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1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
4 // met: | 4 // met: |
5 // | 5 // |
6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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130 | 130 |
131 | 131 |
132 Handle<Code> CodeStub::GetCode(Isolate* isolate) { | 132 Handle<Code> CodeStub::GetCode(Isolate* isolate) { |
133 Factory* factory = isolate->factory(); | 133 Factory* factory = isolate->factory(); |
134 Heap* heap = isolate->heap(); | 134 Heap* heap = isolate->heap(); |
135 Code* code; | 135 Code* code; |
136 if (UseSpecialCache() | 136 if (UseSpecialCache() |
137 ? FindCodeInSpecialCache(&code, isolate) | 137 ? FindCodeInSpecialCache(&code, isolate) |
138 : FindCodeInCache(&code, isolate)) { | 138 : FindCodeInCache(&code, isolate)) { |
139 ASSERT(IsPregenerated(isolate) == code->is_pregenerated()); | 139 ASSERT(IsPregenerated(isolate) == code->is_pregenerated()); |
| 140 ASSERT(GetCodeKind() == code->kind()); |
140 return Handle<Code>(code); | 141 return Handle<Code>(code); |
141 } | 142 } |
142 | 143 |
143 { | 144 { |
144 HandleScope scope(isolate); | 145 HandleScope scope(isolate); |
145 | 146 |
146 Handle<Code> new_object = GenerateCode(isolate); | 147 Handle<Code> new_object = GenerateCode(isolate); |
147 new_object->set_major_key(MajorKey()); | 148 new_object->set_major_key(MajorKey()); |
148 FinishCode(new_object); | 149 FinishCode(new_object); |
149 RecordCodeGeneration(*new_object, isolate); | 150 RecordCodeGeneration(*new_object, isolate); |
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196 stream->Add("%s", MajorName(MajorKey(), false)); | 197 stream->Add("%s", MajorName(MajorKey(), false)); |
197 } | 198 } |
198 | 199 |
199 | 200 |
200 void CodeStub::PrintName(StringStream* stream) { | 201 void CodeStub::PrintName(StringStream* stream) { |
201 PrintBaseName(stream); | 202 PrintBaseName(stream); |
202 PrintState(stream); | 203 PrintState(stream); |
203 } | 204 } |
204 | 205 |
205 | 206 |
206 void BinaryOpStub::Generate(MacroAssembler* masm) { | 207 void BinaryOpStub::PrintBaseName(StringStream* stream) { |
207 // Explicitly allow generation of nested stubs. It is safe here because | 208 const char* op_name = Token::Name(op_); |
208 // generation code does not use any raw pointers. | 209 const char* ovr = ""; |
209 AllowStubCallsScope allow_stub_calls(masm, true); | 210 if (mode_ == OVERWRITE_LEFT) ovr = "_ReuseLeft"; |
210 | 211 if (mode_ == OVERWRITE_RIGHT) ovr = "_ReuseRight"; |
211 BinaryOpIC::TypeInfo operands_type = Max(left_type_, right_type_); | 212 stream->Add("BinaryOpStub_%s%s", op_name, ovr); |
212 if (left_type_ == BinaryOpIC::ODDBALL && right_type_ == BinaryOpIC::ODDBALL) { | 213 } |
213 // The OddballStub handles a number and an oddball, not two oddballs. | 214 |
214 operands_type = BinaryOpIC::GENERIC; | 215 |
215 } | 216 void BinaryOpStub::PrintState(StringStream* stream) { |
216 switch (operands_type) { | 217 stream->Add("("); |
