1 //===-- llvm/CodeGen/DwarfUnit.cpp - Dwarf Type and Compile Units ---------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file contains support for constructing a dwarf compile unit.
10 //
11 //===----------------------------------------------------------------------===//
12 
13 #include "DwarfUnit.h"
14 #include "AddressPool.h"
15 #include "DwarfCompileUnit.h"
16 #include "DwarfExpression.h"
17 #include "llvm/ADT/APFloat.h"
18 #include "llvm/ADT/APInt.h"
19 #include "llvm/ADT/None.h"
20 #include "llvm/ADT/StringExtras.h"
21 #include "llvm/ADT/iterator_range.h"
22 #include "llvm/CodeGen/MachineFunction.h"
23 #include "llvm/CodeGen/MachineOperand.h"
24 #include "llvm/CodeGen/TargetRegisterInfo.h"
25 #include "llvm/CodeGen/TargetSubtargetInfo.h"
26 #include "llvm/IR/Constants.h"
27 #include "llvm/IR/DataLayout.h"
28 #include "llvm/IR/GlobalValue.h"
29 #include "llvm/IR/Metadata.h"
30 #include "llvm/MC/MCAsmInfo.h"
31 #include "llvm/MC/MCContext.h"
32 #include "llvm/MC/MCDwarf.h"
33 #include "llvm/MC/MCSection.h"
34 #include "llvm/MC/MCStreamer.h"
35 #include "llvm/MC/MachineLocation.h"
36 #include "llvm/Support/Casting.h"
37 #include "llvm/Support/CommandLine.h"
38 #include "llvm/Target/TargetLoweringObjectFile.h"
39 #include <cassert>
40 #include <cstdint>
41 #include <string>
42 #include <utility>
43 
44 using namespace llvm;
45 
46 #define DEBUG_TYPE "dwarfdebug"
47 
48 DIEDwarfExpression::DIEDwarfExpression(const AsmPrinter &AP,
49                                        DwarfCompileUnit &CU, DIELoc &DIE)
50     : DwarfExpression(AP.getDwarfVersion(), CU), AP(AP), OutDIE(DIE) {}
51 
52 void DIEDwarfExpression::emitOp(uint8_t Op, const char* Comment) {
53   CU.addUInt(getActiveDIE(), dwarf::DW_FORM_data1, Op);
54 }
55 
56 void DIEDwarfExpression::emitSigned(int64_t Value) {
57   CU.addSInt(getActiveDIE(), dwarf::DW_FORM_sdata, Value);
58 }
59 
60 void DIEDwarfExpression::emitUnsigned(uint64_t Value) {
61   CU.addUInt(getActiveDIE(), dwarf::DW_FORM_udata, Value);
62 }
63 
64 void DIEDwarfExpression::emitData1(uint8_t Value) {
65   CU.addUInt(getActiveDIE(), dwarf::DW_FORM_data1, Value);
66 }
67 
68 void DIEDwarfExpression::emitBaseTypeRef(uint64_t Idx) {
69   CU.addBaseTypeRef(getActiveDIE(), Idx);
70 }
71 
72 void DIEDwarfExpression::enableTemporaryBuffer() {
73   assert(!IsBuffering && "Already buffering?");
74   IsBuffering = true;
75 }
76 
77 void DIEDwarfExpression::disableTemporaryBuffer() { IsBuffering = false; }
78 
79 unsigned DIEDwarfExpression::getTemporaryBufferSize() {
80   return TmpDIE.computeSize(AP.getDwarfFormParams());
81 }
82 
83 void DIEDwarfExpression::commitTemporaryBuffer() { OutDIE.takeValues(TmpDIE); }
84 
85 bool DIEDwarfExpression::isFrameRegister(const TargetRegisterInfo &TRI,
86                                          llvm::Register MachineReg) {
87   return MachineReg == TRI.getFrameRegister(*AP.MF);
88 }
89 
90 DwarfUnit::DwarfUnit(dwarf::Tag UnitTag, const DICompileUnit *Node,
91                      AsmPrinter *A, DwarfDebug *DW, DwarfFile *DWU)
92     : DIEUnit(UnitTag), CUNode(Node), Asm(A), DD(DW), DU(DWU),
93       IndexTyDie(nullptr) {}
94 
95 DwarfTypeUnit::DwarfTypeUnit(DwarfCompileUnit &CU, AsmPrinter *A,
96                              DwarfDebug *DW, DwarfFile *DWU,
97                              MCDwarfDwoLineTable *SplitLineTable)
98     : DwarfUnit(dwarf::DW_TAG_type_unit, CU.getCUNode(), A, DW, DWU), CU(CU),
99       SplitLineTable(SplitLineTable) {
100 }
101 
102 DwarfUnit::~DwarfUnit() {
103   for (DIEBlock *B : DIEBlocks)
104     B->~DIEBlock();
105   for (DIELoc *L : DIELocs)
106     L->~DIELoc();
107 }
108 
109 int64_t DwarfUnit::getDefaultLowerBound() const {
110   switch (getLanguage()) {
111   default:
112     break;
113 
114   // The languages below have valid values in all DWARF versions.
115   case dwarf::DW_LANG_C:
116   case dwarf::DW_LANG_C89:
117   case dwarf::DW_LANG_C_plus_plus:
118     return 0;
119 
120   case dwarf::DW_LANG_Fortran77:
121   case dwarf::DW_LANG_Fortran90:
122     return 1;
123 
124   // The languages below have valid values only if the DWARF version >= 3.
125   case dwarf::DW_LANG_C99:
126   case dwarf::DW_LANG_ObjC:
127   case dwarf::DW_LANG_ObjC_plus_plus:
128     if (DD->getDwarfVersion() >= 3)
129       return 0;
130     break;
131 
132   case dwarf::DW_LANG_Fortran95:
133     if (DD->getDwarfVersion() >= 3)
134       return 1;
135     break;
136 
137   // Starting with DWARF v4, all defined languages have valid values.
138   case dwarf::DW_LANG_D:
139   case dwarf::DW_LANG_Java:
140   case dwarf::DW_LANG_Python:
141   case dwarf::DW_LANG_UPC:
142     if (DD->getDwarfVersion() >= 4)
143       return 0;
144     break;
145 
146   case dwarf::DW_LANG_Ada83:
147   case dwarf::DW_LANG_Ada95:
148   case dwarf::DW_LANG_Cobol74:
149   case dwarf::DW_LANG_Cobol85:
150   case dwarf::DW_LANG_Modula2:
151   case dwarf::DW_LANG_Pascal83:
152   case dwarf::DW_LANG_PLI:
153     if (DD->getDwarfVersion() >= 4)
154       return 1;
155     break;
156 
157   // The languages below are new in DWARF v5.
158   case dwarf::DW_LANG_BLISS:
159   case dwarf::DW_LANG_C11:
160   case dwarf::DW_LANG_C_plus_plus_03:
161   case dwarf::DW_LANG_C_plus_plus_11:
162   case dwarf::DW_LANG_C_plus_plus_14:
163   case dwarf::DW_LANG_Dylan:
164   case dwarf::DW_LANG_Go:
165   case dwarf::DW_LANG_Haskell:
166   case dwarf::DW_LANG_OCaml:
167   case dwarf::DW_LANG_OpenCL:
168   case dwarf::DW_LANG_RenderScript:
169   case dwarf::DW_LANG_Rust:
170   case dwarf::DW_LANG_Swift:
171     if (DD->getDwarfVersion() >= 5)
172       return 0;
173     break;
174 
175   case dwarf::DW_LANG_Fortran03:
176   case dwarf::DW_LANG_Fortran08:
177   case dwarf::DW_LANG_Julia:
178   case dwarf::DW_LANG_Modula3:
179     if (DD->getDwarfVersion() >= 5)
180       return 1;
181     break;
182   }
183 
184   return -1;
185 }
186 
187 /// Check whether the DIE for this MDNode can be shared across CUs.
188 bool DwarfUnit::isShareableAcrossCUs(const DINode *D) const {
189   // When the MDNode can be part of the type system, the DIE can be shared
190   // across CUs.
191   // Combining type units and cross-CU DIE sharing is lower value (since
192   // cross-CU DIE sharing is used in LTO and removes type redundancy at that
193   // level already) but may be implementable for some value in projects
194   // building multiple independent libraries with LTO and then linking those
195   // together.
196   if (isDwoUnit() && !DD->shareAcrossDWOCUs())
197     return false;
198   return (isa<DIType>(D) ||
199           (isa<DISubprogram>(D) && !cast<DISubprogram>(D)->isDefinition())) &&
200          !DD->generateTypeUnits();
201 }
202 
203 DIE *DwarfUnit::getDIE(const DINode *D) const {
204   if (isShareableAcrossCUs(D))
205     return DU->getDIE(D);
206   return MDNodeToDieMap.lookup(D);
207 }
208 
209 void DwarfUnit::insertDIE(const DINode *Desc, DIE *D) {
210   if (isShareableAcrossCUs(Desc)) {
211     DU->insertDIE(Desc, D);
212     return;
213   }
214   MDNodeToDieMap.insert(std::make_pair(Desc, D));
215 }
216 
217 void DwarfUnit::insertDIE(DIE *D) {
218   MDNodeToDieMap.insert(std::make_pair(nullptr, D));
219 }
220 
221 void DwarfUnit::addFlag(DIE &Die, dwarf::Attribute Attribute) {
222   if (DD->getDwarfVersion() >= 4)
223     addAttribute(Die, Attribute, dwarf::DW_FORM_flag_present, DIEInteger(1));
224   else
225     addAttribute(Die, Attribute, dwarf::DW_FORM_flag, DIEInteger(1));
226 }
227 
228 void DwarfUnit::addUInt(DIEValueList &Die, dwarf::Attribute Attribute,
229                         Optional<dwarf::Form> Form, uint64_t Integer) {
230   if (!Form)
231     Form = DIEInteger::BestForm(false, Integer);
232   assert(Form != dwarf::DW_FORM_implicit_const &&
233          "DW_FORM_implicit_const is used only for signed integers");
234   addAttribute(Die, Attribute, *Form, DIEInteger(Integer));
235 }
236 
237 void DwarfUnit::addUInt(DIEValueList &Block, dwarf::Form Form,
238                         uint64_t Integer) {
239   addUInt(Block, (dwarf::Attribute)0, Form, Integer);
240 }
241 
242 void DwarfUnit::addSInt(DIEValueList &Die, dwarf::Attribute Attribute,
243                         Optional<dwarf::Form> Form, int64_t Integer) {
244   if (!Form)
245     Form = DIEInteger::BestForm(true, Integer);
246   addAttribute(Die, Attribute, *Form, DIEInteger(Integer));
247 }
248 
249 void DwarfUnit::addSInt(DIELoc &Die, Optional<dwarf::Form> Form,
250                         int64_t Integer) {
251   addSInt(Die, (dwarf::Attribute)0, Form, Integer);
252 }
253 
254 void DwarfUnit::addString(DIE &Die, dwarf::Attribute Attribute,
255                           StringRef String) {
256   if (CUNode->isDebugDirectivesOnly())
257     return;
258 
259   if (DD->useInlineStrings()) {
260     addAttribute(Die, Attribute, dwarf::DW_FORM_string,
261                  new (DIEValueAllocator)
262                      DIEInlineString(String, DIEValueAllocator));
263     return;
264   }
265   dwarf::Form IxForm =
266       isDwoUnit() ? dwarf::DW_FORM_GNU_str_index : dwarf::DW_FORM_strp;
267 
268   auto StringPoolEntry =
269       useSegmentedStringOffsetsTable() || IxForm == dwarf::DW_FORM_GNU_str_index
270           ? DU->getStringPool().getIndexedEntry(*Asm, String)
271           : DU->getStringPool().getEntry(*Asm, String);
272 
273   // For DWARF v5 and beyond, use the smallest strx? form possible.
