48 {
"Unknown",
"<unknown>: 7", 7},
49 {
"Unknown",
"<unknown>: 8", 8},
50 {
"Unknown",
"<unknown>: 9", 9},
52 {
"OS Specific",
"<OS specific>: 11", 11},
53 {
"OS Specific",
"<OS specific>: 12", 12},
54 {
"Proc Specific",
"<processor specific>: 13", 13},
55 {
"Proc Specific",
"<processor specific>: 14", 14},
56 {
"Proc Specific",
"<processor specific>: 15", 15}
66 if (
Error E = Ret.takeError())
68 return std::make_unique<ELFObjectFile<ELFT>>(std::move(*Ret));
71Expected<std::unique_ptr<ObjectFile>>
73 std::pair<unsigned char, unsigned char> Ident =
75 std::size_t MaxAlignment =
160SubtargetFeatures ELFObjectFileBase::getARMFeatures()
const {
161 SubtargetFeatures Features;
165 return SubtargetFeatures();
170 std::optional<unsigned> Attr =
319SubtargetFeatures ELFObjectFileBase::getHexagonFeatures()
const {
320 SubtargetFeatures Features;
321 HexagonAttributeParser Parser;
328 std::optional<unsigned> Attr;
331 if (std::optional<std::string> FeatureString =
337 std::optional<std::string> FeatureString =
340 if (FeatureString && *Attr >= 60)
367Expected<SubtargetFeatures> ELFObjectFileBase::getRISCVFeatures()
const {
368 SubtargetFeatures Features;
380 std::optional<StringRef> Attr =
385 return ParseResult.takeError();
386 auto &ISAInfo = *ParseResult;
388 if (ISAInfo->getXLen() == 32)
390 else if (ISAInfo->getXLen() == 64)
401SubtargetFeatures ELFObjectFileBase::getLoongArchFeatures()
const {
402 SubtargetFeatures Features;
422 return getMIPSFeatures();
424 return getARMFeatures();
426 return getRISCVFeatures();
428 return getLoongArchFeatures();
430 return getHexagonFeatures();
439 return getAMDGPUCPUName();
441 return getNVPTXCPUName();
452StringRef ELFObjectFileBase::getAMDGPUCPUName()
const {
607 return "gfx9-generic";
609 return "gfx9-4-generic";
611 return "gfx10-1-generic";
613 return "gfx10-3-generic";
615 return "gfx11-generic";
617 return "gfx12-generic";
623StringRef ELFObjectFileBase::getNVPTXCPUName()
const {
737 std::optional<unsigned> Attr =
769 std::optional<unsigned> ArchProfileAttr =
812std::vector<ELFPltEntry>
819 uint32_t JumpSlotReloc = 0, GlobDatReloc = 0;
822 JumpSlotReloc = ELF::R_386_JUMP_SLOT;
823 GlobDatReloc = ELF::R_386_GLOB_DAT;
826 JumpSlotReloc = ELF::R_X86_64_JUMP_SLOT;
827 GlobDatReloc = ELF::R_X86_64_GLOB_DAT;
831 JumpSlotReloc = ELF::R_AARCH64_JUMP_SLOT;
837 JumpSlotReloc = ELF::R_ARM_JUMP_SLOT;
840 JumpSlotReloc = ELF::R_HEX_JMP_SLOT;
841 GlobDatReloc = ELF::R_HEX_GLOB_DAT;
845 JumpSlotReloc = ELF::R_RISCV_JUMP_SLOT;
850 std::unique_ptr<const MCInstrInfo> MII(
T->createMCInstrInfo());
851 std::unique_ptr<const MCInstrAnalysis> MIA(
852 T->createMCInstrAnalysis(MII.get()));
855 std::vector<std::pair<uint64_t, uint64_t>> PltEntries;
856 std::optional<SectionRef> RelaPlt, RelaDyn;
866 if (Name ==
".rela.plt" || Name ==
".rel.plt") {
868 }
else if (Name ==
".rela.dyn" || Name ==
".rel.dyn") {
870 }
else if (Name ==
".got.plt") {
871 GotBaseVA = Section.getAddress();
872 }
else if (Name ==
".plt" || Name ==
".plt.got") {
880 MIA->findPltEntries(Section.getAddress(),
887 for (
auto [Plt, GotPlt] : PltEntries) {
893 GotPltEntry =
static_cast<int32_t
>(GotPltEntry) + GotBaseVA;
