llvm-6502/lib/AsmParser/llvmAsmParser.cpp.cvs
Gabor Greif e64d248b63 regenerate
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@49293 91177308-0d34-0410-b5e6-96231b3b80d8
2008-04-06 23:07:54 +00:00

5565 lines
212 KiB
Plaintext
Raw Blame History

This file contains invisible Unicode characters

This file contains invisible Unicode characters that are indistinguishable to humans but may be processed differently by a computer. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

/* A Bison parser, made from /Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y
by GNU Bison version 1.28 */
#define YYBISON 1 /* Identify Bison output. */
#define yyparse llvmAsmparse
#define yylex llvmAsmlex
#define yyerror llvmAsmerror
#define yylval llvmAsmlval
#define yychar llvmAsmchar
#define yydebug llvmAsmdebug
#define yynerrs llvmAsmnerrs
#define ESINT64VAL 257
#define EUINT64VAL 258
#define ESAPINTVAL 259
#define EUAPINTVAL 260
#define LOCALVAL_ID 261
#define GLOBALVAL_ID 262
#define FPVAL 263
#define VOID 264
#define INTTYPE 265
#define FLOAT 266
#define DOUBLE 267
#define X86_FP80 268
#define FP128 269
#define PPC_FP128 270
#define LABEL 271
#define TYPE 272
#define LOCALVAR 273
#define GLOBALVAR 274
#define LABELSTR 275
#define STRINGCONSTANT 276
#define ATSTRINGCONSTANT 277
#define PCTSTRINGCONSTANT 278
#define ZEROINITIALIZER 279
#define TRUETOK 280
#define FALSETOK 281
#define BEGINTOK 282
#define ENDTOK 283
#define DECLARE 284
#define DEFINE 285
#define GLOBAL 286
#define CONSTANT 287
#define SECTION 288
#define ALIAS 289
#define VOLATILE 290
#define THREAD_LOCAL 291
#define TO 292
#define DOTDOTDOT 293
#define NULL_TOK 294
#define UNDEF 295
#define INTERNAL 296
#define LINKONCE 297
#define WEAK 298
#define APPENDING 299
#define DLLIMPORT 300
#define DLLEXPORT 301
#define EXTERN_WEAK 302
#define OPAQUE 303
#define EXTERNAL 304
#define TARGET 305
#define TRIPLE 306
#define ALIGN 307
#define ADDRSPACE 308
#define DEPLIBS 309
#define CALL 310
#define TAIL 311
#define ASM_TOK 312
#define MODULE 313
#define SIDEEFFECT 314
#define CC_TOK 315
#define CCC_TOK 316
#define FASTCC_TOK 317
#define COLDCC_TOK 318
#define X86_STDCALLCC_TOK 319
#define X86_FASTCALLCC_TOK 320
#define DATALAYOUT 321
#define UNWINDS 322
#define RET 323
#define BR 324
#define SWITCH 325
#define INVOKE 326
#define UNWIND 327
#define UNREACHABLE 328
#define ADD 329
#define SUB 330
#define MUL 331
#define UDIV 332
#define SDIV 333
#define FDIV 334
#define UREM 335
#define SREM 336
#define FREM 337
#define AND 338
#define OR 339
#define XOR 340
#define SHL 341
#define LSHR 342
#define ASHR 343
#define ICMP 344
#define FCMP 345
#define EQ 346
#define NE 347
#define SLT 348
#define SGT 349
#define SLE 350
#define SGE 351
#define ULT 352
#define UGT 353
#define ULE 354
#define UGE 355
#define OEQ 356
#define ONE 357
#define OLT 358
#define OGT 359
#define OLE 360
#define OGE 361
#define ORD 362
#define UNO 363
#define UEQ 364
#define UNE 365
#define MALLOC 366
#define ALLOCA 367
#define FREE 368
#define LOAD 369
#define STORE 370
#define GETELEMENTPTR 371
#define TRUNC 372
#define ZEXT 373
#define SEXT 374
#define FPTRUNC 375
#define FPEXT 376
#define BITCAST 377
#define UITOFP 378
#define SITOFP 379
#define FPTOUI 380
#define FPTOSI 381
#define INTTOPTR 382
#define PTRTOINT 383
#define PHI_TOK 384
#define SELECT 385
#define VAARG 386
#define EXTRACTELEMENT 387
#define INSERTELEMENT 388
#define SHUFFLEVECTOR 389
#define GETRESULT 390
#define SIGNEXT 391
#define ZEROEXT 392
#define NORETURN 393
#define INREG 394
#define SRET 395
#define NOUNWIND 396
#define NOALIAS 397
#define BYVAL 398
#define NEST 399
#define READNONE 400
#define READONLY 401
#define GC 402
#define DEFAULT 403
#define HIDDEN 404
#define PROTECTED 405
#line 14 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
#include "ParserInternals.h"
#include "llvm/CallingConv.h"
#include "llvm/InlineAsm.h"
#include "llvm/Instructions.h"
#include "llvm/Module.h"
#include "llvm/ValueSymbolTable.h"
#include "llvm/AutoUpgrade.h"
#include "llvm/Support/GetElementPtrTypeIterator.h"
#include "llvm/Support/CommandLine.h"
#include "llvm/ADT/SmallVector.h"
#include "llvm/ADT/STLExtras.h"
#include "llvm/Support/MathExtras.h"
#include "llvm/Support/Streams.h"
#include <algorithm>
#include <list>
#include <map>
#include <utility>
// The following is a gross hack. In order to rid the libAsmParser library of
// exceptions, we have to have a way of getting the yyparse function to go into
// an error situation. So, whenever we want an error to occur, the GenerateError
// function (see bottom of file) sets TriggerError. Then, at the end of each
// production in the grammer we use CHECK_FOR_ERROR which will invoke YYERROR
// (a goto) to put YACC in error state. Furthermore, several calls to
// GenerateError are made from inside productions and they must simulate the
// previous exception behavior by exiting the production immediately. We have
// replaced these with the GEN_ERROR macro which calls GeneratError and then
// immediately invokes YYERROR. This would be so much cleaner if it was a
// recursive descent parser.
static bool TriggerError = false;
#define CHECK_FOR_ERROR { if (TriggerError) { TriggerError = false; YYABORT; } }
#define GEN_ERROR(msg) { GenerateError(msg); YYERROR; }
int yyerror(const char *ErrorMsg); // Forward declarations to prevent "implicit
int yylex(); // declaration" of xxx warnings.
int yyparse();
using namespace llvm;
static Module *ParserResult;
// DEBUG_UPREFS - Define this symbol if you want to enable debugging output
// relating to upreferences in the input stream.
//
//#define DEBUG_UPREFS 1
#ifdef DEBUG_UPREFS
#define UR_OUT(X) cerr << X
#else
#define UR_OUT(X)
#endif
#define YYERROR_VERBOSE 1
static GlobalVariable *CurGV;
// This contains info used when building the body of a function. It is
// destroyed when the function is completed.
//
typedef std::vector<Value *> ValueList; // Numbered defs
static void
ResolveDefinitions(ValueList &LateResolvers, ValueList *FutureLateResolvers=0);
static struct PerModuleInfo {
Module *CurrentModule;
ValueList Values; // Module level numbered definitions
ValueList LateResolveValues;
std::vector<PATypeHolder> Types;
std::map<ValID, PATypeHolder> LateResolveTypes;
/// PlaceHolderInfo - When temporary placeholder objects are created, remember
/// how they were referenced and on which line of the input they came from so
/// that we can resolve them later and print error messages as appropriate.
std::map<Value*, std::pair<ValID, int> > PlaceHolderInfo;
// GlobalRefs - This maintains a mapping between <Type, ValID>'s and forward
// references to global values. Global values may be referenced before they
// are defined, and if so, the temporary object that they represent is held
// here. This is used for forward references of GlobalValues.
//
typedef std::map<std::pair<const PointerType *,
ValID>, GlobalValue*> GlobalRefsType;
GlobalRefsType GlobalRefs;
void ModuleDone() {
// If we could not resolve some functions at function compilation time
// (calls to functions before they are defined), resolve them now... Types
// are resolved when the constant pool has been completely parsed.
//
ResolveDefinitions(LateResolveValues);
if (TriggerError)
return;
// Check to make sure that all global value forward references have been
// resolved!
//
if (!GlobalRefs.empty()) {
std::string UndefinedReferences = "Unresolved global references exist:\n";
for (GlobalRefsType::iterator I = GlobalRefs.begin(), E =GlobalRefs.end();
I != E; ++I) {
UndefinedReferences += " " + I->first.first->getDescription() + " " +
I->first.second.getName() + "\n";
}
GenerateError(UndefinedReferences);
return;
}
// Look for intrinsic functions and CallInst that need to be upgraded
for (Module::iterator FI = CurrentModule->begin(),
FE = CurrentModule->end(); FI != FE; )
UpgradeCallsToIntrinsic(FI++); // must be post-increment, as we remove
Values.clear(); // Clear out function local definitions
Types.clear();
CurrentModule = 0;
}
// GetForwardRefForGlobal - Check to see if there is a forward reference
// for this global. If so, remove it from the GlobalRefs map and return it.
// If not, just return null.
GlobalValue *GetForwardRefForGlobal(const PointerType *PTy, ValID ID) {
// Check to see if there is a forward reference to this global variable...
// if there is, eliminate it and patch the reference to use the new def'n.
GlobalRefsType::iterator I = GlobalRefs.find(std::make_pair(PTy, ID));
GlobalValue *Ret = 0;
if (I != GlobalRefs.end()) {
Ret = I->second;
GlobalRefs.erase(I);
}
return Ret;
}
bool TypeIsUnresolved(PATypeHolder* PATy) {
// If it isn't abstract, its resolved
const Type* Ty = PATy->get();
if (!Ty->isAbstract())
return false;
// Traverse the type looking for abstract types. If it isn't abstract then
// we don't need to traverse that leg of the type.
std::vector<const Type*> WorkList, SeenList;
WorkList.push_back(Ty);
while (!WorkList.empty()) {
const Type* Ty = WorkList.back();
SeenList.push_back(Ty);
WorkList.pop_back();
if (const OpaqueType* OpTy = dyn_cast<OpaqueType>(Ty)) {
// Check to see if this is an unresolved type
std::map<ValID, PATypeHolder>::iterator I = LateResolveTypes.begin();
std::map<ValID, PATypeHolder>::iterator E = LateResolveTypes.end();
for ( ; I != E; ++I) {
if (I->second.get() == OpTy)
return true;
}
} else if (const SequentialType* SeqTy = dyn_cast<SequentialType>(Ty)) {
const Type* TheTy = SeqTy->getElementType();
if (TheTy->isAbstract() && TheTy != Ty) {
std::vector<const Type*>::iterator I = SeenList.begin(),
E = SeenList.end();
for ( ; I != E; ++I)
if (*I == TheTy)
break;
if (I == E)
WorkList.push_back(TheTy);
}
} else if (const StructType* StrTy = dyn_cast<StructType>(Ty)) {
for (unsigned i = 0; i < StrTy->getNumElements(); ++i) {
const Type* TheTy = StrTy->getElementType(i);
if (TheTy->isAbstract() && TheTy != Ty) {
std::vector<const Type*>::iterator I = SeenList.begin(),
E = SeenList.end();
for ( ; I != E; ++I)
if (*I == TheTy)
break;
if (I == E)
WorkList.push_back(TheTy);
}
}
}
}
return false;
}
} CurModule;
static struct PerFunctionInfo {
Function *CurrentFunction; // Pointer to current function being created
ValueList Values; // Keep track of #'d definitions
unsigned NextValNum;
ValueList LateResolveValues;
bool isDeclare; // Is this function a forward declararation?
GlobalValue::LinkageTypes Linkage; // Linkage for forward declaration.
GlobalValue::VisibilityTypes Visibility;
/// BBForwardRefs - When we see forward references to basic blocks, keep
/// track of them here.
std::map<ValID, BasicBlock*> BBForwardRefs;
inline PerFunctionInfo() {
CurrentFunction = 0;
isDeclare = false;
Linkage = GlobalValue::ExternalLinkage;
Visibility = GlobalValue::DefaultVisibility;
}
inline void FunctionStart(Function *M) {
CurrentFunction = M;
NextValNum = 0;
}
void FunctionDone() {
// Any forward referenced blocks left?
if (!BBForwardRefs.empty()) {
GenerateError("Undefined reference to label " +
BBForwardRefs.begin()->second->getName());
return;
}
// Resolve all forward references now.
ResolveDefinitions(LateResolveValues, &CurModule.LateResolveValues);
Values.clear(); // Clear out function local definitions
BBForwardRefs.clear();
CurrentFunction = 0;
isDeclare = false;
Linkage = GlobalValue::ExternalLinkage;
Visibility = GlobalValue::DefaultVisibility;
}
} CurFun; // Info for the current function...
static bool inFunctionScope() { return CurFun.CurrentFunction != 0; }
//===----------------------------------------------------------------------===//
// Code to handle definitions of all the types
//===----------------------------------------------------------------------===//
static void InsertValue(Value *V, ValueList &ValueTab = CurFun.Values) {
// Things that have names or are void typed don't get slot numbers
if (V->hasName() || (V->getType() == Type::VoidTy))
return;
// In the case of function values, we have to allow for the forward reference
// of basic blocks, which are included in the numbering. Consequently, we keep
// track of the next insertion location with NextValNum. When a BB gets
// inserted, it could change the size of the CurFun.Values vector.
if (&ValueTab == &CurFun.Values) {
if (ValueTab.size() <= CurFun.NextValNum)
ValueTab.resize(CurFun.NextValNum+1);
ValueTab[CurFun.NextValNum++] = V;
return;
}
// For all other lists, its okay to just tack it on the back of the vector.
ValueTab.push_back(V);
}
static const Type *getTypeVal(const ValID &D, bool DoNotImprovise = false) {
switch (D.Type) {
case ValID::LocalID: // Is it a numbered definition?
// Module constants occupy the lowest numbered slots...
if (D.Num < CurModule.Types.size())
return CurModule.Types[D.Num];
break;
case ValID::LocalName: // Is it a named definition?
if (const Type *N = CurModule.CurrentModule->getTypeByName(D.getName())) {
D.destroy(); // Free old strdup'd memory...
return N;
}
break;
default:
GenerateError("Internal parser error: Invalid symbol type reference");
return 0;
}
// If we reached here, we referenced either a symbol that we don't know about
// or an id number that hasn't been read yet. We may be referencing something
// forward, so just create an entry to be resolved later and get to it...
//
if (DoNotImprovise) return 0; // Do we just want a null to be returned?
if (inFunctionScope()) {
if (D.Type == ValID::LocalName) {
GenerateError("Reference to an undefined type: '" + D.getName() + "'");
return 0;
} else {
GenerateError("Reference to an undefined type: #" + utostr(D.Num));
return 0;
}
}
std::map<ValID, PATypeHolder>::iterator I =CurModule.LateResolveTypes.find(D);
if (I != CurModule.LateResolveTypes.end())
return I->second;
Type *Typ = OpaqueType::get();
CurModule.LateResolveTypes.insert(std::make_pair(D, Typ));
return Typ;
}
// getExistingVal - Look up the value specified by the provided type and
// the provided ValID. If the value exists and has already been defined, return
// it. Otherwise return null.
//
static Value *getExistingVal(const Type *Ty, const ValID &D) {
if (isa<FunctionType>(Ty)) {
GenerateError("Functions are not values and "
"must be referenced as pointers");
return 0;
}
switch (D.Type) {
case ValID::LocalID: { // Is it a numbered definition?
// Check that the number is within bounds.
if (D.Num >= CurFun.Values.size())
return 0;
Value *Result = CurFun.Values[D.Num];
if (Ty != Result->getType()) {
GenerateError("Numbered value (%" + utostr(D.Num) + ") of type '" +
Result->getType()->getDescription() + "' does not match "
"expected type, '" + Ty->getDescription() + "'");
return 0;
}
return Result;
}
case ValID::GlobalID: { // Is it a numbered definition?
if (D.Num >= CurModule.Values.size())
return 0;
Value *Result = CurModule.Values[D.Num];
if (Ty != Result->getType()) {
GenerateError("Numbered value (@" + utostr(D.Num) + ") of type '" +
Result->getType()->getDescription() + "' does not match "
"expected type, '" + Ty->getDescription() + "'");
return 0;
}
return Result;
}
case ValID::LocalName: { // Is it a named definition?
if (!inFunctionScope())
return 0;
ValueSymbolTable &SymTab = CurFun.CurrentFunction->getValueSymbolTable();
Value *N = SymTab.lookup(D.getName());
if (N == 0)
return 0;
if (N->getType() != Ty)
return 0;
D.destroy(); // Free old strdup'd memory...
return N;
}
case ValID::GlobalName: { // Is it a named definition?
ValueSymbolTable &SymTab = CurModule.CurrentModule->getValueSymbolTable();
Value *N = SymTab.lookup(D.getName());
if (N == 0)
return 0;
if (N->getType() != Ty)
return 0;
D.destroy(); // Free old strdup'd memory...
return N;
}
// Check to make sure that "Ty" is an integral type, and that our
// value will fit into the specified type...
case ValID::ConstSIntVal: // Is it a constant pool reference??
if (!isa<IntegerType>(Ty) ||
!ConstantInt::isValueValidForType(Ty, D.ConstPool64)) {
GenerateError("Signed integral constant '" +
itostr(D.ConstPool64) + "' is invalid for type '" +
Ty->getDescription() + "'");
return 0;
}
return ConstantInt::get(Ty, D.ConstPool64, true);
case ValID::ConstUIntVal: // Is it an unsigned const pool reference?
if (isa<IntegerType>(Ty) &&
ConstantInt::isValueValidForType(Ty, D.UConstPool64))
return ConstantInt::get(Ty, D.UConstPool64);
if (!isa<IntegerType>(Ty) ||
!ConstantInt::isValueValidForType(Ty, D.ConstPool64)) {
GenerateError("Integral constant '" + utostr(D.UConstPool64) +
"' is invalid or out of range for type '" +
Ty->getDescription() + "'");
return 0;
}
// This is really a signed reference. Transmogrify.
return ConstantInt::get(Ty, D.ConstPool64, true);
case ValID::ConstFPVal: // Is it a floating point const pool reference?
if (!Ty->isFloatingPoint() ||
!ConstantFP::isValueValidForType(Ty, *D.ConstPoolFP)) {
GenerateError("FP constant invalid for type");
return 0;
}
// Lexer has no type info, so builds all float and double FP constants
// as double. Fix this here. Long double does not need this.
if (&D.ConstPoolFP->getSemantics() == &APFloat::IEEEdouble &&
Ty==Type::FloatTy)
D.ConstPoolFP->convert(APFloat::IEEEsingle, APFloat::rmNearestTiesToEven);
return ConstantFP::get(Ty, *D.ConstPoolFP);
case ValID::ConstNullVal: // Is it a null value?
if (!isa<PointerType>(Ty)) {
GenerateError("Cannot create a a non pointer null");
return 0;
}
return ConstantPointerNull::get(cast<PointerType>(Ty));
case ValID::ConstUndefVal: // Is it an undef value?
return UndefValue::get(Ty);
case ValID::ConstZeroVal: // Is it a zero value?
return Constant::getNullValue(Ty);
case ValID::ConstantVal: // Fully resolved constant?
if (D.ConstantValue->getType() != Ty) {
GenerateError("Constant expression type different from required type");
return 0;
}
return D.ConstantValue;
case ValID::InlineAsmVal: { // Inline asm expression
const PointerType *PTy = dyn_cast<PointerType>(Ty);
const FunctionType *FTy =
PTy ? dyn_cast<FunctionType>(PTy->getElementType()) : 0;
if (!FTy || !InlineAsm::Verify(FTy, D.IAD->Constraints)) {
GenerateError("Invalid type for asm constraint string");
return 0;
}
InlineAsm *IA = InlineAsm::get(FTy, D.IAD->AsmString, D.IAD->Constraints,
D.IAD->HasSideEffects);
D.destroy(); // Free InlineAsmDescriptor.
return IA;
}
default:
assert(0 && "Unhandled case!");
return 0;
} // End of switch
assert(0 && "Unhandled case!");
return 0;
}
// getVal - This function is identical to getExistingVal, except that if a
// value is not already defined, it "improvises" by creating a placeholder var
// that looks and acts just like the requested variable. When the value is
// defined later, all uses of the placeholder variable are replaced with the
// real thing.
//
static Value *getVal(const Type *Ty, const ValID &ID) {
if (Ty == Type::LabelTy) {
GenerateError("Cannot use a basic block here");
return 0;
}
// See if the value has already been defined.
Value *V = getExistingVal(Ty, ID);
if (V) return V;
if (TriggerError) return 0;
if (!Ty->isFirstClassType() && !isa<OpaqueType>(Ty)) {
GenerateError("Invalid use of a composite type");
return 0;
}
// If we reached here, we referenced either a symbol that we don't know about
// or an id number that hasn't been read yet. We may be referencing something
// forward, so just create an entry to be resolved later and get to it...
//
switch (ID.Type) {
case ValID::GlobalName:
case ValID::GlobalID: {
const PointerType *PTy = dyn_cast<PointerType>(Ty);
if (!PTy) {
GenerateError("Invalid type for reference to global" );
return 0;
}
const Type* ElTy = PTy->getElementType();
if (const FunctionType *FTy = dyn_cast<FunctionType>(ElTy))
V = Function::Create(FTy, GlobalValue::ExternalLinkage);
else
V = new GlobalVariable(ElTy, false, GlobalValue::ExternalLinkage, 0, "",
(Module*)0, false, PTy->getAddressSpace());
break;
}
default:
V = new Argument(Ty);
}
// Remember where this forward reference came from. FIXME, shouldn't we try
// to recycle these things??
CurModule.PlaceHolderInfo.insert(std::make_pair(V, std::make_pair(ID,
LLLgetLineNo())));
if (inFunctionScope())
InsertValue(V, CurFun.LateResolveValues);
else
InsertValue(V, CurModule.LateResolveValues);
return V;
}
/// defineBBVal - This is a definition of a new basic block with the specified
/// identifier which must be the same as CurFun.NextValNum, if its numeric.
static BasicBlock *defineBBVal(const ValID &ID, BasicBlock *unwindDest) {
assert(inFunctionScope() && "Can't get basic block at global scope!");
BasicBlock *BB = 0;
// First, see if this was forward referenced
std::map<ValID, BasicBlock*>::iterator BBI = CurFun.BBForwardRefs.find(ID);
if (BBI != CurFun.BBForwardRefs.end()) {
BB = BBI->second;
// The forward declaration could have been inserted anywhere in the
// function: insert it into the correct place now.
CurFun.CurrentFunction->getBasicBlockList().remove(BB);
CurFun.CurrentFunction->getBasicBlockList().push_back(BB);
// We're about to erase the entry, save the key so we can clean it up.
ValID Tmp = BBI->first;
// Erase the forward ref from the map as its no longer "forward"
CurFun.BBForwardRefs.erase(ID);
// The key has been removed from the map but so we don't want to leave
// strdup'd memory around so destroy it too.
Tmp.destroy();
// If its a numbered definition, bump the number and set the BB value.
if (ID.Type == ValID::LocalID) {
assert(ID.Num == CurFun.NextValNum && "Invalid new block number");
InsertValue(BB);
}
} else {
// We haven't seen this BB before and its first mention is a definition.
// Just create it and return it.
std::string Name (ID.Type == ValID::LocalName ? ID.getName() : "");
BB = BasicBlock::Create(Name, CurFun.CurrentFunction);
if (ID.Type == ValID::LocalID) {
assert(ID.Num == CurFun.NextValNum && "Invalid new block number");
InsertValue(BB);
}
}
ID.destroy();
BB->setUnwindDest(unwindDest);
return BB;
}
/// getBBVal - get an existing BB value or create a forward reference for it.
///
static BasicBlock *getBBVal(const ValID &ID) {
assert(inFunctionScope() && "Can't get basic block at global scope!");
BasicBlock *BB = 0;
std::map<ValID, BasicBlock*>::iterator BBI = CurFun.BBForwardRefs.find(ID);
if (BBI != CurFun.BBForwardRefs.end()) {
BB = BBI->second;
} if (ID.Type == ValID::LocalName) {
std::string Name = ID.getName();
Value *N = CurFun.CurrentFunction->getValueSymbolTable().lookup(Name);
if (N) {
if (N->getType()->getTypeID() == Type::LabelTyID)
BB = cast<BasicBlock>(N);
else
GenerateError("Reference to label '" + Name + "' is actually of type '"+
N->getType()->getDescription() + "'");
}
} else if (ID.Type == ValID::LocalID) {
if (ID.Num < CurFun.NextValNum && ID.Num < CurFun.Values.size()) {
if (CurFun.Values[ID.Num]->getType()->getTypeID() == Type::LabelTyID)
BB = cast<BasicBlock>(CurFun.Values[ID.Num]);
else
GenerateError("Reference to label '%" + utostr(ID.Num) +
"' is actually of type '"+
CurFun.Values[ID.Num]->getType()->getDescription() + "'");
}
} else {
GenerateError("Illegal label reference " + ID.getName());
return 0;
}
// If its already been defined, return it now.
if (BB) {
ID.destroy(); // Free strdup'd memory.
return BB;
}
// Otherwise, this block has not been seen before, create it.
std::string Name;
if (ID.Type == ValID::LocalName)
Name = ID.getName();
BB = BasicBlock::Create(Name, CurFun.CurrentFunction);
// Insert it in the forward refs map.
