1 //===-- llvm/CodeGen/DwarfUnit.cpp - Dwarf Type and Compile Units ---------===// 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 contains support for constructing a dwarf compile unit. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "DwarfUnit.h" 14 #include "AddressPool.h" 15 #include "DwarfCompileUnit.h" 16 #include "DwarfExpression.h" 17 #include "llvm/ADT/APFloat.h" 18 #include "llvm/ADT/APInt.h" 19 #include "llvm/ADT/None.h" 20 #include "llvm/ADT/StringExtras.h" 21 #include "llvm/ADT/iterator_range.h" 22 #include "llvm/CodeGen/MachineFunction.h" 23 #include "llvm/CodeGen/MachineOperand.h" 24 #include "llvm/CodeGen/TargetRegisterInfo.h" 25 #include "llvm/CodeGen/TargetSubtargetInfo.h" 26 #include "llvm/IR/Constants.h" 27 #include "llvm/IR/DataLayout.h" 28 #include "llvm/IR/GlobalValue.h" 29 #include "llvm/IR/Metadata.h" 30 #include "llvm/MC/MCAsmInfo.h" 31 #include "llvm/MC/MCContext.h" 32 #include "llvm/MC/MCDwarf.h" 33 #include "llvm/MC/MCSection.h" 34 #include "llvm/MC/MCStreamer.h" 35 #include "llvm/MC/MachineLocation.h" 36 #include "llvm/Support/Casting.h" 37 #include "llvm/Support/CommandLine.h" 38 #include "llvm/Target/TargetLoweringObjectFile.h" 39 #include <cassert> 40 #include <cstdint> 41 #include <string> 42 #include <utility> 43 44 using namespace llvm; 45 46 #define DEBUG_TYPE "dwarfdebug" 47 48 DIEDwarfExpression::DIEDwarfExpression(const AsmPrinter &AP, 49 DwarfCompileUnit &CU, DIELoc &DIE) 50 : DwarfExpression(AP.getDwarfVersion(), CU), AP(AP), OutDIE(DIE) {} 51 52 void DIEDwarfExpression::emitOp(uint8_t Op, const char* Comment) { 53 CU.addUInt(getActiveDIE(), dwarf::DW_FORM_data1, Op); 54 } 55 56 void DIEDwarfExpression::emitSigned(int64_t Value) { 57 CU.addSInt(getActiveDIE(), dwarf::DW_FORM_sdata, Value); 58 } 59 60 void DIEDwarfExpression::emitUnsigned(uint64_t Value) { 61 CU.addUInt(getActiveDIE(), dwarf::DW_FORM_udata, Value); 62 } 63 64 void DIEDwarfExpression::emitData1(uint8_t Value) { 65 CU.addUInt(getActiveDIE(), dwarf::DW_FORM_data1, Value); 66 } 67 68 void DIEDwarfExpression::emitBaseTypeRef(uint64_t Idx) { 69 CU.addBaseTypeRef(getActiveDIE(), Idx); 70 } 71 72 void DIEDwarfExpression::enableTemporaryBuffer() { 73 assert(!IsBuffering && "Already buffering?"); 74 IsBuffering = true; 75 } 76 77 void DIEDwarfExpression::disableTemporaryBuffer() { IsBuffering = false; } 78 79 unsigned DIEDwarfExpression::getTemporaryBufferSize() { 80 return TmpDIE.computeSize(AP.getDwarfFormParams()); 81 } 82 83 void DIEDwarfExpression::commitTemporaryBuffer() { OutDIE.takeValues(TmpDIE); } 84 85 bool DIEDwarfExpression::isFrameRegister(const TargetRegisterInfo &TRI, 86 llvm::Register MachineReg) { 87 return MachineReg == TRI.getFrameRegister(*AP.MF); 88 } 89 90 DwarfUnit::DwarfUnit(dwarf::Tag UnitTag, const DICompileUnit *Node, 91 AsmPrinter *A, DwarfDebug *DW, DwarfFile *DWU) 92 : DIEUnit(UnitTag), CUNode(Node), Asm(A), DD(DW), DU(DWU), 93 IndexTyDie(nullptr) {} 94 95 DwarfTypeUnit::DwarfTypeUnit(DwarfCompileUnit &CU, AsmPrinter *A, 96 DwarfDebug *DW, DwarfFile *DWU, 97 MCDwarfDwoLineTable *SplitLineTable) 98 : DwarfUnit(dwarf::DW_TAG_type_unit, CU.getCUNode(), A, DW, DWU), CU(CU), 99 SplitLineTable(SplitLineTable) { 100 } 101 102 DwarfUnit::~DwarfUnit() { 103 for (DIEBlock *B : DIEBlocks) 104 B->~DIEBlock(); 105 for (DIELoc *L : DIELocs) 106 L->~DIELoc(); 107 } 108 109 int64_t DwarfUnit::getDefaultLowerBound() const { 110 switch (getLanguage()) { 111 default: 112 break; 113 114 // The languages below have valid values in all DWARF versions. 115 case dwarf::DW_LANG_C: 116 case dwarf::DW_LANG_C89: 117 case dwarf::DW_LANG_C_plus_plus: 118 return 0; 119 120 case dwarf::DW_LANG_Fortran77: 121 case dwarf::DW_LANG_Fortran90: 122 return 1; 123 124 // The languages below have valid values only if the DWARF version >= 3. 125 case dwarf::DW_LANG_C99: 126 case dwarf::DW_LANG_ObjC: 127 case dwarf::DW_LANG_ObjC_plus_plus: 128 if (DD->getDwarfVersion() >= 3) 129 return 0; 130 break; 131 132 case dwarf::DW_LANG_Fortran95: 133 if (DD->getDwarfVersion() >= 3) 134 return 1; 135 break; 136 137 // Starting with DWARF v4, all defined languages have valid values. 138 case dwarf::DW_LANG_D: 139 case dwarf::DW_LANG_Java: 140 case dwarf::DW_LANG_Python: 141 case dwarf::DW_LANG_UPC: 142 if (DD->getDwarfVersion() >= 4) 143 return 0; 144 break; 145 146 case dwarf::DW_LANG_Ada83: 147 case dwarf::DW_LANG_Ada95: 148 case dwarf::DW_LANG_Cobol74: 149 case dwarf::DW_LANG_Cobol85: 150 case dwarf::DW_LANG_Modula2: 151 case dwarf::DW_LANG_Pascal83: 152 case dwarf::DW_LANG_PLI: 153 if (DD->getDwarfVersion() >= 4) 154 return 1; 155 break; 156 157 // The languages below are new in DWARF v5. 158 case dwarf::DW_LANG_BLISS: 159 case dwarf::DW_LANG_C11: 160 case dwarf::DW_LANG_C_plus_plus_03: 161 case dwarf::DW_LANG_C_plus_plus_11: 162 case dwarf::DW_LANG_C_plus_plus_14: 163 case dwarf::DW_LANG_Dylan: 164 case dwarf::DW_LANG_Go: 165 case dwarf::DW_LANG_Haskell: 166 case dwarf::DW_LANG_OCaml: 167 case dwarf::DW_LANG_OpenCL: 168 case dwarf::DW_LANG_RenderScript: 169 case dwarf::DW_LANG_Rust: 170 case dwarf::DW_LANG_Swift: 171 if (DD->getDwarfVersion() >= 5) 172 return 0; 173 break; 174 175 case dwarf::DW_LANG_Fortran03: 176 case dwarf::DW_LANG_Fortran08: 177 case dwarf::DW_LANG_Julia: 178 case dwarf::DW_LANG_Modula3: 179 if (DD->getDwarfVersion() >= 5) 180 return 1; 181 break; 182 } 183 184 return -1; 185 } 186 187 /// Check whether the DIE for this MDNode can be shared across CUs. 188 bool DwarfUnit::isShareableAcrossCUs(const DINode *D) const { 189 // When the MDNode can be part of the type system, the DIE can be shared 190 // across CUs. 191 // Combining type units and cross-CU DIE sharing is lower value (since 192 // cross-CU DIE sharing is used in LTO and removes type redundancy at that 193 // level already) but may be implementable for some value in projects 194 // building multiple independent libraries with LTO and then linking those 195 // together. 196 if (isDwoUnit() && !DD->shareAcrossDWOCUs()) 197 return false; 198 return (isa<DIType>(D) || 199 (isa<DISubprogram>(D) && !cast<DISubprogram>(D)->isDefinition())) && 200 !DD->generateTypeUnits(); 201 } 202 203 DIE *DwarfUnit::getDIE(const DINode *D) const { 204 if (isShareableAcrossCUs(D)) 205 return DU->getDIE(D); 206 return MDNodeToDieMap.lookup(D); 207 } 208 209 void DwarfUnit::insertDIE(const DINode *Desc, DIE *D) { 210 if (isShareableAcrossCUs(Desc)) { 211 DU->insertDIE(Desc, D); 212 return; 213 } 214 MDNodeToDieMap.insert(std::make_pair(Desc, D)); 215 } 216 217 void DwarfUnit::insertDIE(DIE *D) { 218 MDNodeToDieMap.insert(std::make_pair(nullptr, D)); 219 } 220 221 void DwarfUnit::addFlag(DIE &Die, dwarf::Attribute Attribute) { 222 if (DD->getDwarfVersion() >= 4) 223 addAttribute(Die, Attribute, dwarf::DW_FORM_flag_present, DIEInteger(1)); 224 else 225 addAttribute(Die, Attribute, dwarf::DW_FORM_flag, DIEInteger(1)); 226 } 227 228 void DwarfUnit::addUInt(DIEValueList &Die, dwarf::Attribute Attribute, 229 Optional<dwarf::Form> Form, uint64_t Integer) { 230 if (!Form) 231 Form = DIEInteger::BestForm(false, Integer); 232 assert(Form != dwarf::DW_FORM_implicit_const && 233 "DW_FORM_implicit_const is used only for signed integers"); 234 addAttribute(Die, Attribute, *Form, DIEInteger(Integer)); 235 } 236 237 void DwarfUnit::addUInt(DIEValueList &Block, dwarf::Form Form, 238 uint64_t Integer) { 239 addUInt(Block, (dwarf::Attribute)0, Form, Integer); 240 } 241 242 void DwarfUnit::addSInt(DIEValueList &Die, dwarf::Attribute Attribute, 243 Optional<dwarf::Form> Form, int64_t Integer) { 244 if (!Form) 245 Form = DIEInteger::BestForm(true, Integer); 246 addAttribute(Die, Attribute, *Form, DIEInteger(Integer)); 247 } 248 249 void DwarfUnit::addSInt(DIELoc &Die, Optional<dwarf::Form> Form, 250 int64_t Integer) { 251 addSInt(Die, (dwarf::Attribute)0, Form, Integer); 252 } 253 254 void DwarfUnit::addString(DIE &Die, dwarf::Attribute Attribute, 255 StringRef String) { 256 if (CUNode->isDebugDirectivesOnly()) 257 return; 258 259 if (DD->useInlineStrings()) { 260 addAttribute(Die, Attribute, dwarf::DW_FORM_string, 261 new (DIEValueAllocator) 262 DIEInlineString(String, DIEValueAllocator)); 263 return; 264 } 265 dwarf::Form IxForm = 266 isDwoUnit() ? dwarf::DW_FORM_GNU_str_index : dwarf::DW_FORM_strp; 267 268 auto StringPoolEntry = 269 useSegmentedStringOffsetsTable() || IxForm == dwarf::DW_FORM_GNU_str_index 270 ? DU->getStringPool().getIndexedEntry(*Asm, String) 271 : DU->getStringPool().getEntry(*Asm, String); 272 273 // For DWARF v5 and beyond, use the smallest strx? form possible. 