +00001750void Demangler::demangleThrowSpecification(StringView &MangledName) {
Zachary Turner38b78a72018-07-26 20:20:10 +00001751 if (MangledName.consumeFront('Z'))
1752 return;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001753
Zachary Turner38b78a72018-07-26 20:20:10 +00001754 Error = true;
1755}
1756
Zachary Turner316109b2018-07-29 16:38:02 +00001757FunctionType *Demangler::demangleFunctionType(StringView &MangledName,
1758 bool HasThisQuals,
Zachary Turner024e1762018-07-26 20:33:48 +00001759 bool IsFunctionPointer) {
Zachary Turner38b78a72018-07-26 20:20:10 +00001760 FunctionType *FTy = Arena.alloc<FunctionType>();
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001761 FTy->Prim = PrimTy::Function;
Zachary Turner024e1762018-07-26 20:33:48 +00001762 FTy->IsFunctionPointer = IsFunctionPointer;
Zachary Turner38b78a72018-07-26 20:20:10 +00001763
1764 if (HasThisQuals) {
Zachary Turner316109b2018-07-29 16:38:02 +00001765 FTy->Quals = demanglePointerExtQualifiers(MangledName);
1766 FTy->RefKind = demangleReferenceKind(MangledName);
1767 FTy->Quals = Qualifiers(FTy->Quals | demangleQualifiers(MangledName).first);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001768 }
1769
1770 // Fields that appear on both member and non-member functions.
Zachary Turner316109b2018-07-29 16:38:02 +00001771 FTy->CallConvention = demangleCallingConvention(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001772
1773 // <return-type> ::= <type>
1774 // ::= @ # structors (they have no declared return type)
1775 bool IsStructor = MangledName.consumeFront('@');
1776 if (!IsStructor)
Zachary Turner316109b2018-07-29 16:38:02 +00001777 FTy->ReturnType = demangleType(MangledName, QualifierMangleMode::Result);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001778
Zachary Turner316109b2018-07-29 16:38:02 +00001779 FTy->Params = demangleFunctionParameterList(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001780
Zachary Turner316109b2018-07-29 16:38:02 +00001781 demangleThrowSpecification(MangledName);
Zachary Turner38b78a72018-07-26 20:20:10 +00001782
1783 return FTy;
1784}
1785
Zachary Turner316109b2018-07-29 16:38:02 +00001786Type *Demangler::demangleFunctionEncoding(StringView &MangledName) {
1787 FuncClass FC = demangleFunctionClass(MangledName);
Zachary Turner29ec67b2018-08-10 21:09:05 +00001788 FunctionType *FTy = nullptr;
1789 if (FC & NoPrototype) {
1790 // This is an extern "C" function whose full signature hasn't been mangled.
1791 // This happens when we need to mangle a local symbol inside of an extern
1792 // "C" function.
1793 FTy = Arena.alloc<FunctionType>();
1794 } else {
1795 bool HasThisQuals = !(FC & (Global | Static));
1796 FTy = demangleFunctionType(MangledName, HasThisQuals, false);
1797 }
Zachary Turner38b78a72018-07-26 20:20:10 +00001798 FTy->FunctionClass = FC;
1799
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001800 return FTy;
1801}
1802
1803// Reads a primitive type.
