1 //===- MCAssembler.h - Object File Generation -------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #ifndef LLVM_MC_MCASSEMBLER_H 10 #define LLVM_MC_MCASSEMBLER_H 11 12 #include "llvm/ADT/ArrayRef.h" 13 #include "llvm/ADT/SmallPtrSet.h" 14 #include "llvm/ADT/StringRef.h" 15 #include "llvm/ADT/iterator.h" 16 #include "llvm/ADT/iterator_range.h" 17 #include "llvm/BinaryFormat/MachO.h" 18 #include "llvm/MC/MCDirectives.h" 19 #include "llvm/MC/MCDwarf.h" 20 #include "llvm/MC/MCLinkerOptimizationHint.h" 21 #include "llvm/MC/MCSymbol.h" 22 #include "llvm/Support/SMLoc.h" 23 #include "llvm/Support/VersionTuple.h" 24 #include <algorithm> 25 #include <cassert> 26 #include <cstddef> 27 #include <cstdint> 28 #include <memory> 29 #include <string> 30 #include <tuple> 31 #include <utility> 32 #include <vector> 33 34 namespace llvm { 35 36 class MCBoundaryAlignFragment; 37 class MCCVDefRangeFragment; 38 class MCCVInlineLineTableFragment; 39 class MCDwarfCallFrameFragment; 40 class MCDwarfLineAddrFragment; 41 class MCEncodedFragment; 42 class MCFixup; 43 class MCLEBFragment; 44 class MCPseudoProbeAddrFragment; 45 class MCRelaxableFragment; 46 class MCSymbolRefExpr; 47 class raw_ostream; 48 class MCAsmBackend; 49 class MCAsmLayout; 50 class MCContext; 51 class MCCodeEmitter; 52 class MCFragment; 53 class MCObjectWriter; 54 class MCSection; 55 class MCValue; 56 57 // FIXME: This really doesn't belong here. See comments below. 58 struct IndirectSymbolData { 59 MCSymbol *Symbol; 60 MCSection *Section; 61 }; 62 63 // FIXME: Ditto this. Purely so the Streamer and the ObjectWriter can talk 64 // to one another. 65 struct DataRegionData { 66 // This enum should be kept in sync w/ the mach-o definition in 67 // llvm/Object/MachOFormat.h. 68 enum KindTy { Data = 1, JumpTable8, JumpTable16, JumpTable32 } Kind; 69 MCSymbol *Start; 70 MCSymbol *End; 71 }; 72 73 class MCAssembler { 74 friend class MCAsmLayout; 75 76 public: 77 using SectionListType = std::vector<MCSection *>; 78 using SymbolDataListType = std::vector<const MCSymbol *>; 79 80 using const_iterator = pointee_iterator<SectionListType::const_iterator>; 81 using iterator = pointee_iterator<SectionListType::iterator>; 82 83 using const_symbol_iterator = 84 pointee_iterator<SymbolDataListType::const_iterator>; 85 using symbol_iterator = pointee_iterator<SymbolDataListType::iterator>; 86 87 using symbol_range = iterator_range<symbol_iterator>; 88 using const_symbol_range = iterator_range<const_symbol_iterator>; 89 90 using const_indirect_symbol_iterator = 91 std::vector<IndirectSymbolData>::const_iterator; 92 using indirect_symbol_iterator = std::vector<IndirectSymbolData>::iterator; 93 94 using const_data_region_iterator = 95 std::vector<DataRegionData>::const_iterator; 96 using data_region_iterator = std::vector<DataRegionData>::iterator; 97 98 /// MachO specific deployment target version info. 99 // A Major version of 0 indicates that no version information was supplied 100 // and so the corresponding load command should not be emitted. 101 using VersionInfoType = struct { 102 bool EmitBuildVersion; 103 union { 104 MCVersionMinType Type; ///< Used when EmitBuildVersion==false. 105 MachO::PlatformType Platform; ///< Used when EmitBuildVersion==true. 106 } TypeOrPlatform; 107 unsigned Major; 108 unsigned Minor; 109 unsigned Update; 110 /// An optional version of the SDK that was used to build the source. 