1 //===- TGParser.cpp - Parser for TableGen Files ---------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // Implement the Parser for TableGen.
10 //
11 //===----------------------------------------------------------------------===//
12 
13 #include "TGParser.h"
14 #include "llvm/ADT/None.h"
15 #include "llvm/ADT/STLExtras.h"
16 #include "llvm/ADT/SmallVector.h"
17 #include "llvm/ADT/StringExtras.h"
18 #include "llvm/ADT/Twine.h"
19 #include "llvm/Config/llvm-config.h"
20 #include "llvm/Support/Casting.h"
21 #include "llvm/Support/Compiler.h"
22 #include "llvm/Support/ErrorHandling.h"
23 #include "llvm/Support/raw_ostream.h"
24 #include "llvm/Support/SourceMgr.h"
25 #include <algorithm>
26 #include <cassert>
27 #include <cstdint>
28 
29 using namespace llvm;
30 
31 //===----------------------------------------------------------------------===//
32 // Support Code for the Semantic Actions.
33 //===----------------------------------------------------------------------===//
34 
35 namespace llvm {
36 
37 struct SubClassReference {
38   SMRange RefRange;
39   Record *Rec;
40   SmallVector<Init*, 4> TemplateArgs;
41 
42   SubClassReference() : Rec(nullptr) {}
43 
44   bool isInvalid() const { return Rec == nullptr; }
45 };
46 
47 struct SubMultiClassReference {
48   SMRange RefRange;
49   MultiClass *MC;
50   SmallVector<Init*, 4> TemplateArgs;
51 
52   SubMultiClassReference() : MC(nullptr) {}
53 
54   bool isInvalid() const { return MC == nullptr; }
55   void dump() const;
56 };
57 
58 #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
59 LLVM_DUMP_METHOD void SubMultiClassReference::dump() const {
60   errs() << "Multiclass:\n";
61 
62   MC->dump();
63 
64   errs() << "Template args:\n";
65   for (Init *TA : TemplateArgs)
66     TA->dump();
67 }
68 #endif
69 
70 } // end namespace llvm
71 
72 static bool checkBitsConcrete(Record &R, const RecordVal &RV) {
73   BitsInit *BV = cast<BitsInit>(RV.getValue());
74   for (unsigned i = 0, e = BV->getNumBits(); i != e; ++i) {
75     Init *Bit = BV->getBit(i);
76     bool IsReference = false;
77     if (auto VBI = dyn_cast<VarBitInit>(Bit)) {
78       if (auto VI = dyn_cast<VarInit>(VBI->getBitVar())) {
79         if (R.getValue(VI->getName()))
80           IsReference = true;
81       }
82     } else if (isa<VarInit>(Bit)) {
83       IsReference = true;
84     }
85     if (!(IsReference || Bit->isConcrete()))
86       return false;
87   }
88   return true;
89 }
90 
91 static void checkConcrete(Record &R) {
92   for (const RecordVal &RV : R.getValues()) {
93     // HACK: Disable this check for variables declared with 'field'. This is
94     // done merely because existing targets have legitimate cases of
95     // non-concrete variables in helper defs. Ideally, we'd introduce a
96     // 'maybe' or 'optional' modifier instead of this.
97     if (RV.getPrefix())
98       continue;
99 
100     if (Init *V = RV.getValue()) {
101       bool Ok = isa<BitsInit>(V) ? checkBitsConcrete(R, RV) : V->isConcrete();
102       if (!Ok) {
103         PrintError(R.getLoc(),
104                    Twine("Initializer of '") + RV.getNameInitAsString() +
105                    "' in '" + R.getNameInitAsString() +
106                    "' could not be fully resolved: " +
107                    RV.getValue()->getAsString());
108       }
109     }
110   }
111 }
112 
113 /// Return an Init with a qualifier prefix referring
114 /// to CurRec's name.
115 static Init *QualifyName(Record &CurRec, MultiClass *CurMultiClass,
116                         Init *Name, StringRef Scoper) {
117   Init *NewName =
118       BinOpInit::getStrConcat(CurRec.getNameInit(), StringInit::get(Scoper));
119   NewName = BinOpInit::getStrConcat(NewName, Name);
120   if (CurMultiClass && Scoper != "::") {
121     Init *Prefix = BinOpInit::getStrConcat(CurMultiClass->Rec.getNameInit(),
122                                            StringInit::get("::"));
123     NewName = BinOpInit::getStrConcat(Prefix, NewName);
124   }
125 
126   if (BinOpInit *BinOp = dyn_cast<BinOpInit>(NewName))
127     NewName = BinOp->Fold(&CurRec);
128   return NewName;
129 }
130 
131 /// Return the qualified version of the implicit 'NAME' template argument.
132 static Init *QualifiedNameOfImplicitName(Record &Rec,
133                                          MultiClass *MC = nullptr) {
134   return QualifyName(Rec, MC, StringInit::get("NAME"), MC ? "::" : ":");
135 }
136 
137 static Init *QualifiedNameOfImplicitName(MultiClass *MC) {
138   return QualifiedNameOfImplicitName(MC->Rec, MC);
139 }
140 
141 bool TGParser::AddValue(Record *CurRec, SMLoc Loc, const RecordVal &RV) {
142   if (!CurRec)
143     CurRec = &CurMultiClass->Rec;
144 
145   if (RecordVal *ERV = CurRec->getValue(RV.getNameInit())) {
146     // The value already exists in the class, treat this as a set.
147     if (ERV->setValue(RV.getValue()))
148       return Error(Loc, "New definition of '" + RV.getName() + "' of type '" +
149                    RV.getType()->getAsString() + "' is incompatible with " +
150                    "previous definition of type '" +
151                    ERV->getType()->getAsString() + "'");
152   } else {
153     CurRec->addValue(RV);
154   }
155   return false;
156 }
157 
158 /// SetValue -
159 /// Return true on error, false on success.
160 bool TGParser::SetValue(Record *CurRec, SMLoc Loc, Init *ValName,
161                         ArrayRef<unsigned> BitList, Init *V,
162                         bool AllowSelfAssignment) {
163   if (!V) return false;
164 
165   if (!CurRec) CurRec = &CurMultiClass->Rec;
166 
167   RecordVal *RV = CurRec->getValue(ValName);
168   if (!RV)
169     return Error(Loc, "Value '" + ValName->getAsUnquotedString() +
170                  "' unknown!");
171 
172   // Do not allow assignments like 'X = X'.  This will just cause infinite loops
173   // in the resolution machinery.
174   if (BitList.empty())
175     if (VarInit *VI = dyn_cast<VarInit>(V))
176       if (VI->getNameInit() == ValName && !AllowSelfAssignment)
177         return Error(Loc, "Recursion / self-assignment forbidden");
178 
179   // If we are assigning to a subset of the bits in the value... then we must be
180   // assigning to a field of BitsRecTy, which must have a BitsInit
181   // initializer.
182   //
183   if (!BitList.empty()) {
184     BitsInit *CurVal = dyn_cast<BitsInit>(RV->getValue());
185     if (!CurVal)
186       return Error(Loc, "Value '" + ValName->getAsUnquotedString() +
187                    "' is not a bits type");
188 
189     // Convert the incoming value to a bits type of the appropriate size...
190     Init *BI = V->getCastTo(BitsRecTy::get(BitList.size()));
191     if (!BI)
192       return Error(Loc, "Initializer is not compatible with bit range");
193 
194     SmallVector<Init *, 16> NewBits(CurVal->getNumBits());
195 
196     // Loop over bits, assigning values as appropriate.
197     for (unsigned i = 0, e = BitList.size(); i != e; ++i) {
198       unsigned Bit = BitList[i];
199       if (NewBits[Bit])
200         return Error(Loc, "Cannot set bit #" + Twine(Bit) + " of value '" +
201                      ValName->getAsUnquotedString() + "' more than once");
202       NewBits[Bit] = BI->getBit(i);
203     }
204 
205     for (unsigned i = 0, e = CurVal->getNumBits(); i != e; ++i)
206       if (!NewBits[i])
207         NewBits[i] = CurVal->getBit(i);
208 
209     V = BitsInit::get(NewBits);
210   }
211 
212   if (RV->setValue(V, Loc)) {
213     std::string InitType;
214     if (BitsInit *BI = dyn_cast<BitsInit>(V))
215       InitType = (Twine("' of type bit initializer with length ") +
216                   Twine(BI->getNumBits())).str();
217     else if (TypedInit *TI = dyn_cast<TypedInit>(V))
218       InitType = (Twine("' of type '") + TI->getType()->getAsString()).str();
219     return Error(Loc, "Field '" + ValName->getAsUnquotedString() +
220                           "' of type '" + RV->getType()->getAsString() +
221                           "' is incompatible with value '" +
222                           V->getAsString() + InitType + "'");
223   }
224   return false;
225 }
226 
227 /// AddSubClass - Add SubClass as a subclass to CurRec, resolving its template
228 /// args as SubClass's template arguments.
229 bool TGParser::AddSubClass(Record *CurRec, SubClassReference &SubClass) {
230   Record *SC = SubClass.Rec;
231   // Add all of the values in the subclass into the current class.
232   for (const RecordVal &Val : SC->getValues())
233     if (AddValue(CurRec, SubClass.RefRange.Start, Val))
234       return true;
235 
236   ArrayRef<Init *> TArgs = SC->getTemplateArgs();
237 
238   // Ensure that an appropriate number of template arguments are specified.
239   if (TArgs.size() < SubClass.TemplateArgs.size())
240     return Error(SubClass.RefRange.Start,
241                  "More template args specified than expected");
242 
243   // Loop over all of the template arguments, setting them to the specified
244   // value or leaving them as the default if necessary.
245   MapResolver R(CurRec);
246 
247   for (unsigned i = 0, e = TArgs.size(); i != e; ++i) {
248     if (i < SubClass.TemplateArgs.size()) {
249       // If a value is specified for this template arg, set it now.
250       if (SetValue(CurRec, SubClass.RefRange.Start, TArgs[i],
251                    None, SubClass.TemplateArgs[i]))
252         return true;
253     } else if (!CurRec->getValue(TArgs[i])->getValue()->isComplete()) {
254       return Error(SubClass.RefRange.Start,
255                    "Value not specified for template argument #" +
256                    Twine(i) + " (" + TArgs[i]->getAsUnquotedString() +
257                    ") of subclass '" + SC->getNameInitAsString() + "'!");
258     }
259 
260     R.set(TArgs[i], CurRec->getValue(TArgs[i])->getValue());
261 
262     CurRec->removeValue(TArgs[i]);
263   }
264 
265   Init *Name;
266   if (CurRec->isClass())
267     Name =
268         VarInit::get(QualifiedNameOfImplicitName(*CurRec), StringRecTy::get());
269   else
270     Name = CurRec->getNameInit();
271   R.set(QualifiedNameOfImplicitName(*SC), Name);
272 
273   CurRec->resolveReferences(R);
274 
275   // Since everything went well, we can now set the "superclass" list for the
276   // current record.
277   ArrayRef<std::pair<Record *, SMRange>> SCs = SC->getSuperClasses();
278   for (const auto &SCPair : SCs) {
279     if (CurRec->isSubClassOf(SCPair.first))
280       return Error(SubClass.RefRange.Start,
281                    "Already subclass of '" + SCPair.first->getName() + "'!\n");
282     CurRec->addSuperClass(SCPair.first, SCPair.second);
283   }
284 
285   if (CurRec->isSubClassOf(SC))
286     return Error(SubClass.RefRange.Start,
287                  "Already subclass of '" + SC->getName() + "'!\n");
288   CurRec->addSuperClass(SC, SubClass.RefRange);
289   return false;
290 }
291 
292 bool TGParser::AddSubClass(RecordsEntry &Entry, SubClassReference &SubClass) {
293   if (Entry.Rec)
294     return AddSubClass(Entry.Rec.get(), SubClass);
295 
296   for (auto &E : Entry.Loop->Entries) {
297     if (AddSubClass(E, SubClass))
298       return true;
299   }
300 
301   return false;
302 }
303 
304 /// AddSubMultiClass - Add SubMultiClass as a subclass to
305 /// CurMC, resolving its template args as SubMultiClass's
306 /// template arguments.
307 bool TGParser::AddSubMultiClass(MultiClass *CurMC,
308                                 SubMultiClassReference &SubMultiClass) {
309   MultiClass *SMC = SubMultiClass.MC;
310 
311   ArrayRef<Init *> SMCTArgs = SMC->Rec.getTemplateArgs();
312   if (SMCTArgs.size() < SubMultiClass.TemplateArgs.size())
313     return Error(SubMultiClass.RefRange.Start,
314                  "More template args specified than expected");
315 
316   // Prepare the mapping of template argument name to value, filling in default
317   // values if necessary.
318   SubstStack TemplateArgs;
319   for (unsigned i = 0, e = SMCTArgs.size(); i != e; ++i) {
320     if (i < SubMultiClass.TemplateArgs.size()) {
321       TemplateArgs.emplace_back(SMCTArgs[i], SubMultiClass.TemplateArgs[i]);
322     } else {
323       Init *Default = SMC->Rec.getValue(SMCTArgs[i])->getValue();
324       if (!Default->isComplete()) {
325         return Error(SubMultiClass.RefRange.Start,
326                      "value not specified for template argument #" + Twine(i) +
327                          " (" + SMCTArgs[i]->getAsUnquotedString() +
328                          ") of multiclass '" + SMC->Rec.getNameInitAsString() +
329                          "'");
330       }
331       TemplateArgs.emplace_back(SMCTArgs[i], Default);
332     }
333   }
334 
335   TemplateArgs.emplace_back(
336       QualifiedNameOfImplicitName(SMC),
337       VarInit::get(QualifiedNameOfImplicitName(CurMC), StringRecTy::get()));
338 
339   // Add all of the defs in the subclass into the current multiclass.
340   return resolve(SMC->Entries, TemplateArgs, false, &CurMC->Entries);
341 }
342 
343 /// Add a record or foreach loop to the current context (global record keeper,
344 /// current inner-most foreach loop, or multiclass).
345 bool TGParser::addEntry(RecordsEntry E) {
346   assert(!E.Rec || !E.Loop);
347 
348   if (!Loops.empty()) {
349     Loops.back()->Entries.push_back(std::move(E));
350     return false;
351   }
352 
353   if (E.Loop) {
354     SubstStack Stack;
355     return resolve(*E.Loop, Stack, CurMultiClass == nullptr,
356                    CurMultiClass ? &CurMultiClass->Entries : nullptr);
357   }
358 
359   if (CurMultiClass) {
360     CurMultiClass->Entries.push_back(std::move(E));
361     return false;
362   }
363 
364   return addDefOne(std::move(E.Rec));
365 }
366 
367 /// Resolve the entries in \p Loop, going over inner loops recursively
368 /// and making the given subsitutions of (name, value) pairs.
369 ///
370 /// The resulting records are stored in \p Dest if non-null. Otherwise, they
371 /// are added to the global record keeper.
372 bool TGParser::resolve(const ForeachLoop &Loop, SubstStack &Substs,
373                        bool Final, std::vector<RecordsEntry> *Dest,
374                        SMLoc *Loc) {
375   MapResolver R;
376   for (const auto &S : Substs)
377     R.set(S.first, S.second);
378   Init *List = Loop.ListValue->resolveReferences(R);
379   auto LI = dyn_cast<ListInit>(List);
380   if (!LI) {
381     if (!Final) {
382       Dest->emplace_back(std::make_unique<ForeachLoop>(Loop.Loc, Loop.IterVar,
383                                                   List));
384       return resolve(Loop.Entries, Substs, Final, &Dest->back().Loop->Entries,
385                      Loc);
386     }
387 
388     PrintError(Loop.Loc, Twine("attempting to loop over '") +
389                               List->getAsString() + "', expected a list");
390     return true;
391   }
392 
393   bool Error = false;
394   for (auto Elt : *LI) {
395     if (Loop.IterVar)
396       Substs.emplace_back(Loop.IterVar->getNameInit(), Elt);
397     Error = resolve(Loop.Entries, Substs, Final, Dest);
398     if (Loop.IterVar)
399       Substs.pop_back();
400     if (Error)
401       break;
402   }
403   return Error;
404 }
405 
406 /// Resolve the entries in \p Source, going over loops recursively and
407 /// making the given substitutions of (name, value) pairs.
408 ///
409 /// The resulting records are stored in \p Dest if non-null. Otherwise, they
410 /// are added to the global record keeper.
411 bool TGParser::resolve(const std::vector<RecordsEntry> &Source,
412                        SubstStack &Substs, bool Final,
413                        std::vector<RecordsEntry> *Dest, SMLoc *Loc) {
414   bool Error = false;
415   for (auto &E : Source) {
416     if (E.Loop) {
417       Error = resolve(*E.Loop, Substs, Final, Dest);
418     } else {
419       auto Rec = std::make_unique<Record>(*E.Rec);
420       if (Loc)
421         Rec->appendLoc(*Loc);
422 
423       MapResolver R(Rec.get());
424       for (const auto &S : Substs)
425         R.set(S.first, S.second);
426       Rec->resolveReferences(R);
427 
428       if (Dest)
429         Dest->push_back(std::move(Rec));
430       else
431         Error = addDefOne(std::move(Rec));
432     }
433     if (Error)
434       break;
435   }
436   return Error;
437 }
438 
439 /// Resolve the record fully and add it to the record keeper.
