1 //===-- llvm/CodeGen/DwarfDebug.h - Dwarf Debug Framework ------*- C++ -*--===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file contains support for writing dwarf debug info into asm files. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #ifndef CODEGEN_ASMPRINTER_DWARFDEBUG_H__ 15 #define CODEGEN_ASMPRINTER_DWARFDEBUG_H__ 16 17 #include "DIE.h" 18 #include "llvm/ADT/DenseMap.h" 19 #include "llvm/ADT/FoldingSet.h" 20 #include "llvm/ADT/SetVector.h" 21 #include "llvm/ADT/SmallPtrSet.h" 22 #include "llvm/ADT/StringMap.h" 23 #include "llvm/CodeGen/AsmPrinter.h" 24 #include "llvm/CodeGen/LexicalScopes.h" 25 #include "llvm/DebugInfo.h" 26 #include "llvm/MC/MachineLocation.h" 27 #include "llvm/Support/Allocator.h" 28 #include "llvm/Support/DebugLoc.h" 29 30 namespace llvm { 31 32 class CompileUnit; 33 class ConstantInt; 34 class ConstantFP; 35 class DbgVariable; 36 class MachineFrameInfo; 37 class MachineModuleInfo; 38 class MachineOperand; 39 class MCAsmInfo; 40 class DIEAbbrev; 41 class DIE; 42 class DIEBlock; 43 class DIEEntry; 44 class DwarfDebug; 45 46 //===----------------------------------------------------------------------===// 47 /// \brief This class is used to record source line correspondence. 48 class SrcLineInfo { 49 unsigned Line; // Source line number. 50 unsigned Column; // Source column. 51 unsigned SourceID; // Source ID number. 52 MCSymbol *Label; // Label in code ID number. 53 public: 54 SrcLineInfo(unsigned L, unsigned C, unsigned S, MCSymbol *label) 55 : Line(L), Column(C), SourceID(S), Label(label) {} 56 57 // Accessors 58 unsigned getLine() const { return Line; } 59 unsigned getColumn() const { return Column; } 60 unsigned getSourceID() const { return SourceID; } 61 MCSymbol *getLabel() const { return Label; } 62 }; 63 64 /// \brief This struct describes location entries emitted in the .debug_loc 65 /// section. 66 typedef struct DotDebugLocEntry { 67 const MCSymbol *Begin; 68 const MCSymbol *End; 69 MachineLocation Loc; 70 const MDNode *Variable; 71 bool Merged; 72 bool Constant; 73 enum EntryType { 74 E_Location, 75 E_Integer, 76 E_ConstantFP, 77 E_ConstantInt 78 }; 79 enum EntryType EntryKind; 80 81 union { 82 int64_t Int; 83 const ConstantFP *CFP; 84 const ConstantInt *CIP; 85 } Constants; 86 DotDebugLocEntry() 87 : Begin(0), End(0), Variable(0), Merged(false), 88 Constant(false) { Constants.Int = 0;} 89 DotDebugLocEntry(const MCSymbol *B, const MCSymbol *E, MachineLocation &L, 90 const MDNode *V) 91 : Begin(B), End(E), Loc(L), Variable(V), Merged(false), 92 Constant(false) { Constants.Int = 0; EntryKind = E_Location; } 93 DotDebugLocEntry(const MCSymbol *B, const MCSymbol *E, int64_t i) 94 : Begin(B), End(E), Variable(0), Merged(false), 95 Constant(true) { Constants.Int = i; EntryKind = E_Integer; } 96 DotDebugLocEntry(const MCSymbol *B, const MCSymbol *E, const ConstantFP *FPtr) 97 : Begin(B), End(E), Variable(0), Merged(false), 98 Constant(true) { Constants.CFP = FPtr; EntryKind = E_ConstantFP; } 99 DotDebugLocEntry(const MCSymbol *B, const MCSymbol *E, 100 const ConstantInt *IPtr) 101 : Begin(B), End(E), Variable(0), Merged(false), 102 Constant(true) { Constants.CIP = IPtr; EntryKind = E_ConstantInt; } 103 104 /// \brief Empty entries are also used as a trigger to emit temp label. Such 105 /// labels are referenced is used to find debug_loc offset for a given DIE. 106 bool isEmpty() { return Begin == 0 && End == 0; } 107 bool isMerged() { return Merged; } 108 void Merge(DotDebugLocEntry *Next) { 109 if (!