18e90adafSMichael J. Spencer //===- COFFObjectFile.cpp - COFF object file implementation -----*- C++ -*-===//
28e90adafSMichael J. Spencer //
38e90adafSMichael J. Spencer //                     The LLVM Compiler Infrastructure
48e90adafSMichael J. Spencer //
58e90adafSMichael J. Spencer // This file is distributed under the University of Illinois Open Source
68e90adafSMichael J. Spencer // License. See LICENSE.TXT for details.
78e90adafSMichael J. Spencer //
88e90adafSMichael J. Spencer //===----------------------------------------------------------------------===//
98e90adafSMichael J. Spencer //
108e90adafSMichael J. Spencer // This file declares the COFFObjectFile class.
118e90adafSMichael J. Spencer //
128e90adafSMichael J. Spencer //===----------------------------------------------------------------------===//
138e90adafSMichael J. Spencer 
14ec29b121SMichael J. Spencer #include "llvm/Object/COFF.h"
159da9e693SMichael J. Spencer #include "llvm/ADT/ArrayRef.h"
168e90adafSMichael J. Spencer #include "llvm/ADT/StringSwitch.h"
178e90adafSMichael J. Spencer #include "llvm/ADT/Triple.h"
186a75acb1SRui Ueyama #include "llvm/ADT/iterator_range.h"
19f078eff3SRui Ueyama #include "llvm/Support/COFF.h"
20c2bed429SRui Ueyama #include "llvm/Support/Debug.h"
21c2bed429SRui Ueyama #include "llvm/Support/raw_ostream.h"
22981af002SWill Dietz #include <cctype>
239d2c15efSNico Rieck #include <limits>
248e90adafSMichael J. Spencer 
258e90adafSMichael J. Spencer using namespace llvm;
268e90adafSMichael J. Spencer using namespace object;
278e90adafSMichael J. Spencer 
288e90adafSMichael J. Spencer using support::ulittle16_t;
298e90adafSMichael J. Spencer using support::ulittle32_t;
30861021f9SRui Ueyama using support::ulittle64_t;
318e90adafSMichael J. Spencer using support::little16_t;
328e90adafSMichael J. Spencer 
331d6167fdSMichael J. Spencer // Returns false if size is greater than the buffer size. And sets ec.
3448af1c2aSRafael Espindola static bool checkSize(MemoryBufferRef M, std::error_code &EC, uint64_t Size) {
35c3f9b5a5SRafael Espindola   if (M.getBufferSize() < Size) {
368ff24d25SRui Ueyama     EC = object_error::unexpected_eof;
371d6167fdSMichael J. Spencer     return false;
381d6167fdSMichael J. Spencer   }
391d6167fdSMichael J. Spencer   return true;
408e90adafSMichael J. Spencer }
418e90adafSMichael J. Spencer 
42e830c60dSDavid Majnemer static std::error_code checkOffset(MemoryBufferRef M, uintptr_t Addr,
4394751be7SDavid Majnemer                                    const uint64_t Size) {
44e830c60dSDavid Majnemer   if (Addr + Size < Addr || Addr + Size < Size ||
45e830c60dSDavid Majnemer       Addr + Size > uintptr_t(M.getBufferEnd()) ||
46e830c60dSDavid Majnemer       Addr < uintptr_t(M.getBufferStart())) {
47e830c60dSDavid Majnemer     return object_error::unexpected_eof;
48e830c60dSDavid Majnemer   }
497d099195SRui Ueyama   return std::error_code();
50e830c60dSDavid Majnemer }
51e830c60dSDavid Majnemer 
52ed64342bSRui Ueyama // Sets Obj unless any bytes in [addr, addr + size) fall outsize of m.
53ed64342bSRui Ueyama // Returns unexpected_eof if error.
54ed64342bSRui Ueyama template <typename T>
5548af1c2aSRafael Espindola static std::error_code getObject(const T *&Obj, MemoryBufferRef M,
5658323a97SDavid Majnemer                                  const void *Ptr,
57236b0ca7SDavid Majnemer                                  const uint64_t Size = sizeof(T)) {
58ed64342bSRui Ueyama   uintptr_t Addr = uintptr_t(Ptr);
59e830c60dSDavid Majnemer   if (std::error_code EC = checkOffset(M, Addr, Size))
60e830c60dSDavid Majnemer     return EC;
61ed64342bSRui Ueyama   Obj = reinterpret_cast<const T *>(Addr);
627d099195SRui Ueyama   return std::error_code();
631d6167fdSMichael J. Spencer }
641d6167fdSMichael J. Spencer 
659d2c15efSNico Rieck // Decode a string table entry in base 64 (//AAAAAA). Expects \arg Str without
669d2c15efSNico Rieck // prefixed slashes.
679d2c15efSNico Rieck static bool decodeBase64StringEntry(StringRef Str, uint32_t &Result) {
689d2c15efSNico Rieck   assert(Str.size() <= 6 && "String too long, possible overflow.");
699d2c15efSNico Rieck   if (Str.size() > 6)
709d2c15efSNico Rieck     return true;
719d2c15efSNico Rieck 
729d2c15efSNico Rieck   uint64_t Value = 0;
739d2c15efSNico Rieck   while (!Str.empty()) {
749d2c15efSNico Rieck     unsigned CharVal;
759d2c15efSNico Rieck     if (Str[0] >= 'A' && Str[0] <= 'Z') // 0..25
769d2c15efSNico Rieck       CharVal = Str[0] - 'A';
779d2c15efSNico Rieck     else if (Str[0] >= 'a' && Str[0] <= 'z') // 26..51
789d2c15efSNico Rieck       CharVal = Str[0] - 'a' + 26;
799d2c15efSNico Rieck     else if (Str[0] >= '0' && Str[0] <= '9') // 52..61
809d2c15efSNico Rieck       CharVal = Str[0] - '0' + 52;
819d2c15efSNico Rieck     else if (Str[0] == '+') // 62
825500b07cSRui Ueyama       CharVal = 62;
839d2c15efSNico Rieck     else if (Str[0] == '/') // 63
845500b07cSRui Ueyama       CharVal = 63;
859d2c15efSNico Rieck     else
869d2c15efSNico Rieck       return true;
879d2c15efSNico Rieck 
889d2c15efSNico Rieck     Value = (Value * 64) + CharVal;
899d2c15efSNico Rieck     Str = Str.substr(1);
909d2c15efSNico Rieck   }
919d2c15efSNico Rieck 
929d2c15efSNico Rieck   if (Value > std::numeric_limits<uint32_t>::max())
939d2c15efSNico Rieck     return true;
949d2c15efSNico Rieck 
959d2c15efSNico Rieck   Result = static_cast<uint32_t>(Value);
969d2c15efSNico Rieck   return false;
979d2c15efSNico Rieck }
989d2c15efSNico Rieck 
9944f51e51SDavid Majnemer template <typename coff_symbol_type>
10044f51e51SDavid Majnemer const coff_symbol_type *COFFObjectFile::toSymb(DataRefImpl Ref) const {
10144f51e51SDavid Majnemer   const coff_symbol_type *Addr =
10244f51e51SDavid Majnemer       reinterpret_cast<const coff_symbol_type *>(Ref.p);
1031d6167fdSMichael J. Spencer 
104236b0ca7SDavid Majnemer   assert(!checkOffset(Data, uintptr_t(Addr), sizeof(*Addr)));
1051d6167fdSMichael J. Spencer #ifndef NDEBUG
1061d6167fdSMichael J. Spencer   // Verify that the symbol points to a valid entry in the symbol table.
1078ff24d25SRui Ueyama   uintptr_t Offset = uintptr_t(Addr) - uintptr_t(base());
1081d6167fdSMichael J. Spencer 
10944f51e51SDavid Majnemer   assert((Offset - getPointerToSymbolTable()) % sizeof(coff_symbol_type) == 0 &&
11044f51e51SDavid Majnemer          "Symbol did not point to the beginning of a symbol");
1111d6167fdSMichael J. Spencer #endif
1121d6167fdSMichael J. Spencer 
1138ff24d25SRui Ueyama   return Addr;
1141d6167fdSMichael J. Spencer }
1151d6167fdSMichael J. Spencer 
1168ff24d25SRui Ueyama const coff_section *COFFObjectFile::toSec(DataRefImpl Ref) const {
1178ff24d25SRui Ueyama   const coff_section *Addr = reinterpret_cast<const coff_section*>(Ref.p);
1181d6167fdSMichael J. Spencer 
1191d6167fdSMichael J. Spencer # ifndef NDEBUG
1201d6167fdSMichael J. Spencer   // Verify that the section points to a valid entry in the section table.
12144f51e51SDavid Majnemer   if (Addr < SectionTable || Addr >= (SectionTable + getNumberOfSections()))
1221d6167fdSMichael J. Spencer     report_fatal_error("Section was outside of section table.");
1231d6167fdSMichael J. Spencer 
1248ff24d25SRui Ueyama   uintptr_t Offset = uintptr_t(Addr) - uintptr_t(SectionTable);
1258ff24d25SRui Ueyama   assert(Offset % sizeof(coff_section) == 0 &&
1261d6167fdSMichael J. Spencer          "Section did not point to the beginning of a section");
1271d6167fdSMichael J. Spencer # endif
1281d6167fdSMichael J. Spencer 
1298ff24d25SRui Ueyama   return Addr;
1301d6167fdSMichael J. Spencer }
1311d6167fdSMichael J. Spencer 
1325e812afaSRafael Espindola void COFFObjectFile::moveSymbolNext(DataRefImpl &Ref) const {
133236b0ca7SDavid Majnemer   auto End = reinterpret_cast<uintptr_t>(StringTable);
13444f51e51SDavid Majnemer   if (SymbolTable16) {
13544f51e51SDavid Majnemer     const coff_symbol16 *Symb = toSymb<coff_symbol16>(Ref);
1368ff24d25SRui Ueyama     Symb += 1 + Symb->NumberOfAuxSymbols;
137236b0ca7SDavid Majnemer     Ref.p = std::min(reinterpret_cast<uintptr_t>(Symb), End);
13844f51e51SDavid Majnemer   } else if (SymbolTable32) {
13944f51e51SDavid Majnemer     const coff_symbol32 *Symb = toSymb<coff_symbol32>(Ref);
14044f51e51SDavid Majnemer     Symb += 1 + Symb->NumberOfAuxSymbols;
141236b0ca7SDavid Majnemer     Ref.p = std::min(reinterpret_cast<uintptr_t>(Symb), End);
14244f51e51SDavid Majnemer   } else {
14344f51e51SDavid Majnemer     llvm_unreachable("no symbol table pointer!");
14444f51e51SDavid Majnemer   }
1451d6167fdSMichael J. Spencer }
1461d6167fdSMichael J. Spencer 
14781e8b7d9SKevin Enderby Expected<StringRef> COFFObjectFile::getSymbolName(DataRefImpl Ref) const {
14844f51e51SDavid Majnemer   COFFSymbolRef Symb = getCOFFSymbol(Ref);
1495d0c2ffaSRafael Espindola   StringRef Result;
1505d0c2ffaSRafael Espindola   std::error_code EC = getSymbolName(Symb, Result);
1515d0c2ffaSRafael Espindola   if (EC)
15281e8b7d9SKevin Enderby     return errorCodeToError(EC);
1535d0c2ffaSRafael Espindola   return Result;
1548e90adafSMichael J. Spencer }
1558e90adafSMichael J. Spencer 
156be8b0ea8SRafael Espindola uint64_t COFFObjectFile::getSymbolValueImpl(DataRefImpl Ref) const {
157be8b0ea8SRafael Espindola   return getCOFFSymbol(Ref).getValue();
158991af666SRafael Espindola }
159991af666SRafael Espindola 
160ed067c45SRafael Espindola ErrorOr<uint64_t> COFFObjectFile::getSymbolAddress(DataRefImpl Ref) const {
161ed067c45SRafael Espindola   uint64_t Result = getSymbolValue(Ref);
16244f51e51SDavid Majnemer   COFFSymbolRef Symb = getCOFFSymbol(Ref);
163c7d7c6fbSDavid Majnemer   int32_t SectionNumber = Symb.getSectionNumber();
164991af666SRafael Espindola 
165991af666SRafael Espindola   if (Symb.isAnyUndefined() || Symb.isCommon() ||
166991af666SRafael Espindola       COFF::isReservedSectionNumber(SectionNumber))
167ed067c45SRafael Espindola     return Result;
16854c9f3daSRafael Espindola 
1692617dcceSCraig Topper   const coff_section *Section = nullptr;
170c7d7c6fbSDavid Majnemer   if (std::error_code EC = getSection(SectionNumber, Section))
1718ff24d25SRui Ueyama     return EC;
172991af666SRafael Espindola   Result += Section->VirtualAddress;
17347ea9eceSReid Kleckner 
17447ea9eceSReid Kleckner   // The section VirtualAddress does not include ImageBase, and we want to
17547ea9eceSReid Kleckner   // return virtual addresses.
17621427adaSReid Kleckner   Result += getImageBase();
17747ea9eceSReid Kleckner 
178ed067c45SRafael Espindola   return Result;
179c7d7c6fbSDavid Majnemer }
180c7d7c6fbSDavid Majnemer 
1817bd8d994SKevin Enderby Expected<SymbolRef::Type> COFFObjectFile::getSymbolType(DataRefImpl Ref) const {
18244f51e51SDavid Majnemer   COFFSymbolRef Symb = getCOFFSymbol(Ref);
183c7d7c6fbSDavid Majnemer   int32_t SectionNumber = Symb.getSectionNumber();
18444f51e51SDavid Majnemer 
185e834f420SPeter Collingbourne   if (Symb.getComplexType() == COFF::IMAGE_SYM_DTYPE_FUNCTION)
186e834f420SPeter Collingbourne     return SymbolRef::ST_Function;
1872fa80cc5SRafael Espindola   if (Symb.isAnyUndefined())
1882fa80cc5SRafael Espindola     return SymbolRef::ST_Unknown;
1892fa80cc5SRafael Espindola   if (Symb.isCommon())
1902fa80cc5SRafael Espindola     return SymbolRef::ST_Data;
1912fa80cc5SRafael Espindola   if (Symb.isFileRecord())
1922fa80cc5SRafael Espindola     return SymbolRef::ST_File;
1932fa80cc5SRafael Espindola 
1941a666e0fSDavid Majnemer   // TODO: perhaps we need a new symbol type ST_Section.
