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| 1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
| 4 // met: | 4 // met: |
| 5 // | 5 // |
| 6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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| 1574 } | 1574 } |
| 1575 } | 1575 } |
| 1576 jmp(gc_required); | 1576 jmp(gc_required); |
| 1577 return; | 1577 return; |
| 1578 } | 1578 } |
| 1579 ASSERT(!result.is(result_end)); | 1579 ASSERT(!result.is(result_end)); |
| 1580 | 1580 |
| 1581 // Load address of new object into result. | 1581 // Load address of new object into result. |
| 1582 LoadAllocationTopHelper(result, scratch, flags); | 1582 LoadAllocationTopHelper(result, scratch, flags); |
| 1583 | 1583 |
| 1584 if (isolate()->heap_profiler()->is_tracking_allocations()) { |
| 1585 RecordObjectAllocation(isolate(), result, object_size, scratch); |
| 1586 } |
| 1587 |
| 1584 ExternalReference allocation_limit = | 1588 ExternalReference allocation_limit = |
| 1585 AllocationUtils::GetAllocationLimitReference(isolate(), flags); | 1589 AllocationUtils::GetAllocationLimitReference(isolate(), flags); |
| 1586 | 1590 |
| 1587 // Align the next allocation. Storing the filler map without checking top is | 1591 // Align the next allocation. Storing the filler map without checking top is |
| 1588 // safe in new-space because the limit of the heap is aligned there. | 1592 // safe in new-space because the limit of the heap is aligned there. |
| 1589 if ((flags & DOUBLE_ALIGNMENT) != 0) { | 1593 if ((flags & DOUBLE_ALIGNMENT) != 0) { |
| 1590 ASSERT((flags & PRETENURE_OLD_POINTER_SPACE) == 0); | 1594 ASSERT((flags & PRETENURE_OLD_POINTER_SPACE) == 0); |
| 1591 ASSERT(kPointerAlignment * 2 == kDoubleAlignment); | 1595 ASSERT(kPointerAlignment * 2 == kDoubleAlignment); |
| 1592 Label aligned; | 1596 Label aligned; |
| 1593 test(result, Immediate(kDoubleAlignmentMask)); | 1597 test(result, Immediate(kDoubleAlignmentMask)); |
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| 1651 // Register element_count is not modified by the function. | 1655 // Register element_count is not modified by the function. |
| 1652 } | 1656 } |
| 1653 jmp(gc_required); | 1657 jmp(gc_required); |
| 1654 return; | 1658 return; |
| 1655 } | 1659 } |
| 1656 ASSERT(!result.is(result_end)); | 1660 ASSERT(!result.is(result_end)); |
| 1657 | 1661 |
| 1658 // Load address of new object into result. | 1662 // Load address of new object into result. |
| 1659 LoadAllocationTopHelper(result, scratch, flags); | 1663 LoadAllocationTopHelper(result, scratch, flags); |
| 1660 | 1664 |
| 1665 if (isolate()->heap_profiler()->is_tracking_allocations()) { |
| 1666 RecordObjectAllocation(isolate(), |
| 1667 result, |
| 1668 header_size, |
| 1669 element_size, |
| 1670 element_count, |
| 1671 scratch); |
| 1672 } |
| 1673 |
| 1661 ExternalReference allocation_limit = | 1674 ExternalReference allocation_limit = |
| 1662 AllocationUtils::GetAllocationLimitReference(isolate(), flags); | 1675 AllocationUtils::GetAllocationLimitReference(isolate(), flags); |
| 1663 | 1676 |
| 1664 // Align the next allocation. Storing the filler map without checking top is | 1677 // Align the next allocation. Storing the filler map without checking top is |
| 1665 // safe in new-space because the limit of the heap is aligned there. | 1678 // safe in new-space because the limit of the heap is aligned there. |
| 1666 if ((flags & DOUBLE_ALIGNMENT) != 0) { | 1679 if ((flags & DOUBLE_ALIGNMENT) != 0) { |
| 1667 ASSERT((flags & PRETENURE_OLD_POINTER_SPACE) == 0); | 1680 ASSERT((flags & PRETENURE_OLD_POINTER_SPACE) == 0); |
| 1668 ASSERT(kPointerAlignment * 2 == kDoubleAlignment); | 1681 ASSERT(kPointerAlignment * 2 == kDoubleAlignment); |
| 1669 Label aligned; | 1682 Label aligned; |
| 1670 test(result, Immediate(kDoubleAlignmentMask)); | 1683 test(result, Immediate(kDoubleAlignmentMask)); |
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| 1726 // object_size is left unchanged by this function. | 1739 // object_size is left unchanged by this function. |
| 1727 } | 1740 } |
| 1728 jmp(gc_required); | 1741 jmp(gc_required); |
| 1729 return; | 1742 return; |
| 1730 } | 1743 } |
| 1731 ASSERT(!result.is(result_end)); | 1744 ASSERT(!result.is(result_end)); |
| 1732 | 1745 |
| 1733 // Load address of new object into result. | 1746 // Load address of new object into result. |
| 1734 LoadAllocationTopHelper(result, scratch, flags); | 1747 LoadAllocationTopHelper(result, scratch, flags); |
| 1735 | 1748 |
| 1749 if (isolate()->heap_profiler()->is_tracking_allocations()) { |
| 1750 RecordObjectAllocation(isolate(), result, object_size, scratch); |
| 1751 } |
| 1752 |
