1 //===- llvm-objcopy.cpp ---------------------------------------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 #include "llvm-objcopy.h" 11 #include "Object.h" 12 #include "llvm/ADT/STLExtras.h" 13 #include "llvm/ADT/StringRef.h" 14 #include "llvm/ADT/Twine.h" 15 #include "llvm/BinaryFormat/ELF.h" 16 #include "llvm/Object/Binary.h" 17 #include "llvm/Object/ELFObjectFile.h" 18 #include "llvm/Object/ELFTypes.h" 19 #include "llvm/Object/Error.h" 20 #include "llvm/Option/Arg.h" 21 #include "llvm/Option/ArgList.h" 22 #include "llvm/Option/Option.h" 23 #include "llvm/Support/Casting.h" 24 #include "llvm/Support/CommandLine.h" 25 #include "llvm/Support/Compiler.h" 26 #include "llvm/Support/Error.h" 27 #include "llvm/Support/ErrorHandling.h" 28 #include "llvm/Support/ErrorOr.h" 29 #include "llvm/Support/FileOutputBuffer.h" 30 #include "llvm/Support/InitLLVM.h" 31 #include "llvm/Support/Path.h" 32 #include "llvm/Support/raw_ostream.h" 33 #include <algorithm> 34 #include <cassert> 35 #include <cstdlib> 36 #include <functional> 37 #include <iterator> 38 #include <memory> 39 #include <string> 40 #include <system_error> 41 #include <utility> 42 43 using namespace llvm; 44 using namespace object; 45 using namespace ELF; 46 47 namespace { 48 49 enum ObjcopyID { 50 OBJCOPY_INVALID = 0, // This is not an option ID. 51 #define OPTION(PREFIX, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 52 HELPTEXT, METAVAR, VALUES) \ 53 OBJCOPY_##ID, 54 #include "ObjcopyOpts.inc" 55 #undef OPTION 56 }; 57 58 #define PREFIX(NAME, VALUE) const char *const OBJCOPY_##NAME[] = VALUE; 59 #include "ObjcopyOpts.inc" 60 #undef PREFIX 61 62 static const opt::OptTable::Info ObjcopyInfoTable[] = { 63 #define OPTION(PREFIX, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 64 HELPTEXT, METAVAR, VALUES) \ 65 {OBJCOPY_##PREFIX, \ 66 NAME, \ 67 HELPTEXT, \ 68 METAVAR, \ 69 OBJCOPY_##ID, \ 70 opt::Option::KIND##Class, \ 71 PARAM, \ 72 FLAGS, \ 73 OBJCOPY_##GROUP, \ 74 OBJCOPY_##ALIAS, \ 75 ALIASARGS, \ 76 VALUES}, 77 #include "ObjcopyOpts.inc" 78 #undef OPTION 79 }; 80 81 class ObjcopyOptTable : public opt::OptTable { 82 public: 83 ObjcopyOptTable() : OptTable(ObjcopyInfoTable, true) {} 84 }; 85 86 enum StripID { 87 STRIP_INVALID = 0, // This is not an option ID. 88 #define OPTION(PREFIX, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 89 HELPTEXT, METAVAR, VALUES) \ 90 STRIP_##ID, 91 #include "StripOpts.inc" 92 #undef OPTION 93 }; 94 95 #define PREFIX(NAME, VALUE) const char *const STRIP_##NAME[] = VALUE; 96 #include "StripOpts.inc" 97 #undef PREFIX 98 99 static const opt::OptTable::Info StripInfoTable[] = { 100 #define OPTION(PREFIX, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 101 HELPTEXT, METAVAR, VALUES) \ 102 {STRIP_##PREFIX, NAME, HELPTEXT, \ 103 METAVAR, STRIP_##ID, opt::Option::KIND##Class, \ 104 PARAM, FLAGS, STRIP_##GROUP, \ 105 STRIP_##ALIAS, ALIASARGS, VALUES}, 106 #include "StripOpts.inc" 107 #undef OPTION 108 }; 109 110 class StripOptTable : public opt::OptTable { 111 public: 112 StripOptTable() : OptTable(StripInfoTable, true) {} 113 }; 114 115 } // namespace 116 117 // The name this program was invoked as. 118 static StringRef ToolName; 119 120 namespace llvm { 121 122 LLVM_ATTRIBUTE_NORETURN void error(Twine Message) { 123 errs() << ToolName << ": " << Message << ".