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      1 //===- llvm/TableGen/Record.h - Classes for Table Records -------*- 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 defines the main TableGen data structures, including the TableGen
     11 // types, values, and high-level data structures.
     12 //
     13 //===----------------------------------------------------------------------===//
     14 
     15 #ifndef LLVM_TABLEGEN_RECORD_H
     16 #define LLVM_TABLEGEN_RECORD_H
     17 
     18 #include "llvm/ADT/ArrayRef.h"
     19 #include "llvm/ADT/FoldingSet.h"
     20 #include "llvm/Support/Allocator.h"
     21 #include "llvm/Support/Casting.h"
     22 #include "llvm/Support/DataTypes.h"
     23 #include "llvm/Support/ErrorHandling.h"
     24 #include "llvm/Support/SourceMgr.h"
     25 #include "llvm/Support/raw_ostream.h"
     26 #include <map>
     27 
     28 namespace llvm {
     29 class raw_ostream;
     30 
     31 // RecTy subclasses.
     32 class BitRecTy;
     33 class BitsRecTy;
     34 class IntRecTy;
     35 class StringRecTy;
     36 class ListRecTy;
     37 class DagRecTy;
     38 class RecordRecTy;
     39 
     40 // Init subclasses.
     41 class Init;
     42 class UnsetInit;
     43 class BitInit;
     44 class BitsInit;
     45 class IntInit;
     46 class StringInit;
     47 class ListInit;
     48 class UnOpInit;
     49 class BinOpInit;
     50 class TernOpInit;
     51 class DefInit;
     52 class DagInit;
     53 class TypedInit;
     54 class VarInit;
     55 class FieldInit;
     56 class VarBitInit;
     57 class VarListElementInit;
     58 
     59 // Other classes.
     60 class Record;
     61 class RecordVal;
     62 struct MultiClass;
     63 class RecordKeeper;
     64 
     65 //===----------------------------------------------------------------------===//
     66 //  Type Classes
     67 //===----------------------------------------------------------------------===//
     68 
     69 class RecTy {
     70 public:
     71   /// \brief Subclass discriminator (for dyn_cast<> et al.)
     72   enum RecTyKind {
     73     BitRecTyKind,
     74     BitsRecTyKind,
     75     IntRecTyKind,
     76     StringRecTyKind,
     77     ListRecTyKind,
     78     DagRecTyKind,
     79     RecordRecTyKind
     80   };
     81 
     82 private:
     83   RecTyKind Kind;
     84   ListRecTy *ListTy;
     85   virtual void anchor();
     86 
     87 public:
     88   RecTyKind getRecTyKind() const { return Kind; }
     89 
     90   RecTy(RecTyKind K) : Kind(K), ListTy(nullptr) {}
     91   virtual ~RecTy() {}
     92 
     93   virtual std::string getAsString() const = 0;
     94   void print(raw_ostream &OS) const { OS << getAsString(); }
     95   void dump() const;
     96 
     97   /// typeIsConvertibleTo - Return true if all values of 'this' type can be
     98   /// converted to the specified type.
     99   virtual bool typeIsConvertibleTo(const RecTy *RHS) const = 0;
    100 
    101   /// getListTy - Returns the type representing list<this>.
    102   ListRecTy *getListTy();
    103 
    104 public:   // These methods should only be called from subclasses of Init
    105   virtual Init *convertValue( UnsetInit *UI) { return nullptr; }
    106   virtual Init *convertValue(   BitInit *BI) { return nullptr; }
    107   virtual Init *convertValue(  BitsInit *BI) { return nullptr; }
    108   virtual Init *convertValue(   IntInit *II) { return nullptr; }
    109   virtual Init *convertValue(StringInit *SI) { return nullptr; }
    110   virtual Init *convertValue(  ListInit *LI) { return nullptr; }
    111   virtual Init *convertValue( UnOpInit *UI) {
    112     return convertValue((TypedInit*)UI);
    113   }
    114   virtual Init *convertValue( BinOpInit *UI) {
    115     return convertValue((TypedInit*)UI);
    116   }
    117   virtual Init *convertValue( TernOpInit *UI) {
    118     return convertValue((TypedInit*)UI);
    119   }
    120   virtual Init *convertValue(VarBitInit *VB) { return nullptr; }
    121   virtual Init *convertValue(   DefInit *DI) { return nullptr; }
    122   virtual Init *convertValue(   DagInit *DI) { return nullptr; }
    123   virtual Init *convertValue( TypedInit *TI) { return nullptr; }
    124   virtual Init *convertValue(   VarInit *VI) {
    125     return convertValue((TypedInit*)VI);
    126   }
    127   virtual Init *convertValue( FieldInit *FI) {
    128     return convertValue((TypedInit*)FI);
    129   }
    130 
    131 public:
    132   virtual bool baseClassOf(const RecTy*) const;
    133 };
    134 
    135 inline raw_ostream &operator<<(raw_ostream &OS, const RecTy &Ty) {
    136   Ty.print(OS);
    137   return OS;
    138 }
    139 
    140 /// BitRecTy - 'bit' - Represent a single bit
    141 ///
    142 class BitRecTy : public RecTy {
    143   static BitRecTy Shared;
    144   BitRecTy() : RecTy(BitRecTyKind) {}
    145 
    146 public:
    147   static bool classof(const RecTy *RT) {
    148     return RT->getRecTyKind() == BitRecTyKind;
    149   }
    150 
    151   static BitRecTy *get() { return &Shared; }
    152 
    153   Init *convertValue( UnsetInit *UI) override { return (Init*)UI; }
    154   Init *convertValue(   BitInit *BI) override { return (Init*)BI; }
    155   Init *convertValue(  BitsInit *BI) override;
    156   Init *convertValue(   IntInit *II) override;
    157   Init *convertValue(StringInit *SI) override { return nullptr; }
    158   Init *convertValue(  ListInit *LI) override { return nullptr; }
    159   Init *convertValue(VarBitInit *VB) override { return (Init*)VB; }
    160   Init *convertValue(   DefInit *DI) override { return nullptr; }
    161   Init *convertValue(   DagInit *DI) override { return nullptr; }
    162   Init *convertValue( UnOpInit *UI) override { return RecTy::convertValue(UI);}
    163   Init *convertValue( BinOpInit *UI) override { return RecTy::convertValue(UI);}
    164   Init *convertValue( TernOpInit *UI) override {return RecTy::convertValue(UI);}
    165   Init *convertValue( TypedInit *TI) override;
    166   Init *convertValue(   VarInit *VI) override { return RecTy::convertValue(VI);}
    167   Init *convertValue( FieldInit *FI) override { return RecTy::convertValue(FI);}
    168 
    169   std::string getAsString() const override { return "bit"; }
    170 
    171   bool typeIsConvertibleTo(const RecTy *RHS) const override {
    172     return RHS->baseClassOf(this);
    173   }
    174   bool baseClassOf(const RecTy*) const override;
    175 };
    176 
    177 /// BitsRecTy - 'bits<n>' - Represent a fixed number of bits
    178 ///
    179 class BitsRecTy : public RecTy {
    180   unsigned Size;
    181   explicit BitsRecTy(unsigned Sz) : RecTy(BitsRecTyKind), Size(Sz) {}
    182 
    183 public:
    184   static bool classof(const RecTy *RT) {
    185     return RT->getRecTyKind() == BitsRecTyKind;
    186   }
    187 
    188   static BitsRecTy *get(unsigned Sz);
    189 
    190   unsigned getNumBits() const { return Size; }
    191 
    192   Init *convertValue( UnsetInit *UI) override;
    193   Init *convertValue(   BitInit *UI) override;
    194   Init *convertValue(  BitsInit *BI) override;
    195   Init *convertValue(   IntInit *II) override;
    196   Init *convertValue(StringInit *SI) override { return nullptr; }
    197   Init *convertValue(  ListInit *LI) override { return nullptr; }
    198   Init *convertValue(VarBitInit *VB) override { return nullptr; }
    199   Init *convertValue(   DefInit *DI) override { return nullptr; }
    200   Init *convertValue(   DagInit *DI) override { return nullptr; }
    201   Init *convertValue(  UnOpInit *UI) override { return RecTy::convertValue(UI);}
    202   Init *convertValue( BinOpInit *UI) override { return RecTy::convertValue(UI);}
    203   Init *convertValue(TernOpInit *UI) override { return RecTy::convertValue(UI);}
    204   Init *convertValue( TypedInit *TI) override;
    205   Init *convertValue(   VarInit *VI) override { return RecTy::convertValue(VI);}
    206   Init *convertValue( FieldInit *FI) override { return RecTy::convertValue(FI);}
    207 
    208   std::string getAsString() const override;
    209 
    210   bool typeIsConvertibleTo(const RecTy *RHS) const override {
    211     return RHS->baseClassOf(this);
    212   }
    213   bool baseClassOf(const RecTy*) const override;
    214 };
    215 
    216 /// IntRecTy - 'int' - Represent an integer value of no particular size
    217 ///
    218 class IntRecTy : public RecTy {
    219   static IntRecTy Shared;
    220   IntRecTy() : RecTy(IntRecTyKind) {}
    221 
    222 public:
    223   static bool classof(const RecTy *RT) {
    224     return RT->getRecTyKind() == IntRecTyKind;
    225   }
    226 
    227   static IntRecTy *get() { return &Shared; }
    228 
    229   Init *convertValue( UnsetInit *UI) override { return (Init*)UI; }
    230   Init *convertValue(   BitInit *BI) override;
    231   Init *convertValue(  BitsInit *BI) override;
    232   Init *convertValue(   IntInit *II) override { return (Init*)II; }
    233   Init *convertValue(StringInit *SI) override { return nullptr; }
    234   Init *convertValue(  ListInit *LI) override { return nullptr; }
    235   Init *convertValue(VarBitInit *VB) override { return nullptr; }