274   if (useSegmentedStringOffsetsTable()) {
275     IxForm = dwarf::DW_FORM_strx1;
276     unsigned Index = StringPoolEntry.getIndex();
277     if (Index > 0xffffff)
278       IxForm = dwarf::DW_FORM_strx4;
279     else if (Index > 0xffff)
280       IxForm = dwarf::DW_FORM_strx3;
281     else if (Index > 0xff)
282       IxForm = dwarf::DW_FORM_strx2;
283   }
284   addAttribute(Die, Attribute, IxForm, DIEString(StringPoolEntry));
285 }
286 
287 void DwarfUnit::addLabel(DIEValueList &Die, dwarf::Attribute Attribute,
288                          dwarf::Form Form, const MCSymbol *Label) {
289   addAttribute(Die, Attribute, Form, DIELabel(Label));
290 }
291 
292 void DwarfUnit::addLabel(DIELoc &Die, dwarf::Form Form, const MCSymbol *Label) {
293   addLabel(Die, (dwarf::Attribute)0, Form, Label);
294 }
295 
296 void DwarfUnit::addSectionOffset(DIE &Die, dwarf::Attribute Attribute,
297                                  uint64_t Integer) {
298   addUInt(Die, Attribute, DD->getDwarfSectionOffsetForm(), Integer);
299 }
300 
301 unsigned DwarfTypeUnit::getOrCreateSourceID(const DIFile *File) {
302   if (!SplitLineTable)
303     return getCU().getOrCreateSourceID(File);
304   if (!UsedLineTable) {
305     UsedLineTable = true;
306     // This is a split type unit that needs a line table.
307     addSectionOffset(getUnitDie(), dwarf::DW_AT_stmt_list, 0);
308   }
309   return SplitLineTable->getFile(
310       File->getDirectory(), File->getFilename(), DD->getMD5AsBytes(File),
311       Asm->OutContext.getDwarfVersion(), File->getSource());
312 }
313 
314 void DwarfUnit::addPoolOpAddress(DIEValueList &Die, const MCSymbol *Label) {
315   bool UseAddrOffsetFormOrExpressions =
316       DD->useAddrOffsetForm() || DD->useAddrOffsetExpressions();
317 
318   const MCSymbol *Base = nullptr;
319   if (Label->isInSection() && UseAddrOffsetFormOrExpressions)
320     Base = DD->getSectionLabel(&Label->getSection());
321 
322   uint32_t Index = DD->getAddressPool().getIndex(Base ? Base : Label);
323 
324   if (DD->getDwarfVersion() >= 5) {
325     addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_addrx);
326     addUInt(Die, dwarf::DW_FORM_addrx, Index);
327   } else {
328     addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_GNU_addr_index);
329     addUInt(Die, dwarf::DW_FORM_GNU_addr_index, Index);
330   }
331 
332   if (Base && Base != Label) {
333     addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_const4u);
334     addLabelDelta(Die, (dwarf::Attribute)0, Label, Base);
335     addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_plus);
336   }
337 }
338 
339 void DwarfUnit::addOpAddress(DIELoc &Die, const MCSymbol *Sym) {
340   if (DD->getDwarfVersion() >= 5) {
341     addPoolOpAddress(Die, Sym);
342     return;
343   }
344 
345   if (DD->useSplitDwarf()) {
346     addPoolOpAddress(Die, Sym);
347     return;
348   }
349 
350   addUInt(Die, dwarf::DW_FORM_data1, dwarf::DW_OP_addr);
351   addLabel(Die, dwarf::DW_FORM_addr, Sym);
352 }
353 
354 void DwarfUnit::addLabelDelta(DIEValueList &Die, dwarf::Attribute Attribute,
355                               const MCSymbol *Hi, const MCSymbol *Lo) {
356   addAttribute(Die, Attribute, dwarf::DW_FORM_data4,
357                new (DIEValueAllocator) DIEDelta(Hi, Lo));
358 }
359 
360 void DwarfUnit::addDIEEntry(DIE &Die, dwarf::Attribute Attribute, DIE &Entry) {
361   addDIEEntry(Die, Attribute, DIEEntry(Entry));
362 }
363 
364 void DwarfUnit::addDIETypeSignature(DIE &Die, uint64_t Signature) {
365   // Flag the type unit reference as a declaration so that if it contains
366   // members (implicit special members, static data member definitions, member
367   // declarations for definitions in this CU, etc) consumers don't get confused
368   // and think this is a full definition.
369   addFlag(Die, dwarf::DW_AT_declaration);
370 
371   addAttribute(Die, dwarf::DW_AT_signature, dwarf::DW_FORM_ref_sig8,
372                DIEInteger(Signature));
373 }
374 
375 void DwarfUnit::addDIEEntry(DIE &Die, dwarf::Attribute Attribute,
376                             DIEEntry Entry) {
377   const DIEUnit *CU = Die.getUnit();
378   const DIEUnit *EntryCU = Entry.getEntry().getUnit();
379   if (!CU)
380     // We assume that Die belongs to this CU, if it is not linked to any CU yet.
381     CU = getUnitDie().getUnit();
382   if (!EntryCU)
383     EntryCU = getUnitDie().getUnit();
384   addAttribute(Die, Attribute,
385                EntryCU == CU ? dwarf::DW_FORM_ref4 : dwarf::DW_FORM_ref_addr,
386                Entry);
387 }
388 
389 DIE &DwarfUnit::createAndAddDIE(dwarf::Tag Tag, DIE &Parent, const DINode *N) {
390   DIE &Die = Parent.addChild(DIE::get(DIEValueAllocator, Tag));
391   if (N)
392     insertDIE(N, &Die);
393   return Die;
394 }
395 
396 void DwarfUnit::addBlock(DIE &Die, dwarf::Attribute Attribute, DIELoc *Loc) {
397   Loc->computeSize(Asm->getDwarfFormParams());
398   DIELocs.push_back(Loc); // Memoize so we can call the destructor later on.
399   addAttribute(Die, Attribute, Loc->BestForm(DD->getDwarfVersion()), Loc);
400 }
401 
402 void DwarfUnit::addBlock(DIE &Die, dwarf::Attribute Attribute, dwarf::Form Form,
403                          DIEBlock *Block) {
404   Block->computeSize(Asm->getDwarfFormParams());
405   DIEBlocks.push_back(Block); // Memoize so we can call the destructor later on.
406   addAttribute(Die, Attribute, Form, Block);
407 }
408 
409 void DwarfUnit::addBlock(DIE &Die, dwarf::Attribute Attribute,
410                          DIEBlock *Block) {
411   addBlock(Die, Attribute, Block->BestForm(), Block);
412 }
413 
414 void DwarfUnit::addSourceLine(DIE &Die, unsigned Line, const DIFile *File) {
415   if (Line == 0)
416     return;
417 
418   unsigned FileID = getOrCreateSourceID(File);
419   addUInt(Die, dwarf::DW_AT_decl_file, None, FileID);
420   addUInt(Die, dwarf::DW_AT_decl_line, None, Line);
421 }
422 
423 void DwarfUnit::addSourceLine(DIE &Die, const DILocalVariable *V) {
424   assert(V);
425 
426   addSourceLine(Die, V->getLine(), V->getFile());
427 }
428 
429 void DwarfUnit::addSourceLine(DIE &Die, const DIGlobalVariable *G) {
430   assert(G);
431 
432   addSourceLine(Die, G->getLine(), G->getFile());
433 }
434 
435 void DwarfUnit::addSourceLine(DIE &Die, const DISubprogram *SP) {
436   assert(SP);
437 
438   addSourceLine(Die, SP->getLine(), SP->getFile());
439 }
440 
441 void DwarfUnit::addSourceLine(DIE &Die, const DILabel *L) {
442   assert(L);
443 
444   addSourceLine(Die, L->getLine(), L->getFile());
445 }
446 
447 void DwarfUnit::addSourceLine(DIE &Die, const DIType *Ty) {
448   assert(Ty);
449 
450   addSourceLine(Die, Ty->getLine(), Ty->getFile());
451 }
452 
453 void DwarfUnit::addSourceLine(DIE &Die, const DIObjCProperty *Ty) {
454   assert(Ty);
455 
456   addSourceLine(Die, Ty->getLine(), Ty->getFile());
457 }
458 
459 void DwarfUnit::addConstantFPValue(DIE &Die, const ConstantFP *CFP) {
460   // Pass this down to addConstantValue as an unsigned bag of bits.
461   addConstantValue(Die, CFP->getValueAPF().bitcastToAPInt(), true);
462 }
463 
464 void DwarfUnit::addConstantValue(DIE &Die, const ConstantInt *CI,
465                                  const DIType *Ty) {
466   addConstantValue(Die, CI->getValue(), Ty);
467 }
468 
469 void DwarfUnit::addConstantValue(DIE &Die, uint64_t Val, const DIType *Ty) {
470   addConstantValue(Die, DD->isUnsignedDIType(Ty), Val);
471 }
472 
473 void DwarfUnit::addConstantValue(DIE &Die, bool Unsigned, uint64_t Val) {
474   // FIXME: This is a bit conservative/simple - it emits negative values always
475   // sign extended to 64 bits rather than minimizing the number of bytes.
476   addUInt(Die, dwarf::DW_AT_const_value,
477           Unsigned ? dwarf::DW_FORM_udata : dwarf::DW_FORM_sdata, Val);
478 }
479 
480 void DwarfUnit::addConstantValue(DIE &Die, const APInt &Val, const DIType *Ty) {
481   addConstantValue(Die, Val, DD->isUnsignedDIType(Ty));
482 }
483 
484 void DwarfUnit::addConstantValue(DIE &Die, const APInt &Val, bool Unsigned) {
485   unsigned CIBitWidth = Val.getBitWidth();
486   if (CIBitWidth <= 64) {
487     addConstantValue(Die, Unsigned,
488                      Unsigned ? Val.getZExtValue() : Val.getSExtValue());
489     return;
490   }
491 
492   DIEBlock *Block = new (DIEValueAllocator) DIEBlock;
493 
494   // Get the raw data form of the large APInt.
495   const uint64_t *Ptr64 = Val.getRawData();
496 
497   int NumBytes = Val.getBitWidth() / 8; // 8 bits per byte.
498   bool LittleEndian = Asm->getDataLayout().isLittleEndian();
499 
500   // Output the constant to DWARF one byte at a time.
