1 //===- CodeGenInstruction.cpp - CodeGen Instruction Class Wrapper ---------===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements the CodeGenInstruction class.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "CodeGenInstruction.h"
15 #include "CodeGenTarget.h"
16 #include "llvm/ADT/STLExtras.h"
17 #include "llvm/ADT/StringExtras.h"
18 #include "llvm/ADT/StringMap.h"
19 #include "llvm/TableGen/Error.h"
20 #include "llvm/TableGen/Record.h"
21 #include <set>
22 using namespace llvm;
23
24 //===----------------------------------------------------------------------===//
25 // CGIOperandList Implementation
26 //===----------------------------------------------------------------------===//
27
CGIOperandList(Record * R)28 CGIOperandList::CGIOperandList(Record *R) : TheDef(R) {
29 isPredicable = false;
30 hasOptionalDef = false;
31 isVariadic = false;
32
33 DagInit *OutDI = R->getValueAsDag("OutOperandList");
34
35 if (DefInit *Init = dyn_cast<DefInit>(OutDI->getOperator())) {
36 if (Init->getDef()->getName() != "outs")
37 PrintFatalError(R->getName() + ": invalid def name for output list: use 'outs'");
38 } else
39 PrintFatalError(R->getName() + ": invalid output list: use 'outs'");
40
41 NumDefs = OutDI->getNumArgs();
42
43 DagInit *InDI = R->getValueAsDag("InOperandList");
44 if (DefInit *Init = dyn_cast<DefInit>(InDI->getOperator())) {
45 if (Init->getDef()->getName() != "ins")
46 PrintFatalError(R->getName() + ": invalid def name for input list: use 'ins'");
47 } else
48 PrintFatalError(R->getName() + ": invalid input list: use 'ins'");
49
50 unsigned MIOperandNo = 0;
51 std::set<std::string> OperandNames;
52 for (unsigned i = 0, e = InDI->getNumArgs()+OutDI->getNumArgs(); i != e; ++i){
53 Init *ArgInit;
54 std::string ArgName;
55 if (i < NumDefs) {
56 ArgInit = OutDI->getArg(i);
57 ArgName = OutDI->getArgName(i);
58 } else {
59 ArgInit = InDI->getArg(i-NumDefs);
60 ArgName = InDI->getArgName(i-NumDefs);
61 }
62
63 DefInit *Arg = dyn_cast<DefInit>(ArgInit);
64 if (!Arg)
65 PrintFatalError("Illegal operand for the '" + R->getName() + "' instruction!");
66
67 Record *Rec = Arg->getDef();
68 std::string PrintMethod = "printOperand";
69 std::string EncoderMethod;
70 std::string OperandType = "OPERAND_UNKNOWN";
71 unsigned NumOps = 1;
72 DagInit *MIOpInfo = 0;
73 if (Rec->isSubClassOf("RegisterOperand")) {
74 PrintMethod = Rec->getValueAsString("PrintMethod");
75 } else if (Rec->isSubClassOf("Operand")) {
76 PrintMethod = Rec->getValueAsString("PrintMethod");
77 OperandType = Rec->getValueAsString("OperandType");
78 // If there is an explicit encoder method, use it.
79 EncoderMethod = Rec->getValueAsString("EncoderMethod");
80 MIOpInfo = Rec->getValueAsDag("MIOperandInfo");
81
82 // Verify that MIOpInfo has an 'ops' root value.
83 if (!isa<DefInit>(MIOpInfo->getOperator()) ||
84 cast<DefInit>(MIOpInfo->getOperator())->getDef()->getName() != "ops")
85 PrintFatalError("Bad value for MIOperandInfo in operand '" + Rec->getName() +
86 "'\n");
87
88 // If we have MIOpInfo, then we have #operands equal to number of entries
89 // in MIOperandInfo.
90 if (unsigned NumArgs = MIOpInfo->getNumArgs())
91 NumOps = NumArgs;
92
93 if (Rec->isSubClassOf("PredicateOperand"))
94 isPredicable = true;
95 else if (Rec->isSubClassOf("OptionalDefOperand"))
96 hasOptionalDef = true;
97 } else if (Rec->getName() == "variable_ops") {
98 isVariadic = true;
99 continue;
100 } else if (Rec->isSubClassOf("RegisterClass")) {
101 OperandType = "OPERAND_REGISTER";
102 } else if (!Rec->isSubClassOf("PointerLikeRegClass") &&
103 !Rec->isSubClassOf("unknown_class"))
104 PrintFatalError("Unknown operand class '" + Rec->getName() +
105 "' in '" + R->getName() + "' instruction!");
106
107 // Check that the operand has a name and that it's unique.
