| OLD | NEW |
| 1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #if V8_TARGET_ARCH_IA32 | 5 #if V8_TARGET_ARCH_IA32 |
| 6 | 6 |
| 7 #include "src/code-factory.h" | 7 #include "src/code-factory.h" |
| 8 #include "src/code-stubs.h" | 8 #include "src/code-stubs.h" |
| 9 #include "src/codegen.h" | 9 #include "src/codegen.h" |
| 10 #include "src/compiler.h" | 10 #include "src/compiler.h" |
| (...skipping 1162 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 1173 __ CallStub(&stub); | 1173 __ CallStub(&stub); |
| 1174 } else { | 1174 } else { |
| 1175 __ push(Immediate(info)); | 1175 __ push(Immediate(info)); |
| 1176 __ CallRuntime( | 1176 __ CallRuntime( |
| 1177 pretenure ? Runtime::kNewClosure_Tenured : Runtime::kNewClosure, 1); | 1177 pretenure ? Runtime::kNewClosure_Tenured : Runtime::kNewClosure, 1); |
| 1178 } | 1178 } |
| 1179 context()->Plug(eax); | 1179 context()->Plug(eax); |
| 1180 } | 1180 } |
| 1181 | 1181 |
| 1182 | 1182 |
| 1183 void FullCodeGenerator::EmitSetHomeObjectIfNeeded(Expression* initializer, | 1183 void FullCodeGenerator::EmitSetHomeObject(Expression* initializer, int offset, |
| 1184 int offset, | 1184 FeedbackVectorICSlot slot) { |
| 1185 FeedbackVectorICSlot slot) { | 1185 DCHECK(NeedsHomeObject(initializer)); |
| 1186 if (NeedsHomeObject(initializer)) { | 1186 __ mov(StoreDescriptor::ReceiverRegister(), Operand(esp, 0)); |
| 1187 __ mov(StoreDescriptor::ReceiverRegister(), Operand(esp, 0)); | 1187 __ mov(StoreDescriptor::NameRegister(), |
| 1188 __ mov(StoreDescriptor::NameRegister(), | 1188 Immediate(isolate()->factory()->home_object_symbol())); |
| 1189 Immediate(isolate()->factory()->home_object_symbol())); | 1189 __ mov(StoreDescriptor::ValueRegister(), Operand(esp, offset * kPointerSize)); |
| 1190 __ mov(StoreDescriptor::ValueRegister(), | 1190 if (FLAG_vector_stores) EmitLoadStoreICSlot(slot); |
| 1191 Operand(esp, offset * kPointerSize)); | 1191 CallStoreIC(); |
| 1192 if (FLAG_vector_stores) EmitLoadStoreICSlot(slot); | |
| 1193 CallStoreIC(); | |
| 1194 } | |
| 1195 } | 1192 } |
| 1196 | 1193 |
| 1197 | 1194 |
| 1195 void FullCodeGenerator::EmitSetHomeObjectAccumulator( |
| 1196 Expression* initializer, int offset, FeedbackVectorICSlot slot) { |
| 1197 DCHECK(NeedsHomeObject(initializer)); |
| 1198 __ mov(StoreDescriptor::ReceiverRegister(), eax); |
| 1199 __ mov(StoreDescriptor::NameRegister(), |
| 1200 Immediate(isolate()->factory()->home_object_symbol())); |
| 1201 __ mov(StoreDescriptor::ValueRegister(), Operand(esp, offset * kPointerSize)); |
| 1202 if (FLAG_vector_stores) EmitLoadStoreICSlot(slot); |
| 1203 CallStoreIC(); |
| 1204 } |
| 1205 |
| 1206 |
| 1198 void FullCodeGenerator::EmitLoadGlobalCheckExtensions(VariableProxy* proxy, | 1207 void FullCodeGenerator::EmitLoadGlobalCheckExtensions(VariableProxy* proxy, |
| 1199 TypeofMode typeof_mode, | 1208 TypeofMode typeof_mode, |
| 1200 Label* slow) { | 1209 Label* slow) { |
| 1201 Register context = esi; | 1210 Register context = esi; |
| 1202 Register temp = edx; | 1211 Register temp = edx; |
| 1203 | 1212 |
| 1204 Scope* s = scope(); | 1213 Scope* s = scope(); |
| 1205 while (s != NULL) { | 1214 while (s != NULL) { |
