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Issue 5714001: Improve our type feedback by recogizining never-executed IC calls for binary ... (Closed) Base URL: http://v8.googlecode.com/svn/branches/bleeding_edge/
Patch Set: address comments, fixed ARM build. Created 10 years ago
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1 // Copyright 2010 the V8 project authors. All rights reserved. 1 // Copyright 2010 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without 2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are 3 // modification, are permitted provided that the following conditions are
4 // met: 4 // met:
5 // 5 //
6 // * Redistributions of source code must retain the above copyright 6 // * Redistributions of source code must retain the above copyright
7 // notice, this list of conditions and the following disclaimer. 7 // notice, this list of conditions and the following disclaimer.
8 // * Redistributions in binary form must reproduce the above 8 // * Redistributions in binary form must reproduce the above
9 // copyright notice, this list of conditions and the following 9 // copyright notice, this list of conditions and the following
10 // disclaimer in the documentation and/or other materials provided 10 // disclaimer in the documentation and/or other materials provided
(...skipping 23 matching lines...) Expand all
34 #include "compiler.h" 34 #include "compiler.h"
35 #include "debug.h" 35 #include "debug.h"
36 #include "full-codegen.h" 36 #include "full-codegen.h"
37 #include "parser.h" 37 #include "parser.h"
38 #include "scopes.h" 38 #include "scopes.h"
39 #include "stub-cache.h" 39 #include "stub-cache.h"
40 40
41 namespace v8 { 41 namespace v8 {
42 namespace internal { 42 namespace internal {
43 43
44
45 class JumpPatchSite BASE_EMBEDDED {
46 public:
47 explicit JumpPatchSite(MacroAssembler* masm)
48 : masm_(masm) {
49 #ifdef DEBUG
50 info_emitted_ = false;
51 #endif
52 }
53
54 ~JumpPatchSite() {
55 ASSERT(patch_site_.is_bound() == info_emitted_);
56 }
57
58 void EmitJump(NearLabel* target) {
59 ASSERT(!patch_site_.is_bound() && !info_emitted_);
60 masm_->bind(&patch_site_);
61 masm_->jmp(target);
62 }
63
64 void EmitPatchInfo() {
65 int delta_to_patch_site = masm_->SizeOfCodeGeneratedSince(&patch_site_);
66 ASSERT(is_int8(delta_to_patch_site));
67 masm_->test(eax, Immediate(delta_to_patch_site));
68 #ifdef DEBUG
69 info_emitted_ = true;
70 #endif
71 }
72
73 bool is_bound() const { return patch_site_.is_bound(); }
74
75 private:
76 MacroAssembler* masm_;
77 Label patch_site_;
78 #ifdef DEBUG
79 bool info_emitted_;
80 #endif
81 };
82
83
44 #define __ ACCESS_MASM(masm_) 84 #define __ ACCESS_MASM(masm_)
45 85
46 // Generate code for a JS function. On entry to the function the receiver 86 // Generate code for a JS function. On entry to the function the receiver
47 // and arguments have been pushed on the stack left to right, with the 87 // and arguments have been pushed on the stack left to right, with the
48 // return address on top of them. The actual argument count matches the 88 // return address on top of them. The actual argument count matches the
49 // formal parameter count expected by the function. 89 // formal parameter count expected by the function.
50 // 90 //
51 // The live registers are: 91 // The live registers are:
52 // o edi: the JS function object being called (ie, ourselves) 92 // o edi: the JS function object being called (ie, ourselves)
53 // o esi: our context 93 // o esi: our context
(...skipping 654 matching lines...) Expand 10 before | Expand all | Expand 10 after
708 Comment cmnt(masm_, "[ Case comparison"); 748 Comment cmnt(masm_, "[ Case comparison");
709 __ bind(&next_test); 749 __ bind(&next_test);
710 next_test.Unuse(); 750 next_test.Unuse();
711 751
712 // Compile the label expression. 752 // Compile the label expression.
713 VisitForAccumulatorValue(clause->label()); 753 VisitForAccumulatorValue(clause->label());
714 754
715 // Perform the comparison as if via '==='. 755 // Perform the comparison as if via '==='.