| 1736 ExternalReference allocation_limit = | 1753 ExternalReference allocation_limit = |
| 1737 AllocationUtils::GetAllocationLimitReference(isolate(), flags); | 1754 AllocationUtils::GetAllocationLimitReference(isolate(), flags); |
| 1738 | 1755 |
| 1739 // Align the next allocation. Storing the filler map without checking top is | 1756 // Align the next allocation. Storing the filler map without checking top is |
| 1740 // safe in new-space because the limit of the heap is aligned there. | 1757 // safe in new-space because the limit of the heap is aligned there. |
| 1741 if ((flags & DOUBLE_ALIGNMENT) != 0) { | 1758 if ((flags & DOUBLE_ALIGNMENT) != 0) { |
| 1742 ASSERT((flags & PRETENURE_OLD_POINTER_SPACE) == 0); | 1759 ASSERT((flags & PRETENURE_OLD_POINTER_SPACE) == 0); |
| 1743 ASSERT(kPointerAlignment * 2 == kDoubleAlignment); | 1760 ASSERT(kPointerAlignment * 2 == kDoubleAlignment); |
| 1744 Label aligned; | 1761 Label aligned; |
| 1745 test(result, Immediate(kDoubleAlignmentMask)); | 1762 test(result, Immediate(kDoubleAlignmentMask)); |
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| 3543 JSArray::kSize + AllocationMemento::kSize - kHeapObjectTag)); | 3560 JSArray::kSize + AllocationMemento::kSize - kHeapObjectTag)); |
| 3544 cmp(scratch_reg, Immediate(new_space_start)); | 3561 cmp(scratch_reg, Immediate(new_space_start)); |
| 3545 j(less, no_memento_found); | 3562 j(less, no_memento_found); |
| 3546 cmp(scratch_reg, Operand::StaticVariable(new_space_allocation_top)); | 3563 cmp(scratch_reg, Operand::StaticVariable(new_space_allocation_top)); |
| 3547 j(greater, no_memento_found); | 3564 j(greater, no_memento_found); |
| 3548 cmp(MemOperand(scratch_reg, -AllocationMemento::kSize), | 3565 cmp(MemOperand(scratch_reg, -AllocationMemento::kSize), |
| 3549 Immediate(isolate()->factory()->allocation_memento_map())); | 3566 Immediate(isolate()->factory()->allocation_memento_map())); |
| 3550 } | 3567 } |
| 3551 | 3568 |
| 3552 | 3569 |
| 3570 void MacroAssembler::RecordObjectAllocation(Isolate* isolate, |
| 3571 Register object, |
| 3572 Register object_size, |
| 3573 Register scratch) { |
| 3574 FrameScope frame(this, StackFrame::EXIT); |
| 3575 PushSafepointRegisters(); |
| 3576 if (scratch.is_valid()) { |
| 3577 PrepareCallCFunction(3, scratch); |
| 3578 } else { |
| 3579 PrepareCallCFunction(3, eax); |
| 3580 } |
| 3581 mov(Operand(esp, 0 * kPointerSize), |
| 3582 Immediate(ExternalReference::isolate_address(isolate))); |
| 3583 mov(Operand(esp, 1 * kPointerSize), object); |
| 3584 mov(Operand(esp, 2 * kPointerSize), object_size); |
| 3585 CallCFunction( |
| 3586 ExternalReference::record_object_allocation_function(isolate), 3); |
| 3587 PopSafepointRegisters(); |
| 3588 } |
| 3589 |
| 3590 |
| 3591 void MacroAssembler::RecordObjectAllocation(Isolate* isolate, |
| 3592 Register object, |
| 3593 int object_size, |
| 3594 Register scratch) { |
| 3595 FrameScope frame(this, StackFrame::EXIT); |
| 3596 PushSafepointRegisters(); |
| 3597 if (scratch.is_valid()) { |
| 3598 PrepareCallCFunction(3, scratch); |
| 3599 } else { |
| 3600 PrepareCallCFunction(3, eax); |
| 3601 } |
| 3602 mov(Operand(esp, 0 * kPointerSize), |
| 3603 Immediate(ExternalReference::isolate_address(isolate))); |
| 3604 mov(Operand(esp, 1 * kPointerSize), object); |
| 3605 mov(Operand(esp, 2 * kPointerSize), Immediate(object_size)); |
| 3606 CallCFunction( |
| 3607 ExternalReference::record_object_allocation_function(isolate), 3); |
| 3608 PopSafepointRegisters(); |
| 3609 } |
| 3610 |
| 3611 |
| 3612 void MacroAssembler::RecordObjectAllocation(Isolate* isolate, |
| 3613 Register object, |
| 3614 int header_size, |
| 3615 ScaleFactor element_size, |
| 3616 Register element_count, |
| 3617 Register scratch) { |
| 3618 FrameScope frame(this, StackFrame::EXIT); |
| 3619 PushSafepointRegisters(); |
| 3620 if (scratch.is_valid()) { |
| 3621 PrepareCallCFunction(3, scratch); |
| 3622 } else { |
| 3623 PrepareCallCFunction(3, eax); |
| 3624 } |
| 3625 mov(Operand(esp, 0 * kPointerSize), |
| 3626 Immediate(ExternalReference::isolate_address(isolate))); |
| 3627 mov(Operand(esp, 1 * kPointerSize), object); |
| 3628 shl(element_count, element_size); |
| 3629 add(element_count, Immediate(header_size)); |
| 3630 mov(Operand(esp, 2 * kPointerSize), element_count); |
| 3631 CallCFunction( |
| 3632 ExternalReference::record_object_allocation_function(isolate), 3); |
| 3633 PopSafepointRegisters(); |
| 3634 } |
| 3635 |
| 3636 |
| 3553 } } // namespace v8::internal | 3637 } } // namespace v8::internal |
| 3554 | 3638 |
| 3555 #endif // V8_TARGET_ARCH_IA32 | 3639 #endif // V8_TARGET_ARCH_IA32 |
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