1 //===- lib/MC/ELFObjectWriter.cpp - ELF File Writer -------------------===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements ELF object file writer information.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "ELFObjectWriter.h"
15 #include "llvm/ADT/STLExtras.h"
16 #include "llvm/ADT/StringMap.h"
17 #include "llvm/ADT/Twine.h"
18 #include "llvm/MC/MCAsmBackend.h"
19 #include "llvm/MC/MCAsmLayout.h"
20 #include "llvm/MC/MCContext.h"
21 #include "llvm/MC/MCExpr.h"
22 #include "llvm/MC/MCSectionELF.h"
23 #include "llvm/MC/MCValue.h"
24 #include "llvm/Support/Debug.h"
25 #include "llvm/Support/ErrorHandling.h"
26 #include "llvm/Support/ELF.h"
27 #include "llvm/Support/CommandLine.h"
28 #include "llvm/ADT/Statistic.h"
29 #include "llvm/ADT/StringSwitch.h"
30
31 #include "../Target/X86/MCTargetDesc/X86FixupKinds.h"
32 #include "../Target/ARM/MCTargetDesc/ARMFixupKinds.h"
33 #include "../Target/PowerPC/MCTargetDesc/PPCFixupKinds.h"
34
35 #include <vector>
36 using namespace llvm;
37
38 #undef DEBUG_TYPE
39 #define DEBUG_TYPE "reloc-info"
40
isFixupKindPCRel(const MCAssembler & Asm,unsigned Kind)41 bool ELFObjectWriter::isFixupKindPCRel(const MCAssembler &Asm, unsigned Kind) {
42 const MCFixupKindInfo &FKI =
43 Asm.getBackend().getFixupKindInfo((MCFixupKind) Kind);
44
45 return FKI.Flags & MCFixupKindInfo::FKF_IsPCRel;
46 }
47
RelocNeedsGOT(MCSymbolRefExpr::VariantKind Variant)48 bool ELFObjectWriter::RelocNeedsGOT(MCSymbolRefExpr::VariantKind Variant) {
49 switch (Variant) {
50 default:
51 return false;
52 case MCSymbolRefExpr::VK_GOT:
53 case MCSymbolRefExpr::VK_PLT:
54 case MCSymbolRefExpr::VK_GOTPCREL:
55 case MCSymbolRefExpr::VK_GOTOFF:
56 case MCSymbolRefExpr::VK_TPOFF:
57 case MCSymbolRefExpr::VK_TLSGD:
58 case MCSymbolRefExpr::VK_GOTTPOFF:
59 case MCSymbolRefExpr::VK_INDNTPOFF:
60 case MCSymbolRefExpr::VK_NTPOFF:
61 case MCSymbolRefExpr::VK_GOTNTPOFF:
62 case MCSymbolRefExpr::VK_TLSLDM:
63 case MCSymbolRefExpr::VK_DTPOFF:
64 case MCSymbolRefExpr::VK_TLSLD:
65 return true;
66 }
67 }
68
~ELFObjectWriter()69 ELFObjectWriter::~ELFObjectWriter()
70 {}
71
72 // Emit the ELF header.
WriteHeader(uint64_t SectionDataSize,unsigned NumberOfSections)73 void ELFObjectWriter::WriteHeader(uint64_t SectionDataSize,
74 unsigned NumberOfSections) {
75 // ELF Header
76 // ----------
77 //
78 // Note
79 // ----
80 // emitWord method behaves differently for ELF32 and ELF64, writing
81 // 4 bytes in the former and 8 in the latter.
82
83 Write8(0x7f); // e_ident[EI_MAG0]
84 Write8('E'); // e_ident[EI_MAG1]
85 Write8('L'); // e_ident[EI_MAG2]
86 Write8('F'); // e_ident[EI_MAG3]
87
88 Write8(is64Bit() ? ELF::ELFCLASS64 : ELF::ELFCLASS32); // e_ident[EI_CLASS]
89
90 // e_ident[EI_DATA]
91 Write8(isLittleEndian() ? ELF::ELFDATA2LSB : ELF::ELFDATA2MSB);
92
93 Write8(ELF::EV_CURRENT); // e_ident[EI_VERSION]
94 // e_ident[EI_OSABI]
95 switch (TargetObjectWriter->getOSType()) {
96 case Triple::FreeBSD: Write8(ELF::ELFOSABI_FREEBSD); break;
97 case Triple::Linux: Write8(ELF::ELFOSABI_LINUX); break;
98 default: Write8(ELF::ELFOSABI_NONE); break;
99 }
100 Write8(0); // e_ident[EI_ABIVERSION]
101
102 WriteZeros(ELF::EI_NIDENT - ELF::EI_PAD);
103
104 Write16(ELF::ET_REL); // e_type
105
106 Write16(TargetObjectWriter->getEMachine()); // e_machine = target
107
108 Write32(ELF::EV_CURRENT); // e_version
109 WriteWord(0); // e_entry, no entry point in .o file
110 WriteWord(0); // e_phoff, no program header for .o
111 WriteWord(SectionDataSize + (is64Bit() ? sizeof(ELF::Elf64_Ehdr) :
112 sizeof(ELF::Elf32_Ehdr))); // e_shoff = sec hdr table off in bytes
113
114 // e_flags = whatever the target wants
115 WriteEFlags();
116
117 // e_ehsize = ELF header size
118 Write16(is64Bit() ? sizeof(ELF::Elf64_Ehdr) : sizeof(ELF::Elf32_Ehdr));
119
120 Write16(0); // e_phentsize = prog header entry size
121 Write16(0); // e_phnum = # prog header entries = 0
122
123 // e_shentsize = Section header entry size
124 Write16(is64Bit() ? sizeof(ELF::Elf64_Shdr) : sizeof(ELF::Elf32_Shdr));
125
126 // e_shnum = # of section header ents
127 if (NumberOfSections >= ELF::SHN_LORESERVE)
128 Write16(ELF::SHN_UNDEF);
129 else
130 Write16(NumberOfSections);
131
132 // e_shstrndx = Section # of '.shstrtab'
133 if (ShstrtabIndex >= ELF::SHN_LORESERVE)
134 Write16(ELF::SHN_XINDEX);
135 else
136 Write16(ShstrtabIndex);
137 }
138
WriteSymbolEntry(MCDataFragment * SymtabF,MCDataFragment * ShndxF,uint64_t name,uint8_t info,uint64_t value,uint64_t size,uint8_t other,uint32_t shndx,bool Reserved)139 void ELFObjectWriter::WriteSymbolEntry(MCDataFragment *SymtabF,
140 MCDataFragment *ShndxF,
141 uint64_t name,
142 uint8_t info, uint64_t value,
143 uint64_t size, uint8_t other,
144 uint32_t shndx,
145 bool Reserved) {
146 if (ShndxF) {
147 if (shndx >= ELF::SHN_LORESERVE && !Reserved)
148 String32(*ShndxF, shndx);
149 else
150 String32(*ShndxF, 0);
151 }
152
153 uint16_t Index = (shndx >= ELF::SHN_LORESERVE && !Reserved) ?
154 uint16_t(ELF::SHN_XINDEX) : shndx;
155
156 if (is64Bit()) {
157 String32(*SymtabF, name); // st_name
158 String8(*SymtabF, info); // st_info
159 String8(*SymtabF, other); // st_other
160 String16(*SymtabF, Index); // st_shndx
161 String64(*SymtabF, value); // st_value
162 String64(*SymtabF, size); // st_size
163 } else {
164 String32(*SymtabF, name); // st_name
165 String32(*SymtabF, value); // st_value
166 String32(*SymtabF, size); // st_size
167 String8(*SymtabF, info); // st_info
168 String8(*SymtabF, other); // st_other
169 String16(*SymtabF, Index); // st_shndx
170 }
171 }
172
SymbolValue(MCSymbolData & Data,const MCAsmLayout & Layout)173 uint64_t ELFObjectWriter::SymbolValue(MCSymbolData &Data,
174 const MCAsmLayout &Layout) {
175 if (Data.isCommon() && Data.isExternal())
176 return Data.getCommonAlignment();
177
178 const MCSymbol &Symbol = Data.getSymbol();
179
180 if (Symbol.isAbsolute() && Symbol.isVariable()) {
181 if (const MCExpr *Value = Symbol.getVariableValue()) {
182 int64_t IntValue;
183 if (Value->EvaluateAsAbsolute(IntValue, Layout))
184 return (uint64_t)IntValue;
185 }
186 }
187
188 if (!Symbol.isInSection())
189 return 0;
190
191
192 if (Data.getFragment()) {
193 if (Data.getFlags() & ELF_Other_ThumbFunc)
194 return Layout.getSymbolOffset(&Data)+1;
195 else
196 return Layout.getSymbolOffset(&Data);
197 }
198
199 return 0;
200 }
201
ExecutePostLayoutBinding(MCAssembler & Asm,const MCAsmLayout & Layout)202 void ELFObjectWriter::ExecutePostLayoutBinding(MCAssembler &Asm,
203 const MCAsmLayout &Layout) {
204 // The presence of symbol versions causes undefined symbols and
205 // versions declared with @@@ to be renamed.
206
207 for (MCAssembler::symbol_iterator it = Asm.symbol_begin(),
208 ie = Asm.symbol_end(); it != ie; ++it) {
209 const MCSymbol &Alias = it->getSymbol();
210 const MCSymbol &Symbol = Alias.AliasedSymbol();
211 MCSymbolData &SD = Asm.getSymbolData(Symbol);
212
213 // Not an alias.
214 if (&Symbol == &Alias)
215 continue;
216
217 StringRef AliasName = Alias.getName();
218 size_t Pos = AliasName.find('@');
219 if (Pos == StringRef::npos)
220 continue;
221
222 // Aliases defined with .symvar copy the binding from the symbol they alias.
223 // This is the first place we are able to copy this information.
224 it->setExternal(SD.isExternal());
225 MCELF::SetBinding(*it, MCELF::GetBinding(SD));
226
227 StringRef Rest = AliasName.substr(Pos);
228 if (!Symbol.isUndefined() && !Rest.startswith("@@@"))
229 continue;
230
231 // FIXME: produce a better error message.
