Reverting back to original 1.8 version so I can manually merge in patch.
[llvm-complete.git] / lib / CodeGen / DwarfWriter.cpp
blobff62b4624c58265e1a7149fc722443917d0ab8e8
1 //===-- llvm/CodeGen/DwarfWriter.cpp - Dwarf Framework ----------*- C++ -*-===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file was developed by James M. Laskey and is distributed under the
6 // University of Illinois Open Source License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file contains support for writing dwarf debug info into asm files.
12 //===----------------------------------------------------------------------===//
14 #include "llvm/CodeGen/DwarfWriter.h"
16 #include "llvm/ADT/StringExtras.h"
17 #include "llvm/Module.h"
18 #include "llvm/Type.h"
19 #include "llvm/CodeGen/AsmPrinter.h"
20 #include "llvm/CodeGen/MachineDebugInfo.h"
21 #include "llvm/CodeGen/MachineFrameInfo.h"
22 #include "llvm/CodeGen/MachineLocation.h"
23 #include "llvm/Support/Dwarf.h"
24 #include "llvm/Support/CommandLine.h"
25 #include "llvm/Support/Mangler.h"
26 #include "llvm/Target/MRegisterInfo.h"
27 #include "llvm/Target/TargetData.h"
28 #include "llvm/Target/TargetMachine.h"
29 #include "llvm/Target/TargetFrameInfo.h"
31 #include <iostream>
33 using namespace llvm;
34 using namespace llvm::dwarf;
36 static cl::opt<bool>
37 DwarfVerbose("dwarf-verbose", cl::Hidden,
38 cl::desc("Add comments to Dwarf directives."));
40 namespace llvm {
42 //===----------------------------------------------------------------------===//
43 // Forward declarations.
45 class DIE;
47 //===----------------------------------------------------------------------===//
48 // CompileUnit - This dwarf writer support class manages information associate
49 // with a source file.
50 class CompileUnit {
51 private:
52 CompileUnitDesc *Desc; // Compile unit debug descriptor.
53 unsigned ID; // File ID for source.
54 DIE *Die; // Compile unit debug information entry.
55 std::map<std::string, DIE *> Globals; // A map of globally visible named
56 // entities for this unit.
57 std::map<DebugInfoDesc *, DIE *> DescToDieMap;
58 // Tracks the mapping of unit level
59 // debug informaton descriptors to debug
60 // information entries.
62 public:
63 CompileUnit(CompileUnitDesc *CUD, unsigned I, DIE *D)
64 : Desc(CUD)
65 , ID(I)
66 , Die(D)
67 , Globals()
68 , DescToDieMap()
71 ~CompileUnit();
73 // Accessors.
74 CompileUnitDesc *getDesc() const { return Desc; }
75 unsigned getID() const { return ID; }
76 DIE* getDie() const { return Die; }
77 std::map<std::string, DIE *> &getGlobals() { return Globals; }
79 /// hasContent - Return true if this compile unit has something to write out.
80 ///
81 bool hasContent() const;
83 /// AddGlobal - Add a new global entity to the compile unit.
84 ///
85 void AddGlobal(const std::string &Name, DIE *Die);
87 /// getDieMapSlotFor - Returns the debug information entry map slot for the
88 /// specified debug descriptor.
89 DIE *&getDieMapSlotFor(DebugInfoDesc *DD) {
90 return DescToDieMap[DD];
94 //===----------------------------------------------------------------------===//
95 // DIEAbbrevData - Dwarf abbreviation data, describes the one attribute of a
96 // Dwarf abbreviation.
97 class DIEAbbrevData {
98 private:
99 unsigned Attribute; // Dwarf attribute code.
100 unsigned Form; // Dwarf form code.
102 public:
103 DIEAbbrevData(unsigned A, unsigned F)
104 : Attribute(A)
105 , Form(F)
108 // Accessors.
109 unsigned getAttribute() const { return Attribute; }
110 unsigned getForm() const { return Form; }
112 /// operator== - Used by DIEAbbrev to locate entry.
114 bool operator==(const DIEAbbrevData &DAD) const {
115 return Attribute == DAD.Attribute && Form == DAD.Form;
118 /// operator!= - Used by DIEAbbrev to locate entry.
120 bool operator!=(const DIEAbbrevData &DAD) const {
121 return Attribute != DAD.Attribute || Form != DAD.Form;
124 /// operator< - Used by DIEAbbrev to locate entry.
126 bool operator<(const DIEAbbrevData &DAD) const {
127 return Attribute < DAD.Attribute ||
128 (Attribute == DAD.Attribute && Form < DAD.Form);
132 //===----------------------------------------------------------------------===//
133 // DIEAbbrev - Dwarf abbreviation, describes the organization of a debug
134 // information object.
135 class DIEAbbrev {
136 private:
137 unsigned Tag; // Dwarf tag code.
138 unsigned ChildrenFlag; // Dwarf children flag.
139 std::vector<DIEAbbrevData> Data; // Raw data bytes for abbreviation.
141 public:
143 DIEAbbrev(unsigned T, unsigned C)
144 : Tag(T)
145 , ChildrenFlag(C)
146 , Data()
148 ~DIEAbbrev() {}
150 // Accessors.
151 unsigned getTag() const { return Tag; }
152 unsigned getChildrenFlag() const { return ChildrenFlag; }
153 const std::vector<DIEAbbrevData> &getData() const { return Data; }
154 void setChildrenFlag(unsigned CF) { ChildrenFlag = CF; }
156 /// operator== - Used by UniqueVector to locate entry.
158 bool operator==(const DIEAbbrev &DA) const;
160 /// operator< - Used by UniqueVector to locate entry.
162 bool operator<(const DIEAbbrev &DA) const;
164 /// AddAttribute - Adds another set of attribute information to the
165 /// abbreviation.
166 void AddAttribute(unsigned Attribute, unsigned Form) {
167 Data.push_back(DIEAbbrevData(Attribute, Form));
170 /// AddFirstAttribute - Adds a set of attribute information to the front
171 /// of the abbreviation.
172 void AddFirstAttribute(unsigned Attribute, unsigned Form) {
173 Data.insert(Data.begin(), DIEAbbrevData(Attribute, Form));
176 /// Emit - Print the abbreviation using the specified Dwarf writer.
178 void Emit(const DwarfWriter &DW) const;
180 #ifndef NDEBUG
181 void print(std::ostream &O);
182 void dump();
183 #endif
186 //===----------------------------------------------------------------------===//
187 // DIEValue - A debug information entry value.
189 class DIEValue {
190 public:
191 enum {
192 isInteger,
193 isString,
194 isLabel,
195 isAsIsLabel,
196 isDelta,
197 isEntry,
198 isBlock
201 unsigned Type; // Type of the value
203 DIEValue(unsigned T) : Type(T) {}
204 virtual ~DIEValue() {}
206 // Implement isa/cast/dyncast.
207 static bool classof(const DIEValue *) { return true; }
209 /// EmitValue - Emit value via the Dwarf writer.
211 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const = 0;
213 /// SizeOf - Return the size of a value in bytes.
215 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const = 0;
218 //===----------------------------------------------------------------------===//
219 // DWInteger - An integer value DIE.
221 class DIEInteger : public DIEValue {
222 private:
223 uint64_t Integer;
225 public:
226 DIEInteger(uint64_t I) : DIEValue(isInteger), Integer(I) {}
228 // Implement isa/cast/dyncast.
229 static bool classof(const DIEInteger *) { return true; }
230 static bool classof(const DIEValue *I) { return I->Type == isInteger; }
232 /// BestForm - Choose the best form for integer.
234 unsigned BestForm(bool IsSigned);
236 /// EmitValue - Emit integer of appropriate size.
238 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const;
240 /// SizeOf - Determine size of integer value in bytes.
242 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const;
245 //===----------------------------------------------------------------------===//
246 // DIEString - A string value DIE.
248 struct DIEString : public DIEValue {
249 const std::string String;
251 DIEString(const std::string &S) : DIEValue(isString), String(S) {}
253 // Implement isa/cast/dyncast.
254 static bool classof(const DIEString *) { return true; }
255 static bool classof(const DIEValue *S) { return S->Type == isString; }
257 /// EmitValue - Emit string value.
259 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const;
261 /// SizeOf - Determine size of string value in bytes.
263 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const;
266 //===----------------------------------------------------------------------===//
267 // DIEDwarfLabel - A Dwarf internal label expression DIE.
269 struct DIEDwarfLabel : public DIEValue {
270 const DWLabel Label;
272 DIEDwarfLabel(const DWLabel &L) : DIEValue(isLabel), Label(L) {}
274 // Implement isa/cast/dyncast.
275 static bool classof(const DIEDwarfLabel *) { return true; }
276 static bool classof(const DIEValue *L) { return L->Type == isLabel; }
278 /// EmitValue - Emit label value.
280 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const;
282 /// SizeOf - Determine size of label value in bytes.
284 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const;
288 //===----------------------------------------------------------------------===//
289 // DIEObjectLabel - A label to an object in code or data.
291 struct DIEObjectLabel : public DIEValue {
292 const std::string Label;
294 DIEObjectLabel(const std::string &L) : DIEValue(isAsIsLabel), Label(L) {}
296 // Implement isa/cast/dyncast.
297 static bool classof(const DIEObjectLabel *) { return true; }
298 static bool classof(const DIEValue *L) { return L->Type == isAsIsLabel; }
300 /// EmitValue - Emit label value.
302 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const;
304 /// SizeOf - Determine size of label value in bytes.
306 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const;
309 //===----------------------------------------------------------------------===//
310 // DIEDelta - A simple label difference DIE.
312 struct DIEDelta : public DIEValue {
313 const DWLabel LabelHi;
314 const DWLabel LabelLo;
316 DIEDelta(const DWLabel &Hi, const DWLabel &Lo)
317 : DIEValue(isDelta), LabelHi(Hi), LabelLo(Lo) {}
319 // Implement isa/cast/dyncast.
320 static bool classof(const DIEDelta *) { return true; }
321 static bool classof(const DIEValue *D) { return D->Type == isDelta; }
323 /// EmitValue - Emit delta value.
325 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const;
327 /// SizeOf - Determine size of delta value in bytes.
329 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const;
332 //===----------------------------------------------------------------------===//
333 // DIEntry - A pointer to a debug information entry.
335 struct DIEntry : public DIEValue {
336 DIE *Entry;
338 DIEntry(DIE *E) : DIEValue(isEntry), Entry(E) {}
340 // Implement isa/cast/dyncast.
341 static bool classof(const DIEntry *) { return true; }
342 static bool classof(const DIEValue *E) { return E->Type == isEntry; }
344 /// EmitValue - Emit debug information entry offset.
346 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const;
348 /// SizeOf - Determine size of debug information entry in bytes.
350 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const;
353 //===----------------------------------------------------------------------===//
354 // DIEBlock - A block of values. Primarily used for location expressions.
356 struct DIEBlock : public DIEValue {
357 unsigned Size; // Size in bytes excluding size header.
358 std::vector<unsigned> Forms; // Data forms.
359 std::vector<DIEValue *> Values; // Block values.
361 DIEBlock()
362 : DIEValue(isBlock)
363 , Size(0)
364 , Forms()
365 , Values()
367 ~DIEBlock();
369 // Implement isa/cast/dyncast.
370 static bool classof(const DIEBlock *) { return true; }
371 static bool classof(const DIEValue *E) { return E->Type == isBlock; }
373 /// ComputeSize - calculate the size of the block.
375 unsigned ComputeSize(DwarfWriter &DW);
377 /// BestForm - Choose the best form for data.
379 unsigned BestForm();
381 /// EmitValue - Emit block data.
383 virtual void EmitValue(const DwarfWriter &DW, unsigned Form) const;
385 /// SizeOf - Determine size of block data in bytes.
