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Michael J. Spencer84487f12015-07-24 21:03:07 +00001//===- SymbolTable.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//===----------------------------------------------------------------------===//
Rui Ueyama34f29242015-10-13 19:51:57 +00009//
10// Symbol table is a bag of all known symbols. We put all symbols of
Rui Ueyamac9559d92016-01-05 20:47:37 +000011// all input files to the symbol table. The symbol table is basically
Rui Ueyama34f29242015-10-13 19:51:57 +000012// a hash table with the logic to resolve symbol name conflicts using
13// the symbol types.
14//
15//===----------------------------------------------------------------------===//
Michael J. Spencer84487f12015-07-24 21:03:07 +000016
17#include "SymbolTable.h"
Rafael Espindola4340aad2015-09-11 22:42:45 +000018#include "Config.h"
Rafael Espindola192e1fa2015-08-06 15:08:23 +000019#include "Error.h"
Davide Italiano8e1131d2016-06-29 02:46:51 +000020#include "LinkerScript.h"
George Rimar7899d482016-07-12 07:44:40 +000021#include "SymbolListFile.h"
Michael J. Spencer84487f12015-07-24 21:03:07 +000022#include "Symbols.h"
Rafael Espindola9f77ef02016-02-12 20:54:57 +000023#include "llvm/Bitcode/ReaderWriter.h"
Rui Ueyamadeb15402016-01-07 17:20:07 +000024#include "llvm/Support/StringSaver.h"
Michael J. Spencer84487f12015-07-24 21:03:07 +000025
26using namespace llvm;
Rafael Espindoladaa92a62015-08-31 01:16:19 +000027using namespace llvm::object;
Rafael Espindola01205f72015-09-22 18:19:46 +000028using namespace llvm::ELF;
Michael J. Spencer84487f12015-07-24 21:03:07 +000029
30using namespace lld;
Rafael Espindolae0df00b2016-02-28 00:25:54 +000031using namespace lld::elf;
Michael J. Spencer84487f12015-07-24 21:03:07 +000032
Rui Ueyamac9559d92016-01-05 20:47:37 +000033// All input object files must be for the same architecture
34// (e.g. it does not make sense to link x86 object files with
35// MIPS object files.) This function checks for that error.
George Rimardbbf60e2016-06-29 09:46:00 +000036template <class ELFT> static bool isCompatible(InputFile *F) {
37 if (!isa<ELFFileBase<ELFT>>(F) && !isa<BitcodeFile>(F))
Rui Ueyama16ba6692016-01-29 19:41:13 +000038 return true;
Rui Ueyama5e64d3f2016-06-29 01:30:50 +000039 if (F->EKind == Config->EKind && F->EMachine == Config->EMachine)
Rui Ueyama16ba6692016-01-29 19:41:13 +000040 return true;
Rui Ueyama25b44c92015-12-16 23:31:22 +000041 StringRef A = F->getName();
42 StringRef B = Config->Emulation;
43 if (B.empty())
44 B = Config->FirstElf->getName();
Rui Ueyama16ba6692016-01-29 19:41:13 +000045 error(A + " is incompatible with " + B);
46 return false;
Rui Ueyama25b44c92015-12-16 23:31:22 +000047}
48
Rui Ueyamac9559d92016-01-05 20:47:37 +000049// Add symbols in File to the symbol table.
Rui Ueyama25b44c92015-12-16 23:31:22 +000050template <class ELFT>
Rui Ueyama3ce825e2015-10-09 21:07:25 +000051void SymbolTable<ELFT>::addFile(std::unique_ptr<InputFile> File) {
Rafael Espindola21f7bd42015-12-23 14:35:51 +000052 InputFile *FileP = File.get();
Rui Ueyama16ba6692016-01-29 19:41:13 +000053 if (!isCompatible<ELFT>(FileP))
54 return;
Rafael Espindola525914d2015-10-11 03:36:49 +000055
Michael J. Spencera9424f32016-09-09 22:08:04 +000056 // Binary file
57 if (auto *F = dyn_cast<BinaryFile>(FileP)) {
58 addFile(F->createELF<ELFT>());
59 return;
60 }
61
Rui Ueyama89575742015-12-16 22:59:13 +000062 // .a file
63 if (auto *F = dyn_cast<ArchiveFile>(FileP)) {
Rafael Espindola21f7bd42015-12-23 14:35:51 +000064 ArchiveFiles.emplace_back(cast<ArchiveFile>(File.release()));
Peter Collingbourne4f952702016-05-01 04:55:03 +000065 F->parse<ELFT>();
Michael J. Spencer1b348a62015-09-04 22:28:10 +000066 return;
67 }
Rui Ueyama3d451792015-10-12 18:03:21 +000068
George Rimar2a78fce2016-04-13 18:07:57 +000069 // Lazy object file
70 if (auto *F = dyn_cast<LazyObjectFile>(FileP)) {
71 LazyObjectFiles.emplace_back(cast<LazyObjectFile>(File.release()));
Peter Collingbourne4f952702016-05-01 04:55:03 +000072 F->parse<ELFT>();
George Rimar2a78fce2016-04-13 18:07:57 +000073 return;
74 }
75
76 if (Config->Trace)
Rui Ueyama818bb2f2016-07-16 18:55:47 +000077 outs() << getFilename(FileP) << "\n";
George Rimar2a78fce2016-04-13 18:07:57 +000078
Rui Ueyama89575742015-12-16 22:59:13 +000079 // .so file
80 if (auto *F = dyn_cast<SharedFile<ELFT>>(FileP)) {
81 // DSOs are uniquified not by filename but by soname.
