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Splitting ecma_create_lexical_environment to ecma_create_decl_lex_env and ecma_create_object_lex_env.
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@ -48,8 +48,7 @@ run_int (void)
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const opcode_counter_t start_pos = 0;
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ecma_value_t this_binding_value = ecma_make_simple_value( ECMA_SIMPLE_VALUE_UNDEFINED);
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ecma_object_t *lex_env_p = ecma_create_lexical_environment (NULL,
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ECMA_LEXICAL_ENVIRONMENT_DECLARATIVE);
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ecma_object_t *lex_env_p = ecma_create_decl_lex_env (NULL);
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FIXME( Strict mode );
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const bool is_strict = false;
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@ -100,25 +100,22 @@ ecma_create_object( ecma_object_t *prototype_object_p, /**< pointer to prototybe
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} /* ecma_create_object */
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/**
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* Create a lexical environment with specified outer lexical environment
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* Create a declarative lexical environment with specified outer lexical environment
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* (or NULL if the environment is not nested).
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*
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* Reference counter's value will be set to one.
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* See also: ECMA-262 v5, 10.2.1.1
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*
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* Warning: after object-bound lexical environment is created,
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* caller must create internal properties, that
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* specify the bound object and value of 'provideThis'.
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* Reference counter's value will be set to one.
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*
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* @return pointer to the descriptor of lexical environment
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*/
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ecma_object_t*
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ecma_create_lexical_environment(ecma_object_t *outer_lexical_environment_p, /**< outer lexical environment */
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ecma_lexical_environment_type_t type) /**< type of lexical environment to create */
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ecma_create_decl_lex_env(ecma_object_t *outer_lexical_environment_p) /**< outer lexical environment */
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{
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ecma_object_t *new_lexical_environment_p = ecma_alloc_object();
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new_lexical_environment_p->is_lexical_environment = true;
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new_lexical_environment_p->u.lexical_environment.type = type;
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new_lexical_environment_p->u.lexical_environment.type = ECMA_LEXICAL_ENVIRONMENT_DECLARATIVE;
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new_lexical_environment_p->properties_p = ECMA_NULL_POINTER;
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@ -133,11 +130,54 @@ ecma_create_lexical_environment(ecma_object_t *outer_lexical_environment_p, /**<
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ecma_set_pointer( new_lexical_environment_p->u.lexical_environment.outer_reference_p, outer_lexical_environment_p);
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return new_lexical_environment_p;
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} /* ecma_create_lexical_environment */
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} /* ecma_create_decl_lex_env */
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/**
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* Create internal property in an object and link it
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* into the object's properties' linked-list
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* Create a declarative lexical environment with specified outer lexical environment
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* (or NULL if the environment is not nested).
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*
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* See also: ECMA-262 v5, 10.2.1.2
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*
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* Reference counter's value will be set to one.
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*
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* @return pointer to the descriptor of lexical environment
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*/
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ecma_object_t*
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ecma_create_object_lex_env(ecma_object_t *outer_lexical_environment_p, /**< outer lexical environment */
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ecma_object_t *binding_obj_p, /**< binding object */
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bool provide_this) /**< provideThis flag */
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{
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JERRY_ASSERT( binding_obj_p != NULL );
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ecma_object_t *new_lexical_environment_p = ecma_alloc_object();
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new_lexical_environment_p->is_lexical_environment = true;
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new_lexical_environment_p->u.lexical_environment.type = ECMA_LEXICAL_ENVIRONMENT_OBJECTBOUND;
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new_lexical_environment_p->properties_p = ECMA_NULL_POINTER;
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new_lexical_environment_p->GCInfo.is_object_valid = true;
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new_lexical_environment_p->GCInfo.u.refs = 1;
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if ( outer_lexical_environment_p != NULL )
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{
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ecma_ref_object( outer_lexical_environment_p);
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}
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ecma_set_pointer( new_lexical_environment_p->u.lexical_environment.outer_reference_p, outer_lexical_environment_p);
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ecma_property_t *provide_this_prop_p = ecma_create_internal_property( new_lexical_environment_p, ECMA_INTERNAL_PROPERTY_PROVIDE_THIS);
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provide_this_prop_p->u.internal_property.value = provide_this;
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ecma_property_t *binding_object_prop_p = ecma_create_internal_property( new_lexical_environment_p, ECMA_INTERNAL_PROPERTY_BINDING_OBJECT);
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ecma_set_pointer( binding_object_prop_p->u.internal_property.value, binding_obj_p);
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return new_lexical_environment_p;
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} /* ecma_create_object_lex_env */
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/**
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* Create internal property in an object and link it into
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* the object's properties' linked-list (at start of the list).
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*
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* @return pointer to newly created property
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*/
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@ -431,7 +471,7 @@ ecma_free_internal_property( ecma_property_t *property_p) /**< the property */
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case ECMA_INTERNAL_PROPERTY_PROTOTYPE: /* the property's value is located in ecma_object_t */
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case ECMA_INTERNAL_PROPERTY_EXTENSIBLE: /* the property's value is located in ecma_object_t */
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case ECMA_INTERNAL_PROPERTY_PROVIDE_THIS: /* a boolean flag */
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case ECMA_INTERNAL_PROPERTY_PROVIDE_THIS: /* a boolean */
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case ECMA_INTERNAL_PROPERTY_CLASS: /* an enum */
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case ECMA_INTERNAL_PROPERTY_CODE: /* an integer */
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{
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@ -71,7 +71,8 @@ extern bool ecma_is_empty_completion_value( ecma_completion_value_t value);
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/* ecma-helpers.c */
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extern ecma_object_t* ecma_create_object( ecma_object_t *prototype_object_p, bool is_extensible, ecma_object_type_t type);
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extern ecma_object_t* ecma_create_lexical_environment( ecma_object_t *outer_lexical_environment_p, ecma_lexical_environment_type_t type);
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extern ecma_object_t* ecma_create_decl_lex_env( ecma_object_t *outer_lexical_environment_p);
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extern ecma_object_t* ecma_create_object_lex_env( ecma_object_t *outer_lexical_environment_p, ecma_object_t *binding_obj_p, bool provide_this);
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extern ecma_property_t* ecma_create_internal_property(ecma_object_t *object_p, ecma_internal_property_id_t property_id);
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extern ecma_property_t* ecma_find_internal_property(ecma_object_t *object_p, ecma_internal_property_id_t property_id);
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@ -279,7 +279,7 @@ ecma_op_function_call( ecma_object_t *func_obj_p, /**< Function object */
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}
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// 5.
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ecma_object_t *local_env_p = ecma_create_lexical_environment( scope_p, ECMA_LEXICAL_ENVIRONMENT_DECLARATIVE);
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ecma_object_t *local_env_p = ecma_create_decl_lex_env( scope_p);
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// 9.
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/* Declaration binding instantiation (ECMA-262 v5, 10.5), block 4 */
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