387 virtual unsigned SizeOf(const DwarfWriter &DW, unsigned Form) const;
389 /// AddUInt - Add an unsigned integer value.
391 void AddUInt(unsigned Form, uint64_t Integer);
393 /// AddSInt - Add an signed integer value.
395 void AddSInt(unsigned Form, int64_t Integer);
397 /// AddString - Add a std::string value.
399 void AddString(unsigned Form, const std::string &String);
401 /// AddLabel - Add a Dwarf label value.
403 void AddLabel(unsigned Form, const DWLabel &Label);
405 /// AddObjectLabel - Add a non-Dwarf label value.
407 void AddObjectLabel(unsigned Form, const std::string &Label);
409 /// AddDelta - Add a label delta value.
411 void AddDelta(unsigned Form, const DWLabel &Hi, const DWLabel &Lo);
413 /// AddDIEntry - Add a DIE value.
415 void AddDIEntry(unsigned Form, DIE *Entry);
419 //===----------------------------------------------------------------------===//
420 // DIE - A structured debug information entry. Has an abbreviation which
421 // describes it's organization.
422 class DIE {
423 private:
424 DIEAbbrev *Abbrev; // Temporary buffer for abbreviation.
425 unsigned AbbrevID; // Decribing abbreviation ID.
426 unsigned Offset; // Offset in debug info section.
427 unsigned Size; // Size of instance + children.
428 std::vector<DIE *> Children; // Children DIEs.
429 std::vector<DIEValue *> Values; // Attributes values.
431 public:
432 DIE(unsigned Tag);
433 ~DIE();
435 // Accessors.
436 unsigned getAbbrevID() const { return AbbrevID; }
437 unsigned getOffset() const { return Offset; }
438 unsigned getSize() const { return Size; }
439 const std::vector<DIE *> &getChildren() const { return Children; }
440 const std::vector<DIEValue *> &getValues() const { return Values; }
441 void setOffset(unsigned O) { Offset = O; }
442 void setSize(unsigned S) { Size = S; }
444 /// SiblingOffset - Return the offset of the debug information entry's
445 /// sibling.
446 unsigned SiblingOffset() const { return Offset + Size; }
448 /// AddSiblingOffset - Add a sibling offset field to the front of the DIE.
450 void AddSiblingOffset();
452 /// AddUInt - Add an unsigned integer attribute data and value.
454 void AddUInt(unsigned Attribute, unsigned Form, uint64_t Integer);
456 /// AddSInt - Add an signed integer attribute data and value.
458 void AddSInt(unsigned Attribute, unsigned Form, int64_t Integer);
460 /// AddString - Add a std::string attribute data and value.
462 void AddString(unsigned Attribute, unsigned Form,
463 const std::string &String);
465 /// AddLabel - Add a Dwarf label attribute data and value.
467 void AddLabel(unsigned Attribute, unsigned Form, const DWLabel &Label);
469 /// AddObjectLabel - Add a non-Dwarf label attribute data and value.
471 void AddObjectLabel(unsigned Attribute, unsigned Form,
472 const std::string &Label);
474 /// AddDelta - Add a label delta attribute data and value.
476 void AddDelta(unsigned Attribute, unsigned Form,
477 const DWLabel &Hi, const DWLabel &Lo);
479 /// AddDIEntry - Add a DIE attribute data and value.
481 void AddDIEntry(unsigned Attribute, unsigned Form, DIE *Entry);
483 /// AddBlock - Add block data.
485 void AddBlock(unsigned Attribute, unsigned Form, DIEBlock *Block);
487 /// Complete - Indicate that all attributes have been added and
488 /// ready to get an abbreviation ID.
490 void Complete(DwarfWriter &DW);
492 /// AddChild - Add a child to the DIE.
493 void AddChild(DIE *Child);
496 } // End of namespace llvm
498 //===----------------------------------------------------------------------===//
500 CompileUnit::~CompileUnit() {
501 delete Die;
504 /// hasContent - Return true if this compile unit has something to write out.
506 bool CompileUnit::hasContent() const {
507 return !Die->getChildren().empty();
510 /// AddGlobal - Add a new global entity to the compile unit.
512 void CompileUnit::AddGlobal(const std::string &Name, DIE *Die) {
513 Globals[Name] = Die;
516 //===----------------------------------------------------------------------===//
518 /// operator== - Used by UniqueVector to locate entry.
520 bool DIEAbbrev::operator==(const DIEAbbrev &DA) const {
521 if (Tag != DA.Tag) return false;
522 if (ChildrenFlag != DA.ChildrenFlag) return false;
523 if (Data.size() != DA.Data.size()) return false;
525 for (unsigned i = 0, N = Data.size(); i < N; ++i) {
526 if (Data[i] != DA.Data[i]) return false;
529 return true;
532 /// operator< - Used by UniqueVector to locate entry.
534 bool DIEAbbrev::operator<(const DIEAbbrev &DA) const {
535 if (Tag != DA.Tag) return Tag < DA.Tag;
536 if (ChildrenFlag != DA.ChildrenFlag) return ChildrenFlag < DA.ChildrenFlag;
537 if (Data.size() != DA.Data.size()) return Data.size() < DA.Data.size();
539 for (unsigned i = 0, N = Data.size(); i < N; ++i) {
540 if (Data[i] != DA.Data[i]) return Data[i] < DA.Data[i];
543 return false;
546 /// Emit - Print the abbreviation using the specified Dwarf writer.
548 void DIEAbbrev::Emit(const DwarfWriter &DW) const {
549 // Emit its Dwarf tag type.
550 DW.EmitULEB128Bytes(Tag);
551 DW.EOL(TagString(Tag));
553 // Emit whether it has children DIEs.
554 DW.EmitULEB128Bytes(ChildrenFlag);
555 DW.EOL(ChildrenString(ChildrenFlag));
557 // For each attribute description.
558 for (unsigned i = 0, N = Data.size(); i < N; ++i) {
559 const DIEAbbrevData &AttrData = Data[i];
561 // Emit attribute type.
562 DW.EmitULEB128Bytes(AttrData.getAttribute());
563 DW.EOL(AttributeString(AttrData.getAttribute()));
565 // Emit form type.
566 DW.EmitULEB128Bytes(AttrData.getForm());
567 DW.EOL(FormEncodingString(AttrData.getForm()));
570 // Mark end of abbreviation.
571 DW.EmitULEB128Bytes(0); DW.EOL("EOM(1)");
572 DW.EmitULEB128Bytes(0); DW.EOL("EOM(2)");
575 #ifndef NDEBUG
576 void DIEAbbrev::print(std::ostream &O) {
577 O << "Abbreviation @"
578 << std::hex << (intptr_t)this << std::dec
579 << " "
580 << TagString(Tag)
581 << " "
582 << ChildrenString(ChildrenFlag)
583 << "\n";
585 for (unsigned i = 0, N = Data.size(); i < N; ++i) {
586 O << " "
587 << AttributeString(Data[i].getAttribute())
588 << " "
589 << FormEncodingString(Data[i].getForm())
590 << "\n";
593 void DIEAbbrev::dump() { print(std::cerr); }
594 #endif
596 //===----------------------------------------------------------------------===//
598 /// BestForm - Choose the best form for integer.
600 unsigned DIEInteger::BestForm(bool IsSigned) {
601 if (IsSigned) {
602 if ((char)Integer == (signed)Integer) return DW_FORM_data1;
603 if ((short)Integer == (signed)Integer) return DW_FORM_data2;
604 if ((int)Integer == (signed)Integer) return DW_FORM_data4;
605 } else {
606 if ((unsigned char)Integer == Integer) return DW_FORM_data1;
607 if ((unsigned short)Integer == Integer) return DW_FORM_data2;
608 if ((unsigned int)Integer == Integer) return DW_FORM_data4;
610 return DW_FORM_data8;
613 /// EmitValue - Emit integer of appropriate size.
615 void DIEInteger::EmitValue(const DwarfWriter &DW, unsigned Form) const {
616 switch (Form) {
617 case DW_FORM_flag: // Fall thru
618 case DW_FORM_ref1: // Fall thru
619 case DW_FORM_data1: DW.EmitInt8(Integer); break;
620 case DW_FORM_ref2: // Fall thru
621 case DW_FORM_data2: DW.EmitInt16(Integer); break;
622 case DW_FORM_ref4: // Fall thru
623 case DW_FORM_data4: DW.EmitInt32(Integer); break;
624 case DW_FORM_ref8: // Fall thru
625 case DW_FORM_data8: DW.EmitInt64(Integer); break;
626 case DW_FORM_udata: DW.EmitULEB128Bytes(Integer); break;
627 case DW_FORM_sdata: DW.EmitSLEB128Bytes(Integer); break;
628 default: assert(0 && "DIE Value form not supported yet"); break;
632 /// SizeOf - Determine size of integer value in bytes.
634 unsigned DIEInteger::SizeOf(const DwarfWriter &DW, unsigned Form) const {
635 switch (Form) {
636 case DW_FORM_flag: // Fall thru
637 case DW_FORM_ref1: // Fall thru
638 case DW_FORM_data1: return sizeof(int8_t);
639 case DW_FORM_ref2: // Fall thru
640 case DW_FORM_data2: return sizeof(int16_t);
641 case DW_FORM_ref4: // Fall thru
642 case DW_FORM_data4: return sizeof(int32_t);
643 case DW_FORM_ref8: // Fall thru
644 case DW_FORM_data8: return sizeof(int64_t);
645 case DW_FORM_udata: return DW.SizeULEB128(Integer);
646 case DW_FORM_sdata: return DW.SizeSLEB128(Integer);
647 default: assert(0 && "DIE Value form not supported yet"); break;
649 return 0;
652 //===----------------------------------------------------------------------===//
654 /// EmitValue - Emit string value.
656 void DIEString::EmitValue(const DwarfWriter &DW, unsigned Form) const {
657 DW.EmitString(String);
660 /// SizeOf - Determine size of string value in bytes.
662 unsigned DIEString::SizeOf(const DwarfWriter &DW, unsigned Form) const {
663 return String.size() + sizeof(char); // sizeof('\0');
666 //===----------------------------------------------------------------------===//
668 /// EmitValue - Emit label value.
670 void DIEDwarfLabel::EmitValue(const DwarfWriter &DW, unsigned Form) const {
671 DW.EmitReference(Label);
674 /// SizeOf - Determine size of label value in bytes.
676 unsigned DIEDwarfLabel::SizeOf(const DwarfWriter &DW, unsigned Form) const {
677 return DW.getAddressSize();
680 //===----------------------------------------------------------------------===//
682 /// EmitValue - Emit label value.
684 void DIEObjectLabel::EmitValue(const DwarfWriter &DW, unsigned Form) const {
685 DW.EmitReference(Label);
688 /// SizeOf - Determine size of label value in bytes.
690 unsigned DIEObjectLabel::SizeOf(const DwarfWriter &DW, unsigned Form) const {
691 return DW.getAddressSize();
694 //===----------------------------------------------------------------------===//
696 /// EmitValue - Emit delta value.
698 void DIEDelta::EmitValue(const DwarfWriter &DW, unsigned Form) const {
699 DW.EmitDifference(LabelHi, LabelLo);
702 /// SizeOf - Determine size of delta value in bytes.
704 unsigned DIEDelta::SizeOf(const DwarfWriter &DW, unsigned Form) const {
705 return DW.getAddressSize();
708 //===----------------------------------------------------------------------===//
709 /// EmitValue - Emit debug information entry offset.
711 void DIEntry::EmitValue(const DwarfWriter &DW, unsigned Form) const {
712 DW.EmitInt32(Entry->getOffset());
715 /// SizeOf - Determine size of debug information entry value in bytes.
