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840 lines
30 KiB
C++
840 lines
30 KiB
C++
//===- llvm/CodeGen/AsmPrinter/AccelTable.cpp - Accelerator Tables --------===//
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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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//
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// This file contains support for writing accelerator tables.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/CodeGen/AccelTable.h"
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#include "DwarfCompileUnit.h"
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#include "DwarfUnit.h"
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#include "llvm/ADT/DenseSet.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/Twine.h"
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#include "llvm/BinaryFormat/Dwarf.h"
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#include "llvm/CodeGen/AsmPrinter.h"
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#include "llvm/CodeGen/DIE.h"
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#include "llvm/MC/MCStreamer.h"
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#include "llvm/MC/MCSymbol.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/Target/TargetLoweringObjectFile.h"
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#include <algorithm>
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#include <cstddef>
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#include <cstdint>
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#include <limits>
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#include <vector>
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using namespace llvm;
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void AccelTableBase::computeBucketCount() {
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SmallVector<uint32_t, 0> Uniques;
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Uniques.reserve(Entries.size());
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for (const auto &E : Entries)
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Uniques.push_back(E.second.HashValue);
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llvm::sort(Uniques);
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UniqueHashCount = llvm::unique(Uniques) - Uniques.begin();
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BucketCount = dwarf::getDebugNamesBucketCount(UniqueHashCount);
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}
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void AccelTableBase::finalize(AsmPrinter *Asm, StringRef Prefix) {
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// Create the individual hash data outputs.
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for (auto &E : Entries) {
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// Unique the entries.
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llvm::stable_sort(E.second.Values,
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[](const AccelTableData *A, const AccelTableData *B) {
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return *A < *B;
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});
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E.second.Values.erase(llvm::unique(E.second.Values), E.second.Values.end());
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}
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// Figure out how many buckets we need, then compute the bucket contents and
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// the final ordering. The hashes and offsets can be emitted by walking these
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// data structures. We add temporary symbols to the data so they can be
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// referenced when emitting the offsets.
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computeBucketCount();
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// Compute bucket contents and final ordering.
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Buckets.resize(BucketCount);
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for (auto &E : Entries) {
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uint32_t Bucket = E.second.HashValue % BucketCount;
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Buckets[Bucket].push_back(&E.second);
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E.second.Sym = Asm->createTempSymbol(Prefix);
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}
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// Sort the contents of the buckets by hash value so that hash collisions end
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// up together. Stable sort makes testing easier and doesn't cost much more.
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for (auto &Bucket : Buckets)
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llvm::stable_sort(Bucket, [](HashData *LHS, HashData *RHS) {
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return LHS->HashValue < RHS->HashValue;
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});
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}
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namespace {
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/// Base class for writing out Accelerator tables. It holds the common
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/// functionality for the two Accelerator table types.
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class AccelTableWriter {
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protected:
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AsmPrinter *const Asm; ///< Destination.
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const AccelTableBase &Contents; ///< Data to emit.
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/// Controls whether to emit duplicate hash and offset table entries for names
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/// with identical hashes. Apple tables don't emit duplicate entries, DWARF v5
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/// tables do.
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const bool SkipIdenticalHashes;
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void emitHashes() const;
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/// Emit offsets to lists of entries with identical names. The offsets are
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/// relative to the Base argument.
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void emitOffsets(const MCSymbol *Base) const;
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public:
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AccelTableWriter(AsmPrinter *Asm, const AccelTableBase &Contents,
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bool SkipIdenticalHashes)
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: Asm(Asm), Contents(Contents), SkipIdenticalHashes(SkipIdenticalHashes) {
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}
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};
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class AppleAccelTableWriter : public AccelTableWriter {
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using Atom = AppleAccelTableData::Atom;
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/// The fixed header of an Apple Accelerator Table.
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struct Header {
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uint32_t Magic = MagicHash;
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uint16_t Version = 1;
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uint16_t HashFunction = dwarf::DW_hash_function_djb;
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uint32_t BucketCount;
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uint32_t HashCount;
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uint32_t HeaderDataLength;
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/// 'HASH' magic value to detect endianness.
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static const uint32_t MagicHash = 0x48415348;
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Header(uint32_t BucketCount, uint32_t UniqueHashCount, uint32_t DataLength)
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: BucketCount(BucketCount), HashCount(UniqueHashCount),
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HeaderDataLength(DataLength) {}
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void emit(AsmPrinter *Asm) const;
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#ifndef NDEBUG
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void print(raw_ostream &OS) const;
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void dump() const { print(dbgs()); }
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#endif
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};
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/// The HeaderData describes the structure of an Apple accelerator table
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/// through a list of Atoms.
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struct HeaderData {
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/// In the case of data that is referenced via DW_FORM_ref_* the offset
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/// base is used to describe the offset for all forms in the list of atoms.