716 __ mov(edx, Operand(esp, 0)); // Switch value. 756 __ mov(edx, Operand(esp, 0)); // Switch value.
717 bool inline_smi_code = ShouldInlineSmiCase(Token::EQ_STRICT); 757 bool inline_smi_code = ShouldInlineSmiCase(Token::EQ_STRICT);
758 JumpPatchSite patch_site(masm_);
718 if (inline_smi_code) { 759 if (inline_smi_code) {
719 NearLabel slow_case; 760 NearLabel slow_case;
720 __ mov(ecx, edx); 761 __ mov(ecx, edx);
721 __ or_(ecx, Operand(eax)); 762 __ or_(ecx, Operand(eax));
722 __ test(ecx, Immediate(kSmiTagMask)); 763 __ test(ecx, Immediate(kSmiTagMask));
723 __ j(not_zero, &slow_case, not_taken); 764 patch_site.EmitJump(&slow_case);
724 __ cmp(edx, Operand(eax)); 765 __ cmp(edx, Operand(eax));
725 __ j(not_equal, &next_test); 766 __ j(not_equal, &next_test);
726 __ Drop(1); // Switch value is no longer needed. 767 __ Drop(1); // Switch value is no longer needed.
727 __ jmp(clause->body_target()->entry_label()); 768 __ jmp(clause->body_target()->entry_label());
728 __ bind(&slow_case); 769 __ bind(&slow_case);
729 } 770 }
730 771
731 // Record position before stub call for type feedback. 772 // Record position before stub call for type feedback.
732 SetSourcePosition(clause->position()); 773 SetSourcePosition(clause->position());
733
734 Handle<Code> ic = CompareIC::GetUninitialized(Token::EQ_STRICT); 774 Handle<Code> ic = CompareIC::GetUninitialized(Token::EQ_STRICT);
735 __ call(ic, RelocInfo::CODE_TARGET); 775 EmitCallIC(ic, &patch_site);
736 776
737 __ test(eax, Operand(eax)); 777 __ test(eax, Operand(eax));
738 __ j(not_equal, &next_test); 778 __ j(not_equal, &next_test);
739 __ Drop(1); // Switch value is no longer needed. 779 __ Drop(1); // Switch value is no longer needed.
740 __ jmp(clause->body_target()->entry_label()); 780 __ jmp(clause->body_target()->entry_label());
741 } 781 }
742 782
743 // Discard the test value and jump to the default if present, otherwise to 783 // Discard the test value and jump to the default if present, otherwise to
744 // the end of the statement. 784 // the end of the statement.
745 __ bind(&next_test); 785 __ bind(&next_test);
(...skipping 799 matching lines...) Expand 10 before | Expand all | Expand 10 after
1545 SetSourcePosition(prop->position()); 1585 SetSourcePosition(prop->position());
1546 Handle<Code> ic(Builtins::builtin(Builtins::KeyedLoadIC_Initialize)); 1586 Handle<Code> ic(Builtins::builtin(Builtins::KeyedLoadIC_Initialize));
1547 EmitCallIC(ic, RelocInfo::CODE_TARGET); 1587 EmitCallIC(ic, RelocInfo::CODE_TARGET);
1548 } 1588 }
1549 1589
1550 1590
1551 void FullCodeGenerator::EmitConstantSmiAdd(Expression* expr, 1591 void FullCodeGenerator::EmitConstantSmiAdd(Expression* expr,
1552 OverwriteMode mode, 1592 OverwriteMode mode,
1553 bool left_is_constant_smi, 1593 bool left_is_constant_smi,
1554 Smi* value) { 1594 Smi* value) {
1555 NearLabel call_stub; 1595 NearLabel call_stub, done;
1556 Label done;
1557 __ add(Operand(eax), Immediate(value)); 1596 __ add(Operand(eax), Immediate(value));
1558 __ j(overflow, &call_stub); 1597 __ j(overflow, &call_stub);
1559 __ test(eax, Immediate(kSmiTagMask)); 1598 __ test(eax, Immediate(kSmiTagMask));
1560 __ j(zero, &done); 1599 JumpPatchSite patch_site(masm_);
1600 patch_site.EmitJump(&call_stub);
1601 __ jmp(&done);
1561 1602
1562 // Undo the optimistic add operation and call the shared stub. 1603 // Undo the optimistic add operation and call the shared stub.
