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Rui Ueyama6dc7fcb2016-11-01 20:28:21 +00001//===- SyntheticSections.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//
10// This file contains linker-synthesized sections. Currently,
11// synthetic sections are created either output sections or input sections,
12// but we are rewriting code so that all synthetic sections are created as
13// input sections.
14//
15//===----------------------------------------------------------------------===//
16
17#include "SyntheticSections.h"
Rui Ueyama6e5fda92017-10-26 21:37:17 +000018#include "Bits.h"
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000019#include "Config.h"
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000020#include "InputFiles.h"
Eugene Leviant17b7a572016-11-22 17:49:14 +000021#include "LinkerScript.h"
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000022#include "OutputSections.h"
Rui Ueyamae8a61022016-11-05 23:05:47 +000023#include "SymbolTable.h"
Rafael Espindolad26b52f2017-12-09 16:56:18 +000024#include "Symbols.h"
Simon Atanasyance02cf02016-11-09 21:36:56 +000025#include "Target.h"
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +000026#include "Writer.h"
Bob Haarmanb8a59c82017-10-25 22:28:38 +000027#include "lld/Common/ErrorHandler.h"
Rui Ueyama2017d522017-11-28 20:39:17 +000028#include "lld/Common/Memory.h"
Rui Ueyamaee173712018-02-28 17:38:19 +000029#include "lld/Common/Strings.h"
Bob Haarman4f5c8c22017-10-13 18:22:55 +000030#include "lld/Common/Threads.h"
Rui Ueyama3f851702017-10-02 21:00:41 +000031#include "lld/Common/Version.h"
Zachary Turner264b5d92017-06-07 03:48:56 +000032#include "llvm/BinaryFormat/Dwarf.h"
Rui Ueyamaac2d8152017-03-01 22:54:50 +000033#include "llvm/DebugInfo/DWARF/DWARFDebugPubTable.h"
Peter Collingbournedc7936e2017-06-12 00:00:51 +000034#include "llvm/Object/Decompressor.h"
Rui Ueyamaac2d8152017-03-01 22:54:50 +000035#include "llvm/Object/ELFObjectFile.h"
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000036#include "llvm/Support/Endian.h"
Peter Collingbourne5c54f152017-10-27 17:49:40 +000037#include "llvm/Support/LEB128.h"
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000038#include "llvm/Support/MD5.h"
39#include "llvm/Support/RandomNumberGenerator.h"
40#include "llvm/Support/SHA1.h"
41#include "llvm/Support/xxhash.h"
Rui Ueyama3da3f062016-11-10 20:20:37 +000042#include <cstdlib>
Rui Ueyamac97a70c2017-09-30 11:46:26 +000043#include <thread>
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000044
45using namespace llvm;
Eugene Leviant952eb4d2016-11-21 15:52:10 +000046using namespace llvm::dwarf;
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000047using namespace llvm::ELF;
48using namespace llvm::object;
49using namespace llvm::support;
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +000050
51using namespace lld;
52using namespace lld::elf;
53
Fangrui Song0c483022018-03-09 18:03:22 +000054using llvm::support::endian::write32le;
55using llvm::support::endian::write64le;
Rui Ueyamac97a70c2017-09-30 11:46:26 +000056
Fangrui Song0c483022018-03-09 18:03:22 +000057constexpr size_t MergeNoTailSection::NumShards;
Rui Ueyama79048e42017-10-27 03:59:34 +000058
Rui Ueyama3da3f062016-11-10 20:20:37 +000059// Returns an LLD version string.
60static ArrayRef<uint8_t> getVersion() {
61 // Check LLD_VERSION first for ease of testing.
Eric Christopher7baac212018-03-20 18:10:30 +000062 // You can get consistent output by using the environment variable.
Rui Ueyama3da3f062016-11-10 20:20:37 +000063 // This is only for testing.
64 StringRef S = getenv("LLD_VERSION");
65 if (S.empty())
66 S = Saver.save(Twine("Linker: ") + getLLDVersion());
67
68 // +1 to include the terminating '\0'.
69 return {(const uint8_t *)S.data(), S.size() + 1};
Davide Italianob69f38f2016-11-11 00:05:41 +000070}
Rui Ueyama3da3f062016-11-10 20:20:37 +000071
72// Creates a .comment section containing LLD version info.
73// With this feature, you can identify LLD-generated binaries easily
Rui Ueyama42fca6e2017-04-27 04:50:08 +000074// by "readelf --string-dump .comment <file>".
Rui Ueyama3da3f062016-11-10 20:20:37 +000075// The returned object is a mergeable string section.
Rafael Espindola5c73c492017-12-21 01:21:59 +000076MergeInputSection *elf::createCommentSection() {
77 return make<MergeInputSection>(SHF_MERGE | SHF_STRINGS, SHT_PROGBITS, 1,
78 getVersion(), ".comment");
Rui Ueyama3da3f062016-11-10 20:20:37 +000079}
80
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +000081// .MIPS.abiflags section.
82template <class ELFT>
Rui Ueyama12f2da82016-11-22 03:57:06 +000083MipsAbiFlagsSection<ELFT>::MipsAbiFlagsSection(Elf_Mips_ABIFlags Flags)
Rui Ueyama9320cb02017-02-27 02:56:02 +000084 : SyntheticSection(SHF_ALLOC, SHT_MIPS_ABIFLAGS, 8, ".MIPS.abiflags"),
Rui Ueyama27876642017-03-01 04:04:23 +000085 Flags(Flags) {
86 this->Entsize = sizeof(Elf_Mips_ABIFlags);
87}
Rui Ueyama12f2da82016-11-22 03:57:06 +000088
89template <class ELFT> void MipsAbiFlagsSection<ELFT>::writeTo(uint8_t *Buf) {
90 memcpy(Buf, &Flags, sizeof(Flags));
91}
92
93template <class ELFT>
94MipsAbiFlagsSection<ELFT> *MipsAbiFlagsSection<ELFT>::create() {
95 Elf_Mips_ABIFlags Flags = {};
96 bool Create = false;
97
Rui Ueyama536a2672017-02-27 02:32:08 +000098 for (InputSectionBase *Sec : InputSections) {
Simon Atanasyan462f84a2017-03-17 14:27:55 +000099 if (Sec->Type != SHT_MIPS_ABIFLAGS)
Rui Ueyama12f2da82016-11-22 03:57:06 +0000100 continue;
101 Sec->Live = false;
102 Create = true;
103
Rui Ueyama25f30882017-10-27 03:25:04 +0000104 std::string Filename = toString(Sec->File);
Simon Atanasyan86dc60d2016-12-21 05:31:57 +0000105 const size_t Size = Sec->Data.size();
106 // Older version of BFD (such as the default FreeBSD linker) concatenate
107 // .MIPS.abiflags instead of merging. To allow for this case (or potential
108 // zero padding) we ignore everything after the first Elf_Mips_ABIFlags
109 if (Size < sizeof(Elf_Mips_ABIFlags)) {
110 error(Filename + ": invalid size of .MIPS.abiflags section: got " +
111 Twine(Size) + " instead of " + Twine(sizeof(Elf_Mips_ABIFlags)));
Rui Ueyama12f2da82016-11-22 03:57:06 +0000112 return nullptr;
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000113 }
Rui Ueyama12f2da82016-11-22 03:57:06 +0000114 auto *S = reinterpret_cast<const Elf_Mips_ABIFlags *>(Sec->Data.data());
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000115 if (S->version != 0) {
Rui Ueyama12f2da82016-11-22 03:57:06 +0000116 error(Filename + ": unexpected .MIPS.abiflags version " +
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000117 Twine(S->version));
Rui Ueyama12f2da82016-11-22 03:57:06 +0000118 return nullptr;
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000119 }
Rui Ueyama12f2da82016-11-22 03:57:06 +0000120
Simon Atanasyan649e4d32017-10-02 14:56:41 +0000121 // LLD checks ISA compatibility in calcMipsEFlags(). Here we just
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000122 // select the highest number of ISA/Rev/Ext.
123 Flags.isa_level = std::max(Flags.isa_level, S->isa_level);
124 Flags.isa_rev = std::max(Flags.isa_rev, S->isa_rev);
125 Flags.isa_ext = std::max(Flags.isa_ext, S->isa_ext);
126 Flags.gpr_size = std::max(Flags.gpr_size, S->gpr_size);
127 Flags.cpr1_size = std::max(Flags.cpr1_size, S->cpr1_size);
128 Flags.cpr2_size = std::max(Flags.cpr2_size, S->cpr2_size);
129 Flags.ases |= S->ases;
130 Flags.flags1 |= S->flags1;
131 Flags.flags2 |= S->flags2;
Rui Ueyama12f2da82016-11-22 03:57:06 +0000132 Flags.fp_abi = elf::getMipsFpAbiFlag(Flags.fp_abi, S->fp_abi, Filename);
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000133 };
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000134
Rui Ueyama12f2da82016-11-22 03:57:06 +0000135 if (Create)
136 return make<MipsAbiFlagsSection<ELFT>>(Flags);
137 return nullptr;
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +0000138}
139
Simon Atanasyance02cf02016-11-09 21:36:56 +0000140// .MIPS.options section.
141template <class ELFT>
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000142MipsOptionsSection<ELFT>::MipsOptionsSection(Elf_Mips_RegInfo Reginfo)
Rui Ueyama9320cb02017-02-27 02:56:02 +0000143 : SyntheticSection(SHF_ALLOC, SHT_MIPS_OPTIONS, 8, ".MIPS.options"),
Rui Ueyama27876642017-03-01 04:04:23 +0000144 Reginfo(Reginfo) {
145 this->Entsize = sizeof(Elf_Mips_Options) + sizeof(Elf_Mips_RegInfo);
146}
Simon Atanasyance02cf02016-11-09 21:36:56 +0000147
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000148template <class ELFT> void MipsOptionsSection<ELFT>::writeTo(uint8_t *Buf) {
149 auto *Options = reinterpret_cast<Elf_Mips_Options *>(Buf);
150 Options->kind = ODK_REGINFO;
151 Options->size = getSize();
152
153 if (!Config->Relocatable)
Rafael Espindolab3aa2c92017-05-11 21:33:30 +0000154 Reginfo.ri_gp_value = InX::MipsGot->getGp();
Rafael Espindola4862ae82016-11-24 16:38:35 +0000155 memcpy(Buf + sizeof(Elf_Mips_Options), &Reginfo, sizeof(Reginfo));
Simon Atanasyance02cf02016-11-09 21:36:56 +0000156}
157
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000158template <class ELFT>
159MipsOptionsSection<ELFT> *MipsOptionsSection<ELFT>::create() {
160 // N64 ABI only.
161 if (!ELFT::Is64Bits)
162 return nullptr;
163
Rui Ueyamaf9c66e42017-10-27 04:15:28 +0000164 std::vector<InputSectionBase *> Sections;
165 for (InputSectionBase *Sec : InputSections)
166 if (Sec->Type == SHT_MIPS_OPTIONS)
167 Sections.push_back(Sec);
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000168
Rui Ueyamaf9c66e42017-10-27 04:15:28 +0000169 if (Sections.empty())
170 return nullptr;
171
172 Elf_Mips_RegInfo Reginfo = {};
173 for (InputSectionBase *Sec : Sections) {
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000174 Sec->Live = false;
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000175
Rui Ueyama25f30882017-10-27 03:25:04 +0000176 std::string Filename = toString(Sec->File);
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000177 ArrayRef<uint8_t> D = Sec->Data;
178
179 while (!D.empty()) {
180 if (D.size() < sizeof(Elf_Mips_Options)) {
181 error(Filename + ": invalid size of .MIPS.options section");
182 break;
183 }
184
185 auto *Opt = reinterpret_cast<const Elf_Mips_Options *>(D.data());
186 if (Opt->kind == ODK_REGINFO) {
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000187 Reginfo.ri_gprmask |= Opt->getRegInfo().ri_gprmask;
Rafael Espindolab4c9b812017-02-23 02:28:28 +0000188 Sec->getFile<ELFT>()->MipsGp0 = Opt->getRegInfo().ri_gp_value;
Rui Ueyama9cfac8a2016-11-22 04:13:09 +0000189 break;
190 }
191
192 if (!Opt->size)
193 fatal(Filename + ": zero option descriptor size");
194 D = D.slice(Opt->size);
195 }
196 };
197
Rui Ueyamaf9c66e42017-10-27 04:15:28 +0000198 return make<MipsOptionsSection<ELFT>>(Reginfo);
Simon Atanasyance02cf02016-11-09 21:36:56 +0000199}
200
201// MIPS .reginfo section.
202template <class ELFT>
Rui Ueyamab71cae92016-11-22 03:57:08 +0000203MipsReginfoSection<ELFT>::MipsReginfoSection(Elf_Mips_RegInfo Reginfo)
Rui Ueyama9320cb02017-02-27 02:56:02 +0000204 : SyntheticSection(SHF_ALLOC, SHT_MIPS_REGINFO, 4, ".reginfo"),
Rui Ueyama27876642017-03-01 04:04:23 +0000205 Reginfo(Reginfo) {
206 this->Entsize = sizeof(Elf_Mips_RegInfo);
207}
Simon Atanasyance02cf02016-11-09 21:36:56 +0000208
Rui Ueyamab71cae92016-11-22 03:57:08 +0000209template <class ELFT> void MipsReginfoSection<ELFT>::writeTo(uint8_t *Buf) {
Simon Atanasyance02cf02016-11-09 21:36:56 +0000210 if (!Config->Relocatable)
Rafael Espindolab3aa2c92017-05-11 21:33:30 +0000211 Reginfo.ri_gp_value = InX::MipsGot->getGp();
Rui Ueyamab71cae92016-11-22 03:57:08 +0000212 memcpy(Buf, &Reginfo, sizeof(Reginfo));
213}
214
215template <class ELFT>
216MipsReginfoSection<ELFT> *MipsReginfoSection<ELFT>::create() {
217 // Section should be alive for O32 and N32 ABIs only.
218 if (ELFT::Is64Bits)
219 return nullptr;
220
Rui Ueyamaf9c66e42017-10-27 04:15:28 +0000221 std::vector<InputSectionBase *> Sections;
222 for (InputSectionBase *Sec : InputSections)
223 if (Sec->Type == SHT_MIPS_REGINFO)
224 Sections.push_back(Sec);
Rui Ueyamab71cae92016-11-22 03:57:08 +0000225
Rui Ueyamaf9c66e42017-10-27 04:15:28 +0000226 if (Sections.empty())
227 return nullptr;
228
229 Elf_Mips_RegInfo Reginfo = {};
230 for (InputSectionBase *Sec : Sections) {
Rui Ueyamab71cae92016-11-22 03:57:08 +0000231 Sec->Live = false;
Rui Ueyamab71cae92016-11-22 03:57:08 +0000232
233 if (Sec->Data.size() != sizeof(Elf_Mips_RegInfo)) {
Rui Ueyama25f30882017-10-27 03:25:04 +0000234 error(toString(Sec->File) + ": invalid size of .reginfo section");
Rui Ueyamab71cae92016-11-22 03:57:08 +0000235 return nullptr;
236 }
Rui Ueyamab71cae92016-11-22 03:57:08 +0000237
Simon Atanasyan05600502018-05-08 15:34:06 +0000238 auto *R = reinterpret_cast<const Elf_Mips_RegInfo *>(Sec->Data.data());
Rui Ueyamab71cae92016-11-22 03:57:08 +0000239 Reginfo.ri_gprmask |= R->ri_gprmask;
Rafael Espindolab4c9b812017-02-23 02:28:28 +0000240 Sec->getFile<ELFT>()->MipsGp0 = R->ri_gp_value;
Rui Ueyamab71cae92016-11-22 03:57:08 +0000241 };
242
Rui Ueyamaf9c66e42017-10-27 04:15:28 +0000243 return make<MipsReginfoSection<ELFT>>(Reginfo);
Simon Atanasyance02cf02016-11-09 21:36:56 +0000244}
245
Rui Ueyama3255a522017-02-27 02:32:49 +0000246InputSection *elf::createInterpSection() {
Rui Ueyama81a4b262016-11-22 04:33:01 +0000247 // StringSaver guarantees that the returned string ends with '\0'.
248 StringRef S = Saver.save(Config->DynamicLinker);
Rui Ueyama6e50fd52017-03-01 07:39:06 +0000249 ArrayRef<uint8_t> Contents = {(const uint8_t *)S.data(), S.size() + 1};
250
Rafael Espindolace3b52c2017-12-21 02:11:51 +0000251 auto *Sec = make<InputSection>(nullptr, SHF_ALLOC, SHT_PROGBITS, 1, Contents,
252 ".interp");
Rui Ueyama6e50fd52017-03-01 07:39:06 +0000253 Sec->Live = true;
254 return Sec;
Rui Ueyamaa9ee8d62016-11-04 22:25:39 +0000255}
Rui Ueyamae288eef2016-11-02 18:58:44 +0000256
Peter Collingbournec5391ce2018-03-29 22:32:13 +0000257Defined *elf::addSyntheticLocal(StringRef Name, uint8_t Type, uint64_t Value,
258 uint64_t Size, InputSectionBase &Section) {
Rafael Espindola1037eef2017-12-19 23:59:35 +0000259 auto *S = make<Defined>(Section.File, Name, STB_LOCAL, STV_DEFAULT, Type,
260 Value, Size, &Section);
George Rimar69b17c32017-05-16 10:04:42 +0000261 if (InX::SymTab)
262 InX::SymTab->addSymbol(S);
Peter Smith96943762017-01-25 10:31:16 +0000263 return S;
264}
265
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000266static size_t getHashSize() {
Rui Ueyamac4030a12016-11-22 00:54:15 +0000267 switch (Config->BuildId) {
268 case BuildIdKind::Fast:
269 return 8;
270 case BuildIdKind::Md5:
271 case BuildIdKind::Uuid:
272 return 16;
273 case BuildIdKind::Sha1:
274 return 20;
275 case BuildIdKind::Hexstring:
276 return Config->BuildIdVector.size();
277 default:
278 llvm_unreachable("unknown BuildIdKind");
279 }
280}
281
George Rimar6c2949d2017-03-20 16:40:21 +0000282BuildIdSection::BuildIdSection()
Jake Ehrlich1128dc52017-10-30 22:08:11 +0000283 : SyntheticSection(SHF_ALLOC, SHT_NOTE, 4, ".note.gnu.build-id"),
Rui Ueyamabb536fe2016-11-22 01:36:19 +0000284 HashSize(getHashSize()) {}
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000285
George Rimar6c2949d2017-03-20 16:40:21 +0000286void BuildIdSection::writeTo(uint8_t *Buf) {
Rui Ueyama79048e42017-10-27 03:59:34 +0000287 write32(Buf, 4); // Name size
288 write32(Buf + 4, HashSize); // Content size
289 write32(Buf + 8, NT_GNU_BUILD_ID); // Type
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000290 memcpy(Buf + 12, "GNU", 4); // Name string
291 HashBuf = Buf + 16;
292}
293
Rui Ueyama35e00752016-11-10 00:12:28 +0000294// Split one uint8 array into small pieces of uint8 arrays.
George Rimar364b59e22016-11-06 07:42:55 +0000295static std::vector<ArrayRef<uint8_t>> split(ArrayRef<uint8_t> Arr,
296 size_t ChunkSize) {
297 std::vector<ArrayRef<uint8_t>> Ret;
298 while (Arr.size() > ChunkSize) {
299 Ret.push_back(Arr.take_front(ChunkSize));
300 Arr = Arr.drop_front(ChunkSize);
301 }
302 if (!Arr.empty())
303 Ret.push_back(Arr);
304 return Ret;
305}
306
Rui Ueyama35e00752016-11-10 00:12:28 +0000307// Computes a hash value of Data using a given hash function.
308// In order to utilize multiple cores, we first split data into 1MB
309// chunks, compute a hash for each chunk, and then compute a hash value
310// of the hash values.
George Rimar6c2949d2017-03-20 16:40:21 +0000311void BuildIdSection::computeHash(
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000312 llvm::ArrayRef<uint8_t> Data,
313 std::function<void(uint8_t *Dest, ArrayRef<uint8_t> Arr)> HashFn) {
George Rimar364b59e22016-11-06 07:42:55 +0000314 std::vector<ArrayRef<uint8_t>> Chunks = split(Data, 1024 * 1024);
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000315 std::vector<uint8_t> Hashes(Chunks.size() * HashSize);
George Rimar364b59e22016-11-06 07:42:55 +0000316
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000317 // Compute hash values.
Rui Ueyama33d903d2017-05-10 20:02:19 +0000318 parallelForEachN(0, Chunks.size(), [&](size_t I) {
Rui Ueyama4995afd2017-03-22 23:03:35 +0000319 HashFn(Hashes.data() + I * HashSize, Chunks[I]);
320 });
Rui Ueyama35e00752016-11-10 00:12:28 +0000321
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000322 // Write to the final output buffer.
323 HashFn(HashBuf, Hashes);
George Rimar364b59e22016-11-06 07:42:55 +0000324}
325
Rui Ueyama732f4e22017-10-04 00:21:17 +0000326BssSection::BssSection(StringRef Name, uint64_t Size, uint32_t Alignment)
327 : SyntheticSection(SHF_ALLOC | SHF_WRITE, SHT_NOBITS, Alignment, Name) {
Peter Collingbourne6c55a702017-11-06 04:33:58 +0000328 this->Bss = true;
Rafael Espindoladb5e56f2017-05-31 20:17:44 +0000329 if (OutputSection *Sec = getParent())
Rui Ueyama8befefb2017-10-07 00:58:34 +0000330 Sec->Alignment = std::max(Sec->Alignment, Alignment);
Rui Ueyama732f4e22017-10-04 00:21:17 +0000331 this->Size = Size;
George Rimar1ab9cf42017-03-17 10:14:53 +0000332}
Peter Smithebfe9942017-02-09 10:27:57 +0000333
George Rimar6c2949d2017-03-20 16:40:21 +0000334void BuildIdSection::writeBuildId(ArrayRef<uint8_t> Buf) {
Rui Ueyamac4030a12016-11-22 00:54:15 +0000335 switch (Config->BuildId) {
336 case BuildIdKind::Fast:
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000337 computeHash(Buf, [](uint8_t *Dest, ArrayRef<uint8_t> Arr) {
Rui Ueyamac4030a12016-11-22 00:54:15 +0000338 write64le(Dest, xxHash64(toStringRef(Arr)));
339 });
340 break;
341 case BuildIdKind::Md5:
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000342 computeHash(Buf, [](uint8_t *Dest, ArrayRef<uint8_t> Arr) {
Rui Ueyama28590b62016-11-23 18:11:38 +0000343 memcpy(Dest, MD5::hash(Arr).data(), 16);
Rui Ueyamac4030a12016-11-22 00:54:15 +0000344 });
345 break;
346 case BuildIdKind::Sha1:
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000347 computeHash(Buf, [](uint8_t *Dest, ArrayRef<uint8_t> Arr) {
Rui Ueyama28590b62016-11-23 18:11:38 +0000348 memcpy(Dest, SHA1::hash(Arr).data(), 20);
Rui Ueyamac4030a12016-11-22 00:54:15 +0000349 });
350 break;
351 case BuildIdKind::Uuid:
Rui Ueyama88f05682017-10-27 01:25:29 +0000352 if (auto EC = getRandomBytes(HashBuf, HashSize))
353 error("entropy source failure: " + EC.message());
Rui Ueyamac4030a12016-11-22 00:54:15 +0000354 break;
355 case BuildIdKind::Hexstring:
Rui Ueyama2d98fea2016-11-22 01:31:32 +0000356 memcpy(HashBuf, Config->BuildIdVector.data(), Config->BuildIdVector.size());
Rui Ueyamac4030a12016-11-22 00:54:15 +0000357 break;
358 default:
359 llvm_unreachable("unknown BuildIdKind");
360 }
Rui Ueyama6dc7fcb2016-11-01 20:28:21 +0000361}
362
Rui Ueyama572247f2017-10-27 03:13:39 +0000363EhFrameSection::EhFrameSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +0000364 : SyntheticSection(SHF_ALLOC, SHT_PROGBITS, 1, ".eh_frame") {}
Rafael Espindola66b4e212017-02-23 22:06:28 +0000365
366// Search for an existing CIE record or create a new one.
