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| 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_IA32. | 5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_IA32. |
| 6 #if defined(TARGET_ARCH_IA32) | 6 #if defined(TARGET_ARCH_IA32) |
| 7 | 7 |
| 8 #include "vm/intermediate_language.h" | 8 #include "vm/intermediate_language.h" |
| 9 | 9 |
| 10 #include "lib/error.h" | 10 #include "lib/error.h" |
| 11 #include "vm/dart_entry.h" | 11 #include "vm/dart_entry.h" |
| 12 #include "vm/flow_graph_compiler.h" | 12 #include "vm/flow_graph_compiler.h" |
| 13 #include "vm/locations.h" | 13 #include "vm/locations.h" |
| 14 #include "vm/object_store.h" | 14 #include "vm/object_store.h" |
| 15 #include "vm/parser.h" | 15 #include "vm/parser.h" |
| 16 #include "vm/stack_frame.h" |
| 16 #include "vm/stub_code.h" | 17 #include "vm/stub_code.h" |
| 17 #include "vm/symbols.h" | 18 #include "vm/symbols.h" |
| 18 | 19 |
| 19 #define __ compiler->assembler()-> | 20 #define __ compiler->assembler()-> |
| 20 | 21 |
| 21 namespace dart { | 22 namespace dart { |
| 22 | 23 |
| 23 DECLARE_FLAG(int, optimization_counter_threshold); | 24 DECLARE_FLAG(int, optimization_counter_threshold); |
| 24 DECLARE_FLAG(bool, propagate_ic_data); | 25 DECLARE_FLAG(bool, propagate_ic_data); |
| 25 | 26 |
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| 415 __ LoadObject(EAX, Bool::True()); | 416 __ LoadObject(EAX, Bool::True()); |
| 416 __ jmp(&done, Assembler::kNearJump); | 417 __ jmp(&done, Assembler::kNearJump); |
| 417 __ Bind(&true_label); | 418 __ Bind(&true_label); |
| 418 __ LoadObject(EAX, Bool::False()); | 419 __ LoadObject(EAX, Bool::False()); |
| 419 __ Bind(&done); | 420 __ Bind(&done); |
| 420 } | 421 } |
| 421 __ Bind(&equality_done); | 422 __ Bind(&equality_done); |
| 422 } | 423 } |
| 423 | 424 |
| 424 | 425 |
| 426 static void LoadValueCid(FlowGraphCompiler* compiler, |
| 427 Register value_cid_reg, |
| 428 Register value_reg, |
| 429 Label* value_is_smi = NULL) { |
| 430 Label done; |
| 431 if (value_is_smi == NULL) { |
| 432 __ movl(value_cid_reg, Immediate(kSmiCid)); |
| 433 } |
| 434 __ testl(value_reg, Immediate(kSmiTagMask)); |
| 435 if (value_is_smi == NULL) { |
| 436 __ j(ZERO, &done, Assembler::kNearJump); |
| 437 } else { |
| 438 __ j(ZERO, value_is_smi); |
| 439 } |
| 440 __ LoadClassId(value_cid_reg, value_reg); |
| 441 __ Bind(&done); |
| 442 } |
| 443 |
| 444 |
| 425 static void EmitEqualityAsPolymorphicCall(FlowGraphCompiler* compiler, | 445 static void EmitEqualityAsPolymorphicCall(FlowGraphCompiler* compiler, |
| 426 const ICData& orig_ic_data, | 446 const ICData& orig_ic_data, |
| 427 LocationSummary* locs, | 447 LocationSummary* locs, |
| 428 BranchInstr* branch, | 448 BranchInstr* branch, |
| 429 Token::Kind kind, | 449 Token::Kind kind, |
| 430 intptr_t deopt_id, | 450 intptr_t deopt_id, |
| 431 intptr_t token_pos) { | 451 intptr_t token_pos) { |
| 432 ASSERT((kind == Token::kEQ) || (kind == Token::kNE)); | 452 ASSERT((kind == Token::kEQ) || (kind == Token::kNE)); |
| 433 const ICData& ic_data = ICData::Handle(orig_ic_data.AsUnaryClassChecks()); | 453 const ICData& ic_data = ICData::Handle(orig_ic_data.AsUnaryClassChecks()); |