1563 __ bind(&call_stub); 1604 __ bind(&call_stub);
1564 __ sub(Operand(eax), Immediate(value)); 1605 __ sub(Operand(eax), Immediate(value));
1565 Token::Value op = Token::ADD; 1606 Token::Value op = Token::ADD;
1566 TypeRecordingBinaryOpStub stub(op, mode); 1607 TypeRecordingBinaryOpStub stub(op, mode);
1567 if (left_is_constant_smi) { 1608 if (left_is_constant_smi) {
1568 __ mov(edx, Immediate(value)); 1609 __ mov(edx, Immediate(value));
1569 } else { 1610 } else {
1570 __ mov(edx, eax); 1611 __ mov(edx, eax);
1571 __ mov(eax, Immediate(value)); 1612 __ mov(eax, Immediate(value));
1572 } 1613 }
1573 __ CallStub(&stub); 1614 EmitCallIC(stub.GetCode(), &patch_site);
1615
1574 __ bind(&done); 1616 __ bind(&done);
1575 context()->Plug(eax); 1617 context()->Plug(eax);
1576 } 1618 }
1577 1619
1578 1620
1579 void FullCodeGenerator::EmitConstantSmiSub(Expression* expr, 1621 void FullCodeGenerator::EmitConstantSmiSub(Expression* expr,
1580 OverwriteMode mode, 1622 OverwriteMode mode,
1581 bool left_is_constant_smi, 1623 bool left_is_constant_smi,
1582 Smi* value) { 1624 Smi* value) {
1583 Label call_stub, done; 1625 NearLabel call_stub, done;
1584 if (left_is_constant_smi) { 1626 if (left_is_constant_smi) {
1585 __ mov(ecx, eax); 1627 __ mov(ecx, eax);
1586 __ mov(eax, Immediate(value)); 1628 __ mov(eax, Immediate(value));
1587 __ sub(Operand(eax), ecx); 1629 __ sub(Operand(eax), ecx);
1588 } else { 1630 } else {
1589 __ sub(Operand(eax), Immediate(value)); 1631 __ sub(Operand(eax), Immediate(value));
1590 } 1632 }
1591 __ j(overflow, &call_stub); 1633 __ j(overflow, &call_stub);
1592 __ test(eax, Immediate(kSmiTagMask)); 1634 __ test(eax, Immediate(kSmiTagMask));
1593 __ j(zero, &done); 1635 JumpPatchSite patch_site(masm_);
1636 patch_site.EmitJump(&call_stub);
1637 __ jmp(&done);
1594 1638
1595 __ bind(&call_stub); 1639 __ bind(&call_stub);
1596 if (left_is_constant_smi) { 1640 if (left_is_constant_smi) {
1597 __ mov(edx, Immediate(value)); 1641 __ mov(edx, Immediate(value));
1598 __ mov(eax, ecx); 1642 __ mov(eax, ecx);
1599 } else { 1643 } else {
1600 __ add(Operand(eax), Immediate(value)); // Undo the subtraction. 1644 __ add(Operand(eax), Immediate(value)); // Undo the subtraction.
1601 __ mov(edx, eax); 1645 __ mov(edx, eax);
1602 __ mov(eax, Immediate(value)); 1646 __ mov(eax, Immediate(value));
1603 } 1647 }
1604 Token::Value op = Token::SUB; 1648 Token::Value op = Token::SUB;
1605 TypeRecordingBinaryOpStub stub(op, mode); 1649 TypeRecordingBinaryOpStub stub(op, mode);
1606 __ CallStub(&stub); 1650 EmitCallIC(stub.GetCode(), &patch_site);
1651
1607 __ bind(&done); 1652 __ bind(&done);
1608 context()->Plug(eax); 1653 context()->Plug(eax);
1609 } 1654 }
1610 1655
1611 1656
1612 void FullCodeGenerator::EmitConstantSmiShiftOp(Expression* expr, 1657 void FullCodeGenerator::EmitConstantSmiShiftOp(Expression* expr,
1613 Token::Value op, 1658 Token::Value op,
1614 OverwriteMode mode, 1659 OverwriteMode mode,
1615 Smi* value) { 1660 Smi* value) {
1616 Label call_stub, smi_case, done; 1661 NearLabel call_stub, done;
1617 int shift_value = value->value() & 0x1f; 1662 int shift_value = value->value() & 0x1f;
1618 1663
1619 __ test(eax, Immediate(kSmiTagMask)); 1664 __ test(eax, Immediate(kSmiTagMask));
1620 __ j(zero, &smi_case); 1665 // Patch site.