274 if (useSegmentedStringOffsetsTable()) { 275 IxForm = dwarf::DW_FORM_strx1; 276 unsigned Index = StringPoolEntry.getIndex(); 277 if (Index > 0xffffff) 278 IxForm = dwarf::DW_FORM_strx4; 279 else if (Index > 0xffff) 280 IxForm = dwarf::DW_FORM_strx3; 281 else if (Index > 0xff) 282 IxForm = dwarf::DW_FORM_strx2; 283 } 284 addAttribute(Die, Attribute, IxForm, DIEString(StringPoolEntry)); 285 } 286 287 void DwarfUnit::addLabel(DIEValueList &Die, dwarf::Attribute Attribute, 288 dwarf::Form Form, const MCSymbol *Label) { 289 addAttribute(Die, Attribute, Form, DIELabel(Label)); 290 } 291 292 void DwarfUnit::addLabel(DIELoc &Die, dwarf::Form Form, const MCSymbol *Label) { 293 addLabel(Die, (dwarf::Attribute)0, Form, Label); 294 } 295 296 void DwarfUnit::addSectionOffset(DIE &Die, dwarf::Attribute Attribute, 297 uint64_t Integer) { 298 addUInt(Die, Attribute, DD->getDwarfSectionOffsetForm(), Integer); 299 } 300 301 unsigned DwarfTypeUnit::getOrCreateSourceID(const DIFile *File) { 302 if (!SplitLineTable) 303 return getCU().getOrCreateSourceID(File); 304 if (!UsedLineTable) { 305 UsedLineTable = true; 306 // This is a split type unit that needs a line table. 307 addSectionOffset(getUnitDie(), dwarf::DW_AT_stmt_list, 0); 308 } 309 return SplitLineTable->getFile( 310 File->getDirectory(), File->getFilename(), DD->getMD5AsBytes(File), 311 Asm->OutContext.getDwarfVersion(), File->getSource()); 312 } 313 314 void DwarfUnit::addPoolOpAddress(DIEValueList &Die, const MCSymbol *Label) { 315 bool UseAddrOffsetFormOrExpressions = 316 DD->useAddrOffsetForm() || DD->useAddrOffsetExpressions(); 317 318 const MCSymbol *Base = nullptr; 319 if (Label->isInSection() && UseAddrOffsetFormOrExpressions) 320 Base = DD->getSectionLabel(&Label->getSection()); 321 322 uint32_t Index = DD->getAddressPool().getIndex(Base ? Base : Label); 323 324 if (DD->getDwarfVersion() >= 5) { 325 addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_addrx); 326 addUInt(Die, dwarf::DW_FORM_addrx, Index); 327 } else { 328 addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_GNU_addr_index); 329 addUInt(Die, dwarf::DW_FORM_GNU_addr_index, Index); 330 } 331 332 if (Base && Base != Label) { 333 addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_const4u); 334 addLabelDelta(Die, (dwarf::Attribute)0, Label, Base); 335 addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_plus); 336 } 337 } 338 339 void DwarfUnit::addOpAddress(DIELoc &Die, const MCSymbol *Sym) { 340 if (DD->getDwarfVersion() >= 5) { 341 addPoolOpAddress(Die, Sym); 342 return; 343 } 344 345 if (DD->useSplitDwarf()) { 346 addPoolOpAddress(Die, Sym); 347 return; 348 } 349 350 addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_addr); 351 addLabel(Die, dwarf::DW_FORM_addr, Sym); 352 } 353 354 void DwarfUnit::addLabelDelta(DIEValueList &Die, dwarf::Attribute Attribute, 355 const MCSymbol *Hi, const MCSymbol *Lo) { 356 addAttribute(Die, Attribute, dwarf::DW_FORM_data4, 357 new (DIEValueAllocator) DIEDelta(Hi, Lo)); 358 } 359 360 void DwarfUnit::addDIEEntry(DIE &Die, dwarf::Attribute Attribute, DIE &Entry) { 361 addDIEEntry(Die, Attribute, DIEEntry(Entry)); 362 } 363 364 void DwarfUnit::addDIETypeSignature(DIE &Die, uint64_t Signature) { 365 // Flag the type unit reference as a declaration so that if it contains 366 // members (implicit special members, static data member definitions, member 367 // declarations for definitions in this CU, etc) consumers don't get confused 368 // and think this is a full definition. 369 addFlag(Die, dwarf::DW_AT_declaration); 370 371 addAttribute(Die, dwarf::DW_AT_signature, dwarf::DW_FORM_ref_sig8, 372 DIEInteger(Signature)); 373 } 374 375 void DwarfUnit::addDIEEntry(DIE &Die, dwarf::Attribute Attribute, 376 DIEEntry Entry) { 377 const DIEUnit *CU = Die.getUnit(); 378 const DIEUnit *EntryCU = Entry.getEntry().getUnit(); 379 if (!CU) 380 // We assume that Die belongs to this CU, if it is not linked to any CU yet. 381 CU = getUnitDie().getUnit(); 382 if (!EntryCU) 383 EntryCU = getUnitDie().getUnit(); 384 addAttribute(Die, Attribute, 385 EntryCU == CU ? dwarf::DW_FORM_ref4 : dwarf::DW_FORM_ref_addr, 386 Entry); 387 } 388 389 DIE &DwarfUnit::createAndAddDIE(dwarf::Tag Tag, DIE &Parent, const DINode *N) { 390 DIE &Die = Parent.addChild(DIE::get(DIEValueAllocator, Tag)); 391 if (N) 392 insertDIE(N, &Die); 393 return Die; 394 } 395 396 void DwarfUnit::addBlock(DIE &Die, dwarf::Attribute Attribute, DIELoc *Loc) { 397 Loc->computeSize(Asm->getDwarfFormParams()); 398 DIELocs.push_back(Loc); // Memoize so we can call the destructor later on. 399 addAttribute(Die, Attribute, Loc->BestForm(DD->getDwarfVersion()), Loc); 400 } 401 402 void DwarfUnit::addBlock(DIE &Die, dwarf::Attribute Attribute, dwarf::Form Form, 403 DIEBlock *Block) { 404 Block->computeSize(Asm->getDwarfFormParams()); 405 DIEBlocks.push_back(Block); // Memoize so we can call the destructor later on. 406 addAttribute(Die, Attribute, Form, Block); 407 } 408 409 void DwarfUnit::addBlock(DIE &Die, dwarf::Attribute Attribute, 410 DIEBlock *Block) { 411 addBlock(Die, Attribute, Block->BestForm(), Block); 412 } 413 414 void DwarfUnit::addSourceLine(DIE &Die, unsigned Line, const DIFile *File) { 415 if (Line == 0) 416 return; 417 418 unsigned FileID = getOrCreateSourceID(File); 419 addUInt(Die, dwarf::DW_AT_decl_file, None, FileID); 420 addUInt(Die, dwarf::DW_AT_decl_line, None, Line); 421 } 422 423 void DwarfUnit::addSourceLine(DIE &Die, const DILocalVariable *V) { 424 assert(V); 425 426 addSourceLine(Die, V->getLine(), V->getFile()); 427 } 428 429 void DwarfUnit::addSourceLine(DIE &Die, const DIGlobalVariable *G) { 430 assert(G); 431 432 addSourceLine(Die, G->getLine(), G->getFile()); 433 } 434 435 void DwarfUnit::addSourceLine(DIE &Die, const DISubprogram *SP) { 436 assert(SP); 437 438 addSourceLine(Die, SP->getLine(), SP->getFile()); 439 } 440 441 void DwarfUnit::addSourceLine(DIE &Die, const DILabel *L) { 442 assert(L); 443 444 addSourceLine(Die, L->getLine(), L->getFile()); 445 } 446 447 void DwarfUnit::addSourceLine(DIE &Die, const DIType *Ty) { 448 assert(Ty); 449 450 addSourceLine(Die, Ty->getLine(), Ty->getFile()); 451 } 452 453 void DwarfUnit::addSourceLine(DIE &Die, const DIObjCProperty *Ty) { 454 assert(Ty); 455 456 addSourceLine(Die, Ty->getLine(), Ty->getFile()); 457 } 458 459 void DwarfUnit::addConstantFPValue(DIE &Die, const ConstantFP *CFP) { 460 // Pass this down to addConstantValue as an unsigned bag of bits. 461 addConstantValue(Die, CFP->getValueAPF().bitcastToAPInt(), true); 462 } 463 464 void DwarfUnit::addConstantValue(DIE &Die, const ConstantInt *CI, 465 const DIType *Ty) { 466 addConstantValue(Die, CI->getValue(), Ty); 467 } 468 469 void DwarfUnit::addConstantValue(DIE &Die, uint64_t Val, const DIType *Ty) { 470 addConstantValue(Die, DD->isUnsignedDIType(Ty), Val); 471 } 472 473 void DwarfUnit::addConstantValue(DIE &Die, bool Unsigned, uint64_t Val) { 474 // FIXME: This is a bit conservative/simple - it emits negative values always 475 // sign extended to 64 bits rather than minimizing the number of bytes. 476 addUInt(Die, dwarf::DW_AT_const_value, 477 Unsigned ? dwarf::DW_FORM_udata : dwarf::DW_FORM_sdata, Val); 478 } 479 480 void DwarfUnit::addConstantValue(DIE &Die, const APInt &Val, const DIType *Ty) { 481 addConstantValue(Die, Val, DD->isUnsignedDIType(Ty)); 482 } 483 484 void DwarfUnit::addConstantValue(DIE &Die, const APInt &Val, bool Unsigned) { 485 unsigned CIBitWidth = Val.getBitWidth(); 486 if (CIBitWidth <= 64) { 487 addConstantValue(Die, Unsigned, 488 Unsigned ? Val.getZExtValue() : Val.getSExtValue()); 489 return; 490 } 491 492 DIEBlock *Block = new (DIEValueAllocator) DIEBlock; 493 494 // Get the raw data form of the large APInt. 495 const uint64_t *Ptr64 = Val.getRawData(); 496 497 int NumBytes = Val.getBitWidth() / 8; // 8 bits per byte. 498 bool LittleEndian = Asm->getDataLayout().isLittleEndian(); 499 500 // Output the constant to DWARF one byte at a time. 501 for (int i = 0; i < NumBytes; i++) { 502 uint8_t c; 503 if (LittleEndian) 504 c = Ptr64[i / 8] >> (8 * (i & 7)); 505 else 506 c = Ptr64[(NumBytes - 1 - i) / 8] >> (8 * ((NumBytes - 1 - i) & 7)); 507 addUInt(*Block, dwarf::DW_FORM_data1, c); 508 } 509 510 addBlock(Die, dwarf::DW_AT_const_value, Block); 511 } 512 513 void DwarfUnit::addLinkageName(DIE &Die, StringRef LinkageName) { 514 if (!LinkageName.empty()) 515 addString(Die, 516 DD->getDwarfVersion() >= 4 ? dwarf::DW_AT_linkage_name 517 : dwarf::DW_AT_MIPS_linkage_name, 518 GlobalValue::dropLLVMManglingEscape(LinkageName)); 519 } 520 521 void DwarfUnit::addTemplateParams(DIE &Buffer, DINodeArray TParams) { 522 // Add template parameters. 523 for (const auto *Element : TParams) { 524 if (auto *TTP = dyn_cast<DITemplateTypeParameter>(Element)) 525 constructTemplateTypeParameterDIE(Buffer, TTP); 526 else if (auto *TVP = dyn_cast<DITemplateValueParameter>(Element)) 527 constructTemplateValueParameterDIE(Buffer, TVP); 528 } 529 } 530 531 /// Add thrown types. 