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Chris Lattner92101ac2001-08-23 17:05:04 +00001//===-- Execution.cpp - Implement code to simulate the program ------------===//
2//
3// This file contains the actual instruction interpreter.
4//
5//===----------------------------------------------------------------------===//
6
7#include "Interpreter.h"
8#include "ExecutionAnnotations.h"
9#include "llvm/iOther.h"
10#include "llvm/iTerminators.h"
Chris Lattner86660982001-08-27 05:16:50 +000011#include "llvm/iMemory.h"
Chris Lattner92101ac2001-08-23 17:05:04 +000012#include "llvm/Type.h"
13#include "llvm/ConstPoolVals.h"
14#include "llvm/Assembly/Writer.h"
Chris Lattner86660982001-08-27 05:16:50 +000015#include "llvm/Support/DataTypes.h"
Chris Lattner41c2e5c2001-09-28 22:56:43 +000016#include "llvm/Target/TargetData.h"
Chris Lattner2e42d3a2001-10-15 05:51:48 +000017#include "llvm/GlobalVariable.h"
Chris Lattnerbb76f022001-10-30 20:27:31 +000018#include <math.h> // For fmod
Chris Lattner5af0c482001-11-07 04:23:00 +000019#include <signal.h>
20#include <setjmp.h>
Chris Lattner2e42d3a2001-10-15 05:51:48 +000021
22// Create a TargetData structure to handle memory addressing and size/alignment
23// computations
24//
25static TargetData TD("lli Interpreter");
Chris Lattnerea38c0e2001-11-07 19:46:27 +000026CachedWriter CW; // Object to accelerate printing of LLVM
Chris Lattner5af0c482001-11-07 04:23:00 +000027
28
Chris Lattnere2409062001-11-12 16:19:45 +000029#ifdef PROFILE_STRUCTURE_FIELDS
30#include "llvm/Support/CommandLine.h"
31static cl::Flag ProfileStructureFields("profilestructfields",
32 "Profile Structure Field Accesses");
33#include <map>
34static map<const StructType *, vector<unsigned> > FieldAccessCounts;
35#endif
36
Chris Lattner5af0c482001-11-07 04:23:00 +000037sigjmp_buf SignalRecoverBuffer;
Chris Lattner461f02f2001-11-07 05:31:27 +000038static bool InInstruction = false;
Chris Lattner5af0c482001-11-07 04:23:00 +000039
40extern "C" {
41static void SigHandler(int Signal) {
Chris Lattner461f02f2001-11-07 05:31:27 +000042 if (InInstruction)
43 siglongjmp(SignalRecoverBuffer, Signal);
Chris Lattner5af0c482001-11-07 04:23:00 +000044}
45}
46
47static void initializeSignalHandlers() {
48 struct sigaction Action;
49 Action.sa_handler = SigHandler;
50 Action.sa_flags = SA_SIGINFO;
51 sigemptyset(&Action.sa_mask);
52 sigaction(SIGSEGV, &Action, 0);
53 sigaction(SIGBUS, &Action, 0);
Chris Lattner461f02f2001-11-07 05:31:27 +000054 sigaction(SIGINT, &Action, 0);
Chris Lattnerea38c0e2001-11-07 19:46:27 +000055 sigaction(SIGFPE, &Action, 0);
Chris Lattner5af0c482001-11-07 04:23:00 +000056}
57
Chris Lattner2e42d3a2001-10-15 05:51:48 +000058
59//===----------------------------------------------------------------------===//
Chris Lattner39bb5b42001-10-15 13:25:40 +000060// Value Manipulation code
61//===----------------------------------------------------------------------===//
62
63static unsigned getOperandSlot(Value *V) {
64 SlotNumber *SN = (SlotNumber*)V->getAnnotation(SlotNumberAID);
65 assert(SN && "Operand does not have a slot number annotation!");
66 return SN->SlotNum;
67}
68
69#define GET_CONST_VAL(TY, CLASS) \
70 case Type::TY##TyID: Result.TY##Val = cast<CLASS>(CPV)->getValue(); break
71
72static GenericValue getOperandValue(Value *V, ExecutionContext &SF) {
73 if (ConstPoolVal *CPV = dyn_cast<ConstPoolVal>(V)) {
74 GenericValue Result;
75 switch (CPV->getType()->getPrimitiveID()) {
76 GET_CONST_VAL(Bool , ConstPoolBool);
77 GET_CONST_VAL(UByte , ConstPoolUInt);
78 GET_CONST_VAL(SByte , ConstPoolSInt);
79 GET_CONST_VAL(UShort , ConstPoolUInt);
80 GET_CONST_VAL(Short , ConstPoolSInt);
81 GET_CONST_VAL(UInt , ConstPoolUInt);
82 GET_CONST_VAL(Int , ConstPoolSInt);
Chris Lattner7b851ab2001-10-15 19:18:26 +000083 GET_CONST_VAL(ULong , ConstPoolUInt);
84 GET_CONST_VAL(Long , ConstPoolSInt);
Chris Lattner39bb5b42001-10-15 13:25:40 +000085 GET_CONST_VAL(Float , ConstPoolFP);
86 GET_CONST_VAL(Double , ConstPoolFP);
87 case Type::PointerTyID:
88 if (isa<ConstPoolPointerNull>(CPV)) {
Chris Lattnerea38c0e2001-11-07 19:46:27 +000089 Result.PointerVal = 0;
Chris Lattner39bb5b42001-10-15 13:25:40 +000090 } else if (ConstPoolPointerRef *CPR =dyn_cast<ConstPoolPointerRef>(CPV)) {
91 assert(0 && "Not implemented!");
92 } else {
93 assert(0 && "Unknown constant pointer type!");
94 }
95 break;
96 default:
97 cout << "ERROR: Constant unimp for type: " << CPV->getType() << endl;
98 }
99 return Result;
100 } else if (GlobalValue *GV = dyn_cast<GlobalValue>(V)) {
101 GlobalAddress *Address =
102 (GlobalAddress*)GV->getOrCreateAnnotation(GlobalAddressAID);
103 GenericValue Result;
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000104 Result.PointerVal = (PointerTy)(GenericValue*)Address->Ptr;
Chris Lattner39bb5b42001-10-15 13:25:40 +0000105 return Result;
106 } else {
107 unsigned TyP = V->getType()->getUniqueID(); // TypePlane for value
Chris Lattnerbb76f022001-10-30 20:27:31 +0000108 unsigned OpSlot = getOperandSlot(V);
109 assert(TyP < SF.Values.size() &&
110 OpSlot < SF.Values[TyP].size() && "Value out of range!");
Chris Lattner39bb5b42001-10-15 13:25:40 +0000111 return SF.Values[TyP][getOperandSlot(V)];
112 }
113}
114
115static void printOperandInfo(Value *V, ExecutionContext &SF) {
116 if (isa<ConstPoolVal>(V)) {
117 cout << "Constant Pool Value\n";
118 } else if (isa<GlobalValue>(V)) {
119 cout << "Global Value\n";
120 } else {
121 unsigned TyP = V->getType()->getUniqueID(); // TypePlane for value
122 unsigned Slot = getOperandSlot(V);
123 cout << "Value=" << (void*)V << " TypeID=" << TyP << " Slot=" << Slot
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000124 << " Addr=" << &SF.Values[TyP][Slot] << " SF=" << &SF
125 << " Contents=0x";
126
127 const unsigned char *Buf = (const unsigned char*)&SF.Values[TyP][Slot];
128 for (unsigned i = 0; i < sizeof(GenericValue); ++i) {
129 unsigned char Cur = Buf[i];
130 cout << ( Cur >= 160? char((Cur>>4)+'A'-10) : char((Cur>>4) + '0'))
131 << ((Cur&15) >= 10? char((Cur&15)+'A'-10) : char((Cur&15) + '0'));
132 }
133 cout << endl;
Chris Lattner39bb5b42001-10-15 13:25:40 +0000134 }
135}
136
137
138
139static void SetValue(Value *V, GenericValue Val, ExecutionContext &SF) {
140 unsigned TyP = V->getType()->getUniqueID(); // TypePlane for value
141
142 //cout << "Setting value: " << &SF.Values[TyP][getOperandSlot(V)] << endl;
143 SF.Values[TyP][getOperandSlot(V)] = Val;
144}
145
146
147//===----------------------------------------------------------------------===//
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000148// Annotation Wrangling code
149//===----------------------------------------------------------------------===//
150
151void Interpreter::initializeExecutionEngine() {
152 AnnotationManager::registerAnnotationFactory(MethodInfoAID,
153 &MethodInfo::Create);
154 AnnotationManager::registerAnnotationFactory(GlobalAddressAID,
155 &GlobalAddress::Create);
Chris Lattner5af0c482001-11-07 04:23:00 +0000156 initializeSignalHandlers();
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000157}
158
159// InitializeMemory - Recursive function to apply a ConstPool value into the
160// specified memory location...