CurFun.BBForwardRefs[ID] = BB;
return BB;
}
//===----------------------------------------------------------------------===//
// Code to handle forward references in instructions
//===----------------------------------------------------------------------===//
//
// This code handles the late binding needed with statements that reference
// values not defined yet... for example, a forward branch, or the PHI node for
// a loop body.
//
// This keeps a table (CurFun.LateResolveValues) of all such forward references
// and back patchs after we are done.
//
// ResolveDefinitions - If we could not resolve some defs at parsing
// time (forward branches, phi functions for loops, etc...) resolve the
// defs now...
//
static void
ResolveDefinitions(ValueList &LateResolvers, ValueList *FutureLateResolvers) {
// Loop over LateResolveDefs fixing up stuff that couldn't be resolved
while (!LateResolvers.empty()) {
Value *V = LateResolvers.back();
LateResolvers.pop_back();
std::map<Value*, std::pair<ValID, int> >::iterator PHI =
CurModule.PlaceHolderInfo.find(V);
assert(PHI != CurModule.PlaceHolderInfo.end() && "Placeholder error!");
ValID &DID = PHI->second.first;
Value *TheRealValue = getExistingVal(V->getType(), DID);
if (TriggerError)
return;
if (TheRealValue) {
V->replaceAllUsesWith(TheRealValue);
delete V;
CurModule.PlaceHolderInfo.erase(PHI);
} else if (FutureLateResolvers) {
// Functions have their unresolved items forwarded to the module late
// resolver table
InsertValue(V, *FutureLateResolvers);
} else {
if (DID.Type == ValID::LocalName || DID.Type == ValID::GlobalName) {
GenerateError("Reference to an invalid definition: '" +DID.getName()+
"' of type '" + V->getType()->getDescription() + "'",
PHI->second.second);
return;
} else {
GenerateError("Reference to an invalid definition: #" +
itostr(DID.Num) + " of type '" +
V->getType()->getDescription() + "'",
PHI->second.second);
return;
}
}
}
LateResolvers.clear();
}
// ResolveTypeTo - A brand new type was just declared. This means that (if
// name is not null) things referencing Name can be resolved. Otherwise, things
// refering to the number can be resolved. Do this now.
//
static void ResolveTypeTo(std::string *Name, const Type *ToTy) {
ValID D;
if (Name)
D = ValID::createLocalName(*Name);
else
D = ValID::createLocalID(CurModule.Types.size());
std::map<ValID, PATypeHolder>::iterator I =
CurModule.LateResolveTypes.find(D);
if (I != CurModule.LateResolveTypes.end()) {
((DerivedType*)I->second.get())->refineAbstractTypeTo(ToTy);
CurModule.LateResolveTypes.erase(I);
}
}
// setValueName - Set the specified value to the name given. The name may be
// null potentially, in which case this is a noop. The string passed in is
// assumed to be a malloc'd string buffer, and is free'd by this function.
//
static void setValueName(Value *V, std::string *NameStr) {
if (!NameStr) return;
std::string Name(*NameStr); // Copy string
delete NameStr; // Free old string
if (V->getType() == Type::VoidTy) {
GenerateError("Can't assign name '" + Name+"' to value with void type");
return;
}
assert(inFunctionScope() && "Must be in function scope!");
ValueSymbolTable &ST = CurFun.CurrentFunction->getValueSymbolTable();
if (ST.lookup(Name)) {
GenerateError("Redefinition of value '" + Name + "' of type '" +
V->getType()->getDescription() + "'");
return;
}
// Set the name.
V->setName(Name);
}
/// ParseGlobalVariable - Handle parsing of a global. If Initializer is null,
/// this is a declaration, otherwise it is a definition.
static GlobalVariable *
ParseGlobalVariable(std::string *NameStr,
GlobalValue::LinkageTypes Linkage,
GlobalValue::VisibilityTypes Visibility,
bool isConstantGlobal, const Type *Ty,
Constant *Initializer, bool IsThreadLocal,
unsigned AddressSpace = 0) {
if (isa<FunctionType>(Ty)) {
GenerateError("Cannot declare global vars of function type");
return 0;
}
const PointerType *PTy = PointerType::get(Ty, AddressSpace);
std::string Name;
if (NameStr) {
Name = *NameStr; // Copy string
delete NameStr; // Free old string
}
// See if this global value was forward referenced. If so, recycle the
// object.
ValID ID;
if (!Name.empty()) {
ID = ValID::createGlobalName(Name);
} else {
ID = ValID::createGlobalID(CurModule.Values.size());
}
if (GlobalValue *FWGV = CurModule.GetForwardRefForGlobal(PTy, ID)) {
// Move the global to the end of the list, from whereever it was
// previously inserted.
GlobalVariable *GV = cast<GlobalVariable>(FWGV);
CurModule.CurrentModule->getGlobalList().remove(GV);
CurModule.CurrentModule->getGlobalList().push_back(GV);
GV->setInitializer(Initializer);
GV->setLinkage(Linkage);
GV->setVisibility(Visibility);
GV->setConstant(isConstantGlobal);
GV->setThreadLocal(IsThreadLocal);
InsertValue(GV, CurModule.Values);
return GV;
}
// If this global has a name
if (!Name.empty()) {
// if the global we're parsing has an initializer (is a definition) and
// has external linkage.
if (Initializer && Linkage != GlobalValue::InternalLinkage)
// If there is already a global with external linkage with this name
if (CurModule.CurrentModule->getGlobalVariable(Name, false)) {
// If we allow this GVar to get created, it will be renamed in the
// symbol table because it conflicts with an existing GVar. We can't
// allow redefinition of GVars whose linking indicates that their name
// must stay the same. Issue the error.
GenerateError("Redefinition of global variable named '" + Name +
"' of type '" + Ty->getDescription() + "'");
return 0;
}
}
// Otherwise there is no existing GV to use, create one now.
GlobalVariable *GV =
new GlobalVariable(Ty, isConstantGlobal, Linkage, Initializer, Name,
CurModule.CurrentModule, IsThreadLocal, AddressSpace);
GV->setVisibility(Visibility);
InsertValue(GV, CurModule.Values);
return GV;
}
// setTypeName - Set the specified type to the name given. The name may be
// null potentially, in which case this is a noop. The string passed in is
// assumed to be a malloc'd string buffer, and is freed by this function.
//
// This function returns true if the type has already been defined, but is
// allowed to be redefined in the specified context. If the name is a new name
// for the type plane, it is inserted and false is returned.
static bool setTypeName(const Type *T, std::string *NameStr) {
assert(!inFunctionScope() && "Can't give types function-local names!");
if (NameStr == 0) return false;
std::string Name(*NameStr); // Copy string
delete NameStr; // Free old string
// We don't allow assigning names to void type
if (T == Type::VoidTy) {
GenerateError("Can't assign name '" + Name + "' to the void type");
return false;
}
// Set the type name, checking for conflicts as we do so.
bool AlreadyExists = CurModule.CurrentModule->addTypeName(Name, T);
if (AlreadyExists) { // Inserting a name that is already defined???
const Type *Existing = CurModule.CurrentModule->getTypeByName(Name);
assert(Existing && "Conflict but no matching type?!");
// There is only one case where this is allowed: when we are refining an
// opaque type. In this case, Existing will be an opaque type.
if (const OpaqueType *OpTy = dyn_cast<OpaqueType>(Existing)) {
// We ARE replacing an opaque type!
const_cast<OpaqueType*>(OpTy)->refineAbstractTypeTo(T);
return true;
}
// Otherwise, this is an attempt to redefine a type. That's okay if
// the redefinition is identical to the original. This will be so if
// Existing and T point to the same Type object. In this one case we
// allow the equivalent redefinition.
if (Existing == T) return true; // Yes, it's equal.
// Any other kind of (non-equivalent) redefinition is an error.
GenerateError("Redefinition of type named '" + Name + "' of type '" +
T->getDescription() + "'");
}
return false;
}
//===----------------------------------------------------------------------===//
// Code for handling upreferences in type names...
//
// TypeContains - Returns true if Ty directly contains E in it.
//
static bool TypeContains(const Type *Ty, const Type *E) {
return std::find(Ty->subtype_begin(), Ty->subtype_end(),
E) != Ty->subtype_end();
}
namespace {
struct UpRefRecord {
// NestingLevel - The number of nesting levels that need to be popped before
// this type is resolved.
unsigned NestingLevel;
// LastContainedTy - This is the type at the current binding level for the
// type. Every time we reduce the nesting level, this gets updated.
const Type *LastContainedTy;
// UpRefTy - This is the actual opaque type that the upreference is
// represented with.
OpaqueType *UpRefTy;
UpRefRecord(unsigned NL, OpaqueType *URTy)
: NestingLevel(NL), LastContainedTy(URTy), UpRefTy(URTy) {}
};
}
// UpRefs - A list of the outstanding upreferences that need to be resolved.
static std::vector<UpRefRecord> UpRefs;
/// HandleUpRefs - Every time we finish a new layer of types, this function is
/// called. It loops through the UpRefs vector, which is a list of the
/// currently active types. For each type, if the up reference is contained in
/// the newly completed type, we decrement the level count. When the level
/// count reaches zero, the upreferenced type is the type that is passed in:
/// thus we can complete the cycle.
///
static PATypeHolder HandleUpRefs(const Type *ty) {
// If Ty isn't abstract, or if there are no up-references in it, then there is
// nothing to resolve here.
if (!ty->isAbstract() || UpRefs.empty()) return ty;
PATypeHolder Ty(ty);
UR_OUT("Type '" << Ty->getDescription() <<
"' newly formed. Resolving upreferences.\n" <<
UpRefs.size() << " upreferences active!\n");
// If we find any resolvable upreferences (i.e., those whose NestingLevel goes
// to zero), we resolve them all together before we resolve them to Ty. At
// the end of the loop, if there is anything to resolve to Ty, it will be in
// this variable.
OpaqueType *TypeToResolve = 0;
for (unsigned i = 0; i != UpRefs.size(); ++i) {
UR_OUT(" UR#" << i << " - TypeContains(" << Ty->getDescription() << ", "
<< UpRefs[i].second->getDescription() << ") = "
<< (TypeContains(Ty, UpRefs[i].second) ? "true" : "false") << "\n");
if (TypeContains(Ty, UpRefs[i].LastContainedTy)) {
// Decrement level of upreference
unsigned Level = --UpRefs[i].NestingLevel;
UpRefs[i].LastContainedTy = Ty;
UR_OUT(" Uplevel Ref Level = " << Level << "\n");
if (Level == 0) { // Upreference should be resolved!
if (!TypeToResolve) {
TypeToResolve = UpRefs[i].UpRefTy;
} else {
UR_OUT(" * Resolving upreference for "
<< UpRefs[i].second->getDescription() << "\n";
std::string OldName = UpRefs[i].UpRefTy->getDescription());
UpRefs[i].UpRefTy->refineAbstractTypeTo(TypeToResolve);
UR_OUT(" * Type '" << OldName << "' refined upreference to: "
<< (const void*)Ty << ", " << Ty->getDescription() << "\n");
}
UpRefs.erase(UpRefs.begin()+i); // Remove from upreference list...
--i; // Do not skip the next element...
}
}
}
if (TypeToResolve) {
UR_OUT(" * Resolving upreference for "
<< UpRefs[i].second->getDescription() << "\n";
std::string OldName = TypeToResolve->getDescription());
TypeToResolve->refineAbstractTypeTo(Ty);
}
return Ty;
}
//===----------------------------------------------------------------------===//
// RunVMAsmParser - Define an interface to this parser
//===----------------------------------------------------------------------===//
//
static Module* RunParser(Module * M);
Module *llvm::RunVMAsmParser(llvm::MemoryBuffer *MB) {
InitLLLexer(MB);
Module *M = RunParser(new Module(LLLgetFilename()));
FreeLexer();
return M;
}
#line 950 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
typedef union {
llvm::Module *ModuleVal;
llvm::Function *FunctionVal;
llvm::BasicBlock *BasicBlockVal;
llvm::TerminatorInst *TermInstVal;
llvm::Instruction *InstVal;
llvm::Constant *ConstVal;
const llvm::Type *PrimType;
std::list<llvm::PATypeHolder> *TypeList;
llvm::PATypeHolder *TypeVal;
llvm::Value *ValueVal;
std::vector<llvm::Value*> *ValueList;
llvm::ArgListType *ArgList;
llvm::TypeWithAttrs TypeWithAttrs;
llvm::TypeWithAttrsList *TypeWithAttrsList;
llvm::ParamList *ParamList;
// Represent the RHS of PHI node
std::list<std::pair<llvm::Value*,
llvm::BasicBlock*> > *PHIList;
std::vector<std::pair<llvm::Constant*, llvm::BasicBlock*> > *JumpTable;
std::vector<llvm::Constant*> *ConstVector;
llvm::GlobalValue::LinkageTypes Linkage;
llvm::GlobalValue::VisibilityTypes Visibility;
llvm::ParameterAttributes ParamAttrs;
llvm::APInt *APIntVal;
int64_t SInt64Val;
uint64_t UInt64Val;
int SIntVal;
unsigned UIntVal;
llvm::APFloat *FPVal;
bool BoolVal;
std::string *StrVal; // This memory must be deleted
llvm::ValID ValIDVal;
llvm::Instruction::BinaryOps BinaryOpVal;
llvm::Instruction::TermOps TermOpVal;
llvm::Instruction::MemoryOps MemOpVal;
llvm::Instruction::CastOps CastOpVal;
llvm::Instruction::OtherOps OtherOpVal;
llvm::ICmpInst::Predicate IPredicate;
llvm::FCmpInst::Predicate FPredicate;
} YYSTYPE;
#include <stdio.h>
#ifndef __cplusplus
#ifndef __STDC__
#define const
#endif
#endif
#define YYFINAL 635
#define YYFLAG -32768
#define YYNTBASE 166
#define YYTRANSLATE(x) ((unsigned)(x) <= 405 ? yytranslate[x] : 250)
static const short yytranslate[] = { 0,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 152,
153, 156, 2, 155, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 161,
154, 162, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
158, 157, 160, 2, 2, 2, 2, 2, 165, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 159,
2, 2, 163, 2, 164, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 1, 3, 4, 5, 6,
7, 8, 9, 10, 11, 12, 13, 14, 15, 16,
17, 18, 19, 20, 21, 22, 23, 24, 25, 26,
27, 28, 29, 30, 31, 32, 33, 34, 35, 36,
37, 38, 39, 40, 41, 42, 43, 44, 45, 46,
47, 48, 49, 50, 51, 52, 53, 54, 55, 56,
57, 58, 59, 60, 61, 62, 63, 64, 65, 66,
67, 68, 69, 70, 71, 72, 73, 74, 75, 76,
77, 78, 79, 80, 81, 82, 83, 84, 85, 86,
87, 88, 89, 90, 91, 92, 93, 94, 95, 96,
97, 98, 99, 100, 101, 102, 103, 104, 105, 106,
107, 108, 109, 110, 111, 112, 113, 114, 115, 116,
117, 118, 119, 120, 121, 122, 123, 124, 125, 126,
127, 128, 129, 130, 131, 132, 133, 134, 135, 136,
137, 138, 139, 140, 141, 142, 143, 144, 145, 146,
147, 148, 149, 150, 151
};
#if YYDEBUG != 0
static const short yyprhs[] = { 0,
0, 2, 4, 6, 8, 10, 12, 14, 16, 18,
20, 22, 24, 26, 28, 30, 32, 34, 36, 38,
40, 42, 44, 46, 48, 50, 52, 54, 56, 58,
60, 62, 64, 66, 68, 70, 72, 74, 76, 78,
80, 82, 84, 86, 88, 90, 92, 94, 96, 98,
100, 102, 104, 106, 108, 110, 112, 114, 116, 118,
120, 122, 124, 126, 127, 132, 133, 136, 137, 139,
141, 143, 144, 147, 149, 151, 153, 155, 157, 159,
161, 163, 164, 166, 168, 170, 171, 173, 175, 176,
178, 180, 182, 184, 185, 187, 189, 190, 192, 194,
196, 198, 200, 203, 205, 207, 209, 211, 213, 215,
217, 219, 221, 224, 225, 228, 230, 232, 234, 236,
238, 240, 241, 244, 245, 248, 249, 252, 253, 257,
260, 261, 263, 264, 268, 270, 273, 275, 277, 279,
281, 283, 285, 287, 289, 291, 295, 297, 300, 306,
312, 318, 324, 328, 331, 337, 342, 345, 347, 349,
351, 355, 357, 361, 363, 364, 366, 370, 375, 379,
383, 388, 393, 397, 404, 410, 413, 416, 419, 422,
425, 428, 431, 434, 437, 440, 443, 446, 453, 459,
468, 475, 482, 490, 498, 505, 514, 523, 527, 529,
531, 533, 535, 536, 539, 546, 548, 549, 551, 554,
555, 559, 560, 564, 568, 572, 576, 577, 586, 587,
597, 598, 608, 614, 617, 621, 623, 627, 631, 635,
639, 641, 642, 648, 652, 654, 658, 660, 661, 672,
674, 676, 681, 683, 685, 688, 692, 693, 695, 697,
699, 701, 703, 705, 707, 709, 711, 715, 717, 723,
725, 727, 729, 731, 733, 735, 738, 740, 744, 747,
750, 754, 757, 758, 762, 764, 769, 772, 775, 779,
789, 799, 808, 823, 825, 827, 834, 840, 843, 850,
858, 863, 868, 875, 882, 883, 884, 888, 891, 893,
899, 905, 912, 919, 924, 931, 936, 941, 948, 955,
958, 967, 969, 971, 972, 976, 983, 987, 994, 997,
1003, 1011, 1017
};
static const short yyrhs[] = { 75,
0, 76, 0, 77, 0, 78, 0, 79, 0, 80,
0, 81, 0, 82, 0, 83, 0, 87, 0, 88,
0, 89, 0, 84, 0, 85, 0, 86, 0, 118,
0, 119, 0, 120, 0, 121, 0, 122, 0, 123,
0, 124, 0, 125, 0, 126, 0, 127, 0, 128,
0, 129, 0, 92, 0, 93, 0, 94, 0, 95,
0, 96, 0, 97, 0, 98, 0, 99, 0, 100,
0, 101, 0, 102, 0, 103, 0, 104, 0, 105,
0, 106, 0, 107, 0, 108, 0, 109, 0, 110,
0, 111, 0, 98, 0, 99, 0, 100, 0, 101,
0, 26, 0, 27, 0, 11, 0, 12, 0, 13,
0, 16, 0, 15, 0, 14, 0, 19, 0, 22,
0, 24, 0, 173, 0, 0, 54, 152, 4, 153,
0, 0, 173, 154, 0, 0, 20, 0, 23, 0,
179, 0, 0, 177, 154, 0, 42, 0, 44, 0,
43, 0, 45, 0, 47, 0, 46, 0, 48, 0,
50, 0, 0, 149, 0, 150, 0, 151, 0, 0,
46, 0, 48, 0, 0, 42, 0, 43, 0, 44,
0, 47, 0, 0, 44, 0, 42, 0, 0, 62,
0, 63, 0, 64, 0, 65, 0, 66, 0, 61,
4, 0, 138, 0, 119, 0, 137, 0, 120, 0,
140, 0, 141, 0, 143, 0, 144, 0, 145, 0,
53, 4, 0, 0, 188, 187, 0, 139, 0, 142,
0, 138, 0, 137, 0, 146, 0, 147, 0, 0,
190, 189, 0, 0, 148, 22, 0, 0, 53, 4,
0, 0, 155, 53, 4, 0, 34, 22, 0, 0,
194, 0, 0, 155, 197, 196, 0, 194, 0, 53,
4, 0, 11, 0, 12, 0, 13, 0, 16, 0,
15, 0, 14, 0, 17, 0, 49, 0, 198, 0,
199, 175, 156, 0, 233, 0, 157, 4, 0, 199,
152, 203, 153, 190, 0, 10, 152, 203, 153, 190,
0, 158, 4, 159, 199, 160, 0, 161, 4, 159,
199, 162, 0, 163, 204, 164, 0, 163, 164, 0,
161, 163, 204, 164, 162, 0, 161, 163, 164, 162,
0, 199, 188, 0, 199, 0, 10, 0, 200, 0,
202, 155, 200, 0, 202, 0, 202, 155, 39, 0,
39, 0, 0, 199, 0, 204, 155, 199, 0, 199,
158, 207, 160, 0, 199, 158, 160, 0, 199, 165,
22, 0, 199, 161, 207, 162, 0, 199, 163, 207,
164, 0, 199, 163, 164, 0, 199, 161, 163, 207,
164, 162, 0, 199, 161, 163, 164, 162, 0, 199,
40, 0, 199, 41, 0, 199, 233, 0, 199, 206,
0, 199, 25, 0, 171, 3, 0, 171, 5, 0,
171, 4, 0, 171, 6, 0, 11, 26, 0, 11,
27, 0, 172, 9, 0, 168, 152, 205, 38, 199,
153, 0, 117, 152, 205, 245, 153, 0, 131, 152,
205, 155, 205, 155, 205, 153, 0, 166, 152, 205,
155, 205, 153, 0, 167, 152, 205, 155, 205, 153,
0, 90, 169, 152, 205, 155, 205, 153, 0, 91,
170, 152, 205, 155, 205, 153, 0, 133, 152, 205,
155, 205, 153, 0, 134, 152, 205, 155, 205, 155,
205, 153, 0, 135, 152, 205, 155, 205, 155, 205,
153, 0, 207, 155, 205, 0, 205, 0, 32, 0,
33, 0, 37, 0, 0, 201, 233, 0, 123, 152,
210, 38, 199, 153, 0, 212, 0, 0, 213, 0,
212, 213, 0, 0, 31, 214, 229, 0, 0, 30,
215, 230, 0, 59, 58, 219, 0, 176, 18, 199,
0, 176, 18, 10, 0, 0, 178, 182, 209, 208,
205, 175, 216, 196, 0, 0, 178, 180, 182, 209,
208, 205, 175, 217, 196, 0, 0, 178, 181, 182,
209, 208, 199, 175, 218, 196, 0, 178, 182, 35,
185, 210, 0, 51, 220, 0, 55, 154, 221, 0,
22, 0, 52, 154, 22, 0, 67, 154, 22, 0,
158, 222, 160, 0, 222, 155, 22, 0, 22, 0,
0, 223, 155, 199, 188, 174, 0, 199, 188, 174,
0, 223, 0, 223, 155, 39, 0, 39, 0, 0,
186, 201, 177, 152, 224, 153, 190, 195, 192, 191,
0, 28, 0, 163, 0, 184, 182, 225, 226, 0,
29, 0, 164, 0, 237, 228, 0, 183, 182, 225,