532 void DwarfUnit::addThrownTypes(DIE &Die, DINodeArray ThrownTypes) { 533 for (const auto *Ty : ThrownTypes) { 534 DIE &TT = createAndAddDIE(dwarf::DW_TAG_thrown_type, Die); 535 addType(TT, cast<DIType>(Ty)); 536 } 537 } 538 539 void DwarfUnit::addAccess(DIE &Die, DINode::DIFlags Flags) { 540 if ((Flags & DINode::FlagAccessibility) == DINode::FlagProtected) 541 addUInt(Die, dwarf::DW_AT_accessibility, dwarf::DW_FORM_data1, 542 dwarf::DW_ACCESS_protected); 543 else if ((Flags & DINode::FlagAccessibility) == DINode::FlagPrivate) 544 addUInt(Die, dwarf::DW_AT_accessibility, dwarf::DW_FORM_data1, 545 dwarf::DW_ACCESS_private); 546 else if ((Flags & DINode::FlagAccessibility) == DINode::FlagPublic) 547 addUInt(Die, dwarf::DW_AT_accessibility, dwarf::DW_FORM_data1, 548 dwarf::DW_ACCESS_public); 549 } 550 551 DIE *DwarfUnit::getOrCreateContextDIE(const DIScope *Context) { 552 if (!Context || isa<DIFile>(Context)) 553 return &getUnitDie(); 554 if (auto *T = dyn_cast<DIType>(Context)) 555 return getOrCreateTypeDIE(T); 556 if (auto *NS = dyn_cast<DINamespace>(Context)) 557 return getOrCreateNameSpace(NS); 558 if (auto *SP = dyn_cast<DISubprogram>(Context)) 559 return getOrCreateSubprogramDIE(SP); 560 if (auto *M = dyn_cast<DIModule>(Context)) 561 return getOrCreateModule(M); 562 return getDIE(Context); 563 } 564 565 DIE *DwarfUnit::createTypeDIE(const DICompositeType *Ty) { 566 auto *Context = Ty->getScope(); 567 DIE *ContextDIE = getOrCreateContextDIE(Context); 568 569 if (DIE *TyDIE = getDIE(Ty)) 570 return TyDIE; 571 572 // Create new type. 573 DIE &TyDIE = createAndAddDIE(Ty->getTag(), *ContextDIE, Ty); 574 575 constructTypeDIE(TyDIE, cast<DICompositeType>(Ty)); 576 577 updateAcceleratorTables(Context, Ty, TyDIE); 578 return &TyDIE; 579 } 580 581 DIE *DwarfUnit::createTypeDIE(const DIScope *Context, DIE &ContextDIE, 582 const DIType *Ty) { 583 // Create new type. 584 DIE &TyDIE = createAndAddDIE(Ty->getTag(), ContextDIE, Ty); 585 586 updateAcceleratorTables(Context, Ty, TyDIE); 587 588 if (auto *BT = dyn_cast<DIBasicType>(Ty)) 589 constructTypeDIE(TyDIE, BT); 590 else if (auto *ST = dyn_cast<DIStringType>(Ty)) 591 constructTypeDIE(TyDIE, ST); 592 else if (auto *STy = dyn_cast<DISubroutineType>(Ty)) 593 constructTypeDIE(TyDIE, STy); 594 else if (auto *CTy = dyn_cast<DICompositeType>(Ty)) { 595 if (DD->generateTypeUnits() && !Ty->isForwardDecl() && 596 (Ty->getRawName() || CTy->getRawIdentifier())) { 597 // Skip updating the accelerator tables since this is not the full type. 598 if (MDString *TypeId = CTy->getRawIdentifier()) 599 DD->addDwarfTypeUnitType(getCU(), TypeId->getString(), TyDIE, CTy); 600 else 601 finishNonUnitTypeDIE(TyDIE, CTy); 602 return &TyDIE; 603 } 604 constructTypeDIE(TyDIE, CTy); 605 } else { 606 constructTypeDIE(TyDIE, cast<DIDerivedType>(Ty)); 607 } 608 609 return &TyDIE; 610 } 611 612 DIE *DwarfUnit::getOrCreateTypeDIE(const MDNode *TyNode) { 613 if (!TyNode) 614 return nullptr; 615 616 auto *Ty = cast<DIType>(TyNode); 617 618 // DW_TAG_restrict_type is not supported in DWARF2 619 if (Ty->getTag() == dwarf::DW_TAG_restrict_type && DD->getDwarfVersion() <= 2) 620 return getOrCreateTypeDIE(cast<DIDerivedType>(Ty)->getBaseType()); 621 622 // DW_TAG_atomic_type is not supported in DWARF < 5 623 if (Ty->getTag() == dwarf::DW_TAG_atomic_type && DD->getDwarfVersion() < 5) 624 return getOrCreateTypeDIE(cast<DIDerivedType>(Ty)->getBaseType()); 625 626 // Construct the context before querying for the existence of the DIE in case 627 // such construction creates the DIE. 628 auto *Context = Ty->getScope(); 629 DIE *ContextDIE = getOrCreateContextDIE(Context); 630 assert(ContextDIE); 631 632 if (DIE *TyDIE = getDIE(Ty)) 633 return TyDIE; 634 635 return static_cast<DwarfUnit *>(ContextDIE->getUnit()) 636 ->createTypeDIE(Context, *ContextDIE, Ty); 637 } 638 639 void DwarfUnit::updateAcceleratorTables(const DIScope *Context, 640 const DIType *Ty, const DIE &TyDIE) { 641 if (!Ty->getName().empty() && !Ty->isForwardDecl()) { 642 bool IsImplementation = false; 643 if (auto *CT = dyn_cast<DICompositeType>(Ty)) { 644 // A runtime language of 0 actually means C/C++ and that any 645 // non-negative value is some version of Objective-C/C++. 646 IsImplementation = CT->getRuntimeLang() == 0 || CT->isObjcClassComplete(); 647 } 648 unsigned Flags = IsImplementation ? dwarf::DW_FLAG_type_implementation : 0; 649 DD->addAccelType(*CUNode, Ty->getName(), TyDIE, Flags); 650 651 if (!Context || isa<DICompileUnit>(Context) || isa<DIFile>(Context) || 652 isa<DINamespace>(Context) || isa<DICommonBlock>(Context)) 653 addGlobalType(Ty, TyDIE, Context); 654 } 655 } 656 657 void DwarfUnit::addType(DIE &Entity, const DIType *Ty, 658 dwarf::Attribute Attribute) { 659 assert(Ty && "Trying to add a type that doesn't exist?"); 660 addDIEEntry(Entity, Attribute, DIEEntry(*getOrCreateTypeDIE(Ty))); 661 } 662 663 std::string DwarfUnit::getParentContextString(const DIScope *Context) const { 664 if (!Context) 665 return ""; 666 667 // FIXME: Decide whether to implement this for non-C++ languages. 668 if (!dwarf::isCPlusPlus((dwarf::SourceLanguage)getLanguage())) 669 return ""; 670 671 std::string CS; 672 SmallVector<const DIScope *, 1> Parents; 673 while (!isa<DICompileUnit>(Context)) { 674 Parents.push_back(Context); 675 if (const DIScope *S = Context->getScope()) 676 Context = S; 677 else 678 // Structure, etc types will have a NULL context if they're at the top 679 // level. 680 break; 681 } 682 683 // Reverse iterate over our list to go from the outermost construct to the 684 // innermost. 685 for (const DIScope *Ctx : llvm::reverse(Parents)) { 686 StringRef Name = Ctx->getName(); 687 if (Name.empty() && isa<DINamespace>(Ctx)) 688 Name = "(anonymous namespace)"; 689 if (!Name.empty()) { 690 CS += Name; 691 CS += "::"; 692 } 693 } 694 return CS; 695 } 696 697 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DIBasicType *BTy) { 698 // Get core information. 699 StringRef Name = BTy->getName(); 700 // Add name if not anonymous or intermediate type. 701 if (!Name.empty()) 702 addString(Buffer, dwarf::DW_AT_name, Name); 703 704 // An unspecified type only has a name attribute. 705 if (BTy->getTag() == dwarf::DW_TAG_unspecified_type) 706 return; 707 708 if (BTy->getTag() != dwarf::DW_TAG_string_type) 709 addUInt(Buffer, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1, 710 BTy->getEncoding()); 711 712 uint64_t Size = BTy->getSizeInBits() >> 3; 713 addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size); 714 715 if (BTy->isBigEndian()) 716 addUInt(Buffer, dwarf::DW_AT_endianity, None, dwarf::DW_END_big); 717 else if (BTy->isLittleEndian()) 718 addUInt(Buffer, dwarf::DW_AT_endianity, None, dwarf::DW_END_little); 719 } 720 721 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DIStringType *STy) { 722 // Get core information. 723 StringRef Name = STy->getName(); 724 // Add name if not anonymous or intermediate type. 725 if (!Name.empty()) 726 addString(Buffer, dwarf::DW_AT_name, Name); 727 728 if (DIVariable *Var = STy->getStringLength()) { 729 if (auto *VarDIE = getDIE(Var)) 730 addDIEEntry(Buffer, dwarf::DW_AT_string_length, *VarDIE); 731 } else if (DIExpression *Expr = STy->getStringLengthExp()) { 732 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 733 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 734 // This is to describe the memory location of the 735 // length of a Fortran deferred length string, so 736 // lock it down as such. 737 DwarfExpr.setMemoryLocationKind(); 738 DwarfExpr.addExpression(Expr); 739 addBlock(Buffer, dwarf::DW_AT_string_length, DwarfExpr.finalize()); 740 } else { 741 uint64_t Size = STy->getSizeInBits() >> 3; 742 addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size); 743 } 744 745 if (DIExpression *Expr = STy->getStringLocationExp()) { 746 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 747 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 748 // This is to describe the memory location of the 749 // string, so lock it down as such. 750 DwarfExpr.setMemoryLocationKind(); 751 DwarfExpr.addExpression(Expr); 752 addBlock(Buffer, dwarf::DW_AT_data_location, DwarfExpr.finalize()); 753 } 754 755 if (STy->getEncoding()) { 756 // For eventual Unicode support. 757 addUInt(Buffer, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1, 758 STy->getEncoding()); 759 } 760 } 761 762 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DIDerivedType *DTy) { 763 // Get core information. 