1 #include "DwarfCompileUnit.h" 2 #include "DwarfExpression.h" 3 #include "llvm/CodeGen/MachineFunction.h" 4 #include "llvm/IR/Constants.h" 5 #include "llvm/IR/DataLayout.h" 6 #include "llvm/IR/GlobalValue.h" 7 #include "llvm/IR/GlobalVariable.h" 8 #include "llvm/IR/Instruction.h" 9 #include "llvm/MC/MCAsmInfo.h" 10 #include "llvm/MC/MCStreamer.h" 11 #include "llvm/Target/TargetFrameLowering.h" 12 #include "llvm/Target/TargetLoweringObjectFile.h" 13 #include "llvm/Target/TargetMachine.h" 14 #include "llvm/Target/TargetRegisterInfo.h" 15 #include "llvm/Target/TargetSubtargetInfo.h" 16 17 namespace llvm { 18 19 DwarfCompileUnit::DwarfCompileUnit(unsigned UID, const DICompileUnit *Node, 20 AsmPrinter *A, DwarfDebug *DW, 21 DwarfFile *DWU) 22 : DwarfUnit(dwarf::DW_TAG_compile_unit, Node, A, DW, DWU), UniqueID(UID), 23 Skeleton(nullptr), BaseAddress(nullptr) { 24 insertDIE(Node, &getUnitDie()); 25 MacroLabelBegin = Asm->createTempSymbol("cu_macro_begin"); 26 } 27 28 /// addLabelAddress - Add a dwarf label attribute data and value using 29 /// DW_FORM_addr or DW_FORM_GNU_addr_index. 30 /// 31 void DwarfCompileUnit::addLabelAddress(DIE &Die, dwarf::Attribute Attribute, 32 const MCSymbol *Label) { 33 34 // Don't use the address pool in non-fission or in the skeleton unit itself. 35 // FIXME: Once GDB supports this, it's probably worthwhile using the address 36 // pool from the skeleton - maybe even in non-fission (possibly fewer 37 // relocations by sharing them in the pool, but we have other ideas about how 38 // to reduce the number of relocations as well/instead). 39 if (!DD->useSplitDwarf() || !Skeleton) 40 return addLocalLabelAddress(Die, Attribute, Label); 41 42 if (Label) 43 DD->addArangeLabel(SymbolCU(this, Label)); 44 45 unsigned idx = DD->getAddressPool().getIndex(Label); 46 Die.addValue(DIEValueAllocator, Attribute, dwarf::DW_FORM_GNU_addr_index, 47 DIEInteger(idx)); 48 } 49 50 void DwarfCompileUnit::addLocalLabelAddress(DIE &Die, 51 dwarf::Attribute Attribute, 52 const MCSymbol *Label) { 53 if (Label) 54 DD->addArangeLabel(SymbolCU(this, Label)); 55 56 if (Label) 57 Die.addValue(DIEValueAllocator, Attribute, dwarf::DW_FORM_addr, 58 DIELabel(Label)); 59 else 60 Die.addValue(DIEValueAllocator, Attribute, dwarf::DW_FORM_addr, 61 DIEInteger(0)); 62 } 63 64 unsigned DwarfCompileUnit::getOrCreateSourceID(StringRef FileName, 65 StringRef DirName) { 66 // If we print assembly, we can't separate .file entries according to 67 // compile units. Thus all files will belong to the default compile unit. 68 69 // FIXME: add a better feature test than hasRawTextSupport. Even better, 70 // extend .file to support this. 71 return Asm->OutStreamer->EmitDwarfFileDirective( 72 0, DirName, FileName, 73 Asm->OutStreamer->hasRawTextSupport() ? 0 : getUniqueID()); 74 } 75 76 /// getOrCreateGlobalVariableDIE - get or create global variable DIE. 77 DIE *DwarfCompileUnit::getOrCreateGlobalVariableDIE( 78 const DIGlobalVariable *GV, const GlobalVariable *Global) { 79 // Check for pre-existence. 80 if (DIE *Die = getDIE(GV)) 81 return Die; 82 83 assert(GV); 84 85 auto *GVContext = GV->getScope(); 86 auto *GTy = DD->resolve(GV->getType()); 87 88 // Construct the context before querying for the existence of the DIE in 89 // case such construction creates the DIE. 90 DIE *ContextDIE = getOrCreateContextDIE(GVContext); 91 92 // Add to map. 93 DIE *VariableDIE = &createAndAddDIE(GV->getTag(), *ContextDIE, GV); 94 DIScope *DeclContext; 95 if (auto *SDMDecl = GV->getStaticDataMemberDeclaration()) { 96 DeclContext = resolve(SDMDecl->getScope()); 97 assert(SDMDecl->isStaticMember() && "Expected static member decl"); 98 assert(GV->isDefinition()); 99 // We need the declaration DIE that is in the static member's class. 