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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
Eugene Zelenko0ad18f82017-11-01 21:16:06 +000010#ifndef LLVM_TOOLS_OBJCOPY_OBJECT_H
11#define LLVM_TOOLS_OBJCOPY_OBJECT_H
Petr Hosek05a04cb2017-08-01 00:33:58 +000012
Eugene Zelenko0ad18f82017-11-01 21:16:06 +000013#include "llvm/ADT/ArrayRef.h"
14#include "llvm/ADT/StringRef.h"
15#include "llvm/ADT/Twine.h"
16#include "llvm/BinaryFormat/ELF.h"
Petr Hosek05a04cb2017-08-01 00:33:58 +000017#include "llvm/MC/StringTableBuilder.h"
18#include "llvm/Object/ELFObjectFile.h"
Jake Ehrlich76e91102018-01-25 22:46:17 +000019#include "llvm/Support/FileOutputBuffer.h"
Jake Ehrlichea07d3c2018-01-25 22:15:14 +000020#include "llvm/Support/JamCRC.h"
Eugene Zelenko0ad18f82017-11-01 21:16:06 +000021#include <cstddef>
22#include <cstdint>
23#include <functional>
Petr Hosek05a04cb2017-08-01 00:33:58 +000024#include <memory>
25#include <set>
Eugene Zelenko0ad18f82017-11-01 21:16:06 +000026#include <vector>
Petr Hosek05a04cb2017-08-01 00:33:58 +000027
Eugene Zelenko0ad18f82017-11-01 21:16:06 +000028namespace llvm {
29
Jake Ehrlichf5a43772017-09-25 20:37:28 +000030class SectionBase;
Jake Ehrlich76e91102018-01-25 22:46:17 +000031class Section;
32class OwnedDataSection;
33class StringTableSection;
34class SymbolTableSection;
35class RelocationSection;
36class DynamicRelocationSection;
37class GnuDebugLinkSection;
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +000038class GroupSection;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +000039class Segment;
Jake Ehrlich76e91102018-01-25 22:46:17 +000040class Object;
Jake Ehrlichf5a43772017-09-25 20:37:28 +000041
42class SectionTableRef {
Jake Ehrlich76e91102018-01-25 22:46:17 +000043 MutableArrayRef<std::unique_ptr<SectionBase>> Sections;
Jake Ehrlichf5a43772017-09-25 20:37:28 +000044
45public:
Jake Ehrlich76e91102018-01-25 22:46:17 +000046 using iterator = pointee_iterator<std::unique_ptr<SectionBase> *>;
47
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +000048 explicit SectionTableRef(MutableArrayRef<std::unique_ptr<SectionBase>> Secs)
Jake Ehrlichf5a43772017-09-25 20:37:28 +000049 : Sections(Secs) {}
50 SectionTableRef(const SectionTableRef &) = default;
51
Jake Ehrlich76e91102018-01-25 22:46:17 +000052 iterator begin() { return iterator(Sections.data()); }
53 iterator end() { return iterator(Sections.data() + Sections.size()); }
54
Jake Ehrlich8b831c12018-03-07 20:33:02 +000055 SectionBase *getSection(uint16_t Index, Twine ErrMsg);
Jake Ehrlichf5a43772017-09-25 20:37:28 +000056
57 template <class T>
Jake Ehrlich8b831c12018-03-07 20:33:02 +000058 T *getSectionOfType(uint16_t Index, Twine IndexErrMsg, Twine TypeErrMsg);
Jake Ehrlichf5a43772017-09-25 20:37:28 +000059};
Petr Hosek05a04cb2017-08-01 00:33:58 +000060
Jake Ehrlich76e91102018-01-25 22:46:17 +000061enum ElfType { ELFT_ELF32LE, ELFT_ELF64LE, ELFT_ELF32BE, ELFT_ELF64BE };
62
63class SectionVisitor {
64public:
65 virtual ~SectionVisitor();
66
67 virtual void visit(const Section &Sec) = 0;
68 virtual void visit(const OwnedDataSection &Sec) = 0;
69 virtual void visit(const StringTableSection &Sec) = 0;
70 virtual void visit(const SymbolTableSection &Sec) = 0;
71 virtual void visit(const RelocationSection &Sec) = 0;
72 virtual void visit(const DynamicRelocationSection &Sec) = 0;
73 virtual void visit(const GnuDebugLinkSection &Sec) = 0;
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +000074 virtual void visit(const GroupSection &Sec) = 0;
Jake Ehrlich76e91102018-01-25 22:46:17 +000075};
76
77class SectionWriter : public SectionVisitor {
78protected:
79 FileOutputBuffer &Out;
80
81public:
82 virtual ~SectionWriter(){};
83
84 void visit(const Section &Sec) override;
85 void visit(const OwnedDataSection &Sec) override;
86 void visit(const StringTableSection &Sec) override;
87 void visit(const DynamicRelocationSection &Sec) override;
88 virtual void visit(const SymbolTableSection &Sec) override = 0;
89 virtual void visit(const RelocationSection &Sec) override = 0;