440 bool TGParser::addDefOne(std::unique_ptr<Record> Rec) {
441   if (Record *Prev = Records.getDef(Rec->getNameInitAsString())) {
442     if (!Rec->isAnonymous()) {
443       PrintError(Rec->getLoc(),
444                  "def already exists: " + Rec->getNameInitAsString());
445       PrintNote(Prev->getLoc(), "location of previous definition");
446       return true;
447     }
448     Rec->setName(Records.getNewAnonymousName());
449   }
450 
451   Rec->resolveReferences();
452   checkConcrete(*Rec);
453 
454   if (!isa<StringInit>(Rec->getNameInit())) {
455     PrintError(Rec->getLoc(), Twine("record name '") +
456                                   Rec->getNameInit()->getAsString() +
457                                   "' could not be fully resolved");
458     return true;
459   }
460 
461   // If ObjectBody has template arguments, it's an error.
462   assert(Rec->getTemplateArgs().empty() && "How'd this get template args?");
463 
464   for (DefsetRecord *Defset : Defsets) {
465     DefInit *I = Rec->getDefInit();
466     if (!I->getType()->typeIsA(Defset->EltTy)) {
467       PrintError(Rec->getLoc(), Twine("adding record of incompatible type '") +
468                                     I->getType()->getAsString() +
469                                      "' to defset");
470       PrintNote(Defset->Loc, "location of defset declaration");
471       return true;
472     }
473     Defset->Elements.push_back(I);
474   }
475 
476   Records.addDef(std::move(Rec));
477   return false;
478 }
479 
480 //===----------------------------------------------------------------------===//
481 // Parser Code
482 //===----------------------------------------------------------------------===//
483 
484 /// isObjectStart - Return true if this is a valid first token for an Object.
485 static bool isObjectStart(tgtok::TokKind K) {
486   return K == tgtok::Class || K == tgtok::Def || K == tgtok::Defm ||
487          K == tgtok::Let || K == tgtok::MultiClass || K == tgtok::Foreach ||
488          K == tgtok::Defset || K == tgtok::Defvar || K == tgtok::If;
489 }
490 
491 bool TGParser::consume(tgtok::TokKind K) {
492   if (Lex.getCode() == K) {
493     Lex.Lex();
494     return true;
495   }
496   return false;
497 }
498 
499 /// ParseObjectName - If a valid object name is specified, return it. If no
500 /// name is specified, return the unset initializer. Return nullptr on parse
501 /// error.
502 ///   ObjectName ::= Value [ '#' Value ]*
503 ///   ObjectName ::= /*empty*/
504 ///
505 Init *TGParser::ParseObjectName(MultiClass *CurMultiClass) {
506   switch (Lex.getCode()) {
507   case tgtok::colon:
508   case tgtok::semi:
509   case tgtok::l_brace:
510     // These are all of the tokens that can begin an object body.
511     // Some of these can also begin values but we disallow those cases
512     // because they are unlikely to be useful.
513     return UnsetInit::get();
514   default:
515     break;
516   }
517 
518   Record *CurRec = nullptr;
519   if (CurMultiClass)
520     CurRec = &CurMultiClass->Rec;
521 
522   Init *Name = ParseValue(CurRec, StringRecTy::get(), ParseNameMode);
523   if (!Name)
524     return nullptr;
525 
526   if (CurMultiClass) {
527     Init *NameStr = QualifiedNameOfImplicitName(CurMultiClass);
528     HasReferenceResolver R(NameStr);
529     Name->resolveReferences(R);
530     if (!R.found())
531       Name = BinOpInit::getStrConcat(VarInit::get(NameStr, StringRecTy::get()),
532                                      Name);
533   }
534 
535   return Name;
536 }
537 
538 /// ParseClassID - Parse and resolve a reference to a class name.  This returns
539 /// null on error.
540 ///
541 ///    ClassID ::= ID
542 ///
543 Record *TGParser::ParseClassID() {
544   if (Lex.getCode() != tgtok::Id) {
545     TokError("expected name for ClassID");
546     return nullptr;
547   }
548 
549   Record *Result = Records.getClass(Lex.getCurStrVal());
550   if (!Result) {
551     std::string Msg("Couldn't find class '" + Lex.getCurStrVal() + "'");
552     if (MultiClasses[Lex.getCurStrVal()].get())
553       TokError(Msg + ". Use 'defm' if you meant to use multiclass '" +
554                Lex.getCurStrVal() + "'");
555     else
556       TokError(Msg);
557   }
558 
559   Lex.Lex();
560   return Result;
561 }
562 
563 /// ParseMultiClassID - Parse and resolve a reference to a multiclass name.
564 /// This returns null on error.
565 ///
566 ///    MultiClassID ::= ID
567 ///
568 MultiClass *TGParser::ParseMultiClassID() {
569   if (Lex.getCode() != tgtok::Id) {
570     TokError("expected name for MultiClassID");
571     return nullptr;
572   }
573 
574   MultiClass *Result = MultiClasses[Lex.getCurStrVal()].get();
575   if (!Result)
576     TokError("Couldn't find multiclass '" + Lex.getCurStrVal() + "'");
577 
578   Lex.Lex();
579   return Result;
580 }
581 
582 /// ParseSubClassReference - Parse a reference to a subclass or to a templated
583 /// subclass.  This returns a SubClassRefTy with a null Record* on error.
584 ///
585 ///  SubClassRef ::= ClassID
586 ///  SubClassRef ::= ClassID '<' ValueList '>'
587 ///
588 SubClassReference TGParser::
589 ParseSubClassReference(Record *CurRec, bool isDefm) {
590   SubClassReference Result;
591   Result.RefRange.Start = Lex.getLoc();
592 
593   if (isDefm) {
594     if (MultiClass *MC = ParseMultiClassID())
595       Result.Rec = &MC->Rec;
596   } else {
597     Result.Rec = ParseClassID();
598   }
599   if (!Result.Rec) return Result;
600 
601   // If there is no template arg list, we're done.
602   if (!consume(tgtok::less)) {
603     Result.RefRange.End = Lex.getLoc();
604     return Result;
605   }
606 
607   if (Lex.getCode() == tgtok::greater) {
608     TokError("subclass reference requires a non-empty list of template values");
609     Result.Rec = nullptr;
610     return Result;
611   }
612 
613   ParseValueList(Result.TemplateArgs, CurRec, Result.Rec);
614   if (Result.TemplateArgs.empty()) {
615     Result.Rec = nullptr;   // Error parsing value list.
616     return Result;
617   }
618 
619   if (!consume(tgtok::greater)) {
620     TokError("expected '>' in template value list");
621     Result.Rec = nullptr;
622     return Result;
623   }
624   Result.RefRange.End = Lex.getLoc();
625 
626   return Result;
627 }
628 
629 /// ParseSubMultiClassReference - Parse a reference to a subclass or to a
630 /// templated submulticlass.  This returns a SubMultiClassRefTy with a null
631 /// Record* on error.
632 ///
633 ///  SubMultiClassRef ::= MultiClassID
634 ///  SubMultiClassRef ::= MultiClassID '<' ValueList '>'
635 ///
636 SubMultiClassReference TGParser::
637 ParseSubMultiClassReference(MultiClass *CurMC) {
638   SubMultiClassReference Result;
639   Result.RefRange.Start = Lex.getLoc();
640 
641   Result.MC = ParseMultiClassID();
642   if (!Result.MC) return Result;
643 
644   // If there is no template arg list, we're done.
645   if (!consume(tgtok::less)) {
646     Result.RefRange.End = Lex.getLoc();
647     return Result;
648   }
649 
650   if (Lex.getCode() == tgtok::greater) {
651     TokError("subclass reference requires a non-empty list of template values");
652     Result.MC = nullptr;
653     return Result;
654   }
655 
656   ParseValueList(Result.TemplateArgs, &CurMC->Rec, &Result.MC->Rec);
657   if (Result.TemplateArgs.empty()) {
658     Result.MC = nullptr;   // Error parsing value list.
659     return Result;
660   }
661 
662   if (!consume(tgtok::greater)) {
663     TokError("expected '>' in template value list");
664     Result.MC = nullptr;
665     return Result;
666   }
667   Result.RefRange.End = Lex.getLoc();
668 
669   return Result;
670 }
671 
672 /// ParseRangePiece - Parse a bit/value range.
673 ///   RangePiece ::= INTVAL
674 ///   RangePiece ::= INTVAL '...' INTVAL
675 ///   RangePiece ::= INTVAL '-' INTVAL
676 ///   RangePiece ::= INTVAL INTVAL
677 // The last two forms are deprecated.
678 bool TGParser::ParseRangePiece(SmallVectorImpl<unsigned> &Ranges,
679                                TypedInit *FirstItem) {
680   Init *CurVal = FirstItem;
681   if (!CurVal)
682     CurVal = ParseValue(nullptr);
683 
684   IntInit *II = dyn_cast_or_null<IntInit>(CurVal);
685   if (!II)
686     return TokError("expected integer or bitrange");
687 
688   int64_t Start = II->getValue();
689   int64_t End;
690 
691   if (Start < 0)
692     return TokError("invalid range, cannot be negative");
693 
694   switch (Lex.getCode()) {
695   default:
696     Ranges.push_back(Start);
697     return false;
698 
699   case tgtok::dotdotdot:
700   case tgtok::minus: {
701     Lex.Lex(); // eat
702 
703     Init *I_End = ParseValue(nullptr);
704     IntInit *II_End = dyn_cast_or_null<IntInit>(I_End);
705     if (!II_End) {
706       TokError("expected integer value as end of range");
707       return true;
708     }
709 
710     End = II_End->getValue();
711     break;
712   }
713   case tgtok::IntVal: {
714     End = -Lex.getCurIntVal();
715     Lex.Lex();
716     break;
717   }
718   }
719   if (End < 0)
720     return TokError("invalid range, cannot be negative");
721 
722   // Add to the range.
723   if (Start < End)
724     for (; Start <= End; ++Start)
725       Ranges.push_back(Start);
726   else
727     for (; Start >= End; --Start)
728       Ranges.push_back(Start);
729   return false;
730 }
731 
732 /// ParseRangeList - Parse a list of scalars and ranges into scalar values.
733 ///
734 ///   RangeList ::= RangePiece (',' RangePiece)*
735 ///
736 void TGParser::ParseRangeList(SmallVectorImpl<unsigned> &Result) {
737   // Parse the first piece.
738   if (ParseRangePiece(Result)) {
739     Result.clear();
740     return;
741   }
742   while (consume(tgtok::comma))
743     // Parse the next range piece.
744     if (ParseRangePiece(Result)) {
745       Result.clear();
746       return;
747     }
748 }
749 
750 /// ParseOptionalRangeList - Parse either a range list in <>'s or nothing.
751 ///   OptionalRangeList ::= '<' RangeList '>'
752 ///   OptionalRangeList ::= /*empty*/
753 bool TGParser::ParseOptionalRangeList(SmallVectorImpl<unsigned> &Ranges) {
754   SMLoc StartLoc = Lex.getLoc();
755   if (!consume(tgtok::less))
756     return false;
757 
758   // Parse the range list.
759   ParseRangeList(Ranges);
760   if (Ranges.empty()) return true;
761 
762   if (!consume(tgtok::greater)) {
763     TokError("expected '>' at end of range list");
764     return Error(StartLoc, "to match this '<'");
765   }
766   return false;
767 }
768 
769 /// ParseOptionalBitList - Parse either a bit list in {}'s or nothing.
770 ///   OptionalBitList ::= '{' RangeList '}'
771 ///   OptionalBitList ::= /*empty*/
772 bool TGParser::ParseOptionalBitList(SmallVectorImpl<unsigned> &Ranges) {
773   SMLoc StartLoc = Lex.getLoc();
774   if (!consume(tgtok::l_brace))
775     return false;
776 
777   // Parse the range list.
778   ParseRangeList(Ranges);
779   if (Ranges.empty()) return true;
780 
781   if (!consume(tgtok::r_brace)) {
782     TokError("expected '}' at end of bit list");
783     return Error(StartLoc, "to match this '{'");
784   }
785   return false;
786 }
787 
788 /// ParseType - Parse and return a tblgen type.  This returns null on error.
789 ///
790 ///   Type ::= STRING                       // string type
791 ///   Type ::= CODE                         // code type
792 ///   Type ::= BIT                          // bit type
793 ///   Type ::= BITS '<' INTVAL '>'          // bits<x> type
794 ///   Type ::= INT                          // int type
795 ///   Type ::= LIST '<' Type '>'            // list<x> type
796 ///   Type ::= DAG                          // dag type
797 ///   Type ::= ClassID                      // Record Type
798 ///
799 RecTy *TGParser::ParseType() {
800   switch (Lex.getCode()) {
801   default: TokError("Unknown token when expecting a type"); return nullptr;
802   case tgtok::String: Lex.Lex(); return StringRecTy::get();
803   case tgtok::Code:   Lex.Lex(); return CodeRecTy::get();
804   case tgtok::Bit:    Lex.Lex(); return BitRecTy::get();
805   case tgtok::Int:    Lex.Lex(); return IntRecTy::get();
806   case tgtok::Dag:    Lex.Lex(); return DagRecTy::get();
807   case tgtok::Id:
808     if (Record *R = ParseClassID()) return RecordRecTy::get(R);
809     TokError("unknown class name");
810     return nullptr;
811   case tgtok::Bits: {
812     if (Lex.Lex() != tgtok::less) { // Eat 'bits'
813       TokError("expected '<' after bits type");
814       return nullptr;
815     }
816     if (Lex.Lex() != tgtok::IntVal) { // Eat '<'
817       TokError("expected integer in bits<n> type");
818       return nullptr;
819     }
820     uint64_t Val = Lex.getCurIntVal();
821     if (Lex.Lex() != tgtok::greater) { // Eat count.
822       TokError("expected '>' at end of bits<n> type");
823       return nullptr;
824     }
825     Lex.Lex();  // Eat '>'
826     return BitsRecTy::get(Val);
827   }
828   case tgtok::List: {
829     if (Lex.Lex() != tgtok::less) { // Eat 'bits'
830       TokError("expected '<' after list type");
831       return nullptr;
832     }
833     Lex.Lex();  // Eat '<'
834     RecTy *SubType = ParseType();
835     if (!SubType) return nullptr;
836 
837     if (!consume(tgtok::greater)) {
838       TokError("expected '>' at end of list<ty> type");
839       return nullptr;
840     }
841     return ListRecTy::get(SubType);
842   }
843   }
844 }
845 
846 /// ParseIDValue - This is just like ParseIDValue above, but it assumes the ID
847 /// has already been read.
848 Init *TGParser::ParseIDValue(Record *CurRec, StringInit *Name, SMLoc NameLoc,
849                              IDParseMode Mode) {
850   if (CurRec) {
851     if (const RecordVal *RV = CurRec->getValue(Name))
852       return VarInit::get(Name, RV->getType());
853   }
854 
855   if ((CurRec && CurRec->isClass()) || CurMultiClass) {
856     Init *TemplateArgName;
857     if (CurMultiClass) {
858       TemplateArgName =
859           QualifyName(CurMultiClass->Rec, CurMultiClass, Name, "::");
860     } else
861       TemplateArgName = QualifyName(*CurRec, CurMultiClass, Name, ":");
862 
863     Record *TemplateRec = CurMultiClass ? &CurMultiClass->Rec : CurRec;
864     if (TemplateRec->isTemplateArg(TemplateArgName)) {
865       const RecordVal *RV = TemplateRec->getValue(TemplateArgName);
866       assert(RV && "Template arg doesn't exist??");
867       return VarInit::get(TemplateArgName, RV->getType());
868     } else if (Name->getValue() == "NAME") {
869       return VarInit::get(TemplateArgName, StringRecTy::get());
870     }
871   }
872 
873   if (CurLocalScope)
874     if (Init *I = CurLocalScope->getVar(Name->getValue()))
875       return I;
876 
877   // If this is in a foreach loop, make sure it's not a loop iterator
878   for (const auto &L : Loops) {
879     if (L->IterVar) {
880       VarInit *IterVar = dyn_cast<VarInit>(L->IterVar);
881       if (IterVar && IterVar->getNameInit() == Name)
882         return IterVar;
883     }
884   }
885 
886   if (Mode == ParseNameMode)
887     return Name;
888 
889   if (Init *I = Records.getGlobal(Name->getValue()))
890     return I;
891 
892   // Allow self-references of concrete defs, but delay the lookup so that we
893   // get the correct type.
