1 //===- ScriptParser.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 //===----------------------------------------------------------------------===// 9 // 10 // This file contains a recursive-descendent parser for linker scripts. 11 // Parsed results are stored to Config and Script global objects. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "ScriptParser.h" 16 #include "Config.h" 17 #include "Driver.h" 18 #include "InputSection.h" 19 #include "LinkerScript.h" 20 #include "OutputSections.h" 21 #include "ScriptLexer.h" 22 #include "Symbols.h" 23 #include "Target.h" 24 #include "lld/Common/Memory.h" 25 #include "llvm/ADT/SmallString.h" 26 #include "llvm/ADT/StringRef.h" 27 #include "llvm/ADT/StringSet.h" 28 #include "llvm/ADT/StringSwitch.h" 29 #include "llvm/BinaryFormat/ELF.h" 30 #include "llvm/Support/Casting.h" 31 #include "llvm/Support/ErrorHandling.h" 32 #include "llvm/Support/FileSystem.h" 33 #include "llvm/Support/Path.h" 34 #include <cassert> 35 #include <limits> 36 #include <vector> 37 38 using namespace llvm; 39 using namespace llvm::ELF; 40 using namespace llvm::support::endian; 41 using namespace lld; 42 using namespace lld::elf; 43 44 static bool isUnderSysroot(StringRef Path); 45 46 namespace { 47 class ScriptParser final : ScriptLexer { 48 public: 49 ScriptParser(MemoryBufferRef MB) 50 : ScriptLexer(MB), 51 IsUnderSysroot(isUnderSysroot(MB.getBufferIdentifier())) {} 52 53 void readLinkerScript(); 54 void readVersionScript(); 55 void readDynamicList(); 56 void readDefsym(StringRef Name); 57 58 private: 59 void addFile(StringRef Path); 60 61 void readAsNeeded(); 62 void readEntry(); 63 void readExtern(); 64 void readGroup(); 65 void readInclude(); 66 void readInput(); 67 void readMemory(); 68 void readOutput(); 69 void readOutputArch(); 70 void readOutputFormat(); 71 void readPhdrs(); 72 void readRegionAlias(); 73 void readSearchDir(); 74 void readSections(); 75 void readTarget(); 76 void readVersion(); 77 void readVersionScriptCommand(); 78 79 SymbolAssignment *readSymbolAssignment(StringRef Name); 80 ByteCommand *readByteCommand(StringRef Tok); 81 std::array<uint8_t, 4> readFill(); 82 std::array<uint8_t, 4> parseFill(StringRef Tok); 83 bool readSectionDirective(OutputSection *Cmd, StringRef Tok1, StringRef Tok2); 84 void readSectionAddressType(OutputSection *Cmd); 85 OutputSection *readOverlaySectionDescription(); 86 OutputSection *readOutputSectionDescription(StringRef OutSec); 87 std::vector<BaseCommand *> readOverlay(); 88 std::vector<StringRef> readOutputSectionPhdrs(); 89 InputSectionDescription *readInputSectionDescription(StringRef Tok); 90 StringMatcher readFilePatterns(); 91 std::vector<SectionPattern> readInputSectionsList(); 92 InputSectionDescription *readInputSectionRules(StringRef FilePattern); 93 unsigned readPhdrType(); 94 SortSectionPolicy readSortKind(); 95 SymbolAssignment *readProvideHidden(bool Provide, bool Hidden); 96 SymbolAssignment *readAssignment(StringRef Tok); 97 void readSort(); 98 Expr readAssert(); 99 Expr readConstant(); 100 Expr getPageSize(); 101 102 uint64_t readMemoryAssignment(StringRef, StringRef, StringRef); 103 std::pair<uint32_t, uint32_t> readMemoryAttributes(); 104 105 Expr combine(StringRef Op, Expr L, Expr R); 106 Expr readExpr(); 107 Expr readExpr1(Expr Lhs, int MinPrec); 108 StringRef readParenLiteral(); 109 Expr readPrimary(); 110 Expr readTernary(Expr Cond); 111 Expr readParenExpr(); 112 113 // For parsing version script. 114 std::vector<SymbolVersion> readVersionExtern(); 115 void readAnonymousDeclaration(); 116 void readVersionDeclaration(StringRef VerStr); 117 118 std::pair<std::vector<SymbolVersion>, std::vector<SymbolVersion>> 119 readSymbols(); 120 121 // True if a script being read is in a subdirectory specified by -sysroot. 122 bool IsUnderSysroot; 123 124 // A set to detect an INCLUDE() cycle. 125 StringSet<> Seen; 126 }; 127 } // namespace 128 129 static StringRef unquote(StringRef S) { 130 if (S.startswith("\"")) 131 return S.substr(1, S.size() - 2); 132 return S; 133 } 134 135 static bool isUnderSysroot(StringRef Path) { 136 if (Config->Sysroot == "") 137 return false; 138 for (; !Path.empty(); Path = sys::path::parent_path(Path)) 139 if (sys::fs::equivalent(Config->Sysroot, Path)) 140 return true; 141 return false; 142 } 143 144 // Some operations only support one non absolute value. Move the 145 // absolute one to the right hand side for convenience. 146 static void moveAbsRight(ExprValue &A, ExprValue &B) { 147 if (A.Sec == nullptr || (A.ForceAbsolute && !B.isAbsolute())) 148 std::swap(A, B); 149 if (!B.isAbsolute()) 150 error(A.Loc + ": at least one side of the expression must be absolute"); 151 } 152 153 static ExprValue add(ExprValue A, ExprValue B) { 154 moveAbsRight(A, B); 155 return {A.Sec, A.ForceAbsolute, A.getSectionOffset() + B.getValue(), A.Loc}; 156 } 157 158 static ExprValue sub(ExprValue A, ExprValue B) { 159 // The distance between two symbols in sections is absolute. 160 if (!A.isAbsolute() && !B.isAbsolute()) 161 return A.getValue() - B.getValue(); 162 return {A.Sec, false, A.getSectionOffset() - B.getValue(), A.Loc}; 163 } 164 165 static ExprValue bitAnd(ExprValue A, ExprValue B) { 166 moveAbsRight(A, B); 167 return {A.Sec, A.ForceAbsolute, 168 (A.getValue() & B.getValue()) - A.getSecAddr(), A.Loc}; 169 } 170 171 static ExprValue bitOr(ExprValue A, ExprValue B) { 172 moveAbsRight(A, B); 173 return {A.Sec, A.ForceAbsolute, 174 (A.getValue() | B.getValue()) - A.getSecAddr(), A.Loc}; 175 } 176 177 void ScriptParser::readDynamicList() { 178 Config->HasDynamicList = true; 179 expect("{"); 180 std::vector<SymbolVersion> Locals; 181 std::vector<SymbolVersion> Globals; 182 std::tie(Locals, Globals) = readSymbols(); 183 expect(";"); 184 185 if (!atEOF()) { 186 setError("EOF expected, but got " + next()); 187 return; 188 } 189 if (!Locals.empty()) { 190 setError("\"local:\" scope not supported in --dynamic-list"); 191 return; 192 } 193 194 for (SymbolVersion V : Globals) 195 Config->DynamicList.push_back(V); 196 } 197 198 void ScriptParser::readVersionScript() { 199 readVersionScriptCommand(); 200 if (!atEOF()) 201 setError("EOF expected, but got " + next()); 202 } 203 204 void ScriptParser::readVersionScriptCommand() { 205 if (consume("{")) { 206 readAnonymousDeclaration(); 207 return; 208 } 209 210 while (!atEOF() && !errorCount() && peek() != "}") { 211 StringRef VerStr = next(); 212 if (VerStr == "{") { 213 setError("anonymous version definition is used in " 214 "combination with other version definitions"); 215 return; 216 } 217 expect("{"); 218 readVersionDeclaration(VerStr); 219 } 220 } 221 222 void ScriptParser::readVersion() { 223 expect("{"); 224 readVersionScriptCommand(); 225 expect("}"); 226 } 227 228 void ScriptParser::readLinkerScript() { 229 while (!atEOF()) { 230 StringRef Tok = next(); 231 if (Tok == ";") 232 continue; 233 234 if (Tok == "ENTRY") { 235 readEntry(); 236 } else if (Tok == "EXTERN") { 237 readExtern(); 238 } else if (Tok == "GROUP") { 239 readGroup(); 240 } else if (Tok == "INCLUDE") { 241 readInclude(); 242 } else if (Tok == "INPUT") { 243 readInput(); 244 } else if (Tok == "MEMORY") { 245 readMemory(); 246 } else if (Tok == "OUTPUT") { 247 readOutput(); 248 } else if (Tok == "OUTPUT_ARCH") { 249 readOutputArch(); 250 } else if (Tok == "OUTPUT_FORMAT") { 251 readOutputFormat(); 252 } else if (Tok == "PHDRS") { 253 readPhdrs(); 254 } else if (Tok == "REGION_ALIAS") { 255 readRegionAlias(); 256 } else if (Tok == "SEARCH_DIR") { 257 readSearchDir(); 258 } else if (Tok == "SECTIONS") { 259 readSections(); 260 } else if (Tok == "TARGET") { 261 readTarget(); 262 } else if (Tok == "VERSION") { 263 readVersion(); 264 } else if (SymbolAssignment *Cmd = readAssignment(Tok)) { 265 Script->SectionCommands.push_back(Cmd); 266 } else { 267 setError("unknown directive: " + Tok); 268 } 269 } 270 } 271 272 void ScriptParser::readDefsym(StringRef Name) { 273 if (errorCount()) 274 return; 275 Expr E = readExpr(); 276 if (!atEOF()) 277 setError("EOF expected, but got " + next()); 278 SymbolAssignment *Cmd = make<SymbolAssignment>(Name, E, getCurrentLocation()); 279 Script->SectionCommands.push_back(Cmd); 280 } 281 282 void ScriptParser::addFile(StringRef S) { 283 if (IsUnderSysroot && S.startswith("/")) { 284 SmallString<128> PathData; 285 StringRef Path = (Config->Sysroot + S).toStringRef(PathData); 286 if (sys::fs::exists(Path)) { 287 Driver->addFile(Saver.save(Path), /*WithLOption=*/false); 288 return; 289 } 290 } 291 292 if (S.startswith("/")) { 293 Driver->addFile(S, /*WithLOption=*/false); 294 } else if (S.startswith("=")) { 295 if (Config->Sysroot.empty()) 296 Driver->addFile(S.substr(1), /*WithLOption=*/false); 297 else 298 Driver->addFile(Saver.save(Config->Sysroot + "/" + S.substr(1)), 299 /*WithLOption=*/false); 300 } else if (S.startswith("-l")) { 301 Driver->addLibrary(S.substr(2)); 302 } else if (sys::fs::exists(S)) { 303 Driver->addFile(S, /*WithLOption=*/false); 304 } else { 305 if (Optional<std::string> Path = findFromSearchPaths(S)) 306 Driver->addFile(Saver.save(*Path), /*WithLOption=*/true); 307 else 308 setError("unable to find " + S); 309 } 310 } 311 312 void ScriptParser::readAsNeeded() { 313 expect("("); 314 bool Orig = Config->AsNeeded; 315 Config->AsNeeded = true; 316 while (!errorCount() && !consume(")")) 317 addFile(unquote(next())); 318 Config->AsNeeded = Orig; 319 } 320 321 void ScriptParser::readEntry() { 322 // -e <symbol> takes predecence over ENTRY(<symbol>). 323 expect("("); 324 StringRef Tok = next(); 325 if (Config->Entry.empty()) 326 Config->Entry = Tok; 327 expect(")"); 328 } 329 330 void ScriptParser::readExtern() { 331 expect("("); 332 while (!errorCount() && !consume(")")) 333 Config->Undefined.push_back(next()); 334 } 335 336 void ScriptParser::readGroup() { 337 bool Orig = InputFile::IsInGroup; 338 InputFile::IsInGroup = true; 339 readInput(); 340 InputFile::IsInGroup = Orig; 341 if (!Orig) 342 ++InputFile::NextGroupId; 343 } 344 345 void ScriptParser::readInclude() { 346 StringRef Tok = unquote(next()); 347 348 if (!Seen.insert(Tok).second) { 349 setError("there is a cycle in linker script INCLUDEs"); 350 return; 351 } 352 353 if (Optional<std::string> Path = searchScript(Tok)) { 354 if (Optional<MemoryBufferRef> MB = readFile(*Path)) 355 tokenize(*MB); 356 return; 357 } 358 setError("cannot find linker script " + Tok); 359 } 360 361 void ScriptParser::readInput() { 362 expect("("); 363 while (!errorCount() && !consume(")")) { 364 if (consume("AS_NEEDED")) 365 readAsNeeded(); 366 else 367 addFile(unquote(next())); 368 } 369 } 370 371 void ScriptParser::readOutput() { 372 // -o <file> takes predecence over OUTPUT(<file>). 373 expect("("); 374 StringRef Tok = next(); 375 if (Config->OutputFile.empty()) 376 Config->OutputFile = unquote(Tok); 377 expect(")"); 378 } 379 380 void ScriptParser::readOutputArch() { 381 // OUTPUT_ARCH is ignored for now. 382 expect("("); 383 while (!errorCount() && !consume(")")) 384 skip(); 385 } 386 387 static std::pair<ELFKind, uint16_t> parseBfdName(StringRef S) { 388 return StringSwitch<std::pair<ELFKind, uint16_t>>(S) 389 .Case("elf32-i386", {ELF32LEKind, EM_386}) 390 .Case("elf32-iamcu", {ELF32LEKind, EM_IAMCU}) 391 .Case("elf32-littlearm", {ELF32LEKind, EM_ARM}) 392 .Case("elf32-x86-64", {ELF32LEKind, EM_X86_64}) 393 .Case("elf64-aarch64", {ELF64LEKind, EM_AARCH64}) 394 .Case("elf64-littleaarch64", {ELF64LEKind, EM_AARCH64}) 395 .Case("elf32-powerpc", {ELF32BEKind, EM_PPC}) 396 .Case("elf64-powerpc", {ELF64BEKind, EM_PPC64}) 397 .Case("elf64-powerpcle", {ELF64LEKind, EM_PPC64}) 398 .Case("elf64-x86-64", {ELF64LEKind, EM_X86_64}) 399 .Cases("elf32-tradbigmips", "elf32-bigmips", {ELF32BEKind, EM_MIPS}) 400 .Case("elf32-ntradbigmips", {ELF32BEKind, EM_MIPS}) 401 .Case("elf32-tradlittlemips", {ELF32LEKind, EM_MIPS}) 402 .Case("elf32-ntradlittlemips", {ELF32LEKind, EM_MIPS}) 403 .Case("elf64-tradbigmips", {ELF64BEKind, EM_MIPS}) 404 .Case("elf64-tradlittlemips", {ELF64LEKind, EM_MIPS}) 405 .Default({ELFNoneKind, EM_NONE}); 406 } 407 408 // Parse OUTPUT_FORMAT(bfdname) or OUTPUT_FORMAT(bfdname, big, little). 