1 //===- llvm/CodeGen/DwarfCompileUnit.cpp - Dwarf 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 "DwarfCompileUnit.h"
14 #include "AddressPool.h"
15 #include "DwarfDebug.h"
16 #include "DwarfExpression.h"
17 #include "DwarfUnit.h"
18 #include "llvm/ADT/None.h"
19 #include "llvm/ADT/STLExtras.h"
20 #include "llvm/ADT/SmallString.h"
21 #include "llvm/ADT/SmallVector.h"
22 #include "llvm/ADT/StringRef.h"
23 #include "llvm/BinaryFormat/Dwarf.h"
24 #include "llvm/CodeGen/AsmPrinter.h"
25 #include "llvm/CodeGen/DIE.h"
26 #include "llvm/CodeGen/LexicalScopes.h"
27 #include "llvm/CodeGen/MachineFunction.h"
28 #include "llvm/CodeGen/MachineInstr.h"
29 #include "llvm/CodeGen/MachineOperand.h"
30 #include "llvm/CodeGen/TargetFrameLowering.h"
31 #include "llvm/CodeGen/TargetRegisterInfo.h"
32 #include "llvm/CodeGen/TargetSubtargetInfo.h"
33 #include "llvm/IR/DataLayout.h"
34 #include "llvm/IR/DebugInfo.h"
35 #include "llvm/IR/DebugInfoMetadata.h"
36 #include "llvm/IR/GlobalVariable.h"
37 #include "llvm/MC/MCSection.h"
38 #include "llvm/MC/MCStreamer.h"
39 #include "llvm/MC/MCSymbol.h"
40 #include "llvm/MC/MachineLocation.h"
41 #include "llvm/Support/Casting.h"
42 #include "llvm/Target/TargetLoweringObjectFile.h"
43 #include "llvm/Target/TargetMachine.h"
44 #include "llvm/Target/TargetOptions.h"
45 #include <algorithm>
46 #include <cassert>
47 #include <cstdint>
48 #include <iterator>
49 #include <memory>
50 #include <string>
51 #include <utility>
52 
53 using namespace llvm;
54 
55 static dwarf::Tag GetCompileUnitType(UnitKind Kind, DwarfDebug *DW) {
56 
57   //  According to DWARF Debugging Information Format Version 5,
58   //  3.1.2 Skeleton Compilation Unit Entries:
59   //  "When generating a split DWARF object file (see Section 7.3.2
60   //  on page 187), the compilation unit in the .debug_info section
61   //  is a "skeleton" compilation unit with the tag DW_TAG_skeleton_unit"
62   if (DW->getDwarfVersion() >= 5 && Kind == UnitKind::Skeleton)
63     return dwarf::DW_TAG_skeleton_unit;
64 
65   return dwarf::DW_TAG_compile_unit;
66 }
67 
68 DwarfCompileUnit::DwarfCompileUnit(unsigned UID, const DICompileUnit *Node,
69                                    AsmPrinter *A, DwarfDebug *DW,
70                                    DwarfFile *DWU, UnitKind Kind)
71     : DwarfUnit(GetCompileUnitType(Kind, DW), Node, A, DW, DWU), UniqueID(UID) {
72   insertDIE(Node, &getUnitDie());
73   MacroLabelBegin = Asm->createTempSymbol("cu_macro_begin");
74 }
75 
76 /// addLabelAddress - Add a dwarf label attribute data and value using
77 /// DW_FORM_addr or DW_FORM_GNU_addr_index.
78 void DwarfCompileUnit::addLabelAddress(DIE &Die, dwarf::Attribute Attribute,
79                                        const MCSymbol *Label) {
80   // Don't use the address pool in non-fission or in the skeleton unit itself.
81   if ((!DD->useSplitDwarf() || !Skeleton) && DD->getDwarfVersion() < 5)
82     return addLocalLabelAddress(Die, Attribute, Label);
83 
84   if (Label)
85     DD->addArangeLabel(SymbolCU(this, Label));
86 
87   unsigned idx = DD->getAddressPool().getIndex(Label);
88   Die.addValue(DIEValueAllocator, Attribute,
89                DD->getDwarfVersion() >= 5 ? dwarf::DW_FORM_addrx
90                                           : dwarf::DW_FORM_GNU_addr_index,
91                DIEInteger(idx));
92 }
93 
94 void DwarfCompileUnit::addLocalLabelAddress(DIE &Die,
95                                             dwarf::Attribute Attribute,
96                                             const MCSymbol *Label) {
97   if (Label)
98     DD->addArangeLabel(SymbolCU(this, Label));
99 
100   if (Label)
101     Die.addValue(DIEValueAllocator, Attribute, dwarf::DW_FORM_addr,
102                  DIELabel(Label));
103   else
104     Die.addValue(DIEValueAllocator, Attribute, dwarf::DW_FORM_addr,
105                  DIEInteger(0));
106 }
107 
108 unsigned DwarfCompileUnit::getOrCreateSourceID(const DIFile *File) {
109   // If we print assembly, we can't separate .file entries according to
110   // compile units. Thus all files will belong to the default compile unit.
111 
112   // FIXME: add a better feature test than hasRawTextSupport. Even better,
113   // extend .file to support this.
114   unsigned CUID = Asm->OutStreamer->hasRawTextSupport() ? 0 : getUniqueID();
115   if (!File)
116     return Asm->OutStreamer->EmitDwarfFileDirective(0, "", "", None, None, CUID);
117   return Asm->OutStreamer->EmitDwarfFileDirective(
118       0, File->getDirectory(), File->getFilename(), getMD5AsBytes(File),
119       File->getSource(), CUID);
120 }
121 
122 DIE *DwarfCompileUnit::getOrCreateGlobalVariableDIE(
123     const DIGlobalVariable *GV, ArrayRef<GlobalExpr> GlobalExprs) {
124   // Check for pre-existence.
125   if (DIE *Die = getDIE(GV))
126     return Die;
127 
128   assert(GV);
129 
130   auto *GVContext = GV->getScope();
131   const DIType *GTy = GV->getType();
132 
133   // Construct the context before querying for the existence of the DIE in
134   // case such construction creates the DIE.
135   auto *CB = GVContext ? dyn_cast<DICommonBlock>(GVContext) : nullptr;
136   DIE *ContextDIE = CB ? getOrCreateCommonBlock(CB, GlobalExprs)
137     : getOrCreateContextDIE(GVContext);
138 
139   // Add to map.
140   DIE *VariableDIE = &createAndAddDIE(GV->getTag(), *ContextDIE, GV);
141   DIScope *DeclContext;
142   if (auto *SDMDecl = GV->getStaticDataMemberDeclaration()) {
143     DeclContext = SDMDecl->getScope();
144     assert(SDMDecl->isStaticMember() && "Expected static member decl");
145     assert(GV->isDefinition());
146     // We need the declaration DIE that is in the static member's class.
147     DIE *VariableSpecDIE = getOrCreateStaticMemberDIE(SDMDecl);
148     addDIEEntry(*VariableDIE, dwarf::DW_AT_specification, *VariableSpecDIE);
149     // If the global variable's type is different from the one in the class
150     // member type, assume that it's more specific and also emit it.
151     if (GTy != SDMDecl->getBaseType())
152       addType(*VariableDIE, GTy);
153   } else {
154     DeclContext = GV->getScope();
155     // Add name and type.
156     addString(*VariableDIE, dwarf::DW_AT_name, GV->getDisplayName());
157     addType(*VariableDIE, GTy);
158 
159     // Add scoping info.
160     if (!GV->isLocalToUnit())
161       addFlag(*VariableDIE, dwarf::DW_AT_external);
162 
163     // Add line number info.
164     addSourceLine(*VariableDIE, GV);
165   }
166 
167   if (!GV->isDefinition())
168     addFlag(*VariableDIE, dwarf::DW_AT_declaration);
169   else
170     addGlobalName(GV->getName(), *VariableDIE, DeclContext);
171 
172   if (uint32_t AlignInBytes = GV->getAlignInBytes())
173     addUInt(*VariableDIE, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata,
174             AlignInBytes);
175 
176   if (MDTuple *TP = GV->getTemplateParams())
177     addTemplateParams(*VariableDIE, DINodeArray(TP));
178 
179   // Add location.
