1 //===- Driver.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 "lld/Common/Driver.h" 10 #include "Config.h" 11 #include "InputChunks.h" 12 #include "InputElement.h" 13 #include "MarkLive.h" 14 #include "SymbolTable.h" 15 #include "Writer.h" 16 #include "lld/Common/Args.h" 17 #include "lld/Common/ErrorHandler.h" 18 #include "lld/Common/Filesystem.h" 19 #include "lld/Common/Memory.h" 20 #include "lld/Common/Reproduce.h" 21 #include "lld/Common/Strings.h" 22 #include "lld/Common/Version.h" 23 #include "llvm/ADT/Twine.h" 24 #include "llvm/Config/llvm-config.h" 25 #include "llvm/Object/Wasm.h" 26 #include "llvm/Option/Arg.h" 27 #include "llvm/Option/ArgList.h" 28 #include "llvm/Support/CommandLine.h" 29 #include "llvm/Support/Host.h" 30 #include "llvm/Support/Parallel.h" 31 #include "llvm/Support/Path.h" 32 #include "llvm/Support/Process.h" 33 #include "llvm/Support/TarWriter.h" 34 #include "llvm/Support/TargetSelect.h" 35 36 #define DEBUG_TYPE "lld" 37 38 using namespace llvm; 39 using namespace llvm::object; 40 using namespace llvm::sys; 41 using namespace llvm::wasm; 42 43 namespace lld { 44 namespace wasm { 45 Configuration *config; 46 47 namespace { 48 49 // Create enum with OPT_xxx values for each option in Options.td 50 enum { 51 OPT_INVALID = 0, 52 #define OPTION(_1, _2, ID, _4, _5, _6, _7, _8, _9, _10, _11, _12) OPT_##ID, 53 #include "Options.inc" 54 #undef OPTION 55 }; 56 57 // This function is called on startup. We need this for LTO since 58 // LTO calls LLVM functions to compile bitcode files to native code. 59 // Technically this can be delayed until we read bitcode files, but 60 // we don't bother to do lazily because the initialization is fast. 61 static void initLLVM() { 62 InitializeAllTargets(); 63 InitializeAllTargetMCs(); 64 InitializeAllAsmPrinters(); 65 InitializeAllAsmParsers(); 66 } 67 68 class LinkerDriver { 69 public: 70 void linkerMain(ArrayRef<const char *> argsArr); 71 72 private: 73 void createFiles(opt::InputArgList &args); 74 void addFile(StringRef path); 75 void addLibrary(StringRef name); 76 77 // True if we are in --whole-archive and --no-whole-archive. 78 bool inWholeArchive = false; 79 80 std::vector<InputFile *> files; 81 }; 82 } // anonymous namespace 83 84 bool link(ArrayRef<const char *> args, llvm::raw_ostream &stdoutOS, 85 llvm::raw_ostream &stderrOS, bool exitEarly, bool disableOutput) { 86 // This driver-specific context will be freed later by lldMain(). 87 auto *ctx = new CommonLinkerContext; 88 89 ctx->e.initialize(stdoutOS, stderrOS, exitEarly, disableOutput); 90 ctx->e.logName = args::getFilenameWithoutExe(args[0]); 91 ctx->e.errorLimitExceededMsg = "too many errors emitted, stopping now (use " 92 "-error-limit=0 to see all errors)"; 93 94 config = make<Configuration>(); 95 symtab = make<SymbolTable>(); 96 97 initLLVM(); 98 LinkerDriver().linkerMain(args); 99 100 return errorCount() == 0; 101 } 102 103 // Create prefix string literals used in Options.td 104 #define PREFIX(NAME, VALUE) const char *const NAME[] = VALUE; 105 #include "Options.inc" 106 #undef PREFIX 107 108 // Create table mapping all options defined in Options.td 109 static const opt::OptTable::Info optInfo[] = { 110 #define OPTION(X1, X2, ID, KIND, GROUP, ALIAS, X7, X8, X9, X10, X11, X12) \ 111 {X1, X2, X10, X11, OPT_##ID, opt::Option::KIND##Class, \ 112 X9, X8, OPT_##GROUP, OPT_##ALIAS, X7, X12}, 113 #include "Options.inc" 114 #undef OPTION 115 }; 116 117 namespace { 118 class WasmOptTable : public llvm::opt::OptTable { 119 public: 120 WasmOptTable() : OptTable(optInfo) {} 121 opt::InputArgList parse(ArrayRef<const char *> argv); 122 }; 123 } // namespace 124 125 // Set color diagnostics according to -color-diagnostics={auto,always,never} 126 // or -no-color-diagnostics flags. 127 static void handleColorDiagnostics(opt::InputArgList &args) { 128 auto *arg = args.getLastArg(OPT_color_diagnostics, OPT_color_diagnostics_eq, 129 OPT_no_color_diagnostics); 130 if (!arg) 131 return; 132 if (arg->getOption().getID() == OPT_color_diagnostics) { 133 lld::errs().enable_colors(true); 134 } else if (arg->getOption().getID() == OPT_no_color_diagnostics) { 135 lld::errs().enable_colors(false); 136 } else { 137 StringRef s = arg->getValue(); 138 if (s == "always") 139 lld::errs().enable_colors(true); 140 else if (s == "never") 141 lld::errs().enable_colors(false); 142 else if (s != "auto") 143 error("unknown option: --color-diagnostics=" + s); 144 } 145 } 146 147 static cl::TokenizerCallback getQuotingStyle(opt::InputArgList &args) { 148 if (auto *arg = args.getLastArg(OPT_rsp_quoting)) { 149 StringRef s = arg->getValue(); 150 if (s != "windows" && s != "posix") 151 error("invalid response file quoting: " + s); 152 if (s == "windows") 153 return cl::TokenizeWindowsCommandLine; 154 return cl::TokenizeGNUCommandLine; 155 } 156 if (Triple(sys::getProcessTriple()).isOSWindows()) 157 return cl::TokenizeWindowsCommandLine; 158 return cl::TokenizeGNUCommandLine; 159 } 160 161 // Find a file by concatenating given paths. 