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2f7af9b01c
This updates all libraries and tools in LLVM Core to use 64-bit offsets which directly or indirectly come to DataExtractor. Differential Revision: https://reviews.llvm.org/D65638 llvm-svn: 368014
337 lines
13 KiB
C++
337 lines
13 KiB
C++
//===- DWARFVerifier.h ----------------------------------------------------===//
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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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#ifndef LLVM_DEBUGINFO_DWARF_DWARFVERIFIER_H
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#define LLVM_DEBUGINFO_DWARF_DWARFVERIFIER_H
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#include "llvm/DebugInfo/DIContext.h"
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#include "llvm/DebugInfo/DWARF/DWARFAcceleratorTable.h"
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#include "llvm/DebugInfo/DWARF/DWARFAddressRange.h"
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#include "llvm/DebugInfo/DWARF/DWARFDie.h"
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#include "llvm/DebugInfo/DWARF/DWARFUnitIndex.h"
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#include <cstdint>
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#include <map>
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#include <set>
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namespace llvm {
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class raw_ostream;
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struct DWARFAttribute;
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class DWARFContext;
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class DWARFDie;
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class DWARFUnit;
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class DWARFCompileUnit;
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class DWARFDataExtractor;
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class DWARFDebugAbbrev;
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class DataExtractor;
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struct DWARFSection;
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/// A class that verifies DWARF debug information given a DWARF Context.
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class DWARFVerifier {
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public:
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/// A class that keeps the address range information for a single DIE.
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struct DieRangeInfo {
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DWARFDie Die;
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/// Sorted DWARFAddressRanges.
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std::vector<DWARFAddressRange> Ranges;
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/// Sorted DWARFAddressRangeInfo.
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std::set<DieRangeInfo> Children;
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DieRangeInfo() = default;
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DieRangeInfo(DWARFDie Die) : Die(Die) {}
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/// Used for unit testing.
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DieRangeInfo(std::vector<DWARFAddressRange> Ranges)
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: Ranges(std::move(Ranges)) {}
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typedef std::vector<DWARFAddressRange>::const_iterator
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address_range_iterator;
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typedef std::set<DieRangeInfo>::const_iterator die_range_info_iterator;
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/// Inserts the address range. If the range overlaps with an existing
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/// range, the range is *not* added and an iterator to the overlapping
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/// range is returned.
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///
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/// This is used for finding overlapping ranges within the same DIE.
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address_range_iterator insert(const DWARFAddressRange &R);
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/// Finds an address range in the sorted vector of ranges.
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address_range_iterator findRange(const DWARFAddressRange &R) const {
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auto Begin = Ranges.begin();
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auto End = Ranges.end();
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auto Iter = std::upper_bound(Begin, End, R);
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if (Iter != Begin)
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--Iter;
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return Iter;
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}
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/// Inserts the address range info. If any of its ranges overlaps with a
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/// range in an existing range info, the range info is *not* added and an
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/// iterator to the overlapping range info.
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///
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/// This is used for finding overlapping children of the same DIE.
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die_range_info_iterator insert(const DieRangeInfo &RI);
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/// Return true if ranges in this object contains all ranges within RHS.
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bool contains(const DieRangeInfo &RHS) const;
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/// Return true if any range in this object intersects with any range in
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/// RHS.
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bool intersects(const DieRangeInfo &RHS) const;
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};
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private:
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raw_ostream &OS;
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DWARFContext &DCtx;
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DIDumpOptions DumpOpts;
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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<uint64_t>> ReferenceToDIEOffsets;
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uint32_t NumDebugLineErrors = 0;
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// Used to relax some checks that do not currently work portably
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bool IsObjectFile;
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bool IsMachOObject;
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raw_ostream &error() const;
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raw_ostream &warn() const;
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raw_ostream ¬e() const;
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raw_ostream &dump(const DWARFDie &Die, unsigned indent = 0) const;
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/// Verifies the abbreviations section.
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///
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/// This function currently checks that:
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/// --No abbreviation declaration has more than one attributes with the same
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/// name.
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///
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/// \param Abbrev Pointer to the abbreviations section we are verifying
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/// Abbrev can be a pointer to either .debug_abbrev or debug_abbrev.dwo.
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///
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/// \returns The number of errors that occurred during verification.
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unsigned verifyAbbrevSection(const DWARFDebugAbbrev *Abbrev);
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/// Verifies the header of a unit in a .debug_info or .debug_types section.