501   for (int i = 0; i < NumBytes; i++) {
502     uint8_t c;
503     if (LittleEndian)
504       c = Ptr64[i / 8] >> (8 * (i & 7));
505     else
506       c = Ptr64[(NumBytes - 1 - i) / 8] >> (8 * ((NumBytes - 1 - i) & 7));
507     addUInt(*Block, dwarf::DW_FORM_data1, c);
508   }
509 
510   addBlock(Die, dwarf::DW_AT_const_value, Block);
511 }
512 
513 void DwarfUnit::addLinkageName(DIE &Die, StringRef LinkageName) {
514   if (!LinkageName.empty())
515     addString(Die,
516               DD->getDwarfVersion() >= 4 ? dwarf::DW_AT_linkage_name
517                                          : dwarf::DW_AT_MIPS_linkage_name,
518               GlobalValue::dropLLVMManglingEscape(LinkageName));
519 }
520 
521 void DwarfUnit::addTemplateParams(DIE &Buffer, DINodeArray TParams) {
522   // Add template parameters.
523   for (const auto *Element : TParams) {
524     if (auto *TTP = dyn_cast<DITemplateTypeParameter>(Element))
525       constructTemplateTypeParameterDIE(Buffer, TTP);
526     else if (auto *TVP = dyn_cast<DITemplateValueParameter>(Element))
527       constructTemplateValueParameterDIE(Buffer, TVP);
528   }
529 }
530 
531 /// Add thrown types.
532 void DwarfUnit::addThrownTypes(DIE &Die, DINodeArray ThrownTypes) {
533   for (const auto *Ty : ThrownTypes) {
534     DIE &TT = createAndAddDIE(dwarf::DW_TAG_thrown_type, Die);
535     addType(TT, cast<DIType>(Ty));
536   }
537 }
538 
539 void DwarfUnit::addAccess(DIE &Die, DINode::DIFlags Flags) {
540   if ((Flags & DINode::FlagAccessibility) == DINode::FlagProtected)
541     addUInt(Die, dwarf::DW_AT_accessibility, dwarf::DW_FORM_data1,
542             dwarf::DW_ACCESS_protected);
543   else if ((Flags & DINode::FlagAccessibility) == DINode::FlagPrivate)
544     addUInt(Die, dwarf::DW_AT_accessibility, dwarf::DW_FORM_data1,
545             dwarf::DW_ACCESS_private);
546   else if ((Flags & DINode::FlagAccessibility) == DINode::FlagPublic)
547     addUInt(Die, dwarf::DW_AT_accessibility, dwarf::DW_FORM_data1,
548             dwarf::DW_ACCESS_public);
549 }
550 
551 DIE *DwarfUnit::getOrCreateContextDIE(const DIScope *Context) {
552   if (!Context || isa<DIFile>(Context))
553     return &getUnitDie();
554   if (auto *T = dyn_cast<DIType>(Context))
555     return getOrCreateTypeDIE(T);
556   if (auto *NS = dyn_cast<DINamespace>(Context))
557     return getOrCreateNameSpace(NS);
558   if (auto *SP = dyn_cast<DISubprogram>(Context))
559     return getOrCreateSubprogramDIE(SP);
560   if (auto *M = dyn_cast<DIModule>(Context))
561     return getOrCreateModule(M);
562   return getDIE(Context);
563 }
564 
565 DIE *DwarfUnit::createTypeDIE(const DICompositeType *Ty) {
566   auto *Context = Ty->getScope();
567   DIE *ContextDIE = getOrCreateContextDIE(Context);
568 
569   if (DIE *TyDIE = getDIE(Ty))
570     return TyDIE;
571 
572   // Create new type.
573   DIE &TyDIE = createAndAddDIE(Ty->getTag(), *ContextDIE, Ty);
574 
575   constructTypeDIE(TyDIE, cast<DICompositeType>(Ty));
576 
577   updateAcceleratorTables(Context, Ty, TyDIE);
578   return &TyDIE;
579 }
580 
581 DIE *DwarfUnit::createTypeDIE(const DIScope *Context, DIE &ContextDIE,
582                               const DIType *Ty) {
583   // Create new type.
584   DIE &TyDIE = createAndAddDIE(Ty->getTag(), ContextDIE, Ty);
585 
586   updateAcceleratorTables(Context, Ty, TyDIE);
587 
588   if (auto *BT = dyn_cast<DIBasicType>(Ty))
589     constructTypeDIE(TyDIE, BT);
590   else if (auto *ST = dyn_cast<DIStringType>(Ty))
591     constructTypeDIE(TyDIE, ST);
592   else if (auto *STy = dyn_cast<DISubroutineType>(Ty))
593     constructTypeDIE(TyDIE, STy);
594   else if (auto *CTy = dyn_cast<DICompositeType>(Ty)) {
595     if (DD->generateTypeUnits() && !Ty->isForwardDecl() &&
596         (Ty->getRawName() || CTy->getRawIdentifier())) {
597       // Skip updating the accelerator tables since this is not the full type.
598       if (MDString *TypeId = CTy->getRawIdentifier())
599         DD->addDwarfTypeUnitType(getCU(), TypeId->getString(), TyDIE, CTy);
600       else
601         finishNonUnitTypeDIE(TyDIE, CTy);
602       return &TyDIE;
603     }
604     constructTypeDIE(TyDIE, CTy);
605   } else {
606     constructTypeDIE(TyDIE, cast<DIDerivedType>(Ty));
607   }
608 
609   return &TyDIE;
610 }
611 
612 DIE *DwarfUnit::getOrCreateTypeDIE(const MDNode *TyNode) {
613   if (!TyNode)
614     return nullptr;
615 
616   auto *Ty = cast<DIType>(TyNode);
617 
618   // DW_TAG_restrict_type is not supported in DWARF2
619   if (Ty->getTag() == dwarf::DW_TAG_restrict_type && DD->getDwarfVersion() <= 2)
620     return getOrCreateTypeDIE(cast<DIDerivedType>(Ty)->getBaseType());
621 
622   // DW_TAG_atomic_type is not supported in DWARF < 5
623   if (Ty->getTag() == dwarf::DW_TAG_atomic_type && DD->getDwarfVersion() < 5)
624     return getOrCreateTypeDIE(cast<DIDerivedType>(Ty)->getBaseType());
625 
626   // Construct the context before querying for the existence of the DIE in case
627   // such construction creates the DIE.
628   auto *Context = Ty->getScope();
629   DIE *ContextDIE = getOrCreateContextDIE(Context);
630   assert(ContextDIE);
631 
632   if (DIE *TyDIE = getDIE(Ty))
633     return TyDIE;
634 
635   return static_cast<DwarfUnit *>(ContextDIE->getUnit())
636       ->createTypeDIE(Context, *ContextDIE, Ty);
637 }
638 
639 void DwarfUnit::updateAcceleratorTables(const DIScope *Context,
640                                         const DIType *Ty, const DIE &TyDIE) {
641   if (!Ty->getName().empty() && !Ty->isForwardDecl()) {
642     bool IsImplementation = false;
643     if (auto *CT = dyn_cast<DICompositeType>(Ty)) {
644       // A runtime language of 0 actually means C/C++ and that any
645       // non-negative value is some version of Objective-C/C++.
646       IsImplementation = CT->getRuntimeLang() == 0 || CT->isObjcClassComplete();
647     }
648     unsigned Flags = IsImplementation ? dwarf::DW_FLAG_type_implementation : 0;
649     DD->addAccelType(*CUNode, Ty->getName(), TyDIE, Flags);
650 
651     if (!Context || isa<DICompileUnit>(Context) || isa<DIFile>(Context) ||
652         isa<DINamespace>(Context) || isa<DICommonBlock>(Context))
653       addGlobalType(Ty, TyDIE, Context);
654   }
655 }
656 
657 void DwarfUnit::addType(DIE &Entity, const DIType *Ty,
658                         dwarf::Attribute Attribute) {
659   assert(Ty && "Trying to add a type that doesn't exist?");
660   addDIEEntry(Entity, Attribute, DIEEntry(*getOrCreateTypeDIE(Ty)));
661 }
662 
663 std::string DwarfUnit::getParentContextString(const DIScope *Context) const {
664   if (!Context)
665     return "";
666 
667   // FIXME: Decide whether to implement this for non-C++ languages.
668   if (!dwarf::isCPlusPlus((dwarf::SourceLanguage)getLanguage()))
669     return "";
670 
671   std::string CS;
672   SmallVector<const DIScope *, 1> Parents;
673   while (!isa<DICompileUnit>(Context)) {
674     Parents.push_back(Context);
675     if (const DIScope *S = Context->getScope())
676       Context = S;
677     else
678       // Structure, etc types will have a NULL context if they're at the top
679       // level.
680       break;
681   }
682 
683   // Reverse iterate over our list to go from the outermost construct to the
684   // innermost.
685   for (const DIScope *Ctx : llvm::reverse(Parents)) {
686     StringRef Name = Ctx->getName();
687     if (Name.empty() && isa<DINamespace>(Ctx))
688       Name = "(anonymous namespace)";
689     if (!Name.empty()) {
690       CS += Name;
691       CS += "::";
692     }
693   }
694   return CS;
695 }
696 
697 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DIBasicType *BTy) {
698   // Get core information.
699   StringRef Name = BTy->getName();
700   // Add name if not anonymous or intermediate type.
701   if (!Name.empty())
702     addString(Buffer, dwarf::DW_AT_name, Name);
703 
704   // An unspecified type only has a name attribute.
705   if (BTy->getTag() == dwarf::DW_TAG_unspecified_type)
706     return;
707 
708   if (BTy->getTag() != dwarf::DW_TAG_string_type)
709     addUInt(Buffer, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1,
710             BTy->getEncoding());
711 
712   uint64_t Size = BTy->getSizeInBits() >> 3;
713   addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size);
714 
715   if (BTy->isBigEndian())
716     addUInt(Buffer, dwarf::DW_AT_endianity, None, dwarf::DW_END_big);
717   else if (BTy->isLittleEndian())
718     addUInt(Buffer, dwarf::DW_AT_endianity, None, dwarf::DW_END_little);
719 }
720 
721 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DIStringType *STy) {
722   // Get core information.
723   StringRef Name = STy->getName();
724   // Add name if not anonymous or intermediate type.
725   if (!Name.empty())
726     addString(Buffer, dwarf::DW_AT_name, Name);
727 
728   if (DIVariable *Var = STy->getStringLength()) {
729     if (auto *VarDIE = getDIE(Var))
730       addDIEEntry(Buffer, dwarf::DW_AT_string_length, *VarDIE);
731   } else if (DIExpression *Expr = STy->getStringLengthExp()) {
732     DIELoc *Loc = new (DIEValueAllocator) DIELoc;
733     DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
734     // This is to describe the memory location of the
735     // length of a Fortran deferred length string, so
736     // lock it down as such.
737     DwarfExpr.setMemoryLocationKind();
738     DwarfExpr.addExpression(Expr);
739     addBlock(Buffer, dwarf::DW_AT_string_length, DwarfExpr.finalize());
740   } else {
741     uint64_t Size = STy->getSizeInBits() >> 3;
742     addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size);
743   }
744 
745   if (DIExpression *Expr = STy->getStringLocationExp()) {
746     DIELoc *Loc = new (DIEValueAllocator) DIELoc;
747     DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
748     // This is to describe the memory location of the
749     // string, so lock it down as such.