232 if (Symbol.isUndefined() && Rest.startswith("@@") &&
233 !Rest.startswith("@@@"))
234 report_fatal_error("A @@ version cannot be undefined");
235
236 Renames.insert(std::make_pair(&Symbol, &Alias));
237 }
238 }
239
WriteSymbol(MCDataFragment * SymtabF,MCDataFragment * ShndxF,ELFSymbolData & MSD,const MCAsmLayout & Layout)240 void ELFObjectWriter::WriteSymbol(MCDataFragment *SymtabF,
241 MCDataFragment *ShndxF,
242 ELFSymbolData &MSD,
243 const MCAsmLayout &Layout) {
244 MCSymbolData &OrigData = *MSD.SymbolData;
245 MCSymbolData &Data =
246 Layout.getAssembler().getSymbolData(OrigData.getSymbol().AliasedSymbol());
247
248 bool IsReserved = Data.isCommon() || Data.getSymbol().isAbsolute() ||
249 Data.getSymbol().isVariable();
250
251 uint8_t Binding = MCELF::GetBinding(OrigData);
252 uint8_t Visibility = MCELF::GetVisibility(OrigData);
253 uint8_t Type = MCELF::GetType(Data);
254
255 uint8_t Info = (Binding << ELF_STB_Shift) | (Type << ELF_STT_Shift);
256 uint8_t Other = Visibility;
257
258 uint64_t Value = SymbolValue(Data, Layout);
259 uint64_t Size = 0;
260
261 assert(!(Data.isCommon() && !Data.isExternal()));
262
263 const MCExpr *ESize = Data.getSize();
264 if (ESize) {
265 int64_t Res;
266 if (!ESize->EvaluateAsAbsolute(Res, Layout))
267 report_fatal_error("Size expression must be absolute.");
268 Size = Res;
269 }
270
271 // Write out the symbol table entry
272 WriteSymbolEntry(SymtabF, ShndxF, MSD.StringIndex, Info, Value,
273 Size, Other, MSD.SectionIndex, IsReserved);
274 }
275
WriteSymbolTable(MCDataFragment * SymtabF,MCDataFragment * ShndxF,const MCAssembler & Asm,const MCAsmLayout & Layout,const SectionIndexMapTy & SectionIndexMap)276 void ELFObjectWriter::WriteSymbolTable(MCDataFragment *SymtabF,
277 MCDataFragment *ShndxF,
278 const MCAssembler &Asm,
279 const MCAsmLayout &Layout,
280 const SectionIndexMapTy &SectionIndexMap) {
281 // The string table must be emitted first because we need the index
282 // into the string table for all the symbol names.
283 assert(StringTable.size() && "Missing string table");
284
285 // FIXME: Make sure the start of the symbol table is aligned.
286
287 // The first entry is the undefined symbol entry.
288 WriteSymbolEntry(SymtabF, ShndxF, 0, 0, 0, 0, 0, 0, false);
289
290 // Write the symbol table entries.
291 LastLocalSymbolIndex = LocalSymbolData.size() + 1;
292 for (unsigned i = 0, e = LocalSymbolData.size(); i != e; ++i) {
293 ELFSymbolData &MSD = LocalSymbolData[i];
294 WriteSymbol(SymtabF, ShndxF, MSD, Layout);
295 }
296
297 // Write out a symbol table entry for each regular section.
298 for (MCAssembler::const_iterator i = Asm.begin(), e = Asm.end(); i != e;
299 ++i) {
300 const MCSectionELF &Section =
301 static_cast<const MCSectionELF&>(i->getSection());
302 if (Section.getType() == ELF::SHT_RELA ||
303 Section.getType() == ELF::SHT_REL ||
304 Section.getType() == ELF::SHT_STRTAB ||
305 Section.getType() == ELF::SHT_SYMTAB ||
306 Section.getType() == ELF::SHT_SYMTAB_SHNDX)
307 continue;
308 WriteSymbolEntry(SymtabF, ShndxF, 0, ELF::STT_SECTION, 0, 0,
309 ELF::STV_DEFAULT, SectionIndexMap.lookup(&Section), false);
310 LastLocalSymbolIndex++;
311 }
312
313 for (unsigned i = 0, e = ExternalSymbolData.size(); i != e; ++i) {
314 ELFSymbolData &MSD = ExternalSymbolData[i];
315 MCSymbolData &Data = *MSD.SymbolData;
316 assert(((Data.getFlags() & ELF_STB_Global) ||
317 (Data.getFlags() & ELF_STB_Weak)) &&
318 "External symbol requires STB_GLOBAL or STB_WEAK flag");
319 WriteSymbol(SymtabF, ShndxF, MSD, Layout);
320 if (MCELF::GetBinding(Data) == ELF::STB_LOCAL)
321 LastLocalSymbolIndex++;
322 }
323
324 for (unsigned i = 0, e = UndefinedSymbolData.size(); i != e; ++i) {
325 ELFSymbolData &MSD = UndefinedSymbolData[i];
326 MCSymbolData &Data = *MSD.SymbolData;
327 WriteSymbol(SymtabF, ShndxF, MSD, Layout);
328 if (MCELF::GetBinding(Data) == ELF::STB_LOCAL)
329 LastLocalSymbolIndex++;
330 }
331 }
332
SymbolToReloc(const MCAssembler & Asm,const MCValue & Target,const MCFragment & F,const MCFixup & Fixup,bool IsPCRel) const333 const MCSymbol *ELFObjectWriter::SymbolToReloc(const MCAssembler &Asm,
334 const MCValue &Target,
335 const MCFragment &F,
336 const MCFixup &Fixup,
337 bool IsPCRel) const {
338 const MCSymbol &Symbol = Target.getSymA()->getSymbol();
339 const MCSymbol &ASymbol = Symbol.AliasedSymbol();
340 const MCSymbol *Renamed = Renames.lookup(&Symbol);
341 const MCSymbolData &SD = Asm.getSymbolData(Symbol);
342
343 if (ASymbol.isUndefined()) {
344 if (Renamed)
345 return Renamed;
346 return &ASymbol;
347 }
348
349 if (SD.isExternal()) {
350 if (Renamed)
351 return Renamed;
352 return &Symbol;
353 }
354
355 const MCSectionELF &Section =
356 static_cast<const MCSectionELF&>(ASymbol.getSection());
357 const SectionKind secKind = Section.getKind();
358
359 if (secKind.isBSS())
360 return ExplicitRelSym(Asm, Target, F, Fixup, IsPCRel);
361
362 if (secKind.isThreadLocal()) {
363 if (Renamed)
364 return Renamed;
365 return &Symbol;
366 }
367
368 MCSymbolRefExpr::VariantKind Kind = Target.getSymA()->getKind();
369 const MCSectionELF &Sec2 =
370 static_cast<const MCSectionELF&>(F.getParent()->getSection());
371
372 if (&Sec2 != &Section &&
373 (Kind == MCSymbolRefExpr::VK_PLT ||
374 Kind == MCSymbolRefExpr::VK_GOTPCREL ||
375 Kind == MCSymbolRefExpr::VK_GOTOFF)) {
376 if (Renamed)
377 return Renamed;
378 return &Symbol;
379 }
380
381 if (Section.getFlags() & ELF::SHF_MERGE) {
382 if (Target.getConstant() == 0)
383 return ExplicitRelSym(Asm, Target, F, Fixup, IsPCRel);
384 if (Renamed)
385 return Renamed;
386 return &Symbol;
387 }
388
389 return ExplicitRelSym(Asm, Target, F, Fixup, IsPCRel);
390
391 }
392
393
RecordRelocation(const MCAssembler & Asm,const MCAsmLayout & Layout,const MCFragment * Fragment,const MCFixup & Fixup,MCValue Target,uint64_t & FixedValue)394 void ELFObjectWriter::RecordRelocation(const MCAssembler &Asm,
395 const MCAsmLayout &Layout,
396 const MCFragment *Fragment,
397 const MCFixup &Fixup,
398 MCValue Target,
399 uint64_t &FixedValue) {
400 int64_t Addend = 0;
401 int Index = 0;
402 int64_t Value = Target.getConstant();
403 const MCSymbol *RelocSymbol = NULL;
404
405 bool IsPCRel = isFixupKindPCRel(Asm, Fixup.getKind());
406 if (!Target.isAbsolute()) {
407 const MCSymbol &Symbol = Target.getSymA()->getSymbol();
408 const MCSymbol &ASymbol = Symbol.AliasedSymbol();
409 RelocSymbol = SymbolToReloc(Asm, Target, *Fragment, Fixup, IsPCRel);
410
411 if (const MCSymbolRefExpr *RefB = Target.getSymB()) {
412 const MCSymbol &SymbolB = RefB->getSymbol();
413 MCSymbolData &SDB = Asm.getSymbolData(SymbolB);
414 IsPCRel = true;
415
416 // Offset of the symbol in the section
417 int64_t a = Layout.getSymbolOffset(&SDB);
418
419 // Ofeset of the relocation in the section
420 int64_t b = Layout.getFragmentOffset(Fragment) + Fixup.getOffset();
421 Value += b - a;
422 }
423
424 if (!RelocSymbol) {
425 MCSymbolData &SD = Asm.getSymbolData(ASymbol);
426 MCFragment *F = SD.getFragment();
427
428 Index = F->getParent()->getOrdinal() + 1;
429
430 // Offset of the symbol in the section
431 Value += Layout.getSymbolOffset(&SD);
432 } else {
433 if (Asm.getSymbolData(Symbol).getFlags() & ELF_Other_Weakref)
434 WeakrefUsedInReloc.insert(RelocSymbol);
435 else
436 UsedInReloc.insert(RelocSymbol);
437 Index = -1;
438 }
439 Addend = Value;
440 // Compensate for the addend on i386.
