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 LLVM_LIB_CODEGEN_ASMPRINTER_DWARFDEBUG_H
15 #define LLVM_LIB_CODEGEN_ASMPRINTER_DWARFDEBUG_H
16 
17 #include "AddressPool.h"
18 #include "DbgValueHistoryCalculator.h"
19 #include "DebugHandlerBase.h"
20 #include "DebugLocStream.h"
21 #include "DwarfFile.h"
22 #include "llvm/ADT/ArrayRef.h"
23 #include "llvm/ADT/DenseMap.h"
24 #include "llvm/ADT/DenseSet.h"
25 #include "llvm/ADT/MapVector.h"
26 #include "llvm/ADT/STLExtras.h"
27 #include "llvm/ADT/SetVector.h"
28 #include "llvm/ADT/SmallPtrSet.h"
29 #include "llvm/ADT/SmallVector.h"
30 #include "llvm/ADT/StringMap.h"
31 #include "llvm/ADT/StringRef.h"
32 #include "llvm/BinaryFormat/Dwarf.h"
33 #include "llvm/CodeGen/AccelTable.h"
34 #include "llvm/CodeGen/MachineInstr.h"
35 #include "llvm/IR/DebugInfoMetadata.h"
36 #include "llvm/IR/DebugLoc.h"
37 #include "llvm/IR/Metadata.h"
38 #include "llvm/MC/MCDwarf.h"
39 #include "llvm/Support/Allocator.h"
40 #include "llvm/Target/TargetOptions.h"
41 #include <cassert>
42 #include <cstdint>
43 #include <limits>
44 #include <memory>
45 #include <utility>
46 #include <vector>
47 
48 namespace llvm {
49 
50 class AsmPrinter;
51 class ByteStreamer;
52 class DebugLocEntry;
53 class DIE;
54 class DwarfCompileUnit;
55 class DwarfTypeUnit;
56 class DwarfUnit;
57 class LexicalScope;
58 class MachineFunction;
59 class MCSection;
60 class MCSymbol;
61 class MDNode;
62 class Module;
63 
64 //===----------------------------------------------------------------------===//
65 /// This class is used to track local variable information.
66 ///
67 /// Variables can be created from allocas, in which case they're generated from
68 /// the MMI table.  Such variables can have multiple expressions and frame
69 /// indices.
70 ///
71 /// Variables can be created from \c DBG_VALUE instructions.  Those whose
72 /// location changes over time use \a DebugLocListIndex, while those with a
73 /// single instruction use \a MInsn and (optionally) a single entry of \a Expr.
74 ///
75 /// Variables that have been optimized out use none of these fields.
76 class DbgVariable {
77   const DILocalVariable *Var;                /// Variable Descriptor.
78   const DILocation *IA;                      /// Inlined at location.
79   DIE *TheDIE = nullptr;                     /// Variable DIE.
80   unsigned DebugLocListIndex = ~0u;          /// Offset in DebugLocs.
81   const MachineInstr *MInsn = nullptr;       /// DBG_VALUE instruction.
82 
83   struct FrameIndexExpr {
84     int FI;
85     const DIExpression *Expr;
86   };
87   mutable SmallVector<FrameIndexExpr, 1>
88       FrameIndexExprs; /// Frame index + expression.
89 
90 public:
91   /// Construct a DbgVariable.
92   ///
93   /// Creates a variable without any DW_AT_location.  Call \a initializeMMI()
94   /// for MMI entries, or \a initializeDbgValue() for DBG_VALUE instructions.
95   DbgVariable(const DILocalVariable *V, const DILocation *IA)
96       : Var(V), IA(IA) {}
97 
98   /// Initialize from the MMI table.
99   void initializeMMI(const DIExpression *E, int FI) {
100     assert(FrameIndexExprs.empty() && "Already initialized?");
101     assert(!MInsn && "Already initialized?");
102 
103     assert((!E || E->isValid()) && "Expected valid expression");
104     assert(FI != std::numeric_limits<int>::max() && "Expected valid index");
105 
106     FrameIndexExprs.push_back({FI, E});
107   }
108 
109   /// Initialize from a DBG_VALUE instruction.