750     DwarfExpr.setMemoryLocationKind();
751     DwarfExpr.addExpression(Expr);
752     addBlock(Buffer, dwarf::DW_AT_data_location, DwarfExpr.finalize());
753   }
754 
755   if (STy->getEncoding()) {
756     // For eventual Unicode support.
757     addUInt(Buffer, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1,
758             STy->getEncoding());
759   }
760 }
761 
762 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DIDerivedType *DTy) {
763   // Get core information.
764   StringRef Name = DTy->getName();
765   uint64_t Size = DTy->getSizeInBits() >> 3;
766   uint16_t Tag = Buffer.getTag();
767 
768   // Map to main type, void will not have a type.
769   const DIType *FromTy = DTy->getBaseType();
770   if (FromTy)
771     addType(Buffer, FromTy);
772 
773   // Add name if not anonymous or intermediate type.
774   if (!Name.empty())
775     addString(Buffer, dwarf::DW_AT_name, Name);
776 
777   addAnnotation(Buffer, DTy->getAnnotations());
778 
779   // If alignment is specified for a typedef , create and insert DW_AT_alignment
780   // attribute in DW_TAG_typedef DIE.
781   if (Tag == dwarf::DW_TAG_typedef && DD->getDwarfVersion() >= 5) {
782     uint32_t AlignInBytes = DTy->getAlignInBytes();
783     if (AlignInBytes > 0)
784       addUInt(Buffer, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata,
785               AlignInBytes);
786   }
787 
788   // Add size if non-zero (derived types might be zero-sized.)
789   if (Size && Tag != dwarf::DW_TAG_pointer_type
790            && Tag != dwarf::DW_TAG_ptr_to_member_type
791            && Tag != dwarf::DW_TAG_reference_type
792            && Tag != dwarf::DW_TAG_rvalue_reference_type)
793     addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size);
794 
795   if (Tag == dwarf::DW_TAG_ptr_to_member_type)
796     addDIEEntry(Buffer, dwarf::DW_AT_containing_type,
797                 *getOrCreateTypeDIE(cast<DIDerivedType>(DTy)->getClassType()));
798   // Add source line info if available and TyDesc is not a forward declaration.
799   if (!DTy->isForwardDecl())
800     addSourceLine(Buffer, DTy);
801 
802   // If DWARF address space value is other than None, add it.  The IR
803   // verifier checks that DWARF address space only exists for pointer
804   // or reference types.
805   if (DTy->getDWARFAddressSpace())
806     addUInt(Buffer, dwarf::DW_AT_address_class, dwarf::DW_FORM_data4,
807             DTy->getDWARFAddressSpace().getValue());
808 }
809 
810 void DwarfUnit::constructSubprogramArguments(DIE &Buffer, DITypeRefArray Args) {
811   for (unsigned i = 1, N = Args.size(); i < N; ++i) {
812     const DIType *Ty = Args[i];
813     if (!Ty) {
814       assert(i == N-1 && "Unspecified parameter must be the last argument");
815       createAndAddDIE(dwarf::DW_TAG_unspecified_parameters, Buffer);
816     } else {
817       DIE &Arg = createAndAddDIE(dwarf::DW_TAG_formal_parameter, Buffer);
818       addType(Arg, Ty);
819       if (Ty->isArtificial())
820         addFlag(Arg, dwarf::DW_AT_artificial);
821     }
822   }
823 }
824 
825 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DISubroutineType *CTy) {
826   // Add return type.  A void return won't have a type.
827   auto Elements = cast<DISubroutineType>(CTy)->getTypeArray();
828   if (Elements.size())
829     if (auto RTy = Elements[0])
830       addType(Buffer, RTy);
831 
832   bool isPrototyped = true;
833   if (Elements.size() == 2 && !Elements[1])
834     isPrototyped = false;
835 
836   constructSubprogramArguments(Buffer, Elements);
837 
838   // Add prototype flag if we're dealing with a C language and the function has
839   // been prototyped.
840   uint16_t Language = getLanguage();
841   if (isPrototyped &&
842       (Language == dwarf::DW_LANG_C89 || Language == dwarf::DW_LANG_C99 ||
843        Language == dwarf::DW_LANG_ObjC))
844     addFlag(Buffer, dwarf::DW_AT_prototyped);
845 
846   // Add a DW_AT_calling_convention if this has an explicit convention.
847   if (CTy->getCC() && CTy->getCC() != dwarf::DW_CC_normal)
848     addUInt(Buffer, dwarf::DW_AT_calling_convention, dwarf::DW_FORM_data1,
849             CTy->getCC());
850 
851   if (CTy->isLValueReference())
852     addFlag(Buffer, dwarf::DW_AT_reference);
853 
854   if (CTy->isRValueReference())
855     addFlag(Buffer, dwarf::DW_AT_rvalue_reference);
856 }
857 
858 void DwarfUnit::addAnnotation(DIE &Buffer, DINodeArray Annotations) {
859   if (!Annotations)
860     return;
861 
862   for (const Metadata *Annotation : Annotations->operands()) {
863     const MDNode *MD = cast<MDNode>(Annotation);
864     const MDString *Name = cast<MDString>(MD->getOperand(0));
865     const auto &Value = MD->getOperand(1);
866 
867     DIE &AnnotationDie = createAndAddDIE(dwarf::DW_TAG_LLVM_annotation, Buffer);
868     addString(AnnotationDie, dwarf::DW_AT_name, Name->getString());
869     if (const auto *Data = dyn_cast<MDString>(Value))
870       addString(AnnotationDie, dwarf::DW_AT_const_value, Data->getString());
871     else if (const auto *Data = dyn_cast<ConstantAsMetadata>(Value))
872       addConstantValue(AnnotationDie, Data->getValue()->getUniqueInteger(),
873                        /*Unsigned=*/true);
874     else
875       assert(false && "Unsupported annotation value type");
876   }
877 }
878 
879 void DwarfUnit::constructTypeDIE(DIE &Buffer, const DICompositeType *CTy) {
880   // Add name if not anonymous or intermediate type.
881   StringRef Name = CTy->getName();
882 
883   uint64_t Size = CTy->getSizeInBits() >> 3;
884   uint16_t Tag = Buffer.getTag();
885 
886   switch (Tag) {
887   case dwarf::DW_TAG_array_type:
888     constructArrayTypeDIE(Buffer, CTy);
889     break;
890   case dwarf::DW_TAG_enumeration_type:
891     constructEnumTypeDIE(Buffer, CTy);
892     break;
893   case dwarf::DW_TAG_variant_part:
894   case dwarf::DW_TAG_structure_type:
895   case dwarf::DW_TAG_union_type:
896   case dwarf::DW_TAG_class_type:
897   case dwarf::DW_TAG_namelist: {
898     // Emit the discriminator for a variant part.
899     DIDerivedType *Discriminator = nullptr;
900     if (Tag == dwarf::DW_TAG_variant_part) {
901       Discriminator = CTy->getDiscriminator();
902       if (Discriminator) {
903         // DWARF says:
904         //    If the variant part has a discriminant, the discriminant is
905         //    represented by a separate debugging information entry which is
906         //    a child of the variant part entry.
907         DIE &DiscMember = constructMemberDIE(Buffer, Discriminator);
908         addDIEEntry(Buffer, dwarf::DW_AT_discr, DiscMember);
909       }
910     }
911 
912     // Add template parameters to a class, structure or union types.
913     if (Tag == dwarf::DW_TAG_class_type ||
914         Tag == dwarf::DW_TAG_structure_type || Tag == dwarf::DW_TAG_union_type)
915       addTemplateParams(Buffer, CTy->getTemplateParams());
916 
917     // Add elements to structure type.
918     DINodeArray Elements = CTy->getElements();
919     for (const auto *Element : Elements) {
920       if (!Element)
921         continue;
922       if (auto *SP = dyn_cast<DISubprogram>(Element))
923         getOrCreateSubprogramDIE(SP);
924       else if (auto *DDTy = dyn_cast<DIDerivedType>(Element)) {
925         if (DDTy->getTag() == dwarf::DW_TAG_friend) {
926           DIE &ElemDie = createAndAddDIE(dwarf::DW_TAG_friend, Buffer);
927           addType(ElemDie, DDTy->getBaseType(), dwarf::DW_AT_friend);
928         } else if (DDTy->isStaticMember()) {
929           getOrCreateStaticMemberDIE(DDTy);
930         } else if (Tag == dwarf::DW_TAG_variant_part) {
931           // When emitting a variant part, wrap each member in
932           // DW_TAG_variant.
933           DIE &Variant = createAndAddDIE(dwarf::DW_TAG_variant, Buffer);
934           if (const ConstantInt *CI =
935               dyn_cast_or_null<ConstantInt>(DDTy->getDiscriminantValue())) {
936             if (DD->isUnsignedDIType(Discriminator->getBaseType()))
937               addUInt(Variant, dwarf::DW_AT_discr_value, None, CI->getZExtValue());
938             else
939               addSInt(Variant, dwarf::DW_AT_discr_value, None, CI->getSExtValue());
940           }
941           constructMemberDIE(Variant, DDTy);
942         } else {
943           constructMemberDIE(Buffer, DDTy);
944         }
945       } else if (auto *Property = dyn_cast<DIObjCProperty>(Element)) {
946         DIE &ElemDie = createAndAddDIE(Property->getTag(), Buffer);
947         StringRef PropertyName = Property->getName();
948         addString(ElemDie, dwarf::DW_AT_APPLE_property_name, PropertyName);
949         if (Property->getType())
950           addType(ElemDie, Property->getType());
951         addSourceLine(ElemDie, Property);
952         StringRef GetterName = Property->getGetterName();
953         if (!GetterName.empty())
954           addString(ElemDie, dwarf::DW_AT_APPLE_property_getter, GetterName);
955         StringRef SetterName = Property->getSetterName();
956         if (!SetterName.empty())
957           addString(ElemDie, dwarf::DW_AT_APPLE_property_setter, SetterName);
958         if (unsigned PropertyAttributes = Property->getAttributes())
959           addUInt(ElemDie, dwarf::DW_AT_APPLE_property_attribute, None,
960                   PropertyAttributes);
961       } else if (auto *Composite = dyn_cast<DICompositeType>(Element)) {
962         if (Composite->getTag() == dwarf::DW_TAG_variant_part) {
963           DIE &VariantPart = createAndAddDIE(Composite->getTag(), Buffer);
964           constructTypeDIE(VariantPart, Composite);
965         }
966       } else if (Tag == dwarf::DW_TAG_namelist) {
967         auto *Var = dyn_cast<DINode>(Element);
968         auto *VarDIE = getDIE(Var);
969         if (VarDIE) {
970           DIE &ItemDie = createAndAddDIE(dwarf::DW_TAG_namelist_item, Buffer);
971           addDIEEntry(ItemDie, dwarf::DW_AT_namelist_item, *VarDIE);
972         }
973       }
974     }
975 
976     if (CTy->isAppleBlockExtension())
977       addFlag(Buffer, dwarf::DW_AT_APPLE_block);
978 
979     if (CTy->getExportSymbols())
980       addFlag(Buffer, dwarf::DW_AT_export_symbols);
981 
982     // This is outside the DWARF spec, but GDB expects a DW_AT_containing_type
983     // inside C++ composite types to point to the base class with the vtable.