441 if (is64Bit())
442 Value = 0;
443 }
444
445 FixedValue = Value;
446 unsigned Type = GetRelocType(Target, Fixup, IsPCRel,
447 (RelocSymbol != 0), Addend);
448
449 uint64_t RelocOffset = Layout.getFragmentOffset(Fragment) +
450 Fixup.getOffset();
451
452 adjustFixupOffset(Fixup, RelocOffset);
453
454 if (!hasRelocationAddend())
455 Addend = 0;
456
457 if (is64Bit())
458 assert(isInt<64>(Addend));
459 else
460 assert(isInt<32>(Addend));
461
462 ELFRelocationEntry ERE(RelocOffset, Index, Type, RelocSymbol, Addend);
463 Relocations[Fragment->getParent()].push_back(ERE);
464 }
465
466
467 uint64_t
getSymbolIndexInSymbolTable(const MCAssembler & Asm,const MCSymbol * S)468 ELFObjectWriter::getSymbolIndexInSymbolTable(const MCAssembler &Asm,
469 const MCSymbol *S) {
470 MCSymbolData &SD = Asm.getSymbolData(*S);
471 return SD.getIndex();
472 }
473
isInSymtab(const MCAssembler & Asm,const MCSymbolData & Data,bool Used,bool Renamed)474 bool ELFObjectWriter::isInSymtab(const MCAssembler &Asm,
475 const MCSymbolData &Data,
476 bool Used, bool Renamed) {
477 if (Data.getFlags() & ELF_Other_Weakref)
478 return false;
479
480 if (Used)
481 return true;
482
483 if (Renamed)
484 return false;
485
486 const MCSymbol &Symbol = Data.getSymbol();
487
488 if (Symbol.getName() == "_GLOBAL_OFFSET_TABLE_")
489 return true;
490
491 const MCSymbol &A = Symbol.AliasedSymbol();
492 if (Symbol.isVariable() && !A.isVariable() && A.isUndefined())
493 return false;
494
495 bool IsGlobal = MCELF::GetBinding(Data) == ELF::STB_GLOBAL;
496 if (!Symbol.isVariable() && Symbol.isUndefined() && !IsGlobal)
497 return false;
498
499 if (!Asm.isSymbolLinkerVisible(Symbol) && !Symbol.isUndefined())
500 return false;
501
502 if (Symbol.isTemporary())
503 return false;
504
505 return true;
506 }
507
isLocal(const MCSymbolData & Data,bool isSignature,bool isUsedInReloc)508 bool ELFObjectWriter::isLocal(const MCSymbolData &Data, bool isSignature,
509 bool isUsedInReloc) {
510 if (Data.isExternal())
511 return false;
512
513 const MCSymbol &Symbol = Data.getSymbol();
514 const MCSymbol &RefSymbol = Symbol.AliasedSymbol();
515
516 if (RefSymbol.isUndefined() && !RefSymbol.isVariable()) {
517 if (isSignature && !isUsedInReloc)
518 return true;
519
520 return false;
521 }
522
523 return true;
524 }
525
ComputeIndexMap(MCAssembler & Asm,SectionIndexMapTy & SectionIndexMap,const RelMapTy & RelMap)526 void ELFObjectWriter::ComputeIndexMap(MCAssembler &Asm,
527 SectionIndexMapTy &SectionIndexMap,
528 const RelMapTy &RelMap) {
529 unsigned Index = 1;
530 for (MCAssembler::iterator it = Asm.begin(),
531 ie = Asm.end(); it != ie; ++it) {
532 const MCSectionELF &Section =
533 static_cast<const MCSectionELF &>(it->getSection());
534 if (Section.getType() != ELF::SHT_GROUP)
535 continue;
536 SectionIndexMap[&Section] = Index++;
537 }
538
539 for (MCAssembler::iterator it = Asm.begin(),
540 ie = Asm.end(); it != ie; ++it) {
541 const MCSectionELF &Section =
542 static_cast<const MCSectionELF &>(it->getSection());
543 if (Section.getType() == ELF::SHT_GROUP ||
544 Section.getType() == ELF::SHT_REL ||
545 Section.getType() == ELF::SHT_RELA)
546 continue;
547 SectionIndexMap[&Section] = Index++;
548 const MCSectionELF *RelSection = RelMap.lookup(&Section);
549 if (RelSection)
550 SectionIndexMap[RelSection] = Index++;
551 }
552 }
553
ComputeSymbolTable(MCAssembler & Asm,const SectionIndexMapTy & SectionIndexMap,RevGroupMapTy RevGroupMap,unsigned NumRegularSections)554 void ELFObjectWriter::ComputeSymbolTable(MCAssembler &Asm,
555 const SectionIndexMapTy &SectionIndexMap,
556 RevGroupMapTy RevGroupMap,
557 unsigned NumRegularSections) {
558 // FIXME: Is this the correct place to do this?
559 // FIXME: Why is an undefined reference to _GLOBAL_OFFSET_TABLE_ needed?
560 if (NeedsGOT) {
561 llvm::StringRef Name = "_GLOBAL_OFFSET_TABLE_";
562 MCSymbol *Sym = Asm.getContext().GetOrCreateSymbol(Name);
563 MCSymbolData &Data = Asm.getOrCreateSymbolData(*Sym);
564 Data.setExternal(true);
565 MCELF::SetBinding(Data, ELF::STB_GLOBAL);
566 }
567
568 // Index 0 is always the empty string.
569 StringMap<uint64_t> StringIndexMap;
570 StringTable += '\x00';
571
572 // FIXME: We could optimize suffixes in strtab in the same way we
573 // optimize them in shstrtab.
574
575 // Add the data for the symbols.
576 for (MCAssembler::symbol_iterator it = Asm.symbol_begin(),
577 ie = Asm.symbol_end(); it != ie; ++it) {
578 const MCSymbol &Symbol = it->getSymbol();
579
580 bool Used = UsedInReloc.count(&Symbol);
581 bool WeakrefUsed = WeakrefUsedInReloc.count(&Symbol);
582 bool isSignature = RevGroupMap.count(&Symbol);
583
584 if (!isInSymtab(Asm, *it,
585 Used || WeakrefUsed || isSignature,
586 Renames.count(&Symbol)))
587 continue;
588
589 ELFSymbolData MSD;
590 MSD.SymbolData = it;
591 const MCSymbol &RefSymbol = Symbol.AliasedSymbol();
592
593 // Undefined symbols are global, but this is the first place we
594 // are able to set it.
595 bool Local = isLocal(*it, isSignature, Used);
596 if (!Local && MCELF::GetBinding(*it) == ELF::STB_LOCAL) {
597 MCSymbolData &SD = Asm.getSymbolData(RefSymbol);
598 MCELF::SetBinding(*it, ELF::STB_GLOBAL);
599 MCELF::SetBinding(SD, ELF::STB_GLOBAL);
600 }
601
602 if (RefSymbol.isUndefined() && !Used && WeakrefUsed)
603 MCELF::SetBinding(*it, ELF::STB_WEAK);
604
605 if (it->isCommon()) {
606 assert(!Local);
607 MSD.SectionIndex = ELF::SHN_COMMON;
608 } else if (Symbol.isAbsolute() || RefSymbol.isVariable()) {
609 MSD.SectionIndex = ELF::SHN_ABS;
610 } else if (RefSymbol.isUndefined()) {
611 if (isSignature && !Used)
612 MSD.SectionIndex = SectionIndexMap.lookup(RevGroupMap[&Symbol]);
613 else
614 MSD.SectionIndex = ELF::SHN_UNDEF;
615 } else {
616 const MCSectionELF &Section =
617 static_cast<const MCSectionELF&>(RefSymbol.getSection());
618 MSD.SectionIndex = SectionIndexMap.lookup(&Section);
619 if (MSD.SectionIndex >= ELF::SHN_LORESERVE)
620 NeedsSymtabShndx = true;
621 assert(MSD.SectionIndex && "Invalid section index!");
622 }
623
624 // The @@@ in symbol version is replaced with @ in undefined symbols and
625 // @@ in defined ones.
626 StringRef Name = Symbol.getName();
627 SmallString<32> Buf;
628
629 size_t Pos = Name.find("@@@");
630 if (Pos != StringRef::npos) {
631 Buf += Name.substr(0, Pos);
632 unsigned Skip = MSD.SectionIndex == ELF::SHN_UNDEF ? 2 : 1;
633 Buf += Name.substr(Pos + Skip);
634 Name = Buf;
635 }
636
637 uint64_t &Entry = StringIndexMap[Name];
638 if (!Entry) {
639 Entry = StringTable.size();
640 StringTable += Name;
641 StringTable += '\x00';
642 }
643 MSD.StringIndex = Entry;
644 if (MSD.SectionIndex == ELF::SHN_UNDEF)
645 UndefinedSymbolData.push_back(MSD);
646 else if (Local)
647 LocalSymbolData.push_back(MSD);
648 else
649 ExternalSymbolData.push_back(MSD);
650 }
651
652 // Symbols are required to be in lexicographic order.
653 array_pod_sort(LocalSymbolData.begin(), LocalSymbolData.end());
654 array_pod_sort(ExternalSymbolData.begin(), ExternalSymbolData.end());
655 array_pod_sort(UndefinedSymbolData.begin(), UndefinedSymbolData.end());
656
657 // Set the symbol indices. Local symbols must come before all other
658 // symbols with non-local bindings.
659 unsigned Index = 1;
660 for (unsigned i = 0, e = LocalSymbolData.size(); i != e; ++i)
661 LocalSymbolData[i].SymbolData->setIndex(Index++);
662
663 Index += NumRegularSections;
664
665 for (unsigned i = 0, e = ExternalSymbolData.size(); i != e; ++i)
666 ExternalSymbolData[i].SymbolData->setIndex(Index++);
667 for (unsigned i = 0, e = UndefinedSymbolData.size(); i != e; ++i)
668 UndefinedSymbolData[i].SymbolData->setIndex(Index++);
669
670 if (NumRegularSections > ELF::SHN_LORESERVE)
671 NeedsSymtabShndx = true;
672 }
673
CreateRelocationSections(MCAssembler & Asm,MCAsmLayout & Layout,RelMapTy & RelMap)674 void ELFObjectWriter::CreateRelocationSections(MCAssembler &Asm,
675 MCAsmLayout &Layout,
676 RelMapTy &RelMap) {
677 for (MCAssembler::const_iterator it = Asm.begin(),
678 ie = Asm.end(); it != ie; ++it) {
679 const MCSectionData &SD = *it;
680 if (Relocations[&SD].empty())
681 continue;
682
683 MCContext &Ctx = Asm.getContext();
684 const MCSectionELF &Section =
685 static_cast<const MCSectionELF&>(SD.getSection());
686
687 const StringRef SectionName = Section.getSectionName();
688 std::string RelaSectionName = hasRelocationAddend() ? ".rela" : ".rel";
689 RelaSectionName += SectionName;
690
691 unsigned EntrySize;
692 if (hasRelocationAddend())