367// CIE records from input object files are uniquified by their contents
368// and where their relocations point to.
Rui Ueyama572247f2017-10-27 03:13:39 +0000369template <class ELFT, class RelTy>
370CieRecord *EhFrameSection::addCie(EhSectionPiece &Cie, ArrayRef<RelTy> Rels) {
NAKAMURA Takumi169dbde2017-09-20 08:03:18 +0000371 auto *Sec = cast<EhInputSection>(Cie.Sec);
Fangrui Song0c483022018-03-09 18:03:22 +0000372 if (read32(Cie.data().data() + 4) != 0)
Rafael Espindola66b4e212017-02-23 22:06:28 +0000373 fatal(toString(Sec) + ": CIE expected at beginning of .eh_frame");
374
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000375 Symbol *Personality = nullptr;
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000376 unsigned FirstRelI = Cie.FirstRelocation;
Rafael Espindola66b4e212017-02-23 22:06:28 +0000377 if (FirstRelI != (unsigned)-1)
378 Personality =
379 &Sec->template getFile<ELFT>()->getRelocTargetSym(Rels[FirstRelI]);
380
381 // Search for an existing CIE by CIE contents/relocation target pair.
George Rimar94444b92017-09-20 09:27:41 +0000382 CieRecord *&Rec = CieMap[{Cie.data(), Personality}];
Rafael Espindola66b4e212017-02-23 22:06:28 +0000383
384 // If not found, create a new one.
George Rimar94444b92017-09-20 09:27:41 +0000385 if (!Rec) {
386 Rec = make<CieRecord>();
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000387 Rec->Cie = &Cie;
388 CieRecords.push_back(Rec);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000389 }
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000390 return Rec;
Rafael Espindola66b4e212017-02-23 22:06:28 +0000391}
392
393// There is one FDE per function. Returns true if a given FDE
394// points to a live function.
Rui Ueyama572247f2017-10-27 03:13:39 +0000395template <class ELFT, class RelTy>
396bool EhFrameSection::isFdeLive(EhSectionPiece &Fde, ArrayRef<RelTy> Rels) {
NAKAMURA Takumi169dbde2017-09-20 08:03:18 +0000397 auto *Sec = cast<EhInputSection>(Fde.Sec);
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000398 unsigned FirstRelI = Fde.FirstRelocation;
Rui Ueyama56614e42017-09-12 23:43:45 +0000399
400 // An FDE should point to some function because FDEs are to describe
401 // functions. That's however not always the case due to an issue of
402 // ld.gold with -r. ld.gold may discard only functions and leave their
403 // corresponding FDEs, which results in creating bad .eh_frame sections.
404 // To deal with that, we ignore such FDEs.
Rafael Espindola66b4e212017-02-23 22:06:28 +0000405 if (FirstRelI == (unsigned)-1)
406 return false;
Rui Ueyama56614e42017-09-12 23:43:45 +0000407
Rafael Espindola66b4e212017-02-23 22:06:28 +0000408 const RelTy &Rel = Rels[FirstRelI];
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000409 Symbol &B = Sec->template getFile<ELFT>()->getRelocTargetSym(Rel);
George Rimard605f412017-10-26 09:13:19 +0000410
411 // FDEs for garbage-collected or merged-by-ICF sections are dead.
Peter Collingbournee9a9e0a2017-11-06 04:35:31 +0000412 if (auto *D = dyn_cast<Defined>(&B))
Rafael Espindola13dbf942017-12-13 17:36:53 +0000413 if (SectionBase *Sec = D->Section)
414 return Sec->Live;
Rui Ueyama27a357c2017-09-18 19:15:54 +0000415 return false;
Rafael Espindola66b4e212017-02-23 22:06:28 +0000416}
417
418// .eh_frame is a sequence of CIE or FDE records. In general, there
419// is one CIE record per input object file which is followed by
420// a list of FDEs. This function searches an existing CIE or create a new
421// one and associates FDEs to the CIE.
Rui Ueyama572247f2017-10-27 03:13:39 +0000422template <class ELFT, class RelTy>
423void EhFrameSection::addSectionAux(EhInputSection *Sec, ArrayRef<RelTy> Rels) {
Rafael Espindolabd4d2ac2018-04-27 20:19:28 +0000424 OffsetToCie.clear();
Rafael Espindola66b4e212017-02-23 22:06:28 +0000425 for (EhSectionPiece &Piece : Sec->Pieces) {
426 // The empty record is the end marker.
Rui Ueyamaa6ff6172017-09-18 23:07:09 +0000427 if (Piece.Size == 4)
Rafael Espindola66b4e212017-02-23 22:06:28 +0000428 return;
429
430 size_t Offset = Piece.InputOff;
Fangrui Song0c483022018-03-09 18:03:22 +0000431 uint32_t ID = read32(Piece.data().data() + 4);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000432 if (ID == 0) {
Rui Ueyama572247f2017-10-27 03:13:39 +0000433 OffsetToCie[Offset] = addCie<ELFT>(Piece, Rels);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000434 continue;
435 }
436
437 uint32_t CieOffset = Offset + 4 - ID;
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000438 CieRecord *Rec = OffsetToCie[CieOffset];
439 if (!Rec)
Rafael Espindola66b4e212017-02-23 22:06:28 +0000440 fatal(toString(Sec) + ": invalid CIE reference");
441
Rui Ueyama572247f2017-10-27 03:13:39 +0000442 if (!isFdeLive<ELFT>(Piece, Rels))
Rafael Espindola66b4e212017-02-23 22:06:28 +0000443 continue;
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000444 Rec->Fdes.push_back(&Piece);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000445 NumFdes++;
446 }
447}
448
Rui Ueyama572247f2017-10-27 03:13:39 +0000449template <class ELFT> void EhFrameSection::addSection(InputSectionBase *C) {
Rafael Espindola5c02b742017-03-06 21:17:18 +0000450 auto *Sec = cast<EhInputSection>(C);
Rafael Espindoladb5e56f2017-05-31 20:17:44 +0000451 Sec->Parent = this;
Rui Ueyama8befefb2017-10-07 00:58:34 +0000452
453 Alignment = std::max(Alignment, Sec->Alignment);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000454 Sections.push_back(Sec);
Rui Ueyama8befefb2017-10-07 00:58:34 +0000455
Petr Hosek7b793212017-03-10 20:00:42 +0000456 for (auto *DS : Sec->DependentSections)
457 DependentSections.push_back(DS);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000458
Rafael Espindola66b4e212017-02-23 22:06:28 +0000459 if (Sec->Pieces.empty())
460 return;
461
Rui Ueyamabfa84322017-10-26 22:30:25 +0000462 if (Sec->AreRelocsRela)
Rui Ueyama572247f2017-10-27 03:13:39 +0000463 addSectionAux<ELFT>(Sec, Sec->template relas<ELFT>());
Rui Ueyamafaa38022017-09-19 20:28:03 +0000464 else
Rui Ueyama572247f2017-10-27 03:13:39 +0000465 addSectionAux<ELFT>(Sec, Sec->template rels<ELFT>());
Rafael Espindola66b4e212017-02-23 22:06:28 +0000466}
467
Rafael Espindola66b4e212017-02-23 22:06:28 +0000468static void writeCieFde(uint8_t *Buf, ArrayRef<uint8_t> D) {
469 memcpy(Buf, D.data(), D.size());
470
Rui Ueyama076e2bb2017-10-27 03:13:09 +0000471 size_t Aligned = alignTo(D.size(), Config->Wordsize);
Andrew Ng6dee7362017-09-07 08:43:56 +0000472
473 // Zero-clear trailing padding if it exists.
474 memset(Buf + D.size(), 0, Aligned - D.size());
475
Rafael Espindola66b4e212017-02-23 22:06:28 +0000476 // Fix the size field. -4 since size does not include the size field itself.
Rui Ueyama79048e42017-10-27 03:59:34 +0000477 write32(Buf, Aligned - 4);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000478}
479
Rui Ueyama572247f2017-10-27 03:13:39 +0000480void EhFrameSection::finalizeContents() {
Rafael Espindola66b4e212017-02-23 22:06:28 +0000481 if (this->Size)
482 return; // Already finalized.
483
484 size_t Off = 0;
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000485 for (CieRecord *Rec : CieRecords) {
486 Rec->Cie->OutputOff = Off;
487 Off += alignTo(Rec->Cie->Size, Config->Wordsize);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000488
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000489 for (EhSectionPiece *Fde : Rec->Fdes) {
Rafael Espindola66b4e212017-02-23 22:06:28 +0000490 Fde->OutputOff = Off;
Rui Ueyamaa6ff6172017-09-18 23:07:09 +0000491 Off += alignTo(Fde->Size, Config->Wordsize);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000492 }
493 }
Rafael Espindolaa8a1a4f2017-05-02 15:45:31 +0000494
495 // The LSB standard does not allow a .eh_frame section with zero
Fangrui Song95851512018-05-08 01:19:16 +0000496 // Call Frame Information records. glibc unwind-dw2-fde.c
497 // classify_object_over_fdes expects there is a CIE record length 0 as a
498 // terminator. Thus we add one unconditionally.
499 Off += 4;
Rafael Espindolaa8a1a4f2017-05-02 15:45:31 +0000500
Rafael Espindolab691ccf2017-02-28 18:55:08 +0000501 this->Size = Off;
Rafael Espindola66b4e212017-02-23 22:06:28 +0000502}
503
Rui Ueyamac0552252017-10-27 03:13:24 +0000504// Returns data for .eh_frame_hdr. .eh_frame_hdr is a binary search table
505// to get an FDE from an address to which FDE is applied. This function
506// returns a list of such pairs.
Rui Ueyama572247f2017-10-27 03:13:39 +0000507std::vector<EhFrameSection::FdeData> EhFrameSection::getFdeData() const {
Rui Ueyamac0552252017-10-27 03:13:24 +0000508 uint8_t *Buf = getParent()->Loc + OutSecOff;
509 std::vector<FdeData> Ret;
510
511 for (CieRecord *Rec : CieRecords) {
Rui Ueyama86297522017-10-27 03:14:09 +0000512 uint8_t Enc = getFdeEncoding(Rec->Cie);
Rui Ueyamac0552252017-10-27 03:13:24 +0000513 for (EhSectionPiece *Fde : Rec->Fdes) {
514 uint32_t Pc = getFdePc(Buf, Fde->OutputOff, Enc);
515 uint32_t FdeVA = getParent()->Addr + Fde->OutputOff;
516 Ret.push_back({Pc, FdeVA});
517 }
518 }
519 return Ret;
520}
521
Rui Ueyama076e2bb2017-10-27 03:13:09 +0000522static uint64_t readFdeAddr(uint8_t *Buf, int Size) {
Rafael Espindola66b4e212017-02-23 22:06:28 +0000523 switch (Size) {
524 case DW_EH_PE_udata2:
Fangrui Song0c483022018-03-09 18:03:22 +0000525 return read16(Buf);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000526 case DW_EH_PE_udata4:
Fangrui Song0c483022018-03-09 18:03:22 +0000527 return read32(Buf);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000528 case DW_EH_PE_udata8:
Fangrui Song0c483022018-03-09 18:03:22 +0000529 return read64(Buf);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000530 case DW_EH_PE_absptr:
Rui Ueyama076e2bb2017-10-27 03:13:09 +0000531 return readUint(Buf);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000532 }
533 fatal("unknown FDE size encoding");
534}
535
536// Returns the VA to which a given FDE (on a mmap'ed buffer) is applied to.
537// We need it to create .eh_frame_hdr section.
Rui Ueyama572247f2017-10-27 03:13:39 +0000538uint64_t EhFrameSection::getFdePc(uint8_t *Buf, size_t FdeOff,
539 uint8_t Enc) const {
Rafael Espindola66b4e212017-02-23 22:06:28 +0000540 // The starting address to which this FDE applies is
541 // stored at FDE + 8 byte.
542 size_t Off = FdeOff + 8;
Rui Ueyama076e2bb2017-10-27 03:13:09 +0000543 uint64_t Addr = readFdeAddr(Buf + Off, Enc & 0x7);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000544 if ((Enc & 0x70) == DW_EH_PE_absptr)
545 return Addr;
546 if ((Enc & 0x70) == DW_EH_PE_pcrel)
Rafael Espindoladb5e56f2017-05-31 20:17:44 +0000547 return Addr + getParent()->Addr + Off;
Rafael Espindola66b4e212017-02-23 22:06:28 +0000548 fatal("unknown FDE size relative encoding");
549}
550
Rui Ueyama572247f2017-10-27 03:13:39 +0000551void EhFrameSection::writeTo(uint8_t *Buf) {
Rui Ueyamac9a4d1c2017-10-10 03:58:18 +0000552 // Write CIE and FDE records.
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000553 for (CieRecord *Rec : CieRecords) {
554 size_t CieOffset = Rec->Cie->OutputOff;
Rui Ueyama076e2bb2017-10-27 03:13:09 +0000555 writeCieFde(Buf + CieOffset, Rec->Cie->data());
Rafael Espindola66b4e212017-02-23 22:06:28 +0000556
Rui Ueyama74ea1f02017-09-19 21:31:57 +0000557 for (EhSectionPiece *Fde : Rec->Fdes) {
Rafael Espindola66b4e212017-02-23 22:06:28 +0000558 size_t Off = Fde->OutputOff;
Rui Ueyama076e2bb2017-10-27 03:13:09 +0000559 writeCieFde(Buf + Off, Fde->data());
Rafael Espindola66b4e212017-02-23 22:06:28 +0000560
561 // FDE's second word should have the offset to an associated CIE.
562 // Write it.
Rui Ueyama79048e42017-10-27 03:59:34 +0000563 write32(Buf + Off + 4, Off + 4 - CieOffset);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000564 }
565 }
566
Rui Ueyamac9a4d1c2017-10-10 03:58:18 +0000567 // Apply relocations. .eh_frame section contents are not contiguous
568 // in the output buffer, but relocateAlloc() still works because
569 // getOffset() takes care of discontiguous section pieces.
Rafael Espindola5c02b742017-03-06 21:17:18 +0000570 for (EhInputSection *S : Sections)
Rafael Espindolaa6465bb2017-05-18 16:45:36 +0000571 S->relocateAlloc(Buf, nullptr);
Rafael Espindola66b4e212017-02-23 22:06:28 +0000572}
573
Rafael Espindolaa6465bb2017-05-18 16:45:36 +0000574GotSection::GotSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +0000575 : SyntheticSection(SHF_ALLOC | SHF_WRITE, SHT_PROGBITS,
Zaara Syedac65ae142018-03-26 17:50:52 +0000576 Target->GotEntrySize, ".got") {
577 // PPC64 saves the ElfSym::GlobalOffsetTable .TOC. as the first entry in the
578 // .got. If there are no references to .TOC. in the symbol table,
579 // ElfSym::GlobalOffsetTable will not be defined and we won't need to save
580 // .TOC. in the .got. When it is defined, we increase NumEntries by the number
581 // of entries used to emit ElfSym::GlobalOffsetTable.
582 if (ElfSym::GlobalOffsetTable && !Target->GotBaseSymInGotPlt)
583 NumEntries += Target->GotHeaderEntriesNum;
584}
Eugene Leviantad4439e2016-11-11 11:33:32 +0000585
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000586void GotSection::addEntry(Symbol &Sym) {
Zaara Syedac65ae142018-03-26 17:50:52 +0000587 Sym.GotIndex = NumEntries;
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000588 ++NumEntries;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000589}
590
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000591bool GotSection::addDynTlsEntry(Symbol &Sym) {
Simon Atanasyan725dc142016-11-16 21:01:02 +0000592 if (Sym.GlobalDynIndex != -1U)
593 return false;
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000594 Sym.GlobalDynIndex = NumEntries;
Simon Atanasyan725dc142016-11-16 21:01:02 +0000595 // Global Dynamic TLS entries take two GOT slots.
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000596 NumEntries += 2;
Simon Atanasyan725dc142016-11-16 21:01:02 +0000597 return true;
598}
599
600// Reserves TLS entries for a TLS module ID and a TLS block offset.
601// In total it takes two GOT slots.
Rafael Espindolaa6465bb2017-05-18 16:45:36 +0000602bool GotSection::addTlsIndex() {
Simon Atanasyan725dc142016-11-16 21:01:02 +0000603 if (TlsIndexOff != uint32_t(-1))
604 return false;
Rui Ueyamac49bdd62017-04-14 01:34:45 +0000605 TlsIndexOff = NumEntries * Config->Wordsize;
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000606 NumEntries += 2;
Simon Atanasyan725dc142016-11-16 21:01:02 +0000607 return true;
608}
609
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000610uint64_t GotSection::getGlobalDynAddr(const Symbol &B) const {
Rui Ueyamac49bdd62017-04-14 01:34:45 +0000611 return this->getVA() + B.GlobalDynIndex * Config->Wordsize;
Simon Atanasyan725dc142016-11-16 21:01:02 +0000612}
613
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000614uint64_t GotSection::getGlobalDynOffset(const Symbol &B) const {
Rui Ueyamac49bdd62017-04-14 01:34:45 +0000615 return B.GlobalDynIndex * Config->Wordsize;
Simon Atanasyan725dc142016-11-16 21:01:02 +0000616}
617
Zaara Syeda52ed6eb2018-03-19 17:40:14 +0000618void GotSection::finalizeContents() {
Zaara Syedac65ae142018-03-26 17:50:52 +0000619 Size = NumEntries * Config->Wordsize;
Zaara Syeda52ed6eb2018-03-19 17:40:14 +0000620}
Simon Atanasyan725dc142016-11-16 21:01:02 +0000621
Rafael Espindolaa6465bb2017-05-18 16:45:36 +0000622bool GotSection::empty() const {
George Rimar19d6ce92017-09-25 09:46:33 +0000623 // We need to emit a GOT even if it's empty if there's a relocation that is
624 // relative to GOT(such as GOTOFFREL) or there's a symbol that points to a GOT
Peter Smith3d044f52018-03-19 06:52:51 +0000625 // (i.e. _GLOBAL_OFFSET_TABLE_) that the target defines relative to the .got.
626 return NumEntries == 0 && !HasGotOffRel &&
627 !(ElfSym::GlobalOffsetTable && !Target->GotBaseSymInGotPlt);
George Rimar11992c862016-11-25 08:05:41 +0000628}
629
Igor Kudrin202a9f62017-07-14 08:10:45 +0000630void GotSection::writeTo(uint8_t *Buf) {
631 // Buf points to the start of this section's buffer,
632 // whereas InputSectionBase::relocateAlloc() expects its argument
633 // to point to the start of the output section.
Zaara Syeda52ed6eb2018-03-19 17:40:14 +0000634 Target->writeGotHeader(Buf);
635 Buf += Target->GotHeaderEntriesNum * Target->GotEntrySize;
Igor Kudrin202a9f62017-07-14 08:10:45 +0000636 relocateAlloc(Buf - OutSecOff, Buf - OutSecOff + Size);
637}
Simon Atanasyan725dc142016-11-16 21:01:02 +0000638
George Rimar14534eb2017-03-20 16:44:28 +0000639MipsGotSection::MipsGotSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +0000640 : SyntheticSection(SHF_ALLOC | SHF_WRITE | SHF_MIPS_GPREL, SHT_PROGBITS, 16,
641 ".got") {}
Simon Atanasyan725dc142016-11-16 21:01:02 +0000642
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000643void MipsGotSection::addEntry(Symbol &Sym, int64_t Addend, RelExpr Expr) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000644 // For "true" local symbols which can be referenced from the same module
645 // only compiler creates two instructions for address loading:
646 //
647 // lw $8, 0($gp) # R_MIPS_GOT16
648 // addi $8, $8, 0 # R_MIPS_LO16
649 //
650 // The first instruction loads high 16 bits of the symbol address while
651 // the second adds an offset. That allows to reduce number of required
652 // GOT entries because only one global offset table entry is necessary
653 // for every 64 KBytes of local data. So for local symbols we need to
654 // allocate number of GOT entries to hold all required "page" addresses.
655 //
656 // All global symbols (hidden and regular) considered by compiler uniformly.
657 // It always generates a single `lw` instruction and R_MIPS_GOT16 relocation
658 // to load address of the symbol. So for each such symbol we need to
659 // allocate dedicated GOT entry to store its address.
660 //
661 // If a symbol is preemptible we need help of dynamic linker to get its
662 // final address. The corresponding GOT entries are allocated in the
663 // "global" part of GOT. Entries for non preemptible global symbol allocated
664 // in the "local" part of GOT.
665 //
666 // See "Global Offset Table" in Chapter 5:
667 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
668 if (Expr == R_MIPS_GOT_LOCAL_PAGE) {
669 // At this point we do not know final symbol value so to reduce number
670 // of allocated GOT entries do the following trick. Save all output
671 // sections referenced by GOT relocations. Then later in the `finalize`
672 // method calculate number of "pages" required to cover all saved output
673 // section and allocate appropriate number of GOT entries.
Rafael Espindola23db6362017-05-31 19:22:01 +0000674 PageIndexMap.insert({Sym.getOutputSection(), 0});
Eugene Leviantad4439e2016-11-11 11:33:32 +0000675 return;
676 }
677 if (Sym.isTls()) {
678 // GOT entries created for MIPS TLS relocations behave like
679 // almost GOT entries from other ABIs. They go to the end
680 // of the global offset table.
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000681 Sym.GotIndex = TlsEntries.size();
682 TlsEntries.push_back(&Sym);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000683 return;
684 }
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000685 auto AddEntry = [&](Symbol &S, uint64_t A, GotEntries &Items) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000686 if (S.isInGot() && !A)
687 return;
688 size_t NewIndex = Items.size();
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000689 if (!EntryIndexMap.insert({{&S, A}, NewIndex}).second)
Eugene Leviantad4439e2016-11-11 11:33:32 +0000690 return;
691 Items.emplace_back(&S, A);
692 if (!A)
693 S.GotIndex = NewIndex;
694 };
Rui Ueyamaca05b6f2017-10-12 19:10:41 +0000695 if (Sym.IsPreemptible) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000696 // Ignore addends for preemptible symbols. They got single GOT entry anyway.
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000697 AddEntry(Sym, 0, GlobalEntries);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000698 Sym.IsInGlobalMipsGot = true;
699 } else if (Expr == R_MIPS_GOT_OFF32) {
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000700 AddEntry(Sym, Addend, LocalEntries32);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000701 Sym.Is32BitMipsGot = true;
702 } else {
703 // Hold local GOT entries accessed via a 16-bit index separately.