82 F->parseSoName();
Rui Ueyama131e0ff2016-01-08 22:17:42 +000083 if (!SoNames.insert(F->getSoName()).second)
Rafael Espindola6a3b5de2015-10-01 19:52:48 +000084 return;
Rui Ueyama89575742015-12-16 22:59:13 +000085
Rafael Espindola21f7bd42015-12-23 14:35:51 +000086 SharedFiles.emplace_back(cast<SharedFile<ELFT>>(File.release()));
Rui Ueyama7c713312016-01-06 01:56:36 +000087 F->parseRest();
Rui Ueyama89575742015-12-16 22:59:13 +000088 return;
Rafael Espindola6a3b5de2015-10-01 19:52:48 +000089 }
Rui Ueyama89575742015-12-16 22:59:13 +000090
Rui Ueyamaf8baa662016-04-07 19:24:51 +000091 // LLVM bitcode file
Rafael Espindola9f77ef02016-02-12 20:54:57 +000092 if (auto *F = dyn_cast<BitcodeFile>(FileP)) {
93 BitcodeFiles.emplace_back(cast<BitcodeFile>(File.release()));
Peter Collingbourne4f952702016-05-01 04:55:03 +000094 F->parse<ELFT>(ComdatGroups);
Rafael Espindola9f77ef02016-02-12 20:54:57 +000095 return;
96 }
97
Rui Ueyamaf8baa662016-04-07 19:24:51 +000098 // Regular object file
Rui Ueyama89575742015-12-16 22:59:13 +000099 auto *F = cast<ObjectFile<ELFT>>(FileP);
Rafael Espindola21f7bd42015-12-23 14:35:51 +0000100 ObjectFiles.emplace_back(cast<ObjectFile<ELFT>>(File.release()));
Rui Ueyama52d3b672016-01-06 02:06:33 +0000101 F->parse(ComdatGroups);
Michael J. Spencer84487f12015-07-24 21:03:07 +0000102}
103
Rui Ueyama42554752016-04-23 00:26:32 +0000104// This function is where all the optimizations of link-time
105// optimization happens. When LTO is in use, some input files are
106// not in native object file format but in the LLVM bitcode format.
107// This function compiles bitcode files into a few big native files
108// using LLVM functions and replaces bitcode symbols with the results.
109// Because all bitcode files that consist of a program are passed
110// to the compiler at once, it can do whole-program optimization.
Rafael Espindola9f77ef02016-02-12 20:54:57 +0000111template <class ELFT> void SymbolTable<ELFT>::addCombinedLtoObject() {
112 if (BitcodeFiles.empty())
113 return;
Rui Ueyama25992482016-03-22 20:52:10 +0000114
115 // Compile bitcode files.
116 Lto.reset(new BitcodeCompiler);
117 for (const std::unique_ptr<BitcodeFile> &F : BitcodeFiles)
118 Lto->add(*F);
Davide Italianobc176632016-04-15 22:38:10 +0000119 std::vector<std::unique_ptr<InputFile>> IFs = Lto->compile();
Rui Ueyama25992482016-03-22 20:52:10 +0000120
121 // Replace bitcode symbols.
Davide Italianobc176632016-04-15 22:38:10 +0000122 for (auto &IF : IFs) {
123 ObjectFile<ELFT> *Obj = cast<ObjectFile<ELFT>>(IF.release());
124
Rui Ueyama818bb2f2016-07-16 18:55:47 +0000125 DenseSet<StringRef> DummyGroups;
Davide Italianobc176632016-04-15 22:38:10 +0000126 Obj->parse(DummyGroups);
Davide Italianobc176632016-04-15 22:38:10 +0000127 ObjectFiles.emplace_back(Obj);
Rafael Espindola9f77ef02016-02-12 20:54:57 +0000128 }
129}
130
Rafael Espindola0e604f92015-09-25 18:56:53 +0000131template <class ELFT>
Rafael Espindolaccfe3cb2016-04-04 14:04:16 +0000132DefinedRegular<ELFT> *SymbolTable<ELFT>::addAbsolute(StringRef Name,
133 uint8_t Visibility) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000134 return cast<DefinedRegular<ELFT>>(
135 addRegular(Name, STB_GLOBAL, Visibility)->body());
Rafael Espindola0e604f92015-09-25 18:56:53 +0000136}
137
Rui Ueyamac9559d92016-01-05 20:47:37 +0000138// Add Name as an "ignored" symbol. An ignored symbol is a regular
Rafael Espindolaccfe3cb2016-04-04 14:04:16 +0000139// linker-synthesized defined symbol, but is only defined if needed.
Simon Atanasyan09dae7c2015-12-16 14:45:09 +0000140template <class ELFT>
Rafael Espindolaccfe3cb2016-04-04 14:04:16 +0000141DefinedRegular<ELFT> *SymbolTable<ELFT>::addIgnored(StringRef Name,
142 uint8_t Visibility) {
143 if (!find(Name))
144 return nullptr;
145 return addAbsolute(Name, Visibility);
Rafael Espindola5d413262015-10-01 21:22:26 +0000146}
147
Rui Ueyama69c778c2016-07-17 17:50:09 +0000148// Set a flag for --trace-symbol so that we can print out a log message
149// if a new symbol with the same name is inserted into the symbol table.
150template <class ELFT> void SymbolTable<ELFT>::trace(StringRef Name) {
Rui Ueyamae3357902016-07-18 01:35:00 +0000151 Symtab.insert({Name, {-1, true}});
Rui Ueyama69c778c2016-07-17 17:50:09 +0000152}
153
Rui Ueyamadeb15402016-01-07 17:20:07 +0000154// Rename SYM as __wrap_SYM. The original symbol is preserved as __real_SYM.
155// Used to implement --wrap.
156template <class ELFT> void SymbolTable<ELFT>::wrap(StringRef Name) {
Rui Ueyama1b70d662016-04-28 00:03:38 +0000157 SymbolBody *B = find(Name);
158 if (!B)
Rui Ueyamadeb15402016-01-07 17:20:07 +0000159 return;
160 StringSaver Saver(Alloc);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000161 Symbol *Sym = B->symbol();
162 Symbol *Real = addUndefined(Saver.save("__real_" + Name));
163 Symbol *Wrap = addUndefined(Saver.save("__wrap_" + Name));
164 // We rename symbols by replacing the old symbol's SymbolBody with the new
165 // symbol's SymbolBody. This causes all SymbolBody pointers referring to the
166 // old symbol to instead refer to the new symbol.
