1 //===- lib/MC/MCObjectStreamer.cpp - Object File MCStreamer Interface -----===// 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/MCObjectStreamer.h" 11 #include "llvm/ADT/STLExtras.h" 12 #include "llvm/MC/MCAsmBackend.h" 13 #include "llvm/MC/MCAsmInfo.h" 14 #include "llvm/MC/MCAssembler.h" 15 #include "llvm/MC/MCCodeEmitter.h" 16 #include "llvm/MC/MCContext.h" 17 #include "llvm/MC/MCDwarf.h" 18 #include "llvm/MC/MCExpr.h" 19 #include "llvm/MC/MCObjectWriter.h" 20 #include "llvm/MC/MCSection.h" 21 #include "llvm/MC/MCSymbol.h" 22 #include "llvm/Support/ErrorHandling.h" 23 #include "llvm/Support/TargetRegistry.h" 24 using namespace llvm; 25 26 MCObjectStreamer::MCObjectStreamer(MCContext &Context, MCAsmBackend &TAB, 27 raw_pwrite_stream &OS, 28 MCCodeEmitter *Emitter_) 29 : MCStreamer(Context), 30 Assembler(new MCAssembler(Context, TAB, *Emitter_, 31 *TAB.createObjectWriter(OS), OS)), 32 CurSectionData(nullptr), EmitEHFrame(true), EmitDebugFrame(false) {} 33 34 MCObjectStreamer::~MCObjectStreamer() { 35 delete &Assembler->getBackend(); 36 delete &Assembler->getEmitter(); 37 delete &Assembler->getWriter(); 38 delete Assembler; 39 } 40 41 void MCObjectStreamer::flushPendingLabels(MCFragment *F, uint64_t FOffset) { 42 if (PendingLabels.size()) { 43 if (!F) { 44 F = new MCDataFragment(); 45 CurSectionData->getFragmentList().insert(CurInsertionPoint, F); 46 F->setParent(CurSectionData); 47 } 48 for (MCSymbolData *SD : PendingLabels) { 49 SD->setFragment(F); 50 SD->setOffset(FOffset); 51 } 52 PendingLabels.clear(); 53 } 54 } 55 56 bool MCObjectStreamer::emitAbsoluteSymbolDiff(const MCSymbol *Hi, 57 const MCSymbol *Lo, 58 unsigned Size) { 59 // Must have symbol data. 60 if (!Assembler->hasSymbolData(*Hi) || !Assembler->hasSymbolData(*Lo)) 61 return false; 62 auto &HiD = Assembler->getSymbolData(*Hi); 63 auto &LoD = Assembler->getSymbolData(*Lo); 64 65 // Must both be assigned to the same (valid) fragment. 66 if (!HiD.getFragment() || HiD.getFragment() != LoD.getFragment()) 67 return false; 68 69 // Must be a data fragment. 70 if (!isa<MCDataFragment>(HiD.getFragment())) 71 return false; 72 73 assert(HiD.getOffset() >= LoD.getOffset() && 74 "Expected Hi to be greater than Lo"); 75 EmitIntValue(HiD.getOffset() - LoD.getOffset(), Size); 76 return true; 77 } 78 79 void MCObjectStreamer::reset() { 80 if (Assembler) 81 Assembler->reset(); 82 CurSectionData = nullptr; 83 CurInsertionPoint = MCSectionData::iterator(); 84 EmitEHFrame = true; 85 EmitDebugFrame = false; 86 PendingLabels.clear(); 87 MCStreamer::reset(); 88 } 89 90 void MCObjectStreamer::EmitFrames(MCAsmBackend *MAB) { 91 if (!getNumFrameInfos()) 92 return; 93 94 if (EmitEHFrame) 95 MCDwarfFrameEmitter::Emit(*this, MAB, true); 96 97 if (EmitDebugFrame) 98 MCDwarfFrameEmitter::Emit(*this, MAB, false); 99 } 100 101 MCFragment *MCObjectStreamer::getCurrentFragment() const { 102 assert(getCurrentSectionData() && "No current section!"); 103 104 if (CurInsertionPoint != getCurrentSectionData()->getFragmentList().begin()) 105 return std::prev(CurInsertionPoint); 106 107 return nullptr; 108 } 109 110 MCDataFragment *MCObjectStreamer::getOrCreateDataFragment() { 111 