forked from OSchip/llvm-project
1341 lines
43 KiB
C++
1341 lines
43 KiB
C++
//===- DWARFDie.cpp -------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/DebugInfo/DWARF/DWARFDie.h"
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#include "llvm/ADT/None.h"
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#include "llvm/ADT/Optional.h"
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#include "llvm/ADT/SmallSet.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/BinaryFormat/Dwarf.h"
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#include "llvm/DebugInfo/DWARF/DWARFAbbreviationDeclaration.h"
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#include "llvm/DebugInfo/DWARF/DWARFContext.h"
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#include "llvm/DebugInfo/DWARF/DWARFDebugLine.h"
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#include "llvm/DebugInfo/DWARF/DWARFDebugLoc.h"
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#include "llvm/DebugInfo/DWARF/DWARFExpression.h"
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#include "llvm/DebugInfo/DWARF/DWARFFormValue.h"
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#include "llvm/DebugInfo/DWARF/DWARFTypeUnit.h"
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#include "llvm/DebugInfo/DWARF/DWARFUnit.h"
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#include "llvm/Object/ObjectFile.h"
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#include "llvm/Support/DataExtractor.h"
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#include "llvm/Support/Format.h"
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#include "llvm/Support/FormatVariadic.h"
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#include "llvm/Support/MathExtras.h"
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#include "llvm/Support/ScopedPrinter.h"
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#include "llvm/Support/WithColor.h"
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#include "llvm/Support/raw_ostream.h"
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#include <cassert>
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#include <cinttypes>
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#include <cstdint>
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#include <string>
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#include <utility>
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using namespace llvm;
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using namespace dwarf;
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using namespace object;
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static void dumpApplePropertyAttribute(raw_ostream &OS, uint64_t Val) {
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OS << " (";
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do {
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uint64_t Shift = countTrailingZeros(Val);
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assert(Shift < 64 && "undefined behavior");
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uint64_t Bit = 1ULL << Shift;
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auto PropName = ApplePropertyString(Bit);
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if (!PropName.empty())
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OS << PropName;
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else
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OS << format("DW_APPLE_PROPERTY_0x%" PRIx64, Bit);
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if (!(Val ^= Bit))
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break;
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OS << ", ";
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} while (true);
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OS << ")";
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}
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static void dumpRanges(const DWARFObject &Obj, raw_ostream &OS,
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const DWARFAddressRangesVector &Ranges,
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unsigned AddressSize, unsigned Indent,
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const DIDumpOptions &DumpOpts) {
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if (!DumpOpts.ShowAddresses)
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return;
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for (const DWARFAddressRange &R : Ranges) {
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OS << '\n';
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OS.indent(Indent);
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R.dump(OS, AddressSize, DumpOpts, &Obj);
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}
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}
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static void dumpLocationList(raw_ostream &OS, const DWARFFormValue &FormValue,
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DWARFUnit *U, unsigned Indent,
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DIDumpOptions DumpOpts) {
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assert(FormValue.isFormClass(DWARFFormValue::FC_SectionOffset) &&
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"bad FORM for location list");
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DWARFContext &Ctx = U->getContext();
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const MCRegisterInfo *MRI = Ctx.getRegisterInfo();
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uint64_t Offset = *FormValue.getAsSectionOffset();
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if (FormValue.getForm() == DW_FORM_loclistx) {
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FormValue.dump(OS, DumpOpts);
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if (auto LoclistOffset = U->getLoclistOffset(Offset))
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Offset = *LoclistOffset;
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else
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return;
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}
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U->getLocationTable().dumpLocationList(&Offset, OS, U->getBaseAddress(), MRI,
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Ctx.getDWARFObj(), U, DumpOpts,
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Indent);
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}
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static void dumpLocationExpr(raw_ostream &OS, const DWARFFormValue &FormValue,
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DWARFUnit *U, unsigned Indent,
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DIDumpOptions DumpOpts) {
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assert((FormValue.isFormClass(DWARFFormValue::FC_Block) ||
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FormValue.isFormClass(DWARFFormValue::FC_Exprloc)) &&
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"bad FORM for location expression");
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DWARFContext &Ctx = U->getContext();
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const MCRegisterInfo *MRI = Ctx.getRegisterInfo();
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ArrayRef<uint8_t> Expr = *FormValue.getAsBlock();
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DataExtractor Data(StringRef((const char *)Expr.data(), Expr.size()),
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Ctx.isLittleEndian(), 0);
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DWARFExpression(Data, U->getAddressByteSize(), U->getFormParams().Format)
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.print(OS, DumpOpts, MRI, U);
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}
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static DWARFDie resolveReferencedType(DWARFDie D,
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dwarf::Attribute Attr = DW_AT_type) {
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return D.getAttributeValueAsReferencedDie(Attr).resolveTypeUnitReference();
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}
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static DWARFDie resolveReferencedType(DWARFDie D, DWARFFormValue F) {
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return D.getAttributeValueAsReferencedDie(F).resolveTypeUnitReference();
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}
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namespace {
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// FIXME: We should have pretty printers per language. Currently we print
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// everything as if it was C++ and fall back to the TAG type name.
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struct DWARFTypePrinter {
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raw_ostream &OS;
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bool Word = true;
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bool EndedWithTemplate = false;
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DWARFTypePrinter(raw_ostream &OS) : OS(OS) {}
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/// Dump the name encoded in the type tag.
