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1 //===-- llvm/MC/MCAsmInfo.h - Asm info --------------------------*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file contains a class to be used as the basis for target specific
11 // asm writers.  This class primarily takes care of global printing constants,
12 // which are used in very similar ways across all targets.
13 //
14 //===----------------------------------------------------------------------===//
15 
16 #ifndef LLVM_MC_MCASMINFO_H
17 #define LLVM_MC_MCASMINFO_H
18 
19 #include "llvm/MC/MCDirectives.h"
20 #include "llvm/MC/MachineLocation.h"
21 #include <cassert>
22 #include <vector>
23 
24 namespace llvm {
25   class MCExpr;
26   class MCSection;
27   class MCStreamer;
28   class MCSymbol;
29   class MCContext;
30 
31   namespace ExceptionHandling {
32     enum ExceptionsType { None, DwarfCFI, SjLj, ARM, Win64 };
33   }
34 
35   namespace LCOMM {
36     enum LCOMMType { NoAlignment, ByteAlignment, Log2Alignment };
37   }
38 
39   /// MCAsmInfo - This class is intended to be used as a base class for asm
40   /// properties and features specific to the target.
41   class MCAsmInfo {
42   protected:
43     //===------------------------------------------------------------------===//
44     // Properties to be set by the target writer, used to configure asm printer.
45     //
46 
47     /// PointerSize - Pointer size in bytes.
48     ///               Default is 4.
49     unsigned PointerSize;
50 
51     /// CalleeSaveStackSlotSize - Size of the stack slot reserved for
52     ///                           callee-saved registers, in bytes.
53     ///                           Default is same as pointer size.
54     unsigned CalleeSaveStackSlotSize;
55 
56     /// IsLittleEndian - True if target is little endian.
57     ///                  Default is true.
58     bool IsLittleEndian;
59 
60     /// StackGrowsUp - True if target stack grow up.
61     ///                Default is false.
62     bool StackGrowsUp;
63 
64     /// HasSubsectionsViaSymbols - True if this target has the MachO
65     /// .subsections_via_symbols directive.
66     bool HasSubsectionsViaSymbols;           // Default is false.
67 
68     /// HasMachoZeroFillDirective - True if this is a MachO target that supports
69     /// the macho-specific .zerofill directive for emitting BSS Symbols.
70     bool HasMachoZeroFillDirective;               // Default is false.
71 
72     /// HasMachoTBSSDirective - True if this is a MachO target that supports
73     /// the macho-specific .tbss directive for emitting thread local BSS Symbols
74     bool HasMachoTBSSDirective;                 // Default is false.
75 
76     /// HasStaticCtorDtorReferenceInStaticMode - True if the compiler should
77     /// emit a ".reference .constructors_used" or ".reference .destructors_used"
78     /// directive after the a static ctor/dtor list.  This directive is only
79     /// emitted in Static relocation model.
80     bool HasStaticCtorDtorReferenceInStaticMode;  // Default is false.
81 
82     /// LinkerRequiresNonEmptyDwarfLines - True if the linker has a bug and
83     /// requires that the debug_line section be of a minimum size. In practice
84     /// such a linker requires a non empty line sequence if a file is present.
85     bool LinkerRequiresNonEmptyDwarfLines; // Default to false.
86 
87     /// MaxInstLength - This is the maximum possible length of an instruction,
88     /// which is needed to compute the size of an inline asm.
89     unsigned MaxInstLength;                  // Defaults to 4.
90 
91     /// PCSymbol - The symbol used to represent the current PC.  Used in PC
92     /// relative expressions.
93     const char *PCSymbol;                    // Defaults to "$".
94 
95     /// SeparatorString - This string, if specified, is used to separate
96     /// instructions from each other when on the same line.
97     const char *SeparatorString;             // Defaults to ';'
98 
99     /// CommentColumn - This indicates the comment num (zero-based) at
100     /// which asm comments should be printed.