0, 0, 60, 0, 3, 0, 4, 0, 9, 0,
26, 0, 27, 0, 40, 0, 41, 0, 25, 0,
161, 207, 162, 0, 206, 0, 58, 231, 22, 155,
22, 0, 7, 0, 8, 0, 173, 0, 177, 0,
233, 0, 232, 0, 199, 234, 0, 235, 0, 236,
155, 235, 0, 237, 238, 0, 227, 238, 0, 239,
176, 240, 0, 239, 242, 0, 0, 68, 38, 234,
0, 21, 0, 21, 68, 38, 234, 0, 69, 236,
0, 69, 10, 0, 70, 17, 234, 0, 70, 11,
234, 155, 17, 234, 155, 17, 234, 0, 71, 171,
234, 155, 17, 234, 158, 241, 160, 0, 71, 171,
234, 155, 17, 234, 158, 160, 0, 72, 186, 201,
234, 152, 244, 153, 190, 38, 17, 234, 73, 17,
234, 0, 73, 0, 74, 0, 241, 171, 232, 155,
17, 234, 0, 171, 232, 155, 17, 234, 0, 176,
247, 0, 199, 158, 234, 155, 234, 160, 0, 243,
155, 158, 234, 155, 234, 160, 0, 199, 188, 234,
188, 0, 17, 188, 234, 188, 0, 244, 155, 199,
188, 234, 188, 0, 244, 155, 17, 188, 234, 188,
0, 0, 0, 245, 155, 235, 0, 57, 56, 0,
56, 0, 166, 199, 234, 155, 234, 0, 167, 199,
234, 155, 234, 0, 90, 169, 199, 234, 155, 234,
0, 91, 170, 199, 234, 155, 234, 0, 168, 235,
38, 199, 0, 131, 235, 155, 235, 155, 235, 0,
132, 235, 155, 199, 0, 133, 235, 155, 235, 0,
134, 235, 155, 235, 155, 235, 0, 135, 235, 155,
235, 155, 235, 0, 130, 243, 0, 246, 186, 201,
234, 152, 244, 153, 190, 0, 249, 0, 36, 0,
0, 112, 199, 193, 0, 112, 199, 155, 11, 234,
193, 0, 113, 199, 193, 0, 113, 199, 155, 11,
234, 193, 0, 114, 235, 0, 248, 115, 199, 234,
193, 0, 248, 116, 235, 155, 199, 234, 193, 0,
136, 199, 233, 155, 4, 0, 117, 199, 234, 245,
0
};
#endif
#if YYDEBUG != 0
static const short yyrline[] = { 0,
1112, 1112, 1112, 1112, 1112, 1112, 1112, 1112, 1112, 1113,
1113, 1113, 1113, 1113, 1113, 1114, 1114, 1114, 1114, 1114,
1114, 1114, 1115, 1115, 1115, 1115, 1115, 1118, 1118, 1119,
1119, 1120, 1120, 1121, 1121, 1122, 1122, 1126, 1126, 1127,
1127, 1128, 1128, 1129, 1129, 1130, 1130, 1131, 1131, 1132,
1132, 1133, 1134, 1139, 1140, 1140, 1140, 1140, 1140, 1142,
1142, 1142, 1143, 1143, 1145, 1146, 1150, 1154, 1159, 1159,
1161, 1162, 1167, 1173, 1174, 1175, 1176, 1177, 1181, 1182,
1183, 1187, 1188, 1189, 1190, 1194, 1195, 1196, 1200, 1201,
1202, 1203, 1204, 1208, 1209, 1210, 1213, 1213, 1214, 1215,
1216, 1217, 1218, 1226, 1227, 1228, 1229, 1230, 1231, 1232,
1233, 1234, 1235, 1239, 1240, 1245, 1246, 1247, 1248, 1249,
1250, 1253, 1254, 1259, 1260, 1267, 1267, 1274, 1274, 1284,
1292, 1292, 1298, 1298, 1300, 1305, 1318, 1318, 1318, 1318,
1318, 1318, 1318, 1321, 1325, 1329, 1336, 1341, 1349, 1379,
1404, 1409, 1419, 1429, 1433, 1443, 1450, 1459, 1466, 1471,
1476, 1483, 1484, 1491, 1498, 1506, 1512, 1524, 1552, 1568,
1595, 1623, 1649, 1669, 1695, 1715, 1727, 1734, 1800, 1810,
1820, 1826, 1836, 1842, 1852, 1857, 1862, 1875, 1887, 1909,
1917, 1923, 1934, 1939, 1944, 1950, 1956, 1965, 1969, 1977,
1977, 1980, 1980, 1983, 1995, 2016, 2021, 2029, 2030, 2034,
2034, 2038, 2038, 2041, 2044, 2068, 2079, 2087, 2090, 2096,
2099, 2106, 2110, 2150, 2153, 2159, 2169, 2173, 2178, 2180,
2185, 2190, 2199, 2209, 2220, 2224, 2233, 2242, 2247, 2373,
2373, 2375, 2384, 2384, 2386, 2391, 2403, 2407, 2412, 2416,
2420, 2424, 2428, 2432, 2436, 2440, 2444, 2469, 2473, 2483,
2487, 2491, 2496, 2503, 2503, 2509, 2518, 2523, 2528, 2532,
2541, 2550, 2559, 2563, 2567, 2572, 2578, 2586, 2590, 2595,
2605, 2624, 2633, 2714, 2718, 2725, 2736, 2749, 2759, 2770,
2780, 2791, 2799, 2809, 2816, 2819, 2820, 2827, 2831, 2836,
2852, 2869, 2883, 2897, 2909, 2917, 2924, 2930, 2936, 2942,
2957, 3043, 3048, 3052, 3059, 3066, 3074, 3081, 3089, 3097,
3111, 3128, 3136
};
#endif
#if YYDEBUG != 0 || defined (YYERROR_VERBOSE)
static const char * const yytname[] = { "$","error","$undefined.","ESINT64VAL",
"EUINT64VAL","ESAPINTVAL","EUAPINTVAL","LOCALVAL_ID","GLOBALVAL_ID","FPVAL",
"VOID","INTTYPE","FLOAT","DOUBLE","X86_FP80","FP128","PPC_FP128","LABEL","TYPE",
"LOCALVAR","GLOBALVAR","LABELSTR","STRINGCONSTANT","ATSTRINGCONSTANT","PCTSTRINGCONSTANT",
"ZEROINITIALIZER","TRUETOK","FALSETOK","BEGINTOK","ENDTOK","DECLARE","DEFINE",
"GLOBAL","CONSTANT","SECTION","ALIAS","VOLATILE","THREAD_LOCAL","TO","DOTDOTDOT",
"NULL_TOK","UNDEF","INTERNAL","LINKONCE","WEAK","APPENDING","DLLIMPORT","DLLEXPORT",
"EXTERN_WEAK","OPAQUE","EXTERNAL","TARGET","TRIPLE","ALIGN","ADDRSPACE","DEPLIBS",
"CALL","TAIL","ASM_TOK","MODULE","SIDEEFFECT","CC_TOK","CCC_TOK","FASTCC_TOK",
"COLDCC_TOK","X86_STDCALLCC_TOK","X86_FASTCALLCC_TOK","DATALAYOUT","UNWINDS",
"RET","BR","SWITCH","INVOKE","UNWIND","UNREACHABLE","ADD","SUB","MUL","UDIV",
"SDIV","FDIV","UREM","SREM","FREM","AND","OR","XOR","SHL","LSHR","ASHR","ICMP",
"FCMP","EQ","NE","SLT","SGT","SLE","SGE","ULT","UGT","ULE","UGE","OEQ","ONE",
"OLT","OGT","OLE","OGE","ORD","UNO","UEQ","UNE","MALLOC","ALLOCA","FREE","LOAD",
"STORE","GETELEMENTPTR","TRUNC","ZEXT","SEXT","FPTRUNC","FPEXT","BITCAST","UITOFP",
"SITOFP","FPTOUI","FPTOSI","INTTOPTR","PTRTOINT","PHI_TOK","SELECT","VAARG",
"EXTRACTELEMENT","INSERTELEMENT","SHUFFLEVECTOR","GETRESULT","SIGNEXT","ZEROEXT",
"NORETURN","INREG","SRET","NOUNWIND","NOALIAS","BYVAL","NEST","READNONE","READONLY",
"GC","DEFAULT","HIDDEN","PROTECTED","'('","')'","'='","','","'*'","'\\\\'","'['",
"'x'","']'","'<'","'>'","'{'","'}'","'c'","ArithmeticOps","LogicalOps","CastOps",
"IPredicates","FPredicates","IntType","FPType","LocalName","OptLocalName","OptAddrSpace",
"OptLocalAssign","GlobalName","OptGlobalAssign","GlobalAssign","GVInternalLinkage",
"GVExternalLinkage","GVVisibilityStyle","FunctionDeclareLinkage","FunctionDefineLinkage",
"AliasLinkage","OptCallingConv","ParamAttr","OptParamAttrs","FuncAttr","OptFuncAttrs",
"OptGC","OptAlign","OptCAlign","SectionString","OptSection","GlobalVarAttributes",
"GlobalVarAttribute","PrimType","Types","ArgType","ResultTypes","ArgTypeList",
"ArgTypeListI","TypeListI","ConstVal","ConstExpr","ConstVector","GlobalType",
"ThreadLocal","AliaseeRef","Module","DefinitionList","Definition","@1","@2",
"@3","@4","@5","AsmBlock","TargetDefinition","LibrariesDefinition","LibList",
"ArgListH","ArgList","FunctionHeaderH","BEGIN","FunctionHeader","END","Function",
"FunctionProto","OptSideEffect","ConstValueRef","SymbolicValueRef","ValueRef",
"ResolvedVal","ReturnedVal","BasicBlockList","BasicBlock","InstructionList",
"BBTerminatorInst","JumpTable","Inst","PHIList","ParamList","IndexList","OptTailCall",
"InstVal","OptVolatile","MemoryInst", NULL
};
#endif
static const short yyr1[] = { 0,
166, 166, 166, 166, 166, 166, 166, 166, 166, 167,
167, 167, 167, 167, 167, 168, 168, 168, 168, 168,
168, 168, 168, 168, 168, 168, 168, 169, 169, 169,
169, 169, 169, 169, 169, 169, 169, 170, 170, 170,
170, 170, 170, 170, 170, 170, 170, 170, 170, 170,
170, 170, 170, 171, 172, 172, 172, 172, 172, 173,
173, 173, 174, 174, 175, 175, 176, 176, 177, 177,
178, 178, 179, 180, 180, 180, 180, 180, 181, 181,
181, 182, 182, 182, 182, 183, 183, 183, 184, 184,
184, 184, 184, 185, 185, 185, 186, 186, 186, 186,
186, 186, 186, 187, 187, 187, 187, 187, 187, 187,
187, 187, 187, 188, 188, 189, 189, 189, 189, 189,
189, 190, 190, 191, 191, 192, 192, 193, 193, 194,
195, 195, 196, 196, 197, 197, 198, 198, 198, 198,
198, 198, 198, 199, 199, 199, 199, 199, 199, 199,
199, 199, 199, 199, 199, 199, 200, 201, 201, 202,
202, 203, 203, 203, 203, 204, 204, 205, 205, 205,
205, 205, 205, 205, 205, 205, 205, 205, 205, 205,
205, 205, 205, 205, 205, 205, 205, 206, 206, 206,
206, 206, 206, 206, 206, 206, 206, 207, 207, 208,
208, 209, 209, 210, 210, 211, 211, 212, 212, 214,
213, 215, 213, 213, 213, 213, 216, 213, 217, 213,
218, 213, 213, 213, 213, 219, 220, 220, 221, 222,
222, 222, 223, 223, 224, 224, 224, 224, 225, 226,
226, 227, 228, 228, 229, 230, 231, 231, 232, 232,
232, 232, 232, 232, 232, 232, 232, 232, 232, 233,
233, 233, 233, 234, 234, 235, 236, 236, 237, 237,
238, 239, 239, 239, 239, 239, 240, 240, 240, 240,
240, 240, 240, 240, 240, 241, 241, 242, 243, 243,
244, 244, 244, 244, 244, 245, 245, 246, 246, 247,
247, 247, 247, 247, 247, 247, 247, 247, 247, 247,
247, 247, 248, 248, 249, 249, 249, 249, 249, 249,
249, 249, 249
};
static const short yyr2[] = { 0,
1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 0, 4, 0, 2, 0, 1, 1,
1, 0, 2, 1, 1, 1, 1, 1, 1, 1,
1, 0, 1, 1, 1, 0, 1, 1, 0, 1,
1, 1, 1, 0, 1, 1, 0, 1, 1, 1,
1, 1, 2, 1, 1, 1, 1, 1, 1, 1,
1, 1, 2, 0, 2, 1, 1, 1, 1, 1,
1, 0, 2, 0, 2, 0, 2, 0, 3, 2,
0, 1, 0, 3, 1, 2, 1, 1, 1, 1,
1, 1, 1, 1, 1, 3, 1, 2, 5, 5,
5, 5, 3, 2, 5, 4, 2, 1, 1, 1,
3, 1, 3, 1, 0, 1, 3, 4, 3, 3,
4, 4, 3, 6, 5, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 6, 5, 8,
6, 6, 7, 7, 6, 8, 8, 3, 1, 1,
1, 1, 0, 2, 6, 1, 0, 1, 2, 0,
3, 0, 3, 3, 3, 3, 0, 8, 0, 9,
0, 9, 5, 2, 3, 1, 3, 3, 3, 3,
1, 0, 5, 3, 1, 3, 1, 0, 10, 1,
1, 4, 1, 1, 2, 3, 0, 1, 1, 1,
1, 1, 1, 1, 1, 1, 3, 1, 5, 1,
1, 1, 1, 1, 1, 2, 1, 3, 2, 2,
3, 2, 0, 3, 1, 4, 2, 2, 3, 9,
9, 8, 14, 1, 1, 6, 5, 2, 6, 7,
4, 4, 6, 6, 0, 0, 3, 2, 1, 5,
5, 6, 6, 4, 6, 4, 4, 6, 6, 2,
8, 1, 1, 0, 3, 6, 3, 6, 2, 5,
7, 5, 4
};
static const short yydefact[] = { 72,
60, 69, 61, 70, 62, 212, 210, 0, 0, 0,
0, 0, 0, 82, 71, 72, 208, 86, 89, 0,
0, 224, 0, 0, 67, 0, 73, 74, 76, 75,
77, 79, 78, 80, 81, 83, 84, 85, 82, 82,
203, 209, 87, 88, 82, 213, 90, 91, 92, 93,
82, 273, 211, 273, 0, 0, 232, 225, 226, 214,
260, 261, 216, 137, 138, 139, 142, 141, 140, 143,
144, 0, 0, 0, 0, 262, 263, 145, 215, 147,
203, 203, 94, 202, 0, 97, 97, 275, 0, 270,
68, 243, 244, 245, 269, 227, 228, 231, 0, 165,
148, 0, 0, 0, 0, 154, 166, 0, 0, 165,
0, 0, 0, 96, 95, 0, 200, 201, 0, 0,
98, 99, 100, 101, 102, 0, 246, 0, 0, 0,
314, 272, 0, 229, 164, 114, 160, 162, 0, 0,
0, 0, 0, 0, 153, 0, 0, 146, 0, 0,
159, 0, 158, 0, 223, 137, 138, 139, 142, 141,
140, 0, 0, 66, 66, 103, 0, 240, 241, 242,
0, 249, 250, 251, 256, 252, 253, 254, 255, 247,
1, 2, 3, 4, 5, 6, 7, 8, 9, 13,
14, 15, 10, 11, 12, 0, 0, 0, 16, 17,
18, 19, 20, 21, 22, 23, 24, 25, 26, 27,
0, 0, 0, 0, 0, 0, 0, 0, 258, 265,
264, 274, 313, 299, 0, 0, 0, 0, 97, 284,
285, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 271, 97, 288,
0, 312, 230, 157, 0, 122, 66, 66, 156, 0,
167, 0, 122, 66, 66, 0, 204, 185, 186, 181,
183, 182, 184, 187, 180, 176, 177, 0, 0, 0,
0, 179, 178, 217, 0, 276, 248, 0, 28, 29,
30, 31, 32, 33, 34, 35, 36, 37, 0, 52,
53, 48, 49, 50, 51, 38, 39, 40, 41, 42,
43, 44, 45, 46, 47, 0, 0, 0, 0, 0,
0, 199, 0, 0, 0, 0, 298, 278, 66, 267,
277, 0, 0, 54, 0, 0, 0, 0, 128, 128,
319, 66, 66, 310, 0, 0, 0, 0, 0, 66,
66, 66, 0, 0, 0, 0, 0, 105, 107, 106,
104, 108, 109, 110, 111, 112, 115, 163, 161, 150,
151, 152, 155, 65, 149, 219, 221, 0, 169, 0,
0, 0, 173, 0, 170, 133, 238, 0, 0, 0,
296, 0, 0, 0, 0, 0, 257, 0, 0, 0,
266, 0, 0, 279, 0, 0, 66, 66, 0, 315,
0, 317, 296, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 66, 0, 113, 119, 118,
116, 117, 120, 121, 123, 133, 133, 0, 168, 154,
166, 0, 171, 172, 0, 218, 237, 114, 235, 0,
0, 0, 0, 0, 0, 0, 0, 0, 198, 0,
0, 0, 268, 0, 0, 0, 0, 0, 0, 0,
0, 323, 0, 0, 0, 306, 307, 0, 0, 0,
0, 0, 304, 0, 128, 0, 220, 222, 66, 175,
0, 0, 0, 135, 133, 64, 0, 122, 259, 0,
0, 189, 0, 0, 0, 0, 0, 0, 0, 66,
0, 0, 295, 0, 0, 128, 129, 128, 0, 0,
0, 0, 0, 322, 300, 301, 295, 0, 320, 66,
205, 174, 130, 136, 134, 63, 234, 236, 114, 131,
0, 0, 297, 0, 195, 0, 0, 191, 192, 188,
0, 0, 114, 114, 0, 302, 303, 316, 318, 0,
0, 305, 308, 309, 0, 128, 64, 132, 126, 193,
194, 0, 0, 0, 0, 0, 0, 0, 122, 0,
289, 0, 122, 321, 233, 0, 124, 190, 196, 197,
0, 282, 0, 0, 105, 107, 114, 114, 0, 114,
114, 290, 311, 127, 0, 239, 280, 0, 281, 0,
292, 291, 0, 0, 0, 125, 0, 0, 0, 114,
114, 0, 0, 0, 294, 293, 287, 0, 0, 286,
0, 283, 0, 0, 0
};
static const short yydefgoto[] = { 216,
217, 218, 299, 316, 162, 163, 76, 537, 111, 12,
77, 14, 15, 39, 40, 41, 45, 51, 116, 126,
367, 254, 435, 370, 606, 587, 410, 494, 569, 446,
495, 78, 164, 137, 154, 138, 139, 108, 322, 219,
323, 119, 85, 155, 633, 16, 17, 19, 18, 386,
436, 437, 60, 22, 58, 99, 449, 450, 127, 170,
52, 94, 53, 46, 288, 220, 80, 222, 330, 331,
54, 90, 91, 248, 594, 132, 344, 555, 454, 249,
250, 251, 252
};
static const short yypact[] = { 504,
-32768,-32768,-32768,-32768,-32768,-32768,-32768, -13, -126, -26,
-90, 107, -69, 256,-32768, 633,-32768, 126, 205, 19,
29,-32768, 31, 125,-32768, 1570,-32768,-32768,-32768,-32768,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768, 174, 174,
190,-32768,-32768,-32768, 174,-32768,-32768,-32768,-32768,-32768,
174, 1,-32768, -2, 178, 202, 212,-32768,-32768,-32768,
-32768,-32768, 83,-32768,-32768,-32768,-32768,-32768,-32768,-32768,
-32768, 251, 257, 8, 33,-32768,-32768,-32768, 74,-32768,
223, 223, 253,-32768, 82, 255, 255, 200, 235,-32768,
245,-32768,-32768,-32768,-32768,-32768,-32768,-32768, -88, 1124,
-32768, 128, 137, 813, 83,-32768, 74, -65, 134, 1124,
154, 82, 82,-32768,-32768, 1370,-32768,-32768, 1610, 307,
-32768,-32768,-32768,-32768,-32768, 1650,-32768, -7, 289, 904,
1865,-32768, 306,-32768,-32768, 74,-32768, 179, 176, 1690,
1690, 177, -55, 1690,-32768, 338, 198,-32768, 1610, 1690,
83, 191, 74, 365,-32768, 342, 344, 345, 351, 361,
372, 273, 373, 1180, 332,-32768, 162,-32768,-32768,-32768,
904,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768, 323,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,
-32768,-32768,-32768,-32768,-32768, 329, 489, 238,-32768,-32768,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,
239, 246, 250, 258, 1610, 261, 263, 264,-32768,-32768,
-32768,-32768,-32768,-32768, 341, 1730, 102, 392, 255,-32768,
-32768, 329, 489, 1690, 1690, 1690, 1690, 1690, 1690, 1690,
1690, 1690, 1690, 1690, 1690, 1690, 1690,-32768, 255,-32768,
45,-32768,-32768, 221, 1450,-32768, 7, -29,-32768, 247,
74, 265,-32768, 332, -30, 1370,-32768,-32768,-32768,-32768,
-32768,-32768,-32768,-32768,-32768,-32768,-32768, 1410, 1770, 853,
386,-32768,-32768,-32768, 279,-32768,-32768, 395,-32768,-32768,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768, 280,-32768,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,
-32768,-32768,-32768,-32768,-32768, 282, 1610, 1610, 1610, 1610,
1610,-32768, -67, 1610, 1610, 1610,-32768, 83, 764,-32768,
285, 904, 904,-32768, 904, 1650, 1690, 1690, 43, 49,
-32768, 764, -31, 288, 292, 293, 295, 296, 297, 51,
764, 764, 397, 1650, 1690, 1690, 449,-32768,-32768,-32768,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768, 146,
-32768,-32768,-32768,-32768, 146,-32768, 154, 416,-32768, -62,
1078, -10,-32768, -15,-32768, 302, 1490, 303, 1610, 1610,
-32768, 304, 309, 312, 313, 1610,-32768, 314, 315, 423,
-32768, 1690, 316,-32768, 317, 904, 764, 764, 25,-32768,
26,-32768,-32768, 904, 318, 1690, 1690, 1690, 1690, 1690,
319, 320, 322, 1690, 904, 764, 325,-32768,-32768,-32768,
-32768,-32768,-32768,-32768,-32768, 302, 302, 1690,-32768, 321,
1033, -11,-32768,-32768, 28,-32768,-32768, 74, 326, 331,
456, 327, 330, 152, 1610, 1610, 1610, 1610,-32768, 1610,
1610, 1690,-32768, 469, 470, 336, 335, 337, 904, 490,
904, 340, 346, 904, 347, 74,-32768, 350, 354, 496,
904, 904, 74, 362, 358, 1690,-32768,-32768, 23,-32768,
355, 471, 502,-32768, 302, 113, 1530,-32768,-32768, 1610,
1610,-32768, 1690, 364, 367, 370, 376, 379, 380, 54,
904, 904, 1810, 904, 904, 358,-32768, 358, 904, 381,
1690, 1690, 1690,-32768,-32768,-32768, 1810, 484,-32768, 764,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768, 74, -8,
385, 387,-32768, 1610,-32768, 1610, 1610,-32768,-32768,-32768,
384, 383, 114, 74, 180,-32768,-32768,-32768,-32768, 382,
904,-32768,-32768,-32768, 197, 358, 113,-32768, 493,-32768,
-32768, 390, 394, 398, 531, 3, 621, 621,-32768, 1850,
-32768, 393,-32768,-32768,-32768, 546, 406,-32768,-32768,-32768,
904,-32768, 1321, 9, 405, 408,-32768,-32768, 4, 114,
74,-32768, 146,-32768, 540,-32768,-32768, 409,-32768, 1321,
221, 221, 548, 621, 621,-32768, 549, 413, 904,-32768,
-32768, 904, 552, 497, 221, 221,-32768, 904, 554,-32768,
904,-32768, 572, 574,-32768
};
static const short yypgoto[] = { 445,
446, 448, 348, 349, -227,-32768, 0, 14, -100, 492,
13,-32768,-32768,-32768,-32768, 67,-32768,-32768,-32768, -166,
-32768, -443,-32768, -257,-32768,-32768, -337, 44,-32768, -406,
-32768,-32768, -24, 352, -108,-32768, 491, 498, -81, -147,
-245, 80, 127, 339,-32768,-32768, 587,-32768,-32768,-32768,
-32768,-32768,-32768,-32768,-32768,-32768,-32768,-32768, 517,-32768,
-32768,-32768,-32768,-32768,-32768, -506, -70, 104, -232,-32768,
-32768, 555,-32768,-32768,-32768,-32768,-32768, 79, 195,-32768,
-32768,-32768,-32768
};
#define YYLAST 2013
static const short yytable[] = { 11,
335, 79, 412, 341, 496, 375, 345, 346, 347, 348,
349, 103, 13, 334, 353, 11, 282, 167, 88, 334,
168, 88, 109, 109, 109, 492, 92, 23, 13, 487,
488, 24, 380, 382, 384, 469, 471, 165, 20, 61,
62, 613, 105, 64, 65, 66, 67, 68, 69, 70,
107, 1, 2, 21, 3, 4, 5, 61, 62, 221,
109, 492, 336, 25, 284, 89, 133, 264, 89, 1,
2, 134, 3, 4, 5, 136, 109, 470, 470, 107,
493, 71, 354, 267, 27, 136, 608, 396, 535, 144,
11, 153, 396, 283, 397, 567, 109, 439, 145, 144,
221, 153, 109, 618, 109, 81, 82, 109, 260, 577,
578, 86, 332, 117, 118, 257, 258, 87, 333, 261,
110, 110, 110, 427, 26, 265, 414, 109, 429, 430,
431, 1, 372, 432, 3, 442, 5, 433, 434, 396,
429, 430, 431, 396, 396, 432, 59, 529, 444, 433,
434, 443, 491, 611, 612, 169, 614, 615, 110, 355,
356, 93, 592, 376, 377, 357, 371, -143, 609, 463,
104, 43, 55, 44, 110, 531, 625, 626, 558, 285,
559, 2, 56, 475, 4, 477, 478, 479, 57, 72,
73, 149, 150, 74, 110, 75, 106, 409, -66, 96,
110, 329, 110, 411, -66, 110, 550, 112, 113, 339,
340, 329, 342, 343, 329, 329, 329, 329, 329, 350,
351, 352, 329, 97, 83, 110, 84, 406, 584, -66,
136, 358, 359, 98, 100, 391, 392, 393, 394, 395,
540, 153, 398, 399, 400, 425, 47, 48, 49, 360,
361, 50, 362, 363, 101, 364, 365, 366, 221, 84,
102, 221, 221, 1, 221, -143, 3, 129, 5, -143,
543, 221, 130, 357, 286, 270, 271, 272, 273, 421,
221, 221, 429, 430, 431, 146, 140, 432, 562, 563,
564, 433, 434, 282, 114, 141, 115, 28, 29, 30,
31, 32, 33, 34, 502, 35, 503, 452, 453, 148,
166, 153, 407, 408, 459, 120, 121, 122, 123, 124,
125, 599, 36, 37, 38, 603, 171, 253, 256, 153,
426, 329, 579, 255, 580, 221, 221, 221, 259, 358,
359, 262, 266, 221, -54, -54, -54, -54, 593, 583,
263, 580, -55, -56, 221, 221, 441, 360, 361, -59,
362, 363, 448, 364, 365, 366, 610, 268, 269, -58,
283, 61, 62, 504, 505, 506, 507, 329, 508, 509,
-57, 274, 287, 1, 2, 109, 3, 4, 5, 317,
318, 329, 476, 329, 329, 329, 327, 319, 221, 483,
221, 320, 334, 221, 36, 37, 38, 385, 373, 321,
221, 221, 324, 489, 325, 326, 388, 374, 541, 542,
289, 290, 291, 292, 293, 294, 295, 296, 297, 298,
387, 389, 401, 390, 424, 403, 404, 510, 405, 402,
221, 221, 415, 221, 221, 413, 416, 417, 221, 418,
419, 420, 428, 438, 422, 423, 445, 451, 455, 221,
462, 530, 572, 456, 573, 574, 457, 458, 460, 461,
464, 465, 539, 480, 481, 474, 482, 499, 329, 486,
497, 500, 490, 498, 501, 511, 512, 513, 554, 514,