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void appendTypeTagName(dwarf::Tag T) {
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StringRef TagStr = TagString(T);
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static constexpr StringRef Prefix = "DW_TAG_";
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static constexpr StringRef Suffix = "_type";
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if (!TagStr.startswith(Prefix) || !TagStr.endswith(Suffix))
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return;
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OS << TagStr.substr(Prefix.size(),
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TagStr.size() - (Prefix.size() + Suffix.size()))
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<< " ";
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}
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void appendArrayType(const DWARFDie &D) {
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for (const DWARFDie &C : D.children()) {
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if (C.getTag() != DW_TAG_subrange_type)
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continue;
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Optional<uint64_t> LB;
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Optional<uint64_t> Count;
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Optional<uint64_t> UB;
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Optional<unsigned> DefaultLB;
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if (Optional<DWARFFormValue> L = C.find(DW_AT_lower_bound))
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LB = L->getAsUnsignedConstant();
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if (Optional<DWARFFormValue> CountV = C.find(DW_AT_count))
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Count = CountV->getAsUnsignedConstant();
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if (Optional<DWARFFormValue> UpperV = C.find(DW_AT_upper_bound))
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UB = UpperV->getAsUnsignedConstant();
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if (Optional<DWARFFormValue> LV =
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D.getDwarfUnit()->getUnitDIE().find(DW_AT_language))
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if (Optional<uint64_t> LC = LV->getAsUnsignedConstant())
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if ((DefaultLB =
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LanguageLowerBound(static_cast<dwarf::SourceLanguage>(*LC))))
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if (LB && *LB == *DefaultLB)
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LB = None;
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if (!LB && !Count && !UB)
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OS << "[]";
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else if (!LB && (Count || UB) && DefaultLB)
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OS << '[' << (Count ? *Count : *UB - *DefaultLB + 1) << ']';
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else {
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OS << "[[";
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if (LB)
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OS << *LB;
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else
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OS << '?';
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OS << ", ";
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if (Count)
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if (LB)
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OS << *LB + *Count;
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else
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OS << "? + " << *Count;
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else if (UB)
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OS << *UB + 1;
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else
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OS << '?';
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OS << ")]";
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}
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}
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EndedWithTemplate = false;
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}
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DWARFDie skipQualifiers(DWARFDie D) {
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while (D && (D.getTag() == DW_TAG_const_type ||
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D.getTag() == DW_TAG_volatile_type))
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D = resolveReferencedType(D);
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return D;
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}
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bool needsParens(DWARFDie D) {
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D = skipQualifiers(D);
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return D && (D.getTag() == DW_TAG_subroutine_type || D.getTag() == DW_TAG_array_type);
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}
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void appendPointerLikeTypeBefore(DWARFDie D, DWARFDie Inner, StringRef Ptr) {
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appendQualifiedNameBefore(Inner);
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if (Word)
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OS << ' ';
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if (needsParens(Inner))
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OS << '(';
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OS << Ptr;
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Word = false;
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EndedWithTemplate = false;
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}
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DWARFDie
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appendUnqualifiedNameBefore(DWARFDie D,
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std::string *OriginalFullName = nullptr) {
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Word = true;
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if (!D) {
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OS << "void";
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return DWARFDie();
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}
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DWARFDie InnerDIE;
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auto Inner = [&] { return InnerDIE = resolveReferencedType(D); };
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const dwarf::Tag T = D.getTag();
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switch (T) {
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case DW_TAG_pointer_type: {
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appendPointerLikeTypeBefore(D, Inner(), "*");
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break;
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}
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case DW_TAG_subroutine_type: {
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appendQualifiedNameBefore(Inner());
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if (Word) {
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OS << ' ';
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}
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Word = false;
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break;
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}
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case DW_TAG_array_type: {
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appendQualifiedNameBefore(Inner());
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break;
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}
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case DW_TAG_reference_type:
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appendPointerLikeTypeBefore(D, Inner(), "&");
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break;
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case DW_TAG_rvalue_reference_type:
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appendPointerLikeTypeBefore(D, Inner(), "&&");
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break;
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case DW_TAG_ptr_to_member_type: {
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appendQualifiedNameBefore(Inner());
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if (needsParens(InnerDIE))
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OS << '(';
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else if (Word)
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OS << ' ';
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if (DWARFDie Cont = resolveReferencedType(D, DW_AT_containing_type)) {
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appendQualifiedName(Cont);
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EndedWithTemplate = false;
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OS << "::";
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}
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OS << "*";
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Word = false;
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break;
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}
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case DW_TAG_const_type:
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case DW_TAG_volatile_type:
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appendConstVolatileQualifierBefore(D);
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break;
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case DW_TAG_namespace: {
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if (const char *Name = dwarf::toString(D.find(DW_AT_name), nullptr))
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OS << Name;
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else
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OS << "(anonymous namespace)";
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break;
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}
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case DW_TAG_unspecified_type: {
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StringRef TypeName = D.getShortName();
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if (TypeName == "decltype(nullptr)")
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TypeName = "std::nullptr_t";
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Word = true;
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OS << TypeName;
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EndedWithTemplate = false;
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break;
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}
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/*
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case DW_TAG_structure_type:
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case DW_TAG_class_type:
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case DW_TAG_enumeration_type:
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case DW_TAG_base_type:
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*/
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default: {
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const char *NamePtr = dwarf::toString(D.find(DW_AT_name), nullptr);
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if (!NamePtr) {
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appendTypeTagName(D.getTag());
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return DWARFDie();
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}
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Word = true;
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StringRef Name = NamePtr;
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static constexpr StringRef MangledPrefix = "_STN";
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if (Name.startswith(MangledPrefix)) {
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Name = Name.drop_front(MangledPrefix.size());
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auto Separator = Name.find('|');
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assert(Separator != StringRef::npos);
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StringRef BaseName = Name.substr(0, Separator);
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StringRef TemplateArgs = Name.substr(Separator + 1);
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if (OriginalFullName)
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*OriginalFullName = (BaseName + TemplateArgs).str();
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Name = BaseName;
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} else
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EndedWithTemplate = Name.endswith(">");
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OS << Name;
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// This check would be insufficient for operator overloads like
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// "operator>>" - but for now Clang doesn't try to simplify them, so this
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// is OK. Add more nuanced operator overload handling here if/when needed.
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if (Name.endswith(">"))
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break;
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if (!appendTemplateParameters(D))
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break;
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if (EndedWithTemplate)
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OS << ' ';
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OS << '>';
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EndedWithTemplate = true;
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Word = true;
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break;
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}
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}
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return InnerDIE;
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}
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void appendUnqualifiedNameAfter(DWARFDie D, DWARFDie Inner,
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bool SkipFirstParamIfArtificial = false) {
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if (!D)
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return;
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switch (D.getTag()) {
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case DW_TAG_subroutine_type: {
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appendSubroutineNameAfter(D, Inner, SkipFirstParamIfArtificial, false,
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false);
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break;
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}
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case DW_TAG_array_type: {
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appendArrayType(D);
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break;
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}
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case DW_TAG_const_type:
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case DW_TAG_volatile_type:
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appendConstVolatileQualifierAfter(D);
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break;
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case DW_TAG_ptr_to_member_type:
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case DW_TAG_reference_type:
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case DW_TAG_rvalue_reference_type:
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case DW_TAG_pointer_type: {
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if (needsParens(Inner))
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OS << ')';
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appendUnqualifiedNameAfter(Inner, resolveReferencedType(Inner),
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/*SkipFirstParamIfArtificial=*/D.getTag() ==
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DW_TAG_ptr_to_member_type);
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break;
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}
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/*
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case DW_TAG_structure_type:
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case DW_TAG_class_type:
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case DW_TAG_enumeration_type:
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case DW_TAG_base_type:
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case DW_TAG_namespace:
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*/
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default:
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break;
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}
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}
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void appendQualifiedName(DWARFDie D) {
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if (D)
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appendScopes(D.getParent());
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appendUnqualifiedName(D);
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}
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DWARFDie appendQualifiedNameBefore(DWARFDie D) {
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if (D)
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appendScopes(D.getParent());
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return appendUnqualifiedNameBefore(D);
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}
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bool appendTemplateParameters(DWARFDie D, bool *FirstParameter = nullptr) {
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bool FirstParameterValue = true;
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bool IsTemplate = false;
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if (!FirstParameter)
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FirstParameter = &FirstParameterValue;
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for (const DWARFDie &C : D) {
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auto Sep = [&] {
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if (*FirstParameter)
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OS << '<';
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else
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OS << ", ";
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IsTemplate = true;
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EndedWithTemplate = false;
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*FirstParameter = false;
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};
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if (C.getTag() == dwarf::DW_TAG_GNU_template_parameter_pack) {
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IsTemplate = true;
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appendTemplateParameters(C, FirstParameter);
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}
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if (C.getTag() == dwarf::DW_TAG_template_value_parameter) {
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DWARFDie T = resolveReferencedType(C);
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Sep();
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if (T.getTag() == DW_TAG_enumeration_type) {
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auto V = C.find(DW_AT_const_value);
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bool FoundEnumerator = false;
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for (const DWARFDie &Enumerator : T) {
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auto EV = Enumerator.find(DW_AT_const_value);
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if (V && EV &&
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V->getAsSignedConstant() == EV->getAsSignedConstant()) {
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if (T.find(DW_AT_enum_class)) {
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appendQualifiedName(T);
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OS << "::";
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} else
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appendScopes(T.getParent());
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OS << Enumerator.getShortName();
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FoundEnumerator = true;
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break;
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}
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}
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if (FoundEnumerator)
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continue;
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OS << '(';
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appendQualifiedName(T);
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OS << ')';
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OS << to_string(*V->getAsSignedConstant());
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continue;
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}
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// /Maybe/ we could do pointer type parameters, looking for the
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// symbol in the ELF symbol table to get back to the variable...
