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      1 //===- lib/MC/MCDwarf.cpp - MCDwarf implementation ------------------------===//
      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/MCDwarf.h"
     11 #include "llvm/ADT/Hashing.h"
     12 #include "llvm/ADT/SmallString.h"
     13 #include "llvm/ADT/Twine.h"
     14 #include "llvm/Config/config.h"
     15 #include "llvm/MC/MCAsmInfo.h"
     16 #include "llvm/MC/MCContext.h"
     17 #include "llvm/MC/MCExpr.h"
     18 #include "llvm/MC/MCObjectFileInfo.h"
     19 #include "llvm/MC/MCRegisterInfo.h"
     20 #include "llvm/MC/MCStreamer.h"
     21 #include "llvm/MC/MCSymbol.h"
     22 #include "llvm/Support/Debug.h"
     23 #include "llvm/Support/ErrorHandling.h"
     24 #include "llvm/Support/LEB128.h"
     25 #include "llvm/Support/Path.h"
     26 #include "llvm/Support/SourceMgr.h"
     27 #include "llvm/Support/raw_ostream.h"
     28 using namespace llvm;
     29 
     30 // Given a special op, return the address skip amount (in units of
     31 // DWARF2_LINE_MIN_INSN_LENGTH.
     32 #define SPECIAL_ADDR(op) (((op) - DWARF2_LINE_OPCODE_BASE)/DWARF2_LINE_RANGE)
     33 
     34 // The maximum address skip amount that can be encoded with a special op.
     35 #define MAX_SPECIAL_ADDR_DELTA         SPECIAL_ADDR(255)
     36 
     37 // First special line opcode - leave room for the standard opcodes.
     38 // Note: If you want to change this, you'll have to update the
     39 // "standard_opcode_lengths" table that is emitted in DwarfFileTable::Emit().
     40 #define DWARF2_LINE_OPCODE_BASE         13
     41 
     42 // Minimum line offset in a special line info. opcode.  This value
     43 // was chosen to give a reasonable range of values.
     44 #define DWARF2_LINE_BASE                -5
     45 
     46 // Range of line offsets in a special line info. opcode.
     47 #define DWARF2_LINE_RANGE               14
     48 
     49 static inline uint64_t ScaleAddrDelta(MCContext &Context, uint64_t AddrDelta) {
     50   unsigned MinInsnLength = Context.getAsmInfo()->getMinInstAlignment();
     51   if (MinInsnLength == 1)
     52     return AddrDelta;
     53   if (AddrDelta % MinInsnLength != 0) {
     54     // TODO: report this error, but really only once.
     55     ;
     56   }
     57   return AddrDelta / MinInsnLength;
     58 }
     59 
     60 //
     61 // This is called when an instruction is assembled into the specified section
     62 // and if there is information from the last .loc directive that has yet to have
     63 // a line entry made for it is made.
     64 //
     65 void MCLineEntry::Make(MCStreamer *MCOS, const MCSection *Section) {
     66   if (!MCOS->getContext().getDwarfLocSeen())
     67     return;
     68 
     69   // Create a symbol at in the current section for use in the line entry.
     70   MCSymbol *LineSym = MCOS->getContext().CreateTempSymbol();
     71   // Set the value of the symbol to use for the MCLineEntry.
     72   MCOS->EmitLabel(LineSym);
     73 
     74   // Get the current .loc info saved in the context.
     75   const MCDwarfLoc &DwarfLoc = MCOS->getContext().getCurrentDwarfLoc();
     76 
     77   // Create a (local) line entry with the symbol and the current .loc info.
     78   MCLineEntry LineEntry(LineSym, DwarfLoc);
     79 
     80   // clear DwarfLocSeen saying the current .loc info is now used.
     81   MCOS->getContext().ClearDwarfLocSeen();
     82 
     83   // Get the MCLineSection for this section, if one does not exist for this
     84   // section create it.
     85   const DenseMap<const MCSection *, MCLineSection *> &MCLineSections =
     86     MCOS->getContext().getMCLineSections();
     87   MCLineSection *LineSection = MCLineSections.lookup(Section);
     88   if (!LineSection) {
     89     // Create a new MCLineSection.  This will be deleted after the dwarf line
     90     // table is created using it by iterating through the MCLineSections
     91     // DenseMap.
     92     LineSection = new MCLineSection;
     93     // Save a pointer to the new LineSection into the MCLineSections DenseMap.
     94     MCOS->getContext().addMCLineSection(Section, LineSection);
     95   }
     96 
     97   // Add the line entry to this section's entries.
     98   LineSection->addLineEntry(LineEntry,
     99                             MCOS->getContext().getDwarfCompileUnitID());
    100 }
    101 
    102 //
    103 // This helper routine returns an expression of End - Start + IntVal .
    104 //
    105 static inline const MCExpr *MakeStartMinusEndExpr(const MCStreamer &MCOS,
    106                                                   const MCSymbol &Start,
    107                                                   const MCSymbol &End,
    108                                                   int IntVal) {
    109   MCSymbolRefExpr::VariantKind Variant = MCSymbolRefExpr::VK_None;
    110   const MCExpr *Res =
    111     MCSymbolRefExpr::Create(&End, Variant, MCOS.getContext());
    112   const MCExpr *RHS =
    113     MCSymbolRefExpr::Create(&Start, Variant, MCOS.getContext());
    114   const MCExpr *Res1 =
    115     MCBinaryExpr::Create(MCBinaryExpr::Sub, Res, RHS, MCOS.getContext());
    116   const MCExpr *Res2 =
    117     MCConstantExpr::Create(IntVal, MCOS.getContext());
    118   const MCExpr *Res3 =
    119     MCBinaryExpr::Create(MCBinaryExpr::Sub, Res1, Res2, MCOS.getContext());
    120   return Res3;
    121 }
    122 
    123 //
    124 // This emits the Dwarf line table for the specified section from the entries
    125 // in the LineSection.
    126 //
    127 static inline void EmitDwarfLineTable(MCStreamer *MCOS,
    128                                       const MCSection *Section,
    129                                       const MCLineSection *LineSection,
    130                                       unsigned CUID) {
    131   // This LineSection does not contain any LineEntry for the given Compile Unit.
    132   if (!LineSection->containEntriesForID(CUID))
    133     return;
    134 
    135   unsigned FileNum = 1;
    136   unsigned LastLine = 1;
    137   unsigned Column = 0;
    138   unsigned Flags = DWARF2_LINE_DEFAULT_IS_STMT ? DWARF2_FLAG_IS_STMT : 0;
    139   unsigned Isa = 0;
    140   MCSymbol *LastLabel = NULL;
    141 
    142   // Loop through each MCLineEntry and encode the dwarf line number table.
    143   for (MCLineSection::const_iterator
    144          it = LineSection->getMCLineEntries(CUID).begin(),
    145          ie = LineSection->getMCLineEntries(CUID).end(); it != ie; ++it) {
    146 
    147     if (FileNum != it->getFileNum()) {
    148       FileNum = it->getFileNum();
    149       MCOS->EmitIntValue(dwarf::DW_LNS_set_file, 1);
    150       MCOS->EmitULEB128IntValue(FileNum);
    151     }
    152     if (Column != it->getColumn()) {
    153       Column = it->getColumn();
    154       MCOS->EmitIntValue(dwarf::DW_LNS_set_column, 1);
    155       MCOS->EmitULEB128IntValue(Column);
    156     }
    157     if (Isa != it->getIsa()) {
    158       Isa = it->getIsa();
    159       MCOS->EmitIntValue(dwarf::DW_LNS_set_isa, 1);
    160       MCOS->EmitULEB128IntValue(Isa);
    161     }
    162     if ((it->getFlags() ^ Flags) & DWARF2_FLAG_IS_STMT) {
    163       Flags = it->getFlags();
    164       MCOS->EmitIntValue(dwarf::DW_LNS_negate_stmt, 1);
    165     }
    166     if (it->getFlags() & DWARF2_FLAG_BASIC_BLOCK)
    167       MCOS->EmitIntValue(dwarf::DW_LNS_set_basic_block, 1);
    168     if (it->getFlags() & DWARF2_FLAG_PROLOGUE_END)
    169       MCOS->EmitIntValue(dwarf::DW_LNS_set_prologue_end, 1);
    170     if (it->getFlags() & DWARF2_FLAG_EPILOGUE_BEGIN)
    171       MCOS->EmitIntValue(dwarf::DW_LNS_set_epilogue_begin, 1);
    172 
    173     int64_t LineDelta = static_cast<int64_t>(it->getLine()) - LastLine;
    174     MCSymbol *Label = it->getLabel();
    175 
    176     // At this point we want to emit/create the sequence to encode the delta in
    177     // line numbers and the increment of the address from the previous Label
    178     // and the current Label.
    179     const MCAsmInfo *asmInfo = MCOS->getContext().getAsmInfo();
    180     MCOS->EmitDwarfAdvanceLineAddr(LineDelta, LastLabel, Label,
    181                                    asmInfo->getPointerSize());
    182 
    183     LastLine = it->getLine();
    184     LastLabel = Label;
    185   }
    186 
    187   // Emit a DW_LNE_end_sequence for the end of the section.
    188   // Using the pointer Section create a temporary label at the end of the
    189   // section and use that and the LastLabel to compute the address delta
    190   // and use INT64_MAX as the line delta which is the signal that this is
    191   // actually a DW_LNE_end_sequence.
    192 
    193   // Switch to the section to be able to create a symbol at its end.
    194   // TODO: keep track of the last subsection so that this symbol appears in the
    195   // correct place.
    196   MCOS->SwitchSection(Section);
    197 
    198   MCContext &context = MCOS->getContext();
    199   // Create a symbol at the end of the section.
