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Michael J. Spencer84487f12015-07-24 21:03:07 +00001//===- Writer.cpp ---------------------------------------------------------===//
2//
3// The LLVM Linker
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
Michael J. Spencerf8325412015-09-04 22:48:30 +000010#include "Writer.h"
Rui Ueyamacb8474ed2015-08-05 23:51:50 +000011#include "Config.h"
Rui Ueyama717677a2016-02-11 21:17:59 +000012#include "LinkerScript.h"
Rafael Espindola5805c4f2015-09-21 21:38:08 +000013#include "OutputSections.h"
Rui Ueyamaafff74e22015-08-05 23:24:46 +000014#include "SymbolTable.h"
Rafael Espindola01205f72015-09-22 18:19:46 +000015#include "Target.h"
Rafael Espindola6b83b902015-08-12 00:00:24 +000016
Rafael Espindola4fc60442016-02-10 22:43:13 +000017#include "llvm/ADT/SmallPtrSet.h"
Denis Protivensky8e3b38a2015-11-12 09:52:08 +000018#include "llvm/ADT/StringMap.h"
Hal Finkel3bae2d82015-10-12 20:51:48 +000019#include "llvm/ADT/StringSwitch.h"
Rui Ueyamaafff74e22015-08-05 23:24:46 +000020#include "llvm/Support/FileOutputBuffer.h"
Rui Ueyamad9189ce2015-10-15 17:11:03 +000021#include "llvm/Support/StringSaver.h"
Rafael Espindolad0078b22016-02-06 00:06:26 +000022#include "llvm/Support/raw_ostream.h"
Michael J. Spencer84487f12015-07-24 21:03:07 +000023
24using namespace llvm;
25using namespace llvm::ELF;
26using namespace llvm::object;
27
28using namespace lld;
29using namespace lld::elf2;
30
Rui Ueyamaafff74e22015-08-05 23:24:46 +000031namespace {
32// The writer writes a SymbolTable result to a file.
33template <class ELFT> class Writer {
34public:
Rafael Espindola18608a02015-09-08 21:57:31 +000035 typedef typename ELFFile<ELFT>::uintX_t uintX_t;
36 typedef typename ELFFile<ELFT>::Elf_Shdr Elf_Shdr;
37 typedef typename ELFFile<ELFT>::Elf_Ehdr Elf_Ehdr;
38 typedef typename ELFFile<ELFT>::Elf_Phdr Elf_Phdr;
39 typedef typename ELFFile<ELFT>::Elf_Sym Elf_Sym;
Davide Italiano6d328d32015-09-16 20:45:57 +000040 typedef typename ELFFile<ELFT>::Elf_Sym_Range Elf_Sym_Range;
Rafael Espindola19e38892015-09-16 15:54:15 +000041 typedef typename ELFFile<ELFT>::Elf_Rela Elf_Rela;
Rui Ueyama3ce825e2015-10-09 21:07:25 +000042 Writer(SymbolTable<ELFT> &S) : Symtab(S) {}
Rui Ueyamaafff74e22015-08-05 23:24:46 +000043 void run();
44
45private:
Rafael Espindola4fc60442016-02-10 22:43:13 +000046 // This describes a program header entry.
47 // Each contains type, access flags and range of output sections that will be
48 // placed in it.
49 struct Phdr {
50 Phdr(unsigned Type, unsigned Flags) {
51 H.p_type = Type;
52 H.p_flags = Flags;
53 }
54 Elf_Phdr H = {};
55 OutputSectionBase<ELFT> *First = nullptr;
56 OutputSectionBase<ELFT> *Last = nullptr;
57 };
58
Rui Ueyama5a9640b2015-10-08 23:49:30 +000059 void copyLocalSymbols();
Rui Ueyamaf18fe7b2015-12-26 07:50:39 +000060 void addReservedSymbols();
Rui Ueyamac2a0d7e2016-01-28 22:56:29 +000061 bool createSections();
Rui Ueyama84417f82015-12-26 07:50:41 +000062 void addPredefinedSections();
Rui Ueyama2df0fd82015-12-25 07:38:58 +000063
Rafael Espindola67a5da62015-09-17 14:02:10 +000064 template <bool isRela>
Rafael Espindola0c6a4f12015-11-11 19:54:14 +000065 void scanRelocs(InputSectionBase<ELFT> &C,
Rafael Espindola67a5da62015-09-17 14:02:10 +000066 iterator_range<const Elf_Rel_Impl<ELFT, isRela> *> Rels);
Rui Ueyama2df0fd82015-12-25 07:38:58 +000067
Rafael Espindolaa0fa8482015-11-11 15:29:50 +000068 void scanRelocs(InputSection<ELFT> &C);
Rafael Espindola0c6a4f12015-11-11 19:54:14 +000069 void scanRelocs(InputSectionBase<ELFT> &S, const Elf_Shdr &RelSec);
Rafael Espindola4fc60442016-02-10 22:43:13 +000070 void createPhdrs();
Rui Ueyamaafff74e22015-08-05 23:24:46 +000071 void assignAddresses();
Rui Ueyama1a311f12015-12-26 10:52:26 +000072 void fixAbsoluteSymbols();
Rui Ueyamacbe39262016-02-02 22:48:04 +000073 bool openFile();
Rui Ueyamaafff74e22015-08-05 23:24:46 +000074 void writeHeader();
75 void writeSections();
Denis Protivensky8e3b38a2015-11-12 09:52:08 +000076 bool isDiscarded(InputSectionBase<ELFT> *IS) const;
Rui Ueyama1ebc8ed2016-02-12 21:47:28 +000077 StringRef getOutputSectionName(InputSectionBase<ELFT> *S) const;
Rafael Espindola70107762015-09-11 18:49:42 +000078 bool needsInterpSection() const {
Rui Ueyama0d0bcf72015-10-07 21:25:39 +000079 return !Symtab.getSharedFiles().empty() && !Config->DynamicLinker.empty();
Rafael Espindola70107762015-09-11 18:49:42 +000080 }
Michael J. Spencerf32446f2015-10-06 20:39:09 +000081 bool isOutputDynamic() const {
Rui Ueyama0d0bcf72015-10-07 21:25:39 +000082 return !Symtab.getSharedFiles().empty() || Config->Shared;
Rafael Espindola4340aad2015-09-11 22:42:45 +000083 }
Rui Ueyamaafff74e22015-08-05 23:24:46 +000084
Rui Ueyamae57c4872016-01-05 16:35:43 +000085 OutputSection<ELFT> *getBss();
Rafael Espindola11191912015-12-24 16:23:37 +000086 void addCommonSymbols(std::vector<DefinedCommon *> &Syms);
Rui Ueyama7b7ec712015-12-26 10:07:03 +000087 void addCopyRelSymbols(std::vector<SharedSymbol<ELFT> *> &Syms);
Rafael Espindola443f50a2015-11-03 21:35:14 +000088
Rui Ueyamaafff74e22015-08-05 23:24:46 +000089 std::unique_ptr<llvm::FileOutputBuffer> Buffer;
Michael J. Spencer2f008242015-09-17 19:58:07 +000090
Rui Ueyamad9189ce2015-10-15 17:11:03 +000091 BumpPtrAllocator Alloc;
Rui Ueyamac7cc6ec2015-10-15 22:27:29 +000092 std::vector<OutputSectionBase<ELFT> *> OutputSections;
Rui Ueyamad4ea7dd2015-12-26 07:01:26 +000093 std::vector<std::unique_ptr<OutputSectionBase<ELFT>>> OwningSections;
Rafael Espindola4fc60442016-02-10 22:43:13 +000094
95 // We create a section for the ELF header and one for the program headers.
96 const unsigned NumDummySections = 2;
97 ArrayRef<OutputSectionBase<ELFT> *> getSections() const {
98 return makeArrayRef(OutputSections).slice(NumDummySections);
99 }
100 unsigned getNumSections() const {
101 return OutputSections.size() + 1 - NumDummySections;
102 }
Rui Ueyamaafff74e22015-08-05 23:24:46 +0000103
Rui Ueyama01687222015-12-26 09:47:57 +0000104 void addRelIpltSymbols();
Rui Ueyamaa5d79d12015-12-26 09:48:00 +0000105 void addStartEndSymbols();
Rui Ueyamac7cc6ec2015-10-15 22:27:29 +0000106 void addStartStopSymbols(OutputSectionBase<ELFT> *Sec);
Rui Ueyama2f1b79f2015-10-10 22:34:30 +0000107
Rui Ueyama3ce825e2015-10-09 21:07:25 +0000108 SymbolTable<ELFT> &Symtab;
Rafael Espindola4fc60442016-02-10 22:43:13 +0000109 std::vector<Phdr> Phdrs;
Michael J. Spencer2f008242015-09-17 19:58:07 +0000110
Rafael Espindola98f6bd02015-08-11 23:14:13 +0000111 uintX_t FileSize;
Rui Ueyamaafff74e22015-08-05 23:24:46 +0000112 uintX_t SectionHeaderOff;
Denis Protivensky8e3b38a2015-11-12 09:52:08 +0000113
Sean Silvaf1c5a0f2016-01-23 01:49:37 +0000114 // Flag to force GOT to be in output if we have relocations
115 // that relies on its address.
116 bool HasGotOffRel = false;
Rui Ueyamaafff74e22015-08-05 23:24:46 +0000117};
118} // anonymous namespace
119
Rui Ueyama94b08e32016-01-12 01:33:23 +0000120template <class ELFT> static bool shouldUseRela() { return ELFT::Is64Bits; }
Rui Ueyama6192c122015-12-16 23:33:56 +0000121
Rui Ueyama83cd6e02016-01-06 20:11:55 +0000122template <class ELFT> void elf2::writeResult(SymbolTable<ELFT> *Symtab) {
Rafael Espindola4fc60442016-02-10 22:43:13 +0000123 typedef typename ELFFile<ELFT>::uintX_t uintX_t;
124
Rui Ueyama4197a6a2016-02-05 18:41:40 +0000125 // Create singleton output sections.
Rui Ueyama6192c122015-12-16 23:33:56 +0000126 bool IsRela = shouldUseRela<ELFT>();
Rui Ueyama15ef5e12015-10-07 19:18:16 +0000127 DynamicSection<ELFT> Dynamic(*Symtab);
George Rimarf6bc65a2016-01-15 13:34:52 +0000128 EhFrameHeader<ELFT> EhFrameHdr;
Rui Ueyama4197a6a2016-02-05 18:41:40 +0000129 GotSection<ELFT> Got;
130 InterpSection<ELFT> Interp;
131 PltSection<ELFT> Plt;
132 RelocationSection<ELFT> RelaDyn(IsRela ? ".rela.dyn" : ".rel.dyn", IsRela);
133 StringTableSection<ELFT> DynStrTab(".dynstr", true);
134 StringTableSection<ELFT> ShStrTab(".shstrtab", false);
135 SymbolTableSection<ELFT> DynSymTab(*Symtab, DynStrTab);
136
Rafael Espindola4fc60442016-02-10 22:43:13 +0000137 OutputSectionBase<ELFT> ElfHeader("", 0, SHF_ALLOC);
138 OutputSectionBase<ELFT> ProgramHeaders("", 0, SHF_ALLOC);
139 ProgramHeaders.updateAlign(sizeof(uintX_t));
140
Rui Ueyama4197a6a2016-02-05 18:41:40 +0000141 // Instantiate optional output sections if they are needed.
142 std::unique_ptr<GnuHashTableSection<ELFT>> GnuHashTab;
143 std::unique_ptr<GotPltSection<ELFT>> GotPlt;
144 std::unique_ptr<HashTableSection<ELFT>> HashTab;
145 std::unique_ptr<RelocationSection<ELFT>> RelaPlt;
146 std::unique_ptr<StringTableSection<ELFT>> StrTab;
147 std::unique_ptr<SymbolTableSection<ELFT>> SymTabSec;
148
149 if (Config->GnuHash)
150 GnuHashTab.reset(new GnuHashTableSection<ELFT>);
151 if (Config->SysvHash)
152 HashTab.reset(new HashTableSection<ELFT>);
153 if (Target->UseLazyBinding) {
154 StringRef S = IsRela ? ".rela.plt" : ".rel.plt";
155 GotPlt.reset(new GotPltSection<ELFT>);
156 RelaPlt.reset(new RelocationSection<ELFT>(S, IsRela));
157 }
158 if (!Config->StripAll) {
159 StrTab.reset(new StringTableSection<ELFT>(".strtab", false));
160 SymTabSec.reset(new SymbolTableSection<ELFT>(*Symtab, *StrTab));
161 }
162
163 Out<ELFT>::DynStrTab = &DynStrTab;
164 Out<ELFT>::DynSymTab = &DynSymTab;
165 Out<ELFT>::Dynamic = &Dynamic;
George Rimarf6bc65a2016-01-15 13:34:52 +0000166 Out<ELFT>::EhFrameHdr = &EhFrameHdr;
Rui Ueyama4197a6a2016-02-05 18:41:40 +0000167 Out<ELFT>::GnuHashTab = GnuHashTab.get();
168 Out<ELFT>::Got = &Got;
169 Out<ELFT>::GotPlt = GotPlt.get();
170 Out<ELFT>::HashTab = HashTab.get();
171 Out<ELFT>::Interp = &Interp;
172 Out<ELFT>::Plt = &Plt;
173 Out<ELFT>::RelaDyn = &RelaDyn;
174 Out<ELFT>::RelaPlt = RelaPlt.get();
175 Out<ELFT>::ShStrTab = &ShStrTab;
176 Out<ELFT>::StrTab = StrTab.get();
177 Out<ELFT>::SymTab = SymTabSec.get();
178 Out<ELFT>::Bss = nullptr;
179 Out<ELFT>::MipsRldMap = nullptr;
180 Out<ELFT>::Opd = nullptr;
181 Out<ELFT>::OpdBuf = nullptr;
182 Out<ELFT>::TlsPhdr = nullptr;
Rafael Espindola4fc60442016-02-10 22:43:13 +0000183 Out<ELFT>::ElfHeader = &ElfHeader;
184 Out<ELFT>::ProgramHeaders = &ProgramHeaders;
Rui Ueyama15ef5e12015-10-07 19:18:16 +0000185
Rui Ueyama0d0bcf72015-10-07 21:25:39 +0000186 Writer<ELFT>(*Symtab).run();
Rui Ueyama15ef5e12015-10-07 19:18:16 +0000187}
188
Michael J. Spencer84487f12015-07-24 21:03:07 +0000189// The main function of the writer.