MCDataFragment *F = dyn_cast_or_null<MCDataFragment>(getCurrentFragment()); 112 // When bundling is enabled, we don't want to add data to a fragment that 113 // already has instructions (see MCELFStreamer::EmitInstToData for details) 114 if (!F || (Assembler->isBundlingEnabled() && !Assembler->getRelaxAll() && 115 F->hasInstructions())) { 116 F = new MCDataFragment(); 117 insert(F); 118 } 119 return F; 120 } 121 122 void MCObjectStreamer::visitUsedSymbol(const MCSymbol &Sym) { 123 Assembler->getOrCreateSymbolData(Sym); 124 } 125 126 void MCObjectStreamer::EmitCFISections(bool EH, bool Debug) { 127 MCStreamer::EmitCFISections(EH, Debug); 128 EmitEHFrame = EH; 129 EmitDebugFrame = Debug; 130 } 131 132 void MCObjectStreamer::EmitValueImpl(const MCExpr *Value, unsigned Size, 133 const SMLoc &Loc) { 134 MCStreamer::EmitValueImpl(Value, Size, Loc); 135 MCDataFragment *DF = getOrCreateDataFragment(); 136 137 MCLineEntry::Make(this, getCurrentSection().first); 138 139 // Avoid fixups when possible. 140 int64_t AbsValue; 141 if (Value->EvaluateAsAbsolute(AbsValue, getAssembler())) { 142 EmitIntValue(AbsValue, Size); 143 return; 144 } 145 DF->getFixups().push_back( 146 MCFixup::create(DF->getContents().size(), Value, 147 MCFixup::getKindForSize(Size, false), Loc)); 148 DF->getContents().resize(DF->getContents().size() + Size, 0); 149 } 150 151 void MCObjectStreamer::EmitCFIStartProcImpl(MCDwarfFrameInfo &Frame) { 152 // We need to create a local symbol to avoid relocations. 153 Frame.Begin = getContext().createTempSymbol(); 154 EmitLabel(Frame.Begin); 155 } 156 157 void MCObjectStreamer::EmitCFIEndProcImpl(MCDwarfFrameInfo &Frame) { 158 Frame.End = getContext().createTempSymbol(); 159 EmitLabel(Frame.End); 160 } 161 162 void MCObjectStreamer::EmitLabel(MCSymbol *Symbol) { 163 MCStreamer::EmitLabel(Symbol); 164 165 MCSymbolData &SD = getAssembler().getOrCreateSymbolData(*Symbol); 166 assert(!SD.getFragment() && "Unexpected fragment on symbol data!"); 167 168 // If there is a current fragment, mark the symbol as pointing into it. 169 // Otherwise queue the label and set its fragment pointer when we emit the 170 // next fragment. 171 auto *F = dyn_cast_or_null<MCDataFragment>(getCurrentFragment()); 172 if (F && !(getAssembler().isBundlingEnabled() && 173 getAssembler().getRelaxAll())) { 174 SD.setFragment(F); 175 SD.setOffset(F->getContents().size()); 176 } else { 177 PendingLabels.push_back(&SD); 178 } 179 } 180 181 void MCObjectStreamer::EmitULEB128Value(const MCExpr *Value) { 182 int64_t IntValue; 183 if (Value->EvaluateAsAbsolute(IntValue, getAssembler())) { 184 EmitULEB128IntValue(IntValue); 185 return; 186 } 187 insert(new MCLEBFragment(*Value, false)); 188 } 189 190 void MCObjectStreamer::EmitSLEB128Value(const MCExpr *Value) { 191 int64_t IntValue; 192 if (Value->EvaluateAsAbsolute(IntValue, getAssembler())) { 193 EmitSLEB128IntValue(IntValue); 194 return; 195 } 196 insert(new MCLEBFragment(*Value, true)); 197 } 198 199 void MCObjectStreamer::EmitWeakReference(MCSymbol *Alias, 200 const MCSymbol *Symbol) { 201 report_fatal_error("This file format doesn't support weak aliases."); 202 } 203 204 void