1 /*
2 * Copyright (c) 2021 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16 #include "ecmascript/compiler/argument_accessor.h"
17 #include "ecmascript/compiler/circuit_builder.h"
18 #include "ecmascript/compiler/gate_accessor.h"
19 #include "ecmascript/compiler/graph_editor.h"
20 #include "ecmascript/js_tagged_value-inl.h"
21 #include "ecmascript/mem/assert_scope.h"
22
23 namespace panda::ecmascript::kungfu {
24 using UseIterator = GateAccessor::UseIterator;
25
GetNumIns(GateRef gate) const26 size_t GateAccessor::GetNumIns(GateRef gate) const
27 {
28 Gate *gatePtr = circuit_->LoadGatePtr(gate);
29 return gatePtr->GetNumIns();
30 }
31
GetMark(GateRef gate) const32 MarkCode GateAccessor::GetMark(GateRef gate) const
33 {
34 return circuit_->GetMark(gate);
35 }
36
SetMark(GateRef gate,MarkCode mark)37 void GateAccessor::SetMark(GateRef gate, MarkCode mark)
38 {
39 circuit_->SetMark(gate, mark);
40 }
41
IsFinished(GateRef gate) const42 bool GateAccessor::IsFinished(GateRef gate) const
43 {
44 return GetMark(gate) == MarkCode::FINISHED;
45 }
46
IsVisited(GateRef gate) const47 bool GateAccessor::IsVisited(GateRef gate) const
48 {
49 return GetMark(gate) == MarkCode::VISITED;
50 }
51
IsPrevisit(GateRef gate) const52 bool GateAccessor::IsPrevisit(GateRef gate) const
53 {
54 return GetMark(gate) == MarkCode::PREVISIT;
55 }
56
IsNotMarked(GateRef gate) const57 bool GateAccessor::IsNotMarked(GateRef gate) const
58 {
59 return GetMark(gate) == MarkCode::NO_MARK;
60 }
61
SetFinished(GateRef gate)62 void GateAccessor::SetFinished(GateRef gate)
63 {
64 SetMark(gate, MarkCode::FINISHED);
65 }
66
SetVisited(GateRef gate)67 void GateAccessor::SetVisited(GateRef gate)
68 {
69 SetMark(gate, MarkCode::VISITED);
70 }
71
SetPrevisit(GateRef gate)72 void GateAccessor::SetPrevisit(GateRef gate)
73 {
74 SetMark(gate, MarkCode::PREVISIT);
75 }
76
GetOpCode(GateRef gate) const77 OpCode GateAccessor::GetOpCode(GateRef gate) const
78 {
79 Gate *gatePtr = circuit_->LoadGatePtr(gate);
80 return gatePtr->GetOpCode();
81 }
82
TryGetValue(GateRef gate) const83 BitField GateAccessor::TryGetValue(GateRef gate) const
84 {
85 Gate *gatePtr = circuit_->LoadGatePtr(gate);
86 return gatePtr->TryGetValue();
87 }
88
GetICmpCondition(GateRef gate) const89 ICmpCondition GateAccessor::GetICmpCondition(GateRef gate) const
90 {
91 ASSERT(GetOpCode(gate) == OpCode::ICMP);
92 Gate *gatePtr = circuit_->LoadGatePtr(gate);
93 return static_cast<ICmpCondition>(gatePtr->GetOneParameterMetaData()->GetValue());
94 }
95
GetFCmpCondition(GateRef gate) const96 FCmpCondition GateAccessor::GetFCmpCondition(GateRef gate) const
97 {
98 ASSERT(GetOpCode(gate) == OpCode::FCMP);
99 Gate *gatePtr = circuit_->LoadGatePtr(gate);
100 return static_cast<FCmpCondition>(gatePtr->GetOneParameterMetaData()->GetValue());
101 }
102
GetOffset(GateRef gate) const103 size_t GateAccessor::GetOffset(GateRef gate) const
104 {
105 ASSERT(GetOpCode(gate) == OpCode::LOAD_CONST_OFFSET ||
106 GetOpCode(gate) == OpCode::STORE_CONST_OFFSET);
107 Gate *gatePtr = circuit_->LoadGatePtr(gate);
108 auto accessor = LoadStoreConstOffsetAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
109 return accessor.GetOffset();
110 }
111
GetInitOffset(GateRef gate) const112 size_t GateAccessor::GetInitOffset(GateRef gate) const
113 {
114 ASSERT(GetOpCode(gate) == OpCode::INITVREG);
115 Gate *gatePtr = circuit_->LoadGatePtr(gate);
116 return gatePtr->GetOneParameterMetaData()->GetValue();
117 }
118
GetTrueWeight(GateRef gate) const119 uint32_t GateAccessor::GetTrueWeight(GateRef gate) const
120 {
121 ASSERT(GetOpCode(gate) == OpCode::IF_BRANCH);
122 Gate *gatePtr = circuit_->LoadGatePtr(gate);
123 auto accessor = BranchAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
124 return accessor.GetTrueWeight();
125 }
126
GetFalseWeight(GateRef gate) const127 uint32_t GateAccessor::GetFalseWeight(GateRef gate) const
128 {
129 ASSERT(GetOpCode(gate) == OpCode::IF_BRANCH);
130 Gate *gatePtr = circuit_->LoadGatePtr(gate);
131 auto accessor = BranchAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
132 return accessor.GetFalseWeight();
133 }
134
GetMemoryAttribute(GateRef gate) const135 MemoryAttribute GateAccessor::GetMemoryAttribute(GateRef gate) const
136 {
137 auto op = GetOpCode(gate);
138 Gate *gatePtr = circuit_->LoadGatePtr(gate);
139 switch (op) {
140 case OpCode::LOAD:
141 case OpCode::STORE_WITHOUT_BARRIER:
142 case OpCode::STORE: {
143 auto accessor = LoadStoreAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
144 return accessor.GetMemoryAttribute();
145 }
146 case OpCode::LOAD_CONST_OFFSET:
147 case OpCode::STORE_CONST_OFFSET: {
148 auto accessor = LoadStoreConstOffsetAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
149 return accessor.GetMemoryAttribute();
150 }
151 default: {
152 UNREACHABLE();
153 break;
154 }
155 }
156 return MemoryAttribute::Default();
157 }
158
HasBranchWeight(GateRef gate) const159 bool GateAccessor::HasBranchWeight(GateRef gate) const
160 {
161 ASSERT(GetOpCode(gate) == OpCode::IF_BRANCH);
162 Gate *gatePtr = circuit_->LoadGatePtr(gate);
163 auto accessor = BranchAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
164 return (accessor.GetTrueWeight() != 0) || (accessor.GetFalseWeight() != 0);
165 }
166
GetIndex(GateRef gate) const167 size_t GateAccessor::GetIndex(GateRef gate) const
168 {
169 ASSERT(GetOpCode(gate) == OpCode::GET_GLOBAL_ENV_OBJ_HCLASS ||
170 GetOpCode(gate) == OpCode::GET_GLOBAL_CONSTANT_VALUE ||
171 GetOpCode(gate) == OpCode::GET_GLOBAL_ENV_OBJ ||
172 GetOpCode(gate) == OpCode::LOAD_HCLASS_FROM_CONSTPOOL ||
173 GetOpCode(gate) == OpCode::LOAD_BUILTIN_OBJECT);
174 Gate *gatePtr = circuit_->LoadGatePtr(gate);
175 return gatePtr->GetOneParameterMetaData()->GetValue();
176 }
177
GetJSType(GateRef gate) const178 size_t GateAccessor::GetJSType(GateRef gate) const
179 {
180 ASSERT(GetOpCode(gate) == OpCode::IS_SPECIFIC_OBJECT_TYPE);
181 Gate *gatePtr = circuit_->LoadGatePtr(gate);
182 return gatePtr->GetOneParameterMetaData()->GetValue();
183 }
184
GetArraySize(GateRef gate) const185 uint32_t GateAccessor::GetArraySize(GateRef gate) const
186 {
187 ASSERT(GetOpCode(gate) == OpCode::CREATE_ARRAY ||
188 GetOpCode(gate) == OpCode::CREATE_ARRAY_WITH_BUFFER);
189 Gate *gatePtr = circuit_->LoadGatePtr(gate);
190 auto array = gatePtr->GetOneParameterMetaData()->GetValue();
191 return ArrayMetaDataAccessor(array).GetArrayLength();
192 }
193
SetArraySize(GateRef gate,uint32_t size)194 void GateAccessor::SetArraySize(GateRef gate, uint32_t size)
195 {
196 ASSERT(GetOpCode(gate) == OpCode::CREATE_ARRAY ||
197 GetOpCode(gate) == OpCode::CREATE_ARRAY_WITH_BUFFER);
198 uint32_t curSize = GetArraySize(gate);
199 if (curSize != size) {
200 Gate *gatePtr = circuit_->LoadGatePtr(gate);
201 ArrayMetaDataAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
202 accessor.SetArrayLength(size);
203 if (GetOpCode(gate) == OpCode::CREATE_ARRAY) {
204 auto meta = circuit_->CreateArray(accessor.ToValue());
205 SetMetaData(gate, meta);
206 } else {
207 auto meta = circuit_->CreateArrayWithBuffer(accessor.ToValue());
208 SetMetaData(gate, meta);
209 }
210 }
211 }
212
GetElementsKind(GateRef gate) const213 ElementsKind GateAccessor::GetElementsKind(GateRef gate) const
214 {
215 ASSERT(GetOpCode(gate) == OpCode::CREATE_ARRAY ||
216 GetOpCode(gate) == OpCode::CREATE_ARRAY_WITH_BUFFER);
217 Gate *gatePtr = circuit_->LoadGatePtr(gate);
218 auto array = gatePtr->GetOneParameterMetaData()->GetValue();
219 return ArrayMetaDataAccessor(array).GetElementsKind();
220 }
221
SetElementsKind(GateRef gate,ElementsKind kind)222 void GateAccessor::SetElementsKind(GateRef gate, ElementsKind kind)
223 {
224 ASSERT(GetOpCode(gate) == OpCode::CREATE_ARRAY ||
225 GetOpCode(gate) == OpCode::CREATE_ARRAY_WITH_BUFFER);
226 Gate *gatePtr = circuit_->LoadGatePtr(gate);
227 ArrayMetaDataAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
228 accessor.SetElementsKind(kind);
229 const_cast<OneParameterMetaData *>(gatePtr->GetOneParameterMetaData())->SetValue(accessor.ToValue());
230 }
231
GetStringStatus(GateRef gate) const232 uint32_t GateAccessor::GetStringStatus(GateRef gate) const
233 {
234 ASSERT(GetOpCode(gate) == OpCode::STRING_ADD);
235 Gate *gatePtr = circuit_->LoadGatePtr(gate);
236 StringStatusAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
237 return accessor.GetStringStatus();
238 }
239
SetStringStatus(GateRef gate,uint32_t type)240 void GateAccessor::SetStringStatus(GateRef gate, uint32_t type)
241 {
242 ASSERT(GetOpCode(gate) == OpCode::STRING_ADD);
243 uint32_t curStatus = GetStringStatus(gate);
244 if (curStatus != type) {
245 StringStatusAccessor accessor(static_cast<uint64_t>(type));
246 auto meta = circuit_->StringAdd(accessor.ToValue());
247 SetMetaData(gate, meta);
248 }
249 }
250
GetTypedUnAccessor(GateRef gate) const251 TypedUnaryAccessor GateAccessor::GetTypedUnAccessor(GateRef gate) const
252 {
253 ASSERT((GetOpCode(gate) == OpCode::TYPED_UNARY_OP));