409 // Currently we ignore big and little parameters. 410 void ScriptParser::readOutputFormat() { 411 expect("("); 412 413 StringRef Name = unquote(next()); 414 StringRef S = Name; 415 if (S.consume_back("-freebsd")) 416 Config->OSABI = ELFOSABI_FREEBSD; 417 418 std::tie(Config->EKind, Config->EMachine) = parseBfdName(S); 419 if (Config->EMachine == EM_NONE) 420 setError("unknown output format name: " + Name); 421 if (S == "elf32-ntradlittlemips" || S == "elf32-ntradbigmips") 422 Config->MipsN32Abi = true; 423 424 if (consume(")")) 425 return; 426 expect(","); 427 skip(); 428 expect(","); 429 skip(); 430 expect(")"); 431 } 432 433 void ScriptParser::readPhdrs() { 434 expect("{"); 435 436 while (!errorCount() && !consume("}")) { 437 PhdrsCommand Cmd; 438 Cmd.Name = next(); 439 Cmd.Type = readPhdrType(); 440 441 while (!errorCount() && !consume(";")) { 442 if (consume("FILEHDR")) 443 Cmd.HasFilehdr = true; 444 else if (consume("PHDRS")) 445 Cmd.HasPhdrs = true; 446 else if (consume("AT")) 447 Cmd.LMAExpr = readParenExpr(); 448 else if (consume("FLAGS")) 449 Cmd.Flags = readParenExpr()().getValue(); 450 else 451 setError("unexpected header attribute: " + next()); 452 } 453 454 Script->PhdrsCommands.push_back(Cmd); 455 } 456 } 457 458 void ScriptParser::readRegionAlias() { 459 expect("("); 460 StringRef Alias = unquote(next()); 461 expect(","); 462 StringRef Name = next(); 463 expect(")"); 464 465 if (Script->MemoryRegions.count(Alias)) 466 setError("redefinition of memory region '" + Alias + "'"); 467 if (!Script->MemoryRegions.count(Name)) 468 setError("memory region '" + Name + "' is not defined"); 469 Script->MemoryRegions.insert({Alias, Script->MemoryRegions[Name]}); 470 } 471 472 void ScriptParser::readSearchDir() { 473 expect("("); 474 StringRef Tok = next(); 475 if (!Config->Nostdlib) 476 Config->SearchPaths.push_back(unquote(Tok)); 477 expect(")"); 478 } 479 480 // This reads an overlay description. Overlays are used to describe output 481 // sections that use the same virtual memory range and normally would trigger 482 // linker's sections sanity check failures. 483 // https://sourceware.org/binutils/docs/ld/Overlay-Description.html#Overlay-Description 484 std::vector<BaseCommand *> ScriptParser::readOverlay() { 485 // VA and LMA expressions are optional, though for simplicity of 486 // implementation we assume they are not. That is what OVERLAY was designed 487 // for first of all: to allow sections with overlapping VAs at different LMAs. 488 Expr AddrExpr = readExpr(); 489 expect(":"); 490 expect("AT"); 491 Expr LMAExpr = readParenExpr(); 492 expect("{"); 493 494 std::vector<BaseCommand *> V; 495 OutputSection *Prev = nullptr; 496 while (!errorCount() && !consume("}")) { 497 // VA is the same for all sections. The LMAs are consecutive in memory 498 // starting from the base load address specified. 499 OutputSection *OS = readOverlaySectionDescription(); 500 OS->AddrExpr = AddrExpr; 501 if (Prev) 502 OS->LMAExpr = [=] { return Prev->getLMA() + Prev->Size; }; 503 else 504 OS->LMAExpr = LMAExpr; 505 V.push_back(OS); 506 Prev = OS; 507 } 508 509 // According to the specification, at the end of the overlay, the location 510 // counter should be equal to the overlay base address plus size of the 511 // largest section seen in the overlay. 512 // Here we want to create the Dot assignment command to achieve that. 513 Expr MoveDot = [=] { 514 uint64_t Max = 0; 515 for (BaseCommand *Cmd : V) 516 Max = std::max(Max, cast<OutputSection>(Cmd)->Size); 517 return AddrExpr().getValue() + Max; 518 }; 519 V.push_back(make<SymbolAssignment>(".", MoveDot, getCurrentLocation())); 520 return V; 521 } 522 523 void ScriptParser::readSections() { 524 Script->HasSectionsCommand = true; 525 526 // -no-rosegment is used to avoid placing read only non-executable sections in 527 // their own segment. We do the same if SECTIONS command is present in linker 528 // script. See comment for computeFlags(). 529 Config->SingleRoRx = true; 530 531 expect("{"); 532 std::vector<BaseCommand *> V; 533 while (!errorCount() && !consume("}")) { 534 StringRef Tok = next(); 535 if (Tok == "OVERLAY") { 536 for (BaseCommand *Cmd : readOverlay()) 537 V.push_back(Cmd); 538 continue; 539 } else if (Tok == "INCLUDE") { 540 readInclude(); 541 continue; 542 } 543 544 if (BaseCommand *Cmd = readAssignment(Tok)) 545 V.push_back(Cmd); 546 else 547 V.push_back(readOutputSectionDescription(Tok)); 548 } 549 550 if (!atEOF() && consume("INSERT")) { 551 std::vector<BaseCommand *> *Dest = nullptr; 552 if (consume("AFTER")) 553 Dest = &Script->InsertAfterCommands[next()]; 554 else if (consume("BEFORE")) 555 Dest = &Script->InsertBeforeCommands[next()]; 556 else 557 setError("expected AFTER/BEFORE, but got '" + next() + "'"); 558 if (Dest) 559 Dest->insert(Dest->end(), V.begin(), V.end()); 560 return; 561 } 562 563 Script->SectionCommands.insert(Script->SectionCommands.end(), V.begin(), 564 V.end()); 565 } 566 567 void ScriptParser::readTarget() { 568 // TARGET(foo) is an alias for "--format foo". Unlike GNU linkers, 569 // we accept only a limited set of BFD names (i.e. "elf" or "binary") 570 // for --format. We recognize only /^elf/ and "binary" in the linker 571 // script as well. 572 expect("("); 573 StringRef Tok = next(); 574 expect(")"); 575 576 if (Tok.startswith("elf")) 577 Config->FormatBinary = false; 578 else if (Tok == "binary") 579 Config->FormatBinary = true; 580 else 581 setError("unknown target: " + Tok); 582 } 583 584 static int precedence(StringRef Op) { 585 return StringSwitch<int>(Op) 586 .Cases("*", "/", "%", 8) 587 .Cases("+", "-", 7) 588 .Cases("<<", ">>", 6) 589 .Cases("<", "<=", ">", ">=", "==", "!