MCMachOStreamer.cpp revision 73c557458c0e28899f37c557bcaf36c2b6701260
1//===- lib/MC/MCMachOStreamer.cpp - Mach-O Object Output ------------===// 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#include "llvm/MC/MCStreamer.h" 11 12#include "llvm/MC/MCAssembler.h" 13#include "llvm/MC/MCContext.h" 14#include "llvm/MC/MCCodeEmitter.h" 15#include "llvm/MC/MCExpr.h" 16#include "llvm/MC/MCInst.h" 17#include "llvm/MC/MCSection.h" 18#include "llvm/MC/MCSymbol.h" 19#include "llvm/MC/MCValue.h" 20#include "llvm/Support/ErrorHandling.h" 21#include "llvm/Support/raw_ostream.h" 22using namespace llvm; 23 24namespace { 25 26class MCMachOStreamer : public MCStreamer { 27 /// SymbolFlags - We store the value for the 'desc' symbol field in the lowest 28 /// 16 bits of the implementation defined flags. 29 enum SymbolFlags { // See <mach-o/nlist.h>. 30 SF_DescFlagsMask = 0xFFFF, 31 32 // Reference type flags. 33 SF_ReferenceTypeMask = 0x0007, 34 SF_ReferenceTypeUndefinedNonLazy = 0x0000, 35 SF_ReferenceTypeUndefinedLazy = 0x0001, 36 SF_ReferenceTypeDefined = 0x0002, 37 SF_ReferenceTypePrivateDefined = 0x0003, 38 SF_ReferenceTypePrivateUndefinedNonLazy = 0x0004, 39 SF_ReferenceTypePrivateUndefinedLazy = 0x0005, 40 41 // Other 'desc' flags. 42 SF_NoDeadStrip = 0x0020, 43 SF_WeakReference = 0x0040, 44 SF_WeakDefinition = 0x0080 45 }; 46 47private: 48 MCAssembler Assembler; 49 MCCodeEmitter *Emitter; 50 MCSectionData *CurSectionData; 51 DenseMap<const MCSection*, MCSectionData*> SectionMap; 52 DenseMap<const MCSymbol*, MCSymbolData*> SymbolMap; 53 54private: 55 MCFragment *getCurrentFragment() const { 56 assert(CurSectionData && "No current section!"); 57 58 if (!CurSectionData->empty()) 59 return &CurSectionData->getFragmentList().back(); 60 61 return 0; 62 } 63 64 MCSectionData &getSectionData(const MCSection &Section) { 65 MCSectionData *&Entry = SectionMap[&Section]; 66 67 if (!Entry) 68 Entry = new MCSectionData(Section, &Assembler); 69 70 return *Entry; 71 } 72 73 MCSymbolData &getSymbolData(const MCSymbol &Symbol) { 74 MCSymbolData *&Entry = SymbolMap[&Symbol]; 75 76 if (!Entry) 77 Entry = new MCSymbolData(Symbol, 0, 0, &Assembler); 78 79 return *Entry; 80 } 81 82public: 83 MCMachOStreamer(MCContext &Context, raw_ostream &_OS, MCCodeEmitter *_Emitter) 84 : MCStreamer(Context), Assembler(Context, _OS), Emitter(_Emitter), 85 CurSectionData(0) {} 86 ~MCMachOStreamer() {} 87 88 const MCExpr *AddValueSymbols(const MCExpr *Value) { 89 switch (Value->getKind()) { 90 case MCExpr::Target: assert(0 && "Can't handle target exprs yet!"); 91 case MCExpr::Constant: 92 break; 93 94 case MCExpr::Binary: { 95 const MCBinaryExpr *BE = cast<MCBinaryExpr>(Value); 96 AddValueSymbols(BE->getLHS()); 97 AddValueSymbols(BE->getRHS()); 98 break; 99 } 100 101 case MCExpr::SymbolRef: 102 getSymbolData(cast<MCSymbolRefExpr>(Value)->getSymbol()); 103 break; 104 105 case MCExpr::Unary: 106 AddValueSymbols(cast<MCUnaryExpr>(Value)->getSubExpr()); 107 break; 108 } 109 110 return Value; 111 } 112 113 /// @name MCStreamer Interface 114 /// @{ 115 116 virtual void SwitchSection(const MCSection *Section); 117 virtual void EmitLabel(MCSymbol *Symbol); 118 virtual void EmitAssemblerFlag(MCAssemblerFlag Flag); 119 virtual void EmitAssignment(MCSymbol *Symbol, const MCExpr *Value); 120 virtual void EmitSymbolAttribute(MCSymbol *Symbol, MCSymbolAttr Attribute); 121 virtual void EmitSymbolDesc(MCSymbol *Symbol, unsigned DescValue); 122 virtual void EmitCommonSymbol(MCSymbol *Symbol, uint64_t Size, 123 unsigned ByteAlignment); 124 virtual void EmitELFSize(MCSymbol *Symbol, const MCExpr *Value) { 125 assert(0 && "macho doesn't support this directive"); 126 } 127 virtual void EmitLocalCommonSymbol(MCSymbol *Symbol, uint64_t Size) { 128 assert(0 && "macho doesn't support this directive"); 129 } 130 virtual void EmitZerofill(const MCSection *Section, MCSymbol *Symbol = 0, 131 unsigned Size = 0, unsigned ByteAlignment = 0); 132 virtual void EmitBytes(StringRef Data, unsigned AddrSpace); 133 virtual void EmitValue(const MCExpr *Value, unsigned Size,unsigned AddrSpace); 134 virtual void EmitGPRel32Value(const MCExpr *Value) { 135 assert(0 && "macho doesn't support this directive"); 136 } 137 virtual void EmitValueToAlignment(unsigned ByteAlignment, int64_t Value = 0, 138 unsigned ValueSize = 1, 139 unsigned MaxBytesToEmit = 0); 140 virtual void EmitValueToOffset(const MCExpr *Offset, 141 unsigned char Value = 0); 142 143 virtual void EmitFileDirective(StringRef Filename) { 144 errs() << "FIXME: MCMachoStreamer:EmitFileDirective not implemented\n"; 145 } 146 virtual void EmitDwarfFileDirective(unsigned FileNo, StringRef Filename) { 147 errs() << "FIXME: MCMachoStreamer:EmitDwarfFileDirective not implemented\n"; 148 } 149 150 virtual void EmitInstruction(const MCInst &Inst); 151 virtual void Finish(); 152 153 /// @} 154}; 155 156} // end anonymous namespace. 157 158void MCMachOStreamer::SwitchSection(const MCSection *Section) { 159 assert(Section && "Cannot switch to a null section!"); 160 161 // If already in this section, then this is a noop. 162 if (Section == CurSection) return; 163 164 CurSection = Section; 165 CurSectionData = &getSectionData(*Section); 166} 167 168void MCMachOStreamer::EmitLabel(MCSymbol *Symbol) { 169 assert(Symbol->isUndefined() && "Cannot define a symbol twice!"); 170 171 // FIXME: We should also use offsets into Fill fragments. 172 MCDataFragment *F = dyn_cast_or_null<MCDataFragment>(getCurrentFragment()); 173 if (!F) 174 F = new MCDataFragment(CurSectionData); 175 176 MCSymbolData &SD = getSymbolData(*Symbol); 177 assert(!SD.getFragment() && "Unexpected fragment on symbol data!"); 178 SD.setFragment(F); 179 SD.setOffset(F->getContents().size()); 180 181 // This causes the reference type and weak reference flags to be cleared. 182 SD.setFlags(SD.getFlags() & ~(SF_WeakReference | SF_ReferenceTypeMask)); 183 184 Symbol->setSection(*CurSection); 185} 186 187void MCMachOStreamer::EmitAssemblerFlag(MCAssemblerFlag Flag) { 188 switch (Flag) { 189 case MCAF_SubsectionsViaSymbols: 190 Assembler.setSubsectionsViaSymbols(true); 191 return; 192 } 193 194 assert(0 && "invalid assembler flag!"); 195} 196 197void MCMachOStreamer::EmitAssignment(MCSymbol *Symbol, const MCExpr *Value) { 198 // Only absolute symbols can be redefined. 