    236   Init *convertValue(   DefInit *DI) override { return nullptr; }
    237   Init *convertValue(   DagInit *DI) override { return nullptr; }
    238   Init *convertValue( UnOpInit *UI)  override { return RecTy::convertValue(UI);}
    239   Init *convertValue( BinOpInit *UI) override { return RecTy::convertValue(UI);}
    240   Init *convertValue( TernOpInit *UI) override {return RecTy::convertValue(UI);}
    241   Init *convertValue( TypedInit *TI) override;
    242   Init *convertValue(   VarInit *VI) override { return RecTy::convertValue(VI);}
    243   Init *convertValue( FieldInit *FI) override { return RecTy::convertValue(FI);}
    244 
    245   std::string getAsString() const override { return "int"; }
    246 
    247   bool typeIsConvertibleTo(const RecTy *RHS) const override {
    248     return RHS->baseClassOf(this);
    249   }
    250 
    251   bool baseClassOf(const RecTy*) const override;
    252 };
    253 
    254 /// StringRecTy - 'string' - Represent an string value
    255 ///
    256 class StringRecTy : public RecTy {
    257   static StringRecTy Shared;
    258   StringRecTy() : RecTy(StringRecTyKind) {}
    259 
    260 public:
    261   static bool classof(const RecTy *RT) {
    262     return RT->getRecTyKind() == StringRecTyKind;
    263   }
    264 
    265   static StringRecTy *get() { return &Shared; }
    266 
    267   Init *convertValue( UnsetInit *UI) override { return (Init*)UI; }
    268   Init *convertValue(   BitInit *BI) override { return nullptr; }
    269   Init *convertValue(  BitsInit *BI) override { return nullptr; }
    270   Init *convertValue(   IntInit *II) override { return nullptr; }
    271   Init *convertValue(StringInit *SI) override { return (Init*)SI; }
    272   Init *convertValue(  ListInit *LI) override { return nullptr; }
    273   Init *convertValue( UnOpInit *BO) override;
    274   Init *convertValue( BinOpInit *BO) override;
    275   Init *convertValue( TernOpInit *BO) override {return RecTy::convertValue(BO);}
    276 
    277   Init *convertValue(VarBitInit *VB) override { return nullptr; }
    278   Init *convertValue(   DefInit *DI) override { return nullptr; }
    279   Init *convertValue(   DagInit *DI) override { return nullptr; }
    280   Init *convertValue( TypedInit *TI) override;
    281   Init *convertValue(   VarInit *VI) override { return RecTy::convertValue(VI);}
    282   Init *convertValue( FieldInit *FI) override { return RecTy::convertValue(FI);}
    283 
    284   std::string getAsString() const override { return "string"; }
    285 
    286   bool typeIsConvertibleTo(const RecTy *RHS) const override {
    287     return RHS->baseClassOf(this);
    288   }
    289 };
    290 
    291 /// ListRecTy - 'list<Ty>' - Represent a list of values, all of which must be of
    292 /// the specified type.
    293 ///
    294 class ListRecTy : public RecTy {
    295   RecTy *Ty;
    296   explicit ListRecTy(RecTy *T) : RecTy(ListRecTyKind), Ty(T) {}
    297   friend ListRecTy *RecTy::getListTy();
    298 
    299 public:
    300   static bool classof(const RecTy *RT) {
    301     return RT->getRecTyKind() == ListRecTyKind;
    302   }
    303 
    304   static ListRecTy *get(RecTy *T) { return T->getListTy(); }
    305   RecTy *getElementType() const { return Ty; }
    306 
    307   Init *convertValue( UnsetInit *UI) override { return (Init*)UI; }
    308   Init *convertValue(   BitInit *BI) override { return nullptr; }
    309   Init *convertValue(  BitsInit *BI) override { return nullptr; }
    310   Init *convertValue(   IntInit *II) override { return nullptr; }
    311   Init *convertValue(StringInit *SI) override { return nullptr; }
    312   Init *convertValue(  ListInit *LI) override;
    313   Init *convertValue(VarBitInit *VB) override { return nullptr; }
    314   Init *convertValue(   DefInit *DI) override { return nullptr; }
    315   Init *convertValue(   DagInit *DI) override { return nullptr; }
    316   Init *convertValue(  UnOpInit *UI) override { return RecTy::convertValue(UI);}
    317   Init *convertValue( BinOpInit *UI) override { return RecTy::convertValue(UI);}
    318   Init *convertValue(TernOpInit *UI) override { return RecTy::convertValue(UI);}
    319   Init *convertValue( TypedInit *TI) override;
    320   Init *convertValue(   VarInit *VI) override { return RecTy::convertValue(VI);}
    321   Init *convertValue( FieldInit *FI) override { return RecTy::convertValue(FI);}
    322 
    323   std::string getAsString() const override;
    324 
    325   bool typeIsConvertibleTo(const RecTy *RHS) const override {
    326     return RHS->baseClassOf(this);
    327   }
    328 
    329   bool baseClassOf(const RecTy*) const override;
    330 };
    331 
    332 /// DagRecTy - 'dag' - Represent a dag fragment
    333 ///
    334 class DagRecTy : public RecTy {
    335   static DagRecTy Shared;
    336   DagRecTy() : RecTy(DagRecTyKind) {}
    337 
    338 public:
    339   static bool classof(const RecTy *RT) {
    340     return RT->getRecTyKind() == DagRecTyKind;
    341   }
    342 
    343   static DagRecTy *get() { return &Shared; }
    344 
    345   Init *convertValue( UnsetInit *UI) override { return (Init*)UI; }
    346   Init *convertValue(   BitInit *BI) override { return nullptr; }
    347   Init *convertValue(  BitsInit *BI) override { return nullptr; }
    348   Init *convertValue(   IntInit *II) override { return nullptr; }
    349   Init *convertValue(StringInit *SI) override { return nullptr; }
    350   Init *convertValue(  ListInit *LI) override { return nullptr; }
    351   Init *convertValue(VarBitInit *VB) override { return nullptr; }
    352   Init *convertValue(   DefInit *DI) override { return nullptr; }
    353   Init *convertValue( UnOpInit *BO) override;
    354   Init *convertValue( BinOpInit *BO) override;
    355   Init *convertValue( TernOpInit *BO) override {return RecTy::convertValue(BO);}
    356   Init *convertValue(   DagInit *CI) override { return (Init*)CI; }
    357   Init *convertValue( TypedInit *TI) override;
    358   Init *convertValue(   VarInit *VI) override { return RecTy::convertValue(VI);}
    359   Init *convertValue( FieldInit *FI) override { return RecTy::convertValue(FI);}
    360 
    361   std::string getAsString() const override { return "dag"; }
    362 
    363   bool typeIsConvertibleTo(const RecTy *RHS) const override {
    364     return RHS->baseClassOf(this);
    365   }
    366 };
    367 
    368 /// RecordRecTy - '[classname]' - Represent an instance of a class, such as:
    369 /// (R32 X = EAX).
    370 ///
    371 class RecordRecTy : public RecTy {
    372   Record *Rec;
    373   explicit RecordRecTy(Record *R) : RecTy(RecordRecTyKind), Rec(R) {}
    374   friend class Record;
    375 
    376 public:
    377   static bool classof(const RecTy *RT) {
    378     return RT->getRecTyKind() == RecordRecTyKind;
    379   }
    380 
    381   static RecordRecTy *get(Record *R);
    382 
    383   Record *getRecord() const { return Rec; }
    384 
    385   Init *convertValue( UnsetInit *UI) override { return (Init*)UI; }
    386   Init *convertValue(   BitInit *BI) override { return nullptr; }
    387   Init *convertValue(  BitsInit *BI) override { return nullptr; }
    388   Init *convertValue(   IntInit *II) override { return nullptr; }
    389   Init *convertValue(StringInit *SI) override { return nullptr; }
    390   Init *convertValue(  ListInit *LI) override { return nullptr; }
    391   Init *convertValue(VarBitInit *VB) override { return nullptr; }
    392   Init *convertValue( UnOpInit *UI) override { return RecTy::convertValue(UI);}
    393   Init *convertValue( BinOpInit *UI) override { return RecTy::convertValue(UI);}
    394   Init *convertValue( TernOpInit *UI) override {return RecTy::convertValue(UI);}
    395   Init *convertValue(   DefInit *DI) override;
    396   Init *convertValue(   DagInit *DI) override { return nullptr; }
    397   Init *convertValue( TypedInit *VI) override;
    398   Init *convertValue(   VarInit *VI) override { return RecTy::convertValue(VI);}
    399   Init *convertValue( FieldInit *FI) override { return RecTy::convertValue(FI);}
    400 
    401   std::string getAsString() const override;
    402 
    403   bool typeIsConvertibleTo(const RecTy *RHS) const override {
    404     return RHS->baseClassOf(this);
    405   }
    406   bool baseClassOf(const RecTy*) const override;
    407 };
    408 
    409 /// resolveTypes - Find a common type that T1 and T2 convert to.
    410 /// Return 0 if no such type exists.
    411 ///
    412 RecTy *resolveTypes(RecTy *T1, RecTy *T2);
    413 
    414 //===----------------------------------------------------------------------===//
    415 //  Initializer Classes
    416 //===----------------------------------------------------------------------===//
    417 
    418 class Init {
    419 protected:
    420   /// \brief Discriminator enum (for isa<>, dyn_cast<>, et al.)
    421   ///
    422   /// This enum is laid out by a preorder traversal of the inheritance
    423   /// hierarchy, and does not contain an entry for abstract classes, as per
    424   /// the recommendation in docs/HowToSetUpLLVMStyleRTTI.rst.