161//
162static void InitializeMemory(ConstPoolVal *Init, char *Addr) {
Chris Lattner39bb5b42001-10-15 13:25:40 +0000163#define INITIALIZE_MEMORY(TYID, CLASS, TY) \
164 case Type::TYID##TyID: { \
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000165 TY Tmp = cast<CLASS>(Init)->getValue(); \
Chris Lattner39bb5b42001-10-15 13:25:40 +0000166 memcpy(Addr, &Tmp, sizeof(TY)); \
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000167 } return
168
169 switch (Init->getType()->getPrimitiveID()) {
170 INITIALIZE_MEMORY(Bool , ConstPoolBool, bool);
171 INITIALIZE_MEMORY(UByte , ConstPoolUInt, unsigned char);
172 INITIALIZE_MEMORY(SByte , ConstPoolSInt, signed char);
173 INITIALIZE_MEMORY(UShort , ConstPoolUInt, unsigned short);
174 INITIALIZE_MEMORY(Short , ConstPoolSInt, signed short);
175 INITIALIZE_MEMORY(UInt , ConstPoolUInt, unsigned int);
176 INITIALIZE_MEMORY(Int , ConstPoolSInt, signed int);
177 INITIALIZE_MEMORY(ULong , ConstPoolUInt, uint64_t);
178 INITIALIZE_MEMORY(Long , ConstPoolSInt, int64_t);
179 INITIALIZE_MEMORY(Float , ConstPoolFP , float);
180 INITIALIZE_MEMORY(Double , ConstPoolFP , double);
181#undef INITIALIZE_MEMORY
Chris Lattner39bb5b42001-10-15 13:25:40 +0000182
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000183 case Type::ArrayTyID: {
184 ConstPoolArray *CPA = cast<ConstPoolArray>(Init);
185 const vector<Use> &Val = CPA->getValues();
186 unsigned ElementSize =
187 TD.getTypeSize(cast<ArrayType>(CPA->getType())->getElementType());
188 for (unsigned i = 0; i < Val.size(); ++i)
189 InitializeMemory(cast<ConstPoolVal>(Val[i].get()), Addr+i*ElementSize);
190 return;
191 }
Chris Lattner39bb5b42001-10-15 13:25:40 +0000192
193 case Type::StructTyID: {
194 ConstPoolStruct *CPS = cast<ConstPoolStruct>(Init);
195 const StructLayout *SL=TD.getStructLayout(cast<StructType>(CPS->getType()));
196 const vector<Use> &Val = CPS->getValues();
197 for (unsigned i = 0; i < Val.size(); ++i)
198 InitializeMemory(cast<ConstPoolVal>(Val[i].get()),
199 Addr+SL->MemberOffsets[i]);
200 return;
201 }
202
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000203 case Type::PointerTyID:
Chris Lattner39bb5b42001-10-15 13:25:40 +0000204 if (isa<ConstPoolPointerNull>(Init)) {
205 *(void**)Addr = 0;
206 } else if (ConstPoolPointerRef *CPR = dyn_cast<ConstPoolPointerRef>(Init)) {
207 GlobalAddress *Address =
208 (GlobalAddress*)CPR->getValue()->getOrCreateAnnotation(GlobalAddressAID);
209 *(void**)Addr = (GenericValue*)Address->Ptr;
210 } else {
211 assert(0 && "Unknown Constant pointer type!");
212 }
213 return;
214
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000215 default:
Chris Lattner461f02f2001-11-07 05:31:27 +0000216 CW << "Bad Type: " << Init->getType() << endl;
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000217 assert(0 && "Unknown constant type to initialize memory with!");
218 }
219}
220
221Annotation *GlobalAddress::Create(AnnotationID AID, const Annotable *O, void *){
222 assert(AID == GlobalAddressAID);
223
224 // This annotation will only be created on GlobalValue objects...
225 GlobalValue *GVal = cast<GlobalValue>((Value*)O);
226
227 if (isa<Method>(GVal)) {
228 // The GlobalAddress object for a method is just a pointer to method itself.
229 // Don't delete it when the annotation is gone though!
230 return new GlobalAddress(GVal, false);
231 }
232
233 // Handle the case of a global variable...
234 assert(isa<GlobalVariable>(GVal) &&
235 "Global value found that isn't a method or global variable!");
236 GlobalVariable *GV = cast<GlobalVariable>(GVal);
237
238 // First off, we must allocate space for the global variable to point at...
239 const Type *Ty = GV->getType()->getValueType(); // Type to be allocated
240 unsigned NumElements = 1;
241
242 if (isa<ArrayType>(Ty) && cast<ArrayType>(Ty)->isUnsized()) {
243 assert(GV->hasInitializer() && "Const val must have an initializer!");
244 // Allocating a unsized array type?
245 Ty = cast<const ArrayType>(Ty)->getElementType(); // Get the actual type...
246
247 // Get the number of elements being allocated by the array...
248 NumElements =cast<ConstPoolArray>(GV->getInitializer())->getValues().size();
249 }
250
251 // Allocate enough memory to hold the type...
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000252 void *Addr = calloc(NumElements, TD.getTypeSize(Ty));
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000253 assert(Addr != 0 && "Null pointer returned by malloc!");
254
255 // Initialize the memory if there is an initializer...
256 if (GV->hasInitializer())
257 InitializeMemory(GV->getInitializer(), (char*)Addr);
258
259 return new GlobalAddress(Addr, true); // Simply invoke the ctor
260}
261
Chris Lattner92101ac2001-08-23 17:05:04 +0000262
263//===----------------------------------------------------------------------===//
264// Binary Instruction Implementations
265//===----------------------------------------------------------------------===//
266
267#define IMPLEMENT_BINARY_OPERATOR(OP, TY) \
268 case Type::TY##TyID: Dest.TY##Val = Src1.TY##Val OP Src2.TY##Val; break
269
270static GenericValue executeAddInst(GenericValue Src1, GenericValue Src2,
271 const Type *Ty, ExecutionContext &SF) {
272 GenericValue Dest;
273 switch (Ty->getPrimitiveID()) {
274 IMPLEMENT_BINARY_OPERATOR(+, UByte);
275 IMPLEMENT_BINARY_OPERATOR(+, SByte);
276 IMPLEMENT_BINARY_OPERATOR(+, UShort);
277 IMPLEMENT_BINARY_OPERATOR(+, Short);
278 IMPLEMENT_BINARY_OPERATOR(+, UInt);
279 IMPLEMENT_BINARY_OPERATOR(+, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000280 IMPLEMENT_BINARY_OPERATOR(+, ULong);
281 IMPLEMENT_BINARY_OPERATOR(+, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000282 IMPLEMENT_BINARY_OPERATOR(+, Float);
283 IMPLEMENT_BINARY_OPERATOR(+, Double);
Chris Lattnerc2593162001-10-27 08:28:11 +0000284 IMPLEMENT_BINARY_OPERATOR(+, Pointer);
Chris Lattner92101ac2001-08-23 17:05:04 +0000285 default:
286 cout << "Unhandled type for Add instruction: " << Ty << endl;
287 }
288 return Dest;
289}
290
291static GenericValue executeSubInst(GenericValue Src1, GenericValue Src2,
292 const Type *Ty, ExecutionContext &SF) {
293 GenericValue Dest;
294 switch (Ty->getPrimitiveID()) {
295 IMPLEMENT_BINARY_OPERATOR(-, UByte);
296 IMPLEMENT_BINARY_OPERATOR(-, SByte);
297 IMPLEMENT_BINARY_OPERATOR(-, UShort);
298 IMPLEMENT_BINARY_OPERATOR(-, Short);
299 IMPLEMENT_BINARY_OPERATOR(-, UInt);
300 IMPLEMENT_BINARY_OPERATOR(-, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000301 IMPLEMENT_BINARY_OPERATOR(-, ULong);
302 IMPLEMENT_BINARY_OPERATOR(-, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000303 IMPLEMENT_BINARY_OPERATOR(-, Float);
304 IMPLEMENT_BINARY_OPERATOR(-, Double);
Chris Lattnerc2593162001-10-27 08:28:11 +0000305 IMPLEMENT_BINARY_OPERATOR(-, Pointer);
Chris Lattner92101ac2001-08-23 17:05:04 +0000306 default:
307 cout << "Unhandled type for Sub instruction: " << Ty << endl;
308 }
309 return Dest;
310}
311
Chris Lattnerc2593162001-10-27 08:28:11 +0000312static GenericValue executeMulInst(GenericValue Src1, GenericValue Src2,
313 const Type *Ty, ExecutionContext &SF) {
314 GenericValue Dest;
315 switch (Ty->getPrimitiveID()) {
316 IMPLEMENT_BINARY_OPERATOR(*, UByte);