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uint32_t DieOffsetBase;
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const SmallVector<Atom, 4> Atoms;
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HeaderData(ArrayRef<Atom> AtomList, uint32_t Offset = 0)
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: DieOffsetBase(Offset), Atoms(AtomList) {}
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void emit(AsmPrinter *Asm) const;
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#ifndef NDEBUG
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void print(raw_ostream &OS) const;
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void dump() const { print(dbgs()); }
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#endif
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};
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Header Header;
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HeaderData HeaderData;
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const MCSymbol *SecBegin;
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void emitBuckets() const;
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void emitData() const;
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public:
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AppleAccelTableWriter(AsmPrinter *Asm, const AccelTableBase &Contents,
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ArrayRef<Atom> Atoms, const MCSymbol *SecBegin)
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: AccelTableWriter(Asm, Contents, true),
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Header(Contents.getBucketCount(), Contents.getUniqueHashCount(),
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8 + (Atoms.size() * 4)),
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HeaderData(Atoms), SecBegin(SecBegin) {}
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void emit() const;
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#ifndef NDEBUG
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void print(raw_ostream &OS) const;
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void dump() const { print(dbgs()); }
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#endif
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};
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/// Class responsible for emitting a DWARF v5 Accelerator Table. The only
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/// public function is emit(), which performs the actual emission.
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///
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/// A callback abstracts the logic to provide a CU index for a given entry.
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class Dwarf5AccelTableWriter : public AccelTableWriter {
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struct Header {
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uint16_t Version = 5;
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uint16_t Padding = 0;
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uint32_t CompUnitCount;
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uint32_t LocalTypeUnitCount = 0;
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uint32_t ForeignTypeUnitCount = 0;
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uint32_t BucketCount = 0;
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uint32_t NameCount = 0;
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uint32_t AbbrevTableSize = 0;
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uint32_t AugmentationStringSize = sizeof(AugmentationString);
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char AugmentationString[8] = {'L', 'L', 'V', 'M', '0', '7', '0', '0'};
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Header(uint32_t CompUnitCount, uint32_t LocalTypeUnitCount,
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uint32_t ForeignTypeUnitCount, uint32_t BucketCount,
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uint32_t NameCount)
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: CompUnitCount(CompUnitCount), LocalTypeUnitCount(LocalTypeUnitCount),
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ForeignTypeUnitCount(ForeignTypeUnitCount), BucketCount(BucketCount),
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NameCount(NameCount) {}
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void emit(Dwarf5AccelTableWriter &Ctx);
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};
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Header Header;
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/// FoldingSet that uniques the abbreviations.
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FoldingSet<DebugNamesAbbrev> AbbreviationsSet;
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/// Vector containing DebugNames abbreviations for iteration in order.
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SmallVector<DebugNamesAbbrev *, 5> AbbreviationsVector;
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/// The bump allocator to use when creating DIEAbbrev objects in the uniqued
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/// storage container.
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BumpPtrAllocator Alloc;
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ArrayRef<std::variant<MCSymbol *, uint64_t>> CompUnits;
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ArrayRef<std::variant<MCSymbol *, uint64_t>> TypeUnits;
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llvm::function_ref<std::optional<DWARF5AccelTable::UnitIndexAndEncoding>(
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const DWARF5AccelTableData &)>
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getIndexForEntry;
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MCSymbol *ContributionEnd = nullptr;
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MCSymbol *AbbrevStart = Asm->createTempSymbol("names_abbrev_start");
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MCSymbol *AbbrevEnd = Asm->createTempSymbol("names_abbrev_end");
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MCSymbol *EntryPool = Asm->createTempSymbol("names_entries");
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// Indicates if this module is built with Split Dwarf enabled.
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bool IsSplitDwarf = false;
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/// Stores the DIE offsets which are indexed by this table.
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DenseSet<OffsetAndUnitID> IndexedOffsets;
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void populateAbbrevsMap();
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void emitCUList() const;
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void emitTUList() const;
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void emitBuckets() const;
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void emitStringOffsets() const;
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void emitAbbrevs() const;
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void emitEntry(
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const DWARF5AccelTableData &Entry,
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const DenseMap<OffsetAndUnitID, MCSymbol *> &DIEOffsetToAccelEntryLabel,
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DenseSet<MCSymbol *> &EmittedAccelEntrySymbols);
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void emitData();
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public:
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Dwarf5AccelTableWriter(
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AsmPrinter *Asm, const AccelTableBase &Contents,
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ArrayRef<std::variant<MCSymbol *, uint64_t>> CompUnits,
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ArrayRef<std::variant<MCSymbol *, uint64_t>> TypeUnits,
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llvm::function_ref<std::optional<DWARF5AccelTable::UnitIndexAndEncoding>(
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const DWARF5AccelTableData &)>
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getIndexForEntry,
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bool IsSplitDwarf);
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~Dwarf5AccelTableWriter() {
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for (DebugNamesAbbrev *Abbrev : AbbreviationsVector)
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Abbrev->~DebugNamesAbbrev();
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}