221, 515, 533, 517, 503, 536, 329, 329, 329, 524,
519, 521, 554, -207, 522, 534, 221, 221, 523, 466,
467, 468, 528, 527, 300, 301, 532, 473, 544, 545,
221, -68, 1, 2, 546, 3, 4, 5, 484, 485,
547, 548, 549, 6, 7, 561, 470, 570, 575, 571,
576, 581, 588, 221, 221, 586, 589, 591, 221, 604,
590, 221, 602, 605, 8, 601, -17, 221, 9, -18,
221, 616, 10, 617, 619, 622, 536, 623, 628, 629,
631, 634, 516, 635, 518, 245, 246, 520, 247, 337,
585, 338, 131, 568, 525, 526, 302, 303, 304, 305,
306, 307, 308, 309, 310, 311, 312, 313, 314, 315,
147, 143, 42, 128, 378, 565, 369, 472, 95, 0,
0, 0, 0, 0, 551, 552, 0, 556, 557, 0,
0, 0, 560, 172, 173, 0, 0, 61, 62, 174,
0, 0, -206, 566, 0, 0, 0, 0, 0, 1,
2, 0, 3, 4, 5, 175, 176, 177, 0, 0,
-68, 1, 2, 0, 3, 4, 5, 0, 0, 0,
178, 179, 6, 7, 582, 0, 0, 0, 0, 0,
0, 0, 0, 357, 0, 0, 0, 0, 180, 0,
597, 598, 0, 8, 0, 0, 0, 9, 0, 0,
0, 10, 0, 0, 607, 181, 182, 183, 184, 185,
186, 187, 188, 189, 190, 191, 192, 193, 194, 195,
196, 197, 0, 0, 0, 0, 0, 620, 621, 0,
0, 0, 624, 0, 0, 627, 0, 0, 0, 0,
0, 630, 0, 0, 632, 0, 0, 198, 199, 595,
596, 202, 203, 204, 205, 206, 207, 208, 209, 210,
0, 211, 0, 212, 213, 214, 0, 360, 361, 0,
362, 363, 0, 364, 365, 366, 172, 173, 0, 0,
61, 62, 174, 0, 0, 0, 0, 0, 0, 0,
0, 215, 1, 2, 0, 3, 4, 5, 175, 176,
177, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 178, 179, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 109, 0, 61,
62, 180, 105, 64, 65, 66, 67, 68, 69, 70,
0, 1, 2, 0, 3, 4, 5, 0, 181, 182,
183, 184, 185, 186, 187, 188, 189, 190, 191, 192,
193, 194, 195, 196, 197, 0, 0, 0, 0, 61,
62, 71, 105, 156, 157, 158, 159, 160, 161, 70,
0, 1, 2, 0, 3, 4, 5, 0, 0, 0,
198, 199, 200, 201, 202, 203, 204, 205, 206, 207,
208, 209, 210, 0, 211, 0, 212, 213, 214, 0,
0, 71, 0, 0, 0, 0, 172, 173, 0, 0,
61, 62, 174, 0, 0, 110, 0, 0, 0, 0,
0, 0, 1, 2, 215, 3, 4, 5, 175, 176,
177, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 178, 179, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 180, 0, 0, 0, 0, 0, 0, 0, 72,
73, 0, 0, 74, 0, 75, 142, 0, 181, 182,
183, 184, 185, 186, 187, 188, 189, 190, 191, 192,
193, 194, 195, 196, 197, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 72,
73, 0, 0, 74, 0, 75, 383, 0, 0, 0,
198, 199, 200, 201, 202, 203, 204, 205, 206, 207,
208, 209, 210, 0, 211, 0, 212, 213, 214, 61,
62, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 1, 2, 0, 3, 4, 5, 275, 0, 0,
0, 0, 0, 0, 215, 0, 0, 0, 0, 0,
0, 0, 276, 277, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 61, 62, 109, 105, 156, 157,
158, 159, 160, 161, 70, 0, 1, 2, 0, 3,
4, 5, 0, 0, 0, 0, 0, 181, 182, 183,
184, 185, 186, 187, 188, 189, 190, 191, 192, 193,
194, 195, 196, 197, 0, 0, 71, 0, 0, 0,
61, 62, 0, 105, 64, 65, 66, 67, 68, 69,
70, 0, 1, 2, 0, 3, 4, 5, 0, 198,
199, 200, 201, 202, 203, 204, 205, 206, 207, 208,
209, 210, 135, 211, 0, 212, 213, 214, 0, 0,
0, 0, 71, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 110, 0, 61, 62, -66, 0,
278, 0, 0, 279, 0, 280, 0, 281, 1, 2,
0, 3, 4, 5, 275, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 276,
277, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 109, 72, 73, 0, 0, 74, 0,
75, 440, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 181, 182, 183, 184, 185, 186,
187, 188, 189, 190, 191, 192, 193, 194, 195, 196,
197, 0, 0, 0, 0, 0, 0, 0, 0, 0,
72, 73, 0, 0, 74, 0, 75, 0, 0, 0,
0, 0, 0, 0, 0, 0, 198, 199, 200, 201,
202, 203, 204, 205, 206, 207, 208, 209, 210, 0,
211, 0, 212, 213, 214, 0, 0, 0, 0, 0,
0, 0, 0, 172, 173, 0, 0, 0, 0, 174,
0, 110, 0, 0, 0, 0, 0, 278, 0, 0,
279, 0, 280, 0, 281, 175, 176, 177, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
178, 179, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 61, 62, 180, 151,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 181, 182, 183, 184, 185,
186, 187, 188, 189, 190, 191, 192, 193, 194, 195,
196, 197, 0, 0, 0, 0, 61, 62, 71, 105,
156, 157, 158, 159, 160, 161, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 198, 199, 200,
201, 202, 203, 204, 205, 206, 207, 208, 209, 210,
0, 211, 0, 212, 213, 214, 61, 62, 71, 105,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 215, 0, 0, 0, 0, 0, 0, 368, 0,
0, 0, 152, 0, 0, 0, 61, 62, 71, 105,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 447, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 105,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 538, 379,
74, 0, 75, 0, 0, 0, 61, 62, 71, 63,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 105,
156, 157, 158, 159, 160, 161, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 151,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 105,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 328,
64, 65, 66, 67, 68, 69, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 105,
156, 157, 158, 159, 160, 161, 70, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 105,
64, 65, 66, 67, 68, 69, 553, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 61, 62, 71, 105,
64, 65, 66, 67, 68, 69, 600, 0, 1, 2,
0, 3, 4, 5, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 0, 0, 71, 0,
223, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
224, 225, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 381, 226, 227, 228, 229, 230, 231, 181,
182, 183, 184, 185, 186, 187, 188, 189, 190, 191,
192, 193, 194, 195, 232, 233, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75, 0, 0, 0, 234, 235, 236, 0,
0, 237, 199, 200, 201, 202, 203, 204, 205, 206,
207, 208, 209, 210, 238, 239, 240, 241, 242, 243,
244, 0, 0, 0, 0, 0, 72, 73, 0, 0,
74, 0, 75
};
static const short yycheck[] = { 0,
228, 26, 340, 236, 448, 263, 239, 240, 241, 242,
243, 4, 0, 11, 247, 16, 164, 126, 21, 11,
28, 21, 54, 54, 54, 34, 29, 154, 16, 436,
437, 58, 278, 279, 280, 11, 11, 119, 52, 7,
8, 38, 10, 11, 12, 13, 14, 15, 16, 17,
75, 19, 20, 67, 22, 23, 24, 7, 8, 130,
54, 34, 229, 154, 165, 68, 155, 149, 68, 19,
20, 160, 22, 23, 24, 100, 54, 53, 53, 104,
53, 49, 249, 154, 154, 110, 593, 155, 495, 155,
91, 116, 155, 164, 162, 539, 54, 160, 164, 155,
171, 126, 54, 610, 54, 39, 40, 54, 164, 553,
554, 45, 11, 32, 33, 140, 141, 51, 17, 144,
152, 152, 152, 356, 18, 150, 158, 54, 137, 138,
139, 19, 162, 142, 22, 381, 24, 146, 147, 155,
137, 138, 139, 155, 155, 142, 22, 485, 164, 146,
147, 162, 164, 597, 598, 163, 600, 601, 152, 115,
116, 164, 160, 264, 265, 53, 160, 54, 160, 402,
163, 46, 154, 48, 152, 153, 620, 621, 516, 167,
518, 20, 154, 416, 23, 418, 419, 420, 158, 157,
158, 112, 113, 161, 152, 163, 164, 155, 156, 22,
152, 226, 152, 155, 156, 152, 153, 81, 82, 234,
235, 236, 237, 238, 239, 240, 241, 242, 243, 244,
245, 246, 247, 22, 35, 152, 37, 336, 566, 156,
255, 119, 120, 22, 152, 317, 318, 319, 320, 321,
498, 266, 324, 325, 326, 354, 42, 43, 44, 137,
138, 47, 140, 141, 4, 143, 144, 145, 329, 37,
4, 332, 333, 19, 335, 152, 22, 68, 24, 156,
503, 342, 38, 53, 171, 3, 4, 5, 6, 350,
351, 352, 137, 138, 139, 152, 159, 142, 521, 522,
523, 146, 147, 441, 42, 159, 44, 42, 43, 44,
45, 46, 47, 48, 153, 50, 155, 389, 390, 156,
4, 336, 337, 338, 396, 61, 62, 63, 64, 65,
66, 579, 149, 150, 151, 583, 38, 22, 153, 354,
355, 356, 153, 155, 155, 406, 407, 408, 162, 119,
120, 4, 152, 414, 3, 4, 5, 6, 576, 153,
153, 155, 9, 9, 425, 426, 381, 137, 138, 9,
140, 141, 387, 143, 144, 145, 594, 26, 27, 9,
441, 7, 8, 455, 456, 457, 458, 402, 460, 461,
9, 9, 60, 19, 20, 54, 22, 23, 24, 152,
152, 416, 417, 418, 419, 420, 56, 152, 469, 424,
471, 152, 11, 474, 149, 150, 151, 22, 162, 152,
481, 482, 152, 438, 152, 152, 22, 153, 500, 501,
92, 93, 94, 95, 96, 97, 98, 99, 100, 101,
152, 152, 329, 152, 38, 332, 333, 462, 335, 155,
511, 512, 155, 514, 515, 342, 155, 155, 519, 155,
155, 155, 4, 38, 351, 352, 155, 155, 155, 530,
38, 486, 544, 155, 546, 547, 155, 155, 155, 155,
155, 155, 497, 155, 155, 158, 155, 22, 503, 155,
155, 155, 162, 153, 155, 17, 17, 152, 513, 155,
561, 155, 22, 4, 155, 496, 521, 522, 523, 4,
155, 155, 527, 0, 155, 4, 577, 578, 155, 406,
407, 408, 155, 152, 26, 27, 162, 414, 155, 153,
591, 18, 19, 20, 155, 22, 23, 24, 425, 426,
155, 153, 153, 30, 31, 155, 53, 153, 155, 153,
158, 160, 153, 614, 615, 53, 153, 17, 619, 4,
153, 622, 160, 148, 51, 580, 152, 628, 55, 152,
631, 22, 59, 155, 17, 17, 567, 155, 17, 73,
17, 0, 469, 0, 471, 131, 131, 474, 131, 232,
567, 233, 91, 540, 481, 482, 98, 99, 100, 101,
102, 103, 104, 105, 106, 107, 108, 109, 110, 111,
110, 104, 16, 87, 266, 527, 255, 413, 54, -1,
-1, -1, -1, -1, 511, 512, -1, 514, 515, -1,
-1, -1, 519, 3, 4, -1, -1, 7, 8, 9,
-1, -1, 0, 530, -1, -1, -1, -1, -1, 19,
20, -1, 22, 23, 24, 25, 26, 27, -1, -1,
18, 19, 20, -1, 22, 23, 24, -1, -1, -1,
40, 41, 30, 31, 561, -1, -1, -1, -1, -1,
-1, -1, -1, 53, -1, -1, -1, -1, 58, -1,
577, 578, -1, 51, -1, -1, -1, 55, -1, -1,
-1, 59, -1, -1, 591, 75, 76, 77, 78, 79,
80, 81, 82, 83, 84, 85, 86, 87, 88, 89,
90, 91, -1, -1, -1, -1, -1, 614, 615, -1,
-1, -1, 619, -1, -1, 622, -1, -1, -1, -1,
-1, 628, -1, -1, 631, -1, -1, 117, 118, 119,
120, 121, 122, 123, 124, 125, 126, 127, 128, 129,
-1, 131, -1, 133, 134, 135, -1, 137, 138, -1,
140, 141, -1, 143, 144, 145, 3, 4, -1, -1,
7, 8, 9, -1, -1, -1, -1, -1, -1, -1,
-1, 161, 19, 20, -1, 22, 23, 24, 25, 26,
27, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, 40, 41, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, 54, -1, 7,
8, 58, 10, 11, 12, 13, 14, 15, 16, 17,
-1, 19, 20, -1, 22, 23, 24, -1, 75, 76,
77, 78, 79, 80, 81, 82, 83, 84, 85, 86,
87, 88, 89, 90, 91, -1, -1, -1, -1, 7,
8, 49, 10, 11, 12, 13, 14, 15, 16, 17,
-1, 19, 20, -1, 22, 23, 24, -1, -1, -1,
117, 118, 119, 120, 121, 122, 123, 124, 125, 126,
127, 128, 129, -1, 131, -1, 133, 134, 135, -1,
-1, 49, -1, -1, -1, -1, 3, 4, -1, -1,
7, 8, 9, -1, -1, 152, -1, -1, -1, -1,
-1, -1, 19, 20, 161, 22, 23, 24, 25, 26,
27, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, 40, 41, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, 58, -1, -1, -1, -1, -1, -1, -1, 157,
158, -1, -1, 161, -1, 163, 164, -1, 75, 76,
77, 78, 79, 80, 81, 82, 83, 84, 85, 86,
87, 88, 89, 90, 91, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, 157,
158, -1, -1, 161, -1, 163, 164, -1, -1, -1,
117, 118, 119, 120, 121, 122, 123, 124, 125, 126,
127, 128, 129, -1, 131, -1, 133, 134, 135, 7,
8, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, 19, 20, -1, 22, 23, 24, 25, -1, -1,
-1, -1, -1, -1, 161, -1, -1, -1, -1, -1,
-1, -1, 40, 41, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, 7, 8, 54, 10, 11, 12,
13, 14, 15, 16, 17, -1, 19, 20, -1, 22,
23, 24, -1, -1, -1, -1, -1, 75, 76, 77,
78, 79, 80, 81, 82, 83, 84, 85, 86, 87,
88, 89, 90, 91, -1, -1, 49, -1, -1, -1,
7, 8, -1, 10, 11, 12, 13, 14, 15, 16,
17, -1, 19, 20, -1, 22, 23, 24, -1, 117,
118, 119, 120, 121, 122, 123, 124, 125, 126, 127,
128, 129, 39, 131, -1, 133, 134, 135, -1, -1,
-1, -1, 49, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, 152, -1, 7, 8, 156, -1,
158, -1, -1, 161, -1, 163, -1, 165, 19, 20,
-1, 22, 23, 24, 25, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, 40,
41, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, 54, 157, 158, -1, -1, 161, -1,
163, 164, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, 75, 76, 77, 78, 79, 80,
81, 82, 83, 84, 85, 86, 87, 88, 89, 90,
91, -1, -1, -1, -1, -1, -1, -1, -1, -1,
157, 158, -1, -1, 161, -1, 163, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 117, 118, 119, 120,
121, 122, 123, 124, 125, 126, 127, 128, 129, -1,
131, -1, 133, 134, 135, -1, -1, -1, -1, -1,
-1, -1, -1, 3, 4, -1, -1, -1, -1, 9,
-1, 152, -1, -1, -1, -1, -1, 158, -1, -1,
161, -1, 163, -1, 165, 25, 26, 27, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
40, 41, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 7, 8, 58, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, 75, 76, 77, 78, 79,
80, 81, 82, 83, 84, 85, 86, 87, 88, 89,
90, 91, -1, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, 117, 118, 119,
120, 121, 122, 123, 124, 125, 126, 127, 128, 129,
-1, 131, -1, 133, 134, 135, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, 161, -1, -1, -1, -1, -1, -1, 39, -1,
-1, -1, 123, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, 39, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, 39, 160,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 7, 8, 49, 10,
11, 12, 13, 14, 15, 16, 17, -1, 19, 20,
-1, 22, 23, 24, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, -1, -1, 49, -1,
36, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
56, 57, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, 69, 70, 71, 72, 73, 74, 75,
76, 77, 78, 79, 80, 81, 82, 83, 84, 85,
86, 87, 88, 89, 90, 91, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163, -1, -1, -1, 112, 113, 114, -1,
-1, 117, 118, 119, 120, 121, 122, 123, 124, 125,
126, 127, 128, 129, 130, 131, 132, 133, 134, 135,
136, -1, -1, -1, -1, -1, 157, 158, -1, -1,
161, -1, 163
};
/* -*-C-*- Note some compilers choke on comments on `#line' lines. */
#line 3 "/usr/share/bison.simple"
/* This file comes from bison-1.28. */
/* Skeleton output parser for bison,
Copyright (C) 1984, 1989, 1990 Free Software Foundation, Inc.
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2, or (at your option)
any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330,
Boston, MA 02111-1307, USA. */
/* As a special exception, when this file is copied by Bison into a
Bison output file, you may use that output file without restriction.
This special exception was added by the Free Software Foundation
in version 1.24 of Bison. */
/* This is the parser code that is written into each bison parser
when the %semantic_parser declaration is not specified in the grammar.
It was written by Richard Stallman by simplifying the hairy parser
used when %semantic_parser is specified. */
#ifndef YYSTACK_USE_ALLOCA
#ifdef alloca
#define YYSTACK_USE_ALLOCA
#else /* alloca not defined */
#ifdef __GNUC__
#define YYSTACK_USE_ALLOCA
#define alloca __builtin_alloca
#else /* not GNU C. */
#if (!defined (__STDC__) && defined (sparc)) || defined (__sparc__) || defined (__sparc) || defined (__sgi) || (defined (__sun) && defined (__i386))
#define YYSTACK_USE_ALLOCA
#include <alloca.h>
#else /* not sparc */
/* We think this test detects Watcom and Microsoft C. */
/* This used to test MSDOS, but that is a bad idea
since that symbol is in the user namespace. */
#if (defined (_MSDOS) || defined (_MSDOS_)) && !defined (__TURBOC__)
#if 0 /* No need for malloc.h, which pollutes the namespace;
instead, just don't use alloca. */
#include <malloc.h>
#endif
#else /* not MSDOS, or __TURBOC__ */
#if defined(_AIX)
/* I don't know what this was needed for, but it pollutes the namespace.
So I turned it off. rms, 2 May 1997. */
/* #include <malloc.h> */
#pragma alloca
#define YYSTACK_USE_ALLOCA
#else /* not MSDOS, or __TURBOC__, or _AIX */
#if 0
#ifdef __hpux /* haible@ilog.fr says this works for HPUX 9.05 and up,
and on HPUX 10. Eventually we can turn this on. */
#define YYSTACK_USE_ALLOCA
#define alloca __builtin_alloca
#endif /* __hpux */
#endif
#endif /* not _AIX */
#endif /* not MSDOS, or __TURBOC__ */
#endif /* not sparc */
#endif /* not GNU C */
#endif /* alloca not defined */
#endif /* YYSTACK_USE_ALLOCA not defined */
#ifdef YYSTACK_USE_ALLOCA
#define YYSTACK_ALLOC alloca
#else
#define YYSTACK_ALLOC malloc
#endif
/* Note: there must be only one dollar sign in this file.
It is replaced by the list of actions, each action
as one case of the switch. */
#define yyerrok (yyerrstatus = 0)
#define yyclearin (yychar = YYEMPTY)
#define YYEMPTY -2
#define YYEOF 0
#define YYACCEPT goto yyacceptlab
#define YYABORT goto yyabortlab
#define YYERROR goto yyerrlab1
/* Like YYERROR except do call yyerror.
This remains here temporarily to ease the
transition to the new meaning of YYERROR, for GCC.
Once GCC version 2 has supplanted version 1, this can go. */
#define YYFAIL goto yyerrlab
#define YYRECOVERING() (!!yyerrstatus)
#define YYBACKUP(token, value) \
do \
if (yychar == YYEMPTY && yylen == 1) \
{ yychar = (token), yylval = (value); \
yychar1 = YYTRANSLATE (yychar); \
YYPOPSTACK; \
goto yybackup; \
} \
else \
{ yyerror ("syntax error: cannot back up"); YYERROR; } \
while (0)
#define YYTERROR 1
#define YYERRCODE 256
#ifndef YYPURE
#define YYLEX yylex()
#endif
#ifdef YYPURE
#ifdef YYLSP_NEEDED
#ifdef YYLEX_PARAM
#define YYLEX yylex(&yylval, &yylloc, YYLEX_PARAM)
#else
#define YYLEX yylex(&yylval, &yylloc)
#endif
#else /* not YYLSP_NEEDED */
#ifdef YYLEX_PARAM
#define YYLEX yylex(&yylval, YYLEX_PARAM)
#else
#define YYLEX yylex(&yylval)
#endif
#endif /* not YYLSP_NEEDED */
#endif
/* If nonreentrant, generate the variables here */
#ifndef YYPURE
int yychar; /* the lookahead symbol */
YYSTYPE yylval; /* the semantic value of the */
/* lookahead symbol */
#ifdef YYLSP_NEEDED
YYLTYPE yylloc; /* location data for the lookahead */
/* symbol */
#endif
int yynerrs; /* number of parse errors so far */
#endif /* not YYPURE */
#if YYDEBUG != 0
int yydebug; /* nonzero means print parse trace */
/* Since this is uninitialized, it does not stop multiple parsers
from coexisting. */
#endif
/* YYINITDEPTH indicates the initial size of the parser's stacks */
#ifndef YYINITDEPTH
#define YYINITDEPTH 200
#endif
/* YYMAXDEPTH is the maximum size the stacks can grow to
(effective only if the built-in stack extension method is used). */
#if YYMAXDEPTH == 0
#undef YYMAXDEPTH
#endif
#ifndef YYMAXDEPTH
#define YYMAXDEPTH 10000
#endif
/* Define __yy_memcpy. Note that the size argument
should be passed with type unsigned int, because that is what the non-GCC
definitions require. With GCC, __builtin_memcpy takes an arg
of type size_t, but it can handle unsigned int. */
#if __GNUC__ > 1 /* GNU C and GNU C++ define this. */
#define __yy_memcpy(TO,FROM,COUNT) __builtin_memcpy(TO,FROM,COUNT)
#else /* not GNU C or C++ */
#ifndef __cplusplus
/* This is the most reliable way to avoid incompatibilities
in available built-in functions on various systems. */
static void
__yy_memcpy (to, from, count)
char *to;
char *from;
unsigned int count;
{
register char *f = from;
register char *t = to;
register int i = count;
while (i-- > 0)
*t++ = *f++;
}
#else /* __cplusplus */
/* This is the most reliable way to avoid incompatibilities
in available built-in functions on various systems. */
static void
__yy_memcpy (char *to, char *from, unsigned int count)
{
register char *t = to;
register char *f = from;
register int i = count;
while (i-- > 0)
*t++ = *f++;
}
#endif
#endif
#line 217 "/usr/share/bison.simple"
/* The user can define YYPARSE_PARAM as the name of an argument to be passed
into yyparse. The argument should have type void *.