(Begin && Loc == Next->Loc && End == Next->Begin)) 110 return; 111 Next->Begin = Begin; 112 Merged = true; 113 } 114 bool isLocation() const { return EntryKind == E_Location; } 115 bool isInt() const { return EntryKind == E_Integer; } 116 bool isConstantFP() const { return EntryKind == E_ConstantFP; } 117 bool isConstantInt() const { return EntryKind == E_ConstantInt; } 118 int64_t getInt() { return Constants.Int; } 119 const ConstantFP *getConstantFP() { return Constants.CFP; } 120 const ConstantInt *getConstantInt() { return Constants.CIP; } 121 } DotDebugLocEntry; 122 123 //===----------------------------------------------------------------------===// 124 /// \brief This class is used to track local variable information. 125 class DbgVariable { 126 DIVariable Var; // Variable Descriptor. 127 DIE *TheDIE; // Variable DIE. 128 unsigned DotDebugLocOffset; // Offset in DotDebugLocEntries. 129 DbgVariable *AbsVar; // Corresponding Abstract variable, if any. 130 const MachineInstr *MInsn; // DBG_VALUE instruction of the variable. 131 int FrameIndex; 132 public: 133 // AbsVar may be NULL. 134 DbgVariable(DIVariable V, DbgVariable *AV) 135 : Var(V), TheDIE(0), DotDebugLocOffset(~0U), AbsVar(AV), MInsn(0), 136 FrameIndex(~0) {} 137 138 // Accessors. 139 DIVariable getVariable() const { return Var; } 140 void setDIE(DIE *D) { TheDIE = D; } 141 DIE *getDIE() const { return TheDIE; } 142 void setDotDebugLocOffset(unsigned O) { DotDebugLocOffset = O; } 143 unsigned getDotDebugLocOffset() const { return DotDebugLocOffset; } 144 StringRef getName() const { return Var.getName(); } 145 DbgVariable *getAbstractVariable() const { return AbsVar; } 146 const MachineInstr *getMInsn() const { return MInsn; } 147 void setMInsn(const MachineInstr *M) { MInsn = M; } 148 int getFrameIndex() const { return FrameIndex; } 149 void setFrameIndex(int FI) { FrameIndex = FI; } 150 // Translate tag to proper Dwarf tag. 151 unsigned getTag() const { 152 if (Var.getTag() == dwarf::DW_TAG_arg_variable) 153 return dwarf::DW_TAG_formal_parameter; 154 155 return dwarf::DW_TAG_variable; 156 } 157 /// \brief Return true if DbgVariable is artificial. 158 bool isArtificial() const { 159 if (Var.isArtificial()) 160 return true; 161 if (getType().isArtificial()) 162 return true; 163 return false; 164 } 165 166 bool isObjectPointer() const { 167 if (Var.isObjectPointer()) 168 return true; 169 if (getType().isObjectPointer()) 170 return true; 171 return false; 172 } 173 174 bool variableHasComplexAddress() const { 175 assert(Var.Verify() && "Invalid complex DbgVariable!"); 176 return Var.hasComplexAddress(); 177 } 178 bool isBlockByrefVariable() const { 179 assert(Var.Verify() && "Invalid complex DbgVariable!"); 180 return Var.isBlockByrefVariable(); 181 } 182 unsigned getNumAddrElements() const { 183 assert(Var.Verify() && "Invalid complex DbgVariable!"); 184 return Var.getNumAddrElements(); 185 } 186 uint64_t getAddrElement(unsigned i) const { 187 return Var.getAddrElement(i); 188 } 189 DIType getType() const; 190 }; 191 192 193 // A String->Symbol mapping of strings used by indirect 194 // references. 195 typedef StringMap<std::pair<MCSymbol*, unsigned>, 196 BumpPtrAllocator&> StrPool; 197 198 /// \brief Collects and handles information specific to a particular 199 /// collection of units. 200 class DwarfUnits { 201 // Target of Dwarf emission, used for sizing of abbreviations. 202 AsmPrinter *Asm; 203 204 // Used to uniquely define abbreviations. 205 FoldingSet<DIEAbbrev> *AbbreviationsSet; 206 207 // A list of all the unique abbreviations in use. 208 std::vector<DIEAbbrev *> *Abbreviations; 209 210 // A pointer to all units in the section. 211 SmallVector<CompileUnit *, 1> CUs; 212 213 // Collection of strings for this unit and assorted symbols. 214 StrPool *StringPool; 215 unsigned NextStringPoolNumber; 216 std::string StringPref; 217 218 public: 219 DwarfUnits(AsmPrinter *AP, FoldingSet<DIEAbbrev> *AS, 220 std::vector<DIEAbbrev *> *A, 221 StrPool *SP, const char *Pref) : 222 Asm(AP), AbbreviationsSet(AS), Abbreviations(A), 223 StringPool(SP), NextStringPoolNumber(0), StringPref(Pref) {} 224 225 /// \brief Compute the size and offset of a DIE given an incoming Offset. 