217 case BinaryOpIC::UNINITIALIZED: | 218 stream->Add(StateToName(left_state_)); |
218 GenerateTypeTransition(masm); | 219 if (left_bool_) { |
| 220 stream->Add(",Boolean"); |
| 221 } |
| 222 stream->Add("*"); |
| 223 if (fixed_right_arg_.has_value) { |
| 224 stream->Add("%d", fixed_right_arg_.value); |
| 225 } else { |
| 226 stream->Add(StateToName(right_state_)); |
| 227 if (right_bool_) { |
| 228 stream->Add(",Boolean"); |
| 229 } |
| 230 } |
| 231 stream->Add("->"); |
| 232 stream->Add(StateToName(result_state_)); |
| 233 stream->Add(")"); |
| 234 } |
| 235 |
| 236 |
| 237 Maybe<Handle<Object> > BinaryOpStub::Result(Handle<Object> left, |
| 238 Handle<Object> right, |
| 239 Isolate* isolate) { |
| 240 Handle<JSBuiltinsObject> builtins(isolate->js_builtins_object()); |
| 241 Builtins::JavaScript func = BinaryOpIC::TokenToJSBuiltin(op_); |
| 242 Object* builtin = builtins->javascript_builtin(func); |
| 243 Handle<JSFunction> builtin_function = |
| 244 Handle<JSFunction>(JSFunction::cast(builtin), isolate); |
| 245 bool caught_exception; |
| 246 Handle<Object> result = Execution::Call(isolate, builtin_function, left, |
| 247 1, &right, &caught_exception); |
| 248 return Maybe<Handle<Object> >(!caught_exception, result); |
| 249 } |
| 250 |
| 251 |
| 252 void BinaryOpStub::Initialize() { |
| 253 fixed_right_arg_.has_value = false; |
| 254 left_state_ = right_state_ = result_state_ = NONE; |
| 255 left_bool_ = right_bool_ = false; |
| 256 } |
| 257 |
| 258 |
| 259 void BinaryOpStub::Generate(Token::Value op, |
| 260 State left, |
| 261 State right, |
| 262 State result, |
| 263 Isolate* isolate) { |
| 264 BinaryOpStub stub(INITIALIZED); |
| 265 stub.op_ = op; |
| 266 stub.left_state_ = left; |
| 267 stub.right_state_ = right; |
| 268 stub.result_state_ = result; |
| 269 stub.mode_ = NO_OVERWRITE; |
| 270 stub.GetCode(isolate); |
| 271 stub.mode_ = OVERWRITE_LEFT; |
| 272 stub.GetCode(isolate); |
| 273 } |
| 274 |
| 275 |
| 276 void BinaryOpStub::GenerateAheadOfTime(Isolate* isolate) { |
| 277 Token::Value binop[] = {Token::SUB, Token::MOD, Token::DIV, Token::MUL, |
| 278 Token::ADD, Token::SAR, Token::BIT_OR, Token::BIT_AND, |
| 279 Token::BIT_XOR, Token::SHL, Token::SHR}; |
| 280 // TODO(olivf) NumberTagU is not snapshot safe yet so we have to skip SHR |
| 281 // since that produces a unsigned int32. |
| 282 Token::Value bitop[] = {Token::BIT_OR, Token::BIT_AND, Token::BIT_XOR, |
| 283 Token::SAR, Token::SHL /* Token::SHR */}; |
| 284 Token::Value arithop[] = {Token::ADD, Token::SUB, Token::MOD, |
| 285 Token::DIV, Token::MUL}; |
| 286 for (unsigned i = 0; i < ARRAY_SIZE(binop); i++) { |
| 287 BinaryOpStub stub(UNINITIALIZED); |
| 288 stub.op_ = binop[i]; |
| 289 stub.GetCode(isolate); |
| 290 } |
| 291 for (unsigned i = 0; i < ARRAY_SIZE(arithop); i++) { |
| 292 Generate(arithop[i], SMI, SMI, SMI, isolate); |
| 293 Generate(arithop[i], SMI, SMI, INT32, isolate); |
| 294 Generate(arithop[i], SMI, SMI, NUMBER, isolate); |
