xref: /openbsd-src/gnu/llvm/llvm/tools/llvm-objdump/ELFDump.cpp (revision 42a61acefa8b3288ff2163fb55e934a3fee39974)
109467b48Spatrick //===-- ELFDump.cpp - ELF-specific dumper -----------------------*- C++ -*-===//
209467b48Spatrick //
309467b48Spatrick // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
409467b48Spatrick // See https://llvm.org/LICENSE.txt for license information.
509467b48Spatrick // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
609467b48Spatrick //
709467b48Spatrick //===----------------------------------------------------------------------===//
809467b48Spatrick ///
909467b48Spatrick /// \file
1009467b48Spatrick /// This file implements the ELF-specific dumper for llvm-objdump.
1109467b48Spatrick ///
1209467b48Spatrick //===----------------------------------------------------------------------===//
1309467b48Spatrick 
14097a140dSpatrick #include "ELFDump.h"
15097a140dSpatrick 
1609467b48Spatrick #include "llvm-objdump.h"
1709467b48Spatrick #include "llvm/Demangle/Demangle.h"
1809467b48Spatrick #include "llvm/Object/ELFObjectFile.h"
1909467b48Spatrick #include "llvm/Support/Format.h"
2009467b48Spatrick #include "llvm/Support/MathExtras.h"
2109467b48Spatrick #include "llvm/Support/raw_ostream.h"
2209467b48Spatrick 
23097a140dSpatrick using namespace llvm;
2409467b48Spatrick using namespace llvm::object;
25097a140dSpatrick using namespace llvm::objdump;
2609467b48Spatrick 
2709467b48Spatrick template <class ELFT>
getDynamicStrTab(const ELFFile<ELFT> & Elf)2873471bf0Spatrick static Expected<StringRef> getDynamicStrTab(const ELFFile<ELFT> &Elf) {
2973471bf0Spatrick   auto DynamicEntriesOrError = Elf.dynamicEntries();
3009467b48Spatrick   if (!DynamicEntriesOrError)
3109467b48Spatrick     return DynamicEntriesOrError.takeError();
3209467b48Spatrick 
3309467b48Spatrick   for (const typename ELFT::Dyn &Dyn : *DynamicEntriesOrError) {
3409467b48Spatrick     if (Dyn.d_tag == ELF::DT_STRTAB) {
3573471bf0Spatrick       auto MappedAddrOrError = Elf.toMappedAddr(Dyn.getPtr());
3609467b48Spatrick       if (!MappedAddrOrError)
3709467b48Spatrick         consumeError(MappedAddrOrError.takeError());
3809467b48Spatrick       return StringRef(reinterpret_cast<const char *>(*MappedAddrOrError));
3909467b48Spatrick     }
4009467b48Spatrick   }
4109467b48Spatrick 
4209467b48Spatrick   // If the dynamic segment is not present, we fall back on the sections.
4373471bf0Spatrick   auto SectionsOrError = Elf.sections();
4409467b48Spatrick   if (!SectionsOrError)
4509467b48Spatrick     return SectionsOrError.takeError();
4609467b48Spatrick 
4709467b48Spatrick   for (const typename ELFT::Shdr &Sec : *SectionsOrError) {
4809467b48Spatrick     if (Sec.sh_type == ELF::SHT_DYNSYM)
4973471bf0Spatrick       return Elf.getStringTableForSymtab(Sec);
5009467b48Spatrick   }
5109467b48Spatrick 
5209467b48Spatrick   return createError("dynamic string table not found");
5309467b48Spatrick }
5409467b48Spatrick 
5509467b48Spatrick template <class ELFT>
getRelocationValueString(const ELFObjectFile<ELFT> * Obj,const RelocationRef & RelRef,SmallVectorImpl<char> & Result)5609467b48Spatrick static Error getRelocationValueString(const ELFObjectFile<ELFT> *Obj,
5709467b48Spatrick                                       const RelocationRef &RelRef,
5809467b48Spatrick                                       SmallVectorImpl<char> &Result) {
5973471bf0Spatrick   const ELFFile<ELFT> &EF = Obj->getELFFile();
6009467b48Spatrick   DataRefImpl Rel = RelRef.getRawDataRefImpl();
6109467b48Spatrick   auto SecOrErr = EF.getSection(Rel.d.a);
6209467b48Spatrick   if (!SecOrErr)
6309467b48Spatrick     return SecOrErr.takeError();
6409467b48Spatrick 
6509467b48Spatrick   int64_t Addend = 0;
6609467b48Spatrick   // If there is no Symbol associated with the relocation, we set the undef
6709467b48Spatrick   // boolean value to 'true'. This will prevent us from calling functions that
6809467b48Spatrick   // requires the relocation to be associated with a symbol.
