blob: 0568b336ae552662a26857bcfc41fa1bd3306aa3 [file] [log] [blame]
Chris Lattner00950542001-06-06 20:29:01 +00001//===-- llvmAsmParser.y - Parser for llvm assembly files ---------*- C++ -*--=//
2//
3// This file implements the bison parser for LLVM assembly languages files.
4//
5//===------------------------------------------------------------------------=//
6
7//
8// TODO: Parse comments and add them to an internal node... so that they may
9// be saved in the bytecode format as well as everything else. Very important
10// for a general IR format.
11//
12
13%{
14#include "ParserInternals.h"
Chris Lattner70cc3392001-09-10 07:58:01 +000015#include "llvm/Assembly/Parser.h"
Chris Lattner00950542001-06-06 20:29:01 +000016#include "llvm/SymbolTable.h"
17#include "llvm/Module.h"
Chris Lattner70cc3392001-09-10 07:58:01 +000018#include "llvm/GlobalVariable.h"
19#include "llvm/Method.h"
20#include "llvm/BasicBlock.h"
Chris Lattner00950542001-06-06 20:29:01 +000021#include "llvm/DerivedTypes.h"
Chris Lattner00950542001-06-06 20:29:01 +000022#include "llvm/iTerminators.h"
23#include "llvm/iMemory.h"
Chris Lattner30c89792001-09-07 16:35:17 +000024#include "llvm/CFG.h" // TODO: Change this when we have a DF.h
25#include "llvm/Support/STLExtras.h"
Chris Lattner00950542001-06-06 20:29:01 +000026#include <list>
27#include <utility> // Get definition of pair class
Chris Lattner30c89792001-09-07 16:35:17 +000028#include <algorithm>
Chris Lattner00950542001-06-06 20:29:01 +000029#include <stdio.h> // This embarasment is due to our flex lexer...
30
Chris Lattner09083092001-07-08 04:57:15 +000031int yyerror(const char *ErrorMsg); // Forward declarations to prevent "implicit
32int yylex(); // declaration" of xxx warnings.
Chris Lattner00950542001-06-06 20:29:01 +000033int yyparse();
34
35static Module *ParserResult;
Chris Lattnera2850432001-07-22 18:36:00 +000036string CurFilename;
Chris Lattner00950542001-06-06 20:29:01 +000037
Chris Lattner30c89792001-09-07 16:35:17 +000038// DEBUG_UPREFS - Define this symbol if you want to enable debugging output
39// relating to upreferences in the input stream.
40//
41//#define DEBUG_UPREFS 1
42#ifdef DEBUG_UPREFS
43#define UR_OUT(X) cerr << X
44#else
45#define UR_OUT(X)
46#endif
47
Chris Lattner00950542001-06-06 20:29:01 +000048// This contains info used when building the body of a method. It is destroyed
49// when the method is completed.
50//
51typedef vector<Value *> ValueList; // Numbered defs
52static void ResolveDefinitions(vector<ValueList> &LateResolvers);
Chris Lattner30c89792001-09-07 16:35:17 +000053static void ResolveTypes (vector<PATypeHolder<Type> > &LateResolveTypes);
Chris Lattner00950542001-06-06 20:29:01 +000054
55static struct PerModuleInfo {
56 Module *CurrentModule;
Chris Lattner30c89792001-09-07 16:35:17 +000057 vector<ValueList> Values; // Module level numbered definitions
58 vector<ValueList> LateResolveValues;
59 vector<PATypeHolder<Type> > Types, LateResolveTypes;
Chris Lattner00950542001-06-06 20:29:01 +000060
61 void ModuleDone() {
Chris Lattner30c89792001-09-07 16:35:17 +000062 // If we could not resolve some methods at method compilation time (calls to
63 // methods before they are defined), resolve them now... Types are resolved
64 // when the constant pool has been completely parsed.
65 //
Chris Lattner00950542001-06-06 20:29:01 +000066 ResolveDefinitions(LateResolveValues);
67
68 Values.clear(); // Clear out method local definitions
Chris Lattner30c89792001-09-07 16:35:17 +000069 Types.clear();
Chris Lattner00950542001-06-06 20:29:01 +000070 CurrentModule = 0;
71 }
72} CurModule;
73
74static struct PerMethodInfo {
75 Method *CurrentMethod; // Pointer to current method being created
76
Chris Lattnere1815642001-07-15 06:35:53 +000077 vector<ValueList> Values; // Keep track of numbered definitions
Chris Lattner00950542001-06-06 20:29:01 +000078 vector<ValueList> LateResolveValues;
Chris Lattner30c89792001-09-07 16:35:17 +000079 vector<PATypeHolder<Type> > Types, LateResolveTypes;
Chris Lattnere1815642001-07-15 06:35:53 +000080 bool isDeclare; // Is this method a forward declararation?
Chris Lattner00950542001-06-06 20:29:01 +000081
82 inline PerMethodInfo() {
83 CurrentMethod = 0;
Chris Lattnere1815642001-07-15 06:35:53 +000084 isDeclare = false;
Chris Lattner00950542001-06-06 20:29:01 +000085 }
86
87 inline ~PerMethodInfo() {}
88
89 inline void MethodStart(Method *M) {
90 CurrentMethod = M;
91 }
92
93 void MethodDone() {
94 // If we could not resolve some blocks at parsing time (forward branches)
95 // resolve the branches now...
96 ResolveDefinitions(LateResolveValues);
97
98 Values.clear(); // Clear out method local definitions
Chris Lattner30c89792001-09-07 16:35:17 +000099 Types.clear();
Chris Lattner00950542001-06-06 20:29:01 +0000100 CurrentMethod = 0;
Chris Lattnere1815642001-07-15 06:35:53 +0000101 isDeclare = false;
Chris Lattner00950542001-06-06 20:29:01 +0000102 }
103} CurMeth; // Info for the current method...
104
105
106//===----------------------------------------------------------------------===//
107// Code to handle definitions of all the types
108//===----------------------------------------------------------------------===//
109
Chris Lattner93750fa2001-07-28 17:48:55 +0000110static void InsertValue(Value *D, vector<ValueList> &ValueTab = CurMeth.Values){
Chris Lattner00950542001-06-06 20:29:01 +0000111 if (!D->hasName()) { // Is this a numbered definition?
112 unsigned type = D->getType()->getUniqueID();
113 if (ValueTab.size() <= type)
114 ValueTab.resize(type+1, ValueList());
115 //printf("Values[%d][%d] = %d\n", type, ValueTab[type].size(), D);
116 ValueTab[type].push_back(D);
117 }
118}
119
Chris Lattner30c89792001-09-07 16:35:17 +0000120// TODO: FIXME when Type are not const
121static void InsertType(const Type *Ty, vector<PATypeHolder<Type> > &Types) {
122 Types.push_back(Ty);
123}
124
125static const Type *getTypeVal(const ValID &D, bool DoNotImprovise = false) {
Chris Lattner00950542001-06-06 20:29:01 +0000126 switch (D.Type) {
127 case 0: { // Is it a numbered definition?
Chris Lattner30c89792001-09-07 16:35:17 +0000128 unsigned Num = (unsigned)D.Num;
129
130 // Module constants occupy the lowest numbered slots...
131 if (Num < CurModule.Types.size())
132 return CurModule.Types[Num];
133
134 Num -= CurModule.Types.size();
135
136 // Check that the number is within bounds...
137 if (Num <= CurMeth.Types.size())
138 return CurMeth.Types[Num];
139 }
140 case 1: { // Is it a named definition?
141 string Name(D.Name);
142 SymbolTable *SymTab = 0;
143 if (CurMeth.CurrentMethod)
144 SymTab = CurMeth.CurrentMethod->getSymbolTable();
145 Value *N = SymTab ? SymTab->lookup(Type::TypeTy, Name) : 0;
146
147 if (N == 0) {
148 // Symbol table doesn't automatically chain yet... because the method
149 // hasn't been added to the module...
150 //
151 SymTab = CurModule.CurrentModule->getSymbolTable();
152 if (SymTab)
153 N = SymTab->lookup(Type::TypeTy, Name);
154 if (N == 0) break;
155 }
156
157 D.destroy(); // Free old strdup'd memory...
158 return N->castTypeAsserting();
159 }
160 default:
161 ThrowException("Invalid symbol type reference!");
162 }
163
164 // If we reached here, we referenced either a symbol that we don't know about
165 // or an id number that hasn't been read yet. We may be referencing something
166 // forward, so just create an entry to be resolved later and get to it...
167 //
168 if (DoNotImprovise) return 0; // Do we just want a null to be returned?
169
170 vector<PATypeHolder<Type> > *LateResolver = CurMeth.CurrentMethod ?
171 &CurMeth.LateResolveTypes : &CurModule.LateResolveTypes;
172
173 Type *Typ = new TypePlaceHolder(Type::TypeTy, D);
174 InsertType(Typ, *LateResolver);
175 return Typ;
176}
177
178static Value *getVal(const Type *Ty, const ValID &D,
179 bool DoNotImprovise = false) {
180 assert(Ty != Type::TypeTy && "Should use getTypeVal for types!");
181
182 switch (D.Type) {
183 case 0: { // Is it a numbered definition?
184 unsigned type = Ty->getUniqueID();
Chris Lattner00950542001-06-06 20:29:01 +0000185 unsigned Num = (unsigned)D.Num;
186
187 // Module constants occupy the lowest numbered slots...