    425   ///
    426   /// We also explicitly include "first" and "last" values for each
    427   /// interior node of the inheritance tree, to make it easier to read the
    428   /// corresponding classof().
    429   ///
    430   /// We could pack these a bit tighter by not having the IK_FirstXXXInit
    431   /// and IK_LastXXXInit be their own values, but that would degrade
    432   /// readability for really no benefit.
    433   enum InitKind {
    434     IK_BitInit,
    435     IK_FirstTypedInit,
    436     IK_BitsInit,
    437     IK_DagInit,
    438     IK_DefInit,
    439     IK_FieldInit,
    440     IK_IntInit,
    441     IK_ListInit,
    442     IK_FirstOpInit,
    443     IK_BinOpInit,
    444     IK_TernOpInit,
    445     IK_UnOpInit,
    446     IK_LastOpInit,
    447     IK_StringInit,
    448     IK_VarInit,
    449     IK_VarListElementInit,
    450     IK_LastTypedInit,
    451     IK_UnsetInit,
    452     IK_VarBitInit
    453   };
    454 
    455 private:
    456   const InitKind Kind;
    457   Init(const Init &) = delete;
    458   Init &operator=(const Init &) = delete;
    459   virtual void anchor();
    460 
    461 public:
    462   InitKind getKind() const { return Kind; }
    463 
    464 protected:
    465   explicit Init(InitKind K) : Kind(K) {}
    466 
    467 public:
    468   virtual ~Init() {}
    469 
    470   /// isComplete - This virtual method should be overridden by values that may
    471   /// not be completely specified yet.
    472   virtual bool isComplete() const { return true; }
    473 
    474   /// print - Print out this value.
    475   void print(raw_ostream &OS) const { OS << getAsString(); }
    476 
    477   /// getAsString - Convert this value to a string form.
    478   virtual std::string getAsString() const = 0;
    479   /// getAsUnquotedString - Convert this value to a string form,
    480   /// without adding quote markers.  This primaruly affects
    481   /// StringInits where we will not surround the string value with
    482   /// quotes.
    483   virtual std::string getAsUnquotedString() const { return getAsString(); }
    484 
    485   /// dump - Debugging method that may be called through a debugger, just
    486   /// invokes print on stderr.
    487   void dump() const;
    488 
    489   /// convertInitializerTo - This virtual function is a simple call-back
    490   /// function that should be overridden to call the appropriate
    491   /// RecTy::convertValue method.
    492   ///
    493   virtual Init *convertInitializerTo(RecTy *Ty) const = 0;
    494 
    495   /// convertInitializerBitRange - This method is used to implement the bitrange
    496   /// selection operator.  Given an initializer, it selects the specified bits
    497   /// out, returning them as a new init of bits type.  If it is not legal to use
    498   /// the bit subscript operator on this initializer, return null.
    499   ///
    500   virtual Init *
    501   convertInitializerBitRange(const std::vector<unsigned> &Bits) const {
    502     return nullptr;
    503   }
    504 
    505   /// convertInitListSlice - This method is used to implement the list slice
    506   /// selection operator.  Given an initializer, it selects the specified list
    507   /// elements, returning them as a new init of list type.  If it is not legal
    508   /// to take a slice of this, return null.
    509   ///
    510   virtual Init *
    511   convertInitListSlice(const std::vector<unsigned> &Elements) const {
    512     return nullptr;
    513   }
    514 
    515   /// getFieldType - This method is used to implement the FieldInit class.
    516   /// Implementors of this method should return the type of the named field if
    517   /// they are of record type.
    518   ///
    519   virtual RecTy *getFieldType(const std::string &FieldName) const {
    520     return nullptr;
    521   }
    522 
    523   /// getFieldInit - This method complements getFieldType to return the
    524   /// initializer for the specified field.  If getFieldType returns non-null
    525   /// this method should return non-null, otherwise it returns null.
    526   ///
    527   virtual Init *getFieldInit(Record &R, const RecordVal *RV,
    528                              const std::string &FieldName) const {
    529     return nullptr;
    530   }
    531 
    532   /// resolveReferences - This method is used by classes that refer to other
    533   /// variables which may not be defined at the time the expression is formed.
    534   /// If a value is set for the variable later, this method will be called on
    535   /// users of the value to allow the value to propagate out.
    536   ///
    537   virtual Init *resolveReferences(Record &R, const RecordVal *RV) const {
    538     return const_cast<Init *>(this);
    539   }
    540 
    541   /// getBit - This method is used to return the initializer for the specified
    542   /// bit.
    543   virtual Init *getBit(unsigned Bit) const = 0;
    544 
    545   /// getBitVar - This method is used to retrieve the initializer for bit
    546   /// reference. For non-VarBitInit, it simply returns itself.
    547   virtual Init *getBitVar() const { return const_cast<Init*>(this); }
    548 
    549   /// getBitNum - This method is used to retrieve the bit number of a bit
    550   /// reference. For non-VarBitInit, it simply returns 0.
    551   virtual unsigned getBitNum() const { return 0; }
    552 };
    553 
    554 inline raw_ostream &operator<<(raw_ostream &OS, const Init &I) {
    555   I.print(OS); return OS;
    556 }
    557 
    558 /// TypedInit - This is the common super-class of types that have a specific,
    559 /// explicit, type.
    560 ///
    561 class TypedInit : public Init {
    562   RecTy *Ty;
    563 
    564   TypedInit(const TypedInit &Other) = delete;
    565   TypedInit &operator=(const TypedInit &Other) = delete;
    566 
    567 protected:
    568   explicit TypedInit(InitKind K, RecTy *T) : Init(K), Ty(T) {}
    569 
    570 public:
    571   static bool classof(const Init *I) {
    572     return I->getKind() >= IK_FirstTypedInit &&
    573            I->getKind() <= IK_LastTypedInit;
    574   }
    575   RecTy *getType() const { return Ty; }
    576 
    577   Init *
    578   convertInitializerBitRange(const std::vector<unsigned> &Bits) const override;
    579   Init *
    580   convertInitListSlice(const std::vector<unsigned> &Elements) const override;
    581 
    582   /// getFieldType - This method is used to implement the FieldInit class.
    583   /// Implementors of this method should return the type of the named field if
    584   /// they are of record type.
    585   ///
    586   RecTy *getFieldType(const std::string &FieldName) const override;
    587 
    588   /// resolveListElementReference - This method is used to implement
    589   /// VarListElementInit::resolveReferences.  If the list element is resolvable
    590   /// now, we return the resolved value, otherwise we return null.
    591   virtual Init *resolveListElementReference(Record &R, const RecordVal *RV,
    592                                             unsigned Elt) const = 0;
    593 };
    594 
    595 /// UnsetInit - ? - Represents an uninitialized value
    596 ///
    597 class UnsetInit : public Init {
    598   UnsetInit() : Init(IK_UnsetInit) {}
    599   UnsetInit(const UnsetInit &) = delete;
    600   UnsetInit &operator=(const UnsetInit &Other) = delete;
    601   void anchor() override;
    602 
    603 public:
    604   static bool classof(const Init *I) {
    605     return I->getKind() == IK_UnsetInit;
    606   }
    607   static UnsetInit *get();
    608 
    609   Init *convertInitializerTo(RecTy *Ty) const override {
    610     return Ty->convertValue(const_cast<UnsetInit *>(this));
    611   }
    612 
    613   Init *getBit(unsigned Bit) const override {
    614     return const_cast<UnsetInit*>(this);
    615   }
    616 
    617   bool isComplete() const override { return false; }
    618   std::string getAsString() const override { return "?"; }
    619 };
    620 
    621 /// BitInit - true/false - Represent a concrete initializer for a bit.
    622 ///
    623 class BitInit : public Init {
    624   bool Value;
    625 
    626   explicit BitInit(bool V) : Init(IK_BitInit), Value(V) {}
    627   BitInit(const BitInit &Other) = delete;
    628   BitInit &operator=(BitInit &Other) = delete;
    629   void anchor() override;
    630 
    631 public:
    632   static bool classof(const Init *I) {
    633     return I->getKind() == IK_BitInit;
    634   }
    635   static BitInit *get(bool V);
    636 
    637   bool getValue() const { return Value; }
    638 
    639   Init *convertInitializerTo(RecTy *Ty) const override {
    640     return Ty->convertValue(const_cast<BitInit *>(this));
    641   }
    642 
    643   Init *getBit(unsigned Bit) const override {
    644     assert(Bit < 1 && "Bit index out of range!");
    645     return const_cast<BitInit*>(this);
    646   }
    647 
    648   std::string getAsString() const override { return Value ? "1" : "0"; }
    649 };
    650 
    651 /// BitsInit - { a, b, c } - Represents an initializer for a BitsRecTy value.
    652 /// It contains a vector of bits, whose size is determined by the type.
    653 ///
    654 class BitsInit : public TypedInit, public FoldingSetNode {
    655   std::vector<Init*> Bits;
    656 
    657   BitsInit(ArrayRef<Init *> Range)
    658     : TypedInit(IK_BitsInit, BitsRecTy::get(Range.size())),
    659       Bits(Range.begin(), Range.end()) {}
    660 
    661   BitsInit(const BitsInit &Other) = delete;
    662   BitsInit &operator=(const BitsInit &Other) = delete;
    663 
    664 public:
    665   static bool classof(const Init *I) {
    666     return I->getKind() == IK_BitsInit;
    667   }
    668   static BitsInit *get(ArrayRef<Init *> Range);
    669 
    670   void Profile(FoldingSetNodeID &ID) const;
    671 
    672   unsigned getNumBits() const { return Bits.size(); }
    673 
    674   Init *convertInitializerTo(RecTy *Ty) const override {
    675     return Ty->convertValue(const_cast<BitsInit *>(this));
    676   }
    677   Init *
    678   convertInitializerBitRange(const std::vector<unsigned> &Bits) const override;
    679 
    680   bool isComplete() const override {
    681     for (unsigned i = 0; i != getNumBits(); ++i)
    682       if (!getBit(i)->isComplete()) return false;
    683     return true;
    684   }
    685   bool allInComplete() const {
    686     for (unsigned i = 0; i != getNumBits(); ++i)
    687       if (getBit(i)->isComplete()) return false;
    688     return true;
    689   }
    690   std::string getAsString() const override;
    691 
    692   /// resolveListElementReference - This method is used to implement
    693   /// VarListElementInit::resolveReferences.  If the list element is resolvable
    694   /// now, we return the resolved value, otherwise we return null.
