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Dan Gohmanf17a25c2007-07-18 16:29:46 +00001//===-- llvmAsmParser.y - Parser for llvm assembly files --------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner081ce942007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the bison parser for LLVM assembly languages files.
11//
12//===----------------------------------------------------------------------===//
13
14%{
15#include "ParserInternals.h"
16#include "llvm/CallingConv.h"
17#include "llvm/InlineAsm.h"
18#include "llvm/Instructions.h"
19#include "llvm/Module.h"
20#include "llvm/ValueSymbolTable.h"
Chandler Carrutha228e392007-08-04 01:51:18 +000021#include "llvm/AutoUpgrade.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000022#include "llvm/Support/GetElementPtrTypeIterator.h"
23#include "llvm/Support/CommandLine.h"
24#include "llvm/ADT/SmallVector.h"
25#include "llvm/ADT/STLExtras.h"
26#include "llvm/Support/MathExtras.h"
27#include "llvm/Support/Streams.h"
28#include <algorithm>
29#include <list>
30#include <map>
31#include <utility>
Dan Gohmanf17a25c2007-07-18 16:29:46 +000032
33// The following is a gross hack. In order to rid the libAsmParser library of
34// exceptions, we have to have a way of getting the yyparse function to go into
35// an error situation. So, whenever we want an error to occur, the GenerateError
36// function (see bottom of file) sets TriggerError. Then, at the end of each
37// production in the grammer we use CHECK_FOR_ERROR which will invoke YYERROR
38// (a goto) to put YACC in error state. Furthermore, several calls to
39// GenerateError are made from inside productions and they must simulate the
40// previous exception behavior by exiting the production immediately. We have
41// replaced these with the GEN_ERROR macro which calls GeneratError and then
42// immediately invokes YYERROR. This would be so much cleaner if it was a
43// recursive descent parser.
44static bool TriggerError = false;
45#define CHECK_FOR_ERROR { if (TriggerError) { TriggerError = false; YYABORT; } }
46#define GEN_ERROR(msg) { GenerateError(msg); YYERROR; }
47
48int yyerror(const char *ErrorMsg); // Forward declarations to prevent "implicit
49int yylex(); // declaration" of xxx warnings.
50int yyparse();
Dan Gohmanf17a25c2007-07-18 16:29:46 +000051using namespace llvm;
52
53static Module *ParserResult;
54
55// DEBUG_UPREFS - Define this symbol if you want to enable debugging output
56// relating to upreferences in the input stream.
57//
58//#define DEBUG_UPREFS 1
59#ifdef DEBUG_UPREFS
60#define UR_OUT(X) cerr << X
61#else
62#define UR_OUT(X)
63#endif
64
65#define YYERROR_VERBOSE 1
66
67static GlobalVariable *CurGV;
68
69
70// This contains info used when building the body of a function. It is
71// destroyed when the function is completed.
72//
73typedef std::vector<Value *> ValueList; // Numbered defs
74
75static void
76ResolveDefinitions(ValueList &LateResolvers, ValueList *FutureLateResolvers=0);
77
78static struct PerModuleInfo {
79 Module *CurrentModule;
80 ValueList Values; // Module level numbered definitions
81 ValueList LateResolveValues;
82 std::vector<PATypeHolder> Types;
83 std::map<ValID, PATypeHolder> LateResolveTypes;
84
85 /// PlaceHolderInfo - When temporary placeholder objects are created, remember
86 /// how they were referenced and on which line of the input they came from so
87 /// that we can resolve them later and print error messages as appropriate.
88 std::map<Value*, std::pair<ValID, int> > PlaceHolderInfo;
89
90 // GlobalRefs - This maintains a mapping between <Type, ValID>'s and forward
91 // references to global values. Global values may be referenced before they
92 // are defined, and if so, the temporary object that they represent is held
93 // here. This is used for forward references of GlobalValues.
94 //
95 typedef std::map<std::pair<const PointerType *,
96 ValID>, GlobalValue*> GlobalRefsType;
97 GlobalRefsType GlobalRefs;
98
99 void ModuleDone() {
100 // If we could not resolve some functions at function compilation time
101 // (calls to functions before they are defined), resolve them now... Types
102 // are resolved when the constant pool has been completely parsed.
103 //
104 ResolveDefinitions(LateResolveValues);
105 if (TriggerError)
106 return;
107
108 // Check to make sure that all global value forward references have been
109 // resolved!
110 //
111 if (!GlobalRefs.empty()) {
112 std::string UndefinedReferences = "Unresolved global references exist:\n";
113
114 for (GlobalRefsType::iterator I = GlobalRefs.begin(), E =GlobalRefs.end();
115 I != E; ++I) {
116 UndefinedReferences += " " + I->first.first->getDescription() + " " +
117 I->first.second.getName() + "\n";
118 }
119 GenerateError(UndefinedReferences);
120 return;
121 }
122
Chandler Carrutha228e392007-08-04 01:51:18 +0000123 // Look for intrinsic functions and CallInst that need to be upgraded
124 for (Module::iterator FI = CurrentModule->begin(),
125 FE = CurrentModule->end(); FI != FE; )
126 UpgradeCallsToIntrinsic(FI++); // must be post-increment, as we remove
127
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000128 Values.clear(); // Clear out function local definitions
129 Types.clear();
130 CurrentModule = 0;
131 }
132
133 // GetForwardRefForGlobal - Check to see if there is a forward reference
134 // for this global. If so, remove it from the GlobalRefs map and return it.
135 // If not, just return null.
136 GlobalValue *GetForwardRefForGlobal(const PointerType *PTy, ValID ID) {
137 // Check to see if there is a forward reference to this global variable...
138 // if there is, eliminate it and patch the reference to use the new def'n.
139 GlobalRefsType::iterator I = GlobalRefs.find(std::make_pair(PTy, ID));
140 GlobalValue *Ret = 0;
141 if (I != GlobalRefs.end()) {
142 Ret = I->second;
143 GlobalRefs.erase(I);
144 }
145 return Ret;
146 }
147
148 bool TypeIsUnresolved(PATypeHolder* PATy) {
149 // If it isn't abstract, its resolved
150 const Type* Ty = PATy->get();
151 if (!Ty->isAbstract())
152 return false;
153 // Traverse the type looking for abstract types. If it isn't abstract then
154 // we don't need to traverse that leg of the type.
155 std::vector<const Type*> WorkList, SeenList;
156 WorkList.push_back(Ty);
157 while (!WorkList.empty()) {
158 const Type* Ty = WorkList.back();
159 SeenList.push_back(Ty);
160 WorkList.pop_back();
161 if (const OpaqueType* OpTy = dyn_cast<OpaqueType>(Ty)) {
162 // Check to see if this is an unresolved type
163 std::map<ValID, PATypeHolder>::iterator I = LateResolveTypes.begin();
164 std::map<ValID, PATypeHolder>::iterator E = LateResolveTypes.end();
165 for ( ; I != E; ++I) {
166 if (I->second.get() == OpTy)
167 return true;
168 }
169 } else if (const SequentialType* SeqTy = dyn_cast<SequentialType>(Ty)) {
170 const Type* TheTy = SeqTy->getElementType();
171 if (TheTy->isAbstract() && TheTy != Ty) {
172 std::vector<const Type*>::iterator I = SeenList.begin(),
173 E = SeenList.end();
174 for ( ; I != E; ++I)
175 if (*I == TheTy)
176 break;
177 if (I == E)
178 WorkList.push_back(TheTy);
179 }
180 } else if (const StructType* StrTy = dyn_cast<StructType>(Ty)) {
181 for (unsigned i = 0; i < StrTy->getNumElements(); ++i) {
182 const Type* TheTy = StrTy->getElementType(i);
183 if (TheTy->isAbstract() && TheTy != Ty) {
184 std::vector<const Type*>::iterator I = SeenList.begin(),
185 E = SeenList.end();
186 for ( ; I != E; ++I)
187 if (*I == TheTy)
188 break;
189 if (I == E)
190 WorkList.push_back(TheTy);
191 }
192 }
193 }
194 }
195 return false;
196 }
197} CurModule;
198
199static struct PerFunctionInfo {
200 Function *CurrentFunction; // Pointer to current function being created
201
202 ValueList Values; // Keep track of #'d definitions
203 unsigned NextValNum;
204 ValueList LateResolveValues;
205 bool isDeclare; // Is this function a forward declararation?
206 GlobalValue::LinkageTypes Linkage; // Linkage for forward declaration.
207 GlobalValue::VisibilityTypes Visibility;
208
209 /// BBForwardRefs - When we see forward references to basic blocks, keep
210 /// track of them here.
211 std::map<ValID, BasicBlock*> BBForwardRefs;
212
213 inline PerFunctionInfo() {
214 CurrentFunction = 0;
215 isDeclare = false;
216 Linkage = GlobalValue::ExternalLinkage;
217 Visibility = GlobalValue::DefaultVisibility;
218 }
219
220 inline void FunctionStart(Function *M) {
221 CurrentFunction = M;
222 NextValNum = 0;
223 }
224
225 void FunctionDone() {
226 // Any forward referenced blocks left?
227 if (!BBForwardRefs.empty()) {
228 GenerateError("Undefined reference to label " +
229 BBForwardRefs.begin()->second->getName());
230 return;
231 }
232
233 // Resolve all forward references now.
234 ResolveDefinitions(LateResolveValues, &CurModule.LateResolveValues);
235
236 Values.clear(); // Clear out function local definitions
237 BBForwardRefs.clear();
238 CurrentFunction = 0;
239 isDeclare = false;
240 Linkage = GlobalValue::ExternalLinkage;
241 Visibility = GlobalValue::DefaultVisibility;
242 }
243} CurFun; // Info for the current function...
244
245static bool inFunctionScope() { return CurFun.CurrentFunction != 0; }
246
247
248//===----------------------------------------------------------------------===//
249// Code to handle definitions of all the types
250//===----------------------------------------------------------------------===//
251
252static void InsertValue(Value *V, ValueList &ValueTab = CurFun.Values) {
253 // Things that have names or are void typed don't get slot numbers
254 if (V->hasName() || (V->getType() == Type::VoidTy))
255 return;
256
257 // In the case of function values, we have to allow for the forward reference
258 // of basic blocks, which are included in the numbering. Consequently, we keep
259 // track of the next insertion location with NextValNum. When a BB gets
260 // inserted, it could change the size of the CurFun.Values vector.
261 if (&ValueTab == &CurFun.Values) {
262 if (ValueTab.size() <= CurFun.NextValNum)
263 ValueTab.resize(CurFun.NextValNum+1);
264 ValueTab[CurFun.NextValNum++] = V;
265 return;
266 }
267 // For all other lists, its okay to just tack it on the back of the vector.
268 ValueTab.push_back(V);
269}
270
271static const Type *getTypeVal(const ValID &D, bool DoNotImprovise = false) {
272 switch (D.Type) {
273 case ValID::LocalID: // Is it a numbered definition?
274 // Module constants occupy the lowest numbered slots...
275 if (D.Num < CurModule.Types.size())
276 return CurModule.Types[D.Num];
277 break;
278 case ValID::LocalName: // Is it a named definition?
279 if (const Type *N = CurModule.CurrentModule->getTypeByName(D.getName())) {
280 D.destroy(); // Free old strdup'd memory...
281 return N;
282 }
283 break;
284 default:
285 GenerateError("Internal parser error: Invalid symbol type reference");
286 return 0;
287 }
288
289 // If we reached here, we referenced either a symbol that we don't know about
290 // or an id number that hasn't been read yet. We may be referencing something
291 // forward, so just create an entry to be resolved later and get to it...
292 //
293 if (DoNotImprovise) return 0; // Do we just want a null to be returned?
294
295
296 if (inFunctionScope()) {
297 if (D.Type == ValID::LocalName) {
298 GenerateError("Reference to an undefined type: '" + D.getName() + "'");
299 return 0;
300 } else {
301 GenerateError("Reference to an undefined type: #" + utostr(D.Num));
302 return 0;
303 }
304 }
305
306 std::map<ValID, PATypeHolder>::iterator I =CurModule.LateResolveTypes.find(D);
307 if (I != CurModule.LateResolveTypes.end())
308 return I->second;
309
310 Type *Typ = OpaqueType::get();
311 CurModule.LateResolveTypes.insert(std::make_pair(D, Typ));
312 return Typ;
313 }
314
315// getExistingVal - Look up the value specified by the provided type and
316// the provided ValID. If the value exists and has already been defined, return
317// it. Otherwise return null.
318//
319static Value *getExistingVal(const Type *Ty, const ValID &D) {
320 if (isa<FunctionType>(Ty)) {
321 GenerateError("Functions are not values and "
322 "must be referenced as pointers");
323 return 0;
324 }
325
326 switch (D.Type) {
327 case ValID::LocalID: { // Is it a numbered definition?
328 // Check that the number is within bounds.
329 if (D.Num >= CurFun.Values.size())
330 return 0;
331 Value *Result = CurFun.Values[D.Num];
332 if (Ty != Result->getType()) {
333 GenerateError("Numbered value (%" + utostr(D.Num) + ") of type '" +
334 Result->getType()->getDescription() + "' does not match "
335 "expected type, '" + Ty->getDescription() + "'");
336 return 0;
337 }
338 return Result;
339 }
340 case ValID::GlobalID: { // Is it a numbered definition?
341 if (D.Num >= CurModule.Values.size())
342 return 0;
343 Value *Result = CurModule.Values[D.Num];
344 if (Ty != Result->getType()) {
345 GenerateError("Numbered value (@" + utostr(D.Num) + ") of type '" +
346 Result->getType()->getDescription() + "' does not match "
347 "expected type, '" + Ty->getDescription() + "'");
348 return 0;
349 }
350 return Result;
351 }
352
353 case ValID::LocalName: { // Is it a named definition?
354 if (!inFunctionScope())
355 return 0;
356 ValueSymbolTable &SymTab = CurFun.CurrentFunction->getValueSymbolTable();
357 Value *N = SymTab.lookup(D.getName());
358 if (N == 0)
359 return 0;
360 if (N->getType() != Ty)
361 return 0;
362
363 D.destroy(); // Free old strdup'd memory...
364 return N;
365 }
366 case ValID::GlobalName: { // Is it a named definition?
367 ValueSymbolTable &SymTab = CurModule.CurrentModule->getValueSymbolTable();
368 Value *N = SymTab.lookup(D.getName());
369 if (N == 0)
370 return 0;
371 if (N->getType() != Ty)
372 return 0;
373
374 D.destroy(); // Free old strdup'd memory...
375 return N;
376 }
377
378 // Check to make sure that "Ty" is an integral type, and that our
379 // value will fit into the specified type...
380 case ValID::ConstSIntVal: // Is it a constant pool reference??
Chris Lattner97d8e5f2008-02-19 04:36:07 +0000381 if (!isa<IntegerType>(Ty) ||
382 !ConstantInt::isValueValidForType(Ty, D.ConstPool64)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000383 GenerateError("Signed integral constant '" +
384 itostr(D.ConstPool64) + "' is invalid for type '" +
385 Ty->getDescription() + "'");
386 return 0;
387 }
388 return ConstantInt::get(Ty, D.ConstPool64, true);
389
390 case ValID::ConstUIntVal: // Is it an unsigned const pool reference?
Chris Lattner97d8e5f2008-02-19 04:36:07 +0000391 if (isa<IntegerType>(Ty) &&
392 ConstantInt::isValueValidForType(Ty, D.UConstPool64))
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000393 return ConstantInt::get(Ty, D.UConstPool64);
Chris Lattner97d8e5f2008-02-19 04:36:07 +0000394
395 if (!isa<IntegerType>(Ty) ||
396 !ConstantInt::isValueValidForType(Ty, D.ConstPool64)) {
397 GenerateError("Integral constant '" + utostr(D.UConstPool64) +
398 "' is invalid or out of range for type '" +
399 Ty->getDescription() + "'");
400 return 0;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000401 }
Chris Lattner97d8e5f2008-02-19 04:36:07 +0000402 // This is really a signed reference. Transmogrify.
403 return ConstantInt::get(Ty, D.ConstPool64, true);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000404
405 case ValID::ConstFPVal: // Is it a floating point const pool reference?
Chris Lattner97d8e5f2008-02-19 04:36:07 +0000406 if (!Ty->isFloatingPoint() ||
407 !ConstantFP::isValueValidForType(Ty, *D.ConstPoolFP)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000408 GenerateError("FP constant invalid for type");
409 return 0;
410 }
Chris Lattner5e0610f2008-04-20 00:41:09 +0000411 // Lexer has no type info, so builds all float and double FP constants
Dale Johannesen1616e902007-09-11 18:32:33 +0000412 // as double. Fix this here. Long double does not need this.
413 if (&D.ConstPoolFP->getSemantics() == &APFloat::IEEEdouble &&
414 Ty==Type::FloatTy)
Dale Johannesenb9de9f02007-09-06 18:13:44 +0000415 D.ConstPoolFP->convert(APFloat::IEEEsingle, APFloat::rmNearestTiesToEven);
Chris Lattner5e0610f2008-04-20 00:41:09 +0000416 return ConstantFP::get(*D.ConstPoolFP);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000417
418 case ValID::ConstNullVal: // Is it a null value?
419 if (!isa<PointerType>(Ty)) {
420 GenerateError("Cannot create a a non pointer null");
421 return 0;
422 }
423 return ConstantPointerNull::get(cast<PointerType>(Ty));
424
425 case ValID::ConstUndefVal: // Is it an undef value?
426 return UndefValue::get(Ty);
427
428 case ValID::ConstZeroVal: // Is it a zero value?
429 return Constant::getNullValue(Ty);
430
431 case ValID::ConstantVal: // Fully resolved constant?
432 if (D.ConstantValue->getType() != Ty) {
433 GenerateError("Constant expression type different from required type");
434 return 0;
435 }
436 return D.ConstantValue;
437
438 case ValID::InlineAsmVal: { // Inline asm expression
439 const PointerType *PTy = dyn_cast<PointerType>(Ty);
440 const FunctionType *FTy =
441 PTy ? dyn_cast<FunctionType>(PTy->getElementType()) : 0;
442 if (!FTy || !InlineAsm::Verify(FTy, D.IAD->Constraints)) {
443 GenerateError("Invalid type for asm constraint string");
444 return 0;
445 }
446 InlineAsm *IA = InlineAsm::get(FTy, D.IAD->AsmString, D.IAD->Constraints,
447 D.IAD->HasSideEffects);
448 D.destroy(); // Free InlineAsmDescriptor.
449 return IA;
450 }
451 default:
452 assert(0 && "Unhandled case!");
453 return 0;
454 } // End of switch
455
456 assert(0 && "Unhandled case!");
457 return 0;
458}
459
460// getVal - This function is identical to getExistingVal, except that if a
461// value is not already defined, it "improvises" by creating a placeholder var
462// that looks and acts just like the requested variable. When the value is
463// defined later, all uses of the placeholder variable are replaced with the
464// real thing.
465//
466static Value *getVal(const Type *Ty, const ValID &ID) {
467 if (Ty == Type::LabelTy) {
468 GenerateError("Cannot use a basic block here");
469 return 0;
470 }
471
472 // See if the value has already been defined.
473 Value *V = getExistingVal(Ty, ID);
474 if (V) return V;
475 if (TriggerError) return 0;
476
477 if (!Ty->isFirstClassType() && !isa<OpaqueType>(Ty)) {
Dan Gohmane6b1ee62008-05-23 01:55:30 +0000478 GenerateError("Invalid use of a non-first-class type");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000479 return 0;
480 }
481
482 // If we reached here, we referenced either a symbol that we don't know about
483 // or an id number that hasn't been read yet. We may be referencing something
484 // forward, so just create an entry to be resolved later and get to it...