| 295 Generate(arithop[i], INT32, INT32, INT32, isolate); |
| 296 Generate(arithop[i], NUMBER, SMI, SMI, isolate); |
| 297 Generate(arithop[i], NUMBER, SMI, NUMBER, isolate); |
| 298 Generate(arithop[i], NUMBER, INT32, NUMBER, isolate); |
| 299 Generate(arithop[i], NUMBER, NUMBER, NUMBER, isolate); |
| 300 } |
| 301 Generate(Token::SHR, SMI, SMI, SMI, isolate); |
| 302 for (unsigned i = 0; i < ARRAY_SIZE(bitop); i++) { |
| 303 Generate(bitop[i], SMI, SMI, SMI, isolate); |
| 304 Generate(bitop[i], SMI, INT32, INT32, isolate); |
| 305 Generate(bitop[i], INT32, INT32, INT32, isolate); |
| 306 Generate(bitop[i], NUMBER, INT32, INT32, isolate); |
| 307 Generate(bitop[i], NUMBER, NUMBER, INT32, isolate); |
| 308 } |
| 309 Generate(Token::ADD, STRING, STRING, STRING, isolate); |
| 310 |
| 311 BinaryOpStub stub(INITIALIZED); |
| 312 stub.op_ = Token::MOD; |
| 313 stub.left_state_ = SMI; |
| 314 stub.right_state_ = SMI; |
| 315 stub.result_state_ = SMI; |
| 316 stub.fixed_right_arg_.has_value = true; |
| 317 stub.fixed_right_arg_.value = 4; |
| 318 stub.mode_ = NO_OVERWRITE; |
| 319 stub.GetCode(isolate); |
| 320 stub.fixed_right_arg_.value = 8; |
| 321 stub.GetCode(isolate); |
| 322 } |
| 323 |
| 324 |
| 325 bool BinaryOpStub::can_encode_arg_value(int32_t value) const { |
| 326 return op_ == Token::MOD && value > 0 && IsPowerOf2(value) && |
| 327 FixedRightArgValueBits::is_valid(WhichPowerOf2(value)); |
| 328 } |
| 329 |
| 330 |
| 331 int BinaryOpStub::encode_arg_value(int32_t value) const { |
| 332 ASSERT(can_encode_arg_value(value)); |
| 333 return WhichPowerOf2(value); |
| 334 } |
| 335 |
| 336 |
| 337 int32_t BinaryOpStub::decode_arg_value(int value) const { |
| 338 return 1 << value; |
| 339 } |
| 340 |
| 341 |
| 342 int BinaryOpStub::encode_token(Token::Value op) const { |
| 343 ASSERT(op >= FIRST_TOKEN && op <= LAST_TOKEN); |
| 344 return op - FIRST_TOKEN; |
| 345 } |
| 346 |
| 347 |
| 348 Token::Value BinaryOpStub::decode_token(int op) const { |
| 349 int res = op + FIRST_TOKEN; |
| 350 ASSERT(res >= FIRST_TOKEN && res <= LAST_TOKEN); |
| 351 return static_cast<Token::Value>(res); |
| 352 } |
| 353 |
| 354 |
| 355 const char* BinaryOpStub::StateToName(State state) { |
| 356 switch (state) { |
| 357 case NONE: |
| 358 return "None"; |
| 359 case SMI: |
| 360 return "Smi"; |
| 361 case INT32: |
| 362 return "Int32"; |
| 363 case NUMBER: |
| 364 return "Number"; |
| 365 case STRING: |
| 366 return "String"; |
| 367 case GENERIC: |
| 368 return "Generic"; |
| 369 } |
| 370 return ""; |
| 371 } |
| 372 |
| 373 |
| 374 void BinaryOpStub::UpdateStatus(Handle<Object> left, |
| 375 Handle<Object> right, |
| 376 Maybe<Handle<Object> > result) { |
| 377 int old_state = GetExtraICState(); |
| 378 |
| 379 UpdateStatus(left, &left_state_, &left_bool_); |
| 380 UpdateStatus(right, &right_state_, &right_bool_); |
| 381 |
| 382 int32_t value; |
| 383 bool new_has_fixed_right_arg = |
| 384 right->ToInt32(&value) && can_encode_arg_value(value) && |
