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Some targets (E.g. MachO/arm64) use relocations to fix some CFI record fields in the eh-frame section. When relocations are used the initial (pre-relocation) content of the eh-frame section can no longer be interpreted by following the eh-frame specification. This causes errors in the existing eh-frame parser. This patch moves eh-frame handling into two LinkGraph passes that are run after relocations have been parsed (but before they are applied). The first] pass breaks up blocks in the eh-frame section into per-CFI-record blocks, and the second parses blocks of (potentially multiple) CFI records and adds the appropriate edges to any CFI fields that do not have existing relocations. These passes can be run independently of one another. By handling eh-frame splitting/fixing with LinkGraph passes we can both re-use existing relocations for CFI record fields and avoid applying eh-frame fixups before parsing the section (which would complicate the linker and require extra temporary allocations of working memory).
202 lines
6.9 KiB
C++
202 lines
6.9 KiB
C++
//===----- MachOLinkGraphBuilder.h - MachO LinkGraph builder ----*- 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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//
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// Generic MachO LinkGraph building code.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LIB_EXECUTIONENGINE_JITLINK_MACHOLINKGRAPHBUILDER_H
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#define LIB_EXECUTIONENGINE_JITLINK_MACHOLINKGRAPHBUILDER_H
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#include "llvm/ExecutionEngine/JITLink/JITLink.h"
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#include "EHFrameSupportImpl.h"
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#include "JITLinkGeneric.h"
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#include "llvm/Object/MachO.h"
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#include <list>
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namespace llvm {
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namespace jitlink {
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class MachOLinkGraphBuilder {
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public:
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virtual ~MachOLinkGraphBuilder();
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Expected<std::unique_ptr<LinkGraph>> buildGraph();
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protected:
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struct NormalizedSymbol {
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friend class MachOLinkGraphBuilder;
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private:
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NormalizedSymbol(Optional<StringRef> Name, uint64_t Value, uint8_t Type,
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uint8_t Sect, uint16_t Desc, Linkage L, Scope S)
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: Name(Name), Value(Value), Type(Type), Sect(Sect), Desc(Desc), L(L),
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S(S) {
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assert((!Name || !Name->empty()) && "Name must be none or non-empty");
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}
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public:
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NormalizedSymbol(const NormalizedSymbol &) = delete;
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NormalizedSymbol &operator=(const NormalizedSymbol &) = delete;
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NormalizedSymbol(NormalizedSymbol &&) = delete;
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NormalizedSymbol &operator=(NormalizedSymbol &&) = delete;
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Optional<StringRef> Name;
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uint64_t Value = 0;
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uint8_t Type = 0;
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uint8_t Sect = 0;
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uint16_t Desc = 0;
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Linkage L = Linkage::Strong;
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Scope S = Scope::Default;
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Symbol *GraphSymbol = nullptr;
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};
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class NormalizedSection {
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friend class MachOLinkGraphBuilder;
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private:
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NormalizedSection() = default;
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public:
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Section *GraphSection = nullptr;
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uint64_t Address = 0;
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uint64_t Size = 0;
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uint64_t Alignment = 0;
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uint32_t Flags = 0;
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const char *Data = nullptr;
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};
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using SectionParserFunction = std::function<Error(NormalizedSection &S)>;
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MachOLinkGraphBuilder(const object::MachOObjectFile &Obj);
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LinkGraph &getGraph() const { return *G; }
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const object::MachOObjectFile &getObject() const { return Obj; }
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void addCustomSectionParser(StringRef SectionName,
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SectionParserFunction Parse);
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virtual Error addRelocations() = 0;
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/// Create a symbol.
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template <typename... ArgTs>
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NormalizedSymbol &createNormalizedSymbol(ArgTs &&... Args) {
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NormalizedSymbol *Sym = reinterpret_cast<NormalizedSymbol *>(
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Allocator.Allocate<NormalizedSymbol>());
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new (Sym) NormalizedSymbol(std::forward<ArgTs>(Args)...);
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return *Sym;
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}
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/// Index is zero-based (MachO section indexes are usually one-based) and
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/// assumed to be in-range. Client is responsible for checking.