MCObjectStreamer::ChangeSection(MCSection *Section, 205 const MCExpr *Subsection) { 206 changeSectionImpl(Section, Subsection); 207 } 208 209 bool MCObjectStreamer::changeSectionImpl(MCSection *Section, 210 const MCExpr *Subsection) { 211 assert(Section && "Cannot switch to a null section!"); 212 flushPendingLabels(nullptr); 213 214 bool Created; 215 CurSectionData = &getAssembler().getOrCreateSectionData(*Section, &Created); 216 217 int64_t IntSubsection = 0; 218 if (Subsection && 219 !Subsection->EvaluateAsAbsolute(IntSubsection, getAssembler())) 220 report_fatal_error("Cannot evaluate subsection number"); 221 if (IntSubsection < 0 || IntSubsection > 8192) 222 report_fatal_error("Subsection number out of range"); 223 CurInsertionPoint = 224 CurSectionData->getSubsectionInsertionPoint(unsigned(IntSubsection)); 225 return Created; 226 } 227 228 void MCObjectStreamer::EmitAssignment(MCSymbol *Symbol, const MCExpr *Value) { 229 getAssembler().getOrCreateSymbolData(*Symbol); 230 MCStreamer::EmitAssignment(Symbol, Value); 231 } 232 233 bool MCObjectStreamer::mayHaveInstructions(MCSection &Sec) const { 234 return Sec.hasInstructions(); 235 } 236 237 void MCObjectStreamer::EmitInstruction(const MCInst &Inst, 238 const MCSubtargetInfo &STI) { 239 MCStreamer::EmitInstruction(Inst, STI); 240 241 MCSectionData *SD = getCurrentSectionData(); 242 SD->getSection().setHasInstructions(true); 243 244 // Now that a machine instruction has been assembled into this section, make 245 // a line entry for any .loc directive that has been seen. 246 MCLineEntry::Make(this, getCurrentSection().first); 247 248 // If this instruction doesn't need relaxation, just emit it as data. 249 MCAssembler &Assembler = getAssembler(); 250 if (!Assembler.getBackend().mayNeedRelaxation(Inst)) { 251 EmitInstToData(Inst, STI); 252 return; 253 } 254 255 // Otherwise, relax and emit it as data if either: 256 // - The RelaxAll flag was passed 257 // - Bundling is enabled and this instruction is inside a bundle-locked 258 // group. We want to emit all such instructions into the same data 259 // fragment. 260 if (Assembler.getRelaxAll() || 261 (Assembler.isBundlingEnabled() && SD->getSection().isBundleLocked())) { 262 MCInst Relaxed; 263 getAssembler().getBackend().relaxInstruction(Inst, Relaxed); 264 while (getAssembler().getBackend().mayNeedRelaxation(Relaxed)) 265 getAssembler().getBackend().relaxInstruction(Relaxed, Relaxed); 266 EmitInstToData(Relaxed, STI); 267 return; 268 } 269 270 // Otherwise emit to a separate fragment. 271 EmitInstToFragment(Inst, STI); 272 } 273 274 void MCObjectStreamer::EmitInstToFragment(const MCInst &Inst, 275 const MCSubtargetInfo &STI) { 276 if (getAssembler().getRelaxAll() && getAssembler().isBundlingEnabled()) 277 llvm_unreachable("All instructions should have already been relaxed"); 278 279 // Always create a new, separate fragment here, because its size can change 280 // during relaxation. 