1 //===- SymbolTable.cpp ----------------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "SymbolTable.h" 10 #include "ConcatOutputSection.h" 11 #include "Config.h" 12 #include "InputFiles.h" 13 #include "InputSection.h" 14 #include "Symbols.h" 15 #include "SyntheticSections.h" 16 #include "lld/Common/ErrorHandler.h" 17 #include "lld/Common/Memory.h" 18 19 using namespace llvm; 20 using namespace lld; 21 using namespace lld::macho; 22 23 Symbol *SymbolTable::find(CachedHashStringRef cachedName) { 24 auto it = symMap.find(cachedName); 25 if (it == symMap.end()) 26 return nullptr; 27 return symVector[it->second]; 28 } 29 30 std::pair<Symbol *, bool> SymbolTable::insert(StringRef name, 31 const InputFile *file) { 32 auto p = symMap.insert({CachedHashStringRef(name), (int)symVector.size()}); 33 34 Symbol *sym; 35 if (!p.second) { 36 // Name already present in the symbol table. 37 sym = symVector[p.first->second]; 38 } else { 39 // Name is a new symbol. 40 sym = reinterpret_cast<Symbol *>(make<SymbolUnion>()); 41 symVector.push_back(sym); 42 } 43 44 sym->isUsedInRegularObj |= !file || isa<ObjFile>(file); 45 return {sym, p.second}; 46 } 47 48 Defined *SymbolTable::addDefined(StringRef name, InputFile *file, 49 InputSection *isec, uint64_t value, 50 uint64_t size, bool isWeakDef, 51 bool isPrivateExtern, bool isThumb, 52 bool isReferencedDynamically, bool noDeadStrip, 53 bool isWeakDefCanBeHidden) { 54 Symbol *s; 55 bool wasInserted; 56 bool overridesWeakDef = false; 57 std::tie(s, wasInserted) = insert(name, file); 58 59 assert(!isWeakDef || (isa<BitcodeFile>(file) && !isec) || 60 (isa<ObjFile>(file) && file == isec->getFile())); 61 62 if (!wasInserted) { 63 if (auto *defined = dyn_cast<Defined>(s)) { 64 if (isWeakDef) { 65 // See further comment in createDefined() in InputFiles.cpp 66 if (defined->isWeakDef()) { 67 defined->privateExtern &= isPrivateExtern; 68 defined->weakDefCanBeHidden &= isWeakDefCanBeHidden; 69 defined->referencedDynamically |= isReferencedDynamically; 70 defined->noDeadStrip |= noDeadStrip; 71 } 72 // FIXME: Handle this for bitcode files. 73 if (auto concatIsec = dyn_cast_or_null<ConcatInputSection>(isec)) 74 concatIsec->wasCoalesced = true; 75 return defined; 76 } 77 78 if (defined->isWeakDef()) { 79 // FIXME: Handle this for bitcode files. 80 if (auto concatIsec = 81 dyn_cast_or_null<ConcatInputSection>(defined->isec)) { 82 concatIsec->wasCoalesced = true; 83 concatIsec->symbols.erase(llvm::find(concatIsec->symbols, defined)); 84 } 85 } else { 86 error("duplicate symbol: " + name + "\n>>> defined in " + 87 toString(defined->getFile()) + "\n>>> defined in " + 88 toString(file)); 89 } 90 91 } else if (auto *dysym = dyn_cast<DylibSymbol>(s)) { 92 overridesWeakDef = !isWeakDef && dysym->isWeakDef(); 93 dysym->unreference(); 94 } 95 // Defined symbols take priority over other types of symbols, so in case 96 // of a name conflict, we fall through to the replaceSymbol() call below. 97 } 98 99 Defined *defined = replaceSymbol<Defined>( 100 s, name, file, isec, value, size, isWeakDef, /*isExternal=*/true, 101 isPrivateExtern, isThumb, isReferencedDynamically, noDeadStrip, 102 overridesWeakDef, isWeakDefCanBeHidden); 103 return defined; 104 } 105 106 Symbol *SymbolTable::addUndefined(StringRef name, InputFile *file, 107 bool isWeakRef) { 108 Symbol *s; 109 bool wasInserted; 110 std::tie(s, wasInserted) = insert(name, file); 111 112 RefState refState = isWeakRef ? RefState::Weak : RefState::Strong; 113 114 if (wasInserted) 115 replaceSymbol<Undefined>(s, name, file, refState); 116 else if (auto *lazy = dyn_cast<LazyArchive>(s)) 117 lazy->fetchArchiveMember(); 118 else if (isa<LazyObject>(s)) 119 extract(*s->getFile(), s->getName()); 120 else if (auto *dynsym = dyn_cast<DylibSymbol>(s)) 121 dynsym->reference(refState); 