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Petr Hosek05a04cb2017-08-01 00:33:58 +00001//===- Object.h -------------------------------------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#ifndef LLVM_OBJCOPY_OBJECT_H
11#define LLVM_OBJCOPY_OBJECT_H
12
13#include "llvm/MC/StringTableBuilder.h"
14#include "llvm/Object/ELFObjectFile.h"
15#include "llvm/Support/FileOutputBuffer.h"
16
17#include <memory>
18#include <set>
19
20class Segment;
21
22class SectionBase {
23public:
24 llvm::StringRef Name;
25 Segment *ParentSegment = nullptr;
26 uint64_t HeaderOffset;
27 uint64_t OriginalOffset;
28 uint32_t Index;
29
30 uint64_t Addr = 0;
31 uint64_t Align = 1;
32 uint32_t EntrySize = 0;
33 uint64_t Flags = 0;
34 uint64_t Info = 0;
35 uint64_t Link = llvm::ELF::SHN_UNDEF;
36 uint64_t NameIndex = 0;
37 uint64_t Offset = 0;
38 uint64_t Size = 0;
39 uint64_t Type = llvm::ELF::SHT_NULL;
40
41 virtual ~SectionBase() {}
42 virtual void finalize();
43 template <class ELFT> void writeHeader(llvm::FileOutputBuffer &Out) const;
44 virtual void writeSection(llvm::FileOutputBuffer &Out) const = 0;
45};
46
47class Segment {
48private:
49 struct SectionCompare {
50 bool operator()(const SectionBase *Lhs, const SectionBase *Rhs) const {
51 // Some sections might have the same address if one of them is empty. To
52 // fix this we can use the lexicographic ordering on ->Addr and the
53 // address of the actully stored section.
54 if (Lhs->OriginalOffset == Rhs->OriginalOffset)
55 return Lhs < Rhs;
56 return Lhs->OriginalOffset < Rhs->OriginalOffset;
57 }
58 };
59
60 std::set<const SectionBase *, SectionCompare> Sections;
Petr Hosekc4df10e2017-08-04 21:09:26 +000061 llvm::ArrayRef<uint8_t> Contents;
Petr Hosek05a04cb2017-08-01 00:33:58 +000062
63public:
64 uint64_t Align;
65 uint64_t FileSize;
66 uint32_t Flags;
67 uint32_t Index;
68 uint64_t MemSize;
69 uint64_t Offset;
70 uint64_t PAddr;
71 uint64_t Type;
72 uint64_t VAddr;
73
Petr Hosek3f383832017-08-26 01:32:20 +000074 uint64_t OriginalOffset;
75
Petr Hosekc4df10e2017-08-04 21:09:26 +000076 Segment(llvm::ArrayRef<uint8_t> Data) : Contents(Data) {}
Petr Hosek05a04cb2017-08-01 00:33:58 +000077 void finalize();
78 const SectionBase *firstSection() const {
79 if (!Sections.empty())
80 return *Sections.begin();
81 return nullptr;
82 }
83 void addSection(const SectionBase *sec) { Sections.insert(sec); }
84 template <class ELFT> void writeHeader(llvm::FileOutputBuffer &Out) const;
Petr Hosekc4df10e2017-08-04 21:09:26 +000085 void writeSegment(llvm::FileOutputBuffer &Out) const;
Petr Hosek05a04cb2017-08-01 00:33:58 +000086};
87
88class Section : public SectionBase {
89private:
90 llvm::ArrayRef<uint8_t> Contents;
91
92public:
93 Section(llvm::ArrayRef<uint8_t> Data) : Contents(Data) {}
94 void writeSection(llvm::FileOutputBuffer &Out) const override;
95};
96
97// This is just a wraper around a StringTableBuilder that implements SectionBase
98class StringTableSection : public SectionBase {
99private:
100 llvm::StringTableBuilder StrTabBuilder;
101
102public:
103 StringTableSection() : StrTabBuilder(llvm::StringTableBuilder::ELF) {
104 Type = llvm::ELF::SHT_STRTAB;
105 }
106
107 void addString(llvm::StringRef Name);
108 uint32_t findIndex(llvm::StringRef Name) const;
109 void finalize() override;
110 void writeSection(llvm::FileOutputBuffer &Out) const override;
111 static bool classof(const SectionBase *S) {
112 return S->Type == llvm::ELF::SHT_STRTAB;
113 }
114};
115
Petr Hosek79cee9e2017-08-29 02:12:03 +0000116struct Symbol {
117 uint8_t Binding;
118 SectionBase *DefinedIn;
119 uint32_t Index;
120 llvm::StringRef Name;
121 uint32_t NameIndex;
122 uint64_t Size;
123 uint8_t Type;
124 uint64_t Value;
125};
126
127class SymbolTableSection : public SectionBase {
128protected:
129 std::vector<std::unique_ptr<Symbol>> Symbols;
130 StringTableSection *SymbolNames;
131
132public:
133 void setStrTab(StringTableSection *StrTab) { SymbolNames = StrTab; }
134 void addSymbol(llvm::StringRef Name, uint8_t Bind, uint8_t Type,
135 SectionBase *DefinedIn, uint64_t Value, uint64_t Sz);
136 void addSymbolNames();
137 const Symbol *getSymbolByIndex(uint32_t Index) const;
138 void finalize() override;
139 static bool classof(const SectionBase *S) {
140 return S->Type == llvm::ELF::SHT_SYMTAB;
141 }
142};
143
144// Only writeSection depends on the ELF type so we implement it in a subclass.