Rui Ueyamaafff74e22015-08-05 23:24:46 +0000190template <class ELFT> void Writer<ELFT>::run() {
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000191 if (!Config->DiscardAll)
192 copyLocalSymbols();
Rui Ueyamaf18fe7b2015-12-26 07:50:39 +0000193 addReservedSymbols();
Rui Ueyamac2a0d7e2016-01-28 22:56:29 +0000194 if (!createSections())
195 return;
Rafael Espindola4fc60442016-02-10 22:43:13 +0000196 createPhdrs();
Michael J. Spencer84487f12015-07-24 21:03:07 +0000197 assignAddresses();
Rui Ueyama1a311f12015-12-26 10:52:26 +0000198 fixAbsoluteSymbols();
Rui Ueyamacbe39262016-02-02 22:48:04 +0000199 if (!openFile())
200 return;
Michael J. Spencer84487f12015-07-24 21:03:07 +0000201 writeHeader();
202 writeSections();
Rui Ueyama21923992016-02-01 23:28:21 +0000203 if (HasError)
204 return;
Rui Ueyama64cfffd2016-01-28 18:40:06 +0000205 fatal(Buffer->commit());
Michael J. Spencer84487f12015-07-24 21:03:07 +0000206}
207
Rafael Espindolaa7471792015-08-13 17:04:50 +0000208namespace {
209template <bool Is64Bits> struct SectionKey {
210 typedef typename std::conditional<Is64Bits, uint64_t, uint32_t>::type uintX_t;
211 StringRef Name;
Rui Ueyama0fb1ee02015-10-02 21:13:19 +0000212 uint32_t Type;
213 uintX_t Flags;
Rafael Espindolac159c962015-10-19 21:00:02 +0000214 uintX_t EntSize;
Rafael Espindolaa7471792015-08-13 17:04:50 +0000215};
216}
217namespace llvm {
218template <bool Is64Bits> struct DenseMapInfo<SectionKey<Is64Bits>> {
219 static SectionKey<Is64Bits> getEmptyKey() {
Rafael Espindolac159c962015-10-19 21:00:02 +0000220 return SectionKey<Is64Bits>{DenseMapInfo<StringRef>::getEmptyKey(), 0, 0,
221 0};
Rafael Espindolaa7471792015-08-13 17:04:50 +0000222 }
223 static SectionKey<Is64Bits> getTombstoneKey() {
224 return SectionKey<Is64Bits>{DenseMapInfo<StringRef>::getTombstoneKey(), 0,
Rafael Espindolac159c962015-10-19 21:00:02 +0000225 0, 0};
Rafael Espindolaa7471792015-08-13 17:04:50 +0000226 }
227 static unsigned getHashValue(const SectionKey<Is64Bits> &Val) {
Rafael Espindolac159c962015-10-19 21:00:02 +0000228 return hash_combine(Val.Name, Val.Type, Val.Flags, Val.EntSize);
Rafael Espindolaa7471792015-08-13 17:04:50 +0000229 }
230 static bool isEqual(const SectionKey<Is64Bits> &LHS,
231 const SectionKey<Is64Bits> &RHS) {
232 return DenseMapInfo<StringRef>::isEqual(LHS.Name, RHS.Name) &&
Rafael Espindolac159c962015-10-19 21:00:02 +0000233 LHS.Type == RHS.Type && LHS.Flags == RHS.Flags &&
234 LHS.EntSize == RHS.EntSize;
Rafael Espindolaa7471792015-08-13 17:04:50 +0000235 }
236};
237}
238
George Rimarbfd29a12016-01-21 09:14:22 +0000239template <class ELFT, class RelT>
240static bool handleTlsRelocation(unsigned Type, SymbolBody *Body,
241 InputSectionBase<ELFT> &C, RelT &RI) {
Rui Ueyamac516ae12016-01-29 02:33:45 +0000242 if (Target->isTlsLocalDynamicRel(Type)) {
Rui Ueyamabaf16512016-01-29 00:20:12 +0000243 if (Target->canRelaxTls(Type, nullptr))
George Rimarbfd29a12016-01-21 09:14:22 +0000244 return true;
Rui Ueyama0e53c7d2016-02-05 00:10:02 +0000245 if (Out<ELFT>::Got->addTlsIndex())
Rafael Espindolade9857e2016-02-04 21:33:05 +0000246 Out<ELFT>::RelaDyn->addReloc({Target->TlsModuleIndexRel,
247 DynamicReloc<ELFT>::Off_LTlsIndex,
248 nullptr});
George Rimarbfd29a12016-01-21 09:14:22 +0000249 return true;
250 }
251
252 if (!Body || !Body->isTls())
253 return false;
254
Rui Ueyamac516ae12016-01-29 02:33:45 +0000255 if (Target->isTlsGlobalDynamicRel(Type)) {
Rui Ueyama0e53c7d2016-02-05 00:10:02 +0000256 if (!Target->canRelaxTls(Type, Body) &&
257 Out<ELFT>::Got->addDynTlsEntry(Body)) {
Rafael Espindolade9857e2016-02-04 21:33:05 +0000258 Out<ELFT>::RelaDyn->addReloc(
259 {Target->TlsModuleIndexRel, DynamicReloc<ELFT>::Off_GTlsIndex, Body});
260 Out<ELFT>::RelaDyn->addReloc(
261 {Target->TlsOffsetRel, DynamicReloc<ELFT>::Off_GTlsOffset, Body});
George Rimarbfd29a12016-01-21 09:14:22 +0000262 return true;
263 }
264 if (!canBePreempted(Body, true))
265 return true;
266 }
Rui Ueyamac516ae12016-01-29 02:33:45 +0000267 return !Target->isTlsDynRel(Type, *Body);
George Rimarbfd29a12016-01-21 09:14:22 +0000268}
269
Rafael Espindola19e38892015-09-16 15:54:15 +0000270// The reason we have to do this early scan is as follows
271// * To mmap the output file, we need to know the size
272// * For that, we need to know how many dynamic relocs we will have.
273// It might be possible to avoid this by outputting the file with write:
274// * Write the allocated output sections, computing addresses.
275// * Apply relocations, recording which ones require a dynamic reloc.
276// * Write the dynamic relocations.
277// * Write the rest of the file.
Rafael Espindola0df1b0b2016-02-02 15:45:37 +0000278// This would have some drawbacks. For example, we would only know if .rela.dyn
279// is needed after applying relocations. If it is, it will go after rw and rx
280// sections. Given that it is ro, we will need an extra PT_LOAD. This
281// complicates things for the dynamic linker and means we would have to reserve
282// space for the extra PT_LOAD even if we end up not using it.
Rafael Espindola19e38892015-09-16 15:54:15 +0000283template <class ELFT>
Rafael Espindola67a5da62015-09-17 14:02:10 +0000284template <bool isRela>
285void Writer<ELFT>::scanRelocs(
Rafael Espindola0c6a4f12015-11-11 19:54:14 +0000286 InputSectionBase<ELFT> &C,
Rafael Espindola67a5da62015-09-17 14:02:10 +0000287 iterator_range<const Elf_Rel_Impl<ELFT, isRela> *> Rels) {
288 typedef Elf_Rel_Impl<ELFT, isRela> RelType;
289 const ObjectFile<ELFT> &File = *C.getFile();
Rafael Espindola67a5da62015-09-17 14:02:10 +0000290 for (const RelType &RI : Rels) {
Rui Ueyama64558522015-10-16 22:51:43 +0000291 uint32_t SymIndex = RI.getSymbol(Config->Mips64EL);
Rafael Espindola5c2310c2015-09-18 14:40:19 +0000292 SymbolBody *Body = File.getSymbolBody(SymIndex);
Rui Ueyama64558522015-10-16 22:51:43 +0000293 uint32_t Type = RI.getType(Config->Mips64EL);
Rui Ueyama35da9b62015-10-11 20:59:12 +0000294
Simon Atanasyan682aeea2016-01-14 20:42:09 +0000295 // Ignore "hint" relocation because it is for optional code optimization.
Rui Ueyamac516ae12016-01-29 02:33:45 +0000296 if (Target->isHintRel(Type))
Simon Atanasyan682aeea2016-01-14 20:42:09 +0000297 continue;
298
George Rimarbfb7bf72015-12-21 10:00:12 +0000299 if (Target->isGotRelative(Type))
300 HasGotOffRel = true;
301
Rui Ueyama35da9b62015-10-11 20:59:12 +0000302 // Set "used" bit for --as-needed.
303 if (Body && Body->isUndefined() && !Body->isWeak())
304 if (auto *S = dyn_cast<SharedSymbol<ELFT>>(Body->repl()))
305 S->File->IsUsed = true;
306
307 if (Body)
308 Body = Body->repl();
Michael J. Spencer627ae702015-11-13 00:28:34 +0000309
George Rimarbfd29a12016-01-21 09:14:22 +0000310 if (handleTlsRelocation<ELFT>(Type, Body, C, RI))
George Rimar687138c2015-11-13 16:28:53 +0000311 continue;
312
Rafael Espindolade9857e2016-02-04 21:33:05 +0000313 if (Target->needsDynRelative(Type))
314 Out<ELFT>::RelaDyn->addReloc({Target->RelativeRel, &C, RI.r_offset, true,
315 Body, getAddend<ELFT>(RI)});
George Rimar6f17e092015-12-17 09:32:21 +0000316
Rui Ueyama1ac13382016-02-02 05:55:28 +0000317 // MIPS has a special rule to create GOTs for local symbols.
Rui Ueyamaf9cec372016-02-04 23:18:22 +0000318 if (Config->EMachine == EM_MIPS && !canBePreempted(Body, true) &&
319 (Type == R_MIPS_GOT16 || Type == R_MIPS_CALL16)) {
320 // FIXME (simon): Do not add so many redundant entries.
321 Out<ELFT>::Got->addMipsLocalEntry();
322 continue;
Rui Ueyama1ac13382016-02-02 05:55:28 +0000323 }
324
Rui Ueyama6d3874b2016-02-02 06:08:08 +0000325 // If a symbol in a DSO is referenced directly instead of through GOT,
326 // we need to create a copy relocation for the symbol.
327 if (auto *B = dyn_cast_or_null<SharedSymbol<ELFT>>(Body)) {
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000328 if (B->needsCopy())
Rui Ueyama6d3874b2016-02-02 06:08:08 +0000329 continue;
330 if (Target->needsCopyRel(Type, *B)) {
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000331 B->NeedsCopyOrPltAddr = true;
Rafael Espindolade9857e2016-02-04 21:33:05 +0000332 Out<ELFT>::RelaDyn->addReloc(
333 {Target->CopyRel, DynamicReloc<ELFT>::Off_Bss, B});
Rui Ueyama6d3874b2016-02-02 06:08:08 +0000334 continue;
335 }
336 }
337
Rui Ueyama343f7e52016-02-02 06:29:10 +0000338 // An STT_GNU_IFUNC symbol always uses a PLT entry, and all references
339 // to the symbol go through the PLT. This is true even for a local
340 // symbol, although local symbols normally do not require PLT entries.
341 if (Body && isGnuIFunc<ELFT>(*Body)) {
Rui Ueyama343f7e52016-02-02 06:29:10 +0000342 if (Body->isInGot())
343 continue;
344 Out<ELFT>::Plt->addEntry(Body);
Rafael Espindolade9857e2016-02-04 21:33:05 +0000345 bool CBP = canBePreempted(Body, /*NeedsGot=*/true);
Rui Ueyama343f7e52016-02-02 06:29:10 +0000346 if (Target->UseLazyBinding) {
347 Out<ELFT>::GotPlt->addEntry(Body);
Rafael Espindolade9857e2016-02-04 21:33:05 +0000348 Out<ELFT>::RelaPlt->addReloc(
349 {CBP ? Target->PltRel : Target->IRelativeRel,
350 DynamicReloc<ELFT>::Off_GotPlt, !CBP, Body});
Rui Ueyama343f7e52016-02-02 06:29:10 +0000351 } else {
352 Out<ELFT>::Got->addEntry(Body);
Rafael Espindolade9857e2016-02-04 21:33:05 +0000353 Out<ELFT>::RelaDyn->addReloc(
354 {CBP ? Target->PltRel : Target->IRelativeRel,
355 DynamicReloc<ELFT>::Off_Got, !CBP, Body});
Rui Ueyama343f7e52016-02-02 06:29:10 +0000356 }
357 continue;
358 }
359
Rui Ueyama554f2732016-02-02 07:07:34 +0000360 // If a relocation needs PLT, we create a PLT and a GOT slot
361 // for the symbol.