108 if (ArgName.empty())
109 PrintFatalError("In instruction '" + R->getName() + "', operand #" + utostr(i) +
110 " has no name!");
111 if (!OperandNames.insert(ArgName).second)
112 PrintFatalError("In instruction '" + R->getName() + "', operand #" + utostr(i) +
113 " has the same name as a previous operand!");
114
115 OperandList.push_back(OperandInfo(Rec, ArgName, PrintMethod, EncoderMethod,
116 OperandType, MIOperandNo, NumOps,
117 MIOpInfo));
118 MIOperandNo += NumOps;
119 }
120
121
122 // Make sure the constraints list for each operand is large enough to hold
123 // constraint info, even if none is present.
124 for (unsigned i = 0, e = OperandList.size(); i != e; ++i)
125 OperandList[i].Constraints.resize(OperandList[i].MINumOperands);
126 }
127
128
129 /// getOperandNamed - Return the index of the operand with the specified
130 /// non-empty name. If the instruction does not have an operand with the
131 /// specified name, abort.
132 ///
getOperandNamed(StringRef Name) const133 unsigned CGIOperandList::getOperandNamed(StringRef Name) const {
134 unsigned OpIdx;
135 if (hasOperandNamed(Name, OpIdx)) return OpIdx;
136 PrintFatalError("'" + TheDef->getName() + "' does not have an operand named '$" +
137 Name.str() + "'!");
138 }
139
140 /// hasOperandNamed - Query whether the instruction has an operand of the
141 /// given name. If so, return true and set OpIdx to the index of the
142 /// operand. Otherwise, return false.
hasOperandNamed(StringRef Name,unsigned & OpIdx) const143 bool CGIOperandList::hasOperandNamed(StringRef Name, unsigned &OpIdx) const {
144 assert(!Name.empty() && "Cannot search for operand with no name!");
145 for (unsigned i = 0, e = OperandList.size(); i != e; ++i)
146 if (OperandList[i].Name == Name) {
147 OpIdx = i;
148 return true;
149 }
150 return false;
151 }
152
153 std::pair<unsigned,unsigned>
ParseOperandName(const std::string & Op,bool AllowWholeOp)154 CGIOperandList::ParseOperandName(const std::string &Op, bool AllowWholeOp) {
155 if (Op.empty() || Op[0] != '$')
156 PrintFatalError(TheDef->getName() + ": Illegal operand name: '" + Op + "'");
157
158 std::string OpName = Op.substr(1);
159 std::string SubOpName;
160
161 // Check to see if this is $foo.bar.
162 std::string::size_type DotIdx = OpName.find_first_of(".");
163 if (DotIdx != std::string::npos) {
164 SubOpName = OpName.substr(DotIdx+1);
165 if (SubOpName.empty())
166 PrintFatalError(TheDef->getName() + ": illegal empty suboperand name in '" +Op +"'");
167 OpName = OpName.substr(0, DotIdx);
168 }
169
170 unsigned OpIdx = getOperandNamed(OpName);
171
172 if (SubOpName.empty()) { // If no suboperand name was specified:
173 // If one was needed, throw.
174 if (OperandList[OpIdx].MINumOperands > 1 && !AllowWholeOp &&
175 SubOpName.empty())
176 PrintFatalError(TheDef->getName() + ": Illegal to refer to"
177 " whole operand part of complex operand '" + Op + "'");
178
179 // Otherwise, return the operand.
180 return std::make_pair(OpIdx, 0U);
181 }
182
183 // Find the suboperand number involved.
184 DagInit *MIOpInfo = OperandList[OpIdx].MIOperandInfo;
185 if (MIOpInfo == 0)
186 PrintFatalError(TheDef->getName() + ": unknown suboperand name in '" + Op + "'");
187
188 // Find the operand with the right name.
189 for (unsigned i = 0, e = MIOpInfo->getNumArgs(); i != e; ++i)
190 if (MIOpInfo->getArgName(i) == SubOpName)
191 return std::make_pair(OpIdx, i);
192
193 // Otherwise, didn't find it!
