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Chris Lattnerf4601652007-11-22 20:49:04 +00001//===- TGParser.cpp - Parser for TableGen Files ---------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// Implement the Parser for TableGen.
11//
12//===----------------------------------------------------------------------===//
13
14#include "TGParser.h"
15#include "Record.h"
16#include "llvm/ADT/StringExtras.h"
17using namespace llvm;
18
19//===----------------------------------------------------------------------===//
20// Support Code for the Semantic Actions.
21//===----------------------------------------------------------------------===//
22
23namespace llvm {
24struct MultiClass {
25 Record Rec; // Placeholder for template args and Name.
26 std::vector<Record*> DefPrototypes;
27
28 MultiClass(const std::string &Name) : Rec(Name) {}
29};
30
31struct SubClassReference {
32 TGParser::LocTy RefLoc;
33 Record *Rec;
34 std::vector<Init*> TemplateArgs;
35 SubClassReference() : RefLoc(0), Rec(0) {}
36
37 bool isInvalid() const { return Rec == 0; }
38};
39
40} // end namespace llvm
41
42bool TGParser::AddValue(Record *CurRec, LocTy Loc, const RecordVal &RV) {
43 if (CurRec == 0)
44 CurRec = &CurMultiClass->Rec;
45
46 if (RecordVal *ERV = CurRec->getValue(RV.getName())) {
47 // The value already exists in the class, treat this as a set.
48 if (ERV->setValue(RV.getValue()))
49 return Error(Loc, "New definition of '" + RV.getName() + "' of type '" +
50 RV.getType()->getAsString() + "' is incompatible with " +
51 "previous definition of type '" +
52 ERV->getType()->getAsString() + "'");
53 } else {
54 CurRec->addValue(RV);
55 }
56 return false;
57}
58
59/// SetValue -
60/// Return true on error, false on success.
61bool TGParser::SetValue(Record *CurRec, LocTy Loc, const std::string &ValName,
62 const std::vector<unsigned> &BitList, Init *V) {
63 if (!V) return false;
64
65 if (CurRec == 0) CurRec = &CurMultiClass->Rec;
66
67 RecordVal *RV = CurRec->getValue(ValName);
68 if (RV == 0)
69 return Error(Loc, "Value '" + ValName + "' unknown!");
70
71 // Do not allow assignments like 'X = X'. This will just cause infinite loops
72 // in the resolution machinery.
73 if (BitList.empty())
74 if (VarInit *VI = dynamic_cast<VarInit*>(V))
75 if (VI->getName() == ValName)
76 return false;
77
78 // If we are assigning to a subset of the bits in the value... then we must be
79 // assigning to a field of BitsRecTy, which must have a BitsInit
80 // initializer.
81 //
82 if (!BitList.empty()) {
83 BitsInit *CurVal = dynamic_cast<BitsInit*>(RV->getValue());
84 if (CurVal == 0)
85 return Error(Loc, "Value '" + ValName + "' is not a bits type");
86
87 // Convert the incoming value to a bits type of the appropriate size...
88 Init *BI = V->convertInitializerTo(new BitsRecTy(BitList.size()));
89 if (BI == 0) {
90 V->convertInitializerTo(new BitsRecTy(BitList.size()));
91 return Error(Loc, "Initializer is not compatible with bit range");
92 }
93
94 // We should have a BitsInit type now.
95 BitsInit *BInit = dynamic_cast<BitsInit*>(BI);
96 assert(BInit != 0);
97
98 BitsInit *NewVal = new BitsInit(CurVal->getNumBits());
99
100 // Loop over bits, assigning values as appropriate.
101 for (unsigned i = 0, e = BitList.size(); i != e; ++i) {
102 unsigned Bit = BitList[i];
103 if (NewVal->getBit(Bit))
104 return Error(Loc, "Cannot set bit #" + utostr(Bit) + " of value '" +
105 ValName + "' more than once");
106 NewVal->setBit(Bit, BInit->getBit(i));
107 }
108
109 for (unsigned i = 0, e = CurVal->getNumBits(); i != e; ++i)
110 if (NewVal->getBit(i) == 0)
111 NewVal->setBit(i, CurVal->getBit(i));
112
113 V = NewVal;
114 }
115
116 if (RV->setValue(V))
117 return Error(Loc, "Value '" + ValName + "' of type '" +
118 RV->getType()->getAsString() +
119 "' is incompatible with initializer ''"); // FIXME: Add init!
120 return false;
121}
122
123/// AddSubClass - Add SubClass as a subclass to CurRec, resolving its template
124/// args as SubClass's template arguments.
125bool TGParser::AddSubClass(Record *CurRec, class SubClassReference &SubClass) {
126 Record *SC = SubClass.Rec;
127 // Add all of the values in the subclass into the current class.
128 const std::vector<RecordVal> &Vals = SC->getValues();
129 for (unsigned i = 0, e = Vals.size(); i != e; ++i)
130 if (AddValue(CurRec, SubClass.RefLoc, Vals[i]))
131 return true;
132
133 const std::vector<std::string> &TArgs = SC->getTemplateArgs();
134
135 // Ensure that an appropriate number of template arguments are specified.
136 if (TArgs.size() < SubClass.TemplateArgs.size())
137 return Error(SubClass.RefLoc, "More template args specified than expected");
138
139 // Loop over all of the template arguments, setting them to the specified
140 // value or leaving them as the default if necessary.
141 for (unsigned i = 0, e = TArgs.size(); i != e; ++i) {
142 if (i < SubClass.TemplateArgs.size()) {
143 // If a value is specified for this template arg, set it now.
144 if (SetValue(CurRec, SubClass.RefLoc, TArgs[i], std::vector<unsigned>(),
145 SubClass.TemplateArgs[i]))
146 return true;
147
148 // Resolve it next.
149 CurRec->resolveReferencesTo(CurRec->getValue(TArgs[i]));
150
151 // Now remove it.
152 CurRec->removeValue(TArgs[i]);
153
154 } else if (!CurRec->getValue(TArgs[i])->getValue()->isComplete()) {
155 return Error(SubClass.RefLoc,"Value not specified for template argument #"
156 + utostr(i) + " (" + TArgs[i] + ") of subclass '" +
157 SC->getName() + "'!");
158 }
159 }
160
161 // Since everything went well, we can now set the "superclass" list for the
162 // current record.
163 const std::vector<Record*> &SCs = SC->getSuperClasses();
164 for (unsigned i = 0, e = SCs.size(); i != e; ++i) {
165 if (CurRec->isSubClassOf(SCs[i]))
166 return Error(SubClass.RefLoc,
167 "Already subclass of '" + SCs[i]->getName() + "'!\n");
168 CurRec->addSuperClass(SCs[i]);
169 }
170
171 if (CurRec->isSubClassOf(SC))
172 return Error(SubClass.RefLoc,
173 "Already subclass of '" + SC->getName() + "'!\n");
174 CurRec->addSuperClass(SC);
175 return false;
176}
177
178//===----------------------------------------------------------------------===//
179// Parser Code
180//===----------------------------------------------------------------------===//
181
182/// isObjectStart - Return true if this is a valid first token for an Object.
183static bool isObjectStart(tgtok::TokKind K) {
184 return K == tgtok::Class || K == tgtok::Def ||
185 K == tgtok::Defm || K == tgtok::Let || K == tgtok::MultiClass;
186}
187
188/// ParseObjectName - If an object name is specified, return it. Otherwise,
189/// return an anonymous name.
190/// ObjectName ::= ID
191/// ObjectName ::= /*empty*/
192///
193std::string TGParser::ParseObjectName() {
194 if (Lex.getCode() == tgtok::Id) {
195 std::string Ret = Lex.getCurStrVal();
196 Lex.Lex();
197 return Ret;
198 }
199
200 static unsigned AnonCounter = 0;
201 return "anonymous."+utostr(AnonCounter++);
202}
203
204
205/// ParseClassID - Parse and resolve a reference to a class name. This returns
206/// null on error.
207///
208/// ClassID ::= ID
209///
210Record *TGParser::ParseClassID() {
211 if (Lex.getCode() != tgtok::Id) {
212 TokError("expected name for ClassID");
213 return 0;
214 }
215
216 Record *Result = Records.getClass(Lex.getCurStrVal());
217 if (Result == 0)
218 TokError("Couldn't find class '" + Lex.getCurStrVal() + "'");
219
220 Lex.Lex();
221 return Result;
222}
223
224Record *TGParser::ParseDefmID() {
225 if (Lex.getCode() != tgtok::Id) {
226 TokError("expected multiclass name");
227 return 0;
228 }
229
230 MultiClass *MC = MultiClasses[Lex.getCurStrVal()];
231 if (MC == 0) {
232 TokError("Couldn't find multiclass '" + Lex.getCurStrVal() + "'");
233 return 0;
234 }
235
236 Lex.Lex();
237 return &MC->Rec;
238}
239
240
241
242/// ParseSubClassReference - Parse a reference to a subclass or to a templated
243/// subclass. This returns a SubClassRefTy with a null Record* on error.
244///
245/// SubClassRef ::= ClassID
246/// SubClassRef ::= ClassID '<' ValueList '>'
247///
248SubClassReference TGParser::
249ParseSubClassReference(Record *CurRec, bool isDefm) {
250 SubClassReference Result;
251 Result.RefLoc = Lex.getLoc();
252
253 if (isDefm)
254 Result.Rec = ParseDefmID();
255 else
256 Result.Rec = ParseClassID();
257 if (Result.Rec == 0) return Result;
258
259 // If there is no template arg list, we're done.
260 if (Lex.getCode() != tgtok::less)
261 return Result;
262 Lex.Lex(); // Eat the '<'
263
264 if (Lex.getCode() == tgtok::greater) {
265 TokError("subclass reference requires a non-empty list of template values");
266 Result.Rec = 0;
267 return Result;
268 }
269
270 Result.TemplateArgs = ParseValueList(CurRec);
271 if (Result.TemplateArgs.empty()) {
272 Result.Rec = 0; // Error parsing value list.
273 return Result;
274 }
275
276 if (Lex.getCode() != tgtok::greater) {
277 TokError("expected '>' in template value list");
278 Result.Rec = 0;
279 return Result;
280 }
281 Lex.Lex();
282
283 return Result;
284}
285
286/// ParseRangePiece - Parse a bit/value range.
287/// RangePiece ::= INTVAL
288/// RangePiece ::= INTVAL '-' INTVAL
289/// RangePiece ::= INTVAL INTVAL
290bool TGParser::ParseRangePiece(std::vector<unsigned> &Ranges) {
291 assert(Lex.getCode() == tgtok::IntVal && "Invalid range");
292 int Start = Lex.getCurIntVal();
293 int End;
294
295 if (Start < 0)
296 return TokError("invalid range, cannot be negative");
297
298 switch (Lex.Lex()) { // eat first character.
299 default:
300 Ranges.push_back(Start);
301 return false;
302 case tgtok::minus:
303 if (Lex.Lex() != tgtok::IntVal) {
304 TokError("expected integer value as end of range");
305 return true;
306 }
307 End = Lex.getCurIntVal();
308 break;
309 case tgtok::IntVal:
310 End = -Lex.getCurIntVal();
311 break;
312 }
313 if (End < 0)
314 return TokError("invalid range, cannot be negative");
315 Lex.Lex();
316
317 // Add to the range.
318 if (Start < End) {
319 for (; Start <= End; ++Start)
320 Ranges.push_back(Start);
321 } else {
322 for (; Start >= End; --Start)
323 Ranges.push_back(Start);
324 }
325 return false;
326}
327
328/// ParseRangeList - Parse a list of scalars and ranges into scalar values.
329///
330/// RangeList ::= RangePiece (',' RangePiece)*
331///
332std::vector<unsigned> TGParser::ParseRangeList() {
333 std::vector<unsigned> Result;
334
335 // Parse the first piece.
336 if (ParseRangePiece(Result))
337 return std::vector<unsigned>();
338 while (Lex.getCode() == tgtok::comma) {
339 Lex.Lex(); // Eat the comma.
340
341 // Parse the next range piece.
342 if (ParseRangePiece(Result))
343 return std::vector<unsigned>();
344 }
345 return Result;
346}
347
348/// ParseOptionalRangeList - Parse either a range list in <>'s or nothing.
349/// OptionalRangeList ::= '<' RangeList '>'
350/// OptionalRangeList ::= /*empty*/
351bool TGParser::ParseOptionalRangeList(std::vector<unsigned> &Ranges) {
352 if (Lex.getCode() != tgtok::less)
353 return false;
354
355 LocTy StartLoc = Lex.getLoc();
356 Lex.Lex(); // eat the '<'
357
358 // Parse the range list.
359 Ranges = ParseRangeList();
360 if (Ranges.empty()) return true;
361
362 if (Lex.getCode() != tgtok::greater) {
363 TokError("expected '>' at end of range list");
364 return Error(StartLoc, "to match this '<'");
365 }
366 Lex.Lex(); // eat the '>'.
367 return false;
368}
369
370/// ParseOptionalBitList - Parse either a bit list in {}'s or nothing.
371/// OptionalBitList ::= '{' RangeList '}'
372/// OptionalBitList ::= /*empty*/
373bool TGParser::ParseOptionalBitList(std::vector<unsigned> &Ranges) {
374 if (Lex.getCode() != tgtok::l_brace)
375 return false;
376
377 LocTy StartLoc = Lex.getLoc();
378 Lex.Lex(); // eat the '{'
379
380 // Parse the range list.
381 Ranges = ParseRangeList();
382 if (Ranges.empty()) return true;
383
384 if (Lex.getCode() != tgtok::r_brace) {
385 TokError("expected '}' at end of bit list");
386 return Error(StartLoc, "to match this '{'");
387 }
388 Lex.Lex(); // eat the '}'.
389 return false;
390}
391
392
393/// ParseType - Parse and return a tblgen type. This returns null on error.
394///
395/// Type ::= STRING // string type
396/// Type ::= BIT // bit type
397/// Type ::= BITS '<' INTVAL '>' // bits<x> type
398/// Type ::= INT // int type
399/// Type ::= LIST '<' Type '>' // list<x> type
400/// Type ::= CODE // code type
401/// Type ::= DAG // dag type
402/// Type ::= ClassID // Record Type
403///
404RecTy *TGParser::ParseType() {
405 switch (Lex.getCode()) {
406 default: TokError("Unknown token when expecting a type"); return 0;
407 case tgtok::String: Lex.Lex(); return new StringRecTy();
408 case tgtok::Bit: Lex.Lex(); return new BitRecTy();
409 case tgtok::Int: Lex.Lex(); return new IntRecTy();
410 case tgtok::Code: Lex.Lex(); return new CodeRecTy();
411 case tgtok::Dag: Lex.Lex(); return new DagRecTy();
412 case tgtok::Id:
413 if (Record *R = ParseClassID()) return new RecordRecTy(R);
414 return 0;
415 case tgtok::Bits: {
416 if (Lex.Lex() != tgtok::less) { // Eat 'bits'
417 TokError("expected '<' after bits type");
418 return 0;
419 }
420 if (Lex.Lex() != tgtok::IntVal) { // Eat '<'
421 TokError("expected integer in bits<n> type");
422 return 0;
423 }
424 unsigned Val = Lex.getCurIntVal();
425 if (Lex.Lex() != tgtok::greater) { // Eat count.
426 TokError("expected '>' at end of bits<n> type");
427 return 0;
428 }
429 Lex.Lex(); // Eat '>'
430 return new BitsRecTy(Val);
431 }
432 case tgtok::List: {
433 if (Lex.Lex() != tgtok::less) { // Eat 'bits'
434 TokError("expected '<' after list type");
435 return 0;
436 }
437 Lex.Lex(); // Eat '<'
438 RecTy *SubType = ParseType();
439 if (SubType == 0) return 0;
440
441 if (Lex.getCode() != tgtok::greater) {
442 TokError("expected '>' at end of list<ty> type");
443 return 0;
444 }
445 Lex.Lex(); // Eat '>'
446 return new ListRecTy(SubType);
447 }
448 }
449}
450
451/// ParseIDValue - Parse an ID as a value and decode what it means.
452///
453/// IDValue ::= ID [def local value]
454/// IDValue ::= ID [def template arg]
455/// IDValue ::= ID [multiclass local value]
456/// IDValue ::= ID [multiclass template argument]
457/// IDValue ::= ID [def name]
458///
459Init *TGParser::ParseIDValue(Record *CurRec) {
460 assert(Lex.getCode() == tgtok::Id && "Expected ID in ParseIDValue");
461 std::string Name = Lex.getCurStrVal();
462 LocTy Loc = Lex.getLoc();
463 Lex.Lex();
464 return ParseIDValue(CurRec, Name, Loc);
465}
466
467/// ParseIDValue - This is just like ParseIDValue above, but it assumes the ID
468/// has already been read.
469Init *TGParser::ParseIDValue(Record *CurRec,
470 const std::string &Name, LocTy NameLoc) {
471 if (CurRec) {
472 if (const RecordVal *RV = CurRec->getValue(Name))
473 return new VarInit(Name, RV->getType());
474
475 std::string TemplateArgName = CurRec->getName()+":"+Name;
476 if (CurRec->isTemplateArg(TemplateArgName)) {
477 const RecordVal *RV = CurRec->getValue(TemplateArgName);
478 assert(RV && "Template arg doesn't exist??");
479 return new VarInit(TemplateArgName, RV->getType());
480 }
481 }
482
483 if (CurMultiClass) {
484 std::string MCName = CurMultiClass->Rec.getName()+"::"+Name;
485 if (CurMultiClass->Rec.isTemplateArg(MCName)) {
486 const RecordVal *RV = CurMultiClass->Rec.getValue(MCName);
487 assert(RV && "Template arg doesn't exist??");
488 return new VarInit(MCName, RV->getType());
489 }
490 }
491
492 if (Record *D = Records.getDef(Name))
493 return new DefInit(D);
494
495 Error(NameLoc, "Variable not defined: '" + Name + "'");
496 return 0;
497}
498
499/// ParseSimpleValue - Parse a tblgen value. This returns null on error.
500///
501/// SimpleValue ::= IDValue
502/// SimpleValue ::= INTVAL
503/// SimpleValue ::= STRVAL
504/// SimpleValue ::= CODEFRAGMENT
505/// SimpleValue ::= '?'
506/// SimpleValue ::= '{' ValueList '}'
507/// SimpleValue ::= ID '<' ValueListNE '>'
508/// SimpleValue ::= '[' ValueList ']'
509/// SimpleValue ::= '(' IDValue DagArgList ')'
510/// SimpleValue ::= CONCATTOK '(' Value ',' Value ')'
511/// SimpleValue ::= SHLTOK '(' Value ',' Value ')'
512/// SimpleValue ::= SRATOK '(' Value ',' Value ')'
513/// SimpleValue ::= SRLTOK '(' Value ',' Value ')'
514/// SimpleValue ::= STRCONCATTOK '(' Value ',' Value ')'
515///
516Init *TGParser::ParseSimpleValue(Record *CurRec) {
517 Init *R = 0;
518 switch (Lex.getCode()) {
519 default: TokError("Unknown token when parsing a value"); break;
520 case tgtok::IntVal: R = new IntInit(Lex.getCurIntVal()); Lex.Lex(); break;
521 case tgtok::StrVal: R = new StringInit(Lex.getCurStrVal()); Lex.Lex(); break;
522 case tgtok::CodeFragment:
523 R = new CodeInit(Lex.getCurStrVal()); Lex.Lex(); break;
524 case tgtok::question: R = new UnsetInit(); Lex.Lex(); break;
525 case tgtok::Id: {
526 LocTy NameLoc = Lex.getLoc();
527 std::string Name = Lex.getCurStrVal();
528 if (Lex.Lex() != tgtok::less) // consume the Id.
529 return ParseIDValue(CurRec, Name, NameLoc); // Value ::= IDValue
530
531 // Value ::= ID '<' ValueListNE '>'
532 if (Lex.Lex() == tgtok::greater) {
533 TokError("expected non-empty value list");
534 return 0;
535 }
536 std::vector<Init*> ValueList = ParseValueList(CurRec);
537 if (ValueList.empty()) return 0;
538
539 if (Lex.getCode() != tgtok::greater) {
540 TokError("expected '>' at end of value list");
541 return 0;
542 }
543 Lex.Lex(); // eat the '>'
544
545 // This is a CLASS<initvalslist> expression. This is supposed to synthesize
546 // a new anonymous definition, deriving from CLASS<initvalslist> with no
547 // body.
548 Record *Class = Records.getClass(Name);
549 if (!Class) {
550 Error(NameLoc, "Expected a class name, got '" + Name + "'");
551 return 0;
552 }
553
554 // Create the new record, set it as CurRec temporarily.
555 static unsigned AnonCounter = 0;
556 Record *NewRec = new Record("anonymous.val."+utostr(AnonCounter++));
557 SubClassReference SCRef;
558 SCRef.RefLoc = NameLoc;
559 SCRef.Rec = Class;
560 SCRef.TemplateArgs = ValueList;
561 // Add info about the subclass to NewRec.
562 if (AddSubClass(NewRec, SCRef))
563 return 0;
564 NewRec->resolveReferences();
565 Records.addDef(NewRec);
566
567 // The result of the expression is a reference to the new record.
568 return new DefInit(NewRec);
569 }
570 case tgtok::l_brace: { // Value ::= '{' ValueList '}'
571 LocTy BraceLoc = Lex.getLoc();
572 Lex.Lex(); // eat the '{'
573 std::vector<Init*> Vals;
574
575 if (Lex.getCode() != tgtok::r_brace) {
576 Vals = ParseValueList(CurRec);
577 if (Vals.empty()) return 0;
578 }
579 if (Lex.getCode() != tgtok::r_brace) {
580 TokError("expected '}' at end of bit list value");
581 return 0;
582 }
583 Lex.Lex(); // eat the '}'
584
585 BitsInit *Result = new BitsInit(Vals.size());
586 for (unsigned i = 0, e = Vals.size(); i != e; ++i) {
587 Init *Bit = Vals[i]->convertInitializerTo(new BitRecTy());
588 if (Bit == 0) {
589 // FIXME: Include value in error.
590 Error(BraceLoc, "Element #" + utostr(i) + " ("/* << *Vals[i]
591 <<*/ ") is not convertable to a bit");
592 return 0;
593 }
594 Result->setBit(Vals.size()-i-1, Bit);
595 }
596 return Result;
597 }
598 case tgtok::l_square: { // Value ::= '[' ValueList ']'
599 Lex.Lex(); // eat the '['
600 std::vector<Init*> Vals;
601
602 if (Lex.getCode() != tgtok::r_square) {
603 Vals = ParseValueList(CurRec);
604 if (Vals.empty()) return 0;
605 }
606 if (Lex.getCode() != tgtok::r_square) {
607 TokError("expected ']' at end of list value");
608 return 0;
609 }
610 Lex.Lex(); // eat the ']'
611 return new ListInit(Vals);
612 }
613 case tgtok::l_paren: { // Value ::= '(' IDValue DagArgList ')'
614 Lex.Lex(); // eat the '('
615 Init *Operator = ParseIDValue(CurRec);
616 if (Operator == 0) return 0;
617
618 std::vector<std::pair<llvm::Init*, std::string> > DagArgs;
619 if (Lex.getCode() != tgtok::r_paren) {
620 DagArgs = ParseDagArgList(CurRec);
621 if (DagArgs.empty()) return 0;
622 }
623
624 if (Lex.getCode() != tgtok::r_paren) {
625 TokError("expected ')' in dag init");
626 return 0;
627 }
628 Lex.Lex(); // eat the ')'
629
630 return new DagInit(Operator, DagArgs);
631 }
632 case tgtok::XConcat:
633 case tgtok::XSRA:
634 case tgtok::XSRL:
635 case tgtok::XSHL:
636 case tgtok::XStrConcat: { // Value ::= !binop '(' Value ',' Value ')'
637 BinOpInit::BinaryOp Code;
638 switch (Lex.getCode()) {
639 default: assert(0 && "Unhandled code!");
640 case tgtok::XConcat: Code = BinOpInit::CONCAT; break;
641 case tgtok::XSRA: Code = BinOpInit::SRA; break;
642 case tgtok::XSRL: Code = BinOpInit::SRL; break;
643 case tgtok::XSHL: Code = BinOpInit::SHL; break;
644 case tgtok::XStrConcat: Code = BinOpInit::STRCONCAT; break;
645 }
646 Lex.Lex(); // eat the operation
647 if (Lex.getCode() != tgtok::l_paren) {
648 TokError("expected '(' after binary operator");
649 return 0;
650 }
651 Lex.Lex(); // eat the '('
652
653 Init *LHS = ParseValue(CurRec);
654 if (LHS == 0) return 0;
655
656 if (Lex.getCode() != tgtok::comma) {
657 TokError("expected ',' in binary operator");
658 return 0;
659 }
660 Lex.Lex(); // eat the ','
661
662 Init *RHS = ParseValue(CurRec);
663 if (RHS == 0) return 0;
664
665 if (Lex.getCode() != tgtok::r_paren) {
666 TokError("expected ')' in binary operator");
667 return 0;
668 }
669 Lex.Lex(); // eat the ')'
670 return (new BinOpInit(Code, LHS, RHS))->Fold();
671 }
672 }
673
674 return R;
675}
676
677/// ParseValue - Parse a tblgen value. This returns null on error.
678///
679/// Value ::= SimpleValue ValueSuffix*
680/// ValueSuffix ::= '{' BitList '}'
681/// ValueSuffix ::= '[' BitList ']'
682/// ValueSuffix ::= '.' ID
683///
684Init *TGParser::ParseValue(Record *CurRec) {
685 Init *Result = ParseSimpleValue(CurRec);
686 if (Result == 0) return 0;
687
688 // Parse the suffixes now if present.
689 while (1) {
690 switch (Lex.getCode()) {
691 default: return Result;
692 case tgtok::l_brace: {
693 LocTy CurlyLoc = Lex.getLoc();
694 Lex.Lex(); // eat the '{'
695 std::vector<unsigned> Ranges = ParseRangeList();
696 if (Ranges.empty()) return 0;
697
698 // Reverse the bitlist.
699 std::reverse(Ranges.begin(), Ranges.end());
700 Result = Result->convertInitializerBitRange(Ranges);
701 if (Result == 0) {
702 Error(CurlyLoc, "Invalid bit range for value");
703 return 0;
704 }
705
706 // Eat the '}'.
707 if (Lex.getCode() != tgtok::r_brace) {
708 TokError("expected '}' at end of bit range list");
709 return 0;
710 }
711 Lex.Lex();
712 break;
713 }
714 case tgtok::l_square: {
715 LocTy SquareLoc = Lex.getLoc();
716 Lex.Lex(); // eat the '['
717 std::vector<unsigned> Ranges = ParseRangeList();
718 if (Ranges.empty()) return 0;
719
720 Result = Result->convertInitListSlice(Ranges);
721 if (Result == 0) {
722 Error(SquareLoc, "Invalid range for list slice");
723 return 0;
724 }
725
726 // Eat the ']'.
727 if (Lex.getCode() != tgtok::r_square) {
728 TokError("expected ']' at end of list slice");
729 return 0;
730 }
731 Lex.Lex();
732 break;
733 }
734 case tgtok::period:
735 if (Lex.Lex() != tgtok::Id) { // eat the .
736 TokError("expected field identifier after '.'");
737 return 0;
738 }
739 if (!Result->getFieldType(Lex.getCurStrVal())) {
740 // FIXME INCLUDE VALUE IN ERROR.
741 TokError("Cannot access field '" + Lex.getCurStrVal() + "' of value '" +
742 /*<< *$1 <<*/ "'");
743 return 0;
744 }
745 Result = new FieldInit(Result, Lex.getCurStrVal());
746 Lex.Lex(); // eat field name
747 break;
748 }
749 }
750}
751
752/// ParseDagArgList - Parse the argument list for a dag literal expression.
753///
754/// ParseDagArgList ::= Value (':' VARNAME)?
755/// ParseDagArgList ::= ParseDagArgList ',' Value (':' VARNAME)?
756std::vector<std::pair<llvm::Init*, std::string> >
757TGParser::ParseDagArgList(Record *CurRec) {
758 std::vector<std::pair<llvm::Init*, std::string> > Result;
759
760 while (1) {
761 Init *Val = ParseValue(CurRec);
762 if (Val == 0) return std::vector<std::pair<llvm::Init*, std::string> >();
763
764 // If the variable name is present, add it.
765 std::string VarName;
766 if (Lex.getCode() == tgtok::colon) {
767 if (Lex.Lex() != tgtok::VarName) { // eat the ':'
768 TokError("expected variable name in dag literal");
769 return std::vector<std::pair<llvm::Init*, std::string> >();
770 }
771 VarName = Lex.getCurStrVal();
772 Lex.Lex(); // eat the VarName.
773 }
774
775 Result.push_back(std::make_pair(Val, VarName));
776
777 if (Lex.getCode() != tgtok::comma) break;
778 Lex.Lex(); // eat the ','
779 }
780
781 return Result;
782}
783
784
785/// ParseValueList - Parse a comma separated list of values, returning them as a
786/// vector. Note that this always expects to be able to parse at least one
787/// value. It returns an empty list if this is not possible.
788///
789/// ValueList ::= Value (',' Value)
790///
791std::vector<Init*> TGParser::ParseValueList(Record *CurRec) {
792 std::vector<Init*> Result;
793 Result.push_back(ParseValue(CurRec));
794 if (Result.back() == 0) return std::vector<Init*>();
795
796 while (Lex.getCode() == tgtok::comma) {
797 Lex.Lex(); // Eat the comma
798
799 Result.push_back(ParseValue(CurRec));
800 if (Result.back() == 0) return std::vector<Init*>();
801 }
802
803 return Result;
804}
805
806
807
808/// ParseDeclaration - Read a declaration, returning the name of field ID, or an
809/// empty string on error. This can happen in a number of different context's,
810/// including within a def or in the template args for a def (which which case
811/// CurRec will be non-null) and within the template args for a multiclass (in
812/// which case CurRec will be null, but CurMultiClass will be set). This can
813/// also happen within a def that is within a multiclass, which will set both
814/// CurRec and CurMultiClass.
815///
816/// Declaration ::= FIELD? Type ID ('=' Value)?
817///
818std::string TGParser::ParseDeclaration(Record *CurRec,
819 bool ParsingTemplateArgs) {
820 // Read the field prefix if present.
821 bool HasField = Lex.getCode() == tgtok::Field;
822 if (HasField) Lex.Lex();
823
824 RecTy *Type = ParseType();
825 if (Type == 0) return "";
826
827 if (Lex.getCode() != tgtok::Id) {
828 TokError("Expected identifier in declaration");
829 return "";
830 }
831
832 LocTy IdLoc = Lex.getLoc();
833 std::string DeclName = Lex.getCurStrVal();
834 Lex.Lex();
835
836 if (ParsingTemplateArgs) {
837 if (CurRec) {
838 DeclName = CurRec->getName() + ":" + DeclName;
839 } else {
840 assert(CurMultiClass);
841 }
842 if (CurMultiClass)
843 DeclName = CurMultiClass->Rec.getName() + "::" + DeclName;
844 }
845
846 // Add the value.
847 if (AddValue(CurRec, IdLoc, RecordVal(DeclName, Type, HasField)))
848 return "";
849
850 // If a value is present, parse it.
851 if (Lex.getCode() == tgtok::equal) {
852 Lex.Lex();
853 LocTy ValLoc = Lex.getLoc();
854 Init *Val = ParseValue(CurRec);
855 if (Val == 0 ||
856 SetValue(CurRec, ValLoc, DeclName, std::vector<unsigned>(), Val))
857 return "";
858 }
859
860 return DeclName;
861}
862
863/// ParseTemplateArgList - Read a template argument list, which is a non-empty
864/// sequence of template-declarations in <>'s. If CurRec is non-null, these are
865/// template args for a def, which may or may not be in a multiclass. If null,
866/// these are the template args for a multiclass.
867///
868/// TemplateArgList ::= '<' Declaration (',' Declaration)* '>'
869///
870bool TGParser::ParseTemplateArgList(Record *CurRec) {
871 assert(Lex.getCode() == tgtok::less && "Not a template arg list!");
872 Lex.Lex(); // eat the '<'
873
874 Record *TheRecToAddTo = CurRec ? CurRec : &CurMultiClass->Rec;
875
876 // Read the first declaration.
877 std::string TemplArg = ParseDeclaration(CurRec, true/*templateargs*/);
878 if (TemplArg.empty())
879 return true;
880
881 TheRecToAddTo->addTemplateArg(TemplArg);
882
883 while (Lex.getCode() == tgtok::comma) {
884 Lex.Lex(); // eat the ','
885
886 // Read the following declarations.
887 TemplArg = ParseDeclaration(CurRec, true/*templateargs*/);
888 if (TemplArg.empty())
889 return true;
890 TheRecToAddTo->addTemplateArg(TemplArg);
891 }
892
893 if (Lex.getCode() != tgtok::greater)
894 return TokError("expected '>' at end of template argument list");
895 Lex.Lex(); // eat the '>'.
896 return false;
897}
898
899
900/// ParseBodyItem - Parse a single item at within the body of a def or class.
901///
902/// BodyItem ::= Declaration ';'
903/// BodyItem ::= LET ID OptionalBitList '=' Value ';'
904bool TGParser::ParseBodyItem(Record *CurRec) {
905 if (Lex.getCode() != tgtok::Let) {
906 if (ParseDeclaration(CurRec, false).empty())
907 return true;
908
909 if (Lex.getCode() != tgtok::semi)
910 return TokError("expected ';' after declaration");
911 Lex.Lex();
912 return false;
913 }
914
915 // LET ID OptionalRangeList '=' Value ';'
916 if (Lex.Lex() != tgtok::Id)
917 return TokError("expected field identifier after let");
918
919 LocTy IdLoc = Lex.getLoc();
920 std::string FieldName = Lex.getCurStrVal();
921 Lex.Lex(); // eat the field name.
922
923 std::vector<unsigned> BitList;
924 if (ParseOptionalBitList(BitList))
925 return true;
926 std::reverse(BitList.begin(), BitList.end());
927
928 if (Lex.getCode() != tgtok::equal)
929 return TokError("expected '=' in let expression");
930 Lex.Lex(); // eat the '='.
931
932 Init *Val = ParseValue(CurRec);
933 if (Val == 0) return true;
934
935 if (Lex.getCode() != tgtok::semi)
936 return TokError("expected ';' after let expression");
937 Lex.Lex();
938
939 return SetValue(CurRec, IdLoc, FieldName, BitList, Val);
940}
941
942/// ParseBody - Read the body of a class or def. Return true on error, false on
943/// success.
944///
945/// Body ::= ';'
946/// Body ::= '{' BodyList '}'
947/// BodyList BodyItem*
948///
949bool TGParser::ParseBody(Record *CurRec) {
950 // If this is a null definition, just eat the semi and return.
951 if (Lex.getCode() == tgtok::semi) {
952 Lex.Lex();
953 return false;
954 }
955
956 if (Lex.getCode() != tgtok::l_brace)
957 return TokError("Expected ';' or '{' to start body");
958 // Eat the '{'.
959 Lex.Lex();
960
961 while (Lex.getCode() != tgtok::r_brace)
962 if (ParseBodyItem(CurRec))
963 return true;
964
965 // Eat the '}'.
966 Lex.Lex();
967 return false;
968}
969
970/// ParseObjectBody - Parse the body of a def or class. This consists of an
971/// optional ClassList followed by a Body. CurRec is the current def or class
972/// that is being parsed.
973///
974/// ObjectBody ::= BaseClassList Body
975/// BaseClassList ::= /*empty*/
976/// BaseClassList ::= ':' BaseClassListNE
977/// BaseClassListNE ::= SubClassRef (',' SubClassRef)*
978///
979bool TGParser::ParseObjectBody(Record *CurRec) {
980 // If there is a baseclass list, read it.
981 if (Lex.getCode() == tgtok::colon) {
982 Lex.Lex();
983
984 // Read all of the subclasses.
985 SubClassReference SubClass = ParseSubClassReference(CurRec, false);
986 while (1) {
987 // Check for error.
988 if (SubClass.Rec == 0) return true;
989
990 // Add it.
991 if (AddSubClass(CurRec, SubClass))
992 return true;
993
994 if (Lex.getCode() != tgtok::comma) break;
995 Lex.Lex(); // eat ','.
996 SubClass = ParseSubClassReference(CurRec, false);
997 }
998 }
999
1000 // Process any variables on the let stack.
1001 for (unsigned i = 0, e = LetStack.size(); i != e; ++i)
1002 for (unsigned j = 0, e = LetStack[i].size(); j != e; ++j)
1003 if (SetValue(CurRec, LetStack[i][j].Loc, LetStack[i][j].Name,
1004 LetStack[i][j].Bits, LetStack[i][j].Value))
1005 return true;
1006
1007 return ParseBody(CurRec);
1008}
1009
1010
1011/// ParseDef - Parse and return a top level or multiclass def, return the record
1012/// corresponding to it. This returns null on error.
1013///
1014/// DefInst ::= DEF ObjectName ObjectBody
1015///
1016llvm::Record *TGParser::ParseDef(MultiClass *CurMultiClass) {
1017 LocTy DefLoc = Lex.getLoc();
1018 assert(Lex.getCode() == tgtok::Def && "Unknown tok");
1019 Lex.Lex(); // Eat the 'def' token.
1020
1021 // Parse ObjectName and make a record for it.
1022 Record *CurRec = new Record(ParseObjectName());
1023
1024 if (!CurMultiClass) {
1025 // Top-level def definition.
1026
1027 // Ensure redefinition doesn't happen.
1028 if (Records.getDef(CurRec->getName())) {
1029 Error(DefLoc, "def '" + CurRec->getName() + "' already defined");
1030 return 0;
1031 }
1032 Records.addDef(CurRec);
1033 } else {
1034 // Otherwise, a def inside a multiclass, add it to the multiclass.
1035 for (unsigned i = 0, e = CurMultiClass->DefPrototypes.size(); i != e; ++i)
1036 if (CurMultiClass->DefPrototypes[i]->getName() == CurRec->getName()) {
1037 Error(DefLoc, "def '" + CurRec->getName() +
1038 "' already defined in this multiclass!");
1039 return 0;
1040 }
1041 CurMultiClass->DefPrototypes.push_back(CurRec);
1042 }
1043
1044 if (ParseObjectBody(CurRec))
1045 return 0;
1046
1047 if (CurMultiClass == 0) // Def's in multiclasses aren't really defs.
1048 CurRec->resolveReferences();
1049
1050 // If ObjectBody has template arguments, it's an error.
1051 assert(CurRec->getTemplateArgs().empty() && "How'd this get template args?");
1052 return CurRec;
1053}
1054
1055
1056/// ParseClass - Parse a tblgen class definition.
1057///
1058/// ClassInst ::= CLASS ID TemplateArgList? ObjectBody
1059///
1060bool TGParser::ParseClass() {
1061 assert(Lex.getCode() == tgtok::Class && "Unexpected token!");
1062 Lex.Lex();
1063
1064 if (Lex.getCode() != tgtok::Id)
1065 return TokError("expected class name after 'class' keyword");
1066
1067 Record *CurRec = Records.getClass(Lex.getCurStrVal());
1068 if (CurRec) {
1069 // If the body was previously defined, this is an error.
1070 if (!CurRec->getValues().empty() ||
1071 !CurRec->getSuperClasses().empty() ||
1072 !CurRec->getTemplateArgs().empty())
1073 return TokError("Class '" + CurRec->getName() + "' already defined");
1074 } else {
1075 // If this is the first reference to this class, create and add it.
1076 CurRec = new Record(Lex.getCurStrVal());
1077 Records.addClass(CurRec);
1078 }
1079 Lex.Lex(); // eat the name.
1080
1081 // If there are template args, parse them.
1082 if (Lex.getCode() == tgtok::less)
1083 if (ParseTemplateArgList(CurRec))
1084 return true;
1085
1086 // Finally, parse the object body.
1087 return ParseObjectBody(CurRec);
1088}
1089
1090/// ParseLetList - Parse a non-empty list of assignment expressions into a list
1091/// of LetRecords.
1092///
1093/// LetList ::= LetItem (',' LetItem)*
1094/// LetItem ::= ID OptionalRangeList '=' Value
1095///
1096std::vector<LetRecord> TGParser::ParseLetList() {
1097 std::vector<LetRecord> Result;
1098
1099 while (1) {
1100 if (Lex.getCode() != tgtok::Id) {
1101 TokError("expected identifier in let definition");
1102 return std::vector<LetRecord>();
1103 }
1104 std::string Name = Lex.getCurStrVal();
1105 LocTy NameLoc = Lex.getLoc();
1106 Lex.Lex(); // Eat the identifier.
1107
1108 // Check for an optional RangeList.
1109 std::vector<unsigned> Bits;
1110 if (ParseOptionalRangeList(Bits))
1111 return std::vector<LetRecord>();
1112 std::reverse(Bits.begin(), Bits.end());
1113
1114 if (Lex.getCode() != tgtok::equal) {
1115 TokError("expected '=' in let expression");
1116 return std::vector<LetRecord>();
1117 }
1118 Lex.Lex(); // eat the '='.
1119
1120 Init *Val = ParseValue(0);
1121 if (Val == 0) return std::vector<LetRecord>();
1122
1123 // Now that we have everything, add the record.
1124 Result.push_back(LetRecord(Name, Bits, Val, NameLoc));
1125
1126 if (Lex.getCode() != tgtok::comma)
1127 return Result;
1128 Lex.Lex(); // eat the comma.
1129 }
1130}
1131
1132/// ParseTopLevelLet - Parse a 'let' at top level. This can be a couple of
1133/// different related productions.
1134///
1135/// Object ::= LET LetList IN '{' ObjectList '}'
1136/// Object ::= LET LetList IN Object
1137///
1138bool TGParser::ParseTopLevelLet() {
1139 assert(Lex.getCode() == tgtok::Let && "Unexpected token");
1140 Lex.Lex();
1141
1142 // Add this entry to the let stack.
1143 std::vector<LetRecord> LetInfo = ParseLetList();
1144 if (LetInfo.empty()) return true;
1145 LetStack.push_back(LetInfo);
1146
1147 if (Lex.getCode() != tgtok::In)
1148 return TokError("expected 'in' at end of top-level 'let'");
1149 Lex.Lex();
1150
1151 // If this is a scalar let, just handle it now
1152 if (Lex.getCode() != tgtok::l_brace) {
1153 // LET LetList IN Object
1154 if (ParseObject())
1155 return true;
1156 } else { // Object ::= LETCommand '{' ObjectList '}'
1157 LocTy BraceLoc = Lex.getLoc();
1158 // Otherwise, this is a group let.
1159 Lex.Lex(); // eat the '{'.
1160
1161 // Parse the object list.
1162 if (ParseObjectList())
1163 return true;
1164
1165 if (Lex.getCode() != tgtok::r_brace) {
1166 TokError("expected '}' at end of top level let command");
1167 return Error(BraceLoc, "to match this '{'");
1168 }
1169 Lex.Lex();
1170 }
1171
1172 // Outside this let scope, this let block is not active.
1173 LetStack.pop_back();
1174 return false;
1175}
1176
1177/// ParseMultiClassDef - Parse a def in a multiclass context.
1178///
1179/// MultiClassDef ::= DefInst
1180///
1181bool TGParser::ParseMultiClassDef(MultiClass *CurMC) {
1182 if (Lex.getCode() != tgtok::Def)
1183 return TokError("expected 'def' in multiclass body");
1184
1185 Record *D = ParseDef(CurMC);
1186 if (D == 0) return true;
1187
1188 // Copy the template arguments for the multiclass into the def.
1189 const std::vector<std::string> &TArgs = CurMC->Rec.getTemplateArgs();
1190
1191 for (unsigned i = 0, e = TArgs.size(); i != e; ++i) {
1192 const RecordVal *RV = CurMC->Rec.getValue(TArgs[i]);
1193 assert(RV && "Template arg doesn't exist?");
1194 D->addValue(*RV);
1195 }
1196
1197 return false;
1198}
1199
1200/// ParseMultiClass - Parse a multiclass definition.
1201///
1202/// MultiClassInst ::= MULTICLASS ID TemplateArgList? '{' MultiClassDef+ '}'
1203///
1204bool TGParser::ParseMultiClass() {
1205 assert(Lex.getCode() == tgtok::MultiClass && "Unexpected token");
1206 Lex.Lex(); // Eat the multiclass token.
1207
1208 if (Lex.getCode() != tgtok::Id)
1209 return TokError("expected identifier after multiclass for name");
1210 std::string Name = Lex.getCurStrVal();
1211
1212 if (MultiClasses.count(Name))
1213 return TokError("multiclass '" + Name + "' already defined");
1214
1215 CurMultiClass = MultiClasses[Name] = new MultiClass(Name);
1216 Lex.Lex(); // Eat the identifier.
1217
1218 // If there are template args, parse them.