317 IMPLEMENT_BINARY_OPERATOR(*, SByte);
318 IMPLEMENT_BINARY_OPERATOR(*, UShort);
319 IMPLEMENT_BINARY_OPERATOR(*, Short);
320 IMPLEMENT_BINARY_OPERATOR(*, UInt);
321 IMPLEMENT_BINARY_OPERATOR(*, Int);
322 IMPLEMENT_BINARY_OPERATOR(*, ULong);
323 IMPLEMENT_BINARY_OPERATOR(*, Long);
324 IMPLEMENT_BINARY_OPERATOR(*, Float);
325 IMPLEMENT_BINARY_OPERATOR(*, Double);
326 IMPLEMENT_BINARY_OPERATOR(*, Pointer);
327 default:
328 cout << "Unhandled type for Mul instruction: " << Ty << endl;
329 }
330 return Dest;
331}
332
333static GenericValue executeDivInst(GenericValue Src1, GenericValue Src2,
334 const Type *Ty, ExecutionContext &SF) {
335 GenericValue Dest;
336 switch (Ty->getPrimitiveID()) {
337 IMPLEMENT_BINARY_OPERATOR(/, UByte);
338 IMPLEMENT_BINARY_OPERATOR(/, SByte);
339 IMPLEMENT_BINARY_OPERATOR(/, UShort);
340 IMPLEMENT_BINARY_OPERATOR(/, Short);
341 IMPLEMENT_BINARY_OPERATOR(/, UInt);
342 IMPLEMENT_BINARY_OPERATOR(/, Int);
343 IMPLEMENT_BINARY_OPERATOR(/, ULong);
344 IMPLEMENT_BINARY_OPERATOR(/, Long);
345 IMPLEMENT_BINARY_OPERATOR(/, Float);
346 IMPLEMENT_BINARY_OPERATOR(/, Double);
347 IMPLEMENT_BINARY_OPERATOR(/, Pointer);
348 default:
Chris Lattnerbb76f022001-10-30 20:27:31 +0000349 cout << "Unhandled type for Div instruction: " << Ty << endl;
350 }
351 return Dest;
352}
353
354static GenericValue executeRemInst(GenericValue Src1, GenericValue Src2,
355 const Type *Ty, ExecutionContext &SF) {
356 GenericValue Dest;
357 switch (Ty->getPrimitiveID()) {
358 IMPLEMENT_BINARY_OPERATOR(%, UByte);
359 IMPLEMENT_BINARY_OPERATOR(%, SByte);
360 IMPLEMENT_BINARY_OPERATOR(%, UShort);
361 IMPLEMENT_BINARY_OPERATOR(%, Short);
362 IMPLEMENT_BINARY_OPERATOR(%, UInt);
363 IMPLEMENT_BINARY_OPERATOR(%, Int);
364 IMPLEMENT_BINARY_OPERATOR(%, ULong);
365 IMPLEMENT_BINARY_OPERATOR(%, Long);
366 IMPLEMENT_BINARY_OPERATOR(%, Pointer);
367 case Type::FloatTyID:
368 Dest.FloatVal = fmod(Src1.FloatVal, Src2.FloatVal);
369 break;
370 case Type::DoubleTyID:
371 Dest.DoubleVal = fmod(Src1.DoubleVal, Src2.DoubleVal);
372 break;
373 default:
374 cout << "Unhandled type for Rem instruction: " << Ty << endl;
Chris Lattnerc2593162001-10-27 08:28:11 +0000375 }
376 return Dest;
377}
378
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000379static GenericValue executeAndInst(GenericValue Src1, GenericValue Src2,
Chris Lattner4d0e1f92001-10-30 20:54:36 +0000380 const Type *Ty, ExecutionContext &SF) {
381 GenericValue Dest;
382 switch (Ty->getPrimitiveID()) {
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000383 IMPLEMENT_BINARY_OPERATOR(&, UByte);
384 IMPLEMENT_BINARY_OPERATOR(&, SByte);
385 IMPLEMENT_BINARY_OPERATOR(&, UShort);
386 IMPLEMENT_BINARY_OPERATOR(&, Short);
387 IMPLEMENT_BINARY_OPERATOR(&, UInt);
388 IMPLEMENT_BINARY_OPERATOR(&, Int);
389 IMPLEMENT_BINARY_OPERATOR(&, ULong);
390 IMPLEMENT_BINARY_OPERATOR(&, Long);
391 IMPLEMENT_BINARY_OPERATOR(&, Pointer);
392 default:
393 cout << "Unhandled type for And instruction: " << Ty << endl;
394 }
395 return Dest;
396}
397
398
399static GenericValue executeOrInst(GenericValue Src1, GenericValue Src2,
400 const Type *Ty, ExecutionContext &SF) {
401 GenericValue Dest;
402 switch (Ty->getPrimitiveID()) {
403 IMPLEMENT_BINARY_OPERATOR(|, UByte);
404 IMPLEMENT_BINARY_OPERATOR(|, SByte);
405 IMPLEMENT_BINARY_OPERATOR(|, UShort);
406 IMPLEMENT_BINARY_OPERATOR(|, Short);
407 IMPLEMENT_BINARY_OPERATOR(|, UInt);
408 IMPLEMENT_BINARY_OPERATOR(|, Int);
409 IMPLEMENT_BINARY_OPERATOR(|, ULong);
410 IMPLEMENT_BINARY_OPERATOR(|, Long);
411 IMPLEMENT_BINARY_OPERATOR(|, Pointer);
412 default:
413 cout << "Unhandled type for Or instruction: " << Ty << endl;
414 }
415 return Dest;
416}
417
418
419static GenericValue executeXorInst(GenericValue Src1, GenericValue Src2,
420 const Type *Ty, ExecutionContext &SF) {
421 GenericValue Dest;
422 switch (Ty->getPrimitiveID()) {
Chris Lattner4d0e1f92001-10-30 20:54:36 +0000423 IMPLEMENT_BINARY_OPERATOR(^, UByte);
424 IMPLEMENT_BINARY_OPERATOR(^, SByte);
425 IMPLEMENT_BINARY_OPERATOR(^, UShort);
426 IMPLEMENT_BINARY_OPERATOR(^, Short);
427 IMPLEMENT_BINARY_OPERATOR(^, UInt);
428 IMPLEMENT_BINARY_OPERATOR(^, Int);
429 IMPLEMENT_BINARY_OPERATOR(^, ULong);
430 IMPLEMENT_BINARY_OPERATOR(^, Long);
431 IMPLEMENT_BINARY_OPERATOR(^, Pointer);
432 default:
433 cout << "Unhandled type for Xor instruction: " << Ty << endl;
434 }
435 return Dest;
436}
437
438
Chris Lattner92101ac2001-08-23 17:05:04 +0000439#define IMPLEMENT_SETCC(OP, TY) \
440 case Type::TY##TyID: Dest.BoolVal = Src1.TY##Val OP Src2.TY##Val; break
441
Chris Lattner92101ac2001-08-23 17:05:04 +0000442static GenericValue executeSetEQInst(GenericValue Src1, GenericValue Src2,
443 const Type *Ty, ExecutionContext &SF) {
444 GenericValue Dest;
445 switch (Ty->getPrimitiveID()) {
446 IMPLEMENT_SETCC(==, UByte);
447 IMPLEMENT_SETCC(==, SByte);
448 IMPLEMENT_SETCC(==, UShort);
449 IMPLEMENT_SETCC(==, Short);
450 IMPLEMENT_SETCC(==, UInt);
451 IMPLEMENT_SETCC(==, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000452 IMPLEMENT_SETCC(==, ULong);
453 IMPLEMENT_SETCC(==, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000454 IMPLEMENT_SETCC(==, Float);
455 IMPLEMENT_SETCC(==, Double);
Chris Lattner86660982001-08-27 05:16:50 +0000456 IMPLEMENT_SETCC(==, Pointer);
Chris Lattner92101ac2001-08-23 17:05:04 +0000457 default:
458 cout << "Unhandled type for SetEQ instruction: " << Ty << endl;
459 }
460 return Dest;
461}
462
463static GenericValue executeSetNEInst(GenericValue Src1, GenericValue Src2,
464 const Type *Ty, ExecutionContext &SF) {
465 GenericValue Dest;
466 switch (Ty->getPrimitiveID()) {
467 IMPLEMENT_SETCC(!=, UByte);
468 IMPLEMENT_SETCC(!=, SByte);
469 IMPLEMENT_SETCC(!=, UShort);
470 IMPLEMENT_SETCC(!=, Short);
471 IMPLEMENT_SETCC(!=, UInt);
472 IMPLEMENT_SETCC(!=, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000473 IMPLEMENT_SETCC(!=, ULong);
474 IMPLEMENT_SETCC(!=, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000475 IMPLEMENT_SETCC(!=, Float);
476 IMPLEMENT_SETCC(!=, Double);
Chris Lattner86660982001-08-27 05:16:50 +0000477 IMPLEMENT_SETCC(!=, Pointer);
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000478
Chris Lattner92101ac2001-08-23 17:05:04 +0000479 default:
480 cout << "Unhandled type for SetNE instruction: " << Ty << endl;
481 }
482 return Dest;
483}
484
485static GenericValue executeSetLEInst(GenericValue Src1, GenericValue Src2,
486 const Type *Ty, ExecutionContext &SF) {
487 GenericValue Dest;
488 switch (Ty->getPrimitiveID()) {
489 IMPLEMENT_SETCC(<=, UByte);
490 IMPLEMENT_SETCC(<=, SByte);
491 IMPLEMENT_SETCC(<=, UShort);
492 IMPLEMENT_SETCC(<=, Short);
493 IMPLEMENT_SETCC(<=, UInt);
494 IMPLEMENT_SETCC(<=, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000495 IMPLEMENT_SETCC(<=, ULong);
496 IMPLEMENT_SETCC(<=, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000497 IMPLEMENT_SETCC(<=, Float);
498 IMPLEMENT_SETCC(<=, Double);
Chris Lattner86660982001-08-27 05:16:50 +0000499 IMPLEMENT_SETCC(<=, Pointer);
Chris Lattner92101ac2001-08-23 17:05:04 +0000500 default:
501 cout << "Unhandled type for SetLE instruction: " << Ty << endl;
502 }
503 return Dest;
504}
505
506static GenericValue executeSetGEInst(GenericValue Src1, GenericValue Src2,
507 const Type *Ty, ExecutionContext &SF) {
508 GenericValue Dest;
509 switch (Ty->getPrimitiveID()) {
510 IMPLEMENT_SETCC(>=, UByte);
511 IMPLEMENT_SETCC(>=, SByte);
512 IMPLEMENT_SETCC(>=, UShort);
513 IMPLEMENT_SETCC(>=, Short);
514 IMPLEMENT_SETCC(>=, UInt);
515 IMPLEMENT_SETCC(>=, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000516 IMPLEMENT_SETCC(>=, ULong);
517 IMPLEMENT_SETCC(>=, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000518 IMPLEMENT_SETCC(>=, Float);
519 IMPLEMENT_SETCC(>=, Double);
Chris Lattner86660982001-08-27 05:16:50 +0000520 IMPLEMENT_SETCC(>=, Pointer);
Chris Lattner92101ac2001-08-23 17:05:04 +0000521 default:
522 cout << "Unhandled type for SetGE instruction: " << Ty << endl;
523 }
524 return Dest;
525}
526
527static GenericValue executeSetLTInst(GenericValue Src1, GenericValue Src2,
528 const Type *Ty, ExecutionContext &SF) {
529 GenericValue Dest;
530 switch (Ty->getPrimitiveID()) {
531 IMPLEMENT_SETCC(<, UByte);
532 IMPLEMENT_SETCC(<, SByte);
533 IMPLEMENT_SETCC(<, UShort);
534 IMPLEMENT_SETCC(<, Short);
535 IMPLEMENT_SETCC(<, UInt);
536 IMPLEMENT_SETCC(<, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000537 IMPLEMENT_SETCC(<, ULong);
538 IMPLEMENT_SETCC(<, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000539 IMPLEMENT_SETCC(<, Float);
540 IMPLEMENT_SETCC(<, Double);
Chris Lattner86660982001-08-27 05:16:50 +0000541 IMPLEMENT_SETCC(<, Pointer);
Chris Lattner92101ac2001-08-23 17:05:04 +0000542 default:
543 cout << "Unhandled type for SetLT instruction: " << Ty << endl;
544 }
545 return Dest;
546}
547
548static GenericValue executeSetGTInst(GenericValue Src1, GenericValue Src2,
549 const Type *Ty, ExecutionContext &SF) {
550 GenericValue Dest;
551 switch (Ty->getPrimitiveID()) {
552 IMPLEMENT_SETCC(>, UByte);
553 IMPLEMENT_SETCC(>, SByte);
554 IMPLEMENT_SETCC(>, UShort);
555 IMPLEMENT_SETCC(>, Short);
556 IMPLEMENT_SETCC(>, UInt);
557 IMPLEMENT_SETCC(>, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000558 IMPLEMENT_SETCC(>, ULong);
559 IMPLEMENT_SETCC(>, Long);
Chris Lattner92101ac2001-08-23 17:05:04 +0000560 IMPLEMENT_SETCC(>, Float);
561 IMPLEMENT_SETCC(>, Double);
Chris Lattner86660982001-08-27 05:16:50 +0000562 IMPLEMENT_SETCC(>, Pointer);
Chris Lattner92101ac2001-08-23 17:05:04 +0000563 default:
564 cout << "Unhandled type for SetGT instruction: " << Ty << endl;
565 }
566 return Dest;
567}
568
569static void executeBinaryInst(BinaryOperator *I, ExecutionContext &SF) {
570 const Type *Ty = I->getOperand(0)->getType();
571 GenericValue Src1 = getOperandValue(I->getOperand(0), SF);
572 GenericValue Src2 = getOperandValue(I->getOperand(1), SF);
573 GenericValue R; // Result
574
575 switch (I->getOpcode()) {
Chris Lattnerbb76f022001-10-30 20:27:31 +0000576 case Instruction::Add: R = executeAddInst (Src1, Src2, Ty, SF); break;
577 case Instruction::Sub: R = executeSubInst (Src1, Src2, Ty, SF); break;
578 case Instruction::Mul: R = executeMulInst (Src1, Src2, Ty, SF); break;
579 case Instruction::Div: R = executeDivInst (Src1, Src2, Ty, SF); break;
580 case Instruction::Rem: R = executeRemInst (Src1, Src2, Ty, SF); break;
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000581 case Instruction::And: R = executeAndInst (Src1, Src2, Ty, SF); break;
582 case Instruction::Or: R = executeOrInst (Src1, Src2, Ty, SF); break;
Chris Lattner4d0e1f92001-10-30 20:54:36 +0000583 case Instruction::Xor: R = executeXorInst (Src1, Src2, Ty, SF); break;
Chris Lattner92101ac2001-08-23 17:05:04 +0000584 case Instruction::SetEQ: R = executeSetEQInst(Src1, Src2, Ty, SF); break;
585 case Instruction::SetNE: R = executeSetNEInst(Src1, Src2, Ty, SF); break;
586 case Instruction::SetLE: R = executeSetLEInst(Src1, Src2, Ty, SF); break;
587 case Instruction::SetGE: R = executeSetGEInst(Src1, Src2, Ty, SF); break;
588 case Instruction::SetLT: R = executeSetLTInst(Src1, Src2, Ty, SF); break;
589 case Instruction::SetGT: R = executeSetGTInst(Src1, Src2, Ty, SF); break;
590 default:
591 cout << "Don't know how to handle this binary operator!\n-->" << I;
Chris Lattner4d0e1f92001-10-30 20:54:36 +0000592 R = Src1;
Chris Lattner92101ac2001-08-23 17:05:04 +0000593 }
594
595 SetValue(I, R, SF);
596}
597
Chris Lattner92101ac2001-08-23 17:05:04 +0000598//===----------------------------------------------------------------------===//
599// Terminator Instruction Implementations
600//===----------------------------------------------------------------------===//
601
Chris Lattnere43db882001-10-27 04:15:57 +0000602void Interpreter::exitCalled(GenericValue GV) {
603 cout << "Program returned ";
604 print(Type::IntTy, GV);
605 cout << " via 'void exit(int)'\n";
606
607 ExitCode = GV.SByteVal;
608 ECStack.clear();
609}
610
Chris Lattner92101ac2001-08-23 17:05:04 +0000611void Interpreter::executeRetInst(ReturnInst *I, ExecutionContext &SF) {
612 const Type *RetTy = 0;
613 GenericValue Result;
614
615 // Save away the return value... (if we are not 'ret void')
616 if (I->getNumOperands()) {
617 RetTy = I->getReturnValue()->getType();
618 Result = getOperandValue(I->getReturnValue(), SF);
619 }
620
621 // Save previously executing meth
622 const Method *M = ECStack.back().CurMethod;
623
624 // Pop the current stack frame... this invalidates SF
625 ECStack.pop_back();
626
627 if (ECStack.empty()) { // Finished main. Put result into exit code...
628 if (RetTy) { // Nonvoid return type?
Chris Lattner5af0c482001-11-07 04:23:00 +0000629 CW << "Method " << M->getType() << " \"" << M->getName()
630 << "\" returned ";
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000631 print(RetTy, Result);
Chris Lattner92101ac2001-08-23 17:05:04 +0000632 cout << endl;
633
634 if (RetTy->isIntegral())
635 ExitCode = Result.SByteVal; // Capture the exit code of the program
636 } else {
637 ExitCode = 0;
638 }
Chris Lattnere2409062001-11-12 16:19:45 +0000639
640#ifdef PROFILE_STRUCTURE_FIELDS
641 // Print out structure field accounting information...
642 if (!FieldAccessCounts.empty()) {
643 CW << "Field Access Profile Information:\n";
644 map<const StructType *, vector<unsigned> >::iterator
645 I = FieldAccessCounts.begin(), E = FieldAccessCounts.end();
646 for (; I != E; ++I) {
647 vector<unsigned> &OfC = I->second;
648 CW << " '" << (Value*)I->first << "'\t- Sum=";
649
650 unsigned Sum = 0;
651 for (unsigned i = 0; i < OfC.size(); ++i)
652 Sum += OfC[i];
653 CW << Sum << " - ";
654
655 for (unsigned i = 0; i < OfC.size(); ++i) {
656 if (i) CW << ", ";
657 CW << OfC[i];
658 }
659 CW << endl;
660 }
661 CW << endl;
662 FieldAccessCounts.clear();
663 }
664#endif
665
Chris Lattner92101ac2001-08-23 17:05:04 +0000666 return;
667 }
668
669 // If we have a previous stack frame, and we have a previous call, fill in
670 // the return value...
671 //
672 ExecutionContext &NewSF = ECStack.back();
673 if (NewSF.Caller) {
674 if (NewSF.Caller->getType() != Type::VoidTy) // Save result...
675 SetValue(NewSF.Caller, Result, NewSF);
676
677 NewSF.Caller = 0; // We returned from the call...
Chris Lattner365a76e2001-09-10 04:49:44 +0000678 } else {
679 // This must be a function that is executing because of a user 'call'
680 // instruction.
Chris Lattner5af0c482001-11-07 04:23:00 +0000681 CW << "Method " << M->getType() << " \"" << M->getName()
682 << "\" returned ";
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000683 print(RetTy, Result);
Chris Lattner365a76e2001-09-10 04:49:44 +0000684 cout << endl;
Chris Lattner92101ac2001-08-23 17:05:04 +0000685 }
686}
687
688void Interpreter::executeBrInst(BranchInst *I, ExecutionContext &SF) {
689 SF.PrevBB = SF.CurBB; // Update PrevBB so that PHI nodes work...
690 BasicBlock *Dest;
691
692 Dest = I->getSuccessor(0); // Uncond branches have a fixed dest...
693 if (!I->isUnconditional()) {
Chris Lattnerbb76f022001-10-30 20:27:31 +0000694 Value *Cond = I->getCondition();
695 GenericValue CondVal = getOperandValue(Cond, SF);
696 if (CondVal.BoolVal == 0) // If false cond...
Chris Lattner92101ac2001-08-23 17:05:04 +0000697 Dest = I->getSuccessor(1);
698 }
699 SF.CurBB = Dest; // Update CurBB to branch destination
700 SF.CurInst = SF.CurBB->begin(); // Update new instruction ptr...
701}
702
703//===----------------------------------------------------------------------===//
Chris Lattner86660982001-08-27 05:16:50 +0000704// Memory Instruction Implementations
705//===----------------------------------------------------------------------===//
706
Chris Lattner86660982001-08-27 05:16:50 +0000707void Interpreter::executeAllocInst(AllocationInst *I, ExecutionContext &SF) {
708 const Type *Ty = I->getType()->getValueType(); // Type to be allocated
709 unsigned NumElements = 1;
710
711 if (I->getNumOperands()) { // Allocating a unsized array type?
Chris Lattnerb00c5822001-10-02 03:41:24 +0000712 assert(isa<ArrayType>(Ty) && cast<const ArrayType>(Ty)->isUnsized() &&
Chris Lattner86660982001-08-27 05:16:50 +0000713 "Allocation inst with size operand for !unsized array type???");
Chris Lattnerb00c5822001-10-02 03:41:24 +0000714 Ty = cast<const ArrayType>(Ty)->getElementType(); // Get the actual type...
Chris Lattner86660982001-08-27 05:16:50 +0000715
716 // Get the number of elements being allocated by the array...
717 GenericValue NumEl = getOperandValue(I->getOperand(0), SF);
718 NumElements = NumEl.UIntVal;
719 }
720
721 // Allocate enough memory to hold the type...
722 GenericValue Result;
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000723 // FIXME: Don't use CALLOC, use a tainted malloc.
724 Result.PointerVal = (PointerTy)calloc(NumElements, TD.getTypeSize(Ty));
725 assert(Result.PointerVal != 0 && "Null pointer returned by malloc!");
Chris Lattner86660982001-08-27 05:16:50 +0000726 SetValue(I, Result, SF);
727
728 if (I->getOpcode() == Instruction::Alloca) {
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000729 // TODO: FIXME: alloca should keep track of memory to free it later...
Chris Lattner86660982001-08-27 05:16:50 +0000730 }
731}
732
733static void executeFreeInst(FreeInst *I, ExecutionContext &SF) {
734 assert(I->getOperand(0)->getType()->isPointerType() && "Freeing nonptr?");
735 GenericValue Value = getOperandValue(I->getOperand(0), SF);
736 // TODO: Check to make sure memory is allocated
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000737 free((void*)Value.PointerVal); // Free memory
Chris Lattner86660982001-08-27 05:16:50 +0000738}
739
Chris Lattner95c3af52001-10-29 19:32:19 +0000740
741// getElementOffset - The workhorse for getelementptr, load and store. This
742// function returns the offset that arguments ArgOff+1 -> NumArgs specify for
743// the pointer type specified by argument Arg.
744//
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000745static PointerTy getElementOffset(Instruction *I, unsigned ArgOff) {
Chris Lattner95c3af52001-10-29 19:32:19 +0000746 assert(isa<PointerType>(I->getOperand(ArgOff)->getType()) &&
747 "Cannot getElementOffset of a nonpointer type!");
748
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000749 PointerTy Total = 0;
Chris Lattner95c3af52001-10-29 19:32:19 +0000750 const Type *Ty =
751 cast<PointerType>(I->getOperand(ArgOff++)->getType())->getValueType();
752
753 while (ArgOff < I->getNumOperands()) {
754 const StructType *STy = cast<StructType>(Ty);
755 const StructLayout *SLO = TD.getStructLayout(STy);
756
757 // Indicies must be ubyte constants...
758 const ConstPoolUInt *CPU = cast<ConstPoolUInt>(I->getOperand(ArgOff++));
759 assert(CPU->getType() == Type::UByteTy);
Chris Lattnerbb76f022001-10-30 20:27:31 +0000760 unsigned Index = CPU->getValue();
Chris Lattnere2409062001-11-12 16:19:45 +0000761
762#ifdef PROFILE_STRUCTURE_FIELDS
763 if (ProfileStructureFields) {
764 // Do accounting for this field...
765 vector<unsigned> &OfC = FieldAccessCounts[STy];
766 if (OfC.size() == 0) OfC.resize(STy->getElementTypes().size());
767 OfC[Index]++;
768 }
769#endif
770
Chris Lattnerbb76f022001-10-30 20:27:31 +0000771 Total += SLO->MemberOffsets[Index];
772 Ty = STy->getElementTypes()[Index];
Chris Lattner95c3af52001-10-29 19:32:19 +0000773 }
774
775 return Total;
776}
777
778static void executeGEPInst(GetElementPtrInst *I, ExecutionContext &SF) {
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000779 GenericValue SRC = getOperandValue(I->getPtrOperand(), SF);
780 PointerTy SrcPtr = SRC.PointerVal;
Chris Lattner95c3af52001-10-29 19:32:19 +0000781
782 GenericValue Result;
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000783 Result.PointerVal = SrcPtr + getElementOffset(I, 0);
Chris Lattner95c3af52001-10-29 19:32:19 +0000784 SetValue(I, Result, SF);
785}
786
Chris Lattner86660982001-08-27 05:16:50 +0000787static void executeLoadInst(LoadInst *I, ExecutionContext &SF) {
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000788 GenericValue SRC = getOperandValue(I->getPtrOperand(), SF);
789 PointerTy SrcPtr = SRC.PointerVal;
790 PointerTy Offset = getElementOffset(I, 0); // Handle any structure indices
Chris Lattnerbb76f022001-10-30 20:27:31 +0000791 SrcPtr += Offset;
Chris Lattner95c3af52001-10-29 19:32:19 +0000792
793 GenericValue *Ptr = (GenericValue*)SrcPtr;
Chris Lattner86660982001-08-27 05:16:50 +0000794 GenericValue Result;
795
796 switch (I->getType()->getPrimitiveID()) {
797 case Type::BoolTyID:
798 case Type::UByteTyID:
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000799 case Type::SByteTyID: Result.SByteVal = Ptr->SByteVal; break;
Chris Lattner86660982001-08-27 05:16:50 +0000800 case Type::UShortTyID:
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000801 case Type::ShortTyID: Result.ShortVal = Ptr->ShortVal; break;
Chris Lattner86660982001-08-27 05:16:50 +0000802 case Type::UIntTyID:
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000803 case Type::IntTyID: Result.IntVal = Ptr->IntVal; break;
Chris Lattner7b851ab2001-10-15 19:18:26 +0000804 case Type::ULongTyID:
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000805 case Type::LongTyID: Result.ULongVal = Ptr->ULongVal; break;
806 case Type::PointerTyID: Result.PointerVal = Ptr->PointerVal; break;
807 case Type::FloatTyID: Result.FloatVal = Ptr->FloatVal; break;
808 case Type::DoubleTyID: Result.DoubleVal = Ptr->DoubleVal; break;
Chris Lattner86660982001-08-27 05:16:50 +0000809 default:
810 cout << "Cannot load value of type " << I->getType() << "!\n";
811 }
812
813 SetValue(I, Result, SF);
814}
815
816static void executeStoreInst(StoreInst *I, ExecutionContext &SF) {
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000817 GenericValue SRC = getOperandValue(I->getPtrOperand(), SF);
818 PointerTy SrcPtr = SRC.PointerVal;
Chris Lattner95c3af52001-10-29 19:32:19 +0000819 SrcPtr += getElementOffset(I, 1); // Handle any structure indices
820
821 GenericValue *Ptr = (GenericValue *)SrcPtr;
Chris Lattner86660982001-08-27 05:16:50 +0000822 GenericValue Val = getOperandValue(I->getOperand(0), SF);
Chris Lattner86660982001-08-27 05:16:50 +0000823
824 switch (I->getOperand(0)->getType()->getPrimitiveID()) {
825 case Type::BoolTyID:
826 case Type::UByteTyID:
827 case Type::SByteTyID: Ptr->SByteVal = Val.SByteVal; break;
828 case Type::UShortTyID:
829 case Type::ShortTyID: Ptr->ShortVal = Val.ShortVal; break;
830 case Type::UIntTyID:
831 case Type::IntTyID: Ptr->IntVal = Val.IntVal; break;
Chris Lattner7b851ab2001-10-15 19:18:26 +0000832 case Type::ULongTyID:
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000833 case Type::LongTyID: Ptr->LongVal = Val.LongVal; break;
834 case Type::PointerTyID: Ptr->PointerVal = Val.PointerVal; break;
Chris Lattner86660982001-08-27 05:16:50 +0000835 case Type::FloatTyID: Ptr->FloatVal = Val.FloatVal; break;
836 case Type::DoubleTyID: Ptr->DoubleVal = Val.DoubleVal; break;
Chris Lattner86660982001-08-27 05:16:50 +0000837 default:
838 cout << "Cannot store value of type " << I->getType() << "!\n";
839 }
840}
841
842
843//===----------------------------------------------------------------------===//
Chris Lattner92101ac2001-08-23 17:05:04 +0000844// Miscellaneous Instruction Implementations
845//===----------------------------------------------------------------------===//
846
847void Interpreter::executeCallInst(CallInst *I, ExecutionContext &SF) {
848 ECStack.back().Caller = I;
Chris Lattner365a76e2001-09-10 04:49:44 +0000849 vector<GenericValue> ArgVals;
850 ArgVals.reserve(I->getNumOperands()-1);
851 for (unsigned i = 1; i < I->getNumOperands(); ++i)
852 ArgVals.push_back(getOperandValue(I->getOperand(i), SF));
853
Chris Lattner070cf5e2001-11-07 20:12:30 +0000854 // To handle indirect calls, we must get the pointer value from the argument
855 // and treat it as a method pointer.
856 GenericValue SRC = getOperandValue(I->getCalledValue(), SF);
857
858 callMethod((Method*)SRC.PointerVal, ArgVals);
Chris Lattner92101ac2001-08-23 17:05:04 +0000859}
860
861static void executePHINode(PHINode *I, ExecutionContext &SF) {
862 BasicBlock *PrevBB = SF.PrevBB;
863 Value *IncomingValue = 0;
864
865 // Search for the value corresponding to this previous bb...
866 for (unsigned i = I->getNumIncomingValues(); i > 0;) {
867 if (I->getIncomingBlock(--i) == PrevBB) {
868 IncomingValue = I->getIncomingValue(i);
869 break;
870 }
871 }
872 assert(IncomingValue && "No PHI node predecessor for current PrevBB!");
873
874 // Found the value, set as the result...
875 SetValue(I, getOperandValue(IncomingValue, SF), SF);
876}
877
Chris Lattner86660982001-08-27 05:16:50 +0000878#define IMPLEMENT_SHIFT(OP, TY) \
879 case Type::TY##TyID: Dest.TY##Val = Src1.TY##Val OP Src2.UByteVal; break
880
881static void executeShlInst(ShiftInst *I, ExecutionContext &SF) {
882 const Type *Ty = I->getOperand(0)->getType();
883 GenericValue Src1 = getOperandValue(I->getOperand(0), SF);
884 GenericValue Src2 = getOperandValue(I->getOperand(1), SF);
885 GenericValue Dest;
886
887 switch (Ty->getPrimitiveID()) {
888 IMPLEMENT_SHIFT(<<, UByte);
889 IMPLEMENT_SHIFT(<<, SByte);
890 IMPLEMENT_SHIFT(<<, UShort);
891 IMPLEMENT_SHIFT(<<, Short);
892 IMPLEMENT_SHIFT(<<, UInt);
893 IMPLEMENT_SHIFT(<<, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000894 IMPLEMENT_SHIFT(<<, ULong);
895 IMPLEMENT_SHIFT(<<, Long);
Chris Lattner86660982001-08-27 05:16:50 +0000896 default:
897 cout << "Unhandled type for Shl instruction: " << Ty << endl;
898 }
899 SetValue(I, Dest, SF);
900}
901
902static void executeShrInst(ShiftInst *I, ExecutionContext &SF) {
903 const Type *Ty = I->getOperand(0)->getType();
904 GenericValue Src1 = getOperandValue(I->getOperand(0), SF);
905 GenericValue Src2 = getOperandValue(I->getOperand(1), SF);
906 GenericValue Dest;
907
908 switch (Ty->getPrimitiveID()) {
909 IMPLEMENT_SHIFT(>>, UByte);
910 IMPLEMENT_SHIFT(>>, SByte);
911 IMPLEMENT_SHIFT(>>, UShort);
912 IMPLEMENT_SHIFT(>>, Short);
913 IMPLEMENT_SHIFT(>>, UInt);
914 IMPLEMENT_SHIFT(>>, Int);
Chris Lattner7b851ab2001-10-15 19:18:26 +0000915 IMPLEMENT_SHIFT(>>, ULong);
916 IMPLEMENT_SHIFT(>>, Long);
Chris Lattner86660982001-08-27 05:16:50 +0000917 default:
918 cout << "Unhandled type for Shr instruction: " << Ty << endl;
919 }
920 SetValue(I, Dest, SF);
921}
922
923#define IMPLEMENT_CAST(DTY, DCTY, STY) \
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000924 case Type::STY##TyID: Dest.DTY##Val = DCTY Src.STY##Val; break;
Chris Lattner86660982001-08-27 05:16:50 +0000925
926#define IMPLEMENT_CAST_CASE_START(DESTTY, DESTCTY) \
927 case Type::DESTTY##TyID: \
928 switch (SrcTy->getPrimitiveID()) { \
929 IMPLEMENT_CAST(DESTTY, DESTCTY, UByte); \
930 IMPLEMENT_CAST(DESTTY, DESTCTY, SByte); \
931 IMPLEMENT_CAST(DESTTY, DESTCTY, UShort); \
932 IMPLEMENT_CAST(DESTTY, DESTCTY, Short); \
933 IMPLEMENT_CAST(DESTTY, DESTCTY, UInt); \
Chris Lattner7b851ab2001-10-15 19:18:26 +0000934 IMPLEMENT_CAST(DESTTY, DESTCTY, Int); \
935 IMPLEMENT_CAST(DESTTY, DESTCTY, ULong); \
Chris Lattnerc2593162001-10-27 08:28:11 +0000936 IMPLEMENT_CAST(DESTTY, DESTCTY, Long); \
937 IMPLEMENT_CAST(DESTTY, DESTCTY, Pointer);
Chris Lattner86660982001-08-27 05:16:50 +0000938
939#define IMPLEMENT_CAST_CASE_FP_IMP(DESTTY, DESTCTY) \
940 IMPLEMENT_CAST(DESTTY, DESTCTY, Float); \
941 IMPLEMENT_CAST(DESTTY, DESTCTY, Double)
942
943#define IMPLEMENT_CAST_CASE_END() \
944 default: cout << "Unhandled cast: " << SrcTy << " to " << Ty << endl; \
945 break; \
946 } \
947 break
948
949#define IMPLEMENT_CAST_CASE(DESTTY, DESTCTY) \
950 IMPLEMENT_CAST_CASE_START(DESTTY, DESTCTY); \
951 IMPLEMENT_CAST_CASE_FP_IMP(DESTTY, DESTCTY); \
Chris Lattner86660982001-08-27 05:16:50 +0000952 IMPLEMENT_CAST_CASE_END()
953
954static void executeCastInst(CastInst *I, ExecutionContext &SF) {
955 const Type *Ty = I->getType();
956 const Type *SrcTy = I->getOperand(0)->getType();
957 GenericValue Src = getOperandValue(I->getOperand(0), SF);
958 GenericValue Dest;
959
960 switch (Ty->getPrimitiveID()) {
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000961 IMPLEMENT_CAST_CASE(UByte , (unsigned char));
962 IMPLEMENT_CAST_CASE(SByte , ( signed char));
963 IMPLEMENT_CAST_CASE(UShort , (unsigned short));
964 IMPLEMENT_CAST_CASE(Short , ( signed char));
965 IMPLEMENT_CAST_CASE(UInt , (unsigned int ));
966 IMPLEMENT_CAST_CASE(Int , ( signed int ));
967 IMPLEMENT_CAST_CASE(ULong , (uint64_t));
968 IMPLEMENT_CAST_CASE(Long , ( int64_t));
969 IMPLEMENT_CAST_CASE(Pointer, (PointerTy)(uint32_t));
970 IMPLEMENT_CAST_CASE(Float , (float));
971 IMPLEMENT_CAST_CASE(Double , (double));
Chris Lattner86660982001-08-27 05:16:50 +0000972 default:
973 cout << "Unhandled dest type for cast instruction: " << Ty << endl;
974 }
975 SetValue(I, Dest, SF);
976}
Chris Lattner92101ac2001-08-23 17:05:04 +0000977
978
979
980
981//===----------------------------------------------------------------------===//
982// Dispatch and Execution Code
983//===----------------------------------------------------------------------===//
984
985MethodInfo::MethodInfo(Method *M) : Annotation(MethodInfoAID) {
986 // Assign slot numbers to the method arguments...
987 const Method::ArgumentListType &ArgList = M->getArgumentList();
988 for (Method::ArgumentListType::const_iterator AI = ArgList.begin(),
989 AE = ArgList.end(); AI != AE; ++AI) {
990 MethodArgument *MA = *AI;
991 MA->addAnnotation(new SlotNumber(getValueSlot(MA)));
992 }
993
994 // Iterate over all of the instructions...