254 Gate *gatePtr = circuit_->LoadGatePtr(gate);
255 return TypedUnaryAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
256 }
257
GetTypedBinaryAccessor(GateRef gate) const258 TypedBinaryAccessor GateAccessor::GetTypedBinaryAccessor(GateRef gate) const
259 {
260 Gate *gatePtr = circuit_->LoadGatePtr(gate);
261 return TypedBinaryAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
262 }
263
GetTypedJumpAccessor(GateRef gate) const264 TypedJumpAccessor GateAccessor::GetTypedJumpAccessor(GateRef gate) const
265 {
266 ASSERT(GetOpCode(gate) == OpCode::TYPED_CONDITION_JUMP);
267 Gate *gatePtr = circuit_->LoadGatePtr(gate);
268 return TypedJumpAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
269 }
270
GetArrayMetaDataAccessor(GateRef gate) const271 ArrayMetaDataAccessor GateAccessor::GetArrayMetaDataAccessor(GateRef gate) const
272 {
273 ASSERT(GetOpCode(gate) == OpCode::STABLE_ARRAY_CHECK ||
274 GetOpCode(gate) == OpCode::HCLASS_STABLE_ARRAY_CHECK ||
275 GetOpCode(gate) == OpCode::ELEMENTSKIND_CHECK ||
276 GetOpCode(gate) == OpCode::CREATE_ARRAY ||
277 GetOpCode(gate) == OpCode::CREATE_ARRAY_WITH_BUFFER ||
278 GetOpCode(gate) == OpCode::CREATE_ARGUMENTS ||
279 GetOpCode(gate) == OpCode::LOAD_ARRAY_LENGTH);
280 Gate *gatePtr = circuit_->LoadGatePtr(gate);
281 return ArrayMetaDataAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
282 }
283
NeedPushArgv(GateRef gate) const284 bool GateAccessor::NeedPushArgv(GateRef gate) const
285 {
286 ASSERT(GetOpCode(gate) == OpCode::CALL_NEW);
287 Gate *gatePtr = circuit_->LoadGatePtr(gate);
288 return gatePtr->GetNewConstructMetaData()->NeedPushArgv();
289 }
290
GetCreateArgumentsAccessor(GateRef gate) const291 CreateArgumentsAccessor GateAccessor::GetCreateArgumentsAccessor(GateRef gate) const
292 {
293 ASSERT(GetOpCode(gate) == OpCode::CREATE_ARGUMENTS);
294 Gate *gatePtr = circuit_->LoadGatePtr(gate);
295 return CreateArgumentsAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
296 }
297
GetObjectTypeAccessor(GateRef gate) const298 ObjectTypeAccessor GateAccessor::GetObjectTypeAccessor(GateRef gate) const
299 {
300 ASSERT(GetOpCode(gate) == OpCode::OBJECT_TYPE_CHECK);
301 Gate *gatePtr = circuit_->LoadGatePtr(gate);
302 return ObjectTypeAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
303 }
304
GetBuiltinHClassAccessor(GateRef gate) const305 BuiltinPrototypeHClassAccessor GateAccessor::GetBuiltinHClassAccessor(GateRef gate) const
306 {
307 ASSERT(GetOpCode(gate) == OpCode::BUILTIN_PROTOTYPE_HCLASS_CHECK);
308 Gate *gatePtr = circuit_->LoadGatePtr(gate);
309 return BuiltinPrototypeHClassAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
310 }
311
GetTypedArrayMetaDataAccessor(GateRef gate) const312 TypedArrayMetaDataAccessor GateAccessor::GetTypedArrayMetaDataAccessor(GateRef gate) const
313 {
314 ASSERT(GetOpCode(gate) == OpCode::TYPED_ARRAY_CHECK || GetOpCode(gate) == OpCode::LOAD_TYPED_ARRAY_LENGTH);
315 Gate *gatePtr = circuit_->LoadGatePtr(gate);
316 return TypedArrayMetaDataAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
317 }
318
GetLoadElementAccessor(GateRef gate) const319 LoadElementAccessor GateAccessor::GetLoadElementAccessor(GateRef gate) const
320 {
321 ASSERT(GetOpCode(gate) == OpCode::LOAD_ELEMENT);
322 Gate *gatePtr = circuit_->LoadGatePtr(gate);
323 return LoadElementAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
324 }
325
GetStoreElementAccessor(GateRef gate) const326 StoreElementAccessor GateAccessor::GetStoreElementAccessor(GateRef gate) const
327 {
328 ASSERT(GetOpCode(gate) == OpCode::STORE_ELEMENT);
329 Gate *gatePtr = circuit_->LoadGatePtr(gate);
330 return StoreElementAccessor(gatePtr->GetOneParameterMetaData()->GetValue());
331 }
332
TypedOpIsTypedArray(GateRef gate,TypedOpKind kind) const333 bool GateAccessor::TypedOpIsTypedArray(GateRef gate, TypedOpKind kind) const
334 {
335 switch (kind) {
336 case TypedOpKind::TYPED_LOAD_OP: {
337 TypedLoadOp op = GetTypedLoadOp(gate);
338 return TypedLoadOp::TYPED_ARRAY_FIRST <= op && op <=TypedLoadOp::TYPED_ARRAY_LAST;
339 }
340 case TypedOpKind::TYPED_STORE_OP: {
341 TypedStoreOp op = GetTypedStoreOp(gate);
342 return TypedStoreOp::TYPED_ARRAY_FIRST <= op && op <= TypedStoreOp::TYPED_ARRAY_LAST;
343 }
344 default:
345 LOG_ECMA(FATAL) << "this branch is unreachable";
346 UNREACHABLE();
347 }
348 }
349
GetTypedLoadOp(GateRef gate) const350 TypedLoadOp GateAccessor::GetTypedLoadOp(GateRef gate) const
351 {
352 ASSERT(GetOpCode(gate) == OpCode::LOAD_ELEMENT);
353 Gate *gatePtr = circuit_->LoadGatePtr(gate);
354 return static_cast<TypedLoadOp>(gatePtr->GetOneParameterMetaData()->GetValue());
355 }
356
GetTypedStoreOp(GateRef gate) const357 TypedStoreOp GateAccessor::GetTypedStoreOp(GateRef gate) const
358 {
359 ASSERT(GetOpCode(gate) == OpCode::STORE_ELEMENT);
360 Gate *gatePtr = circuit_->LoadGatePtr(gate);
361 return static_cast<TypedStoreOp>(gatePtr->GetOneParameterMetaData()->GetValue());
362 }
363
GetTypedCallTargetCheckOp(GateRef gate) const364 TypedCallTargetCheckOp GateAccessor::GetTypedCallTargetCheckOp(GateRef gate) const
365 {
366 ASSERT(GetOpCode(gate) == OpCode::TYPED_CALLTARGETCHECK_OP);
367 TypedCallTargetCheckAccessor accessor(TryGetValue(gate));
368 return accessor.GetCallTargetCheckOp();
369 }
370
GetMemoryType(GateRef gate) const371 MemoryType GateAccessor::GetMemoryType(GateRef gate) const
372 {
373 ASSERT(GetOpCode(gate) == OpCode::STORE_MEMORY);
374 Gate *gatePtr = circuit_->LoadGatePtr(gate);
375 return static_cast<MemoryType>(gatePtr->GetOneParameterMetaData()->GetValue());
376 }
377
GetHClassIndex(GateRef gate) const378 uint32_t GateAccessor::GetHClassIndex(GateRef gate) const
379 {
380 ASSERT(GetOpCode(gate) == OpCode::STORE_PROPERTY ||
381 GetOpCode(gate) == OpCode::PROTOTYPE_CHECK);
382 Gate *gatePtr = circuit_->LoadGatePtr(gate);
383 return static_cast<uint32_t>(gatePtr->GetOneParameterMetaData()->GetValue());
384 }
385
GetTypedBinaryOp(GateRef gate) const386 TypedBinOp GateAccessor::GetTypedBinaryOp(GateRef gate) const
387 {
388 ASSERT(GetOpCode(gate) == OpCode::TYPED_BINARY_OP);
389 TypedBinaryAccessor accessor(TryGetValue(gate));
390 return accessor.GetTypedBinOp();
391 }
392
HasNumberType(GateRef gate) const393 bool GateAccessor::HasNumberType(GateRef gate) const
394 {
395 OpCode op = GetOpCode(gate);
396 if (op == OpCode::TYPED_BINARY_OP) {
397 TypedBinaryAccessor accessor(TryGetValue(gate));
398 return accessor.GetParamType().HasNumberType();
399 }
400 return false;
401 }
402
HasStringType(GateRef gate) const403 bool GateAccessor::HasStringType(GateRef gate) const
404 {
405 OpCode op = GetOpCode(gate);
406 if (op == OpCode::TYPED_BINARY_OP) {
407 TypedBinaryAccessor accessor(TryGetValue(gate));
408 return accessor.GetParamType().IsStringType();
409 }
410 return false;
411 }
412
GetFuncGT(GateRef gate) const413 GlobalTSTypeRef GateAccessor::GetFuncGT(GateRef gate) const
414 {
415 ASSERT(GetOpCode(gate) == OpCode::JSINLINETARGET_TYPE_CHECK);
416 Gate *gatePtr = circuit_->LoadGatePtr(gate);
417 auto value = static_cast<uint32_t>((gatePtr->GetOneParameterMetaData()->GetValue()));
418 return GlobalTSTypeRef(value);
419 }
420
GetParamGateType(GateRef gate) const421 GateType GateAccessor::GetParamGateType(GateRef gate) const
422 {
423 // NOTICE-PGO: consider to delete this function in Part3, only primitive_type_check use,
424 // which is generate in the retype pass
425 ASSERT(GetOpCode(gate) == OpCode::PRIMITIVE_TYPE_CHECK);
426 Gate *gatePtr = circuit_->LoadGatePtr(gate);
427 GateTypeAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
428 return accessor.GetGateType();
429 }
430
GetParamType(GateRef gate) const431 ParamType GateAccessor::GetParamType(GateRef gate) const
432 {
433 Gate *gatePtr = circuit_->LoadGatePtr(gate);
434 GateTypeAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
435 return accessor.GetParamType();
436 }
437
IsConvertSupport(GateRef gate) const438 bool GateAccessor::IsConvertSupport(GateRef gate) const
439 {
440 ASSERT(GetOpCode(gate) == OpCode::CONVERT ||
441 GetOpCode(gate) == OpCode::CHECK_AND_CONVERT);
442 Gate *gatePtr = circuit_->LoadGatePtr(gate);
443 ValuePairTypeAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
444 return accessor.IsConvertSupport();
445 }
446
GetSrcType(GateRef gate) const447 ValueType GateAccessor::GetSrcType(GateRef gate) const
448 {
449 ASSERT(GetOpCode(gate) == OpCode::CONVERT ||
450 GetOpCode(gate) == OpCode::CHECK_AND_CONVERT);
451 Gate *gatePtr = circuit_->LoadGatePtr(gate);
452 ValuePairTypeAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
453 return accessor.GetSrcType();
454 }
455
GetDstType(GateRef gate) const456 ValueType GateAccessor::GetDstType(GateRef gate) const
457 {
458 ASSERT(GetOpCode(gate) == OpCode::CONVERT ||
459 GetOpCode(gate) == OpCode::CHECK_AND_CONVERT);
460 Gate *gatePtr = circuit_->LoadGatePtr(gate);
461 ValuePairTypeAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