Rafael Espindola852860e2016-02-12 15:47:37 +0000362 TargetInfo::PltNeed NeedPlt = TargetInfo::Plt_No;
363 if (Body)
364 NeedPlt = Target->needsPlt(Type, *Body);
365 if (NeedPlt) {
366 if (NeedPlt == TargetInfo::Plt_Implicit)
367 Body->NeedsCopyOrPltAddr = true;
Rui Ueyama554f2732016-02-02 07:07:34 +0000368 if (Body->isInPlt())
369 continue;
370 Out<ELFT>::Plt->addEntry(Body);
371
372 if (Target->UseLazyBinding) {
373 Out<ELFT>::GotPlt->addEntry(Body);
Rafael Espindolade9857e2016-02-04 21:33:05 +0000374 Out<ELFT>::RelaPlt->addReloc(
375 {Target->PltRel, DynamicReloc<ELFT>::Off_GotPlt, Body});
Rui Ueyama554f2732016-02-02 07:07:34 +0000376 } else {
377 if (Body->isInGot())
378 continue;
379 Out<ELFT>::Got->addEntry(Body);
Rafael Espindolade9857e2016-02-04 21:33:05 +0000380 Out<ELFT>::RelaDyn->addReloc(
381 {Target->GotRel, DynamicReloc<ELFT>::Off_Got, Body});
Rui Ueyama554f2732016-02-02 07:07:34 +0000382 }
Rui Ueyama554f2732016-02-02 07:07:34 +0000383 continue;
384 }
385
Rui Ueyamaf263c4b2016-02-02 07:07:35 +0000386 // If a relocation needs GOT, we create a GOT slot for the symbol.
387 if (Body && Target->needsGot(Type, *Body)) {
388 if (Body->isInGot())
389 continue;
390 Out<ELFT>::Got->addEntry(Body);
Rui Ueyama1ac13382016-02-02 05:55:28 +0000391
Simon Atanasyan170356b2016-02-04 11:51:39 +0000392 if (Config->EMachine == EM_MIPS) {
Rui Ueyamaf263c4b2016-02-02 07:07:35 +0000393 // MIPS ABI has special rules to process GOT entries
394 // and doesn't require relocation entries for them.
395 // See "Global Offset Table" in Chapter 5 in the following document
396 // for detailed description:
397 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
Rafael Espindolaabebed92016-02-05 15:27:15 +0000398 Body->MustBeInDynSym = true;
Rui Ueyamaf263c4b2016-02-02 07:07:35 +0000399 continue;
Simon Atanasyan170356b2016-02-04 11:51:39 +0000400 }
Rui Ueyamaf263c4b2016-02-02 07:07:35 +0000401
402 bool CBP = canBePreempted(Body, /*NeedsGot=*/true);
403 bool Dynrel = Config->Shared && !Target->isRelRelative(Type) &&
404 !Target->isSizeRel(Type);
Rafael Espindolade9857e2016-02-04 21:33:05 +0000405 if (CBP || Dynrel) {
406 uint32_t DynType;
407 if (CBP)
George Rimar2960c982016-02-11 11:14:46 +0000408 DynType = Body->isTls() ? Target->TlsGotRel : Target->GotRel;
Rafael Espindolade9857e2016-02-04 21:33:05 +0000409 else
410 DynType = Target->RelativeRel;
411 Out<ELFT>::RelaDyn->addReloc(
412 {DynType, DynamicReloc<ELFT>::Off_Got, !CBP, Body});
413 }
Rui Ueyamaf263c4b2016-02-02 07:07:35 +0000414 continue;
Rafael Espindolaeb792732015-09-21 15:11:29 +0000415 }
Rui Ueyama35da9b62015-10-11 20:59:12 +0000416
Simon Atanasyan3a5b6e22016-01-12 17:31:45 +0000417 if (Config->EMachine == EM_MIPS) {
Simon Atanasyan56ab5f02016-01-21 05:33:23 +0000418 if (Type == R_MIPS_LO16)
419 // Ignore R_MIPS_LO16 relocation. If it is a pair for R_MIPS_GOT16 we
420 // already completed all required action (GOT entry allocation) when
421 // handle R_MIPS_GOT16a. If it is a pair for R_MIPS_HI16 against
422 // _gp_disp it does not require dynamic relocation. If its a pair for
423 // R_MIPS_HI16 against a regular symbol it does not require dynamic
424 // relocation too because that case is possible for executable file
425 // linking only.
426 continue;
Simon Atanasyan597df212016-02-04 12:09:49 +0000427 if (Body == Config->MipsGpDisp || Body == Config->MipsLocalGp)
Simon Atanasyanb76108a2016-02-07 12:09:40 +0000428 // MIPS _gp_disp designates offset between start of function and 'gp'
429 // pointer into GOT. __gnu_local_gp is equal to the current value of
430 // the 'gp'. Therefore any relocations against them do not require
Simon Atanasyan3a5b6e22016-01-12 17:31:45 +0000431 // dynamic relocation.
432 continue;
Igor Kudrin15cd9ff2015-11-06 07:43:03 +0000433 }
Rui Ueyama885260e2016-01-08 03:25:26 +0000434
Rui Ueyama82b42882016-02-02 07:50:18 +0000435 if (canBePreempted(Body, /*NeedsGot=*/false)) {
Rafael Espindolade9857e2016-02-04 21:33:05 +0000436 // We don't know anything about the finaly symbol. Just ask the dynamic
437 // linker to handle the relocation for us.
Rafael Espindolade9857e2016-02-04 21:33:05 +0000438 Out<ELFT>::RelaDyn->addReloc({Target->getDynRel(Type), &C, RI.r_offset,
439 false, Body, getAddend<ELFT>(RI)});
Rui Ueyama82b42882016-02-02 07:50:18 +0000440 continue;
441 }
442
Rafael Espindolade9857e2016-02-04 21:33:05 +0000443 // We know that this is the final symbol. If the program being produced
444 // is position independent, the final value is still not known.
445 // If the relocation depends on the symbol value (not the size or distances
446 // in the output), we still need some help from the dynamic linker.
447 // We can however do better than just copying the incoming relocation. We
448 // can process some of it and and just ask the dynamic linker to add the
449 // load address.
450 if (!Config->Shared || Target->isRelRelative(Type) ||
451 Target->isSizeRel(Type))
452 continue;
453
454 uintX_t Addend = getAddend<ELFT>(RI);
455 if (Config->EMachine == EM_PPC64 && RI.getType(false) == R_PPC64_TOC) {
456 Out<ELFT>::RelaDyn->addReloc({R_PPC64_RELATIVE, &C, RI.r_offset, false,
457 nullptr,
458 (uintX_t)getPPC64TocBase() + Addend});
459 continue;
460 }
461 if (Body) {
462 Out<ELFT>::RelaDyn->addReloc(
463 {Target->RelativeRel, &C, RI.r_offset, true, Body, Addend});
464 continue;
465 }
466 const Elf_Sym *Sym =
467 File.getObj().getRelocationSymbol(&RI, File.getSymbolTable());
468 InputSectionBase<ELFT> *Section = File.getSection(*Sym);
469 uintX_t Offset = Sym->st_value;
470 if (Sym->getType() == STT_SECTION) {
471 Offset += Addend;
472 Addend = 0;
473 }
474 Out<ELFT>::RelaDyn->addReloc(
475 {Target->RelativeRel, &C, RI.r_offset, Section, Offset, Addend});
Rafael Espindola67a5da62015-09-17 14:02:10 +0000476 }
477}
478
Rafael Espindolaa0fa8482015-11-11 15:29:50 +0000479template <class ELFT> void Writer<ELFT>::scanRelocs(InputSection<ELFT> &C) {
Rui Ueyama231b5e22016-01-26 07:17:29 +0000480 if (C.getSectionHdr()->sh_flags & SHF_ALLOC)
481 for (const Elf_Shdr *RelSec : C.RelocSections)
482 scanRelocs(C, *RelSec);
Rafael Espindola0c6a4f12015-11-11 19:54:14 +0000483}
484
485template <class ELFT>
486void Writer<ELFT>::scanRelocs(InputSectionBase<ELFT> &S,
487 const Elf_Shdr &RelSec) {
488 ELFFile<ELFT> &EObj = S.getFile()->getObj();
489 if (RelSec.sh_type == SHT_RELA)
490 scanRelocs(S, EObj.relas(&RelSec));
491 else
492 scanRelocs(S, EObj.rels(&RelSec));
Rafael Espindola19e38892015-09-16 15:54:15 +0000493}
494
Rafael Espindola6173f842015-09-23 14:37:01 +0000495template <class ELFT>
Rui Ueyama2a65a492016-01-05 20:01:29 +0000496static void reportUndefined(SymbolTable<ELFT> &Symtab, SymbolBody *Sym) {
George Rimar57e40de2015-10-01 20:14:45 +0000497 if (Config->Shared && !Config->NoUndefined)
George Rimaree058282015-10-01 17:24:24 +0000498 return;
499
Rui Ueyama2a65a492016-01-05 20:01:29 +0000500 std::string Msg = "undefined symbol: " + Sym->getName().str();
501 if (ELFFileBase<ELFT> *File = Symtab.findFile(Sym))
502 Msg += " in " + File->getName().str();
Rafael Espindola551dfd82015-09-25 19:24:57 +0000503 if (Config->NoInhibitExec)
Rui Ueyama2a65a492016-01-05 20:01:29 +0000504 warning(Msg);
Rafael Espindola6173f842015-09-23 14:37:01 +0000505 else
Rui Ueyamac2a0d7e2016-01-28 22:56:29 +0000506 error(Msg);
Rafael Espindola6173f842015-09-23 14:37:01 +0000507}
508
Rafael Espindola10d71ff2016-01-27 18:04:26 +0000509template <class ELFT>
510static bool shouldKeepInSymtab(const ObjectFile<ELFT> &File, StringRef SymName,
511 const typename ELFFile<ELFT>::Elf_Sym &Sym) {
512 if (Sym.getType() == STT_SECTION || Sym.getType() == STT_FILE)
513 return false;
514
515 InputSectionBase<ELFT> *Sec = File.getSection(Sym);
516 // If sym references a section in a discarded group, don't keep it.
517 if (Sec == &InputSection<ELFT>::Discarded)
518 return false;
519
520 if (Config->DiscardNone)
521 return true;
522
523 // In ELF assembly .L symbols are normally discarded by the assembler.
524 // If the assembler fails to do so, the linker discards them if
525 // * --discard-locals is used.
526 // * The symbol is in a SHF_MERGE section, which is normally the reason for
527 // the assembler keeping the .L symbol.
528 if (!SymName.startswith(".L") && !SymName.empty())
529 return true;
530
531 if (Config->DiscardLocals)
532 return false;
533
534 return !(Sec->getSectionHdr()->sh_flags & SHF_MERGE);
535}
536
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000537// Local symbols are not in the linker's symbol table. This function scans
538// each object file's symbol table to copy local symbols to the output.
539template <class ELFT> void Writer<ELFT>::copyLocalSymbols() {
Rui Ueyama90f76fb2016-01-21 03:07:38 +0000540 if (!Out<ELFT>::SymTab)
541 return;
Rui Ueyama3ce825e2015-10-09 21:07:25 +0000542 for (const std::unique_ptr<ObjectFile<ELFT>> &F : Symtab.getObjectFiles()) {
543 for (const Elf_Sym &Sym : F->getLocalSymbols()) {
544 ErrorOr<StringRef> SymNameOrErr = Sym.getName(F->getStringTable());
Rui Ueyama64cfffd2016-01-28 18:40:06 +0000545 fatal(SymNameOrErr);
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000546 StringRef SymName = *SymNameOrErr;
Rui Ueyama3ce825e2015-10-09 21:07:25 +0000547 if (!shouldKeepInSymtab<ELFT>(*F, SymName, Sym))
Rafael Espindola444576d2015-10-09 19:25:07 +0000548 continue;
Rafael Espindola81e05522016-01-27 17:09:37 +0000549 if (Sym.st_shndx != SHN_ABS) {
550 InputSectionBase<ELFT> *Section = F->getSection(Sym);
551 if (!Section->isLive())
552 continue;
553 }
Rafael Espindolae2c24612016-01-29 01:24:25 +0000554 ++Out<ELFT>::SymTab->NumLocals;
555 F->KeptLocalSyms.push_back(std::make_pair(
556 &Sym, Out<ELFT>::SymTab->StrTabSec.addString(SymName)));
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000557 }
558 }
559}
560
Hal Finkel3bae2d82015-10-12 20:51:48 +0000561// PPC64 has a number of special SHT_PROGBITS+SHF_ALLOC+SHF_WRITE sections that
562// we would like to make sure appear is a specific order to maximize their
563// coverage by a single signed 16-bit offset from the TOC base pointer.