    695   Init *resolveListElementReference(Record &R, const RecordVal *RV,
    696                                     unsigned Elt) const override {
    697     llvm_unreachable("Illegal element reference off bits<n>");
    698   }
    699 
    700   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
    701 
    702   Init *getBit(unsigned Bit) const override {
    703     assert(Bit < Bits.size() && "Bit index out of range!");
    704     return Bits[Bit];
    705   }
    706 };
    707 
    708 /// IntInit - 7 - Represent an initialization by a literal integer value.
    709 ///
    710 class IntInit : public TypedInit {
    711   int64_t Value;
    712 
    713   explicit IntInit(int64_t V)
    714     : TypedInit(IK_IntInit, IntRecTy::get()), Value(V) {}
    715 
    716   IntInit(const IntInit &Other) = delete;
    717   IntInit &operator=(const IntInit &Other) = delete;
    718 
    719 public:
    720   static bool classof(const Init *I) {
    721     return I->getKind() == IK_IntInit;
    722   }
    723   static IntInit *get(int64_t V);
    724 
    725   int64_t getValue() const { return Value; }
    726 
    727   Init *convertInitializerTo(RecTy *Ty) const override {
    728     return Ty->convertValue(const_cast<IntInit *>(this));
    729   }
    730   Init *
    731   convertInitializerBitRange(const std::vector<unsigned> &Bits) const override;
    732 
    733   std::string getAsString() const override;
    734 
    735   /// resolveListElementReference - This method is used to implement
    736   /// VarListElementInit::resolveReferences.  If the list element is resolvable
    737   /// now, we return the resolved value, otherwise we return null.
    738   Init *resolveListElementReference(Record &R, const RecordVal *RV,
    739                                     unsigned Elt) const override {
    740     llvm_unreachable("Illegal element reference off int");
    741   }
    742 
    743   Init *getBit(unsigned Bit) const override {
    744     return BitInit::get((Value & (1ULL << Bit)) != 0);
    745   }
    746 };
    747 
    748 /// StringInit - "foo" - Represent an initialization by a string value.
    749 ///
    750 class StringInit : public TypedInit {
    751   std::string Value;
    752 
    753   explicit StringInit(const std::string &V)
    754     : TypedInit(IK_StringInit, StringRecTy::get()), Value(V) {}
    755 
    756   StringInit(const StringInit &Other) = delete;
    757   StringInit &operator=(const StringInit &Other) = delete;
    758   void anchor() override;
    759 
    760 public:
    761   static bool classof(const Init *I) {
    762     return I->getKind() == IK_StringInit;
    763   }
    764   static StringInit *get(StringRef);
    765 
    766   const std::string &getValue() const { return Value; }
    767 
    768   Init *convertInitializerTo(RecTy *Ty) const override {
    769     return Ty->convertValue(const_cast<StringInit *>(this));
    770   }
    771 
    772   std::string getAsString() const override { return "\"" + Value + "\""; }
    773   std::string getAsUnquotedString() const override { return Value; }
    774 
    775   /// resolveListElementReference - This method is used to implement
    776   /// VarListElementInit::resolveReferences.  If the list element is resolvable
    777   /// now, we return the resolved value, otherwise we return null.
    778   Init *resolveListElementReference(Record &R, const RecordVal *RV,
    779                                     unsigned Elt) const override {
    780     llvm_unreachable("Illegal element reference off string");
    781   }
    782 
    783   Init *getBit(unsigned Bit) const override {
    784     llvm_unreachable("Illegal bit reference off string");
    785   }
    786 };
    787 
    788 /// ListInit - [AL, AH, CL] - Represent a list of defs
    789 ///
    790 class ListInit : public TypedInit, public FoldingSetNode {
    791   std::vector<Init*> Values;
    792 
    793 public:
    794   typedef std::vector<Init*>::const_iterator const_iterator;
    795 
    796 private:
    797   explicit ListInit(ArrayRef<Init *> Range, RecTy *EltTy)
    798     : TypedInit(IK_ListInit, ListRecTy::get(EltTy)),
    799       Values(Range.begin(), Range.end()) {}
    800 
    801   ListInit(const ListInit &Other) = delete;
    802   ListInit &operator=(const ListInit &Other) = delete;
    803 
    804 public:
    805   static bool classof(const Init *I) {
    806     return I->getKind() == IK_ListInit;
    807   }
    808   static ListInit *get(ArrayRef<Init *> Range, RecTy *EltTy);
    809 
    810   void Profile(FoldingSetNodeID &ID) const;
    811 
    812   unsigned getSize() const { return Values.size(); }
    813   Init *getElement(unsigned i) const {
    814     assert(i < Values.size() && "List element index out of range!");
    815     return Values[i];
    816   }
    817 
    818   Record *getElementAsRecord(unsigned i) const;
    819 
    820   Init *
    821     convertInitListSlice(const std::vector<unsigned> &Elements) const override;
    822 
    823   Init *convertInitializerTo(RecTy *Ty) const override {
    824     return Ty->convertValue(const_cast<ListInit *>(this));
    825   }
    826 
    827   /// resolveReferences - This method is used by classes that refer to other
    828   /// variables which may not be defined at the time they expression is formed.
    829   /// If a value is set for the variable later, this method will be called on
    830   /// users of the value to allow the value to propagate out.
    831   ///
    832   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
    833 
    834   std::string getAsString() const override;
    835 
    836   ArrayRef<Init*> getValues() const { return Values; }
    837 
    838   inline const_iterator begin() const { return Values.begin(); }
    839   inline const_iterator end  () const { return Values.end();   }
    840 
    841   inline size_t         size () const { return Values.size();  }
    842   inline bool           empty() const { return Values.empty(); }
    843 
    844   /// resolveListElementReference - This method is used to implement
    845   /// VarListElementInit::resolveReferences.  If the list element is resolvable
    846   /// now, we return the resolved value, otherwise we return null.
    847   Init *resolveListElementReference(Record &R, const RecordVal *RV,
    848                                     unsigned Elt) const override;
    849 
    850   Init *getBit(unsigned Bit) const override {
    851     llvm_unreachable("Illegal bit reference off list");
    852   }
    853 };
    854 
    855 /// OpInit - Base class for operators
    856 ///
    857 class OpInit : public TypedInit {
    858   OpInit(const OpInit &Other) = delete;
    859   OpInit &operator=(OpInit &Other) = delete;
    860 
    861 protected:
    862   explicit OpInit(InitKind K, RecTy *Type) : TypedInit(K, Type) {}
    863 
    864 public:
    865   static bool classof(const Init *I) {
    866     return I->getKind() >= IK_FirstOpInit &&
    867            I->getKind() <= IK_LastOpInit;
    868   }
    869   // Clone - Clone this operator, replacing arguments with the new list
    870   virtual OpInit *clone(std::vector<Init *> &Operands) const = 0;
    871 
    872   virtual int getNumOperands() const = 0;
    873   virtual Init *getOperand(int i) const = 0;
    874 
    875   // Fold - If possible, fold this to a simpler init.  Return this if not
    876   // possible to fold.
    877   virtual Init *Fold(Record *CurRec, MultiClass *CurMultiClass) const = 0;
    878 
    879   Init *convertInitializerTo(RecTy *Ty) const override {
    880     return Ty->convertValue(const_cast<OpInit *>(this));
    881   }
    882 
    883   Init *resolveListElementReference(Record &R, const RecordVal *RV,
    884                                     unsigned Elt) const override;
    885 
    886   Init *getBit(unsigned Bit) const override;
    887 };
    888 
    889 /// UnOpInit - !op (X) - Transform an init.
    890 ///
    891 class UnOpInit : public OpInit {
    892 public:
    893   enum UnaryOp { CAST, HEAD, TAIL, EMPTY };
    894 
    895 private:
    896   UnaryOp Opc;
    897   Init *LHS;
    898 
    899   UnOpInit(UnaryOp opc, Init *lhs, RecTy *Type)
    900     : OpInit(IK_UnOpInit, Type), Opc(opc), LHS(lhs) {}
    901 
    902   UnOpInit(const UnOpInit &Other) = delete;
    903   UnOpInit &operator=(const UnOpInit &Other) = delete;
    904 
    905 public:
    906   static bool classof(const Init *I) {
    907     return I->getKind() == IK_UnOpInit;
    908   }
    909   static UnOpInit *get(UnaryOp opc, Init *lhs, RecTy *Type);
    910 
    911   // Clone - Clone this operator, replacing arguments with the new list
    912   OpInit *clone(std::vector<Init *> &Operands) const override {
    913     assert(Operands.size() == 1 &&
    914            "Wrong number of operands for unary operation");
    915     return UnOpInit::get(getOpcode(), *Operands.begin(), getType());
    916   }
    917 
    918   int getNumOperands() const override { return 1; }
    919   Init *getOperand(int i) const override {
    920     assert(i == 0 && "Invalid operand id for unary operator");
    921     return getOperand();
    922   }
    923 
    924   UnaryOp getOpcode() const { return Opc; }
    925   Init *getOperand() const { return LHS; }
    926 
    927   // Fold - If possible, fold this to a simpler init.  Return this if not
    928   // possible to fold.