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///
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/// This function currently checks for:
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/// - Unit is in 32-bit DWARF format. The function can be modified to
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/// support 64-bit format.
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/// - The DWARF version is valid
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/// - The unit type is valid (if unit is in version >=5)
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/// - The unit doesn't extend beyond the containing section
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/// - The address size is valid
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/// - The offset in the .debug_abbrev section is valid
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///
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/// \param DebugInfoData The section data
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/// \param Offset A reference to the offset start of the unit. The offset will
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/// be updated to point to the next unit in the section
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/// \param UnitIndex The index of the unit to be verified
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/// \param UnitType A reference to the type of the unit
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/// \param isUnitDWARF64 A reference to a flag that shows whether the unit is
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/// in 64-bit format.
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///
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/// \returns true if the header is verified successfully, false otherwise.
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bool verifyUnitHeader(const DWARFDataExtractor DebugInfoData,
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uint64_t *Offset, unsigned UnitIndex, uint8_t &UnitType,
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bool &isUnitDWARF64);
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/// Verifies the header of a unit in a .debug_info or .debug_types section.
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///
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/// This function currently verifies:
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/// - The debug info attributes.
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/// - The debug info form=s.
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/// - The presence of a root DIE.
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/// - That the root DIE is a unit DIE.
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/// - If a unit type is provided, that the unit DIE matches the unit type.
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/// - The DIE ranges.
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/// - That call site entries are only nested within subprograms with a
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/// DW_AT_call attribute.
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///
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/// \param Unit The DWARF Unit to verify.
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///
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/// \returns The number of errors that occurred during verification.
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unsigned verifyUnitContents(DWARFUnit &Unit);
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/// Verifies the unit headers and contents in a .debug_info or .debug_types
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/// section.
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///
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/// \param S The DWARF Section to verify.
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/// \param SectionKind The object-file section kind that S comes from.
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///
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/// \returns The number of errors that occurred during verification.
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unsigned verifyUnitSection(const DWARFSection &S,
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DWARFSectionKind SectionKind);
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/// Verifies that a call site entry is nested within a subprogram with a
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/// DW_AT_call attribute.
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///
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/// \returns Number of errors that occurred during verification.
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unsigned verifyDebugInfoCallSite(const DWARFDie &Die);
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/// Verify that all Die ranges are valid.
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///
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/// This function currently checks for:
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/// - cases in which lowPC >= highPC
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///
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/// \returns Number of errors that occurred during verification.
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unsigned verifyDieRanges(const DWARFDie &Die, DieRangeInfo &ParentRI);
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/// Verifies the attribute's DWARF attribute and its value.
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///
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/// This function currently checks for:
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/// - DW_AT_ranges values is a valid .debug_ranges offset
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/// - DW_AT_stmt_list is a valid .debug_line offset
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///
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/// \param Die The DWARF DIE that owns the attribute value
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/// \param AttrValue The DWARF attribute value to check
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///
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/// \returns NumErrors The number of errors occurred during verification of
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/// attributes' values in a unit
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unsigned verifyDebugInfoAttribute(const DWARFDie &Die,
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DWARFAttribute &AttrValue);
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/// Verifies the attribute's DWARF form.
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///
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/// This function currently checks for:
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/// - All DW_FORM_ref values that are CU relative have valid CU offsets
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/// - All DW_FORM_ref_addr values have valid section offsets
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/// - All DW_FORM_strp values have valid .debug_str offsets
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///
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/// \param Die The DWARF DIE that owns the attribute value
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/// \param AttrValue The DWARF attribute value to check
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///
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/// \returns NumErrors The number of errors occurred during verification of
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/// attributes' forms in a unit
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unsigned verifyDebugInfoForm(const DWARFDie &Die, DWARFAttribute &AttrValue);
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/// Verifies the all valid references that were found when iterating through
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/// all of the DIE attributes.
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///
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/// This function will verify that all references point to DIEs whose DIE
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/// offset matches. This helps to ensure if a DWARF link phase moved things
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/// around, that it doesn't create invalid references by failing to relocate
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/// CU relative and absolute references.
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///
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/// \returns NumErrors The number of errors occurred during verification of
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/// references for the .debug_info and .debug_types sections
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unsigned verifyDebugInfoReferences();
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/// Verify the DW_AT_stmt_list encoding and value and ensure that no
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/// compile units that have the same DW_AT_stmt_list value.