984     // Rust uses DW_AT_containing_type to link a vtable to the type
985     // for which it was created.
986     if (auto *ContainingType = CTy->getVTableHolder())
987       addDIEEntry(Buffer, dwarf::DW_AT_containing_type,
988                   *getOrCreateTypeDIE(ContainingType));
989 
990     if (CTy->isObjcClassComplete())
991       addFlag(Buffer, dwarf::DW_AT_APPLE_objc_complete_type);
992 
993     // Add the type's non-standard calling convention.
994     // DW_CC_pass_by_value/DW_CC_pass_by_reference are introduced in DWARF 5.
995     if (!Asm->TM.Options.DebugStrictDwarf || DD->getDwarfVersion() >= 5) {
996       uint8_t CC = 0;
997       if (CTy->isTypePassByValue())
998         CC = dwarf::DW_CC_pass_by_value;
999       else if (CTy->isTypePassByReference())
1000         CC = dwarf::DW_CC_pass_by_reference;
1001       if (CC)
1002         addUInt(Buffer, dwarf::DW_AT_calling_convention, dwarf::DW_FORM_data1,
1003                 CC);
1004     }
1005     break;
1006   }
1007   default:
1008     break;
1009   }
1010 
1011   // Add name if not anonymous or intermediate type.
1012   if (!Name.empty())
1013     addString(Buffer, dwarf::DW_AT_name, Name);
1014 
1015   addAnnotation(Buffer, CTy->getAnnotations());
1016 
1017   if (Tag == dwarf::DW_TAG_enumeration_type ||
1018       Tag == dwarf::DW_TAG_class_type || Tag == dwarf::DW_TAG_structure_type ||
1019       Tag == dwarf::DW_TAG_union_type) {
1020     // Add size if non-zero (derived types might be zero-sized.)
1021     // Ignore the size if it's a non-enum forward decl.
1022     // TODO: Do we care about size for enum forward declarations?
1023     if (Size &&
1024         (!CTy->isForwardDecl() || Tag == dwarf::DW_TAG_enumeration_type))
1025       addUInt(Buffer, dwarf::DW_AT_byte_size, None, Size);
1026     else if (!CTy->isForwardDecl())
1027       // Add zero size if it is not a forward declaration.
1028       addUInt(Buffer, dwarf::DW_AT_byte_size, None, 0);
1029 
1030     // If we're a forward decl, say so.
1031     if (CTy->isForwardDecl())
1032       addFlag(Buffer, dwarf::DW_AT_declaration);
1033 
1034     // Add accessibility info if available.
1035     addAccess(Buffer, CTy->getFlags());
1036 
1037     // Add source line info if available.
1038     if (!CTy->isForwardDecl())
1039       addSourceLine(Buffer, CTy);
1040 
1041     // No harm in adding the runtime language to the declaration.
1042     unsigned RLang = CTy->getRuntimeLang();
1043     if (RLang)
1044       addUInt(Buffer, dwarf::DW_AT_APPLE_runtime_class, dwarf::DW_FORM_data1,
1045               RLang);
1046 
1047     // Add align info if available.
1048     if (uint32_t AlignInBytes = CTy->getAlignInBytes())
1049       addUInt(Buffer, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata,
1050               AlignInBytes);
1051   }
1052 }
1053 
1054 void DwarfUnit::constructTemplateTypeParameterDIE(
1055     DIE &Buffer, const DITemplateTypeParameter *TP) {
1056   DIE &ParamDIE =
1057       createAndAddDIE(dwarf::DW_TAG_template_type_parameter, Buffer);
1058   // Add the type if it exists, it could be void and therefore no type.
1059   if (TP->getType())
1060     addType(ParamDIE, TP->getType());
1061   if (!TP->getName().empty())
1062     addString(ParamDIE, dwarf::DW_AT_name, TP->getName());
1063   if (TP->isDefault() && (DD->getDwarfVersion() >= 5))
1064     addFlag(ParamDIE, dwarf::DW_AT_default_value);
1065 }
1066 
1067 void DwarfUnit::constructTemplateValueParameterDIE(
1068     DIE &Buffer, const DITemplateValueParameter *VP) {
1069   DIE &ParamDIE = createAndAddDIE(VP->getTag(), Buffer);
1070 
1071   // Add the type if there is one, template template and template parameter
1072   // packs will not have a type.
1073   if (VP->getTag() == dwarf::DW_TAG_template_value_parameter)
1074     addType(ParamDIE, VP->getType());
1075   if (!VP->getName().empty())
1076     addString(ParamDIE, dwarf::DW_AT_name, VP->getName());
1077   if (VP->isDefault() && (DD->getDwarfVersion() >= 5))
1078     addFlag(ParamDIE, dwarf::DW_AT_default_value);
1079   if (Metadata *Val = VP->getValue()) {
1080     if (ConstantInt *CI = mdconst::dyn_extract<ConstantInt>(Val))
1081       addConstantValue(ParamDIE, CI, VP->getType());
1082     else if (GlobalValue *GV = mdconst::dyn_extract<GlobalValue>(Val)) {
1083       // We cannot describe the location of dllimport'd entities: the
1084       // computation of their address requires loads from the IAT.
1085       if (!GV->hasDLLImportStorageClass()) {
1086         // For declaration non-type template parameters (such as global values
1087         // and functions)
1088         DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1089         addOpAddress(*Loc, Asm->getSymbol(GV));
1090         // Emit DW_OP_stack_value to use the address as the immediate value of
1091         // the parameter, rather than a pointer to it.
1092         addUInt(*Loc, dwarf::DW_FORM_data1, dwarf::DW_OP_stack_value);
1093         addBlock(ParamDIE, dwarf::DW_AT_location, Loc);
1094       }
1095     } else if (VP->getTag() == dwarf::DW_TAG_GNU_template_template_param) {
1096       assert(isa<MDString>(Val));
1097       addString(ParamDIE, dwarf::DW_AT_GNU_template_name,
1098                 cast<MDString>(Val)->getString());
1099     } else if (VP->getTag() == dwarf::DW_TAG_GNU_template_parameter_pack) {
1100       addTemplateParams(ParamDIE, cast<MDTuple>(Val));
1101     }
1102   }
1103 }
1104 
1105 DIE *DwarfUnit::getOrCreateNameSpace(const DINamespace *NS) {
1106   // Construct the context before querying for the existence of the DIE in case
1107   // such construction creates the DIE.
1108   DIE *ContextDIE = getOrCreateContextDIE(NS->getScope());
1109 
1110   if (DIE *NDie = getDIE(NS))
1111     return NDie;
1112   DIE &NDie = createAndAddDIE(dwarf::DW_TAG_namespace, *ContextDIE, NS);
1113 
1114   StringRef Name = NS->getName();
1115   if (!Name.empty())
1116     addString(NDie, dwarf::DW_AT_name, NS->getName());
1117   else
1118     Name = "(anonymous namespace)";
1119   DD->addAccelNamespace(*CUNode, Name, NDie);
1120   addGlobalName(Name, NDie, NS->getScope());
1121   if (NS->getExportSymbols())
1122     addFlag(NDie, dwarf::DW_AT_export_symbols);
1123   return &NDie;
1124 }
1125 
1126 DIE *DwarfUnit::getOrCreateModule(const DIModule *M) {
1127   // Construct the context before querying for the existence of the DIE in case
1128   // such construction creates the DIE.
1129   DIE *ContextDIE = getOrCreateContextDIE(M->getScope());
1130 
1131   if (DIE *MDie = getDIE(M))
1132     return MDie;
1133   DIE &MDie = createAndAddDIE(dwarf::DW_TAG_module, *ContextDIE, M);
1134 
1135   if (!M->getName().empty()) {
1136     addString(MDie, dwarf::DW_AT_name, M->getName());
1137     addGlobalName(M->getName(), MDie, M->getScope());
1138   }
1139   if (!M->getConfigurationMacros().empty())
1140     addString(MDie, dwarf::DW_AT_LLVM_config_macros,
1141               M->getConfigurationMacros());
1142   if (!M->getIncludePath().empty())
1143     addString(MDie, dwarf::DW_AT_LLVM_include_path, M->getIncludePath());
1144   if (!M->getAPINotesFile().empty())
1145     addString(MDie, dwarf::DW_AT_LLVM_apinotes, M->getAPINotesFile());
1146   if (M->getFile())
1147     addUInt(MDie, dwarf::DW_AT_decl_file, None,
1148             getOrCreateSourceID(M->getFile()));
1149   if (M->getLineNo())
1150     addUInt(MDie, dwarf::DW_AT_decl_line, None, M->getLineNo());
1151   if (M->getIsDecl())
1152     addFlag(MDie, dwarf::DW_AT_declaration);
1153 
1154   return &MDie;
1155 }
1156 
1157 DIE *DwarfUnit::getOrCreateSubprogramDIE(const DISubprogram *SP, bool Minimal) {
1158   // Construct the context before querying for the existence of the DIE in case
1159   // such construction creates the DIE (as is the case for member function
1160   // declarations).
1161   DIE *ContextDIE =
1162       Minimal ? &getUnitDie() : getOrCreateContextDIE(SP->getScope());
1163 
1164   if (DIE *SPDie = getDIE(SP))
1165     return SPDie;
1166 
1167   if (auto *SPDecl = SP->getDeclaration()) {
1168     if (!Minimal) {
1169       // Add subprogram definitions to the CU die directly.
1170       ContextDIE = &getUnitDie();
1171       // Build the decl now to ensure it precedes the definition.
1172       getOrCreateSubprogramDIE(SPDecl);
1173     }
1174   }
1175 
1176   // DW_TAG_inlined_subroutine may refer to this DIE.
1177   DIE &SPDie = createAndAddDIE(dwarf::DW_TAG_subprogram, *ContextDIE, SP);
1178 
1179   // Stop here and fill this in later, depending on whether or not this
1180   // subprogram turns out to have inlined instances or not.
1181   if (SP->isDefinition())
1182     return &SPDie;
1183 
1184   static_cast<DwarfUnit *>(SPDie.getUnit())
1185       ->applySubprogramAttributes(SP, SPDie);
1186   return &SPDie;
1187 }
1188 
1189 bool DwarfUnit::applySubprogramDefinitionAttributes(const DISubprogram *SP,
1190                                                     DIE &SPDie, bool Minimal) {
1191   DIE *DeclDie = nullptr;
1192   StringRef DeclLinkageName;
1193   if (auto *SPDecl = SP->getDeclaration()) {
1194     if (!Minimal) {
1195       DITypeRefArray DeclArgs, DefinitionArgs;
1196       DeclArgs = SPDecl->getType()->getTypeArray();
1197       DefinitionArgs = SP->getType()->getTypeArray();
1198 
1199       if (DeclArgs.size() && DefinitionArgs.size())
1200         if (DefinitionArgs[0] != nullptr && DeclArgs[0] != DefinitionArgs[0])
1201           addType(SPDie, DefinitionArgs[0]);
1202 
1203       DeclDie = getDIE(SPDecl);
1204       assert(DeclDie && "This DIE should've already been constructed when the "
1205                         "definition DIE was created in "
1206                         "getOrCreateSubprogramDIE");
1207       // Look at the Decl's linkage name only if we emitted it.