199 assert((Symbol->isUndefined() || Symbol->isAbsolute()) && 200 "Cannot define a symbol twice!"); 201 202 // FIXME: Lift context changes into super class. 203 // FIXME: Set associated section. 204 Symbol->setValue(Value); 205} 206 207void MCMachOStreamer::EmitSymbolAttribute(MCSymbol *Symbol, 208 MCSymbolAttr Attribute) { 209 // Indirect symbols are handled differently, to match how 'as' handles 210 // them. This makes writing matching .o files easier. 211 if (Attribute == MCSA_IndirectSymbol) { 212 // Note that we intentionally cannot use the symbol data here; this is 213 // important for matching the string table that 'as' generates. 214 IndirectSymbolData ISD; 215 ISD.Symbol = Symbol; 216 ISD.SectionData = CurSectionData; 217 Assembler.getIndirectSymbols().push_back(ISD); 218 return; 219 } 220 221 // Adding a symbol attribute always introduces the symbol, note that an 222 // important side effect of calling getSymbolData here is to register the 223 // symbol with the assembler. 224 MCSymbolData &SD = getSymbolData(*Symbol); 225 226 // The implementation of symbol attributes is designed to match 'as', but it 227 // leaves much to desired. It doesn't really make sense to arbitrarily add and 228 // remove flags, but 'as' allows this (in particular, see .desc). 229 // 230 // In the future it might be worth trying to make these operations more well 231 // defined. 232 switch (Attribute) { 233 case MCSA_Invalid: 234 case MCSA_ELF_TypeFunction: 235 case MCSA_ELF_TypeIndFunction: 236 case MCSA_ELF_TypeObject: 237 case MCSA_ELF_TypeTLS: 238 case MCSA_ELF_TypeCommon: 239 case MCSA_ELF_TypeNoType: 240 case MCSA_IndirectSymbol: 241 case MCSA_Hidden: 242 case MCSA_Internal: 243 case MCSA_Protected: 244 case MCSA_Weak: 245 case MCSA_Local: 246 assert(0 && "Invalid symbol attribute for Mach-O!"); 247 break; 248 249 case MCSA_Global: 250 SD.setExternal(true); 251 break; 252 253 case MCSA_LazyReference: 254 // FIXME: This requires -dynamic. 255 SD.setFlags(SD.getFlags() | SF_NoDeadStrip); 256 if (Symbol->isUndefined()) 257 SD.setFlags(SD.getFlags() | SF_ReferenceTypeUndefinedLazy); 258 break; 259 260 // Since .reference sets the no dead strip bit, it is equivalent to 261 // .no_dead_strip in practice. 262 case MCSA_Reference: 263 case MCSA_NoDeadStrip: 264 SD.setFlags(SD.getFlags() | SF_NoDeadStrip); 265 break; 266 267 case MCSA_PrivateExtern: 268 SD.setExternal(true); 269 SD.setPrivateExtern(true); 270 break; 271 272 case MCSA_WeakReference: 273 // FIXME: This requires -dynamic. 274 if (Symbol->isUndefined()) 275 SD.setFlags(SD.getFlags() | SF_WeakReference); 276 break; 277 278 case MCSA_WeakDefinition: 279 // FIXME: 'as' enforces that this is defined and global. The manual claims 280 // it has to be in a coalesced section, but this isn't enforced. 281 SD.setFlags(SD.getFlags() | SF_WeakDefinition); 282 break; 283 } 284} 285 286void MCMachOStreamer::EmitSymbolDesc(MCSymbol *Symbol, unsigned DescValue) { 287 // Encode the 'desc' value into the lowest implementation defined bits. 288 assert(DescValue == (DescValue & SF_DescFlagsMask) && 289 "Invalid .desc value!"); 290 getSymbolData(*Symbol).setFlags(DescValue & SF_DescFlagsMask); 291} 292 293void MCMachOStreamer::EmitCommonSymbol(MCSymbol *Symbol, uint64_t Size, 294 unsigned ByteAlignment) { 295 // FIXME: Darwin 'as' does appear to allow redef of a .comm by itself. 