    929   Init *Fold(Record *CurRec, MultiClass *CurMultiClass) const override;
    930 
    931   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
    932 
    933   std::string getAsString() const override;
    934 };
    935 
    936 /// BinOpInit - !op (X, Y) - Combine two inits.
    937 ///
    938 class BinOpInit : public OpInit {
    939 public:
    940   enum BinaryOp { ADD, AND, SHL, SRA, SRL, LISTCONCAT, STRCONCAT, CONCAT, EQ };
    941 
    942 private:
    943   BinaryOp Opc;
    944   Init *LHS, *RHS;
    945 
    946   BinOpInit(BinaryOp opc, Init *lhs, Init *rhs, RecTy *Type) :
    947       OpInit(IK_BinOpInit, Type), Opc(opc), LHS(lhs), RHS(rhs) {}
    948 
    949   BinOpInit(const BinOpInit &Other) = delete;
    950   BinOpInit &operator=(const BinOpInit &Other) = delete;
    951 
    952 public:
    953   static bool classof(const Init *I) {
    954     return I->getKind() == IK_BinOpInit;
    955   }
    956   static BinOpInit *get(BinaryOp opc, Init *lhs, Init *rhs,
    957                         RecTy *Type);
    958 
    959   // Clone - Clone this operator, replacing arguments with the new list
    960   OpInit *clone(std::vector<Init *> &Operands) const override {
    961     assert(Operands.size() == 2 &&
    962            "Wrong number of operands for binary operation");
    963     return BinOpInit::get(getOpcode(), Operands[0], Operands[1], getType());
    964   }
    965 
    966   int getNumOperands() const override { return 2; }
    967   Init *getOperand(int i) const override {
    968     assert((i == 0 || i == 1) && "Invalid operand id for binary operator");
    969     if (i == 0) {
    970       return getLHS();
    971     } else {
    972       return getRHS();
    973     }
    974   }
    975 
    976   BinaryOp getOpcode() const { return Opc; }
    977   Init *getLHS() const { return LHS; }
    978   Init *getRHS() const { return RHS; }
    979 
    980   // Fold - If possible, fold this to a simpler init.  Return this if not
    981   // possible to fold.
    982   Init *Fold(Record *CurRec, MultiClass *CurMultiClass) const override;
    983 
    984   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
    985 
    986   std::string getAsString() const override;
    987 };
    988 
    989 /// TernOpInit - !op (X, Y, Z) - Combine two inits.
    990 ///
    991 class TernOpInit : public OpInit {
    992 public:
    993   enum TernaryOp { SUBST, FOREACH, IF };
    994 
    995 private:
    996   TernaryOp Opc;
    997   Init *LHS, *MHS, *RHS;
    998 
    999   TernOpInit(TernaryOp opc, Init *lhs, Init *mhs, Init *rhs,
   1000              RecTy *Type) :
   1001       OpInit(IK_TernOpInit, Type), Opc(opc), LHS(lhs), MHS(mhs), RHS(rhs) {}
   1002 
   1003   TernOpInit(const TernOpInit &Other) = delete;
   1004   TernOpInit &operator=(const TernOpInit &Other) = delete;
   1005 
   1006 public:
   1007   static bool classof(const Init *I) {
   1008     return I->getKind() == IK_TernOpInit;
   1009   }
   1010   static TernOpInit *get(TernaryOp opc, Init *lhs,
   1011                          Init *mhs, Init *rhs,
   1012                          RecTy *Type);
   1013 
   1014   // Clone - Clone this operator, replacing arguments with the new list
   1015   OpInit *clone(std::vector<Init *> &Operands) const override {
   1016     assert(Operands.size() == 3 &&
   1017            "Wrong number of operands for ternary operation");
   1018     return TernOpInit::get(getOpcode(), Operands[0], Operands[1], Operands[2],
   1019                            getType());
   1020   }
   1021 
   1022   int getNumOperands() const override { return 3; }
   1023   Init *getOperand(int i) const override {
   1024     assert((i == 0 || i == 1 || i == 2) &&
   1025            "Invalid operand id for ternary operator");
   1026     if (i == 0) {
   1027       return getLHS();
   1028     } else if (i == 1) {
   1029       return getMHS();
   1030     } else {
   1031       return getRHS();
   1032     }
   1033   }
   1034 
   1035   TernaryOp getOpcode() const { return Opc; }
   1036   Init *getLHS() const { return LHS; }
   1037   Init *getMHS() const { return MHS; }
   1038   Init *getRHS() const { return RHS; }
   1039 
   1040   // Fold - If possible, fold this to a simpler init.  Return this if not
   1041   // possible to fold.
   1042   Init *Fold(Record *CurRec, MultiClass *CurMultiClass) const override;
   1043 
   1044   bool isComplete() const override { return false; }
   1045 
   1046   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
   1047 
   1048   std::string getAsString() const override;
   1049 };
   1050 
   1051 /// VarInit - 'Opcode' - Represent a reference to an entire variable object.
   1052 ///
   1053 class VarInit : public TypedInit {
   1054   Init *VarName;
   1055 
   1056   explicit VarInit(const std::string &VN, RecTy *T)
   1057       : TypedInit(IK_VarInit, T), VarName(StringInit::get(VN)) {}
   1058   explicit VarInit(Init *VN, RecTy *T)
   1059       : TypedInit(IK_VarInit, T), VarName(VN) {}
   1060 
   1061   VarInit(const VarInit &Other) = delete;
   1062   VarInit &operator=(const VarInit &Other) = delete;
   1063 
   1064 public:
   1065   static bool classof(const Init *I) {
   1066     return I->getKind() == IK_VarInit;
   1067   }
   1068   static VarInit *get(const std::string &VN, RecTy *T);
   1069   static VarInit *get(Init *VN, RecTy *T);
   1070 
   1071   Init *convertInitializerTo(RecTy *Ty) const override {
   1072     return Ty->convertValue(const_cast<VarInit *>(this));
   1073   }
   1074 
   1075   const std::string &getName() const;
   1076   Init *getNameInit() const { return VarName; }
   1077   std::string getNameInitAsString() const {
   1078     return getNameInit()->getAsUnquotedString();
   1079   }
   1080 
   1081   Init *resolveListElementReference(Record &R, const RecordVal *RV,
   1082                                     unsigned Elt) const override;
   1083 
   1084   RecTy *getFieldType(const std::string &FieldName) const override;
   1085   Init *getFieldInit(Record &R, const RecordVal *RV,
   1086                      const std::string &FieldName) const override;
   1087 
   1088   /// resolveReferences - This method is used by classes that refer to other
   1089   /// variables which may not be defined at the time they expression is formed.
   1090   /// If a value is set for the variable later, this method will be called on
   1091   /// users of the value to allow the value to propagate out.
   1092   ///
   1093   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
   1094 
   1095   Init *getBit(unsigned Bit) const override;
   1096 
   1097   std::string getAsString() const override { return getName(); }
   1098 };
   1099 
   1100 /// VarBitInit - Opcode{0} - Represent access to one bit of a variable or field.
   1101 ///
   1102 class VarBitInit : public Init {
   1103   TypedInit *TI;
   1104   unsigned Bit;
   1105 
   1106   VarBitInit(TypedInit *T, unsigned B) : Init(IK_VarBitInit), TI(T), Bit(B) {
   1107     assert(T->getType() &&
   1108            (isa<IntRecTy>(T->getType()) ||
   1109             (isa<BitsRecTy>(T->getType()) &&
   1110              cast<BitsRecTy>(T->getType())->getNumBits() > B)) &&
   1111            "Illegal VarBitInit expression!");
   1112   }
   1113 
   1114   VarBitInit(const VarBitInit &Other) = delete;
   1115   VarBitInit &operator=(const VarBitInit &Other) = delete;
   1116 
   1117 public:
   1118   static bool classof(const Init *I) {
   1119     return I->getKind() == IK_VarBitInit;
   1120   }
   1121   static VarBitInit *get(TypedInit *T, unsigned B);
   1122 
   1123   Init *convertInitializerTo(RecTy *Ty) const override {
   1124     return Ty->convertValue(const_cast<VarBitInit *>(this));
   1125   }
   1126 
   1127   Init *getBitVar() const override { return TI; }
   1128   unsigned getBitNum() const override { return Bit; }
   1129 
   1130   std::string getAsString() const override;
   1131   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
   1132 
   1133   Init *getBit(unsigned B) const override {
   1134     assert(B < 1 && "Bit index out of range!");
   1135     return const_cast<VarBitInit*>(this);
   1136   }
   1137 };
   1138 
   1139 /// VarListElementInit - List[4] - Represent access to one element of a var or
   1140 /// field.
   1141 class VarListElementInit : public TypedInit {
   1142   TypedInit *TI;
   1143   unsigned Element;
   1144 
   1145   VarListElementInit(TypedInit *T, unsigned E)
   1146       : TypedInit(IK_VarListElementInit,
   1147                   cast<ListRecTy>(T->getType())->getElementType()),
   1148         TI(T), Element(E) {
   1149     assert(T->getType() && isa<ListRecTy>(T->getType()) &&
   1150            "Illegal VarBitInit expression!");
   1151   }
   1152 
   1153   VarListElementInit(const VarListElementInit &Other) = delete;
   1154   void operator=(const VarListElementInit &Other) = delete;
   1155 
   1156 public:
   1157   static bool classof(const Init *I) {
   1158     return I->getKind() == IK_VarListElementInit;
   1159   }
   1160   static VarListElementInit *get(TypedInit *T, unsigned E);
   1161 
   1162   Init *convertInitializerTo(RecTy *Ty) const override {
   1163     return Ty->convertValue(const_cast<VarListElementInit *>(this));
   1164   }
   1165 
   1166   TypedInit *getVariable() const { return TI; }
   1167   unsigned getElementNum() const { return Element; }
   1168 
   1169   /// resolveListElementReference - This method is used to implement
   1170   /// VarListElementInit::resolveReferences.  If the list element is resolvable
   1171   /// now, we return the resolved value, otherwise we return null.