=", 5) 590 .Case("&", 4) 591 .Case("|", 3) 592 .Case("&&", 2) 593 .Case("||", 1) 594 .Default(-1); 595 } 596 597 StringMatcher ScriptParser::readFilePatterns() { 598 std::vector<StringRef> V; 599 while (!errorCount() && !consume(")")) 600 V.push_back(next()); 601 return StringMatcher(V); 602 } 603 604 SortSectionPolicy ScriptParser::readSortKind() { 605 if (consume("SORT") || consume("SORT_BY_NAME")) 606 return SortSectionPolicy::Name; 607 if (consume("SORT_BY_ALIGNMENT")) 608 return SortSectionPolicy::Alignment; 609 if (consume("SORT_BY_INIT_PRIORITY")) 610 return SortSectionPolicy::Priority; 611 if (consume("SORT_NONE")) 612 return SortSectionPolicy::None; 613 return SortSectionPolicy::Default; 614 } 615 616 // Reads SECTIONS command contents in the following form: 617 // 618 // <contents> ::= <elem>* 619 // <elem> ::= <exclude>? <glob-pattern> 620 // <exclude> ::= "EXCLUDE_FILE" "(" <glob-pattern>+ ")" 621 // 622 // For example, 623 // 624 // *(.foo EXCLUDE_FILE (a.o) .bar EXCLUDE_FILE (b.o) .baz) 625 // 626 // is parsed as ".foo", ".bar" with "a.o", and ".baz" with "b.o". 627 // The semantics of that is section .foo in any file, section .bar in 628 // any file but a.o, and section .baz in any file but b.o. 629 std::vector<SectionPattern> ScriptParser::readInputSectionsList() { 630 std::vector<SectionPattern> Ret; 631 while (!errorCount() && peek() != ")") { 632 StringMatcher ExcludeFilePat; 633 if (consume("EXCLUDE_FILE")) { 634 expect("("); 635 ExcludeFilePat = readFilePatterns(); 636 } 637 638 std::vector<StringRef> V; 639 while (!errorCount() && peek() != ")" && peek() != "EXCLUDE_FILE") 640 V.push_back(next()); 641 642 if (!V.empty()) 643 Ret.push_back({std::move(ExcludeFilePat), StringMatcher(V)}); 644 else 645 setError("section pattern is expected"); 646 } 647 return Ret; 648 } 649 650 // Reads contents of "SECTIONS" directive. That directive contains a 651 // list of glob patterns for input sections. The grammar is as follows. 652 // 653 // <patterns> ::= <section-list> 654 // | <sort> "(" <section-list> ")" 655 // | <sort> "(" <sort> "(" <section-list> ")" ")" 656 // 657 // <sort> ::= "SORT" | "SORT_BY_NAME" | "SORT_BY_ALIGNMENT" 658 // | "SORT_BY_INIT_PRIORITY" | "SORT_NONE" 659 // 660 // <section-list> is parsed by readInputSectionsList(). 661 InputSectionDescription * 662 ScriptParser::readInputSectionRules(StringRef FilePattern) { 663 auto *Cmd = make<InputSectionDescription>(FilePattern); 664 expect("("); 665 666 while (!errorCount() && !consume(")")) { 667 SortSectionPolicy Outer = readSortKind(); 668 SortSectionPolicy Inner = SortSectionPolicy::Default; 669 std::vector<SectionPattern> V; 670 if (Outer != SortSectionPolicy::Default) { 671 expect("("); 672 Inner = readSortKind(); 673 if (Inner != SortSectionPolicy::Default) { 674 expect("("); 675 V = readInputSectionsList(); 676 expect(")"); 677 } else { 678 V = readInputSectionsList(); 679 } 680 expect(")"); 681 } else { 682 V = readInputSectionsList(); 683 } 684 685 for (SectionPattern &Pat : V) { 686 Pat.SortInner = Inner; 687 Pat.SortOuter = Outer; 688 } 689 690 std::move(V.begin(), V.end(), std::back_inserter(Cmd->SectionPatterns)); 691 } 692 return Cmd; 693 } 694 695 InputSectionDescription * 696 ScriptParser::readInputSectionDescription(StringRef Tok) { 697 // Input section wildcard can be surrounded by KEEP. 698 // https://sourceware.org/binutils/docs/ld/Input-Section-Keep.html#Input-Section-Keep 699 if (Tok == "KEEP") { 700 expect("("); 701 StringRef FilePattern = next(); 702 InputSectionDescription *Cmd = readInputSectionRules(FilePattern); 703 expect(")"); 704 Script->KeptSections.push_back(Cmd); 705 return Cmd; 706 } 707 return readInputSectionRules(Tok); 708 } 709 710 void ScriptParser::readSort() { 711 expect("("); 712 expect("CONSTRUCTORS"); 713 expect(")"); 714 } 715 716 Expr ScriptParser::readAssert() { 717 expect("("); 718 Expr E = readExpr(); 719 expect(","); 720 StringRef Msg = unquote(next()); 721 expect(")"); 722 723 return [=] { 724 if (!E().getValue()) 725 error(Msg); 726 return Script->getDot(); 727 }; 728 } 729 730 // Reads a FILL(expr) command. We handle the FILL command as an 731 // alias for =fillexp section attribute, which is different from 732 // what GNU linkers do. 733 // https://sourceware.org/binutils/docs/ld/Output-Section-Data.html 734 std::array<uint8_t, 4> ScriptParser::readFill() { 735 expect("("); 736 std::array<uint8_t, 4> V = parseFill(next()); 737 expect(")"); 738 return V; 739 } 740 741 // Tries to read the special directive for an output section definition which 742 // can be one of following: "(NOLOAD)", "(COPY)", "(INFO)" or "(OVERLAY)". 743 // Tok1 and Tok2 are next 2 tokens peeked. See comment for readSectionAddressType below. 744 bool ScriptParser::readSectionDirective(OutputSection *Cmd, StringRef Tok1, StringRef Tok2) { 745 if (Tok1 != "(") 746 return false; 747 if (Tok2 != "NOLOAD" && Tok2 != "COPY" && Tok2 != "INFO" && Tok2 != "OVERLAY") 748 return false; 749 750 expect("("); 751 if (consume("NOLOAD")) { 752 Cmd->Noload = true; 753 } else { 754 skip(); // This is "COPY", "INFO" or "OVERLAY". 755 Cmd->NonAlloc = true; 756 } 757 expect(")"); 758 return true; 759 } 760 761 // Reads an expression and/or the special directive for an output 762 // section definition. Directive is one of following: "(NOLOAD)", 763 // "(COPY)", "(INFO)" or "(OVERLAY)". 764 // 765 // An output section name can be followed by an address expression 766 // and/or directive. This grammar is not LL(1) because "(" can be 767 // interpreted as either the beginning of some expression or beginning 768 // of directive. 769 // 770 // https://sourceware.org/binutils/docs/ld/Output-Section-Address.html 771 // https://sourceware.org/binutils/docs/ld/Output-Section-Type.html 772 void ScriptParser::readSectionAddressType(OutputSection *Cmd) { 773 if (readSectionDirective(Cmd, peek(), peek2())) 774 return; 775 776 Cmd->AddrExpr = readExpr(); 777 if (peek() == "(" && !readSectionDirective(Cmd, "(", peek2())) 778 setError("unknown section directive: " + peek2()); 779 } 780 781 static Expr checkAlignment(Expr E, std::string &Loc) { 782 return [=] { 783 uint64_t Alignment = std::max((uint64_t)1, E().getValue()); 784 if (!isPowerOf2_64(Alignment)) { 785 error(Loc + ": alignment must be power of 2"); 786 return (uint64_t)1; // Return a dummy value. 