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/MC/SubtargetFeature.h"
15 #include "llvm/Support/DataExtractor.h"
16 #include <cstddef>
17 #include <cstring>
18 
19 namespace llvm {
20 
21 using namespace XCOFF;
22 
23 namespace object {
24 
25 static const uint8_t FunctionSym = 0x20;
26 static const uint8_t SymTypeMask = 0x07;
27 static const uint16_t NoRelMask = 0x0001;
28 
29 // Checks that [Ptr, Ptr + Size) bytes fall inside the memory buffer
30 // 'M'. Returns a pointer to the underlying object on success.
31 template <typename T>
getObject(MemoryBufferRef M,const void * Ptr,const uint64_t Size=sizeof (T))32 static Expected<const T *> getObject(MemoryBufferRef M, const void *Ptr,
33                                      const uint64_t Size = sizeof(T)) {
34   uintptr_t Addr = uintptr_t(Ptr);
35   if (Error E = Binary::checkOffset(M, Addr, Size))
36     return std::move(E);
37   return reinterpret_cast<const T *>(Addr);
38 }
39 
getWithOffset(uintptr_t Base,ptrdiff_t Offset)40 static uintptr_t getWithOffset(uintptr_t Base, ptrdiff_t Offset) {
41   return reinterpret_cast<uintptr_t>(reinterpret_cast<const char *>(Base) +
42                                      Offset);
43 }
44 
viewAs(uintptr_t in)45 template <typename T> static const T *viewAs(uintptr_t in) {
46   return reinterpret_cast<const T *>(in);
47 }
48 
generateXCOFFFixedNameStringRef(const char * Name)49 static StringRef generateXCOFFFixedNameStringRef(const char *Name) {
50   auto NulCharPtr =
51       static_cast<const char *>(memchr(Name, '\0', XCOFF::NameSize));
52   return NulCharPtr ? StringRef(Name, NulCharPtr - Name)
53                     : StringRef(Name, XCOFF::NameSize);
54 }
55 
getName() const56 template <typename T> StringRef XCOFFSectionHeader<T>::getName() const {
57   const T &DerivedXCOFFSectionHeader = static_cast<const T &>(*this);
58   return generateXCOFFFixedNameStringRef(DerivedXCOFFSectionHeader.Name);
59 }
60 
getSectionType() const61 template <typename T> uint16_t XCOFFSectionHeader<T>::getSectionType() const {
62   const T &DerivedXCOFFSectionHeader = static_cast<const T &>(*this);
63   return DerivedXCOFFSectionHeader.Flags & SectionFlagsTypeMask;
64 }
65 
66 template <typename T>
isReservedSectionType() const67 bool XCOFFSectionHeader<T>::isReservedSectionType() const {
68   return getSectionType() & SectionFlagsReservedMask;
69 }
70 
isRelocationSigned() const71 bool XCOFFRelocation32::isRelocationSigned() const {
72   return Info & XR_SIGN_INDICATOR_MASK;
73 }
74 
isFixupIndicated() const75 bool XCOFFRelocation32::isFixupIndicated() const {
76   return Info & XR_FIXUP_INDICATOR_MASK;
77 }
78 
getRelocatedLength() const79 uint8_t XCOFFRelocation32::getRelocatedLength() const {
80   // The relocation encodes the bit length being relocated minus 1. Add back
81   // the 1 to get the actual length being relocated.
82   return (Info & XR_BIASED_LENGTH_MASK) + 1;
83 }
84 
checkSectionAddress(uintptr_t Addr,uintptr_t TableAddress) const85 void XCOFFObjectFile::checkSectionAddress(uintptr_t Addr,
86                                           uintptr_t TableAddress) const {
87   if (Addr < TableAddress)
88     report_fatal_error("Section header outside of section header table.");
89 
90   uintptr_t Offset = Addr - TableAddress;
91   if (Offset >= getSectionHeaderSize() * getNumberOfSections())
92     report_fatal_error("Section header outside of section header table.");
93 
94   if (Offset % getSectionHeaderSize() != 0)
95     report_fatal_error(
96         "Section header pointer does not point to a valid section header.");
97 }
98 
99 const XCOFFSectionHeader32 *
toSection32(DataRefImpl Ref) const100 XCOFFObjectFile::toSection32(DataRefImpl Ref) const {
101   assert(!is64Bit() && "32-bit interface called on 64-bit object file.");
102 #ifndef NDEBUG
103   checkSectionAddress(Ref.p, getSectionHeaderTableAddress());
104 #endif
105   return viewAs<XCOFFSectionHeader32>(Ref.p);
106 }
107 
108 const XCOFFSectionHeader64 *
toSection64(DataRefImpl Ref) const109 XCOFFObjectFile::toSection64(DataRefImpl Ref) const {
110   assert(is64Bit() && "64-bit interface called on a 32-bit object file.");
111 #ifndef NDEBUG
112   checkSectionAddress(Ref.p, getSectionHeaderTableAddress());
113 #endif
114   return viewAs<XCOFFSectionHeader64>(Ref.p);
115 }
116 
toSymbolEntry(DataRefImpl Ref) const117 const XCOFFSymbolEntry *XCOFFObjectFile::toSymbolEntry(DataRefImpl Ref) const {
118   assert(!is64Bit() && "Symbol table support not implemented for 64-bit.");
119   assert(Ref.p != 0 && "Symbol table pointer can not be nullptr!");
120 #ifndef NDEBUG
121   checkSymbolEntryPointer(Ref.p);
122 #endif
123   auto SymEntPtr = viewAs<XCOFFSymbolEntry>(Ref.p);
124   return SymEntPtr;
125 }
126 
fileHeader32() const127 const XCOFFFileHeader32 *XCOFFObjectFile::fileHeader32() const {
128   assert(!is64Bit() && "32-bit interface called on 64-bit object file.");
129   return static_cast<const XCOFFFileHeader32 *>(FileHeader);
130 }
131 
fileHeader64() const132 const XCOFFFileHeader64 *XCOFFObjectFile::fileHeader64() const {
133   assert(is64Bit() && "64-bit interface called on a 32-bit object file.");
134   return static_cast<const XCOFFFileHeader64 *>(FileHeader);
135 }
136 
137 const XCOFFSectionHeader32 *
sectionHeaderTable32() const138 XCOFFObjectFile::sectionHeaderTable32() const {
139   assert(!is64Bit() && "32-bit interface called on 64-bit object file.");
140   return static_cast<const XCOFFSectionHeader32 *>(SectionHeaderTable);
141 }
142 
143 const XCOFFSectionHeader64 *
sectionHeaderTable64() const144 XCOFFObjectFile::sectionHeaderTable64() const {
145   assert(is64Bit() && "64-bit interface called on a 32-bit object file.");
146   return static_cast<const XCOFFSectionHeader64 *>(SectionHeaderTable);
147 }
148 
moveSymbolNext(DataRefImpl & Symb) const149 void XCOFFObjectFile::moveSymbolNext(DataRefImpl &Symb) const {
150   const XCOFFSymbolEntry *SymEntPtr = toSymbolEntry(Symb);
151   SymEntPtr += SymEntPtr->NumberOfAuxEntries + 1;
152 #ifndef NDEBUG
153   // This function is used by basic_symbol_iterator, which allows to
154   // point to the end-of-symbol-table address.