90 virtual void visit(const GnuDebugLinkSection &Sec) override = 0;
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +000091 virtual void visit(const GroupSection &Sec) override = 0;
Jake Ehrlich76e91102018-01-25 22:46:17 +000092
93 SectionWriter(FileOutputBuffer &Buf) : Out(Buf) {}
94};
95
96template <class ELFT> class ELFSectionWriter : public SectionWriter {
97private:
98 using Elf_Word = typename ELFT::Word;
99 using Elf_Rel = typename ELFT::Rel;
100 using Elf_Rela = typename ELFT::Rela;
101
102public:
103 virtual ~ELFSectionWriter() {}
104 void visit(const SymbolTableSection &Sec) override;
105 void visit(const RelocationSection &Sec) override;
106 void visit(const GnuDebugLinkSection &Sec) override;
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000107 void visit(const GroupSection &Sec) override;
Jake Ehrlich76e91102018-01-25 22:46:17 +0000108
109 ELFSectionWriter(FileOutputBuffer &Buf) : SectionWriter(Buf) {}
110};
111
112#define MAKE_SEC_WRITER_FRIEND \
113 friend class SectionWriter; \
114 template <class ELFT> friend class ELFSectionWriter;
115
116class BinarySectionWriter : public SectionWriter {
117public:
118 virtual ~BinarySectionWriter() {}
119
120 void visit(const SymbolTableSection &Sec) override;
121 void visit(const RelocationSection &Sec) override;
122 void visit(const GnuDebugLinkSection &Sec) override;
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000123 void visit(const GroupSection &Sec) override;
124
Jake Ehrlich76e91102018-01-25 22:46:17 +0000125 BinarySectionWriter(FileOutputBuffer &Buf) : SectionWriter(Buf) {}
126};
127
128class Writer {
129protected:
130 StringRef File;
131 Object &Obj;
132 std::unique_ptr<FileOutputBuffer> BufPtr;
133
134 void createBuffer(uint64_t Size);
135
136public:
137 virtual ~Writer();
138
139 virtual void finalize() = 0;
140 virtual void write() = 0;
141
142 Writer(StringRef File, Object &Obj) : File(File), Obj(Obj) {}
143};
144
145template <class ELFT> class ELFWriter : public Writer {
146private:
147 using Elf_Shdr = typename ELFT::Shdr;
148 using Elf_Phdr = typename ELFT::Phdr;
149 using Elf_Ehdr = typename ELFT::Ehdr;
150
151 void writeEhdr();
152 void writePhdr(const Segment &Seg);
153 void writeShdr(const SectionBase &Sec);
154
155 void writePhdrs();
156 void writeShdrs();
157 void writeSectionData();
158
159 void assignOffsets();
160
161 std::unique_ptr<ELFSectionWriter<ELFT>> SecWriter;
162
163 size_t totalSize() const;
164
165public:
166 virtual ~ELFWriter() {}
167 bool WriteSectionHeaders = true;
168
169 void finalize() override;
170 void write() override;
171 ELFWriter(StringRef File, Object &Obj, bool WSH)
172 : Writer(File, Obj), WriteSectionHeaders(WSH) {}
173};
174
175class BinaryWriter : public Writer {
176private:
177 std::unique_ptr<BinarySectionWriter> SecWriter;
178
179 uint64_t TotalSize;
180
181public:
182 ~BinaryWriter() {}
183 void finalize() override;
184 void write() override;
185 BinaryWriter(StringRef File, Object &Obj) : Writer(File, Obj) {}
186};
187
Petr Hosek05a04cb2017-08-01 00:33:58 +0000188class SectionBase {
189public:
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000190 StringRef Name;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000191 Segment *ParentSegment = nullptr;
192 uint64_t HeaderOffset;
193 uint64_t OriginalOffset;
194 uint32_t Index;
195
196 uint64_t Addr = 0;
197 uint64_t Align = 1;
198 uint32_t EntrySize = 0;
199 uint64_t Flags = 0;
200 uint64_t Info = 0;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000201 uint64_t Link = ELF::SHN_UNDEF;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000202 uint64_t NameIndex = 0;
203 uint64_t Offset = 0;
204 uint64_t Size = 0;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000205 uint64_t Type = ELF::SHT_NULL;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000206
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000207 virtual ~SectionBase() = default;
208
Jake Ehrlichf5a43772017-09-25 20:37:28 +0000209 virtual void initialize(SectionTableRef SecTable);