485 //
486 switch (ID.Type) {
487 case ValID::GlobalName:
488 case ValID::GlobalID: {
489 const PointerType *PTy = dyn_cast<PointerType>(Ty);
490 if (!PTy) {
491 GenerateError("Invalid type for reference to global" );
492 return 0;
493 }
494 const Type* ElTy = PTy->getElementType();
495 if (const FunctionType *FTy = dyn_cast<FunctionType>(ElTy))
Gabor Greifd6da1d02008-04-06 20:25:17 +0000496 V = Function::Create(FTy, GlobalValue::ExternalLinkage);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000497 else
Christopher Lamb44d62f62007-12-11 08:59:05 +0000498 V = new GlobalVariable(ElTy, false, GlobalValue::ExternalLinkage, 0, "",
499 (Module*)0, false, PTy->getAddressSpace());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000500 break;
501 }
502 default:
503 V = new Argument(Ty);
504 }
505
506 // Remember where this forward reference came from. FIXME, shouldn't we try
507 // to recycle these things??
508 CurModule.PlaceHolderInfo.insert(std::make_pair(V, std::make_pair(ID,
Chris Lattner17e73c22007-11-18 08:46:26 +0000509 LLLgetLineNo())));
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000510
511 if (inFunctionScope())
512 InsertValue(V, CurFun.LateResolveValues);
513 else
514 InsertValue(V, CurModule.LateResolveValues);
515 return V;
516}
517
518/// defineBBVal - This is a definition of a new basic block with the specified
519/// identifier which must be the same as CurFun.NextValNum, if its numeric.
Nick Lewyckyd8aa33a2008-04-25 16:53:59 +0000520static BasicBlock *defineBBVal(const ValID &ID) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000521 assert(inFunctionScope() && "Can't get basic block at global scope!");
522
523 BasicBlock *BB = 0;
524
525 // First, see if this was forward referenced
526
527 std::map<ValID, BasicBlock*>::iterator BBI = CurFun.BBForwardRefs.find(ID);
528 if (BBI != CurFun.BBForwardRefs.end()) {
529 BB = BBI->second;
530 // The forward declaration could have been inserted anywhere in the
531 // function: insert it into the correct place now.
532 CurFun.CurrentFunction->getBasicBlockList().remove(BB);
533 CurFun.CurrentFunction->getBasicBlockList().push_back(BB);
534
535 // We're about to erase the entry, save the key so we can clean it up.
536 ValID Tmp = BBI->first;
537
538 // Erase the forward ref from the map as its no longer "forward"
539 CurFun.BBForwardRefs.erase(ID);
540
541 // The key has been removed from the map but so we don't want to leave
542 // strdup'd memory around so destroy it too.
543 Tmp.destroy();
544
545 // If its a numbered definition, bump the number and set the BB value.
546 if (ID.Type == ValID::LocalID) {
547 assert(ID.Num == CurFun.NextValNum && "Invalid new block number");
548 InsertValue(BB);
549 }
Nick Lewycky31f5f242008-03-02 02:48:09 +0000550 } else {
551 // We haven't seen this BB before and its first mention is a definition.
552 // Just create it and return it.
553 std::string Name (ID.Type == ValID::LocalName ? ID.getName() : "");
Gabor Greifd6da1d02008-04-06 20:25:17 +0000554 BB = BasicBlock::Create(Name, CurFun.CurrentFunction);
Nick Lewycky31f5f242008-03-02 02:48:09 +0000555 if (ID.Type == ValID::LocalID) {
556 assert(ID.Num == CurFun.NextValNum && "Invalid new block number");
557 InsertValue(BB);
558 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000559 }
560
Nick Lewycky31f5f242008-03-02 02:48:09 +0000561 ID.destroy();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000562 return BB;
563}
564
565/// getBBVal - get an existing BB value or create a forward reference for it.
566///
567static BasicBlock *getBBVal(const ValID &ID) {
568 assert(inFunctionScope() && "Can't get basic block at global scope!");
569
570 BasicBlock *BB = 0;
571
572 std::map<ValID, BasicBlock*>::iterator BBI = CurFun.BBForwardRefs.find(ID);
573 if (BBI != CurFun.BBForwardRefs.end()) {
574 BB = BBI->second;
575 } if (ID.Type == ValID::LocalName) {
576 std::string Name = ID.getName();
577 Value *N = CurFun.CurrentFunction->getValueSymbolTable().lookup(Name);
Anton Korobeynikov6a4a9332008-02-20 12:07:57 +0000578 if (N) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000579 if (N->getType()->getTypeID() == Type::LabelTyID)
580 BB = cast<BasicBlock>(N);
581 else
582 GenerateError("Reference to label '" + Name + "' is actually of type '"+
583 N->getType()->getDescription() + "'");
Anton Korobeynikov6a4a9332008-02-20 12:07:57 +0000584 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000585 } else if (ID.Type == ValID::LocalID) {
586 if (ID.Num < CurFun.NextValNum && ID.Num < CurFun.Values.size()) {
587 if (CurFun.Values[ID.Num]->getType()->getTypeID() == Type::LabelTyID)
588 BB = cast<BasicBlock>(CurFun.Values[ID.Num]);
589 else
590 GenerateError("Reference to label '%" + utostr(ID.Num) +
591 "' is actually of type '"+
592 CurFun.Values[ID.Num]->getType()->getDescription() + "'");
593 }
594 } else {
595 GenerateError("Illegal label reference " + ID.getName());
596 return 0;
597 }
598
599 // If its already been defined, return it now.
600 if (BB) {
601 ID.destroy(); // Free strdup'd memory.
602 return BB;
603 }
604
605 // Otherwise, this block has not been seen before, create it.
606 std::string Name;
607 if (ID.Type == ValID::LocalName)
608 Name = ID.getName();
Gabor Greifd6da1d02008-04-06 20:25:17 +0000609 BB = BasicBlock::Create(Name, CurFun.CurrentFunction);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000610
611 // Insert it in the forward refs map.
612 CurFun.BBForwardRefs[ID] = BB;
613
614 return BB;
615}
616
617
618//===----------------------------------------------------------------------===//
619// Code to handle forward references in instructions
620//===----------------------------------------------------------------------===//
621//
622// This code handles the late binding needed with statements that reference
623// values not defined yet... for example, a forward branch, or the PHI node for
624// a loop body.
625//
626// This keeps a table (CurFun.LateResolveValues) of all such forward references
627// and back patchs after we are done.
628//
629
630// ResolveDefinitions - If we could not resolve some defs at parsing
631// time (forward branches, phi functions for loops, etc...) resolve the
632// defs now...
633//
634static void
635ResolveDefinitions(ValueList &LateResolvers, ValueList *FutureLateResolvers) {
636 // Loop over LateResolveDefs fixing up stuff that couldn't be resolved
637 while (!LateResolvers.empty()) {
638 Value *V = LateResolvers.back();
639 LateResolvers.pop_back();
640
641 std::map<Value*, std::pair<ValID, int> >::iterator PHI =
642 CurModule.PlaceHolderInfo.find(V);
643 assert(PHI != CurModule.PlaceHolderInfo.end() && "Placeholder error!");
644
645 ValID &DID = PHI->second.first;
646
647 Value *TheRealValue = getExistingVal(V->getType(), DID);
648 if (TriggerError)
649 return;
650 if (TheRealValue) {
651 V->replaceAllUsesWith(TheRealValue);
652 delete V;
653 CurModule.PlaceHolderInfo.erase(PHI);
654 } else if (FutureLateResolvers) {
655 // Functions have their unresolved items forwarded to the module late
656 // resolver table
657 InsertValue(V, *FutureLateResolvers);
658 } else {
659 if (DID.Type == ValID::LocalName || DID.Type == ValID::GlobalName) {
660 GenerateError("Reference to an invalid definition: '" +DID.getName()+
661 "' of type '" + V->getType()->getDescription() + "'",
662 PHI->second.second);
663 return;
664 } else {
665 GenerateError("Reference to an invalid definition: #" +
666 itostr(DID.Num) + " of type '" +
667 V->getType()->getDescription() + "'",
668 PHI->second.second);
669 return;
670 }
671 }
672 }
673 LateResolvers.clear();
674}
675
676// ResolveTypeTo - A brand new type was just declared. This means that (if
677// name is not null) things referencing Name can be resolved. Otherwise, things
678// refering to the number can be resolved. Do this now.
679//
680static void ResolveTypeTo(std::string *Name, const Type *ToTy) {
681 ValID D;
682 if (Name)
683 D = ValID::createLocalName(*Name);
684 else
685 D = ValID::createLocalID(CurModule.Types.size());
686
687 std::map<ValID, PATypeHolder>::iterator I =
688 CurModule.LateResolveTypes.find(D);
689 if (I != CurModule.LateResolveTypes.end()) {
690 ((DerivedType*)I->second.get())->refineAbstractTypeTo(ToTy);
691 CurModule.LateResolveTypes.erase(I);
692 }
693}
694
695// setValueName - Set the specified value to the name given. The name may be
696// null potentially, in which case this is a noop. The string passed in is
697// assumed to be a malloc'd string buffer, and is free'd by this function.
698//
699static void setValueName(Value *V, std::string *NameStr) {
700 if (!NameStr) return;
701 std::string Name(*NameStr); // Copy string
702 delete NameStr; // Free old string
703
704 if (V->getType() == Type::VoidTy) {
705 GenerateError("Can't assign name '" + Name+"' to value with void type");
706 return;
707 }
708
709 assert(inFunctionScope() && "Must be in function scope!");
710 ValueSymbolTable &ST = CurFun.CurrentFunction->getValueSymbolTable();
711 if (ST.lookup(Name)) {
712 GenerateError("Redefinition of value '" + Name + "' of type '" +
713 V->getType()->getDescription() + "'");
714 return;
715 }
716
717 // Set the name.
718 V->setName(Name);
719}
720
721/// ParseGlobalVariable - Handle parsing of a global. If Initializer is null,
722/// this is a declaration, otherwise it is a definition.
723static GlobalVariable *
724ParseGlobalVariable(std::string *NameStr,
725 GlobalValue::LinkageTypes Linkage,
726 GlobalValue::VisibilityTypes Visibility,
727 bool isConstantGlobal, const Type *Ty,
Christopher Lamb44d62f62007-12-11 08:59:05 +0000728 Constant *Initializer, bool IsThreadLocal,
729 unsigned AddressSpace = 0) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000730 if (isa<FunctionType>(Ty)) {
731 GenerateError("Cannot declare global vars of function type");
732 return 0;
733 }
Dan Gohman36782aa2008-05-23 18:23:11 +0000734 if (Ty == Type::LabelTy) {
735 GenerateError("Cannot declare global vars of label type");
736 return 0;
737 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000738
Christopher Lamb44d62f62007-12-11 08:59:05 +0000739 const PointerType *PTy = PointerType::get(Ty, AddressSpace);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000740
741 std::string Name;
742 if (NameStr) {
743 Name = *NameStr; // Copy string
744 delete NameStr; // Free old string
745 }
746
747 // See if this global value was forward referenced. If so, recycle the
748 // object.
749 ValID ID;
750 if (!Name.empty()) {
751 ID = ValID::createGlobalName(Name);
752 } else {
753 ID = ValID::createGlobalID(CurModule.Values.size());
754 }
755
756 if (GlobalValue *FWGV = CurModule.GetForwardRefForGlobal(PTy, ID)) {
757 // Move the global to the end of the list, from whereever it was
758 // previously inserted.
759 GlobalVariable *GV = cast<GlobalVariable>(FWGV);
760 CurModule.CurrentModule->getGlobalList().remove(GV);
761 CurModule.CurrentModule->getGlobalList().push_back(GV);
762 GV->setInitializer(Initializer);
763 GV->setLinkage(Linkage);
764 GV->setVisibility(Visibility);
765 GV->setConstant(isConstantGlobal);
766 GV->setThreadLocal(IsThreadLocal);
767 InsertValue(GV, CurModule.Values);
768 return GV;
769 }
770
771 // If this global has a name
772 if (!Name.empty()) {
773 // if the global we're parsing has an initializer (is a definition) and
774 // has external linkage.
775 if (Initializer && Linkage != GlobalValue::InternalLinkage)
776 // If there is already a global with external linkage with this name
777 if (CurModule.CurrentModule->getGlobalVariable(Name, false)) {
778 // If we allow this GVar to get created, it will be renamed in the
779 // symbol table because it conflicts with an existing GVar. We can't
780 // allow redefinition of GVars whose linking indicates that their name
781 // must stay the same. Issue the error.
782 GenerateError("Redefinition of global variable named '" + Name +
783 "' of type '" + Ty->getDescription() + "'");
784 return 0;
785 }
786 }
787
788 // Otherwise there is no existing GV to use, create one now.
789 GlobalVariable *GV =
790 new GlobalVariable(Ty, isConstantGlobal, Linkage, Initializer, Name,
Christopher Lamb44d62f62007-12-11 08:59:05 +0000791 CurModule.CurrentModule, IsThreadLocal, AddressSpace);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000792 GV->setVisibility(Visibility);
793 InsertValue(GV, CurModule.Values);
794 return GV;
795}
796
797// setTypeName - Set the specified type to the name given. The name may be
798// null potentially, in which case this is a noop. The string passed in is
799// assumed to be a malloc'd string buffer, and is freed by this function.
800//
801// This function returns true if the type has already been defined, but is
802// allowed to be redefined in the specified context. If the name is a new name
803// for the type plane, it is inserted and false is returned.
804static bool setTypeName(const Type *T, std::string *NameStr) {
805 assert(!inFunctionScope() && "Can't give types function-local names!");
806 if (NameStr == 0) return false;
807
808 std::string Name(*NameStr); // Copy string
809 delete NameStr; // Free old string
810
811 // We don't allow assigning names to void type
812 if (T == Type::VoidTy) {
813 GenerateError("Can't assign name '" + Name + "' to the void type");
814 return false;
815 }
816
817 // Set the type name, checking for conflicts as we do so.
818 bool AlreadyExists = CurModule.CurrentModule->addTypeName(Name, T);
819
820 if (AlreadyExists) { // Inserting a name that is already defined???
821 const Type *Existing = CurModule.CurrentModule->getTypeByName(Name);
822 assert(Existing && "Conflict but no matching type?!");
823
824 // There is only one case where this is allowed: when we are refining an
825 // opaque type. In this case, Existing will be an opaque type.
826 if (const OpaqueType *OpTy = dyn_cast<OpaqueType>(Existing)) {
827 // We ARE replacing an opaque type!
828 const_cast<OpaqueType*>(OpTy)->refineAbstractTypeTo(T);
829 return true;
830 }
831
832 // Otherwise, this is an attempt to redefine a type. That's okay if
833 // the redefinition is identical to the original. This will be so if
834 // Existing and T point to the same Type object. In this one case we
835 // allow the equivalent redefinition.
836 if (Existing == T) return true; // Yes, it's equal.
837
838 // Any other kind of (non-equivalent) redefinition is an error.
839 GenerateError("Redefinition of type named '" + Name + "' of type '" +
840 T->getDescription() + "'");
841 }
842
843 return false;
844}
845
846//===----------------------------------------------------------------------===//
847// Code for handling upreferences in type names...
848//
849
850// TypeContains - Returns true if Ty directly contains E in it.
851//
852static bool TypeContains(const Type *Ty, const Type *E) {
853 return std::find(Ty->subtype_begin(), Ty->subtype_end(),
854 E) != Ty->subtype_end();
855}
856
857namespace {
858 struct UpRefRecord {
859 // NestingLevel - The number of nesting levels that need to be popped before
860 // this type is resolved.
861 unsigned NestingLevel;
862
863 // LastContainedTy - This is the type at the current binding level for the
864 // type. Every time we reduce the nesting level, this gets updated.
865 const Type *LastContainedTy;
866
867 // UpRefTy - This is the actual opaque type that the upreference is
868 // represented with.
869 OpaqueType *UpRefTy;
870
871 UpRefRecord(unsigned NL, OpaqueType *URTy)
872 : NestingLevel(NL), LastContainedTy(URTy), UpRefTy(URTy) {}
873 };
874}
875
876// UpRefs - A list of the outstanding upreferences that need to be resolved.
877static std::vector<UpRefRecord> UpRefs;
878
879/// HandleUpRefs - Every time we finish a new layer of types, this function is
880/// called. It loops through the UpRefs vector, which is a list of the
881/// currently active types. For each type, if the up reference is contained in
882/// the newly completed type, we decrement the level count. When the level
883/// count reaches zero, the upreferenced type is the type that is passed in:
884/// thus we can complete the cycle.
885///
886static PATypeHolder HandleUpRefs(const Type *ty) {
887 // If Ty isn't abstract, or if there are no up-references in it, then there is
888 // nothing to resolve here.
889 if (!ty->isAbstract() || UpRefs.empty()) return ty;
890
891 PATypeHolder Ty(ty);
892 UR_OUT("Type '" << Ty->getDescription() <<
893 "' newly formed. Resolving upreferences.\n" <<
894 UpRefs.size() << " upreferences active!\n");
895
896 // If we find any resolvable upreferences (i.e., those whose NestingLevel goes
897 // to zero), we resolve them all together before we resolve them to Ty. At
898 // the end of the loop, if there is anything to resolve to Ty, it will be in
899 // this variable.
900 OpaqueType *TypeToResolve = 0;
901
902 for (unsigned i = 0; i != UpRefs.size(); ++i) {
903 UR_OUT(" UR#" << i << " - TypeContains(" << Ty->getDescription() << ", "
904 << UpRefs[i].second->getDescription() << ") = "
905 << (TypeContains(Ty, UpRefs[i].second) ? "true" : "false") << "\n");
906 if (TypeContains(Ty, UpRefs[i].LastContainedTy)) {
907 // Decrement level of upreference
908 unsigned Level = --UpRefs[i].NestingLevel;
909 UpRefs[i].LastContainedTy = Ty;
910 UR_OUT(" Uplevel Ref Level = " << Level << "\n");
911 if (Level == 0) { // Upreference should be resolved!
912 if (!TypeToResolve) {
913 TypeToResolve = UpRefs[i].UpRefTy;
914 } else {
915 UR_OUT(" * Resolving upreference for "
916 << UpRefs[i].second->getDescription() << "\n";
917 std::string OldName = UpRefs[i].UpRefTy->getDescription());
918 UpRefs[i].UpRefTy->refineAbstractTypeTo(TypeToResolve);
919 UR_OUT(" * Type '" << OldName << "' refined upreference to: "
920 << (const void*)Ty << ", " << Ty->getDescription() << "\n");
921 }
922 UpRefs.erase(UpRefs.begin()+i); // Remove from upreference list...
923 --i; // Do not skip the next element...