| 1206 if (s->num_heap_slots() > 0) { | 1215 if (s->num_heap_slots() > 0) { |
| 1207 if (s->calls_sloppy_eval()) { | 1216 if (s->calls_sloppy_eval()) { |
| (...skipping 248 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 1456 __ mov(FieldOperand(eax, i + kPointerSize), ecx); | 1465 __ mov(FieldOperand(eax, i + kPointerSize), ecx); |
| 1457 } | 1466 } |
| 1458 if ((size % (2 * kPointerSize)) != 0) { | 1467 if ((size % (2 * kPointerSize)) != 0) { |
| 1459 __ mov(edx, FieldOperand(ebx, size - kPointerSize)); | 1468 __ mov(edx, FieldOperand(ebx, size - kPointerSize)); |
| 1460 __ mov(FieldOperand(eax, size - kPointerSize), edx); | 1469 __ mov(FieldOperand(eax, size - kPointerSize), edx); |
| 1461 } | 1470 } |
| 1462 context()->Plug(eax); | 1471 context()->Plug(eax); |
| 1463 } | 1472 } |
| 1464 | 1473 |
| 1465 | 1474 |
| 1466 void FullCodeGenerator::EmitAccessor(Expression* expression) { | 1475 void FullCodeGenerator::EmitAccessor(ObjectLiteralProperty* property) { |
| 1476 Expression* expression = (property == NULL) ? NULL : property->value(); |
| 1467 if (expression == NULL) { | 1477 if (expression == NULL) { |
| 1468 __ push(Immediate(isolate()->factory()->null_value())); | 1478 __ push(Immediate(isolate()->factory()->null_value())); |
| 1469 } else { | 1479 } else { |
| 1470 VisitForStackValue(expression); | 1480 VisitForStackValue(expression); |
| 1481 if (NeedsHomeObject(expression)) { |
| 1482 DCHECK(property->kind() == ObjectLiteral::Property::GETTER || |
| 1483 property->kind() == ObjectLiteral::Property::SETTER); |
| 1484 int offset = property->kind() == ObjectLiteral::Property::GETTER ? 2 : 3; |
| 1485 EmitSetHomeObject(expression, offset, property->GetSlot()); |
| 1486 } |
| 1471 } | 1487 } |
| 1472 } | 1488 } |
| 1473 | 1489 |
| 1474 | 1490 |
| 1475 void FullCodeGenerator::VisitObjectLiteral(ObjectLiteral* expr) { | 1491 void FullCodeGenerator::VisitObjectLiteral(ObjectLiteral* expr) { |
| 1476 Comment cmnt(masm_, "[ ObjectLiteral"); | 1492 Comment cmnt(masm_, "[ ObjectLiteral"); |
| 1477 | 1493 |
| 1478 Handle<FixedArray> constant_properties = expr->constant_properties(); | 1494 Handle<FixedArray> constant_properties = expr->constant_properties(); |
| 1479 int flags = expr->ComputeFlags(); | 1495 int flags = expr->ComputeFlags(); |
| 1480 // If any of the keys would store to the elements array, then we shouldn't | 1496 // If any of the keys would store to the elements array, then we shouldn't |
| (...skipping 15 matching lines...) Expand all Loading... |
| 1496 __ CallStub(&stub); | 1512 __ CallStub(&stub); |
| 1497 } | 1513 } |
| 1498 PrepareForBailoutForId(expr->CreateLiteralId(), TOS_REG); | 1514 PrepareForBailoutForId(expr->CreateLiteralId(), TOS_REG); |
| 1499 | 1515 |
| 1500 // If result_saved is true the result is on top of the stack. If | 1516 // If result_saved is true the result is on top of the stack. If |
| 1501 // result_saved is false the result is in eax. | 1517 // result_saved is false the result is in eax. |
| 1502 bool result_saved = false; | 1518 bool result_saved = false; |
| 1503 | 1519 |
| 1504 AccessorTable accessor_table(zone()); | 1520 AccessorTable accessor_table(zone()); |