188 if (type < CurModule.Values.size()) {
189 if (Num < CurModule.Values[type].size())
190 return CurModule.Values[type][Num];
191
192 Num -= CurModule.Values[type].size();
193 }
194
195 // Make sure that our type is within bounds
196 if (CurMeth.Values.size() <= type)
197 break;
198
199 // Check that the number is within bounds...
200 if (CurMeth.Values[type].size() <= Num)
201 break;
202
203 return CurMeth.Values[type][Num];
204 }
205 case 1: { // Is it a named definition?
206 string Name(D.Name);
207 SymbolTable *SymTab = 0;
208 if (CurMeth.CurrentMethod)
209 SymTab = CurMeth.CurrentMethod->getSymbolTable();
Chris Lattner30c89792001-09-07 16:35:17 +0000210 Value *N = SymTab ? SymTab->lookup(Ty, Name) : 0;
Chris Lattner00950542001-06-06 20:29:01 +0000211
212 if (N == 0) {
Chris Lattner30c89792001-09-07 16:35:17 +0000213 // Symbol table doesn't automatically chain yet... because the method
214 // hasn't been added to the module...
215 //
Chris Lattner00950542001-06-06 20:29:01 +0000216 SymTab = CurModule.CurrentModule->getSymbolTable();
217 if (SymTab)
Chris Lattner30c89792001-09-07 16:35:17 +0000218 N = SymTab->lookup(Ty, Name);
Chris Lattner00950542001-06-06 20:29:01 +0000219 if (N == 0) break;
220 }
221
222 D.destroy(); // Free old strdup'd memory...
223 return N;
224 }
225
226 case 2: // Is it a constant pool reference??
227 case 3: // Is it an unsigned const pool reference?
Chris Lattner3d52b2f2001-07-15 00:17:01 +0000228 case 4: // Is it a string const pool reference?
229 case 5:{ // Is it a floating point const pool reference?
Chris Lattner00950542001-06-06 20:29:01 +0000230 ConstPoolVal *CPV = 0;
231
Chris Lattner30c89792001-09-07 16:35:17 +0000232 // Check to make sure that "Ty" is an integral type, and that our
Chris Lattner00950542001-06-06 20:29:01 +0000233 // value will fit into the specified type...
234 switch (D.Type) {
235 case 2:
Chris Lattner30c89792001-09-07 16:35:17 +0000236 if (Ty == Type::BoolTy) { // Special handling for boolean data
237 CPV = ConstPoolBool::get(D.ConstPool64 != 0);
Chris Lattner00950542001-06-06 20:29:01 +0000238 } else {
Chris Lattner30c89792001-09-07 16:35:17 +0000239 if (!ConstPoolSInt::isValueValidForType(Ty, D.ConstPool64))
Chris Lattner3d52b2f2001-07-15 00:17:01 +0000240 ThrowException("Symbolic constant pool value '" +
241 itostr(D.ConstPool64) + "' is invalid for type '" +
Chris Lattner30c89792001-09-07 16:35:17 +0000242 Ty->getName() + "'!");
243 CPV = ConstPoolSInt::get(Ty, D.ConstPool64);
Chris Lattner00950542001-06-06 20:29:01 +0000244 }
245 break;
246 case 3:
Chris Lattner30c89792001-09-07 16:35:17 +0000247 if (!ConstPoolUInt::isValueValidForType(Ty, D.UConstPool64)) {
248 if (!ConstPoolSInt::isValueValidForType(Ty, D.ConstPool64)) {
Chris Lattner3d52b2f2001-07-15 00:17:01 +0000249 ThrowException("Integral constant pool reference is invalid!");
Chris Lattner00950542001-06-06 20:29:01 +0000250 } else { // This is really a signed reference. Transmogrify.
Chris Lattner30c89792001-09-07 16:35:17 +0000251 CPV = ConstPoolSInt::get(Ty, D.ConstPool64);
Chris Lattner00950542001-06-06 20:29:01 +0000252 }
253 } else {
Chris Lattner30c89792001-09-07 16:35:17 +0000254 CPV = ConstPoolUInt::get(Ty, D.UConstPool64);
Chris Lattner00950542001-06-06 20:29:01 +0000255 }
256 break;
257 case 4:
258 cerr << "FIXME: TODO: String constants [sbyte] not implemented yet!\n";
259 abort();
Chris Lattner00950542001-06-06 20:29:01 +0000260 break;
Chris Lattner3d52b2f2001-07-15 00:17:01 +0000261 case 5:
Chris Lattner30c89792001-09-07 16:35:17 +0000262 if (!ConstPoolFP::isValueValidForType(Ty, D.ConstPoolFP))
Chris Lattner3d52b2f2001-07-15 00:17:01 +0000263 ThrowException("FP constant invalid for type!!");
264 else
Chris Lattner30c89792001-09-07 16:35:17 +0000265 CPV = ConstPoolFP::get(Ty, D.ConstPoolFP);
Chris Lattner3d52b2f2001-07-15 00:17:01 +0000266 break;
Chris Lattner00950542001-06-06 20:29:01 +0000267 }
268 assert(CPV && "How did we escape creating a constant??");
Chris Lattner00950542001-06-06 20:29:01 +0000269 return CPV;
270 } // End of case 2,3,4
Chris Lattner30c89792001-09-07 16:35:17 +0000271 default:
272 assert(0 && "Unhandled case!");
Chris Lattner00950542001-06-06 20:29:01 +0000273 } // End of switch
274
275
276 // If we reached here, we referenced either a symbol that we don't know about
277 // or an id number that hasn't been read yet. We may be referencing something
278 // forward, so just create an entry to be resolved later and get to it...
279 //
280 if (DoNotImprovise) return 0; // Do we just want a null to be returned?
281
Chris Lattner00950542001-06-06 20:29:01 +0000282 Value *d = 0;
Chris Lattner30c89792001-09-07 16:35:17 +0000283 vector<ValueList> *LateResolver = (CurMeth.CurrentMethod) ?
284 &CurMeth.LateResolveValues : &CurModule.LateResolveValues;
Chris Lattner93750fa2001-07-28 17:48:55 +0000285
Chris Lattner30c89792001-09-07 16:35:17 +0000286 switch (Ty->getPrimitiveID()) {
287 case Type::LabelTyID: d = new BBPlaceHolder(Ty, D); break;
288 case Type::MethodTyID: d = new MethPlaceHolder(Ty, D);
Chris Lattner93750fa2001-07-28 17:48:55 +0000289 LateResolver = &CurModule.LateResolveValues; break;
Chris Lattner30c89792001-09-07 16:35:17 +0000290 default: d = new ValuePlaceHolder(Ty, D); break;
Chris Lattner00950542001-06-06 20:29:01 +0000291 }
292
293 assert(d != 0 && "How did we not make something?");
Chris Lattner93750fa2001-07-28 17:48:55 +0000294 InsertValue(d, *LateResolver);
Chris Lattner00950542001-06-06 20:29:01 +0000295 return d;
296}
297
298
299//===----------------------------------------------------------------------===//
300// Code to handle forward references in instructions
301//===----------------------------------------------------------------------===//
302//
303// This code handles the late binding needed with statements that reference
304// values not defined yet... for example, a forward branch, or the PHI node for
305// a loop body.
306//
307// This keeps a table (CurMeth.LateResolveValues) of all such forward references
308// and back patchs after we are done.
309//
310
311// ResolveDefinitions - If we could not resolve some defs at parsing
312// time (forward branches, phi functions for loops, etc...) resolve the
313// defs now...
314//
315static void ResolveDefinitions(vector<ValueList> &LateResolvers) {
316 // Loop over LateResolveDefs fixing up stuff that couldn't be resolved
317 for (unsigned ty = 0; ty < LateResolvers.size(); ty++) {
318 while (!LateResolvers[ty].empty()) {
319 Value *V = LateResolvers[ty].back();
320 LateResolvers[ty].pop_back();
321 ValID &DID = getValIDFromPlaceHolder(V);
322
323 Value *TheRealValue = getVal(Type::getUniqueIDType(ty), DID, true);
324
Chris Lattner30c89792001-09-07 16:35:17 +0000325 if (TheRealValue == 0) {
326 if (DID.Type == 1)
327 ThrowException("Reference to an invalid definition: '" +DID.getName()+
328 "' of type '" + V->getType()->getDescription() + "'",
329 getLineNumFromPlaceHolder(V));
330 else
331 ThrowException("Reference to an invalid definition: #" +
332 itostr(DID.Num) + " of type '" +
333 V->getType()->getDescription() + "'",
334 getLineNumFromPlaceHolder(V));
335 }
336
337 assert(!V->isType() && "Types should be in LateResolveTypes!");
Chris Lattner00950542001-06-06 20:29:01 +0000338
339 V->replaceAllUsesWith(TheRealValue);
Chris Lattner00950542001-06-06 20:29:01 +0000340 delete V;
341 }
342 }
343
344 LateResolvers.clear();
345}
346
Chris Lattner30c89792001-09-07 16:35:17 +0000347
348// ResolveTypes - This goes through the forward referenced type table and makes
349// sure that all type references are complete. This code is executed after the
350// constant pool of a method or module is completely parsed.