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// but probably not worth it.
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if (T.getTag() == DW_TAG_pointer_type)
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continue;
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const char *RawName = dwarf::toString(T.find(DW_AT_name), nullptr);
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assert(RawName);
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StringRef Name = RawName;
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auto V = C.find(DW_AT_const_value);
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bool IsQualifiedChar = false;
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if (Name == "bool") {
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OS << (*V->getAsUnsignedConstant() ? "true" : "false");
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} else if (Name == "short") {
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OS << "(short)";
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OS << to_string(*V->getAsSignedConstant());
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} else if (Name == "unsigned short") {
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OS << "(unsigned short)";
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OS << to_string(*V->getAsSignedConstant());
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} else if (Name == "int")
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OS << to_string(*V->getAsSignedConstant());
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else if (Name == "long") {
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OS << to_string(*V->getAsSignedConstant());
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OS << "L";
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} else if (Name == "long long") {
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OS << to_string(*V->getAsSignedConstant());
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OS << "LL";
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} else if (Name == "unsigned int") {
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OS << to_string(*V->getAsUnsignedConstant());
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OS << "U";
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} else if (Name == "unsigned long") {
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OS << to_string(*V->getAsUnsignedConstant());
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OS << "UL";
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} else if (Name == "unsigned long long") {
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OS << to_string(*V->getAsUnsignedConstant());
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OS << "ULL";
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} else if (Name == "char" ||
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(IsQualifiedChar =
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(Name == "unsigned char" || Name == "signed char"))) {
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// FIXME: check T's DW_AT_type to see if it's signed or not (since
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// char signedness is implementation defined).
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auto Val = *V->getAsSignedConstant();
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// Copied/hacked up from Clang's CharacterLiteral::print - incomplete
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// (doesn't actually support different character types/widths, sign
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// handling's not done, and doesn't correctly test if a character is
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// printable or needs to use a numeric escape sequence instead)
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if (IsQualifiedChar) {
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OS << '(';
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OS << Name;
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OS << ')';
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}
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switch (Val) {
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case '\\':
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OS << "'\\\\'";
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break;
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case '\'':
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OS << "'\\''";
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break;
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case '\a':
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// TODO: K&R: the meaning of '\\a' is different in traditional C
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OS << "'\\a'";
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break;
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case '\b':
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OS << "'\\b'";
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break;
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case '\f':
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OS << "'\\f'";
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break;
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case '\n':
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OS << "'\\n'";
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break;
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case '\r':
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OS << "'\\r'";
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break;
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case '\t':
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OS << "'\\t'";
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break;
|
|
case '\v':
|
|
OS << "'\\v'";
|
|
break;
|
|
default:
|
|
if ((Val & ~0xFFu) == ~0xFFu)
|
|
Val &= 0xFFu;
|
|
if (Val < 127 && Val >= 32) {
|
|
OS << "'";
|
|
OS << (char)Val;
|
|
OS << "'";
|
|
} else if (Val < 256)
|
|
OS << to_string(llvm::format("'\\x%02x'", Val));
|
|
else if (Val <= 0xFFFF)
|
|
OS << to_string(llvm::format("'\\u%04x'", Val));
|
|
else
|
|
OS << to_string(llvm::format("'\\U%08x'", Val));
|
|
}
|
|
}
|
|
continue;
|
|
}
|
|
if (C.getTag() == dwarf::DW_TAG_GNU_template_template_param) {
|
|
const char *RawName =
|
|
dwarf::toString(C.find(DW_AT_GNU_template_name), nullptr);
|
|
assert(RawName);
|
|
StringRef Name = RawName;
|
|
Sep();
|
|
OS << Name;
|
|
continue;
|
|
}
|
|
if (C.getTag() != dwarf::DW_TAG_template_type_parameter)
|
|
continue;
|
|
auto TypeAttr = C.find(DW_AT_type);
|
|
Sep();
|
|
appendQualifiedName(TypeAttr ? resolveReferencedType(C, *TypeAttr)
|
|
: DWARFDie());
|
|
}
|
|
if (IsTemplate && *FirstParameter && FirstParameter == &FirstParameterValue) {
|
|
OS << '<';
|
|
EndedWithTemplate = false;
|
|
}
|
|
return IsTemplate;
|
|
}
|
|
void decomposeConstVolatile(DWARFDie &N, DWARFDie &T, DWARFDie &C,
|
|
DWARFDie &V) {
|
|
(N.getTag() == DW_TAG_const_type ? C : V) = N;
|
|
T = resolveReferencedType(N);
|
|
if (T) {
|
|
auto Tag = T.getTag();
|
|
if (Tag == DW_TAG_const_type) {
|
|
C = T;
|
|
T = resolveReferencedType(T);
|
|
} else if (Tag == DW_TAG_volatile_type) {
|
|
V = T;
|
|
T = resolveReferencedType(T);
|
|
}
|
|
}
|
|
}
|
|
void appendConstVolatileQualifierAfter(DWARFDie N) {
|
|
DWARFDie C;
|
|
DWARFDie V;
|
|
DWARFDie T;
|
|
decomposeConstVolatile(N, T, C, V);
|
|
if (T && T.getTag() == DW_TAG_subroutine_type)
|
|
appendSubroutineNameAfter(T, resolveReferencedType(T), false, C.isValid(),
|
|
V.isValid());
|
|
else
|
|
appendUnqualifiedNameAfter(T, resolveReferencedType(T));
|
|
}
|
|
void appendConstVolatileQualifierBefore(DWARFDie N) {
|
|
DWARFDie C;
|
|
DWARFDie V;
|
|
DWARFDie T;
|
|
decomposeConstVolatile(N, T, C, V);
|
|
bool Subroutine = T && T.getTag() == DW_TAG_subroutine_type;
|
|
DWARFDie A = T;
|
|
while (A && A.getTag() == DW_TAG_array_type)
|
|
A = resolveReferencedType(A);
|
|
bool Leading =
|
|
(!A || (A.getTag() != DW_TAG_pointer_type &&
|
|
A.getTag() != llvm::dwarf::DW_TAG_ptr_to_member_type)) &&
|
|
!Subroutine;
|
|
if (Leading) {
|
|
if (C)
|
|
OS << "const ";
|
|
if (V)
|
|
OS << "volatile ";
|
|
}
|
|
appendQualifiedNameBefore(T);
|
|
if (!Leading && !Subroutine) {
|
|
Word = true;
|
|
if (C)
|
|
OS << "const";
|
|
if (V) {
|
|
if (C)
|
|
OS << ' ';
|
|
OS << "volatile";
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Recursively append the DIE type name when applicable.