6909467b48Spatrick   //
7009467b48Spatrick   // In SHT_REL case we would need to read the addend from section data.
7109467b48Spatrick   // GNU objdump does not do that and we just follow for simplicity atm.
7209467b48Spatrick   bool Undef = false;
7309467b48Spatrick   if ((*SecOrErr)->sh_type == ELF::SHT_RELA) {
7409467b48Spatrick     const typename ELFT::Rela *ERela = Obj->getRela(Rel);
7509467b48Spatrick     Addend = ERela->r_addend;
7609467b48Spatrick     Undef = ERela->getSymbol(false) == 0;
7773471bf0Spatrick   } else if ((*SecOrErr)->sh_type == ELF::SHT_REL) {
7873471bf0Spatrick     const typename ELFT::Rel *ERel = Obj->getRel(Rel);
7973471bf0Spatrick     Undef = ERel->getSymbol(false) == 0;
8073471bf0Spatrick   } else {
8109467b48Spatrick     return make_error<BinaryError>();
8209467b48Spatrick   }
8309467b48Spatrick 
8409467b48Spatrick   // Default scheme is to print Target, as well as "+ <addend>" for nonzero
8509467b48Spatrick   // addend. Should be acceptable for all normal purposes.
8609467b48Spatrick   std::string FmtBuf;
8709467b48Spatrick   raw_string_ostream Fmt(FmtBuf);
8809467b48Spatrick 
8909467b48Spatrick   if (!Undef) {
9009467b48Spatrick     symbol_iterator SI = RelRef.getSymbol();
9173471bf0Spatrick     Expected<const typename ELFT::Sym *> SymOrErr =
9273471bf0Spatrick         Obj->getSymbol(SI->getRawDataRefImpl());
9373471bf0Spatrick     // TODO: test this error.
9473471bf0Spatrick     if (!SymOrErr)
9573471bf0Spatrick       return SymOrErr.takeError();
9673471bf0Spatrick 
9773471bf0Spatrick     if ((*SymOrErr)->getType() == ELF::STT_SECTION) {
9809467b48Spatrick       Expected<section_iterator> SymSI = SI->getSection();
9909467b48Spatrick       if (!SymSI)
10009467b48Spatrick         return SymSI.takeError();
10109467b48Spatrick       const typename ELFT::Shdr *SymSec =
10209467b48Spatrick           Obj->getSection((*SymSI)->getRawDataRefImpl());
10373471bf0Spatrick       auto SecName = EF.getSectionName(*SymSec);
10409467b48Spatrick       if (!SecName)
10509467b48Spatrick         return SecName.takeError();
10609467b48Spatrick       Fmt << *SecName;
10709467b48Spatrick     } else {
10809467b48Spatrick       Expected<StringRef> SymName = SI->getName();
10909467b48Spatrick       if (!SymName)
11009467b48Spatrick         return SymName.takeError();
11109467b48Spatrick       if (Demangle)
112097a140dSpatrick         Fmt << demangle(std::string(*SymName));
11309467b48Spatrick       else
11409467b48Spatrick         Fmt << *SymName;
11509467b48Spatrick     }
11609467b48Spatrick   } else {
11709467b48Spatrick     Fmt << "*ABS*";
11809467b48Spatrick   }
11909467b48Spatrick   if (Addend != 0) {
12009467b48Spatrick       Fmt << (Addend < 0
12109467b48Spatrick           ? "-"
12209467b48Spatrick           : "+") << format("0x%" PRIx64,
12309467b48Spatrick                           (Addend < 0 ? -(uint64_t)Addend : (uint64_t)Addend));
12409467b48Spatrick   }
12509467b48Spatrick   Fmt.flush();
12609467b48Spatrick   Result.append(FmtBuf.begin(), FmtBuf.end());
12709467b48Spatrick   return Error::success();
12809467b48Spatrick }
12909467b48Spatrick 
getELFRelocationValueString(const ELFObjectFileBase * Obj,const RelocationRef & Rel,SmallVectorImpl<char> & Result)130097a140dSpatrick Error objdump::getELFRelocationValueString(const ELFObjectFileBase *Obj,
13109467b48Spatrick                                            const RelocationRef &Rel,
13209467b48Spatrick                                            SmallVectorImpl<char> &Result) {
13309467b48Spatrick   if (auto *ELF32LE = dyn_cast<ELF32LEObjectFile>(Obj))
13409467b48Spatrick     return getRelocationValueString(ELF32LE, Rel, Result);
13509467b48Spatrick   if (auto *ELF64LE = dyn_cast<ELF64LEObjectFile>(Obj))
13609467b48Spatrick     return getRelocationValueString(ELF64LE, Rel, Result);
13709467b48Spatrick   if (auto *ELF32BE = dyn_cast<ELF32BEObjectFile>(Obj))
13809467b48Spatrick     return getRelocationValueString(ELF32BE, Rel, Result);
13909467b48Spatrick   auto *ELF64BE = cast<ELF64BEObjectFile>(Obj);
14009467b48Spatrick   return getRelocationValueString(ELF64BE, Rel, Result);
14109467b48Spatrick }
14209467b48Spatrick 
14309467b48Spatrick template <class ELFT>
getSectionLMA(const ELFFile<ELFT> & Obj,const object::ELFSectionRef & Sec)14473471bf0Spatrick static uint64_t getSectionLMA(const ELFFile<ELFT> &Obj,
14509467b48Spatrick                               const object::ELFSectionRef &Sec) {
14673471bf0Spatrick   auto PhdrRangeOrErr = Obj.program_headers();
14709467b48Spatrick   if (!PhdrRangeOrErr)
148a96b3639Srobert     report_fatal_error(Twine(toString(PhdrRangeOrErr.takeError())));
14909467b48Spatrick 
15009467b48Spatrick   // Search for a PT_LOAD segment containing the requested section. Use this
15109467b48Spatrick   // segment's p_addr to calculate the section's LMA.
15209467b48Spatrick   for (const typename ELFT::Phdr &Phdr : *PhdrRangeOrErr)
15309467b48Spatrick     if ((Phdr.p_type == ELF::PT_LOAD) && (Phdr.p_vaddr <= Sec.getAddress()) &&
15409467b48Spatrick         (Phdr.p_vaddr + Phdr.p_memsz > Sec.getAddress()))
15509467b48Spatrick       return Sec.getAddress() - Phdr.p_vaddr + Phdr.p_paddr;
15609467b48Spatrick 
15709467b48Spatrick   // Return section's VMA if it isn't in a PT_LOAD segment.
15809467b48Spatrick   return Sec.getAddress();
15909467b48Spatrick }
16009467b48Spatrick 
getELFSectionLMA(const object::ELFSectionRef & Sec)161097a140dSpatrick uint64_t objdump::getELFSectionLMA(const object::ELFSectionRef &Sec) {
16209467b48Spatrick   if (const auto *ELFObj = dyn_cast<ELF32LEObjectFile>(Sec.getObject()))
16309467b48Spatrick     return getSectionLMA(ELFObj->getELFFile(), Sec);
16409467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF32BEObjectFile>(Sec.getObject()))
16509467b48Spatrick     return getSectionLMA(ELFObj->getELFFile(), Sec);
16609467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF64LEObjectFile>(Sec.getObject()))
16709467b48Spatrick     return getSectionLMA(ELFObj->getELFFile(), Sec);
16809467b48Spatrick   const auto *ELFObj = cast<ELF64BEObjectFile>(Sec.getObject());
16909467b48Spatrick   return getSectionLMA(ELFObj->getELFFile(), Sec);
17009467b48Spatrick }
17109467b48Spatrick 
17209467b48Spatrick template <class ELFT>
printDynamicSection(const ELFFile<ELFT> & Elf,StringRef Filename)17373471bf0Spatrick static void printDynamicSection(const ELFFile<ELFT> &Elf, StringRef Filename) {
174a96b3639Srobert   auto DynamicEntriesOrErr = Elf.dynamicEntries();
175a96b3639Srobert   if (!DynamicEntriesOrErr) {
176a96b3639Srobert     reportWarning(toString(DynamicEntriesOrErr.takeError()), Filename);
177a96b3639Srobert     return;
178a96b3639Srobert   }
179a96b3639Srobert   ArrayRef<typename ELFT::Dyn> DynamicEntries = *DynamicEntriesOrErr;
180097a140dSpatrick 
181097a140dSpatrick   // Find the maximum tag name length to format the value column properly.
