1 //===- MicrosoftDemangle.cpp ----------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file defines a demangler for MSVC-style mangled symbols. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "llvm/Demangle/MicrosoftDemangleNodes.h" 14 #include "llvm/Demangle/DemangleConfig.h" 15 #include "llvm/Demangle/Utility.h" 16 #include <cctype> 17 #include <string> 18 19 using namespace llvm; 20 using namespace ms_demangle; 21 22 #define OUTPUT_ENUM_CLASS_VALUE(Enum, Value, Desc) \ 23 case Enum::Value: \ 24 OS << Desc; \ 25 break; 26 27 // Writes a space if the last token does not end with a punctuation. 28 static void outputSpaceIfNecessary(OutputStream &OS) { 29 if (OS.empty()) 30 return; 31 32 char C = OS.back(); 33 if (std::isalnum(C) || C == '>') 34 OS << " "; 35 } 36 37 static void outputSingleQualifier(OutputStream &OS, Qualifiers Q) { 38 switch (Q) { 39 case Q_Const: 40 OS << "const"; 41 break; 42 case Q_Volatile: 43 OS << "volatile"; 44 break; 45 case Q_Restrict: 46 OS << "__restrict"; 47 break; 48 default: 49 break; 50 } 51 } 52 53 static bool outputQualifierIfPresent(OutputStream &OS, Qualifiers Q, 54 Qualifiers Mask, bool NeedSpace) { 55 if (!(Q & Mask)) 56 return NeedSpace; 57 58 if (NeedSpace) 59 OS << " "; 60 61 outputSingleQualifier(OS, Mask); 62 return true; 63 } 64 65 static void outputQualifiers(OutputStream &OS, Qualifiers Q, bool SpaceBefore, 66 bool SpaceAfter) { 67 if (Q == Q_None) 68 return; 69 70 size_t Pos1 = OS.getCurrentPosition(); 71 SpaceBefore = outputQualifierIfPresent(OS, Q, Q_Const, SpaceBefore); 72 SpaceBefore = outputQualifierIfPresent(OS, Q, Q_Volatile, SpaceBefore); 73 SpaceBefore = outputQualifierIfPresent(OS, Q, Q_Restrict, SpaceBefore); 74 size_t Pos2 = OS.getCurrentPosition(); 75 if (SpaceAfter && Pos2 > Pos1) 76 OS << " "; 77 } 78 79 static void outputCallingConvention(OutputStream &OS, CallingConv CC) { 80 outputSpaceIfNecessary(OS); 81 82 switch (CC) { 83 case CallingConv::Cdecl: 84 OS << "__cdecl"; 85 break; 86 case CallingConv::Fastcall: 87 OS << "__fastcall"; 88 break; 89 case CallingConv::Pascal: 90 OS << "__pascal"; 91 break; 92 case CallingConv::Regcall: 93 OS << "__regcall"; 94 break; 95 case CallingConv::Stdcall: 96 OS << "__stdcall"; 97 break; 98 case CallingConv::Thiscall: 99 OS << "__thiscall"; 100 break; 101 case CallingConv::Eabi: 102 OS << "__eabi"; 103 break; 104 case CallingConv::Vectorcall: 105 OS << "__vectorcall"; 106 break; 107 case CallingConv::Clrcall: 108 OS << "__clrcall"; 109 break; 110 default: 111 break; 112 } 113 } 114 115 std::string Node::toString(OutputFlags Flags) const { 116 OutputStream OS; 117 initializeOutputStream(nullptr, nullptr, OS, 1024); 118 this->output(OS, Flags); 119 OS << '\0'; 120 return {OS.getBuffer()}; 121 } 122 123 void PrimitiveTypeNode::outputPre(OutputStream &OS, OutputFlags Flags) const { 124 switch (PrimKind) { 125 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Void, "void"); 126 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Bool, "bool"); 127 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Char, "char"); 128 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Schar, "signed char"); 129 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Uchar, "unsigned char"); 130 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Char8, "char8_t"); 131 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Char16, "char16_t"); 132 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Char32, "char32_t"); 133 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Short, "short"); 134 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Ushort, "unsigned short"); 135 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Int, "int"); 136 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Uint, "unsigned int"); 137 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Long, "long"); 138 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Ulong, "unsigned long"); 139 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Int64, "__int64"); 140 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Uint64, "unsigned __int64"); 141 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Wchar, "wchar_t"); 142 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Float, "float"); 143 