194 PrintFatalError(TheDef->getName() + ": unknown suboperand name in '" + Op + "'");
195 }
196
ParseConstraint(const std::string & CStr,CGIOperandList & Ops)197 static void ParseConstraint(const std::string &CStr, CGIOperandList &Ops) {
198 // EARLY_CLOBBER: @early $reg
199 std::string::size_type wpos = CStr.find_first_of(" \t");
200 std::string::size_type start = CStr.find_first_not_of(" \t");
201 std::string Tok = CStr.substr(start, wpos - start);
202 if (Tok == "@earlyclobber") {
203 std::string Name = CStr.substr(wpos+1);
204 wpos = Name.find_first_not_of(" \t");
205 if (wpos == std::string::npos)
206 PrintFatalError("Illegal format for @earlyclobber constraint: '" + CStr + "'");
207 Name = Name.substr(wpos);
208 std::pair<unsigned,unsigned> Op = Ops.ParseOperandName(Name, false);
209
210 // Build the string for the operand
211 if (!Ops[Op.first].Constraints[Op.second].isNone())
212 PrintFatalError("Operand '" + Name + "' cannot have multiple constraints!");
213 Ops[Op.first].Constraints[Op.second] =
214 CGIOperandList::ConstraintInfo::getEarlyClobber();
215 return;
216 }
217
218 // Only other constraint is "TIED_TO" for now.
219 std::string::size_type pos = CStr.find_first_of('=');
220 assert(pos != std::string::npos && "Unrecognized constraint");
221 start = CStr.find_first_not_of(" \t");
222 std::string Name = CStr.substr(start, pos - start);
223
224 // TIED_TO: $src1 = $dst
225 wpos = Name.find_first_of(" \t");
226 if (wpos == std::string::npos)
227 PrintFatalError("Illegal format for tied-to constraint: '" + CStr + "'");
228 std::string DestOpName = Name.substr(0, wpos);
229 std::pair<unsigned,unsigned> DestOp = Ops.ParseOperandName(DestOpName, false);
230
231 Name = CStr.substr(pos+1);
232 wpos = Name.find_first_not_of(" \t");
233 if (wpos == std::string::npos)
234 PrintFatalError("Illegal format for tied-to constraint: '" + CStr + "'");
235
236 std::string SrcOpName = Name.substr(wpos);
237 std::pair<unsigned,unsigned> SrcOp = Ops.ParseOperandName(SrcOpName, false);
238 if (SrcOp > DestOp) {
239 std::swap(SrcOp, DestOp);
240 std::swap(SrcOpName, DestOpName);
241 }
242
243 unsigned FlatOpNo = Ops.getFlattenedOperandNumber(SrcOp);
244
245 if (!Ops[DestOp.first].Constraints[DestOp.second].isNone())
246 PrintFatalError("Operand '" + DestOpName +
247 "' cannot have multiple constraints!");
248 Ops[DestOp.first].Constraints[DestOp.second] =
249 CGIOperandList::ConstraintInfo::getTied(FlatOpNo);
250 }
251
ParseConstraints(const std::string & CStr,CGIOperandList & Ops)252 static void ParseConstraints(const std::string &CStr, CGIOperandList &Ops) {
253 if (CStr.empty()) return;
254
255 const std::string delims(",");
256 std::string::size_type bidx, eidx;
257
258 bidx = CStr.find_first_not_of(delims);
259 while (bidx != std::string::npos) {
260 eidx = CStr.find_first_of(delims, bidx);
261 if (eidx == std::string::npos)
262 eidx = CStr.length();
263
264 ParseConstraint(CStr.substr(bidx, eidx - bidx), Ops);
265 bidx = CStr.find_first_not_of(delims, eidx);
266 }
267 }
268
ProcessDisableEncoding(std::string DisableEncoding)269 void CGIOperandList::ProcessDisableEncoding(std::string DisableEncoding) {
270 while (1) {
271 std::pair<StringRef, StringRef> P = getToken(DisableEncoding, " ,\t");
272 std::string OpName = P.first;
273 DisableEncoding = P.second;
274 if (OpName.empty()) break;
275
276 // Figure out which operand this is.