    200   MCSymbol *SectionEnd = context.CreateTempSymbol();
    201   // Set the value of the symbol, as we are at the end of the section.
    202   MCOS->EmitLabel(SectionEnd);
    203 
    204   // Switch back the dwarf line section.
    205   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfLineSection());
    206 
    207   const MCAsmInfo *asmInfo = MCOS->getContext().getAsmInfo();
    208   MCOS->EmitDwarfAdvanceLineAddr(INT64_MAX, LastLabel, SectionEnd,
    209                                  asmInfo->getPointerSize());
    210 }
    211 
    212 //
    213 // This emits the Dwarf file and the line tables.
    214 //
    215 const MCSymbol *MCDwarfFileTable::Emit(MCStreamer *MCOS) {
    216   MCContext &context = MCOS->getContext();
    217   // Switch to the section where the table will be emitted into.
    218   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfLineSection());
    219 
    220   const DenseMap<unsigned, MCSymbol *> &MCLineTableSymbols =
    221     MCOS->getContext().getMCLineTableSymbols();
    222   // CUID and MCLineTableSymbols are set in DwarfDebug, when DwarfDebug does
    223   // not exist, CUID will be 0 and MCLineTableSymbols will be empty.
    224   // Handle Compile Unit 0, the line table start symbol is the section symbol.
    225   const MCSymbol *LineStartSym = EmitCU(MCOS, 0);
    226   // Handle the rest of the Compile Units.
    227   for (unsigned Is = 1, Ie = MCLineTableSymbols.size(); Is < Ie; Is++)
    228     EmitCU(MCOS, Is);
    229 
    230   // Now delete the MCLineSections that were created in MCLineEntry::Make()
    231   // and used to emit the line table.
    232   const DenseMap<const MCSection *, MCLineSection *> &MCLineSections =
    233     MCOS->getContext().getMCLineSections();
    234   for (DenseMap<const MCSection *, MCLineSection *>::const_iterator it =
    235        MCLineSections.begin(), ie = MCLineSections.end(); it != ie;
    236        ++it)
    237     delete it->second;
    238 
    239   return LineStartSym;
    240 }
    241 
    242 const MCSymbol *MCDwarfFileTable::EmitCU(MCStreamer *MCOS, unsigned CUID) {
    243   MCContext &context = MCOS->getContext();
    244 
    245   // Create a symbol at the beginning of the line table.
    246   MCSymbol *LineStartSym = MCOS->getContext().getMCLineTableSymbol(CUID);
    247   if (!LineStartSym)
    248     LineStartSym = context.CreateTempSymbol();
    249   // Set the value of the symbol, as we are at the start of the line table.
    250   MCOS->EmitLabel(LineStartSym);
    251 
    252   // Create a symbol for the end of the section (to be set when we get there).
    253   MCSymbol *LineEndSym = context.CreateTempSymbol();
    254 
    255   // The first 4 bytes is the total length of the information for this
    256   // compilation unit (not including these 4 bytes for the length).
    257   MCOS->EmitAbsValue(MakeStartMinusEndExpr(*MCOS, *LineStartSym, *LineEndSym,4),
    258                      4);
    259 
    260   // Next 2 bytes is the Version, which is Dwarf 2.
    261   MCOS->EmitIntValue(2, 2);
    262 
    263   // Create a symbol for the end of the prologue (to be set when we get there).
    264   MCSymbol *ProEndSym = context.CreateTempSymbol(); // Lprologue_end
    265 
    266   // Length of the prologue, is the next 4 bytes.  Which is the start of the
    267   // section to the end of the prologue.  Not including the 4 bytes for the
    268   // total length, the 2 bytes for the version, and these 4 bytes for the
    269   // length of the prologue.
    270   MCOS->EmitAbsValue(MakeStartMinusEndExpr(*MCOS, *LineStartSym, *ProEndSym,
    271                                            (4 + 2 + 4)), 4);
    272 
    273   // Parameters of the state machine, are next.
    274   MCOS->EmitIntValue(context.getAsmInfo()->getMinInstAlignment(), 1);
    275   MCOS->EmitIntValue(DWARF2_LINE_DEFAULT_IS_STMT, 1);
    276   MCOS->EmitIntValue(DWARF2_LINE_BASE, 1);
    277   MCOS->EmitIntValue(DWARF2_LINE_RANGE, 1);
    278   MCOS->EmitIntValue(DWARF2_LINE_OPCODE_BASE, 1);
    279 
    280   // Standard opcode lengths
    281   MCOS->EmitIntValue(0, 1); // length of DW_LNS_copy
    282   MCOS->EmitIntValue(1, 1); // length of DW_LNS_advance_pc
    283   MCOS->EmitIntValue(1, 1); // length of DW_LNS_advance_line
    284   MCOS->EmitIntValue(1, 1); // length of DW_LNS_set_file
    285   MCOS->EmitIntValue(1, 1); // length of DW_LNS_set_column
    286   MCOS->EmitIntValue(0, 1); // length of DW_LNS_negate_stmt
    287   MCOS->EmitIntValue(0, 1); // length of DW_LNS_set_basic_block
    288   MCOS->EmitIntValue(0, 1); // length of DW_LNS_const_add_pc
    289   MCOS->EmitIntValue(1, 1); // length of DW_LNS_fixed_advance_pc
    290   MCOS->EmitIntValue(0, 1); // length of DW_LNS_set_prologue_end
    291   MCOS->EmitIntValue(0, 1); // length of DW_LNS_set_epilogue_begin
    292   MCOS->EmitIntValue(1, 1); // DW_LNS_set_isa
    293 
    294   // Put out the directory and file tables.
    295 
    296   // First the directory table.
    297   const SmallVectorImpl<StringRef> &MCDwarfDirs =
    298     context.getMCDwarfDirs(CUID);
    299   for (unsigned i = 0; i < MCDwarfDirs.size(); i++) {
    300     MCOS->EmitBytes(MCDwarfDirs[i]); // the DirectoryName
    301     MCOS->EmitBytes(StringRef("\0", 1)); // the null term. of the string
    302   }
    303   MCOS->EmitIntValue(0, 1); // Terminate the directory list
    304 
    305   // Second the file table.
    306   const SmallVectorImpl<MCDwarfFile *> &MCDwarfFiles =
    307     MCOS->getContext().getMCDwarfFiles(CUID);
    308   for (unsigned i = 1; i < MCDwarfFiles.size(); i++) {
    309     MCOS->EmitBytes(MCDwarfFiles[i]->getName()); // FileName
    310     MCOS->EmitBytes(StringRef("\0", 1)); // the null term. of the string
    311     // the Directory num
    312     MCOS->EmitULEB128IntValue(MCDwarfFiles[i]->getDirIndex());
    313     MCOS->EmitIntValue(0, 1); // last modification timestamp (always 0)
    314     MCOS->EmitIntValue(0, 1); // filesize (always 0)
    315   }
    316   MCOS->EmitIntValue(0, 1); // Terminate the file list
    317 
    318   // This is the end of the prologue, so set the value of the symbol at the
    319   // end of the prologue (that was used in a previous expression).
    320   MCOS->EmitLabel(ProEndSym);
    321 
    322   // Put out the line tables.
    323   const DenseMap<const MCSection *, MCLineSection *> &MCLineSections =
    324     MCOS->getContext().getMCLineSections();
    325   const std::vector<const MCSection *> &MCLineSectionOrder =
    326     MCOS->getContext().getMCLineSectionOrder();
    327   for (std::vector<const MCSection*>::const_iterator it =
    328          MCLineSectionOrder.begin(), ie = MCLineSectionOrder.end(); it != ie;
    329        ++it) {
    330     const MCSection *Sec = *it;
    331     const MCLineSection *Line = MCLineSections.lookup(Sec);
    332     EmitDwarfLineTable(MCOS, Sec, Line, CUID);
    333   }
    334 
    335   if (MCOS->getContext().getAsmInfo()->getLinkerRequiresNonEmptyDwarfLines()
    336       && MCLineSectionOrder.begin() == MCLineSectionOrder.end()) {
    337     // The darwin9 linker has a bug (see PR8715). For for 32-bit architectures
    338     // it requires:
    339     // total_length >= prologue_length + 10
    340     // We are 4 bytes short, since we have total_length = 51 and
    341     // prologue_length = 45
    342 
    343     // The regular end_sequence should be sufficient.
    344     MCDwarfLineAddr::Emit(MCOS, INT64_MAX, 0);
    345   }
    346 
    347   // This is the end of the section, so set the value of the symbol at the end
    348   // of this section (that was used in a previous expression).
    349   MCOS->EmitLabel(LineEndSym);
    350 
    351   return LineStartSym;
    352 }
    353 
    354 /// Utility function to emit the encoding to a streamer.
    355 void MCDwarfLineAddr::Emit(MCStreamer *MCOS, int64_t LineDelta,
    356                            uint64_t AddrDelta) {
    357   MCContext &Context = MCOS->getContext();
    358   SmallString<256> Tmp;
    359   raw_svector_ostream OS(Tmp);
    360   MCDwarfLineAddr::Encode(Context, LineDelta, AddrDelta, OS);
    361   MCOS->EmitBytes(OS.str());
    362 }
    363 
    364 /// Utility function to encode a Dwarf pair of LineDelta and AddrDeltas.
    365 void MCDwarfLineAddr::Encode(MCContext &Context, int64_t LineDelta,
    366                              uint64_t AddrDelta, raw_ostream &OS) {
    367   uint64_t Temp, Opcode;
    368   bool NeedCopy = false;
    369 
    370   // Scale the address delta by the minimum instruction length.
