1 //===--- XCOFFObjectFile.cpp - XCOFF object file implementation -----------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file defines the XCOFFObjectFile class. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "llvm/Object/XCOFFObjectFile.h" 14 #include "llvm/ADT/StringSwitch.h" 15 #include "llvm/MC/SubtargetFeature.h" 16 #include "llvm/Support/DataExtractor.h" 17 #include <cstddef> 18 #include <cstring> 19 20 namespace llvm { 21 22 using namespace XCOFF; 23 24 namespace object { 25 26 static const uint8_t FunctionSym = 0x20; 27 static const uint8_t SymTypeMask = 0x07; 28 static const uint16_t NoRelMask = 0x0001; 29 30 // Checks that [Ptr, Ptr + Size) bytes fall inside the memory buffer 31 // 'M'. Returns a pointer to the underlying object on success. 32 template <typename T> 33 static Expected<const T *> getObject(MemoryBufferRef M, const void *Ptr, 34 const uint64_t Size = sizeof(T)) { 35 uintptr_t Addr = reinterpret_cast<uintptr_t>(Ptr); 36 if (Error E = Binary::checkOffset(M, Addr, Size)) 37 return std::move(E); 38 return reinterpret_cast<const T *>(Addr); 39 } 40 41 static uintptr_t getWithOffset(uintptr_t Base, ptrdiff_t Offset) { 42 return reinterpret_cast<uintptr_t>(reinterpret_cast<const char *>(Base) + 43 Offset); 44 } 45 46 template <typename T> static const T *viewAs(uintptr_t in) { 47 return reinterpret_cast<const T *>(in); 48 } 49 50 static StringRef generateXCOFFFixedNameStringRef(const char *Name) { 51 auto NulCharPtr = 52 static_cast<const char *>(memchr(Name, '\0', XCOFF::NameSize)); 53 return NulCharPtr ? StringRef(Name, NulCharPtr - Name) 54 : StringRef(Name, XCOFF::NameSize); 55 } 56 57 template <typename T> StringRef XCOFFSectionHeader<T>::getName() const { 58 const T &DerivedXCOFFSectionHeader = static_cast<const T &>(*this); 59 return generateXCOFFFixedNameStringRef(DerivedXCOFFSectionHeader.Name); 60 } 61 62 template <typename T> uint16_t XCOFFSectionHeader<T>::getSectionType() const { 63 const T &DerivedXCOFFSectionHeader = static_cast<const T &>(*this); 64 return DerivedXCOFFSectionHeader.Flags & SectionFlagsTypeMask; 65 } 66 67 template <typename T> 68 bool XCOFFSectionHeader<T>::isReservedSectionType() const { 69 return getSectionType() & SectionFlagsReservedMask; 70 } 71 72 bool XCOFFRelocation32::isRelocationSigned() const { 73 return Info & XR_SIGN_INDICATOR_MASK; 74 } 75 76 bool XCOFFRelocation32::isFixupIndicated() const { 77 return Info & XR_FIXUP_INDICATOR_MASK; 78 } 79 80 uint8_t XCOFFRelocation32::getRelocatedLength() const { 81 // The relocation encodes the bit length being relocated minus 1. Add back 82 // the 1 to get the actual length being relocated. 83 return (Info & XR_BIASED_LENGTH_MASK) + 1; 84 } 85 86 void XCOFFObjectFile::checkSectionAddress(uintptr_t Addr, 87 uintptr_t TableAddress) const { 88 if (Addr < TableAddress) 89 report_fatal_error("Section header outside of section header table."); 90 91 uintptr_t Offset = Addr - TableAddress; 92 if (Offset >= getSectionHeaderSize() * getNumberOfSections()) 93 report_fatal_error("Section header outside of section header table."); 94 95 if (Offset % getSectionHeaderSize() != 0) 96 report_fatal_error( 97 "Section header pointer does not point to a valid section header."); 98 } 99 100 const XCOFFSectionHeader32 * 101 XCOFFObjectFile::toSection32(DataRefImpl Ref) const { 102 assert(!is64Bit() && "32-bit interface called on 64-bit object file."); 103 #ifndef NDEBUG 104 checkSectionAddress(Ref.p, getSectionHeaderTableAddress()); 105 #endif 106 return viewAs<XCOFFSectionHeader32>(Ref.p); 107 } 108 109 const XCOFFSectionHeader64 * 110 XCOFFObjectFile::toSection64(DataRefImpl Ref) const { 111 assert(is64Bit() && "64-bit interface called on a 32-bit object file."); 112 #ifndef NDEBUG 113 checkSectionAddress(Ref.p, getSectionHeaderTableAddress()); 114 #endif 115 return viewAs<XCOFFSectionHeader64>(Ref.p); 116 } 117 118 const XCOFFSymbolEntry *XCOFFObjectFile::toSymbolEntry(DataRefImpl Ref) const { 119 assert(!is64Bit() && "Symbol table support not implemented for 64-bit."); 120 assert(Ref.p != 0 && "Symbol table pointer can not be nullptr!"); 121 #ifndef NDEBUG 122 checkSymbolEntryPointer(Ref.p); 123 #endif 124 auto SymEntPtr = viewAs<XCOFFSymbolEntry>(Ref.p); 125 return SymEntPtr; 126 } 127 128 const XCOFFFileHeader32 *XCOFFObjectFile::fileHeader32() const { 129 assert(!is64Bit() && "32-bit interface called on 64-bit object file."); 130 return static_cast<const XCOFFFileHeader32 *>(FileHeader); 131 } 132 133 const XCOFFFileHeader64 *XCOFFObjectFile::fileHeader64() const { 134 assert(is64Bit() && "64-bit interface called on a 32-bit object file."); 135 return static_cast<const XCOFFFileHeader64 *>(FileHeader); 136 } 137 138 const XCOFFSectionHeader32 * 139 XCOFFObjectFile::sectionHeaderTable32() const { 140 assert(!is64Bit() && "32-bit interface called on 64-bit object file."); 141 return static_cast<const XCOFFSectionHeader32 *>(SectionHeaderTable); 142 } 143 144 const XCOFFSectionHeader64 * 145 XCOFFObjectFile::sectionHeaderTable64() const { 146 assert(is64Bit() && "64-bit interface called on a 32-bit object file."); 147 return static_cast<const XCOFFSectionHeader64 *>(SectionHeaderTable); 148 } 149 150 void XCOFFObjectFile::moveSymbolNext(DataRefImpl &Symb) const { 151 const XCOFFSymbolEntry *SymEntPtr = toSymbolEntry(Symb); 152 SymEntPtr += SymEntPtr->NumberOfAuxEntries + 1; 153 #ifndef NDEBUG 154 // This function is used by basic_symbol_iterator, which allows to 155 // point to the end-of-symbol-table address. 