dhcpv6: Handle address expiration by restarting the stack.
[framework/connectivity/connman.git] / src / network.c
1 /*
2  *
3  *  Connection Manager
4  *
5  *  Copyright (C) 2007-2010  Intel Corporation. All rights reserved.
6  *
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.
10  *
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.
15  *
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
19  *
20  */
21
22 #ifdef HAVE_CONFIG_H
23 #include <config.h>
24 #endif
25
26 #include <errno.h>
27 #include <string.h>
28
29 #include "connman.h"
30
31 static GSList *network_list = NULL;
32 static GSList *driver_list = NULL;
33
34 struct connman_network {
35         int refcount;
36         enum connman_network_type type;
37         connman_bool_t available;
38         connman_bool_t connected;
39         connman_bool_t roaming;
40         connman_uint8_t strength;
41         connman_uint16_t frequency;
42         char *identifier;
43         char *name;
44         char *node;
45         char *group;
46         char *path;
47         int index;
48         int router_solicit_count;
49
50         struct connman_network_driver *driver;
51         void *driver_data;
52
53         connman_bool_t connecting;
54         connman_bool_t associating;
55
56         struct connman_device *device;
57
58         struct {
59                 void *ssid;
60                 int ssid_len;
61                 char *mode;
62                 unsigned short channel;
63                 char *security;
64                 char *passphrase;
65                 char *agent_passphrase;
66                 char *eap;
67                 char *identity;
68                 char *agent_identity;
69                 char *ca_cert_path;
70                 char *client_cert_path;
71                 char *private_key_path;
72                 char *private_key_passphrase;
73                 char *phase2_auth;
74                 connman_bool_t wps;
75                 connman_bool_t use_wps;
76                 char *pin_wps;
77         } wifi;
78
79         struct {
80                 char *nsp_name;
81                 int nsp_name_len;
82         } wimax;
83 };
84
85 static const char *type2string(enum connman_network_type type)
86 {
87         switch (type) {
88         case CONNMAN_NETWORK_TYPE_UNKNOWN:
89         case CONNMAN_NETWORK_TYPE_VENDOR:
90                 break;
91         case CONNMAN_NETWORK_TYPE_ETHERNET:
92                 return "ethernet";
93         case CONNMAN_NETWORK_TYPE_WIFI:
94                 return "wifi";
95         case CONNMAN_NETWORK_TYPE_WIMAX:
96                 return "wimax";
97         case CONNMAN_NETWORK_TYPE_BLUETOOTH_PAN:
98         case CONNMAN_NETWORK_TYPE_BLUETOOTH_DUN:
99                 return "bluetooth";
100         case CONNMAN_NETWORK_TYPE_CELLULAR:
101                 return "cellular";
102         }
103
104         return NULL;
105 }
106
107 connman_bool_t __connman_network_has_driver(struct connman_network *network)
108 {
109         if (network == NULL || network->driver == NULL)
110                 return FALSE;
111
112         return TRUE;
113 }
114
115 static gboolean match_driver(struct connman_network *network,
116                                         struct connman_network_driver *driver)
117 {
118         if (network->type == driver->type ||
119                         driver->type == CONNMAN_NETWORK_TYPE_UNKNOWN)
120                 return TRUE;
121
122         return FALSE;
123 }
124
125 static int network_probe(struct connman_network *network)
126 {
127         GSList *list;
128         struct connman_network_driver *driver = NULL;
129
130         DBG("network %p name %s", network, network->name);
131
132         if (network->driver != NULL)
133                 return -EALREADY;
134
135         for (list = driver_list; list; list = list->next) {
136                 driver = list->data;
137
138                 if (match_driver(network, driver) == FALSE)
139                         continue;
140
141                 DBG("driver %p name %s", driver, driver->name);
142
143                 if (driver->probe(network) == 0)
144                         break;
145
146                 driver = NULL;
147         }
148
149         if (driver == NULL)
150                 return -ENODEV;
151
152         if (network->group == NULL)
153                 return -EINVAL;
154
155         switch (network->type) {
156         case CONNMAN_NETWORK_TYPE_UNKNOWN:
157         case CONNMAN_NETWORK_TYPE_VENDOR:
158                 return 0;
159         case CONNMAN_NETWORK_TYPE_ETHERNET:
160         case CONNMAN_NETWORK_TYPE_BLUETOOTH_PAN:
161         case CONNMAN_NETWORK_TYPE_BLUETOOTH_DUN:
162         case CONNMAN_NETWORK_TYPE_CELLULAR:
163         case CONNMAN_NETWORK_TYPE_WIFI:
164         case CONNMAN_NETWORK_TYPE_WIMAX:
165                 network->driver = driver;
166                 if (__connman_service_create_from_network(network) == NULL) {
167                         network->driver = NULL;
168                         return -EINVAL;
169                 }
170         }
171
172         return 0;
173 }
174
175 static void network_remove(struct connman_network *network)
176 {
177         DBG("network %p name %s", network, network->name);
178
179         if (network->driver == NULL)
180                 return;
181
182         connman_network_set_connected(network, FALSE);
183
184         switch (network->type) {
185         case CONNMAN_NETWORK_TYPE_UNKNOWN:
186         case CONNMAN_NETWORK_TYPE_VENDOR:
187                 break;
188         case CONNMAN_NETWORK_TYPE_ETHERNET:
189         case CONNMAN_NETWORK_TYPE_BLUETOOTH_PAN:
190         case CONNMAN_NETWORK_TYPE_BLUETOOTH_DUN:
191         case CONNMAN_NETWORK_TYPE_CELLULAR:
192         case CONNMAN_NETWORK_TYPE_WIFI:
193         case CONNMAN_NETWORK_TYPE_WIMAX:
194                 if (network->group != NULL) {
195                         __connman_service_remove_from_network(network);
196
197                         g_free(network->group);
198                         network->group = NULL;
199                 }
200                 break;
201         }
202
203         if (network->driver->remove)
204                 network->driver->remove(network);
205
206         network->driver = NULL;
207 }
208
209 static void network_change(struct connman_network *network)
210 {
211         DBG("network %p name %s", network, network->name);
212
213         if (network->connected == FALSE)
214                 return;
215
216         connman_device_set_disconnected(network->device, TRUE);
217
218         if (network->driver && network->driver->disconnect) {
219                 network->driver->disconnect(network);
220                 return;
221         }
222
223         network->connected = FALSE;
224 }
225
226 static void probe_driver(struct connman_network_driver *driver)
227 {
228         GSList *list;
229
230         DBG("driver %p name %s", driver, driver->name);
231
232         for (list = network_list; list != NULL; list = list->next) {
233                 struct connman_network *network = list->data;
234
235                 if (network->driver != NULL)
236                         continue;
237
238                 if (driver->type != network->type)
239                         continue;
240
241                 if (driver->probe(network) < 0)
242                         continue;
243
244                 network->driver = driver;
245         }
246 }
247
248 static void remove_driver(struct connman_network_driver *driver)
249 {
250         GSList *list;
251
252         DBG("driver %p name %s", driver, driver->name);
253
254         for (list = network_list; list != NULL; list = list->next) {
255                 struct connman_network *network = list->data;
256
257                 if (network->driver == driver)
258                         network_remove(network);
259         }
260 }
261
262 static gint compare_priority(gconstpointer a, gconstpointer b)
263 {
264         const struct connman_network_driver *driver1 = a;
265         const struct connman_network_driver *driver2 = b;
266
267         return driver2->priority - driver1->priority;
268 }
269
270 /**
271  * connman_network_driver_register:
272  * @driver: network driver definition
273  *
274  * Register a new network driver
275  *
276  * Returns: %0 on success
277  */
278 int connman_network_driver_register(struct connman_network_driver *driver)
279 {
280         GSList *list;
281
282         DBG("driver %p name %s", driver, driver->name);
283
284         for (list = driver_list; list; list = list->next) {
285                 struct connman_network_driver *tmp = list->data;
286
287                 if (tmp->type == driver->type)
288                         return -EALREADY;
289
290         }
291
292         driver_list = g_slist_insert_sorted(driver_list, driver,
293                                                         compare_priority);
294
295         probe_driver(driver);
296
297         return 0;
298 }
299
300 /**
301  * connman_network_driver_unregister:
302  * @driver: network driver definition
303  *
304  * Remove a previously registered network driver
305  */
306 void connman_network_driver_unregister(struct connman_network_driver *driver)
307 {
308         DBG("driver %p name %s", driver, driver->name);
309
310         driver_list = g_slist_remove(driver_list, driver);
311
312         remove_driver(driver);
313 }
314
315 static void network_destruct(struct connman_network *network)
316 {
317         DBG("network %p name %s", network, network->name);
318
319         g_free(network->wifi.ssid);
320         g_free(network->wifi.mode);
321         g_free(network->wifi.security);
322         g_free(network->wifi.passphrase);
323         g_free(network->wifi.agent_passphrase);
324         g_free(network->wifi.eap);
325         g_free(network->wifi.identity);
326         g_free(network->wifi.agent_identity);
327         g_free(network->wifi.ca_cert_path);
328         g_free(network->wifi.client_cert_path);
329         g_free(network->wifi.private_key_path);
330         g_free(network->wifi.private_key_passphrase);
331         g_free(network->wifi.phase2_auth);
332         g_free(network->wifi.pin_wps);
333
334         g_free(network->path);
335         g_free(network->group);
336         g_free(network->node);
337         g_free(network->name);
338         g_free(network->identifier);
339
340         network->device = NULL;
341
342         g_free(network);
343 }
344
345 /**
346  * connman_network_create:
347  * @identifier: network identifier (for example an unqiue name)
348  *
349  * Allocate a new network and assign the #identifier to it.