764 StringRef Name = DTy->getName(); 765 uint64_t Size = DTy->getSizeInBits() >> 3; 766 uint16_t Tag = Buffer.getTag(); 767 768 // Map to main type, void will not have a type. 769 const DIType *FromTy = DTy->getBaseType(); 770 if (FromTy) 771 addType(Buffer, FromTy); 772 773 // Add name if not anonymous or intermediate type. 774 if (!Name.empty()) 775 addString(Buffer, dwarf::DW_AT_name, Name); 776 777 addAnnotation(Buffer, DTy->getAnnotations()); 778 779 // If alignment is specified for a typedef , create and insert DW_AT_alignment 780 // attribute in DW_TAG_typedef DIE. 781 if (Tag == dwarf::DW_TAG_typedef && DD->getDwarfVersion() >= 5) { 782 uint32_t AlignInBytes = DTy->getAlignInBytes(); 783 if (AlignInBytes > 0) 784 addUInt(Buffer, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata, 785 AlignInBytes); 786 } 787 788 // Add size if non-zero (derived types might be zero-sized.) 789 if (Size && Tag != dwarf::DW_TAG_pointer_type 790 && Tag != dwarf::DW_TAG_ptr_to_member_type 791 && Tag != dwarf::DW_TAG_reference_type 792 && Tag != dwarf::DW_TAG_rvalue_reference_type) 793 addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size); 794 795 if (Tag == dwarf::DW_TAG_ptr_to_member_type) 796 addDIEEntry(Buffer, dwarf::DW_AT_containing_type, 797 *getOrCreateTypeDIE(cast<DIDerivedType>(DTy)->getClassType())); 798 // Add source line info if available and TyDesc is not a forward declaration. 799 if (!DTy->isForwardDecl()) 800 addSourceLine(Buffer, DTy); 801 802 // If DWARF address space value is other than None, add it. The IR 803 // verifier checks that DWARF address space only exists for pointer 804 // or reference types. 805 if (DTy->getDWARFAddressSpace()) 806 addUInt(Buffer, dwarf::DW_AT_address_class, dwarf::DW_FORM_data4, 807 DTy->getDWARFAddressSpace().getValue()); 808 } 809 810 void DwarfUnit::constructSubprogramArguments(DIE &Buffer, DITypeRefArray Args) { 811 for (unsigned i = 1, N = Args.size(); i < N; ++i) { 812 const DIType *Ty = Args[i]; 813 if (!Ty) { 814 assert(i == N-1 && "Unspecified parameter must be the last argument"); 815 createAndAddDIE(dwarf::DW_TAG_unspecified_parameters, Buffer); 816 } else { 817 DIE &Arg = createAndAddDIE(dwarf::DW_TAG_formal_parameter, Buffer); 818 addType(Arg, Ty); 819 if (Ty->isArtificial()) 820 addFlag(Arg, dwarf::DW_AT_artificial); 821 } 822 } 823 } 824 825 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DISubroutineType *CTy) { 826 // Add return type. A void return won't have a type. 827 auto Elements = cast<DISubroutineType>(CTy)->getTypeArray(); 828 if (Elements.size()) 829 if (auto RTy = Elements[0]) 830 addType(Buffer, RTy); 831 832 bool isPrototyped = true; 833 if (Elements.size() == 2 && !Elements[1]) 834 isPrototyped = false; 835 836 constructSubprogramArguments(Buffer, Elements); 837 838 // Add prototype flag if we're dealing with a C language and the function has 839 // been prototyped. 840 uint16_t Language = getLanguage(); 841 if (isPrototyped && 842 (Language == dwarf::DW_LANG_C89 || Language == dwarf::DW_LANG_C99 || 843 Language == dwarf::DW_LANG_ObjC)) 844 addFlag(Buffer, dwarf::DW_AT_prototyped); 845 846 // Add a DW_AT_calling_convention if this has an explicit convention. 847 if (CTy->getCC() && CTy->getCC() != dwarf::DW_CC_normal) 848 addUInt(Buffer, dwarf::DW_AT_calling_convention, dwarf::DW_FORM_data1, 849 CTy->getCC()); 850 851 if (CTy->isLValueReference()) 852 addFlag(Buffer, dwarf::DW_AT_reference); 853 854 if (CTy->isRValueReference()) 855 addFlag(Buffer, dwarf::DW_AT_rvalue_reference); 856 } 857 858 void DwarfUnit::addAnnotation(DIE &Buffer, DINodeArray Annotations) { 859 if (!Annotations) 860 return; 861 862 for (const Metadata *Annotation : Annotations->operands()) { 863 const MDNode *MD = cast<MDNode>(Annotation); 864 const MDString *Name = cast<MDString>(MD->getOperand(0)); 865 const auto &Value = MD->getOperand(1); 866 867 DIE &AnnotationDie = createAndAddDIE(dwarf::DW_TAG_LLVM_annotation, Buffer); 868 addString(AnnotationDie, dwarf::DW_AT_name, Name->getString()); 869 if (const auto *Data = dyn_cast<MDString>(Value)) 870 addString(AnnotationDie, dwarf::DW_AT_const_value, Data->getString()); 871 else if (const auto *Data = dyn_cast<ConstantAsMetadata>(Value)) 872 addConstantValue(AnnotationDie, Data->getValue()->getUniqueInteger(), 873 /*Unsigned=*/true); 874 else 875 assert(false && "Unsupported annotation value type"); 876 } 877 } 878 879 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DICompositeType *CTy) { 880 // Add name if not anonymous or intermediate type. 881 StringRef Name = CTy->getName(); 882 883 uint64_t Size = CTy->getSizeInBits() >> 3; 884 uint16_t Tag = Buffer.getTag(); 885 886 switch (Tag) { 887 case dwarf::DW_TAG_array_type: 888 constructArrayTypeDIE(Buffer, CTy); 889 break; 890 case dwarf::DW_TAG_enumeration_type: 891 constructEnumTypeDIE(Buffer, CTy); 892 break; 893 case dwarf::DW_TAG_variant_part: 894 case dwarf::DW_TAG_structure_type: 895 case dwarf::DW_TAG_union_type: 896 case dwarf::DW_TAG_class_type: 897 case dwarf::DW_TAG_namelist: { 898 // Emit the discriminator for a variant part. 899 DIDerivedType *Discriminator = nullptr; 900 if (Tag == dwarf::DW_TAG_variant_part) { 901 Discriminator = CTy->getDiscriminator(); 902 if (Discriminator) { 903 // DWARF says: 904 // If the variant part has a discriminant, the discriminant is 905 // represented by a separate debugging information entry which is 906 // a child of the variant part entry. 907 DIE &DiscMember = constructMemberDIE(Buffer, Discriminator); 908 addDIEEntry(Buffer, dwarf::DW_AT_discr, DiscMember); 909 } 910 } 911 912 // Add template parameters to a class, structure or union types. 913 if (Tag == dwarf::DW_TAG_class_type || 914 Tag == dwarf::DW_TAG_structure_type || Tag == dwarf::DW_TAG_union_type) 915 addTemplateParams(Buffer, CTy->getTemplateParams()); 916 917 // Add elements to structure type. 918 DINodeArray Elements = CTy->getElements(); 919 for (const auto *Element : Elements) { 920 if (!Element) 921 continue; 922 if (auto *SP = dyn_cast<DISubprogram>(Element)) 923 getOrCreateSubprogramDIE(SP); 924 else if (auto *DDTy = dyn_cast<DIDerivedType>(Element)) { 925 if (DDTy->getTag() == dwarf::DW_TAG_friend) { 926 DIE &ElemDie = createAndAddDIE(dwarf::DW_TAG_friend, Buffer); 927 addType(ElemDie, DDTy->getBaseType(), dwarf::DW_AT_friend); 928 } else if (DDTy->isStaticMember()) { 929 getOrCreateStaticMemberDIE(DDTy); 930 } else if (Tag == dwarf::DW_TAG_variant_part) { 931 // When emitting a variant part, wrap each member in 932 // DW_TAG_variant. 933 DIE &Variant = createAndAddDIE(dwarf::DW_TAG_variant, Buffer); 934 if (const ConstantInt *CI = 935 dyn_cast_or_null<ConstantInt>(DDTy->getDiscriminantValue())) { 936 if (DD->isUnsignedDIType(Discriminator->getBaseType())) 937 addUInt(Variant, dwarf::DW_AT_discr_value, None, CI->getZExtValue()); 938 else 939 addSInt(Variant, dwarf::DW_AT_discr_value, None, CI->getSExtValue()); 940 } 941 constructMemberDIE(Variant, DDTy); 942 } else { 943 constructMemberDIE(Buffer, DDTy); 944 } 945 } else if (auto *Property = dyn_cast<DIObjCProperty>(Element)) { 946 DIE &ElemDie = createAndAddDIE(Property->getTag(), Buffer); 947 StringRef PropertyName = Property->getName(); 948 addString(ElemDie, dwarf::DW_AT_APPLE_property_name, PropertyName); 949 if (Property->getType()) 950 addType(ElemDie, Property->getType()); 951 addSourceLine(ElemDie, Property); 952 StringRef GetterName = Property->getGetterName(); 953 if (!GetterName.empty()) 954 addString(ElemDie, dwarf::DW_AT_APPLE_property_getter, GetterName); 955 StringRef SetterName = Property->getSetterName(); 956 if (!SetterName.empty()) 957 addString(ElemDie, dwarf::DW_AT_APPLE_property_setter, SetterName); 958 if (unsigned PropertyAttributes = Property->getAttributes()) 959 addUInt(ElemDie, dwarf::DW_AT_APPLE_property_attribute, None, 960 PropertyAttributes); 961 } else if (auto *Composite = dyn_cast<DICompositeType>(Element)) { 962 if (Composite->getTag() == dwarf::DW_TAG_variant_part) { 963 DIE &VariantPart = createAndAddDIE(Composite->getTag(), Buffer); 964 constructTypeDIE(VariantPart, Composite); 965 } 966 } else if (Tag == dwarf::DW_TAG_namelist) { 967 auto *Var = dyn_cast<DINode>(Element); 968 auto *VarDIE = getDIE(Var); 969 if (VarDIE) { 970 DIE &ItemDie = createAndAddDIE(dwarf::DW_TAG_namelist_item, Buffer); 971 addDIEEntry(ItemDie, dwarf::DW_AT_namelist_item, *VarDIE); 972 } 973 } 974 } 975 976 if (CTy->isAppleBlockExtension()) 977 addFlag(Buffer, dwarf::DW_AT_APPLE_block); 978 979 if (CTy->getExportSymbols()) 980 addFlag(Buffer, dwarf::DW_AT_export_symbols); 981 982 // This is outside the DWARF spec, but GDB expects a DW_AT_containing_type 983 // inside C++ composite types to point to the base class with the vtable. 984 // Rust uses DW_AT_containing_type to link a vtable to the type 985 // for which it was created. 986 if (auto *ContainingType = CTy->getVTableHolder()) 987 addDIEEntry(Buffer, dwarf::DW_AT_containing_type, 988 *getOrCreateTypeDIE(ContainingType)); 989 990 if (CTy->isObjcClassComplete()) 991 addFlag(Buffer, dwarf::DW_AT_APPLE_objc_complete_type); 992 993 // Add the type's non-standard calling convention. 