1952fa80cc5SRafael Espindola   if (SectionNumber == COFF::IMAGE_SYM_DEBUG || Symb.isSectionDefinition())
1962fa80cc5SRafael Espindola     return SymbolRef::ST_Debug;
1972fa80cc5SRafael Espindola 
1982fa80cc5SRafael Espindola   if (!COFF::isReservedSectionNumber(SectionNumber))
1992fa80cc5SRafael Espindola     return SymbolRef::ST_Data;
2002fa80cc5SRafael Espindola 
2012fa80cc5SRafael Espindola   return SymbolRef::ST_Other;
20275d1cf33SBenjamin Kramer }
20375d1cf33SBenjamin Kramer 
20420122a43SRafael Espindola uint32_t COFFObjectFile::getSymbolFlags(DataRefImpl Ref) const {
20544f51e51SDavid Majnemer   COFFSymbolRef Symb = getCOFFSymbol(Ref);
20620122a43SRafael Espindola   uint32_t Result = SymbolRef::SF_None;
20775d1cf33SBenjamin Kramer 
208c7d7c6fbSDavid Majnemer   if (Symb.isExternal() || Symb.isWeakExternal())
2099dc0eb42SLang Hames     Result |= SymbolRef::SF_Global;
2101df4b84dSDavid Meyer 
211c7d7c6fbSDavid Majnemer   if (Symb.isWeakExternal())
2121df4b84dSDavid Meyer     Result |= SymbolRef::SF_Weak;
2131df4b84dSDavid Meyer 
21444f51e51SDavid Majnemer   if (Symb.getSectionNumber() == COFF::IMAGE_SYM_ABSOLUTE)
2151df4b84dSDavid Meyer     Result |= SymbolRef::SF_Absolute;
2161df4b84dSDavid Meyer 
217c7d7c6fbSDavid Majnemer   if (Symb.isFileRecord())
218c7d7c6fbSDavid Majnemer     Result |= SymbolRef::SF_FormatSpecific;
219c7d7c6fbSDavid Majnemer 
220c7d7c6fbSDavid Majnemer   if (Symb.isSectionDefinition())
221c7d7c6fbSDavid Majnemer     Result |= SymbolRef::SF_FormatSpecific;
222c7d7c6fbSDavid Majnemer 
223c7d7c6fbSDavid Majnemer   if (Symb.isCommon())
224c7d7c6fbSDavid Majnemer     Result |= SymbolRef::SF_Common;
225c7d7c6fbSDavid Majnemer 
226c7d7c6fbSDavid Majnemer   if (Symb.isAnyUndefined())
227c7d7c6fbSDavid Majnemer     Result |= SymbolRef::SF_Undefined;
228c7d7c6fbSDavid Majnemer 
22920122a43SRafael Espindola   return Result;
23001759754SMichael J. Spencer }
23101759754SMichael J. Spencer 
232d7a32ea4SRafael Espindola uint64_t COFFObjectFile::getCommonSymbolSizeImpl(DataRefImpl Ref) const {
233c7d7c6fbSDavid Majnemer   COFFSymbolRef Symb = getCOFFSymbol(Ref);
2345eb02e45SRafael Espindola   return Symb.getValue();
2358e90adafSMichael J. Spencer }
2368e90adafSMichael J. Spencer 
2377bd8d994SKevin Enderby Expected<section_iterator>
2388bab889bSRafael Espindola COFFObjectFile::getSymbolSection(DataRefImpl Ref) const {
23944f51e51SDavid Majnemer   COFFSymbolRef Symb = getCOFFSymbol(Ref);
2408bab889bSRafael Espindola   if (COFF::isReservedSectionNumber(Symb.getSectionNumber()))
2418bab889bSRafael Espindola     return section_end();
2422617dcceSCraig Topper   const coff_section *Sec = nullptr;
24344f51e51SDavid Majnemer   if (std::error_code EC = getSection(Symb.getSectionNumber(), Sec))
2447bd8d994SKevin Enderby     return errorCodeToError(EC);
2458bab889bSRafael Espindola   DataRefImpl Ret;
2468bab889bSRafael Espindola   Ret.p = reinterpret_cast<uintptr_t>(Sec);
2478bab889bSRafael Espindola   return section_iterator(SectionRef(Ret, this));
24832173153SMichael J. Spencer }
24932173153SMichael J. Spencer 
2506bf32210SRafael Espindola unsigned COFFObjectFile::getSymbolSectionID(SymbolRef Sym) const {
2516bf32210SRafael Espindola   COFFSymbolRef Symb = getCOFFSymbol(Sym.getRawDataRefImpl());
2526bf32210SRafael Espindola   return Symb.getSectionNumber();
2536bf32210SRafael Espindola }
2546bf32210SRafael Espindola 
2555e812afaSRafael Espindola void COFFObjectFile::moveSectionNext(DataRefImpl &Ref) const {
2568ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
2578ff24d25SRui Ueyama   Sec += 1;
2588ff24d25SRui Ueyama   Ref.p = reinterpret_cast<uintptr_t>(Sec);
2598e90adafSMichael J. Spencer }
2608e90adafSMichael J. Spencer 
261db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getSectionName(DataRefImpl Ref,
2621d6167fdSMichael J. Spencer                                                StringRef &Result) const {
2638ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
2648ff24d25SRui Ueyama   return getSectionName(Sec, Result);
2658e90adafSMichael J. Spencer }
2668e90adafSMichael J. Spencer 
26780291274SRafael Espindola uint64_t COFFObjectFile::getSectionAddress(DataRefImpl Ref) const {
2688ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
2697c6a071bSDavid Majnemer   uint64_t Result = Sec->VirtualAddress;
2707c6a071bSDavid Majnemer 
2717c6a071bSDavid Majnemer   // The section VirtualAddress does not include ImageBase, and we want to
2727c6a071bSDavid Majnemer   // return virtual addresses.
27321427adaSReid Kleckner   Result += getImageBase();
2747c6a071bSDavid Majnemer   return Result;
2758e90adafSMichael J. Spencer }
2768e90adafSMichael J. Spencer 
27780291274SRafael Espindola uint64_t COFFObjectFile::getSectionSize(DataRefImpl Ref) const {
278a9ee5c06SDavid Majnemer   return getSectionSize(toSec(Ref));
2798e90adafSMichael J. Spencer }
2808e90adafSMichael J. Spencer 
281db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getSectionContents(DataRefImpl Ref,
2821d6167fdSMichael J. Spencer                                                    StringRef &Result) const {
2838ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
2849da9e693SMichael J. Spencer   ArrayRef<uint8_t> Res;
285db4ed0bdSRafael Espindola   std::error_code EC = getSectionContents(Sec, Res);
2869da9e693SMichael J. Spencer   Result = StringRef(reinterpret_cast<const char*>(Res.data()), Res.size());
2879da9e693SMichael J. Spencer   return EC;
2888e90adafSMichael J. Spencer }
2898e90adafSMichael J. Spencer 
29080291274SRafael Espindola uint64_t COFFObjectFile::getSectionAlignment(DataRefImpl Ref) const {
2918ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
292511391feSDavid Majnemer   return Sec->getAlignment();
2937989460aSMichael J. Spencer }
2947989460aSMichael J. Spencer 
295401e4e57SGeorge Rimar bool COFFObjectFile::isSectionCompressed(DataRefImpl Sec) const {
296401e4e57SGeorge Rimar   return false;
297401e4e57SGeorge Rimar }
298401e4e57SGeorge Rimar 
29980291274SRafael Espindola bool COFFObjectFile::isSectionText(DataRefImpl Ref) const {
3008ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
30180291274SRafael Espindola   return Sec->Characteristics & COFF::IMAGE_SCN_CNT_CODE;
3028e90adafSMichael J. Spencer }
3038e90adafSMichael J. Spencer 
30480291274SRafael Espindola bool COFFObjectFile::isSectionData(DataRefImpl Ref) const {
3058ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
30680291274SRafael Espindola   return Sec->Characteristics & COFF::IMAGE_SCN_CNT_INITIALIZED_DATA;
307800619f2SMichael J. Spencer }
308800619f2SMichael J. Spencer 
30980291274SRafael Espindola bool COFFObjectFile::isSectionBSS(DataRefImpl Ref) const {
3108ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
3111a666e0fSDavid Majnemer   const uint32_t BssFlags = COFF::IMAGE_SCN_CNT_UNINITIALIZED_DATA |
3121a666e0fSDavid Majnemer                             COFF::IMAGE_SCN_MEM_READ |
3131a666e0fSDavid Majnemer                             COFF::IMAGE_SCN_MEM_WRITE;
3141a666e0fSDavid Majnemer   return (Sec->Characteristics & BssFlags) == BssFlags;
315800619f2SMichael J. Spencer }
316800619f2SMichael J. Spencer 
3176bf32210SRafael Espindola unsigned COFFObjectFile::getSectionID(SectionRef Sec) const {
3186bf32210SRafael Espindola   uintptr_t Offset =
3196bf32210SRafael Espindola       uintptr_t(Sec.getRawDataRefImpl().p) - uintptr_t(SectionTable);
3206bf32210SRafael Espindola   assert((Offset % sizeof(coff_section)) == 0);
3216bf32210SRafael Espindola   return (Offset / sizeof(coff_section)) + 1;
3226bf32210SRafael Espindola }
3236bf32210SRafael Espindola 
32480291274SRafael Espindola bool COFFObjectFile::isSectionVirtual(DataRefImpl Ref) const {
3258ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
3261a666e0fSDavid Majnemer   // In COFF, a virtual section won't have any in-file
3271a666e0fSDavid Majnemer   // content, so the file pointer to the content will be zero.
3281a666e0fSDavid Majnemer   return Sec->PointerToRawData == 0;
3292138ef6dSPreston Gurd }
3302138ef6dSPreston Gurd 
331e830c60dSDavid Majnemer static uint32_t getNumberOfRelocations(const coff_section *Sec,
332e830c60dSDavid Majnemer                                        MemoryBufferRef M, const uint8_t *base) {
333e830c60dSDavid Majnemer   // The field for the number of relocations in COFF section table is only
334e830c60dSDavid Majnemer   // 16-bit wide. If a section has more than 65535 relocations, 0xFFFF is set to
335e830c60dSDavid Majnemer   // NumberOfRelocations field, and the actual relocation count is stored in the
336e830c60dSDavid Majnemer   // VirtualAddress field in the first relocation entry.
337e830c60dSDavid Majnemer   if (Sec->hasExtendedRelocations()) {
338e830c60dSDavid Majnemer     const coff_relocation *FirstReloc;
339e830c60dSDavid Majnemer     if (getObject(FirstReloc, M, reinterpret_cast<const coff_relocation*>(
340e830c60dSDavid Majnemer         base + Sec->PointerToRelocations)))
341e830c60dSDavid Majnemer       return 0;
34298fe58a3SRui Ueyama     // -1 to exclude this first relocation entry.
34398fe58a3SRui Ueyama     return FirstReloc->VirtualAddress - 1;
344e830c60dSDavid Majnemer   }
345e830c60dSDavid Majnemer   return Sec->NumberOfRelocations;
346e830c60dSDavid Majnemer }
347e830c60dSDavid Majnemer 
34894751be7SDavid Majnemer static const coff_relocation *
34994751be7SDavid Majnemer getFirstReloc(const coff_section *Sec, MemoryBufferRef M, const uint8_t *Base) {
35094751be7SDavid Majnemer   uint64_t NumRelocs = getNumberOfRelocations(Sec, M, Base);
35194751be7SDavid Majnemer   if (!NumRelocs)
35294751be7SDavid Majnemer     return nullptr;
353827c8a2bSRui Ueyama   auto begin = reinterpret_cast<const coff_relocation *>(
35494751be7SDavid Majnemer       Base + Sec->PointerToRelocations);
355827c8a2bSRui Ueyama   if (Sec->hasExtendedRelocations()) {
356827c8a2bSRui Ueyama     // Skip the first relocation entry repurposed to store the number of
357827c8a2bSRui Ueyama     // relocations.
358827c8a2bSRui Ueyama     begin++;
359827c8a2bSRui Ueyama   }
36094751be7SDavid Majnemer   if (checkOffset(M, uintptr_t(begin), sizeof(coff_relocation) * NumRelocs))
36194751be7SDavid Majnemer     return nullptr;
36294751be7SDavid Majnemer   return begin;
363827c8a2bSRui Ueyama }
36494751be7SDavid Majnemer 
36594751be7SDavid Majnemer relocation_iterator COFFObjectFile::section_rel_begin(DataRefImpl Ref) const {
36694751be7SDavid Majnemer   const coff_section *Sec = toSec(Ref);
36794751be7SDavid Majnemer   const coff_relocation *begin = getFirstReloc(Sec, Data, base());
36876d650e8SRafael Espindola   if (begin && Sec->VirtualAddress != 0)
36976d650e8SRafael Espindola     report_fatal_error("Sections with relocations should have an address of 0");
37094751be7SDavid Majnemer   DataRefImpl Ret;
37194751be7SDavid Majnemer   Ret.p = reinterpret_cast<uintptr_t>(begin);
3728ff24d25SRui Ueyama   return relocation_iterator(RelocationRef(Ret, this));
373e5fd0047SMichael J. Spencer }
374e5fd0047SMichael J. Spencer 
3758ff24d25SRui Ueyama relocation_iterator COFFObjectFile::section_rel_end(DataRefImpl Ref) const {
3768ff24d25SRui Ueyama   const coff_section *Sec = toSec(Ref);
37794751be7SDavid Majnemer   const coff_relocation *I = getFirstReloc(Sec, Data, base());
37894751be7SDavid Majnemer   if (I)
37994751be7SDavid Majnemer     I += getNumberOfRelocations(Sec, Data, base());
3808ff24d25SRui Ueyama   DataRefImpl Ret;
38194751be7SDavid Majnemer   Ret.p = reinterpret_cast<uintptr_t>(I);
3828ff24d25SRui Ueyama   return relocation_iterator(RelocationRef(Ret, this));
383e5fd0047SMichael J. Spencer }
384e5fd0047SMichael J. Spencer 
385c2bed429SRui Ueyama // Initialize the pointer to the symbol table.