    371   AddrDelta = ScaleAddrDelta(Context, AddrDelta);
    372 
    373   // A LineDelta of INT64_MAX is a signal that this is actually a
    374   // DW_LNE_end_sequence. We cannot use special opcodes here, since we want the
    375   // end_sequence to emit the matrix entry.
    376   if (LineDelta == INT64_MAX) {
    377     if (AddrDelta == MAX_SPECIAL_ADDR_DELTA)
    378       OS << char(dwarf::DW_LNS_const_add_pc);
    379     else {
    380       OS << char(dwarf::DW_LNS_advance_pc);
    381       encodeULEB128(AddrDelta, OS);
    382     }
    383     OS << char(dwarf::DW_LNS_extended_op);
    384     OS << char(1);
    385     OS << char(dwarf::DW_LNE_end_sequence);
    386     return;
    387   }
    388 
    389   // Bias the line delta by the base.
    390   Temp = LineDelta - DWARF2_LINE_BASE;
    391 
    392   // If the line increment is out of range of a special opcode, we must encode
    393   // it with DW_LNS_advance_line.
    394   if (Temp >= DWARF2_LINE_RANGE) {
    395     OS << char(dwarf::DW_LNS_advance_line);
    396     encodeSLEB128(LineDelta, OS);
    397 
    398     LineDelta = 0;
    399     Temp = 0 - DWARF2_LINE_BASE;
    400     NeedCopy = true;
    401   }
    402 
    403   // Use DW_LNS_copy instead of a "line +0, addr +0" special opcode.
    404   if (LineDelta == 0 && AddrDelta == 0) {
    405     OS << char(dwarf::DW_LNS_copy);
    406     return;
    407   }
    408 
    409   // Bias the opcode by the special opcode base.
    410   Temp += DWARF2_LINE_OPCODE_BASE;
    411 
    412   // Avoid overflow when addr_delta is large.
    413   if (AddrDelta < 256 + MAX_SPECIAL_ADDR_DELTA) {
    414     // Try using a special opcode.
    415     Opcode = Temp + AddrDelta * DWARF2_LINE_RANGE;
    416     if (Opcode <= 255) {
    417       OS << char(Opcode);
    418       return;
    419     }
    420 
    421     // Try using DW_LNS_const_add_pc followed by special op.
    422     Opcode = Temp + (AddrDelta - MAX_SPECIAL_ADDR_DELTA) * DWARF2_LINE_RANGE;
    423     if (Opcode <= 255) {
    424       OS << char(dwarf::DW_LNS_const_add_pc);
    425       OS << char(Opcode);
    426       return;
    427     }
    428   }
    429 
    430   // Otherwise use DW_LNS_advance_pc.
    431   OS << char(dwarf::DW_LNS_advance_pc);
    432   encodeULEB128(AddrDelta, OS);
    433 
    434   if (NeedCopy)
    435     OS << char(dwarf::DW_LNS_copy);
    436   else
    437     OS << char(Temp);
    438 }
    439 
    440 void MCDwarfFile::print(raw_ostream &OS) const {
    441   OS << '"' << getName() << '"';
    442 }
    443 
    444 #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
    445 void MCDwarfFile::dump() const {
    446   print(dbgs());
    447 }
    448 #endif
    449 
    450 // Utility function to write a tuple for .debug_abbrev.
    451 static void EmitAbbrev(MCStreamer *MCOS, uint64_t Name, uint64_t Form) {
    452   MCOS->EmitULEB128IntValue(Name);
    453   MCOS->EmitULEB128IntValue(Form);
    454 }
    455 
    456 // When generating dwarf for assembly source files this emits
    457 // the data for .debug_abbrev section which contains three DIEs.
    458 static void EmitGenDwarfAbbrev(MCStreamer *MCOS) {
    459   MCContext &context = MCOS->getContext();
    460   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfAbbrevSection());
    461 
    462   // DW_TAG_compile_unit DIE abbrev (1).
    463   MCOS->EmitULEB128IntValue(1);
    464   MCOS->EmitULEB128IntValue(dwarf::DW_TAG_compile_unit);
    465   MCOS->EmitIntValue(dwarf::DW_CHILDREN_yes, 1);
    466   EmitAbbrev(MCOS, dwarf::DW_AT_stmt_list, dwarf::DW_FORM_data4);
    467   EmitAbbrev(MCOS, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr);
    468   EmitAbbrev(MCOS, dwarf::DW_AT_high_pc, dwarf::DW_FORM_addr);
    469   EmitAbbrev(MCOS, dwarf::DW_AT_name, dwarf::DW_FORM_string);
    470   EmitAbbrev(MCOS, dwarf::DW_AT_comp_dir, dwarf::DW_FORM_string);
    471   StringRef DwarfDebugFlags = context.getDwarfDebugFlags();
    472   if (!DwarfDebugFlags.empty())
    473     EmitAbbrev(MCOS, dwarf::DW_AT_APPLE_flags, dwarf::DW_FORM_string);
    474   EmitAbbrev(MCOS, dwarf::DW_AT_producer, dwarf::DW_FORM_string);
    475   EmitAbbrev(MCOS, dwarf::DW_AT_language, dwarf::DW_FORM_data2);
    476   EmitAbbrev(MCOS, 0, 0);
    477 
    478   // DW_TAG_label DIE abbrev (2).
    479   MCOS->EmitULEB128IntValue(2);
    480   MCOS->EmitULEB128IntValue(dwarf::DW_TAG_label);
    481   MCOS->EmitIntValue(dwarf::DW_CHILDREN_yes, 1);
    482   EmitAbbrev(MCOS, dwarf::DW_AT_name, dwarf::DW_FORM_string);
    483   EmitAbbrev(MCOS, dwarf::DW_AT_decl_file, dwarf::DW_FORM_data4);
    484   EmitAbbrev(MCOS, dwarf::DW_AT_decl_line, dwarf::DW_FORM_data4);
    485   EmitAbbrev(MCOS, dwarf::DW_AT_low_pc, dwarf::DW_FORM_addr);
    486   EmitAbbrev(MCOS, dwarf::DW_AT_prototyped, dwarf::DW_FORM_flag);
    487   EmitAbbrev(MCOS, 0, 0);
    488 
    489   // DW_TAG_unspecified_parameters DIE abbrev (3).
    490   MCOS->EmitULEB128IntValue(3);
    491   MCOS->EmitULEB128IntValue(dwarf::DW_TAG_unspecified_parameters);
    492   MCOS->EmitIntValue(dwarf::DW_CHILDREN_no, 1);
    493   EmitAbbrev(MCOS, 0, 0);
    494 
    495   // Terminate the abbreviations for this compilation unit.
    496   MCOS->EmitIntValue(0, 1);
    497 }
    498 
    499 // When generating dwarf for assembly source files this emits the data for
    500 // .debug_aranges section.  Which contains a header and a table of pairs of
    501 // PointerSize'ed values for the address and size of section(s) with line table
    502 // entries (just the default .text in our case) and a terminating pair of zeros.
    503 static void EmitGenDwarfAranges(MCStreamer *MCOS,
    504                                 const MCSymbol *InfoSectionSymbol) {
    505   MCContext &context = MCOS->getContext();
    506 
    507   // Create a symbol at the end of the section that we are creating the dwarf
    508   // debugging info to use later in here as part of the expression to calculate
    509   // the size of the section for the table.
    510   MCOS->SwitchSection(context.getGenDwarfSection());
    511   MCSymbol *SectionEndSym = context.CreateTempSymbol();
    512   MCOS->EmitLabel(SectionEndSym);
    513   context.setGenDwarfSectionEndSym(SectionEndSym);
    514 
    515   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfARangesSection());
    516 
    517   // This will be the length of the .debug_aranges section, first account for
    518   // the size of each item in the header (see below where we emit these items).
    519   int Length = 4 + 2 + 4 + 1 + 1;
    520 
    521   // Figure the padding after the header before the table of address and size
    522   // pairs who's values are PointerSize'ed.
    523   const MCAsmInfo *asmInfo = context.getAsmInfo();
    524   int AddrSize = asmInfo->getPointerSize();
    525   int Pad = 2 * AddrSize - (Length & (2 * AddrSize - 1));
    526   if (Pad == 2 * AddrSize)
    527     Pad = 0;
    528   Length += Pad;
    529 
    530   // Add the size of the pair of PointerSize'ed values for the address and size
    531   // of the one default .text section we have in the table.
    532   Length += 2 * AddrSize;
    533   // And the pair of terminating zeros.
    534   Length += 2 * AddrSize;
    535 
    536 
    537   // Emit the header for this section.
    538   // The 4 byte length not including the 4 byte value for the length.
    539   MCOS->EmitIntValue(Length - 4, 4);
    540   // The 2 byte version, which is 2.
    541   MCOS->EmitIntValue(2, 2);
    542   // The 4 byte offset to the compile unit in the .debug_info from the start
    543   // of the .debug_info.
    544   if (InfoSectionSymbol)
    545     MCOS->EmitSymbolValue(InfoSectionSymbol, 4);
    546   else
    547     MCOS->EmitIntValue(0, 4);
    548   // The 1 byte size of an address.
    549   MCOS->EmitIntValue(AddrSize, 1);
    550   // The 1 byte size of a segment descriptor, we use a value of zero.
    551   MCOS->EmitIntValue(0, 1);
    552   // Align the header with the padding if needed, before we put out the table.
    553   for(int i = 0; i < Pad; i++)
    554     MCOS->EmitIntValue(0, 1);
    555 
    556   // Now emit the table of pairs of PointerSize'ed values for the section(s)
    557   // address and size, in our case just the one default .text section.
