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Side by Side Diff: src/ppc/macro-assembler-ppc.h

Issue 2580653002: [cleanup] Drop unused Allocate*String MacroAssembler instructions (Closed)
Patch Set: Created 4 years ago
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1 // Copyright 2014 the V8 project authors. All rights reserved. 1 // Copyright 2014 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 #ifndef V8_PPC_MACRO_ASSEMBLER_PPC_H_ 5 #ifndef V8_PPC_MACRO_ASSEMBLER_PPC_H_
6 #define V8_PPC_MACRO_ASSEMBLER_PPC_H_ 6 #define V8_PPC_MACRO_ASSEMBLER_PPC_H_
7 7
8 #include "src/assembler.h" 8 #include "src/assembler.h"
9 #include "src/bailout-reason.h" 9 #include "src/bailout-reason.h"
10 #include "src/frames.h" 10 #include "src/frames.h"
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705 705
706 // FastAllocate is right now only used for folded allocations. It just 706 // FastAllocate is right now only used for folded allocations. It just
707 // increments the top pointer without checking against limit. This can only 707 // increments the top pointer without checking against limit. This can only
708 // be done if it was proved earlier that the allocation will succeed. 708 // be done if it was proved earlier that the allocation will succeed.
709 void FastAllocate(int object_size, Register result, Register scratch1, 709 void FastAllocate(int object_size, Register result, Register scratch1,
710 Register scratch2, AllocationFlags flags); 710 Register scratch2, AllocationFlags flags);
711 711
712 void FastAllocate(Register object_size, Register result, Register result_end, 712 void FastAllocate(Register object_size, Register result, Register result_end,
713 Register scratch, AllocationFlags flags); 713 Register scratch, AllocationFlags flags);
714 714
715 void AllocateTwoByteString(Register result, Register length,
716 Register scratch1, Register scratch2,
717 Register scratch3, Label* gc_required);
718 void AllocateOneByteString(Register result, Register length,
719 Register scratch1, Register scratch2,
720 Register scratch3, Label* gc_required);
721 void AllocateTwoByteConsString(Register result, Register length,
722 Register scratch1, Register scratch2,
723 Label* gc_required);
724 void AllocateOneByteConsString(Register result, Register length,
725 Register scratch1, Register scratch2,
726 Label* gc_required);
727 void AllocateTwoByteSlicedString(Register result, Register length,
728 Register scratch1, Register scratch2,
729 Label* gc_required);
730 void AllocateOneByteSlicedString(Register result, Register length,
731 Register scratch1, Register scratch2,
732 Label* gc_required);
733
734 // Allocates a heap number or jumps to the gc_required label if the young 715 // Allocates a heap number or jumps to the gc_required label if the young
735 // space is full and a scavenge is needed. All registers are clobbered also 716 // space is full and a scavenge is needed. All registers are clobbered also
736 // when control continues at the gc_required label. 717 // when control continues at the gc_required label.
737 void AllocateHeapNumber(Register result, Register scratch1, Register scratch2, 718 void AllocateHeapNumber(Register result, Register scratch1, Register scratch2,
738 Register heap_number_map, Label* gc_required, 719 Register heap_number_map, Label* gc_required,
739 MutableMode mode = IMMUTABLE); 720 MutableMode mode = IMMUTABLE);
740 void AllocateHeapNumberWithValue(Register result, DoubleRegister value, 721 void AllocateHeapNumberWithValue(Register result, DoubleRegister value,
741 Register scratch1, Register scratch2, 722 Register scratch1, Register scratch2,
742 Register heap_number_map, 723 Register heap_number_map,
743 Label* gc_required); 724 Label* gc_required);
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1397 Register scratch1, 1378 Register scratch1,
1398 Register scratch2, 1379 Register scratch2,
1399 Label* not_flat_one_byte_strings); 1380 Label* not_flat_one_byte_strings);
1400 1381
1401 // Checks if both instance types are sequential one-byte strings and jumps to 1382 // Checks if both instance types are sequential one-byte strings and jumps to
1402 // label if either is not. 1383 // label if either is not.
1403 void JumpIfBothInstanceTypesAreNotSequentialOneByte( 1384 void JumpIfBothInstanceTypesAreNotSequentialOneByte(
1404 Register first_object_instance_type, Register second_object_instance_type, 1385 Register first_object_instance_type, Register second_object_instance_type,
1405 Register scratch1, Register scratch2, Label* failure); 1386 Register scratch1, Register scratch2, Label* failure);
1406 1387
1407 // Check if instance type is sequential one-byte string and jump to label if
1408 // it is not.
1409 void JumpIfInstanceTypeIsNotSequentialOneByte(Register type, Register scratch,
1410 Label* failure);
1411
1412 void JumpIfNotUniqueNameInstanceType(Register reg, Label* not_unique_name); 1388 void JumpIfNotUniqueNameInstanceType(Register reg, Label* not_unique_name);
1413 1389
1414 void EmitSeqStringSetCharCheck(Register string, Register index, 1390 void EmitSeqStringSetCharCheck(Register string, Register index,
1415 Register value, uint32_t encoding_mask); 1391 Register value, uint32_t encoding_mask);
1416 1392
1417 // --------------------------------------------------------------------------- 1393 // ---------------------------------------------------------------------------
1418 // Patching helpers. 1394 // Patching helpers.
1419 1395
1420 // Decode offset from constant pool load instruction(s). 1396 // Decode offset from constant pool load instruction(s).
1421 // Caller must place the instruction word at <location> in <result>. 1397 // Caller must place the instruction word at <location> in <result>.
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1602 inline MemOperand NativeContextMemOperand() { 1578 inline MemOperand NativeContextMemOperand() {
1603 return ContextMemOperand(cp, Context::NATIVE_CONTEXT_INDEX); 1579 return ContextMemOperand(cp, Context::NATIVE_CONTEXT_INDEX);
1604 } 1580 }
1605 1581
1606 #define ACCESS_MASM(masm) masm-> 1582 #define ACCESS_MASM(masm) masm->
1607 1583
1608 } // namespace internal 1584 } // namespace internal
1609 } // namespace v8 1585 } // namespace v8
1610 1586
1611 #endif // V8_PPC_MACRO_ASSEMBLER_PPC_H_ 1587 #endif // V8_PPC_MACRO_ASSEMBLER_PPC_H_
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