DwarfDebug.cpp revision c525472828823b47c8aa90b901f61d5236de890a
1//===-- llvm/CodeGen/DwarfDebug.cpp - Dwarf Debug Framework ---------------===//
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#define DEBUG_TYPE "dwarfdebug"
14#include "DwarfDebug.h"
15#include "llvm/Module.h"
16#include "llvm/CodeGen/MachineFunction.h"
17#include "llvm/CodeGen/MachineModuleInfo.h"
18#include "llvm/MC/MCSection.h"
19#include "llvm/MC/MCStreamer.h"
20#include "llvm/MC/MCAsmInfo.h"
21#include "llvm/Target/TargetData.h"
22#include "llvm/Target/TargetFrameInfo.h"
23#include "llvm/Target/TargetLoweringObjectFile.h"
24#include "llvm/Target/TargetRegisterInfo.h"
25#include "llvm/ADT/StringExtras.h"
26#include "llvm/Support/Mangler.h"
27#include "llvm/Support/Timer.h"
28#include "llvm/Support/Debug.h"
29#include "llvm/System/Path.h"
30using namespace llvm;
31
32static TimerGroup &getDwarfTimerGroup() {
33  static TimerGroup DwarfTimerGroup("Dwarf Debugging");
34  return DwarfTimerGroup;
35}
36
37//===----------------------------------------------------------------------===//
38
39/// Configuration values for initial hash set sizes (log2).
40///
41static const unsigned InitDiesSetSize          = 9; // log2(512)
42static const unsigned InitAbbreviationsSetSize = 9; // log2(512)
43static const unsigned InitValuesSetSize        = 9; // log2(512)
44
45namespace llvm {
46
47//===----------------------------------------------------------------------===//
48/// CompileUnit - This dwarf writer support class manages information associate
49/// with a source file.
50class VISIBILITY_HIDDEN CompileUnit {
51  /// ID - File identifier for source.
52  ///
53  unsigned ID;
54
55  /// Die - Compile unit debug information entry.
56  ///
57  DIE *Die;
58
59  /// GVToDieMap - Tracks the mapping of unit level debug informaton
60  /// variables to debug information entries.
61  /// FIXME : Rename GVToDieMap -> NodeToDieMap
62  std::map<MDNode *, DIE *> GVToDieMap;
63
64  /// GVToDIEEntryMap - Tracks the mapping of unit level debug informaton
65  /// descriptors to debug information entries using a DIEEntry proxy.
66  /// FIXME : Rename
67  std::map<MDNode *, DIEEntry *> GVToDIEEntryMap;
68
69  /// Globals - A map of globally visible named entities for this unit.
70  ///
71  StringMap<DIE*> Globals;
72
73  /// DiesSet - Used to uniquely define dies within the compile unit.
74  ///
75  FoldingSet<DIE> DiesSet;
76public:
77  CompileUnit(unsigned I, DIE *D)
78    : ID(I), Die(D), DiesSet(InitDiesSetSize) {}
79  ~CompileUnit() { delete Die; }
80
81  // Accessors.
82  unsigned getID() const { return ID; }
83  DIE* getDie() const { return Die; }
84  StringMap<DIE*> &getGlobals() { return Globals; }
85
86  /// hasContent - Return true if this compile unit has something to write out.
87  ///
88  bool hasContent() const { return !Die->getChildren().empty(); }
89
90  /// AddGlobal - Add a new global entity to the compile unit.
91  ///
92  void AddGlobal(const std::string &Name, DIE *Die) { Globals[Name] = Die; }
93
94  /// getDieMapSlotFor - Returns the debug information entry map slot for the
95  /// specified debug variable.
96  DIE *&getDieMapSlotFor(MDNode *N) { return GVToDieMap[N]; }
97
98  /// getDIEEntrySlotFor - Returns the debug information entry proxy slot for
99  /// the specified debug variable.
100  DIEEntry *&getDIEEntrySlotFor(MDNode *N) {
101    return GVToDIEEntryMap[N];
102  }
103
104  /// AddDie - Adds or interns the DIE to the compile unit.
105  ///
106  DIE *AddDie(DIE &Buffer) {
107    FoldingSetNodeID ID;
108    Buffer.Profile(ID);
109    void *Where;
110    DIE *Die = DiesSet.FindNodeOrInsertPos(ID, Where);
111
112    if (!Die) {
113      Die = new DIE(Buffer);
114      DiesSet.InsertNode(Die, Where);
115      this->Die->AddChild(Die);
116      Buffer.Detach();
117    }
118
119    return Die;
120  }
121};
122
123//===----------------------------------------------------------------------===//
124/// DbgVariable - This class is used to track local variable information.
125///
126class VISIBILITY_HIDDEN DbgVariable {
127  DIVariable Var;                    // Variable Descriptor.
128  unsigned FrameIndex;               // Variable frame index.
129  bool InlinedFnVar;                 // Variable for an inlined function.
130public:
131  DbgVariable(DIVariable V, unsigned I, bool IFV)
132    : Var(V), FrameIndex(I), InlinedFnVar(IFV)  {}
133
134  // Accessors.
135  DIVariable getVariable() const { return Var; }
136  unsigned getFrameIndex() const { return FrameIndex; }
137  bool isInlinedFnVar() const { return InlinedFnVar; }
138};
139
140//===----------------------------------------------------------------------===//
141/// DbgScope - This class is used to track scope information.
142///
143class DbgConcreteScope;
144class VISIBILITY_HIDDEN DbgScope {
145  DbgScope *Parent;                   // Parent to this scope.
146  DIDescriptor Desc;                  // Debug info descriptor for scope.
147                                      // Either subprogram or block.
148  unsigned StartLabelID;              // Label ID of the beginning of scope.
149  unsigned EndLabelID;                // Label ID of the end of scope.
150  const MachineInstr *LastInsn;       // Last instruction of this scope.
151  const MachineInstr *FirstInsn;      // First instruction of this scope.
152  SmallVector<DbgScope *, 4> Scopes;  // Scopes defined in scope.
153  SmallVector<DbgVariable *, 8> Variables;// Variables declared in scope.
154  SmallVector<DbgConcreteScope *, 8> ConcreteInsts;// Concrete insts of funcs.
155
156  // Private state for dump()
157  mutable unsigned IndentLevel;
158public:
159  DbgScope(DbgScope *P, DIDescriptor D)
160    : Parent(P), Desc(D), StartLabelID(0), EndLabelID(0), LastInsn(0),
161      FirstInsn(0), IndentLevel(0) {}
162  virtual ~DbgScope();
163
164  // Accessors.
165  DbgScope *getParent()          const { return Parent; }
166  DIDescriptor getDesc()         const { return Desc; }
167  unsigned getStartLabelID()     const { return StartLabelID; }
168  unsigned getEndLabelID()       const { return EndLabelID; }
169  SmallVector<DbgScope *, 4> &getScopes() { return Scopes; }
170  SmallVector<DbgVariable *, 8> &getVariables() { return Variables; }
171  SmallVector<DbgConcreteScope*,8> &getConcreteInsts() { return ConcreteInsts; }
172  void setStartLabelID(unsigned S) { StartLabelID = S; }
173  void setEndLabelID(unsigned E)   { EndLabelID = E; }
174  void setLastInsn(const MachineInstr *MI) { LastInsn = MI; }
175  const MachineInstr *getLastInsn()      { return LastInsn; }
176  void setFirstInsn(const MachineInstr *MI) { FirstInsn = MI; }
177  const MachineInstr *getFirstInsn()      { return FirstInsn; }
178  /// AddScope - Add a scope to the scope.
179  ///
180  void AddScope(DbgScope *S) { Scopes.push_back(S); }
181
182  /// AddVariable - Add a variable to the scope.
183  ///
184  void AddVariable(DbgVariable *V) { Variables.push_back(V); }
185
186  /// AddConcreteInst - Add a concrete instance to the scope.
187  ///
188  void AddConcreteInst(DbgConcreteScope *C) { ConcreteInsts.push_back(C); }
189
190  void FixInstructionMarkers() {
191    assert (getFirstInsn() && "First instruction is missing!");
192    if (getLastInsn())
193      return;
194
195    // If a scope does not have an instruction to mark an end then use
196    // the end of last child scope.
197    SmallVector<DbgScope *, 4> &Scopes = getScopes();
198    assert (!Scopes.empty() && "Inner most scope does not have last insn!");
199    DbgScope *L = Scopes.back();
200    if (!L->getLastInsn())
201      L->FixInstructionMarkers();
202    setLastInsn(L->getLastInsn());
203  }
204
205#ifndef NDEBUG
206  void dump() const;
207#endif
208};
209
210#ifndef NDEBUG
211void DbgScope::dump() const {
212  raw_ostream &err = errs();
213  err.indent(IndentLevel);
214  Desc.dump();
215  err << " [" << StartLabelID << ", " << EndLabelID << "]\n";
216
217  IndentLevel += 2;
218
219  for (unsigned i = 0, e = Scopes.size(); i != e; ++i)
220    if (Scopes[i] != this)
221      Scopes[i]->dump();
222
223  IndentLevel -= 2;
224}
225#endif
226
227//===----------------------------------------------------------------------===//
228/// DbgConcreteScope - This class is used to track a scope that holds concrete
229/// instance information.
230///
231class VISIBILITY_HIDDEN DbgConcreteScope : public DbgScope {
232  CompileUnit *Unit;
233  DIE *Die;                           // Debug info for this concrete scope.
234public:
235  DbgConcreteScope(DIDescriptor D) : DbgScope(NULL, D) {}
236
237  // Accessors.
238  DIE *getDie() const { return Die; }
239  void setDie(DIE *D) { Die = D; }
240};
241
242DbgScope::~DbgScope() {
243  for (unsigned i = 0, N = Scopes.size(); i < N; ++i)
244    delete Scopes[i];
245  for (unsigned j = 0, M = Variables.size(); j < M; ++j)
246    delete Variables[j];
247  for (unsigned k = 0, O = ConcreteInsts.size(); k < O; ++k)
248    delete ConcreteInsts[k];
249}
250
251} // end llvm namespace
252
253DwarfDebug::DwarfDebug(raw_ostream &OS, AsmPrinter *A, const MCAsmInfo *T)
254  : Dwarf(OS, A, T, "dbg"), ModuleCU(0),
255    AbbreviationsSet(InitAbbreviationsSetSize), Abbreviations(),
256    ValuesSet(InitValuesSetSize), Values(), StringPool(),
257    SectionSourceLines(), didInitial(false), shouldEmit(false),
258    FunctionDbgScope(0), DebugTimer(0) {
259  if (TimePassesIsEnabled)
260    DebugTimer = new Timer("Dwarf Debug Writer",
261                           getDwarfTimerGroup());
262}
263DwarfDebug::~DwarfDebug() {
264  for (unsigned j = 0, M = Values.size(); j < M; ++j)
265    delete Values[j];
266
267  for (DenseMap<const MDNode *, DbgScope *>::iterator
268         I = AbstractInstanceRootMap.begin(),
269         E = AbstractInstanceRootMap.end(); I != E;++I)
270    delete I->second;
271
272  delete DebugTimer;
273}
274
275/// AssignAbbrevNumber - Define a unique number for the abbreviation.
276///
277void DwarfDebug::AssignAbbrevNumber(DIEAbbrev &Abbrev) {
278  // Profile the node so that we can make it unique.
279  FoldingSetNodeID ID;
280  Abbrev.Profile(ID);
281
282  // Check the set for priors.
283  DIEAbbrev *InSet = AbbreviationsSet.GetOrInsertNode(&Abbrev);
284
285  // If it's newly added.
286  if (InSet == &Abbrev) {
287    // Add to abbreviation list.
288    Abbreviations.push_back(&Abbrev);
289
290    // Assign the vector position + 1 as its number.
291    Abbrev.setNumber(Abbreviations.size());
292  } else {
293    // Assign existing abbreviation number.
294    Abbrev.setNumber(InSet->getNumber());
295  }
296}
297
298/// CreateDIEEntry - Creates a new DIEEntry to be a proxy for a debug
299/// information entry.
300DIEEntry *DwarfDebug::CreateDIEEntry(DIE *Entry) {
301  DIEEntry *Value;
302
303  if (Entry) {
304    FoldingSetNodeID ID;
305    DIEEntry::Profile(ID, Entry);
306    void *Where;
307    Value = static_cast<DIEEntry *>(ValuesSet.FindNodeOrInsertPos(ID, Where));
308
309    if (Value) return Value;
310
311    Value = new DIEEntry(Entry);
312    ValuesSet.InsertNode(Value, Where);
313  } else {
314    Value = new DIEEntry(Entry);
315  }
316
317  Values.push_back(Value);
318  return Value;
319}
320
321/// SetDIEEntry - Set a DIEEntry once the debug information entry is defined.
322///
323void DwarfDebug::SetDIEEntry(DIEEntry *Value, DIE *Entry) {
324  Value->setEntry(Entry);
325
326  // Add to values set if not already there.  If it is, we merely have a
327  // duplicate in the values list (no harm.)
328  ValuesSet.GetOrInsertNode(Value);
329}
330
331/// AddUInt - Add an unsigned integer attribute data and value.
332///
333void DwarfDebug::AddUInt(DIE *Die, unsigned Attribute,
334                         unsigned Form, uint64_t Integer) {
335  if (!Form) Form = DIEInteger::BestForm(false, Integer);
336
337  FoldingSetNodeID ID;
338  DIEInteger::Profile(ID, Integer);
339  void *Where;
340  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
341
342  if (!Value) {
343    Value = new DIEInteger(Integer);
344    ValuesSet.InsertNode(Value, Where);
345    Values.push_back(Value);
346  }
347
348  Die->AddValue(Attribute, Form, Value);
349}
350
351/// AddSInt - Add an signed integer attribute data and value.
352///
353void DwarfDebug::AddSInt(DIE *Die, unsigned Attribute,
354                         unsigned Form, int64_t Integer) {
355  if (!Form) Form = DIEInteger::BestForm(true, Integer);
356
357  FoldingSetNodeID ID;
358  DIEInteger::Profile(ID, (uint64_t)Integer);
359  void *Where;
360  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
361
362  if (!Value) {
363    Value = new DIEInteger(Integer);
364    ValuesSet.InsertNode(Value, Where);
365    Values.push_back(Value);
366  }
367
368  Die->AddValue(Attribute, Form, Value);
369}
370
371/// AddString - Add a string attribute data and value.
372///
373void DwarfDebug::AddString(DIE *Die, unsigned Attribute, unsigned Form,
374                           const std::string &String) {
375  FoldingSetNodeID ID;
376  DIEString::Profile(ID, String);
377  void *Where;
378  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
379
380  if (!Value) {
381    Value = new DIEString(String);
382    ValuesSet.InsertNode(Value, Where);
383    Values.push_back(Value);
384  }
385
386  Die->AddValue(Attribute, Form, Value);
387}
388
389/// AddLabel - Add a Dwarf label attribute data and value.
390///
391void DwarfDebug::AddLabel(DIE *Die, unsigned Attribute, unsigned Form,
392                          const DWLabel &Label) {
393  FoldingSetNodeID ID;
394  DIEDwarfLabel::Profile(ID, Label);
395  void *Where;
396  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
397
398  if (!Value) {
399    Value = new DIEDwarfLabel(Label);
400    ValuesSet.InsertNode(Value, Where);
401    Values.push_back(Value);
402  }
403
404  Die->AddValue(Attribute, Form, Value);
405}
406
407/// AddObjectLabel - Add an non-Dwarf label attribute data and value.
408///
409void DwarfDebug::AddObjectLabel(DIE *Die, unsigned Attribute, unsigned Form,
410                                const std::string &Label) {
411  FoldingSetNodeID ID;
412  DIEObjectLabel::Profile(ID, Label);
413  void *Where;
414  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
415
416  if (!Value) {
417    Value = new DIEObjectLabel(Label);
418    ValuesSet.InsertNode(Value, Where);
419    Values.push_back(Value);
420  }
421
422  Die->AddValue(Attribute, Form, Value);
423}
424
425/// AddSectionOffset - Add a section offset label attribute data and value.