Chris Lattner00950542001-06-06 20:29:01 +0000351//
Chris Lattner30c89792001-09-07 16:35:17 +0000352static void ResolveTypes(vector<PATypeHolder<Type> > &LateResolveTypes) {
353 while (!LateResolveTypes.empty()) {
354 const Type *Ty = LateResolveTypes.back();
355 ValID &DID = getValIDFromPlaceHolder(Ty);
Chris Lattner00950542001-06-06 20:29:01 +0000356
Chris Lattner30c89792001-09-07 16:35:17 +0000357 const Type *TheRealType = getTypeVal(DID, true);
358 if (TheRealType == 0) {
359 if (DID.Type == 1)
360 ThrowException("Reference to an invalid type: '" +DID.getName(),
361 getLineNumFromPlaceHolder(Ty));
362 else
363 ThrowException("Reference to an invalid type: #" + itostr(DID.Num),
364 getLineNumFromPlaceHolder(Ty));
Chris Lattner00950542001-06-06 20:29:01 +0000365 }
Chris Lattner30c89792001-09-07 16:35:17 +0000366
367 // FIXME: When types are not const
368 DerivedType *DTy = const_cast<DerivedType*>(Ty->castDerivedTypeAsserting());
369
370 // Refine the opaque type we had to the new type we are getting.
371 DTy->refineAbstractTypeTo(TheRealType);
372
373 // No need to delete type, refine does that for us.
374 LateResolveTypes.pop_back();
375 }
376}
377
378static void setValueName(Value *V, const string &Name) {
379 SymbolTable *ST = CurMeth.CurrentMethod ?
380 CurMeth.CurrentMethod->getSymbolTableSure() :
381 CurModule.CurrentModule->getSymbolTableSure();
382
383 Value *Existing = ST->lookup(V->getType(), Name);
384 if (Existing) { // Inserting a name that is already defined???
385 // There is only one case where this is allowed: when we are refining an
386 // opaque type. In this case, Existing will be an opaque type.
387 if (const Type *Ty = Existing->castType())
388 if (Ty->isOpaqueType()) {
389 // We ARE replacing an opaque type!
390
391 // TODO: FIXME when types are not const!
392 const_cast<DerivedType*>(Ty->castDerivedTypeAsserting())->refineAbstractTypeTo(V->castTypeAsserting());
393 return;
394 }
395
396 // Otherwise, we are a simple redefinition of a value, baaad
397 ThrowException("Redefinition of value name '" + Name + "' in the '" +
398 V->getType()->getDescription() + "' type plane!");
Chris Lattner93750fa2001-07-28 17:48:55 +0000399 }
Chris Lattner00950542001-06-06 20:29:01 +0000400
Chris Lattner30c89792001-09-07 16:35:17 +0000401 V->setName(Name, ST);
Chris Lattner00950542001-06-06 20:29:01 +0000402}
403
Chris Lattner8896eda2001-07-09 19:38:36 +0000404
Chris Lattner30c89792001-09-07 16:35:17 +0000405//===----------------------------------------------------------------------===//
406// Code for handling upreferences in type names...
Chris Lattner8896eda2001-07-09 19:38:36 +0000407//
Chris Lattner8896eda2001-07-09 19:38:36 +0000408
Chris Lattner30c89792001-09-07 16:35:17 +0000409// TypeContains - Returns true if Ty contains E in it.
410//
411static bool TypeContains(const Type *Ty, const Type *E) {
412 return find(cfg::tdf_begin(Ty), cfg::tdf_end(Ty), E) != cfg::tdf_end(Ty);
413}
Chris Lattner698b56e2001-07-20 19:15:08 +0000414
Chris Lattner30c89792001-09-07 16:35:17 +0000415
416static vector<pair<unsigned, OpaqueType *> > UpRefs;
417
418static PATypeHolder<Type> HandleUpRefs(const Type *ty) {
419 PATypeHolder<Type> Ty(ty);
420 UR_OUT(UpRefs.size() << " upreferences active!\n");
421 for (unsigned i = 0; i < UpRefs.size(); ) {
422 UR_OUT("TypeContains(" << Ty->getDescription() << ", "
423 << UpRefs[i].second->getDescription() << ") = "
424 << TypeContains(Ty, UpRefs[i].second) << endl);
425 if (TypeContains(Ty, UpRefs[i].second)) {
426 unsigned Level = --UpRefs[i].first; // Decrement level of upreference
427 UR_OUT("Uplevel Ref Level = " << Level << endl);
428 if (Level == 0) { // Upreference should be resolved!
429 UR_OUT("About to resolve upreference!\n";
430 string OldName = UpRefs[i].second->getDescription());
431 UpRefs[i].second->refineAbstractTypeTo(Ty);
432 UpRefs.erase(UpRefs.begin()+i); // Remove from upreference list...
433 UR_OUT("Type '" << OldName << "' refined upreference to: "
434 << (const void*)Ty << ", " << Ty->getDescription() << endl);
435 continue;
436 }
437 }
438
439 ++i; // Otherwise, no resolve, move on...
Chris Lattner8896eda2001-07-09 19:38:36 +0000440 }
Chris Lattner30c89792001-09-07 16:35:17 +0000441 // FIXME: TODO: this should return the updated type
Chris Lattner8896eda2001-07-09 19:38:36 +0000442 return Ty;
443}
444
Chris Lattner30c89792001-09-07 16:35:17 +0000445template <class TypeTy>
446inline static void TypeDone(PATypeHolder<TypeTy> *Ty) {
447 if (UpRefs.size())
448 ThrowException("Invalid upreference in type: " + (*Ty)->getDescription());
449}
450
451// newTH - Allocate a new type holder for the specified type
452template <class TypeTy>
453inline static PATypeHolder<TypeTy> *newTH(const TypeTy *Ty) {
454 return new PATypeHolder<TypeTy>(Ty);
455}
456template <class TypeTy>
457inline static PATypeHolder<TypeTy> *newTH(const PATypeHolder<TypeTy> &TH) {
458 return new PATypeHolder<TypeTy>(TH);
459}
460
461
462// newTHC - Allocate a new type holder for the specified type that can be
463// casted to a new Type type.
464template <class TypeTy, class OldTy>
465inline static PATypeHolder<TypeTy> *newTHC(const PATypeHolder<OldTy> &Old) {
466 return new PATypeHolder<TypeTy>((const TypeTy*)Old.get());
467}
468
Chris Lattner8896eda2001-07-09 19:38:36 +0000469
Chris Lattner00950542001-06-06 20:29:01 +0000470//===----------------------------------------------------------------------===//
471// RunVMAsmParser - Define an interface to this parser
472//===----------------------------------------------------------------------===//
473//
Chris Lattnera2850432001-07-22 18:36:00 +0000474Module *RunVMAsmParser(const string &Filename, FILE *F) {
Chris Lattner00950542001-06-06 20:29:01 +0000475 llvmAsmin = F;
Chris Lattnera2850432001-07-22 18:36:00 +0000476 CurFilename = Filename;
Chris Lattner00950542001-06-06 20:29:01 +0000477 llvmAsmlineno = 1; // Reset the current line number...
478
479 CurModule.CurrentModule = new Module(); // Allocate a new module to read
480 yyparse(); // Parse the file.
481 Module *Result = ParserResult;
Chris Lattner00950542001-06-06 20:29:01 +0000482 llvmAsmin = stdin; // F is about to go away, don't use it anymore...
483 ParserResult = 0;
484
485 return Result;
486}
487
488%}
489
490%union {
Chris Lattner30c89792001-09-07 16:35:17 +0000491 Module *ModuleVal;
492 Method *MethodVal;
493 MethodArgument *MethArgVal;
494 BasicBlock *BasicBlockVal;
495 TerminatorInst *TermInstVal;
496 Instruction *InstVal;
497 ConstPoolVal *ConstVal;
Chris Lattner00950542001-06-06 20:29:01 +0000498
Chris Lattner30c89792001-09-07 16:35:17 +0000499 const Type *PrimType;
500 PATypeHolder<Type> *TypeVal;
501 PATypeHolder<ArrayType> *ArrayTypeTy;
502 PATypeHolder<StructType> *StructTypeTy;
503 Value *ValueVal;
504
505 list<MethodArgument*> *MethodArgList;
506 list<Value*> *ValueList;
507 list<PATypeHolder<Type> > *TypeList;
Chris Lattnerc24d2082001-06-11 15:04:20 +0000508 list<pair<Value*, BasicBlock*> > *PHIList; // Represent the RHS of PHI node
Chris Lattner00950542001-06-06 20:29:01 +0000509 list<pair<ConstPoolVal*, BasicBlock*> > *JumpTable;
Chris Lattner30c89792001-09-07 16:35:17 +0000510 vector<ConstPoolVal*> *ConstVector;
Chris Lattner00950542001-06-06 20:29:01 +0000511
Chris Lattner30c89792001-09-07 16:35:17 +0000512 int64_t SInt64Val;
513 uint64_t UInt64Val;
514 int SIntVal;
515 unsigned UIntVal;
516 double FPVal;
Chris Lattner00950542001-06-06 20:29:01 +0000517
Chris Lattner30c89792001-09-07 16:35:17 +0000518 char *StrVal; // This memory is strdup'd!