100 DIE *VariableSpecDIE = getOrCreateStaticMemberDIE(SDMDecl); 101 addDIEEntry(*VariableDIE, dwarf::DW_AT_specification, *VariableSpecDIE); 102 } else { 103 DeclContext = GV->getScope(); 104 // Add name and type. 105 addString(*VariableDIE, dwarf::DW_AT_name, GV->getDisplayName()); 106 addType(*VariableDIE, GTy); 107 108 // Add scoping info. 109 if (!GV->isLocalToUnit()) 110 addFlag(*VariableDIE, dwarf::DW_AT_external); 111 112 // Add line number info. 113 addSourceLine(*VariableDIE, GV); 114 } 115 116 if (!GV->isDefinition()) 117 addFlag(*VariableDIE, dwarf::DW_AT_declaration); 118 else 119 addGlobalName(GV->getName(), *VariableDIE, DeclContext); 120 121 // Add location. 122 bool addToAccelTable = false; 123 124 DIExpression *Expr = GV->getExpr(); 125 126 // For compatibility with DWARF 3 and earlier, 127 // DW_AT_location(DW_OP_constu, X, DW_OP_stack_value) becomes 128 // DW_AT_const_value(X). 129 if (Expr && Expr->getNumElements() == 3 && 130 Expr->getElement(0) == dwarf::DW_OP_constu && 131 Expr->getElement(2) == dwarf::DW_OP_stack_value) { 132 addConstantValue(*VariableDIE, /*Unsigned=*/true, Expr->getElement(1)); 133 // We cannot describe the location of dllimport'd variables: the computation 134 // of their address requires loads from the IAT. 135 } else if (!Global || !Global->hasDLLImportStorageClass()) { 136 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 137 if (Global) { 138 addToAccelTable = true; 139 const MCSymbol *Sym = Asm->getSymbol(Global); 140 if (Global->isThreadLocal()) { 141 if (Asm->TM.Options.EmulatedTLS) { 142 // TODO: add debug info for emulated thread local mode. 143 } else { 144 // FIXME: Make this work with -gsplit-dwarf. 145 unsigned PointerSize = Asm->getDataLayout().getPointerSize(); 146 assert((PointerSize == 4 || PointerSize == 8) && 147 "Add support for other sizes if necessary"); 148 // Based on GCC's support for TLS: 149 if (!DD->useSplitDwarf()) { 150 // 1) Start with a constNu of the appropriate pointer size 151 addUInt(*Loc, dwarf::DW_FORM_data1, PointerSize == 4 152 ? dwarf::DW_OP_const4u 153 : dwarf::DW_OP_const8u); 154 // 2) containing the (relocated) offset of the TLS variable 155 // within the module's TLS block. 156 addExpr(*Loc, dwarf::DW_FORM_udata, 157 Asm->getObjFileLowering().getDebugThreadLocalSymbol(Sym)); 158 } else { 159 addUInt(*Loc, dwarf::DW_FORM_data1, dwarf::DW_OP_GNU_const_index); 160 addUInt(*Loc, dwarf::DW_FORM_udata, 161 DD->getAddressPool().getIndex(Sym, /* TLS */ true)); 162 } 163 // 3) followed by an OP to make the debugger do a TLS lookup. 164 addUInt(*Loc, dwarf::DW_FORM_data1, 165 DD->useGNUTLSOpcode() ? dwarf::DW_OP_GNU_push_tls_address 166 : dwarf::DW_OP_form_tls_address); 167 } 168 } else { 169 DD->addArangeLabel(SymbolCU(this, Sym)); 170 addOpAddress(*Loc, Sym); 171 } 172 173 if (Expr) { 174 DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc); 175 DwarfExpr.AddExpression(Expr->expr_op_begin(), Expr->expr_op_end()); 176 } 177 } 178 179 addBlock(*VariableDIE, dwarf::DW_AT_location, Loc); 180 181 if (DD->useAllLinkageNames()) 182 addLinkageName(*VariableDIE, GV->getLinkageName()); 183 } 184 185 if (addToAccelTable) { 186 DD->addAccelName(GV->getName(), *VariableDIE); 187 188 // If the linkage name is different than the name, go ahead and output 189 // that as well into the name table. 190 if (GV->getLinkageName() != "" && GV->getName() != GV->getLinkageName()) 191 DD->addAccelName(GV->getLinkageName(), *VariableDIE); 192 } 193 194 return VariableDIE; 195 } 196 197 void DwarfCompileUnit::addRange(RangeSpan Range) { 198 bool SameAsPrevCU = this == DD->getPrevCU(); 199 DD->setPrevCU(this); 200 // If we have no current ranges just add the range and return, otherwise, 201 // check the current section and CU against the previous section and CU we 202 // emitted into and the subprogram was contained within. If these are the 203 // same then extend our current range, otherwise add this as a new range. 