386db4ed0bdSRafael Espindola std::error_code COFFObjectFile::initSymbolTablePtr() {
38744f51e51SDavid Majnemer   if (COFFHeader)
388236b0ca7SDavid Majnemer     if (std::error_code EC = getObject(
389236b0ca7SDavid Majnemer             SymbolTable16, Data, base() + getPointerToSymbolTable(),
390236b0ca7SDavid Majnemer             (uint64_t)getNumberOfSymbols() * getSymbolTableEntrySize()))
39144f51e51SDavid Majnemer       return EC;
39244f51e51SDavid Majnemer 
39344f51e51SDavid Majnemer   if (COFFBigObjHeader)
394236b0ca7SDavid Majnemer     if (std::error_code EC = getObject(
395236b0ca7SDavid Majnemer             SymbolTable32, Data, base() + getPointerToSymbolTable(),
396236b0ca7SDavid Majnemer             (uint64_t)getNumberOfSymbols() * getSymbolTableEntrySize()))
3978ff24d25SRui Ueyama       return EC;
398c2bed429SRui Ueyama 
399c2bed429SRui Ueyama   // Find string table. The first four byte of the string table contains the
400c2bed429SRui Ueyama   // total size of the string table, including the size field itself. If the
401c2bed429SRui Ueyama   // string table is empty, the value of the first four byte would be 4.
402f69b0585SDavid Majnemer   uint32_t StringTableOffset = getPointerToSymbolTable() +
40344f51e51SDavid Majnemer                                getNumberOfSymbols() * getSymbolTableEntrySize();
404f69b0585SDavid Majnemer   const uint8_t *StringTableAddr = base() + StringTableOffset;
405c2bed429SRui Ueyama   const ulittle32_t *StringTableSizePtr;
40648af1c2aSRafael Espindola   if (std::error_code EC = getObject(StringTableSizePtr, Data, StringTableAddr))
4078ff24d25SRui Ueyama     return EC;
408c2bed429SRui Ueyama   StringTableSize = *StringTableSizePtr;
409db4ed0bdSRafael Espindola   if (std::error_code EC =
41048af1c2aSRafael Espindola           getObject(StringTable, Data, StringTableAddr, StringTableSize))
4118ff24d25SRui Ueyama     return EC;
412c2bed429SRui Ueyama 
413773a5795SNico Rieck   // Treat table sizes < 4 as empty because contrary to the PECOFF spec, some
414773a5795SNico Rieck   // tools like cvtres write a size of 0 for an empty table instead of 4.
415773a5795SNico Rieck   if (StringTableSize < 4)
416773a5795SNico Rieck       StringTableSize = 4;
417773a5795SNico Rieck 
418c2bed429SRui Ueyama   // Check that the string table is null terminated if has any in it.
419773a5795SNico Rieck   if (StringTableSize > 4 && StringTable[StringTableSize - 1] != 0)
420c2bed429SRui Ueyama     return  object_error::parse_failed;
4217d099195SRui Ueyama   return std::error_code();
422c2bed429SRui Ueyama }
423c2bed429SRui Ueyama 
42421427adaSReid Kleckner uint64_t COFFObjectFile::getImageBase() const {
425e94fef7bSReid Kleckner   if (PE32Header)
42621427adaSReid Kleckner     return PE32Header->ImageBase;
427e94fef7bSReid Kleckner   else if (PE32PlusHeader)
42821427adaSReid Kleckner     return PE32PlusHeader->ImageBase;
42921427adaSReid Kleckner   // This actually comes up in practice.
43021427adaSReid Kleckner   return 0;
431e94fef7bSReid Kleckner }
432e94fef7bSReid Kleckner 
433215a586cSRui Ueyama // Returns the file offset for the given VA.
434db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getVaPtr(uint64_t Addr, uintptr_t &Res) const {
43521427adaSReid Kleckner   uint64_t ImageBase = getImageBase();
436b7a40081SRui Ueyama   uint64_t Rva = Addr - ImageBase;
437b7a40081SRui Ueyama   assert(Rva <= UINT32_MAX);
438b7a40081SRui Ueyama   return getRvaPtr((uint32_t)Rva, Res);
439215a586cSRui Ueyama }
440215a586cSRui Ueyama 
441c2bed429SRui Ueyama // Returns the file offset for the given RVA.
442db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getRvaPtr(uint32_t Addr, uintptr_t &Res) const {
44327dc8394SAlexey Samsonov   for (const SectionRef &S : sections()) {
44427dc8394SAlexey Samsonov     const coff_section *Section = getCOFFSection(S);
445c2bed429SRui Ueyama     uint32_t SectionStart = Section->VirtualAddress;
446c2bed429SRui Ueyama     uint32_t SectionEnd = Section->VirtualAddress + Section->VirtualSize;
447215a586cSRui Ueyama     if (SectionStart <= Addr && Addr < SectionEnd) {
448215a586cSRui Ueyama       uint32_t Offset = Addr - SectionStart;
449c2bed429SRui Ueyama       Res = uintptr_t(base()) + Section->PointerToRawData + Offset;
4507d099195SRui Ueyama       return std::error_code();
451c2bed429SRui Ueyama     }
452c2bed429SRui Ueyama   }
453c2bed429SRui Ueyama   return object_error::parse_failed;
454c2bed429SRui Ueyama }
455c2bed429SRui Ueyama 
456*2da433eaSReid Kleckner std::error_code
457*2da433eaSReid Kleckner COFFObjectFile::getRvaAndSizeAsBytes(uint32_t RVA, uint32_t Size,
458*2da433eaSReid Kleckner                                      ArrayRef<uint8_t> &Contents) const {
459*2da433eaSReid Kleckner   for (const SectionRef &S : sections()) {
460*2da433eaSReid Kleckner     const coff_section *Section = getCOFFSection(S);
461*2da433eaSReid Kleckner     uint32_t SectionStart = Section->VirtualAddress;
462*2da433eaSReid Kleckner     // Check if this RVA is within the section bounds. Be careful about integer
463*2da433eaSReid Kleckner     // overflow.
464*2da433eaSReid Kleckner     uint32_t OffsetIntoSection = RVA - SectionStart;
465*2da433eaSReid Kleckner     if (SectionStart <= RVA && OffsetIntoSection < Section->VirtualSize &&
466*2da433eaSReid Kleckner         Size <= Section->VirtualSize - OffsetIntoSection) {
467*2da433eaSReid Kleckner       uintptr_t Begin =
468*2da433eaSReid Kleckner           uintptr_t(base()) + Section->PointerToRawData + OffsetIntoSection;
469*2da433eaSReid Kleckner       Contents =
470*2da433eaSReid Kleckner           ArrayRef<uint8_t>(reinterpret_cast<const uint8_t *>(Begin), Size);
471*2da433eaSReid Kleckner       return std::error_code();
472*2da433eaSReid Kleckner     }
473*2da433eaSReid Kleckner   }
474*2da433eaSReid Kleckner   return object_error::parse_failed;
475*2da433eaSReid Kleckner }
476*2da433eaSReid Kleckner 
477c2bed429SRui Ueyama // Returns hint and name fields, assuming \p Rva is pointing to a Hint/Name
478c2bed429SRui Ueyama // table entry.
479db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getHintName(uint32_t Rva, uint16_t &Hint,
480db4ed0bdSRafael Espindola                                             StringRef &Name) const {
481c2bed429SRui Ueyama   uintptr_t IntPtr = 0;
482db4ed0bdSRafael Espindola   if (std::error_code EC = getRvaPtr(Rva, IntPtr))
4838ff24d25SRui Ueyama     return EC;
484c2bed429SRui Ueyama   const uint8_t *Ptr = reinterpret_cast<const uint8_t *>(IntPtr);
485c2bed429SRui Ueyama   Hint = *reinterpret_cast<const ulittle16_t *>(Ptr);
486c2bed429SRui Ueyama   Name = StringRef(reinterpret_cast<const char *>(Ptr + 2));
4877d099195SRui Ueyama   return std::error_code();
488c2bed429SRui Ueyama }
489c2bed429SRui Ueyama 
490*2da433eaSReid Kleckner std::error_code COFFObjectFile::getDebugPDBInfo(const debug_directory *DebugDir,
491*2da433eaSReid Kleckner                                                 const debug_pdb_info *&PDBInfo,
492*2da433eaSReid Kleckner                                                 StringRef &PDBFileName) const {
493*2da433eaSReid Kleckner   ArrayRef<uint8_t> InfoBytes;
494*2da433eaSReid Kleckner   if (std::error_code EC = getRvaAndSizeAsBytes(
495*2da433eaSReid Kleckner           DebugDir->AddressOfRawData, DebugDir->SizeOfData, InfoBytes))
496*2da433eaSReid Kleckner     return EC;
497*2da433eaSReid Kleckner   if (InfoBytes.size() < sizeof(debug_pdb_info) + 1)
498*2da433eaSReid Kleckner     return object_error::parse_failed;
499*2da433eaSReid Kleckner   PDBInfo = reinterpret_cast<const debug_pdb_info *>(InfoBytes.data());
500*2da433eaSReid Kleckner   InfoBytes = InfoBytes.drop_front(sizeof(debug_pdb_info));
501*2da433eaSReid Kleckner   PDBFileName = StringRef(reinterpret_cast<const char *>(InfoBytes.data()),
502*2da433eaSReid Kleckner                           InfoBytes.size());
503*2da433eaSReid Kleckner   // Truncate the name at the first null byte. Ignore any padding.
504*2da433eaSReid Kleckner   PDBFileName = PDBFileName.split('\0').first;
505*2da433eaSReid Kleckner   return std::error_code();
506*2da433eaSReid Kleckner }
507*2da433eaSReid Kleckner 
508c2bed429SRui Ueyama // Find the import table.
509db4ed0bdSRafael Espindola std::error_code COFFObjectFile::initImportTablePtr() {
510c2bed429SRui Ueyama   // First, we get the RVA of the import table. If the file lacks a pointer to
511c2bed429SRui Ueyama   // the import table, do nothing.
512c2bed429SRui Ueyama   const data_directory *DataEntry;
513c2bed429SRui Ueyama   if (getDataDirectory(COFF::IMPORT_TABLE, DataEntry))
5147d099195SRui Ueyama     return std::error_code();
515c2bed429SRui Ueyama 
516c2bed429SRui Ueyama   // Do nothing if the pointer to import table is NULL.
517c2bed429SRui Ueyama   if (DataEntry->RelativeVirtualAddress == 0)
5187d099195SRui Ueyama     return std::error_code();
519c2bed429SRui Ueyama 
520c2bed429SRui Ueyama   uint32_t ImportTableRva = DataEntry->RelativeVirtualAddress;
5211e152d5eSRui Ueyama   // -1 because the last entry is the null entry.
522c2bed429SRui Ueyama   NumberOfImportDirectory = DataEntry->Size /
5231e152d5eSRui Ueyama       sizeof(import_directory_table_entry) - 1;
524c2bed429SRui Ueyama 
525c2bed429SRui Ueyama   // Find the section that contains the RVA. This is needed because the RVA is
526c2bed429SRui Ueyama   // the import table's memory address which is different from its file offset.
527c2bed429SRui Ueyama   uintptr_t IntPtr = 0;
528db4ed0bdSRafael Espindola   if (std::error_code EC = getRvaPtr(ImportTableRva, IntPtr))
5298ff24d25SRui Ueyama     return EC;
530c2bed429SRui Ueyama   ImportDirectory = reinterpret_cast<
531c2bed429SRui Ueyama       const import_directory_table_entry *>(IntPtr);
5327d099195SRui Ueyama   return std::error_code();
533ad882ba8SRui Ueyama }
534c2bed429SRui Ueyama 
53515d99359SRui Ueyama // Initializes DelayImportDirectory and NumberOfDelayImportDirectory.
53615d99359SRui Ueyama std::error_code COFFObjectFile::initDelayImportTablePtr() {
53715d99359SRui Ueyama   const data_directory *DataEntry;
53815d99359SRui Ueyama   if (getDataDirectory(COFF::DELAY_IMPORT_DESCRIPTOR, DataEntry))
5397d099195SRui Ueyama     return std::error_code();
54015d99359SRui Ueyama   if (DataEntry->RelativeVirtualAddress == 0)
5417d099195SRui Ueyama     return std::error_code();
54215d99359SRui Ueyama 
54315d99359SRui Ueyama   uint32_t RVA = DataEntry->RelativeVirtualAddress;
54415d99359SRui Ueyama   NumberOfDelayImportDirectory = DataEntry->Size /
54515d99359SRui Ueyama       sizeof(delay_import_directory_table_entry) - 1;
54615d99359SRui Ueyama 
54715d99359SRui Ueyama   uintptr_t IntPtr = 0;
54815d99359SRui Ueyama   if (std::error_code EC = getRvaPtr(RVA, IntPtr))
54915d99359SRui Ueyama     return EC;
55015d99359SRui Ueyama   DelayImportDirectory = reinterpret_cast<
55115d99359SRui Ueyama       const delay_import_directory_table_entry *>(IntPtr);
5527d099195SRui Ueyama   return std::error_code();
55315d99359SRui Ueyama }
55415d99359SRui Ueyama 
555ad882ba8SRui Ueyama // Find the export table.
556db4ed0bdSRafael Espindola std::error_code COFFObjectFile::initExportTablePtr() {
557ad882ba8SRui Ueyama   // First, we get the RVA of the export table. If the file lacks a pointer to
558ad882ba8SRui Ueyama   // the export table, do nothing.
559ad882ba8SRui Ueyama   const data_directory *DataEntry;
560ad882ba8SRui Ueyama   if (getDataDirectory(COFF::EXPORT_TABLE, DataEntry))
5617d099195SRui Ueyama     return std::error_code();
562ad882ba8SRui Ueyama 
563ad882ba8SRui Ueyama   // Do nothing if the pointer to export table is NULL.