564// Conversely, the special .tocbss section should be first among all SHT_NOBITS
565// sections. This will put it next to the loaded special PPC64 sections (and,
566// thus, within reach of the TOC base pointer).
567static int getPPC64SectionRank(StringRef SectionName) {
568 return StringSwitch<int>(SectionName)
569 .Case(".tocbss", 0)
570 .Case(".branch_lt", 2)
571 .Case(".toc", 3)
572 .Case(".toc1", 4)
573 .Case(".opd", 5)
574 .Default(1);
575}
576
George Rimare3336c02015-11-24 10:15:50 +0000577template <class ELFT> static bool isRelroSection(OutputSectionBase<ELFT> *Sec) {
Rafael Espindola4fc60442016-02-10 22:43:13 +0000578 if (!Config->ZRelro)
579 return false;
George Rimare3336c02015-11-24 10:15:50 +0000580 typename OutputSectionBase<ELFT>::uintX_t Flags = Sec->getFlags();
581 if (!(Flags & SHF_ALLOC) || !(Flags & SHF_WRITE))
582 return false;
Rui Ueyamaccfc3262015-12-10 19:13:08 +0000583 if (Flags & SHF_TLS)
584 return true;
George Rimare3336c02015-11-24 10:15:50 +0000585 uint32_t Type = Sec->getType();
Rui Ueyamaccfc3262015-12-10 19:13:08 +0000586 if (Type == SHT_INIT_ARRAY || Type == SHT_FINI_ARRAY ||
587 Type == SHT_PREINIT_ARRAY)
George Rimare3336c02015-11-24 10:15:50 +0000588 return true;
589 if (Sec == Out<ELFT>::GotPlt)
590 return Config->ZNow;
591 if (Sec == Out<ELFT>::Dynamic || Sec == Out<ELFT>::Got)
592 return true;
Rui Ueyama01faef02015-12-10 19:19:04 +0000593 StringRef S = Sec->getName();
594 return S == ".data.rel.ro" || S == ".ctors" || S == ".dtors" || S == ".jcr" ||
595 S == ".eh_frame";
George Rimare3336c02015-11-24 10:15:50 +0000596}
597
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000598// Output section ordering is determined by this function.
599template <class ELFT>
Rui Ueyama717677a2016-02-11 21:17:59 +0000600static bool compareSections(OutputSectionBase<ELFT> *A,
601 OutputSectionBase<ELFT> *B) {
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000602 typedef typename ELFFile<ELFT>::uintX_t uintX_t;
603
Rui Ueyama717677a2016-02-11 21:17:59 +0000604 int Comp = Script->compareSections(A->getName(), B->getName());
605 if (Comp != 0)
606 return Comp < 0;
607
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000608 uintX_t AFlags = A->getFlags();
609 uintX_t BFlags = B->getFlags();
610
611 // Allocatable sections go first to reduce the total PT_LOAD size and
612 // so debug info doesn't change addresses in actual code.
613 bool AIsAlloc = AFlags & SHF_ALLOC;
614 bool BIsAlloc = BFlags & SHF_ALLOC;
615 if (AIsAlloc != BIsAlloc)
616 return AIsAlloc;
617
618 // We don't have any special requirements for the relative order of
619 // two non allocatable sections.
620 if (!AIsAlloc)
621 return false;
622
623 // We want the read only sections first so that they go in the PT_LOAD
624 // covering the program headers at the start of the file.
625 bool AIsWritable = AFlags & SHF_WRITE;
626 bool BIsWritable = BFlags & SHF_WRITE;
627 if (AIsWritable != BIsWritable)
628 return BIsWritable;
629
630 // For a corresponding reason, put non exec sections first (the program
631 // header PT_LOAD is not executable).
632 bool AIsExec = AFlags & SHF_EXECINSTR;
633 bool BIsExec = BFlags & SHF_EXECINSTR;
634 if (AIsExec != BIsExec)
635 return BIsExec;
636
Hal Finkel0d7e83b2015-10-13 17:57:46 +0000637 // If we got here we know that both A and B are in the same PT_LOAD.
Michael J. Spencer1bf73002015-10-16 23:11:07 +0000638
639 // The TLS initialization block needs to be a single contiguous block in a R/W
640 // PT_LOAD, so stick TLS sections directly before R/W sections. The TLS NOBITS
641 // sections are placed here as they don't take up virtual address space in the
642 // PT_LOAD.
Rui Ueyama61805ec2015-12-17 00:12:03 +0000643 bool AIsTls = AFlags & SHF_TLS;
644 bool BIsTls = BFlags & SHF_TLS;
645 if (AIsTls != BIsTls)
646 return AIsTls;
Michael J. Spencer1bf73002015-10-16 23:11:07 +0000647
Hal Finkel08be6142015-10-13 18:55:01 +0000648 // The next requirement we have is to put nobits sections last. The
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000649 // reason is that the only thing the dynamic linker will see about
650 // them is a p_memsz that is larger than p_filesz. Seeing that it
651 // zeros the end of the PT_LOAD, so that has to correspond to the
652 // nobits sections.
Hal Finkel600ff142015-10-13 19:27:12 +0000653 bool AIsNoBits = A->getType() == SHT_NOBITS;
654 bool BIsNoBits = B->getType() == SHT_NOBITS;
655 if (AIsNoBits != BIsNoBits)
656 return BIsNoBits;
Hal Finkel3bae2d82015-10-12 20:51:48 +0000657
George Rimare3336c02015-11-24 10:15:50 +0000658 // We place RelRo section before plain r/w ones.
659 bool AIsRelRo = isRelroSection(A);
660 bool BIsRelRo = isRelroSection(B);
661 if (AIsRelRo != BIsRelRo)
662 return AIsRelRo;
663
Hal Finkel9abc2a52015-10-13 19:07:29 +0000664 // Some architectures have additional ordering restrictions for sections
665 // within the same PT_LOAD.
666 if (Config->EMachine == EM_PPC64)
667 return getPPC64SectionRank(A->getName()) <
668 getPPC64SectionRank(B->getName());
669
670 return false;
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000671}
672
Rui Ueyamae57c4872016-01-05 16:35:43 +0000673template <class ELFT> OutputSection<ELFT> *Writer<ELFT>::getBss() {
Rafael Espindola443f50a2015-11-03 21:35:14 +0000674 if (!Out<ELFT>::Bss) {
Rui Ueyamad4ea7dd2015-12-26 07:01:26 +0000675 Out<ELFT>::Bss =
676 new OutputSection<ELFT>(".bss", SHT_NOBITS, SHF_ALLOC | SHF_WRITE);
677 OwningSections.emplace_back(Out<ELFT>::Bss);
Rafael Espindola443f50a2015-11-03 21:35:14 +0000678 OutputSections.push_back(Out<ELFT>::Bss);
679 }
680 return Out<ELFT>::Bss;
681}
682
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000683// Until this function is called, common symbols do not belong to any section.
684// This function adds them to end of BSS section.
685template <class ELFT>
Rafael Espindola11191912015-12-24 16:23:37 +0000686void Writer<ELFT>::addCommonSymbols(std::vector<DefinedCommon *> &Syms) {
Rafael Espindola443f50a2015-11-03 21:35:14 +0000687 if (Syms.empty())
688 return;
689
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000690 // Sort the common symbols by alignment as an heuristic to pack them better.
Rafael Espindola11191912015-12-24 16:23:37 +0000691 std::stable_sort(Syms.begin(), Syms.end(),
692 [](const DefinedCommon *A, const DefinedCommon *B) {
693 return A->MaxAlignment > B->MaxAlignment;
694 });
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000695
Rui Ueyamae57c4872016-01-05 16:35:43 +0000696 uintX_t Off = getBss()->getSize();
Rafael Espindola11191912015-12-24 16:23:37 +0000697 for (DefinedCommon *C : Syms) {
Rui Ueyama489a8062016-01-14 20:53:50 +0000698 Off = alignTo(Off, C->MaxAlignment);
Rui Ueyamae57c4872016-01-05 16:35:43 +0000699 C->OffsetInBss = Off;
Rafael Espindola11191912015-12-24 16:23:37 +0000700 Off += C->Size;
Rui Ueyama5a9640b2015-10-08 23:49:30 +0000701 }
702
703 Out<ELFT>::Bss->setSize(Off);
704}
705
Rui Ueyama7b7ec712015-12-26 10:07:03 +0000706// Reserve space in .bss for copy relocations.
George Rimarbc590fe2015-10-28 16:48:58 +0000707template <class ELFT>
Rui Ueyama7b7ec712015-12-26 10:07:03 +0000708void Writer<ELFT>::addCopyRelSymbols(std::vector<SharedSymbol<ELFT> *> &Syms) {
Rafael Espindola443f50a2015-11-03 21:35:14 +0000709 if (Syms.empty())
710 return;
Rui Ueyamae57c4872016-01-05 16:35:43 +0000711 uintX_t Off = getBss()->getSize();
George Rimarbc590fe2015-10-28 16:48:58 +0000712 for (SharedSymbol<ELFT> *C : Syms) {
713 const Elf_Sym &Sym = C->Sym;
Rafael Espindola115f0f32015-11-03 14:13:40 +0000714 const Elf_Shdr *Sec = C->File->getSection(Sym);
715 uintX_t SecAlign = Sec->sh_addralign;
Rafael Espindola69d1ca6a2015-12-10 22:53:24 +0000716 unsigned TrailingZeros =
717 std::min(countTrailingZeros(SecAlign),
718 countTrailingZeros((uintX_t)Sym.st_value));
719 uintX_t Align = 1 << TrailingZeros;
Rafael Espindola115f0f32015-11-03 14:13:40 +0000720 Out<ELFT>::Bss->updateAlign(Align);
Rui Ueyama489a8062016-01-14 20:53:50 +0000721 Off = alignTo(Off, Align);
Rui Ueyamae57c4872016-01-05 16:35:43 +0000722 C->OffsetInBss = Off;
George Rimarbc590fe2015-10-28 16:48:58 +0000723 Off += Sym.st_size;
724 }
725 Out<ELFT>::Bss->setSize(Off);
726}
727
Denis Protivensky8e3b38a2015-11-12 09:52:08 +0000728template <class ELFT>
Rui Ueyama1ebc8ed2016-02-12 21:47:28 +0000729StringRef Writer<ELFT>::getOutputSectionName(InputSectionBase<ELFT> *S) const {
730 StringRef Dest = Script->getOutputSection<ELFT>(S);
731 if (!Dest.empty())
732 return Dest;
Denis Protivensky8e3b38a2015-11-12 09:52:08 +0000733
Rui Ueyama1ebc8ed2016-02-12 21:47:28 +0000734 StringRef Name = S->getSectionName();
Rafael Espindola14928202016-02-16 16:05:27 +0000735 for (StringRef V : {".text.", ".rodata.", ".data.rel.ro.", ".data.", ".bss.",
736 ".init_array.", ".fini_array.", ".ctors.", ".dtors.",
Rafael Espindola8ae12902016-02-16 16:12:06 +0000737 ".tbss.", ".gcc_except_table.", ".tdata."})
Rui Ueyama1ebc8ed2016-02-12 21:47:28 +0000738 if (Name.startswith(V))
Rui Ueyamac2dca5d2016-02-11 01:07:18 +0000739 return V.drop_back();
Rui Ueyama1ebc8ed2016-02-12 21:47:28 +0000740 return Name;
Rui Ueyama4fcadaf2015-10-14 19:21:25 +0000741}
742
Denis Protivensky8e3b38a2015-11-12 09:52:08 +0000743template <class ELFT>
George Rimara5fbebc2015-12-10 09:12:18 +0000744void reportDiscarded(InputSectionBase<ELFT> *IS,
745 const std::unique_ptr<ObjectFile<ELFT>> &File) {
746 if (!Config->PrintGcSections || !IS || IS->isLive())
747 return;
748 llvm::errs() << "removing unused section from '" << IS->getSectionName()
749 << "' in file '" << File->getName() << "'\n";
750}
751
752template <class ELFT>
Rui Ueyama717677a2016-02-11 21:17:59 +0000753bool Writer<ELFT>::isDiscarded(InputSectionBase<ELFT> *S) const {
754 return !S || !S->isLive() || S == &InputSection<ELFT>::Discarded ||
Rui Ueyama1ebc8ed2016-02-12 21:47:28 +0000755 Script->isDiscarded(S);
Denis Protivensky8e3b38a2015-11-12 09:52:08 +0000756}
757
Rui Ueyama01687222015-12-26 09:47:57 +0000758// The beginning and the ending of .rel[a].plt section are marked
759// with __rel[a]_iplt_{start,end} symbols if it is a statically linked
760// executable. The runtime needs these symbols in order to resolve
761// all IRELATIVE relocs on startup. For dynamic executables, we don't
762// need these symbols, since IRELATIVE relocs are resolved through GOT
763// and PLT. For details, see http://www.airs.com/blog/archives/403.