    558   const MCExpr *Addr = MCSymbolRefExpr::Create(
    559     context.getGenDwarfSectionStartSym(), MCSymbolRefExpr::VK_None, context);
    560   const MCExpr *Size = MakeStartMinusEndExpr(*MCOS,
    561     *context.getGenDwarfSectionStartSym(), *SectionEndSym, 0);
    562   MCOS->EmitAbsValue(Addr, AddrSize);
    563   MCOS->EmitAbsValue(Size, AddrSize);
    564 
    565   // And finally the pair of terminating zeros.
    566   MCOS->EmitIntValue(0, AddrSize);
    567   MCOS->EmitIntValue(0, AddrSize);
    568 }
    569 
    570 // When generating dwarf for assembly source files this emits the data for
    571 // .debug_info section which contains three parts.  The header, the compile_unit
    572 // DIE and a list of label DIEs.
    573 static void EmitGenDwarfInfo(MCStreamer *MCOS,
    574                              const MCSymbol *AbbrevSectionSymbol,
    575                              const MCSymbol *LineSectionSymbol) {
    576   MCContext &context = MCOS->getContext();
    577 
    578   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfInfoSection());
    579 
    580   // Create a symbol at the start and end of this section used in here for the
    581   // expression to calculate the length in the header.
    582   MCSymbol *InfoStart = context.CreateTempSymbol();
    583   MCOS->EmitLabel(InfoStart);
    584   MCSymbol *InfoEnd = context.CreateTempSymbol();
    585 
    586   // First part: the header.
    587 
    588   // The 4 byte total length of the information for this compilation unit, not
    589   // including these 4 bytes.
    590   const MCExpr *Length = MakeStartMinusEndExpr(*MCOS, *InfoStart, *InfoEnd, 4);
    591   MCOS->EmitAbsValue(Length, 4);
    592 
    593   // The 2 byte DWARF version, which is 2.
    594   MCOS->EmitIntValue(2, 2);
    595 
    596   // The 4 byte offset to the debug abbrevs from the start of the .debug_abbrev,
    597   // it is at the start of that section so this is zero.
    598   if (AbbrevSectionSymbol) {
    599     MCOS->EmitSymbolValue(AbbrevSectionSymbol, 4);
    600   } else {
    601     MCOS->EmitIntValue(0, 4);
    602   }
    603 
    604   const MCAsmInfo *asmInfo = context.getAsmInfo();
    605   int AddrSize = asmInfo->getPointerSize();
    606   // The 1 byte size of an address.
    607   MCOS->EmitIntValue(AddrSize, 1);
    608 
    609   // Second part: the compile_unit DIE.
    610 
    611   // The DW_TAG_compile_unit DIE abbrev (1).
    612   MCOS->EmitULEB128IntValue(1);
    613 
    614   // DW_AT_stmt_list, a 4 byte offset from the start of the .debug_line section,
    615   // which is at the start of that section so this is zero.
    616   if (LineSectionSymbol) {
    617     MCOS->EmitSymbolValue(LineSectionSymbol, 4);
    618   } else {
    619     MCOS->EmitIntValue(0, 4);
    620   }
    621 
    622   // AT_low_pc, the first address of the default .text section.
    623   const MCExpr *Start = MCSymbolRefExpr::Create(
    624     context.getGenDwarfSectionStartSym(), MCSymbolRefExpr::VK_None, context);
    625   MCOS->EmitAbsValue(Start, AddrSize);
    626 
    627   // AT_high_pc, the last address of the default .text section.
    628   const MCExpr *End = MCSymbolRefExpr::Create(
    629     context.getGenDwarfSectionEndSym(), MCSymbolRefExpr::VK_None, context);
    630   MCOS->EmitAbsValue(End, AddrSize);
    631 
    632   // AT_name, the name of the source file.  Reconstruct from the first directory
    633   // and file table entries.
    634   const SmallVectorImpl<StringRef> &MCDwarfDirs =
    635     context.getMCDwarfDirs();
    636   if (MCDwarfDirs.size() > 0) {
    637     MCOS->EmitBytes(MCDwarfDirs[0]);
    638     MCOS->EmitBytes("/");
    639   }
    640   const SmallVectorImpl<MCDwarfFile *> &MCDwarfFiles =
    641     MCOS->getContext().getMCDwarfFiles();
    642   MCOS->EmitBytes(MCDwarfFiles[1]->getName());
    643   MCOS->EmitIntValue(0, 1); // NULL byte to terminate the string.
    644 
    645   // AT_comp_dir, the working directory the assembly was done in.
    646   MCOS->EmitBytes(context.getCompilationDir());
    647   MCOS->EmitIntValue(0, 1); // NULL byte to terminate the string.
    648 
    649   // AT_APPLE_flags, the command line arguments of the assembler tool.
    650   StringRef DwarfDebugFlags = context.getDwarfDebugFlags();
    651   if (!DwarfDebugFlags.empty()){
    652     MCOS->EmitBytes(DwarfDebugFlags);
    653     MCOS->EmitIntValue(0, 1); // NULL byte to terminate the string.
    654   }
    655 
    656   // AT_producer, the version of the assembler tool.
    657   StringRef DwarfDebugProducer = context.getDwarfDebugProducer();
    658   if (!DwarfDebugProducer.empty()){
    659     MCOS->EmitBytes(DwarfDebugProducer);
    660   }
    661   else {
    662     MCOS->EmitBytes(StringRef("llvm-mc (based on LLVM "));
    663     MCOS->EmitBytes(StringRef(PACKAGE_VERSION));
    664     MCOS->EmitBytes(StringRef(")"));
    665   }
    666   MCOS->EmitIntValue(0, 1); // NULL byte to terminate the string.
    667 
    668   // AT_language, a 4 byte value.  We use DW_LANG_Mips_Assembler as the dwarf2
    669   // draft has no standard code for assembler.
    670   MCOS->EmitIntValue(dwarf::DW_LANG_Mips_Assembler, 2);
    671 
    672   // Third part: the list of label DIEs.
    673 
    674   // Loop on saved info for dwarf labels and create the DIEs for them.
    675   const std::vector<const MCGenDwarfLabelEntry *> &Entries =
    676     MCOS->getContext().getMCGenDwarfLabelEntries();
    677   for (std::vector<const MCGenDwarfLabelEntry *>::const_iterator it =
    678        Entries.begin(), ie = Entries.end(); it != ie;
    679        ++it) {
    680     const MCGenDwarfLabelEntry *Entry = *it;
    681 
    682     // The DW_TAG_label DIE abbrev (2).
    683     MCOS->EmitULEB128IntValue(2);
    684 
    685     // AT_name, of the label without any leading underbar.
    686     MCOS->EmitBytes(Entry->getName());
    687     MCOS->EmitIntValue(0, 1); // NULL byte to terminate the string.
    688 
    689     // AT_decl_file, index into the file table.
    690     MCOS->EmitIntValue(Entry->getFileNumber(), 4);
    691 
    692     // AT_decl_line, source line number.
    693     MCOS->EmitIntValue(Entry->getLineNumber(), 4);
    694 
    695     // AT_low_pc, start address of the label.
    696     const MCExpr *AT_low_pc = MCSymbolRefExpr::Create(Entry->getLabel(),
    697                                              MCSymbolRefExpr::VK_None, context);
    698     MCOS->EmitAbsValue(AT_low_pc, AddrSize);
    699 
    700     // DW_AT_prototyped, a one byte flag value of 0 saying we have no prototype.
    701     MCOS->EmitIntValue(0, 1);
    702 
    703     // The DW_TAG_unspecified_parameters DIE abbrev (3).
    704     MCOS->EmitULEB128IntValue(3);
    705 
    706     // Add the NULL DIE terminating the DW_TAG_unspecified_parameters DIE's.
    707     MCOS->EmitIntValue(0, 1);
    708   }
    709   // Deallocate the MCGenDwarfLabelEntry classes that saved away the info
    710   // for the dwarf labels.
    711   for (std::vector<const MCGenDwarfLabelEntry *>::const_iterator it =
    712        Entries.begin(), ie = Entries.end(); it != ie;
    713        ++it) {
    714     const MCGenDwarfLabelEntry *Entry = *it;
    715     delete Entry;
    716   }
    717 
    718   // Add the NULL DIE terminating the Compile Unit DIE's.
    719   MCOS->EmitIntValue(0, 1);
    720 
    721   // Now set the value of the symbol at the end of the info section.
    722   MCOS->EmitLabel(InfoEnd);
    723 }
    724 
    725 //
    726 // When generating dwarf for assembly source files this emits the Dwarf
    727 // sections.
    728 //
    729 void MCGenDwarfInfo::Emit(MCStreamer *MCOS, const MCSymbol *LineSectionSymbol) {
    730   // Create the dwarf sections in this order (.debug_line already created).
    731   MCContext &context = MCOS->getContext();
    732   const MCAsmInfo *AsmInfo = context.getAsmInfo();
    733   bool CreateDwarfSectionSymbols =
    734       AsmInfo->doesDwarfUseRelocationsAcrossSections();
    735   if (!CreateDwarfSectionSymbols)
    736     LineSectionSymbol = NULL;
    737   MCSymbol *AbbrevSectionSymbol = NULL;
    738   MCSymbol *InfoSectionSymbol = NULL;
    739   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfInfoSection());
    740   if (CreateDwarfSectionSymbols) {
    741     InfoSectionSymbol = context.CreateTempSymbol();
    742     MCOS->EmitLabel(InfoSectionSymbol);
    743   }
    744   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfAbbrevSection());
    745   if (CreateDwarfSectionSymbols) {
    746     AbbrevSectionSymbol = context.CreateTempSymbol();
    747     MCOS->EmitLabel(AbbrevSectionSymbol);
    748   }
    749   MCOS->SwitchSection(context.getObjectFileInfo()->getDwarfARangesSection());
    750 
    751   // If there are no line table entries then do not emit any section contents.