204 if (CURanges.empty() || !SameAsPrevCU || 205 (&CURanges.back().getEnd()->getSection() != 206 &Range.getEnd()->getSection())) { 207 CURanges.push_back(Range); 208 return; 209 } 210 211 CURanges.back().setEnd(Range.getEnd()); 212 } 213 214 DIE::value_iterator 215 DwarfCompileUnit::addSectionLabel(DIE &Die, dwarf::Attribute Attribute, 216 const MCSymbol *Label, const MCSymbol *Sec) { 217 if (Asm->MAI->doesDwarfUseRelocationsAcrossSections()) 218 return addLabel(Die, Attribute, 219 DD->getDwarfVersion() >= 4 ? dwarf::DW_FORM_sec_offset 220 : dwarf::DW_FORM_data4, 221 Label); 222 return addSectionDelta(Die, Attribute, Label, Sec); 223 } 224 225 void DwarfCompileUnit::initStmtList() { 226 // Define start line table label for each Compile Unit. 227 MCSymbol *LineTableStartSym = 228 Asm->OutStreamer->getDwarfLineTableSymbol(getUniqueID()); 229 230 // DW_AT_stmt_list is a offset of line number information for this 231 // compile unit in debug_line section. For split dwarf this is 232 // left in the skeleton CU and so not included. 233 // The line table entries are not always emitted in assembly, so it 234 // is not okay to use line_table_start here. 235 const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering(); 236 StmtListValue = 237 addSectionLabel(UnitDie, dwarf::DW_AT_stmt_list, LineTableStartSym, 238 TLOF.getDwarfLineSection()->getBeginSymbol()); 239 } 240 241 void DwarfCompileUnit::applyStmtList(DIE &D) { 242 D.addValue(DIEValueAllocator, *StmtListValue); 243 } 244 245 void DwarfCompileUnit::attachLowHighPC(DIE &D, const MCSymbol *Begin, 246 const MCSymbol *End) { 247 assert(Begin && "Begin label should not be null!"); 248 assert(End && "End label should not be null!"); 249 assert(Begin->isDefined() && "Invalid starting label"); 250 assert(End->isDefined() && "Invalid end label"); 251 252 addLabelAddress(D, dwarf::DW_AT_low_pc, Begin); 253 if (DD->getDwarfVersion() < 4) 254 addLabelAddress(D, dwarf::DW_AT_high_pc, End); 255 else 256 addLabelDelta(D, dwarf::DW_AT_high_pc, End, Begin); 257 } 258 259 // Find DIE for the given subprogram and attach appropriate DW_AT_low_pc 260 // and DW_AT_high_pc attributes. If there are global variables in this 261 // scope then create and insert DIEs for these variables. 262 DIE &DwarfCompileUnit::updateSubprogramScopeDIE(const DISubprogram *SP) { 263 DIE *SPDie = getOrCreateSubprogramDIE(SP, includeMinimalInlineScopes()); 264 265 attachLowHighPC(*SPDie, Asm->getFunctionBegin(), Asm->getFunctionEnd()); 266 if (DD->useAppleExtensionAttributes() && 267 !DD->getCurrentFunction()->getTarget().Options.DisableFramePointerElim( 268 *DD->getCurrentFunction())) 269 addFlag(*SPDie, dwarf::DW_AT_APPLE_omit_frame_ptr); 270 271 // Only include DW_AT_frame_base in full debug info 272 if (!includeMinimalInlineScopes()) { 273 const TargetRegisterInfo *RI = Asm->MF->getSubtarget().getRegisterInfo(); 274 MachineLocation Location(RI->getFrameRegister(*Asm->MF)); 275 if (RI->isPhysicalRegister(Location.getReg())) 276 addAddress(*SPDie, dwarf::DW_AT_frame_base, Location); 277 } 278 279 // Add name to the name table, we do this here because we're guaranteed 280 // to have concrete versions of our DW_TAG_subprogram nodes. 281 DD->addSubprogramNames(SP, *SPDie); 282 283 return *SPDie; 284 } 285 286 // Construct a DIE for this scope. 