180   addLocationAttribute(VariableDIE, GV, GlobalExprs);
181 
182   return VariableDIE;
183 }
184 
185 void DwarfCompileUnit::addLocationAttribute(
186     DIE *VariableDIE, const DIGlobalVariable *GV, ArrayRef<GlobalExpr> GlobalExprs) {
187   bool addToAccelTable = false;
188   DIELoc *Loc = nullptr;
189   Optional<unsigned> NVPTXAddressSpace;
190   std::unique_ptr<DIEDwarfExpression> DwarfExpr;
191   for (const auto &GE : GlobalExprs) {
192     const GlobalVariable *Global = GE.Var;
193     const DIExpression *Expr = GE.Expr;
194 
195     // For compatibility with DWARF 3 and earlier,
196     // DW_AT_location(DW_OP_constu, X, DW_OP_stack_value) becomes
197     // DW_AT_const_value(X).
198     if (GlobalExprs.size() == 1 && Expr && Expr->isConstant()) {
199       addToAccelTable = true;
200       addConstantValue(*VariableDIE, /*Unsigned=*/true, Expr->getElement(1));
201       break;
202     }
203 
204     // We cannot describe the location of dllimport'd variables: the
205     // computation of their address requires loads from the IAT.
206     if (Global && Global->hasDLLImportStorageClass())
207       continue;
208 
209     // Nothing to describe without address or constant.
210     if (!Global && (!Expr || !Expr->isConstant()))
211       continue;
212 
213     if (Global && Global->isThreadLocal() &&
214         !Asm->getObjFileLowering().supportDebugThreadLocalLocation())
215       continue;
216 
217     if (!Loc) {
218       addToAccelTable = true;
219       Loc = new (DIEValueAllocator) DIELoc;
220       DwarfExpr = std::make_unique<DIEDwarfExpression>(*Asm, *this, *Loc);
221     }
222 
223     if (Expr) {
224       // According to
225       // https://docs.nvidia.com/cuda/archive/10.0/ptx-writers-guide-to-interoperability/index.html#cuda-specific-dwarf
226       // cuda-gdb requires DW_AT_address_class for all variables to be able to
227       // correctly interpret address space of the variable address.
228       // Decode DW_OP_constu <DWARF Address Space> DW_OP_swap DW_OP_xderef
229       // sequence for the NVPTX + gdb target.
230       unsigned LocalNVPTXAddressSpace;
231       if (Asm->TM.getTargetTriple().isNVPTX() && DD->tuneForGDB()) {
232         const DIExpression *NewExpr =
233             DIExpression::extractAddressClass(Expr, LocalNVPTXAddressSpace);
234         if (NewExpr != Expr) {
235           Expr = NewExpr;
236           NVPTXAddressSpace = LocalNVPTXAddressSpace;
237         }
238       }
239       DwarfExpr->addFragmentOffset(Expr);
240     }
241 
242     if (Global) {
243       const MCSymbol *Sym = Asm->getSymbol(Global);
244       if (Global->isThreadLocal()) {
245         if (Asm->TM.useEmulatedTLS()) {
246           // TODO: add debug info for emulated thread local mode.
247         } else {
248           // FIXME: Make this work with -gsplit-dwarf.
249           unsigned PointerSize = Asm->getDataLayout().getPointerSize();
250           assert((PointerSize == 4 || PointerSize == 8) &&
251                  "Add support for other sizes if necessary");
252           // Based on GCC's support for TLS:
253           if (!DD->useSplitDwarf()) {
254             // 1) Start with a constNu of the appropriate pointer size
255             addUInt(*Loc, dwarf::DW_FORM_data1,
256                     PointerSize == 4 ? dwarf::DW_OP_const4u
257                                      : dwarf::DW_OP_const8u);
258             // 2) containing the (relocated) offset of the TLS variable
259             //    within the module's TLS block.
260             addExpr(*Loc, dwarf::DW_FORM_udata,
261                     Asm->getObjFileLowering().getDebugThreadLocalSymbol(Sym));
262           } else {
263             addUInt(*Loc, dwarf::DW_FORM_data1, dwarf::DW_OP_GNU_const_index);
264             addUInt(*Loc, dwarf::DW_FORM_udata,
265                     DD->getAddressPool().getIndex(Sym, /* TLS */ true));
266           }
267           // 3) followed by an OP to make the debugger do a TLS lookup.
268           addUInt(*Loc, dwarf::DW_FORM_data1,
269                   DD->useGNUTLSOpcode() ? dwarf::DW_OP_GNU_push_tls_address
270                                         : dwarf::DW_OP_form_tls_address);
271         }
272       } else {
273         DD->addArangeLabel(SymbolCU(this, Sym));
274         addOpAddress(*Loc, Sym);
275       }
276     }
277     // Global variables attached to symbols are memory locations.
278     // It would be better if this were unconditional, but malformed input that
279     // mixes non-fragments and fragments for the same variable is too expensive
280     // to detect in the verifier.
281     if (DwarfExpr->isUnknownLocation())
282       DwarfExpr->setMemoryLocationKind();
283     DwarfExpr->addExpression(Expr);
284   }
285   if (Asm->TM.getTargetTriple().isNVPTX() && DD->tuneForGDB()) {
286     // According to
287     // https://docs.nvidia.com/cuda/archive/10.0/ptx-writers-guide-to-interoperability/index.html#cuda-specific-dwarf
288     // cuda-gdb requires DW_AT_address_class for all variables to be able to
289     // correctly interpret address space of the variable address.
290     const unsigned NVPTX_ADDR_global_space = 5;
291     addUInt(*VariableDIE, dwarf::DW_AT_address_class, dwarf::DW_FORM_data1,
292             NVPTXAddressSpace ? *NVPTXAddressSpace : NVPTX_ADDR_global_space);
293   }
294   if (Loc)
295     addBlock(*VariableDIE, dwarf::DW_AT_location, DwarfExpr->finalize());
296 
297   if (DD->useAllLinkageNames())
298     addLinkageName(*VariableDIE, GV->getLinkageName());
299 
300   if (addToAccelTable) {
301     DD->addAccelName(*CUNode, GV->getName(), *VariableDIE);
302 
303     // If the linkage name is different than the name, go ahead and output
304     // that as well into the name table.
305     if (GV->getLinkageName() != "" && GV->getName() != GV->getLinkageName() &&
306         DD->useAllLinkageNames())
307       DD->addAccelName(*CUNode, GV->getLinkageName(), *VariableDIE);
308   }
309 }
310 
311 DIE *DwarfCompileUnit::getOrCreateCommonBlock(
312     const DICommonBlock *CB, ArrayRef<GlobalExpr> GlobalExprs) {
313   // Construct the context before querying for the existence of the DIE in case
314   // such construction creates the DIE.
315   DIE *ContextDIE = getOrCreateContextDIE(CB->getScope());
316 
317   if (DIE *NDie = getDIE(CB))
318     return NDie;
319   DIE &NDie = createAndAddDIE(dwarf::DW_TAG_common_block, *ContextDIE, CB);
320   StringRef Name = CB->getName().empty() ? "_BLNK_" : CB->getName();
321   addString(NDie, dwarf::DW_AT_name, Name);
322   addGlobalName(Name, NDie, CB->getScope());
323   if (CB->getFile())
324     addSourceLine(NDie, CB->getLineNo(), CB->getFile());
325   if (DIGlobalVariable *V = CB->getDecl())
326     getCU().addLocationAttribute(&NDie, V, GlobalExprs);
327   return &NDie;
328 }
329 
330 void DwarfCompileUnit::addRange(RangeSpan Range) {
331   DD->insertSectionLabel(Range.Begin);
332 
333   bool SameAsPrevCU = this == DD->getPrevCU();
334   DD->setPrevCU(this);
335   // If we have no current ranges just add the range and return, otherwise,
336   // check the current section and CU against the previous section and CU we
337   // emitted into and the subprogram was contained within. If these are the
338   // same then extend our current range, otherwise add this as a new range.
339   if (CURanges.empty() || !SameAsPrevCU ||
340       (&CURanges.back().End->getSection() !=
341        &Range.End->getSection())) {
342     CURanges.push_back(Range);
343     return;
344   }
345 
346   CURanges.back().End = Range.End;
347 }
348 
349 void DwarfCompileUnit::initStmtList() {
350   if (CUNode->isDebugDirectivesOnly())
351     return;
352 
353   // Define start line table label for each Compile Unit.