426///
427void DwarfDebug::AddSectionOffset(DIE *Die, unsigned Attribute, unsigned Form,
428                                  const DWLabel &Label, const DWLabel &Section,
429                                  bool isEH, bool useSet) {
430  FoldingSetNodeID ID;
431  DIESectionOffset::Profile(ID, Label, Section);
432  void *Where;
433  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
434
435  if (!Value) {
436    Value = new DIESectionOffset(Label, Section, isEH, useSet);
437    ValuesSet.InsertNode(Value, Where);
438    Values.push_back(Value);
439  }
440
441  Die->AddValue(Attribute, Form, Value);
442}
443
444/// AddDelta - Add a label delta attribute data and value.
445///
446void DwarfDebug::AddDelta(DIE *Die, unsigned Attribute, unsigned Form,
447                          const DWLabel &Hi, const DWLabel &Lo) {
448  FoldingSetNodeID ID;
449  DIEDelta::Profile(ID, Hi, Lo);
450  void *Where;
451  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
452
453  if (!Value) {
454    Value = new DIEDelta(Hi, Lo);
455    ValuesSet.InsertNode(Value, Where);
456    Values.push_back(Value);
457  }
458
459  Die->AddValue(Attribute, Form, Value);
460}
461
462/// AddBlock - Add block data.
463///
464void DwarfDebug::AddBlock(DIE *Die, unsigned Attribute, unsigned Form,
465                          DIEBlock *Block) {
466  Block->ComputeSize(TD);
467  FoldingSetNodeID ID;
468  Block->Profile(ID);
469  void *Where;
470  DIEValue *Value = ValuesSet.FindNodeOrInsertPos(ID, Where);
471
472  if (!Value) {
473    Value = Block;
474    ValuesSet.InsertNode(Value, Where);
475    Values.push_back(Value);
476  } else {
477    // Already exists, reuse the previous one.
478    delete Block;
479    Block = cast<DIEBlock>(Value);
480  }
481
482  Die->AddValue(Attribute, Block->BestForm(), Value);
483}
484
485/// AddSourceLine - Add location information to specified debug information
486/// entry.
487void DwarfDebug::AddSourceLine(DIE *Die, const DIVariable *V) {
488  // If there is no compile unit specified, don't add a line #.
489  if (V->getCompileUnit().isNull())
490    return;
491
492  unsigned Line = V->getLineNumber();
493  unsigned FileID = FindCompileUnit(V->getCompileUnit()).getID();
494  assert(FileID && "Invalid file id");
495  AddUInt(Die, dwarf::DW_AT_decl_file, 0, FileID);
496  AddUInt(Die, dwarf::DW_AT_decl_line, 0, Line);
497}
498
499/// AddSourceLine - Add location information to specified debug information
500/// entry.
501void DwarfDebug::AddSourceLine(DIE *Die, const DIGlobal *G) {
502  // If there is no compile unit specified, don't add a line #.
503  if (G->getCompileUnit().isNull())
504    return;
505
506  unsigned Line = G->getLineNumber();
507  unsigned FileID = FindCompileUnit(G->getCompileUnit()).getID();
508  assert(FileID && "Invalid file id");
509  AddUInt(Die, dwarf::DW_AT_decl_file, 0, FileID);
510  AddUInt(Die, dwarf::DW_AT_decl_line, 0, Line);
511}
512
513/// AddSourceLine - Add location information to specified debug information
514/// entry.
515void DwarfDebug::AddSourceLine(DIE *Die, const DISubprogram *SP) {
516  // If there is no compile unit specified, don't add a line #.
517  if (SP->getCompileUnit().isNull())
518    return;
519  // If the line number is 0, don't add it.
520  if (SP->getLineNumber() == 0)
521    return;
522
523
524  unsigned Line = SP->getLineNumber();
525  unsigned FileID = FindCompileUnit(SP->getCompileUnit()).getID();
526  assert(FileID && "Invalid file id");
527  AddUInt(Die, dwarf::DW_AT_decl_file, 0, FileID);
528  AddUInt(Die, dwarf::DW_AT_decl_line, 0, Line);
529}
530
531/// AddSourceLine - Add location information to specified debug information
532/// entry.
533void DwarfDebug::AddSourceLine(DIE *Die, const DIType *Ty) {
534  // If there is no compile unit specified, don't add a line #.
535  DICompileUnit CU = Ty->getCompileUnit();
536  if (CU.isNull())
537    return;
538
539  unsigned Line = Ty->getLineNumber();
540  unsigned FileID = FindCompileUnit(CU).getID();
541  assert(FileID && "Invalid file id");
542  AddUInt(Die, dwarf::DW_AT_decl_file, 0, FileID);
543  AddUInt(Die, dwarf::DW_AT_decl_line, 0, Line);
544}
545
546/* Byref variables, in Blocks, are declared by the programmer as
547   "SomeType VarName;", but the compiler creates a
548   __Block_byref_x_VarName struct, and gives the variable VarName
549   either the struct, or a pointer to the struct, as its type.  This
550   is necessary for various behind-the-scenes things the compiler
551   needs to do with by-reference variables in blocks.
552
553   However, as far as the original *programmer* is concerned, the
554   variable should still have type 'SomeType', as originally declared.
555
556   The following function dives into the __Block_byref_x_VarName
557   struct to find the original type of the variable.  This will be
558   passed back to the code generating the type for the Debug
559   Information Entry for the variable 'VarName'.  'VarName' will then
560   have the original type 'SomeType' in its debug information.
561
562   The original type 'SomeType' will be the type of the field named
563   'VarName' inside the __Block_byref_x_VarName struct.
564
565   NOTE: In order for this to not completely fail on the debugger
566   side, the Debug Information Entry for the variable VarName needs to
567   have a DW_AT_location that tells the debugger how to unwind through
568   the pointers and __Block_byref_x_VarName struct to find the actual
569   value of the variable.  The function AddBlockByrefType does this.  */
570
571/// Find the type the programmer originally declared the variable to be
572/// and return that type.
573///
574DIType DwarfDebug::GetBlockByrefType(DIType Ty, std::string Name) {
575
576  DIType subType = Ty;
577  unsigned tag = Ty.getTag();
578
579  if (tag == dwarf::DW_TAG_pointer_type) {
580    DIDerivedType DTy = DIDerivedType(Ty.getNode());
581    subType = DTy.getTypeDerivedFrom();
582  }
583
584  DICompositeType blockStruct = DICompositeType(subType.getNode());
585
586  DIArray Elements = blockStruct.getTypeArray();
587
588  if (Elements.isNull())
589    return Ty;
590
591  for (unsigned i = 0, N = Elements.getNumElements(); i < N; ++i) {
592    DIDescriptor Element = Elements.getElement(i);
593    DIDerivedType DT = DIDerivedType(Element.getNode());
594    if (strcmp(Name.c_str(), DT.getName()) == 0)
595      return (DT.getTypeDerivedFrom());
596  }
597
598  return Ty;
599}
600
601/// AddComplexAddress - Start with the address based on the location provided,
602/// and generate the DWARF information necessary to find the actual variable
603/// given the extra address information encoded in the DIVariable, starting from
604/// the starting location.  Add the DWARF information to the die.
605///
606void DwarfDebug::AddComplexAddress(DbgVariable *&DV, DIE *Die,
607                                   unsigned Attribute,
608                                   const MachineLocation &Location) {
609  const DIVariable &VD = DV->getVariable();
610  DIType Ty = VD.getType();
611
612  // Decode the original location, and use that as the start of the byref
613  // variable's location.
614  unsigned Reg = RI->getDwarfRegNum(Location.getReg(), false);
615  DIEBlock *Block = new DIEBlock();
616
617  if (Location.isReg()) {
618    if (Reg < 32) {
619      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_reg0 + Reg);
620    } else {
621      Reg = Reg - dwarf::DW_OP_reg0;
622      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_breg0 + Reg);
623      AddUInt(Block, 0, dwarf::DW_FORM_udata, Reg);
624    }
625  } else {
626    if (Reg < 32)
627      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_breg0 + Reg);
628    else {
629      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_bregx);
630      AddUInt(Block, 0, dwarf::DW_FORM_udata, Reg);
631    }
632
633    AddUInt(Block, 0, dwarf::DW_FORM_sdata, Location.getOffset());
634  }
635
636  for (unsigned i = 0, N = VD.getNumAddrElements(); i < N; ++i) {
637    uint64_t Element = VD.getAddrElement(i);
638
639    if (Element == DIFactory::OpPlus) {
640      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_plus_uconst);
641      AddUInt(Block, 0, dwarf::DW_FORM_udata, VD.getAddrElement(++i));
642    } else if (Element == DIFactory::OpDeref) {
643      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_deref);
644    } else llvm_unreachable("unknown DIFactory Opcode");
645  }
646
647  // Now attach the location information to the DIE.
648  AddBlock(Die, Attribute, 0, Block);
649}
650
651/* Byref variables, in Blocks, are declared by the programmer as "SomeType
652   VarName;", but the compiler creates a __Block_byref_x_VarName struct, and
653   gives the variable VarName either the struct, or a pointer to the struct, as
654   its type.  This is necessary for various behind-the-scenes things the
655   compiler needs to do with by-reference variables in Blocks.
656
657   However, as far as the original *programmer* is concerned, the variable
658   should still have type 'SomeType', as originally declared.
659
660   The function GetBlockByrefType dives into the __Block_byref_x_VarName
661   struct to find the original type of the variable, which is then assigned to
662   the variable's Debug Information Entry as its real type.  So far, so good.
663   However now the debugger will expect the variable VarName to have the type
664   SomeType.  So we need the location attribute for the variable to be an
665   expression that explains to the debugger how to navigate through the
666   pointers and struct to find the actual variable of type SomeType.
667
668   The following function does just that.  We start by getting
669   the "normal" location for the variable. This will be the location
670   of either the struct __Block_byref_x_VarName or the pointer to the
671   struct __Block_byref_x_VarName.
672
673   The struct will look something like:
674
675   struct __Block_byref_x_VarName {
676     ... <various fields>
677     struct __Block_byref_x_VarName *forwarding;
678     ... <various other fields>
679     SomeType VarName;
680     ... <maybe more fields>
681   };
682
683   If we are given the struct directly (as our starting point) we
684   need to tell the debugger to:
685
686   1).  Add the offset of the forwarding field.
687
688   2).  Follow that pointer to get the the real __Block_byref_x_VarName
689   struct to use (the real one may have been copied onto the heap).
690
691   3).  Add the offset for the field VarName, to find the actual variable.
692
693   If we started with a pointer to the struct, then we need to
694   dereference that pointer first, before the other steps.
695   Translating this into DWARF ops, we will need to append the following
696   to the current location description for the variable:
697
698   DW_OP_deref                    -- optional, if we start with a pointer
699   DW_OP_plus_uconst <forward_fld_offset>
700   DW_OP_deref
701   DW_OP_plus_uconst <varName_fld_offset>
702
703   That is what this function does.  */
704
705/// AddBlockByrefAddress - Start with the address based on the location
706/// provided, and generate the DWARF information necessary to find the
707/// actual Block variable (navigating the Block struct) based on the
708/// starting location.  Add the DWARF information to the die.  For
709/// more information, read large comment just above here.
710///
711void DwarfDebug::AddBlockByrefAddress(DbgVariable *&DV, DIE *Die,
712                                      unsigned Attribute,
713                                      const MachineLocation &Location) {
714  const DIVariable &VD = DV->getVariable();
715  DIType Ty = VD.getType();
716  DIType TmpTy = Ty;
717  unsigned Tag = Ty.getTag();
718  bool isPointer = false;
719
720  const char *varName = VD.getName();
721
722  if (Tag == dwarf::DW_TAG_pointer_type) {
723    DIDerivedType DTy = DIDerivedType(Ty.getNode());
724    TmpTy = DTy.getTypeDerivedFrom();
725    isPointer = true;
726  }
727
728  DICompositeType blockStruct = DICompositeType(TmpTy.getNode());
729
730  // Find the __forwarding field and the variable field in the __Block_byref
731  // struct.
732  DIArray Fields = blockStruct.getTypeArray();
733  DIDescriptor varField = DIDescriptor();
734  DIDescriptor forwardingField = DIDescriptor();
735
736
737  for (unsigned i = 0, N = Fields.getNumElements(); i < N; ++i) {
738    DIDescriptor Element = Fields.getElement(i);
739    DIDerivedType DT = DIDerivedType(Element.getNode());
740    const char *fieldName = DT.getName();
741    if (strcmp(fieldName, "__forwarding") == 0)
742      forwardingField = Element;
743    else if (strcmp(fieldName, varName) == 0)
744      varField = Element;
745  }
746
747  assert(!varField.isNull() && "Can't find byref variable in Block struct");
748  assert(!forwardingField.isNull()
749         && "Can't find forwarding field in Block struct");
750
751  // Get the offsets for the forwarding field and the variable field.
752  unsigned int forwardingFieldOffset =
753    DIDerivedType(forwardingField.getNode()).getOffsetInBits() >> 3;
754  unsigned int varFieldOffset =
755    DIDerivedType(varField.getNode()).getOffsetInBits() >> 3;
756
757  // Decode the original location, and use that as the start of the byref
758  // variable's location.
759  unsigned Reg = RI->getDwarfRegNum(Location.getReg(), false);
760  DIEBlock *Block = new DIEBlock();
761
762  if (Location.isReg()) {
763    if (Reg < 32)
764      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_reg0 + Reg);
765    else {
766      Reg = Reg - dwarf::DW_OP_reg0;
767      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_breg0 + Reg);
768      AddUInt(Block, 0, dwarf::DW_FORM_udata, Reg);
769    }
770  } else {
771    if (Reg < 32)
772      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_breg0 + Reg);
773    else {
774      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_bregx);
775      AddUInt(Block, 0, dwarf::DW_FORM_udata, Reg);
776    }
777
778    AddUInt(Block, 0, dwarf::DW_FORM_sdata, Location.getOffset());
779  }
780
781  // If we started with a pointer to the __Block_byref... struct, then
782  // the first thing we need to do is dereference the pointer (DW_OP_deref).
783  if (isPointer)
784    AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_deref);
785
786  // Next add the offset for the '__forwarding' field:
787  // DW_OP_plus_uconst ForwardingFieldOffset.  Note there's no point in
788  // adding the offset if it's 0.
789  if (forwardingFieldOffset > 0) {
790    AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_plus_uconst);
791    AddUInt(Block, 0, dwarf::DW_FORM_udata, forwardingFieldOffset);
792  }
793
794  // Now dereference the __forwarding field to get to the real __Block_byref
795  // struct:  DW_OP_deref.
796  AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_deref);
797
798  // Now that we've got the real __Block_byref... struct, add the offset
799  // for the variable's field to get to the location of the actual variable:
800  // DW_OP_plus_uconst varFieldOffset.  Again, don't add if it's 0.
801  if (varFieldOffset > 0) {
802    AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_plus_uconst);
803    AddUInt(Block, 0, dwarf::DW_FORM_udata, varFieldOffset);
804  }
805
806  // Now attach the location information to the DIE.
807  AddBlock(Die, Attribute, 0, Block);
808}
809
810/// AddAddress - Add an address attribute to a die based on the location
811/// provided.
812void DwarfDebug::AddAddress(DIE *Die, unsigned Attribute,
813                            const MachineLocation &Location) {
814  unsigned Reg = RI->getDwarfRegNum(Location.getReg(), false);
815  DIEBlock *Block = new DIEBlock();
816
817  if (Location.isReg()) {
818    if (Reg < 32) {
819      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_reg0 + Reg);
820    } else {
821      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_regx);
822      AddUInt(Block, 0, dwarf::DW_FORM_udata, Reg);
823    }
824  } else {
825    if (Reg < 32) {
826      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_breg0 + Reg);
827    } else {
828      AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_bregx);
829      AddUInt(Block, 0, dwarf::DW_FORM_udata, Reg);
830    }
831
832    AddUInt(Block, 0, dwarf::DW_FORM_sdata, Location.getOffset());
833  }
834
835  AddBlock(Die, Attribute, 0, Block);
836}
837
838/// AddType - Add a new type attribute to the specified entity.