It should actually point to an object.
Grammar actions can access the variable by casting it
to the proper pointer type. */
#ifdef YYPARSE_PARAM
#ifdef __cplusplus
#define YYPARSE_PARAM_ARG void *YYPARSE_PARAM
#define YYPARSE_PARAM_DECL
#else /* not __cplusplus */
#define YYPARSE_PARAM_ARG YYPARSE_PARAM
#define YYPARSE_PARAM_DECL void *YYPARSE_PARAM;
#endif /* not __cplusplus */
#else /* not YYPARSE_PARAM */
#define YYPARSE_PARAM_ARG
#define YYPARSE_PARAM_DECL
#endif /* not YYPARSE_PARAM */
/* Prevent warning if -Wstrict-prototypes. */
#ifdef __GNUC__
#ifdef YYPARSE_PARAM
int yyparse (void *);
#else
int yyparse (void);
#endif
#endif
int
yyparse(YYPARSE_PARAM_ARG)
YYPARSE_PARAM_DECL
{
register int yystate;
register int yyn;
register short *yyssp;
register YYSTYPE *yyvsp;
int yyerrstatus; /* number of tokens to shift before error messages enabled */
int yychar1 = 0; /* lookahead token as an internal (translated) token number */
short yyssa[YYINITDEPTH]; /* the state stack */
YYSTYPE yyvsa[YYINITDEPTH]; /* the semantic value stack */
short *yyss = yyssa; /* refer to the stacks thru separate pointers */
YYSTYPE *yyvs = yyvsa; /* to allow yyoverflow to reallocate them elsewhere */
#ifdef YYLSP_NEEDED
YYLTYPE yylsa[YYINITDEPTH]; /* the location stack */
YYLTYPE *yyls = yylsa;
YYLTYPE *yylsp;
#define YYPOPSTACK (yyvsp--, yyssp--, yylsp--)
#else
#define YYPOPSTACK (yyvsp--, yyssp--)
#endif
int yystacksize = YYINITDEPTH;
int yyfree_stacks = 0;
#ifdef YYPURE
int yychar;
YYSTYPE yylval;
int yynerrs;
#ifdef YYLSP_NEEDED
YYLTYPE yylloc;
#endif
#endif
YYSTYPE yyval; /* the variable used to return */
/* semantic values from the action */
/* routines */
int yylen;
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Starting parse\n");
#endif
yystate = 0;
yyerrstatus = 0;
yynerrs = 0;
yychar = YYEMPTY; /* Cause a token to be read. */
/* Initialize stack pointers.
Waste one element of value and location stack
so that they stay on the same level as the state stack.
The wasted elements are never initialized. */
yyssp = yyss - 1;
yyvsp = yyvs;
#ifdef YYLSP_NEEDED
yylsp = yyls;
#endif
/* Push a new state, which is found in yystate . */
/* In all cases, when you get here, the value and location stacks
have just been pushed. so pushing a state here evens the stacks. */
yynewstate:
*++yyssp = yystate;
if (yyssp >= yyss + yystacksize - 1)
{
/* Give user a chance to reallocate the stack */
/* Use copies of these so that the &'s don't force the real ones into memory. */
YYSTYPE *yyvs1 = yyvs;
short *yyss1 = yyss;
#ifdef YYLSP_NEEDED
YYLTYPE *yyls1 = yyls;
#endif
/* Get the current used size of the three stacks, in elements. */
int size = yyssp - yyss + 1;
#ifdef yyoverflow
/* Each stack pointer address is followed by the size of
the data in use in that stack, in bytes. */
#ifdef YYLSP_NEEDED
/* This used to be a conditional around just the two extra args,
but that might be undefined if yyoverflow is a macro. */
yyoverflow("parser stack overflow",
&yyss1, size * sizeof (*yyssp),
&yyvs1, size * sizeof (*yyvsp),
&yyls1, size * sizeof (*yylsp),
&yystacksize);
#else
yyoverflow("parser stack overflow",
&yyss1, size * sizeof (*yyssp),
&yyvs1, size * sizeof (*yyvsp),
&yystacksize);
#endif
yyss = yyss1; yyvs = yyvs1;
#ifdef YYLSP_NEEDED
yyls = yyls1;
#endif
#else /* no yyoverflow */
/* Extend the stack our own way. */
if (yystacksize >= YYMAXDEPTH)
{
yyerror("parser stack overflow");
if (yyfree_stacks)
{
free (yyss);
free (yyvs);
#ifdef YYLSP_NEEDED
free (yyls);
#endif
}
return 2;
}
yystacksize *= 2;
if (yystacksize > YYMAXDEPTH)
yystacksize = YYMAXDEPTH;
#ifndef YYSTACK_USE_ALLOCA
yyfree_stacks = 1;
#endif
yyss = (short *) YYSTACK_ALLOC (yystacksize * sizeof (*yyssp));
__yy_memcpy ((char *)yyss, (char *)yyss1,
size * (unsigned int) sizeof (*yyssp));
yyvs = (YYSTYPE *) YYSTACK_ALLOC (yystacksize * sizeof (*yyvsp));
__yy_memcpy ((char *)yyvs, (char *)yyvs1,
size * (unsigned int) sizeof (*yyvsp));
#ifdef YYLSP_NEEDED
yyls = (YYLTYPE *) YYSTACK_ALLOC (yystacksize * sizeof (*yylsp));
__yy_memcpy ((char *)yyls, (char *)yyls1,
size * (unsigned int) sizeof (*yylsp));
#endif
#endif /* no yyoverflow */
yyssp = yyss + size - 1;
yyvsp = yyvs + size - 1;
#ifdef YYLSP_NEEDED
yylsp = yyls + size - 1;
#endif
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Stack size increased to %d\n", yystacksize);
#endif
if (yyssp >= yyss + yystacksize - 1)
YYABORT;
}
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Entering state %d\n", yystate);
#endif
goto yybackup;
yybackup:
/* Do appropriate processing given the current state. */
/* Read a lookahead token if we need one and don't already have one. */
/* yyresume: */
/* First try to decide what to do without reference to lookahead token. */
yyn = yypact[yystate];
if (yyn == YYFLAG)
goto yydefault;
/* Not known => get a lookahead token if don't already have one. */
/* yychar is either YYEMPTY or YYEOF
or a valid token in external form. */
if (yychar == YYEMPTY)
{
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Reading a token: ");
#endif
yychar = YYLEX;
}
/* Convert token to internal form (in yychar1) for indexing tables with */
if (yychar <= 0) /* This means end of input. */
{
yychar1 = 0;
yychar = YYEOF; /* Don't call YYLEX any more */
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Now at end of input.\n");
#endif
}
else
{
yychar1 = YYTRANSLATE(yychar);
#if YYDEBUG != 0
if (yydebug)
{
fprintf (stderr, "Next token is %d (%s", yychar, yytname[yychar1]);
/* Give the individual parser a way to print the precise meaning
of a token, for further debugging info. */
#ifdef YYPRINT
YYPRINT (stderr, yychar, yylval);
#endif
fprintf (stderr, ")\n");
}
#endif
}
yyn += yychar1;
if (yyn < 0 || yyn > YYLAST || yycheck[yyn] != yychar1)
goto yydefault;
yyn = yytable[yyn];
/* yyn is what to do for this token type in this state.
Negative => reduce, -yyn is rule number.
Positive => shift, yyn is new state.
New state is final state => don't bother to shift,
just return success.
0, or most negative number => error. */
if (yyn < 0)
{
if (yyn == YYFLAG)
goto yyerrlab;
yyn = -yyn;
goto yyreduce;
}
else if (yyn == 0)
goto yyerrlab;
if (yyn == YYFINAL)
YYACCEPT;
/* Shift the lookahead token. */
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Shifting token %d (%s), ", yychar, yytname[yychar1]);
#endif
/* Discard the token being shifted unless it is eof. */
if (yychar != YYEOF)
yychar = YYEMPTY;
*++yyvsp = yylval;
#ifdef YYLSP_NEEDED
*++yylsp = yylloc;
#endif
/* count tokens shifted since error; after three, turn off error status. */
if (yyerrstatus) yyerrstatus--;
yystate = yyn;
goto yynewstate;
/* Do the default action for the current state. */
yydefault:
yyn = yydefact[yystate];
if (yyn == 0)
goto yyerrlab;
/* Do a reduction. yyn is the number of a rule to reduce with. */
yyreduce:
yylen = yyr2[yyn];
if (yylen > 0)
yyval = yyvsp[1-yylen]; /* implement default value of the action */
#if YYDEBUG != 0
if (yydebug)
{
int i;
fprintf (stderr, "Reducing via rule %d (line %d), ",
yyn, yyrline[yyn]);
/* Print the symbols being reduced, and their result. */
for (i = yyprhs[yyn]; yyrhs[i] > 0; i++)
fprintf (stderr, "%s ", yytname[yyrhs[i]]);
fprintf (stderr, " -> %s\n", yytname[yyr1[yyn]]);
}
#endif
switch (yyn) {
case 28:
#line 1118 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_EQ; ;
break;}
case 29:
#line 1118 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_NE; ;
break;}
case 30:
#line 1119 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_SLT; ;
break;}
case 31:
#line 1119 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_SGT; ;
break;}
case 32:
#line 1120 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_SLE; ;
break;}
case 33:
#line 1120 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_SGE; ;
break;}
case 34:
#line 1121 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_ULT; ;
break;}
case 35:
#line 1121 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_UGT; ;
break;}
case 36:
#line 1122 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_ULE; ;
break;}
case 37:
#line 1122 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.IPredicate = ICmpInst::ICMP_UGE; ;
break;}
case 38:
#line 1126 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_OEQ; ;
break;}
case 39:
#line 1126 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_ONE; ;
break;}
case 40:
#line 1127 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_OLT; ;
break;}
case 41:
#line 1127 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_OGT; ;
break;}
case 42:
#line 1128 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_OLE; ;
break;}
case 43:
#line 1128 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_OGE; ;
break;}
case 44:
#line 1129 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_ORD; ;
break;}
case 45:
#line 1129 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_UNO; ;
break;}
case 46:
#line 1130 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_UEQ; ;
break;}
case 47:
#line 1130 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_UNE; ;
break;}
case 48:
#line 1131 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_ULT; ;
break;}
case 49:
#line 1131 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_UGT; ;
break;}
case 50:
#line 1132 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_ULE; ;
break;}
case 51:
#line 1132 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_UGE; ;
break;}
case 52:
#line 1133 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_TRUE; ;
break;}
case 53:
#line 1134 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.FPredicate = FCmpInst::FCMP_FALSE; ;
break;}
case 64:
#line 1143 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.StrVal = 0; ;
break;}
case 65:
#line 1145 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal=yyvsp[-1].UInt64Val; ;
break;}
case 66:
#line 1146 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal=0; ;
break;}
case 67:
#line 1150 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.StrVal = yyvsp[-1].StrVal;
CHECK_FOR_ERROR
;
break;}
case 68:
#line 1154 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.StrVal = 0;
CHECK_FOR_ERROR
;
break;}
case 72:
#line 1162 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.StrVal = 0;
CHECK_FOR_ERROR
;
break;}
case 73:
#line 1167 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.StrVal = yyvsp[-1].StrVal;
CHECK_FOR_ERROR
;
break;}
case 74:
#line 1173 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::InternalLinkage; ;
break;}
case 75:
#line 1174 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::WeakLinkage; ;
break;}
case 76:
#line 1175 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::LinkOnceLinkage; ;
break;}
case 77:
#line 1176 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::AppendingLinkage; ;
break;}
case 78:
#line 1177 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::DLLExportLinkage; ;
break;}
case 79:
#line 1181 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::DLLImportLinkage; ;
break;}
case 80:
#line 1182 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::ExternalWeakLinkage; ;
break;}
case 81:
#line 1183 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::ExternalLinkage; ;
break;}
case 82:
#line 1187 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Visibility = GlobalValue::DefaultVisibility; ;
break;}
case 83:
#line 1188 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Visibility = GlobalValue::DefaultVisibility; ;
break;}
case 84:
#line 1189 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Visibility = GlobalValue::HiddenVisibility; ;
break;}
case 85:
#line 1190 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Visibility = GlobalValue::ProtectedVisibility; ;
break;}
case 86:
#line 1194 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::ExternalLinkage; ;
break;}
case 87:
#line 1195 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::DLLImportLinkage; ;
break;}
case 88:
#line 1196 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::ExternalWeakLinkage; ;
break;}
case 89:
#line 1200 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::ExternalLinkage; ;
break;}
case 90:
#line 1201 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::InternalLinkage; ;
break;}
case 91:
#line 1202 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::LinkOnceLinkage; ;
break;}
case 92:
#line 1203 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::WeakLinkage; ;
break;}
case 93:
#line 1204 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::DLLExportLinkage; ;
break;}
case 94:
#line 1208 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::ExternalLinkage; ;
break;}
case 95:
#line 1209 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::WeakLinkage; ;
break;}
case 96:
#line 1210 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.Linkage = GlobalValue::InternalLinkage; ;
break;}
case 97:
#line 1213 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = CallingConv::C; ;
break;}
case 98:
#line 1214 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = CallingConv::C; ;
break;}
case 99:
#line 1215 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = CallingConv::Fast; ;
break;}
case 100:
#line 1216 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = CallingConv::Cold; ;
break;}
case 101:
#line 1217 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = CallingConv::X86_StdCall; ;
break;}
case 102:
#line 1218 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = CallingConv::X86_FastCall; ;
break;}
case 103:
#line 1219 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if ((unsigned)yyvsp[0].UInt64Val != yyvsp[0].UInt64Val)
GEN_ERROR("Calling conv too large");
yyval.UIntVal = yyvsp[0].UInt64Val;
CHECK_FOR_ERROR
;
break;}
case 104:
#line 1226 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::ZExt; ;
break;}
case 105:
#line 1227 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::ZExt; ;
break;}
case 106:
#line 1228 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::SExt; ;
break;}
case 107:
#line 1229 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::SExt; ;
break;}
case 108:
#line 1230 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::InReg; ;
break;}
case 109:
#line 1231 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::StructRet; ;
break;}
case 110:
#line 1232 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::NoAlias; ;
break;}
case 111:
#line 1233 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::ByVal; ;
break;}
case 112:
#line 1234 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::Nest; ;
break;}
case 113:
#line 1235 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs =
ParamAttr::constructAlignmentFromInt(yyvsp[0].UInt64Val); ;
break;}
case 114:
#line 1239 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::None; ;
break;}
case 115:
#line 1240 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ParamAttrs = yyvsp[-1].ParamAttrs | yyvsp[0].ParamAttrs;
;
break;}
case 116:
#line 1245 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::NoReturn; ;
break;}
case 117:
#line 1246 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::NoUnwind; ;
break;}
case 118:
#line 1247 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::ZExt; ;
break;}
case 119:
#line 1248 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::SExt; ;
break;}
case 120:
#line 1249 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::ReadNone; ;
break;}
case 121:
#line 1250 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::ReadOnly; ;
break;}
case 122:
#line 1253 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamAttrs = ParamAttr::None; ;
break;}
case 123:
#line 1254 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ParamAttrs = yyvsp[-1].ParamAttrs | yyvsp[0].ParamAttrs;
;
break;}
case 124:
#line 1259 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.StrVal = 0; ;
break;}
case 125:
#line 1260 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.StrVal = yyvsp[0].StrVal;
;
break;}
case 126:
#line 1267 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = 0; ;
break;}
case 127:
#line 1268 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.UIntVal = yyvsp[0].UInt64Val;
if (yyval.UIntVal != 0 && !isPowerOf2_32(yyval.UIntVal))
GEN_ERROR("Alignment must be a power of two");
CHECK_FOR_ERROR
;
break;}
case 128:
#line 1274 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.UIntVal = 0; ;
break;}
case 129:
#line 1275 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.UIntVal = yyvsp[0].UInt64Val;
if (yyval.UIntVal != 0 && !isPowerOf2_32(yyval.UIntVal))
GEN_ERROR("Alignment must be a power of two");
CHECK_FOR_ERROR
;
break;}
case 130:
#line 1284 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
for (unsigned i = 0, e = yyvsp[0].StrVal->length(); i != e; ++i)
if ((*yyvsp[0].StrVal)[i] == '"' || (*yyvsp[0].StrVal)[i] == '\\')
GEN_ERROR("Invalid character in section name");
yyval.StrVal = yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 131:
#line 1292 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.StrVal = 0; ;
break;}
case 132:
#line 1293 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.StrVal = yyvsp[0].StrVal; ;
break;}
case 133:
#line 1298 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{;
break;}
case 134:
#line 1299 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{;
break;}
case 135:
#line 1300 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurGV->setSection(*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 136:
#line 1305 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[0].UInt64Val != 0 && !isPowerOf2_32(yyvsp[0].UInt64Val))
GEN_ERROR("Alignment must be a power of two");
CurGV->setAlignment(yyvsp[0].UInt64Val);
CHECK_FOR_ERROR
;
break;}
case 144:
#line 1321 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeVal = new PATypeHolder(OpaqueType::get());
CHECK_FOR_ERROR
;
break;}
case 145:
#line 1325 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeVal = new PATypeHolder(yyvsp[0].PrimType);
CHECK_FOR_ERROR
;
break;}
case 146:
#line 1329 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Pointer type?
if (*yyvsp[-2].TypeVal == Type::LabelTy)
GEN_ERROR("Cannot form a pointer to a basic block");
yyval.TypeVal = new PATypeHolder(HandleUpRefs(PointerType::get(*yyvsp[-2].TypeVal, yyvsp[-1].UIntVal)));
delete yyvsp[-2].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 147:
#line 1336 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Named types are also simple types...
const Type* tmp = getTypeVal(yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.TypeVal = new PATypeHolder(tmp);
;
break;}
case 148:
#line 1341 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Type UpReference
if (yyvsp[0].UInt64Val > (uint64_t)~0U) GEN_ERROR("Value out of range");
OpaqueType *OT = OpaqueType::get(); // Use temporary placeholder
UpRefs.push_back(UpRefRecord((unsigned)yyvsp[0].UInt64Val, OT)); // Add to vector...
yyval.TypeVal = new PATypeHolder(OT);
UR_OUT("New Upreference!\n");
CHECK_FOR_ERROR
;
break;}
case 149:
#line 1349 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// Allow but ignore attributes on function types; this permits auto-upgrade.
// FIXME: remove in LLVM 3.0.
const Type* RetTy = *yyvsp[-4].TypeVal;
if (!(RetTy->isFirstClassType() || RetTy == Type::VoidTy ||
isa<OpaqueType>(RetTy)))
GEN_ERROR("LLVM Functions cannot return aggregates");
std::vector<const Type*> Params;
TypeWithAttrsList::iterator I = yyvsp[-2].TypeWithAttrsList->begin(), E = yyvsp[-2].TypeWithAttrsList->end();
for (; I != E; ++I ) {
const Type *Ty = I->Ty->get();
Params.push_back(Ty);
}
bool isVarArg = Params.size() && Params.back() == Type::VoidTy;
if (isVarArg) Params.pop_back();
for (unsigned i = 0; i != Params.size(); ++i)
if (!(Params[i]->isFirstClassType() || isa<OpaqueType>(Params[i])))
GEN_ERROR("Function arguments must be value types!");
CHECK_FOR_ERROR
FunctionType *FT = FunctionType::get(RetTy, Params, isVarArg);
delete yyvsp[-2].TypeWithAttrsList; // Delete the argument list
delete yyvsp[-4].TypeVal; // Delete the return type handle
yyval.TypeVal = new PATypeHolder(HandleUpRefs(FT));
CHECK_FOR_ERROR
;
break;}
case 150:
#line 1379 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// Allow but ignore attributes on function types; this permits auto-upgrade.
// FIXME: remove in LLVM 3.0.
std::vector<const Type*> Params;
TypeWithAttrsList::iterator I = yyvsp[-2].TypeWithAttrsList->begin(), E = yyvsp[-2].TypeWithAttrsList->end();
for ( ; I != E; ++I ) {
const Type* Ty = I->Ty->get();
Params.push_back(Ty);
}
bool isVarArg = Params.size() && Params.back() == Type::VoidTy;
if (isVarArg) Params.pop_back();
for (unsigned i = 0; i != Params.size(); ++i)
if (!(Params[i]->isFirstClassType() || isa<OpaqueType>(Params[i])))
GEN_ERROR("Function arguments must be value types!");
CHECK_FOR_ERROR
FunctionType *FT = FunctionType::get(yyvsp[-4].PrimType, Params, isVarArg);
delete yyvsp[-2].TypeWithAttrsList; // Delete the argument list
yyval.TypeVal = new PATypeHolder(HandleUpRefs(FT));
CHECK_FOR_ERROR
;
break;}
case 151:
#line 1404 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Sized array type?
yyval.TypeVal = new PATypeHolder(HandleUpRefs(ArrayType::get(*yyvsp[-1].TypeVal, (unsigned)yyvsp[-3].UInt64Val)));
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 152:
#line 1409 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Vector type?
const llvm::Type* ElemTy = yyvsp[-1].TypeVal->get();
if ((unsigned)yyvsp[-3].UInt64Val != yyvsp[-3].UInt64Val)
GEN_ERROR("Unsigned result not equal to signed result");
if (!ElemTy->isFloatingPoint() && !ElemTy->isInteger())
GEN_ERROR("Element type of a VectorType must be primitive");
yyval.TypeVal = new PATypeHolder(HandleUpRefs(VectorType::get(*yyvsp[-1].TypeVal, (unsigned)yyvsp[-3].UInt64Val)));
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 153:
#line 1419 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Structure type?
std::vector<const Type*> Elements;
for (std::list<llvm::PATypeHolder>::iterator I = yyvsp[-1].TypeList->begin(),
E = yyvsp[-1].TypeList->end(); I != E; ++I)
Elements.push_back(*I);
yyval.TypeVal = new PATypeHolder(HandleUpRefs(StructType::get(Elements)));
delete yyvsp[-1].TypeList;
CHECK_FOR_ERROR
;
break;}
case 154:
#line 1429 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Empty structure type?
yyval.TypeVal = new PATypeHolder(StructType::get(std::vector<const Type*>()));
CHECK_FOR_ERROR
;
break;}
case 155:
#line 1433 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
std::vector<const Type*> Elements;
for (std::list<llvm::PATypeHolder>::iterator I = yyvsp[-2].TypeList->begin(),
E = yyvsp[-2].TypeList->end(); I != E; ++I)
Elements.push_back(*I);
yyval.TypeVal = new PATypeHolder(HandleUpRefs(StructType::get(Elements, true)));
delete yyvsp[-2].TypeList;
CHECK_FOR_ERROR
;
break;}
case 156:
#line 1443 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Empty structure type?
yyval.TypeVal = new PATypeHolder(StructType::get(std::vector<const Type*>(), true));
CHECK_FOR_ERROR
;
break;}
case 157:
#line 1450 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// Allow but ignore attributes on function types; this permits auto-upgrade.