354   MCSymbol *LineTableStartSym;
355   const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering();
356   if (DD->useSectionsAsReferences()) {
357     LineTableStartSym = TLOF.getDwarfLineSection()->getBeginSymbol();
358   } else {
359     LineTableStartSym =
360         Asm->OutStreamer->getDwarfLineTableSymbol(getUniqueID());
361   }
362 
363   // DW_AT_stmt_list is a offset of line number information for this
364   // compile unit in debug_line section. For split dwarf this is
365   // left in the skeleton CU and so not included.
366   // The line table entries are not always emitted in assembly, so it
367   // is not okay to use line_table_start here.
368   StmtListValue =
369       addSectionLabel(getUnitDie(), dwarf::DW_AT_stmt_list, LineTableStartSym,
370                       TLOF.getDwarfLineSection()->getBeginSymbol());
371 }
372 
373 void DwarfCompileUnit::applyStmtList(DIE &D) {
374   D.addValue(DIEValueAllocator, *StmtListValue);
375 }
376 
377 void DwarfCompileUnit::attachLowHighPC(DIE &D, const MCSymbol *Begin,
378                                        const MCSymbol *End) {
379   assert(Begin && "Begin label should not be null!");
380   assert(End && "End label should not be null!");
381   assert(Begin->isDefined() && "Invalid starting label");
382   assert(End->isDefined() && "Invalid end label");
383 
384   addLabelAddress(D, dwarf::DW_AT_low_pc, Begin);
385   if (DD->getDwarfVersion() < 4)
386     addLabelAddress(D, dwarf::DW_AT_high_pc, End);
387   else
388     addLabelDelta(D, dwarf::DW_AT_high_pc, End, Begin);
389 }
390 
391 // Find DIE for the given subprogram and attach appropriate DW_AT_low_pc
392 // and DW_AT_high_pc attributes. If there are global variables in this
393 // scope then create and insert DIEs for these variables.
394 DIE &DwarfCompileUnit::updateSubprogramScopeDIE(const DISubprogram *SP) {
395   DIE *SPDie = getOrCreateSubprogramDIE(SP, includeMinimalInlineScopes());
396 
397   attachLowHighPC(*SPDie, Asm->getFunctionBegin(), Asm->getFunctionEnd());
398   if (DD->useAppleExtensionAttributes() &&
399       !DD->getCurrentFunction()->getTarget().Options.DisableFramePointerElim(
400           *DD->getCurrentFunction()))
401     addFlag(*SPDie, dwarf::DW_AT_APPLE_omit_frame_ptr);
402 
403   // Only include DW_AT_frame_base in full debug info
404   if (!includeMinimalInlineScopes()) {
405     const TargetFrameLowering *TFI = Asm->MF->getSubtarget().getFrameLowering();
406     TargetFrameLowering::DwarfFrameBase FrameBase =
407         TFI->getDwarfFrameBase(*Asm->MF);
408     switch (FrameBase.Kind) {
409     case TargetFrameLowering::DwarfFrameBase::Register: {
410       if (Register::isPhysicalRegister(FrameBase.Location.Reg)) {
411         MachineLocation Location(FrameBase.Location.Reg);
412         addAddress(*SPDie, dwarf::DW_AT_frame_base, Location);
413       }
414       break;
415     }
416     case TargetFrameLowering::DwarfFrameBase::CFA: {
417       DIELoc *Loc = new (DIEValueAllocator) DIELoc;
418       addUInt(*Loc, dwarf::DW_FORM_data1, dwarf::DW_OP_call_frame_cfa);
419       addBlock(*SPDie, dwarf::DW_AT_frame_base, Loc);
420       break;
421     }
422     case TargetFrameLowering::DwarfFrameBase::WasmFrameBase: {
423       DIELoc *Loc = new (DIEValueAllocator) DIELoc;
424       DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc);
425       DIExpressionCursor Cursor({});
426       DwarfExpr.addWasmLocation(FrameBase.Location.WasmLoc.Kind,
427                                 FrameBase.Location.WasmLoc.Index);
428       DwarfExpr.addExpression(std::move(Cursor));
429       addBlock(*SPDie, dwarf::DW_AT_frame_base, DwarfExpr.finalize());
430       break;
431     }
432     }
433   }
434 
435   // Add name to the name table, we do this here because we're guaranteed
436   // to have concrete versions of our DW_TAG_subprogram nodes.
437   DD->addSubprogramNames(*CUNode, SP, *SPDie);
438 
439   return *SPDie;
440 }
441 
442 // Construct a DIE for this scope.
443 void DwarfCompileUnit::constructScopeDIE(
444     LexicalScope *Scope, SmallVectorImpl<DIE *> &FinalChildren) {
445   if (!Scope || !Scope->getScopeNode())
446     return;
447 
448   auto *DS = Scope->getScopeNode();
449 
450   assert((Scope->getInlinedAt() || !isa<DISubprogram>(DS)) &&
451          "Only handle inlined subprograms here, use "
452          "constructSubprogramScopeDIE for non-inlined "
453          "subprograms");
454 
455   SmallVector<DIE *, 8> Children;
456 
457   // We try to create the scope DIE first, then the children DIEs. This will
458   // avoid creating un-used children then removing them later when we find out
459   // the scope DIE is null.
460   DIE *ScopeDIE;
461   if (Scope->getParent() && isa<DISubprogram>(DS)) {
462     ScopeDIE = constructInlinedScopeDIE(Scope);
463     if (!ScopeDIE)
464       return;
465     // We create children when the scope DIE is not null.
466     createScopeChildrenDIE(Scope, Children);
467   } else {
468     // Early exit when we know the scope DIE is going to be null.
469     if (DD->isLexicalScopeDIENull(Scope))
470       return;
471 
472     bool HasNonScopeChildren = false;
473 
474     // We create children here when we know the scope DIE is not going to be
475     // null and the children will be added to the scope DIE.
476     createScopeChildrenDIE(Scope, Children, &HasNonScopeChildren);
477 
478     // If there are only other scopes as children, put them directly in the
479     // parent instead, as this scope would serve no purpose.
480     if (!HasNonScopeChildren) {
481       FinalChildren.insert(FinalChildren.end(),
482                            std::make_move_iterator(Children.begin()),
483                            std::make_move_iterator(Children.end()));
484       return;
485     }
486     ScopeDIE = constructLexicalScopeDIE(Scope);
487     assert(ScopeDIE && "Scope DIE should not be null.");
488   }
489 
490   // Add children
491   for (auto &I : Children)
492     ScopeDIE->addChild(std::move(I));
493 
494   FinalChildren.push_back(std::move(ScopeDIE));
495 }
496 
497 void DwarfCompileUnit::addScopeRangeList(DIE &ScopeDIE,
498                                          SmallVector<RangeSpan, 2> Range) {
499 
500   HasRangeLists = true;
501 
502   // Add the range list to the set of ranges to be emitted.
503   auto IndexAndList =
504       (DD->getDwarfVersion() < 5 && Skeleton ? Skeleton->DU : DU)
505           ->addRange(*(Skeleton ? Skeleton : this), std::move(Range));
506 
507   uint32_t Index = IndexAndList.first;
508   auto &List = *IndexAndList.second;
509 
510   // Under fission, ranges are specified by constant offsets relative to the
511   // CU's DW_AT_GNU_ranges_base.
512   // FIXME: For DWARF v5, do not generate the DW_AT_ranges attribute under
513   // fission until we support the forms using the .debug_addr section
514   // (DW_RLE_startx_endx etc.).