111 VersionTuple SDKVersion; 112 }; 113 114 private: 115 MCContext &Context; 116 117 std::unique_ptr<MCAsmBackend> Backend; 118 119 std::unique_ptr<MCCodeEmitter> Emitter; 120 121 std::unique_ptr<MCObjectWriter> Writer; 122 123 SectionListType Sections; 124 125 SymbolDataListType Symbols; 126 127 std::vector<IndirectSymbolData> IndirectSymbols; 128 129 std::vector<DataRegionData> DataRegions; 130 131 /// The list of linker options to propagate into the object file. 132 std::vector<std::vector<std::string>> LinkerOptions; 133 134 /// List of declared file names 135 std::vector<std::pair<std::string, size_t>> FileNames; 136 137 MCDwarfLineTableParams LTParams; 138 139 /// The set of function symbols for which a .thumb_func directive has 140 /// been seen. 141 // 142 // FIXME: We really would like this in target specific code rather than 143 // here. Maybe when the relocation stuff moves to target specific, 144 // this can go with it? The streamer would need some target specific 145 // refactoring too. 146 mutable SmallPtrSet<const MCSymbol *, 32> ThumbFuncs; 147 148 /// The bundle alignment size currently set in the assembler. 149 /// 150 /// By default it's 0, which means bundling is disabled. 151 unsigned BundleAlignSize; 152 153 bool RelaxAll : 1; 154 bool SubsectionsViaSymbols : 1; 155 bool IncrementalLinkerCompatible : 1; 156 157 /// ELF specific e_header flags 158 // It would be good if there were an MCELFAssembler class to hold this. 159 // ELF header flags are used both by the integrated and standalone assemblers. 160 // Access to the flags is necessary in cases where assembler directives affect 161 // which flags to be set. 162 unsigned ELFHeaderEFlags; 163 164 /// Used to communicate Linker Optimization Hint information between 165 /// the Streamer and the .o writer 166 MCLOHContainer LOHContainer; 167 168 VersionInfoType VersionInfo; 169 VersionInfoType DarwinTargetVariantVersionInfo; 170 171 /// Evaluate a fixup to a relocatable expression and the value which should be 172 /// placed into the fixup. 173 /// 174 /// \param Layout The layout to use for evaluation. 175 /// \param Fixup The fixup to evaluate. 176 /// \param DF The fragment the fixup is inside. 177 /// \param Target [out] On return, the relocatable expression the fixup 178 /// evaluates to. 179 /// \param Value [out] On return, the value of the fixup as currently laid 180 /// out. 181 /// \param WasForced [out] On return, the value in the fixup is set to the 182 /// correct value if WasForced is true, even if evaluateFixup returns false. 183 /// \return Whether the fixup value was fully resolved. This is true if the 184 /// \p Value result is fixed, otherwise the value may change due to 185 /// relocation. 186 bool evaluateFixup(const MCAsmLayout &Layout, const MCFixup &Fixup, 187 const MCFragment *DF, MCValue &Target, 188 uint64_t &Value, bool &WasForced) const; 189 190 /// Check whether a fixup can be satisfied, or whether it needs to be relaxed 191 /// (increased in size, in order to hold its value correctly). 192 bool fixupNeedsRelaxation(const MCFixup &Fixup, const MCRelaxableFragment *DF, 193 const MCAsmLayout &Layout) const; 194 195 /// Check whether the given fragment needs relaxation. 196 bool fragmentNeedsRelaxation(const MCRelaxableFragment *IF, 197 const MCAsmLayout &Layout) const; 198 199 /// Perform one layout iteration and return true if any offsets 200 /// were adjusted. 201 bool layoutOnce(MCAsmLayout &Layout); 202 203 /// Perform one layout iteration of the given section and return true 204 /// if any offsets were adjusted. 205 bool layoutSectionOnce(MCAsmLayout &Layout, MCSection &Sec); 206 207 /// Perform relaxation on a single fragment - returns true if the fragment 208 /// changes as a result of relaxation. 209 bool relaxFragment(MCAsmLayout &Layout, MCFragment &F); 210 bool relaxInstruction(MCAsmLayout &Layout, MCRelaxableFragment &IF); 211 bool relaxLEB(MCAsmLayout &Layout, MCLEBFragment &IF); 212 bool relaxBoundaryAlign(MCAsmLayout &Layout, MCBoundaryAlignFragment &BF); 213 bool relaxDwarfLineAddr(MCAsmLayout &Layout, MCDwarfLineAddrFragment &DF); 214 bool relaxDwarfCallFrameFragment(MCAsmLayout &Layout, 215 MCDwarfCallFrameFragment &DF); 216 bool relaxCVInlineLineTable(MCAsmLayout &Layout, 217 MCCVInlineLineTableFragment &DF); 218 bool relaxCVDefRange(MCAsmLayout &Layout, MCCVDefRangeFragment &DF); 219 bool relaxPseudoProbeAddr(MCAsmLayout &Layout, MCPseudoProbeAddrFragment &DF); 220 221 /// finishLayout - Finalize a layout, including fragment lowering. 