350  *
351  * Returns: a newly-allocated #connman_network structure
352  */
353 struct connman_network *connman_network_create(const char *identifier,
354                                                 enum connman_network_type type)
355 {
356         struct connman_network *network;
357         char *ident;
358
359         DBG("identifier %s type %d", identifier, type);
360
361         network = g_try_new0(struct connman_network, 1);
362         if (network == NULL)
363                 return NULL;
364
365         DBG("network %p", network);
366
367         network->refcount = 1;
368
369         ident = g_strdup(identifier);
370
371         if (ident == NULL) {
372                 g_free(network);
373                 return NULL;
374         }
375
376         network->type       = type;
377         network->identifier = ident;
378
379         network_list = g_slist_append(network_list, network);
380
381         return network;
382 }
383
384 /**
385  * connman_network_ref:
386  * @network: network structure
387  *
388  * Increase reference counter of  network
389  */
390 struct connman_network *connman_network_ref(struct connman_network *network)
391 {
392         DBG("network %p name %s refcount %d", network, network->name,
393                 network->refcount + 1);
394
395         __sync_fetch_and_add(&network->refcount, 1);
396
397         return network;
398 }
399
400 /**
401  * connman_network_unref:
402  * @network: network structure
403  *
404  * Decrease reference counter of network
405  */
406 void connman_network_unref(struct connman_network *network)
407 {
408         DBG("network %p name %s refcount %d", network, network->name,
409                 network->refcount - 1);
410
411         if (__sync_fetch_and_sub(&network->refcount, 1) != 1)
412                 return;
413
414         network_list = g_slist_remove(network_list, network);
415
416         network_destruct(network);
417 }
418
419 const char *__connman_network_get_type(struct connman_network *network)
420 {
421         return type2string(network->type);
422 }
423
424 /**
425  * connman_network_get_type:
426  * @network: network structure
427  *
428  * Get type of network
429  */
430 enum connman_network_type connman_network_get_type(struct connman_network *network)
431 {
432         return network->type;
433 }
434
435 /**
436  * connman_network_get_identifier:
437  * @network: network structure
438  *
439  * Get identifier of network
440  */
441 const char *connman_network_get_identifier(struct connman_network *network)
442 {
443         return network->identifier;
444 }
445
446 /**
447  * connman_network_set_index:
448  * @network: network structure
449  * @index: index number
450  *
451  * Set index number of network
452  */
453 void connman_network_set_index(struct connman_network *network, int index)
454 {
455         struct connman_service *service;
456         struct connman_ipconfig *ipconfig;
457
458         service = __connman_service_lookup_from_network(network);
459         if (service == NULL)
460                 goto done;
461
462         ipconfig = __connman_service_get_ip4config(service);
463
464         DBG("index %d service %p ip4config %p", network->index,
465                 service, ipconfig);
466
467         if (network->index < 0 && ipconfig == NULL) {
468
469                 ipconfig = __connman_service_get_ip4config(service);
470                 if (ipconfig == NULL)
471                         /*
472                          * This is needed for plugins that havent set their
473                          * ipconfig layer yet, due to not being able to get
474                          * a network index prior to creating a service.
475                          */
476                         __connman_service_create_ip4config(service, index);
477                 else
478                         __connman_ipconfig_set_index(ipconfig, index);
479
480         } else {
481                 /* If index changed, the index of ipconfig must be reset. */
482                 if (ipconfig == NULL)
483                         goto done;
484
485                 __connman_ipconfig_set_index(ipconfig, index);
486         }
487
488 done:
489         network->index = index;
490 }
491
492 /**
493  * connman_network_get_index:
494  * @network: network structure
495  *
496  * Get index number of network
497  */
498 int connman_network_get_index(struct connman_network *network)
499 {
500         return network->index;
501 }
502
503 /**
504  * connman_network_set_group:
505  * @network: network structure
506  * @group: group name
507  *
508  * Set group name for automatic clustering
509  */
510 void connman_network_set_group(struct connman_network *network,
511                                                         const char *group)
512 {
513         switch (network->type) {
514         case CONNMAN_NETWORK_TYPE_UNKNOWN:
515         case CONNMAN_NETWORK_TYPE_VENDOR:
516                 return;
517         case CONNMAN_NETWORK_TYPE_ETHERNET:
518         case CONNMAN_NETWORK_TYPE_BLUETOOTH_PAN:
519         case CONNMAN_NETWORK_TYPE_BLUETOOTH_DUN:
520         case CONNMAN_NETWORK_TYPE_CELLULAR:
521         case CONNMAN_NETWORK_TYPE_WIFI:
522         case CONNMAN_NETWORK_TYPE_WIMAX:
523                 break;
524         }
525
526         if (g_strcmp0(network->group, group) == 0) {
527                 if (group != NULL)
528                         __connman_service_update_from_network(network);
529                 return;
530         }
531
532         if (network->group != NULL) {
533                 __connman_service_remove_from_network(network);
534
535                 g_free(network->group);
536         }
537
538         network->group = g_strdup(group);
539
540         if (network->group != NULL)
541                 network_probe(network);
542 }
543
544 /**
545  * connman_network_get_group:
546  * @network: network structure
547  *
548  * Get group name for automatic clustering
549  */
550 const char *connman_network_get_group(struct connman_network *network)
551 {
552         return network->group;
553 }
554
555 const char *__connman_network_get_ident(struct connman_network *network)
556 {
557         if (network->device == NULL)
558                 return NULL;
559
560         return connman_device_get_ident(network->device);
561 }
562
563 connman_bool_t __connman_network_get_weakness(struct connman_network *network)
564 {
565         switch (network->type) {
566         case CONNMAN_NETWORK_TYPE_UNKNOWN:
567         case CONNMAN_NETWORK_TYPE_VENDOR:
568         case CONNMAN_NETWORK_TYPE_ETHERNET:
569         case CONNMAN_NETWORK_TYPE_BLUETOOTH_PAN:
570         case CONNMAN_NETWORK_TYPE_BLUETOOTH_DUN:
571         case CONNMAN_NETWORK_TYPE_CELLULAR:
572         case CONNMAN_NETWORK_TYPE_WIMAX:
573                 break;
574         case CONNMAN_NETWORK_TYPE_WIFI:
575                 if (g_strcmp0(network->wifi.mode, "adhoc") == 0)
576                         return TRUE;
577                 if (network->strength > 0 && network->strength < 20)
578                         return TRUE;
579                 break;
580         }
581
582         return FALSE;
583 }
584
585 connman_bool_t connman_network_get_connecting(struct connman_network *network)
586 {
587         return network->connecting;
588 }
589
590 /**
591  * connman_network_set_available:
592  * @network: network structure
593  * @available: availability state
594  *
595  * Change availability state of network (in range)
596  */
597 int connman_network_set_available(struct connman_network *network,
598                                                 connman_bool_t available)
599 {
600         DBG("network %p available %d", network, available);
601
602         if (network->available == available)
603                 return -EALREADY;
604
605         network->available = available;
606
607         return 0;
608 }
609
610 /**
611  * connman_network_get_available:
612  * @network: network structure