515   if (DD->getDwarfVersion() >= 5)
516     addUInt(ScopeDIE, dwarf::DW_AT_ranges, dwarf::DW_FORM_rnglistx, Index);
517   else {
518     const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering();
519     const MCSymbol *RangeSectionSym =
520         TLOF.getDwarfRangesSection()->getBeginSymbol();
521     if (isDwoUnit())
522       addSectionDelta(ScopeDIE, dwarf::DW_AT_ranges, List.Label,
523                       RangeSectionSym);
524     else
525       addSectionLabel(ScopeDIE, dwarf::DW_AT_ranges, List.Label,
526                       RangeSectionSym);
527   }
528 }
529 
530 void DwarfCompileUnit::attachRangesOrLowHighPC(
531     DIE &Die, SmallVector<RangeSpan, 2> Ranges) {
532   if (Ranges.size() == 1 || !DD->useRangesSection()) {
533     const RangeSpan &Front = Ranges.front();
534     const RangeSpan &Back = Ranges.back();
535     attachLowHighPC(Die, Front.Begin, Back.End);
536   } else
537     addScopeRangeList(Die, std::move(Ranges));
538 }
539 
540 void DwarfCompileUnit::attachRangesOrLowHighPC(
541     DIE &Die, const SmallVectorImpl<InsnRange> &Ranges) {
542   SmallVector<RangeSpan, 2> List;
543   List.reserve(Ranges.size());
544   for (const InsnRange &R : Ranges)
545     List.push_back(
546         {DD->getLabelBeforeInsn(R.first), DD->getLabelAfterInsn(R.second)});
547   attachRangesOrLowHighPC(Die, std::move(List));
548 }
549 
550 // This scope represents inlined body of a function. Construct DIE to
551 // represent this concrete inlined copy of the function.
552 DIE *DwarfCompileUnit::constructInlinedScopeDIE(LexicalScope *Scope) {
553   assert(Scope->getScopeNode());
554   auto *DS = Scope->getScopeNode();
555   auto *InlinedSP = getDISubprogram(DS);
556   // Find the subprogram's DwarfCompileUnit in the SPMap in case the subprogram
557   // was inlined from another compile unit.
558   DIE *OriginDIE = getAbstractSPDies()[InlinedSP];
559   assert(OriginDIE && "Unable to find original DIE for an inlined subprogram.");
560 
561   auto ScopeDIE = DIE::get(DIEValueAllocator, dwarf::DW_TAG_inlined_subroutine);
562   addDIEEntry(*ScopeDIE, dwarf::DW_AT_abstract_origin, *OriginDIE);
563 
564   attachRangesOrLowHighPC(*ScopeDIE, Scope->getRanges());
565 
566   // Add the call site information to the DIE.
567   const DILocation *IA = Scope->getInlinedAt();
568   addUInt(*ScopeDIE, dwarf::DW_AT_call_file, None,
569           getOrCreateSourceID(IA->getFile()));
570   addUInt(*ScopeDIE, dwarf::DW_AT_call_line, None, IA->getLine());
571   if (IA->getColumn())
572     addUInt(*ScopeDIE, dwarf::DW_AT_call_column, None, IA->getColumn());
573   if (IA->getDiscriminator() && DD->getDwarfVersion() >= 4)
574     addUInt(*ScopeDIE, dwarf::DW_AT_GNU_discriminator, None,
575             IA->getDiscriminator());
576 
577   // Add name to the name table, we do this here because we're guaranteed
578   // to have concrete versions of our DW_TAG_inlined_subprogram nodes.
579   DD->addSubprogramNames(*CUNode, InlinedSP, *ScopeDIE);
580 
581   return ScopeDIE;
582 }
583 
584 // Construct new DW_TAG_lexical_block for this scope and attach
585 // DW_AT_low_pc/DW_AT_high_pc labels.
586 DIE *DwarfCompileUnit::constructLexicalScopeDIE(LexicalScope *Scope) {
587   if (DD->isLexicalScopeDIENull(Scope))
588     return nullptr;
589 
590   auto ScopeDIE = DIE::get(DIEValueAllocator, dwarf::DW_TAG_lexical_block);
591   if (Scope->isAbstractScope())
592     return ScopeDIE;
593 
594   attachRangesOrLowHighPC(*ScopeDIE, Scope->getRanges());
595 
596   return ScopeDIE;
597 }
598 
599 /// constructVariableDIE - Construct a DIE for the given DbgVariable.
600 DIE *DwarfCompileUnit::constructVariableDIE(DbgVariable &DV, bool Abstract) {
601   auto D = constructVariableDIEImpl(DV, Abstract);
602   DV.setDIE(*D);
603   return D;
604 }
605 
606 DIE *DwarfCompileUnit::constructLabelDIE(DbgLabel &DL,
607                                          const LexicalScope &Scope) {
608   auto LabelDie = DIE::get(DIEValueAllocator, DL.getTag());
609   insertDIE(DL.getLabel(), LabelDie);
610   DL.setDIE(*LabelDie);
611 
612   if (Scope.isAbstractScope())
613     applyLabelAttributes(DL, *LabelDie);
614 
615   return LabelDie;
616 }
617 
618 DIE *DwarfCompileUnit::constructVariableDIEImpl(const DbgVariable &DV,
619                                                 bool Abstract) {
620   // Define variable debug information entry.
621   auto VariableDie = DIE::get(DIEValueAllocator, DV.getTag());
622   insertDIE(DV.getVariable(), VariableDie);
623 
624   if (Abstract) {
625     applyVariableAttributes(DV, *VariableDie);
626     return VariableDie;
627   }
628 
629   // Add variable address.
630 
631   unsigned Offset = DV.getDebugLocListIndex();
632   if (Offset != ~0U) {
633     addLocationList(*VariableDie, dwarf::DW_AT_location, Offset);
634     auto TagOffset = DV.getDebugLocListTagOffset();
635     if (TagOffset)
636       addUInt(*VariableDie, dwarf::DW_AT_LLVM_tag_offset, dwarf::DW_FORM_data1,
637               *TagOffset);
638     return VariableDie;
639   }
640 
641   // Check if variable has a single location description.
642   if (auto *DVal = DV.getValueLoc()) {
643     if (DVal->isLocation())
644       addVariableAddress(DV, *VariableDie, DVal->getLoc());
645     else if (DVal->isInt()) {
646       auto *Expr = DV.getSingleExpression();
647       if (Expr && Expr->getNumElements()) {
648         DIELoc *Loc = new (DIEValueAllocator) DIELoc;
649         DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc);
650         // If there is an expression, emit raw unsigned bytes.
651         DwarfExpr.addFragmentOffset(Expr);
652         DwarfExpr.addUnsignedConstant(DVal->getInt());
653         DwarfExpr.addExpression(Expr);
654         addBlock(*VariableDie, dwarf::DW_AT_location, DwarfExpr.finalize());
655         if (DwarfExpr.TagOffset)
656           addUInt(*VariableDie, dwarf::DW_AT_LLVM_tag_offset,
657                   dwarf::DW_FORM_data1, *DwarfExpr.TagOffset);
658 
659       } else
660         addConstantValue(*VariableDie, DVal->getInt(), DV.getType());
661     } else if (DVal->isConstantFP()) {
662       addConstantFPValue(*VariableDie, DVal->getConstantFP());
663     } else if (DVal->isConstantInt()) {
664       addConstantValue(*VariableDie, DVal->getConstantInt(), DV.getType());
665     }
666     return VariableDie;
667   }
668 
669   // .. else use frame index.
670   if (!DV.hasFrameIndexExprs())
671     return VariableDie;
672 
673   Optional<unsigned> NVPTXAddressSpace;
674   DIELoc *Loc = new (DIEValueAllocator) DIELoc;
675   DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc);
676   for (auto &Fragment : DV.getFrameIndexExprs()) {
677     unsigned FrameReg = 0;
678     const DIExpression *Expr = Fragment.Expr;
679     const TargetFrameLowering *TFI = Asm->MF->getSubtarget().getFrameLowering();
680     int Offset = TFI->getFrameIndexReference(*Asm->MF, Fragment.FI, FrameReg);
681     DwarfExpr.addFragmentOffset(Expr);
682     SmallVector<uint64_t, 8> Ops;
683     DIExpression::appendOffset(Ops, Offset);
684     // According to
685     // https://docs.nvidia.com/cuda/archive/10.0/ptx-writers-guide-to-interoperability/index.html#cuda-specific-dwarf
686     // cuda-gdb requires DW_AT_address_class for all variables to be able to
687     // correctly interpret address space of the variable address.
688     // Decode DW_OP_constu <DWARF Address Space> DW_OP_swap DW_OP_xderef
689     // sequence for the NVPTX + gdb target.