167 memcpy(Real->Body.buffer, Sym->Body.buffer, sizeof(Sym->Body));
168 memcpy(Sym->Body.buffer, Wrap->Body.buffer, sizeof(Wrap->Body));
Rui Ueyamadeb15402016-01-07 17:20:07 +0000169}
170
Peter Collingbournedadcc172016-04-22 18:42:48 +0000171static uint8_t getMinVisibility(uint8_t VA, uint8_t VB) {
172 if (VA == STV_DEFAULT)
173 return VB;
174 if (VB == STV_DEFAULT)
175 return VA;
176 return std::min(VA, VB);
177}
178
Rui Ueyamadace8382016-07-21 13:13:21 +0000179// Parses a symbol in the form of <name>@<version> or <name>@@<version>.
180static std::pair<StringRef, uint16_t> getSymbolVersion(StringRef S) {
181 if (Config->VersionDefinitions.empty())
182 return {S, Config->DefaultSymbolVersion};
183
184 size_t Pos = S.find('@');
185 if (Pos == 0 || Pos == StringRef::npos)
186 return {S, Config->DefaultSymbolVersion};
187
188 StringRef Name = S.substr(0, Pos);
189 StringRef Verstr = S.substr(Pos + 1);
190 if (Verstr.empty())
191 return {S, Config->DefaultSymbolVersion};
192
193 // '@@' in a symbol name means the default version.
194 // It is usually the most recent one.
195 bool IsDefault = (Verstr[0] == '@');
196 if (IsDefault)
197 Verstr = Verstr.substr(1);
198
199 for (VersionDefinition &V : Config->VersionDefinitions) {
200 if (V.Name == Verstr)
201 return {Name, IsDefault ? V.Id : (V.Id | VERSYM_HIDDEN)};
202 }
203
204 // It is an error if the specified version was not defined.
205 error("symbol " + S + " has undefined version " + Verstr);
206 return {S, Config->DefaultSymbolVersion};
207}
208
Rui Ueyamab4de5952016-01-08 22:01:33 +0000209// Find an existing symbol or create and insert a new one.
Peter Collingbourne4f952702016-05-01 04:55:03 +0000210template <class ELFT>
Rui Ueyamadace8382016-07-21 13:13:21 +0000211std::pair<Symbol *, bool> SymbolTable<ELFT>::insert(StringRef &Name) {
George Rimarb0841252016-07-20 14:26:48 +0000212 auto P = Symtab.insert({Name, SymIndex((int)SymVector.size(), false)});
Rui Ueyamae3357902016-07-18 01:35:00 +0000213 SymIndex &V = P.first->second;
Rui Ueyama69c778c2016-07-17 17:50:09 +0000214 bool IsNew = P.second;
215
Rui Ueyamae3357902016-07-18 01:35:00 +0000216 if (V.Idx == -1) {
217 IsNew = true;
George Rimarb0841252016-07-20 14:26:48 +0000218 V = SymIndex((int)SymVector.size(), true);
Rui Ueyamae3357902016-07-18 01:35:00 +0000219 }
220
Rafael Espindola7f0b7272016-04-14 20:42:43 +0000221 Symbol *Sym;
Rui Ueyama69c778c2016-07-17 17:50:09 +0000222 if (IsNew) {
Peter Collingbourne66ac1d62016-04-22 20:21:26 +0000223 Sym = new (Alloc) Symbol;
Peter Collingbourne4f952702016-05-01 04:55:03 +0000224 Sym->Binding = STB_WEAK;
Peter Collingbourne66ac1d62016-04-22 20:21:26 +0000225 Sym->Visibility = STV_DEFAULT;
226 Sym->IsUsedInRegularObj = false;
Davide Italiano35af5b32016-08-30 20:15:03 +0000227 Sym->HasUnnamedAddr = true;
Peter Collingbourne66ac1d62016-04-22 20:21:26 +0000228 Sym->ExportDynamic = false;
Rui Ueyamae3357902016-07-18 01:35:00 +0000229 Sym->Traced = V.Traced;
Rui Ueyamadace8382016-07-21 13:13:21 +0000230 std::tie(Name, Sym->VersionId) = getSymbolVersion(Name);
Rafael Espindola7f0b7272016-04-14 20:42:43 +0000231 SymVector.push_back(Sym);
232 } else {
Rui Ueyamae3357902016-07-18 01:35:00 +0000233 Sym = SymVector[V.Idx];
Rafael Espindola7f0b7272016-04-14 20:42:43 +0000234 }
Rui Ueyama69c778c2016-07-17 17:50:09 +0000235 return {Sym, IsNew};
Peter Collingbourne4f952702016-05-01 04:55:03 +0000236}
Peter Collingbournedadcc172016-04-22 18:42:48 +0000237
Peter Collingbourne4f952702016-05-01 04:55:03 +0000238// Find an existing symbol or create and insert a new one, then apply the given
239// attributes.
240template <class ELFT>
241std::pair<Symbol *, bool>
Rui Ueyamadace8382016-07-21 13:13:21 +0000242SymbolTable<ELFT>::insert(StringRef &Name, uint8_t Type, uint8_t Visibility,
Davide Italiano35af5b32016-08-30 20:15:03 +0000243 bool CanOmitFromDynSym, bool HasUnnamedAddr,
Rafael Espindola05098762016-08-31 13:49:23 +0000244 InputFile *File) {
245 bool IsUsedInRegularObj = !File || File->kind() == InputFile::ObjectKind;
Peter Collingbourne4f952702016-05-01 04:55:03 +0000246 Symbol *S;
247 bool WasInserted;
248 std::tie(S, WasInserted) = insert(Name);
249
Davide Italiano35af5b32016-08-30 20:15:03 +0000250 // Merge in the new unnamed_addr attribute.