787 } 788 return Alignment; 789 }; 790 } 791 792 OutputSection *ScriptParser::readOverlaySectionDescription() { 793 OutputSection *Cmd = 794 Script->createOutputSection(next(), getCurrentLocation()); 795 Cmd->InOverlay = true; 796 expect("{"); 797 while (!errorCount() && !consume("}")) 798 Cmd->SectionCommands.push_back(readInputSectionRules(next())); 799 Cmd->Phdrs = readOutputSectionPhdrs(); 800 return Cmd; 801 } 802 803 OutputSection *ScriptParser::readOutputSectionDescription(StringRef OutSec) { 804 OutputSection *Cmd = 805 Script->createOutputSection(OutSec, getCurrentLocation()); 806 807 size_t SymbolsReferenced = Script->ReferencedSymbols.size(); 808 809 if (peek() != ":") 810 readSectionAddressType(Cmd); 811 expect(":"); 812 813 std::string Location = getCurrentLocation(); 814 if (consume("AT")) 815 Cmd->LMAExpr = readParenExpr(); 816 if (consume("ALIGN")) 817 Cmd->AlignExpr = checkAlignment(readParenExpr(), Location); 818 if (consume("SUBALIGN")) 819 Cmd->SubalignExpr = checkAlignment(readParenExpr(), Location); 820 821 // Parse constraints. 822 if (consume("ONLY_IF_RO")) 823 Cmd->Constraint = ConstraintKind::ReadOnly; 824 if (consume("ONLY_IF_RW")) 825 Cmd->Constraint = ConstraintKind::ReadWrite; 826 expect("{"); 827 828 while (!errorCount() && !consume("}")) { 829 StringRef Tok = next(); 830 if (Tok == ";") { 831 // Empty commands are allowed. Do nothing here. 832 } else if (SymbolAssignment *Assign = readAssignment(Tok)) { 833 Cmd->SectionCommands.push_back(Assign); 834 } else if (ByteCommand *Data = readByteCommand(Tok)) { 835 Cmd->SectionCommands.push_back(Data); 836 } else if (Tok == "CONSTRUCTORS") { 837 // CONSTRUCTORS is a keyword to make the linker recognize C++ ctors/dtors 838 // by name. This is for very old file formats such as ECOFF/XCOFF. 839 // For ELF, we should ignore. 840 } else if (Tok == "FILL") { 841 Cmd->Filler = readFill(); 842 } else if (Tok == "SORT") { 843 readSort(); 844 } else if (Tok == "INCLUDE") { 845 readInclude(); 846 } else if (peek() == "(") { 847 Cmd->SectionCommands.push_back(readInputSectionDescription(Tok)); 848 } else { 849 // We have a file name and no input sections description. It is not a 850 // commonly used syntax, but still acceptable. In that case, all sections 851 // from the file will be included. 852 auto *ISD = make<InputSectionDescription>(Tok); 853 ISD->SectionPatterns.push_back({{}, StringMatcher({"*"})}); 854 Cmd->SectionCommands.push_back(ISD); 855 } 856 } 857 858 if (consume(">")) 859 Cmd->MemoryRegionName = next(); 860 861 if (consume("AT")) { 862 expect(">"); 863 Cmd->LMARegionName = next(); 864 } 865 866 if (Cmd->LMAExpr && !Cmd->LMARegionName.empty()) 867 error("section can't have both LMA and a load region"); 868 869 Cmd->Phdrs = readOutputSectionPhdrs(); 870 871 if (consume("=")) 872 Cmd->Filler = parseFill(next()); 873 else if (peek().startswith("=")) 874 Cmd->Filler = parseFill(next().drop_front()); 875 876 // Consume optional comma following output section command. 877 consume(","); 878 879 if (Script->ReferencedSymbols.size() > SymbolsReferenced) 880 Cmd->ExpressionsUseSymbols = true; 881 return Cmd; 882 } 883 884 // Parses a given string as a octal/decimal/hexadecimal number and 885 // returns it as a big-endian number. Used for `=<fillexp>`. 886 // https://sourceware.org/binutils/docs/ld/Output-Section-Fill.html 887 // 888 // When reading a hexstring, ld.bfd handles it as a blob of arbitrary 889 // size, while ld.gold always handles it as a 32-bit big-endian number. 890 // We are compatible with ld.gold because it's easier to implement. 891 std::array<uint8_t, 4> ScriptParser::parseFill(StringRef Tok) { 892 uint32_t V = 0; 893 if (!to_integer(Tok, V)) 894 setError("invalid filler expression: " + Tok); 895 896 std::array<uint8_t, 4> Buf; 897 write32be(Buf.data(), V); 898 return Buf; 899 } 900 901 SymbolAssignment *ScriptParser::readProvideHidden(bool Provide, bool Hidden) { 902 expect("("); 903 SymbolAssignment *Cmd = readSymbolAssignment(next()); 904 Cmd->Provide = Provide; 905 Cmd->Hidden = Hidden; 906 expect(")"); 907 return Cmd; 908 } 909 910 SymbolAssignment *ScriptParser::readAssignment(StringRef Tok) { 911 // Assert expression returns Dot, so this is equal to ".=." 912 if (Tok == "ASSERT") 913 return make<SymbolAssignment>(".", readAssert(), getCurrentLocation()); 914 915 size_t OldPos = Pos; 916 SymbolAssignment *Cmd = nullptr; 917 if (peek() == "=" || peek() == "+=") 918 Cmd = readSymbolAssignment(Tok); 919 else if (Tok == "PROVIDE") 920 Cmd = readProvideHidden(true, false); 921 else if (Tok == "HIDDEN") 922 Cmd = readProvideHidden(false, true); 923 else if (Tok == "PROVIDE_HIDDEN") 924 Cmd = readProvideHidden(true, true); 925 926 if (Cmd) { 927 Cmd->CommandString = 928 Tok.str() + " " + 929 llvm::join(Tokens.begin() + OldPos, Tokens.begin() + Pos, " "); 930 expect(";"); 931 } 932 return Cmd; 933 } 934 935 SymbolAssignment *ScriptParser::readSymbolAssignment(StringRef Name) { 936 StringRef Op = next(); 937 assert(Op == "=" || Op == "+="); 938 Expr E = readExpr(); 939 if (Op == "+=") { 940 std::string Loc = getCurrentLocation(); 941 E = [=] { return add(Script->getSymbolValue(Name, Loc), E()); }; 942 } 943 return make<SymbolAssignment>(Name, E, getCurrentLocation()); 944 } 945 946 // This is an operator-precedence parser to parse a linker 947 // script expression. 948 Expr ScriptParser::readExpr() { 949 // Our lexer is context-aware. Set the in-expression bit so that 950 // they apply different tokenization rules. 