690     unsigned LocalNVPTXAddressSpace;
691     if (Asm->TM.getTargetTriple().isNVPTX() && DD->tuneForGDB()) {
692       const DIExpression *NewExpr =
693           DIExpression::extractAddressClass(Expr, LocalNVPTXAddressSpace);
694       if (NewExpr != Expr) {
695         Expr = NewExpr;
696         NVPTXAddressSpace = LocalNVPTXAddressSpace;
697       }
698     }
699     if (Expr)
700       Ops.append(Expr->elements_begin(), Expr->elements_end());
701     DIExpressionCursor Cursor(Ops);
702     DwarfExpr.setMemoryLocationKind();
703     if (const MCSymbol *FrameSymbol = Asm->getFunctionFrameSymbol())
704       addOpAddress(*Loc, FrameSymbol);
705     else
706       DwarfExpr.addMachineRegExpression(
707           *Asm->MF->getSubtarget().getRegisterInfo(), Cursor, FrameReg);
708     DwarfExpr.addExpression(std::move(Cursor));
709   }
710   if (Asm->TM.getTargetTriple().isNVPTX() && DD->tuneForGDB()) {
711     // According to
712     // https://docs.nvidia.com/cuda/archive/10.0/ptx-writers-guide-to-interoperability/index.html#cuda-specific-dwarf
713     // cuda-gdb requires DW_AT_address_class for all variables to be able to
714     // correctly interpret address space of the variable address.
715     const unsigned NVPTX_ADDR_local_space = 6;
716     addUInt(*VariableDie, dwarf::DW_AT_address_class, dwarf::DW_FORM_data1,
717             NVPTXAddressSpace ? *NVPTXAddressSpace : NVPTX_ADDR_local_space);
718   }
719   addBlock(*VariableDie, dwarf::DW_AT_location, DwarfExpr.finalize());
720   if (DwarfExpr.TagOffset)
721     addUInt(*VariableDie, dwarf::DW_AT_LLVM_tag_offset, dwarf::DW_FORM_data1,
722             *DwarfExpr.TagOffset);
723 
724   return VariableDie;
725 }
726 
727 DIE *DwarfCompileUnit::constructVariableDIE(DbgVariable &DV,
728                                             const LexicalScope &Scope,
729                                             DIE *&ObjectPointer) {
730   auto Var = constructVariableDIE(DV, Scope.isAbstractScope());
731   if (DV.isObjectPointer())
732     ObjectPointer = Var;
733   return Var;
734 }
735 
736 /// Return all DIVariables that appear in count: expressions.
737 static SmallVector<const DIVariable *, 2> dependencies(DbgVariable *Var) {
738   SmallVector<const DIVariable *, 2> Result;
739   auto *Array = dyn_cast<DICompositeType>(Var->getType());
740   if (!Array || Array->getTag() != dwarf::DW_TAG_array_type)
741     return Result;
742   for (auto *El : Array->getElements()) {
743     if (auto *Subrange = dyn_cast<DISubrange>(El)) {
744       auto Count = Subrange->getCount();
745       if (auto *Dependency = Count.dyn_cast<DIVariable *>())
746         Result.push_back(Dependency);
747     }
748   }
749   return Result;
750 }
751 
752 /// Sort local variables so that variables appearing inside of helper
753 /// expressions come first.
754 static SmallVector<DbgVariable *, 8>
755 sortLocalVars(SmallVectorImpl<DbgVariable *> &Input) {
756   SmallVector<DbgVariable *, 8> Result;
757   SmallVector<PointerIntPair<DbgVariable *, 1>, 8> WorkList;
758   // Map back from a DIVariable to its containing DbgVariable.
759   SmallDenseMap<const DILocalVariable *, DbgVariable *> DbgVar;
760   // Set of DbgVariables in Result.
761   SmallDenseSet<DbgVariable *, 8> Visited;
762   // For cycle detection.
763   SmallDenseSet<DbgVariable *, 8> Visiting;
764 
765   // Initialize the worklist and the DIVariable lookup table.
766   for (auto Var : reverse(Input)) {
767     DbgVar.insert({Var->getVariable(), Var});
768     WorkList.push_back({Var, 0});
769   }
770 
771   // Perform a stable topological sort by doing a DFS.
772   while (!WorkList.empty()) {
773     auto Item = WorkList.back();
774     DbgVariable *Var = Item.getPointer();
775     bool visitedAllDependencies = Item.getInt();
776     WorkList.pop_back();
777 
778     // Dependency is in a different lexical scope or a global.
779     if (!Var)
780       continue;
781 
782     // Already handled.
783     if (Visited.count(Var))
784       continue;
785 
786     // Add to Result if all dependencies are visited.
787     if (visitedAllDependencies) {
788       Visited.insert(Var);
789       Result.push_back(Var);
790       continue;
791     }
792 
793     // Detect cycles.
794     auto Res = Visiting.insert(Var);
795     if (!Res.second) {
796       assert(false && "dependency cycle in local variables");
797       return Result;
798     }
799 
800     // Push dependencies and this node onto the worklist, so that this node is
801     // visited again after all of its dependencies are handled.
802     WorkList.push_back({Var, 1});
803     for (auto *Dependency : dependencies(Var)) {
804       auto Dep = dyn_cast_or_null<const DILocalVariable>(Dependency);
805       WorkList.push_back({DbgVar[Dep], 0});
806     }
807   }
808   return Result;
809 }
810 
811 DIE *DwarfCompileUnit::createScopeChildrenDIE(LexicalScope *Scope,
812                                               SmallVectorImpl<DIE *> &Children,
813                                               bool *HasNonScopeChildren) {
814   assert(Children.empty());
815   DIE *ObjectPointer = nullptr;
816 
817   // Emit function arguments (order is significant).
818   auto Vars = DU->getScopeVariables().lookup(Scope);
819   for (auto &DV : Vars.Args)
820     Children.push_back(constructVariableDIE(*DV.second, *Scope, ObjectPointer));
821 
822   // Emit local variables.
823   auto Locals = sortLocalVars(Vars.Locals);
824   for (DbgVariable *DV : Locals)
825     Children.push_back(constructVariableDIE(*DV, *Scope, ObjectPointer));
826 
827   // Skip imported directives in gmlt-like data.
828   if (!includeMinimalInlineScopes()) {
829     // There is no need to emit empty lexical block DIE.
830     for (const auto *IE : ImportedEntities[Scope->getScopeNode()])
831       Children.push_back(
832           constructImportedEntityDIE(cast<DIImportedEntity>(IE)));
833   }
834 
835   if (HasNonScopeChildren)
836     *HasNonScopeChildren = !Children.empty();
837 
838   for (DbgLabel *DL : DU->getScopeLabels().lookup(Scope))
839     Children.push_back(constructLabelDIE(*DL, *Scope));
840 
841   for (LexicalScope *LS : Scope->getChildren())
842     constructScopeDIE(LS, Children);
843 
844   return ObjectPointer;
845 }
846 
847 DIE &DwarfCompileUnit::constructSubprogramScopeDIE(const DISubprogram *Sub,
848                                                    LexicalScope *Scope) {
849   DIE &ScopeDIE = updateSubprogramScopeDIE(Sub);
850 
851   if (Scope) {
852     assert(!Scope->getInlinedAt());
853     assert(!Scope->isAbstractScope());
854     // Collect lexical scope children first.
855     // ObjectPointer might be a local (non-argument) local variable if it's a
856     // block's synthetic this pointer.
857     if (DIE *ObjectPointer = createAndAddScopeChildren(Scope, ScopeDIE))
858       addDIEEntry(ScopeDIE, dwarf::DW_AT_object_pointer, *ObjectPointer);
859   }
860 
861   // If this is a variadic function, add an unspecified parameter.
862   DITypeRefArray FnArgs = Sub->getType()->getTypeArray();
863 
864   // If we have a single element of null, it is a function that returns void.
865   // If we have more than one elements and the last one is null, it is a
866   // variadic function.
867   if (FnArgs.size() > 1 && !FnArgs[FnArgs.size() - 1] &&
868       !includeMinimalInlineScopes())
869     ScopeDIE.addChild(
870         DIE::get(DIEValueAllocator, dwarf::DW_TAG_unspecified_parameters));
871 
872   return ScopeDIE;
873 }
874 
875 DIE *DwarfCompileUnit::createAndAddScopeChildren(LexicalScope *Scope,
876                                                  DIE &ScopeDIE) {
877   // We create children when the scope DIE is not null.