462 return accessor.GetDstType();
463 }
464
GetFirstValue(GateRef gate) const465 uint32_t GateAccessor::GetFirstValue(GateRef gate) const
466 {
467 ASSERT(GetOpCode(gate) == OpCode::RANGE_GUARD);
468 Gate *gatePtr = circuit_->LoadGatePtr(gate);
469 UInt32PairAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
470 return accessor.GetFirstValue();
471 }
472
GetSecondValue(GateRef gate) const473 uint32_t GateAccessor::GetSecondValue(GateRef gate) const
474 {
475 ASSERT(GetOpCode(gate) == OpCode::RANGE_GUARD);
476 Gate *gatePtr = circuit_->LoadGatePtr(gate);
477 UInt32PairAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
478 return accessor.GetSecondValue();
479 }
480
GetVirtualRegisterIndex(GateRef gate) const481 size_t GateAccessor::GetVirtualRegisterIndex(GateRef gate) const
482 {
483 ASSERT(GetOpCode(gate) == OpCode::SAVE_REGISTER ||
484 GetOpCode(gate) == OpCode::RESTORE_REGISTER);
485 Gate *gatePtr = circuit_->LoadGatePtr(gate);
486 return static_cast<size_t>(gatePtr->GetOneParameterMetaData()->GetValue());
487 }
488
GetConstantValue(GateRef gate) const489 uint64_t GateAccessor::GetConstantValue(GateRef gate) const
490 {
491 ASSERT(GetOpCode(gate) == OpCode::CONSTANT);
492 Gate *gatePtr = circuit_->LoadGatePtr(gate);
493 return gatePtr->GetOneParameterMetaData()->GetValue();
494 }
495
GetConstantString(GateRef gate) const496 const ChunkVector<char>& GateAccessor::GetConstantString(GateRef gate) const
497 {
498 ASSERT(GetOpCode(gate) == OpCode::CONSTSTRING);
499 Gate *gatePtr = circuit_->LoadGatePtr(gate);
500 return gatePtr->GetStringMetaData()->GetString();
501 }
502
IsVtable(GateRef gate) const503 bool GateAccessor::IsVtable(GateRef gate) const
504 {
505 ASSERT(GetOpCode(gate) == OpCode::LOAD_PROPERTY);
506 Gate *gatePtr = circuit_->LoadGatePtr(gate);
507 return gatePtr->GetBoolMetaData()->GetBool();
508 }
509
GetNoGCFlag(GateRef gate) const510 bool GateAccessor::GetNoGCFlag(GateRef gate) const
511 {
512 if (gate == Circuit::NullGate()) {
513 return false;
514 }
515 OpCode op = GetOpCode(gate);
516 if (op != OpCode::TYPEDCALL && op != OpCode::TYPEDFASTCALL) {
517 return false;
518 }
519 return TypedCallIsNoGC(gate);
520 }
521
TypedCallIsNoGC(GateRef gate) const522 bool GateAccessor::TypedCallIsNoGC(GateRef gate) const
523 {
524 ASSERT(GetOpCode(gate) == OpCode::TYPEDCALL || GetOpCode(gate) == OpCode::TYPEDFASTCALL);
525 Gate *gatePtr = circuit_->LoadGatePtr(gate);
526 return gatePtr->GetTypedCallMetaData()->IsNoGC();
527 }
528
IsNoGC(GateRef gate) const529 bool GateAccessor::IsNoGC(GateRef gate) const
530 {
531 ASSERT(GetOpCode(gate) == OpCode::CALL_OPTIMIZED || GetOpCode(gate) == OpCode::FAST_CALL_OPTIMIZED);
532 Gate *gatePtr = circuit_->LoadGatePtr(gate);
533 return gatePtr->GetBoolMetaData()->GetBool();
534 }
535
TryGetPcOffset(GateRef gate) const536 uint32_t GateAccessor::TryGetPcOffset(GateRef gate) const
537 {
538 Gate *gatePtr = circuit_->LoadGatePtr(gate);
539 OpCode op = GetOpCode(gate);
540 switch (op) {
541 case OpCode::JS_BYTECODE:
542 return gatePtr->GetJSBytecodeMetaData()->GetPcOffset();
543 case OpCode::TYPED_CALL_BUILTIN:
544 case OpCode::TYPED_CALL_BUILTIN_SIDE_EFFECT:
545 case OpCode::CONSTRUCT:
546 case OpCode::CALL_NEW:
547 case OpCode::CALL_GETTER:
548 case OpCode::CALL_SETTER:
549 case OpCode::ARRAY_FOR_EACH:
550 case OpCode::ARRAY_FIND_OR_FINDINDEX:
551 case OpCode::ARRAY_FILTER:
552 case OpCode::ARRAY_MAP:
553 case OpCode::ARRAY_SOME:
554 case OpCode::ARRAY_EVERY:
555 case OpCode::FLOAT32_ARRAY_CONSTRUCTOR:
556 return static_cast<uint32_t>(gatePtr->GetOneParameterMetaData()->GetValue());
557 case OpCode::TYPEDCALL:
558 case OpCode::TYPEDFASTCALL:
559 return static_cast<uint32_t>(gatePtr->GetTypedCallMetaData()->GetValue());
560 case OpCode::FRAME_STATE: {
561 UInt32PairAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
562 return accessor.GetFirstValue();
563 }
564 default:
565 break;
566 }
567 return 0;
568 }
569
TryGetBcIndex(GateRef gate) const570 uint32_t GateAccessor::TryGetBcIndex(GateRef gate) const
571 {
572 Gate *gatePtr = circuit_->LoadGatePtr(gate);
573 OpCode op = GetOpCode(gate);
574 switch (op) {
575 case OpCode::JS_BYTECODE:
576 return gatePtr->GetJSBytecodeMetaData()->GetBcIndex();
577 default:
578 break;
579 }
580 return INVALID_BC_INDEX;
581 }
582
TryGetMethodOffset(GateRef gate) const583 uint32_t GateAccessor::TryGetMethodOffset(GateRef gate) const
584 {
585 Gate *gatePtr = circuit_->LoadGatePtr(gate);
586 OpCode op = GetOpCode(gate);
587 switch (op) {
588 case OpCode::FRAME_ARGS: {
589 UInt32PairAccessor accessor(gatePtr->GetOneParameterMetaData()->GetValue());
590 return accessor.GetFirstValue();
591 }
592 case OpCode::JS_BYTECODE: {
593 return gatePtr->GetJSBytecodeMetaData()->GetMethodId();
594 }
595 default:
596 break;
597 }
598 return 0;
599 }
600
GetFrameArgs(GateRef gate) const601 GateRef GateAccessor::GetFrameArgs(GateRef gate) const
602 {
603 if (!HasFrameState(gate)) {
604 return Circuit::NullGate();
605 }
606 if (GetOpCode(gate) == OpCode::FRAME_STATE) {
607 return GetValueIn(gate, 0); // 0: frame args
608 }
609 GateRef frameState = GetFrameState(gate);
610 OpCode op = GetOpCode(frameState);
611 if (op == OpCode::FRAME_ARGS) {
612 return frameState;
613 }
614 if (op == OpCode::FRAME_STATE) {
615 return GetValueIn(frameState, 0); // 0: frame args
616 }
617 return Circuit::NullGate();
618 }
619
UpdateMethodOffset(GateRef gate,uint32_t methodOffset)620 void GateAccessor::UpdateMethodOffset(GateRef gate, uint32_t methodOffset)
621 {
622 ASSERT(GetOpCode(gate) == OpCode::FRAME_ARGS);
623 Gate *gatePtr = circuit_->LoadGatePtr(gate);
624 UInt32PairAccessor accessor(methodOffset, 0);
625 const_cast<OneParameterMetaData *>(gatePtr->GetOneParameterMetaData())->SetValue(accessor.ToValue());
626 }
627
TryGetPGOType(GateRef gate) const628 PGOTypeRef GateAccessor::TryGetPGOType(GateRef gate) const
629 {
630 Gate *gatePtr = circuit_->LoadGatePtr(gate);
631 OpCode op = GetOpCode(gate);
632 if (op == OpCode::JS_BYTECODE) {
633 return gatePtr->GetJSBytecodeMetaData()->GetType();
634 }
635 return PGOTypeRef::NoneType();
636 }
637
TrySetPGOType(GateRef gate,PGOTypeRef type)638 void GateAccessor::TrySetPGOType(GateRef gate, PGOTypeRef type)
639 {
640 Gate *gatePtr = circuit_->LoadGatePtr(gate);
641 OpCode op = GetOpCode(gate);
642 if (op == OpCode::JS_BYTECODE) {
643 const_cast<JSBytecodeMetaData *>(gatePtr->GetJSBytecodeMetaData())->SetType(type);
644 }
645 }
646
TryGetArrayElementsLength(GateRef gate) const647 uint32_t GateAccessor::TryGetArrayElementsLength(GateRef gate) const
648 {
649 Gate *gatePtr = circuit_->LoadGatePtr(gate);
650 OpCode op = GetOpCode(gate);
651 if (op == OpCode::JS_BYTECODE) {
652 return gatePtr->GetJSBytecodeMetaData()->GetElementsLength();
653 }
654 return 0;
655 }
656
TrySetArrayElementsLength(GateRef gate,uint32_t length)657 void GateAccessor::TrySetArrayElementsLength(GateRef gate, uint32_t length)
658 {
659 Gate *gatePtr = circuit_->LoadGatePtr(gate);
660 OpCode op = GetOpCode(gate);
661 if (op == OpCode::JS_BYTECODE) {
662 const_cast<JSBytecodeMetaData *>(gatePtr->GetJSBytecodeMetaData())->SetElementsLength(length);
663 }
664 }
665
TryGetElementsKind(GateRef gate) const666 ElementsKind GateAccessor::TryGetElementsKind(GateRef gate) const
667 {
668 Gate *gatePtr = circuit_->LoadGatePtr(gate);
669 OpCode op = GetOpCode(gate);
670 if (op == OpCode::JS_BYTECODE) {
671 return Elements::FixElementsKind(gatePtr->GetJSBytecodeMetaData()->GetElementsKind());
672 }
673 return ElementsKind::GENERIC;
674 }
675
676 // Default is getting elementsKind before possible transition
TryGetArrayElementsKind(GateRef gate) const677 ElementsKind GateAccessor::TryGetArrayElementsKind(GateRef gate) const
678 {
679 Gate *gatePtr = circuit_->LoadGatePtr(gate);
680 OpCode op = GetOpCode(gate);
681 if (op == OpCode::JS_BYTECODE) {
682 ElementsKind kind = gatePtr->GetJSBytecodeMetaData()->GetElementsKind();
683 if (Elements::IsGeneric(kind)) {
684 return kind;
685 }
686 std::vector<ElementsKind> kinds = gatePtr->GetJSBytecodeMetaData()->GetElementsKinds();
687 for (auto &x : kinds) {
688 kind = Elements::MergeElementsKind(kind, x);
689 }
690 return kind;
691 }
692 return ElementsKind::GENERIC;
693 }
694
TryGetArrayElementsKindAfterTransition(GateRef gate) const695 ElementsKind GateAccessor::TryGetArrayElementsKindAfterTransition(GateRef gate) const
696 {
697 Gate *gatePtr = circuit_->LoadGatePtr(gate);
698 OpCode op = GetOpCode(gate);
699 if (op == OpCode::JS_BYTECODE) {
700 ElementsKind kind = gatePtr->GetJSBytecodeMetaData()->GetTransitionElementsKind();
701 if (Elements::IsGeneric(kind)) {
702 return kind;
703 }
704 std::vector<ElementsKind> kinds = gatePtr->GetJSBytecodeMetaData()->GetTransitionElementsKinds();
705 for (auto &x : kinds) {
706 kind = Elements::MergeElementsKind(kind, x);
707 }
708 return kind;
709 }
710 return ElementsKind::GENERIC;
711 }
712