613  *
614  * Get network available setting
615  */
616 connman_bool_t connman_network_get_available(struct connman_network *network)
617 {
618         return network->available;
619 }
620
621 /**
622  * connman_network_set_associating:
623  * @network: network structure
624  * @associating: associating state
625  *
626  * Change associating state of network
627  */
628 int connman_network_set_associating(struct connman_network *network,
629                                                 connman_bool_t associating)
630 {
631         DBG("network %p associating %d", network, associating);
632
633         if (network->associating == associating)
634                 return -EALREADY;
635
636         network->associating = associating;
637
638         if (associating == TRUE) {
639                 struct connman_service *service;
640
641                 service = __connman_service_lookup_from_network(network);
642                 __connman_service_ipconfig_indicate_state(service,
643                                         CONNMAN_SERVICE_STATE_ASSOCIATION,
644                                         CONNMAN_IPCONFIG_TYPE_IPV4);
645                 __connman_service_ipconfig_indicate_state(service,
646                                         CONNMAN_SERVICE_STATE_ASSOCIATION,
647                                         CONNMAN_IPCONFIG_TYPE_IPV6);
648         }
649
650         return 0;
651 }
652
653 static void set_associate_error(struct connman_network *network)
654 {
655         struct connman_service *service;
656
657         service = __connman_service_lookup_from_network(network);
658
659         __connman_service_indicate_error(service,
660                                         CONNMAN_SERVICE_ERROR_CONNECT_FAILED);
661 }
662
663 static void set_configure_error(struct connman_network *network)
664 {
665         struct connman_service *service;
666
667         service = __connman_service_lookup_from_network(network);
668
669         __connman_service_indicate_error(service,
670                                         CONNMAN_SERVICE_ERROR_CONNECT_FAILED);
671 }
672
673 static void set_invalid_key_error(struct connman_network *network)
674 {
675         struct connman_service *service;
676
677         service = __connman_service_lookup_from_network(network);
678
679         __connman_service_indicate_error(service,
680                                         CONNMAN_SERVICE_ERROR_INVALID_KEY);
681 }
682
683 static void set_connect_error(struct connman_network *network)
684 {
685         struct connman_service *service;
686
687         service = __connman_service_lookup_from_network(network);
688
689         __connman_service_indicate_error(service,
690                                         CONNMAN_SERVICE_ERROR_CONNECT_FAILED);
691 }
692
693 void connman_network_set_ipv4_method(struct connman_network *network,
694                                         enum connman_ipconfig_method method)
695 {
696         struct connman_service *service;
697         struct connman_ipconfig *ipconfig;
698
699         service = __connman_service_lookup_from_network(network);
700         if (service == NULL)
701                 return;
702
703         ipconfig = __connman_service_get_ip4config(service);
704         if (ipconfig == NULL)
705                 return;
706
707         connman_ipconfig_set_method(ipconfig, method);
708 }
709
710 void connman_network_set_ipv6_method(struct connman_network *network,
711                                         enum connman_ipconfig_method method)
712 {
713         struct connman_service *service;
714         struct connman_ipconfig *ipconfig;
715
716         service = __connman_service_lookup_from_network(network);
717         if (service == NULL)
718                 return;
719
720         ipconfig = __connman_service_get_ip6config(service);
721         if (ipconfig == NULL)
722                 return;
723
724         connman_ipconfig_set_method(ipconfig, method);
725 }
726
727 void connman_network_set_error(struct connman_network *network,
728                                         enum connman_network_error error)
729 {
730         DBG("nework %p, error %d", network, error);
731
732         network->connecting = FALSE;
733         network->associating = FALSE;
734
735         switch (error) {
736         case CONNMAN_NETWORK_ERROR_UNKNOWN:
737                 return;
738         case CONNMAN_NETWORK_ERROR_ASSOCIATE_FAIL:
739                 set_associate_error(network);
740                 break;
741         case CONNMAN_NETWORK_ERROR_CONFIGURE_FAIL:
742                 set_configure_error(network);
743                 break;
744         case CONNMAN_NETWORK_ERROR_INVALID_KEY:
745                 set_invalid_key_error(network);
746                 break;
747         case CONNMAN_NETWORK_ERROR_CONNECT_FAIL:
748                 set_connect_error(network);
749                 break;
750         }
751
752         network_change(network);
753 }
754
755 void connman_network_clear_error(struct connman_network *network)
756 {
757         struct connman_service *service;
758
759         DBG("network %p", network);
760
761         if (network == NULL)
762                 return;
763
764         if (network->connecting == TRUE || network->associating == TRUE)
765                 return;
766
767         service = __connman_service_lookup_from_network(network);
768         __connman_service_clear_error(service);
769 }
770
771 static void set_configuration(struct connman_network *network,
772                         enum connman_ipconfig_type type)
773 {
774         struct connman_service *service;
775
776         DBG("network %p", network);
777
778         if (network->device == NULL)
779                 return;
780
781         __connman_device_set_network(network->device, network);
782
783         connman_device_set_disconnected(network->device, FALSE);
784
785         service = __connman_service_lookup_from_network(network);
786         __connman_service_ipconfig_indicate_state(service,
787                                         CONNMAN_SERVICE_STATE_CONFIGURATION,
788                                         type);
789 }
790
791 static void dhcp_success(struct connman_network *network)
792 {
793         struct connman_service *service;
794         struct connman_ipconfig *ipconfig_ipv4;
795         int err;
796
797         service = __connman_service_lookup_from_network(network);
798         if (service == NULL)
799                 goto err;
800
801         connman_network_set_associating(network, FALSE);
802
803         network->connecting = FALSE;
804
805         ipconfig_ipv4 = __connman_service_get_ip4config(service);
806         err = __connman_ipconfig_address_add(ipconfig_ipv4);
807         if (err < 0)
808                 goto err;
809
810         err = __connman_ipconfig_gateway_add(ipconfig_ipv4);
811         if (err < 0)
812                 goto err;
813
814         return;
815
816 err:
817         connman_network_set_error(network,
818                                 CONNMAN_NETWORK_ERROR_CONFIGURE_FAIL);
819 }
820
821 static void dhcp_failure(struct connman_network *network)
822 {
823         struct connman_service *service;
824
825         service = __connman_service_lookup_from_network(network);
826         if (service == NULL)
827                 return;
828
829         __connman_service_ipconfig_indicate_state(service,
830                                         CONNMAN_SERVICE_STATE_IDLE,
831                                         CONNMAN_IPCONFIG_TYPE_IPV4);
832 }
833
834 static void dhcp_callback(struct connman_network *network,
835                         connman_bool_t success)
836 {
837         DBG("success %d", success);
838
839         if (success == TRUE)
840                 dhcp_success(network);
841         else
842                 dhcp_failure(network);
843 }
844
845 static int set_connected_fixed(struct connman_network *network)
846 {
847         struct connman_service *service;