182097a140dSpatrick   size_t MaxLen = 0;
183097a140dSpatrick   for (const typename ELFT::Dyn &Dyn : DynamicEntries)
18473471bf0Spatrick     MaxLen = std::max(MaxLen, Elf.getDynamicTagAsString(Dyn.d_tag).size());
185097a140dSpatrick   std::string TagFmt = "  %-" + std::to_string(MaxLen) + "s ";
186097a140dSpatrick 
18773471bf0Spatrick   outs() << "\nDynamic Section:\n";
18809467b48Spatrick   for (const typename ELFT::Dyn &Dyn : DynamicEntries) {
18909467b48Spatrick     if (Dyn.d_tag == ELF::DT_NULL)
19009467b48Spatrick       continue;
19109467b48Spatrick 
19273471bf0Spatrick     std::string Str = Elf.getDynamicTagAsString(Dyn.d_tag);
193097a140dSpatrick     outs() << format(TagFmt.c_str(), Str.c_str());
19409467b48Spatrick 
19509467b48Spatrick     const char *Fmt =
19609467b48Spatrick         ELFT::Is64Bits ? "0x%016" PRIx64 "\n" : "0x%08" PRIx64 "\n";
19709467b48Spatrick     if (Dyn.d_tag == ELF::DT_NEEDED || Dyn.d_tag == ELF::DT_RPATH ||
19809467b48Spatrick         Dyn.d_tag == ELF::DT_RUNPATH || Dyn.d_tag == ELF::DT_SONAME ||
19909467b48Spatrick         Dyn.d_tag == ELF::DT_AUXILIARY || Dyn.d_tag == ELF::DT_FILTER) {
20009467b48Spatrick       Expected<StringRef> StrTabOrErr = getDynamicStrTab(Elf);
20109467b48Spatrick       if (StrTabOrErr) {
20209467b48Spatrick         const char *Data = StrTabOrErr.get().data();
20309467b48Spatrick         outs() << (Data + Dyn.d_un.d_val) << "\n";
20409467b48Spatrick         continue;
20509467b48Spatrick       }
20609467b48Spatrick       reportWarning(toString(StrTabOrErr.takeError()), Filename);
20709467b48Spatrick       consumeError(StrTabOrErr.takeError());
20809467b48Spatrick     }
20909467b48Spatrick     outs() << format(Fmt, (uint64_t)Dyn.d_un.d_val);
21009467b48Spatrick   }
21109467b48Spatrick }
21209467b48Spatrick 
213097a140dSpatrick template <class ELFT>
printProgramHeaders(const ELFFile<ELFT> & Obj,StringRef FileName)21473471bf0Spatrick static void printProgramHeaders(const ELFFile<ELFT> &Obj, StringRef FileName) {
21573471bf0Spatrick   outs() << "\nProgram Header:\n";
21673471bf0Spatrick   auto ProgramHeaderOrError = Obj.program_headers();
217097a140dSpatrick   if (!ProgramHeaderOrError) {
218097a140dSpatrick     reportWarning("unable to read program headers: " +
219097a140dSpatrick                       toString(ProgramHeaderOrError.takeError()),
220097a140dSpatrick                   FileName);
221097a140dSpatrick     return;
222097a140dSpatrick   }
223097a140dSpatrick 
22409467b48Spatrick   for (const typename ELFT::Phdr &Phdr : *ProgramHeaderOrError) {
22509467b48Spatrick     switch (Phdr.p_type) {
22609467b48Spatrick     case ELF::PT_DYNAMIC:
22709467b48Spatrick       outs() << " DYNAMIC ";
22809467b48Spatrick       break;
22909467b48Spatrick     case ELF::PT_GNU_EH_FRAME:
23009467b48Spatrick       outs() << "EH_FRAME ";
23109467b48Spatrick       break;
23209467b48Spatrick     case ELF::PT_GNU_RELRO:
23309467b48Spatrick       outs() << "   RELRO ";
23409467b48Spatrick       break;
23509467b48Spatrick     case ELF::PT_GNU_PROPERTY:
23609467b48Spatrick       outs() << "   PROPERTY ";
23709467b48Spatrick       break;
23809467b48Spatrick     case ELF::PT_GNU_STACK:
23909467b48Spatrick       outs() << "   STACK ";
24009467b48Spatrick       break;
24109467b48Spatrick     case ELF::PT_INTERP:
24209467b48Spatrick       outs() << "  INTERP ";
24309467b48Spatrick       break;