296 assert(Symbol->isUndefined() && "Cannot define a symbol twice!"); 297 298 MCSymbolData &SD = getSymbolData(*Symbol); 299 SD.setExternal(true); 300 SD.setCommon(Size, ByteAlignment); 301} 302 303void MCMachOStreamer::EmitZerofill(const MCSection *Section, MCSymbol *Symbol, 304 unsigned Size, unsigned ByteAlignment) { 305 MCSectionData &SectData = getSectionData(*Section); 306 307 // The symbol may not be present, which only creates the section. 308 if (!Symbol) 309 return; 310 311 // FIXME: Assert that this section has the zerofill type. 312 313 assert(Symbol->isUndefined() && "Cannot define a symbol twice!"); 314 315 MCSymbolData &SD = getSymbolData(*Symbol); 316 317 MCFragment *F = new MCZeroFillFragment(Size, ByteAlignment, &SectData); 318 SD.setFragment(F); 319 320 Symbol->setSection(*Section); 321 322 // Update the maximum alignment on the zero fill section if necessary. 323 if (ByteAlignment > SectData.getAlignment()) 324 SectData.setAlignment(ByteAlignment); 325} 326 327void MCMachOStreamer::EmitBytes(StringRef Data, unsigned AddrSpace) { 328 MCDataFragment *DF = dyn_cast_or_null<MCDataFragment>(getCurrentFragment()); 329 if (!DF) 330 DF = new MCDataFragment(CurSectionData); 331 DF->getContents().append(Data.begin(), Data.end()); 332} 333 334void MCMachOStreamer::EmitValue(const MCExpr *Value, unsigned Size, 335 unsigned AddrSpace) { 336 new MCFillFragment(*AddValueSymbols(Value), Size, 1, CurSectionData); 337} 338 339void MCMachOStreamer::EmitValueToAlignment(unsigned ByteAlignment, 340 int64_t Value, unsigned ValueSize, 341 unsigned MaxBytesToEmit) { 342 if (MaxBytesToEmit == 0) 343 MaxBytesToEmit = ByteAlignment; 344 new MCAlignFragment(ByteAlignment, Value, ValueSize, MaxBytesToEmit, 345 CurSectionData); 346 347 // Update the maximum alignment on the current section if necessary. 348 if (ByteAlignment > CurSectionData->getAlignment()) 349 CurSectionData->setAlignment(ByteAlignment); 350} 351 352void MCMachOStreamer::EmitValueToOffset(const MCExpr *Offset, 353 unsigned char Value) { 354 new MCOrgFragment(*Offset, Value, CurSectionData); 355} 356 357void MCMachOStreamer::EmitInstruction(const MCInst &Inst) { 358 // Scan for values. 359 for (unsigned i = 0; i != Inst.getNumOperands(); ++i) 360 if (Inst.getOperand(i).isExpr()) 361 AddValueSymbols(Inst.getOperand(i).getExpr()); 362 363 if (!Emitter) 364 llvm_unreachable("no code emitter available!"); 365 366 CurSectionData->setHasInstructions(true); 367 368 // FIXME: Relocations! 369 SmallVector<MCFixup, 4> Fixups; 370 SmallString<256> Code; 371 raw_svector_ostream VecOS(Code); 372 Emitter->EncodeInstruction(Inst, VecOS, Fixups); 373 EmitBytes(VecOS.str(), 0); 374} 375 376void MCMachOStreamer::Finish() { 377 Assembler.Finish(); 378} 379 380MCStreamer *llvm::createMachOStreamer(MCContext &Context, raw_ostream &OS, 381 MCCodeEmitter *CE) { 382 return new MCMachOStreamer(Context, OS, CE); 383} 384