TrySetElementsKind(GateRef gate,ElementsKind kind)713 void GateAccessor::TrySetElementsKind(GateRef gate, ElementsKind kind)
714 {
715 Gate *gatePtr = circuit_->LoadGatePtr(gate);
716 OpCode op = GetOpCode(gate);
717 if (op == OpCode::JS_BYTECODE) {
718 const_cast<JSBytecodeMetaData *>(gatePtr->GetJSBytecodeMetaData())->SetElementsKind(kind);
719 }
720 }
721
TrySetTransitionElementsKind(GateRef gate,ElementsKind kind)722 void GateAccessor::TrySetTransitionElementsKind(GateRef gate, ElementsKind kind)
723 {
724 Gate *gatePtr = circuit_->LoadGatePtr(gate);
725 OpCode op = GetOpCode(gate);
726 if (op == OpCode::JS_BYTECODE) {
727 const_cast<JSBytecodeMetaData *>(gatePtr->GetJSBytecodeMetaData())->SetTransitionElementsKind(kind);
728 }
729 }
730
TrySetOnHeapMode(GateRef gate,OnHeapMode onHeapMode) const731 void GateAccessor::TrySetOnHeapMode(GateRef gate, OnHeapMode onHeapMode) const
732 {
733 Gate *gatePtr = circuit_->LoadGatePtr(gate);
734 OpCode op = GetOpCode(gate);
735 if (op == OpCode::JS_BYTECODE) {
736 const_cast<JSBytecodeMetaData *>(gatePtr->GetJSBytecodeMetaData())->SetOnHeapMode(onHeapMode);
737 }
738 }
739
TryGetOnHeapMode(GateRef gate) const740 OnHeapMode GateAccessor::TryGetOnHeapMode(GateRef gate) const
741 {
742 Gate *gatePtr = circuit_->LoadGatePtr(gate);
743 OpCode op = GetOpCode(gate);
744 if (op == OpCode::JS_BYTECODE) {
745 return gatePtr->GetJSBytecodeMetaData()->GetOnHeapMode();
746 }
747 return OnHeapMode::NONE;
748 }
749
GetByteCodeOpcode(GateRef gate) const750 EcmaOpcode GateAccessor::GetByteCodeOpcode(GateRef gate) const
751 {
752 ASSERT(GetOpCode(gate) == OpCode::JS_BYTECODE);
753 Gate *gatePtr = circuit_->LoadGatePtr(gate);
754 return gatePtr->GetJSBytecodeMetaData()->GetByteCodeOpcode();
755 }
756
Print(GateRef gate) const757 void GateAccessor::Print(GateRef gate) const
758 {
759 Gate *gatePtr = circuit_->LoadGatePtr(gate);
760 auto comment = circuit_->GetComment(gate);
761 gatePtr->Print("", false, -1, comment);
762 }
763
ToString(GateRef gate) const764 std::string GateAccessor::ToString(GateRef gate) const
765 {
766 Gate *gatePtr = circuit_->LoadGatePtr(gate);
767 return gatePtr->ToString();
768 }
769
770 #ifndef NDEBUG
PrintById(size_t id) const771 void GateAccessor::PrintById(size_t id) const
772 {
773 GateRef gate = circuit_->GetGateRefById(id);
774 if (gate != Circuit::NullGate()) {
775 Gate *gatePtr = circuit_->LoadGatePtr(gate);
776 gatePtr->PrintWithBytecode(circuit_->GetComment(gate));
777 } else {
778 LOG_COMPILER(INFO) << "id overflow!";
779 }
780 }
781 #endif
782
PrintWithBytecode(GateRef gate) const783 void GateAccessor::PrintWithBytecode(GateRef gate) const
784 {
785 Gate *gatePtr = circuit_->LoadGatePtr(gate);
786 gatePtr->PrintWithBytecode(circuit_->GetComment(gate));
787 }
788
ShortPrint(GateRef gate) const789 void GateAccessor::ShortPrint(GateRef gate) const
790 {
791 Gate *gatePtr = circuit_->LoadGatePtr(gate);
792 gatePtr->ShortPrint();
793 }
794
GetId(GateRef gate) const795 GateId GateAccessor::GetId(GateRef gate) const
796 {
797 Gate *gatePtr = circuit_->LoadGatePtr(gate);
798 return gatePtr->GetId();
799 }
800
GetInValueStarts(GateRef gate) const801 size_t GateAccessor::GetInValueStarts(GateRef gate) const
802 {
803 Gate *gatePtr = circuit_->LoadGatePtr(gate);
804 return gatePtr->GetInValueStarts();
805 }
806
GetValueIn(GateRef gate,size_t idx) const807 GateRef GateAccessor::GetValueIn(GateRef gate, size_t idx) const
808 {
809 Gate *gatePtr = circuit_->LoadGatePtr(gate);
810 ASSERT(idx < gatePtr->GetInValueCount());
811 size_t valueIndex = gatePtr->GetInValueStarts();
812 return circuit_->GetIn(gate, valueIndex + idx);
813 }
814
GetNumValueIn(GateRef gate) const815 size_t GateAccessor::GetNumValueIn(GateRef gate) const
816 {
817 Gate *gatePtr = circuit_->LoadGatePtr(gate);
818 return gatePtr->GetInValueCount();
819 }
820
GetValueIns(GateRef gate) const821 std::vector<GateRef> GateAccessor::GetValueIns(GateRef gate) const
822 {
823 size_t num = GetNumValueIn(gate);
824 std::vector<GateRef> valueIns(num);
825 for (size_t i = 0; i < num; ++i) {
826 valueIns[i] = GetValueIn(gate, i);
827 }
828 return valueIns;
829 }
830
IsGCRelated(GateRef gate) const831 bool GateAccessor::IsGCRelated(GateRef gate) const
832 {
833 return GetGateType(gate).IsGCRelated();
834 }
835
GetIn(GateRef gate,size_t idx) const836 GateRef GateAccessor::GetIn(GateRef gate, size_t idx) const
837 {
838 return circuit_->GetIn(gate, idx);
839 }
840
GetState(GateRef gate,size_t idx) const841 GateRef GateAccessor::GetState(GateRef gate, size_t idx) const
842 {
843 ASSERT(idx < circuit_->LoadGatePtr(gate)->GetStateCount());
844 return circuit_->GetIn(gate, idx);
845 }
846
GetInStates(GateRef gate,std::vector<GateRef> & ins) const847 void GateAccessor::GetInStates(GateRef gate, std::vector<GateRef>& ins) const
848 {
849 const Gate *curGate = circuit_->LoadGatePtrConst(gate);
850 for (size_t idx = 0; idx < curGate->GetStateCount(); idx++) {
851 ins.push_back(circuit_->GetGateRef(curGate->GetInGateConst(idx)));
852 }
853 }
854
GetIns(GateRef gate,std::vector<GateRef> & ins) const855 void GateAccessor::GetIns(GateRef gate, std::vector<GateRef>& ins) const
856 {
857 const Gate *curGate = circuit_->LoadGatePtrConst(gate);
858 for (size_t idx = 0; idx < curGate->GetNumIns(); idx++) {
859 ins.push_back(circuit_->GetGateRef(curGate->GetInGateConst(idx)));
860 }
861 }
862
GetOuts(GateRef gate,std::vector<GateRef> & outs) const863 void GateAccessor::GetOuts(GateRef gate, std::vector<GateRef>& outs) const
864 {
865 const Gate *curGate = circuit_->LoadGatePtrConst(gate);
866 if (!curGate->IsFirstOutNull()) {
867 const Out *curOut = curGate->GetFirstOutConst();
868 GateRef ref = circuit_->GetGateRef(curOut->GetGateConst());
869 outs.push_back(ref);
870 while (!curOut->IsNextOutNull()) {
871 curOut = curOut->GetNextOutConst();
872 ref = circuit_->GetGateRef(curOut->GetGateConst());
873 outs.push_back(ref);
874 }
875 }
876 }
877
HasOuts(GateRef gate) const878 bool GateAccessor::HasOuts(GateRef gate) const
879 {
880 const Gate *curGate = circuit_->LoadGatePtrConst(gate);
881 return !curGate->IsFirstOutNull();
882 }
883
DeleteGateIfNoUse(GateRef gate)884 void GateAccessor::DeleteGateIfNoUse(GateRef gate)
885 {
886 if (!HasOuts(gate)) {
887 DeleteGate(gate);
888 }
889 }
890
GetOutStates(GateRef gate,std::vector<GateRef> & outStates) const891 void GateAccessor::GetOutStates(GateRef gate, std::vector<GateRef>& outStates) const
892 {
893 const Gate *curGate = circuit_->LoadGatePtrConst(gate);
894 if (!curGate->IsFirstOutNull()) {
895 const Out *curOut = curGate->GetFirstOutConst();
896 GateRef ref = circuit_->GetGateRef(curOut->GetGateConst());
897 if (GetMetaData(ref)->IsState()) {
898 outStates.push_back(ref);
899 }
900 while (!curOut->IsNextOutNull()) {
901 curOut = curOut->GetNextOutConst();
902 ref = circuit_->GetGateRef(curOut->GetGateConst());
903 if (GetMetaData(ref)->IsState()) {
904 outStates.push_back(ref);
905 }
906 }
907 }
908 }
909
GetStateUses(GateRef gate,std::vector<GateRef> & stateUses)910 void GateAccessor::GetStateUses(GateRef gate, std::vector<GateRef> &stateUses)
911 {
912 stateUses.clear();
913 auto uses = Uses(gate);
914 for (auto it = uses.begin(); it != uses.end(); it++) {
915 if (IsStateIn(it)) {
916 stateUses.emplace_back(*it);
917 }
918 }
919 }
920
GetDependUses(GateRef gate,std::vector<GateRef> & dependUses)921 void GateAccessor::GetDependUses(GateRef gate, std::vector<GateRef> &dependUses)
922 {
923 dependUses.clear();
924 auto uses = Uses(gate);
925 for (auto it = uses.begin(); it != uses.end(); it++) {
926 if (IsDependIn(it)) {
927 dependUses.emplace_back(*it);
928 }
929 }
930 }
931
GetValueUses(GateRef gate,std::vector<GateRef> & valueUses)932 void GateAccessor::GetValueUses(GateRef gate, std::vector<GateRef> &valueUses)
933 {
934 valueUses.clear();
935 auto uses = Uses(gate);
936 for (auto it = uses.begin(); it != uses.end(); it++) {
937 if (IsValueIn(it)) {
938 valueUses.emplace_back(*it);
939 }
940 }
941 }
942
GetValueUsesCount(GateRef gate)943 size_t GateAccessor::GetValueUsesCount(GateRef gate)
944 {
945 size_t count = 0;
946 auto uses = Uses(gate);
947 for (auto it = uses.begin(); it != uses.end(); it++) {
948 if (IsValueIn(it)) {
949 count++;
950 }
951 }
952 return count;
953 }
954
GetAllGates(std::vector<GateRef> & gates) const955 void GateAccessor::GetAllGates(std::vector<GateRef>& gates) const
956 {
957 circuit_->GetAllGates(gates);
958 }
959
IsInGateNull(GateRef gate,size_t idx) const960 bool GateAccessor::IsInGateNull(GateRef gate, size_t idx) const
961 {
962 return circuit_->IsInGateNull(gate, idx);
963 }
964
IsValueSelector(GateRef g) const965 bool GateAccessor::IsValueSelector(GateRef g) const
966 {
967 return GetOpCode(g) == OpCode::VALUE_SELECTOR;
968 }
969
IsSelector(GateRef g) const970 bool GateAccessor::IsSelector(GateRef g) const
971 {
972 auto op = GetOpCode(g);
973 return (op == OpCode::VALUE_SELECTOR) || (op == OpCode::DEPEND_SELECTOR);
974 }
975