    752   if (context.getMCLineSections().empty())
    753     return;
    754 
    755   // Output the data for .debug_aranges section.
    756   EmitGenDwarfAranges(MCOS, InfoSectionSymbol);
    757 
    758   // Output the data for .debug_abbrev section.
    759   EmitGenDwarfAbbrev(MCOS);
    760 
    761   // Output the data for .debug_info section.
    762   EmitGenDwarfInfo(MCOS, AbbrevSectionSymbol, LineSectionSymbol);
    763 }
    764 
    765 //
    766 // When generating dwarf for assembly source files this is called when symbol
    767 // for a label is created.  If this symbol is not a temporary and is in the
    768 // section that dwarf is being generated for, save the needed info to create
    769 // a dwarf label.
    770 //
    771 void MCGenDwarfLabelEntry::Make(MCSymbol *Symbol, MCStreamer *MCOS,
    772                                      SourceMgr &SrcMgr, SMLoc &Loc) {
    773   // We won't create dwarf labels for temporary symbols or symbols not in
    774   // the default text.
    775   if (Symbol->isTemporary())
    776     return;
    777   MCContext &context = MCOS->getContext();
    778   if (context.getGenDwarfSection() != MCOS->getCurrentSection().first)
    779     return;
    780 
    781   // The dwarf label's name does not have the symbol name's leading
    782   // underbar if any.
    783   StringRef Name = Symbol->getName();
    784   if (Name.startswith("_"))
    785     Name = Name.substr(1, Name.size()-1);
    786 
    787   // Get the dwarf file number to be used for the dwarf label.
    788   unsigned FileNumber = context.getGenDwarfFileNumber();
    789 
    790   // Finding the line number is the expensive part which is why we just don't
    791   // pass it in as for some symbols we won't create a dwarf label.
    792   int CurBuffer = SrcMgr.FindBufferContainingLoc(Loc);
    793   unsigned LineNumber = SrcMgr.FindLineNumber(Loc, CurBuffer);
    794 
    795   // We create a temporary symbol for use for the AT_high_pc and AT_low_pc
    796   // values so that they don't have things like an ARM thumb bit from the
    797   // original symbol. So when used they won't get a low bit set after
    798   // relocation.
    799   MCSymbol *Label = context.CreateTempSymbol();
    800   MCOS->EmitLabel(Label);
    801 
    802   // Create and entry for the info and add it to the other entries.
    803   MCGenDwarfLabelEntry *Entry =
    804     new MCGenDwarfLabelEntry(Name, FileNumber, LineNumber, Label);
    805   MCOS->getContext().addMCGenDwarfLabelEntry(Entry);
    806 }
    807 
    808 static int getDataAlignmentFactor(MCStreamer &streamer) {
    809   MCContext &context = streamer.getContext();
    810   const MCAsmInfo *asmInfo = context.getAsmInfo();
    811   int size = asmInfo->getCalleeSaveStackSlotSize();
    812   if (asmInfo->isStackGrowthDirectionUp())
    813     return size;
    814   else
    815     return -size;
    816 }
    817 
    818 static unsigned getSizeForEncoding(MCStreamer &streamer,
    819                                    unsigned symbolEncoding) {
    820   MCContext &context = streamer.getContext();
    821   unsigned format = symbolEncoding & 0x0f;
    822   switch (format) {
    823   default: llvm_unreachable("Unknown Encoding");
    824   case dwarf::DW_EH_PE_absptr:
    825   case dwarf::DW_EH_PE_signed:
    826     return context.getAsmInfo()->getPointerSize();
    827   case dwarf::DW_EH_PE_udata2:
    828   case dwarf::DW_EH_PE_sdata2:
    829     return 2;
    830   case dwarf::DW_EH_PE_udata4:
    831   case dwarf::DW_EH_PE_sdata4:
    832     return 4;
    833   case dwarf::DW_EH_PE_udata8:
    834   case dwarf::DW_EH_PE_sdata8:
    835     return 8;
    836   }
    837 }
    838 
    839 static void EmitSymbol(MCStreamer &streamer, const MCSymbol &symbol,
    840                        unsigned symbolEncoding, const char *comment = 0) {
    841   MCContext &context = streamer.getContext();
    842   const MCAsmInfo *asmInfo = context.getAsmInfo();
    843   const MCExpr *v = asmInfo->getExprForFDESymbol(&symbol,
    844                                                  symbolEncoding,
    845                                                  streamer);
    846   unsigned size = getSizeForEncoding(streamer, symbolEncoding);
    847   if (streamer.isVerboseAsm() && comment) streamer.AddComment(comment);
    848   streamer.EmitAbsValue(v, size);
    849 }
    850 
    851 static void EmitPersonality(MCStreamer &streamer, const MCSymbol &symbol,
    852                             unsigned symbolEncoding) {
    853   MCContext &context = streamer.getContext();
    854   const MCAsmInfo *asmInfo = context.getAsmInfo();
    855   const MCExpr *v = asmInfo->getExprForPersonalitySymbol(&symbol,
    856                                                          symbolEncoding,
    857                                                          streamer);
    858   unsigned size = getSizeForEncoding(streamer, symbolEncoding);
    859   streamer.EmitValue(v, size);
    860 }
    861 
    862 namespace {
    863   class FrameEmitterImpl {
    864     int CFAOffset;
    865     int CIENum;
    866     bool UsingCFI;
    867     bool IsEH;
    868     const MCSymbol *SectionStart;
    869   public:
    870     FrameEmitterImpl(bool usingCFI, bool isEH)
    871       : CFAOffset(0), CIENum(0), UsingCFI(usingCFI), IsEH(isEH),
    872         SectionStart(0) {}
    873 
    874     void setSectionStart(const MCSymbol *Label) { SectionStart = Label; }
    875 
    876     /// EmitCompactUnwind - Emit the unwind information in a compact way. If
    877     /// we're successful, return 'true'. Otherwise, return 'false' and it will
    878     /// emit the normal CIE and FDE.
    879     void EmitCompactUnwind(MCStreamer &streamer,
    880                            const MCDwarfFrameInfo &frame);
    881 
    882     const MCSymbol &EmitCIE(MCStreamer &streamer,
    883                             const MCSymbol *personality,
    884                             unsigned personalityEncoding,
    885                             const MCSymbol *lsda,
    886                             bool IsSignalFrame,
    887                             unsigned lsdaEncoding);
    888     MCSymbol *EmitFDE(MCStreamer &streamer,
    889                       const MCSymbol &cieStart,
    890                       const MCDwarfFrameInfo &frame);
    891     void EmitCFIInstructions(MCStreamer &streamer,
    892                              const std::vector<MCCFIInstruction> &Instrs,
    893                              MCSymbol *BaseLabel);
    894     void EmitCFIInstruction(MCStreamer &Streamer,
    895                             const MCCFIInstruction &Instr);
    896   };
    897 
    898 } // end anonymous namespace
    899 
    900 static void EmitEncodingByte(MCStreamer &Streamer, unsigned Encoding,
    901                              StringRef Prefix) {
    902   if (Streamer.isVerboseAsm()) {
    903     const char *EncStr;
    904     switch (Encoding) {
    905     default: EncStr = "<unknown encoding>"; break;
    906     case dwarf::DW_EH_PE_absptr: EncStr = "absptr"; break;
    907     case dwarf::DW_EH_PE_omit:   EncStr = "omit"; break;
    908     case dwarf::DW_EH_PE_pcrel:  EncStr = "pcrel"; break;
    909     case dwarf::DW_EH_PE_udata4: EncStr = "udata4"; break;
    910     case dwarf::DW_EH_PE_udata8: EncStr = "udata8"; break;
    911     case dwarf::DW_EH_PE_sdata4: EncStr = "sdata4"; break;
    912     case dwarf::DW_EH_PE_sdata8: EncStr = "sdata8"; break;
    913     case dwarf::DW_EH_PE_pcrel | dwarf::DW_EH_PE_udata4:
    914       EncStr = "pcrel udata4";
    915       break;
    916     case dwarf::DW_EH_PE_pcrel | dwarf::DW_EH_PE_sdata4:
    917       EncStr = "pcrel sdata4";
    918       break;
    919     case dwarf::DW_EH_PE_pcrel | dwarf::DW_EH_PE_udata8:
    920       EncStr = "pcrel udata8";
    921       break;
    922     case dwarf::DW_EH_PE_pcrel | dwarf::DW_EH_PE_sdata8:
    923       EncStr = "screl sdata8";
    924       break;
    925     case dwarf::DW_EH_PE_indirect |dwarf::DW_EH_PE_pcrel|dwarf::DW_EH_PE_udata4:
    926       EncStr = "indirect pcrel udata4";
    927       break;