155   if (reinterpret_cast<uintptr_t>(SymEntPtr) != getEndOfSymbolTableAddress())
156     checkSymbolEntryPointer(reinterpret_cast<uintptr_t>(SymEntPtr));
157 #endif
158   Symb.p = reinterpret_cast<uintptr_t>(SymEntPtr);
159 }
160 
161 Expected<StringRef>
getStringTableEntry(uint32_t Offset) const162 XCOFFObjectFile::getStringTableEntry(uint32_t Offset) const {
163   // The byte offset is relative to the start of the string table.
164   // A byte offset value of 0 is a null or zero-length symbol
165   // name. A byte offset in the range 1 to 3 (inclusive) points into the length
166   // field; as a soft-error recovery mechanism, we treat such cases as having an
167   // offset of 0.
168   if (Offset < 4)
169     return StringRef(nullptr, 0);
170 
171   if (StringTable.Data != nullptr && StringTable.Size > Offset)
172     return (StringTable.Data + Offset);
173 
174   return make_error<GenericBinaryError>("Bad offset for string table entry",
175                                         object_error::parse_failed);
176 }
177 
178 Expected<StringRef>
getCFileName(const XCOFFFileAuxEnt * CFileEntPtr) const179 XCOFFObjectFile::getCFileName(const XCOFFFileAuxEnt *CFileEntPtr) const {
180   if (CFileEntPtr->NameInStrTbl.Magic !=
181       XCOFFSymbolEntry::NAME_IN_STR_TBL_MAGIC)
182     return generateXCOFFFixedNameStringRef(CFileEntPtr->Name);
183   return getStringTableEntry(CFileEntPtr->NameInStrTbl.Offset);
184 }
185 
getSymbolName(DataRefImpl Symb) const186 Expected<StringRef> XCOFFObjectFile::getSymbolName(DataRefImpl Symb) const {
187   const XCOFFSymbolEntry *SymEntPtr = toSymbolEntry(Symb);
188 
189   // A storage class value with the high-order bit on indicates that the name is
190   // a symbolic debugger stabstring.
191   if (SymEntPtr->StorageClass & 0x80)
192     return StringRef("Unimplemented Debug Name");
193 
194   if (SymEntPtr->NameInStrTbl.Magic != XCOFFSymbolEntry::NAME_IN_STR_TBL_MAGIC)
195     return generateXCOFFFixedNameStringRef(SymEntPtr->SymbolName);
196 
197   return getStringTableEntry(SymEntPtr->NameInStrTbl.Offset);
198 }
199 
getSymbolAddress(DataRefImpl Symb) const200 Expected<uint64_t> XCOFFObjectFile::getSymbolAddress(DataRefImpl Symb) const {
201   assert(!is64Bit() && "Symbol table support not implemented for 64-bit.");
202   return toSymbolEntry(Symb)->Value;
203 }
204 
getSymbolValueImpl(DataRefImpl Symb) const205 uint64_t XCOFFObjectFile::getSymbolValueImpl(DataRefImpl Symb) const {
206   assert(!is64Bit() && "Symbol table support not implemented for 64-bit.");
207   return toSymbolEntry(Symb)->Value;
208 }
209 
getCommonSymbolSizeImpl(DataRefImpl Symb) const210 uint64_t XCOFFObjectFile::getCommonSymbolSizeImpl(DataRefImpl Symb) const {
211   uint64_t Result = 0;
212   llvm_unreachable("Not yet implemented!");
213   return Result;
214 }
215 
216 Expected<SymbolRef::Type>
getSymbolType(DataRefImpl Symb) const217 XCOFFObjectFile::getSymbolType(DataRefImpl Symb) const {
218   llvm_unreachable("Not yet implemented!");
219   return SymbolRef::ST_Other;
220 }
221 
222 Expected<section_iterator>
getSymbolSection(DataRefImpl Symb) const223 XCOFFObjectFile::getSymbolSection(DataRefImpl Symb) const {
224   const XCOFFSymbolEntry *SymEntPtr = toSymbolEntry(Symb);
225   int16_t SectNum = SymEntPtr->SectionNumber;
226 
227   if (isReservedSectionNumber(SectNum))
228     return section_end();
229 
230   Expected<DataRefImpl> ExpSec = getSectionByNum(SectNum);
231   if (!ExpSec)
232     return ExpSec.takeError();
233 
234   return section_iterator(SectionRef(ExpSec.get(), this));
235 }
236 
moveSectionNext(DataRefImpl & Sec) const237 void XCOFFObjectFile::moveSectionNext(DataRefImpl &Sec) const {
238   const char *Ptr = reinterpret_cast<const char *>(Sec.p);
239   Sec.p = reinterpret_cast<uintptr_t>(Ptr + getSectionHeaderSize());
240 }
241 
getSectionName(DataRefImpl Sec) const242 Expected<StringRef> XCOFFObjectFile::getSectionName(DataRefImpl Sec) const {
243   return generateXCOFFFixedNameStringRef(getSectionNameInternal(Sec));
244 }
245 
getSectionAddress(DataRefImpl Sec) const246 uint64_t XCOFFObjectFile::getSectionAddress(DataRefImpl Sec) const {
247   // Avoid ternary due to failure to convert the ubig32_t value to a unit64_t
248   // with MSVC.
249   if (is64Bit())
250     return toSection64(Sec)->VirtualAddress;
251 
252   return toSection32(Sec)->VirtualAddress;
253 }
254 
getSectionIndex(DataRefImpl Sec) const255 uint64_t XCOFFObjectFile::getSectionIndex(DataRefImpl Sec) const {
256   // Section numbers in XCOFF are numbered beginning at 1. A section number of
257   // zero is used to indicate that a symbol is being imported or is undefined.
258   if (is64Bit())
259     return toSection64(Sec) - sectionHeaderTable64() + 1;
260   else
261     return toSection32(Sec) - sectionHeaderTable32() + 1;
262 }
263 
getSectionSize(DataRefImpl Sec) const264 uint64_t XCOFFObjectFile::getSectionSize(DataRefImpl Sec) const {
265   // Avoid ternary due to failure to convert the ubig32_t value to a unit64_t
266   // with MSVC.