226 unsigned computeSizeAndOffset(DIE *Die, unsigned Offset); 227 228 /// \brief Compute the size and offset of all the DIEs. 229 void computeSizeAndOffsets(); 230 231 /// \brief Define a unique number for the abbreviation. 232 void assignAbbrevNumber(DIEAbbrev &Abbrev); 233 234 /// \brief Add a unit to the list of CUs. 235 void addUnit(CompileUnit *CU) { CUs.push_back(CU); } 236 237 /// \brief Emit all of the units to the section listed with the given 238 /// abbreviation section. 239 void emitUnits(DwarfDebug *, const MCSection *, const MCSection *, 240 const MCSymbol *); 241 242 /// \brief Emit all of the strings to the section given. 243 void emitStrings(const MCSection *, const MCSection *, const MCSymbol *); 244 245 /// \brief Returns the entry into the start of the pool. 246 MCSymbol *getStringPoolSym(); 247 248 /// \brief Returns an entry into the string pool with the given 249 /// string text. 250 MCSymbol *getStringPoolEntry(StringRef Str); 251 252 /// \brief Returns the index into the string pool with the given 253 /// string text. 254 unsigned getStringPoolIndex(StringRef Str); 255 256 /// \brief Returns the string pool. 257 StrPool *getStringPool() { return StringPool; } 258 }; 259 260 /// \brief Collects and handles dwarf debug information. 261 class DwarfDebug { 262 // Target of Dwarf emission. 263 AsmPrinter *Asm; 264 265 // Collected machine module information. 266 MachineModuleInfo *MMI; 267 268 // All DIEValues are allocated through this allocator. 269 BumpPtrAllocator DIEValueAllocator; 270 271 //===--------------------------------------------------------------------===// 272 // Attribute used to construct specific Dwarf sections. 273 // 274 275 CompileUnit *FirstCU; 276 277 // Maps MDNode with its corresponding CompileUnit. 278 DenseMap <const MDNode *, CompileUnit *> CUMap; 279 280 // Maps subprogram MDNode with its corresponding CompileUnit. 281 DenseMap <const MDNode *, CompileUnit *> SPMap; 282 283 // Used to uniquely define abbreviations. 284 FoldingSet<DIEAbbrev> AbbreviationsSet; 285 286 // A list of all the unique abbreviations in use. 287 std::vector<DIEAbbrev *> Abbreviations; 288 289 // Source id map, i.e. pair of source filename and directory, 290 // separated by a zero byte, mapped to a unique id. 291 StringMap<unsigned, BumpPtrAllocator&> SourceIdMap; 292 293 // A String->Symbol mapping of strings used by indirect 294 // references. 295 StrPool InfoStringPool; 296 297 // Provides a unique id per text section. 298 SetVector<const MCSection*> SectionMap; 299 300 // List of Arguments (DbgValues) for current function. 301 SmallVector<DbgVariable *, 8> CurrentFnArguments; 302 303 LexicalScopes LScopes; 304 305 // Collection of abstract subprogram DIEs. 306 DenseMap<const MDNode *, DIE *> AbstractSPDies; 307 308 // Collection of dbg variables of a scope. 309 DenseMap<LexicalScope *, SmallVector<DbgVariable *, 8> > ScopeVariables; 310 311 // Collection of abstract variables. 312 DenseMap<const MDNode *, DbgVariable *> AbstractVariables; 313 314 // Collection of DotDebugLocEntry. 315 SmallVector<DotDebugLocEntry, 4> DotDebugLocEntries; 316 317 // Collection of subprogram DIEs that are marked (at the end of the module) 318 // as DW_AT_inline. 319 SmallPtrSet<DIE *, 4> InlinedSubprogramDIEs; 320 321 // Keep track of inlined functions and their location. This 322 // information is used to populate the debug_inlined section. 323 typedef std::pair<const MCSymbol *, DIE *> InlineInfoLabels; 324 DenseMap<const MDNode *, SmallVector<InlineInfoLabels, 4> > InlineInfo; 325 SmallVector<const MDNode *, 4> InlinedSPNodes; 326 327 // This is a collection of subprogram MDNodes that are processed to 328 // create DIEs. 329 SmallPtrSet<const MDNode *, 16> ProcessedSPNodes; 330 331 // Maps instruction with label emitted before instruction. 