994 // DW_CC_pass_by_value/DW_CC_pass_by_reference are introduced in DWARF 5. 995 if (!Asm->TM.Options.DebugStrictDwarf || DD->getDwarfVersion() >= 5) { 996 uint8_t CC = 0; 997 if (CTy->isTypePassByValue()) 998 CC = dwarf::DW_CC_pass_by_value; 999 else if (CTy->isTypePassByReference()) 1000 CC = dwarf::DW_CC_pass_by_reference; 1001 if (CC) 1002 addUInt(Buffer, dwarf::DW_AT_calling_convention, dwarf::DW_FORM_data1, 1003 CC); 1004 } 1005 break; 1006 } 1007 default: 1008 break; 1009 } 1010 1011 // Add name if not anonymous or intermediate type. 1012 if (!Name.empty()) 1013 addString(Buffer, dwarf::DW_AT_name, Name); 1014 1015 addAnnotation(Buffer, CTy->getAnnotations()); 1016 1017 if (Tag == dwarf::DW_TAG_enumeration_type || 1018 Tag == dwarf::DW_TAG_class_type || Tag == dwarf::DW_TAG_structure_type || 1019 Tag == dwarf::DW_TAG_union_type) { 1020 // Add size if non-zero (derived types might be zero-sized.) 1021 // Ignore the size if it's a non-enum forward decl. 1022 // TODO: Do we care about size for enum forward declarations? 1023 if (Size && 1024 (!CTy->isForwardDecl() || Tag == dwarf::DW_TAG_enumeration_type)) 1025 addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size); 1026 else if (!CTy->isForwardDecl()) 1027 // Add zero size if it is not a forward declaration. 1028 addUInt(Buffer, dwarf::DW_AT_byte_size, None, 0); 1029 1030 // If we're a forward decl, say so. 1031 if (CTy->isForwardDecl()) 1032 addFlag(Buffer, dwarf::DW_AT_declaration); 1033 1034 // Add accessibility info if available. 1035 addAccess(Buffer, CTy->getFlags()); 1036 1037 // Add source line info if available. 1038 if (!CTy->isForwardDecl()) 1039 addSourceLine(Buffer, CTy); 1040 1041 // No harm in adding the runtime language to the declaration. 1042 unsigned RLang = CTy->getRuntimeLang(); 1043 if (RLang) 1044 addUInt(Buffer, dwarf::DW_AT_APPLE_runtime_class, dwarf::DW_FORM_data1, 1045 RLang); 1046 1047 // Add align info if available. 1048 if (uint32_t AlignInBytes = CTy->getAlignInBytes()) 1049 addUInt(Buffer, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata, 1050 AlignInBytes); 1051 } 1052 } 1053 1054 void DwarfUnit::constructTemplateTypeParameterDIE( 1055 DIE &Buffer, const DITemplateTypeParameter *TP) { 1056 DIE &ParamDIE = 1057 createAndAddDIE(dwarf::DW_TAG_template_type_parameter, Buffer); 1058 // Add the type if it exists, it could be void and therefore no type. 1059 if (TP->getType()) 1060 addType(ParamDIE, TP->getType()); 1061 if (!TP->getName().empty()) 1062 addString(ParamDIE, dwarf::DW_AT_name, TP->getName()); 1063 if (TP->isDefault() && (DD->getDwarfVersion() >= 5)) 1064 addFlag(ParamDIE, dwarf::DW_AT_default_value); 1065 } 1066 1067 void DwarfUnit::constructTemplateValueParameterDIE( 1068 DIE &Buffer, const DITemplateValueParameter *VP) { 1069 DIE &ParamDIE = createAndAddDIE(VP->getTag(), Buffer); 1070 1071 // Add the type if there is one, template template and template parameter 1072 // packs will not have a type. 1073 if (VP->getTag() == dwarf::DW_TAG_template_value_parameter) 1074 addType(ParamDIE, VP->getType()); 1075 if (!VP->getName().empty()) 1076 addString(ParamDIE, dwarf::DW_AT_name, VP->getName()); 1077 if (VP->isDefault() && (DD->getDwarfVersion() >= 5)) 1078 addFlag(ParamDIE, dwarf::DW_AT_default_value); 1079 if (Metadata *Val = VP->getValue()) { 1080 if (ConstantInt *CI = mdconst::dyn_extract<ConstantInt>(Val)) 1081 addConstantValue(ParamDIE, CI, VP->getType()); 1082 else if (GlobalValue *GV = mdconst::dyn_extract<GlobalValue>(Val)) { 1083 // We cannot describe the location of dllimport'd entities: the 1084 // computation of their address requires loads from the IAT. 1085 if (!GV->hasDLLImportStorageClass()) { 1086 // For declaration non-type template parameters (such as global values 1087 // and functions) 1088 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 1089 addOpAddress(*Loc, Asm->getSymbol(GV)); 1090 // Emit DW_OP_stack_value to use the address as the immediate value of 1091 // the parameter, rather than a pointer to it. 1092 addUInt(*Loc, dwarf::DW_FORM_data1, dwarf::DW_OP_stack_value); 1093 addBlock(ParamDIE, dwarf::DW_AT_location, Loc); 1094 } 1095 } else if (VP->getTag() == dwarf::DW_TAG_GNU_template_template_param) { 1096 assert(isa<MDString>(Val)); 1097 addString(ParamDIE, dwarf::DW_AT_GNU_template_name, 1098 cast<MDString>(Val)->getString()); 1099 } else if (VP->getTag() == dwarf::DW_TAG_GNU_template_parameter_pack) { 1100 addTemplateParams(ParamDIE, cast<MDTuple>(Val)); 1101 } 1102 } 1103 } 1104 1105 DIE *DwarfUnit::getOrCreateNameSpace(const DINamespace *NS) { 1106 // Construct the context before querying for the existence of the DIE in case 1107 // such construction creates the DIE. 1108 DIE *ContextDIE = getOrCreateContextDIE(NS->getScope()); 1109 1110 if (DIE *NDie = getDIE(NS)) 1111 return NDie; 1112 DIE &NDie = createAndAddDIE(dwarf::DW_TAG_namespace, *ContextDIE, NS); 1113 1114 StringRef Name = NS->getName(); 1115 if (!Name.empty()) 1116 addString(NDie, dwarf::DW_AT_name, NS->getName()); 1117 else 1118 Name = "(anonymous namespace)"; 1119 DD->addAccelNamespace(*CUNode, Name, NDie); 1120 addGlobalName(Name, NDie, NS->getScope()); 1121 if (NS->getExportSymbols()) 1122 addFlag(NDie, dwarf::DW_AT_export_symbols); 1123 return &NDie; 1124 } 1125 1126 DIE *DwarfUnit::getOrCreateModule(const DIModule *M) { 1127 // Construct the context before querying for the existence of the DIE in case 1128 // such construction creates the DIE. 1129 DIE *ContextDIE = getOrCreateContextDIE(M->getScope()); 1130 1131 if (DIE *MDie = getDIE(M)) 1132 return MDie; 1133 DIE &MDie = createAndAddDIE(dwarf::DW_TAG_module, *ContextDIE, M); 1134 1135 if (!M->getName().empty()) { 1136 addString(MDie, dwarf::DW_AT_name, M->getName()); 1137 addGlobalName(M->getName(), MDie, M->getScope()); 1138 } 1139 if (!M->getConfigurationMacros().empty()) 1140 addString(MDie, dwarf::DW_AT_LLVM_config_macros, 1141 M->getConfigurationMacros()); 1142 if (!M->getIncludePath().empty()) 1143 addString(MDie, dwarf::DW_AT_LLVM_include_path, M->getIncludePath()); 1144 if (!M->getAPINotesFile().empty()) 1145 addString(MDie, dwarf::DW_AT_LLVM_apinotes, M->getAPINotesFile()); 1146 if (M->getFile()) 1147 addUInt(MDie, dwarf::DW_AT_decl_file, None, 1148 getOrCreateSourceID(M->getFile())); 1149 if (M->getLineNo()) 1150 addUInt(MDie, dwarf::DW_AT_decl_line, None, M->getLineNo()); 1151 if (M->getIsDecl()) 1152 addFlag(MDie, dwarf::DW_AT_declaration); 1153 1154 return &MDie; 1155 } 1156 1157 DIE *DwarfUnit::getOrCreateSubprogramDIE(const DISubprogram *SP, bool Minimal) { 1158 // Construct the context before querying for the existence of the DIE in case 1159 // such construction creates the DIE (as is the case for member function 1160 // declarations). 1161 DIE *ContextDIE = 1162 Minimal ? &getUnitDie() : getOrCreateContextDIE(SP->getScope()); 1163 1164 if (DIE *SPDie = getDIE(SP)) 1165 return SPDie; 1166 1167 if (auto *SPDecl = SP->getDeclaration()) { 1168 if (!Minimal) { 1169 // Add subprogram definitions to the CU die directly. 1170 ContextDIE = &getUnitDie(); 1171 // Build the decl now to ensure it precedes the definition. 1172 getOrCreateSubprogramDIE(SPDecl); 1173 } 1174 } 1175 1176 // DW_TAG_inlined_subroutine may refer to this DIE. 1177 DIE &SPDie = createAndAddDIE(dwarf::DW_TAG_subprogram, *ContextDIE, SP); 1178 1179 // Stop here and fill this in later, depending on whether or not this 1180 // subprogram turns out to have inlined instances or not. 1181 if (SP->isDefinition()) 1182 return &SPDie; 1183 1184 static_cast<DwarfUnit *>(SPDie.getUnit()) 1185 ->applySubprogramAttributes(SP, SPDie); 1186 return &SPDie; 1187 } 1188 1189 bool DwarfUnit::applySubprogramDefinitionAttributes(const DISubprogram *SP, 1190 DIE &SPDie, bool Minimal) { 1191 DIE *DeclDie = nullptr; 1192 StringRef DeclLinkageName; 1193 if (auto *SPDecl = SP->getDeclaration()) { 1194 if (!Minimal) { 1195 DITypeRefArray DeclArgs, DefinitionArgs; 1196 DeclArgs = SPDecl->getType()->getTypeArray(); 1197 DefinitionArgs = SP->getType()->getTypeArray(); 1198 1199 if (DeclArgs.size() && DefinitionArgs.size()) 1200 if (DefinitionArgs[0] != nullptr && DeclArgs[0] != DefinitionArgs[0]) 1201 addType(SPDie, DefinitionArgs[0]); 1202 1203 DeclDie = getDIE(SPDecl); 1204 assert(DeclDie && "This DIE should've already been constructed when the " 1205 "definition DIE was created in " 1206 "getOrCreateSubprogramDIE"); 1207 // Look at the Decl's linkage name only if we emitted it. 1208 if (DD->useAllLinkageNames()) 1209 DeclLinkageName = SPDecl->getLinkageName(); 1210 unsigned DeclID = getOrCreateSourceID(SPDecl->getFile()); 1211 unsigned DefID = getOrCreateSourceID(SP->getFile()); 1212 if (DeclID != DefID) 1213 addUInt(SPDie, dwarf::DW_AT_decl_file, None, DefID); 1214 1215 if (SP->getLine() != SPDecl->getLine()) 1216 addUInt(SPDie, dwarf::DW_AT_decl_line, None, SP->getLine()); 1217 } 1218 } 1219 1220 // Add function template parameters. 