564ad882ba8SRui Ueyama   if (DataEntry->RelativeVirtualAddress == 0)
5657d099195SRui Ueyama     return std::error_code();
566ad882ba8SRui Ueyama 
567ad882ba8SRui Ueyama   uint32_t ExportTableRva = DataEntry->RelativeVirtualAddress;
568ad882ba8SRui Ueyama   uintptr_t IntPtr = 0;
569db4ed0bdSRafael Espindola   if (std::error_code EC = getRvaPtr(ExportTableRva, IntPtr))
570ad882ba8SRui Ueyama     return EC;
57124fc2d64SRui Ueyama   ExportDirectory =
57224fc2d64SRui Ueyama       reinterpret_cast<const export_directory_table_entry *>(IntPtr);
5737d099195SRui Ueyama   return std::error_code();
574c2bed429SRui Ueyama }
575c2bed429SRui Ueyama 
57674e85130SRui Ueyama std::error_code COFFObjectFile::initBaseRelocPtr() {
57774e85130SRui Ueyama   const data_directory *DataEntry;
57874e85130SRui Ueyama   if (getDataDirectory(COFF::BASE_RELOCATION_TABLE, DataEntry))
5797d099195SRui Ueyama     return std::error_code();
58074e85130SRui Ueyama   if (DataEntry->RelativeVirtualAddress == 0)
5817d099195SRui Ueyama     return std::error_code();
58274e85130SRui Ueyama 
58374e85130SRui Ueyama   uintptr_t IntPtr = 0;
58474e85130SRui Ueyama   if (std::error_code EC = getRvaPtr(DataEntry->RelativeVirtualAddress, IntPtr))
58574e85130SRui Ueyama     return EC;
58674e85130SRui Ueyama   BaseRelocHeader = reinterpret_cast<const coff_base_reloc_block_header *>(
58774e85130SRui Ueyama       IntPtr);
58874e85130SRui Ueyama   BaseRelocEnd = reinterpret_cast<coff_base_reloc_block_header *>(
58974e85130SRui Ueyama       IntPtr + DataEntry->Size);
5907d099195SRui Ueyama   return std::error_code();
59174e85130SRui Ueyama }
59274e85130SRui Ueyama 
593*2da433eaSReid Kleckner std::error_code COFFObjectFile::initDebugDirectoryPtr() {
594*2da433eaSReid Kleckner   // Get the RVA of the debug directory. Do nothing if it does not exist.
595*2da433eaSReid Kleckner   const data_directory *DataEntry;
596*2da433eaSReid Kleckner   if (getDataDirectory(COFF::DEBUG_DIRECTORY, DataEntry))
597*2da433eaSReid Kleckner     return std::error_code();
598*2da433eaSReid Kleckner 
599*2da433eaSReid Kleckner   // Do nothing if the RVA is NULL.
600*2da433eaSReid Kleckner   if (DataEntry->RelativeVirtualAddress == 0)
601*2da433eaSReid Kleckner     return std::error_code();
602*2da433eaSReid Kleckner 
603*2da433eaSReid Kleckner   // Check that the size is a multiple of the entry size.
604*2da433eaSReid Kleckner   if (DataEntry->Size % sizeof(debug_directory) != 0)
605*2da433eaSReid Kleckner     return object_error::parse_failed;
606*2da433eaSReid Kleckner 
607*2da433eaSReid Kleckner   uintptr_t IntPtr = 0;
608*2da433eaSReid Kleckner   if (std::error_code EC = getRvaPtr(DataEntry->RelativeVirtualAddress, IntPtr))
609*2da433eaSReid Kleckner     return EC;
610*2da433eaSReid Kleckner   DebugDirectoryBegin = reinterpret_cast<const debug_directory *>(IntPtr);
611*2da433eaSReid Kleckner   if (std::error_code EC = getRvaPtr(
612*2da433eaSReid Kleckner           DataEntry->RelativeVirtualAddress + DataEntry->Size, IntPtr))
613*2da433eaSReid Kleckner     return EC;
614*2da433eaSReid Kleckner   DebugDirectoryEnd = reinterpret_cast<const debug_directory *>(IntPtr);
615*2da433eaSReid Kleckner   return std::error_code();
616*2da433eaSReid Kleckner }
617*2da433eaSReid Kleckner 
61848af1c2aSRafael Espindola COFFObjectFile::COFFObjectFile(MemoryBufferRef Object, std::error_code &EC)
61948af1c2aSRafael Espindola     : ObjectFile(Binary::ID_COFF, Object), COFFHeader(nullptr),
62044f51e51SDavid Majnemer       COFFBigObjHeader(nullptr), PE32Header(nullptr), PE32PlusHeader(nullptr),
62144f51e51SDavid Majnemer       DataDirectory(nullptr), SectionTable(nullptr), SymbolTable16(nullptr),
62244f51e51SDavid Majnemer       SymbolTable32(nullptr), StringTable(nullptr), StringTableSize(0),
62344f51e51SDavid Majnemer       ImportDirectory(nullptr), NumberOfImportDirectory(0),
62415d99359SRui Ueyama       DelayImportDirectory(nullptr), NumberOfDelayImportDirectory(0),
625*2da433eaSReid Kleckner       ExportDirectory(nullptr), BaseRelocHeader(nullptr), BaseRelocEnd(nullptr),
626*2da433eaSReid Kleckner       DebugDirectoryBegin(nullptr), DebugDirectoryEnd(nullptr) {
6271d6167fdSMichael J. Spencer   // Check that we at least have enough room for a header.
62848af1c2aSRafael Espindola   if (!checkSize(Data, EC, sizeof(coff_file_header)))
629c3f9b5a5SRafael Espindola     return;
630ee066fc4SEric Christopher 
63182ebd8e3SRui Ueyama   // The current location in the file where we are looking at.
63282ebd8e3SRui Ueyama   uint64_t CurPtr = 0;
63382ebd8e3SRui Ueyama 
63482ebd8e3SRui Ueyama   // PE header is optional and is present only in executables. If it exists,
63582ebd8e3SRui Ueyama   // it is placed right after COFF header.
6368ff24d25SRui Ueyama   bool HasPEHeader = false;
637ee066fc4SEric Christopher 
6381d6167fdSMichael J. Spencer   // Check if this is a PE/COFF file.
63950267222SDavid Majnemer   if (checkSize(Data, EC, sizeof(dos_header) + sizeof(COFF::PEMagic))) {
640ee066fc4SEric Christopher     // PE/COFF, seek through MS-DOS compatibility stub and 4-byte
641ee066fc4SEric Christopher     // PE signature to find 'normal' COFF header.
64250267222SDavid Majnemer     const auto *DH = reinterpret_cast<const dos_header *>(base());
64350267222SDavid Majnemer     if (DH->Magic[0] == 'M' && DH->Magic[1] == 'Z') {
64450267222SDavid Majnemer       CurPtr = DH->AddressOfNewExeHeader;
64582ebd8e3SRui Ueyama       // Check the PE magic bytes. ("PE\0\0")
64650267222SDavid Majnemer       if (memcmp(base() + CurPtr, COFF::PEMagic, sizeof(COFF::PEMagic)) != 0) {
6478ff24d25SRui Ueyama         EC = object_error::parse_failed;
6481d6167fdSMichael J. Spencer         return;
6491d6167fdSMichael J. Spencer       }
65044f51e51SDavid Majnemer       CurPtr += sizeof(COFF::PEMagic); // Skip the PE magic bytes.
6518ff24d25SRui Ueyama       HasPEHeader = true;
652ee066fc4SEric Christopher     }
65350267222SDavid Majnemer   }
654ee066fc4SEric Christopher 
65548af1c2aSRafael Espindola   if ((EC = getObject(COFFHeader, Data, base() + CurPtr)))
6561d6167fdSMichael J. Spencer     return;
65744f51e51SDavid Majnemer 
65844f51e51SDavid Majnemer   // It might be a bigobj file, let's check.  Note that COFF bigobj and COFF
65944f51e51SDavid Majnemer   // import libraries share a common prefix but bigobj is more restrictive.
66044f51e51SDavid Majnemer   if (!HasPEHeader && COFFHeader->Machine == COFF::IMAGE_FILE_MACHINE_UNKNOWN &&
66144f51e51SDavid Majnemer       COFFHeader->NumberOfSections == uint16_t(0xffff) &&
66244f51e51SDavid Majnemer       checkSize(Data, EC, sizeof(coff_bigobj_file_header))) {
66344f51e51SDavid Majnemer     if ((EC = getObject(COFFBigObjHeader, Data, base() + CurPtr)))
66444f51e51SDavid Majnemer       return;
66544f51e51SDavid Majnemer 
66644f51e51SDavid Majnemer     // Verify that we are dealing with bigobj.
66744f51e51SDavid Majnemer     if (COFFBigObjHeader->Version >= COFF::BigObjHeader::MinBigObjectVersion &&
66844f51e51SDavid Majnemer         std::memcmp(COFFBigObjHeader->UUID, COFF::BigObjMagic,
66944f51e51SDavid Majnemer                     sizeof(COFF::BigObjMagic)) == 0) {
67044f51e51SDavid Majnemer       COFFHeader = nullptr;
67144f51e51SDavid Majnemer       CurPtr += sizeof(coff_bigobj_file_header);
67244f51e51SDavid Majnemer     } else {
67344f51e51SDavid Majnemer       // It's not a bigobj.
67444f51e51SDavid Majnemer       COFFBigObjHeader = nullptr;
67544f51e51SDavid Majnemer     }
67644f51e51SDavid Majnemer   }
67744f51e51SDavid Majnemer   if (COFFHeader) {
67844f51e51SDavid Majnemer     // The prior checkSize call may have failed.  This isn't a hard error
67944f51e51SDavid Majnemer     // because we were just trying to sniff out bigobj.
6807d099195SRui Ueyama     EC = std::error_code();
68182ebd8e3SRui Ueyama     CurPtr += sizeof(coff_file_header);
68282ebd8e3SRui Ueyama 
68344f51e51SDavid Majnemer     if (COFFHeader->isImportLibrary())
68444f51e51SDavid Majnemer       return;
68544f51e51SDavid Majnemer   }
68644f51e51SDavid Majnemer 
6878ff24d25SRui Ueyama   if (HasPEHeader) {
68810ed9ddcSRui Ueyama     const pe32_header *Header;
68948af1c2aSRafael Espindola     if ((EC = getObject(Header, Data, base() + CurPtr)))
69082ebd8e3SRui Ueyama       return;
69110ed9ddcSRui Ueyama 
69210ed9ddcSRui Ueyama     const uint8_t *DataDirAddr;
69310ed9ddcSRui Ueyama     uint64_t DataDirSize;
69450267222SDavid Majnemer     if (Header->Magic == COFF::PE32Header::PE32) {
69510ed9ddcSRui Ueyama       PE32Header = Header;
69610ed9ddcSRui Ueyama       DataDirAddr = base() + CurPtr + sizeof(pe32_header);
69710ed9ddcSRui Ueyama       DataDirSize = sizeof(data_directory) * PE32Header->NumberOfRvaAndSize;
69850267222SDavid Majnemer     } else if (Header->Magic == COFF::PE32Header::PE32_PLUS) {
69910ed9ddcSRui Ueyama       PE32PlusHeader = reinterpret_cast<const pe32plus_header *>(Header);
70010ed9ddcSRui Ueyama       DataDirAddr = base() + CurPtr + sizeof(pe32plus_header);
70110ed9ddcSRui Ueyama       DataDirSize = sizeof(data_directory) * PE32PlusHeader->NumberOfRvaAndSize;
70210ed9ddcSRui Ueyama     } else {
70310ed9ddcSRui Ueyama       // It's neither PE32 nor PE32+.
70410ed9ddcSRui Ueyama       EC = object_error::parse_failed;
705ed64342bSRui Ueyama       return;
706ed64342bSRui Ueyama     }
70748af1c2aSRafael Espindola     if ((EC = getObject(DataDirectory, Data, DataDirAddr, DataDirSize)))
70810ed9ddcSRui Ueyama       return;
70982ebd8e3SRui Ueyama     CurPtr += COFFHeader->SizeOfOptionalHeader;
71082ebd8e3SRui Ueyama   }
7111d6167fdSMichael J. Spencer 
71248af1c2aSRafael Espindola   if ((EC = getObject(SectionTable, Data, base() + CurPtr,
713236b0ca7SDavid Majnemer                       (uint64_t)getNumberOfSections() * sizeof(coff_section))))
7141d6167fdSMichael J. Spencer     return;
7151d6167fdSMichael J. Spencer 
716c2bed429SRui Ueyama   // Initialize the pointer to the symbol table.
717236b0ca7SDavid Majnemer   if (getPointerToSymbolTable() != 0) {
7188ff24d25SRui Ueyama     if ((EC = initSymbolTablePtr()))
7191d6167fdSMichael J. Spencer       return;
720236b0ca7SDavid Majnemer   } else {
721236b0ca7SDavid Majnemer     // We had better not have any symbols if we don't have a symbol table.
722236b0ca7SDavid Majnemer     if (getNumberOfSymbols() != 0) {
723236b0ca7SDavid Majnemer       EC = object_error::parse_failed;
724236b0ca7SDavid Majnemer       return;
725236b0ca7SDavid Majnemer     }
726236b0ca7SDavid Majnemer   }
7278e90adafSMichael J. Spencer 
728c2bed429SRui Ueyama   // Initialize the pointer to the beginning of the import table.
7298ff24d25SRui Ueyama   if ((EC = initImportTablePtr()))
730ed64342bSRui Ueyama     return;
73115d99359SRui Ueyama   if ((EC = initDelayImportTablePtr()))
73215d99359SRui Ueyama     return;
7331d6167fdSMichael J. Spencer 
734ad882ba8SRui Ueyama   // Initialize the pointer to the export table.
7358ff24d25SRui Ueyama   if ((EC = initExportTablePtr()))
736ad882ba8SRui Ueyama     return;
737ad882ba8SRui Ueyama 
73874e85130SRui Ueyama   // Initialize the pointer to the base relocation table.
73974e85130SRui Ueyama   if ((EC = initBaseRelocPtr()))
74074e85130SRui Ueyama     return;
74174e85130SRui Ueyama 
742*2da433eaSReid Kleckner   // Initialize the pointer to the export table.