251 S->HasUnnamedAddr &= HasUnnamedAddr;
Peter Collingbourne4f952702016-05-01 04:55:03 +0000252 // Merge in the new symbol's visibility.
253 S->Visibility = getMinVisibility(S->Visibility, Visibility);
254 if (!CanOmitFromDynSym && (Config->Shared || Config->ExportDynamic))
255 S->ExportDynamic = true;
256 if (IsUsedInRegularObj)
257 S->IsUsedInRegularObj = true;
Peter Collingbournef3a2b0e2016-05-03 18:03:47 +0000258 if (!WasInserted && S->body()->Type != SymbolBody::UnknownType &&
259 ((Type == STT_TLS) != S->body()->isTls()))
Peter Collingbourne4f952702016-05-01 04:55:03 +0000260 error("TLS attribute mismatch for symbol: " +
261 conflictMsg(S->body(), File));
262
263 return {S, WasInserted};
264}
265
266// Construct a string in the form of "Sym in File1 and File2".
267// Used to construct an error message.
268template <typename ELFT>
269std::string SymbolTable<ELFT>::conflictMsg(SymbolBody *Existing,
270 InputFile *NewFile) {
Rui Ueyamaf4d93382016-07-07 23:04:15 +0000271 std::string Sym = Existing->getName();
272 if (Config->Demangle)
273 Sym = demangle(Sym);
Rui Ueyama434b5612016-07-17 03:11:46 +0000274 return Sym + " in " + getFilename(Existing->File) + " and " +
Rui Ueyamaf4d93382016-07-07 23:04:15 +0000275 getFilename(NewFile);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000276}
277
278template <class ELFT> Symbol *SymbolTable<ELFT>::addUndefined(StringRef Name) {
279 return addUndefined(Name, STB_GLOBAL, STV_DEFAULT, /*Type*/ 0,
Davide Italiano35af5b32016-08-30 20:15:03 +0000280 /*CanOmitFromDynSym*/ false, /*HasUnnamedAddr*/ false,
281 /*File*/ nullptr);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000282}
283
284template <class ELFT>
285Symbol *SymbolTable<ELFT>::addUndefined(StringRef Name, uint8_t Binding,
286 uint8_t StOther, uint8_t Type,
Rafael Espindolacc70da32016-06-15 17:56:10 +0000287 bool CanOmitFromDynSym,
Davide Italiano35af5b32016-08-30 20:15:03 +0000288 bool HasUnnamedAddr, InputFile *File) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000289 Symbol *S;
290 bool WasInserted;
291 std::tie(S, WasInserted) =
Rafael Espindola05098762016-08-31 13:49:23 +0000292 insert(Name, Type, StOther & 3, CanOmitFromDynSym, HasUnnamedAddr, File);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000293 if (WasInserted) {
294 S->Binding = Binding;
Rui Ueyama434b5612016-07-17 03:11:46 +0000295 replaceBody<Undefined>(S, Name, StOther, Type, File);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000296 return S;
297 }
Peter Collingbourneca8c9942016-06-09 18:01:35 +0000298 if (Binding != STB_WEAK) {
299 if (S->body()->isShared() || S->body()->isLazy())
300 S->Binding = Binding;
301 if (auto *SS = dyn_cast<SharedSymbol<ELFT>>(S->body()))
Rui Ueyama434b5612016-07-17 03:11:46 +0000302 SS->file()->IsUsed = true;
Peter Collingbourneca8c9942016-06-09 18:01:35 +0000303 }
Peter Collingbourne4f952702016-05-01 04:55:03 +0000304 if (auto *L = dyn_cast<Lazy>(S->body())) {
305 // An undefined weak will not fetch archive members, but we have to remember
306 // its type. See also comment in addLazyArchive.
307 if (S->isWeak())
308 L->Type = Type;
Rui Ueyama434b5612016-07-17 03:11:46 +0000309 else if (auto F = L->fetch())
Peter Collingbourne4f952702016-05-01 04:55:03 +0000310 addFile(std::move(F));
311 }
312 return S;
313}
314
315// We have a new defined symbol with the specified binding. Return 1 if the new
316// symbol should win, -1 if the new symbol should lose, or 0 if both symbols are
317// strong defined symbols.
318static int compareDefined(Symbol *S, bool WasInserted, uint8_t Binding) {
319 if (WasInserted)
320 return 1;
321 SymbolBody *Body = S->body();
322 if (Body->isLazy() || Body->isUndefined() || Body->isShared())
323 return 1;
324 if (Binding == STB_WEAK)
325 return -1;
326 if (S->isWeak())
327 return 1;
328 return 0;
329}
330
331// We have a new non-common defined symbol with the specified binding. Return 1
332// if the new symbol should win, -1 if the new symbol should lose, or 0 if there
333// is a conflict. If the new symbol wins, also update the binding.
Eugene Leviant3e6b0272016-07-28 19:24:13 +0000334static int compareDefinedNonCommon(Symbol *S, bool WasInserted,
335 uint8_t Binding) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000336 if (int Cmp = compareDefined(S, WasInserted, Binding)) {
337 if (Cmp > 0)
338 S->Binding = Binding;
339 return Cmp;
340 }
Rafael Espindolae7553e42016-08-31 13:28:33 +0000341 if (isa<DefinedCommon>(S->body())) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000342 // Non-common symbols take precedence over common symbols.
