Index: src/code-stub-assembler.cc |
diff --git a/src/code-stub-assembler.cc b/src/code-stub-assembler.cc |
index bf4ace8c88e44c30998398fe622a03c0d82e6792..469b980204bb401abe2fda84dec05b725bcdd1d6 100644 |
--- a/src/code-stub-assembler.cc |
+++ b/src/code-stub-assembler.cc |
@@ -333,6 +333,10 @@ Node* CodeStubAssembler::LoadMapDescriptors(Node* map) { |
return LoadObjectField(map, Map::kDescriptorsOffset); |
} |
+Node* CodeStubAssembler::LoadMapPrototype(Node* map) { |
+ return LoadObjectField(map, Map::kPrototypeOffset); |
+} |
+ |
Node* CodeStubAssembler::LoadNameHash(Node* name) { |
return Load(MachineType::Uint32(), name, |
IntPtrConstant(Name::kHashFieldOffset - kHeapObjectTag)); |
@@ -975,5 +979,145 @@ Node* CodeStubAssembler::BitFieldDecode(Node* word32, uint32_t shift, |
Int32Constant(shift)); |
} |
+void CodeStubAssembler::TryToName(Node* key, Label* if_keyisindex, |
+ Variable* var_index, Label* if_keyisunique, |
+ Label* call_runtime) { |
+ DCHECK_EQ(MachineRepresentation::kWord32, var_index->rep()); |
+ |
+ Label if_keyissmi(this), if_keyisnotsmi(this); |
+ Branch(WordIsSmi(key), &if_keyissmi, &if_keyisnotsmi); |
+ Bind(&if_keyissmi); |
+ { |
+ // Negative smi keys are named properties. Handle in the runtime. |
+ Label if_keyispositive(this); |
+ Branch(WordIsPositiveSmi(key), &if_keyispositive, call_runtime); |
+ Bind(&if_keyispositive); |
+ |
+ var_index->Bind(SmiUntag(key)); |
Toon Verwaest
2016/04/20 10:00:04
This should be SmiToWord32 according to Rodolph Pe
Igor Sheludko
2016/04/20 13:14:56
Done.
|
+ Goto(if_keyisindex); |
+ } |
+ |
+ Bind(&if_keyisnotsmi); |
+ |
+ Node* key_instance_type = LoadInstanceType(key); |
+ Label if_iskeyunique(this), if_iskeynotsymbol(this); |
Toon Verwaest
2016/04/20 10:00:04
if_iskeyunique is not used anymore
Igor Sheludko
2016/04/20 13:14:56
Done.
|
+ Branch(Word32Equal(key_instance_type, Int32Constant(SYMBOL_TYPE)), |
+ if_keyisunique, &if_iskeynotsymbol); |
+ Bind(&if_iskeynotsymbol); |
+ { |
+ Label if_iskeyinternalized(this); |
+ Node* bits = |
+ WordAnd(key_instance_type, |
+ Int32Constant(kIsNotStringMask | kIsNotInternalizedMask)); |
+ Branch(Word32Equal(bits, Int32Constant(kStringTag | kInternalizedTag)), |
+ &if_iskeyinternalized, call_runtime); |
+ Bind(&if_iskeyinternalized); |
+ |
+ // Check whether the key is an array index passed in as string. Handle |
+ // uniform with smi keys if so. |
+ // TODO(verwaest): Also support non-internalized strings. |
+ Node* hash = LoadNameHash(key); |
+ Node* bit = |
+ Word32And(hash, Int32Constant(internal::Name::kIsNotArrayIndexMask)); |
+ Label if_isarrayindex(this); |
+ Branch(Word32Equal(bit, Int32Constant(0)), &if_isarrayindex, |
+ if_keyisunique); |
+ Bind(&if_isarrayindex); |
+ var_index->Bind(BitFieldDecode<internal::Name::ArrayIndexValueBits>(hash)); |
+ Goto(if_keyisindex); |
+ } |
+} |
+ |
+void CodeStubAssembler::TryLookupProperty(Node* object, Node* map, |
+ Node* instance_type, Node* name, |
+ Label* if_found, Label* if_not_found, |
+ Label* call_runtime) { |
+ { |
+ Label if_objectissimple(this); |
+ Branch(Int32LessThanOrEqual(instance_type, |
