xref: /freebsd/contrib/llvm-project/llvm/lib/Object/ObjectFile.cpp (revision 47be48457393ba6747cc3144272b1f4d8b9077fb)
1  //===- ObjectFile.cpp - File format independent object file ---------------===//
2  //
3  // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4  // See https://llvm.org/LICENSE.txt for license information.
5  // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6  //
7  //===----------------------------------------------------------------------===//
8  //
9  // This file defines a file format independent ObjectFile class.
10  //
11  //===----------------------------------------------------------------------===//
12  
13  #include "llvm/Object/ObjectFile.h"
14  #include "llvm/ADT/StringRef.h"
15  #include "llvm/BinaryFormat/Magic.h"
16  #include "llvm/Object/Binary.h"
17  #include "llvm/Object/COFF.h"
18  #include "llvm/Object/Error.h"
19  #include "llvm/Object/MachO.h"
20  #include "llvm/Object/Wasm.h"
21  #include "llvm/Support/Error.h"
22  #include "llvm/Support/ErrorHandling.h"
23  #include "llvm/Support/ErrorOr.h"
24  #include "llvm/Support/FileSystem.h"
25  #include "llvm/Support/MemoryBuffer.h"
26  #include "llvm/Support/raw_ostream.h"
27  #include <algorithm>
28  #include <cstdint>
29  #include <memory>
30  #include <system_error>
31  
32  using namespace llvm;
33  using namespace object;
34  
35  raw_ostream &object::operator<<(raw_ostream &OS, const SectionedAddress &Addr) {
36    OS << "SectionedAddress{" << format_hex(Addr.Address, 10);
37    if (Addr.SectionIndex != SectionedAddress::UndefSection)
38      OS << ", " << Addr.SectionIndex;
39    return OS << "}";
40  }
41  
42  void ObjectFile::anchor() {}
43  
44  ObjectFile::ObjectFile(unsigned int Type, MemoryBufferRef Source)
45      : SymbolicFile(Type, Source) {}
46  
47  bool SectionRef::containsSymbol(SymbolRef S) const {
48    Expected<section_iterator> SymSec = S.getSection();
49    if (!SymSec) {
50      // TODO: Actually report errors helpfully.
51      consumeError(SymSec.takeError());
52      return false;
53    }
54    return *this == **SymSec;
55  }
56  
57  Expected<uint64_t> ObjectFile::getSymbolValue(DataRefImpl Ref) const {
58    uint32_t Flags;
59    if (Error E = getSymbolFlags(Ref).moveInto(Flags))
60      // TODO: Test this error.
61      return std::move(E);
62  
63    if (Flags & SymbolRef::SF_Undefined)
64      return 0;
65    if (Flags & SymbolRef::SF_Common)
66      return getCommonSymbolSize(Ref);
67    return getSymbolValueImpl(Ref);
68  }
69  
70  Error ObjectFile::printSymbolName(raw_ostream &OS, DataRefImpl Symb) const {
71    Expected<StringRef> Name = getSymbolName(Symb);
72    if (!Name)
73      return Name.takeError();
74    OS << *Name;
75    return Error::success();
76  }
77  
78  uint32_t ObjectFile::getSymbolAlignment(DataRefImpl DRI) const { return 0; }
79  
80  bool ObjectFile::isSectionBitcode(DataRefImpl Sec) const {
81    Expected<StringRef> NameOrErr = getSectionName(Sec);
82    if (NameOrErr)
83      return *NameOrErr == ".llvmbc";
84    consumeError(NameOrErr.takeError());
85    return false;
86  }
87  
88  bool ObjectFile::isSectionStripped(DataRefImpl Sec) const { return false; }
89  
90  bool ObjectFile::isBerkeleyText(DataRefImpl Sec) const {
91    return isSectionText(Sec);
92  }
93  
94  bool ObjectFile::isBerkeleyData(DataRefImpl Sec) const {
95    return isSectionData(Sec);
96  }
97  
98  bool ObjectFile::isDebugSection(DataRefImpl Sec) const { return false; }
99  
100  Expected<section_iterator>
101  ObjectFile::getRelocatedSection(DataRefImpl Sec) const {
102    return section_iterator(SectionRef(Sec, this));
103  }
104  
105  Triple ObjectFile::makeTriple() const {
106    Triple TheTriple;
107    auto Arch = getArch();
108    TheTriple.setArch(Triple::ArchType(Arch));
109  
110    // For ARM targets, try to use the build attributes to build determine
111    // the build target. Target features are also added, but later during
112    // disassembly.