848         struct connman_ipconfig *ipconfig_ipv4;
849         int err;
850
851         DBG("");
852
853         service = __connman_service_lookup_from_network(network);
854
855         ipconfig_ipv4 = __connman_service_get_ip4config(service);
856
857         set_configuration(network, CONNMAN_IPCONFIG_TYPE_IPV4);
858
859         network->connecting = FALSE;
860
861         connman_network_set_associating(network, FALSE);
862
863         err = __connman_ipconfig_address_add(ipconfig_ipv4);
864         if (err < 0)
865                 goto err;
866
867         err = __connman_ipconfig_gateway_add(ipconfig_ipv4);
868         if (err < 0)
869                 goto err;
870
871         return 0;
872
873 err:
874         connman_network_set_error(network,
875                         CONNMAN_NETWORK_ERROR_CONFIGURE_FAIL);
876
877         return err;
878 }
879
880 static void set_connected_manual(struct connman_network *network)
881 {
882         struct connman_service *service;
883         struct connman_ipconfig *ipconfig;
884         int err;
885
886         DBG("network %p", network);
887
888         service = __connman_service_lookup_from_network(network);
889
890         ipconfig = __connman_service_get_ip4config(service);
891
892         if (__connman_ipconfig_get_local(ipconfig) == NULL)
893                 __connman_service_read_ip4config(service);
894
895         set_configuration(network, CONNMAN_IPCONFIG_TYPE_IPV4);
896
897         err = __connman_ipconfig_address_add(ipconfig);
898         if (err < 0)
899                 goto err;
900
901         err = __connman_ipconfig_gateway_add(ipconfig);
902         if (err < 0)
903                 goto err;
904
905         network->connecting = FALSE;
906
907         connman_network_set_associating(network, FALSE);
908
909         return;
910
911 err:
912         connman_network_set_error(network,
913                                         CONNMAN_NETWORK_ERROR_CONFIGURE_FAIL);
914         return;
915 }
916
917 static int set_connected_dhcp(struct connman_network *network)
918 {
919         int err;
920
921         DBG("network %p", network);
922
923         set_configuration(network, CONNMAN_IPCONFIG_TYPE_IPV4);
924
925         err = __connman_dhcp_start(network, dhcp_callback);
926         if (err < 0) {
927                 connman_error("Can not request DHCP lease");
928                 return err;
929         }
930
931         return 0;
932 }
933
934 static int manual_ipv6_set(struct connman_network *network,
935                                 struct connman_ipconfig *ipconfig_ipv6)
936 {
937         struct connman_service *service;
938         int err;
939
940         DBG("network %p ipv6 %p", network, ipconfig_ipv6);
941
942         service = __connman_service_lookup_from_network(network);
943         if (service == NULL)
944                 return -EINVAL;
945
946         if (__connman_ipconfig_get_local(ipconfig_ipv6) == NULL)
947                 __connman_service_read_ip6config(service);
948
949         err = __connman_ipconfig_address_add(ipconfig_ipv6);
950         if (err < 0) {
951                 connman_network_set_error(network,
952                         CONNMAN_NETWORK_ERROR_CONFIGURE_FAIL);
953                 return err;
954         }
955
956         err = __connman_ipconfig_gateway_add(ipconfig_ipv6);
957         if (err < 0)
958                 return err;
959
960         __connman_connection_gateway_activate(service,
961                                                 CONNMAN_IPCONFIG_TYPE_IPV6);
962
963         __connman_device_set_network(network->device, network);
964
965         connman_device_set_disconnected(network->device, FALSE);
966
967         network->connecting = FALSE;
968
969         return 0;
970 }
971
972 static void stop_dhcpv6(struct connman_network *network)
973 {
974         __connman_dhcpv6_stop(network);
975 }
976
977 static void dhcpv6_info_callback(struct connman_network *network,
978                                 connman_bool_t success)
979 {
980         DBG("success %d", success);
981
982         stop_dhcpv6(network);
983 }
984
985 static gboolean dhcpv6_set_addresses(struct connman_network *network)
986 {
987         struct connman_service *service;
988         struct connman_ipconfig *ipconfig_ipv6;
989         int err = -EINVAL;
990
991         service = __connman_service_lookup_from_network(network);
992         if (service == NULL)
993                 goto err;
994
995         connman_network_set_associating(network, FALSE);
996
997         network->connecting = FALSE;
998
999         ipconfig_ipv6 = __connman_service_get_ip6config(service);
1000         err = __connman_ipconfig_address_add(ipconfig_ipv6);
1001         if (err < 0)
1002                 goto err;
1003
1004         err = __connman_ipconfig_gateway_add(ipconfig_ipv6);
1005         if (err < 0)
1006                 goto err;
1007
1008         return 0;
1009
1010 err:
1011         connman_network_set_error(network,
1012                                 CONNMAN_NETWORK_ERROR_CONFIGURE_FAIL);
1013         return err;
1014 }
1015
1016 static void autoconf_ipv6_set(struct connman_network *network);
1017 static void dhcpv6_callback(struct connman_network *network,
1018                         connman_bool_t success);
1019
1020 /*
1021  * Have a separate callback for renew so that we do not do autoconf
1022  * in wrong phase as the dhcpv6_callback() is also called when doing
1023  * DHCPv6 solicitation.
1024  */
1025 static void dhcpv6_renew_callback(struct connman_network *network,
1026                                         connman_bool_t success)
1027 {
1028         if (success == TRUE)
1029                 dhcpv6_callback(network, success);
1030         else {
1031                 stop_dhcpv6(network);
1032
1033                 /* restart and do solicit again. */
1034                 autoconf_ipv6_set(network);
1035         }
1036 }
1037
1038 static void dhcpv6_callback(struct connman_network *network,
1039                                         connman_bool_t success)
1040 {
1041         DBG("success %d", success);
1042
1043         /* Start the renew process if necessary */
1044         if (success == TRUE) {
1045
1046                 if (dhcpv6_set_addresses(network) < 0) {
1047                         stop_dhcpv6(network);
1048                         return;
1049                 }
1050
1051                 if (__connman_dhcpv6_start_renew(network,
1052                                         dhcpv6_renew_callback) == -ETIMEDOUT)
1053                         dhcpv6_renew_callback(network, FALSE);
1054         } else
1055                 stop_dhcpv6(network);
1056 }
1057
1058 static void check_dhcpv6(struct nd_router_advert *reply,
1059                         unsigned int length, void *user_data)
1060 {
1061         struct connman_network *network = user_data;
1062         GSList *prefixes;
1063
1064         DBG("reply %p", reply);
1065
1066         if (reply == NULL) {
1067                 /*
1068                  * Router solicitation message seem to get lost easily so
1069                  * try to send it again.
1070                  */
1071                 if (network->router_solicit_count > 0) {
1072                         DBG("re-send router solicitation %d",
1073                                                 network->router_solicit_count);
1074                         network->router_solicit_count--;
1075                         __connman_inet_ipv6_send_rs(network->index, 1,
1076                                                 check_dhcpv6, network);
1077                         return;
1078                 }
1079                 connman_network_unref(network);
1080                 return;
1081         }
1082
1083         network->router_solicit_count = 0;
1084
1085         prefixes = __connman_inet_ipv6_get_prefixes(reply, length);
1086
1087         /*
1088          * We do stateful/stateless DHCPv6 if router advertisement says so.