717 unsigned DIEntry::SizeOf(const DwarfWriter &DW, unsigned Form) const {
718 return sizeof(int32_t);
721 //===----------------------------------------------------------------------===//
723 DIEBlock::~DIEBlock() {
724 for (unsigned i = 0, N = Values.size(); i < N; ++i) {
725 delete Values[i];
729 /// ComputeSize - calculate the size of the block.
731 unsigned DIEBlock::ComputeSize(DwarfWriter &DW) {
732 Size = 0;
733 for (unsigned i = 0, N = Values.size(); i < N; ++i) {
734 Size += Values[i]->SizeOf(DW, Forms[i]);
736 return Size;
739 /// BestForm - Choose the best form for data.
741 unsigned DIEBlock::BestForm() {
742 if ((unsigned char)Size == Size) return DW_FORM_block1;
743 if ((unsigned short)Size == Size) return DW_FORM_block2;
744 if ((unsigned int)Size == Size) return DW_FORM_block4;
745 return DW_FORM_block;
748 /// EmitValue - Emit block data.
750 void DIEBlock::EmitValue(const DwarfWriter &DW, unsigned Form) const {
751 switch (Form) {
752 case DW_FORM_block1: DW.EmitInt8(Size); break;
753 case DW_FORM_block2: DW.EmitInt16(Size); break;
754 case DW_FORM_block4: DW.EmitInt32(Size); break;
755 case DW_FORM_block: DW.EmitULEB128Bytes(Size); break;
756 default: assert(0 && "Improper form for block"); break;
758 for (unsigned i = 0, N = Values.size(); i < N; ++i) {
759 DW.EOL("");
760 Values[i]->EmitValue(DW, Forms[i]);
764 /// SizeOf - Determine size of block data in bytes.
766 unsigned DIEBlock::SizeOf(const DwarfWriter &DW, unsigned Form) const {
767 switch (Form) {
768 case DW_FORM_block1: return Size + sizeof(int8_t);
769 case DW_FORM_block2: return Size + sizeof(int16_t);
770 case DW_FORM_block4: return Size + sizeof(int32_t);
771 case DW_FORM_block: return Size + DW.SizeULEB128(Size);
772 default: assert(0 && "Improper form for block"); break;
774 return 0;
777 /// AddUInt - Add an unsigned integer value.
779 void DIEBlock::AddUInt(unsigned Form, uint64_t Integer) {
780 DIEInteger *DI = new DIEInteger(Integer);
781 Values.push_back(DI);
782 if (Form == 0) Form = DI->BestForm(false);
783 Forms.push_back(Form);
786 /// AddSInt - Add an signed integer value.
788 void DIEBlock::AddSInt(unsigned Form, int64_t Integer) {
789 DIEInteger *DI = new DIEInteger(Integer);
790 Values.push_back(DI);
791 if (Form == 0) Form = DI->BestForm(true);
792 Forms.push_back(Form);
795 /// AddString - Add a std::string value.
797 void DIEBlock::AddString(unsigned Form, const std::string &String) {
798 Values.push_back(new DIEString(String));
799 Forms.push_back(Form);
802 /// AddLabel - Add a Dwarf label value.
804 void DIEBlock::AddLabel(unsigned Form, const DWLabel &Label) {
805 Values.push_back(new DIEDwarfLabel(Label));
806 Forms.push_back(Form);
809 /// AddObjectLabel - Add a non-Dwarf label value.
811 void DIEBlock::AddObjectLabel(unsigned Form, const std::string &Label) {
812 Values.push_back(new DIEObjectLabel(Label));
813 Forms.push_back(Form);
816 /// AddDelta - Add a label delta value.
818 void DIEBlock::AddDelta(unsigned Form, const DWLabel &Hi, const DWLabel &Lo) {
819 Values.push_back(new DIEDelta(Hi, Lo));
820 Forms.push_back(Form);
823 /// AddDIEntry - Add a DIE value.
825 void DIEBlock::AddDIEntry(unsigned Form, DIE *Entry) {
826 Values.push_back(new DIEntry(Entry));
827 Forms.push_back(Form);
830 //===----------------------------------------------------------------------===//
832 DIE::DIE(unsigned Tag)
833 : Abbrev(new DIEAbbrev(Tag, DW_CHILDREN_no))
834 , AbbrevID(0)
835 , Offset(0)
836 , Size(0)
837 , Children()
838 , Values()
841 DIE::~DIE() {
842 if (Abbrev) delete Abbrev;
844 for (unsigned i = 0, N = Children.size(); i < N; ++i) {
845 delete Children[i];
848 for (unsigned j = 0, M = Values.size(); j < M; ++j) {
849 delete Values[j];
853 /// AddSiblingOffset - Add a sibling offset field to the front of the DIE.
855 void DIE::AddSiblingOffset() {
856 DIEInteger *DI = new DIEInteger(0);
857 Values.insert(Values.begin(), DI);
858 Abbrev->AddFirstAttribute(DW_AT_sibling, DW_FORM_ref4);
861 /// AddUInt - Add an unsigned integer attribute data and value.
863 void DIE::AddUInt(unsigned Attribute, unsigned Form, uint64_t Integer) {
864 DIEInteger *DI = new DIEInteger(Integer);
865 Values.push_back(DI);
866 if (!Form) Form = DI->BestForm(false);
867 Abbrev->AddAttribute(Attribute, Form);
870 /// AddSInt - Add an signed integer attribute data and value.
872 void DIE::AddSInt(unsigned Attribute, unsigned Form, int64_t Integer) {
873 DIEInteger *DI = new DIEInteger(Integer);
874 Values.push_back(DI);
875 if (!Form) Form = DI->BestForm(true);
876 Abbrev->AddAttribute(Attribute, Form);
879 /// AddString - Add a std::string attribute data and value.
881 void DIE::AddString(unsigned Attribute, unsigned Form,
882 const std::string &String) {
883 Values.push_back(new DIEString(String));
884 Abbrev->AddAttribute(Attribute, Form);
887 /// AddLabel - Add a Dwarf label attribute data and value.
889 void DIE::AddLabel(unsigned Attribute, unsigned Form,
890 const DWLabel &Label) {
891 Values.push_back(new DIEDwarfLabel(Label));
892 Abbrev->AddAttribute(Attribute, Form);
895 /// AddObjectLabel - Add an non-Dwarf label attribute data and value.
897 void DIE::AddObjectLabel(unsigned Attribute, unsigned Form,
898 const std::string &Label) {
899 Values.push_back(new DIEObjectLabel(Label));
900 Abbrev->AddAttribute(Attribute, Form);
903 /// AddDelta - Add a label delta attribute data and value.
905 void DIE::AddDelta(unsigned Attribute, unsigned Form,
906 const DWLabel &Hi, const DWLabel &Lo) {
907 Values.push_back(new DIEDelta(Hi, Lo));
908 Abbrev->AddAttribute(Attribute, Form);
911 /// AddDIEntry - Add a DIE attribute data and value.
913 void DIE::AddDIEntry(unsigned Attribute, unsigned Form, DIE *Entry) {
914 Values.push_back(new DIEntry(Entry));
915 Abbrev->AddAttribute(Attribute, Form);
918 /// AddBlock - Add block data.
920 void DIE::AddBlock(unsigned Attribute, unsigned Form, DIEBlock *Block) {
921 assert(Block->Size && "Block size has not been computed");
922 Values.push_back(Block);
923 if (!Form) Form = Block->BestForm();
924 Abbrev->AddAttribute(Attribute, Form);
927 /// Complete - Indicate that all attributes have been added and ready to get an
928 /// abbreviation ID.
929 void DIE::Complete(DwarfWriter &DW) {
930 AbbrevID = DW.NewAbbreviation(Abbrev);
931 delete Abbrev;
932 Abbrev = NULL;
935 /// AddChild - Add a child to the DIE.
937 void DIE::AddChild(DIE *Child) {
938 assert(Abbrev && "Adding children without an abbreviation");
939 Abbrev->setChildrenFlag(DW_CHILDREN_yes);
940 Children.push_back(Child);
943 //===----------------------------------------------------------------------===//
945 /// DWContext
947 //===----------------------------------------------------------------------===//
949 /// PrintHex - Print a value as a hexidecimal value.
951 void DwarfWriter::PrintHex(int Value) const {
952 O << "0x" << std::hex << Value << std::dec;
955 /// EOL - Print a newline character to asm stream. If a comment is present
956 /// then it will be printed first. Comments should not contain '\n'.
957 void DwarfWriter::EOL(const std::string &Comment) const {
958 if (DwarfVerbose && !Comment.empty()) {
959 O << "\t"
960 << Asm->CommentString
961 << " "
962 << Comment;
964 O << "\n";
967 /// EmitAlign - Print a align directive.
969 void DwarfWriter::EmitAlign(unsigned Alignment) const {
970 O << Asm->AlignDirective << Alignment << "\n";
973 /// EmitULEB128Bytes - Emit an assembler byte data directive to compose an
974 /// unsigned leb128 value.
975 void DwarfWriter::EmitULEB128Bytes(unsigned Value) const {
976 if (hasLEB128) {
977 O << "\t.uleb128\t"
978 << Value;
979 } else {
980 O << Asm->Data8bitsDirective;
981 PrintULEB128(Value);
985 /// EmitSLEB128Bytes - Emit an assembler byte data directive to compose a
986 /// signed leb128 value.
987 void DwarfWriter::EmitSLEB128Bytes(int Value) const {
988 if (hasLEB128) {
989 O << "\t.sleb128\t"
990 << Value;
991 } else {
992 O << Asm->Data8bitsDirective;
993 PrintSLEB128(Value);
997 /// PrintULEB128 - Print a series of hexidecimal values (separated by commas)
998 /// representing an unsigned leb128 value.
999 void DwarfWriter::PrintULEB128(unsigned Value) const {
1000 do {
1001 unsigned Byte = Value & 0x7f;
1002 Value >>= 7;
1003 if (Value) Byte |= 0x80;
1004 PrintHex(Byte);
1005 if (Value) O << ", ";
1006 } while (Value);
1009 /// SizeULEB128 - Compute the number of bytes required for an unsigned leb128
1010 /// value.
1011 unsigned DwarfWriter::SizeULEB128(unsigned Value) {
1012 unsigned Size = 0;
1013 do {
1014 Value >>= 7;
1015 Size += sizeof(int8_t);
1016 } while (Value);
1017 return Size;
1020 /// PrintSLEB128 - Print a series of hexidecimal values (separated by commas)
1021 /// representing a signed leb128 value.
1022 void DwarfWriter::PrintSLEB128(int Value) const {
1023 int Sign = Value >> (8 * sizeof(Value) - 1);
1024 bool IsMore;
1026 do {
1027 unsigned Byte = Value & 0x7f;
1028 Value >>= 7;
1029 IsMore = Value != Sign || ((Byte ^ Sign) & 0x40) != 0;
1030 if (IsMore) Byte |= 0x80;
1031 PrintHex(Byte);
1032 if (IsMore) O << ", ";
1033 } while (IsMore);
1036 /// SizeSLEB128 - Compute the number of bytes required for a signed leb128
1037 /// value.
1038 unsigned DwarfWriter::SizeSLEB128(int Value) {
1039 unsigned Size = 0;
1040 int Sign = Value >> (8 * sizeof(Value) - 1);
1041 bool IsMore;
1043 do {
1044 unsigned Byte = Value & 0x7f;
1045 Value >>= 7;
1046 IsMore = Value != Sign || ((Byte ^ Sign) & 0x40) != 0;
1047 Size += sizeof(int8_t);
1048 } while (IsMore);
1049 return Size;
1052 /// EmitInt8 - Emit a byte directive and value.
1054 void DwarfWriter::EmitInt8(int Value) const {
1055 O << Asm->Data8bitsDirective;
1056 PrintHex(Value & 0xFF);
1059 /// EmitInt16 - Emit a short directive and value.
