clang 20.0.0 (based on r547379) from build 12806354. Bug: http://b/379133546 Test: N/A Change-Id: I2eb8938af55d809de674be63cb30cf27e801862b Upstream-Commit: ad834e67b1105d15ef907f6255d4c96e8e733f57
499 lines
19 KiB
C++
499 lines
19 KiB
C++
//===- DWARFContext.h -------------------------------------------*- C++ -*-===//
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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_DWARFCONTEXT_H
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#define LLVM_DEBUGINFO_DWARF_DWARFCONTEXT_H
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/StringExtras.h"
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#include "llvm/ADT/StringMap.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/DebugInfo/DIContext.h"
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#include "llvm/DebugInfo/DWARF/DWARFDebugLine.h"
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#include "llvm/DebugInfo/DWARF/DWARFDie.h"
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#include "llvm/DebugInfo/DWARF/DWARFObject.h"
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#include "llvm/DebugInfo/DWARF/DWARFUnit.h"
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#include "llvm/Object/Binary.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/Error.h"
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#include "llvm/TargetParser/Host.h"
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#include <cstdint>
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#include <memory>
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#include <mutex>
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namespace llvm {
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class MemoryBuffer;
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class AppleAcceleratorTable;
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class DWARFCompileUnit;
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class DWARFDebugAbbrev;
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class DWARFDebugAranges;
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class DWARFDebugFrame;
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class DWARFDebugLoc;
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class DWARFDebugMacro;
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class DWARFDebugNames;
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class DWARFGdbIndex;
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class DWARFTypeUnit;
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class DWARFUnitIndex;
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/// DWARFContext
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/// This data structure is the top level entity that deals with dwarf debug
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/// information parsing. The actual data is supplied through DWARFObj.
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class DWARFContext : public DIContext {
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public:
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/// DWARFContextState
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/// This structure contains all member variables for DWARFContext that need
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/// to be protected in multi-threaded environments. Threading support can be
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/// enabled by setting the ThreadSafe to true when constructing a
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/// DWARFContext to allow DWARRContext to be able to be used in a
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/// multi-threaded environment, or not enabled to allow for maximum
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/// performance in single threaded environments.
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class DWARFContextState {
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protected:
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/// Helper enum to distinguish between macro[.dwo] and macinfo[.dwo]
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/// section.
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enum MacroSecType {
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MacinfoSection,
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MacinfoDwoSection,
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MacroSection,
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MacroDwoSection
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};
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DWARFContext &D;
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public:
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DWARFContextState(DWARFContext &DC) : D(DC) {}
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virtual ~DWARFContextState() = default;
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virtual DWARFUnitVector &getNormalUnits() = 0;
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virtual DWARFUnitVector &getDWOUnits(bool Lazy = false) = 0;
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virtual const DWARFDebugAbbrev *getDebugAbbrevDWO() = 0;
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virtual const DWARFUnitIndex &getCUIndex() = 0;
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virtual const DWARFUnitIndex &getTUIndex() = 0;
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virtual DWARFGdbIndex &getGdbIndex() = 0;
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virtual const DWARFDebugAbbrev *getDebugAbbrev() = 0;
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virtual const DWARFDebugLoc *getDebugLoc() = 0;
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virtual const DWARFDebugAranges *getDebugAranges() = 0;
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virtual Expected<const DWARFDebugLine::LineTable *>
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getLineTableForUnit(DWARFUnit *U,
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function_ref<void(Error)> RecoverableErrHandler) = 0;
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virtual void clearLineTableForUnit(DWARFUnit *U) = 0;
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virtual Expected<const DWARFDebugFrame *> getDebugFrame() = 0;
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virtual Expected<const DWARFDebugFrame *> getEHFrame() = 0;
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virtual const DWARFDebugMacro *getDebugMacinfo() = 0;
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virtual const DWARFDebugMacro *getDebugMacinfoDWO() = 0;
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virtual const DWARFDebugMacro *getDebugMacro() = 0;
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virtual const DWARFDebugMacro *getDebugMacroDWO() = 0;
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virtual const DWARFDebugNames &getDebugNames() = 0;
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virtual const AppleAcceleratorTable &getAppleNames() = 0;
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virtual const AppleAcceleratorTable &getAppleTypes() = 0;
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virtual const AppleAcceleratorTable &getAppleNamespaces() = 0;
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virtual const AppleAcceleratorTable &getAppleObjC() = 0;
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virtual std::shared_ptr<DWARFContext>
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getDWOContext(StringRef AbsolutePath) = 0;
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virtual const DenseMap<uint64_t, DWARFTypeUnit *> &
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getTypeUnitMap(bool IsDWO) = 0;
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virtual bool isThreadSafe() const = 0;
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/// Parse a macro[.dwo] or macinfo[.dwo] section.