924 }
925 }
926 }
927
928 if (TypeToResolve) {
929 UR_OUT(" * Resolving upreference for "
930 << UpRefs[i].second->getDescription() << "\n";
931 std::string OldName = TypeToResolve->getDescription());
932 TypeToResolve->refineAbstractTypeTo(Ty);
933 }
934
935 return Ty;
936}
937
938//===----------------------------------------------------------------------===//
939// RunVMAsmParser - Define an interface to this parser
940//===----------------------------------------------------------------------===//
941//
942static Module* RunParser(Module * M);
943
Chris Lattner17e73c22007-11-18 08:46:26 +0000944Module *llvm::RunVMAsmParser(llvm::MemoryBuffer *MB) {
945 InitLLLexer(MB);
946 Module *M = RunParser(new Module(LLLgetFilename()));
947 FreeLexer();
948 return M;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000949}
950
951%}
952
953%union {
954 llvm::Module *ModuleVal;
955 llvm::Function *FunctionVal;
956 llvm::BasicBlock *BasicBlockVal;
957 llvm::TerminatorInst *TermInstVal;
958 llvm::Instruction *InstVal;
959 llvm::Constant *ConstVal;
960
961 const llvm::Type *PrimType;
962 std::list<llvm::PATypeHolder> *TypeList;
963 llvm::PATypeHolder *TypeVal;
964 llvm::Value *ValueVal;
965 std::vector<llvm::Value*> *ValueList;
966 llvm::ArgListType *ArgList;
967 llvm::TypeWithAttrs TypeWithAttrs;
968 llvm::TypeWithAttrsList *TypeWithAttrsList;
Dale Johannesencfb19e62007-11-05 21:20:28 +0000969 llvm::ParamList *ParamList;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000970
971 // Represent the RHS of PHI node
972 std::list<std::pair<llvm::Value*,
973 llvm::BasicBlock*> > *PHIList;
974 std::vector<std::pair<llvm::Constant*, llvm::BasicBlock*> > *JumpTable;
975 std::vector<llvm::Constant*> *ConstVector;
976
977 llvm::GlobalValue::LinkageTypes Linkage;
978 llvm::GlobalValue::VisibilityTypes Visibility;
Dale Johannesenf4666f52008-02-19 21:38:47 +0000979 llvm::ParameterAttributes ParamAttrs;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000980 llvm::APInt *APIntVal;
981 int64_t SInt64Val;
982 uint64_t UInt64Val;
983 int SIntVal;
984 unsigned UIntVal;
Dale Johannesenb9de9f02007-09-06 18:13:44 +0000985 llvm::APFloat *FPVal;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000986 bool BoolVal;
987
988 std::string *StrVal; // This memory must be deleted
989 llvm::ValID ValIDVal;
990
991 llvm::Instruction::BinaryOps BinaryOpVal;
992 llvm::Instruction::TermOps TermOpVal;
993 llvm::Instruction::MemoryOps MemOpVal;
994 llvm::Instruction::CastOps CastOpVal;
995 llvm::Instruction::OtherOps OtherOpVal;
996 llvm::ICmpInst::Predicate IPredicate;
997 llvm::FCmpInst::Predicate FPredicate;
998}
999
1000%type <ModuleVal> Module
1001%type <FunctionVal> Function FunctionProto FunctionHeader BasicBlockList
1002%type <BasicBlockVal> BasicBlock InstructionList
1003%type <TermInstVal> BBTerminatorInst
1004%type <InstVal> Inst InstVal MemoryInst
1005%type <ConstVal> ConstVal ConstExpr AliaseeRef
1006%type <ConstVector> ConstVector
1007%type <ArgList> ArgList ArgListH
1008%type <PHIList> PHIList
Dale Johannesencfb19e62007-11-05 21:20:28 +00001009%type <ParamList> ParamList // For call param lists & GEP indices
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001010%type <ValueList> IndexList // For GEP indices
1011%type <TypeList> TypeListI
1012%type <TypeWithAttrsList> ArgTypeList ArgTypeListI
1013%type <TypeWithAttrs> ArgType
1014%type <JumpTable> JumpTable
1015%type <BoolVal> GlobalType // GLOBAL or CONSTANT?
1016%type <BoolVal> ThreadLocal // 'thread_local' or not
1017%type <BoolVal> OptVolatile // 'volatile' or not
1018%type <BoolVal> OptTailCall // TAIL CALL or plain CALL.
1019%type <BoolVal> OptSideEffect // 'sideeffect' or not.
1020%type <Linkage> GVInternalLinkage GVExternalLinkage
1021%type <Linkage> FunctionDefineLinkage FunctionDeclareLinkage
1022%type <Linkage> AliasLinkage
1023%type <Visibility> GVVisibilityStyle
1024
1025// ValueRef - Unresolved reference to a definition or BB
1026%type <ValIDVal> ValueRef ConstValueRef SymbolicValueRef
1027%type <ValueVal> ResolvedVal // <type> <valref> pair
Devang Patel036f0382008-02-20 22:39:45 +00001028%type <ValueList> ReturnedVal
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001029// Tokens and types for handling constant integer values
1030//
1031// ESINT64VAL - A negative number within long long range
1032%token <SInt64Val> ESINT64VAL
1033
1034// EUINT64VAL - A positive number within uns. long long range
1035%token <UInt64Val> EUINT64VAL
1036
1037// ESAPINTVAL - A negative number with arbitrary precision
1038%token <APIntVal> ESAPINTVAL
1039
1040// EUAPINTVAL - A positive number with arbitrary precision
1041%token <APIntVal> EUAPINTVAL
1042
1043%token <UIntVal> LOCALVAL_ID GLOBALVAL_ID // %123 @123
1044%token <FPVal> FPVAL // Float or Double constant
1045
1046// Built in types...
1047%type <TypeVal> Types ResultTypes
1048%type <PrimType> IntType FPType PrimType // Classifications
1049%token <PrimType> VOID INTTYPE
Dale Johannesenf325d9f2007-08-03 01:03:46 +00001050%token <PrimType> FLOAT DOUBLE X86_FP80 FP128 PPC_FP128 LABEL
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001051%token TYPE
1052
1053
1054%token<StrVal> LOCALVAR GLOBALVAR LABELSTR
1055%token<StrVal> STRINGCONSTANT ATSTRINGCONSTANT PCTSTRINGCONSTANT
1056%type <StrVal> LocalName OptLocalName OptLocalAssign
1057%type <StrVal> GlobalName OptGlobalAssign GlobalAssign
Gordon Henriksen13fe5e32007-12-10 03:18:06 +00001058%type <StrVal> OptSection SectionString OptGC
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001059
Christopher Lamb20a39e92007-12-12 08:44:39 +00001060%type <UIntVal> OptAlign OptCAlign OptAddrSpace
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001061
1062%token ZEROINITIALIZER TRUETOK FALSETOK BEGINTOK ENDTOK
1063%token DECLARE DEFINE GLOBAL CONSTANT SECTION ALIAS VOLATILE THREAD_LOCAL
1064%token TO DOTDOTDOT NULL_TOK UNDEF INTERNAL LINKONCE WEAK APPENDING
Dale Johannesen58562d32008-05-14 20:14:09 +00001065%token DLLIMPORT DLLEXPORT EXTERN_WEAK COMMON
Christopher Lamb44d62f62007-12-11 08:59:05 +00001066%token OPAQUE EXTERNAL TARGET TRIPLE ALIGN ADDRSPACE
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001067%token DEPLIBS CALL TAIL ASM_TOK MODULE SIDEEFFECT
1068%token CC_TOK CCC_TOK FASTCC_TOK COLDCC_TOK X86_STDCALLCC_TOK X86_FASTCALLCC_TOK
Nick Lewyckyd8aa33a2008-04-25 16:53:59 +00001069%token DATALAYOUT
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001070%type <UIntVal> OptCallingConv
1071%type <ParamAttrs> OptParamAttrs ParamAttr
1072%type <ParamAttrs> OptFuncAttrs FuncAttr
1073
1074// Basic Block Terminating Operators
1075%token <TermOpVal> RET BR SWITCH INVOKE UNWIND UNREACHABLE
1076
1077// Binary Operators
1078%type <BinaryOpVal> ArithmeticOps LogicalOps // Binops Subcatagories
1079%token <BinaryOpVal> ADD SUB MUL UDIV SDIV FDIV UREM SREM FREM AND OR XOR
1080%token <BinaryOpVal> SHL LSHR ASHR
1081
Nate Begeman646fa482008-05-12 19:01:56 +00001082%token <OtherOpVal> ICMP FCMP VICMP VFCMP
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001083%type <IPredicate> IPredicates
1084%type <FPredicate> FPredicates
1085%token EQ NE SLT SGT SLE SGE ULT UGT ULE UGE
1086%token OEQ ONE OLT OGT OLE OGE ORD UNO UEQ UNE
1087
1088// Memory Instructions
1089%token <MemOpVal> MALLOC ALLOCA FREE LOAD STORE GETELEMENTPTR
1090
1091// Cast Operators
1092%type <CastOpVal> CastOps
1093%token <CastOpVal> TRUNC ZEXT SEXT FPTRUNC FPEXT BITCAST
1094%token <CastOpVal> UITOFP SITOFP FPTOUI FPTOSI INTTOPTR PTRTOINT
1095
1096// Other Operators
1097%token <OtherOpVal> PHI_TOK SELECT VAARG
1098%token <OtherOpVal> EXTRACTELEMENT INSERTELEMENT SHUFFLEVECTOR
Devang Patele5c806a2008-02-19 22:26:37 +00001099%token <OtherOpVal> GETRESULT
Dan Gohmane6b1ee62008-05-23 01:55:30 +00001100%token <OtherOpVal> EXTRACTVALUE INSERTVALUE
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001101
1102// Function Attributes
Duncan Sands38947cd2007-07-27 12:58:54 +00001103%token SIGNEXT ZEROEXT NORETURN INREG SRET NOUNWIND NOALIAS BYVAL NEST
Gordon Henriksen13fe5e32007-12-10 03:18:06 +00001104%token READNONE READONLY GC
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001105
1106// Visibility Styles
1107%token DEFAULT HIDDEN PROTECTED
1108
1109%start Module
1110%%
1111
1112
1113// Operations that are notably excluded from this list include:
1114// RET, BR, & SWITCH because they end basic blocks and are treated specially.
1115//
1116ArithmeticOps: ADD | SUB | MUL | UDIV | SDIV | FDIV | UREM | SREM | FREM;
1117LogicalOps : SHL | LSHR | ASHR | AND | OR | XOR;
1118CastOps : TRUNC | ZEXT | SEXT | FPTRUNC | FPEXT | BITCAST |
1119 UITOFP | SITOFP | FPTOUI | FPTOSI | INTTOPTR | PTRTOINT;
1120
1121IPredicates
1122 : EQ { $$ = ICmpInst::ICMP_EQ; } | NE { $$ = ICmpInst::ICMP_NE; }
1123 | SLT { $$ = ICmpInst::ICMP_SLT; } | SGT { $$ = ICmpInst::ICMP_SGT; }
1124 | SLE { $$ = ICmpInst::ICMP_SLE; } | SGE { $$ = ICmpInst::ICMP_SGE; }
1125 | ULT { $$ = ICmpInst::ICMP_ULT; } | UGT { $$ = ICmpInst::ICMP_UGT; }
1126 | ULE { $$ = ICmpInst::ICMP_ULE; } | UGE { $$ = ICmpInst::ICMP_UGE; }
1127 ;
1128
1129FPredicates
1130 : OEQ { $$ = FCmpInst::FCMP_OEQ; } | ONE { $$ = FCmpInst::FCMP_ONE; }
1131 | OLT { $$ = FCmpInst::FCMP_OLT; } | OGT { $$ = FCmpInst::FCMP_OGT; }
1132 | OLE { $$ = FCmpInst::FCMP_OLE; } | OGE { $$ = FCmpInst::FCMP_OGE; }
1133 | ORD { $$ = FCmpInst::FCMP_ORD; } | UNO { $$ = FCmpInst::FCMP_UNO; }
1134 | UEQ { $$ = FCmpInst::FCMP_UEQ; } | UNE { $$ = FCmpInst::FCMP_UNE; }
1135 | ULT { $$ = FCmpInst::FCMP_ULT; } | UGT { $$ = FCmpInst::FCMP_UGT; }
1136 | ULE { $$ = FCmpInst::FCMP_ULE; } | UGE { $$ = FCmpInst::FCMP_UGE; }
1137 | TRUETOK { $$ = FCmpInst::FCMP_TRUE; }
1138 | FALSETOK { $$ = FCmpInst::FCMP_FALSE; }
1139 ;
1140
1141// These are some types that allow classification if we only want a particular
1142// thing... for example, only a signed, unsigned, or integral type.
1143IntType : INTTYPE;
Dale Johannesenf325d9f2007-08-03 01:03:46 +00001144FPType : FLOAT | DOUBLE | PPC_FP128 | FP128 | X86_FP80;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001145
1146LocalName : LOCALVAR | STRINGCONSTANT | PCTSTRINGCONSTANT ;
1147OptLocalName : LocalName | /*empty*/ { $$ = 0; };
1148
Christopher Lamb20a39e92007-12-12 08:44:39 +00001149OptAddrSpace : ADDRSPACE '(' EUINT64VAL ')' { $$=$3; }
1150 | /*empty*/ { $$=0; };
1151
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001152/// OptLocalAssign - Value producing statements have an optional assignment
1153/// component.
1154OptLocalAssign : LocalName '=' {
1155 $$ = $1;
1156 CHECK_FOR_ERROR
1157 }
1158 | /*empty*/ {
1159 $$ = 0;
1160 CHECK_FOR_ERROR
1161 };
1162
1163GlobalName : GLOBALVAR | ATSTRINGCONSTANT ;
1164
1165OptGlobalAssign : GlobalAssign
1166 | /*empty*/ {
1167 $$ = 0;
1168 CHECK_FOR_ERROR
1169 };
1170
1171GlobalAssign : GlobalName '=' {
1172 $$ = $1;
1173 CHECK_FOR_ERROR
1174 };
1175
1176GVInternalLinkage
1177 : INTERNAL { $$ = GlobalValue::InternalLinkage; }
1178 | WEAK { $$ = GlobalValue::WeakLinkage; }
1179 | LINKONCE { $$ = GlobalValue::LinkOnceLinkage; }
1180 | APPENDING { $$ = GlobalValue::AppendingLinkage; }
1181 | DLLEXPORT { $$ = GlobalValue::DLLExportLinkage; }
Dale Johannesen58562d32008-05-14 20:14:09 +00001182 | COMMON { $$ = GlobalValue::CommonLinkage; }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001183 ;
1184
1185GVExternalLinkage
1186 : DLLIMPORT { $$ = GlobalValue::DLLImportLinkage; }
1187 | EXTERN_WEAK { $$ = GlobalValue::ExternalWeakLinkage; }
1188 | EXTERNAL { $$ = GlobalValue::ExternalLinkage; }
1189 ;
1190
1191GVVisibilityStyle
1192 : /*empty*/ { $$ = GlobalValue::DefaultVisibility; }
1193 | DEFAULT { $$ = GlobalValue::DefaultVisibility; }
1194 | HIDDEN { $$ = GlobalValue::HiddenVisibility; }
1195 | PROTECTED { $$ = GlobalValue::ProtectedVisibility; }
1196 ;
1197
1198FunctionDeclareLinkage
1199 : /*empty*/ { $$ = GlobalValue::ExternalLinkage; }
1200 | DLLIMPORT { $$ = GlobalValue::DLLImportLinkage; }
1201 | EXTERN_WEAK { $$ = GlobalValue::ExternalWeakLinkage; }
1202 ;
1203
1204FunctionDefineLinkage
1205 : /*empty*/ { $$ = GlobalValue::ExternalLinkage; }
1206 | INTERNAL { $$ = GlobalValue::InternalLinkage; }
1207 | LINKONCE { $$ = GlobalValue::LinkOnceLinkage; }
1208 | WEAK { $$ = GlobalValue::WeakLinkage; }
1209 | DLLEXPORT { $$ = GlobalValue::DLLExportLinkage; }
1210 ;
1211
1212AliasLinkage
1213 : /*empty*/ { $$ = GlobalValue::ExternalLinkage; }
1214 | WEAK { $$ = GlobalValue::WeakLinkage; }
1215 | INTERNAL { $$ = GlobalValue::InternalLinkage; }
1216 ;
1217
1218OptCallingConv : /*empty*/ { $$ = CallingConv::C; } |
1219 CCC_TOK { $$ = CallingConv::C; } |
1220 FASTCC_TOK { $$ = CallingConv::Fast; } |
1221 COLDCC_TOK { $$ = CallingConv::Cold; } |
1222 X86_STDCALLCC_TOK { $$ = CallingConv::X86_StdCall; } |
1223 X86_FASTCALLCC_TOK { $$ = CallingConv::X86_FastCall; } |
1224 CC_TOK EUINT64VAL {
1225 if ((unsigned)$2 != $2)
1226 GEN_ERROR("Calling conv too large");
1227 $$ = $2;
1228 CHECK_FOR_ERROR
1229 };
1230
Reid Spencerf234bed2007-07-19 23:13:04 +00001231ParamAttr : ZEROEXT { $$ = ParamAttr::ZExt; }
Reid Spencer2abbad92007-07-31 02:57:37 +00001232 | ZEXT { $$ = ParamAttr::ZExt; }
Reid Spencerf234bed2007-07-19 23:13:04 +00001233 | SIGNEXT { $$ = ParamAttr::SExt; }
Reid Spencer2abbad92007-07-31 02:57:37 +00001234 | SEXT { $$ = ParamAttr::SExt; }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001235 | INREG { $$ = ParamAttr::InReg; }
1236 | SRET { $$ = ParamAttr::StructRet; }
1237 | NOALIAS { $$ = ParamAttr::NoAlias; }
Duncan Sands38947cd2007-07-27 12:58:54 +00001238 | BYVAL { $$ = ParamAttr::ByVal; }
1239 | NEST { $$ = ParamAttr::Nest; }
Dale Johannesen9b398782008-02-22 17:49:45 +00001240 | ALIGN EUINT64VAL { $$ =
1241 ParamAttr::constructAlignmentFromInt($2); }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001242 ;
1243
1244OptParamAttrs : /* empty */ { $$ = ParamAttr::None; }
1245 | OptParamAttrs ParamAttr {
1246 $$ = $1 | $2;
1247 }
1248 ;
1249
1250FuncAttr : NORETURN { $$ = ParamAttr::NoReturn; }
1251 | NOUNWIND { $$ = ParamAttr::NoUnwind; }
Reid Spencerf234bed2007-07-19 23:13:04 +00001252 | ZEROEXT { $$ = ParamAttr::ZExt; }
1253 | SIGNEXT { $$ = ParamAttr::SExt; }
Duncan Sands13e13f82007-11-22 20:23:04 +00001254 | READNONE { $$ = ParamAttr::ReadNone; }
1255 | READONLY { $$ = ParamAttr::ReadOnly; }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001256 ;
1257
1258OptFuncAttrs : /* empty */ { $$ = ParamAttr::None; }
1259 | OptFuncAttrs FuncAttr {
1260 $$ = $1 | $2;
1261 }
1262 ;
1263
Gordon Henriksen13fe5e32007-12-10 03:18:06 +00001264OptGC : /* empty */ { $$ = 0; }
1265 | GC STRINGCONSTANT {
1266 $$ = $2;
1267 }
1268 ;
1269
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001270// OptAlign/OptCAlign - An optional alignment, and an optional alignment with
1271// a comma before it.