693 EntrySize = is64Bit() ? sizeof(ELF::Elf64_Rela) : sizeof(ELF::Elf32_Rela);
694 else
695 EntrySize = is64Bit() ? sizeof(ELF::Elf64_Rel) : sizeof(ELF::Elf32_Rel);
696
697 const MCSectionELF *RelaSection =
698 Ctx.getELFSection(RelaSectionName, hasRelocationAddend() ?
699 ELF::SHT_RELA : ELF::SHT_REL, 0,
700 SectionKind::getReadOnly(),
701 EntrySize, "");
702 RelMap[&Section] = RelaSection;
703 Asm.getOrCreateSectionData(*RelaSection);
704 }
705 }
706
WriteRelocations(MCAssembler & Asm,MCAsmLayout & Layout,const RelMapTy & RelMap)707 void ELFObjectWriter::WriteRelocations(MCAssembler &Asm, MCAsmLayout &Layout,
708 const RelMapTy &RelMap) {
709 for (MCAssembler::const_iterator it = Asm.begin(),
710 ie = Asm.end(); it != ie; ++it) {
711 const MCSectionData &SD = *it;
712 const MCSectionELF &Section =
713 static_cast<const MCSectionELF&>(SD.getSection());
714
715 const MCSectionELF *RelaSection = RelMap.lookup(&Section);
716 if (!RelaSection)
717 continue;
718 MCSectionData &RelaSD = Asm.getOrCreateSectionData(*RelaSection);
719 RelaSD.setAlignment(is64Bit() ? 8 : 4);
720
721 MCDataFragment *F = new MCDataFragment(&RelaSD);
722 WriteRelocationsFragment(Asm, F, &*it);
723 }
724 }
725
WriteSecHdrEntry(uint32_t Name,uint32_t Type,uint64_t Flags,uint64_t Address,uint64_t Offset,uint64_t Size,uint32_t Link,uint32_t Info,uint64_t Alignment,uint64_t EntrySize)726 void ELFObjectWriter::WriteSecHdrEntry(uint32_t Name, uint32_t Type,
727 uint64_t Flags, uint64_t Address,
728 uint64_t Offset, uint64_t Size,
729 uint32_t Link, uint32_t Info,
730 uint64_t Alignment,
731 uint64_t EntrySize) {
732 Write32(Name); // sh_name: index into string table
733 Write32(Type); // sh_type
734 WriteWord(Flags); // sh_flags
735 WriteWord(Address); // sh_addr
736 WriteWord(Offset); // sh_offset
737 WriteWord(Size); // sh_size
738 Write32(Link); // sh_link
739 Write32(Info); // sh_info
740 WriteWord(Alignment); // sh_addralign
741 WriteWord(EntrySize); // sh_entsize
742 }
743
WriteRelocationsFragment(const MCAssembler & Asm,MCDataFragment * F,const MCSectionData * SD)744 void ELFObjectWriter::WriteRelocationsFragment(const MCAssembler &Asm,
745 MCDataFragment *F,
746 const MCSectionData *SD) {
747 std::vector<ELFRelocationEntry> &Relocs = Relocations[SD];
748 // sort by the r_offset just like gnu as does
749 array_pod_sort(Relocs.begin(), Relocs.end());
750
751 for (unsigned i = 0, e = Relocs.size(); i != e; ++i) {
752 ELFRelocationEntry entry = Relocs[e - i - 1];
753
754 if (!entry.Index)
755 ;
756 else if (entry.Index < 0)
757 entry.Index = getSymbolIndexInSymbolTable(Asm, entry.Symbol);
758 else
759 entry.Index += LocalSymbolData.size();
760 if (is64Bit()) {
761 String64(*F, entry.r_offset);
762
763 struct ELF::Elf64_Rela ERE64;
764 ERE64.setSymbolAndType(entry.Index, entry.Type);
765 String64(*F, ERE64.r_info);
766
767 if (hasRelocationAddend())
768 String64(*F, entry.r_addend);
769 } else {
770 String32(*F, entry.r_offset);
771
772 struct ELF::Elf32_Rela ERE32;
773 ERE32.setSymbolAndType(entry.Index, entry.Type);
774 String32(*F, ERE32.r_info);
775
776 if (hasRelocationAddend())
777 String32(*F, entry.r_addend);
778 }
779 }
780 }
781
compareBySuffix(const void * a,const void * b)782 static int compareBySuffix(const void *a, const void *b) {
783 const MCSectionELF *secA = *static_cast<const MCSectionELF* const *>(a);
784 const MCSectionELF *secB = *static_cast<const MCSectionELF* const *>(b);
785 const StringRef &NameA = secA->getSectionName();
786 const StringRef &NameB = secB->getSectionName();
787 const unsigned sizeA = NameA.size();
788 const unsigned sizeB = NameB.size();
789 const unsigned len = std::min(sizeA, sizeB);
790 for (unsigned int i = 0; i < len; ++i) {
791 char ca = NameA[sizeA - i - 1];
792 char cb = NameB[sizeB - i - 1];
793 if (ca != cb)
794 return cb - ca;
795 }
796
797 return sizeB - sizeA;
798 }
799
CreateMetadataSections(MCAssembler & Asm,MCAsmLayout & Layout,SectionIndexMapTy & SectionIndexMap,const RelMapTy & RelMap)800 void ELFObjectWriter::CreateMetadataSections(MCAssembler &Asm,
801 MCAsmLayout &Layout,
802 SectionIndexMapTy &SectionIndexMap,
803 const RelMapTy &RelMap) {
804 MCContext &Ctx = Asm.getContext();
805 MCDataFragment *F;
806
807 unsigned EntrySize = is64Bit() ? ELF::SYMENTRY_SIZE64 : ELF::SYMENTRY_SIZE32;
808
809 // We construct .shstrtab, .symtab and .strtab in this order to match gnu as.
810 const MCSectionELF *ShstrtabSection =
811 Ctx.getELFSection(".shstrtab", ELF::SHT_STRTAB, 0,
812 SectionKind::getReadOnly());
813 MCSectionData &ShstrtabSD = Asm.getOrCreateSectionData(*ShstrtabSection);
814 ShstrtabSD.setAlignment(1);
815
816 const MCSectionELF *SymtabSection =
817 Ctx.getELFSection(".symtab", ELF::SHT_SYMTAB, 0,
818 SectionKind::getReadOnly(),
819 EntrySize, "");
820 MCSectionData &SymtabSD = Asm.getOrCreateSectionData(*SymtabSection);
821 SymtabSD.setAlignment(is64Bit() ? 8 : 4);
822
823 MCSectionData *SymtabShndxSD = NULL;
824
825 if (NeedsSymtabShndx) {
826 const MCSectionELF *SymtabShndxSection =
827 Ctx.getELFSection(".symtab_shndx", ELF::SHT_SYMTAB_SHNDX, 0,
828 SectionKind::getReadOnly(), 4, "");
829 SymtabShndxSD = &Asm.getOrCreateSectionData(*SymtabShndxSection);
830 SymtabShndxSD->setAlignment(4);
831 }
832
833 const MCSectionELF *StrtabSection;
834 StrtabSection = Ctx.getELFSection(".strtab", ELF::SHT_STRTAB, 0,
835 SectionKind::getReadOnly());
836 MCSectionData &StrtabSD = Asm.getOrCreateSectionData(*StrtabSection);
837 StrtabSD.setAlignment(1);
838
839 ComputeIndexMap(Asm, SectionIndexMap, RelMap);
840
841 ShstrtabIndex = SectionIndexMap.lookup(ShstrtabSection);
842 SymbolTableIndex = SectionIndexMap.lookup(SymtabSection);
843 StringTableIndex = SectionIndexMap.lookup(StrtabSection);
844
845 // Symbol table
846 F = new MCDataFragment(&SymtabSD);
847 MCDataFragment *ShndxF = NULL;
848 if (NeedsSymtabShndx) {
849 ShndxF = new MCDataFragment(SymtabShndxSD);
850 }
851 WriteSymbolTable(F, ShndxF, Asm, Layout, SectionIndexMap);
852
853 F = new MCDataFragment(&StrtabSD);
854 F->getContents().append(StringTable.begin(), StringTable.end());
855
856 F = new MCDataFragment(&ShstrtabSD);
857
858 std::vector<const MCSectionELF*> Sections;
859 for (MCAssembler::const_iterator it = Asm.begin(),
860 ie = Asm.end(); it != ie; ++it) {
861 const MCSectionELF &Section =
862 static_cast<const MCSectionELF&>(it->getSection());
863 Sections.push_back(&Section);
864 }
865 array_pod_sort(Sections.begin(), Sections.end(), compareBySuffix);
866
867 // Section header string table.
868 //
869 // The first entry of a string table holds a null character so skip
870 // section 0.
871 uint64_t Index = 1;
872 F->getContents() += '\x00';
873
874 for (unsigned int I = 0, E = Sections.size(); I != E; ++I) {
875 const MCSectionELF &Section = *Sections[I];
876
877 StringRef Name = Section.getSectionName();
878 if (I != 0) {
879 StringRef PreviousName = Sections[I - 1]->getSectionName();
880 if (PreviousName.endswith(Name)) {
881 SectionStringTableIndex[&Section] = Index - Name.size() - 1;
882 continue;
883 }
884 }
885 // Remember the index into the string table so we can write it
886 // into the sh_name field of the section header table.
887 SectionStringTableIndex[&Section] = Index;
888
889 Index += Name.size() + 1;
890 F->getContents() += Name;
891 F->getContents() += '\x00';
892 }
893 }
894
CreateIndexedSections(MCAssembler & Asm,MCAsmLayout & Layout,GroupMapTy & GroupMap,RevGroupMapTy & RevGroupMap,SectionIndexMapTy & SectionIndexMap,const RelMapTy & RelMap)895 void ELFObjectWriter::CreateIndexedSections(MCAssembler &Asm,
896 MCAsmLayout &Layout,
897 GroupMapTy &GroupMap,
898 RevGroupMapTy &RevGroupMap,
899 SectionIndexMapTy &SectionIndexMap,
900 const RelMapTy &RelMap) {
901 // Create the .note.GNU-stack section if needed.