1666 JumpPatchSite patch_site(masm_);
1667 patch_site.EmitJump(&call_stub);
1621 1668
1622 __ bind(&call_stub); 1669 // Smi case.
1623 __ mov(edx, eax);
1624 __ mov(eax, Immediate(value));
1625 TypeRecordingBinaryOpStub stub(op, mode);
1626 __ CallStub(&stub);
1627 __ jmp(&done);
1628
1629 __ bind(&smi_case);
1630 switch (op) { 1670 switch (op) {
1631 case Token::SHL: 1671 case Token::SHL:
1632 if (shift_value != 0) { 1672 if (shift_value != 0) {
1633 __ mov(edx, eax); 1673 __ mov(edx, eax);
1634 if (shift_value > 1) { 1674 if (shift_value > 1) {
1635 __ shl(edx, shift_value - 1); 1675 __ shl(edx, shift_value - 1);
1636 } 1676 }
1637 // Convert int result to smi, checking that it is in int range. 1677 // Convert int result to smi, checking that it is in int range.
1638 ASSERT(kSmiTagSize == 1); // Adjust code if not the case. 1678 ASSERT(kSmiTagSize == 1); // Adjust code if not the case.
1639 __ add(edx, Operand(edx)); 1679 __ add(edx, Operand(edx));
(...skipping 18 matching lines...) Expand all
1658 __ mov(eax, edx); // Put result back into eax. 1698 __ mov(eax, edx); // Put result back into eax.
1659 } else { 1699 } else {
1660 __ SmiUntag(eax); 1700 __ SmiUntag(eax);
1661 __ shr(eax, shift_value); 1701 __ shr(eax, shift_value);
1662 __ SmiTag(eax); 1702 __ SmiTag(eax);
1663 } 1703 }
1664 break; 1704 break;
1665 default: 1705 default:
1666 UNREACHABLE(); 1706 UNREACHABLE();
1667 } 1707 }
1708 __ jmp(&done);
1709
1710 // Call stub.
1711 __ bind(&call_stub);
1712 __ mov(edx, eax);
1713 __ mov(eax, Immediate(value));
1714 TypeRecordingBinaryOpStub stub(op, mode);
1715 EmitCallIC(stub.GetCode(), &patch_site);
1668 1716
1669 __ bind(&done); 1717 __ bind(&done);
1670 context()->Plug(eax); 1718 context()->Plug(eax);
1671 } 1719 }
1672 1720
1673 1721
1674 void FullCodeGenerator::EmitConstantSmiBitOp(Expression* expr, 1722 void FullCodeGenerator::EmitConstantSmiBitOp(Expression* expr,
1675 Token::Value op, 1723 Token::Value op,
1676 OverwriteMode mode, 1724 OverwriteMode mode,
1677 Smi* value) { 1725 Smi* value) {
1678 Label smi_case, done; 1726 NearLabel call_stub, done;
1679 __ test(eax, Immediate(kSmiTagMask)); 1727 __ test(eax, Immediate(kSmiTagMask));
1680 __ j(zero, &smi_case); 1728 // Patch site. The first invocation of the stub will be patch the jmp with
1729 // the required conditional jump.
1730 JumpPatchSite patch_site(masm_);
1731 patch_site.EmitJump(&call_stub);
1681 1732
1682 // The order of the arguments does not matter for bit-ops with a 1733 // Smi case.
1683 // constant operand.
