| //===--------- ELF_x86.cpp - JIT linker implementation for ELF/x86 --------===// |
| // |
| // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. |
| // See https://llvm.org/LICENSE.txt for license information. |
| // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception |
| // |
| //===----------------------------------------------------------------------===// |
| // |
| // ELF/x86 jit-link implementation. |
| // |
| //===----------------------------------------------------------------------===// |
| |
| #include "llvm/ExecutionEngine/JITLink/ELF_x86.h" |
| #include "DefineExternalSectionStartAndEndSymbols.h" |
| #include "ELFLinkGraphBuilder.h" |
| #include "JITLinkGeneric.h" |
| #include "llvm/BinaryFormat/ELF.h" |
| #include "llvm/ExecutionEngine/JITLink/x86.h" |
| #include "llvm/Object/ELFObjectFile.h" |
| |
| #define DEBUG_TYPE "jitlink" |
| |
| using namespace llvm; |
| using namespace llvm::jitlink; |
| |
| namespace { |
| constexpr StringRef ELFGOTSymbolName = "_GLOBAL_OFFSET_TABLE_"; |
| |
| Error buildTables_ELF_x86(LinkGraph &G) { |
| LLVM_DEBUG(dbgs() << "Visiting edges in graph:\n"); |
| |
| x86::GOTTableManager GOT; |
| x86::PLTTableManager PLT(GOT); |
| visitExistingEdges(G, GOT, PLT); |
| return Error::success(); |
| } |
| } // namespace |
| |
| namespace llvm::jitlink { |
| |
| class ELFJITLinker_x86 : public JITLinker<ELFJITLinker_x86> { |
| friend class JITLinker<ELFJITLinker_x86>; |
| |
| public: |
| ELFJITLinker_x86(std::unique_ptr<JITLinkContext> Ctx, |
| std::unique_ptr<LinkGraph> G, PassConfiguration PassConfig) |
| : JITLinker(std::move(Ctx), std::move(G), std::move(PassConfig)) { |
| getPassConfig().PostAllocationPasses.push_back( |
| [this](LinkGraph &G) { return getOrCreateGOTSymbol(G); }); |
| } |
| |
| private: |
| Symbol *GOTSymbol = nullptr; |
| |
| Error getOrCreateGOTSymbol(LinkGraph &G) { |
| auto DefineExternalGOTSymbolIfPresent = |
| createDefineExternalSectionStartAndEndSymbolsPass( |
| [&](LinkGraph &LG, Symbol &Sym) -> SectionRangeSymbolDesc { |
| if (Sym.getName() != nullptr && |
| *Sym.getName() == ELFGOTSymbolName) |
| if (auto *GOTSection = G.findSectionByName( |
| x86::GOTTableManager::getSectionName())) { |
| GOTSymbol = &Sym; |
| return {*GOTSection, true}; |
| } |
| return {}; |
| }); |
| |
| // Try to attach _GLOBAL_OFFSET_TABLE_ to the GOT if it's defined as an |
| // external. |
| if (auto Err = DefineExternalGOTSymbolIfPresent(G)) |
| return Err; |
| |
| // If we succeeded then we're done. |
| if (GOTSymbol) |
| return Error::success(); |
| |
| // Otherwise look for a GOT section: If it already has a start symbol we'll |
| // record it, otherwise we'll create our own. |
| // If there's a GOT section but we didn't find an external GOT symbol... |
| if (auto *GOTSection = |
| G.findSectionByName(x86::GOTTableManager::getSectionName())) { |
| |
| // Check for an existing defined symbol. |
| for (auto *Sym : GOTSection->symbols()) |
| if (Sym->getName() != nullptr && *Sym->getName() == ELFGOTSymbolName) { |
| GOTSymbol = Sym; |
| return Error::success(); |
| } |
| |
| // If there's no defined symbol then create one. |
| SectionRange SR(*GOTSection); |
| |