Zachary Turner316109b2018-07-29 16:38:02 +00001804Type *Demangler::demangleBasicType(StringView &MangledName) {
Zachary Turner9d72aa92018-07-20 18:35:06 +00001805 Type *Ty = Arena.alloc<Type>();
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001806
Zachary Turner931e8792018-07-30 23:02:10 +00001807 if (MangledName.consumeFront("$$T")) {
1808 Ty->Prim = PrimTy::Nullptr;
1809 return Ty;
1810 }
1811
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001812 switch (MangledName.popFront()) {
1813 case 'X':
1814 Ty->Prim = PrimTy::Void;
1815 break;
1816 case 'D':
1817 Ty->Prim = PrimTy::Char;
1818 break;
1819 case 'C':
1820 Ty->Prim = PrimTy::Schar;
1821 break;
1822 case 'E':
1823 Ty->Prim = PrimTy::Uchar;
1824 break;
1825 case 'F':
1826 Ty->Prim = PrimTy::Short;
1827 break;
1828 case 'G':
1829 Ty->Prim = PrimTy::Ushort;
1830 break;
1831 case 'H':
1832 Ty->Prim = PrimTy::Int;
1833 break;
1834 case 'I':
1835 Ty->Prim = PrimTy::Uint;
1836 break;
1837 case 'J':
1838 Ty->Prim = PrimTy::Long;
1839 break;
1840 case 'K':
1841 Ty->Prim = PrimTy::Ulong;
1842 break;
1843 case 'M':
1844 Ty->Prim = PrimTy::Float;
1845 break;
1846 case 'N':
1847 Ty->Prim = PrimTy::Double;
1848 break;
1849 case 'O':
1850 Ty->Prim = PrimTy::Ldouble;
1851 break;
1852 case '_': {
Zachary Turner91ecedd2018-07-20 18:07:33 +00001853 if (MangledName.empty()) {
1854 Error = true;
1855 return nullptr;
1856 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001857 switch (MangledName.popFront()) {
1858 case 'N':
1859 Ty->Prim = PrimTy::Bool;
1860 break;
1861 case 'J':
1862 Ty->Prim = PrimTy::Int64;
1863 break;
1864 case 'K':
1865 Ty->Prim = PrimTy::Uint64;
1866 break;
1867 case 'W':
1868 Ty->Prim = PrimTy::Wchar;
1869 break;
Zachary Turner931e8792018-07-30 23:02:10 +00001870 case 'S':
1871 Ty->Prim = PrimTy::Char16;
1872 break;
1873 case 'U':
1874 Ty->Prim = PrimTy::Char32;
1875 break;
Zachary Turner91ecedd2018-07-20 18:07:33 +00001876 default:
Zachary Turner931e8792018-07-30 23:02:10 +00001877 Error = true;
1878 return nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001879 }
1880 break;
1881 }
Zachary Turner931e8792018-07-30 23:02:10 +00001882 default:
1883 Error = true;
1884 return nullptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001885 }
1886 return Ty;
1887}
1888
Zachary Turner316109b2018-07-29 16:38:02 +00001889UdtType *Demangler::demangleClassType(StringView &MangledName) {
Zachary Turner9d72aa92018-07-20 18:35:06 +00001890 UdtType *UTy = Arena.alloc<UdtType>();
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001891
1892 switch (MangledName.popFront()) {
1893 case 'T':
1894 UTy->Prim = PrimTy::Union;
1895 break;
1896 case 'U':
1897 UTy->Prim = PrimTy::Struct;
1898 break;
1899 case 'V':
1900 UTy->Prim = PrimTy::Class;
1901 break;
1902 case 'W':
1903 if (MangledName.popFront() != '4') {
1904 Error = true;
1905 return nullptr;
1906 }
1907 UTy->Prim = PrimTy::Enum;
1908 break;
1909 default:
1910 assert(false);
1911 }
1912
Zachary Turner316109b2018-07-29 16:38:02 +00001913 UTy->UdtName = demangleFullyQualifiedTypeName(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001914 return UTy;
1915}
1916
Zachary Turnerd742d642018-07-26 19:56:09 +00001917static std::pair<Qualifiers, PointerAffinity>
1918demanglePointerCVQualifiers(StringView &MangledName) {
Zachary Turner931e8792018-07-30 23:02:10 +00001919 if (MangledName.consumeFront("$$Q"))
1920 return std::make_pair(Q_None, PointerAffinity::RValueReference);
1921
Zachary Turnerd742d642018-07-26 19:56:09 +00001922 switch (MangledName.popFront()) {
1923 case 'A':
1924 return std::make_pair(Q_None, PointerAffinity::Reference);
1925 case 'P':
1926 return std::make_pair(Q_None, PointerAffinity::Pointer);
1927 case 'Q':
1928 return std::make_pair(Q_Const, PointerAffinity::Pointer);
1929 case 'R':
1930 return std::make_pair(Q_Volatile, PointerAffinity::Pointer);
1931 case 'S':