24409467b48Spatrick     case ELF::PT_LOAD:
24509467b48Spatrick       outs() << "    LOAD ";
24609467b48Spatrick       break;
24709467b48Spatrick     case ELF::PT_NOTE:
24809467b48Spatrick       outs() << "    NOTE ";
24909467b48Spatrick       break;
25009467b48Spatrick     case ELF::PT_OPENBSD_BOOTDATA:
25109467b48Spatrick       outs() << "OPENBSD_BOOTDATA ";
25209467b48Spatrick       break;
253bee4a934Sderaadt     case ELF::PT_OPENBSD_MUTABLE:
254bee4a934Sderaadt       outs() << "OPENBSD_MUTABLE ";
255bee4a934Sderaadt       break;
2567b407c47Skettenis     case ELF::PT_OPENBSD_NOBTCFI:
2577b407c47Skettenis       outs() << "OPENBSD_NOBTCFI ";
2587b407c47Skettenis       break;
25909467b48Spatrick     case ELF::PT_OPENBSD_RANDOMIZE:
26009467b48Spatrick       outs() << "OPENBSD_RANDOMIZE ";
26109467b48Spatrick       break;
262*42a61aceSkettenis     case ELF::PT_OPENBSD_SYSCALLS:
263*42a61aceSkettenis       outs() << "OPENBSD_SYSCALLS ";
264*42a61aceSkettenis       break;
26509467b48Spatrick     case ELF::PT_OPENBSD_WXNEEDED:
26609467b48Spatrick       outs() << "OPENBSD_WXNEEDED ";
26709467b48Spatrick       break;
26809467b48Spatrick     case ELF::PT_PHDR:
26909467b48Spatrick       outs() << "    PHDR ";
27009467b48Spatrick       break;
27109467b48Spatrick     case ELF::PT_TLS:
27209467b48Spatrick       outs() << "    TLS ";
27309467b48Spatrick       break;
27409467b48Spatrick     default:
27509467b48Spatrick       outs() << " UNKNOWN ";
27609467b48Spatrick     }
27709467b48Spatrick 
27809467b48Spatrick     const char *Fmt = ELFT::Is64Bits ? "0x%016" PRIx64 " " : "0x%08" PRIx64 " ";
27909467b48Spatrick 
28009467b48Spatrick     outs() << "off    " << format(Fmt, (uint64_t)Phdr.p_offset) << "vaddr "
28109467b48Spatrick            << format(Fmt, (uint64_t)Phdr.p_vaddr) << "paddr "
28209467b48Spatrick            << format(Fmt, (uint64_t)Phdr.p_paddr)
28309467b48Spatrick            << format("align 2**%u\n",
28409467b48Spatrick                      countTrailingZeros<uint64_t>(Phdr.p_align))
28509467b48Spatrick            << "         filesz " << format(Fmt, (uint64_t)Phdr.p_filesz)
28609467b48Spatrick            << "memsz " << format(Fmt, (uint64_t)Phdr.p_memsz) << "flags "
28709467b48Spatrick            << ((Phdr.p_flags & ELF::PF_R) ? "r" : "-")
28809467b48Spatrick            << ((Phdr.p_flags & ELF::PF_W) ? "w" : "-")
28909467b48Spatrick            << ((Phdr.p_flags & ELF::PF_X) ? "x" : "-") << "\n";
29009467b48Spatrick   }
29109467b48Spatrick }
29209467b48Spatrick 
29309467b48Spatrick template <class ELFT>
printSymbolVersionDependency(StringRef FileName,const ELFFile<ELFT> & Obj,const typename ELFT::Shdr & Sec)294a96b3639Srobert static void printSymbolVersionDependency(StringRef FileName,
295a96b3639Srobert                                          const ELFFile<ELFT> &Obj,
296a96b3639Srobert                                          const typename ELFT::Shdr &Sec) {
29773471bf0Spatrick   outs() << "\nVersion References:\n";
29809467b48Spatrick 
299a96b3639Srobert   auto WarningHandler = [&](const Twine &Msg) {
300a96b3639Srobert     reportWarning(Msg, FileName);
301a96b3639Srobert     return Error::success();
302a96b3639Srobert   };
303a96b3639Srobert   Expected<std::vector<VerNeed>> V =
304a96b3639Srobert       Obj.getVersionDependencies(Sec, WarningHandler);
305a96b3639Srobert   if (!V) {