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Double, "double"); 144 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Ldouble, "long double"); 145 OUTPUT_ENUM_CLASS_VALUE(PrimitiveKind, Nullptr, "std::nullptr_t"); 146 } 147 outputQualifiers(OS, Quals, true, false); 148 } 149 150 void NodeArrayNode::output(OutputStream &OS, OutputFlags Flags) const { 151 output(OS, Flags, ", "); 152 } 153 154 void NodeArrayNode::output(OutputStream &OS, OutputFlags Flags, 155 StringView Separator) const { 156 if (Count == 0) 157 return; 158 if (Nodes[0]) 159 Nodes[0]->output(OS, Flags); 160 for (size_t I = 1; I < Count; ++I) { 161 OS << Separator; 162 Nodes[I]->output(OS, Flags); 163 } 164 } 165 166 void EncodedStringLiteralNode::output(OutputStream &OS, 167 OutputFlags Flags) const { 168 switch (Char) { 169 case CharKind::Wchar: 170 OS << "L\""; 171 break; 172 case CharKind::Char: 173 OS << "\""; 174 break; 175 case CharKind::Char16: 176 OS << "u\""; 177 break; 178 case CharKind::Char32: 179 OS << "U\""; 180 break; 181 } 182 OS << DecodedString << "\""; 183 if (IsTruncated) 184 OS << "..."; 185 } 186 187 void IntegerLiteralNode::output(OutputStream &OS, OutputFlags Flags) const { 188 if (IsNegative) 189 OS << '-'; 190 OS << Value; 191 } 192 193 void TemplateParameterReferenceNode::output(OutputStream &OS, 194 OutputFlags Flags) const { 195 if (ThunkOffsetCount > 0) 196 OS << "{"; 197 else if (Affinity == PointerAffinity::Pointer) 198 OS << "&"; 199 200 if (Symbol) { 201 Symbol->output(OS, Flags); 202 if (ThunkOffsetCount > 0) 203 OS << ", "; 204 } 205 206 if (ThunkOffsetCount > 0) 207 OS << ThunkOffsets[0]; 208 for (int I = 1; I < ThunkOffsetCount; ++I) { 209 OS << ", " << ThunkOffsets[I]; 210 } 211 if (ThunkOffsetCount > 0) 212 OS << "}"; 213 } 214 215 void IdentifierNode::outputTemplateParameters(OutputStream &OS, 216 OutputFlags Flags) const { 217 if (!TemplateParams) 218 return; 219 OS << "<"; 220 TemplateParams->output(OS, Flags); 221 OS << ">"; 222 } 223 224 void DynamicStructorIdentifierNode::output(OutputStream &OS, 225 OutputFlags Flags) const { 226 if (IsDestructor) 227 OS << "`dynamic atexit destructor for "; 228 else 229 OS << "`dynamic initializer for "; 230 231 if (Variable) { 232 OS << "`"; 233 Variable->output(OS, Flags); 234 OS << "''"; 235 } else { 236 OS << "'"; 237 Name->output(OS, Flags); 238 OS << "''"; 239 } 240 } 241 242 void NamedIdentifierNode::output(OutputStream &OS, OutputFlags Flags) const { 243 OS << Name; 244 outputTemplateParameters(OS, Flags); 245 } 246 247 void IntrinsicFunctionIdentifierNode::output(OutputStream &OS, 248 OutputFlags Flags) const { 249 switch (Operator) { 250 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, New, "operator new"); 251 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Delete, "operator delete"); 252 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Assign, "operator="); 253 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, RightShift, "operator>>"); 254 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LeftShift, "operator<<"); 255 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LogicalNot, "operator!"); 256 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Equals, "operator=="); 257 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, NotEquals, "operator!="); 258 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ArraySubscript, 259 "operator[]"); 260 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Pointer, "operator->"); 261 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Increment, "operator++"); 262 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Decrement, "operator--"); 263 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Minus, "operator-"); 264 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Plus, "operator+"); 265 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Dereference, "operator*"); 266 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, BitwiseAnd, "operator&"); 267 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, MemberPointer, 268 "operator->*"); 269 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Divide, "operator/"); 270 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Modulus, "operator%"); 271 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LessThan, "operator<"); 