George Rimara07ff662015-12-21 10:12:06 +0000764template <class ELFT>
Rui Ueyama01687222015-12-26 09:47:57 +0000765void Writer<ELFT>::addRelIpltSymbols() {
766 if (isOutputDynamic() || !Out<ELFT>::RelaPlt)
George Rimara07ff662015-12-21 10:12:06 +0000767 return;
768 bool IsRela = shouldUseRela<ELFT>();
Rui Ueyama01687222015-12-26 09:47:57 +0000769
770 StringRef S = IsRela ? "__rela_iplt_start" : "__rel_iplt_start";
771 if (Symtab.find(S))
772 Symtab.addAbsolute(S, ElfSym<ELFT>::RelaIpltStart);
773
774 S = IsRela ? "__rela_iplt_end" : "__rel_iplt_end";
775 if (Symtab.find(S))
776 Symtab.addAbsolute(S, ElfSym<ELFT>::RelaIpltEnd);
George Rimara07ff662015-12-21 10:12:06 +0000777}
778
Rafael Espindolaae533242015-12-23 20:37:51 +0000779template <class ELFT> static bool includeInSymtab(const SymbolBody &B) {
780 if (!B.isUsedInRegularObj())
781 return false;
782
783 // Don't include synthetic symbols like __init_array_start in every output.
Rafael Espindola02ce26a2015-12-24 14:22:24 +0000784 if (auto *U = dyn_cast<DefinedRegular<ELFT>>(&B))
Rafael Espindola65e80b92016-01-19 21:19:52 +0000785 if (&U->Sym == &ElfSym<ELFT>::Ignored)
Rafael Espindolaae533242015-12-23 20:37:51 +0000786 return false;
787
788 return true;
789}
790
Rui Ueyamac112c1b2016-01-29 02:17:01 +0000791static bool includeInDynsym(const SymbolBody &B) {
Rui Ueyama89f4ec72015-12-25 07:01:09 +0000792 uint8_t V = B.getVisibility();
793 if (V != STV_DEFAULT && V != STV_PROTECTED)
794 return false;
795 if (Config->ExportDynamic || Config->Shared)
796 return true;
Rafael Espindolaabebed92016-02-05 15:27:15 +0000797 return B.MustBeInDynSym;
Rui Ueyama89f4ec72015-12-25 07:01:09 +0000798}
799
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000800// This class knows how to create an output section for a given
801// input section. Output section type is determined by various
802// factors, including input section's sh_flags, sh_type and
803// linker scripts.
804namespace {
805template <class ELFT> class OutputSectionFactory {
806 typedef typename ELFFile<ELFT>::Elf_Shdr Elf_Shdr;
807 typedef typename ELFFile<ELFT>::uintX_t uintX_t;
808
809public:
810 std::pair<OutputSectionBase<ELFT> *, bool> create(InputSectionBase<ELFT> *C,
811 StringRef OutsecName);
812
813 OutputSectionBase<ELFT> *lookup(StringRef Name, uint32_t Type, uintX_t Flags);
814
815private:
816 SectionKey<ELFT::Is64Bits> createKey(InputSectionBase<ELFT> *C,
817 StringRef OutsecName);
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000818
819 SmallDenseMap<SectionKey<ELFT::Is64Bits>, OutputSectionBase<ELFT> *> Map;
820};
821}
822
823template <class ELFT>
824std::pair<OutputSectionBase<ELFT> *, bool>
825OutputSectionFactory<ELFT>::create(InputSectionBase<ELFT> *C,
826 StringRef OutsecName) {
827 SectionKey<ELFT::Is64Bits> Key = createKey(C, OutsecName);
828 OutputSectionBase<ELFT> *&Sec = Map[Key];
829 if (Sec)
830 return {Sec, false};
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000831
Rui Ueyama2df0fd82015-12-25 07:38:58 +0000832 switch (C->SectionKind) {
833 case InputSectionBase<ELFT>::Regular:
Rui Ueyamaf949f7f2016-01-11 23:50:55 +0000834 Sec = new OutputSection<ELFT>(Key.Name, Key.Type, Key.Flags);
835 break;
Rui Ueyama2df0fd82015-12-25 07:38:58 +0000836 case InputSectionBase<ELFT>::EHFrame:
Rui Ueyamaf949f7f2016-01-11 23:50:55 +0000837 Sec = new EHOutputSection<ELFT>(Key.Name, Key.Type, Key.Flags);
838 break;
Rui Ueyama2df0fd82015-12-25 07:38:58 +0000839 case InputSectionBase<ELFT>::Merge:
Rui Ueyamaf949f7f2016-01-11 23:50:55 +0000840 Sec = new MergeOutputSection<ELFT>(Key.Name, Key.Type, Key.Flags);
841 break;
Rui Ueyama2df0fd82015-12-25 07:38:58 +0000842 case InputSectionBase<ELFT>::MipsReginfo:
Rui Ueyamaf949f7f2016-01-11 23:50:55 +0000843 Sec = new MipsReginfoOutputSection<ELFT>();
844 break;
Rui Ueyama2df0fd82015-12-25 07:38:58 +0000845 }
Rui Ueyamaf949f7f2016-01-11 23:50:55 +0000846 return {Sec, true};
Rui Ueyama2df0fd82015-12-25 07:38:58 +0000847}
848
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000849template <class ELFT>
850OutputSectionBase<ELFT> *OutputSectionFactory<ELFT>::lookup(StringRef Name,
851 uint32_t Type,
852 uintX_t Flags) {
853 return Map.lookup({Name, Type, Flags, 0});
854}
855
856template <class ELFT>
857SectionKey<ELFT::Is64Bits>
858OutputSectionFactory<ELFT>::createKey(InputSectionBase<ELFT> *C,
859 StringRef OutsecName) {
860 const Elf_Shdr *H = C->getSectionHdr();
Rui Ueyama63de9172015-12-26 07:13:38 +0000861 uintX_t Flags = H->sh_flags & ~SHF_GROUP;
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000862
863 // For SHF_MERGE we create different output sections for each sh_entsize.
864 // This makes each output section simple and keeps a single level
865 // mapping from input to output.
866 uintX_t EntSize = isa<MergeInputSection<ELFT>>(C) ? H->sh_entsize : 0;
Rui Ueyama63de9172015-12-26 07:13:38 +0000867
868 // GNU as can give .eh_frame secion type SHT_PROGBITS or SHT_X86_64_UNWIND
869 // depending on the construct. We want to canonicalize it so that
870 // there is only one .eh_frame in the end.
871 uint32_t Type = H->sh_type;
872 if (Type == SHT_PROGBITS && Config->EMachine == EM_X86_64 &&
873 isa<EHInputSection<ELFT>>(C))
874 Type = SHT_X86_64_UNWIND;
875
876 return SectionKey<ELFT::Is64Bits>{OutsecName, Type, Flags, EntSize};
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000877}
878
Rui Ueyamaf18fe7b2015-12-26 07:50:39 +0000879// The linker is expected to define some symbols depending on
880// the linking result. This function defines such symbols.
881template <class ELFT> void Writer<ELFT>::addReservedSymbols() {
882 // __tls_get_addr is defined by the dynamic linker for dynamic ELFs. For
883 // static linking the linker is required to optimize away any references to
884 // __tls_get_addr, so it's not defined anywhere. Create a hidden definition
885 // to avoid the undefined symbol error.
886 if (!isOutputDynamic())
887 Symtab.addIgnored("__tls_get_addr");
888
889 // If the "_end" symbol is referenced, it is expected to point to the address
890 // right after the data segment. Usually, this symbol points to the end
891 // of .bss section or to the end of .data section if .bss section is absent.
Rui Ueyama0e36e092016-01-29 00:20:09 +0000892 // We don't know the final address of _end yet, so just add a symbol here,
893 // and fix ElfSym<ELFT>::End.st_value later.
Rui Ueyamaf18fe7b2015-12-26 07:50:39 +0000894 if (Symtab.find("_end"))
895 Symtab.addAbsolute("_end", ElfSym<ELFT>::End);
896
Rui Ueyama0e36e092016-01-29 00:20:09 +0000897 // Define "end" as an alias to "_end" if it is used but not defined.
898 // We don't want to define that unconditionally because we don't want to
899 // break programs that uses "end" as a regular symbol.
Rui Ueyamaf18fe7b2015-12-26 07:50:39 +0000900 if (SymbolBody *B = Symtab.find("end"))
901 if (B->isUndefined())
902 Symtab.addAbsolute("end", ElfSym<ELFT>::End);
903}
904
Rui Ueyamac4185702016-02-10 23:20:42 +0000905// Sort input sections by section name suffixes for
906// __attribute__((init_priority(N))).
Rui Ueyama5af83682016-02-11 23:41:38 +0000907template <class ELFT> static void sortInitFini(OutputSectionBase<ELFT> *S) {
Rui Ueyamac4185702016-02-10 23:20:42 +0000908 if (S)
Rui Ueyama5af83682016-02-11 23:41:38 +0000909 reinterpret_cast<OutputSection<ELFT> *>(S)->sortInitFini();
910}
911
912// Sort input sections by the special rule for .ctors and .dtors.
913template <class ELFT> static void sortCtorsDtors(OutputSectionBase<ELFT> *S) {
914 if (S)
915 reinterpret_cast<OutputSection<ELFT> *>(S)->sortCtorsDtors();
Rui Ueyamac4185702016-02-10 23:20:42 +0000916}
917
Michael J. Spencer84487f12015-07-24 21:03:07 +0000918// Create output section objects and add them to OutputSections.
Rui Ueyamac2a0d7e2016-01-28 22:56:29 +0000919template <class ELFT> bool Writer<ELFT>::createSections() {
Rafael Espindola4fc60442016-02-10 22:43:13 +0000920 OutputSections.push_back(Out<ELFT>::ElfHeader);
921 OutputSections.push_back(Out<ELFT>::ProgramHeaders);
922
Rui Ueyama1b2a8bf2015-12-26 10:22:16 +0000923 // Add .interp first because some loaders want to see that section
924 // on the first page of the executable file when loaded into memory.
Rui Ueyama69960ba2015-10-10 23:25:39 +0000925 if (needsInterpSection())
926 OutputSections.push_back(Out<ELFT>::Interp);
927
Rui Ueyama1b2a8bf2015-12-26 10:22:16 +0000928 // Create output sections for input object file sections.
Rui Ueyamac7cc6ec2015-10-15 22:27:29 +0000929 std::vector<OutputSectionBase<ELFT> *> RegularSections;
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000930 OutputSectionFactory<ELFT> Factory;
Rui Ueyama3ce825e2015-10-09 21:07:25 +0000931 for (const std::unique_ptr<ObjectFile<ELFT>> &F : Symtab.getObjectFiles()) {
Rafael Espindolac159c962015-10-19 21:00:02 +0000932 for (InputSectionBase<ELFT> *C : F->getSections()) {
George Rimara5fbebc2015-12-10 09:12:18 +0000933 if (isDiscarded(C)) {
934 reportDiscarded(C, F);
Rafael Espindola19e38892015-09-16 15:54:15 +0000935 continue;
George Rimara5fbebc2015-12-10 09:12:18 +0000936 }
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000937 OutputSectionBase<ELFT> *Sec;
938 bool IsNew;
Rui Ueyama1ebc8ed2016-02-12 21:47:28 +0000939 std::tie(Sec, IsNew) = Factory.create(C, getOutputSectionName(C));
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000940 if (IsNew) {
Rui Ueyamad4ea7dd2015-12-26 07:01:26 +0000941 OwningSections.emplace_back(Sec);
Rafael Espindolad13d9602015-09-25 15:08:44 +0000942 OutputSections.push_back(Sec);
Rui Ueyamad9189ce2015-10-15 17:11:03 +0000943 RegularSections.push_back(Sec);
Rafael Espindolad13d9602015-09-25 15:08:44 +0000944 }
Rui Ueyama40845e62015-12-26 05:51:07 +0000945 Sec->addSection(C);
Rafael Espindola19e38892015-09-16 15:54:15 +0000946 }
947 }
948
Rafael Espindola443f50a2015-11-03 21:35:14 +0000949 Out<ELFT>::Bss = static_cast<OutputSection<ELFT> *>(
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000950 Factory.lookup(".bss", SHT_NOBITS, SHF_ALLOC | SHF_WRITE));
Rafael Espindola443f50a2015-11-03 21:35:14 +0000951
Rui Ueyama84417f82015-12-26 07:50:41 +0000952 // If we have a .opd section (used under PPC64 for function descriptors),
953 // store a pointer to it here so that we can use it later when processing
954 // relocations.
955 Out<ELFT>::Opd = Factory.lookup(".opd", SHT_PROGBITS, SHF_WRITE | SHF_ALLOC);
956
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000957 Out<ELFT>::Dynamic->PreInitArraySec = Factory.lookup(
958 ".preinit_array", SHT_PREINIT_ARRAY, SHF_WRITE | SHF_ALLOC);
Rui Ueyama15ef5e12015-10-07 19:18:16 +0000959 Out<ELFT>::Dynamic->InitArraySec =
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000960 Factory.lookup(".init_array", SHT_INIT_ARRAY, SHF_WRITE | SHF_ALLOC);
Rui Ueyama15ef5e12015-10-07 19:18:16 +0000961 Out<ELFT>::Dynamic->FiniArraySec =
Rui Ueyama3a1f0362015-12-26 07:01:28 +0000962 Factory.lookup(".fini_array", SHT_FINI_ARRAY, SHF_WRITE | SHF_ALLOC);
Rafael Espindola77572242015-10-02 19:37:55 +0000963
Rui Ueyamac4185702016-02-10 23:20:42 +0000964 // Sort section contents for __attribute__((init_priority(N)).