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std::unique_ptr<DWARFDebugMacro>
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parseMacroOrMacinfo(MacroSecType SectionType);
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};
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friend class DWARFContextState;
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private:
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/// All important state for a DWARFContext that needs to be threadsafe needs
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/// to go into DWARFContextState.
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std::unique_ptr<DWARFContextState> State;
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/// The maximum DWARF version of all units.
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unsigned MaxVersion = 0;
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std::function<void(Error)> RecoverableErrorHandler =
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WithColor::defaultErrorHandler;
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std::function<void(Error)> WarningHandler = WithColor::defaultWarningHandler;
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/// Read compile units from the debug_info.dwo section (if necessary)
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/// and type units from the debug_types.dwo section (if necessary)
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/// and store them in DWOUnits.
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/// If \p Lazy is true, set up to parse but don't actually parse them.
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enum { EagerParse = false, LazyParse = true };
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DWARFUnitVector &getDWOUnits(bool Lazy = false);
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std::unique_ptr<const DWARFObject> DObj;
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// When set parses debug_info.dwo/debug_abbrev.dwo manually and populates CU
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// Index, and TU Index for DWARF5.
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bool ParseCUTUIndexManually = false;
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public:
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DWARFContext(std::unique_ptr<const DWARFObject> DObj,
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std::string DWPName = "",
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std::function<void(Error)> RecoverableErrorHandler =
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WithColor::defaultErrorHandler,
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std::function<void(Error)> WarningHandler =
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WithColor::defaultWarningHandler,
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bool ThreadSafe = false);
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~DWARFContext() override;
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DWARFContext(DWARFContext &) = delete;
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DWARFContext &operator=(DWARFContext &) = delete;
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const DWARFObject &getDWARFObj() const { return *DObj; }
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static bool classof(const DIContext *DICtx) {
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return DICtx->getKind() == CK_DWARF;
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}
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/// Dump a textual representation to \p OS. If any \p DumpOffsets are present,
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/// dump only the record at the specified offset.
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void dump(raw_ostream &OS, DIDumpOptions DumpOpts,
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std::array<std::optional<uint64_t>, DIDT_ID_Count> DumpOffsets);
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void dump(raw_ostream &OS, DIDumpOptions DumpOpts) override {
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std::array<std::optional<uint64_t>, DIDT_ID_Count> DumpOffsets;
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dump(OS, DumpOpts, DumpOffsets);
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}
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bool verify(raw_ostream &OS, DIDumpOptions DumpOpts = {}) override;
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using unit_iterator_range = DWARFUnitVector::iterator_range;
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using compile_unit_range = DWARFUnitVector::compile_unit_range;
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/// Get units from .debug_info in this context.
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unit_iterator_range info_section_units() {
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DWARFUnitVector &NormalUnits = State->getNormalUnits();
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return unit_iterator_range(NormalUnits.begin(),
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NormalUnits.begin() +
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NormalUnits.getNumInfoUnits());
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}
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const DWARFUnitVector &getNormalUnitsVector() {
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return State->getNormalUnits();
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}
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/// Get units from .debug_types in this context.
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unit_iterator_range types_section_units() {
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DWARFUnitVector &NormalUnits = State->getNormalUnits();
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return unit_iterator_range(
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NormalUnits.begin() + NormalUnits.getNumInfoUnits(), NormalUnits.end());
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}
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/// Get compile units in this context.