110   void initializeDbgValue(const MachineInstr *DbgValue) {
111     assert(FrameIndexExprs.empty() && "Already initialized?");
112     assert(!MInsn && "Already initialized?");
113 
114     assert(Var == DbgValue->getDebugVariable() && "Wrong variable");
115     assert(IA == DbgValue->getDebugLoc()->getInlinedAt() && "Wrong inlined-at");
116 
117     MInsn = DbgValue;
118     if (auto *E = DbgValue->getDebugExpression())
119       if (E->getNumElements())
120         FrameIndexExprs.push_back({0, E});
121   }
122 
123   // Accessors.
124   const DILocalVariable *getVariable() const { return Var; }
125   const DILocation *getInlinedAt() const { return IA; }
126 
127   const DIExpression *getSingleExpression() const {
128     assert(MInsn && FrameIndexExprs.size() <= 1);
129     return FrameIndexExprs.size() ? FrameIndexExprs[0].Expr : nullptr;
130   }
131 
132   void setDIE(DIE &D) { TheDIE = &D; }
133   DIE *getDIE() const { return TheDIE; }
134   void setDebugLocListIndex(unsigned O) { DebugLocListIndex = O; }
135   unsigned getDebugLocListIndex() const { return DebugLocListIndex; }
136   StringRef getName() const { return Var->getName(); }
137   const MachineInstr *getMInsn() const { return MInsn; }
138   /// Get the FI entries, sorted by fragment offset.
139   ArrayRef<FrameIndexExpr> getFrameIndexExprs() const;
140   bool hasFrameIndexExprs() const { return !FrameIndexExprs.empty(); }
141   void addMMIEntry(const DbgVariable &V);
142 
143   // Translate tag to proper Dwarf tag.
144   dwarf::Tag getTag() const {
145     // FIXME: Why don't we just infer this tag and store it all along?
146     if (Var->isParameter())
147       return dwarf::DW_TAG_formal_parameter;
148 
149     return dwarf::DW_TAG_variable;
150   }
151 
152   /// Return true if DbgVariable is artificial.
153   bool isArtificial() const {
154     if (Var->isArtificial())
155       return true;
156     if (getType()->isArtificial())
157       return true;
158     return false;
159   }
160 
161   bool isObjectPointer() const {
162     if (Var->isObjectPointer())
163       return true;
164     if (getType()->isObjectPointer())
165       return true;
166     return false;
167   }
168 
169   bool hasComplexAddress() const {
170     assert(MInsn && "Expected DBG_VALUE, not MMI variable");
171     assert((FrameIndexExprs.empty() ||
172             (FrameIndexExprs.size() == 1 &&
173              FrameIndexExprs[0].Expr->getNumElements())) &&
174            "Invalid Expr for DBG_VALUE");
175     return !FrameIndexExprs.empty();
176   }
177 
178   bool isBlockByrefVariable() const;
179   const DIType *getType() const;
180 
181 private:
182   template <typename T> T *resolve(TypedDINodeRef<T> Ref) const {
183     return Ref.resolve();
184   }
185 };
186 
187 /// Helper used to pair up a symbol and its DWARF compile unit.
188 struct SymbolCU {
189   SymbolCU(DwarfCompileUnit *CU, const MCSymbol *Sym) : Sym(Sym), CU(CU) {}
190 
191   const MCSymbol *Sym;
192   DwarfCompileUnit *CU;
193 };
194 
195 /// The kind of accelerator tables we should emit.
196 enum class AccelTableKind {
197   Default, ///< Platform default.
198   None,    ///< None.
199   Apple,   ///< .apple_names, .apple_namespaces, .apple_types, .apple_objc.
200   Dwarf,   ///< DWARF v5 .debug_names.
201 };
202 
203 /// Collects and handles dwarf debug information.
204 class DwarfDebug : public DebugHandlerBase {
205   /// All DIEValues are allocated through this allocator.
206   BumpPtrAllocator DIEValueAllocator;
207 
208   /// Maps MDNode with its corresponding DwarfCompileUnit.
209   MapVector<const MDNode *, DwarfCompileUnit *> CUMap;
210 
211   /// Maps a CU DIE with its corresponding DwarfCompileUnit.
212   DenseMap<const DIE *, DwarfCompileUnit *> CUDieMap;
213 
214   /// List of all labels used in aranges generation.
215   std::vector<SymbolCU> ArangeLabels;
216 
217   /// Size of each symbol emitted (for those symbols that have a specific size).