IsFrameValues(GateRef g) const976 bool GateAccessor::IsFrameValues(GateRef g) const
977 {
978 auto op = GetOpCode(g);
979 return op == OpCode::FRAME_VALUES;
980 }
981
IsIn(GateRef g,GateRef in) const982 bool GateAccessor::IsIn(GateRef g, GateRef in) const
983 {
984 size_t n = GetNumIns(g);
985 for (size_t id = 0; id < n; id++) {
986 GateRef i = GetIn(g, id);
987 if (i == in) {
988 return true;
989 }
990 }
991 return false;
992 }
993
IsSimpleState(GateRef g) const994 bool GateAccessor::IsSimpleState(GateRef g) const
995 {
996 auto op = GetOpCode(g);
997 return (op == OpCode::IF_TRUE ||
998 op == OpCode::IF_FALSE ||
999 op == OpCode::SWITCH_CASE ||
1000 op == OpCode::DEFAULT_CASE ||
1001 op == OpCode::LOOP_BACK ||
1002 op == OpCode::MERGE ||
1003 op == OpCode::VALUE_SELECTOR ||
1004 op == OpCode::DEPEND_SELECTOR ||
1005 op == OpCode::DEPEND_RELAY ||
1006 op == OpCode::ORDINARY_BLOCK);
1007 }
1008
IsControlCase(GateRef gate) const1009 bool GateAccessor::IsControlCase(GateRef gate) const
1010 {
1011 return circuit_->IsControlCase(gate);
1012 }
1013
IsLoopExit(GateRef gate) const1014 bool GateAccessor::IsLoopExit(GateRef gate) const
1015 {
1016 return (GetOpCode(gate) == OpCode::LOOP_EXIT);
1017 }
1018
IsLoopExitRelated(GateRef gate) const1019 bool GateAccessor::IsLoopExitRelated(GateRef gate) const
1020 {
1021 return (GetOpCode(gate) == OpCode::LOOP_EXIT) ||
1022 (GetOpCode(gate) == OpCode::LOOP_EXIT_DEPEND) ||
1023 (GetOpCode(gate) == OpCode::LOOP_EXIT_VALUE);
1024 }
1025
IsLoopHead(GateRef gate) const1026 bool GateAccessor::IsLoopHead(GateRef gate) const
1027 {
1028 return circuit_->IsLoopHead(gate);
1029 }
1030
IsLoopBack(GateRef gate) const1031 bool GateAccessor::IsLoopBack(GateRef gate) const
1032 {
1033 return GetOpCode(gate) == OpCode::LOOP_BACK;
1034 }
1035
IsState(GateRef gate) const1036 bool GateAccessor::IsState(GateRef gate) const
1037 {
1038 return GetMetaData(gate)->IsState();
1039 }
1040
IsConstant(GateRef gate) const1041 bool GateAccessor::IsConstant(GateRef gate) const
1042 {
1043 return GetMetaData(gate)->IsConstant();
1044 }
1045
IsDependSelector(GateRef gate) const1046 bool GateAccessor::IsDependSelector(GateRef gate) const
1047 {
1048 return GetMetaData(gate)->IsDependSelector();
1049 }
1050
IsConstantValue(GateRef gate,uint64_t value) const1051 bool GateAccessor::IsConstantValue(GateRef gate, uint64_t value) const
1052 {
1053 if (GetOpCode(gate) == OpCode::CONSTANT) {
1054 uint64_t bitField = GetConstantValue(gate);
1055 return bitField == value;
1056 }
1057 return false;
1058 }
1059
IsConstantTaggedValue(GateRef gate,uint64_t value) const1060 bool GateAccessor::IsConstantTaggedValue(GateRef gate, uint64_t value) const
1061 {
1062 if (GetMachineType(gate) != MachineType::I64 || GetGateType(gate).IsNJSValueType()) {
1063 return false;
1064 }
1065 if (GetOpCode(gate) == OpCode::CONSTANT) {
1066 uint64_t bitField = GetConstantValue(gate);
1067 return bitField == value;
1068 }
1069 return false;
1070 }
1071
IsConstantUndefined(GateRef gate) const1072 bool GateAccessor::IsConstantUndefined(GateRef gate) const
1073 {
1074 return IsConstantTaggedValue(gate, JSTaggedValue::VALUE_UNDEFINED);
1075 }
1076
IsUndefinedOrNullOrHole(GateRef gate) const1077 bool GateAccessor::IsUndefinedOrNullOrHole(GateRef gate) const
1078 {
1079 return IsConstantTaggedValue(gate, JSTaggedValue::VALUE_UNDEFINED) ||
1080 IsConstantTaggedValue(gate, JSTaggedValue::VALUE_NULL) ||
1081 IsConstantTaggedValue(gate, JSTaggedValue::VALUE_HOLE);
1082 }
1083
IsTypedOperator(GateRef gate) const1084 bool GateAccessor::IsTypedOperator(GateRef gate) const
1085 {
1086 return GetMetaData(gate)->IsTypedOperator();
1087 }
1088
IsNotWrite(GateRef gate) const1089 bool GateAccessor::IsNotWrite(GateRef gate) const
1090 {
1091 return GetMetaData(gate)->IsNotWrite();
1092 }
1093
IsCheckWithTwoIns(GateRef gate) const1094 bool GateAccessor::IsCheckWithTwoIns(GateRef gate) const
1095 {
1096 return GetMetaData(gate)->IsCheckWithTwoIns();
1097 }
1098
IsCheckWithOneIn(GateRef gate) const1099 bool GateAccessor::IsCheckWithOneIn(GateRef gate) const
1100 {
1101 return GetMetaData(gate)->IsCheckWithOneIn();
1102 }
1103
IsSchedulable(GateRef gate) const1104 bool GateAccessor::IsSchedulable(GateRef gate) const
1105 {
1106 return GetMetaData(gate)->IsSchedulable();
1107 }
1108
IsVirtualState(GateRef gate) const1109 bool GateAccessor::IsVirtualState(GateRef gate) const
1110 {
1111 return GetMetaData(gate)->IsVirtualState();
1112 }
1113
IsGeneralState(GateRef gate) const1114 bool GateAccessor::IsGeneralState(GateRef gate) const
1115 {
1116 return GetMetaData(gate)->IsGeneralState();
1117 }
1118
IsIfOrSwitchRelated(GateRef gate) const1119 bool GateAccessor::IsIfOrSwitchRelated(GateRef gate) const
1120 {
1121 return GetMetaData(gate)->IsIfOrSwitchRelated();
1122 }
1123
GetDep(GateRef gate,size_t idx) const1124 GateRef GateAccessor::GetDep(GateRef gate, size_t idx) const
1125 {
1126 Gate *gatePtr = circuit_->LoadGatePtr(gate);
1127 ASSERT(idx < gatePtr->GetDependCount());
1128 size_t dependIndex = gatePtr->GetStateCount();
1129 return circuit_->GetIn(gate, dependIndex + idx);
1130 }
1131
GetImmediateId(GateRef gate) const1132 size_t GateAccessor::GetImmediateId(GateRef gate) const
1133 {
1134 Gate *gatePtr = circuit_->LoadGatePtr(gate);
1135 ASSERT(gatePtr->GetGateType() == GateType::NJSValue());
1136 ASSERT(gatePtr->GetOpCode() == OpCode::CONSTANT);
1137 ASSERT(gatePtr->GetMachineType() == MachineType::I64);
1138 size_t imm = gatePtr->GetOneParameterMetaData()->GetValue();
1139 return imm;
1140 }
1141
SetDep(GateRef gate,GateRef depGate,size_t idx)1142 void GateAccessor::SetDep(GateRef gate, GateRef depGate, size_t idx)
1143 {
1144 Gate *gatePtr = circuit_->LoadGatePtr(gate);
1145 ASSERT(idx < gatePtr->GetDependCount());
1146 size_t dependIndex = gatePtr->GetStateCount();
1147 gatePtr->ModifyIn(dependIndex + idx, circuit_->LoadGatePtr(depGate));
1148 }
1149
ReplaceIn(const UseIterator & useIt,GateRef replaceGate)1150 UseIterator GateAccessor::ReplaceIn(const UseIterator &useIt, GateRef replaceGate)
1151 {
1152 UseIterator next = useIt;
1153 next++;
1154 Gate *curGatePtr = circuit_->LoadGatePtr(*useIt);
1155 Gate *replaceGatePtr = circuit_->LoadGatePtr(replaceGate);
1156 curGatePtr->ModifyIn(useIt.GetIndex(), replaceGatePtr);
1157 return next;
1158 }
1159
GetGateType(GateRef gate) const1160 GateType GateAccessor::GetGateType(GateRef gate) const
1161 {
1162 return circuit_->LoadGatePtr(gate)->GetGateType();
1163 }
1164
SetGateType(GateRef gate,GateType gt)1165 void GateAccessor::SetGateType(GateRef gate, GateType gt)
1166 {
1167 circuit_->LoadGatePtr(gate)->SetGateType(gt);
1168 }
1169
ReplaceHirIfSuccess(const UseIterator & useIt,GateRef state)1170 UseIterator GateAccessor::ReplaceHirIfSuccess(const UseIterator &useIt, GateRef state)
1171 {
1172 ASSERT(GetOpCode(*useIt) == OpCode::IF_SUCCESS);
1173 auto uses = Uses(*useIt);
1174 for (auto it = uses.begin(); it != uses.end();) {
1175 if (IsStateIn(it)) {
1176 it = ReplaceIn(it, state);
1177 }
1178 }
1179 auto next = DeleteGate(useIt);
1180 return next;
1181 }
1182
ReplaceHirIfException(const UseIterator & useIt,StateDepend replacement)1183 UseIterator GateAccessor::ReplaceHirIfException(const UseIterator &useIt, StateDepend replacement)
1184 {
1185 ASSERT(GetOpCode(*useIt) == OpCode::IF_EXCEPTION);
1186 auto uses = Uses(*useIt);
1187 for (auto it = uses.begin(); it != uses.end();) {
1188 if (IsStateIn(it)) {
1189 it = ReplaceIn(it, replacement.State());
1190 } else if (IsDependIn(it)) {
1191 it = ReplaceIn(it, replacement.Depend());
1192 } else {
1193 ASSERT(!IsValueIn(it));
1194 }
1195 }
1196 UseIterator next = useIt;
1197 next++;
1198 return next;
1199 }
1200
ExceptionReturn(GateRef state,GateRef depend)1201 void GateAccessor::ExceptionReturn(GateRef state, GateRef depend)
1202 {
1203 CircuitBuilder builder(circuit_);
1204 auto constant = builder.ExceptionConstant();
1205 builder.Return(state, depend, constant);
1206 }
1207
ReplaceHirWithIfBranch(GateRef hirGate,StateDepend success,StateDepend exception,GateRef value)1208 void GateAccessor::ReplaceHirWithIfBranch(GateRef hirGate, StateDepend success,
1209 StateDepend exception, GateRef value)
1210 {
1211 auto uses = Uses(hirGate);
1212 GateRef ifException = Circuit::NullGate();
1213 for (auto it = uses.begin(); it != uses.end();) {
1214 if (IsStateIn(it)) {
1215 const OpCode op = GetOpCode(*it);
1216 if (op == OpCode::IF_SUCCESS) {
1217 it = ReplaceHirIfSuccess(it, success.State());
1218 } else if (op == OpCode::IF_EXCEPTION) {
1219 ifException = *it;
1220 it = ReplaceHirIfException(it, exception);
1221 } else if (GetMetaData(*it)->IsVirtualState()) {
1222 it = ReplaceIn(it, success.State());
1223 } else {
1224 ExceptionReturn(exception.State(), exception.Depend());
1225 it = ReplaceIn(it, success.State());
1226 }
1227 } else if (IsDependIn(it)) {
1228 const OpCode op = GetOpCode(*it);
1229 if (op == OpCode::IF_EXCEPTION) {
1230 // ignore it now.
