1 //===- COFFObjectFile.cpp - COFF object file implementation -----*- C++ -*-===// 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 // This file declares the COFFObjectFile class. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm/Object/COFF.h" 15 #include "llvm/ADT/ArrayRef.h" 16 #include "llvm/ADT/SmallString.h" 17 #include "llvm/ADT/StringSwitch.h" 18 #include "llvm/ADT/Triple.h" 19 #include "llvm/Support/Debug.h" 20 #include "llvm/Support/raw_ostream.h" 21 #include <cctype> 22 23 using namespace llvm; 24 using namespace object; 25 26 using support::ulittle8_t; 27 using support::ulittle16_t; 28 using support::ulittle32_t; 29 using support::little16_t; 30 31 // Returns false if size is greater than the buffer size. And sets ec. 32 static bool checkSize(const MemoryBuffer *M, error_code &EC, uint64_t Size) { 33 if (M->getBufferSize() < Size) { 34 EC = object_error::unexpected_eof; 35 return false; 36 } 37 return true; 38 } 39 40 // Sets Obj unless any bytes in [addr, addr + size) fall outsize of m. 41 // Returns unexpected_eof if error. 42 template<typename T> 43 static error_code getObject(const T *&Obj, const MemoryBuffer *M, 44 const uint8_t *Ptr, const size_t Size = sizeof(T)) { 45 uintptr_t Addr = uintptr_t(Ptr); 46 if (Addr + Size < Addr || 47 Addr + Size < Size || 48 Addr + Size > uintptr_t(M->getBufferEnd())) { 49 return object_error::unexpected_eof; 50 } 51 Obj = reinterpret_cast<const T *>(Addr); 52 return object_error::success; 53 } 54 55 const coff_symbol *COFFObjectFile::toSymb(DataRefImpl Ref) const { 56 const coff_symbol *Addr = reinterpret_cast<const coff_symbol*>(Ref.p); 57 58 # ifndef NDEBUG 59 // Verify that the symbol points to a valid entry in the symbol table. 60 uintptr_t Offset = uintptr_t(Addr) - uintptr_t(base()); 61 if (Offset < COFFHeader->PointerToSymbolTable 62 || Offset >= COFFHeader->PointerToSymbolTable 63 + (COFFHeader->NumberOfSymbols * sizeof(coff_symbol))) 64 report_fatal_error("Symbol was outside of symbol table."); 65 66 assert((Offset - COFFHeader->PointerToSymbolTable) % sizeof(coff_symbol) 67 == 0 && "Symbol did not point to the beginning of a symbol"); 68 # endif 69 70 return Addr; 71 } 72 73 const coff_section *COFFObjectFile::toSec(DataRefImpl Ref) const { 74 const coff_section *Addr = reinterpret_cast<const coff_section*>(Ref.p); 75 76 # ifndef NDEBUG 77 // Verify that the section points to a valid entry in the section table. 78 if (Addr < SectionTable 79 || Addr >= (SectionTable + COFFHeader->NumberOfSections)) 80 report_fatal_error("Section was outside of section table."); 81 82 uintptr_t Offset = uintptr_t(Addr) - uintptr_t(SectionTable); 83 assert(Offset % sizeof(coff_section) == 0 && 84 "Section did not point to the beginning of a section"); 85 # endif 86 87 return Addr; 88 } 89 90 error_code COFFObjectFile::getSymbolNext(DataRefImpl Ref, 91 SymbolRef &Result) const { 92 const coff_symbol *Symb = toSymb(Ref); 93 Symb += 1 + Symb->NumberOfAuxSymbols; 94 Ref.p = reinterpret_cast<uintptr_t>(Symb); 95 Result = SymbolRef(Ref, this); 96 return object_error::success; 97 } 98 99 error_code COFFObjectFile::getSymbolName(DataRefImpl Ref, 100 StringRef &Result) const { 101 const coff_symbol *Symb = toSymb(Ref); 102 return getSymbolName(Symb, Result); 103 } 104 105 error_code COFFObjectFile::getSymbolFileOffset(DataRefImpl Ref, 106 uint64_t &Result) const { 107 const coff_symbol *Symb = toSymb(Ref); 108 const coff_section *Section = NULL; 109 if (error_code EC = getSection(Symb->SectionNumber, Section)) 110 return EC; 111 112 if (Symb->SectionNumber == COFF::IMAGE_SYM_UNDEFINED) 113 Result = UnknownAddressOrSize; 114 else if (Section) 115 Result = Section->PointerToRawData + Symb->Value; 116 else 117 Result = Symb->Value; 118 return object_error::success; 119 } 120 121 error_code COFFObjectFile::getSymbolAddress(DataRefImpl Ref, 122 uint64_t &Result) const { 123 const coff_symbol *Symb = toSymb(Ref); 124 const coff_section *Section = NULL; 125 if (error_code EC = getSection(Symb->SectionNumber, Section)) 126 return EC; 127 128 if (Symb->SectionNumber == COFF::IMAGE_SYM_UNDEFINED) 129 Result = UnknownAddressOrSize; 130 else if (Section) 131 Result = Section->VirtualAddress + Symb->Value; 132 else 133 Result = Symb->Value; 134 return object_error::success; 135 } 136 137 error_code COFFObjectFile::getSymbolType(DataRefImpl Ref, 138 SymbolRef::Type &Result) const { 139 const coff_symbol *Symb = toSymb(Ref); 140 Result = SymbolRef::ST_Other; 141 if (Symb->StorageClass == COFF::IMAGE_SYM_CLASS_EXTERNAL && 142 Symb->SectionNumber == COFF::IMAGE_SYM_UNDEFINED) { 143 Result = SymbolRef::ST_Unknown; 144 } else if (Symb->getComplexType() == COFF::IMAGE_SYM_DTYPE_FUNCTION) { 145 Result = SymbolRef::ST_Function; 146 } else { 147 uint32_t Characteristics = 0; 148 if (Symb->SectionNumber > 0) { 149 const coff_section *Section = NULL; 150 if (error_code EC = getSection(Symb->SectionNumber, Section)) 151 return EC; 152 Characteristics = Section->Characteristics; 153 } 154 if (Characteristics & COFF::IMAGE_SCN_MEM_READ && 155 ~Characteristics & COFF::IMAGE_SCN_MEM_WRITE) // Read only. 156 Result = SymbolRef::ST_Data; 157 } 158 return object_error::success; 159 } 160 161 error_code COFFObjectFile::getSymbolFlags(DataRefImpl Ref, 162 uint32_t &Result) const { 163 const coff_symbol *Symb = toSymb(Ref); 164 Result = SymbolRef::SF_None; 165 166 // TODO: Correctly set SF_FormatSpecific, SF_ThreadLocal, SF_Common 167 168 if (Symb->StorageClass == COFF::IMAGE_SYM_CLASS_EXTERNAL && 169 Symb->SectionNumber == COFF::IMAGE_SYM_UNDEFINED) 170 Result |= SymbolRef::SF_Undefined; 171 172 // TODO: This are certainly too restrictive. 173 if (Symb->StorageClass == COFF::IMAGE_SYM_CLASS_EXTERNAL) 174 Result |= SymbolRef::SF_Global; 175 176 if (Symb->StorageClass == COFF::IMAGE_SYM_CLASS_WEAK_EXTERNAL) 177 Result |= SymbolRef::SF_Weak; 178 179 if (Symb->SectionNumber == COFF::IMAGE_SYM_ABSOLUTE) 180 Result |= SymbolRef::SF_Absolute; 181 182 return object_error::success; 183 } 184 185 error_code COFFObjectFile::getSymbolSize(DataRefImpl Ref, 186 uint64_t &Result) const { 187 // FIXME: Return the correct size. This requires looking at all the symbols 188 // in the same section as this symbol, and looking for either the next 189 // symbol, or the end of the section. 190 const coff_symbol *Symb = toSymb(Ref); 191 const coff_section *Section = NULL; 192 if (error_code EC = getSection(Symb->SectionNumber, Section)) 193 return EC; 194 195 if (Symb->SectionNumber == COFF::IMAGE_SYM_UNDEFINED) 196 Result = UnknownAddressOrSize; 197 else if (Section) 198 Result = Section->SizeOfRawData - Symb->Value; 199 else 200 Result = 0; 201 return object_error::success; 202 } 203 204 error_code COFFObjectFile::getSymbolSection(DataRefImpl Ref, 205 section_iterator &Result) const { 206 const coff_symbol *Symb = toSymb(Ref); 207 if (Symb->SectionNumber <= COFF::IMAGE_SYM_UNDEFINED) 208 Result = end_sections(); 209 else { 210 const coff_section *Sec = 0; 211 if (error_code EC = getSection(Symb->SectionNumber, Sec)) return EC; 212 DataRefImpl Ref; 213 Ref.p = reinterpret_cast<uintptr_t>(Sec); 214 Result = section_iterator(SectionRef(Ref, this)); 215 } 216 return object_error::success; 217 } 218 219 error_code COFFObjectFile::getSymbolValue(DataRefImpl Ref, 220 uint64_t &Val) const { 221 report_fatal_error("getSymbolValue unimplemented in COFFObjectFile"); 222 } 223 224 error_code COFFObjectFile::getSectionNext(DataRefImpl Ref, 225 SectionRef &Result) const { 226 const coff_section *Sec = toSec(Ref); 227 Sec += 1; 228 Ref.p = reinterpret_cast<uintptr_t>(Sec); 229 Result = SectionRef(Ref, this); 230 return object_error::success; 231 } 232 233 error_code COFFObjectFile::getSectionName(DataRefImpl Ref, 234 StringRef &Result) const { 235 const coff_section *Sec = toSec(Ref); 236 return getSectionName(Sec, Result); 237 } 238 239 error_code COFFObjectFile::getSectionAddress(DataRefImpl Ref, 240 uint64_t &Result) const { 241 const coff_section *Sec = toSec(Ref); 242 Result = Sec->VirtualAddress; 243 return object_error::success; 244 } 245 246 error_code COFFObjectFile::getSectionSize(DataRefImpl Ref, 247 uint64_t &Result) const { 248 const coff_section *Sec = toSec(Ref); 249 Result = Sec->SizeOfRawData; 250 return object_error::success; 251 } 252 253 error_code COFFObjectFile::getSectionContents(DataRefImpl Ref, 254 StringRef &Result) const { 255 const coff_section *Sec = toSec(Ref); 256 ArrayRef<uint8_t> Res; 257 error_code EC = getSectionContents(Sec, Res); 258 Result = StringRef(reinterpret_cast<const char*>(Res.data()), Res.size()); 259 return EC; 260 } 261 262 error_code COFFObjectFile::getSectionAlignment(DataRefImpl Ref, 263 uint64_t &Res) const { 264 const coff_section *Sec = toSec(Ref); 265 if (!Sec) 266 return object_error::parse_failed; 267 Res = uint64_t(1) << (((Sec->Characteristics & 0x00F00000) >> 20) - 1); 268 return object_error::success; 269 } 270 271 error_code COFFObjectFile::isSectionText(DataRefImpl Ref, 272 bool &Result) const { 273 const coff_section *Sec = toSec(Ref); 274 Result = Sec->Characteristics & COFF::IMAGE_SCN_CNT_CODE; 275 return object_error::success; 