1089          */
1090         if (reply->nd_ra_flags_reserved & ND_RA_FLAG_MANAGED)
1091                 __connman_dhcpv6_start(network, prefixes, dhcpv6_callback);
1092         else if (reply->nd_ra_flags_reserved & ND_RA_FLAG_OTHER)
1093                 __connman_dhcpv6_start_info(network, dhcpv6_info_callback);
1094
1095         connman_network_unref(network);
1096 }
1097
1098 static void autoconf_ipv6_set(struct connman_network *network)
1099 {
1100         struct connman_service *service;
1101         struct connman_ipconfig *ipconfig;
1102         int index;
1103
1104         DBG("network %p", network);
1105
1106         __connman_device_set_network(network->device, network);
1107
1108         connman_device_set_disconnected(network->device, FALSE);
1109
1110         network->connecting = FALSE;
1111
1112         service = __connman_service_lookup_from_network(network);
1113         if (service == NULL)
1114                 return;
1115
1116         ipconfig = __connman_service_get_ip6config(service);
1117         if (ipconfig == NULL)
1118                 return;
1119
1120         index = connman_ipconfig_get_index(ipconfig);
1121
1122         connman_network_ref(network);
1123
1124         /* Try to get stateless DHCPv6 information, RFC 3736 */
1125         network->router_solicit_count = 3;
1126         __connman_inet_ipv6_send_rs(index, 1, check_dhcpv6, network);
1127 }
1128
1129 static gboolean set_connected(gpointer user_data)
1130 {
1131         struct connman_network *network = user_data;
1132         struct connman_service *service;
1133         struct connman_ipconfig *ipconfig_ipv4, *ipconfig_ipv6;
1134         enum connman_ipconfig_method ipv4_method, ipv6_method;
1135
1136         service = __connman_service_lookup_from_network(network);
1137
1138         ipconfig_ipv4 = __connman_service_get_ip4config(service);
1139         ipconfig_ipv6 = __connman_service_get_ip6config(service);
1140
1141         DBG("service %p ipv4 %p ipv6 %p", service, ipconfig_ipv4,
1142                 ipconfig_ipv6);
1143
1144         ipv4_method = __connman_ipconfig_get_method(ipconfig_ipv4);
1145         ipv6_method = __connman_ipconfig_get_method(ipconfig_ipv6);
1146
1147         DBG("method ipv4 %d ipv6 %d", ipv4_method, ipv6_method);
1148         DBG("network connected %d", network->connected);
1149
1150         if (network->connected == TRUE) {
1151                 int ret;
1152
1153                 switch (ipv6_method) {
1154                 case CONNMAN_IPCONFIG_METHOD_UNKNOWN:
1155                 case CONNMAN_IPCONFIG_METHOD_OFF:
1156                         break;
1157                 case CONNMAN_IPCONFIG_METHOD_DHCP:
1158                 case CONNMAN_IPCONFIG_METHOD_AUTO:
1159                         autoconf_ipv6_set(network);
1160                         break;
1161                 case CONNMAN_IPCONFIG_METHOD_FIXED:
1162                 case CONNMAN_IPCONFIG_METHOD_MANUAL:
1163                         ret = manual_ipv6_set(network, ipconfig_ipv6);
1164                         if (ret != 0) {
1165                                 connman_network_set_error(network,
1166                                         CONNMAN_NETWORK_ERROR_ASSOCIATE_FAIL);
1167                                 return FALSE;
1168                         }
1169                         break;
1170                 }
1171
1172                 switch (ipv4_method) {
1173                 case CONNMAN_IPCONFIG_METHOD_UNKNOWN:
1174                 case CONNMAN_IPCONFIG_METHOD_OFF:
1175                 case CONNMAN_IPCONFIG_METHOD_AUTO:
1176                         return FALSE;
1177                 case CONNMAN_IPCONFIG_METHOD_FIXED:
1178                         if (set_connected_fixed(network) < 0) {
1179                                 connman_network_set_error(network,
1180                                         CONNMAN_NETWORK_ERROR_ASSOCIATE_FAIL);
1181                                 return FALSE;
1182                         }
1183                         return TRUE;
1184                 case CONNMAN_IPCONFIG_METHOD_MANUAL:
1185                         set_connected_manual(network);
1186                         return TRUE;
1187                 case CONNMAN_IPCONFIG_METHOD_DHCP:
1188                         if (set_connected_dhcp(network) < 0) {
1189                                 connman_network_set_error(network,
1190                                         CONNMAN_NETWORK_ERROR_ASSOCIATE_FAIL);
1191                                 return FALSE;
1192                         }
1193                 }
1194
1195         } else {
1196                 enum connman_service_state state;
1197
1198                 /*
1199                  * Resetting solicit count here will prevent the RS resend loop
1200                  * from sending packets in check_dhcpv6()
1201                  */
1202                 network->router_solicit_count = 0;
1203
1204                 __connman_device_set_network(network->device, NULL);
1205
1206                 switch (ipv6_method) {
1207                 case CONNMAN_IPCONFIG_METHOD_UNKNOWN:
1208                 case CONNMAN_IPCONFIG_METHOD_OFF:
1209                 case CONNMAN_IPCONFIG_METHOD_FIXED:
1210                 case CONNMAN_IPCONFIG_METHOD_MANUAL:
1211                         break;
1212                 case CONNMAN_IPCONFIG_METHOD_DHCP:
1213                 case CONNMAN_IPCONFIG_METHOD_AUTO:
1214                         stop_dhcpv6(network);
1215                         break;
1216                 }
1217
1218                 switch (ipv4_method) {
1219                 case CONNMAN_IPCONFIG_METHOD_UNKNOWN:
1220                 case CONNMAN_IPCONFIG_METHOD_OFF:
1221                 case CONNMAN_IPCONFIG_METHOD_AUTO:
1222                 case CONNMAN_IPCONFIG_METHOD_FIXED:
1223                 case CONNMAN_IPCONFIG_METHOD_MANUAL:
1224                         break;
1225                 case CONNMAN_IPCONFIG_METHOD_DHCP:
1226                         __connman_dhcp_stop(network);
1227                         break;
1228                 }
1229
1230                 /*
1231                  * We only set the disconnect state if we were not in idle
1232                  * or in failure. It does not make sense to go to disconnect
1233                  * state if we were not connected.
1234                  */
1235                 state = __connman_service_ipconfig_get_state(service,
1236                                                 CONNMAN_IPCONFIG_TYPE_IPV4);
1237                 if (state != CONNMAN_SERVICE_STATE_IDLE &&
1238                                         state != CONNMAN_SERVICE_STATE_FAILURE)
1239                         __connman_service_ipconfig_indicate_state(service,
1240                                         CONNMAN_SERVICE_STATE_DISCONNECT,
1241                                         CONNMAN_IPCONFIG_TYPE_IPV4);
1242
1243                 state = __connman_service_ipconfig_get_state(service,
1244                                                 CONNMAN_IPCONFIG_TYPE_IPV6);
1245                 if (state != CONNMAN_SERVICE_STATE_IDLE &&
1246                                         state != CONNMAN_SERVICE_STATE_FAILURE)
1247                         __connman_service_ipconfig_indicate_state(service,
1248                                         CONNMAN_SERVICE_STATE_DISCONNECT,
1249                                         CONNMAN_IPCONFIG_TYPE_IPV6);
1250
1251                 __connman_connection_gateway_remove(service,
1252                                                 CONNMAN_IPCONFIG_TYPE_ALL);
1253
1254                 __connman_ipconfig_address_unset(ipconfig_ipv4);
1255                 __connman_ipconfig_address_unset(ipconfig_ipv6);
1256
1257                 /*
1258                  * Special handling for IPv6 autoconfigured address.
1259                  * The simplest way to remove autoconfigured routes is to
1260                  * disable IPv6 temporarily so that kernel will do the cleanup
1261                  * automagically.