    928     case dwarf::DW_EH_PE_indirect |dwarf::DW_EH_PE_pcrel|dwarf::DW_EH_PE_sdata4:
    929       EncStr = "indirect pcrel sdata4";
    930       break;
    931     case dwarf::DW_EH_PE_indirect |dwarf::DW_EH_PE_pcrel|dwarf::DW_EH_PE_udata8:
    932       EncStr = "indirect pcrel udata8";
    933       break;
    934     case dwarf::DW_EH_PE_indirect |dwarf::DW_EH_PE_pcrel|dwarf::DW_EH_PE_sdata8:
    935       EncStr = "indirect pcrel sdata8";
    936       break;
    937     }
    938 
    939     Streamer.AddComment(Twine(Prefix) + " = " + EncStr);
    940   }
    941 
    942   Streamer.EmitIntValue(Encoding, 1);
    943 }
    944 
    945 void FrameEmitterImpl::EmitCFIInstruction(MCStreamer &Streamer,
    946                                           const MCCFIInstruction &Instr) {
    947   int dataAlignmentFactor = getDataAlignmentFactor(Streamer);
    948   bool VerboseAsm = Streamer.isVerboseAsm();
    949 
    950   switch (Instr.getOperation()) {
    951   case MCCFIInstruction::OpRegister: {
    952     unsigned Reg1 = Instr.getRegister();
    953     unsigned Reg2 = Instr.getRegister2();
    954     if (VerboseAsm) {
    955       Streamer.AddComment("DW_CFA_register");
    956       Streamer.AddComment(Twine("Reg1 ") + Twine(Reg1));
    957       Streamer.AddComment(Twine("Reg2 ") + Twine(Reg2));
    958     }
    959     Streamer.EmitIntValue(dwarf::DW_CFA_register, 1);
    960     Streamer.EmitULEB128IntValue(Reg1);
    961     Streamer.EmitULEB128IntValue(Reg2);
    962     return;
    963   }
    964   case MCCFIInstruction::OpUndefined: {
    965     unsigned Reg = Instr.getRegister();
    966     if (VerboseAsm) {
    967       Streamer.AddComment("DW_CFA_undefined");
    968       Streamer.AddComment(Twine("Reg ") + Twine(Reg));
    969     }
    970     Streamer.EmitIntValue(dwarf::DW_CFA_undefined, 1);
    971     Streamer.EmitULEB128IntValue(Reg);
    972     return;
    973   }
    974   case MCCFIInstruction::OpAdjustCfaOffset:
    975   case MCCFIInstruction::OpDefCfaOffset: {
    976     const bool IsRelative =
    977       Instr.getOperation() == MCCFIInstruction::OpAdjustCfaOffset;
    978 
    979     if (VerboseAsm)
    980       Streamer.AddComment("DW_CFA_def_cfa_offset");
    981     Streamer.EmitIntValue(dwarf::DW_CFA_def_cfa_offset, 1);
    982 
    983     if (IsRelative)
    984       CFAOffset += Instr.getOffset();
    985     else
    986       CFAOffset = -Instr.getOffset();
    987 
    988     if (VerboseAsm)
    989       Streamer.AddComment(Twine("Offset " + Twine(CFAOffset)));
    990     Streamer.EmitULEB128IntValue(CFAOffset);
    991 
    992     return;
    993   }
    994   case MCCFIInstruction::OpDefCfa: {
    995     if (VerboseAsm)
    996       Streamer.AddComment("DW_CFA_def_cfa");
    997     Streamer.EmitIntValue(dwarf::DW_CFA_def_cfa, 1);
    998 
    999     if (VerboseAsm)
   1000       Streamer.AddComment(Twine("Reg ") + Twine(Instr.getRegister()));
   1001     Streamer.EmitULEB128IntValue(Instr.getRegister());
   1002 
   1003     CFAOffset = -Instr.getOffset();
   1004 
   1005     if (VerboseAsm)
   1006       Streamer.AddComment(Twine("Offset " + Twine(CFAOffset)));
   1007     Streamer.EmitULEB128IntValue(CFAOffset);
   1008 
   1009     return;
   1010   }
   1011 
   1012   case MCCFIInstruction::OpDefCfaRegister: {
   1013     if (VerboseAsm)
   1014       Streamer.AddComment("DW_CFA_def_cfa_register");
   1015     Streamer.EmitIntValue(dwarf::DW_CFA_def_cfa_register, 1);
   1016 
   1017     if (VerboseAsm)
   1018       Streamer.AddComment(Twine("Reg ") + Twine(Instr.getRegister()));
   1019     Streamer.EmitULEB128IntValue(Instr.getRegister());
   1020 
   1021     return;
   1022   }
   1023 
   1024   case MCCFIInstruction::OpOffset:
   1025   case MCCFIInstruction::OpRelOffset: {
   1026     const bool IsRelative =
   1027       Instr.getOperation() == MCCFIInstruction::OpRelOffset;
   1028 
   1029     unsigned Reg = Instr.getRegister();
   1030     int Offset = Instr.getOffset();
   1031     if (IsRelative)
   1032       Offset -= CFAOffset;
   1033     Offset = Offset / dataAlignmentFactor;
   1034 
   1035     if (Offset < 0) {
   1036       if (VerboseAsm) Streamer.AddComment("DW_CFA_offset_extended_sf");
   1037       Streamer.EmitIntValue(dwarf::DW_CFA_offset_extended_sf, 1);
   1038       if (VerboseAsm) Streamer.AddComment(Twine("Reg ") + Twine(Reg));
   1039       Streamer.EmitULEB128IntValue(Reg);
   1040       if (VerboseAsm) Streamer.AddComment(Twine("Offset ") + Twine(Offset));
   1041       Streamer.EmitSLEB128IntValue(Offset);
   1042     } else if (Reg < 64) {
   1043       if (VerboseAsm) Streamer.AddComment(Twine("DW_CFA_offset + Reg(") +
   1044                                           Twine(Reg) + ")");
   1045       Streamer.EmitIntValue(dwarf::DW_CFA_offset + Reg, 1);
   1046       if (VerboseAsm) Streamer.AddComment(Twine("Offset ") + Twine(Offset));
   1047       Streamer.EmitULEB128IntValue(Offset);
   1048     } else {
   1049       if (VerboseAsm) Streamer.AddComment("DW_CFA_offset_extended");
   1050       Streamer.EmitIntValue(dwarf::DW_CFA_offset_extended, 1);
   1051       if (VerboseAsm) Streamer.AddComment(Twine("Reg ") + Twine(Reg));
   1052       Streamer.EmitULEB128IntValue(Reg);
   1053       if (VerboseAsm) Streamer.AddComment(Twine("Offset ") + Twine(Offset));
   1054       Streamer.EmitULEB128IntValue(Offset);
   1055     }
   1056     return;
   1057   }
   1058   case MCCFIInstruction::OpRememberState:
   1059     if (VerboseAsm) Streamer.AddComment("DW_CFA_remember_state");
   1060     Streamer.EmitIntValue(dwarf::DW_CFA_remember_state, 1);
   1061     return;
   1062   case MCCFIInstruction::OpRestoreState:
   1063     if (VerboseAsm) Streamer.AddComment("DW_CFA_restore_state");
   1064     Streamer.EmitIntValue(dwarf::DW_CFA_restore_state, 1);
   1065     return;
   1066   case MCCFIInstruction::OpSameValue: {
   1067     unsigned Reg = Instr.getRegister();
   1068     if (VerboseAsm) Streamer.AddComment("DW_CFA_same_value");
   1069     Streamer.EmitIntValue(dwarf::DW_CFA_same_value, 1);
   1070     if (VerboseAsm) Streamer.AddComment(Twine("Reg ") + Twine(Reg));
   1071     Streamer.EmitULEB128IntValue(Reg);
   1072     return;
   1073   }
   1074   case MCCFIInstruction::OpRestore: {
   1075     unsigned Reg = Instr.getRegister();
   1076     if (VerboseAsm) {
   1077       Streamer.AddComment("DW_CFA_restore");
   1078       Streamer.AddComment(Twine("Reg ") + Twine(Reg));
   1079     }
   1080     Streamer.EmitIntValue(dwarf::DW_CFA_restore | Reg, 1);
   1081     return;
   1082   }
   1083   case MCCFIInstruction::OpEscape:
   1084     if (VerboseAsm) Streamer.AddComment("Escape bytes");
   1085     Streamer.EmitBytes(Instr.getValues());
   1086     return;
   1087   }
   1088   llvm_unreachable("Unhandled case in switch");
   1089 }
   1090 
   1091 /// EmitFrameMoves - Emit frame instructions to describe the layout of the
   1092 /// frame.
   1093 void FrameEmitterImpl::EmitCFIInstructions(MCStreamer &streamer,
   1094                                     const std::vector<MCCFIInstruction> &Instrs,
   1095                                            MCSymbol *BaseLabel) {
   1096   for (unsigned i = 0, N = Instrs.size(); i < N; ++i) {
   1097     const MCCFIInstruction &Instr = Instrs[i];
   1098     MCSymbol *Label = Instr.getLabel();
   1099     // Throw out move if the label is invalid.
   1100     if (Label && !Label->isDefined()) continue; // Not emitted, in dead code.
   1101 
   1102     // Advance row if new location.
   1103     if (BaseLabel && Label) {
   1104       MCSymbol *ThisSym = Label;
   1105       if (ThisSym != BaseLabel) {
   1106         if (streamer.isVerboseAsm()) streamer.AddComment("DW_CFA_advance_loc4");
   1107         streamer.EmitDwarfAdvanceFrameAddr(BaseLabel, ThisSym);
   1108         BaseLabel = ThisSym;
   1109       }
   1110     }
   1111 
   1112     EmitCFIInstruction(streamer, Instr);
   1113   }
   1114 }
   1115 
   1116 /// EmitCompactUnwind - Emit the unwind information in a compact way. If we're
   1117 /// successful, return 'true'. Otherwise, return 'false' and it will emit the
   1118 /// normal CIE and FDE.