267   if (is64Bit())
268     return toSection64(Sec)->SectionSize;
269 
270   return toSection32(Sec)->SectionSize;
271 }
272 
273 Expected<ArrayRef<uint8_t>>
getSectionContents(DataRefImpl Sec) const274 XCOFFObjectFile::getSectionContents(DataRefImpl Sec) const {
275   if (isSectionVirtual(Sec))
276     return ArrayRef<uint8_t>();
277 
278   uint64_t OffsetToRaw;
279   if (is64Bit())
280     OffsetToRaw = toSection64(Sec)->FileOffsetToRawData;
281   else
282     OffsetToRaw = toSection32(Sec)->FileOffsetToRawData;
283 
284   const uint8_t * ContentStart = base() + OffsetToRaw;
285   uint64_t SectionSize = getSectionSize(Sec);
286   if (checkOffset(Data, uintptr_t(ContentStart), SectionSize))
287     return make_error<BinaryError>();
288 
289   return makeArrayRef(ContentStart,SectionSize);
290 }
291 
getSectionAlignment(DataRefImpl Sec) const292 uint64_t XCOFFObjectFile::getSectionAlignment(DataRefImpl Sec) const {
293   uint64_t Result = 0;
294   llvm_unreachable("Not yet implemented!");
295   return Result;
296 }
297 
isSectionCompressed(DataRefImpl Sec) const298 bool XCOFFObjectFile::isSectionCompressed(DataRefImpl Sec) const {
299   bool Result = false;
300   llvm_unreachable("Not yet implemented!");
301   return Result;
302 }
303 
isSectionText(DataRefImpl Sec) const304 bool XCOFFObjectFile::isSectionText(DataRefImpl Sec) const {
305   return getSectionFlags(Sec) & XCOFF::STYP_TEXT;
306 }
307 
isSectionData(DataRefImpl Sec) const308 bool XCOFFObjectFile::isSectionData(DataRefImpl Sec) const {
309   uint32_t Flags = getSectionFlags(Sec);
310   return Flags & (XCOFF::STYP_DATA | XCOFF::STYP_TDATA);
311 }
312 
isSectionBSS(DataRefImpl Sec) const313 bool XCOFFObjectFile::isSectionBSS(DataRefImpl Sec) const {
314   uint32_t Flags = getSectionFlags(Sec);
315   return Flags & (XCOFF::STYP_BSS | XCOFF::STYP_TBSS);
316 }
317 
isSectionVirtual(DataRefImpl Sec) const318 bool XCOFFObjectFile::isSectionVirtual(DataRefImpl Sec) const {
319   return is64Bit() ? toSection64(Sec)->FileOffsetToRawData == 0
320                    : toSection32(Sec)->FileOffsetToRawData == 0;
321 }
322 
section_rel_begin(DataRefImpl Sec) const323 relocation_iterator XCOFFObjectFile::section_rel_begin(DataRefImpl Sec) const {
324   if (is64Bit())
325     report_fatal_error("64-bit support not implemented yet");
326   const XCOFFSectionHeader32 *SectionEntPtr = toSection32(Sec);
327   auto RelocationsOrErr = relocations(*SectionEntPtr);
328   if (Error E = RelocationsOrErr.takeError())
329     return relocation_iterator(RelocationRef());
330   DataRefImpl Ret;
331   Ret.p = reinterpret_cast<uintptr_t>(&*RelocationsOrErr.get().begin());
332   return relocation_iterator(RelocationRef(Ret, this));
333 }
334 
section_rel_end(DataRefImpl Sec) const335 relocation_iterator XCOFFObjectFile::section_rel_end(DataRefImpl Sec) const {
336   if (is64Bit())
337     report_fatal_error("64-bit support not implemented yet");
338   const XCOFFSectionHeader32 *SectionEntPtr = toSection32(Sec);
339   auto RelocationsOrErr = relocations(*SectionEntPtr);
340   if (Error E = RelocationsOrErr.takeError())
341     return relocation_iterator(RelocationRef());
342   DataRefImpl Ret;
343   Ret.p = reinterpret_cast<uintptr_t>(&*RelocationsOrErr.get().end());
344   return relocation_iterator(RelocationRef(Ret, this));
345 }
346 
moveRelocationNext(DataRefImpl & Rel) const347 void XCOFFObjectFile::moveRelocationNext(DataRefImpl &Rel) const {
348   Rel.p = reinterpret_cast<uintptr_t>(viewAs<XCOFFRelocation32>(Rel.p) + 1);
349 }
350 
getRelocationOffset(DataRefImpl Rel) const351 uint64_t XCOFFObjectFile::getRelocationOffset(DataRefImpl Rel) const {
352   if (is64Bit())
353     report_fatal_error("64-bit support not implemented yet");
354   const XCOFFRelocation32 *Reloc = viewAs<XCOFFRelocation32>(Rel.p);
355   const XCOFFSectionHeader32 *Sec32 = sectionHeaderTable32();
356   const uint32_t RelocAddress = Reloc->VirtualAddress;
357   const uint16_t NumberOfSections = getNumberOfSections();
358   for (uint16_t i = 0; i < NumberOfSections; ++i) {
359     // Find which section this relocation is belonging to, and get the
360     // relocation offset relative to the start of the section.
361     if (Sec32->VirtualAddress <= RelocAddress &&
362         RelocAddress < Sec32->VirtualAddress + Sec32->SectionSize) {
363       return RelocAddress - Sec32->VirtualAddress;
364     }
365     ++Sec32;
366   }
367   return InvalidRelocOffset;
368 }
369 
getRelocationSymbol(DataRefImpl Rel) const370 symbol_iterator XCOFFObjectFile::getRelocationSymbol(DataRefImpl Rel) const {
371   if (is64Bit())
372     report_fatal_error("64-bit support not implemented yet");
373   const XCOFFRelocation32 *Reloc = viewAs<XCOFFRelocation32>(Rel.p);
374   const uint32_t Index = Reloc->SymbolIndex;
375 
376   if (Index >= getLogicalNumberOfSymbolTableEntries32())
377     return symbol_end();
378 
379   DataRefImpl SymDRI;
380   SymDRI.p = reinterpret_cast<uintptr_t>(getPointerToSymbolTable() + Index);
381   return symbol_iterator(SymbolRef(SymDRI, this));
382 }
383 
getRelocationType(DataRefImpl Rel) const384 uint64_t XCOFFObjectFile::getRelocationType(DataRefImpl Rel) const {
385   if (is64Bit())
386     report_fatal_error("64-bit support not implemented yet");
387   return viewAs<XCOFFRelocation32>(Rel.p)->Type;
388 }
389 
getRelocationTypeName(DataRefImpl Rel,SmallVectorImpl<char> & Result) const390 void XCOFFObjectFile::getRelocationTypeName(
391     DataRefImpl Rel, SmallVectorImpl<char> &Result) const {
392   if (is64Bit())
393     report_fatal_error("64-bit support not implemented yet");
394   const XCOFFRelocation32 *Reloc = viewAs<XCOFFRelocation32>(Rel.p);
395   StringRef Res = XCOFF::getRelocationTypeString(Reloc->Type);
396   Result.append(Res.begin(), Res.end());
397 }
398 
getSymbolFlags(DataRefImpl Symb) const399 Expected<uint32_t> XCOFFObjectFile::getSymbolFlags(DataRefImpl Symb) const {
400   uint32_t Result = 0;
401   llvm_unreachable("Not yet implemented!");
402   return Result;
403 }
404 
symbol_begin() const405 basic_symbol_iterator XCOFFObjectFile::symbol_begin() const {
406   if (is64Bit())
407     report_fatal_error("64-bit support not implemented yet");
408   DataRefImpl SymDRI;
409   SymDRI.p = reinterpret_cast<uintptr_t>(SymbolTblPtr);
410   return basic_symbol_iterator(SymbolRef(SymDRI, this));
411 }
412 
symbol_end() const413 basic_symbol_iterator XCOFFObjectFile::symbol_end() const {
414   if (is64Bit())
415     report_fatal_error("64-bit support not implemented yet");
416   DataRefImpl SymDRI;
417   SymDRI.p = reinterpret_cast<uintptr_t>(
418       SymbolTblPtr + getLogicalNumberOfSymbolTableEntries32());
419   return basic_symbol_iterator(SymbolRef(SymDRI, this));
420 }
421 
section_begin() const422 section_iterator XCOFFObjectFile::section_begin() const {
423   DataRefImpl DRI;
424   DRI.p = getSectionHeaderTableAddress();
425   return section_iterator(SectionRef(DRI, this));
426 }
427 
section_end() const428 section_iterator XCOFFObjectFile::section_end() const {
429   DataRefImpl DRI;
430   DRI.p = getWithOffset(getSectionHeaderTableAddress(),
431                         getNumberOfSections() * getSectionHeaderSize());
432   return section_iterator(SectionRef(DRI, this));
433 }
434 
getBytesInAddress() const435 uint8_t XCOFFObjectFile::getBytesInAddress() const { return is64Bit() ? 8 : 4; }
436 
getFileFormatName() const437 StringRef XCOFFObjectFile::getFileFormatName() const {
438   return is64Bit() ? "aix5coff64-rs6000" : "aixcoff-rs6000";
439 }
440 
getArch() const441 Triple::ArchType XCOFFObjectFile::getArch() const {
442   return is64Bit() ? Triple::ppc64 : Triple::ppc;
443 }
444 
getFeatures() const445 SubtargetFeatures XCOFFObjectFile::getFeatures() const {
446   return SubtargetFeatures();
447 }
448 
isRelocatableObject() const449 bool XCOFFObjectFile::isRelocatableObject() const {
450   if (is64Bit())
451     report_fatal_error("64-bit support not implemented yet");
452   return !(fileHeader32()->Flags & NoRelMask);
453 }
454 
getStartAddress() const455 Expected<uint64_t> XCOFFObjectFile::getStartAddress() const {
456   // TODO FIXME Should get from auxiliary_header->o_entry when support for the
457   // auxiliary_header is added.
