5 * Copyright (C) 2007-2010 Intel Corporation. All rights reserved.
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
35 static DBusConnection *connection;
37 static GNode *element_root = NULL;
38 static GSList *driver_list = NULL;
39 static gchar *device_filter = NULL;
40 static gchar *nodevice_filter = NULL;
42 static gboolean started = FALSE;
44 static const char *type2string(enum connman_element_type type)
47 case CONNMAN_ELEMENT_TYPE_UNKNOWN:
49 case CONNMAN_ELEMENT_TYPE_ROOT:
51 case CONNMAN_ELEMENT_TYPE_PROFILE:
53 case CONNMAN_ELEMENT_TYPE_DEVICE:
55 case CONNMAN_ELEMENT_TYPE_NETWORK:
57 case CONNMAN_ELEMENT_TYPE_SERVICE:
59 case CONNMAN_ELEMENT_TYPE_IPV4:
61 case CONNMAN_ELEMENT_TYPE_IPV6:
63 case CONNMAN_ELEMENT_TYPE_DHCP:
65 case CONNMAN_ELEMENT_TYPE_BOOTP:
67 case CONNMAN_ELEMENT_TYPE_ZEROCONF:
69 case CONNMAN_ELEMENT_TYPE_CONNECTION:
71 case CONNMAN_ELEMENT_TYPE_VENDOR:
79 enum connman_element_type type;
80 element_cb_t callback;
84 static gboolean foreach_callback(GNode *node, gpointer user_data)
86 struct connman_element *element = node->data;
87 struct foreach_data *data = user_data;
89 DBG("element %p name %s", element, element->name);
91 if (element->type == CONNMAN_ELEMENT_TYPE_ROOT)
94 if (data->type != CONNMAN_ELEMENT_TYPE_UNKNOWN &&
95 data->type != element->type)
99 data->callback(element, data->user_data);
104 void __connman_element_foreach(struct connman_element *element,
105 enum connman_element_type type,
106 element_cb_t callback, gpointer user_data)
108 struct foreach_data data = { type, callback, user_data };
113 if (element != NULL) {
114 node = g_node_find(element_root, G_PRE_ORDER,
115 G_TRAVERSE_ALL, element);
121 g_node_traverse(node, G_PRE_ORDER, G_TRAVERSE_ALL, -1,
122 foreach_callback, &data);
125 struct append_filter {
126 enum connman_element_type type;
127 DBusMessageIter *iter;
130 static gboolean append_path(GNode *node, gpointer user_data)
132 struct connman_element *element = node->data;
133 struct append_filter *filter = user_data;
135 DBG("element %p name %s", element, element->name);
137 if (element->type == CONNMAN_ELEMENT_TYPE_ROOT)
140 if (filter->type != CONNMAN_ELEMENT_TYPE_UNKNOWN &&
141 filter->type != element->type)
144 if (filter->type == CONNMAN_ELEMENT_TYPE_DEVICE &&
145 __connman_device_has_driver(element->device) == FALSE)
148 if (filter->type == CONNMAN_ELEMENT_TYPE_NETWORK &&
149 __connman_network_has_driver(element->network) == FALSE)
152 dbus_message_iter_append_basic(filter->iter,
153 DBUS_TYPE_OBJECT_PATH, &element->path);
158 void __connman_element_list(struct connman_element *element,
159 enum connman_element_type type,
160 DBusMessageIter *iter)
162 struct append_filter filter = { type, iter };
167 if (element != NULL) {
168 node = g_node_find(element_root, G_PRE_ORDER,
169 G_TRAVERSE_ALL, element);
175 g_node_traverse(node, G_PRE_ORDER, G_TRAVERSE_ALL, -1,
176 append_path, &filter);
180 enum connman_element_type type;
184 static gboolean count_element(GNode *node, gpointer user_data)
186 struct connman_element *element = node->data;
187 struct count_data *data = user_data;
189 DBG("element %p name %s", element, element->name);
191 if (element->type == CONNMAN_ELEMENT_TYPE_ROOT)
194 if (data->type != CONNMAN_ELEMENT_TYPE_UNKNOWN &&
195 data->type != element->type)
203 int __connman_element_count(struct connman_element *element,
204 enum connman_element_type type)
206 struct count_data data = { type, 0 };
211 if (element != NULL) {
212 node = g_node_find(element_root, G_PRE_ORDER,
213 G_TRAVERSE_ALL, element);
219 g_node_traverse(node, G_PRE_ORDER, G_TRAVERSE_ALL, -1,
220 count_element, &data);
225 static struct connman_network *__connman_element_get_network(struct connman_element *element)
227 if (element->type == CONNMAN_ELEMENT_TYPE_NETWORK &&
228 element->network != NULL)
229 return element->network;
231 if (element->parent == NULL)
234 return __connman_element_get_network(element->parent);
237 struct connman_service *__connman_element_get_service(struct connman_element *element)
239 struct connman_service *service = NULL;
240 struct connman_network *network;
241 struct connman_device *device;