1272OptAlign : /*empty*/ { $$ = 0; } |
1273 ALIGN EUINT64VAL {
1274 $$ = $2;
1275 if ($$ != 0 && !isPowerOf2_32($$))
1276 GEN_ERROR("Alignment must be a power of two");
1277 CHECK_FOR_ERROR
1278};
1279OptCAlign : /*empty*/ { $$ = 0; } |
1280 ',' ALIGN EUINT64VAL {
1281 $$ = $3;
1282 if ($$ != 0 && !isPowerOf2_32($$))
1283 GEN_ERROR("Alignment must be a power of two");
1284 CHECK_FOR_ERROR
1285};
1286
1287
Christopher Lamb44d62f62007-12-11 08:59:05 +00001288
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001289SectionString : SECTION STRINGCONSTANT {
1290 for (unsigned i = 0, e = $2->length(); i != e; ++i)
1291 if ((*$2)[i] == '"' || (*$2)[i] == '\\')
1292 GEN_ERROR("Invalid character in section name");
1293 $$ = $2;
1294 CHECK_FOR_ERROR
1295};
1296
1297OptSection : /*empty*/ { $$ = 0; } |
1298 SectionString { $$ = $1; };
1299
1300// GlobalVarAttributes - Used to pass the attributes string on a global. CurGV
1301// is set to be the global we are processing.
1302//
1303GlobalVarAttributes : /* empty */ {} |
1304 ',' GlobalVarAttribute GlobalVarAttributes {};
1305GlobalVarAttribute : SectionString {
1306 CurGV->setSection(*$1);
1307 delete $1;
1308 CHECK_FOR_ERROR
1309 }
1310 | ALIGN EUINT64VAL {
1311 if ($2 != 0 && !isPowerOf2_32($2))
1312 GEN_ERROR("Alignment must be a power of two");
1313 CurGV->setAlignment($2);
1314 CHECK_FOR_ERROR
1315 };
1316
1317//===----------------------------------------------------------------------===//
1318// Types includes all predefined types... except void, because it can only be
1319// used in specific contexts (function returning void for example).
1320
1321// Derived types are added later...
1322//
Dale Johannesenf325d9f2007-08-03 01:03:46 +00001323PrimType : INTTYPE | FLOAT | DOUBLE | PPC_FP128 | FP128 | X86_FP80 | LABEL ;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001324
1325Types
1326 : OPAQUE {
1327 $$ = new PATypeHolder(OpaqueType::get());
1328 CHECK_FOR_ERROR
1329 }
1330 | PrimType {
1331 $$ = new PATypeHolder($1);
1332 CHECK_FOR_ERROR
1333 }
Christopher Lamb20a39e92007-12-12 08:44:39 +00001334 | Types OptAddrSpace '*' { // Pointer type?
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001335 if (*$1 == Type::LabelTy)
1336 GEN_ERROR("Cannot form a pointer to a basic block");
Christopher Lamb20a39e92007-12-12 08:44:39 +00001337 $$ = new PATypeHolder(HandleUpRefs(PointerType::get(*$1, $2)));
Christopher Lamb44d62f62007-12-11 08:59:05 +00001338 delete $1;
1339 CHECK_FOR_ERROR
1340 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001341 | SymbolicValueRef { // Named types are also simple types...
1342 const Type* tmp = getTypeVal($1);
1343 CHECK_FOR_ERROR
1344 $$ = new PATypeHolder(tmp);
1345 }
1346 | '\\' EUINT64VAL { // Type UpReference
1347 if ($2 > (uint64_t)~0U) GEN_ERROR("Value out of range");
1348 OpaqueType *OT = OpaqueType::get(); // Use temporary placeholder
1349 UpRefs.push_back(UpRefRecord((unsigned)$2, OT)); // Add to vector...
1350 $$ = new PATypeHolder(OT);
1351 UR_OUT("New Upreference!\n");
1352 CHECK_FOR_ERROR
1353 }
1354 | Types '(' ArgTypeListI ')' OptFuncAttrs {
Duncan Sandsf5588dc2007-11-27 13:23:08 +00001355 // Allow but ignore attributes on function types; this permits auto-upgrade.
1356 // FIXME: remove in LLVM 3.0.
Chris Lattner62de9332008-04-23 05:36:58 +00001357 const Type *RetTy = *$1;
1358 if (!FunctionType::isValidReturnType(RetTy))
1359 GEN_ERROR("Invalid result type for LLVM function");
1360
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001361 std::vector<const Type*> Params;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001362 TypeWithAttrsList::iterator I = $3->begin(), E = $3->end();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00001363 for (; I != E; ++I ) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001364 const Type *Ty = I->Ty->get();
1365 Params.push_back(Ty);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001366 }
Anton Korobeynikova2c02272007-12-03 19:16:54 +00001367
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001368 bool isVarArg = Params.size() && Params.back() == Type::VoidTy;
1369 if (isVarArg) Params.pop_back();
1370
Anton Korobeynikov9ab58082007-12-03 21:00:45 +00001371 for (unsigned i = 0; i != Params.size(); ++i)
1372 if (!(Params[i]->isFirstClassType() || isa<OpaqueType>(Params[i])))
1373 GEN_ERROR("Function arguments must be value types!");
1374
1375 CHECK_FOR_ERROR
1376
Anton Korobeynikova2c02272007-12-03 19:16:54 +00001377 FunctionType *FT = FunctionType::get(RetTy, Params, isVarArg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001378 delete $3; // Delete the argument list
1379 delete $1; // Delete the return type handle
1380 $$ = new PATypeHolder(HandleUpRefs(FT));
1381 CHECK_FOR_ERROR
1382 }
1383 | VOID '(' ArgTypeListI ')' OptFuncAttrs {
Duncan Sandsf5588dc2007-11-27 13:23:08 +00001384 // Allow but ignore attributes on function types; this permits auto-upgrade.
1385 // FIXME: remove in LLVM 3.0.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001386 std::vector<const Type*> Params;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001387 TypeWithAttrsList::iterator I = $3->begin(), E = $3->end();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00001388 for ( ; I != E; ++I ) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001389 const Type* Ty = I->Ty->get();
1390 Params.push_back(Ty);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001391 }
Anton Korobeynikova2c02272007-12-03 19:16:54 +00001392
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001393 bool isVarArg = Params.size() && Params.back() == Type::VoidTy;
1394 if (isVarArg) Params.pop_back();
1395
Anton Korobeynikov9ab58082007-12-03 21:00:45 +00001396 for (unsigned i = 0; i != Params.size(); ++i)
1397 if (!(Params[i]->isFirstClassType() || isa<OpaqueType>(Params[i])))
1398 GEN_ERROR("Function arguments must be value types!");
1399
1400 CHECK_FOR_ERROR
1401
Duncan Sandsf5588dc2007-11-27 13:23:08 +00001402 FunctionType *FT = FunctionType::get($1, Params, isVarArg);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001403 delete $3; // Delete the argument list
1404 $$ = new PATypeHolder(HandleUpRefs(FT));
1405 CHECK_FOR_ERROR
1406 }
1407
1408 | '[' EUINT64VAL 'x' Types ']' { // Sized array type?
Dan Gohmance5734e2008-05-23 21:40:55 +00001409 $$ = new PATypeHolder(HandleUpRefs(ArrayType::get(*$4, $2)));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001410 delete $4;
1411 CHECK_FOR_ERROR
1412 }
1413 | '<' EUINT64VAL 'x' Types '>' { // Vector type?
1414 const llvm::Type* ElemTy = $4->get();
1415 if ((unsigned)$2 != $2)
1416 GEN_ERROR("Unsigned result not equal to signed result");
1417 if (!ElemTy->isFloatingPoint() && !ElemTy->isInteger())
1418 GEN_ERROR("Element type of a VectorType must be primitive");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001419 $$ = new PATypeHolder(HandleUpRefs(VectorType::get(*$4, (unsigned)$2)));
1420 delete $4;
1421 CHECK_FOR_ERROR
1422 }
1423 | '{' TypeListI '}' { // Structure type?
1424 std::vector<const Type*> Elements;
1425 for (std::list<llvm::PATypeHolder>::iterator I = $2->begin(),
1426 E = $2->end(); I != E; ++I)
1427 Elements.push_back(*I);
1428
1429 $$ = new PATypeHolder(HandleUpRefs(StructType::get(Elements)));
1430 delete $2;
1431 CHECK_FOR_ERROR
1432 }
1433 | '{' '}' { // Empty structure type?
1434 $$ = new PATypeHolder(StructType::get(std::vector<const Type*>()));
1435 CHECK_FOR_ERROR
1436 }
1437 | '<' '{' TypeListI '}' '>' {
1438 std::vector<const Type*> Elements;
1439 for (std::list<llvm::PATypeHolder>::iterator I = $3->begin(),
1440 E = $3->end(); I != E; ++I)
1441 Elements.push_back(*I);
1442
1443 $$ = new PATypeHolder(HandleUpRefs(StructType::get(Elements, true)));
1444 delete $3;
1445 CHECK_FOR_ERROR
1446 }
1447 | '<' '{' '}' '>' { // Empty structure type?
1448 $$ = new PATypeHolder(StructType::get(std::vector<const Type*>(), true));
1449 CHECK_FOR_ERROR
1450 }
1451 ;
1452
1453ArgType
Duncan Sandsf5588dc2007-11-27 13:23:08 +00001454 : Types OptParamAttrs {
1455 // Allow but ignore attributes on function types; this permits auto-upgrade.
1456 // FIXME: remove in LLVM 3.0.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001457 $$.Ty = $1;
Duncan Sandsf5588dc2007-11-27 13:23:08 +00001458 $$.Attrs = ParamAttr::None;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001459 }
1460 ;
1461
1462ResultTypes
1463 : Types {
1464 if (!UpRefs.empty())
1465 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
Devang Patel62417142008-02-23 01:17:17 +00001466 if (!(*$1)->isFirstClassType() && !isa<StructType>($1->get()))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001467 GEN_ERROR("LLVM functions cannot return aggregate types");
1468 $$ = $1;
1469 }
1470 | VOID {
1471 $$ = new PATypeHolder(Type::VoidTy);
1472 }
1473 ;
1474
1475ArgTypeList : ArgType {
1476 $$ = new TypeWithAttrsList();
1477 $$->push_back($1);
1478 CHECK_FOR_ERROR
1479 }
1480 | ArgTypeList ',' ArgType {
1481 ($$=$1)->push_back($3);
1482 CHECK_FOR_ERROR
1483 }
1484 ;
1485
1486ArgTypeListI
1487 : ArgTypeList
1488 | ArgTypeList ',' DOTDOTDOT {
1489 $$=$1;
1490 TypeWithAttrs TWA; TWA.Attrs = ParamAttr::None;
1491 TWA.Ty = new PATypeHolder(Type::VoidTy);
1492 $$->push_back(TWA);
1493 CHECK_FOR_ERROR
1494 }
1495 | DOTDOTDOT {
1496 $$ = new TypeWithAttrsList;
1497 TypeWithAttrs TWA; TWA.Attrs = ParamAttr::None;
1498 TWA.Ty = new PATypeHolder(Type::VoidTy);
1499 $$->push_back(TWA);
1500 CHECK_FOR_ERROR
1501 }
1502 | /*empty*/ {
1503 $$ = new TypeWithAttrsList();
1504 CHECK_FOR_ERROR
1505 };
1506
1507// TypeList - Used for struct declarations and as a basis for function type
1508// declaration type lists
1509//
1510TypeListI : Types {
1511 $$ = new std::list<PATypeHolder>();
1512 $$->push_back(*$1);
1513 delete $1;
1514 CHECK_FOR_ERROR
1515 }
1516 | TypeListI ',' Types {
1517 ($$=$1)->push_back(*$3);
1518 delete $3;
1519 CHECK_FOR_ERROR
1520 };
1521
1522// ConstVal - The various declarations that go into the constant pool. This
1523// production is used ONLY to represent constants that show up AFTER a 'const',
1524// 'constant' or 'global' token at global scope. Constants that can be inlined
1525// into other expressions (such as integers and constexprs) are handled by the
1526// ResolvedVal, ValueRef and ConstValueRef productions.
1527//
1528ConstVal: Types '[' ConstVector ']' { // Nonempty unsized arr
1529 if (!UpRefs.empty())
1530 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1531 const ArrayType *ATy = dyn_cast<ArrayType>($1->get());
1532 if (ATy == 0)
1533 GEN_ERROR("Cannot make array constant with type: '" +
1534 (*$1)->getDescription() + "'");
1535 const Type *ETy = ATy->getElementType();
1536 int NumElements = ATy->getNumElements();
1537
1538 // Verify that we have the correct size...
1539 if (NumElements != -1 && NumElements != (int)$3->size())
1540 GEN_ERROR("Type mismatch: constant sized array initialized with " +
1541 utostr($3->size()) + " arguments, but has size of " +
1542 itostr(NumElements) + "");
1543
1544 // Verify all elements are correct type!
1545 for (unsigned i = 0; i < $3->size(); i++) {
1546 if (ETy != (*$3)[i]->getType())
1547 GEN_ERROR("Element #" + utostr(i) + " is not of type '" +
1548 ETy->getDescription() +"' as required!\nIt is of type '"+
1549 (*$3)[i]->getType()->getDescription() + "'.");
1550 }
1551
1552 $$ = ConstantArray::get(ATy, *$3);
1553 delete $1; delete $3;
1554 CHECK_FOR_ERROR
1555 }
1556 | Types '[' ']' {
1557 if (!UpRefs.empty())
1558 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1559 const ArrayType *ATy = dyn_cast<ArrayType>($1->get());
1560 if (ATy == 0)
1561 GEN_ERROR("Cannot make array constant with type: '" +
1562 (*$1)->getDescription() + "'");
1563
1564 int NumElements = ATy->getNumElements();
1565 if (NumElements != -1 && NumElements != 0)
1566 GEN_ERROR("Type mismatch: constant sized array initialized with 0"
1567 " arguments, but has size of " + itostr(NumElements) +"");
1568 $$ = ConstantArray::get(ATy, std::vector<Constant*>());
1569 delete $1;
1570 CHECK_FOR_ERROR
1571 }
1572 | Types 'c' STRINGCONSTANT {
1573 if (!UpRefs.empty())
1574 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1575 const ArrayType *ATy = dyn_cast<ArrayType>($1->get());
1576 if (ATy == 0)
1577 GEN_ERROR("Cannot make array constant with type: '" +
1578 (*$1)->getDescription() + "'");
1579
1580 int NumElements = ATy->getNumElements();
1581 const Type *ETy = ATy->getElementType();
1582 if (NumElements != -1 && NumElements != int($3->length()))
1583 GEN_ERROR("Can't build string constant of size " +
1584 itostr((int)($3->length())) +
1585 " when array has size " + itostr(NumElements) + "");
1586 std::vector<Constant*> Vals;
1587 if (ETy == Type::Int8Ty) {
1588 for (unsigned i = 0; i < $3->length(); ++i)
1589 Vals.push_back(ConstantInt::get(ETy, (*$3)[i]));
1590 } else {
1591 delete $3;
1592 GEN_ERROR("Cannot build string arrays of non byte sized elements");
1593 }
1594 delete $3;
1595 $$ = ConstantArray::get(ATy, Vals);
1596 delete $1;
1597 CHECK_FOR_ERROR
1598 }
1599 | Types '<' ConstVector '>' { // Nonempty unsized arr
1600 if (!UpRefs.empty())
1601 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1602 const VectorType *PTy = dyn_cast<VectorType>($1->get());
1603 if (PTy == 0)
1604 GEN_ERROR("Cannot make packed constant with type: '" +
1605 (*$1)->getDescription() + "'");
1606 const Type *ETy = PTy->getElementType();
1607 int NumElements = PTy->getNumElements();
1608
1609 // Verify that we have the correct size...
1610 if (NumElements != -1 && NumElements != (int)$3->size())
1611 GEN_ERROR("Type mismatch: constant sized packed initialized with " +
1612 utostr($3->size()) + " arguments, but has size of " +
1613 itostr(NumElements) + "");
1614
1615 // Verify all elements are correct type!
1616 for (unsigned i = 0; i < $3->size(); i++) {
1617 if (ETy != (*$3)[i]->getType())
1618 GEN_ERROR("Element #" + utostr(i) + " is not of type '" +
1619 ETy->getDescription() +"' as required!\nIt is of type '"+
1620 (*$3)[i]->getType()->getDescription() + "'.");
1621 }
1622
1623 $$ = ConstantVector::get(PTy, *$3);
1624 delete $1; delete $3;
1625 CHECK_FOR_ERROR
1626 }
1627 | Types '{' ConstVector '}' {
1628 const StructType *STy = dyn_cast<StructType>($1->get());
1629 if (STy == 0)
1630 GEN_ERROR("Cannot make struct constant with type: '" +
1631 (*$1)->getDescription() + "'");
1632
1633 if ($3->size() != STy->getNumContainedTypes())
1634 GEN_ERROR("Illegal number of initializers for structure type");
1635
1636 // Check to ensure that constants are compatible with the type initializer!
1637 for (unsigned i = 0, e = $3->size(); i != e; ++i)
1638 if ((*$3)[i]->getType() != STy->getElementType(i))
1639 GEN_ERROR("Expected type '" +
1640 STy->getElementType(i)->getDescription() +
1641 "' for element #" + utostr(i) +
1642 " of structure initializer");
1643
1644 // Check to ensure that Type is not packed
1645 if (STy->isPacked())
1646 GEN_ERROR("Unpacked Initializer to vector type '" +
1647 STy->getDescription() + "'");
1648
1649 $$ = ConstantStruct::get(STy, *$3);
1650 delete $1; delete $3;
1651 CHECK_FOR_ERROR
1652 }
1653 | Types '{' '}' {
1654 if (!UpRefs.empty())
1655 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1656 const StructType *STy = dyn_cast<StructType>($1->get());
1657 if (STy == 0)
1658 GEN_ERROR("Cannot make struct constant with type: '" +
1659 (*$1)->getDescription() + "'");
1660
1661 if (STy->getNumContainedTypes() != 0)
1662 GEN_ERROR("Illegal number of initializers for structure type");
1663
1664 // Check to ensure that Type is not packed
1665 if (STy->isPacked())
1666 GEN_ERROR("Unpacked Initializer to vector type '" +
1667 STy->getDescription() + "'");
1668
1669 $$ = ConstantStruct::get(STy, std::vector<Constant*>());
1670 delete $1;
1671 CHECK_FOR_ERROR
1672 }
1673 | Types '<' '{' ConstVector '}' '>' {
1674 const StructType *STy = dyn_cast<StructType>($1->get());
1675 if (STy == 0)
1676 GEN_ERROR("Cannot make struct constant with type: '" +
1677 (*$1)->getDescription() + "'");
1678
1679 if ($4->size() != STy->getNumContainedTypes())
1680 GEN_ERROR("Illegal number of initializers for structure type");
1681
1682 // Check to ensure that constants are compatible with the type initializer!