894 GotToPlt.
insert(std::make_pair(GotPltEntry, Plt));
899 std::vector<ELFPltEntry> Result;
902 for (
const auto &R : Rels) {
903 if (R.getType() != RelType)
905 auto PltEntryIter = GotToPlt.
find(R.getOffset());
906 if (PltEntryIter != GotToPlt.
end()) {
910 ELFPltEntry{PltSec, std::nullopt, PltEntryIter->second});
913 PltEntryIter->second});
919 handleRels(RelaPlt->relocations(), JumpSlotReloc,
".plt");
924 handleRels(RelaDyn->relocations(), GlobDatReloc,
".plt.got");
931 const ELFFile<ELFT> &EF, std::optional<unsigned> TextSectionIndex,
932 std::vector<PGOAnalysisMap> *PGOAnalyses) {
933 using Elf_Shdr =
typename ELFT::Shdr;
935 std::vector<BBAddrMap> BBAddrMaps;
937 PGOAnalyses->clear();
943 if (!TextSectionIndex)
947 return createError(
"unable to get the linked-to section for " +
950 assert(*TextSecOrErr >= Sections.begin() &&
951 "Text section pointer outside of bounds");
952 if (*TextSectionIndex !=
953 (
unsigned)std::distance(Sections.begin(), *TextSecOrErr))
960 if (!SectionRelocMapOrErr)
963 for (
auto const &[Sec, RelocSec] : *SectionRelocMapOrErr) {
964 if (IsRelocatable && !RelocSec)
965 return createError(
"unable to get relocation section for " +
969 if (!BBAddrMapOrErr) {
971 PGOAnalyses->clear();
975 std::move(BBAddrMapOrErr->begin(), BBAddrMapOrErr->end(),
976 std::back_inserter(BBAddrMaps));
979 assert(PGOAnalyses->size() == BBAddrMaps.size() &&
980 "The same number of BBAddrMaps and PGOAnalysisMaps should be "
981 "returned when PGO information is requested");
986static Expected<std::vector<VersionEntry>>
989 using Elf_Shdr =
typename ELFT::Shdr;
990 const Elf_Shdr *VerSec =
nullptr;
991 const Elf_Shdr *VerNeedSec =
nullptr;
992 const Elf_Shdr *VerDefSec =
nullptr;
1003 return std::vector<VersionEntry>();
1010 std::vector<VersionEntry> Ret;
1015 EF.template getEntry<typename ELFT::Versym>(*VerSec,
I);
1018 " from " +
describe(EF, *VerSec) +
": " +
1023 return createError(
"unable to read flags for symbol with index " +
1028 (*VerEntryOrErr)->vs_index, IsDefault, *MapOrErr,
1032 " of " +
describe(EF, *VerSec) +
": " +
1035 Ret.push_back({(*VerOrErr).str(), IsDefault});
1041Expected<std::vector<VersionEntry>>
1055 std::optional<unsigned> TextSectionIndex,
1056 std::vector<PGOAnalysisMap> *PGOAnalyses)
const {
1064 TextSectionIndex, PGOAnalyses);
1070 return Obj->getCrelDecodeProblem(
Data);
1072 return Obj->getCrelDecodeProblem(
Data);
1074 return Obj->getCrelDecodeProblem(
Data);
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
static GCRegistry::Add< CoreCLRGC > E("coreclr", "CoreCLR-compatible GC")
static Expected< std::unique_ptr< ELFObjectFile< ELFT > > > createPtr(MemoryBufferRef Object, bool InitContent)
static Expected< std::vector< BBAddrMap > > readBBAddrMapImpl(const ELFFile< ELFT > &EF, std::optional< unsigned > TextSectionIndex, std::vector< PGOAnalysisMap > *PGOAnalyses)
static std::optional< std::string > hexagonAttrToFeatureString(unsigned Attr)
static Expected< std::vector< VersionEntry > > readDynsymVersionsImpl(const ELFFile< ELFT > &EF, ELFObjectFileBase::elf_symbol_iterator_range Symbols)
iterator find(const_arg_type_t< KeyT > Val)
std::pair< iterator, bool > insert(const std::pair< KeyT, ValueT > &KV)
std::optional< unsigned > getAttributeValue(unsigned tag) const override
Lightweight error class with error context and mandatory checking.