162 static Optional<std::string> findFile(StringRef path1, const Twine &path2) { 163 SmallString<128> s; 164 path::append(s, path1, path2); 165 if (fs::exists(s)) 166 return std::string(s); 167 return None; 168 } 169 170 opt::InputArgList WasmOptTable::parse(ArrayRef<const char *> argv) { 171 SmallVector<const char *, 256> vec(argv.data(), argv.data() + argv.size()); 172 173 unsigned missingIndex; 174 unsigned missingCount; 175 176 // We need to get the quoting style for response files before parsing all 177 // options so we parse here before and ignore all the options but 178 // --rsp-quoting. 179 opt::InputArgList args = this->ParseArgs(vec, missingIndex, missingCount); 180 181 // Expand response files (arguments in the form of @<filename>) 182 // and then parse the argument again. 183 cl::ExpandResponseFiles(saver(), getQuotingStyle(args), vec); 184 args = this->ParseArgs(vec, missingIndex, missingCount); 185 186 handleColorDiagnostics(args); 187 for (auto *arg : args.filtered(OPT_UNKNOWN)) 188 error("unknown argument: " + arg->getAsString(args)); 189 return args; 190 } 191 192 // Currently we allow a ".imports" to live alongside a library. This can 193 // be used to specify a list of symbols which can be undefined at link 194 // time (imported from the environment. For example libc.a include an 195 // import file that lists the syscall functions it relies on at runtime. 196 // In the long run this information would be better stored as a symbol 197 // attribute/flag in the object file itself. 198 // See: https://github.com/WebAssembly/tool-conventions/issues/35 199 static void readImportFile(StringRef filename) { 200 if (Optional<MemoryBufferRef> buf = readFile(filename)) 201 for (StringRef sym : args::getLines(*buf)) 202 config->allowUndefinedSymbols.insert(sym); 203 } 204 205 // Returns slices of MB by parsing MB as an archive file. 206 // Each slice consists of a member file in the archive. 207 std::vector<MemoryBufferRef> static getArchiveMembers(MemoryBufferRef mb) { 208 std::unique_ptr<Archive> file = 209 CHECK(Archive::create(mb), 210 mb.getBufferIdentifier() + ": failed to parse archive"); 211 212 std::vector<MemoryBufferRef> v; 213 Error err = Error::success(); 214 for (const Archive::Child &c : file->children(err)) { 215 MemoryBufferRef mbref = 216 CHECK(c.getMemoryBufferRef(), 217 mb.getBufferIdentifier() + 218 ": could not get the buffer for a child of the archive"); 219 v.push_back(mbref); 220 } 221 if (err) 222 fatal(mb.getBufferIdentifier() + 223 ": Archive::children failed: " + toString(std::move(err))); 224 225 // Take ownership of memory buffers created for members of thin archives. 226 for (std::unique_ptr<MemoryBuffer> &mb : file->takeThinBuffers()) 227 make<std::unique_ptr<MemoryBuffer>>(std::move(mb)); 228 229 return v; 230 } 231 232 void LinkerDriver::addFile(StringRef path) { 233 Optional<MemoryBufferRef> buffer = readFile(path); 234 if (!buffer.hasValue()) 235 return; 236 MemoryBufferRef mbref = *buffer; 237 238 switch (identify_magic(mbref.getBuffer())) { 239 case file_magic::archive: { 240 SmallString<128> importFile = path; 241 path::replace_extension(importFile, ".imports"); 242 if (fs::exists(importFile)) 243 readImportFile(importFile.str()); 244 245 // Handle -whole-archive. 246 if (inWholeArchive) { 247 for (MemoryBufferRef &m : getArchiveMembers(mbref)) { 248 auto *object = createObjectFile(m, path); 249 // Mark object as live; object members are normally not 250 // live by default but -whole-archive is designed to treat 251 // them as such. 252 object->markLive(); 253 files.push_back(object); 254 } 255 256 return; 257 } 258 259 std::unique_ptr<Archive> file = 260 CHECK(Archive::create(mbref), path + ": failed to parse archive"); 261 262 if (!file->isEmpty() && !file->hasSymbolTable()) { 263 error(mbref.getBufferIdentifier() + 264 ": archive has no index; run ranlib to add one"); 265 } 266 267 files.push_back(make<ArchiveFile>(mbref)); 268 return; 269 } 270 case file_magic::bitcode: 271 case file_magic::wasm_object: 272 files.push_back(createObjectFile(mbref)); 273 break; 274 default: 275 error("unknown file type: " + mbref.getBufferIdentifier()); 276 } 277 } 278 279 // Add a given library by searching it from input search paths. 