1683 for (unsigned i = 0, e = $4->size(); i != e; ++i)
1684 if ((*$4)[i]->getType() != STy->getElementType(i))
1685 GEN_ERROR("Expected type '" +
1686 STy->getElementType(i)->getDescription() +
1687 "' for element #" + utostr(i) +
1688 " of structure initializer");
1689
1690 // Check to ensure that Type is packed
1691 if (!STy->isPacked())
1692 GEN_ERROR("Vector initializer to non-vector type '" +
1693 STy->getDescription() + "'");
1694
1695 $$ = ConstantStruct::get(STy, *$4);
1696 delete $1; delete $4;
1697 CHECK_FOR_ERROR
1698 }
1699 | Types '<' '{' '}' '>' {
1700 if (!UpRefs.empty())
1701 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1702 const StructType *STy = dyn_cast<StructType>($1->get());
1703 if (STy == 0)
1704 GEN_ERROR("Cannot make struct constant with type: '" +
1705 (*$1)->getDescription() + "'");
1706
1707 if (STy->getNumContainedTypes() != 0)
1708 GEN_ERROR("Illegal number of initializers for structure type");
1709
1710 // Check to ensure that Type is packed
1711 if (!STy->isPacked())
1712 GEN_ERROR("Vector initializer to non-vector type '" +
1713 STy->getDescription() + "'");
1714
1715 $$ = ConstantStruct::get(STy, std::vector<Constant*>());
1716 delete $1;
1717 CHECK_FOR_ERROR
1718 }
1719 | Types NULL_TOK {
1720 if (!UpRefs.empty())
1721 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1722 const PointerType *PTy = dyn_cast<PointerType>($1->get());
1723 if (PTy == 0)
1724 GEN_ERROR("Cannot make null pointer constant with type: '" +
1725 (*$1)->getDescription() + "'");
1726
1727 $$ = ConstantPointerNull::get(PTy);
1728 delete $1;
1729 CHECK_FOR_ERROR
1730 }
1731 | Types UNDEF {
1732 if (!UpRefs.empty())
1733 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1734 $$ = UndefValue::get($1->get());
1735 delete $1;
1736 CHECK_FOR_ERROR
1737 }
1738 | Types SymbolicValueRef {
1739 if (!UpRefs.empty())
1740 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1741 const PointerType *Ty = dyn_cast<PointerType>($1->get());
1742 if (Ty == 0)
Devang Patele5c806a2008-02-19 22:26:37 +00001743 GEN_ERROR("Global const reference must be a pointer type " + (*$1)->getDescription());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001744
1745 // ConstExprs can exist in the body of a function, thus creating
1746 // GlobalValues whenever they refer to a variable. Because we are in
1747 // the context of a function, getExistingVal will search the functions
1748 // symbol table instead of the module symbol table for the global symbol,
1749 // which throws things all off. To get around this, we just tell
1750 // getExistingVal that we are at global scope here.
1751 //
1752 Function *SavedCurFn = CurFun.CurrentFunction;
1753 CurFun.CurrentFunction = 0;
1754
1755 Value *V = getExistingVal(Ty, $2);
1756 CHECK_FOR_ERROR
1757
1758 CurFun.CurrentFunction = SavedCurFn;
1759
1760 // If this is an initializer for a constant pointer, which is referencing a
1761 // (currently) undefined variable, create a stub now that shall be replaced
1762 // in the future with the right type of variable.
1763 //
1764 if (V == 0) {
1765 assert(isa<PointerType>(Ty) && "Globals may only be used as pointers!");
1766 const PointerType *PT = cast<PointerType>(Ty);
1767
1768 // First check to see if the forward references value is already created!
1769 PerModuleInfo::GlobalRefsType::iterator I =
1770 CurModule.GlobalRefs.find(std::make_pair(PT, $2));
1771
1772 if (I != CurModule.GlobalRefs.end()) {
1773 V = I->second; // Placeholder already exists, use it...
1774 $2.destroy();
1775 } else {
1776 std::string Name;
1777 if ($2.Type == ValID::GlobalName)
1778 Name = $2.getName();
1779 else if ($2.Type != ValID::GlobalID)
1780 GEN_ERROR("Invalid reference to global");
1781
1782 // Create the forward referenced global.
1783 GlobalValue *GV;
1784 if (const FunctionType *FTy =
1785 dyn_cast<FunctionType>(PT->getElementType())) {
Gabor Greifd6da1d02008-04-06 20:25:17 +00001786 GV = Function::Create(FTy, GlobalValue::ExternalWeakLinkage, Name,
1787 CurModule.CurrentModule);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001788 } else {
1789 GV = new GlobalVariable(PT->getElementType(), false,
1790 GlobalValue::ExternalWeakLinkage, 0,
1791 Name, CurModule.CurrentModule);
1792 }
1793
1794 // Keep track of the fact that we have a forward ref to recycle it
1795 CurModule.GlobalRefs.insert(std::make_pair(std::make_pair(PT, $2), GV));
1796 V = GV;
1797 }
1798 }
1799
1800 $$ = cast<GlobalValue>(V);
1801 delete $1; // Free the type handle
1802 CHECK_FOR_ERROR
1803 }
1804 | Types ConstExpr {
1805 if (!UpRefs.empty())
1806 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1807 if ($1->get() != $2->getType())
1808 GEN_ERROR("Mismatched types for constant expression: " +
1809 (*$1)->getDescription() + " and " + $2->getType()->getDescription());
1810 $$ = $2;
1811 delete $1;
1812 CHECK_FOR_ERROR
1813 }
1814 | Types ZEROINITIALIZER {
1815 if (!UpRefs.empty())
1816 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
1817 const Type *Ty = $1->get();
1818 if (isa<FunctionType>(Ty) || Ty == Type::LabelTy || isa<OpaqueType>(Ty))
1819 GEN_ERROR("Cannot create a null initialized value of this type");
1820 $$ = Constant::getNullValue(Ty);
1821 delete $1;
1822 CHECK_FOR_ERROR
1823 }
1824 | IntType ESINT64VAL { // integral constants
1825 if (!ConstantInt::isValueValidForType($1, $2))
1826 GEN_ERROR("Constant value doesn't fit in type");
1827 $$ = ConstantInt::get($1, $2, true);
1828 CHECK_FOR_ERROR
1829 }
1830 | IntType ESAPINTVAL { // arbitrary precision integer constants
1831 uint32_t BitWidth = cast<IntegerType>($1)->getBitWidth();
1832 if ($2->getBitWidth() > BitWidth) {
1833 GEN_ERROR("Constant value does not fit in type");
1834 }
1835 $2->sextOrTrunc(BitWidth);
1836 $$ = ConstantInt::get(*$2);
1837 delete $2;
1838 CHECK_FOR_ERROR
1839 }
1840 | IntType EUINT64VAL { // integral constants
1841 if (!ConstantInt::isValueValidForType($1, $2))
1842 GEN_ERROR("Constant value doesn't fit in type");
1843 $$ = ConstantInt::get($1, $2, false);
1844 CHECK_FOR_ERROR
1845 }
1846 | IntType EUAPINTVAL { // arbitrary precision integer constants
1847 uint32_t BitWidth = cast<IntegerType>($1)->getBitWidth();
1848 if ($2->getBitWidth() > BitWidth) {
1849 GEN_ERROR("Constant value does not fit in type");
1850 }
1851 $2->zextOrTrunc(BitWidth);
1852 $$ = ConstantInt::get(*$2);
1853 delete $2;
1854 CHECK_FOR_ERROR
1855 }
1856 | INTTYPE TRUETOK { // Boolean constants
Dan Gohman36782aa2008-05-23 18:23:11 +00001857 if (cast<IntegerType>($1)->getBitWidth() != 1)
1858 GEN_ERROR("Constant true must have type i1");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001859 $$ = ConstantInt::getTrue();
1860 CHECK_FOR_ERROR
1861 }
1862 | INTTYPE FALSETOK { // Boolean constants
Dan Gohman36782aa2008-05-23 18:23:11 +00001863 if (cast<IntegerType>($1)->getBitWidth() != 1)
1864 GEN_ERROR("Constant false must have type i1");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001865 $$ = ConstantInt::getFalse();
1866 CHECK_FOR_ERROR
1867 }
Dale Johannesenfbd9cda2007-09-12 03:30:33 +00001868 | FPType FPVAL { // Floating point constants
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001869 if (!ConstantFP::isValueValidForType($1, *$2))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001870 GEN_ERROR("Floating point constant invalid for type");
Dale Johannesen1616e902007-09-11 18:32:33 +00001871 // Lexer has no type info, so builds all float and double FP constants
1872 // as double. Fix this here. Long double is done right.
1873 if (&$2->getSemantics()==&APFloat::IEEEdouble && $1==Type::FloatTy)
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001874 $2->convert(APFloat::IEEEsingle, APFloat::rmNearestTiesToEven);
Chris Lattner5e0610f2008-04-20 00:41:09 +00001875 $$ = ConstantFP::get(*$2);
Dale Johannesen3afee192007-09-07 21:07:57 +00001876 delete $2;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001877 CHECK_FOR_ERROR
1878 };
1879
1880
1881ConstExpr: CastOps '(' ConstVal TO Types ')' {
1882 if (!UpRefs.empty())
1883 GEN_ERROR("Invalid upreference in type: " + (*$5)->getDescription());
1884 Constant *Val = $3;
1885 const Type *DestTy = $5->get();
1886 if (!CastInst::castIsValid($1, $3, DestTy))
1887 GEN_ERROR("invalid cast opcode for cast from '" +
1888 Val->getType()->getDescription() + "' to '" +
1889 DestTy->getDescription() + "'");
1890 $$ = ConstantExpr::getCast($1, $3, DestTy);
1891 delete $5;
1892 }
1893 | GETELEMENTPTR '(' ConstVal IndexList ')' {
1894 if (!isa<PointerType>($3->getType()))
1895 GEN_ERROR("GetElementPtr requires a pointer operand");
1896
1897 const Type *IdxTy =
Dan Gohman8055f772008-05-15 19:50:34 +00001898 GetElementPtrInst::getIndexedType($3->getType(), $4->begin(), $4->end());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001899 if (!IdxTy)
1900 GEN_ERROR("Index list invalid for constant getelementptr");
1901
1902 SmallVector<Constant*, 8> IdxVec;
1903 for (unsigned i = 0, e = $4->size(); i != e; ++i)
1904 if (Constant *C = dyn_cast<Constant>((*$4)[i]))
1905 IdxVec.push_back(C);
1906 else
1907 GEN_ERROR("Indices to constant getelementptr must be constants");
1908
1909 delete $4;
1910
1911 $$ = ConstantExpr::getGetElementPtr($3, &IdxVec[0], IdxVec.size());
1912 CHECK_FOR_ERROR
1913 }
1914 | SELECT '(' ConstVal ',' ConstVal ',' ConstVal ')' {
1915 if ($3->getType() != Type::Int1Ty)
1916 GEN_ERROR("Select condition must be of boolean type");
1917 if ($5->getType() != $7->getType())
1918 GEN_ERROR("Select operand types must match");
1919 $$ = ConstantExpr::getSelect($3, $5, $7);
1920 CHECK_FOR_ERROR
1921 }
1922 | ArithmeticOps '(' ConstVal ',' ConstVal ')' {
1923 if ($3->getType() != $5->getType())
1924 GEN_ERROR("Binary operator types must match");
1925 CHECK_FOR_ERROR;
1926 $$ = ConstantExpr::get($1, $3, $5);
1927 }
1928 | LogicalOps '(' ConstVal ',' ConstVal ')' {
1929 if ($3->getType() != $5->getType())
1930 GEN_ERROR("Logical operator types must match");
1931 if (!$3->getType()->isInteger()) {
1932 if (Instruction::isShift($1) || !isa<VectorType>($3->getType()) ||
1933 !cast<VectorType>($3->getType())->getElementType()->isInteger())
1934 GEN_ERROR("Logical operator requires integral operands");
1935 }
1936 $$ = ConstantExpr::get($1, $3, $5);
1937 CHECK_FOR_ERROR
1938 }
1939 | ICMP IPredicates '(' ConstVal ',' ConstVal ')' {
1940 if ($4->getType() != $6->getType())
1941 GEN_ERROR("icmp operand types must match");
1942 $$ = ConstantExpr::getICmp($2, $4, $6);
1943 }
1944 | FCMP FPredicates '(' ConstVal ',' ConstVal ')' {
1945 if ($4->getType() != $6->getType())
1946 GEN_ERROR("fcmp operand types must match");
1947 $$ = ConstantExpr::getFCmp($2, $4, $6);
1948 }
Nate Begeman646fa482008-05-12 19:01:56 +00001949 | VICMP IPredicates '(' ConstVal ',' ConstVal ')' {
1950 if ($4->getType() != $6->getType())
1951 GEN_ERROR("vicmp operand types must match");
1952 $$ = ConstantExpr::getVICmp($2, $4, $6);
1953 }
1954 | VFCMP FPredicates '(' ConstVal ',' ConstVal ')' {
1955 if ($4->getType() != $6->getType())
1956 GEN_ERROR("vfcmp operand types must match");
1957 $$ = ConstantExpr::getVFCmp($2, $4, $6);
1958 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001959 | EXTRACTELEMENT '(' ConstVal ',' ConstVal ')' {
1960 if (!ExtractElementInst::isValidOperands($3, $5))
1961 GEN_ERROR("Invalid extractelement operands");
1962 $$ = ConstantExpr::getExtractElement($3, $5);
1963 CHECK_FOR_ERROR
1964 }
1965 | INSERTELEMENT '(' ConstVal ',' ConstVal ',' ConstVal ')' {
1966 if (!InsertElementInst::isValidOperands($3, $5, $7))
1967 GEN_ERROR("Invalid insertelement operands");
1968 $$ = ConstantExpr::getInsertElement($3, $5, $7);
1969 CHECK_FOR_ERROR
1970 }
1971 | SHUFFLEVECTOR '(' ConstVal ',' ConstVal ',' ConstVal ')' {
1972 if (!ShuffleVectorInst::isValidOperands($3, $5, $7))
1973 GEN_ERROR("Invalid shufflevector operands");
1974 $$ = ConstantExpr::getShuffleVector($3, $5, $7);
1975 CHECK_FOR_ERROR
Dan Gohmane6b1ee62008-05-23 01:55:30 +00001976 }
1977 | EXTRACTVALUE '(' ConstVal IndexList ')' {
1978 if (!isa<StructType>($3->getType()) && !isa<ArrayType>($3->getType()))
1979 GEN_ERROR("ExtractValue requires an aggregate operand");
1980
1981 const Type *IdxTy =
1982 ExtractValueInst::getIndexedType($3->getType(), $4->begin(), $4->end());
1983 if (!IdxTy)
1984 GEN_ERROR("Index list invalid for constant extractvalue");
1985
1986 SmallVector<Constant*, 8> IdxVec;
1987 for (unsigned i = 0, e = $4->size(); i != e; ++i)
1988 if (Constant *C = dyn_cast<Constant>((*$4)[i]))
1989 IdxVec.push_back(C);
1990 else
1991 GEN_ERROR("Indices to constant extractvalue must be constants");
1992
1993 delete $4;
1994
1995 $$ = ConstantExpr::getExtractValue($3, &IdxVec[0], IdxVec.size());
1996 CHECK_FOR_ERROR
1997 }
1998 | INSERTVALUE '(' ConstVal ',' ConstVal IndexList ')' {
1999 if (!isa<StructType>($3->getType()) && !isa<ArrayType>($3->getType()))
2000 GEN_ERROR("InsertValue requires an aggregate operand");
2001
2002 const Type *IdxTy =
2003 ExtractValueInst::getIndexedType($3->getType(), $6->begin(), $6->end());
2004 if (IdxTy != $5->getType())
2005 GEN_ERROR("Index list invalid for constant insertvalue");
2006
2007 SmallVector<Constant*, 8> IdxVec;
2008 for (unsigned i = 0, e = $6->size(); i != e; ++i)
2009 if (Constant *C = dyn_cast<Constant>((*$6)[i]))
2010 IdxVec.push_back(C);
2011 else
2012 GEN_ERROR("Indices to constant insertvalue must be constants");
2013
2014 delete $6;
2015
2016 $$ = ConstantExpr::getInsertValue($3, $5, &IdxVec[0], IdxVec.size());
2017 CHECK_FOR_ERROR
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002018 };
2019
2020
2021// ConstVector - A list of comma separated constants.
2022ConstVector : ConstVector ',' ConstVal {
2023 ($$ = $1)->push_back($3);
2024 CHECK_FOR_ERROR
2025 }
2026 | ConstVal {
2027 $$ = new std::vector<Constant*>();
2028 $$->push_back($1);
2029 CHECK_FOR_ERROR
2030 };
2031
2032
2033// GlobalType - Match either GLOBAL or CONSTANT for global declarations...
2034GlobalType : GLOBAL { $$ = false; } | CONSTANT { $$ = true; };
2035
2036// ThreadLocal
2037ThreadLocal : THREAD_LOCAL { $$ = true; } | { $$ = false; };
2038
2039// AliaseeRef - Match either GlobalValue or bitcast to GlobalValue.
2040AliaseeRef : ResultTypes SymbolicValueRef {
2041 const Type* VTy = $1->get();
2042 Value *V = getVal(VTy, $2);
Chris Lattner0f800522007-08-06 21:00:37 +00002043 CHECK_FOR_ERROR
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002044 GlobalValue* Aliasee = dyn_cast<GlobalValue>(V);
2045 if (!Aliasee)
2046 GEN_ERROR("Aliases can be created only to global values");
2047
2048 $$ = Aliasee;
2049 CHECK_FOR_ERROR
2050 delete $1;
2051 }
2052 | BITCAST '(' AliaseeRef TO Types ')' {
2053 Constant *Val = $3;
2054 const Type *DestTy = $5->get();
2055 if (!CastInst::castIsValid($1, $3, DestTy))
2056 GEN_ERROR("invalid cast opcode for cast from '" +
2057 Val->getType()->getDescription() + "' to '" +
2058 DestTy->getDescription() + "'");
2059
2060 $$ = ConstantExpr::getCast($1, $3, DestTy);
2061 CHECK_FOR_ERROR
2062 delete $5;
2063 };
2064
2065//===----------------------------------------------------------------------===//
2066// Rules to match Modules
2067//===----------------------------------------------------------------------===//
2068
2069// Module rule: Capture the result of parsing the whole file into a result
2070// variable...
2071//
2072Module
2073 : DefinitionList {
2074 $$ = ParserResult = CurModule.CurrentModule;
2075 CurModule.ModuleDone();
2076 CHECK_FOR_ERROR;
2077 }
2078 | /*empty*/ {
2079 $$ = ParserResult = CurModule.CurrentModule;
2080 CurModule.ModuleDone();
2081 CHECK_FOR_ERROR;
2082 }
2083 ;
2084
2085DefinitionList
2086 : Definition
2087 | DefinitionList Definition
2088 ;
2089
2090Definition
2091 : DEFINE { CurFun.isDeclare = false; } Function {
2092 CurFun.FunctionDone();
2093 CHECK_FOR_ERROR
2094 }
2095 | DECLARE { CurFun.isDeclare = true; } FunctionProto {
2096 CHECK_FOR_ERROR
2097 }
2098 | MODULE ASM_TOK AsmBlock {
2099 CHECK_FOR_ERROR
2100 }
2101 | OptLocalAssign TYPE Types {
2102 if (!UpRefs.empty())
2103 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
2104 // Eagerly resolve types. This is not an optimization, this is a
2105 // requirement that is due to the fact that we could have this:
2106 //
2107 // %list = type { %list * }
2108 // %list = type { %list * } ; repeated type decl
2109 //
2110 // If types are not resolved eagerly, then the two types will not be
2111 // determined to be the same type!
2112 //
2113 ResolveTypeTo($1, *$3);
2114
2115 if (!setTypeName(*$3, $1) && !$1) {
2116 CHECK_FOR_ERROR
2117 // If this is a named type that is not a redefinition, add it to the slot
2118 // table.
2119 CurModule.Types.push_back(*$3);
2120 }
2121
2122 delete $3;
2123 CHECK_FOR_ERROR
2124 }
2125 | OptLocalAssign TYPE VOID {
2126 ResolveTypeTo($1, $3);
2127
2128 if (!setTypeName($3, $1) && !$1) {
2129 CHECK_FOR_ERROR
2130 // If this is a named type that is not a redefinition, add it to the slot
2131 // table.