Tagged union holding either a T or a Error.
Error takeError()
Take ownership of the stored error.
Generic base class for all target subtargets.
const char * getBufferStart() const
StringRef getBuffer() const
static LLVM_ABI llvm::Expected< std::unique_ptr< RISCVISAInfo > > parseNormalizedArchString(StringRef Arch)
Parse RISC-V ISA info from an arch string that is already in normalized form (as defined in the psABI...
StringRef - Represent a constant reference to a string, i.e.
Manages the enabling and disabling of subtarget specific features.
LLVM_ABI void AddFeature(StringRef String, bool Enable=true)
Adds Features.
LLVM_ABI void addFeaturesVector(const ArrayRef< std::string > OtherFeatures)
Triple - Helper class for working with autoconf configuration names.
LLVM_ABI void setArchName(StringRef Str)
Set the architecture (first) component of the triple by name.
bool isThumb() const
Tests whether the target is Thumb (little and big endian).
SubArchType getSubArch() const
get the parsed subarchitecture type for this triple.
ArchType getArch() const
Get the parsed architecture type of this triple.
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
The instances of the Type class are immutable: once they are created, they are never changed.
A range adaptor for a pair of iterators.
DataRefImpl getRawDataRefImpl() const
bool isLittleEndian() const
const Elf_Ehdr & getHeader() const
Expected< std::vector< BBAddrMap > > decodeBBAddrMap(const Elf_Shdr &Sec, const Elf_Shdr *RelaSec=nullptr, std::vector< PGOAnalysisMap > *PGOAnalyses=nullptr) const
Returns a vector of BBAddrMap structs corresponding to each function within the text section that the...
Expected< StringRef > getSymbolVersionByIndex(uint32_t SymbolVersionIndex, bool &IsDefault, SmallVector< std::optional< VersionEntry >, 0 > &VersionMap, std::optional< bool > IsSymHidden) const
Expected< Elf_Shdr_Range > sections() const
Expected< MapVector< const Elf_Shdr *, const Elf_Shdr * > > getSectionAndRelocations(std::function< Expected< bool >(const Elf_Shdr &)> IsMatch) const
Returns a map from every section matching IsMatch to its relocation section, or nullptr if it has no ...
Expected< SmallVector< std::optional< VersionEntry >, 0 > > loadVersionMap(const Elf_Shdr *VerNeedSec, const Elf_Shdr *VerDefSec) const
Expected< const Elf_Shdr * > getSection(const Elf_Sym &Sym, const Elf_Shdr *SymTab, DataRegion< Elf_Word > ShndxTable) const
virtual uint8_t getEIdentABIVersion() const =0
virtual Error getBuildAttributes(ELFAttributeParser &Attributes) const =0
std::vector< ELFPltEntry > getPltEntries(const MCSubtargetInfo &STI) const
Expected< std::vector< VersionEntry > > readDynsymVersions() const
Returns a vector containing a symbol version for each dynamic symbol.
virtual elf_symbol_iterator_range getDynamicSymbolIterators() const =0
StringRef getCrelDecodeProblem(SectionRef Sec) const
Expected< SubtargetFeatures > getFeatures() const override
std::optional< StringRef > tryGetCPUName() const override
iterator_range< elf_symbol_iterator > elf_symbol_iterator_range
virtual uint16_t getEMachine() const =0
virtual unsigned getPlatformFlags() const =0
Returns platform-specific object flags, if any.