242 enum connman_device_type type;
244 device = __connman_element_get_device(element);
248 type = connman_device_get_type(device);
251 case CONNMAN_DEVICE_TYPE_UNKNOWN:
252 case CONNMAN_DEVICE_TYPE_VENDOR:
253 case CONNMAN_DEVICE_TYPE_GPS:
255 case CONNMAN_DEVICE_TYPE_ETHERNET:
256 case CONNMAN_DEVICE_TYPE_WIFI:
257 case CONNMAN_DEVICE_TYPE_WIMAX:
258 case CONNMAN_DEVICE_TYPE_BLUETOOTH:
259 case CONNMAN_DEVICE_TYPE_CELLULAR:
260 case CONNMAN_DEVICE_TYPE_MBM:
261 case CONNMAN_DEVICE_TYPE_HSO:
262 network = __connman_element_get_network(element);
265 service = __connman_service_lookup_from_network(network);
272 struct connman_device *__connman_element_get_device(struct connman_element *element)
274 if (element->type == CONNMAN_ELEMENT_TYPE_DEVICE &&
275 element->device != NULL)
276 return element->device;
278 if (element->parent == NULL)
281 return __connman_element_get_device(element->parent);
284 const char *__connman_element_get_device_path(struct connman_element *element)
286 struct connman_device *device;
288 device = __connman_element_get_device(element);
292 return connman_device_get_path(device);
295 const char *__connman_element_get_network_path(struct connman_element *element)
297 if (element->type == CONNMAN_ELEMENT_TYPE_NETWORK &&
298 element->network != NULL)
299 return element->path;
301 if (element->parent == NULL)
304 return __connman_element_get_network_path(element->parent);
308 enum connman_service_type type;
309 struct connman_device *device;
312 static gboolean find_device(GNode *node, gpointer user_data)
314 struct connman_element *element = node->data;
315 struct find_data *data = user_data;
317 if (element->type != CONNMAN_ELEMENT_TYPE_DEVICE)
320 if (element->device == NULL)
323 if (data->type != connman_device_get_type(element->device))
326 data->device = element->device;
331 struct connman_device *__connman_element_find_device(enum connman_service_type type)
333 struct find_data data = { .type = type, .device = NULL };
335 g_node_traverse(element_root, G_PRE_ORDER,
336 G_TRAVERSE_ALL, -1, find_device, &data);
341 static gboolean request_scan(GNode *node, gpointer user_data)
343 struct connman_element *element = node->data;
344 struct find_data *data = user_data;
345 enum connman_service_type type;
347 if (element->type != CONNMAN_ELEMENT_TYPE_DEVICE)
350 if (element->device == NULL)
353 type = __connman_device_get_service_type(element->device);
356 case CONNMAN_SERVICE_TYPE_UNKNOWN:
357 case CONNMAN_SERVICE_TYPE_SYSTEM:
358 case CONNMAN_SERVICE_TYPE_ETHERNET:
359 case CONNMAN_SERVICE_TYPE_BLUETOOTH:
360 case CONNMAN_SERVICE_TYPE_CELLULAR:
361 case CONNMAN_SERVICE_TYPE_VPN:
363 case CONNMAN_SERVICE_TYPE_WIFI:
364 case CONNMAN_SERVICE_TYPE_WIMAX:
365 if (data->type != CONNMAN_SERVICE_TYPE_UNKNOWN &&
371 __connman_device_scan(element->device);
376 int __connman_element_request_scan(enum connman_service_type type)
378 struct find_data data = { .type = type, .device = NULL };
380 g_node_traverse(element_root, G_PRE_ORDER,
381 G_TRAVERSE_ALL, -1, request_scan, &data);
386 static gboolean enable_technology(GNode *node, gpointer user_data)
388 struct connman_element *element = node->data;
389 struct find_data *data = user_data;
390 enum connman_service_type type;
392 if (element->type != CONNMAN_ELEMENT_TYPE_DEVICE)
395 if (element->device == NULL)
398 type = __connman_device_get_service_type(element->device);
401 case CONNMAN_SERVICE_TYPE_UNKNOWN:
402 case CONNMAN_SERVICE_TYPE_SYSTEM:
403 case CONNMAN_SERVICE_TYPE_VPN:
405 case CONNMAN_SERVICE_TYPE_ETHERNET:
406 case CONNMAN_SERVICE_TYPE_WIFI:
407 case CONNMAN_SERVICE_TYPE_WIMAX:
408 case CONNMAN_SERVICE_TYPE_BLUETOOTH:
409 case CONNMAN_SERVICE_TYPE_CELLULAR:
410 if (data->type != CONNMAN_SERVICE_TYPE_UNKNOWN &&
416 __connman_device_enable_persistent(element->device);
421 int __connman_element_enable_technology(enum connman_service_type type)
423 struct find_data data = { .type = type, .device = NULL };
425 g_node_traverse(element_root, G_PRE_ORDER,
426 G_TRAVERSE_ALL, -1, enable_technology, &data);
431 static gboolean disable_technology(GNode *node, gpointer user_data)
433 struct connman_element *element = node->data;