277 std::pair<unsigned,unsigned> Op = ParseOperandName(OpName, false);
278
279 // Mark the operand as not-to-be encoded.
280 if (Op.second >= OperandList[Op.first].DoNotEncode.size())
281 OperandList[Op.first].DoNotEncode.resize(Op.second+1);
282 OperandList[Op.first].DoNotEncode[Op.second] = true;
283 }
284
285 }
286
287 //===----------------------------------------------------------------------===//
288 // CodeGenInstruction Implementation
289 //===----------------------------------------------------------------------===//
290
CodeGenInstruction(Record * R)291 CodeGenInstruction::CodeGenInstruction(Record *R)
292 : TheDef(R), Operands(R), InferredFrom(0) {
293 Namespace = R->getValueAsString("Namespace");
294 AsmString = R->getValueAsString("AsmString");
295
296 isReturn = R->getValueAsBit("isReturn");
297 isBranch = R->getValueAsBit("isBranch");
298 isIndirectBranch = R->getValueAsBit("isIndirectBranch");
299 isCompare = R->getValueAsBit("isCompare");
300 isMoveImm = R->getValueAsBit("isMoveImm");
301 isBitcast = R->getValueAsBit("isBitcast");
302 isSelect = R->getValueAsBit("isSelect");
303 isBarrier = R->getValueAsBit("isBarrier");
304 isCall = R->getValueAsBit("isCall");
305 canFoldAsLoad = R->getValueAsBit("canFoldAsLoad");
306 isPredicable = Operands.isPredicable || R->getValueAsBit("isPredicable");
307 isConvertibleToThreeAddress = R->getValueAsBit("isConvertibleToThreeAddress");
308 isCommutable = R->getValueAsBit("isCommutable");
309 isTerminator = R->getValueAsBit("isTerminator");
310 isReMaterializable = R->getValueAsBit("isReMaterializable");
311 hasDelaySlot = R->getValueAsBit("hasDelaySlot");
312 usesCustomInserter = R->getValueAsBit("usesCustomInserter");
313 hasPostISelHook = R->getValueAsBit("hasPostISelHook");
314 hasCtrlDep = R->getValueAsBit("hasCtrlDep");
315 isNotDuplicable = R->getValueAsBit("isNotDuplicable");
316
317 mayLoad = R->getValueAsBitOrUnset("mayLoad", mayLoad_Unset);
318 mayStore = R->getValueAsBitOrUnset("mayStore", mayStore_Unset);
319 hasSideEffects = R->getValueAsBitOrUnset("hasSideEffects",
320 hasSideEffects_Unset);
321 neverHasSideEffects = R->getValueAsBit("neverHasSideEffects");
322
323 isAsCheapAsAMove = R->getValueAsBit("isAsCheapAsAMove");
324 hasExtraSrcRegAllocReq = R->getValueAsBit("hasExtraSrcRegAllocReq");
325 hasExtraDefRegAllocReq = R->getValueAsBit("hasExtraDefRegAllocReq");
326 isCodeGenOnly = R->getValueAsBit("isCodeGenOnly");
327 isPseudo = R->getValueAsBit("isPseudo");
328 ImplicitDefs = R->getValueAsListOfDefs("Defs");
329 ImplicitUses = R->getValueAsListOfDefs("Uses");
330
331 if (neverHasSideEffects + hasSideEffects > 1)
332 PrintFatalError(R->getName() + ": multiple conflicting side-effect flags set!");
333
334 // Parse Constraints.
335 ParseConstraints(R->getValueAsString("Constraints"), Operands);
336
337 // Parse the DisableEncoding field.
338 Operands.ProcessDisableEncoding(R->getValueAsString("DisableEncoding"));
339 }
340
341 /// HasOneImplicitDefWithKnownVT - If the instruction has at least one
342 /// implicit def and it has a known VT, return the VT, otherwise return
343 /// MVT::Other.
344 MVT::SimpleValueType CodeGenInstruction::
HasOneImplicitDefWithKnownVT(const CodeGenTarget & TargetInfo) const345 HasOneImplicitDefWithKnownVT(const CodeGenTarget &TargetInfo) const {
346 if (ImplicitDefs.empty()) return MVT::Other;
347
348 // Check to see if the first implicit def has a resolvable type.