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compile_unit_range compile_units() {
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return make_filter_range(info_section_units(), isCompileUnit);
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}
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// If you want type_units(), it'll need to be a concat iterator of a filter of
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// TUs in info_section + all the (all type) units in types_section
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/// Get all normal compile/type units in this context.
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unit_iterator_range normal_units() {
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DWARFUnitVector &NormalUnits = State->getNormalUnits();
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return unit_iterator_range(NormalUnits.begin(), NormalUnits.end());
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}
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/// Get units from .debug_info..dwo in the DWO context.
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unit_iterator_range dwo_info_section_units() {
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DWARFUnitVector &DWOUnits = State->getDWOUnits();
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return unit_iterator_range(DWOUnits.begin(),
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DWOUnits.begin() + DWOUnits.getNumInfoUnits());
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}
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const DWARFUnitVector &getDWOUnitsVector() {
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return State->getDWOUnits();
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}
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/// Get units from .debug_types.dwo in the DWO context.
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unit_iterator_range dwo_types_section_units() {
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DWARFUnitVector &DWOUnits = State->getDWOUnits();
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return unit_iterator_range(DWOUnits.begin() + DWOUnits.getNumInfoUnits(),
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DWOUnits.end());
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}
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/// Get compile units in the DWO context.
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compile_unit_range dwo_compile_units() {
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return make_filter_range(dwo_info_section_units(), isCompileUnit);
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}
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// If you want dwo_type_units(), it'll need to be a concat iterator of a
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// filter of TUs in dwo_info_section + all the (all type) units in
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// dwo_types_section.
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/// Get all units in the DWO context.
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unit_iterator_range dwo_units() {
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DWARFUnitVector &DWOUnits = State->getDWOUnits();
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return unit_iterator_range(DWOUnits.begin(), DWOUnits.end());
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}
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/// Get the number of compile units in this context.
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unsigned getNumCompileUnits() {
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return State->getNormalUnits().getNumInfoUnits();
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}
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/// Get the number of type units in this context.
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unsigned getNumTypeUnits() {
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return State->getNormalUnits().getNumTypesUnits();
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}
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/// Get the number of compile units in the DWO context.
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unsigned getNumDWOCompileUnits() {
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return State->getDWOUnits().getNumInfoUnits();
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}
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/// Get the number of type units in the DWO context.
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unsigned getNumDWOTypeUnits() {
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return State->getDWOUnits().getNumTypesUnits();
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}
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/// Get the unit at the specified index.
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DWARFUnit *getUnitAtIndex(unsigned index) {
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return State->getNormalUnits()[index].get();
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}
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/// Get the unit at the specified index for the DWO units.
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DWARFUnit *getDWOUnitAtIndex(unsigned index) {
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return State->getDWOUnits()[index].get();
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}
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DWARFCompileUnit *getDWOCompileUnitForHash(uint64_t Hash);
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DWARFTypeUnit *getTypeUnitForHash(uint16_t Version, uint64_t Hash, bool IsDWO);
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/// Return the DWARF unit that includes an offset (relative to .debug_info).
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DWARFUnit *getUnitForOffset(uint64_t Offset);
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/// Return the compile unit that includes an offset (relative to .debug_info).
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DWARFCompileUnit *getCompileUnitForOffset(uint64_t Offset);
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/// Get a DIE given an exact offset.
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DWARFDie getDIEForOffset(uint64_t Offset);
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unsigned getMaxVersion() {
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// Ensure info units have been parsed to discover MaxVersion
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info_section_units();
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return MaxVersion;
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}
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unsigned getMaxDWOVersion() {
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// Ensure DWO info units have been parsed to discover MaxVersion
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dwo_info_section_units();
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return MaxVersion;
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}
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void setMaxVersionIfGreater(unsigned Version) {
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if (Version > MaxVersion)
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MaxVersion = Version;
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}
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const DWARFUnitIndex &getCUIndex();
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DWARFGdbIndex &getGdbIndex();
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const DWARFUnitIndex &getTUIndex();
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/// Get a pointer to the parsed DebugAbbrev object.
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const DWARFDebugAbbrev *getDebugAbbrev();
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/// Get a pointer to the parsed DebugLoc object.