113    if (Arch == Triple::arm || Arch == Triple::armeb)
114      setARMSubArch(TheTriple);
115  
116    // TheTriple defaults to ELF, and COFF doesn't have an environment:
117    // something we can do here is indicate that it is mach-o.
118    if (isMachO()) {
119      TheTriple.setObjectFormat(Triple::MachO);
120    } else if (isCOFF()) {
121      const auto COFFObj = cast<COFFObjectFile>(this);
122      if (COFFObj->getArch() == Triple::thumb)
123        TheTriple.setTriple("thumbv7-windows");
124    } else if (isXCOFF()) {
125      // XCOFF implies AIX.
126      TheTriple.setOS(Triple::AIX);
127      TheTriple.setObjectFormat(Triple::XCOFF);
128    }
129  
130    return TheTriple;
131  }
132  
133  Expected<std::unique_ptr<ObjectFile>>
134  ObjectFile::createObjectFile(MemoryBufferRef Object, file_magic Type,
135                               bool InitContent) {
136    StringRef Data = Object.getBuffer();
137    if (Type == file_magic::unknown)
138      Type = identify_magic(Data);
139  
140    switch (Type) {
141    case file_magic::unknown:
142    case file_magic::bitcode:
143    case file_magic::coff_cl_gl_object:
144    case file_magic::archive:
145    case file_magic::macho_universal_binary:
146    case file_magic::windows_resource:
147    case file_magic::pdb:
148    case file_magic::minidump:
149    case file_magic::goff_object:
150      return errorCodeToError(object_error::invalid_file_type);
151    case file_magic::tapi_file:
152      return errorCodeToError(object_error::invalid_file_type);
153    case file_magic::elf:
154    case file_magic::elf_relocatable:
155    case file_magic::elf_executable:
156    case file_magic::elf_shared_object:
157    case file_magic::elf_core:
158      return createELFObjectFile(Object, InitContent);
159    case file_magic::macho_object:
160    case file_magic::macho_executable:
161    case file_magic::macho_fixed_virtual_memory_shared_lib:
162    case file_magic::macho_core:
163    case file_magic::macho_preload_executable:
164    case file_magic::macho_dynamically_linked_shared_lib:
165    case file_magic::macho_dynamic_linker:
166    case file_magic::macho_bundle:
167    case file_magic::macho_dynamically_linked_shared_lib_stub:
168    case file_magic::macho_dsym_companion:
169    case file_magic::macho_kext_bundle:
170      return createMachOObjectFile(Object);
171    case file_magic::coff_object:
172    case file_magic::coff_import_library:
173    case file_magic::pecoff_executable:
174      return createCOFFObjectFile(Object);
175    case file_magic::xcoff_object_32:
176      return createXCOFFObjectFile(Object, Binary::ID_XCOFF32);
177    case file_magic::xcoff_object_64:
178      return createXCOFFObjectFile(Object, Binary::ID_XCOFF64);
179    case file_magic::wasm_object:
180      return createWasmObjectFile(Object);
181    }
182    llvm_unreachable("Unexpected Object File Type");
183  }
184  
185  Expected<OwningBinary<ObjectFile>>
186  ObjectFile::createObjectFile(StringRef ObjectPath) {
187    ErrorOr<std::unique_ptr<MemoryBuffer>> FileOrErr =
188        MemoryBuffer::getFile(ObjectPath);
189    if (std::error_code EC = FileOrErr.getError())
190      return errorCodeToError(EC);
191    std::unique_ptr<MemoryBuffer> Buffer = std::move(FileOrErr.get());
192  
193    Expected<std::unique_ptr<ObjectFile>> ObjOrErr =
194        createObjectFile(Buffer->getMemBufferRef());
195    if (Error Err = ObjOrErr.takeError())
196      return std::move(Err);
197    std::unique_ptr<ObjectFile> Obj = std::move(ObjOrErr.get());
198  
199    return OwningBinary<ObjectFile>(std::move(Obj), std::move(Buffer));
200  }
201