343 if (Config->WarnCommon)
344 warning("common " + S->body()->getName() + " is overridden");
345 return 1;
346 }
347 return 0;
348}
349
350template <class ELFT>
351Symbol *SymbolTable<ELFT>::addCommon(StringRef N, uint64_t Size,
352 uint64_t Alignment, uint8_t Binding,
353 uint8_t StOther, uint8_t Type,
Davide Italiano35af5b32016-08-30 20:15:03 +0000354 bool HasUnnamedAddr, InputFile *File) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000355 Symbol *S;
356 bool WasInserted;
Rafael Espindola05098762016-08-31 13:49:23 +0000357 std::tie(S, WasInserted) = insert(
358 N, Type, StOther & 3, /*CanOmitFromDynSym*/ false, HasUnnamedAddr, File);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000359 int Cmp = compareDefined(S, WasInserted, Binding);
360 if (Cmp > 0) {
361 S->Binding = Binding;
Rafael Espindolae7553e42016-08-31 13:28:33 +0000362 replaceBody<DefinedCommon>(S, N, Size, Alignment, StOther, Type, File);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000363 } else if (Cmp == 0) {
Rafael Espindolae7553e42016-08-31 13:28:33 +0000364 auto *C = dyn_cast<DefinedCommon>(S->body());
Peter Collingbourne4f952702016-05-01 04:55:03 +0000365 if (!C) {
366 // Non-common symbols take precedence over common symbols.
367 if (Config->WarnCommon)
368 warning("common " + S->body()->getName() + " is overridden");
369 return S;
370 }
371
372 if (Config->WarnCommon)
373 warning("multiple common of " + S->body()->getName());
374
Rafael Espindola8db87292016-08-31 13:42:08 +0000375 Alignment = C->Alignment = std::max(C->Alignment, Alignment);
376 if (Size > C->Size)
377 replaceBody<DefinedCommon>(S, N, Size, Alignment, StOther, Type, File);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000378 }
379 return S;
380}
381
382template <class ELFT>
383void SymbolTable<ELFT>::reportDuplicate(SymbolBody *Existing,
384 InputFile *NewFile) {
385 std::string Msg = "duplicate symbol: " + conflictMsg(Existing, NewFile);
386 if (Config->AllowMultipleDefinition)
387 warning(Msg);
388 else
389 error(Msg);
390}
391
392template <typename ELFT>
393Symbol *SymbolTable<ELFT>::addRegular(StringRef Name, const Elf_Sym &Sym,
394 InputSectionBase<ELFT> *Section) {
395 Symbol *S;
396 bool WasInserted;
Rafael Espindola05098762016-08-31 13:49:23 +0000397 std::tie(S, WasInserted) =
398 insert(Name, Sym.getType(), Sym.getVisibility(),
399 /*CanOmitFromDynSym*/ false, /*HasUnnamedAddr*/ false,
400 Section ? Section->getFile() : nullptr);
Rafael Espindolae7553e42016-08-31 13:28:33 +0000401 int Cmp = compareDefinedNonCommon(S, WasInserted, Sym.getBinding());
Peter Collingbourne4f952702016-05-01 04:55:03 +0000402 if (Cmp > 0)
403 replaceBody<DefinedRegular<ELFT>>(S, Name, Sym, Section);
404 else if (Cmp == 0)
405 reportDuplicate(S->body(), Section->getFile());
406 return S;
407}
408
409template <typename ELFT>
410Symbol *SymbolTable<ELFT>::addRegular(StringRef Name, uint8_t Binding,
411 uint8_t StOther) {
412 Symbol *S;
413 bool WasInserted;
414 std::tie(S, WasInserted) =
415 insert(Name, STT_NOTYPE, StOther & 3, /*CanOmitFromDynSym*/ false,
Rafael Espindola05098762016-08-31 13:49:23 +0000416 /*HasUnnamedAddr*/ false, nullptr);
Rafael Espindolae7553e42016-08-31 13:28:33 +0000417 int Cmp = compareDefinedNonCommon(S, WasInserted, Binding);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000418 if (Cmp > 0)
419 replaceBody<DefinedRegular<ELFT>>(S, Name, StOther);
420 else if (Cmp == 0)
421 reportDuplicate(S->body(), nullptr);
422 return S;
423}
424
425template <typename ELFT>
426Symbol *SymbolTable<ELFT>::addSynthetic(StringRef N,
Peter Collingbourne6a422592016-05-03 01:21:08 +0000427 OutputSectionBase<ELFT> *Section,
George Rimare1937bb2016-08-19 15:36:32 +0000428 uintX_t Value, uint8_t StOther) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000429 Symbol *S;
430 bool WasInserted;
George Rimare1937bb2016-08-19 15:36:32 +0000431 std::tie(S, WasInserted) = insert(N, STT_NOTYPE, /*Visibility*/ StOther & 0x3,
432 /*CanOmitFromDynSym*/ false,
Rafael Espindola05098762016-08-31 13:49:23 +0000433 /*HasUnnamedAddr*/ false, nullptr);
Rafael Espindolae7553e42016-08-31 13:28:33 +0000434 int Cmp = compareDefinedNonCommon(S, WasInserted, STB_GLOBAL);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000435 if (Cmp > 0)
436 replaceBody<DefinedSynthetic<ELFT>>(S, N, Value, Section);
437 else if (Cmp == 0)
438 reportDuplicate(S->body(), nullptr);
439 return S;
440}
441
442template <typename ELFT>
443void SymbolTable<ELFT>::addShared(SharedFile<ELFT> *F, StringRef Name,
444 const Elf_Sym &Sym,
445 const typename ELFT::Verdef *Verdef) {
446 // DSO symbols do not affect visibility in the output, so we pass STV_DEFAULT
447 // as the visibility, which will leave the visibility in the symbol table
448 // unchanged.
449 Symbol *S;
450 bool WasInserted;
451 std::tie(S, WasInserted) =
452 insert(Name, Sym.getType(), STV_DEFAULT, /*CanOmitFromDynSym*/ true,
Rafael Espindola05098762016-08-31 13:49:23 +0000453 /*HasUnnamedAddr*/ false, F);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000454 // Make sure we preempt DSO symbols with default visibility.
