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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" // NOLINT | 5 #include "vm/globals.h" // NOLINT |
6 #if defined(TARGET_ARCH_X64) | 6 #if defined(TARGET_ARCH_X64) |
7 | 7 |
8 #include "vm/assembler.h" | 8 #include "vm/assembler.h" |
9 #include "vm/cpu.h" | 9 #include "vm/cpu.h" |
10 #include "vm/heap.h" | 10 #include "vm/heap.h" |
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3426 addq(instance_reg, Immediate(instance_size)); | 3426 addq(instance_reg, Immediate(instance_size)); |
3427 // instance_reg: potential next object start. | 3427 // instance_reg: potential next object start. |
3428 cmpq(instance_reg, Address(temp, Heap::EndOffset(space))); | 3428 cmpq(instance_reg, Address(temp, Heap::EndOffset(space))); |
3429 j(ABOVE_EQUAL, failure, near_jump); | 3429 j(ABOVE_EQUAL, failure, near_jump); |
3430 // Successfully allocated the object, now update top to point to | 3430 // Successfully allocated the object, now update top to point to |
3431 // next object start and store the class in the class field of object. | 3431 // next object start and store the class in the class field of object. |
3432 movq(Address(temp, Heap::TopOffset(space)), instance_reg); | 3432 movq(Address(temp, Heap::TopOffset(space)), instance_reg); |
3433 NOT_IN_PRODUCT(UpdateAllocationStats(cls.id(), space)); | 3433 NOT_IN_PRODUCT(UpdateAllocationStats(cls.id(), space)); |
3434 ASSERT(instance_size >= kHeapObjectTag); | 3434 ASSERT(instance_size >= kHeapObjectTag); |
3435 AddImmediate(instance_reg, Immediate(kHeapObjectTag - instance_size)); | 3435 AddImmediate(instance_reg, Immediate(kHeapObjectTag - instance_size)); |
3436 uint32_t tags = 0; | 3436 uword tags = 0; |
3437 tags = RawObject::SizeTag::update(instance_size, tags); | 3437 tags = RawObject::SizeTag::update(instance_size, tags); |
3438 ASSERT(cls.id() != kIllegalCid); | 3438 ASSERT(cls.id() != kIllegalCid); |
3439 tags = RawObject::ClassIdTag::update(cls.id(), tags); | 3439 tags = RawObject::ClassIdTag::update(cls.id(), tags); |
3440 // Extends the 32 bit tags with zeros, which is the uninitialized | |
3441 // hash code. | |
3442 MoveImmediate(FieldAddress(instance_reg, Object::tags_offset()), | 3440 MoveImmediate(FieldAddress(instance_reg, Object::tags_offset()), |
3443 Immediate(tags)); | 3441 Immediate(tags)); |
3444 } else { | 3442 } else { |
3445 jmp(failure); | 3443 jmp(failure); |
3446 } | 3444 } |
3447 } | 3445 } |
3448 | 3446 |
3449 | 3447 |
3450 void Assembler::TryAllocateArray(intptr_t cid, | 3448 void Assembler::TryAllocateArray(intptr_t cid, |
3451 intptr_t instance_size, | 3449 intptr_t instance_size, |
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3475 j(ABOVE_EQUAL, failure); | 3473 j(ABOVE_EQUAL, failure); |
3476 | 3474 |
3477 // Successfully allocated the object(s), now update top to point to | 3475 // Successfully allocated the object(s), now update top to point to |
3478 // next object start and initialize the object. | 3476 // next object start and initialize the object. |
3479 movq(Address(temp, Heap::TopOffset(space)), end_address); | 3477 movq(Address(temp, Heap::TopOffset(space)), end_address); |
3480 addq(instance, Immediate(kHeapObjectTag)); | 3478 addq(instance, Immediate(kHeapObjectTag)); |
3481 NOT_IN_PRODUCT(UpdateAllocationStatsWithSize(cid, instance_size, space)); | 3479 NOT_IN_PRODUCT(UpdateAllocationStatsWithSize(cid, instance_size, space)); |
3482 | 3480 |
3483 // Initialize the tags. | 3481 // Initialize the tags. |
3484 // instance: new object start as a tagged pointer. | 3482 // instance: new object start as a tagged pointer. |
3485 uint32_t tags = 0; | 3483 uword tags = 0; |
3486 tags = RawObject::ClassIdTag::update(cid, tags); | 3484 tags = RawObject::ClassIdTag::update(cid, tags); |
3487 tags = RawObject::SizeTag::update(instance_size, tags); | 3485 tags = RawObject::SizeTag::update(instance_size, tags); |
3488 // Extends the 32 bit tags with zeros, which is the uninitialized | |
3489 // hash code. | |
3490 movq(FieldAddress(instance, Array::tags_offset()), Immediate(tags)); | 3486 movq(FieldAddress(instance, Array::tags_offset()), Immediate(tags)); |
3491 } else { | 3487 } else { |
3492 jmp(failure); | 3488 jmp(failure); |
3493 } | 3489 } |
3494 } | 3490 } |
3495 | 3491 |
3496 void Assembler::Align(int alignment, intptr_t offset) { | 3492 void Assembler::Align(int alignment, intptr_t offset) { |
3497 ASSERT(Utils::IsPowerOfTwo(alignment)); | 3493 ASSERT(Utils::IsPowerOfTwo(alignment)); |
3498 intptr_t pos = offset + buffer_.GetPosition(); | 3494 intptr_t pos = offset + buffer_.GetPosition(); |
3499 int mod = pos & (alignment - 1); | 3495 int mod = pos & (alignment - 1); |
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3805 | 3801 |
3806 | 3802 |
3807 const char* Assembler::FpuRegisterName(FpuRegister reg) { | 3803 const char* Assembler::FpuRegisterName(FpuRegister reg) { |
3808 ASSERT((0 <= reg) && (reg < kNumberOfXmmRegisters)); | 3804 ASSERT((0 <= reg) && (reg < kNumberOfXmmRegisters)); |
3809 return xmm_reg_names[reg]; | 3805 return xmm_reg_names[reg]; |
3810 } | 3806 } |
3811 | 3807 |
3812 } // namespace dart | 3808 } // namespace dart |
3813 | 3809 |
3814 #endif // defined TARGET_ARCH_X64 | 3810 #endif // defined TARGET_ARCH_X64 |
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