1262                  */
1263                 if (ipv6_method == CONNMAN_IPCONFIG_METHOD_AUTO) {
1264                         __connman_ipconfig_disable_ipv6(ipconfig_ipv6);
1265                         __connman_ipconfig_enable_ipv6(ipconfig_ipv6);
1266                 }
1267
1268                 __connman_service_ipconfig_indicate_state(service,
1269                                         CONNMAN_SERVICE_STATE_IDLE,
1270                                         CONNMAN_IPCONFIG_TYPE_IPV4);
1271
1272                 __connman_service_ipconfig_indicate_state(service,
1273                                         CONNMAN_SERVICE_STATE_IDLE,
1274                                         CONNMAN_IPCONFIG_TYPE_IPV6);
1275         }
1276
1277         network->connecting = FALSE;
1278
1279         connman_network_set_associating(network, FALSE);
1280
1281         return FALSE;
1282 }
1283
1284 /**
1285  * connman_network_set_connected:
1286  * @network: network structure
1287  * @connected: connected state
1288  *
1289  * Change connected state of network
1290  */
1291 int connman_network_set_connected(struct connman_network *network,
1292                                                 connman_bool_t connected)
1293 {
1294         DBG("network %p connected %d", network, connected);
1295
1296         if ((network->connecting == TRUE || network->associating == TRUE) &&
1297                                                         connected == FALSE) {
1298                 connman_network_set_error(network,
1299                                         CONNMAN_NETWORK_ERROR_CONNECT_FAIL);
1300                 __connman_network_disconnect(network);
1301         }
1302
1303         if (network->connected == connected)
1304                 return -EALREADY;
1305
1306         network->connected = connected;
1307
1308         set_connected(network);
1309
1310         return 0;
1311 }
1312
1313 /**
1314  * connman_network_get_connected:
1315  * @network: network structure
1316  *
1317  * Get network connection status
1318  */
1319 connman_bool_t connman_network_get_connected(struct connman_network *network)
1320 {
1321         return network->connected;
1322 }
1323
1324 /**
1325  * connman_network_get_associating:
1326  * @network: network structure
1327  *
1328  * Get network associating status
1329  */
1330 connman_bool_t connman_network_get_associating(struct connman_network *network)
1331 {
1332         return network->associating;
1333 }
1334
1335 int connman_network_connect_hidden(struct connman_network *network,
1336                                 char *identity, char* passphrase)
1337 {
1338         struct connman_service *service;
1339
1340         DBG("");
1341
1342         service = __connman_service_lookup_from_network(network);
1343         if (service == NULL)
1344                 return -EINVAL;
1345
1346         if (identity != NULL)
1347                 __connman_service_set_agent_identity(service, identity);
1348
1349         if (passphrase != NULL)
1350                 __connman_service_add_passphrase(service, passphrase);
1351
1352         return __connman_service_connect(service);
1353 }
1354
1355 /**
1356  * __connman_network_connect:
1357  * @network: network structure
1358  *
1359  * Connect network
1360  */
1361 int __connman_network_connect(struct connman_network *network)
1362 {
1363         int err;
1364
1365         DBG("network %p", network);
1366
1367         if (network->connected == TRUE)
1368                 return -EISCONN;
1369
1370         if (network->connecting == TRUE || network->associating == TRUE)
1371                 return -EALREADY;
1372
1373         if (network->driver == NULL)
1374                 return -EUNATCH;
1375
1376         if (network->driver->connect == NULL)
1377                 return -ENOSYS;
1378
1379         if (network->device == NULL)
1380                 return -ENODEV;
1381
1382         network->connecting = TRUE;
1383
1384         __connman_device_disconnect(network->device);
1385
1386         err = network->driver->connect(network);
1387         if (err < 0) {
1388                 if (err == -EINPROGRESS)
1389                         connman_network_set_associating(network, TRUE);
1390                 else {
1391                         network->connecting = FALSE;
1392                 }
1393
1394                 return err;
1395         }
1396
1397         network->connected = TRUE;
1398         set_connected(network);
1399
1400         return err;
1401 }
1402
1403 /**
1404  * __connman_network_disconnect:
1405  * @network: network structure
1406  *
1407  * Disconnect network
1408  */
1409 int __connman_network_disconnect(struct connman_network *network)
1410 {
1411         int err;
1412
1413         DBG("network %p", network);
1414
1415         if (network->connected == FALSE && network->connecting == FALSE &&
1416                                                 network->associating == FALSE)
1417                 return -ENOTCONN;
1418
1419         if (network->driver == NULL)
1420                 return -EUNATCH;
1421
1422         if (network->driver->disconnect == NULL)
1423                 return -ENOSYS;
1424
1425         network->connecting = FALSE;
1426
1427         err = network->driver->disconnect(network);
1428         if (err == 0) {
1429                 connman_network_set_connected(network, FALSE);
1430                 set_connected(network);
1431         }
1432
1433         return err;
1434 }
1435
1436 static int manual_ipv4_set(struct connman_network *network,
1437                                 struct connman_ipconfig *ipconfig)
1438 {
1439         struct connman_service *service;
1440         int err;
1441
1442         service = __connman_service_lookup_from_network(network);
1443         if (service == NULL)
1444                 return -EINVAL;
1445
1446         err = __connman_ipconfig_address_add(ipconfig);
1447         if (err < 0) {
1448                 connman_network_set_error(network,
1449                         CONNMAN_NETWORK_ERROR_CONFIGURE_FAIL);
1450                 return err;
1451         }
1452
1453         return __connman_ipconfig_gateway_add(ipconfig);
1454 }
1455
1456 int __connman_network_clear_ipconfig(struct connman_network *network,
1457                                         struct connman_ipconfig *ipconfig)
1458 {
1459         struct connman_service *service;
1460         enum connman_ipconfig_method method;
1461         enum connman_ipconfig_type type;
1462
1463         service = __connman_service_lookup_from_network(network);
1464         if (service == NULL)
1465                 return -EINVAL;
1466
1467         method = __connman_ipconfig_get_method(ipconfig);
1468         type = __connman_ipconfig_get_config_type(ipconfig);
1469
1470         switch (method) {
1471         case CONNMAN_IPCONFIG_METHOD_UNKNOWN:
1472         case CONNMAN_IPCONFIG_METHOD_OFF:
1473         case CONNMAN_IPCONFIG_METHOD_FIXED:
1474         case CONNMAN_IPCONFIG_METHOD_AUTO:
1475                 return -EINVAL;
1476         case CONNMAN_IPCONFIG_METHOD_MANUAL:
1477                 __connman_ipconfig_address_remove(ipconfig);
1478                 break;
1479         case CONNMAN_IPCONFIG_METHOD_DHCP:
1480                 __connman_dhcp_stop(network);
1481                 break;
1482         }
1483
1484         if (type == CONNMAN_IPCONFIG_TYPE_IPV6)
1485                 __connman_service_ipconfig_indicate_state(service,
1486                                         CONNMAN_SERVICE_STATE_CONFIGURATION,
1487                                         CONNMAN_IPCONFIG_TYPE_IPV6);
1488         else if (type == CONNMAN_IPCONFIG_TYPE_IPV4)
1489                 __connman_service_ipconfig_indicate_state(service,
1490                                         CONNMAN_SERVICE_STATE_CONFIGURATION,
1491                                         CONNMAN_IPCONFIG_TYPE_IPV4);
1492
1493         return 0;
1494 }
1495
1496 int __connman_network_set_ipconfig(struct connman_network *network,
1497                                         struct connman_ipconfig *ipconfig_ipv4,
1498                                         struct connman_ipconfig *ipconfig_ipv6)
1499 {
1500         enum connman_ipconfig_method method;
1501         int ret;
1502
1503         if (network == NULL)
1504                 return -EINVAL;
1505
1506         if (ipconfig_ipv6) {
1507                 method = __connman_ipconfig_get_method(ipconfig_ipv6);
1508
1509                 switch (method) {
1510                 case CONNMAN_IPCONFIG_METHOD_UNKNOWN:
1511                 case CONNMAN_IPCONFIG_METHOD_OFF:
1512                         break;
1513                 case CONNMAN_IPCONFIG_METHOD_AUTO:
1514                         autoconf_ipv6_set(network);
1515                         break;
1516                 case CONNMAN_IPCONFIG_METHOD_FIXED:
1517                 case CONNMAN_IPCONFIG_METHOD_MANUAL:
1518                         ret = manual_ipv6_set(network, ipconfig_ipv6);
1519                         if (ret != 0) {
1520                                 connman_network_set_error(network,
1521                                         CONNMAN_NETWORK_ERROR_ASSOCIATE_FAIL);
1522                                 return ret;
1523                         }
1524                         break;
1525                 case CONNMAN_IPCONFIG_METHOD_DHCP:
1526                         break;
1527                 }
1528         }
1529
1530         if (ipconfig_ipv4) {
1531                 method = __connman_ipconfig_get_method(ipconfig_ipv4);
1532
1533                 switch (method) {
1534                 case CONNMAN_IPCONFIG_METHOD_UNKNOWN:
1535                 case CONNMAN_IPCONFIG_METHOD_OFF:
1536                 case CONNMAN_IPCONFIG_METHOD_FIXED:
1537                 case CONNMAN_IPCONFIG_METHOD_AUTO:
1538                         return -EINVAL;
1539                 case CONNMAN_IPCONFIG_METHOD_MANUAL:
1540                         return manual_ipv4_set(network, ipconfig_ipv4);
1541                 case CONNMAN_IPCONFIG_METHOD_DHCP:
1542                         return __connman_dhcp_start(network, dhcp_callback);
1543                 }
1544         }
1545
1546         return 0;
1547 }
1548
1549 int connman_network_set_ipaddress(struct connman_network *network,
1550                                         struct connman_ipaddress *ipaddress)
1551 {
1552         struct connman_service *service;
1553         struct connman_ipconfig *ipconfig = NULL;
1554
1555         DBG("network %p", network);
1556
1557         service = __connman_service_lookup_from_network(network);
1558         if (service == NULL)
1559                 return -EINVAL;
1560
1561         ipconfig = __connman_service_get_ipconfig(service, ipaddress->family);
1562         if (ipconfig == NULL)
1563                 return -EINVAL;
1564
1565         __connman_ipconfig_set_local(ipconfig, ipaddress->local);
1566         __connman_ipconfig_set_peer(ipconfig, ipaddress->peer);
1567         __connman_ipconfig_set_broadcast(ipconfig, ipaddress->broadcast);
1568         __connman_ipconfig_set_prefixlen(ipconfig, ipaddress->prefixlen);
1569         __connman_ipconfig_set_gateway(ipconfig, ipaddress->gateway);
1570
1571         return 0;
1572 }
1573
1574 int connman_network_set_nameservers(struct connman_network *network,
1575                                 const char *nameservers)
1576 {
1577         struct connman_service *service;
1578         char **nameservers_array;
1579         int i;
1580
1581         DBG("network %p nameservers %s", network, nameservers);
1582
1583         service = __connman_service_lookup_from_network(network);
1584         if (service == NULL)
1585                 return -EINVAL;
1586
1587         __connman_service_nameserver_clear(service);
1588
1589         if (nameservers == NULL)
1590                 return 0;
1591
1592         nameservers_array = g_strsplit(nameservers, " ", 0);
1593
1594         for (i = 0; nameservers_array[i] != NULL; i++) {
1595                 __connman_service_nameserver_append(service,
1596                                                 nameservers_array[i], FALSE);
1597         }
1598
1599         g_strfreev(nameservers_array);
1600
1601         return 0;
1602 }
1603
1604 int connman_network_set_domain(struct connman_network *network,
1605                                 const char *domain)
1606 {
1607         struct connman_service *service;
1608
1609         DBG("network %p domain %s", network, domain);
1610
1611         service = __connman_service_lookup_from_network(network);
1612         if (service == NULL)
1613                 return -EINVAL;
1614
1615         __connman_service_set_domainname(service, domain);
1616
1617         return 0;
1618 }
1619
1620 /**
1621  * connman_network_set_name:
1622  * @network: network structure
1623  * @name: name value
1624  *
1625  * Set display name value for network
1626  */
1627 int connman_network_set_name(struct connman_network *network,
1628                                                         const char *name)
1629 {
1630         DBG("network %p name %s", network, name);
1631
1632         g_free(network->name);
1633         network->name = g_strdup(name);
1634
1635         return 0;
1636 }
1637
1638 /**
1639  * connman_network_set_strength:
1640  * @network: network structure
1641  * @strength: strength value
1642  *
1643  * Set signal strength value for network
1644  */
1645
1646 int connman_network_set_strength(struct connman_network *network,
1647                                                 connman_uint8_t strength)
1648 {
1649         DBG("network %p strengh %d", network, strength);
1650
1651         network->strength = strength;
1652
1653         return 0;
1654 }
1655
1656 connman_uint8_t connman_network_get_strength(struct connman_network *network)
1657 {
1658         return network->strength;
1659 }
1660
1661 int connman_network_set_frequency(struct connman_network *network,
1662                                                 connman_uint16_t frequency)
1663 {
1664         DBG("network %p frequency %d", network, frequency);
1665
1666         network->frequency = frequency;
1667
1668         return 0;
1669 }
1670
1671 connman_uint16_t connman_network_get_frequency(struct connman_network *network)
1672 {
1673         return network->frequency;
1674 }
1675
1676 int connman_network_set_wifi_channel(struct connman_network *network,
1677                                                 connman_uint16_t channel)
1678 {
1679         DBG("network %p wifi channel %d", network, channel);
1680
1681         network->wifi.channel = channel;
1682
1683         return 0;
1684 }
1685
1686 connman_uint16_t connman_network_get_wifi_channel(struct connman_network *network)
1687 {
1688         return network->wifi.channel;
1689 }
1690
1691 /**
1692  * connman_network_set_string:
1693  * @network: network structure
1694  * @key: unique identifier
1695  * @value: string value
1696  *
1697  * Set string value for specific key
1698  */
1699 int connman_network_set_string(struct connman_network *network,
1700                                         const char *key, const char *value)
1701 {
1702         DBG("network %p key %s value %s", network, key, value);
1703
1704         if (g_strcmp0(key, "Name") == 0)
1705                 return connman_network_set_name(network, value);
1706
1707         if (g_str_equal(key, "Path") == TRUE) {
1708                 g_free(network->path);
1709                 network->path = g_strdup(value);
1710         } else if (g_str_equal(key, "Node") == TRUE) {
1711                 g_free(network->node);
1712                 network->node = g_strdup(value);
1713         } else if (g_str_equal(key, "WiFi.Mode") == TRUE) {
1714                 g_free(network->wifi.mode);
1715                 network->wifi.mode = g_strdup(value);
1716         } else if (g_str_equal(key, "WiFi.Security") == TRUE) {
1717                 g_free(network->wifi.security);
1718                 network->wifi.security = g_strdup(value);
1719         } else if (g_str_equal(key, "WiFi.Passphrase") == TRUE) {
1720                 g_free(network->wifi.passphrase);
1721                 network->wifi.passphrase = g_strdup(value);
1722         } else if (g_str_equal(key, "WiFi.AgentPassphrase") == TRUE) {
1723                 g_free(network->wifi.agent_passphrase);
1724                 network->wifi.agent_passphrase = g_strdup(value);
1725         } else if (g_str_equal(key, "WiFi.EAP") == TRUE) {
1726                 g_free(network->wifi.eap);
1727                 network->wifi.eap = g_strdup(value);
1728         } else if (g_str_equal(key, "WiFi.Identity") == TRUE) {
1729                 g_free(network->wifi.identity);
1730                 network->wifi.identity = g_strdup(value);
1731         } else if (g_str_equal(key, "WiFi.AgentIdentity") == TRUE) {
1732                 g_free(network->wifi.agent_identity);
1733                 network->wifi.agent_identity = g_strdup(value);
1734         } else if (g_str_equal(key, "WiFi.CACertFile") == TRUE) {
1735                 g_free(network->wifi.ca_cert_path);
1736                 network->wifi.ca_cert_path = g_strdup(value);
1737         } else if (g_str_equal(key, "WiFi.ClientCertFile") == TRUE) {
1738                 g_free(network->wifi.client_cert_path);
1739                 network->wifi.client_cert_path = g_strdup(value);