1061 void DwarfWriter::EmitInt16(int Value) const {
1062 O << Asm->Data16bitsDirective;
1063 PrintHex(Value & 0xFFFF);
1066 /// EmitInt32 - Emit a long directive and value.
1068 void DwarfWriter::EmitInt32(int Value) const {
1069 O << Asm->Data32bitsDirective;
1070 PrintHex(Value);
1073 /// EmitInt64 - Emit a long long directive and value.
1075 void DwarfWriter::EmitInt64(uint64_t Value) const {
1076 if (Asm->Data64bitsDirective) {
1077 O << Asm->Data64bitsDirective << "0x" << std::hex << Value << std::dec;
1078 } else {
1079 if (TD->isBigEndian()) {
1080 EmitInt32(unsigned(Value >> 32)); O << "\n";
1081 EmitInt32(unsigned(Value));
1082 } else {
1083 EmitInt32(unsigned(Value)); O << "\n";
1084 EmitInt32(unsigned(Value >> 32));
1089 /// EmitString - Emit a string with quotes and a null terminator.
1090 /// Special characters are emitted properly. (Eg. '\t')
1091 void DwarfWriter::EmitString(const std::string &String) const {
1092 O << Asm->AsciiDirective
1093 << "\"";
1094 for (unsigned i = 0, N = String.size(); i < N; ++i) {
1095 unsigned char C = String[i];
1097 if (!isascii(C) || iscntrl(C)) {
1098 switch(C) {
1099 case '\b': O << "\\b"; break;
1100 case '\f': O << "\\f"; break;
1101 case '\n': O << "\\n"; break;
1102 case '\r': O << "\\r"; break;
1103 case '\t': O << "\\t"; break;
1104 default:
1105 O << '\\';
1106 O << char('0' + (C >> 6));
1107 O << char('0' + (C >> 3));
1108 O << char('0' + (C >> 0));
1109 break;
1111 } else if (C == '\"') {
1112 O << "\\\"";
1113 } else if (C == '\'') {
1114 O << "\\\'";
1115 } else {
1116 O << C;
1119 O << "\\0\"";
1122 /// PrintLabelName - Print label name in form used by Dwarf writer.
1124 void DwarfWriter::PrintLabelName(const char *Tag, unsigned Number) const {
1125 O << Asm->PrivateGlobalPrefix
1126 << "debug_"
1127 << Tag;
1128 if (Number) O << Number;
1131 /// EmitLabel - Emit location label for internal use by Dwarf.
1133 void DwarfWriter::EmitLabel(const char *Tag, unsigned Number) const {
1134 PrintLabelName(Tag, Number);
1135 O << ":\n";
1138 /// EmitReference - Emit a reference to a label.
1140 void DwarfWriter::EmitReference(const char *Tag, unsigned Number) const {
1141 if (AddressSize == 4)
1142 O << Asm->Data32bitsDirective;
1143 else
1144 O << Asm->Data64bitsDirective;
1146 PrintLabelName(Tag, Number);
1148 void DwarfWriter::EmitReference(const std::string &Name) const {
1149 if (AddressSize == 4)
1150 O << Asm->Data32bitsDirective;
1151 else
1152 O << Asm->Data64bitsDirective;
1154 O << Name;
1157 /// EmitDifference - Emit an label difference as sizeof(pointer) value. Some
1158 /// assemblers do not accept absolute expressions with data directives, so there
1159 /// is an option (needsSet) to use an intermediary 'set' expression.
1160 void DwarfWriter::EmitDifference(const char *TagHi, unsigned NumberHi,
1161 const char *TagLo, unsigned NumberLo) const {
1162 if (needsSet) {
1163 static unsigned SetCounter = 0;
1165 O << "\t.set\t";
1166 PrintLabelName("set", SetCounter);
1167 O << ",";
1168 PrintLabelName(TagHi, NumberHi);
1169 O << "-";
1170 PrintLabelName(TagLo, NumberLo);
1171 O << "\n";
1173 if (AddressSize == sizeof(int32_t))
1174 O << Asm->Data32bitsDirective;
1175 else
1176 O << Asm->Data64bitsDirective;
1178 PrintLabelName("set", SetCounter);
1180 ++SetCounter;
1181 } else {
1182 if (AddressSize == sizeof(int32_t))
1183 O << Asm->Data32bitsDirective;
1184 else
1185 O << Asm->Data64bitsDirective;
1187 PrintLabelName(TagHi, NumberHi);
1188 O << "-";
1189 PrintLabelName(TagLo, NumberLo);
1193 /// NewAbbreviation - Add the abbreviation to the Abbreviation vector.
1194 ///
1195 unsigned DwarfWriter::NewAbbreviation(DIEAbbrev *Abbrev) {
1196 return Abbreviations.insert(*Abbrev);
1199 /// NewString - Add a string to the constant pool and returns a label.
1201 DWLabel DwarfWriter::NewString(const std::string &String) {
1202 unsigned StringID = StringPool.insert(String);
1203 return DWLabel("string", StringID);
1206 /// AddSourceLine - Add location information to specified debug information
1207 /// entry.
1208 void DwarfWriter::AddSourceLine(DIE *Die, CompileUnitDesc *File, unsigned Line){
1209 if (File && Line) {
1210 CompileUnit *FileUnit = FindCompileUnit(File);
1211 unsigned FileID = FileUnit->getID();
1212 Die->AddUInt(DW_AT_decl_file, 0, FileID);
1213 Die->AddUInt(DW_AT_decl_line, 0, Line);
1217 /// AddAddress - Add an address attribute to a die based on the location
1218 /// provided.
1219 void DwarfWriter::AddAddress(DIE *Die, unsigned Attribute,
1220 const MachineLocation &Location) {
1221 DIEBlock *Block = new DIEBlock();
1222 if (Location.isRegister()) {
1223 Block->AddUInt(DW_FORM_data1,
1224 DW_OP_reg0 + RI->getDwarfRegNum(Location.getRegister()));
1225 } else {
1226 Block->AddUInt(DW_FORM_data1,
1227 DW_OP_breg0 + RI->getDwarfRegNum(Location.getRegister()));
1228 Block->AddUInt(DW_FORM_sdata, Location.getOffset());
1230 Block->ComputeSize(*this);
1231 Die->AddBlock(Attribute, 0, Block);
1234 /// getDieMapSlotFor - Returns the debug information entry map slot for the
1235 /// specified debug descriptor.
1236 DIE *&DwarfWriter::getDieMapSlotFor(DebugInfoDesc *DD) {
1237 return DescToDieMap[DD];
1240 /// NewType - Create a new type DIE.
1242 DIE *DwarfWriter::NewType(DIE *Context, TypeDesc *TyDesc, CompileUnit *Unit) {
1243 if (!TyDesc) {
1244 // FIXME - Hack for missing types
1245 DIE *Die = new DIE(DW_TAG_base_type);
1246 Die->AddUInt(DW_AT_byte_size, 0, 4);
1247 Die->AddUInt(DW_AT_encoding, DW_FORM_data1, DW_ATE_signed);
1248 Unit->getDie()->AddChild(Die);
1249 return Die;
1252 // FIXME - Should handle other contexts that compile units.
1254 // Check for pre-existence.
1255 DIE *&Slot = Unit->getDieMapSlotFor(TyDesc);
1256 if (Slot) return Slot;
1258 // Get core information.
1259 const std::string &Name = TyDesc->getName();
1260 uint64_t Size = TyDesc->getSize() >> 3;
1262 DIE *Ty = NULL;
1264 if (BasicTypeDesc *BasicTy = dyn_cast<BasicTypeDesc>(TyDesc)) {
1265 // Fundamental types like int, float, bool
1266 Slot = Ty = new DIE(DW_TAG_base_type);
1267 unsigned Encoding = BasicTy->getEncoding();
1268 Ty->AddUInt(DW_AT_encoding, DW_FORM_data1, Encoding);
1269 } else if (DerivedTypeDesc *DerivedTy = dyn_cast<DerivedTypeDesc>(TyDesc)) {
1270 // Create specific DIE.
1271 Slot = Ty = new DIE(DerivedTy->getTag());
1273 // Map to main type, void will not have a type.
1274 if (TypeDesc *FromTy = DerivedTy->getFromType()) {
1275 Ty->AddDIEntry(DW_AT_type, DW_FORM_ref4,
1276 NewType(Context, FromTy, Unit));
1278 } else if (CompositeTypeDesc *CompTy = dyn_cast<CompositeTypeDesc>(TyDesc)) {
1279 // Fetch tag
1280 unsigned Tag = CompTy->getTag();
1282 // Create specific DIE.
1283 Slot = Ty = Tag == DW_TAG_vector_type ? new DIE(DW_TAG_array_type) :
1284 new DIE(Tag);
1286 std::vector<DebugInfoDesc *> &Elements = CompTy->getElements();
1288 switch (Tag) {
1289 case DW_TAG_vector_type: Ty->AddUInt(DW_AT_GNU_vector, DW_FORM_flag, 1);
1290 // Fall thru
1291 case DW_TAG_array_type: {
1292 // Add element type.
1293 if (TypeDesc *FromTy = CompTy->getFromType()) {
1294 Ty->AddDIEntry(DW_AT_type, DW_FORM_ref4,
1295 NewType(Context, FromTy, Unit));
1298 // Don't emit size attribute.
1299 Size = 0;
1301 // Construct an anonymous type for index type.
1302 DIE *IndexTy = new DIE(DW_TAG_base_type);
1303 IndexTy->AddUInt(DW_AT_byte_size, 0, 4);
1304 IndexTy->AddUInt(DW_AT_encoding, DW_FORM_data1, DW_ATE_signed);
1305 // Add to context.
1306 Context->AddChild(IndexTy);
1308 // Add subranges to array type.
1309 for(unsigned i = 0, N = Elements.size(); i < N; ++i) {
1310 SubrangeDesc *SRD = cast<SubrangeDesc>(Elements[i]);
1311 int64_t Lo = SRD->getLo();
1312 int64_t Hi = SRD->getHi();
1313 DIE *Subrange = new DIE(DW_TAG_subrange_type);
1315 // If a range is available.
1316 if (Lo != Hi) {
1317 Subrange->AddDIEntry(DW_AT_type, DW_FORM_ref4, IndexTy);
1318 // Only add low if non-zero.
1319 if (Lo) Subrange->AddSInt(DW_AT_lower_bound, 0, Lo);
1320 Subrange->AddSInt(DW_AT_upper_bound, 0, Hi);
1322 Ty->AddChild(Subrange);
1325 break;
1327 case DW_TAG_structure_type:
1328 case DW_TAG_union_type: {
1329 // FIXME - this is just the basics.
1330 // Add elements to structure type.
1331 for(unsigned i = 0, N = Elements.size(); i < N; ++i) {
1332 DerivedTypeDesc *MemberDesc = cast<DerivedTypeDesc>(Elements[i]);
1334 // Extract the basic information.
1335 const std::string &Name = MemberDesc->getName();
1336 TypeDesc *MemTy = MemberDesc->getFromType();
1337 uint64_t Size = MemberDesc->getSize();
1338 uint64_t Align = MemberDesc->getAlign();
1339 uint64_t Offset = MemberDesc->getOffset();
1341 // Construct member debug information entry.
1342 DIE *Member = new DIE(DW_TAG_member);
1344 // Add name if not "".
1345 if (!Name.empty()) Member->AddString(DW_AT_name, DW_FORM_string, Name);
1346 // Add location if available.
1347 AddSourceLine(Member, MemberDesc->getFile(), MemberDesc->getLine());
1349 // Most of the time the field info is the same as the members.