1684 __ mov(edx, Immediate(value));
1685 TypeRecordingBinaryOpStub stub(op, mode);
1686 __ CallStub(&stub);
1687 __ jmp(&done);
1688
1689 __ bind(&smi_case);
1690 switch (op) { 1734 switch (op) {
1691 case Token::BIT_OR: 1735 case Token::BIT_OR:
1692 __ or_(Operand(eax), Immediate(value)); 1736 __ or_(Operand(eax), Immediate(value));
1693 break; 1737 break;
1694 case Token::BIT_XOR: 1738 case Token::BIT_XOR:
1695 __ xor_(Operand(eax), Immediate(value)); 1739 __ xor_(Operand(eax), Immediate(value));
1696 break; 1740 break;
1697 case Token::BIT_AND: 1741 case Token::BIT_AND:
1698 __ and_(Operand(eax), Immediate(value)); 1742 __ and_(Operand(eax), Immediate(value));
1699 break; 1743 break;
1700 default: 1744 default:
1701 UNREACHABLE(); 1745 UNREACHABLE();
1702 } 1746 }
1747 __ jmp(&done);
1748
1749 // The order of the arguments does not matter for bit-ops with a
1750 // constant operand.
1751 __ bind(&call_stub);
1752 __ mov(edx, Immediate(value));
1753 TypeRecordingBinaryOpStub stub(op, mode);
1754 EmitCallIC(stub.GetCode(), &patch_site);
1703 1755
1704 __ bind(&done); 1756 __ bind(&done);
1705 context()->Plug(eax); 1757 context()->Plug(eax);
1706 } 1758 }
1707 1759
1708 1760
1709 void FullCodeGenerator::EmitConstantSmiBinaryOp(Expression* expr, 1761 void FullCodeGenerator::EmitConstantSmiBinaryOp(Expression* expr,
1710 Token::Value op, 1762 Token::Value op,
1711 OverwriteMode mode, 1763 OverwriteMode mode,
1712 bool left_is_constant_smi, 1764 bool left_is_constant_smi,
(...skipping 33 matching lines...) Expand 10 before | Expand all | Expand 10 after
1746 EmitConstantSmiBinaryOp(expr, op, mode, false, value); 1798 EmitConstantSmiBinaryOp(expr, op, mode, false, value);
1747 return; 1799 return;
1748 } else if (constant == kLeftConstant) { 1800 } else if (constant == kLeftConstant) {
1749 Smi* value = Smi::cast(*left->AsLiteral()->handle()); 1801 Smi* value = Smi::cast(*left->AsLiteral()->handle());
1750 EmitConstantSmiBinaryOp(expr, op, mode, true, value); 1802 EmitConstantSmiBinaryOp(expr, op, mode, true, value);
1751 return; 1803 return;
1752 } 1804 }
1753 1805
1754 // Do combined smi check of the operands. Left operand is on the 1806 // Do combined smi check of the operands. Left operand is on the
1755 // stack. Right operand is in eax. 1807 // stack. Right operand is in eax.
1756 Label done, stub_call, smi_case; 1808 NearLabel done, stub_call;
1757 __ pop(edx); 1809 __ pop(edx);
1758 __ mov(ecx, eax); 1810 __ mov(ecx, eax);
1759 __ or_(eax, Operand(edx)); 1811 __ or_(eax, Operand(edx));
1760 __ test(eax, Immediate(kSmiTagMask)); 1812 __ test(eax, Immediate(kSmiTagMask));
1761 __ j(zero, &smi_case); 1813 JumpPatchSite patch_site(masm_);
1814 patch_site.EmitJump(&stub_call);
1762 1815
1763 __ bind(&stub_call); 1816 // Smi case.
1764 __ mov(eax, ecx);
1765 TypeRecordingBinaryOpStub stub(op, mode);
1766 __ CallStub(&stub);
1767 __ jmp(&done);
1768
1769 __ bind(&smi_case);
1770 __ mov(eax, edx); // Copy left operand in case of a stub call. 1817 __ mov(eax, edx); // Copy left operand in case of a stub call.