| 434 ASSERT(ic_data.NumberOfChecks() > 0); | 454 ASSERT(ic_data.NumberOfChecks() > 0); |
| 435 ASSERT(ic_data.num_args_tested() == 1); | 455 ASSERT(ic_data.num_args_tested() == 1); |
| 436 Label* deopt = compiler->AddDeoptStub(deopt_id, kDeoptEquality); | 456 Label* deopt = compiler->AddDeoptStub(deopt_id, kDeoptEquality); |
| 437 Register left = locs->in(0).reg(); | 457 Register left = locs->in(0).reg(); |
| 438 Register right = locs->in(1).reg(); | 458 Register right = locs->in(1).reg(); |
| 439 __ testl(left, Immediate(kSmiTagMask)); | |
| 440 Register temp = locs->temp(0).reg(); | 459 Register temp = locs->temp(0).reg(); |
| 441 if (ic_data.GetReceiverClassIdAt(0) == kSmiCid) { | 460 LoadValueCid(compiler, temp, left, |
| 442 Label done, load_class_id; | 461 (ic_data.GetReceiverClassIdAt(0) == kSmiCid) ? NULL : deopt); |
| 443 __ j(NOT_ZERO, &load_class_id, Assembler::kNearJump); | |
| 444 __ movl(temp, Immediate(kSmiCid)); | |
| 445 __ jmp(&done, Assembler::kNearJump); | |
| 446 __ Bind(&load_class_id); | |
| 447 __ LoadClassId(temp, left); | |
| 448 __ Bind(&done); | |
| 449 } else { | |
| 450 __ j(ZERO, deopt); // Smi deopts. | |
| 451 __ LoadClassId(temp, left); | |
| 452 } | |
| 453 // 'temp' contains class-id of the left argument. | 462 // 'temp' contains class-id of the left argument. |
| 454 ObjectStore* object_store = Isolate::Current()->object_store(); | 463 ObjectStore* object_store = Isolate::Current()->object_store(); |
| 455 Condition cond = TokenKindToSmiCondition(kind); | 464 Condition cond = TokenKindToSmiCondition(kind); |
| 456 Label done; | 465 Label done; |
| 457 const intptr_t len = ic_data.NumberOfChecks(); | 466 const intptr_t len = ic_data.NumberOfChecks(); |
| 458 for (intptr_t i = 0; i < len; i++) { | 467 for (intptr_t i = 0; i < len; i++) { |
| 459 // Assert that the Smi is at position 0, if at all. | 468 // Assert that the Smi is at position 0, if at all. |
| 460 ASSERT((ic_data.GetReceiverClassIdAt(i) != kSmiCid) || (i == 0)); | 469 ASSERT((ic_data.GetReceiverClassIdAt(i) != kSmiCid) || (i == 0)); |
| 461 Label next_test; | 470 Label next_test; |
| 462 __ cmpl(temp, Immediate(ic_data.GetReceiverClassIdAt(i))); | 471 __ cmpl(temp, Immediate(ic_data.GetReceiverClassIdAt(i))); |
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| 942 // explicitly pushing arguments to the call here. | 951 // explicitly pushing arguments to the call here. |
| 943 Register left = locs()->in(0).reg(); | 952 Register left = locs()->in(0).reg(); |
| 944 Register right = locs()->in(1).reg(); | 953 Register right = locs()->in(1).reg(); |
| 945 __ pushl(left); | 954 __ pushl(left); |
| 946 __ pushl(right); | 955 __ pushl(right); |
| 947 if (HasICData() && (ic_data()->NumberOfChecks() > 0)) { | 956 if (HasICData() && (ic_data()->NumberOfChecks() > 0)) { |
| 948 Label* deopt = compiler->AddDeoptStub(deopt_id(), kDeoptRelationalOp); | 957 Label* deopt = compiler->AddDeoptStub(deopt_id(), kDeoptRelationalOp); |
| 949 // Load class into EDI. Since this is a call, any register except | 958 // Load class into EDI. Since this is a call, any register except |
| 950 // the fixed input registers would be ok. | 959 // the fixed input registers would be ok. |