2132 CurModule.Types.push_back($3);
2133 }
2134 CHECK_FOR_ERROR
2135 }
Christopher Lamb20a39e92007-12-12 08:44:39 +00002136 | OptGlobalAssign GVVisibilityStyle ThreadLocal GlobalType ConstVal
2137 OptAddrSpace {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002138 /* "Externally Visible" Linkage */
2139 if ($5 == 0)
2140 GEN_ERROR("Global value initializer is not a constant");
2141 CurGV = ParseGlobalVariable($1, GlobalValue::ExternalLinkage,
Christopher Lamb20a39e92007-12-12 08:44:39 +00002142 $2, $4, $5->getType(), $5, $3, $6);
Christopher Lamb44d62f62007-12-11 08:59:05 +00002143 CHECK_FOR_ERROR
2144 } GlobalVarAttributes {
2145 CurGV = 0;
2146 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002147 | OptGlobalAssign GVInternalLinkage GVVisibilityStyle ThreadLocal GlobalType
Christopher Lamb20a39e92007-12-12 08:44:39 +00002148 ConstVal OptAddrSpace {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002149 if ($6 == 0)
2150 GEN_ERROR("Global value initializer is not a constant");
Christopher Lamb20a39e92007-12-12 08:44:39 +00002151 CurGV = ParseGlobalVariable($1, $2, $3, $5, $6->getType(), $6, $4, $7);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002152 CHECK_FOR_ERROR
2153 } GlobalVarAttributes {
2154 CurGV = 0;
2155 }
2156 | OptGlobalAssign GVExternalLinkage GVVisibilityStyle ThreadLocal GlobalType
Christopher Lamb20a39e92007-12-12 08:44:39 +00002157 Types OptAddrSpace {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002158 if (!UpRefs.empty())
2159 GEN_ERROR("Invalid upreference in type: " + (*$6)->getDescription());
Christopher Lamb20a39e92007-12-12 08:44:39 +00002160 CurGV = ParseGlobalVariable($1, $2, $3, $5, *$6, 0, $4, $7);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002161 CHECK_FOR_ERROR
2162 delete $6;
2163 } GlobalVarAttributes {
2164 CurGV = 0;
2165 CHECK_FOR_ERROR
2166 }
2167 | OptGlobalAssign GVVisibilityStyle ALIAS AliasLinkage AliaseeRef {
2168 std::string Name;
2169 if ($1) {
2170 Name = *$1;
2171 delete $1;
2172 }
2173 if (Name.empty())
2174 GEN_ERROR("Alias name cannot be empty");
2175
2176 Constant* Aliasee = $5;
2177 if (Aliasee == 0)
2178 GEN_ERROR(std::string("Invalid aliasee for alias: ") + Name);
2179
2180 GlobalAlias* GA = new GlobalAlias(Aliasee->getType(), $4, Name, Aliasee,
2181 CurModule.CurrentModule);
2182 GA->setVisibility($2);
2183 InsertValue(GA, CurModule.Values);
Chris Lattner9d99b312007-09-10 23:23:53 +00002184
2185
2186 // If there was a forward reference of this alias, resolve it now.
2187
2188 ValID ID;
2189 if (!Name.empty())
2190 ID = ValID::createGlobalName(Name);
2191 else
2192 ID = ValID::createGlobalID(CurModule.Values.size()-1);
2193
2194 if (GlobalValue *FWGV =
2195 CurModule.GetForwardRefForGlobal(GA->getType(), ID)) {
2196 // Replace uses of the fwdref with the actual alias.
2197 FWGV->replaceAllUsesWith(GA);
2198 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(FWGV))
2199 GV->eraseFromParent();
2200 else
2201 cast<Function>(FWGV)->eraseFromParent();
2202 }
2203 ID.destroy();
2204
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002205 CHECK_FOR_ERROR
2206 }
2207 | TARGET TargetDefinition {
2208 CHECK_FOR_ERROR
2209 }
2210 | DEPLIBS '=' LibrariesDefinition {
2211 CHECK_FOR_ERROR
2212 }
2213 ;
2214
2215
2216AsmBlock : STRINGCONSTANT {
2217 const std::string &AsmSoFar = CurModule.CurrentModule->getModuleInlineAsm();
2218 if (AsmSoFar.empty())
2219 CurModule.CurrentModule->setModuleInlineAsm(*$1);
2220 else
2221 CurModule.CurrentModule->setModuleInlineAsm(AsmSoFar+"\n"+*$1);
2222 delete $1;
2223 CHECK_FOR_ERROR
2224};
2225
2226TargetDefinition : TRIPLE '=' STRINGCONSTANT {
2227 CurModule.CurrentModule->setTargetTriple(*$3);
2228 delete $3;
2229 }
2230 | DATALAYOUT '=' STRINGCONSTANT {
2231 CurModule.CurrentModule->setDataLayout(*$3);
2232 delete $3;
2233 };
2234
2235LibrariesDefinition : '[' LibList ']';
2236
2237LibList : LibList ',' STRINGCONSTANT {
2238 CurModule.CurrentModule->addLibrary(*$3);
2239 delete $3;
2240 CHECK_FOR_ERROR
2241 }
2242 | STRINGCONSTANT {
2243 CurModule.CurrentModule->addLibrary(*$1);
2244 delete $1;
2245 CHECK_FOR_ERROR
2246 }
2247 | /* empty: end of list */ {
2248 CHECK_FOR_ERROR
2249 }
2250 ;
2251
2252//===----------------------------------------------------------------------===//
2253// Rules to match Function Headers
2254//===----------------------------------------------------------------------===//
2255
2256ArgListH : ArgListH ',' Types OptParamAttrs OptLocalName {
2257 if (!UpRefs.empty())
2258 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
Dan Gohman36782aa2008-05-23 18:23:11 +00002259 if (!(*$3)->isFirstClassType())
2260 GEN_ERROR("Argument types must be first-class");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002261 ArgListEntry E; E.Attrs = $4; E.Ty = $3; E.Name = $5;
2262 $$ = $1;
2263 $1->push_back(E);
2264 CHECK_FOR_ERROR
2265 }
2266 | Types OptParamAttrs OptLocalName {
2267 if (!UpRefs.empty())
2268 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
Dan Gohman36782aa2008-05-23 18:23:11 +00002269 if (!(*$1)->isFirstClassType())
2270 GEN_ERROR("Argument types must be first-class");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002271 ArgListEntry E; E.Attrs = $2; E.Ty = $1; E.Name = $3;
2272 $$ = new ArgListType;
2273 $$->push_back(E);
2274 CHECK_FOR_ERROR
2275 };
2276
2277ArgList : ArgListH {
2278 $$ = $1;
2279 CHECK_FOR_ERROR
2280 }
2281 | ArgListH ',' DOTDOTDOT {
2282 $$ = $1;
2283 struct ArgListEntry E;
2284 E.Ty = new PATypeHolder(Type::VoidTy);
2285 E.Name = 0;
2286 E.Attrs = ParamAttr::None;
2287 $$->push_back(E);
2288 CHECK_FOR_ERROR
2289 }
2290 | DOTDOTDOT {
2291 $$ = new ArgListType;
2292 struct ArgListEntry E;
2293 E.Ty = new PATypeHolder(Type::VoidTy);
2294 E.Name = 0;
2295 E.Attrs = ParamAttr::None;
2296 $$->push_back(E);
2297 CHECK_FOR_ERROR
2298 }
2299 | /* empty */ {
2300 $$ = 0;
2301 CHECK_FOR_ERROR
2302 };
2303
2304FunctionHeaderH : OptCallingConv ResultTypes GlobalName '(' ArgList ')'
Gordon Henriksen13fe5e32007-12-10 03:18:06 +00002305 OptFuncAttrs OptSection OptAlign OptGC {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002306 std::string FunctionName(*$3);
2307 delete $3; // Free strdup'd memory!
2308
2309 // Check the function result for abstractness if this is a define. We should
2310 // have no abstract types at this point
2311 if (!CurFun.isDeclare && CurModule.TypeIsUnresolved($2))
2312 GEN_ERROR("Reference to abstract result: "+ $2->get()->getDescription());
2313
Chris Lattner62de9332008-04-23 05:36:58 +00002314 if (!FunctionType::isValidReturnType(*$2))
2315 GEN_ERROR("Invalid result type for LLVM function");
2316
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002317 std::vector<const Type*> ParamTypeList;
Chris Lattner1c8733e2008-03-12 17:45:29 +00002318 SmallVector<ParamAttrsWithIndex, 8> Attrs;
2319 if ($7 != ParamAttr::None)
2320 Attrs.push_back(ParamAttrsWithIndex::get(0, $7));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002321 if ($5) { // If there are arguments...
2322 unsigned index = 1;
2323 for (ArgListType::iterator I = $5->begin(); I != $5->end(); ++I, ++index) {
2324 const Type* Ty = I->Ty->get();
2325 if (!CurFun.isDeclare && CurModule.TypeIsUnresolved(I->Ty))
2326 GEN_ERROR("Reference to abstract argument: " + Ty->getDescription());
2327 ParamTypeList.push_back(Ty);
Chris Lattner1c8733e2008-03-12 17:45:29 +00002328 if (Ty != Type::VoidTy && I->Attrs != ParamAttr::None)
2329 Attrs.push_back(ParamAttrsWithIndex::get(index, I->Attrs));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002330 }
2331 }
2332
2333 bool isVarArg = ParamTypeList.size() && ParamTypeList.back() == Type::VoidTy;
2334 if (isVarArg) ParamTypeList.pop_back();
2335
Chris Lattner1c8733e2008-03-12 17:45:29 +00002336 PAListPtr PAL;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002337 if (!Attrs.empty())
Chris Lattner1c8733e2008-03-12 17:45:29 +00002338 PAL = PAListPtr::get(Attrs.begin(), Attrs.end());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002339
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002340 FunctionType *FT = FunctionType::get(*$2, ParamTypeList, isVarArg);
Christopher Lambbb2f2222007-12-17 01:12:55 +00002341 const PointerType *PFT = PointerType::getUnqual(FT);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002342 delete $2;
2343
2344 ValID ID;
2345 if (!FunctionName.empty()) {
2346 ID = ValID::createGlobalName((char*)FunctionName.c_str());
2347 } else {
2348 ID = ValID::createGlobalID(CurModule.Values.size());
2349 }
2350
2351 Function *Fn = 0;
2352 // See if this function was forward referenced. If so, recycle the object.
2353 if (GlobalValue *FWRef = CurModule.GetForwardRefForGlobal(PFT, ID)) {
2354 // Move the function to the end of the list, from whereever it was
2355 // previously inserted.
2356 Fn = cast<Function>(FWRef);
Chris Lattner1c8733e2008-03-12 17:45:29 +00002357 assert(Fn->getParamAttrs().isEmpty() &&
2358 "Forward reference has parameter attributes!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002359 CurModule.CurrentModule->getFunctionList().remove(Fn);
2360 CurModule.CurrentModule->getFunctionList().push_back(Fn);
2361 } else if (!FunctionName.empty() && // Merge with an earlier prototype?
2362 (Fn = CurModule.CurrentModule->getFunction(FunctionName))) {
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002363 if (Fn->getFunctionType() != FT ) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002364 // The existing function doesn't have the same type. This is an overload
2365 // error.
2366 GEN_ERROR("Overload of function '" + FunctionName + "' not permitted.");
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002367 } else if (Fn->getParamAttrs() != PAL) {
2368 // The existing function doesn't have the same parameter attributes.
2369 // This is an overload error.
2370 GEN_ERROR("Overload of function '" + FunctionName + "' not permitted.");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002371 } else if (!CurFun.isDeclare && !Fn->isDeclaration()) {
2372 // Neither the existing or the current function is a declaration and they
2373 // have the same name and same type. Clearly this is a redefinition.
2374 GEN_ERROR("Redefinition of function '" + FunctionName + "'");
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002375 } else if (Fn->isDeclaration()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002376 // Make sure to strip off any argument names so we can't get conflicts.
2377 for (Function::arg_iterator AI = Fn->arg_begin(), AE = Fn->arg_end();
2378 AI != AE; ++AI)
2379 AI->setName("");
2380 }
2381 } else { // Not already defined?
Gabor Greifd6da1d02008-04-06 20:25:17 +00002382 Fn = Function::Create(FT, GlobalValue::ExternalWeakLinkage, FunctionName,
2383 CurModule.CurrentModule);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002384 InsertValue(Fn, CurModule.Values);
2385 }
2386
2387 CurFun.FunctionStart(Fn);
2388
2389 if (CurFun.isDeclare) {
2390 // If we have declaration, always overwrite linkage. This will allow us to
2391 // correctly handle cases, when pointer to function is passed as argument to
2392 // another function.
2393 Fn->setLinkage(CurFun.Linkage);
2394 Fn->setVisibility(CurFun.Visibility);
2395 }
2396 Fn->setCallingConv($1);
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002397 Fn->setParamAttrs(PAL);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002398 Fn->setAlignment($9);
2399 if ($8) {
2400 Fn->setSection(*$8);
2401 delete $8;
2402 }
Gordon Henriksen13fe5e32007-12-10 03:18:06 +00002403 if ($10) {
2404 Fn->setCollector($10->c_str());
2405 delete $10;
2406 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002407
2408 // Add all of the arguments we parsed to the function...
2409 if ($5) { // Is null if empty...
2410 if (isVarArg) { // Nuke the last entry
2411 assert($5->back().Ty->get() == Type::VoidTy && $5->back().Name == 0 &&
2412 "Not a varargs marker!");
2413 delete $5->back().Ty;
2414 $5->pop_back(); // Delete the last entry
2415 }
2416 Function::arg_iterator ArgIt = Fn->arg_begin();
2417 Function::arg_iterator ArgEnd = Fn->arg_end();
2418 unsigned Idx = 1;
2419 for (ArgListType::iterator I = $5->begin();
2420 I != $5->end() && ArgIt != ArgEnd; ++I, ++ArgIt) {
2421 delete I->Ty; // Delete the typeholder...
2422 setValueName(ArgIt, I->Name); // Insert arg into symtab...
2423 CHECK_FOR_ERROR
2424 InsertValue(ArgIt);
2425 Idx++;
2426 }
2427
2428 delete $5; // We're now done with the argument list
2429 }
2430 CHECK_FOR_ERROR
2431};
2432
2433BEGIN : BEGINTOK | '{'; // Allow BEGIN or '{' to start a function
2434
2435FunctionHeader : FunctionDefineLinkage GVVisibilityStyle FunctionHeaderH BEGIN {
2436 $$ = CurFun.CurrentFunction;
2437
2438 // Make sure that we keep track of the linkage type even if there was a
2439 // previous "declare".
2440 $$->setLinkage($1);
2441 $$->setVisibility($2);
2442};
2443
2444END : ENDTOK | '}'; // Allow end of '}' to end a function
2445
2446Function : BasicBlockList END {
2447 $$ = $1;
2448 CHECK_FOR_ERROR
2449};
2450
2451FunctionProto : FunctionDeclareLinkage GVVisibilityStyle FunctionHeaderH {
2452 CurFun.CurrentFunction->setLinkage($1);
2453 CurFun.CurrentFunction->setVisibility($2);
2454 $$ = CurFun.CurrentFunction;
2455 CurFun.FunctionDone();
2456 CHECK_FOR_ERROR
2457 };
2458
2459//===----------------------------------------------------------------------===//
2460// Rules to match Basic Blocks
2461//===----------------------------------------------------------------------===//
2462
2463OptSideEffect : /* empty */ {
2464 $$ = false;
2465 CHECK_FOR_ERROR
2466 }
2467 | SIDEEFFECT {
2468 $$ = true;
2469 CHECK_FOR_ERROR
2470 };
2471
2472ConstValueRef : ESINT64VAL { // A reference to a direct constant
2473 $$ = ValID::create($1);
2474 CHECK_FOR_ERROR
2475 }
2476 | EUINT64VAL {
2477 $$ = ValID::create($1);
2478 CHECK_FOR_ERROR
2479 }
2480 | FPVAL { // Perhaps it's an FP constant?
2481 $$ = ValID::create($1);
2482 CHECK_FOR_ERROR
2483 }
2484 | TRUETOK {
2485 $$ = ValID::create(ConstantInt::getTrue());
2486 CHECK_FOR_ERROR
2487 }
2488 | FALSETOK {
2489 $$ = ValID::create(ConstantInt::getFalse());
2490 CHECK_FOR_ERROR
2491 }
2492 | NULL_TOK {
2493 $$ = ValID::createNull();
2494 CHECK_FOR_ERROR
2495 }
2496 | UNDEF {
2497 $$ = ValID::createUndef();
2498 CHECK_FOR_ERROR
2499 }
2500 | ZEROINITIALIZER { // A vector zero constant.
2501 $$ = ValID::createZeroInit();
2502 CHECK_FOR_ERROR
2503 }
2504 | '<' ConstVector '>' { // Nonempty unsized packed vector
2505 const Type *ETy = (*$2)[0]->getType();
2506 int NumElements = $2->size();
Dan Gohman36782aa2008-05-23 18:23:11 +00002507
2508 if (!ETy->isInteger() && !ETy->isFloatingPoint())
2509 GEN_ERROR("Invalid vector element type: " + ETy->getDescription());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002510
2511 VectorType* pt = VectorType::get(ETy, NumElements);
2512 PATypeHolder* PTy = new PATypeHolder(
2513 HandleUpRefs(
2514 VectorType::get(
2515 ETy,
2516 NumElements)
2517 )
2518 );
2519
2520 // Verify all elements are correct type!
2521 for (unsigned i = 0; i < $2->size(); i++) {
2522 if (ETy != (*$2)[i]->getType())
2523 GEN_ERROR("Element #" + utostr(i) + " is not of type '" +
2524 ETy->getDescription() +"' as required!\nIt is of type '" +
2525 (*$2)[i]->getType()->getDescription() + "'.");
2526 }
2527
2528 $$ = ValID::create(ConstantVector::get(pt, *$2));
2529 delete PTy; delete $2;
2530 CHECK_FOR_ERROR
2531 }
2532 | ConstExpr {
2533 $$ = ValID::create($1);
2534 CHECK_FOR_ERROR
2535 }
2536 | ASM_TOK OptSideEffect STRINGCONSTANT ',' STRINGCONSTANT {
2537 $$ = ValID::createInlineAsm(*$3, *$5, $2);
2538 delete $3;
2539 delete $5;
2540 CHECK_FOR_ERROR
2541 };
2542
2543// SymbolicValueRef - Reference to one of two ways of symbolically refering to
2544// another value.
2545//
2546SymbolicValueRef : LOCALVAL_ID { // Is it an integer reference...?
2547 $$ = ValID::createLocalID($1);
2548 CHECK_FOR_ERROR
2549 }
2550 | GLOBALVAL_ID {
2551 $$ = ValID::createGlobalID($1);
2552 CHECK_FOR_ERROR
2553 }
2554 | LocalName { // Is it a named reference...?
2555 $$ = ValID::createLocalName(*$1);
2556 delete $1;
2557 CHECK_FOR_ERROR
2558 }
2559 | GlobalName { // Is it a named reference...?