| 1505 int property_index = 0; | 1521 int property_index = 0; |
| 1506 // store_slot_index points to the vector IC slot for the next store IC used. | |
| 1507 // ObjectLiteral::ComputeFeedbackRequirements controls the allocation of slots | |
| 1508 // and must be updated if the number of store ICs emitted here changes. | |
| 1509 int store_slot_index = 0; | |
| 1510 for (; property_index < expr->properties()->length(); property_index++) { | 1522 for (; property_index < expr->properties()->length(); property_index++) { |
| 1511 ObjectLiteral::Property* property = expr->properties()->at(property_index); | 1523 ObjectLiteral::Property* property = expr->properties()->at(property_index); |
| 1512 if (property->is_computed_name()) break; | 1524 if (property->is_computed_name()) break; |
| 1513 if (property->IsCompileTimeValue()) continue; | 1525 if (property->IsCompileTimeValue()) continue; |
| 1514 | 1526 |
| 1515 Literal* key = property->key()->AsLiteral(); | 1527 Literal* key = property->key()->AsLiteral(); |
| 1516 Expression* value = property->value(); | 1528 Expression* value = property->value(); |
| 1517 if (!result_saved) { | 1529 if (!result_saved) { |
| 1518 __ push(eax); // Save result on the stack | 1530 __ push(eax); // Save result on the stack |
| 1519 result_saved = true; | 1531 result_saved = true; |
| 1520 } | 1532 } |
| 1521 switch (property->kind()) { | 1533 switch (property->kind()) { |
| 1522 case ObjectLiteral::Property::CONSTANT: | 1534 case ObjectLiteral::Property::CONSTANT: |
| 1523 UNREACHABLE(); | 1535 UNREACHABLE(); |
| 1524 case ObjectLiteral::Property::MATERIALIZED_LITERAL: | 1536 case ObjectLiteral::Property::MATERIALIZED_LITERAL: |
| 1525 DCHECK(!CompileTimeValue::IsCompileTimeValue(value)); | 1537 DCHECK(!CompileTimeValue::IsCompileTimeValue(value)); |
| 1526 // Fall through. | 1538 // Fall through. |
| 1527 case ObjectLiteral::Property::COMPUTED: | 1539 case ObjectLiteral::Property::COMPUTED: |
| 1528 // It is safe to use [[Put]] here because the boilerplate already | 1540 // It is safe to use [[Put]] here because the boilerplate already |
| 1529 // contains computed properties with an uninitialized value. | 1541 // contains computed properties with an uninitialized value. |
| 1530 if (key->value()->IsInternalizedString()) { | 1542 if (key->value()->IsInternalizedString()) { |
| 1531 if (property->emit_store()) { | 1543 if (property->emit_store()) { |
| 1532 VisitForAccumulatorValue(value); | 1544 VisitForAccumulatorValue(value); |
| 1533 DCHECK(StoreDescriptor::ValueRegister().is(eax)); | 1545 DCHECK(StoreDescriptor::ValueRegister().is(eax)); |
| 1534 __ mov(StoreDescriptor::NameRegister(), Immediate(key->value())); | 1546 __ mov(StoreDescriptor::NameRegister(), Immediate(key->value())); |
| 1535 __ mov(StoreDescriptor::ReceiverRegister(), Operand(esp, 0)); | 1547 __ mov(StoreDescriptor::ReceiverRegister(), Operand(esp, 0)); |
| 1536 if (FLAG_vector_stores) { | 1548 if (FLAG_vector_stores) { |
| 1537 EmitLoadStoreICSlot(expr->GetNthSlot(store_slot_index++)); | 1549 EmitLoadStoreICSlot(property->GetSlot(0)); |
| 1538 CallStoreIC(); | 1550 CallStoreIC(); |
| 1539 } else { | 1551 } else { |