156 if (reinterpret_cast<uintptr_t>(SymEntPtr) != getEndOfSymbolTableAddress()) 157 checkSymbolEntryPointer(reinterpret_cast<uintptr_t>(SymEntPtr)); 158 #endif 159 Symb.p = reinterpret_cast<uintptr_t>(SymEntPtr); 160 } 161 162 Expected<StringRef> 163 XCOFFObjectFile::getStringTableEntry(uint32_t Offset) const { 164 // The byte offset is relative to the start of the string table. 165 // A byte offset value of 0 is a null or zero-length symbol 166 // name. A byte offset in the range 1 to 3 (inclusive) points into the length 167 // field; as a soft-error recovery mechanism, we treat such cases as having an 168 // offset of 0. 169 if (Offset < 4) 170 return StringRef(nullptr, 0); 171 172 if (StringTable.Data != nullptr && StringTable.Size > Offset) 173 return (StringTable.Data + Offset); 174 175 return make_error<GenericBinaryError>("Bad offset for string table entry", 176 object_error::parse_failed); 177 } 178 179 Expected<StringRef> 180 XCOFFObjectFile::getCFileName(const XCOFFFileAuxEnt *CFileEntPtr) const { 181 if (CFileEntPtr->NameInStrTbl.Magic != 182 XCOFFSymbolEntry::NAME_IN_STR_TBL_MAGIC) 183 return generateXCOFFFixedNameStringRef(CFileEntPtr->Name); 184 return getStringTableEntry(CFileEntPtr->NameInStrTbl.Offset); 185 } 186 187 Expected<StringRef> XCOFFObjectFile::getSymbolName(DataRefImpl Symb) const { 188 const XCOFFSymbolEntry *SymEntPtr = toSymbolEntry(Symb); 189 190 // A storage class value with the high-order bit on indicates that the name is 191 // a symbolic debugger stabstring. 192 if (SymEntPtr->StorageClass & 0x80) 193 return StringRef("Unimplemented Debug Name"); 194 195 if (SymEntPtr->NameInStrTbl.Magic != XCOFFSymbolEntry::NAME_IN_STR_TBL_MAGIC) 196 return generateXCOFFFixedNameStringRef(SymEntPtr->SymbolName); 197 198 return getStringTableEntry(SymEntPtr->NameInStrTbl.Offset); 199 } 200 201 Expected<uint64_t> XCOFFObjectFile::getSymbolAddress(DataRefImpl Symb) const { 202 assert(!is64Bit() && "Symbol table support not implemented for 64-bit."); 203 return toSymbolEntry(Symb)->Value; 204 } 205 206 uint64_t XCOFFObjectFile::getSymbolValueImpl(DataRefImpl Symb) const { 207 assert(!is64Bit() && "Symbol table support not implemented for 64-bit."); 208 return toSymbolEntry(Symb)->Value; 209 } 210 211 uint64_t XCOFFObjectFile::getCommonSymbolSizeImpl(DataRefImpl Symb) const { 212 uint64_t Result = 0; 213 llvm_unreachable("Not yet implemented!"); 214 return Result; 215 } 216 217 Expected<SymbolRef::Type> 218 XCOFFObjectFile::getSymbolType(DataRefImpl Symb) const { 219 llvm_unreachable("Not yet implemented!"); 220 return SymbolRef::ST_Other; 221 } 222 223 Expected<section_iterator> 224 XCOFFObjectFile::getSymbolSection(DataRefImpl Symb) const { 225 const XCOFFSymbolEntry *SymEntPtr = toSymbolEntry(Symb); 226 int16_t SectNum = SymEntPtr->SectionNumber; 227 228 if (isReservedSectionNumber(SectNum)) 229 return section_end(); 230 231 Expected<DataRefImpl> ExpSec = getSectionByNum(SectNum); 232 if (!ExpSec) 233 return ExpSec.takeError(); 234 235 return section_iterator(SectionRef(ExpSec.get(), this)); 236 } 237 238 void XCOFFObjectFile::moveSectionNext(DataRefImpl &Sec) const { 239 const char *Ptr = reinterpret_cast<const char *>(Sec.p); 240 Sec.p = reinterpret_cast<uintptr_t>(Ptr + getSectionHeaderSize()); 241 } 242 243 Expected<StringRef> XCOFFObjectFile::getSectionName(DataRefImpl Sec) const { 244 return generateXCOFFFixedNameStringRef(getSectionNameInternal(Sec)); 245 } 246 247 uint64_t XCOFFObjectFile::getSectionAddress(DataRefImpl Sec) const { 248 // Avoid ternary due to failure to convert the ubig32_t value to a unit64_t 249 // with MSVC. 250 if (is64Bit()) 251 return toSection64(Sec)->VirtualAddress; 252 253 return toSection32(Sec)->VirtualAddress; 254 } 255 256 uint64_t XCOFFObjectFile::getSectionIndex(DataRefImpl Sec) const { 257 // Section numbers in XCOFF are numbered beginning at 1. A section number of 258 // zero is used to indicate that a symbol is being imported or is undefined. 