101     unsigned CommentColumn;                  // Defaults to 40
102 
103     /// CommentString - This indicates the comment character used by the
104     /// assembler.
105     const char *CommentString;               // Defaults to "#"
106 
107     /// LabelSuffix - This is appended to emitted labels.
108     const char *LabelSuffix;                 // Defaults to ":"
109 
110     /// LabelSuffix - This is appended to emitted labels.
111     const char *DebugLabelSuffix;                 // Defaults to ":"
112 
113     /// GlobalPrefix - If this is set to a non-empty string, it is prepended
114     /// onto all global symbols.  This is often used for "_" or ".".
115     const char *GlobalPrefix;                // Defaults to ""
116 
117     /// PrivateGlobalPrefix - This prefix is used for globals like constant
118     /// pool entries that are completely private to the .s file and should not
119     /// have names in the .o file.  This is often "." or "L".
120     const char *PrivateGlobalPrefix;         // Defaults to "."
121 
122     /// LinkerPrivateGlobalPrefix - This prefix is used for symbols that should
123     /// be passed through the assembler but be removed by the linker.  This
124     /// is "l" on Darwin, currently used for some ObjC metadata.
125     const char *LinkerPrivateGlobalPrefix;   // Defaults to ""
126 
127     /// InlineAsmStart/End - If these are nonempty, they contain a directive to
128     /// emit before and after an inline assembly statement.
129     const char *InlineAsmStart;              // Defaults to "#APP\n"
130     const char *InlineAsmEnd;                // Defaults to "#NO_APP\n"
131 
132     /// Code16Directive, Code32Directive, Code64Directive - These are assembly
133     /// directives that tells the assembler to interpret the following
134     /// instructions differently.
135     const char *Code16Directive;             // Defaults to ".code16"
136     const char *Code32Directive;             // Defaults to ".code32"
137     const char *Code64Directive;             // Defaults to ".code64"
138 
139     /// AssemblerDialect - Which dialect of an assembler variant to use.
140     unsigned AssemblerDialect;               // Defaults to 0
141 
142     /// AllowQuotesInName - This is true if the assembler allows for complex
143     /// symbol names to be surrounded in quotes.  This defaults to false.
144     bool AllowQuotesInName;
145 
146     /// AllowNameToStartWithDigit - This is true if the assembler allows symbol
147     /// names to start with a digit (e.g., "0x0021").  This defaults to false.
148     bool AllowNameToStartWithDigit;
149 
150     /// AllowPeriodsInName - This is true if the assembler allows periods in
151     /// symbol names.  This defaults to true.
152     bool AllowPeriodsInName;
153 
154     /// AllowUTF8 - This is true if the assembler accepts UTF-8 input.
155     // FIXME: Make this a more general encoding setting?
156     bool AllowUTF8;
157 
158     /// UseDataRegionDirectives - This is true if data region markers should
159     /// be printed as ".data_region/.end_data_region" directives. If false,
160     /// use "$d/$a" labels instead.
161     bool UseDataRegionDirectives;
162 
163     //===--- Data Emission Directives -------------------------------------===//
164 
165     /// ZeroDirective - this should be set to the directive used to get some
166     /// number of zero bytes emitted to the current section.  Common cases are
167     /// "\t.zero\t" and "\t.space\t".  If this is set to null, the
168     /// Data*bitsDirective's will be used to emit zero bytes.
169     const char *ZeroDirective;               // Defaults to "\t.zero\t"
170 
171     /// AsciiDirective - This directive allows emission of an ascii string with
172     /// the standard C escape characters embedded into it.
173     const char *AsciiDirective;              // Defaults to "\t.ascii\t"
174 
175     /// AscizDirective - If not null, this allows for special handling of
176     /// zero terminated strings on this target.  This is commonly supported as
177     /// ".asciz".  If a target doesn't support this, it can be set to null.