|
|
void appendUnqualifiedName(DWARFDie D,
|
|
std::string *OriginalFullName = nullptr) {
|
|
// FIXME: We should have pretty printers per language. Currently we print
|
|
// everything as if it was C++ and fall back to the TAG type name.
|
|
DWARFDie Inner = appendUnqualifiedNameBefore(D, OriginalFullName);
|
|
appendUnqualifiedNameAfter(D, Inner);
|
|
}
|
|
|
|
void appendSubroutineNameAfter(DWARFDie D, DWARFDie Inner,
|
|
bool SkipFirstParamIfArtificial, bool Const,
|
|
bool Volatile) {
|
|
DWARFDie FirstParamIfArtificial;
|
|
OS << '(';
|
|
EndedWithTemplate = false;
|
|
bool First = true;
|
|
bool RealFirst = true;
|
|
for (DWARFDie P : D) {
|
|
if (P.getTag() != DW_TAG_formal_parameter &&
|
|
P.getTag() != DW_TAG_unspecified_parameters)
|
|
return;
|
|
DWARFDie T = resolveReferencedType(P);
|
|
if (SkipFirstParamIfArtificial && RealFirst && P.find(DW_AT_artificial)) {
|
|
FirstParamIfArtificial = T;
|
|
RealFirst = false;
|
|
continue;
|
|
}
|
|
if (!First) {
|
|
OS << ", ";
|
|
}
|
|
First = false;
|
|
if (P.getTag() == DW_TAG_unspecified_parameters)
|
|
OS << "...";
|
|
else
|
|
appendQualifiedName(T);
|
|
}
|
|
EndedWithTemplate = false;
|
|
OS << ')';
|
|
if (FirstParamIfArtificial) {
|
|
if (DWARFDie P = FirstParamIfArtificial) {
|
|
if (P.getTag() == DW_TAG_pointer_type) {
|
|
auto CVStep = [&](DWARFDie CV) {
|
|
if (DWARFDie U = resolveReferencedType(CV)) {
|
|
Const |= U.getTag() == DW_TAG_const_type;
|
|
Volatile |= U.getTag() == DW_TAG_volatile_type;
|
|
return U;
|
|
}
|
|
return DWARFDie();
|
|
};
|
|
if (DWARFDie CV = CVStep(P)) {
|
|
CVStep(CV);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if (auto CC = D.find(DW_AT_calling_convention)) {
|
|
switch (*CC->getAsUnsignedConstant()) {
|
|
case CallingConvention::DW_CC_BORLAND_stdcall:
|
|
OS << " __attribute__((stdcall))";
|
|
break;
|
|
case CallingConvention::DW_CC_BORLAND_msfastcall:
|
|
OS << " __attribute__((fastcall))";
|
|
break;
|
|
case CallingConvention::DW_CC_BORLAND_thiscall:
|
|
OS << " __attribute__((thiscall))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_vectorcall:
|
|
OS << " __attribute__((vectorcall))";
|
|
break;
|
|
case CallingConvention::DW_CC_BORLAND_pascal:
|
|
OS << " __attribute__((pascal))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_Win64:
|
|
OS << " __attribute__((ms_abi))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_X86_64SysV:
|
|
OS << " __attribute__((sysv_abi))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_AAPCS:
|
|
// AArch64VectorCall missing?
|
|
OS << " __attribute__((pcs(\"aapcs\")))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_AAPCS_VFP:
|
|
OS << " __attribute__((pcs(\"aapcs-vfp\")))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_IntelOclBicc:
|
|
OS << " __attribute__((intel_ocl_bicc))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_SpirFunction:
|
|
case CallingConvention::DW_CC_LLVM_OpenCLKernel:
|
|
// These aren't available as attributes, but maybe we should still
|
|
// render them somehow? (Clang doesn't render them, but that's an issue
|
|
// for template names too - since then the DWARF names of templates
|
|
// instantiated with function types with these calling conventions won't
|
|
// have distinct names - so we'd need to fix that too)
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_Swift:
|
|
// SwiftAsync missing
|
|
OS << " __attribute__((swiftcall))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_PreserveMost:
|
|
OS << " __attribute__((preserve_most))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_PreserveAll:
|
|
OS << " __attribute__((preserve_all))";
|
|
break;
|
|
case CallingConvention::DW_CC_LLVM_X86RegCall:
|
|
OS << " __attribute__((regcall))";
|
|
break;
|
|
}
|
|
}
|
|
|
|
if (Const)
|
|
OS << " const";
|
|
if (Volatile)
|
|
OS << " volatile";
|
|
if (D.find(DW_AT_reference))
|
|
OS << " &";
|
|
if (D.find(DW_AT_rvalue_reference))
|
|
OS << " &&";
|
|
|
|
appendUnqualifiedNameAfter(Inner, resolveReferencedType(Inner));
|
|
}
|
|
void appendScopes(DWARFDie D) {
|
|
if (D.getTag() == DW_TAG_compile_unit)
|
|
return;
|
|
if (D.getTag() == DW_TAG_type_unit)
|
|
return;
|
|
if (D.getTag() == DW_TAG_skeleton_unit)
|
|
return;
|
|
if (D.getTag() == DW_TAG_subprogram)
|
|
return;
|
|
if (D.getTag() == DW_TAG_lexical_block)
|
|
return;
|
|
D = D.resolveTypeUnitReference();
|
|
if (DWARFDie P = D.getParent())
|
|
appendScopes(P);
|
|
appendUnqualifiedName(D);
|
|
OS << "::";
|
|
}
|
|
};
|
|
} // anonymous namespace
|
|
|
|
static void dumpAttribute(raw_ostream &OS, const DWARFDie &Die,
|
|
const DWARFAttribute &AttrValue, unsigned Indent,
|
|
DIDumpOptions DumpOpts) {
|
|
if (!Die.isValid())
|
|
return;
|
|
const char BaseIndent[] = " ";
|
|
OS << BaseIndent;
|
|
OS.indent(Indent + 2);
|
|
dwarf::Attribute Attr = AttrValue.Attr;
|
|
WithColor(OS, HighlightColor::Attribute) << formatv("{0}", Attr);
|
|
|
|
dwarf::Form Form = AttrValue.Value.getForm();
|
|
if (DumpOpts.Verbose || DumpOpts.ShowForm)
|
|
OS << formatv(" [{0}]", Form);
|
|
|
|
DWARFUnit *U = Die.getDwarfUnit();
|
|
const DWARFFormValue &FormValue = AttrValue.Value;
|
|
|
|
OS << "\t(";
|
|
|
|
StringRef Name;