839void DwarfDebug::AddType(CompileUnit *DW_Unit, DIE *Entity, DIType Ty) {
840  if (Ty.isNull())
841    return;
842
843  // Check for pre-existence.
844  DIEEntry *&Slot = DW_Unit->getDIEEntrySlotFor(Ty.getNode());
845
846  // If it exists then use the existing value.
847  if (Slot) {
848    Entity->AddValue(dwarf::DW_AT_type, dwarf::DW_FORM_ref4, Slot);
849    return;
850  }
851
852  // Set up proxy.
853  Slot = CreateDIEEntry();
854
855  // Construct type.
856  DIE Buffer(dwarf::DW_TAG_base_type);
857  if (Ty.isBasicType())
858    ConstructTypeDIE(DW_Unit, Buffer, DIBasicType(Ty.getNode()));
859  else if (Ty.isCompositeType())
860    ConstructTypeDIE(DW_Unit, Buffer, DICompositeType(Ty.getNode()));
861  else {
862    assert(Ty.isDerivedType() && "Unknown kind of DIType");
863    ConstructTypeDIE(DW_Unit, Buffer, DIDerivedType(Ty.getNode()));
864  }
865
866  // Add debug information entry to entity and appropriate context.
867  DIE *Die = NULL;
868  DIDescriptor Context = Ty.getContext();
869  if (!Context.isNull())
870    Die = DW_Unit->getDieMapSlotFor(Context.getNode());
871
872  if (Die) {
873    DIE *Child = new DIE(Buffer);
874    Die->AddChild(Child);
875    Buffer.Detach();
876    SetDIEEntry(Slot, Child);
877  } else {
878    Die = DW_Unit->AddDie(Buffer);
879    SetDIEEntry(Slot, Die);
880  }
881
882  Entity->AddValue(dwarf::DW_AT_type, dwarf::DW_FORM_ref4, Slot);
883}
884
885/// ConstructTypeDIE - Construct basic type die from DIBasicType.
886void DwarfDebug::ConstructTypeDIE(CompileUnit *DW_Unit, DIE &Buffer,
887                                  DIBasicType BTy) {
888  // Get core information.
889  const char *Name = BTy.getName();
890  Buffer.setTag(dwarf::DW_TAG_base_type);
891  AddUInt(&Buffer, dwarf::DW_AT_encoding,  dwarf::DW_FORM_data1,
892          BTy.getEncoding());
893
894  // Add name if not anonymous or intermediate type.
895  if (Name)
896    AddString(&Buffer, dwarf::DW_AT_name, dwarf::DW_FORM_string, Name);
897  uint64_t Size = BTy.getSizeInBits() >> 3;
898  AddUInt(&Buffer, dwarf::DW_AT_byte_size, 0, Size);
899}
900
901/// ConstructTypeDIE - Construct derived type die from DIDerivedType.
902void DwarfDebug::ConstructTypeDIE(CompileUnit *DW_Unit, DIE &Buffer,
903                                  DIDerivedType DTy) {
904  // Get core information.
905  const char *Name = DTy.getName();
906  uint64_t Size = DTy.getSizeInBits() >> 3;
907  unsigned Tag = DTy.getTag();
908
909  // FIXME - Workaround for templates.
910  if (Tag == dwarf::DW_TAG_inheritance) Tag = dwarf::DW_TAG_reference_type;
911
912  Buffer.setTag(Tag);
913
914  // Map to main type, void will not have a type.
915  DIType FromTy = DTy.getTypeDerivedFrom();
916  AddType(DW_Unit, &Buffer, FromTy);
917
918  // Add name if not anonymous or intermediate type.
919  if (Name)
920    AddString(&Buffer, dwarf::DW_AT_name, dwarf::DW_FORM_string, Name);
921
922  // Add size if non-zero (derived types might be zero-sized.)
923  if (Size)
924    AddUInt(&Buffer, dwarf::DW_AT_byte_size, 0, Size);
925
926  // Add source line info if available and TyDesc is not a forward declaration.
927  if (!DTy.isForwardDecl())
928    AddSourceLine(&Buffer, &DTy);
929}
930
931/// ConstructTypeDIE - Construct type DIE from DICompositeType.
932void DwarfDebug::ConstructTypeDIE(CompileUnit *DW_Unit, DIE &Buffer,
933                                  DICompositeType CTy) {
934  // Get core information.
935  const char *Name = CTy.getName();
936
937  uint64_t Size = CTy.getSizeInBits() >> 3;
938  unsigned Tag = CTy.getTag();
939  Buffer.setTag(Tag);
940
941  switch (Tag) {
942  case dwarf::DW_TAG_vector_type:
943  case dwarf::DW_TAG_array_type:
944    ConstructArrayTypeDIE(DW_Unit, Buffer, &CTy);
945    break;
946  case dwarf::DW_TAG_enumeration_type: {
947    DIArray Elements = CTy.getTypeArray();
948
949    // Add enumerators to enumeration type.
950    for (unsigned i = 0, N = Elements.getNumElements(); i < N; ++i) {
951      DIE *ElemDie = NULL;
952      DIEnumerator Enum(Elements.getElement(i).getNode());
953      if (!Enum.isNull()) {
954        ElemDie = ConstructEnumTypeDIE(DW_Unit, &Enum);
955        Buffer.AddChild(ElemDie);
956      }
957    }
958  }
959    break;
960  case dwarf::DW_TAG_subroutine_type: {
961    // Add return type.
962    DIArray Elements = CTy.getTypeArray();
963    DIDescriptor RTy = Elements.getElement(0);
964    AddType(DW_Unit, &Buffer, DIType(RTy.getNode()));
965
966    // Add prototype flag.
967    AddUInt(&Buffer, dwarf::DW_AT_prototyped, dwarf::DW_FORM_flag, 1);
968
969    // Add arguments.
970    for (unsigned i = 1, N = Elements.getNumElements(); i < N; ++i) {
971      DIE *Arg = new DIE(dwarf::DW_TAG_formal_parameter);
972      DIDescriptor Ty = Elements.getElement(i);
973      AddType(DW_Unit, Arg, DIType(Ty.getNode()));
974      Buffer.AddChild(Arg);
975    }
976  }
977    break;
978  case dwarf::DW_TAG_structure_type:
979  case dwarf::DW_TAG_union_type:
980  case dwarf::DW_TAG_class_type: {
981    // Add elements to structure type.
982    DIArray Elements = CTy.getTypeArray();
983
984    // A forward struct declared type may not have elements available.
985    if (Elements.isNull())
986      break;
987
988    // Add elements to structure type.
989    for (unsigned i = 0, N = Elements.getNumElements(); i < N; ++i) {
990      DIDescriptor Element = Elements.getElement(i);
991      if (Element.isNull())
992        continue;
993      DIE *ElemDie = NULL;
994      if (Element.getTag() == dwarf::DW_TAG_subprogram)
995        ElemDie = CreateSubprogramDIE(DW_Unit,
996                                      DISubprogram(Element.getNode()));
997      else
998        ElemDie = CreateMemberDIE(DW_Unit,
999                                  DIDerivedType(Element.getNode()));
1000      Buffer.AddChild(ElemDie);
1001    }
1002
1003    if (CTy.isAppleBlockExtension())
1004      AddUInt(&Buffer, dwarf::DW_AT_APPLE_block, dwarf::DW_FORM_flag, 1);
1005
1006    unsigned RLang = CTy.getRunTimeLang();
1007    if (RLang)
1008      AddUInt(&Buffer, dwarf::DW_AT_APPLE_runtime_class,
1009              dwarf::DW_FORM_data1, RLang);
1010    break;
1011  }
1012  default:
1013    break;
1014  }
1015
1016  // Add name if not anonymous or intermediate type.
1017  if (Name)
1018    AddString(&Buffer, dwarf::DW_AT_name, dwarf::DW_FORM_string, Name);
1019
1020  if (Tag == dwarf::DW_TAG_enumeration_type ||
1021      Tag == dwarf::DW_TAG_structure_type || Tag == dwarf::DW_TAG_union_type) {
1022    // Add size if non-zero (derived types might be zero-sized.)
1023    if (Size)
1024      AddUInt(&Buffer, dwarf::DW_AT_byte_size, 0, Size);
1025    else {
1026      // Add zero size if it is not a forward declaration.
1027      if (CTy.isForwardDecl())
1028        AddUInt(&Buffer, dwarf::DW_AT_declaration, dwarf::DW_FORM_flag, 1);
1029      else
1030        AddUInt(&Buffer, dwarf::DW_AT_byte_size, 0, 0);
1031    }
1032
1033    // Add source line info if available.
1034    if (!CTy.isForwardDecl())
1035      AddSourceLine(&Buffer, &CTy);
1036  }
1037}
1038
1039/// ConstructSubrangeDIE - Construct subrange DIE from DISubrange.
1040void DwarfDebug::ConstructSubrangeDIE(DIE &Buffer, DISubrange SR, DIE *IndexTy){
1041  int64_t L = SR.getLo();
1042  int64_t H = SR.getHi();
1043  DIE *DW_Subrange = new DIE(dwarf::DW_TAG_subrange_type);
1044
1045  AddDIEEntry(DW_Subrange, dwarf::DW_AT_type, dwarf::DW_FORM_ref4, IndexTy);
1046  if (L)
1047    AddSInt(DW_Subrange, dwarf::DW_AT_lower_bound, 0, L);
1048  if (H)
1049    AddSInt(DW_Subrange, dwarf::DW_AT_upper_bound, 0, H);
1050
1051  Buffer.AddChild(DW_Subrange);
1052}
1053
1054/// ConstructArrayTypeDIE - Construct array type DIE from DICompositeType.
1055void DwarfDebug::ConstructArrayTypeDIE(CompileUnit *DW_Unit, DIE &Buffer,
1056                                       DICompositeType *CTy) {
1057  Buffer.setTag(dwarf::DW_TAG_array_type);
1058  if (CTy->getTag() == dwarf::DW_TAG_vector_type)
1059    AddUInt(&Buffer, dwarf::DW_AT_GNU_vector, dwarf::DW_FORM_flag, 1);
1060
1061  // Emit derived type.
1062  AddType(DW_Unit, &Buffer, CTy->getTypeDerivedFrom());
1063  DIArray Elements = CTy->getTypeArray();
1064
1065  // Construct an anonymous type for index type.
1066  DIE IdxBuffer(dwarf::DW_TAG_base_type);
1067  AddUInt(&IdxBuffer, dwarf::DW_AT_byte_size, 0, sizeof(int32_t));
1068  AddUInt(&IdxBuffer, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1,
1069          dwarf::DW_ATE_signed);
1070  DIE *IndexTy = DW_Unit->AddDie(IdxBuffer);
1071
1072  // Add subranges to array type.
1073  for (unsigned i = 0, N = Elements.getNumElements(); i < N; ++i) {
1074    DIDescriptor Element = Elements.getElement(i);
1075    if (Element.getTag() == dwarf::DW_TAG_subrange_type)
1076      ConstructSubrangeDIE(Buffer, DISubrange(Element.getNode()), IndexTy);
1077  }
1078}
1079
1080/// ConstructEnumTypeDIE - Construct enum type DIE from DIEnumerator.
1081DIE *DwarfDebug::ConstructEnumTypeDIE(CompileUnit *DW_Unit, DIEnumerator *ETy) {
1082  DIE *Enumerator = new DIE(dwarf::DW_TAG_enumerator);
1083  const char *Name = ETy->getName();
1084  AddString(Enumerator, dwarf::DW_AT_name, dwarf::DW_FORM_string, Name);
1085  int64_t Value = ETy->getEnumValue();
1086  AddSInt(Enumerator, dwarf::DW_AT_const_value, dwarf::DW_FORM_sdata, Value);
1087  return Enumerator;
1088}
1089
1090/// CreateGlobalVariableDIE - Create new DIE using GV.
1091DIE *DwarfDebug::CreateGlobalVariableDIE(CompileUnit *DW_Unit,
1092                                         const DIGlobalVariable &GV) {
1093  DIE *GVDie = new DIE(dwarf::DW_TAG_variable);
1094  AddString(GVDie, dwarf::DW_AT_name, dwarf::DW_FORM_string,
1095            GV.getDisplayName());
1096
1097  const char *LinkageName = GV.getLinkageName();
1098  if (LinkageName) {
1099    // Skip special LLVM prefix that is used to inform the asm printer to not
1100    // emit usual symbol prefix before the symbol name. This happens for
1101    // Objective-C symbol names and symbol whose name is replaced using GCC's
1102    // __asm__ attribute.
1103    if (LinkageName[0] == 1)
1104      LinkageName = &LinkageName[1];
1105    AddString(GVDie, dwarf::DW_AT_MIPS_linkage_name, dwarf::DW_FORM_string,
1106              LinkageName);
1107  }
1108  AddType(DW_Unit, GVDie, GV.getType());
1109  if (!GV.isLocalToUnit())
1110    AddUInt(GVDie, dwarf::DW_AT_external, dwarf::DW_FORM_flag, 1);
1111  AddSourceLine(GVDie, &GV);
1112
1113  // Add address.
1114  DIEBlock *Block = new DIEBlock();
1115  AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_addr);
1116  AddObjectLabel(Block, 0, dwarf::DW_FORM_udata,
1117                 Asm->Mang->getMangledName(GV.getGlobal()));
1118  AddBlock(GVDie, dwarf::DW_AT_location, 0, Block);
1119
1120  return GVDie;
1121}
1122
1123/// CreateMemberDIE - Create new member DIE.
1124DIE *DwarfDebug::CreateMemberDIE(CompileUnit *DW_Unit, const DIDerivedType &DT){
1125  DIE *MemberDie = new DIE(DT.getTag());
1126  if (const char *Name = DT.getName())
1127    AddString(MemberDie, dwarf::DW_AT_name, dwarf::DW_FORM_string, Name);
1128
1129  AddType(DW_Unit, MemberDie, DT.getTypeDerivedFrom());
1130
1131  AddSourceLine(MemberDie, &DT);
1132
1133  uint64_t Size = DT.getSizeInBits();
1134  uint64_t FieldSize = DT.getOriginalTypeSize();
1135
1136  if (Size != FieldSize) {
1137    // Handle bitfield.
1138    AddUInt(MemberDie, dwarf::DW_AT_byte_size, 0, DT.getOriginalTypeSize()>>3);
1139    AddUInt(MemberDie, dwarf::DW_AT_bit_size, 0, DT.getSizeInBits());
1140
1141    uint64_t Offset = DT.getOffsetInBits();
1142    uint64_t FieldOffset = Offset;
1143    uint64_t AlignMask = ~(DT.getAlignInBits() - 1);
1144    uint64_t HiMark = (Offset + FieldSize) & AlignMask;
1145    FieldOffset = (HiMark - FieldSize);
1146    Offset -= FieldOffset;
1147
1148    // Maybe we need to work from the other end.
1149    if (TD->isLittleEndian()) Offset = FieldSize - (Offset + Size);
1150    AddUInt(MemberDie, dwarf::DW_AT_bit_offset, 0, Offset);
1151  }
1152
1153  DIEBlock *Block = new DIEBlock();
1154  AddUInt(Block, 0, dwarf::DW_FORM_data1, dwarf::DW_OP_plus_uconst);
1155  AddUInt(Block, 0, dwarf::DW_FORM_udata, DT.getOffsetInBits() >> 3);
1156  AddBlock(MemberDie, dwarf::DW_AT_data_member_location, 0, Block);
1157
1158  if (DT.isProtected())
1159    AddUInt(MemberDie, dwarf::DW_AT_accessibility, 0,
1160            dwarf::DW_ACCESS_protected);
1161  else if (DT.isPrivate())
1162    AddUInt(MemberDie, dwarf::DW_AT_accessibility, 0,
1163            dwarf::DW_ACCESS_private);
1164
1165  return MemberDie;
1166}
1167
1168/// CreateSubprogramDIE - Create new DIE using SP.