1771 1818
1772 switch (op) { 1819 switch (op) {
1773 case Token::SAR: 1820 case Token::SAR:
1774 __ SmiUntag(eax); 1821 __ SmiUntag(eax);
1775 __ SmiUntag(ecx); 1822 __ SmiUntag(ecx);
1776 __ sar_cl(eax); // No checks of result necessary 1823 __ sar_cl(eax); // No checks of result necessary
1777 __ SmiTag(eax); 1824 __ SmiTag(eax);
1778 break; 1825 break;
1779 case Token::SHL: { 1826 case Token::SHL: {
(...skipping 47 matching lines...) Expand 10 before | Expand all | Expand 10 after
1827 break; 1874 break;
1828 case Token::BIT_AND: 1875 case Token::BIT_AND:
1829 __ and_(eax, Operand(ecx)); 1876 __ and_(eax, Operand(ecx));
1830 break; 1877 break;
1831 case Token::BIT_XOR: 1878 case Token::BIT_XOR:
1832 __ xor_(eax, Operand(ecx)); 1879 __ xor_(eax, Operand(ecx));
1833 break; 1880 break;
1834 default: 1881 default:
1835 UNREACHABLE(); 1882 UNREACHABLE();
1836 } 1883 }
1884 __ jmp(&done);
1885
1886 __ bind(&stub_call);
1887 __ mov(eax, ecx);
1888 TypeRecordingBinaryOpStub stub(op, mode);
1889 EmitCallIC(stub.GetCode(), &patch_site);
1837 1890
1838 __ bind(&done); 1891 __ bind(&done);
1839 context()->Plug(eax); 1892 context()->Plug(eax);
1840 } 1893 }
1841 1894
1842 1895
1843 void FullCodeGenerator::EmitBinaryOp(Token::Value op, 1896 void FullCodeGenerator::EmitBinaryOp(Token::Value op,
1844 OverwriteMode mode) { 1897 OverwriteMode mode) {
1845 __ pop(edx); 1898 __ pop(edx);
1846 TypeRecordingBinaryOpStub stub(op, mode); 1899 TypeRecordingBinaryOpStub stub(op, mode);
1847 __ CallStub(&stub); 1900 EmitCallIC(stub.GetCode(), NULL); // NULL signals no inlined smi code.
1848 context()->Plug(eax); 1901 context()->Plug(eax);
1849 } 1902 }
1850 1903
1851 1904
1852 void FullCodeGenerator::EmitAssignment(Expression* expr) { 1905 void FullCodeGenerator::EmitAssignment(Expression* expr) {
1853 // Invalid left-hand sides are rewritten to have a 'throw 1906 // Invalid left-hand sides are rewritten to have a 'throw
1854 // ReferenceError' on the left-hand side. 1907 // ReferenceError' on the left-hand side.
1855 if (!expr->IsValidLeftHandSide()) { 1908 if (!expr->IsValidLeftHandSide()) {
1856 VisitForEffect(expr); 1909 VisitForEffect(expr);
1857 return; 1910 return;
(...skipping 1844 matching lines...) Expand 10 before | Expand all | Expand 10 after
3702 break; 3755 break;
3703 case KEYED_PROPERTY: 3756 case KEYED_PROPERTY:
3704 __ mov(Operand(esp, 2 * kPointerSize), eax); 3757 __ mov(Operand(esp, 2 * kPointerSize), eax);
3705 break; 3758 break;
3706 } 3759 }
3707 } 3760 }
3708 } 3761 }
3709 3762
3710 // Inline smi case if we are in a loop. 3763 // Inline smi case if we are in a loop.
3711 NearLabel stub_call; 3764 NearLabel stub_call;
3765 JumpPatchSite patch_site(masm_);
3712 Label done; 3766 Label done;
3713 if (ShouldInlineSmiCase(expr->op())) { 3767 if (ShouldInlineSmiCase(expr->op())) {
3714 if (expr->op() == Token::INC) { 3768 if (expr->op() == Token::INC) {
3715 __ add(Operand(eax), Immediate(Smi::FromInt(1))); 3769 __ add(Operand(eax), Immediate(Smi::FromInt(1)));
3716 } else { 3770 } else {
3717 __ sub(Operand(eax), Immediate(Smi::FromInt(1))); 3771 __ sub(Operand(eax), Immediate(Smi::FromInt(1)));
3718 } 3772 }
3719 __ j(overflow, &stub_call); 3773 __ j(overflow, &stub_call);
3720 // We could eliminate this smi check if we split the code at 3774 // We could eliminate this smi check if we split the code at
3721 // the first smi check before calling ToNumber. 3775 // the first smi check before calling ToNumber.