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void emit();
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};
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} // namespace
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void AccelTableWriter::emitHashes() const {
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uint64_t PrevHash = std::numeric_limits<uint64_t>::max();
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unsigned BucketIdx = 0;
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for (const auto &Bucket : Contents.getBuckets()) {
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for (const auto &Hash : Bucket) {
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uint32_t HashValue = Hash->HashValue;
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if (SkipIdenticalHashes && PrevHash == HashValue)
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continue;
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Asm->OutStreamer->AddComment("Hash in Bucket " + Twine(BucketIdx));
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Asm->emitInt32(HashValue);
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PrevHash = HashValue;
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}
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BucketIdx++;
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}
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}
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void AccelTableWriter::emitOffsets(const MCSymbol *Base) const {
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const auto &Buckets = Contents.getBuckets();
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uint64_t PrevHash = std::numeric_limits<uint64_t>::max();
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for (size_t i = 0, e = Buckets.size(); i < e; ++i) {
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for (auto *Hash : Buckets[i]) {
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uint32_t HashValue = Hash->HashValue;
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if (SkipIdenticalHashes && PrevHash == HashValue)
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continue;
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PrevHash = HashValue;
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Asm->OutStreamer->AddComment("Offset in Bucket " + Twine(i));
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Asm->emitLabelDifference(Hash->Sym, Base, Asm->getDwarfOffsetByteSize());
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}
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}
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}
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void AppleAccelTableWriter::Header::emit(AsmPrinter *Asm) const {
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Asm->OutStreamer->AddComment("Header Magic");
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Asm->emitInt32(Magic);
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Asm->OutStreamer->AddComment("Header Version");
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Asm->emitInt16(Version);
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Asm->OutStreamer->AddComment("Header Hash Function");
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Asm->emitInt16(HashFunction);
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Asm->OutStreamer->AddComment("Header Bucket Count");
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Asm->emitInt32(BucketCount);
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Asm->OutStreamer->AddComment("Header Hash Count");
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Asm->emitInt32(HashCount);
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Asm->OutStreamer->AddComment("Header Data Length");
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Asm->emitInt32(HeaderDataLength);
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}
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void AppleAccelTableWriter::HeaderData::emit(AsmPrinter *Asm) const {
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Asm->OutStreamer->AddComment("HeaderData Die Offset Base");
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Asm->emitInt32(DieOffsetBase);
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Asm->OutStreamer->AddComment("HeaderData Atom Count");
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Asm->emitInt32(Atoms.size());
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for (const Atom &A : Atoms) {
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Asm->OutStreamer->AddComment(dwarf::AtomTypeString(A.Type));
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Asm->emitInt16(A.Type);
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Asm->OutStreamer->AddComment(dwarf::FormEncodingString(A.Form));
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Asm->emitInt16(A.Form);
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}
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}
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void AppleAccelTableWriter::emitBuckets() const {
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const auto &Buckets = Contents.getBuckets();
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unsigned index = 0;
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for (size_t i = 0, e = Buckets.size(); i < e; ++i) {
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Asm->OutStreamer->AddComment("Bucket " + Twine(i));
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if (!Buckets[i].empty())
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Asm->emitInt32(index);
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else
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Asm->emitInt32(std::numeric_limits<uint32_t>::max());
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// Buckets point in the list of hashes, not to the data. Do not increment
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// the index multiple times in case of hash collisions.
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uint64_t PrevHash = std::numeric_limits<uint64_t>::max();
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for (auto *HD : Buckets[i]) {
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uint32_t HashValue = HD->HashValue;
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if (PrevHash != HashValue)
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++index;
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PrevHash = HashValue;
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}
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}
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}
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void AppleAccelTableWriter::emitData() const {
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const auto &Buckets = Contents.getBuckets();
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for (const AccelTableBase::HashList &Bucket : Buckets) {
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uint64_t PrevHash = std::numeric_limits<uint64_t>::max();
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for (const auto &Hash : Bucket) {
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// Terminate the previous entry if there is no hash collision with the
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// current one.
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if (PrevHash != std::numeric_limits<uint64_t>::max() &&
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PrevHash != Hash->HashValue)
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Asm->emitInt32(0);
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// Remember to emit the label for our offset.
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Asm->OutStreamer->emitLabel(Hash->Sym);
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Asm->OutStreamer->AddComment(Hash->Name.getString());
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Asm->emitDwarfStringOffset(Hash->Name);
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Asm->OutStreamer->AddComment("Num DIEs");
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Asm->emitInt32(Hash->Values.size());
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for (const auto *V : Hash->getValues<const AppleAccelTableData *>())
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V->emit(Asm);
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PrevHash = Hash->HashValue;
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}
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// Emit the final end marker for the bucket.