458   return 0;
459 }
460 
getFileHeaderSize() const461 size_t XCOFFObjectFile::getFileHeaderSize() const {
462   return is64Bit() ? sizeof(XCOFFFileHeader64) : sizeof(XCOFFFileHeader32);
463 }
464 
getSectionHeaderSize() const465 size_t XCOFFObjectFile::getSectionHeaderSize() const {
466   return is64Bit() ? sizeof(XCOFFSectionHeader64) :
467                      sizeof(XCOFFSectionHeader32);
468 }
469 
is64Bit() const470 bool XCOFFObjectFile::is64Bit() const {
471   return Binary::ID_XCOFF64 == getType();
472 }
473 
getMagic() const474 uint16_t XCOFFObjectFile::getMagic() const {
475   return is64Bit() ? fileHeader64()->Magic : fileHeader32()->Magic;
476 }
477 
getSectionByNum(int16_t Num) const478 Expected<DataRefImpl> XCOFFObjectFile::getSectionByNum(int16_t Num) const {
479   if (Num <= 0 || Num > getNumberOfSections())
480     return errorCodeToError(object_error::invalid_section_index);
481 
482   DataRefImpl DRI;
483   DRI.p = getWithOffset(getSectionHeaderTableAddress(),
484                         getSectionHeaderSize() * (Num - 1));
485   return DRI;
486 }
487 
488 Expected<StringRef>
getSymbolSectionName(const XCOFFSymbolEntry * SymEntPtr) const489 XCOFFObjectFile::getSymbolSectionName(const XCOFFSymbolEntry *SymEntPtr) const {
490   assert(!is64Bit() && "Symbol table support not implemented for 64-bit.");
491   int16_t SectionNum = SymEntPtr->SectionNumber;
492 
493   switch (SectionNum) {
494   case XCOFF::N_DEBUG:
495     return "N_DEBUG";
496   case XCOFF::N_ABS:
497     return "N_ABS";
498   case XCOFF::N_UNDEF:
499     return "N_UNDEF";
500   default:
501     Expected<DataRefImpl> SecRef = getSectionByNum(SectionNum);
502     if (SecRef)
503       return generateXCOFFFixedNameStringRef(
504           getSectionNameInternal(SecRef.get()));
505     return SecRef.takeError();
506   }
507 }
508 
isReservedSectionNumber(int16_t SectionNumber)509 bool XCOFFObjectFile::isReservedSectionNumber(int16_t SectionNumber) {
510   return (SectionNumber <= 0 && SectionNumber >= -2);
511 }
512 
getNumberOfSections() const513 uint16_t XCOFFObjectFile::getNumberOfSections() const {
514   return is64Bit() ? fileHeader64()->NumberOfSections
515                    : fileHeader32()->NumberOfSections;
516 }
517 
getTimeStamp() const518 int32_t XCOFFObjectFile::getTimeStamp() const {
519   return is64Bit() ? fileHeader64()->TimeStamp : fileHeader32()->TimeStamp;
520 }
521 
getOptionalHeaderSize() const522 uint16_t XCOFFObjectFile::getOptionalHeaderSize() const {
523   return is64Bit() ? fileHeader64()->AuxHeaderSize
524                    : fileHeader32()->AuxHeaderSize;
525 }
526 
getSymbolTableOffset32() const527 uint32_t XCOFFObjectFile::getSymbolTableOffset32() const {
528   return fileHeader32()->SymbolTableOffset;
529 }
530 
getRawNumberOfSymbolTableEntries32() const531 int32_t XCOFFObjectFile::getRawNumberOfSymbolTableEntries32() const {
532   // As far as symbol table size is concerned, if this field is negative it is
533   // to be treated as a 0. However since this field is also used for printing we
534   // don't want to truncate any negative values.