280 void LinkerDriver::addLibrary(StringRef name) { 281 for (StringRef dir : config->searchPaths) { 282 if (Optional<std::string> s = findFile(dir, "lib" + name + ".a")) { 283 addFile(*s); 284 return; 285 } 286 } 287 288 error("unable to find library -l" + name); 289 } 290 291 void LinkerDriver::createFiles(opt::InputArgList &args) { 292 for (auto *arg : args) { 293 switch (arg->getOption().getID()) { 294 case OPT_l: 295 addLibrary(arg->getValue()); 296 break; 297 case OPT_INPUT: 298 addFile(arg->getValue()); 299 break; 300 case OPT_whole_archive: 301 inWholeArchive = true; 302 break; 303 case OPT_no_whole_archive: 304 inWholeArchive = false; 305 break; 306 } 307 } 308 if (files.empty() && errorCount() == 0) 309 error("no input files"); 310 } 311 312 static StringRef getEntry(opt::InputArgList &args) { 313 auto *arg = args.getLastArg(OPT_entry, OPT_no_entry); 314 if (!arg) { 315 if (args.hasArg(OPT_relocatable)) 316 return ""; 317 if (args.hasArg(OPT_shared)) 318 return "__wasm_call_ctors"; 319 return "_start"; 320 } 321 if (arg->getOption().getID() == OPT_no_entry) 322 return ""; 323 return arg->getValue(); 324 } 325 326 // Determines what we should do if there are remaining unresolved 327 // symbols after the name resolution. 328 static UnresolvedPolicy getUnresolvedSymbolPolicy(opt::InputArgList &args) { 329 UnresolvedPolicy errorOrWarn = args.hasFlag(OPT_error_unresolved_symbols, 330 OPT_warn_unresolved_symbols, true) 331 ? UnresolvedPolicy::ReportError 332 : UnresolvedPolicy::Warn; 333 334 if (auto *arg = args.getLastArg(OPT_unresolved_symbols)) { 335 StringRef s = arg->getValue(); 336 if (s == "ignore-all") 337 return UnresolvedPolicy::Ignore; 338 if (s == "report-all") 339 return errorOrWarn; 340 error("unknown --unresolved-symbols value: " + s); 341 } 342 343 return errorOrWarn; 344 } 345 346 // Initializes Config members by the command line options. 347 static void readConfigs(opt::InputArgList &args) { 348 config->bsymbolic = args.hasArg(OPT_Bsymbolic); 349 config->checkFeatures = 350 args.hasFlag(OPT_check_features, OPT_no_check_features, true); 351 config->compressRelocations = args.hasArg(OPT_compress_relocations); 352 config->demangle = args.hasFlag(OPT_demangle, OPT_no_demangle, true); 353 config->disableVerify = args.hasArg(OPT_disable_verify); 354 config->emitRelocs = args.hasArg(OPT_emit_relocs); 355 config->experimentalPic = args.hasArg(OPT_experimental_pic); 356 config->entry = getEntry(args); 357 config->exportAll = args.hasArg(OPT_export_all); 358 config->exportTable = args.hasArg(OPT_export_table); 359 config->growableTable = args.hasArg(OPT_growable_table); 360 errorHandler().fatalWarnings = 361 args.hasFlag(OPT_fatal_warnings, OPT_no_fatal_warnings, false); 362 config->importMemory = args.hasArg(OPT_import_memory); 363 config->sharedMemory = args.hasArg(OPT_shared_memory); 364 config->importTable = args.hasArg(OPT_import_table); 365 config->importUndefined = args.hasArg(OPT_import_undefined); 366 config->ltoo = args::getInteger(args, OPT_lto_O, 2); 367 config->ltoPartitions = args::getInteger(args, OPT_lto_partitions, 1); 368 config->ltoNewPassManager = 369 args.hasFlag(OPT_no_lto_legacy_pass_manager, OPT_lto_legacy_pass_manager, 370 LLVM_ENABLE_NEW_PASS_MANAGER); 371 config->ltoDebugPassManager = args.hasArg(OPT_lto_debug_pass_manager); 372 config->mapFile = args.getLastArgValue(OPT_Map); 373 config->optimize = args::getInteger(args, OPT_O, 1); 374 config->outputFile = args.getLastArgValue(OPT_o); 375 config->relocatable = args.hasArg(OPT_relocatable); 376 config->gcSections = 377 args.hasFlag(OPT_gc_sections, OPT_no_gc_sections, !config->relocatable); 378 config->mergeDataSegments = 379 args.hasFlag(OPT_merge_data_segments, OPT_no_merge_data_segments, 380 !config->relocatable); 381 config->pie = args.hasFlag(OPT_pie, OPT_no_pie, false); 382 config->printGcSections = 383 args.hasFlag(OPT_print_gc_sections, OPT_no_print_gc_sections, false); 384 config->saveTemps = args.hasArg(OPT_save_temps); 385 config->searchPaths = args::getStrings(args, OPT_L); 386 config->shared = args.hasArg(OPT_shared); 387 config->stripAll = args.hasArg(OPT_strip_all); 388 config->stripDebug = args.hasArg(OPT_strip_debug); 389 config->stackFirst = args.hasArg(OPT_stack_first); 390 config->trace = args.hasArg(OPT_trace); 391 config->thinLTOCacheDir = args.getLastArgValue(OPT_thinlto_cache_dir); 