   1119 void FrameEmitterImpl::EmitCompactUnwind(MCStreamer &Streamer,
   1120                                          const MCDwarfFrameInfo &Frame) {
   1121   MCContext &Context = Streamer.getContext();
   1122   const MCObjectFileInfo *MOFI = Context.getObjectFileInfo();
   1123   bool VerboseAsm = Streamer.isVerboseAsm();
   1124 
   1125   // range-start range-length  compact-unwind-enc personality-func   lsda
   1126   //  _foo       LfooEnd-_foo  0x00000023          0                 0
   1127   //  _bar       LbarEnd-_bar  0x00000025         __gxx_personality  except_tab1
   1128   //
   1129   //   .section __LD,__compact_unwind,regular,debug
   1130   //
   1131   //   # compact unwind for _foo
   1132   //   .quad _foo
   1133   //   .set L1,LfooEnd-_foo
   1134   //   .long L1
   1135   //   .long 0x01010001
   1136   //   .quad 0
   1137   //   .quad 0
   1138   //
   1139   //   # compact unwind for _bar
   1140   //   .quad _bar
   1141   //   .set L2,LbarEnd-_bar
   1142   //   .long L2
   1143   //   .long 0x01020011
   1144   //   .quad __gxx_personality
   1145   //   .quad except_tab1
   1146 
   1147   uint32_t Encoding = Frame.CompactUnwindEncoding;
   1148   if (!Encoding) return;
   1149   bool DwarfEHFrameOnly = (Encoding == MOFI->getCompactUnwindDwarfEHFrameOnly());
   1150 
   1151   // The encoding needs to know we have an LSDA.
   1152   if (!DwarfEHFrameOnly && Frame.Lsda)
   1153     Encoding |= 0x40000000;
   1154 
   1155   // Range Start
   1156   unsigned FDEEncoding = MOFI->getFDEEncoding(UsingCFI);
   1157   unsigned Size = getSizeForEncoding(Streamer, FDEEncoding);
   1158   if (VerboseAsm) Streamer.AddComment("Range Start");
   1159   Streamer.EmitSymbolValue(Frame.Function, Size);
   1160 
   1161   // Range Length
   1162   const MCExpr *Range = MakeStartMinusEndExpr(Streamer, *Frame.Begin,
   1163                                               *Frame.End, 0);
   1164   if (VerboseAsm) Streamer.AddComment("Range Length");
   1165   Streamer.EmitAbsValue(Range, 4);
   1166 
   1167   // Compact Encoding
   1168   Size = getSizeForEncoding(Streamer, dwarf::DW_EH_PE_udata4);
   1169   if (VerboseAsm) Streamer.AddComment("Compact Unwind Encoding: 0x" +
   1170                                       Twine::utohexstr(Encoding));
   1171   Streamer.EmitIntValue(Encoding, Size);
   1172 
   1173   // Personality Function
   1174   Size = getSizeForEncoding(Streamer, dwarf::DW_EH_PE_absptr);
   1175   if (VerboseAsm) Streamer.AddComment("Personality Function");
   1176   if (!DwarfEHFrameOnly && Frame.Personality)
   1177     Streamer.EmitSymbolValue(Frame.Personality, Size);
   1178   else
   1179     Streamer.EmitIntValue(0, Size); // No personality fn
   1180 
   1181   // LSDA
   1182   Size = getSizeForEncoding(Streamer, Frame.LsdaEncoding);
   1183   if (VerboseAsm) Streamer.AddComment("LSDA");
   1184   if (!DwarfEHFrameOnly && Frame.Lsda)
   1185     Streamer.EmitSymbolValue(Frame.Lsda, Size);
   1186   else
   1187     Streamer.EmitIntValue(0, Size); // No LSDA
   1188 }
   1189 
   1190 const MCSymbol &FrameEmitterImpl::EmitCIE(MCStreamer &streamer,
   1191                                           const MCSymbol *personality,
   1192                                           unsigned personalityEncoding,
   1193                                           const MCSymbol *lsda,
   1194                                           bool IsSignalFrame,
   1195                                           unsigned lsdaEncoding) {
   1196   MCContext &context = streamer.getContext();
   1197   const MCRegisterInfo *MRI = context.getRegisterInfo();
   1198   const MCObjectFileInfo *MOFI = context.getObjectFileInfo();
   1199   bool verboseAsm = streamer.isVerboseAsm();
   1200 
   1201   MCSymbol *sectionStart;
   1202   if (MOFI->isFunctionEHFrameSymbolPrivate() || !IsEH)
   1203     sectionStart = context.CreateTempSymbol();
   1204   else
   1205     sectionStart = context.GetOrCreateSymbol(Twine("EH_frame") + Twine(CIENum));
   1206 
   1207   streamer.EmitLabel(sectionStart);
   1208   CIENum++;
   1209 
   1210   MCSymbol *sectionEnd = context.CreateTempSymbol();
   1211 
   1212   // Length
   1213   const MCExpr *Length = MakeStartMinusEndExpr(streamer, *sectionStart,
   1214                                                *sectionEnd, 4);
   1215   if (verboseAsm) streamer.AddComment("CIE Length");
   1216   streamer.EmitAbsValue(Length, 4);
   1217 
   1218   // CIE ID
   1219   unsigned CIE_ID = IsEH ? 0 : -1;
   1220   if (verboseAsm) streamer.AddComment("CIE ID Tag");
   1221   streamer.EmitIntValue(CIE_ID, 4);
   1222 
   1223   // Version
   1224   if (verboseAsm) streamer.AddComment("DW_CIE_VERSION");
   1225   streamer.EmitIntValue(dwarf::DW_CIE_VERSION, 1);
   1226 
   1227   // Augmentation String
   1228   SmallString<8> Augmentation;
   1229   if (IsEH) {
   1230     if (verboseAsm) streamer.AddComment("CIE Augmentation");
   1231     Augmentation += "z";
   1232     if (personality)
   1233       Augmentation += "P";
   1234     if (lsda)
   1235       Augmentation += "L";
   1236     Augmentation += "R";
   1237     if (IsSignalFrame)
   1238       Augmentation += "S";
   1239     streamer.EmitBytes(Augmentation.str());
   1240   }
   1241   streamer.EmitIntValue(0, 1);
   1242 
   1243   // Code Alignment Factor
   1244   if (verboseAsm) streamer.AddComment("CIE Code Alignment Factor");
   1245   streamer.EmitULEB128IntValue(context.getAsmInfo()->getMinInstAlignment());
   1246 
   1247   // Data Alignment Factor
   1248   if (verboseAsm) streamer.AddComment("CIE Data Alignment Factor");
   1249   streamer.EmitSLEB128IntValue(getDataAlignmentFactor(streamer));
   1250 
   1251   // Return Address Register
   1252   if (verboseAsm) streamer.AddComment("CIE Return Address Column");
   1253   streamer.EmitULEB128IntValue(MRI->getDwarfRegNum(MRI->getRARegister(), true));
   1254 
   1255   // Augmentation Data Length (optional)
   1256 
   1257   unsigned augmentationLength = 0;
   1258   if (IsEH) {
   1259     if (personality) {
   1260       // Personality Encoding
   1261       augmentationLength += 1;
   1262       // Personality
   1263       augmentationLength += getSizeForEncoding(streamer, personalityEncoding);
   1264     }
   1265     if (lsda)
   1266       augmentationLength += 1;
   1267     // Encoding of the FDE pointers
   1268     augmentationLength += 1;
   1269 
   1270     if (verboseAsm) streamer.AddComment("Augmentation Size");
   1271     streamer.EmitULEB128IntValue(augmentationLength);
   1272 
   1273     // Augmentation Data (optional)
   1274     if (personality) {
   1275       // Personality Encoding
   1276       EmitEncodingByte(streamer, personalityEncoding,
   1277                        "Personality Encoding");
   1278       // Personality
   1279       if (verboseAsm) streamer.AddComment("Personality");
   1280       EmitPersonality(streamer, *personality, personalityEncoding);
   1281     }
   1282 
   1283     if (lsda)
   1284       EmitEncodingByte(streamer, lsdaEncoding, "LSDA Encoding");
   1285 
   1286     // Encoding of the FDE pointers
   1287     EmitEncodingByte(streamer, MOFI->getFDEEncoding(UsingCFI),
   1288                      "FDE Encoding");
   1289   }
   1290 
   1291   // Initial Instructions
   1292 
   1293   const MCAsmInfo *MAI = context.getAsmInfo();
   1294   const std::vector<MCCFIInstruction> &Instructions =
   1295       MAI->getInitialFrameState();
   1296   EmitCFIInstructions(streamer, Instructions, NULL);
   1297 
   1298   // Padding
   1299   streamer.EmitValueToAlignment(IsEH ? 4 : MAI->getPointerSize());
   1300 
   1301   streamer.EmitLabel(sectionEnd);
   1302   return *sectionStart;
   1303 }
   1304 
   1305 MCSymbol *FrameEmitterImpl::EmitFDE(MCStreamer &streamer,
   1306                                     const MCSymbol &cieStart,
   1307                                     const MCDwarfFrameInfo &frame) {
   1308   MCContext &context = streamer.getContext();
   1309   MCSymbol *fdeStart = context.CreateTempSymbol();
   1310   MCSymbol *fdeEnd = context.CreateTempSymbol();
   1311   const MCObjectFileInfo *MOFI = context.getObjectFileInfo();
   1312   bool verboseAsm = streamer.isVerboseAsm();
   1313 
   1314   if (IsEH && frame.Function && !MOFI->isFunctionEHFrameSymbolPrivate()) {
   1315     MCSymbol *EHSym =
   1316       context.GetOrCreateSymbol(frame.Function->getName() + Twine(".eh"));
   1317     streamer.EmitEHSymAttributes(frame.Function, EHSym);
   1318     streamer.EmitLabel(EHSym);
   1319   }
   1320 
   1321   // Length