222 void finishLayout(MCAsmLayout &Layout); 223 224 std::tuple<MCValue, uint64_t, bool> 225 handleFixup(const MCAsmLayout &Layout, MCFragment &F, const MCFixup &Fixup); 226 227 public: 228 struct Symver { 229 SMLoc Loc; 230 const MCSymbol *Sym; 231 StringRef Name; 232 // True if .symver *, *@@@* or .symver *, *, remove. 233 bool KeepOriginalSym; 234 }; 235 std::vector<Symver> Symvers; 236 237 /// Construct a new assembler instance. 238 // 239 // FIXME: How are we going to parameterize this? Two obvious options are stay 240 // concrete and require clients to pass in a target like object. The other 241 // option is to make this abstract, and have targets provide concrete 242 // implementations as we do with AsmParser. 243 MCAssembler(MCContext &Context, std::unique_ptr<MCAsmBackend> Backend, 244 std::unique_ptr<MCCodeEmitter> Emitter, 245 std::unique_ptr<MCObjectWriter> Writer); 246 MCAssembler(const MCAssembler &) = delete; 247 MCAssembler &operator=(const MCAssembler &) = delete; 248 ~MCAssembler(); 249 250 /// Compute the effective fragment size assuming it is laid out at the given 251 /// \p SectionAddress and \p FragmentOffset. 252 uint64_t computeFragmentSize(const MCAsmLayout &Layout, 253 const MCFragment &F) const; 254 255 /// Find the symbol which defines the atom containing the given symbol, or 256 /// null if there is no such symbol. 257 const MCSymbol *getAtom(const MCSymbol &S) const; 258 259 /// Check whether a particular symbol is visible to the linker and is required 260 /// in the symbol table, or whether it can be discarded by the assembler. This 261 /// also effects whether the assembler treats the label as potentially 262 /// defining a separate atom. 263 bool isSymbolLinkerVisible(const MCSymbol &SD) const; 264 265 /// Emit the section contents to \p OS. 266 void writeSectionData(raw_ostream &OS, const MCSection *Section, 267 const MCAsmLayout &Layout) const; 268 269 /// Check whether a given symbol has been flagged with .thumb_func. 270 bool isThumbFunc(const MCSymbol *Func) const; 271 272 /// Flag a function symbol as the target of a .thumb_func directive. setIsThumbFunc(const MCSymbol * Func)273 void setIsThumbFunc(const MCSymbol *Func) { ThumbFuncs.insert(Func); } 274 275 /// ELF e_header flags getELFHeaderEFlags()276 unsigned getELFHeaderEFlags() const { return ELFHeaderEFlags; } setELFHeaderEFlags(unsigned Flags)277 void setELFHeaderEFlags(unsigned Flags) { ELFHeaderEFlags = Flags; } 278 279 /// MachO deployment target version information. getVersionInfo()280 const VersionInfoType &getVersionInfo() const { return VersionInfo; } 281 void setVersionMin(MCVersionMinType Type, unsigned Major, unsigned Minor, 282 unsigned Update, 283 VersionTuple SDKVersion = VersionTuple()) { 284 VersionInfo.EmitBuildVersion = false; 285 VersionInfo.TypeOrPlatform.Type = Type; 286 VersionInfo.Major = Major; 287 VersionInfo.Minor = Minor; 288 VersionInfo.Update = Update; 289 VersionInfo.SDKVersion = SDKVersion; 290 } 291 void setBuildVersion(MachO::PlatformType Platform, unsigned Major, 292 unsigned Minor, unsigned Update, 293 VersionTuple SDKVersion = VersionTuple()) { 294 VersionInfo.EmitBuildVersion = true; 295 VersionInfo.TypeOrPlatform.Platform = Platform; 296 VersionInfo.Major = Major; 297 VersionInfo.Minor = Minor; 298 VersionInfo.Update = Update; 299 VersionInfo.SDKVersion = SDKVersion; 300 } 301 getDarwinTargetVariantVersionInfo()302 const VersionInfoType &getDarwinTargetVariantVersionInfo() const { 303 return DarwinTargetVariantVersionInfo; 304 } setDarwinTargetVariantBuildVersion(MachO::PlatformType