| 951 ASSERT((left != EDI) && (right != EDI)); | 960 ASSERT((left != EDI) && (right != EDI)); |
| 952 Label done; | |
| 953 const intptr_t kNumArguments = 2; | 961 const intptr_t kNumArguments = 2; |
| 954 __ movl(EDI, Immediate(kSmiCid)); | 962 LoadValueCid(compiler, EDI, left); |
| 955 __ testl(left, Immediate(kSmiTagMask)); | |
| 956 __ j(ZERO, &done); | |
| 957 __ LoadClassId(EDI, left); | |
| 958 __ Bind(&done); | |
| 959 compiler->EmitTestAndCall(ICData::Handle(ic_data()->AsUnaryClassChecks()), | 963 compiler->EmitTestAndCall(ICData::Handle(ic_data()->AsUnaryClassChecks()), |
| 960 EDI, // Class id register. | 964 EDI, // Class id register. |
| 961 kNumArguments, | 965 kNumArguments, |
| 962 Array::Handle(), // No named arguments. | 966 Array::Handle(), // No named arguments. |
| 963 deopt, // Deoptimize target. | 967 deopt, // Deoptimize target. |
| 964 deopt_id(), | 968 deopt_id(), |
| 965 token_pos(), | 969 token_pos(), |
| 966 locs()); | 970 locs()); |
| 967 return; | 971 return; |
| 968 } | 972 } |
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| 1501 break; | 1505 break; |
| 1502 case kFloat64ArrayCid: | 1506 case kFloat64ArrayCid: |
| 1503 __ movsd(element_address, locs()->in(2).fpu_reg()); | 1507 __ movsd(element_address, locs()->in(2).fpu_reg()); |
| 1504 break; | 1508 break; |
| 1505 default: | 1509 default: |
| 1506 UNREACHABLE(); | 1510 UNREACHABLE(); |
| 1507 } | 1511 } |
| 1508 } | 1512 } |
| 1509 | 1513 |
| 1510 | 1514 |
| 1515 LocationSummary* GuardFieldInstr::MakeLocationSummary() const { |
| 1516 const intptr_t kNumInputs = 1; |
| 1517 LocationSummary* summary = |
| 1518 new LocationSummary(kNumInputs, 0, LocationSummary::kNoCall); |
| 1519 summary->set_in(0, Location::RequiresRegister()); |
| 1520 if ((value()->Type()->ToCid() == kDynamicCid) && |
| 1521 (field().guarded_cid() != kSmiCid)) { |
| 1522 summary->AddTemp(Location::RequiresRegister()); |
| 1523 } |
| 1524 if (field().guarded_cid() == kIllegalCid) { |
| 1525 summary->AddTemp(Location::RequiresRegister()); |
| 1526 } |
| 1527 return summary; |
| 1528 } |
| 1529 |
| 1530 |
| 1531 void GuardFieldInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 1532 const intptr_t field_cid = field().guarded_cid(); |
| 1533 const intptr_t nullability = field().is_nullable() ? kNullCid : kIllegalCid; |
| 1534 |
| 1535 if (field_cid == kDynamicCid) { |
| 1536 ASSERT(!compiler->is_optimizing()); |
| 1537 return; // Nothing to emit. |
| 1538 } |
| 1539 |
| 1540 const intptr_t value_cid = value()->Type()->ToCid(); |
| 1541 |
| 1542 Register value_reg = locs()->in(0).reg(); |
| 1543 |
| 1544 Register value_cid_reg = ((value_cid == kDynamicCid) && |
| 1545 (field_cid != kSmiCid)) ? locs()->temp(0).reg() : kNoRegister; |
| 1546 |
| 1547 Register field_reg = (field_cid == kIllegalCid) ? |
| 1548 locs()->temp(locs()->temp_count() - 1).reg() : kNoRegister; |
| 1549 |
| 1550 Label ok, fail_label; |
| 1551 |
| 1552 Label* deopt = compiler->is_optimizing() ? |
| 1553 compiler->AddDeoptStub(deopt_id(), kDeoptGuardField) : NULL; |
| 1554 |
| 1555 Label* fail = (deopt != NULL) ? deopt : &fail_label; |
| 1556 |
| 1557 const bool ok_is_fall_through = (deopt != NULL); |
| 1558 |
| 1559 if (!compiler->is_optimizing() || (field_cid == kIllegalCid)) { |