259 if (is64Bit()) 260 return toSection64(Sec) - sectionHeaderTable64() + 1; 261 else 262 return toSection32(Sec) - sectionHeaderTable32() + 1; 263 } 264 265 uint64_t XCOFFObjectFile::getSectionSize(DataRefImpl Sec) const { 266 // Avoid ternary due to failure to convert the ubig32_t value to a unit64_t 267 // with MSVC. 268 if (is64Bit()) 269 return toSection64(Sec)->SectionSize; 270 271 return toSection32(Sec)->SectionSize; 272 } 273 274 Expected<ArrayRef<uint8_t>> 275 XCOFFObjectFile::getSectionContents(DataRefImpl Sec) const { 276 if (isSectionVirtual(Sec)) 277 return ArrayRef<uint8_t>(); 278 279 uint64_t OffsetToRaw; 280 if (is64Bit()) 281 OffsetToRaw = toSection64(Sec)->FileOffsetToRawData; 282 else 283 OffsetToRaw = toSection32(Sec)->FileOffsetToRawData; 284 285 const uint8_t * ContentStart = base() + OffsetToRaw; 286 uint64_t SectionSize = getSectionSize(Sec); 287 if (checkOffset(Data, reinterpret_cast<uintptr_t>(ContentStart), SectionSize)) 288 return make_error<BinaryError>(); 289 290 return makeArrayRef(ContentStart,SectionSize); 291 } 292 293 uint64_t XCOFFObjectFile::getSectionAlignment(DataRefImpl Sec) const { 294 uint64_t Result = 0; 295 llvm_unreachable("Not yet implemented!"); 296 return Result; 297 } 298 299 bool XCOFFObjectFile::isSectionCompressed(DataRefImpl Sec) const { 300 return false; 301 } 302 303 bool XCOFFObjectFile::isSectionText(DataRefImpl Sec) const { 304 return getSectionFlags(Sec) & XCOFF::STYP_TEXT; 305 } 306 307 bool XCOFFObjectFile::isSectionData(DataRefImpl Sec) const { 308 uint32_t Flags = getSectionFlags(Sec); 309 return Flags & (XCOFF::STYP_DATA | XCOFF::STYP_TDATA); 310 } 311 312 bool XCOFFObjectFile::isSectionBSS(DataRefImpl Sec) const { 313 uint32_t Flags = getSectionFlags(Sec); 314 return Flags & (XCOFF::STYP_BSS | XCOFF::STYP_TBSS); 315 } 316 317 bool XCOFFObjectFile::isSectionVirtual(DataRefImpl Sec) const { 318 return is64Bit() ? toSection64(Sec)->FileOffsetToRawData == 0 319 : toSection32(Sec)->FileOffsetToRawData == 0; 320 } 321 322 relocation_iterator XCOFFObjectFile::section_rel_begin(DataRefImpl Sec) const { 323 if (is64Bit()) 324 report_fatal_error("64-bit support not implemented yet"); 325 const XCOFFSectionHeader32 *SectionEntPtr = toSection32(Sec); 326 auto RelocationsOrErr = relocations(*SectionEntPtr); 327 if (Error E = RelocationsOrErr.takeError()) 328 return relocation_iterator(RelocationRef()); 329 DataRefImpl Ret; 330 Ret.p = reinterpret_cast<uintptr_t>(&*RelocationsOrErr.get().begin()); 331 return relocation_iterator(RelocationRef(Ret, this)); 332 } 333 334 relocation_iterator XCOFFObjectFile::section_rel_end(DataRefImpl Sec) const { 335 if (is64Bit()) 336 report_fatal_error("64-bit support not implemented yet"); 337 const XCOFFSectionHeader32 *SectionEntPtr = toSection32(Sec); 338 auto RelocationsOrErr = relocations(*SectionEntPtr); 339 if (Error E = RelocationsOrErr.takeError()) 340 return relocation_iterator(RelocationRef()); 341 DataRefImpl Ret; 342 Ret.p = reinterpret_cast<uintptr_t>(&*RelocationsOrErr.get().end()); 343 return relocation_iterator(RelocationRef(Ret, this)); 344 } 345 346 void XCOFFObjectFile::moveRelocationNext(DataRefImpl &Rel) const { 347 Rel.p = reinterpret_cast<uintptr_t>(viewAs<XCOFFRelocation32>(Rel.p) + 1); 348 } 349 350 uint64_t XCOFFObjectFile::getRelocationOffset(DataRefImpl Rel) const { 351 if (is64Bit()) 352 report_fatal_error("64-bit support not implemented yet"); 353 const XCOFFRelocation32 *Reloc = viewAs<XCOFFRelocation32>(Rel.p); 354 const XCOFFSectionHeader32 *Sec32 = sectionHeaderTable32(); 355 const uint32_t RelocAddress = Reloc->VirtualAddress; 356 const uint16_t NumberOfSections = getNumberOfSections(); 357 for (uint16_t i = 0; i < NumberOfSections; ++i) { 358 // Find which section this relocation is belonging to, and get the 359 // relocation offset relative to the start of the section. 360 if (Sec32->VirtualAddress <= RelocAddress && 361 RelocAddress < Sec32->VirtualAddress + Sec32->SectionSize) { 362 return RelocAddress - Sec32->VirtualAddress; 363 } 364 ++Sec32; 365 } 366 return InvalidRelocOffset; 367 } 368 369 symbol_iterator XCOFFObjectFile::getRelocationSymbol(DataRefImpl Rel) const { 370 if (is64Bit()) 371 report_fatal_error("64-bit support not implemented yet"); 372 const XCOFFRelocation32 *Reloc = viewAs<XCOFFRelocation32>(Rel.p); 373 const uint32_t Index = Reloc->SymbolIndex; 374 375 if (Index >= getLogicalNumberOfSymbolTableEntries32()) 376 return symbol_end(); 377 378 DataRefImpl SymDRI; 379 SymDRI.p = reinterpret_cast<uintptr_t>(getPointerToSymbolTable() + Index); 380 return symbol_iterator(SymbolRef(SymDRI, this)); 381 } 382 383 uint64_t XCOFFObjectFile::getRelocationType(DataRefImpl Rel) const { 384 if (is64Bit()) 385 report_fatal_error("64-bit support not implemented yet"); 386 return viewAs<XCOFFRelocation32>(Rel.p)->Type; 387 } 388 389 void XCOFFObjectFile::getRelocationTypeName( 390 DataRefImpl Rel, SmallVectorImpl<char> &Result) const { 391 if (is64Bit()) 392 report_fatal_error("64-bit support not implemented yet"); 393 const XCOFFRelocation32 *Reloc = viewAs<XCOFFRelocation32>(Rel.p); 394 StringRef Res = XCOFF::getRelocationTypeString(Reloc->Type); 395 Result.append(Res.begin(), Res.end()); 396 } 397 398 Expected<uint32_t> XCOFFObjectFile::getSymbolFlags(DataRefImpl Symb) const { 399 uint32_t Result = 0; 400 llvm_unreachable("Not yet implemented!"); 401 return Result; 402 } 403 404 basic_symbol_iterator XCOFFObjectFile::symbol_begin() const { 405 if (is64Bit()) 406 report_fatal_error("64-bit support not implemented yet"); 407 DataRefImpl SymDRI; 408 SymDRI.p = reinterpret_cast<uintptr_t>(SymbolTblPtr); 