\n"; 124 errs().flush(); 125 exit(1); 126 } 127 128 LLVM_ATTRIBUTE_NORETURN void reportError(StringRef File, std::error_code EC) { 129 assert(EC); 130 errs() << ToolName << ": '" << File << "': " << EC.message() << ".\n"; 131 exit(1); 132 } 133 134 LLVM_ATTRIBUTE_NORETURN void reportError(StringRef File, Error E) { 135 assert(E); 136 std::string Buf; 137 raw_string_ostream OS(Buf); 138 logAllUnhandledErrors(std::move(E), OS, ""); 139 OS.flush(); 140 errs() << ToolName << ": '" << File << "': " << Buf; 141 exit(1); 142 } 143 144 } // end namespace llvm 145 146 struct CopyConfig { 147 StringRef OutputFilename; 148 StringRef InputFilename; 149 StringRef OutputFormat; 150 StringRef InputFormat; 151 StringRef BinaryArch; 152 153 StringRef SplitDWO; 154 StringRef AddGnuDebugLink; 155 std::vector<StringRef> ToRemove; 156 std::vector<StringRef> Keep; 157 std::vector<StringRef> OnlyKeep; 158 std::vector<StringRef> AddSection; 159 std::vector<StringRef> SymbolsToLocalize; 160 std::vector<StringRef> SymbolsToGlobalize; 161 std::vector<StringRef> SymbolsToWeaken; 162 std::vector<StringRef> SymbolsToRemove; 163 std::vector<StringRef> SymbolsToKeep; 164 StringMap<StringRef> SymbolsToRename; 165 bool StripAll = false; 166 bool StripAllGNU = false; 167 bool StripDebug = false; 168 bool StripSections = false; 169 bool StripNonAlloc = false; 170 bool StripDWO = false; 171 bool StripUnneeded = false; 172 bool ExtractDWO = false; 173 bool LocalizeHidden = false; 174 bool Weaken = false; 175 bool DiscardAll = false; 176 bool OnlyKeepDebug = false; 177 }; 178 179 using SectionPred = std::function<bool(const SectionBase &Sec)>; 180 181 bool IsDWOSection(const SectionBase &Sec) { return Sec.Name.endswith(".dwo"); } 182 183 bool OnlyKeepDWOPred(const Object &Obj, const SectionBase &Sec) { 184 // We can't remove the section header string table. 185 if (&Sec == Obj.SectionNames) 186 return false; 187 // Short of keeping the string table we want to keep everything that is a DWO 188 // section and remove everything else. 189 return !IsDWOSection(Sec); 190 } 191 192 std::unique_ptr<Writer> CreateWriter(const CopyConfig &Config, Object &Obj, 193 StringRef File, ElfType OutputElfType) { 194 if (Config.OutputFormat == "binary") { 195 return llvm::make_unique<BinaryWriter>(File, Obj); 196 } 197 // Depending on the initial ELFT and OutputFormat we need a different Writer. 198 switch (OutputElfType) { 199 case ELFT_ELF32LE: 200 return llvm::make_unique<ELFWriter<ELF32LE>>(File, Obj, 201 !Config.StripSections); 202 case ELFT_ELF64LE: 203 return llvm::make_unique<ELFWriter<ELF64LE>>(File, Obj, 204 !Config.StripSections); 205 case ELFT_ELF32BE: 206 return llvm::make_unique<ELFWriter<ELF32BE>>(File, Obj, 207 !Config.StripSections); 208 case ELFT_ELF64BE: 209 return llvm::make_unique<ELFWriter<ELF64BE>>(File, Obj, 210 !Config.StripSections); 211 } 212 llvm_unreachable("Invalid output format"); 213 } 214 215 void SplitDWOToFile(const CopyConfig &Config, const Reader &Reader, 216 StringRef File, ElfType OutputElfType) { 217 auto DWOFile = Reader.create(); 218 DWOFile->removeSections( 219 [&](const SectionBase &Sec) { return OnlyKeepDWOPred(*DWOFile, Sec); }); 220 auto Writer = CreateWriter(Config, *DWOFile, File, OutputElfType); 221 Writer->finalize(); 222 Writer->write(); 223 } 224 225 // This function handles the high level operations of GNU objcopy including 226 // handling command line options. It's important to outline certain properties 227 // we expect to hold of the command line operations. Any operation that "keeps" 228 // should keep regardless of a remove. Additionally any removal should respect 229 // any previous removals. Lastly whether or not something is removed shouldn't 230 // depend a) on the order the options occur in or b) on some opaque priority 231 // system. The only priority is that keeps/copies overrule removes. 