178     const char *AscizDirective;              // Defaults to "\t.asciz\t"
179 
180     /// DataDirectives - These directives are used to output some unit of
181     /// integer data to the current section.  If a data directive is set to
182     /// null, smaller data directives will be used to emit the large sizes.
183     const char *Data8bitsDirective;          // Defaults to "\t.byte\t"
184     const char *Data16bitsDirective;         // Defaults to "\t.short\t"
185     const char *Data32bitsDirective;         // Defaults to "\t.long\t"
186     const char *Data64bitsDirective;         // Defaults to "\t.quad\t"
187 
188     /// GPRel64Directive - if non-null, a directive that is used to emit a word
189     /// which should be relocated as a 64-bit GP-relative offset, e.g. .gpdword
190     /// on Mips.
191     const char *GPRel64Directive;            // Defaults to NULL.
192 
193     /// GPRel32Directive - if non-null, a directive that is used to emit a word
194     /// which should be relocated as a 32-bit GP-relative offset, e.g. .gpword
195     /// on Mips or .gprel32 on Alpha.
196     const char *GPRel32Directive;            // Defaults to NULL.
197 
198     /// getDataASDirective - Return the directive that should be used to emit
199     /// data of the specified size to the specified numeric address space.
getDataASDirective(unsigned Size,unsigned AS)200     virtual const char *getDataASDirective(unsigned Size, unsigned AS) const {
201       assert(AS != 0 && "Don't know the directives for default addr space");
202       return 0;
203     }
204 
205     /// SunStyleELFSectionSwitchSyntax - This is true if this target uses "Sun
206     /// Style" syntax for section switching ("#alloc,#write" etc) instead of the
207     /// normal ELF syntax (,"a,w") in .section directives.
208     bool SunStyleELFSectionSwitchSyntax;     // Defaults to false.
209 
210     /// UsesELFSectionDirectiveForBSS - This is true if this target uses ELF
211     /// '.section' directive before the '.bss' one. It's used for PPC/Linux
212     /// which doesn't support the '.bss' directive only.
213     bool UsesELFSectionDirectiveForBSS;      // Defaults to false.
214 
215     /// HasMicrosoftFastStdCallMangling - True if this target uses microsoft
216     /// style mangling for functions with X86_StdCall/X86_FastCall calling
217     /// convention.
218     bool HasMicrosoftFastStdCallMangling;    // Defaults to false.
219 
220     //===--- Alignment Information ----------------------------------------===//
221 
222     /// AlignDirective - The directive used to emit round up to an alignment
223     /// boundary.
224     ///
225     const char *AlignDirective;              // Defaults to "\t.align\t"
226 
227     /// AlignmentIsInBytes - If this is true (the default) then the asmprinter
228     /// emits ".align N" directives, where N is the number of bytes to align to.
229     /// Otherwise, it emits ".align log2(N)", e.g. 3 to align to an 8 byte
230     /// boundary.
231     bool AlignmentIsInBytes;                 // Defaults to true
232 
233     /// TextAlignFillValue - If non-zero, this is used to fill the executable
234     /// space created as the result of a alignment directive.
235     unsigned TextAlignFillValue;             // Defaults to 0
236 
237     //===--- Global Variable Emission Directives --------------------------===//
238 
239     /// GlobalDirective - This is the directive used to declare a global entity.
240     ///
241     const char *GlobalDirective;             // Defaults to NULL.
242 
243     /// ExternDirective - This is the directive used to declare external
244     /// globals.
245     ///
246     const char *ExternDirective;             // Defaults to NULL.
247 
248     /// HasSetDirective - True if the assembler supports the .set directive.
249     bool HasSetDirective;                    // Defaults to true.
250 
251     /// HasAggressiveSymbolFolding - False if the assembler requires that we use
252     /// Lc = a - b
253     /// .long Lc
254     /// instead of
255     /// .long a - b
256     bool HasAggressiveSymbolFolding;           // Defaults to true.