| 1540 CallStoreIC(key->LiteralFeedbackId()); | 1552 CallStoreIC(key->LiteralFeedbackId()); |
| 1541 } | 1553 } |
| 1542 PrepareForBailoutForId(key->id(), NO_REGISTERS); | 1554 PrepareForBailoutForId(key->id(), NO_REGISTERS); |
| 1543 | |
| 1544 if (NeedsHomeObject(value)) { | 1555 if (NeedsHomeObject(value)) { |
| 1545 __ mov(StoreDescriptor::ReceiverRegister(), eax); | 1556 EmitSetHomeObjectAccumulator(value, 0, property->GetSlot(1)); |
| 1546 __ mov(StoreDescriptor::NameRegister(), | |
| 1547 Immediate(isolate()->factory()->home_object_symbol())); | |
| 1548 __ mov(StoreDescriptor::ValueRegister(), Operand(esp, 0)); | |
| 1549 if (FLAG_vector_stores) { | |
| 1550 EmitLoadStoreICSlot(expr->GetNthSlot(store_slot_index++)); | |
| 1551 } | |
| 1552 CallStoreIC(); | |
| 1553 } | 1557 } |
| 1554 } else { | 1558 } else { |
| 1555 VisitForEffect(value); | 1559 VisitForEffect(value); |
| 1556 } | 1560 } |
| 1557 break; | 1561 break; |
| 1558 } | 1562 } |
| 1559 __ push(Operand(esp, 0)); // Duplicate receiver. | 1563 __ push(Operand(esp, 0)); // Duplicate receiver. |
| 1560 VisitForStackValue(key); | 1564 VisitForStackValue(key); |
| 1561 VisitForStackValue(value); | 1565 VisitForStackValue(value); |
| 1562 if (property->emit_store()) { | 1566 if (property->emit_store()) { |
| 1563 EmitSetHomeObjectIfNeeded( | 1567 if (NeedsHomeObject(value)) { |
| 1564 value, 2, expr->SlotForHomeObject(value, &store_slot_index)); | 1568 EmitSetHomeObject(value, 2, property->GetSlot()); |
| 1569 } |
| 1565 __ push(Immediate(Smi::FromInt(SLOPPY))); // Language mode | 1570 __ push(Immediate(Smi::FromInt(SLOPPY))); // Language mode |
| 1566 __ CallRuntime(Runtime::kSetProperty, 4); | 1571 __ CallRuntime(Runtime::kSetProperty, 4); |
| 1567 } else { | 1572 } else { |
| 1568 __ Drop(3); | 1573 __ Drop(3); |
| 1569 } | 1574 } |
| 1570 break; | 1575 break; |
| 1571 case ObjectLiteral::Property::PROTOTYPE: | 1576 case ObjectLiteral::Property::PROTOTYPE: |
| 1572 __ push(Operand(esp, 0)); // Duplicate receiver. | 1577 __ push(Operand(esp, 0)); // Duplicate receiver. |
| 1573 VisitForStackValue(value); | 1578 VisitForStackValue(value); |
| 1574 DCHECK(property->emit_store()); | 1579 DCHECK(property->emit_store()); |
| 1575 __ CallRuntime(Runtime::kInternalSetPrototype, 2); | 1580 __ CallRuntime(Runtime::kInternalSetPrototype, 2); |
| 1576 break; | 1581 break; |
| 1577 case ObjectLiteral::Property::GETTER: | 1582 case ObjectLiteral::Property::GETTER: |
| 1578 if (property->emit_store()) { | 1583 if (property->emit_store()) { |
| 1579 accessor_table.lookup(key)->second->getter = value; | 1584 accessor_table.lookup(key)->second->getter = property; |
| 1580 } | 1585 } |
| 1581 break; | 1586 break; |
| 1582 case ObjectLiteral::Property::SETTER: | 1587 case ObjectLiteral::Property::SETTER: |
| 1583 if (property->emit_store()) { | 1588 if (property->emit_store()) { |
| 1584 accessor_table.lookup(key)->second->setter = value; | 1589 accessor_table.lookup(key)->second->setter = property; |
| 1585 } | 1590 } |
| 1586 break; | 1591 break; |
| 1587 } | 1592 } |
| 1588 } | 1593 } |
| 1589 | 1594 |
| 1590 // Emit code to define accessors, using only a single call to the runtime for | 1595 // Emit code to define accessors, using only a single call to the runtime for |