3722 __ test(eax, Immediate(kSmiTagMask)); 3776 __ test(eax, Immediate(kSmiTagMask));
3723 __ j(zero, &done); 3777 patch_site.EmitJump(&stub_call);
3778 __ jmp(&done);
3779
3724 __ bind(&stub_call); 3780 __ bind(&stub_call);
3725 // Call stub. Undo operation first. 3781 // Call stub. Undo operation first.
3726 if (expr->op() == Token::INC) { 3782 if (expr->op() == Token::INC) {
3727 __ sub(Operand(eax), Immediate(Smi::FromInt(1))); 3783 __ sub(Operand(eax), Immediate(Smi::FromInt(1)));
3728 } else { 3784 } else {
3729 __ add(Operand(eax), Immediate(Smi::FromInt(1))); 3785 __ add(Operand(eax), Immediate(Smi::FromInt(1)));
3730 } 3786 }
3731 } 3787 }
3732 3788
3733 // Record position before stub call. 3789 // Record position before stub call.
3734 SetSourcePosition(expr->position()); 3790 SetSourcePosition(expr->position());
3735 3791
3736 // Call stub for +1/-1. 3792 // Call stub for +1/-1.
3737 __ mov(edx, eax); 3793 __ mov(edx, eax);
3738 __ mov(eax, Immediate(Smi::FromInt(1))); 3794 __ mov(eax, Immediate(Smi::FromInt(1)));
3739 TypeRecordingBinaryOpStub stub(expr->binary_op(), 3795 TypeRecordingBinaryOpStub stub(expr->binary_op(),
3740 NO_OVERWRITE); 3796 NO_OVERWRITE);
3741 __ CallStub(&stub); 3797 EmitCallIC(stub.GetCode(), &patch_site);
3798
3742 __ bind(&done); 3799 __ bind(&done);
3743
3744 // Store the value returned in eax. 3800 // Store the value returned in eax.
3745 switch (assign_type) { 3801 switch (assign_type) {
3746 case VARIABLE: 3802 case VARIABLE:
3747 if (expr->is_postfix()) { 3803 if (expr->is_postfix()) {
3748 // Perform the assignment as if via '='. 3804 // Perform the assignment as if via '='.
3749 { EffectContext context(this); 3805 { EffectContext context(this);
3750 EmitVariableAssignment(expr->expression()->AsVariableProxy()->var(), 3806 EmitVariableAssignment(expr->expression()->AsVariableProxy()->var(),
3751 Token::ASSIGN); 3807 Token::ASSIGN);
3752 } 3808 }
3753 // For all contexts except EffectContext We have the result on 3809 // For all contexts except EffectContext We have the result on
(...skipping 244 matching lines...) Expand 10 before | Expand all | Expand 10 after
3998 cc = greater_equal; 4054 cc = greater_equal;
3999 __ pop(edx); 4055 __ pop(edx);
4000 break; 4056 break;
4001 case Token::IN: 4057 case Token::IN:
4002 case Token::INSTANCEOF: 4058 case Token::INSTANCEOF:
4003 default: 4059 default:
4004 UNREACHABLE(); 4060 UNREACHABLE();
4005 } 4061 }
4006 4062
4007 bool inline_smi_code = ShouldInlineSmiCase(op); 4063 bool inline_smi_code = ShouldInlineSmiCase(op);
4064 JumpPatchSite patch_site(masm_);
4008 if (inline_smi_code) { 4065 if (inline_smi_code) {
4009 NearLabel slow_case; 4066 NearLabel slow_case;
4010 __ mov(ecx, Operand(edx)); 4067 __ mov(ecx, Operand(edx));
4011 __ or_(ecx, Operand(eax)); 4068 __ or_(ecx, Operand(eax));
4012 __ test(ecx, Immediate(kSmiTagMask)); 4069 __ test(ecx, Immediate(kSmiTagMask));
4013 __ j(not_zero, &slow_case, not_taken); 4070 patch_site.EmitJump(&slow_case);
4014 __ cmp(edx, Operand(eax)); 4071 __ cmp(edx, Operand(eax));
4015 Split(cc, if_true, if_false, NULL); 4072 Split(cc, if_true, if_false, NULL);
4016 __ bind(&slow_case); 4073 __ bind(&slow_case);
4017 } 4074 }
4018 4075
4019 // Record position and call the compare IC. 4076 // Record position and call the compare IC.