276 } 277 278 error_code COFFObjectFile::isSectionData(DataRefImpl Ref, 279 bool &Result) const { 280 const coff_section *Sec = toSec(Ref); 281 Result = Sec->Characteristics & COFF::IMAGE_SCN_CNT_INITIALIZED_DATA; 282 return object_error::success; 283 } 284 285 error_code COFFObjectFile::isSectionBSS(DataRefImpl Ref, 286 bool &Result) const { 287 const coff_section *Sec = toSec(Ref); 288 Result = Sec->Characteristics & COFF::IMAGE_SCN_CNT_UNINITIALIZED_DATA; 289 return object_error::success; 290 } 291 292 error_code COFFObjectFile::isSectionRequiredForExecution(DataRefImpl Ref, 293 bool &Result) const { 294 // FIXME: Unimplemented 295 Result = true; 296 return object_error::success; 297 } 298 299 error_code COFFObjectFile::isSectionVirtual(DataRefImpl Ref, 300 bool &Result) const { 301 const coff_section *Sec = toSec(Ref); 302 Result = Sec->Characteristics & COFF::IMAGE_SCN_CNT_UNINITIALIZED_DATA; 303 return object_error::success; 304 } 305 306 error_code COFFObjectFile::isSectionZeroInit(DataRefImpl Ref, 307 bool &Result) const { 308 // FIXME: Unimplemented. 309 Result = false; 310 return object_error::success; 311 } 312 313 error_code COFFObjectFile::isSectionReadOnlyData(DataRefImpl Ref, 314 bool &Result) const { 315 // FIXME: Unimplemented. 316 Result = false; 317 return object_error::success; 318 } 319 320 error_code COFFObjectFile::sectionContainsSymbol(DataRefImpl SecRef, 321 DataRefImpl SymbRef, 322 bool &Result) const { 323 const coff_section *Sec = toSec(SecRef); 324 const coff_symbol *Symb = toSymb(SymbRef); 325 const coff_section *SymbSec = 0; 326 if (error_code EC = getSection(Symb->SectionNumber, SymbSec)) return EC; 327 if (SymbSec == Sec) 328 Result = true; 329 else 330 Result = false; 331 return object_error::success; 332 } 333 334 relocation_iterator COFFObjectFile::section_rel_begin(DataRefImpl Ref) const { 335 const coff_section *Sec = toSec(Ref); 336 DataRefImpl Ret; 337 if (Sec->NumberOfRelocations == 0) 338 Ret.p = 0; 339 else 340 Ret.p = reinterpret_cast<uintptr_t>(base() + Sec->PointerToRelocations); 341 342 return relocation_iterator(RelocationRef(Ret, this)); 343 } 344 345 relocation_iterator COFFObjectFile::section_rel_end(DataRefImpl Ref) const { 346 const coff_section *Sec = toSec(Ref); 347 DataRefImpl Ret; 348 if (Sec->NumberOfRelocations == 0) 349 Ret.p = 0; 350 else 351 Ret.p = reinterpret_cast<uintptr_t>( 352 reinterpret_cast<const coff_relocation*>( 353 base() + Sec->PointerToRelocations) 354 + Sec->NumberOfRelocations); 355 356 return relocation_iterator(RelocationRef(Ret, this)); 357 } 358 359 // Initialize the pointer to the symbol table. 360 error_code COFFObjectFile::initSymbolTablePtr() { 361 if (error_code EC = getObject( 362 SymbolTable, Data, base() + COFFHeader->PointerToSymbolTable, 363 COFFHeader->NumberOfSymbols * sizeof(coff_symbol))) 364 return EC; 365 366 // Find string table. The first four byte of the string table contains the 367 // total size of the string table, including the size field itself. If the 368 // string table is empty, the value of the first four byte would be 4. 369 const uint8_t *StringTableAddr = 370 base() + COFFHeader->PointerToSymbolTable + 371 COFFHeader->NumberOfSymbols * sizeof(coff_symbol); 372 const ulittle32_t *StringTableSizePtr; 373 if (error_code EC = getObject(StringTableSizePtr, Data, StringTableAddr)) 374 return EC; 375 StringTableSize = *StringTableSizePtr; 376 if (error_code EC = 377 getObject(StringTable, Data, StringTableAddr, StringTableSize)) 378 return EC; 379 380 // Check that the string table is null terminated if has any in it. 381 if (StringTableSize < 4 || 382 (StringTableSize > 4 && StringTable[StringTableSize - 1] != 0)) 383 return object_error::parse_failed; 384 return object_error::success; 385 } 386 387 // Returns the file offset for the given RVA. 388 error_code COFFObjectFile::getRvaPtr(uint32_t Rva, uintptr_t &Res) const { 389 error_code EC; 390 for (section_iterator I = begin_sections(), E = end_sections(); I != E; 391 I.increment(EC)) { 392 if (EC) 393 return EC; 394 const coff_section *Section = getCOFFSection(I); 395 uint32_t SectionStart = Section->VirtualAddress; 396 uint32_t SectionEnd = Section->VirtualAddress + Section->VirtualSize; 397 if (SectionStart <= Rva && Rva < SectionEnd) { 398 uint32_t Offset = Rva - SectionStart; 399 Res = uintptr_t(base()) + Section->PointerToRawData + Offset; 400 return object_error::success; 401 } 402 } 403 return object_error::parse_failed; 404 } 405 406 // Returns hint and name fields, assuming \p Rva is pointing to a Hint/Name 407 // table entry. 