272 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LessThanEqual, "operator<="); 273 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, GreaterThan, "operator>"); 274 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, GreaterThanEqual, 275 "operator>="); 276 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Comma, "operator,"); 277 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Parens, "operator()"); 278 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, BitwiseNot, "operator~"); 279 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, BitwiseXor, "operator^"); 280 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, BitwiseOr, "operator|"); 281 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LogicalAnd, "operator&&"); 282 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LogicalOr, "operator||"); 283 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, TimesEqual, "operator*="); 284 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, PlusEqual, "operator+="); 285 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, MinusEqual, "operator-="); 286 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, DivEqual, "operator/="); 287 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ModEqual, "operator%="); 288 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, RshEqual, "operator>>="); 289 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LshEqual, "operator<<="); 290 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, BitwiseAndEqual, 291 "operator&="); 292 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, BitwiseOrEqual, 293 "operator|="); 294 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, BitwiseXorEqual, 295 "operator^="); 296 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VbaseDtor, "`vbase dtor'"); 297 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VecDelDtor, 298 "`vector deleting dtor'"); 299 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, DefaultCtorClosure, 300 "`default ctor closure'"); 301 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ScalarDelDtor, 302 "`scalar deleting dtor'"); 303 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VecCtorIter, 304 "`vector ctor iterator'"); 305 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VecDtorIter, 306 "`vector dtor iterator'"); 307 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VecVbaseCtorIter, 308 "`vector vbase ctor iterator'"); 309 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VdispMap, 310 "`virtual displacement map'"); 311 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, EHVecCtorIter, 312 "`eh vector ctor iterator'"); 313 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, EHVecDtorIter, 314 "`eh vector dtor iterator'"); 315 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, EHVecVbaseCtorIter, 316 "`eh vector vbase ctor iterator'"); 317 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, CopyCtorClosure, 318 "`copy ctor closure'"); 319 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, LocalVftableCtorClosure, 320 "`local vftable ctor closure'"); 321 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ArrayNew, "operator new[]"); 322 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ArrayDelete, 323 "operator delete[]"); 324 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ManVectorCtorIter, 325 "`managed vector ctor iterator'"); 326 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ManVectorDtorIter, 327 "`managed vector dtor iterator'"); 328 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, EHVectorCopyCtorIter, 329 "`EH vector copy ctor iterator'"); 330 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, EHVectorVbaseCopyCtorIter, 331 "`EH vector vbase copy ctor iterator'"); 332 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VectorCopyCtorIter, 333 "`vector copy ctor iterator'"); 334 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, VectorVbaseCopyCtorIter, 335 "`vector vbase copy constructor iterator'"); 336 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, ManVectorVbaseCopyCtorIter, 337 "`managed vector vbase copy constructor iterator'"); 338 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, CoAwait, 339 "operator co_await"); 340 