535   return fileHeader32()->NumberOfSymTableEntries;
536 }
537 
getLogicalNumberOfSymbolTableEntries32() const538 uint32_t XCOFFObjectFile::getLogicalNumberOfSymbolTableEntries32() const {
539   return (fileHeader32()->NumberOfSymTableEntries >= 0
540               ? fileHeader32()->NumberOfSymTableEntries
541               : 0);
542 }
543 
getSymbolTableOffset64() const544 uint64_t XCOFFObjectFile::getSymbolTableOffset64() const {
545   return fileHeader64()->SymbolTableOffset;
546 }
547 
getNumberOfSymbolTableEntries64() const548 uint32_t XCOFFObjectFile::getNumberOfSymbolTableEntries64() const {
549   return fileHeader64()->NumberOfSymTableEntries;
550 }
551 
getEndOfSymbolTableAddress() const552 uintptr_t XCOFFObjectFile::getEndOfSymbolTableAddress() const {
553   uint32_t NumberOfSymTableEntries =
554       is64Bit() ? getNumberOfSymbolTableEntries64()
555                 : getLogicalNumberOfSymbolTableEntries32();
556   return getWithOffset(reinterpret_cast<uintptr_t>(SymbolTblPtr),
557                        XCOFF::SymbolTableEntrySize * NumberOfSymTableEntries);
558 }
559 
checkSymbolEntryPointer(uintptr_t SymbolEntPtr) const560 void XCOFFObjectFile::checkSymbolEntryPointer(uintptr_t SymbolEntPtr) const {
561   if (SymbolEntPtr < reinterpret_cast<uintptr_t>(SymbolTblPtr))
562     report_fatal_error("Symbol table entry is outside of symbol table.");
563 
564   if (SymbolEntPtr >= getEndOfSymbolTableAddress())
565     report_fatal_error("Symbol table entry is outside of symbol table.");
566 
567   ptrdiff_t Offset = reinterpret_cast<const char *>(SymbolEntPtr) -
568                      reinterpret_cast<const char *>(SymbolTblPtr);
569 
570   if (Offset % XCOFF::SymbolTableEntrySize != 0)
571     report_fatal_error(
572         "Symbol table entry position is not valid inside of symbol table.");
573 }
574 
getSymbolIndex(uintptr_t SymbolEntPtr) const575 uint32_t XCOFFObjectFile::getSymbolIndex(uintptr_t SymbolEntPtr) const {
576   return (reinterpret_cast<const char *>(SymbolEntPtr) -
577           reinterpret_cast<const char *>(SymbolTblPtr)) /
578          XCOFF::SymbolTableEntrySize;
579 }
580 
581 Expected<StringRef>
getSymbolNameByIndex(uint32_t Index) const582 XCOFFObjectFile::getSymbolNameByIndex(uint32_t Index) const {
583   if (is64Bit())
584     report_fatal_error("64-bit symbol table support not implemented yet.");
585 
586   if (Index >= getLogicalNumberOfSymbolTableEntries32())
587     return errorCodeToError(object_error::invalid_symbol_index);
588 
589   DataRefImpl SymDRI;
590   SymDRI.p = reinterpret_cast<uintptr_t>(getPointerToSymbolTable() + Index);
591   return getSymbolName(SymDRI);
592 }
593 
getFlags() const594 uint16_t XCOFFObjectFile::getFlags() const {
595   return is64Bit() ? fileHeader64()->Flags : fileHeader32()->Flags;
596 }
597 
getSectionNameInternal(DataRefImpl Sec) const598 const char *XCOFFObjectFile::getSectionNameInternal(DataRefImpl Sec) const {
599   return is64Bit() ? toSection64(Sec)->Name : toSection32(Sec)->Name;
600 }
601 
getSectionHeaderTableAddress() const602 uintptr_t XCOFFObjectFile::getSectionHeaderTableAddress() const {
603   return reinterpret_cast<uintptr_t>(SectionHeaderTable);
604 }
605 
getSectionFlags(DataRefImpl Sec) const606 int32_t XCOFFObjectFile::getSectionFlags(DataRefImpl Sec) const {
607   return is64Bit() ? toSection64(Sec)->Flags : toSection32(Sec)->Flags;
608 }
609 
XCOFFObjectFile(unsigned int Type,MemoryBufferRef Object)610 XCOFFObjectFile::XCOFFObjectFile(unsigned int Type, MemoryBufferRef Object)
611     : ObjectFile(Type, Object) {
612   assert(Type == Binary::ID_XCOFF32 || Type == Binary::ID_XCOFF64);
613 }
614 
sections64() const615 ArrayRef<XCOFFSectionHeader64> XCOFFObjectFile::sections64() const {
616   assert(is64Bit() && "64-bit interface called for non 64-bit file.");
617   const XCOFFSectionHeader64 *TablePtr = sectionHeaderTable64();
618   return ArrayRef<XCOFFSectionHeader64>(TablePtr,
619                                         TablePtr + getNumberOfSections());
620 }
621 
sections32() const622 ArrayRef<XCOFFSectionHeader32> XCOFFObjectFile::sections32() const {
623   assert(!is64Bit() && "32-bit interface called for non 32-bit file.");
624   const XCOFFSectionHeader32 *TablePtr = sectionHeaderTable32();
625   return ArrayRef<XCOFFSectionHeader32>(TablePtr,
626                                         TablePtr + getNumberOfSections());
627 }
628 
629 // In an XCOFF32 file, when the field value is 65535, then an STYP_OVRFLO
630 // section header contains the actual count of relocation entries in the s_paddr
631 // field. STYP_OVRFLO headers contain the section index of their corresponding
632 // sections as their raw "NumberOfRelocations" field value.
getLogicalNumberOfRelocationEntries(const XCOFFSectionHeader32 & Sec) const633 Expected<uint32_t> XCOFFObjectFile::getLogicalNumberOfRelocationEntries(
634     const XCOFFSectionHeader32 &Sec) const {
635 
636   uint16_t SectionIndex = &Sec - sectionHeaderTable32() + 1;
637 
638   if (Sec.NumberOfRelocations < XCOFF::RelocOverflow)
639     return Sec.NumberOfRelocations;
640   for (const auto &Sec : sections32()) {
641     if (Sec.Flags == XCOFF::STYP_OVRFLO &&
642         Sec.NumberOfRelocations == SectionIndex)
643       return Sec.PhysicalAddress;
644   }
645   return errorCodeToError(object_error::parse_failed);
646 }
647 
648 Expected<ArrayRef<XCOFFRelocation32>>
relocations(const XCOFFSectionHeader32 & Sec) const649 XCOFFObjectFile::relocations(const XCOFFSectionHeader32 &Sec) const {
650   uintptr_t RelocAddr = getWithOffset(reinterpret_cast<uintptr_t>(FileHeader),
651                                       Sec.FileOffsetToRelocationInfo);
652   auto NumRelocEntriesOrErr = getLogicalNumberOfRelocationEntries(Sec);
653   if (Error E = NumRelocEntriesOrErr.takeError())
654     return std::move(E);
655 
656   uint32_t NumRelocEntries = NumRelocEntriesOrErr.get();
657 
658   assert(sizeof(XCOFFRelocation32) == XCOFF::RelocationSerializationSize32);
659   auto RelocationOrErr =
660       getObject<XCOFFRelocation32>(Data, reinterpret_cast<void *>(RelocAddr),
661                                    NumRelocEntries * sizeof(XCOFFRelocation32));
662   if (Error E = RelocationOrErr.takeError())
663     return std::move(E);
664 
665   const XCOFFRelocation32 *StartReloc = RelocationOrErr.get();
666 
667   return ArrayRef<XCOFFRelocation32>(StartReloc, StartReloc + NumRelocEntries);
668 }
669 
670 Expected<XCOFFStringTable>
parseStringTable(const XCOFFObjectFile * Obj,uint64_t Offset)671 XCOFFObjectFile::parseStringTable(const XCOFFObjectFile *Obj, uint64_t Offset) {
672   // If there is a string table, then the buffer must contain at least 4 bytes
673   // for the string table's size. Not having a string table is not an error.
674   if (Error E = Binary::checkOffset(
675           Obj->Data, reinterpret_cast<uintptr_t>(Obj->base() + Offset), 4)) {
676     consumeError(std::move(E));
677     return XCOFFStringTable{0, nullptr};
678   }
679 
680   // Read the size out of the buffer.
681   uint32_t Size = support::endian::read32be(Obj->base() + Offset);
682 
683   // If the size is less then 4, then the string table is just a size and no
684   // string data.