4077 SetSourcePosition(expr->position());
4020 Handle<Code> ic = CompareIC::GetUninitialized(op); 4078 Handle<Code> ic = CompareIC::GetUninitialized(op);
4021 SetSourcePosition(expr->position()); 4079 EmitCallIC(ic, &patch_site);
4022 __ call(ic, RelocInfo::CODE_TARGET); 4080
4023 PrepareForBailoutBeforeSplit(TOS_REG, true, if_true, if_false); 4081 PrepareForBailoutBeforeSplit(TOS_REG, true, if_true, if_false);
4024 __ test(eax, Operand(eax)); 4082 __ test(eax, Operand(eax));
4025 Split(cc, if_true, if_false, fall_through); 4083 Split(cc, if_true, if_false, fall_through);
4026 } 4084 }
4027 } 4085 }
4028 4086
4029 // Convert the result of the comparison into one expected for this 4087 // Convert the result of the comparison into one expected for this
4030 // expression's context. 4088 // expression's context.
4031 context()->Plug(if_true, if_false); 4089 context()->Plug(if_true, if_false);
4032 } 4090 }
(...skipping 83 matching lines...) Expand 10 before | Expand all | Expand 10 after
4116 case Code::KEYED_STORE_IC: 4174 case Code::KEYED_STORE_IC:
4117 __ nop(); // Signals no inlined code. 4175 __ nop(); // Signals no inlined code.
4118 break; 4176 break;
4119 default: 4177 default:
4120 // Do nothing. 4178 // Do nothing.
4121 break; 4179 break;
4122 } 4180 }
4123 } 4181 }
4124 4182
4125 4183
4184 void FullCodeGenerator::EmitCallIC(Handle<Code> ic, JumpPatchSite* patch_site) {
4185 __ call(ic, RelocInfo::CODE_TARGET);
4186 if (patch_site != NULL && patch_site->is_bound()) {
4187 patch_site->EmitPatchInfo();
4188 } else {
4189 __ nop(); // Signals no inlined code.
4190 }
4191 }
4192
4193
4126 void FullCodeGenerator::StoreToFrameField(int frame_offset, Register value) { 4194 void FullCodeGenerator::StoreToFrameField(int frame_offset, Register value) {
4127 ASSERT_EQ(POINTER_SIZE_ALIGN(frame_offset), frame_offset); 4195 ASSERT_EQ(POINTER_SIZE_ALIGN(frame_offset), frame_offset);
4128 __ mov(Operand(ebp, frame_offset), value); 4196 __ mov(Operand(ebp, frame_offset), value);
4129 } 4197 }
4130 4198
4131 4199
4132 void FullCodeGenerator::LoadContextField(Register dst, int context_index) { 4200 void FullCodeGenerator::LoadContextField(Register dst, int context_index) {
4133 __ mov(dst, ContextOperand(esi, context_index)); 4201 __ mov(dst, ContextOperand(esi, context_index));
4134 } 4202 }
4135 4203
(...skipping 27 matching lines...) Expand all
4163 // And return. 4231 // And return.
4164 __ ret(0); 4232 __ ret(0);
4165 } 4233 }
4166 4234
4167 4235
4168 #undef __ 4236 #undef __
4169 4237
4170 } } // namespace v8::internal 4238 } } // namespace v8::internal
4171 4239
4172 #endif // V8_TARGET_ARCH_IA32 4240 #endif // V8_TARGET_ARCH_IA32
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