OUTPUT_ENUM_CLASS_VALUE(IntrinsicFunctionKind, Spaceship, "operator<=>"); 341 case IntrinsicFunctionKind::MaxIntrinsic: 342 case IntrinsicFunctionKind::None: 343 break; 344 } 345 outputTemplateParameters(OS, Flags); 346 } 347 348 void LocalStaticGuardIdentifierNode::output(OutputStream &OS, 349 OutputFlags Flags) const { 350 if (IsThread) 351 OS << "`local static thread guard'"; 352 else 353 OS << "`local static guard'"; 354 if (ScopeIndex > 0) 355 OS << "{" << ScopeIndex << "}"; 356 } 357 358 void ConversionOperatorIdentifierNode::output(OutputStream &OS, 359 OutputFlags Flags) const { 360 OS << "operator"; 361 outputTemplateParameters(OS, Flags); 362 OS << " "; 363 TargetType->output(OS, Flags); 364 } 365 366 void StructorIdentifierNode::output(OutputStream &OS, OutputFlags Flags) const { 367 if (IsDestructor) 368 OS << "~"; 369 Class->output(OS, Flags); 370 outputTemplateParameters(OS, Flags); 371 } 372 373 void LiteralOperatorIdentifierNode::output(OutputStream &OS, 374 OutputFlags Flags) const { 375 OS << "operator \"\"" << Name; 376 outputTemplateParameters(OS, Flags); 377 } 378 379 void FunctionSignatureNode::outputPre(OutputStream &OS, 380 OutputFlags Flags) const { 381 if (FunctionClass & FC_Public) 382 OS << "public: "; 383 if (FunctionClass & FC_Protected) 384 OS << "protected: "; 385 if (FunctionClass & FC_Private) 386 OS << "private: "; 387 388 if (!(FunctionClass & FC_Global)) { 389 if (FunctionClass & FC_Static) 390 OS << "static "; 391 } 392 if (FunctionClass & FC_Virtual) 393 OS << "virtual "; 394 395 if (FunctionClass & FC_ExternC) 396 OS << "extern \"C\" "; 397 398 if (ReturnType) { 399 ReturnType->outputPre(OS, Flags); 400 OS << " "; 401 } 402 403 if (!(Flags & OF_NoCallingConvention)) 404 outputCallingConvention(OS, CallConvention); 405 } 406 407 void FunctionSignatureNode::outputPost(OutputStream &OS, 408 OutputFlags Flags) const { 409 if (!(FunctionClass & FC_NoParameterList)) { 410 OS << "("; 411 if (Params) 412 Params->output(OS, Flags); 413 else 414 OS << "void"; 415 416 if (IsVariadic) { 417 if (OS.back() != '(') 418 OS << ", "; 419 OS << "..."; 420 } 421 OS << ")"; 422 } 423 424 if (Quals & Q_Const) 425 OS << " const"; 426 if (Quals & Q_Volatile) 427 OS << " volatile"; 428 if (Quals & Q_Restrict) 429 OS << " __restrict"; 430 if (Quals & Q_Unaligned) 431 OS << " __unaligned"; 432 433 if (IsNoexcept) 434 OS << " noexcept"; 435 436 if (RefQualifier == FunctionRefQualifier::Reference) 437 OS << " &"; 438 else if (RefQualifier == FunctionRefQualifier::RValueReference) 439 OS << " &&"; 440 441 if (ReturnType) 442 ReturnType->outputPost(OS, Flags); 443 } 444 445 void ThunkSignatureNode::outputPre(OutputStream &OS, OutputFlags Flags) const { 446 OS << "[thunk]: "; 447 448 FunctionSignatureNode::outputPre(OS, Flags); 449 } 450 451 void ThunkSignatureNode::outputPost(OutputStream &OS, OutputFlags Flags) const { 452 if (FunctionClass & FC_StaticThisAdjust) { 453 OS << "`adjustor{" << ThisAdjust.StaticOffset << "}'"; 454 } else if (FunctionClass & FC_VirtualThisAdjust) { 455 if (FunctionClass & FC_VirtualThisAdjustEx) { 456 OS << "`vtordispex{" << ThisAdjust.VBPtrOffset << ", " 457 << ThisAdjust.VBOffsetOffset << ", " << ThisAdjust.VtordispOffset 458 << ", " << ThisAdjust.StaticOffset << "}'"; 459 } else { 460 OS << "`vtordisp{" << ThisAdjust.VtordispOffset << ", " 461 << ThisAdjust.StaticOffset << "}'"; 462 } 463 } 464 465 FunctionSignatureNode::outputPost(OS, Flags); 466 } 467 468 void PointerTypeNode::outputPre(OutputStream &OS, OutputFlags Flags) const { 469 if (Pointee->kind() == NodeKind::FunctionSignature) { 470 // If this is a pointer to a function, don't output the calling convention. 471 // It needs to go inside the parentheses. 