Minor style fixes.

This commit is contained in:
Ruben Ayrapetyan
2014-07-31 17:05:51 +04:00
parent 9610680e3c
commit a084273286
2 changed files with 7 additions and 9 deletions
+1 -1
View File
@@ -242,7 +242,7 @@ typedef struct ecma_property_t {
/** Description of internal property */ /** Description of internal property */
struct __packed ecma_internal_property_t { struct __packed ecma_internal_property_t {
/** Internal property's type */ /** Internal property's type */
unsigned int internal_property_type : 4; unsigned int type : 4;
/** Value (may be a compressed pointer) */ /** Value (may be a compressed pointer) */
uint32_t value; uint32_t value;
+6 -8
View File
@@ -88,8 +88,6 @@ ecma_create_object( ecma_object_t *prototype_object_p, /**< pointer to prototybe
object_p->is_lexical_environment = false; object_p->is_lexical_environment = false;
object_p->GCInfo.is_object_valid = true; object_p->GCInfo.is_object_valid = true;
/* The global object is always referenced
* (at least with the ctx_GlobalObject variable) */
object_p->GCInfo.u.refs = 1; object_p->GCInfo.u.refs = 1;
object_p->u.object.extensible = is_extensible; object_p->u.object.extensible = is_extensible;
@@ -133,8 +131,8 @@ ecma_create_decl_lex_env(ecma_object_t *outer_lexical_environment_p) /**< outer
} /* ecma_create_decl_lex_env */ } /* ecma_create_decl_lex_env */
/** /**
* Create a declarative lexical environment with specified outer lexical environment * Create a object lexical environment with specified outer lexical environment
* (or NULL if the environment is not nested). * (or NULL if the environment is not nested), binding object and provideThis flag.
* *
* See also: ECMA-262 v5, 10.2.1.2 * See also: ECMA-262 v5, 10.2.1.2
* *
@@ -193,7 +191,7 @@ ecma_create_internal_property(ecma_object_t *object_p, /**< the object */
ecma_set_pointer( new_property_p->next_property_p, ecma_get_pointer( object_p->properties_p)); ecma_set_pointer( new_property_p->next_property_p, ecma_get_pointer( object_p->properties_p));
ecma_set_pointer( object_p->properties_p, new_property_p); ecma_set_pointer( object_p->properties_p, new_property_p);
new_property_p->u.internal_property.internal_property_type = property_id; new_property_p->u.internal_property.type = property_id;
new_property_p->u.internal_property.value = ECMA_NULL_POINTER; new_property_p->u.internal_property.value = ECMA_NULL_POINTER;
return new_property_p; return new_property_p;
@@ -212,7 +210,7 @@ ecma_find_internal_property(ecma_object_t *object_p, /**< object descriptor */
JERRY_ASSERT( object_p != NULL ); JERRY_ASSERT( object_p != NULL );
JERRY_ASSERT( property_id != ECMA_INTERNAL_PROPERTY_PROTOTYPE JERRY_ASSERT( property_id != ECMA_INTERNAL_PROPERTY_PROTOTYPE
&& property_id != ECMA_INTERNAL_PROPERTY_EXTENSIBLE ); && property_id != ECMA_INTERNAL_PROPERTY_EXTENSIBLE );
for ( ecma_property_t *property_p = ecma_get_pointer( object_p->properties_p); for ( ecma_property_t *property_p = ecma_get_pointer( object_p->properties_p);
property_p != NULL; property_p != NULL;
@@ -220,7 +218,7 @@ ecma_find_internal_property(ecma_object_t *object_p, /**< object descriptor */
{ {
if ( property_p->type == ECMA_PROPERTY_INTERNAL ) if ( property_p->type == ECMA_PROPERTY_INTERNAL )
{ {
if ( property_p->u.internal_property.internal_property_type == property_id ) if ( property_p->u.internal_property.type == property_id )
{ {
return property_p; return property_p;
} }
@@ -450,7 +448,7 @@ ecma_free_internal_property( ecma_property_t *property_p) /**< the property */
{ {
JERRY_ASSERT( property_p->type == ECMA_PROPERTY_INTERNAL ); JERRY_ASSERT( property_p->type == ECMA_PROPERTY_INTERNAL );
ecma_internal_property_id_t property_id = property_p->u.internal_property.internal_property_type; ecma_internal_property_id_t property_id = property_p->u.internal_property.type;
uint32_t property_value = property_p->u.internal_property.value; uint32_t property_value = property_p->u.internal_property.value;
switch ( property_id ) switch ( property_id )