408 error_code COFFObjectFile:: 409 getHintName(uint32_t Rva, uint16_t &Hint, StringRef &Name) const { 410 uintptr_t IntPtr = 0; 411 if (error_code EC = getRvaPtr(Rva, IntPtr)) 412 return EC; 413 const uint8_t *Ptr = reinterpret_cast<const uint8_t *>(IntPtr); 414 Hint = *reinterpret_cast<const ulittle16_t *>(Ptr); 415 Name = StringRef(reinterpret_cast<const char *>(Ptr + 2)); 416 return object_error::success; 417 } 418 419 // Find the import table. 420 error_code COFFObjectFile::initImportTablePtr() { 421 // First, we get the RVA of the import table. If the file lacks a pointer to 422 // the import table, do nothing. 423 const data_directory *DataEntry; 424 if (getDataDirectory(COFF::IMPORT_TABLE, DataEntry)) 425 return object_error::success; 426 427 // Do nothing if the pointer to import table is NULL. 428 if (DataEntry->RelativeVirtualAddress == 0) 429 return object_error::success; 430 431 uint32_t ImportTableRva = DataEntry->RelativeVirtualAddress; 432 NumberOfImportDirectory = DataEntry->Size / 433 sizeof(import_directory_table_entry); 434 435 // Find the section that contains the RVA. This is needed because the RVA is 436 // the import table's memory address which is different from its file offset. 437 uintptr_t IntPtr = 0; 438 if (error_code EC = getRvaPtr(ImportTableRva, IntPtr)) 439 return EC; 440 ImportDirectory = reinterpret_cast< 441 const import_directory_table_entry *>(IntPtr); 442 return object_error::success; 443 } 444 445 // Find the export table. 446 error_code COFFObjectFile::initExportTablePtr() { 447 // First, we get the RVA of the export table. If the file lacks a pointer to 448 // the export table, do nothing. 449 const data_directory *DataEntry; 450 if (getDataDirectory(COFF::EXPORT_TABLE, DataEntry)) 451 return object_error::success; 452 453 // Do nothing if the pointer to export table is NULL. 454 if (DataEntry->RelativeVirtualAddress == 0) 455 return object_error::success; 456 457 uint32_t ExportTableRva = DataEntry->RelativeVirtualAddress; 458 uintptr_t IntPtr = 0; 459 if (error_code EC = getRvaPtr(ExportTableRva, IntPtr)) 460 return EC; 461 ExportDirectory = 462 reinterpret_cast<const export_directory_table_entry *>(IntPtr); 463 return object_error::success; 464 } 465 466 COFFObjectFile::COFFObjectFile(MemoryBuffer *Object, error_code &EC, 467 bool BufferOwned) 468 : ObjectFile(Binary::ID_COFF, Object, BufferOwned), COFFHeader(0), 469 PE32Header(0), DataDirectory(0), SectionTable(0), SymbolTable(0), 470 StringTable(0), StringTableSize(0), ImportDirectory(0), 471 NumberOfImportDirectory(0), ExportDirectory(0) { 472 // Check that we at least have enough room for a header. 473 if (!checkSize(Data, EC, sizeof(coff_file_header))) return; 474 475 // The current location in the file where we are looking at. 476 uint64_t CurPtr = 0; 477 478 // PE header is optional and is present only in executables. If it exists, 479 // it is placed right after COFF header. 480 bool HasPEHeader = false; 481 482 // Check if this is a PE/COFF file. 483 if (base()[0] == 0x4d && base()[1] == 0x5a) { 484 // PE/COFF, seek through MS-DOS compatibility stub and 4-byte 485 // PE signature to find 'normal' COFF header. 486 if (!checkSize(Data, EC, 0x3c + 8)) return; 487 CurPtr = *reinterpret_cast<const ulittle16_t *>(base() + 0x3c); 488 // Check the PE magic bytes. ("PE\0\0") 489 if (std::memcmp(base() + CurPtr, "PE\0\0", 4) != 0) { 490 EC = object_error::parse_failed; 491 return; 492 } 493 CurPtr += 4; // Skip the PE magic bytes. 494 HasPEHeader = true; 495 } 496 497 if ((EC = getObject(COFFHeader, Data, base() + CurPtr))) 498 return; 499 CurPtr += sizeof(coff_file_header); 500 501 if (HasPEHeader) { 502 if ((EC = getObject(PE32Header, Data, base() + CurPtr))) 503 return; 504 if (PE32Header->Magic != 0x10b) { 505 // We only support PE32. If this is PE32 (not PE32+), the magic byte 506 // should be 0x10b. If this is not PE32, continue as if there's no PE 507 // header in this file. 508 PE32Header = 0; 509 } else if (PE32Header->NumberOfRvaAndSize > 0) { 510 const uint8_t *Addr = base() + CurPtr + sizeof(pe32_header); 511 uint64_t size = sizeof(data_directory) * PE32Header->NumberOfRvaAndSize; 512 if ((EC = getObject(DataDirectory, Data, Addr, size))) 513 return; 514 } 515 CurPtr += COFFHeader->SizeOfOptionalHeader; 516 } 517 518 if (COFFHeader->isImportLibrary()) 519 return; 520 521 if ((EC = getObject(SectionTable, Data, base() + CurPtr, 522 COFFHeader->NumberOfSections * sizeof(coff_section)))) 523 return; 524 525 // Initialize the pointer to the symbol table. 