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-rw-r--r--axiom/include/axiom_element.h8
-rw-r--r--axiom/src/om/om_element.c85
-rw-r--r--axiom/src/om/om_namespace.c3
3 files changed, 41 insertions, 55 deletions
diff --git a/axiom/include/axiom_element.h b/axiom/include/axiom_element.h
index fd6a1d8..1e10167 100644
--- a/axiom/include/axiom_element.h
+++ b/axiom/include/axiom_element.h
@@ -449,15 +449,15 @@ extern "C"
axiom_node_t * element_node);
/**
- * Select all the text children and concat them to a single string. The string
+ * Select all the text children and concatenate them to a single string. The string
* returned by this method call will be free by axiom when this method is called again.
- * So it is recomended to have a copy of the return value if this method is going to
+ * So it is recommended to have a copy of the return value if this method is going to
* be called more that once and the return values of the earlier calls are important.
* @param om_element pointer to om_element
* @param env environment MUST not be NULL
* @param element node , the container node of this om element
- * @return the contanated text of all text childrens text values
- * return null if no text children is avilable or on error
+ * @return the concatenated text of all text children text values
+ * return null if no text children is available or on error
*/
AXIS2_EXTERN axis2_char_t *AXIS2_CALL
axiom_element_get_text(
diff --git a/axiom/src/om/om_element.c b/axiom/src/om/om_element.c
index 69e5104..d334ab8 100644
--- a/axiom/src/om/om_element.c
+++ b/axiom/src/om/om_element.c
@@ -39,22 +39,39 @@ struct axiom_element
/** List of namespaces */
axutil_hash_t *namespaces;
- axutil_qname_t *qname;
-
- axiom_child_element_iterator_t *child_ele_iter;
-
- axiom_children_iterator_t *children_iter;
-
- axiom_children_qname_iterator_t *children_qname_iter;
-
- axis2_char_t *text_value;
-
- int next_ns_prefix_number;
-
+ /* denotes whether current element is an empty element. i.e. <element/>
+ * Used only when writing the output */
axis2_bool_t is_empty;
+ /* Following members are kept as a result of some operations. Reason for keeping them is,
+ * (1) we can free them without memory leak
+ * (2) Improve the performance, so that we don't need to re-do the calculation again
+ */
+ axutil_qname_t *qname; /* result of axiom_element_get_qname */
+ axiom_child_element_iterator_t *child_ele_iter; /* result of axiom_element_get_child_elements*/
+ axiom_children_iterator_t *children_iter; /* result of axiom_element_get_children */
+ axiom_children_qname_iterator_t *children_qname_iter; /*axiom_element_get_children_with_qname */
+ axis2_char_t *text_value; /* result of axiom_element_get_text */
+
};
+/**
+ * Creates an AXIOM element with given local name
+ * @param env Environment. MUST NOT be NULL.
+ * @param parent parent of the element node to be created. can be NULL.
+ * @param localname local name of the elment. cannot be NULL.
+ * @param ns namespace of the element. can be NULL.
+ * If the value of the namespace has not already been declared
+ * then the namespace structure ns will be declared and will be
+ * freed when the tree is freed.
+ * If the value of the namespace has already been declared using
+ * another namespace structure then the namespace structure ns
+ * will be freed.
+ * @param node This is an out parameter. cannot be NULL.
+ * Returns the node corresponding to the comment created.