   1322   const MCExpr *Length = MakeStartMinusEndExpr(streamer, *fdeStart, *fdeEnd, 0);
   1323   if (verboseAsm) streamer.AddComment("FDE Length");
   1324   streamer.EmitAbsValue(Length, 4);
   1325 
   1326   streamer.EmitLabel(fdeStart);
   1327 
   1328   // CIE Pointer
   1329   const MCAsmInfo *asmInfo = context.getAsmInfo();
   1330   if (IsEH) {
   1331     const MCExpr *offset = MakeStartMinusEndExpr(streamer, cieStart, *fdeStart,
   1332                                                  0);
   1333     if (verboseAsm) streamer.AddComment("FDE CIE Offset");
   1334     streamer.EmitAbsValue(offset, 4);
   1335   } else if (!asmInfo->doesDwarfUseRelocationsAcrossSections()) {
   1336     const MCExpr *offset = MakeStartMinusEndExpr(streamer, *SectionStart,
   1337                                                  cieStart, 0);
   1338     streamer.EmitAbsValue(offset, 4);
   1339   } else {
   1340     streamer.EmitSymbolValue(&cieStart, 4);
   1341   }
   1342 
   1343   // PC Begin
   1344   unsigned PCEncoding = IsEH ? MOFI->getFDEEncoding(UsingCFI)
   1345                              : (unsigned)dwarf::DW_EH_PE_absptr;
   1346   unsigned PCSize = getSizeForEncoding(streamer, PCEncoding);
   1347   EmitSymbol(streamer, *frame.Begin, PCEncoding, "FDE initial location");
   1348 
   1349   // PC Range
   1350   const MCExpr *Range = MakeStartMinusEndExpr(streamer, *frame.Begin,
   1351                                               *frame.End, 0);
   1352   if (verboseAsm) streamer.AddComment("FDE address range");
   1353   streamer.EmitAbsValue(Range, PCSize);
   1354 
   1355   if (IsEH) {
   1356     // Augmentation Data Length
   1357     unsigned augmentationLength = 0;
   1358 
   1359     if (frame.Lsda)
   1360       augmentationLength += getSizeForEncoding(streamer, frame.LsdaEncoding);
   1361 
   1362     if (verboseAsm) streamer.AddComment("Augmentation size");
   1363     streamer.EmitULEB128IntValue(augmentationLength);
   1364 
   1365     // Augmentation Data
   1366     if (frame.Lsda)
   1367       EmitSymbol(streamer, *frame.Lsda, frame.LsdaEncoding,
   1368                  "Language Specific Data Area");
   1369   }
   1370 
   1371   // Call Frame Instructions
   1372   EmitCFIInstructions(streamer, frame.Instructions, frame.Begin);
   1373 
   1374   // Padding
   1375   streamer.EmitValueToAlignment(PCSize);
   1376 
   1377   return fdeEnd;
   1378 }
   1379 
   1380 namespace {
   1381   struct CIEKey {
   1382     static const CIEKey getEmptyKey() { return CIEKey(0, 0, -1, false); }
   1383     static const CIEKey getTombstoneKey() { return CIEKey(0, -1, 0, false); }
   1384 
   1385     CIEKey(const MCSymbol* Personality_, unsigned PersonalityEncoding_,
   1386            unsigned LsdaEncoding_, bool IsSignalFrame_) :
   1387       Personality(Personality_), PersonalityEncoding(PersonalityEncoding_),
   1388       LsdaEncoding(LsdaEncoding_), IsSignalFrame(IsSignalFrame_) {
   1389     }
   1390     const MCSymbol* Personality;
   1391     unsigned PersonalityEncoding;
   1392     unsigned LsdaEncoding;
   1393     bool IsSignalFrame;
   1394   };
   1395 }
   1396 
   1397 namespace llvm {
   1398   template <>
   1399   struct DenseMapInfo<CIEKey> {
   1400     static CIEKey getEmptyKey() {
   1401       return CIEKey::getEmptyKey();
   1402     }
   1403     static CIEKey getTombstoneKey() {
   1404       return CIEKey::getTombstoneKey();
   1405     }
   1406     static unsigned getHashValue(const CIEKey &Key) {
   1407       return static_cast<unsigned>(hash_combine(Key.Personality,
   1408                                                 Key.PersonalityEncoding,
   1409                                                 Key.LsdaEncoding,
   1410                                                 Key.IsSignalFrame));
   1411     }
   1412     static bool isEqual(const CIEKey &LHS,
   1413                         const CIEKey &RHS) {
   1414       return LHS.Personality == RHS.Personality &&
   1415         LHS.PersonalityEncoding == RHS.PersonalityEncoding &&
   1416         LHS.LsdaEncoding == RHS.LsdaEncoding &&
   1417         LHS.IsSignalFrame == RHS.IsSignalFrame;
   1418     }
   1419   };
   1420 }
   1421 
   1422 void MCDwarfFrameEmitter::Emit(MCStreamer &Streamer,
   1423                                bool UsingCFI,
   1424                                bool IsEH) {
   1425   MCContext &Context = Streamer.getContext();
   1426   const MCObjectFileInfo *MOFI = Context.getObjectFileInfo();
   1427   FrameEmitterImpl Emitter(UsingCFI, IsEH);
   1428   ArrayRef<MCDwarfFrameInfo> FrameArray = Streamer.getFrameInfos();
   1429 
   1430   // Emit the compact unwind info if available.
   1431   if (IsEH && MOFI->getCompactUnwindSection()) {
   1432     bool SectionEmitted = false;
   1433     for (unsigned i = 0, n = FrameArray.size(); i < n; ++i) {
   1434       const MCDwarfFrameInfo &Frame = FrameArray[i];
   1435       if (Frame.CompactUnwindEncoding == 0) continue;
   1436       if (!SectionEmitted) {
   1437         Streamer.SwitchSection(MOFI->getCompactUnwindSection());
   1438         Streamer.EmitValueToAlignment(Context.getAsmInfo()->getPointerSize());
   1439         SectionEmitted = true;
   1440       }
   1441       Emitter.EmitCompactUnwind(Streamer, Frame);
   1442     }
   1443   }
   1444 
   1445   const MCSection &Section =
   1446     IsEH ? *const_cast<MCObjectFileInfo*>(MOFI)->getEHFrameSection() :
   1447            *MOFI->getDwarfFrameSection();
   1448   Streamer.SwitchSection(&Section);
   1449   MCSymbol *SectionStart = Context.CreateTempSymbol();
   1450   Streamer.EmitLabel(SectionStart);
   1451   Emitter.setSectionStart(SectionStart);
   1452 
   1453   MCSymbol *FDEEnd = NULL;
   1454   DenseMap<CIEKey, const MCSymbol*> CIEStarts;
   1455 
   1456   const MCSymbol *DummyDebugKey = NULL;
   1457   for (unsigned i = 0, n = FrameArray.size(); i < n; ++i) {
   1458     const MCDwarfFrameInfo &Frame = FrameArray[i];
   1459     CIEKey Key(Frame.Personality, Frame.PersonalityEncoding,
   1460                Frame.LsdaEncoding, Frame.IsSignalFrame);
   1461     const MCSymbol *&CIEStart = IsEH ? CIEStarts[Key] : DummyDebugKey;
   1462     if (!CIEStart)
   1463       CIEStart = &Emitter.EmitCIE(Streamer, Frame.Personality,
   1464                                   Frame.PersonalityEncoding, Frame.Lsda,
   1465                                   Frame.IsSignalFrame,
   1466                                   Frame.LsdaEncoding);
   1467 
   1468     FDEEnd = Emitter.EmitFDE(Streamer, *CIEStart, Frame);
   1469 
   1470     if (i != n - 1)
   1471       Streamer.EmitLabel(FDEEnd);
   1472   }
   1473 
   1474   Streamer.EmitValueToAlignment(Context.getAsmInfo()->getPointerSize());
   1475   if (FDEEnd)
   1476     Streamer.EmitLabel(FDEEnd);
   1477 }
   1478 
   1479 void MCDwarfFrameEmitter::EmitAdvanceLoc(MCStreamer &Streamer,
   1480                                          uint64_t AddrDelta) {
   1481   MCContext &Context = Streamer.getContext();
   1482   SmallString<256> Tmp;
   1483   raw_svector_ostream OS(Tmp);
   1484   MCDwarfFrameEmitter::EncodeAdvanceLoc(Context, AddrDelta, OS);
   1485   Streamer.EmitBytes(OS.str());
   1486 }
   1487 
   1488 void MCDwarfFrameEmitter::EncodeAdvanceLoc(MCContext &Context,
   1489                                            uint64_t AddrDelta,
   1490                                            raw_ostream &OS) {
   1491   // Scale the address delta by the minimum instruction length.
   1492   AddrDelta = ScaleAddrDelta(Context, AddrDelta);
   1493 
   1494   if (AddrDelta == 0) {
   1495   } else if (isUIntN(6, AddrDelta)) {
   1496     uint8_t Opcode = dwarf::DW_CFA_advance_loc | AddrDelta;
   1497     OS << Opcode;
   1498   } else if (isUInt<8>(AddrDelta)) {
   1499     OS << uint8_t(dwarf::DW_CFA_advance_loc1);
   1500     OS << uint8_t(AddrDelta);
   1501   } else if (isUInt<16>(AddrDelta)) {
   1502     // FIXME: check what is the correct behavior on a big endian machine.
   1503     OS << uint8_t(dwarf::DW_CFA_advance_loc2);
   1504     OS << uint8_t( AddrDelta       & 0xff);
   1505     OS << uint8_t((AddrDelta >> 8) & 0xff);
   1506   } else {
   1507     // FIXME: check what is the correct behavior on a big endian machine.
   1508     assert(isUInt<32>(AddrDelta));
   1509     OS << uint8_t(dwarf::DW_CFA_advance_loc4);
   1510     OS << uint8_t( AddrDelta        & 0xff);
   1511     OS << uint8_t((AddrDelta >> 8)  & 0xff);
   1512     OS << uint8_t((AddrDelta >> 16) & 0xff);
   1513     OS << uint8_t((AddrDelta >> 24) & 0xff);
   1514 
   1515   }
   1516 }
   1517