| Index: src/hydrogen-instructions.cc
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| diff --git a/src/hydrogen-instructions.cc b/src/hydrogen-instructions.cc
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| index 7c419dc8144fe0ea3bb89dad4e4f809fa7ecaba1..90cf017baa3aedc9b748c7798ca964d1e6e1f67b 100644
|
| --- a/src/hydrogen-instructions.cc
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| +++ b/src/hydrogen-instructions.cc
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| @@ -2383,6 +2383,24 @@ HConstant::HConstant(Handle<Object> handle,
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| }
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|
|
|
|
| +HConstant::HConstant(Handle<Map> handle,
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| + UniqueValueId unique_id)
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| + : HTemplateInstruction<0>(HType::Tagged()),
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| + handle_(handle),
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| + unique_id_(unique_id),
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| + has_smi_value_(false),
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| + has_int32_value_(false),
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| + has_double_value_(false),
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| + has_external_reference_value_(false),
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| + is_internalized_string_(false),
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| + is_not_in_new_space_(true),
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| + is_cell_(false),
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| + boolean_value_(false) {
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| + ASSERT(!handle.is_null());
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| + Initialize(Representation::Tagged());
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| +}
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| +
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| +
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| HConstant::HConstant(int32_t integer_value,
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| Representation r,
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| bool is_not_in_new_space,
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| @@ -3197,6 +3215,7 @@ Representation HUnaryMathOperation::RepresentationFromInputs() {
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| void HAllocate::HandleSideEffectDominator(GVNFlag side_effect,
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| HValue* dominator) {
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| ASSERT(side_effect == kChangesNewSpacePromotion);
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| + Zone* zone = block()->zone();
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| if (!FLAG_use_allocation_folding) return;
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|
|
| // Try to fold allocations together with their dominating allocations.
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| @@ -3208,22 +3227,34 @@ void HAllocate::HandleSideEffectDominator(GVNFlag side_effect,
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| return;
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| }
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|
|
| - HAllocate* dominator_allocate_instr = HAllocate::cast(dominator);
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| - HValue* dominator_size = dominator_allocate_instr->size();
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| + HAllocate* dominator_allocate = HAllocate::cast(dominator);
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| + HValue* dominator_size = dominator_allocate->size();
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| HValue* current_size = size();
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| - // We can just fold allocations that are guaranteed in new space.
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| +
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| // TODO(hpayer): Add support for non-constant allocation in dominator.
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| - if (!IsNewSpaceAllocation() || !current_size->IsInteger32Constant() ||
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| - !dominator_allocate_instr->IsNewSpaceAllocation() ||
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| + if (!current_size->IsInteger32Constant() ||
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| !dominator_size->IsInteger32Constant()) {
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| if (FLAG_trace_allocation_folding) {
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| - PrintF("#%d (%s) cannot fold into #%d (%s)\n",
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| + PrintF("#%d (%s) cannot fold into #%d (%s), dynamic allocation size\n",
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| id(), Mnemonic(), dominator->id(), dominator->Mnemonic());
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| }
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| return;
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| }
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|
|
| + dominator_allocate = GetFoldableDominator(dominator_allocate);
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| + if (dominator_allocate == NULL) {
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| + return;
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| + }
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| +
|
| + ASSERT((IsNewSpaceAllocation() &&
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| + dominator_allocate->IsNewSpaceAllocation()) ||
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| + (IsOldDataSpaceAllocation() &&
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| + dominator_allocate->IsOldDataSpaceAllocation()) ||
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| + (IsOldPointerSpaceAllocation() &&
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| + dominator_allocate->IsOldPointerSpaceAllocation()));
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| +
|
| // First update the size of the dominator allocate instruction.