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if (!Bucket.empty())
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Asm->emitInt32(0);
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}
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}
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void AppleAccelTableWriter::emit() const {
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Header.emit(Asm);
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HeaderData.emit(Asm);
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emitBuckets();
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emitHashes();
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emitOffsets(SecBegin);
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emitData();
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}
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DWARF5AccelTableData::DWARF5AccelTableData(const DIE &Die,
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const uint32_t UnitID,
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const bool IsTU)
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: OffsetVal(&Die), DieTag(Die.getTag()), AbbrevNumber(0), IsTU(IsTU),
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UnitID(UnitID) {}
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void Dwarf5AccelTableWriter::Header::emit(Dwarf5AccelTableWriter &Ctx) {
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assert(CompUnitCount > 0 && "Index must have at least one CU.");
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AsmPrinter *Asm = Ctx.Asm;
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Ctx.ContributionEnd =
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Asm->emitDwarfUnitLength("names", "Header: unit length");
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Asm->OutStreamer->AddComment("Header: version");
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Asm->emitInt16(Version);
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Asm->OutStreamer->AddComment("Header: padding");
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Asm->emitInt16(Padding);
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Asm->OutStreamer->AddComment("Header: compilation unit count");
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Asm->emitInt32(CompUnitCount);
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Asm->OutStreamer->AddComment("Header: local type unit count");
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Asm->emitInt32(LocalTypeUnitCount);
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Asm->OutStreamer->AddComment("Header: foreign type unit count");
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Asm->emitInt32(ForeignTypeUnitCount);
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Asm->OutStreamer->AddComment("Header: bucket count");
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Asm->emitInt32(BucketCount);
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Asm->OutStreamer->AddComment("Header: name count");
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Asm->emitInt32(NameCount);
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Asm->OutStreamer->AddComment("Header: abbreviation table size");
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Asm->emitLabelDifference(Ctx.AbbrevEnd, Ctx.AbbrevStart, sizeof(uint32_t));
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Asm->OutStreamer->AddComment("Header: augmentation string size");
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assert(AugmentationStringSize % 4 == 0);
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Asm->emitInt32(AugmentationStringSize);
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Asm->OutStreamer->AddComment("Header: augmentation string");
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Asm->OutStreamer->emitBytes({AugmentationString, AugmentationStringSize});
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}
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std::optional<uint64_t>
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DWARF5AccelTableData::getDefiningParentDieOffset(const DIE &Die) {
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if (auto *Parent = Die.getParent();
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Parent && !Parent->findAttribute(dwarf::Attribute::DW_AT_declaration))
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return Parent->getOffset();
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return {};
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}
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static std::optional<dwarf::Form>
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getFormForIdxParent(const DenseSet<OffsetAndUnitID> &IndexedOffsets,
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std::optional<OffsetAndUnitID> ParentOffset) {
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// No parent information
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if (!ParentOffset)
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return std::nullopt;
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// Parent is indexed by this table.
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if (IndexedOffsets.contains(*ParentOffset))
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return dwarf::Form::DW_FORM_ref4;
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// Parent is not indexed by this table.
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return dwarf::Form::DW_FORM_flag_present;
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}
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void DebugNamesAbbrev::Profile(FoldingSetNodeID &ID) const {
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ID.AddInteger(DieTag);
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for (const DebugNamesAbbrev::AttributeEncoding &Enc : AttrVect) {
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ID.AddInteger(Enc.Index);
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ID.AddInteger(Enc.Form);
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}
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}
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void Dwarf5AccelTableWriter::populateAbbrevsMap() {