951 bool Orig = InExpr; 952 InExpr = true; 953 Expr E = readExpr1(readPrimary(), 0); 954 InExpr = Orig; 955 return E; 956 } 957 958 Expr ScriptParser::combine(StringRef Op, Expr L, Expr R) { 959 if (Op == "+") 960 return [=] { return add(L(), R()); }; 961 if (Op == "-") 962 return [=] { return sub(L(), R()); }; 963 if (Op == "*") 964 return [=] { return L().getValue() * R().getValue(); }; 965 if (Op == "/") { 966 std::string Loc = getCurrentLocation(); 967 return [=]() -> uint64_t { 968 if (uint64_t RV = R().getValue()) 969 return L().getValue() / RV; 970 error(Loc + ": division by zero"); 971 return 0; 972 }; 973 } 974 if (Op == "%") { 975 std::string Loc = getCurrentLocation(); 976 return [=]() -> uint64_t { 977 if (uint64_t RV = R().getValue()) 978 return L().getValue() % RV; 979 error(Loc + ": modulo by zero"); 980 return 0; 981 }; 982 } 983 if (Op == "<<") 984 return [=] { return L().getValue() << R().getValue(); }; 985 if (Op == ">>") 986 return [=] { return L().getValue() >> R().getValue(); }; 987 if (Op == "<") 988 return [=] { return L().getValue() < R().getValue(); }; 989 if (Op == ">") 990 return [=] { return L().getValue() > R().getValue(); }; 991 if (Op == ">=") 992 return [=] { return L().getValue() >= R().getValue(); }; 993 if (Op == "<=") 994 return [=] { return L().getValue() <= R().getValue(); }; 995 if (Op == "==") 996 return [=] { return L().getValue() == R().getValue(); }; 997 if (Op == "!=") 998 return [=] { return L().getValue() != R().getValue(); }; 999 if (Op == "||") 1000 return [=] { return L().getValue() || R().getValue(); }; 1001 if (Op == "&&") 1002 return [=] { return L().getValue() && R().getValue(); }; 1003 if (Op == "&") 1004 return [=] { return bitAnd(L(), R()); }; 1005 if (Op == "|") 1006 return [=] { return bitOr(L(), R()); }; 1007 llvm_unreachable("invalid operator"); 1008 } 1009 1010 // This is a part of the operator-precedence parser. This function 1011 // assumes that the remaining token stream starts with an operator. 1012 Expr ScriptParser::readExpr1(Expr Lhs, int MinPrec) { 1013 while (!atEOF() && !errorCount()) { 1014 // Read an operator and an expression. 1015 if (consume("?")) 1016 return readTernary(Lhs); 1017 StringRef Op1 = peek(); 1018 if (precedence(Op1) < MinPrec) 1019 break; 1020 skip(); 1021 Expr Rhs = readPrimary(); 1022 1023 // Evaluate the remaining part of the expression first if the 1024 // next operator has greater precedence than the previous one. 1025 // For example, if we have read "+" and "3", and if the next 1026 // operator is "*", then we'll evaluate 3 * ... part first. 1027 while (!atEOF()) { 1028 StringRef Op2 = peek(); 1029 if (precedence(Op2) <= precedence(Op1)) 1030 break; 1031 Rhs = readExpr1(Rhs, precedence(Op2)); 1032 } 1033 1034 Lhs = combine(Op1, Lhs, Rhs); 1035 } 1036 return Lhs; 1037 } 1038 1039 Expr ScriptParser::getPageSize() { 1040 std::string Location = getCurrentLocation(); 1041 return [=]() -> uint64_t { 1042 if (Target) 1043 return Target->PageSize; 1044 error(Location + ": unable to calculate page size"); 1045 return 4096; // Return a dummy value. 1046 }; 1047 } 1048 1049 Expr ScriptParser::readConstant() { 1050 StringRef S = readParenLiteral(); 1051 if (S == "COMMONPAGESIZE") 1052 return getPageSize(); 1053 if (S == "MAXPAGESIZE") 1054 return [] { return Config->MaxPageSize; }; 1055 setError("unknown constant: " + S); 1056 return [] { return 0; }; 1057 } 1058 1059 // Parses Tok as an integer. It recognizes hexadecimal (prefixed with 1060 // "0x" or suffixed with "H") and decimal numbers. Decimal numbers may 1061 // have "K" (Ki) or "M" (Mi) suffixes. 1062 static Optional<uint64_t> parseInt(StringRef Tok) { 1063 // Hexadecimal 1064 uint64_t Val; 1065 if (Tok.startswith_lower("0x")) { 1066 if (!to_integer(Tok.substr(2), Val, 16)) 1067 return None; 1068 return Val; 1069 } 1070 if (Tok.endswith_lower("H")) { 1071 if (!to_integer(Tok.drop_back(), Val, 16)) 1072 return None; 1073 return Val; 1074 } 1075 1076 // Decimal 1077 if (Tok.endswith_lower("K")) { 1078 if (!to_integer(Tok.drop_back(), Val, 10)) 1079 return None; 1080 return Val * 1024; 1081 } 1082 if (Tok.endswith_lower("M")) { 1083 if (!to_integer(Tok.drop_back(), Val, 10)) 1084 return None; 1085 return Val * 1024 * 1024; 1086 } 1087 if (!to_integer(Tok, Val, 10)) 1088 return None; 1089 return Val; 1090 } 1091 1092 ByteCommand *ScriptParser::readByteCommand(StringRef Tok) { 1093 int Size = StringSwitch<int>(Tok) 1094 .Case("BYTE", 1) 1095 .Case("SHORT", 2) 1096 .Case("LONG", 4) 1097 .Case("QUAD", 8) 1098 .Default(-1); 1099 if (Size == -1) 1100 return nullptr; 1101 1102 size_t OldPos = Pos; 1103 Expr E = readParenExpr(); 1104 std::string CommandString = 1105 Tok.str() + " " + 1106 llvm::join(Tokens.begin() + OldPos, Tokens.begin() + Pos, " "); 1107 return make<ByteCommand>(E, Size, CommandString); 1108 } 1109 1110 StringRef ScriptParser::readParenLiteral() { 1111 expect("("); 1112 bool Orig = InExpr; 1113 InExpr = false; 1114 StringRef Tok = next(); 1115 InExpr = Orig; 1116 expect(")"); 1117 return Tok; 1118 } 1119 1120 static void checkIfExists(OutputSection *Cmd, StringRef Location) { 1121 if (Cmd->Location.empty() && Script->ErrorOnMissingSection) 1122 error(Location + ": undefined section " + Cmd->Name); 1123 } 1124 1125 Expr ScriptParser::readPrimary() { 1126 if (peek() == "(") 1127 return readParenExpr(); 1128 1129 if (consume("~")) { 1130 Expr E = readPrimary(); 1131 return [=] { return ~E().getValue(); }; 1132 } 1133 if (consume("!")) { 1134 Expr E = readPrimary(); 1135 return [=] { return !E().getValue(); }; 1136 } 1137 if (consume("-")) { 1138 Expr E = readPrimary(); 1139 return [=] { return -E().getValue(); }; 1140 } 1141 1142 StringRef Tok = next(); 1143 std::string Location = getCurrentLocation(); 1144 1145 // Built-in functions are parsed here. 1146 // https://sourceware.org/binutils/docs/ld/Builtin-Functions.html. 1147 if (Tok == "ABSOLUTE") { 1148 Expr Inner = readParenExpr(); 1149 return [=] { 1150 ExprValue I = Inner(); 1151 I.ForceAbsolute = true; 1152 return I; 1153 }; 1154 } 1155 if (Tok == "ADDR") { 1156 StringRef Name = readParenLiteral(); 1157 OutputSection *Sec = Script->getOrCreateOutputSection(Name); 1158 return [=]() -> ExprValue { 1159 checkIfExists(Sec, Location); 1160 return {Sec, false, 0, Location}; 1161 }; 1162 } 1163 if (Tok == "ALIGN") { 1164 expect("("); 1165 Expr E = readExpr(); 1166 if (consume(")")) { 1167 E = checkAlignment(E, Location); 1168 return [=] { return alignTo(Script->getDot(), E().getValue()); }; 1169 } 1170 expect(","); 1171 Expr E2 = checkAlignment(readExpr(), Location); 1172 expect(")"); 1173 return [=] { 1174 ExprValue V = E(); 1175 V.Alignment = E2().getValue(); 1176 return V; 1177 }; 1178 } 1179 if (Tok == "ALIGNOF") { 1180 StringRef Name = readParenLiteral(); 1181 OutputSection *Cmd = Script->getOrCreateOutputSection(Name); 1182 return [=] { 1183 checkIfExists(Cmd, Location); 1184 return Cmd->Alignment; 1185 }; 1186 } 1187 if (Tok == "ASSERT") 1188 return readAssert(); 1189 if (Tok == "CONSTANT") 1190 return readConstant(); 1191 if (Tok == "DATA_SEGMENT_ALIGN") { 1192 expect("("); 1193 Expr E = readExpr(); 1194 expect(","); 1195 readExpr(); 1196 expect(")"); 1197 return [=] { 1198 return alignTo(Script->getDot(), std::max((uint64_t)1, E().getValue())); 1199 }; 1200 } 1201 if (Tok == "DATA_SEGMENT_END") { 1202 expect("("); 1203 expect("."); 1204 expect(")"); 1205 return [] { return Script->getDot(); }; 1206 } 1207 if (Tok == "DATA_SEGMENT_RELRO_END") { 1208 // GNU linkers implements more complicated logic to handle 1209 // DATA_SEGMENT_RELRO_END. We instead ignore the arguments and 1210 // just align to the next page boundary for simplicity. 1211 expect("("); 1212 readExpr(); 1213 expect(","); 1214 readExpr(); 1215 expect(")"); 1216 Expr E = getPageSize(); 1217 return [=] { return alignTo(Script->getDot(), E().getValue()); }; 1218 } 1219 if (Tok == "DEFINED") { 1220 StringRef Name = readParenLiteral(); 1221 return [=] { return Symtab->find(Name) ? 1 : 0; }; 1222 } 1223 if (Tok == "LENGTH") { 1224 StringRef Name = readParenLiteral(); 1225 if (Script->MemoryRegions.count(Name) == 0) { 1226 setError("memory region not defined: " + Name); 1227 return [] { return 0; }; 1228 } 1229 return [=] { return Script->MemoryRegions[Name]->Length; }; 1230 } 1231 if (Tok == "LOADADDR") { 1232 StringRef Name = readParenLiteral(); 1233 OutputSection *Cmd = Script->getOrCreateOutputSection(Name); 1234 return [=] { 1235 checkIfExists(Cmd, Location); 1236 return Cmd->getLMA(); 1237 }; 1238 } 1239 if (Tok == "MAX" || Tok == "MIN") { 1240 expect("("); 1241 Expr A = readExpr(); 1242 expect(","); 1243 Expr B = readExpr(); 1244 expect(")"); 1245 if (Tok == "MIN") 1246 return [=] { return std::min(A().getValue(), B().getValue()); }; 1247 return [=] { return std::max(A().getValue(), B().getValue()); }; 1248 } 1249 if (Tok == "ORIGIN") { 1250 StringRef Name = readParenLiteral(); 1251 if (Script->MemoryRegions.count(Name) == 0) { 1252 setError("memory region not defined: " + Name); 1253 return [] { return 0; }; 1254 } 1255 return [=] { return Script->MemoryRegions[Name]->Origin; }; 1256 } 1257 if (Tok == "SEGMENT_START") { 1258 expect("("); 1259 skip(); 1260 expect(","); 1261 Expr E = readExpr(); 1262 expect(")"); 1263 return [=] { return E(); }; 1264 } 1265 if (Tok == "SIZEOF") { 1266 StringRef Name = readParenLiteral(); 1267 OutputSection *Cmd = Script->getOrCreateOutputSection(Name); 1268 // Linker script does not create an output section if its content is empty. 1269 // We want to allow SIZEOF(.foo) where .foo is a section which happened to 1270 // be empty. 1271 return [=] { return Cmd->Size; }; 1272 } 1273 if (Tok == "SIZEOF_HEADERS") 1274 return [=] { return elf::getHeaderSize(); }; 1275 1276 // Tok is the dot. 1277 if (Tok == ".") 1278 return [=] { return Script->getSymbolValue(Tok, Location); }; 1279 1280 // Tok is a literal number. 1281 if (Optional<uint64_t> Val = parseInt(Tok)) 1282 return [=] { return *Val; }; 1283 1284 // Tok is a symbol name. 1285 if (!isValidCIdentifier(Tok)) 1286 setError("malformed number: " + Tok); 1287 Script->ReferencedSymbols.push_back(Tok); 1288 return [=] { return Script->getSymbolValue(Tok, Location); }; 1289 } 1290 1291 Expr ScriptParser::readTernary(Expr Cond) { 1292 Expr L = readExpr(); 1293 expect(":"); 1294 Expr R = readExpr(); 1295 return [=] { return Cond().getValue() ? L() : R(); }; 1296 } 1297 1298 Expr ScriptParser::readParenExpr() { 1299 expect("("); 1300 Expr E = readExpr(); 1301 expect(")"); 1302 return E; 1303 } 1304 1305 std::vector<StringRef> ScriptParser::readOutputSectionPhdrs() { 1306 std::vector<StringRef> Phdrs; 1307 while (!errorCount() && peek().startswith(":")) { 1308 StringRef Tok = next(); 1309 Phdrs.push_back((Tok.size() == 1) ? next() : Tok.substr(1)); 1310 } 1311 return Phdrs; 1312 } 1313 1314 // Read a program header type name. The next token must be a 1315 // name of a program header type or a constant (e.g. "0x3"). 1316 unsigned ScriptParser::readPhdrType() { 1317 StringRef Tok = next(); 1318 if (Optional<uint64_t> Val = parseInt(Tok)) 1319 return *Val; 1320 1321 unsigned Ret = StringSwitch<unsigned>(Tok) 1322 .Case("PT_NULL", PT_NULL) 1323 .Case("PT_LOAD", PT_LOAD) 1324 .Case("PT_DYNAMIC", PT_DYNAMIC) 1325 .Case("PT_INTERP", PT_INTERP) 1326 .Case("PT_NOTE", PT_NOTE) 1327 .Case("PT_SHLIB", PT_SHLIB) 1328 .Case("PT_PHDR", PT_PHDR) 1329 .Case("PT_TLS", PT_TLS) 1330 .Case("PT_GNU_EH_FRAME", PT_GNU_EH_FRAME) 1331 .Case("PT_GNU_STACK", PT_GNU_STACK) 1332 .Case("PT_GNU_RELRO", PT_GNU_RELRO) 1333 .Case("PT_OPENBSD_RANDOMIZE", PT_OPENBSD_RANDOMIZE) 1334 .Case("PT_OPENBSD_WXNEEDED", PT_OPENBSD_WXNEEDED) 1335 .Case("PT_OPENBSD_BOOTDATA", PT_OPENBSD_BOOTDATA) 1336 .Default(-1); 1337 1338 if (Ret == (unsigned)-1) { 1339 setError("invalid program header type: " + Tok); 1340 return PT_NULL; 1341 } 1342 return Ret; 1343 } 1344 1345 // Reads an anonymous version declaration. 