| 1591 // each pair of corresponding getters and setters. | 1596 // each pair of corresponding getters and setters. |
| 1592 for (AccessorTable::Iterator it = accessor_table.begin(); | 1597 for (AccessorTable::Iterator it = accessor_table.begin(); |
| 1593 it != accessor_table.end(); | 1598 it != accessor_table.end(); |
| 1594 ++it) { | 1599 ++it) { |
| 1595 __ push(Operand(esp, 0)); // Duplicate receiver. | 1600 __ push(Operand(esp, 0)); // Duplicate receiver. |
| 1596 VisitForStackValue(it->first); | 1601 VisitForStackValue(it->first); |
| 1602 |
| 1597 EmitAccessor(it->second->getter); | 1603 EmitAccessor(it->second->getter); |
| 1598 EmitSetHomeObjectIfNeeded( | |
| 1599 it->second->getter, 2, | |
| 1600 expr->SlotForHomeObject(it->second->getter, &store_slot_index)); | |
| 1601 | |
| 1602 EmitAccessor(it->second->setter); | 1604 EmitAccessor(it->second->setter); |
| 1603 EmitSetHomeObjectIfNeeded( | |
| 1604 it->second->setter, 3, | |
| 1605 expr->SlotForHomeObject(it->second->setter, &store_slot_index)); | |
| 1606 | 1605 |
| 1607 __ push(Immediate(Smi::FromInt(NONE))); | 1606 __ push(Immediate(Smi::FromInt(NONE))); |
| 1608 __ CallRuntime(Runtime::kDefineAccessorPropertyUnchecked, 5); | 1607 __ CallRuntime(Runtime::kDefineAccessorPropertyUnchecked, 5); |
| 1609 } | 1608 } |
| 1610 | 1609 |
| 1611 // Object literals have two parts. The "static" part on the left contains no | 1610 // Object literals have two parts. The "static" part on the left contains no |
| 1612 // computed property names, and so we can compute its map ahead of time; see | 1611 // computed property names, and so we can compute its map ahead of time; see |
| 1613 // runtime.cc::CreateObjectLiteralBoilerplate. The second "dynamic" part | 1612 // runtime.cc::CreateObjectLiteralBoilerplate. The second "dynamic" part |
| 1614 // starts with the first computed property name, and continues with all | 1613 // starts with the first computed property name, and continues with all |
| 1615 // properties to its right. All the code from above initializes the static | 1614 // properties to its right. All the code from above initializes the static |
| (...skipping 13 matching lines...) Expand all Loading... |
| 1629 __ push(Operand(esp, 0)); // Duplicate receiver. | 1628 __ push(Operand(esp, 0)); // Duplicate receiver. |
| 1630 | 1629 |
| 1631 if (property->kind() == ObjectLiteral::Property::PROTOTYPE) { | 1630 if (property->kind() == ObjectLiteral::Property::PROTOTYPE) { |
| 1632 DCHECK(!property->is_computed_name()); | 1631 DCHECK(!property->is_computed_name()); |
| 1633 VisitForStackValue(value); | 1632 VisitForStackValue(value); |
| 1634 DCHECK(property->emit_store()); | 1633 DCHECK(property->emit_store()); |
| 1635 __ CallRuntime(Runtime::kInternalSetPrototype, 2); | 1634 __ CallRuntime(Runtime::kInternalSetPrototype, 2); |
| 1636 } else { | 1635 } else { |
| 1637 EmitPropertyKey(property, expr->GetIdForProperty(property_index)); | 1636 EmitPropertyKey(property, expr->GetIdForProperty(property_index)); |
| 1638 VisitForStackValue(value); | 1637 VisitForStackValue(value); |