434 struct find_data *data = user_data;
435 enum connman_service_type type;
437 if (element->type != CONNMAN_ELEMENT_TYPE_DEVICE)
440 if (element->device == NULL)
443 type = __connman_device_get_service_type(element->device);
446 case CONNMAN_SERVICE_TYPE_UNKNOWN:
447 case CONNMAN_SERVICE_TYPE_SYSTEM:
448 case CONNMAN_SERVICE_TYPE_VPN:
450 case CONNMAN_SERVICE_TYPE_ETHERNET:
451 case CONNMAN_SERVICE_TYPE_WIFI:
452 case CONNMAN_SERVICE_TYPE_WIMAX:
453 case CONNMAN_SERVICE_TYPE_BLUETOOTH:
454 case CONNMAN_SERVICE_TYPE_CELLULAR:
455 if (data->type != CONNMAN_SERVICE_TYPE_UNKNOWN &&
461 __connman_device_disable_persistent(element->device);
466 int __connman_element_disable_technology(enum connman_service_type type)
468 struct find_data data = { .type = type, .device = NULL };
470 g_node_traverse(element_root, G_PRE_ORDER,
471 G_TRAVERSE_ALL, -1, disable_technology, &data);
476 static gint compare_priority(gconstpointer a, gconstpointer b)
478 const struct connman_driver *driver1 = a;
479 const struct connman_driver *driver2 = b;
481 return driver2->priority - driver1->priority;
484 static gboolean match_driver(struct connman_element *element,
485 struct connman_driver *driver)
487 if (element->type == CONNMAN_ELEMENT_TYPE_ROOT)
490 if (element->type == driver->type ||
491 driver->type == CONNMAN_ELEMENT_TYPE_UNKNOWN)
497 static gboolean probe_driver(GNode *node, gpointer data)
499 struct connman_element *element = node->data;
500 struct connman_driver *driver = data;
502 DBG("element %p name %s", element, element->name);
504 if (!element->driver && match_driver(element, driver) == TRUE) {
505 if (driver->probe(element) < 0)
508 __connman_element_lock(element);
509 element->driver = driver;
510 __connman_element_unlock(element);
516 void __connman_driver_rescan(struct connman_driver *driver)
518 DBG("driver %p name %s", driver, driver->name);
523 if (element_root != NULL)
524 g_node_traverse(element_root, G_PRE_ORDER,
525 G_TRAVERSE_ALL, -1, probe_driver, driver);
529 * connman_driver_register:
530 * @driver: driver definition
532 * Register a new driver
534 * Returns: %0 on success
536 int connman_driver_register(struct connman_driver *driver)
538 DBG("driver %p name %s", driver, driver->name);
540 if (driver->type == CONNMAN_ELEMENT_TYPE_ROOT)
546 driver_list = g_slist_insert_sorted(driver_list, driver,
549 if (started == FALSE)
552 if (element_root != NULL)
553 g_node_traverse(element_root, G_PRE_ORDER,
554 G_TRAVERSE_ALL, -1, probe_driver, driver);
559 static gboolean remove_driver(GNode *node, gpointer data)
561 struct connman_element *element = node->data;
562 struct connman_driver *driver = data;
564 DBG("element %p name %s", element, element->name);
566 if (element->driver == driver) {
568 driver->remove(element);
570 __connman_element_lock(element);
571 element->driver = NULL;
572 __connman_element_unlock(element);
579 * connman_driver_unregister:
580 * @driver: driver definition
582 * Remove a previously registered driver
584 void connman_driver_unregister(struct connman_driver *driver)
586 DBG("driver %p name %s", driver, driver->name);
588 driver_list = g_slist_remove(driver_list, driver);
590 if (element_root != NULL)
591 g_node_traverse(element_root, G_POST_ORDER,
592 G_TRAVERSE_ALL, -1, remove_driver, driver);
595 static void unregister_property(gpointer data)
597 struct connman_property *property = data;
599 DBG("property %p", property);
601 g_free(property->value);
605 void __connman_element_initialize(struct connman_element *element)
607 DBG("element %p", element);
609 element->refcount = 1;
611 element->name = NULL;
612 element->type = CONNMAN_ELEMENT_TYPE_UNKNOWN;
613 element->state = CONNMAN_ELEMENT_STATE_UNKNOWN;
614 element->error = CONNMAN_ELEMENT_ERROR_UNKNOWN;
616 element->enabled = FALSE;
618 element->configuring = FALSE;
620 element->properties = g_hash_table_new_full(g_str_hash, g_str_equal,
621 g_free, unregister_property);
625 * connman_element_create:
626 * @name: element name
628 * Allocate a new element and assign the given #name to it. If the name
629 * is #NULL, it will be later on created based on the element type.