   1172   Init *resolveListElementReference(Record &R, const RecordVal *RV,
   1173                                     unsigned Elt) const override;
   1174 
   1175   std::string getAsString() const override;
   1176   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
   1177 
   1178   Init *getBit(unsigned Bit) const override;
   1179 };
   1180 
   1181 /// DefInit - AL - Represent a reference to a 'def' in the description
   1182 ///
   1183 class DefInit : public TypedInit {
   1184   Record *Def;
   1185 
   1186   DefInit(Record *D, RecordRecTy *T) : TypedInit(IK_DefInit, T), Def(D) {}
   1187   friend class Record;
   1188 
   1189   DefInit(const DefInit &Other) = delete;
   1190   DefInit &operator=(const DefInit &Other) = delete;
   1191 
   1192 public:
   1193   static bool classof(const Init *I) {
   1194     return I->getKind() == IK_DefInit;
   1195   }
   1196   static DefInit *get(Record*);
   1197 
   1198   Init *convertInitializerTo(RecTy *Ty) const override {
   1199     return Ty->convertValue(const_cast<DefInit *>(this));
   1200   }
   1201 
   1202   Record *getDef() const { return Def; }
   1203 
   1204   //virtual Init *convertInitializerBitRange(const std::vector<unsigned> &Bits);
   1205 
   1206   RecTy *getFieldType(const std::string &FieldName) const override;
   1207   Init *getFieldInit(Record &R, const RecordVal *RV,
   1208                      const std::string &FieldName) const override;
   1209 
   1210   std::string getAsString() const override;
   1211 
   1212   Init *getBit(unsigned Bit) const override {
   1213     llvm_unreachable("Illegal bit reference off def");
   1214   }
   1215 
   1216   /// resolveListElementReference - This method is used to implement
   1217   /// VarListElementInit::resolveReferences.  If the list element is resolvable
   1218   /// now, we return the resolved value, otherwise we return null.
   1219   Init *resolveListElementReference(Record &R, const RecordVal *RV,
   1220                                     unsigned Elt) const override {
   1221     llvm_unreachable("Illegal element reference off def");
   1222   }
   1223 };
   1224 
   1225 /// FieldInit - X.Y - Represent a reference to a subfield of a variable
   1226 ///
   1227 class FieldInit : public TypedInit {
   1228   Init *Rec;                // Record we are referring to
   1229   std::string FieldName;    // Field we are accessing
   1230 
   1231   FieldInit(Init *R, const std::string &FN)
   1232       : TypedInit(IK_FieldInit, R->getFieldType(FN)), Rec(R), FieldName(FN) {
   1233     assert(getType() && "FieldInit with non-record type!");
   1234   }
   1235 
   1236   FieldInit(const FieldInit &Other) = delete;
   1237   FieldInit &operator=(const FieldInit &Other) = delete;
   1238 
   1239 public:
   1240   static bool classof(const Init *I) {
   1241     return I->getKind() == IK_FieldInit;
   1242   }
   1243   static FieldInit *get(Init *R, const std::string &FN);
   1244   static FieldInit *get(Init *R, const Init *FN);
   1245 
   1246   Init *convertInitializerTo(RecTy *Ty) const override {
   1247     return Ty->convertValue(const_cast<FieldInit *>(this));
   1248   }
   1249 
   1250   Init *getBit(unsigned Bit) const override;
   1251 
   1252   Init *resolveListElementReference(Record &R, const RecordVal *RV,
   1253                                     unsigned Elt) const override;
   1254 
   1255   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
   1256 
   1257   std::string getAsString() const override {
   1258     return Rec->getAsString() + "." + FieldName;
   1259   }
   1260 };
   1261 
   1262 /// DagInit - (v a, b) - Represent a DAG tree value.  DAG inits are required
   1263 /// to have at least one value then a (possibly empty) list of arguments.  Each
   1264 /// argument can have a name associated with it.
   1265 ///
   1266 class DagInit : public TypedInit, public FoldingSetNode {
   1267   Init *Val;
   1268   std::string ValName;
   1269   std::vector<Init*> Args;
   1270   std::vector<std::string> ArgNames;
   1271 
   1272   DagInit(Init *V, const std::string &VN,
   1273           ArrayRef<Init *> ArgRange,
   1274           ArrayRef<std::string> NameRange)
   1275       : TypedInit(IK_DagInit, DagRecTy::get()), Val(V), ValName(VN),
   1276           Args(ArgRange.begin(), ArgRange.end()),
   1277           ArgNames(NameRange.begin(), NameRange.end()) {}
   1278 
   1279   DagInit(const DagInit &Other) = delete;
   1280   DagInit &operator=(const DagInit &Other) = delete;
   1281 
   1282 public:
   1283   static bool classof(const Init *I) {
   1284     return I->getKind() == IK_DagInit;
   1285   }
   1286   static DagInit *get(Init *V, const std::string &VN,
   1287                       ArrayRef<Init *> ArgRange,
   1288                       ArrayRef<std::string> NameRange);
   1289   static DagInit *get(Init *V, const std::string &VN,
   1290                       const std::vector<
   1291                         std::pair<Init*, std::string> > &args);
   1292 
   1293   void Profile(FoldingSetNodeID &ID) const;
   1294 
   1295   Init *convertInitializerTo(RecTy *Ty) const override {
   1296     return Ty->convertValue(const_cast<DagInit *>(this));
   1297   }
   1298 
   1299   Init *getOperator() const { return Val; }
   1300 
   1301   const std::string &getName() const { return ValName; }
   1302 
   1303   unsigned getNumArgs() const { return Args.size(); }
   1304   Init *getArg(unsigned Num) const {
   1305     assert(Num < Args.size() && "Arg number out of range!");
   1306     return Args[Num];
   1307   }
   1308   const std::string &getArgName(unsigned Num) const {
   1309     assert(Num < ArgNames.size() && "Arg number out of range!");
   1310     return ArgNames[Num];
   1311   }
   1312 
   1313   Init *resolveReferences(Record &R, const RecordVal *RV) const override;
   1314 
   1315   std::string getAsString() const override;
   1316 
   1317   typedef std::vector<Init*>::const_iterator       const_arg_iterator;
   1318   typedef std::vector<std::string>::const_iterator const_name_iterator;
   1319 
   1320   inline const_arg_iterator  arg_begin() const { return Args.begin(); }
   1321   inline const_arg_iterator  arg_end  () const { return Args.end();   }
   1322 
   1323   inline size_t              arg_size () const { return Args.size();  }
   1324   inline bool                arg_empty() const { return Args.empty(); }
   1325 
   1326   inline const_name_iterator name_begin() const { return ArgNames.begin(); }
   1327   inline const_name_iterator name_end  () const { return ArgNames.end();   }
   1328 
   1329   inline size_t              name_size () const { return ArgNames.size();  }
   1330   inline bool                name_empty() const { return ArgNames.empty(); }
   1331 
   1332   Init *getBit(unsigned Bit) const override {
   1333     llvm_unreachable("Illegal bit reference off dag");
   1334   }
   1335 
   1336   Init *resolveListElementReference(Record &R, const RecordVal *RV,
   1337                                     unsigned Elt) const override {
   1338     llvm_unreachable("Illegal element reference off dag");
   1339   }
   1340 };
   1341 
   1342 //===----------------------------------------------------------------------===//
   1343 //  High-Level Classes
   1344 //===----------------------------------------------------------------------===//
   1345 
   1346 class RecordVal {
   1347   Init *Name;
   1348   RecTy *Ty;
   1349   unsigned Prefix;
   1350   Init *Value;
   1351 
   1352 public:
   1353   RecordVal(Init *N, RecTy *T, unsigned P);
   1354   RecordVal(const std::string &N, RecTy *T, unsigned P);
   1355 
   1356   const std::string &getName() const;
   1357   const Init *getNameInit() const { return Name; }
   1358   std::string getNameInitAsString() const {
   1359     return getNameInit()->getAsUnquotedString();
   1360   }
   1361 
   1362   unsigned getPrefix() const { return Prefix; }
   1363   RecTy *getType() const { return Ty; }
   1364   Init *getValue() const { return Value; }
   1365 
   1366   bool setValue(Init *V) {
   1367     if (V) {
   1368       Value = V->convertInitializerTo(Ty);
   1369       return Value == nullptr;
   1370     }
   1371     Value = nullptr;
   1372     return false;
   1373   }
   1374 
   1375   void dump() const;
   1376   void print(raw_ostream &OS, bool PrintSem = true) const;
   1377 };
   1378 
   1379 inline raw_ostream &operator<<(raw_ostream &OS, const RecordVal &RV) {
   1380   RV.print(OS << "  ");
   1381   return OS;
   1382 }
   1383 
   1384 class Record {
   1385   static unsigned LastID;
   1386 
   1387   // Unique record ID.
   1388   unsigned ID;
   1389   Init *Name;
   1390   // Location where record was instantiated, followed by the location of
   1391   // multiclass prototypes used.
   1392   SmallVector<SMLoc, 4> Locs;
   1393   std::vector<Init *> TemplateArgs;
   1394   std::vector<RecordVal> Values;
   1395   std::vector<Record *> SuperClasses;
   1396   std::vector<SMRange> SuperClassRanges;
   1397 
   1398   // Tracks Record instances. Not owned by Record.