257 
258     /// COMMDirectiveAlignmentIsInBytes - True is .comm's and .lcomms optional
259     /// alignment is to be specified in bytes instead of log2(n).
260     bool COMMDirectiveAlignmentIsInBytes;    // Defaults to true;
261 
262     /// LCOMMDirectiveAlignment - Describes if the .lcomm directive for the
263     /// target supports an alignment argument and how it is interpreted.
264     LCOMM::LCOMMType LCOMMDirectiveAlignmentType; // Defaults to NoAlignment.
265 
266     /// HasDotTypeDotSizeDirective - True if the target has .type and .size
267     /// directives, this is true for most ELF targets.
268     bool HasDotTypeDotSizeDirective;         // Defaults to true.
269 
270     /// HasSingleParameterDotFile - True if the target has a single parameter
271     /// .file directive, this is true for ELF targets.
272     bool HasSingleParameterDotFile;          // Defaults to true.
273 
274     /// HasNoDeadStrip - True if this target supports the MachO .no_dead_strip
275     /// directive.
276     bool HasNoDeadStrip;                     // Defaults to false.
277 
278     /// HasSymbolResolver - True if this target supports the MachO
279     /// .symbol_resolver directive.
280     bool HasSymbolResolver;                     // Defaults to false.
281 
282     /// WeakRefDirective - This directive, if non-null, is used to declare a
283     /// global as being a weak undefined symbol.
284     const char *WeakRefDirective;            // Defaults to NULL.
285 
286     /// WeakDefDirective - This directive, if non-null, is used to declare a
287     /// global as being a weak defined symbol.
288     const char *WeakDefDirective;            // Defaults to NULL.
289 
290     /// LinkOnceDirective - This directive, if non-null is used to declare a
291     /// global as being a weak defined symbol.  This is used on cygwin/mingw.
292     const char *LinkOnceDirective;           // Defaults to NULL.
293 
294     /// HiddenVisibilityAttr - This attribute, if not MCSA_Invalid, is used to
295     /// declare a symbol as having hidden visibility.
296     MCSymbolAttr HiddenVisibilityAttr;       // Defaults to MCSA_Hidden.
297 
298     /// HiddenDeclarationVisibilityAttr - This attribute, if not MCSA_Invalid,
299     /// is used to declare an undefined symbol as having hidden visibility.
300     MCSymbolAttr HiddenDeclarationVisibilityAttr;   // Defaults to MCSA_Hidden.
301 
302 
303     /// ProtectedVisibilityAttr - This attribute, if not MCSA_Invalid, is used
304     /// to declare a symbol as having protected visibility.
305     MCSymbolAttr ProtectedVisibilityAttr;    // Defaults to MCSA_Protected
306 
307     //===--- Dwarf Emission Directives -----------------------------------===//
308 
309     /// HasLEB128 - True if target asm supports leb128 directives.
310     bool HasLEB128;                          // Defaults to false.
311 
312     /// SupportsDebugInformation - True if target supports emission of debugging
313     /// information.
314     bool SupportsDebugInformation;           // Defaults to false.
315 
316     /// SupportsExceptionHandling - True if target supports exception handling.
317     ExceptionHandling::ExceptionsType ExceptionsType; // Defaults to None
318 
319     /// DwarfUsesInlineInfoSection - True if DwarfDebugInlineSection is used to
320     /// encode inline subroutine information.
321     bool DwarfUsesInlineInfoSection;         // Defaults to false.
322 
323     /// DwarfSectionOffsetDirective - Special section offset directive.
324     const char* DwarfSectionOffsetDirective; // Defaults to NULL
325 
326     /// DwarfUsesRelocationsAcrossSections - True if Dwarf2 output generally
327     /// uses relocations for references to other .debug_* sections.