// FIXME: remove in LLVM 3.0.
yyval.TypeWithAttrs.Ty = yyvsp[-1].TypeVal;
yyval.TypeWithAttrs.Attrs = ParamAttr::None;
;
break;}
case 158:
#line 1459 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[0].TypeVal)->getDescription());
if (!(*yyvsp[0].TypeVal)->isFirstClassType() && !isa<StructType>(yyvsp[0].TypeVal->get()))
GEN_ERROR("LLVM functions cannot return aggregate types");
yyval.TypeVal = yyvsp[0].TypeVal;
;
break;}
case 159:
#line 1466 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeVal = new PATypeHolder(Type::VoidTy);
;
break;}
case 160:
#line 1471 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeWithAttrsList = new TypeWithAttrsList();
yyval.TypeWithAttrsList->push_back(yyvsp[0].TypeWithAttrs);
CHECK_FOR_ERROR
;
break;}
case 161:
#line 1476 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
(yyval.TypeWithAttrsList=yyvsp[-2].TypeWithAttrsList)->push_back(yyvsp[0].TypeWithAttrs);
CHECK_FOR_ERROR
;
break;}
case 163:
#line 1484 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeWithAttrsList=yyvsp[-2].TypeWithAttrsList;
TypeWithAttrs TWA; TWA.Attrs = ParamAttr::None;
TWA.Ty = new PATypeHolder(Type::VoidTy);
yyval.TypeWithAttrsList->push_back(TWA);
CHECK_FOR_ERROR
;
break;}
case 164:
#line 1491 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeWithAttrsList = new TypeWithAttrsList;
TypeWithAttrs TWA; TWA.Attrs = ParamAttr::None;
TWA.Ty = new PATypeHolder(Type::VoidTy);
yyval.TypeWithAttrsList->push_back(TWA);
CHECK_FOR_ERROR
;
break;}
case 165:
#line 1498 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeWithAttrsList = new TypeWithAttrsList();
CHECK_FOR_ERROR
;
break;}
case 166:
#line 1506 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TypeList = new std::list<PATypeHolder>();
yyval.TypeList->push_back(*yyvsp[0].TypeVal);
delete yyvsp[0].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 167:
#line 1512 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
(yyval.TypeList=yyvsp[-2].TypeList)->push_back(*yyvsp[0].TypeVal);
delete yyvsp[0].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 168:
#line 1524 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Nonempty unsized arr
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
const ArrayType *ATy = dyn_cast<ArrayType>(yyvsp[-3].TypeVal->get());
if (ATy == 0)
GEN_ERROR("Cannot make array constant with type: '" +
(*yyvsp[-3].TypeVal)->getDescription() + "'");
const Type *ETy = ATy->getElementType();
int NumElements = ATy->getNumElements();
// Verify that we have the correct size...
if (NumElements != -1 && NumElements != (int)yyvsp[-1].ConstVector->size())
GEN_ERROR("Type mismatch: constant sized array initialized with " +
utostr(yyvsp[-1].ConstVector->size()) + " arguments, but has size of " +
itostr(NumElements) + "");
// Verify all elements are correct type!
for (unsigned i = 0; i < yyvsp[-1].ConstVector->size(); i++) {
if (ETy != (*yyvsp[-1].ConstVector)[i]->getType())
GEN_ERROR("Element #" + utostr(i) + " is not of type '" +
ETy->getDescription() +"' as required!\nIt is of type '"+
(*yyvsp[-1].ConstVector)[i]->getType()->getDescription() + "'.");
}
yyval.ConstVal = ConstantArray::get(ATy, *yyvsp[-1].ConstVector);
delete yyvsp[-3].TypeVal; delete yyvsp[-1].ConstVector;
CHECK_FOR_ERROR
;
break;}
case 169:
#line 1552 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
const ArrayType *ATy = dyn_cast<ArrayType>(yyvsp[-2].TypeVal->get());
if (ATy == 0)
GEN_ERROR("Cannot make array constant with type: '" +
(*yyvsp[-2].TypeVal)->getDescription() + "'");
int NumElements = ATy->getNumElements();
if (NumElements != -1 && NumElements != 0)
GEN_ERROR("Type mismatch: constant sized array initialized with 0"
" arguments, but has size of " + itostr(NumElements) +"");
yyval.ConstVal = ConstantArray::get(ATy, std::vector<Constant*>());
delete yyvsp[-2].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 170:
#line 1568 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
const ArrayType *ATy = dyn_cast<ArrayType>(yyvsp[-2].TypeVal->get());
if (ATy == 0)
GEN_ERROR("Cannot make array constant with type: '" +
(*yyvsp[-2].TypeVal)->getDescription() + "'");
int NumElements = ATy->getNumElements();
const Type *ETy = ATy->getElementType();
if (NumElements != -1 && NumElements != int(yyvsp[0].StrVal->length()))
GEN_ERROR("Can't build string constant of size " +
itostr((int)(yyvsp[0].StrVal->length())) +
" when array has size " + itostr(NumElements) + "");
std::vector<Constant*> Vals;
if (ETy == Type::Int8Ty) {
for (unsigned i = 0; i < yyvsp[0].StrVal->length(); ++i)
Vals.push_back(ConstantInt::get(ETy, (*yyvsp[0].StrVal)[i]));
} else {
delete yyvsp[0].StrVal;
GEN_ERROR("Cannot build string arrays of non byte sized elements");
}
delete yyvsp[0].StrVal;
yyval.ConstVal = ConstantArray::get(ATy, Vals);
delete yyvsp[-2].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 171:
#line 1595 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Nonempty unsized arr
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
const VectorType *PTy = dyn_cast<VectorType>(yyvsp[-3].TypeVal->get());
if (PTy == 0)
GEN_ERROR("Cannot make packed constant with type: '" +
(*yyvsp[-3].TypeVal)->getDescription() + "'");
const Type *ETy = PTy->getElementType();
int NumElements = PTy->getNumElements();
// Verify that we have the correct size...
if (NumElements != -1 && NumElements != (int)yyvsp[-1].ConstVector->size())
GEN_ERROR("Type mismatch: constant sized packed initialized with " +
utostr(yyvsp[-1].ConstVector->size()) + " arguments, but has size of " +
itostr(NumElements) + "");
// Verify all elements are correct type!
for (unsigned i = 0; i < yyvsp[-1].ConstVector->size(); i++) {
if (ETy != (*yyvsp[-1].ConstVector)[i]->getType())
GEN_ERROR("Element #" + utostr(i) + " is not of type '" +
ETy->getDescription() +"' as required!\nIt is of type '"+
(*yyvsp[-1].ConstVector)[i]->getType()->getDescription() + "'.");
}
yyval.ConstVal = ConstantVector::get(PTy, *yyvsp[-1].ConstVector);
delete yyvsp[-3].TypeVal; delete yyvsp[-1].ConstVector;
CHECK_FOR_ERROR
;
break;}
case 172:
#line 1623 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
const StructType *STy = dyn_cast<StructType>(yyvsp[-3].TypeVal->get());
if (STy == 0)
GEN_ERROR("Cannot make struct constant with type: '" +
(*yyvsp[-3].TypeVal)->getDescription() + "'");
if (yyvsp[-1].ConstVector->size() != STy->getNumContainedTypes())
GEN_ERROR("Illegal number of initializers for structure type");
// Check to ensure that constants are compatible with the type initializer!
for (unsigned i = 0, e = yyvsp[-1].ConstVector->size(); i != e; ++i)
if ((*yyvsp[-1].ConstVector)[i]->getType() != STy->getElementType(i))
GEN_ERROR("Expected type '" +
STy->getElementType(i)->getDescription() +
"' for element #" + utostr(i) +
" of structure initializer");
// Check to ensure that Type is not packed
if (STy->isPacked())
GEN_ERROR("Unpacked Initializer to vector type '" +
STy->getDescription() + "'");
yyval.ConstVal = ConstantStruct::get(STy, *yyvsp[-1].ConstVector);
delete yyvsp[-3].TypeVal; delete yyvsp[-1].ConstVector;
CHECK_FOR_ERROR
;
break;}
case 173:
#line 1649 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
const StructType *STy = dyn_cast<StructType>(yyvsp[-2].TypeVal->get());
if (STy == 0)
GEN_ERROR("Cannot make struct constant with type: '" +
(*yyvsp[-2].TypeVal)->getDescription() + "'");
if (STy->getNumContainedTypes() != 0)
GEN_ERROR("Illegal number of initializers for structure type");
// Check to ensure that Type is not packed
if (STy->isPacked())
GEN_ERROR("Unpacked Initializer to vector type '" +
STy->getDescription() + "'");
yyval.ConstVal = ConstantStruct::get(STy, std::vector<Constant*>());
delete yyvsp[-2].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 174:
#line 1669 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
const StructType *STy = dyn_cast<StructType>(yyvsp[-5].TypeVal->get());
if (STy == 0)
GEN_ERROR("Cannot make struct constant with type: '" +
(*yyvsp[-5].TypeVal)->getDescription() + "'");
if (yyvsp[-2].ConstVector->size() != STy->getNumContainedTypes())
GEN_ERROR("Illegal number of initializers for structure type");
// Check to ensure that constants are compatible with the type initializer!
for (unsigned i = 0, e = yyvsp[-2].ConstVector->size(); i != e; ++i)
if ((*yyvsp[-2].ConstVector)[i]->getType() != STy->getElementType(i))
GEN_ERROR("Expected type '" +
STy->getElementType(i)->getDescription() +
"' for element #" + utostr(i) +
" of structure initializer");
// Check to ensure that Type is packed
if (!STy->isPacked())
GEN_ERROR("Vector initializer to non-vector type '" +
STy->getDescription() + "'");
yyval.ConstVal = ConstantStruct::get(STy, *yyvsp[-2].ConstVector);
delete yyvsp[-5].TypeVal; delete yyvsp[-2].ConstVector;
CHECK_FOR_ERROR
;
break;}
case 175:
#line 1695 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-4].TypeVal)->getDescription());
const StructType *STy = dyn_cast<StructType>(yyvsp[-4].TypeVal->get());
if (STy == 0)
GEN_ERROR("Cannot make struct constant with type: '" +
(*yyvsp[-4].TypeVal)->getDescription() + "'");
if (STy->getNumContainedTypes() != 0)
GEN_ERROR("Illegal number of initializers for structure type");
// Check to ensure that Type is packed
if (!STy->isPacked())
GEN_ERROR("Vector initializer to non-vector type '" +
STy->getDescription() + "'");
yyval.ConstVal = ConstantStruct::get(STy, std::vector<Constant*>());
delete yyvsp[-4].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 176:
#line 1715 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
const PointerType *PTy = dyn_cast<PointerType>(yyvsp[-1].TypeVal->get());
if (PTy == 0)
GEN_ERROR("Cannot make null pointer constant with type: '" +
(*yyvsp[-1].TypeVal)->getDescription() + "'");
yyval.ConstVal = ConstantPointerNull::get(PTy);
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 177:
#line 1727 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
yyval.ConstVal = UndefValue::get(yyvsp[-1].TypeVal->get());
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 178:
#line 1734 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
const PointerType *Ty = dyn_cast<PointerType>(yyvsp[-1].TypeVal->get());
if (Ty == 0)
GEN_ERROR("Global const reference must be a pointer type " + (*yyvsp[-1].TypeVal)->getDescription());
// ConstExprs can exist in the body of a function, thus creating
// GlobalValues whenever they refer to a variable. Because we are in
// the context of a function, getExistingVal will search the functions
// symbol table instead of the module symbol table for the global symbol,
// which throws things all off. To get around this, we just tell
// getExistingVal that we are at global scope here.
//
Function *SavedCurFn = CurFun.CurrentFunction;
CurFun.CurrentFunction = 0;
Value *V = getExistingVal(Ty, yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
CurFun.CurrentFunction = SavedCurFn;
// If this is an initializer for a constant pointer, which is referencing a
// (currently) undefined variable, create a stub now that shall be replaced
// in the future with the right type of variable.
//
if (V == 0) {
assert(isa<PointerType>(Ty) && "Globals may only be used as pointers!");
const PointerType *PT = cast<PointerType>(Ty);
// First check to see if the forward references value is already created!
PerModuleInfo::GlobalRefsType::iterator I =
CurModule.GlobalRefs.find(std::make_pair(PT, yyvsp[0].ValIDVal));
if (I != CurModule.GlobalRefs.end()) {
V = I->second; // Placeholder already exists, use it...
yyvsp[0].ValIDVal.destroy();
} else {
std::string Name;
if (yyvsp[0].ValIDVal.Type == ValID::GlobalName)
Name = yyvsp[0].ValIDVal.getName();
else if (yyvsp[0].ValIDVal.Type != ValID::GlobalID)
GEN_ERROR("Invalid reference to global");
// Create the forward referenced global.
GlobalValue *GV;
if (const FunctionType *FTy =
dyn_cast<FunctionType>(PT->getElementType())) {
GV = Function::Create(FTy, GlobalValue::ExternalWeakLinkage, Name,
CurModule.CurrentModule);
} else {
GV = new GlobalVariable(PT->getElementType(), false,
GlobalValue::ExternalWeakLinkage, 0,
Name, CurModule.CurrentModule);
}
// Keep track of the fact that we have a forward ref to recycle it
CurModule.GlobalRefs.insert(std::make_pair(std::make_pair(PT, yyvsp[0].ValIDVal), GV));
V = GV;
}
}
yyval.ConstVal = cast<GlobalValue>(V);
delete yyvsp[-1].TypeVal; // Free the type handle
CHECK_FOR_ERROR
;
break;}
case 179:
#line 1800 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
if (yyvsp[-1].TypeVal->get() != yyvsp[0].ConstVal->getType())
GEN_ERROR("Mismatched types for constant expression: " +
(*yyvsp[-1].TypeVal)->getDescription() + " and " + yyvsp[0].ConstVal->getType()->getDescription());
yyval.ConstVal = yyvsp[0].ConstVal;
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 180:
#line 1810 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
const Type *Ty = yyvsp[-1].TypeVal->get();
if (isa<FunctionType>(Ty) || Ty == Type::LabelTy || isa<OpaqueType>(Ty))
GEN_ERROR("Cannot create a null initialized value of this type");
yyval.ConstVal = Constant::getNullValue(Ty);
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 181:
#line 1820 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // integral constants
if (!ConstantInt::isValueValidForType(yyvsp[-1].PrimType, yyvsp[0].SInt64Val))
GEN_ERROR("Constant value doesn't fit in type");
yyval.ConstVal = ConstantInt::get(yyvsp[-1].PrimType, yyvsp[0].SInt64Val, true);
CHECK_FOR_ERROR
;
break;}
case 182:
#line 1826 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // arbitrary precision integer constants
uint32_t BitWidth = cast<IntegerType>(yyvsp[-1].PrimType)->getBitWidth();
if (yyvsp[0].APIntVal->getBitWidth() > BitWidth) {
GEN_ERROR("Constant value does not fit in type");
}
yyvsp[0].APIntVal->sextOrTrunc(BitWidth);
yyval.ConstVal = ConstantInt::get(*yyvsp[0].APIntVal);
delete yyvsp[0].APIntVal;
CHECK_FOR_ERROR
;
break;}
case 183:
#line 1836 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // integral constants
if (!ConstantInt::isValueValidForType(yyvsp[-1].PrimType, yyvsp[0].UInt64Val))
GEN_ERROR("Constant value doesn't fit in type");
yyval.ConstVal = ConstantInt::get(yyvsp[-1].PrimType, yyvsp[0].UInt64Val, false);
CHECK_FOR_ERROR
;
break;}
case 184:
#line 1842 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // arbitrary precision integer constants
uint32_t BitWidth = cast<IntegerType>(yyvsp[-1].PrimType)->getBitWidth();
if (yyvsp[0].APIntVal->getBitWidth() > BitWidth) {
GEN_ERROR("Constant value does not fit in type");
}
yyvsp[0].APIntVal->zextOrTrunc(BitWidth);
yyval.ConstVal = ConstantInt::get(*yyvsp[0].APIntVal);
delete yyvsp[0].APIntVal;
CHECK_FOR_ERROR
;
break;}
case 185:
#line 1852 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Boolean constants
assert(cast<IntegerType>(yyvsp[-1].PrimType)->getBitWidth() == 1 && "Not Bool?");
yyval.ConstVal = ConstantInt::getTrue();
CHECK_FOR_ERROR
;
break;}
case 186:
#line 1857 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Boolean constants
assert(cast<IntegerType>(yyvsp[-1].PrimType)->getBitWidth() == 1 && "Not Bool?");
yyval.ConstVal = ConstantInt::getFalse();
CHECK_FOR_ERROR
;
break;}
case 187:
#line 1862 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Floating point constants
if (!ConstantFP::isValueValidForType(yyvsp[-1].PrimType, *yyvsp[0].FPVal))
GEN_ERROR("Floating point constant invalid for type");
// Lexer has no type info, so builds all float and double FP constants
// as double. Fix this here. Long double is done right.
if (&yyvsp[0].FPVal->getSemantics()==&APFloat::IEEEdouble && yyvsp[-1].PrimType==Type::FloatTy)
yyvsp[0].FPVal->convert(APFloat::IEEEsingle, APFloat::rmNearestTiesToEven);
yyval.ConstVal = ConstantFP::get(yyvsp[-1].PrimType, *yyvsp[0].FPVal);
delete yyvsp[0].FPVal;
CHECK_FOR_ERROR
;
break;}
case 188:
#line 1875 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
Constant *Val = yyvsp[-3].ConstVal;
const Type *DestTy = yyvsp[-1].TypeVal->get();
if (!CastInst::castIsValid(yyvsp[-5].CastOpVal, yyvsp[-3].ConstVal, DestTy))
GEN_ERROR("invalid cast opcode for cast from '" +
Val->getType()->getDescription() + "' to '" +
DestTy->getDescription() + "'");
yyval.ConstVal = ConstantExpr::getCast(yyvsp[-5].CastOpVal, yyvsp[-3].ConstVal, DestTy);
delete yyvsp[-1].TypeVal;
;
break;}
case 189:
#line 1887 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!isa<PointerType>(yyvsp[-2].ConstVal->getType()))
GEN_ERROR("GetElementPtr requires a pointer operand");
const Type *IdxTy =
GetElementPtrInst::getIndexedType(yyvsp[-2].ConstVal->getType(), yyvsp[-1].ValueList->begin(), yyvsp[-1].ValueList->end(),
true);
if (!IdxTy)
GEN_ERROR("Index list invalid for constant getelementptr");
SmallVector<Constant*, 8> IdxVec;
for (unsigned i = 0, e = yyvsp[-1].ValueList->size(); i != e; ++i)
if (Constant *C = dyn_cast<Constant>((*yyvsp[-1].ValueList)[i]))
IdxVec.push_back(C);
else
GEN_ERROR("Indices to constant getelementptr must be constants");
delete yyvsp[-1].ValueList;
yyval.ConstVal = ConstantExpr::getGetElementPtr(yyvsp[-2].ConstVal, &IdxVec[0], IdxVec.size());
CHECK_FOR_ERROR
;
break;}
case 190:
#line 1909 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[-5].ConstVal->getType() != Type::Int1Ty)
GEN_ERROR("Select condition must be of boolean type");
if (yyvsp[-3].ConstVal->getType() != yyvsp[-1].ConstVal->getType())
GEN_ERROR("Select operand types must match");
yyval.ConstVal = ConstantExpr::getSelect(yyvsp[-5].ConstVal, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 191:
#line 1917 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[-3].ConstVal->getType() != yyvsp[-1].ConstVal->getType())
GEN_ERROR("Binary operator types must match");
CHECK_FOR_ERROR;
yyval.ConstVal = ConstantExpr::get(yyvsp[-5].BinaryOpVal, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
;
break;}
case 192:
#line 1923 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[-3].ConstVal->getType() != yyvsp[-1].ConstVal->getType())
GEN_ERROR("Logical operator types must match");
if (!yyvsp[-3].ConstVal->getType()->isInteger()) {
if (Instruction::isShift(yyvsp[-5].BinaryOpVal) || !isa<VectorType>(yyvsp[-3].ConstVal->getType()) ||
!cast<VectorType>(yyvsp[-3].ConstVal->getType())->getElementType()->isInteger())
GEN_ERROR("Logical operator requires integral operands");
}
yyval.ConstVal = ConstantExpr::get(yyvsp[-5].BinaryOpVal, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 193:
#line 1934 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[-3].ConstVal->getType() != yyvsp[-1].ConstVal->getType())
GEN_ERROR("icmp operand types must match");
yyval.ConstVal = ConstantExpr::getICmp(yyvsp[-5].IPredicate, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
;
break;}
case 194:
#line 1939 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[-3].ConstVal->getType() != yyvsp[-1].ConstVal->getType())
GEN_ERROR("fcmp operand types must match");
yyval.ConstVal = ConstantExpr::getFCmp(yyvsp[-5].FPredicate, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
;
break;}
case 195:
#line 1944 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!ExtractElementInst::isValidOperands(yyvsp[-3].ConstVal, yyvsp[-1].ConstVal))
GEN_ERROR("Invalid extractelement operands");
yyval.ConstVal = ConstantExpr::getExtractElement(yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 196:
#line 1950 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!InsertElementInst::isValidOperands(yyvsp[-5].ConstVal, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal))
GEN_ERROR("Invalid insertelement operands");
yyval.ConstVal = ConstantExpr::getInsertElement(yyvsp[-5].ConstVal, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 197:
#line 1956 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!ShuffleVectorInst::isValidOperands(yyvsp[-5].ConstVal, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal))
GEN_ERROR("Invalid shufflevector operands");
yyval.ConstVal = ConstantExpr::getShuffleVector(yyvsp[-5].ConstVal, yyvsp[-3].ConstVal, yyvsp[-1].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 198:
#line 1965 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
(yyval.ConstVector = yyvsp[-2].ConstVector)->push_back(yyvsp[0].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 199:
#line 1969 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ConstVector = new std::vector<Constant*>();
yyval.ConstVector->push_back(yyvsp[0].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 200:
#line 1977 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.BoolVal = false; ;
break;}
case 201:
#line 1977 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.BoolVal = true; ;
break;}
case 202:
#line 1980 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.BoolVal = true; ;
break;}
case 203:
#line 1980 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.BoolVal = false; ;
break;}
case 204:
#line 1983 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
const Type* VTy = yyvsp[-1].TypeVal->get();
Value *V = getVal(VTy, yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
GlobalValue* Aliasee = dyn_cast<GlobalValue>(V);
if (!Aliasee)
GEN_ERROR("Aliases can be created only to global values");
yyval.ConstVal = Aliasee;
CHECK_FOR_ERROR
delete yyvsp[-1].TypeVal;
;
break;}
case 205:
#line 1995 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
Constant *Val = yyvsp[-3].ConstVal;
const Type *DestTy = yyvsp[-1].TypeVal->get();
if (!CastInst::castIsValid(yyvsp[-5].CastOpVal, yyvsp[-3].ConstVal, DestTy))
GEN_ERROR("invalid cast opcode for cast from '" +
Val->getType()->getDescription() + "' to '" +
DestTy->getDescription() + "'");
yyval.ConstVal = ConstantExpr::getCast(yyvsp[-5].CastOpVal, yyvsp[-3].ConstVal, DestTy);
CHECK_FOR_ERROR
delete yyvsp[-1].TypeVal;
;
break;}
case 206:
#line 2016 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ModuleVal = ParserResult = CurModule.CurrentModule;
CurModule.ModuleDone();
CHECK_FOR_ERROR;
;
break;}
case 207:
#line 2021 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ModuleVal = ParserResult = CurModule.CurrentModule;
CurModule.ModuleDone();
CHECK_FOR_ERROR;
;
break;}
case 210:
#line 2034 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ CurFun.isDeclare = false; ;
break;}
case 211:
#line 2034 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurFun.FunctionDone();
CHECK_FOR_ERROR
;
break;}
case 212:
#line 2038 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ CurFun.isDeclare = true; ;
break;}
case 213:
#line 2038 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CHECK_FOR_ERROR
;
break;}
case 214:
#line 2041 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CHECK_FOR_ERROR
;
break;}
case 215:
#line 2044 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[0].TypeVal)->getDescription());
// Eagerly resolve types. This is not an optimization, this is a
// requirement that is due to the fact that we could have this:
//
// %list = type { %list * }
// %list = type { %list * } ; repeated type decl
//
// If types are not resolved eagerly, then the two types will not be
// determined to be the same type!
//
ResolveTypeTo(yyvsp[-2].StrVal, *yyvsp[0].TypeVal);
if (!setTypeName(*yyvsp[0].TypeVal, yyvsp[-2].StrVal) && !yyvsp[-2].StrVal) {
CHECK_FOR_ERROR
// If this is a named type that is not a redefinition, add it to the slot
// table.
CurModule.Types.push_back(*yyvsp[0].TypeVal);
}
delete yyvsp[0].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 216:
#line 2068 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
ResolveTypeTo(yyvsp[-2].StrVal, yyvsp[0].PrimType);
if (!setTypeName(yyvsp[0].PrimType, yyvsp[-2].StrVal) && !yyvsp[-2].StrVal) {
CHECK_FOR_ERROR
// If this is a named type that is not a redefinition, add it to the slot
// table.