332 DenseMap<const MachineInstr *, MCSymbol *> LabelsBeforeInsn; 333 334 // Maps instruction with label emitted after instruction. 335 DenseMap<const MachineInstr *, MCSymbol *> LabelsAfterInsn; 336 337 // Every user variable mentioned by a DBG_VALUE instruction in order of 338 // appearance. 339 SmallVector<const MDNode*, 8> UserVariables; 340 341 // For each user variable, keep a list of DBG_VALUE instructions in order. 342 // The list can also contain normal instructions that clobber the previous 343 // DBG_VALUE. 344 typedef DenseMap<const MDNode*, SmallVector<const MachineInstr*, 4> > 345 DbgValueHistoryMap; 346 DbgValueHistoryMap DbgValues; 347 348 SmallVector<const MCSymbol *, 8> DebugRangeSymbols; 349 350 // Previous instruction's location information. This is used to determine 351 // label location to indicate scope boundries in dwarf debug info. 352 DebugLoc PrevInstLoc; 353 MCSymbol *PrevLabel; 354 355 // This location indicates end of function prologue and beginning of function 356 // body. 357 DebugLoc PrologEndLoc; 358 359 struct FunctionDebugFrameInfo { 360 unsigned Number; 361 std::vector<MachineMove> Moves; 362 363 FunctionDebugFrameInfo(unsigned Num, const std::vector<MachineMove> &M) 364 : Number(Num), Moves(M) {} 365 }; 366 367 std::vector<FunctionDebugFrameInfo> DebugFrames; 368 369 // Section Symbols: these are assembler temporary labels that are emitted at 370 // the beginning of each supported dwarf section. These are used to form 371 // section offsets and are created by EmitSectionLabels. 372 MCSymbol *DwarfInfoSectionSym, *DwarfAbbrevSectionSym; 373 MCSymbol *DwarfStrSectionSym, *TextSectionSym, *DwarfDebugRangeSectionSym; 374 MCSymbol *DwarfDebugLocSectionSym; 375 MCSymbol *FunctionBeginSym, *FunctionEndSym; 376 MCSymbol *DwarfAbbrevDWOSectionSym, *DwarfStrDWOSectionSym; 377 378 // As an optimization, there is no need to emit an entry in the directory 379 // table for the same directory as DW_at_comp_dir. 380 StringRef CompilationDir; 381 382 // Counter for assigning globally unique IDs for CUs. 383 unsigned GlobalCUIndexCount; 384 385 // Holder for the file specific debug information. 386 DwarfUnits InfoHolder; 387 388 // Holders for the various debug information flags that we might need to 389 // have exposed. See accessor functions below for description. 390 391 // Whether or not we're emitting info for older versions of gdb on darwin. 392 bool IsDarwinGDBCompat; 393 394 // DWARF5 Experimental Options 395 bool HasDwarfAccelTables; 396 bool HasSplitDwarf; 397 398 // Separated Dwarf Variables 399 // In general these will all be for bits that are left in the 400 // original object file, rather than things that are meant 401 // to be in the .dwo sections. 402 403 // The CU left in the original object file for separated debug info. 404 CompileUnit *SkeletonCU; 405 406 // Used to uniquely define abbreviations for the skeleton emission. 407 FoldingSet<DIEAbbrev> SkeletonAbbrevSet; 408 409 // A list of all the unique abbreviations in use. 410 std::vector<DIEAbbrev *> SkeletonAbbrevs; 411 412 // List of strings used in the skeleton. 413 StrPool SkeletonStringPool; 414 415 // Holder for the skeleton information. 416 DwarfUnits SkeletonHolder; 417 418 private: 419 420 void addScopeVariable(LexicalScope *LS, DbgVariable *Var); 421 422 /// \brief Find abstract variable associated with Var. 423 DbgVariable *findAbstractVariable(DIVariable &Var, DebugLoc Loc); 424 425 /// \brief Find DIE for the given subprogram and attach appropriate 426 /// DW_AT_low_pc and DW_AT_high_pc attributes. If there are global 427 /// variables in this scope then create and insert DIEs for these 428 /// variables. 