328     bool DwarfUsesRelocationsAcrossSections;
329 
330     /// DwarfRegNumForCFI - True if dwarf register numbers are printed
331     /// instead of symbolic register names in .cfi_* directives.
332     bool DwarfRegNumForCFI;  // Defaults to false;
333 
334     //===--- Prologue State ----------------------------------------------===//
335 
336     std::vector<MachineMove> InitialFrameState;
337 
338   public:
339     explicit MCAsmInfo();
340     virtual ~MCAsmInfo();
341 
342     // FIXME: move these methods to DwarfPrinter when the JIT stops using them.
343     static unsigned getSLEB128Size(int Value);
344     static unsigned getULEB128Size(unsigned Value);
345 
346     /// getPointerSize - Get the pointer size in bytes.
getPointerSize()347     unsigned getPointerSize() const {
348       return PointerSize;
349     }
350 
351     /// getCalleeSaveStackSlotSize - Get the callee-saved register stack slot
352     /// size in bytes.
getCalleeSaveStackSlotSize()353     unsigned getCalleeSaveStackSlotSize() const {
354       return CalleeSaveStackSlotSize;
355     }
356 
357     /// isLittleEndian - True if the target is little endian.
isLittleEndian()358     bool isLittleEndian() const {
359       return IsLittleEndian;
360     }
361 
362     /// isStackGrowthDirectionUp - True if target stack grow up.
isStackGrowthDirectionUp()363     bool isStackGrowthDirectionUp() const {
364       return StackGrowsUp;
365     }
366 
hasSubsectionsViaSymbols()367     bool hasSubsectionsViaSymbols() const { return HasSubsectionsViaSymbols; }
368 
369     // Data directive accessors.
370     //
371     const char *getData8bitsDirective(unsigned AS = 0) const {
372       return AS == 0 ? Data8bitsDirective : getDataASDirective(8, AS);
373     }
374     const char *getData16bitsDirective(unsigned AS = 0) const {
375       return AS == 0 ? Data16bitsDirective : getDataASDirective(16, AS);
376     }
377     const char *getData32bitsDirective(unsigned AS = 0) const {
378       return AS == 0 ? Data32bitsDirective : getDataASDirective(32, AS);
379     }
380     const char *getData64bitsDirective(unsigned AS = 0) const {
381       return AS == 0 ? Data64bitsDirective : getDataASDirective(64, AS);
382     }
getGPRel64Directive()383     const char *getGPRel64Directive() const { return GPRel64Directive; }
getGPRel32Directive()384     const char *getGPRel32Directive() const { return GPRel32Directive; }
385 
386     /// getNonexecutableStackSection - Targets can implement this method to
387     /// specify a section to switch to if the translation unit doesn't have any
388     /// trampolines that require an executable stack.
getNonexecutableStackSection(MCContext & Ctx)389     virtual const MCSection *getNonexecutableStackSection(MCContext &Ctx) const{
390       return 0;
391     }
392 
393     virtual const MCExpr *
394     getExprForPersonalitySymbol(const MCSymbol *Sym,
395                                 unsigned Encoding,
396                                 MCStreamer &Streamer) const;
397 
398     const MCExpr *
399     getExprForFDESymbol(const MCSymbol *Sym,
400                         unsigned Encoding,
401                         MCStreamer &Streamer) const;
402 
usesSunStyleELFSectionSwitchSyntax()403     bool usesSunStyleELFSectionSwitchSyntax() const {
404       return SunStyleELFSectionSwitchSyntax;
405     }
406 
usesELFSectionDirectiveForBSS()407     bool usesELFSectionDirectiveForBSS() const {
408       return UsesELFSectionDirectiveForBSS;
409     }
410 
hasMicrosoftFastStdCallMangling()411     bool hasMicrosoftFastStdCallMangling() const {
412       return HasMicrosoftFastStdCallMangling;
413     }
414 
415     // Accessors.