519 ValID ValIDVal; // strdup'd memory maybe!
Chris Lattner00950542001-06-06 20:29:01 +0000520
Chris Lattner30c89792001-09-07 16:35:17 +0000521 Instruction::UnaryOps UnaryOpVal;
522 Instruction::BinaryOps BinaryOpVal;
523 Instruction::TermOps TermOpVal;
524 Instruction::MemoryOps MemOpVal;
525 Instruction::OtherOps OtherOpVal;
Chris Lattner00950542001-06-06 20:29:01 +0000526}
527
528%type <ModuleVal> Module MethodList
Chris Lattnere1815642001-07-15 06:35:53 +0000529%type <MethodVal> Method MethodProto MethodHeader BasicBlockList
Chris Lattner00950542001-06-06 20:29:01 +0000530%type <BasicBlockVal> BasicBlock InstructionList
531%type <TermInstVal> BBTerminatorInst
532%type <InstVal> Inst InstVal MemoryInst
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000533%type <ConstVal> ConstVal ExtendedConstVal
Chris Lattner027dcc52001-07-08 21:10:27 +0000534%type <ConstVector> ConstVector UByteList
Chris Lattner00950542001-06-06 20:29:01 +0000535%type <MethodArgList> ArgList ArgListH
536%type <MethArgVal> ArgVal
Chris Lattnerc24d2082001-06-11 15:04:20 +0000537%type <PHIList> PHIList
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000538%type <ValueList> ValueRefList ValueRefListE // For call param lists
Chris Lattner30c89792001-09-07 16:35:17 +0000539%type <TypeList> TypeListI ArgTypeListI
Chris Lattner00950542001-06-06 20:29:01 +0000540%type <JumpTable> JumpTable
541
542%type <ValIDVal> ValueRef ConstValueRef // Reference to a definition or BB
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000543%type <ValueVal> ResolvedVal // <type> <valref> pair
Chris Lattner00950542001-06-06 20:29:01 +0000544// Tokens and types for handling constant integer values
545//
546// ESINT64VAL - A negative number within long long range
547%token <SInt64Val> ESINT64VAL
548
549// EUINT64VAL - A positive number within uns. long long range
550%token <UInt64Val> EUINT64VAL
551%type <SInt64Val> EINT64VAL
552
553%token <SIntVal> SINTVAL // Signed 32 bit ints...
554%token <UIntVal> UINTVAL // Unsigned 32 bit ints...
555%type <SIntVal> INTVAL
Chris Lattner3d52b2f2001-07-15 00:17:01 +0000556%token <FPVal> FPVAL // Float or Double constant
Chris Lattner00950542001-06-06 20:29:01 +0000557
558// Built in types...
Chris Lattner30c89792001-09-07 16:35:17 +0000559%type <TypeVal> Types TypesV UpRTypes UpRTypesV
560%type <PrimType> SIntType UIntType IntType FPType PrimType // Classifications
561%token <TypeVal> OPAQUE
562%token <PrimType> VOID BOOL SBYTE UBYTE SHORT USHORT INT UINT LONG ULONG
563%token <PrimType> FLOAT DOUBLE TYPE LABEL
564%type <ArrayTypeTy> ArrayType ArrayTypeI
565%type <StructTypeTy> StructType StructTypeI
Chris Lattner00950542001-06-06 20:29:01 +0000566
567%token <StrVal> VAR_ID LABELSTR STRINGCONSTANT
568%type <StrVal> OptVAR_ID OptAssign
569
570
Chris Lattner70cc3392001-09-10 07:58:01 +0000571%token IMPLEMENTATION TRUE FALSE BEGINTOK END DECLARE GLOBAL TO DOTDOTDOT STRING
Chris Lattner00950542001-06-06 20:29:01 +0000572
573// Basic Block Terminating Operators
574%token <TermOpVal> RET BR SWITCH
575
576// Unary Operators
577%type <UnaryOpVal> UnaryOps // all the unary operators
Chris Lattner71496b32001-07-08 19:03:27 +0000578%token <UnaryOpVal> NOT
Chris Lattner00950542001-06-06 20:29:01 +0000579
580// Binary Operators
581%type <BinaryOpVal> BinaryOps // all the binary operators
582%token <BinaryOpVal> ADD SUB MUL DIV REM
Chris Lattner027dcc52001-07-08 21:10:27 +0000583%token <BinaryOpVal> SETLE SETGE SETLT SETGT SETEQ SETNE // Binary Comarators
Chris Lattner00950542001-06-06 20:29:01 +0000584
585// Memory Instructions
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000586%token <MemoryOpVal> MALLOC ALLOCA FREE LOAD STORE GETELEMENTPTR
Chris Lattner00950542001-06-06 20:29:01 +0000587
Chris Lattner027dcc52001-07-08 21:10:27 +0000588// Other Operators
589%type <OtherOpVal> ShiftOps
590%token <OtherOpVal> PHI CALL CAST SHL SHR
591
Chris Lattner00950542001-06-06 20:29:01 +0000592%start Module
593%%
594
595// Handle constant integer size restriction and conversion...
596//
597
598INTVAL : SINTVAL
599INTVAL : UINTVAL {
600 if ($1 > (uint32_t)INT32_MAX) // Outside of my range!
601 ThrowException("Value too large for type!");
602 $$ = (int32_t)$1;
603}
604
605
606EINT64VAL : ESINT64VAL // These have same type and can't cause problems...
607EINT64VAL : EUINT64VAL {
608 if ($1 > (uint64_t)INT64_MAX) // Outside of my range!
609 ThrowException("Value too large for type!");
610 $$ = (int64_t)$1;
611}
612
Chris Lattner00950542001-06-06 20:29:01 +0000613// Operations that are notably excluded from this list include:
614// RET, BR, & SWITCH because they end basic blocks and are treated specially.
615//
Chris Lattner09083092001-07-08 04:57:15 +0000616UnaryOps : NOT
Chris Lattner00950542001-06-06 20:29:01 +0000617BinaryOps : ADD | SUB | MUL | DIV | REM
618BinaryOps : SETLE | SETGE | SETLT | SETGT | SETEQ | SETNE
Chris Lattner027dcc52001-07-08 21:10:27 +0000619ShiftOps : SHL | SHR
Chris Lattner00950542001-06-06 20:29:01 +0000620
Chris Lattnere98dda62001-07-14 06:10:16 +0000621// These are some types that allow classification if we only want a particular
622// thing... for example, only a signed, unsigned, or integral type.
Chris Lattner00950542001-06-06 20:29:01 +0000623SIntType : LONG | INT | SHORT | SBYTE
624UIntType : ULONG | UINT | USHORT | UBYTE
Chris Lattner30c89792001-09-07 16:35:17 +0000625IntType : SIntType | UIntType
626FPType : FLOAT | DOUBLE
Chris Lattner00950542001-06-06 20:29:01 +0000627
Chris Lattnere98dda62001-07-14 06:10:16 +0000628// OptAssign - Value producing statements have an optional assignment component
Chris Lattner00950542001-06-06 20:29:01 +0000629OptAssign : VAR_ID '=' {
630 $$ = $1;
631 }
632 | /*empty*/ {
633 $$ = 0;
634 }
635
Chris Lattner30c89792001-09-07 16:35:17 +0000636
637//===----------------------------------------------------------------------===//
638// Types includes all predefined types... except void, because it can only be
639// used in specific contexts (method returning void for example). To have
640// access to it, a user must explicitly use TypesV.
641//
642
643// TypesV includes all of 'Types', but it also includes the void type.
644TypesV : Types | VOID { $$ = newTH($1); }
645UpRTypesV : UpRTypes | VOID { $$ = newTH($1); }
646
647Types : UpRTypes {
648 TypeDone($$ = $1);
649 }
650
651
652// Derived types are added later...
653//
654PrimType : BOOL | SBYTE | UBYTE | SHORT | USHORT | INT | UINT
655PrimType : LONG | ULONG | FLOAT | DOUBLE | TYPE | LABEL
656UpRTypes : OPAQUE | PrimType { $$ = newTH($1); }
657UpRTypes : ValueRef { // Named types are also simple types...
658 $$ = newTH(getTypeVal($1));
659}
660
661// ArrayTypeI - Internal version of ArrayType that can have incomplete uprefs
662//
663ArrayTypeI : '[' UpRTypesV ']' { // Unsized array type?
664 $$ = newTHC<ArrayType>(HandleUpRefs(ArrayType::get(*$2)));
665 delete $2;
666 }
667 | '[' EUINT64VAL 'x' UpRTypes ']' { // Sized array type?
668 $$ = newTHC<ArrayType>(HandleUpRefs(ArrayType::get(*$4, (int)$2)));
669 delete $4;
670 }
671
672StructTypeI : '{' TypeListI '}' { // Structure type?
673 vector<const Type*> Elements;
674 mapto($2->begin(), $2->end(), back_inserter(Elements),
675 mem_fun_ref(&PATypeHandle<Type>::get));
676
677 $$ = newTHC<StructType>(HandleUpRefs(StructType::get(Elements)));
678 delete $2;
679 }
680 | '{' '}' { // Empty structure type?
681 $$ = newTH(StructType::get(vector<const Type*>()));
682 }
683
684
685// Include derived types in the Types production.
686//
687UpRTypes : '\\' EUINT64VAL { // Type UpReference
688 if ($2 > (uint64_t)INT64_MAX) ThrowException("Value out of range!");
689 OpaqueType *OT = OpaqueType::get(); // Use temporary placeholder
690 UpRefs.push_back(make_pair((unsigned)$2, OT)); // Add to vector...
691 $$ = newTH<Type>(OT);
692 UR_OUT("New Upreference!\n");
693 }
694 | UpRTypesV '(' ArgTypeListI ')' { // Method derived type?