Rui Ueyama5af83682016-02-11 23:41:38 +0000965 sortInitFini(Out<ELFT>::Dynamic->InitArraySec);
966 sortInitFini(Out<ELFT>::Dynamic->FiniArraySec);
967 sortCtorsDtors(Factory.lookup(".ctors", SHT_PROGBITS, SHF_WRITE | SHF_ALLOC));
968 sortCtorsDtors(Factory.lookup(".dtors", SHT_PROGBITS, SHF_WRITE | SHF_ALLOC));
Rui Ueyamac4185702016-02-10 23:20:42 +0000969
Rui Ueyamaa5d79d12015-12-26 09:48:00 +0000970 // The linker needs to define SECNAME_start, SECNAME_end and SECNAME_stop
971 // symbols for sections, so that the runtime can get the start and end
972 // addresses of each section by section name. Add such symbols.
973 addStartEndSymbols();
Rafael Espindola334c3e12015-10-19 15:21:42 +0000974 for (OutputSectionBase<ELFT> *Sec : RegularSections)
975 addStartStopSymbols(Sec);
976
Rafael Espindolade9857e2016-02-04 21:33:05 +0000977 // Define __rel[a]_iplt_{start,end} symbols if needed.
978 addRelIpltSymbols();
979
Rafael Espindola334c3e12015-10-19 15:21:42 +0000980 // Scan relocations. This must be done after every symbol is declared so that
981 // we can correctly decide if a dynamic relocation is needed.
Rafael Espindola0c6a4f12015-11-11 19:54:14 +0000982 for (const std::unique_ptr<ObjectFile<ELFT>> &F : Symtab.getObjectFiles()) {
Denis Protivensky8e3b38a2015-11-12 09:52:08 +0000983 for (InputSectionBase<ELFT> *C : F->getSections()) {
984 if (isDiscarded(C))
985 continue;
986 if (auto *S = dyn_cast<InputSection<ELFT>>(C))
987 scanRelocs(*S);
988 else if (auto *S = dyn_cast<EHInputSection<ELFT>>(C))
Rafael Espindola0c6a4f12015-11-11 19:54:14 +0000989 if (S->RelocSection)
990 scanRelocs(*S, *S->RelocSection);
Rafael Espindola0c6a4f12015-11-11 19:54:14 +0000991 }
992 }
Rafael Espindola334c3e12015-10-19 15:21:42 +0000993
Rui Ueyama1b2a8bf2015-12-26 10:22:16 +0000994 // Now that we have defined all possible symbols including linker-
995 // synthesized ones. Visit all symbols to give the finishing touches.
Rafael Espindola11191912015-12-24 16:23:37 +0000996 std::vector<DefinedCommon *> CommonSymbols;
Rui Ueyama7b7ec712015-12-26 10:07:03 +0000997 std::vector<SharedSymbol<ELFT> *> CopyRelSymbols;
Rafael Espindola05a3dd22015-09-22 23:38:23 +0000998 for (auto &P : Symtab.getSymbols()) {
Rafael Espindola05a3dd22015-09-22 23:38:23 +0000999 SymbolBody *Body = P.second->Body;
Rafael Espindola5d7593b2015-12-22 23:00:50 +00001000 if (auto *U = dyn_cast<Undefined>(Body))
Denis Protivensky22220d52015-10-05 09:43:57 +00001001 if (!U->isWeak() && !U->canKeepUndefined())
Rui Ueyama2a65a492016-01-05 20:01:29 +00001002 reportUndefined<ELFT>(Symtab, Body);
Rafael Espindola05a3dd22015-09-22 23:38:23 +00001003
Rafael Espindola11191912015-12-24 16:23:37 +00001004 if (auto *C = dyn_cast<DefinedCommon>(Body))
Rafael Espindola05a3dd22015-09-22 23:38:23 +00001005 CommonSymbols.push_back(C);
George Rimarbc590fe2015-10-28 16:48:58 +00001006 if (auto *SC = dyn_cast<SharedSymbol<ELFT>>(Body))
Rafael Espindolaa0a65f92016-02-09 15:11:01 +00001007 if (SC->needsCopy())
Rui Ueyama7b7ec712015-12-26 10:07:03 +00001008 CopyRelSymbols.push_back(SC);
George Rimarbc590fe2015-10-28 16:48:58 +00001009
Rafael Espindola4f674ed2015-10-05 15:24:04 +00001010 if (!includeInSymtab<ELFT>(*Body))
Rafael Espindola05a3dd22015-09-22 23:38:23 +00001011 continue;
George Rimar5dad7c12015-10-24 08:52:46 +00001012 if (Out<ELFT>::SymTab)
1013 Out<ELFT>::SymTab->addSymbol(Body);
Rafael Espindola05a3dd22015-09-22 23:38:23 +00001014
Rui Ueyamac112c1b2016-01-29 02:17:01 +00001015 if (isOutputDynamic() && includeInDynsym(*Body))
Igor Kudrinab665fc2015-10-20 21:47:58 +00001016 Out<ELFT>::DynSymTab->addSymbol(Body);
Rafael Espindola05a3dd22015-09-22 23:38:23 +00001017 }
Rui Ueyamac2a0d7e2016-01-28 22:56:29 +00001018
1019 // Do not proceed if there was an undefined symbol.
1020 if (HasError)
1021 return false;
1022
Rui Ueyama5a9640b2015-10-08 23:49:30 +00001023 addCommonSymbols(CommonSymbols);
Rui Ueyama7b7ec712015-12-26 10:07:03 +00001024 addCopyRelSymbols(CopyRelSymbols);
Michael J. Spencer84487f12015-07-24 21:03:07 +00001025
Rui Ueyama84417f82015-12-26 07:50:41 +00001026 // So far we have added sections from input object files.
1027 // This function adds linker-created Out<ELFT>::* sections.
1028 addPredefinedSections();
1029
1030 std::stable_sort(OutputSections.begin(), OutputSections.end(),
1031 compareSections<ELFT>);
1032
Rafael Espindola4fc60442016-02-10 22:43:13 +00001033 for (unsigned I = NumDummySections, N = OutputSections.size(); I < N; ++I)
1034 OutputSections[I]->SectionIndex = I + 1 - NumDummySections;
Rui Ueyama84417f82015-12-26 07:50:41 +00001035
Rafael Espindola4fc60442016-02-10 22:43:13 +00001036 for (OutputSectionBase<ELFT> *Sec : getSections())
Rafael Espindolae2c24612016-01-29 01:24:25 +00001037 Sec->setSHName(Out<ELFT>::ShStrTab->addString(Sec->getName()));
Rui Ueyama84417f82015-12-26 07:50:41 +00001038
1039 // Finalizers fix each section's size.
Rafael Espindolade069362016-01-25 21:32:04 +00001040 // .dynsym is finalized early since that may fill up .gnu.hash.
Rui Ueyama84417f82015-12-26 07:50:41 +00001041 if (isOutputDynamic())
1042 Out<ELFT>::DynSymTab->finalize();
1043
Simon Atanasyan40d25f32016-02-02 09:07:47 +00001044 // Fill other section headers. The dynamic table is finalized
1045 // at the end because some tags like RELSZ depend on result
1046 // of finalizing other sections. The dynamic string table is
1047 // finalized once the .dynamic finalizer has added a few last
1048 // strings. See DynamicSection::finalize()
Rui Ueyama84417f82015-12-26 07:50:41 +00001049 for (OutputSectionBase<ELFT> *Sec : OutputSections)
Simon Atanasyan40d25f32016-02-02 09:07:47 +00001050 if (Sec != Out<ELFT>::DynStrTab && Sec != Out<ELFT>::Dynamic)
Rafael Espindolade069362016-01-25 21:32:04 +00001051 Sec->finalize();
Simon Atanasyan40d25f32016-02-02 09:07:47 +00001052
1053 if (isOutputDynamic())
1054 Out<ELFT>::Dynamic->finalize();
Rui Ueyamac2a0d7e2016-01-28 22:56:29 +00001055 return true;
Rui Ueyama84417f82015-12-26 07:50:41 +00001056}
1057
1058// This function add Out<ELFT>::* sections to OutputSections.
1059template <class ELFT> void Writer<ELFT>::addPredefinedSections() {
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001060 auto Add = [&](OutputSectionBase<ELFT> *C) {
1061 if (C)
1062 OutputSections.push_back(C);
1063 };
1064
Rui Ueyamac6ef3f22015-10-15 21:50:30 +00001065 // This order is not the same as the final output order
1066 // because we sort the sections using their attributes below.
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001067 Add(Out<ELFT>::SymTab);
1068 Add(Out<ELFT>::ShStrTab);
1069 Add(Out<ELFT>::StrTab);
Michael J. Spencer350e5b52015-10-12 23:39:23 +00001070 if (isOutputDynamic()) {
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001071 Add(Out<ELFT>::DynSymTab);
1072 Add(Out<ELFT>::GnuHashTab);
1073 Add(Out<ELFT>::HashTab);
1074 Add(Out<ELFT>::Dynamic);
1075 Add(Out<ELFT>::DynStrTab);
Rui Ueyama15ef5e12015-10-07 19:18:16 +00001076 if (Out<ELFT>::RelaDyn->hasRelocs())
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001077 Add(Out<ELFT>::RelaDyn);
1078
Igor Kudrin304860a2015-11-12 04:39:49 +00001079 // This is a MIPS specific section to hold a space within the data segment
1080 // of executable file which is pointed to by the DT_MIPS_RLD_MAP entry.
1081 // See "Dynamic section" in Chapter 5 in the following document:
1082 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
1083 if (Config->EMachine == EM_MIPS && !Config->Shared) {
Rui Ueyamad4ea7dd2015-12-26 07:01:26 +00001084 Out<ELFT>::MipsRldMap = new OutputSection<ELFT>(".rld_map", SHT_PROGBITS,
1085 SHF_ALLOC | SHF_WRITE);
Rui Ueyama5e378dd2016-01-29 22:18:57 +00001086 Out<ELFT>::MipsRldMap->setSize(sizeof(uintX_t));
1087 Out<ELFT>::MipsRldMap->updateAlign(sizeof(uintX_t));
Rui Ueyamad4ea7dd2015-12-26 07:01:26 +00001088 OwningSections.emplace_back(Out<ELFT>::MipsRldMap);
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001089 Add(Out<ELFT>::MipsRldMap);
Igor Kudrin304860a2015-11-12 04:39:49 +00001090 }
Rafael Espindola3f4228f2015-09-09 15:33:08 +00001091 }
Igor Kudrin304860a2015-11-12 04:39:49 +00001092
George Rimara07ff662015-12-21 10:12:06 +00001093 // We always need to add rel[a].plt to output if it has entries.
1094 // Even during static linking it can contain R_[*]_IRELATIVE relocations.
1095 if (Out<ELFT>::RelaPlt && Out<ELFT>::RelaPlt->hasRelocs()) {
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001096 Add(Out<ELFT>::RelaPlt);
George Rimara07ff662015-12-21 10:12:06 +00001097 Out<ELFT>::RelaPlt->Static = !isOutputDynamic();
1098 }
1099
George Rimarbfb7bf72015-12-21 10:00:12 +00001100 bool needsGot = !Out<ELFT>::Got->empty();
Igor Kudrin304860a2015-11-12 04:39:49 +00001101 // We add the .got section to the result for dynamic MIPS target because
1102 // its address and properties are mentioned in the .dynamic section.
George Rimarbfb7bf72015-12-21 10:00:12 +00001103 if (Config->EMachine == EM_MIPS)
1104 needsGot |= isOutputDynamic();
1105 // If we have a relocation that is relative to GOT (such as GOTOFFREL),
1106 // we need to emit a GOT even if it's empty.
1107 if (HasGotOffRel)
1108 needsGot = true;
1109
1110 if (needsGot)
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001111 Add(Out<ELFT>::Got);
George Rimar648a2c32015-10-20 08:54:27 +00001112 if (Out<ELFT>::GotPlt && !Out<ELFT>::GotPlt->empty())
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001113 Add(Out<ELFT>::GotPlt);
Rui Ueyama15ef5e12015-10-07 19:18:16 +00001114 if (!Out<ELFT>::Plt->empty())
Rui Ueyama5a4ae1f2015-12-26 10:34:33 +00001115 Add(Out<ELFT>::Plt);
George Rimarf6bc65a2016-01-15 13:34:52 +00001116
1117 if (Out<ELFT>::EhFrameHdr->Live)
1118 Add(Out<ELFT>::EhFrameHdr);
Rafael Espindolaabad6182015-08-13 15:23:46 +00001119}
1120
Rui Ueyamaa5d79d12015-12-26 09:48:00 +00001121// The linker is expected to define SECNAME_start and SECNAME_end
1122// symbols for a few sections. This function defines them.