416     //
hasMachoZeroFillDirective()417     bool hasMachoZeroFillDirective() const { return HasMachoZeroFillDirective; }
hasMachoTBSSDirective()418     bool hasMachoTBSSDirective() const { return HasMachoTBSSDirective; }
hasStaticCtorDtorReferenceInStaticMode()419     bool hasStaticCtorDtorReferenceInStaticMode() const {
420       return HasStaticCtorDtorReferenceInStaticMode;
421     }
getLinkerRequiresNonEmptyDwarfLines()422     bool getLinkerRequiresNonEmptyDwarfLines() const {
423       return LinkerRequiresNonEmptyDwarfLines;
424     }
getMaxInstLength()425     unsigned getMaxInstLength() const {
426       return MaxInstLength;
427     }
getPCSymbol()428     const char *getPCSymbol() const {
429       return PCSymbol;
430     }
getSeparatorString()431     const char *getSeparatorString() const {
432       return SeparatorString;
433     }
getCommentColumn()434     unsigned getCommentColumn() const {
435       return CommentColumn;
436     }
getCommentString()437     const char *getCommentString() const {
438       return CommentString;
439     }
getLabelSuffix()440     const char *getLabelSuffix() const {
441       return LabelSuffix;
442     }
443 
getDebugLabelSuffix()444     const char *getDebugLabelSuffix() const {
445       return DebugLabelSuffix;
446     }
447 
getGlobalPrefix()448     const char *getGlobalPrefix() const {
449       return GlobalPrefix;
450     }
getPrivateGlobalPrefix()451     const char *getPrivateGlobalPrefix() const {
452       return PrivateGlobalPrefix;
453     }
getLinkerPrivateGlobalPrefix()454     const char *getLinkerPrivateGlobalPrefix() const {
455       return LinkerPrivateGlobalPrefix;
456     }
getInlineAsmStart()457     const char *getInlineAsmStart() const {
458       return InlineAsmStart;
459     }
getInlineAsmEnd()460     const char *getInlineAsmEnd() const {
461       return InlineAsmEnd;
462     }
getCode16Directive()463     const char *getCode16Directive() const {
464       return Code16Directive;
465     }
getCode32Directive()466     const char *getCode32Directive() const {
467       return Code32Directive;
468     }
getCode64Directive()469     const char *getCode64Directive() const {
470       return Code64Directive;
471     }
getAssemblerDialect()472     unsigned getAssemblerDialect() const {
473       return AssemblerDialect;
474     }
doesAllowQuotesInName()475     bool doesAllowQuotesInName() const {
476       return AllowQuotesInName;
477     }
doesAllowNameToStartWithDigit()478     bool doesAllowNameToStartWithDigit() const {
479       return AllowNameToStartWithDigit;
480     }
doesAllowPeriodsInName()481     bool doesAllowPeriodsInName() const {
482       return AllowPeriodsInName;
483     }
doesAllowUTF8()484     bool doesAllowUTF8() const {
485       return AllowUTF8;
486     }
doesSupportDataRegionDirectives()487     bool doesSupportDataRegionDirectives() const {
488       return UseDataRegionDirectives;
489     }
getZeroDirective()490     const char *getZeroDirective() const {
491       return ZeroDirective;
492     }
getAsciiDirective()493     const char *getAsciiDirective() const {
494       return AsciiDirective;
495     }
getAscizDirective()496     const char *getAscizDirective() const {
497       return AscizDirective;
498     }
getAlignDirective()499     const char *getAlignDirective() const {
500       return AlignDirective;
501     }
getAlignmentIsInBytes()502     bool getAlignmentIsInBytes() const {
503       return AlignmentIsInBytes;
504     }
getTextAlignFillValue()505     unsigned getTextAlignFillValue() const {
506       return TextAlignFillValue;
507     }
getGlobalDirective()508     const char *getGlobalDirective() const {