1169DIE *DwarfDebug::CreateSubprogramDIE(CompileUnit *DW_Unit,
1170                                     const DISubprogram &SP,
1171                                     bool IsConstructor,
1172                                     bool IsInlined) {
1173  DIE *SPDie = new DIE(dwarf::DW_TAG_subprogram);
1174
1175  const char * Name = SP.getName();
1176  AddString(SPDie, dwarf::DW_AT_name, dwarf::DW_FORM_string, Name);
1177
1178  const char *LinkageName = SP.getLinkageName();
1179  if (LinkageName) {
1180    // Skip special LLVM prefix that is used to inform the asm printer to not emit
1181    // usual symbol prefix before the symbol name. This happens for Objective-C
1182    // symbol names and symbol whose name is replaced using GCC's __asm__ attribute.
1183    if (LinkageName[0] == 1)
1184      LinkageName = &LinkageName[1];
1185    AddString(SPDie, dwarf::DW_AT_MIPS_linkage_name, dwarf::DW_FORM_string,
1186              LinkageName);
1187  }
1188  AddSourceLine(SPDie, &SP);
1189
1190  DICompositeType SPTy = SP.getType();
1191  DIArray Args = SPTy.getTypeArray();
1192
1193  // Add prototyped tag, if C or ObjC.
1194  unsigned Lang = SP.getCompileUnit().getLanguage();
1195  if (Lang == dwarf::DW_LANG_C99 || Lang == dwarf::DW_LANG_C89 ||
1196      Lang == dwarf::DW_LANG_ObjC)
1197    AddUInt(SPDie, dwarf::DW_AT_prototyped, dwarf::DW_FORM_flag, 1);
1198
1199  // Add Return Type.
1200  unsigned SPTag = SPTy.getTag();
1201  if (!IsConstructor) {
1202    if (Args.isNull() || SPTag != dwarf::DW_TAG_subroutine_type)
1203      AddType(DW_Unit, SPDie, SPTy);
1204    else
1205      AddType(DW_Unit, SPDie, DIType(Args.getElement(0).getNode()));
1206  }
1207
1208  if (!SP.isDefinition()) {
1209    AddUInt(SPDie, dwarf::DW_AT_declaration, dwarf::DW_FORM_flag, 1);
1210
1211    // Add arguments. Do not add arguments for subprogram definition. They will
1212    // be handled through RecordVariable.
1213    if (SPTag == dwarf::DW_TAG_subroutine_type)
1214      for (unsigned i = 1, N =  Args.getNumElements(); i < N; ++i) {
1215        DIE *Arg = new DIE(dwarf::DW_TAG_formal_parameter);
1216        AddType(DW_Unit, Arg, DIType(Args.getElement(i).getNode()));
1217        AddUInt(Arg, dwarf::DW_AT_artificial, dwarf::DW_FORM_flag, 1); // ??
1218        SPDie->AddChild(Arg);
1219      }
1220  }
1221
1222  if (!SP.isLocalToUnit() && !IsInlined)
1223    AddUInt(SPDie, dwarf::DW_AT_external, dwarf::DW_FORM_flag, 1);
1224
1225  // DW_TAG_inlined_subroutine may refer to this DIE.
1226  DIE *&Slot = DW_Unit->getDieMapSlotFor(SP.getNode());
1227  Slot = SPDie;
1228  return SPDie;
1229}
1230
1231/// FindCompileUnit - Get the compile unit for the given descriptor.
1232///
1233CompileUnit &DwarfDebug::FindCompileUnit(DICompileUnit Unit) const {
1234  DenseMap<Value *, CompileUnit *>::const_iterator I =
1235    CompileUnitMap.find(Unit.getNode());
1236  assert(I != CompileUnitMap.end() && "Missing compile unit.");
1237  return *I->second;
1238}
1239
1240/// CreateDbgScopeVariable - Create a new scope variable.
1241///
1242DIE *DwarfDebug::CreateDbgScopeVariable(DbgVariable *DV, CompileUnit *Unit) {
1243  // Get the descriptor.
1244  const DIVariable &VD = DV->getVariable();
1245
1246  // Translate tag to proper Dwarf tag.  The result variable is dropped for
1247  // now.
1248  unsigned Tag;
1249  switch (VD.getTag()) {
1250  case dwarf::DW_TAG_return_variable:
1251    return NULL;
1252  case dwarf::DW_TAG_arg_variable:
1253    Tag = dwarf::DW_TAG_formal_parameter;
1254    break;
1255  case dwarf::DW_TAG_auto_variable:    // fall thru
1256  default:
1257    Tag = dwarf::DW_TAG_variable;
1258    break;
1259  }
1260
1261  // Define variable debug information entry.
1262  DIE *VariableDie = new DIE(Tag);
1263  const char *Name = VD.getName();
1264  AddString(VariableDie, dwarf::DW_AT_name, dwarf::DW_FORM_string, Name);
1265
1266  // Add source line info if available.
1267  AddSourceLine(VariableDie, &VD);
1268
1269  // Add variable type.
1270  // FIXME: isBlockByrefVariable should be reformulated in terms of complex addresses instead.
1271  if (VD.isBlockByrefVariable())
1272    AddType(Unit, VariableDie, GetBlockByrefType(VD.getType(), Name));
1273  else
1274    AddType(Unit, VariableDie, VD.getType());
1275
1276  // Add variable address.
1277  if (!DV->isInlinedFnVar()) {
1278    // Variables for abstract instances of inlined functions don't get a
1279    // location.
1280    MachineLocation Location;
1281    Location.set(RI->getFrameRegister(*MF),
1282                 RI->getFrameIndexOffset(*MF, DV->getFrameIndex()));
1283
1284
1285    if (VD.hasComplexAddress())
1286      AddComplexAddress(DV, VariableDie, dwarf::DW_AT_location, Location);
1287    else if (VD.isBlockByrefVariable())
1288      AddBlockByrefAddress(DV, VariableDie, dwarf::DW_AT_location, Location);
1289    else
1290      AddAddress(VariableDie, dwarf::DW_AT_location, Location);
1291  }
1292
1293  return VariableDie;
1294}
1295
1296/// getOrCreateScope - Returns the scope associated with the given descriptor.
1297///
1298DbgScope *DwarfDebug::getDbgScope(MDNode *N, const MachineInstr *MI) {
1299  DbgScope *&Slot = DbgScopeMap[N];
1300  if (Slot) return Slot;
1301
1302  DbgScope *Parent = NULL;
1303
1304  DIDescriptor Scope(N);
1305  if (Scope.isCompileUnit()) {
1306    return NULL;
1307  } else if (Scope.isSubprogram()) {
1308    DISubprogram SP(N);
1309    DIDescriptor ParentDesc = SP.getContext();
1310    if (!ParentDesc.isNull() && !ParentDesc.isCompileUnit())
1311      Parent = getDbgScope(ParentDesc.getNode(), MI);
1312  } else if (Scope.isLexicalBlock()) {
1313    DILexicalBlock DB(N);
1314    DIDescriptor ParentDesc = DB.getContext();
1315    if (!ParentDesc.isNull())
1316      Parent = getDbgScope(ParentDesc.getNode(), MI);
1317  } else
1318    assert (0 && "Unexpected scope info");
1319
1320  Slot = new DbgScope(Parent, DIDescriptor(N));
1321  Slot->setFirstInsn(MI);
1322
1323  if (Parent)
1324    Parent->AddScope(Slot);
1325  else
1326    // First function is top level function.
1327    if (!FunctionDbgScope)
1328      FunctionDbgScope = Slot;
1329
1330  return Slot;
1331}
1332
1333
1334/// getOrCreateScope - Returns the scope associated with the given descriptor.
1335/// FIXME - Remove this method.
1336DbgScope *DwarfDebug::getOrCreateScope(MDNode *N) {
1337  DbgScope *&Slot = DbgScopeMap[N];
1338  if (Slot) return Slot;
1339
1340  DbgScope *Parent = NULL;
1341  DILexicalBlock Block(N);
1342
1343  // Don't create a new scope if we already created one for an inlined function.
1344  DenseMap<const MDNode *, DbgScope *>::iterator
1345    II = AbstractInstanceRootMap.find(N);
1346  if (II != AbstractInstanceRootMap.end())
1347    return LexicalScopeStack.back();
1348
1349  if (!Block.isNull()) {
1350    DIDescriptor ParentDesc = Block.getContext();
1351    Parent =
1352      ParentDesc.isNull() ?  NULL : getOrCreateScope(ParentDesc.getNode());
1353  }
1354
1355  Slot = new DbgScope(Parent, DIDescriptor(N));
1356
1357  if (Parent)
1358    Parent->AddScope(Slot);
1359  else
1360    // First function is top level function.
1361    FunctionDbgScope = Slot;
1362
1363  return Slot;
1364}
1365
1366/// ConstructDbgScope - Construct the components of a scope.
1367///
1368void DwarfDebug::ConstructDbgScope(DbgScope *ParentScope,
1369                                   unsigned ParentStartID,
1370                                   unsigned ParentEndID,
1371                                   DIE *ParentDie, CompileUnit *Unit) {
1372  // Add variables to scope.
1373  SmallVector<DbgVariable *, 8> &Variables = ParentScope->getVariables();
1374  for (unsigned i = 0, N = Variables.size(); i < N; ++i) {
1375    DIE *VariableDie = CreateDbgScopeVariable(Variables[i], Unit);
1376    if (VariableDie) ParentDie->AddChild(VariableDie);
1377  }
1378
1379  // Add concrete instances to scope.
1380  SmallVector<DbgConcreteScope *, 8> &ConcreteInsts =
1381    ParentScope->getConcreteInsts();
1382  for (unsigned i = 0, N = ConcreteInsts.size(); i < N; ++i) {
1383    DbgConcreteScope *ConcreteInst = ConcreteInsts[i];
1384    DIE *Die = ConcreteInst->getDie();
1385
1386    unsigned StartID = ConcreteInst->getStartLabelID();
1387    unsigned EndID = ConcreteInst->getEndLabelID();
1388
1389    // Add the scope bounds.
1390    if (StartID)
1391      AddLabel(Die, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr,
1392               DWLabel("label", StartID));
1393    else
1394      AddLabel(Die, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr,
1395               DWLabel("func_begin", SubprogramCount));
1396
1397    if (EndID)
1398      AddLabel(Die, dwarf::DW_AT_high_pc, dwarf::DW_FORM_addr,
1399               DWLabel("label", EndID));
1400    else
1401      AddLabel(Die, dwarf::DW_AT_high_pc, dwarf::DW_FORM_addr,
1402               DWLabel("func_end", SubprogramCount));
1403
1404    ParentDie->AddChild(Die);
1405  }
1406
1407  // Add nested scopes.
1408  SmallVector<DbgScope *, 4> &Scopes = ParentScope->getScopes();
1409  for (unsigned j = 0, M = Scopes.size(); j < M; ++j) {
1410    // Define the Scope debug information entry.
1411    DbgScope *Scope = Scopes[j];
1412
1413    unsigned StartID = MMI->MappedLabel(Scope->getStartLabelID());
1414    unsigned EndID = MMI->MappedLabel(Scope->getEndLabelID());
1415
1416    // Ignore empty scopes.
1417    if (StartID == EndID && StartID != 0) continue;
1418
1419    // Do not ignore inlined scopes even if they don't have any variables or
1420    // scopes.
1421    if (Scope->getScopes().empty() && Scope->getVariables().empty() &&
1422        Scope->getConcreteInsts().empty())
1423      continue;
1424
1425    if (StartID == ParentStartID && EndID == ParentEndID) {
1426      // Just add stuff to the parent scope.
1427      ConstructDbgScope(Scope, ParentStartID, ParentEndID, ParentDie, Unit);
1428    } else {
1429      DIE *ScopeDie = new DIE(dwarf::DW_TAG_lexical_block);
1430
1431      // Add the scope bounds.
1432      if (StartID)
1433        AddLabel(ScopeDie, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr,
1434                 DWLabel("label", StartID));
1435      else
1436        AddLabel(ScopeDie, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr,
1437                 DWLabel("func_begin", SubprogramCount));
1438
1439      if (EndID)
1440        AddLabel(ScopeDie, dwarf::DW_AT_high_pc, dwarf::DW_FORM_addr,
1441                 DWLabel("label", EndID));
1442      else
1443        AddLabel(ScopeDie, dwarf::DW_AT_high_pc, dwarf::DW_FORM_addr,
1444                 DWLabel("func_end", SubprogramCount));
1445
1446      // Add the scope's contents.
1447      ConstructDbgScope(Scope, StartID, EndID, ScopeDie, Unit);
1448      ParentDie->AddChild(ScopeDie);
1449    }
1450  }
1451}
1452
1453/// ConstructFunctionDbgScope - Construct the scope for the subprogram.
1454///
1455void DwarfDebug::ConstructFunctionDbgScope(DbgScope *RootScope,
1456                                           bool AbstractScope) {
1457  // Exit if there is no root scope.
1458  if (!RootScope) return;
1459  DIDescriptor Desc = RootScope->getDesc();
1460  if (Desc.isNull())
1461    return;
1462
1463  // Get the subprogram debug information entry.
1464  DISubprogram SPD(Desc.getNode());
1465
1466  // Get the subprogram die.
1467  DIE *SPDie = ModuleCU->getDieMapSlotFor(SPD.getNode());
1468  if (!SPDie) {
1469    ConstructSubprogram(SPD.getNode());
1470    SPDie = ModuleCU->getDieMapSlotFor(SPD.getNode());
1471  }
1472  assert(SPDie && "Missing subprogram descriptor");
1473
1474  if (!AbstractScope) {
1475    // Add the function bounds.
1476    AddLabel(SPDie, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr,
1477             DWLabel("func_begin", SubprogramCount));
1478    AddLabel(SPDie, dwarf::DW_AT_high_pc, dwarf::DW_FORM_addr,
1479             DWLabel("func_end", SubprogramCount));
1480    MachineLocation Location(RI->getFrameRegister(*MF));
1481    AddAddress(SPDie, dwarf::DW_AT_frame_base, Location);
1482  }
1483
1484  ConstructDbgScope(RootScope, 0, 0, SPDie, ModuleCU);
1485  // If there are global variables at this scope then add their dies.
1486  for (SmallVector<WeakVH, 4>::iterator SGI = ScopedGVs.begin(),
1487       SGE = ScopedGVs.end(); SGI != SGE; ++SGI) {
1488    MDNode *N = dyn_cast_or_null<MDNode>(*SGI);
1489    if (!N) continue;
1490    DIGlobalVariable GV(N);
1491    if (GV.getContext().getNode() == RootScope->getDesc().getNode()) {
1492      DIE *ScopedGVDie = CreateGlobalVariableDIE(ModuleCU, GV);
1493      SPDie->AddChild(ScopedGVDie);
1494    }
1495  }
1496}
1497
1498/// ConstructDefaultDbgScope - Construct a default scope for the subprogram.
1499///
1500void DwarfDebug::ConstructDefaultDbgScope(MachineFunction *MF) {
1501  StringMap<DIE*> &Globals = ModuleCU->getGlobals();
1502  StringMap<DIE*>::iterator GI = Globals.find(MF->getFunction()->getName());
1503  if (GI != Globals.end()) {
1504    DIE *SPDie = GI->second;
1505
1506    // Add the function bounds.
1507    AddLabel(SPDie, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr,
1508             DWLabel("func_begin", SubprogramCount));
1509    AddLabel(SPDie, dwarf::DW_AT_high_pc, dwarf::DW_FORM_addr,
1510             DWLabel("func_end", SubprogramCount));
1511
1512    MachineLocation Location(RI->getFrameRegister(*MF));
1513    AddAddress(SPDie, dwarf::DW_AT_frame_base, Location);
1514  }
1515}
1516
1517/// GetOrCreateSourceID - Look up the source id with the given directory and
1518/// source file names. If none currently exists, create a new id and insert it
1519/// in the SourceIds map. This can update DirectoryNames and SourceFileNames
1520/// maps as well.