1350 uint64_t FieldSize = Size;
1351 uint64_t FieldAlign = Align;
1352 uint64_t FieldOffset = Offset;
1354 if (TypeDesc *FromTy = MemberDesc->getFromType()) {
1355 Member->AddDIEntry(DW_AT_type, DW_FORM_ref4,
1356 NewType(Context, FromTy, Unit));
1357 FieldSize = FromTy->getSize();
1358 FieldAlign = FromTy->getSize();
1361 // Unless we have a bit field.
1362 if (FieldSize != Size) {
1363 // Construct the alignment mask.
1364 uint64_t AlignMask = ~(FieldAlign - 1);
1365 // Determine the high bit + 1 of the declared size.
1366 uint64_t HiMark = (Offset + FieldSize) & AlignMask;
1367 // Work backwards to determine the base offset of the field.
1368 FieldOffset = HiMark - FieldSize;
1369 // Now normalize offset to the field.
1370 Offset -= FieldOffset;
1372 // Maybe we need to work from the other end.
1373 if (TD->isLittleEndian()) Offset = FieldSize - (Offset + Size);
1375 Member->AddUInt(DW_AT_byte_size, 0, FieldSize >> 3);
1376 Member->AddUInt(DW_AT_bit_size, 0, Size);
1377 Member->AddUInt(DW_AT_bit_offset, 0, Offset);
1380 // Add computation for offset.
1381 DIEBlock *Block = new DIEBlock();
1382 Block->AddUInt(DW_FORM_data1, DW_OP_plus_uconst);
1383 Block->AddUInt(DW_FORM_udata, FieldOffset >> 3);
1384 Block->ComputeSize(*this);
1385 Member->AddBlock(DW_AT_data_member_location, 0, Block);
1387 if (MemberDesc->isProtected()) {
1388 Member->AddUInt(DW_AT_accessibility, 0, DW_ACCESS_protected);
1389 } else if (MemberDesc->isPrivate()) {
1390 Member->AddUInt(DW_AT_accessibility, 0, DW_ACCESS_private);
1393 Ty->AddChild(Member);
1395 break;
1397 case DW_TAG_enumeration_type: {
1398 // Add enumerators to enumeration type.
1399 for(unsigned i = 0, N = Elements.size(); i < N; ++i) {
1400 EnumeratorDesc *ED = cast<EnumeratorDesc>(Elements[i]);
1401 const std::string &Name = ED->getName();
1402 int64_t Value = ED->getValue();
1403 DIE *Enumerator = new DIE(DW_TAG_enumerator);
1404 Enumerator->AddString(DW_AT_name, DW_FORM_string, Name);
1405 Enumerator->AddSInt(DW_AT_const_value, DW_FORM_sdata, Value);
1406 Ty->AddChild(Enumerator);
1409 break;
1411 case DW_TAG_subroutine_type: {
1412 // Add prototype flag.
1413 Ty->AddUInt(DW_AT_prototyped, DW_FORM_flag, 1);
1414 // Add return type.
1415 Ty->AddDIEntry(DW_AT_type, DW_FORM_ref4,
1416 NewType(Context, dyn_cast<TypeDesc>(Elements[0]), Unit));
1418 // Add arguments.
1419 for(unsigned i = 1, N = Elements.size(); i < N; ++i) {
1420 DIE *Arg = new DIE(DW_TAG_formal_parameter);
1421 Arg->AddDIEntry(DW_AT_type, DW_FORM_ref4,
1422 NewType(Context, cast<TypeDesc>(Elements[i]), Unit));
1423 Ty->AddChild(Arg);
1426 break;
1428 default: break;
1432 assert(Ty && "Type not supported yet");
1434 // Add size if non-zero (derived types don't have a size.)
1435 if (Size) Ty->AddUInt(DW_AT_byte_size, 0, Size);
1436 // Add name if not anonymous or intermediate type.
1437 if (!Name.empty()) Ty->AddString(DW_AT_name, DW_FORM_string, Name);
1438 // Add source line info if available.
1439 AddSourceLine(Ty, TyDesc->getFile(), TyDesc->getLine());
1441 // Add to context owner.
1442 Context->AddChild(Ty);
1444 return Slot;
1447 /// NewCompileUnit - Create new compile unit and it's debug information entry.
1449 CompileUnit *DwarfWriter::NewCompileUnit(CompileUnitDesc *UnitDesc,
1450 unsigned ID) {
1451 // Construct debug information entry.
1452 DIE *Die = new DIE(DW_TAG_compile_unit);
1453 Die->AddDelta (DW_AT_stmt_list, DW_FORM_data4, DWLabel("line", 0),
1454 DWLabel("section_line", 0));
1455 // Die->AddLabel (DW_AT_high_pc, DW_FORM_addr, DWLabel("text_end", 0));
1456 // Die->AddLabel (DW_AT_low_pc, DW_FORM_addr, DWLabel("text_begin", 0));
1457 Die->AddString(DW_AT_producer, DW_FORM_string, UnitDesc->getProducer());
1458 Die->AddUInt (DW_AT_language, DW_FORM_data1, UnitDesc->getLanguage());
1459 Die->AddString(DW_AT_name, DW_FORM_string, UnitDesc->getFileName());
1460 Die->AddString(DW_AT_comp_dir, DW_FORM_string, UnitDesc->getDirectory());
1462 // Add debug information entry to descriptor map.
1463 DIE *&Slot = getDieMapSlotFor(UnitDesc);
1464 Slot = Die;
1466 // Construct compile unit.
1467 CompileUnit *Unit = new CompileUnit(UnitDesc, ID, Die);
1469 // Add Unit to compile unit map.
1470 DescToUnitMap[UnitDesc] = Unit;
1472 return Unit;
1475 /// FindCompileUnit - Get the compile unit for the given descriptor.
1477 CompileUnit *DwarfWriter::FindCompileUnit(CompileUnitDesc *UnitDesc) {
1478 CompileUnit *Unit = DescToUnitMap[UnitDesc];
1479 assert(Unit && "Missing compile unit.");
1480 return Unit;
1483 /// NewGlobalVariable - Add a new global variable DIE.
1485 DIE *DwarfWriter::NewGlobalVariable(GlobalVariableDesc *GVD) {
1486 // Get the compile unit context.
1487 CompileUnitDesc *UnitDesc = static_cast<CompileUnitDesc *>(GVD->getContext());
1488 CompileUnit *Unit = FindCompileUnit(UnitDesc);
1490 // Check for pre-existence.
1491 DIE *&Slot = Unit->getDieMapSlotFor(GVD);
1492 if (Slot) return Slot;
1494 // Get the global variable itself.
1495 GlobalVariable *GV = GVD->getGlobalVariable();
1496 // Generate the mangled name.
1497 std::string MangledName = Asm->Mang->getValueName(GV);
1499 // Gather the details (simplify add attribute code.)
1500 const std::string &Name = GVD->getName();
1502 // Get the global's type.
1503 DIE *Type = NewType(Unit->getDie(), GVD->getType(), Unit);
1505 // Create the globale variable DIE.
1506 DIE *VariableDie = new DIE(DW_TAG_variable);
1507 VariableDie->AddString (DW_AT_name, DW_FORM_string, Name);
1508 VariableDie->AddDIEntry (DW_AT_type, DW_FORM_ref4, Type);
1509 VariableDie->AddUInt (DW_AT_external, DW_FORM_flag, 1);
1511 // Add source line info if available.
1512 AddSourceLine(VariableDie, UnitDesc, GVD->getLine());
1514 // Add address.
1515 DIEBlock *Block = new DIEBlock();
1516 Block->AddUInt(DW_FORM_data1, DW_OP_addr);
1517 Block->AddObjectLabel(DW_FORM_udata, MangledName);
1518 Block->ComputeSize(*this);
1519 VariableDie->AddBlock(DW_AT_location, 0, Block);
1521 // Add to map.
1522 Slot = VariableDie;
1524 // Add to context owner.
1525 Unit->getDie()->AddChild(VariableDie);
1527 // Expose as global.
1528 // FIXME - need to check external flag.
1529 Unit->AddGlobal(Name, VariableDie);
1531 return VariableDie;
1534 /// NewSubprogram - Add a new subprogram DIE.
1536 DIE *DwarfWriter::NewSubprogram(SubprogramDesc *SPD) {
1537 // Get the compile unit context.
1538 CompileUnitDesc *UnitDesc = static_cast<CompileUnitDesc *>(SPD->getContext());
1539 CompileUnit *Unit = FindCompileUnit(UnitDesc);
1541 // Check for pre-existence.
1542 DIE *&Slot = Unit->getDieMapSlotFor(SPD);
1543 if (Slot) return Slot;
1545 // Gather the details (simplify add attribute code.)
1546 const std::string &Name = SPD->getName();
1547 DIE *Type = NewType(Unit->getDie(), SPD->getType(), Unit);
1548 unsigned IsExternal = SPD->isStatic() ? 0 : 1;
1550 DIE *SubprogramDie = new DIE(DW_TAG_subprogram);
1551 SubprogramDie->AddString (DW_AT_name, DW_FORM_string, Name);
1552 if (Type) {
1553 SubprogramDie->AddDIEntry (DW_AT_type, DW_FORM_ref4, Type);
1555 SubprogramDie->AddUInt (DW_AT_external, DW_FORM_flag, IsExternal);
1556 SubprogramDie->AddUInt (DW_AT_prototyped, DW_FORM_flag, 1);
1558 // Add source line info if available.
1559 AddSourceLine(SubprogramDie, UnitDesc, SPD->getLine());
1561 // Add to map.
1562 Slot = SubprogramDie;
1564 // Add to context owner.
1565 Unit->getDie()->AddChild(SubprogramDie);
1567 // Expose as global.
1568 Unit->AddGlobal(Name, SubprogramDie);
1570 return SubprogramDie;
1573 /// NewScopeVariable - Create a new scope variable.
1575 DIE *DwarfWriter::NewScopeVariable(DebugVariable *DV, CompileUnit *Unit) {
1576 // Get the descriptor.
1577 VariableDesc *VD = DV->getDesc();
1579 // Translate tag to proper Dwarf tag. The result variable is dropped for now.
1580 unsigned Tag;
1581 switch (VD->getTag()) {
1582 case DW_TAG_return_variable: return NULL;
1583 case DW_TAG_arg_variable: Tag = DW_TAG_formal_parameter; break;
1584 case DW_TAG_auto_variable: // fall thru
1585 default: Tag = DW_TAG_variable; break;
1588 // Define variable debug information entry.
1589 DIE *VariableDie = new DIE(Tag);
1590 VariableDie->AddString(DW_AT_name, DW_FORM_string, VD->getName());
1592 // Add source line info if available.
1593 AddSourceLine(VariableDie, VD->getFile(), VD->getLine());
1595 // Add variable type.
1596 DIE *Type = NewType(Unit->getDie(), VD->getType(), Unit);
1597 VariableDie->AddDIEntry(DW_AT_type, DW_FORM_ref4, Type);
1599 // Add variable address.
1600 MachineLocation Location;
1601 RI->getLocation(*MF, DV->getFrameIndex(), Location);
1602 AddAddress(VariableDie, DW_AT_location, Location);
1604 return VariableDie;
1607 /// ConstructScope - Construct the components of a scope.
1609 void DwarfWriter::ConstructScope(DebugScope *ParentScope,
1610 DIE *ParentDie, CompileUnit *Unit) {
1611 // Add variables to scope.
1612 std::vector<DebugVariable *> &Variables = ParentScope->getVariables();
1613 for (unsigned i = 0, N = Variables.size(); i < N; ++i) {
1614 DIE *VariableDie = NewScopeVariable(Variables[i], Unit);
1615 if (VariableDie) ParentDie->AddChild(VariableDie);
1618 // Add nested scopes.