| 385 (left_state_ == SMI || left_state_ == INT32) && |
| 386 (result_state_ == NONE || !fixed_right_arg_.has_value); |
| 387 |
| 388 fixed_right_arg_ = Maybe<int32_t>(new_has_fixed_right_arg, value); |
| 389 |
| 390 if (result.has_value) UpdateStatus(result.value, &result_state_, NULL); |
| 391 |
| 392 State max_result = has_int_result() ? INT32 : NUMBER; |
| 393 State max_input = Max(left_state_, right_state_); |
| 394 |
| 395 // Avoid unnecessary Representation changes. |
| 396 if (left_state_ == STRING && right_state_ < STRING) { |
| 397 right_state_ = GENERIC; |
| 398 } else if (right_state_ == STRING && left_state_ < STRING) { |
| 399 left_state_ = GENERIC; |
| 400 } else if ((right_state_ == GENERIC && left_state_ != STRING) || |
| 401 (left_state_ == GENERIC && right_state_ != STRING)) { |
| 402 left_state_ = right_state_ = GENERIC; |
| 403 } else if (max_input <= NUMBER && max_input > result_state_) { |
| 404 result_state_ = Min(max_result, max_input); |
| 405 } |
| 406 |
| 407 ASSERT(result_state_ <= max_result || op_ == Token::ADD); |
| 408 |
| 409 if (old_state == GetExtraICState()) { |
| 410 // Since the fpu is to precise, we might bail out on numbers which |
| 411 // actually would truncate with 64 bit precision. |
| 412 ASSERT(!CpuFeatures::IsSupported(SSE2) && |
| 413 result_state_ <= INT32); |
| 414 result_state_ = NUMBER; |
| 415 } |
| 416 } |
| 417 |
| 418 |
| 419 void BinaryOpStub::UpdateStatus(Handle<Object> object, |
| 420 State* state, |
| 421 bool* bool_state) { |
| 422 if (object->IsBoolean() && bool_state != NULL) { |
| 423 *bool_state = true; |
| 424 return; |
| 425 } |
| 426 v8::internal::TypeInfo type = v8::internal::TypeInfo::FromValue(object); |
| 427 if (object->IsUndefined()) { |
| 428 // Undefined will be automatically truncated for us by HChange. |
| 429 type = (op_ == Token::BIT_AND || op_ == Token::BIT_OR || |
| 430 op_ == Token::BIT_XOR || op_ == Token::SAR || |
| 431 op_ == Token::SHL || op_ == Token::SHR) |
| 432 ? TypeInfo::Integer32() |
| 433 : TypeInfo::Double(); |
| 434 } |
| 435 State int_state = SmiValuesAre32Bits() ? NUMBER : INT32; |
| 436 State new_state = NONE; |
| 437 if (type.IsSmi()) { |
| 438 new_state = SMI; |
| 439 } else if (type.IsInteger32()) { |
| 440 new_state = int_state; |
| 441 } else if (type.IsNumber()) { |
| 442 new_state = NUMBER; |
| 443 } else if (object->IsString() && operation() == Token::ADD) { |
| 444 new_state = STRING; |
| 445 } else { |
| 446 new_state = GENERIC; |
| 447 } |
| 448 if ((new_state <= NUMBER && *state > NUMBER) || |
| 449 (new_state > NUMBER && *state <= NUMBER && *state != NONE)) { |
| 450 new_state = GENERIC; |
| 451 } |
| 452 *state = Max(*state, new_state); |
| 453 } |
| 454 |
| 455 |
| 456 Handle<Type> BinaryOpStub::StateToType(State state, |
| 457 bool seen_bool, |
| 458 Isolate* isolate) { |
| 459 Handle<Type> t = handle(Type::None(), isolate); |
| 460 switch (state) { |
| 461 case NUMBER: |
| 462 t = handle(Type::Union(t, handle(Type::Double(), isolate)), isolate); |