455 if (Sym.getVisibility() == STV_DEFAULT)
456 S->ExportDynamic = true;
Peter Collingbourneca8c9942016-06-09 18:01:35 +0000457 if (WasInserted || isa<Undefined>(S->body())) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000458 replaceBody<SharedSymbol<ELFT>>(S, F, Name, Sym, Verdef);
Peter Collingbourneca8c9942016-06-09 18:01:35 +0000459 if (!S->isWeak())
460 F->IsUsed = true;
461 }
Peter Collingbourne4f952702016-05-01 04:55:03 +0000462}
463
464template <class ELFT>
Rafael Espindolacceb92a2016-08-30 20:53:26 +0000465Symbol *SymbolTable<ELFT>::addBitcode(StringRef Name, uint8_t Binding,
Peter Collingbourne4f952702016-05-01 04:55:03 +0000466 uint8_t StOther, uint8_t Type,
Davide Italiano35af5b32016-08-30 20:15:03 +0000467 bool CanOmitFromDynSym,
468 bool HasUnnamedAddr, BitcodeFile *F) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000469 Symbol *S;
470 bool WasInserted;
Davide Italiano35af5b32016-08-30 20:15:03 +0000471 std::tie(S, WasInserted) =
Rafael Espindola05098762016-08-31 13:49:23 +0000472 insert(Name, Type, StOther & 3, CanOmitFromDynSym, HasUnnamedAddr, F);
Rafael Espindolae7553e42016-08-31 13:28:33 +0000473 int Cmp = compareDefinedNonCommon(S, WasInserted, Binding);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000474 if (Cmp > 0)
Rafael Espindolaa6c97442016-08-31 12:30:34 +0000475 replaceBody<DefinedRegular<ELFT>>(S, Name, StOther, Type, F);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000476 else if (Cmp == 0)
477 reportDuplicate(S->body(), F);
478 return S;
Michael J. Spencer1b348a62015-09-04 22:28:10 +0000479}
Michael J. Spencer84487f12015-07-24 21:03:07 +0000480
Rui Ueyamaf8432d92015-10-13 16:34:14 +0000481template <class ELFT> SymbolBody *SymbolTable<ELFT>::find(StringRef Name) {
482 auto It = Symtab.find(Name);
483 if (It == Symtab.end())
484 return nullptr;
Rui Ueyamae3357902016-07-18 01:35:00 +0000485 SymIndex V = It->second;
486 if (V.Idx == -1)
487 return nullptr;
488 return SymVector[V.Idx]->body();
Michael J. Spencer1b348a62015-09-04 22:28:10 +0000489}
490
George Rimarc91930a2016-09-02 21:17:20 +0000491// Returns a list of defined symbols that match with a given regex.
Rui Ueyama3d451792015-10-12 18:03:21 +0000492template <class ELFT>
George Rimarc91930a2016-09-02 21:17:20 +0000493std::vector<SymbolBody *> SymbolTable<ELFT>::findAll(const Regex &Re) {
Rui Ueyama48e42512016-06-29 04:47:39 +0000494 std::vector<SymbolBody *> Res;
Rui Ueyamad6328522016-07-18 01:34:57 +0000495 for (Symbol *Sym : SymVector) {
496 SymbolBody *B = Sym->body();
George Rimarc91930a2016-09-02 21:17:20 +0000497 StringRef Name = B->getName();
498 if (!B->isUndefined() && const_cast<Regex &>(Re).match(Name))
Rui Ueyama48e42512016-06-29 04:47:39 +0000499 Res.push_back(B);
500 }
501 return Res;
Davide Italiano8e1131d2016-06-29 02:46:51 +0000502}
503
504template <class ELFT>
Rui Ueyama818bb2f2016-07-16 18:55:47 +0000505void SymbolTable<ELFT>::addLazyArchive(ArchiveFile *F,
506 const object::Archive::Symbol Sym) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000507 Symbol *S;
508 bool WasInserted;
Rui Ueyamadace8382016-07-21 13:13:21 +0000509 StringRef Name = Sym.getName();
510 std::tie(S, WasInserted) = insert(Name);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000511 if (WasInserted) {
Rafael Espindola07543a82016-06-14 21:40:23 +0000512 replaceBody<LazyArchive>(S, *F, Sym, SymbolBody::UnknownType);
Rui Ueyamac5b95122015-12-16 23:23:14 +0000513 return;
514 }
Peter Collingbourne4f952702016-05-01 04:55:03 +0000515 if (!S->body()->isUndefined())
516 return;
Rui Ueyamac5b95122015-12-16 23:23:14 +0000517
Peter Collingbourne4f952702016-05-01 04:55:03 +0000518 // Weak undefined symbols should not fetch members from archives. If we were
519 // to keep old symbol we would not know that an archive member was available
520 // if a strong undefined symbol shows up afterwards in the link. If a strong
521 // undefined symbol never shows up, this lazy symbol will get to the end of
522 // the link and must be treated as the weak undefined one. We already marked
523 // this symbol as used when we added it to the symbol table, but we also need
524 // to preserve its type. FIXME: Move the Type field to Symbol.
525 if (S->isWeak()) {
Rafael Espindola07543a82016-06-14 21:40:23 +0000526 replaceBody<LazyArchive>(S, *F, Sym, S->body()->Type);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000527 return;
528 }
529 MemoryBufferRef MBRef = F->getMember(&Sym);
530 if (!MBRef.getBuffer().empty())
531 addFile(createObjectFile(MBRef, F->getName()));
532}
533
534template <class ELFT>
Rafael Espindola65c65ce2016-06-14 21:56:36 +0000535void SymbolTable<ELFT>::addLazyObject(StringRef Name, LazyObjectFile &Obj) {
Peter Collingbourne4f952702016-05-01 04:55:03 +0000536 Symbol *S;
537 bool WasInserted;
538 std::tie(S, WasInserted) = insert(Name);
539 if (WasInserted) {
Rafael Espindola65c65ce2016-06-14 21:56:36 +0000540 replaceBody<LazyObject>(S, Name, Obj, SymbolBody::UnknownType);
Peter Collingbourne4f952702016-05-01 04:55:03 +0000541 return;
542 }
543 if (!S->body()->isUndefined())
544 return;
545
546 // See comment for addLazyArchive above.