Petr Hosek05a04cb2017-08-01 00:33:58 +0000210 virtual void finalize();
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000211 virtual void removeSectionReferences(const SectionBase *Sec);
Jake Ehrlich76e91102018-01-25 22:46:17 +0000212 virtual void accept(SectionVisitor &Visitor) const = 0;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000213};
214
215class Segment {
216private:
217 struct SectionCompare {
218 bool operator()(const SectionBase *Lhs, const SectionBase *Rhs) const {
219 // Some sections might have the same address if one of them is empty. To
220 // fix this we can use the lexicographic ordering on ->Addr and the
221 // address of the actully stored section.
222 if (Lhs->OriginalOffset == Rhs->OriginalOffset)
223 return Lhs < Rhs;
224 return Lhs->OriginalOffset < Rhs->OriginalOffset;
225 }
226 };
227
228 std::set<const SectionBase *, SectionCompare> Sections;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000229 ArrayRef<uint8_t> Contents;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000230
231public:
232 uint64_t Align;
233 uint64_t FileSize;
234 uint32_t Flags;
235 uint32_t Index;
236 uint64_t MemSize;
237 uint64_t Offset;
238 uint64_t PAddr;
239 uint64_t Type;
240 uint64_t VAddr;
241
Petr Hosek3f383832017-08-26 01:32:20 +0000242 uint64_t OriginalOffset;
Jake Ehrlichd246b0a2017-09-19 21:37:35 +0000243 Segment *ParentSegment = nullptr;
Petr Hosek3f383832017-08-26 01:32:20 +0000244
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000245 explicit Segment(ArrayRef<uint8_t> Data) : Contents(Data) {}
Jake Ehrlich6452b112018-02-14 23:31:33 +0000246 Segment() {}
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000247
Petr Hosek05a04cb2017-08-01 00:33:58 +0000248 const SectionBase *firstSection() const {
249 if (!Sections.empty())
250 return *Sections.begin();
251 return nullptr;
252 }
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000253
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000254 void removeSection(const SectionBase *Sec) { Sections.erase(Sec); }
255 void addSection(const SectionBase *Sec) { Sections.insert(Sec); }
Petr Hosek05a04cb2017-08-01 00:33:58 +0000256};
257
258class Section : public SectionBase {
Jake Ehrlich76e91102018-01-25 22:46:17 +0000259 MAKE_SEC_WRITER_FRIEND
260
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000261 ArrayRef<uint8_t> Contents;
Alexander Shaposhnikov52db4332018-04-20 20:46:04 +0000262 SectionBase *LinkSection = nullptr;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000263
264public:
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000265 explicit Section(ArrayRef<uint8_t> Data) : Contents(Data) {}
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000266
Jake Ehrlich76e91102018-01-25 22:46:17 +0000267 void accept(SectionVisitor &Visitor) const override;
Alexander Shaposhnikov52db4332018-04-20 20:46:04 +0000268 void removeSectionReferences(const SectionBase *Sec) override;
269 void initialize(SectionTableRef SecTable) override;
270 void finalize() override;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000271};
272
Jake Ehrliche8437de2017-12-19 00:47:30 +0000273class OwnedDataSection : public SectionBase {
Jake Ehrlich76e91102018-01-25 22:46:17 +0000274 MAKE_SEC_WRITER_FRIEND
275
Jake Ehrliche8437de2017-12-19 00:47:30 +0000276 std::vector<uint8_t> Data;
277
278public:
279 OwnedDataSection(StringRef SecName, ArrayRef<uint8_t> Data)
280 : Data(std::begin(Data), std::end(Data)) {
281 Name = SecName;
282 Type = ELF::SHT_PROGBITS;
283 Size = Data.size();
Jake Ehrlich76e91102018-01-25 22:46:17 +0000284 OriginalOffset = std::numeric_limits<uint64_t>::max();
Jake Ehrliche8437de2017-12-19 00:47:30 +0000285 }
Jake Ehrlich76e91102018-01-25 22:46:17 +0000286
287 void accept(SectionVisitor &Sec) const override;
Jake Ehrliche8437de2017-12-19 00:47:30 +0000288};
289
Jake Ehrlich70bd75f2017-10-10 21:28:22 +0000290// There are two types of string tables that can exist, dynamic and not dynamic.