631 * Returns: a newly-allocated #connman_element structure
633 struct connman_element *connman_element_create(const char *name)
635 struct connman_element *element;
637 element = g_try_new0(struct connman_element, 1);
641 DBG("element %p", element);
643 __connman_element_initialize(element);
648 struct connman_element *connman_element_ref(struct connman_element *element)
650 DBG("element %p name %s refcount %d", element, element->name,
651 g_atomic_int_get(&element->refcount) + 1);
653 g_atomic_int_inc(&element->refcount);
658 static void free_properties(struct connman_element *element)
660 DBG("element %p name %s", element, element->name);
662 __connman_element_lock(element);
664 g_hash_table_destroy(element->properties);
665 element->properties = NULL;
667 __connman_element_unlock(element);
670 void connman_element_unref(struct connman_element *element)
672 DBG("element %p name %s refcount %d", element, element->name,
673 g_atomic_int_get(&element->refcount) - 1);
675 if (g_atomic_int_dec_and_test(&element->refcount) == TRUE) {
676 if (element->destruct)
677 element->destruct(element);
678 free_properties(element);
679 g_free(element->ipv4.address);
680 g_free(element->ipv4.netmask);
681 g_free(element->ipv4.gateway);
682 g_free(element->ipv4.network);
683 g_free(element->ipv4.broadcast);
684 g_free(element->ipv4.nameserver);
685 g_free(element->ipv4.timeserver);
686 g_free(element->devname);
687 g_free(element->path);
688 g_free(element->name);
693 static int set_static_property(struct connman_element *element,
694 const char *name, int type, const void *value)
696 struct connman_property *property;
698 DBG("element %p name %s", element, element->name);
700 if (type != DBUS_TYPE_STRING && type != DBUS_TYPE_BYTE)
703 property = g_try_new0(struct connman_property, 1);
704 if (property == NULL)
707 property->id = CONNMAN_PROPERTY_ID_INVALID;
708 property->type = type;
710 DBG("name %s type %d value %p", name, type, value);
713 case DBUS_TYPE_STRING:
714 property->value = g_strdup(*((const char **) value));
716 case DBUS_TYPE_BOOLEAN:
718 property->value = g_try_malloc(1);
719 if (property->value != NULL)
720 memcpy(property->value, value, 1);
724 __connman_element_lock(element);
726 g_hash_table_replace(element->properties, g_strdup(name), property);
728 __connman_element_unlock(element);
733 static int set_static_array_property(struct connman_element *element,
734 const char *name, int type, const void *value, int len)
736 struct connman_property *property;
738 DBG("element %p name %s", element, element->name);
740 if (type != DBUS_TYPE_BYTE)
743 property = g_try_new0(struct connman_property, 1);
744 if (property == NULL)
747 property->id = CONNMAN_PROPERTY_ID_INVALID;
748 property->type = DBUS_TYPE_ARRAY;
749 property->subtype = type;
751 DBG("name %s type %d value %p", name, type, value);
755 property->value = g_try_malloc(len);
756 if (property->value != NULL) {
757 memcpy(property->value,
758 *((const unsigned char **) value), len);
759 property->size = len;
764 __connman_element_lock(element);
766 g_hash_table_replace(element->properties, g_strdup(name), property);
768 __connman_element_unlock(element);
774 static int set_property(struct connman_element *element,
775 enum connman_property_id id, const void *value)
778 case CONNMAN_PROPERTY_ID_IPV4_ADDRESS:
779 __connman_element_lock(element);
780 g_free(element->ipv4.address);
781 element->ipv4.address = g_strdup(*((const char **) value));
782 __connman_element_unlock(element);
784 case CONNMAN_PROPERTY_ID_IPV4_NETMASK:
785 __connman_element_lock(element);
786 g_free(element->ipv4.netmask);
787 element->ipv4.netmask = g_strdup(*((const char **) value));
788 __connman_element_unlock(element);
790 case CONNMAN_PROPERTY_ID_IPV4_GATEWAY:
791 __connman_element_lock(element);
792 g_free(element->ipv4.gateway);
793 element->ipv4.gateway = g_strdup(*((const char **) value));
794 __connman_element_unlock(element);
796 case CONNMAN_PROPERTY_ID_IPV4_BROADCAST:
797 __connman_element_lock(element);
798 g_free(element->ipv4.broadcast);
799 element->ipv4.broadcast = g_strdup(*((const char **) value));
800 __connman_element_unlock(element);
802 case CONNMAN_PROPERTY_ID_IPV4_NAMESERVER:
803 __connman_element_lock(element);
804 g_free(element->ipv4.nameserver);
805 element->ipv4.nameserver = g_strdup(*((const char **) value));
806 __connman_element_unlock(element);
816 int connman_element_get_value(struct connman_element *element,
817 enum connman_property_id id, void *value)
819 if (element->type == CONNMAN_ELEMENT_TYPE_ROOT)
823 case CONNMAN_PROPERTY_ID_IPV4_METHOD:
824 if (element->ipv4.method == CONNMAN_IPCONFIG_METHOD_UNKNOWN)
825 return connman_element_get_value(element->parent,
827 __connman_element_lock(element);
828 *((const char **) value) = __connman_ipconfig_method2string(element->ipv4.method);
829 __connman_element_unlock(element);
831 case CONNMAN_PROPERTY_ID_IPV4_ADDRESS:
832 if (element->ipv4.address == NULL)
833 return connman_element_get_value(element->parent,
835 __connman_element_lock(element);
836 *((char **) value) = element->ipv4.address;
837 __connman_element_unlock(element);
839 case CONNMAN_PROPERTY_ID_IPV4_NETMASK:
840 if (element->ipv4.netmask == NULL)
841 return connman_element_get_value(element->parent,
843 __connman_element_lock(element);
844 *((char **) value) = element->ipv4.netmask;
845 __connman_element_unlock(element);
847 case CONNMAN_PROPERTY_ID_IPV4_GATEWAY:
848 if (element->ipv4.gateway == NULL)
849 return connman_element_get_value(element->parent,
851 __connman_element_lock(element);
852 *((char **) value) = element->ipv4.gateway;
853 __connman_element_unlock(element);
855 case CONNMAN_PROPERTY_ID_IPV4_BROADCAST:
856 if (element->ipv4.broadcast == NULL)
857 return connman_element_get_value(element->parent,
859 __connman_element_lock(element);
860 *((char **) value) = element->ipv4.broadcast;
861 __connman_element_unlock(element);
863 case CONNMAN_PROPERTY_ID_IPV4_NAMESERVER:
864 if (element->ipv4.nameserver == NULL)
865 return connman_element_get_value(element->parent,
867 __connman_element_lock(element);
868 *((char **) value) = element->ipv4.nameserver;
869 __connman_element_unlock(element);
871 case CONNMAN_PROPERTY_ID_IPV4_TIMESERVER:
872 if (element->ipv4.timeserver == NULL)
873 return connman_element_get_value(element->parent,
875 __connman_element_lock(element);
876 *((char **) value) = element->ipv4.timeserver;
877 __connman_element_unlock(element);
886 static gboolean get_static_property(struct connman_element *element,
887 const char *name, void *value)
889 struct connman_property *property;
890 gboolean found = FALSE;
892 DBG("element %p name %s", element, element->name);
894 __connman_element_lock(element);
896 property = g_hash_table_lookup(element->properties, name);
897 if (property != NULL) {
898 switch (property->type) {
899 case DBUS_TYPE_STRING:
900 *((char **) value) = property->value;
903 case DBUS_TYPE_BOOLEAN:
905 memcpy(value, property->value, 1);
911 __connman_element_unlock(element);
913 if (found == FALSE && element->parent != NULL)
914 return get_static_property(element->parent, name, value);
919 static gboolean get_static_array_property(struct connman_element *element,
920 const char *name, void *value, unsigned int *len)
922 struct connman_property *property;
923 gboolean found = FALSE;
925 DBG("element %p name %s", element, element->name);
927 __connman_element_lock(element);
929 property = g_hash_table_lookup(element->properties, name);
930 if (property != NULL) {
931 *((void **) value) = property->value;
932 *len = property->size;
936 __connman_element_unlock(element);
942 static gboolean match_static_property(struct connman_element *element,
943 const char *name, const void *value)
945 struct connman_property *property;
946 gboolean result = FALSE;
948 DBG("element %p name %s", element, element->name);
950 __connman_element_lock(element);
952 property = g_hash_table_lookup(element->properties, name);
953 if (property != NULL) {
954 if (property->type == DBUS_TYPE_STRING)
955 result = g_str_equal(property->value,
956 *((const char **) value));
959 __connman_element_unlock(element);
966 * connman_element_set_string:
967 * @element: element structure
968 * @key: unique identifier
969 * @value: string value
971 * Set string value for specific key
973 int connman_element_set_string(struct connman_element *element,
974 const char *key, const char *value)
976 return set_static_property(element, key, DBUS_TYPE_STRING, &value);
980 * connman_element_get_string:
981 * @element: element structure
982 * @key: unique identifier
984 * Get string value for specific key
986 const char *connman_element_get_string(struct connman_element *element,
991 if (get_static_property(element, key, &value) == FALSE)
998 * connman_element_set_bool:
999 * @element: element structure
1000 * @key: unique identifier
1001 * @value: boolean value
1003 * Set boolean value for specific key
1005 int connman_element_set_bool(struct connman_element *element,
1006 const char *key, connman_bool_t value)
1008 return set_static_property(element, key, DBUS_TYPE_BOOLEAN, &value);
1012 * connman_element_get_bool:
1013 * @element: element structure
1014 * @key: unique identifier
1016 * Get boolean value for specific key
1018 connman_bool_t connman_element_get_bool(struct connman_element *element,
1021 connman_bool_t value;
1023 if (get_static_property(element, key, &value) == FALSE)
1030 * connman_element_set_uint8:
1031 * @element: element structure
1032 * @key: unique identifier
1033 * @value: integer value
1035 * Set integer value for specific key
1037 int connman_element_set_uint8(struct connman_element *element,
1038 const char *key, connman_uint8_t value)
1040 return set_static_property(element, key, DBUS_TYPE_BYTE, &value);
1044 * connman_element_get_uint8:
1045 * @element: element structure
1046 * @key: unique identifier
1048 * Get integer value for specific key
1050 connman_uint8_t connman_element_get_uint8(struct connman_element *element,
1053 connman_uint8_t value;
1055 if (get_static_property(element, key, &value) == FALSE)
1062 * connman_element_set_blob:
1063 * @element: element structure
1064 * @key: unique identifier
1068 * Set binary blob value for specific key
1070 int connman_element_set_blob(struct connman_element *element,
1071 const char *key, const void *data, unsigned int size)
1073 return set_static_array_property(element, key,
1074 DBUS_TYPE_BYTE, &data, size);
1078 * connman_element_get_blob:
1079 * @element: element structure
1080 * @key: unique identifier
1081 * @size: pointer to blob size
1083 * Get binary blob value for specific key
1085 const void *connman_element_get_blob(struct connman_element *element,
1086 const char *key, unsigned int *size)
1090 if (get_static_array_property(element, key, &value, size) == FALSE)
1096 int __connman_element_append_ipv4(struct connman_element *element,
1097 DBusMessageIter *dict)
1099 const char *method = NULL;
1100 const char *address = NULL, *netmask = NULL, *gateway = NULL;
1101 const char *broadcast = NULL, *nameserver = NULL;
1102 const char *timeserver = NULL;
1104 connman_element_get_value(element,
1105 CONNMAN_PROPERTY_ID_IPV4_METHOD, &method);
1107 connman_element_get_value(element,
1108 CONNMAN_PROPERTY_ID_IPV4_ADDRESS, &address);
1109 connman_element_get_value(element,
1110 CONNMAN_PROPERTY_ID_IPV4_NETMASK, &netmask);
1111 connman_element_get_value(element,
1112 CONNMAN_PROPERTY_ID_IPV4_GATEWAY, &gateway);
1113 connman_element_get_value(element,
1114 CONNMAN_PROPERTY_ID_IPV4_BROADCAST, &broadcast);
1115 connman_element_get_value(element,
1116 CONNMAN_PROPERTY_ID_IPV4_NAMESERVER, &nameserver);
1117 connman_element_get_value(element,
1118 CONNMAN_PROPERTY_ID_IPV4_TIMESERVER, ×erver);
1121 connman_dbus_dict_append_basic(dict, "IPv4.Method",
1122 DBUS_TYPE_STRING, &method);
1124 if (address != NULL)
1125 connman_dbus_dict_append_basic(dict, "IPv4.Address",
1126 DBUS_TYPE_STRING, &address);
1128 if (netmask != NULL)
1129 connman_dbus_dict_append_basic(dict, "IPv4.Netmask",
1130 DBUS_TYPE_STRING, &netmask);
1132 if (gateway != NULL)
1133 connman_dbus_dict_append_basic(dict, "IPv4.Gateway",
1134 DBUS_TYPE_STRING, &gateway);
1136 if (broadcast != NULL)
1137 connman_dbus_dict_append_basic(dict, "IPv4.Broadcast",
1138 DBUS_TYPE_STRING, &broadcast);
1140 if (nameserver != NULL)
1141 connman_dbus_dict_append_basic(dict, "IPv4.Nameserver",
1142 DBUS_TYPE_STRING, &nameserver);
1144 if (timeserver != NULL)
1145 connman_dbus_dict_append_basic(dict, "IPv4.Timeserver",
1146 DBUS_TYPE_STRING, ×erver);
1151 int __connman_element_set_ipv4(struct connman_element *element,
1152 const char *name, DBusMessageIter *value)
1156 type = dbus_message_iter_get_arg_type(value);
1158 if (g_str_equal(name, "IPv4.Method") == TRUE) {
1159 enum connman_ipconfig_method method;
1162 if (type != DBUS_TYPE_STRING)
1165 dbus_message_iter_get_basic(value, &str);
1166 method = __connman_ipconfig_string2method(str);
1167 if (method == CONNMAN_IPCONFIG_METHOD_UNKNOWN)
1170 if (method == element->ipv4.method)
1173 element->ipv4.method = method;
1175 connman_element_update(element);
1176 } else if (g_str_equal(name, "IPv4.Address") == TRUE) {
1177 const char *address;
1179 if (type != DBUS_TYPE_STRING)
1182 dbus_message_iter_get_basic(value, &address);
1184 g_free(element->ipv4.address);
1185 element->ipv4.address = g_strdup(address);
1187 connman_element_update(element);
1188 } else if (g_str_equal(name, "IPv4.Netmask") == TRUE) {
1189 const char *netmask;
1191 if (type != DBUS_TYPE_STRING)
1194 dbus_message_iter_get_basic(value, &netmask);
1196 g_free(element->ipv4.netmask);
1197 element->ipv4.netmask = g_strdup(netmask);
1199 connman_element_update(element);
1200 } else if (g_str_equal(name, "IPv4.Gateway") == TRUE) {
1201 const char *gateway;
1203 if (type != DBUS_TYPE_STRING)
1206 dbus_message_iter_get_basic(value, &gateway);
1208 g_free(element->ipv4.gateway);
1209 element->ipv4.gateway = g_strdup(gateway);
1211 connman_element_update(element);
1212 } else if (g_str_equal(name, "IPv4.Broadcast") == TRUE) {
1213 const char *broadcast;
1215 if (type != DBUS_TYPE_STRING)
1218 dbus_message_iter_get_basic(value, &broadcast);
1220 g_free(element->ipv4.broadcast);
1221 element->ipv4.broadcast = g_strdup(broadcast);
1223 connman_element_update(element);
1224 } else if (g_str_equal(name, "IPv4.Nameserver") == TRUE) {
1225 const char *nameserver;
1227 if (type != DBUS_TYPE_STRING)
1230 dbus_message_iter_get_basic(value, &nameserver);
1232 g_free(element->ipv4.nameserver);
1233 element->ipv4.nameserver = g_strdup(nameserver);
1235 connman_element_update(element);
1236 } else if (g_str_equal(name, "IPv4.Timeserver") == TRUE) {
1237 const char *timeserver;
