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 // Symbol table is a bag of all known symbols. We put all symbols of 10 // all input files to the symbol table. The symbol table is basically 11 // a hash table with the logic to resolve symbol name conflicts using 12 // the symbol types. 13 // 14 //===----------------------------------------------------------------------===// 15 16 #include "SymbolTable.h" 17 #include "Config.h" 18 #include "InputFiles.h" 19 #include "Symbols.h" 20 #include "lld/Common/ErrorHandler.h" 21 #include "lld/Common/Memory.h" 22 #include "lld/Common/Strings.h" 23 #include "llvm/ADT/STLExtras.h" 24 #include "llvm/Demangle/Demangle.h" 25 26 using namespace llvm; 27 using namespace llvm::object; 28 using namespace llvm::ELF; 29 using namespace lld; 30 using namespace lld::elf; 31 32 SymbolTable elf::symtab; 33 34 void SymbolTable::wrap(Symbol *sym, Symbol *real, Symbol *wrap) { 35 // Redirect __real_foo to the original foo and foo to the original __wrap_foo. 36 int &idx1 = symMap[CachedHashStringRef(sym->getName())]; 37 int &idx2 = symMap[CachedHashStringRef(real->getName())]; 38 int &idx3 = symMap[CachedHashStringRef(wrap->getName())]; 39 40 idx2 = idx1; 41 idx1 = idx3; 42 43 // Propagate symbol usage information to the redirected symbols. 44 if (sym->isUsedInRegularObj) 45 wrap->isUsedInRegularObj = true; 46 if (real->isUsedInRegularObj) 47 sym->isUsedInRegularObj = true; 48 else if (!sym->isDefined()) 49 // Now that all references to sym have been redirected to wrap, if there are 50 // no references to real (which has been redirected to sym), we only need to 51 // keep sym if it was defined, otherwise it's unused and can be dropped. 52 sym->isUsedInRegularObj = false; 53 54 // Now renaming is complete, and no one refers to real. We drop real from 55 // .symtab and .dynsym. If real is undefined, it is important that we don't 56 // leave it in .dynsym, because otherwise it might lead to an undefined symbol 57 // error in a subsequent link. If real is defined, we could emit real as an 58 // alias for sym, but that could degrade the user experience of some tools 59 // that can print out only one symbol for each location: sym is a preferred 60 // name than real, but they might print out real instead. 61 memcpy(real, sym, sizeof(SymbolUnion)); 62 real->isUsedInRegularObj = false; 63 } 64 65 // Find an existing symbol or create a new one. 66 Symbol *SymbolTable::insert(StringRef name) { 67 // <name>@@<version> means the symbol is the default version. In that 68 // case <name>@@<version> will be used to resolve references to <name>. 69 // 70 // Since this is a hot path, the following string search code is 71 // optimized for speed. StringRef::find(char) is much faster than 72 // StringRef::find(StringRef). 73 StringRef stem = name; 74 size_t pos = name.find('@'); 75 if (pos != StringRef::npos && pos + 1 < name.size() && name[pos + 1] == '@') 76 stem = name.take_front(pos); 77 78 auto p = symMap.insert({CachedHashStringRef(stem), (int)symVector.size()}); 79 if (!p.second) { 80 Symbol *sym = symVector[p.first->second]; 81 if (stem.size() != name.size()) { 82 sym->setName(name); 83 sym->hasVersionSuffix = true; 84 } 85 return sym; 86 } 87 88 Symbol *sym = reinterpret_cast<Symbol *>(make<SymbolUnion>()); 89 symVector.push_back(sym); 90 91 // *sym was not initialized by a constructor. Initialize all Symbol fields. 92 memset(sym, 0, sizeof(Symbol)); 93 sym->setName(name); 94 sym->partition = 1; 95 sym->verdefIndex = -1; 96 sym->versionId = VER_NDX_GLOBAL; 97 if (pos != StringRef::npos) 98 sym->hasVersionSuffix = true; 99 return sym; 100 } 101 102 // This variant of addSymbol is used by BinaryFile::parse to check duplicate 103 // symbol errors. 104 Symbol *SymbolTable::addAndCheckDuplicate(const Defined &newSym) { 105 Symbol *sym = insert(newSym.getName()); 106 if (sym->isDefined()) 107 sym->checkDuplicate(newSym); 108 sym->resolve(newSym); 109 sym->isUsedInRegularObj = true; 110 return sym; 111 } 112 113 Symbol *SymbolTable::find(StringRef name) { 114 auto it = symMap.find(CachedHashStringRef(name)); 115 if (it == symMap.end()) 116 return nullptr; 117 return symVector[it->second]; 118 } 119 120 // A version script/dynamic list is only meaningful for a Defined symbol. 