526 if (COFFHeader->PointerToSymbolTable != 0) 527 if ((EC = initSymbolTablePtr())) 528 return; 529 530 // Initialize the pointer to the beginning of the import table. 531 if ((EC = initImportTablePtr())) 532 return; 533 534 // Initialize the pointer to the export table. 535 if ((EC = initExportTablePtr())) 536 return; 537 538 EC = object_error::success; 539 } 540 541 symbol_iterator COFFObjectFile::begin_symbols() const { 542 DataRefImpl Ret; 543 Ret.p = reinterpret_cast<uintptr_t>(SymbolTable); 544 return symbol_iterator(SymbolRef(Ret, this)); 545 } 546 547 symbol_iterator COFFObjectFile::end_symbols() const { 548 // The symbol table ends where the string table begins. 549 DataRefImpl Ret; 550 Ret.p = reinterpret_cast<uintptr_t>(StringTable); 551 return symbol_iterator(SymbolRef(Ret, this)); 552 } 553 554 symbol_iterator COFFObjectFile::begin_dynamic_symbols() const { 555 // TODO: implement 556 report_fatal_error("Dynamic symbols unimplemented in COFFObjectFile"); 557 } 558 559 symbol_iterator COFFObjectFile::end_dynamic_symbols() const { 560 // TODO: implement 561 report_fatal_error("Dynamic symbols unimplemented in COFFObjectFile"); 562 } 563 564 library_iterator COFFObjectFile::begin_libraries_needed() const { 565 // TODO: implement 566 report_fatal_error("Libraries needed unimplemented in COFFObjectFile"); 567 } 568 569 library_iterator COFFObjectFile::end_libraries_needed() const { 570 // TODO: implement 571 report_fatal_error("Libraries needed unimplemented in COFFObjectFile"); 572 } 573 574 StringRef COFFObjectFile::getLoadName() const { 575 // COFF does not have this field. 576 return ""; 577 } 578 579 import_directory_iterator COFFObjectFile::import_directory_begin() const { 580 return import_directory_iterator( 581 ImportDirectoryEntryRef(ImportDirectory, 0, this)); 582 } 583 584 import_directory_iterator COFFObjectFile::import_directory_end() const { 585 return import_directory_iterator( 586 ImportDirectoryEntryRef(ImportDirectory, NumberOfImportDirectory, this)); 587 } 588 589 export_directory_iterator COFFObjectFile::export_directory_begin() const { 590 return export_directory_iterator( 591 ExportDirectoryEntryRef(ExportDirectory, 0, this)); 592 } 593 594 export_directory_iterator COFFObjectFile::export_directory_end() const { 595 if (ExportDirectory == 0) 596 return export_directory_iterator(ExportDirectoryEntryRef(0, 0, this)); 597 ExportDirectoryEntryRef Ref(ExportDirectory, 598 ExportDirectory->AddressTableEntries, this); 599 return export_directory_iterator(Ref); 600 } 601 602 section_iterator COFFObjectFile::begin_sections() const { 603 DataRefImpl Ret; 604 Ret.p = reinterpret_cast<uintptr_t>(SectionTable); 605 return section_iterator(SectionRef(Ret, this)); 606 } 607 608 section_iterator COFFObjectFile::end_sections() const { 609 DataRefImpl Ret; 610 int NumSections = COFFHeader->isImportLibrary() 611 ? 0 : COFFHeader->NumberOfSections; 612 Ret.p = reinterpret_cast<uintptr_t>(SectionTable + NumSections); 613 return section_iterator(SectionRef(Ret, this)); 614 } 615 616 uint8_t COFFObjectFile::getBytesInAddress() const { 617 return getArch() == Triple::x86_64 ? 8 : 4; 618 } 619 620 StringRef COFFObjectFile::getFileFormatName() const { 621 switch(COFFHeader->Machine) { 622 case COFF::IMAGE_FILE_MACHINE_I386: 623 return "COFF-i386"; 624 case COFF::IMAGE_FILE_MACHINE_AMD64: 625 return "COFF-x86-64"; 626 default: 627 return "COFF-<unknown arch>"; 628 } 629 } 630 631 unsigned COFFObjectFile::getArch() const { 632 switch(COFFHeader->Machine) { 633 case COFF::IMAGE_FILE_MACHINE_I386: 634 return Triple::x86; 635 case COFF::IMAGE_FILE_MACHINE_AMD64: 636 return Triple::x86_64; 637 default: 638 return Triple::UnknownArch; 639 } 640 } 641 642 // This method is kept here because lld uses this. As soon as we make 643 // lld to use getCOFFHeader, this method will be removed. 644 error_code COFFObjectFile::getHeader(const coff_file_header *&Res) const { 645 return getCOFFHeader(Res); 646 } 647 648 error_code COFFObjectFile::getCOFFHeader(const coff_file_header *&Res) const { 649 Res = COFFHeader; 650 return object_error::success; 651 } 652 653 error_code COFFObjectFile::getPE32Header(const pe32_header *&Res) const { 654 Res = PE32Header; 655 return object_error::success; 656 } 657 658 error_code COFFObjectFile::getDataDirectory(uint32_t Index, 659 const data_directory *&Res) const { 660 // Error if if there's no data directory or the index is out of range. 