122 else if (auto *undefined = dyn_cast<Undefined>(s)) 123 undefined->refState = std::max(undefined->refState, refState); 124 return s; 125 } 126 127 Symbol *SymbolTable::addCommon(StringRef name, InputFile *file, uint64_t size, 128 uint32_t align, bool isPrivateExtern) { 129 Symbol *s; 130 bool wasInserted; 131 std::tie(s, wasInserted) = insert(name, file); 132 133 if (!wasInserted) { 134 if (auto *common = dyn_cast<CommonSymbol>(s)) { 135 if (size < common->size) 136 return s; 137 } else if (isa<Defined>(s)) { 138 return s; 139 } 140 // Common symbols take priority over all non-Defined symbols, so in case of 141 // a name conflict, we fall through to the replaceSymbol() call below. 142 } 143 144 replaceSymbol<CommonSymbol>(s, name, file, size, align, isPrivateExtern); 145 return s; 146 } 147 148 Symbol *SymbolTable::addDylib(StringRef name, DylibFile *file, bool isWeakDef, 149 bool isTlv) { 150 Symbol *s; 151 bool wasInserted; 152 std::tie(s, wasInserted) = insert(name, file); 153 154 RefState refState = RefState::Unreferenced; 155 if (!wasInserted) { 156 if (auto *defined = dyn_cast<Defined>(s)) { 157 if (isWeakDef && !defined->isWeakDef()) 158 defined->overridesWeakDef = true; 159 } else if (auto *undefined = dyn_cast<Undefined>(s)) { 160 refState = undefined->refState; 161 } else if (auto *dysym = dyn_cast<DylibSymbol>(s)) { 162 refState = dysym->getRefState(); 163 } 164 } 165 166 bool isDynamicLookup = file == nullptr; 167 if (wasInserted || isa<Undefined>(s) || 168 (isa<DylibSymbol>(s) && 169 ((!isWeakDef && s->isWeakDef()) || 170 (!isDynamicLookup && cast<DylibSymbol>(s)->isDynamicLookup())))) { 171 if (auto *dynsym = dyn_cast<DylibSymbol>(s)) 172 dynsym->unreference(); 173 replaceSymbol<DylibSymbol>(s, file, name, isWeakDef, refState, isTlv); 174 } 175 176 return s; 177 } 178 179 Symbol *SymbolTable::addDynamicLookup(StringRef name) { 180 return addDylib(name, /*file=*/nullptr, /*isWeakDef=*/false, /*isTlv=*/false); 181 } 182 183 Symbol *SymbolTable::addLazyArchive(StringRef name, ArchiveFile *file, 184 const object::Archive::Symbol &sym) { 185 Symbol *s; 186 bool wasInserted; 187 std::tie(s, wasInserted) = insert(name, file); 188 189 if (wasInserted) { 190 replaceSymbol<LazyArchive>(s, file, sym); 191 } else if (isa<Undefined>(s)) { 192 file->fetch(sym); 193 } else if (auto *dysym = dyn_cast<DylibSymbol>(s)) { 194 if (dysym->isWeakDef()) { 195 if (dysym->getRefState() != RefState::Unreferenced) 196 file->fetch(sym); 197 else 198 replaceSymbol<LazyArchive>(s, file, sym); 199 } 200 } 201 return s; 202 } 203 204 Symbol *SymbolTable::addLazyObject(StringRef name, InputFile &file) { 205 Symbol *s; 206 bool wasInserted; 207 std::tie(s, wasInserted) = insert(name, &file); 208 209 if (wasInserted) { 210 replaceSymbol<LazyObject>(s, file, name); 211 } else if (isa<Undefined>(s)) { 212 extract(file, name); 213 } else if (auto *dysym = dyn_cast<DylibSymbol>(s)) { 214 if (dysym->isWeakDef()) { 215 if (dysym->getRefState() != RefState::Unreferenced) 216 extract(file, name); 217 else 218 replaceSymbol<LazyObject>(s, file, name); 219 } 220 } 221 return s; 222 } 223 224 Defined *SymbolTable::addSynthetic(StringRef name, InputSection *isec, 225 uint64_t value, bool isPrivateExtern, 226 bool includeInSymtab, 227 bool referencedDynamically) { 228 Defined *s = 229 addDefined(name, nullptr, isec, value, /*size=*/0, 230 /*isWeakDef=*/false, isPrivateExtern, 231 /*isThumb=*/false, referencedDynamically, 232 /*noDeadStrip=*/false, /*isWeakDefCanBeHidden=*/false); 233 s->includeInSymtab = includeInSymtab; 234 return s; 235 } 236 237 enum class Boundary { 238 Start, 239 End, 240 }; 241 242 static Defined *createBoundarySymbol(const Undefined &sym) { 243 return symtab->addSynthetic( 244 sym.getName(), /*isec=*/nullptr, /*value=*/-1, /*isPrivateExtern=*/true, 