232 void HandleArgs(const CopyConfig &Config, Object &Obj, const Reader &Reader, 233 ElfType OutputElfType) { 234 235 if (!Config.SplitDWO.empty()) { 236 SplitDWOToFile(Config, Reader, Config.SplitDWO, OutputElfType); 237 } 238 239 // TODO: update or remove symbols only if there is an option that affects 240 // them. 241 if (Obj.SymbolTable) { 242 Obj.SymbolTable->updateSymbols([&](Symbol &Sym) { 243 if ((Config.LocalizeHidden && 244 (Sym.Visibility == STV_HIDDEN || Sym.Visibility == STV_INTERNAL)) || 245 (!Config.SymbolsToLocalize.empty() && 246 is_contained(Config.SymbolsToLocalize, Sym.Name))) 247 Sym.Binding = STB_LOCAL; 248 249 if (!Config.SymbolsToGlobalize.empty() && 250 is_contained(Config.SymbolsToGlobalize, Sym.Name)) 251 Sym.Binding = STB_GLOBAL; 252 253 if (!Config.SymbolsToWeaken.empty() && 254 is_contained(Config.SymbolsToWeaken, Sym.Name) && 255 Sym.Binding == STB_GLOBAL) 256 Sym.Binding = STB_WEAK; 257 258 if (Config.Weaken && Sym.Binding == STB_GLOBAL && 259 Sym.getShndx() != SHN_UNDEF) 260 Sym.Binding = STB_WEAK; 261 262 const auto I = Config.SymbolsToRename.find(Sym.Name); 263 if (I != Config.SymbolsToRename.end()) 264 Sym.Name = I->getValue(); 265 }); 266 267 // The purpose of this loop is to mark symbols referenced by sections 268 // (like GroupSection or RelocationSection). This way, we know which 269 // symbols are still 'needed' and wich are not. 270 if (Config.StripUnneeded) { 271 for (auto &Section : Obj.sections()) 272 Section.markSymbols(); 273 } 274 275 Obj.removeSymbols([&](const Symbol &Sym) { 276 if (!Config.SymbolsToKeep.empty() && 277 is_contained(Config.SymbolsToKeep, Sym.Name)) 278 return false; 279 280 if (Config.DiscardAll && Sym.Binding == STB_LOCAL && 281 Sym.getShndx() != SHN_UNDEF && Sym.Type != STT_FILE && 282 Sym.Type != STT_SECTION) 283 return true; 284 285 if (Config.StripAll || Config.StripAllGNU) 286 return true; 287 288 if (!Config.SymbolsToRemove.empty() && 289 is_contained(Config.SymbolsToRemove, Sym.Name)) { 290 return true; 291 } 292 293 // TODO: We might handle the 'null symbol' in a different way 294 // by probably handling it the same way as we handle 'null section' ? 295 if (Config.StripUnneeded && !Sym.Referenced && Sym.Index != 0 && 296 (Sym.Binding == STB_LOCAL || Sym.getShndx() == SHN_UNDEF) && 297 Sym.Type != STT_FILE && Sym.Type != STT_SECTION) 298 return true; 299 300 return false; 301 }); 302 } 303 304 SectionPred RemovePred = [](const SectionBase &) { return false; }; 305 306 // Removes: 307 if (!Config.ToRemove.empty()) { 308 RemovePred = [&Config](const SectionBase &Sec) { 309 return std::find(std::begin(Config.ToRemove), std::end(Config.ToRemove), 310 Sec.Name) != std::end(Config.ToRemove); 311 }; 312 } 313 314 if (Config.StripDWO || !Config.SplitDWO.empty()) 315 RemovePred = [RemovePred](const SectionBase &Sec) { 316 return IsDWOSection(Sec) || RemovePred(Sec); 317 }; 318 319 if (Config.ExtractDWO) 320 RemovePred = [RemovePred, &Obj](const SectionBase &Sec) { 321 return OnlyKeepDWOPred(Obj, Sec) || RemovePred(Sec); 