1521unsigned DwarfDebug::GetOrCreateSourceID(const char *DirName,
1522                                         const char *FileName) {
1523  unsigned DId;
1524  StringMap<unsigned>::iterator DI = DirectoryIdMap.find(DirName);
1525  if (DI != DirectoryIdMap.end()) {
1526    DId = DI->getValue();
1527  } else {
1528    DId = DirectoryNames.size() + 1;
1529    DirectoryIdMap[DirName] = DId;
1530    DirectoryNames.push_back(DirName);
1531  }
1532
1533  unsigned FId;
1534  StringMap<unsigned>::iterator FI = SourceFileIdMap.find(FileName);
1535  if (FI != SourceFileIdMap.end()) {
1536    FId = FI->getValue();
1537  } else {
1538    FId = SourceFileNames.size() + 1;
1539    SourceFileIdMap[FileName] = FId;
1540    SourceFileNames.push_back(FileName);
1541  }
1542
1543  DenseMap<std::pair<unsigned, unsigned>, unsigned>::iterator SI =
1544    SourceIdMap.find(std::make_pair(DId, FId));
1545  if (SI != SourceIdMap.end())
1546    return SI->second;
1547
1548  unsigned SrcId = SourceIds.size() + 1;  // DW_AT_decl_file cannot be 0.
1549  SourceIdMap[std::make_pair(DId, FId)] = SrcId;
1550  SourceIds.push_back(std::make_pair(DId, FId));
1551
1552  return SrcId;
1553}
1554
1555void DwarfDebug::ConstructCompileUnit(MDNode *N) {
1556  DICompileUnit DIUnit(N);
1557  const char *FN = DIUnit.getFilename();
1558  const char *Dir = DIUnit.getDirectory();
1559  unsigned ID = GetOrCreateSourceID(Dir, FN);
1560
1561  DIE *Die = new DIE(dwarf::DW_TAG_compile_unit);
1562  AddSectionOffset(Die, dwarf::DW_AT_stmt_list, dwarf::DW_FORM_data4,
1563                   DWLabel("section_line", 0), DWLabel("section_line", 0),
1564                   false);
1565  AddString(Die, dwarf::DW_AT_producer, dwarf::DW_FORM_string,
1566            DIUnit.getProducer());
1567  AddUInt(Die, dwarf::DW_AT_language, dwarf::DW_FORM_data1,
1568          DIUnit.getLanguage());
1569  AddString(Die, dwarf::DW_AT_name, dwarf::DW_FORM_string, FN);
1570
1571  if (Dir)
1572    AddString(Die, dwarf::DW_AT_comp_dir, dwarf::DW_FORM_string, Dir);
1573  if (DIUnit.isOptimized())
1574    AddUInt(Die, dwarf::DW_AT_APPLE_optimized, dwarf::DW_FORM_flag, 1);
1575
1576  if (const char *Flags = DIUnit.getFlags())
1577    AddString(Die, dwarf::DW_AT_APPLE_flags, dwarf::DW_FORM_string, Flags);
1578
1579  unsigned RVer = DIUnit.getRunTimeVersion();
1580  if (RVer)
1581    AddUInt(Die, dwarf::DW_AT_APPLE_major_runtime_vers,
1582            dwarf::DW_FORM_data1, RVer);
1583
1584  CompileUnit *Unit = new CompileUnit(ID, Die);
1585  if (!ModuleCU && DIUnit.isMain()) {
1586    // Use first compile unit marked as isMain as the compile unit
1587    // for this module.
1588    ModuleCU = Unit;
1589  }
1590
1591  CompileUnitMap[DIUnit.getNode()] = Unit;
1592  CompileUnits.push_back(Unit);
1593}
1594
1595void DwarfDebug::ConstructGlobalVariableDIE(MDNode *N) {
1596  DIGlobalVariable DI_GV(N);
1597
1598  // If debug information is malformed then ignore it.
1599  if (DI_GV.Verify() == false)
1600    return;
1601
1602  // Check for pre-existence.
1603  DIE *&Slot = ModuleCU->getDieMapSlotFor(DI_GV.getNode());
1604  if (Slot)
1605    return;
1606
1607  DIE *VariableDie = CreateGlobalVariableDIE(ModuleCU, DI_GV);
1608
1609  // Add to map.
1610  Slot = VariableDie;
1611
1612  // Add to context owner.
1613  ModuleCU->getDie()->AddChild(VariableDie);
1614
1615  // Expose as global. FIXME - need to check external flag.
1616  ModuleCU->AddGlobal(DI_GV.getName(), VariableDie);
1617  return;
1618}
1619
1620void DwarfDebug::ConstructSubprogram(MDNode *N) {
1621  DISubprogram SP(N);
1622
1623  // Check for pre-existence.
1624  DIE *&Slot = ModuleCU->getDieMapSlotFor(N);
1625  if (Slot)
1626    return;
1627
1628  if (!SP.isDefinition())
1629    // This is a method declaration which will be handled while constructing
1630    // class type.
1631    return;
1632
1633  DIE *SubprogramDie = CreateSubprogramDIE(ModuleCU, SP);
1634
1635  // Add to map.
1636  Slot = SubprogramDie;
1637
1638  // Add to context owner.
1639  ModuleCU->getDie()->AddChild(SubprogramDie);
1640
1641  // Expose as global.
1642  ModuleCU->AddGlobal(SP.getName(), SubprogramDie);
1643  return;
1644}
1645
1646/// BeginModule - Emit all Dwarf sections that should come prior to the
1647/// content. Create global DIEs and emit initial debug info sections.
1648/// This is inovked by the target AsmPrinter.
1649void DwarfDebug::BeginModule(Module *M, MachineModuleInfo *mmi) {
1650  this->M = M;
1651
1652  if (TimePassesIsEnabled)
1653    DebugTimer->startTimer();
1654
1655  DebugInfoFinder DbgFinder;
1656  DbgFinder.processModule(*M);
1657
1658  // Create all the compile unit DIEs.
1659  for (DebugInfoFinder::iterator I = DbgFinder.compile_unit_begin(),
1660         E = DbgFinder.compile_unit_end(); I != E; ++I)
1661    ConstructCompileUnit(*I);
1662
1663  if (CompileUnits.empty()) {
1664    if (TimePassesIsEnabled)
1665      DebugTimer->stopTimer();
1666
1667    return;
1668  }
1669
1670  // If main compile unit for this module is not seen than randomly
1671  // select first compile unit.
1672  if (!ModuleCU)
1673    ModuleCU = CompileUnits[0];
1674
1675  // Create DIEs for each of the externally visible global variables.
1676  for (DebugInfoFinder::iterator I = DbgFinder.global_variable_begin(),
1677         E = DbgFinder.global_variable_end(); I != E; ++I) {
1678    DIGlobalVariable GV(*I);
1679    if (GV.getContext().getNode() != GV.getCompileUnit().getNode())
1680      ScopedGVs.push_back(*I);
1681    else
1682      ConstructGlobalVariableDIE(*I);
1683  }
1684
1685  // Create DIEs for each of the externally visible subprograms.
1686  for (DebugInfoFinder::iterator I = DbgFinder.subprogram_begin(),
1687         E = DbgFinder.subprogram_end(); I != E; ++I)
1688    ConstructSubprogram(*I);
1689
1690  MMI = mmi;
1691  shouldEmit = true;
1692  MMI->setDebugInfoAvailability(true);
1693
1694  // Prime section data.
1695  SectionMap.insert(Asm->getObjFileLowering().getTextSection());
1696
1697  // Print out .file directives to specify files for .loc directives. These are
1698  // printed out early so that they precede any .loc directives.
1699  if (MAI->hasDotLocAndDotFile()) {
1700    for (unsigned i = 1, e = getNumSourceIds()+1; i != e; ++i) {
1701      // Remember source id starts at 1.
1702      std::pair<unsigned, unsigned> Id = getSourceDirectoryAndFileIds(i);
1703      sys::Path FullPath(getSourceDirectoryName(Id.first));
1704      bool AppendOk =
1705        FullPath.appendComponent(getSourceFileName(Id.second));
1706      assert(AppendOk && "Could not append filename to directory!");
1707      AppendOk = false;
1708      Asm->EmitFile(i, FullPath.str());
1709      Asm->EOL();
1710    }
1711  }
1712
1713  // Emit initial sections
1714  EmitInitial();
1715
1716  if (TimePassesIsEnabled)
1717    DebugTimer->stopTimer();
1718}
1719
1720/// EndModule - Emit all Dwarf sections that should come after the content.
1721///
1722void DwarfDebug::EndModule() {
1723  if (!ModuleCU)
1724    return;
1725
1726  if (TimePassesIsEnabled)
1727    DebugTimer->startTimer();
1728
1729  // Standard sections final addresses.
1730  Asm->OutStreamer.SwitchSection(Asm->getObjFileLowering().getTextSection());
1731  EmitLabel("text_end", 0);
1732  Asm->OutStreamer.SwitchSection(Asm->getObjFileLowering().getDataSection());
1733  EmitLabel("data_end", 0);
1734
1735  // End text sections.
1736  for (unsigned i = 1, N = SectionMap.size(); i <= N; ++i) {
1737    Asm->OutStreamer.SwitchSection(SectionMap[i]);
1738    EmitLabel("section_end", i);
1739  }
1740
1741  // Emit common frame information.
1742  EmitCommonDebugFrame();
1743
1744  // Emit function debug frame information
1745  for (std::vector<FunctionDebugFrameInfo>::iterator I = DebugFrames.begin(),
1746         E = DebugFrames.end(); I != E; ++I)
1747    EmitFunctionDebugFrame(*I);
1748
1749  // Compute DIE offsets and sizes.
1750  SizeAndOffsets();
1751
1752  // Emit all the DIEs into a debug info section
1753  EmitDebugInfo();
1754
1755  // Corresponding abbreviations into a abbrev section.
1756  EmitAbbreviations();
1757
1758  // Emit source line correspondence into a debug line section.
1759  EmitDebugLines();
1760
1761  // Emit info into a debug pubnames section.
1762  EmitDebugPubNames();
1763
1764  // Emit info into a debug str section.
1765  EmitDebugStr();
1766
1767  // Emit info into a debug loc section.
1768  EmitDebugLoc();
1769
1770  // Emit info into a debug aranges section.
1771  EmitDebugARanges();
1772
1773  // Emit info into a debug ranges section.
1774  EmitDebugRanges();
1775
1776  // Emit info into a debug macinfo section.
1777  EmitDebugMacInfo();
1778
1779  // Emit inline info.
1780  EmitDebugInlineInfo();
1781
1782  if (TimePassesIsEnabled)
1783    DebugTimer->stopTimer();
1784}
1785
1786/// CollectVariableInfo - Populate DbgScope entries with variables' info.
1787bool DwarfDebug::CollectVariableInfo() {
1788  if (!MMI) return false;
1789  bool ArgsCollected = false;
1790  MachineModuleInfo::VariableDbgInfoMapTy &VMap = MMI->getVariableDbgInfo();
1791  for (MachineModuleInfo::VariableDbgInfoMapTy::iterator VI = VMap.begin(),
1792         VE = VMap.end(); VI != VE; ++VI) {
1793    MDNode *Var = VI->first;
1794    DIVariable DV (Var);
1795    if (DV.isNull()) continue;
1796    if (DV.getTag() == dwarf::DW_TAG_arg_variable)
1797      ArgsCollected = true;
1798    DILocation VLoc(VI->second.first);
1799    unsigned VSlot = VI->second.second;
1800    DbgScope *Scope = getDbgScope(VLoc.getScope().getNode(), NULL);
1801    Scope->AddVariable(new DbgVariable(DV, VSlot, false));
1802  }
1803  return ArgsCollected;
1804}
1805
1806/// SetDbgScopeBeginLabels - Update DbgScope begin labels for the scopes that
1807/// start with this machine instruction.
1808void DwarfDebug::SetDbgScopeBeginLabels(const MachineInstr *MI, unsigned Label) {
1809  InsnToDbgScopeMapTy::iterator I = DbgScopeBeginMap.find(MI);
1810  if (I == DbgScopeBeginMap.end())
1811    return;
1812  SmallVector<DbgScope *, 2> &SD = I->second;
1813  for (SmallVector<DbgScope *, 2>::iterator SDI = SD.begin(), SDE = SD.end();
1814       SDI != SDE; ++SDI)
1815    (*SDI)->setStartLabelID(Label);
1816}
1817
1818/// SetDbgScopeEndLabels - Update DbgScope end labels for the scopes that
1819/// end with this machine instruction.
1820void DwarfDebug::SetDbgScopeEndLabels(const MachineInstr *MI, unsigned Label) {
1821  InsnToDbgScopeMapTy::iterator I = DbgScopeEndMap.find(MI);
1822  if (I == DbgScopeEndMap.end())
1823    return;
1824  SmallVector<DbgScope *, 2> &SD = I->second;
1825  for (SmallVector<DbgScope *, 2>::iterator SDI = SD.begin(), SDE = SD.end();
1826       SDI != SDE; ++SDI)
1827    (*SDI)->setEndLabelID(Label);
1828}
1829
1830/// ExtractScopeInformation - Scan machine instructions in this function
1831/// and collect DbgScopes. Return true, if atleast one scope was found.
1832bool DwarfDebug::ExtractScopeInformation(MachineFunction *MF) {
1833  // If scope information was extracted using .dbg intrinsics then there is not
1834  // any need to extract these information by scanning each instruction.
1835  if (!DbgScopeMap.empty())
1836    return false;
1837
1838  // Scan each instruction and create scopes.
1839  for (MachineFunction::const_iterator I = MF->begin(), E = MF->end();
1840       I != E; ++I) {
1841    for (MachineBasicBlock::const_iterator II = I->begin(), IE = I->end();
1842         II != IE; ++II) {
1843      const MachineInstr *MInsn = II;
1844      DebugLoc DL = MInsn->getDebugLoc();
1845      if (DL.isUnknown())
1846        continue;
1847      DebugLocTuple DLT = MF->getDebugLocTuple(DL);
1848      if (!DLT.CompileUnit)
1849        continue;
1850      // There is no need to create another DIE for compile unit. For all
1851      // other scopes, create one DbgScope now. This will be translated
1852      // into a scope DIE at the end.
1853      DIDescriptor D(DLT.CompileUnit);
1854      if (!D.isCompileUnit()) {
1855        DbgScope *Scope = getDbgScope(DLT.CompileUnit, MInsn);
1856        Scope->setLastInsn(MInsn);
1857      }
1858    }
1859  }
1860
1861  // If a scope's last instruction is not set then use its child scope's
1862  // last instruction as this scope's last instrunction.
1863  for (DenseMap<MDNode *, DbgScope *>::iterator DI = DbgScopeMap.begin(),
1864	 DE = DbgScopeMap.end(); DI != DE; ++DI) {
1865    assert (DI->second->getFirstInsn() && "Invalid first instruction!");
1866    DI->second->FixInstructionMarkers();
1867    assert (DI->second->getLastInsn() && "Invalid last instruction!");
1868  }
1869
1870  // Each scope has first instruction and last instruction to mark beginning
1871  // and end of a scope respectively. Create an inverse map that list scopes
1872  // starts (and ends) with an instruction. One instruction may start (or end)
1873  // multiple scopes.
1874  for (DenseMap<MDNode *, DbgScope *>::iterator DI = DbgScopeMap.begin(),
1875	 DE = DbgScopeMap.end(); DI != DE; ++DI) {
1876    DbgScope *S = DI->second;
1877    assert (S && "DbgScope is missing!");
1878    const MachineInstr *MI = S->getFirstInsn();
1879    assert (MI && "DbgScope does not have first instruction!");
1880
1881    InsnToDbgScopeMapTy::iterator IDI = DbgScopeBeginMap.find(MI);
1882    if (IDI != DbgScopeBeginMap.end())
1883      IDI->second.push_back(S);
1884    else
1885      DbgScopeBeginMap.insert(std::make_pair(MI,
1886                                             SmallVector<DbgScope *, 2>(2, S)));
1887
1888    MI = S->getLastInsn();
1889    assert (MI && "DbgScope does not have last instruction!");
1890    IDI = DbgScopeEndMap.find(MI);
1891    if (IDI != DbgScopeEndMap.end())
1892      IDI->second.push_back(S);
1893    else
1894      DbgScopeEndMap.insert(std::make_pair(MI,
1895                                             SmallVector<DbgScope *, 2>(2, S)));
1896  }
1897
1898  return !DbgScopeMap.empty();
1899}
1900
1901/// BeginFunction - Gather pre-function debug information.  Assumes being
1902/// emitted immediately after the function entry point.