409 return basic_symbol_iterator(SymbolRef(SymDRI, this)); 410 } 411 412 basic_symbol_iterator XCOFFObjectFile::symbol_end() const { 413 if (is64Bit()) 414 report_fatal_error("64-bit support not implemented yet"); 415 DataRefImpl SymDRI; 416 SymDRI.p = reinterpret_cast<uintptr_t>( 417 SymbolTblPtr + getLogicalNumberOfSymbolTableEntries32()); 418 return basic_symbol_iterator(SymbolRef(SymDRI, this)); 419 } 420 421 section_iterator XCOFFObjectFile::section_begin() const { 422 DataRefImpl DRI; 423 DRI.p = getSectionHeaderTableAddress(); 424 return section_iterator(SectionRef(DRI, this)); 425 } 426 427 section_iterator XCOFFObjectFile::section_end() const { 428 DataRefImpl DRI; 429 DRI.p = getWithOffset(getSectionHeaderTableAddress(), 430 getNumberOfSections() * getSectionHeaderSize()); 431 return section_iterator(SectionRef(DRI, this)); 432 } 433 434 uint8_t XCOFFObjectFile::getBytesInAddress() const { return is64Bit() ? 8 : 4; } 435 436 StringRef XCOFFObjectFile::getFileFormatName() const { 437 return is64Bit() ? "aix5coff64-rs6000" : "aixcoff-rs6000"; 438 } 439 440 Triple::ArchType XCOFFObjectFile::getArch() const { 441 return is64Bit() ? Triple::ppc64 : Triple::ppc; 442 } 443 444 SubtargetFeatures XCOFFObjectFile::getFeatures() const { 445 return SubtargetFeatures(); 446 } 447 448 bool XCOFFObjectFile::isRelocatableObject() const { 449 if (is64Bit()) 450 report_fatal_error("64-bit support not implemented yet"); 451 return !(fileHeader32()->Flags & NoRelMask); 452 } 453 454 Expected<uint64_t> XCOFFObjectFile::getStartAddress() const { 455 // TODO FIXME Should get from auxiliary_header->o_entry when support for the 456 // auxiliary_header is added. 457 return 0; 458 } 459 460 StringRef XCOFFObjectFile::mapDebugSectionName(StringRef Name) const { 461 return StringSwitch<StringRef>(Name) 462 .Case("dwinfo", "debug_info") 463 .Case("dwline", "debug_line") 464 .Case("dwpbnms", "debug_pubnames") 465 .Case("dwpbtyp", "debug_pubtypes") 466 .Case("dwarnge", "debug_aranges") 467 .Case("dwabrev", "debug_abbrev") 468 .Case("dwstr", "debug_str") 469 .Case("dwrnges", "debug_ranges") 470 .Case("dwloc", "debug_loc") 471 .Case("dwframe", "debug_frame") 472 .Case("dwmac", "debug_macinfo") 473 .Default(Name); 474 } 475 476 size_t XCOFFObjectFile::getFileHeaderSize() const { 477 return is64Bit() ? sizeof(XCOFFFileHeader64) : sizeof(XCOFFFileHeader32); 478 } 479 480 size_t XCOFFObjectFile::getSectionHeaderSize() const { 481 return is64Bit() ? sizeof(XCOFFSectionHeader64) : 482 sizeof(XCOFFSectionHeader32); 483 } 484 485 bool XCOFFObjectFile::is64Bit() const { 486 return Binary::ID_XCOFF64 == getType(); 487 } 488 489 uint16_t XCOFFObjectFile::getMagic() const { 490 return is64Bit() ? fileHeader64()->Magic : fileHeader32()->Magic; 491 } 492 493 Expected<DataRefImpl> XCOFFObjectFile::getSectionByNum(int16_t Num) const { 494 if (Num <= 0 || Num > getNumberOfSections()) 495 return errorCodeToError(object_error::invalid_section_index); 496 497 DataRefImpl DRI; 498 DRI.p = getWithOffset(getSectionHeaderTableAddress(), 499 getSectionHeaderSize() * (Num - 1)); 500 return DRI; 501 } 502 503 Expected<StringRef> 504 XCOFFObjectFile::getSymbolSectionName(const XCOFFSymbolEntry *SymEntPtr) const { 505 assert(!is64Bit() && "Symbol table support not implemented for 64-bit."); 506 int16_t SectionNum = SymEntPtr->SectionNumber; 507 508 switch (SectionNum) { 509 case XCOFF::N_DEBUG: 510 return "N_DEBUG"; 511 case XCOFF::N_ABS: 512 return "N_ABS"; 513 case XCOFF::N_UNDEF: 514 return "N_UNDEF"; 515 default: 516 Expected<DataRefImpl> SecRef = getSectionByNum(SectionNum); 517 if (SecRef) 518 return generateXCOFFFixedNameStringRef( 519 getSectionNameInternal(SecRef.get())); 520 return SecRef.takeError(); 521 } 522 } 523 524 bool XCOFFObjectFile::isReservedSectionNumber(int16_t SectionNumber) { 525 return (SectionNumber <= 0 && SectionNumber >= -2); 526 } 527 528 uint16_t XCOFFObjectFile::getNumberOfSections() const { 529 return is64Bit() ? fileHeader64()->NumberOfSections 530 : fileHeader32()->NumberOfSections; 531 } 532 533 int32_t XCOFFObjectFile::getTimeStamp() const { 534 return is64Bit() ? fileHeader64()->TimeStamp : fileHeader32()->TimeStamp; 535 } 536 537 uint16_t XCOFFObjectFile::getOptionalHeaderSize() const { 538 return is64Bit() ? fileHeader64()->AuxHeaderSize 539 : fileHeader32()->AuxHeaderSize; 540 } 541 542 uint32_t XCOFFObjectFile::getSymbolTableOffset32() const { 543 return fileHeader32()->SymbolTableOffset; 544 } 545 546 int32_t XCOFFObjectFile::getRawNumberOfSymbolTableEntries32() const { 547 // As far as symbol table size is concerned, if this field is negative it is 548 // to be treated as a 0. However since this field is also used for printing we 549 // don't want to truncate any negative values. 