695 vector<const Type*> Params;
696 mapto($3->begin(), $3->end(), back_inserter(Params),
697 mem_fun_ref(&PATypeHandle<Type>::get));
698 $$ = newTH(HandleUpRefs(MethodType::get(*$1, Params)));
699 delete $3; // Delete the argument list
700 delete $1; // Delete the old type handle
701 }
702 | ArrayTypeI { // [Un]sized array type?
703 $$ = newTHC<Type>(*$1); delete $1;
704 }
705 | StructTypeI { // Structure type?
706 $$ = newTHC<Type>(*$1); delete $1;
707 }
708 | UpRTypes '*' { // Pointer type?
709 $$ = newTH(HandleUpRefs(PointerType::get(*$1)));
710 delete $1; // Delete the type handle
711 }
712
713// Define some helpful top level types that do not allow UpReferences to escape
714//
715ArrayType : ArrayTypeI { TypeDone($$ = $1); }
716StructType : StructTypeI { TypeDone($$ = $1); }
717
718
719
720// TypeList - Used for struct declarations and as a basis for method type
721// declaration type lists
722//
723TypeListI : UpRTypes {
724 $$ = new list<PATypeHolder<Type> >();
725 $$->push_back(*$1); delete $1;
726 }
727 | TypeListI ',' UpRTypes {
728 ($$=$1)->push_back(*$3); delete $3;
729 }
730
731// ArgTypeList - List of types for a method type declaration...
732ArgTypeListI : TypeListI
733 | TypeListI ',' DOTDOTDOT {
734 ($$=$1)->push_back(Type::VoidTy);
735 }
736 | DOTDOTDOT {
737 ($$ = new list<PATypeHolder<Type> >())->push_back(Type::VoidTy);
738 }
739 | /*empty*/ {
740 $$ = new list<PATypeHolder<Type> >();
741 }
742
743
Chris Lattnere98dda62001-07-14 06:10:16 +0000744// ConstVal - The various declarations that go into the constant pool. This
745// includes all forward declarations of types, constants, and functions.
746//
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000747// This is broken into two sections: ExtendedConstVal and ConstVal
748//
Chris Lattner30c89792001-09-07 16:35:17 +0000749ExtendedConstVal: ArrayType '[' ConstVector ']' { // Nonempty unsized arr
750 const ArrayType *ATy = *$1;
751 const Type *ETy = ATy->getElementType();
752 int NumElements = ATy->getNumElements();
Chris Lattner00950542001-06-06 20:29:01 +0000753
Chris Lattner30c89792001-09-07 16:35:17 +0000754 // Verify that we have the correct size...
755 if (NumElements != -1 && NumElements != (int)$3->size())
Chris Lattner00950542001-06-06 20:29:01 +0000756 ThrowException("Type mismatch: constant sized array initialized with " +
Chris Lattner30c89792001-09-07 16:35:17 +0000757 utostr($3->size()) + " arguments, but has size of " +
758 itostr(NumElements) + "!");
Chris Lattner00950542001-06-06 20:29:01 +0000759
Chris Lattner30c89792001-09-07 16:35:17 +0000760 // Verify all elements are correct type!
761 for (unsigned i = 0; i < $3->size(); i++) {
762 if (ETy != (*$3)[i]->getType())
Chris Lattner00950542001-06-06 20:29:01 +0000763 ThrowException("Element #" + utostr(i) + " is not of type '" +
Chris Lattner30c89792001-09-07 16:35:17 +0000764 ETy->getName() + "' as required!\nIt is of type '" +
765 (*$3)[i]->getType()->getName() + "'.");
Chris Lattner00950542001-06-06 20:29:01 +0000766 }
767
Chris Lattner30c89792001-09-07 16:35:17 +0000768 $$ = ConstPoolArray::get(ATy, *$3);
769 delete $1; delete $3;
Chris Lattner00950542001-06-06 20:29:01 +0000770 }
Chris Lattner30c89792001-09-07 16:35:17 +0000771 | ArrayType '[' ']' {
772 int NumElements = (*$1)->getNumElements();
773 if (NumElements != -1 && NumElements != 0)
Chris Lattner00950542001-06-06 20:29:01 +0000774 ThrowException("Type mismatch: constant sized array initialized with 0"
Chris Lattner30c89792001-09-07 16:35:17 +0000775 " arguments, but has size of " + itostr(NumElements) +"!");
776 $$ = ConstPoolArray::get((*$1), vector<ConstPoolVal*>());
777 delete $1;
Chris Lattner00950542001-06-06 20:29:01 +0000778 }
Chris Lattner30c89792001-09-07 16:35:17 +0000779 | ArrayType 'c' STRINGCONSTANT {
780 const ArrayType *ATy = *$1;
781 int NumElements = ATy->getNumElements();
782 const Type *ETy = ATy->getElementType();
783 char *EndStr = UnEscapeLexed($3, true);
784 if (NumElements != -1 && NumElements != (EndStr-$3))
Chris Lattner93750fa2001-07-28 17:48:55 +0000785 ThrowException("Can't build string constant of size " +
Chris Lattner30c89792001-09-07 16:35:17 +0000786 itostr((int)(EndStr-$3)) +
787 " when array has size " + itostr(NumElements) + "!");
Chris Lattner93750fa2001-07-28 17:48:55 +0000788 vector<ConstPoolVal*> Vals;
Chris Lattner30c89792001-09-07 16:35:17 +0000789 if (ETy == Type::SByteTy) {
790 for (char *C = $3; C != EndStr; ++C)
791 Vals.push_back(ConstPoolSInt::get(ETy, *C));
792 } else if (ETy == Type::UByteTy) {
793 for (char *C = $3; C != EndStr; ++C)
794 Vals.push_back(ConstPoolUInt::get(ETy, *C));
Chris Lattner93750fa2001-07-28 17:48:55 +0000795 } else {
Chris Lattner30c89792001-09-07 16:35:17 +0000796 free($3);
Chris Lattner93750fa2001-07-28 17:48:55 +0000797 ThrowException("Cannot build string arrays of non byte sized elements!");
798 }
Chris Lattner30c89792001-09-07 16:35:17 +0000799 free($3);
800 $$ = ConstPoolArray::get(ATy, Vals);
801 delete $1;
Chris Lattner93750fa2001-07-28 17:48:55 +0000802 }
Chris Lattner30c89792001-09-07 16:35:17 +0000803 | StructType '{' ConstVector '}' {
804 // FIXME: TODO: Check to see that the constants are compatible with the type
805 // initializer!
806 $$ = ConstPoolStruct::get(*$1, *$3);
807 delete $1; delete $3;
Chris Lattner00950542001-06-06 20:29:01 +0000808 }
809/*
810 | Types '*' ConstVal {
811 assert(0);
812 $$ = 0;
813 }
814*/
815
Chris Lattner93750fa2001-07-28 17:48:55 +0000816ConstVal : ExtendedConstVal {
817 $$ = $1;
818 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000819 | SIntType EINT64VAL { // integral constants
820 if (!ConstPoolSInt::isValueValidForType($1, $2))
821 ThrowException("Constant value doesn't fit in type!");
Chris Lattner30c89792001-09-07 16:35:17 +0000822 $$ = ConstPoolSInt::get($1, $2);
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000823 }
824 | UIntType EUINT64VAL { // integral constants
825 if (!ConstPoolUInt::isValueValidForType($1, $2))
826 ThrowException("Constant value doesn't fit in type!");
Chris Lattner30c89792001-09-07 16:35:17 +0000827 $$ = ConstPoolUInt::get($1, $2);
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000828 }
829 | BOOL TRUE { // Boolean constants
Chris Lattner30c89792001-09-07 16:35:17 +0000830 $$ = ConstPoolBool::True;
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000831 }
832 | BOOL FALSE { // Boolean constants
Chris Lattner30c89792001-09-07 16:35:17 +0000833 $$ = ConstPoolBool::False;
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000834 }
835 | FPType FPVAL { // Float & Double constants
Chris Lattner30c89792001-09-07 16:35:17 +0000836 $$ = ConstPoolFP::get($1, $2);
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000837 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000838
Chris Lattnere98dda62001-07-14 06:10:16 +0000839// ConstVector - A list of comma seperated constants.
Chris Lattner00950542001-06-06 20:29:01 +0000840ConstVector : ConstVector ',' ConstVal {
Chris Lattner30c89792001-09-07 16:35:17 +0000841 ($$ = $1)->push_back($3);
Chris Lattner00950542001-06-06 20:29:01 +0000842 }
843 | ConstVal {
844 $$ = new vector<ConstPoolVal*>();
Chris Lattner30c89792001-09-07 16:35:17 +0000845 $$->push_back($1);
Chris Lattner00950542001-06-06 20:29:01 +0000846 }
847
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +0000848
Chris Lattnere98dda62001-07-14 06:10:16 +0000849//ExternMethodDecl : EXTERNAL TypesV '(' TypeList ')' {
850// }
851//ExternVarDecl :
Chris Lattner00950542001-06-06 20:29:01 +0000852
Chris Lattnere98dda62001-07-14 06:10:16 +0000853// ConstPool - Constants with optional names assigned to them.