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for (auto &Bucket : Contents.getBuckets()) {
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for (auto *Hash : Bucket) {
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for (auto *Value : Hash->getValues<DWARF5AccelTableData *>()) {
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std::optional<DWARF5AccelTable::UnitIndexAndEncoding> EntryRet =
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getIndexForEntry(*Value);
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std::optional<dwarf::Form> MaybeParentForm = getFormForIdxParent(
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IndexedOffsets, Value->getParentDieOffsetAndUnitID());
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DebugNamesAbbrev Abbrev(Value->getDieTag());
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if (EntryRet)
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Abbrev.addAttribute(EntryRet->Encoding);
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Abbrev.addAttribute({dwarf::DW_IDX_die_offset, dwarf::DW_FORM_ref4});
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if (MaybeParentForm)
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Abbrev.addAttribute({dwarf::DW_IDX_parent, *MaybeParentForm});
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FoldingSetNodeID ID;
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Abbrev.Profile(ID);
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void *InsertPos;
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if (DebugNamesAbbrev *Existing =
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AbbreviationsSet.FindNodeOrInsertPos(ID, InsertPos)) {
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Value->setAbbrevNumber(Existing->getNumber());
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continue;
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}
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DebugNamesAbbrev *NewAbbrev =
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new (Alloc) DebugNamesAbbrev(std::move(Abbrev));
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AbbreviationsVector.push_back(NewAbbrev);
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NewAbbrev->setNumber(AbbreviationsVector.size());
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AbbreviationsSet.InsertNode(NewAbbrev, InsertPos);
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Value->setAbbrevNumber(NewAbbrev->getNumber());
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}
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}
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}
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}
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void Dwarf5AccelTableWriter::emitCUList() const {
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for (const auto &CU : enumerate(CompUnits)) {
|
|
Asm->OutStreamer->AddComment("Compilation unit " + Twine(CU.index()));
|
|
if (std::holds_alternative<MCSymbol *>(CU.value()))
|
|
Asm->emitDwarfSymbolReference(std::get<MCSymbol *>(CU.value()));
|
|
else
|
|
Asm->emitDwarfLengthOrOffset(std::get<uint64_t>(CU.value()));
|
|
}
|
|
}
|
|
|
|
void Dwarf5AccelTableWriter::emitTUList() const {
|
|
for (const auto &TU : enumerate(TypeUnits)) {
|
|
Asm->OutStreamer->AddComment("Type unit " + Twine(TU.index()));
|
|
if (std::holds_alternative<MCSymbol *>(TU.value()))
|
|
Asm->emitDwarfSymbolReference(std::get<MCSymbol *>(TU.value()));
|
|
else if (IsSplitDwarf)
|
|
Asm->emitInt64(std::get<uint64_t>(TU.value()));
|
|
else
|
|
Asm->emitDwarfLengthOrOffset(std::get<uint64_t>(TU.value()));
|
|
}
|
|
}
|
|
|
|
void Dwarf5AccelTableWriter::emitBuckets() const {
|
|
uint32_t Index = 1;
|
|
for (const auto &Bucket : enumerate(Contents.getBuckets())) {
|
|
Asm->OutStreamer->AddComment("Bucket " + Twine(Bucket.index()));
|
|
Asm->emitInt32(Bucket.value().empty() ? 0 : Index);
|
|
Index += Bucket.value().size();
|
|
}
|
|
}
|
|
|
|
void Dwarf5AccelTableWriter::emitStringOffsets() const {
|
|
for (const auto &Bucket : enumerate(Contents.getBuckets())) {
|
|
for (auto *Hash : Bucket.value()) {
|
|
DwarfStringPoolEntryRef String = Hash->Name;
|
|
Asm->OutStreamer->AddComment("String in Bucket " + Twine(Bucket.index()) +
|
|
": " + String.getString());
|
|
Asm->emitDwarfStringOffset(String);
|
|
}
|
|
}
|
|
}
|
|
|
|
void Dwarf5AccelTableWriter::emitAbbrevs() const {
|
|
Asm->OutStreamer->emitLabel(AbbrevStart);
|
|
for (const DebugNamesAbbrev *Abbrev : AbbreviationsVector) {
|
|
Asm->OutStreamer->AddComment("Abbrev code");
|
|
Asm->emitULEB128(Abbrev->getNumber());
|
|
Asm->OutStreamer->AddComment(dwarf::TagString(Abbrev->getDieTag()));
|
|
Asm->emitULEB128(Abbrev->getDieTag());
|
|
for (const DebugNamesAbbrev::AttributeEncoding &AttrEnc :
|
|
Abbrev->getAttributes()) {
|
|
Asm->emitULEB128(AttrEnc.Index, dwarf::IndexString(AttrEnc.Index).data());
|
|
Asm->emitULEB128(AttrEnc.Form,
|
|
dwarf::FormEncodingString(AttrEnc.Form).data());
|
|
}
|
|
Asm->emitULEB128(0, "End of abbrev");
|
|
Asm->emitULEB128(0, "End of abbrev");
|
|
}
|
|
Asm->emitULEB128(0, "End of abbrev list");
|
|
Asm->OutStreamer->emitLabel(AbbrevEnd);
|
|
}
|
|
|
|
void Dwarf5AccelTableWriter::emitEntry(
|
|
const DWARF5AccelTableData &Entry,
|
|
const DenseMap<OffsetAndUnitID, MCSymbol *> &DIEOffsetToAccelEntryLabel,
|
|
DenseSet<MCSymbol *> &EmittedAccelEntrySymbols) {
|
|
unsigned AbbrevIndex = Entry.getAbbrevNumber() - 1;
|
|
assert(AbbrevIndex < AbbreviationsVector.size() &&
|
|
"Entry abbrev index is outside of abbreviations vector range.");
|
|
DebugNamesAbbrev *Abbrev = AbbreviationsVector[AbbrevIndex];
|
|
std::optional<DWARF5AccelTable::UnitIndexAndEncoding> EntryRet =
|
|
getIndexForEntry(Entry);
|
|
std::optional<OffsetAndUnitID> MaybeParentOffset =
|
|
Entry.getParentDieOffsetAndUnitID();
|
|
auto EntrySymbolIt =
|
|
DIEOffsetToAccelEntryLabel.find(Entry.getDieOffsetAndUnitID());
|
|
assert(EntrySymbolIt != DIEOffsetToAccelEntryLabel.end());
|
|
MCSymbol *EntrySymbol = EntrySymbolIt->getSecond();
|
|
|
|
// Emit the label for this Entry, so that IDX_parents may refer to it.
|
|
// Note: a DIE may have multiple accelerator Entries; this check avoids
|
|
// creating/emitting multiple labels for the same DIE.