995 unsigned InstNum = 0;
996 for (Method::inst_iterator MI = M->inst_begin(), ME = M->inst_end();
997 MI != ME; ++MI) {
998 Instruction *I = *MI; // For each instruction...
999 I->addAnnotation(new InstNumber(++InstNum, getValueSlot(I))); // Add Annote
1000 }
1001}
1002
1003unsigned MethodInfo::getValueSlot(const Value *V) {
1004 unsigned Plane = V->getType()->getUniqueID();
1005 if (Plane >= NumPlaneElements.size())
1006 NumPlaneElements.resize(Plane+1, 0);
1007 return NumPlaneElements[Plane]++;
1008}
1009
1010
Chris Lattner92101ac2001-08-23 17:05:04 +00001011//===----------------------------------------------------------------------===//
1012// callMethod - Execute the specified method...
1013//
Chris Lattner365a76e2001-09-10 04:49:44 +00001014void Interpreter::callMethod(Method *M, const vector<GenericValue> &ArgVals) {
1015 assert((ECStack.empty() || ECStack.back().Caller == 0 ||
1016 ECStack.back().Caller->getNumOperands()-1 == ArgVals.size()) &&
1017 "Incorrect number of arguments passed into function call!");
Chris Lattner92101ac2001-08-23 17:05:04 +00001018 if (M->isExternal()) {
Chris Lattnerbb76f022001-10-30 20:27:31 +00001019 GenericValue Result = callExternalMethod(M, ArgVals);
1020 const Type *RetTy = M->getReturnType();
1021
1022 // Copy the result back into the result variable if we are not returning
1023 // void.
1024 if (RetTy != Type::VoidTy) {
1025 if (!ECStack.empty() && ECStack.back().Caller) {
1026 ExecutionContext &SF = ECStack.back();
1027 CallInst *Caller = SF.Caller;
1028 SetValue(SF.Caller, Result, SF);
1029
1030 SF.Caller = 0; // We returned from the call...
1031 } else {
1032 // print it.
Chris Lattner5af0c482001-11-07 04:23:00 +00001033 CW << "Method " << M->getType() << " \"" << M->getName()
1034 << "\" returned ";
Chris Lattnerbb76f022001-10-30 20:27:31 +00001035 print(RetTy, Result);
1036 cout << endl;
1037
1038 if (RetTy->isIntegral())
1039 ExitCode = Result.SByteVal; // Capture the exit code of the program
1040 }
1041 }
1042
Chris Lattner92101ac2001-08-23 17:05:04 +00001043 return;
1044 }
1045
1046 // Process the method, assigning instruction numbers to the instructions in
1047 // the method. Also calculate the number of values for each type slot active.
1048 //
1049 MethodInfo *MethInfo = (MethodInfo*)M->getOrCreateAnnotation(MethodInfoAID);
Chris Lattner92101ac2001-08-23 17:05:04 +00001050 ECStack.push_back(ExecutionContext()); // Make a new stack frame...
Chris Lattner86660982001-08-27 05:16:50 +00001051
Chris Lattner92101ac2001-08-23 17:05:04 +00001052 ExecutionContext &StackFrame = ECStack.back(); // Fill it in...
1053 StackFrame.CurMethod = M;
1054 StackFrame.CurBB = M->front();
1055 StackFrame.CurInst = StackFrame.CurBB->begin();
1056 StackFrame.MethInfo = MethInfo;
1057
1058 // Initialize the values to nothing...
1059 StackFrame.Values.resize(MethInfo->NumPlaneElements.size());
Chris Lattnerea38c0e2001-11-07 19:46:27 +00001060 for (unsigned i = 0; i < MethInfo->NumPlaneElements.size(); ++i) {
Chris Lattner92101ac2001-08-23 17:05:04 +00001061 StackFrame.Values[i].resize(MethInfo->NumPlaneElements[i]);
1062
Chris Lattnerea38c0e2001-11-07 19:46:27 +00001063 // Taint the initial values of stuff
1064 memset(&StackFrame.Values[i][0], 42,
1065 MethInfo->NumPlaneElements[i]*sizeof(GenericValue));
1066 }
1067
Chris Lattner92101ac2001-08-23 17:05:04 +00001068 StackFrame.PrevBB = 0; // No previous BB for PHI nodes...
1069
Chris Lattner92101ac2001-08-23 17:05:04 +00001070
Chris Lattner365a76e2001-09-10 04:49:44 +00001071 // Run through the method arguments and initialize their values...
Chris Lattnerf8f2afb2001-10-18 21:55:32 +00001072 assert(ArgVals.size() == M->getArgumentList().size() &&
1073 "Invalid number of values passed to method invocation!");
Chris Lattner365a76e2001-09-10 04:49:44 +00001074 unsigned i = 0;
1075 for (Method::ArgumentListType::iterator MI = M->getArgumentList().begin(),
1076 ME = M->getArgumentList().end(); MI != ME; ++MI, ++i) {
1077 SetValue(*MI, ArgVals[i], StackFrame);
Chris Lattner92101ac2001-08-23 17:05:04 +00001078 }
1079}
1080
1081// executeInstruction - Interpret a single instruction, increment the "PC", and
1082// return true if the next instruction is a breakpoint...
1083//
1084bool Interpreter::executeInstruction() {
1085 assert(!ECStack.empty() && "No program running, cannot execute inst!");
1086
1087 ExecutionContext &SF = ECStack.back(); // Current stack frame
1088 Instruction *I = *SF.CurInst++; // Increment before execute
1089
Chris Lattner43e3f7c2001-10-27 08:43:52 +00001090 if (Trace)
Chris Lattner5af0c482001-11-07 04:23:00 +00001091 CW << "Run:" << I;
1092
1093 // Set a sigsetjmp buffer so that we can recover if an error happens during
1094 // instruction execution...
1095 //
1096 if (int SigNo = sigsetjmp(SignalRecoverBuffer, 1)) {
1097 --SF.CurInst; // Back up to erroring instruction
Chris Lattner461f02f2001-11-07 05:31:27 +00001098 if (SigNo != SIGINT) {
Chris Lattnerea38c0e2001-11-07 19:46:27 +00001099 cout << "EXCEPTION OCCURRED [" << _sys_siglistp[SigNo] << "]:\n";
Chris Lattner461f02f2001-11-07 05:31:27 +00001100 printStackTrace();
1101 } else {
1102 cout << "CTRL-C Detected, execution halted.\n";
1103 }
1104 InInstruction = false;
Chris Lattner5af0c482001-11-07 04:23:00 +00001105 return true;
1106 }
Chris Lattner43e3f7c2001-10-27 08:43:52 +00001107
Chris Lattner461f02f2001-11-07 05:31:27 +00001108 InInstruction = true;
Chris Lattner92101ac2001-08-23 17:05:04 +00001109 if (I->isBinaryOp()) {
Chris Lattnerbb76f022001-10-30 20:27:31 +00001110 executeBinaryInst(cast<BinaryOperator>(I), SF);
Chris Lattner92101ac2001-08-23 17:05:04 +00001111 } else {
1112 switch (I->getOpcode()) {
Chris Lattner86660982001-08-27 05:16:50 +00001113 // Terminators
Chris Lattnerbb76f022001-10-30 20:27:31 +00001114 case Instruction::Ret: executeRetInst (cast<ReturnInst>(I), SF); break;
1115 case Instruction::Br: executeBrInst (cast<BranchInst>(I), SF); break;
Chris Lattner86660982001-08-27 05:16:50 +00001116 // Memory Instructions
1117 case Instruction::Alloca:
Chris Lattnerbb76f022001-10-30 20:27:31 +00001118 case Instruction::Malloc: executeAllocInst((AllocationInst*)I, SF); break;
1119 case Instruction::Free: executeFreeInst (cast<FreeInst> (I), SF); break;
1120 case Instruction::Load: executeLoadInst (cast<LoadInst> (I), SF); break;
1121 case Instruction::Store: executeStoreInst(cast<StoreInst>(I), SF); break;
Chris Lattner95c3af52001-10-29 19:32:19 +00001122 case Instruction::GetElementPtr:
1123 executeGEPInst(cast<GetElementPtrInst>(I), SF); break;
Chris Lattner86660982001-08-27 05:16:50 +00001124
1125 // Miscellaneous Instructions
Chris Lattnerbb76f022001-10-30 20:27:31 +00001126 case Instruction::Call: executeCallInst (cast<CallInst> (I), SF); break;
1127 case Instruction::PHINode: executePHINode (cast<PHINode> (I), SF); break;
1128 case Instruction::Shl: executeShlInst (cast<ShiftInst>(I), SF); break;
1129 case Instruction::Shr: executeShrInst (cast<ShiftInst>(I), SF); break;
1130 case Instruction::Cast: executeCastInst (cast<CastInst> (I), SF); break;
Chris Lattner92101ac2001-08-23 17:05:04 +00001131 default:
1132 cout << "Don't know how to execute this instruction!\n-->" << I;
1133 }
1134 }
Chris Lattner461f02f2001-11-07 05:31:27 +00001135 InInstruction = false;
Chris Lattner92101ac2001-08-23 17:05:04 +00001136
1137 // Reset the current frame location to the top of stack
1138 CurFrame = ECStack.size()-1;
1139
1140 if (CurFrame == -1) return false; // No breakpoint if no code
1141
1142 // Return true if there is a breakpoint annotation on the instruction...
1143 return (*ECStack[CurFrame].CurInst)->getAnnotation(BreakpointAID) != 0;
1144}
1145
1146void Interpreter::stepInstruction() { // Do the 'step' command
1147 if (ECStack.empty()) {
1148 cout << "Error: no program running, cannot step!\n";
1149 return;
1150 }
1151
1152 // Run an instruction...