1619 std::vector<DebugScope *> &Scopes = ParentScope->getScopes();
1620 for (unsigned j = 0, M = Scopes.size(); j < M; ++j) {
1621 // Define the Scope debug information entry.
1622 DebugScope *Scope = Scopes[j];
1623 // FIXME - Ignore inlined functions for the time being.
1624 if (!Scope->getParent()) continue;
1626 DIE *ScopeDie = new DIE(DW_TAG_lexical_block);
1628 // Add the scope bounds.
1629 if (unsigned StartID = Scope->getStartLabelID()) {
1630 ScopeDie->AddLabel(DW_AT_low_pc, DW_FORM_addr,
1631 DWLabel("loc", StartID));
1632 } else {
1633 ScopeDie->AddLabel(DW_AT_low_pc, DW_FORM_addr,
1634 DWLabel("func_begin", SubprogramCount));
1636 if (unsigned EndID = Scope->getEndLabelID()) {
1637 ScopeDie->AddLabel(DW_AT_high_pc, DW_FORM_addr,
1638 DWLabel("loc", EndID));
1639 } else {
1640 ScopeDie->AddLabel(DW_AT_high_pc, DW_FORM_addr,
1641 DWLabel("func_end", SubprogramCount));
1644 // Add the scope contents.
1645 ConstructScope(Scope, ScopeDie, Unit);
1646 ParentDie->AddChild(ScopeDie);
1650 /// ConstructRootScope - Construct the scope for the subprogram.
1652 void DwarfWriter::ConstructRootScope(DebugScope *RootScope) {
1653 // Exit if there is no root scope.
1654 if (!RootScope) return;
1656 // Get the subprogram debug information entry.
1657 SubprogramDesc *SPD = cast<SubprogramDesc>(RootScope->getDesc());
1659 // Get the compile unit context.
1660 CompileUnitDesc *UnitDesc = static_cast<CompileUnitDesc *>(SPD->getContext());
1661 CompileUnit *Unit = FindCompileUnit(UnitDesc);
1663 // Get the subprogram die.
1664 DIE *SPDie = Unit->getDieMapSlotFor(SPD);
1665 assert(SPDie && "Missing subprogram descriptor");
1667 // Add the function bounds.
1668 SPDie->AddLabel(DW_AT_low_pc, DW_FORM_addr,
1669 DWLabel("func_begin", SubprogramCount));
1670 SPDie->AddLabel(DW_AT_high_pc, DW_FORM_addr,
1671 DWLabel("func_end", SubprogramCount));
1672 MachineLocation Location(RI->getFrameRegister(*MF));
1673 AddAddress(SPDie, DW_AT_frame_base, Location);
1675 ConstructScope(RootScope, SPDie, Unit);
1678 /// EmitInitial - Emit initial Dwarf declarations. This is necessary for cc
1679 /// tools to recognize the object file contains Dwarf information.
1681 void DwarfWriter::EmitInitial() {
1682 // Check to see if we already emitted intial headers.
1683 if (didInitial) return;
1684 didInitial = true;
1686 // Dwarf sections base addresses.
1687 Asm->SwitchToDataSection(DwarfFrameSection, 0);
1688 EmitLabel("section_frame", 0);
1689 Asm->SwitchToDataSection(DwarfInfoSection, 0);
1690 EmitLabel("section_info", 0);
1691 EmitLabel("info", 0);
1692 Asm->SwitchToDataSection(DwarfAbbrevSection, 0);
1693 EmitLabel("section_abbrev", 0);
1694 EmitLabel("abbrev", 0);
1695 Asm->SwitchToDataSection(DwarfARangesSection, 0);
1696 EmitLabel("section_aranges", 0);
1697 Asm->SwitchToDataSection(DwarfMacInfoSection, 0);
1698 EmitLabel("section_macinfo", 0);
1699 Asm->SwitchToDataSection(DwarfLineSection, 0);
1700 EmitLabel("section_line", 0);
1701 EmitLabel("line", 0);
1702 Asm->SwitchToDataSection(DwarfLocSection, 0);
1703 EmitLabel("section_loc", 0);
1704 Asm->SwitchToDataSection(DwarfPubNamesSection, 0);
1705 EmitLabel("section_pubnames", 0);
1706 Asm->SwitchToDataSection(DwarfStrSection, 0);
1707 EmitLabel("section_str", 0);
1708 Asm->SwitchToDataSection(DwarfRangesSection, 0);
1709 EmitLabel("section_ranges", 0);
1711 Asm->SwitchToTextSection(TextSection, 0);
1712 EmitLabel("text_begin", 0);
1713 Asm->SwitchToDataSection(DataSection, 0);
1714 EmitLabel("data_begin", 0);
1716 // Emit common frame information.
1717 EmitInitialDebugFrame();
1720 /// EmitDIE - Recusively Emits a debug information entry.
1722 void DwarfWriter::EmitDIE(DIE *Die) const {
1723 // Get the abbreviation for this DIE.
1724 unsigned AbbrevID = Die->getAbbrevID();
1725 const DIEAbbrev &Abbrev = Abbreviations[AbbrevID];
1727 O << "\n";
1729 // Emit the code (index) for the abbreviation.
1730 EmitULEB128Bytes(AbbrevID);
1731 EOL(std::string("Abbrev [" +
1732 utostr(AbbrevID) +
1733 "] 0x" + utohexstr(Die->getOffset()) +
1734 ":0x" + utohexstr(Die->getSize()) + " " +
1735 TagString(Abbrev.getTag())));
1737 const std::vector<DIEValue *> &Values = Die->getValues();
1738 const std::vector<DIEAbbrevData> &AbbrevData = Abbrev.getData();
1740 // Emit the DIE attribute values.
1741 for (unsigned i = 0, N = Values.size(); i < N; ++i) {
1742 unsigned Attr = AbbrevData[i].getAttribute();
1743 unsigned Form = AbbrevData[i].getForm();
1744 assert(Form && "Too many attributes for DIE (check abbreviation)");
1746 switch (Attr) {
1747 case DW_AT_sibling: {
1748 EmitInt32(Die->SiblingOffset());
1749 break;
1751 default: {
1752 // Emit an attribute using the defined form.
1753 Values[i]->EmitValue(*this, Form);
1754 break;
1758 EOL(AttributeString(Attr));
1761 // Emit the DIE children if any.
1762 if (Abbrev.getChildrenFlag() == DW_CHILDREN_yes) {
1763 const std::vector<DIE *> &Children = Die->getChildren();
1765 for (unsigned j = 0, M = Children.size(); j < M; ++j) {
1766 EmitDIE(Children[j]);
1769 EmitInt8(0); EOL("End Of Children Mark");
1773 /// SizeAndOffsetDie - Compute the size and offset of a DIE.
1775 unsigned DwarfWriter::SizeAndOffsetDie(DIE *Die, unsigned Offset, bool Last) {
1776 // Get the children.
1777 const std::vector<DIE *> &Children = Die->getChildren();
1779 // If not last sibling and has children then add sibling offset attribute.
1780 if (!Last && !Children.empty()) Die->AddSiblingOffset();
1782 // Record the abbreviation.
1783 Die->Complete(*this);
1785 // Get the abbreviation for this DIE.
1786 unsigned AbbrevID = Die->getAbbrevID();
1787 const DIEAbbrev &Abbrev = Abbreviations[AbbrevID];
1789 // Set DIE offset
1790 Die->setOffset(Offset);
1792 // Start the size with the size of abbreviation code.
1793 Offset += SizeULEB128(AbbrevID);
1795 const std::vector<DIEValue *> &Values = Die->getValues();
1796 const std::vector<DIEAbbrevData> &AbbrevData = Abbrev.getData();
1798 // Emit the DIE attribute values.
1799 for (unsigned i = 0, N = Values.size(); i < N; ++i) {
1800 // Size attribute value.
1801 Offset += Values[i]->SizeOf(*this, AbbrevData[i].getForm());
1804 // Emit the DIE children if any.
1805 if (!Children.empty()) {
1806 assert(Abbrev.getChildrenFlag() == DW_CHILDREN_yes &&
1807 "Children flag not set");
1809 for (unsigned j = 0, M = Children.size(); j < M; ++j) {
1810 Offset = SizeAndOffsetDie(Children[j], Offset, (j + 1) == M);
1813 // End of children marker.
1814 Offset += sizeof(int8_t);
1817 Die->setSize(Offset - Die->getOffset());
1818 return Offset;
1821 /// SizeAndOffsets - Compute the size and offset of all the DIEs.
1823 void DwarfWriter::SizeAndOffsets() {
1825 // Process each compile unit.
1826 for (unsigned i = 0, N = CompileUnits.size(); i < N; ++i) {
1827 CompileUnit *Unit = CompileUnits[i];
1828 if (Unit->hasContent()) {
1829 // Compute size of compile unit header
1830 unsigned Offset = sizeof(int32_t) + // Length of Compilation Unit Info
1831 sizeof(int16_t) + // DWARF version number
1832 sizeof(int32_t) + // Offset Into Abbrev. Section
1833 sizeof(int8_t); // Pointer Size (in bytes)
1834 SizeAndOffsetDie(Unit->getDie(), Offset, (i + 1) == N);
1839 /// EmitFrameMoves - Emit frame instructions to describe the layout of the
1840 /// frame.
1841 void DwarfWriter::EmitFrameMoves(const char *BaseLabel, unsigned BaseLabelID,
1842 std::vector<MachineMove *> &Moves) {
1843 for (unsigned i = 0, N = Moves.size(); i < N; ++i) {
1844 MachineMove *Move = Moves[i];
1845 unsigned LabelID = Move->getLabelID();
1846 const MachineLocation &Dst = Move->getDestination();
1847 const MachineLocation &Src = Move->getSource();
1849 // Advance row if new location.
1850 if (BaseLabel && LabelID && BaseLabelID != LabelID) {
1851 EmitULEB128Bytes(DW_CFA_advance_loc4);
1852 EOL("DW_CFA_advance_loc4");
1853 EmitDifference("loc", LabelID, BaseLabel, BaseLabelID);
1854 EOL("");
1856 BaseLabelID = LabelID;
1857 BaseLabel = "loc";
1860 // If advancing cfa.
1861 if (Dst.isRegister() && Dst.getRegister() == MachineLocation::VirtualFP) {
1862 if (!Src.isRegister()) {
1863 if (Src.getRegister() == MachineLocation::VirtualFP) {
1864 EmitULEB128Bytes(DW_CFA_def_cfa_offset);
1865 EOL("DW_CFA_def_cfa_offset");
1866 } else {
1867 EmitULEB128Bytes(DW_CFA_def_cfa);
1868 EOL("DW_CFA_def_cfa");
1870 EmitULEB128Bytes(RI->getDwarfRegNum(Src.getRegister()));
1871 EOL("Register");
1874 int stackGrowth =
1875 Asm->TM.getFrameInfo()->getStackGrowthDirection() ==
1876 TargetFrameInfo::StackGrowsUp ?
1877 AddressSize : -AddressSize;
1879 EmitULEB128Bytes(Src.getOffset() / stackGrowth);
1880 EOL("Offset");
1881 } else {
1883 } else {
1888 /// EmitDebugInfo - Emit the debug info section.
1890 void DwarfWriter::EmitDebugInfo() const {
1891 // Start debug info section.
1892 Asm->SwitchToDataSection(DwarfInfoSection, 0);
1894 // Process each compile unit.
1895 for (unsigned i = 0, N = CompileUnits.size(); i < N; ++i) {
1896 CompileUnit *Unit = CompileUnits[i];
1898 if (Unit->hasContent()) {
1899 DIE *Die = Unit->getDie();
1900 // Emit the compile units header.