| 463 // Fall through. |
| 464 case INT32: |
| 465 t = handle(Type::Union(t, handle(Type::Signed32(), isolate)), isolate); |
| 466 // Fall through. |
| 467 case SMI: |
| 468 t = handle(Type::Union(t, handle(Type::Smi(), isolate)), isolate); |
219 break; | 469 break; |
220 case BinaryOpIC::SMI: | 470 |
221 GenerateSmiStub(masm); | 471 case STRING: |
| 472 t = handle(Type::Union(t, handle(Type::String(), isolate)), isolate); |
222 break; | 473 break; |
223 case BinaryOpIC::INT32: | 474 case GENERIC: |
224 GenerateInt32Stub(masm); | 475 return handle(Type::Any(), isolate); |
225 break; | 476 break; |
226 case BinaryOpIC::NUMBER: | 477 case NONE: |
227 GenerateNumberStub(masm); | |
228 break; | 478 break; |
229 case BinaryOpIC::ODDBALL: | 479 } |
230 GenerateOddballStub(masm); | 480 if (seen_bool) { |
231 break; | 481 t = handle(Type::Union(t, handle(Type::Boolean(), isolate)), isolate); |
232 case BinaryOpIC::STRING: | 482 } |
233 GenerateStringStub(masm); | 483 return t; |
234 break; | 484 } |
235 case BinaryOpIC::GENERIC: | 485 |
236 GenerateGeneric(masm); | 486 |
237 break; | 487 Handle<Type> BinaryOpStub::GetLeftType(Isolate* isolate) const { |
238 default: | 488 return StateToType(left_state_, left_bool_, isolate); |
239 UNREACHABLE(); | 489 } |
240 } | 490 |
241 } | 491 |
242 | 492 Handle<Type> BinaryOpStub::GetRightType(Isolate* isolate) const { |
243 | 493 return StateToType(right_state_, right_bool_, isolate); |
244 #define __ ACCESS_MASM(masm) | 494 } |
245 | 495 |
246 | 496 |
247 void BinaryOpStub::GenerateCallRuntime(MacroAssembler* masm) { | 497 Handle<Type> BinaryOpStub::GetResultType(Isolate* isolate) const { |
248 switch (op_) { | 498 if (HasSideEffects(isolate)) return StateToType(NONE, false, isolate); |
249 case Token::ADD: | 499 if (result_state_ == GENERIC && op_ == Token::ADD) { |
250 __ InvokeBuiltin(Builtins::ADD, CALL_FUNCTION); | 500 return handle(Type::Union(handle(Type::Number(), isolate), |
251 break; | 501 handle(Type::String(), isolate)), isolate); |
252 case Token::SUB: | 502 } |
253 __ InvokeBuiltin(Builtins::SUB, CALL_FUNCTION); | 503 ASSERT(result_state_ != GENERIC); |
254 break; | 504 if (result_state_ == NUMBER && op_ == Token::SHR) { |
255 case Token::MUL: | 505 return handle(Type::Unsigned32(), isolate); |
256 __ InvokeBuiltin(Builtins::MUL, CALL_FUNCTION); | 506 } |
257 break; | 507 return StateToType(result_state_, false, isolate); |
258 case Token::DIV: | 508 } |
259 __ InvokeBuiltin(Builtins::DIV, CALL_FUNCTION); | 509 |
260 break; | 510 |
261 case Token::MOD: | |
262 __ InvokeBuiltin(Builtins::MOD, CALL_FUNCTION); | |
263 break; | |
264 case Token::BIT_OR: | |
265 __ InvokeBuiltin(Builtins::BIT_OR, CALL_FUNCTION); | |
266 break; | |
267 case Token::BIT_AND: | |
268 __ InvokeBuiltin(Builtins::BIT_AND, CALL_FUNCTION); | |
269 break; | |
270 case Token::BIT_XOR: | |
271 __ InvokeBuiltin(Builtins::BIT_XOR, CALL_FUNCTION); | |
272 break; | |
273 case Token::SAR: | |