902 MCContext &Ctx = Asm.getContext();
903 if (Asm.getNoExecStack()) {
904 const MCSectionELF *GnuStackSection =
905 Ctx.getELFSection(".note.GNU-stack", ELF::SHT_PROGBITS, 0,
906 SectionKind::getReadOnly());
907 Asm.getOrCreateSectionData(*GnuStackSection);
908 }
909
910 // Build the groups
911 for (MCAssembler::const_iterator it = Asm.begin(), ie = Asm.end();
912 it != ie; ++it) {
913 const MCSectionELF &Section =
914 static_cast<const MCSectionELF&>(it->getSection());
915 if (!(Section.getFlags() & ELF::SHF_GROUP))
916 continue;
917
918 const MCSymbol *SignatureSymbol = Section.getGroup();
919 Asm.getOrCreateSymbolData(*SignatureSymbol);
920 const MCSectionELF *&Group = RevGroupMap[SignatureSymbol];
921 if (!Group) {
922 Group = Ctx.CreateELFGroupSection();
923 MCSectionData &Data = Asm.getOrCreateSectionData(*Group);
924 Data.setAlignment(4);
925 MCDataFragment *F = new MCDataFragment(&Data);
926 String32(*F, ELF::GRP_COMDAT);
927 }
928 GroupMap[Group] = SignatureSymbol;
929 }
930
931 ComputeIndexMap(Asm, SectionIndexMap, RelMap);
932
933 // Add sections to the groups
934 for (MCAssembler::const_iterator it = Asm.begin(), ie = Asm.end();
935 it != ie; ++it) {
936 const MCSectionELF &Section =
937 static_cast<const MCSectionELF&>(it->getSection());
938 if (!(Section.getFlags() & ELF::SHF_GROUP))
939 continue;
940 const MCSectionELF *Group = RevGroupMap[Section.getGroup()];
941 MCSectionData &Data = Asm.getOrCreateSectionData(*Group);
942 // FIXME: we could use the previous fragment
943 MCDataFragment *F = new MCDataFragment(&Data);
944 unsigned Index = SectionIndexMap.lookup(&Section);
945 String32(*F, Index);
946 }
947 }
948
WriteSection(MCAssembler & Asm,const SectionIndexMapTy & SectionIndexMap,uint32_t GroupSymbolIndex,uint64_t Offset,uint64_t Size,uint64_t Alignment,const MCSectionELF & Section)949 void ELFObjectWriter::WriteSection(MCAssembler &Asm,
950 const SectionIndexMapTy &SectionIndexMap,
951 uint32_t GroupSymbolIndex,
952 uint64_t Offset, uint64_t Size,
953 uint64_t Alignment,
954 const MCSectionELF &Section) {
955 uint64_t sh_link = 0;
956 uint64_t sh_info = 0;
957
958 switch(Section.getType()) {
959 case ELF::SHT_DYNAMIC:
960 sh_link = SectionStringTableIndex[&Section];
961 sh_info = 0;
962 break;
963
964 case ELF::SHT_REL:
965 case ELF::SHT_RELA: {
966 const MCSectionELF *SymtabSection;
967 const MCSectionELF *InfoSection;
968 SymtabSection = Asm.getContext().getELFSection(".symtab", ELF::SHT_SYMTAB,
969 0,
970 SectionKind::getReadOnly());
971 sh_link = SectionIndexMap.lookup(SymtabSection);
972 assert(sh_link && ".symtab not found");
973
974 // Remove ".rel" and ".rela" prefixes.
975 unsigned SecNameLen = (Section.getType() == ELF::SHT_REL) ? 4 : 5;
976 StringRef SectionName = Section.getSectionName().substr(SecNameLen);
977
978 InfoSection = Asm.getContext().getELFSection(SectionName,
979 ELF::SHT_PROGBITS, 0,
980 SectionKind::getReadOnly());
981 sh_info = SectionIndexMap.lookup(InfoSection);
982 break;
983 }
984
985 case ELF::SHT_SYMTAB:
986 case ELF::SHT_DYNSYM:
987 sh_link = StringTableIndex;
988 sh_info = LastLocalSymbolIndex;
989 break;
990
991 case ELF::SHT_SYMTAB_SHNDX:
992 sh_link = SymbolTableIndex;
993 break;
994
995 case ELF::SHT_PROGBITS:
996 case ELF::SHT_STRTAB:
997 case ELF::SHT_NOBITS:
998 case ELF::SHT_NOTE:
999 case ELF::SHT_NULL:
1000 case ELF::SHT_ARM_ATTRIBUTES:
1001 case ELF::SHT_INIT_ARRAY:
1002 case ELF::SHT_FINI_ARRAY:
1003 case ELF::SHT_PREINIT_ARRAY:
1004 case ELF::SHT_X86_64_UNWIND:
1005 // Nothing to do.
1006 break;
1007
1008 case ELF::SHT_GROUP:
1009 sh_link = SymbolTableIndex;
1010 sh_info = GroupSymbolIndex;
1011 break;
1012
1013 default:
1014 assert(0 && "FIXME: sh_type value not supported!");
1015 break;
1016 }
1017
1018 WriteSecHdrEntry(SectionStringTableIndex[&Section], Section.getType(),
1019 Section.getFlags(), 0, Offset, Size, sh_link, sh_info,
1020 Alignment, Section.getEntrySize());
1021 }
1022
IsELFMetaDataSection(const MCSectionData & SD)1023 bool ELFObjectWriter::IsELFMetaDataSection(const MCSectionData &SD) {
1024 return SD.getOrdinal() == ~UINT32_C(0) &&
1025 !SD.getSection().isVirtualSection();
1026 }
1027
DataSectionSize(const MCSectionData & SD)1028 uint64_t ELFObjectWriter::DataSectionSize(const MCSectionData &SD) {
1029 uint64_t Ret = 0;
1030 for (MCSectionData::const_iterator i = SD.begin(), e = SD.end(); i != e;
1031 ++i) {
1032 const MCFragment &F = *i;
1033 assert(F.getKind() == MCFragment::FT_Data);
1034 Ret += cast<MCDataFragment>(F).getContents().size();
1035 }
1036 return Ret;
1037 }
1038
GetSectionFileSize(const MCAsmLayout & Layout,const MCSectionData & SD)1039 uint64_t ELFObjectWriter::GetSectionFileSize(const MCAsmLayout &Layout,
1040 const MCSectionData &SD) {
1041 if (IsELFMetaDataSection(SD))
1042 return DataSectionSize(SD);
1043 return Layout.getSectionFileSize(&SD);
1044 }
1045
GetSectionAddressSize(const MCAsmLayout & Layout,const MCSectionData & SD)1046 uint64_t ELFObjectWriter::GetSectionAddressSize(const MCAsmLayout &Layout,
1047 const MCSectionData &SD) {
1048 if (IsELFMetaDataSection(SD))
1049 return DataSectionSize(SD);
1050 return Layout.getSectionAddressSize(&SD);
1051 }
1052
WriteDataSectionData(MCAssembler & Asm,const MCAsmLayout & Layout,const MCSectionELF & Section)1053 void ELFObjectWriter::WriteDataSectionData(MCAssembler &Asm,
1054 const MCAsmLayout &Layout,
1055 const MCSectionELF &Section) {
1056 uint64_t FileOff = OS.tell();
1057 const MCSectionData &SD = Asm.getOrCreateSectionData(Section);
1058
1059 uint64_t Padding = OffsetToAlignment(FileOff, SD.getAlignment());
1060 WriteZeros(Padding);
1061 FileOff += Padding;
1062
1063 FileOff += GetSectionFileSize(Layout, SD);
1064
1065 if (IsELFMetaDataSection(SD)) {
1066 for (MCSectionData::const_iterator i = SD.begin(), e = SD.end(); i != e;
1067 ++i) {
1068 const MCFragment &F = *i;
1069 assert(F.getKind() == MCFragment::FT_Data);
1070 WriteBytes(cast<MCDataFragment>(F).getContents().str());
1071 }
1072 } else {
1073 Asm.WriteSectionData(&SD, Layout);
1074 }
1075 }
1076
WriteSectionHeader(MCAssembler & Asm,const GroupMapTy & GroupMap,const MCAsmLayout & Layout,const SectionIndexMapTy & SectionIndexMap,const SectionOffsetMapTy & SectionOffsetMap)1077 void ELFObjectWriter::WriteSectionHeader(MCAssembler &Asm,
1078 const GroupMapTy &GroupMap,
1079 const MCAsmLayout &Layout,
1080 const SectionIndexMapTy &SectionIndexMap,
1081 const SectionOffsetMapTy &SectionOffsetMap) {
1082 const unsigned NumSections = Asm.size() + 1;
1083
1084 std::vector<const MCSectionELF*> Sections;
1085 Sections.resize(NumSections - 1);
1086
1087 for (SectionIndexMapTy::const_iterator i=
1088 SectionIndexMap.begin(), e = SectionIndexMap.end(); i != e; ++i) {
1089 const std::pair<const MCSectionELF*, uint32_t> &p = *i;
1090 Sections[p.second - 1] = p.first;
1091 }
1092
1093 // Null section first.
1094 uint64_t FirstSectionSize =
1095 NumSections >= ELF::SHN_LORESERVE ? NumSections : 0;
1096 uint32_t FirstSectionLink =
1097 ShstrtabIndex >= ELF::SHN_LORESERVE ? ShstrtabIndex : 0;
1098 WriteSecHdrEntry(0, 0, 0, 0, 0, FirstSectionSize, FirstSectionLink, 0, 0, 0);
1099
1100 for (unsigned i = 0; i < NumSections - 1; ++i) {
1101 const MCSectionELF &Section = *Sections[i];
1102 const MCSectionData &SD = Asm.getOrCreateSectionData(Section);
1103 uint32_t GroupSymbolIndex;
1104 if (Section.getType() != ELF::SHT_GROUP)
1105 GroupSymbolIndex = 0;
1106 else
1107 GroupSymbolIndex = getSymbolIndexInSymbolTable(Asm,
1108 GroupMap.lookup(&Section));
1109
1110 uint64_t Size = GetSectionAddressSize(Layout, SD);
1111
1112 WriteSection(Asm, SectionIndexMap, GroupSymbolIndex,
1113 SectionOffsetMap.lookup(&Section), Size,
1114 SD.getAlignment(), Section);
1115 }
1116 }
1117
ComputeSectionOrder(MCAssembler & Asm,std::vector<const MCSectionELF * > & Sections)1118 void ELFObjectWriter::ComputeSectionOrder(MCAssembler &Asm,
1119 std::vector<const MCSectionELF*> &Sections) {
1120 for (MCAssembler::iterator it = Asm.begin(),
1121 ie = Asm.end(); it != ie; ++it) {
1122 const MCSectionELF &Section =
1123 static_cast<const MCSectionELF &>(it->getSection());
1124 if (Section.getType() == ELF::SHT_GROUP)
1125 Sections.push_back(&Section);
1126 }
1127
1128 for (MCAssembler::iterator it = Asm.begin(),
1129 ie = Asm.end(); it != ie; ++it) {
1130 const MCSectionELF &Section =
1131 static_cast<const MCSectionELF &>(it->getSection());
1132 if (Section.getType() != ELF::SHT_GROUP &&
1133 Section.getType() != ELF::SHT_REL &&
1134 Section.getType() != ELF::SHT_RELA)
1135 Sections.push_back(&Section);
1136 }
1137
1138 for (MCAssembler::iterator it = Asm.begin(),
1139 ie = Asm.end(); it != ie; ++it) {
1140 const MCSectionELF &Section =
1141 static_cast<const MCSectionELF &>(it->getSection());
1142 if (Section.getType() == ELF::SHT_REL ||
1143 Section.getType() == ELF::SHT_RELA)
1144 Sections.push_back(&Section);
1145 }
1146 }
1147
WriteObject(MCAssembler & Asm,const MCAsmLayout & Layout)1148 void ELFObjectWriter::WriteObject(MCAssembler &Asm,
1149 const MCAsmLayout &Layout) {
1150 GroupMapTy GroupMap;
1151 RevGroupMapTy RevGroupMap;
1152 SectionIndexMapTy SectionIndexMap;
1153
1154 unsigned NumUserSections = Asm.size();
1155
1156 DenseMap<const MCSectionELF*, const MCSectionELF*> RelMap;
1157 CreateRelocationSections(Asm, const_cast<MCAsmLayout&>(Layout), RelMap);
1158
1159 const unsigned NumUserAndRelocSections = Asm.size();
1160 CreateIndexedSections(Asm, const_cast<MCAsmLayout&>(Layout), GroupMap,
1161 RevGroupMap, SectionIndexMap, RelMap);
1162 const unsigned AllSections = Asm.size();
1163 const unsigned NumIndexedSections = AllSections - NumUserAndRelocSections;
1164
1165 unsigned NumRegularSections = NumUserSections + NumIndexedSections;
1166
1167 // Compute symbol table information.