|
|
if (EmittedAccelEntrySymbols.insert(EntrySymbol).second)
|
|
Asm->OutStreamer->emitLabel(EntrySymbol);
|
|
|
|
Asm->emitULEB128(Entry.getAbbrevNumber(), "Abbreviation code");
|
|
|
|
for (const DebugNamesAbbrev::AttributeEncoding &AttrEnc :
|
|
Abbrev->getAttributes()) {
|
|
Asm->OutStreamer->AddComment(dwarf::IndexString(AttrEnc.Index));
|
|
switch (AttrEnc.Index) {
|
|
case dwarf::DW_IDX_compile_unit:
|
|
case dwarf::DW_IDX_type_unit: {
|
|
DIEInteger ID(EntryRet->Index);
|
|
ID.emitValue(Asm, AttrEnc.Form);
|
|
break;
|
|
}
|
|
case dwarf::DW_IDX_die_offset:
|
|
assert(AttrEnc.Form == dwarf::DW_FORM_ref4);
|
|
Asm->emitInt32(Entry.getDieOffset());
|
|
break;
|
|
case dwarf::DW_IDX_parent: {
|
|
if (AttrEnc.Form == dwarf::Form::DW_FORM_flag_present)
|
|
break;
|
|
auto ParentSymbolIt = DIEOffsetToAccelEntryLabel.find(*MaybeParentOffset);
|
|
assert(ParentSymbolIt != DIEOffsetToAccelEntryLabel.end());
|
|
Asm->emitLabelDifference(ParentSymbolIt->getSecond(), EntryPool, 4);
|
|
break;
|
|
}
|
|
default:
|
|
llvm_unreachable("Unexpected index attribute!");
|
|
}
|
|
}
|
|
}
|
|
|
|
void Dwarf5AccelTableWriter::emitData() {
|
|
DenseMap<OffsetAndUnitID, MCSymbol *> DIEOffsetToAccelEntryLabel;
|
|
|
|
for (OffsetAndUnitID Offset : IndexedOffsets)
|
|
DIEOffsetToAccelEntryLabel.insert({Offset, Asm->createTempSymbol("")});
|
|
|
|
Asm->OutStreamer->emitLabel(EntryPool);
|
|
DenseSet<MCSymbol *> EmittedAccelEntrySymbols;
|
|
for (auto &Bucket : Contents.getBuckets()) {
|
|
for (auto *Hash : Bucket) {
|
|
// Remember to emit the label for our offset.
|
|
Asm->OutStreamer->emitLabel(Hash->Sym);
|
|
for (const auto *Value : Hash->getValues<DWARF5AccelTableData *>())
|
|
emitEntry(*Value, DIEOffsetToAccelEntryLabel, EmittedAccelEntrySymbols);
|
|
Asm->OutStreamer->AddComment("End of list: " + Hash->Name.getString());
|
|
Asm->emitInt8(0);
|
|
}
|
|
}
|
|
}
|
|
|
|
Dwarf5AccelTableWriter::Dwarf5AccelTableWriter(
|
|
AsmPrinter *Asm, const AccelTableBase &Contents,
|
|
ArrayRef<std::variant<MCSymbol *, uint64_t>> CompUnits,
|
|
ArrayRef<std::variant<MCSymbol *, uint64_t>> TypeUnits,
|
|
llvm::function_ref<std::optional<DWARF5AccelTable::UnitIndexAndEncoding>(
|
|
const DWARF5AccelTableData &)>
|
|
getIndexForEntry,
|
|
bool IsSplitDwarf)
|
|
: AccelTableWriter(Asm, Contents, false),
|
|
Header(CompUnits.size(), IsSplitDwarf ? 0 : TypeUnits.size(),
|
|
IsSplitDwarf ? TypeUnits.size() : 0, Contents.getBucketCount(),
|
|
Contents.getUniqueNameCount()),
|
|
CompUnits(CompUnits), TypeUnits(TypeUnits),
|
|
getIndexForEntry(std::move(getIndexForEntry)),
|
|
IsSplitDwarf(IsSplitDwarf) {
|
|
|
|
for (auto &Bucket : Contents.getBuckets())
|
|
for (auto *Hash : Bucket)
|
|
for (auto *Value : Hash->getValues<DWARF5AccelTableData *>())
|
|
IndexedOffsets.insert(Value->getDieOffsetAndUnitID());
|
|
|
|
populateAbbrevsMap();
|
|
}
|
|
|
|
void Dwarf5AccelTableWriter::emit() {
|
|
Header.emit(*this);
|
|
emitCUList();
|
|
emitTUList();
|
|
emitBuckets();
|
|
emitHashes();
|
|
emitStringOffsets();
|
|
emitOffsets(EntryPool);
|
|
emitAbbrevs();
|
|
emitData();
|
|
Asm->OutStreamer->emitValueToAlignment(Align(4), 0);
|
|
Asm->OutStreamer->emitLabel(ContributionEnd);
|
|
}
|
|
|
|
void llvm::emitAppleAccelTableImpl(AsmPrinter *Asm, AccelTableBase &Contents,
|
|
StringRef Prefix, const MCSymbol *SecBegin,
|
|
ArrayRef<AppleAccelTableData::Atom> Atoms) {
|
|
Contents.finalize(Asm, Prefix);
|
|
