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[DWARF] Removed dead code. The verifier functionality is provided by
the DWARFVerifier class (as it should). git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@305503 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -425,248 +425,6 @@ DWARFDie DWARFContext::getDIEForOffset(uint32_t Offset) {
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return DWARFDie();
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}
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namespace {
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class Verifier {
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raw_ostream &OS;
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DWARFContext &DCtx;
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public:
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Verifier(raw_ostream &S, DWARFContext &D) : OS(S), DCtx(D) {}
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bool HandleDebugInfo() {
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bool Success = true;
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// A map that tracks all references (converted absolute references) so we
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// can verify each reference points to a valid DIE and not an offset that
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// lies between to valid DIEs.
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std::map<uint64_t, std::set<uint32_t>> ReferenceToDIEOffsets;
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OS << "Verifying .debug_info...\n";
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for (const auto &CU : DCtx.compile_units()) {
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unsigned NumDies = CU->getNumDIEs();
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for (unsigned I = 0; I < NumDies; ++I) {
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auto Die = CU->getDIEAtIndex(I);
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const auto Tag = Die.getTag();
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if (Tag == DW_TAG_null)
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continue;
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for (auto AttrValue : Die.attributes()) {
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const auto Attr = AttrValue.Attr;
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const auto Form = AttrValue.Value.getForm();
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switch (Attr) {
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case DW_AT_ranges:
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// Make sure the offset in the DW_AT_ranges attribute is valid.
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if (auto SectionOffset = AttrValue.Value.getAsSectionOffset()) {
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if (*SectionOffset >= DCtx.getRangeSection().Data.size()) {
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Success = false;
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OS << "error: DW_AT_ranges offset is beyond .debug_ranges "
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"bounds:\n";
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Die.dump(OS, 0);
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OS << "\n";
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}
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} else {
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Success = false;
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OS << "error: DIE has invalid DW_AT_ranges encoding:\n";
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Die.dump(OS, 0);
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OS << "\n";
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}
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break;
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case DW_AT_stmt_list:
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// Make sure the offset in the DW_AT_stmt_list attribute is valid.
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if (auto SectionOffset = AttrValue.Value.getAsSectionOffset()) {
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if (*SectionOffset >= DCtx.getLineSection().Data.size()) {
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Success = false;
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OS << "error: DW_AT_stmt_list offset is beyond .debug_line "
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"bounds: "
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<< format("0x%08" PRIx32, *SectionOffset) << "\n";
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CU->getUnitDIE().dump(OS, 0);
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OS << "\n";
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}
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} else {
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Success = false;
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OS << "error: DIE has invalid DW_AT_stmt_list encoding:\n";
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Die.dump(OS, 0);
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OS << "\n";
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}
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break;
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default:
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break;
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}
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switch (Form) {
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case DW_FORM_ref1:
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case DW_FORM_ref2:
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case DW_FORM_ref4:
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case DW_FORM_ref8:
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case DW_FORM_ref_udata: {
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// Verify all CU relative references are valid CU offsets.
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Optional<uint64_t> RefVal = AttrValue.Value.getAsReference();
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assert(RefVal);
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if (RefVal) {
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auto DieCU = Die.getDwarfUnit();
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auto CUSize = DieCU->getNextUnitOffset() - DieCU->getOffset();
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auto CUOffset = AttrValue.Value.getRawUValue();
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if (CUOffset >= CUSize) {
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Success = false;
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OS << "error: " << FormEncodingString(Form) << " CU offset "
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<< format("0x%08" PRIx32, CUOffset)
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<< " is invalid (must be less than CU size of "
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<< format("0x%08" PRIx32, CUSize) << "):\n";
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Die.dump(OS, 0);
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OS << "\n";
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} else {
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// Valid reference, but we will verify it points to an actual
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// DIE later.
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ReferenceToDIEOffsets[*RefVal].insert(Die.getOffset());
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}
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}
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break;
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}
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case DW_FORM_ref_addr: {
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// Verify all absolute DIE references have valid offsets in the
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// .debug_info section.
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Optional<uint64_t> RefVal = AttrValue.Value.getAsReference();
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assert(RefVal);
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if (RefVal) {
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if(*RefVal >= DCtx.getInfoSection().Data.size()) {
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Success = false;
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OS << "error: DW_FORM_ref_addr offset beyond .debug_info "
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"bounds:\n";
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Die.dump(OS, 0);
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OS << "\n";
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} else {
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// Valid reference, but we will verify it points to an actual
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// DIE later.
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ReferenceToDIEOffsets[*RefVal].insert(Die.getOffset());
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}
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}
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break;
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}
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case DW_FORM_strp: {
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auto SecOffset = AttrValue.Value.getAsSectionOffset();
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assert(SecOffset); // DW_FORM_strp is a section offset.