| 1560 if (!compiler->is_optimizing()) { |
| 1561 // Currently we can't have different location summaries for optimized |
| 1562 // and non-optimized code. So instead we manually pick up a register |
| 1563 // that is known to be free because we know how non-optimizing compiler |
| 1564 // allocates registers. |
| 1565 field_reg = EBX; |
| 1566 ASSERT((field_reg != value_reg) && (field_reg != value_cid_reg)); |
| 1567 } |
| 1568 |
| 1569 __ LoadObject(field_reg, Field::ZoneHandle(field().raw())); |
| 1570 |
| 1571 FieldAddress field_cid_operand(field_reg, Field::guarded_cid_offset()); |
| 1572 FieldAddress field_nullability_operand( |
| 1573 field_reg, Field::is_nullable_offset()); |
| 1574 |
| 1575 if (value_cid == kDynamicCid) { |
| 1576 if (value_cid_reg == kNoRegister) { |
| 1577 ASSERT(!compiler->is_optimizing()); |
| 1578 value_cid_reg = EDX; |
| 1579 ASSERT((value_cid_reg != value_reg) && (field_reg != value_cid_reg)); |
| 1580 } |
| 1581 |
| 1582 LoadValueCid(compiler, value_cid_reg, value_reg); |
| 1583 |
| 1584 __ cmpl(value_cid_reg, field_cid_operand); |
| 1585 __ j(EQUAL, &ok); |
| 1586 __ cmpl(value_cid_reg, field_nullability_operand); |
| 1587 } else if (value_cid == kNullCid) { |
| 1588 __ cmpl(field_nullability_operand, Immediate(value_cid)); |
| 1589 } else { |
| 1590 __ cmpl(field_cid_operand, Immediate(value_cid)); |
| 1591 } |
| 1592 __ j(EQUAL, &ok); |
| 1593 |
| 1594 __ cmpl(field_cid_operand, Immediate(kIllegalCid)); |
| 1595 __ j(NOT_EQUAL, fail); |
| 1596 |
| 1597 if (value_cid == kDynamicCid) { |
| 1598 __ movl(field_cid_operand, value_cid_reg); |
| 1599 __ movl(field_nullability_operand, value_cid_reg); |
| 1600 } else { |
| 1601 __ movl(field_cid_operand, Immediate(value_cid)); |
| 1602 __ movl(field_nullability_operand, Immediate(value_cid)); |
| 1603 } |
| 1604 |
| 1605 if (!ok_is_fall_through) { |
| 1606 __ jmp(&ok); |
| 1607 } |
| 1608 } else { |
| 1609 if (value_cid == kDynamicCid) { |
| 1610 // Field's guarded class id is fixed by value's class id is not known. |
| 1611 __ testl(value_reg, Immediate(kSmiTagMask)); |
| 1612 |
| 1613 if (field_cid != kSmiCid) { |
| 1614 __ j(ZERO, fail); |
| 1615 __ LoadClassId(value_cid_reg, value_reg); |
| 1616 __ cmpl(value_cid_reg, Immediate(field_cid)); |
| 1617 } |
| 1618 |
| 1619 if (field().is_nullable() && (field_cid != kNullCid)) { |
| 1620 __ j(EQUAL, &ok); |
| 1621 const Immediate& raw_null = |
| 1622 Immediate(reinterpret_cast<intptr_t>(Object::null())); |
| 1623 __ cmpl(value_reg, raw_null); |
| 1624 } |
| 1625 |
| 1626 if (ok_is_fall_through) { |
| 1627 __ j(NOT_EQUAL, fail); |
| 1628 } else { |
| 1629 __ j(EQUAL, &ok); |
| 1630 } |
| 1631 } else { |
| 1632 // Both value's and field's class id is known. |
| 1633 if ((value_cid != field_cid) && (value_cid != nullability)) { |
| 1634 if (ok_is_fall_through) { |
| 1635 __ jmp(fail); |
| 1636 } |
| 1637 } else { |
| 1638 // Nothing to emit. |
| 1639 ASSERT(!compiler->is_optimizing()); |
| 1640 return; |
| 1641 } |
| 1642 } |
| 1643 } |
| 1644 |
| 1645 if (deopt == NULL) { |
| 1646 ASSERT(!compiler->is_optimizing()); |
| 1647 __ Bind(fail); |
| 1648 |
| 1649 __ cmpl(FieldAddress(field_reg, Field::guarded_cid_offset()), |
| 1650 Immediate(kDynamicCid)); |