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const DWARFDebugLoc *getDebugLoc();
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/// Get a pointer to the parsed dwo abbreviations object.
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const DWARFDebugAbbrev *getDebugAbbrevDWO();
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/// Get a pointer to the parsed DebugAranges object.
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const DWARFDebugAranges *getDebugAranges();
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/// Get a pointer to the parsed frame information object.
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Expected<const DWARFDebugFrame *> getDebugFrame();
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/// Get a pointer to the parsed eh frame information object.
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Expected<const DWARFDebugFrame *> getEHFrame();
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/// Get a pointer to the parsed DebugMacinfo information object.
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const DWARFDebugMacro *getDebugMacinfo();
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/// Get a pointer to the parsed DebugMacinfoDWO information object.
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const DWARFDebugMacro *getDebugMacinfoDWO();
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/// Get a pointer to the parsed DebugMacro information object.
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const DWARFDebugMacro *getDebugMacro();
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/// Get a pointer to the parsed DebugMacroDWO information object.
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const DWARFDebugMacro *getDebugMacroDWO();
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/// Get a reference to the parsed accelerator table object.
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const DWARFDebugNames &getDebugNames();
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/// Get a reference to the parsed accelerator table object.
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const AppleAcceleratorTable &getAppleNames();
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/// Get a reference to the parsed accelerator table object.
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const AppleAcceleratorTable &getAppleTypes();
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/// Get a reference to the parsed accelerator table object.
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const AppleAcceleratorTable &getAppleNamespaces();
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/// Get a reference to the parsed accelerator table object.
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const AppleAcceleratorTable &getAppleObjC();
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/// Get a pointer to a parsed line table corresponding to a compile unit.
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/// Report any parsing issues as warnings on stderr.
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const DWARFDebugLine::LineTable *getLineTableForUnit(DWARFUnit *U);
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/// Get a pointer to a parsed line table corresponding to a compile unit.
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/// Report any recoverable parsing problems using the handler.
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Expected<const DWARFDebugLine::LineTable *>
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getLineTableForUnit(DWARFUnit *U,
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function_ref<void(Error)> RecoverableErrorHandler);
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// Clear the line table object corresponding to a compile unit for memory
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// management purpose. When it's referred to again, it'll be re-populated.
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void clearLineTableForUnit(DWARFUnit *U);
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DataExtractor getStringExtractor() const {
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return DataExtractor(DObj->getStrSection(), false, 0);
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}
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DataExtractor getStringDWOExtractor() const {
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return DataExtractor(DObj->getStrDWOSection(), false, 0);
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}
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DataExtractor getLineStringExtractor() const {
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return DataExtractor(DObj->getLineStrSection(), false, 0);
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}
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/// Wraps the returned DIEs for a given address.
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struct DIEsForAddress {
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DWARFCompileUnit *CompileUnit = nullptr;
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DWARFDie FunctionDIE;
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DWARFDie BlockDIE;
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explicit operator bool() const { return CompileUnit != nullptr; }
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};
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/// Get the compilation unit, the function DIE and lexical block DIE for the
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/// given address where applicable.
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/// TODO: change input parameter from "uint64_t Address"
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/// into "SectionedAddress Address"
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/// \param[in] CheckDWO If this is false then only search for address matches
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/// in the current context's DIEs. If this is true, then each
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/// DWARFUnit that has a DWO file will have the debug info in the
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/// DWO file searched as well. This allows for lookups to succeed
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/// by searching the split DWARF debug info when using the main
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/// executable's debug info.