121 // A CommonSymbol will be converted to a Defined in replaceCommonSymbols(). 122 // A lazy symbol may be made Defined if an LTO libcall extracts it. 123 static bool canBeVersioned(const Symbol &sym) { 124 return sym.isDefined() || sym.isCommon() || sym.isLazy(); 125 } 126 127 // Initialize demangledSyms with a map from demangled symbols to symbol 128 // objects. Used to handle "extern C++" directive in version scripts. 129 // 130 // The map will contain all demangled symbols. That can be very large, 131 // and in LLD we generally want to avoid do anything for each symbol. 132 // Then, why are we doing this? Here's why. 133 // 134 // Users can use "extern C++ {}" directive to match against demangled 135 // C++ symbols. For example, you can write a pattern such as 136 // "llvm::*::foo(int, ?)". Obviously, there's no way to handle this 137 // other than trying to match a pattern against all demangled symbols. 138 // So, if "extern C++" feature is used, we need to demangle all known 139 // symbols. 140 StringMap<SmallVector<Symbol *, 0>> &SymbolTable::getDemangledSyms() { 141 if (!demangledSyms) { 142 demangledSyms.emplace(); 143 std::string demangled; 144 for (Symbol *sym : symVector) 145 if (canBeVersioned(*sym)) { 146 StringRef name = sym->getName(); 147 size_t pos = name.find('@'); 148 if (pos == std::string::npos) 149 demangled = demangle(name.str()); 150 else if (pos + 1 == name.size() || name[pos + 1] == '@') 151 demangled = demangle(name.substr(0, pos).str()); 152 else 153 demangled = 154 (demangle(name.substr(0, pos).str()) + name.substr(pos)).str(); 155 (*demangledSyms)[demangled].push_back(sym); 156 } 157 } 158 return *demangledSyms; 159 } 160 161 SmallVector<Symbol *, 0> SymbolTable::findByVersion(SymbolVersion ver) { 162 if (ver.isExternCpp) 163 return getDemangledSyms().lookup(ver.name); 164 if (Symbol *sym = find(ver.name)) 165 if (canBeVersioned(*sym)) 166 return {sym}; 167 return {}; 168 } 169 170 SmallVector<Symbol *, 0> SymbolTable::findAllByVersion(SymbolVersion ver, 171 bool includeNonDefault) { 172 SmallVector<Symbol *, 0> res; 173 SingleStringMatcher m(ver.name); 174 auto check = [&](StringRef name) { 175 size_t pos = name.find('@'); 176 if (!includeNonDefault) 177 return pos == StringRef::npos; 178 return !(pos + 1 < name.size() && name[pos + 1] == '@'); 179 }; 180 181 if (ver.isExternCpp) { 182 for (auto &p : getDemangledSyms()) 183 if (m.match(p.first())) 184 for (Symbol *sym : p.second) 185 if (check(sym->getName())) 186 res.push_back(sym); 187 return res; 188 } 189 190 for (Symbol *sym : symVector) 191 if (canBeVersioned(*sym) && check(sym->getName()) && 192 m.match(sym->getName())) 193 res.push_back(sym); 194 return res; 195 } 196 197 void SymbolTable::handleDynamicList() { 198 SmallVector<Symbol *, 0> syms; 199 for (SymbolVersion &ver : config->dynamicList) { 200 if (ver.hasWildcard) 201 syms = findAllByVersion(ver, /*includeNonDefault=*/true); 202 else 203 syms = findByVersion(ver); 204 205 for (Symbol *sym : syms) 206 sym->inDynamicList = true; 207 } 208 } 209 210 // Set symbol versions to symbols. This function handles patterns containing no 211 // wildcard characters. Return false if no symbol definition matches ver. 212 bool SymbolTable::assignExactVersion(SymbolVersion ver, uint16_t versionId, 213 StringRef versionName, 214 bool includeNonDefault) { 215 // Get a list of symbols which we need to assign the version to. 216 SmallVector<Symbol *, 0> syms = findByVersion(ver); 217 218 auto getName = [](uint16_t ver) -> std::string { 219 if (ver == VER_NDX_LOCAL) 220 return "VER_NDX_LOCAL"; 221 if (ver == VER_NDX_GLOBAL) 222 return "VER_NDX_GLOBAL"; 223 return ("version '" + config->versionDefinitions[ver].name + "'").str(); 224 }; 225 226 // Assign the version. 227 for (Symbol *sym : syms) { 228 // For a non-local versionId, skip symbols containing version info because 229 // symbol versions specified by symbol names take precedence over version 230 // scripts. See parseSymbolVersion(). 