ELFObjectFileBase(unsigned int Type, MemoryBufferRef Source)
void setARMSubArch(Triple &TheTriple) const override
Expected< std::vector< BBAddrMap > > readBBAddrMap(std::optional< unsigned > TextSectionIndex=std::nullopt, std::vector< PGOAnalysisMap > *PGOAnalyses=nullptr) const
Returns a vector of all BB address maps in the object file.
static Expected< ELFObjectFile< ELFT > > create(MemoryBufferRef Object, bool InitContent=true)
static Expected< std::unique_ptr< ObjectFile > > createELFObjectFile(MemoryBufferRef Object, bool InitContent=true)
Triple makeTriple() const
Create a triple from the data in this object file.
section_iterator_range sections() const
ObjectFile(unsigned int Type, MemoryBufferRef Source)
DataRefImpl getRawDataRefImpl() const
virtual basic_symbol_iterator symbol_end() const =0
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
@ AllowMVEIntegerAndFloat
@ EF_LOONGARCH_ABI_SINGLE_FLOAT
@ EF_LOONGARCH_ABI_DOUBLE_FLOAT
@ EF_LOONGARCH_ABI_SOFT_FLOAT
@ EF_LOONGARCH_ABI_MODIFIER_MASK
@ EF_CUDA_ACCELERATORS_V1
@ EF_AMDGPU_MACH_AMDGCN_GFX703
@ EF_AMDGPU_MACH_AMDGCN_GFX1035
@ EF_AMDGPU_MACH_AMDGCN_GFX1031
@ EF_AMDGPU_MACH_R600_CAYMAN
@ EF_AMDGPU_MACH_AMDGCN_GFX704
@ EF_AMDGPU_MACH_AMDGCN_GFX902
@ EF_AMDGPU_MACH_AMDGCN_GFX810
@ EF_AMDGPU_MACH_AMDGCN_GFX950
@ EF_AMDGPU_MACH_AMDGCN_GFX1036
@ EF_AMDGPU_MACH_AMDGCN_GFX1102
@ EF_AMDGPU_MACH_R600_RV730
@ EF_AMDGPU_MACH_R600_RV710
@ EF_AMDGPU_MACH_AMDGCN_GFX908
@ EF_AMDGPU_MACH_AMDGCN_GFX1011
@ EF_AMDGPU_MACH_R600_CYPRESS
@ EF_AMDGPU_MACH_AMDGCN_GFX1032
@ EF_AMDGPU_MACH_R600_R600
@ EF_AMDGPU_MACH_AMDGCN_GFX1250
@ EF_AMDGPU_MACH_R600_TURKS
@ EF_AMDGPU_MACH_R600_JUNIPER
@ EF_AMDGPU_MACH_AMDGCN_GFX601
@ EF_AMDGPU_MACH_AMDGCN_GFX942
@ EF_AMDGPU_MACH_AMDGCN_GFX1152
@ EF_AMDGPU_MACH_R600_R630
@ EF_AMDGPU_MACH_R600_REDWOOD
@ EF_AMDGPU_MACH_R600_RV770
@ EF_AMDGPU_MACH_AMDGCN_GFX600
@ EF_AMDGPU_MACH_AMDGCN_GFX602
@ EF_AMDGPU_MACH_AMDGCN_GFX1101
@ EF_AMDGPU_MACH_AMDGCN_GFX1100
@ EF_AMDGPU_MACH_AMDGCN_GFX1033
@ EF_AMDGPU_MACH_AMDGCN_GFX801
@ EF_AMDGPU_MACH_AMDGCN_GFX705
@ EF_AMDGPU_MACH_AMDGCN_GFX9_4_GENERIC
@ EF_AMDGPU_MACH_AMDGCN_GFX1153
@ EF_AMDGPU_MACH_AMDGCN_GFX1010
@ EF_AMDGPU_MACH_R600_RV670
@ EF_AMDGPU_MACH_AMDGCN_GFX701
@ EF_AMDGPU_MACH_AMDGCN_GFX10_3_GENERIC
@ EF_AMDGPU_MACH_AMDGCN_GFX1012