Chris Lattner00950542001-06-06 20:29:01 +0000854ConstPool : ConstPool OptAssign ConstVal {
855 if ($2) {
Chris Lattner30c89792001-09-07 16:35:17 +0000856 setValueName($3, $2);
Chris Lattner00950542001-06-06 20:29:01 +0000857 free($2);
858 }
Chris Lattner30c89792001-09-07 16:35:17 +0000859 InsertValue($3);
Chris Lattner00950542001-06-06 20:29:01 +0000860 }
Chris Lattner30c89792001-09-07 16:35:17 +0000861 | ConstPool OptAssign TYPE TypesV { // Types can be defined in the const pool
862 if ($2) {
863 // TODO: FIXME when Type are not const
864 setValueName(const_cast<Type*>($4->get()), $2);
865 free($2);
866 } else {
867 InsertType($4->get(),
868 CurMeth.CurrentMethod ? CurMeth.Types : CurModule.Types);
869 }
870 delete $4;
871 }
872 | ConstPool MethodProto { // Method prototypes can be in const pool
Chris Lattner93750fa2001-07-28 17:48:55 +0000873 }
Chris Lattner70cc3392001-09-10 07:58:01 +0000874 | ConstPool GLOBAL OptAssign Types { // Global declarations appear in CP
875 if (!$4->get()->isPointerType() ||
876 (((PointerType*)$4->get())->isArrayType() &&
877 ((PointerType*)$4->get())->isArrayType()->isUnsized())) {
878 ThrowException("Type '" + $4->get()->getDescription() +
879 "' is not a pointer to a sized type!");
Chris Lattnere98dda62001-07-14 06:10:16 +0000880 }
Chris Lattner70cc3392001-09-10 07:58:01 +0000881
882 GlobalVariable *GV = new GlobalVariable(*$4);
883 delete $4;
884 if ($3) {
885 setValueName(GV, $3);
886 free($3);
887 }
888 CurModule.CurrentModule->getGlobalList().push_back(GV);
889 InsertValue(GV, CurModule.Values);
Chris Lattnere98dda62001-07-14 06:10:16 +0000890 }
Chris Lattner00950542001-06-06 20:29:01 +0000891 | /* empty: end of list */ {
892 }
893
894
895//===----------------------------------------------------------------------===//
896// Rules to match Modules
897//===----------------------------------------------------------------------===//
898
899// Module rule: Capture the result of parsing the whole file into a result
900// variable...
901//
902Module : MethodList {
903 $$ = ParserResult = $1;
904 CurModule.ModuleDone();
905}
906
Chris Lattnere98dda62001-07-14 06:10:16 +0000907// MethodList - A list of methods, preceeded by a constant pool.
908//
Chris Lattner00950542001-06-06 20:29:01 +0000909MethodList : MethodList Method {
Chris Lattner00950542001-06-06 20:29:01 +0000910 $$ = $1;
Chris Lattnere1815642001-07-15 06:35:53 +0000911 if (!$2->getParent())
912 $1->getMethodList().push_back($2);
913 CurMeth.MethodDone();
Chris Lattner00950542001-06-06 20:29:01 +0000914 }
Chris Lattnere1815642001-07-15 06:35:53 +0000915 | MethodList MethodProto {
916 $$ = $1;
Chris Lattnere1815642001-07-15 06:35:53 +0000917 }
Chris Lattner00950542001-06-06 20:29:01 +0000918 | ConstPool IMPLEMENTATION {
919 $$ = CurModule.CurrentModule;
Chris Lattner30c89792001-09-07 16:35:17 +0000920 // Resolve circular types before we parse the body of the module
921 ResolveTypes(CurModule.LateResolveTypes);
Chris Lattner00950542001-06-06 20:29:01 +0000922 }
923
924
925//===----------------------------------------------------------------------===//
926// Rules to match Method Headers
927//===----------------------------------------------------------------------===//
928
929OptVAR_ID : VAR_ID | /*empty*/ { $$ = 0; }
930
931ArgVal : Types OptVAR_ID {
Chris Lattner30c89792001-09-07 16:35:17 +0000932 $$ = new MethodArgument(*$1); delete $1;
Chris Lattner00950542001-06-06 20:29:01 +0000933 if ($2) { // Was the argument named?
Chris Lattner30c89792001-09-07 16:35:17 +0000934 setValueName($$, $2);
Chris Lattner00950542001-06-06 20:29:01 +0000935 free($2); // The string was strdup'd, so free it now.
936 }
937}
938
939ArgListH : ArgVal ',' ArgListH {
940 $$ = $3;
941 $3->push_front($1);
942 }
943 | ArgVal {
944 $$ = new list<MethodArgument*>();
945 $$->push_front($1);
946 }
Chris Lattner8b81bf52001-07-25 22:47:46 +0000947 | DOTDOTDOT {
948 $$ = new list<MethodArgument*>();
949 $$->push_back(new MethodArgument(Type::VoidTy));
950 }
Chris Lattner00950542001-06-06 20:29:01 +0000951
952ArgList : ArgListH {
953 $$ = $1;
954 }
955 | /* empty */ {
956 $$ = 0;
957 }
958
959MethodHeaderH : TypesV STRINGCONSTANT '(' ArgList ')' {
Chris Lattner93750fa2001-07-28 17:48:55 +0000960 UnEscapeLexed($2);
Chris Lattner30c89792001-09-07 16:35:17 +0000961 vector<const Type*> ParamTypeList;
Chris Lattner00950542001-06-06 20:29:01 +0000962 if ($4)
Chris Lattner7fc9fe32001-06-27 23:41:11 +0000963 for (list<MethodArgument*>::iterator I = $4->begin(); I != $4->end(); ++I)
Chris Lattner00950542001-06-06 20:29:01 +0000964 ParamTypeList.push_back((*I)->getType());
965
Chris Lattner30c89792001-09-07 16:35:17 +0000966 const MethodType *MT = MethodType::get(*$1, ParamTypeList);
967 delete $1;
Chris Lattner00950542001-06-06 20:29:01 +0000968
Chris Lattnere1815642001-07-15 06:35:53 +0000969 Method *M = 0;
970 if (SymbolTable *ST = CurModule.CurrentModule->getSymbolTable()) {
971 if (Value *V = ST->lookup(MT, $2)) { // Method already in symtab?
972 M = V->castMethodAsserting();
Chris Lattner00950542001-06-06 20:29:01 +0000973
Chris Lattnere1815642001-07-15 06:35:53 +0000974 // Yes it is. If this is the case, either we need to be a forward decl,
975 // or it needs to be.
976 if (!CurMeth.isDeclare && !M->isExternal())
977 ThrowException("Redefinition of method '" + string($2) + "'!");
978 }
979 }
980
981 if (M == 0) { // Not already defined?
982 M = new Method(MT, $2);
983 InsertValue(M, CurModule.Values);
984 }
985
986 free($2); // Free strdup'd memory!
Chris Lattner00950542001-06-06 20:29:01 +0000987
988 CurMeth.MethodStart(M);
989
990 // Add all of the arguments we parsed to the method...
Chris Lattnere1815642001-07-15 06:35:53 +0000991 if ($4 && !CurMeth.isDeclare) { // Is null if empty...
Chris Lattner00950542001-06-06 20:29:01 +0000992 Method::ArgumentListType &ArgList = M->getArgumentList();
993
Chris Lattner7fc9fe32001-06-27 23:41:11 +0000994 for (list<MethodArgument*>::iterator I = $4->begin(); I != $4->end(); ++I) {
Chris Lattner00950542001-06-06 20:29:01 +0000995 InsertValue(*I);
996 ArgList.push_back(*I);
997 }
998 delete $4; // We're now done with the argument list
999 }
1000}
1001
1002MethodHeader : MethodHeaderH ConstPool BEGINTOK {
1003 $$ = CurMeth.CurrentMethod;
Chris Lattner30c89792001-09-07 16:35:17 +00001004
1005 // Resolve circular types before we parse the body of the method.
1006 ResolveTypes(CurMeth.LateResolveTypes);
Chris Lattner00950542001-06-06 20:29:01 +00001007}
1008
1009Method : BasicBlockList END {
1010 $$ = $1;
1011}
1012
Chris Lattnere1815642001-07-15 06:35:53 +00001013MethodProto : DECLARE { CurMeth.isDeclare = true; } MethodHeaderH {
1014 $$ = CurMeth.CurrentMethod;
Chris Lattner93750fa2001-07-28 17:48:55 +00001015 if (!$$->getParent())
1016 CurModule.CurrentModule->getMethodList().push_back($$);
1017 CurMeth.MethodDone();
Chris Lattnere1815642001-07-15 06:35:53 +00001018}
Chris Lattner00950542001-06-06 20:29:01 +00001019
1020//===----------------------------------------------------------------------===//
1021// Rules to match Basic Blocks
1022//===----------------------------------------------------------------------===//
1023
1024ConstValueRef : ESINT64VAL { // A reference to a direct constant
1025 $$ = ValID::create($1);
1026 }
1027 | EUINT64VAL {
1028 $$ = ValID::create($1);
1029 }
Chris Lattner3d52b2f2001-07-15 00:17:01 +00001030 | FPVAL { // Perhaps it's an FP constant?
1031 $$ = ValID::create($1);
1032 }
Chris Lattner00950542001-06-06 20:29:01 +00001033 | TRUE {
1034 $$ = ValID::create((int64_t)1);
1035 }
1036 | FALSE {
1037 $$ = ValID::create((int64_t)0);
1038 }
Chris Lattner93750fa2001-07-28 17:48:55 +00001039/*
Chris Lattner00950542001-06-06 20:29:01 +00001040 | STRINGCONSTANT { // Quoted strings work too... especially for methods
1041 $$ = ValID::create_conststr($1);
1042 }
Chris Lattner93750fa2001-07-28 17:48:55 +00001043*/
Chris Lattner00950542001-06-06 20:29:01 +00001044
1045// ValueRef - A reference to a definition...