   1399   RecordKeeper &TrackedRecords;
   1400 
   1401   DefInit *TheInit;
   1402   bool IsAnonymous;
   1403 
   1404   // Class-instance values can be used by other defs.  For example, Struct<i>
   1405   // is used here as a template argument to another class:
   1406   //
   1407   //   multiclass MultiClass<int i> {
   1408   //     def Def : Class<Struct<i>>;
   1409   //
   1410   // These need to get fully resolved before instantiating any other
   1411   // definitions that usie them (e.g. Def).  However, inside a multiclass they
   1412   // can't be immediately resolved so we mark them ResolveFirst to fully
   1413   // resolve them later as soon as the multiclass is instantiated.
   1414   bool ResolveFirst;
   1415 
   1416   void init();
   1417   void checkName();
   1418 
   1419 public:
   1420   // Constructs a record.
   1421   explicit Record(const std::string &N, ArrayRef<SMLoc> locs,
   1422                   RecordKeeper &records, bool Anonymous = false) :
   1423     ID(LastID++), Name(StringInit::get(N)), Locs(locs.begin(), locs.end()),
   1424     TrackedRecords(records), TheInit(nullptr), IsAnonymous(Anonymous),
   1425     ResolveFirst(false) {
   1426     init();
   1427   }
   1428   explicit Record(Init *N, ArrayRef<SMLoc> locs, RecordKeeper &records,
   1429                   bool Anonymous = false) :
   1430     ID(LastID++), Name(N), Locs(locs.begin(), locs.end()),
   1431     TrackedRecords(records), TheInit(nullptr), IsAnonymous(Anonymous),
   1432     ResolveFirst(false) {
   1433     init();
   1434   }
   1435 
   1436   // When copy-constructing a Record, we must still guarantee a globally unique
   1437   // ID number.  All other fields can be copied normally.
   1438   Record(const Record &O) :
   1439     ID(LastID++), Name(O.Name), Locs(O.Locs), TemplateArgs(O.TemplateArgs),
   1440     Values(O.Values), SuperClasses(O.SuperClasses),
   1441     SuperClassRanges(O.SuperClassRanges), TrackedRecords(O.TrackedRecords),
   1442     TheInit(O.TheInit), IsAnonymous(O.IsAnonymous),
   1443     ResolveFirst(O.ResolveFirst) { }
   1444 
   1445   static unsigned getNewUID() { return LastID++; }
   1446 
   1447   unsigned getID() const { return ID; }
   1448 
   1449   const std::string &getName() const;
   1450   Init *getNameInit() const {
   1451     return Name;
   1452   }
   1453   const std::string getNameInitAsString() const {
   1454     return getNameInit()->getAsUnquotedString();
   1455   }
   1456 
   1457   void setName(Init *Name);               // Also updates RecordKeeper.
   1458   void setName(const std::string &Name);  // Also updates RecordKeeper.
   1459 
   1460   ArrayRef<SMLoc> getLoc() const { return Locs; }
   1461 
   1462   /// get the corresponding DefInit.
   1463   DefInit *getDefInit();
   1464 
   1465   const std::vector<Init *> &getTemplateArgs() const {
   1466     return TemplateArgs;
   1467   }
   1468   const std::vector<RecordVal> &getValues() const { return Values; }
   1469   const std::vector<Record*>   &getSuperClasses() const { return SuperClasses; }
   1470   ArrayRef<SMRange> getSuperClassRanges() const { return SuperClassRanges; }
   1471 
   1472   bool isTemplateArg(Init *Name) const {
   1473     for (unsigned i = 0, e = TemplateArgs.size(); i != e; ++i)
   1474       if (TemplateArgs[i] == Name) return true;
   1475     return false;
   1476   }
   1477   bool isTemplateArg(StringRef Name) const {
   1478     return isTemplateArg(StringInit::get(Name));
   1479   }
   1480 
   1481   const RecordVal *getValue(const Init *Name) const {
   1482     for (unsigned i = 0, e = Values.size(); i != e; ++i)
   1483       if (Values[i].getNameInit() == Name) return &Values[i];
   1484     return nullptr;
   1485   }
   1486   const RecordVal *getValue(StringRef Name) const {
   1487     return getValue(StringInit::get(Name));
   1488   }
   1489   RecordVal *getValue(const Init *Name) {
   1490     for (unsigned i = 0, e = Values.size(); i != e; ++i)
   1491       if (Values[i].getNameInit() == Name) return &Values[i];
   1492     return nullptr;
   1493   }
   1494   RecordVal *getValue(StringRef Name) {
   1495     return getValue(StringInit::get(Name));
   1496   }
   1497 
   1498   void addTemplateArg(Init *Name) {
   1499     assert(!isTemplateArg(Name) && "Template arg already defined!");
   1500     TemplateArgs.push_back(Name);
   1501   }
   1502   void addTemplateArg(StringRef Name) {
   1503     addTemplateArg(StringInit::get(Name));
   1504   }
   1505 
   1506   void addValue(const RecordVal &RV) {
   1507     assert(getValue(RV.getNameInit()) == nullptr && "Value already added!");
   1508     Values.push_back(RV);
   1509     if (Values.size() > 1)
   1510       // Keep NAME at the end of the list.  It makes record dumps a
   1511       // bit prettier and allows TableGen tests to be written more
   1512       // naturally.  Tests can use CHECK-NEXT to look for Record
   1513       // fields they expect to see after a def.  They can't do that if
   1514       // NAME is the first Record field.
   1515       std::swap(Values[Values.size() - 2], Values[Values.size() - 1]);
   1516   }
   1517 
   1518   void removeValue(Init *Name) {
   1519     for (unsigned i = 0, e = Values.size(); i != e; ++i)
   1520       if (Values[i].getNameInit() == Name) {
   1521         Values.erase(Values.begin()+i);
   1522         return;
   1523       }
   1524     llvm_unreachable("Cannot remove an entry that does not exist!");
   1525   }
   1526 
   1527   void removeValue(StringRef Name) {
   1528     removeValue(StringInit::get(Name));
   1529   }
   1530 
   1531   bool isSubClassOf(const Record *R) const {
   1532     for (unsigned i = 0, e = SuperClasses.size(); i != e; ++i)
   1533       if (SuperClasses[i] == R)
   1534         return true;
   1535     return false;
   1536   }
   1537 
   1538   bool isSubClassOf(StringRef Name) const {
   1539     for (unsigned i = 0, e = SuperClasses.size(); i != e; ++i)
   1540       if (SuperClasses[i]->getNameInitAsString() == Name)
   1541         return true;
   1542     return false;
   1543   }
   1544 
   1545   void addSuperClass(Record *R, SMRange Range) {
   1546     assert(!isSubClassOf(R) && "Already subclassing record!");
   1547     SuperClasses.push_back(R);
   1548     SuperClassRanges.push_back(Range);
   1549   }
   1550 
   1551   /// resolveReferences - If there are any field references that refer to fields
   1552   /// that have been filled in, we can propagate the values now.
   1553   ///
   1554   void resolveReferences() { resolveReferencesTo(nullptr); }
   1555 
   1556   /// resolveReferencesTo - If anything in this record refers to RV, replace the
   1557   /// reference to RV with the RHS of RV.  If RV is null, we resolve all
   1558   /// possible references.
   1559   void resolveReferencesTo(const RecordVal *RV);
   1560 
   1561   RecordKeeper &getRecords() const {
   1562     return TrackedRecords;
   1563   }
   1564 
   1565   bool isAnonymous() const {
   1566     return IsAnonymous;
   1567   }
   1568 
   1569   bool isResolveFirst() const {
   1570     return ResolveFirst;
   1571   }
   1572 
   1573   void setResolveFirst(bool b) {
   1574     ResolveFirst = b;
   1575   }
   1576 
   1577   void dump() const;
   1578 
   1579   //===--------------------------------------------------------------------===//
   1580   // High-level methods useful to tablegen back-ends
   1581   //
   1582 
   1583   /// getValueInit - Return the initializer for a value with the specified name,
   1584   /// or throw an exception if the field does not exist.
   1585   ///
   1586   Init *getValueInit(StringRef FieldName) const;
   1587 
   1588   /// Return true if the named field is unset.
   1589   bool isValueUnset(StringRef FieldName) const {
   1590     return getValueInit(FieldName) == UnsetInit::get();
   1591   }
   1592 
   1593   /// getValueAsString - This method looks up the specified field and returns
   1594   /// its value as a string, throwing an exception if the field does not exist
   1595   /// or if the value is not a string.
   1596   ///
   1597   std::string getValueAsString(StringRef FieldName) const;
   1598 
   1599   /// getValueAsBitsInit - This method looks up the specified field and returns
   1600   /// its value as a BitsInit, throwing an exception if the field does not exist
   1601   /// or if the value is not the right type.
   1602   ///
   1603   BitsInit *getValueAsBitsInit(StringRef FieldName) const;
   1604 
   1605   /// getValueAsListInit - This method looks up the specified field and returns
   1606   /// its value as a ListInit, throwing an exception if the field does not exist
   1607   /// or if the value is not the right type.
   1608   ///
   1609   ListInit *getValueAsListInit(StringRef FieldName) const;
   1610 
   1611   /// getValueAsListOfDefs - This method looks up the specified field and
   1612   /// returns its value as a vector of records, throwing an exception if the
   1613   /// field does not exist or if the value is not the right type.
   1614   ///
   1615   std::vector<Record*> getValueAsListOfDefs(StringRef FieldName) const;
   1616 
   1617   /// getValueAsListOfInts - This method looks up the specified field and
   1618   /// returns its value as a vector of integers, throwing an exception if the
   1619   /// field does not exist or if the value is not the right type.
   1620   ///
   1621   std::vector<int64_t> getValueAsListOfInts(StringRef FieldName) const;
   1622 
   1623   /// getValueAsListOfStrings - This method looks up the specified field and
   1624   /// returns its value as a vector of strings, throwing an exception if the
   1625   /// field does not exist or if the value is not the right type.