245 /*includeInSymtab=*/false, /*referencedDynamically=*/false); 246 } 247 248 static void handleSectionBoundarySymbol(const Undefined &sym, StringRef segSect, 249 Boundary which) { 250 StringRef segName, sectName; 251 std::tie(segName, sectName) = segSect.split('$'); 252 253 // Attach the symbol to any InputSection that will end up in the right 254 // OutputSection -- it doesn't matter which one we pick. 255 // Don't bother looking through inputSections for a matching 256 // ConcatInputSection -- we need to create ConcatInputSection for 257 // non-existing sections anyways, and that codepath works even if we should 258 // already have a ConcatInputSection with the right name. 259 260 OutputSection *osec = nullptr; 261 // This looks for __TEXT,__cstring etc. 262 for (SyntheticSection *ssec : syntheticSections) 263 if (ssec->segname == segName && ssec->name == sectName) { 264 osec = ssec->isec->parent; 265 break; 266 } 267 268 if (!osec) { 269 ConcatInputSection *isec = make<ConcatInputSection>(segName, sectName); 270 271 // This runs after markLive() and is only called for Undefineds that are 272 // live. Marking the isec live ensures an OutputSection is created that the 273 // start/end symbol can refer to. 274 assert(sym.isLive()); 275 isec->live = true; 276 277 // This runs after gatherInputSections(), so need to explicitly set parent 278 // and add to inputSections. 279 osec = isec->parent = ConcatOutputSection::getOrCreateForInput(isec); 280 inputSections.push_back(isec); 281 } 282 283 if (which == Boundary::Start) 284 osec->sectionStartSymbols.push_back(createBoundarySymbol(sym)); 285 else 286 osec->sectionEndSymbols.push_back(createBoundarySymbol(sym)); 287 } 288 289 static void handleSegmentBoundarySymbol(const Undefined &sym, StringRef segName, 290 Boundary which) { 291 OutputSegment *seg = getOrCreateOutputSegment(segName); 292 if (which == Boundary::Start) 293 seg->segmentStartSymbols.push_back(createBoundarySymbol(sym)); 294 else 295 seg->segmentEndSymbols.push_back(createBoundarySymbol(sym)); 296 } 297 298 void lld::macho::treatUndefinedSymbol(const Undefined &sym, StringRef source) { 299 // Handle start/end symbols. 300 StringRef name = sym.getName(); 301 if (name.consume_front("section$start$")) 302 return handleSectionBoundarySymbol(sym, name, Boundary::Start); 303 if (name.consume_front("section$end$")) 304 return handleSectionBoundarySymbol(sym, name, Boundary::End); 305 if (name.consume_front("segment$start$")) 306 return handleSegmentBoundarySymbol(sym, name, Boundary::Start); 307 if (name.consume_front("segment$end$")) 308 return handleSegmentBoundarySymbol(sym, name, Boundary::End); 309 310 // Handle -U. 311 if (config->explicitDynamicLookups.count(sym.getName())) { 312 symtab->addDynamicLookup(sym.getName()); 313 return; 314 } 315 316 // Handle -undefined. 317 auto message = [source, &sym]() { 318 std::string message = "undefined symbol"; 319 if (config->archMultiple) 320 message += (" for arch " + getArchitectureName(config->arch())).str(); 321 message += ": " + toString(sym); 322 if (!source.empty()) 323 message += "\n>>> referenced by " + source.str(); 324 else 325 message += "\n>>> referenced by " + toString(sym.getFile()); 326 return message; 327 }; 328 switch (config->undefinedSymbolTreatment) { 329 case UndefinedSymbolTreatment::error: 330 error(message()); 331 break; 332 case UndefinedSymbolTreatment::warning: 333 warn(message()); 334 LLVM_FALLTHROUGH; 335 case UndefinedSymbolTreatment::dynamic_lookup: 336 case UndefinedSymbolTreatment::suppress: 337 symtab->addDynamicLookup(sym.getName()); 338 break; 339 case UndefinedSymbolTreatment::unknown: 340 llvm_unreachable("unknown -undefined TREATMENT"); 341 } 342 } 343 344 std::unique_ptr<SymbolTable> macho::symtab; 345