392 config->thinLTOCachePolicy = CHECK( 393 parseCachePruningPolicy(args.getLastArgValue(OPT_thinlto_cache_policy)), 394 "--thinlto-cache-policy: invalid cache policy"); 395 config->unresolvedSymbols = getUnresolvedSymbolPolicy(args); 396 errorHandler().verbose = args.hasArg(OPT_verbose); 397 LLVM_DEBUG(errorHandler().verbose = true); 398 399 config->initialMemory = args::getInteger(args, OPT_initial_memory, 0); 400 config->globalBase = args::getInteger(args, OPT_global_base, 1024); 401 config->maxMemory = args::getInteger(args, OPT_max_memory, 0); 402 config->zStackSize = 403 args::getZOptionValue(args, OPT_z, "stack-size", WasmPageSize); 404 405 // Default value of exportDynamic depends on `-shared` 406 config->exportDynamic = 407 args.hasFlag(OPT_export_dynamic, OPT_no_export_dynamic, config->shared); 408 409 // Parse wasm32/64. 410 if (auto *arg = args.getLastArg(OPT_m)) { 411 StringRef s = arg->getValue(); 412 if (s == "wasm32") 413 config->is64 = false; 414 else if (s == "wasm64") 415 config->is64 = true; 416 else 417 error("invalid target architecture: " + s); 418 } 419 420 // --threads= takes a positive integer and provides the default value for 421 // --thinlto-jobs=. 422 if (auto *arg = args.getLastArg(OPT_threads)) { 423 StringRef v(arg->getValue()); 424 unsigned threads = 0; 425 if (!llvm::to_integer(v, threads, 0) || threads == 0) 426 error(arg->getSpelling() + ": expected a positive integer, but got '" + 427 arg->getValue() + "'"); 428 parallel::strategy = hardware_concurrency(threads); 429 config->thinLTOJobs = v; 430 } 431 if (auto *arg = args.getLastArg(OPT_thinlto_jobs)) 432 config->thinLTOJobs = arg->getValue(); 433 434 if (auto *arg = args.getLastArg(OPT_features)) { 435 config->features = 436 llvm::Optional<std::vector<std::string>>(std::vector<std::string>()); 437 for (StringRef s : arg->getValues()) 438 config->features->push_back(std::string(s)); 439 } 440 441 // Legacy --allow-undefined flag which is equivalent to 442 // --unresolve-symbols=ignore + --import-undefined 443 if (args.hasArg(OPT_allow_undefined)) { 444 config->importUndefined = true; 445 config->unresolvedSymbols = UnresolvedPolicy::Ignore; 446 } 447 448 if (args.hasArg(OPT_print_map)) 449 config->mapFile = "-"; 450 } 451 452 // Some Config members do not directly correspond to any particular 453 // command line options, but computed based on other Config values. 454 // This function initialize such members. See Config.h for the details 455 // of these values. 456 static void setConfigs() { 457 config->isPic = config->pie || config->shared; 458 459 if (config->isPic) { 460 if (config->exportTable) 461 error("-shared/-pie is incompatible with --export-table"); 462 config->importTable = true; 463 } 464 465 if (config->relocatable) { 466 if (config->exportTable) 467 error("--relocatable is incompatible with --export-table"); 468 if (config->growableTable) 469 error("--relocatable is incompatible with --growable-table"); 470 // Ignore any --import-table, as it's redundant. 471 config->importTable = true; 472 } 473 474 if (config->shared) { 475 config->importMemory = true; 476 config->importUndefined = true; 477 } 478 } 479 480 // Some command line options or some combinations of them are not allowed. 481 // This function checks for such errors. 482 static void checkOptions(opt::InputArgList &args) { 483 if (!config->stripDebug && !config->stripAll && config->compressRelocations) 484 error("--compress-relocations is incompatible with output debug" 485 " information. Please pass --strip-debug or --strip-all"); 486 487 if (config->ltoo > 3) 488 error("invalid optimization level for LTO: " + Twine(config->ltoo)); 489 if (config->ltoPartitions == 0) 490 error("--lto-partitions: number of threads must be > 0"); 491 if (!get_threadpool_strategy(config->thinLTOJobs)) 492 error("--thinlto-jobs: invalid job count: " + config->thinLTOJobs); 493 494 if (config->pie && config->shared) 495 error("-shared and -pie may not be used together"); 496 497 if (config->outputFile.empty()) 498 error("no output file specified"); 499 500 if (config->importTable && config->exportTable) 501 error("--import-table and --export-table may not be used together"); 502 503 if (config->relocatable) { 504 if (!config->entry.empty()) 505 error("entry point specified for relocatable output file"); 506 if (config->gcSections) 507 error("-r and --gc-sections may not be used together"); 508 if (config->compressRelocations) 509 error("-r -and --compress-relocations may not be used together"); 510 if (args.hasArg(OPT_undefined)) 511 error("-r -and --undefined may not be used together"); 512 if (config->pie) 513 error("-r and -pie may not be used together"); 514 if (config->sharedMemory) 515 error("-r and --shared-memory may not be used together"); 516 } 517 518 // To begin to prepare for Module Linking-style shared libraries, start 519 // warning about uses of `-shared` and related flags outside of Experimental 520 // mode, to give anyone using them a heads-up that they will be changing. 