1231 it++;
1232 } else {
1233 it = ReplaceIn(it, success.Depend());
1234 }
1235 } else {
1236 ASSERT(IsValueIn(it));
1237 it = ReplaceIn(it, value);
1238 }
1239 }
1240
1241 if (ifException != Circuit::NullGate()) {
1242 DeleteGate(ifException);
1243 }
1244
1245 // delete old gate
1246 DeleteGate(hirGate);
1247 }
1248
ReplaceHirDirectly(GateRef hirGate,StateDepend replacement,GateRef value)1249 void GateAccessor::ReplaceHirDirectly(GateRef hirGate,
1250 StateDepend replacement, GateRef value)
1251 {
1252 auto uses = Uses(hirGate);
1253 for (auto it = uses.begin(); it != uses.end();) {
1254 if (IsStateIn(it)) {
1255 ASSERT(GetOpCode(*it) != OpCode::IF_SUCCESS &&
1256 GetOpCode(*it) != OpCode::IF_EXCEPTION);
1257 it = ReplaceIn(it, replacement.State());
1258 } else if (IsDependIn(it)) {
1259 it = ReplaceIn(it, replacement.Depend());
1260 } else {
1261 ASSERT(IsValueIn(it));
1262 it = ReplaceIn(it, value);
1263 }
1264 }
1265
1266 // delete old gate
1267 DeleteGate(hirGate);
1268 }
1269
ReplaceHirAndDeleteIfException(GateRef hirGate,StateDepend replacement,GateRef value)1270 void GateAccessor::ReplaceHirAndDeleteIfException(GateRef hirGate,
1271 StateDepend replacement, GateRef value)
1272 {
1273 if (value != Circuit::NullGate()) {
1274 auto type = GetGateType(hirGate);
1275 if (!type.IsAnyType()) {
1276 SetGateType(value, type);
1277 }
1278 }
1279 GateRef ifException = Circuit::NullGate();
1280 auto uses = Uses(hirGate);
1281 for (auto it = uses.begin(); it != uses.end();) {
1282 if (IsStateIn(it)) {
1283 const OpCode op = GetOpCode(*it);
1284 if (op == OpCode::IF_SUCCESS) {
1285 it = ReplaceHirIfSuccess(it, replacement.State());
1286 } else if (op == OpCode::IF_EXCEPTION) {
1287 ifException = *it;
1288 it = ReplaceIn(it, circuit_->DeadGate());
1289 } else {
1290 it = ReplaceIn(it, replacement.State());
1291 }
1292 } else if (IsDependIn(it)) {
1293 const OpCode op = GetOpCode(*it);
1294 if (op == OpCode::IF_EXCEPTION) {
1295 it = ReplaceIn(it, circuit_->DeadGate());
1296 } else {
1297 it = ReplaceIn(it, replacement.Depend());
1298 }
1299 } else {
1300 ASSERT(IsValueIn(it));
1301 it = ReplaceIn(it, value);
1302 }
1303 }
1304
1305 // delete old gate
1306 DeleteGate(hirGate);
1307 if (ifException != Circuit::NullGate()) {
1308 ReplaceGate(ifException, circuit_->DeadGate());
1309 }
1310 #ifndef NDEBUG
1311 GetCircuit()->AddComment(value, "old V " + std::to_string(GetId(hirGate)));
1312 GetCircuit()->AddComment(replacement.Depend(), "old D " + std::to_string(GetId(hirGate)));
1313 #endif
1314 }
1315
DeleteGate(const UseIterator & useIt)1316 UseIterator GateAccessor::DeleteGate(const UseIterator &useIt)
1317 {
1318 auto next = useIt;
1319 next++;
1320 circuit_->DeleteGate(*useIt);
1321 return next;
1322 }
1323
DecreaseIn(const UseIterator & useIt)1324 void GateAccessor::DecreaseIn(const UseIterator &useIt)
1325 {
1326 size_t idx = useIt.GetIndex();
1327 circuit_->DecreaseIn(*useIt, idx);
1328 }
1329
DecreaseIn(GateRef gate,size_t index)1330 void GateAccessor::DecreaseIn(GateRef gate, size_t index)
1331 {
1332 circuit_->DecreaseIn(gate, index);
1333 }
1334
NewIn(GateRef gate,size_t idx,GateRef in)1335 void GateAccessor::NewIn(GateRef gate, size_t idx, GateRef in)
1336 {
1337 circuit_->NewIn(gate, idx, in);
1338 }
1339
GetStateCount(GateRef gate) const1340 size_t GateAccessor::GetStateCount(GateRef gate) const
1341 {
1342 return circuit_->LoadGatePtr(gate)->GetStateCount();
1343 }
1344
GetDependCount(GateRef gate) const1345 size_t GateAccessor::GetDependCount(GateRef gate) const
1346 {
1347 return circuit_->LoadGatePtr(gate)->GetDependCount();
1348 }
1349
GetInValueCount(GateRef gate) const1350 size_t GateAccessor::GetInValueCount(GateRef gate) const
1351 {
1352 return circuit_->LoadGatePtr(gate)->GetInValueCount();
1353 }
1354
UpdateAllUses(GateRef oldIn,GateRef newIn)1355 void GateAccessor::UpdateAllUses(GateRef oldIn, GateRef newIn)
1356 {
1357 if (oldIn == newIn) {
1358 return;
1359 }
1360 auto uses = Uses(oldIn);
1361 for (auto useIt = uses.begin(); useIt != uses.end();) {
1362 useIt = ReplaceIn(useIt, newIn);
1363 }
1364 }
1365
ReplaceIn(GateRef gate,size_t index,GateRef in)1366 void GateAccessor::ReplaceIn(GateRef gate, size_t index, GateRef in)
1367 {
1368 circuit_->ModifyIn(gate, index, in);
1369 }
1370
DeleteIn(GateRef gate,size_t idx)1371 void GateAccessor::DeleteIn(GateRef gate, size_t idx)
1372 {
1373 ASSERT(idx < circuit_->LoadGatePtrConst(gate)->GetNumIns());
1374 ASSERT(!circuit_->IsInGateNull(gate, idx));
1375 circuit_->LoadGatePtr(gate)->DeleteIn(idx);
1376 }
1377
ReplaceStateIn(GateRef gate,GateRef in,size_t index)1378 void GateAccessor::ReplaceStateIn(GateRef gate, GateRef in, size_t index)
1379 {
1380 ASSERT(index < GetStateCount(gate));
1381 circuit_->ModifyIn(gate, index, in);
1382 }
1383
ReplaceDependIn(GateRef gate,GateRef in,size_t index)1384 void GateAccessor::ReplaceDependIn(GateRef gate, GateRef in, size_t index)
1385 {
1386 ASSERT(index < GetDependCount(gate));
1387 size_t stateCount = GetStateCount(gate);
1388 circuit_->ModifyIn(gate, stateCount + index, in);
1389 }
1390
ReplaceOrNewDependIn(GateRef gate,GateRef in,size_t index)1391 void GateAccessor::ReplaceOrNewDependIn(GateRef gate, GateRef in, size_t index)
1392 {
1393 ASSERT(index < GetDependCount(gate));
1394 size_t stateCount = GetStateCount(gate);
1395 auto depend = GetDep(gate);
1396 if (depend == Circuit::NullGate()) {
1397 circuit_->NewIn(gate, stateCount + index, in);
1398 } else {
1399 circuit_->ModifyIn(gate, stateCount + index, in);
1400 }
1401 }
1402
ReplaceValueIn(GateRef gate,GateRef in,size_t index)1403 void GateAccessor::ReplaceValueIn(GateRef gate, GateRef in, size_t index)
1404 {
1405 ASSERT(index < GetInValueCount(gate));
1406 size_t valueStartIndex = GetInValueStarts(gate);
1407 circuit_->ModifyIn(gate, valueStartIndex + index, in);
1408 }
1409
DeleteGate(GateRef gate)1410 void GateAccessor::DeleteGate(GateRef gate)
1411 {
1412 circuit_->DeleteGate(gate);
1413 }
1414
GetMachineType(GateRef gate) const1415 MachineType GateAccessor::GetMachineType(GateRef gate) const
1416 {
1417 return circuit_->GetMachineType(gate);
1418 }
1419
SetMachineType(GateRef gate,MachineType type)1420 void GateAccessor::SetMachineType(GateRef gate, MachineType type)
1421 {
1422 circuit_->SetMachineType(gate, type);
1423 }
1424
GetConstantGate(MachineType bitValue,BitField bitfield,GateType type) const1425 GateRef GateAccessor::GetConstantGate(MachineType bitValue, BitField bitfield, GateType type) const
1426 {
1427 return circuit_->GetConstantGate(bitValue, bitfield, type);
1428 }
1429
GetInitialEnvGate(GateRef depend,GateRef jsFunc) const1430 GateRef GateAccessor::GetInitialEnvGate(GateRef depend, GateRef jsFunc) const
1431 {
1432 return circuit_->GetInitialEnvGate(depend, jsFunc);
1433 }
1434
IsConstantNumber(GateRef gate) const1435 bool GateAccessor::IsConstantNumber(GateRef gate) const
1436 {
1437 DISALLOW_GARBAGE_COLLECTION;
1438 if (GetGateType(gate).IsNJSValueType() ||
1439 (GetOpCode(gate) != OpCode::CONSTANT)) {
1440 return false;
1441 }
1442 JSTaggedValue value(GetConstantValue(gate));
1443 return value.IsNumber();
1444 }
1445
GetFloat64FromConstant(GateRef gate) const1446 double GateAccessor::GetFloat64FromConstant(GateRef gate) const
1447 {
1448 DISALLOW_GARBAGE_COLLECTION;
1449 ASSERT(GetOpCode(gate) == OpCode::CONSTANT);
1450 uint64_t rawValue = GetConstantValue(gate);
1451 if (GetGateType(gate).IsNJSValueType()) {
1452 ASSERT(GetMachineType(gate) == MachineType::F64);
1453 return base::bit_cast<double>(rawValue);
1454 }
1455 JSTaggedValue value(rawValue);
1456 return value.GetDouble();
1457 }
1458
GetInt32FromConstant(GateRef gate) const1459 int GateAccessor::GetInt32FromConstant(GateRef gate) const
1460 {
1461 DISALLOW_GARBAGE_COLLECTION;
1462 ASSERT(GetOpCode(gate) == OpCode::CONSTANT);
1463 uint64_t rawValue = GetConstantValue(gate);
1464 if (GetGateType(gate).IsNJSValueType()) {
1465 ASSERT(GetMachineType(gate) == MachineType::I32);
1466 return static_cast<int>(rawValue);
1467 }
1468 JSTaggedValue value(rawValue);
1469 return value.GetInt();
1470 }
1471
IsStateIn(const UseIterator & useIt) const1472 bool GateAccessor::IsStateIn(const UseIterator &useIt) const
1473 {
1474 size_t stateStartIndex = 0;
1475 size_t stateEndIndex = stateStartIndex + GetStateCount(*useIt);
1476 size_t index = useIt.GetIndex();
1477 return (index >= stateStartIndex && index < stateEndIndex);
1478 }
1479
IsDependIn(const UseIterator & useIt) const1480 bool GateAccessor::IsDependIn(const UseIterator &useIt) const
1481 {
1482 size_t dependStartIndex = GetStateCount(*useIt);
1483 size_t dependEndIndex = dependStartIndex + GetDependCount(*useIt);
1484 size_t index = useIt.GetIndex();
1485 return (index >= dependStartIndex && index < dependEndIndex);
1486 }
1487
IsValueIn(const UseIterator & useIt) const1488 bool GateAccessor::IsValueIn(const UseIterator &useIt) const
1489 {
1490 size_t valueStartIndex = GetInValueStarts(*useIt);
1491 size_t valueEndIndex = valueStartIndex + GetInValueCount(*useIt);
1492 size_t index = useIt.GetIndex();
1493 return (index >= valueStartIndex && index < valueEndIndex);
1494 }
1495
IsFrameStateIn(const UseIterator & useIt) const1496 bool GateAccessor::IsFrameStateIn(const UseIterator &useIt) const
1497 {
1498 size_t index = useIt.GetIndex();
1499 return IsFrameStateIn(*useIt, index);
1500 }
1501
IsStateIn(GateRef gate,size_t index) const1502 bool GateAccessor::IsStateIn(GateRef gate, size_t index) const
1503 {
1504 size_t stateStartIndex = 0;