| 1651 __ j(EQUAL, &ok); |
| 1652 |
| 1653 __ pushl(field_reg); |
| 1654 __ pushl(value_reg); |
| 1655 __ CallRuntime(kUpdateFieldCidRuntimeEntry); |
| 1656 __ Drop(2); // Drop the field and the value. |
| 1657 } |
| 1658 |
| 1659 __ Bind(&ok); |
| 1660 } |
| 1661 |
| 1662 |
| 1511 LocationSummary* StoreInstanceFieldInstr::MakeLocationSummary() const { | 1663 LocationSummary* StoreInstanceFieldInstr::MakeLocationSummary() const { |
| 1512 const intptr_t kNumInputs = 2; | 1664 const intptr_t kNumInputs = 2; |
| 1513 const intptr_t num_temps = 0; | 1665 const intptr_t num_temps = 0; |
| 1514 LocationSummary* summary = | 1666 LocationSummary* summary = |
| 1515 new LocationSummary(kNumInputs, num_temps, LocationSummary::kNoCall); | 1667 new LocationSummary(kNumInputs, num_temps, LocationSummary::kNoCall); |
| 1516 summary->set_in(0, Location::RequiresRegister()); | 1668 summary->set_in(0, Location::RequiresRegister()); |
| 1517 summary->set_in(1, ShouldEmitStoreBarrier() | 1669 summary->set_in(1, ShouldEmitStoreBarrier() |
| 1518 ? Location::WritableRegister() | 1670 ? Location::WritableRegister() |
| 1519 : Location::RegisterOrConstant(value())); | 1671 : Location::RegisterOrConstant(value())); |
| 1520 return summary; | 1672 return summary; |
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| 2785 instance_call()->ArgumentCount(), | 2937 instance_call()->ArgumentCount(), |
| 2786 instance_call()->argument_names(), | 2938 instance_call()->argument_names(), |
| 2787 locs()); | 2939 locs()); |
| 2788 return; | 2940 return; |
| 2789 } | 2941 } |
| 2790 | 2942 |
| 2791 // Load receiver into EAX. | 2943 // Load receiver into EAX. |
| 2792 __ movl(EAX, | 2944 __ movl(EAX, |
| 2793 Address(ESP, (instance_call()->ArgumentCount() - 1) * kWordSize)); | 2945 Address(ESP, (instance_call()->ArgumentCount() - 1) * kWordSize)); |
| 2794 | 2946 |
| 2795 Label done; | 2947 LoadValueCid(compiler, EDI, EAX, |
| 2796 if (ic_data().GetReceiverClassIdAt(0) == kSmiCid) { | 2948 (ic_data().GetReceiverClassIdAt(0) == kSmiCid) ? NULL : deopt); |
| 2797 __ movl(EDI, Immediate(kSmiCid)); | |
| 2798 __ testl(EAX, Immediate(kSmiTagMask)); | |
| 2799 __ j(ZERO, &done, Assembler::kNearJump); | |
| 2800 } else { | |
| 2801 __ testl(EAX, Immediate(kSmiTagMask)); | |
| 2802 __ j(ZERO, deopt); | |
| 2803 } | |
| 2804 __ LoadClassId(EDI, EAX); | |
| 2805 __ Bind(&done); | |
| 2806 | 2949 |
| 2807 compiler->EmitTestAndCall(ic_data(), | 2950 compiler->EmitTestAndCall(ic_data(), |
| 2808 EDI, // Class id register. | 2951 EDI, // Class id register. |
| 2809 instance_call()->ArgumentCount(), | 2952 instance_call()->ArgumentCount(), |
| 2810 instance_call()->argument_names(), | 2953 instance_call()->argument_names(), |
| 2811 deopt, | 2954 deopt, |
| 2812 instance_call()->deopt_id(), | 2955 instance_call()->deopt_id(), |
| 2813 instance_call()->token_pos(), | 2956 instance_call()->token_pos(), |
| 2814 locs()); | 2957 locs()); |
| 2815 } | 2958 } |
| 2816 | 2959 |
| 2817 | 2960 |
| 2818 LocationSummary* BranchInstr::MakeLocationSummary() const { | 2961 LocationSummary* BranchInstr::MakeLocationSummary() const { |
| 2819 UNREACHABLE(); | 2962 UNREACHABLE(); |
| 2820 return NULL; | 2963 return NULL; |