287 void DwarfCompileUnit::constructScopeDIE( 288 LexicalScope *Scope, SmallVectorImpl<DIE *> &FinalChildren) { 289 if (!Scope || !Scope->getScopeNode()) 290 return; 291 292 auto *DS = Scope->getScopeNode(); 293 294 assert((Scope->getInlinedAt() || !isa<DISubprogram>(DS)) && 295 "Only handle inlined subprograms here, use " 296 "constructSubprogramScopeDIE for non-inlined " 297 "subprograms"); 298 299 SmallVector<DIE *, 8> Children; 300 301 // We try to create the scope DIE first, then the children DIEs. This will 302 // avoid creating un-used children then removing them later when we find out 303 // the scope DIE is null. 304 DIE *ScopeDIE; 305 if (Scope->getParent() && isa<DISubprogram>(DS)) { 306 ScopeDIE = constructInlinedScopeDIE(Scope); 307 if (!ScopeDIE) 308 return; 309 // We create children when the scope DIE is not null. 310 createScopeChildrenDIE(Scope, Children); 311 } else { 312 // Early exit when we know the scope DIE is going to be null. 313 if (DD->isLexicalScopeDIENull(Scope)) 314 return; 315 316 unsigned ChildScopeCount; 317 318 // We create children here when we know the scope DIE is not going to be 319 // null and the children will be added to the scope DIE. 320 createScopeChildrenDIE(Scope, Children, &ChildScopeCount); 321 322 // Skip imported directives in gmlt-like data. 323 if (!includeMinimalInlineScopes()) { 324 // There is no need to emit empty lexical block DIE. 325 for (const auto *IE : ImportedEntities[DS]) 326 Children.push_back( 327 constructImportedEntityDIE(cast<DIImportedEntity>(IE))); 328 } 329 330 // If there are only other scopes as children, put them directly in the 331 // parent instead, as this scope would serve no purpose. 332 if (Children.size() == ChildScopeCount) { 333 FinalChildren.insert(FinalChildren.end(), 334 std::make_move_iterator(Children.begin()), 335 std::make_move_iterator(Children.end())); 336 return; 337 } 338 ScopeDIE = constructLexicalScopeDIE(Scope); 339 assert(ScopeDIE && "Scope DIE should not be null."); 340 } 341 342 // Add children 343 for (auto &I : Children) 344 ScopeDIE->addChild(std::move(I)); 345 346 FinalChildren.push_back(std::move(ScopeDIE)); 347 } 348 349 DIE::value_iterator 350 DwarfCompileUnit::addSectionDelta(DIE &Die, dwarf::Attribute Attribute, 351 const MCSymbol *Hi, const MCSymbol *Lo) { 352 return Die.addValue(DIEValueAllocator, Attribute, 353 DD->getDwarfVersion() >= 4 ? dwarf::DW_FORM_sec_offset 354 : dwarf::DW_FORM_data4, 355 new (DIEValueAllocator) DIEDelta(Hi, Lo)); 356 } 357 358 void DwarfCompileUnit::addScopeRangeList(DIE &ScopeDIE, 359 SmallVector<RangeSpan, 2> Range) { 360 const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering(); 361 362 // Emit offset in .debug_range as a relocatable label. emitDIE will handle 363 // emitting it appropriately. 364 const MCSymbol *RangeSectionSym = 365 TLOF.getDwarfRangesSection()->getBeginSymbol(); 366 367 RangeSpanList List(Asm->createTempSymbol("debug_ranges"), std::move(Range)); 368 369 // Under fission, ranges are specified by constant offsets relative to the 370 // CU's DW_AT_GNU_ranges_base. 371 if (isDwoUnit()) 372 addSectionDelta(ScopeDIE, dwarf::DW_AT_ranges, List.getSym(), 373 RangeSectionSym); 374 else 375 addSectionLabel(ScopeDIE, dwarf::DW_AT_ranges, List.getSym(), 376 RangeSectionSym); 377 378 // Add the range list to the set of ranges to be emitted. 379 (Skeleton ? Skeleton : this)->CURangeLists.push_back(std::move(List)); 380 } 381 382 void DwarfCompileUnit::attachRangesOrLowHighPC( 383 DIE &Die, SmallVector<RangeSpan, 2> Ranges) { 384 if (Ranges.size() == 1) { 385 const auto &single = Ranges.front(); 386 attachLowHighPC(Die, single.getStart(), single.getEnd()); 387 } else 388 addScopeRangeList(Die, std::move(Ranges)); 389 } 390 391 void DwarfCompileUnit::attachRangesOrLowHighPC( 392 DIE &Die, const SmallVectorImpl<InsnRange> &Ranges) { 393 SmallVector<RangeSpan, 2> List; 394 List.reserve(Ranges.size()); 395 for (const InsnRange &R : Ranges) 396 List.push_back(RangeSpan(DD->getLabelBeforeInsn(R.first), 397 DD->getLabelAfterInsn(R.second))); 398 attachRangesOrLowHighPC(Die, std::move(List)); 399 } 400 401 // This scope represents inlined body of a function. Construct DIE to 402 // represent this concrete inlined copy of the function. 