|
|
std::string File;
|
|
auto Color = HighlightColor::Enumerator;
|
|
if (Attr == DW_AT_decl_file || Attr == DW_AT_call_file) {
|
|
Color = HighlightColor::String;
|
|
if (const auto *LT = U->getContext().getLineTableForUnit(U))
|
|
if (LT->getFileNameByIndex(
|
|
FormValue.getAsUnsignedConstant().getValue(),
|
|
U->getCompilationDir(),
|
|
DILineInfoSpecifier::FileLineInfoKind::AbsoluteFilePath, File)) {
|
|
File = '"' + File + '"';
|
|
Name = File;
|
|
}
|
|
} else if (Optional<uint64_t> Val = FormValue.getAsUnsignedConstant())
|
|
Name = AttributeValueString(Attr, *Val);
|
|
|
|
if (!Name.empty())
|
|
WithColor(OS, Color) << Name;
|
|
else if (Attr == DW_AT_decl_line || Attr == DW_AT_call_line)
|
|
OS << *FormValue.getAsUnsignedConstant();
|
|
else if (Attr == DW_AT_low_pc &&
|
|
(FormValue.getAsAddress() ==
|
|
dwarf::computeTombstoneAddress(U->getAddressByteSize()))) {
|
|
if (DumpOpts.Verbose) {
|
|
FormValue.dump(OS, DumpOpts);
|
|
OS << " (";
|
|
}
|
|
OS << "dead code";
|
|
if (DumpOpts.Verbose)
|
|
OS << ')';
|
|
} else if (Attr == DW_AT_high_pc && !DumpOpts.ShowForm && !DumpOpts.Verbose &&
|
|
FormValue.getAsUnsignedConstant()) {
|
|
if (DumpOpts.ShowAddresses) {
|
|
// Print the actual address rather than the offset.
|
|
uint64_t LowPC, HighPC, Index;
|
|
if (Die.getLowAndHighPC(LowPC, HighPC, Index))
|
|
DWARFFormValue::dumpAddress(OS, U->getAddressByteSize(), HighPC);
|
|
else
|
|
FormValue.dump(OS, DumpOpts);
|
|
}
|
|
} else if (DWARFAttribute::mayHaveLocationList(Attr) &&
|
|
FormValue.isFormClass(DWARFFormValue::FC_SectionOffset))
|
|
dumpLocationList(OS, FormValue, U, sizeof(BaseIndent) + Indent + 4,
|
|
DumpOpts);
|
|
else if (FormValue.isFormClass(DWARFFormValue::FC_Exprloc) ||
|
|
(DWARFAttribute::mayHaveLocationExpr(Attr) &&
|
|
FormValue.isFormClass(DWARFFormValue::FC_Block)))
|
|
dumpLocationExpr(OS, FormValue, U, sizeof(BaseIndent) + Indent + 4,
|
|
DumpOpts);
|
|
else
|
|
FormValue.dump(OS, DumpOpts);
|
|
|
|
std::string Space = DumpOpts.ShowAddresses ? " " : "";
|
|
|
|
// We have dumped the attribute raw value. For some attributes
|
|
// having both the raw value and the pretty-printed value is
|
|
// interesting. These attributes are handled below.
|
|
if (Attr == DW_AT_specification || Attr == DW_AT_abstract_origin) {
|
|
if (const char *Name =
|
|
Die.getAttributeValueAsReferencedDie(FormValue).getName(
|
|
DINameKind::LinkageName))
|
|
OS << Space << "\"" << Name << '\"';
|
|
} else if (Attr == DW_AT_type) {
|
|
DWARFDie D = resolveReferencedType(Die, FormValue);
|
|
if (D && !D.isNULL()) {
|
|
OS << Space << "\"";
|
|
dumpTypeQualifiedName(D, OS);
|
|
OS << '"';
|
|
}
|
|
} else if (Attr == DW_AT_APPLE_property_attribute) {
|
|
if (Optional<uint64_t> OptVal = FormValue.getAsUnsignedConstant())
|
|
dumpApplePropertyAttribute(OS, *OptVal);
|
|
} else if (Attr == DW_AT_ranges) {
|
|
const DWARFObject &Obj = Die.getDwarfUnit()->getContext().getDWARFObj();
|
|
// For DW_FORM_rnglistx we need to dump the offset separately, since
|
|
// we have only dumped the index so far.
|
|
if (FormValue.getForm() == DW_FORM_rnglistx)
|
|
if (auto RangeListOffset =
|
|
U->getRnglistOffset(*FormValue.getAsSectionOffset())) {
|
|
DWARFFormValue FV = DWARFFormValue::createFromUValue(
|
|
dwarf::DW_FORM_sec_offset, *RangeListOffset);
|
|
FV.dump(OS, DumpOpts);
|
|
}
|
|
if (auto RangesOrError = Die.getAddressRanges())
|
|
dumpRanges(Obj, OS, RangesOrError.get(), U->getAddressByteSize(),
|
|
sizeof(BaseIndent) + Indent + 4, DumpOpts);
|
|
else
|
|
DumpOpts.RecoverableErrorHandler(createStringError(
|
|
errc::invalid_argument, "decoding address ranges: %s",
|
|
toString(RangesOrError.takeError()).c_str()));
|
|
}
|
|
|
|
OS << ")\n";
|
|
}
|
|
|
|
void DWARFDie::getFullName(raw_string_ostream &OS,
|
|
std::string *OriginalFullName) const {
|
|
const char *NamePtr = getShortName();
|
|
if (!NamePtr)
|
|
return;
|
|
if (getTag() == DW_TAG_GNU_template_parameter_pack)
|
|
return;
|
|
dumpTypeUnqualifiedName(*this, OS, OriginalFullName);
|
|
}
|
|
|
|
bool DWARFDie::isSubprogramDIE() const { return getTag() == DW_TAG_subprogram; }
|
|
|
|
bool DWARFDie::isSubroutineDIE() const {
|
|
auto Tag = getTag();
|
|
return Tag == DW_TAG_subprogram || Tag == DW_TAG_inlined_subroutine;
|
|
}
|
|
|
|
Optional<DWARFFormValue> DWARFDie::find(dwarf::Attribute Attr) const {
|
|
if (!isValid())
|
|
return None;
|
|
auto AbbrevDecl = getAbbreviationDeclarationPtr();
|
|
if (AbbrevDecl)
|
|
return AbbrevDecl->getAttributeValue(getOffset(), Attr, *U);
|
|
return None;
|
|
}
|
|
|
|
Optional<DWARFFormValue>
|
|
DWARFDie::find(ArrayRef<dwarf::Attribute> Attrs) const {
|
|
if (!isValid())
|
|
return None;
|
|
auto AbbrevDecl = getAbbreviationDeclarationPtr();
|
|
if (AbbrevDecl) {
|
|
for (auto Attr : Attrs) {
|
|
if (auto Value = AbbrevDecl->getAttributeValue(getOffset(), Attr, *U))
|
|
return Value;
|
|
}
|
|
}
|
|
return None;
|
|
}
|
|
|
|
Optional<DWARFFormValue>
|
|
DWARFDie::findRecursively(ArrayRef<dwarf::Attribute> Attrs) const {
|
|
SmallVector<DWARFDie, 3> Worklist;
|
|
Worklist.push_back(*this);
|
|
|
|
// Keep track if DIEs already seen to prevent infinite recursion.