1239 if (type != DBUS_TYPE_STRING)
1242 dbus_message_iter_get_basic(value, ×erver);
1244 g_free(element->ipv4.timeserver);
1245 element->ipv4.nameserver = g_strdup(timeserver);
1247 connman_element_update(element);
1253 static void emit_state_change(DBusConnection *conn, const char *state)
1255 DBusMessage *signal;
1256 DBusMessageIter iter;
1258 connman_dbus_property_changed_basic(CONNMAN_MANAGER_PATH,
1259 CONNMAN_MANAGER_INTERFACE, "State",
1260 DBUS_TYPE_STRING, &state);
1262 signal = dbus_message_new_signal(CONNMAN_MANAGER_PATH,
1263 CONNMAN_MANAGER_INTERFACE, "StateChanged");
1267 dbus_message_iter_init_append(signal, &iter);
1268 dbus_message_iter_append_basic(&iter, DBUS_TYPE_STRING, &state);
1270 g_dbus_send_message(conn, signal);
1273 static void probe_element(struct connman_element *element)
1277 DBG("element %p name %s", element, element->name);
1279 for (list = driver_list; list; list = list->next) {
1280 struct connman_driver *driver = list->data;
1282 if (match_driver(element, driver) == FALSE)
1285 DBG("driver %p name %s", driver, driver->name);
1287 if (driver->probe(element) == 0) {
1288 __connman_element_lock(element);
1289 element->driver = driver;
1290 __connman_element_unlock(element);
1296 static void register_element(gpointer data, gpointer user_data)
1298 struct connman_element *element = data;
1299 const gchar *basepath;
1302 __connman_element_lock(element);
1304 if (element->parent) {
1305 node = g_node_find(element_root, G_PRE_ORDER,
1306 G_TRAVERSE_ALL, element->parent);
1307 basepath = element->parent->path;
1309 element->parent = element_root->data;
1311 node = element_root;
1312 basepath = "/device";
1315 element->path = g_strdup_printf("%s/%s", basepath, element->name);
1317 __connman_element_unlock(element);
1320 connman_error("Element registration for %s failed",
1325 DBG("element %p path %s", element, element->path);
1327 g_node_append_data(node, element);
1329 if (element->type == CONNMAN_ELEMENT_TYPE_DHCP) {
1330 element->parent->configuring = TRUE;
1333 if (__connman_element_count(NULL,
1334 CONNMAN_ELEMENT_TYPE_CONNECTION) == 0)
1335 emit_state_change(connection, "connecting");
1339 if (element->type == CONNMAN_ELEMENT_TYPE_CONNECTION) {
1340 struct connman_element *parent = element->parent;
1343 parent->configuring = FALSE;
1344 parent = parent->parent;
1347 if (__connman_element_count(NULL,
1348 CONNMAN_ELEMENT_TYPE_CONNECTION) == 1)
1349 emit_state_change(connection, "online");
1352 if (started == FALSE)
1355 probe_element(element);
1358 gboolean __connman_element_device_isfiltered(const char *devname)
1360 if (device_filter == NULL)
1363 if (g_pattern_match_simple(device_filter, devname) == FALSE) {
1364 DBG("ignoring device %s (match)", devname);
1369 if (nodevice_filter == NULL)
1372 if (g_pattern_match_simple(nodevice_filter, devname) == TRUE) {
1373 DBG("ignoring device %s (no match)", devname);
1381 * connman_element_register:
1382 * @element: the element to register
1383 * @parent: the parent to register the element with
1385 * Register an element with the core. It will be register under the given
1386 * parent of if %NULL is provided under the root element.
1388 * Returns: %0 on success
1390 int connman_element_register(struct connman_element *element,
1391 struct connman_element *parent)
1393 DBG("element %p name %s parent %p", element, element->name, parent);
1395 if (element->devname == NULL)
1396 element->devname = g_strdup(element->name);
1398 if (element->type != CONNMAN_ELEMENT_TYPE_DEVICE)
1401 if (__connman_element_device_isfiltered(element->devname) == TRUE)
1405 if (connman_element_ref(element) == NULL)
1408 __connman_element_lock(element);
1410 if (element->name == NULL) {
1411 element->name = g_strdup(type2string(element->type));
1412 if (element->name == NULL) {
1413 __connman_element_unlock(element);
1418 if (element->type == CONNMAN_ELEMENT_TYPE_DHCP)
1419 element->ipv4.method = CONNMAN_IPCONFIG_METHOD_DHCP;
1421 element->parent = parent;
1423 __connman_element_unlock(element);
1425 register_element(element, NULL);
1430 static gboolean remove_element(GNode *node, gpointer user_data)
1432 struct connman_element *element = node->data;
1433 struct connman_element *root = user_data;
1435 DBG("element %p name %s", element, element->name);
1437 if (element == root)
1441 g_node_unlink(node);
1443 if (element->driver) {
1444 if (element->driver->remove)
1445 element->driver->remove(element);
1447 __connman_element_lock(element);
1448 element->driver = NULL;
1449 __connman_element_unlock(element);
1453 g_node_destroy(node);
1455 if (element->type == CONNMAN_ELEMENT_TYPE_CONNECTION) {
1456 if (__connman_element_count(NULL,
1457 CONNMAN_ELEMENT_TYPE_CONNECTION) == 0)
1458 emit_state_change(connection, "offline");
1461 connman_element_unref(element);
1466 void connman_element_unregister(struct connman_element *element)
1470 DBG("element %p name %s", element, element->name);