1168 ComputeSymbolTable(Asm, SectionIndexMap, RevGroupMap, NumRegularSections);
1169
1170
1171 WriteRelocations(Asm, const_cast<MCAsmLayout&>(Layout), RelMap);
1172
1173 CreateMetadataSections(const_cast<MCAssembler&>(Asm),
1174 const_cast<MCAsmLayout&>(Layout),
1175 SectionIndexMap,
1176 RelMap);
1177
1178 uint64_t NaturalAlignment = is64Bit() ? 8 : 4;
1179 uint64_t HeaderSize = is64Bit() ? sizeof(ELF::Elf64_Ehdr) :
1180 sizeof(ELF::Elf32_Ehdr);
1181 uint64_t FileOff = HeaderSize;
1182
1183 std::vector<const MCSectionELF*> Sections;
1184 ComputeSectionOrder(Asm, Sections);
1185 unsigned NumSections = Sections.size();
1186 SectionOffsetMapTy SectionOffsetMap;
1187 for (unsigned i = 0; i < NumRegularSections + 1; ++i) {
1188 const MCSectionELF &Section = *Sections[i];
1189 const MCSectionData &SD = Asm.getOrCreateSectionData(Section);
1190
1191 FileOff = RoundUpToAlignment(FileOff, SD.getAlignment());
1192
1193 // Remember the offset into the file for this section.
1194 SectionOffsetMap[&Section] = FileOff;
1195
1196 // Get the size of the section in the output file (including padding).
1197 FileOff += GetSectionFileSize(Layout, SD);
1198 }
1199
1200 FileOff = RoundUpToAlignment(FileOff, NaturalAlignment);
1201
1202 const unsigned SectionHeaderOffset = FileOff - HeaderSize;
1203
1204 uint64_t SectionHeaderEntrySize = is64Bit() ?
1205 sizeof(ELF::Elf64_Shdr) : sizeof(ELF::Elf32_Shdr);
1206 FileOff += (NumSections + 1) * SectionHeaderEntrySize;
1207
1208 for (unsigned i = NumRegularSections + 1; i < NumSections; ++i) {
1209 const MCSectionELF &Section = *Sections[i];
1210 const MCSectionData &SD = Asm.getOrCreateSectionData(Section);
1211
1212 FileOff = RoundUpToAlignment(FileOff, SD.getAlignment());
1213
1214 // Remember the offset into the file for this section.
1215 SectionOffsetMap[&Section] = FileOff;
1216
1217 // Get the size of the section in the output file (including padding).
1218 FileOff += GetSectionFileSize(Layout, SD);
1219 }
1220
1221 // Write out the ELF header ...
1222 WriteHeader(SectionHeaderOffset, NumSections + 1);
1223
1224 // ... then the regular sections ...
1225 // + because of .shstrtab
1226 for (unsigned i = 0; i < NumRegularSections + 1; ++i)
1227 WriteDataSectionData(Asm, Layout, *Sections[i]);
1228
1229 FileOff = OS.tell();
1230 uint64_t Padding = OffsetToAlignment(FileOff, NaturalAlignment);
1231 WriteZeros(Padding);
1232
1233 // ... then the section header table ...
1234 WriteSectionHeader(Asm, GroupMap, Layout, SectionIndexMap,
1235 SectionOffsetMap);
1236
1237 FileOff = OS.tell();
1238
1239 // ... and then the remaining sections ...
1240 for (unsigned i = NumRegularSections + 1; i < NumSections; ++i)
1241 WriteDataSectionData(Asm, Layout, *Sections[i]);
1242 }
1243
1244 bool
IsSymbolRefDifferenceFullyResolvedImpl(const MCAssembler & Asm,const MCSymbolData & DataA,const MCFragment & FB,bool InSet,bool IsPCRel) const1245 ELFObjectWriter::IsSymbolRefDifferenceFullyResolvedImpl(const MCAssembler &Asm,
1246 const MCSymbolData &DataA,
1247 const MCFragment &FB,
1248 bool InSet,
1249 bool IsPCRel) const {
1250 if (DataA.getFlags() & ELF_STB_Weak)
1251 return false;
1252 return MCObjectWriter::IsSymbolRefDifferenceFullyResolvedImpl(
1253 Asm, DataA, FB,InSet, IsPCRel);
1254 }
1255
createELFObjectWriter(MCELFObjectTargetWriter * MOTW,raw_ostream & OS,bool IsLittleEndian)1256 MCObjectWriter *llvm::createELFObjectWriter(MCELFObjectTargetWriter *MOTW,
1257 raw_ostream &OS,
1258 bool IsLittleEndian) {
1259 switch (MOTW->getEMachine()) {
1260 case ELF::EM_386:
1261 case ELF::EM_X86_64:
1262 return new X86ELFObjectWriter(MOTW, OS, IsLittleEndian); break;
1263 case ELF::EM_ARM:
1264 return new ARMELFObjectWriter(MOTW, OS, IsLittleEndian); break;
1265 case ELF::EM_MBLAZE:
1266 return new MBlazeELFObjectWriter(MOTW, OS, IsLittleEndian); break;
1267 case ELF::EM_PPC:
1268 case ELF::EM_PPC64:
1269 return new PPCELFObjectWriter(MOTW, OS, IsLittleEndian); break;
1270 case ELF::EM_MIPS:
1271 return new MipsELFObjectWriter(MOTW, OS, IsLittleEndian); break;
1272 default: llvm_unreachable("Unsupported architecture"); break;
1273 }
1274 }
1275
1276
1277 /// START OF SUBCLASSES for ELFObjectWriter
1278 //===- ARMELFObjectWriter -------------------------------------------===//
1279
ARMELFObjectWriter(MCELFObjectTargetWriter * MOTW,raw_ostream & _OS,bool IsLittleEndian)1280 ARMELFObjectWriter::ARMELFObjectWriter(MCELFObjectTargetWriter *MOTW,
1281 raw_ostream &_OS,
1282 bool IsLittleEndian)
1283 : ELFObjectWriter(MOTW, _OS, IsLittleEndian)
1284 {}
1285
~ARMELFObjectWriter()1286 ARMELFObjectWriter::~ARMELFObjectWriter()
1287 {}
1288
1289 // FIXME: get the real EABI Version from the Triple.
WriteEFlags()1290 void ARMELFObjectWriter::WriteEFlags() {
1291 Write32(ELF::EF_ARM_EABIMASK & DefaultEABIVersion);
1292 }
1293
1294 // In ARM, _MergedGlobals and other most symbols get emitted directly.
1295 // I.e. not as an offset to a section symbol.
1296 // This code is an approximation of what ARM/gcc does.
1297
1298 STATISTIC(PCRelCount, "Total number of PIC Relocations");
1299 STATISTIC(NonPCRelCount, "Total number of non-PIC relocations");
1300
ExplicitRelSym(const MCAssembler & Asm,const MCValue & Target,const MCFragment & F,const MCFixup & Fixup,bool IsPCRel) const1301 const MCSymbol *ARMELFObjectWriter::ExplicitRelSym(const MCAssembler &Asm,
1302 const MCValue &Target,
1303 const MCFragment &F,
1304 const MCFixup &Fixup,
1305 bool IsPCRel) const {
1306 const MCSymbol &Symbol = Target.getSymA()->getSymbol();
1307 bool EmitThisSym = false;
1308
1309 const MCSectionELF &Section =
1310 static_cast<const MCSectionELF&>(Symbol.getSection());
1311 bool InNormalSection = true;
1312 unsigned RelocType = 0;
1313 RelocType = GetRelocTypeInner(Target, Fixup, IsPCRel);
1314
1315 DEBUG(
1316 const MCSymbolRefExpr::VariantKind Kind = Target.getSymA()->getKind();
1317 MCSymbolRefExpr::VariantKind Kind2;
1318 Kind2 = Target.getSymB() ? Target.getSymB()->getKind() :
1319 MCSymbolRefExpr::VK_None;
1320 dbgs() << "considering symbol "
1321 << Section.getSectionName() << "/"
1322 << Symbol.getName() << "/"
1323 << " Rel:" << (unsigned)RelocType
1324 << " Kind: " << (int)Kind << "/" << (int)Kind2
1325 << " Tmp:"
1326 << Symbol.isAbsolute() << "/" << Symbol.isDefined() << "/"
1327 << Symbol.isVariable() << "/" << Symbol.isTemporary()
1328 << " Counts:" << PCRelCount << "/" << NonPCRelCount << "\n");
1329
1330 if (IsPCRel) { ++PCRelCount;
1331 switch (RelocType) {
1332 default:
1333 // Most relocation types are emitted as explicit symbols
1334 InNormalSection =
1335 StringSwitch<bool>(Section.getSectionName())
1336 .Case(".data.rel.ro.local", false)
1337 .Case(".data.rel", false)
1338 .Case(".bss", false)
1339 .Default(true);
1340 EmitThisSym = true;
1341 break;
1342 case ELF::R_ARM_ABS32:
1343 // But things get strange with R_ARM_ABS32
1344 // In this case, most things that go in .rodata show up
1345 // as section relative relocations
1346 InNormalSection =
1347 StringSwitch<bool>(Section.getSectionName())
1348 .Case(".data.rel.ro.local", false)
1349 .Case(".data.rel", false)
1350 .Case(".rodata", false)
1351 .Case(".bss", false)
1352 .Default(true);
1353 EmitThisSym = false;
1354 break;
1355 }
1356 } else {
1357 NonPCRelCount++;
1358 InNormalSection =
1359 StringSwitch<bool>(Section.getSectionName())
1360 .Case(".data.rel.ro.local", false)
1361 .Case(".rodata", false)
1362 .Case(".data.rel", false)
1363 .Case(".bss", false)
1364 .Default(true);
1365
1366 switch (RelocType) {
1367 default: EmitThisSym = true; break;
1368 case ELF::R_ARM_ABS32: EmitThisSym = false; break;
1369 }
1370 }
1371
1372 if (EmitThisSym)
1373 return &Symbol;
1374 if (! Symbol.isTemporary() && InNormalSection) {
1375 return &Symbol;
1376 }
1377 return NULL;
1378 }
1379
1380 // Need to examine the Fixup when determining whether to
1381 // emit the relocation as an explicit symbol or as a section relative
1382 // offset
GetRelocType(const MCValue & Target,const MCFixup & Fixup,bool IsPCRel,bool IsRelocWithSymbol,int64_t Addend)1383 unsigned ARMELFObjectWriter::GetRelocType(const MCValue &Target,