281 MCRelaxableFragment *IF = new MCRelaxableFragment(Inst, STI); 282 insert(IF); 283 284 SmallString<128> Code; 285 raw_svector_ostream VecOS(Code); 286 getAssembler().getEmitter().encodeInstruction(Inst, VecOS, IF->getFixups(), 287 STI); 288 VecOS.flush(); 289 IF->getContents().append(Code.begin(), Code.end()); 290 } 291 292 #ifndef NDEBUG 293 static const char *const BundlingNotImplementedMsg = 294 "Aligned bundling is not implemented for this object format"; 295 #endif 296 297 void MCObjectStreamer::EmitBundleAlignMode(unsigned AlignPow2) { 298 llvm_unreachable(BundlingNotImplementedMsg); 299 } 300 301 void MCObjectStreamer::EmitBundleLock(bool AlignToEnd) { 302 llvm_unreachable(BundlingNotImplementedMsg); 303 } 304 305 void MCObjectStreamer::EmitBundleUnlock() { 306 llvm_unreachable(BundlingNotImplementedMsg); 307 } 308 309 void MCObjectStreamer::EmitDwarfLocDirective(unsigned FileNo, unsigned Line, 310 unsigned Column, unsigned Flags, 311 unsigned Isa, 312 unsigned Discriminator, 313 StringRef FileName) { 314 // In case we see two .loc directives in a row, make sure the 315 // first one gets a line entry. 316 MCLineEntry::Make(this, getCurrentSection().first); 317 318 this->MCStreamer::EmitDwarfLocDirective(FileNo, Line, Column, Flags, 319 Isa, Discriminator, FileName); 320 } 321 322 static const MCExpr *buildSymbolDiff(MCObjectStreamer &OS, const MCSymbol *A, 323 const MCSymbol *B) { 324 MCContext &Context = OS.getContext(); 325 MCSymbolRefExpr::VariantKind Variant = MCSymbolRefExpr::VK_None; 326 const MCExpr *ARef = MCSymbolRefExpr::Create(A, Variant, Context); 327 const MCExpr *BRef = MCSymbolRefExpr::Create(B, Variant, Context); 328 const MCExpr *AddrDelta = 329 MCBinaryExpr::Create(MCBinaryExpr::Sub, ARef, BRef, Context); 330 return AddrDelta; 331 } 332 333 static void emitDwarfSetLineAddr(MCObjectStreamer &OS, int64_t LineDelta, 334 const MCSymbol *Label, int PointerSize) { 335 // emit the sequence to set the address 336 OS.EmitIntValue(dwarf::DW_LNS_extended_op, 1); 337 OS.EmitULEB128IntValue(PointerSize + 1); 338 OS.EmitIntValue(dwarf::DW_LNE_set_address, 1); 339 OS.EmitSymbolValue(Label, PointerSize); 340 341 // emit the sequence for the LineDelta (from 1) and a zero address delta. 342 MCDwarfLineAddr::Emit(&OS, LineDelta, 0); 343 } 344 345 void MCObjectStreamer::EmitDwarfAdvanceLineAddr(int64_t LineDelta, 346 const MCSymbol *LastLabel, 347 const MCSymbol *Label, 348 unsigned PointerSize) { 349 if (!LastLabel) { 350 emitDwarfSetLineAddr(*this, LineDelta, Label, PointerSize); 351 return; 352 } 353 const MCExpr *AddrDelta = buildSymbolDiff(*this, Label, LastLabel); 354 int64_t Res; 355 if (AddrDelta->EvaluateAsAbsolute(Res, getAssembler())) { 356 MCDwarfLineAddr::Emit(this, LineDelta, Res); 357 return; 358 } 359 insert(new MCDwarfLineAddrFragment(LineDelta, *AddrDelta)); 360 } 361 362 void MCObjectStreamer::EmitDwarfAdvanceFrameAddr(const MCSymbol *LastLabel, 363 const MCSymbol *Label) { 364 const MCExpr *AddrDelta = buildSymbolDiff(*this, Label, LastLabel); 365 int64_t Res; 366 if (AddrDelta->EvaluateAsAbsolute(Res, getAssembler())) { 367 MCDwarfFrameEmitter::EmitAdvanceLoc(*this, Res); 368 return; 369 } 370 insert(new MCDwarfCallFrameFragment(*AddrDelta)); 371 } 372 373 void MCObjectStreamer::EmitBytes(StringRef Data) { 374 MCLineEntry::Make(this, getCurrentSection().first); 375 getOrCreateDataFragment()->getContents().append(Data.begin(), Data.end()); 376 } 377 378 void MCObjectStreamer::EmitValueToAlignment(unsigned ByteAlignment, 379 int64_t Value, 380 unsigned ValueSize, 381 unsigned MaxBytesToEmit) { 382 if (MaxBytesToEmit == 0) 383 MaxBytesToEmit = ByteAlignment; 384 insert(new MCAlignFragment(ByteAlignment, Value, ValueSize, MaxBytesToEmit)); 385 386 // Update the maximum alignment on the current section if necessary. 