Platform,unsigned Major,unsigned Minor,unsigned Update,VersionTuple SDKVersion)305 void setDarwinTargetVariantBuildVersion(MachO::PlatformType Platform, 306 unsigned Major, unsigned Minor, 307 unsigned Update, 308 VersionTuple SDKVersion) { 309 DarwinTargetVariantVersionInfo.EmitBuildVersion = true; 310 DarwinTargetVariantVersionInfo.TypeOrPlatform.Platform = Platform; 311 DarwinTargetVariantVersionInfo.Major = Major; 312 DarwinTargetVariantVersionInfo.Minor = Minor; 313 DarwinTargetVariantVersionInfo.Update = Update; 314 DarwinTargetVariantVersionInfo.SDKVersion = SDKVersion; 315 } 316 317 /// Reuse an assembler instance 318 /// 319 void reset(); 320 getContext()321 MCContext &getContext() const { return Context; } 322 getBackendPtr()323 MCAsmBackend *getBackendPtr() const { return Backend.get(); } 324 getEmitterPtr()325 MCCodeEmitter *getEmitterPtr() const { return Emitter.get(); } 326 getWriterPtr()327 MCObjectWriter *getWriterPtr() const { return Writer.get(); } 328 getBackend()329 MCAsmBackend &getBackend() const { return *Backend; } 330 getEmitter()331 MCCodeEmitter &getEmitter() const { return *Emitter; } 332 getWriter()333 MCObjectWriter &getWriter() const { return *Writer; } 334 getDWARFLinetableParams()335 MCDwarfLineTableParams getDWARFLinetableParams() const { return LTParams; } setDWARFLinetableParams(MCDwarfLineTableParams P)336 void setDWARFLinetableParams(MCDwarfLineTableParams P) { LTParams = P; } 337 338 /// Finish - Do final processing and write the object to the output stream. 339 /// \p Writer is used for custom object writer (as the MCJIT does), 340 /// if not specified it is automatically created from backend. 341 void Finish(); 342 343 // Layout all section and prepare them for emission. 344 void layout(MCAsmLayout &Layout); 345 346 // FIXME: This does not belong here. getSubsectionsViaSymbols()347 bool getSubsectionsViaSymbols() const { return SubsectionsViaSymbols; } setSubsectionsViaSymbols(bool Value)348 void setSubsectionsViaSymbols(bool Value) { SubsectionsViaSymbols = Value; } 349 isIncrementalLinkerCompatible()350 bool isIncrementalLinkerCompatible() const { 351 return IncrementalLinkerCompatible; 352 } setIncrementalLinkerCompatible(bool Value)353 void setIncrementalLinkerCompatible(bool Value) { 354 IncrementalLinkerCompatible = Value; 355 } 356 getRelaxAll()357 bool getRelaxAll() const { return RelaxAll; } setRelaxAll(bool Value)358 void setRelaxAll(bool Value) { RelaxAll = Value; } 359 isBundlingEnabled()360 bool isBundlingEnabled() const { return BundleAlignSize != 0; } 361 getBundleAlignSize()362 unsigned getBundleAlignSize() const { return BundleAlignSize; } 363 setBundleAlignSize(unsigned Size)364 void setBundleAlignSize(unsigned Size) { 365 assert((Size == 0 || !(Size & (Size - 1))) && 366 "Expect a power-of-two bundle align size"); 367 BundleAlignSize = Size; 368 } 369 370 /// \name Section List Access 371 /// @{ 372 begin()373 iterator begin() { return Sections.begin(); } begin()374 const_iterator begin() const { return Sections.begin(); } 375 end()376 iterator end() { return Sections.end(); } end()377 const_iterator end() const { return Sections.end(); } 378 size()379 size_t size() const { return Sections.size(); } 380 381 /// @} 382 /// \name Symbol List Access 383 /// @{ symbol_begin()384 symbol_iterator symbol_begin() { return Symbols.begin(); } symbol_begin()385 const_symbol_iterator symbol_begin() const { return Symbols.begin(); } 386 symbol_end()387 symbol_iterator symbol_end() { return Symbols.end(); } symbol_end()388 const_symbol_iterator symbol_end() const { return Symbols.end(); } 389 symbols()390 symbol_range symbols() { return make_range(symbol_begin(), symbol_end()); } symbols()391 const_symbol_range symbols() const { 392 return make_range(symbol_begin(), symbol_end()); 393 } 394 symbol_size()395 