CurModule.Types.push_back(yyvsp[0].PrimType);
}
CHECK_FOR_ERROR
;
break;}
case 217:
#line 2080 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
/* "Externally Visible" Linkage */
if (yyvsp[-1].ConstVal == 0)
GEN_ERROR("Global value initializer is not a constant");
CurGV = ParseGlobalVariable(yyvsp[-5].StrVal, GlobalValue::ExternalLinkage,
yyvsp[-4].Visibility, yyvsp[-2].BoolVal, yyvsp[-1].ConstVal->getType(), yyvsp[-1].ConstVal, yyvsp[-3].BoolVal, yyvsp[0].UIntVal);
CHECK_FOR_ERROR
;
break;}
case 218:
#line 2087 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurGV = 0;
;
break;}
case 219:
#line 2091 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[-1].ConstVal == 0)
GEN_ERROR("Global value initializer is not a constant");
CurGV = ParseGlobalVariable(yyvsp[-6].StrVal, yyvsp[-5].Linkage, yyvsp[-4].Visibility, yyvsp[-2].BoolVal, yyvsp[-1].ConstVal->getType(), yyvsp[-1].ConstVal, yyvsp[-3].BoolVal, yyvsp[0].UIntVal);
CHECK_FOR_ERROR
;
break;}
case 220:
#line 2096 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurGV = 0;
;
break;}
case 221:
#line 2100 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
CurGV = ParseGlobalVariable(yyvsp[-6].StrVal, yyvsp[-5].Linkage, yyvsp[-4].Visibility, yyvsp[-2].BoolVal, *yyvsp[-1].TypeVal, 0, yyvsp[-3].BoolVal, yyvsp[0].UIntVal);
CHECK_FOR_ERROR
delete yyvsp[-1].TypeVal;
;
break;}
case 222:
#line 2106 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurGV = 0;
CHECK_FOR_ERROR
;
break;}
case 223:
#line 2110 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
std::string Name;
if (yyvsp[-4].StrVal) {
Name = *yyvsp[-4].StrVal;
delete yyvsp[-4].StrVal;
}
if (Name.empty())
GEN_ERROR("Alias name cannot be empty");
Constant* Aliasee = yyvsp[0].ConstVal;
if (Aliasee == 0)
GEN_ERROR(std::string("Invalid aliasee for alias: ") + Name);
GlobalAlias* GA = new GlobalAlias(Aliasee->getType(), yyvsp[-1].Linkage, Name, Aliasee,
CurModule.CurrentModule);
GA->setVisibility(yyvsp[-3].Visibility);
InsertValue(GA, CurModule.Values);
// If there was a forward reference of this alias, resolve it now.
ValID ID;
if (!Name.empty())
ID = ValID::createGlobalName(Name);
else
ID = ValID::createGlobalID(CurModule.Values.size()-1);
if (GlobalValue *FWGV =
CurModule.GetForwardRefForGlobal(GA->getType(), ID)) {
// Replace uses of the fwdref with the actual alias.
FWGV->replaceAllUsesWith(GA);
if (GlobalVariable *GV = dyn_cast<GlobalVariable>(FWGV))
GV->eraseFromParent();
else
cast<Function>(FWGV)->eraseFromParent();
}
ID.destroy();
CHECK_FOR_ERROR
;
break;}
case 224:
#line 2150 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CHECK_FOR_ERROR
;
break;}
case 225:
#line 2153 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CHECK_FOR_ERROR
;
break;}
case 226:
#line 2159 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
const std::string &AsmSoFar = CurModule.CurrentModule->getModuleInlineAsm();
if (AsmSoFar.empty())
CurModule.CurrentModule->setModuleInlineAsm(*yyvsp[0].StrVal);
else
CurModule.CurrentModule->setModuleInlineAsm(AsmSoFar+"\n"+*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 227:
#line 2169 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurModule.CurrentModule->setTargetTriple(*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
;
break;}
case 228:
#line 2173 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurModule.CurrentModule->setDataLayout(*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
;
break;}
case 230:
#line 2180 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurModule.CurrentModule->addLibrary(*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 231:
#line 2185 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurModule.CurrentModule->addLibrary(*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 232:
#line 2190 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CHECK_FOR_ERROR
;
break;}
case 233:
#line 2199 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
if (*yyvsp[-2].TypeVal == Type::VoidTy)
GEN_ERROR("void typed arguments are invalid");
ArgListEntry E; E.Attrs = yyvsp[-1].ParamAttrs; E.Ty = yyvsp[-2].TypeVal; E.Name = yyvsp[0].StrVal;
yyval.ArgList = yyvsp[-4].ArgList;
yyvsp[-4].ArgList->push_back(E);
CHECK_FOR_ERROR
;
break;}
case 234:
#line 2209 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
if (*yyvsp[-2].TypeVal == Type::VoidTy)
GEN_ERROR("void typed arguments are invalid");
ArgListEntry E; E.Attrs = yyvsp[-1].ParamAttrs; E.Ty = yyvsp[-2].TypeVal; E.Name = yyvsp[0].StrVal;
yyval.ArgList = new ArgListType;
yyval.ArgList->push_back(E);
CHECK_FOR_ERROR
;
break;}
case 235:
#line 2220 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ArgList = yyvsp[0].ArgList;
CHECK_FOR_ERROR
;
break;}
case 236:
#line 2224 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ArgList = yyvsp[-2].ArgList;
struct ArgListEntry E;
E.Ty = new PATypeHolder(Type::VoidTy);
E.Name = 0;
E.Attrs = ParamAttr::None;
yyval.ArgList->push_back(E);
CHECK_FOR_ERROR
;
break;}
case 237:
#line 2233 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ArgList = new ArgListType;
struct ArgListEntry E;
E.Ty = new PATypeHolder(Type::VoidTy);
E.Name = 0;
E.Attrs = ParamAttr::None;
yyval.ArgList->push_back(E);
CHECK_FOR_ERROR
;
break;}
case 238:
#line 2242 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ArgList = 0;
CHECK_FOR_ERROR
;
break;}
case 239:
#line 2248 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
std::string FunctionName(*yyvsp[-7].StrVal);
delete yyvsp[-7].StrVal; // Free strdup'd memory!
// Check the function result for abstractness if this is a define. We should
// have no abstract types at this point
if (!CurFun.isDeclare && CurModule.TypeIsUnresolved(yyvsp[-8].TypeVal))
GEN_ERROR("Reference to abstract result: "+ yyvsp[-8].TypeVal->get()->getDescription());
std::vector<const Type*> ParamTypeList;
SmallVector<ParamAttrsWithIndex, 8> Attrs;
if (yyvsp[-3].ParamAttrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(0, yyvsp[-3].ParamAttrs));
if (yyvsp[-5].ArgList) { // If there are arguments...
unsigned index = 1;
for (ArgListType::iterator I = yyvsp[-5].ArgList->begin(); I != yyvsp[-5].ArgList->end(); ++I, ++index) {
const Type* Ty = I->Ty->get();
if (!CurFun.isDeclare && CurModule.TypeIsUnresolved(I->Ty))
GEN_ERROR("Reference to abstract argument: " + Ty->getDescription());
ParamTypeList.push_back(Ty);
if (Ty != Type::VoidTy && I->Attrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(index, I->Attrs));
}
}
bool isVarArg = ParamTypeList.size() && ParamTypeList.back() == Type::VoidTy;
if (isVarArg) ParamTypeList.pop_back();
PAListPtr PAL;
if (!Attrs.empty())
PAL = PAListPtr::get(Attrs.begin(), Attrs.end());
FunctionType *FT = FunctionType::get(*yyvsp[-8].TypeVal, ParamTypeList, isVarArg);
const PointerType *PFT = PointerType::getUnqual(FT);
delete yyvsp[-8].TypeVal;
ValID ID;
if (!FunctionName.empty()) {
ID = ValID::createGlobalName((char*)FunctionName.c_str());
} else {
ID = ValID::createGlobalID(CurModule.Values.size());
}
Function *Fn = 0;
// See if this function was forward referenced. If so, recycle the object.
if (GlobalValue *FWRef = CurModule.GetForwardRefForGlobal(PFT, ID)) {
// Move the function to the end of the list, from whereever it was
// previously inserted.
Fn = cast<Function>(FWRef);
assert(Fn->getParamAttrs().isEmpty() &&
"Forward reference has parameter attributes!");
CurModule.CurrentModule->getFunctionList().remove(Fn);
CurModule.CurrentModule->getFunctionList().push_back(Fn);
} else if (!FunctionName.empty() && // Merge with an earlier prototype?
(Fn = CurModule.CurrentModule->getFunction(FunctionName))) {
if (Fn->getFunctionType() != FT ) {
// The existing function doesn't have the same type. This is an overload
// error.
GEN_ERROR("Overload of function '" + FunctionName + "' not permitted.");
} else if (Fn->getParamAttrs() != PAL) {
// The existing function doesn't have the same parameter attributes.
// This is an overload error.
GEN_ERROR("Overload of function '" + FunctionName + "' not permitted.");
} else if (!CurFun.isDeclare && !Fn->isDeclaration()) {
// Neither the existing or the current function is a declaration and they
// have the same name and same type. Clearly this is a redefinition.
GEN_ERROR("Redefinition of function '" + FunctionName + "'");
} else if (Fn->isDeclaration()) {
// Make sure to strip off any argument names so we can't get conflicts.
for (Function::arg_iterator AI = Fn->arg_begin(), AE = Fn->arg_end();
AI != AE; ++AI)
AI->setName("");
}
} else { // Not already defined?
Fn = Function::Create(FT, GlobalValue::ExternalWeakLinkage, FunctionName,
CurModule.CurrentModule);
InsertValue(Fn, CurModule.Values);
}
CurFun.FunctionStart(Fn);
if (CurFun.isDeclare) {
// If we have declaration, always overwrite linkage. This will allow us to
// correctly handle cases, when pointer to function is passed as argument to
// another function.
Fn->setLinkage(CurFun.Linkage);
Fn->setVisibility(CurFun.Visibility);
}
Fn->setCallingConv(yyvsp[-9].UIntVal);
Fn->setParamAttrs(PAL);
Fn->setAlignment(yyvsp[-1].UIntVal);
if (yyvsp[-2].StrVal) {
Fn->setSection(*yyvsp[-2].StrVal);
delete yyvsp[-2].StrVal;
}
if (yyvsp[0].StrVal) {
Fn->setCollector(yyvsp[0].StrVal->c_str());
delete yyvsp[0].StrVal;
}
// Add all of the arguments we parsed to the function...
if (yyvsp[-5].ArgList) { // Is null if empty...
if (isVarArg) { // Nuke the last entry
assert(yyvsp[-5].ArgList->back().Ty->get() == Type::VoidTy && yyvsp[-5].ArgList->back().Name == 0 &&
"Not a varargs marker!");
delete yyvsp[-5].ArgList->back().Ty;
yyvsp[-5].ArgList->pop_back(); // Delete the last entry
}
Function::arg_iterator ArgIt = Fn->arg_begin();
Function::arg_iterator ArgEnd = Fn->arg_end();
unsigned Idx = 1;
for (ArgListType::iterator I = yyvsp[-5].ArgList->begin();
I != yyvsp[-5].ArgList->end() && ArgIt != ArgEnd; ++I, ++ArgIt) {
delete I->Ty; // Delete the typeholder...
setValueName(ArgIt, I->Name); // Insert arg into symtab...
CHECK_FOR_ERROR
InsertValue(ArgIt);
Idx++;
}
delete yyvsp[-5].ArgList; // We're now done with the argument list
}
CHECK_FOR_ERROR
;
break;}
case 242:
#line 2375 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.FunctionVal = CurFun.CurrentFunction;
// Make sure that we keep track of the linkage type even if there was a
// previous "declare".
yyval.FunctionVal->setLinkage(yyvsp[-3].Linkage);
yyval.FunctionVal->setVisibility(yyvsp[-2].Visibility);
;
break;}
case 245:
#line 2386 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.FunctionVal = yyvsp[-1].FunctionVal;
CHECK_FOR_ERROR
;
break;}
case 246:
#line 2391 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
CurFun.CurrentFunction->setLinkage(yyvsp[-2].Linkage);
CurFun.CurrentFunction->setVisibility(yyvsp[-1].Visibility);
yyval.FunctionVal = CurFun.CurrentFunction;
CurFun.FunctionDone();
CHECK_FOR_ERROR
;
break;}
case 247:
#line 2403 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.BoolVal = false;
CHECK_FOR_ERROR
;
break;}
case 248:
#line 2407 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.BoolVal = true;
CHECK_FOR_ERROR
;
break;}
case 249:
#line 2412 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // A reference to a direct constant
yyval.ValIDVal = ValID::create(yyvsp[0].SInt64Val);
CHECK_FOR_ERROR
;
break;}
case 250:
#line 2416 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::create(yyvsp[0].UInt64Val);
CHECK_FOR_ERROR
;
break;}
case 251:
#line 2420 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Perhaps it's an FP constant?
yyval.ValIDVal = ValID::create(yyvsp[0].FPVal);
CHECK_FOR_ERROR
;
break;}
case 252:
#line 2424 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::create(ConstantInt::getTrue());
CHECK_FOR_ERROR
;
break;}
case 253:
#line 2428 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::create(ConstantInt::getFalse());
CHECK_FOR_ERROR
;
break;}
case 254:
#line 2432 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::createNull();
CHECK_FOR_ERROR
;
break;}
case 255:
#line 2436 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::createUndef();
CHECK_FOR_ERROR
;
break;}
case 256:
#line 2440 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // A vector zero constant.
yyval.ValIDVal = ValID::createZeroInit();
CHECK_FOR_ERROR
;
break;}
case 257:
#line 2444 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Nonempty unsized packed vector
const Type *ETy = (*yyvsp[-1].ConstVector)[0]->getType();
int NumElements = yyvsp[-1].ConstVector->size();
VectorType* pt = VectorType::get(ETy, NumElements);
PATypeHolder* PTy = new PATypeHolder(
HandleUpRefs(
VectorType::get(
ETy,
NumElements)
)
);
// Verify all elements are correct type!
for (unsigned i = 0; i < yyvsp[-1].ConstVector->size(); i++) {
if (ETy != (*yyvsp[-1].ConstVector)[i]->getType())
GEN_ERROR("Element #" + utostr(i) + " is not of type '" +
ETy->getDescription() +"' as required!\nIt is of type '" +
(*yyvsp[-1].ConstVector)[i]->getType()->getDescription() + "'.");
}
yyval.ValIDVal = ValID::create(ConstantVector::get(pt, *yyvsp[-1].ConstVector));
delete PTy; delete yyvsp[-1].ConstVector;
CHECK_FOR_ERROR
;
break;}
case 258:
#line 2469 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::create(yyvsp[0].ConstVal);
CHECK_FOR_ERROR
;
break;}
case 259:
#line 2473 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::createInlineAsm(*yyvsp[-2].StrVal, *yyvsp[0].StrVal, yyvsp[-3].BoolVal);
delete yyvsp[-2].StrVal;
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 260:
#line 2483 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Is it an integer reference...?
yyval.ValIDVal = ValID::createLocalID(yyvsp[0].UIntVal);
CHECK_FOR_ERROR
;
break;}
case 261:
#line 2487 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValIDVal = ValID::createGlobalID(yyvsp[0].UIntVal);
CHECK_FOR_ERROR
;
break;}
case 262:
#line 2491 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Is it a named reference...?
yyval.ValIDVal = ValID::createLocalName(*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 263:
#line 2496 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Is it a named reference...?
yyval.ValIDVal = ValID::createGlobalName(*yyvsp[0].StrVal);
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 266:
#line 2509 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
yyval.ValueVal = getVal(*yyvsp[-1].TypeVal, yyvsp[0].ValIDVal);
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 267:
#line 2518 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValueList = new std::vector<Value *>();
yyval.ValueList->push_back(yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 268:
#line 2523 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
(yyval.ValueList=yyvsp[-2].ValueList)->push_back(yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 269:
#line 2528 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.FunctionVal = yyvsp[-1].FunctionVal;
CHECK_FOR_ERROR
;
break;}
case 270:
#line 2532 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Do not allow functions with 0 basic blocks
yyval.FunctionVal = yyvsp[-1].FunctionVal;
CHECK_FOR_ERROR
;
break;}
case 271:
#line 2541 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
setValueName(yyvsp[0].TermInstVal, yyvsp[-1].StrVal);
CHECK_FOR_ERROR
InsertValue(yyvsp[0].TermInstVal);
yyvsp[-2].BasicBlockVal->getInstList().push_back(yyvsp[0].TermInstVal);
yyval.BasicBlockVal = yyvsp[-2].BasicBlockVal;
CHECK_FOR_ERROR
;
break;}
case 272:
#line 2550 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (CastInst *CI1 = dyn_cast<CastInst>(yyvsp[0].InstVal))
if (CastInst *CI2 = dyn_cast<CastInst>(CI1->getOperand(0)))
if (CI2->getParent() == 0)
yyvsp[-1].BasicBlockVal->getInstList().push_back(CI2);
yyvsp[-1].BasicBlockVal->getInstList().push_back(yyvsp[0].InstVal);
yyval.BasicBlockVal = yyvsp[-1].BasicBlockVal;
CHECK_FOR_ERROR
;
break;}
case 273:
#line 2559 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Empty space between instruction lists
yyval.BasicBlockVal = defineBBVal(ValID::createLocalID(CurFun.NextValNum), 0);
CHECK_FOR_ERROR
;
break;}
case 274:
#line 2563 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Only the unwind to block
yyval.BasicBlockVal = defineBBVal(ValID::createLocalID(CurFun.NextValNum), getBBVal(yyvsp[0].ValIDVal));
CHECK_FOR_ERROR
;
break;}
case 275:
#line 2567 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Labelled (named) basic block
yyval.BasicBlockVal = defineBBVal(ValID::createLocalName(*yyvsp[0].StrVal), 0);
delete yyvsp[0].StrVal;
CHECK_FOR_ERROR
;
break;}
case 276:
#line 2572 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.BasicBlockVal = defineBBVal(ValID::createLocalName(*yyvsp[-3].StrVal), getBBVal(yyvsp[0].ValIDVal));
delete yyvsp[-3].StrVal;
CHECK_FOR_ERROR
;
break;}
case 277:
#line 2579 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Return with a result...
ValueList &VL = *yyvsp[0].ValueList;
assert(!VL.empty() && "Invalid ret operands!");
yyval.TermInstVal = ReturnInst::Create(&VL[0], VL.size());
delete yyvsp[0].ValueList;
CHECK_FOR_ERROR
;
break;}
case 278:
#line 2586 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Return with no result...
yyval.TermInstVal = ReturnInst::Create();
CHECK_FOR_ERROR
;
break;}
case 279:
#line 2590 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Unconditional Branch...
BasicBlock* tmpBB = getBBVal(yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.TermInstVal = BranchInst::Create(tmpBB);
;
break;}
case 280:
#line 2595 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
assert(cast<IntegerType>(yyvsp[-7].PrimType)->getBitWidth() == 1 && "Not Bool?");
BasicBlock* tmpBBA = getBBVal(yyvsp[-3].ValIDVal);
CHECK_FOR_ERROR
BasicBlock* tmpBBB = getBBVal(yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
Value* tmpVal = getVal(Type::Int1Ty, yyvsp[-6].ValIDVal);
CHECK_FOR_ERROR
yyval.TermInstVal = BranchInst::Create(tmpBBA, tmpBBB, tmpVal);
;
break;}
case 281:
#line 2605 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
Value* tmpVal = getVal(yyvsp[-7].PrimType, yyvsp[-6].ValIDVal);
CHECK_FOR_ERROR
BasicBlock* tmpBB = getBBVal(yyvsp[-3].ValIDVal);
CHECK_FOR_ERROR
SwitchInst *S = SwitchInst::Create(tmpVal, tmpBB, yyvsp[-1].JumpTable->size());
yyval.TermInstVal = S;
std::vector<std::pair<Constant*,BasicBlock*> >::iterator I = yyvsp[-1].JumpTable->begin(),
E = yyvsp[-1].JumpTable->end();
for (; I != E; ++I) {
if (ConstantInt *CI = dyn_cast<ConstantInt>(I->first))
S->addCase(CI, I->second);
else
GEN_ERROR("Switch case is constant, but not a simple integer");
}
delete yyvsp[-1].JumpTable;
CHECK_FOR_ERROR
;
break;}
case 282:
#line 2624 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
Value* tmpVal = getVal(yyvsp[-6].PrimType, yyvsp[-5].ValIDVal);
CHECK_FOR_ERROR
BasicBlock* tmpBB = getBBVal(yyvsp[-2].ValIDVal);
CHECK_FOR_ERROR
SwitchInst *S = SwitchInst::Create(tmpVal, tmpBB, 0);
yyval.TermInstVal = S;
CHECK_FOR_ERROR
;
break;}
case 283:
#line 2634 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// Handle the short syntax
const PointerType *PFTy = 0;
const FunctionType *Ty = 0;
if (!(PFTy = dyn_cast<PointerType>(yyvsp[-11].TypeVal->get())) ||
!(Ty = dyn_cast<FunctionType>(PFTy->getElementType()))) {
// Pull out the types of all of the arguments...
std::vector<const Type*> ParamTypes;
ParamList::iterator I = yyvsp[-8].ParamList->begin(), E = yyvsp[-8].ParamList->end();
for (; I != E; ++I) {
const Type *Ty = I->Val->getType();
if (Ty == Type::VoidTy)
GEN_ERROR("Short call syntax cannot be used with varargs");
ParamTypes.push_back(Ty);
}
Ty = FunctionType::get(yyvsp[-11].TypeVal->get(), ParamTypes, false);
PFTy = PointerType::getUnqual(Ty);
}
delete yyvsp[-11].TypeVal;
Value *V = getVal(PFTy, yyvsp[-10].ValIDVal); // Get the function we're calling...
CHECK_FOR_ERROR
BasicBlock *Normal = getBBVal(yyvsp[-3].ValIDVal);
CHECK_FOR_ERROR
BasicBlock *Except = getBBVal(yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
SmallVector<ParamAttrsWithIndex, 8> Attrs;
if (yyvsp[-6].ParamAttrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(0, yyvsp[-6].ParamAttrs));
// Check the arguments
ValueList Args;
if (yyvsp[-8].ParamList->empty()) { // Has no arguments?
// Make sure no arguments is a good thing!
if (Ty->getNumParams() != 0)
GEN_ERROR("No arguments passed to a function that "
"expects arguments");
} else { // Has arguments?
// Loop through FunctionType's arguments and ensure they are specified
// correctly!