661 if (!DataDirectory || Index > PE32Header->NumberOfRvaAndSize) 662 return object_error::parse_failed; 663 Res = &DataDirectory[Index]; 664 return object_error::success; 665 } 666 667 error_code COFFObjectFile::getSection(int32_t Index, 668 const coff_section *&Result) const { 669 // Check for special index values. 670 if (Index == COFF::IMAGE_SYM_UNDEFINED || 671 Index == COFF::IMAGE_SYM_ABSOLUTE || 672 Index == COFF::IMAGE_SYM_DEBUG) 673 Result = NULL; 674 else if (Index > 0 && Index <= COFFHeader->NumberOfSections) 675 // We already verified the section table data, so no need to check again. 676 Result = SectionTable + (Index - 1); 677 else 678 return object_error::parse_failed; 679 return object_error::success; 680 } 681 682 error_code COFFObjectFile::getString(uint32_t Offset, 683 StringRef &Result) const { 684 if (StringTableSize <= 4) 685 // Tried to get a string from an empty string table. 686 return object_error::parse_failed; 687 if (Offset >= StringTableSize) 688 return object_error::unexpected_eof; 689 Result = StringRef(StringTable + Offset); 690 return object_error::success; 691 } 692 693 error_code COFFObjectFile::getSymbol(uint32_t Index, 694 const coff_symbol *&Result) const { 695 if (Index < COFFHeader->NumberOfSymbols) 696 Result = SymbolTable + Index; 697 else 698 return object_error::parse_failed; 699 return object_error::success; 700 } 701 702 error_code COFFObjectFile::getSymbolName(const coff_symbol *Symbol, 703 StringRef &Res) const { 704 // Check for string table entry. First 4 bytes are 0. 705 if (Symbol->Name.Offset.Zeroes == 0) { 706 uint32_t Offset = Symbol->Name.Offset.Offset; 707 if (error_code EC = getString(Offset, Res)) 708 return EC; 709 return object_error::success; 710 } 711 712 if (Symbol->Name.ShortName[7] == 0) 713 // Null terminated, let ::strlen figure out the length. 714 Res = StringRef(Symbol->Name.ShortName); 715 else 716 // Not null terminated, use all 8 bytes. 717 Res = StringRef(Symbol->Name.ShortName, 8); 718 return object_error::success; 719 } 720 721 ArrayRef<uint8_t> COFFObjectFile::getSymbolAuxData( 722 const coff_symbol *Symbol) const { 723 const uint8_t *Aux = NULL; 724 725 if (Symbol->NumberOfAuxSymbols > 0) { 726 // AUX data comes immediately after the symbol in COFF 727 Aux = reinterpret_cast<const uint8_t *>(Symbol + 1); 728 # ifndef NDEBUG 729 // Verify that the Aux symbol points to a valid entry in the symbol table. 730 uintptr_t Offset = uintptr_t(Aux) - uintptr_t(base()); 731 if (Offset < COFFHeader->PointerToSymbolTable 732 || Offset >= COFFHeader->PointerToSymbolTable 733 + (COFFHeader->NumberOfSymbols * sizeof(coff_symbol))) 734 report_fatal_error("Aux Symbol data was outside of symbol table."); 735 736 assert((Offset - COFFHeader->PointerToSymbolTable) % sizeof(coff_symbol) 737 == 0 && "Aux Symbol data did not point to the beginning of a symbol"); 738 # endif 739 } 740 return ArrayRef<uint8_t>(Aux, 741 Symbol->NumberOfAuxSymbols * sizeof(coff_symbol)); 742 } 743 744 error_code COFFObjectFile::getSectionName(const coff_section *Sec, 745 StringRef &Res) const { 746 StringRef Name; 747 if (Sec->Name[7] == 0) 748 // Null terminated, let ::strlen figure out the length. 749 Name = Sec->Name; 750 else 751 // Not null terminated, use all 8 bytes. 752 Name = StringRef(Sec->Name, 8); 753 754 // Check for string table entry. First byte is '/'. 755 if (Name[0] == '/') { 756 uint32_t Offset; 757 if (Name.substr(1).getAsInteger(10, Offset)) 758 return object_error::parse_failed; 759 if (error_code EC = getString(Offset, Name)) 760 return EC; 761 } 762 763 Res = Name; 764 return object_error::success; 765 } 766 767 error_code COFFObjectFile::getSectionContents(const coff_section *Sec, 768 ArrayRef<uint8_t> &Res) const { 769 // The only thing that we need to verify is that the contents is contained 770 // within the file bounds. We don't need to make sure it doesn't cover other 771 // data, as there's nothing that says that is not allowed. 772 uintptr_t ConStart = uintptr_t(base()) + Sec->PointerToRawData; 773 uintptr_t ConEnd = ConStart + Sec->SizeOfRawData; 774 if (ConEnd > uintptr_t(Data->getBufferEnd())) 775 return object_error::parse_failed; 776 Res = ArrayRef<uint8_t>(reinterpret_cast<const unsigned char*>(ConStart), 777 Sec->SizeOfRawData); 778 return object_error::success; 779 } 780 781 const coff_relocation *COFFObjectFile::toRel(DataRefImpl Rel) const { 782 return reinterpret_cast<const coff_relocation*>(Rel.p); 783 } 784 785 error_code COFFObjectFile::getRelocationNext(DataRefImpl Rel, 786 RelocationRef &Res) const { 787 Rel.p = reinterpret_cast<uintptr_t>( 788 reinterpret_cast<const coff_relocation*>(Rel.p) + 1); 789 Res = RelocationRef(Rel, this); 790 