274 __ InvokeBuiltin(Builtins::SAR, CALL_FUNCTION); | |
275 break; | |
276 case Token::SHR: | |
277 __ InvokeBuiltin(Builtins::SHR, CALL_FUNCTION); | |
278 break; | |
279 case Token::SHL: | |
280 __ InvokeBuiltin(Builtins::SHL, CALL_FUNCTION); | |
281 break; | |
282 default: | |
283 UNREACHABLE(); | |
284 } | |
285 } | |
286 | |
287 | |
288 #undef __ | |
289 | |
290 | |
291 void BinaryOpStub::PrintName(StringStream* stream) { | |
292 const char* op_name = Token::Name(op_); | |
293 const char* overwrite_name; | |
294 switch (mode_) { | |
295 case NO_OVERWRITE: overwrite_name = "Alloc"; break; | |
296 case OVERWRITE_RIGHT: overwrite_name = "OverwriteRight"; break; | |
297 case OVERWRITE_LEFT: overwrite_name = "OverwriteLeft"; break; | |
298 default: overwrite_name = "UnknownOverwrite"; break; | |
299 } | |
300 stream->Add("BinaryOpStub_%s_%s_%s+%s", | |
301 op_name, | |
302 overwrite_name, | |
303 BinaryOpIC::GetName(left_type_), | |
304 BinaryOpIC::GetName(right_type_)); | |
305 } | |
306 | |
307 | |
308 void BinaryOpStub::GenerateStringStub(MacroAssembler* masm) { | |
309 ASSERT(left_type_ == BinaryOpIC::STRING || right_type_ == BinaryOpIC::STRING); | |
310 ASSERT(op_ == Token::ADD); | |
311 if (left_type_ == BinaryOpIC::STRING && right_type_ == BinaryOpIC::STRING) { | |
312 GenerateBothStringStub(masm); | |
313 return; | |
314 } | |
315 // Try to add arguments as strings, otherwise, transition to the generic | |
316 // BinaryOpIC type. | |
317 GenerateAddStrings(masm); | |
318 GenerateTypeTransition(masm); | |
319 } | |
320 | |
321 | |
322 InlineCacheState ICCompareStub::GetICState() { | 511 InlineCacheState ICCompareStub::GetICState() { |
323 CompareIC::State state = Max(left_, right_); | 512 CompareIC::State state = Max(left_, right_); |
324 switch (state) { | 513 switch (state) { |
325 case CompareIC::UNINITIALIZED: | 514 case CompareIC::UNINITIALIZED: |
326 return ::v8::internal::UNINITIALIZED; | 515 return ::v8::internal::UNINITIALIZED; |
327 case CompareIC::SMI: | 516 case CompareIC::SMI: |
328 case CompareIC::NUMBER: | 517 case CompareIC::NUMBER: |
329 case CompareIC::INTERNALIZED_STRING: | 518 case CompareIC::INTERNALIZED_STRING: |
330 case CompareIC::STRING: | 519 case CompareIC::STRING: |
331 case CompareIC::UNIQUE_NAME: | 520 case CompareIC::UNIQUE_NAME: |
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795 InstallDescriptor(isolate, &stub3); | 984 InstallDescriptor(isolate, &stub3); |
796 } | 985 } |
797 | 986 |
798 InternalArrayConstructorStub::InternalArrayConstructorStub( | 987 InternalArrayConstructorStub::InternalArrayConstructorStub( |
799 Isolate* isolate) { | 988 Isolate* isolate) { |
800 InternalArrayConstructorStubBase::GenerateStubsAheadOfTime(isolate); | 989 InternalArrayConstructorStubBase::GenerateStubsAheadOfTime(isolate); |
801 } | 990 } |
802 | 991 |
803 | 992 |
804 } } // namespace v8::internal | 993 } } // namespace v8::internal |
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