1153 executeInstruction();
1154
1155 // Print the next instruction to execute...
1156 printCurrentInstruction();
1157}
1158
1159// --- UI Stuff...
Chris Lattner92101ac2001-08-23 17:05:04 +00001160void Interpreter::nextInstruction() { // Do the 'next' command
1161 if (ECStack.empty()) {
1162 cout << "Error: no program running, cannot 'next'!\n";
1163 return;
1164 }
1165
1166 // If this is a call instruction, step over the call instruction...
1167 // TODO: ICALL, CALL WITH, ...
1168 if ((*ECStack.back().CurInst)->getOpcode() == Instruction::Call) {
Chris Lattnera74a6b52001-10-29 14:08:33 +00001169 unsigned StackSize = ECStack.size();
Chris Lattner92101ac2001-08-23 17:05:04 +00001170 // Step into the function...
1171 if (executeInstruction()) {
1172 // Hit a breakpoint, print current instruction, then return to user...
1173 cout << "Breakpoint hit!\n";
1174 printCurrentInstruction();
1175 return;
1176 }
1177
Chris Lattnera74a6b52001-10-29 14:08:33 +00001178 // If we we able to step into the function, finish it now. We might not be
1179 // able the step into a function, if it's external for example.
1180 if (ECStack.size() != StackSize)
1181 finish(); // Finish executing the function...
Chris Lattner069aa252001-10-29 16:05:19 +00001182 else
1183 printCurrentInstruction();
Chris Lattnera74a6b52001-10-29 14:08:33 +00001184
Chris Lattner92101ac2001-08-23 17:05:04 +00001185 } else {
1186 // Normal instruction, just step...
1187 stepInstruction();
1188 }
1189}
1190
1191void Interpreter::run() {
1192 if (ECStack.empty()) {
1193 cout << "Error: no program running, cannot run!\n";
1194 return;
1195 }
1196
1197 bool HitBreakpoint = false;
1198 while (!ECStack.empty() && !HitBreakpoint) {
1199 // Run an instruction...
1200 HitBreakpoint = executeInstruction();
1201 }
1202
1203 if (HitBreakpoint) {
1204 cout << "Breakpoint hit!\n";
1205 }
Chris Lattner92101ac2001-08-23 17:05:04 +00001206 // Print the next instruction to execute...
1207 printCurrentInstruction();
1208}
1209
1210void Interpreter::finish() {
1211 if (ECStack.empty()) {
1212 cout << "Error: no program running, cannot run!\n";
1213 return;
1214 }
1215
1216 unsigned StackSize = ECStack.size();
1217 bool HitBreakpoint = false;
1218 while (ECStack.size() >= StackSize && !HitBreakpoint) {
1219 // Run an instruction...
1220 HitBreakpoint = executeInstruction();
1221 }
1222
1223 if (HitBreakpoint) {
1224 cout << "Breakpoint hit!\n";
1225 }
1226
1227 // Print the next instruction to execute...
1228 printCurrentInstruction();
1229}
1230
1231
1232
1233// printCurrentInstruction - Print out the instruction that the virtual PC is
1234// at, or fail silently if no program is running.
1235//
1236void Interpreter::printCurrentInstruction() {
1237 if (!ECStack.empty()) {
Chris Lattnerf5b2ec12001-10-29 20:44:34 +00001238 if (ECStack.back().CurBB->begin() == ECStack.back().CurInst) // print label
1239 WriteAsOperand(cout, ECStack.back().CurBB) << ":\n";
1240
Chris Lattner92101ac2001-08-23 17:05:04 +00001241 Instruction *I = *ECStack.back().CurInst;
1242 InstNumber *IN = (InstNumber*)I->getAnnotation(SlotNumberAID);
1243 assert(IN && "Instruction has no numbering annotation!");
1244 cout << "#" << IN->InstNum << I;
1245 }
1246}
1247
1248void Interpreter::printValue(const Type *Ty, GenericValue V) {
Chris Lattner92101ac2001-08-23 17:05:04 +00001249 switch (Ty->getPrimitiveID()) {
1250 case Type::BoolTyID: cout << (V.BoolVal?"true":"false"); break;
1251 case Type::SByteTyID: cout << V.SByteVal; break;
1252 case Type::UByteTyID: cout << V.UByteVal; break;
1253 case Type::ShortTyID: cout << V.ShortVal; break;
1254 case Type::UShortTyID: cout << V.UShortVal; break;
1255 case Type::IntTyID: cout << V.IntVal; break;
1256 case Type::UIntTyID: cout << V.UIntVal; break;
Chris Lattner7b851ab2001-10-15 19:18:26 +00001257 case Type::LongTyID: cout << V.LongVal; break;
1258 case Type::ULongTyID: cout << V.ULongVal; break;
Chris Lattner92101ac2001-08-23 17:05:04 +00001259 case Type::FloatTyID: cout << V.FloatVal; break;
1260 case Type::DoubleTyID: cout << V.DoubleVal; break;
Chris Lattnerea38c0e2001-11-07 19:46:27 +00001261 case Type::PointerTyID:cout << (void*)V.PointerVal; break;
Chris Lattner92101ac2001-08-23 17:05:04 +00001262 default:
1263 cout << "- Don't know how to print value of this type!";
1264 break;
1265 }
1266}
1267
Chris Lattner2e42d3a2001-10-15 05:51:48 +00001268void Interpreter::print(const Type *Ty, GenericValue V) {
Chris Lattner5af0c482001-11-07 04:23:00 +00001269 CW << Ty << " ";
Chris Lattner2e42d3a2001-10-15 05:51:48 +00001270 printValue(Ty, V);
1271}
1272
1273void Interpreter::print(const string &Name) {
Chris Lattner92101ac2001-08-23 17:05:04 +00001274 Value *PickedVal = ChooseOneOption(Name, LookupMatchingNames(Name));
1275 if (!PickedVal) return;
1276
Chris Lattner9636a912001-10-01 16:18:37 +00001277 if (const Method *M = dyn_cast<const Method>(PickedVal)) {
Chris Lattner5af0c482001-11-07 04:23:00 +00001278 CW << M; // Print the method
Chris Lattnerea38c0e2001-11-07 19:46:27 +00001279 } else if (const Type *Ty = dyn_cast<const Type>(PickedVal)) {
1280 CW << "type %" << Name << " = " << Ty->getDescription() << endl;
1281 } else if (const BasicBlock *BB = dyn_cast<const BasicBlock>(PickedVal)) {
1282 CW << BB; // Print the basic block
Chris Lattner92101ac2001-08-23 17:05:04 +00001283 } else { // Otherwise there should be an annotation for the slot#
Chris Lattner2e42d3a2001-10-15 05:51:48 +00001284 print(PickedVal->getType(),
1285 getOperandValue(PickedVal, ECStack[CurFrame]));
Chris Lattner92101ac2001-08-23 17:05:04 +00001286 cout << endl;
1287 }
Chris Lattner92101ac2001-08-23 17:05:04 +00001288}
1289
Chris Lattner86660982001-08-27 05:16:50 +00001290void Interpreter::infoValue(const string &Name) {
1291 Value *PickedVal = ChooseOneOption(Name, LookupMatchingNames(Name));
1292 if (!PickedVal) return;
1293
1294 cout << "Value: ";
Chris Lattner2e42d3a2001-10-15 05:51:48 +00001295 print(PickedVal->getType(),
1296 getOperandValue(PickedVal, ECStack[CurFrame]));
Chris Lattner86660982001-08-27 05:16:50 +00001297 cout << endl;
1298 printOperandInfo(PickedVal, ECStack[CurFrame]);
1299}
1300
Chris Lattner461f02f2001-11-07 05:31:27 +00001301// printStackFrame - Print information about the specified stack frame, or -1
1302// for the default one.
1303//
1304void Interpreter::printStackFrame(int FrameNo = -1) {
1305 if (FrameNo == -1) FrameNo = CurFrame;
Chris Lattner461f02f2001-11-07 05:31:27 +00001306 Method *Meth = ECStack[FrameNo].CurMethod;
Chris Lattnerea38c0e2001-11-07 19:46:27 +00001307 const Type *RetTy = Meth->getReturnType();
1308
1309 CW << ((FrameNo == CurFrame) ? '>' : '-') << "#" << FrameNo << ". "
1310 << (Value*)RetTy << " \"" << Meth->getName() << "\"(";
Chris Lattner461f02f2001-11-07 05:31:27 +00001311
1312 Method::ArgumentListType &Args = Meth->getArgumentList();
1313 for (unsigned i = 0; i < Args.size(); ++i) {
1314 if (i != 0) cout << ", ";
1315 CW << (Value*)Args[i] << "=";
1316
1317 printValue(Args[i]->getType(), getOperandValue(Args[i], ECStack[FrameNo]));
Chris Lattner92101ac2001-08-23 17:05:04 +00001318 }
Chris Lattner461f02f2001-11-07 05:31:27 +00001319
1320 cout << ")" << endl;
1321 CW << *(ECStack[FrameNo].CurInst-(FrameNo != int(ECStack.size()-1)));
Chris Lattner92101ac2001-08-23 17:05:04 +00001322}
Chris Lattner461f02f2001-11-07 05:31:27 +00001323