291// In the dynamic case the string table is allocated. Changing a dynamic string
292// table would mean altering virtual addresses and thus the memory image. So
293// dynamic string tables should not have an interface to modify them or
294// reconstruct them. This type lets us reconstruct a string table. To avoid
295// this class being used for dynamic string tables (which has happened) the
296// classof method checks that the particular instance is not allocated. This
297// then agrees with the makeSection method used to construct most sections.
Petr Hosek05a04cb2017-08-01 00:33:58 +0000298class StringTableSection : public SectionBase {
Jake Ehrlich76e91102018-01-25 22:46:17 +0000299 MAKE_SEC_WRITER_FRIEND
300
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000301 StringTableBuilder StrTabBuilder;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000302
303public:
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000304 StringTableSection() : StrTabBuilder(StringTableBuilder::ELF) {
305 Type = ELF::SHT_STRTAB;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000306 }
307
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000308 void addString(StringRef Name);
309 uint32_t findIndex(StringRef Name) const;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000310 void finalize() override;
Jake Ehrlich76e91102018-01-25 22:46:17 +0000311 void accept(SectionVisitor &Visitor) const override;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000312
Petr Hosek05a04cb2017-08-01 00:33:58 +0000313 static bool classof(const SectionBase *S) {
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000314 if (S->Flags & ELF::SHF_ALLOC)
Jake Ehrlich70bd75f2017-10-10 21:28:22 +0000315 return false;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000316 return S->Type == ELF::SHT_STRTAB;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000317 }
318};
319
Petr Hosekec2b3fc2017-09-07 23:02:50 +0000320// Symbols have a st_shndx field that normally stores an index but occasionally
321// stores a different special value. This enum keeps track of what the st_shndx
322// field means. Most of the values are just copies of the special SHN_* values.
323// SYMBOL_SIMPLE_INDEX means that the st_shndx is just an index of a section.
324enum SymbolShndxType {
325 SYMBOL_SIMPLE_INDEX = 0,
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000326 SYMBOL_ABS = ELF::SHN_ABS,
327 SYMBOL_COMMON = ELF::SHN_COMMON,
328 SYMBOL_HEXAGON_SCOMMON = ELF::SHN_HEXAGON_SCOMMON,
329 SYMBOL_HEXAGON_SCOMMON_2 = ELF::SHN_HEXAGON_SCOMMON_2,
330 SYMBOL_HEXAGON_SCOMMON_4 = ELF::SHN_HEXAGON_SCOMMON_4,
331 SYMBOL_HEXAGON_SCOMMON_8 = ELF::SHN_HEXAGON_SCOMMON_8,
Petr Hosekec2b3fc2017-09-07 23:02:50 +0000332};
333
Petr Hosek79cee9e2017-08-29 02:12:03 +0000334struct Symbol {
335 uint8_t Binding;
Jake Ehrliched95fce2017-09-27 00:44:00 +0000336 SectionBase *DefinedIn = nullptr;
Petr Hosekec2b3fc2017-09-07 23:02:50 +0000337 SymbolShndxType ShndxType;
Petr Hosek79cee9e2017-08-29 02:12:03 +0000338 uint32_t Index;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000339 StringRef Name;
Petr Hosek79cee9e2017-08-29 02:12:03 +0000340 uint32_t NameIndex;
341 uint64_t Size;
342 uint8_t Type;
343 uint64_t Value;
Jake Ehrlich30d927a2018-01-02 23:01:24 +0000344 uint8_t Visibility;
Petr Hosekec2b3fc2017-09-07 23:02:50 +0000345
346 uint16_t getShndx() const;
Petr Hosek79cee9e2017-08-29 02:12:03 +0000347};
348
349class SymbolTableSection : public SectionBase {
Jake Ehrlich76e91102018-01-25 22:46:17 +0000350 MAKE_SEC_WRITER_FRIEND
351
Alexander Shaposhnikova8f15502018-02-24 00:41:01 +0000352 void setStrTab(StringTableSection *StrTab) { SymbolNames = StrTab; }
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000353 void assignIndices();