743*2da433eaSReid Kleckner   if ((EC = initDebugDirectoryPtr()))
744*2da433eaSReid Kleckner     return;
745*2da433eaSReid Kleckner 
7467d099195SRui Ueyama   EC = std::error_code();
7478e90adafSMichael J. Spencer }
7488e90adafSMichael J. Spencer 
749f12b8282SRafael Espindola basic_symbol_iterator COFFObjectFile::symbol_begin_impl() const {
7508ff24d25SRui Ueyama   DataRefImpl Ret;
75144f51e51SDavid Majnemer   Ret.p = getSymbolTable();
752f12b8282SRafael Espindola   return basic_symbol_iterator(SymbolRef(Ret, this));
7538e90adafSMichael J. Spencer }
7548e90adafSMichael J. Spencer 
755f12b8282SRafael Espindola basic_symbol_iterator COFFObjectFile::symbol_end_impl() const {
7568e90adafSMichael J. Spencer   // The symbol table ends where the string table begins.
7578ff24d25SRui Ueyama   DataRefImpl Ret;
7588ff24d25SRui Ueyama   Ret.p = reinterpret_cast<uintptr_t>(StringTable);
759f12b8282SRafael Espindola   return basic_symbol_iterator(SymbolRef(Ret, this));
7608e90adafSMichael J. Spencer }
7618e90adafSMichael J. Spencer 
762bc654b18SRui Ueyama import_directory_iterator COFFObjectFile::import_directory_begin() const {
763a045b73aSRui Ueyama   return import_directory_iterator(
764a045b73aSRui Ueyama       ImportDirectoryEntryRef(ImportDirectory, 0, this));
765c2bed429SRui Ueyama }
766c2bed429SRui Ueyama 
767bc654b18SRui Ueyama import_directory_iterator COFFObjectFile::import_directory_end() const {
768a045b73aSRui Ueyama   return import_directory_iterator(
769a045b73aSRui Ueyama       ImportDirectoryEntryRef(ImportDirectory, NumberOfImportDirectory, this));
770c2bed429SRui Ueyama }
771c429b80dSDavid Meyer 
77215d99359SRui Ueyama delay_import_directory_iterator
77315d99359SRui Ueyama COFFObjectFile::delay_import_directory_begin() const {
77415d99359SRui Ueyama   return delay_import_directory_iterator(
77515d99359SRui Ueyama       DelayImportDirectoryEntryRef(DelayImportDirectory, 0, this));
77615d99359SRui Ueyama }
77715d99359SRui Ueyama 
77815d99359SRui Ueyama delay_import_directory_iterator
77915d99359SRui Ueyama COFFObjectFile::delay_import_directory_end() const {
78015d99359SRui Ueyama   return delay_import_directory_iterator(
78115d99359SRui Ueyama       DelayImportDirectoryEntryRef(
78215d99359SRui Ueyama           DelayImportDirectory, NumberOfDelayImportDirectory, this));
78315d99359SRui Ueyama }
78415d99359SRui Ueyama 
785ad882ba8SRui Ueyama export_directory_iterator COFFObjectFile::export_directory_begin() const {
786ad882ba8SRui Ueyama   return export_directory_iterator(
787ad882ba8SRui Ueyama       ExportDirectoryEntryRef(ExportDirectory, 0, this));
788ad882ba8SRui Ueyama }
789ad882ba8SRui Ueyama 
790ad882ba8SRui Ueyama export_directory_iterator COFFObjectFile::export_directory_end() const {
7912617dcceSCraig Topper   if (!ExportDirectory)
7922617dcceSCraig Topper     return export_directory_iterator(ExportDirectoryEntryRef(nullptr, 0, this));
7938ff24d25SRui Ueyama   ExportDirectoryEntryRef Ref(ExportDirectory,
794ad882ba8SRui Ueyama                               ExportDirectory->AddressTableEntries, this);
7958ff24d25SRui Ueyama   return export_directory_iterator(Ref);
796ad882ba8SRui Ueyama }
797ad882ba8SRui Ueyama 
798b5155a57SRafael Espindola section_iterator COFFObjectFile::section_begin() const {
7998ff24d25SRui Ueyama   DataRefImpl Ret;
8008ff24d25SRui Ueyama   Ret.p = reinterpret_cast<uintptr_t>(SectionTable);
8018ff24d25SRui Ueyama   return section_iterator(SectionRef(Ret, this));
8028e90adafSMichael J. Spencer }
8038e90adafSMichael J. Spencer 
804b5155a57SRafael Espindola section_iterator COFFObjectFile::section_end() const {
8058ff24d25SRui Ueyama   DataRefImpl Ret;
80644f51e51SDavid Majnemer   int NumSections =
80744f51e51SDavid Majnemer       COFFHeader && COFFHeader->isImportLibrary() ? 0 : getNumberOfSections();
8088ff24d25SRui Ueyama   Ret.p = reinterpret_cast<uintptr_t>(SectionTable + NumSections);
8098ff24d25SRui Ueyama   return section_iterator(SectionRef(Ret, this));
8108e90adafSMichael J. Spencer }
8118e90adafSMichael J. Spencer 
81274e85130SRui Ueyama base_reloc_iterator COFFObjectFile::base_reloc_begin() const {
81374e85130SRui Ueyama   return base_reloc_iterator(BaseRelocRef(BaseRelocHeader, this));
81474e85130SRui Ueyama }
81574e85130SRui Ueyama 
81674e85130SRui Ueyama base_reloc_iterator COFFObjectFile::base_reloc_end() const {
81774e85130SRui Ueyama   return base_reloc_iterator(BaseRelocRef(BaseRelocEnd, this));
81874e85130SRui Ueyama }
81974e85130SRui Ueyama 
8208e90adafSMichael J. Spencer uint8_t COFFObjectFile::getBytesInAddress() const {
8210324b672SMichael J. Spencer   return getArch() == Triple::x86_64 ? 8 : 4;
8228e90adafSMichael J. Spencer }
8238e90adafSMichael J. Spencer 
8248e90adafSMichael J. Spencer StringRef COFFObjectFile::getFileFormatName() const {
82544f51e51SDavid Majnemer   switch(getMachine()) {
8268e90adafSMichael J. Spencer   case COFF::IMAGE_FILE_MACHINE_I386:
8278e90adafSMichael J. Spencer     return "COFF-i386";
8288e90adafSMichael J. Spencer   case COFF::IMAGE_FILE_MACHINE_AMD64:
8298e90adafSMichael J. Spencer     return "COFF-x86-64";
8309b7c0af2SSaleem Abdulrasool   case COFF::IMAGE_FILE_MACHINE_ARMNT:
8319b7c0af2SSaleem Abdulrasool     return "COFF-ARM";
8321eff5c9cSMartell Malone   case COFF::IMAGE_FILE_MACHINE_ARM64:
8331eff5c9cSMartell Malone     return "COFF-ARM64";
8348e90adafSMichael J. Spencer   default:
8358e90adafSMichael J. Spencer     return "COFF-<unknown arch>";
8368e90adafSMichael J. Spencer   }
8378e90adafSMichael J. Spencer }
8388e90adafSMichael J. Spencer 
8398e90adafSMichael J. Spencer unsigned COFFObjectFile::getArch() const {
84044f51e51SDavid Majnemer   switch (getMachine()) {
8418e90adafSMichael J. Spencer   case COFF::IMAGE_FILE_MACHINE_I386:
8428e90adafSMichael J. Spencer     return Triple::x86;
8438e90adafSMichael J. Spencer   case COFF::IMAGE_FILE_MACHINE_AMD64:
8448e90adafSMichael J. Spencer     return Triple::x86_64;
8459b7c0af2SSaleem Abdulrasool   case COFF::IMAGE_FILE_MACHINE_ARMNT:
8469b7c0af2SSaleem Abdulrasool     return Triple::thumb;
8471eff5c9cSMartell Malone   case COFF::IMAGE_FILE_MACHINE_ARM64:
8481eff5c9cSMartell Malone     return Triple::aarch64;
8498e90adafSMichael J. Spencer   default:
8508e90adafSMichael J. Spencer     return Triple::UnknownArch;
8518e90adafSMichael J. Spencer   }
8528e90adafSMichael J. Spencer }
8538e90adafSMichael J. Spencer 
854979fb40bSRui Ueyama iterator_range<import_directory_iterator>
855979fb40bSRui Ueyama COFFObjectFile::import_directories() const {
856979fb40bSRui Ueyama   return make_range(import_directory_begin(), import_directory_end());
857979fb40bSRui Ueyama }
858979fb40bSRui Ueyama 
859979fb40bSRui Ueyama iterator_range<delay_import_directory_iterator>
860979fb40bSRui Ueyama COFFObjectFile::delay_import_directories() const {
861979fb40bSRui Ueyama   return make_range(delay_import_directory_begin(),
862979fb40bSRui Ueyama                     delay_import_directory_end());
863979fb40bSRui Ueyama }
864979fb40bSRui Ueyama 
865979fb40bSRui Ueyama iterator_range<export_directory_iterator>
866979fb40bSRui Ueyama COFFObjectFile::export_directories() const {
867979fb40bSRui Ueyama   return make_range(export_directory_begin(), export_directory_end());
868979fb40bSRui Ueyama }
869979fb40bSRui Ueyama 
87074e85130SRui Ueyama iterator_range<base_reloc_iterator> COFFObjectFile::base_relocs() const {
87174e85130SRui Ueyama   return make_range(base_reloc_begin(), base_reloc_end());
87274e85130SRui Ueyama }
87374e85130SRui Ueyama 
874db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getPE32Header(const pe32_header *&Res) const {
87582ebd8e3SRui Ueyama   Res = PE32Header;
8767d099195SRui Ueyama   return std::error_code();
87789a7a5eaSMichael J. Spencer }
87889a7a5eaSMichael J. Spencer 
879db4ed0bdSRafael Espindola std::error_code
88010ed9ddcSRui Ueyama COFFObjectFile::getPE32PlusHeader(const pe32plus_header *&Res) const {
88110ed9ddcSRui Ueyama   Res = PE32PlusHeader;
8827d099195SRui Ueyama   return std::error_code();
88310ed9ddcSRui Ueyama }
88410ed9ddcSRui Ueyama 
885db4ed0bdSRafael Espindola std::error_code
886db4ed0bdSRafael Espindola COFFObjectFile::getDataDirectory(uint32_t Index,
887ed64342bSRui Ueyama                                  const data_directory *&Res) const {
888ed64342bSRui Ueyama   // Error if if there's no data directory or the index is out of range.
889f69b0585SDavid Majnemer   if (!DataDirectory) {
890f69b0585SDavid Majnemer     Res = nullptr;
89110ed9ddcSRui Ueyama     return object_error::parse_failed;
892f69b0585SDavid Majnemer   }
89310ed9ddcSRui Ueyama   assert(PE32Header || PE32PlusHeader);
89410ed9ddcSRui Ueyama   uint32_t NumEnt = PE32Header ? PE32Header->NumberOfRvaAndSize
89510ed9ddcSRui Ueyama                                : PE32PlusHeader->NumberOfRvaAndSize;
896f69b0585SDavid Majnemer   if (Index >= NumEnt) {
897f69b0585SDavid Majnemer     Res = nullptr;
898ed64342bSRui Ueyama     return object_error::parse_failed;
899f69b0585SDavid Majnemer   }
9008ff24d25SRui Ueyama   Res = &DataDirectory[Index];
9017d099195SRui Ueyama   return std::error_code();
902ed64342bSRui Ueyama }
903ed64342bSRui Ueyama 
904db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getSection(int32_t Index,
9051d6167fdSMichael J. Spencer                                            const coff_section *&Result) const {
9062617dcceSCraig Topper   Result = nullptr;
907236b0ca7SDavid Majnemer   if (COFF::isReservedSectionNumber(Index))
9087d099195SRui Ueyama     return std::error_code();
909236b0ca7SDavid Majnemer   if (static_cast<uint32_t>(Index) <= getNumberOfSections()) {
9101d6167fdSMichael J. Spencer     // We already verified the section table data, so no need to check again.
9118ff24d25SRui Ueyama     Result = SectionTable + (Index - 1);
9127d099195SRui Ueyama     return std::error_code();
9138e90adafSMichael J. Spencer   }
914236b0ca7SDavid Majnemer   return object_error::parse_failed;
915236b0ca7SDavid Majnemer }
9168e90adafSMichael J. Spencer 
917db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getString(uint32_t Offset,
9181d6167fdSMichael J. Spencer                                           StringRef &Result) const {
9191d6167fdSMichael J. Spencer   if (StringTableSize <= 4)
9201d6167fdSMichael J. Spencer     // Tried to get a string from an empty string table.
9211d6167fdSMichael J. Spencer     return object_error::parse_failed;
9228ff24d25SRui Ueyama   if (Offset >= StringTableSize)
9231d6167fdSMichael J. Spencer     return object_error::unexpected_eof;
9248ff24d25SRui Ueyama   Result = StringRef(StringTable + Offset);
9257d099195SRui Ueyama   return std::error_code();
9268e90adafSMichael J. Spencer }
927022ecdf2SBenjamin Kramer 
92844f51e51SDavid Majnemer std::error_code COFFObjectFile::getSymbolName(COFFSymbolRef Symbol,
92989a7a5eaSMichael J. Spencer                                               StringRef &Res) const {
930e40d30f3SRui Ueyama   return getSymbolName(Symbol.getGeneric(), Res);
931e40d30f3SRui Ueyama }
932e40d30f3SRui Ueyama 
933e40d30f3SRui Ueyama std::error_code COFFObjectFile::getSymbolName(const coff_symbol_generic *Symbol,
934e40d30f3SRui Ueyama                                               StringRef &Res) const {
93589a7a5eaSMichael J. Spencer   // Check for string table entry. First 4 bytes are 0.