403 DIE *DwarfCompileUnit::constructInlinedScopeDIE(LexicalScope *Scope) { 404 assert(Scope->getScopeNode()); 405 auto *DS = Scope->getScopeNode(); 406 auto *InlinedSP = getDISubprogram(DS); 407 // Find the subprogram's DwarfCompileUnit in the SPMap in case the subprogram 408 // was inlined from another compile unit. 409 DIE *OriginDIE = DU->getAbstractSPDies()[InlinedSP]; 410 assert(OriginDIE && "Unable to find original DIE for an inlined subprogram."); 411 412 auto ScopeDIE = DIE::get(DIEValueAllocator, dwarf::DW_TAG_inlined_subroutine); 413 addDIEEntry(*ScopeDIE, dwarf::DW_AT_abstract_origin, *OriginDIE); 414 415 attachRangesOrLowHighPC(*ScopeDIE, Scope->getRanges()); 416 417 // Add the call site information to the DIE. 418 const DILocation *IA = Scope->getInlinedAt(); 419 addUInt(*ScopeDIE, dwarf::DW_AT_call_file, None, 420 getOrCreateSourceID(IA->getFilename(), IA->getDirectory())); 421 addUInt(*ScopeDIE, dwarf::DW_AT_call_line, None, IA->getLine()); 422 if (IA->getDiscriminator() && DD->getDwarfVersion() >= 4) 423 addUInt(*ScopeDIE, dwarf::DW_AT_GNU_discriminator, None, 424 IA->getDiscriminator()); 425 426 // Add name to the name table, we do this here because we're guaranteed 427 // to have concrete versions of our DW_TAG_inlined_subprogram nodes. 428 DD->addSubprogramNames(InlinedSP, *ScopeDIE); 429 430 return ScopeDIE; 431 } 432 433 // Construct new DW_TAG_lexical_block for this scope and attach 434 // DW_AT_low_pc/DW_AT_high_pc labels. 435 DIE *DwarfCompileUnit::constructLexicalScopeDIE(LexicalScope *Scope) { 436 if (DD->isLexicalScopeDIENull(Scope)) 437 return nullptr; 438 439 auto ScopeDIE = DIE::get(DIEValueAllocator, dwarf::DW_TAG_lexical_block); 440 if (Scope->isAbstractScope()) 441 return ScopeDIE; 442 443 attachRangesOrLowHighPC(*ScopeDIE, Scope->getRanges()); 444 445 return ScopeDIE; 446 } 447 448 /// constructVariableDIE - Construct a DIE for the given DbgVariable. 449 DIE *DwarfCompileUnit::constructVariableDIE(DbgVariable &DV, bool Abstract) { 450 auto D = constructVariableDIEImpl(DV, Abstract); 451 DV.setDIE(*D); 452 return D; 453 } 454 455 DIE *DwarfCompileUnit::constructVariableDIEImpl(const DbgVariable &DV, 456 bool Abstract) { 457 // Define variable debug information entry. 458 auto VariableDie = DIE::get(DIEValueAllocator, DV.getTag()); 459 460 if (Abstract) { 461 applyVariableAttributes(DV, *VariableDie); 462 return VariableDie; 463 } 464 465 // Add variable address. 466 467 unsigned Offset = DV.getDebugLocListIndex(); 468 if (Offset != ~0U) { 469 addLocationList(*VariableDie, dwarf::DW_AT_location, Offset); 470 return VariableDie; 471 } 472 473 // Check if variable is described by a DBG_VALUE instruction. 474 if (const MachineInstr *DVInsn = DV.getMInsn()) { 475 assert(DVInsn->getNumOperands() == 4); 476 if (DVInsn->getOperand(0).isReg()) { 477 const MachineOperand RegOp = DVInsn->getOperand(0); 478 // If the second operand is an immediate, this is an indirect value. 479 if (DVInsn->getOperand(1).isImm()) { 480 MachineLocation Location(RegOp.getReg(), 481 DVInsn->getOperand(1).getImm()); 482 addVariableAddress(DV, *VariableDie, Location); 483 } else if (RegOp.getReg()) 484 addVariableAddress(DV, *VariableDie, MachineLocation(RegOp.getReg())); 485 } else if (DVInsn->getOperand(0).isImm()) { 486 // This variable is described by a single constant. 487 // Check whether it has a DIExpression. 488 auto *Expr = DV.getSingleExpression(); 489 if (Expr && Expr->getNumElements()) { 490 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 491 DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc); 492 // If there is an expression, emit raw unsigned bytes. 493 DwarfExpr.AddUnsignedConstant(DVInsn->getOperand(0).getImm()); 494 DwarfExpr.AddExpression(Expr->expr_op_begin(), Expr->expr_op_end()); 495 addBlock(*VariableDie, dwarf::DW_AT_location, Loc); 496 } else 497 addConstantValue(*VariableDie, DVInsn->getOperand(0), DV.getType()); 498 } else if (DVInsn->getOperand(0).isFPImm()) 499 addConstantFPValue(*VariableDie, DVInsn->getOperand(0)); 500 else if (DVInsn->getOperand(0).isCImm()) 501 addConstantValue(*VariableDie, DVInsn->getOperand(0).getCImm(), 502 DV.getType()); 503 504 return VariableDie; 505 } 506 507 // .. else use frame index. 