704 // That allows to write them in the beginning of the GOT and keep
705 // their indexes as less as possible to escape relocation's overflow.
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000706 AddEntry(Sym, Addend, LocalEntries);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000707 }
708}
709
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000710bool MipsGotSection::addDynTlsEntry(Symbol &Sym) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000711 if (Sym.GlobalDynIndex != -1U)
712 return false;
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000713 Sym.GlobalDynIndex = TlsEntries.size();
Eugene Leviantad4439e2016-11-11 11:33:32 +0000714 // Global Dynamic TLS entries take two GOT slots.
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000715 TlsEntries.push_back(nullptr);
716 TlsEntries.push_back(&Sym);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000717 return true;
718}
719
720// Reserves TLS entries for a TLS module ID and a TLS block offset.
721// In total it takes two GOT slots.
George Rimar14534eb2017-03-20 16:44:28 +0000722bool MipsGotSection::addTlsIndex() {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000723 if (TlsIndexOff != uint32_t(-1))
724 return false;
George Rimar14534eb2017-03-20 16:44:28 +0000725 TlsIndexOff = TlsEntries.size() * Config->Wordsize;
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000726 TlsEntries.push_back(nullptr);
727 TlsEntries.push_back(nullptr);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000728 return true;
729}
730
Simon Atanasyan9fae3b82016-11-29 10:23:56 +0000731static uint64_t getMipsPageAddr(uint64_t Addr) {
732 return (Addr + 0x8000) & ~0xffff;
733}
734
735static uint64_t getMipsPageCount(uint64_t Size) {
736 return (Size + 0xfffe) / 0xffff + 1;
737}
738
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000739uint64_t MipsGotSection::getPageEntryOffset(const Symbol &B,
George Rimar14534eb2017-03-20 16:44:28 +0000740 int64_t Addend) const {
Rafael Espindola0dc25102017-05-31 19:26:37 +0000741 const OutputSection *OutSec = B.getOutputSection();
George Rimar14534eb2017-03-20 16:44:28 +0000742 uint64_t SecAddr = getMipsPageAddr(OutSec->Addr);
743 uint64_t SymAddr = getMipsPageAddr(B.getVA(Addend));
744 uint64_t Index = PageIndexMap.lookup(OutSec) + (SymAddr - SecAddr) / 0xffff;
Simon Atanasyan9fae3b82016-11-29 10:23:56 +0000745 assert(Index < PageEntriesNum);
George Rimar14534eb2017-03-20 16:44:28 +0000746 return (HeaderEntriesNum + Index) * Config->Wordsize;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000747}
748
Rui Ueyama48882242017-11-04 00:31:04 +0000749uint64_t MipsGotSection::getSymEntryOffset(const Symbol &B,
750 int64_t Addend) const {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000751 // Calculate offset of the GOT entries block: TLS, global, local.
George Rimar14534eb2017-03-20 16:44:28 +0000752 uint64_t Index = HeaderEntriesNum + PageEntriesNum;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000753 if (B.isTls())
Simon Atanasyana0efc422016-11-29 10:23:50 +0000754 Index += LocalEntries.size() + LocalEntries32.size() + GlobalEntries.size();
Eugene Leviantad4439e2016-11-11 11:33:32 +0000755 else if (B.IsInGlobalMipsGot)
Simon Atanasyana0efc422016-11-29 10:23:50 +0000756 Index += LocalEntries.size() + LocalEntries32.size();
Eugene Leviantad4439e2016-11-11 11:33:32 +0000757 else if (B.Is32BitMipsGot)
Simon Atanasyana0efc422016-11-29 10:23:50 +0000758 Index += LocalEntries.size();
759 // Calculate offset of the GOT entry in the block.
Eugene Leviantad4439e2016-11-11 11:33:32 +0000760 if (B.isInGot())
Simon Atanasyana0efc422016-11-29 10:23:50 +0000761 Index += B.GotIndex;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000762 else {
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000763 auto It = EntryIndexMap.find({&B, Addend});
764 assert(It != EntryIndexMap.end());
Simon Atanasyana0efc422016-11-29 10:23:50 +0000765 Index += It->second;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000766 }
George Rimar14534eb2017-03-20 16:44:28 +0000767 return Index * Config->Wordsize;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000768}
769
George Rimar14534eb2017-03-20 16:44:28 +0000770uint64_t MipsGotSection::getTlsOffset() const {
771 return (getLocalEntriesNum() + GlobalEntries.size()) * Config->Wordsize;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000772}
773
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000774uint64_t MipsGotSection::getGlobalDynOffset(const Symbol &B) const {
George Rimar14534eb2017-03-20 16:44:28 +0000775 return B.GlobalDynIndex * Config->Wordsize;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000776}
777
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000778const Symbol *MipsGotSection::getFirstGlobalEntry() const {
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000779 return GlobalEntries.empty() ? nullptr : GlobalEntries.front().first;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000780}
781
George Rimar14534eb2017-03-20 16:44:28 +0000782unsigned MipsGotSection::getLocalEntriesNum() const {
Simon Atanasyana0efc422016-11-29 10:23:50 +0000783 return HeaderEntriesNum + PageEntriesNum + LocalEntries.size() +
784 LocalEntries32.size();
Eugene Leviantad4439e2016-11-11 11:33:32 +0000785}
786
George Rimar67c60722017-07-18 11:55:35 +0000787void MipsGotSection::finalizeContents() { updateAllocSize(); }
Peter Smith1ec42d92017-03-08 14:06:24 +0000788
Peter Collingbourne5c54f152017-10-27 17:49:40 +0000789bool MipsGotSection::updateAllocSize() {
Simon Atanasyana0efc422016-11-29 10:23:50 +0000790 PageEntriesNum = 0;
Rafael Espindola24e6f362017-02-24 15:07:30 +0000791 for (std::pair<const OutputSection *, size_t> &P : PageIndexMap) {
Simon Atanasyan9fae3b82016-11-29 10:23:56 +0000792 // For each output section referenced by GOT page relocations calculate
793 // and save into PageIndexMap an upper bound of MIPS GOT entries required
794 // to store page addresses of local symbols. We assume the worst case -
795 // each 64kb page of the output section has at least one GOT relocation
796 // against it. And take in account the case when the section intersects
797 // page boundaries.
798 P.second = PageEntriesNum;
799 PageEntriesNum += getMipsPageCount(P.first->Size);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000800 }
Simon Atanasyan9fae3b82016-11-29 10:23:56 +0000801 Size = (getLocalEntriesNum() + GlobalEntries.size() + TlsEntries.size()) *
George Rimar14534eb2017-03-20 16:44:28 +0000802 Config->Wordsize;
Peter Collingbourne5c54f152017-10-27 17:49:40 +0000803 return false;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000804}
805
George Rimar14534eb2017-03-20 16:44:28 +0000806bool MipsGotSection::empty() const {
George Rimar11992c862016-11-25 08:05:41 +0000807 // We add the .got section to the result for dynamic MIPS target because
808 // its address and properties are mentioned in the .dynamic section.
809 return Config->Relocatable;
810}
811
George Rimar67c60722017-07-18 11:55:35 +0000812uint64_t MipsGotSection::getGp() const { return ElfSym::MipsGp->getVA(0); }
Simon Atanasyan8469b882016-11-23 22:22:16 +0000813
George Rimar14534eb2017-03-20 16:44:28 +0000814void MipsGotSection::writeTo(uint8_t *Buf) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000815 // Set the MSB of the second GOT slot. This is not required by any
816 // MIPS ABI documentation, though.
817 //
818 // There is a comment in glibc saying that "The MSB of got[1] of a
819 // gnu object is set to identify gnu objects," and in GNU gold it
820 // says "the second entry will be used by some runtime loaders".
821 // But how this field is being used is unclear.
822 //
823 // We are not really willing to mimic other linkers behaviors
824 // without understanding why they do that, but because all files
825 // generated by GNU tools have this special GOT value, and because
826 // we've been doing this for years, it is probably a safe bet to
827 // keep doing this for now. We really need to revisit this to see
828 // if we had to do this.
George Rimar14534eb2017-03-20 16:44:28 +0000829 writeUint(Buf + Config->Wordsize, (uint64_t)1 << (Config->Wordsize * 8 - 1));
830 Buf += HeaderEntriesNum * Config->Wordsize;
Eugene Leviantad4439e2016-11-11 11:33:32 +0000831 // Write 'page address' entries to the local part of the GOT.
Rafael Espindola24e6f362017-02-24 15:07:30 +0000832 for (std::pair<const OutputSection *, size_t> &L : PageIndexMap) {
Simon Atanasyan9fae3b82016-11-29 10:23:56 +0000833 size_t PageCount = getMipsPageCount(L.first->Size);
George Rimar14534eb2017-03-20 16:44:28 +0000834 uint64_t FirstPageAddr = getMipsPageAddr(L.first->Addr);
Simon Atanasyan9fae3b82016-11-29 10:23:56 +0000835 for (size_t PI = 0; PI < PageCount; ++PI) {
George Rimar14534eb2017-03-20 16:44:28 +0000836 uint8_t *Entry = Buf + (L.second + PI) * Config->Wordsize;
837 writeUint(Entry, FirstPageAddr + PI * 0x10000);
Simon Atanasyan9fae3b82016-11-29 10:23:56 +0000838 }
Eugene Leviantad4439e2016-11-11 11:33:32 +0000839 }
George Rimar14534eb2017-03-20 16:44:28 +0000840 Buf += PageEntriesNum * Config->Wordsize;
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000841 auto AddEntry = [&](const GotEntry &SA) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000842 uint8_t *Entry = Buf;
George Rimar14534eb2017-03-20 16:44:28 +0000843 Buf += Config->Wordsize;
Rui Ueyama48882242017-11-04 00:31:04 +0000844 const Symbol *Sym = SA.first;
845 uint64_t VA = Sym->getVA(SA.second);
Simon Atanasyan5a4e2132017-11-08 23:34:34 +0000846 if (Sym->StOther & STO_MIPS_MICROMIPS)
847 VA |= 1;
George Rimar14534eb2017-03-20 16:44:28 +0000848 writeUint(Entry, VA);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000849 };
Simon Atanasyanb8bfec62016-11-17 21:49:14 +0000850 std::for_each(std::begin(LocalEntries), std::end(LocalEntries), AddEntry);
851 std::for_each(std::begin(LocalEntries32), std::end(LocalEntries32), AddEntry);
852 std::for_each(std::begin(GlobalEntries), std::end(GlobalEntries), AddEntry);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000853 // Initialize TLS-related GOT entries. If the entry has a corresponding
854 // dynamic relocations, leave it initialized by zero. Write down adjusted
855 // TLS symbol's values otherwise. To calculate the adjustments use offsets
856 // for thread-local storage.
857 // https://www.linux-mips.org/wiki/NPTL
Rui Ueyamad57e74b72017-03-17 23:29:01 +0000858 if (TlsIndexOff != -1U && !Config->Pic)
George Rimar14534eb2017-03-20 16:44:28 +0000859 writeUint(Buf + TlsIndexOff, 1);
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000860 for (const Symbol *B : TlsEntries) {
Rui Ueyamaca05b6f2017-10-12 19:10:41 +0000861 if (!B || B->IsPreemptible)
Eugene Leviantad4439e2016-11-11 11:33:32 +0000862 continue;
George Rimar14534eb2017-03-20 16:44:28 +0000863 uint64_t VA = B->getVA();
Eugene Leviantad4439e2016-11-11 11:33:32 +0000864 if (B->GotIndex != -1U) {
George Rimar14534eb2017-03-20 16:44:28 +0000865 uint8_t *Entry = Buf + B->GotIndex * Config->Wordsize;
866 writeUint(Entry, VA - 0x7000);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000867 }
868 if (B->GlobalDynIndex != -1U) {
George Rimar14534eb2017-03-20 16:44:28 +0000869 uint8_t *Entry = Buf + B->GlobalDynIndex * Config->Wordsize;
870 writeUint(Entry, 1);
871 Entry += Config->Wordsize;
872 writeUint(Entry, VA - 0x8000);
Eugene Leviantad4439e2016-11-11 11:33:32 +0000873 }
874 }
875}
876
George Rimar10f74fc2017-03-15 09:12:56 +0000877GotPltSection::GotPltSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +0000878 : SyntheticSection(SHF_ALLOC | SHF_WRITE, SHT_PROGBITS,
879 Target->GotPltEntrySize, ".got.plt") {}
Eugene Leviant41ca3272016-11-10 09:48:29 +0000880
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000881void GotPltSection::addEntry(Symbol &Sym) {
Rafael Espindolaf4a9d562018-04-26 16:09:30 +0000882 assert(Sym.PltIndex == Entries.size());
Eugene Leviant41ca3272016-11-10 09:48:29 +0000883 Entries.push_back(&Sym);
884}
885
George Rimar10f74fc2017-03-15 09:12:56 +0000886size_t GotPltSection::getSize() const {
Eugene Leviant41ca3272016-11-10 09:48:29 +0000887 return (Target->GotPltHeaderEntriesNum + Entries.size()) *
888 Target->GotPltEntrySize;
889}
890
George Rimar10f74fc2017-03-15 09:12:56 +0000891void GotPltSection::writeTo(uint8_t *Buf) {
Eugene Leviant41ca3272016-11-10 09:48:29 +0000892 Target->writeGotPltHeader(Buf);
893 Buf += Target->GotPltHeaderEntriesNum * Target->GotPltEntrySize;
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000894 for (const Symbol *B : Entries) {
Eugene Leviant41ca3272016-11-10 09:48:29 +0000895 Target->writeGotPlt(Buf, *B);
Rui Ueyamad57e74b72017-03-17 23:29:01 +0000896 Buf += Config->Wordsize;
Eugene Leviant41ca3272016-11-10 09:48:29 +0000897 }
898}
899
Peter Smith3d044f52018-03-19 06:52:51 +0000900bool GotPltSection::empty() const {
901 // We need to emit a GOT.PLT even if it's empty if there's a symbol that
902 // references the _GLOBAL_OFFSET_TABLE_ and the Target defines the symbol
903 // relative to the .got.plt section.
904 return Entries.empty() &&
905 !(ElfSym::GlobalOffsetTable && Target->GotBaseSymInGotPlt);
906}
907
Peter Smithbaffdb82016-12-08 12:58:55 +0000908// On ARM the IgotPltSection is part of the GotSection, on other Targets it is
909// part of the .got.plt
George Rimar10f74fc2017-03-15 09:12:56 +0000910IgotPltSection::IgotPltSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +0000911 : SyntheticSection(SHF_ALLOC | SHF_WRITE, SHT_PROGBITS,
912 Target->GotPltEntrySize,
913 Config->EMachine == EM_ARM ? ".got" : ".got.plt") {}
Peter Smithbaffdb82016-12-08 12:58:55 +0000914
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000915void IgotPltSection::addEntry(Symbol &Sym) {
Peter Smithbaffdb82016-12-08 12:58:55 +0000916 Sym.IsInIgot = true;
Rafael Espindolaf4a9d562018-04-26 16:09:30 +0000917 assert(Sym.PltIndex == Entries.size());
Peter Smithbaffdb82016-12-08 12:58:55 +0000918 Entries.push_back(&Sym);
919}
920
George Rimar10f74fc2017-03-15 09:12:56 +0000921size_t IgotPltSection::getSize() const {
Peter Smithbaffdb82016-12-08 12:58:55 +0000922 return Entries.size() * Target->GotPltEntrySize;
923}
924
George Rimar10f74fc2017-03-15 09:12:56 +0000925void IgotPltSection::writeTo(uint8_t *Buf) {
Rui Ueyamaf52496e2017-11-03 21:21:47 +0000926 for (const Symbol *B : Entries) {
Peter Smith4b360292016-12-09 09:59:54 +0000927 Target->writeIgotPlt(Buf, *B);
Rui Ueyamad57e74b72017-03-17 23:29:01 +0000928 Buf += Config->Wordsize;
Peter Smithbaffdb82016-12-08 12:58:55 +0000929 }
930}
931
George Rimar49648002017-03-15 09:32:36 +0000932StringTableSection::StringTableSection(StringRef Name, bool Dynamic)
933 : SyntheticSection(Dynamic ? (uint64_t)SHF_ALLOC : 0, SHT_STRTAB, 1, Name),
Rafael Espindola1b36eea2017-02-15 00:23:09 +0000934 Dynamic(Dynamic) {
935 // ELF string tables start with a NUL byte.
936 addString("");
937}
Eugene Leviant22eb0262016-11-14 09:16:00 +0000938
939// Adds a string to the string table. If HashIt is true we hash and check for
940// duplicates. It is optional because the name of global symbols are already
941// uniqued and hashing them again has a big cost for a small value: uniquing
942// them with some other string that happens to be the same.
George Rimar49648002017-03-15 09:32:36 +0000943unsigned StringTableSection::addString(StringRef S, bool HashIt) {
Eugene Leviant22eb0262016-11-14 09:16:00 +0000944 if (HashIt) {
945 auto R = StringMap.insert(std::make_pair(S, this->Size));
946 if (!R.second)
947 return R.first->second;
948 }
949 unsigned Ret = this->Size;
950 this->Size = this->Size + S.size() + 1;
951 Strings.push_back(S);
952 return Ret;
953}
954
George Rimar49648002017-03-15 09:32:36 +0000955void StringTableSection::writeTo(uint8_t *Buf) {
Eugene Leviant22eb0262016-11-14 09:16:00 +0000956 for (StringRef S : Strings) {
957 memcpy(Buf, S.data(), S.size());
James Hendersona5bc09a2017-08-04 09:07:55 +0000958 Buf[S.size()] = '\0';
Eugene Leviant22eb0262016-11-14 09:16:00 +0000959 Buf += S.size() + 1;
960 }
961}
962
Eugene Leviante9bab5d2016-11-21 16:59:33 +0000963// Returns the number of version definition entries. Because the first entry
964// is for the version definition itself, it is the number of versioned symbols
965// plus one. Note that we don't support multiple versions yet.
Eugene Leviant6380ce22016-11-15 12:26:55 +0000966static unsigned getVerDefNum() { return Config->VersionDefinitions.size() + 1; }
967
968template <class ELFT>
969DynamicSection<ELFT>::DynamicSection()
Rui Ueyamac49bdd62017-04-14 01:34:45 +0000970 : SyntheticSection(SHF_ALLOC | SHF_WRITE, SHT_DYNAMIC, Config->Wordsize,
Rui Ueyama9320cb02017-02-27 02:56:02 +0000971 ".dynamic") {
Eugene Leviant6380ce22016-11-15 12:26:55 +0000972 this->Entsize = ELFT::Is64Bits ? 16 : 8;
Rui Ueyama27876642017-03-01 04:04:23 +0000973
Petr Hosekffa786f2017-05-26 19:12:38 +0000974 // .dynamic section is not writable on MIPS and on Fuchsia OS
975 // which passes -z rodynamic.
Eugene Leviant6380ce22016-11-15 12:26:55 +0000976 // See "Special Section" in Chapter 4 in the following document:
977 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
Petr Hosekffa786f2017-05-26 19:12:38 +0000978 if (Config->EMachine == EM_MIPS || Config->ZRodynamic)
Eugene Leviant6380ce22016-11-15 12:26:55 +0000979 this->Flags = SHF_ALLOC;
980
Rui Ueyama22e55512017-12-15 19:39:59 +0000981 // Add strings to .dynstr early so that .dynstr's size will be
982 // fixed early.
983 for (StringRef S : Config->FilterList)
984 addInt(DT_FILTER, InX::DynStrTab->addString(S));
985 for (StringRef S : Config->AuxiliaryList)
986 addInt(DT_AUXILIARY, InX::DynStrTab->addString(S));
987
988 if (!Config->Rpath.empty())
989 addInt(Config->EnableNewDtags ? DT_RUNPATH : DT_RPATH,
990 InX::DynStrTab->addString(Config->Rpath));
991
992 for (InputFile *File : SharedFiles) {
993 SharedFile<ELFT> *F = cast<SharedFile<ELFT>>(File);
994 if (F->IsNeeded)
995 addInt(DT_NEEDED, InX::DynStrTab->addString(F->SoName));
996 }
997 if (!Config->SoName.empty())
998 addInt(DT_SONAME, InX::DynStrTab->addString(Config->SoName));
Eugene Leviant6380ce22016-11-15 12:26:55 +0000999}
1000
Rui Ueyama15475e92017-11-24 02:15:51 +00001001template <class ELFT>
1002void DynamicSection<ELFT>::add(int32_t Tag, std::function<uint64_t()> Fn) {
1003 Entries.push_back({Tag, Fn});
1004}
1005
1006template <class ELFT>
1007void DynamicSection<ELFT>::addInt(int32_t Tag, uint64_t Val) {
1008 Entries.push_back({Tag, [=] { return Val; }});
1009}
1010
1011template <class ELFT>
1012void DynamicSection<ELFT>::addInSec(int32_t Tag, InputSection *Sec) {
Rafael Espindola4f058a22018-03-24 00:35:11 +00001013 Entries.push_back({Tag, [=] { return Sec->getVA(0); }});
Rui Ueyama15475e92017-11-24 02:15:51 +00001014}
1015
1016template <class ELFT>
Simon Atanasyan1ba19422018-04-13 08:15:01 +00001017void DynamicSection<ELFT>::addInSecRelative(int32_t Tag, InputSection *Sec) {
1018 size_t TagOffset = Entries.size() * Entsize;
1019 Entries.push_back(
1020 {Tag, [=] { return Sec->getVA(0) - (getVA() + TagOffset); }});
1021}
1022
1023template <class ELFT>
Rui Ueyama15475e92017-11-24 02:15:51 +00001024void DynamicSection<ELFT>::addOutSec(int32_t Tag, OutputSection *Sec) {
1025 Entries.push_back({Tag, [=] { return Sec->Addr; }});
1026}
1027
1028template <class ELFT>
1029void DynamicSection<ELFT>::addSize(int32_t Tag, OutputSection *Sec) {
1030 Entries.push_back({Tag, [=] { return Sec->Size; }});
1031}
1032
1033template <class ELFT>
1034void DynamicSection<ELFT>::addSym(int32_t Tag, Symbol *Sym) {
1035 Entries.push_back({Tag, [=] { return Sym->getVA(); }});
1036}
1037
Rui Ueyama22e55512017-12-15 19:39:59 +00001038// Add remaining entries to complete .dynamic contents.
1039template <class ELFT> void DynamicSection<ELFT>::finalizeContents() {
1040 if (this->Size)
1041 return; // Already finalized.
Eugene Leviant6380ce22016-11-15 12:26:55 +00001042
1043 // Set DT_FLAGS and DT_FLAGS_1.