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void verifyDebugLineStmtOffsets();
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/// Verify that all of the rows in the line table are valid.
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///
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/// This function currently checks for:
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/// - addresses within a sequence that decrease in value
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/// - invalid file indexes
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void verifyDebugLineRows();
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/// Verify that an Apple-style accelerator table is valid.
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///
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/// This function currently checks that:
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/// - The fixed part of the header fits in the section
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/// - The size of the section is as large as what the header describes
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/// - There is at least one atom
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/// - The form for each atom is valid
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/// - The tag for each DIE in the table is valid
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/// - The buckets have a valid index, or they are empty
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/// - Each hashdata offset is valid
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/// - Each DIE is valid
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///
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/// \param AccelSection pointer to the section containing the acceleration table
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/// \param StrData pointer to the string section
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/// \param SectionName the name of the table we're verifying
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///
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/// \returns The number of errors occurred during verification
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unsigned verifyAppleAccelTable(const DWARFSection *AccelSection,
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DataExtractor *StrData,
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const char *SectionName);
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unsigned verifyDebugNamesCULists(const DWARFDebugNames &AccelTable);
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unsigned verifyNameIndexBuckets(const DWARFDebugNames::NameIndex &NI,
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const DataExtractor &StrData);
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unsigned verifyNameIndexAbbrevs(const DWARFDebugNames::NameIndex &NI);
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unsigned verifyNameIndexAttribute(const DWARFDebugNames::NameIndex &NI,
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const DWARFDebugNames::Abbrev &Abbr,
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DWARFDebugNames::AttributeEncoding AttrEnc);
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unsigned verifyNameIndexEntries(const DWARFDebugNames::NameIndex &NI,
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const DWARFDebugNames::NameTableEntry &NTE);
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unsigned verifyNameIndexCompleteness(const DWARFDie &Die,
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const DWARFDebugNames::NameIndex &NI);
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/// Verify that the DWARF v5 accelerator table is valid.
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///
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/// This function currently checks that:
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/// - Headers individual Name Indices fit into the section and can be parsed.
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/// - Abbreviation tables can be parsed and contain valid index attributes
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/// with correct form encodings.
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/// - The CU lists reference existing compile units.
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/// - The buckets have a valid index, or they are empty.
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/// - All names are reachable via the hash table (they have the correct hash,
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/// and the hash is in the correct bucket).
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/// - Information in the index entries is complete (all required entries are
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/// present) and consistent with the debug_info section DIEs.
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///
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/// \param AccelSection section containing the acceleration table
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/// \param StrData string section
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///
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/// \returns The number of errors occurred during verification
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unsigned verifyDebugNames(const DWARFSection &AccelSection,
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const DataExtractor &StrData);
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public:
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DWARFVerifier(raw_ostream &S, DWARFContext &D,
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DIDumpOptions DumpOpts = DIDumpOptions::getForSingleDIE());
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/// Verify the information in any of the following sections, if available:
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/// .debug_abbrev, debug_abbrev.dwo
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///
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/// Any errors are reported to the stream that was this object was
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/// constructed with.
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///
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/// \returns true if .debug_abbrev and .debug_abbrev.dwo verify successfully,
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/// false otherwise.
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bool handleDebugAbbrev();
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/// Verify the information in the .debug_info and .debug_types sections.
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///
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/// Any errors are reported to the stream that this object was
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/// constructed with.
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///
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/// \returns true if all sections verify successfully, false otherwise.
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bool handleDebugInfo();
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/// Verify the information in the .debug_line section.
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///
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/// Any errors are reported to the stream that was this object was
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/// constructed with.
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///
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/// \returns true if the .debug_line verifies successfully, false otherwise.
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bool handleDebugLine();
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/// Verify the information in accelerator tables, if they exist.
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///
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/// Any errors are reported to the stream that was this object was
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/// constructed with.
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///
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/// \returns true if the existing Apple-style accelerator tables verify
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/// successfully, false otherwise.
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bool handleAccelTables();
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};
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static inline bool operator<(const DWARFVerifier::DieRangeInfo &LHS,
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const DWARFVerifier::DieRangeInfo &RHS) {
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return std::tie(LHS.Ranges, LHS.Die) < std::tie(RHS.Ranges, RHS.Die);
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}
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} // end namespace llvm
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#endif // LLVM_DEBUGINFO_DWARF_DWARFCONTEXT_H
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