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if (SecOffset && *SecOffset >= DCtx.getStringSection().size()) {
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Success = false;
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OS << "error: DW_FORM_strp offset beyond .debug_str bounds:\n";
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Die.dump(OS, 0);
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OS << "\n";
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}
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break;
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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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}
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}
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// Take all references and make sure they point to an actual DIE by
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// getting the DIE by offset and emitting an error
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OS << "Verifying .debug_info references...\n";
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for (auto Pair: ReferenceToDIEOffsets) {
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auto Die = DCtx.getDIEForOffset(Pair.first);
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if (Die)
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continue;
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Success = false;
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OS << "error: invalid DIE reference " << format("0x%08" PRIx64, Pair.first)
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<< ". Offset is in between DIEs:\n";
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for (auto Offset: Pair.second) {
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auto ReferencingDie = DCtx.getDIEForOffset(Offset);
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ReferencingDie.dump(OS, 0);
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OS << "\n";
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}
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OS << "\n";
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}
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return Success;
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}
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bool HandleDebugLine() {
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std::map<uint64_t, DWARFDie> StmtListToDie;
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bool Success = true;
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OS << "Verifying .debug_line...\n";
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for (const auto &CU : DCtx.compile_units()) {
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uint32_t LineTableOffset = 0;
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auto CUDie = CU->getUnitDIE();
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auto StmtFormValue = CUDie.find(DW_AT_stmt_list);
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if (!StmtFormValue) {
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// No line table for this compile unit.
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continue;
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}
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// Get the attribute value as a section offset. No need to produce an
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// error here if the encoding isn't correct because we validate this in
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// the .debug_info verifier.
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if (auto StmtSectionOffset = toSectionOffset(StmtFormValue)) {
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LineTableOffset = *StmtSectionOffset;
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if (LineTableOffset >= DCtx.getLineSection().Data.size()) {
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// Make sure we don't get a valid line table back if the offset
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// is wrong.
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assert(DCtx.getLineTableForUnit(CU.get()) == nullptr);
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// Skip this line table as it isn't valid. No need to create an error
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// here because we validate this in the .debug_info verifier.
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continue;
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} else {
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auto Iter = StmtListToDie.find(LineTableOffset);
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if (Iter != StmtListToDie.end()) {
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Success = false;
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OS << "error: two compile unit DIEs, "
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<< format("0x%08" PRIx32, Iter->second.getOffset()) << " and "
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<< format("0x%08" PRIx32, CUDie.getOffset())
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<< ", have the same DW_AT_stmt_list section offset:\n";
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Iter->second.dump(OS, 0);
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CUDie.dump(OS, 0);
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OS << '\n';
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// Already verified this line table before, no need to do it again.
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continue;
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}
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StmtListToDie[LineTableOffset] = CUDie;
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}
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}
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auto LineTable = DCtx.getLineTableForUnit(CU.get());
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if (!LineTable) {
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Success = false;
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OS << "error: .debug_line[" << format("0x%08" PRIx32, LineTableOffset)
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<< "] was not able to be parsed for CU:\n";
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CUDie.dump(OS, 0);
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OS << '\n';
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continue;
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}
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uint32_t MaxFileIndex = LineTable->Prologue.FileNames.size();
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uint64_t PrevAddress = 0;
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uint32_t RowIndex = 0;
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for (const auto &Row : LineTable->Rows) {
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if (Row.Address < PrevAddress) {
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Success = false;
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OS << "error: .debug_line[" << format("0x%08" PRIx32, LineTableOffset)
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<< "] row[" << RowIndex
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<< "] decreases in address from previous row:\n";
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DWARFDebugLine::Row::dumpTableHeader(OS);
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if (RowIndex > 0)
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LineTable->Rows[RowIndex - 1].dump(OS);
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Row.dump(OS);
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OS << '\n';
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}
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if (Row.File > MaxFileIndex) {
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Success = false;
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OS << "error: .debug_line[" << format("0x%08" PRIx32, LineTableOffset)
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<< "][" << RowIndex << "] has invalid file index " << Row.File
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<< " (valid values are [1," << MaxFileIndex << "]):\n";
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DWARFDebugLine::Row::dumpTableHeader(OS);
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Row.dump(OS);
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OS << '\n';
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}
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if (Row.EndSequence)
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PrevAddress = 0;
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else
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PrevAddress = Row.Address;
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++RowIndex;
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}
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}
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return Success;
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}
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};
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} // anonymous namespace
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bool DWARFContext::verify(raw_ostream &OS, DIDumpType DumpType) {
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bool Success = true;
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DWARFVerifier verifier(OS, *this);
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