1044 uint32_t DtFlags = 0;
1045 uint32_t DtFlags1 = 0;
1046 if (Config->Bsymbolic)
1047 DtFlags |= DF_SYMBOLIC;
1048 if (Config->ZNodelete)
1049 DtFlags1 |= DF_1_NODELETE;
Davide Italiano76907212017-03-23 00:54:16 +00001050 if (Config->ZNodlopen)
1051 DtFlags1 |= DF_1_NOOPEN;
Eugene Leviant6380ce22016-11-15 12:26:55 +00001052 if (Config->ZNow) {
1053 DtFlags |= DF_BIND_NOW;
1054 DtFlags1 |= DF_1_NOW;
1055 }
1056 if (Config->ZOrigin) {
1057 DtFlags |= DF_ORIGIN;
1058 DtFlags1 |= DF_1_ORIGIN;
1059 }
Rui Ueyama7c18abf2018-03-01 22:56:52 +00001060 if (!Config->ZText)
1061 DtFlags |= DF_TEXTREL;
Eugene Leviant6380ce22016-11-15 12:26:55 +00001062
1063 if (DtFlags)
Rui Ueyama15475e92017-11-24 02:15:51 +00001064 addInt(DT_FLAGS, DtFlags);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001065 if (DtFlags1)
Rui Ueyama15475e92017-11-24 02:15:51 +00001066 addInt(DT_FLAGS_1, DtFlags1);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001067
Petr Hosekffa786f2017-05-26 19:12:38 +00001068 // DT_DEBUG is a pointer to debug informaion used by debuggers at runtime. We
1069 // need it for each process, so we don't write it for DSOs. The loader writes
1070 // the pointer into this entry.
1071 //
1072 // DT_DEBUG is the only .dynamic entry that needs to be written to. Some
1073 // systems (currently only Fuchsia OS) provide other means to give the
1074 // debugger this information. Such systems may choose make .dynamic read-only.
1075 // If the target is such a system (used -z rodynamic) don't write DT_DEBUG.
1076 if (!Config->Shared && !Config->Relocatable && !Config->ZRodynamic)
Rui Ueyama15475e92017-11-24 02:15:51 +00001077 addInt(DT_DEBUG, 0);
George Rimarb4081bb2017-05-12 08:04:58 +00001078
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00001079 this->Link = InX::DynStrTab->getParent()->SectionIndex;
George Rimar32085882017-12-30 08:40:45 +00001080 if (!InX::RelaDyn->empty()) {
Rafael Espindola58946cd2017-12-10 19:44:42 +00001081 addInSec(InX::RelaDyn->DynamicTag, InX::RelaDyn);
1082 addSize(InX::RelaDyn->SizeDynamicTag, InX::RelaDyn->getParent());
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001083
1084 bool IsRela = Config->IsRela;
Rui Ueyama15475e92017-11-24 02:15:51 +00001085 addInt(IsRela ? DT_RELAENT : DT_RELENT,
1086 IsRela ? sizeof(Elf_Rela) : sizeof(Elf_Rel));
Eugene Leviant6380ce22016-11-15 12:26:55 +00001087
1088 // MIPS dynamic loader does not support RELCOUNT tag.
1089 // The problem is in the tight relation between dynamic
1090 // relocations and GOT. So do not emit this tag on MIPS.
1091 if (Config->EMachine != EM_MIPS) {
Rafael Espindola58946cd2017-12-10 19:44:42 +00001092 size_t NumRelativeRels = InX::RelaDyn->getRelativeRelocCount();
Eugene Leviant6380ce22016-11-15 12:26:55 +00001093 if (Config->ZCombreloc && NumRelativeRels)
Rui Ueyama15475e92017-11-24 02:15:51 +00001094 addInt(IsRela ? DT_RELACOUNT : DT_RELCOUNT, NumRelativeRels);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001095 }
1096 }
George Rimaredb61162017-12-31 07:42:54 +00001097 // .rel[a].plt section usually consists of two parts, containing plt and
1098 // iplt relocations. It is possible to have only iplt relocations in the
1099 // output. In that case RelaPlt is empty and have zero offset, the same offset
1100 // as RelaIplt have. And we still want to emit proper dynamic tags for that
1101 // case, so here we always use RelaPlt as marker for the begining of
1102 // .rel[a].plt section.
1103 if (InX::RelaPlt->getParent()->Live) {
Rafael Espindola87e0dea2017-12-10 20:07:03 +00001104 addInSec(DT_JMPREL, InX::RelaPlt);
1105 addSize(DT_PLTRELSZ, InX::RelaPlt->getParent());
Rui Ueyama0cc14832017-06-28 17:05:39 +00001106 switch (Config->EMachine) {
1107 case EM_MIPS:
Rui Ueyama15475e92017-11-24 02:15:51 +00001108 addInSec(DT_MIPS_PLTGOT, InX::GotPlt);
Rui Ueyama0cc14832017-06-28 17:05:39 +00001109 break;
1110 case EM_SPARCV9:
Rui Ueyama15475e92017-11-24 02:15:51 +00001111 addInSec(DT_PLTGOT, InX::Plt);
Rui Ueyama0cc14832017-06-28 17:05:39 +00001112 break;
1113 default:
Rui Ueyama15475e92017-11-24 02:15:51 +00001114 addInSec(DT_PLTGOT, InX::GotPlt);
Rui Ueyama0cc14832017-06-28 17:05:39 +00001115 break;
1116 }
Rui Ueyama15475e92017-11-24 02:15:51 +00001117 addInt(DT_PLTREL, Config->IsRela ? DT_RELA : DT_REL);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001118 }
1119
Rui Ueyama15475e92017-11-24 02:15:51 +00001120 addInSec(DT_SYMTAB, InX::DynSymTab);
1121 addInt(DT_SYMENT, sizeof(Elf_Sym));
1122 addInSec(DT_STRTAB, InX::DynStrTab);
1123 addInt(DT_STRSZ, InX::DynStrTab->getSize());
George Rimar0a7412f2017-03-09 08:48:34 +00001124 if (!Config->ZText)
Rui Ueyama15475e92017-11-24 02:15:51 +00001125 addInt(DT_TEXTREL, 0);
George Rimar69b17c32017-05-16 10:04:42 +00001126 if (InX::GnuHashTab)
Rui Ueyama15475e92017-11-24 02:15:51 +00001127 addInSec(DT_GNU_HASH, InX::GnuHashTab);
George Rimaraaf54712017-09-27 09:14:59 +00001128 if (InX::HashTab)
Rui Ueyama15475e92017-11-24 02:15:51 +00001129 addInSec(DT_HASH, InX::HashTab);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001130
Rui Ueyama9d1bacb12017-02-27 02:31:26 +00001131 if (Out::PreinitArray) {
Rui Ueyama15475e92017-11-24 02:15:51 +00001132 addOutSec(DT_PREINIT_ARRAY, Out::PreinitArray);
1133 addSize(DT_PREINIT_ARRAYSZ, Out::PreinitArray);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001134 }
Rui Ueyama9d1bacb12017-02-27 02:31:26 +00001135 if (Out::InitArray) {
Rui Ueyama15475e92017-11-24 02:15:51 +00001136 addOutSec(DT_INIT_ARRAY, Out::InitArray);
1137 addSize(DT_INIT_ARRAYSZ, Out::InitArray);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001138 }
Rui Ueyama9d1bacb12017-02-27 02:31:26 +00001139 if (Out::FiniArray) {
Rui Ueyama15475e92017-11-24 02:15:51 +00001140 addOutSec(DT_FINI_ARRAY, Out::FiniArray);
1141 addSize(DT_FINI_ARRAYSZ, Out::FiniArray);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001142 }
1143
Rui Ueyamaf52496e2017-11-03 21:21:47 +00001144 if (Symbol *B = Symtab->find(Config->Init))
Peter Collingbourneb472aa02017-11-06 04:39:07 +00001145 if (B->isDefined())
Rui Ueyama15475e92017-11-24 02:15:51 +00001146 addSym(DT_INIT, B);
Rui Ueyamaf52496e2017-11-03 21:21:47 +00001147 if (Symbol *B = Symtab->find(Config->Fini))
Peter Collingbourneb472aa02017-11-06 04:39:07 +00001148 if (B->isDefined())
Rui Ueyama15475e92017-11-24 02:15:51 +00001149 addSym(DT_FINI, B);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001150
Eugene Leviante9bab5d2016-11-21 16:59:33 +00001151 bool HasVerNeed = In<ELFT>::VerNeed->getNeedNum() != 0;
1152 if (HasVerNeed || In<ELFT>::VerDef)
Rui Ueyama15475e92017-11-24 02:15:51 +00001153 addInSec(DT_VERSYM, In<ELFT>::VerSym);
Eugene Leviante9bab5d2016-11-21 16:59:33 +00001154 if (In<ELFT>::VerDef) {
Rui Ueyama15475e92017-11-24 02:15:51 +00001155 addInSec(DT_VERDEF, In<ELFT>::VerDef);
1156 addInt(DT_VERDEFNUM, getVerDefNum());
Eugene Leviant6380ce22016-11-15 12:26:55 +00001157 }
1158 if (HasVerNeed) {
Rui Ueyama15475e92017-11-24 02:15:51 +00001159 addInSec(DT_VERNEED, In<ELFT>::VerNeed);
1160 addInt(DT_VERNEEDNUM, In<ELFT>::VerNeed->getNeedNum());
Eugene Leviant6380ce22016-11-15 12:26:55 +00001161 }
1162
1163 if (Config->EMachine == EM_MIPS) {
Rui Ueyama15475e92017-11-24 02:15:51 +00001164 addInt(DT_MIPS_RLD_VERSION, 1);
1165 addInt(DT_MIPS_FLAGS, RHF_NOTPOT);
1166 addInt(DT_MIPS_BASE_ADDRESS, Target->getImageBase());
1167 addInt(DT_MIPS_SYMTABNO, InX::DynSymTab->getNumSymbols());
James Hendersonf70c5be2017-11-22 12:04:21 +00001168
Rui Ueyama15475e92017-11-24 02:15:51 +00001169 add(DT_MIPS_LOCAL_GOTNO, [] { return InX::MipsGot->getLocalEntriesNum(); });
James Hendersonf70c5be2017-11-22 12:04:21 +00001170
Rui Ueyamaf52496e2017-11-03 21:21:47 +00001171 if (const Symbol *B = InX::MipsGot->getFirstGlobalEntry())
Rui Ueyama15475e92017-11-24 02:15:51 +00001172 addInt(DT_MIPS_GOTSYM, B->DynsymIndex);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001173 else
Rui Ueyama15475e92017-11-24 02:15:51 +00001174 addInt(DT_MIPS_GOTSYM, InX::DynSymTab->getNumSymbols());
1175 addInSec(DT_PLTGOT, InX::MipsGot);
Simon Atanasyan1ba19422018-04-13 08:15:01 +00001176 if (InX::MipsRldMap) {
1177 if (!Config->Pie)
1178 addInSec(DT_MIPS_RLD_MAP, InX::MipsRldMap);
1179 // Store the offset to the .rld_map section
1180 // relative to the address of the tag.
1181 addInSecRelative(DT_MIPS_RLD_MAP_REL, InX::MipsRldMap);
1182 }
Eugene Leviant6380ce22016-11-15 12:26:55 +00001183 }
1184
Rui Ueyama15475e92017-11-24 02:15:51 +00001185 addInt(DT_NULL, 0);
Eugene Leviant6380ce22016-11-15 12:26:55 +00001186
George Rimar8f3a6c82017-10-06 10:06:13 +00001187 getParent()->Link = this->Link;
1188 this->Size = Entries.size() * this->Entsize;
Eugene Leviant6380ce22016-11-15 12:26:55 +00001189}
1190
1191template <class ELFT> void DynamicSection<ELFT>::writeTo(uint8_t *Buf) {
1192 auto *P = reinterpret_cast<Elf_Dyn *>(Buf);
1193
Rui Ueyama15475e92017-11-24 02:15:51 +00001194 for (std::pair<int32_t, std::function<uint64_t()>> &KV : Entries) {
1195 P->d_tag = KV.first;
1196 P->d_un.d_val = KV.second();
Eugene Leviant6380ce22016-11-15 12:26:55 +00001197 ++P;
1198 }
1199}
1200
George Rimar97def8c2017-03-17 12:07:44 +00001201uint64_t DynamicReloc::getOffset() const {
Rafael Espindola4f058a22018-03-24 00:35:11 +00001202 return InputSec->getVA(OffsetInSec);
Eugene Levianta96d9022016-11-16 10:02:27 +00001203}
1204
Alexander Richardson048e2502018-02-19 11:00:15 +00001205int64_t DynamicReloc::computeAddend() const {
Eugene Levianta96d9022016-11-16 10:02:27 +00001206 if (UseSymVA)
George Rimarf64618a2017-03-17 11:56:54 +00001207 return Sym->getVA(Addend);
Eugene Levianta96d9022016-11-16 10:02:27 +00001208 return Addend;
1209}
1210
George Rimar97def8c2017-03-17 12:07:44 +00001211uint32_t DynamicReloc::getSymIndex() const {
Eugene Levianta96d9022016-11-16 10:02:27 +00001212 if (Sym && !UseSymVA)
1213 return Sym->DynsymIndex;
1214 return 0;
1215}
1216
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001217RelocationBaseSection::RelocationBaseSection(StringRef Name, uint32_t Type,
1218 int32_t DynamicTag,
1219 int32_t SizeDynamicTag)
1220 : SyntheticSection(SHF_ALLOC, Type, Config->Wordsize, Name),
1221 DynamicTag(DynamicTag), SizeDynamicTag(SizeDynamicTag) {}
Eugene Levianta96d9022016-11-16 10:02:27 +00001222
Rafael Espindolad49866e2018-02-13 16:06:11 +00001223void RelocationBaseSection::addReloc(RelType DynType, InputSectionBase *IS,
Rafael Espindola35cf8bb2018-02-13 16:03:52 +00001224 uint64_t OffsetInSec, Symbol *Sym) {
1225 addReloc({DynType, IS, OffsetInSec, false, Sym, 0});
1226}
1227
Rafael Espindolad49866e2018-02-13 16:06:11 +00001228void RelocationBaseSection::addReloc(RelType DynType,
Rafael Espindola73584cb2018-01-05 20:08:38 +00001229 InputSectionBase *InputSec,
Rafael Espindolab9603252018-02-16 16:53:04 +00001230 uint64_t OffsetInSec, Symbol *Sym,
1231 int64_t Addend, RelExpr Expr,
Rafael Espindola73584cb2018-01-05 20:08:38 +00001232 RelType Type) {
Alexander Richardsoncfb60932018-02-16 10:01:17 +00001233 // Write the addends to the relocated address if required. We skip
1234 // it if the written value would be zero.
Rafael Espindolab9603252018-02-16 16:53:04 +00001235 if (Config->WriteAddends && (Expr != R_ADDEND || Addend != 0))
Rafael Espindola73584cb2018-01-05 20:08:38 +00001236 InputSec->Relocations.push_back({Expr, Type, OffsetInSec, Addend, Sym});
Rafael Espindolab9603252018-02-16 16:53:04 +00001237 addReloc({DynType, InputSec, OffsetInSec, Expr != R_ADDEND, Sym, Addend});
Rafael Espindola73584cb2018-01-05 20:08:38 +00001238}
1239
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001240void RelocationBaseSection::addReloc(const DynamicReloc &Reloc) {
Eugene Levianta96d9022016-11-16 10:02:27 +00001241 if (Reloc.Type == Target->RelativeRel)
1242 ++NumRelativeRelocs;
1243 Relocs.push_back(Reloc);
1244}
1245
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001246void RelocationBaseSection::finalizeContents() {
1247 // If all relocations are R_*_RELATIVE they don't refer to any
1248 // dynamic symbol and we don't need a dynamic symbol table. If that
1249 // is the case, just use 0 as the link.
Rafael Espindola6d907105c2017-12-10 19:28:32 +00001250 Link = InX::DynSymTab ? InX::DynSymTab->getParent()->SectionIndex : 0;
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001251
1252 // Set required output section properties.
Rafael Espindola6d907105c2017-12-10 19:28:32 +00001253 getParent()->Link = Link;
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001254}
1255
1256template <class ELFT>
1257static void encodeDynamicReloc(typename ELFT::Rela *P,
1258 const DynamicReloc &Rel) {
1259 if (Config->IsRela)
Alexander Richardson048e2502018-02-19 11:00:15 +00001260 P->r_addend = Rel.computeAddend();
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001261 P->r_offset = Rel.getOffset();
1262 if (Config->EMachine == EM_MIPS && Rel.getInputSec() == InX::MipsGot)
1263 // The MIPS GOT section contains dynamic relocations that correspond to TLS
1264 // entries. These entries are placed after the global and local sections of
1265 // the GOT. At the point when we create these relocations, the size of the
1266 // global and local sections is unknown, so the offset that we store in the
1267 // TLS entry's DynamicReloc is relative to the start of the TLS section of
1268 // the GOT, rather than being relative to the start of the GOT. This line of
1269 // code adds the size of the global and local sections to the virtual
1270 // address computed by getOffset() in order to adjust it into the TLS
1271 // section.
1272 P->r_offset += InX::MipsGot->getTlsOffset();
1273 P->setSymbolAndType(Rel.getSymIndex(), Rel.Type, Config->IsMips64EL);
1274}
1275
1276template <class ELFT>
1277RelocationSection<ELFT>::RelocationSection(StringRef Name, bool Sort)
1278 : RelocationBaseSection(Name, Config->IsRela ? SHT_RELA : SHT_REL,
1279 Config->IsRela ? DT_RELA : DT_REL,
1280 Config->IsRela ? DT_RELASZ : DT_RELSZ),
1281 Sort(Sort) {
1282 this->Entsize = Config->IsRela ? sizeof(Elf_Rela) : sizeof(Elf_Rel);
1283}
1284
Rafael Espindola7ce2b4c2018-02-01 03:17:12 +00001285static bool compRelocations(const DynamicReloc &A, const DynamicReloc &B) {
1286 bool AIsRel = A.Type == Target->RelativeRel;
1287 bool BIsRel = B.Type == Target->RelativeRel;
Eugene Levianta96d9022016-11-16 10:02:27 +00001288 if (AIsRel != BIsRel)
1289 return AIsRel;
Rafael Espindola7ce2b4c2018-02-01 03:17:12 +00001290 return A.getSymIndex() < B.getSymIndex();
Eugene Levianta96d9022016-11-16 10:02:27 +00001291}
1292
1293template <class ELFT> void RelocationSection<ELFT>::writeTo(uint8_t *Buf) {
Rafael Espindola7ce2b4c2018-02-01 03:17:12 +00001294 if (Sort)
1295 std::stable_sort(Relocs.begin(), Relocs.end(), compRelocations);
1296
George Rimar97def8c2017-03-17 12:07:44 +00001297 for (const DynamicReloc &Rel : Relocs) {
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001298 encodeDynamicReloc<ELFT>(reinterpret_cast<Elf_Rela *>(Buf), Rel);
Rui Ueyamad57e74b72017-03-17 23:29:01 +00001299 Buf += Config->IsRela ? sizeof(Elf_Rela) : sizeof(Elf_Rel);
Eugene Levianta96d9022016-11-16 10:02:27 +00001300 }
Eugene Levianta96d9022016-11-16 10:02:27 +00001301}
1302
1303template <class ELFT> unsigned RelocationSection<ELFT>::getRelocOffset() {
1304 return this->Entsize * Relocs.size();
1305}
1306
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001307template <class ELFT>
1308AndroidPackedRelocationSection<ELFT>::AndroidPackedRelocationSection(
1309 StringRef Name)
1310 : RelocationBaseSection(
1311 Name, Config->IsRela ? SHT_ANDROID_RELA : SHT_ANDROID_REL,
1312 Config->IsRela ? DT_ANDROID_RELA : DT_ANDROID_REL,
1313 Config->IsRela ? DT_ANDROID_RELASZ : DT_ANDROID_RELSZ) {
1314 this->Entsize = 1;
1315}
Eugene Levianta96d9022016-11-16 10:02:27 +00001316
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001317template <class ELFT>
1318bool AndroidPackedRelocationSection<ELFT>::updateAllocSize() {
1319 // This function computes the contents of an Android-format packed relocation
1320 // section.
1321 //
1322 // This format compresses relocations by using relocation groups to factor out
1323 // fields that are common between relocations and storing deltas from previous
1324 // relocations in SLEB128 format (which has a short representation for small
1325 // numbers). A good example of a relocation type with common fields is
1326 // R_*_RELATIVE, which is normally used to represent function pointers in
1327 // vtables. In the REL format, each relative relocation has the same r_info
1328 // field, and is only different from other relative relocations in terms of
1329 // the r_offset field. By sorting relocations by offset, grouping them by
1330 // r_info and representing each relocation with only the delta from the
1331 // previous offset, each 8-byte relocation can be compressed to as little as 1
1332 // byte (or less with run-length encoding). This relocation packer was able to
1333 // reduce the size of the relocation section in an Android Chromium DSO from
1334 // 2,911,184 bytes to 174,693 bytes, or 6% of the original size.
1335 //
1336 // A relocation section consists of a header containing the literal bytes
1337 // 'APS2' followed by a sequence of SLEB128-encoded integers. The first two
1338 // elements are the total number of relocations in the section and an initial
1339 // r_offset value. The remaining elements define a sequence of relocation
1340 // groups. Each relocation group starts with a header consisting of the
1341 // following elements:
1342 //
1343 // - the number of relocations in the relocation group
1344 // - flags for the relocation group
1345 // - (if RELOCATION_GROUPED_BY_OFFSET_DELTA_FLAG is set) the r_offset delta
1346 // for each relocation in the group.
1347 // - (if RELOCATION_GROUPED_BY_INFO_FLAG is set) the value of the r_info
1348 // field for each relocation in the group.
1349 // - (if RELOCATION_GROUP_HAS_ADDEND_FLAG and
1350 // RELOCATION_GROUPED_BY_ADDEND_FLAG are set) the r_addend delta for
1351 // each relocation in the group.
1352 //
1353 // Following the relocation group header are descriptions of each of the
1354 // relocations in the group. They consist of the following elements:
1355 //
1356 // - (if RELOCATION_GROUPED_BY_OFFSET_DELTA_FLAG is not set) the r_offset
1357 // delta for this relocation.
1358 // - (if RELOCATION_GROUPED_BY_INFO_FLAG is not set) the value of the r_info
1359 // field for this relocation.
1360 // - (if RELOCATION_GROUP_HAS_ADDEND_FLAG is set and
1361 // RELOCATION_GROUPED_BY_ADDEND_FLAG is not set) the r_addend delta for
1362 // this relocation.
1363
1364 size_t OldSize = RelocData.size();
1365
1366 RelocData = {'A', 'P', 'S', '2'};
1367 raw_svector_ostream OS(RelocData);
Rui Ueyama04c821c2017-12-08 02:20:50 +00001368 auto Add = [&](int64_t V) { encodeSLEB128(V, OS); };
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001369
1370 // The format header includes the number of relocations and the initial
1371 // offset (we set this to zero because the first relocation group will
1372 // perform the initial adjustment).
Rui Ueyama04c821c2017-12-08 02:20:50 +00001373 Add(Relocs.size());
1374 Add(0);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001375
1376 std::vector<Elf_Rela> Relatives, NonRelatives;
1377
1378 for (const DynamicReloc &Rel : Relocs) {
1379 Elf_Rela R;
1380 encodeDynamicReloc<ELFT>(&R, Rel);
1381
1382 if (R.getType(Config->IsMips64EL) == Target->RelativeRel)
1383 Relatives.push_back(R);
1384 else
1385 NonRelatives.push_back(R);
1386 }
1387
George Rimarde83cbf2018-04-24 09:55:39 +00001388 llvm::sort(Relatives.begin(), Relatives.end(),
1389 [](const Elf_Rel &A, const Elf_Rel &B) {
1390 return A.r_offset < B.r_offset;
1391 });
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001392
1393 // Try to find groups of relative relocations which are spaced one word
1394 // apart from one another. These generally correspond to vtable entries. The
1395 // format allows these groups to be encoded using a sort of run-length
1396 // encoding, but each group will cost 7 bytes in addition to the offset from
1397 // the previous group, so it is only profitable to do this for groups of
1398 // size 8 or larger.