1472 node = g_node_find(element_root, G_PRE_ORDER, G_TRAVERSE_ALL, element);
1475 g_node_traverse(node, G_POST_ORDER,
1476 G_TRAVERSE_ALL, -1, remove_element, NULL);
1479 void connman_element_unregister_children(struct connman_element *element)
1483 DBG("element %p name %s", element, element->name);
1485 node = g_node_find(element_root, G_PRE_ORDER, G_TRAVERSE_ALL, element);
1488 g_node_traverse(node, G_POST_ORDER,
1489 G_TRAVERSE_ALL, -1, remove_element, element);
1492 static gboolean update_element(GNode *node, gpointer user_data)
1494 struct connman_element *element = node->data;
1496 DBG("element %p name %s", element, element->name);
1498 if (element->driver && element->driver->update)
1499 element->driver->update(element);
1504 void connman_element_update(struct connman_element *element)
1508 DBG("element %p name %s", element, element->name);
1510 node = g_node_find(element_root, G_PRE_ORDER, G_TRAVERSE_ALL, element);
1513 g_node_traverse(node, G_PRE_ORDER,
1514 G_TRAVERSE_ALL, -1, update_element, element);
1517 int connman_element_set_enabled(struct connman_element *element,
1520 if (element->enabled == enabled)
1523 element->enabled = enabled;
1525 connman_element_update(element);
1530 static enum connman_service_error convert_error(enum connman_element_error error)
1533 case CONNMAN_ELEMENT_ERROR_UNKNOWN:
1534 case CONNMAN_ELEMENT_ERROR_FAILED:
1536 case CONNMAN_ELEMENT_ERROR_DHCP_FAILED:
1537 return CONNMAN_SERVICE_ERROR_DHCP_FAILED;
1538 case CONNMAN_ELEMENT_ERROR_CONNECT_FAILED:
1539 return CONNMAN_SERVICE_ERROR_CONNECT_FAILED;
1542 return CONNMAN_SERVICE_ERROR_UNKNOWN;
1546 * connman_element_set_error:
1547 * @element: element structure
1548 * @error: error identifier
1550 * Set error state and specific error identifier
1552 void connman_element_set_error(struct connman_element *element,
1553 enum connman_element_error error)
1555 struct connman_service *service;
1557 DBG("element %p error %d", element, error);
1559 if (element->type == CONNMAN_ELEMENT_TYPE_ROOT)
1562 element->state = CONNMAN_ELEMENT_STATE_ERROR;
1563 element->error = error;
1565 if (element->driver && element->driver->change)
1566 element->driver->change(element);
1568 service = __connman_element_get_service(element);
1569 __connman_service_indicate_error(service, convert_error(error));
1572 int __connman_element_init(const char *device, const char *nodevice)
1574 struct connman_element *element;
1578 connection = connman_dbus_get_connection();
1579 if (connection == NULL)
1582 device_filter = g_strdup(device);
1583 nodevice_filter = g_strdup(nodevice);
1585 element = connman_element_create("root");
1587 element->path = g_strdup("/");
1588 element->type = CONNMAN_ELEMENT_TYPE_ROOT;
1590 element_root = g_node_new(element);
1592 __connman_notifier_init();
1593 __connman_service_init();
1594 __connman_provider_init();
1595 __connman_network_init();
1596 __connman_device_init();
1601 static gboolean probe_node(GNode *node, gpointer data)
1603 struct connman_element *element = node->data;
1605 DBG("element %p name %s", element, element->name);
1607 if (element->type == CONNMAN_ELEMENT_TYPE_ROOT)
1610 if (element->driver)
1613 probe_element(element);
1618 void __connman_element_start(void)
1622 __connman_storage_init_profile();
1624 g_node_traverse(element_root, G_PRE_ORDER, G_TRAVERSE_ALL, -1,
1629 __connman_rtnl_start();
1630 __connman_udev_start();
1632 __connman_connection_init();
1633 __connman_ipv4_init();
1634 __connman_dhcp_init();
1636 if (__connman_rfkill_init() < 0)
1637 __connman_udev_enable_rfkill_processing();
1640 void __connman_element_stop(void)
1644 __connman_rfkill_cleanup();
1646 __connman_dhcp_cleanup();
1647 __connman_ipv4_cleanup();
1648 __connman_provider_cleanup();
1649 __connman_connection_cleanup();
1652 static gboolean free_driver(GNode *node, gpointer data)
1654 struct connman_element *element = node->data;
1656 DBG("element %p name %s", element, element->name);
1658 if (element->driver) {
1659 if (element->driver->remove)
1660 element->driver->remove(element);
1662 __connman_element_lock(element);
1663 element->driver = NULL;
1664 __connman_element_unlock(element);
1670 static gboolean free_node(GNode *node, gpointer data)
1672 struct connman_element *element = node->data;
1674 DBG("element %p name %s", element, element->name);
1676 if (g_node_depth(node) > 1)
1677 connman_element_unregister(element);
1682 void __connman_element_cleanup(void)
1686 __connman_device_cleanup();
1687 __connman_network_cleanup();
1688 __connman_service_cleanup();
1689 __connman_notifier_cleanup();
1691 g_node_traverse(element_root, G_POST_ORDER, G_TRAVERSE_ALL, -1,
1694 g_node_traverse(element_root, G_POST_ORDER, G_TRAVERSE_ALL, -1,
1697 g_node_destroy(element_root);
1698 element_root = NULL;
1700 g_free(nodevice_filter);
1701 g_free(device_filter);
1703 if (connection == NULL)
1706 dbus_connection_unref(connection);