1740         } else if (g_str_equal(key, "WiFi.PrivateKeyFile") == TRUE) {
1741                 g_free(network->wifi.private_key_path);
1742                 network->wifi.private_key_path = g_strdup(value);
1743         } else if (g_str_equal(key, "WiFi.PrivateKeyPassphrase") == TRUE) {
1744                 g_free(network->wifi.private_key_passphrase);
1745                 network->wifi.private_key_passphrase = g_strdup(value);
1746         } else if (g_str_equal(key, "WiFi.Phase2") == TRUE) {
1747                 g_free(network->wifi.phase2_auth);
1748                 network->wifi.phase2_auth = g_strdup(value);
1749         } else if (g_str_equal(key, "WiFi.PinWPS") == TRUE) {
1750                 g_free(network->wifi.pin_wps);
1751                 network->wifi.pin_wps = g_strdup(value);
1752         } else {
1753                 return -EINVAL;
1754         }
1755
1756         return 0;
1757 }
1758
1759 /**
1760  * connman_network_get_string:
1761  * @network: network structure
1762  * @key: unique identifier
1763  *
1764  * Get string value for specific key
1765  */
1766 const char *connman_network_get_string(struct connman_network *network,
1767                                                         const char *key)
1768 {
1769         DBG("network %p key %s", network, key);
1770
1771         if (g_str_equal(key, "Path") == TRUE)
1772                 return network->path;
1773         else if (g_str_equal(key, "Name") == TRUE)
1774                 return network->name;
1775         else if (g_str_equal(key, "Node") == TRUE)
1776                 return network->node;
1777         else if (g_str_equal(key, "WiFi.Mode") == TRUE)
1778                 return network->wifi.mode;
1779         else if (g_str_equal(key, "WiFi.Security") == TRUE)
1780                 return network->wifi.security;
1781         else if (g_str_equal(key, "WiFi.Passphrase") == TRUE)
1782                 return network->wifi.passphrase;
1783         else if (g_str_equal(key, "WiFi.AgentPassphrase") == TRUE)
1784                 return network->wifi.agent_passphrase;
1785         else if (g_str_equal(key, "WiFi.EAP") == TRUE)
1786                 return network->wifi.eap;
1787         else if (g_str_equal(key, "WiFi.Identity") == TRUE)
1788                 return network->wifi.identity;
1789         else if (g_str_equal(key, "WiFi.AgentIdentity") == TRUE)
1790                 return network->wifi.agent_identity;
1791         else if (g_str_equal(key, "WiFi.CACertFile") == TRUE)
1792                 return network->wifi.ca_cert_path;
1793         else if (g_str_equal(key, "WiFi.ClientCertFile") == TRUE)
1794                 return network->wifi.client_cert_path;
1795         else if (g_str_equal(key, "WiFi.PrivateKeyFile") == TRUE)
1796                 return network->wifi.private_key_path;
1797         else if (g_str_equal(key, "WiFi.PrivateKeyPassphrase") == TRUE)
1798                 return network->wifi.private_key_passphrase;
1799         else if (g_str_equal(key, "WiFi.Phase2") == TRUE)
1800                 return network->wifi.phase2_auth;
1801         else if (g_str_equal(key, "WiFi.PinWPS") == TRUE)
1802                 return network->wifi.pin_wps;
1803
1804         return NULL;
1805 }
1806
1807 /**
1808  * connman_network_set_bool:
1809  * @network: network structure
1810  * @key: unique identifier
1811  * @value: boolean value
1812  *
1813  * Set boolean value for specific key
1814  */
1815 int connman_network_set_bool(struct connman_network *network,
1816                                         const char *key, connman_bool_t value)
1817 {
1818         DBG("network %p key %s value %d", network, key, value);
1819
1820         if (g_strcmp0(key, "Roaming") == 0)
1821                 network->roaming = value;
1822         else if (g_strcmp0(key, "WiFi.WPS") == 0)
1823                 network->wifi.wps = value;
1824         else if (g_strcmp0(key, "WiFi.UseWPS") == 0)
1825                 network->wifi.use_wps = value;
1826
1827         return -EINVAL;
1828 }
1829
1830 /**
1831  * connman_network_get_bool:
1832  * @network: network structure
1833  * @key: unique identifier
1834  *
1835  * Get boolean value for specific key
1836  */
1837 connman_bool_t connman_network_get_bool(struct connman_network *network,
1838                                                         const char *key)
1839 {
1840         DBG("network %p key %s", network, key);
1841
1842         if (g_str_equal(key, "Roaming") == TRUE)
1843                 return network->roaming;
1844         else if (g_str_equal(key, "WiFi.WPS") == TRUE)
1845                 return network->wifi.wps;
1846         else if (g_str_equal(key, "WiFi.UseWPS") == TRUE)
1847                 return network->wifi.use_wps;
1848
1849         return FALSE;
1850 }
1851
1852 /**
1853  * connman_network_set_blob:
1854  * @network: network structure
1855  * @key: unique identifier
1856  * @data: blob data
1857  * @size: blob size
1858  *
1859  * Set binary blob value for specific key
1860  */
1861 int connman_network_set_blob(struct connman_network *network,
1862                         const char *key, const void *data, unsigned int size)
1863 {
1864         DBG("network %p key %s size %d", network, key, size);
1865
1866         if (g_str_equal(key, "WiFi.SSID") == TRUE) {
1867                 g_free(network->wifi.ssid);
1868                 network->wifi.ssid = g_try_malloc(size);
1869                 if (network->wifi.ssid != NULL) {
1870                         memcpy(network->wifi.ssid, data, size);
1871                         network->wifi.ssid_len = size;
1872                 } else
1873                         network->wifi.ssid_len = 0;
1874         } else {
1875                 return -EINVAL;
1876         }
1877
1878         return 0;
1879 }
1880
1881 /**
1882  * connman_network_get_blob:
1883  * @network: network structure
1884  * @key: unique identifier
1885  * @size: pointer to blob size
1886  *
1887  * Get binary blob value for specific key
1888  */
1889 const void *connman_network_get_blob(struct connman_network *network,
1890                                         const char *key, unsigned int *size)
1891 {
1892         DBG("network %p key %s", network, key);
1893
1894         if (g_str_equal(key, "WiFi.SSID") == TRUE) {
1895                 if (size != NULL)
1896                         *size = network->wifi.ssid_len;
1897                 return network->wifi.ssid;
1898         }
1899
1900         return NULL;
1901 }
1902
1903 void __connman_network_set_device(struct connman_network *network,
1904                                         struct connman_device *device)
1905 {
1906         if (network->device == device)
1907                 return;
1908
1909         if (network->device != NULL)
1910                 network_remove(network);
1911
1912         network->device = device;
1913
1914         if (network->device != NULL)
1915                 network_probe(network);
1916 }
1917
1918 /**
1919  * connman_network_get_device:
1920  * @network: network structure
1921  *
1922  * Get parent device of network
1923  */
1924 struct connman_device *connman_network_get_device(struct connman_network *network)
1925 {
1926         return network->device;
1927 }
1928
1929 /**
1930  * connman_network_get_data:
1931  * @network: network structure
1932  *
1933  * Get private network data pointer
1934  */
1935 void *connman_network_get_data(struct connman_network *network)
1936 {
1937         return network->driver_data;
1938 }
1939
1940 /**
1941  * connman_network_set_data:
1942  * @network: network structure
1943  * @data: data pointer
1944  *
1945  * Set private network data pointer
1946  */
1947 void connman_network_set_data(struct connman_network *network, void *data)
1948 {
1949         network->driver_data = data;
1950 }
1951
1952 void connman_network_update(struct connman_network *network)
1953 {
1954         switch (network->type) {
1955         case CONNMAN_NETWORK_TYPE_UNKNOWN:
1956         case CONNMAN_NETWORK_TYPE_VENDOR:
1957                 return;
1958         case CONNMAN_NETWORK_TYPE_ETHERNET:
1959         case CONNMAN_NETWORK_TYPE_BLUETOOTH_PAN:
1960         case CONNMAN_NETWORK_TYPE_BLUETOOTH_DUN:
1961         case CONNMAN_NETWORK_TYPE_CELLULAR:
1962         case CONNMAN_NETWORK_TYPE_WIFI:
1963         case CONNMAN_NETWORK_TYPE_WIMAX:
1964                 break;
1965         }
1966
1967         if (network->group != NULL)
1968                 __connman_service_update_from_network(network);
1969 }
1970
1971 int __connman_network_init(void)
1972 {
1973         DBG("");
1974
1975         return 0;
1976 }
1977
1978 void __connman_network_cleanup(void)
1979 {
1980         DBG("");
1981 }