894   if (CurRec && !CurRec->isClass() && !CurMultiClass &&
895       CurRec->getNameInit() == Name)
896     return UnOpInit::get(UnOpInit::CAST, Name, CurRec->getType());
897 
898   Error(NameLoc, "Variable not defined: '" + Name->getValue() + "'");
899   return nullptr;
900 }
901 
902 /// ParseOperation - Parse an operator.  This returns null on error.
903 ///
904 /// Operation ::= XOperator ['<' Type '>'] '(' Args ')'
905 ///
906 Init *TGParser::ParseOperation(Record *CurRec, RecTy *ItemType) {
907   switch (Lex.getCode()) {
908   default:
909     TokError("unknown bang operator");
910     return nullptr;
911   case tgtok::XNOT:
912   case tgtok::XHead:
913   case tgtok::XTail:
914   case tgtok::XSize:
915   case tgtok::XEmpty:
916   case tgtok::XCast:
917   case tgtok::XGetDagOp: { // Value ::= !unop '(' Value ')'
918     UnOpInit::UnaryOp Code;
919     RecTy *Type = nullptr;
920 
921     switch (Lex.getCode()) {
922     default: llvm_unreachable("Unhandled code!");
923     case tgtok::XCast:
924       Lex.Lex();  // eat the operation
925       Code = UnOpInit::CAST;
926 
927       Type = ParseOperatorType();
928 
929       if (!Type) {
930         TokError("did not get type for unary operator");
931         return nullptr;
932       }
933 
934       break;
935     case tgtok::XNOT:
936       Lex.Lex();  // eat the operation
937       Code = UnOpInit::NOT;
938       Type = IntRecTy::get();
939       break;
940     case tgtok::XHead:
941       Lex.Lex();  // eat the operation
942       Code = UnOpInit::HEAD;
943       break;
944     case tgtok::XTail:
945       Lex.Lex();  // eat the operation
946       Code = UnOpInit::TAIL;
947       break;
948     case tgtok::XSize:
949       Lex.Lex();
950       Code = UnOpInit::SIZE;
951       Type = IntRecTy::get();
952       break;
953     case tgtok::XEmpty:
954       Lex.Lex();  // eat the operation
955       Code = UnOpInit::EMPTY;
956       Type = IntRecTy::get();
957       break;
958     case tgtok::XGetDagOp:
959       Lex.Lex();  // eat the operation
960       if (Lex.getCode() == tgtok::less) {
961         // Parse an optional type suffix, so that you can say
962         // !getdagop<BaseClass>(someDag) as a shorthand for
963         // !cast<BaseClass>(!getdagop(someDag)).
964         Type = ParseOperatorType();
965 
966         if (!Type) {
967           TokError("did not get type for unary operator");
968           return nullptr;
969         }
970 
971         if (!isa<RecordRecTy>(Type)) {
972           TokError("type for !getdagop must be a record type");
973           // but keep parsing, to consume the operand
974         }
975       } else {
976         Type = RecordRecTy::get({});
977       }
978       Code = UnOpInit::GETDAGOP;
979       break;
980     }
981     if (!consume(tgtok::l_paren)) {
982       TokError("expected '(' after unary operator");
983       return nullptr;
984     }
985 
986     Init *LHS = ParseValue(CurRec);
987     if (!LHS) return nullptr;
988 
989     if (Code == UnOpInit::EMPTY || Code == UnOpInit::SIZE) {
990       ListInit *LHSl = dyn_cast<ListInit>(LHS);
991       StringInit *LHSs = dyn_cast<StringInit>(LHS);
992       DagInit *LHSd = dyn_cast<DagInit>(LHS);
993       TypedInit *LHSt = dyn_cast<TypedInit>(LHS);
994       if (!LHSl && !LHSs && !LHSd && !LHSt) {
995         TokError("expected string, list, or dag type argument in unary operator");
996         return nullptr;
997       }
998       if (LHSt) {
999         ListRecTy *LType = dyn_cast<ListRecTy>(LHSt->getType());
1000         StringRecTy *SType = dyn_cast<StringRecTy>(LHSt->getType());
1001         DagRecTy *DType = dyn_cast<DagRecTy>(LHSt->getType());
1002         if (!LType && !SType && !DType) {
1003           TokError("expected string, list, or dag type argument in unary operator");
1004           return nullptr;
1005         }
1006       }
1007     }
1008 
1009     if (Code == UnOpInit::HEAD || Code == UnOpInit::TAIL) {
1010       ListInit *LHSl = dyn_cast<ListInit>(LHS);
1011       TypedInit *LHSt = dyn_cast<TypedInit>(LHS);
1012       if (!LHSl && !LHSt) {
1013         TokError("expected list type argument in unary operator");
1014         return nullptr;
1015       }
1016       if (LHSt) {
1017         ListRecTy *LType = dyn_cast<ListRecTy>(LHSt->getType());
1018         if (!LType) {
1019           TokError("expected list type argument in unary operator");
1020           return nullptr;
1021         }
1022       }
1023 
1024       if (LHSl && LHSl->empty()) {
1025         TokError("empty list argument in unary operator");
1026         return nullptr;
1027       }
1028       if (LHSl) {
1029         Init *Item = LHSl->getElement(0);
1030         TypedInit *Itemt = dyn_cast<TypedInit>(Item);
1031         if (!Itemt) {
1032           TokError("untyped list element in unary operator");
1033           return nullptr;
1034         }
1035         Type = (Code == UnOpInit::HEAD) ? Itemt->getType()
1036                                         : ListRecTy::get(Itemt->getType());
1037       } else {
1038         assert(LHSt && "expected list type argument in unary operator");
1039         ListRecTy *LType = dyn_cast<ListRecTy>(LHSt->getType());
1040         Type = (Code == UnOpInit::HEAD) ? LType->getElementType() : LType;
1041       }
1042     }
1043 
1044     if (!consume(tgtok::r_paren)) {
1045       TokError("expected ')' in unary operator");
1046       return nullptr;
1047     }
1048     return (UnOpInit::get(Code, LHS, Type))->Fold(CurRec);
1049   }
1050 
1051   case tgtok::XIsA: {
1052     // Value ::= !isa '<' Type '>' '(' Value ')'
1053     Lex.Lex(); // eat the operation
1054 
1055     RecTy *Type = ParseOperatorType();
1056     if (!Type)
1057       return nullptr;
1058 
1059     if (!consume(tgtok::l_paren)) {
1060       TokError("expected '(' after type of !isa");
1061       return nullptr;
1062     }
1063 
1064     Init *LHS = ParseValue(CurRec);
1065     if (!LHS)
1066       return nullptr;
1067 
1068     if (!consume(tgtok::r_paren)) {
1069       TokError("expected ')' in !isa");
1070       return nullptr;
1071     }
1072 
1073     return (IsAOpInit::get(Type, LHS))->Fold();
1074   }
1075 
1076   case tgtok::XConcat:
1077   case tgtok::XADD:
1078   case tgtok::XSUB:
1079   case tgtok::XMUL:
1080   case tgtok::XAND:
1081   case tgtok::XOR:
1082   case tgtok::XXOR:
1083   case tgtok::XSRA:
1084   case tgtok::XSRL:
1085   case tgtok::XSHL:
1086   case tgtok::XEq:
1087   case tgtok::XNe:
1088   case tgtok::XLe:
1089   case tgtok::XLt:
1090   case tgtok::XGe:
1091   case tgtok::XGt:
1092   case tgtok::XListConcat:
1093   case tgtok::XListSplat:
1094   case tgtok::XStrConcat:
1095   case tgtok::XInterleave:
1096   case tgtok::XSetDagOp: { // Value ::= !binop '(' Value ',' Value ')'
1097     tgtok::TokKind OpTok = Lex.getCode();
1098     SMLoc OpLoc = Lex.getLoc();
1099     Lex.Lex();  // eat the operation
1100 
1101     BinOpInit::BinaryOp Code;
1102     switch (OpTok) {
1103     default: llvm_unreachable("Unhandled code!");
1104     case tgtok::XConcat: Code = BinOpInit::CONCAT; break;
1105     case tgtok::XADD:    Code = BinOpInit::ADD; break;
1106     case tgtok::XSUB:    Code = BinOpInit::SUB; break;
1107     case tgtok::XMUL:    Code = BinOpInit::MUL; break;
1108     case tgtok::XAND:    Code = BinOpInit::AND; break;
1109     case tgtok::XOR:     Code = BinOpInit::OR; break;
1110     case tgtok::XXOR:    Code = BinOpInit::XOR; break;
1111     case tgtok::XSRA:    Code = BinOpInit::SRA; break;
1112     case tgtok::XSRL:    Code = BinOpInit::SRL; break;
1113     case tgtok::XSHL:    Code = BinOpInit::SHL; break;
1114     case tgtok::XEq:     Code = BinOpInit::EQ; break;
1115     case tgtok::XNe:     Code = BinOpInit::NE; break;
1116     case tgtok::XLe:     Code = BinOpInit::LE; break;
1117     case tgtok::XLt:     Code = BinOpInit::LT; break;
1118     case tgtok::XGe:     Code = BinOpInit::GE; break;
1119     case tgtok::XGt:     Code = BinOpInit::GT; break;
1120     case tgtok::XListConcat: Code = BinOpInit::LISTCONCAT; break;
1121     case tgtok::XListSplat:  Code = BinOpInit::LISTSPLAT; break;
1122     case tgtok::XStrConcat:  Code = BinOpInit::STRCONCAT; break;
1123     case tgtok::XInterleave: Code = BinOpInit::INTERLEAVE; break;
1124     case tgtok::XSetDagOp:   Code = BinOpInit::SETDAGOP; break;
1125     }
1126 
1127     RecTy *Type = nullptr;
1128     RecTy *ArgType = nullptr;
1129     switch (OpTok) {
1130     default:
1131       llvm_unreachable("Unhandled code!");
1132     case tgtok::XConcat:
1133     case tgtok::XSetDagOp:
1134       Type = DagRecTy::get();
1135       ArgType = DagRecTy::get();
1136       break;
1137     case tgtok::XAND:
1138     case tgtok::XOR:
1139     case tgtok::XXOR:
1140     case tgtok::XSRA:
1141     case tgtok::XSRL:
1142     case tgtok::XSHL:
1143     case tgtok::XADD:
1144     case tgtok::XSUB:
1145     case tgtok::XMUL:
1146       Type = IntRecTy::get();
1147       ArgType = IntRecTy::get();
1148       break;
1149     case tgtok::XEq:
1150     case tgtok::XNe:
1151     case tgtok::XLe:
1152     case tgtok::XLt:
1153     case tgtok::XGe:
1154     case tgtok::XGt:
1155       Type = BitRecTy::get();
1156       // ArgType for the comparison operators is not yet known.
1157       break;
1158     case tgtok::XListConcat:
1159       // We don't know the list type until we parse the first argument
1160       ArgType = ItemType;
1161       break;
1162     case tgtok::XListSplat:
1163       // Can't do any typechecking until we parse the first argument.
1164       break;
1165     case tgtok::XStrConcat:
1166       Type = StringRecTy::get();
1167       ArgType = StringRecTy::get();
1168       break;
1169     case tgtok::XInterleave:
1170       Type = StringRecTy::get();
1171       // The first argument type is not yet known.
1172     }
1173 
1174     if (Type && ItemType && !Type->typeIsConvertibleTo(ItemType)) {
1175       Error(OpLoc, Twine("expected value of type '") +
1176                    ItemType->getAsString() + "', got '" +
1177                    Type->getAsString() + "'");
1178       return nullptr;
1179     }
1180 
1181     if (!consume(tgtok::l_paren)) {
1182       TokError("expected '(' after binary operator");
1183       return nullptr;
1184     }
1185 
1186     SmallVector<Init*, 2> InitList;
1187 
1188     // Note that this loop consumes an arbitrary number of arguments.
1189     // The actual count is checked later.
1190     for (;;) {
1191       SMLoc InitLoc = Lex.getLoc();
1192       InitList.push_back(ParseValue(CurRec, ArgType));
1193       if (!InitList.back()) return nullptr;
1194 
1195       TypedInit *InitListBack = dyn_cast<TypedInit>(InitList.back());
1196       if (!InitListBack) {
1197         Error(OpLoc, Twine("expected value to be a typed value, got '" +
1198                            InitList.back()->getAsString() + "'"));
1199         return nullptr;
1200       }
1201       RecTy *ListType = InitListBack->getType();
1202 
1203       if (!ArgType) {
1204         // Argument type must be determined from the argument itself.
1205         ArgType = ListType;
1206 
1207         switch (Code) {
1208         case BinOpInit::LISTCONCAT:
1209           if (!isa<ListRecTy>(ArgType)) {
1210             Error(InitLoc, Twine("expected a list, got value of type '") +
1211                            ArgType->getAsString() + "'");
1212             return nullptr;
1213           }
1214           break;
1215         case BinOpInit::LISTSPLAT:
1216           if (ItemType && InitList.size() == 1) {
1217             if (!isa<ListRecTy>(ItemType)) {
1218               Error(OpLoc,
1219                     Twine("expected output type to be a list, got type '") +
1220                         ItemType->getAsString() + "'");
1221               return nullptr;
1222             }
1223             if (!ArgType->getListTy()->typeIsConvertibleTo(ItemType)) {
1224               Error(OpLoc, Twine("expected first arg type to be '") +
1225                                ArgType->getAsString() +
1226                                "', got value of type '" +
1227                                cast<ListRecTy>(ItemType)
1228                                    ->getElementType()
1229                                    ->getAsString() +
1230                                "'");
1231               return nullptr;
1232             }
1233           }
1234           if (InitList.size() == 2 && !isa<IntRecTy>(ArgType)) {
1235             Error(InitLoc, Twine("expected second parameter to be an int, got "
1236                                  "value of type '") +
1237                                ArgType->getAsString() + "'");
1238             return nullptr;
1239           }
1240           ArgType = nullptr; // Broken invariant: types not identical.
1241           break;
1242         case BinOpInit::EQ:
1243         case BinOpInit::NE:
1244           if (!ArgType->typeIsConvertibleTo(IntRecTy::get()) &&
1245               !ArgType->typeIsConvertibleTo(StringRecTy::get()) &&
1246               !ArgType->typeIsConvertibleTo(RecordRecTy::get({}))) {
1247             Error(InitLoc, Twine("expected bit, bits, int, string, or record; "
1248                                  "got value of type '") + ArgType->getAsString() +
1249                                  "'");
1250             return nullptr;
1251           }
1252           break;
1253         case BinOpInit::LE:
1254         case BinOpInit::LT:
1255         case BinOpInit::GE:
1256         case BinOpInit::GT:
1257           if (!ArgType->typeIsConvertibleTo(IntRecTy::get()) &&
1258               !ArgType->typeIsConvertibleTo(StringRecTy::get())) {
1259             Error(InitLoc, Twine("expected bit, bits, int, or string; "
1260                                  "got value of type '") + ArgType->getAsString() +
1261                                  "'");
1262             return nullptr;
1263           }
1264           break;
1265         case BinOpInit::INTERLEAVE:
1266           switch (InitList.size()) {
1267           case 1: // First argument must be a list of strings or integers.
1268             if (ArgType != StringRecTy::get()->getListTy() &&
1269                 !ArgType->typeIsConvertibleTo(IntRecTy::get()->getListTy())) {
1270               Error(InitLoc, Twine("expected list of string, int, bits, or bit; "
1271                                    "got value of type '") +
1272                                    ArgType->getAsString() + "'");
1273               return nullptr;
1274             }
1275             break;
1276           case 2: // Second argument must be a string.
1277             if (!isa<StringRecTy>(ArgType)) {
1278               Error(InitLoc, Twine("expected second argument to be a string, "
1279                                    "got value of type '") +
1280                                  ArgType->getAsString() + "'");
1281               return nullptr;
1282             }
1283             break;
1284           default: ;
1285           }
1286           ArgType = nullptr; // Broken invariant: types not identical.
1287           break;
1288         default: llvm_unreachable("other ops have fixed argument types");
1289         }
1290 
1291       } else {
1292         // Desired argument type is a known and in ArgType.
1293         RecTy *Resolved = resolveTypes(ArgType, ListType);
1294         if (!Resolved) {
1295           Error(InitLoc, Twine("expected value of type '") +
1296                              ArgType->getAsString() + "', got '" +
1297                              ListType->getAsString() + "'");
1298           return nullptr;
1299         }
1300         if (Code != BinOpInit::ADD && Code != BinOpInit::SUB &&
1301             Code != BinOpInit::AND && Code != BinOpInit::OR &&
1302             Code != BinOpInit::XOR && Code != BinOpInit::SRA &&
1303             Code != BinOpInit::SRL && Code != BinOpInit::SHL &&
1304             Code != BinOpInit::MUL)
1305           ArgType = Resolved;
1306       }
1307 
1308       // Deal with BinOps whose arguments have different types, by
1309       // rewriting ArgType in between them.
1310       switch (Code) {
1311         case BinOpInit::SETDAGOP:
1312           // After parsing the first dag argument, switch to expecting
1313           // a record, with no restriction on its superclasses.