349 Record *FirstImplicitDef = ImplicitDefs[0];
350 assert(FirstImplicitDef->isSubClassOf("Register"));
351 const std::vector<MVT::SimpleValueType> &RegVTs =
352 TargetInfo.getRegisterVTs(FirstImplicitDef);
353 if (RegVTs.size() == 1)
354 return RegVTs[0];
355 return MVT::Other;
356 }
357
358
359 /// FlattenAsmStringVariants - Flatten the specified AsmString to only
360 /// include text from the specified variant, returning the new string.
361 std::string CodeGenInstruction::
FlattenAsmStringVariants(StringRef Cur,unsigned Variant)362 FlattenAsmStringVariants(StringRef Cur, unsigned Variant) {
363 std::string Res = "";
364
365 for (;;) {
366 // Find the start of the next variant string.
367 size_t VariantsStart = 0;
368 for (size_t e = Cur.size(); VariantsStart != e; ++VariantsStart)
369 if (Cur[VariantsStart] == '{' &&
370 (VariantsStart == 0 || (Cur[VariantsStart-1] != '$' &&
371 Cur[VariantsStart-1] != '\\')))
372 break;
373
374 // Add the prefix to the result.
375 Res += Cur.slice(0, VariantsStart);
376 if (VariantsStart == Cur.size())
377 break;
378
379 ++VariantsStart; // Skip the '{'.
380
381 // Scan to the end of the variants string.
382 size_t VariantsEnd = VariantsStart;
383 unsigned NestedBraces = 1;
384 for (size_t e = Cur.size(); VariantsEnd != e; ++VariantsEnd) {
385 if (Cur[VariantsEnd] == '}' && Cur[VariantsEnd-1] != '\\') {
386 if (--NestedBraces == 0)
387 break;
388 } else if (Cur[VariantsEnd] == '{')
389 ++NestedBraces;
390 }
391
392 // Select the Nth variant (or empty).
393 StringRef Selection = Cur.slice(VariantsStart, VariantsEnd);
394 for (unsigned i = 0; i != Variant; ++i)
395 Selection = Selection.split('|').second;
396 Res += Selection.split('|').first;
397
398 assert(VariantsEnd != Cur.size() &&
399 "Unterminated variants in assembly string!");
400 Cur = Cur.substr(VariantsEnd + 1);
401 }
402
403 return Res;
404 }
405
406
407 //===----------------------------------------------------------------------===//
408 /// CodeGenInstAlias Implementation
409 //===----------------------------------------------------------------------===//
410
411 /// tryAliasOpMatch - This is a helper function for the CodeGenInstAlias
412 /// constructor. It checks if an argument in an InstAlias pattern matches
413 /// the corresponding operand of the instruction. It returns true on a
414 /// successful match, with ResOp set to the result operand to be used.
tryAliasOpMatch(DagInit * Result,unsigned AliasOpNo,Record * InstOpRec,bool hasSubOps,ArrayRef<SMLoc> Loc,CodeGenTarget & T,ResultOperand & ResOp)415 bool CodeGenInstAlias::tryAliasOpMatch(DagInit *Result, unsigned AliasOpNo,
416 Record *InstOpRec, bool hasSubOps,
417 ArrayRef<SMLoc> Loc, CodeGenTarget &T,
418 ResultOperand &ResOp) {
419 Init *Arg = Result->getArg(AliasOpNo);
420 DefInit *ADI = dyn_cast<DefInit>(Arg);
421
422 if (ADI && ADI->getDef() == InstOpRec) {
423 // If the operand is a record, it must have a name, and the record type
424 // must match up with the instruction's argument type.
425 if (Result->getArgName(AliasOpNo).empty())
426 PrintFatalError(Loc, "result argument #" + utostr(AliasOpNo) +
427 " must have a name!");
428 ResOp = ResultOperand(Result->getArgName(AliasOpNo), ADI->getDef());
429 return true;
430 }
431
432 // For register operands, the source register class can be a subclass
433 // of the instruction register class, not just an exact match.
434 if (ADI && ADI->getDef()->isSubClassOf("RegisterClass")) {
435 if (!InstOpRec->isSubClassOf("RegisterClass"))
436 return false;
437 if (!T.getRegisterClass(InstOpRec)
438 .hasSubClass(&T.getRegisterClass(ADI->getDef())))
439 return false;
440 ResOp = ResultOperand(Result->getArgName(AliasOpNo), ADI->getDef());
441 return true;
442 }
443
444 // Handle explicit registers.