1208       if (DD->useAllLinkageNames())
1209         DeclLinkageName = SPDecl->getLinkageName();
1210       unsigned DeclID = getOrCreateSourceID(SPDecl->getFile());
1211       unsigned DefID = getOrCreateSourceID(SP->getFile());
1212       if (DeclID != DefID)
1213         addUInt(SPDie, dwarf::DW_AT_decl_file, None, DefID);
1214 
1215       if (SP->getLine() != SPDecl->getLine())
1216         addUInt(SPDie, dwarf::DW_AT_decl_line, None, SP->getLine());
1217     }
1218   }
1219 
1220   // Add function template parameters.
1221   addTemplateParams(SPDie, SP->getTemplateParams());
1222 
1223   // Add the linkage name if we have one and it isn't in the Decl.
1224   StringRef LinkageName = SP->getLinkageName();
1225   assert(((LinkageName.empty() || DeclLinkageName.empty()) ||
1226           LinkageName == DeclLinkageName) &&
1227          "decl has a linkage name and it is different");
1228   if (DeclLinkageName.empty() &&
1229       // Always emit it for abstract subprograms.
1230       (DD->useAllLinkageNames() || DU->getAbstractSPDies().lookup(SP)))
1231     addLinkageName(SPDie, LinkageName);
1232 
1233   if (!DeclDie)
1234     return false;
1235 
1236   // Refer to the function declaration where all the other attributes will be
1237   // found.
1238   addDIEEntry(SPDie, dwarf::DW_AT_specification, *DeclDie);
1239   return true;
1240 }
1241 
1242 void DwarfUnit::applySubprogramAttributes(const DISubprogram *SP, DIE &SPDie,
1243                                           bool SkipSPAttributes) {
1244   // If -fdebug-info-for-profiling is enabled, need to emit the subprogram
1245   // and its source location.
1246   bool SkipSPSourceLocation = SkipSPAttributes &&
1247                               !CUNode->getDebugInfoForProfiling();
1248   if (!SkipSPSourceLocation)
1249     if (applySubprogramDefinitionAttributes(SP, SPDie, SkipSPAttributes))
1250       return;
1251 
1252   // Constructors and operators for anonymous aggregates do not have names.
1253   if (!SP->getName().empty())
1254     addString(SPDie, dwarf::DW_AT_name, SP->getName());
1255 
1256   addAnnotation(SPDie, SP->getAnnotations());
1257 
1258   if (!SkipSPSourceLocation)
1259     addSourceLine(SPDie, SP);
1260 
1261   // Skip the rest of the attributes under -gmlt to save space.
1262   if (SkipSPAttributes)
1263     return;
1264 
1265   // Add the prototype if we have a prototype and we have a C like
1266   // language.
1267   uint16_t Language = getLanguage();
1268   if (SP->isPrototyped() &&
1269       (Language == dwarf::DW_LANG_C89 || Language == dwarf::DW_LANG_C99 ||
1270        Language == dwarf::DW_LANG_ObjC))
1271     addFlag(SPDie, dwarf::DW_AT_prototyped);
1272 
1273   if (SP->isObjCDirect())
1274     addFlag(SPDie, dwarf::DW_AT_APPLE_objc_direct);
1275 
1276   unsigned CC = 0;
1277   DITypeRefArray Args;
1278   if (const DISubroutineType *SPTy = SP->getType()) {
1279     Args = SPTy->getTypeArray();
1280     CC = SPTy->getCC();
1281   }
1282 
1283   // Add a DW_AT_calling_convention if this has an explicit convention.
1284   if (CC && CC != dwarf::DW_CC_normal)
1285     addUInt(SPDie, dwarf::DW_AT_calling_convention, dwarf::DW_FORM_data1, CC);
1286 
1287   // Add a return type. If this is a type like a C/C++ void type we don't add a
1288   // return type.
1289   if (Args.size())
1290     if (auto Ty = Args[0])
1291       addType(SPDie, Ty);
1292 
1293   unsigned VK = SP->getVirtuality();
1294   if (VK) {
1295     addUInt(SPDie, dwarf::DW_AT_virtuality, dwarf::DW_FORM_data1, VK);
1296     if (SP->getVirtualIndex() != -1u) {
1297       DIELoc *Block = getDIELoc();
1298       addUInt(*Block, dwarf::DW_FORM_data1, dwarf::DW_OP_constu);
1299       addUInt(*Block, dwarf::DW_FORM_udata, SP->getVirtualIndex());
1300       addBlock(SPDie, dwarf::DW_AT_vtable_elem_location, Block);
1301     }
1302     ContainingTypeMap.insert(std::make_pair(&SPDie, SP->getContainingType()));
1303   }
1304 
1305   if (!SP->isDefinition()) {
1306     addFlag(SPDie, dwarf::DW_AT_declaration);
1307 
1308     // Add arguments. Do not add arguments for subprogram definition. They will
1309     // be handled while processing variables.
1310     constructSubprogramArguments(SPDie, Args);
1311   }
1312 
1313   addThrownTypes(SPDie, SP->getThrownTypes());
1314 
1315   if (SP->isArtificial())
1316     addFlag(SPDie, dwarf::DW_AT_artificial);
1317 
1318   if (!SP->isLocalToUnit())
1319     addFlag(SPDie, dwarf::DW_AT_external);
1320 
1321   if (DD->useAppleExtensionAttributes()) {
1322     if (SP->isOptimized())
1323       addFlag(SPDie, dwarf::DW_AT_APPLE_optimized);
1324 
1325     if (unsigned isa = Asm->getISAEncoding())
1326       addUInt(SPDie, dwarf::DW_AT_APPLE_isa, dwarf::DW_FORM_flag, isa);
1327   }
1328 
1329   if (SP->isLValueReference())
1330     addFlag(SPDie, dwarf::DW_AT_reference);
1331 
1332   if (SP->isRValueReference())
1333     addFlag(SPDie, dwarf::DW_AT_rvalue_reference);
1334 
1335   if (SP->isNoReturn())
1336     addFlag(SPDie, dwarf::DW_AT_noreturn);
1337 
1338   addAccess(SPDie, SP->getFlags());
1339 
1340   if (SP->isExplicit())
1341     addFlag(SPDie, dwarf::DW_AT_explicit);
1342 
1343   if (SP->isMainSubprogram())
1344     addFlag(SPDie, dwarf::DW_AT_main_subprogram);
1345   if (SP->isPure())
1346     addFlag(SPDie, dwarf::DW_AT_pure);
1347   if (SP->isElemental())
1348     addFlag(SPDie, dwarf::DW_AT_elemental);
1349   if (SP->isRecursive())
1350     addFlag(SPDie, dwarf::DW_AT_recursive);
1351 
1352   if (DD->getDwarfVersion() >= 5 && SP->isDeleted())
1353     addFlag(SPDie, dwarf::DW_AT_deleted);
1354 }
1355 
1356 void DwarfUnit::constructSubrangeDIE(DIE &Buffer, const DISubrange *SR,
1357                                      DIE *IndexTy) {
1358   DIE &DW_Subrange = createAndAddDIE(dwarf::DW_TAG_subrange_type, Buffer);
1359   addDIEEntry(DW_Subrange, dwarf::DW_AT_type, *IndexTy);
1360 
1361   // The LowerBound value defines the lower bounds which is typically zero for
1362   // C/C++. The Count value is the number of elements.  Values are 64 bit. If
1363   // Count == -1 then the array is unbounded and we do not emit
1364   // DW_AT_lower_bound and DW_AT_count attributes.
1365   int64_t DefaultLowerBound = getDefaultLowerBound();
1366 
1367   auto AddBoundTypeEntry = [&](dwarf::Attribute Attr,
1368                                DISubrange::BoundType Bound) -> void {
1369     if (auto *BV = Bound.dyn_cast<DIVariable *>()) {
1370       if (auto *VarDIE = getDIE(BV))
1371         addDIEEntry(DW_Subrange, Attr, *VarDIE);
1372     } else if (auto *BE = Bound.dyn_cast<DIExpression *>()) {
1373       DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1374       DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
1375       DwarfExpr.setMemoryLocationKind();
1376       DwarfExpr.addExpression(BE);
1377       addBlock(DW_Subrange, Attr, DwarfExpr.finalize());
1378     } else if (auto *BI = Bound.dyn_cast<ConstantInt *>()) {
1379       if (Attr == dwarf::DW_AT_count) {
1380         if (BI->getSExtValue() != -1)
1381           addUInt(DW_Subrange, Attr, None, BI->getSExtValue());
1382       } else if (Attr != dwarf::DW_AT_lower_bound || DefaultLowerBound == -1 ||
1383                  BI->getSExtValue() != DefaultLowerBound)
1384         addSInt(DW_Subrange, Attr, dwarf::DW_FORM_sdata, BI->getSExtValue());
1385     }
1386   };
1387 
1388   AddBoundTypeEntry(dwarf::DW_AT_lower_bound, SR->getLowerBound());
1389 
1390   AddBoundTypeEntry(dwarf::DW_AT_count, SR->getCount());
1391 
1392   AddBoundTypeEntry(dwarf::DW_AT_upper_bound, SR->getUpperBound());
1393 
1394   AddBoundTypeEntry(dwarf::DW_AT_byte_stride, SR->getStride());
1395 }
1396 
1397 void DwarfUnit::constructGenericSubrangeDIE(DIE &Buffer,
1398                                             const DIGenericSubrange *GSR,
1399                                             DIE *IndexTy) {
1400   DIE &DwGenericSubrange =
1401       createAndAddDIE(dwarf::DW_TAG_generic_subrange, Buffer);
1402   addDIEEntry(DwGenericSubrange, dwarf::DW_AT_type, *IndexTy);
1403 
1404   int64_t DefaultLowerBound = getDefaultLowerBound();
1405 
1406   auto AddBoundTypeEntry = [&](dwarf::Attribute Attr,
1407                                DIGenericSubrange::BoundType Bound) -> void {
1408     if (auto *BV = Bound.dyn_cast<DIVariable *>()) {
1409       if (auto *VarDIE = getDIE(BV))
1410         addDIEEntry(DwGenericSubrange, Attr, *VarDIE);
1411     } else if (auto *BE = Bound.dyn_cast<DIExpression *>()) {
1412       if (BE->isConstant() &&
1413           DIExpression::SignedOrUnsignedConstant::SignedConstant ==
1414               *BE->isConstant()) {
1415         if (Attr != dwarf::DW_AT_lower_bound || DefaultLowerBound == -1 ||
1416             static_cast<int64_t>(BE->getElement(1)) != DefaultLowerBound)
1417           addSInt(DwGenericSubrange, Attr, dwarf::DW_FORM_sdata,
1418                   BE->getElement(1));
1419       } else {
1420         DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1421         DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
1422         DwarfExpr.setMemoryLocationKind();
1423         DwarfExpr.addExpression(BE);
1424         addBlock(DwGenericSubrange, Attr, DwarfExpr.finalize());
1425       }
1426     }
1427   };
1428 
1429   AddBoundTypeEntry(dwarf::DW_AT_lower_bound, GSR->getLowerBound());
1430   AddBoundTypeEntry(dwarf::DW_AT_count, GSR->getCount());
1431   AddBoundTypeEntry(dwarf::DW_AT_upper_bound, GSR->getUpperBound());
1432   AddBoundTypeEntry(dwarf::DW_AT_byte_stride, GSR->getStride());
1433 }
1434 
1435 DIE *DwarfUnit::getIndexTyDie() {
1436   if (IndexTyDie)
1437     return IndexTyDie;
1438   // Construct an integer type to use for indexes.