231 if (!includeNonDefault && versionId != VER_NDX_LOCAL && 232 sym->getName().contains('@')) 233 continue; 234 235 // If the version has not been assigned, verdefIndex is -1. Use an arbitrary 236 // number (0) to indicate the version has been assigned. 237 if (sym->verdefIndex == uint16_t(-1)) { 238 sym->verdefIndex = 0; 239 sym->versionId = versionId; 240 } 241 if (sym->versionId == versionId) 242 continue; 243 244 warn("attempt to reassign symbol '" + ver.name + "' of " + 245 getName(sym->versionId) + " to " + getName(versionId)); 246 } 247 return !syms.empty(); 248 } 249 250 void SymbolTable::assignWildcardVersion(SymbolVersion ver, uint16_t versionId, 251 bool includeNonDefault) { 252 // Exact matching takes precedence over fuzzy matching, 253 // so we set a version to a symbol only if no version has been assigned 254 // to the symbol. This behavior is compatible with GNU. 255 for (Symbol *sym : findAllByVersion(ver, includeNonDefault)) 256 if (sym->verdefIndex == uint16_t(-1)) { 257 sym->verdefIndex = 0; 258 sym->versionId = versionId; 259 } 260 } 261 262 // This function processes version scripts by updating the versionId 263 // member of symbols. 264 // If there's only one anonymous version definition in a version 265 // script file, the script does not actually define any symbol version, 266 // but just specifies symbols visibilities. 267 void SymbolTable::scanVersionScript() { 268 SmallString<128> buf; 269 // First, we assign versions to exact matching symbols, 270 // i.e. version definitions not containing any glob meta-characters. 271 for (VersionDefinition &v : config->versionDefinitions) { 272 auto assignExact = [&](SymbolVersion pat, uint16_t id, StringRef ver) { 273 bool found = 274 assignExactVersion(pat, id, ver, /*includeNonDefault=*/false); 275 buf.clear(); 276 found |= assignExactVersion({(pat.name + "@" + v.name).toStringRef(buf), 277 pat.isExternCpp, /*hasWildCard=*/false}, 278 id, ver, /*includeNonDefault=*/true); 279 if (!found && !config->undefinedVersion) 280 warn("version script assignment of '" + ver + "' to symbol '" + 281 pat.name + "' failed: symbol not defined"); 282 }; 283 for (SymbolVersion &pat : v.nonLocalPatterns) 284 if (!pat.hasWildcard) 285 assignExact(pat, v.id, v.name); 286 for (SymbolVersion pat : v.localPatterns) 287 if (!pat.hasWildcard) 288 assignExact(pat, VER_NDX_LOCAL, "local"); 289 } 290 291 // Next, assign versions to wildcards that are not "*". Note that because the 292 // last match takes precedence over previous matches, we iterate over the 293 // definitions in the reverse order. 294 auto assignWildcard = [&](SymbolVersion pat, uint16_t id, StringRef ver) { 295 assignWildcardVersion(pat, id, /*includeNonDefault=*/false); 296 buf.clear(); 297 assignWildcardVersion({(pat.name + "@" + ver).toStringRef(buf), 298 pat.isExternCpp, /*hasWildCard=*/true}, 299 id, 300 /*includeNonDefault=*/true); 301 }; 302 for (VersionDefinition &v : llvm::reverse(config->versionDefinitions)) { 303 for (SymbolVersion &pat : v.nonLocalPatterns) 304 if (pat.hasWildcard && pat.name != "*") 305 assignWildcard(pat, v.id, v.name); 306 for (SymbolVersion &pat : v.localPatterns) 307 if (pat.hasWildcard && pat.name != "*") 308 assignWildcard(pat, VER_NDX_LOCAL, v.name); 309 } 310 311 // Then, assign versions to "*". In GNU linkers they have lower priority than 312 // other wildcards. 313 for (VersionDefinition &v : config->versionDefinitions) { 314 for (SymbolVersion &pat : v.nonLocalPatterns) 315 if (pat.hasWildcard && pat.name == "*") 316 assignWildcard(pat, v.id, v.name); 317 for (SymbolVersion &pat : v.localPatterns) 318 if (pat.hasWildcard && pat.name == "*") 319 assignWildcard(pat, VER_NDX_LOCAL, v.name); 320 } 321 322 // Symbol themselves might know their versions because symbols 323 // can contain versions in the form of <name>@<version>. 324 // Let them parse and update their names to exclude version suffix. 325 for (Symbol *sym : symVector) 326 if (sym->hasVersionSuffix) 327 sym->parseSymbolVersion(); 328 329 // isPreemptible is false at this point. To correctly compute the binding of a 330 // Defined (which is used by includeInDynsym()), we need to know if it is 331 // VER_NDX_LOCAL or not. Compute symbol versions before handling 332 // --dynamic-list. 333 handleDynamicList(); 334 } 335