322 }; 323 324 if (Config.StripAllGNU) 325 RemovePred = [RemovePred, &Obj](const SectionBase &Sec) { 326 if (RemovePred(Sec)) 327 return true; 328 if ((Sec.Flags & SHF_ALLOC) != 0) 329 return false; 330 if (&Sec == Obj.SectionNames) 331 return false; 332 switch (Sec.Type) { 333 case SHT_SYMTAB: 334 case SHT_REL: 335 case SHT_RELA: 336 case SHT_STRTAB: 337 return true; 338 } 339 return Sec.Name.startswith(".debug"); 340 }; 341 342 if (Config.StripSections) { 343 RemovePred = [RemovePred](const SectionBase &Sec) { 344 return RemovePred(Sec) || (Sec.Flags & SHF_ALLOC) == 0; 345 }; 346 } 347 348 if (Config.StripDebug) { 349 RemovePred = [RemovePred](const SectionBase &Sec) { 350 return RemovePred(Sec) || Sec.Name.startswith(".debug"); 351 }; 352 } 353 354 if (Config.StripNonAlloc) 355 RemovePred = [RemovePred, &Obj](const SectionBase &Sec) { 356 if (RemovePred(Sec)) 357 return true; 358 if (&Sec == Obj.SectionNames) 359 return false; 360 return (Sec.Flags & SHF_ALLOC) == 0; 361 }; 362 363 if (Config.StripAll) 364 RemovePred = [RemovePred, &Obj](const SectionBase &Sec) { 365 if (RemovePred(Sec)) 366 return true; 367 if (&Sec == Obj.SectionNames) 368 return false; 369 if (Sec.Name.startswith(".gnu.warning")) 370 return false; 371 return (Sec.Flags & SHF_ALLOC) == 0; 372 }; 373 374 // Explicit copies: 375 if (!Config.OnlyKeep.empty()) { 376 RemovePred = [&Config, RemovePred, &Obj](const SectionBase &Sec) { 377 // Explicitly keep these sections regardless of previous removes. 378 if (std::find(std::begin(Config.OnlyKeep), std::end(Config.OnlyKeep), 379 Sec.Name) != std::end(Config.OnlyKeep)) 380 return false; 381 382 // Allow all implicit removes. 383 if (RemovePred(Sec)) 384 return true; 385 386 // Keep special sections. 387 if (Obj.SectionNames == &Sec) 388 return false; 389 if (Obj.SymbolTable == &Sec || Obj.SymbolTable->getStrTab() == &Sec) 390 return false; 391 392 // Remove everything else. 393 return true; 394 }; 395 } 396 397 if (!Config.Keep.empty()) { 398 RemovePred = [Config, RemovePred](const SectionBase &Sec) { 399 // Explicitly keep these sections regardless of previous removes. 400 if (std::find(std::begin(Config.Keep), std::end(Config.Keep), Sec.Name) != 401 std::end(Config.Keep)) 402 return false; 403 // Otherwise defer to RemovePred. 404 return RemovePred(Sec); 405 }; 406 } 407 408 // This has to be the last predicate assignment. 409 // If the option --keep-symbol has been specified 410 // and at least one of those symbols is present 411 // (equivalently, the updated symbol table is not empty) 412 // the symbol table and the string table should not be removed. 413 if (!Config.SymbolsToKeep.empty() && !Obj.SymbolTable->empty()) { 414 RemovePred = [&Obj, RemovePred](const SectionBase &Sec) { 415 if (&Sec == Obj.SymbolTable || &Sec == Obj.SymbolTable->getStrTab()) 416 return false; 417 return RemovePred(Sec); 418 }; 419 } 420 421 Obj.removeSections(RemovePred); 422 423 if (!Config.AddSection.empty()) { 424 for (const auto &Flag : Config.AddSection) { 425 auto SecPair = Flag.split("="); 426 auto SecName = SecPair.first; 427 auto File = SecPair.second; 428 auto BufOrErr = MemoryBuffer::getFile(File); 429 if (!BufOrErr) 430 reportError(File, BufOrErr.getError()); 431 auto Buf = std::move(*BufOrErr); 432 auto BufPtr = reinterpret_cast<const uint8_t *>(Buf->getBufferStart()); 433 auto BufSize = Buf->getBufferSize(); 434 Obj.addSection<OwnedDataSection>(SecName, 435 ArrayRef<uint8_t>(BufPtr, BufSize)); 436 } 437 } 438 439 if (!Config.AddGnuDebugLink.empty()) 440 Obj.addSection<GnuDebugLinkSection>(Config.AddGnuDebugLink); 441 } 442 443 std::unique_ptr<Reader> CreateReader(StringRef InputFilename, 444 ElfType &OutputElfType) { 445 // Right now we can only read ELF files so there's only one reader; 446 auto Out = llvm::make_unique<ELFReader>(InputFilename); 447 // We need to set the default ElfType for output. 