218   DenseMap<const MCSymbol *, uint64_t> SymSize;
219 
220   /// Collection of abstract variables.
221   SmallVector<std::unique_ptr<DbgVariable>, 64> ConcreteVariables;
222 
223   /// Collection of DebugLocEntry. Stored in a linked list so that DIELocLists
224   /// can refer to them in spite of insertions into this list.
225   DebugLocStream DebugLocs;
226 
227   /// This is a collection of subprogram MDNodes that are processed to
228   /// create DIEs.
229   SetVector<const DISubprogram *, SmallVector<const DISubprogram *, 16>,
230             SmallPtrSet<const DISubprogram *, 16>>
231       ProcessedSPNodes;
232 
233   /// If nonnull, stores the current machine function we're processing.
234   const MachineFunction *CurFn = nullptr;
235 
236   /// If nonnull, stores the CU in which the previous subprogram was contained.
237   const DwarfCompileUnit *PrevCU;
238 
239   /// As an optimization, there is no need to emit an entry in the directory
240   /// table for the same directory as DW_AT_comp_dir.
241   StringRef CompilationDir;
242 
243   /// Holder for the file specific debug information.
244   DwarfFile InfoHolder;
245 
246   /// Holders for the various debug information flags that we might need to
247   /// have exposed. See accessor functions below for description.
248 
249   /// Map from MDNodes for user-defined types to their type signatures. Also
250   /// used to keep track of which types we have emitted type units for.
251   DenseMap<const MDNode *, uint64_t> TypeSignatures;
252 
253   SmallVector<
254       std::pair<std::unique_ptr<DwarfTypeUnit>, const DICompositeType *>, 1>
255       TypeUnitsUnderConstruction;
256 
257   /// Whether to use the GNU TLS opcode (instead of the standard opcode).
258   bool UseGNUTLSOpcode;
259 
260   /// Whether to use DWARF 2 bitfields (instead of the DWARF 4 format).
261   bool UseDWARF2Bitfields;
262 
263   /// Whether to emit all linkage names, or just abstract subprograms.
264   bool UseAllLinkageNames;
265 
266   /// Use inlined strings.
267   bool UseInlineStrings = false;
268 
269   /// Whether to emit DWARF pub sections or not.
270   bool UsePubSections = true;
271 
272   /// Allow emission of .debug_ranges section.
273   bool UseRangesSection = true;
274 
275   /// True if the sections itself must be used as references and don't create
276   /// temp symbols inside DWARF sections.
277   bool UseSectionsAsReferences = false;
278 
279   /// DWARF5 Experimental Options
280   /// @{
281   AccelTableKind TheAccelTableKind;
282   bool HasAppleExtensionAttributes;
283   bool HasSplitDwarf;
284 
285   /// Whether to generate the DWARF v5 string offsets table.
286   /// It consists of a series of contributions, each preceded by a header.
287   /// The pre-DWARF v5 string offsets table for split dwarf is, in contrast,
288   /// a monolithic sequence of string offsets.
289   bool UseSegmentedStringOffsetsTable;
290 
291   /// Separated Dwarf Variables
292   /// In general these will all be for bits that are left in the
293   /// original object file, rather than things that are meant
294   /// to be in the .dwo sections.
295 
296   /// Holder for the skeleton information.
297   DwarfFile SkeletonHolder;
298 
299   /// Store file names for type units under fission in a line table
300   /// header that will be emitted into debug_line.dwo.
301   // FIXME: replace this with a map from comp_dir to table so that we
302   // can emit multiple tables during LTO each of which uses directory
303   // 0, referencing the comp_dir of all the type units that use it.
304   MCDwarfDwoLineTable SplitTypeUnitFileTable;
305   /// @}
306 
307   /// True iff there are multiple CUs in this module.
308   bool SingleCU;
309   bool IsDarwin;
310 
311   AddressPool AddrPool;
312 
313   /// Accelerator tables.
314   AccelTable<DWARF5AccelTableData> AccelDebugNames;
315   AccelTable<AppleAccelTableOffsetData> AccelNames;
316   AccelTable<AppleAccelTableOffsetData> AccelObjC;
317   AccelTable<AppleAccelTableOffsetData> AccelNamespace;
318   AccelTable<AppleAccelTableTypeData> AccelTypes;
319 
320   // Identify a debugger for "tuning" the debug info.