1903void DwarfDebug::BeginFunction(MachineFunction *MF) {
1904  this->MF = MF;
1905
1906  if (!ShouldEmitDwarfDebug()) return;
1907
1908  if (TimePassesIsEnabled)
1909    DebugTimer->startTimer();
1910
1911#ifdef ATTACH_DEBUG_INFO_TO_AN_INSN
1912  if (!ExtractScopeInformation(MF))
1913    return;
1914  bool ArgsCollected = CollectVariableInfo();
1915#endif
1916
1917  // Begin accumulating function debug information.
1918  MMI->BeginFunction(MF);
1919
1920  // Assumes in correct section after the entry point.
1921  EmitLabel("func_begin", ++SubprogramCount);
1922
1923  // Emit label for the implicitly defined dbg.stoppoint at the start of the
1924  // function.
1925#ifdef ATTACH_DEBUG_INFO_TO_AN_INSN
1926  if (!ArgsCollected) {
1927#else
1928  if (1) {
1929#endif
1930    DebugLoc FDL = MF->getDefaultDebugLoc();
1931    if (!FDL.isUnknown()) {
1932      DebugLocTuple DLT = MF->getDebugLocTuple(FDL);
1933      unsigned LabelID = RecordSourceLine(DLT.Line, DLT.Col, DLT.CompileUnit);
1934      Asm->printLabel(LabelID);
1935      O << '\n';
1936    }
1937  }
1938  if (TimePassesIsEnabled)
1939    DebugTimer->stopTimer();
1940}
1941
1942/// EndFunction - Gather and emit post-function debug information.
1943///
1944void DwarfDebug::EndFunction(MachineFunction *MF) {
1945  if (!ShouldEmitDwarfDebug()) return;
1946
1947  if (TimePassesIsEnabled)
1948    DebugTimer->startTimer();
1949
1950  // Define end label for subprogram.
1951  EmitLabel("func_end", SubprogramCount);
1952
1953  // Get function line info.
1954  if (!Lines.empty()) {
1955    // Get section line info.
1956    unsigned ID = SectionMap.insert(Asm->getCurrentSection());
1957    if (SectionSourceLines.size() < ID) SectionSourceLines.resize(ID);
1958    std::vector<SrcLineInfo> &SectionLineInfos = SectionSourceLines[ID-1];
1959    // Append the function info to section info.
1960    SectionLineInfos.insert(SectionLineInfos.end(),
1961                            Lines.begin(), Lines.end());
1962  }
1963
1964  // Construct the DbgScope for abstract instances.
1965  for (SmallVector<DbgScope *, 32>::iterator
1966         I = AbstractInstanceRootList.begin(),
1967         E = AbstractInstanceRootList.end(); I != E; ++I)
1968    ConstructFunctionDbgScope(*I);
1969
1970  // Construct scopes for subprogram.
1971  if (FunctionDbgScope)
1972    ConstructFunctionDbgScope(FunctionDbgScope);
1973  else
1974    // FIXME: This is wrong. We are essentially getting past a problem with
1975    // debug information not being able to handle unreachable blocks that have
1976    // debug information in them. In particular, those unreachable blocks that
1977    // have "region end" info in them. That situation results in the "root
1978    // scope" not being created. If that's the case, then emit a "default"
1979    // scope, i.e., one that encompasses the whole function. This isn't
1980    // desirable. And a better way of handling this (and all of the debugging
1981    // information) needs to be explored.
1982    ConstructDefaultDbgScope(MF);
1983
1984  DebugFrames.push_back(FunctionDebugFrameInfo(SubprogramCount,
1985                                               MMI->getFrameMoves()));
1986
1987  // Clear debug info
1988  if (FunctionDbgScope) {
1989    delete FunctionDbgScope;
1990    DbgScopeMap.clear();
1991    DbgScopeBeginMap.clear();
1992    DbgScopeEndMap.clear();
1993    DbgAbstractScopeMap.clear();
1994    DbgConcreteScopeMap.clear();
1995    FunctionDbgScope = NULL;
1996    LexicalScopeStack.clear();
1997    AbstractInstanceRootList.clear();
1998    AbstractInstanceRootMap.clear();
1999  }
2000
2001  Lines.clear();
2002
2003  if (TimePassesIsEnabled)
2004    DebugTimer->stopTimer();
2005}
2006
2007/// RecordSourceLine - Records location information and associates it with a
2008/// label. Returns a unique label ID used to generate a label and provide
2009/// correspondence to the source line list.
2010unsigned DwarfDebug::RecordSourceLine(unsigned Line, unsigned Col,
2011                                      MDNode *S) {
2012  if (!MMI)
2013    return 0;
2014
2015  if (TimePassesIsEnabled)
2016    DebugTimer->startTimer();
2017
2018  const char *Dir = NULL;
2019  const char *Fn = NULL;
2020
2021  DIDescriptor Scope(S);
2022  if (Scope.isCompileUnit()) {
2023    DICompileUnit CU(S);
2024    Dir = CU.getDirectory();
2025    Fn = CU.getFilename();
2026  } else if (Scope.isSubprogram()) {
2027    DISubprogram SP(S);
2028    Dir = SP.getDirectory();
2029    Fn = SP.getFilename();
2030  } else if (Scope.isLexicalBlock()) {
2031    DILexicalBlock DB(S);
2032    Dir = DB.getDirectory();
2033    Fn = DB.getFilename();
2034  } else
2035    assert (0 && "Unexpected scope info");
2036
2037  unsigned Src = GetOrCreateSourceID(Dir, Fn);
2038  unsigned ID = MMI->NextLabelID();
2039  Lines.push_back(SrcLineInfo(Line, Col, Src, ID));
2040
2041  if (TimePassesIsEnabled)
2042    DebugTimer->stopTimer();
2043
2044  return ID;
2045}
2046
2047/// getOrCreateSourceID - Public version of GetOrCreateSourceID. This can be
2048/// timed. Look up the source id with the given directory and source file
2049/// names. If none currently exists, create a new id and insert it in the
2050/// SourceIds map. This can update DirectoryNames and SourceFileNames maps as
2051/// well.
2052unsigned DwarfDebug::getOrCreateSourceID(const std::string &DirName,
2053                                         const std::string &FileName) {
2054  if (TimePassesIsEnabled)
2055    DebugTimer->startTimer();
2056
2057  unsigned SrcId = GetOrCreateSourceID(DirName.c_str(), FileName.c_str());
2058
2059  if (TimePassesIsEnabled)
2060    DebugTimer->stopTimer();
2061
2062  return SrcId;
2063}
2064
2065/// RecordRegionStart - Indicate the start of a region.
2066unsigned DwarfDebug::RecordRegionStart(MDNode *N) {
2067  if (TimePassesIsEnabled)
2068    DebugTimer->startTimer();
2069
2070  DbgScope *Scope = getOrCreateScope(N);
2071  unsigned ID = MMI->NextLabelID();
2072  if (!Scope->getStartLabelID()) Scope->setStartLabelID(ID);
2073  LexicalScopeStack.push_back(Scope);
2074
2075  if (TimePassesIsEnabled)
2076    DebugTimer->stopTimer();
2077
2078  return ID;
2079}
2080
2081/// RecordRegionEnd - Indicate the end of a region.
2082unsigned DwarfDebug::RecordRegionEnd(MDNode *N) {
2083  if (TimePassesIsEnabled)
2084    DebugTimer->startTimer();
2085
2086  DbgScope *Scope = getOrCreateScope(N);
2087  unsigned ID = MMI->NextLabelID();
2088  Scope->setEndLabelID(ID);
2089  // FIXME : region.end() may not be in the last basic block.
2090  // For now, do not pop last lexical scope because next basic
2091  // block may start new inlined function's body.
2092  unsigned LSSize = LexicalScopeStack.size();
2093  if (LSSize != 0 && LSSize != 1)
2094    LexicalScopeStack.pop_back();
2095
2096  if (TimePassesIsEnabled)
2097    DebugTimer->stopTimer();
2098
2099  return ID;
2100}
2101
2102/// RecordVariable - Indicate the declaration of a local variable.
2103void DwarfDebug::RecordVariable(MDNode *N, unsigned FrameIndex) {
2104  if (TimePassesIsEnabled)
2105    DebugTimer->startTimer();
2106
2107  DIDescriptor Desc(N);
2108  DbgScope *Scope = NULL;
2109  bool InlinedFnVar = false;
2110
2111  if (Desc.getTag() == dwarf::DW_TAG_variable)
2112    Scope = getOrCreateScope(DIGlobalVariable(N).getContext().getNode());
2113  else {
2114    bool InlinedVar = false;
2115    MDNode *Context = DIVariable(N).getContext().getNode();
2116    DISubprogram SP(Context);
2117    if (!SP.isNull()) {
2118      // SP is inserted into DbgAbstractScopeMap when inlined function
2119      // start was recorded by RecordInlineFnStart.
2120      DenseMap<MDNode *, DbgScope *>::iterator
2121        I = DbgAbstractScopeMap.find(SP.getNode());
2122      if (I != DbgAbstractScopeMap.end()) {
2123        InlinedVar = true;
2124        Scope = I->second;
2125      }
2126    }
2127    if (!InlinedVar)
2128      Scope = getOrCreateScope(Context);
2129  }
2130
2131  assert(Scope && "Unable to find the variable's scope");
2132  DbgVariable *DV = new DbgVariable(DIVariable(N), FrameIndex, InlinedFnVar);
2133  Scope->AddVariable(DV);
2134
2135  if (TimePassesIsEnabled)
2136    DebugTimer->stopTimer();
2137}
2138
2139//// RecordInlinedFnStart - Indicate the start of inlined subroutine.
2140unsigned DwarfDebug::RecordInlinedFnStart(DISubprogram &SP, DICompileUnit CU,
2141                                          unsigned Line, unsigned Col) {
2142  unsigned LabelID = MMI->NextLabelID();
2143
2144  if (!MAI->doesDwarfUsesInlineInfoSection())
2145    return LabelID;
2146
2147  if (TimePassesIsEnabled)
2148    DebugTimer->startTimer();
2149
2150  MDNode *Node = SP.getNode();
2151  DenseMap<const MDNode *, DbgScope *>::iterator
2152    II = AbstractInstanceRootMap.find(Node);
2153
2154  if (II == AbstractInstanceRootMap.end()) {
2155    // Create an abstract instance entry for this inlined function if it doesn't
2156    // already exist.
2157    DbgScope *Scope = new DbgScope(NULL, DIDescriptor(Node));
2158
2159    // Get the compile unit context.
2160    DIE *SPDie = ModuleCU->getDieMapSlotFor(Node);
2161    if (!SPDie)
2162      SPDie = CreateSubprogramDIE(ModuleCU, SP, false, true);
2163
2164    // Mark as being inlined. This makes this subprogram entry an abstract
2165    // instance root.
2166    // FIXME: Our debugger doesn't care about the value of DW_AT_inline, only
2167    // that it's defined. That probably won't change in the future. However,
2168    // this could be more elegant.
2169    AddUInt(SPDie, dwarf::DW_AT_inline, 0, dwarf::DW_INL_declared_not_inlined);
2170
2171    // Keep track of the abstract scope for this function.
2172    DbgAbstractScopeMap[Node] = Scope;
2173
2174    AbstractInstanceRootMap[Node] = Scope;
2175    AbstractInstanceRootList.push_back(Scope);
2176  }
2177
2178  // Create a concrete inlined instance for this inlined function.
2179  DbgConcreteScope *ConcreteScope = new DbgConcreteScope(DIDescriptor(Node));
2180  DIE *ScopeDie = new DIE(dwarf::DW_TAG_inlined_subroutine);
2181  ScopeDie->setAbstractCompileUnit(ModuleCU);
2182
2183  DIE *Origin = ModuleCU->getDieMapSlotFor(Node);
2184  AddDIEEntry(ScopeDie, dwarf::DW_AT_abstract_origin,
2185              dwarf::DW_FORM_ref4, Origin);
2186  AddUInt(ScopeDie, dwarf::DW_AT_call_file, 0, ModuleCU->getID());
2187  AddUInt(ScopeDie, dwarf::DW_AT_call_line, 0, Line);
2188  AddUInt(ScopeDie, dwarf::DW_AT_call_column, 0, Col);
2189
2190  ConcreteScope->setDie(ScopeDie);
2191  ConcreteScope->setStartLabelID(LabelID);
2192  MMI->RecordUsedDbgLabel(LabelID);
2193
2194  LexicalScopeStack.back()->AddConcreteInst(ConcreteScope);
2195
2196  // Keep track of the concrete scope that's inlined into this function.
2197  DenseMap<MDNode *, SmallVector<DbgScope *, 8> >::iterator
2198    SI = DbgConcreteScopeMap.find(Node);
2199
2200  if (SI == DbgConcreteScopeMap.end())
2201    DbgConcreteScopeMap[Node].push_back(ConcreteScope);
2202  else
2203    SI->second.push_back(ConcreteScope);
2204
2205  // Track the start label for this inlined function.
2206  DenseMap<MDNode *, SmallVector<unsigned, 4> >::iterator
2207    I = InlineInfo.find(Node);
2208
2209  if (I == InlineInfo.end())
2210    InlineInfo[Node].push_back(LabelID);
2211  else
2212    I->second.push_back(LabelID);
2213
2214  if (TimePassesIsEnabled)
2215    DebugTimer->stopTimer();
2216
2217  return LabelID;
2218}
2219
2220/// RecordInlinedFnEnd - Indicate the end of inlined subroutine.
2221unsigned DwarfDebug::RecordInlinedFnEnd(DISubprogram &SP) {
2222  if (!MAI->doesDwarfUsesInlineInfoSection())
2223    return 0;
2224
2225  if (TimePassesIsEnabled)
2226    DebugTimer->startTimer();
2227
2228  MDNode *Node = SP.getNode();
2229  DenseMap<MDNode *, SmallVector<DbgScope *, 8> >::iterator
2230    I = DbgConcreteScopeMap.find(Node);
2231
2232  if (I == DbgConcreteScopeMap.end()) {
2233    // FIXME: Can this situation actually happen? And if so, should it?
2234    if (TimePassesIsEnabled)
2235      DebugTimer->stopTimer();
2236
2237    return 0;
2238  }
2239
2240  SmallVector<DbgScope *, 8> &Scopes = I->second;
2241  if (Scopes.empty()) {
2242    // Returned ID is 0 if this is unbalanced "end of inlined
2243    // scope". This could happen if optimizer eats dbg intrinsics
2244    // or "beginning of inlined scope" is not recoginized due to
2245    // missing location info. In such cases, ignore this region.end.
2246    return 0;
2247  }
2248
2249  DbgScope *Scope = Scopes.back(); Scopes.pop_back();
2250  unsigned ID = MMI->NextLabelID();
2251  MMI->RecordUsedDbgLabel(ID);
2252  Scope->setEndLabelID(ID);
2253
2254  if (TimePassesIsEnabled)
2255    DebugTimer->stopTimer();
2256
2257  return ID;
2258}
2259
2260//===----------------------------------------------------------------------===//
2261// Emit Methods
2262//===----------------------------------------------------------------------===//
2263
2264/// SizeAndOffsetDie - Compute the size and offset of a DIE.
2265///
2266unsigned DwarfDebug::SizeAndOffsetDie(DIE *Die, unsigned Offset, bool Last) {
2267  // Get the children.
2268  const std::vector<DIE *> &Children = Die->getChildren();
2269
2270  // If not last sibling and has children then add sibling offset attribute.