878   SmallVector<DIE *, 8> Children;
879   DIE *ObjectPointer = createScopeChildrenDIE(Scope, Children);
880 
881   // Add children
882   for (auto &I : Children)
883     ScopeDIE.addChild(std::move(I));
884 
885   return ObjectPointer;
886 }
887 
888 void DwarfCompileUnit::constructAbstractSubprogramScopeDIE(
889     LexicalScope *Scope) {
890   DIE *&AbsDef = getAbstractSPDies()[Scope->getScopeNode()];
891   if (AbsDef)
892     return;
893 
894   auto *SP = cast<DISubprogram>(Scope->getScopeNode());
895 
896   DIE *ContextDIE;
897   DwarfCompileUnit *ContextCU = this;
898 
899   if (includeMinimalInlineScopes())
900     ContextDIE = &getUnitDie();
901   // Some of this is duplicated from DwarfUnit::getOrCreateSubprogramDIE, with
902   // the important distinction that the debug node is not associated with the
903   // DIE (since the debug node will be associated with the concrete DIE, if
904   // any). It could be refactored to some common utility function.
905   else if (auto *SPDecl = SP->getDeclaration()) {
906     ContextDIE = &getUnitDie();
907     getOrCreateSubprogramDIE(SPDecl);
908   } else {
909     ContextDIE = getOrCreateContextDIE(SP->getScope());
910     // The scope may be shared with a subprogram that has already been
911     // constructed in another CU, in which case we need to construct this
912     // subprogram in the same CU.
913     ContextCU = DD->lookupCU(ContextDIE->getUnitDie());
914   }
915 
916   // Passing null as the associated node because the abstract definition
917   // shouldn't be found by lookup.
918   AbsDef = &ContextCU->createAndAddDIE(dwarf::DW_TAG_subprogram, *ContextDIE, nullptr);
919   ContextCU->applySubprogramAttributesToDefinition(SP, *AbsDef);
920 
921   if (!ContextCU->includeMinimalInlineScopes())
922     ContextCU->addUInt(*AbsDef, dwarf::DW_AT_inline, None, dwarf::DW_INL_inlined);
923   if (DIE *ObjectPointer = ContextCU->createAndAddScopeChildren(Scope, *AbsDef))
924     ContextCU->addDIEEntry(*AbsDef, dwarf::DW_AT_object_pointer, *ObjectPointer);
925 }
926 
927 /// Whether to use the GNU analog for a DWARF5 tag, attribute, or location atom.
928 static bool useGNUAnalogForDwarf5Feature(DwarfDebug *DD) {
929   return DD->getDwarfVersion() == 4 && DD->tuneForGDB();
930 }
931 
932 dwarf::Tag DwarfCompileUnit::getDwarf5OrGNUTag(dwarf::Tag Tag) const {
933   if (!useGNUAnalogForDwarf5Feature(DD))
934     return Tag;
935   switch (Tag) {
936   case dwarf::DW_TAG_call_site:
937     return dwarf::DW_TAG_GNU_call_site;
938   case dwarf::DW_TAG_call_site_parameter:
939     return dwarf::DW_TAG_GNU_call_site_parameter;
940   default:
941     llvm_unreachable("DWARF5 tag with no GNU analog");
942   }
943 }
944 
945 dwarf::Attribute
946 DwarfCompileUnit::getDwarf5OrGNUAttr(dwarf::Attribute Attr) const {
947   if (!useGNUAnalogForDwarf5Feature(DD))
948     return Attr;
949   switch (Attr) {
950   case dwarf::DW_AT_call_all_calls:
951     return dwarf::DW_AT_GNU_all_call_sites;
952   case dwarf::DW_AT_call_target:
953     return dwarf::DW_AT_GNU_call_site_target;
954   case dwarf::DW_AT_call_origin:
955     return dwarf::DW_AT_abstract_origin;
956   case dwarf::DW_AT_call_return_pc:
957     return dwarf::DW_AT_low_pc;
958   case dwarf::DW_AT_call_value:
959     return dwarf::DW_AT_GNU_call_site_value;
960   case dwarf::DW_AT_call_tail_call:
961     return dwarf::DW_AT_GNU_tail_call;
962   default:
963     llvm_unreachable("DWARF5 attribute with no GNU analog");
964   }
965 }
966 
967 dwarf::LocationAtom
968 DwarfCompileUnit::getDwarf5OrGNULocationAtom(dwarf::LocationAtom Loc) const {
969   if (!useGNUAnalogForDwarf5Feature(DD))
970     return Loc;
971   switch (Loc) {
972   case dwarf::DW_OP_entry_value:
973     return dwarf::DW_OP_GNU_entry_value;
974   default:
975     llvm_unreachable("DWARF5 location atom with no GNU analog");
976   }
977 }
978 
979 DIE &DwarfCompileUnit::constructCallSiteEntryDIE(DIE &ScopeDIE,
980                                                  const DISubprogram *CalleeSP,
981                                                  bool IsTail,
982                                                  const MCSymbol *PCAddr,
983                                                  unsigned CallReg) {
984   // Insert a call site entry DIE within ScopeDIE.
985   DIE &CallSiteDIE = createAndAddDIE(getDwarf5OrGNUTag(dwarf::DW_TAG_call_site),
986                                      ScopeDIE, nullptr);
987 
988   if (CallReg) {
989     // Indirect call.
990     addAddress(CallSiteDIE, getDwarf5OrGNUAttr(dwarf::DW_AT_call_target),
991                MachineLocation(CallReg));
992   } else {
993     DIE *CalleeDIE = getDIE(CalleeSP);
994     assert(CalleeDIE && "Could not find DIE for call site entry origin");
995     addDIEEntry(CallSiteDIE, getDwarf5OrGNUAttr(dwarf::DW_AT_call_origin),
996                 *CalleeDIE);
997   }
998 
999   if (IsTail)
1000     // Attach DW_AT_call_tail_call to tail calls for standards compliance.
1001     addFlag(CallSiteDIE, getDwarf5OrGNUAttr(dwarf::DW_AT_call_tail_call));
1002 
1003   // Attach the return PC to allow the debugger to disambiguate call paths
1004   // from one function to another.
1005   //
1006   // The return PC is only really needed when the call /isn't/ a tail call, but
1007   // for some reason GDB always expects it.