321   DebuggerKind DebuggerTuning = DebuggerKind::Default;
322 
323   MCDwarfDwoLineTable *getDwoLineTable(const DwarfCompileUnit &);
324 
325   const SmallVectorImpl<std::unique_ptr<DwarfCompileUnit>> &getUnits() {
326     return InfoHolder.getUnits();
327   }
328 
329   using InlinedVariable = DbgValueHistoryMap::InlinedVariable;
330 
331   void ensureAbstractVariableIsCreated(DwarfCompileUnit &CU, InlinedVariable Var,
332                                        const MDNode *Scope);
333   void ensureAbstractVariableIsCreatedIfScoped(DwarfCompileUnit &CU, InlinedVariable Var,
334                                                const MDNode *Scope);
335 
336   DbgVariable *createConcreteVariable(DwarfCompileUnit &TheCU,
337                                       LexicalScope &Scope, InlinedVariable IV);
338 
339   /// Construct a DIE for this abstract scope.
340   void constructAbstractSubprogramScopeDIE(DwarfCompileUnit &SrcCU, LexicalScope *Scope);
341 
342   void finishVariableDefinitions();
343 
344   void finishSubprogramDefinitions();
345 
346   /// Finish off debug information after all functions have been
347   /// processed.
348   void finalizeModuleInfo();
349 
350   /// Emit the debug info section.
351   void emitDebugInfo();
352 
353   /// Emit the abbreviation section.
354   void emitAbbreviations();
355 
356   /// Emit the string offsets table header.
357   void emitStringOffsetsTableHeader();
358 
359   /// Emit a specified accelerator table.
360   template <typename AccelTableT>
361   void emitAccel(AccelTableT &Accel, MCSection *Section, StringRef TableName);
362 
363   /// Emit DWARF v5 accelerator table.
364   void emitAccelDebugNames();
365 
366   /// Emit visible names into a hashed accelerator table section.
367   void emitAccelNames();
368 
369   /// Emit objective C classes and categories into a hashed
370   /// accelerator table section.
371   void emitAccelObjC();
372 
373   /// Emit namespace dies into a hashed accelerator table.
374   void emitAccelNamespaces();
375 
376   /// Emit type dies into a hashed accelerator table.
377   void emitAccelTypes();
378 
379   /// Emit visible names and types into debug pubnames and pubtypes sections.
380   void emitDebugPubSections();
381 
382   void emitDebugPubSection(bool GnuStyle, StringRef Name,
383                            DwarfCompileUnit *TheU,
384                            const StringMap<const DIE *> &Globals);
385 
386   /// Emit null-terminated strings into a debug str section.
387   void emitDebugStr();
388 
389   /// Emit variable locations into a debug loc section.
390   void emitDebugLoc();
391 
392   /// Emit variable locations into a debug loc dwo section.
393   void emitDebugLocDWO();
394 
395   /// Emit address ranges into a debug aranges section.
396   void emitDebugARanges();
397 
398   /// Emit address ranges into a debug ranges section.
399   void emitDebugRanges();
400 
401   /// Emit macros into a debug macinfo section.
402   void emitDebugMacinfo();
403   void emitMacro(DIMacro &M);
404   void emitMacroFile(DIMacroFile &F, DwarfCompileUnit &U);
405   void handleMacroNodes(DIMacroNodeArray Nodes, DwarfCompileUnit &U);
406 
407   /// DWARF 5 Experimental Split Dwarf Emitters
408 
409   /// Initialize common features of skeleton units.
410   void initSkeletonUnit(const DwarfUnit &U, DIE &Die,
411                         std::unique_ptr<DwarfCompileUnit> NewU);
412 
413   /// Construct the split debug info compile unit for the debug info
414   /// section.
415   DwarfCompileUnit &constructSkeletonCU(const DwarfCompileUnit &CU);
416 
417   /// Emit the debug info dwo section.
418   void emitDebugInfoDWO();
419 
420   /// Emit the debug abbrev dwo section.
421   void emitDebugAbbrevDWO();
422 
423   /// Emit the debug line dwo section.
424   void emitDebugLineDWO();
425 
426   /// Emit the dwo stringoffsets table header.