1221 addTemplateParams(SPDie, SP->getTemplateParams()); 1222 1223 // Add the linkage name if we have one and it isn't in the Decl. 1224 StringRef LinkageName = SP->getLinkageName(); 1225 assert(((LinkageName.empty() || DeclLinkageName.empty()) || 1226 LinkageName == DeclLinkageName) && 1227 "decl has a linkage name and it is different"); 1228 if (DeclLinkageName.empty() && 1229 // Always emit it for abstract subprograms. 1230 (DD->useAllLinkageNames() || DU->getAbstractSPDies().lookup(SP))) 1231 addLinkageName(SPDie, LinkageName); 1232 1233 if (!DeclDie) 1234 return false; 1235 1236 // Refer to the function declaration where all the other attributes will be 1237 // found. 1238 addDIEEntry(SPDie, dwarf::DW_AT_specification, *DeclDie); 1239 return true; 1240 } 1241 1242 void DwarfUnit::applySubprogramAttributes(const DISubprogram *SP, DIE &SPDie, 1243 bool SkipSPAttributes) { 1244 // If -fdebug-info-for-profiling is enabled, need to emit the subprogram 1245 // and its source location. 1246 bool SkipSPSourceLocation = SkipSPAttributes && 1247 !CUNode->getDebugInfoForProfiling(); 1248 if (!SkipSPSourceLocation) 1249 if (applySubprogramDefinitionAttributes(SP, SPDie, SkipSPAttributes)) 1250 return; 1251 1252 // Constructors and operators for anonymous aggregates do not have names. 1253 if (!SP->getName().empty()) 1254 addString(SPDie, dwarf::DW_AT_name, SP->getName()); 1255 1256 addAnnotation(SPDie, SP->getAnnotations()); 1257 1258 if (!SkipSPSourceLocation) 1259 addSourceLine(SPDie, SP); 1260 1261 // Skip the rest of the attributes under -gmlt to save space. 1262 if (SkipSPAttributes) 1263 return; 1264 1265 // Add the prototype if we have a prototype and we have a C like 1266 // language. 1267 uint16_t Language = getLanguage(); 1268 if (SP->isPrototyped() && 1269 (Language == dwarf::DW_LANG_C89 || Language == dwarf::DW_LANG_C99 || 1270 Language == dwarf::DW_LANG_ObjC)) 1271 addFlag(SPDie, dwarf::DW_AT_prototyped); 1272 1273 if (SP->isObjCDirect()) 1274 addFlag(SPDie, dwarf::DW_AT_APPLE_objc_direct); 1275 1276 unsigned CC = 0; 1277 DITypeRefArray Args; 1278 if (const DISubroutineType *SPTy = SP->getType()) { 1279 Args = SPTy->getTypeArray(); 1280 CC = SPTy->getCC(); 1281 } 1282 1283 // Add a DW_AT_calling_convention if this has an explicit convention. 1284 if (CC && CC != dwarf::DW_CC_normal) 1285 addUInt(SPDie, dwarf::DW_AT_calling_convention, dwarf::DW_FORM_data1, CC); 1286 1287 // Add a return type. If this is a type like a C/C++ void type we don't add a 1288 // return type. 1289 if (Args.size()) 1290 if (auto Ty = Args[0]) 1291 addType(SPDie, Ty); 1292 1293 unsigned VK = SP->getVirtuality(); 1294 if (VK) { 1295 addUInt(SPDie, dwarf::DW_AT_virtuality, dwarf::DW_FORM_data1, VK); 1296 if (SP->getVirtualIndex() != -1u) { 1297 DIELoc *Block = getDIELoc(); 1298 addUInt(*Block, dwarf::DW_FORM_data1, dwarf::DW_OP_constu); 1299 addUInt(*Block, dwarf::DW_FORM_udata, SP->getVirtualIndex()); 1300 addBlock(SPDie, dwarf::DW_AT_vtable_elem_location, Block); 1301 } 1302 ContainingTypeMap.insert(std::make_pair(&SPDie, SP->getContainingType())); 1303 } 1304 1305 if (!SP->isDefinition()) { 1306 addFlag(SPDie, dwarf::DW_AT_declaration); 1307 1308 // Add arguments. Do not add arguments for subprogram definition. They will 1309 // be handled while processing variables. 1310 constructSubprogramArguments(SPDie, Args); 1311 } 1312 1313 addThrownTypes(SPDie, SP->getThrownTypes()); 1314 1315 if (SP->isArtificial()) 1316 addFlag(SPDie, dwarf::DW_AT_artificial); 1317 1318 if (!SP->isLocalToUnit()) 1319 addFlag(SPDie, dwarf::DW_AT_external); 1320 1321 if (DD->useAppleExtensionAttributes()) { 1322 if (SP->isOptimized()) 1323 addFlag(SPDie, dwarf::DW_AT_APPLE_optimized); 1324 1325 if (unsigned isa = Asm->getISAEncoding()) 1326 addUInt(SPDie, dwarf::DW_AT_APPLE_isa, dwarf::DW_FORM_flag, isa); 1327 } 1328 1329 if (SP->isLValueReference()) 1330 addFlag(SPDie, dwarf::DW_AT_reference); 1331 1332 if (SP->isRValueReference()) 1333 addFlag(SPDie, dwarf::DW_AT_rvalue_reference); 1334 1335 if (SP->isNoReturn()) 1336 addFlag(SPDie, dwarf::DW_AT_noreturn); 1337 1338 addAccess(SPDie, SP->getFlags()); 1339 1340 if (SP->isExplicit()) 1341 addFlag(SPDie, dwarf::DW_AT_explicit); 1342 1343 if (SP->isMainSubprogram()) 1344 addFlag(SPDie, dwarf::DW_AT_main_subprogram); 1345 if (SP->isPure()) 1346 addFlag(SPDie, dwarf::DW_AT_pure); 1347 if (SP->isElemental()) 1348 addFlag(SPDie, dwarf::DW_AT_elemental); 1349 if (SP->isRecursive()) 1350 addFlag(SPDie, dwarf::DW_AT_recursive); 1351 1352 if (DD->getDwarfVersion() >= 5 && SP->isDeleted()) 1353 addFlag(SPDie, dwarf::DW_AT_deleted); 1354 } 1355 1356 void DwarfUnit::constructSubrangeDIE(DIE &Buffer, const DISubrange *SR, 1357 DIE *IndexTy) { 1358 DIE &DW_Subrange = createAndAddDIE(dwarf::DW_TAG_subrange_type, Buffer); 1359 addDIEEntry(DW_Subrange, dwarf::DW_AT_type, *IndexTy); 1360 1361 // The LowerBound value defines the lower bounds which is typically zero for 1362 // C/C++. The Count value is the number of elements. Values are 64 bit. If 1363 // Count == -1 then the array is unbounded and we do not emit 1364 // DW_AT_lower_bound and DW_AT_count attributes. 1365 int64_t DefaultLowerBound = getDefaultLowerBound(); 1366 1367 auto AddBoundTypeEntry = [&](dwarf::Attribute Attr, 1368 DISubrange::BoundType Bound) -> void { 1369 if (auto *BV = Bound.dyn_cast<DIVariable *>()) { 1370 if (auto *VarDIE = getDIE(BV)) 1371 addDIEEntry(DW_Subrange, Attr, *VarDIE); 1372 } else if (auto *BE = Bound.dyn_cast<DIExpression *>()) { 1373 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 1374 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 1375 DwarfExpr.setMemoryLocationKind(); 1376 DwarfExpr.addExpression(BE); 1377 addBlock(DW_Subrange, Attr, DwarfExpr.finalize()); 1378 } else if (auto *BI = Bound.dyn_cast<ConstantInt *>()) { 1379 if (Attr == dwarf::DW_AT_count) { 1380 if (BI->getSExtValue() != -1) 1381 addUInt(DW_Subrange, Attr, None, BI->getSExtValue()); 1382 } else if (Attr != dwarf::DW_AT_lower_bound || DefaultLowerBound == -1 || 1383 BI->getSExtValue() != DefaultLowerBound) 1384 addSInt(DW_Subrange, Attr, dwarf::DW_FORM_sdata, BI->getSExtValue()); 1385 } 1386 }; 1387 1388 AddBoundTypeEntry(dwarf::DW_AT_lower_bound, SR->getLowerBound()); 1389 1390 AddBoundTypeEntry(dwarf::DW_AT_count, SR->getCount()); 1391 1392 AddBoundTypeEntry(dwarf::DW_AT_upper_bound, SR->getUpperBound()); 1393 1394 AddBoundTypeEntry(dwarf::DW_AT_byte_stride, SR->getStride()); 1395 } 1396 1397 void DwarfUnit::constructGenericSubrangeDIE(DIE &Buffer, 1398 const DIGenericSubrange *GSR, 1399 DIE *IndexTy) { 1400 DIE &DwGenericSubrange = 1401 createAndAddDIE(dwarf::DW_TAG_generic_subrange, Buffer); 1402 addDIEEntry(DwGenericSubrange, dwarf::DW_AT_type, *IndexTy); 1403 1404 int64_t DefaultLowerBound = getDefaultLowerBound(); 1405 1406 auto AddBoundTypeEntry = [&](dwarf::Attribute Attr, 1407 DIGenericSubrange::BoundType Bound) -> void { 1408 if (auto *BV = Bound.dyn_cast<DIVariable *>()) { 1409 if (auto *VarDIE = getDIE(BV)) 1410 addDIEEntry(DwGenericSubrange, Attr, *VarDIE); 1411 } else if (auto *BE = Bound.dyn_cast<DIExpression *>()) { 1412 if (BE->isConstant() && 1413 DIExpression::SignedOrUnsignedConstant::SignedConstant == 1414 *BE->isConstant()) { 1415 if (Attr != dwarf::DW_AT_lower_bound || DefaultLowerBound == -1 || 1416 static_cast<int64_t>(BE->getElement(1)) != DefaultLowerBound) 1417 addSInt(DwGenericSubrange, Attr, dwarf::DW_FORM_sdata, 1418 BE->getElement(1)); 1419 } else { 1420 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 1421 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 1422 DwarfExpr.setMemoryLocationKind(); 1423 DwarfExpr.addExpression(BE); 1424 addBlock(DwGenericSubrange, Attr, DwarfExpr.finalize()); 1425 } 1426 } 1427 }; 1428 1429 AddBoundTypeEntry(dwarf::DW_AT_lower_bound, GSR->getLowerBound()); 1430 AddBoundTypeEntry(dwarf::DW_AT_count, GSR->getCount()); 1431 AddBoundTypeEntry(dwarf::DW_AT_upper_bound, GSR->getUpperBound()); 1432 AddBoundTypeEntry(dwarf::DW_AT_byte_stride, GSR->getStride()); 1433 } 1434 1435 DIE *DwarfUnit::getIndexTyDie() { 1436 if (IndexTyDie) 1437 return IndexTyDie; 1438 // Construct an integer type to use for indexes. 1439 IndexTyDie = &createAndAddDIE(dwarf::DW_TAG_base_type, getUnitDie()); 1440 StringRef Name = "__ARRAY_SIZE_TYPE__"; 1441 addString(*IndexTyDie, dwarf::DW_AT_name, Name); 1442 addUInt(*IndexTyDie, dwarf::DW_AT_byte_size, None, sizeof(int64_t)); 1443 addUInt(*IndexTyDie, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1, 1444 dwarf::DW_ATE_unsigned); 1445 DD->addAccelType(*CUNode, Name, *IndexTyDie, /*Flags*/ 0); 1446 return IndexTyDie; 1447 } 1448 1449 /// Returns true if the vector's size differs from the sum of sizes of elements 1450 /// the user specified. This can occur if the vector has been rounded up to 1451 /// fit memory alignment constraints. 