550 return fileHeader32()->NumberOfSymTableEntries; 551 } 552 553 uint32_t XCOFFObjectFile::getLogicalNumberOfSymbolTableEntries32() const { 554 return (fileHeader32()->NumberOfSymTableEntries >= 0 555 ? fileHeader32()->NumberOfSymTableEntries 556 : 0); 557 } 558 559 uint64_t XCOFFObjectFile::getSymbolTableOffset64() const { 560 return fileHeader64()->SymbolTableOffset; 561 } 562 563 uint32_t XCOFFObjectFile::getNumberOfSymbolTableEntries64() const { 564 return fileHeader64()->NumberOfSymTableEntries; 565 } 566 567 uintptr_t XCOFFObjectFile::getEndOfSymbolTableAddress() const { 568 uint32_t NumberOfSymTableEntries = 569 is64Bit() ? getNumberOfSymbolTableEntries64() 570 : getLogicalNumberOfSymbolTableEntries32(); 571 return getWithOffset(reinterpret_cast<uintptr_t>(SymbolTblPtr), 572 XCOFF::SymbolTableEntrySize * NumberOfSymTableEntries); 573 } 574 575 void XCOFFObjectFile::checkSymbolEntryPointer(uintptr_t SymbolEntPtr) const { 576 if (SymbolEntPtr < reinterpret_cast<uintptr_t>(SymbolTblPtr)) 577 report_fatal_error("Symbol table entry is outside of symbol table."); 578 579 if (SymbolEntPtr >= getEndOfSymbolTableAddress()) 580 report_fatal_error("Symbol table entry is outside of symbol table."); 581 582 ptrdiff_t Offset = reinterpret_cast<const char *>(SymbolEntPtr) - 583 reinterpret_cast<const char *>(SymbolTblPtr); 584 585 if (Offset % XCOFF::SymbolTableEntrySize != 0) 586 report_fatal_error( 587 "Symbol table entry position is not valid inside of symbol table."); 588 } 589 590 uint32_t XCOFFObjectFile::getSymbolIndex(uintptr_t SymbolEntPtr) const { 591 return (reinterpret_cast<const char *>(SymbolEntPtr) - 592 reinterpret_cast<const char *>(SymbolTblPtr)) / 593 XCOFF::SymbolTableEntrySize; 594 } 595 596 Expected<StringRef> 597 XCOFFObjectFile::getSymbolNameByIndex(uint32_t Index) const { 598 if (is64Bit()) 599 report_fatal_error("64-bit symbol table support not implemented yet."); 600 601 if (Index >= getLogicalNumberOfSymbolTableEntries32()) 602 return errorCodeToError(object_error::invalid_symbol_index); 603 604 DataRefImpl SymDRI; 605 SymDRI.p = reinterpret_cast<uintptr_t>(getPointerToSymbolTable() + Index); 606 return getSymbolName(SymDRI); 607 } 608 609 uint16_t XCOFFObjectFile::getFlags() const { 610 return is64Bit() ? fileHeader64()->Flags : fileHeader32()->Flags; 611 } 612 613 const char *XCOFFObjectFile::getSectionNameInternal(DataRefImpl Sec) const { 614 return is64Bit() ? toSection64(Sec)->Name : toSection32(Sec)->Name; 615 } 616 617 uintptr_t XCOFFObjectFile::getSectionHeaderTableAddress() const { 618 return reinterpret_cast<uintptr_t>(SectionHeaderTable); 619 } 620 621 int32_t XCOFFObjectFile::getSectionFlags(DataRefImpl Sec) const { 622 return is64Bit() ? toSection64(Sec)->Flags : toSection32(Sec)->Flags; 623 } 624 625 XCOFFObjectFile::XCOFFObjectFile(unsigned int Type, MemoryBufferRef Object) 626 : ObjectFile(Type, Object) { 627 assert(Type == Binary::ID_XCOFF32 || Type == Binary::ID_XCOFF64); 628 } 629 630 ArrayRef<XCOFFSectionHeader64> XCOFFObjectFile::sections64() const { 631 assert(is64Bit() && "64-bit interface called for non 64-bit file."); 632 const XCOFFSectionHeader64 *TablePtr = sectionHeaderTable64(); 633 return ArrayRef<XCOFFSectionHeader64>(TablePtr, 634 TablePtr + getNumberOfSections()); 635 } 636 637 ArrayRef<XCOFFSectionHeader32> XCOFFObjectFile::sections32() const { 638 assert(!is64Bit() && "32-bit interface called for non 32-bit file."); 639 const XCOFFSectionHeader32 *TablePtr = sectionHeaderTable32(); 640 return ArrayRef<XCOFFSectionHeader32>(TablePtr, 641 TablePtr + getNumberOfSections()); 642 } 643 644 // In an XCOFF32 file, when the field value is 65535, then an STYP_OVRFLO 645 // section header contains the actual count of relocation entries in the s_paddr 646 // field. STYP_OVRFLO headers contain the section index of their corresponding 647 // sections as their raw "NumberOfRelocations" field value. 648 Expected<uint32_t> XCOFFObjectFile::getLogicalNumberOfRelocationEntries( 649 const XCOFFSectionHeader32 &Sec) const { 650 651 uint16_t SectionIndex = &Sec - sectionHeaderTable32() + 1; 652 653 if (Sec.NumberOfRelocations < XCOFF::RelocOverflow) 654 return Sec.NumberOfRelocations; 655 for (const auto &Sec : sections32()) { 656 if (Sec.Flags == XCOFF::STYP_OVRFLO && 657 Sec.NumberOfRelocations == SectionIndex) 658 return Sec.PhysicalAddress; 659 } 660 return errorCodeToError(object_error::parse_failed); 661 } 662 663 Expected<ArrayRef<XCOFFRelocation32>> 664 XCOFFObjectFile::relocations(const XCOFFSectionHeader32 &Sec) const { 665 uintptr_t RelocAddr = getWithOffset(reinterpret_cast<uintptr_t>(FileHeader), 666 Sec.FileOffsetToRelocationInfo); 667 auto NumRelocEntriesOrErr = getLogicalNumberOfRelocationEntries(Sec); 668 if (Error E = NumRelocEntriesOrErr.takeError()) 669 return std::move(E); 670 671 uint32_t NumRelocEntries = NumRelocEntriesOrErr.get(); 672 673 static_assert( 674 sizeof(XCOFFRelocation32) == XCOFF::RelocationSerializationSize32, ""); 675 auto RelocationOrErr = 676 getObject<XCOFFRelocation32>(Data, reinterpret_cast<void *>(RelocAddr), 677 NumRelocEntries * sizeof(XCOFFRelocation32)); 678 if (Error E = RelocationOrErr.takeError()) 679 return std::move(E); 680 681 const XCOFFRelocation32 *StartReloc = RelocationOrErr.get(); 682 683 return ArrayRef<XCOFFRelocation32>(StartReloc, StartReloc + NumRelocEntries); 684 } 685 686 Expected<XCOFFStringTable> 687 XCOFFObjectFile::parseStringTable(const XCOFFObjectFile *Obj, uint64_t Offset) { 688 // If there is a string table, then the buffer must contain at least 4 bytes 689 // for the string table's size. Not having a string table is not an error. 