521 // 522 // Also, warn about flags which request explicit exports. 523 if (!config->experimentalPic) { 524 // -shared will change meaning when Module Linking is implemented. 525 if (config->shared) { 526 warn("creating shared libraries, with -shared, is not yet stable"); 527 } 528 529 // -pie will change meaning when Module Linking is implemented. 530 if (config->pie) { 531 warn("creating PIEs, with -pie, is not yet stable"); 532 } 533 } 534 535 if (config->bsymbolic && !config->shared) { 536 warn("-Bsymbolic is only meaningful when combined with -shared"); 537 } 538 } 539 540 // Force Sym to be entered in the output. Used for -u or equivalent. 541 static Symbol *handleUndefined(StringRef name) { 542 Symbol *sym = symtab->find(name); 543 if (!sym) 544 return nullptr; 545 546 // Since symbol S may not be used inside the program, LTO may 547 // eliminate it. Mark the symbol as "used" to prevent it. 548 sym->isUsedInRegularObj = true; 549 550 if (auto *lazySym = dyn_cast<LazySymbol>(sym)) 551 lazySym->fetch(); 552 553 return sym; 554 } 555 556 static void handleLibcall(StringRef name) { 557 Symbol *sym = symtab->find(name); 558 if (!sym) 559 return; 560 561 if (auto *lazySym = dyn_cast<LazySymbol>(sym)) { 562 MemoryBufferRef mb = lazySym->getMemberBuffer(); 563 if (isBitcode(mb)) 564 lazySym->fetch(); 565 } 566 } 567 568 static UndefinedGlobal * 569 createUndefinedGlobal(StringRef name, llvm::wasm::WasmGlobalType *type) { 570 auto *sym = cast<UndefinedGlobal>(symtab->addUndefinedGlobal( 571 name, None, None, WASM_SYMBOL_UNDEFINED, nullptr, type)); 572 config->allowUndefinedSymbols.insert(sym->getName()); 573 sym->isUsedInRegularObj = true; 574 return sym; 575 } 576 577 static InputGlobal *createGlobal(StringRef name, bool isMutable) { 578 llvm::wasm::WasmGlobal wasmGlobal; 579 bool is64 = config->is64.getValueOr(false); 580 wasmGlobal.Type = {uint8_t(is64 ? WASM_TYPE_I64 : WASM_TYPE_I32), isMutable}; 581 wasmGlobal.InitExpr = intConst(0, is64); 582 wasmGlobal.SymbolName = name; 583 return make<InputGlobal>(wasmGlobal, nullptr); 584 } 585 586 static GlobalSymbol *createGlobalVariable(StringRef name, bool isMutable) { 587 InputGlobal *g = createGlobal(name, isMutable); 588 return symtab->addSyntheticGlobal(name, WASM_SYMBOL_VISIBILITY_HIDDEN, g); 589 } 590 591 static GlobalSymbol *createOptionalGlobal(StringRef name, bool isMutable) { 592 InputGlobal *g = createGlobal(name, isMutable); 593 return symtab->addOptionalGlobalSymbol(name, g); 594 } 595 596 // Create ABI-defined synthetic symbols 597 static void createSyntheticSymbols() { 598 if (config->relocatable) 599 return; 600 601 static WasmSignature nullSignature = {{}, {}}; 602 static WasmSignature i32ArgSignature = {{}, {ValType::I32}}; 603 static WasmSignature i64ArgSignature = {{}, {ValType::I64}}; 604 static llvm::wasm::WasmGlobalType globalTypeI32 = {WASM_TYPE_I32, false}; 605 static llvm::wasm::WasmGlobalType globalTypeI64 = {WASM_TYPE_I64, false}; 606 static llvm::wasm::WasmGlobalType mutableGlobalTypeI32 = {WASM_TYPE_I32, 607 true}; 608 static llvm::wasm::WasmGlobalType mutableGlobalTypeI64 = {WASM_TYPE_I64, 609 true}; 610 WasmSym::callCtors = symtab->addSyntheticFunction( 611 "__wasm_call_ctors", WASM_SYMBOL_VISIBILITY_HIDDEN, 612 make<SyntheticFunction>(nullSignature, "__wasm_call_ctors")); 613 614 bool is64 = config->is64.getValueOr(false); 615 616 if (config->isPic) { 617 WasmSym::stackPointer = 618 createUndefinedGlobal("__stack_pointer", config->is64.getValueOr(false) 619 ? &mutableGlobalTypeI64 620 : &mutableGlobalTypeI32); 621 // For PIC code, we import two global variables (__memory_base and 622 // __table_base) from the environment and use these as the offset at 623 // which to load our static data and function table. 