| 2821 } | 2964 } |
| 2822 | 2965 |
| 2823 | 2966 |
| 2824 void BranchInstr::EmitNativeCode(FlowGraphCompiler* compiler) { | 2967 void BranchInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 2825 comparison()->EmitBranchCode(compiler, this); | 2968 comparison()->EmitBranchCode(compiler, this); |
| 2826 } | 2969 } |
| 2827 | 2970 |
| 2828 | 2971 |
| 2829 LocationSummary* CheckClassInstr::MakeLocationSummary() const { | 2972 LocationSummary* CheckClassInstr::MakeLocationSummary() const { |
| 2830 const intptr_t kNumInputs = 1; | 2973 const intptr_t kNumInputs = 1; |
| 2831 const intptr_t kNumTemps = 1; | 2974 const intptr_t kNumTemps = 0; |
| 2832 LocationSummary* summary = | 2975 LocationSummary* summary = |
| 2833 new LocationSummary(kNumInputs, kNumTemps, LocationSummary::kNoCall); | 2976 new LocationSummary(kNumInputs, kNumTemps, LocationSummary::kNoCall); |
| 2834 summary->set_in(0, Location::RequiresRegister()); | 2977 summary->set_in(0, Location::RequiresRegister()); |
| 2835 summary->set_temp(0, Location::RequiresRegister()); | 2978 if (!null_check()) { |
| 2979 summary->AddTemp(Location::RequiresRegister()); |
| 2980 } |
| 2836 return summary; | 2981 return summary; |
| 2837 } | 2982 } |
| 2838 | 2983 |
| 2839 | 2984 |
| 2840 void CheckClassInstr::EmitNativeCode(FlowGraphCompiler* compiler) { | 2985 void CheckClassInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
| 2986 if (null_check()) { |
| 2987 Label* deopt = compiler->AddDeoptStub(deopt_id(), |
| 2988 kDeoptCheckClass); |
| 2989 const Immediate& raw_null = |
| 2990 Immediate(reinterpret_cast<intptr_t>(Object::null())); |
| 2991 __ cmpl(locs()->in(0).reg(), raw_null); |
| 2992 __ j(EQUAL, deopt); |
| 2993 return; |
| 2994 } |
| 2995 |
| 2841 ASSERT((unary_checks().GetReceiverClassIdAt(0) != kSmiCid) || | 2996 ASSERT((unary_checks().GetReceiverClassIdAt(0) != kSmiCid) || |
| 2842 (unary_checks().NumberOfChecks() > 1)); | 2997 (unary_checks().NumberOfChecks() > 1)); |
| 2843 Register value = locs()->in(0).reg(); | 2998 Register value = locs()->in(0).reg(); |
| 2844 Register temp = locs()->temp(0).reg(); | 2999 Register temp = locs()->temp(0).reg(); |
| 2845 Label* deopt = compiler->AddDeoptStub(deopt_id(), | 3000 Label* deopt = compiler->AddDeoptStub(deopt_id(), |
| 2846 kDeoptCheckClass); | 3001 kDeoptCheckClass); |
| 2847 Label is_ok; | 3002 Label is_ok; |
| 2848 intptr_t cix = 0; | 3003 intptr_t cix = 0; |
| 2849 if (unary_checks().GetReceiverClassIdAt(cix) == kSmiCid) { | 3004 if (unary_checks().GetReceiverClassIdAt(cix) == kSmiCid) { |
| 2850 __ testl(value, Immediate(kSmiTagMask)); | 3005 __ testl(value, Immediate(kSmiTagMask)); |
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| 3554 PcDescriptors::kOther, | 3709 PcDescriptors::kOther, |
| 3555 locs()); | 3710 locs()); |
| 3556 __ Drop(2); // Discard type arguments and receiver. | 3711 __ Drop(2); // Discard type arguments and receiver. |
| 3557 } | 3712 } |
| 3558 | 3713 |
| 3559 } // namespace dart | 3714 } // namespace dart |
| 3560 | 3715 |
| 3561 #undef __ | 3716 #undef __ |
| 3562 | 3717 |
| 3563 #endif // defined TARGET_ARCH_IA32 | 3718 #endif // defined TARGET_ARCH_IA32 |
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