690 if (Error E = Binary::checkOffset( 691 Obj->Data, reinterpret_cast<uintptr_t>(Obj->base() + Offset), 4)) { 692 consumeError(std::move(E)); 693 return XCOFFStringTable{0, nullptr}; 694 } 695 696 // Read the size out of the buffer. 697 uint32_t Size = support::endian::read32be(Obj->base() + Offset); 698 699 // If the size is less then 4, then the string table is just a size and no 700 // string data. 701 if (Size <= 4) 702 return XCOFFStringTable{4, nullptr}; 703 704 auto StringTableOrErr = 705 getObject<char>(Obj->Data, Obj->base() + Offset, Size); 706 if (Error E = StringTableOrErr.takeError()) 707 return std::move(E); 708 709 const char *StringTablePtr = StringTableOrErr.get(); 710 if (StringTablePtr[Size - 1] != '\0') 711 return errorCodeToError(object_error::string_table_non_null_end); 712 713 return XCOFFStringTable{Size, StringTablePtr}; 714 } 715 716 Expected<std::unique_ptr<XCOFFObjectFile>> 717 XCOFFObjectFile::create(unsigned Type, MemoryBufferRef MBR) { 718 // Can't use std::make_unique because of the private constructor. 719 std::unique_ptr<XCOFFObjectFile> Obj; 720 Obj.reset(new XCOFFObjectFile(Type, MBR)); 721 722 uint64_t CurOffset = 0; 723 const auto *Base = Obj->base(); 724 MemoryBufferRef Data = Obj->Data; 725 726 // Parse file header. 727 auto FileHeaderOrErr = 728 getObject<void>(Data, Base + CurOffset, Obj->getFileHeaderSize()); 729 if (Error E = FileHeaderOrErr.takeError()) 730 return std::move(E); 731 Obj->FileHeader = FileHeaderOrErr.get(); 732 733 CurOffset += Obj->getFileHeaderSize(); 734 // TODO FIXME we don't have support for an optional header yet, so just skip 735 // past it. 736 CurOffset += Obj->getOptionalHeaderSize(); 737 738 // Parse the section header table if it is present. 739 if (Obj->getNumberOfSections()) { 740 auto SecHeadersOrErr = getObject<void>(Data, Base + CurOffset, 741 Obj->getNumberOfSections() * 742 Obj->getSectionHeaderSize()); 743 if (Error E = SecHeadersOrErr.takeError()) 744 return std::move(E); 745 Obj->SectionHeaderTable = SecHeadersOrErr.get(); 746 } 747 748 // 64-bit object supports only file header and section headers for now. 749 if (Obj->is64Bit()) 750 return std::move(Obj); 751 752 // If there is no symbol table we are done parsing the memory buffer. 753 if (Obj->getLogicalNumberOfSymbolTableEntries32() == 0) 754 return std::move(Obj); 755 756 // Parse symbol table. 757 CurOffset = Obj->fileHeader32()->SymbolTableOffset; 758 uint64_t SymbolTableSize = (uint64_t)(sizeof(XCOFFSymbolEntry)) * 759 Obj->getLogicalNumberOfSymbolTableEntries32(); 760 auto SymTableOrErr = 761 getObject<XCOFFSymbolEntry>(Data, Base + CurOffset, SymbolTableSize); 762 if (Error E = SymTableOrErr.takeError()) 763 return std::move(E); 764 Obj->SymbolTblPtr = SymTableOrErr.get(); 765 CurOffset += SymbolTableSize; 766 767 // Parse String table. 768 Expected<XCOFFStringTable> StringTableOrErr = 769 parseStringTable(Obj.get(), CurOffset); 770 if (Error E = StringTableOrErr.takeError()) 771 return std::move(E); 772 Obj->StringTable = StringTableOrErr.get(); 773 774 return std::move(Obj); 775 } 776 777 Expected<std::unique_ptr<ObjectFile>> 778 ObjectFile::createXCOFFObjectFile(MemoryBufferRef MemBufRef, 779 unsigned FileType) { 780 return XCOFFObjectFile::create(FileType, MemBufRef); 781 } 782 783 XCOFF::StorageClass XCOFFSymbolRef::getStorageClass() const { 784 return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->StorageClass; 785 } 786 787 uint8_t XCOFFSymbolRef::getNumberOfAuxEntries() const { 788 return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->NumberOfAuxEntries; 789 } 790 791 // TODO: The function needs to return an error if there is no csect auxiliary 792 // entry. 793 const XCOFFCsectAuxEnt32 *XCOFFSymbolRef::getXCOFFCsectAuxEnt32() const { 794 assert(!OwningObjectPtr->is64Bit() && 795 "32-bit interface called on 64-bit object file."); 796 assert(hasCsectAuxEnt() && "No Csect Auxiliary Entry is found."); 797 798 // In XCOFF32, the csect auxilliary entry is always the last auxiliary 799 // entry for the symbol. 800 uintptr_t AuxAddr = getWithOffset( 801 SymEntDataRef.p, XCOFF::SymbolTableEntrySize * getNumberOfAuxEntries()); 802 803 #ifndef NDEBUG 804 OwningObjectPtr->checkSymbolEntryPointer(AuxAddr); 805 #endif 806 807 return reinterpret_cast<const XCOFFCsectAuxEnt32 *>(AuxAddr); 808 } 809 810 uint16_t XCOFFSymbolRef::getType() const { 811 return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->SymbolType; 812 } 813 814 int16_t XCOFFSymbolRef::getSectionNumber() const { 815 return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->SectionNumber; 816 } 817 818 // TODO: The function name needs to be changed to express the purpose of the 819 // function. 