AppleAccelTableWriter(Asm, Contents, Atoms, SecBegin).emit();
|
|
}
|
|
|
|
void llvm::emitDWARF5AccelTable(
|
|
AsmPrinter *Asm, DWARF5AccelTable &Contents, const DwarfDebug &DD,
|
|
ArrayRef<std::unique_ptr<DwarfCompileUnit>> CUs) {
|
|
TUVectorTy TUSymbols = Contents.getTypeUnitsSymbols();
|
|
std::vector<std::variant<MCSymbol *, uint64_t>> CompUnits;
|
|
std::vector<std::variant<MCSymbol *, uint64_t>> TypeUnits;
|
|
SmallVector<unsigned, 1> CUIndex(CUs.size());
|
|
DenseMap<unsigned, unsigned> TUIndex(TUSymbols.size());
|
|
int CUCount = 0;
|
|
int TUCount = 0;
|
|
for (const auto &CU : enumerate(CUs)) {
|
|
switch (CU.value()->getCUNode()->getNameTableKind()) {
|
|
case DICompileUnit::DebugNameTableKind::Default:
|
|
case DICompileUnit::DebugNameTableKind::Apple:
|
|
break;
|
|
default:
|
|
continue;
|
|
}
|
|
CUIndex[CU.index()] = CUCount++;
|
|
assert(CU.index() == CU.value()->getUniqueID());
|
|
const DwarfCompileUnit *MainCU =
|
|
DD.useSplitDwarf() ? CU.value()->getSkeleton() : CU.value().get();
|
|
CompUnits.push_back(MainCU->getLabelBegin());
|
|
}
|
|
|
|
for (const auto &TU : TUSymbols) {
|
|
TUIndex[TU.UniqueID] = TUCount++;
|
|
if (DD.useSplitDwarf())
|
|
TypeUnits.push_back(std::get<uint64_t>(TU.LabelOrSignature));
|
|
else
|
|
TypeUnits.push_back(std::get<MCSymbol *>(TU.LabelOrSignature));
|
|
}
|
|
|
|
if (CompUnits.empty())
|
|
return;
|
|
|
|
Asm->OutStreamer->switchSection(
|
|
Asm->getObjFileLowering().getDwarfDebugNamesSection());
|
|
|
|
Contents.finalize(Asm, "names");
|
|
dwarf::Form CUIndexForm =
|
|
DIEInteger::BestForm(/*IsSigned*/ false, CompUnits.size() - 1);
|
|
dwarf::Form TUIndexForm =
|
|
DIEInteger::BestForm(/*IsSigned*/ false, TypeUnits.size() - 1);
|
|
Dwarf5AccelTableWriter(
|
|
Asm, Contents, CompUnits, TypeUnits,
|
|
[&](const DWARF5AccelTableData &Entry)
|
|
-> std::optional<DWARF5AccelTable::UnitIndexAndEncoding> {
|
|
if (Entry.isTU())
|
|
return {{TUIndex[Entry.getUnitID()],
|
|
{dwarf::DW_IDX_type_unit, TUIndexForm}}};
|
|
if (CUIndex.size() > 1)
|
|
return {{CUIndex[Entry.getUnitID()],
|
|
{dwarf::DW_IDX_compile_unit, CUIndexForm}}};
|
|
return std::nullopt;
|
|
},
|
|
DD.useSplitDwarf())
|
|
.emit();
|
|
}
|
|
|
|
void DWARF5AccelTable::addTypeUnitSymbol(DwarfTypeUnit &U) {
|
|
TUSymbolsOrHashes.push_back({U.getLabelBegin(), U.getUniqueID()});
|
|
}
|
|
|
|
void DWARF5AccelTable::addTypeUnitSignature(DwarfTypeUnit &U) {
|
|
TUSymbolsOrHashes.push_back({U.getTypeSignature(), U.getUniqueID()});
|
|
}
|
|
|
|
void llvm::emitDWARF5AccelTable(
|
|
AsmPrinter *Asm, DWARF5AccelTable &Contents,
|
|
ArrayRef<std::variant<MCSymbol *, uint64_t>> CUs,
|
|
llvm::function_ref<std::optional<DWARF5AccelTable::UnitIndexAndEncoding>(
|
|
const DWARF5AccelTableData &)>
|
|
getIndexForEntry) {
|
|
std::vector<std::variant<MCSymbol *, uint64_t>> TypeUnits;
|
|
Contents.finalize(Asm, "names");
|
|
Dwarf5AccelTableWriter(Asm, Contents, CUs, TypeUnits, getIndexForEntry, false)
|
|
.emit();
|
|
}
|
|
|
|
void AppleAccelTableOffsetData::emit(AsmPrinter *Asm) const {
|
|
assert(Die.getDebugSectionOffset() <= UINT32_MAX &&
|
|
"The section offset exceeds the limit.");
|
|
Asm->emitInt32(Die.getDebugSectionOffset());
|
|
}
|
|
|
|
void AppleAccelTableTypeData::emit(AsmPrinter *Asm) const {
|
|
assert(Die.getDebugSectionOffset() <= UINT32_MAX &&
|
|
"The section offset exceeds the limit.");
|
|
Asm->emitInt32(Die.getDebugSectionOffset());
|
|
Asm->emitInt16(Die.getTag());
|
|