Alexander Shaposhnikova8f15502018-02-24 00:41:01 +0000354
Petr Hosek79cee9e2017-08-29 02:12:03 +0000355protected:
356 std::vector<std::unique_ptr<Symbol>> Symbols;
Jake Ehrliched95fce2017-09-27 00:44:00 +0000357 StringTableSection *SymbolNames = nullptr;
Petr Hosek79cee9e2017-08-29 02:12:03 +0000358
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000359 using SymPtr = std::unique_ptr<Symbol>;
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000360
Petr Hosek79cee9e2017-08-29 02:12:03 +0000361public:
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000362 void addSymbol(StringRef Name, uint8_t Bind, uint8_t Type,
Jake Ehrlich30d927a2018-01-02 23:01:24 +0000363 SectionBase *DefinedIn, uint64_t Value, uint8_t Visibility,
364 uint16_t Shndx, uint64_t Sz);
Jake Ehrlich8b831c12018-03-07 20:33:02 +0000365 void addSymbolNames();
Jake Ehrlichef3b80c2017-11-30 20:14:53 +0000366 const SectionBase *getStrTab() const { return SymbolNames; }
Petr Hosek79cee9e2017-08-29 02:12:03 +0000367 const Symbol *getSymbolByIndex(uint32_t Index) const;
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000368 void removeSectionReferences(const SectionBase *Sec) override;
Jake Ehrlich27a29b02018-01-05 19:19:09 +0000369 void localize(std::function<bool(const Symbol &)> ToLocalize);
Jake Ehrlichf5a43772017-09-25 20:37:28 +0000370 void initialize(SectionTableRef SecTable) override;
Petr Hosek79cee9e2017-08-29 02:12:03 +0000371 void finalize() override;
Jake Ehrlich76e91102018-01-25 22:46:17 +0000372 void accept(SectionVisitor &Visitor) const override;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000373
Petr Hosek79cee9e2017-08-29 02:12:03 +0000374 static bool classof(const SectionBase *S) {
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000375 return S->Type == ELF::SHT_SYMTAB;
Petr Hosek79cee9e2017-08-29 02:12:03 +0000376 }
377};
378
Petr Hosekd7df9b22017-09-06 23:41:02 +0000379struct Relocation {
Jake Ehrliched95fce2017-09-27 00:44:00 +0000380 const Symbol *RelocSymbol = nullptr;
Petr Hosekd7df9b22017-09-06 23:41:02 +0000381 uint64_t Offset;
382 uint64_t Addend;
383 uint32_t Type;
384};
385
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000386// All relocation sections denote relocations to apply to another section.
387// However, some relocation sections use a dynamic symbol table and others use
388// a regular symbol table. Because the types of the two symbol tables differ in
389// our system (because they should behave differently) we can't uniformly
390// represent all relocations with the same base class if we expose an interface
391// that mentions the symbol table type. So we split the two base types into two
392// different classes, one which handles the section the relocation is applied to
393// and another which handles the symbol table type. The symbol table type is
394// taken as a type parameter to the class (see RelocSectionWithSymtabBase).
395class RelocationSectionBase : public SectionBase {
396protected:
Jake Ehrliched95fce2017-09-27 00:44:00 +0000397 SectionBase *SecToApplyRel = nullptr;
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000398
399public:
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000400 const SectionBase *getSection() const { return SecToApplyRel; }
Jake Ehrlichc5ff7272017-10-10 18:32:22 +0000401 void setSection(SectionBase *Sec) { SecToApplyRel = Sec; }
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000402
403 static bool classof(const SectionBase *S) {
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000404 return S->Type == ELF::SHT_REL || S->Type == ELF::SHT_RELA;
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000405 }
406};
407
408// Takes the symbol table type to use as a parameter so that we can deduplicate
409// that code between the two symbol table types.