427   void emitStringOffsetsTableHeaderDWO();
428 
429   /// Emit the debug str dwo section.
430   void emitDebugStrDWO();
431 
432   /// Flags to let the linker know we have emitted new style pubnames. Only
433   /// emit it here if we don't have a skeleton CU for split dwarf.
434   void addGnuPubAttributes(DwarfCompileUnit &U, DIE &D) const;
435 
436   /// Create new DwarfCompileUnit for the given metadata node with tag
437   /// DW_TAG_compile_unit.
438   DwarfCompileUnit &getOrCreateDwarfCompileUnit(const DICompileUnit *DIUnit);
439 
440   /// Construct imported_module or imported_declaration DIE.
441   void constructAndAddImportedEntityDIE(DwarfCompileUnit &TheCU,
442                                         const DIImportedEntity *N);
443 
444   /// Register a source line with debug info. Returns the unique
445   /// label that was emitted and which provides correspondence to the
446   /// source line list.
447   void recordSourceLine(unsigned Line, unsigned Col, const MDNode *Scope,
448                         unsigned Flags);
449 
450   /// Populate LexicalScope entries with variables' info.
451   void collectVariableInfo(DwarfCompileUnit &TheCU, const DISubprogram *SP,
452                            DenseSet<InlinedVariable> &ProcessedVars);
453 
454   /// Build the location list for all DBG_VALUEs in the
455   /// function that describe the same variable.
456   void buildLocationList(SmallVectorImpl<DebugLocEntry> &DebugLoc,
457                          const DbgValueHistoryMap::InstrRanges &Ranges);
458 
459   /// Collect variable information from the side table maintained by MF.
460   void collectVariableInfoFromMFTable(DwarfCompileUnit &TheCU,
461                                       DenseSet<InlinedVariable> &P);
462 
463   /// Emit the reference to the section.
464   void emitSectionReference(const DwarfCompileUnit &CU);
465 
466 protected:
467   /// Gather pre-function debug information.
468   void beginFunctionImpl(const MachineFunction *MF) override;
469 
470   /// Gather and emit post-function debug information.
471   void endFunctionImpl(const MachineFunction *MF) override;
472 
473   void skippedNonDebugFunction() override;
474 
475 public:
476   //===--------------------------------------------------------------------===//
477   // Main entry points.
478   //
479   DwarfDebug(AsmPrinter *A, Module *M);
480 
481   ~DwarfDebug() override;
482 
483   /// Emit all Dwarf sections that should come prior to the
484   /// content.
485   void beginModule();
486 
487   /// Emit all Dwarf sections that should come after the content.
488   void endModule() override;
489 
490   /// Process beginning of an instruction.
491   void beginInstruction(const MachineInstr *MI) override;
492 
493   /// Perform an MD5 checksum of \p Identifier and return the lower 64 bits.
494   static uint64_t makeTypeSignature(StringRef Identifier);
495 
496   /// Add a DIE to the set of types that we're going to pull into
497   /// type units.
498   void addDwarfTypeUnitType(DwarfCompileUnit &CU, StringRef Identifier,
499                             DIE &Die, const DICompositeType *CTy);
500 
501   /// Add a label so that arange data can be generated for it.
502   void addArangeLabel(SymbolCU SCU) { ArangeLabels.push_back(SCU); }
503 
504   /// For symbols that have a size designated (e.g. common symbols),
505   /// this tracks that size.
506   void setSymbolSize(const MCSymbol *Sym, uint64_t Size) override {
507     SymSize[Sym] = Size;
508   }
509 
510   /// Returns whether we should emit all DW_AT_[MIPS_]linkage_name.
511   /// If not, we still might emit certain cases.
512   bool useAllLinkageNames() const { return UseAllLinkageNames; }
513 
514   /// Returns whether to use DW_OP_GNU_push_tls_address, instead of the
515   /// standard DW_OP_form_tls_address opcode
516   bool useGNUTLSOpcode() const { return UseGNUTLSOpcode; }
517 
518   /// Returns whether to use the DWARF2 format for bitfields instyead of the
519   /// DWARF4 format.
520   bool useDWARF2Bitfields() const { return UseDWARF2Bitfields; }
521 
522   /// Returns whether to use inline strings.