return object_error::success; 791 } 792 793 error_code COFFObjectFile::getRelocationAddress(DataRefImpl Rel, 794 uint64_t &Res) const { 795 report_fatal_error("getRelocationAddress not implemented in COFFObjectFile"); 796 } 797 798 error_code COFFObjectFile::getRelocationOffset(DataRefImpl Rel, 799 uint64_t &Res) const { 800 Res = toRel(Rel)->VirtualAddress; 801 return object_error::success; 802 } 803 804 symbol_iterator COFFObjectFile::getRelocationSymbol(DataRefImpl Rel) const { 805 const coff_relocation* R = toRel(Rel); 806 DataRefImpl Ref; 807 Ref.p = reinterpret_cast<uintptr_t>(SymbolTable + R->SymbolTableIndex); 808 return symbol_iterator(SymbolRef(Ref, this)); 809 } 810 811 error_code COFFObjectFile::getRelocationType(DataRefImpl Rel, 812 uint64_t &Res) const { 813 const coff_relocation* R = toRel(Rel); 814 Res = R->Type; 815 return object_error::success; 816 } 817 818 const coff_section *COFFObjectFile::getCOFFSection(section_iterator &It) const { 819 return toSec(It->getRawDataRefImpl()); 820 } 821 822 const coff_symbol *COFFObjectFile::getCOFFSymbol(symbol_iterator &It) const { 823 return toSymb(It->getRawDataRefImpl()); 824 } 825 826 const coff_relocation *COFFObjectFile::getCOFFRelocation( 827 relocation_iterator &It) const { 828 return toRel(It->getRawDataRefImpl()); 829 } 830 831 #define LLVM_COFF_SWITCH_RELOC_TYPE_NAME(enum) \ 832 case COFF::enum: Res = #enum; break; 833 834 error_code COFFObjectFile::getRelocationTypeName(DataRefImpl Rel, 835 SmallVectorImpl<char> &Result) const { 836 const coff_relocation *Reloc = toRel(Rel); 837 StringRef Res; 838 switch (COFFHeader->Machine) { 839 case COFF::IMAGE_FILE_MACHINE_AMD64: 840 switch (Reloc->Type) { 841 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ABSOLUTE); 842 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ADDR64); 843 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ADDR32); 844 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ADDR32NB); 845 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32); 846 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_1); 847 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_2); 848 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_3); 849 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_4); 850 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_5); 851 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SECTION); 852 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SECREL); 853 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SECREL7); 854 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_TOKEN); 855 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SREL32); 856 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_PAIR); 857 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SSPAN32); 858 default: 859 Res = "Unknown"; 860 } 861 break; 862 case COFF::IMAGE_FILE_MACHINE_I386: 863 switch (Reloc->Type) { 864 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_ABSOLUTE); 865 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_DIR16); 866 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_REL16); 867 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_DIR32); 868 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_DIR32NB); 869 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SEG12); 870 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SECTION); 871 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SECREL); 872 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_TOKEN); 873 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SECREL7); 874 LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_REL32); 875 default: 876 Res = "Unknown"; 877 } 878 break; 879 default: 880 Res = "Unknown"; 881 } 882 Result.append(Res.begin(), Res.end()); 883 return object_error::success; 884 } 885 886 #undef LLVM_COFF_SWITCH_RELOC_TYPE_NAME 887 888 error_code COFFObjectFile::getRelocationValueString(DataRefImpl Rel, 889 SmallVectorImpl<char> &Result) const { 890 const coff_relocation *Reloc = toRel(Rel); 891 const coff_symbol *Symb = 0; 892 if (error_code EC = getSymbol(Reloc->SymbolTableIndex, Symb)) return EC; 893 DataRefImpl Sym; 894 Sym.p = reinterpret_cast<uintptr_t>(Symb); 895 StringRef SymName; 896 if (error_code EC = getSymbolName(Sym, SymName)) return EC; 897 Result.append(SymName.begin(), SymName.end()); 898 return object_error::success; 899 } 900 901 error_code COFFObjectFile::getLibraryNext(DataRefImpl LibData, 902 LibraryRef &Result) const { 903 report_fatal_error("getLibraryNext not implemented in COFFObjectFile"); 