936e40d30f3SRui Ueyama   if (Symbol->Name.Offset.Zeroes == 0) {
937e40d30f3SRui Ueyama     if (std::error_code EC = getString(Symbol->Name.Offset.Offset, Res))
9388ff24d25SRui Ueyama       return EC;
9397d099195SRui Ueyama     return std::error_code();
94089a7a5eaSMichael J. Spencer   }
94189a7a5eaSMichael J. Spencer 
942e40d30f3SRui Ueyama   if (Symbol->Name.ShortName[COFF::NameSize - 1] == 0)
94389a7a5eaSMichael J. Spencer     // Null terminated, let ::strlen figure out the length.
944e40d30f3SRui Ueyama     Res = StringRef(Symbol->Name.ShortName);
94589a7a5eaSMichael J. Spencer   else
94689a7a5eaSMichael J. Spencer     // Not null terminated, use all 8 bytes.
947e40d30f3SRui Ueyama     Res = StringRef(Symbol->Name.ShortName, COFF::NameSize);
9487d099195SRui Ueyama   return std::error_code();
94989a7a5eaSMichael J. Spencer }
95089a7a5eaSMichael J. Spencer 
95144f51e51SDavid Majnemer ArrayRef<uint8_t>
95244f51e51SDavid Majnemer COFFObjectFile::getSymbolAuxData(COFFSymbolRef Symbol) const {
9532617dcceSCraig Topper   const uint8_t *Aux = nullptr;
95471757ef3SMarshall Clow 
95544f51e51SDavid Majnemer   size_t SymbolSize = getSymbolTableEntrySize();
95644f51e51SDavid Majnemer   if (Symbol.getNumberOfAuxSymbols() > 0) {
95771757ef3SMarshall Clow     // AUX data comes immediately after the symbol in COFF
95844f51e51SDavid Majnemer     Aux = reinterpret_cast<const uint8_t *>(Symbol.getRawPtr()) + SymbolSize;
95971757ef3SMarshall Clow # ifndef NDEBUG
9608ff24d25SRui Ueyama     // Verify that the Aux symbol points to a valid entry in the symbol table.
9618ff24d25SRui Ueyama     uintptr_t Offset = uintptr_t(Aux) - uintptr_t(base());
96244f51e51SDavid Majnemer     if (Offset < getPointerToSymbolTable() ||
96344f51e51SDavid Majnemer         Offset >=
96444f51e51SDavid Majnemer             getPointerToSymbolTable() + (getNumberOfSymbols() * SymbolSize))
96571757ef3SMarshall Clow       report_fatal_error("Aux Symbol data was outside of symbol table.");
96671757ef3SMarshall Clow 
96744f51e51SDavid Majnemer     assert((Offset - getPointerToSymbolTable()) % SymbolSize == 0 &&
96844f51e51SDavid Majnemer            "Aux Symbol data did not point to the beginning of a symbol");
96971757ef3SMarshall Clow # endif
970bfb85e67SMarshall Clow   }
97144f51e51SDavid Majnemer   return makeArrayRef(Aux, Symbol.getNumberOfAuxSymbols() * SymbolSize);
97271757ef3SMarshall Clow }
97371757ef3SMarshall Clow 
974db4ed0bdSRafael Espindola std::error_code COFFObjectFile::getSectionName(const coff_section *Sec,
97553c2d547SMichael J. Spencer                                                StringRef &Res) const {
97653c2d547SMichael J. Spencer   StringRef Name;
97744f51e51SDavid Majnemer   if (Sec->Name[COFF::NameSize - 1] == 0)
97853c2d547SMichael J. Spencer     // Null terminated, let ::strlen figure out the length.
97953c2d547SMichael J. Spencer     Name = Sec->Name;
98053c2d547SMichael J. Spencer   else
98153c2d547SMichael J. Spencer     // Not null terminated, use all 8 bytes.
98244f51e51SDavid Majnemer     Name = StringRef(Sec->Name, COFF::NameSize);
98353c2d547SMichael J. Spencer 
98453c2d547SMichael J. Spencer   // Check for string table entry. First byte is '/'.
9852314b3deSDavid Majnemer   if (Name.startswith("/")) {
98653c2d547SMichael J. Spencer     uint32_t Offset;
9872314b3deSDavid Majnemer     if (Name.startswith("//")) {
9889d2c15efSNico Rieck       if (decodeBase64StringEntry(Name.substr(2), Offset))
9899d2c15efSNico Rieck         return object_error::parse_failed;
9909d2c15efSNico Rieck     } else {
99153c2d547SMichael J. Spencer       if (Name.substr(1).getAsInteger(10, Offset))
99253c2d547SMichael J. Spencer         return object_error::parse_failed;
9939d2c15efSNico Rieck     }
994db4ed0bdSRafael Espindola     if (std::error_code EC = getString(Offset, Name))
9958ff24d25SRui Ueyama       return EC;
99653c2d547SMichael J. Spencer   }
99753c2d547SMichael J. Spencer 
99853c2d547SMichael J. Spencer   Res = Name;
9997d099195SRui Ueyama   return std::error_code();
100053c2d547SMichael J. Spencer }
100153c2d547SMichael J. Spencer 
1002a9ee5c06SDavid Majnemer uint64_t COFFObjectFile::getSectionSize(const coff_section *Sec) const {
1003a9ee5c06SDavid Majnemer   // SizeOfRawData and VirtualSize change what they represent depending on
1004a9ee5c06SDavid Majnemer   // whether or not we have an executable image.
1005a9ee5c06SDavid Majnemer   //
1006a9ee5c06SDavid Majnemer   // For object files, SizeOfRawData contains the size of section's data;
1007d5297ee7SRui Ueyama   // VirtualSize should be zero but isn't due to buggy COFF writers.
1008a9ee5c06SDavid Majnemer   //
1009a9ee5c06SDavid Majnemer   // For executables, SizeOfRawData *must* be a multiple of FileAlignment; the
1010a9ee5c06SDavid Majnemer   // actual section size is in VirtualSize.  It is possible for VirtualSize to
1011a9ee5c06SDavid Majnemer   // be greater than SizeOfRawData; the contents past that point should be
1012a9ee5c06SDavid Majnemer   // considered to be zero.
1013d5297ee7SRui Ueyama   if (getDOSHeader())
1014d5297ee7SRui Ueyama     return std::min(Sec->VirtualSize, Sec->SizeOfRawData);
1015d5297ee7SRui Ueyama   return Sec->SizeOfRawData;
1016a9ee5c06SDavid Majnemer }
1017a9ee5c06SDavid Majnemer 
1018db4ed0bdSRafael Espindola std::error_code
1019db4ed0bdSRafael Espindola COFFObjectFile::getSectionContents(const coff_section *Sec,
10209da9e693SMichael J. Spencer                                    ArrayRef<uint8_t> &Res) const {
1021e2129662SDavid Majnemer   // In COFF, a virtual section won't have any in-file
1022e2129662SDavid Majnemer   // content, so the file pointer to the content will be zero.
1023e2129662SDavid Majnemer   if (Sec->PointerToRawData == 0)
1024e2129662SDavid Majnemer     return object_error::parse_failed;
10259da9e693SMichael J. Spencer   // The only thing that we need to verify is that the contents is contained
10269da9e693SMichael J. Spencer   // within the file bounds. We don't need to make sure it doesn't cover other
10279da9e693SMichael J. Spencer   // data, as there's nothing that says that is not allowed.
10289da9e693SMichael J. Spencer   uintptr_t ConStart = uintptr_t(base()) + Sec->PointerToRawData;
1029a9ee5c06SDavid Majnemer   uint32_t SectionSize = getSectionSize(Sec);
1030e830c60dSDavid Majnemer   if (checkOffset(Data, ConStart, SectionSize))
10319da9e693SMichael J. Spencer     return object_error::parse_failed;
1032a9ee5c06SDavid Majnemer   Res = makeArrayRef(reinterpret_cast<const uint8_t *>(ConStart), SectionSize);
10337d099195SRui Ueyama   return std::error_code();
10349da9e693SMichael J. Spencer }
10359da9e693SMichael J. Spencer 
1036022ecdf2SBenjamin Kramer const coff_relocation *COFFObjectFile::toRel(DataRefImpl Rel) const {
1037e5fd0047SMichael J. Spencer   return reinterpret_cast<const coff_relocation*>(Rel.p);
1038022ecdf2SBenjamin Kramer }
10398ff24d25SRui Ueyama 
10405e812afaSRafael Espindola void COFFObjectFile::moveRelocationNext(DataRefImpl &Rel) const {
1041e5fd0047SMichael J. Spencer   Rel.p = reinterpret_cast<uintptr_t>(
1042e5fd0047SMichael J. Spencer             reinterpret_cast<const coff_relocation*>(Rel.p) + 1);
1043022ecdf2SBenjamin Kramer }
10448ff24d25SRui Ueyama 
104596d071cdSRafael Espindola uint64_t COFFObjectFile::getRelocationOffset(DataRefImpl Rel) const {
104658323a97SDavid Majnemer   const coff_relocation *R = toRel(Rel);
104796d071cdSRafael Espindola   return R->VirtualAddress;
1048cbe72fc9SDanil Malyshev }
10498ff24d25SRui Ueyama 
1050806f0064SRafael Espindola symbol_iterator COFFObjectFile::getRelocationSymbol(DataRefImpl Rel) const {
1051022ecdf2SBenjamin Kramer   const coff_relocation *R = toRel(Rel);
10528ff24d25SRui Ueyama   DataRefImpl Ref;
1053236b0ca7SDavid Majnemer   if (R->SymbolTableIndex >= getNumberOfSymbols())
1054236b0ca7SDavid Majnemer     return symbol_end();
105544f51e51SDavid Majnemer   if (SymbolTable16)
105644f51e51SDavid Majnemer     Ref.p = reinterpret_cast<uintptr_t>(SymbolTable16 + R->SymbolTableIndex);
105744f51e51SDavid Majnemer   else if (SymbolTable32)
105844f51e51SDavid Majnemer     Ref.p = reinterpret_cast<uintptr_t>(SymbolTable32 + R->SymbolTableIndex);
105944f51e51SDavid Majnemer   else
1060c7353b58SDavid Majnemer     llvm_unreachable("no symbol table pointer!");
10618ff24d25SRui Ueyama   return symbol_iterator(SymbolRef(Ref, this));
1062022ecdf2SBenjamin Kramer }
10638ff24d25SRui Ueyama 
106499c041b7SRafael Espindola uint64_t COFFObjectFile::getRelocationType(DataRefImpl Rel) const {
1065022ecdf2SBenjamin Kramer   const coff_relocation* R = toRel(Rel);
106699c041b7SRafael Espindola   return R->Type;
1067022ecdf2SBenjamin Kramer }
1068e5fd0047SMichael J. Spencer 
106927dc8394SAlexey Samsonov const coff_section *
107027dc8394SAlexey Samsonov COFFObjectFile::getCOFFSection(const SectionRef &Section) const {
107127dc8394SAlexey Samsonov   return toSec(Section.getRawDataRefImpl());
107271757ef3SMarshall Clow }
107371757ef3SMarshall Clow 
107444f51e51SDavid Majnemer COFFSymbolRef COFFObjectFile::getCOFFSymbol(const DataRefImpl &Ref) const {
107544f51e51SDavid Majnemer   if (SymbolTable16)
107644f51e51SDavid Majnemer     return toSymb<coff_symbol16>(Ref);
107744f51e51SDavid Majnemer   if (SymbolTable32)
107844f51e51SDavid Majnemer     return toSymb<coff_symbol32>(Ref);
107944f51e51SDavid Majnemer   llvm_unreachable("no symbol table pointer!");
108044f51e51SDavid Majnemer }
108144f51e51SDavid Majnemer 
108244f51e51SDavid Majnemer COFFSymbolRef COFFObjectFile::getCOFFSymbol(const SymbolRef &Symbol) const {
108344f51e51SDavid Majnemer   return getCOFFSymbol(Symbol.getRawDataRefImpl());
108471757ef3SMarshall Clow }
108571757ef3SMarshall Clow 
1086f12b8282SRafael Espindola const coff_relocation *
108727dc8394SAlexey Samsonov COFFObjectFile::getCOFFRelocation(const RelocationRef &Reloc) const {
108827dc8394SAlexey Samsonov   return toRel(Reloc.getRawDataRefImpl());
1089d3e2a76cSMarshall Clow }
1090d3e2a76cSMarshall Clow 
10916a75acb1SRui Ueyama iterator_range<const coff_relocation *>
10926a75acb1SRui Ueyama COFFObjectFile::getRelocations(const coff_section *Sec) const {
10936a75acb1SRui Ueyama   const coff_relocation *I = getFirstReloc(Sec, Data, base());
10946a75acb1SRui Ueyama   const coff_relocation *E = I;
10956a75acb1SRui Ueyama   if (I)
10966a75acb1SRui Ueyama     E += getNumberOfRelocations(Sec, Data, base());
10976a75acb1SRui Ueyama   return make_range(I, E);
10986a75acb1SRui Ueyama }
10996a75acb1SRui Ueyama 
110027dc8394SAlexey Samsonov #define LLVM_COFF_SWITCH_RELOC_TYPE_NAME(reloc_type)                           \
110127dc8394SAlexey Samsonov   case COFF::reloc_type:                                                       \
110227dc8394SAlexey Samsonov     Res = #reloc_type;                                                         \
110327dc8394SAlexey Samsonov     break;
1104e5fd0047SMichael J. Spencer 
110541bb4325SRafael Espindola void COFFObjectFile::getRelocationTypeName(
110641bb4325SRafael Espindola     DataRefImpl Rel, SmallVectorImpl<char> &Result) const {
11078ff24d25SRui Ueyama   const coff_relocation *Reloc = toRel(Rel);
11088ff24d25SRui Ueyama   StringRef Res;
110944f51e51SDavid Majnemer   switch (getMachine()) {
1110e5fd0047SMichael J. Spencer   case COFF::IMAGE_FILE_MACHINE_AMD64:
11118ff24d25SRui Ueyama     switch (Reloc->Type) {
1112e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ABSOLUTE);
1113e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ADDR64);
1114e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ADDR32);
1115e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_ADDR32NB);
1116e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32);
1117e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_1);
1118e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_2);
1119e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_3);
1120e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_4);
1121e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_REL32_5);
1122e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SECTION);
1123e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SECREL);
1124e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SECREL7);
1125e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_TOKEN);
1126e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SREL32);
1127e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_PAIR);
1128e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_AMD64_SSPAN32);
1129e5fd0047SMichael J. Spencer     default:
11308ff24d25SRui Ueyama       Res = "Unknown";
1131e5fd0047SMichael J. Spencer     }
1132e5fd0047SMichael J. Spencer     break;
11335c503bf4SSaleem Abdulrasool   case COFF::IMAGE_FILE_MACHINE_ARMNT:
11345c503bf4SSaleem Abdulrasool     switch (Reloc->Type) {
11355c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_ABSOLUTE);
11365c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_ADDR32);
11375c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_ADDR32NB);
11385c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_BRANCH24);
11395c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_BRANCH11);
11405c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_TOKEN);
11415c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_BLX24);
11425c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_BLX11);
11435c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_SECTION);
11445c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_SECREL);
11455c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_MOV32A);
11465c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_MOV32T);
11475c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_BRANCH20T);
11485c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_BRANCH24T);
11495c503bf4SSaleem Abdulrasool     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_ARM_BLX23T);
11505c503bf4SSaleem Abdulrasool     default:
11515c503bf4SSaleem Abdulrasool       Res = "Unknown";
11525c503bf4SSaleem Abdulrasool     }
11535c503bf4SSaleem Abdulrasool     break;
1154e5fd0047SMichael J. Spencer   case COFF::IMAGE_FILE_MACHINE_I386:
11558ff24d25SRui Ueyama     switch (Reloc->Type) {
1156e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_ABSOLUTE);
1157e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_DIR16);
1158e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_REL16);
1159e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_DIR32);
1160e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_DIR32NB);
1161e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SEG12);
1162e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SECTION);
1163e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SECREL);
1164e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_TOKEN);
1165e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_SECREL7);
1166e5fd0047SMichael J. Spencer     LLVM_COFF_SWITCH_RELOC_TYPE_NAME(IMAGE_REL_I386_REL32);
1167e5fd0047SMichael J. Spencer     default:
11688ff24d25SRui Ueyama       Res = "Unknown";
1169e5fd0047SMichael J. Spencer     }
1170e5fd0047SMichael J. Spencer     break;
1171e5fd0047SMichael J. Spencer   default:
11728ff24d25SRui Ueyama     Res = "Unknown";
1173e5fd0047SMichael J. Spencer   }
11748ff24d25SRui Ueyama   Result.append(Res.begin(), Res.end());
1175e5fd0047SMichael J. Spencer }
1176e5fd0047SMichael J. Spencer 
1177e5fd0047SMichael J. Spencer #undef LLVM_COFF_SWITCH_RELOC_TYPE_NAME
1178e5fd0047SMichael J. Spencer 
1179c66d761bSRafael Espindola bool COFFObjectFile::isRelocatableObject() const {
1180c66d761bSRafael Espindola   return !DataDirectory;
1181c66d761bSRafael Espindola }
1182c66d761bSRafael Espindola 
1183c2bed429SRui Ueyama bool ImportDirectoryEntryRef::
1184c2bed429SRui Ueyama operator==(const ImportDirectoryEntryRef &Other) const {
1185a045b73aSRui Ueyama   return ImportTable == Other.ImportTable && Index == Other.Index;
1186c2bed429SRui Ueyama }
1187c2bed429SRui Ueyama 
11885e812afaSRafael Espindola void ImportDirectoryEntryRef::moveNext() {
11895e812afaSRafael Espindola   ++Index;
1190c2bed429SRui Ueyama }
1191c2bed429SRui Ueyama 
1192db4ed0bdSRafael Espindola std::error_code ImportDirectoryEntryRef::getImportTableEntry(
1193db4ed0bdSRafael Espindola     const import_directory_table_entry *&Result) const {
11941e152d5eSRui Ueyama   Result = ImportTable + Index;
11957d099195SRui Ueyama   return std::error_code();
1196c2bed429SRui Ueyama }
1197c2bed429SRui Ueyama 
1198861021f9SRui Ueyama static imported_symbol_iterator
119915d99359SRui Ueyama makeImportedSymbolIterator(const COFFObjectFile *Object,
1200861021f9SRui Ueyama                            uintptr_t Ptr, int Index) {
120115d99359SRui Ueyama   if (Object->getBytesInAddress() == 4) {
1202861021f9SRui Ueyama     auto *P = reinterpret_cast<const import_lookup_table_entry32 *>(Ptr);
120315d99359SRui Ueyama     return imported_symbol_iterator(ImportedSymbolRef(P, Index, Object));
1204861021f9SRui Ueyama   }
1205861021f9SRui Ueyama   auto *P = reinterpret_cast<const import_lookup_table_entry64 *>(Ptr);
120615d99359SRui Ueyama   return imported_symbol_iterator(ImportedSymbolRef(P, Index, Object));
1207861021f9SRui Ueyama }
1208861021f9SRui Ueyama 
120915d99359SRui Ueyama static imported_symbol_iterator
121015d99359SRui Ueyama importedSymbolBegin(uint32_t RVA, const COFFObjectFile *Object) {
1211861021f9SRui Ueyama   uintptr_t IntPtr = 0;
121215d99359SRui Ueyama   Object->getRvaPtr(RVA, IntPtr);
121315d99359SRui Ueyama   return makeImportedSymbolIterator(Object, IntPtr, 0);
1214861021f9SRui Ueyama }
1215861021f9SRui Ueyama 
121615d99359SRui Ueyama static imported_symbol_iterator
121715d99359SRui Ueyama importedSymbolEnd(uint32_t RVA, const COFFObjectFile *Object) {
1218861021f9SRui Ueyama   uintptr_t IntPtr = 0;
121915d99359SRui Ueyama   Object->getRvaPtr(RVA, IntPtr);
1220861021f9SRui Ueyama   // Forward the pointer to the last entry which is null.
1221861021f9SRui Ueyama   int Index = 0;
122215d99359SRui Ueyama   if (Object->getBytesInAddress() == 4) {
1223861021f9SRui Ueyama     auto *Entry = reinterpret_cast<ulittle32_t *>(IntPtr);
1224861021f9SRui Ueyama     while (*Entry++)
1225861021f9SRui Ueyama       ++Index;
1226861021f9SRui Ueyama   } else {
1227861021f9SRui Ueyama     auto *Entry = reinterpret_cast<ulittle64_t *>(IntPtr);
1228861021f9SRui Ueyama     while (*Entry++)
1229861021f9SRui Ueyama       ++Index;
1230861021f9SRui Ueyama   }
123115d99359SRui Ueyama   return makeImportedSymbolIterator(Object, IntPtr, Index);
123215d99359SRui Ueyama }
123315d99359SRui Ueyama 
123415d99359SRui Ueyama imported_symbol_iterator
123515d99359SRui Ueyama ImportDirectoryEntryRef::imported_symbol_begin() const {
123615d99359SRui Ueyama   return importedSymbolBegin(ImportTable[Index].ImportLookupTableRVA,
123715d99359SRui Ueyama                              OwningObject);
123815d99359SRui Ueyama }
123915d99359SRui Ueyama 
124015d99359SRui Ueyama imported_symbol_iterator
124115d99359SRui Ueyama ImportDirectoryEntryRef::imported_symbol_end() const {
124215d99359SRui Ueyama   return importedSymbolEnd(ImportTable[Index].ImportLookupTableRVA,
124315d99359SRui Ueyama                            OwningObject);
1244861021f9SRui Ueyama }
1245861021f9SRui Ueyama 
1246979fb40bSRui Ueyama iterator_range<imported_symbol_iterator>
1247979fb40bSRui Ueyama ImportDirectoryEntryRef::imported_symbols() const {
1248979fb40bSRui Ueyama   return make_range(imported_symbol_begin(), imported_symbol_end());
1249979fb40bSRui Ueyama }
1250979fb40bSRui Ueyama 
1251db4ed0bdSRafael Espindola std::error_code ImportDirectoryEntryRef::getName(StringRef &Result) const {
1252c2bed429SRui Ueyama   uintptr_t IntPtr = 0;
1253db4ed0bdSRafael Espindola   if (std::error_code EC =
12541e152d5eSRui Ueyama           OwningObject->getRvaPtr(ImportTable[Index].NameRVA, IntPtr))
1255a045b73aSRui Ueyama     return EC;
1256a045b73aSRui Ueyama   Result = StringRef(reinterpret_cast<const char *>(IntPtr));
12577d099195SRui Ueyama   return std::error_code();
1258c2bed429SRui Ueyama }
1259c2bed429SRui Ueyama 
12601e152d5eSRui Ueyama std::error_code
12611e152d5eSRui Ueyama ImportDirectoryEntryRef::getImportLookupTableRVA(uint32_t  &Result) const {
12621e152d5eSRui Ueyama   Result = ImportTable[Index].ImportLookupTableRVA;
12637d099195SRui Ueyama   return std::error_code();
12641e152d5eSRui Ueyama }
12651e152d5eSRui Ueyama 
12661e152d5eSRui Ueyama std::error_code
12671e152d5eSRui Ueyama ImportDirectoryEntryRef::getImportAddressTableRVA(uint32_t &Result) const {
12681e152d5eSRui Ueyama   Result = ImportTable[Index].ImportAddressTableRVA;
12697d099195SRui Ueyama   return std::error_code();
12701e152d5eSRui Ueyama }
12711e152d5eSRui Ueyama 
1272db4ed0bdSRafael Espindola std::error_code ImportDirectoryEntryRef::getImportLookupEntry(
1273c2bed429SRui Ueyama     const import_lookup_table_entry32 *&Result) const {
1274c2bed429SRui Ueyama   uintptr_t IntPtr = 0;
12751e152d5eSRui Ueyama   uint32_t RVA = ImportTable[Index].ImportLookupTableRVA;
12761e152d5eSRui Ueyama   if (std::error_code EC = OwningObject->getRvaPtr(RVA, IntPtr))
1277a045b73aSRui Ueyama     return EC;
1278c2bed429SRui Ueyama   Result = reinterpret_cast<const import_lookup_table_entry32 *>(IntPtr);
12797d099195SRui Ueyama   return std::error_code();
1280c2bed429SRui Ueyama }
1281c2bed429SRui Ueyama 
128215d99359SRui Ueyama bool DelayImportDirectoryEntryRef::
128315d99359SRui Ueyama operator==(const DelayImportDirectoryEntryRef &Other) const {
128415d99359SRui Ueyama   return Table == Other.Table && Index == Other.Index;
128515d99359SRui Ueyama }
128615d99359SRui Ueyama 
128715d99359SRui Ueyama void DelayImportDirectoryEntryRef::moveNext() {
128815d99359SRui Ueyama   ++Index;
128915d99359SRui Ueyama }
129015d99359SRui Ueyama 
129115d99359SRui Ueyama imported_symbol_iterator
129215d99359SRui Ueyama DelayImportDirectoryEntryRef::imported_symbol_begin() const {
129315d99359SRui Ueyama   return importedSymbolBegin(Table[Index].DelayImportNameTable,
129415d99359SRui Ueyama                              OwningObject);
129515d99359SRui Ueyama }
129615d99359SRui Ueyama 
129715d99359SRui Ueyama imported_symbol_iterator
129815d99359SRui Ueyama DelayImportDirectoryEntryRef::imported_symbol_end() const {
129915d99359SRui Ueyama   return importedSymbolEnd(Table[Index].DelayImportNameTable,
130015d99359SRui Ueyama                            OwningObject);
130115d99359SRui Ueyama }
130215d99359SRui Ueyama 
1303979fb40bSRui Ueyama iterator_range<imported_symbol_iterator>
1304979fb40bSRui Ueyama DelayImportDirectoryEntryRef::imported_symbols() const {
1305979fb40bSRui Ueyama   return make_range(imported_symbol_begin(), imported_symbol_end());
1306979fb40bSRui Ueyama }
1307979fb40bSRui Ueyama 
130815d99359SRui Ueyama std::error_code DelayImportDirectoryEntryRef::getName(StringRef &Result) const {
130915d99359SRui Ueyama   uintptr_t IntPtr = 0;
131015d99359SRui Ueyama   if (std::error_code EC = OwningObject->getRvaPtr(Table[Index].Name, IntPtr))
131115d99359SRui Ueyama     return EC;
131215d99359SRui Ueyama   Result = StringRef(reinterpret_cast<const char *>(IntPtr));
13137d099195SRui Ueyama   return std::error_code();
131415d99359SRui Ueyama }
131515d99359SRui Ueyama 
13161af08658SRui Ueyama std::error_code DelayImportDirectoryEntryRef::
13171af08658SRui Ueyama getDelayImportTable(const delay_import_directory_table_entry *&Result) const {
13181af08658SRui Ueyama   Result = Table;
13197d099195SRui Ueyama   return std::error_code();
13201af08658SRui Ueyama }
13211af08658SRui Ueyama 
1322ffa4cebeSRui Ueyama std::error_code DelayImportDirectoryEntryRef::
1323ffa4cebeSRui Ueyama getImportAddress(int AddrIndex, uint64_t &Result) const {
1324ffa4cebeSRui Ueyama   uint32_t RVA = Table[Index].DelayImportAddressTable +
1325ffa4cebeSRui Ueyama       AddrIndex * (OwningObject->is64() ? 8 : 4);
1326ffa4cebeSRui Ueyama   uintptr_t IntPtr = 0;
1327ffa4cebeSRui Ueyama   if (std::error_code EC = OwningObject->getRvaPtr(RVA, IntPtr))
1328ffa4cebeSRui Ueyama     return EC;
1329ffa4cebeSRui Ueyama   if (OwningObject->is64())
13305dcf11d1SRui Ueyama     Result = *reinterpret_cast<const ulittle64_t *>(IntPtr);
1331ffa4cebeSRui Ueyama   else
13325dcf11d1SRui Ueyama     Result = *reinterpret_cast<const ulittle32_t *>(IntPtr);
13337d099195SRui Ueyama   return std::error_code();
1334ffa4cebeSRui Ueyama }
1335ffa4cebeSRui Ueyama 
1336ad882ba8SRui Ueyama bool ExportDirectoryEntryRef::
1337ad882ba8SRui Ueyama operator==(const ExportDirectoryEntryRef &Other) const {
1338ad882ba8SRui Ueyama   return ExportTable == Other.ExportTable && Index == Other.Index;
1339ad882ba8SRui Ueyama }
1340ad882ba8SRui Ueyama 
13415e812afaSRafael Espindola void ExportDirectoryEntryRef::moveNext() {
13425e812afaSRafael Espindola   ++Index;
1343ad882ba8SRui Ueyama }
1344ad882ba8SRui Ueyama 
1345da49d0d4SRui Ueyama // Returns the name of the current export symbol. If the symbol is exported only
1346da49d0d4SRui Ueyama // by ordinal, the empty string is set as a result.