1314           ArgType = RecordRecTy::get({});
1315           break;
1316         default:
1317           break;
1318       }
1319 
1320       if (!consume(tgtok::comma))
1321         break;
1322     }
1323 
1324     if (!consume(tgtok::r_paren)) {
1325       TokError("expected ')' in operator");
1326       return nullptr;
1327     }
1328 
1329     // listconcat returns a list with type of the argument.
1330     if (Code == BinOpInit::LISTCONCAT)
1331       Type = ArgType;
1332     // listsplat returns a list of type of the *first* argument.
1333     if (Code == BinOpInit::LISTSPLAT)
1334       Type = cast<TypedInit>(InitList.front())->getType()->getListTy();
1335 
1336     // We allow multiple operands to associative operators like !strconcat as
1337     // shorthand for nesting them.
1338     if (Code == BinOpInit::STRCONCAT || Code == BinOpInit::LISTCONCAT ||
1339         Code == BinOpInit::CONCAT || Code == BinOpInit::ADD ||
1340         Code == BinOpInit::AND || Code == BinOpInit::OR ||
1341         Code == BinOpInit::XOR || Code == BinOpInit::MUL) {
1342       while (InitList.size() > 2) {
1343         Init *RHS = InitList.pop_back_val();
1344         RHS = (BinOpInit::get(Code, InitList.back(), RHS, Type))->Fold(CurRec);
1345         InitList.back() = RHS;
1346       }
1347     }
1348 
1349     if (InitList.size() == 2)
1350       return (BinOpInit::get(Code, InitList[0], InitList[1], Type))
1351           ->Fold(CurRec);
1352 
1353     Error(OpLoc, "expected two operands to operator");
1354     return nullptr;
1355   }
1356 
1357   case tgtok::XForEach:
1358   case tgtok::XFilter: {
1359     return ParseOperationForEachFilter(CurRec, ItemType);
1360   }
1361 
1362   case tgtok::XDag:
1363   case tgtok::XIf:
1364   case tgtok::XSubst: { // Value ::= !ternop '(' Value ',' Value ',' Value ')'
1365     TernOpInit::TernaryOp Code;
1366     RecTy *Type = nullptr;
1367 
1368     tgtok::TokKind LexCode = Lex.getCode();
1369     Lex.Lex();  // eat the operation
1370     switch (LexCode) {
1371     default: llvm_unreachable("Unhandled code!");
1372     case tgtok::XDag:
1373       Code = TernOpInit::DAG;
1374       Type = DagRecTy::get();
1375       ItemType = nullptr;
1376       break;
1377     case tgtok::XIf:
1378       Code = TernOpInit::IF;
1379       break;
1380     case tgtok::XSubst:
1381       Code = TernOpInit::SUBST;
1382       break;
1383     }
1384     if (!consume(tgtok::l_paren)) {
1385       TokError("expected '(' after ternary operator");
1386       return nullptr;
1387     }
1388 
1389     Init *LHS = ParseValue(CurRec);
1390     if (!LHS) return nullptr;
1391 
1392     if (!consume(tgtok::comma)) {
1393       TokError("expected ',' in ternary operator");
1394       return nullptr;
1395     }
1396 
1397     SMLoc MHSLoc = Lex.getLoc();
1398     Init *MHS = ParseValue(CurRec, ItemType);
1399     if (!MHS)
1400       return nullptr;
1401 
1402     if (!consume(tgtok::comma)) {
1403       TokError("expected ',' in ternary operator");
1404       return nullptr;
1405     }
1406 
1407     SMLoc RHSLoc = Lex.getLoc();
1408     Init *RHS = ParseValue(CurRec, ItemType);
1409     if (!RHS)
1410       return nullptr;
1411 
1412     if (!consume(tgtok::r_paren)) {
1413       TokError("expected ')' in binary operator");
1414       return nullptr;
1415     }
1416 
1417     switch (LexCode) {
1418     default: llvm_unreachable("Unhandled code!");
1419     case tgtok::XDag: {
1420       TypedInit *MHSt = dyn_cast<TypedInit>(MHS);
1421       if (!MHSt && !isa<UnsetInit>(MHS)) {
1422         Error(MHSLoc, "could not determine type of the child list in !dag");
1423         return nullptr;
1424       }
1425       if (MHSt && !isa<ListRecTy>(MHSt->getType())) {
1426         Error(MHSLoc, Twine("expected list of children, got type '") +
1427                           MHSt->getType()->getAsString() + "'");
1428         return nullptr;
1429       }
1430 
1431       TypedInit *RHSt = dyn_cast<TypedInit>(RHS);
1432       if (!RHSt && !isa<UnsetInit>(RHS)) {
1433         Error(RHSLoc, "could not determine type of the name list in !dag");
1434         return nullptr;
1435       }
1436       if (RHSt && StringRecTy::get()->getListTy() != RHSt->getType()) {
1437         Error(RHSLoc, Twine("expected list<string>, got type '") +
1438                           RHSt->getType()->getAsString() + "'");
1439         return nullptr;
1440       }
1441 
1442       if (!MHSt && !RHSt) {
1443         Error(MHSLoc,
1444               "cannot have both unset children and unset names in !dag");
1445         return nullptr;
1446       }
1447       break;
1448     }
1449     case tgtok::XIf: {
1450       RecTy *MHSTy = nullptr;
1451       RecTy *RHSTy = nullptr;
1452 
1453       if (TypedInit *MHSt = dyn_cast<TypedInit>(MHS))
1454         MHSTy = MHSt->getType();
1455       if (BitsInit *MHSbits = dyn_cast<BitsInit>(MHS))
1456         MHSTy = BitsRecTy::get(MHSbits->getNumBits());
1457       if (isa<BitInit>(MHS))
1458         MHSTy = BitRecTy::get();
1459 
1460       if (TypedInit *RHSt = dyn_cast<TypedInit>(RHS))
1461         RHSTy = RHSt->getType();
1462       if (BitsInit *RHSbits = dyn_cast<BitsInit>(RHS))
1463         RHSTy = BitsRecTy::get(RHSbits->getNumBits());
1464       if (isa<BitInit>(RHS))
1465         RHSTy = BitRecTy::get();
1466 
1467       // For UnsetInit, it's typed from the other hand.
1468       if (isa<UnsetInit>(MHS))
1469         MHSTy = RHSTy;
1470       if (isa<UnsetInit>(RHS))
1471         RHSTy = MHSTy;
1472 
1473       if (!MHSTy || !RHSTy) {
1474         TokError("could not get type for !if");
1475         return nullptr;
1476       }
1477 
1478       Type = resolveTypes(MHSTy, RHSTy);
1479       if (!Type) {
1480         TokError(Twine("inconsistent types '") + MHSTy->getAsString() +
1481                  "' and '" + RHSTy->getAsString() + "' for !if");
1482         return nullptr;
1483       }
1484       break;
1485     }
1486     case tgtok::XSubst: {
1487       TypedInit *RHSt = dyn_cast<TypedInit>(RHS);
1488       if (!RHSt) {
1489         TokError("could not get type for !subst");
1490         return nullptr;
1491       }
1492       Type = RHSt->getType();
1493       break;
1494     }
1495     }
1496     return (TernOpInit::get(Code, LHS, MHS, RHS, Type))->Fold(CurRec);
1497   }
1498 
1499   case tgtok::XCond:
1500     return ParseOperationCond(CurRec, ItemType);
1501 
1502   case tgtok::XFoldl: {
1503     // Value ::= !foldl '(' Value ',' Value ',' Id ',' Id ',' Expr ')'
1504     Lex.Lex(); // eat the operation
1505     if (!consume(tgtok::l_paren)) {
1506       TokError("expected '(' after !foldl");
1507       return nullptr;
1508     }
1509 
1510     Init *StartUntyped = ParseValue(CurRec);
1511     if (!StartUntyped)
1512       return nullptr;
1513 
1514     TypedInit *Start = dyn_cast<TypedInit>(StartUntyped);
1515     if (!Start) {
1516       TokError(Twine("could not get type of !foldl start: '") +
1517                StartUntyped->getAsString() + "'");
1518       return nullptr;
1519     }
1520 
1521     if (!consume(tgtok::comma)) {
1522       TokError("expected ',' in !foldl");
1523       return nullptr;
1524     }
1525 
1526     Init *ListUntyped = ParseValue(CurRec);
1527     if (!ListUntyped)
1528       return nullptr;
1529 
1530     TypedInit *List = dyn_cast<TypedInit>(ListUntyped);
1531     if (!List) {
1532       TokError(Twine("could not get type of !foldl list: '") +
1533                ListUntyped->getAsString() + "'");
1534       return nullptr;
1535     }
1536 
1537     ListRecTy *ListType = dyn_cast<ListRecTy>(List->getType());
1538     if (!ListType) {
1539       TokError(Twine("!foldl list must be a list, but is of type '") +
1540                List->getType()->getAsString());
1541       return nullptr;
1542     }
1543 
1544     if (Lex.getCode() != tgtok::comma) {
1545       TokError("expected ',' in !foldl");
1546       return nullptr;
1547     }
1548 
1549     if (Lex.Lex() != tgtok::Id) { // eat the ','
1550       TokError("third argument of !foldl must be an identifier");
1551       return nullptr;
1552     }
1553 
1554     Init *A = StringInit::get(Lex.getCurStrVal());
1555     if (CurRec && CurRec->getValue(A)) {
1556       TokError((Twine("left !foldl variable '") + A->getAsString() +
1557                 "' already defined")
1558                    .str());
1559       return nullptr;
1560     }
1561 
1562     if (Lex.Lex() != tgtok::comma) { // eat the id
1563       TokError("expected ',' in !foldl");
1564       return nullptr;
1565     }
1566 
1567     if (Lex.Lex() != tgtok::Id) { // eat the ','
1568       TokError("fourth argument of !foldl must be an identifier");
1569       return nullptr;
1570     }
1571 
1572     Init *B = StringInit::get(Lex.getCurStrVal());
1573     if (CurRec && CurRec->getValue(B)) {
1574       TokError((Twine("right !foldl variable '") + B->getAsString() +
1575                 "' already defined")
1576                    .str());
1577       return nullptr;
1578     }
1579 
1580     if (Lex.Lex() != tgtok::comma) { // eat the id
1581       TokError("expected ',' in !foldl");
1582       return nullptr;
1583     }
1584     Lex.Lex(); // eat the ','
1585 
1586     // We need to create a temporary record to provide a scope for the
1587     // two variables.
1588     std::unique_ptr<Record> ParseRecTmp;
1589     Record *ParseRec = CurRec;
1590     if (!ParseRec) {
1591       ParseRecTmp = std::make_unique<Record>(".parse", ArrayRef<SMLoc>{}, Records);
1592       ParseRec = ParseRecTmp.get();
1593     }
1594 
1595     ParseRec->addValue(RecordVal(A, Start->getType(), false));
1596     ParseRec->addValue(RecordVal(B, ListType->getElementType(), false));
1597     Init *ExprUntyped = ParseValue(ParseRec);
1598     ParseRec->removeValue(A);
1599     ParseRec->removeValue(B);
1600     if (!ExprUntyped)
1601       return nullptr;
1602 
1603     TypedInit *Expr = dyn_cast<TypedInit>(ExprUntyped);
1604     if (!Expr) {
1605       TokError("could not get type of !foldl expression");
1606       return nullptr;
1607     }
1608 
1609     if (Expr->getType() != Start->getType()) {
1610       TokError(Twine("!foldl expression must be of same type as start (") +
1611                Start->getType()->getAsString() + "), but is of type " +
1612                Expr->getType()->getAsString());
1613       return nullptr;
1614     }
1615 
1616     if (!consume(tgtok::r_paren)) {
1617       TokError("expected ')' in fold operator");
1618       return nullptr;
1619     }
1620 
1621     return FoldOpInit::get(Start, List, A, B, Expr, Start->getType())
1622         ->Fold(CurRec);
1623   }
1624   }
1625 }
1626 
1627 /// ParseOperatorType - Parse a type for an operator.  This returns
1628 /// null on error.
1629 ///
1630 /// OperatorType ::= '<' Type '>'
1631 ///
1632 RecTy *TGParser::ParseOperatorType() {
1633   RecTy *Type = nullptr;
1634 
1635   if (!consume(tgtok::less)) {
1636     TokError("expected type name for operator");
1637     return nullptr;
1638   }
1639 
1640   Type = ParseType();
1641 
1642   if (!Type) {
1643     TokError("expected type name for operator");
1644     return nullptr;
1645   }
1646 
1647   if (!consume(tgtok::greater)) {
1648     TokError("expected type name for operator");
1649     return nullptr;
1650   }
1651 
1652   return Type;
1653 }
1654 
1655 /// Parse the !foreach and !filter operations. Return null on error.
1656 ///
1657 /// ForEach ::= !foreach(ID, list-or-dag, expr) => list<expr type>
1658 /// Filter  ::= !foreach(ID, list, predicate) ==> list<list type>
1659 Init *TGParser::ParseOperationForEachFilter(Record *CurRec, RecTy *ItemType) {
1660   SMLoc OpLoc = Lex.getLoc();
1661   tgtok::TokKind Operation = Lex.getCode();
1662   Lex.Lex(); // eat the operation
1663   if (Lex.getCode() != tgtok::l_paren) {
1664     TokError("expected '(' after !foreach/!filter");
1665     return nullptr;
1666   }
1667 
1668   if (Lex.Lex() != tgtok::Id) { // eat the '('
1669     TokError("first argument of !foreach/!filter must be an identifier");
1670     return nullptr;
1671   }
1672 
1673   Init *LHS = StringInit::get(Lex.getCurStrVal());
1674   Lex.Lex(); // eat the ID.
1675 
1676   if (CurRec && CurRec->getValue(LHS)) {
1677     TokError((Twine("iteration variable '") + LHS->getAsString() +
1678               "' is already defined")
1679                  .str());
1680     return nullptr;
1681   }
1682 
1683   if (!consume(tgtok::comma)) {
1684     TokError("expected ',' in !foreach/!filter");
1685     return nullptr;
1686   }
1687 
1688   Init *MHS = ParseValue(CurRec);
1689   if (!MHS)
1690     return nullptr;
1691 
1692   if (!consume(tgtok::comma)) {
1693     TokError("expected ',' in !foreach/!filter");
1694     return nullptr;
1695   }
1696 
1697   TypedInit *MHSt = dyn_cast<TypedInit>(MHS);
1698   if (!MHSt) {
1699     TokError("could not get type of !foreach/!filter list or dag");
1700     return nullptr;
1701   }
1702 
1703   RecTy *InEltType = nullptr;
1704   RecTy *ExprEltType = nullptr;
1705   bool IsDAG = false;
1706 
1707   if (ListRecTy *InListTy = dyn_cast<ListRecTy>(MHSt->getType())) {
1708     InEltType = InListTy->getElementType();
1709     if (ItemType) {
1710       if (ListRecTy *OutListTy = dyn_cast<ListRecTy>(ItemType)) {
1711         ExprEltType = (Operation == tgtok::XForEach)
1712                           ? OutListTy->getElementType()
1713                           : IntRecTy::get();
1714       } else {
1715         Error(OpLoc,
1716               "expected value of type '" +
1717                   Twine(ItemType->getAsString()) +
1718                   "', but got list type");
1719         return nullptr;
1720       }
1721     }
1722   } else if (DagRecTy *InDagTy = dyn_cast<DagRecTy>(MHSt->getType())) {
1723     if (Operation == tgtok::XFilter) {
1724       TokError("!filter must have a list argument");
1725       return nullptr;
1726     }
1727     InEltType = InDagTy;
1728     if (ItemType && !isa<DagRecTy>(ItemType)) {
1729       Error(OpLoc,
1730             "expected value of type '" + Twine(ItemType->getAsString()) +
1731                 "', but got dag type");
1732       return nullptr;
1733     }
1734     IsDAG = true;
1735   } else {
1736     if (Operation == tgtok::XForEach)
1737       TokError("!foreach must have a list or dag argument");
1738     else
1739       TokError("!filter must have a list argument");
1740     return nullptr;
1741   }
1742 
1743   // We need to create a temporary record to provide a scope for the
1744   // iteration variable.