508 if (DV.getFrameIndex().empty()) 509 return VariableDie; 510 511 auto Expr = DV.getExpression().begin(); 512 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 513 DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc); 514 for (auto FI : DV.getFrameIndex()) { 515 unsigned FrameReg = 0; 516 const TargetFrameLowering *TFI = Asm->MF->getSubtarget().getFrameLowering(); 517 int Offset = TFI->getFrameIndexReference(*Asm->MF, FI, FrameReg); 518 assert(Expr != DV.getExpression().end() && "Wrong number of expressions"); 519 DwarfExpr.AddMachineRegIndirect(*Asm->MF->getSubtarget().getRegisterInfo(), 520 FrameReg, Offset); 521 DwarfExpr.AddExpression((*Expr)->expr_op_begin(), (*Expr)->expr_op_end()); 522 ++Expr; 523 } 524 addBlock(*VariableDie, dwarf::DW_AT_location, Loc); 525 526 return VariableDie; 527 } 528 529 DIE *DwarfCompileUnit::constructVariableDIE(DbgVariable &DV, 530 const LexicalScope &Scope, 531 DIE *&ObjectPointer) { 532 auto Var = constructVariableDIE(DV, Scope.isAbstractScope()); 533 if (DV.isObjectPointer()) 534 ObjectPointer = Var; 535 return Var; 536 } 537 538 DIE *DwarfCompileUnit::createScopeChildrenDIE(LexicalScope *Scope, 539 SmallVectorImpl<DIE *> &Children, 540 unsigned *ChildScopeCount) { 541 DIE *ObjectPointer = nullptr; 542 543 for (DbgVariable *DV : DU->getScopeVariables().lookup(Scope)) 544 Children.push_back(constructVariableDIE(*DV, *Scope, ObjectPointer)); 545 546 unsigned ChildCountWithoutScopes = Children.size(); 547 548 for (LexicalScope *LS : Scope->getChildren()) 549 constructScopeDIE(LS, Children); 550 551 if (ChildScopeCount) 552 *ChildScopeCount = Children.size() - ChildCountWithoutScopes; 553 554 return ObjectPointer; 555 } 556 557 void DwarfCompileUnit::constructSubprogramScopeDIE(LexicalScope *Scope) { 558 assert(Scope && Scope->getScopeNode()); 559 assert(!Scope->getInlinedAt()); 560 assert(!Scope->isAbstractScope()); 561 auto *Sub = cast<DISubprogram>(Scope->getScopeNode()); 562 563 DD->getProcessedSPNodes().insert(Sub); 564 565 DIE &ScopeDIE = updateSubprogramScopeDIE(Sub); 566 567 // If this is a variadic function, add an unspecified parameter. 568 DITypeRefArray FnArgs = Sub->getType()->getTypeArray(); 569 570 // Collect lexical scope children first. 571 // ObjectPointer might be a local (non-argument) local variable if it's a 572 // block's synthetic this pointer. 573 if (DIE *ObjectPointer = createAndAddScopeChildren(Scope, ScopeDIE)) 574 addDIEEntry(ScopeDIE, dwarf::DW_AT_object_pointer, *ObjectPointer); 575 576 // If we have a single element of null, it is a function that returns void. 577 // If we have more than one elements and the last one is null, it is a 578 // variadic function. 579 if (FnArgs.size() > 1 && !FnArgs[FnArgs.size() - 1] && 580 !includeMinimalInlineScopes()) 581 ScopeDIE.addChild( 582 DIE::get(DIEValueAllocator, dwarf::DW_TAG_unspecified_parameters)); 583 } 584 585 DIE *DwarfCompileUnit::createAndAddScopeChildren(LexicalScope *Scope, 586 DIE &ScopeDIE) { 587 // We create children when the scope DIE is not null. 588 SmallVector<DIE *, 8> Children; 589 DIE *ObjectPointer = createScopeChildrenDIE(Scope, Children); 590 591 // Add children 592 for (auto &I : Children) 593 ScopeDIE.addChild(std::move(I)); 594 595 return ObjectPointer; 596 } 597 598 void DwarfCompileUnit::constructAbstractSubprogramScopeDIE( 599 LexicalScope *Scope) { 600 DIE *&AbsDef = DU->getAbstractSPDies()[Scope->getScopeNode()]; 601 if (AbsDef) 602 return; 603 604 auto *SP = cast<DISubprogram>(Scope->getScopeNode()); 605 606 DIE *ContextDIE; 607 608 if (includeMinimalInlineScopes()) 609 ContextDIE = &getUnitDie(); 610 // Some of this is duplicated from DwarfUnit::getOrCreateSubprogramDIE, with 611 // the important distinction that the debug node is not associated with the 612 // DIE (since the debug node will be associated with the concrete DIE, if 613 // any). It could be refactored to some common utility function. 