306a96b3639Srobert     reportWarning(toString(V.takeError()), FileName);
307a96b3639Srobert     return;
30809467b48Spatrick   }
309a96b3639Srobert 
310a96b3639Srobert   raw_fd_ostream &OS = outs();
311a96b3639Srobert   for (const VerNeed &VN : *V) {
312a96b3639Srobert     OS << "  required from " << VN.File << ":\n";
313a96b3639Srobert     for (const VernAux &Aux : VN.AuxV)
314a96b3639Srobert       OS << format("    0x%08x 0x%02x %02u %s\n", Aux.Hash, Aux.Flags,
315a96b3639Srobert                    Aux.Other, Aux.Name.c_str());
31609467b48Spatrick   }
31709467b48Spatrick }
31809467b48Spatrick 
31909467b48Spatrick template <class ELFT>
printSymbolVersionDefinition(const typename ELFT::Shdr & Shdr,ArrayRef<uint8_t> Contents,StringRef StrTab)320097a140dSpatrick static void printSymbolVersionDefinition(const typename ELFT::Shdr &Shdr,
32109467b48Spatrick                                          ArrayRef<uint8_t> Contents,
32209467b48Spatrick                                          StringRef StrTab) {
32373471bf0Spatrick   outs() << "\nVersion definitions:\n";
32409467b48Spatrick 
32509467b48Spatrick   const uint8_t *Buf = Contents.data();
32609467b48Spatrick   uint32_t VerdefIndex = 1;
32709467b48Spatrick   // sh_info contains the number of entries in the SHT_GNU_verdef section. To
32809467b48Spatrick   // make the index column have consistent width, we should insert blank spaces
32909467b48Spatrick   // according to sh_info.
33009467b48Spatrick   uint16_t VerdefIndexWidth = std::to_string(Shdr.sh_info).size();
33109467b48Spatrick   while (Buf) {
33209467b48Spatrick     auto *Verdef = reinterpret_cast<const typename ELFT::Verdef *>(Buf);
33309467b48Spatrick     outs() << format_decimal(VerdefIndex++, VerdefIndexWidth) << " "
33409467b48Spatrick            << format("0x%02" PRIx16 " ", (uint16_t)Verdef->vd_flags)
33509467b48Spatrick            << format("0x%08" PRIx32 " ", (uint32_t)Verdef->vd_hash);
33609467b48Spatrick 
33709467b48Spatrick     const uint8_t *BufAux = Buf + Verdef->vd_aux;
33809467b48Spatrick     uint16_t VerdauxIndex = 0;
33909467b48Spatrick     while (BufAux) {
34009467b48Spatrick       auto *Verdaux = reinterpret_cast<const typename ELFT::Verdaux *>(BufAux);
34109467b48Spatrick       if (VerdauxIndex)
34209467b48Spatrick         outs() << std::string(VerdefIndexWidth + 17, ' ');
34309467b48Spatrick       outs() << StringRef(StrTab.drop_front(Verdaux->vda_name).data()) << '\n';
34409467b48Spatrick       BufAux = Verdaux->vda_next ? BufAux + Verdaux->vda_next : nullptr;
34509467b48Spatrick       ++VerdauxIndex;
34609467b48Spatrick     }
34709467b48Spatrick     Buf = Verdef->vd_next ? Buf + Verdef->vd_next : nullptr;
34809467b48Spatrick   }
34909467b48Spatrick }
35009467b48Spatrick 
35109467b48Spatrick template <class ELFT>
printSymbolVersionInfo(const ELFFile<ELFT> & Elf,StringRef FileName)35273471bf0Spatrick static void printSymbolVersionInfo(const ELFFile<ELFT> &Elf,
353097a140dSpatrick                                    StringRef FileName) {
35409467b48Spatrick   ArrayRef<typename ELFT::Shdr> Sections =
35573471bf0Spatrick       unwrapOrError(Elf.sections(), FileName);
35609467b48Spatrick   for (const typename ELFT::Shdr &Shdr : Sections) {
35709467b48Spatrick     if (Shdr.sh_type != ELF::SHT_GNU_verneed &&
35809467b48Spatrick         Shdr.sh_type != ELF::SHT_GNU_verdef)
35909467b48Spatrick       continue;
36009467b48Spatrick 