445 if (ADI && ADI->getDef()->isSubClassOf("Register")) {
446 if (InstOpRec->isSubClassOf("OptionalDefOperand")) {
447 DagInit *DI = InstOpRec->getValueAsDag("MIOperandInfo");
448 // The operand info should only have a single (register) entry. We
449 // want the register class of it.
450 InstOpRec = cast<DefInit>(DI->getArg(0))->getDef();
451 }
452
453 if (InstOpRec->isSubClassOf("RegisterOperand"))
454 InstOpRec = InstOpRec->getValueAsDef("RegClass");
455
456 if (!InstOpRec->isSubClassOf("RegisterClass"))
457 return false;
458
459 if (!T.getRegisterClass(InstOpRec)
460 .contains(T.getRegBank().getReg(ADI->getDef())))
461 PrintFatalError(Loc, "fixed register " + ADI->getDef()->getName() +
462 " is not a member of the " + InstOpRec->getName() +
463 " register class!");
464
465 if (!Result->getArgName(AliasOpNo).empty())
466 PrintFatalError(Loc, "result fixed register argument must "
467 "not have a name!");
468
469 ResOp = ResultOperand(ADI->getDef());
470 return true;
471 }
472
473 // Handle "zero_reg" for optional def operands.
474 if (ADI && ADI->getDef()->getName() == "zero_reg") {
475
476 // Check if this is an optional def.
477 // Tied operands where the source is a sub-operand of a complex operand
478 // need to represent both operands in the alias destination instruction.
479 // Allow zero_reg for the tied portion. This can and should go away once
480 // the MC representation of things doesn't use tied operands at all.
481 //if (!InstOpRec->isSubClassOf("OptionalDefOperand"))
482 // throw TGError(Loc, "reg0 used for result that is not an "
483 // "OptionalDefOperand!");
484
485 ResOp = ResultOperand(static_cast<Record*>(0));
486 return true;
487 }
488
489 // Literal integers.
490 if (IntInit *II = dyn_cast<IntInit>(Arg)) {
491 if (hasSubOps || !InstOpRec->isSubClassOf("Operand"))
492 return false;
493 // Integer arguments can't have names.
494 if (!Result->getArgName(AliasOpNo).empty())
495 PrintFatalError(Loc, "result argument #" + utostr(AliasOpNo) +
496 " must not have a name!");
497 ResOp = ResultOperand(II->getValue());
498 return true;
499 }
500
501 // If both are Operands with the same MVT, allow the conversion. It's
502 // up to the user to make sure the values are appropriate, just like
503 // for isel Pat's.
504 if (InstOpRec->isSubClassOf("Operand") &&
505 ADI->getDef()->isSubClassOf("Operand")) {
506 // FIXME: What other attributes should we check here? Identical
507 // MIOperandInfo perhaps?
508 if (InstOpRec->getValueInit("Type") != ADI->getDef()->getValueInit("Type"))
509 return false;
510 ResOp = ResultOperand(Result->getArgName(AliasOpNo), ADI->getDef());
511 return true;
512 }
513
514 return false;
515 }
516
CodeGenInstAlias(Record * R,CodeGenTarget & T)517 CodeGenInstAlias::CodeGenInstAlias(Record *R, CodeGenTarget &T) : TheDef(R) {
518 AsmString = R->getValueAsString("AsmString");
519 Result = R->getValueAsDag("ResultInst");
520
521 // Verify that the root of the result is an instruction.
522 DefInit *DI = dyn_cast<DefInit>(Result->getOperator());
523 if (DI == 0 || !DI->getDef()->isSubClassOf("Instruction"))
524 PrintFatalError(R->getLoc(),
525 "result of inst alias should be an instruction");
526
527 ResultInst = &T.getInstruction(DI->getDef());
528
529 // NameClass - If argument names are repeated, we need to verify they have
530 // the same class.
531 StringMap<Record*> NameClass;
532 for (unsigned i = 0, e = Result->getNumArgs(); i != e; ++i) {
533 DefInit *ADI = dyn_cast<DefInit>(Result->getArg(i));
534 if (!ADI || Result->getArgName(i).empty())
535 continue;
536 // Verify we don't have something like: (someinst GR16:$foo, GR32:$foo)
537 // $foo can exist multiple times in the result list, but it must have the
538 // same type.