2271  if (!Last && !Children.empty()) Die->AddSiblingOffset();
2272
2273  // Record the abbreviation.
2274  AssignAbbrevNumber(Die->getAbbrev());
2275
2276  // Get the abbreviation for this DIE.
2277  unsigned AbbrevNumber = Die->getAbbrevNumber();
2278  const DIEAbbrev *Abbrev = Abbreviations[AbbrevNumber - 1];
2279
2280  // Set DIE offset
2281  Die->setOffset(Offset);
2282
2283  // Start the size with the size of abbreviation code.
2284  Offset += MCAsmInfo::getULEB128Size(AbbrevNumber);
2285
2286  const SmallVector<DIEValue*, 32> &Values = Die->getValues();
2287  const SmallVector<DIEAbbrevData, 8> &AbbrevData = Abbrev->getData();
2288
2289  // Size the DIE attribute values.
2290  for (unsigned i = 0, N = Values.size(); i < N; ++i)
2291    // Size attribute value.
2292    Offset += Values[i]->SizeOf(TD, AbbrevData[i].getForm());
2293
2294  // Size the DIE children if any.
2295  if (!Children.empty()) {
2296    assert(Abbrev->getChildrenFlag() == dwarf::DW_CHILDREN_yes &&
2297           "Children flag not set");
2298
2299    for (unsigned j = 0, M = Children.size(); j < M; ++j)
2300      Offset = SizeAndOffsetDie(Children[j], Offset, (j + 1) == M);
2301
2302    // End of children marker.
2303    Offset += sizeof(int8_t);
2304  }
2305
2306  Die->setSize(Offset - Die->getOffset());
2307  return Offset;
2308}
2309
2310/// SizeAndOffsets - Compute the size and offset of all the DIEs.
2311///
2312void DwarfDebug::SizeAndOffsets() {
2313  // Compute size of compile unit header.
2314  static unsigned Offset =
2315    sizeof(int32_t) + // Length of Compilation Unit Info
2316    sizeof(int16_t) + // DWARF version number
2317    sizeof(int32_t) + // Offset Into Abbrev. Section
2318    sizeof(int8_t);   // Pointer Size (in bytes)
2319
2320  SizeAndOffsetDie(ModuleCU->getDie(), Offset, true);
2321  CompileUnitOffsets[ModuleCU] = 0;
2322}
2323
2324/// EmitInitial - Emit initial Dwarf declarations.  This is necessary for cc
2325/// tools to recognize the object file contains Dwarf information.
2326void DwarfDebug::EmitInitial() {
2327  // Check to see if we already emitted intial headers.
2328  if (didInitial) return;
2329  didInitial = true;
2330
2331  const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering();
2332
2333  // Dwarf sections base addresses.
2334  if (MAI->doesDwarfRequireFrameSection()) {
2335    Asm->OutStreamer.SwitchSection(TLOF.getDwarfFrameSection());
2336    EmitLabel("section_debug_frame", 0);
2337  }
2338
2339  Asm->OutStreamer.SwitchSection(TLOF.getDwarfInfoSection());
2340  EmitLabel("section_info", 0);
2341  Asm->OutStreamer.SwitchSection(TLOF.getDwarfAbbrevSection());
2342  EmitLabel("section_abbrev", 0);
2343  Asm->OutStreamer.SwitchSection(TLOF.getDwarfARangesSection());
2344  EmitLabel("section_aranges", 0);
2345
2346  if (const MCSection *LineInfoDirective = TLOF.getDwarfMacroInfoSection()) {
2347    Asm->OutStreamer.SwitchSection(LineInfoDirective);
2348    EmitLabel("section_macinfo", 0);
2349  }
2350
2351  Asm->OutStreamer.SwitchSection(TLOF.getDwarfLineSection());
2352  EmitLabel("section_line", 0);
2353  Asm->OutStreamer.SwitchSection(TLOF.getDwarfLocSection());
2354  EmitLabel("section_loc", 0);
2355  Asm->OutStreamer.SwitchSection(TLOF.getDwarfPubNamesSection());
2356  EmitLabel("section_pubnames", 0);
2357  Asm->OutStreamer.SwitchSection(TLOF.getDwarfStrSection());
2358  EmitLabel("section_str", 0);
2359  Asm->OutStreamer.SwitchSection(TLOF.getDwarfRangesSection());
2360  EmitLabel("section_ranges", 0);
2361
2362  Asm->OutStreamer.SwitchSection(TLOF.getTextSection());
2363  EmitLabel("text_begin", 0);
2364  Asm->OutStreamer.SwitchSection(TLOF.getDataSection());
2365  EmitLabel("data_begin", 0);
2366}
2367
2368/// EmitDIE - Recusively Emits a debug information entry.
2369///
2370void DwarfDebug::EmitDIE(DIE *Die) {
2371  // Get the abbreviation for this DIE.
2372  unsigned AbbrevNumber = Die->getAbbrevNumber();
2373  const DIEAbbrev *Abbrev = Abbreviations[AbbrevNumber - 1];
2374
2375  Asm->EOL();
2376
2377  // Emit the code (index) for the abbreviation.
2378  Asm->EmitULEB128Bytes(AbbrevNumber);
2379
2380  if (Asm->isVerbose())
2381    Asm->EOL(std::string("Abbrev [" +
2382                         utostr(AbbrevNumber) +
2383                         "] 0x" + utohexstr(Die->getOffset()) +
2384                         ":0x" + utohexstr(Die->getSize()) + " " +
2385                         dwarf::TagString(Abbrev->getTag())));
2386  else
2387    Asm->EOL();
2388
2389  SmallVector<DIEValue*, 32> &Values = Die->getValues();
2390  const SmallVector<DIEAbbrevData, 8> &AbbrevData = Abbrev->getData();
2391
2392  // Emit the DIE attribute values.
2393  for (unsigned i = 0, N = Values.size(); i < N; ++i) {
2394    unsigned Attr = AbbrevData[i].getAttribute();
2395    unsigned Form = AbbrevData[i].getForm();
2396    assert(Form && "Too many attributes for DIE (check abbreviation)");
2397
2398    switch (Attr) {
2399    case dwarf::DW_AT_sibling:
2400      Asm->EmitInt32(Die->SiblingOffset());
2401      break;
2402    case dwarf::DW_AT_abstract_origin: {
2403      DIEEntry *E = cast<DIEEntry>(Values[i]);
2404      DIE *Origin = E->getEntry();
2405      unsigned Addr =
2406        CompileUnitOffsets[Die->getAbstractCompileUnit()] +
2407        Origin->getOffset();
2408
2409      Asm->EmitInt32(Addr);
2410      break;
2411    }
2412    default:
2413      // Emit an attribute using the defined form.
2414      Values[i]->EmitValue(this, Form);
2415      break;
2416    }
2417
2418    Asm->EOL(dwarf::AttributeString(Attr));
2419  }
2420
2421  // Emit the DIE children if any.
2422  if (Abbrev->getChildrenFlag() == dwarf::DW_CHILDREN_yes) {
2423    const std::vector<DIE *> &Children = Die->getChildren();
2424
2425    for (unsigned j = 0, M = Children.size(); j < M; ++j)
2426      EmitDIE(Children[j]);
2427
2428    Asm->EmitInt8(0); Asm->EOL("End Of Children Mark");
2429  }
2430}
2431
2432/// EmitDebugInfo / EmitDebugInfoPerCU - Emit the debug info section.
2433///
2434void DwarfDebug::EmitDebugInfoPerCU(CompileUnit *Unit) {
2435  DIE *Die = Unit->getDie();
2436
2437  // Emit the compile units header.
2438  EmitLabel("info_begin", Unit->getID());
2439
2440  // Emit size of content not including length itself
2441  unsigned ContentSize = Die->getSize() +
2442    sizeof(int16_t) + // DWARF version number
2443    sizeof(int32_t) + // Offset Into Abbrev. Section
2444    sizeof(int8_t) +  // Pointer Size (in bytes)
2445    sizeof(int32_t);  // FIXME - extra pad for gdb bug.
2446
2447  Asm->EmitInt32(ContentSize);  Asm->EOL("Length of Compilation Unit Info");
2448  Asm->EmitInt16(dwarf::DWARF_VERSION); Asm->EOL("DWARF version number");
2449  EmitSectionOffset("abbrev_begin", "section_abbrev", 0, 0, true, false);
2450  Asm->EOL("Offset Into Abbrev. Section");
2451  Asm->EmitInt8(TD->getPointerSize()); Asm->EOL("Address Size (in bytes)");
2452
2453  EmitDIE(Die);
2454  // FIXME - extra padding for gdb bug.
2455  Asm->EmitInt8(0); Asm->EOL("Extra Pad For GDB");
2456  Asm->EmitInt8(0); Asm->EOL("Extra Pad For GDB");
2457  Asm->EmitInt8(0); Asm->EOL("Extra Pad For GDB");
2458  Asm->EmitInt8(0); Asm->EOL("Extra Pad For GDB");
2459  EmitLabel("info_end", Unit->getID());
2460
2461  Asm->EOL();
2462}
2463
2464void DwarfDebug::EmitDebugInfo() {
2465  // Start debug info section.
2466  Asm->OutStreamer.SwitchSection(
2467                            Asm->getObjFileLowering().getDwarfInfoSection());
2468
2469  EmitDebugInfoPerCU(ModuleCU);
2470}
2471
2472/// EmitAbbreviations - Emit the abbreviation section.
2473///
2474void DwarfDebug::EmitAbbreviations() const {
2475  // Check to see if it is worth the effort.
2476  if (!Abbreviations.empty()) {
2477    // Start the debug abbrev section.
2478    Asm->OutStreamer.SwitchSection(
2479                            Asm->getObjFileLowering().getDwarfAbbrevSection());
2480
2481    EmitLabel("abbrev_begin", 0);
2482
2483    // For each abbrevation.
2484    for (unsigned i = 0, N = Abbreviations.size(); i < N; ++i) {
2485      // Get abbreviation data
2486      const DIEAbbrev *Abbrev = Abbreviations[i];
2487
2488      // Emit the abbrevations code (base 1 index.)
2489      Asm->EmitULEB128Bytes(Abbrev->getNumber());
2490      Asm->EOL("Abbreviation Code");
2491
2492      // Emit the abbreviations data.
2493      Abbrev->Emit(Asm);
2494
2495      Asm->EOL();
2496    }
2497
2498    // Mark end of abbreviations.
2499    Asm->EmitULEB128Bytes(0); Asm->EOL("EOM(3)");
2500
2501    EmitLabel("abbrev_end", 0);
2502    Asm->EOL();
2503  }
2504}
2505
2506/// EmitEndOfLineMatrix - Emit the last address of the section and the end of
2507/// the line matrix.
2508///
2509void DwarfDebug::EmitEndOfLineMatrix(unsigned SectionEnd) {
2510  // Define last address of section.
2511  Asm->EmitInt8(0); Asm->EOL("Extended Op");
2512  Asm->EmitInt8(TD->getPointerSize() + 1); Asm->EOL("Op size");
2513  Asm->EmitInt8(dwarf::DW_LNE_set_address); Asm->EOL("DW_LNE_set_address");
2514  EmitReference("section_end", SectionEnd); Asm->EOL("Section end label");
2515
2516  // Mark end of matrix.
2517  Asm->EmitInt8(0); Asm->EOL("DW_LNE_end_sequence");
2518  Asm->EmitULEB128Bytes(1); Asm->EOL();
2519  Asm->EmitInt8(1); Asm->EOL();
2520}
2521
2522/// EmitDebugLines - Emit source line information.
2523///
2524void DwarfDebug::EmitDebugLines() {
2525  // If the target is using .loc/.file, the assembler will be emitting the
2526  // .debug_line table automatically.
2527  if (MAI->hasDotLocAndDotFile())
2528    return;
2529
2530  // Minimum line delta, thus ranging from -10..(255-10).
2531  const int MinLineDelta = -(dwarf::DW_LNS_fixed_advance_pc + 1);
2532  // Maximum line delta, thus ranging from -10..(255-10).
2533  const int MaxLineDelta = 255 + MinLineDelta;
2534
2535  // Start the dwarf line section.
2536  Asm->OutStreamer.SwitchSection(
2537                            Asm->getObjFileLowering().getDwarfLineSection());
2538
2539  // Construct the section header.
2540  EmitDifference("line_end", 0, "line_begin", 0, true);
2541  Asm->EOL("Length of Source Line Info");
2542  EmitLabel("line_begin", 0);
2543
2544  Asm->EmitInt16(dwarf::DWARF_VERSION); Asm->EOL("DWARF version number");
2545
2546  EmitDifference("line_prolog_end", 0, "line_prolog_begin", 0, true);
2547  Asm->EOL("Prolog Length");
2548  EmitLabel("line_prolog_begin", 0);
2549
2550  Asm->EmitInt8(1); Asm->EOL("Minimum Instruction Length");
2551
2552  Asm->EmitInt8(1); Asm->EOL("Default is_stmt_start flag");
2553
2554  Asm->EmitInt8(MinLineDelta); Asm->EOL("Line Base Value (Special Opcodes)");
2555
2556  Asm->EmitInt8(MaxLineDelta); Asm->EOL("Line Range Value (Special Opcodes)");
2557
2558  Asm->EmitInt8(-MinLineDelta); Asm->EOL("Special Opcode Base");
2559
2560  // Line number standard opcode encodings argument count
2561  Asm->EmitInt8(0); Asm->EOL("DW_LNS_copy arg count");
2562  Asm->EmitInt8(1); Asm->EOL("DW_LNS_advance_pc arg count");
2563  Asm->EmitInt8(1); Asm->EOL("DW_LNS_advance_line arg count");
2564  Asm->EmitInt8(1); Asm->EOL("DW_LNS_set_file arg count");
2565  Asm->EmitInt8(1); Asm->EOL("DW_LNS_set_column arg count");
2566  Asm->EmitInt8(0); Asm->EOL("DW_LNS_negate_stmt arg count");
2567  Asm->EmitInt8(0); Asm->EOL("DW_LNS_set_basic_block arg count");
2568  Asm->EmitInt8(0); Asm->EOL("DW_LNS_const_add_pc arg count");
2569  Asm->EmitInt8(1); Asm->EOL("DW_LNS_fixed_advance_pc arg count");
2570
2571  // Emit directories.
2572  for (unsigned DI = 1, DE = getNumSourceDirectories()+1; DI != DE; ++DI) {
2573    Asm->EmitString(getSourceDirectoryName(DI));
2574    Asm->EOL("Directory");
2575  }
2576
2577  Asm->EmitInt8(0); Asm->EOL("End of directories");
2578
2579  // Emit files.
2580  for (unsigned SI = 1, SE = getNumSourceIds()+1; SI != SE; ++SI) {
2581    // Remember source id starts at 1.
2582    std::pair<unsigned, unsigned> Id = getSourceDirectoryAndFileIds(SI);
2583    Asm->EmitString(getSourceFileName(Id.second));
2584    Asm->EOL("Source");
2585    Asm->EmitULEB128Bytes(Id.first);
2586    Asm->EOL("Directory #");
2587    Asm->EmitULEB128Bytes(0);
2588    Asm->EOL("Mod date");
2589    Asm->EmitULEB128Bytes(0);
2590    Asm->EOL("File size");
2591  }
2592
2593  Asm->EmitInt8(0); Asm->EOL("End of files");
2594
2595  EmitLabel("line_prolog_end", 0);
2596
2597  // A sequence for each text section.
2598  unsigned SecSrcLinesSize = SectionSourceLines.size();
2599
2600  for (unsigned j = 0; j < SecSrcLinesSize; ++j) {
2601    // Isolate current sections line info.
2602    const std::vector<SrcLineInfo> &LineInfos = SectionSourceLines[j];
2603
2604    /*if (Asm->isVerbose()) {
2605      const MCSection *S = SectionMap[j + 1];
2606      O << '\t' << MAI->getCommentString() << " Section"
2607        << S->getName() << '\n';
2608    }*/
2609    Asm->EOL();
2610
2611    // Dwarf assumes we start with first line of first source file.