1932 return std::make_pair(Qualifiers(Q_Const | Q_Volatile),
1933 PointerAffinity::Pointer);
1934 default:
1935 assert(false && "Ty is not a pointer type!");
1936 }
1937 return std::make_pair(Q_None, PointerAffinity::Pointer);
1938}
1939
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001940// <pointer-type> ::= E? <pointer-cvr-qualifiers> <ext-qualifiers> <type>
1941// # the E is required for 64-bit non-static pointers
Zachary Turner316109b2018-07-29 16:38:02 +00001942PointerType *Demangler::demanglePointerType(StringView &MangledName) {
Zachary Turner9d72aa92018-07-20 18:35:06 +00001943 PointerType *Pointer = Arena.alloc<PointerType>();
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001944
Zachary Turner931e8792018-07-30 23:02:10 +00001945 std::tie(Pointer->Quals, Pointer->Affinity) =
1946 demanglePointerCVQualifiers(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001947
Zachary Turner931e8792018-07-30 23:02:10 +00001948 Pointer->Prim = PrimTy::Ptr;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001949 if (MangledName.consumeFront("6")) {
Zachary Turner316109b2018-07-29 16:38:02 +00001950 Pointer->Pointee = demangleFunctionType(MangledName, false, true);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001951 return Pointer;
1952 }
1953
Zachary Turner316109b2018-07-29 16:38:02 +00001954 Qualifiers ExtQuals = demanglePointerExtQualifiers(MangledName);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001955 Pointer->Quals = Qualifiers(Pointer->Quals | ExtQuals);
1956
Zachary Turner316109b2018-07-29 16:38:02 +00001957 Pointer->Pointee = demangleType(MangledName, QualifierMangleMode::Mangle);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001958 return Pointer;
1959}
1960
Zachary Turner316109b2018-07-29 16:38:02 +00001961MemberPointerType *
1962Demangler::demangleMemberPointerType(StringView &MangledName) {
Zachary Turnerd742d642018-07-26 19:56:09 +00001963 MemberPointerType *Pointer = Arena.alloc<MemberPointerType>();
1964 Pointer->Prim = PrimTy::MemberPtr;
1965
1966 PointerAffinity Affinity;
1967 std::tie(Pointer->Quals, Affinity) = demanglePointerCVQualifiers(MangledName);
1968 assert(Affinity == PointerAffinity::Pointer);
1969
Zachary Turner316109b2018-07-29 16:38:02 +00001970 Qualifiers ExtQuals = demanglePointerExtQualifiers(MangledName);
Zachary Turnerd742d642018-07-26 19:56:09 +00001971 Pointer->Quals = Qualifiers(Pointer->Quals | ExtQuals);
1972
Zachary Turner38b78a72018-07-26 20:20:10 +00001973 if (MangledName.consumeFront("8")) {
Zachary Turner316109b2018-07-29 16:38:02 +00001974 Pointer->MemberName = demangleFullyQualifiedSymbolName(MangledName);
1975 Pointer->Pointee = demangleFunctionType(MangledName, true, true);
Zachary Turner38b78a72018-07-26 20:20:10 +00001976 } else {
1977 Qualifiers PointeeQuals = Q_None;
1978 bool IsMember = false;
Zachary Turner316109b2018-07-29 16:38:02 +00001979 std::tie(PointeeQuals, IsMember) = demangleQualifiers(MangledName);
Zachary Turner38b78a72018-07-26 20:20:10 +00001980 assert(IsMember);
Zachary Turner316109b2018-07-29 16:38:02 +00001981 Pointer->MemberName = demangleFullyQualifiedSymbolName(MangledName);
Zachary Turnerd742d642018-07-26 19:56:09 +00001982
Zachary Turner316109b2018-07-29 16:38:02 +00001983 Pointer->Pointee = demangleType(MangledName, QualifierMangleMode::Drop);
Zachary Turner38b78a72018-07-26 20:20:10 +00001984 Pointer->Pointee->Quals = PointeeQuals;
1985 }
1986
Zachary Turnerd742d642018-07-26 19:56:09 +00001987 return Pointer;
1988}
1989
Zachary Turner316109b2018-07-29 16:38:02 +00001990Qualifiers Demangler::demanglePointerExtQualifiers(StringView &MangledName) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00001991 Qualifiers Quals = Q_None;
1992 if (MangledName.consumeFront('E'))
1993 Quals = Qualifiers(Quals | Q_Pointer64);
1994 if (MangledName.consumeFront('I'))
1995 Quals = Qualifiers(Quals | Q_Restrict);
1996 if (MangledName.consumeFront('F'))