1901 EmitLabel("info_begin", Unit->getID());
1902 // Emit size of content not including length itself
1903 unsigned ContentSize = Die->getSize() +
1904 sizeof(int16_t) + // DWARF version number
1905 sizeof(int32_t) + // Offset Into Abbrev. Section
1906 sizeof(int8_t); // Pointer Size (in bytes)
1908 EmitInt32(ContentSize); EOL("Length of Compilation Unit Info");
1909 EmitInt16(DWARF_VERSION); EOL("DWARF version number");
1910 EmitDifference("abbrev_begin", 0, "section_abbrev", 0);
1911 EOL("Offset Into Abbrev. Section");
1912 EmitInt8(AddressSize); EOL("Address Size (in bytes)");
1914 EmitDIE(Die);
1915 EmitLabel("info_end", Unit->getID());
1918 O << "\n";
1922 /// EmitAbbreviations - Emit the abbreviation section.
1924 void DwarfWriter::EmitAbbreviations() const {
1925 // Check to see if it is worth the effort.
1926 if (!Abbreviations.empty()) {
1927 // Start the debug abbrev section.
1928 Asm->SwitchToDataSection(DwarfAbbrevSection, 0);
1930 EmitLabel("abbrev_begin", 0);
1932 // For each abbrevation.
1933 for (unsigned AbbrevID = 1, NAID = Abbreviations.size();
1934 AbbrevID <= NAID; ++AbbrevID) {
1935 // Get abbreviation data
1936 const DIEAbbrev &Abbrev = Abbreviations[AbbrevID];
1938 // Emit the abbrevations code (base 1 index.)
1939 EmitULEB128Bytes(AbbrevID); EOL("Abbreviation Code");
1941 // Emit the abbreviations data.
1942 Abbrev.Emit(*this);
1944 O << "\n";
1947 EmitLabel("abbrev_end", 0);
1949 O << "\n";
1953 /// EmitDebugLines - Emit source line information.
1955 void DwarfWriter::EmitDebugLines() const {
1956 // Minimum line delta, thus ranging from -10..(255-10).
1957 const int MinLineDelta = -(DW_LNS_fixed_advance_pc + 1);
1958 // Maximum line delta, thus ranging from -10..(255-10).
1959 const int MaxLineDelta = 255 + MinLineDelta;
1961 // Start the dwarf line section.
1962 Asm->SwitchToDataSection(DwarfLineSection, 0);
1964 // Construct the section header.
1966 EmitDifference("line_end", 0, "line_begin", 0);
1967 EOL("Length of Source Line Info");
1968 EmitLabel("line_begin", 0);
1970 EmitInt16(DWARF_VERSION); EOL("DWARF version number");
1972 EmitDifference("line_prolog_end", 0, "line_prolog_begin", 0);
1973 EOL("Prolog Length");
1974 EmitLabel("line_prolog_begin", 0);
1976 EmitInt8(1); EOL("Minimum Instruction Length");
1978 EmitInt8(1); EOL("Default is_stmt_start flag");
1980 EmitInt8(MinLineDelta); EOL("Line Base Value (Special Opcodes)");
1982 EmitInt8(MaxLineDelta); EOL("Line Range Value (Special Opcodes)");
1984 EmitInt8(-MinLineDelta); EOL("Special Opcode Base");
1986 // Line number standard opcode encodings argument count
1987 EmitInt8(0); EOL("DW_LNS_copy arg count");
1988 EmitInt8(1); EOL("DW_LNS_advance_pc arg count");
1989 EmitInt8(1); EOL("DW_LNS_advance_line arg count");
1990 EmitInt8(1); EOL("DW_LNS_set_file arg count");
1991 EmitInt8(1); EOL("DW_LNS_set_column arg count");
1992 EmitInt8(0); EOL("DW_LNS_negate_stmt arg count");
1993 EmitInt8(0); EOL("DW_LNS_set_basic_block arg count");
1994 EmitInt8(0); EOL("DW_LNS_const_add_pc arg count");
1995 EmitInt8(1); EOL("DW_LNS_fixed_advance_pc arg count");
1997 const UniqueVector<std::string> &Directories = DebugInfo->getDirectories();
1998 const UniqueVector<SourceFileInfo> &SourceFiles = DebugInfo->getSourceFiles();
2000 // Emit directories.
2001 for (unsigned DirectoryID = 1, NDID = Directories.size();
2002 DirectoryID <= NDID; ++DirectoryID) {
2003 EmitString(Directories[DirectoryID]); EOL("Directory");
2005 EmitInt8(0); EOL("End of directories");
2007 // Emit files.
2008 for (unsigned SourceID = 1, NSID = SourceFiles.size();
2009 SourceID <= NSID; ++SourceID) {
2010 const SourceFileInfo &SourceFile = SourceFiles[SourceID];
2011 EmitString(SourceFile.getName()); EOL("Source");
2012 EmitULEB128Bytes(SourceFile.getDirectoryID()); EOL("Directory #");
2013 EmitULEB128Bytes(0); EOL("Mod date");
2014 EmitULEB128Bytes(0); EOL("File size");
2016 EmitInt8(0); EOL("End of files");
2018 EmitLabel("line_prolog_end", 0);
2020 // A sequence for each text section.
2021 for (unsigned j = 0, M = SectionSourceLines.size(); j < M; ++j) {
2022 // Isolate current sections line info.
2023 const std::vector<SourceLineInfo *> &LineInfos = SectionSourceLines[j];
2025 if (DwarfVerbose) {
2026 O << "\t"
2027 << Asm->CommentString << " "
2028 << "Section "
2029 << SectionMap[j + 1].c_str() << "\n";
2032 // Dwarf assumes we start with first line of first source file.
2033 unsigned Source = 1;
2034 unsigned Line = 1;
2036 // Construct rows of the address, source, line, column matrix.
2037 for (unsigned i = 0, N = LineInfos.size(); i < N; ++i) {
2038 SourceLineInfo *LineInfo = LineInfos[i];
2040 if (DwarfVerbose) {
2041 unsigned SourceID = LineInfo->getSourceID();
2042 const SourceFileInfo &SourceFile = SourceFiles[SourceID];
2043 unsigned DirectoryID = SourceFile.getDirectoryID();
2044 O << "\t"
2045 << Asm->CommentString << " "
2046 << Directories[DirectoryID]
2047 << SourceFile.getName() << ":"
2048 << LineInfo->getLine() << "\n";
2051 // Define the line address.
2052 EmitInt8(0); EOL("Extended Op");
2053 EmitInt8(4 + 1); EOL("Op size");
2054 EmitInt8(DW_LNE_set_address); EOL("DW_LNE_set_address");
2055 EmitReference("loc", LineInfo->getLabelID()); EOL("Location label");
2057 // If change of source, then switch to the new source.
2058 if (Source != LineInfo->getSourceID()) {
2059 Source = LineInfo->getSourceID();
2060 EmitInt8(DW_LNS_set_file); EOL("DW_LNS_set_file");
2061 EmitULEB128Bytes(Source); EOL("New Source");
2064 // If change of line.
2065 if (Line != LineInfo->getLine()) {
2066 // Determine offset.
2067 int Offset = LineInfo->getLine() - Line;
2068 int Delta = Offset - MinLineDelta;
2070 // Update line.
2071 Line = LineInfo->getLine();
2073 // If delta is small enough and in range...
2074 if (Delta >= 0 && Delta < (MaxLineDelta - 1)) {
2075 // ... then use fast opcode.
2076 EmitInt8(Delta - MinLineDelta); EOL("Line Delta");
2077 } else {
2078 // ... otherwise use long hand.
2079 EmitInt8(DW_LNS_advance_line); EOL("DW_LNS_advance_line");
2080 EmitSLEB128Bytes(Offset); EOL("Line Offset");
2081 EmitInt8(DW_LNS_copy); EOL("DW_LNS_copy");
2083 } else {
2084 // Copy the previous row (different address or source)
2085 EmitInt8(DW_LNS_copy); EOL("DW_LNS_copy");
2089 // Define last address of section.
2090 EmitInt8(0); EOL("Extended Op");
2091 EmitInt8(4 + 1); EOL("Op size");
2092 EmitInt8(DW_LNE_set_address); EOL("DW_LNE_set_address");
2093 EmitReference("section_end", j + 1); EOL("Section end label");
2095 // Mark end of matrix.
2096 EmitInt8(0); EOL("DW_LNE_end_sequence");
2097 EmitULEB128Bytes(1); O << "\n";
2098 EmitInt8(1); O << "\n";
2101 EmitLabel("line_end", 0);
2103 O << "\n";
2106 /// EmitInitialDebugFrame - Emit common frame info into a debug frame section.
2108 void DwarfWriter::EmitInitialDebugFrame() {
2109 int stackGrowth =
2110 Asm->TM.getFrameInfo()->getStackGrowthDirection() ==
2111 TargetFrameInfo::StackGrowsUp ?
2112 AddressSize : -AddressSize;
2114 // Start the dwarf frame section.
2115 Asm->SwitchToDataSection(DwarfFrameSection, 0);
2117 EmitLabel("frame_common", 0);
2118 EmitDifference("frame_common_end", 0,
2119 "frame_common_begin", 0);
2120 EOL("Length of Common Information Entry");
2122 EmitLabel("frame_common_begin", 0);
2123 EmitInt32(DW_CIE_ID); EOL("CIE Identifier Tag");
2124 EmitInt8(DW_CIE_VERSION); EOL("CIE Version");
2125 EmitString(""); EOL("CIE Augmentation");
2126 EmitULEB128Bytes(1); EOL("CIE Code Alignment Factor");
2127 EmitSLEB128Bytes(stackGrowth); EOL("CIE Data Alignment Factor");
2128 EmitInt8(RI->getDwarfRegNum(RI->getRARegister())); EOL("CIE RA Column");
2130 std::vector<MachineMove *> Moves;
2131 RI->getInitialFrameState(Moves);
2132 EmitFrameMoves(NULL, 0, Moves);
2133 for (unsigned i = 0, N = Moves.size(); i < N; ++i) delete Moves[i];
2135 EmitAlign(2);
2136 EmitLabel("frame_common_end", 0);
2138 O << "\n";
2141 /// EmitFunctionDebugFrame - Emit per function frame info into a debug frame
2142 /// section.
2143 void DwarfWriter::EmitFunctionDebugFrame() {
2144 // Start the dwarf frame section.
2145 Asm->SwitchToDataSection(DwarfFrameSection, 0);
2147 EmitDifference("frame_end", SubprogramCount,
2148 "frame_begin", SubprogramCount);
2149 EOL("Length of Frame Information Entry");
2151 EmitLabel("frame_begin", SubprogramCount);
2153 EmitDifference("frame_common", 0, "section_frame", 0);
2154 EOL("FDE CIE offset");
2156 EmitReference("func_begin", SubprogramCount); EOL("FDE initial location");
2157 EmitDifference("func_end", SubprogramCount,
2158 "func_begin", SubprogramCount);
2159 EOL("FDE address range");
2161 std::vector<MachineMove *> &Moves = DebugInfo->getFrameMoves();
2163 EmitFrameMoves("func_begin", SubprogramCount, Moves);
2165 EmitAlign(2);
2166 EmitLabel("frame_end", SubprogramCount);
2168 O << "\n";
2171 /// EmitDebugPubNames - Emit visible names into a debug pubnames section.
2173 void DwarfWriter::EmitDebugPubNames() {
2174 // Start the dwarf pubnames section.
2175 Asm->SwitchToDataSection(DwarfPubNamesSection, 0);
2177 // Process each compile unit.