1399 std::vector<Elf_Rela> UngroupedRelatives;
1400 std::vector<std::vector<Elf_Rela>> RelativeGroups;
1401 for (auto I = Relatives.begin(), E = Relatives.end(); I != E;) {
1402 std::vector<Elf_Rela> Group;
1403 do {
1404 Group.push_back(*I++);
1405 } while (I != E && (I - 1)->r_offset + Config->Wordsize == I->r_offset);
1406
1407 if (Group.size() < 8)
1408 UngroupedRelatives.insert(UngroupedRelatives.end(), Group.begin(),
1409 Group.end());
1410 else
1411 RelativeGroups.emplace_back(std::move(Group));
1412 }
1413
1414 unsigned HasAddendIfRela =
1415 Config->IsRela ? RELOCATION_GROUP_HAS_ADDEND_FLAG : 0;
1416
1417 uint64_t Offset = 0;
1418 uint64_t Addend = 0;
1419
1420 // Emit the run-length encoding for the groups of adjacent relative
1421 // relocations. Each group is represented using two groups in the packed
1422 // format. The first is used to set the current offset to the start of the
1423 // group (and also encodes the first relocation), and the second encodes the
1424 // remaining relocations.
1425 for (std::vector<Elf_Rela> &G : RelativeGroups) {
1426 // The first relocation in the group.
Rui Ueyama04c821c2017-12-08 02:20:50 +00001427 Add(1);
1428 Add(RELOCATION_GROUPED_BY_OFFSET_DELTA_FLAG |
1429 RELOCATION_GROUPED_BY_INFO_FLAG | HasAddendIfRela);
1430 Add(G[0].r_offset - Offset);
1431 Add(Target->RelativeRel);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001432 if (Config->IsRela) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001433 Add(G[0].r_addend - Addend);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001434 Addend = G[0].r_addend;
1435 }
1436
1437 // The remaining relocations.
Rui Ueyama04c821c2017-12-08 02:20:50 +00001438 Add(G.size() - 1);
1439 Add(RELOCATION_GROUPED_BY_OFFSET_DELTA_FLAG |
1440 RELOCATION_GROUPED_BY_INFO_FLAG | HasAddendIfRela);
1441 Add(Config->Wordsize);
1442 Add(Target->RelativeRel);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001443 if (Config->IsRela) {
1444 for (auto I = G.begin() + 1, E = G.end(); I != E; ++I) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001445 Add(I->r_addend - Addend);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001446 Addend = I->r_addend;
1447 }
1448 }
1449
1450 Offset = G.back().r_offset;
1451 }
1452
1453 // Now the ungrouped relatives.
1454 if (!UngroupedRelatives.empty()) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001455 Add(UngroupedRelatives.size());
1456 Add(RELOCATION_GROUPED_BY_INFO_FLAG | HasAddendIfRela);
1457 Add(Target->RelativeRel);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001458 for (Elf_Rela &R : UngroupedRelatives) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001459 Add(R.r_offset - Offset);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001460 Offset = R.r_offset;
1461 if (Config->IsRela) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001462 Add(R.r_addend - Addend);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001463 Addend = R.r_addend;
1464 }
1465 }
1466 }
1467
1468 // Finally the non-relative relocations.
George Rimarde83cbf2018-04-24 09:55:39 +00001469 llvm::sort(NonRelatives.begin(), NonRelatives.end(),
1470 [](const Elf_Rela &A, const Elf_Rela &B) {
1471 return A.r_offset < B.r_offset;
1472 });
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001473 if (!NonRelatives.empty()) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001474 Add(NonRelatives.size());
1475 Add(HasAddendIfRela);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001476 for (Elf_Rela &R : NonRelatives) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001477 Add(R.r_offset - Offset);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001478 Offset = R.r_offset;
Rui Ueyama04c821c2017-12-08 02:20:50 +00001479 Add(R.r_info);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001480 if (Config->IsRela) {
Rui Ueyama04c821c2017-12-08 02:20:50 +00001481 Add(R.r_addend - Addend);
Peter Collingbourne5c54f152017-10-27 17:49:40 +00001482 Addend = R.r_addend;
1483 }
1484 }
1485 }
1486
1487 // Returns whether the section size changed. We need to keep recomputing both
1488 // section layout and the contents of this section until the size converges
1489 // because changing this section's size can affect section layout, which in
1490 // turn can affect the sizes of the LEB-encoded integers stored in this
1491 // section.
1492 return RelocData.size() != OldSize;
Eugene Levianta96d9022016-11-16 10:02:27 +00001493}
1494
George Rimarf45f6812017-05-16 08:53:30 +00001495SymbolTableBaseSection::SymbolTableBaseSection(StringTableSection &StrTabSec)
Rui Ueyamac49bdd62017-04-14 01:34:45 +00001496 : SyntheticSection(StrTabSec.isDynamic() ? (uint64_t)SHF_ALLOC : 0,
Rui Ueyama9320cb02017-02-27 02:56:02 +00001497 StrTabSec.isDynamic() ? SHT_DYNSYM : SHT_SYMTAB,
Rui Ueyamac49bdd62017-04-14 01:34:45 +00001498 Config->Wordsize,
Rui Ueyama9320cb02017-02-27 02:56:02 +00001499 StrTabSec.isDynamic() ? ".dynsym" : ".symtab"),
George Rimarf45f6812017-05-16 08:53:30 +00001500 StrTabSec(StrTabSec) {}
Eugene Leviant9230db92016-11-17 09:16:34 +00001501
1502// Orders symbols according to their positions in the GOT,
1503// in compliance with MIPS ABI rules.
1504// See "Global Offset Table" in Chapter 5 in the following document
1505// for detailed description:
1506// ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
Simon Atanasyan8c753112017-03-19 19:32:51 +00001507static bool sortMipsSymbols(const SymbolTableEntry &L,
1508 const SymbolTableEntry &R) {
Eugene Leviant9230db92016-11-17 09:16:34 +00001509 // Sort entries related to non-local preemptible symbols by GOT indexes.
1510 // All other entries go to the first part of GOT in arbitrary order.
Zachary Turnera104d552017-11-03 22:33:49 +00001511 bool LIsInLocalGot = !L.Sym->IsInGlobalMipsGot;
1512 bool RIsInLocalGot = !R.Sym->IsInGlobalMipsGot;
Eugene Leviant9230db92016-11-17 09:16:34 +00001513 if (LIsInLocalGot || RIsInLocalGot)
1514 return !RIsInLocalGot;
Zachary Turnera104d552017-11-03 22:33:49 +00001515 return L.Sym->GotIndex < R.Sym->GotIndex;
Eugene Leviant9230db92016-11-17 09:16:34 +00001516}
1517
George Rimarf45f6812017-05-16 08:53:30 +00001518void SymbolTableBaseSection::finalizeContents() {
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00001519 getParent()->Link = StrTabSec.getParent()->SectionIndex;
Eugene Leviant9230db92016-11-17 09:16:34 +00001520
George Rimar55d71782018-04-04 12:36:21 +00001521 if (this->Type != SHT_DYNSYM)
1522 return;
1523
Rui Ueyama6e967342017-02-28 03:29:12 +00001524 // If it is a .dynsym, there should be no local symbols, but we need
1525 // to do a few things for the dynamic linker.
Rui Ueyama6e967342017-02-28 03:29:12 +00001526
George Rimar55d71782018-04-04 12:36:21 +00001527 // Section's Info field has the index of the first non-local symbol.
1528 // Because the first symbol entry is a null entry, 1 is the first.
1529 getParent()->Info = 1;
Rui Ueyama6e967342017-02-28 03:29:12 +00001530
George Rimar55d71782018-04-04 12:36:21 +00001531 if (InX::GnuHashTab) {
1532 // NB: It also sorts Symbols to meet the GNU hash table requirements.
1533 InX::GnuHashTab->addSymbols(Symbols);
1534 } else if (Config->EMachine == EM_MIPS) {
1535 std::stable_sort(Symbols.begin(), Symbols.end(), sortMipsSymbols);
Peter Smith55865432017-02-20 11:12:33 +00001536 }
George Rimar55d71782018-04-04 12:36:21 +00001537
1538 size_t I = 0;
1539 for (const SymbolTableEntry &S : Symbols)
1540 S.Sym->DynsymIndex = ++I;
Peter Smith1ec42d92017-03-08 14:06:24 +00001541}
Peter Smith55865432017-02-20 11:12:33 +00001542
George Rimar0d6f30e2017-10-18 13:06:18 +00001543// The ELF spec requires that all local symbols precede global symbols, so we
1544// sort symbol entries in this function. (For .dynsym, we don't do that because
1545// symbols for dynamic linking are inherently all globals.)
George Rimarc5526192018-04-11 09:24:27 +00001546//
1547// Aside from above, we put local symbols in groups starting with the STT_FILE
1548// symbol. That is convenient for purpose of identifying where are local symbols
1549// coming from.
George Rimarf45f6812017-05-16 08:53:30 +00001550void SymbolTableBaseSection::postThunkContents() {
Peter Smith1ec42d92017-03-08 14:06:24 +00001551 if (this->Type == SHT_DYNSYM)
1552 return;
George Rimarc5526192018-04-11 09:24:27 +00001553
1554 // Move all local symbols before global symbols.
1555 auto E = std::stable_partition(
Rui Ueyama6e967342017-02-28 03:29:12 +00001556 Symbols.begin(), Symbols.end(), [](const SymbolTableEntry &S) {
Zachary Turnera104d552017-11-03 22:33:49 +00001557 return S.Sym->isLocal() || S.Sym->computeBinding() == STB_LOCAL;
Rui Ueyama6e967342017-02-28 03:29:12 +00001558 });
George Rimarc5526192018-04-11 09:24:27 +00001559 size_t NumLocals = E - Symbols.begin();
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00001560 getParent()->Info = NumLocals + 1;
George Rimarc5526192018-04-11 09:24:27 +00001561
1562 // Assign the growing unique ID for each local symbol's file.
1563 DenseMap<InputFile *, unsigned> FileIDs;
1564 for (auto I = Symbols.begin(); I != E; ++I)
1565 FileIDs.insert({I->Sym->File, FileIDs.size()});
1566
1567 // Sort the local symbols to group them by file. We do not need to care about
1568 // the STT_FILE symbols, they are already naturally placed first in each group.
1569 // That happens because STT_FILE is always the first symbol in the object and
1570 // hence precede all other local symbols we add for a file.
1571 std::stable_sort(Symbols.begin(), E,
1572 [&](const SymbolTableEntry &L, const SymbolTableEntry &R) {
1573 return FileIDs[L.Sym->File] < FileIDs[R.Sym->File];
1574 });
Eugene Leviant9230db92016-11-17 09:16:34 +00001575}
1576
Rui Ueyamaf52496e2017-11-03 21:21:47 +00001577void SymbolTableBaseSection::addSymbol(Symbol *B) {
Rui Ueyamab8dcdb52017-02-28 04:20:16 +00001578 // Adding a local symbol to a .dynsym is a bug.
1579 assert(this->Type != SHT_DYNSYM || !B->isLocal());
Eugene Leviant9230db92016-11-17 09:16:34 +00001580
Rui Ueyamab8dcdb52017-02-28 04:20:16 +00001581 bool HashIt = B->isLocal();
1582 Symbols.push_back({B, StrTabSec.addString(B->getName(), HashIt)});
George Rimar190bac52017-01-23 14:07:23 +00001583}
1584
Rui Ueyama48882242017-11-04 00:31:04 +00001585size_t SymbolTableBaseSection::getSymbolIndex(Symbol *Sym) {
George Rimar5d6efd12017-09-27 09:08:53 +00001586 // Initializes symbol lookup tables lazily. This is used only
1587 // for -r or -emit-relocs.
1588 llvm::call_once(OnceFlag, [&] {
1589 SymbolIndexMap.reserve(Symbols.size());
1590 size_t I = 0;
1591 for (const SymbolTableEntry &E : Symbols) {
Zachary Turnera104d552017-11-03 22:33:49 +00001592 if (E.Sym->Type == STT_SECTION)
1593 SectionIndexMap[E.Sym->getOutputSection()] = ++I;
George Rimar5d6efd12017-09-27 09:08:53 +00001594 else
Zachary Turnera104d552017-11-03 22:33:49 +00001595 SymbolIndexMap[E.Sym] = ++I;
George Rimar5d6efd12017-09-27 09:08:53 +00001596 }
Rafael Espindola08d6a3f2017-02-11 01:40:49 +00001597 });
George Rimar5d6efd12017-09-27 09:08:53 +00001598
1599 // Section symbols are mapped based on their output sections
1600 // to maintain their semantics.
Rui Ueyama48882242017-11-04 00:31:04 +00001601 if (Sym->Type == STT_SECTION)
1602 return SectionIndexMap.lookup(Sym->getOutputSection());
1603 return SymbolIndexMap.lookup(Sym);
George Rimar190bac52017-01-23 14:07:23 +00001604}
1605
George Rimarf45f6812017-05-16 08:53:30 +00001606template <class ELFT>
1607SymbolTableSection<ELFT>::SymbolTableSection(StringTableSection &StrTabSec)
1608 : SymbolTableBaseSection(StrTabSec) {
1609 this->Entsize = sizeof(Elf_Sym);
1610}
1611
Rui Ueyama1f032532017-02-28 01:56:36 +00001612// Write the internal symbol table contents to the output symbol table.
Eugene Leviant9230db92016-11-17 09:16:34 +00001613template <class ELFT> void SymbolTableSection<ELFT>::writeTo(uint8_t *Buf) {
Rui Ueyama1f032532017-02-28 01:56:36 +00001614 // The first entry is a null entry as per the ELF spec.
George Rimar2727ce22017-10-06 09:56:24 +00001615 memset(Buf, 0, sizeof(Elf_Sym));
Eugene Leviant9230db92016-11-17 09:16:34 +00001616 Buf += sizeof(Elf_Sym);
1617
Eugene Leviant9230db92016-11-17 09:16:34 +00001618 auto *ESym = reinterpret_cast<Elf_Sym *>(Buf);
George Rimar190bac52017-01-23 14:07:23 +00001619
Rui Ueyama1f032532017-02-28 01:56:36 +00001620 for (SymbolTableEntry &Ent : Symbols) {
Rui Ueyama48882242017-11-04 00:31:04 +00001621 Symbol *Sym = Ent.Sym;
Eugene Leviant9230db92016-11-17 09:16:34 +00001622
Rui Ueyama1b003182017-02-28 19:22:09 +00001623 // Set st_info and st_other.
George Rimar2727ce22017-10-06 09:56:24 +00001624 ESym->st_other = 0;
Rui Ueyama48882242017-11-04 00:31:04 +00001625 if (Sym->isLocal()) {
1626 ESym->setBindingAndType(STB_LOCAL, Sym->Type);
Rui Ueyama1f032532017-02-28 01:56:36 +00001627 } else {
Rui Ueyama48882242017-11-04 00:31:04 +00001628 ESym->setBindingAndType(Sym->computeBinding(), Sym->Type);
1629 ESym->setVisibility(Sym->Visibility);
Rui Ueyama1f032532017-02-28 01:56:36 +00001630 }
1631
1632 ESym->st_name = Ent.StrTabOffset;
Eugene Leviant9230db92016-11-17 09:16:34 +00001633
Rui Ueyama1b003182017-02-28 19:22:09 +00001634 // Set a section index.
Peter Collingbourne6c55a702017-11-06 04:33:58 +00001635 BssSection *CommonSec = nullptr;
1636 if (!Config->DefineCommon)
Peter Collingbournee9a9e0a2017-11-06 04:35:31 +00001637 if (auto *D = dyn_cast<Defined>(Sym))
Peter Collingbourne6c55a702017-11-06 04:33:58 +00001638 CommonSec = dyn_cast_or_null<BssSection>(D->Section);
1639 if (CommonSec)
1640 ESym->st_shndx = SHN_COMMON;
Rafael Espindolaab0cce52018-04-26 17:58:58 +00001641 else if (Sym->NeedsPltAddr)
1642 ESym->st_shndx = SHN_UNDEF;
Peter Collingbourne6c55a702017-11-06 04:33:58 +00001643 else if (const OutputSection *OutSec = Sym->getOutputSection())
Eugene Leviant9230db92016-11-17 09:16:34 +00001644 ESym->st_shndx = OutSec->SectionIndex;
Peter Collingbournee9a9e0a2017-11-06 04:35:31 +00001645 else if (isa<Defined>(Sym))
Eugene Leviant9230db92016-11-17 09:16:34 +00001646 ESym->st_shndx = SHN_ABS;
George Rimar2727ce22017-10-06 09:56:24 +00001647 else
1648 ESym->st_shndx = SHN_UNDEF;
Rui Ueyama1b003182017-02-28 19:22:09 +00001649
George Rimardbe843d2017-06-28 09:51:33 +00001650 // Copy symbol size if it is a defined symbol. st_size is not significant
1651 // for undefined symbols, so whether copying it or not is up to us if that's
1652 // the case. We'll leave it as zero because by not setting a value, we can
1653 // get the exact same outputs for two sets of input files that differ only
1654 // in undefined symbol size in DSOs.
George Rimar2727ce22017-10-06 09:56:24 +00001655 if (ESym->st_shndx == SHN_UNDEF)
1656 ESym->st_size = 0;
1657 else
Rui Ueyama48882242017-11-04 00:31:04 +00001658 ESym->st_size = Sym->getSize();
George Rimardbe843d2017-06-28 09:51:33 +00001659
Rui Ueyama1b003182017-02-28 19:22:09 +00001660 // st_value is usually an address of a symbol, but that has a
1661 // special meaining for uninstantiated common symbols (this can
1662 // occur if -r is given).
Peter Collingbourne6c55a702017-11-06 04:33:58 +00001663 if (CommonSec)
1664 ESym->st_value = CommonSec->Alignment;
Rui Ueyama1b003182017-02-28 19:22:09 +00001665 else
Rui Ueyama48882242017-11-04 00:31:04 +00001666 ESym->st_value = Sym->getVA();
Rui Ueyama1b003182017-02-28 19:22:09 +00001667
Rui Ueyama1f032532017-02-28 01:56:36 +00001668 ++ESym;
1669 }
Eugene Leviant9230db92016-11-17 09:16:34 +00001670
Rui Ueyama1f032532017-02-28 01:56:36 +00001671 // On MIPS we need to mark symbol which has a PLT entry and requires
1672 // pointer equality by STO_MIPS_PLT flag. That is necessary to help
1673 // dynamic linker distinguish such symbols and MIPS lazy-binding stubs.
1674 // https://sourceware.org/ml/binutils/2008-07/txt00000.txt
1675 if (Config->EMachine == EM_MIPS) {
1676 auto *ESym = reinterpret_cast<Elf_Sym *>(Buf);
1677
1678 for (SymbolTableEntry &Ent : Symbols) {
Rui Ueyama48882242017-11-04 00:31:04 +00001679 Symbol *Sym = Ent.Sym;
1680 if (Sym->isInPlt() && Sym->NeedsPltAddr)
Eugene Leviant9230db92016-11-17 09:16:34 +00001681 ESym->st_other |= STO_MIPS_PLT;
Simon Atanasyancfa8aa7e2017-11-13 22:40:36 +00001682 if (isMicroMips()) {
1683 // Set STO_MIPS_MICROMIPS flag and less-significant bit for
Simon Atanasyan86a12192018-05-04 20:48:47 +00001684 // a defined microMIPS symbol and symbol should point to its
1685 // PLT entry (in case of microMIPS, PLT entries always contain
1686 // microMIPS code).
1687 if (Sym->isDefined() &&
1688 ((Sym->StOther & STO_MIPS_MICROMIPS) || Sym->NeedsPltAddr)) {
Simon Atanasyancfa8aa7e2017-11-13 22:40:36 +00001689 if (StrTabSec.isDynamic())
1690 ESym->st_value |= 1;
1691 ESym->st_other |= STO_MIPS_MICROMIPS;
1692 }
1693 }
Rui Ueyama1f032532017-02-28 01:56:36 +00001694 if (Config->Relocatable)
Peter Collingbournee9a9e0a2017-11-06 04:35:31 +00001695 if (auto *D = dyn_cast<Defined>(Sym))
Rui Ueyama7957b082017-11-07 00:04:22 +00001696 if (isMipsPIC<ELFT>(D))
Rui Ueyama1f032532017-02-28 01:56:36 +00001697 ESym->st_other |= STO_MIPS_PIC;
1698 ++ESym;
Eugene Leviant9230db92016-11-17 09:16:34 +00001699 }
Eugene Leviant9230db92016-11-17 09:16:34 +00001700 }
1701}
1702
Rui Ueyamae4120632017-02-28 22:05:13 +00001703// .hash and .gnu.hash sections contain on-disk hash tables that map
1704// symbol names to their dynamic symbol table indices. Their purpose
1705// is to help the dynamic linker resolve symbols quickly. If ELF files
1706// don't have them, the dynamic linker has to do linear search on all
1707// dynamic symbols, which makes programs slower. Therefore, a .hash
1708// section is added to a DSO by default. A .gnu.hash is added if you
1709// give the -hash-style=gnu or -hash-style=both option.
1710//
1711// The Unix semantics of resolving dynamic symbols is somewhat expensive.
1712// Each ELF file has a list of DSOs that the ELF file depends on and a
1713// list of dynamic symbols that need to be resolved from any of the
1714// DSOs. That means resolving all dynamic symbols takes O(m)*O(n)
1715// where m is the number of DSOs and n is the number of dynamic
1716// symbols. For modern large programs, both m and n are large. So
1717// making each step faster by using hash tables substiantially
1718// improves time to load programs.
1719//
1720// (Note that this is not the only way to design the shared library.
1721// For instance, the Windows DLL takes a different approach. On
1722// Windows, each dynamic symbol has a name of DLL from which the symbol
1723// has to be resolved. That makes the cost of symbol resolution O(n).
1724// This disables some hacky techniques you can use on Unix such as
1725// LD_PRELOAD, but this is arguably better semantics than the Unix ones.)
1726//
1727// Due to historical reasons, we have two different hash tables, .hash
1728// and .gnu.hash. They are for the same purpose, and .gnu.hash is a new
1729// and better version of .hash. .hash is just an on-disk hash table, but
1730// .gnu.hash has a bloom filter in addition to a hash table to skip
1731// DSOs very quickly. If you are sure that your dynamic linker knows
1732// about .gnu.hash, you want to specify -hash-style=gnu. Otherwise, a
1733// safe bet is to specify -hash-style=both for backward compatibilty.
George Rimarf45f6812017-05-16 08:53:30 +00001734GnuHashTableSection::GnuHashTableSection()
George Rimar5f73bc92017-03-29 15:23:28 +00001735 : SyntheticSection(SHF_ALLOC, SHT_GNU_HASH, Config->Wordsize, ".gnu.hash") {
1736}
Eugene Leviantbe809a72016-11-18 06:44:18 +00001737
George Rimarf45f6812017-05-16 08:53:30 +00001738void GnuHashTableSection::finalizeContents() {
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00001739 getParent()->Link = InX::DynSymTab->getParent()->SectionIndex;
Rui Ueyamae13373b2017-03-01 02:51:42 +00001740
Rui Ueyama517366c2018-01-19 23:54:31 +00001741 // Computes bloom filter size in word size. We want to allocate 12
Rui Ueyamae13373b2017-03-01 02:51:42 +00001742 // bits for each symbol. It must be a power of two.