1745   std::unique_ptr<Record> ParseRecTmp;
1746   Record *ParseRec = CurRec;
1747   if (!ParseRec) {
1748     ParseRecTmp =
1749         std::make_unique<Record>(".parse", ArrayRef<SMLoc>{}, Records);
1750     ParseRec = ParseRecTmp.get();
1751   }
1752 
1753   ParseRec->addValue(RecordVal(LHS, InEltType, false));
1754   Init *RHS = ParseValue(ParseRec, ExprEltType);
1755   ParseRec->removeValue(LHS);
1756   if (!RHS)
1757     return nullptr;
1758 
1759   if (!consume(tgtok::r_paren)) {
1760     TokError("expected ')' in !foreach/!filter");
1761     return nullptr;
1762   }
1763 
1764   RecTy *OutType = InEltType;
1765   if (Operation == tgtok::XForEach && !IsDAG) {
1766     TypedInit *RHSt = dyn_cast<TypedInit>(RHS);
1767     if (!RHSt) {
1768       TokError("could not get type of !foreach result expression");
1769       return nullptr;
1770     }
1771     OutType = RHSt->getType()->getListTy();
1772   } else if (Operation == tgtok::XFilter) {
1773     OutType = InEltType->getListTy();
1774   }
1775 
1776   return (TernOpInit::get((Operation == tgtok::XForEach) ? TernOpInit::FOREACH
1777                                                          : TernOpInit::FILTER,
1778                           LHS, MHS, RHS, OutType))
1779       ->Fold(CurRec);
1780 }
1781 
1782 Init *TGParser::ParseOperationCond(Record *CurRec, RecTy *ItemType) {
1783   Lex.Lex();  // eat the operation 'cond'
1784 
1785   if (!consume(tgtok::l_paren)) {
1786     TokError("expected '(' after !cond operator");
1787     return nullptr;
1788   }
1789 
1790   // Parse through '[Case: Val,]+'
1791   SmallVector<Init *, 4> Case;
1792   SmallVector<Init *, 4> Val;
1793   while (true) {
1794     if (consume(tgtok::r_paren))
1795       break;
1796 
1797     Init *V = ParseValue(CurRec);
1798     if (!V)
1799       return nullptr;
1800     Case.push_back(V);
1801 
1802     if (!consume(tgtok::colon)) {
1803       TokError("expected ':'  following a condition in !cond operator");
1804       return nullptr;
1805     }
1806 
1807     V = ParseValue(CurRec, ItemType);
1808     if (!V)
1809       return nullptr;
1810     Val.push_back(V);
1811 
1812     if (consume(tgtok::r_paren))
1813       break;
1814 
1815     if (!consume(tgtok::comma)) {
1816       TokError("expected ',' or ')' following a value in !cond operator");
1817       return nullptr;
1818     }
1819   }
1820 
1821   if (Case.size() < 1) {
1822     TokError("there should be at least 1 'condition : value' in the !cond operator");
1823     return nullptr;
1824   }
1825 
1826   // resolve type
1827   RecTy *Type = nullptr;
1828   for (Init *V : Val) {
1829     RecTy *VTy = nullptr;
1830     if (TypedInit *Vt = dyn_cast<TypedInit>(V))
1831       VTy = Vt->getType();
1832     if (BitsInit *Vbits = dyn_cast<BitsInit>(V))
1833       VTy = BitsRecTy::get(Vbits->getNumBits());
1834     if (isa<BitInit>(V))
1835       VTy = BitRecTy::get();
1836 
1837     if (Type == nullptr) {
1838       if (!isa<UnsetInit>(V))
1839         Type = VTy;
1840     } else {
1841       if (!isa<UnsetInit>(V)) {
1842         RecTy *RType = resolveTypes(Type, VTy);
1843         if (!RType) {
1844           TokError(Twine("inconsistent types '") + Type->getAsString() +
1845                          "' and '" + VTy->getAsString() + "' for !cond");
1846           return nullptr;
1847         }
1848         Type = RType;
1849       }
1850     }
1851   }
1852 
1853   if (!Type) {
1854     TokError("could not determine type for !cond from its arguments");
1855     return nullptr;
1856   }
1857   return CondOpInit::get(Case, Val, Type)->Fold(CurRec);
1858 }
1859 
1860 /// ParseSimpleValue - Parse a tblgen value.  This returns null on error.
1861 ///
1862 ///   SimpleValue ::= IDValue
1863 ///   SimpleValue ::= INTVAL
1864 ///   SimpleValue ::= STRVAL+
1865 ///   SimpleValue ::= CODEFRAGMENT
1866 ///   SimpleValue ::= '?'
1867 ///   SimpleValue ::= '{' ValueList '}'
1868 ///   SimpleValue ::= ID '<' ValueListNE '>'
1869 ///   SimpleValue ::= '[' ValueList ']'
1870 ///   SimpleValue ::= '(' IDValue DagArgList ')'
1871 ///   SimpleValue ::= CONCATTOK '(' Value ',' Value ')'
1872 ///   SimpleValue ::= ADDTOK '(' Value ',' Value ')'
1873 ///   SimpleValue ::= SUBTOK '(' Value ',' Value ')'
1874 ///   SimpleValue ::= SHLTOK '(' Value ',' Value ')'
1875 ///   SimpleValue ::= SRATOK '(' Value ',' Value ')'
1876 ///   SimpleValue ::= SRLTOK '(' Value ',' Value ')'
1877 ///   SimpleValue ::= LISTCONCATTOK '(' Value ',' Value ')'
1878 ///   SimpleValue ::= LISTSPLATTOK '(' Value ',' Value ')'
1879 ///   SimpleValue ::= STRCONCATTOK '(' Value ',' Value ')'
1880 ///   SimpleValue ::= COND '(' [Value ':' Value,]+ ')'
1881 ///
1882 Init *TGParser::ParseSimpleValue(Record *CurRec, RecTy *ItemType,
1883                                  IDParseMode Mode) {
1884   Init *R = nullptr;
1885   switch (Lex.getCode()) {
1886   default: TokError("Unknown or reserved token when parsing a value"); break;
1887 
1888   case tgtok::TrueVal:
1889     R = IntInit::get(1);
1890     Lex.Lex();
1891     break;
1892   case tgtok::FalseVal:
1893     R = IntInit::get(0);
1894     Lex.Lex();
1895     break;
1896   case tgtok::IntVal:
1897     R = IntInit::get(Lex.getCurIntVal());
1898     Lex.Lex();
1899     break;
1900   case tgtok::BinaryIntVal: {
1901     auto BinaryVal = Lex.getCurBinaryIntVal();
1902     SmallVector<Init*, 16> Bits(BinaryVal.second);
1903     for (unsigned i = 0, e = BinaryVal.second; i != e; ++i)
1904       Bits[i] = BitInit::get(BinaryVal.first & (1LL << i));
1905     R = BitsInit::get(Bits);
1906     Lex.Lex();
1907     break;
1908   }
1909   case tgtok::StrVal: {
1910     std::string Val = Lex.getCurStrVal();
1911     Lex.Lex();
1912 
1913     // Handle multiple consecutive concatenated strings.
1914     while (Lex.getCode() == tgtok::StrVal) {
1915       Val += Lex.getCurStrVal();
1916       Lex.Lex();
1917     }
1918 
1919     R = StringInit::get(Val);
1920     break;
1921   }
1922   case tgtok::CodeFragment:
1923     R = CodeInit::get(Lex.getCurStrVal());
1924     Lex.Lex();
1925     break;
1926   case tgtok::question:
1927     R = UnsetInit::get();
1928     Lex.Lex();
1929     break;
1930   case tgtok::Id: {
1931     SMLoc NameLoc = Lex.getLoc();
1932     StringInit *Name = StringInit::get(Lex.getCurStrVal());
1933     if (Lex.Lex() != tgtok::less)  // consume the Id.
1934       return ParseIDValue(CurRec, Name, NameLoc, Mode);    // Value ::= IDValue
1935 
1936     // Value ::= ID '<' ValueListNE '>'
1937     if (Lex.Lex() == tgtok::greater) {
1938       TokError("expected non-empty value list");
1939       return nullptr;
1940     }
1941 
1942     // This is a CLASS<initvalslist> expression.  This is supposed to synthesize
1943     // a new anonymous definition, deriving from CLASS<initvalslist> with no
1944     // body.
1945     Record *Class = Records.getClass(Name->getValue());
1946     if (!Class) {
1947       Error(NameLoc, "Expected a class name, got '" + Name->getValue() + "'");
1948       return nullptr;
1949     }
1950 
1951     SmallVector<Init *, 8> Args;
1952     ParseValueList(Args, CurRec, Class);
1953     if (Args.empty()) return nullptr;
1954 
1955     if (!consume(tgtok::greater)) {
1956       TokError("expected '>' at end of value list");
1957       return nullptr;
1958     }
1959 
1960     // Typecheck the template arguments list
1961     ArrayRef<Init *> ExpectedArgs = Class->getTemplateArgs();
1962     if (ExpectedArgs.size() < Args.size()) {
1963       Error(NameLoc,
1964             "More template args specified than expected");
1965       return nullptr;
1966     }
1967 
1968     for (unsigned i = 0, e = ExpectedArgs.size(); i != e; ++i) {
1969       RecordVal *ExpectedArg = Class->getValue(ExpectedArgs[i]);
1970       if (i < Args.size()) {
1971         if (TypedInit *TI = dyn_cast<TypedInit>(Args[i])) {
1972           RecTy *ExpectedType = ExpectedArg->getType();
1973           if (!TI->getType()->typeIsConvertibleTo(ExpectedType)) {
1974             Error(NameLoc,
1975                   "Value specified for template argument #" + Twine(i) + " (" +
1976                   ExpectedArg->getNameInitAsString() + ") is of type '" +
1977                   TI->getType()->getAsString() + "', expected '" +
1978                   ExpectedType->getAsString() + "': " + TI->getAsString());
1979             return nullptr;
1980           }
1981           continue;
1982         }
1983       } else if (ExpectedArg->getValue()->isComplete())
1984         continue;
1985 
1986       Error(NameLoc,
1987             "Value not specified for template argument #" + Twine(i) + " (" +
1988             ExpectedArgs[i]->getAsUnquotedString() + ")");
1989       return nullptr;
1990     }
1991 
1992     return VarDefInit::get(Class, Args)->Fold();
1993   }
1994   case tgtok::l_brace: {           // Value ::= '{' ValueList '}'
1995     SMLoc BraceLoc = Lex.getLoc();
1996     Lex.Lex(); // eat the '{'
1997     SmallVector<Init*, 16> Vals;
1998 
1999     if (Lex.getCode() != tgtok::r_brace) {
2000       ParseValueList(Vals, CurRec);
2001       if (Vals.empty()) return nullptr;
2002     }
2003     if (!consume(tgtok::r_brace)) {
2004       TokError("expected '}' at end of bit list value");
2005       return nullptr;
2006     }
2007 
2008     SmallVector<Init *, 16> NewBits;
2009 
2010     // As we parse { a, b, ... }, 'a' is the highest bit, but we parse it
2011     // first.  We'll first read everything in to a vector, then we can reverse
2012     // it to get the bits in the correct order for the BitsInit value.
2013     for (unsigned i = 0, e = Vals.size(); i != e; ++i) {
2014       // FIXME: The following two loops would not be duplicated
2015       //        if the API was a little more orthogonal.
2016 
2017       // bits<n> values are allowed to initialize n bits.
2018       if (BitsInit *BI = dyn_cast<BitsInit>(Vals[i])) {
2019         for (unsigned i = 0, e = BI->getNumBits(); i != e; ++i)
2020           NewBits.push_back(BI->getBit((e - i) - 1));
2021         continue;
2022       }
2023       // bits<n> can also come from variable initializers.
2024       if (VarInit *VI = dyn_cast<VarInit>(Vals[i])) {
2025         if (BitsRecTy *BitsRec = dyn_cast<BitsRecTy>(VI->getType())) {
2026           for (unsigned i = 0, e = BitsRec->getNumBits(); i != e; ++i)
2027             NewBits.push_back(VI->getBit((e - i) - 1));
2028           continue;
2029         }
2030         // Fallthrough to try convert this to a bit.
2031       }
2032       // All other values must be convertible to just a single bit.
2033       Init *Bit = Vals[i]->getCastTo(BitRecTy::get());
2034       if (!Bit) {
2035         Error(BraceLoc, "Element #" + Twine(i) + " (" + Vals[i]->getAsString() +
2036               ") is not convertable to a bit");
2037         return nullptr;
2038       }
2039       NewBits.push_back(Bit);
2040     }
2041     std::reverse(NewBits.begin(), NewBits.end());
2042     return BitsInit::get(NewBits);
2043   }
2044   case tgtok::l_square: {          // Value ::= '[' ValueList ']'
2045     Lex.Lex(); // eat the '['
2046     SmallVector<Init*, 16> Vals;
2047 
2048     RecTy *DeducedEltTy = nullptr;
2049     ListRecTy *GivenListTy = nullptr;
2050 
2051     if (ItemType) {
2052       ListRecTy *ListType = dyn_cast<ListRecTy>(ItemType);
2053       if (!ListType) {
2054         TokError(Twine("Encountered a list when expecting a ") +
2055                  ItemType->getAsString());
2056         return nullptr;
2057       }
2058       GivenListTy = ListType;
2059     }
2060 
2061     if (Lex.getCode() != tgtok::r_square) {
2062       ParseValueList(Vals, CurRec, nullptr,
2063                      GivenListTy ? GivenListTy->getElementType() : nullptr);
2064       if (Vals.empty()) return nullptr;
2065     }
2066     if (!consume(tgtok::r_square)) {
2067       TokError("expected ']' at end of list value");
2068       return nullptr;
2069     }
2070 
2071     RecTy *GivenEltTy = nullptr;
2072     if (consume(tgtok::less)) {
2073       // Optional list element type
2074       GivenEltTy = ParseType();
2075       if (!GivenEltTy) {
2076         // Couldn't parse element type
2077         return nullptr;
2078       }
2079 
2080       if (!consume(tgtok::greater)) {
2081         TokError("expected '>' at end of list element type");
2082         return nullptr;
2083       }
2084     }
2085 
2086     // Check elements
2087     RecTy *EltTy = nullptr;
2088     for (Init *V : Vals) {
2089       TypedInit *TArg = dyn_cast<TypedInit>(V);
2090       if (TArg) {
2091         if (EltTy) {
2092           EltTy = resolveTypes(EltTy, TArg->getType());
2093           if (!EltTy) {
2094             TokError("Incompatible types in list elements");
2095             return nullptr;
2096           }
2097         } else {
2098           EltTy = TArg->getType();
2099         }
2100       }
2101     }
2102 
2103     if (GivenEltTy) {
2104       if (EltTy) {
2105         // Verify consistency
2106         if (!EltTy->typeIsConvertibleTo(GivenEltTy)) {
2107           TokError("Incompatible types in list elements");
2108           return nullptr;
2109         }
2110       }
2111       EltTy = GivenEltTy;
2112     }
2113 
2114     if (!EltTy) {
2115       if (!ItemType) {
2116         TokError("No type for list");
2117         return nullptr;
2118       }
2119       DeducedEltTy = GivenListTy->getElementType();
2120     } else {
2121       // Make sure the deduced type is compatible with the given type
2122       if (GivenListTy) {
2123         if (!EltTy->typeIsConvertibleTo(GivenListTy->getElementType())) {
2124           TokError(Twine("Element type mismatch for list: element type '") +
2125                    EltTy->getAsString() + "' not convertible to '" +
2126                    GivenListTy->getElementType()->getAsString());
2127           return nullptr;
2128         }
2129       }
2130       DeducedEltTy = EltTy;
2131     }
2132 
2133     return ListInit::get(Vals, DeducedEltTy);
2134   }
2135   case tgtok::l_paren: {         // Value ::= '(' IDValue DagArgList ')'
2136     Lex.Lex();   // eat the '('
2137     if (Lex.getCode() != tgtok::Id && Lex.getCode() != tgtok::XCast &&
2138         Lex.getCode() != tgtok::question && Lex.getCode() != tgtok::XGetDagOp) {
2139       TokError("expected identifier in dag init");
2140       return nullptr;
2141     }
2142 
2143     Init *Operator = ParseValue(CurRec);
2144     if (!Operator) return nullptr;
2145 
2146     // If the operator name is present, parse it.
2147     StringInit *OperatorName = nullptr;
2148     if (consume(tgtok::colon)) {
2149       if (Lex.getCode() != tgtok::VarName) { // eat the ':'
2150         TokError("expected variable name in dag operator");
2151         return nullptr;
2152       }
2153       OperatorName = StringInit::get(Lex.getCurStrVal());
2154       Lex.Lex();  // eat the VarName.
2155     }
2156 
2157     SmallVector<std::pair<llvm::Init*, StringInit*>, 8> DagArgs;
2158     if (Lex.getCode() != tgtok::r_paren) {
2159       ParseDagArgList(DagArgs, CurRec);
2160       if (DagArgs.empty()) return nullptr;
2161     }
2162 
2163     if (!consume(tgtok::r_paren)) {
2164       TokError("expected ')' in dag init");
2165       return nullptr;
2166     }
2167 
2168     return DagInit::get(Operator, OperatorName, DagArgs);
2169   }
2170 
2171   case tgtok::XHead:
2172   case tgtok::XTail:
2173   case tgtok::XSize:
2174   case tgtok::XEmpty:
2175   case tgtok::XCast:
2176   case tgtok::XGetDagOp: // Value ::= !unop '(' Value ')'
2177   case tgtok::XIsA:
2178   case tgtok::XConcat:
2179   case tgtok::XDag:
2180   case tgtok::XADD:
2181   case tgtok::XSUB:
2182   case tgtok::XMUL:
2183   case tgtok::XNOT:
2184   case tgtok::XAND:
2185   case tgtok::XOR:
2186   case tgtok::XXOR:
2187   case tgtok::XSRA:
2188   case tgtok::XSRL:
2189   case tgtok::XSHL:
2190   case tgtok::XEq:
2191   case tgtok::XNe:
2192   case tgtok::XLe:
2193   case tgtok::XLt:
2194   case tgtok::XGe:
2195   case tgtok::XGt:
2196   case tgtok::XListConcat:
2197   case tgtok::XListSplat:
2198   case tgtok::XStrConcat:
2199   case tgtok::XInterleave:
2200   case tgtok::XSetDagOp: // Value ::= !binop '(' Value ',' Value ')'
2201   case tgtok::XIf:
2202   case tgtok::XCond:
2203   case tgtok::XFoldl:
2204   case tgtok::XForEach:
2205   case tgtok::XFilter:
2206   case tgtok::XSubst: { // Value ::= !ternop '(' Value ',' Value ',' Value ')'
2207     return ParseOperation(CurRec, ItemType);
2208   }
2209   }
2210 
2211   return R;
2212 }
2213 
2214 /// ParseValue - Parse a tblgen value.  This returns null on error.
2215 ///
2216 ///   Value       ::= SimpleValue ValueSuffix*
2217 ///   ValueSuffix ::= '{' BitList '}'
2218 ///   ValueSuffix ::= '[' BitList ']'
2219 ///   ValueSuffix ::= '.' ID
2220 ///
2221 Init *TGParser::ParseValue(Record *CurRec, RecTy *ItemType, IDParseMode Mode) {
2222   Init *Result = ParseSimpleValue(CurRec, ItemType, Mode);
2223   if (!Result) return nullptr;
2224 
2225   // Parse the suffixes now if present.
2226   while (true) {
2227     switch (Lex.getCode()) {
2228     default: return Result;
2229     case tgtok::l_brace: {
2230       if (Mode == ParseNameMode)
2231         // This is the beginning of the object body.
2232         return Result;
2233 
2234       SMLoc CurlyLoc = Lex.getLoc();
2235       Lex.Lex(); // eat the '{'
2236       SmallVector<unsigned, 16> Ranges;
2237       ParseRangeList(Ranges);
2238       if (Ranges.empty()) return nullptr;
2239 
2240       // Reverse the bitlist.
2241       std::reverse(Ranges.begin(), Ranges.end());
2242       Result = Result->convertInitializerBitRange(Ranges);
2243       if (!Result) {
2244         Error(CurlyLoc, "Invalid bit range for value");
2245         return nullptr;
2246       }
2247 
2248       // Eat the '}'.
2249       if (!consume(tgtok::r_brace)) {
2250         TokError("expected '}' at end of bit range list");
2251         return nullptr;
2252       }
2253       break;
2254     }
2255     case tgtok::l_square: {
2256       SMLoc SquareLoc = Lex.getLoc();
2257       Lex.Lex(); // eat the '['
2258       SmallVector<unsigned, 16> Ranges;
2259       ParseRangeList(Ranges);
2260       if (Ranges.empty()) return nullptr;
2261 
2262       Result = Result->convertInitListSlice(Ranges);
2263       if (!Result) {
2264         Error(SquareLoc, "Invalid range for list slice");
2265         return nullptr;
2266       }
2267 
2268       // Eat the ']'.
2269       if (!consume(tgtok::r_square)) {
2270         TokError("expected ']' at end of list slice");
2271         return nullptr;
2272       }
2273       break;
2274     }
2275     case tgtok::dot: {
2276       if (Lex.Lex() != tgtok::Id) { // eat the .
2277         TokError("expected field identifier after '.'");
2278         return nullptr;
2279       }
2280       StringInit *FieldName = StringInit::get(Lex.getCurStrVal());
2281       if (!Result->getFieldType(FieldName)) {
2282         TokError("Cannot access field '" + Lex.getCurStrVal() + "' of value '" +
2283                  Result->getAsString() + "'");
2284         return nullptr;
2285       }
2286       Result = FieldInit::get(Result, FieldName)->Fold(CurRec);
2287       Lex.Lex();  // eat field name
2288       break;
2289     }
2290 
2291     case tgtok::paste:
2292       SMLoc PasteLoc = Lex.getLoc();
2293       TypedInit *LHS = dyn_cast<TypedInit>(Result);
2294       if (!LHS) {
2295         Error(PasteLoc, "LHS of paste is not typed!");
2296         return nullptr;
2297       }
2298 
2299       // Check if it's a 'listA # listB'
2300       if (isa<ListRecTy>(LHS->getType())) {
2301         Lex.Lex();  // Eat the '#'.
2302 
2303         assert(Mode == ParseValueMode && "encountered paste of lists in name");
2304 
2305         switch (Lex.getCode()) {
2306         case tgtok::colon:
2307         case tgtok::semi:
2308         case tgtok::l_brace:
2309           Result = LHS; // trailing paste, ignore.
2310           break;
2311         default:
2312           Init *RHSResult = ParseValue(CurRec, ItemType, ParseValueMode);
2313           if (!RHSResult)
2314             return nullptr;
2315           Result = BinOpInit::getListConcat(LHS, RHSResult);
2316           break;
2317         }
2318         break;
2319       }
2320 
2321       // Create a !strconcat() operation, first casting each operand to
2322       // a string if necessary.
2323       if (LHS->getType() != StringRecTy::get()) {
2324         auto CastLHS = dyn_cast<TypedInit>(
2325             UnOpInit::get(UnOpInit::CAST, LHS, StringRecTy::get())
2326                 ->Fold(CurRec));
2327         if (!CastLHS) {
2328           Error(PasteLoc,
2329                 Twine("can't cast '") + LHS->getAsString() + "' to string");
2330           return nullptr;
2331         }
2332         LHS = CastLHS;
2333       }
2334 
2335       TypedInit *RHS = nullptr;
2336 
2337       Lex.Lex();  // Eat the '#'.
2338       switch (Lex.getCode()) {
2339       case tgtok::colon:
2340       case tgtok::semi:
2341       case tgtok::l_brace:
2342         // These are all of the tokens that can begin an object body.
2343         // Some of these can also begin values but we disallow those cases
2344         // because they are unlikely to be useful.
2345 
2346         // Trailing paste, concat with an empty string.
2347         RHS = StringInit::get("");
2348         break;
2349 
2350       default:
2351         Init *RHSResult = ParseValue(CurRec, nullptr, ParseNameMode);
2352         if (!RHSResult)
2353           return nullptr;
2354         RHS = dyn_cast<TypedInit>(RHSResult);
2355         if (!RHS) {
2356           Error(PasteLoc, "RHS of paste is not typed!");
2357           return nullptr;
2358         }
2359 
2360         if (RHS->getType() != StringRecTy::get()) {
2361           auto CastRHS = dyn_cast<TypedInit>(
2362               UnOpInit::get(UnOpInit::CAST, RHS, StringRecTy::get())
2363                   ->Fold(CurRec));
2364           if (!CastRHS) {
2365             Error(PasteLoc,
2366                   Twine("can't cast '") + RHS->getAsString() + "' to string");
2367             return nullptr;
2368           }
2369           RHS = CastRHS;
2370         }
2371 
2372         break;
2373       }
2374 
2375       Result = BinOpInit::getStrConcat(LHS, RHS);
2376       break;
2377     }
2378   }
2379 }
2380 
2381 /// ParseDagArgList - Parse the argument list for a dag literal expression.
2382 ///
2383 ///    DagArg     ::= Value (':' VARNAME)?
2384 ///    DagArg     ::= VARNAME
2385 ///    DagArgList ::= DagArg
2386 ///    DagArgList ::= DagArgList ',' DagArg
2387 void TGParser::ParseDagArgList(
2388     SmallVectorImpl<std::pair<llvm::Init*, StringInit*>> &Result,
2389     Record *CurRec) {
2390 
2391   while (true) {
2392     // DagArg ::= VARNAME
2393     if (Lex.getCode() == tgtok::VarName) {
2394       // A missing value is treated like '?'.
2395       StringInit *VarName = StringInit::get(Lex.getCurStrVal());
2396       Result.emplace_back(UnsetInit::get(), VarName);
2397       Lex.Lex();
2398     } else {
2399       // DagArg ::= Value (':' VARNAME)?
2400       Init *Val = ParseValue(CurRec);
2401       if (!Val) {
2402         Result.clear();
2403         return;
2404       }
2405 
2406       // If the variable name is present, add it.
2407       StringInit *VarName = nullptr;
2408       if (Lex.getCode() == tgtok::colon) {
2409         if (Lex.Lex() != tgtok::VarName) { // eat the ':'
2410           TokError("expected variable name in dag literal");
2411           Result.clear();
2412           return;
2413         }
2414         VarName = StringInit::get(Lex.getCurStrVal());
2415         Lex.Lex();  // eat the VarName.
2416       }
2417 
2418       Result.push_back(std::make_pair(Val, VarName));
2419     }
2420     if (!consume(tgtok::comma))
2421       break;
2422   }
2423 }
2424 
2425 /// ParseValueList - Parse a comma separated list of values, returning them as a
2426 /// vector.  Note that this always expects to be able to parse at least one
2427 /// value.  It returns an empty list if this is not possible.
2428 ///
2429 ///   ValueList ::= Value (',' Value)
2430 ///
2431 void TGParser::ParseValueList(SmallVectorImpl<Init*> &Result, Record *CurRec,
2432                               Record *ArgsRec, RecTy *EltTy) {
2433   RecTy *ItemType = EltTy;
2434   unsigned int ArgN = 0;
2435   if (ArgsRec && !EltTy) {
2436     ArrayRef<Init *> TArgs = ArgsRec->getTemplateArgs();
2437     if (TArgs.empty()) {
2438       TokError("template argument provided to non-template class");
2439       Result.clear();
2440       return;
2441     }
2442     const RecordVal *RV = ArgsRec->getValue(TArgs[ArgN]);
2443     if (!RV) {
2444       errs() << "Cannot find template arg " << ArgN << " (" << TArgs[ArgN]
2445         << ")\n";
2446     }
2447     assert(RV && "Template argument record not found??");
2448     ItemType = RV->getType();
2449     ++ArgN;
2450   }
2451   Result.push_back(ParseValue(CurRec, ItemType));
2452   if (!Result.back()) {
2453     Result.clear();
2454     return;
2455   }
2456 
2457   while (consume(tgtok::comma)) {
2458     // ignore trailing comma for lists
2459     if (Lex.getCode() == tgtok::r_square)
2460       return;
2461 
2462     if (ArgsRec && !EltTy) {
2463       ArrayRef<Init *> TArgs = ArgsRec->getTemplateArgs();
2464       if (ArgN >= TArgs.size()) {
2465         TokError("too many template arguments");
2466         Result.clear();
2467         return;
2468       }
2469       const RecordVal *RV = ArgsRec->getValue(TArgs[ArgN]);
2470       assert(RV && "Template argument record not found??");
2471       ItemType = RV->getType();
2472       ++ArgN;
2473     }
2474     Result.push_back(ParseValue(CurRec, ItemType));
2475     if (!Result.back()) {
2476       Result.clear();
2477       return;
2478     }
2479   }
2480 }
2481 
2482 /// ParseDeclaration - Read a declaration, returning the name of field ID, or an
2483 /// empty string on error.  This can happen in a number of different context's,
2484 /// including within a def or in the template args for a def (which which case
2485 /// CurRec will be non-null) and within the template args for a multiclass (in
2486 /// which case CurRec will be null, but CurMultiClass will be set).  This can
2487 /// also happen within a def that is within a multiclass, which will set both
2488 /// CurRec and CurMultiClass.
2489 ///
2490 ///  Declaration ::= FIELD? Type ID ('=' Value)?
2491 ///
2492 Init *TGParser::ParseDeclaration(Record *CurRec,
2493                                        bool ParsingTemplateArgs) {
2494   // Read the field prefix if present.
2495   bool HasField = consume(tgtok::Field);
2496 
2497   RecTy *Type = ParseType();
2498   if (!Type) return nullptr;
2499 
2500   if (Lex.getCode() != tgtok::Id) {
2501     TokError("Expected identifier in declaration");
2502     return nullptr;
2503   }
2504 
2505   std::string Str = Lex.getCurStrVal();
2506   if (Str == "NAME") {
2507     TokError("'" + Str + "' is a reserved variable name");
2508     return nullptr;
2509   }
2510 
2511   SMLoc IdLoc = Lex.getLoc();
2512   Init *DeclName = StringInit::get(Str);
2513   Lex.Lex();
2514 
2515   if (ParsingTemplateArgs) {
2516     if (CurRec)
2517       DeclName = QualifyName(*CurRec, CurMultiClass, DeclName, ":");
2518     else
2519       assert(CurMultiClass);
2520     if (CurMultiClass)
2521       DeclName = QualifyName(CurMultiClass->Rec, CurMultiClass, DeclName,
2522                              "::");
2523   }
2524 
2525   // Add the value.
2526   if (AddValue(CurRec, IdLoc, RecordVal(DeclName, IdLoc, Type, HasField)))
2527     return nullptr;
2528 
2529   // If a value is present, parse it.
2530   if (consume(tgtok::equal)) {
2531     SMLoc ValLoc = Lex.getLoc();
2532     Init *Val = ParseValue(CurRec, Type);
2533     if (!Val ||
2534         SetValue(CurRec, ValLoc, DeclName, None, Val))
2535       // Return the name, even if an error is thrown.  This is so that we can
2536       // continue to make some progress, even without the value having been
2537       // initialized.
2538       return DeclName;
2539   }
2540 
2541   return DeclName;
2542 }
2543 
2544 /// ParseForeachDeclaration - Read a foreach declaration, returning
2545 /// the name of the declared object or a NULL Init on error.  Return
2546 /// the name of the parsed initializer list through ForeachListName.
2547 ///
2548 ///  ForeachDeclaration ::= ID '=' '{' RangeList '}'
2549 ///  ForeachDeclaration ::= ID '=' RangePiece
2550 ///  ForeachDeclaration ::= ID '=' Value
2551 ///
2552 VarInit *TGParser::ParseForeachDeclaration(Init *&ForeachListValue) {
2553   if (Lex.getCode() != tgtok::Id) {
2554     TokError("Expected identifier in foreach declaration");
2555     return nullptr;
2556   }
2557 
2558   Init *DeclName = StringInit::get(Lex.getCurStrVal());
2559   Lex.Lex();
2560 
2561   // If a value is present, parse it.
2562   if (!consume(tgtok::equal)) {
2563     TokError("Expected '=' in foreach declaration");
2564     return nullptr;
2565   }
2566 
2567   RecTy *IterType = nullptr;
2568   SmallVector<unsigned, 16> Ranges;
2569 
2570   switch (Lex.getCode()) {
2571   case tgtok::l_brace: { // '{' RangeList '}'
2572     Lex.Lex(); // eat the '{'
2573     ParseRangeList(Ranges);
2574     if (!consume(tgtok::r_brace)) {
2575       TokError("expected '}' at end of bit range list");
2576       return nullptr;
2577     }
2578     break;
2579   }
2580 
2581   default: {
2582     SMLoc ValueLoc = Lex.getLoc();
2583     Init *I = ParseValue(nullptr);
2584     if (!I)
2585       return nullptr;
2586 
2587     TypedInit *TI = dyn_cast<TypedInit>(I);
2588     if (TI && isa<ListRecTy>(TI->getType())) {
2589       ForeachListValue = I;
2590       IterType = cast<ListRecTy>(TI->getType())->getElementType();
2591       break;
2592     }
2593 
2594     if (TI) {
2595       if (ParseRangePiece(Ranges, TI))
2596         return nullptr;
2597       break;
2598     }
2599 
2600     std::string Type;
2601     if (TI)
2602       Type = (Twine("' of type '") + TI->getType()->getAsString()).str();
2603     Error(ValueLoc, "expected a list, got '" + I->getAsString() + Type + "'");
2604     if (CurMultiClass) {
2605       PrintNote({}, "references to multiclass template arguments cannot be "
2606                 "resolved at this time");
2607     }
2608     return nullptr;
2609   }
2610   }
2611 
2612 
2613   if (!Ranges.empty()) {
2614     assert(!IterType && "Type already initialized?");
2615     IterType = IntRecTy::get();
2616     std::vector<Init*> Values;
2617     for (unsigned R : Ranges)
2618       Values.push_back(IntInit::get(R));
2619     ForeachListValue = ListInit::get(Values, IterType);
2620   }
2621 
2622   if (!IterType)
2623     return nullptr;
2624 
2625   return VarInit::get(DeclName, IterType);
2626 }
2627 
2628 /// ParseTemplateArgList - Read a template argument list, which is a non-empty
2629 /// sequence of template-declarations in <>'s.  If CurRec is non-null, these are
2630 /// template args for a def, which may or may not be in a multiclass.  If null,
2631 /// these are the template args for a multiclass.
2632 ///
2633 ///    TemplateArgList ::= '<' Declaration (',' Declaration)* '>'
2634 ///
2635 bool TGParser::ParseTemplateArgList(Record *CurRec) {
2636   assert(Lex.getCode() == tgtok::less && "Not a template arg list!");
2637   Lex.Lex(); // eat the '<'
2638 
2639   Record *TheRecToAddTo = CurRec ? CurRec : &CurMultiClass->Rec;
2640 
2641   // Read the first declaration.
2642   Init *TemplArg = ParseDeclaration(CurRec, true/*templateargs*/);
2643   if (!TemplArg)
2644     return true;
2645 
2646   TheRecToAddTo->addTemplateArg(TemplArg);
2647 
2648   while (consume(tgtok::comma)) {
2649     // Read the following declarations.
2650     SMLoc Loc = Lex.getLoc();
2651     TemplArg = ParseDeclaration(CurRec, true/*templateargs*/);
2652     if (!TemplArg)
2653       return true;
2654 
2655     if (TheRecToAddTo->isTemplateArg(TemplArg))
2656       return Error(Loc, "template argument with the same name has already been "
2657                         "defined");
2658 
2659     TheRecToAddTo->addTemplateArg(TemplArg);
2660   }
2661 
2662   if (!consume(tgtok::greater))
2663     return TokError("expected '>' at end of template argument list");
2664   return false;
2665 }
2666 
2667 /// ParseBodyItem - Parse a single item at within the body of a def or class.
2668 ///
2669 ///   BodyItem ::= Declaration ';'
2670 ///   BodyItem ::= LET ID OptionalBitList '=' Value ';'
2671 ///   BodyItem ::= Defvar
2672 bool TGParser::ParseBodyItem(Record *CurRec) {
2673   if (Lex.getCode() == tgtok::Defvar)
2674     return ParseDefvar();
2675 
2676   if (Lex.getCode() != tgtok::Let) {
2677     if (!ParseDeclaration(CurRec, false))
2678       return true;
2679 
2680     if (!consume(tgtok::semi))
2681       return TokError("expected ';' after declaration");
2682     return false;
2683   }
2684 
2685   // LET ID OptionalRangeList '=' Value ';'
2686   if (Lex.Lex() != tgtok::Id)
2687     return TokError("expected field identifier after let");
2688 
2689   SMLoc IdLoc = Lex.getLoc();
2690   StringInit *FieldName = StringInit::get(Lex.getCurStrVal());
2691   Lex.Lex();  // eat the field name.
2692 
2693   SmallVector<unsigned, 16> BitList;
2694   if (ParseOptionalBitList(BitList))
2695     return true;
2696   std::reverse(BitList.begin(), BitList.end());
2697 
2698   if (!consume(tgtok::equal))
2699     return TokError("expected '=' in let expression");
2700 
2701   RecordVal *Field = CurRec->getValue(FieldName);
2702   if (!Field)
2703     return TokError("Value '" + FieldName->getValue() + "' unknown!");
2704 
2705   RecTy *Type = Field->getType();
2706   if (!BitList.empty() && isa<BitsRecTy>(Type)) {
2707     // When assigning to a subset of a 'bits' object, expect the RHS to have
2708     // the type of that subset instead of the type of the whole object.
2709     Type = BitsRecTy::get(BitList.size());
2710   }
2711 
2712   Init *Val = ParseValue(CurRec, Type);
2713   if (!Val) return true;
2714 
2715   if (!consume(tgtok::semi))
2716     return TokError("expected ';' after let expression");
2717 
2718   return SetValue(CurRec, IdLoc, FieldName, BitList, Val);
2719 }
2720 
2721 /// ParseBody - Read the body of a class or def.  Return true on error, false on
2722 /// success.
2723 ///
2724 ///   Body     ::= ';'
2725 ///   Body     ::= '{' BodyList '}'
2726 ///   BodyList BodyItem*
2727 ///
2728 bool TGParser::ParseBody(Record *CurRec) {
2729   // If this is a null definition, just eat the semi and return.
2730   if (consume(tgtok::semi))
2731     return false;
2732 
2733   if (!consume(tgtok::l_brace))
2734     return TokError("Expected ';' or '{' to start body");
2735 
2736   // An object body introduces a new scope for local variables.
2737   TGLocalVarScope *BodyScope = PushLocalScope();
2738 
2739   while (Lex.getCode() != tgtok::r_brace)
2740     if (ParseBodyItem(CurRec))
2741       return true;
2742 
2743   PopLocalScope(BodyScope);
2744 
2745   // Eat the '}'.
2746   Lex.Lex();
2747   return false;
2748 }
2749 
2750 /// Apply the current let bindings to \a CurRec.
2751 /// \returns true on error, false otherwise.
2752 bool TGParser::ApplyLetStack(Record *CurRec) {
2753   for (SmallVectorImpl<LetRecord> &LetInfo : LetStack)
2754     for (LetRecord &LR : LetInfo)
2755       if (SetValue(CurRec, LR.Loc, LR.Name, LR.Bits, LR.Value))
2756         return true;
2757   return false;
2758 }
2759 
2760 bool TGParser::ApplyLetStack(RecordsEntry &Entry) {
2761   if (Entry.Rec)
2762     return ApplyLetStack(Entry.Rec.get());
2763 
2764   for (auto &E : Entry.Loop->Entries) {
2765     if (ApplyLetStack(E))
2766       return true;
2767   }
2768 
2769   return false;
2770 }
2771 
2772 /// ParseObjectBody - Parse the body of a def or class.  This consists of an
2773 /// optional ClassList followed by a Body.  CurRec is the current def or class
2774 /// that is being parsed.
2775 ///
2776 ///   ObjectBody      ::= BaseClassList Body
2777 ///   BaseClassList   ::= /*empty*/
2778 ///   BaseClassList   ::= ':' BaseClassListNE
2779 ///   BaseClassListNE ::= SubClassRef (',' SubClassRef)*
2780 ///
2781 bool TGParser::ParseObjectBody(Record *CurRec) {
2782   // If there is a baseclass list, read it.
2783   if (consume(tgtok::colon)) {
2784 
2785     // Read all of the subclasses.
2786     SubClassReference SubClass = ParseSubClassReference(CurRec, false);
2787     while (true) {
2788       // Check for error.
2789       if (!SubClass.Rec) return true;
2790 
2791       // Add it.
2792       if (AddSubClass(CurRec, SubClass))
2793         return true;
2794 
2795       if (!consume(tgtok::comma))
2796         break;
2797       SubClass = ParseSubClassReference(CurRec, false);
2798     }
2799   }
2800 
2801   if (ApplyLetStack(CurRec))
2802     return true;
2803 
2804   return ParseBody(CurRec);
2805 }
2806 
2807 /// ParseDef - Parse and return a top level or multiclass def, return the record
2808 /// corresponding to it.  This returns null on error.
2809 ///
2810 ///   DefInst ::= DEF ObjectName ObjectBody
2811 ///
2812 bool TGParser::ParseDef(MultiClass *CurMultiClass) {
2813   SMLoc DefLoc = Lex.getLoc();
2814   assert(Lex.getCode() == tgtok::Def && "Unknown tok");
2815   Lex.Lex();  // Eat the 'def' token.
2816 
2817   // Parse ObjectName and make a record for it.
2818   std::unique_ptr<Record> CurRec;
2819   Init *Name = ParseObjectName(CurMultiClass);
2820   if (!Name)
2821     return true;
2822 
2823   if (isa<UnsetInit>(Name))
2824     CurRec = std::make_unique<Record>(Records.getNewAnonymousName(), DefLoc, Records,
2825                                  /*Anonymous=*/true);
2826   else
2827     CurRec = std::make_unique<Record>(Name, DefLoc, Records);
2828 
2829   if (ParseObjectBody(CurRec.get()))
2830     return true;
2831 
2832   return addEntry(std::move(CurRec));
2833 }
2834 
2835 /// ParseDefset - Parse a defset statement.
2836 ///
2837 ///   Defset ::= DEFSET Type Id '=' '{' ObjectList '}'
2838 ///
2839 bool TGParser::ParseDefset() {
2840   assert(Lex.getCode() == tgtok::Defset);
2841   Lex.Lex(); // Eat the 'defset' token
2842 
2843   DefsetRecord Defset;
2844   Defset.Loc = Lex.getLoc();
2845   RecTy *Type = ParseType();
2846   if (!Type)
2847     return true;
2848   if (!isa<ListRecTy>(Type))
2849     return Error(Defset.Loc, "expected list type");
2850   Defset.EltTy = cast<ListRecTy>(Type)->getElementType();
2851 
2852   if (Lex.getCode() != tgtok::Id)
2853     return TokError("expected identifier");
2854   StringInit *DeclName = StringInit::get(Lex.getCurStrVal());
2855   if (Records.getGlobal(DeclName->getValue()))
2856     return TokError("def or global variable of this name already exists");
2857 
2858   if (Lex.Lex() != tgtok::equal) // Eat the identifier
2859     return TokError("expected '='");
2860   if (Lex.Lex() != tgtok::l_brace) // Eat the '='
2861     return TokError("expected '{'");
2862   SMLoc BraceLoc = Lex.getLoc();
2863   Lex.Lex(); // Eat the '{'
2864 
2865   Defsets.push_back(&Defset);
2866   bool Err = ParseObjectList(nullptr);
2867   Defsets.pop_back();
2868   if (Err)
2869     return true;
2870 
2871   if (!consume(tgtok::r_brace)) {
2872     TokError("expected '}' at end of defset");
2873     return Error(BraceLoc, "to match this '{'");
2874   }
2875 
2876   Records.addExtraGlobal(DeclName->getValue(),
2877                          ListInit::get(Defset.Elements, Defset.EltTy));
2878   return false;
2879 }
2880 
2881 /// ParseDefvar - Parse a defvar statement.
2882 ///
2883 ///   Defvar ::= DEFVAR Id '=' Value ';'
2884 ///
2885 bool TGParser::ParseDefvar() {
2886   assert(Lex.getCode() == tgtok::Defvar);
2887   Lex.Lex(); // Eat the 'defvar' token
2888 
2889   if (Lex.getCode() != tgtok::Id)
2890     return TokError("expected identifier");
2891   StringInit *DeclName = StringInit::get(Lex.getCurStrVal());
2892   if (CurLocalScope) {
2893     if (CurLocalScope->varAlreadyDefined(DeclName->getValue()))
2894       return TokError("local variable of this name already exists");
2895   } else {
2896     if (Records.getGlobal(DeclName->getValue()))
2897       return TokError("def or global variable of this name already exists");
2898   }
2899 
2900   Lex.Lex();
2901   if (!consume(tgtok::equal))
2902     return TokError("expected '='");
2903 
2904   Init *Value = ParseValue(nullptr);
2905   if (!Value)
2906     return true;
2907 
2908   if (!consume(tgtok::semi))
2909     return TokError("expected ';'");
2910 
2911   if (CurLocalScope)
2912     CurLocalScope->addVar(DeclName->getValue(), Value);
2913   else
2914     Records.addExtraGlobal(DeclName->getValue(), Value);
2915 
2916   return false;
2917 }
2918 
2919 /// ParseForeach - Parse a for statement.  Return the record corresponding
2920 /// to it.  This returns true on error.
2921 ///
2922 ///   Foreach ::= FOREACH Declaration IN '{ ObjectList '}'
2923 ///   Foreach ::= FOREACH Declaration IN Object
2924 ///
2925 bool TGParser::ParseForeach(MultiClass *CurMultiClass) {
2926   SMLoc Loc = Lex.getLoc();
2927   assert(Lex.getCode() == tgtok::Foreach && "Unknown tok");
2928   Lex.Lex();  // Eat the 'for' token.
2929 
2930   // Make a temporary object to record items associated with the for
2931   // loop.
2932   Init *ListValue = nullptr;
2933   VarInit *IterName = ParseForeachDeclaration(ListValue);
2934   if (!IterName)
2935     return TokError("expected declaration in for");
2936 
2937   if (!consume(tgtok::In))
2938     return TokError("Unknown tok");
2939 
2940   // Create a loop object and remember it.
2941   Loops.push_back(std::make_unique<ForeachLoop>(Loc, IterName, ListValue));
2942 
2943   // A foreach loop introduces a new scope for local variables.
2944   TGLocalVarScope *ForeachScope = PushLocalScope();
2945 
2946   if (Lex.getCode() != tgtok::l_brace) {
2947     // FOREACH Declaration IN Object
2948     if (ParseObject(CurMultiClass))
2949       return true;
2950   } else {
2951     SMLoc BraceLoc = Lex.getLoc();
2952     // Otherwise, this is a group foreach.
2953     Lex.Lex();  // eat the '{'.
2954 
2955     // Parse the object list.
2956     if (ParseObjectList(CurMultiClass))
2957       return true;
2958 
2959     if (!consume(tgtok::r_brace)) {
2960       TokError("expected '}' at end of foreach command");
2961       return Error(BraceLoc, "to match this '{'");
2962     }
2963   }
2964 
2965   PopLocalScope(ForeachScope);
2966 
2967   // Resolve the loop or store it for later resolution.
2968   std::unique_ptr<ForeachLoop> Loop = std::move(Loops.back());
2969   Loops.pop_back();
2970 
2971   return addEntry(std::move(Loop));
2972 }
2973 
2974 /// ParseIf - Parse an if statement.
2975 ///
2976 ///   If ::= IF Value THEN IfBody
2977 ///   If ::= IF Value THEN IfBody ELSE IfBody
2978 ///
2979 bool TGParser::ParseIf(MultiClass *CurMultiClass) {
2980   SMLoc Loc = Lex.getLoc();
2981   assert(Lex.getCode() == tgtok::If && "Unknown tok");
2982   Lex.Lex(); // Eat the 'if' token.
2983 
2984   // Make a temporary object to record items associated with the for
2985   // loop.
2986   Init *Condition = ParseValue(nullptr);
2987   if (!Condition)
2988     return true;
2989 
2990   if (!consume(tgtok::Then))
2991     return TokError("Unknown tok");
2992 
2993   // We have to be able to save if statements to execute later, and they have
2994   // to live on the same stack as foreach loops. The simplest implementation
2995   // technique is to convert each 'then' or 'else' clause *into* a foreach
2996   // loop, over a list of length 0 or 1 depending on the condition, and with no
2997   // iteration variable being assigned.
2998 
2999   ListInit *EmptyList = ListInit::get({}, BitRecTy::get());
3000   ListInit *SingletonList = ListInit::get({BitInit::get(1)}, BitRecTy::get());
3001   RecTy *BitListTy = ListRecTy::get(BitRecTy::get());
3002 
3003   // The foreach containing the then-clause selects SingletonList if
3004   // the condition is true.
3005   Init *ThenClauseList =
3006       TernOpInit::get(TernOpInit::IF, Condition, SingletonList, EmptyList,
3007                       BitListTy)
3008           ->Fold(nullptr);
3009   Loops.push_back(std::make_unique<ForeachLoop>(Loc, nullptr, ThenClauseList));
3010 
3011   if (ParseIfBody(CurMultiClass, "then"))
3012     return true;
3013 
3014   std::unique_ptr<ForeachLoop> Loop = std::move(Loops.back());
3015   Loops.pop_back();
3016 
3017   if (addEntry(std::move(Loop)))
3018     return true;
3019 
3020   // Now look for an optional else clause. The if-else syntax has the usual
3021   // dangling-else ambiguity, and by greedily matching an else here if we can,
3022   // we implement the usual resolution of pairing with the innermost unmatched
3023   // if.
3024   if (consume(tgtok::ElseKW)) {
3025     // The foreach containing the else-clause uses the same pair of lists as
3026     // above, but this time, selects SingletonList if the condition is *false*.
3027     Init *ElseClauseList =
3028         TernOpInit::get(TernOpInit::IF, Condition, EmptyList, SingletonList,
3029                         BitListTy)
3030             ->Fold(nullptr);
3031     Loops.push_back(
3032         std::make_unique<ForeachLoop>(Loc, nullptr, ElseClauseList));
3033 
3034     if (ParseIfBody(CurMultiClass, "else"))
3035       return true;
3036 
3037     Loop = std::move(Loops.back());
3038     Loops.pop_back();
3039 
3040     if (addEntry(std::move(Loop)))
3041       return true;
3042   }
3043 
3044   return false;
3045 }
3046 
3047 /// ParseIfBody - Parse the then-clause or else-clause of an if statement.
3048 ///
3049 ///   IfBody ::= Object
3050 ///   IfBody ::= '{' ObjectList '}'
3051 ///
3052 bool TGParser::ParseIfBody(MultiClass *CurMultiClass, StringRef Kind) {
3053   TGLocalVarScope *BodyScope = PushLocalScope();
3054 
3055   if (Lex.getCode() != tgtok::l_brace) {
3056     // A single object.