2178 for (unsigned i = 0, N = CompileUnits.size(); i < N; ++i) {
2179 CompileUnit *Unit = CompileUnits[i];
2181 if (Unit->hasContent()) {
2182 EmitDifference("pubnames_end", Unit->getID(),
2183 "pubnames_begin", Unit->getID());
2184 EOL("Length of Public Names Info");
2186 EmitLabel("pubnames_begin", Unit->getID());
2188 EmitInt16(DWARF_VERSION); EOL("DWARF Version");
2190 EmitDifference("info_begin", Unit->getID(), "section_info", 0);
2191 EOL("Offset of Compilation Unit Info");
2193 EmitDifference("info_end", Unit->getID(), "info_begin", Unit->getID());
2194 EOL("Compilation Unit Length");
2196 std::map<std::string, DIE *> &Globals = Unit->getGlobals();
2198 for (std::map<std::string, DIE *>::iterator GI = Globals.begin(),
2199 GE = Globals.end();
2200 GI != GE; ++GI) {
2201 const std::string &Name = GI->first;
2202 DIE * Entity = GI->second;
2204 EmitInt32(Entity->getOffset()); EOL("DIE offset");
2205 EmitString(Name); EOL("External Name");
2208 EmitInt32(0); EOL("End Mark");
2209 EmitLabel("pubnames_end", Unit->getID());
2211 O << "\n";
2216 /// EmitDebugStr - Emit visible names into a debug str section.
2218 void DwarfWriter::EmitDebugStr() {
2219 // Check to see if it is worth the effort.
2220 if (!StringPool.empty()) {
2221 // Start the dwarf str section.
2222 Asm->SwitchToDataSection(DwarfStrSection, 0);
2224 // For each of strings in the string pool.
2225 for (unsigned StringID = 1, N = StringPool.size();
2226 StringID <= N; ++StringID) {
2227 // Emit a label for reference from debug information entries.
2228 EmitLabel("string", StringID);
2229 // Emit the string itself.
2230 const std::string &String = StringPool[StringID];
2231 EmitString(String); O << "\n";
2234 O << "\n";
2238 /// EmitDebugLoc - Emit visible names into a debug loc section.
2240 void DwarfWriter::EmitDebugLoc() {
2241 // Start the dwarf loc section.
2242 Asm->SwitchToDataSection(DwarfLocSection, 0);
2244 O << "\n";
2247 /// EmitDebugARanges - Emit visible names into a debug aranges section.
2249 void DwarfWriter::EmitDebugARanges() {
2250 // Start the dwarf aranges section.
2251 Asm->SwitchToDataSection(DwarfARangesSection, 0);
2253 // FIXME - Mock up
2254 #if 0
2255 // Process each compile unit.
2256 for (unsigned i = 0, N = CompileUnits.size(); i < N; ++i) {
2257 CompileUnit *Unit = CompileUnits[i];
2259 if (Unit->hasContent()) {
2260 // Don't include size of length
2261 EmitInt32(0x1c); EOL("Length of Address Ranges Info");
2263 EmitInt16(DWARF_VERSION); EOL("Dwarf Version");
2265 EmitReference("info_begin", Unit->getID());
2266 EOL("Offset of Compilation Unit Info");
2268 EmitInt8(AddressSize); EOL("Size of Address");
2270 EmitInt8(0); EOL("Size of Segment Descriptor");
2272 EmitInt16(0); EOL("Pad (1)");
2273 EmitInt16(0); EOL("Pad (2)");
2275 // Range 1
2276 EmitReference("text_begin", 0); EOL("Address");
2277 EmitDifference("text_end", 0, "text_begin", 0); EOL("Length");
2279 EmitInt32(0); EOL("EOM (1)");
2280 EmitInt32(0); EOL("EOM (2)");
2282 O << "\n";
2285 #endif
2288 /// EmitDebugRanges - Emit visible names into a debug ranges section.
2290 void DwarfWriter::EmitDebugRanges() {
2291 // Start the dwarf ranges section.
2292 Asm->SwitchToDataSection(DwarfRangesSection, 0);
2294 O << "\n";
2297 /// EmitDebugMacInfo - Emit visible names into a debug macinfo section.
2299 void DwarfWriter::EmitDebugMacInfo() {
2300 // Start the dwarf macinfo section.
2301 Asm->SwitchToDataSection(DwarfMacInfoSection, 0);
2303 O << "\n";
2306 /// ConstructCompileUnitDIEs - Create a compile unit DIE for each source and
2307 /// header file.
2308 void DwarfWriter::ConstructCompileUnitDIEs() {
2309 const UniqueVector<CompileUnitDesc *> CUW = DebugInfo->getCompileUnits();
2311 for (unsigned i = 1, N = CUW.size(); i <= N; ++i) {
2312 CompileUnit *Unit = NewCompileUnit(CUW[i], i);
2313 CompileUnits.push_back(Unit);
2317 /// ConstructGlobalDIEs - Create DIEs for each of the externally visible global
2318 /// variables.
2319 void DwarfWriter::ConstructGlobalDIEs() {
2320 std::vector<GlobalVariableDesc *> GlobalVariables =
2321 DebugInfo->getAnchoredDescriptors<GlobalVariableDesc>(*M);
2323 for (unsigned i = 0, N = GlobalVariables.size(); i < N; ++i) {
2324 GlobalVariableDesc *GVD = GlobalVariables[i];
2325 NewGlobalVariable(GVD);
2329 /// ConstructSubprogramDIEs - Create DIEs for each of the externally visible
2330 /// subprograms.
2331 void DwarfWriter::ConstructSubprogramDIEs() {
2332 std::vector<SubprogramDesc *> Subprograms =
2333 DebugInfo->getAnchoredDescriptors<SubprogramDesc>(*M);
2335 for (unsigned i = 0, N = Subprograms.size(); i < N; ++i) {
2336 SubprogramDesc *SPD = Subprograms[i];
2337 NewSubprogram(SPD);
2341 //===----------------------------------------------------------------------===//
2342 // Main entry points.
2345 DwarfWriter::DwarfWriter(std::ostream &OS, AsmPrinter *A)
2346 : O(OS)
2347 , Asm(A)
2348 , TD(Asm->TM.getTargetData())
2349 , RI(Asm->TM.getRegisterInfo())
2350 , M(NULL)
2351 , MF(NULL)
2352 , DebugInfo(NULL)
2353 , didInitial(false)
2354 , shouldEmit(false)
2355 , SubprogramCount(0)
2356 , CompileUnits()
2357 , Abbreviations()
2358 , StringPool()
2359 , DescToUnitMap()
2360 , DescToDieMap()
2361 , SectionMap()
2362 , SectionSourceLines()
2363 , AddressSize(sizeof(int32_t))
2364 , hasLEB128(false)
2365 , hasDotLoc(false)
2366 , hasDotFile(false)
2367 , needsSet(false)
2368 , DwarfAbbrevSection(".debug_abbrev")
2369 , DwarfInfoSection(".debug_info")
2370 , DwarfLineSection(".debug_line")
2371 , DwarfFrameSection(".debug_frame")
2372 , DwarfPubNamesSection(".debug_pubnames")
2373 , DwarfPubTypesSection(".debug_pubtypes")
2374 , DwarfStrSection(".debug_str")
2375 , DwarfLocSection(".debug_loc")
2376 , DwarfARangesSection(".debug_aranges")
2377 , DwarfRangesSection(".debug_ranges")
2378 , DwarfMacInfoSection(".debug_macinfo")
2379 , TextSection(".text")
2380 , DataSection(".data")
2382 DwarfWriter::~DwarfWriter() {
2383 for (unsigned i = 0, N = CompileUnits.size(); i < N; ++i) {
2384 delete CompileUnits[i];
2388 /// SetDebugInfo - Set DebugInfo when it's known that pass manager has
2389 /// created it. Set by the target AsmPrinter.
2390 void DwarfWriter::SetDebugInfo(MachineDebugInfo *DI) {
2391 // Make sure initial declarations are made.
2392 if (!DebugInfo && DI->hasInfo()) {
2393 DebugInfo = DI;
2394 shouldEmit = true;
2396 // Emit initial sections
2397 EmitInitial();
2399 // Create all the compile unit DIEs.
2400 ConstructCompileUnitDIEs();
2402 // Create DIEs for each of the externally visible global variables.
2403 ConstructGlobalDIEs();
2405 // Create DIEs for each of the externally visible subprograms.
2406 ConstructSubprogramDIEs();
2408 // Prime section data.
2409 SectionMap.insert(std::string("\t") + TextSection);
2413 /// BeginModule - Emit all Dwarf sections that should come prior to the content.
2415 void DwarfWriter::BeginModule(Module *M) {
2416 this->M = M;
2418 if (!ShouldEmitDwarf()) return;
2419 EOL("Dwarf Begin Module");
2422 /// EndModule - Emit all Dwarf sections that should come after the content.
2424 void DwarfWriter::EndModule() {
2425 if (!ShouldEmitDwarf()) return;
2426 EOL("Dwarf End Module");
2428 // Standard sections final addresses.
2429 Asm->SwitchToTextSection(TextSection, 0);
2430 EmitLabel("text_end", 0);
2431 Asm->SwitchToDataSection(DataSection, 0);
2432 EmitLabel("data_end", 0);
2434 // End text sections.
2435 for (unsigned i = 1, N = SectionMap.size(); i <= N; ++i) {
2436 Asm->SwitchToTextSection(SectionMap[i].c_str(), 0);
2437 EmitLabel("section_end", i);
2440 // Compute DIE offsets and sizes.
2441 SizeAndOffsets();
2443 // Emit all the DIEs into a debug info section
2444 EmitDebugInfo();
2446 // Corresponding abbreviations into a abbrev section.
2447 EmitAbbreviations();
2449 // Emit source line correspondence into a debug line section.
2450 EmitDebugLines();
2452 // Emit info into a debug pubnames section.
2453 EmitDebugPubNames();
2455 // Emit info into a debug str section.
2456 EmitDebugStr();
2458 // Emit info into a debug loc section.
2459 EmitDebugLoc();
2461 // Emit info into a debug aranges section.
2462 EmitDebugARanges();
2464 // Emit info into a debug ranges section.
2465 EmitDebugRanges();
2467 // Emit info into a debug macinfo section.
2468 EmitDebugMacInfo();
2471 /// BeginFunction - Gather pre-function debug information. Assumes being
2472 /// emitted immediately after the function entry point.
2473 void DwarfWriter::BeginFunction(MachineFunction *MF) {
2474 this->MF = MF;
2476 if (!ShouldEmitDwarf()) return;
2477 EOL("Dwarf Begin Function");
2479 // Begin accumulating function debug information.
2480 DebugInfo->BeginFunction(MF);
2482 // Assumes in correct section after the entry point.
2483 EmitLabel("func_begin", ++SubprogramCount);
2486 /// EndFunction - Gather and emit post-function debug information.
2488 void DwarfWriter::EndFunction() {
2489 if (!ShouldEmitDwarf()) return;
2490 EOL("Dwarf End Function");
2492 // Define end label for subprogram.
2493 EmitLabel("func_end", SubprogramCount);
2495 // Get function line info.
2496 std::vector<SourceLineInfo *> &LineInfos = DebugInfo->getSourceLines();
2498 if (!LineInfos.empty()) {
2499 // Get section line info.
2500 unsigned ID = SectionMap.insert(Asm->CurrentSection);
2501 if (SectionSourceLines.size() < ID) SectionSourceLines.resize(ID);
2502 std::vector<SourceLineInfo *> &SectionLineInfos =SectionSourceLines[ID-1];
2503 // Append the function info to section info.
2504 SectionLineInfos.insert(SectionLineInfos.end(),
2505 LineInfos.begin(), LineInfos.end());
2508 // Construct scopes for subprogram.
2509 ConstructRootScope(DebugInfo->getRootScope());
2511 // Emit function frame information.
2512 EmitFunctionDebugFrame();
2514 // Reset the line numbers for the next function.
2515 LineInfos.clear();
2517 // Clear function debug information.
2518 DebugInfo->EndFunction();