448 OutputElfType = Out->getElfType(); 449 return std::move(Out); 450 } 451 452 void ExecuteElfObjcopy(const CopyConfig &Config) { 453 ElfType OutputElfType; 454 auto Reader = CreateReader(Config.InputFilename, OutputElfType); 455 auto Obj = Reader->create(); 456 auto Writer = 457 CreateWriter(Config, *Obj, Config.OutputFilename, OutputElfType); 458 HandleArgs(Config, *Obj, *Reader, OutputElfType); 459 Writer->finalize(); 460 Writer->write(); 461 } 462 463 // ParseObjcopyOptions returns the config and sets the input arguments. If a 464 // help flag is set then ParseObjcopyOptions will print the help messege and 465 // exit. 466 CopyConfig ParseObjcopyOptions(ArrayRef<const char *> ArgsArr) { 467 ObjcopyOptTable T; 468 unsigned MissingArgumentIndex, MissingArgumentCount; 469 llvm::opt::InputArgList InputArgs = 470 T.ParseArgs(ArgsArr, MissingArgumentIndex, MissingArgumentCount); 471 472 if (InputArgs.size() == 0) { 473 T.PrintHelp(errs(), "llvm-objcopy <input> [ <output> ]", "objcopy tool"); 474 exit(1); 475 } 476 477 if (InputArgs.hasArg(OBJCOPY_help)) { 478 T.PrintHelp(outs(), "llvm-objcopy <input> [ <output> ]", "objcopy tool"); 479 exit(0); 480 } 481 482 SmallVector<const char *, 2> Positional; 483 484 for (auto Arg : InputArgs.filtered(OBJCOPY_UNKNOWN)) 485 error("unknown argument '" + Arg->getAsString(InputArgs) + "'"); 486 487 for (auto Arg : InputArgs.filtered(OBJCOPY_INPUT)) 488 Positional.push_back(Arg->getValue()); 489 490 if (Positional.empty()) 491 error("No input file specified"); 492 493 if (Positional.size() > 2) 494 error("Too many positional arguments"); 495 496 CopyConfig Config; 497 Config.InputFilename = Positional[0]; 498 Config.OutputFilename = Positional[Positional.size() == 1 ? 0 : 1]; 499 Config.InputFormat = InputArgs.getLastArgValue(OBJCOPY_input_target); 500 Config.OutputFormat = InputArgs.getLastArgValue(OBJCOPY_output_target); 501 Config.BinaryArch = InputArgs.getLastArgValue(OBJCOPY_binary_architecture); 502 503 Config.SplitDWO = InputArgs.getLastArgValue(OBJCOPY_split_dwo); 504 Config.AddGnuDebugLink = InputArgs.getLastArgValue(OBJCOPY_add_gnu_debuglink); 505 506 for (auto Arg : InputArgs.filtered(OBJCOPY_redefine_symbol)) { 507 if (!StringRef(Arg->getValue()).contains('=')) 508 error("Bad format for --redefine-sym"); 509 auto Old2New = StringRef(Arg->getValue()).split('='); 510 if (!Config.SymbolsToRename.insert(Old2New).second) 511 error("Multiple redefinition of symbol " + Old2New.first); 512 } 513 514 for (auto Arg : InputArgs.filtered(OBJCOPY_remove_section)) 515 Config.ToRemove.push_back(Arg->getValue()); 516 for (auto Arg : InputArgs.filtered(OBJCOPY_keep)) 517 Config.Keep.push_back(Arg->getValue()); 518 for (auto Arg : InputArgs.filtered(OBJCOPY_only_keep)) 519 Config.OnlyKeep.push_back(Arg->getValue()); 520 for (auto Arg : InputArgs.filtered(OBJCOPY_add_section)) 521 Config.AddSection.push_back(Arg->getValue()); 522 