523   bool useInlineStrings() const { return UseInlineStrings; }
524 
525   /// Returns whether GNU oub sections should be emitted.
526   bool usePubSections() const { return UsePubSections; }
527 
528   /// Returns whether ranges section should be emitted.
529   bool useRangesSection() const { return UseRangesSection; }
530 
531   /// Returns whether to use sections as labels rather than temp symbols.
532   bool useSectionsAsReferences() const {
533     return UseSectionsAsReferences;
534   }
535 
536   // Experimental DWARF5 features.
537 
538   /// Returns what kind (if any) of accelerator tables to emit.
539   AccelTableKind getAccelTableKind() const { return TheAccelTableKind; }
540 
541   bool useAppleExtensionAttributes() const {
542     return HasAppleExtensionAttributes;
543   }
544 
545   /// Returns whether or not to change the current debug info for the
546   /// split dwarf proposal support.
547   bool useSplitDwarf() const { return HasSplitDwarf; }
548 
549   /// Returns whether to generate a string offsets table with (possibly shared)
550   /// contributions from each CU and type unit. This implies the use of
551   /// DW_FORM_strx* indirect references with DWARF v5 and beyond. Note that
552   /// DW_FORM_GNU_str_index is also an indirect reference, but it is used with
553   /// a pre-DWARF v5 implementation of split DWARF sections, which uses a
554   /// monolithic string offsets table.
555   bool useSegmentedStringOffsetsTable() const {
556     return UseSegmentedStringOffsetsTable;
557   }
558 
559   bool shareAcrossDWOCUs() const;
560 
561   /// Returns the Dwarf Version.
562   uint16_t getDwarfVersion() const;
563 
564   /// Returns the previous CU that was being updated
565   const DwarfCompileUnit *getPrevCU() const { return PrevCU; }
566   void setPrevCU(const DwarfCompileUnit *PrevCU) { this->PrevCU = PrevCU; }
567 
568   /// Returns the entries for the .debug_loc section.
569   const DebugLocStream &getDebugLocs() const { return DebugLocs; }
570 
571   /// Emit an entry for the debug loc section. This can be used to
572   /// handle an entry that's going to be emitted into the debug loc section.
573   void emitDebugLocEntry(ByteStreamer &Streamer,
574                          const DebugLocStream::Entry &Entry);
575 
576   /// Emit the location for a debug loc entry, including the size header.
577   void emitDebugLocEntryLocation(const DebugLocStream::Entry &Entry);
578 
579   /// Find the MDNode for the given reference.
580   template <typename T> T *resolve(TypedDINodeRef<T> Ref) const {
581     return Ref.resolve();
582   }
583 
584   void addSubprogramNames(const DISubprogram *SP, DIE &Die);
585 
586   AddressPool &getAddressPool() { return AddrPool; }
587 
588   void addAccelName(StringRef Name, const DIE &Die);
589 
590   void addAccelObjC(StringRef Name, const DIE &Die);
591 
592   void addAccelNamespace(StringRef Name, const DIE &Die);
593 
594   void addAccelType(StringRef Name, const DIE &Die, char Flags);
595 
596   const MachineFunction *getCurrentFunction() const { return CurFn; }
597 
598   /// A helper function to check whether the DIE for a given Scope is
599   /// going to be null.
600   bool isLexicalScopeDIENull(LexicalScope *Scope);
601 
602   /// Find the matching DwarfCompileUnit for the given CU DIE.
603   DwarfCompileUnit *lookupCU(const DIE *Die) { return CUDieMap.lookup(Die); }
604   const DwarfCompileUnit *lookupCU(const DIE *Die) const {
605     return CUDieMap.lookup(Die);
606   }
607 
608   /// \defgroup DebuggerTuning Predicates to tune DWARF for a given debugger.
609   ///
610   /// Returns whether we are "tuning" for a given debugger.
611   /// @{
612   bool tuneForGDB() const { return DebuggerTuning == DebuggerKind::GDB; }
613   bool tuneForLLDB() const { return DebuggerTuning == DebuggerKind::LLDB; }
614   bool tuneForSCE() const { return DebuggerTuning == DebuggerKind::SCE; }
615   /// @}
616 };
617 
618 } // end namespace llvm
619 
620 #endif // LLVM_LIB_CODEGEN_ASMPRINTER_DWARFDEBUG_H
621