429 DIE *updateSubprogramScopeDIE(CompileUnit *SPCU, const MDNode *SPNode); 430 431 /// \brief Construct new DW_TAG_lexical_block for this scope and 432 /// attach DW_AT_low_pc/DW_AT_high_pc labels. 433 DIE *constructLexicalScopeDIE(CompileUnit *TheCU, LexicalScope *Scope); 434 435 /// \brief This scope represents inlined body of a function. Construct 436 /// DIE to represent this concrete inlined copy of the function. 437 DIE *constructInlinedScopeDIE(CompileUnit *TheCU, LexicalScope *Scope); 438 439 /// \brief Construct a DIE for this scope. 440 DIE *constructScopeDIE(CompileUnit *TheCU, LexicalScope *Scope); 441 442 /// \brief Emit initial Dwarf sections with a label at the start of each one. 443 void emitSectionLabels(); 444 445 /// \brief Compute the size and offset of a DIE given an incoming Offset. 446 unsigned computeSizeAndOffset(DIE *Die, unsigned Offset); 447 448 /// \brief Compute the size and offset of all the DIEs. 449 void computeSizeAndOffsets(); 450 451 /// \brief Attach DW_AT_inline attribute with inlined subprogram DIEs. 452 void computeInlinedDIEs(); 453 454 /// \brief Collect info for variables that were optimized out. 455 void collectDeadVariables(); 456 457 /// \brief Finish off debug information after all functions have been 458 /// processed. 459 void finalizeModuleInfo(); 460 461 /// \brief Emit labels to close any remaining sections that have been left 462 /// open. 463 void endSections(); 464 465 /// \brief Emit a set of abbreviations to the specific section. 466 void emitAbbrevs(const MCSection *, std::vector<DIEAbbrev*> *); 467 468 /// \brief Emit the debug info section. 469 void emitDebugInfo(); 470 471 /// \brief Emit the abbreviation section. 472 void emitAbbreviations(); 473 474 /// \brief Emit the last address of the section and the end of 475 /// the line matrix. 476 void emitEndOfLineMatrix(unsigned SectionEnd); 477 478 /// \brief Emit visible names into a hashed accelerator table section. 479 void emitAccelNames(); 480 481 /// \brief Emit objective C classes and categories into a hashed 482 /// accelerator table section. 483 void emitAccelObjC(); 484 485 /// \brief Emit namespace dies into a hashed accelerator table. 486 void emitAccelNamespaces(); 487 488 /// \brief Emit type dies into a hashed accelerator table. 489 void emitAccelTypes(); 490 491 /// \brief Emit visible types into a debug pubtypes section. 492 void emitDebugPubTypes(); 493 494 /// \brief Emit visible names into a debug str section. 495 void emitDebugStr(); 496 497 /// \brief Emit visible names into a debug loc section. 498 void emitDebugLoc(); 499 500 /// \brief Emit visible names into a debug aranges section. 501 void emitDebugARanges(); 502 503 /// \brief Emit visible names into a debug ranges section. 504 void emitDebugRanges(); 505 506 /// \brief Emit visible names into a debug macinfo section. 507 void emitDebugMacInfo(); 508 509 /// \brief Emit inline info using custom format. 510 void emitDebugInlineInfo(); 511 512 /// DWARF 5 Experimental Split Dwarf Emitters 513 514 /// \brief Construct the split debug info compile unit for the debug info 515 /// section. 516 CompileUnit *constructSkeletonCU(const MDNode *); 517 518 /// \brief Emit the local split debug info section. 519 void emitSkeletonCU(const MCSection *); 520 521 /// \brief Emit the local split abbreviations. 522 void emitSkeletonAbbrevs(const MCSection *); 523 524 /// \brief Emit the debug info dwo section. 525 void emitDebugInfoDWO(); 526 527 /// \brief Emit the debug abbrev dwo section. 528 void emitDebugAbbrevDWO(); 529 530 /// \brief Emit the debug str dwo section. 