Rafael Espindola65c65ce2016-06-14 21:56:36 +0000547 if (S->isWeak()) {
548 replaceBody<LazyObject>(S, Name, Obj, S->body()->Type);
549 } else {
550 MemoryBufferRef MBRef = Obj.getBuffer();
551 if (!MBRef.getBuffer().empty())
552 addFile(createObjectFile(MBRef));
553 }
Michael J. Spencer84487f12015-07-24 21:03:07 +0000554}
Rafael Espindola0e604f92015-09-25 18:56:53 +0000555
Peter Collingbourne892d49802016-04-27 00:05:03 +0000556// Process undefined (-u) flags by loading lazy symbols named by those flags.
Peter Collingbourne4f952702016-05-01 04:55:03 +0000557template <class ELFT> void SymbolTable<ELFT>::scanUndefinedFlags() {
Peter Collingbourne892d49802016-04-27 00:05:03 +0000558 for (StringRef S : Config->Undefined)
Peter Collingbourne4f952702016-05-01 04:55:03 +0000559 if (auto *L = dyn_cast_or_null<Lazy>(find(S)))
Rui Ueyama434b5612016-07-17 03:11:46 +0000560 if (std::unique_ptr<InputFile> File = L->fetch())
Peter Collingbourne4f952702016-05-01 04:55:03 +0000561 addFile(std::move(File));
Peter Collingbourne892d49802016-04-27 00:05:03 +0000562}
563
Rui Ueyama93bfee52015-10-13 18:10:33 +0000564// This function takes care of the case in which shared libraries depend on
565// the user program (not the other way, which is usual). Shared libraries
566// may have undefined symbols, expecting that the user program provides
567// the definitions for them. An example is BSD's __progname symbol.
568// We need to put such symbols to the main program's .dynsym so that
569// shared libraries can find them.
570// Except this, we ignore undefined symbols in DSOs.
571template <class ELFT> void SymbolTable<ELFT>::scanShlibUndefined() {
Rui Ueyamaf8432d92015-10-13 16:34:14 +0000572 for (std::unique_ptr<SharedFile<ELFT>> &File : SharedFiles)
573 for (StringRef U : File->getUndefinedSymbols())
574 if (SymbolBody *Sym = find(U))
575 if (Sym->isDefined())
Peter Collingbourne4f952702016-05-01 04:55:03 +0000576 Sym->symbol()->ExportDynamic = true;
Rui Ueyamaf8432d92015-10-13 16:34:14 +0000577}
578
Rui Ueyamadad2b882016-09-02 22:15:08 +0000579// This function processes --export-dynamic-symbol and --dynamic-list.
Adhemerval Zanella9df07202016-04-13 18:51:11 +0000580template <class ELFT> void SymbolTable<ELFT>::scanDynamicList() {
581 for (StringRef S : Config->DynamicList)
582 if (SymbolBody *B = find(S))
Peter Collingbourne4f952702016-05-01 04:55:03 +0000583 B->symbol()->ExportDynamic = true;
Adhemerval Zanella9df07202016-04-13 18:51:11 +0000584}
585
George Rimar50dcece2016-07-16 12:26:39 +0000586static void setVersionId(SymbolBody *Body, StringRef VersionName,
587 StringRef Name, uint16_t Version) {
588 if (!Body || Body->isUndefined()) {
589 if (Config->NoUndefinedVersion)
590 error("version script assignment of " + VersionName + " to symbol " +
591 Name + " failed: symbol not defined");
592 return;
593 }
594
595 Symbol *Sym = Body->symbol();
Rui Ueyama962b2772016-07-16 18:45:25 +0000596 if (Sym->VersionId != Config->DefaultSymbolVersion)
George Rimar50dcece2016-07-16 12:26:39 +0000597 warning("duplicate symbol " + Name + " in version script");
598 Sym->VersionId = Version;
599}
600
601template <class ELFT>
602std::map<std::string, SymbolBody *> SymbolTable<ELFT>::getDemangledSyms() {
603 std::map<std::string, SymbolBody *> Result;
Rui Ueyamad6328522016-07-18 01:34:57 +0000604 for (Symbol *Sym : SymVector) {
605 SymbolBody *B = Sym->body();
606 Result[demangle(B->getName())] = B;
607 }
George Rimar50dcece2016-07-16 12:26:39 +0000608 return Result;
609}
610
611static bool hasExternCpp() {
612 for (VersionDefinition &V : Config->VersionDefinitions)
613 for (SymbolVersion Sym : V.Globals)
614 if (Sym.IsExternCpp)
615 return true;
616 return false;
617}
618
George Rimarc3ec9d02016-08-30 09:29:37 +0000619static SymbolBody *findDemangled(const std::map<std::string, SymbolBody *> &D,
620 StringRef Name) {
621 auto I = D.find(Name);
622 if (I != D.end())
623 return I->second;
624 return nullptr;
625}
626
George Rimar397cd87a2016-08-30 09:35:03 +0000627static std::vector<SymbolBody *>
628findAllDemangled(const std::map<std::string, SymbolBody *> &D,
George Rimarc91930a2016-09-02 21:17:20 +0000629 const Regex &Re) {
George Rimar397cd87a2016-08-30 09:35:03 +0000630 std::vector<SymbolBody *> Res;
631 for (auto &P : D) {
632 SymbolBody *Body = P.second;
George Rimarc91930a2016-09-02 21:17:20 +0000633 if (!Body->isUndefined() && const_cast<Regex &>(Re).match(P.first))
George Rimar397cd87a2016-08-30 09:35:03 +0000634 Res.push_back(Body);
635 }
636 return Res;
637}
638
Rui Ueyamadad2b882016-09-02 22:15:08 +0000639// This function processes version scripts by updating VersionId
640// member of symbols.