2612    unsigned Source = 1;
2613    unsigned Line = 1;
2614
2615    // Construct rows of the address, source, line, column matrix.
2616    for (unsigned i = 0, N = LineInfos.size(); i < N; ++i) {
2617      const SrcLineInfo &LineInfo = LineInfos[i];
2618      unsigned LabelID = MMI->MappedLabel(LineInfo.getLabelID());
2619      if (!LabelID) continue;
2620
2621      if (LineInfo.getLine() == 0) continue;
2622
2623      if (!Asm->isVerbose())
2624        Asm->EOL();
2625      else {
2626        std::pair<unsigned, unsigned> SourceID =
2627          getSourceDirectoryAndFileIds(LineInfo.getSourceID());
2628        O << '\t' << MAI->getCommentString() << ' '
2629          << getSourceDirectoryName(SourceID.first) << ' '
2630          << getSourceFileName(SourceID.second)
2631          <<" :" << utostr_32(LineInfo.getLine()) << '\n';
2632      }
2633
2634      // Define the line address.
2635      Asm->EmitInt8(0); Asm->EOL("Extended Op");
2636      Asm->EmitInt8(TD->getPointerSize() + 1); Asm->EOL("Op size");
2637      Asm->EmitInt8(dwarf::DW_LNE_set_address); Asm->EOL("DW_LNE_set_address");
2638      EmitReference("label",  LabelID); Asm->EOL("Location label");
2639
2640      // If change of source, then switch to the new source.
2641      if (Source != LineInfo.getSourceID()) {
2642        Source = LineInfo.getSourceID();
2643        Asm->EmitInt8(dwarf::DW_LNS_set_file); Asm->EOL("DW_LNS_set_file");
2644        Asm->EmitULEB128Bytes(Source); Asm->EOL("New Source");
2645      }
2646
2647      // If change of line.
2648      if (Line != LineInfo.getLine()) {
2649        // Determine offset.
2650        int Offset = LineInfo.getLine() - Line;
2651        int Delta = Offset - MinLineDelta;
2652
2653        // Update line.
2654        Line = LineInfo.getLine();
2655
2656        // If delta is small enough and in range...
2657        if (Delta >= 0 && Delta < (MaxLineDelta - 1)) {
2658          // ... then use fast opcode.
2659          Asm->EmitInt8(Delta - MinLineDelta); Asm->EOL("Line Delta");
2660        } else {
2661          // ... otherwise use long hand.
2662          Asm->EmitInt8(dwarf::DW_LNS_advance_line);
2663          Asm->EOL("DW_LNS_advance_line");
2664          Asm->EmitSLEB128Bytes(Offset); Asm->EOL("Line Offset");
2665          Asm->EmitInt8(dwarf::DW_LNS_copy); Asm->EOL("DW_LNS_copy");
2666        }
2667      } else {
2668        // Copy the previous row (different address or source)
2669        Asm->EmitInt8(dwarf::DW_LNS_copy); Asm->EOL("DW_LNS_copy");
2670      }
2671    }
2672
2673    EmitEndOfLineMatrix(j + 1);
2674  }
2675
2676  if (SecSrcLinesSize == 0)
2677    // Because we're emitting a debug_line section, we still need a line
2678    // table. The linker and friends expect it to exist. If there's nothing to
2679    // put into it, emit an empty table.
2680    EmitEndOfLineMatrix(1);
2681
2682  EmitLabel("line_end", 0);
2683  Asm->EOL();
2684}
2685
2686/// EmitCommonDebugFrame - Emit common frame info into a debug frame section.
2687///
2688void DwarfDebug::EmitCommonDebugFrame() {
2689  if (!MAI->doesDwarfRequireFrameSection())
2690    return;
2691
2692  int stackGrowth =
2693    Asm->TM.getFrameInfo()->getStackGrowthDirection() ==
2694      TargetFrameInfo::StackGrowsUp ?
2695    TD->getPointerSize() : -TD->getPointerSize();
2696
2697  // Start the dwarf frame section.
2698  Asm->OutStreamer.SwitchSection(
2699                              Asm->getObjFileLowering().getDwarfFrameSection());
2700
2701  EmitLabel("debug_frame_common", 0);
2702  EmitDifference("debug_frame_common_end", 0,
2703                 "debug_frame_common_begin", 0, true);
2704  Asm->EOL("Length of Common Information Entry");
2705
2706  EmitLabel("debug_frame_common_begin", 0);
2707  Asm->EmitInt32((int)dwarf::DW_CIE_ID);
2708  Asm->EOL("CIE Identifier Tag");
2709  Asm->EmitInt8(dwarf::DW_CIE_VERSION);
2710  Asm->EOL("CIE Version");
2711  Asm->EmitString("");
2712  Asm->EOL("CIE Augmentation");
2713  Asm->EmitULEB128Bytes(1);
2714  Asm->EOL("CIE Code Alignment Factor");
2715  Asm->EmitSLEB128Bytes(stackGrowth);
2716  Asm->EOL("CIE Data Alignment Factor");
2717  Asm->EmitInt8(RI->getDwarfRegNum(RI->getRARegister(), false));
2718  Asm->EOL("CIE RA Column");
2719
2720  std::vector<MachineMove> Moves;
2721  RI->getInitialFrameState(Moves);
2722
2723  EmitFrameMoves(NULL, 0, Moves, false);
2724
2725  Asm->EmitAlignment(2, 0, 0, false);
2726  EmitLabel("debug_frame_common_end", 0);
2727
2728  Asm->EOL();
2729}
2730
2731/// EmitFunctionDebugFrame - Emit per function frame info into a debug frame
2732/// section.
2733void
2734DwarfDebug::EmitFunctionDebugFrame(const FunctionDebugFrameInfo&DebugFrameInfo){
2735  if (!MAI->doesDwarfRequireFrameSection())
2736    return;
2737
2738  // Start the dwarf frame section.
2739  Asm->OutStreamer.SwitchSection(
2740                              Asm->getObjFileLowering().getDwarfFrameSection());
2741
2742  EmitDifference("debug_frame_end", DebugFrameInfo.Number,
2743                 "debug_frame_begin", DebugFrameInfo.Number, true);
2744  Asm->EOL("Length of Frame Information Entry");
2745
2746  EmitLabel("debug_frame_begin", DebugFrameInfo.Number);
2747
2748  EmitSectionOffset("debug_frame_common", "section_debug_frame",
2749                    0, 0, true, false);
2750  Asm->EOL("FDE CIE offset");
2751
2752  EmitReference("func_begin", DebugFrameInfo.Number);
2753  Asm->EOL("FDE initial location");
2754  EmitDifference("func_end", DebugFrameInfo.Number,
2755                 "func_begin", DebugFrameInfo.Number);
2756  Asm->EOL("FDE address range");
2757
2758  EmitFrameMoves("func_begin", DebugFrameInfo.Number, DebugFrameInfo.Moves,
2759                 false);
2760
2761  Asm->EmitAlignment(2, 0, 0, false);
2762  EmitLabel("debug_frame_end", DebugFrameInfo.Number);
2763
2764  Asm->EOL();
2765}
2766
2767void DwarfDebug::EmitDebugPubNamesPerCU(CompileUnit *Unit) {
2768  EmitDifference("pubnames_end", Unit->getID(),
2769                 "pubnames_begin", Unit->getID(), true);
2770  Asm->EOL("Length of Public Names Info");
2771
2772  EmitLabel("pubnames_begin", Unit->getID());
2773
2774  Asm->EmitInt16(dwarf::DWARF_VERSION); Asm->EOL("DWARF Version");
2775
2776  EmitSectionOffset("info_begin", "section_info",
2777                    Unit->getID(), 0, true, false);
2778  Asm->EOL("Offset of Compilation Unit Info");
2779
2780  EmitDifference("info_end", Unit->getID(), "info_begin", Unit->getID(),
2781                 true);
2782  Asm->EOL("Compilation Unit Length");
2783
2784  StringMap<DIE*> &Globals = Unit->getGlobals();
2785  for (StringMap<DIE*>::const_iterator
2786         GI = Globals.begin(), GE = Globals.end(); GI != GE; ++GI) {
2787    const char *Name = GI->getKeyData();
2788    DIE * Entity = GI->second;
2789
2790    Asm->EmitInt32(Entity->getOffset()); Asm->EOL("DIE offset");
2791    Asm->EmitString(Name, strlen(Name)); Asm->EOL("External Name");
2792  }
2793
2794  Asm->EmitInt32(0); Asm->EOL("End Mark");
2795  EmitLabel("pubnames_end", Unit->getID());
2796
2797  Asm->EOL();
2798}
2799
2800/// EmitDebugPubNames - Emit visible names into a debug pubnames section.
2801///
2802void DwarfDebug::EmitDebugPubNames() {
2803  // Start the dwarf pubnames section.
2804  Asm->OutStreamer.SwitchSection(
2805                          Asm->getObjFileLowering().getDwarfPubNamesSection());
2806
2807  EmitDebugPubNamesPerCU(ModuleCU);
2808}
2809
2810/// EmitDebugStr - Emit visible names into a debug str section.
2811///
2812void DwarfDebug::EmitDebugStr() {
2813  // Check to see if it is worth the effort.
2814  if (!StringPool.empty()) {
2815    // Start the dwarf str section.
2816    Asm->OutStreamer.SwitchSection(
2817                                Asm->getObjFileLowering().getDwarfStrSection());
2818
2819    // For each of strings in the string pool.
2820    for (unsigned StringID = 1, N = StringPool.size();
2821         StringID <= N; ++StringID) {
2822      // Emit a label for reference from debug information entries.
2823      EmitLabel("string", StringID);
2824
2825      // Emit the string itself.
2826      const std::string &String = StringPool[StringID];
2827      Asm->EmitString(String); Asm->EOL();
2828    }
2829
2830    Asm->EOL();
2831  }
2832}
2833
2834/// EmitDebugLoc - Emit visible names into a debug loc section.
2835///
2836void DwarfDebug::EmitDebugLoc() {
2837  // Start the dwarf loc section.
2838  Asm->OutStreamer.SwitchSection(
2839                              Asm->getObjFileLowering().getDwarfLocSection());
2840  Asm->EOL();
2841}
2842
2843/// EmitDebugARanges - Emit visible names into a debug aranges section.
2844///
2845void DwarfDebug::EmitDebugARanges() {
2846  // Start the dwarf aranges section.
2847  Asm->OutStreamer.SwitchSection(
2848                          Asm->getObjFileLowering().getDwarfARangesSection());
2849
2850  // FIXME - Mock up
2851#if 0
2852  CompileUnit *Unit = GetBaseCompileUnit();
2853
2854  // Don't include size of length
2855  Asm->EmitInt32(0x1c); Asm->EOL("Length of Address Ranges Info");
2856
2857  Asm->EmitInt16(dwarf::DWARF_VERSION); Asm->EOL("Dwarf Version");
2858
2859  EmitReference("info_begin", Unit->getID());
2860  Asm->EOL("Offset of Compilation Unit Info");
2861
2862  Asm->EmitInt8(TD->getPointerSize()); Asm->EOL("Size of Address");
2863
2864  Asm->EmitInt8(0); Asm->EOL("Size of Segment Descriptor");
2865
2866  Asm->EmitInt16(0);  Asm->EOL("Pad (1)");
2867  Asm->EmitInt16(0);  Asm->EOL("Pad (2)");
2868
2869  // Range 1
2870  EmitReference("text_begin", 0); Asm->EOL("Address");
2871  EmitDifference("text_end", 0, "text_begin", 0, true); Asm->EOL("Length");
2872
2873  Asm->EmitInt32(0); Asm->EOL("EOM (1)");
2874  Asm->EmitInt32(0); Asm->EOL("EOM (2)");
2875#endif
2876
2877  Asm->EOL();
2878}
2879
2880/// EmitDebugRanges - Emit visible names into a debug ranges section.
2881///
2882void DwarfDebug::EmitDebugRanges() {
2883  // Start the dwarf ranges section.
2884  Asm->OutStreamer.SwitchSection(
2885                            Asm->getObjFileLowering().getDwarfRangesSection());
2886  Asm->EOL();
2887}
2888
2889/// EmitDebugMacInfo - Emit visible names into a debug macinfo section.
2890///
2891void DwarfDebug::EmitDebugMacInfo() {
2892  if (const MCSection *LineInfo =
2893      Asm->getObjFileLowering().getDwarfMacroInfoSection()) {
2894    // Start the dwarf macinfo section.
2895    Asm->OutStreamer.SwitchSection(LineInfo);
2896    Asm->EOL();
2897  }
2898}
2899
2900/// EmitDebugInlineInfo - Emit inline info using following format.
2901/// Section Header:
2902/// 1. length of section
2903/// 2. Dwarf version number
2904/// 3. address size.
2905///
2906/// Entries (one "entry" for each function that was inlined):
2907///
2908/// 1. offset into __debug_str section for MIPS linkage name, if exists;
2909///   otherwise offset into __debug_str for regular function name.
2910/// 2. offset into __debug_str section for regular function name.
2911/// 3. an unsigned LEB128 number indicating the number of distinct inlining
2912/// instances for the function.
2913///
2914/// The rest of the entry consists of a {die_offset, low_pc} pair for each
2915/// inlined instance; the die_offset points to the inlined_subroutine die in the
2916/// __debug_info section, and the low_pc is the starting address for the
2917/// inlining instance.
2918void DwarfDebug::EmitDebugInlineInfo() {
2919  if (!MAI->doesDwarfUsesInlineInfoSection())
2920    return;
2921
2922  if (!ModuleCU)
2923    return;
2924
2925  Asm->OutStreamer.SwitchSection(
2926                        Asm->getObjFileLowering().getDwarfDebugInlineSection());
2927  Asm->EOL();
2928  EmitDifference("debug_inlined_end", 1,
2929                 "debug_inlined_begin", 1, true);
2930  Asm->EOL("Length of Debug Inlined Information Entry");
2931
2932  EmitLabel("debug_inlined_begin", 1);
2933
2934  Asm->EmitInt16(dwarf::DWARF_VERSION); Asm->EOL("Dwarf Version");
2935  Asm->EmitInt8(TD->getPointerSize()); Asm->EOL("Address Size (in bytes)");
2936
2937  for (DenseMap<MDNode *, SmallVector<unsigned, 4> >::iterator
2938         I = InlineInfo.begin(), E = InlineInfo.end(); I != E; ++I) {
2939    MDNode *Node = I->first;
2940    SmallVector<unsigned, 4> &Labels = I->second;
2941    DISubprogram SP(Node);
2942    const char *LName = SP.getLinkageName();
2943    const char *Name = SP.getName();
2944
2945    if (!LName)
2946      Asm->EmitString(Name);
2947    else {
2948      // Skip special LLVM prefix that is used to inform the asm printer to not
2949      // emit usual symbol prefix before the symbol name. This happens for
2950      // Objective-C symbol names and symbol whose name is replaced using GCC's
2951      // __asm__ attribute.
2952      if (LName[0] == 1)
2953        LName = &LName[1];
2954      Asm->EmitString(LName);
2955    }
2956    Asm->EOL("MIPS linkage name");
2957
2958    Asm->EmitString(Name); Asm->EOL("Function name");
2959
2960    Asm->EmitULEB128Bytes(Labels.size()); Asm->EOL("Inline count");
2961
2962    for (SmallVector<unsigned, 4>::iterator LI = Labels.begin(),
2963           LE = Labels.end(); LI != LE; ++LI) {
2964      DIE *SP = ModuleCU->getDieMapSlotFor(Node);
2965      Asm->EmitInt32(SP->getOffset()); Asm->EOL("DIE offset");
2966
2967      if (TD->getPointerSize() == sizeof(int32_t))
2968        O << MAI->getData32bitsDirective();
2969      else
2970        O << MAI->getData64bitsDirective();
2971
2972      PrintLabelName("label", *LI); Asm->EOL("low_pc");
2973    }
2974  }
2975
2976  EmitLabel("debug_inlined_end", 1);
2977  Asm->EOL();
2978}
2979