Rui Ueyama517366c2018-01-19 23:54:31 +00001743 if (Symbols.empty()) {
Rui Ueyamae13373b2017-03-01 02:51:42 +00001744 MaskWords = 1;
Rui Ueyama517366c2018-01-19 23:54:31 +00001745 } else {
1746 uint64_t NumBits = Symbols.size() * 12;
1747 MaskWords = NextPowerOf2(NumBits / (Config->Wordsize * 8));
1748 }
Rui Ueyamae13373b2017-03-01 02:51:42 +00001749
George Rimar5f73bc92017-03-29 15:23:28 +00001750 Size = 16; // Header
1751 Size += Config->Wordsize * MaskWords; // Bloom filter
1752 Size += NBuckets * 4; // Hash buckets
1753 Size += Symbols.size() * 4; // Hash values
Eugene Leviantbe809a72016-11-18 06:44:18 +00001754}
1755
George Rimarf45f6812017-05-16 08:53:30 +00001756void GnuHashTableSection::writeTo(uint8_t *Buf) {
Rui Ueyamac4e50bf2017-12-06 00:49:48 +00001757 // The output buffer is not guaranteed to be zero-cleared because we pre-
1758 // fill executable sections with trap instructions. This is a precaution
1759 // for that case, which happens only when -no-rosegment is given.
1760 memset(Buf, 0, Size);
1761
Rui Ueyamae13373b2017-03-01 02:51:42 +00001762 // Write a header.
Rui Ueyama79048e42017-10-27 03:59:34 +00001763 write32(Buf, NBuckets);
1764 write32(Buf + 4, InX::DynSymTab->getNumSymbols() - Symbols.size());
1765 write32(Buf + 8, MaskWords);
Rui Ueyamaba32e732018-03-19 23:04:13 +00001766 write32(Buf + 12, Shift2);
Rui Ueyamae13373b2017-03-01 02:51:42 +00001767 Buf += 16;
1768
Rui Ueyama7986b452017-03-01 18:09:09 +00001769 // Write a bloom filter and a hash table.
Rui Ueyamae13373b2017-03-01 02:51:42 +00001770 writeBloomFilter(Buf);
George Rimar5f73bc92017-03-29 15:23:28 +00001771 Buf += Config->Wordsize * MaskWords;
Rui Ueyamae13373b2017-03-01 02:51:42 +00001772 writeHashTable(Buf);
Eugene Leviantbe809a72016-11-18 06:44:18 +00001773}
1774
Rui Ueyama7986b452017-03-01 18:09:09 +00001775// This function writes a 2-bit bloom filter. This bloom filter alone
1776// usually filters out 80% or more of all symbol lookups [1].
1777// The dynamic linker uses the hash table only when a symbol is not
1778// filtered out by a bloom filter.
1779//
1780// [1] Ulrich Drepper (2011), "How To Write Shared Libraries" (Ver. 4.1.2),
1781// p.9, https://www.akkadia.org/drepper/dsohowto.pdf
George Rimarf45f6812017-05-16 08:53:30 +00001782void GnuHashTableSection::writeBloomFilter(uint8_t *Buf) {
Rui Ueyama2f8af792018-01-20 00:14:16 +00001783 unsigned C = Config->Is64 ? 64 : 32;
Rui Ueyamae13373b2017-03-01 02:51:42 +00001784 for (const Entry &Sym : Symbols) {
1785 size_t I = (Sym.Hash / C) & (MaskWords - 1);
George Rimar5f73bc92017-03-29 15:23:28 +00001786 uint64_t Val = readUint(Buf + I * Config->Wordsize);
1787 Val |= uint64_t(1) << (Sym.Hash % C);
Rui Ueyamaba32e732018-03-19 23:04:13 +00001788 Val |= uint64_t(1) << ((Sym.Hash >> Shift2) % C);
George Rimar5f73bc92017-03-29 15:23:28 +00001789 writeUint(Buf + I * Config->Wordsize, Val);
Eugene Leviantbe809a72016-11-18 06:44:18 +00001790 }
Eugene Leviantbe809a72016-11-18 06:44:18 +00001791}
1792
George Rimarf45f6812017-05-16 08:53:30 +00001793void GnuHashTableSection::writeHashTable(uint8_t *Buf) {
George Rimar5f73bc92017-03-29 15:23:28 +00001794 uint32_t *Buckets = reinterpret_cast<uint32_t *>(Buf);
Rafael Espindolaf9f2abe2017-12-07 18:51:19 +00001795 uint32_t OldBucket = -1;
George Rimar5f73bc92017-03-29 15:23:28 +00001796 uint32_t *Values = Buckets + NBuckets;
Rafael Espindola50ca10b2017-12-07 18:46:03 +00001797 for (auto I = Symbols.begin(), E = Symbols.end(); I != E; ++I) {
Rafael Espindolad182aaa2017-12-07 18:59:29 +00001798 // Write a hash value. It represents a sequence of chains that share the
1799 // same hash modulo value. The last element of each chain is terminated by
1800 // LSB 1.
Rafael Espindola50ca10b2017-12-07 18:46:03 +00001801 uint32_t Hash = I->Hash;
1802 bool IsLastInChain = (I + 1) == E || I->BucketIdx != (I + 1)->BucketIdx;
1803 Hash = IsLastInChain ? Hash | 1 : Hash & ~1;
1804 write32(Values++, Hash);
Rafael Espindolad182aaa2017-12-07 18:59:29 +00001805
1806 if (I->BucketIdx == OldBucket)
1807 continue;
1808 // Write a hash bucket. Hash buckets contain indices in the following hash
1809 // value table.
1810 write32(Buckets + I->BucketIdx, I->Sym->DynsymIndex);
1811 OldBucket = I->BucketIdx;
Eugene Leviantbe809a72016-11-18 06:44:18 +00001812 }
Eugene Leviantbe809a72016-11-18 06:44:18 +00001813}
1814
1815static uint32_t hashGnu(StringRef Name) {
1816 uint32_t H = 5381;
1817 for (uint8_t C : Name)
1818 H = (H << 5) + H + C;
1819 return H;
1820}
1821
1822// Add symbols to this symbol hash table. Note that this function
1823// destructively sort a given vector -- which is needed because
1824// GNU-style hash table places some sorting requirements.
George Rimarf45f6812017-05-16 08:53:30 +00001825void GnuHashTableSection::addSymbols(std::vector<SymbolTableEntry> &V) {
Rui Ueyamae13373b2017-03-01 02:51:42 +00001826 // We cannot use 'auto' for Mid because GCC 6.1 cannot deduce
1827 // its type correctly.
Eugene Leviantbe809a72016-11-18 06:44:18 +00001828 std::vector<SymbolTableEntry>::iterator Mid =
1829 std::stable_partition(V.begin(), V.end(), [](const SymbolTableEntry &S) {
Peter Collingbourneb472aa02017-11-06 04:39:07 +00001830 return !S.Sym->isDefined();
Eugene Leviantbe809a72016-11-18 06:44:18 +00001831 });
George Rimar2ab93622018-03-14 08:52:39 +00001832
Rui Ueyama4e6b8222018-03-14 19:01:00 +00001833 // We chose load factor 4 for the on-disk hash table. For each hash
1834 // collision, the dynamic linker will compare a uint32_t hash value.
1835 // Since the integer comparison is quite fast, we believe we can
1836 // make the load factor even larger. 4 is just a conservative choice.
1837 //
1838 // Note that we don't want to create a zero-sized hash table because
1839 // Android loader as of 2018 doesn't like a .gnu.hash containing such
1840 // table. If that's the case, we create a hash table with one unused
1841 // dummy slot.
George Rimar2ab93622018-03-14 08:52:39 +00001842 NBuckets = std::max<size_t>((V.end() - Mid) / 4, 1);
1843
Eugene Leviantbe809a72016-11-18 06:44:18 +00001844 if (Mid == V.end())
1845 return;
Rui Ueyamae13373b2017-03-01 02:51:42 +00001846
Rui Ueyama22788262017-12-02 00:37:13 +00001847 for (SymbolTableEntry &Ent : llvm::make_range(Mid, V.end())) {
1848 Symbol *B = Ent.Sym;
1849 uint32_t Hash = hashGnu(B->getName());
1850 uint32_t BucketIdx = Hash % NBuckets;
1851 Symbols.push_back({B, Ent.StrTabOffset, Hash, BucketIdx});
1852 }
1853
1854 std::stable_sort(
1855 Symbols.begin(), Symbols.end(),
1856 [](const Entry &L, const Entry &R) { return L.BucketIdx < R.BucketIdx; });
Eugene Leviantbe809a72016-11-18 06:44:18 +00001857
1858 V.erase(Mid, V.end());
Rui Ueyamae13373b2017-03-01 02:51:42 +00001859 for (const Entry &Ent : Symbols)
Rui Ueyama48882242017-11-04 00:31:04 +00001860 V.push_back({Ent.Sym, Ent.StrTabOffset});
Eugene Leviantbe809a72016-11-18 06:44:18 +00001861}
1862
George Rimaraaf54712017-09-27 09:14:59 +00001863HashTableSection::HashTableSection()
Rui Ueyama6b776ad2017-02-28 05:53:47 +00001864 : SyntheticSection(SHF_ALLOC, SHT_HASH, 4, ".hash") {
1865 this->Entsize = 4;
Eugene Leviantb96e8092016-11-18 09:06:47 +00001866}
1867
George Rimaraaf54712017-09-27 09:14:59 +00001868void HashTableSection::finalizeContents() {
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00001869 getParent()->Link = InX::DynSymTab->getParent()->SectionIndex;
Eugene Leviantb96e8092016-11-18 09:06:47 +00001870
George Rimar67c60722017-07-18 11:55:35 +00001871 unsigned NumEntries = 2; // nbucket and nchain.
George Rimar69b17c32017-05-16 10:04:42 +00001872 NumEntries += InX::DynSymTab->getNumSymbols(); // The chain entries.
Eugene Leviantb96e8092016-11-18 09:06:47 +00001873
1874 // Create as many buckets as there are symbols.
George Rimar69b17c32017-05-16 10:04:42 +00001875 NumEntries += InX::DynSymTab->getNumSymbols();
Rui Ueyama6b776ad2017-02-28 05:53:47 +00001876 this->Size = NumEntries * 4;
Eugene Leviantb96e8092016-11-18 09:06:47 +00001877}
1878
George Rimaraaf54712017-09-27 09:14:59 +00001879void HashTableSection::writeTo(uint8_t *Buf) {
Shoaib Meenaid79bbf42018-01-11 06:57:01 +00001880 // See comment in GnuHashTableSection::writeTo.
1881 memset(Buf, 0, Size);
1882
George Rimar69b17c32017-05-16 10:04:42 +00001883 unsigned NumSymbols = InX::DynSymTab->getNumSymbols();
Rui Ueyama6b776ad2017-02-28 05:53:47 +00001884
George Rimaraaf54712017-09-27 09:14:59 +00001885 uint32_t *P = reinterpret_cast<uint32_t *>(Buf);
Rui Ueyama79048e42017-10-27 03:59:34 +00001886 write32(P++, NumSymbols); // nbucket
1887 write32(P++, NumSymbols); // nchain
Eugene Leviantb96e8092016-11-18 09:06:47 +00001888
George Rimaraaf54712017-09-27 09:14:59 +00001889 uint32_t *Buckets = P;
1890 uint32_t *Chains = P + NumSymbols;
Eugene Leviantb96e8092016-11-18 09:06:47 +00001891
George Rimar69b17c32017-05-16 10:04:42 +00001892 for (const SymbolTableEntry &S : InX::DynSymTab->getSymbols()) {
Rui Ueyama48882242017-11-04 00:31:04 +00001893 Symbol *Sym = S.Sym;
1894 StringRef Name = Sym->getName();
1895 unsigned I = Sym->DynsymIndex;
Eugene Leviantb96e8092016-11-18 09:06:47 +00001896 uint32_t Hash = hashSysV(Name) % NumSymbols;
1897 Chains[I] = Buckets[Hash];
Rui Ueyama79048e42017-10-27 03:59:34 +00001898 write32(Buckets + Hash, I);
Eugene Leviantb96e8092016-11-18 09:06:47 +00001899 }
1900}
1901
Rui Ueyamae2dfdbf2018-01-12 22:29:29 +00001902PltSection::PltSection(bool IsIplt)
Rui Ueyama9320cb02017-02-27 02:56:02 +00001903 : SyntheticSection(SHF_ALLOC | SHF_EXECINSTR, SHT_PROGBITS, 16, ".plt"),
Rui Ueyamae2dfdbf2018-01-12 22:29:29 +00001904 HeaderSize(IsIplt ? 0 : Target->PltHeaderSize), IsIplt(IsIplt) {
Rui Ueyama0cc14832017-06-28 17:05:39 +00001905 // The PLT needs to be writable on SPARC as the dynamic linker will
1906 // modify the instructions in the PLT entries.
1907 if (Config->EMachine == EM_SPARCV9)
1908 this->Flags |= SHF_WRITE;
1909}
Eugene Leviantff23d3e2016-11-18 14:35:03 +00001910
George Rimardfc020e2017-03-17 11:01:57 +00001911void PltSection::writeTo(uint8_t *Buf) {
Peter Smithf09245a2017-02-09 10:56:15 +00001912 // At beginning of PLT but not the IPLT, we have code to call the dynamic
1913 // linker to resolve dynsyms at runtime. Write such code.
George Rimar9fc2c642018-01-12 09:35:57 +00001914 if (!IsIplt)
Peter Smithf09245a2017-02-09 10:56:15 +00001915 Target->writePltHeader(Buf);
1916 size_t Off = HeaderSize;
1917 // The IPlt is immediately after the Plt, account for this in RelOff
1918 unsigned PltOff = getPltRelocOff();
Eugene Leviantff23d3e2016-11-18 14:35:03 +00001919
1920 for (auto &I : Entries) {
Rui Ueyamaf52496e2017-11-03 21:21:47 +00001921 const Symbol *B = I.first;
Peter Smithf09245a2017-02-09 10:56:15 +00001922 unsigned RelOff = I.second + PltOff;
George Rimar4670bb02017-03-16 12:58:11 +00001923 uint64_t Got = B->getGotPltVA();
Eugene Leviantff23d3e2016-11-18 14:35:03 +00001924 uint64_t Plt = this->getVA() + Off;
1925 Target->writePlt(Buf + Off, Got, Plt, B->PltIndex, RelOff);
1926 Off += Target->PltEntrySize;
1927 }
1928}
1929
Rui Ueyamaf52496e2017-11-03 21:21:47 +00001930template <class ELFT> void PltSection::addEntry(Symbol &Sym) {
Eugene Leviantff23d3e2016-11-18 14:35:03 +00001931 Sym.PltIndex = Entries.size();
Rafael Espindola87e0dea2017-12-10 20:07:03 +00001932 RelocationBaseSection *PltRelocSection = InX::RelaPlt;
George Rimar9fc2c642018-01-12 09:35:57 +00001933 if (IsIplt) {
Rafael Espindola87e0dea2017-12-10 20:07:03 +00001934 PltRelocSection = InX::RelaIplt;
Peter Smithf09245a2017-02-09 10:56:15 +00001935 Sym.IsInIplt = true;
1936 }
Rafael Espindola87e0dea2017-12-10 20:07:03 +00001937 unsigned RelOff =
1938 static_cast<RelocationSection<ELFT> *>(PltRelocSection)->getRelocOffset();
Eugene Leviantff23d3e2016-11-18 14:35:03 +00001939 Entries.push_back(std::make_pair(&Sym, RelOff));
1940}
1941
George Rimardfc020e2017-03-17 11:01:57 +00001942size_t PltSection::getSize() const {
Peter Smithf09245a2017-02-09 10:56:15 +00001943 return HeaderSize + Entries.size() * Target->PltEntrySize;
Eugene Leviantff23d3e2016-11-18 14:35:03 +00001944}
1945
Peter Smith96943762017-01-25 10:31:16 +00001946// Some architectures such as additional symbols in the PLT section. For
1947// example ARM uses mapping symbols to aid disassembly
George Rimardfc020e2017-03-17 11:01:57 +00001948void PltSection::addSymbols() {
Peter Smithf09245a2017-02-09 10:56:15 +00001949 // The PLT may have symbols defined for the Header, the IPLT has no header
George Rimar9fc2c642018-01-12 09:35:57 +00001950 if (!IsIplt)
Rafael Espindola1037eef2017-12-19 23:59:35 +00001951 Target->addPltHeaderSymbols(*this);
Peter Smithf09245a2017-02-09 10:56:15 +00001952 size_t Off = HeaderSize;
Peter Smith96943762017-01-25 10:31:16 +00001953 for (size_t I = 0; I < Entries.size(); ++I) {
Rafael Espindola1037eef2017-12-19 23:59:35 +00001954 Target->addPltSymbols(*this, Off);
Peter Smith96943762017-01-25 10:31:16 +00001955 Off += Target->PltEntrySize;
1956 }
1957}
1958
George Rimardfc020e2017-03-17 11:01:57 +00001959unsigned PltSection::getPltRelocOff() const {
George Rimar9fc2c642018-01-12 09:35:57 +00001960 return IsIplt ? InX::Plt->getSize() : 0;
Peter Smith96943762017-01-25 10:31:16 +00001961}
1962
Rui Ueyama9f4f4902017-09-24 21:45:35 +00001963// The string hash function for .gdb_index.
1964static uint32_t computeGdbHash(StringRef S) {
1965 uint32_t H = 0;
1966 for (uint8_t C : S)
1967 H = H * 67 + tolower(C) - 113;
1968 return H;
George Rimarec02b8d2016-12-15 12:07:53 +00001969}
1970
Rui Ueyama9f4f4902017-09-24 21:45:35 +00001971static std::vector<GdbIndexChunk::CuEntry> readCuList(DWARFContext &Dwarf) {
1972 std::vector<GdbIndexChunk::CuEntry> Ret;
1973 for (std::unique_ptr<DWARFCompileUnit> &Cu : Dwarf.compile_units())
1974 Ret.push_back({Cu->getOffset(), Cu->getLength() + 4});
Rui Ueyamaac2d8152017-03-01 22:54:50 +00001975 return Ret;
1976}
1977
Rui Ueyama9f4f4902017-09-24 21:45:35 +00001978static std::vector<GdbIndexChunk::AddressEntry>
1979readAddressAreas(DWARFContext &Dwarf, InputSection *Sec) {
1980 std::vector<GdbIndexChunk::AddressEntry> Ret;
Rui Ueyamaac2d8152017-03-01 22:54:50 +00001981
Rui Ueyama9f4f4902017-09-24 21:45:35 +00001982 uint32_t CuIdx = 0;
1983 for (std::unique_ptr<DWARFCompileUnit> &Cu : Dwarf.compile_units()) {
Rui Ueyamaac2d8152017-03-01 22:54:50 +00001984 DWARFAddressRangesVector Ranges;
Rui Ueyama9f4f4902017-09-24 21:45:35 +00001985 Cu->collectAddressRanges(Ranges);
Rui Ueyamaac2d8152017-03-01 22:54:50 +00001986
George Rimar35e846e2017-03-21 08:19:34 +00001987 ArrayRef<InputSectionBase *> Sections = Sec->File->getSections();
George Rimar0641b8b2017-06-07 10:52:02 +00001988 for (DWARFAddressRange &R : Ranges) {
1989 InputSectionBase *S = Sections[R.SectionIndex];
1990 if (!S || S == &InputSection::Discarded || !S->Live)
1991 continue;
1992 // Range list with zero size has no effect.
1993 if (R.LowPC == R.HighPC)
1994 continue;
Rafael Espindola8b1afd52017-07-19 22:27:35 +00001995 auto *IS = cast<InputSection>(S);
1996 uint64_t Offset = IS->getOffsetInFile();
Rui Ueyama9f4f4902017-09-24 21:45:35 +00001997 Ret.push_back({IS, R.LowPC - Offset, R.HighPC - Offset, CuIdx});
George Rimar0641b8b2017-06-07 10:52:02 +00001998 }
Rui Ueyama9f4f4902017-09-24 21:45:35 +00001999 ++CuIdx;
Rui Ueyamaac2d8152017-03-01 22:54:50 +00002000 }
2001 return Ret;
2002}
2003
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002004static std::vector<GdbIndexChunk::NameTypeEntry>
2005readPubNamesAndTypes(DWARFContext &Dwarf) {
2006 StringRef Sec1 = Dwarf.getDWARFObj().getGnuPubNamesSection();
2007 StringRef Sec2 = Dwarf.getDWARFObj().getGnuPubTypesSection();
Rui Ueyamaac2d8152017-03-01 22:54:50 +00002008
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002009 std::vector<GdbIndexChunk::NameTypeEntry> Ret;
2010 for (StringRef Sec : {Sec1, Sec2}) {
2011 DWARFDebugPubTable Table(Sec, Config->IsLE, true);
Rui Ueyama22125d82017-09-25 01:42:57 +00002012 for (const DWARFDebugPubTable::Set &Set : Table.getData()) {
2013 for (const DWARFDebugPubTable::Entry &Ent : Set.Entries) {
2014 CachedHashStringRef S(Ent.Name, computeGdbHash(Ent.Name));
2015 Ret.push_back({S, Ent.Descriptor.toBits()});
2016 }
2017 }
Rui Ueyamaac2d8152017-03-01 22:54:50 +00002018 }
2019 return Ret;
2020}
2021
George Rimar86665622017-06-07 16:59:11 +00002022static std::vector<InputSection *> getDebugInfoSections() {
2023 std::vector<InputSection *> Ret;
2024 for (InputSectionBase *S : InputSections)
2025 if (InputSection *IS = dyn_cast<InputSection>(S))
Rafael Espindola300b3862017-07-12 23:56:53 +00002026 if (IS->Name == ".debug_info")
George Rimar86665622017-06-07 16:59:11 +00002027 Ret.push_back(IS);
2028 return Ret;
2029}
2030
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002031void GdbIndexSection::fixCuIndex() {
2032 uint32_t Idx = 0;
2033 for (GdbIndexChunk &Chunk : Chunks) {
2034 for (GdbIndexChunk::AddressEntry &Ent : Chunk.AddressAreas)
2035 Ent.CuIndex += Idx;
2036 Idx += Chunk.CompilationUnits.size();
George Rimar86665622017-06-07 16:59:11 +00002037 }
2038}
2039
Rui Ueyama17cc6f62017-09-25 04:55:27 +00002040std::vector<std::vector<uint32_t>> GdbIndexSection::createCuVectors() {
2041 std::vector<std::vector<uint32_t>> Ret;
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002042 uint32_t Idx = 0;
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002043 uint32_t Off = 0;
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002044
2045 for (GdbIndexChunk &Chunk : Chunks) {
2046 for (GdbIndexChunk::NameTypeEntry &Ent : Chunk.NamesAndTypes) {
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002047 GdbSymbol *&Sym = Symbols[Ent.Name];
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002048 if (!Sym) {
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002049 Sym = make<GdbSymbol>(GdbSymbol{Ent.Name.hash(), Off, Ret.size()});
2050 Off += Ent.Name.size() + 1;
Rui Ueyama17cc6f62017-09-25 04:55:27 +00002051 Ret.push_back({});
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002052 }
Rui Ueyamaf9da2fd2017-09-25 05:30:39 +00002053
2054 // gcc 5.4.1 produces a buggy .debug_gnu_pubnames that contains
2055 // duplicate entries, so we want to dedup them.