| if (SR.empty()) { |
| GOTSymbol = |
| &G.addAbsoluteSymbol(ELFGOTSymbolName, orc::ExecutorAddr(), 0, |
| Linkage::Strong, Scope::Local, true); |
| } else { |
| GOTSymbol = |
| &G.addDefinedSymbol(*SR.getFirstBlock(), 0, ELFGOTSymbolName, 0, |
| Linkage::Strong, Scope::Local, false, true); |
| } |
| } |
| |
| return Error::success(); |
| } |
| |
| Error applyFixup(LinkGraph &G, Block &B, const Edge &E) const { |
| return x86::applyFixup(G, B, E, GOTSymbol); |
| } |
| }; |
| |
| class ELFLinkGraphBuilder_x86 : public ELFLinkGraphBuilder<object::ELF32LE> { |
| private: |
| using ELFT = object::ELF32LE; |
| |
| Expected<x86::EdgeKind_x86> getRelocationKind(const uint32_t Type) { |
| switch (Type) { |
| case ELF::R_386_32: |
| return x86::Pointer32; |
| case ELF::R_386_PC32: |
| return x86::PCRel32; |
| case ELF::R_386_16: |
| return x86::Pointer16; |
| case ELF::R_386_PC16: |
| return x86::PCRel16; |
| case ELF::R_386_GOT32: |
| return x86::RequestGOTAndTransformToDelta32FromGOT; |
| case ELF::R_386_GOT32X: |
| // TODO: Add a relaxable edge kind and update relaxation optimization. |
| return x86::RequestGOTAndTransformToDelta32FromGOT; |
| case ELF::R_386_GOTPC: |
| return x86::Delta32; |
| case ELF::R_386_GOTOFF: |
| return x86::Delta32FromGOT; |
| case ELF::R_386_PLT32: |
| return x86::BranchPCRel32; |
| } |
| |
| return make_error<JITLinkError>( |
| "In " + G->getName() + ": Unsupported x86 relocation type " + |
| object::getELFRelocationTypeName(ELF::EM_386, Type)); |
| } |
| |
| Error addRelocations() override { |
| LLVM_DEBUG(dbgs() << "Adding relocations\n"); |
| using Base = ELFLinkGraphBuilder<ELFT>; |
| using Self = ELFLinkGraphBuilder_x86; |
| |
| for (const auto &RelSect : Base::Sections) { |
| // Validate the section to read relocation entries from. |
| if (RelSect.sh_type == ELF::SHT_RELA) |
| return make_error<StringError>( |
| "No SHT_RELA in valid x86 ELF object files", |
| inconvertibleErrorCode()); |
| |
| if (Error Err = Base::forEachRelRelocation(RelSect, this, |
| &Self::addSingleRelocation)) |
| return Err; |
| } |
| |
| return Error::success(); |
| } |
| |
| Error addSingleRelocation(const typename ELFT::Rel &Rel, |
| const typename ELFT::Shdr &FixupSection, |
| Block &BlockToFix) { |
| using Base = ELFLinkGraphBuilder<ELFT>; |
| |
| auto ELFReloc = Rel.getType(false); |
| |
| // R_386_NONE is a no-op. |
| if (LLVM_UNLIKELY(ELFReloc == ELF::R_386_NONE)) |
| return Error::success(); |
| |
| uint32_t SymbolIndex = Rel.getSymbol(false); |
| auto ObjSymbol = Base::Obj.getRelocationSymbol(Rel, Base::SymTabSec); |
| if (!ObjSymbol) |
| return ObjSymbol.takeError(); |
| |
| Symbol *GraphSymbol = Base::getGraphSymbol(SymbolIndex); |
| if (!GraphSymbol) |
| return make_error<StringError>( |
| formatv("Could not find symbol at given index, did you add it to " |
| "JITSymbolTable? index: {0}, shndx: {1} Size of table: {2}", |
| SymbolIndex, (*ObjSymbol)->st_shndx, |
| Base::GraphSymbols.size()), |
| inconvertibleErrorCode()); |
| |
| Expected<x86::EdgeKind_x86> Kind = getRelocationKind(ELFReloc); |
| if (!Kind) |
| return Kind.takeError(); |
| |
| auto FixupAddress = orc::ExecutorAddr(FixupSection.sh_addr) + Rel.r_offset; |