614 else if (auto *SPDecl = SP->getDeclaration()) { 615 ContextDIE = &getUnitDie(); 616 getOrCreateSubprogramDIE(SPDecl); 617 } else 618 ContextDIE = getOrCreateContextDIE(resolve(SP->getScope())); 619 620 // Passing null as the associated node because the abstract definition 621 // shouldn't be found by lookup. 622 AbsDef = &createAndAddDIE(dwarf::DW_TAG_subprogram, *ContextDIE, nullptr); 623 applySubprogramAttributesToDefinition(SP, *AbsDef); 624 625 if (!includeMinimalInlineScopes()) 626 addUInt(*AbsDef, dwarf::DW_AT_inline, None, dwarf::DW_INL_inlined); 627 if (DIE *ObjectPointer = createAndAddScopeChildren(Scope, *AbsDef)) 628 addDIEEntry(*AbsDef, dwarf::DW_AT_object_pointer, *ObjectPointer); 629 } 630 631 DIE *DwarfCompileUnit::constructImportedEntityDIE( 632 const DIImportedEntity *Module) { 633 DIE *IMDie = DIE::get(DIEValueAllocator, (dwarf::Tag)Module->getTag()); 634 insertDIE(Module, IMDie); 635 DIE *EntityDie; 636 auto *Entity = resolve(Module->getEntity()); 637 if (auto *NS = dyn_cast<DINamespace>(Entity)) 638 EntityDie = getOrCreateNameSpace(NS); 639 else if (auto *M = dyn_cast<DIModule>(Entity)) 640 EntityDie = getOrCreateModule(M); 641 else if (auto *SP = dyn_cast<DISubprogram>(Entity)) 642 EntityDie = getOrCreateSubprogramDIE(SP); 643 else if (auto *T = dyn_cast<DIType>(Entity)) 644 EntityDie = getOrCreateTypeDIE(T); 645 else if (auto *GV = dyn_cast<DIGlobalVariable>(Entity)) 646 EntityDie = getOrCreateGlobalVariableDIE(GV, nullptr); 647 else 648 EntityDie = getDIE(Entity); 649 assert(EntityDie); 650 addSourceLine(*IMDie, Module->getLine(), Module->getScope()->getFilename(), 651 Module->getScope()->getDirectory()); 652 addDIEEntry(*IMDie, dwarf::DW_AT_import, *EntityDie); 653 StringRef Name = Module->getName(); 654 if (!Name.empty()) 655 addString(*IMDie, dwarf::DW_AT_name, Name); 656 657 return IMDie; 658 } 659 660 void DwarfCompileUnit::finishSubprogramDefinition(const DISubprogram *SP) { 661 DIE *D = getDIE(SP); 662 if (DIE *AbsSPDIE = DU->getAbstractSPDies().lookup(SP)) { 663 if (D) 664 // If this subprogram has an abstract definition, reference that 665 addDIEEntry(*D, dwarf::DW_AT_abstract_origin, *AbsSPDIE); 666 } else { 667 if (!D && !includeMinimalInlineScopes()) 668 // Lazily construct the subprogram if we didn't see either concrete or 669 // inlined versions during codegen. (except in -gmlt ^ where we want 670 // to omit these entirely) 671 D = getOrCreateSubprogramDIE(SP); 672 if (D) 673 // And attach the attributes 674 applySubprogramAttributesToDefinition(SP, *D); 675 } 676 } 677 678 void DwarfCompileUnit::emitHeader(bool UseOffsets) { 679 // Don't bother labeling the .dwo unit, as its offset isn't used. 680 if (!Skeleton) { 681 LabelBegin = Asm->createTempSymbol("cu_begin"); 682 Asm->OutStreamer->EmitLabel(LabelBegin); 683 } 684 685 DwarfUnit::emitHeader(UseOffsets); 686 } 687 688 /// addGlobalName - Add a new global name to the compile unit. 689 void DwarfCompileUnit::addGlobalName(StringRef Name, DIE &Die, 690 const DIScope *Context) { 691 if (includeMinimalInlineScopes()) 692 return; 693 std::string FullName = getParentContextString(Context) + Name.str(); 694 GlobalNames[FullName] = &Die; 695 } 696 697 /// Add a new global type to the unit. 698 void DwarfCompileUnit::addGlobalType(const DIType *Ty, const DIE &Die, 699 const DIScope *Context) { 700 if (includeMinimalInlineScopes()) 701 return; 702 std::string FullName = getParentContextString(Context) + Ty->getName().str(); 703 GlobalTypes[FullName] = &Die; 704 } 705 706 /// addVariableAddress - Add DW_AT_location attribute for a 707 /// DbgVariable based on provided MachineLocation. 