1505 size_t stateEndIndex = stateStartIndex + GetStateCount(gate);
1506 return (index >= stateStartIndex && index < stateEndIndex);
1507 }
1508
IsDependIn(GateRef gate,size_t index) const1509 bool GateAccessor::IsDependIn(GateRef gate, size_t index) const
1510 {
1511 size_t dependStartIndex = GetStateCount(gate);
1512 size_t dependEndIndex = dependStartIndex + GetDependCount(gate);
1513 return (index >= dependStartIndex && index < dependEndIndex);
1514 }
1515
IsValueIn(GateRef gate,size_t index) const1516 bool GateAccessor::IsValueIn(GateRef gate, size_t index) const
1517 {
1518 size_t valueStartIndex = GetInValueStarts(gate);
1519 size_t valueEndIndex = valueStartIndex + GetInValueCount(gate);
1520 return (index >= valueStartIndex && index < valueEndIndex);
1521 }
1522
IsFrameStateIn(GateRef gate,size_t index) const1523 bool GateAccessor::IsFrameStateIn(GateRef gate, size_t index) const
1524 {
1525 Gate *gatePtr = circuit_->LoadGatePtr(gate);
1526 size_t frameStateStartIndex = gatePtr->GetInFrameStateStarts();
1527 size_t FrameStateEndIndex = frameStateStartIndex + gatePtr->GetInFrameStateCount();
1528 return (index >= frameStateStartIndex && index < FrameStateEndIndex);
1529 }
1530
ReplaceGate(GateRef gate,GateRef state,GateRef depend,GateRef value)1531 void GateAccessor::ReplaceGate(GateRef gate, GateRef state, GateRef depend, GateRef value)
1532 {
1533 if (value != Circuit::NullGate()) {
1534 GateType type = GetGateType(gate);
1535 GateType valueType = GetGateType(value);
1536 if (!type.IsAnyType() && !valueType.IsNJSValueType()) {
1537 SetGateType(value, type);
1538 }
1539 }
1540
1541 auto uses = Uses(gate);
1542 for (auto useIt = uses.begin(); useIt != uses.end();) {
1543 if (IsStateIn(useIt)) {
1544 ASSERT(state != Circuit::NullGate());
1545 useIt = ReplaceIn(useIt, state);
1546 } else if (IsDependIn(useIt)) {
1547 ASSERT(depend != Circuit::NullGate());
1548 useIt = ReplaceIn(useIt, depend);
1549 } else if (IsValueIn(useIt)) {
1550 ASSERT(value != Circuit::NullGate());
1551 useIt = ReplaceIn(useIt, value);
1552 } else {
1553 LOG_ECMA(FATAL) << "this branch is unreachable";
1554 UNREACHABLE();
1555 }
1556 }
1557 #ifndef NDEBUG
1558 GetCircuit()->AddComment(value, "old V " + std::to_string(GetId(gate)));
1559 #endif
1560 DeleteGate(gate);
1561 }
1562
ReplaceGate(GateRef gate,GateRef replacement)1563 void GateAccessor::ReplaceGate(GateRef gate, GateRef replacement)
1564 {
1565 GateRef depend = Circuit::NullGate();
1566 if (GetDependCount(gate) > 0) {
1567 ASSERT(GetDependCount(gate) == 1); // 1: one dep
1568 depend = GetDep(gate);
1569 }
1570 GateRef state = Circuit::NullGate();
1571 if (GetStateCount(gate) > 0) {
1572 ASSERT(GetStateCount(gate) == 1); // 1: one state
1573 state = GetState(gate);
1574 }
1575 return ReplaceGate(gate, StateDepend {state, depend}, replacement);
1576 }
1577
ReplaceGate(GateRef gate,StateDepend stateDepend,GateRef replacement)1578 void GateAccessor::ReplaceGate(GateRef gate, StateDepend stateDepend, GateRef replacement)
1579 {
1580 ASSERT(gate != replacement);
1581 auto state = stateDepend.State();
1582 auto depend = stateDepend.Depend();
1583 auto uses = Uses(gate);
1584 for (auto it = uses.begin(); it != uses.end();) {
1585 if (IsStateIn(it)) {
1586 ASSERT(state != Circuit::NullGate());
1587 it = ReplaceIn(it, state);
1588 } else if (IsDependIn(it)) {
1589 ASSERT(depend != Circuit::NullGate());
1590 it = ReplaceIn(it, depend);
1591 } else {
1592 it = ReplaceIn(it, replacement);
1593 }
1594 }
1595 #ifndef NDEBUG
1596 GetCircuit()->AddComment(replacement, "old V " + std::to_string(GetId(gate)));
1597 #endif
1598 DeleteGate(gate);
1599 }
1600
ReplaceControlGate(GateRef gate,GateRef newState)1601 void GateAccessor::ReplaceControlGate(GateRef gate, GateRef newState)
1602 {
1603 auto uses = Uses(gate);
1604 for (auto useIt = uses.begin(); useIt != uses.end();) {
1605 if (IsStateIn(useIt)) {
1606 OpCode opcode = GetOpCode(*useIt);
1607 if (opcode == OpCode::VALUE_SELECTOR || opcode == OpCode::DEPEND_SELECTOR) {
1608 useIt++;
1609 } else {
1610 useIt = ReplaceIn(useIt, newState);
1611 }
1612 } else {
1613 LOG_ECMA(FATAL) << "this branch is unreachable";
1614 UNREACHABLE();
1615 }
1616 }
1617 // Do not delete this gate
1618 }
1619
1620 // When Insert newGate, all the stateIn from state and dependIn from depend can be replaced to newGate
ReplaceInAfterInsert(GateRef state,GateRef depend,GateRef newGate)1621 void GateAccessor::ReplaceInAfterInsert(GateRef state, GateRef depend, GateRef newGate)
1622 {
1623 auto uses = Uses(state);
1624 for (auto useIt = uses.begin(); useIt != uses.end();) {
1625 if (IsStateIn(useIt) && (*useIt != newGate)) {
1626 ASSERT(newGate != Circuit::NullGate());
1627 // Exception, for example, IF_TRUE / IF_FALSE -> DEPEND_RELAY,
1628 // or LOOP_BEGIN / MERGE -> DEPEND_SELECTOR cannot be replaced
1629 if (!IsState(*useIt)) {
1630 useIt++;
1631 continue;
1632 }
1633 useIt = ReplaceIn(useIt, newGate);
1634 } else {
1635 useIt++;
1636 }
1637 }
1638
1639 uses = Uses(depend);
1640 for (auto useIt = uses.begin(); useIt != uses.end();) {
1641 if (IsDependIn(useIt) && (*useIt != newGate)) {
1642 ASSERT(newGate != Circuit::NullGate());
1643 useIt = ReplaceIn(useIt, newGate);
1644 } else {
1645 useIt++;
1646 }
1647 }
1648 }
1649
1650 // When loopExit, find stateSplit after DEPEND_SELECTOR
GetFrameStateDependIn(GateRef gate,GateRef & dependIn)1651 void GateAccessor::GetFrameStateDependIn(GateRef gate, GateRef &dependIn)
1652 {
1653 auto uses = Uses(gate);
1654 size_t stateSplitCount = 0;
1655 GateRef stateSplit = Circuit::NullGate();
1656 for (auto it = uses.begin(); it != uses.end();) {
1657 if (GetOpCode(*it) == OpCode::STATE_SPLIT) {
1658 ASSERT(stateSplitCount < 1); // only one state Split;
1659 stateSplitCount++;
1660 stateSplit = *it;
1661 break;
1662 } else {
1663 ++it;
1664 }
1665 }
1666
1667 ASSERT(stateSplitCount <= 1);
1668 if (stateSplitCount == 1 && stateSplit != Circuit::NullGate()) {
1669 dependIn = stateSplit;
1670 }
1671 }
1672
1673 // When ifOp or loopExit, insertAfter
1674 // stateIn: IF_TRUE / IF_FALSE / MERGE
1675 // dependIn: DEPEND_RELAY / DEPEND_SELECTOR, if stateSplit follow closely, after the stateSplit.
1676
GetStateInAndDependIn(GateRef insertAfter,GateRef & stateIn,GateRef & dependIn)1677 void GateAccessor::GetStateInAndDependIn(GateRef insertAfter, GateRef &stateIn, GateRef &dependIn)
1678 {
1679 if (GetOpCode(insertAfter) == OpCode::IF_TRUE || GetOpCode(insertAfter) == OpCode::IF_FALSE
1680 || GetOpCode(insertAfter) == OpCode::IF_SUCCESS) {
1681 auto uses = Uses(insertAfter);
1682 for (auto it = uses.begin(); it != uses.end();) {
1683 if (GetOpCode(*it) == OpCode::DEPEND_RELAY) {
1684 stateIn = insertAfter;
1685 dependIn = (*it);
1686 break;
1687 } else {
1688 ++it;
1689 }
1690 }
1691 } else if (GetOpCode(insertAfter) == OpCode::MERGE) {
1692 auto uses = Uses(insertAfter);
1693 for (auto it = uses.begin(); it != uses.end();) {
1694 if (GetOpCode(*it) == OpCode::DEPEND_SELECTOR) {
1695 stateIn = insertAfter;
1696 dependIn = (*it);
1697 GetFrameStateDependIn(*it, dependIn);
1698 break;
1699 } else {
1700 ++it;
1701 }
1702 }
1703 }
1704 ASSERT(GetDependCount(dependIn) > 0);
1705 }
1706
GetFrameDepth(GateRef gate,OpCode op)1707 size_t GateAccessor::GetFrameDepth(GateRef gate, OpCode op)
1708 {
1709 if (GetOpCode(gate) != op) {
1710 return 0;
1711 }
1712 size_t depth = 0;
1713 GateRef prev = GetFrameState(gate);
1714 while ((GetOpCode(prev) == op)) {
1715 depth++;
1716 prev = GetFrameState(prev);
1717 }
1718 return depth;
1719 }
1720
GetFrameState(GateRef gate) const1721 GateRef GateAccessor::GetFrameState(GateRef gate) const
1722 {
1723 ASSERT(HasFrameState(gate));
1724 Gate *gatePtr = circuit_->LoadGatePtr(gate);
1725 size_t index = gatePtr->GetInFrameStateStarts();
1726 return circuit_->GetIn(gate, index);
1727 }
1728
FindNearestFrameState(GateRef gate) const1729 GateRef GateAccessor::FindNearestFrameState(GateRef gate) const
1730 {
1731 auto statesplit = FindNearestStateSplit(gate);
1732 return GetFrameState(statesplit);
1733 }
1734
FindNearestStateSplit(GateRef gate) const1735 GateRef GateAccessor::FindNearestStateSplit(GateRef gate) const
1736 {
1737 auto statesplit = gate;
1738 while (GetOpCode(statesplit) != OpCode::STATE_SPLIT) {
1739 statesplit = GetDep(statesplit);
1740 }
1741 return statesplit;
1742 }
1743
HasFrameState(GateRef gate) const1744 bool GateAccessor::HasFrameState(GateRef gate) const
1745 {
1746 return GetMetaData(gate)->HasFrameState();
1747 }
1748
ReplaceFrameStateIn(GateRef gate,GateRef in)1749 void GateAccessor::ReplaceFrameStateIn(GateRef gate, GateRef in)
1750 {
1751 ASSERT(HasFrameState(gate));
1752 Gate *gatePtr = circuit_->LoadGatePtr(gate);
1753 size_t index = gatePtr->GetInFrameStateStarts();
1754 circuit_->ModifyIn(gate, index, in);
1755 }
1756
GetRoot(OpCode opcode) const1757 GateRef GateAccessor::GetRoot(OpCode opcode) const
1758 {
1759 GateRef root = circuit_->GetRoot();
1760 if (opcode == OpCode::CIRCUIT_ROOT) {
1761 return root;
1762 }
1763
1764 auto uses = ConstUses(root);
1765 for (auto useIt = uses.begin(); useIt != uses.end(); ++useIt) {
1766 if (GetOpCode(*useIt) == opcode) {
1767 return *useIt;
1768 }
1769 }
1770 return Circuit::NullGate();
1771 }
1772
GetGlueFromArgList() const1773 GateRef GateAccessor::GetGlueFromArgList() const
1774 {
1775 auto argRoot = GetArgRoot();
1776 ASSERT(static_cast<size_t>(CommonArgIdx::GLUE) == 0);
1777 const Gate *curGate = circuit_->LoadGatePtrConst(argRoot);
1778
1779 const Out *curOut = curGate->GetFirstOutConst();
1780 ASSERT(!curGate->IsFirstOutNull());