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| + dominator_size = dominator_allocate->size();
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| int32_t dominator_size_constant =
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| HConstant::cast(dominator_size)->GetInteger32Constant();
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| int32_t current_size_constant =
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| @@ -3231,8 +3262,8 @@ void HAllocate::HandleSideEffectDominator(GVNFlag side_effect,
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| int32_t new_dominator_size = dominator_size_constant + current_size_constant;
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|
|
| if (MustAllocateDoubleAligned()) {
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| - if (!dominator_allocate_instr->MustAllocateDoubleAligned()) {
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| - dominator_allocate_instr->MakeDoubleAligned();
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| + if (!dominator_allocate->MustAllocateDoubleAligned()) {
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| + dominator_allocate->MakeDoubleAligned();
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| }
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| if ((dominator_size_constant & kDoubleAlignmentMask) != 0) {
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| dominator_size_constant += kDoubleSize / 2;
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| @@ -3243,21 +3274,23 @@ void HAllocate::HandleSideEffectDominator(GVNFlag side_effect,
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| if (new_dominator_size > Page::kMaxNonCodeHeapObjectSize) {
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| if (FLAG_trace_allocation_folding) {
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| PrintF("#%d (%s) cannot fold into #%d (%s) due to size: %d\n",
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| - id(), Mnemonic(), dominator->id(), dominator->Mnemonic(),
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| - new_dominator_size);
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| + id(), Mnemonic(), dominator_allocate->id(),
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| + dominator_allocate->Mnemonic(), new_dominator_size);
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| }
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| return;
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| }
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| - HBasicBlock* block = dominator->block();
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| - Zone* zone = block->zone();
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| - HInstruction* new_dominator_size_constant =
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| - HConstant::New(zone, context(), new_dominator_size);
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| - new_dominator_size_constant->InsertBefore(dominator_allocate_instr);
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| - dominator_allocate_instr->UpdateSize(new_dominator_size_constant);
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| +
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| + HInstruction* new_dominator_size_constant = HConstant::CreateAndInsertBefore(
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| + zone,
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| + context(),
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| + new_dominator_size,
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| + Representation::None(),
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| + dominator_allocate);
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| + dominator_allocate->UpdateSize(new_dominator_size_constant);
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|
|
| #ifdef VERIFY_HEAP
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| - if (FLAG_verify_heap) {
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| - dominator_allocate_instr->MakePrefillWithFiller();
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| + if (FLAG_verify_heap && dominator_allocate->IsNewSpaceAllocation()) {
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| + dominator_allocate->MakePrefillWithFiller();
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| }
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| #endif
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|
|
| @@ -3265,15 +3298,134 @@ void HAllocate::HandleSideEffectDominator(GVNFlag side_effect,
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| HInstruction* dominated_allocate_instr =
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| HInnerAllocatedObject::New(zone,
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| context(),
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| - dominator_allocate_instr,
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| + dominator_allocate,
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| dominator_size_constant,
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| type());
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| dominated_allocate_instr->InsertBefore(this);
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| DeleteAndReplaceWith(dominated_allocate_instr);
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| if (FLAG_trace_allocation_folding) {
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| PrintF("#%d (%s) folded into #%d (%s)\n",
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| - id(), Mnemonic(), dominator->id(), dominator->Mnemonic());
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| + id(), Mnemonic(), dominator_allocate->id(),
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| + dominator_allocate->Mnemonic());
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| + }
|
| +}
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| +
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| +
|
| +HAllocate* HAllocate::GetFoldableDominator(HAllocate* dominator) {
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| + if (!IsFoldable(dominator)) {
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| + // We cannot hoist old space allocations over new space allocations.
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| + if (IsNewSpaceAllocation() || dominator->IsNewSpaceAllocation()) {
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| + if (FLAG_trace_allocation_folding) {
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| + PrintF("#%d (%s) cannot fold into #%d (%s), new space hoisting\n",
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| + id(), Mnemonic(), dominator->id(), dominator->Mnemonic());
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| + }
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| + return NULL;
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| + }
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| +
|
| + HAllocate* dominator_dominator = dominator->dominating_allocate_;
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| +
|
| + // We can hoist old data space allocations over an old pointer space
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| + // allocation and vice versa. For that we have to check the dominator
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| + // of the dominator allocate instruction.
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| + if (dominator_dominator == NULL) {
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| + dominating_allocate_ = dominator;
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| + if (FLAG_trace_allocation_folding) {
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| + PrintF("#%d (%s) cannot fold into #%d (%s), different spaces\n",
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| + id(), Mnemonic(), dominator->id(), dominator->Mnemonic());
|
| + }
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| + return NULL;
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| + }
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| +
|
| + // We can just fold old space allocations that are in the same basic block,
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| + // since it is not guaranteed that we fill up the whole allocated old
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| + // space memory.
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| + // TODO(hpayer): Remove this limitation and add filler maps for each each
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| + // allocation as soon as we have store elimination.