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DIEsForAddress getDIEsForAddress(uint64_t Address, bool CheckDWO = false);
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DILineInfo getLineInfoForAddress(
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object::SectionedAddress Address,
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DILineInfoSpecifier Specifier = DILineInfoSpecifier()) override;
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DILineInfo
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getLineInfoForDataAddress(object::SectionedAddress Address) override;
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DILineInfoTable getLineInfoForAddressRange(
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object::SectionedAddress Address, uint64_t Size,
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DILineInfoSpecifier Specifier = DILineInfoSpecifier()) override;
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DIInliningInfo getInliningInfoForAddress(
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object::SectionedAddress Address,
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DILineInfoSpecifier Specifier = DILineInfoSpecifier()) override;
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std::vector<DILocal>
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getLocalsForAddress(object::SectionedAddress Address) override;
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bool isLittleEndian() const { return DObj->isLittleEndian(); }
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static unsigned getMaxSupportedVersion() { return 5; }
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static bool isSupportedVersion(unsigned version) {
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return version >= 2 && version <= getMaxSupportedVersion();
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}
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static SmallVector<uint8_t, 3> getSupportedAddressSizes() {
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return {2, 4, 8};
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}
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static bool isAddressSizeSupported(unsigned AddressSize) {
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return llvm::is_contained(getSupportedAddressSizes(), AddressSize);
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}
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template <typename... Ts>
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static Error checkAddressSizeSupported(unsigned AddressSize,
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std::error_code EC, char const *Fmt,
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const Ts &...Vals) {
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if (isAddressSizeSupported(AddressSize))
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return Error::success();
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std::string Buffer;
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raw_string_ostream Stream(Buffer);
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Stream << format(Fmt, Vals...)
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<< " has unsupported address size: " << AddressSize
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<< " (supported are ";
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ListSeparator LS;
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for (unsigned Size : DWARFContext::getSupportedAddressSizes())
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Stream << LS << Size;
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Stream << ')';
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return make_error<StringError>(Buffer, EC);
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}
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std::shared_ptr<DWARFContext> getDWOContext(StringRef AbsolutePath);
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function_ref<void(Error)> getRecoverableErrorHandler() {
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return RecoverableErrorHandler;
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}
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function_ref<void(Error)> getWarningHandler() { return WarningHandler; }
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enum class ProcessDebugRelocations { Process, Ignore };
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static std::unique_ptr<DWARFContext>
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create(const object::ObjectFile &Obj,
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ProcessDebugRelocations RelocAction = ProcessDebugRelocations::Process,
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const LoadedObjectInfo *L = nullptr, std::string DWPName = "",
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std::function<void(Error)> RecoverableErrorHandler =
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WithColor::defaultErrorHandler,
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std::function<void(Error)> WarningHandler =
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WithColor::defaultWarningHandler,
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bool ThreadSafe = false);
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static std::unique_ptr<DWARFContext>
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create(const StringMap<std::unique_ptr<MemoryBuffer>> &Sections,
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uint8_t AddrSize, bool isLittleEndian = sys::IsLittleEndianHost,
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std::function<void(Error)> RecoverableErrorHandler =
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WithColor::defaultErrorHandler,
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std::function<void(Error)> WarningHandler =
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WithColor::defaultWarningHandler,
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bool ThreadSafe = false);
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/// Get address size from CUs.
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/// TODO: refactor compile_units() to make this const.
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uint8_t getCUAddrSize();
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Triple::ArchType getArch() const {
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return getDWARFObj().getFile()->getArch();
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}
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/// Return the compile unit which contains instruction with provided
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/// address.
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/// TODO: change input parameter from "uint64_t Address"
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/// into "SectionedAddress Address"
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DWARFCompileUnit *getCompileUnitForCodeAddress(uint64_t Address);
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/// Return the compile unit which contains data with the provided address.
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/// Note: This is more expensive than `getCompileUnitForAddress`, as if
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/// `Address` isn't found in the CU ranges (which is cheap), then it falls
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/// back to an expensive O(n) walk of all CU's looking for data that spans the
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/// address.
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/// TODO: change input parameter from "uint64_t Address" into
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/// "SectionedAddress Address"
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DWARFCompileUnit *getCompileUnitForDataAddress(uint64_t Address);
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/// Returns whether CU/TU should be populated manually. TU Index populated
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/// manually only for DWARF5.
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bool getParseCUTUIndexManually() const { return ParseCUTUIndexManually; }
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/// Sets whether CU/TU should be populated manually. TU Index populated
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/// manually only for DWARF5.
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void setParseCUTUIndexManually(bool PCUTU) { ParseCUTUIndexManually = PCUTU; }
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private:
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void addLocalsForDie(DWARFCompileUnit *CU, DWARFDie Subprogram, DWARFDie Die,
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std::vector<DILocal> &Result);
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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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