Peter Collingbourne66ac1d62016-04-22 20:21:26 +0000641template <class ELFT> void SymbolTable<ELFT>::scanVersionScript() {
Rui Ueyamadad2b882016-09-02 22:15:08 +0000642 // If there's only one anonymous version definition in a version
643 // script file, the script does not actullay define any symbol version,
644 // but just specifies symbols visibilities. We assume that the script was
645 // in the form of { global: foo; bar; local *; }. So, local is default.
646 // Here, we make specified symbols global.
George Rimard3566302016-06-20 11:55:12 +0000647 if (!Config->VersionScriptGlobals.empty()) {
Rafael Espindola868fc922016-09-08 14:50:55 +0000648 std::vector<StringRef> Globs;
649 for (SymbolVersion &Sym : Config->VersionScriptGlobals) {
650 if (hasWildcard(Sym.Name)) {
651 Globs.push_back(Sym.Name);
652 continue;
653 }
George Rimar50dcece2016-07-16 12:26:39 +0000654 if (SymbolBody *B = find(Sym.Name))
George Rimard3566302016-06-20 11:55:12 +0000655 B->symbol()->VersionId = VER_NDX_GLOBAL;
Rafael Espindola868fc922016-09-08 14:50:55 +0000656 }
657 if (Globs.empty())
658 return;
659 Regex Re = compileGlobPatterns(Globs);
660 std::vector<SymbolBody *> Syms = findAll(Re);
661 for (SymbolBody *B : Syms)
662 B->symbol()->VersionId = VER_NDX_GLOBAL;
George Rimard3566302016-06-20 11:55:12 +0000663 return;
664 }
665
Rui Ueyamaaf469d42016-07-16 04:09:27 +0000666 if (Config->VersionDefinitions.empty())
George Rimarf73a2582016-07-07 07:45:27 +0000667 return;
668
Rui Ueyamadad2b882016-09-02 22:15:08 +0000669 // Now we have version definitions, so we need to set version ids to symbols.
670 // Each version definition has a glob pattern, and all symbols that match
671 // with the pattern get that version.
672
673 // Users can use "extern C++ {}" directive to match against demangled
674 // C++ symbols. For example, you can write a pattern such as
675 // "llvm::*::foo(int, ?)". Obviously, there's no way to handle this
676 // other than trying to match a regexp against all demangled symbols.
677 // So, if "extern C++" feature is used, we demangle all known symbols.
George Rimar50dcece2016-07-16 12:26:39 +0000678 std::map<std::string, SymbolBody *> Demangled;
679 if (hasExternCpp())
680 Demangled = getDemangledSyms();
George Rimardd64bb32016-07-13 08:19:04 +0000681
Rui Ueyamadad2b882016-09-02 22:15:08 +0000682 // First, we assign versions to exact matching symbols,
683 // i.e. version definitions not containing any glob meta-characters.
George Rimar50dcece2016-07-16 12:26:39 +0000684 for (VersionDefinition &V : Config->VersionDefinitions) {
685 for (SymbolVersion Sym : V.Globals) {
George Rimarcd574a52016-09-09 14:35:36 +0000686 if (Sym.HasWildcards)
George Rimardd64bb32016-07-13 08:19:04 +0000687 continue;
George Rimarc3ec9d02016-08-30 09:29:37 +0000688 StringRef N = Sym.Name;
689 SymbolBody *B = Sym.IsExternCpp ? findDemangled(Demangled, N) : find(N);
690 setVersionId(B, V.Name, N, V.Id);
George Rimar36b2c0a2016-06-28 08:07:26 +0000691 }
George Rimarf73a2582016-07-07 07:45:27 +0000692 }
693
Rui Ueyamadad2b882016-09-02 22:15:08 +0000694 // Next, we assign versions to fuzzy matching symbols,
695 // i.e. version definitions containing glob meta-characters.
696 // Note that because the last match takes precedence over previous matches,
697 // we iterate over the definitions in the reverse order.
Rui Ueyamaaf469d42016-07-16 04:09:27 +0000698 for (size_t I = Config->VersionDefinitions.size() - 1; I != (size_t)-1; --I) {
699 VersionDefinition &V = Config->VersionDefinitions[I];
George Rimar7af64522016-08-30 09:39:36 +0000700 for (SymbolVersion &Sym : V.Globals) {
George Rimarcd574a52016-09-09 14:35:36 +0000701 if (!Sym.HasWildcards)
George Rimar7af64522016-08-30 09:39:36 +0000702 continue;
Rui Ueyamadad2b882016-09-02 22:15:08 +0000703 Regex Re = compileGlobPatterns({Sym.Name});
704 std::vector<SymbolBody *> Syms =
705 Sym.IsExternCpp ? findAllDemangled(Demangled, Re) : findAll(Re);
George Rimar397cd87a2016-08-30 09:35:03 +0000706
Rui Ueyamadad2b882016-09-02 22:15:08 +0000707 // Exact matching takes precendence over fuzzy matching,
708 // so we set a version to a symbol only if no version has been assigned
709 // to the symbol. This behavior is compatible with GNU.
710 for (SymbolBody *B : Syms)
George Rimar7af64522016-08-30 09:39:36 +0000711 if (B->symbol()->VersionId == Config->DefaultSymbolVersion)
712 B->symbol()->VersionId = V.Id;
713 }
George Rimard3566302016-06-20 11:55:12 +0000714 }
Peter Collingbourne66ac1d62016-04-22 20:21:26 +0000715}
716
Rafael Espindolae0df00b2016-02-28 00:25:54 +0000717template class elf::SymbolTable<ELF32LE>;
718template class elf::SymbolTable<ELF32BE>;
719template class elf::SymbolTable<ELF64LE>;
720template class elf::SymbolTable<ELF64BE>;