1781 while (!curOut->IsNextOutNull()) {
1782 curOut = curOut->GetNextOutConst();
1783 }
1784 return circuit_->GetGateRef(curOut->GetGateConst());
1785 }
1786
GetArgsOuts(std::vector<GateRef> & outs) const1787 void GateAccessor::GetArgsOuts(std::vector<GateRef>& outs) const
1788 {
1789 auto argRoot = GetArgRoot();
1790 GetOuts(argRoot, outs);
1791 }
1792
GetReturnOuts(std::vector<GateRef> & outs) const1793 void GateAccessor::GetReturnOuts(std::vector<GateRef>& outs) const
1794 {
1795 auto returnRoot = GetReturnRoot();
1796 GetOuts(returnRoot, outs);
1797 }
1798
GetMetaData(GateRef gate) const1799 const GateMetaData *GateAccessor::GetMetaData(GateRef gate) const
1800 {
1801 return circuit_->LoadGatePtrConst(gate)->GetMetaData();
1802 }
1803
SetMetaData(GateRef gate,const GateMetaData * meta)1804 void GateAccessor::SetMetaData(GateRef gate, const GateMetaData* meta)
1805 {
1806 return circuit_->LoadGatePtr(gate)->SetMetaData(meta);
1807 }
1808
IsFixed(GateRef g) const1809 bool GateAccessor::IsFixed(GateRef g) const
1810 {
1811 return GetMetaData(g)->IsFixed();
1812 }
1813
IsProlog(GateRef g) const1814 bool GateAccessor::IsProlog(GateRef g) const
1815 {
1816 return GetMetaData(g)->IsProlog();
1817 }
1818
IsCFGMerge(GateRef g) const1819 bool GateAccessor::IsCFGMerge(GateRef g) const
1820 {
1821 return GetMetaData(g)->IsCFGMerge();
1822 }
1823
MetaDataEqu(GateRef g1,GateRef g2) const1824 bool GateAccessor::MetaDataEqu(GateRef g1, GateRef g2) const
1825 {
1826 return GetMetaData(g1) == GetMetaData(g2);
1827 }
1828
MetaDataValueEqu(GateRef g1,GateRef g2) const1829 bool GateAccessor::MetaDataValueEqu(GateRef g1, GateRef g2) const
1830 {
1831 const GateMetaData *g1Meta = GetMetaData(g1);
1832 const GateMetaData *g2Meta = GetMetaData(g2);
1833
1834 return g1Meta->equal(*g2Meta);
1835 }
1836
IsNop(GateRef g) const1837 bool GateAccessor::IsNop(GateRef g) const
1838 {
1839 return GetMetaData(g)->IsNop();
1840 }
1841
IsDead(GateRef gate) const1842 bool GateAccessor::IsDead(GateRef gate) const
1843 {
1844 return GetMetaData(gate)->IsDead();
1845 }
1846
IsRoot(GateRef g) const1847 bool GateAccessor::IsRoot(GateRef g) const
1848 {
1849 return GetMetaData(g)->IsRoot();
1850 }
1851
GetMetaData(GateRef g) const1852 const GateMetaData *ConstGateAccessor::GetMetaData(GateRef g) const
1853 {
1854 return circuit_->LoadGatePtrConst(g)->GetMetaData();
1855 }
1856
IsFixed(GateRef g) const1857 bool ConstGateAccessor::IsFixed(GateRef g) const
1858 {
1859 return GetMetaData(g)->IsFixed();
1860 }
1861
IsProlog(GateRef g) const1862 bool ConstGateAccessor::IsProlog(GateRef g) const
1863 {
1864 return GetMetaData(g)->IsProlog();
1865 }
1866
IsSchedulable(GateRef g) const1867 bool ConstGateAccessor::IsSchedulable(GateRef g) const
1868 {
1869 return GetMetaData(g)->IsSchedulable();
1870 }
1871
GetDependSelectorFromMerge(GateRef gate)1872 GateRef GateAccessor::GetDependSelectorFromMerge(GateRef gate)
1873 {
1874 GateRef depend = Circuit::NullGate();
1875 auto uses = Uses(gate);
1876 for (auto useIt = uses.begin(); useIt != uses.end(); useIt++) {
1877 if (GetOpCode(*useIt) == OpCode::DEPEND_SELECTOR) {
1878 depend = *useIt;
1879 break;
1880 }
1881 }
1882 ASSERT(depend != Circuit::NullGate());
1883 return depend;
1884 }
1885
HasIfExceptionUse(GateRef gate) const1886 bool GateAccessor::HasIfExceptionUse(GateRef gate) const
1887 {
1888 ASSERT(GetStateCount(gate) > 0);
1889 auto uses = ConstUses(gate);
1890 for (auto it = uses.begin(); it != uses.end(); it++) {
1891 if (GetOpCode(*it) == OpCode::IF_EXCEPTION) {
1892 return true;
1893 }
1894 }
1895 return false;
1896 }
1897
IsHeapObjectFromElementsKind(GateRef gate)1898 bool GateAccessor::IsHeapObjectFromElementsKind(GateRef gate)
1899 {
1900 OpCode opcode = GetOpCode(gate);
1901 if (opcode == OpCode::JS_BYTECODE) {
1902 auto bc = GetByteCodeOpcode(gate);
1903 if (bc == EcmaOpcode::LDOBJBYVALUE_IMM8_V8 || bc == EcmaOpcode::LDOBJBYVALUE_IMM16_V8 ||
1904 bc == EcmaOpcode::LDTHISBYVALUE_IMM8 || bc == EcmaOpcode::LDTHISBYVALUE_IMM16) {
1905 ElementsKind kind = TryGetElementsKind(gate);
1906 return Elements::IsObject(kind);
1907 }
1908 return false;
1909 }
1910
1911 if (opcode == OpCode::LOAD_ELEMENT) {
1912 TypedLoadOp typedOp = GetTypedLoadOp(gate);
1913 return typedOp == TypedLoadOp::ARRAY_LOAD_OBJECT_ELEMENT;
1914 }
1915
1916 return false;
1917 }
1918
IsConstString(GateRef gate)1919 bool GateAccessor::IsConstString(GateRef gate)
1920 {
1921 OpCode op = GetOpCode(gate);
1922 if (op == OpCode::JS_BYTECODE) {
1923 EcmaOpcode ecmaOpcode = GetByteCodeOpcode(gate);
1924 return ecmaOpcode == EcmaOpcode::LDA_STR_ID16;
1925 }
1926 return false;
1927 }
1928
IsSingleCharGate(GateRef gate)1929 bool GateAccessor::IsSingleCharGate(GateRef gate)
1930 {
1931 OpCode op = GetOpCode(gate);
1932 if (op == OpCode::LOAD_ELEMENT) {
1933 return GetTypedLoadOp(gate) == TypedLoadOp::STRING_LOAD_ELEMENT;
1934 }
1935 return false;
1936 }
1937
UseForTypeOpProfilerGate(GateRef gate) const1938 bool GateAccessor::UseForTypeOpProfilerGate(GateRef gate) const
1939 {
1940 OpCode op = GetOpCode(gate);
1941 switch (op) {
1942 #define DECLARE_GATE_OPCODE(NAME, OP, R, S, D, V) \
1943 case OpCode::OP: \
1944 return true;
1945
1946 MCR_IMMUTABLE_META_DATA_CACHE_LIST(DECLARE_GATE_OPCODE)
1947 MCR_GATE_META_DATA_LIST_WITH_PC_OFFSET(DECLARE_GATE_OPCODE)
1948 MCR_GATE_META_DATA_LIST_FOR_CALL(DECLARE_GATE_OPCODE)
1949 MCR_GATE_META_DATA_LIST_WITH_VALUE(DECLARE_GATE_OPCODE)
1950 MCR_GATE_META_DATA_LIST_WITH_BOOL(DECLARE_GATE_OPCODE)
1951 MCR_GATE_META_DATA_LIST_WITH_GATE_TYPE(DECLARE_GATE_OPCODE)
1952 MCR_GATE_META_DATA_LIST_WITH_VALUE_IN(DECLARE_GATE_OPCODE)
1953 #undef DECLARE_GATE_OPCODE
1954 default:
1955 return false;
1956 }
1957 }
1958
GetStringIdFromLdaStrGate(GateRef gate)1959 uint32_t GateAccessor::GetStringIdFromLdaStrGate(GateRef gate)
1960 {
1961 ASSERT(GetByteCodeOpcode(gate) == EcmaOpcode::LDA_STR_ID16);
1962 GateRef stringId = GetValueIn(gate, 0);
1963 return GetConstantValue(stringId);
1964 }
1965
IsLoopBackUse(GateRef gate,const UseIterator & useIt) const1966 bool GateAccessor::IsLoopBackUse(GateRef gate, const UseIterator &useIt) const
1967 {
1968 if (IsLoopBack(gate) && IsStateIn(useIt)) {
1969 return IsLoopHead(*useIt);
1970 }
1971 if ((IsValueSelector(*useIt) && IsValueIn(useIt)) ||
1972 (IsDependSelector(*useIt) && IsDependIn(useIt))) {
1973 return IsLoopHead(GetState(*useIt));
1974 }
1975 return false;
1976 }
1977
IsCreateArray(GateRef gate) const1978 bool GateAccessor::IsCreateArray(GateRef gate) const
1979 {
1980 if (GetOpCode(gate) != OpCode::JS_BYTECODE) {
1981 return false;
1982 }
1983 EcmaOpcode ecmaop = GetByteCodeOpcode(gate);
1984 switch (ecmaop) {
1985 case EcmaOpcode::CREATEEMPTYARRAY_IMM8:
1986 case EcmaOpcode::CREATEEMPTYARRAY_IMM16:
1987 case EcmaOpcode::CREATEARRAYWITHBUFFER_IMM8_ID16:
1988 case EcmaOpcode::CREATEARRAYWITHBUFFER_IMM16_ID16:
1989 return true;
1990 default:
1991 return false;
1992 }
1993 UNREACHABLE();
1994 return false;
1995 }
1996
SetStoreNoBarrier(GateRef gate,bool isNoBarrier)1997 void GateAccessor::SetStoreNoBarrier(GateRef gate, bool isNoBarrier)
1998 {
1999 ASSERT(GetOpCode(gate) == OpCode::MONO_STORE_PROPERTY_LOOK_UP_PROTO ||
2000 GetOpCode(gate) == OpCode::MONO_STORE_PROPERTY);
2001 Gate *gatePtr = circuit_->LoadGatePtr(gate);
2002 const_cast<BoolMetaData *>(gatePtr->GetBoolMetaData())->SetBool(isNoBarrier);
2003 }
2004
IsNoBarrier(GateRef gate) const2005 bool GateAccessor::IsNoBarrier(GateRef gate) const
2006 {
2007 ASSERT(GetOpCode(gate) == OpCode::MONO_STORE_PROPERTY_LOOK_UP_PROTO ||
2008 GetOpCode(gate) == OpCode::MONO_STORE_PROPERTY);
2009 Gate *gatePtr = circuit_->LoadGatePtr(gate);
2010 return gatePtr->GetBoolMetaData()->GetBool();
2011 }
2012
GetConstpoolId(GateRef gate) const2013 uint32_t GateAccessor::GetConstpoolId(GateRef gate) const
2014 {
2015 ASSERT(GetOpCode(gate) == OpCode::GET_SHARED_CONSTPOOL);
2016 Gate *gatePtr = circuit_->LoadGatePtr(gate);
2017 return gatePtr->GetOneParameterMetaData()->GetValue();
2018 }
2019
GetFrameValue(GateRef gate)2020 GateRef GateAccessor::GetFrameValue(GateRef gate)
2021 {
2022 ASSERT(GetOpCode(gate) == OpCode::FRAME_STATE);
2023 return GetValueIn(gate, 1);
2024 }
2025
GetRevCompareOpForTypedBinOp(TypedBinOp op)2026 TypedBinOp GateAccessor::GetRevCompareOpForTypedBinOp(TypedBinOp op)
2027 {
2028 switch (op) {
2029 case TypedBinOp::TYPED_LESS:
2030 return TypedBinOp::TYPED_GREATEREQ;
2031 case TypedBinOp::TYPED_LESSEQ:
2032 return TypedBinOp::TYPED_GREATER;
2033 case TypedBinOp::TYPED_GREATER:
2034 return TypedBinOp::TYPED_LESSEQ;
2035 case TypedBinOp::TYPED_GREATEREQ:
2036 return TypedBinOp::TYPED_LESS;
2037 case TypedBinOp::TYPED_EQ:
2038 return TypedBinOp::TYPED_NOTEQ;
2039 case TypedBinOp::TYPED_NOTEQ:
2040 return TypedBinOp::TYPED_EQ;
2041 default:
2042 UNREACHABLE();
2043 return op;
2044 }
2045 }
2046
GetSwapCompareOpForTypedBinOp(TypedBinOp op)2047 TypedBinOp GateAccessor::GetSwapCompareOpForTypedBinOp(TypedBinOp op)
2048 {
2049 switch (op) {
2050 case TypedBinOp::TYPED_LESS:
2051 return TypedBinOp::TYPED_GREATER;
2052 case TypedBinOp::TYPED_LESSEQ:
2053 return TypedBinOp::TYPED_GREATEREQ;
2054 case TypedBinOp::TYPED_GREATER:
2055 return TypedBinOp::TYPED_LESS;
2056 case TypedBinOp::TYPED_GREATEREQ:
2057 return TypedBinOp::TYPED_LESSEQ;
2058 case TypedBinOp::TYPED_EQ:
2059 return TypedBinOp::TYPED_EQ;
2060 case TypedBinOp::TYPED_NOTEQ:
2061 return TypedBinOp::TYPED_NOTEQ;
2062 default:
2063 UNREACHABLE();
2064 return op;
2065 }
2066 }
2067 } // namespace panda::ecmascript::kungfu
2068