1046ValueRef : INTVAL { // Is it an integer reference...?
1047 $$ = ValID::create($1);
1048 }
Chris Lattner3d52b2f2001-07-15 00:17:01 +00001049 | VAR_ID { // Is it a named reference...?
Chris Lattner00950542001-06-06 20:29:01 +00001050 $$ = ValID::create($1);
1051 }
1052 | ConstValueRef {
1053 $$ = $1;
1054 }
1055
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001056// ResolvedVal - a <type> <value> pair. This is used only in cases where the
1057// type immediately preceeds the value reference, and allows complex constant
1058// pool references (for things like: 'ret [2 x int] [ int 12, int 42]')
1059ResolvedVal : ExtendedConstVal {
Chris Lattner30c89792001-09-07 16:35:17 +00001060 $$ = $1;
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001061 }
1062 | Types ValueRef {
Chris Lattner30c89792001-09-07 16:35:17 +00001063 $$ = getVal(*$1, $2); delete $1;
Chris Lattner93750fa2001-07-28 17:48:55 +00001064 }
Chris Lattner8b81bf52001-07-25 22:47:46 +00001065
Chris Lattner00950542001-06-06 20:29:01 +00001066
1067BasicBlockList : BasicBlockList BasicBlock {
1068 $1->getBasicBlocks().push_back($2);
1069 $$ = $1;
1070 }
1071 | MethodHeader BasicBlock { // Do not allow methods with 0 basic blocks
1072 $$ = $1; // in them...
1073 $1->getBasicBlocks().push_back($2);
1074 }
1075
1076
1077// Basic blocks are terminated by branching instructions:
1078// br, br/cc, switch, ret
1079//
1080BasicBlock : InstructionList BBTerminatorInst {
1081 $1->getInstList().push_back($2);
1082 InsertValue($1);
1083 $$ = $1;
1084 }
1085 | LABELSTR InstructionList BBTerminatorInst {
1086 $2->getInstList().push_back($3);
Chris Lattner30c89792001-09-07 16:35:17 +00001087 setValueName($2, $1);
Chris Lattner00950542001-06-06 20:29:01 +00001088 free($1); // Free the strdup'd memory...
1089
1090 InsertValue($2);
1091 $$ = $2;
1092 }
1093
1094InstructionList : InstructionList Inst {
1095 $1->getInstList().push_back($2);
1096 $$ = $1;
1097 }
1098 | /* empty */ {
1099 $$ = new BasicBlock();
1100 }
1101
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001102BBTerminatorInst : RET ResolvedVal { // Return with a result...
1103 $$ = new ReturnInst($2);
Chris Lattner00950542001-06-06 20:29:01 +00001104 }
1105 | RET VOID { // Return with no result...
1106 $$ = new ReturnInst();
1107 }
1108 | BR LABEL ValueRef { // Unconditional Branch...
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001109 $$ = new BranchInst(getVal(Type::LabelTy, $3)->castBasicBlockAsserting());
Chris Lattner00950542001-06-06 20:29:01 +00001110 } // Conditional Branch...
1111 | BR BOOL ValueRef ',' LABEL ValueRef ',' LABEL ValueRef {
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001112 $$ = new BranchInst(getVal(Type::LabelTy, $6)->castBasicBlockAsserting(),
1113 getVal(Type::LabelTy, $9)->castBasicBlockAsserting(),
Chris Lattner00950542001-06-06 20:29:01 +00001114 getVal(Type::BoolTy, $3));
1115 }
1116 | SWITCH IntType ValueRef ',' LABEL ValueRef '[' JumpTable ']' {
1117 SwitchInst *S = new SwitchInst(getVal($2, $3),
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001118 getVal(Type::LabelTy, $6)->castBasicBlockAsserting());
Chris Lattner00950542001-06-06 20:29:01 +00001119 $$ = S;
1120
1121 list<pair<ConstPoolVal*, BasicBlock*> >::iterator I = $8->begin(),
1122 end = $8->end();
Chris Lattner7fc9fe32001-06-27 23:41:11 +00001123 for (; I != end; ++I)
Chris Lattner00950542001-06-06 20:29:01 +00001124 S->dest_push_back(I->first, I->second);
1125 }
1126
1127JumpTable : JumpTable IntType ConstValueRef ',' LABEL ValueRef {
1128 $$ = $1;
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001129 ConstPoolVal *V = getVal($2, $3, true)->castConstantAsserting();
Chris Lattner00950542001-06-06 20:29:01 +00001130 if (V == 0)
1131 ThrowException("May only switch on a constant pool value!");
1132
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001133 $$->push_back(make_pair(V, getVal($5, $6)->castBasicBlockAsserting()));
Chris Lattner00950542001-06-06 20:29:01 +00001134 }
1135 | IntType ConstValueRef ',' LABEL ValueRef {
1136 $$ = new list<pair<ConstPoolVal*, BasicBlock*> >();
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001137 ConstPoolVal *V = getVal($1, $2, true)->castConstantAsserting();
Chris Lattner00950542001-06-06 20:29:01 +00001138
1139 if (V == 0)
1140 ThrowException("May only switch on a constant pool value!");
1141
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001142 $$->push_back(make_pair(V, getVal($4, $5)->castBasicBlockAsserting()));
Chris Lattner00950542001-06-06 20:29:01 +00001143 }
1144
1145Inst : OptAssign InstVal {
Chris Lattner30c89792001-09-07 16:35:17 +00001146 if ($1) // Is this definition named??
1147 setValueName($2, $1); // if so, assign the name...
Chris Lattner00950542001-06-06 20:29:01 +00001148
1149 InsertValue($2);
1150 $$ = $2;
1151}
1152
Chris Lattnerc24d2082001-06-11 15:04:20 +00001153PHIList : Types '[' ValueRef ',' ValueRef ']' { // Used for PHI nodes
1154 $$ = new list<pair<Value*, BasicBlock*> >();
Chris Lattner30c89792001-09-07 16:35:17 +00001155 $$->push_back(make_pair(getVal(*$1, $3),
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001156 getVal(Type::LabelTy, $5)->castBasicBlockAsserting()));
Chris Lattner30c89792001-09-07 16:35:17 +00001157 delete $1;
Chris Lattnerc24d2082001-06-11 15:04:20 +00001158 }
1159 | PHIList ',' '[' ValueRef ',' ValueRef ']' {
1160 $$ = $1;
1161 $1->push_back(make_pair(getVal($1->front().first->getType(), $4),
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001162 getVal(Type::LabelTy, $6)->castBasicBlockAsserting()));
Chris Lattnerc24d2082001-06-11 15:04:20 +00001163 }
1164
1165
Chris Lattner30c89792001-09-07 16:35:17 +00001166ValueRefList : ResolvedVal { // Used for call statements, and memory insts...
Chris Lattner00950542001-06-06 20:29:01 +00001167 $$ = new list<Value*>();
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001168 $$->push_back($1);
Chris Lattner00950542001-06-06 20:29:01 +00001169 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001170 | ValueRefList ',' ResolvedVal {
Chris Lattner00950542001-06-06 20:29:01 +00001171 $$ = $1;
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001172 $1->push_back($3);
Chris Lattner00950542001-06-06 20:29:01 +00001173 }
1174
1175// ValueRefListE - Just like ValueRefList, except that it may also be empty!
1176ValueRefListE : ValueRefList | /*empty*/ { $$ = 0; }
1177
1178InstVal : BinaryOps Types ValueRef ',' ValueRef {
Chris Lattner30c89792001-09-07 16:35:17 +00001179 $$ = BinaryOperator::create($1, getVal(*$2, $3), getVal(*$2, $5));
Chris Lattner00950542001-06-06 20:29:01 +00001180 if ($$ == 0)
1181 ThrowException("binary operator returned null!");
Chris Lattner30c89792001-09-07 16:35:17 +00001182 delete $2;
Chris Lattner00950542001-06-06 20:29:01 +00001183 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001184 | UnaryOps ResolvedVal {
1185 $$ = UnaryOperator::create($1, $2);
Chris Lattner00950542001-06-06 20:29:01 +00001186 if ($$ == 0)
1187 ThrowException("unary operator returned null!");
Chris Lattner09083092001-07-08 04:57:15 +00001188 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001189 | ShiftOps ResolvedVal ',' ResolvedVal {
1190 if ($4->getType() != Type::UByteTy)
1191 ThrowException("Shift amount must be ubyte!");
1192 $$ = new ShiftInst($1, $2, $4);
Chris Lattner027dcc52001-07-08 21:10:27 +00001193 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001194 | CAST ResolvedVal TO Types {
Chris Lattner30c89792001-09-07 16:35:17 +00001195 $$ = new CastInst($2, *$4);
1196 delete $4;
Chris Lattner09083092001-07-08 04:57:15 +00001197 }
Chris Lattnerc24d2082001-06-11 15:04:20 +00001198 | PHI PHIList {
1199 const Type *Ty = $2->front().first->getType();
1200 $$ = new PHINode(Ty);
Chris Lattner00950542001-06-06 20:29:01 +00001201 while ($2->begin() != $2->end()) {
Chris Lattnerc24d2082001-06-11 15:04:20 +00001202 if ($2->front().first->getType() != Ty)
1203 ThrowException("All elements of a PHI node must be of the same type!");
1204 ((PHINode*)$$)->addIncoming($2->front().first, $2->front().second);
Chris Lattner00950542001-06-06 20:29:01 +00001205 $2->pop_front();
1206 }
1207 delete $2; // Free the list...