904 } 905 906 error_code COFFObjectFile::getLibraryPath(DataRefImpl LibData, 907 StringRef &Result) const { 908 report_fatal_error("getLibraryPath not implemented in COFFObjectFile"); 909 } 910 911 bool ImportDirectoryEntryRef:: 912 operator==(const ImportDirectoryEntryRef &Other) const { 913 return ImportTable == Other.ImportTable && Index == Other.Index; 914 } 915 916 error_code 917 ImportDirectoryEntryRef::getNext(ImportDirectoryEntryRef &Result) const { 918 Result = ImportDirectoryEntryRef(ImportTable, Index + 1, OwningObject); 919 return object_error::success; 920 } 921 922 error_code ImportDirectoryEntryRef:: 923 getImportTableEntry(const import_directory_table_entry *&Result) const { 924 Result = ImportTable; 925 return object_error::success; 926 } 927 928 error_code ImportDirectoryEntryRef::getName(StringRef &Result) const { 929 uintptr_t IntPtr = 0; 930 if (error_code EC = OwningObject->getRvaPtr(ImportTable->NameRVA, IntPtr)) 931 return EC; 932 Result = StringRef(reinterpret_cast<const char *>(IntPtr)); 933 return object_error::success; 934 } 935 936 error_code ImportDirectoryEntryRef::getImportLookupEntry( 937 const import_lookup_table_entry32 *&Result) const { 938 uintptr_t IntPtr = 0; 939 if (error_code EC = 940 OwningObject->getRvaPtr(ImportTable->ImportLookupTableRVA, IntPtr)) 941 return EC; 942 Result = reinterpret_cast<const import_lookup_table_entry32 *>(IntPtr); 943 return object_error::success; 944 } 945 946 bool ExportDirectoryEntryRef:: 947 operator==(const ExportDirectoryEntryRef &Other) const { 948 return ExportTable == Other.ExportTable && Index == Other.Index; 949 } 950 951 error_code 952 ExportDirectoryEntryRef::getNext(ExportDirectoryEntryRef &Result) const { 953 Result = ExportDirectoryEntryRef(ExportTable, Index + 1, OwningObject); 954 return object_error::success; 955 } 956 957 // Returns the name of the current export symbol. If the symbol is exported only 958 // by ordinal, the empty string is set as a result. 959 error_code ExportDirectoryEntryRef::getDllName(StringRef &Result) const { 960 uintptr_t IntPtr = 0; 961 if (error_code EC = OwningObject->getRvaPtr(ExportTable->NameRVA, IntPtr)) 962 return EC; 963 Result = StringRef(reinterpret_cast<const char *>(IntPtr)); 964 return object_error::success; 965 } 966 967 // Returns the starting ordinal number. 968 error_code ExportDirectoryEntryRef::getOrdinalBase(uint32_t &Result) const { 969 Result = ExportTable->OrdinalBase; 970 return object_error::success; 971 } 972 973 // Returns the export ordinal of the current export symbol. 974 error_code ExportDirectoryEntryRef::getOrdinal(uint32_t &Result) const { 975 Result = ExportTable->OrdinalBase + Index; 976 return object_error::success; 977 } 978 979 // Returns the address of the current export symbol. 980 error_code ExportDirectoryEntryRef::getExportRVA(uint32_t &Result) const { 981 uintptr_t IntPtr = 0; 982 if (error_code EC = OwningObject->getRvaPtr( 983 ExportTable->ExportAddressTableRVA, IntPtr)) 984 return EC; 985 const export_address_table_entry *entry = 986 reinterpret_cast<const export_address_table_entry *>(IntPtr); 987 Result = entry[Index].ExportRVA; 988 return object_error::success; 989 } 990 991 // Returns the name of the current export symbol. If the symbol is exported only 992 // by ordinal, the empty string is set as a result. 993 error_code ExportDirectoryEntryRef::getSymbolName(StringRef &Result) const { 994 uintptr_t IntPtr = 0; 995 if (error_code EC = OwningObject->getRvaPtr( 996 ExportTable->OrdinalTableRVA, IntPtr)) 997 return EC; 998 const ulittle16_t *Start = reinterpret_cast<const ulittle16_t *>(IntPtr); 999 1000 uint32_t NumEntries = ExportTable->NumberOfNamePointers; 1001 int Offset = 0; 1002 for (const ulittle16_t *I = Start, *E = Start + NumEntries; 1003 I < E; ++I, ++Offset) { 1004 if (*I != Index) 1005 continue; 1006 if (error_code EC = OwningObject->getRvaPtr( 1007 ExportTable->NamePointerRVA, IntPtr)) 1008 return EC; 1009 const ulittle32_t *NamePtr = reinterpret_cast<const ulittle32_t *>(IntPtr); 1010 if (error_code EC = OwningObject->getRvaPtr(NamePtr[Offset], IntPtr)) 1011 return EC; 1012 Result = StringRef(reinterpret_cast<const char *>(IntPtr)); 1013 return object_error::success; 1014 } 1015 Result = ""; 1016 return object_error::success; 1017 } 1018 1019 ErrorOr<ObjectFile *> ObjectFile::createCOFFObjectFile(MemoryBuffer *Object, 1020 bool BufferOwned) { 1021 error_code EC; 1022 OwningPtr<COFFObjectFile> Ret(new COFFObjectFile(Object, EC, BufferOwned)); 1023 if (EC) 1024 return EC; 1025 return Ret.take(); 1026 } 1027