2056 std::vector<uint32_t> &Vec = Ret[Sym->CuVectorIndex];
2057 uint32_t Val = (Ent.Type << 24) | Idx;
2058 if (Vec.empty() || Vec.back() != Val)
2059 Vec.push_back(Val);
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002060 }
2061 Idx += Chunk.CompilationUnits.size();
2062 }
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002063
2064 StringPoolSize = Off;
George Rimar86665622017-06-07 16:59:11 +00002065 return Ret;
2066}
George Rimar8b547392016-12-15 09:08:13 +00002067
Rafael Espindola300b3862017-07-12 23:56:53 +00002068template <class ELFT> GdbIndexSection *elf::createGdbIndex() {
Rui Ueyamaa1b79df2017-10-10 22:59:32 +00002069 // Gather debug info to create a .gdb_index section.
George Rimar2d23da02017-08-01 14:57:13 +00002070 std::vector<InputSection *> Sections = getDebugInfoSections();
2071 std::vector<GdbIndexChunk> Chunks(Sections.size());
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002072
George Rimar2d23da02017-08-01 14:57:13 +00002073 parallelForEachN(0, Chunks.size(), [&](size_t I) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002074 ObjFile<ELFT> *File = Sections[I]->getFile<ELFT>();
2075 DWARFContext Dwarf(make_unique<LLDDwarfObj<ELFT>>(File));
2076
2077 Chunks[I].DebugInfoSec = Sections[I];
2078 Chunks[I].CompilationUnits = readCuList(Dwarf);
2079 Chunks[I].AddressAreas = readAddressAreas(Dwarf, Sections[I]);
2080 Chunks[I].NamesAndTypes = readPubNamesAndTypes(Dwarf);
George Rimar2d23da02017-08-01 14:57:13 +00002081 });
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002082
Rui Ueyamaa1b79df2017-10-10 22:59:32 +00002083 // .debug_gnu_pub{names,types} are useless in executables.
2084 // They are present in input object files solely for creating
2085 // a .gdb_index. So we can remove it from the output.
2086 for (InputSectionBase *S : InputSections)
2087 if (S->Name == ".debug_gnu_pubnames" || S->Name == ".debug_gnu_pubtypes")
2088 S->Live = false;
2089
2090 // Create a .gdb_index and returns it.
Rafael Espindola300b3862017-07-12 23:56:53 +00002091 return make<GdbIndexSection>(std::move(Chunks));
2092}
2093
Rui Ueyamae5d642c2017-08-15 17:01:28 +00002094static size_t getCuSize(ArrayRef<GdbIndexChunk> Arr) {
George Rimar86665622017-06-07 16:59:11 +00002095 size_t Ret = 0;
Rui Ueyamae5d642c2017-08-15 17:01:28 +00002096 for (const GdbIndexChunk &D : Arr)
George Rimar86665622017-06-07 16:59:11 +00002097 Ret += D.CompilationUnits.size();
2098 return Ret;
2099}
George Rimarec02b8d2016-12-15 12:07:53 +00002100
Rui Ueyamae5d642c2017-08-15 17:01:28 +00002101static size_t getAddressAreaSize(ArrayRef<GdbIndexChunk> Arr) {
George Rimar86665622017-06-07 16:59:11 +00002102 size_t Ret = 0;
Rui Ueyamae5d642c2017-08-15 17:01:28 +00002103 for (const GdbIndexChunk &D : Arr)
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002104 Ret += D.AddressAreas.size();
2105 return Ret;
2106}
2107
2108std::vector<GdbSymbol *> GdbIndexSection::createGdbSymtab() {
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002109 uint32_t Size = NextPowerOf2(Symbols.size() * 4 / 3);
2110 if (Size < 1024)
2111 Size = 1024;
2112
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002113 uint32_t Mask = Size - 1;
2114 std::vector<GdbSymbol *> Ret(Size);
2115
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002116 for (auto &KV : Symbols) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002117 GdbSymbol *Sym = KV.second;
2118 uint32_t I = Sym->NameHash & Mask;
2119 uint32_t Step = ((Sym->NameHash * 17) & Mask) | 1;
2120
2121 while (Ret[I])
2122 I = (I + Step) & Mask;
2123 Ret[I] = Sym;
2124 }
George Rimar86665622017-06-07 16:59:11 +00002125 return Ret;
Eugene Levianta113a412016-11-21 09:24:43 +00002126}
2127
Rui Ueyama2b6631b2017-08-15 17:01:39 +00002128GdbIndexSection::GdbIndexSection(std::vector<GdbIndexChunk> &&C)
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002129 : SyntheticSection(0, SHT_PROGBITS, 1, ".gdb_index"), Chunks(std::move(C)) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002130 fixCuIndex();
2131 CuVectors = createCuVectors();
2132 GdbSymtab = createGdbSymtab();
Eugene Levianta113a412016-11-21 09:24:43 +00002133
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002134 // Compute offsets early to know the section size.
2135 // Each chunk size needs to be in sync with what we write in writeTo.
2136 CuTypesOffset = CuListOffset + getCuSize(Chunks) * 16;
2137 SymtabOffset = CuTypesOffset + getAddressAreaSize(Chunks) * 20;
2138 ConstantPoolOffset = SymtabOffset + GdbSymtab.size() * 8;
George Rimarec02b8d2016-12-15 12:07:53 +00002139
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002140 size_t Off = 0;
Rui Ueyama17cc6f62017-09-25 04:55:27 +00002141 for (ArrayRef<uint32_t> Vec : CuVectors) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002142 CuVectorOffsets.push_back(Off);
Rui Ueyama17cc6f62017-09-25 04:55:27 +00002143 Off += (Vec.size() + 1) * 4;
George Rimarec02b8d2016-12-15 12:07:53 +00002144 }
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002145 StringPoolOffset = ConstantPoolOffset + Off;
George Rimar8b547392016-12-15 09:08:13 +00002146}
2147
George Rimar35e846e2017-03-21 08:19:34 +00002148size_t GdbIndexSection::getSize() const {
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002149 return StringPoolOffset + StringPoolSize;
Eugene Levianta113a412016-11-21 09:24:43 +00002150}
2151
George Rimar35e846e2017-03-21 08:19:34 +00002152void GdbIndexSection::writeTo(uint8_t *Buf) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002153 // Write the section header.
2154 write32le(Buf, 7);
2155 write32le(Buf + 4, CuListOffset);
2156 write32le(Buf + 8, CuTypesOffset);
2157 write32le(Buf + 12, CuTypesOffset);
2158 write32le(Buf + 16, SymtabOffset);
2159 write32le(Buf + 20, ConstantPoolOffset);
Eugene Levianta113a412016-11-21 09:24:43 +00002160 Buf += 24;
2161
2162 // Write the CU list.
George Rimar86665622017-06-07 16:59:11 +00002163 for (GdbIndexChunk &D : Chunks) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002164 for (GdbIndexChunk::CuEntry &Cu : D.CompilationUnits) {
Rafael Espindola300b3862017-07-12 23:56:53 +00002165 write64le(Buf, D.DebugInfoSec->OutSecOff + Cu.CuOffset);
George Rimar86665622017-06-07 16:59:11 +00002166 write64le(Buf + 8, Cu.CuLength);
2167 Buf += 16;
2168 }
Eugene Levianta113a412016-11-21 09:24:43 +00002169 }
George Rimar8b547392016-12-15 09:08:13 +00002170
2171 // Write the address area.
George Rimar86665622017-06-07 16:59:11 +00002172 for (GdbIndexChunk &D : Chunks) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002173 for (GdbIndexChunk::AddressEntry &E : D.AddressAreas) {
Rafael Espindola4f058a22018-03-24 00:35:11 +00002174 uint64_t BaseAddr = E.Section->getVA(0);
George Rimar86665622017-06-07 16:59:11 +00002175 write64le(Buf, BaseAddr + E.LowAddress);
2176 write64le(Buf + 8, BaseAddr + E.HighAddress);
2177 write32le(Buf + 16, E.CuIndex);
2178 Buf += 20;
2179 }
George Rimar8b547392016-12-15 09:08:13 +00002180 }
George Rimarec02b8d2016-12-15 12:07:53 +00002181
2182 // Write the symbol table.
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002183 for (GdbSymbol *Sym : GdbSymtab) {
George Rimarec02b8d2016-12-15 12:07:53 +00002184 if (Sym) {
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002185 write32le(Buf, Sym->NameOffset + StringPoolOffset - ConstantPoolOffset);
2186 write32le(Buf + 4, CuVectorOffsets[Sym->CuVectorIndex]);
George Rimarec02b8d2016-12-15 12:07:53 +00002187 }
2188 Buf += 8;
2189 }
2190
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002191 // Write the CU vectors.
Rui Ueyama17cc6f62017-09-25 04:55:27 +00002192 for (ArrayRef<uint32_t> Vec : CuVectors) {
2193 write32le(Buf, Vec.size());
George Rimarec02b8d2016-12-15 12:07:53 +00002194 Buf += 4;
Rui Ueyama17cc6f62017-09-25 04:55:27 +00002195 for (uint32_t Val : Vec) {
George Rimar5f5905e2017-05-26 12:01:40 +00002196 write32le(Buf, Val);
George Rimarec02b8d2016-12-15 12:07:53 +00002197 Buf += 4;
2198 }
2199 }
2200
Rui Ueyama9f4f4902017-09-24 21:45:35 +00002201 // Write the string pool.
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002202 for (auto &KV : Symbols) {
2203 CachedHashStringRef S = KV.first;
2204 GdbSymbol *Sym = KV.second;
2205 size_t Off = Sym->NameOffset;
2206 memcpy(Buf + Off, S.val().data(), S.size());
Rui Ueyama8f222b82017-09-25 03:40:45 +00002207 Buf[Off + S.size()] = '\0';
Rui Ueyamabbc477c2017-09-25 02:29:51 +00002208 }
Eugene Levianta113a412016-11-21 09:24:43 +00002209}
2210
George Rimar67c60722017-07-18 11:55:35 +00002211bool GdbIndexSection::empty() const { return !Out::DebugInfo; }
George Rimar3fb5a6d2016-11-29 16:05:27 +00002212
Rui Ueyama02551ab2017-10-27 03:14:24 +00002213EhFrameHeader::EhFrameHeader()
Rafael Espindola6b2b4502018-01-23 05:23:23 +00002214 : SyntheticSection(SHF_ALLOC, SHT_PROGBITS, 4, ".eh_frame_hdr") {}
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002215
2216// .eh_frame_hdr contains a binary search table of pointers to FDEs.
2217// Each entry of the search table consists of two values,
2218// the starting PC from where FDEs covers, and the FDE's address.
2219// It is sorted by PC.
Rui Ueyama02551ab2017-10-27 03:14:24 +00002220void EhFrameHeader::writeTo(uint8_t *Buf) {
Rui Ueyama572247f2017-10-27 03:13:39 +00002221 typedef EhFrameSection::FdeData FdeData;
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002222
Rui Ueyama02551ab2017-10-27 03:14:24 +00002223 std::vector<FdeData> Fdes = InX::EhFrame->getFdeData();
Rui Ueyamac0552252017-10-27 03:13:24 +00002224
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002225 // Sort the FDE list by their PC and uniqueify. Usually there is only
2226 // one FDE for a PC (i.e. function), but if ICF merges two functions
2227 // into one, there can be more than one FDEs pointing to the address.
2228 auto Less = [](const FdeData &A, const FdeData &B) { return A.Pc < B.Pc; };
2229 std::stable_sort(Fdes.begin(), Fdes.end(), Less);
2230 auto Eq = [](const FdeData &A, const FdeData &B) { return A.Pc == B.Pc; };
2231 Fdes.erase(std::unique(Fdes.begin(), Fdes.end(), Eq), Fdes.end());
2232
2233 Buf[0] = 1;
2234 Buf[1] = DW_EH_PE_pcrel | DW_EH_PE_sdata4;
2235 Buf[2] = DW_EH_PE_udata4;
2236 Buf[3] = DW_EH_PE_datarel | DW_EH_PE_sdata4;
Rui Ueyama79048e42017-10-27 03:59:34 +00002237 write32(Buf + 4, InX::EhFrame->getParent()->Addr - this->getVA() - 4);
2238 write32(Buf + 8, Fdes.size());
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002239 Buf += 12;
2240
Rui Ueyamac49bdd62017-04-14 01:34:45 +00002241 uint64_t VA = this->getVA();
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002242 for (FdeData &Fde : Fdes) {
Rui Ueyama79048e42017-10-27 03:59:34 +00002243 write32(Buf, Fde.Pc - VA);
2244 write32(Buf + 4, Fde.FdeVA - VA);
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002245 Buf += 8;
2246 }
2247}
2248
Rui Ueyama02551ab2017-10-27 03:14:24 +00002249size_t EhFrameHeader::getSize() const {
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002250 // .eh_frame_hdr has a 12 bytes header followed by an array of FDEs.
Rui Ueyama572247f2017-10-27 03:13:39 +00002251 return 12 + InX::EhFrame->NumFdes * 8;
Eugene Leviant952eb4d2016-11-21 15:52:10 +00002252}
2253
Rui Ueyama02551ab2017-10-27 03:14:24 +00002254bool EhFrameHeader::empty() const { return InX::EhFrame->empty(); }
George Rimar11992c862016-11-25 08:05:41 +00002255
Rui Ueyamab38ddb12016-11-21 19:46:04 +00002256template <class ELFT>
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002257VersionDefinitionSection<ELFT>::VersionDefinitionSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +00002258 : SyntheticSection(SHF_ALLOC, SHT_GNU_verdef, sizeof(uint32_t),
2259 ".gnu.version_d") {}
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002260
2261static StringRef getFileDefName() {
2262 if (!Config->SoName.empty())
2263 return Config->SoName;
2264 return Config->OutputFile;
2265}
2266
Rui Ueyama945055a2017-02-27 03:07:41 +00002267template <class ELFT> void VersionDefinitionSection<ELFT>::finalizeContents() {
Rafael Espindola895aea62017-05-11 22:02:41 +00002268 FileDefNameOff = InX::DynStrTab->addString(getFileDefName());
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002269 for (VersionDefinition &V : Config->VersionDefinitions)
Rafael Espindola895aea62017-05-11 22:02:41 +00002270 V.NameOff = InX::DynStrTab->addString(V.Name);
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002271
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00002272 getParent()->Link = InX::DynStrTab->getParent()->SectionIndex;
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002273
2274 // sh_info should be set to the number of definitions. This fact is missed in
2275 // documentation, but confirmed by binutils community:
2276 // https://sourceware.org/ml/binutils/2014-11/msg00355.html
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00002277 getParent()->Info = getVerDefNum();
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002278}
2279
2280template <class ELFT>
2281void VersionDefinitionSection<ELFT>::writeOne(uint8_t *Buf, uint32_t Index,
2282 StringRef Name, size_t NameOff) {
2283 auto *Verdef = reinterpret_cast<Elf_Verdef *>(Buf);
2284 Verdef->vd_version = 1;
2285 Verdef->vd_cnt = 1;
2286 Verdef->vd_aux = sizeof(Elf_Verdef);
2287 Verdef->vd_next = sizeof(Elf_Verdef) + sizeof(Elf_Verdaux);
2288 Verdef->vd_flags = (Index == 1 ? VER_FLG_BASE : 0);
2289 Verdef->vd_ndx = Index;
2290 Verdef->vd_hash = hashSysV(Name);
2291
2292 auto *Verdaux = reinterpret_cast<Elf_Verdaux *>(Buf + sizeof(Elf_Verdef));
2293 Verdaux->vda_name = NameOff;
2294 Verdaux->vda_next = 0;
2295}
2296
2297template <class ELFT>
2298void VersionDefinitionSection<ELFT>::writeTo(uint8_t *Buf) {
2299 writeOne(Buf, 1, getFileDefName(), FileDefNameOff);
2300
2301 for (VersionDefinition &V : Config->VersionDefinitions) {
2302 Buf += sizeof(Elf_Verdef) + sizeof(Elf_Verdaux);
2303 writeOne(Buf, V.Id, V.Name, V.NameOff);
2304 }
2305
2306 // Need to terminate the last version definition.
2307 Elf_Verdef *Verdef = reinterpret_cast<Elf_Verdef *>(Buf);
2308 Verdef->vd_next = 0;
2309}
2310
2311template <class ELFT> size_t VersionDefinitionSection<ELFT>::getSize() const {
2312 return (sizeof(Elf_Verdef) + sizeof(Elf_Verdaux)) * getVerDefNum();
2313}
2314
2315template <class ELFT>
2316VersionTableSection<ELFT>::VersionTableSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +00002317 : SyntheticSection(SHF_ALLOC, SHT_GNU_versym, sizeof(uint16_t),
Rui Ueyama27876642017-03-01 04:04:23 +00002318 ".gnu.version") {
2319 this->Entsize = sizeof(Elf_Versym);
2320}
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002321
Rui Ueyama945055a2017-02-27 03:07:41 +00002322template <class ELFT> void VersionTableSection<ELFT>::finalizeContents() {
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002323 // At the moment of june 2016 GNU docs does not mention that sh_link field
2324 // should be set, but Sun docs do. Also readelf relies on this field.
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00002325 getParent()->Link = InX::DynSymTab->getParent()->SectionIndex;
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002326}
2327
2328template <class ELFT> size_t VersionTableSection<ELFT>::getSize() const {
George Rimar69b17c32017-05-16 10:04:42 +00002329 return sizeof(Elf_Versym) * (InX::DynSymTab->getSymbols().size() + 1);
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002330}
2331
2332template <class ELFT> void VersionTableSection<ELFT>::writeTo(uint8_t *Buf) {
2333 auto *OutVersym = reinterpret_cast<Elf_Versym *>(Buf) + 1;
George Rimar69b17c32017-05-16 10:04:42 +00002334 for (const SymbolTableEntry &S : InX::DynSymTab->getSymbols()) {
Zachary Turnera104d552017-11-03 22:33:49 +00002335 OutVersym->vs_index = S.Sym->VersionId;
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002336 ++OutVersym;
2337 }
2338}
2339
George Rimar11992c862016-11-25 08:05:41 +00002340template <class ELFT> bool VersionTableSection<ELFT>::empty() const {
2341 return !In<ELFT>::VerDef && In<ELFT>::VerNeed->empty();
2342}
2343
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002344template <class ELFT>
2345VersionNeedSection<ELFT>::VersionNeedSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +00002346 : SyntheticSection(SHF_ALLOC, SHT_GNU_verneed, sizeof(uint32_t),
2347 ".gnu.version_r") {
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002348 // Identifiers in verneed section start at 2 because 0 and 1 are reserved
2349 // for VER_NDX_LOCAL and VER_NDX_GLOBAL.
2350 // First identifiers are reserved by verdef section if it exist.
2351 NextIndex = getVerDefNum() + 1;
2352}
2353
Rafael Espindolaab0cce52018-04-26 17:58:58 +00002354template <class ELFT> void VersionNeedSection<ELFT>::addSymbol(Symbol *SS) {
2355 auto &File = cast<SharedFile<ELFT>>(*SS->File);
Rui Ueyamad37c33a2018-03-24 00:25:24 +00002356 if (SS->VerdefIndex == VER_NDX_GLOBAL) {
Rui Ueyamaf1f00842017-10-31 16:07:41 +00002357 SS->VersionId = VER_NDX_GLOBAL;
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002358 return;
2359 }
Rui Ueyama4076fa12017-02-26 23:35:34 +00002360
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002361 // If we don't already know that we need an Elf_Verneed for this DSO, prepare
2362 // to create one by adding it to our needed list and creating a dynstr entry
2363 // for the soname.
Rafael Espindolaa32ddc42017-12-20 16:28:19 +00002364 if (File.VerdefMap.empty())
2365 Needed.push_back({&File, InX::DynStrTab->addString(File.SoName)});
Rui Ueyamad37c33a2018-03-24 00:25:24 +00002366 const typename ELFT::Verdef *Ver = File.Verdefs[SS->VerdefIndex];
Rafael Espindolaa32ddc42017-12-20 16:28:19 +00002367 typename SharedFile<ELFT>::NeededVer &NV = File.VerdefMap[Ver];
Rui Ueyamad37c33a2018-03-24 00:25:24 +00002368
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002369 // If we don't already know that we need an Elf_Vernaux for this Elf_Verdef,
2370 // prepare to create one by allocating a version identifier and creating a
2371 // dynstr entry for the version name.
2372 if (NV.Index == 0) {
Rafael Espindolaa32ddc42017-12-20 16:28:19 +00002373 NV.StrTab = InX::DynStrTab->addString(File.getStringTable().data() +
Rafael Espindola895aea62017-05-11 22:02:41 +00002374 Ver->getAux()->vda_name);
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002375 NV.Index = NextIndex++;
2376 }
Rui Ueyamaf1f00842017-10-31 16:07:41 +00002377 SS->VersionId = NV.Index;
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002378}
2379
2380template <class ELFT> void VersionNeedSection<ELFT>::writeTo(uint8_t *Buf) {
2381 // The Elf_Verneeds need to appear first, followed by the Elf_Vernauxs.
2382 auto *Verneed = reinterpret_cast<Elf_Verneed *>(Buf);
2383 auto *Vernaux = reinterpret_cast<Elf_Vernaux *>(Verneed + Needed.size());
2384
2385 for (std::pair<SharedFile<ELFT> *, size_t> &P : Needed) {
2386 // Create an Elf_Verneed for this DSO.
2387 Verneed->vn_version = 1;
2388 Verneed->vn_cnt = P.first->VerdefMap.size();
2389 Verneed->vn_file = P.second;
2390 Verneed->vn_aux =
2391 reinterpret_cast<char *>(Vernaux) - reinterpret_cast<char *>(Verneed);
2392 Verneed->vn_next = sizeof(Elf_Verneed);
2393 ++Verneed;
2394
2395 // Create the Elf_Vernauxs for this Elf_Verneed. The loop iterates over
2396 // VerdefMap, which will only contain references to needed version
2397 // definitions. Each Elf_Vernaux is based on the information contained in
2398 // the Elf_Verdef in the source DSO. This loop iterates over a std::map of
2399 // pointers, but is deterministic because the pointers refer to Elf_Verdef
2400 // data structures within a single input file.