1347db4ed0bdSRafael Espindola std::error_code ExportDirectoryEntryRef::getDllName(StringRef &Result) const {
1348da49d0d4SRui Ueyama   uintptr_t IntPtr = 0;
1349db4ed0bdSRafael Espindola   if (std::error_code EC =
1350db4ed0bdSRafael Espindola           OwningObject->getRvaPtr(ExportTable->NameRVA, IntPtr))
1351da49d0d4SRui Ueyama     return EC;
1352da49d0d4SRui Ueyama   Result = StringRef(reinterpret_cast<const char *>(IntPtr));
13537d099195SRui Ueyama   return std::error_code();
1354da49d0d4SRui Ueyama }
1355da49d0d4SRui Ueyama 
1356e5df6095SRui Ueyama // Returns the starting ordinal number.
1357db4ed0bdSRafael Espindola std::error_code
1358db4ed0bdSRafael Espindola ExportDirectoryEntryRef::getOrdinalBase(uint32_t &Result) const {
1359e5df6095SRui Ueyama   Result = ExportTable->OrdinalBase;
13607d099195SRui Ueyama   return std::error_code();
1361e5df6095SRui Ueyama }
1362e5df6095SRui Ueyama 
1363ad882ba8SRui Ueyama // Returns the export ordinal of the current export symbol.
1364db4ed0bdSRafael Espindola std::error_code ExportDirectoryEntryRef::getOrdinal(uint32_t &Result) const {
1365ad882ba8SRui Ueyama   Result = ExportTable->OrdinalBase + Index;
13667d099195SRui Ueyama   return std::error_code();
1367ad882ba8SRui Ueyama }
1368ad882ba8SRui Ueyama 
1369ad882ba8SRui Ueyama // Returns the address of the current export symbol.
1370db4ed0bdSRafael Espindola std::error_code ExportDirectoryEntryRef::getExportRVA(uint32_t &Result) const {
1371ad882ba8SRui Ueyama   uintptr_t IntPtr = 0;
1372db4ed0bdSRafael Espindola   if (std::error_code EC =
1373db4ed0bdSRafael Espindola           OwningObject->getRvaPtr(ExportTable->ExportAddressTableRVA, IntPtr))
1374ad882ba8SRui Ueyama     return EC;
137524fc2d64SRui Ueyama   const export_address_table_entry *entry =
137624fc2d64SRui Ueyama       reinterpret_cast<const export_address_table_entry *>(IntPtr);
1377ad882ba8SRui Ueyama   Result = entry[Index].ExportRVA;
13787d099195SRui Ueyama   return std::error_code();
1379ad882ba8SRui Ueyama }
1380ad882ba8SRui Ueyama 
1381ad882ba8SRui Ueyama // Returns the name of the current export symbol. If the symbol is exported only
1382ad882ba8SRui Ueyama // by ordinal, the empty string is set as a result.
1383db4ed0bdSRafael Espindola std::error_code
1384db4ed0bdSRafael Espindola ExportDirectoryEntryRef::getSymbolName(StringRef &Result) const {
1385ad882ba8SRui Ueyama   uintptr_t IntPtr = 0;
1386db4ed0bdSRafael Espindola   if (std::error_code EC =
1387db4ed0bdSRafael Espindola           OwningObject->getRvaPtr(ExportTable->OrdinalTableRVA, IntPtr))
1388ad882ba8SRui Ueyama     return EC;
1389ad882ba8SRui Ueyama   const ulittle16_t *Start = reinterpret_cast<const ulittle16_t *>(IntPtr);
1390ad882ba8SRui Ueyama 
1391ad882ba8SRui Ueyama   uint32_t NumEntries = ExportTable->NumberOfNamePointers;
1392ad882ba8SRui Ueyama   int Offset = 0;
1393ad882ba8SRui Ueyama   for (const ulittle16_t *I = Start, *E = Start + NumEntries;
1394ad882ba8SRui Ueyama        I < E; ++I, ++Offset) {
1395ad882ba8SRui Ueyama     if (*I != Index)
1396ad882ba8SRui Ueyama       continue;
1397db4ed0bdSRafael Espindola     if (std::error_code EC =
1398db4ed0bdSRafael Espindola             OwningObject->getRvaPtr(ExportTable->NamePointerRVA, IntPtr))
1399ad882ba8SRui Ueyama       return EC;
1400ad882ba8SRui Ueyama     const ulittle32_t *NamePtr = reinterpret_cast<const ulittle32_t *>(IntPtr);
1401db4ed0bdSRafael Espindola     if (std::error_code EC = OwningObject->getRvaPtr(NamePtr[Offset], IntPtr))
1402ad882ba8SRui Ueyama       return EC;
1403ad882ba8SRui Ueyama     Result = StringRef(reinterpret_cast<const char *>(IntPtr));
14047d099195SRui Ueyama     return std::error_code();
1405ad882ba8SRui Ueyama   }
1406ad882ba8SRui Ueyama   Result = "";
14077d099195SRui Ueyama   return std::error_code();
1408ad882ba8SRui Ueyama }
1409ad882ba8SRui Ueyama 
14106161b38dSRui Ueyama std::error_code ExportDirectoryEntryRef::isForwarder(bool &Result) const {
14116161b38dSRui Ueyama   const data_directory *DataEntry;
14126161b38dSRui Ueyama   if (auto EC = OwningObject->getDataDirectory(COFF::EXPORT_TABLE, DataEntry))
14136161b38dSRui Ueyama     return EC;
14146161b38dSRui Ueyama   uint32_t RVA;
14156161b38dSRui Ueyama   if (auto EC = getExportRVA(RVA))
14166161b38dSRui Ueyama     return EC;
14176161b38dSRui Ueyama   uint32_t Begin = DataEntry->RelativeVirtualAddress;
14186161b38dSRui Ueyama   uint32_t End = DataEntry->RelativeVirtualAddress + DataEntry->Size;
14196161b38dSRui Ueyama   Result = (Begin <= RVA && RVA < End);
14206161b38dSRui Ueyama   return std::error_code();
14216161b38dSRui Ueyama }
14226161b38dSRui Ueyama 
14236161b38dSRui Ueyama std::error_code ExportDirectoryEntryRef::getForwardTo(StringRef &Result) const {
14246161b38dSRui Ueyama   uint32_t RVA;
14256161b38dSRui Ueyama   if (auto EC = getExportRVA(RVA))
14266161b38dSRui Ueyama     return EC;
14276161b38dSRui Ueyama   uintptr_t IntPtr = 0;
14286161b38dSRui Ueyama   if (auto EC = OwningObject->getRvaPtr(RVA, IntPtr))
14296161b38dSRui Ueyama     return EC;
14306161b38dSRui Ueyama   Result = StringRef(reinterpret_cast<const char *>(IntPtr));
14316161b38dSRui Ueyama   return std::error_code();
14326161b38dSRui Ueyama }
14336161b38dSRui Ueyama 
1434861021f9SRui Ueyama bool ImportedSymbolRef::
1435861021f9SRui Ueyama operator==(const ImportedSymbolRef &Other) const {
1436861021f9SRui Ueyama   return Entry32 == Other.Entry32 && Entry64 == Other.Entry64
1437861021f9SRui Ueyama       && Index == Other.Index;
1438861021f9SRui Ueyama }
1439861021f9SRui Ueyama 
1440861021f9SRui Ueyama void ImportedSymbolRef::moveNext() {
1441861021f9SRui Ueyama   ++Index;
1442861021f9SRui Ueyama }
1443861021f9SRui Ueyama 
1444861021f9SRui Ueyama std::error_code
1445861021f9SRui Ueyama ImportedSymbolRef::getSymbolName(StringRef &Result) const {
1446861021f9SRui Ueyama   uint32_t RVA;
1447861021f9SRui Ueyama   if (Entry32) {
1448861021f9SRui Ueyama     // If a symbol is imported only by ordinal, it has no name.
1449861021f9SRui Ueyama     if (Entry32[Index].isOrdinal())
14507d099195SRui Ueyama       return std::error_code();
1451861021f9SRui Ueyama     RVA = Entry32[Index].getHintNameRVA();
1452861021f9SRui Ueyama   } else {
1453861021f9SRui Ueyama     if (Entry64[Index].isOrdinal())
14547d099195SRui Ueyama       return std::error_code();
1455861021f9SRui Ueyama     RVA = Entry64[Index].getHintNameRVA();
1456861021f9SRui Ueyama   }
1457861021f9SRui Ueyama   uintptr_t IntPtr = 0;
1458861021f9SRui Ueyama   if (std::error_code EC = OwningObject->getRvaPtr(RVA, IntPtr))
1459861021f9SRui Ueyama     return EC;
1460861021f9SRui Ueyama   // +2 because the first two bytes is hint.
1461861021f9SRui Ueyama   Result = StringRef(reinterpret_cast<const char *>(IntPtr + 2));
14627d099195SRui Ueyama   return std::error_code();
1463861021f9SRui Ueyama }
1464861021f9SRui Ueyama 
1465861021f9SRui Ueyama std::error_code ImportedSymbolRef::getOrdinal(uint16_t &Result) const {
1466861021f9SRui Ueyama   uint32_t RVA;
1467861021f9SRui Ueyama   if (Entry32) {
1468861021f9SRui Ueyama     if (Entry32[Index].isOrdinal()) {
1469861021f9SRui Ueyama       Result = Entry32[Index].getOrdinal();
14707d099195SRui Ueyama       return std::error_code();
1471861021f9SRui Ueyama     }
1472861021f9SRui Ueyama     RVA = Entry32[Index].getHintNameRVA();
1473861021f9SRui Ueyama   } else {
1474861021f9SRui Ueyama     if (Entry64[Index].isOrdinal()) {
1475861021f9SRui Ueyama       Result = Entry64[Index].getOrdinal();
14767d099195SRui Ueyama       return std::error_code();
1477861021f9SRui Ueyama     }
1478861021f9SRui Ueyama     RVA = Entry64[Index].getHintNameRVA();
1479861021f9SRui Ueyama   }
1480861021f9SRui Ueyama   uintptr_t IntPtr = 0;
1481861021f9SRui Ueyama   if (std::error_code EC = OwningObject->getRvaPtr(RVA, IntPtr))
1482861021f9SRui Ueyama     return EC;
1483861021f9SRui Ueyama   Result = *reinterpret_cast<const ulittle16_t *>(IntPtr);
14847d099195SRui Ueyama   return std::error_code();
1485861021f9SRui Ueyama }
1486861021f9SRui Ueyama 
1487437b0d58SRafael Espindola ErrorOr<std::unique_ptr<COFFObjectFile>>
148848af1c2aSRafael Espindola ObjectFile::createCOFFObjectFile(MemoryBufferRef Object) {
1489db4ed0bdSRafael Espindola   std::error_code EC;
149048af1c2aSRafael Espindola   std::unique_ptr<COFFObjectFile> Ret(new COFFObjectFile(Object, EC));
1491692410efSRafael Espindola   if (EC)
1492692410efSRafael Espindola     return EC;
1493437b0d58SRafael Espindola   return std::move(Ret);
1494686738e2SRui Ueyama }
149574e85130SRui Ueyama 
149674e85130SRui Ueyama bool BaseRelocRef::operator==(const BaseRelocRef &Other) const {
149774e85130SRui Ueyama   return Header == Other.Header && Index == Other.Index;
149874e85130SRui Ueyama }
149974e85130SRui Ueyama 
150074e85130SRui Ueyama void BaseRelocRef::moveNext() {
150174e85130SRui Ueyama   // Header->BlockSize is the size of the current block, including the
150274e85130SRui Ueyama   // size of the header itself.
150374e85130SRui Ueyama   uint32_t Size = sizeof(*Header) +
1504970dda29SRui Ueyama       sizeof(coff_base_reloc_block_entry) * (Index + 1);
150574e85130SRui Ueyama   if (Size == Header->BlockSize) {
150674e85130SRui Ueyama     // .reloc contains a list of base relocation blocks. Each block
150774e85130SRui Ueyama     // consists of the header followed by entries. The header contains
150874e85130SRui Ueyama     // how many entories will follow. When we reach the end of the
150974e85130SRui Ueyama     // current block, proceed to the next block.
151074e85130SRui Ueyama     Header = reinterpret_cast<const coff_base_reloc_block_header *>(
151174e85130SRui Ueyama         reinterpret_cast<const uint8_t *>(Header) + Size);
151274e85130SRui Ueyama     Index = 0;
151374e85130SRui Ueyama   } else {
151474e85130SRui Ueyama     ++Index;
151574e85130SRui Ueyama   }
151674e85130SRui Ueyama }
151774e85130SRui Ueyama 
151874e85130SRui Ueyama std::error_code BaseRelocRef::getType(uint8_t &Type) const {
151974e85130SRui Ueyama   auto *Entry = reinterpret_cast<const coff_base_reloc_block_entry *>(Header + 1);
152074e85130SRui Ueyama   Type = Entry[Index].getType();
15217d099195SRui Ueyama   return std::error_code();
152274e85130SRui Ueyama }
152374e85130SRui Ueyama 
152474e85130SRui Ueyama std::error_code BaseRelocRef::getRVA(uint32_t &Result) const {
152574e85130SRui Ueyama   auto *Entry = reinterpret_cast<const coff_base_reloc_block_entry *>(Header + 1);
152674e85130SRui Ueyama   Result = Header->PageRVA + Entry[Index].getOffset();
15277d099195SRui Ueyama   return std::error_code();
152874e85130SRui Ueyama }
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