410template <class SymTabType>
411class RelocSectionWithSymtabBase : public RelocationSectionBase {
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000412 SymTabType *Symbols = nullptr;
Alexander Shaposhnikova8f15502018-02-24 00:41:01 +0000413 void setSymTab(SymTabType *SymTab) { Symbols = SymTab; }
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000414
415protected:
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000416 RelocSectionWithSymtabBase() = default;
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000417
418public:
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000419 void removeSectionReferences(const SectionBase *Sec) override;
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000420 void initialize(SectionTableRef SecTable) override;
421 void finalize() override;
422};
423
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000424class RelocationSection
425 : public RelocSectionWithSymtabBase<SymbolTableSection> {
Jake Ehrlich76e91102018-01-25 22:46:17 +0000426 MAKE_SEC_WRITER_FRIEND
427
Petr Hosekd7df9b22017-09-06 23:41:02 +0000428 std::vector<Relocation> Relocations;
Petr Hosekd7df9b22017-09-06 23:41:02 +0000429
Petr Hosekd7df9b22017-09-06 23:41:02 +0000430public:
Petr Hosekd7df9b22017-09-06 23:41:02 +0000431 void addRelocation(Relocation Rel) { Relocations.push_back(Rel); }
Jake Ehrlich76e91102018-01-25 22:46:17 +0000432 void accept(SectionVisitor &Visitor) const override;
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000433
Petr Hosekd7df9b22017-09-06 23:41:02 +0000434 static bool classof(const SectionBase *S) {
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000435 if (S->Flags & ELF::SHF_ALLOC)
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000436 return false;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000437 return S->Type == ELF::SHT_REL || S->Type == ELF::SHT_RELA;
Petr Hosekd7df9b22017-09-06 23:41:02 +0000438 }
439};
440
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000441// TODO: The way stripping and groups interact is complicated
442// and still needs to be worked on.
443
444class GroupSection : public SectionBase {
445 MAKE_SEC_WRITER_FRIEND
446 const SymbolTableSection *SymTab = nullptr;
447 const Symbol *Sym = nullptr;
448 ELF::Elf32_Word FlagWord;
449 SmallVector<SectionBase *, 3> GroupMembers;
Alexander Shaposhnikov43b8acd2018-03-20 18:20:42 +0000450
451public:
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000452 // TODO: Contents is present in several classes of the hierarchy.
453 // This needs to be refactored to avoid duplication.
454 ArrayRef<uint8_t> Contents;
Alexander Shaposhnikov3b24ed72018-03-20 19:46:00 +0000455
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000456 explicit GroupSection(ArrayRef<uint8_t> Data) : Contents(Data) {}
457
458 void setSymTab(const SymbolTableSection *SymTabSec) { SymTab = SymTabSec; }
459 void setSymbol(const Symbol *S) { Sym = S; }
460 void setFlagWord(ELF::Elf32_Word W) { FlagWord = W; }
461 void addMember(SectionBase *Sec) { GroupMembers.push_back(Sec); }
462
Alexander Shaposhnikov52db4332018-04-20 20:46:04 +0000463 void initialize(SectionTableRef SecTable) override{};
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000464 void accept(SectionVisitor &) const override;
465 void finalize() override;
466
467 static bool classof(const SectionBase *S) {
468 return S->Type == ELF::SHT_GROUP;
469 }
470};
471
Alexander Shaposhnikov52db4332018-04-20 20:46:04 +0000472class DynamicSymbolTableSection : public Section {
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000473public:
Alexander Shaposhnikov52db4332018-04-20 20:46:04 +0000474 explicit DynamicSymbolTableSection(ArrayRef<uint8_t> Data) : Section(Data) {}
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000475
Jake Ehrliche5d424b2017-09-20 17:11:58 +0000476 static bool classof(const SectionBase *S) {