FunctionType::param_iterator I = Ty->param_begin();
FunctionType::param_iterator E = Ty->param_end();
ParamList::iterator ArgI = yyvsp[-8].ParamList->begin(), ArgE = yyvsp[-8].ParamList->end();
unsigned index = 1;
for (; ArgI != ArgE && I != E; ++ArgI, ++I, ++index) {
if (ArgI->Val->getType() != *I)
GEN_ERROR("Parameter " + ArgI->Val->getName()+ " is not of type '" +
(*I)->getDescription() + "'");
Args.push_back(ArgI->Val);
if (ArgI->Attrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
}
if (Ty->isVarArg()) {
if (I == E)
for (; ArgI != ArgE; ++ArgI, ++index) {
Args.push_back(ArgI->Val); // push the remaining varargs
if (ArgI->Attrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
}
} else if (I != E || ArgI != ArgE)
GEN_ERROR("Invalid number of parameters detected");
}
PAListPtr PAL;
if (!Attrs.empty())
PAL = PAListPtr::get(Attrs.begin(), Attrs.end());
// Create the InvokeInst
InvokeInst *II = InvokeInst::Create(V, Normal, Except, Args.begin(),Args.end());
II->setCallingConv(yyvsp[-12].UIntVal);
II->setParamAttrs(PAL);
yyval.TermInstVal = II;
delete yyvsp[-8].ParamList;
CHECK_FOR_ERROR
;
break;}
case 284:
#line 2714 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TermInstVal = new UnwindInst();
CHECK_FOR_ERROR
;
break;}
case 285:
#line 2718 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.TermInstVal = new UnreachableInst();
CHECK_FOR_ERROR
;
break;}
case 286:
#line 2725 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.JumpTable = yyvsp[-5].JumpTable;
Constant *V = cast<Constant>(getExistingVal(yyvsp[-4].PrimType, yyvsp[-3].ValIDVal));
CHECK_FOR_ERROR
if (V == 0)
GEN_ERROR("May only switch on a constant pool value");
BasicBlock* tmpBB = getBBVal(yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.JumpTable->push_back(std::make_pair(V, tmpBB));
;
break;}
case 287:
#line 2736 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.JumpTable = new std::vector<std::pair<Constant*, BasicBlock*> >();
Constant *V = cast<Constant>(getExistingVal(yyvsp[-4].PrimType, yyvsp[-3].ValIDVal));
CHECK_FOR_ERROR
if (V == 0)
GEN_ERROR("May only switch on a constant pool value");
BasicBlock* tmpBB = getBBVal(yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.JumpTable->push_back(std::make_pair(V, tmpBB));
;
break;}
case 288:
#line 2749 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// Is this definition named?? if so, assign the name...
setValueName(yyvsp[0].InstVal, yyvsp[-1].StrVal);
CHECK_FOR_ERROR
InsertValue(yyvsp[0].InstVal);
yyval.InstVal = yyvsp[0].InstVal;
CHECK_FOR_ERROR
;
break;}
case 289:
#line 2759 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ // Used for PHI nodes
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-5].TypeVal)->getDescription());
yyval.PHIList = new std::list<std::pair<Value*, BasicBlock*> >();
Value* tmpVal = getVal(*yyvsp[-5].TypeVal, yyvsp[-3].ValIDVal);
CHECK_FOR_ERROR
BasicBlock* tmpBB = getBBVal(yyvsp[-1].ValIDVal);
CHECK_FOR_ERROR
yyval.PHIList->push_back(std::make_pair(tmpVal, tmpBB));
delete yyvsp[-5].TypeVal;
;
break;}
case 290:
#line 2770 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.PHIList = yyvsp[-6].PHIList;
Value* tmpVal = getVal(yyvsp[-6].PHIList->front().first->getType(), yyvsp[-3].ValIDVal);
CHECK_FOR_ERROR
BasicBlock* tmpBB = getBBVal(yyvsp[-1].ValIDVal);
CHECK_FOR_ERROR
yyvsp[-6].PHIList->push_back(std::make_pair(tmpVal, tmpBB));
;
break;}
case 291:
#line 2780 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
// Used for call and invoke instructions
yyval.ParamList = new ParamList();
ParamListEntry E; E.Attrs = yyvsp[-2].ParamAttrs | yyvsp[0].ParamAttrs; E.Val = getVal(yyvsp[-3].TypeVal->get(), yyvsp[-1].ValIDVal);
yyval.ParamList->push_back(E);
delete yyvsp[-3].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 292:
#line 2791 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
// Labels are only valid in ASMs
yyval.ParamList = new ParamList();
ParamListEntry E; E.Attrs = yyvsp[-2].ParamAttrs | yyvsp[0].ParamAttrs; E.Val = getBBVal(yyvsp[-1].ValIDVal);
yyval.ParamList->push_back(E);
CHECK_FOR_ERROR
;
break;}
case 293:
#line 2799 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
yyval.ParamList = yyvsp[-5].ParamList;
ParamListEntry E; E.Attrs = yyvsp[-2].ParamAttrs | yyvsp[0].ParamAttrs; E.Val = getVal(yyvsp[-3].TypeVal->get(), yyvsp[-1].ValIDVal);
yyval.ParamList->push_back(E);
delete yyvsp[-3].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 294:
#line 2809 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// FIXME: Remove trailing OptParamAttrs in LLVM 3.0, it was a mistake in 2.0
yyval.ParamList = yyvsp[-5].ParamList;
ParamListEntry E; E.Attrs = yyvsp[-2].ParamAttrs | yyvsp[0].ParamAttrs; E.Val = getBBVal(yyvsp[-1].ValIDVal);
yyval.ParamList->push_back(E);
CHECK_FOR_ERROR
;
break;}
case 295:
#line 2816 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ParamList = new ParamList(); ;
break;}
case 296:
#line 2819 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{ yyval.ValueList = new std::vector<Value*>(); ;
break;}
case 297:
#line 2820 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.ValueList = yyvsp[-2].ValueList;
yyval.ValueList->push_back(yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 298:
#line 2827 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.BoolVal = true;
CHECK_FOR_ERROR
;
break;}
case 299:
#line 2831 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.BoolVal = false;
CHECK_FOR_ERROR
;
break;}
case 300:
#line 2836 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
if (!(*yyvsp[-3].TypeVal)->isInteger() && !(*yyvsp[-3].TypeVal)->isFloatingPoint() &&
!isa<VectorType>((*yyvsp[-3].TypeVal).get()))
GEN_ERROR(
"Arithmetic operator requires integer, FP, or packed operands");
Value* val1 = getVal(*yyvsp[-3].TypeVal, yyvsp[-2].ValIDVal);
CHECK_FOR_ERROR
Value* val2 = getVal(*yyvsp[-3].TypeVal, yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = BinaryOperator::create(yyvsp[-4].BinaryOpVal, val1, val2);
if (yyval.InstVal == 0)
GEN_ERROR("binary operator returned null");
delete yyvsp[-3].TypeVal;
;
break;}
case 301:
#line 2852 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
if (!(*yyvsp[-3].TypeVal)->isInteger()) {
if (Instruction::isShift(yyvsp[-4].BinaryOpVal) || !isa<VectorType>(yyvsp[-3].TypeVal->get()) ||
!cast<VectorType>(yyvsp[-3].TypeVal->get())->getElementType()->isInteger())
GEN_ERROR("Logical operator requires integral operands");
}
Value* tmpVal1 = getVal(*yyvsp[-3].TypeVal, yyvsp[-2].ValIDVal);
CHECK_FOR_ERROR
Value* tmpVal2 = getVal(*yyvsp[-3].TypeVal, yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = BinaryOperator::create(yyvsp[-4].BinaryOpVal, tmpVal1, tmpVal2);
if (yyval.InstVal == 0)
GEN_ERROR("binary operator returned null");
delete yyvsp[-3].TypeVal;
;
break;}
case 302:
#line 2869 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
if (isa<VectorType>((*yyvsp[-3].TypeVal).get()))
GEN_ERROR("Vector types not supported by icmp instruction");
Value* tmpVal1 = getVal(*yyvsp[-3].TypeVal, yyvsp[-2].ValIDVal);
CHECK_FOR_ERROR
Value* tmpVal2 = getVal(*yyvsp[-3].TypeVal, yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = CmpInst::create(yyvsp[-5].OtherOpVal, yyvsp[-4].IPredicate, tmpVal1, tmpVal2);
if (yyval.InstVal == 0)
GEN_ERROR("icmp operator returned null");
delete yyvsp[-3].TypeVal;
;
break;}
case 303:
#line 2883 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-3].TypeVal)->getDescription());
if (isa<VectorType>((*yyvsp[-3].TypeVal).get()))
GEN_ERROR("Vector types not supported by fcmp instruction");
Value* tmpVal1 = getVal(*yyvsp[-3].TypeVal, yyvsp[-2].ValIDVal);
CHECK_FOR_ERROR
Value* tmpVal2 = getVal(*yyvsp[-3].TypeVal, yyvsp[0].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = CmpInst::create(yyvsp[-5].OtherOpVal, yyvsp[-4].FPredicate, tmpVal1, tmpVal2);
if (yyval.InstVal == 0)
GEN_ERROR("fcmp operator returned null");
delete yyvsp[-3].TypeVal;
;
break;}
case 304:
#line 2897 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[0].TypeVal)->getDescription());
Value* Val = yyvsp[-2].ValueVal;
const Type* DestTy = yyvsp[0].TypeVal->get();
if (!CastInst::castIsValid(yyvsp[-3].CastOpVal, Val, DestTy))
GEN_ERROR("invalid cast opcode for cast from '" +
Val->getType()->getDescription() + "' to '" +
DestTy->getDescription() + "'");
yyval.InstVal = CastInst::create(yyvsp[-3].CastOpVal, Val, DestTy);
delete yyvsp[0].TypeVal;
;
break;}
case 305:
#line 2909 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (yyvsp[-4].ValueVal->getType() != Type::Int1Ty)
GEN_ERROR("select condition must be boolean");
if (yyvsp[-2].ValueVal->getType() != yyvsp[0].ValueVal->getType())
GEN_ERROR("select value types should match");
yyval.InstVal = SelectInst::Create(yyvsp[-4].ValueVal, yyvsp[-2].ValueVal, yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 306:
#line 2917 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[0].TypeVal)->getDescription());
yyval.InstVal = new VAArgInst(yyvsp[-2].ValueVal, *yyvsp[0].TypeVal);
delete yyvsp[0].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 307:
#line 2924 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!ExtractElementInst::isValidOperands(yyvsp[-2].ValueVal, yyvsp[0].ValueVal))
GEN_ERROR("Invalid extractelement operands");
yyval.InstVal = new ExtractElementInst(yyvsp[-2].ValueVal, yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 308:
#line 2930 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!InsertElementInst::isValidOperands(yyvsp[-4].ValueVal, yyvsp[-2].ValueVal, yyvsp[0].ValueVal))
GEN_ERROR("Invalid insertelement operands");
yyval.InstVal = InsertElementInst::Create(yyvsp[-4].ValueVal, yyvsp[-2].ValueVal, yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 309:
#line 2936 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!ShuffleVectorInst::isValidOperands(yyvsp[-4].ValueVal, yyvsp[-2].ValueVal, yyvsp[0].ValueVal))
GEN_ERROR("Invalid shufflevector operands");
yyval.InstVal = new ShuffleVectorInst(yyvsp[-4].ValueVal, yyvsp[-2].ValueVal, yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 310:
#line 2942 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
const Type *Ty = yyvsp[0].PHIList->front().first->getType();
if (!Ty->isFirstClassType())
GEN_ERROR("PHI node operands must be of first class type");
yyval.InstVal = PHINode::Create(Ty);
((PHINode*)yyval.InstVal)->reserveOperandSpace(yyvsp[0].PHIList->size());
while (yyvsp[0].PHIList->begin() != yyvsp[0].PHIList->end()) {
if (yyvsp[0].PHIList->front().first->getType() != Ty)
GEN_ERROR("All elements of a PHI node must be of the same type");
cast<PHINode>(yyval.InstVal)->addIncoming(yyvsp[0].PHIList->front().first, yyvsp[0].PHIList->front().second);
yyvsp[0].PHIList->pop_front();
}
delete yyvsp[0].PHIList; // Free the list...
CHECK_FOR_ERROR
;
break;}
case 311:
#line 2958 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
// Handle the short syntax
const PointerType *PFTy = 0;
const FunctionType *Ty = 0;
if (!(PFTy = dyn_cast<PointerType>(yyvsp[-5].TypeVal->get())) ||
!(Ty = dyn_cast<FunctionType>(PFTy->getElementType()))) {
// Pull out the types of all of the arguments...
std::vector<const Type*> ParamTypes;
ParamList::iterator I = yyvsp[-2].ParamList->begin(), E = yyvsp[-2].ParamList->end();
for (; I != E; ++I) {
const Type *Ty = I->Val->getType();
if (Ty == Type::VoidTy)
GEN_ERROR("Short call syntax cannot be used with varargs");
ParamTypes.push_back(Ty);
}
Ty = FunctionType::get(yyvsp[-5].TypeVal->get(), ParamTypes, false);
PFTy = PointerType::getUnqual(Ty);
}
Value *V = getVal(PFTy, yyvsp[-4].ValIDVal); // Get the function we're calling...
CHECK_FOR_ERROR
// Check for call to invalid intrinsic to avoid crashing later.
if (Function *theF = dyn_cast<Function>(V)) {
if (theF->hasName() && (theF->getValueName()->getKeyLength() >= 5) &&
(0 == strncmp(theF->getValueName()->getKeyData(), "llvm.", 5)) &&
!theF->getIntrinsicID(true))
GEN_ERROR("Call to invalid LLVM intrinsic function '" +
theF->getName() + "'");
}
// Set up the ParamAttrs for the function
SmallVector<ParamAttrsWithIndex, 8> Attrs;
if (yyvsp[0].ParamAttrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(0, yyvsp[0].ParamAttrs));
// Check the arguments
ValueList Args;
if (yyvsp[-2].ParamList->empty()) { // Has no arguments?
// Make sure no arguments is a good thing!
if (Ty->getNumParams() != 0)
GEN_ERROR("No arguments passed to a function that "
"expects arguments");
} else { // Has arguments?
// Loop through FunctionType's arguments and ensure they are specified
// correctly. Also, gather any parameter attributes.
FunctionType::param_iterator I = Ty->param_begin();
FunctionType::param_iterator E = Ty->param_end();
ParamList::iterator ArgI = yyvsp[-2].ParamList->begin(), ArgE = yyvsp[-2].ParamList->end();
unsigned index = 1;
for (; ArgI != ArgE && I != E; ++ArgI, ++I, ++index) {
if (ArgI->Val->getType() != *I)
GEN_ERROR("Parameter " + ArgI->Val->getName()+ " is not of type '" +
(*I)->getDescription() + "'");
Args.push_back(ArgI->Val);
if (ArgI->Attrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
}
if (Ty->isVarArg()) {
if (I == E)
for (; ArgI != ArgE; ++ArgI, ++index) {
Args.push_back(ArgI->Val); // push the remaining varargs
if (ArgI->Attrs != ParamAttr::None)
Attrs.push_back(ParamAttrsWithIndex::get(index, ArgI->Attrs));
}
} else if (I != E || ArgI != ArgE)
GEN_ERROR("Invalid number of parameters detected");
}
// Finish off the ParamAttrs and check them
PAListPtr PAL;
if (!Attrs.empty())
PAL = PAListPtr::get(Attrs.begin(), Attrs.end());
// Create the call node
CallInst *CI = CallInst::Create(V, Args.begin(), Args.end());
CI->setTailCall(yyvsp[-7].BoolVal);
CI->setCallingConv(yyvsp[-6].UIntVal);
CI->setParamAttrs(PAL);
yyval.InstVal = CI;
delete yyvsp[-2].ParamList;
delete yyvsp[-5].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 312:
#line 3043 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.InstVal = yyvsp[0].InstVal;
CHECK_FOR_ERROR
;
break;}
case 313:
#line 3048 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.BoolVal = true;
CHECK_FOR_ERROR
;
break;}
case 314:
#line 3052 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
yyval.BoolVal = false;
CHECK_FOR_ERROR
;
break;}
case 315:
#line 3059 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
yyval.InstVal = new MallocInst(*yyvsp[-1].TypeVal, 0, yyvsp[0].UIntVal);
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 316:
#line 3066 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-4].TypeVal)->getDescription());
Value* tmpVal = getVal(yyvsp[-2].PrimType, yyvsp[-1].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = new MallocInst(*yyvsp[-4].TypeVal, tmpVal, yyvsp[0].UIntVal);
delete yyvsp[-4].TypeVal;
;
break;}
case 317:
#line 3074 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-1].TypeVal)->getDescription());
yyval.InstVal = new AllocaInst(*yyvsp[-1].TypeVal, 0, yyvsp[0].UIntVal);
delete yyvsp[-1].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 318:
#line 3081 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-4].TypeVal)->getDescription());
Value* tmpVal = getVal(yyvsp[-2].PrimType, yyvsp[-1].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = new AllocaInst(*yyvsp[-4].TypeVal, tmpVal, yyvsp[0].UIntVal);
delete yyvsp[-4].TypeVal;
;
break;}
case 319:
#line 3089 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!isa<PointerType>(yyvsp[0].ValueVal->getType()))
GEN_ERROR("Trying to free nonpointer type " +
yyvsp[0].ValueVal->getType()->getDescription() + "");
yyval.InstVal = new FreeInst(yyvsp[0].ValueVal);
CHECK_FOR_ERROR
;
break;}
case 320:
#line 3097 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
if (!isa<PointerType>(yyvsp[-2].TypeVal->get()))
GEN_ERROR("Can't load from nonpointer type: " +
(*yyvsp[-2].TypeVal)->getDescription());
if (!cast<PointerType>(yyvsp[-2].TypeVal->get())->getElementType()->isFirstClassType())
GEN_ERROR("Can't load from pointer of non-first-class type: " +
(*yyvsp[-2].TypeVal)->getDescription());
Value* tmpVal = getVal(*yyvsp[-2].TypeVal, yyvsp[-1].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = new LoadInst(tmpVal, "", yyvsp[-4].BoolVal, yyvsp[0].UIntVal);
delete yyvsp[-2].TypeVal;
;
break;}
case 321:
#line 3111 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
const PointerType *PT = dyn_cast<PointerType>(yyvsp[-2].TypeVal->get());
if (!PT)
GEN_ERROR("Can't store to a nonpointer type: " +
(*yyvsp[-2].TypeVal)->getDescription());
const Type *ElTy = PT->getElementType();
if (ElTy != yyvsp[-4].ValueVal->getType())
GEN_ERROR("Can't store '" + yyvsp[-4].ValueVal->getType()->getDescription() +
"' into space of type '" + ElTy->getDescription() + "'");
Value* tmpVal = getVal(*yyvsp[-2].TypeVal, yyvsp[-1].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = new StoreInst(yyvsp[-4].ValueVal, tmpVal, yyvsp[-6].BoolVal, yyvsp[0].UIntVal);
delete yyvsp[-2].TypeVal;
;
break;}
case 322:
#line 3128 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
Value *TmpVal = getVal(yyvsp[-3].TypeVal->get(), yyvsp[-2].ValIDVal);
if (!GetResultInst::isValidOperands(TmpVal, yyvsp[0].UInt64Val))
GEN_ERROR("Invalid getresult operands");
yyval.InstVal = new GetResultInst(TmpVal, yyvsp[0].UInt64Val);
delete yyvsp[-3].TypeVal;
CHECK_FOR_ERROR
;
break;}
case 323:
#line 3136 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
{
if (!UpRefs.empty())
GEN_ERROR("Invalid upreference in type: " + (*yyvsp[-2].TypeVal)->getDescription());
if (!isa<PointerType>(yyvsp[-2].TypeVal->get()))
GEN_ERROR("getelementptr insn requires pointer operand");
if (!GetElementPtrInst::getIndexedType(*yyvsp[-2].TypeVal, yyvsp[0].ValueList->begin(), yyvsp[0].ValueList->end(), true))
GEN_ERROR("Invalid getelementptr indices for type '" +
(*yyvsp[-2].TypeVal)->getDescription()+ "'");
Value* tmpVal = getVal(*yyvsp[-2].TypeVal, yyvsp[-1].ValIDVal);
CHECK_FOR_ERROR
yyval.InstVal = GetElementPtrInst::Create(tmpVal, yyvsp[0].ValueList->begin(), yyvsp[0].ValueList->end());
delete yyvsp[-2].TypeVal;
delete yyvsp[0].ValueList;
;
break;}
}
/* the action file gets copied in in place of this dollarsign */
#line 543 "/usr/share/bison.simple"
yyvsp -= yylen;
yyssp -= yylen;
#ifdef YYLSP_NEEDED
yylsp -= yylen;
#endif
#if YYDEBUG != 0
if (yydebug)
{
short *ssp1 = yyss - 1;
fprintf (stderr, "state stack now");
while (ssp1 != yyssp)
fprintf (stderr, " %d", *++ssp1);
fprintf (stderr, "\n");
}
#endif
*++yyvsp = yyval;
#ifdef YYLSP_NEEDED
yylsp++;
if (yylen == 0)
{
yylsp->first_line = yylloc.first_line;
yylsp->first_column = yylloc.first_column;
yylsp->last_line = (yylsp-1)->last_line;
yylsp->last_column = (yylsp-1)->last_column;
yylsp->text = 0;
}
else
{
yylsp->last_line = (yylsp+yylen-1)->last_line;
yylsp->last_column = (yylsp+yylen-1)->last_column;
}
#endif
/* Now "shift" the result of the reduction.
Determine what state that goes to,
based on the state we popped back to
and the rule number reduced by. */
yyn = yyr1[yyn];
yystate = yypgoto[yyn - YYNTBASE] + *yyssp;
if (yystate >= 0 && yystate <= YYLAST && yycheck[yystate] == *yyssp)
yystate = yytable[yystate];
else
yystate = yydefgoto[yyn - YYNTBASE];
goto yynewstate;
yyerrlab: /* here on detecting error */
if (! yyerrstatus)
/* If not already recovering from an error, report this error. */
{
++yynerrs;
#ifdef YYERROR_VERBOSE
yyn = yypact[yystate];
if (yyn > YYFLAG && yyn < YYLAST)
{
int size = 0;
char *msg;
int x, count;
count = 0;
/* Start X at -yyn if nec to avoid negative indexes in yycheck. */
for (x = (yyn < 0 ? -yyn : 0);
x < (sizeof(yytname) / sizeof(char *)); x++)
if (yycheck[x + yyn] == x)
size += strlen(yytname[x]) + 15, count++;
msg = (char *) malloc(size + 15);
if (msg != 0)
{
strcpy(msg, "parse error");
if (count < 5)
{
count = 0;
for (x = (yyn < 0 ? -yyn : 0);
x < (sizeof(yytname) / sizeof(char *)); x++)
if (yycheck[x + yyn] == x)
{
strcat(msg, count == 0 ? ", expecting `" : " or `");
strcat(msg, yytname[x]);
strcat(msg, "'");
count++;
}
}
yyerror(msg);
free(msg);
}
else
yyerror ("parse error; also virtual memory exceeded");
}
else
#endif /* YYERROR_VERBOSE */
yyerror("parse error");
}
goto yyerrlab1;
yyerrlab1: /* here on error raised explicitly by an action */
if (yyerrstatus == 3)
{
/* if just tried and failed to reuse lookahead token after an error, discard it. */
/* return failure if at end of input */
if (yychar == YYEOF)
YYABORT;
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Discarding token %d (%s).\n", yychar, yytname[yychar1]);
#endif
yychar = YYEMPTY;
}
/* Else will try to reuse lookahead token
after shifting the error token. */
yyerrstatus = 3; /* Each real token shifted decrements this */
goto yyerrhandle;
yyerrdefault: /* current state does not do anything special for the error token. */
#if 0
/* This is wrong; only states that explicitly want error tokens
should shift them. */
yyn = yydefact[yystate]; /* If its default is to accept any token, ok. Otherwise pop it.*/
if (yyn) goto yydefault;
#endif
yyerrpop: /* pop the current state because it cannot handle the error token */
if (yyssp == yyss) YYABORT;
yyvsp--;
yystate = *--yyssp;
#ifdef YYLSP_NEEDED
yylsp--;
#endif
#if YYDEBUG != 0
if (yydebug)
{
short *ssp1 = yyss - 1;
fprintf (stderr, "Error: state stack now");
while (ssp1 != yyssp)
fprintf (stderr, " %d", *++ssp1);
fprintf (stderr, "\n");
}
#endif
yyerrhandle:
yyn = yypact[yystate];
if (yyn == YYFLAG)
goto yyerrdefault;
yyn += YYTERROR;
if (yyn < 0 || yyn > YYLAST || yycheck[yyn] != YYTERROR)
goto yyerrdefault;
yyn = yytable[yyn];
if (yyn < 0)
{
if (yyn == YYFLAG)
goto yyerrpop;
yyn = -yyn;
goto yyreduce;
}
else if (yyn == 0)
goto yyerrpop;
if (yyn == YYFINAL)
YYACCEPT;
#if YYDEBUG != 0
if (yydebug)
fprintf(stderr, "Shifting error token, ");
#endif
*++yyvsp = yylval;
#ifdef YYLSP_NEEDED
*++yylsp = yylloc;
#endif
yystate = yyn;
goto yynewstate;
yyacceptlab:
/* YYACCEPT comes here. */
if (yyfree_stacks)
{
free (yyss);
free (yyvs);
#ifdef YYLSP_NEEDED
free (yyls);
#endif
}
return 0;
yyabortlab:
/* YYABORT comes here. */
if (yyfree_stacks)
{
free (yyss);
free (yyvs);
#ifdef YYLSP_NEEDED
free (yyls);
#endif
}
return 1;
}
#line 3153 "/Users/ggreif/llvm/lib/AsmParser/llvmAsmParser.y"
// common code from the two 'RunVMAsmParser' functions
static Module* RunParser(Module * M) {
CurModule.CurrentModule = M;
// Check to make sure the parser succeeded
if (yyparse()) {
if (ParserResult)
delete ParserResult;
return 0;
}
// Emit an error if there are any unresolved types left.
if (!CurModule.LateResolveTypes.empty()) {
const ValID &DID = CurModule.LateResolveTypes.begin()->first;
if (DID.Type == ValID::LocalName) {
GenerateError("Undefined type remains at eof: '"+DID.getName() + "'");
} else {
GenerateError("Undefined type remains at eof: #" + itostr(DID.Num));
}
if (ParserResult)
delete ParserResult;
return 0;
}
// Emit an error if there are any unresolved values left.
if (!CurModule.LateResolveValues.empty()) {
Value *V = CurModule.LateResolveValues.back();
std::map<Value*, std::pair<ValID, int> >::iterator I =
CurModule.PlaceHolderInfo.find(V);
if (I != CurModule.PlaceHolderInfo.end()) {
ValID &DID = I->second.first;
if (DID.Type == ValID::LocalName) {
GenerateError("Undefined value remains at eof: "+DID.getName() + "'");
} else {
GenerateError("Undefined value remains at eof: #" + itostr(DID.Num));
}
if (ParserResult)
delete ParserResult;
return 0;
}
}
// Check to make sure that parsing produced a result
if (!ParserResult)
return 0;
// Reset ParserResult variable while saving its value for the result.
Module *Result = ParserResult;
ParserResult = 0;
return Result;
}
void llvm::GenerateError(const std::string &message, int LineNo) {
if (LineNo == -1) LineNo = LLLgetLineNo();
// TODO: column number in exception
if (TheParseError)
TheParseError->setError(LLLgetFilename(), message, LineNo);
TriggerError = 1;
}
int yyerror(const char *ErrorMsg) {
std::string where = LLLgetFilename() + ":" + utostr(LLLgetLineNo()) + ": ";
std::string errMsg = where + "error: " + std::string(ErrorMsg);
if (yychar != YYEMPTY && yychar != 0) {
errMsg += " while reading token: '";
errMsg += std::string(LLLgetTokenStart(),
LLLgetTokenStart()+LLLgetTokenLength()) + "'";
}
GenerateError(errMsg);
return 0;
}