1439   IndexTyDie = &createAndAddDIE(dwarf::DW_TAG_base_type, getUnitDie());
1440   StringRef Name = "__ARRAY_SIZE_TYPE__";
1441   addString(*IndexTyDie, dwarf::DW_AT_name, Name);
1442   addUInt(*IndexTyDie, dwarf::DW_AT_byte_size, None, sizeof(int64_t));
1443   addUInt(*IndexTyDie, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1,
1444           dwarf::DW_ATE_unsigned);
1445   DD->addAccelType(*CUNode, Name, *IndexTyDie, /*Flags*/ 0);
1446   return IndexTyDie;
1447 }
1448 
1449 /// Returns true if the vector's size differs from the sum of sizes of elements
1450 /// the user specified.  This can occur if the vector has been rounded up to
1451 /// fit memory alignment constraints.
1452 static bool hasVectorBeenPadded(const DICompositeType *CTy) {
1453   assert(CTy && CTy->isVector() && "Composite type is not a vector");
1454   const uint64_t ActualSize = CTy->getSizeInBits();
1455 
1456   // Obtain the size of each element in the vector.
1457   DIType *BaseTy = CTy->getBaseType();
1458   assert(BaseTy && "Unknown vector element type.");
1459   const uint64_t ElementSize = BaseTy->getSizeInBits();
1460 
1461   // Locate the number of elements in the vector.
1462   const DINodeArray Elements = CTy->getElements();
1463   assert(Elements.size() == 1 &&
1464          Elements[0]->getTag() == dwarf::DW_TAG_subrange_type &&
1465          "Invalid vector element array, expected one element of type subrange");
1466   const auto Subrange = cast<DISubrange>(Elements[0]);
1467   const auto NumVecElements =
1468       Subrange->getCount()
1469           ? Subrange->getCount().get<ConstantInt *>()->getSExtValue()
1470           : 0;
1471 
1472   // Ensure we found the element count and that the actual size is wide
1473   // enough to contain the requested size.
1474   assert(ActualSize >= (NumVecElements * ElementSize) && "Invalid vector size");
1475   return ActualSize != (NumVecElements * ElementSize);
1476 }
1477 
1478 void DwarfUnit::constructArrayTypeDIE(DIE &Buffer, const DICompositeType *CTy) {
1479   if (CTy->isVector()) {
1480     addFlag(Buffer, dwarf::DW_AT_GNU_vector);
1481     if (hasVectorBeenPadded(CTy))
1482       addUInt(Buffer, dwarf::DW_AT_byte_size, None,
1483               CTy->getSizeInBits() / CHAR_BIT);
1484   }
1485 
1486   if (DIVariable *Var = CTy->getDataLocation()) {
1487     if (auto *VarDIE = getDIE(Var))
1488       addDIEEntry(Buffer, dwarf::DW_AT_data_location, *VarDIE);
1489   } else if (DIExpression *Expr = CTy->getDataLocationExp()) {
1490     DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1491     DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
1492     DwarfExpr.setMemoryLocationKind();
1493     DwarfExpr.addExpression(Expr);
1494     addBlock(Buffer, dwarf::DW_AT_data_location, DwarfExpr.finalize());
1495   }
1496 
1497   if (DIVariable *Var = CTy->getAssociated()) {
1498     if (auto *VarDIE = getDIE(Var))
1499       addDIEEntry(Buffer, dwarf::DW_AT_associated, *VarDIE);
1500   } else if (DIExpression *Expr = CTy->getAssociatedExp()) {
1501     DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1502     DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
1503     DwarfExpr.setMemoryLocationKind();
1504     DwarfExpr.addExpression(Expr);
1505     addBlock(Buffer, dwarf::DW_AT_associated, DwarfExpr.finalize());
1506   }
1507 
1508   if (DIVariable *Var = CTy->getAllocated()) {
1509     if (auto *VarDIE = getDIE(Var))
1510       addDIEEntry(Buffer, dwarf::DW_AT_allocated, *VarDIE);
1511   } else if (DIExpression *Expr = CTy->getAllocatedExp()) {
1512     DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1513     DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
1514     DwarfExpr.setMemoryLocationKind();
1515     DwarfExpr.addExpression(Expr);
1516     addBlock(Buffer, dwarf::DW_AT_allocated, DwarfExpr.finalize());
1517   }
1518 
1519   if (auto *RankConst = CTy->getRankConst()) {
1520     addSInt(Buffer, dwarf::DW_AT_rank, dwarf::DW_FORM_sdata,
1521             RankConst->getSExtValue());
1522   } else if (auto *RankExpr = CTy->getRankExp()) {
1523     DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1524     DIEDwarfExpression DwarfExpr(*Asm, getCU(), *Loc);
1525     DwarfExpr.setMemoryLocationKind();
1526     DwarfExpr.addExpression(RankExpr);
1527     addBlock(Buffer, dwarf::DW_AT_rank, DwarfExpr.finalize());
1528   }
1529 
1530   // Emit the element type.
1531   addType(Buffer, CTy->getBaseType());
1532 
1533   // Get an anonymous type for index type.
1534   // FIXME: This type should be passed down from the front end
1535   // as different languages may have different sizes for indexes.
1536   DIE *IdxTy = getIndexTyDie();
1537 
1538   // Add subranges to array type.
1539   DINodeArray Elements = CTy->getElements();
1540   for (DINode *E : Elements) {
1541     // FIXME: Should this really be such a loose cast?
1542     if (auto *Element = dyn_cast_or_null<DINode>(E)) {
1543       if (Element->getTag() == dwarf::DW_TAG_subrange_type)
1544         constructSubrangeDIE(Buffer, cast<DISubrange>(Element), IdxTy);
1545       else if (Element->getTag() == dwarf::DW_TAG_generic_subrange)
1546         constructGenericSubrangeDIE(Buffer, cast<DIGenericSubrange>(Element),
1547                                     IdxTy);
1548     }
1549   }
1550 }
1551 
1552 void DwarfUnit::constructEnumTypeDIE(DIE &Buffer, const DICompositeType *CTy) {
1553   const DIType *DTy = CTy->getBaseType();
1554   bool IsUnsigned = DTy && DD->isUnsignedDIType(DTy);
1555   if (DTy) {
1556     if (DD->getDwarfVersion() >= 3)
1557       addType(Buffer, DTy);
1558     if (DD->getDwarfVersion() >= 4 && (CTy->getFlags() & DINode::FlagEnumClass))
1559       addFlag(Buffer, dwarf::DW_AT_enum_class);
1560   }
1561 
1562   auto *Context = CTy->getScope();
1563   bool IndexEnumerators = !Context || isa<DICompileUnit>(Context) || isa<DIFile>(Context) ||
1564       isa<DINamespace>(Context) || isa<DICommonBlock>(Context);
1565   DINodeArray Elements = CTy->getElements();
1566 
1567   // Add enumerators to enumeration type.
1568   for (const DINode *E : Elements) {
1569     auto *Enum = dyn_cast_or_null<DIEnumerator>(E);
1570     if (Enum) {
1571       DIE &Enumerator = createAndAddDIE(dwarf::DW_TAG_enumerator, Buffer);
1572       StringRef Name = Enum->getName();
1573       addString(Enumerator, dwarf::DW_AT_name, Name);
1574       addConstantValue(Enumerator, Enum->getValue(), IsUnsigned);
1575       if (IndexEnumerators)
1576         addGlobalName(Name, Enumerator, Context);
1577     }
1578   }
1579 }
1580 
1581 void DwarfUnit::constructContainingTypeDIEs() {
1582   for (auto &P : ContainingTypeMap) {
1583     DIE &SPDie = *P.first;
1584     const DINode *D = P.second;
1585     if (!D)
1586       continue;
1587     DIE *NDie = getDIE(D);
1588     if (!NDie)
1589       continue;
1590     addDIEEntry(SPDie, dwarf::DW_AT_containing_type, *NDie);
1591   }
1592 }
1593 
1594 DIE &DwarfUnit::constructMemberDIE(DIE &Buffer, const DIDerivedType *DT) {
1595   DIE &MemberDie = createAndAddDIE(DT->getTag(), Buffer);
1596   StringRef Name = DT->getName();
1597   if (!Name.empty())
1598     addString(MemberDie, dwarf::DW_AT_name, Name);
1599 
1600   addAnnotation(MemberDie, DT->getAnnotations());
1601 
1602   if (DIType *Resolved = DT->getBaseType())
1603     addType(MemberDie, Resolved);
1604 
1605   addSourceLine(MemberDie, DT);
1606 
1607   if (DT->getTag() == dwarf::DW_TAG_inheritance && DT->isVirtual()) {
1608 
1609     // For C++, virtual base classes are not at fixed offset. Use following
1610     // expression to extract appropriate offset from vtable.
1611     // BaseAddr = ObAddr + *((*ObAddr) - Offset)
1612 
1613     DIELoc *VBaseLocationDie = new (DIEValueAllocator) DIELoc;
1614     addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_dup);
1615     addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_deref);
1616     addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_constu);
1617     addUInt(*VBaseLocationDie, dwarf::DW_FORM_udata, DT->getOffsetInBits());
1618     addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_minus);
1619     addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_deref);
1620     addUInt(*VBaseLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_plus);
1621 
1622     addBlock(MemberDie, dwarf::DW_AT_data_member_location, VBaseLocationDie);
1623   } else {
1624     uint64_t Size = DT->getSizeInBits();
1625     uint64_t FieldSize = DD->getBaseTypeSize(DT);
1626     uint32_t AlignInBytes = DT->getAlignInBytes();
1627     uint64_t OffsetInBytes;
1628 
1629     bool IsBitfield = FieldSize && Size != FieldSize;
1630     if (IsBitfield) {
1631       // Handle bitfield, assume bytes are 8 bits.
1632       if (DD->useDWARF2Bitfields())
1633         addUInt(MemberDie, dwarf::DW_AT_byte_size, None, FieldSize/8);
1634       addUInt(MemberDie, dwarf::DW_AT_bit_size, None, Size);
1635 
1636       uint64_t Offset = DT->getOffsetInBits();
1637       // We can't use DT->getAlignInBits() here: AlignInBits for member type
1638       // is non-zero if and only if alignment was forced (e.g. _Alignas()),
1639       // which can't be done with bitfields. Thus we use FieldSize here.
1640       uint32_t AlignInBits = FieldSize;
1641       uint32_t AlignMask = ~(AlignInBits - 1);
1642       // The bits from the start of the storage unit to the start of the field.
1643       uint64_t StartBitOffset = Offset - (Offset & AlignMask);
1644       // The byte offset of the field's aligned storage unit inside the struct.
1645       OffsetInBytes = (Offset - StartBitOffset) / 8;
1646 
1647       if (DD->useDWARF2Bitfields()) {
1648         uint64_t HiMark = (Offset + FieldSize) & AlignMask;
1649         uint64_t FieldOffset = (HiMark - FieldSize);
1650         Offset -= FieldOffset;
1651 
1652         // Maybe we need to work from the other end.