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000477 return S->Type == ELF::SHT_DYNSYM;
Jake Ehrliche5d424b2017-09-20 17:11:58 +0000478 }
479};
480
Alexander Shaposhnikov52db4332018-04-20 20:46:04 +0000481class DynamicSection : public Section {
Jake Ehrliche5d424b2017-09-20 17:11:58 +0000482public:
Alexander Shaposhnikov52db4332018-04-20 20:46:04 +0000483 explicit DynamicSection(ArrayRef<uint8_t> Data) : Section(Data) {}
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000484
Jake Ehrliche5d424b2017-09-20 17:11:58 +0000485 static bool classof(const SectionBase *S) {
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000486 return S->Type == ELF::SHT_DYNAMIC;
Jake Ehrliche5d424b2017-09-20 17:11:58 +0000487 }
488};
489
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000490class DynamicRelocationSection
Jake Ehrlich36a2eb32017-10-10 18:47:09 +0000491 : public RelocSectionWithSymtabBase<DynamicSymbolTableSection> {
Jake Ehrlich76e91102018-01-25 22:46:17 +0000492 MAKE_SEC_WRITER_FRIEND
493
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000494private:
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000495 ArrayRef<uint8_t> Contents;
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000496
497public:
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000498 explicit DynamicRelocationSection(ArrayRef<uint8_t> Data) : Contents(Data) {}
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000499
Jake Ehrlich76e91102018-01-25 22:46:17 +0000500 void accept(SectionVisitor &) const override;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000501
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000502 static bool classof(const SectionBase *S) {
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000503 if (!(S->Flags & ELF::SHF_ALLOC))
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000504 return false;
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000505 return S->Type == ELF::SHT_REL || S->Type == ELF::SHT_RELA;
Jake Ehrlich9f1a3902017-09-26 18:02:25 +0000506 }
507};
508
Jake Ehrlich76e91102018-01-25 22:46:17 +0000509class GnuDebugLinkSection : public SectionBase {
510 MAKE_SEC_WRITER_FRIEND
511
Jake Ehrlichea07d3c2018-01-25 22:15:14 +0000512private:
Jake Ehrlichea07d3c2018-01-25 22:15:14 +0000513 StringRef FileName;
514 uint32_t CRC32;
515
516 void init(StringRef File, StringRef Data);
517
518public:
519 // If we add this section from an external source we can use this ctor.
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000520 explicit GnuDebugLinkSection(StringRef File);
Jake Ehrlich76e91102018-01-25 22:46:17 +0000521 void accept(SectionVisitor &Visitor) const override;
Jake Ehrlichea07d3c2018-01-25 22:15:14 +0000522};
523
Jake Ehrlich76e91102018-01-25 22:46:17 +0000524class Reader {
525public:
526 virtual ~Reader();
527 virtual std::unique_ptr<Object> create() const = 0;
528};
529
Jake Ehrlich76e91102018-01-25 22:46:17 +0000530using object::Binary;
531using object::ELFFile;
532using object::ELFObjectFile;
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000533using object::OwningBinary;
Jake Ehrlich76e91102018-01-25 22:46:17 +0000534
535template <class ELFT> class ELFBuilder {
536private:
Jake Ehrlich6452b112018-02-14 23:31:33 +0000537 using Elf_Addr = typename ELFT::Addr;
Jake Ehrlich76e91102018-01-25 22:46:17 +0000538 using Elf_Shdr = typename ELFT::Shdr;
Jake Ehrlich6452b112018-02-14 23:31:33 +0000539 using Elf_Ehdr = typename ELFT::Ehdr;
Jake Ehrlich76e91102018-01-25 22:46:17 +0000540
541 const ELFFile<ELFT> &ElfFile;
542 Object &Obj;
543
Jake Ehrlich6452b112018-02-14 23:31:33 +0000544 void setParentSegment(Segment &Child);
Jake Ehrlich76e91102018-01-25 22:46:17 +0000545 void readProgramHeaders();
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000546 void initGroupSection(GroupSection *GroupSec);