| 1639 EmitSetHomeObjectIfNeeded( | 1638 if (NeedsHomeObject(value)) { |
| 1640 value, 2, expr->SlotForHomeObject(value, &store_slot_index)); | 1639 EmitSetHomeObject(value, 2, property->GetSlot()); |
| 1640 } |
| 1641 | 1641 |
| 1642 switch (property->kind()) { | 1642 switch (property->kind()) { |
| 1643 case ObjectLiteral::Property::CONSTANT: | 1643 case ObjectLiteral::Property::CONSTANT: |
| 1644 case ObjectLiteral::Property::MATERIALIZED_LITERAL: | 1644 case ObjectLiteral::Property::MATERIALIZED_LITERAL: |
| 1645 case ObjectLiteral::Property::COMPUTED: | 1645 case ObjectLiteral::Property::COMPUTED: |
| 1646 if (property->emit_store()) { | 1646 if (property->emit_store()) { |
| 1647 __ push(Immediate(Smi::FromInt(NONE))); | 1647 __ push(Immediate(Smi::FromInt(NONE))); |
| 1648 __ CallRuntime(Runtime::kDefineDataPropertyUnchecked, 4); | 1648 __ CallRuntime(Runtime::kDefineDataPropertyUnchecked, 4); |
| 1649 } else { | 1649 } else { |
| 1650 __ Drop(3); | 1650 __ Drop(3); |
| (...skipping 21 matching lines...) Expand all Loading... |
| 1672 DCHECK(result_saved); | 1672 DCHECK(result_saved); |
| 1673 __ push(Operand(esp, 0)); | 1673 __ push(Operand(esp, 0)); |
| 1674 __ CallRuntime(Runtime::kToFastProperties, 1); | 1674 __ CallRuntime(Runtime::kToFastProperties, 1); |
| 1675 } | 1675 } |
| 1676 | 1676 |
| 1677 if (result_saved) { | 1677 if (result_saved) { |
| 1678 context()->PlugTOS(); | 1678 context()->PlugTOS(); |
| 1679 } else { | 1679 } else { |
| 1680 context()->Plug(eax); | 1680 context()->Plug(eax); |
| 1681 } | 1681 } |
| 1682 | |
| 1683 // Verify that compilation exactly consumed the number of store ic slots that | |
| 1684 // the ObjectLiteral node had to offer. | |
| 1685 DCHECK(!FLAG_vector_stores || store_slot_index == expr->slot_count()); | |
| 1686 } | 1682 } |
| 1687 | 1683 |
| 1688 | 1684 |
| 1689 void FullCodeGenerator::VisitArrayLiteral(ArrayLiteral* expr) { | 1685 void FullCodeGenerator::VisitArrayLiteral(ArrayLiteral* expr) { |
| 1690 Comment cmnt(masm_, "[ ArrayLiteral"); | 1686 Comment cmnt(masm_, "[ ArrayLiteral"); |
| 1691 | 1687 |
| 1692 expr->BuildConstantElements(isolate()); | 1688 expr->BuildConstantElements(isolate()); |
| 1693 Handle<FixedArray> constant_elements = expr->constant_elements(); | 1689 Handle<FixedArray> constant_elements = expr->constant_elements(); |
| 1694 bool has_constant_fast_elements = | 1690 bool has_constant_fast_elements = |
| 1695 IsFastObjectElementsKind(expr->constant_elements_kind()); | 1691 IsFastObjectElementsKind(expr->constant_elements_kind()); |
| (...skipping 650 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 2346 break; | 2342 break; |
| 2347 default: | 2343 default: |
| 2348 UNREACHABLE(); | 2344 UNREACHABLE(); |
| 2349 } | 2345 } |
| 2350 | 2346 |
| 2351 __ bind(&done); | 2347 __ bind(&done); |
| 2352 context()->Plug(eax); | 2348 context()->Plug(eax); |
| 2353 } | 2349 } |
| 2354 | 2350 |
| 2355 | 2351 |
| 2356 void FullCodeGenerator::EmitClassDefineProperties(ClassLiteral* lit, | 2352 void FullCodeGenerator::EmitClassDefineProperties(ClassLiteral* lit) { |
| 2357 int* used_store_slots) { | |
| 2358 // Constructor is in eax. | 2353 // Constructor is in eax. |