1384 const MCFixup &Fixup,
1385 bool IsPCRel,
1386 bool IsRelocWithSymbol,
1387 int64_t Addend) {
1388 MCSymbolRefExpr::VariantKind Modifier = Target.isAbsolute() ?
1389 MCSymbolRefExpr::VK_None : Target.getSymA()->getKind();
1390
1391 unsigned Type = GetRelocTypeInner(Target, Fixup, IsPCRel);
1392
1393 if (RelocNeedsGOT(Modifier))
1394 NeedsGOT = true;
1395
1396 return Type;
1397 }
1398
GetRelocTypeInner(const MCValue & Target,const MCFixup & Fixup,bool IsPCRel) const1399 unsigned ARMELFObjectWriter::GetRelocTypeInner(const MCValue &Target,
1400 const MCFixup &Fixup,
1401 bool IsPCRel) const {
1402 MCSymbolRefExpr::VariantKind Modifier = Target.isAbsolute() ?
1403 MCSymbolRefExpr::VK_None : Target.getSymA()->getKind();
1404
1405 unsigned Type = 0;
1406 if (IsPCRel) {
1407 switch ((unsigned)Fixup.getKind()) {
1408 default: assert(0 && "Unimplemented");
1409 case FK_Data_4:
1410 switch (Modifier) {
1411 default: llvm_unreachable("Unsupported Modifier");
1412 case MCSymbolRefExpr::VK_None:
1413 Type = ELF::R_ARM_REL32;
1414 break;
1415 case MCSymbolRefExpr::VK_ARM_TLSGD:
1416 assert(0 && "unimplemented");
1417 break;
1418 case MCSymbolRefExpr::VK_ARM_GOTTPOFF:
1419 Type = ELF::R_ARM_TLS_IE32;
1420 break;
1421 }
1422 break;
1423 case ARM::fixup_arm_uncondbranch:
1424 switch (Modifier) {
1425 case MCSymbolRefExpr::VK_ARM_PLT:
1426 Type = ELF::R_ARM_PLT32;
1427 break;
1428 default:
1429 Type = ELF::R_ARM_CALL;
1430 break;
1431 }
1432 break;
1433 case ARM::fixup_arm_condbranch:
1434 Type = ELF::R_ARM_JUMP24;
1435 break;
1436 case ARM::fixup_arm_movt_hi16:
1437 case ARM::fixup_arm_movt_hi16_pcrel:
1438 Type = ELF::R_ARM_MOVT_PREL;
1439 break;
1440 case ARM::fixup_arm_movw_lo16:
1441 case ARM::fixup_arm_movw_lo16_pcrel:
1442 Type = ELF::R_ARM_MOVW_PREL_NC;
1443 break;
1444 case ARM::fixup_t2_movt_hi16:
1445 case ARM::fixup_t2_movt_hi16_pcrel:
1446 Type = ELF::R_ARM_THM_MOVT_PREL;
1447 break;
1448 case ARM::fixup_t2_movw_lo16:
1449 case ARM::fixup_t2_movw_lo16_pcrel:
1450 Type = ELF::R_ARM_THM_MOVW_PREL_NC;
1451 break;
1452 case ARM::fixup_arm_thumb_bl:
1453 case ARM::fixup_arm_thumb_blx:
1454 switch (Modifier) {
1455 case MCSymbolRefExpr::VK_ARM_PLT:
1456 Type = ELF::R_ARM_THM_CALL;
1457 break;
1458 default:
1459 Type = ELF::R_ARM_NONE;
1460 break;
1461 }
1462 break;
1463 }
1464 } else {
1465 switch ((unsigned)Fixup.getKind()) {
1466 default: llvm_unreachable("invalid fixup kind!");
1467 case FK_Data_4:
1468 switch (Modifier) {
1469 default: llvm_unreachable("Unsupported Modifier"); break;
1470 case MCSymbolRefExpr::VK_ARM_GOT:
1471 Type = ELF::R_ARM_GOT_BREL;
1472 break;
1473 case MCSymbolRefExpr::VK_ARM_TLSGD:
1474 Type = ELF::R_ARM_TLS_GD32;
1475 break;
1476 case MCSymbolRefExpr::VK_ARM_TPOFF:
1477 Type = ELF::R_ARM_TLS_LE32;
1478 break;
1479 case MCSymbolRefExpr::VK_ARM_GOTTPOFF:
1480 Type = ELF::R_ARM_TLS_IE32;
1481 break;
1482 case MCSymbolRefExpr::VK_None:
1483 Type = ELF::R_ARM_ABS32;
1484 break;
1485 case MCSymbolRefExpr::VK_ARM_GOTOFF:
1486 Type = ELF::R_ARM_GOTOFF32;
1487 break;
1488 }
1489 break;
1490 case ARM::fixup_arm_ldst_pcrel_12:
1491 case ARM::fixup_arm_pcrel_10:
1492 case ARM::fixup_arm_adr_pcrel_12:
1493 case ARM::fixup_arm_thumb_bl:
1494 case ARM::fixup_arm_thumb_cb:
1495 case ARM::fixup_arm_thumb_cp:
1496 case ARM::fixup_arm_thumb_br:
1497 assert(0 && "Unimplemented");
1498 break;
1499 case ARM::fixup_arm_uncondbranch:
1500 Type = ELF::R_ARM_CALL;
1501 break;
1502 case ARM::fixup_arm_condbranch:
1503 Type = ELF::R_ARM_JUMP24;
1504 break;
1505 case ARM::fixup_arm_movt_hi16:
1506 Type = ELF::R_ARM_MOVT_ABS;
1507 break;
1508 case ARM::fixup_arm_movw_lo16:
1509 Type = ELF::R_ARM_MOVW_ABS_NC;
1510 break;
1511 case ARM::fixup_t2_movt_hi16:
1512 Type = ELF::R_ARM_THM_MOVT_ABS;
1513 break;
1514 case ARM::fixup_t2_movw_lo16:
1515 Type = ELF::R_ARM_THM_MOVW_ABS_NC;
1516 break;
1517 }
1518 }
1519
1520 return Type;
1521 }
1522
1523 //===- PPCELFObjectWriter -------------------------------------------===//
1524
PPCELFObjectWriter(MCELFObjectTargetWriter * MOTW,raw_ostream & _OS,bool IsLittleEndian)1525 PPCELFObjectWriter::PPCELFObjectWriter(MCELFObjectTargetWriter *MOTW,
1526 raw_ostream &_OS,
1527 bool IsLittleEndian)
1528 : ELFObjectWriter(MOTW, _OS, IsLittleEndian) {
1529 }
1530
~PPCELFObjectWriter()1531 PPCELFObjectWriter::~PPCELFObjectWriter() {
1532 }
1533
GetRelocType(const MCValue & Target,const MCFixup & Fixup,bool IsPCRel,bool IsRelocWithSymbol,int64_t Addend)1534 unsigned PPCELFObjectWriter::GetRelocType(const MCValue &Target,
1535 const MCFixup &Fixup,
1536 bool IsPCRel,
1537 bool IsRelocWithSymbol,
1538 int64_t Addend) {
1539 // determine the type of the relocation
1540 unsigned Type;
1541 if (IsPCRel) {
1542 switch ((unsigned)Fixup.getKind()) {
1543 default:
1544 llvm_unreachable("Unimplemented");
1545 case PPC::fixup_ppc_br24:
1546 Type = ELF::R_PPC_REL24;
1547 break;
1548 case FK_PCRel_4:
1549 Type = ELF::R_PPC_REL32;
1550 break;
1551 }
1552 } else {
1553 switch ((unsigned)Fixup.getKind()) {
1554 default: llvm_unreachable("invalid fixup kind!");
1555 case PPC::fixup_ppc_br24:
1556 Type = ELF::R_PPC_ADDR24;
1557 break;
1558 case PPC::fixup_ppc_brcond14:
1559 Type = ELF::R_PPC_ADDR14_BRTAKEN; // XXX: or BRNTAKEN?_
1560 break;
1561 case PPC::fixup_ppc_ha16:
1562 Type = ELF::R_PPC_ADDR16_HA;
1563 break;
1564 case PPC::fixup_ppc_lo16:
1565 Type = ELF::R_PPC_ADDR16_LO;
1566 break;
1567 case PPC::fixup_ppc_lo14:
1568 Type = ELF::R_PPC_ADDR14;
1569 break;
1570 case FK_Data_4:
1571 Type = ELF::R_PPC_ADDR32;
1572 break;
1573 case FK_Data_2:
1574 Type = ELF::R_PPC_ADDR16;
1575 break;
1576 }
1577 }
1578 return Type;
1579 }
1580
1581 void
adjustFixupOffset(const MCFixup & Fixup,uint64_t & RelocOffset)1582 PPCELFObjectWriter::adjustFixupOffset(const MCFixup &Fixup, uint64_t &RelocOffset) {
1583 switch ((unsigned)Fixup.getKind()) {
1584 case PPC::fixup_ppc_ha16:
1585 case PPC::fixup_ppc_lo16:
1586 RelocOffset += 2;
1587 break;
1588 default:
1589 break;
1590 }
1591 }
1592
1593 //===- MBlazeELFObjectWriter -------------------------------------------===//
1594
MBlazeELFObjectWriter(MCELFObjectTargetWriter * MOTW,raw_ostream & _OS,bool IsLittleEndian)1595 MBlazeELFObjectWriter::MBlazeELFObjectWriter(MCELFObjectTargetWriter *MOTW,
1596 raw_ostream &_OS,
1597 bool IsLittleEndian)
1598 : ELFObjectWriter(MOTW, _OS, IsLittleEndian) {
1599 }
1600
~MBlazeELFObjectWriter()1601 MBlazeELFObjectWriter::~MBlazeELFObjectWriter() {
1602 }
1603
GetRelocType(const MCValue & Target,const MCFixup & Fixup,bool IsPCRel,bool IsRelocWithSymbol,int64_t Addend)1604 unsigned MBlazeELFObjectWriter::GetRelocType(const MCValue &Target,
1605 const MCFixup &Fixup,
1606 bool IsPCRel,
1607 bool IsRelocWithSymbol,
1608 int64_t Addend) {
1609 // determine the type of the relocation
1610 unsigned Type;
1611 if (IsPCRel) {
1612 switch ((unsigned)Fixup.getKind()) {
1613 default:
1614 llvm_unreachable("Unimplemented");
1615 case FK_PCRel_4:
1616 Type = ELF::R_MICROBLAZE_64_PCREL;
1617 break;
1618 case FK_PCRel_2:
1619 Type = ELF::R_MICROBLAZE_32_PCREL;
1620 break;
1621 }
1622 } else {
1623 switch ((unsigned)Fixup.getKind()) {
1624 default: llvm_unreachable("invalid fixup kind!");
1625 case FK_Data_4:
1626 Type = ((IsRelocWithSymbol || Addend !=0)
1627 ? ELF::R_MICROBLAZE_32
1628 : ELF::R_MICROBLAZE_64);
1629 break;
1630 case FK_Data_2:
1631 Type = ELF::R_MICROBLAZE_32;
1632 break;
1633 }
1634 }
1635 return Type;
1636 }
1637
1638 //===- X86ELFObjectWriter -------------------------------------------===//
1639
1640
X86ELFObjectWriter(MCELFObjectTargetWriter * MOTW,raw_ostream & _OS,bool IsLittleEndian)1641 X86ELFObjectWriter::X86ELFObjectWriter(MCELFObjectTargetWriter *MOTW,
1642 raw_ostream &_OS,
1643 bool IsLittleEndian)
1644 : ELFObjectWriter(MOTW, _OS, IsLittleEndian)
1645 {}
1646
~X86ELFObjectWriter()1647 X86ELFObjectWriter::~X86ELFObjectWriter()
1648 {}
1649
GetRelocType(const MCValue & Target,const MCFixup & Fixup,bool IsPCRel,bool IsRelocWithSymbol,int64_t Addend)1650 unsigned X86ELFObjectWriter::GetRelocType(const MCValue &Target,