1997 Quals = Qualifiers(Quals | Q_Unaligned);
1998
1999 return Quals;
2000}
2001
Zachary Turner316109b2018-07-29 16:38:02 +00002002ArrayType *Demangler::demangleArrayType(StringView &MangledName) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002003 assert(MangledName.front() == 'Y');
2004 MangledName.popFront();
2005
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00002006 uint64_t Rank = 0;
2007 bool IsNegative = false;
2008 std::tie(Rank, IsNegative) = demangleNumber(MangledName);
2009 if (IsNegative || Rank == 0) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002010 Error = true;
2011 return nullptr;
2012 }
2013
Zachary Turner9d72aa92018-07-20 18:35:06 +00002014 ArrayType *ATy = Arena.alloc<ArrayType>();
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00002015 ATy->Prim = PrimTy::Array;
2016 ATy->Dims = Arena.alloc<ArrayDimension>();
2017 ArrayDimension *Dim = ATy->Dims;
2018 for (uint64_t I = 0; I < Rank; ++I) {
2019 std::tie(Dim->Dim, IsNegative) = demangleNumber(MangledName);
2020 if (IsNegative) {
2021 Error = true;
2022 return nullptr;
2023 }
2024 if (I + 1 < Rank) {
2025 Dim->Next = Arena.alloc<ArrayDimension>();
2026 Dim = Dim->Next;
2027 }
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002028 }
2029
2030 if (MangledName.consumeFront("$$C")) {
2031 if (MangledName.consumeFront("B"))
2032 ATy->Quals = Q_Const;
2033 else if (MangledName.consumeFront("C") || MangledName.consumeFront("D"))
2034 ATy->Quals = Qualifiers(Q_Const | Q_Volatile);
2035 else if (!MangledName.consumeFront("A"))
2036 Error = true;
2037 }
2038
Zachary Turner316109b2018-07-29 16:38:02 +00002039 ATy->ElementType = demangleType(MangledName, QualifierMangleMode::Drop);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002040 return ATy;
2041}
2042
2043// Reads a function or a template parameters.
Zachary Turnerd30700f2018-07-31 17:16:44 +00002044FunctionParams
2045Demangler::demangleFunctionParameterList(StringView &MangledName) {
Zachary Turner38b78a72018-07-26 20:20:10 +00002046 // Empty parameter list.
Zachary Turner38b78a72018-07-26 20:20:10 +00002047 if (MangledName.consumeFront('X'))
2048 return {};
2049
Zachary Turnerd30700f2018-07-31 17:16:44 +00002050 FunctionParams *Head;
2051 FunctionParams **Current = &Head;
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002052 while (!Error && !MangledName.startsWith('@') &&
2053 !MangledName.startsWith('Z')) {
Zachary Turner23df1312018-07-26 22:13:39 +00002054
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002055 if (startsWithDigit(MangledName)) {
Zachary Turner30375de2018-07-26 22:24:01 +00002056 size_t N = MangledName[0] - '0';
Zachary Turnerd346cba2018-08-08 17:17:04 +00002057 if (N >= Backrefs.FunctionParamCount) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002058 Error = true;
2059 return {};
2060 }
2061 MangledName = MangledName.dropFront();
2062
Zachary Turnerd30700f2018-07-31 17:16:44 +00002063 *Current = Arena.alloc<FunctionParams>();
Zachary Turnerd346cba2018-08-08 17:17:04 +00002064 (*Current)->Current = Backrefs.FunctionParams[N]->clone(Arena);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002065 Current = &(*Current)->Next;
2066 continue;
2067 }
2068
Zachary Turner23df1312018-07-26 22:13:39 +00002069 size_t OldSize = MangledName.size();
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002070
Zachary Turnerd30700f2018-07-31 17:16:44 +00002071 *Current = Arena.alloc<FunctionParams>();
Zachary Turner316109b2018-07-29 16:38:02 +00002072 (*Current)->Current = demangleType(MangledName, QualifierMangleMode::Drop);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002073
Zachary Turner23df1312018-07-26 22:13:39 +00002074 size_t CharsConsumed = OldSize - MangledName.size();
2075 assert(CharsConsumed != 0);
2076
2077 // Single-letter types are ignored for backreferences because memorizing
2078 // them doesn't save anything.