1123template <class ELFT> void Writer<ELFT>::addStartEndSymbols() {
1124 auto Define = [&](StringRef Start, StringRef End,
1125 OutputSectionBase<ELFT> *OS) {
1126 if (OS) {
1127 Symtab.addSynthetic(Start, *OS, 0);
1128 Symtab.addSynthetic(End, *OS, OS->getSize());
1129 } else {
1130 Symtab.addIgnored(Start);
1131 Symtab.addIgnored(End);
1132 }
1133 };
1134
1135 Define("__preinit_array_start", "__preinit_array_end",
1136 Out<ELFT>::Dynamic->PreInitArraySec);
1137 Define("__init_array_start", "__init_array_end",
1138 Out<ELFT>::Dynamic->InitArraySec);
1139 Define("__fini_array_start", "__fini_array_end",
1140 Out<ELFT>::Dynamic->FiniArraySec);
1141}
1142
Rui Ueyamad9189ce2015-10-15 17:11:03 +00001143static bool isAlpha(char C) {
1144 return ('a' <= C && C <= 'z') || ('A' <= C && C <= 'Z') || C == '_';
1145}
1146
1147static bool isAlnum(char C) { return isAlpha(C) || ('0' <= C && C <= '9'); }
1148
1149// Returns true if S is valid as a C language identifier.
1150static bool isValidCIdentifier(StringRef S) {
1151 if (S.empty() || !isAlpha(S[0]))
1152 return false;
1153 return std::all_of(S.begin() + 1, S.end(), isAlnum);
1154}
1155
1156// If a section name is valid as a C identifier (which is rare because of
1157// the leading '.'), linkers are expected to define __start_<secname> and
1158// __stop_<secname> symbols. They are at beginning and end of the section,
1159// respectively. This is not requested by the ELF standard, but GNU ld and
1160// gold provide the feature, and used by many programs.
1161template <class ELFT>
Rui Ueyamac7cc6ec2015-10-15 22:27:29 +00001162void Writer<ELFT>::addStartStopSymbols(OutputSectionBase<ELFT> *Sec) {
Rui Ueyamad9189ce2015-10-15 17:11:03 +00001163 StringRef S = Sec->getName();
1164 if (!isValidCIdentifier(S))
1165 return;
1166 StringSaver Saver(Alloc);
1167 StringRef Start = Saver.save("__start_" + S);
1168 StringRef Stop = Saver.save("__stop_" + S);
Rui Ueyama2ef58a12016-01-05 20:35:16 +00001169 if (SymbolBody *B = Symtab.find(Start))
1170 if (B->isUndefined())
1171 Symtab.addSynthetic(Start, *Sec, 0);
1172 if (SymbolBody *B = Symtab.find(Stop))
1173 if (B->isUndefined())
1174 Symtab.addSynthetic(Stop, *Sec, Sec->getSize());
Rui Ueyamad9189ce2015-10-15 17:11:03 +00001175}
1176
Rafael Espindolaef762f22016-02-10 23:29:38 +00001177template <class ELFT> static bool needsPtLoad(OutputSectionBase<ELFT> *Sec) {
1178 if (!(Sec->getFlags() & SHF_ALLOC))
1179 return false;
1180
1181 // Don't allocate VA space for TLS NOBITS sections. The PT_TLS PHDR is
1182 // responsible for allocating space for them, not the PT_LOAD that
1183 // contains the TLS initialization image.
1184 if (Sec->getFlags() & SHF_TLS && Sec->getType() == SHT_NOBITS)
1185 return false;
1186 return true;
Michael J. Spencer1d299a82015-09-09 20:48:09 +00001187}
1188
Rui Ueyama9eb7ed02015-10-24 18:22:59 +00001189static uint32_t toPhdrFlags(uint64_t Flags) {
1190 uint32_t Ret = PF_R;
1191 if (Flags & SHF_WRITE)
1192 Ret |= PF_W;
1193 if (Flags & SHF_EXECINSTR)
1194 Ret |= PF_X;
1195 return Ret;
1196}
1197
Tom Stellard80efb162016-01-07 03:59:08 +00001198/// For AMDGPU we need to use custom segment kinds in order to specify which
1199/// address space data should be loaded into.
1200template <class ELFT>
1201static uint32_t getAmdgpuPhdr(OutputSectionBase<ELFT> *Sec) {
1202 uint32_t Flags = Sec->getFlags();
1203 if (Flags & SHF_AMDGPU_HSA_CODE)
1204 return PT_AMDGPU_HSA_LOAD_CODE_AGENT;
1205 if ((Flags & SHF_AMDGPU_HSA_GLOBAL) && !(Flags & SHF_AMDGPU_HSA_AGENT))
1206 return PT_AMDGPU_HSA_LOAD_GLOBAL_PROGRAM;
1207 return PT_LOAD;
1208}
1209
Rafael Espindola4fc60442016-02-10 22:43:13 +00001210// Decide which program headers to create and which sections to include in each
1211// one.
1212template <class ELFT> void Writer<ELFT>::createPhdrs() {
1213 auto AddHdr = [this](unsigned Type, unsigned Flags) {
1214 return &*Phdrs.emplace(Phdrs.end(), Type, Flags);
1215 };
George Rimare3336c02015-11-24 10:15:50 +00001216
Rafael Espindola4fc60442016-02-10 22:43:13 +00001217 auto AddSec = [](Phdr &Hdr, OutputSectionBase<ELFT> *Sec) {
1218 Hdr.Last = Sec;
1219 if (!Hdr.First)
1220 Hdr.First = Sec;
1221 Hdr.H.p_align = std::max<uintX_t>(Hdr.H.p_align, Sec->getAlign());
1222 };
Rui Ueyama3486fe52015-10-11 17:44:22 +00001223
Rui Ueyama803195e2015-10-23 21:45:59 +00001224 // The first phdr entry is PT_PHDR which describes the program header itself.
Rafael Espindola4fc60442016-02-10 22:43:13 +00001225 Phdr &Hdr = *AddHdr(PT_PHDR, PF_R);
1226 AddSec(Hdr, Out<ELFT>::ProgramHeaders);
Rui Ueyama953c2c42015-10-10 23:59:57 +00001227
Rui Ueyama803195e2015-10-23 21:45:59 +00001228 // PT_INTERP must be the second entry if exists.
Rafael Espindola4fc60442016-02-10 22:43:13 +00001229 if (needsInterpSection()) {
1230 Phdr &Hdr = *AddHdr(PT_INTERP, toPhdrFlags(Out<ELFT>::Interp->getFlags()));
1231 AddSec(Hdr, Out<ELFT>::Interp);
1232 }
Rafael Espindola70107762015-09-11 18:49:42 +00001233
Rui Ueyama803195e2015-10-23 21:45:59 +00001234 // Add the first PT_LOAD segment for regular output sections.
Rafael Espindola4fc60442016-02-10 22:43:13 +00001235 uintX_t Flags = PF_R;
1236 Phdr *Load = AddHdr(PT_LOAD, Flags);
1237 AddSec(*Load, Out<ELFT>::ElfHeader);
Rafael Espindola0a2e2112015-09-10 15:41:34 +00001238
Rafael Espindola4fc60442016-02-10 22:43:13 +00001239 Phdr TlsHdr(PT_TLS, PF_R);
1240 Phdr RelRo(PT_GNU_RELRO, PF_R);
Rui Ueyamac7cc6ec2015-10-15 22:27:29 +00001241 for (OutputSectionBase<ELFT> *Sec : OutputSections) {
Rafael Espindolaef762f22016-02-10 23:29:38 +00001242 if (!(Sec->getFlags() & SHF_ALLOC))
Rafael Espindola4fc60442016-02-10 22:43:13 +00001243 break;
Rafael Espindola97cbe3e32015-12-23 15:20:38 +00001244
Rafael Espindolaef762f22016-02-10 23:29:38 +00001245 // If we meet TLS section then we create TLS header
1246 // and put all TLS sections inside for futher use when
1247 // assign addresses.
1248 if (Sec->getFlags() & SHF_TLS)
1249 AddSec(TlsHdr, Sec);
1250
1251 if (!needsPtLoad<ELFT>(Sec))
1252 continue;
1253
Rafael Espindola4fc60442016-02-10 22:43:13 +00001254 // If flags changed then we want new load segment.
1255 uintX_t NewFlags = toPhdrFlags(Sec->getFlags());
1256 if (Flags != NewFlags) {
1257 uint32_t LoadType = (Config->EMachine == EM_AMDGPU) ? getAmdgpuPhdr(Sec)
1258 : (uint32_t)PT_LOAD;
1259 Load = AddHdr(LoadType, NewFlags);
1260 Flags = NewFlags;
1261 }
Michael J. Spencer78aa1de2015-11-03 00:34:39 +00001262
Rafael Espindola4fc60442016-02-10 22:43:13 +00001263 AddSec(*Load, Sec);
1264
1265 if (isRelroSection(Sec))
1266 AddSec(RelRo, Sec);
Michael J. Spencer84487f12015-07-24 21:03:07 +00001267 }
Rafael Espindola6b83b902015-08-12 00:00:24 +00001268
Rafael Espindola4fc60442016-02-10 22:43:13 +00001269 // Add the TLS segment unless it's empty.
1270 if (TlsHdr.First)
1271 Phdrs.push_back(std::move(TlsHdr));
Michael J. Spencer78aa1de2015-11-03 00:34:39 +00001272
Rui Ueyama803195e2015-10-23 21:45:59 +00001273 // Add an entry for .dynamic.
Michael J. Spencer350e5b52015-10-12 23:39:23 +00001274 if (isOutputDynamic()) {
Rafael Espindola4fc60442016-02-10 22:43:13 +00001275 Phdr &H = *AddHdr(PT_DYNAMIC, toPhdrFlags(Out<ELFT>::Dynamic->getFlags()));
1276 AddSec(H, Out<ELFT>::Dynamic);
Rui Ueyama2f1b79f2015-10-10 22:34:30 +00001277 }
Rafael Espindola91009b32015-08-12 01:45:28 +00001278
Rafael Espindola4fc60442016-02-10 22:43:13 +00001279 // PT_GNU_RELRO includes all sections that should be marked as
1280 // read-only by dynamic linker after proccessing relocations.
1281 if (RelRo.First)
1282 Phdrs.push_back(std::move(RelRo));
George Rimare3336c02015-11-24 10:15:50 +00001283
Rafael Espindola4fc60442016-02-10 22:43:13 +00001284 // PT_GNU_EH_FRAME is a special section pointing on .eh_frame_hdr.
George Rimarf6bc65a2016-01-15 13:34:52 +00001285 if (Out<ELFT>::EhFrameHdr->Live) {
Rafael Espindola4fc60442016-02-10 22:43:13 +00001286 Phdr &Hdr = *AddHdr(PT_GNU_EH_FRAME,
1287 toPhdrFlags(Out<ELFT>::EhFrameHdr->getFlags()));
1288 AddSec(Hdr, Out<ELFT>::EhFrameHdr);
George Rimarf6bc65a2016-01-15 13:34:52 +00001289 }
1290
Rui Ueyamae79b09a2015-11-21 22:19:32 +00001291 // PT_GNU_STACK is a special section to tell the loader to make the
1292 // pages for the stack non-executable.
Rafael Espindola4fc60442016-02-10 22:43:13 +00001293 if (!Config->ZExecStack)
1294 AddHdr(PT_GNU_STACK, PF_R | PF_W);
1295}
1296
1297// Visits all headers in PhdrTable and assigns the adresses to
1298// the output sections. Also creates common and special headers.
1299template <class ELFT> void Writer<ELFT>::assignAddresses() {
1300 Out<ELFT>::ElfHeader->setSize(sizeof(Elf_Ehdr));
1301 size_t PhdrSize = sizeof(Elf_Phdr) * Phdrs.size();
1302 Out<ELFT>::ProgramHeaders->setSize(PhdrSize);
1303
1304 // The first section of each PT_LOAD and the first section after PT_GNU_RELRO
1305 // have to be page aligned so that the dynamic linker can set the permissions.
1306 SmallPtrSet<OutputSectionBase<ELFT> *, 4> PageAlign;
1307 for (const Phdr &P : Phdrs) {
1308 if (P.H.p_type == PT_GNU_RELRO) {
Rafael Espindolaef762f22016-02-10 23:29:38 +00001309 // Find the first section after PT_GNU_RELRO. If it is in a PT_LOAD we
1310 // have to align it to a page.
Rafael Espindola4fc60442016-02-10 22:43:13 +00001311 auto I = std::find(OutputSections.begin(), OutputSections.end(), P.Last);
1312 ++I;
Rafael Espindolaef762f22016-02-10 23:29:38 +00001313 if (I != OutputSections.end() && needsPtLoad(*I))
Rafael Espindola4fc60442016-02-10 22:43:13 +00001314 PageAlign.insert(*I);
1315 }
1316
Rafael Espindolaef762f22016-02-10 23:29:38 +00001317 if (P.H.p_type == PT_LOAD)
Rafael Espindola4fc60442016-02-10 22:43:13 +00001318 PageAlign.insert(P.First);
Rui Ueyamaa46566f2015-11-24 23:42:33 +00001319 }
George Rimar03220302015-11-14 20:56:08 +00001320
Rafael Espindola4fc60442016-02-10 22:43:13 +00001321 uintX_t ThreadBssOffset = 0;
1322 uintX_t VA = Target->getVAStart();
1323 uintX_t FileOff = 0;
1324
1325 for (OutputSectionBase<ELFT> *Sec : OutputSections) {
1326 uintX_t Align = Sec->getAlign();
1327 if (PageAlign.count(Sec))
1328 Align = std::max<uintX_t>(Align, Target->PageSize);
1329
1330 FileOff = alignTo(FileOff, Align);
1331 Sec->setFileOffset(FileOff);
1332 if (Sec->getType() != SHT_NOBITS)
1333 FileOff += Sec->getSize();
1334
1335 // We only assign VAs to allocated sections.