+ Int32Constant(LAST_SPECIAL_RECEIVER_TYPE)), |
+ call_runtime, &if_objectissimple); |
+ Bind(&if_objectissimple); |
+ } |
+ |
+ // TODO(verwaest): Perform a dictonary lookup on slow-mode receivers. |
+ Node* bit_field3 = LoadMapBitField3(map); |
+ Node* bit = BitFieldDecode<Map::DictionaryMap>(bit_field3); |
+ Label if_isfastmap(this); |
+ Branch(Word32Equal(bit, Int32Constant(0)), &if_isfastmap, call_runtime); |
+ Bind(&if_isfastmap); |
+ Node* nof = BitFieldDecode<Map::NumberOfOwnDescriptorsBits>(bit_field3); |
+ // Bail out to the runtime for large numbers of own descriptors. The stub only |
+ // does linear search, which becomes too expensive in that case. |
+ { |
+ static const int32_t kMaxLinear = 210; |
+ Label above_max(this), below_max(this); |
+ Branch(Int32LessThanOrEqual(nof, Int32Constant(kMaxLinear)), &below_max, |
+ call_runtime); |
+ Bind(&below_max); |
+ } |
+ Node* descriptors = LoadMapDescriptors(map); |
+ |
+ Variable var_descriptor(this, MachineRepresentation::kWord32); |
+ Label loop(this, &var_descriptor); |
+ var_descriptor.Bind(Int32Constant(0)); |
+ Goto(&loop); |
+ Bind(&loop); |
+ { |
+ Node* index = var_descriptor.value(); |
+ Node* offset = Int32Constant(DescriptorArray::ToKeyIndex(0)); |
+ Node* factor = Int32Constant(DescriptorArray::kDescriptorSize); |
+ Label if_notdone(this); |
+ Branch(Word32Equal(index, nof), if_not_found, &if_notdone); |
+ Bind(&if_notdone); |
+ { |
+ Node* array_index = Int32Add(offset, Int32Mul(index, factor)); |
+ Node* current = LoadFixedArrayElementInt32Index(descriptors, array_index); |
+ Label if_unequal(this); |
+ Branch(WordEqual(current, name), if_found, &if_unequal); |
+ Bind(&if_unequal); |
+ |
+ var_descriptor.Bind(Int32Add(index, Int32Constant(1))); |
+ Goto(&loop); |
+ } |
+ } |
+} |
+ |
+void CodeStubAssembler::TryLookupElement(Node* object, Node* map, |
+ Node* instance_type, Node* index, |
+ Label* if_found, Label* if_not_found, |
+ Label* call_runtime) { |
+ { |
+ Label if_objectissimple(this); |
+ Branch(Int32LessThanOrEqual(instance_type, |
+ Int32Constant(LAST_CUSTOM_ELEMENTS_RECEIVER)), |
+ call_runtime, &if_objectissimple); |
+ Bind(&if_objectissimple); |
+ } |
+ |
+ Node* bit_field2 = LoadMapBitField2(map); |
+ Node* elements_kind = BitFieldDecode<Map::ElementsKindBits>(bit_field2); |
+ |
+ // TODO(verwaest): Support other elements kinds as well. |
+ Label if_isobjectorsmi(this); |
+ Branch( |
+ Int32LessThanOrEqual(elements_kind, Int32Constant(FAST_HOLEY_ELEMENTS)), |
+ &if_isobjectorsmi, call_runtime); |
+ Bind(&if_isobjectorsmi); |
+ { |
+ Node* elements = LoadElements(object); |
+ Node* length = LoadFixedArrayBaseLength(elements); |
+ |
+ Label if_iskeyinrange(this); |
+ Branch(Int32LessThan(index, SmiToWord32(length)), &if_iskeyinrange, |
+ if_not_found); |
+ |
+ Bind(&if_iskeyinrange); |
+ Node* element = LoadFixedArrayElementInt32Index(elements, index); |
+ Node* the_hole = LoadRoot(Heap::kTheHoleValueRootIndex); |
+ Branch(WordEqual(element, the_hole), if_not_found, if_found); |
+ } |
+} |
+ |
} // namespace internal |
} // namespace v8 |