Zachary Turnerd346cba2018-08-08 17:17:04 +00002079 if (Backrefs.FunctionParamCount <= 9 && CharsConsumed > 1)
2080 Backrefs.FunctionParams[Backrefs.FunctionParamCount++] =
2081 (*Current)->Current;
Zachary Turner23df1312018-07-26 22:13:39 +00002082
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002083 Current = &(*Current)->Next;
2084 }
2085
Zachary Turner38b78a72018-07-26 20:20:10 +00002086 if (Error)
2087 return {};
2088
2089 // A non-empty parameter list is terminated by either 'Z' (variadic) parameter
2090 // list or '@' (non variadic). Careful not to consume "@Z", as in that case
2091 // the following Z could be a throw specifier.
2092 if (MangledName.consumeFront('@'))
2093 return *Head;
2094
2095 if (MangledName.consumeFront('Z')) {
2096 Head->IsVariadic = true;
2097 return *Head;
2098 }
2099
2100 Error = true;
2101 return {};
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002102}
2103
Zachary Turnerd30700f2018-07-31 17:16:44 +00002104TemplateParams *
2105Demangler::demangleTemplateParameterList(StringView &MangledName) {
2106 TemplateParams *Head;
2107 TemplateParams **Current = &Head;
Zachary Turner23df1312018-07-26 22:13:39 +00002108 while (!Error && !MangledName.startsWith('@')) {
Zachary Turner23df1312018-07-26 22:13:39 +00002109 // Template parameter lists don't participate in back-referencing.
Zachary Turnerd30700f2018-07-31 17:16:44 +00002110 *Current = Arena.alloc<TemplateParams>();
Zachary Turner931e8792018-07-30 23:02:10 +00002111
2112 // Empty parameter pack.
2113 if (MangledName.consumeFront("$S") || MangledName.consumeFront("$$V") ||
2114 MangledName.consumeFront("$$$V")) {
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00002115 (*Current)->IsEmptyParameterPack = true;
Zachary Turner54d4ffe2018-08-01 18:32:28 +00002116 break;
Zachary Turner931e8792018-07-30 23:02:10 +00002117 }
2118
Zachary Turnerd30700f2018-07-31 17:16:44 +00002119 if (MangledName.consumeFront("$$Y")) {
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00002120 // Template alias
Zachary Turnerd30700f2018-07-31 17:16:44 +00002121 (*Current)->IsTemplateTemplate = true;
2122 (*Current)->IsAliasTemplate = true;
2123 (*Current)->ParamName = demangleFullyQualifiedTypeName(MangledName);
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00002124 } else if (MangledName.consumeFront("$$B")) {
2125 // Array
2126 (*Current)->ParamType =
2127 demangleType(MangledName, QualifierMangleMode::Drop);
Zachary Turner073620b2018-08-10 19:57:36 +00002128 } else if (MangledName.consumeFront("$$C")) {
2129 // Type has qualifiers.
2130 (*Current)->ParamType =
2131 demangleType(MangledName, QualifierMangleMode::Mangle);
Zachary Turnerdbefc6c2018-08-10 14:31:04 +00002132 } else if (MangledName.startsWith("$1?")) {
2133 MangledName.consumeFront("$1");
2134 // Pointer to symbol
2135 Symbol *S = parse(MangledName);
2136 (*Current)->ParamName = S->SymbolName;
2137 (*Current)->ParamType = S->SymbolType;
2138 (*Current)->PointerToSymbol = true;
2139 } else if (MangledName.startsWith("$E?")) {
2140 MangledName.consumeFront("$E");
2141 // Reference to symbol
2142 Symbol *S = parse(MangledName);
2143 (*Current)->ParamName = S->SymbolName;
2144 (*Current)->ParamType = S->SymbolType;
2145 (*Current)->ReferenceToSymbol = true;
2146 } else if (MangledName.consumeFront("$0")) {
2147 // Integral non-type template parameter
2148 bool IsNegative = false;
2149 uint64_t Value = 0;
2150 std::tie(Value, IsNegative) = demangleNumber(MangledName);
2151
2152 (*Current)->IsIntegerLiteral = true;
2153 (*Current)->IntegerLiteralIsNegative = IsNegative;
2154 (*Current)->IntegralValue = Value;
Zachary Turnerd30700f2018-07-31 17:16:44 +00002155 } else {
2156 (*Current)->ParamType =
Reid Klecknerd2bad6c2018-07-31 01:08:42 +00002157 demangleType(MangledName, QualifierMangleMode::Drop);
Zachary Turnerd30700f2018-07-31 17:16:44 +00002158 }
Zachary Turner54d4ffe2018-08-01 18:32:28 +00002159 if (Error)
2160 return nullptr;
Zachary Turner23df1312018-07-26 22:13:39 +00002161
2162 Current = &(*Current)->Next;
2163 }
2164
2165 if (Error)
Zachary Turner54d4ffe2018-08-01 18:32:28 +00002166 return nullptr;
Zachary Turner23df1312018-07-26 22:13:39 +00002167
2168 // Template parameter lists cannot be variadic, so it can only be terminated
2169 // by @.
2170 if (MangledName.consumeFront('@'))
Zachary Turner931e8792018-07-30 23:02:10 +00002171 return Head;
Zachary Turner23df1312018-07-26 22:13:39 +00002172 Error = true;
Zachary Turner54d4ffe2018-08-01 18:32:28 +00002173 return nullptr;
Zachary Turner23df1312018-07-26 22:13:39 +00002174}
2175
Zachary Turner172aea12018-08-02 17:08:03 +00002176StringView Demangler::resolve(StringView N) {
2177 assert(N.size() == 1 && isdigit(N[0]));
Zachary Turner5b0456d2018-08-02 17:18:01 +00002178 size_t Digit = N[0] - '0';
Zachary Turnerd346cba2018-08-08 17:17:04 +00002179 if (Digit >= Backrefs.NamesCount)
Zachary Turner172aea12018-08-02 17:08:03 +00002180 return N;
Zachary Turnerd346cba2018-08-08 17:17:04 +00002181 return Backrefs.Names[Digit];
Zachary Turner172aea12018-08-02 17:08:03 +00002182}
2183
Zachary Turner316109b2018-07-29 16:38:02 +00002184void Demangler::output(const Symbol *S, OutputStream &OS) {
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002185 // Converts an AST to a string.
2186 //
2187 // Converting an AST representing a C++ type to a string is tricky due
2188 // to the bad grammar of the C++ declaration inherited from C. You have
2189 // to construct a string from inside to outside. For example, if a type
2190 // X is a pointer to a function returning int, the order you create a
2191 // string becomes something like this:
2192 //
2193 // (1) X is a pointer: *X
2194 // (2) (1) is a function returning int: int (*X)()
2195 //
2196 // So you cannot construct a result just by appending strings to a result.
2197 //
2198 // To deal with this, we split the function into two. outputPre() writes
2199 // the "first half" of type declaration, and outputPost() writes the
2200 // "second half". For example, outputPre() writes a return type for a
2201 // function and outputPost() writes an parameter list.