624 // See: 625 // https://github.com/WebAssembly/tool-conventions/blob/main/DynamicLinking.md 626 auto *globalType = is64 ? &globalTypeI64 : &globalTypeI32; 627 WasmSym::memoryBase = createUndefinedGlobal("__memory_base", globalType); 628 WasmSym::tableBase = createUndefinedGlobal("__table_base", globalType); 629 WasmSym::memoryBase->markLive(); 630 WasmSym::tableBase->markLive(); 631 if (is64) { 632 WasmSym::tableBase32 = 633 createUndefinedGlobal("__table_base32", &globalTypeI32); 634 WasmSym::tableBase32->markLive(); 635 } else { 636 WasmSym::tableBase32 = nullptr; 637 } 638 } else { 639 // For non-PIC code 640 WasmSym::stackPointer = createGlobalVariable("__stack_pointer", true); 641 WasmSym::stackPointer->markLive(); 642 } 643 644 if (config->sharedMemory) { 645 WasmSym::tlsBase = createGlobalVariable("__tls_base", true); 646 WasmSym::tlsSize = createGlobalVariable("__tls_size", false); 647 WasmSym::tlsAlign = createGlobalVariable("__tls_align", false); 648 WasmSym::initTLS = symtab->addSyntheticFunction( 649 "__wasm_init_tls", WASM_SYMBOL_VISIBILITY_HIDDEN, 650 make<SyntheticFunction>( 651 is64 ? i64ArgSignature : i32ArgSignature, 652 "__wasm_init_tls")); 653 } 654 } 655 656 static void createOptionalSymbols() { 657 if (config->relocatable) 658 return; 659 660 WasmSym::dsoHandle = symtab->addOptionalDataSymbol("__dso_handle"); 661 662 if (!config->shared) 663 WasmSym::dataEnd = symtab->addOptionalDataSymbol("__data_end"); 664 665 if (!config->isPic) { 666 WasmSym::globalBase = symtab->addOptionalDataSymbol("__global_base"); 667 WasmSym::heapBase = symtab->addOptionalDataSymbol("__heap_base"); 668 WasmSym::definedMemoryBase = symtab->addOptionalDataSymbol("__memory_base"); 669 WasmSym::definedTableBase = symtab->addOptionalDataSymbol("__table_base"); 670 if (config->is64.getValueOr(false)) 671 WasmSym::definedTableBase32 = 672 symtab->addOptionalDataSymbol("__table_base32"); 673 } 674 675 // For non-shared memory programs we still need to define __tls_base since we 676 // allow object files built with TLS to be linked into single threaded 677 // programs, and such object files can contain references to this symbol. 678 // 679 // However, in this case __tls_base is immutable and points directly to the 680 // start of the `.tdata` static segment. 681 // 682 // __tls_size and __tls_align are not needed in this case since they are only 683 // needed for __wasm_init_tls (which we do not create in this case). 684 if (!config->sharedMemory) 685 WasmSym::tlsBase = createOptionalGlobal("__tls_base", false); 686 } 687 688 // Reconstructs command line arguments so that so that you can re-run 689 // the same command with the same inputs. This is for --reproduce. 690 static std::string createResponseFile(const opt::InputArgList &args) { 691 SmallString<0> data; 692 raw_svector_ostream os(data); 693 694 // Copy the command line to the output while rewriting paths. 695 for (auto *arg : args) { 696 switch (arg->getOption().getID()) { 697 case OPT_reproduce: 698 break; 699 case OPT_INPUT: 700 os << quote(relativeToRoot(arg->getValue())) << "\n"; 701 break; 702 case OPT_o: 703 // If -o path contains directories, "lld @response.txt" will likely 704 // fail because the archive we are creating doesn't contain empty 705 // directories for the output path (-o doesn't create directories). 706 // Strip directories to prevent the issue. 707 os << "-o " << quote(sys::path::filename(arg->getValue())) << "\n"; 708 break; 709 default: 710 os << toString(*arg) << "\n"; 711 } 712 } 713 return std::string(data.str()); 714 } 715 716 // The --wrap option is a feature to rename symbols so that you can write 717 // wrappers for existing functions. If you pass `-wrap=foo`, all 718 // occurrences of symbol `foo` are resolved to `wrap_foo` (so, you are 719 // expected to write `wrap_foo` function as a wrapper). The original 720 // symbol becomes accessible as `real_foo`, so you can call that from your 721 // wrapper. 722 // 723 // This data structure is instantiated for each -wrap option. 724 struct WrappedSymbol { 725 Symbol *sym; 726 Symbol *real; 727 Symbol *wrap; 728 }; 729 730 static Symbol *addUndefined(StringRef name) { 731 return symtab->addUndefinedFunction(name, None, None, WASM_SYMBOL_UNDEFINED, 732 nullptr, nullptr, false); 733 } 734 735 // Handles -wrap option. 736 // 737 // This function instantiates wrapper symbols. At this point, they seem 738 // like they are not being used at all, so we explicitly set some flags so 739 // that LTO won't eliminate them. 740 static std::vector<WrappedSymbol> addWrappedSymbols(opt::InputArgList &args) { 741 std::vector<WrappedSymbol> v; 742 DenseSet<StringRef> seen; 743 744 for (auto *arg : args.filtered(OPT_wrap)) { 745 StringRef name = arg->getValue(); 746 if (!seen.insert(name).second) 747 continue; 748 749 Symbol *sym = symtab->find(name); 750 if (!sym) 751 continue; 752 753 Symbol *real = addUndefined(saver().save("__real_" + name)); 754 Symbol *wrap = addUndefined(saver().save("__wrap_" + name)); 755 v.push_back({sym, real, wrap}); 756 757 // We want to tell LTO not to inline symbols to be overwritten 758 // because LTO doesn't know the final symbol contents after renaming. 