2560 $$ = ValID::createGlobalName(*$1);
2561 delete $1;
2562 CHECK_FOR_ERROR
2563 };
2564
2565// ValueRef - A reference to a definition... either constant or symbolic
2566ValueRef : SymbolicValueRef | ConstValueRef;
2567
2568
2569// ResolvedVal - a <type> <value> pair. This is used only in cases where the
2570// type immediately preceeds the value reference, and allows complex constant
2571// pool references (for things like: 'ret [2 x int] [ int 12, int 42]')
2572ResolvedVal : Types ValueRef {
2573 if (!UpRefs.empty())
2574 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
2575 $$ = getVal(*$1, $2);
2576 delete $1;
2577 CHECK_FOR_ERROR
2578 }
2579 ;
2580
Devang Patel036f0382008-02-20 22:39:45 +00002581ReturnedVal : ResolvedVal {
2582 $$ = new std::vector<Value *>();
2583 $$->push_back($1);
2584 CHECK_FOR_ERROR
2585 }
Devang Patel1a932fc2008-02-23 00:35:18 +00002586 | ReturnedVal ',' ResolvedVal {
Devang Patel036f0382008-02-20 22:39:45 +00002587 ($$=$1)->push_back($3);
2588 CHECK_FOR_ERROR
2589 };
2590
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002591BasicBlockList : BasicBlockList BasicBlock {
2592 $$ = $1;
2593 CHECK_FOR_ERROR
2594 }
2595 | FunctionHeader BasicBlock { // Do not allow functions with 0 basic blocks
2596 $$ = $1;
2597 CHECK_FOR_ERROR
2598 };
2599
2600
2601// Basic blocks are terminated by branching instructions:
2602// br, br/cc, switch, ret
2603//
2604BasicBlock : InstructionList OptLocalAssign BBTerminatorInst {
2605 setValueName($3, $2);
2606 CHECK_FOR_ERROR
2607 InsertValue($3);
2608 $1->getInstList().push_back($3);
2609 $$ = $1;
2610 CHECK_FOR_ERROR
2611 };
2612
2613InstructionList : InstructionList Inst {
2614 if (CastInst *CI1 = dyn_cast<CastInst>($2))
2615 if (CastInst *CI2 = dyn_cast<CastInst>(CI1->getOperand(0)))
2616 if (CI2->getParent() == 0)
2617 $1->getInstList().push_back(CI2);
2618 $1->getInstList().push_back($2);
2619 $$ = $1;
2620 CHECK_FOR_ERROR
2621 }
2622 | /* empty */ { // Empty space between instruction lists
Nick Lewyckyd8aa33a2008-04-25 16:53:59 +00002623 $$ = defineBBVal(ValID::createLocalID(CurFun.NextValNum));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002624 CHECK_FOR_ERROR
2625 }
2626 | LABELSTR { // Labelled (named) basic block
Nick Lewyckyd8aa33a2008-04-25 16:53:59 +00002627 $$ = defineBBVal(ValID::createLocalName(*$1));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002628 delete $1;
2629 CHECK_FOR_ERROR
Nick Lewyckyd8aa33a2008-04-25 16:53:59 +00002630
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002631 };
2632
Devang Patel036f0382008-02-20 22:39:45 +00002633BBTerminatorInst :
2634 RET ReturnedVal { // Return with a result...
Devang Patelbbbb8202008-02-26 22:12:58 +00002635 ValueList &VL = *$2;
Devang Patel202ec472008-02-26 23:17:50 +00002636 assert(!VL.empty() && "Invalid ret operands!");
Gabor Greifd6da1d02008-04-06 20:25:17 +00002637 $$ = ReturnInst::Create(&VL[0], VL.size());
Devang Patel036f0382008-02-20 22:39:45 +00002638 delete $2;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002639 CHECK_FOR_ERROR
2640 }
2641 | RET VOID { // Return with no result...
Gabor Greifd6da1d02008-04-06 20:25:17 +00002642 $$ = ReturnInst::Create();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002643 CHECK_FOR_ERROR
2644 }
2645 | BR LABEL ValueRef { // Unconditional Branch...
2646 BasicBlock* tmpBB = getBBVal($3);
2647 CHECK_FOR_ERROR
Gabor Greifd6da1d02008-04-06 20:25:17 +00002648 $$ = BranchInst::Create(tmpBB);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002649 } // Conditional Branch...
2650 | BR INTTYPE ValueRef ',' LABEL ValueRef ',' LABEL ValueRef {
Dan Gohman36782aa2008-05-23 18:23:11 +00002651 if (cast<IntegerType>($2)->getBitWidth() != 1)
2652 GEN_ERROR("Branch condition must have type i1");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002653 BasicBlock* tmpBBA = getBBVal($6);
2654 CHECK_FOR_ERROR
2655 BasicBlock* tmpBBB = getBBVal($9);
2656 CHECK_FOR_ERROR
2657 Value* tmpVal = getVal(Type::Int1Ty, $3);
2658 CHECK_FOR_ERROR
Gabor Greifd6da1d02008-04-06 20:25:17 +00002659 $$ = BranchInst::Create(tmpBBA, tmpBBB, tmpVal);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002660 }
2661 | SWITCH IntType ValueRef ',' LABEL ValueRef '[' JumpTable ']' {
2662 Value* tmpVal = getVal($2, $3);
2663 CHECK_FOR_ERROR
2664 BasicBlock* tmpBB = getBBVal($6);
2665 CHECK_FOR_ERROR
Gabor Greifd6da1d02008-04-06 20:25:17 +00002666 SwitchInst *S = SwitchInst::Create(tmpVal, tmpBB, $8->size());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002667 $$ = S;
2668
2669 std::vector<std::pair<Constant*,BasicBlock*> >::iterator I = $8->begin(),
2670 E = $8->end();
2671 for (; I != E; ++I) {
2672 if (ConstantInt *CI = dyn_cast<ConstantInt>(I->first))
2673 S->addCase(CI, I->second);
2674 else
2675 GEN_ERROR("Switch case is constant, but not a simple integer");
2676 }
2677 delete $8;
2678 CHECK_FOR_ERROR
2679 }
2680 | SWITCH IntType ValueRef ',' LABEL ValueRef '[' ']' {
2681 Value* tmpVal = getVal($2, $3);
2682 CHECK_FOR_ERROR
2683 BasicBlock* tmpBB = getBBVal($6);
2684 CHECK_FOR_ERROR
Gabor Greifd6da1d02008-04-06 20:25:17 +00002685 SwitchInst *S = SwitchInst::Create(tmpVal, tmpBB, 0);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002686 $$ = S;
2687 CHECK_FOR_ERROR
2688 }
Dale Johannesencfb19e62007-11-05 21:20:28 +00002689 | INVOKE OptCallingConv ResultTypes ValueRef '(' ParamList ')' OptFuncAttrs
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002690 TO LABEL ValueRef UNWIND LABEL ValueRef {
2691
2692 // Handle the short syntax
2693 const PointerType *PFTy = 0;
2694 const FunctionType *Ty = 0;
2695 if (!(PFTy = dyn_cast<PointerType>($3->get())) ||
2696 !(Ty = dyn_cast<FunctionType>(PFTy->getElementType()))) {
2697 // Pull out the types of all of the arguments...
2698 std::vector<const Type*> ParamTypes;
Dale Johannesencfb19e62007-11-05 21:20:28 +00002699 ParamList::iterator I = $6->begin(), E = $6->end();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002700 for (; I != E; ++I) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002701 const Type *Ty = I->Val->getType();
2702 if (Ty == Type::VoidTy)
2703 GEN_ERROR("Short call syntax cannot be used with varargs");
2704 ParamTypes.push_back(Ty);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002705 }
Chris Lattner62de9332008-04-23 05:36:58 +00002706
2707 if (!FunctionType::isValidReturnType(*$3))
2708 GEN_ERROR("Invalid result type for LLVM function");
2709
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002710 Ty = FunctionType::get($3->get(), ParamTypes, false);
Christopher Lambbb2f2222007-12-17 01:12:55 +00002711 PFTy = PointerType::getUnqual(Ty);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002712 }
2713
2714 delete $3;
2715
2716 Value *V = getVal(PFTy, $4); // Get the function we're calling...
2717 CHECK_FOR_ERROR
2718 BasicBlock *Normal = getBBVal($11);
2719 CHECK_FOR_ERROR
2720 BasicBlock *Except = getBBVal($14);
2721 CHECK_FOR_ERROR
2722
Chris Lattner1c8733e2008-03-12 17:45:29 +00002723 SmallVector<ParamAttrsWithIndex, 8> Attrs;
2724 if ($8 != ParamAttr::None)
2725 Attrs.push_back(ParamAttrsWithIndex::get(0, $8));
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002726
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002727 // Check the arguments
2728 ValueList Args;
2729 if ($6->empty()) { // Has no arguments?
2730 // Make sure no arguments is a good thing!
2731 if (Ty->getNumParams() != 0)
2732 GEN_ERROR("No arguments passed to a function that "
2733 "expects arguments");
2734 } else { // Has arguments?
2735 // Loop through FunctionType's arguments and ensure they are specified
2736 // correctly!
2737 FunctionType::param_iterator I = Ty->param_begin();
2738 FunctionType::param_iterator E = Ty->param_end();
Dale Johannesencfb19e62007-11-05 21:20:28 +00002739 ParamList::iterator ArgI = $6->begin(), ArgE = $6->end();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002740 unsigned index = 1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002741
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002742 for (; ArgI != ArgE && I != E; ++ArgI, ++I, ++index) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002743 if (ArgI->Val->getType() != *I)
2744 GEN_ERROR("Parameter " + ArgI->Val->getName()+ " is not of type '" +
2745 (*I)->getDescription() + "'");
2746 Args.push_back(ArgI->Val);
Chris Lattner1c8733e2008-03-12 17:45:29 +00002747 if (ArgI->Attrs != ParamAttr::None)
2748 Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002749 }
2750
2751 if (Ty->isVarArg()) {
2752 if (I == E)
Duncan Sands6c3314b2008-01-11 21:23:39 +00002753 for (; ArgI != ArgE; ++ArgI, ++index) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002754 Args.push_back(ArgI->Val); // push the remaining varargs
Chris Lattner1c8733e2008-03-12 17:45:29 +00002755 if (ArgI->Attrs != ParamAttr::None)
2756 Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
Duncan Sands6c3314b2008-01-11 21:23:39 +00002757 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002758 } else if (I != E || ArgI != ArgE)
2759 GEN_ERROR("Invalid number of parameters detected");
2760 }
2761
Chris Lattner1c8733e2008-03-12 17:45:29 +00002762 PAListPtr PAL;
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002763 if (!Attrs.empty())
Chris Lattner1c8733e2008-03-12 17:45:29 +00002764 PAL = PAListPtr::get(Attrs.begin(), Attrs.end());
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002765
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002766 // Create the InvokeInst
Gabor Greifb91ea9d2008-05-15 10:04:30 +00002767 InvokeInst *II = InvokeInst::Create(V, Normal, Except,
2768 Args.begin(), Args.end());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002769 II->setCallingConv($2);
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002770 II->setParamAttrs(PAL);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002771 $$ = II;
2772 delete $6;
2773 CHECK_FOR_ERROR
2774 }
2775 | UNWIND {
2776 $$ = new UnwindInst();
2777 CHECK_FOR_ERROR
2778 }
2779 | UNREACHABLE {
2780 $$ = new UnreachableInst();
2781 CHECK_FOR_ERROR
2782 };
2783
2784
2785
2786JumpTable : JumpTable IntType ConstValueRef ',' LABEL ValueRef {
2787 $$ = $1;
2788 Constant *V = cast<Constant>(getExistingVal($2, $3));
2789 CHECK_FOR_ERROR
2790 if (V == 0)
2791 GEN_ERROR("May only switch on a constant pool value");
2792
2793 BasicBlock* tmpBB = getBBVal($6);
2794 CHECK_FOR_ERROR
2795 $$->push_back(std::make_pair(V, tmpBB));
2796 }
2797 | IntType ConstValueRef ',' LABEL ValueRef {
2798 $$ = new std::vector<std::pair<Constant*, BasicBlock*> >();
2799 Constant *V = cast<Constant>(getExistingVal($1, $2));
2800 CHECK_FOR_ERROR
2801
2802 if (V == 0)
2803 GEN_ERROR("May only switch on a constant pool value");
2804
2805 BasicBlock* tmpBB = getBBVal($5);
2806 CHECK_FOR_ERROR
2807 $$->push_back(std::make_pair(V, tmpBB));
2808 };
2809
2810Inst : OptLocalAssign InstVal {
2811 // Is this definition named?? if so, assign the name...
2812 setValueName($2, $1);
2813 CHECK_FOR_ERROR
2814 InsertValue($2);
2815 $$ = $2;
2816 CHECK_FOR_ERROR
2817 };
2818
2819
2820PHIList : Types '[' ValueRef ',' ValueRef ']' { // Used for PHI nodes
2821 if (!UpRefs.empty())
2822 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
2823 $$ = new std::list<std::pair<Value*, BasicBlock*> >();
2824 Value* tmpVal = getVal(*$1, $3);
2825 CHECK_FOR_ERROR
2826 BasicBlock* tmpBB = getBBVal($5);
2827 CHECK_FOR_ERROR
2828 $$->push_back(std::make_pair(tmpVal, tmpBB));
2829 delete $1;
2830 }
2831 | PHIList ',' '[' ValueRef ',' ValueRef ']' {
2832 $$ = $1;
2833 Value* tmpVal = getVal($1->front().first->getType(), $4);
2834 CHECK_FOR_ERROR
2835 BasicBlock* tmpBB = getBBVal($6);
2836 CHECK_FOR_ERROR
2837 $1->push_back(std::make_pair(tmpVal, tmpBB));
2838 };
2839
2840
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002841ParamList : Types OptParamAttrs ValueRef OptParamAttrs {
2842 // FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002843 if (!UpRefs.empty())
2844 GEN_ERROR("Invalid upreference in type: " + (*$1)->getDescription());
2845 // Used for call and invoke instructions
Dale Johannesencfb19e62007-11-05 21:20:28 +00002846 $$ = new ParamList();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002847 ParamListEntry E; E.Attrs = $2 | $4; E.Val = getVal($1->get(), $3);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002848 $$->push_back(E);
2849 delete $1;
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002850 CHECK_FOR_ERROR
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002851 }
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002852 | LABEL OptParamAttrs ValueRef OptParamAttrs {
2853 // FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
Dale Johannesencfb19e62007-11-05 21:20:28 +00002854 // Labels are only valid in ASMs
2855 $$ = new ParamList();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002856 ParamListEntry E; E.Attrs = $2 | $4; E.Val = getBBVal($3);
Dale Johannesencfb19e62007-11-05 21:20:28 +00002857 $$->push_back(E);
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002858 CHECK_FOR_ERROR
Dale Johannesencfb19e62007-11-05 21:20:28 +00002859 }
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002860 | ParamList ',' Types OptParamAttrs ValueRef OptParamAttrs {
2861 // FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002862 if (!UpRefs.empty())
2863 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
2864 $$ = $1;
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002865 ParamListEntry E; E.Attrs = $4 | $6; E.Val = getVal($3->get(), $5);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002866 $$->push_back(E);
2867 delete $3;
2868 CHECK_FOR_ERROR
2869 }
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002870 | ParamList ',' LABEL OptParamAttrs ValueRef OptParamAttrs {
2871 // FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
Dale Johannesencfb19e62007-11-05 21:20:28 +00002872 $$ = $1;
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002873 ParamListEntry E; E.Attrs = $4 | $6; E.Val = getBBVal($5);
Dale Johannesencfb19e62007-11-05 21:20:28 +00002874 $$->push_back(E);
2875 CHECK_FOR_ERROR
2876 }
2877 | /*empty*/ { $$ = new ParamList(); };
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002878
2879IndexList // Used for gep instructions and constant expressions
2880 : /*empty*/ { $$ = new std::vector<Value*>(); }
2881 | IndexList ',' ResolvedVal {
2882 $$ = $1;
2883 $$->push_back($3);
2884 CHECK_FOR_ERROR
2885 }
2886 ;
2887
2888OptTailCall : TAIL CALL {
2889 $$ = true;
2890 CHECK_FOR_ERROR
2891 }
2892 | CALL {
2893 $$ = false;
2894 CHECK_FOR_ERROR
2895 };
2896
2897InstVal : ArithmeticOps Types ValueRef ',' ValueRef {
2898 if (!UpRefs.empty())
2899 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
2900 if (!(*$2)->isInteger() && !(*$2)->isFloatingPoint() &&
2901 !isa<VectorType>((*$2).get()))
2902 GEN_ERROR(
2903 "Arithmetic operator requires integer, FP, or packed operands");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002904 Value* val1 = getVal(*$2, $3);
2905 CHECK_FOR_ERROR
2906 Value* val2 = getVal(*$2, $5);
2907 CHECK_FOR_ERROR
Gabor Greifa645dd32008-05-16 19:29:10 +00002908 $$ = BinaryOperator::Create($1, val1, val2);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002909 if ($$ == 0)
2910 GEN_ERROR("binary operator returned null");
2911 delete $2;
2912 }
2913 | LogicalOps Types ValueRef ',' ValueRef {
2914 if (!UpRefs.empty())
2915 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
2916 if (!(*$2)->isInteger()) {
2917 if (Instruction::isShift($1) || !isa<VectorType>($2->get()) ||
2918 !cast<VectorType>($2->get())->getElementType()->isInteger())
2919 GEN_ERROR("Logical operator requires integral operands");
2920 }
2921 Value* tmpVal1 = getVal(*$2, $3);
2922 CHECK_FOR_ERROR
2923 Value* tmpVal2 = getVal(*$2, $5);
2924 CHECK_FOR_ERROR
Gabor Greifa645dd32008-05-16 19:29:10 +00002925 $$ = BinaryOperator::Create($1, tmpVal1, tmpVal2);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002926 if ($$ == 0)
2927 GEN_ERROR("binary operator returned null");
2928 delete $2;
2929 }
2930 | ICMP IPredicates Types ValueRef ',' ValueRef {
2931 if (!UpRefs.empty())
2932 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
2933 if (isa<VectorType>((*$3).get()))
2934 GEN_ERROR("Vector types not supported by icmp instruction");
2935 Value* tmpVal1 = getVal(*$3, $4);
2936 CHECK_FOR_ERROR
2937 Value* tmpVal2 = getVal(*$3, $6);
2938 CHECK_FOR_ERROR
Gabor Greifa645dd32008-05-16 19:29:10 +00002939 $$ = CmpInst::Create($1, $2, tmpVal1, tmpVal2);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002940 if ($$ == 0)
2941 GEN_ERROR("icmp operator returned null");
2942 delete $3;
2943 }
2944 | FCMP FPredicates Types ValueRef ',' ValueRef {
2945 if (!UpRefs.empty())
2946 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
2947 if (isa<VectorType>((*$3).get()))
2948 GEN_ERROR("Vector types not supported by fcmp instruction");
2949 Value* tmpVal1 = getVal(*$3, $4);
2950 CHECK_FOR_ERROR
2951 Value* tmpVal2 = getVal(*$3, $6);
2952 CHECK_FOR_ERROR
Gabor Greifa645dd32008-05-16 19:29:10 +00002953 $$ = CmpInst::Create($1, $2, tmpVal1, tmpVal2);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002954 if ($$ == 0)
2955 GEN_ERROR("fcmp operator returned null");
2956 delete $3;
2957 }
Nate Begeman646fa482008-05-12 19:01:56 +00002958 | VICMP IPredicates Types ValueRef ',' ValueRef {
2959 if (!UpRefs.empty())
2960 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
2961 if (!isa<VectorType>((*$3).get()))
2962 GEN_ERROR("Scalar types not supported by vicmp instruction");
2963 Value* tmpVal1 = getVal(*$3, $4);
2964 CHECK_FOR_ERROR
2965 Value* tmpVal2 = getVal(*$3, $6);
2966 CHECK_FOR_ERROR
Gabor Greifa645dd32008-05-16 19:29:10 +00002967 $$ = CmpInst::Create($1, $2, tmpVal1, tmpVal2);
Nate Begeman646fa482008-05-12 19:01:56 +00002968 if ($$ == 0)
2969 GEN_ERROR("icmp operator returned null");
2970 delete $3;
2971 }
2972 | VFCMP FPredicates Types ValueRef ',' ValueRef {
2973 if (!UpRefs.empty())
2974 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
2975 if (!isa<VectorType>((*$3).get()))
2976 GEN_ERROR("Scalar types not supported by vfcmp instruction");
2977 Value* tmpVal1 = getVal(*$3, $4);
2978 CHECK_FOR_ERROR
2979 Value* tmpVal2 = getVal(*$3, $6);
2980 CHECK_FOR_ERROR
Gabor Greifa645dd32008-05-16 19:29:10 +00002981 $$ = CmpInst::Create($1, $2, tmpVal1, tmpVal2);
Nate Begeman646fa482008-05-12 19:01:56 +00002982 if ($$ == 0)
2983 GEN_ERROR("fcmp operator returned null");
2984 delete $3;
2985 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002986 | CastOps ResolvedVal TO Types {
2987 if (!UpRefs.empty())
2988 GEN_ERROR("Invalid upreference in type: " + (*$4)->getDescription());
2989 Value* Val = $2;
2990 const Type* DestTy = $4->get();
2991 if (!CastInst::castIsValid($1, Val, DestTy))
2992 GEN_ERROR("invalid cast opcode for cast from '" +
2993 Val->getType()->getDescription() + "' to '" +
2994 DestTy->getDescription() + "'");
Gabor Greifa645dd32008-05-16 19:29:10 +00002995 $$ = CastInst::Create($1, Val, DestTy);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002996 delete $4;
2997 }
2998 | SELECT ResolvedVal ',' ResolvedVal ',' ResolvedVal {
2999 if ($2->getType() != Type::Int1Ty)
3000 GEN_ERROR("select condition must be boolean");
3001 if ($4->getType() != $6->getType())
3002 GEN_ERROR("select value types should match");
Gabor Greifd6da1d02008-04-06 20:25:17 +00003003 $$ = SelectInst::Create($2, $4, $6);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003004 CHECK_FOR_ERROR
3005 }
3006 | VAARG ResolvedVal ',' Types {
3007 if (!UpRefs.empty())
3008 GEN_ERROR("Invalid upreference in type: " + (*$4)->getDescription());
3009 $$ = new VAArgInst($2, *$4);
3010 delete $4;
3011 CHECK_FOR_ERROR
3012 }
3013 | EXTRACTELEMENT ResolvedVal ',' ResolvedVal {
3014 if (!ExtractElementInst::isValidOperands($2, $4))
3015 GEN_ERROR("Invalid extractelement operands");
3016 $$ = new ExtractElementInst($2, $4);
3017 CHECK_FOR_ERROR
3018 }
3019 | INSERTELEMENT ResolvedVal ',' ResolvedVal ',' ResolvedVal {
3020 if (!InsertElementInst::isValidOperands($2, $4, $6))
3021 GEN_ERROR("Invalid insertelement operands");
Gabor Greifd6da1d02008-04-06 20:25:17 +00003022 $$ = InsertElementInst::Create($2, $4, $6);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003023 CHECK_FOR_ERROR
3024 }
3025 | SHUFFLEVECTOR ResolvedVal ',' ResolvedVal ',' ResolvedVal {
3026 if (!ShuffleVectorInst::isValidOperands($2, $4, $6))
3027 GEN_ERROR("Invalid shufflevector operands");
3028 $$ = new ShuffleVectorInst($2, $4, $6);
3029 CHECK_FOR_ERROR
3030 }
3031 | PHI_TOK PHIList {
3032 const Type *Ty = $2->front().first->getType();
3033 if (!Ty->isFirstClassType())
3034 GEN_ERROR("PHI node operands must be of first class type");
Gabor Greifd6da1d02008-04-06 20:25:17 +00003035 $$ = PHINode::Create(Ty);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003036 ((PHINode*)$$)->reserveOperandSpace($2->size());
3037 while ($2->begin() != $2->end()) {
3038 if ($2->front().first->getType() != Ty)
3039 GEN_ERROR("All elements of a PHI node must be of the same type");
3040 cast<PHINode>($$)->addIncoming($2->front().first, $2->front().second);
3041 $2->pop_front();
3042 }
3043 delete $2; // Free the list...