685   if (Size <= 4)
686     return XCOFFStringTable{4, nullptr};
687 
688   auto StringTableOrErr =
689       getObject<char>(Obj->Data, Obj->base() + Offset, Size);
690   if (Error E = StringTableOrErr.takeError())
691     return std::move(E);
692 
693   const char *StringTablePtr = StringTableOrErr.get();
694   if (StringTablePtr[Size - 1] != '\0')
695     return errorCodeToError(object_error::string_table_non_null_end);
696 
697   return XCOFFStringTable{Size, StringTablePtr};
698 }
699 
700 Expected<std::unique_ptr<XCOFFObjectFile>>
create(unsigned Type,MemoryBufferRef MBR)701 XCOFFObjectFile::create(unsigned Type, MemoryBufferRef MBR) {
702   // Can't use std::make_unique because of the private constructor.
703   std::unique_ptr<XCOFFObjectFile> Obj;
704   Obj.reset(new XCOFFObjectFile(Type, MBR));
705 
706   uint64_t CurOffset = 0;
707   const auto *Base = Obj->base();
708   MemoryBufferRef Data = Obj->Data;
709 
710   // Parse file header.
711   auto FileHeaderOrErr =
712       getObject<void>(Data, Base + CurOffset, Obj->getFileHeaderSize());
713   if (Error E = FileHeaderOrErr.takeError())
714     return std::move(E);
715   Obj->FileHeader = FileHeaderOrErr.get();
716 
717   CurOffset += Obj->getFileHeaderSize();
718   // TODO FIXME we don't have support for an optional header yet, so just skip
719   // past it.
720   CurOffset += Obj->getOptionalHeaderSize();
721 
722   // Parse the section header table if it is present.
723   if (Obj->getNumberOfSections()) {
724     auto SecHeadersOrErr = getObject<void>(Data, Base + CurOffset,
725                                            Obj->getNumberOfSections() *
726                                                Obj->getSectionHeaderSize());
727     if (Error E = SecHeadersOrErr.takeError())
728       return std::move(E);
729     Obj->SectionHeaderTable = SecHeadersOrErr.get();
730   }
731 
732   // 64-bit object supports only file header and section headers for now.
733   if (Obj->is64Bit())
734     return std::move(Obj);
735 
736   // If there is no symbol table we are done parsing the memory buffer.
737   if (Obj->getLogicalNumberOfSymbolTableEntries32() == 0)
738     return std::move(Obj);
739 
740   // Parse symbol table.
741   CurOffset = Obj->fileHeader32()->SymbolTableOffset;
742   uint64_t SymbolTableSize = (uint64_t)(sizeof(XCOFFSymbolEntry)) *
743                              Obj->getLogicalNumberOfSymbolTableEntries32();
744   auto SymTableOrErr =
745       getObject<XCOFFSymbolEntry>(Data, Base + CurOffset, SymbolTableSize);
746   if (Error E = SymTableOrErr.takeError())
747     return std::move(E);
748   Obj->SymbolTblPtr = SymTableOrErr.get();
749   CurOffset += SymbolTableSize;
750 
751   // Parse String table.
752   Expected<XCOFFStringTable> StringTableOrErr =
753       parseStringTable(Obj.get(), CurOffset);
754   if (Error E = StringTableOrErr.takeError())
755     return std::move(E);
756   Obj->StringTable = StringTableOrErr.get();
757 
758   return std::move(Obj);
759 }
760 
761 Expected<std::unique_ptr<ObjectFile>>
createXCOFFObjectFile(MemoryBufferRef MemBufRef,unsigned FileType)762 ObjectFile::createXCOFFObjectFile(MemoryBufferRef MemBufRef,
763                                   unsigned FileType) {
764   return XCOFFObjectFile::create(FileType, MemBufRef);
765 }
766 
getStorageClass() const767 XCOFF::StorageClass XCOFFSymbolRef::getStorageClass() const {
768   return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->StorageClass;
769 }
770 
getNumberOfAuxEntries() const771 uint8_t XCOFFSymbolRef::getNumberOfAuxEntries() const {
772   return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->NumberOfAuxEntries;
773 }
774 
775 // TODO: The function needs to return an error if there is no csect auxiliary
776 // entry.
getXCOFFCsectAuxEnt32() const777 const XCOFFCsectAuxEnt32 *XCOFFSymbolRef::getXCOFFCsectAuxEnt32() const {
778   assert(!OwningObjectPtr->is64Bit() &&
779          "32-bit interface called on 64-bit object file.");
780   assert(hasCsectAuxEnt() && "No Csect Auxiliary Entry is found.");
781 
782   // In XCOFF32, the csect auxilliary entry is always the last auxiliary
783   // entry for the symbol.
784   uintptr_t AuxAddr = getWithOffset(
785       SymEntDataRef.p, XCOFF::SymbolTableEntrySize * getNumberOfAuxEntries());
786 
787 #ifndef NDEBUG
788   OwningObjectPtr->checkSymbolEntryPointer(AuxAddr);
789 #endif
790 
791   return reinterpret_cast<const XCOFFCsectAuxEnt32 *>(AuxAddr);
792 }
793 
getType() const794 uint16_t XCOFFSymbolRef::getType() const {
795   return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->SymbolType;
796 }
797 
getSectionNumber() const798 int16_t XCOFFSymbolRef::getSectionNumber() const {
799   return OwningObjectPtr->toSymbolEntry(SymEntDataRef)->SectionNumber;
800 }
801 
802 // TODO: The function name needs to be changed to express the purpose of the
803 // function.
hasCsectAuxEnt() const804 bool XCOFFSymbolRef::hasCsectAuxEnt() const {
805   XCOFF::StorageClass SC = getStorageClass();
806   return (SC == XCOFF::C_EXT || SC == XCOFF::C_WEAKEXT ||
807           SC == XCOFF::C_HIDEXT);
808 }
809 
isFunction() const810 bool XCOFFSymbolRef::isFunction() const {
811   if (OwningObjectPtr->is64Bit())
812     report_fatal_error("64-bit support is unimplemented yet.");
813 
814   if (getType() & FunctionSym)
815     return true;
816 
817   if (!hasCsectAuxEnt())
818     return false;
819 
820   const XCOFFCsectAuxEnt32 *CsectAuxEnt = getXCOFFCsectAuxEnt32();
821 
822   // A function definition should be a label definition.
823   if ((CsectAuxEnt->SymbolAlignmentAndType & SymTypeMask) != XCOFF::XTY_LD)
824     return false;
825 
826   if (CsectAuxEnt->StorageMappingClass != XCOFF::XMC_PR)
827     return false;
828 
829   int16_t SectNum = getSectionNumber();
830   Expected<DataRefImpl> SI = OwningObjectPtr->getSectionByNum(SectNum);
831   if (!SI)
832     return false;
833 
834   return (OwningObjectPtr->getSectionFlags(SI.get()) & XCOFF::STYP_TEXT);
835 }
836 
837 // Explictly instantiate template classes.