|
|
// Empirically we rarely see a depth of more than 3 when dealing with valid
|
|
// DWARF. This corresponds to following the DW_AT_abstract_origin and
|
|
// DW_AT_specification just once.
|
|
SmallSet<DWARFDie, 3> Seen;
|
|
Seen.insert(*this);
|
|
|
|
while (!Worklist.empty()) {
|
|
DWARFDie Die = Worklist.pop_back_val();
|
|
|
|
if (!Die.isValid())
|
|
continue;
|
|
|
|
if (auto Value = Die.find(Attrs))
|
|
return Value;
|
|
|
|
if (auto D = Die.getAttributeValueAsReferencedDie(DW_AT_abstract_origin))
|
|
if (Seen.insert(D).second)
|
|
Worklist.push_back(D);
|
|
|
|
if (auto D = Die.getAttributeValueAsReferencedDie(DW_AT_specification))
|
|
if (Seen.insert(D).second)
|
|
Worklist.push_back(D);
|
|
}
|
|
|
|
return None;
|
|
}
|
|
|
|
DWARFDie
|
|
DWARFDie::getAttributeValueAsReferencedDie(dwarf::Attribute Attr) const {
|
|
if (Optional<DWARFFormValue> F = find(Attr))
|
|
return getAttributeValueAsReferencedDie(*F);
|
|
return DWARFDie();
|
|
}
|
|
|
|
DWARFDie
|
|
DWARFDie::getAttributeValueAsReferencedDie(const DWARFFormValue &V) const {
|
|
DWARFDie Result;
|
|
if (auto SpecRef = V.getAsRelativeReference()) {
|
|
if (SpecRef->Unit)
|
|
Result = SpecRef->Unit->getDIEForOffset(SpecRef->Unit->getOffset() +
|
|
SpecRef->Offset);
|
|
else if (auto SpecUnit =
|
|
U->getUnitVector().getUnitForOffset(SpecRef->Offset))
|
|
Result = SpecUnit->getDIEForOffset(SpecRef->Offset);
|
|
}
|
|
return Result;
|
|
}
|
|
|
|
DWARFDie DWARFDie::resolveTypeUnitReference() const {
|
|
if (auto Attr = find(DW_AT_signature)) {
|
|
if (Optional<uint64_t> Sig = Attr->getAsReferenceUVal()) {
|
|
if (DWARFTypeUnit *TU = U->getContext().getTypeUnitForHash(
|
|
U->getVersion(), *Sig, U->isDWOUnit()))
|
|
return TU->getDIEForOffset(TU->getTypeOffset() + TU->getOffset());
|
|
}
|
|
}
|
|
return *this;
|
|
}
|
|
|
|
Optional<uint64_t> DWARFDie::getRangesBaseAttribute() const {
|
|
return toSectionOffset(find({DW_AT_rnglists_base, DW_AT_GNU_ranges_base}));
|
|
}
|
|
|
|
Optional<uint64_t> DWARFDie::getLocBaseAttribute() const {
|
|
return toSectionOffset(find(DW_AT_loclists_base));
|
|
}
|
|
|
|
Optional<uint64_t> DWARFDie::getHighPC(uint64_t LowPC) const {
|
|
uint64_t Tombstone = dwarf::computeTombstoneAddress(U->getAddressByteSize());
|
|
if (LowPC == Tombstone)
|
|
return None;
|
|
if (auto FormValue = find(DW_AT_high_pc)) {
|
|
if (auto Address = FormValue->getAsAddress()) {
|
|
// High PC is an address.
|
|
return Address;
|
|
}
|
|
if (auto Offset = FormValue->getAsUnsignedConstant()) {
|
|
// High PC is an offset from LowPC.
|
|
return LowPC + *Offset;
|
|
}
|
|
}
|
|
return None;
|
|
}
|
|
|
|
bool DWARFDie::getLowAndHighPC(uint64_t &LowPC, uint64_t &HighPC,
|
|
uint64_t &SectionIndex) const {
|
|
auto F = find(DW_AT_low_pc);
|
|
auto LowPcAddr = toSectionedAddress(F);
|
|
if (!LowPcAddr)
|
|
return false;
|
|
if (auto HighPcAddr = getHighPC(LowPcAddr->Address)) {
|
|
LowPC = LowPcAddr->Address;
|
|
HighPC = *HighPcAddr;
|
|
SectionIndex = LowPcAddr->SectionIndex;
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
Expected<DWARFAddressRangesVector> DWARFDie::getAddressRanges() const {
|
|
if (isNULL())
|
|
return DWARFAddressRangesVector();
|
|
// Single range specified by low/high PC.