+ * Node type will be set to AXIOM_ELEMENT
+ * @return a pointer to the newly created element struct
+ */
AXIS2_EXTERN axiom_element_t *AXIS2_CALL
axiom_element_create(
const axutil_env_t * env,
@@ -64,7 +81,6 @@ axiom_element_create(
axiom_node_t ** node)
{
axiom_element_t *element;
- AXIS2_ENV_CHECK(env, NULL);
if(!localname || !node)
{
@@ -77,29 +93,19 @@ axiom_element_create(
if(!(*node))
{
AXIS2_ERROR_SET(env->error, AXIS2_ERROR_NO_MEMORY, AXIS2_FAILURE);
- AXIS2_LOG_ERROR(env->log, AXIS2_LOG_SI, "No Memory");
+ AXIS2_LOG_ERROR(env->log, AXIS2_LOG_SI, "Unable to create axiom node needed by element");
return NULL;
}
- element = (axiom_element_t *)AXIS2_MALLOC(env->allocator, sizeof(axiom_element_t));
+ element = (axiom_element_t *)AXIS2_MALLOC(env->allocator, sizeof(axiom_element_t));
if(!element)
{
AXIS2_FREE(env->allocator, (*node));
AXIS2_ERROR_SET(env->error, AXIS2_ERROR_NO_MEMORY, AXIS2_FAILURE);
- AXIS2_LOG_ERROR(env->log, AXIS2_LOG_SI, "No Memory");
+ AXIS2_LOG_ERROR(env->log, AXIS2_LOG_SI, "Insufficient memory to create axiom element");
return NULL;
}
- element->ns = NULL;
- element->localname = NULL;
- element->attributes = NULL;
- element->namespaces = NULL;
- element->qname = NULL;
- element->child_ele_iter = NULL;
- element->children_iter = NULL;
- element->children_qname_iter = NULL;
- element->text_value = NULL;
- element->next_ns_prefix_number = 0;
- element->is_empty = AXIS2_FALSE;
+ memset(element, 0, sizeof(axiom_element_t));
element->localname = axutil_string_create(env, localname);
if(!element->localname)
@@ -107,13 +113,14 @@ axiom_element_create(
AXIS2_FREE(env->allocator, element);
AXIS2_FREE(env->allocator, (*node));
AXIS2_ERROR_SET(env->error, AXIS2_ERROR_NO_MEMORY, AXIS2_FAILURE);
+ AXIS2_LOG_ERROR(env->log, AXIS2_LOG_SI, "Unable to create string to store local name");
return NULL;
}
+
if(parent)
{
axiom_node_add_child(parent, env, (*node));
}
- axiom_node_set_complete((*node), env, AXIS2_FALSE);
axiom_node_set_node_type((*node), env, AXIOM_ELEMENT);
axiom_node_set_data_element((*node), env, element);
@@ -125,13 +132,6 @@ axiom_element_create(
uri = axiom_namespace_get_uri(ns, env);
prefix = axiom_namespace_get_prefix(ns, env);
- /*
- if (prefix && axutil_strcmp(prefix, "") == 0)
- {
- element->ns = NULL;
- return element;
- }
- */
element->ns = axiom_element_find_namespace(element, env, *node, uri, prefix);
if(element->ns)
@@ -142,20 +142,13 @@ axiom_element_create(
ns = NULL;
}
}
-
- if(!(element->ns))
+ else
{
if(axiom_element_declare_namespace(element, env, *node, ns) == AXIS2_SUCCESS)
{
element->ns = ns;
}
}
-
- /*if (prefix && axutil_strcmp(prefix, "") == 0)
- {
- element->ns = NULL;
- }
- */
}
return element;
@@ -397,7 +390,6 @@ axiom_element_declare_namespace_assume_param_ownership(
axis2_char_t *key = NULL;
key = AXIS2_MALLOC(env->allocator, sizeof(char) * 10);
memset(key, 0, sizeof(char) * 10);
- om_element->next_ns_prefix_number++;
key[0] = '\0';
axutil_hash_set(om_element->namespaces, key, AXIS2_HASH_KEY_STRING, ns);
}
@@ -455,7 +447,6 @@ axiom_element_declare_namespace(
axis2_char_t *key = NULL;
key = AXIS2_MALLOC(env->allocator, sizeof(char) * 10);
memset(key, 0, sizeof(char) * 10);
- om_element->next_ns_prefix_number++;
key[0] = '\0';
axutil_hash_set(om_element->namespaces, key, AXIS2_HASH_KEY_STRING, ns);
}
@@ -1179,7 +1170,6 @@ axiom_element_set_text(
{
axiom_node_t *temp_node, *next_node;
axiom_text_t *om_text = NULL;
- AXIS2_ENV_CHECK(env, AXIS2_FAILURE);
AXIS2_PARAM_CHECK(env->error, text, AXIS2_FAILURE);
AXIS2_PARAM_CHECK(env->error, element_node, AXIS2_FAILURE);
@@ -1194,8 +1184,7 @@ axiom_element_set_text(
}
}
- om_text = axiom_text_create(env, NULL, text, &temp_node);
- axiom_node_add_child(element_node, env, temp_node);
+ om_text = axiom_text_create(env, element_node, text, &temp_node);
return AXIS2_SUCCESS;
}
diff --git a/axiom/src/om/om_namespace.c b/axiom/src/om/om_namespace.c
index 24d80a4..e5a361e 100644
--- a/axiom/src/om/om_namespace.c
+++ b/axiom/src/om/om_namespace.c
@@ -41,7 +41,6 @@ axiom_namespace_create(
{
axiom_namespace_t *om_namespace = NULL;
- AXIS2_ENV_CHECK(env, NULL);
if(!uri)
{
uri = "";
@@ -110,8 +109,6 @@ axiom_namespace_free(
}
AXIS2_FREE(env->allocator, om_namespace);
-
- return;
}
AXIS2_EXTERN axis2_bool_t AXIS2_CALL