708 void DwarfCompileUnit::addVariableAddress(const DbgVariable &DV, DIE &Die, 709 MachineLocation Location) { 710 if (DV.hasComplexAddress()) 711 addComplexAddress(DV, Die, dwarf::DW_AT_location, Location); 712 else if (DV.isBlockByrefVariable()) 713 addBlockByrefAddress(DV, Die, dwarf::DW_AT_location, Location); 714 else 715 addAddress(Die, dwarf::DW_AT_location, Location); 716 } 717 718 /// Add an address attribute to a die based on the location provided. 719 void DwarfCompileUnit::addAddress(DIE &Die, dwarf::Attribute Attribute, 720 const MachineLocation &Location) { 721 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 722 723 bool validReg; 724 if (Location.isReg()) 725 validReg = addRegisterOpPiece(*Loc, Location.getReg()); 726 else 727 validReg = addRegisterOffset(*Loc, Location.getReg(), Location.getOffset()); 728 729 if (!validReg) 730 return; 731 732 // Now attach the location information to the DIE. 733 addBlock(Die, Attribute, Loc); 734 } 735 736 /// Start with the address based on the location provided, and generate the 737 /// DWARF information necessary to find the actual variable given the extra 738 /// address information encoded in the DbgVariable, starting from the starting 739 /// location. Add the DWARF information to the die. 740 void DwarfCompileUnit::addComplexAddress(const DbgVariable &DV, DIE &Die, 741 dwarf::Attribute Attribute, 742 const MachineLocation &Location) { 743 DIELoc *Loc = new (DIEValueAllocator) DIELoc; 744 DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc); 745 const DIExpression *Expr = DV.getSingleExpression(); 746 bool ValidReg; 747 const TargetRegisterInfo &TRI = *Asm->MF->getSubtarget().getRegisterInfo(); 748 if (Location.getOffset()) { 749 ValidReg = DwarfExpr.AddMachineRegIndirect(TRI, Location.getReg(), 750 Location.getOffset()); 751 if (ValidReg) 752 DwarfExpr.AddExpression(Expr->expr_op_begin(), Expr->expr_op_end()); 753 } else 754 ValidReg = DwarfExpr.AddMachineRegExpression(TRI, Expr, Location.getReg()); 755 756 // Now attach the location information to the DIE. 757 if (ValidReg) 758 addBlock(Die, Attribute, Loc); 759 } 760 761 /// Add a Dwarf loclistptr attribute data and value. 762 void DwarfCompileUnit::addLocationList(DIE &Die, dwarf::Attribute Attribute, 763 unsigned Index) { 764 dwarf::Form Form = DD->getDwarfVersion() >= 4 ? dwarf::DW_FORM_sec_offset 765 : dwarf::DW_FORM_data4; 766 Die.addValue(DIEValueAllocator, Attribute, Form, DIELocList(Index)); 767 } 768 769 void DwarfCompileUnit::applyVariableAttributes(const DbgVariable &Var, 770 DIE &VariableDie) { 771 StringRef Name = Var.getName(); 772 if (!Name.empty()) 773 addString(VariableDie, dwarf::DW_AT_name, Name); 774 addSourceLine(VariableDie, Var.getVariable()); 775 addType(VariableDie, Var.getType()); 776 if (Var.isArtificial()) 777 addFlag(VariableDie, dwarf::DW_AT_artificial); 778 } 779 780 /// Add a Dwarf expression attribute data and value. 781 void DwarfCompileUnit::addExpr(DIELoc &Die, dwarf::Form Form, 782 const MCExpr *Expr) { 783 Die.addValue(DIEValueAllocator, (dwarf::Attribute)0, Form, DIEExpr(Expr)); 784 } 785 786 void DwarfCompileUnit::applySubprogramAttributesToDefinition( 787 const DISubprogram *SP, DIE &SPDie) { 788 auto *SPDecl = SP->getDeclaration(); 789 auto *Context = resolve(SPDecl ? SPDecl->getScope() : SP->getScope()); 790 applySubprogramAttributes(SP, SPDie, includeMinimalInlineScopes()); 791 addGlobalName(SP->getName(), SPDie, Context); 792 } 793 794 bool DwarfCompileUnit::isDwoUnit() const { 795 return DD->useSplitDwarf() && Skeleton; 796 } 797 798 bool DwarfCompileUnit::includeMinimalInlineScopes() const { 799 return getCUNode()->getEmissionKind() == DICompileUnit::LineTablesOnly || 800 (DD->useSplitDwarf() && !Skeleton); 801 } 802 } // end llvm namespace 803