Config.StripAll = InputArgs.hasArg(OBJCOPY_strip_all); 523 Config.StripAllGNU = InputArgs.hasArg(OBJCOPY_strip_all_gnu); 524 Config.StripDebug = InputArgs.hasArg(OBJCOPY_strip_debug); 525 Config.StripDWO = InputArgs.hasArg(OBJCOPY_strip_dwo); 526 Config.StripSections = InputArgs.hasArg(OBJCOPY_strip_sections); 527 Config.StripNonAlloc = InputArgs.hasArg(OBJCOPY_strip_non_alloc); 528 Config.StripUnneeded = InputArgs.hasArg(OBJCOPY_strip_unneeded); 529 Config.ExtractDWO = InputArgs.hasArg(OBJCOPY_extract_dwo); 530 Config.LocalizeHidden = InputArgs.hasArg(OBJCOPY_localize_hidden); 531 Config.Weaken = InputArgs.hasArg(OBJCOPY_weaken); 532 Config.DiscardAll = InputArgs.hasArg(OBJCOPY_discard_all); 533 Config.OnlyKeepDebug = InputArgs.hasArg(OBJCOPY_only_keep_debug); 534 for (auto Arg : InputArgs.filtered(OBJCOPY_localize_symbol)) 535 Config.SymbolsToLocalize.push_back(Arg->getValue()); 536 for (auto Arg : InputArgs.filtered(OBJCOPY_globalize_symbol)) 537 Config.SymbolsToGlobalize.push_back(Arg->getValue()); 538 for (auto Arg : InputArgs.filtered(OBJCOPY_weaken_symbol)) 539 Config.SymbolsToWeaken.push_back(Arg->getValue()); 540 for (auto Arg : InputArgs.filtered(OBJCOPY_strip_symbol)) 541 Config.SymbolsToRemove.push_back(Arg->getValue()); 542 for (auto Arg : InputArgs.filtered(OBJCOPY_keep_symbol)) 543 Config.SymbolsToKeep.push_back(Arg->getValue()); 544 545 return Config; 546 } 547 548 // ParseStripOptions returns the config and sets the input arguments. If a 549 // help flag is set then ParseStripOptions will print the help messege and 550 // exit. 551 CopyConfig ParseStripOptions(ArrayRef<const char *> ArgsArr) { 552 StripOptTable T; 553 unsigned MissingArgumentIndex, MissingArgumentCount; 554 llvm::opt::InputArgList InputArgs = 555 T.ParseArgs(ArgsArr, MissingArgumentIndex, MissingArgumentCount); 556 557 if (InputArgs.size() == 0) { 558 T.PrintHelp(errs(), "llvm-strip <input> [ <output> ]", "strip tool"); 559 exit(1); 560 } 561 562 if (InputArgs.hasArg(STRIP_help)) { 563 T.PrintHelp(outs(), "llvm-strip <input> [ <output> ]", "strip tool"); 564 exit(0); 565 } 566 567 SmallVector<const char *, 2> Positional; 568 for (auto Arg : InputArgs.filtered(STRIP_UNKNOWN)) 569 error("unknown argument '" + Arg->getAsString(InputArgs) + "'"); 570 for (auto Arg : InputArgs.filtered(STRIP_INPUT)) 571 Positional.push_back(Arg->getValue()); 572 573 if (Positional.empty()) 574 error("No input file specified"); 575 576 if (Positional.size() > 2) 577 error("Support for multiple input files is not implemented yet"); 578 579 CopyConfig Config; 580 Config.InputFilename = Positional[0]; 581 Config.OutputFilename = Positional[0]; 582 583 // Strip debug info only. 584 Config.StripDebug = InputArgs.hasArg(STRIP_strip_debug); 585 if (!Config.StripDebug) 586 Config.StripAll = true; 587 588 for (auto Arg : InputArgs.filtered(STRIP_remove_section)) 589 Config.ToRemove.push_back(Arg->getValue()); 590 591 for (auto Arg : InputArgs.filtered(STRIP_keep_symbol)) 592 Config.SymbolsToKeep.push_back(Arg->getValue()); 593 594 return Config; 595 } 596 597 int main(int argc, char **argv) { 598 InitLLVM X(argc, argv); 599 ToolName = argv[0]; 600 CopyConfig Config; 601 if (sys::path::stem(ToolName).endswith_lower("strip")) 602 Config = ParseStripOptions(makeArrayRef(argv + 1, argc)); 603 else 604 Config = ParseObjcopyOptions(makeArrayRef(argv + 1, argc)); 605 ExecuteElfObjcopy(Config); 606 } 607