509       return GlobalDirective;
510     }
getExternDirective()511     const char *getExternDirective() const {
512       return ExternDirective;
513     }
hasSetDirective()514     bool hasSetDirective() const { return HasSetDirective; }
hasAggressiveSymbolFolding()515     bool hasAggressiveSymbolFolding() const {
516       return HasAggressiveSymbolFolding;
517     }
getCOMMDirectiveAlignmentIsInBytes()518     bool getCOMMDirectiveAlignmentIsInBytes() const {
519       return COMMDirectiveAlignmentIsInBytes;
520     }
getLCOMMDirectiveAlignmentType()521     LCOMM::LCOMMType getLCOMMDirectiveAlignmentType() const {
522       return LCOMMDirectiveAlignmentType;
523     }
hasDotTypeDotSizeDirective()524     bool hasDotTypeDotSizeDirective() const {return HasDotTypeDotSizeDirective;}
hasSingleParameterDotFile()525     bool hasSingleParameterDotFile() const { return HasSingleParameterDotFile; }
hasNoDeadStrip()526     bool hasNoDeadStrip() const { return HasNoDeadStrip; }
hasSymbolResolver()527     bool hasSymbolResolver() const { return HasSymbolResolver; }
getWeakRefDirective()528     const char *getWeakRefDirective() const { return WeakRefDirective; }
getWeakDefDirective()529     const char *getWeakDefDirective() const { return WeakDefDirective; }
getLinkOnceDirective()530     const char *getLinkOnceDirective() const { return LinkOnceDirective; }
531 
getHiddenVisibilityAttr()532     MCSymbolAttr getHiddenVisibilityAttr() const { return HiddenVisibilityAttr;}
getHiddenDeclarationVisibilityAttr()533     MCSymbolAttr getHiddenDeclarationVisibilityAttr() const {
534       return HiddenDeclarationVisibilityAttr;
535     }
getProtectedVisibilityAttr()536     MCSymbolAttr getProtectedVisibilityAttr() const {
537       return ProtectedVisibilityAttr;
538     }
hasLEB128()539     bool hasLEB128() const {
540       return HasLEB128;
541     }
doesSupportDebugInformation()542     bool doesSupportDebugInformation() const {
543       return SupportsDebugInformation;
544     }
doesSupportExceptionHandling()545     bool doesSupportExceptionHandling() const {
546       return ExceptionsType != ExceptionHandling::None;
547     }
getExceptionHandlingType()548     ExceptionHandling::ExceptionsType getExceptionHandlingType() const {
549       return ExceptionsType;
550     }
isExceptionHandlingDwarf()551     bool isExceptionHandlingDwarf() const {
552       return
553         (ExceptionsType == ExceptionHandling::DwarfCFI ||
554          ExceptionsType == ExceptionHandling::ARM ||
555          ExceptionsType == ExceptionHandling::Win64);
556     }
doesDwarfUseInlineInfoSection()557     bool doesDwarfUseInlineInfoSection() const {
558       return DwarfUsesInlineInfoSection;
559     }
getDwarfSectionOffsetDirective()560     const char *getDwarfSectionOffsetDirective() const {
561       return DwarfSectionOffsetDirective;
562     }
doesDwarfUseRelocationsAcrossSections()563     bool doesDwarfUseRelocationsAcrossSections() const {
564       return DwarfUsesRelocationsAcrossSections;
565     }
useDwarfRegNumForCFI()566     bool useDwarfRegNumForCFI() const {
567       return DwarfRegNumForCFI;
568     }
569 
addInitialFrameState(MCSymbol * label,const MachineLocation & D,const MachineLocation & S)570     void addInitialFrameState(MCSymbol *label, const MachineLocation &D,
571                               const MachineLocation &S) {
572       InitialFrameState.push_back(MachineMove(label, D, S));
573     }
getInitialFrameState()574     const std::vector<MachineMove> &getInitialFrameState() const {
575       return InitialFrameState;
576     }
577   };
578 }
579 
580 #endif
581