| 2359 DCHECK(lit != NULL); | 2354 DCHECK(lit != NULL); |
| 2360 __ push(eax); | 2355 __ push(eax); |
| 2361 | 2356 |
| 2362 // No access check is needed here since the constructor is created by the | 2357 // No access check is needed here since the constructor is created by the |
| 2363 // class literal. | 2358 // class literal. |
| 2364 Register scratch = ebx; | 2359 Register scratch = ebx; |
| 2365 __ mov(scratch, FieldOperand(eax, JSFunction::kPrototypeOrInitialMapOffset)); | 2360 __ mov(scratch, FieldOperand(eax, JSFunction::kPrototypeOrInitialMapOffset)); |
| 2366 __ Push(scratch); | 2361 __ Push(scratch); |
| 2367 | 2362 |
| (...skipping 11 matching lines...) Expand all Loading... |
| 2379 // The static prototype property is read only. We handle the non computed | 2374 // The static prototype property is read only. We handle the non computed |
| 2380 // property name case in the parser. Since this is the only case where we | 2375 // property name case in the parser. Since this is the only case where we |
| 2381 // need to check for an own read only property we special case this so we do | 2376 // need to check for an own read only property we special case this so we do |
| 2382 // not need to do this for every property. | 2377 // not need to do this for every property. |
| 2383 if (property->is_static() && property->is_computed_name()) { | 2378 if (property->is_static() && property->is_computed_name()) { |
| 2384 __ CallRuntime(Runtime::kThrowIfStaticPrototype, 1); | 2379 __ CallRuntime(Runtime::kThrowIfStaticPrototype, 1); |
| 2385 __ push(eax); | 2380 __ push(eax); |
| 2386 } | 2381 } |
| 2387 | 2382 |
| 2388 VisitForStackValue(value); | 2383 VisitForStackValue(value); |
| 2389 EmitSetHomeObjectIfNeeded(value, 2, | 2384 if (NeedsHomeObject(value)) { |
| 2390 lit->SlotForHomeObject(value, used_store_slots)); | 2385 EmitSetHomeObject(value, 2, property->GetSlot()); |
| 2386 } |
| 2391 | 2387 |
| 2392 switch (property->kind()) { | 2388 switch (property->kind()) { |
| 2393 case ObjectLiteral::Property::CONSTANT: | 2389 case ObjectLiteral::Property::CONSTANT: |
| 2394 case ObjectLiteral::Property::MATERIALIZED_LITERAL: | 2390 case ObjectLiteral::Property::MATERIALIZED_LITERAL: |
| 2395 case ObjectLiteral::Property::PROTOTYPE: | 2391 case ObjectLiteral::Property::PROTOTYPE: |
| 2396 UNREACHABLE(); | 2392 UNREACHABLE(); |
| 2397 case ObjectLiteral::Property::COMPUTED: | 2393 case ObjectLiteral::Property::COMPUTED: |
| 2398 __ CallRuntime(Runtime::kDefineClassMethod, 3); | 2394 __ CallRuntime(Runtime::kDefineClassMethod, 3); |
| 2399 break; | 2395 break; |
| 2400 | 2396 |
| (...skipping 2840 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 5241 Assembler::target_address_at(call_target_address, | 5237 Assembler::target_address_at(call_target_address, |
| 5242 unoptimized_code)); | 5238 unoptimized_code)); |
| 5243 return OSR_AFTER_STACK_CHECK; | 5239 return OSR_AFTER_STACK_CHECK; |
| 5244 } | 5240 } |
| 5245 | 5241 |
| 5246 | 5242 |
| 5247 } // namespace internal | 5243 } // namespace internal |
| 5248 } // namespace v8 | 5244 } // namespace v8 |
| 5249 | 5245 |
| 5250 #endif // V8_TARGET_ARCH_IA32 | 5246 #endif // V8_TARGET_ARCH_IA32 |
| OLD | NEW |