1452 static bool hasVectorBeenPadded(const DICompositeType *CTy) { 1453 assert(CTy && CTy->isVector() && "Composite type is not a vector"); 1454 const uint64_t ActualSize = CTy->getSizeInBits(); 1455 1456 // Obtain the size of each element in the vector. 1457 DIType *BaseTy = CTy->getBaseType(); 1458 assert(BaseTy && "Unknown vector element type."); 1459 const uint64_t ElementSize = BaseTy->getSizeInBits(); 1460 1461 // Locate the number of elements in the vector. 1462 const DINodeArray Elements = CTy->getElements(); 1463 assert(Elements.size() == 1 && 1464 Elements[0]->getTag() == dwarf::DW_TAG_subrange_type && 1465 "Invalid vector element array, expected one element of type subrange"); 1466 const auto Subrange = cast<DISubrange>(Elements[0]); 1467 const auto NumVecElements = 1468 Subrange->getCount() 1469 ? Subrange->getCount().get<ConstantInt *>()->getSExtValue() 1470 : 0; 1471 1472 // Ensure we found the element count and that the actual size is wide 1473 // enough to contain the requested size. 1474 assert(ActualSize >= (NumVecElements * ElementSize) && "Invalid vector size"); 1475 return ActualSize != (NumVecElements * ElementSize); 1476 } 1477 1478 void DwarfUnit::constructArrayTypeDIE(DIE &Buffer, const DICompositeType *CTy) { 1479 if (CTy->isVector()) { 1480 addFlag(Buffer, dwarf::DW_AT_GNU_vector); 1481 if (hasVectorBeenPadded(CTy)) 1482 addUInt(Buffer, dwarf::DW_AT_byte_size, None, 1483 CTy->getSizeInBits() / CHAR_BIT); 1484 } 1485 1486 if (DIVariable *Var = CTy->getDataLocation()) { 1487 if (auto *VarDIE = getDIE(Var)) 1488 addDIEEntry(Buffer, dwarf::DW_AT_data_location, *VarDIE); 1489 } else if (DIExpression *Expr = CTy->getDataLocationExp()) { 1490 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 1491 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 1492 DwarfExpr.setMemoryLocationKind(); 1493 DwarfExpr.addExpression(Expr); 1494 addBlock(Buffer, dwarf::DW_AT_data_location, DwarfExpr.finalize()); 1495 } 1496 1497 if (DIVariable *Var = CTy->getAssociated()) { 1498 if (auto *VarDIE = getDIE(Var)) 1499 addDIEEntry(Buffer, dwarf::DW_AT_associated, *VarDIE); 1500 } else if (DIExpression *Expr = CTy->getAssociatedExp()) { 1501 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 1502 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 1503 DwarfExpr.setMemoryLocationKind(); 1504 DwarfExpr.addExpression(Expr); 1505 addBlock(Buffer, dwarf::DW_AT_associated, DwarfExpr.finalize()); 1506 } 1507 1508 if (DIVariable *Var = CTy->getAllocated()) { 1509 if (auto *VarDIE = getDIE(Var)) 1510 addDIEEntry(Buffer, dwarf::DW_AT_allocated, *VarDIE); 1511 } else if (DIExpression *Expr = CTy->getAllocatedExp()) { 1512 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 1513 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 1514 DwarfExpr.setMemoryLocationKind(); 1515 DwarfExpr.addExpression(Expr); 1516 addBlock(Buffer, dwarf::DW_AT_allocated, DwarfExpr.finalize()); 1517 } 1518 1519 if (auto *RankConst = CTy->getRankConst()) { 1520 addSInt(Buffer, dwarf::DW_AT_rank, dwarf::DW_FORM_sdata, 1521 RankConst->getSExtValue()); 1522 } else if (auto *RankExpr = CTy->getRankExp()) { 1523 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 1524 DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc); 1525 DwarfExpr.setMemoryLocationKind(); 1526 DwarfExpr.addExpression(RankExpr); 1527 addBlock(Buffer, dwarf::DW_AT_rank, DwarfExpr.finalize()); 1528 } 1529 1530 // Emit the element type. 1531 addType(Buffer, CTy->getBaseType()); 1532 1533 // Get an anonymous type for index type. 1534 // FIXME: This type should be passed down from the front end 1535 // as different languages may have different sizes for indexes. 1536 DIE *IdxTy = getIndexTyDie(); 1537 1538 // Add subranges to array type. 1539 DINodeArray Elements = CTy->getElements(); 1540 for (DINode *E : Elements) { 1541 // FIXME: Should this really be such a loose cast? 1542 if (auto *Element = dyn_cast_or_null<DINode>(E)) { 1543 if (Element->getTag() == dwarf::DW_TAG_subrange_type) 1544 constructSubrangeDIE(Buffer, cast<DISubrange>(Element), IdxTy); 1545 else if (Element->getTag() == dwarf::DW_TAG_generic_subrange) 1546 constructGenericSubrangeDIE(Buffer, cast<DIGenericSubrange>(Element), 1547 IdxTy); 1548 } 1549 } 1550 } 1551 1552 void DwarfUnit::constructEnumTypeDIE(DIE &Buffer, const DICompositeType *CTy) { 1553 const DIType *DTy = CTy->getBaseType(); 1554 bool IsUnsigned = DTy && DD->isUnsignedDIType(DTy); 1555 if (DTy) { 1556 if (DD->getDwarfVersion() >= 3) 1557 addType(Buffer, DTy); 1558 if (DD->getDwarfVersion() >= 4 && (CTy->getFlags() & DINode::FlagEnumClass)) 1559 addFlag(Buffer, dwarf::DW_AT_enum_class); 1560 } 1561 1562 auto *Context = CTy->getScope(); 1563 bool IndexEnumerators = !Context || isa<DICompileUnit>(Context) || isa<DIFile>(Context) || 1564 isa<DINamespace>(Context) || isa<DICommonBlock>(Context); 1565 DINodeArray Elements = CTy->getElements(); 1566 1567 // Add enumerators to enumeration type. 1568 for (const DINode *E : Elements) { 1569 auto *Enum = dyn_cast_or_null<DIEnumerator>(E); 1570 if (Enum) { 1571 DIE &Enumerator = createAndAddDIE(dwarf::DW_TAG_enumerator, Buffer); 1572 StringRef Name = Enum->getName(); 1573 addString(Enumerator, dwarf::DW_AT_name, Name); 1574 addConstantValue(Enumerator, Enum->getValue(), IsUnsigned); 1575 if (IndexEnumerators) 1576 addGlobalName(Name, Enumerator, Context); 1577 } 1578 } 1579 } 1580 1581 void DwarfUnit::constructContainingTypeDIEs() { 1582 for (auto &P : ContainingTypeMap) { 1583 DIE &SPDie = *P.first; 1584 const DINode *D = P.second; 1585 if (!D) 1586 continue; 1587 DIE *NDie = getDIE(D); 1588 if (!NDie) 1589 continue; 1590 addDIEEntry(SPDie, dwarf::DW_AT_containing_type, *NDie); 1591 } 1592 } 1593 1594 DIE &DwarfUnit::constructMemberDIE(DIE &Buffer, const DIDerivedType *DT) { 1595 DIE &MemberDie = createAndAddDIE(DT->getTag(), Buffer); 1596 StringRef Name = DT->getName(); 1597 if (!Name.empty()) 1598 addString(MemberDie, dwarf::DW_AT_name, Name); 1599 1600 addAnnotation(MemberDie, DT->getAnnotations()); 1601 1602 if (DIType *Resolved = DT->getBaseType()) 1603 addType(MemberDie, Resolved); 1604 1605 addSourceLine(MemberDie, DT); 1606 1607 if (DT->getTag() == dwarf::DW_TAG_inheritance && DT->isVirtual()) { 1608 1609 // For C++, virtual base classes are not at fixed offset. Use following 1610 // expression to extract appropriate offset from vtable. 1611 // BaseAddr = ObAddr + *((*ObAddr) - Offset) 1612 1613 DIELoc *VBaseLocationDie = new (DIEValueAllocator) DIELoc; 1614 addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_dup); 1615 addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_deref); 1616 addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_constu); 1617 addUInt(*VBaseLocationDie, dwarf::DW_FORM_udata, DT->getOffsetInBits()); 1618 addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_minus); 1619 addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_deref); 1620 addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_plus); 1621 1622 addBlock(MemberDie, dwarf::DW_AT_data_member_location, VBaseLocationDie); 1623 } else { 1624 uint64_t Size = DT->getSizeInBits(); 1625 uint64_t FieldSize = DD->getBaseTypeSize(DT); 1626 uint32_t AlignInBytes = DT->getAlignInBytes(); 1627 uint64_t OffsetInBytes; 1628 1629 bool IsBitfield = FieldSize && Size != FieldSize; 1630 if (IsBitfield) { 1631 // Handle bitfield, assume bytes are 8 bits. 1632 if (DD->useDWARF2Bitfields()) 1633 addUInt(MemberDie, dwarf::DW_AT_byte_size, None, FieldSize/8); 1634 addUInt(MemberDie, dwarf::DW_AT_bit_size, None, Size); 1635 1636 uint64_t Offset = DT->getOffsetInBits(); 1637 // We can't use DT->getAlignInBits() here: AlignInBits for member type 1638 // is non-zero if and only if alignment was forced (e.g. _Alignas()), 1639 // which can't be done with bitfields. Thus we use FieldSize here. 1640 uint32_t AlignInBits = FieldSize; 1641 uint32_t AlignMask = ~(AlignInBits - 1); 1642 // The bits from the start of the storage unit to the start of the field. 1643 uint64_t StartBitOffset = Offset - (Offset & AlignMask); 1644 // The byte offset of the field's aligned storage unit inside the struct. 1645 OffsetInBytes = (Offset - StartBitOffset) / 8; 1646 1647 if (DD->useDWARF2Bitfields()) { 1648 uint64_t HiMark = (Offset + FieldSize) & AlignMask; 1649 uint64_t FieldOffset = (HiMark - FieldSize); 1650 Offset -= FieldOffset; 1651 1652 // Maybe we need to work from the other end. 1653 if (Asm->getDataLayout().isLittleEndian()) 1654 Offset = FieldSize - (Offset + Size); 1655 1656 addUInt(MemberDie, dwarf::DW_AT_bit_offset, None, Offset); 1657 OffsetInBytes = FieldOffset >> 3; 1658 } else { 1659 addUInt(MemberDie, dwarf::DW_AT_data_bit_offset, None, Offset); 1660 } 1661 } else { 1662 // This is not a bitfield. 