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NormalizedSection &getSectionByIndex(unsigned Index) {
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auto I = IndexToSection.find(Index);
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assert(I != IndexToSection.end() && "No section recorded at index");
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return I->second;
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}
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/// Try to get the section at the given index. Will return an error if the
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/// given index is out of range, or if no section has been added for the given
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/// index.
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Expected<NormalizedSection &> findSectionByIndex(unsigned Index) {
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auto I = IndexToSection.find(Index);
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if (I == IndexToSection.end())
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return make_error<JITLinkError>("No section recorded for index " +
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formatv("{0:u}", Index));
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return I->second;
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}
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/// Try to get the symbol at the given index. Will return an error if the
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/// given index is out of range, or if no symbol has been added for the given
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/// index.
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Expected<NormalizedSymbol &> findSymbolByIndex(uint64_t Index) {
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if (Index >= IndexToSymbol.size())
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return make_error<JITLinkError>("Symbol index out of range");
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auto *Sym = IndexToSymbol[Index];
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if (!Sym)
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return make_error<JITLinkError>("No symbol at index " +
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formatv("{0:u}", Index));
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return *Sym;
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}
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/// Returns the symbol with the highest address not greater than the search
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/// address, or null if no such symbol exists.
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Symbol *getSymbolByAddress(JITTargetAddress Address) {
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auto I = AddrToCanonicalSymbol.upper_bound(Address);
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if (I == AddrToCanonicalSymbol.begin())
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return nullptr;
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return std::prev(I)->second;
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}
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/// Returns the symbol with the highest address not greater than the search
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/// address, or an error if no such symbol exists.
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Expected<Symbol &> findSymbolByAddress(JITTargetAddress Address) {
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auto *Sym = getSymbolByAddress(Address);
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if (Sym)
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if (Address < Sym->getAddress() + Sym->getSize())
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return *Sym;
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return make_error<JITLinkError>("No symbol covering address " +
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formatv("{0:x16}", Address));
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}
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static Linkage getLinkage(uint16_t Desc);
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static Scope getScope(StringRef Name, uint8_t Type);
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static bool isAltEntry(const NormalizedSymbol &NSym);
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private:
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static unsigned getPointerSize(const object::MachOObjectFile &Obj);
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static support::endianness getEndianness(const object::MachOObjectFile &Obj);
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void setCanonicalSymbol(Symbol &Sym) {
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auto *&CanonicalSymEntry = AddrToCanonicalSymbol[Sym.getAddress()];
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// There should be no symbol at this address, or, if there is,
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// it should be a zero-sized symbol from an empty section (which
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// we can safely override).
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assert((!CanonicalSymEntry || CanonicalSymEntry->getSize() == 0) &&
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"Duplicate canonical symbol at address");
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CanonicalSymEntry = &Sym;
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}
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Section &getCommonSection();
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void addSectionStartSymAndBlock(Section &GraphSec, uint64_t Address,
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const char *Data, uint64_t Size,
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uint32_t Alignment, bool IsLive);
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Error createNormalizedSections();
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Error createNormalizedSymbols();
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/// Create graph blocks and symbols for externals, absolutes, commons and
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/// all defined symbols in sections without custom parsers.
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Error graphifyRegularSymbols();
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/// Create graph blocks and symbols for all sections.
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Error graphifySectionsWithCustomParsers();
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// Put the BumpPtrAllocator first so that we don't free any of the underlying
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// memory until the Symbol/Addressable destructors have been run.
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BumpPtrAllocator Allocator;
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const object::MachOObjectFile &Obj;
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std::unique_ptr<LinkGraph> G;
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DenseMap<unsigned, NormalizedSection> IndexToSection;
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Section *CommonSection = nullptr;
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DenseMap<uint32_t, NormalizedSymbol *> IndexToSymbol;
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std::map<JITTargetAddress, Symbol *> AddrToCanonicalSymbol;
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StringMap<SectionParserFunction> CustomSectionParserFunctions;
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};
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} // end namespace jitlink
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} // end namespace llvm
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#endif // LIB_EXECUTIONENGINE_JITLINK_MACHOLINKGRAPHBUILDER_H
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