   1626   ///
   1627   std::vector<std::string> getValueAsListOfStrings(StringRef FieldName) const;
   1628 
   1629   /// getValueAsDef - This method looks up the specified field and returns its
   1630   /// value as a Record, throwing an exception if the field does not exist or if
   1631   /// the value is not the right type.
   1632   ///
   1633   Record *getValueAsDef(StringRef FieldName) const;
   1634 
   1635   /// getValueAsBit - This method looks up the specified field and returns its
   1636   /// value as a bit, throwing an exception if the field does not exist or if
   1637   /// the value is not the right type.
   1638   ///
   1639   bool getValueAsBit(StringRef FieldName) const;
   1640 
   1641   /// getValueAsBitOrUnset - This method looks up the specified field and
   1642   /// returns its value as a bit. If the field is unset, sets Unset to true and
   1643   /// returns false.
   1644   ///
   1645   bool getValueAsBitOrUnset(StringRef FieldName, bool &Unset) const;
   1646 
   1647   /// getValueAsInt - This method looks up the specified field and returns its
   1648   /// value as an int64_t, throwing an exception if the field does not exist or
   1649   /// if the value is not the right type.
   1650   ///
   1651   int64_t getValueAsInt(StringRef FieldName) const;
   1652 
   1653   /// getValueAsDag - This method looks up the specified field and returns its
   1654   /// value as an Dag, throwing an exception if the field does not exist or if
   1655   /// the value is not the right type.
   1656   ///
   1657   DagInit *getValueAsDag(StringRef FieldName) const;
   1658 };
   1659 
   1660 raw_ostream &operator<<(raw_ostream &OS, const Record &R);
   1661 
   1662 struct MultiClass {
   1663   Record Rec;  // Placeholder for template args and Name.
   1664   typedef std::vector<std::unique_ptr<Record>> RecordVector;
   1665   RecordVector DefPrototypes;
   1666 
   1667   void dump() const;
   1668 
   1669   MultiClass(const std::string &Name, SMLoc Loc, RecordKeeper &Records) :
   1670     Rec(Name, Loc, Records) {}
   1671 };
   1672 
   1673 class RecordKeeper {
   1674   typedef std::map<std::string, std::unique_ptr<Record>> RecordMap;
   1675   RecordMap Classes, Defs;
   1676 
   1677 public:
   1678   const RecordMap &getClasses() const { return Classes; }
   1679   const RecordMap &getDefs() const { return Defs; }
   1680 
   1681   Record *getClass(const std::string &Name) const {
   1682     auto I = Classes.find(Name);
   1683     return I == Classes.end() ? nullptr : I->second.get();
   1684   }
   1685   Record *getDef(const std::string &Name) const {
   1686     auto I = Defs.find(Name);
   1687     return I == Defs.end() ? nullptr : I->second.get();
   1688   }
   1689   void addClass(std::unique_ptr<Record> R) {
   1690     bool Ins = Classes.insert(std::make_pair(R->getName(),
   1691                                              std::move(R))).second;
   1692     (void)Ins;
   1693     assert(Ins && "Class already exists");
   1694   }
   1695   void addDef(std::unique_ptr<Record> R) {
   1696     bool Ins = Defs.insert(std::make_pair(R->getName(),
   1697                                           std::move(R))).second;
   1698     (void)Ins;
   1699     assert(Ins && "Record already exists");
   1700   }
   1701 
   1702   //===--------------------------------------------------------------------===//
   1703   // High-level helper methods, useful for tablegen backends...
   1704 
   1705   /// getAllDerivedDefinitions - This method returns all concrete definitions
   1706   /// that derive from the specified class name.  If a class with the specified
   1707   /// name does not exist, an exception is thrown.
   1708   std::vector<Record*>
   1709   getAllDerivedDefinitions(const std::string &ClassName) const;
   1710 
   1711   void dump() const;
   1712 };
   1713 
   1714 /// LessRecord - Sorting predicate to sort record pointers by name.
   1715 ///
   1716 struct LessRecord {
   1717   bool operator()(const Record *Rec1, const Record *Rec2) const {
   1718     return StringRef(Rec1->getName()).compare_numeric(Rec2->getName()) < 0;
   1719   }
   1720 };
   1721 
   1722 /// LessRecordByID - Sorting predicate to sort record pointers by their
   1723 /// unique ID. If you just need a deterministic order, use this, since it
   1724 /// just compares two `unsigned`; the other sorting predicates require
   1725 /// string manipulation.
   1726 struct LessRecordByID {
   1727   bool operator()(const Record *LHS, const Record *RHS) const {
   1728     return LHS->getID() < RHS->getID();
   1729   }
   1730 };
   1731 
   1732 /// LessRecordFieldName - Sorting predicate to sort record pointers by their
   1733 /// name field.
   1734 ///
   1735 struct LessRecordFieldName {
   1736   bool operator()(const Record *Rec1, const Record *Rec2) const {
   1737     return Rec1->getValueAsString("Name") < Rec2->getValueAsString("Name");
   1738   }
   1739 };
   1740 
   1741 struct LessRecordRegister {
   1742   static size_t min(size_t a, size_t b) { return a < b ? a : b; }
   1743   static bool ascii_isdigit(char x) { return x >= '0' && x <= '9'; }
   1744 
   1745   struct RecordParts {
   1746     SmallVector<std::pair< bool, StringRef>, 4> Parts;
   1747 
   1748     RecordParts(StringRef Rec) {
   1749       if (Rec.empty())
   1750         return;
   1751 
   1752       size_t Len = 0;
   1753       const char *Start = Rec.data();
   1754       const char *Curr = Start;
   1755       bool isDigitPart = ascii_isdigit(Curr[0]);
   1756       for (size_t I = 0, E = Rec.size(); I != E; ++I, ++Len) {
   1757         bool isDigit = ascii_isdigit(Curr[I]);
   1758         if (isDigit != isDigitPart) {
   1759           Parts.push_back(std::make_pair(isDigitPart, StringRef(Start, Len)));
   1760           Len = 0;
   1761           Start = &Curr[I];
   1762           isDigitPart = ascii_isdigit(Curr[I]);
   1763         }
   1764       }
   1765       // Push the last part.
   1766       Parts.push_back(std::make_pair(isDigitPart, StringRef(Start, Len)));
   1767     }
   1768 
   1769     size_t size() { return Parts.size(); }
   1770 
   1771     std::pair<bool, StringRef> getPart(size_t i) {
   1772       assert (i < Parts.size() && "Invalid idx!");
   1773       return Parts[i];
   1774     }
   1775   };
   1776 
   1777   bool operator()(const Record *Rec1, const Record *Rec2) const {
   1778     RecordParts LHSParts(StringRef(Rec1->getName()));
   1779     RecordParts RHSParts(StringRef(Rec2->getName()));
   1780 
   1781     size_t LHSNumParts = LHSParts.size();
   1782     size_t RHSNumParts = RHSParts.size();
   1783     assert (LHSNumParts && RHSNumParts && "Expected at least one part!");
   1784 
   1785     if (LHSNumParts != RHSNumParts)
   1786       return LHSNumParts < RHSNumParts;
   1787 
   1788     // We expect the registers to be of the form [_a-zA-z]+([0-9]*[_a-zA-Z]*)*.
   1789     for (size_t I = 0, E = LHSNumParts; I < E; I+=2) {
   1790       std::pair<bool, StringRef> LHSPart = LHSParts.getPart(I);
   1791       std::pair<bool, StringRef> RHSPart = RHSParts.getPart(I);
   1792       // Expect even part to always be alpha.
   1793       assert (LHSPart.first == false && RHSPart.first == false &&
   1794               "Expected both parts to be alpha.");
   1795       if (int Res = LHSPart.second.compare(RHSPart.second))
   1796         return Res < 0;
   1797     }
   1798     for (size_t I = 1, E = LHSNumParts; I < E; I+=2) {
   1799       std::pair<bool, StringRef> LHSPart = LHSParts.getPart(I);
   1800       std::pair<bool, StringRef> RHSPart = RHSParts.getPart(I);
   1801       // Expect odd part to always be numeric.
   1802       assert (LHSPart.first == true && RHSPart.first == true &&
   1803               "Expected both parts to be numeric.");
   1804       if (LHSPart.second.size() != RHSPart.second.size())
   1805         return LHSPart.second.size() < RHSPart.second.size();
   1806 
   1807       unsigned LHSVal, RHSVal;
   1808 
   1809       bool LHSFailed = LHSPart.second.getAsInteger(10, LHSVal); (void)LHSFailed;
   1810       assert(!LHSFailed && "Unable to convert LHS to integer.");
   1811       bool RHSFailed = RHSPart.second.getAsInteger(10, RHSVal); (void)RHSFailed;
   1812       assert(!RHSFailed && "Unable to convert RHS to integer.");
   1813 
   1814       if (LHSVal != RHSVal)
   1815         return LHSVal < RHSVal;
   1816     }
   1817     return LHSNumParts < RHSNumParts;
   1818   }
   1819 };
   1820 
   1821 raw_ostream &operator<<(raw_ostream &OS, const RecordKeeper &RK);
   1822 
   1823 /// QualifyName - Return an Init with a qualifier prefix referring
   1824 /// to CurRec's name.
   1825 Init *QualifyName(Record &CurRec, MultiClass *CurMultiClass,
   1826                   Init *Name, const std::string &Scoper);
   1827 
   1828 /// QualifyName - Return an Init with a qualifier prefix referring
   1829 /// to CurRec's name.
   1830 Init *QualifyName(Record &CurRec, MultiClass *CurMultiClass,
   1831                   const std::string &Name, const std::string &Scoper);
   1832 
   1833 } // End llvm namespace
   1834 
   1835 #endif
   1836