838 template struct XCOFFSectionHeader<XCOFFSectionHeader32>;
839 template struct XCOFFSectionHeader<XCOFFSectionHeader64>;
840 
doesXCOFFTracebackTableBegin(ArrayRef<uint8_t> Bytes)841 bool doesXCOFFTracebackTableBegin(ArrayRef<uint8_t> Bytes) {
842   if (Bytes.size() < 4)
843     return false;
844 
845   return support::endian::read32be(Bytes.data()) == 0;
846 }
847 
TBVectorExt(StringRef TBvectorStrRef)848 TBVectorExt::TBVectorExt(StringRef TBvectorStrRef) {
849   const uint8_t *Ptr = reinterpret_cast<const uint8_t *>(TBvectorStrRef.data());
850   Data = support::endian::read16be(Ptr);
851   VecParmsInfo = support::endian::read32be(Ptr + 2);
852 }
853 
854 #define GETVALUEWITHMASK(X) (Data & (TracebackTable::X))
855 #define GETVALUEWITHMASKSHIFT(X, S)                                            \
856   ((Data & (TracebackTable::X)) >> (TracebackTable::S))
getNumberOfVRSaved() const857 uint8_t TBVectorExt::getNumberOfVRSaved() const {
858   return GETVALUEWITHMASKSHIFT(NumberOfVRSavedMask, NumberOfVRSavedShift);
859 }
860 
isVRSavedOnStack() const861 bool TBVectorExt::isVRSavedOnStack() const {
862   return GETVALUEWITHMASK(IsVRSavedOnStackMask);
863 }
864 
hasVarArgs() const865 bool TBVectorExt::hasVarArgs() const {
866   return GETVALUEWITHMASK(HasVarArgsMask);
867 }
getNumberOfVectorParms() const868 uint8_t TBVectorExt::getNumberOfVectorParms() const {
869   return GETVALUEWITHMASKSHIFT(NumberOfVectorParmsMask,
870                                NumberOfVectorParmsShift);
871 }
872 
hasVMXInstruction() const873 bool TBVectorExt::hasVMXInstruction() const {
874   return GETVALUEWITHMASK(HasVMXInstructionMask);
875 }
876 #undef GETVALUEWITHMASK
877 #undef GETVALUEWITHMASKSHIFT
878 
getVectorParmsInfoString() const879 SmallString<32> TBVectorExt::getVectorParmsInfoString() const {
880   SmallString<32> ParmsType;
881   uint32_t Value = VecParmsInfo;
882   for (uint8_t I = 0; I < getNumberOfVectorParms(); ++I) {
883     if (I != 0)
884       ParmsType += ", ";
885     switch (Value & TracebackTable::ParmTypeMask) {
886     case TracebackTable::ParmTypeIsVectorCharBit:
887       ParmsType += "vc";
888       break;
889 
890     case TracebackTable::ParmTypeIsVectorShortBit:
891       ParmsType += "vs";
892       break;
893 
894     case TracebackTable::ParmTypeIsVectorIntBit:
895       ParmsType += "vi";
896       break;
897 
898     case TracebackTable::ParmTypeIsVectorFloatBit:
899       ParmsType += "vf";
900       break;
901     }
902     Value <<= 2;
903   }
904   return ParmsType;
905 }
906 
parseParmsTypeWithVecInfo(uint32_t Value,unsigned int ParmsNum)907 static SmallString<32> parseParmsTypeWithVecInfo(uint32_t Value,
908                                                  unsigned int ParmsNum) {
909   SmallString<32> ParmsType;
910   unsigned I = 0;
911   bool Begin = false;
912   while (I < ParmsNum || Value) {
913     if (Begin)
914       ParmsType += ", ";
915     else
916       Begin = true;
917 
918     switch (Value & TracebackTable::ParmTypeMask) {
919     case TracebackTable::ParmTypeIsFixedBits:
920       ParmsType += "i";
921       ++I;
922       break;
923     case TracebackTable::ParmTypeIsVectorBits:
924       ParmsType += "v";
925       break;
926     case TracebackTable::ParmTypeIsFloatingBits:
927       ParmsType += "f";
928       ++I;
929       break;
930     case TracebackTable::ParmTypeIsDoubleBits:
931       ParmsType += "d";
932       ++I;
933       break;
934     default:
935       assert(false && "Unrecognized bits in ParmsType.");
936     }
937     Value <<= 2;
938   }
939   assert(I == ParmsNum &&
940          "The total parameters number of fixed-point or floating-point "
941          "parameters not equal to the number in the parameter type!");
942   return ParmsType;
943 }
944 
parseParmsType(uint32_t Value,unsigned ParmsNum)945 static SmallString<32> parseParmsType(uint32_t Value, unsigned ParmsNum) {
946   SmallString<32> ParmsType;
947   for (unsigned I = 0; I < ParmsNum; ++I) {
948     if (I != 0)
949       ParmsType += ", ";
950     if ((Value & TracebackTable::ParmTypeIsFloatingBit) == 0) {
951       // Fixed parameter type.
952       ParmsType += "i";
953       Value <<= 1;
954     } else {
955       if ((Value & TracebackTable::ParmTypeFloatingIsDoubleBit) == 0)
956         // Float parameter type.
957         ParmsType += "f";
958       else
959         // Double parameter type.
960         ParmsType += "d";
961 
962       Value <<= 2;
963     }
964   }
965   return ParmsType;
966 }
967 
create(const uint8_t * Ptr,uint64_t & Size)968 Expected<XCOFFTracebackTable> XCOFFTracebackTable::create(const uint8_t *Ptr,
969                                                           uint64_t &Size) {
970   Error Err = Error::success();
971   XCOFFTracebackTable TBT(Ptr, Size, Err);
972   if (Err)
973     return std::move(Err);
974   return TBT;
975 }
976 
XCOFFTracebackTable(const uint8_t * Ptr,uint64_t & Size,Error & Err)977 XCOFFTracebackTable::XCOFFTracebackTable(const uint8_t *Ptr, uint64_t &Size,
978                                          Error &Err)
979     : TBPtr(Ptr) {
980   ErrorAsOutParameter EAO(&Err);
981   DataExtractor DE(ArrayRef<uint8_t>(Ptr, Size), /*IsLittleEndian=*/false,
982                    /*AddressSize=*/0);
983   DataExtractor::Cursor Cur(/*Offset=*/0);
984 
985   // Skip 8 bytes of mandatory fields.
986   DE.getU64(Cur);
987 
988   // Begin to parse optional fields.
989   if (Cur) {
990     unsigned ParmNum = getNumberOfFixedParms() + getNumberOfFPParms();
991 
992     // As long as there are no "fixed-point" or floating-point parameters, this
993     // field remains not present even when hasVectorInfo gives true and
994     // indicates the presence of vector parameters.