1008   if (!IsTail || DD->tuneForGDB()) {
1009     assert(PCAddr && "Missing return PC information for a call");
1010     addLabelAddress(CallSiteDIE,
1011                     getDwarf5OrGNUAttr(dwarf::DW_AT_call_return_pc), PCAddr);
1012   }
1013 
1014   return CallSiteDIE;
1015 }
1016 
1017 void DwarfCompileUnit::constructCallSiteParmEntryDIEs(
1018     DIE &CallSiteDIE, SmallVector<DbgCallSiteParam, 4> &Params) {
1019   for (const auto &Param : Params) {
1020     unsigned Register = Param.getRegister();
1021     auto CallSiteDieParam =
1022         DIE::get(DIEValueAllocator,
1023                  getDwarf5OrGNUTag(dwarf::DW_TAG_call_site_parameter));
1024     insertDIE(CallSiteDieParam);
1025     addAddress(*CallSiteDieParam, dwarf::DW_AT_location,
1026                MachineLocation(Register));
1027 
1028     DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1029     DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc);
1030     DwarfExpr.setCallSiteParamValueFlag();
1031 
1032     DwarfDebug::emitDebugLocValue(*Asm, nullptr, Param.getValue(), DwarfExpr);
1033 
1034     addBlock(*CallSiteDieParam, getDwarf5OrGNUAttr(dwarf::DW_AT_call_value),
1035              DwarfExpr.finalize());
1036 
1037     CallSiteDIE.addChild(CallSiteDieParam);
1038   }
1039 }
1040 
1041 DIE *DwarfCompileUnit::constructImportedEntityDIE(
1042     const DIImportedEntity *Module) {
1043   DIE *IMDie = DIE::get(DIEValueAllocator, (dwarf::Tag)Module->getTag());
1044   insertDIE(Module, IMDie);
1045   DIE *EntityDie;
1046   auto *Entity = Module->getEntity();
1047   if (auto *NS = dyn_cast<DINamespace>(Entity))
1048     EntityDie = getOrCreateNameSpace(NS);
1049   else if (auto *M = dyn_cast<DIModule>(Entity))
1050     EntityDie = getOrCreateModule(M);
1051   else if (auto *SP = dyn_cast<DISubprogram>(Entity))
1052     EntityDie = getOrCreateSubprogramDIE(SP);
1053   else if (auto *T = dyn_cast<DIType>(Entity))
1054     EntityDie = getOrCreateTypeDIE(T);
1055   else if (auto *GV = dyn_cast<DIGlobalVariable>(Entity))
1056     EntityDie = getOrCreateGlobalVariableDIE(GV, {});
1057   else
1058     EntityDie = getDIE(Entity);
1059   assert(EntityDie);
1060   addSourceLine(*IMDie, Module->getLine(), Module->getFile());
1061   addDIEEntry(*IMDie, dwarf::DW_AT_import, *EntityDie);
1062   StringRef Name = Module->getName();
1063   if (!Name.empty())
1064     addString(*IMDie, dwarf::DW_AT_name, Name);
1065 
1066   return IMDie;
1067 }
1068 
1069 void DwarfCompileUnit::finishSubprogramDefinition(const DISubprogram *SP) {
1070   DIE *D = getDIE(SP);
1071   if (DIE *AbsSPDIE = getAbstractSPDies().lookup(SP)) {
1072     if (D)
1073       // If this subprogram has an abstract definition, reference that
1074       addDIEEntry(*D, dwarf::DW_AT_abstract_origin, *AbsSPDIE);
1075   } else {
1076     assert(D || includeMinimalInlineScopes());
1077     if (D)
1078       // And attach the attributes
1079       applySubprogramAttributesToDefinition(SP, *D);
1080   }
1081 }
1082 
1083 void DwarfCompileUnit::finishEntityDefinition(const DbgEntity *Entity) {
1084   DbgEntity *AbsEntity = getExistingAbstractEntity(Entity->getEntity());
1085 
1086   auto *Die = Entity->getDIE();
1087   /// Label may be used to generate DW_AT_low_pc, so put it outside
1088   /// if/else block.
1089   const DbgLabel *Label = nullptr;
1090   if (AbsEntity && AbsEntity->getDIE()) {
1091     addDIEEntry(*Die, dwarf::DW_AT_abstract_origin, *AbsEntity->getDIE());
1092     Label = dyn_cast<const DbgLabel>(Entity);
1093   } else {
1094     if (const DbgVariable *Var = dyn_cast<const DbgVariable>(Entity))
1095       applyVariableAttributes(*Var, *Die);
1096     else if ((Label = dyn_cast<const DbgLabel>(Entity)))
1097       applyLabelAttributes(*Label, *Die);
1098     else
1099       llvm_unreachable("DbgEntity must be DbgVariable or DbgLabel.");
1100   }
1101 
1102   if (Label)
1103     if (const auto *Sym = Label->getSymbol())
1104       addLabelAddress(*Die, dwarf::DW_AT_low_pc, Sym);
1105 }
1106 
1107 DbgEntity *DwarfCompileUnit::getExistingAbstractEntity(const DINode *Node) {
1108   auto &AbstractEntities = getAbstractEntities();
1109   auto I = AbstractEntities.find(Node);
1110   if (I != AbstractEntities.end())
1111     return I->second.get();
1112   return nullptr;
1113 }
1114 
1115 void DwarfCompileUnit::createAbstractEntity(const DINode *Node,
1116                                             LexicalScope *Scope) {
1117   assert(Scope && Scope->isAbstractScope());
1118   auto &Entity = getAbstractEntities()[Node];
1119   if (isa<const DILocalVariable>(Node)) {
1120     Entity = std::make_unique<DbgVariable>(
1121                         cast<const DILocalVariable>(Node), nullptr /* IA */);;
1122     DU->addScopeVariable(Scope, cast<DbgVariable>(Entity.get()));
1123   } else if (isa<const DILabel>(Node)) {
1124     Entity = std::make_unique<DbgLabel>(
1125                         cast<const DILabel>(Node), nullptr /* IA */);
1126     DU->addScopeLabel(Scope, cast<DbgLabel>(Entity.get()));
1127   }
1128 }
1129 
1130 void DwarfCompileUnit::emitHeader(bool UseOffsets) {
1131   // Don't bother labeling the .dwo unit, as its offset isn't used.
1132   if (!Skeleton && !DD->useSectionsAsReferences()) {
1133     LabelBegin = Asm->createTempSymbol("cu_begin");
1134     Asm->OutStreamer->EmitLabel(LabelBegin);
1135   }
1136 
1137   dwarf::UnitType UT = Skeleton ? dwarf::DW_UT_split_compile
1138                                 : DD->useSplitDwarf() ? dwarf::DW_UT_skeleton
1139                                                       : dwarf::DW_UT_compile;
1140   DwarfUnit::emitCommonHeader(UseOffsets, UT);
1141   if (DD->getDwarfVersion() >= 5 && UT != dwarf::DW_UT_compile)
1142     Asm->emitInt64(getDWOId());
1143 }
1144 
1145 bool DwarfCompileUnit::hasDwarfPubSections() const {
1146   switch (CUNode->getNameTableKind()) {
1147   case DICompileUnit::DebugNameTableKind::None:
1148     return false;
1149     // Opting in to GNU Pubnames/types overrides the default to ensure these are
1150     // generated for things like Gold's gdb_index generation.
1151   case DICompileUnit::DebugNameTableKind::GNU:
1152     return true;
1153   case DICompileUnit::DebugNameTableKind::Default:
1154     return DD->tuneForGDB() && !includeMinimalInlineScopes() &&
1155            !CUNode->isDebugDirectivesOnly() &&
1156            DD->getAccelTableKind() != AccelTableKind::Apple &&
1157            DD->getDwarfVersion() < 5;
1158   }
1159   llvm_unreachable("Unhandled DICompileUnit::DebugNameTableKind enum");
1160 }
1161 
1162 /// addGlobalName - Add a new global name to the compile unit.
1163 void DwarfCompileUnit::addGlobalName(StringRef Name, const DIE &Die,
1164                                      const DIScope *Context) {
1165   if (!hasDwarfPubSections())
1166     return;
1167   std::string FullName = getParentContextString(Context) + Name.str();
1168   GlobalNames[FullName] = &Die;
1169 }
1170 
1171 void DwarfCompileUnit::addGlobalNameForTypeUnit(StringRef Name,
1172                                                 const DIScope *Context) {
1173   if (!hasDwarfPubSections())
1174     return;
1175   std::string FullName = getParentContextString(Context) + Name.str();
1176   // Insert, allowing the entry to remain as-is if it's already present
1177   // This way the CU-level type DIE is preferred over the "can't describe this
1178   // type as a unit offset because it's not really in the CU at all, it's only
1179   // in a type unit"
1180   GlobalNames.insert(std::make_pair(std::move(FullName), &getUnitDie()));
1181 }
1182 
1183 /// Add a new global type to the unit.
1184 void DwarfCompileUnit::addGlobalType(const DIType *Ty, const DIE &Die,
1185                                      const DIScope *Context) {
1186   if (!hasDwarfPubSections())
1187     return;
1188   std::string FullName = getParentContextString(Context) + Ty->getName().str();
1189   GlobalTypes[FullName] = &Die;
1190 }
1191 
1192 void DwarfCompileUnit::addGlobalTypeUnitType(const DIType *Ty,
1193                                              const DIScope *Context) {
1194   if (!hasDwarfPubSections())
1195     return;
1196   std::string FullName = getParentContextString(Context) + Ty->getName().str();
1197   // Insert, allowing the entry to remain as-is if it's already present
1198   // This way the CU-level type DIE is preferred over the "can't describe this
1199   // type as a unit offset because it's not really in the CU at all, it's only
1200   // in a type unit"
1201   GlobalTypes.insert(std::make_pair(std::move(FullName), &getUnitDie()));
1202 }
1203 
1204 void DwarfCompileUnit::addVariableAddress(const DbgVariable &DV, DIE &Die,
1205                                           MachineLocation Location) {
1206   if (DV.hasComplexAddress())
1207     addComplexAddress(DV, Die, dwarf::DW_AT_location, Location);
1208   else
1209     addAddress(Die, dwarf::DW_AT_location, Location);
1210 }
1211 
1212 /// Add an address attribute to a die based on the location provided.