| int64_t Addend = 0; |
| |
| switch (*Kind) { |
| case x86::Pointer32: |
| case x86::PCRel32: |
| case x86::RequestGOTAndTransformToDelta32FromGOT: |
| case x86::Delta32: |
| case x86::Delta32FromGOT: |
| case x86::BranchPCRel32: |
| case x86::BranchPCRel32ToPtrJumpStub: |
| case x86::BranchPCRel32ToPtrJumpStubBypassable: { |
| const char *FixupContent = BlockToFix.getContent().data() + |
| (FixupAddress - BlockToFix.getAddress()); |
| Addend = *(const support::little32_t *)FixupContent; |
| break; |
| } |
| case x86::Pointer16: |
| case x86::PCRel16: { |
| const char *FixupContent = BlockToFix.getContent().data() + |
| (FixupAddress - BlockToFix.getAddress()); |
| Addend = *(const support::little16_t *)FixupContent; |
| break; |
| } |
| } |
| |
| Edge::OffsetT Offset = FixupAddress - BlockToFix.getAddress(); |
| Edge GE(*Kind, Offset, *GraphSymbol, Addend); |
| LLVM_DEBUG({ |
| dbgs() << " "; |
| printEdge(dbgs(), BlockToFix, GE, x86::getEdgeKindName(*Kind)); |
| dbgs() << "\n"; |
| }); |
| |
| BlockToFix.addEdge(std::move(GE)); |
| return Error::success(); |
| } |
| |
| public: |
| ELFLinkGraphBuilder_x86(StringRef FileName, const object::ELFFile<ELFT> &Obj, |
| std::shared_ptr<orc::SymbolStringPool> SSP, Triple TT, |
| SubtargetFeatures Features) |
| : ELFLinkGraphBuilder<ELFT>(Obj, std::move(SSP), std::move(TT), |
| std::move(Features), FileName, |
| x86::getEdgeKindName) {} |
| }; |
| |
| Expected<std::unique_ptr<LinkGraph>> |
| createLinkGraphFromELFObject_x86(MemoryBufferRef ObjectBuffer, |
| std::shared_ptr<orc::SymbolStringPool> SSP) { |
| LLVM_DEBUG({ |
| dbgs() << "Building jitlink graph for new input " |
| << ObjectBuffer.getBufferIdentifier() << "...\n"; |
| }); |
| |
| auto ELFObj = object::ObjectFile::createELFObjectFile(ObjectBuffer); |
| if (!ELFObj) |
| return ELFObj.takeError(); |
| |
| auto Features = (*ELFObj)->getFeatures(); |
| if (!Features) |
| return Features.takeError(); |
| |
| assert((*ELFObj)->getArch() == Triple::x86 && |
| "Only x86 (little endian) is supported for now"); |
| |
| auto &ELFObjFile = cast<object::ELFObjectFile<object::ELF32LE>>(**ELFObj); |
| |
| return ELFLinkGraphBuilder_x86((*ELFObj)->getFileName(), |
| ELFObjFile.getELFFile(), std::move(SSP), |
| (*ELFObj)->makeTriple(), std::move(*Features)) |
| .buildGraph(); |
| } |
| |
| void link_ELF_x86(std::unique_ptr<LinkGraph> G, |
| std::unique_ptr<JITLinkContext> Ctx) { |
| PassConfiguration Config; |
| const Triple &TT = G->getTargetTriple(); |
| if (Ctx->shouldAddDefaultTargetPasses(TT)) { |
| if (auto MarkLive = Ctx->getMarkLivePass(TT)) |
| Config.PrePrunePasses.push_back(std::move(MarkLive)); |
| else |
| Config.PrePrunePasses.push_back(markAllSymbolsLive); |
| |
| // Add an in-place GOT and PLT build pass. |
| Config.PostPrunePasses.push_back(buildTables_ELF_x86); |
| |
| // Add GOT/Stubs optimizer pass. |
| Config.PreFixupPasses.push_back(x86::optimizeGOTAndStubAccesses); |
| } |
| if (auto Err = Ctx->modifyPassConfig(*G, Config)) |
| return Ctx->notifyFailed(std::move(Err)); |
| |
| ELFJITLinker_x86::link(std::move(Ctx), std::move(G), std::move(Config)); |
| } |
| |
| } // namespace llvm::jitlink |