Asm->emitInt8(0);
|
|
}
|
|
|
|
void AppleAccelTableStaticOffsetData::emit(AsmPrinter *Asm) const {
|
|
Asm->emitInt32(Offset);
|
|
}
|
|
|
|
void AppleAccelTableStaticTypeData::emit(AsmPrinter *Asm) const {
|
|
Asm->emitInt32(Offset);
|
|
Asm->emitInt16(Tag);
|
|
Asm->emitInt8(ObjCClassIsImplementation ? dwarf::DW_FLAG_type_implementation
|
|
: 0);
|
|
Asm->emitInt32(QualifiedNameHash);
|
|
}
|
|
|
|
constexpr AppleAccelTableData::Atom AppleAccelTableTypeData::Atoms[];
|
|
constexpr AppleAccelTableData::Atom AppleAccelTableOffsetData::Atoms[];
|
|
constexpr AppleAccelTableData::Atom AppleAccelTableStaticOffsetData::Atoms[];
|
|
constexpr AppleAccelTableData::Atom AppleAccelTableStaticTypeData::Atoms[];
|
|
|
|
#ifndef NDEBUG
|
|
void AppleAccelTableWriter::Header::print(raw_ostream &OS) const {
|
|
OS << "Magic: " << format("0x%x", Magic) << "\n"
|
|
<< "Version: " << Version << "\n"
|
|
<< "Hash Function: " << HashFunction << "\n"
|
|
<< "Bucket Count: " << BucketCount << "\n"
|
|
<< "Header Data Length: " << HeaderDataLength << "\n";
|
|
}
|
|
|
|
void AppleAccelTableData::Atom::print(raw_ostream &OS) const {
|
|
OS << "Type: " << dwarf::AtomTypeString(Type) << "\n"
|
|
<< "Form: " << dwarf::FormEncodingString(Form) << "\n";
|
|
}
|
|
|
|
void AppleAccelTableWriter::HeaderData::print(raw_ostream &OS) const {
|
|
OS << "DIE Offset Base: " << DieOffsetBase << "\n";
|
|
for (auto Atom : Atoms)
|
|
Atom.print(OS);
|
|
}
|
|
|
|
void AppleAccelTableWriter::print(raw_ostream &OS) const {
|
|
Header.print(OS);
|
|
HeaderData.print(OS);
|
|
Contents.print(OS);
|
|
SecBegin->print(OS, nullptr);
|
|
}
|
|
|
|
void AccelTableBase::HashData::print(raw_ostream &OS) const {
|
|
OS << "Name: " << Name.getString() << "\n";
|
|
OS << " Hash Value: " << format("0x%x", HashValue) << "\n";
|
|
OS << " Symbol: ";
|
|
if (Sym)
|
|
OS << *Sym;
|
|
else
|
|
OS << "<none>";
|
|
OS << "\n";
|
|
for (auto *Value : Values)
|
|
Value->print(OS);
|
|
}
|
|
|
|
void AccelTableBase::print(raw_ostream &OS) const {
|
|
// Print Content.
|
|
OS << "Entries: \n";
|
|
for (const auto &[Name, Data] : Entries) {
|
|
OS << "Name: " << Name << "\n";
|
|
for (auto *V : Data.Values)
|
|
V->print(OS);
|
|
}
|
|
|
|
OS << "Buckets and Hashes: \n";
|
|
for (const auto &Bucket : Buckets)
|
|
for (const auto &Hash : Bucket)
|
|
Hash->print(OS);
|
|
|
|
OS << "Data: \n";
|
|
for (const auto &E : Entries)
|
|
E.second.print(OS);
|
|
}
|
|
|
|
void DWARF5AccelTableData::print(raw_ostream &OS) const {
|
|
OS << " Offset: " << getDieOffset() << "\n";
|
|
OS << " Tag: " << dwarf::TagString(getDieTag()) << "\n";
|
|
}
|
|
|
|
void AppleAccelTableOffsetData::print(raw_ostream &OS) const {
|
|
OS << " Offset: " << Die.getOffset() << "\n";
|
|
}
|
|
|
|
void AppleAccelTableTypeData::print(raw_ostream &OS) const {
|
|
OS << " Offset: " << Die.getOffset() << "\n";
|
|
OS << " Tag: " << dwarf::TagString(Die.getTag()) << "\n";
|
|
}
|
|
|
|
void AppleAccelTableStaticOffsetData::print(raw_ostream &OS) const {
|
|
OS << " Static Offset: " << Offset << "\n";
|
|
}
|
|
|
|
void AppleAccelTableStaticTypeData::print(raw_ostream &OS) const {
|
|
OS << " Static Offset: " << Offset << "\n";
|
|
OS << " QualifiedNameHash: " << format("%x\n", QualifiedNameHash) << "\n";
|
|
OS << " Tag: " << dwarf::TagString(Tag) << "\n";
|
|
OS << " ObjCClassIsImplementation: "
|
|
<< (ObjCClassIsImplementation ? "true" : "false");
|
|
OS << "\n";
|
|
}
|
|
#endif
|