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| + if (block()->block_id() != dominator_dominator->block()->block_id()) {
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| + if (FLAG_trace_allocation_folding) {
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| + PrintF("#%d (%s) cannot fold into #%d (%s), different basic blocks\n",
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| + id(), Mnemonic(), dominator_dominator->id(),
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| + dominator_dominator->Mnemonic());
|
| + }
|
| + return NULL;
|
| + }
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| +
|
| + ASSERT((IsOldDataSpaceAllocation() &&
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| + dominator_dominator->IsOldDataSpaceAllocation()) ||
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| + (IsOldPointerSpaceAllocation() &&
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| + dominator_dominator->IsOldPointerSpaceAllocation()));
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| +
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| + int32_t current_size = HConstant::cast(size())->GetInteger32Constant();
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| + HStoreNamedField* dominator_free_space_size =
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| + dominator->filler_free_space_size_;
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| + if (dominator_free_space_size != NULL) {
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| + // We already hoisted one old space allocation, i.e., we already installed
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| + // a filler map. Hence, we just have to update the free space size.
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| + dominator->UpdateFreeSpaceFiller(current_size);
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| + } else {
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| + // This is the first old space allocation that gets hoisted. We have to
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| + // install a filler map since the follwing allocation may cause a GC.
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| + dominator->CreateFreeSpaceFiller(current_size);
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| + }
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| +
|
| + // We can hoist the old space allocation over the actual dominator.
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| + return dominator_dominator;
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| }
|
| + return dominator;
|
| +}
|
| +
|
| +
|
| +void HAllocate::UpdateFreeSpaceFiller(int32_t free_space_size) {
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| + ASSERT(filler_free_space_size_ != NULL);
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| + Zone* zone = block()->zone();
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| + // We must explicitly force Smi representation here because on x64 we
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| + // would otherwise automatically choose int32, but the actual store
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| + // requires a Smi-tagged value.
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| + HConstant* new_free_space_size = HConstant::CreateAndInsertBefore(
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| + zone,
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| + context(),
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| + filler_free_space_size_->value()->GetInteger32Constant() +
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| + free_space_size,
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| + Representation::Smi(),
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| + filler_free_space_size_);
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| + filler_free_space_size_->UpdateValue(new_free_space_size);
|
| +}
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| +
|
| +
|
| +void HAllocate::CreateFreeSpaceFiller(int32_t free_space_size) {
|
| + ASSERT(filler_free_space_size_ == NULL);
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| + Zone* zone = block()->zone();
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| + int32_t dominator_size =
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| + HConstant::cast(dominating_allocate_->size())->GetInteger32Constant();
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| + HInstruction* free_space_instr =
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| + HInnerAllocatedObject::New(zone, context(), dominating_allocate_,
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| + dominator_size, type());
|
| + free_space_instr->InsertBefore(this);
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| + HConstant* filler_map = HConstant::New(
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| + zone,
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| + context(),
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| + isolate()->factory()->free_space_map(),
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| + UniqueValueId(isolate()->heap()->free_space_map()));
|
| + filler_map->InsertAfter(free_space_instr);
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| + HInstruction* store_map = HStoreNamedField::New(zone, context(),
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| + free_space_instr, HObjectAccess::ForMap(), filler_map);
|
| + store_map->SetFlag(HValue::kHasNoObservableSideEffects);
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| + store_map->InsertAfter(filler_map);
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| +
|
| + // We must explicitly force Smi representation here because on x64 we
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| + // would otherwise automatically choose int32, but the actual store
|
| + // requires a Smi-tagged value.
|
| + HConstant* filler_size = HConstant::CreateAndInsertAfter(
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| + zone, context(), free_space_size, Representation::Smi(), store_map);
|
| + // Must force Smi representation for x64 (see comment above).
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| + HObjectAccess access =
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| + HObjectAccess::ForJSObjectOffset(FreeSpace::kSizeOffset,
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| + Representation::Smi());
|
| + HStoreNamedField* store_size = HStoreNamedField::New(zone, context(),
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| + free_space_instr, access, filler_size);
|
| + store_size->SetFlag(HValue::kHasNoObservableSideEffects);
|
| + store_size->InsertAfter(filler_size);
|
| + filler_free_space_size_ = store_size;
|
| }
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|
|
|
|
|
|