1219 if (Lex.getCode() == tgtok::less)
1220 if (ParseTemplateArgList(0))
1221 return true;
1222
1223 if (Lex.getCode() != tgtok::l_brace)
1224 return TokError("expected '{' in multiclass definition");
1225
1226 if (Lex.Lex() == tgtok::r_brace) // eat the '{'.
1227 return TokError("multiclass must contain at least one def");
1228
1229 while (Lex.getCode() != tgtok::r_brace)
1230 if (ParseMultiClassDef(CurMultiClass))
1231 return true;
1232
1233 Lex.Lex(); // eat the '}'.
1234
1235 CurMultiClass = 0;
1236 return false;
1237}
1238
1239/// ParseDefm - Parse the instantiation of a multiclass.
1240///
1241/// DefMInst ::= DEFM ID ':' DefmSubClassRef ';'
1242///
1243bool TGParser::ParseDefm() {
1244 assert(Lex.getCode() == tgtok::Defm && "Unexpected token!");
1245 if (Lex.Lex() != tgtok::Id) // eat the defm.
1246 return TokError("expected identifier after defm");
1247
1248 LocTy DefmPrefixLoc = Lex.getLoc();
1249 std::string DefmPrefix = Lex.getCurStrVal();
1250 if (Lex.Lex() != tgtok::colon)
1251 return TokError("expected ':' after defm identifier");
1252
1253 // eat the colon.
1254 Lex.Lex();
1255
1256 LocTy SubClassLoc = Lex.getLoc();
1257 SubClassReference Ref = ParseSubClassReference(0, true);
1258 if (Ref.Rec == 0) return true;
1259
1260 if (Lex.getCode() != tgtok::semi)
1261 return TokError("expected ';' at end of defm");
1262 Lex.Lex();
1263
1264 // To instantiate a multiclass, we need to first get the multiclass, then
1265 // instantiate each def contained in the multiclass with the SubClassRef
1266 // template parameters.
1267 MultiClass *MC = MultiClasses[Ref.Rec->getName()];
1268 assert(MC && "Didn't lookup multiclass correctly?");
1269 std::vector<Init*> &TemplateVals = Ref.TemplateArgs;
1270
1271 // Verify that the correct number of template arguments were specified.
1272 const std::vector<std::string> &TArgs = MC->Rec.getTemplateArgs();
1273 if (TArgs.size() < TemplateVals.size())
1274 return Error(SubClassLoc,
1275 "more template args specified than multiclass expects");
1276
1277 // Loop over all the def's in the multiclass, instantiating each one.
1278 for (unsigned i = 0, e = MC->DefPrototypes.size(); i != e; ++i) {
1279 Record *DefProto = MC->DefPrototypes[i];
1280
1281 // Add the suffix to the defm name to get the new name.
1282 Record *CurRec = new Record(DefmPrefix + DefProto->getName());
1283
1284 SubClassReference Ref;
1285 Ref.RefLoc = DefmPrefixLoc;
1286 Ref.Rec = DefProto;
1287 AddSubClass(CurRec, Ref);
1288
1289 // Loop over all of the template arguments, setting them to the specified
1290 // value or leaving them as the default if necessary.
1291 for (unsigned i = 0, e = TArgs.size(); i != e; ++i) {
1292 if (i < TemplateVals.size()) { // A value is specified for this temp-arg?
1293 // Set it now.
1294 if (SetValue(CurRec, DefmPrefixLoc, TArgs[i], std::vector<unsigned>(),
1295 TemplateVals[i]))
1296 return true;
1297
1298 // Resolve it next.
1299 CurRec->resolveReferencesTo(CurRec->getValue(TArgs[i]));
1300
1301 // Now remove it.
1302 CurRec->removeValue(TArgs[i]);
1303
1304 } else if (!CurRec->getValue(TArgs[i])->getValue()->isComplete()) {
1305 return Error(SubClassLoc, "value not specified for template argument #"+
1306 utostr(i) + " (" + TArgs[i] + ") of multiclassclass '" +
1307 MC->Rec.getName() + "'");
1308 }
1309 }
1310
1311 // If the mdef is inside a 'let' expression, add to each def.
1312 for (unsigned i = 0, e = LetStack.size(); i != e; ++i)
1313 for (unsigned j = 0, e = LetStack[i].size(); j != e; ++j)
1314 if (SetValue(CurRec, LetStack[i][j].Loc, LetStack[i][j].Name,
1315 LetStack[i][j].Bits, LetStack[i][j].Value)) {
1316 Error(DefmPrefixLoc, "when instantiating this defm");
1317 return true;
1318 }
1319
1320
1321 // Ensure redefinition doesn't happen.
1322 if (Records.getDef(CurRec->getName()))
1323 return Error(DefmPrefixLoc, "def '" + CurRec->getName() +
1324 "' already defined, instantiating defm with subdef '" +
1325 DefProto->getName() + "'");
1326 Records.addDef(CurRec);
1327 CurRec->resolveReferences();
1328 }
1329
1330 return false;
1331}
1332
1333/// ParseObject
1334/// Object ::= ClassInst
1335/// Object ::= DefInst
1336/// Object ::= MultiClassInst
1337/// Object ::= DefMInst
1338/// Object ::= LETCommand '{' ObjectList '}'
1339/// Object ::= LETCommand Object
1340bool TGParser::ParseObject() {
1341 switch (Lex.getCode()) {
1342 default: assert(0 && "This is not an object");
1343 case tgtok::Let: return ParseTopLevelLet();
1344 case tgtok::Def: return ParseDef(0) == 0;
1345 case tgtok::Defm: return ParseDefm();
1346 case tgtok::Class: return ParseClass();
1347 case tgtok::MultiClass: return ParseMultiClass();
1348 }
1349}
1350
1351/// ParseObjectList
1352/// ObjectList :== Object*
1353bool TGParser::ParseObjectList() {
1354 while (isObjectStart(Lex.getCode())) {
1355 if (ParseObject())
1356 return true;
1357 }
1358 return false;
1359}
1360
1361
1362bool TGParser::ParseFile() {
1363 Lex.Lex(); // Prime the lexer.
1364 if (ParseObjectList()) return true;
1365
1366 // If we have unread input at the end of the file, report it.
1367 if (Lex.getCode() == tgtok::Eof)
1368 return false;
1369
1370 return TokError("Unexpected input at top level");
1371}
1372