1346 void ScriptParser::readAnonymousDeclaration() { 1347 std::vector<SymbolVersion> Locals; 1348 std::vector<SymbolVersion> Globals; 1349 std::tie(Locals, Globals) = readSymbols(); 1350 1351 for (SymbolVersion V : Locals) { 1352 if (V.Name == "*") 1353 Config->DefaultSymbolVersion = VER_NDX_LOCAL; 1354 else 1355 Config->VersionScriptLocals.push_back(V); 1356 } 1357 1358 for (SymbolVersion V : Globals) 1359 Config->VersionScriptGlobals.push_back(V); 1360 1361 expect(";"); 1362 } 1363 1364 // Reads a non-anonymous version definition, 1365 // e.g. "VerStr { global: foo; bar; local: *; };". 1366 void ScriptParser::readVersionDeclaration(StringRef VerStr) { 1367 // Read a symbol list. 1368 std::vector<SymbolVersion> Locals; 1369 std::vector<SymbolVersion> Globals; 1370 std::tie(Locals, Globals) = readSymbols(); 1371 1372 for (SymbolVersion V : Locals) { 1373 if (V.Name == "*") 1374 Config->DefaultSymbolVersion = VER_NDX_LOCAL; 1375 else 1376 Config->VersionScriptLocals.push_back(V); 1377 } 1378 1379 // Create a new version definition and add that to the global symbols. 1380 VersionDefinition Ver; 1381 Ver.Name = VerStr; 1382 Ver.Globals = Globals; 1383 1384 // User-defined version number starts from 2 because 0 and 1 are 1385 // reserved for VER_NDX_LOCAL and VER_NDX_GLOBAL, respectively. 1386 Ver.Id = Config->VersionDefinitions.size() + 2; 1387 Config->VersionDefinitions.push_back(Ver); 1388 1389 // Each version may have a parent version. For example, "Ver2" 1390 // defined as "Ver2 { global: foo; local: *; } Ver1;" has "Ver1" 1391 // as a parent. This version hierarchy is, probably against your 1392 // instinct, purely for hint; the runtime doesn't care about it 1393 // at all. In LLD, we simply ignore it. 1394 if (peek() != ";") 1395 skip(); 1396 expect(";"); 1397 } 1398 1399 static bool hasWildcard(StringRef S) { 1400 return S.find_first_of("?*[") != StringRef::npos; 1401 } 1402 1403 // Reads a list of symbols, e.g. "{ global: foo; bar; local: *; };". 1404 std::pair<std::vector<SymbolVersion>, std::vector<SymbolVersion>> 1405 ScriptParser::readSymbols() { 1406 std::vector<SymbolVersion> Locals; 1407 std::vector<SymbolVersion> Globals; 1408 std::vector<SymbolVersion> *V = &Globals; 1409 1410 while (!errorCount()) { 1411 if (consume("}")) 1412 break; 1413 if (consumeLabel("local")) { 1414 V = &Locals; 1415 continue; 1416 } 1417 if (consumeLabel("global")) { 1418 V = &Globals; 1419 continue; 1420 } 1421 1422 if (consume("extern")) { 1423 std::vector<SymbolVersion> Ext = readVersionExtern(); 1424 V->insert(V->end(), Ext.begin(), Ext.end()); 1425 } else { 1426 StringRef Tok = next(); 1427 V->push_back({unquote(Tok), false, hasWildcard(Tok)}); 1428 } 1429 expect(";"); 1430 } 1431 return {Locals, Globals}; 1432 } 1433 1434 // Reads an "extern C++" directive, e.g., 1435 // "extern "C++" { ns::*; "f(int, double)"; };" 1436 // 1437 // The last semicolon is optional. E.g. this is OK: 1438 // "extern "C++" { ns::*; "f(int, double)" };" 1439 std::vector<SymbolVersion> ScriptParser::readVersionExtern() { 1440 StringRef Tok = next(); 1441 bool IsCXX = Tok == "\"C++\""; 1442 if (!IsCXX && Tok != "\"C\"") 1443 setError("Unknown language"); 1444 expect("{"); 1445 1446 std::vector<SymbolVersion> Ret; 1447 while (!errorCount() && peek() != "}") { 1448 StringRef Tok = next(); 1449 bool HasWildcard = !Tok.startswith("\"") && hasWildcard(Tok); 1450 Ret.push_back({unquote(Tok), IsCXX, HasWildcard}); 1451 if (consume("}")) 1452 return Ret; 1453 expect(";"); 1454 } 1455 1456 expect("}"); 1457 return Ret; 1458 } 1459 1460 uint64_t ScriptParser::readMemoryAssignment(StringRef S1, StringRef S2, 1461 StringRef S3) { 1462 if (!consume(S1) && !consume(S2) && !consume(S3)) { 1463 setError("expected one of: " + S1 + ", " + S2 + ", or " + S3); 1464 return 0; 1465 } 1466 expect("="); 1467 return readExpr()().getValue(); 1468 } 1469 1470 // Parse the MEMORY command as specified in: 1471 // https://sourceware.org/binutils/docs/ld/MEMORY.html 1472 // 1473 // MEMORY { name [(attr)] : ORIGIN = origin, LENGTH = len ... } 1474 void ScriptParser::readMemory() { 1475 expect("{"); 1476 while (!errorCount() && !consume("}")) { 1477 StringRef Tok = next(); 1478 if (Tok == "INCLUDE") { 1479 readInclude(); 1480 continue; 1481 } 1482 1483 uint32_t Flags = 0; 1484 uint32_t NegFlags = 0; 1485 if (consume("(")) { 1486 std::tie(Flags, NegFlags) = readMemoryAttributes(); 1487 expect(")"); 1488 } 1489 expect(":"); 1490 1491 uint64_t Origin = readMemoryAssignment("ORIGIN", "org", "o"); 1492 expect(","); 1493 uint64_t Length = readMemoryAssignment("LENGTH", "len", "l"); 1494 1495 // Add the memory region to the region map. 1496 MemoryRegion *MR = make<MemoryRegion>(Tok, Origin, Length, Flags, NegFlags); 1497 if (!Script->MemoryRegions.insert({Tok, MR}).second) 1498 setError("region '" + Tok + "' already defined"); 1499 } 1500 } 1501 1502 // This function parses the attributes used to match against section 1503 // flags when placing output sections in a memory region. These flags 1504 // are only used when an explicit memory region name is not used. 1505 std::pair<uint32_t, uint32_t> ScriptParser::readMemoryAttributes() { 1506 uint32_t Flags = 0; 1507 uint32_t NegFlags = 0; 1508 bool Invert = false; 1509 1510 for (char C : next().lower()) { 1511 uint32_t Flag = 0; 1512 if (C == '!') 1513 Invert = !Invert; 1514 else if (C == 'w') 1515 Flag = SHF_WRITE; 1516 else if (C == 'x') 1517 Flag = SHF_EXECINSTR; 1518 else if (C == 'a') 1519 Flag = SHF_ALLOC; 1520 else if (C != 'r') 1521 setError("invalid memory region attribute"); 1522 1523 if (Invert) 1524 NegFlags |= Flag; 1525 else 1526 Flags |= Flag; 1527 } 1528 return {Flags, NegFlags}; 1529 } 1530 1531 void elf::readLinkerScript(MemoryBufferRef MB) { 1532 ScriptParser(MB).readLinkerScript(); 1533 } 1534 1535 void elf::readVersionScript(MemoryBufferRef MB) { 1536 ScriptParser(MB).readVersionScript(); 1537 } 1538 1539 void elf::readDynamicList(MemoryBufferRef MB) { 1540 ScriptParser(MB).readDynamicList(); 1541 } 1542 1543 void elf::readDefsym(StringRef Name, MemoryBufferRef MB) { 1544 ScriptParser(MB).readDefsym(Name); 1545 } 1546