1663 OffsetInBytes = DT->getOffsetInBits() / 8; 1664 if (AlignInBytes) 1665 addUInt(MemberDie, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata, 1666 AlignInBytes); 1667 } 1668 1669 if (DD->getDwarfVersion() <= 2) { 1670 DIELoc *MemLocationDie = new (DIEValueAllocator) DIELoc; 1671 addUInt(*MemLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_plus_uconst); 1672 addUInt(*MemLocationDie, dwarf::DW_FORM_udata, OffsetInBytes); 1673 addBlock(MemberDie, dwarf::DW_AT_data_member_location, MemLocationDie); 1674 } else if (!IsBitfield || DD->useDWARF2Bitfields()) { 1675 // In DWARF v3, DW_FORM_data4/8 in DW_AT_data_member_location are 1676 // interpreted as location-list pointers. Interpreting constants as 1677 // pointers is not expected, so we use DW_FORM_udata to encode the 1678 // constants here. 1679 if (DD->getDwarfVersion() == 3) 1680 addUInt(MemberDie, dwarf::DW_AT_data_member_location, 1681 dwarf::DW_FORM_udata, OffsetInBytes); 1682 else 1683 addUInt(MemberDie, dwarf::DW_AT_data_member_location, None, 1684 OffsetInBytes); 1685 } 1686 } 1687 1688 addAccess(MemberDie, DT->getFlags()); 1689 1690 if (DT->isVirtual()) 1691 addUInt(MemberDie, dwarf::DW_AT_virtuality, dwarf::DW_FORM_data1, 1692 dwarf::DW_VIRTUALITY_virtual); 1693 1694 // Objective-C properties. 1695 if (DINode *PNode = DT->getObjCProperty()) 1696 if (DIE *PDie = getDIE(PNode)) 1697 addAttribute(MemberDie, dwarf::DW_AT_APPLE_property, 1698 dwarf::DW_FORM_ref4, DIEEntry(*PDie)); 1699 1700 if (DT->isArtificial()) 1701 addFlag(MemberDie, dwarf::DW_AT_artificial); 1702 1703 return MemberDie; 1704 } 1705 1706 DIE *DwarfUnit::getOrCreateStaticMemberDIE(const DIDerivedType *DT) { 1707 if (!DT) 1708 return nullptr; 1709 1710 // Construct the context before querying for the existence of the DIE in case 1711 // such construction creates the DIE. 1712 DIE *ContextDIE = getOrCreateContextDIE(DT->getScope()); 1713 assert(dwarf::isType(ContextDIE->getTag()) && 1714 "Static member should belong to a type."); 1715 1716 if (DIE *StaticMemberDIE = getDIE(DT)) 1717 return StaticMemberDIE; 1718 1719 DIE &StaticMemberDIE = createAndAddDIE(DT->getTag(), *ContextDIE, DT); 1720 1721 const DIType *Ty = DT->getBaseType(); 1722 1723 addString(StaticMemberDIE, dwarf::DW_AT_name, DT->getName()); 1724 addType(StaticMemberDIE, Ty); 1725 addSourceLine(StaticMemberDIE, DT); 1726 addFlag(StaticMemberDIE, dwarf::DW_AT_external); 1727 addFlag(StaticMemberDIE, dwarf::DW_AT_declaration); 1728 1729 // FIXME: We could omit private if the parent is a class_type, and 1730 // public if the parent is something else. 1731 addAccess(StaticMemberDIE, DT->getFlags()); 1732 1733 if (const ConstantInt *CI = dyn_cast_or_null<ConstantInt>(DT->getConstant())) 1734 addConstantValue(StaticMemberDIE, CI, Ty); 1735 if (const ConstantFP *CFP = dyn_cast_or_null<ConstantFP>(DT->getConstant())) 1736 addConstantFPValue(StaticMemberDIE, CFP); 1737 1738 if (uint32_t AlignInBytes = DT->getAlignInBytes()) 1739 addUInt(StaticMemberDIE, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata, 1740 AlignInBytes); 1741 1742 return &StaticMemberDIE; 1743 } 1744 1745 void DwarfUnit::emitCommonHeader(bool UseOffsets, dwarf::UnitType UT) { 1746 // Emit size of content not including length itself 1747 if (!DD->useSectionsAsReferences()) 1748 EndLabel = Asm->emitDwarfUnitLength( 1749 isDwoUnit() ? "debug_info_dwo" : "debug_info", "Length of Unit"); 1750 else 1751 Asm->emitDwarfUnitLength(getHeaderSize() + getUnitDie().getSize(), 1752 "Length of Unit"); 1753 1754 Asm->OutStreamer->AddComment("DWARF version number"); 1755 unsigned Version = DD->getDwarfVersion(); 1756 Asm->emitInt16(Version); 1757 1758 // DWARF v5 reorders the address size and adds a unit type. 1759 if (Version >= 5) { 1760 Asm->OutStreamer->AddComment("DWARF Unit Type"); 1761 Asm->emitInt8(UT); 1762 Asm->OutStreamer->AddComment("Address Size (in bytes)"); 1763 Asm->emitInt8(Asm->MAI->getCodePointerSize()); 1764 } 1765 1766 // We share one abbreviations table across all units so it's always at the 1767 // start of the section. Use a relocatable offset where needed to ensure 1768 // linking doesn't invalidate that offset. 1769 Asm->OutStreamer->AddComment("Offset Into Abbrev. Section"); 1770 const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering(); 1771 if (UseOffsets) 1772 Asm->emitDwarfLengthOrOffset(0); 1773 else 1774 Asm->emitDwarfSymbolReference( 1775 TLOF.getDwarfAbbrevSection()->getBeginSymbol(), false); 1776 1777 if (Version <= 4) { 1778 Asm->OutStreamer->AddComment("Address Size (in bytes)"); 1779 Asm->emitInt8(Asm->MAI->getCodePointerSize()); 1780 } 1781 } 1782 1783 void DwarfTypeUnit::emitHeader(bool UseOffsets) { 1784 DwarfUnit::emitCommonHeader(UseOffsets, 1785 DD->useSplitDwarf() ? dwarf::DW_UT_split_type 1786 : dwarf::DW_UT_type); 1787 Asm->OutStreamer->AddComment("Type Signature"); 1788 Asm->OutStreamer->emitIntValue(TypeSignature, sizeof(TypeSignature)); 1789 Asm->OutStreamer->AddComment("Type DIE Offset"); 1790 // In a skeleton type unit there is no type DIE so emit a zero offset. 1791 Asm->emitDwarfLengthOrOffset(Ty ? Ty->getOffset() : 0); 1792 } 1793 1794 void DwarfUnit::addSectionDelta(DIE &Die, dwarf::Attribute Attribute, 1795 const MCSymbol *Hi, const MCSymbol *Lo) { 1796 addAttribute(Die, Attribute, DD->getDwarfSectionOffsetForm(), 1797 new (DIEValueAllocator) DIEDelta(Hi, Lo)); 1798 } 1799 1800 void DwarfUnit::addSectionLabel(DIE &Die, dwarf::Attribute Attribute, 1801 const MCSymbol *Label, const MCSymbol *Sec) { 1802 if (Asm->MAI->doesDwarfUseRelocationsAcrossSections()) 1803 addLabel(Die, Attribute, DD->getDwarfSectionOffsetForm(), Label); 1804 else 1805 addSectionDelta(Die, Attribute, Label, Sec); 1806 } 1807 1808 bool DwarfTypeUnit::isDwoUnit() const { 1809 // Since there are no skeleton type units, all type units are dwo type units 1810 // when split DWARF is being used. 1811 return DD->useSplitDwarf(); 1812 } 1813 1814 void DwarfTypeUnit::addGlobalName(StringRef Name, const DIE &Die, 1815 const DIScope *Context) { 1816 getCU().addGlobalNameForTypeUnit(Name, Context); 1817 } 1818 1819 void DwarfTypeUnit::addGlobalType(const DIType *Ty, const DIE &Die, 1820 const DIScope *Context) { 1821 getCU().addGlobalTypeUnitType(Ty, Context); 1822 } 1823 1824 const MCSymbol *DwarfUnit::getCrossSectionRelativeBaseAddress() const { 1825 if (!Asm->MAI->doesDwarfUseRelocationsAcrossSections()) 1826 return nullptr; 1827 if (isDwoUnit()) 1828 return nullptr; 1829 return getSection()->getBeginSymbol(); 1830 } 1831 1832 void DwarfUnit::addStringOffsetsStart() { 1833 const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering(); 1834 addSectionLabel(getUnitDie(), dwarf::DW_AT_str_offsets_base, 1835 DU->getStringOffsetsStartSym(), 1836 TLOF.getDwarfStrOffSection()->getBeginSymbol()); 1837 } 1838 1839 void DwarfUnit::addRnglistsBase() { 1840 assert(DD->getDwarfVersion() >= 5 && 1841 "DW_AT_rnglists_base requires DWARF version 5 or later"); 1842 const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering(); 1843 addSectionLabel(getUnitDie(), dwarf::DW_AT_rnglists_base, 1844 DU->getRnglistsTableBaseSym(), 1845 TLOF.getDwarfRnglistsSection()->getBeginSymbol()); 1846 } 1847 1848 void DwarfTypeUnit::finishNonUnitTypeDIE(DIE& D, const DICompositeType *CTy) { 1849 addFlag(D, dwarf::DW_AT_declaration); 1850 StringRef Name = CTy->getName(); 1851 if (!Name.empty()) 1852 addString(D, dwarf::DW_AT_name, Name); 1853 if (Name.startswith("_STN") || !Name.contains('<')) 1854 addTemplateParams(D, CTy->getTemplateParams()); 1855 // If the type is in an anonymous namespace, we can't reference it from a TU 1856 // (since the type would be CU local and the TU doesn't specify which TU has 1857 // the appropriate type definition) - so flag this emission as such and skip 1858 // the rest of the emission now since we're going to throw out all this work 1859 // and put the outer/referencing type in the CU instead. 1860 // FIXME: Probably good to generalize this to a DICompositeType flag populated 1861 // by the frontend, then we could use that to have types that can have 1862 // decl+def merged by LTO but where the definition still doesn't go in a type 1863 // unit because the type has only one definition. 1864 for (DIScope *S = CTy->getScope(); S; S = S->getScope()) { 1865 if (auto *NS = dyn_cast<DINamespace>(S)) { 1866 if (NS->getName().empty()) { 1867 DD->seenLocalType(); 1868 break; 1869 } 1870 } 1871 } 1872 auto X = DD->enterNonTypeUnitContext(); 1873 getCU().createTypeDIE(CTy); 1874 } 1875