2401 for (auto &NV : P.first->VerdefMap) {
2402 Vernaux->vna_hash = NV.first->vd_hash;
2403 Vernaux->vna_flags = 0;
2404 Vernaux->vna_other = NV.second.Index;
2405 Vernaux->vna_name = NV.second.StrTab;
2406 Vernaux->vna_next = sizeof(Elf_Vernaux);
2407 ++Vernaux;
2408 }
2409
2410 Vernaux[-1].vna_next = 0;
2411 }
2412 Verneed[-1].vn_next = 0;
2413}
2414
Rui Ueyama945055a2017-02-27 03:07:41 +00002415template <class ELFT> void VersionNeedSection<ELFT>::finalizeContents() {
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00002416 getParent()->Link = InX::DynStrTab->getParent()->SectionIndex;
2417 getParent()->Info = Needed.size();
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002418}
2419
2420template <class ELFT> size_t VersionNeedSection<ELFT>::getSize() const {
2421 unsigned Size = Needed.size() * sizeof(Elf_Verneed);
2422 for (const std::pair<SharedFile<ELFT> *, size_t> &P : Needed)
2423 Size += P.first->VerdefMap.size() * sizeof(Elf_Vernaux);
2424 return Size;
2425}
2426
George Rimar11992c862016-11-25 08:05:41 +00002427template <class ELFT> bool VersionNeedSection<ELFT>::empty() const {
2428 return getNeedNum() == 0;
2429}
2430
Rafael Espindola6119b862017-03-06 20:23:56 +00002431void MergeSyntheticSection::addSection(MergeInputSection *MS) {
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00002432 MS->Parent = this;
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002433 Sections.push_back(MS);
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002434}
2435
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002436MergeTailSection::MergeTailSection(StringRef Name, uint32_t Type,
2437 uint64_t Flags, uint32_t Alignment)
2438 : MergeSyntheticSection(Name, Type, Flags, Alignment),
2439 Builder(StringTableBuilder::RAW, Alignment) {}
Rui Ueyamae26b7aa2017-09-26 00:54:24 +00002440
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002441size_t MergeTailSection::getSize() const { return Builder.getSize(); }
2442
2443void MergeTailSection::writeTo(uint8_t *Buf) { Builder.write(Buf); }
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002444
Rui Ueyamae26b7aa2017-09-26 00:54:24 +00002445void MergeTailSection::finalizeContents() {
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002446 // Add all string pieces to the string table builder to create section
2447 // contents.
Rafael Espindola6119b862017-03-06 20:23:56 +00002448 for (MergeInputSection *Sec : Sections)
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002449 for (size_t I = 0, E = Sec->Pieces.size(); I != E; ++I)
2450 if (Sec->Pieces[I].Live)
2451 Builder.add(Sec->getData(I));
2452
2453 // Fix the string table content. After this, the contents will never change.
2454 Builder.finalize();
2455
2456 // finalize() fixed tail-optimized strings, so we can now get
2457 // offsets of strings. Get an offset for each string and save it
2458 // to a corresponding StringPiece for easy access.
Rafael Espindola7bd45502018-04-05 00:01:57 +00002459 for (MergeInputSection *Sec : Sections)
2460 for (size_t I = 0, E = Sec->Pieces.size(); I != E; ++I)
2461 if (Sec->Pieces[I].Live)
2462 Sec->Pieces[I].OutputOff = Builder.getOffset(Sec->getData(I));
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002463}
2464
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002465void MergeNoTailSection::writeTo(uint8_t *Buf) {
2466 for (size_t I = 0; I < NumShards; ++I)
2467 Shards[I].write(Buf + ShardOffsets[I]);
2468}
2469
2470// This function is very hot (i.e. it can take several seconds to finish)
2471// because sometimes the number of inputs is in an order of magnitude of
2472// millions. So, we use multi-threading.
2473//
2474// For any strings S and T, we know S is not mergeable with T if S's hash
2475// value is different from T's. If that's the case, we can safely put S and
2476// T into different string builders without worrying about merge misses.
2477// We do it in parallel.
Rui Ueyamae26b7aa2017-09-26 00:54:24 +00002478void MergeNoTailSection::finalizeContents() {
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002479 // Initializes string table builders.
2480 for (size_t I = 0; I < NumShards; ++I)
2481 Shards.emplace_back(StringTableBuilder::RAW, Alignment);
2482
Rui Ueyamaf3f9bae2017-10-03 00:45:24 +00002483 // Concurrency level. Must be a power of 2 to avoid expensive modulo
2484 // operations in the following tight loop.
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002485 size_t Concurrency = 1;
Bob Haarman4f5c8c22017-10-13 18:22:55 +00002486 if (ThreadsEnabled)
Rafael Espindola0038dfa2017-10-04 20:35:05 +00002487 Concurrency =
2488 std::min<size_t>(PowerOf2Floor(hardware_concurrency()), NumShards);
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002489
2490 // Add section pieces to the builders.
2491 parallelForEachN(0, Concurrency, [&](size_t ThreadId) {
2492 for (MergeInputSection *Sec : Sections) {
2493 for (size_t I = 0, E = Sec->Pieces.size(); I != E; ++I) {
Rui Ueyama95bf5092017-10-21 23:20:13 +00002494 size_t ShardId = getShardId(Sec->Pieces[I].Hash);
Dimitry Andric656714a2018-01-11 08:03:22 +00002495 if ((ShardId & (Concurrency - 1)) == ThreadId && Sec->Pieces[I].Live)
Rui Ueyama95bf5092017-10-21 23:20:13 +00002496 Sec->Pieces[I].OutputOff = Shards[ShardId].add(Sec->getData(I));
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002497 }
2498 }
2499 });
2500
2501 // Compute an in-section offset for each shard.
2502 size_t Off = 0;
2503 for (size_t I = 0; I < NumShards; ++I) {
2504 Shards[I].finalizeInOrder();
2505 if (Shards[I].getSize() > 0)
2506 Off = alignTo(Off, Alignment);
2507 ShardOffsets[I] = Off;
2508 Off += Shards[I].getSize();
2509 }
2510 Size = Off;
2511
2512 // So far, section pieces have offsets from beginning of shards, but
2513 // we want offsets from beginning of the whole section. Fix them.
2514 parallelForEach(Sections, [&](MergeInputSection *Sec) {
Rafael Espindola7bd45502018-04-05 00:01:57 +00002515 for (size_t I = 0, E = Sec->Pieces.size(); I != E; ++I)
2516 if (Sec->Pieces[I].Live)
2517 Sec->Pieces[I].OutputOff +=
2518 ShardOffsets[getShardId(Sec->Pieces[I].Hash)];
Rui Ueyamac97a70c2017-09-30 11:46:26 +00002519 });
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002520}
2521
Rui Ueyamae26b7aa2017-09-26 00:54:24 +00002522static MergeSyntheticSection *createMergeSynthetic(StringRef Name,
2523 uint32_t Type,
2524 uint64_t Flags,
2525 uint32_t Alignment) {
2526 bool ShouldTailMerge = (Flags & SHF_STRINGS) && Config->Optimize >= 2;
2527 if (ShouldTailMerge)
2528 return make<MergeTailSection>(Name, Type, Flags, Alignment);
2529 return make<MergeNoTailSection>(Name, Type, Flags, Alignment);
Rafael Espindola9e9754b2017-02-03 13:06:18 +00002530}
2531
Rui Ueyamaac114d22018-02-12 21:56:14 +00002532// Debug sections may be compressed by zlib. Decompress if exists.
Rui Ueyama2b714b52017-10-11 03:12:53 +00002533void elf::decompressSections() {
Rafael Espindola9bf10062018-04-27 16:29:57 +00002534 parallelForEach(InputSections,
2535 [](InputSectionBase *Sec) { Sec->maybeDecompress(); });
2536}
2537
Rafael Espindolaf1652d42018-04-27 18:17:36 +00002538template <class ELFT> void elf::splitSections() {
Rafael Espindola9bf10062018-04-27 16:29:57 +00002539 // splitIntoPieces needs to be called on each MergeInputSection
2540 // before calling finalizeContents().
Rui Ueyama2b714b52017-10-11 03:12:53 +00002541 parallelForEach(InputSections, [](InputSectionBase *Sec) {
Rafael Espindola9bf10062018-04-27 16:29:57 +00002542 if (auto *S = dyn_cast<MergeInputSection>(Sec))
2543 S->splitIntoPieces();
Rafael Espindolaf1652d42018-04-27 18:17:36 +00002544 else if (auto *Eh = dyn_cast<EhInputSection>(Sec))
2545 Eh->split<ELFT>();
Rui Ueyama2b714b52017-10-11 03:12:53 +00002546 });
2547}
2548
2549// This function scans over the inputsections to create mergeable
2550// synthetic sections.
2551//
2552// It removes MergeInputSections from the input section array and adds
2553// new synthetic sections at the location of the first input section
2554// that it replaces. It then finalizes each synthetic section in order
2555// to compute an output offset for each piece of each input section.
2556void elf::mergeSections() {
Peter Collingbournedc7936e2017-06-12 00:00:51 +00002557 std::vector<MergeSyntheticSection *> MergeSections;
2558 for (InputSectionBase *&S : InputSections) {
2559 MergeInputSection *MS = dyn_cast<MergeInputSection>(S);
2560 if (!MS)
2561 continue;
2562
2563 // We do not want to handle sections that are not alive, so just remove
2564 // them instead of trying to merge.
2565 if (!MS->Live)
2566 continue;
2567
George Rimar78e27e82017-12-01 09:04:52 +00002568 StringRef OutsecName = getOutputSectionName(MS);
Peter Collingbournedc7936e2017-06-12 00:00:51 +00002569 uint32_t Alignment = std::max<uint32_t>(MS->Alignment, MS->Entsize);
2570
2571 auto I = llvm::find_if(MergeSections, [=](MergeSyntheticSection *Sec) {
Rafael Espindolaa5d43d02017-11-15 16:56:20 +00002572 // While we could create a single synthetic section for two different
2573 // values of Entsize, it is better to take Entsize into consideration.
2574 //
2575 // With a single synthetic section no two pieces with different Entsize
2576 // could be equal, so we may as well have two sections.
2577 //
2578 // Using Entsize in here also allows us to propagate it to the synthetic
2579 // section.
Rui Ueyamabc2c9e02017-07-20 21:42:30 +00002580 return Sec->Name == OutsecName && Sec->Flags == MS->Flags &&
Rafael Espindolaa5d43d02017-11-15 16:56:20 +00002581 Sec->Entsize == MS->Entsize && Sec->Alignment == Alignment;
Peter Collingbournedc7936e2017-06-12 00:00:51 +00002582 });
2583 if (I == MergeSections.end()) {
Rui Ueyamae26b7aa2017-09-26 00:54:24 +00002584 MergeSyntheticSection *Syn =
2585 createMergeSynthetic(OutsecName, MS->Type, MS->Flags, Alignment);
Peter Collingbournedc7936e2017-06-12 00:00:51 +00002586 MergeSections.push_back(Syn);
2587 I = std::prev(MergeSections.end());
2588 S = Syn;
Rafael Espindolaa5d43d02017-11-15 16:56:20 +00002589 Syn->Entsize = MS->Entsize;
Peter Collingbournedc7936e2017-06-12 00:00:51 +00002590 } else {
2591 S = nullptr;
2592 }
2593 (*I)->addSection(MS);
2594 }
Rafael Espindola6cd7af52018-04-03 21:38:18 +00002595 for (auto *MS : MergeSections)
Peter Collingbournedc7936e2017-06-12 00:00:51 +00002596 MS->finalizeContents();
2597
2598 std::vector<InputSectionBase *> &V = InputSections;
2599 V.erase(std::remove(V.begin(), V.end(), nullptr), V.end());
2600}
2601
George Rimar42886c42017-03-15 12:02:31 +00002602MipsRldMapSection::MipsRldMapSection()
Rui Ueyamad57e74b72017-03-17 23:29:01 +00002603 : SyntheticSection(SHF_ALLOC | SHF_WRITE, SHT_PROGBITS, Config->Wordsize,
2604 ".rld_map") {}
Eugene Leviant17b7a572016-11-22 17:49:14 +00002605
George Rimar90a528b2017-03-21 09:01:39 +00002606ARMExidxSentinelSection::ARMExidxSentinelSection()
Rui Ueyama9320cb02017-02-27 02:56:02 +00002607 : SyntheticSection(SHF_ALLOC | SHF_LINK_ORDER, SHT_ARM_EXIDX,
George Rimar90a528b2017-03-21 09:01:39 +00002608 Config->Wordsize, ".ARM.exidx") {}
Peter Smith719eb8e2016-11-24 11:43:55 +00002609
2610// Write a terminating sentinel entry to the end of the .ARM.exidx table.
2611// This section will have been sorted last in the .ARM.exidx table.
2612// This table entry will have the form:
2613// | PREL31 upper bound of code that has exception tables | EXIDX_CANTUNWIND |
Peter Smithea79b212017-05-31 09:02:21 +00002614// The sentinel must have the PREL31 value of an address higher than any
2615// address described by any other table entry.
George Rimar90a528b2017-03-21 09:01:39 +00002616void ARMExidxSentinelSection::writeTo(uint8_t *Buf) {
Igor Kudrinf01caab2017-12-14 06:23:50 +00002617 assert(Highest);
Rafael Espindola4f058a22018-03-24 00:35:11 +00002618 uint64_t S = Highest->getVA(Highest->getSize());
Peter Smithea79b212017-05-31 09:02:21 +00002619 uint64_t P = getVA();
Peter Smith719eb8e2016-11-24 11:43:55 +00002620 Target->relocateOne(Buf, R_ARM_PREL31, S - P);
Rui Ueyama79048e42017-10-27 03:59:34 +00002621 write32le(Buf + 4, 1);
Peter Smith719eb8e2016-11-24 11:43:55 +00002622}
2623
Igor Kudrin5966d152017-12-20 08:56:10 +00002624// The sentinel has to be removed if there are no other .ARM.exidx entries.
2625bool ARMExidxSentinelSection::empty() const {
George Rimar563e4f22018-02-22 09:55:28 +00002626 for (InputSection *IS : getInputSections(getParent()))
2627 if (!isa<ARMExidxSentinelSection>(IS))
2628 return false;
Igor Kudrin5966d152017-12-20 08:56:10 +00002629 return true;
2630}
2631
George Rimar7b827042017-03-16 10:40:50 +00002632ThunkSection::ThunkSection(OutputSection *OS, uint64_t Off)
Rui Ueyama9320cb02017-02-27 02:56:02 +00002633 : SyntheticSection(SHF_ALLOC | SHF_EXECINSTR, SHT_PROGBITS,
Rui Ueyamad57e74b72017-03-17 23:29:01 +00002634 Config->Wordsize, ".text.thunk") {
Rafael Espindoladb5e56f2017-05-31 20:17:44 +00002635 this->Parent = OS;
Peter Smith3a52eb02017-02-01 10:26:03 +00002636 this->OutSecOff = Off;
2637}
2638
George Rimar7b827042017-03-16 10:40:50 +00002639void ThunkSection::addThunk(Thunk *T) {
Peter Smith3a52eb02017-02-01 10:26:03 +00002640 Thunks.push_back(T);
2641 T->addSymbols(*this);
Peter Smith3a52eb02017-02-01 10:26:03 +00002642}
2643
George Rimar7b827042017-03-16 10:40:50 +00002644void ThunkSection::writeTo(uint8_t *Buf) {
Peter Collingbournecebab4a2018-03-28 21:33:31 +00002645 for (Thunk *T : Thunks)
2646 T->writeTo(Buf + T->Offset);
Peter Smith3a52eb02017-02-01 10:26:03 +00002647}
2648
George Rimar7b827042017-03-16 10:40:50 +00002649InputSection *ThunkSection::getTargetInputSection() const {
Peter Smithf0c70f82017-10-27 08:58:28 +00002650 if (Thunks.empty())
2651 return nullptr;
George Rimar7b827042017-03-16 10:40:50 +00002652 const Thunk *T = Thunks.front();
Peter Smith3a52eb02017-02-01 10:26:03 +00002653 return T->getTargetInputSection();
2654}
2655
Peter Collingbournec5391ce2018-03-29 22:32:13 +00002656bool ThunkSection::assignOffsets() {
2657 uint64_t Off = 0;
2658 for (Thunk *T : Thunks) {
2659 Off = alignTo(Off, T->Alignment);
2660 T->setOffset(Off);
2661 uint32_t Size = T->size();
2662 T->getThunkTargetSym()->Size = Size;
2663 Off += Size;
2664 }
2665 bool Changed = Off != Size;
2666 Size = Off;
2667 return Changed;
2668}
2669
George Rimar9782ca52017-03-15 15:29:29 +00002670InputSection *InX::ARMAttributes;
George Rimar1ab9cf42017-03-17 10:14:53 +00002671BssSection *InX::Bss;
2672BssSection *InX::BssRelRo;
George Rimar6c2949d2017-03-20 16:40:21 +00002673BuildIdSection *InX::BuildId;
Rui Ueyama02551ab2017-10-27 03:14:24 +00002674EhFrameHeader *InX::EhFrameHdr;
Rui Ueyama572247f2017-10-27 03:13:39 +00002675EhFrameSection *InX::EhFrame;
Rafael Espindola5ab19892017-05-11 23:16:43 +00002676SyntheticSection *InX::Dynamic;
George Rimar9782ca52017-03-15 15:29:29 +00002677StringTableSection *InX::DynStrTab;
George Rimarf45f6812017-05-16 08:53:30 +00002678SymbolTableBaseSection *InX::DynSymTab;
George Rimar9782ca52017-03-15 15:29:29 +00002679InputSection *InX::Interp;
George Rimar35e846e2017-03-21 08:19:34 +00002680GdbIndexSection *InX::GdbIndex;
Rafael Espindolaa6465bb2017-05-18 16:45:36 +00002681GotSection *InX::Got;
George Rimar9782ca52017-03-15 15:29:29 +00002682GotPltSection *InX::GotPlt;
George Rimarf45f6812017-05-16 08:53:30 +00002683GnuHashTableSection *InX::GnuHashTab;
George Rimaraaf54712017-09-27 09:14:59 +00002684HashTableSection *InX::HashTab;
George Rimar9782ca52017-03-15 15:29:29 +00002685IgotPltSection *InX::IgotPlt;
George Rimar14534eb2017-03-20 16:44:28 +00002686MipsGotSection *InX::MipsGot;
George Rimar9782ca52017-03-15 15:29:29 +00002687MipsRldMapSection *InX::MipsRldMap;
George Rimardfc020e2017-03-17 11:01:57 +00002688PltSection *InX::Plt;
2689PltSection *InX::Iplt;
Rafael Espindola58946cd2017-12-10 19:44:42 +00002690RelocationBaseSection *InX::RelaDyn;
Rafael Espindola87e0dea2017-12-10 20:07:03 +00002691RelocationBaseSection *InX::RelaPlt;
2692RelocationBaseSection *InX::RelaIplt;
George Rimar9782ca52017-03-15 15:29:29 +00002693StringTableSection *InX::ShStrTab;
2694StringTableSection *InX::StrTab;
George Rimarf45f6812017-05-16 08:53:30 +00002695SymbolTableBaseSection *InX::SymTab;
George Rimar9782ca52017-03-15 15:29:29 +00002696
Rafael Espindola300b3862017-07-12 23:56:53 +00002697template GdbIndexSection *elf::createGdbIndex<ELF32LE>();
2698template GdbIndexSection *elf::createGdbIndex<ELF32BE>();
2699template GdbIndexSection *elf::createGdbIndex<ELF64LE>();
2700template GdbIndexSection *elf::createGdbIndex<ELF64BE>();
2701
Rafael Espindolaf1652d42018-04-27 18:17:36 +00002702template void elf::splitSections<ELF32LE>();
2703template void elf::splitSections<ELF32BE>();
2704template void elf::splitSections<ELF64LE>();
2705template void elf::splitSections<ELF64BE>();
2706
Rui Ueyama572247f2017-10-27 03:13:39 +00002707template void EhFrameSection::addSection<ELF32LE>(InputSectionBase *);
2708template void EhFrameSection::addSection<ELF32BE>(InputSectionBase *);
2709template void EhFrameSection::addSection<ELF64LE>(InputSectionBase *);
2710template void EhFrameSection::addSection<ELF64BE>(InputSectionBase *);
2711
Rui Ueyamaf52496e2017-11-03 21:21:47 +00002712template void PltSection::addEntry<ELF32LE>(Symbol &Sym);
2713template void PltSection::addEntry<ELF32BE>(Symbol &Sym);
2714template void PltSection::addEntry<ELF64LE>(Symbol &Sym);
2715template void PltSection::addEntry<ELF64BE>(Symbol &Sym);
George Rimara9189572017-03-17 16:50:07 +00002716
Simon Atanasyanfa03b0f2016-11-09 21:37:06 +00002717template class elf::MipsAbiFlagsSection<ELF32LE>;
2718template class elf::MipsAbiFlagsSection<ELF32BE>;
2719template class elf::MipsAbiFlagsSection<ELF64LE>;
2720template class elf::MipsAbiFlagsSection<ELF64BE>;
2721
Simon Atanasyance02cf02016-11-09 21:36:56 +00002722template class elf::MipsOptionsSection<ELF32LE>;
2723template class elf::MipsOptionsSection<ELF32BE>;
2724template class elf::MipsOptionsSection<ELF64LE>;
2725template class elf::MipsOptionsSection<ELF64BE>;
2726
2727template class elf::MipsReginfoSection<ELF32LE>;
2728template class elf::MipsReginfoSection<ELF32BE>;
2729template class elf::MipsReginfoSection<ELF64LE>;
2730template class elf::MipsReginfoSection<ELF64BE>;
2731
Eugene Leviant6380ce22016-11-15 12:26:55 +00002732template class elf::DynamicSection<ELF32LE>;
2733template class elf::DynamicSection<ELF32BE>;
2734template class elf::DynamicSection<ELF64LE>;
2735template class elf::DynamicSection<ELF64BE>;
Eugene Levianta96d9022016-11-16 10:02:27 +00002736
2737template class elf::RelocationSection<ELF32LE>;
2738template class elf::RelocationSection<ELF32BE>;
2739template class elf::RelocationSection<ELF64LE>;
2740template class elf::RelocationSection<ELF64BE>;
Eugene Leviant9230db92016-11-17 09:16:34 +00002741
Peter Collingbourne5c54f152017-10-27 17:49:40 +00002742template class elf::AndroidPackedRelocationSection<ELF32LE>;
2743template class elf::AndroidPackedRelocationSection<ELF32BE>;
2744template class elf::AndroidPackedRelocationSection<ELF64LE>;
2745template class elf::AndroidPackedRelocationSection<ELF64BE>;
2746
Eugene Leviant9230db92016-11-17 09:16:34 +00002747template class elf::SymbolTableSection<ELF32LE>;
2748template class elf::SymbolTableSection<ELF32BE>;
2749template class elf::SymbolTableSection<ELF64LE>;
2750template class elf::SymbolTableSection<ELF64BE>;
Eugene Leviantbe809a72016-11-18 06:44:18 +00002751
Eugene Leviante9bab5d2016-11-21 16:59:33 +00002752template class elf::VersionTableSection<ELF32LE>;
2753template class elf::VersionTableSection<ELF32BE>;
2754template class elf::VersionTableSection<ELF64LE>;
2755template class elf::VersionTableSection<ELF64BE>;
2756
2757template class elf::VersionNeedSection<ELF32LE>;
2758template class elf::VersionNeedSection<ELF32BE>;
2759template class elf::VersionNeedSection<ELF64LE>;
2760template class elf::VersionNeedSection<ELF64BE>;
2761
2762template class elf::VersionDefinitionSection<ELF32LE>;
2763template class elf::VersionDefinitionSection<ELF32BE>;
2764template class elf::VersionDefinitionSection<ELF64LE>;
2765template class elf::VersionDefinitionSection<ELF64BE>;