3057     if (ParseObject(CurMultiClass))
3058       return true;
3059   } else {
3060     SMLoc BraceLoc = Lex.getLoc();
3061     // A braced block.
3062     Lex.Lex(); // eat the '{'.
3063 
3064     // Parse the object list.
3065     if (ParseObjectList(CurMultiClass))
3066       return true;
3067 
3068     if (!consume(tgtok::r_brace)) {
3069       TokError("expected '}' at end of '" + Kind + "' clause");
3070       return Error(BraceLoc, "to match this '{'");
3071     }
3072   }
3073 
3074   PopLocalScope(BodyScope);
3075   return false;
3076 }
3077 
3078 /// ParseClass - Parse a tblgen class definition.
3079 ///
3080 ///   ClassInst ::= CLASS ID TemplateArgList? ObjectBody
3081 ///
3082 bool TGParser::ParseClass() {
3083   assert(Lex.getCode() == tgtok::Class && "Unexpected token!");
3084   Lex.Lex();
3085 
3086   if (Lex.getCode() != tgtok::Id)
3087     return TokError("expected class name after 'class' keyword");
3088 
3089   Record *CurRec = Records.getClass(Lex.getCurStrVal());
3090   if (CurRec) {
3091     // If the body was previously defined, this is an error.
3092     if (!CurRec->getValues().empty() ||
3093         !CurRec->getSuperClasses().empty() ||
3094         !CurRec->getTemplateArgs().empty())
3095       return TokError("Class '" + CurRec->getNameInitAsString() +
3096                       "' already defined");
3097   } else {
3098     // If this is the first reference to this class, create and add it.
3099     auto NewRec =
3100         std::make_unique<Record>(Lex.getCurStrVal(), Lex.getLoc(), Records,
3101                                   /*Class=*/true);
3102     CurRec = NewRec.get();
3103     Records.addClass(std::move(NewRec));
3104   }
3105   Lex.Lex(); // eat the name.
3106 
3107   // If there are template args, parse them.
3108   if (Lex.getCode() == tgtok::less)
3109     if (ParseTemplateArgList(CurRec))
3110       return true;
3111 
3112   return ParseObjectBody(CurRec);
3113 }
3114 
3115 /// ParseLetList - Parse a non-empty list of assignment expressions into a list
3116 /// of LetRecords.
3117 ///
3118 ///   LetList ::= LetItem (',' LetItem)*
3119 ///   LetItem ::= ID OptionalRangeList '=' Value
3120 ///
3121 void TGParser::ParseLetList(SmallVectorImpl<LetRecord> &Result) {
3122   do {
3123     if (Lex.getCode() != tgtok::Id) {
3124       TokError("expected identifier in let definition");
3125       Result.clear();
3126       return;
3127     }
3128 
3129     StringInit *Name = StringInit::get(Lex.getCurStrVal());
3130     SMLoc NameLoc = Lex.getLoc();
3131     Lex.Lex();  // Eat the identifier.
3132 
3133     // Check for an optional RangeList.
3134     SmallVector<unsigned, 16> Bits;
3135     if (ParseOptionalRangeList(Bits)) {
3136       Result.clear();
3137       return;
3138     }
3139     std::reverse(Bits.begin(), Bits.end());
3140 
3141     if (!consume(tgtok::equal)) {
3142       TokError("expected '=' in let expression");
3143       Result.clear();
3144       return;
3145     }
3146 
3147     Init *Val = ParseValue(nullptr);
3148     if (!Val) {
3149       Result.clear();
3150       return;
3151     }
3152 
3153     // Now that we have everything, add the record.
3154     Result.emplace_back(Name, Bits, Val, NameLoc);
3155   } while (consume(tgtok::comma));
3156 }
3157 
3158 /// ParseTopLevelLet - Parse a 'let' at top level.  This can be a couple of
3159 /// different related productions. This works inside multiclasses too.
3160 ///
3161 ///   Object ::= LET LetList IN '{' ObjectList '}'
3162 ///   Object ::= LET LetList IN Object
3163 ///
3164 bool TGParser::ParseTopLevelLet(MultiClass *CurMultiClass) {
3165   assert(Lex.getCode() == tgtok::Let && "Unexpected token");
3166   Lex.Lex();
3167 
3168   // Add this entry to the let stack.
3169   SmallVector<LetRecord, 8> LetInfo;
3170   ParseLetList(LetInfo);
3171   if (LetInfo.empty()) return true;
3172   LetStack.push_back(std::move(LetInfo));
3173 
3174   if (!consume(tgtok::In))
3175     return TokError("expected 'in' at end of top-level 'let'");
3176 
3177   TGLocalVarScope *LetScope = PushLocalScope();
3178 
3179   // If this is a scalar let, just handle it now
3180   if (Lex.getCode() != tgtok::l_brace) {
3181     // LET LetList IN Object
3182     if (ParseObject(CurMultiClass))
3183       return true;
3184   } else {   // Object ::= LETCommand '{' ObjectList '}'
3185     SMLoc BraceLoc = Lex.getLoc();
3186     // Otherwise, this is a group let.
3187     Lex.Lex();  // eat the '{'.
3188 
3189     // Parse the object list.
3190     if (ParseObjectList(CurMultiClass))
3191       return true;
3192 
3193     if (!consume(tgtok::r_brace)) {
3194       TokError("expected '}' at end of top level let command");
3195       return Error(BraceLoc, "to match this '{'");
3196     }
3197   }
3198 
3199   PopLocalScope(LetScope);
3200 
3201   // Outside this let scope, this let block is not active.
3202   LetStack.pop_back();
3203   return false;
3204 }
3205 
3206 /// ParseMultiClass - Parse a multiclass definition.
3207 ///
3208 ///  MultiClassInst ::= MULTICLASS ID TemplateArgList?
3209 ///                     ':' BaseMultiClassList '{' MultiClassObject+ '}'
3210 ///  MultiClassObject ::= DefInst
3211 ///  MultiClassObject ::= MultiClassInst
3212 ///  MultiClassObject ::= DefMInst
3213 ///  MultiClassObject ::= LETCommand '{' ObjectList '}'
3214 ///  MultiClassObject ::= LETCommand Object
3215 ///
3216 bool TGParser::ParseMultiClass() {
3217   assert(Lex.getCode() == tgtok::MultiClass && "Unexpected token");
3218   Lex.Lex();  // Eat the multiclass token.
3219 
3220   if (Lex.getCode() != tgtok::Id)
3221     return TokError("expected identifier after multiclass for name");
3222   std::string Name = Lex.getCurStrVal();
3223 
3224   auto Result =
3225     MultiClasses.insert(std::make_pair(Name,
3226                     std::make_unique<MultiClass>(Name, Lex.getLoc(),Records)));
3227 
3228   if (!Result.second)
3229     return TokError("multiclass '" + Name + "' already defined");
3230 
3231   CurMultiClass = Result.first->second.get();
3232   Lex.Lex();  // Eat the identifier.
3233 
3234   // If there are template args, parse them.
3235   if (Lex.getCode() == tgtok::less)
3236     if (ParseTemplateArgList(nullptr))
3237       return true;
3238 
3239   bool inherits = false;
3240 
3241   // If there are submulticlasses, parse them.
3242   if (consume(tgtok::colon)) {
3243     inherits = true;
3244 
3245     // Read all of the submulticlasses.
3246     SubMultiClassReference SubMultiClass =
3247       ParseSubMultiClassReference(CurMultiClass);
3248     while (true) {
3249       // Check for error.
3250       if (!SubMultiClass.MC) return true;
3251 
3252       // Add it.
3253       if (AddSubMultiClass(CurMultiClass, SubMultiClass))
3254         return true;
3255 
3256       if (!consume(tgtok::comma))
3257         break;
3258       SubMultiClass = ParseSubMultiClassReference(CurMultiClass);
3259     }
3260   }
3261 
3262   if (Lex.getCode() != tgtok::l_brace) {
3263     if (!inherits)
3264       return TokError("expected '{' in multiclass definition");
3265     if (!consume(tgtok::semi))
3266       return TokError("expected ';' in multiclass definition");
3267   } else {
3268     if (Lex.Lex() == tgtok::r_brace)  // eat the '{'.
3269       return TokError("multiclass must contain at least one def");
3270 
3271     // A multiclass body introduces a new scope for local variables.
3272     TGLocalVarScope *MulticlassScope = PushLocalScope();
3273 
3274     while (Lex.getCode() != tgtok::r_brace) {
3275       switch (Lex.getCode()) {
3276       default:
3277         return TokError("expected 'let', 'def', 'defm', 'defvar', 'foreach' "
3278                         "or 'if' in multiclass body");
3279       case tgtok::Let:
3280       case tgtok::Def:
3281       case tgtok::Defm:
3282       case tgtok::Defvar:
3283       case tgtok::Foreach:
3284       case tgtok::If:
3285         if (ParseObject(CurMultiClass))
3286           return true;
3287         break;
3288       }
3289     }
3290     Lex.Lex();  // eat the '}'.
3291 
3292     PopLocalScope(MulticlassScope);
3293   }
3294 
3295   CurMultiClass = nullptr;
3296   return false;
3297 }
3298 
3299 /// ParseDefm - Parse the instantiation of a multiclass.
3300 ///
3301 ///   DefMInst ::= DEFM ID ':' DefmSubClassRef ';'
3302 ///
3303 bool TGParser::ParseDefm(MultiClass *CurMultiClass) {
3304   assert(Lex.getCode() == tgtok::Defm && "Unexpected token!");
3305   Lex.Lex(); // eat the defm
3306 
3307   Init *DefmName = ParseObjectName(CurMultiClass);
3308   if (!DefmName)
3309     return true;
3310   if (isa<UnsetInit>(DefmName)) {
3311     DefmName = Records.getNewAnonymousName();
3312     if (CurMultiClass)
3313       DefmName = BinOpInit::getStrConcat(
3314           VarInit::get(QualifiedNameOfImplicitName(CurMultiClass),
3315                        StringRecTy::get()),
3316           DefmName);
3317   }
3318 
3319   if (Lex.getCode() != tgtok::colon)
3320     return TokError("expected ':' after defm identifier");
3321 
3322   // Keep track of the new generated record definitions.
3323   std::vector<RecordsEntry> NewEntries;
3324 
3325   // This record also inherits from a regular class (non-multiclass)?
3326   bool InheritFromClass = false;
3327 
3328   // eat the colon.
3329   Lex.Lex();
3330 
3331   SMLoc SubClassLoc = Lex.getLoc();
3332   SubClassReference Ref = ParseSubClassReference(nullptr, true);
3333 
3334   while (true) {
3335     if (!Ref.Rec) return true;
3336 
3337     // To instantiate a multiclass, we need to first get the multiclass, then
3338     // instantiate each def contained in the multiclass with the SubClassRef
3339     // template parameters.
3340     MultiClass *MC = MultiClasses[std::string(Ref.Rec->getName())].get();
3341     assert(MC && "Didn't lookup multiclass correctly?");
3342     ArrayRef<Init*> TemplateVals = Ref.TemplateArgs;
3343 
3344     // Verify that the correct number of template arguments were specified.
3345     ArrayRef<Init *> TArgs = MC->Rec.getTemplateArgs();
3346     if (TArgs.size() < TemplateVals.size())
3347       return Error(SubClassLoc,
3348                    "more template args specified than multiclass expects");
3349 
3350     SubstStack Substs;
3351     for (unsigned i = 0, e = TArgs.size(); i != e; ++i) {
3352       if (i < TemplateVals.size()) {
3353         Substs.emplace_back(TArgs[i], TemplateVals[i]);
3354       } else {
3355         Init *Default = MC->Rec.getValue(TArgs[i])->getValue();
3356         if (!Default->isComplete()) {
3357           return Error(SubClassLoc,
3358                        "value not specified for template argument #" +
3359                            Twine(i) + " (" + TArgs[i]->getAsUnquotedString() +
3360                            ") of multiclass '" + MC->Rec.getNameInitAsString() +
3361                            "'");
3362         }
3363         Substs.emplace_back(TArgs[i], Default);
3364       }
3365     }
3366 
3367     Substs.emplace_back(QualifiedNameOfImplicitName(MC), DefmName);
3368 
3369     if (resolve(MC->Entries, Substs, CurMultiClass == nullptr, &NewEntries,
3370                 &SubClassLoc))
3371       return true;
3372 
3373     if (!consume(tgtok::comma))
3374       break;
3375 
3376     if (Lex.getCode() != tgtok::Id)
3377       return TokError("expected identifier");
3378 
3379     SubClassLoc = Lex.getLoc();
3380 
3381     // A defm can inherit from regular classes (non-multiclass) as
3382     // long as they come in the end of the inheritance list.
3383     InheritFromClass = (Records.getClass(Lex.getCurStrVal()) != nullptr);
3384 
3385     if (InheritFromClass)
3386       break;
3387 
3388     Ref = ParseSubClassReference(nullptr, true);
3389   }
3390 
3391   if (InheritFromClass) {
3392     // Process all the classes to inherit as if they were part of a
3393     // regular 'def' and inherit all record values.
3394     SubClassReference SubClass = ParseSubClassReference(nullptr, false);
3395     while (true) {
3396       // Check for error.
3397       if (!SubClass.Rec) return true;
3398 
3399       // Get the expanded definition prototypes and teach them about
3400       // the record values the current class to inherit has
3401       for (auto &E : NewEntries) {
3402         // Add it.
3403         if (AddSubClass(E, SubClass))
3404           return true;
3405       }
3406 
3407       if (!consume(tgtok::comma))
3408         break;
3409       SubClass = ParseSubClassReference(nullptr, false);
3410     }
3411   }
3412 
3413   for (auto &E : NewEntries) {
3414     if (ApplyLetStack(E))
3415       return true;
3416 
3417     addEntry(std::move(E));
3418   }
3419 
3420   if (!consume(tgtok::semi))
3421     return TokError("expected ';' at end of defm");
3422 
3423   return false;
3424 }
3425 
3426 /// ParseObject
3427 ///   Object ::= ClassInst
3428 ///   Object ::= DefInst
3429 ///   Object ::= MultiClassInst
3430 ///   Object ::= DefMInst
3431 ///   Object ::= LETCommand '{' ObjectList '}'
3432 ///   Object ::= LETCommand Object
3433 ///   Object ::= Defset
3434 ///   Object ::= Defvar
3435 bool TGParser::ParseObject(MultiClass *MC) {
3436   switch (Lex.getCode()) {
3437   default:
3438     return TokError("Expected class, def, defm, defset, multiclass, let, "
3439                     "foreach or if");
3440   case tgtok::Let:   return ParseTopLevelLet(MC);
3441   case tgtok::Def:   return ParseDef(MC);
3442   case tgtok::Foreach:   return ParseForeach(MC);
3443   case tgtok::If:    return ParseIf(MC);
3444   case tgtok::Defm:  return ParseDefm(MC);
3445   case tgtok::Defset:
3446     if (MC)
3447       return TokError("defset is not allowed inside multiclass");
3448     return ParseDefset();
3449   case tgtok::Defvar:
3450     return ParseDefvar();
3451   case tgtok::Class:
3452     if (MC)
3453       return TokError("class is not allowed inside multiclass");
3454     if (!Loops.empty())
3455       return TokError("class is not allowed inside foreach loop");
3456     return ParseClass();
3457   case tgtok::MultiClass:
3458     if (!Loops.empty())
3459       return TokError("multiclass is not allowed inside foreach loop");
3460     return ParseMultiClass();
3461   }
3462 }
3463 
3464 /// ParseObjectList
3465 ///   ObjectList :== Object*
3466 bool TGParser::ParseObjectList(MultiClass *MC) {
3467   while (isObjectStart(Lex.getCode())) {
3468     if (ParseObject(MC))
3469       return true;
3470   }
3471   return false;
3472 }
3473 
3474 bool TGParser::ParseFile() {
3475   Lex.Lex(); // Prime the lexer.
3476   if (ParseObjectList()) return true;
3477 
3478   // If we have unread input at the end of the file, report it.
3479   if (Lex.getCode() == tgtok::Eof)
3480     return false;
3481 
3482   return TokError("Unexpected input at top level");
3483 }
3484 
3485 #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
3486 LLVM_DUMP_METHOD void RecordsEntry::dump() const {
3487   if (Loop)
3488     Loop->dump();
3489   if (Rec)
3490     Rec->dump();
3491 }
3492 
3493 LLVM_DUMP_METHOD void ForeachLoop::dump() const {
3494   errs() << "foreach " << IterVar->getAsString() << " = "
3495          << ListValue->getAsString() << " in {\n";
3496 
3497   for (const auto &E : Entries)
3498     E.dump();
3499 
3500   errs() << "}\n";
3501 }
3502 
3503 LLVM_DUMP_METHOD void MultiClass::dump() const {
3504   errs() << "Record:\n";
3505   Rec.dump();
3506 
3507   errs() << "Defs:\n";
3508   for (const auto &E : Entries)
3509     E.dump();
3510 }
3511 #endif
3512