Rafael Espindolaef762f22016-02-10 23:29:38 +00001336 if (needsPtLoad<ELFT>(Sec)) {
1337 VA = alignTo(VA, Align);
1338 Sec->setVA(VA);
1339 VA += Sec->getSize();
1340 } else if (Sec->getFlags() & SHF_TLS && Sec->getType() == SHT_NOBITS) {
1341 uintX_t TVA = VA + ThreadBssOffset;
1342 TVA = alignTo(TVA, Align);
1343 Sec->setVA(TVA);
1344 ThreadBssOffset = TVA - VA + Sec->getSize();
Rafael Espindola4fc60442016-02-10 22:43:13 +00001345 }
Rui Ueyama69960ba2015-10-10 23:25:39 +00001346 }
1347
Michael J. Spencer8039dae22015-07-29 00:30:10 +00001348 // Add space for section headers.
Rui Ueyama5e378dd2016-01-29 22:18:57 +00001349 SectionHeaderOff = alignTo(FileOff, sizeof(uintX_t));
Rui Ueyama803195e2015-10-23 21:45:59 +00001350 FileSize = SectionHeaderOff + getNumSections() * sizeof(Elf_Shdr);
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001351
Igor Kudrinb044af52015-11-20 02:32:35 +00001352 // Update "_end" and "end" symbols so that they
1353 // point to the end of the data segment.
Rui Ueyamaa246e0942015-12-25 06:12:18 +00001354 ElfSym<ELFT>::End.st_value = VA;
Rui Ueyama803195e2015-10-23 21:45:59 +00001355
Rafael Espindola4fc60442016-02-10 22:43:13 +00001356 for (Phdr &PHdr : Phdrs) {
1357 Elf_Phdr &H = PHdr.H;
1358 if (PHdr.First) {
1359 OutputSectionBase<ELFT> *Last = PHdr.Last;
1360 H.p_filesz = Last->getFileOff() - PHdr.First->getFileOff();
1361 if (Last->getType() != SHT_NOBITS)
1362 H.p_filesz += Last->getSize();
1363 H.p_memsz = Last->getVA() + Last->getSize() - PHdr.First->getVA();
1364 H.p_offset = PHdr.First->getFileOff();
1365 H.p_vaddr = PHdr.First->getVA();
1366 }
1367 if (PHdr.H.p_type == PT_LOAD)
1368 H.p_align = Target->PageSize;
1369 else if (PHdr.H.p_type == PT_GNU_RELRO)
1370 H.p_align = 1;
1371 H.p_paddr = H.p_vaddr;
1372
1373 // The TLS pointer goes after PT_TLS. At least glibc will align it,
1374 // so round up the size to make sure the offsets are correct.
1375 if (PHdr.H.p_type == PT_TLS) {
1376 Out<ELFT>::TlsPhdr = &H;
1377 H.p_memsz = alignTo(H.p_memsz, H.p_align);
Rui Ueyama803195e2015-10-23 21:45:59 +00001378 }
1379 }
Michael J. Spencer84487f12015-07-24 21:03:07 +00001380}
1381
Simon Atanasyan034c4cd2015-12-19 05:51:49 +00001382static uint32_t getELFFlags() {
1383 if (Config->EMachine != EM_MIPS)
1384 return 0;
1385 // FIXME: In fact ELF flags depends on ELF flags of input object files
Simon Atanasyandb147eb2016-01-12 06:24:02 +00001386 // and selected emulation. For now just use hard coded values.
Simon Atanasyan034c4cd2015-12-19 05:51:49 +00001387 uint32_t V = EF_MIPS_ABI_O32 | EF_MIPS_CPIC | EF_MIPS_ARCH_32R2;
1388 if (Config->Shared)
1389 V |= EF_MIPS_PIC;
1390 return V;
1391}
1392
Rui Ueyama3bfaba92015-12-24 08:37:34 +00001393template <class ELFT>
1394static typename ELFFile<ELFT>::uintX_t getEntryAddr() {
1395 if (Config->EntrySym) {
Rui Ueyamab5a69702016-02-01 21:00:35 +00001396 if (SymbolBody *B = Config->EntrySym->repl())
1397 return B->getVA<ELFT>();
Rui Ueyama3bfaba92015-12-24 08:37:34 +00001398 return 0;
1399 }
1400 if (Config->EntryAddr != uint64_t(-1))
1401 return Config->EntryAddr;
1402 return 0;
1403}
1404
Rui Ueyama1a311f12015-12-26 10:52:26 +00001405// This function is called after we have assigned address and size
1406// to each section. This function fixes some predefined absolute
1407// symbol values that depend on section address and size.
1408template <class ELFT> void Writer<ELFT>::fixAbsoluteSymbols() {
1409 // Update __rel[a]_iplt_{start,end} symbols so that they point
1410 // to beginning or ending of .rela.plt section, respectively.
1411 if (Out<ELFT>::RelaPlt) {
1412 uintX_t Start = Out<ELFT>::RelaPlt->getVA();
1413 ElfSym<ELFT>::RelaIpltStart.st_value = Start;
1414 ElfSym<ELFT>::RelaIpltEnd.st_value = Start + Out<ELFT>::RelaPlt->getSize();
1415 }
1416
1417 // Update MIPS _gp absolute symbol so that it points to the static data.
1418 if (Config->EMachine == EM_MIPS)
1419 ElfSym<ELFT>::MipsGp.st_value = getMipsGpAddr<ELFT>();
1420}
1421
Michael J. Spencer84487f12015-07-24 21:03:07 +00001422template <class ELFT> void Writer<ELFT>::writeHeader() {
1423 uint8_t *Buf = Buffer->getBufferStart();
Rui Ueyamae08cd672015-10-23 22:44:39 +00001424 memcpy(Buf, "\177ELF", 4);
1425
Rui Ueyama6621d8e2015-10-24 17:57:40 +00001426 // Write the ELF header.
Rafael Espindola18608a02015-09-08 21:57:31 +00001427 auto *EHdr = reinterpret_cast<Elf_Ehdr *>(Buf);
Rafael Espindola4b7c2fc2015-08-05 15:08:40 +00001428 EHdr->e_ident[EI_CLASS] = ELFT::Is64Bits ? ELFCLASS64 : ELFCLASS32;
1429 EHdr->e_ident[EI_DATA] = ELFT::TargetEndianness == llvm::support::little
1430 ? ELFDATA2LSB
1431 : ELFDATA2MSB;
Michael J. Spencer84487f12015-07-24 21:03:07 +00001432 EHdr->e_ident[EI_VERSION] = EV_CURRENT;
Davide Italianoaa7c5332015-09-25 01:59:13 +00001433
Rafael Espindolab9ca7bb2015-10-12 11:52:31 +00001434 auto &FirstObj = cast<ELFFileBase<ELFT>>(*Config->FirstElf);
Davide Italianoaa7c5332015-09-25 01:59:13 +00001435 EHdr->e_ident[EI_OSABI] = FirstObj.getOSABI();
Michael J. Spencer84487f12015-07-24 21:03:07 +00001436
Rafael Espindola4340aad2015-09-11 22:42:45 +00001437 EHdr->e_type = Config->Shared ? ET_DYN : ET_EXEC;
Rafael Espindolaf98d6d82015-09-03 20:03:54 +00001438 EHdr->e_machine = FirstObj.getEMachine();
Michael J. Spencer84487f12015-07-24 21:03:07 +00001439 EHdr->e_version = EV_CURRENT;
Rui Ueyama3bfaba92015-12-24 08:37:34 +00001440 EHdr->e_entry = getEntryAddr<ELFT>();
Rui Ueyama5bfd7d42015-10-10 22:36:36 +00001441 EHdr->e_phoff = sizeof(Elf_Ehdr);
Michael J. Spencer8039dae22015-07-29 00:30:10 +00001442 EHdr->e_shoff = SectionHeaderOff;
Simon Atanasyan034c4cd2015-12-19 05:51:49 +00001443 EHdr->e_flags = getELFFlags();
Rafael Espindola18608a02015-09-08 21:57:31 +00001444 EHdr->e_ehsize = sizeof(Elf_Ehdr);
1445 EHdr->e_phentsize = sizeof(Elf_Phdr);
Rui Ueyama2f1b79f2015-10-10 22:34:30 +00001446 EHdr->e_phnum = Phdrs.size();
Rafael Espindola18608a02015-09-08 21:57:31 +00001447 EHdr->e_shentsize = sizeof(Elf_Shdr);
Rafael Espindola5f553872015-09-08 17:39:39 +00001448 EHdr->e_shnum = getNumSections();
George Rimar0f5ac9f2015-10-20 17:21:35 +00001449 EHdr->e_shstrndx = Out<ELFT>::ShStrTab->SectionIndex;
Rui Ueyama6621d8e2015-10-24 17:57:40 +00001450
1451 // Write the program header table.
Rafael Espindola4fc60442016-02-10 22:43:13 +00001452 auto *HBuf = reinterpret_cast<Elf_Phdr *>(Buf + EHdr->e_phoff);
1453 for (Phdr &P : Phdrs)
1454 *HBuf++ = P.H;
Rafael Espindolae438e072015-09-08 22:55:28 +00001455
Rui Ueyama6621d8e2015-10-24 17:57:40 +00001456 // Write the section header table. Note that the first table entry is null.
Rafael Espindola18608a02015-09-08 21:57:31 +00001457 auto SHdrs = reinterpret_cast<Elf_Shdr *>(Buf + EHdr->e_shoff);
Rafael Espindola4fc60442016-02-10 22:43:13 +00001458 for (OutputSectionBase<ELFT> *Sec : getSections())
Rui Ueyama6621d8e2015-10-24 17:57:40 +00001459 Sec->writeHeaderTo(++SHdrs);
Michael J. Spencer84487f12015-07-24 21:03:07 +00001460}
1461
Rui Ueyamacbe39262016-02-02 22:48:04 +00001462template <class ELFT> bool Writer<ELFT>::openFile() {
Rafael Espindolabdc8f2f2015-08-13 00:31:46 +00001463 ErrorOr<std::unique_ptr<FileOutputBuffer>> BufferOrErr =
Rui Ueyamacbe39262016-02-02 22:48:04 +00001464 FileOutputBuffer::create(Config->OutputFile, FileSize,
1465 FileOutputBuffer::F_executable);
1466 if (error(BufferOrErr, "failed to open " + Config->OutputFile))
1467 return false;
Rafael Espindolabdc8f2f2015-08-13 00:31:46 +00001468 Buffer = std::move(*BufferOrErr);
Rui Ueyamacbe39262016-02-02 22:48:04 +00001469 return true;
Michael J. Spencer84487f12015-07-24 21:03:07 +00001470}
1471
1472// Write section contents to a mmap'ed file.
1473template <class ELFT> void Writer<ELFT>::writeSections() {
1474 uint8_t *Buf = Buffer->getBufferStart();
Hal Finkeldaedc122015-10-12 23:16:53 +00001475
1476 // PPC64 needs to process relocations in the .opd section before processing
1477 // relocations in code-containing sections.
Rui Ueyamac7cc6ec2015-10-15 22:27:29 +00001478 if (OutputSectionBase<ELFT> *Sec = Out<ELFT>::Opd) {
Rafael Espindola7a513052015-10-13 14:45:51 +00001479 Out<ELFT>::OpdBuf = Buf + Sec->getFileOff();
1480 Sec->writeTo(Buf + Sec->getFileOff());
1481 }
Hal Finkeldaedc122015-10-12 23:16:53 +00001482
Rui Ueyamac7cc6ec2015-10-15 22:27:29 +00001483 for (OutputSectionBase<ELFT> *Sec : OutputSections)
Rafael Espindola4d91f7f2016-02-01 21:52:00 +00001484 if (Sec != Out<ELFT>::Opd)
Hal Finkeldaedc122015-10-12 23:16:53 +00001485 Sec->writeTo(Buf + Sec->getFileOff());
Michael J. Spencer84487f12015-07-24 21:03:07 +00001486}
Rui Ueyama3ce825e2015-10-09 21:07:25 +00001487
Rui Ueyama83cd6e02016-01-06 20:11:55 +00001488template void elf2::writeResult<ELF32LE>(SymbolTable<ELF32LE> *Symtab);
1489template void elf2::writeResult<ELF32BE>(SymbolTable<ELF32BE> *Symtab);
1490template void elf2::writeResult<ELF64LE>(SymbolTable<ELF64LE> *Symtab);
1491template void elf2::writeResult<ELF64BE>(SymbolTable<ELF64BE> *Symtab);