Jake Ehrlich76e91102018-01-25 22:46:17 +0000547 void initSymbolTable(SymbolTableSection *SymTab);
548 void readSectionHeaders();
549 SectionBase &makeSection(const Elf_Shdr &Shdr);
550
551public:
552 ELFBuilder(const ELFObjectFile<ELFT> &ElfObj, Object &Obj)
553 : ElfFile(*ElfObj.getELFFile()), Obj(Obj) {}
554
555 void build();
556};
557
558class ELFReader : public Reader {
559private:
Jake Ehrlich9634e182018-01-26 02:01:37 +0000560 std::unique_ptr<Binary> Bin;
Jake Ehrlich76e91102018-01-25 22:46:17 +0000561 std::shared_ptr<MemoryBuffer> Data;
562
563public:
564 ElfType getElfType() const;
565 std::unique_ptr<Object> create() const override;
566 ELFReader(StringRef File);
567};
568
569class Object {
Petr Hosek05a04cb2017-08-01 00:33:58 +0000570private:
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000571 using SecPtr = std::unique_ptr<SectionBase>;
572 using SegPtr = std::unique_ptr<Segment>;
Petr Hosek05a04cb2017-08-01 00:33:58 +0000573
Jake Ehrlich76e91102018-01-25 22:46:17 +0000574 std::shared_ptr<MemoryBuffer> OwnedData;
Petr Hosekc4df10e2017-08-04 21:09:26 +0000575 std::vector<SecPtr> Sections;
576 std::vector<SegPtr> Segments;
577
Petr Hosek05a04cb2017-08-01 00:33:58 +0000578public:
Jake Ehrlich76e91102018-01-25 22:46:17 +0000579 template <class T>
580 using Range = iterator_range<
581 pointee_iterator<typename std::vector<std::unique_ptr<T>>::iterator>>;
582
583 template <class T>
584 using ConstRange = iterator_range<pointee_iterator<
585 typename std::vector<std::unique_ptr<T>>::const_iterator>>;
586
Jake Ehrlich6452b112018-02-14 23:31:33 +0000587 // It is often the case that the ELF header and the program header table are
588 // not present in any segment. This could be a problem during file layout,
589 // because other segments may get assigned an offset where either of the
590 // two should reside, which will effectively corrupt the resulting binary.
591 // Other than that we use these segments to track program header offsets
592 // when they may not follow the ELF header.
593 Segment ElfHdrSegment;
594 Segment ProgramHdrSegment;
595
Petr Hosek05a04cb2017-08-01 00:33:58 +0000596 uint8_t Ident[16];
597 uint64_t Entry;
598 uint64_t SHOffset;
599 uint32_t Type;
600 uint32_t Machine;
601 uint32_t Version;
602 uint32_t Flags;
603
Jake Ehrlich76e91102018-01-25 22:46:17 +0000604 StringTableSection *SectionNames = nullptr;
605 SymbolTableSection *SymbolTable = nullptr;
606
Alexander Shaposhnikov6ecc6e62018-03-21 19:53:44 +0000607 explicit Object(std::shared_ptr<MemoryBuffer> Data)
608 : OwnedData(std::move(Data)) {}
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000609 virtual ~Object() = default;
610
Aaron Ballman09f46a72018-01-25 21:03:38 +0000611 void sortSections();
Jake Ehrlich76e91102018-01-25 22:46:17 +0000612 SectionTableRef sections() { return SectionTableRef(Sections); }
613 ConstRange<SectionBase> sections() const {
614 return make_pointee_range(Sections);
615 }
616 Range<Segment> segments() { return make_pointee_range(Segments); }
617 ConstRange<Segment> segments() const { return make_pointee_range(Segments); }
Aaron Ballman09f46a72018-01-25 21:03:38 +0000618
Jake Ehrlich76e91102018-01-25 22:46:17 +0000619 void removeSections(std::function<bool(const SectionBase &)> ToRemove);
620 template <class T, class... Ts> T &addSection(Ts &&... Args) {
621 auto Sec = llvm::make_unique<T>(std::forward<Ts>(Args)...);
622 auto Ptr = Sec.get();
623 Sections.emplace_back(std::move(Sec));
624 return *Ptr;
625 }
626 Segment &addSegment(ArrayRef<uint8_t> Data) {
627 Segments.emplace_back(llvm::make_unique<Segment>(Data));
628 return *Segments.back();
629 }
Petr Hosekc4df10e2017-08-04 21:09:26 +0000630};
Eugene Zelenko0ad18f82017-11-01 21:16:06 +0000631} // end namespace llvm
632
633#endif // LLVM_TOOLS_OBJCOPY_OBJECT_H