@ EF_AMDGPU_MACH_AMDGCN_GFX1151
@ EF_AMDGPU_MACH_AMDGCN_GFX1030
@ EF_AMDGPU_MACH_R600_CEDAR
@ EF_AMDGPU_MACH_AMDGCN_GFX1200
@ EF_AMDGPU_MACH_AMDGCN_GFX700
@ EF_AMDGPU_MACH_AMDGCN_GFX11_GENERIC
@ EF_AMDGPU_MACH_AMDGCN_GFX803
@ EF_AMDGPU_MACH_AMDGCN_GFX802
@ EF_AMDGPU_MACH_AMDGCN_GFX90C
@ EF_AMDGPU_MACH_AMDGCN_GFX900
@ EF_AMDGPU_MACH_AMDGCN_GFX909
@ EF_AMDGPU_MACH_AMDGCN_GFX906
@ EF_AMDGPU_MACH_AMDGCN_GFX9_GENERIC
@ EF_AMDGPU_MACH_AMDGCN_GFX1103
@ EF_AMDGPU_MACH_R600_CAICOS
@ EF_AMDGPU_MACH_AMDGCN_GFX90A
@ EF_AMDGPU_MACH_AMDGCN_GFX1034
@ EF_AMDGPU_MACH_AMDGCN_GFX1013
@ EF_AMDGPU_MACH_AMDGCN_GFX12_GENERIC
@ EF_AMDGPU_MACH_AMDGCN_GFX10_1_GENERIC
@ EF_AMDGPU_MACH_AMDGCN_GFX904
@ EF_AMDGPU_MACH_AMDGCN_GFX1251
@ EF_AMDGPU_MACH_R600_RS880
@ EF_AMDGPU_MACH_AMDGCN_GFX805
@ EF_AMDGPU_MACH_AMDGCN_GFX1201
@ EF_AMDGPU_MACH_AMDGCN_GFX1150
@ EF_AMDGPU_MACH_R600_SUMO
@ EF_AMDGPU_MACH_R600_BARTS
@ EF_AMDGPU_MACH_AMDGCN_GFX702
Error createError(const Twine &Err)
constexpr int NumElfSymbolTypes
static std::string describe(const ELFFile< ELFT > &Obj, const typename ELFT::Shdr &Sec)
std::pair< unsigned char, unsigned char > getElfArchType(StringRef Object)
LLVM_ABI const llvm::EnumEntry< unsigned > ElfSymbolTypes[NumElfSymbolTypes]
This is an optimization pass for GlobalISel generic memory operations.
ArrayRef< CharT > arrayRefFromStringRef(StringRef Input)
Construct a string ref from an array ref of unsigned chars.
decltype(auto) dyn_cast(const From &Val)
dyn_cast<X> - Return the argument parameter cast to the specified type.
void append_range(Container &C, Range &&R)
Wrapper function to append range R to container C.
int countr_zero(T Val)
Count number of 0's from the least significant bit to the most stopping at the first 1.
void cantFail(Error Err, const char *Msg=nullptr)
Report a fatal error if Err is a failure value.
std::string toString(const APInt &I, unsigned Radix, bool Signed, bool formatAsCLiteral=false, bool UpperCase=true, bool InsertSeparators=false)
decltype(auto) cast(const From &Val)
cast<X> - Return the argument parameter cast to the specified type.
void consumeError(Error Err)
Consume a Error without doing anything.
static const Target * lookupTarget(StringRef TripleStr, std::string &Error)
lookupTarget - Lookup a target based on a target triple.