1651 const MCFixup &Fixup,
1652 bool IsPCRel,
1653 bool IsRelocWithSymbol,
1654 int64_t Addend) {
1655 // determine the type of the relocation
1656
1657 MCSymbolRefExpr::VariantKind Modifier = Target.isAbsolute() ?
1658 MCSymbolRefExpr::VK_None : Target.getSymA()->getKind();
1659 unsigned Type;
1660 if (is64Bit()) {
1661 if (IsPCRel) {
1662 switch ((unsigned)Fixup.getKind()) {
1663 default: llvm_unreachable("invalid fixup kind!");
1664
1665 case FK_Data_8: Type = ELF::R_X86_64_PC64; break;
1666 case FK_Data_4: Type = ELF::R_X86_64_PC32; break;
1667 case FK_Data_2: Type = ELF::R_X86_64_PC16; break;
1668
1669 case FK_PCRel_8:
1670 assert(Modifier == MCSymbolRefExpr::VK_None);
1671 Type = ELF::R_X86_64_PC64;
1672 break;
1673 case X86::reloc_signed_4byte:
1674 case X86::reloc_riprel_4byte_movq_load:
1675 case X86::reloc_riprel_4byte:
1676 case FK_PCRel_4:
1677 switch (Modifier) {
1678 default:
1679 llvm_unreachable("Unimplemented");
1680 case MCSymbolRefExpr::VK_None:
1681 Type = ELF::R_X86_64_PC32;
1682 break;
1683 case MCSymbolRefExpr::VK_PLT:
1684 Type = ELF::R_X86_64_PLT32;
1685 break;
1686 case MCSymbolRefExpr::VK_GOTPCREL:
1687 Type = ELF::R_X86_64_GOTPCREL;
1688 break;
1689 case MCSymbolRefExpr::VK_GOTTPOFF:
1690 Type = ELF::R_X86_64_GOTTPOFF;
1691 break;
1692 case MCSymbolRefExpr::VK_TLSGD:
1693 Type = ELF::R_X86_64_TLSGD;
1694 break;
1695 case MCSymbolRefExpr::VK_TLSLD:
1696 Type = ELF::R_X86_64_TLSLD;
1697 break;
1698 }
1699 break;
1700 case FK_PCRel_2:
1701 assert(Modifier == MCSymbolRefExpr::VK_None);
1702 Type = ELF::R_X86_64_PC16;
1703 break;
1704 case FK_PCRel_1:
1705 assert(Modifier == MCSymbolRefExpr::VK_None);
1706 Type = ELF::R_X86_64_PC8;
1707 break;
1708 }
1709 } else {
1710 switch ((unsigned)Fixup.getKind()) {
1711 default: llvm_unreachable("invalid fixup kind!");
1712 case FK_Data_8: Type = ELF::R_X86_64_64; break;
1713 case X86::reloc_signed_4byte:
1714 switch (Modifier) {
1715 default:
1716 llvm_unreachable("Unimplemented");
1717 case MCSymbolRefExpr::VK_None:
1718 Type = ELF::R_X86_64_32S;
1719 break;
1720 case MCSymbolRefExpr::VK_GOT:
1721 Type = ELF::R_X86_64_GOT32;
1722 break;
1723 case MCSymbolRefExpr::VK_GOTPCREL:
1724 Type = ELF::R_X86_64_GOTPCREL;
1725 break;
1726 case MCSymbolRefExpr::VK_TPOFF:
1727 Type = ELF::R_X86_64_TPOFF32;
1728 break;
1729 case MCSymbolRefExpr::VK_DTPOFF:
1730 Type = ELF::R_X86_64_DTPOFF32;
1731 break;
1732 }
1733 break;
1734 case FK_Data_4:
1735 Type = ELF::R_X86_64_32;
1736 break;
1737 case FK_Data_2: Type = ELF::R_X86_64_16; break;
1738 case FK_PCRel_1:
1739 case FK_Data_1: Type = ELF::R_X86_64_8; break;
1740 }
1741 }
1742 } else {
1743 if (IsPCRel) {
1744 switch (Modifier) {
1745 default:
1746 llvm_unreachable("Unimplemented");
1747 case MCSymbolRefExpr::VK_None:
1748 Type = ELF::R_386_PC32;
1749 break;
1750 case MCSymbolRefExpr::VK_PLT:
1751 Type = ELF::R_386_PLT32;
1752 break;
1753 }
1754 } else {
1755 switch ((unsigned)Fixup.getKind()) {
1756 default: llvm_unreachable("invalid fixup kind!");
1757
1758 case X86::reloc_global_offset_table:
1759 Type = ELF::R_386_GOTPC;
1760 break;
1761
1762 // FIXME: Should we avoid selecting reloc_signed_4byte in 32 bit mode
1763 // instead?
1764 case X86::reloc_signed_4byte:
1765 case FK_PCRel_4:
1766 case FK_Data_4:
1767 switch (Modifier) {
1768 default:
1769 llvm_unreachable("Unimplemented");
1770 case MCSymbolRefExpr::VK_None:
1771 Type = ELF::R_386_32;
1772 break;
1773 case MCSymbolRefExpr::VK_GOT:
1774 Type = ELF::R_386_GOT32;
1775 break;
1776 case MCSymbolRefExpr::VK_GOTOFF:
1777 Type = ELF::R_386_GOTOFF;
1778 break;
1779 case MCSymbolRefExpr::VK_TLSGD:
1780 Type = ELF::R_386_TLS_GD;
1781 break;
1782 case MCSymbolRefExpr::VK_TPOFF:
1783 Type = ELF::R_386_TLS_LE_32;
1784 break;
1785 case MCSymbolRefExpr::VK_INDNTPOFF:
1786 Type = ELF::R_386_TLS_IE;
1787 break;
1788 case MCSymbolRefExpr::VK_NTPOFF:
1789 Type = ELF::R_386_TLS_LE;
1790 break;
1791 case MCSymbolRefExpr::VK_GOTNTPOFF:
1792 Type = ELF::R_386_TLS_GOTIE;
1793 break;
1794 case MCSymbolRefExpr::VK_TLSLDM:
1795 Type = ELF::R_386_TLS_LDM;
1796 break;
1797 case MCSymbolRefExpr::VK_DTPOFF:
1798 Type = ELF::R_386_TLS_LDO_32;
1799 break;
1800 case MCSymbolRefExpr::VK_GOTTPOFF:
1801 Type = ELF::R_386_TLS_IE_32;
1802 break;
1803 }
1804 break;
1805 case FK_Data_2: Type = ELF::R_386_16; break;
1806 case FK_PCRel_1:
1807 case FK_Data_1: Type = ELF::R_386_8; break;
1808 }
1809 }
1810 }
1811
1812 if (RelocNeedsGOT(Modifier))
1813 NeedsGOT = true;
1814
1815 return Type;
1816 }
1817
MipsELFObjectWriter(MCELFObjectTargetWriter * MOTW,raw_ostream & _OS,bool IsLittleEndian)1818 MipsELFObjectWriter::MipsELFObjectWriter(MCELFObjectTargetWriter *MOTW,
1819 raw_ostream &_OS,
1820 bool IsLittleEndian)
1821 : ELFObjectWriter(MOTW, _OS, IsLittleEndian) {}
1822
~MipsELFObjectWriter()1823 MipsELFObjectWriter::~MipsELFObjectWriter() {}
1824
GetRelocType(const MCValue & Target,const MCFixup & Fixup,bool IsPCRel,bool IsRelocWithSymbol,int64_t Addend)1825 unsigned MipsELFObjectWriter::GetRelocType(const MCValue &Target,
1826 const MCFixup &Fixup,
1827 bool IsPCRel,
1828 bool IsRelocWithSymbol,
1829 int64_t Addend) {
1830 // tbd
1831 return 1;
1832 }
1833