1213 void DwarfCompileUnit::addAddress(DIE &Die, dwarf::Attribute Attribute,
1214                                   const MachineLocation &Location) {
1215   DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1216   DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc);
1217   if (Location.isIndirect())
1218     DwarfExpr.setMemoryLocationKind();
1219 
1220   DIExpressionCursor Cursor({});
1221   const TargetRegisterInfo &TRI = *Asm->MF->getSubtarget().getRegisterInfo();
1222   if (!DwarfExpr.addMachineRegExpression(TRI, Cursor, Location.getReg()))
1223     return;
1224   DwarfExpr.addExpression(std::move(Cursor));
1225 
1226   // Now attach the location information to the DIE.
1227   addBlock(Die, Attribute, DwarfExpr.finalize());
1228 
1229   if (DwarfExpr.TagOffset)
1230     addUInt(Die, dwarf::DW_AT_LLVM_tag_offset, dwarf::DW_FORM_data1,
1231             *DwarfExpr.TagOffset);
1232 }
1233 
1234 /// Start with the address based on the location provided, and generate the
1235 /// DWARF information necessary to find the actual variable given the extra
1236 /// address information encoded in the DbgVariable, starting from the starting
1237 /// location.  Add the DWARF information to the die.
1238 void DwarfCompileUnit::addComplexAddress(const DbgVariable &DV, DIE &Die,
1239                                          dwarf::Attribute Attribute,
1240                                          const MachineLocation &Location) {
1241   DIELoc *Loc = new (DIEValueAllocator) DIELoc;
1242   DIEDwarfExpression DwarfExpr(*Asm, *this, *Loc);
1243   const DIExpression *DIExpr = DV.getSingleExpression();
1244   DwarfExpr.addFragmentOffset(DIExpr);
1245   if (Location.isIndirect())
1246     DwarfExpr.setMemoryLocationKind();
1247 
1248   DIExpressionCursor Cursor(DIExpr);
1249 
1250   if (DIExpr->isEntryValue()) {
1251     DwarfExpr.setEntryValueFlag();
1252     DwarfExpr.beginEntryValueExpression(Cursor);
1253   }
1254 
1255   const TargetRegisterInfo &TRI = *Asm->MF->getSubtarget().getRegisterInfo();
1256   if (!DwarfExpr.addMachineRegExpression(TRI, Cursor, Location.getReg()))
1257     return;
1258   DwarfExpr.addExpression(std::move(Cursor));
1259 
1260   // Now attach the location information to the DIE.
1261   addBlock(Die, Attribute, DwarfExpr.finalize());
1262 
1263   if (DwarfExpr.TagOffset)
1264     addUInt(Die, dwarf::DW_AT_LLVM_tag_offset, dwarf::DW_FORM_data1,
1265             *DwarfExpr.TagOffset);
1266 }
1267 
1268 /// Add a Dwarf loclistptr attribute data and value.
1269 void DwarfCompileUnit::addLocationList(DIE &Die, dwarf::Attribute Attribute,
1270                                        unsigned Index) {
1271   dwarf::Form Form = dwarf::DW_FORM_data4;
1272   if (DD->getDwarfVersion() == 4)
1273     Form =dwarf::DW_FORM_sec_offset;
1274   if (DD->getDwarfVersion() >= 5)
1275     Form =dwarf::DW_FORM_loclistx;
1276   Die.addValue(DIEValueAllocator, Attribute, Form, DIELocList(Index));
1277 }
1278 
1279 void DwarfCompileUnit::applyVariableAttributes(const DbgVariable &Var,
1280                                                DIE &VariableDie) {
1281   StringRef Name = Var.getName();
1282   if (!Name.empty())
1283     addString(VariableDie, dwarf::DW_AT_name, Name);
1284   const auto *DIVar = Var.getVariable();
1285   if (DIVar)
1286     if (uint32_t AlignInBytes = DIVar->getAlignInBytes())
1287       addUInt(VariableDie, dwarf::DW_AT_alignment, dwarf::DW_FORM_udata,
1288               AlignInBytes);
1289 
1290   addSourceLine(VariableDie, DIVar);
1291   addType(VariableDie, Var.getType());
1292   if (Var.isArtificial())
1293     addFlag(VariableDie, dwarf::DW_AT_artificial);
1294 }
1295 
1296 void DwarfCompileUnit::applyLabelAttributes(const DbgLabel &Label,
1297                                             DIE &LabelDie) {
1298   StringRef Name = Label.getName();
1299   if (!Name.empty())
1300     addString(LabelDie, dwarf::DW_AT_name, Name);
1301   const auto *DILabel = Label.getLabel();
1302   addSourceLine(LabelDie, DILabel);
1303 }
1304 
1305 /// Add a Dwarf expression attribute data and value.
1306 void DwarfCompileUnit::addExpr(DIELoc &Die, dwarf::Form Form,
1307                                const MCExpr *Expr) {
1308   Die.addValue(DIEValueAllocator, (dwarf::Attribute)0, Form, DIEExpr(Expr));
1309 }
1310 
1311 void DwarfCompileUnit::applySubprogramAttributesToDefinition(
1312     const DISubprogram *SP, DIE &SPDie) {
1313   auto *SPDecl = SP->getDeclaration();
1314   auto *Context = SPDecl ? SPDecl->getScope() : SP->getScope();
1315   applySubprogramAttributes(SP, SPDie, includeMinimalInlineScopes());
1316   addGlobalName(SP->getName(), SPDie, Context);
1317 }
1318 
1319 bool DwarfCompileUnit::isDwoUnit() const {
1320   return DD->useSplitDwarf() && Skeleton;
1321 }
1322 
1323 void DwarfCompileUnit::finishNonUnitTypeDIE(DIE& D, const DICompositeType *CTy) {
1324   constructTypeDIE(D, CTy);
1325 }
1326 
1327 bool DwarfCompileUnit::includeMinimalInlineScopes() const {
1328   return getCUNode()->getEmissionKind() == DICompileUnit::LineTablesOnly ||
1329          (DD->useSplitDwarf() && !Skeleton);
1330 }
1331 
1332 void DwarfCompileUnit::addAddrTableBase() {
1333   const TargetLoweringObjectFile &TLOF = Asm->getObjFileLowering();
1334   MCSymbol *Label = DD->getAddressPool().getLabel();
1335   addSectionLabel(getUnitDie(),
1336                   getDwarfVersion() >= 5 ? dwarf::DW_AT_addr_base
1337                                          : dwarf::DW_AT_GNU_addr_base,
1338                   Label, TLOF.getDwarfAddrSection()->getBeginSymbol());
1339 }
1340 
1341 void DwarfCompileUnit::addBaseTypeRef(DIEValueList &Die, int64_t Idx) {
1342   Die.addValue(DIEValueAllocator, (dwarf::Attribute)0, dwarf::DW_FORM_udata,
1343                new (DIEValueAllocator) DIEBaseTypeRef(this, Idx));
1344 }
1345 
1346 void DwarfCompileUnit::createBaseTypeDIEs() {
1347   // Insert the base_type DIEs directly after the CU so that their offsets will
1348   // fit in the fixed size ULEB128 used inside the location expressions.
1349   // Maintain order by iterating backwards and inserting to the front of CU
1350   // child list.
1351   for (auto &Btr : reverse(ExprRefedBaseTypes)) {
1352     DIE &Die = getUnitDie().addChildFront(
1353       DIE::get(DIEValueAllocator, dwarf::DW_TAG_base_type));
1354     SmallString<32> Str;
1355     addString(Die, dwarf::DW_AT_name,
1356               Twine(dwarf::AttributeEncodingString(Btr.Encoding) +
1357                     "_" + Twine(Btr.BitSize)).toStringRef(Str));
1358     addUInt(Die, dwarf::DW_AT_encoding, dwarf::DW_FORM_data1, Btr.Encoding);
1359     addUInt(Die, dwarf::DW_AT_byte_size, None, Btr.BitSize / 8);
1360 
1361     Btr.Die = &Die;
1362   }
1363 }
1364