|
|
uint64_t LowPC, HighPC, Index;
|
|
if (getLowAndHighPC(LowPC, HighPC, Index))
|
|
return DWARFAddressRangesVector{{LowPC, HighPC, Index}};
|
|
|
|
Optional<DWARFFormValue> Value = find(DW_AT_ranges);
|
|
if (Value) {
|
|
if (Value->getForm() == DW_FORM_rnglistx)
|
|
return U->findRnglistFromIndex(*Value->getAsSectionOffset());
|
|
return U->findRnglistFromOffset(*Value->getAsSectionOffset());
|
|
}
|
|
return DWARFAddressRangesVector();
|
|
}
|
|
|
|
bool DWARFDie::addressRangeContainsAddress(const uint64_t Address) const {
|
|
auto RangesOrError = getAddressRanges();
|
|
if (!RangesOrError) {
|
|
llvm::consumeError(RangesOrError.takeError());
|
|
return false;
|
|
}
|
|
|
|
for (const auto &R : RangesOrError.get())
|
|
if (R.LowPC <= Address && Address < R.HighPC)
|
|
return true;
|
|
return false;
|
|
}
|
|
|
|
Expected<DWARFLocationExpressionsVector>
|
|
DWARFDie::getLocations(dwarf::Attribute Attr) const {
|
|
Optional<DWARFFormValue> Location = find(Attr);
|
|
if (!Location)
|
|
return createStringError(inconvertibleErrorCode(), "No %s",
|
|
dwarf::AttributeString(Attr).data());
|
|
|
|
if (Optional<uint64_t> Off = Location->getAsSectionOffset()) {
|
|
uint64_t Offset = *Off;
|
|
|
|
if (Location->getForm() == DW_FORM_loclistx) {
|
|
if (auto LoclistOffset = U->getLoclistOffset(Offset))
|
|
Offset = *LoclistOffset;
|
|
else
|
|
return createStringError(inconvertibleErrorCode(),
|
|
"Loclist table not found");
|
|
}
|
|
return U->findLoclistFromOffset(Offset);
|
|
}
|
|
|
|
if (Optional<ArrayRef<uint8_t>> Expr = Location->getAsBlock()) {
|
|
return DWARFLocationExpressionsVector{
|
|
DWARFLocationExpression{None, to_vector<4>(*Expr)}};
|
|
}
|
|
|
|
return createStringError(
|
|
inconvertibleErrorCode(), "Unsupported %s encoding: %s",
|
|
dwarf::AttributeString(Attr).data(),
|
|
dwarf::FormEncodingString(Location->getForm()).data());
|
|
}
|
|
|
|
const char *DWARFDie::getSubroutineName(DINameKind Kind) const {
|
|
if (!isSubroutineDIE())
|
|
return nullptr;
|
|
return getName(Kind);
|
|
}
|
|
|
|
const char *DWARFDie::getName(DINameKind Kind) const {
|
|
if (!isValid() || Kind == DINameKind::None)
|
|
return nullptr;
|
|
// Try to get mangled name only if it was asked for.
|
|
if (Kind == DINameKind::LinkageName) {
|
|
if (auto Name = getLinkageName())
|
|
return Name;
|
|
}
|
|
return getShortName();
|
|
}
|
|
|
|
const char *DWARFDie::getShortName() const {
|
|
if (!isValid())
|
|
return nullptr;
|
|
|
|
return dwarf::toString(findRecursively(dwarf::DW_AT_name), nullptr);
|
|
}
|
|
|
|
const char *DWARFDie::getLinkageName() const {
|
|
if (!isValid())
|
|
return nullptr;
|
|
|
|
return dwarf::toString(findRecursively({dwarf::DW_AT_MIPS_linkage_name,
|
|
dwarf::DW_AT_linkage_name}),
|
|
nullptr);
|
|
}
|
|
|
|
uint64_t DWARFDie::getDeclLine() const {
|
|
return toUnsigned(findRecursively(DW_AT_decl_line), 0);
|
|
}
|
|
|
|
std::string
|
|
DWARFDie::getDeclFile(DILineInfoSpecifier::FileLineInfoKind Kind) const {
|
|
if (auto FormValue = findRecursively(DW_AT_decl_file))
|
|
if (auto OptString = FormValue->getAsFile(Kind))
|
|
return *OptString;
|
|
return {};
|
|
}
|
|
|
|
void DWARFDie::getCallerFrame(uint32_t &CallFile, uint32_t &CallLine,
|
|
uint32_t &CallColumn,
|
|
uint32_t &CallDiscriminator) const {
|
|
CallFile = toUnsigned(find(DW_AT_call_file), 0);
|
|
CallLine = toUnsigned(find(DW_AT_call_line), 0);
|
|
CallColumn = toUnsigned(find(DW_AT_call_column), 0);
|
|
CallDiscriminator = toUnsigned(find(DW_AT_GNU_discriminator), 0);
|
|
}
|
|
|
|
/// Helper to dump a DIE with all of its parents, but no siblings.
|
|
static unsigned dumpParentChain(DWARFDie Die, raw_ostream &OS, unsigned Indent,
|
|
DIDumpOptions DumpOpts, unsigned Depth = 0) {
|
|
if (!Die)
|
|
return Indent;
|
|
if (DumpOpts.ParentRecurseDepth > 0 && Depth >= DumpOpts.ParentRecurseDepth)
|
|
return Indent;
|
|
Indent = dumpParentChain(Die.getParent(), OS, Indent, DumpOpts, Depth + 1);
|
|
Die.dump(OS, Indent, DumpOpts);
|
|
return Indent + 2;
|
|
}
|
|
|
|
void DWARFDie::dump(raw_ostream &OS, unsigned Indent,
|
|
DIDumpOptions DumpOpts) const {
|
|
if (!isValid())
|
|
return;
|
|
DWARFDataExtractor debug_info_data = U->getDebugInfoExtractor();
|
|
const uint64_t Offset = getOffset();
|
|
uint64_t offset = Offset;
|
|
if (DumpOpts.ShowParents) {
|
|
DIDumpOptions ParentDumpOpts = DumpOpts;
|
|
ParentDumpOpts.ShowParents = false;
|
|
ParentDumpOpts.ShowChildren = false;
|
|
Indent = dumpParentChain(getParent(), OS, Indent, ParentDumpOpts);
|
|
}
|
|
|
|
if (debug_info_data.isValidOffset(offset)) {
|
|
uint32_t abbrCode = debug_info_data.getULEB128(&offset);
|
|
if (DumpOpts.ShowAddresses)
|
|
WithColor(OS, HighlightColor::Address).get()
|
|
<< format("\n0x%8.8" PRIx64 ": ", Offset);
|
|
|
|
if (abbrCode) {
|
|
auto AbbrevDecl = getAbbreviationDeclarationPtr();
|
|
if (AbbrevDecl) {
|
|
WithColor(OS, HighlightColor::Tag).get().indent(Indent)
|
|
<< formatv("{0}", getTag());
|
|
if (DumpOpts.Verbose) {
|
|
OS << format(" [%u] %c", abbrCode,
|
|
AbbrevDecl->hasChildren() ? '*' : ' ');
|
|
if (Optional<uint32_t> ParentIdx = Die->getParentIdx())
|
|
OS << format(" (0x%8.8" PRIx64 ")",
|
|
U->getDIEAtIndex(*ParentIdx).getOffset());
|
|
}
|
|
OS << '\n';
|
|
|
|
// Dump all data in the DIE for the attributes.