1653         if (Asm->getDataLayout().isLittleEndian())
1654           Offset = FieldSize - (Offset + Size);
1655 
1656         addUInt(MemberDie, dwarf::DW_AT_bit_offset, None, Offset);
1657         OffsetInBytes = FieldOffset >> 3;
1658       } else {
1659         addUInt(MemberDie, dwarf::DW_AT_data_bit_offset, None, Offset);
1660       }
1661     } else {
1662       // This is not a bitfield.
1663       OffsetInBytes = DT->getOffsetInBits() / 8;
1664       if (AlignInBytes)
1665         addUInt(MemberDie, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata,
1666                 AlignInBytes);
1667     }
1668 
1669     if (DD->getDwarfVersion() <= 2) {
1670       DIELoc *MemLocationDie = new (DIEValueAllocator) DIELoc;
1671       addUInt(*MemLocationDie, dwarf::DW_FORM_data1, dwarf::DW_OP_plus_uconst);
1672       addUInt(*MemLocationDie, dwarf::DW_FORM_udata, OffsetInBytes);
1673       addBlock(MemberDie, dwarf::DW_AT_data_member_location, MemLocationDie);
1674     } else if (!IsBitfield || DD->useDWARF2Bitfields()) {
1675       // In DWARF v3, DW_FORM_data4/8 in DW_AT_data_member_location are
1676       // interpreted as location-list pointers. Interpreting constants as
1677       // pointers is not expected, so we use DW_FORM_udata to encode the
1678       // constants here.
1679       if (DD->getDwarfVersion() == 3)
1680         addUInt(MemberDie, dwarf::DW_AT_data_member_location,
1681                 dwarf::DW_FORM_udata, OffsetInBytes);
1682       else
1683         addUInt(MemberDie, dwarf::DW_AT_data_member_location, None,
1684                 OffsetInBytes);
1685     }
1686   }
1687 
1688   addAccess(MemberDie, DT->getFlags());
1689 
1690   if (DT->isVirtual())
1691     addUInt(MemberDie, dwarf::DW_AT_virtuality, dwarf::DW_FORM_data1,
1692             dwarf::DW_VIRTUALITY_virtual);
1693 
1694   // Objective-C properties.
1695   if (DINode *PNode = DT->getObjCProperty())
1696     if (DIE *PDie = getDIE(PNode))
1697       addAttribute(MemberDie, dwarf::DW_AT_APPLE_property,
1698                    dwarf::DW_FORM_ref4, DIEEntry(*PDie));
1699 
1700   if (DT->isArtificial())
1701     addFlag(MemberDie, dwarf::DW_AT_artificial);
1702 
1703   return MemberDie;
1704 }
1705 
1706 DIE *DwarfUnit::getOrCreateStaticMemberDIE(const DIDerivedType *DT) {
1707   if (!DT)
1708     return nullptr;
1709 
1710   // Construct the context before querying for the existence of the DIE in case
1711   // such construction creates the DIE.
1712   DIE *ContextDIE = getOrCreateContextDIE(DT->getScope());
1713   assert(dwarf::isType(ContextDIE->getTag()) &&
1714          "Static member should belong to a type.");
1715 
1716   if (DIE *StaticMemberDIE = getDIE(DT))
1717     return StaticMemberDIE;
1718 
1719   DIE &StaticMemberDIE = createAndAddDIE(DT->getTag(), *ContextDIE, DT);
1720 
1721   const DIType *Ty = DT->getBaseType();
1722 
1723   addString(StaticMemberDIE, dwarf::DW_AT_name, DT->getName());
1724   addType(StaticMemberDIE, Ty);
1725   addSourceLine(StaticMemberDIE, DT);
1726   addFlag(StaticMemberDIE, dwarf::DW_AT_external);
1727   addFlag(StaticMemberDIE, dwarf::DW_AT_declaration);
1728 
1729   // FIXME: We could omit private if the parent is a class_type, and
1730   // public if the parent is something else.
1731   addAccess(StaticMemberDIE, DT->getFlags());
1732 
1733   if (const ConstantInt *CI = dyn_cast_or_null<ConstantInt>(DT->getConstant()))
1734     addConstantValue(StaticMemberDIE, CI, Ty);
1735   if (const ConstantFP *CFP = dyn_cast_or_null<ConstantFP>(DT->getConstant()))
1736     addConstantFPValue(StaticMemberDIE, CFP);
1737 
1738   if (uint32_t AlignInBytes = DT->getAlignInBytes())
1739     addUInt(StaticMemberDIE, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata,
1740             AlignInBytes);
1741 
1742   return &StaticMemberDIE;
1743 }
1744 
1745 void DwarfUnit::emitCommonHeader(bool UseOffsets, dwarf::UnitType UT) {
1746   // Emit size of content not including length itself
1747   if (!DD->useSectionsAsReferences())
1748     EndLabel = Asm->emitDwarfUnitLength(
1749         isDwoUnit() ? "debug_info_dwo" : "debug_info", "Length of Unit");
1750   else
1751     Asm->emitDwarfUnitLength(getHeaderSize() + getUnitDie().getSize(),
1752                              "Length of Unit");
1753 
1754   Asm->OutStreamer->AddComment("DWARF version number");
1755   unsigned Version = DD->getDwarfVersion();
1756   Asm->emitInt16(Version);
1757 
1758   // DWARF v5 reorders the address size and adds a unit type.
1759   if (Version >= 5) {
1760     Asm->OutStreamer->AddComment("DWARF Unit Type");
1761     Asm->emitInt8(UT);
1762     Asm->OutStreamer->AddComment("Address Size (in bytes)");
1763     Asm->emitInt8(Asm->MAI->getCodePointerSize());
1764   }
1765 
1766   // We share one abbreviations table across all units so it's always at the
1767   // start of the section. Use a relocatable offset where needed to ensure
1768   // linking doesn't invalidate that offset.
1769   Asm->OutStreamer->AddComment("Offset Into Abbrev. Section");
1770   const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering();
1771   if (UseOffsets)
1772     Asm->emitDwarfLengthOrOffset(0);
1773   else
1774     Asm->emitDwarfSymbolReference(
1775         TLOF.getDwarfAbbrevSection()->getBeginSymbol(), false);
1776 
1777   if (Version <= 4) {
1778     Asm->OutStreamer->AddComment("Address Size (in bytes)");
1779     Asm->emitInt8(Asm->MAI->getCodePointerSize());
1780   }
1781 }
1782 
1783 void DwarfTypeUnit::emitHeader(bool UseOffsets) {
1784   DwarfUnit::emitCommonHeader(UseOffsets,
1785                               DD->useSplitDwarf() ? dwarf::DW_UT_split_type
1786                                                   : dwarf::DW_UT_type);
1787   Asm->OutStreamer->AddComment("Type Signature");
1788   Asm->OutStreamer->emitIntValue(TypeSignature, sizeof(TypeSignature));
1789   Asm->OutStreamer->AddComment("Type DIE Offset");
1790   // In a skeleton type unit there is no type DIE so emit a zero offset.
1791   Asm->emitDwarfLengthOrOffset(Ty ? Ty->getOffset() : 0);
1792 }
1793 
1794 void DwarfUnit::addSectionDelta(DIE &Die, dwarf::Attribute Attribute,
1795                                 const MCSymbol *Hi, const MCSymbol *Lo) {
1796   addAttribute(Die, Attribute, DD->getDwarfSectionOffsetForm(),
1797                new (DIEValueAllocator) DIEDelta(Hi, Lo));
1798 }
1799 
1800 void DwarfUnit::addSectionLabel(DIE &Die, dwarf::Attribute Attribute,
1801                                 const MCSymbol *Label, const MCSymbol *Sec) {
1802   if (Asm->MAI->doesDwarfUseRelocationsAcrossSections())
1803     addLabel(Die, Attribute, DD->getDwarfSectionOffsetForm(), Label);
1804   else
1805     addSectionDelta(Die, Attribute, Label, Sec);
1806 }
1807 
1808 bool DwarfTypeUnit::isDwoUnit() const {
1809   // Since there are no skeleton type units, all type units are dwo type units
1810   // when split DWARF is being used.
1811   return DD->useSplitDwarf();
1812 }
1813 
1814 void DwarfTypeUnit::addGlobalName(StringRef Name, const DIE &Die,
1815                                   const DIScope *Context) {
1816   getCU().addGlobalNameForTypeUnit(Name, Context);
1817 }
1818 
1819 void DwarfTypeUnit::addGlobalType(const DIType *Ty, const DIE &Die,
1820                                   const DIScope *Context) {
1821   getCU().addGlobalTypeUnitType(Ty, Context);
1822 }
1823 
1824 const MCSymbol *DwarfUnit::getCrossSectionRelativeBaseAddress() const {
1825   if (!Asm->MAI->doesDwarfUseRelocationsAcrossSections())
1826     return nullptr;
1827   if (isDwoUnit())
1828     return nullptr;
1829   return getSection()->getBeginSymbol();
1830 }
1831 
1832 void DwarfUnit::addStringOffsetsStart() {
1833   const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering();
1834   addSectionLabel(getUnitDie(), dwarf::DW_AT_str_offsets_base,
1835                   DU->getStringOffsetsStartSym(),
1836                   TLOF.getDwarfStrOffSection()->getBeginSymbol());
1837 }
1838 
1839 void DwarfUnit::addRnglistsBase() {
1840   assert(DD->getDwarfVersion() >= 5 &&
1841          "DW_AT_rnglists_base requires DWARF version 5 or later");
1842   const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering();
1843   addSectionLabel(getUnitDie(), dwarf::DW_AT_rnglists_base,
1844                   DU->getRnglistsTableBaseSym(),
1845                   TLOF.getDwarfRnglistsSection()->getBeginSymbol());
1846 }
1847 
1848 void DwarfTypeUnit::finishNonUnitTypeDIE(DIE& D, const DICompositeType *CTy) {
1849   addFlag(D, dwarf::DW_AT_declaration);
1850   StringRef Name = CTy->getName();
1851   if (!Name.empty())
1852     addString(D, dwarf::DW_AT_name, Name);
1853   if (Name.startswith("_STN") || !Name.contains('<'))
1854     addTemplateParams(D, CTy->getTemplateParams());
1855   // If the type is in an anonymous namespace, we can't reference it from a TU
1856   // (since the type would be CU local and the TU doesn't specify which TU has
1857   // the appropriate type definition) - so flag this emission as such and skip
1858   // the rest of the emission now since we're going to throw out all this work
1859   // and put the outer/referencing type in the CU instead.
1860   // FIXME: Probably good to generalize this to a DICompositeType flag populated
1861   // by the frontend, then we could use that to have types that can have
1862   // decl+def merged by LTO but where the definition still doesn't go in a type
1863   // unit because the type has only one definition.
1864   for (DIScope *S = CTy->getScope(); S; S = S->getScope()) {
1865     if (auto *NS = dyn_cast<DINamespace>(S)) {
1866       if (NS->getName().empty()) {
1867         DD->seenLocalType();
1868         break;
1869       }
1870     }
1871   }
1872   auto X = DD->enterNonTypeUnitContext();
1873   getCU().createTypeDIE(CTy);
1874 }
1875