995     if (ParmNum > 0) {
996       uint32_t ParamsTypeValue = DE.getU32(Cur);
997       if (Cur)
998         ParmsType = hasVectorInfo()
999                         ? parseParmsTypeWithVecInfo(ParamsTypeValue, ParmNum)
1000                         : parseParmsType(ParamsTypeValue, ParmNum);
1001     }
1002   }
1003 
1004   if (Cur && hasTraceBackTableOffset())
1005     TraceBackTableOffset = DE.getU32(Cur);
1006 
1007   if (Cur && isInterruptHandler())
1008     HandlerMask = DE.getU32(Cur);
1009 
1010   if (Cur && hasControlledStorage()) {
1011     NumOfCtlAnchors = DE.getU32(Cur);
1012     if (Cur && NumOfCtlAnchors) {
1013       SmallVector<uint32_t, 8> Disp;
1014       Disp.reserve(NumOfCtlAnchors.getValue());
1015       for (uint32_t I = 0; I < NumOfCtlAnchors && Cur; ++I)
1016         Disp.push_back(DE.getU32(Cur));
1017       if (Cur)
1018         ControlledStorageInfoDisp = std::move(Disp);
1019     }
1020   }
1021 
1022   if (Cur && isFuncNamePresent()) {
1023     uint16_t FunctionNameLen = DE.getU16(Cur);
1024     if (Cur)
1025       FunctionName = DE.getBytes(Cur, FunctionNameLen);
1026   }
1027 
1028   if (Cur && isAllocaUsed())
1029     AllocaRegister = DE.getU8(Cur);
1030 
1031   if (Cur && hasVectorInfo()) {
1032     StringRef VectorExtRef = DE.getBytes(Cur, 6);
1033     if (Cur)
1034       VecExt = TBVectorExt(VectorExtRef);
1035   }
1036 
1037   if (Cur && hasExtensionTable())
1038     ExtensionTable = DE.getU8(Cur);
1039 
1040   if (!Cur)
1041     Err = Cur.takeError();
1042   Size = Cur.tell();
1043 }
1044 
1045 #define GETBITWITHMASK(P, X)                                                   \
1046   (support::endian::read32be(TBPtr + (P)) & (TracebackTable::X))
1047 #define GETBITWITHMASKSHIFT(P, X, S)                                           \
1048   ((support::endian::read32be(TBPtr + (P)) & (TracebackTable::X)) >>           \
1049    (TracebackTable::S))
1050 
getVersion() const1051 uint8_t XCOFFTracebackTable::getVersion() const {
1052   return GETBITWITHMASKSHIFT(0, VersionMask, VersionShift);
1053 }
1054 
getLanguageID() const1055 uint8_t XCOFFTracebackTable::getLanguageID() const {
1056   return GETBITWITHMASKSHIFT(0, LanguageIdMask, LanguageIdShift);
1057 }
1058 
isGlobalLinkage() const1059 bool XCOFFTracebackTable::isGlobalLinkage() const {
1060   return GETBITWITHMASK(0, IsGlobaLinkageMask);
1061 }
1062 
isOutOfLineEpilogOrPrologue() const1063 bool XCOFFTracebackTable::isOutOfLineEpilogOrPrologue() const {
1064   return GETBITWITHMASK(0, IsOutOfLineEpilogOrPrologueMask);
1065 }
1066 
hasTraceBackTableOffset() const1067 bool XCOFFTracebackTable::hasTraceBackTableOffset() const {
1068   return GETBITWITHMASK(0, HasTraceBackTableOffsetMask);
1069 }
1070 
isInternalProcedure() const1071 bool XCOFFTracebackTable::isInternalProcedure() const {
1072   return GETBITWITHMASK(0, IsInternalProcedureMask);
1073 }
1074 
hasControlledStorage() const1075 bool XCOFFTracebackTable::hasControlledStorage() const {
1076   return GETBITWITHMASK(0, HasControlledStorageMask);
1077 }
1078 
isTOCless() const1079 bool XCOFFTracebackTable::isTOCless() const {
1080   return GETBITWITHMASK(0, IsTOClessMask);
1081 }
1082 
isFloatingPointPresent() const1083 bool XCOFFTracebackTable::isFloatingPointPresent() const {
1084   return GETBITWITHMASK(0, IsFloatingPointPresentMask);
1085 }
1086 
isFloatingPointOperationLogOrAbortEnabled() const1087 bool XCOFFTracebackTable::isFloatingPointOperationLogOrAbortEnabled() const {
1088   return GETBITWITHMASK(0, IsFloatingPointOperationLogOrAbortEnabledMask);
1089 }
1090 
isInterruptHandler() const1091 bool XCOFFTracebackTable::isInterruptHandler() const {
1092   return GETBITWITHMASK(0, IsInterruptHandlerMask);
1093 }
1094 
isFuncNamePresent() const1095 bool XCOFFTracebackTable::isFuncNamePresent() const {
1096   return GETBITWITHMASK(0, IsFunctionNamePresentMask);
1097 }
1098 
isAllocaUsed() const1099 bool XCOFFTracebackTable::isAllocaUsed() const {
1100   return GETBITWITHMASK(0, IsAllocaUsedMask);
1101 }
1102 
getOnConditionDirective() const1103 uint8_t XCOFFTracebackTable::getOnConditionDirective() const {
1104   return GETBITWITHMASKSHIFT(0, OnConditionDirectiveMask,
1105                              OnConditionDirectiveShift);
1106 }
1107 
isCRSaved() const1108 bool XCOFFTracebackTable::isCRSaved() const {
1109   return GETBITWITHMASK(0, IsCRSavedMask);
1110 }
1111 
isLRSaved() const1112 bool XCOFFTracebackTable::isLRSaved() const {
1113   return GETBITWITHMASK(0, IsLRSavedMask);
1114 }
1115 
isBackChainStored() const1116 bool XCOFFTracebackTable::isBackChainStored() const {
1117   return GETBITWITHMASK(4, IsBackChainStoredMask);
1118 }
1119 
isFixup() const1120 bool XCOFFTracebackTable::isFixup() const {
1121   return GETBITWITHMASK(4, IsFixupMask);
1122 }
1123 
getNumOfFPRsSaved() const1124 uint8_t XCOFFTracebackTable::getNumOfFPRsSaved() const {
1125   return GETBITWITHMASKSHIFT(4, FPRSavedMask, FPRSavedShift);
1126 }
1127 
hasExtensionTable() const1128 bool XCOFFTracebackTable::hasExtensionTable() const {
1129   return GETBITWITHMASK(4, HasExtensionTableMask);
1130 }
1131 
hasVectorInfo() const1132 bool XCOFFTracebackTable::hasVectorInfo() const {
1133   return GETBITWITHMASK(4, HasVectorInfoMask);
1134 }
1135 
getNumOfGPRsSaved() const1136 uint8_t XCOFFTracebackTable::getNumOfGPRsSaved() const {
1137   return GETBITWITHMASKSHIFT(4, GPRSavedMask, GPRSavedShift);
1138 }
1139 
getNumberOfFixedParms() const1140 uint8_t XCOFFTracebackTable::getNumberOfFixedParms() const {
1141   return GETBITWITHMASKSHIFT(4, NumberOfFixedParmsMask,
1142                              NumberOfFixedParmsShift);
1143 }
1144 
getNumberOfFPParms() const1145 uint8_t XCOFFTracebackTable::getNumberOfFPParms() const {
1146   return GETBITWITHMASKSHIFT(4, NumberOfFloatingPointParmsMask,
1147                              NumberOfFloatingPointParmsShift);
1148 }
1149 
hasParmsOnStack() const1150 bool XCOFFTracebackTable::hasParmsOnStack() const {
1151   return GETBITWITHMASK(4, HasParmsOnStackMask);
1152 }
1153 
1154 #undef GETBITWITHMASK
1155 #undef GETBITWITHMASKSHIFT
1156 } // namespace object
1157 } // namespace llvm
1158