1208 }
Chris Lattner93750fa2001-07-28 17:48:55 +00001209 | CALL TypesV ValueRef '(' ValueRefListE ')' {
Chris Lattner8b81bf52001-07-25 22:47:46 +00001210 const MethodType *Ty;
Chris Lattner00950542001-06-06 20:29:01 +00001211
Chris Lattner30c89792001-09-07 16:35:17 +00001212 if (!(Ty = (*$2)->isMethodType())) {
Chris Lattner8b81bf52001-07-25 22:47:46 +00001213 // Pull out the types of all of the arguments...
1214 vector<const Type*> ParamTypes;
1215 for (list<Value*>::iterator I = $5->begin(), E = $5->end(); I != E; ++I)
1216 ParamTypes.push_back((*I)->getType());
Chris Lattner30c89792001-09-07 16:35:17 +00001217 Ty = MethodType::get(*$2, ParamTypes);
Chris Lattner8b81bf52001-07-25 22:47:46 +00001218 }
Chris Lattner30c89792001-09-07 16:35:17 +00001219 delete $2;
Chris Lattner00950542001-06-06 20:29:01 +00001220
Chris Lattner8b81bf52001-07-25 22:47:46 +00001221 Value *V = getVal(Ty, $3); // Get the method we're calling...
Chris Lattner00950542001-06-06 20:29:01 +00001222
Chris Lattner8b81bf52001-07-25 22:47:46 +00001223 // Create the call node...
1224 if (!$5) { // Has no arguments?
1225 $$ = new CallInst(V->castMethodAsserting(), vector<Value*>());
1226 } else { // Has arguments?
Chris Lattner00950542001-06-06 20:29:01 +00001227 // Loop through MethodType's arguments and ensure they are specified
1228 // correctly!
1229 //
1230 MethodType::ParamTypes::const_iterator I = Ty->getParamTypes().begin();
Chris Lattner8b81bf52001-07-25 22:47:46 +00001231 MethodType::ParamTypes::const_iterator E = Ty->getParamTypes().end();
1232 list<Value*>::iterator ArgI = $5->begin(), ArgE = $5->end();
1233
1234 for (; ArgI != ArgE && I != E; ++ArgI, ++I)
1235 if ((*ArgI)->getType() != *I)
1236 ThrowException("Parameter " +(*ArgI)->getName()+ " is not of type '" +
Chris Lattner00950542001-06-06 20:29:01 +00001237 (*I)->getName() + "'!");
Chris Lattner00950542001-06-06 20:29:01 +00001238
Chris Lattner8b81bf52001-07-25 22:47:46 +00001239 if (I != E || (ArgI != ArgE && !Ty->isVarArg()))
Chris Lattner00950542001-06-06 20:29:01 +00001240 ThrowException("Invalid number of parameters detected!");
Chris Lattner00950542001-06-06 20:29:01 +00001241
Chris Lattner8b81bf52001-07-25 22:47:46 +00001242 $$ = new CallInst(V->castMethodAsserting(),
1243 vector<Value*>($5->begin(), $5->end()));
1244 }
1245 delete $5;
Chris Lattner00950542001-06-06 20:29:01 +00001246 }
1247 | MemoryInst {
1248 $$ = $1;
1249 }
1250
Chris Lattner027dcc52001-07-08 21:10:27 +00001251// UByteList - List of ubyte values for load and store instructions
1252UByteList : ',' ConstVector {
1253 $$ = $2;
1254} | /* empty */ {
1255 $$ = new vector<ConstPoolVal*>();
1256}
1257
Chris Lattner00950542001-06-06 20:29:01 +00001258MemoryInst : MALLOC Types {
Chris Lattner30c89792001-09-07 16:35:17 +00001259 $$ = new MallocInst(PointerType::get(*$2));
1260 delete $2;
Chris Lattner00950542001-06-06 20:29:01 +00001261 }
1262 | MALLOC Types ',' UINT ValueRef {
Chris Lattner30c89792001-09-07 16:35:17 +00001263 if (!(*$2)->isArrayType() || ((const ArrayType*)$2->get())->isSized())
1264 ThrowException("Trying to allocate " + (*$2)->getName() +
Chris Lattner00950542001-06-06 20:29:01 +00001265 " as unsized array!");
Chris Lattner30c89792001-09-07 16:35:17 +00001266 const Type *Ty = PointerType::get(*$2);
Chris Lattner8896eda2001-07-09 19:38:36 +00001267 $$ = new MallocInst(Ty, getVal($4, $5));
Chris Lattner30c89792001-09-07 16:35:17 +00001268 delete $2;
Chris Lattner00950542001-06-06 20:29:01 +00001269 }
1270 | ALLOCA Types {
Chris Lattner30c89792001-09-07 16:35:17 +00001271 $$ = new AllocaInst(PointerType::get(*$2));
1272 delete $2;
Chris Lattner00950542001-06-06 20:29:01 +00001273 }
1274 | ALLOCA Types ',' UINT ValueRef {
Chris Lattner30c89792001-09-07 16:35:17 +00001275 if (!(*$2)->isArrayType() || ((const ArrayType*)$2->get())->isSized())
1276 ThrowException("Trying to allocate " + (*$2)->getName() +
Chris Lattner00950542001-06-06 20:29:01 +00001277 " as unsized array!");
Chris Lattner30c89792001-09-07 16:35:17 +00001278 const Type *Ty = PointerType::get(*$2);
Chris Lattner00950542001-06-06 20:29:01 +00001279 Value *ArrSize = getVal($4, $5);
Chris Lattnerf0d0e9c2001-07-07 08:36:30 +00001280 $$ = new AllocaInst(Ty, ArrSize);
Chris Lattner30c89792001-09-07 16:35:17 +00001281 delete $2;
Chris Lattner00950542001-06-06 20:29:01 +00001282 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001283 | FREE ResolvedVal {
1284 if (!$2->getType()->isPointerType())
1285 ThrowException("Trying to free nonpointer type " +
1286 $2->getType()->getName() + "!");
1287 $$ = new FreeInst($2);
Chris Lattner00950542001-06-06 20:29:01 +00001288 }
1289
Chris Lattner027dcc52001-07-08 21:10:27 +00001290 | LOAD Types ValueRef UByteList {
Chris Lattner30c89792001-09-07 16:35:17 +00001291 if (!(*$2)->isPointerType())
1292 ThrowException("Can't load from nonpointer type: " + (*$2)->getName());
1293 if (LoadInst::getIndexedType(*$2, *$4) == 0)
Chris Lattner027dcc52001-07-08 21:10:27 +00001294 ThrowException("Invalid indices for load instruction!");
1295
Chris Lattner30c89792001-09-07 16:35:17 +00001296 $$ = new LoadInst(getVal(*$2, $3), *$4);
Chris Lattner027dcc52001-07-08 21:10:27 +00001297 delete $4; // Free the vector...
Chris Lattner30c89792001-09-07 16:35:17 +00001298 delete $2;
Chris Lattner027dcc52001-07-08 21:10:27 +00001299 }
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001300 | STORE ResolvedVal ',' Types ValueRef UByteList {
Chris Lattner30c89792001-09-07 16:35:17 +00001301 if (!(*$4)->isPointerType())
1302 ThrowException("Can't store to a nonpointer type: " + (*$4)->getName());
1303 const Type *ElTy = StoreInst::getIndexedType(*$4, *$6);
Chris Lattnerab5ac6b2001-07-08 23:22:50 +00001304 if (ElTy == 0)
1305 ThrowException("Can't store into that field list!");
Chris Lattnerbcbf6ba2001-07-26 16:29:15 +00001306 if (ElTy != $2->getType())
1307 ThrowException("Can't store '" + $2->getType()->getName() +
1308 "' into space of type '" + ElTy->getName() + "'!");
Chris Lattner30c89792001-09-07 16:35:17 +00001309 $$ = new StoreInst($2, getVal(*$4, $5), *$6);
1310 delete $4; delete $6;
Chris Lattnerab5ac6b2001-07-08 23:22:50 +00001311 }
1312 | GETELEMENTPTR Types ValueRef UByteList {
Chris Lattner30c89792001-09-07 16:35:17 +00001313 if (!(*$2)->isPointerType())
Chris Lattnerab5ac6b2001-07-08 23:22:50 +00001314 ThrowException("getelementptr insn requires pointer operand!");
Chris Lattner30c89792001-09-07 16:35:17 +00001315 if (!GetElementPtrInst::getIndexedType(*$2, *$4, true))
1316 ThrowException("Can't get element ptr '" + (*$2)->getName() + "'!");
1317 $$ = new GetElementPtrInst(getVal(*$2, $3), *$4);
1318 delete $2; delete $4;
Chris Lattnerab5ac6b2001-07-08 23:22:50 +00001319 }
Chris Lattner027dcc52001-07-08 21:10:27 +00001320
Chris Lattner00950542001-06-06 20:29:01 +00001321%%
Chris Lattner09083092001-07-08 04:57:15 +00001322int yyerror(const char *ErrorMsg) {
Chris Lattner00950542001-06-06 20:29:01 +00001323 ThrowException(string("Parse error: ") + ErrorMsg);
1324 return 0;
1325}