36109467b48Spatrick     ArrayRef<uint8_t> Contents =
36273471bf0Spatrick         unwrapOrError(Elf.getSectionContents(Shdr), FileName);
36309467b48Spatrick     const typename ELFT::Shdr *StrTabSec =
36473471bf0Spatrick         unwrapOrError(Elf.getSection(Shdr.sh_link), FileName);
36573471bf0Spatrick     StringRef StrTab = unwrapOrError(Elf.getStringTable(*StrTabSec), FileName);
36609467b48Spatrick 
36709467b48Spatrick     if (Shdr.sh_type == ELF::SHT_GNU_verneed)
368a96b3639Srobert       printSymbolVersionDependency<ELFT>(FileName, Elf, Shdr);
36909467b48Spatrick     else
37009467b48Spatrick       printSymbolVersionDefinition<ELFT>(Shdr, Contents, StrTab);
37109467b48Spatrick   }
37209467b48Spatrick }
37309467b48Spatrick 
printELFFileHeader(const object::ObjectFile * Obj)374097a140dSpatrick void objdump::printELFFileHeader(const object::ObjectFile *Obj) {
37509467b48Spatrick   if (const auto *ELFObj = dyn_cast<ELF32LEObjectFile>(Obj))
376097a140dSpatrick     printProgramHeaders(ELFObj->getELFFile(), Obj->getFileName());
37709467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF32BEObjectFile>(Obj))
378097a140dSpatrick     printProgramHeaders(ELFObj->getELFFile(), Obj->getFileName());
37909467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF64LEObjectFile>(Obj))
380097a140dSpatrick     printProgramHeaders(ELFObj->getELFFile(), Obj->getFileName());
38109467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF64BEObjectFile>(Obj))
382097a140dSpatrick     printProgramHeaders(ELFObj->getELFFile(), Obj->getFileName());
38309467b48Spatrick }
38409467b48Spatrick 
printELFDynamicSection(const object::ObjectFile * Obj)385097a140dSpatrick void objdump::printELFDynamicSection(const object::ObjectFile *Obj) {
38609467b48Spatrick   if (const auto *ELFObj = dyn_cast<ELF32LEObjectFile>(Obj))
38709467b48Spatrick     printDynamicSection(ELFObj->getELFFile(), Obj->getFileName());
38809467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF32BEObjectFile>(Obj))
38909467b48Spatrick     printDynamicSection(ELFObj->getELFFile(), Obj->getFileName());
39009467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF64LEObjectFile>(Obj))
39109467b48Spatrick     printDynamicSection(ELFObj->getELFFile(), Obj->getFileName());
39209467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF64BEObjectFile>(Obj))
39309467b48Spatrick     printDynamicSection(ELFObj->getELFFile(), Obj->getFileName());
39409467b48Spatrick }
39509467b48Spatrick 
printELFSymbolVersionInfo(const object::ObjectFile * Obj)396097a140dSpatrick void objdump::printELFSymbolVersionInfo(const object::ObjectFile *Obj) {
39709467b48Spatrick   if (const auto *ELFObj = dyn_cast<ELF32LEObjectFile>(Obj))
39809467b48Spatrick     printSymbolVersionInfo(ELFObj->getELFFile(), Obj->getFileName());
39909467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF32BEObjectFile>(Obj))
40009467b48Spatrick     printSymbolVersionInfo(ELFObj->getELFFile(), Obj->getFileName());
40109467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF64LEObjectFile>(Obj))
40209467b48Spatrick     printSymbolVersionInfo(ELFObj->getELFFile(), Obj->getFileName());
40309467b48Spatrick   else if (const auto *ELFObj = dyn_cast<ELF64BEObjectFile>(Obj))
40409467b48Spatrick     printSymbolVersionInfo(ELFObj->getELFFile(), Obj->getFileName());
40509467b48Spatrick }
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