759 real->canInline = false; 760 sym->canInline = false; 761 762 // Tell LTO not to eliminate these symbols. 763 sym->isUsedInRegularObj = true; 764 wrap->isUsedInRegularObj = true; 765 real->isUsedInRegularObj = false; 766 } 767 return v; 768 } 769 770 // Do renaming for -wrap by updating pointers to symbols. 771 // 772 // When this function is executed, only InputFiles and symbol table 773 // contain pointers to symbol objects. We visit them to replace pointers, 774 // so that wrapped symbols are swapped as instructed by the command line. 775 static void wrapSymbols(ArrayRef<WrappedSymbol> wrapped) { 776 DenseMap<Symbol *, Symbol *> map; 777 for (const WrappedSymbol &w : wrapped) { 778 map[w.sym] = w.wrap; 779 map[w.real] = w.sym; 780 } 781 782 // Update pointers in input files. 783 parallelForEach(symtab->objectFiles, [&](InputFile *file) { 784 MutableArrayRef<Symbol *> syms = file->getMutableSymbols(); 785 for (size_t i = 0, e = syms.size(); i != e; ++i) 786 if (Symbol *s = map.lookup(syms[i])) 787 syms[i] = s; 788 }); 789 790 // Update pointers in the symbol table. 791 for (const WrappedSymbol &w : wrapped) 792 symtab->wrap(w.sym, w.real, w.wrap); 793 } 794 795 static void splitSections() { 796 // splitIntoPieces needs to be called on each MergeInputChunk 797 // before calling finalizeContents(). 798 LLVM_DEBUG(llvm::dbgs() << "splitSections\n"); 799 parallelForEach(symtab->objectFiles, [](ObjFile *file) { 800 for (InputChunk *seg : file->segments) { 801 if (auto *s = dyn_cast<MergeInputChunk>(seg)) 802 s->splitIntoPieces(); 803 } 804 for (InputChunk *sec : file->customSections) { 805 if (auto *s = dyn_cast<MergeInputChunk>(sec)) 806 s->splitIntoPieces(); 807 } 808 }); 809 } 810 811 void LinkerDriver::linkerMain(ArrayRef<const char *> argsArr) { 812 WasmOptTable parser; 813 opt::InputArgList args = parser.parse(argsArr.slice(1)); 814 815 // Handle --help 816 if (args.hasArg(OPT_help)) { 817 parser.printHelp(lld::outs(), 818 (std::string(argsArr[0]) + " [options] file...").c_str(), 819 "LLVM Linker", false); 820 return; 821 } 822 823 // Handle --version 824 if (args.hasArg(OPT_version) || args.hasArg(OPT_v)) { 825 lld::outs() << getLLDVersion() << "\n"; 826 return; 827 } 828 829 // Handle --reproduce 830 if (auto *arg = args.getLastArg(OPT_reproduce)) { 831 StringRef path = arg->getValue(); 832 Expected<std::unique_ptr<TarWriter>> errOrWriter = 833 TarWriter::create(path, path::stem(path)); 834 if (errOrWriter) { 835 tar = std::move(*errOrWriter); 836 tar->append("response.txt", createResponseFile(args)); 837 tar->append("version.txt", getLLDVersion() + "\n"); 838 } else { 839 error("--reproduce: " + toString(errOrWriter.takeError())); 840 } 841 } 842 843 // Parse and evaluate -mllvm options. 844 std::vector<const char *> v; 845 v.push_back("wasm-ld (LLVM option parsing)"); 846 for (auto *arg : args.filtered(OPT_mllvm)) 847 v.push_back(arg->getValue()); 848 cl::ResetAllOptionOccurrences(); 849 cl::ParseCommandLineOptions(v.size(), v.data()); 850 851 errorHandler().errorLimit = args::getInteger(args, OPT_error_limit, 20); 852 853 readConfigs(args); 854 855 createFiles(args); 856 if (errorCount()) 857 return; 858 859 setConfigs(); 860 checkOptions(args); 861 if (errorCount()) 862 return; 863 864 if (auto *arg = args.getLastArg(OPT_allow_undefined_file)) 865 readImportFile(arg->getValue()); 866 867 // Fail early if the output file or map file is not writable. If a user has a 868 // long link, e.g. due to a large LTO link, they do not wish to run it and 869 // find that it failed because there was a mistake in their command-line. 870 if (auto e = tryCreateFile(config->outputFile)) 871 error("cannot open output file " + config->outputFile + ": " + e.message()); 872 if (auto e = tryCreateFile(config->mapFile)) 873 error("cannot open map file " + config->mapFile + ": " + e.message()); 874 if (errorCount()) 875 return; 876 877 // Handle --trace-symbol. 