539 Record *&Entry = NameClass[Result->getArgName(i)];
540 if (Entry && Entry != ADI->getDef())
541 PrintFatalError(R->getLoc(), "result value $" + Result->getArgName(i) +
542 " is both " + Entry->getName() + " and " +
543 ADI->getDef()->getName() + "!");
544 Entry = ADI->getDef();
545 }
546
547 // Decode and validate the arguments of the result.
548 unsigned AliasOpNo = 0;
549 for (unsigned i = 0, e = ResultInst->Operands.size(); i != e; ++i) {
550
551 // Tied registers don't have an entry in the result dag unless they're part
552 // of a complex operand, in which case we include them anyways, as we
553 // don't have any other way to specify the whole operand.
554 if (ResultInst->Operands[i].MINumOperands == 1 &&
555 ResultInst->Operands[i].getTiedRegister() != -1)
556 continue;
557
558 if (AliasOpNo >= Result->getNumArgs())
559 PrintFatalError(R->getLoc(), "not enough arguments for instruction!");
560
561 Record *InstOpRec = ResultInst->Operands[i].Rec;
562 unsigned NumSubOps = ResultInst->Operands[i].MINumOperands;
563 ResultOperand ResOp(static_cast<int64_t>(0));
564 if (tryAliasOpMatch(Result, AliasOpNo, InstOpRec, (NumSubOps > 1),
565 R->getLoc(), T, ResOp)) {
566 // If this is a simple operand, or a complex operand with a custom match
567 // class, then we can match is verbatim.
568 if (NumSubOps == 1 ||
569 (InstOpRec->getValue("ParserMatchClass") &&
570 InstOpRec->getValueAsDef("ParserMatchClass")
571 ->getValueAsString("Name") != "Imm")) {
572 ResultOperands.push_back(ResOp);
573 ResultInstOperandIndex.push_back(std::make_pair(i, -1));
574 ++AliasOpNo;
575
576 // Otherwise, we need to match each of the suboperands individually.
577 } else {
578 DagInit *MIOI = ResultInst->Operands[i].MIOperandInfo;
579 for (unsigned SubOp = 0; SubOp != NumSubOps; ++SubOp) {
580 Record *SubRec = cast<DefInit>(MIOI->getArg(SubOp))->getDef();
581
582 // Take care to instantiate each of the suboperands with the correct
583 // nomenclature: $foo.bar
584 ResultOperands.push_back(
585 ResultOperand(Result->getArgName(AliasOpNo) + "." +
586 MIOI->getArgName(SubOp), SubRec));
587 ResultInstOperandIndex.push_back(std::make_pair(i, SubOp));
588 }
589 ++AliasOpNo;
590 }
591 continue;
592 }
593
594 // If the argument did not match the instruction operand, and the operand
595 // is composed of multiple suboperands, try matching the suboperands.
596 if (NumSubOps > 1) {
597 DagInit *MIOI = ResultInst->Operands[i].MIOperandInfo;
598 for (unsigned SubOp = 0; SubOp != NumSubOps; ++SubOp) {
599 if (AliasOpNo >= Result->getNumArgs())
600 PrintFatalError(R->getLoc(), "not enough arguments for instruction!");
601 Record *SubRec = cast<DefInit>(MIOI->getArg(SubOp))->getDef();
602 if (tryAliasOpMatch(Result, AliasOpNo, SubRec, false,
603 R->getLoc(), T, ResOp)) {
604 ResultOperands.push_back(ResOp);
605 ResultInstOperandIndex.push_back(std::make_pair(i, SubOp));
606 ++AliasOpNo;
607 } else {
608 PrintFatalError(R->getLoc(), "result argument #" + utostr(AliasOpNo) +
609 " does not match instruction operand class " +
610 (SubOp == 0 ? InstOpRec->getName() :SubRec->getName()));
611 }
612 }
613 continue;
614 }
615 PrintFatalError(R->getLoc(), "result argument #" + utostr(AliasOpNo) +
616 " does not match instruction operand class " +
617 InstOpRec->getName());
618 }
619
620 if (AliasOpNo != Result->getNumArgs())
621 PrintFatalError(R->getLoc(), "too many operands for instruction!");
622 }
623