3044 CHECK_FOR_ERROR
3045 }
Dale Johannesencfb19e62007-11-05 21:20:28 +00003046 | OptTailCall OptCallingConv ResultTypes ValueRef '(' ParamList ')'
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003047 OptFuncAttrs {
3048
3049 // Handle the short syntax
3050 const PointerType *PFTy = 0;
3051 const FunctionType *Ty = 0;
3052 if (!(PFTy = dyn_cast<PointerType>($3->get())) ||
3053 !(Ty = dyn_cast<FunctionType>(PFTy->getElementType()))) {
3054 // Pull out the types of all of the arguments...
3055 std::vector<const Type*> ParamTypes;
Dale Johannesencfb19e62007-11-05 21:20:28 +00003056 ParamList::iterator I = $6->begin(), E = $6->end();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003057 for (; I != E; ++I) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003058 const Type *Ty = I->Val->getType();
3059 if (Ty == Type::VoidTy)
3060 GEN_ERROR("Short call syntax cannot be used with varargs");
3061 ParamTypes.push_back(Ty);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003062 }
Chris Lattner62de9332008-04-23 05:36:58 +00003063
3064 if (!FunctionType::isValidReturnType(*$3))
3065 GEN_ERROR("Invalid result type for LLVM function");
3066
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003067 Ty = FunctionType::get($3->get(), ParamTypes, false);
Christopher Lambbb2f2222007-12-17 01:12:55 +00003068 PFTy = PointerType::getUnqual(Ty);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003069 }
3070
3071 Value *V = getVal(PFTy, $4); // Get the function we're calling...
3072 CHECK_FOR_ERROR
3073
3074 // Check for call to invalid intrinsic to avoid crashing later.
3075 if (Function *theF = dyn_cast<Function>(V)) {
3076 if (theF->hasName() && (theF->getValueName()->getKeyLength() >= 5) &&
3077 (0 == strncmp(theF->getValueName()->getKeyData(), "llvm.", 5)) &&
3078 !theF->getIntrinsicID(true))
3079 GEN_ERROR("Call to invalid LLVM intrinsic function '" +
3080 theF->getName() + "'");
3081 }
3082
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003083 // Set up the ParamAttrs for the function
Chris Lattner1c8733e2008-03-12 17:45:29 +00003084 SmallVector<ParamAttrsWithIndex, 8> Attrs;
3085 if ($8 != ParamAttr::None)
3086 Attrs.push_back(ParamAttrsWithIndex::get(0, $8));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003087 // Check the arguments
3088 ValueList Args;
3089 if ($6->empty()) { // Has no arguments?
3090 // Make sure no arguments is a good thing!
3091 if (Ty->getNumParams() != 0)
3092 GEN_ERROR("No arguments passed to a function that "
3093 "expects arguments");
3094 } else { // Has arguments?
3095 // Loop through FunctionType's arguments and ensure they are specified
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003096 // correctly. Also, gather any parameter attributes.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003097 FunctionType::param_iterator I = Ty->param_begin();
3098 FunctionType::param_iterator E = Ty->param_end();
Dale Johannesencfb19e62007-11-05 21:20:28 +00003099 ParamList::iterator ArgI = $6->begin(), ArgE = $6->end();
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003100 unsigned index = 1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003101
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003102 for (; ArgI != ArgE && I != E; ++ArgI, ++I, ++index) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003103 if (ArgI->Val->getType() != *I)
3104 GEN_ERROR("Parameter " + ArgI->Val->getName()+ " is not of type '" +
3105 (*I)->getDescription() + "'");
3106 Args.push_back(ArgI->Val);
Chris Lattner1c8733e2008-03-12 17:45:29 +00003107 if (ArgI->Attrs != ParamAttr::None)
3108 Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003109 }
3110 if (Ty->isVarArg()) {
3111 if (I == E)
Duncan Sands6c3314b2008-01-11 21:23:39 +00003112 for (; ArgI != ArgE; ++ArgI, ++index) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003113 Args.push_back(ArgI->Val); // push the remaining varargs
Chris Lattner1c8733e2008-03-12 17:45:29 +00003114 if (ArgI->Attrs != ParamAttr::None)
3115 Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
Duncan Sands6c3314b2008-01-11 21:23:39 +00003116 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003117 } else if (I != E || ArgI != ArgE)
3118 GEN_ERROR("Invalid number of parameters detected");
3119 }
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003120
3121 // Finish off the ParamAttrs and check them
Chris Lattner1c8733e2008-03-12 17:45:29 +00003122 PAListPtr PAL;
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003123 if (!Attrs.empty())
Chris Lattner1c8733e2008-03-12 17:45:29 +00003124 PAL = PAListPtr::get(Attrs.begin(), Attrs.end());
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003125
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003126 // Create the call node
Gabor Greifd6da1d02008-04-06 20:25:17 +00003127 CallInst *CI = CallInst::Create(V, Args.begin(), Args.end());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003128 CI->setTailCall($1);
3129 CI->setCallingConv($2);
Duncan Sandsf5588dc2007-11-27 13:23:08 +00003130 CI->setParamAttrs(PAL);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003131 $$ = CI;
3132 delete $6;
3133 delete $3;
3134 CHECK_FOR_ERROR
3135 }
3136 | MemoryInst {
3137 $$ = $1;
3138 CHECK_FOR_ERROR
3139 };
3140
3141OptVolatile : VOLATILE {
3142 $$ = true;
3143 CHECK_FOR_ERROR
3144 }
3145 | /* empty */ {
3146 $$ = false;
3147 CHECK_FOR_ERROR
3148 };
3149
3150
3151
3152MemoryInst : MALLOC Types OptCAlign {
3153 if (!UpRefs.empty())
3154 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
3155 $$ = new MallocInst(*$2, 0, $3);
3156 delete $2;
3157 CHECK_FOR_ERROR
3158 }
3159 | MALLOC Types ',' INTTYPE ValueRef OptCAlign {
3160 if (!UpRefs.empty())
3161 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
Dan Gohman36782aa2008-05-23 18:23:11 +00003162 if ($4 != Type::Int32Ty)
3163 GEN_ERROR("Malloc array size is not a 32-bit integer!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003164 Value* tmpVal = getVal($4, $5);
3165 CHECK_FOR_ERROR
3166 $$ = new MallocInst(*$2, tmpVal, $6);
3167 delete $2;
3168 }
3169 | ALLOCA Types OptCAlign {
3170 if (!UpRefs.empty())
3171 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
3172 $$ = new AllocaInst(*$2, 0, $3);
3173 delete $2;
3174 CHECK_FOR_ERROR
3175 }
3176 | ALLOCA Types ',' INTTYPE ValueRef OptCAlign {
3177 if (!UpRefs.empty())
3178 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
Dan Gohman36782aa2008-05-23 18:23:11 +00003179 if ($4 != Type::Int32Ty)
3180 GEN_ERROR("Alloca array size is not a 32-bit integer!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003181 Value* tmpVal = getVal($4, $5);
3182 CHECK_FOR_ERROR
3183 $$ = new AllocaInst(*$2, tmpVal, $6);
3184 delete $2;
3185 }
3186 | FREE ResolvedVal {
3187 if (!isa<PointerType>($2->getType()))
3188 GEN_ERROR("Trying to free nonpointer type " +
3189 $2->getType()->getDescription() + "");
3190 $$ = new FreeInst($2);
3191 CHECK_FOR_ERROR
3192 }
3193
3194 | OptVolatile LOAD Types ValueRef OptCAlign {
3195 if (!UpRefs.empty())
3196 GEN_ERROR("Invalid upreference in type: " + (*$3)->getDescription());
3197 if (!isa<PointerType>($3->get()))
3198 GEN_ERROR("Can't load from nonpointer type: " +
3199 (*$3)->getDescription());
3200 if (!cast<PointerType>($3->get())->getElementType()->isFirstClassType())
3201 GEN_ERROR("Can't load from pointer of non-first-class type: " +
3202 (*$3)->getDescription());
3203 Value* tmpVal = getVal(*$3, $4);
3204 CHECK_FOR_ERROR
3205 $$ = new LoadInst(tmpVal, "", $1, $5);
3206 delete $3;
3207 }
3208 | OptVolatile STORE ResolvedVal ',' Types ValueRef OptCAlign {
3209 if (!UpRefs.empty())
3210 GEN_ERROR("Invalid upreference in type: " + (*$5)->getDescription());
3211 const PointerType *PT = dyn_cast<PointerType>($5->get());
3212 if (!PT)
3213 GEN_ERROR("Can't store to a nonpointer type: " +
3214 (*$5)->getDescription());
3215 const Type *ElTy = PT->getElementType();
3216 if (ElTy != $3->getType())
3217 GEN_ERROR("Can't store '" + $3->getType()->getDescription() +
3218 "' into space of type '" + ElTy->getDescription() + "'");
3219
3220 Value* tmpVal = getVal(*$5, $6);
3221 CHECK_FOR_ERROR
3222 $$ = new StoreInst($3, tmpVal, $1, $7);
3223 delete $5;
3224 }
Dan Gohmane6b1ee62008-05-23 01:55:30 +00003225 | GETRESULT Types ValueRef ',' EUINT64VAL {
Devang Patel89c3d672008-02-22 19:31:15 +00003226 Value *TmpVal = getVal($2->get(), $3);
Devang Patele5c806a2008-02-19 22:26:37 +00003227 if (!GetResultInst::isValidOperands(TmpVal, $5))
3228 GEN_ERROR("Invalid getresult operands");
3229 $$ = new GetResultInst(TmpVal, $5);
Devang Patel1a932fc2008-02-23 00:35:18 +00003230 delete $2;
Devang Patele5c806a2008-02-19 22:26:37 +00003231 CHECK_FOR_ERROR
3232 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003233 | GETELEMENTPTR Types ValueRef IndexList {
3234 if (!UpRefs.empty())
3235 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
3236 if (!isa<PointerType>($2->get()))
3237 GEN_ERROR("getelementptr insn requires pointer operand");
3238
Dan Gohman8055f772008-05-15 19:50:34 +00003239 if (!GetElementPtrInst::getIndexedType(*$2, $4->begin(), $4->end()))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003240 GEN_ERROR("Invalid getelementptr indices for type '" +
3241 (*$2)->getDescription()+ "'");
3242 Value* tmpVal = getVal(*$2, $3);
3243 CHECK_FOR_ERROR
Gabor Greifd6da1d02008-04-06 20:25:17 +00003244 $$ = GetElementPtrInst::Create(tmpVal, $4->begin(), $4->end());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003245 delete $2;
3246 delete $4;
Dan Gohmane6b1ee62008-05-23 01:55:30 +00003247 }
3248 | EXTRACTVALUE Types ValueRef IndexList {
3249 if (!UpRefs.empty())
3250 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
3251 if (!isa<StructType>($2->get()) && !isa<ArrayType>($2->get()))
3252 GEN_ERROR("extractvalue insn requires an aggregate operand");
3253
3254 if (!ExtractValueInst::getIndexedType(*$2, $4->begin(), $4->end()))
3255 GEN_ERROR("Invalid extractvalue indices for type '" +
3256 (*$2)->getDescription()+ "'");
3257 Value* tmpVal = getVal(*$2, $3);
3258 CHECK_FOR_ERROR
3259 $$ = ExtractValueInst::Create(tmpVal, $4->begin(), $4->end());
3260 delete $2;
3261 delete $4;
3262 }
3263 | INSERTVALUE Types ValueRef ',' Types ValueRef IndexList {
3264 if (!UpRefs.empty())
3265 GEN_ERROR("Invalid upreference in type: " + (*$2)->getDescription());
3266 if (!isa<StructType>($2->get()) && !isa<ArrayType>($2->get()))
3267 GEN_ERROR("extractvalue insn requires an aggregate operand");
3268
3269 if (ExtractValueInst::getIndexedType(*$2, $7->begin(), $7->end()) != $5->get())
3270 GEN_ERROR("Invalid insertvalue indices for type '" +
3271 (*$2)->getDescription()+ "'");
3272 Value* aggVal = getVal(*$2, $3);
3273 Value* tmpVal = getVal(*$5, $6);
3274 CHECK_FOR_ERROR
3275 $$ = InsertValueInst::Create(aggVal, tmpVal, $7->begin(), $7->end());
3276 delete $2;
3277 delete $5;
3278 delete $7;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003279 };
3280
3281
3282%%
3283
3284// common code from the two 'RunVMAsmParser' functions
3285static Module* RunParser(Module * M) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003286 CurModule.CurrentModule = M;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003287 // Check to make sure the parser succeeded
3288 if (yyparse()) {
3289 if (ParserResult)
3290 delete ParserResult;
3291 return 0;
3292 }
3293
3294 // Emit an error if there are any unresolved types left.
3295 if (!CurModule.LateResolveTypes.empty()) {
3296 const ValID &DID = CurModule.LateResolveTypes.begin()->first;
3297 if (DID.Type == ValID::LocalName) {
3298 GenerateError("Undefined type remains at eof: '"+DID.getName() + "'");
3299 } else {
3300 GenerateError("Undefined type remains at eof: #" + itostr(DID.Num));
3301 }
3302 if (ParserResult)
3303 delete ParserResult;
3304 return 0;
3305 }
3306
3307 // Emit an error if there are any unresolved values left.
3308 if (!CurModule.LateResolveValues.empty()) {
3309 Value *V = CurModule.LateResolveValues.back();
3310 std::map<Value*, std::pair<ValID, int> >::iterator I =
3311 CurModule.PlaceHolderInfo.find(V);
3312
3313 if (I != CurModule.PlaceHolderInfo.end()) {
3314 ValID &DID = I->second.first;
3315 if (DID.Type == ValID::LocalName) {
3316 GenerateError("Undefined value remains at eof: "+DID.getName() + "'");
3317 } else {
3318 GenerateError("Undefined value remains at eof: #" + itostr(DID.Num));
3319 }
3320 if (ParserResult)
3321 delete ParserResult;
3322 return 0;
3323 }
3324 }
3325
3326 // Check to make sure that parsing produced a result
3327 if (!ParserResult)
3328 return 0;
3329
3330 // Reset ParserResult variable while saving its value for the result.
3331 Module *Result = ParserResult;
3332 ParserResult = 0;
3333
3334 return Result;
3335}
3336
3337void llvm::GenerateError(const std::string &message, int LineNo) {
Chris Lattner17e73c22007-11-18 08:46:26 +00003338 if (LineNo == -1) LineNo = LLLgetLineNo();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003339 // TODO: column number in exception
3340 if (TheParseError)
Chris Lattner17e73c22007-11-18 08:46:26 +00003341 TheParseError->setError(LLLgetFilename(), message, LineNo);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003342 TriggerError = 1;
3343}
3344
3345int yyerror(const char *ErrorMsg) {
Chris Lattner17e73c22007-11-18 08:46:26 +00003346 std::string where = LLLgetFilename() + ":" + utostr(LLLgetLineNo()) + ": ";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003347 std::string errMsg = where + "error: " + std::string(ErrorMsg);
Chris Lattner17e73c22007-11-18 08:46:26 +00003348 if (yychar != YYEMPTY && yychar != 0) {
3349 errMsg += " while reading token: '";
3350 errMsg += std::string(LLLgetTokenStart(),
3351 LLLgetTokenStart()+LLLgetTokenLength()) + "'";
3352 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003353 GenerateError(errMsg);
3354 return 0;
3355}