878 for (auto *arg : args.filtered(OPT_trace_symbol)) 879 symtab->trace(arg->getValue()); 880 881 for (auto *arg : args.filtered(OPT_export_if_defined)) 882 config->exportedSymbols.insert(arg->getValue()); 883 884 for (auto *arg : args.filtered(OPT_export)) { 885 config->exportedSymbols.insert(arg->getValue()); 886 config->requiredExports.push_back(arg->getValue()); 887 } 888 889 createSyntheticSymbols(); 890 891 // Add all files to the symbol table. This will add almost all 892 // symbols that we need to the symbol table. 893 for (InputFile *f : files) 894 symtab->addFile(f); 895 if (errorCount()) 896 return; 897 898 // Handle the `--undefined <sym>` options. 899 for (auto *arg : args.filtered(OPT_undefined)) 900 handleUndefined(arg->getValue()); 901 902 // Handle the `--export <sym>` options 903 // This works like --undefined but also exports the symbol if its found 904 for (auto &iter : config->exportedSymbols) 905 handleUndefined(iter.first()); 906 907 Symbol *entrySym = nullptr; 908 if (!config->relocatable && !config->entry.empty()) { 909 entrySym = handleUndefined(config->entry); 910 if (entrySym && entrySym->isDefined()) 911 entrySym->forceExport = true; 912 else 913 error("entry symbol not defined (pass --no-entry to suppress): " + 914 config->entry); 915 } 916 917 // If the user code defines a `__wasm_call_dtors` function, remember it so 918 // that we can call it from the command export wrappers. Unlike 919 // `__wasm_call_ctors` which we synthesize, `__wasm_call_dtors` is defined 920 // by libc/etc., because destructors are registered dynamically with 921 // `__cxa_atexit` and friends. 922 if (!config->relocatable && !config->shared && 923 !WasmSym::callCtors->isUsedInRegularObj && 924 WasmSym::callCtors->getName() != config->entry && 925 !config->exportedSymbols.count(WasmSym::callCtors->getName())) { 926 if (Symbol *callDtors = handleUndefined("__wasm_call_dtors")) { 927 if (auto *callDtorsFunc = dyn_cast<DefinedFunction>(callDtors)) { 928 if (callDtorsFunc->signature && 929 (!callDtorsFunc->signature->Params.empty() || 930 !callDtorsFunc->signature->Returns.empty())) { 931 error("__wasm_call_dtors must have no argument or return values"); 932 } 933 WasmSym::callDtors = callDtorsFunc; 934 } else { 935 error("__wasm_call_dtors must be a function"); 936 } 937 } 938 } 939 940 if (errorCount()) 941 return; 942 943 // Create wrapped symbols for -wrap option. 944 std::vector<WrappedSymbol> wrapped = addWrappedSymbols(args); 945 946 // If any of our inputs are bitcode files, the LTO code generator may create 947 // references to certain library functions that might not be explicit in the 948 // bitcode file's symbol table. If any of those library functions are defined 949 // in a bitcode file in an archive member, we need to arrange to use LTO to 950 // compile those archive members by adding them to the link beforehand. 951 // 952 // We only need to add libcall symbols to the link before LTO if the symbol's 953 // definition is in bitcode. Any other required libcall symbols will be added 954 // to the link after LTO when we add the LTO object file to the link. 955 if (!symtab->bitcodeFiles.empty()) 956 for (auto *s : lto::LTO::getRuntimeLibcallSymbols()) 957 handleLibcall(s); 958 if (errorCount()) 959 return; 960 961 // Do link-time optimization if given files are LLVM bitcode files. 962 // This compiles bitcode files into real object files. 963 symtab->compileBitcodeFiles(); 964 if (errorCount()) 965 return; 966 967 createOptionalSymbols(); 968 969 // Resolve any variant symbols that were created due to signature 970 // mismatchs. 971 symtab->handleSymbolVariants(); 972 if (errorCount()) 973 return; 974 975 // Apply symbol renames for -wrap. 976 if (!wrapped.empty()) 977 wrapSymbols(wrapped); 978 979 for (auto &iter : config->exportedSymbols) { 980 Symbol *sym = symtab->find(iter.first()); 981 if (sym && sym->isDefined()) 982 sym->forceExport = true; 983 } 984 985 if (!config->relocatable && !config->isPic) { 986 // Add synthetic dummies for weak undefined functions. Must happen 987 // after LTO otherwise functions may not yet have signatures. 988 symtab->handleWeakUndefines(); 989 } 990 991 if (entrySym) 992 entrySym->setHidden(false); 993 994 if (errorCount()) 995 return; 996 997 // Split WASM_SEG_FLAG_STRINGS sections into pieces in preparation for garbage 998 // collection. 999 splitSections(); 1000 1001 // Do size optimizations: garbage collection 1002 markLive(); 1003 1004 // Provide the indirect function table if needed. 1005 WasmSym::indirectFunctionTable = 1006 symtab->resolveIndirectFunctionTable(/*required =*/false); 1007 1008 if (errorCount()) 1009 return; 1010 1011 // Write the result to the file. 1012 writeResult(); 1013 } 1014 1015 } // namespace wasm 1016 } // namespace lld 1017