531 void emitDebugStrDWO(); 532 533 /// \brief Create new CompileUnit for the given metadata node with tag 534 /// DW_TAG_compile_unit. 535 CompileUnit *constructCompileUnit(const MDNode *N); 536 537 /// \brief Construct subprogram DIE. 538 void constructSubprogramDIE(CompileUnit *TheCU, const MDNode *N); 539 540 /// \brief Register a source line with debug info. Returns the unique 541 /// label that was emitted and which provides correspondence to the 542 /// source line list. 543 void recordSourceLine(unsigned Line, unsigned Col, const MDNode *Scope, 544 unsigned Flags); 545 546 /// \brief Indentify instructions that are marking the beginning of or 547 /// ending of a scope. 548 void identifyScopeMarkers(); 549 550 /// \brief If Var is an current function argument that add it in 551 /// CurrentFnArguments list. 552 bool addCurrentFnArgument(const MachineFunction *MF, 553 DbgVariable *Var, LexicalScope *Scope); 554 555 /// \brief Populate LexicalScope entries with variables' info. 556 void collectVariableInfo(const MachineFunction *, 557 SmallPtrSet<const MDNode *, 16> &ProcessedVars); 558 559 /// \brief Collect variable information from the side table maintained 560 /// by MMI. 561 void collectVariableInfoFromMMITable(const MachineFunction * MF, 562 SmallPtrSet<const MDNode *, 16> &P); 563 564 /// \brief Ensure that a label will be emitted before MI. 565 void requestLabelBeforeInsn(const MachineInstr *MI) { 566 LabelsBeforeInsn.insert(std::make_pair(MI, (MCSymbol*)0)); 567 } 568 569 /// \brief Return Label preceding the instruction. 570 const MCSymbol *getLabelBeforeInsn(const MachineInstr *MI); 571 572 /// \brief Ensure that a label will be emitted after MI. 573 void requestLabelAfterInsn(const MachineInstr *MI) { 574 LabelsAfterInsn.insert(std::make_pair(MI, (MCSymbol*)0)); 575 } 576 577 /// \brief Return Label immediately following the instruction. 578 const MCSymbol *getLabelAfterInsn(const MachineInstr *MI); 579 580 public: 581 //===--------------------------------------------------------------------===// 582 // Main entry points. 583 // 584 DwarfDebug(AsmPrinter *A, Module *M); 585 ~DwarfDebug(); 586 587 /// \brief Collect debug info from named mdnodes such as llvm.dbg.enum 588 /// and llvm.dbg.ty 589 void collectInfoFromNamedMDNodes(const Module *M); 590 591 /// \brief Collect debug info using DebugInfoFinder. 592 /// FIXME - Remove this when DragonEgg switches to DIBuilder. 593 bool collectLegacyDebugInfo(const Module *M); 594 595 /// \brief Emit all Dwarf sections that should come prior to the 596 /// content. 597 void beginModule(); 598 599 /// \brief Emit all Dwarf sections that should come after the content. 600 void endModule(); 601 602 /// \brief Gather pre-function debug information. 603 void beginFunction(const MachineFunction *MF); 604 605 /// \brief Gather and emit post-function debug information. 606 void endFunction(const MachineFunction *MF); 607 608 /// \brief Process beginning of an instruction. 609 void beginInstruction(const MachineInstr *MI); 610 611 /// \brief Process end of an instruction. 612 void endInstruction(const MachineInstr *MI); 613 614 /// \brief Look up the source id with the given directory and source file 615 /// names. If none currently exists, create a new id and insert it in the 616 /// SourceIds map. 617 unsigned getOrCreateSourceID(StringRef DirName, StringRef FullName); 618 619 /// \brief Recursively Emits a debug information entry. 620 void emitDIE(DIE *Die, std::vector<DIEAbbrev *> *Abbrevs); 621 622 /// \brief Returns whether or not to limit some of our debug 623 /// output to the limitations of darwin gdb. 624 bool useDarwinGDBCompat() { return IsDarwinGDBCompat; } 625 626 // Experimental DWARF5 features. 627 628 /// \brief Returns whether or not to emit tables that dwarf consumers can 629 /// use to accelerate lookup. 630 bool useDwarfAccelTables() { return HasDwarfAccelTables; } 631 632 /// \brief Returns whether or not to change the current debug info for the 633 /// split dwarf proposal support. 634 bool useSplitDwarf() { return HasSplitDwarf; } 635 }; 636 } // End of namespace llvm 637 638 #endif 639