size_t symbol_size() const { return Symbols.size(); } 396 397 /// @} 398 /// \name Indirect Symbol List Access 399 /// @{ 400 401 // FIXME: This is a total hack, this should not be here. Once things are 402 // factored so that the streamer has direct access to the .o writer, it can 403 // disappear. getIndirectSymbols()404 std::vector<IndirectSymbolData> &getIndirectSymbols() { 405 return IndirectSymbols; 406 } 407 indirect_symbol_begin()408 indirect_symbol_iterator indirect_symbol_begin() { 409 return IndirectSymbols.begin(); 410 } indirect_symbol_begin()411 const_indirect_symbol_iterator indirect_symbol_begin() const { 412 return IndirectSymbols.begin(); 413 } 414 indirect_symbol_end()415 indirect_symbol_iterator indirect_symbol_end() { 416 return IndirectSymbols.end(); 417 } indirect_symbol_end()418 const_indirect_symbol_iterator indirect_symbol_end() const { 419 return IndirectSymbols.end(); 420 } 421 indirect_symbol_size()422 size_t indirect_symbol_size() const { return IndirectSymbols.size(); } 423 424 /// @} 425 /// \name Linker Option List Access 426 /// @{ 427 getLinkerOptions()428 std::vector<std::vector<std::string>> &getLinkerOptions() { 429 return LinkerOptions; 430 } 431 432 /// @} 433 /// \name Data Region List Access 434 /// @{ 435 436 // FIXME: This is a total hack, this should not be here. Once things are 437 // factored so that the streamer has direct access to the .o writer, it can 438 // disappear. getDataRegions()439 std::vector<DataRegionData> &getDataRegions() { return DataRegions; } 440 data_region_begin()441 data_region_iterator data_region_begin() { return DataRegions.begin(); } data_region_begin()442 const_data_region_iterator data_region_begin() const { 443 return DataRegions.begin(); 444 } 445 data_region_end()446 data_region_iterator data_region_end() { return DataRegions.end(); } data_region_end()447 const_data_region_iterator data_region_end() const { 448 return DataRegions.end(); 449 } 450 data_region_size()451 size_t data_region_size() const { return DataRegions.size(); } 452 453 /// @} 454 /// \name Data Region List Access 455 /// @{ 456 457 // FIXME: This is a total hack, this should not be here. Once things are 458 // factored so that the streamer has direct access to the .o writer, it can 459 // disappear. getLOHContainer()460 MCLOHContainer &getLOHContainer() { return LOHContainer; } getLOHContainer()461 const MCLOHContainer &getLOHContainer() const { 462 return const_cast<MCAssembler *>(this)->getLOHContainer(); 463 } 464 465 struct CGProfileEntry { 466 const MCSymbolRefExpr *From; 467 const MCSymbolRefExpr *To; 468 uint64_t Count; 469 }; 470 std::vector<CGProfileEntry> CGProfile; 471 /// @} 472 /// \name Backend Data Access 473 /// @{ 474 475 bool registerSection(MCSection &Section); 476 477 void registerSymbol(const MCSymbol &Symbol, bool *Created = nullptr); 478 getFileNames()479 MutableArrayRef<std::pair<std::string, size_t>> getFileNames() { 480 return FileNames; 481 } 482 addFileName(StringRef FileName)483 void addFileName(StringRef FileName) { 484 FileNames.emplace_back(std::string(FileName), Symbols.size()); 485 } 486 487 /// Write the necessary bundle padding to \p OS. 488 /// Expects a fragment \p F containing instructions and its size \p FSize. 489 void writeFragmentPadding(raw_ostream &OS, const MCEncodedFragment &F, 490 uint64_t FSize) const; 491 492 /// @} 493 494 void dump() const; 495 }; 496 497 /// Compute the amount of padding required before the fragment \p F to 498 /// obey bundling restrictions, where \p FOffset is the fragment's offset in 499 /// its section and \p FSize is the fragment's size. 500 uint64_t computeBundlePadding(const MCAssembler &Assembler, 501 const MCEncodedFragment *F, uint64_t FOffset, 502 uint64_t FSize); 503 504 } // end namespace llvm 505 506 #endif // LLVM_MC_MCASSEMBLER_H 507