|
|
for (const DWARFAttribute &AttrValue : attributes())
|
|
dumpAttribute(OS, *this, AttrValue, Indent, DumpOpts);
|
|
|
|
if (DumpOpts.ShowChildren && DumpOpts.ChildRecurseDepth > 0) {
|
|
DWARFDie Child = getFirstChild();
|
|
DumpOpts.ChildRecurseDepth--;
|
|
DIDumpOptions ChildDumpOpts = DumpOpts;
|
|
ChildDumpOpts.ShowParents = false;
|
|
while (Child) {
|
|
Child.dump(OS, Indent + 2, ChildDumpOpts);
|
|
Child = Child.getSibling();
|
|
}
|
|
}
|
|
} else {
|
|
OS << "Abbreviation code not found in 'debug_abbrev' class for code: "
|
|
<< abbrCode << '\n';
|
|
}
|
|
} else {
|
|
OS.indent(Indent) << "NULL\n";
|
|
}
|
|
}
|
|
}
|
|
|
|
LLVM_DUMP_METHOD void DWARFDie::dump() const { dump(llvm::errs(), 0); }
|
|
|
|
DWARFDie DWARFDie::getParent() const {
|
|
if (isValid())
|
|
return U->getParent(Die);
|
|
return DWARFDie();
|
|
}
|
|
|
|
DWARFDie DWARFDie::getSibling() const {
|
|
if (isValid())
|
|
return U->getSibling(Die);
|
|
return DWARFDie();
|
|
}
|
|
|
|
DWARFDie DWARFDie::getPreviousSibling() const {
|
|
if (isValid())
|
|
return U->getPreviousSibling(Die);
|
|
return DWARFDie();
|
|
}
|
|
|
|
DWARFDie DWARFDie::getFirstChild() const {
|
|
if (isValid())
|
|
return U->getFirstChild(Die);
|
|
return DWARFDie();
|
|
}
|
|
|
|
DWARFDie DWARFDie::getLastChild() const {
|
|
if (isValid())
|
|
return U->getLastChild(Die);
|
|
return DWARFDie();
|
|
}
|
|
|
|
iterator_range<DWARFDie::attribute_iterator> DWARFDie::attributes() const {
|
|
return make_range(attribute_iterator(*this, false),
|
|
attribute_iterator(*this, true));
|
|
}
|
|
|
|
DWARFDie::attribute_iterator::attribute_iterator(DWARFDie D, bool End)
|
|
: Die(D), Index(0) {
|
|
auto AbbrDecl = Die.getAbbreviationDeclarationPtr();
|
|
assert(AbbrDecl && "Must have abbreviation declaration");
|
|
if (End) {
|
|
// This is the end iterator so we set the index to the attribute count.
|
|
Index = AbbrDecl->getNumAttributes();
|
|
} else {
|
|
// This is the begin iterator so we extract the value for this->Index.
|
|
AttrValue.Offset = D.getOffset() + AbbrDecl->getCodeByteSize();
|
|
updateForIndex(*AbbrDecl, 0);
|
|
}
|
|
}
|
|
|
|
void DWARFDie::attribute_iterator::updateForIndex(
|
|
const DWARFAbbreviationDeclaration &AbbrDecl, uint32_t I) {
|
|
Index = I;
|
|
// AbbrDecl must be valid before calling this function.
|
|
auto NumAttrs = AbbrDecl.getNumAttributes();
|
|
if (Index < NumAttrs) {
|
|
AttrValue.Attr = AbbrDecl.getAttrByIndex(Index);
|
|
// Add the previous byte size of any previous attribute value.
|
|
AttrValue.Offset += AttrValue.ByteSize;
|
|
uint64_t ParseOffset = AttrValue.Offset;
|
|
if (AbbrDecl.getAttrIsImplicitConstByIndex(Index))
|
|
AttrValue.Value = DWARFFormValue::createFromSValue(
|
|
AbbrDecl.getFormByIndex(Index),
|
|
AbbrDecl.getAttrImplicitConstValueByIndex(Index));
|
|
else {
|
|
auto U = Die.getDwarfUnit();
|
|
assert(U && "Die must have valid DWARF unit");
|
|
AttrValue.Value = DWARFFormValue::createFromUnit(
|
|
AbbrDecl.getFormByIndex(Index), U, &ParseOffset);
|
|
}
|
|
AttrValue.ByteSize = ParseOffset - AttrValue.Offset;
|
|
} else {
|
|
assert(Index == NumAttrs && "Indexes should be [0, NumAttrs) only");
|
|
AttrValue = {};
|
|
}
|
|
}
|
|
|
|
DWARFDie::attribute_iterator &DWARFDie::attribute_iterator::operator++() {
|
|
if (auto AbbrDecl = Die.getAbbreviationDeclarationPtr())
|
|
updateForIndex(*AbbrDecl, Index + 1);
|
|
return *this;
|
|
}
|
|
|
|
bool DWARFAttribute::mayHaveLocationList(dwarf::Attribute Attr) {
|
|
switch(Attr) {
|
|
case DW_AT_location:
|
|
case DW_AT_string_length:
|
|
case DW_AT_return_addr:
|
|
case DW_AT_data_member_location:
|
|
case DW_AT_frame_base:
|
|
case DW_AT_static_link:
|
|
case DW_AT_segment:
|
|
case DW_AT_use_location:
|
|
case DW_AT_vtable_elem_location:
|
|
return true;
|
|
default:
|
|
return false;
|
|
}
|
|
}
|
|
|
|
bool DWARFAttribute::mayHaveLocationExpr(dwarf::Attribute Attr) {
|
|
switch (Attr) {
|
|
// From the DWARF v5 specification.
|
|
case DW_AT_location:
|
|
case DW_AT_byte_size:
|
|
case DW_AT_bit_offset:
|
|
case DW_AT_bit_size:
|
|
case DW_AT_string_length:
|
|
case DW_AT_lower_bound:
|
|
case DW_AT_return_addr:
|
|
case DW_AT_bit_stride:
|
|
case DW_AT_upper_bound:
|
|
case DW_AT_count:
|
|
case DW_AT_data_member_location:
|
|
case DW_AT_frame_base:
|
|
case DW_AT_segment:
|
|
case DW_AT_static_link:
|
|
case DW_AT_use_location:
|
|
case DW_AT_vtable_elem_location:
|
|
case DW_AT_allocated:
|
|
case DW_AT_associated:
|
|
case DW_AT_data_location:
|
|
case DW_AT_byte_stride:
|
|
case DW_AT_rank:
|
|
case DW_AT_call_value:
|
|
case DW_AT_call_origin:
|
|
case DW_AT_call_target:
|
|
case DW_AT_call_target_clobbered:
|
|
case DW_AT_call_data_location:
|
|
case DW_AT_call_data_value:
|
|
// Extensions.
|
|
case DW_AT_GNU_call_site_value:
|
|
case DW_AT_GNU_call_site_target:
|
|
return true;
|
|
default:
|
|
return false;
|
|
}
|
|
}
|
|
|
|
namespace llvm {
|
|
|
|
void dumpTypeQualifiedName(const DWARFDie &DIE, raw_ostream &OS) {
|
|
DWARFTypePrinter(OS).appendQualifiedName(DIE);
|
|
}
|
|
|
|
void dumpTypeUnqualifiedName(const DWARFDie &DIE, raw_ostream &OS,
|
|
std::string *OriginalFullName) {
|
|
DWARFTypePrinter(OS).appendUnqualifiedName(DIE, OriginalFullName);
|
|
}
|
|
|
|
} // namespace llvm
|