145template <class ELFT> class SymbolTableSectionImpl : public SymbolTableSection {
146 void writeSection(llvm::FileOutputBuffer &Out) const override;
147};
148
Petr Hosek05a04cb2017-08-01 00:33:58 +0000149template <class ELFT> class Object {
150private:
151 typedef std::unique_ptr<SectionBase> SecPtr;
152 typedef std::unique_ptr<Segment> SegPtr;
153
154 typedef typename ELFT::Shdr Elf_Shdr;
155 typedef typename ELFT::Ehdr Elf_Ehdr;
156 typedef typename ELFT::Phdr Elf_Phdr;
157
Petr Hosek79cee9e2017-08-29 02:12:03 +0000158 void initSymbolTable(const llvm::object::ELFFile<ELFT> &ElfFile,
159 SymbolTableSection *SymTab);
Petr Hosekb1bb3e52017-08-04 05:33:44 +0000160 SecPtr makeSection(const llvm::object::ELFFile<ELFT> &ElfFile,
161 const Elf_Shdr &Shdr);
162 void readProgramHeaders(const llvm::object::ELFFile<ELFT> &ElfFile);
163 void readSectionHeaders(const llvm::object::ELFFile<ELFT> &ElfFile);
Petr Hosekc4df10e2017-08-04 21:09:26 +0000164
165protected:
166 StringTableSection *SectionNames;
Petr Hosek79cee9e2017-08-29 02:12:03 +0000167 SymbolTableSection *SymbolTable;
Petr Hosekc4df10e2017-08-04 21:09:26 +0000168 std::vector<SecPtr> Sections;
169 std::vector<SegPtr> Segments;
170
Petr Hosek05a04cb2017-08-01 00:33:58 +0000171 void writeHeader(llvm::FileOutputBuffer &Out) const;
172 void writeProgramHeaders(llvm::FileOutputBuffer &Out) const;
173 void writeSectionData(llvm::FileOutputBuffer &Out) const;
174 void writeSectionHeaders(llvm::FileOutputBuffer &Out) const;
175
176public:
177 uint8_t Ident[16];
178 uint64_t Entry;
179 uint64_t SHOffset;
180 uint32_t Type;
181 uint32_t Machine;
182 uint32_t Version;
183 uint32_t Flags;
184
185 Object(const llvm::object::ELFObjectFile<ELFT> &Obj);
Petr Hosekc4df10e2017-08-04 21:09:26 +0000186 virtual size_t totalSize() const = 0;
187 virtual void finalize() = 0;
188 virtual void write(llvm::FileOutputBuffer &Out) const = 0;
189 virtual ~Object() = default;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000190};
191
Petr Hosekc4df10e2017-08-04 21:09:26 +0000192template <class ELFT> class ELFObject : public Object<ELFT> {
193private:
194 typedef std::unique_ptr<SectionBase> SecPtr;
195 typedef std::unique_ptr<Segment> SegPtr;
196
197 typedef typename ELFT::Shdr Elf_Shdr;
198 typedef typename ELFT::Ehdr Elf_Ehdr;
199 typedef typename ELFT::Phdr Elf_Phdr;
200
201 void sortSections();
202 void assignOffsets();
203
204public:
205 ELFObject(const llvm::object::ELFObjectFile<ELFT> &Obj) : Object<ELFT>(Obj) {}
206 void finalize() override;
207 size_t totalSize() const override;
208 void write(llvm::FileOutputBuffer &Out) const override;
209};
210
211template <class ELFT> class BinaryObject : public Object<ELFT> {
212private:
213 typedef std::unique_ptr<SectionBase> SecPtr;
214 typedef std::unique_ptr<Segment> SegPtr;
215
216 uint64_t TotalSize;
217
218public:
219 BinaryObject(const llvm::object::ELFObjectFile<ELFT> &Obj)
220 : Object<ELFT>(Obj) {}
221 void finalize() override;
222 size_t totalSize() const override;
223 void write(llvm::FileOutputBuffer &Out) const override;
224};
Petr Hosek05a04cb2017-08-01 00:33:58 +0000225#endif