820 bool XCOFFSymbolRef::hasCsectAuxEnt() const { 821 XCOFF::StorageClass SC = getStorageClass(); 822 return (SC == XCOFF::C_EXT || SC == XCOFF::C_WEAKEXT || 823 SC == XCOFF::C_HIDEXT); 824 } 825 826 bool XCOFFSymbolRef::isFunction() const { 827 if (OwningObjectPtr->is64Bit()) 828 report_fatal_error("64-bit support is unimplemented yet."); 829 830 if (getType() & FunctionSym) 831 return true; 832 833 if (!hasCsectAuxEnt()) 834 return false; 835 836 const XCOFFCsectAuxEnt32 *CsectAuxEnt = getXCOFFCsectAuxEnt32(); 837 838 // A function definition should be a label definition. 839 if ((CsectAuxEnt->SymbolAlignmentAndType & SymTypeMask) != XCOFF::XTY_LD) 840 return false; 841 842 if (CsectAuxEnt->StorageMappingClass != XCOFF::XMC_PR) 843 return false; 844 845 int16_t SectNum = getSectionNumber(); 846 Expected<DataRefImpl> SI = OwningObjectPtr->getSectionByNum(SectNum); 847 if (!SI) 848 return false; 849 850 return (OwningObjectPtr->getSectionFlags(SI.get()) & XCOFF::STYP_TEXT); 851 } 852 853 // Explictly instantiate template classes. 854 template struct XCOFFSectionHeader<XCOFFSectionHeader32>; 855 template struct XCOFFSectionHeader<XCOFFSectionHeader64>; 856 857 bool doesXCOFFTracebackTableBegin(ArrayRef<uint8_t> Bytes) { 858 if (Bytes.size() < 4) 859 return false; 860 861 return support::endian::read32be(Bytes.data()) == 0; 862 } 863 864 TBVectorExt::TBVectorExt(StringRef TBvectorStrRef) { 865 const uint8_t *Ptr = reinterpret_cast<const uint8_t *>(TBvectorStrRef.data()); 866 Data = support::endian::read16be(Ptr); 867 VecParmsInfo = support::endian::read32be(Ptr + 2); 868 } 869 870 #define GETVALUEWITHMASK(X) (Data & (TracebackTable::X)) 871 #define GETVALUEWITHMASKSHIFT(X, S) \ 872 ((Data & (TracebackTable::X)) >> (TracebackTable::S)) 873 uint8_t TBVectorExt::getNumberOfVRSaved() const { 874 return GETVALUEWITHMASKSHIFT(NumberOfVRSavedMask, NumberOfVRSavedShift); 875 } 876 877 bool TBVectorExt::isVRSavedOnStack() const { 878 return GETVALUEWITHMASK(IsVRSavedOnStackMask); 879 } 880 881 bool TBVectorExt::hasVarArgs() const { 882 return GETVALUEWITHMASK(HasVarArgsMask); 883 } 884 uint8_t TBVectorExt::getNumberOfVectorParms() const { 885 return GETVALUEWITHMASKSHIFT(NumberOfVectorParmsMask, 886 NumberOfVectorParmsShift); 887 } 888 889 bool TBVectorExt::hasVMXInstruction() const { 890 return GETVALUEWITHMASK(HasVMXInstructionMask); 891 } 892 #undef GETVALUEWITHMASK 893 #undef GETVALUEWITHMASKSHIFT 894 895 SmallString<32> TBVectorExt::getVectorParmsInfoString() const { 896 SmallString<32> ParmsType; 897 uint32_t Value = VecParmsInfo; 898 for (uint8_t I = 0; I < getNumberOfVectorParms(); ++I) { 899 if (I != 0) 900 ParmsType += ", "; 901 switch (Value & TracebackTable::ParmTypeMask) { 902 case TracebackTable::ParmTypeIsVectorCharBit: 903 ParmsType += "vc"; 904 break; 905 906 case TracebackTable::ParmTypeIsVectorShortBit: 907 ParmsType += "vs"; 908 break; 909 910 case TracebackTable::ParmTypeIsVectorIntBit: 911 ParmsType += "vi"; 912 break; 913 914 case TracebackTable::ParmTypeIsVectorFloatBit: 915 ParmsType += "vf"; 916 break; 917 } 918 Value <<= 2; 919 } 920 return ParmsType; 921 } 922 923 static SmallString<32> parseParmsTypeWithVecInfo(uint32_t Value, 924 unsigned int ParmsNum) { 925 SmallString<32> ParmsType; 926 unsigned I = 0; 927 bool Begin = false; 928 while (I < ParmsNum || Value) { 929 if (Begin) 930 ParmsType += ", "; 931 else 932 Begin = true; 933 934 switch (Value & TracebackTable::ParmTypeMask) { 935 case TracebackTable::ParmTypeIsFixedBits: 936 ParmsType += "i"; 937 ++I; 938 break; 939 case TracebackTable::ParmTypeIsVectorBits: 940 ParmsType += "v"; 941 break; 942 case TracebackTable::ParmTypeIsFloatingBits: 943 ParmsType += "f"; 944 ++I; 945 break; 946 case TracebackTable::ParmTypeIsDoubleBits: 947 ParmsType += "d"; 948 ++I; 949 break; 950 default: 951 assert(false && "Unrecognized bits in ParmsType."); 952 } 953 Value <<= 2; 954 } 955 assert(I == ParmsNum && 956 "The total parameters number of fixed-point or floating-point " 957 "parameters not equal to the number in the parameter type!"); 958 return ParmsType; 959 } 960 961 Expected<XCOFFTracebackTable> XCOFFTracebackTable::create(const uint8_t *Ptr, 962 uint64_t &Size) { 963 Error Err = Error::success(); 964 XCOFFTracebackTable TBT(Ptr, Size, Err); 965 if (Err) 966 return std::move(Err); 967 return TBT; 968 } 969 970 XCOFFTracebackTable::XCOFFTracebackTable(const uint8_t *Ptr, uint64_t &Size, 971 Error &Err) 972 : TBPtr(Ptr) { 973 ErrorAsOutParameter EAO(&Err); 974 DataExtractor DE(ArrayRef<uint8_t>(Ptr, Size), /*IsLittleEndian=*/false, 975 /*AddressSize=*/0); 976 DataExtractor::Cursor Cur(/*Offset=*/0); 977 978 // Skip 8 bytes of mandatory fields. 979 DE.getU64(Cur); 980 981 // Begin to parse optional fields. 982 if (Cur) { 983 unsigned ParmNum = getNumberOfFixedParms() + getNumberOfFPParms(); 984 985 // As long as there are no "fixed-point" or floating-point parameters, this 986 // field remains not present even when hasVectorInfo gives true and 987 // indicates the presence of vector parameters. 