Zachary Turner172aea12018-08-02 17:08:03 +00002202 Type::outputPre(OS, *S->SymbolType, *this);
Zachary Turnera17721c2018-08-10 15:04:56 +00002203 outputName(OS, S->SymbolName, S->SymbolType, *this);
Zachary Turner172aea12018-08-02 17:08:03 +00002204 Type::outputPost(OS, *S->SymbolType, *this);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002205}
2206
Zachary Turner3a758e22018-08-01 18:33:04 +00002207void Demangler::dumpBackReferences() {
Zachary Turner5ae08b82018-08-01 18:44:12 +00002208 std::printf("%d function parameter backreferences\n",
Zachary Turnerd346cba2018-08-08 17:17:04 +00002209 (int)Backrefs.FunctionParamCount);
Zachary Turner3a758e22018-08-01 18:33:04 +00002210
2211 // Create an output stream so we can render each type.
2212 OutputStream OS = OutputStream::create(nullptr, 0, 1024);
Zachary Turnerd346cba2018-08-08 17:17:04 +00002213 for (size_t I = 0; I < Backrefs.FunctionParamCount; ++I) {
Zachary Turner3a758e22018-08-01 18:33:04 +00002214 OS.setCurrentPosition(0);
2215
Zachary Turnerd346cba2018-08-08 17:17:04 +00002216 Type *T = Backrefs.FunctionParams[I];
Zachary Turner172aea12018-08-02 17:08:03 +00002217 Type::outputPre(OS, *T, *this);
2218 Type::outputPost(OS, *T, *this);
Zachary Turner3a758e22018-08-01 18:33:04 +00002219
Zachary Turner7563ebe2018-08-02 17:08:24 +00002220 std::printf(" [%d] - %.*s\n", (int)I, (int)OS.getCurrentPosition(),
Zachary Turner5ae08b82018-08-01 18:44:12 +00002221 OS.getBuffer());
Zachary Turner3a758e22018-08-01 18:33:04 +00002222 }
2223 std::free(OS.getBuffer());
2224
Zachary Turnerd346cba2018-08-08 17:17:04 +00002225 if (Backrefs.FunctionParamCount > 0)
Zachary Turner5ae08b82018-08-01 18:44:12 +00002226 std::printf("\n");
Zachary Turnerd346cba2018-08-08 17:17:04 +00002227 std::printf("%d name backreferences\n", (int)Backrefs.NamesCount);
2228 for (size_t I = 0; I < Backrefs.NamesCount; ++I) {
2229 std::printf(" [%d] - %.*s\n", (int)I, (int)Backrefs.Names[I].size(),
2230 Backrefs.Names[I].begin());
Zachary Turner3a758e22018-08-01 18:33:04 +00002231 }
Zachary Turnerd346cba2018-08-08 17:17:04 +00002232 if (Backrefs.NamesCount > 0)
Zachary Turner5ae08b82018-08-01 18:44:12 +00002233 std::printf("\n");
Zachary Turner3a758e22018-08-01 18:33:04 +00002234}
2235
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002236char *llvm::microsoftDemangle(const char *MangledName, char *Buf, size_t *N,
Zachary Turner3a758e22018-08-01 18:33:04 +00002237 int *Status, MSDemangleFlags Flags) {
Zachary Turner316109b2018-07-29 16:38:02 +00002238 Demangler D;
2239 StringView Name{MangledName};
2240 Symbol *S = D.parse(Name);
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002241
Zachary Turner3a758e22018-08-01 18:33:04 +00002242 if (Flags & MSDF_DumpBackrefs)
2243 D.dumpBackReferences();
Zachary Turner316109b2018-07-29 16:38:02 +00002244 OutputStream OS = OutputStream::create(Buf, N, 1024);
Zachary Turner54d4ffe2018-08-01 18:32:28 +00002245 if (D.Error) {
2246 OS << MangledName;
2247 *Status = llvm::demangle_invalid_mangled_name;
2248 } else {
2249 D.output(S, OS);
2250 *Status = llvm::demangle_success;
2251 }
2252
Zachary Turner71c91f92018-07-30 03:12:34 +00002253 OS << '\0';
Zachary Turnerf435a7e2018-07-20 17:27:48 +00002254 return OS.getBuffer();
2255}