387 MCSection *CurSec = getCurrentSection().first; 388 if (ByteAlignment > CurSec->getAlignment()) 389 CurSec->setAlignment(ByteAlignment); 390 } 391 392 void MCObjectStreamer::EmitCodeAlignment(unsigned ByteAlignment, 393 unsigned MaxBytesToEmit) { 394 EmitValueToAlignment(ByteAlignment, 0, 1, MaxBytesToEmit); 395 cast<MCAlignFragment>(getCurrentFragment())->setEmitNops(true); 396 } 397 398 bool MCObjectStreamer::EmitValueToOffset(const MCExpr *Offset, 399 unsigned char Value) { 400 int64_t Res; 401 if (Offset->EvaluateAsAbsolute(Res, getAssembler())) { 402 insert(new MCOrgFragment(*Offset, Value)); 403 return false; 404 } 405 406 MCSymbol *CurrentPos = getContext().createTempSymbol(); 407 EmitLabel(CurrentPos); 408 MCSymbolRefExpr::VariantKind Variant = MCSymbolRefExpr::VK_None; 409 const MCExpr *Ref = 410 MCSymbolRefExpr::Create(CurrentPos, Variant, getContext()); 411 const MCExpr *Delta = 412 MCBinaryExpr::Create(MCBinaryExpr::Sub, Offset, Ref, getContext()); 413 414 if (!Delta->EvaluateAsAbsolute(Res, getAssembler())) 415 return true; 416 EmitFill(Res, Value); 417 return false; 418 } 419 420 // Associate GPRel32 fixup with data and resize data area 421 void MCObjectStreamer::EmitGPRel32Value(const MCExpr *Value) { 422 MCDataFragment *DF = getOrCreateDataFragment(); 423 424 DF->getFixups().push_back(MCFixup::create(DF->getContents().size(), 425 Value, FK_GPRel_4)); 426 DF->getContents().resize(DF->getContents().size() + 4, 0); 427 } 428 429 // Associate GPRel32 fixup with data and resize data area 430 void MCObjectStreamer::EmitGPRel64Value(const MCExpr *Value) { 431 MCDataFragment *DF = getOrCreateDataFragment(); 432 433 DF->getFixups().push_back(MCFixup::create(DF->getContents().size(), 434 Value, FK_GPRel_4)); 435 DF->getContents().resize(DF->getContents().size() + 8, 0); 436 } 437 438 void MCObjectStreamer::EmitFill(uint64_t NumBytes, uint8_t FillValue) { 439 // FIXME: A MCFillFragment would be more memory efficient but MCExpr has 440 // problems evaluating expressions across multiple fragments. 441 getOrCreateDataFragment()->getContents().append(NumBytes, FillValue); 442 } 443 444 void MCObjectStreamer::EmitZeros(uint64_t NumBytes) { 445 const MCSection *Sec = getCurrentSection().first; 446 assert(Sec && "need a section"); 447 unsigned ItemSize = Sec->isVirtualSection() ? 0 : 1; 448 insert(new MCFillFragment(0, ItemSize, NumBytes)); 449 } 450 451 void MCObjectStreamer::FinishImpl() { 452 // If we are generating dwarf for assembly source files dump out the sections. 453 if (getContext().getGenDwarfForAssembly()) 454 MCGenDwarfInfo::Emit(this); 455 456 // Dump out the dwarf file & directory tables and line tables. 457 MCDwarfLineTable::Emit(this); 458 459 flushPendingLabels(nullptr); 460 getAssembler().Finish(); 461 } 462