472 const FunctionSignatureNode *Sig = 473 static_cast<const FunctionSignatureNode *>(Pointee); 474 Sig->outputPre(OS, OF_NoCallingConvention); 475 } else 476 Pointee->outputPre(OS, Flags); 477 478 outputSpaceIfNecessary(OS); 479 480 if (Quals & Q_Unaligned) 481 OS << "__unaligned "; 482 483 if (Pointee->kind() == NodeKind::ArrayType) { 484 OS << "("; 485 } else if (Pointee->kind() == NodeKind::FunctionSignature) { 486 OS << "("; 487 const FunctionSignatureNode *Sig = 488 static_cast<const FunctionSignatureNode *>(Pointee); 489 outputCallingConvention(OS, Sig->CallConvention); 490 OS << " "; 491 } 492 493 if (ClassParent) { 494 ClassParent->output(OS, Flags); 495 OS << "::"; 496 } 497 498 switch (Affinity) { 499 case PointerAffinity::Pointer: 500 OS << "*"; 501 break; 502 case PointerAffinity::Reference: 503 OS << "&"; 504 break; 505 case PointerAffinity::RValueReference: 506 OS << "&&"; 507 break; 508 default: 509 assert(false); 510 } 511 outputQualifiers(OS, Quals, false, false); 512 } 513 514 void PointerTypeNode::outputPost(OutputStream &OS, OutputFlags Flags) const { 515 if (Pointee->kind() == NodeKind::ArrayType || 516 Pointee->kind() == NodeKind::FunctionSignature) 517 OS << ")"; 518 519 Pointee->outputPost(OS, Flags); 520 } 521 522 void TagTypeNode::outputPre(OutputStream &OS, OutputFlags Flags) const { 523 if (!(Flags & OF_NoTagSpecifier)) { 524 switch (Tag) { 525 OUTPUT_ENUM_CLASS_VALUE(TagKind, Class, "class"); 526 OUTPUT_ENUM_CLASS_VALUE(TagKind, Struct, "struct"); 527 OUTPUT_ENUM_CLASS_VALUE(TagKind, Union, "union"); 528 OUTPUT_ENUM_CLASS_VALUE(TagKind, Enum, "enum"); 529 } 530 OS << " "; 531 } 532 QualifiedName->output(OS, Flags); 533 outputQualifiers(OS, Quals, true, false); 534 } 535 536 void TagTypeNode::outputPost(OutputStream &OS, OutputFlags Flags) const {} 537 538 void ArrayTypeNode::outputPre(OutputStream &OS, OutputFlags Flags) const { 539 ElementType->outputPre(OS, Flags); 540 outputQualifiers(OS, Quals, true, false); 541 } 542 543 void ArrayTypeNode::outputOneDimension(OutputStream &OS, OutputFlags Flags, 544 Node *N) const { 545 assert(N->kind() == NodeKind::IntegerLiteral); 546 IntegerLiteralNode *ILN = static_cast<IntegerLiteralNode *>(N); 547 if (ILN->Value != 0) 548 ILN->output(OS, Flags); 549 } 550 551 void ArrayTypeNode::outputDimensionsImpl(OutputStream &OS, 552 OutputFlags Flags) const { 553 if (Dimensions->Count == 0) 554 return; 555 556 outputOneDimension(OS, Flags, Dimensions->Nodes[0]); 557 for (size_t I = 1; I < Dimensions->Count; ++I) { 558 OS << "]["; 559 outputOneDimension(OS, Flags, Dimensions->Nodes[I]); 560 } 561 } 562 563 void ArrayTypeNode::outputPost(OutputStream &OS, OutputFlags Flags) const { 564 OS << "["; 565 outputDimensionsImpl(OS, Flags); 566 OS << "]"; 567 568 ElementType->outputPost(OS, Flags); 569 } 570 571 void SymbolNode::output(OutputStream &OS, OutputFlags Flags) const { 572 Name->output(OS, Flags); 573 } 574 575 void FunctionSymbolNode::output(OutputStream &OS, OutputFlags Flags) const { 576 Signature->outputPre(OS, Flags); 577 outputSpaceIfNecessary(OS); 578 Name->output(OS, Flags); 579 Signature->outputPost(OS, Flags); 580 } 581 582 void VariableSymbolNode::output(OutputStream &OS, OutputFlags Flags) const { 583 switch (SC) { 584 case StorageClass::PrivateStatic: 585 OS << "private: static "; 586 break; 587 case StorageClass::PublicStatic: 588 OS << "public: static "; 589 break; 590 case StorageClass::ProtectedStatic: 591 OS << "protected: static "; 592 break; 593 default: 594 break; 595 } 596 597 if (Type) { 598 Type->outputPre(OS, Flags); 599 outputSpaceIfNecessary(OS); 600 } 601 Name->output(OS, Flags); 602 if (Type) 603 Type->outputPost(OS, Flags); 604 } 605 606 void CustomTypeNode::outputPre(OutputStream &OS, OutputFlags Flags) const { 607 Identifier->output(OS, Flags); 608 } 609 void CustomTypeNode::outputPost(OutputStream &OS, OutputFlags Flags) const {} 610 611 void QualifiedNameNode::output(OutputStream &OS, OutputFlags Flags) const { 612 Components->output(OS, Flags, "::"); 613 } 614 615 void RttiBaseClassDescriptorNode::output(OutputStream &OS, 616 OutputFlags Flags) const { 617 OS << "`RTTI Base Class Descriptor at ("; 618 OS << NVOffset << ", " << VBPtrOffset << ", " << VBTableOffset << ", " 619 << this->Flags; 620 OS << ")'"; 621 } 622 623 void LocalStaticGuardVariableNode::output(OutputStream &OS, 624 OutputFlags Flags) const { 625 Name->output(OS, Flags); 626 } 627 628 void VcallThunkIdentifierNode::output(OutputStream &OS, 629 OutputFlags Flags) const { 630 OS << "`vcall'{" << OffsetInVTable << ", {flat}}"; 631 } 632 633 void SpecialTableSymbolNode::output(OutputStream &OS, OutputFlags Flags) const { 634 outputQualifiers(OS, Quals, false, true); 635 Name->output(OS, Flags); 636 if (TargetName) { 637 OS << "{for `"; 638 TargetName->output(OS, Flags); 639 OS << "'}"; 640 } 641 return; 642 } 643