988 if (ParmNum > 0) { 989 uint32_t ParamsTypeValue = DE.getU32(Cur); 990 if (Cur) 991 ParmsType = hasVectorInfo() 992 ? parseParmsTypeWithVecInfo(ParamsTypeValue, ParmNum) 993 : parseParmsType(ParamsTypeValue, ParmNum); 994 } 995 } 996 997 if (Cur && hasTraceBackTableOffset()) 998 TraceBackTableOffset = DE.getU32(Cur); 999 1000 if (Cur && isInterruptHandler()) 1001 HandlerMask = DE.getU32(Cur); 1002 1003 if (Cur && hasControlledStorage()) { 1004 NumOfCtlAnchors = DE.getU32(Cur); 1005 if (Cur && NumOfCtlAnchors) { 1006 SmallVector<uint32_t, 8> Disp; 1007 Disp.reserve(NumOfCtlAnchors.getValue()); 1008 for (uint32_t I = 0; I < NumOfCtlAnchors && Cur; ++I) 1009 Disp.push_back(DE.getU32(Cur)); 1010 if (Cur) 1011 ControlledStorageInfoDisp = std::move(Disp); 1012 } 1013 } 1014 1015 if (Cur && isFuncNamePresent()) { 1016 uint16_t FunctionNameLen = DE.getU16(Cur); 1017 if (Cur) 1018 FunctionName = DE.getBytes(Cur, FunctionNameLen); 1019 } 1020 1021 if (Cur && isAllocaUsed()) 1022 AllocaRegister = DE.getU8(Cur); 1023 1024 if (Cur && hasVectorInfo()) { 1025 StringRef VectorExtRef = DE.getBytes(Cur, 6); 1026 if (Cur) 1027 VecExt = TBVectorExt(VectorExtRef); 1028 } 1029 1030 if (Cur && hasExtensionTable()) 1031 ExtensionTable = DE.getU8(Cur); 1032 1033 if (!Cur) 1034 Err = Cur.takeError(); 1035 Size = Cur.tell(); 1036 } 1037 1038 #define GETBITWITHMASK(P, X) \ 1039 (support::endian::read32be(TBPtr + (P)) & (TracebackTable::X)) 1040 #define GETBITWITHMASKSHIFT(P, X, S) \ 1041 ((support::endian::read32be(TBPtr + (P)) & (TracebackTable::X)) >> \ 1042 (TracebackTable::S)) 1043 1044 uint8_t XCOFFTracebackTable::getVersion() const { 1045 return GETBITWITHMASKSHIFT(0, VersionMask, VersionShift); 1046 } 1047 1048 uint8_t XCOFFTracebackTable::getLanguageID() const { 1049 return GETBITWITHMASKSHIFT(0, LanguageIdMask, LanguageIdShift); 1050 } 1051 1052 bool XCOFFTracebackTable::isGlobalLinkage() const { 1053 return GETBITWITHMASK(0, IsGlobaLinkageMask); 1054 } 1055 1056 bool XCOFFTracebackTable::isOutOfLineEpilogOrPrologue() const { 1057 return GETBITWITHMASK(0, IsOutOfLineEpilogOrPrologueMask); 1058 } 1059 1060 bool XCOFFTracebackTable::hasTraceBackTableOffset() const { 1061 return GETBITWITHMASK(0, HasTraceBackTableOffsetMask); 1062 } 1063 1064 bool XCOFFTracebackTable::isInternalProcedure() const { 1065 return GETBITWITHMASK(0, IsInternalProcedureMask); 1066 } 1067 1068 bool XCOFFTracebackTable::hasControlledStorage() const { 1069 return GETBITWITHMASK(0, HasControlledStorageMask); 1070 } 1071 1072 bool XCOFFTracebackTable::isTOCless() const { 1073 return GETBITWITHMASK(0, IsTOClessMask); 1074 } 1075 1076 bool XCOFFTracebackTable::isFloatingPointPresent() const { 1077 return GETBITWITHMASK(0, IsFloatingPointPresentMask); 1078 } 1079 1080 bool XCOFFTracebackTable::isFloatingPointOperationLogOrAbortEnabled() const { 1081 return GETBITWITHMASK(0, IsFloatingPointOperationLogOrAbortEnabledMask); 1082 } 1083 1084 bool XCOFFTracebackTable::isInterruptHandler() const { 1085 return GETBITWITHMASK(0, IsInterruptHandlerMask); 1086 } 1087 1088 bool XCOFFTracebackTable::isFuncNamePresent() const { 1089 return GETBITWITHMASK(0, IsFunctionNamePresentMask); 1090 } 1091 1092 bool XCOFFTracebackTable::isAllocaUsed() const { 1093 return GETBITWITHMASK(0, IsAllocaUsedMask); 1094 } 1095 1096 uint8_t XCOFFTracebackTable::getOnConditionDirective() const { 1097 return GETBITWITHMASKSHIFT(0, OnConditionDirectiveMask, 1098 OnConditionDirectiveShift); 1099 } 1100 1101 bool XCOFFTracebackTable::isCRSaved() const { 1102 return GETBITWITHMASK(0, IsCRSavedMask); 1103 } 1104 1105 bool XCOFFTracebackTable::isLRSaved() const { 1106 return GETBITWITHMASK(0, IsLRSavedMask); 1107 } 1108 1109 bool XCOFFTracebackTable::isBackChainStored() const { 1110 return GETBITWITHMASK(4, IsBackChainStoredMask); 1111 } 1112 1113 bool XCOFFTracebackTable::isFixup() const { 1114 return GETBITWITHMASK(4, IsFixupMask); 1115 } 1116 1117 uint8_t XCOFFTracebackTable::getNumOfFPRsSaved() const { 1118 return GETBITWITHMASKSHIFT(4, FPRSavedMask, FPRSavedShift); 1119 } 1120 1121 bool XCOFFTracebackTable::hasExtensionTable() const { 1122 return GETBITWITHMASK(4, HasExtensionTableMask); 1123 } 1124 1125 bool XCOFFTracebackTable::hasVectorInfo() const { 1126 return GETBITWITHMASK(4, HasVectorInfoMask); 1127 } 1128 1129 uint8_t XCOFFTracebackTable::getNumOfGPRsSaved() const { 1130 return GETBITWITHMASKSHIFT(4, GPRSavedMask, GPRSavedShift); 1131 } 1132 1133 uint8_t XCOFFTracebackTable::getNumberOfFixedParms() const { 1134 return GETBITWITHMASKSHIFT(4, NumberOfFixedParmsMask, 1135 NumberOfFixedParmsShift); 1136 } 1137 1138 uint8_t XCOFFTracebackTable::getNumberOfFPParms() const { 1139 return GETBITWITHMASKSHIFT(4, NumberOfFloatingPointParmsMask, 1140 NumberOfFloatingPointParmsShift); 1141 } 1142 1143 bool XCOFFTracebackTable::hasParmsOnStack() const { 1144 return GETBITWITHMASK(4, HasParmsOnStackMask); 1145 } 1146 1147 #undef GETBITWITHMASK 1148 #undef GETBITWITHMASKSHIFT 1149 } // namespace object 1150 } // namespace llvm 1151