expr->CalculateEmitStore(zone());
AccessorTable accessor_table(zone());
- for (int i = 0; i < expr->properties()->length(); i++) {
- ObjectLiteral::Property* property = expr->properties()->at(i);
+ int property_index = 0;
+ for (; property_index < expr->properties()->length(); property_index++) {
+ ObjectLiteral::Property* property = expr->properties()->at(property_index);
+ if (property->is_computed_name()) break;
if (property->IsCompileTimeValue()) continue;
- Literal* key = property->key();
+ Literal* key = property->key()->AsLiteral();
Expression* value = property->value();
if (!result_saved) {
__ push(eax); // Save result on the stack
__ CallRuntime(Runtime::kDefineAccessorPropertyUnchecked, 5);
}
+ // Object literals have two parts. The "static" part on the left contains no
+ // computed property names, and so we can compute its map ahead of time; see
+ // runtime.cc::CreateObjectLiteralBoilerplate. The second "dynamic" part
+ // starts with the first computed property name, and continues with all
+ // properties to its right. All the code from above initializes the static
+ // component of the object literal, and arranges for the map of the result to
+ // reflect the static order in which the keys appear. For the dynamic
+ // properties, we compile them into a series of "SetOwnProperty" runtime
+ // calls. This will preserve insertion order.
+ for (; property_index < expr->properties()->length(); property_index++) {
+ ObjectLiteral::Property* property = expr->properties()->at(property_index);
+
+ Expression* value = property->value();
+ if (!result_saved) {
+ __ push(eax); // Save result on the stack
+ result_saved = true;
+ }
+
+ __ push(Operand(esp, 0)); // Duplicate receiver.
+
+ if (property->kind() == ObjectLiteral::Property::PROTOTYPE) {
+ DCHECK(!property->is_computed_name());
+ VisitForStackValue(value);
+ if (property->emit_store()) {
+ __ CallRuntime(Runtime::kInternalSetPrototype, 2);
+ } else {
+ __ Drop(2);
+ }
+ } else {
+ EmitPropertyKey(property);
+ VisitForStackValue(value);
+
+ switch (property->kind()) {
+ case ObjectLiteral::Property::CONSTANT:
+ case ObjectLiteral::Property::MATERIALIZED_LITERAL:
+ case ObjectLiteral::Property::COMPUTED:
+ if (property->emit_store()) {
+ __ push(Immediate(Smi::FromInt(NONE)));
+ __ CallRuntime(Runtime::kDefineDataPropertyUnchecked, 4);
+ } else {
+ __ Drop(3);
+ }
+ break;
+
+ case ObjectLiteral::Property::PROTOTYPE:
+ UNREACHABLE();
+ break;
+
+ case ObjectLiteral::Property::GETTER:
+ __ CallRuntime(Runtime::kDefineGetterPropertyUnchecked, 3);
+ break;
+
+ case ObjectLiteral::Property::SETTER:
+ __ CallRuntime(Runtime::kDefineSetterPropertyUnchecked, 3);
+ break;
+ }
+ }
+ }
+
if (expr->has_function()) {
DCHECK(result_saved);
__ push(Operand(esp, 0));
for (int i = 0; i < lit->properties()->length(); i++) {
ObjectLiteral::Property* property = lit->properties()->at(i);
- Literal* key = property->key()->AsLiteral();
Expression* value = property->value();
- DCHECK(key != NULL);
if (property->is_static()) {
__ push(Operand(esp, kPointerSize)); // constructor
} else {
__ push(Operand(esp, 0)); // prototype
}
- VisitForStackValue(key);
+ EmitPropertyKey(property);
VisitForStackValue(value);
EmitSetHomeObjectIfNeeded(value, 2);
break;
case ObjectLiteral::Property::GETTER:
- __ CallRuntime(Runtime::kDefineClassGetter, 3);
+ __ CallRuntime(Runtime::kDefineGetterPropertyUnchecked, 3);
break;
case ObjectLiteral::Property::SETTER:
- __ CallRuntime(Runtime::kDefineClassSetter, 3);
+ __ CallRuntime(Runtime::kDefineSetterPropertyUnchecked, 3);
break;
default: