wireless.c 37 KB

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  1. /*
  2. * netifd - network interface daemon
  3. * Copyright (C) 2013 Felix Fietkau <nbd@openwrt.org>
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License version 2
  7. * as published by the Free Software Foundation
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. */
  14. #include <signal.h>
  15. #include "netifd.h"
  16. #include "wireless.h"
  17. #include "handler.h"
  18. #include "ubus.h"
  19. #define WIRELESS_SETUP_RETRY 3
  20. struct vlist_tree wireless_devices;
  21. struct avl_tree wireless_drivers;
  22. static struct blob_buf b;
  23. static int drv_fd;
  24. static LIST_HEAD(handlers);
  25. static bool handler_pending;
  26. enum {
  27. WDEV_ATTR_DISABLED,
  28. WDEV_ATTR_RECONF,
  29. WDEV_ATTR_SERIALIZE,
  30. __WDEV_ATTR_MAX,
  31. };
  32. static const struct blobmsg_policy wdev_policy[__WDEV_ATTR_MAX] = {
  33. [WDEV_ATTR_DISABLED] = { .name = "disabled", .type = BLOBMSG_TYPE_BOOL },
  34. [WDEV_ATTR_RECONF] = { .name = "reconf", .type = BLOBMSG_TYPE_BOOL },
  35. [WDEV_ATTR_SERIALIZE] = { .name = "serialize", .type = BLOBMSG_TYPE_BOOL },
  36. };
  37. static const struct uci_blob_param_list wdev_param = {
  38. .n_params = ARRAY_SIZE(wdev_policy),
  39. .params = wdev_policy,
  40. };
  41. enum {
  42. VIF_ATTR_DISABLED,
  43. VIF_ATTR_NETWORK,
  44. VIF_ATTR_ISOLATE,
  45. VIF_ATTR_MODE,
  46. __VIF_ATTR_MAX,
  47. };
  48. static const struct blobmsg_policy vif_policy[__VIF_ATTR_MAX] = {
  49. [VIF_ATTR_DISABLED] = { .name = "disabled", .type = BLOBMSG_TYPE_BOOL },
  50. [VIF_ATTR_NETWORK] = { .name = "network", .type = BLOBMSG_TYPE_ARRAY },
  51. [VIF_ATTR_ISOLATE] = { .name = "isolate", .type = BLOBMSG_TYPE_BOOL },
  52. [VIF_ATTR_MODE] = { .name = "mode", .type = BLOBMSG_TYPE_STRING },
  53. };
  54. static const struct uci_blob_param_list vif_param = {
  55. .n_params = ARRAY_SIZE(vif_policy),
  56. .params = vif_policy,
  57. };
  58. enum {
  59. VLAN_ATTR_DISABLED,
  60. VLAN_ATTR_NETWORK,
  61. VLAN_ATTR_ISOLATE,
  62. __VLAN_ATTR_MAX,
  63. };
  64. static const struct blobmsg_policy vlan_policy[__VLAN_ATTR_MAX] = {
  65. [VLAN_ATTR_DISABLED] = { .name = "disabled", .type = BLOBMSG_TYPE_BOOL },
  66. [VLAN_ATTR_NETWORK] = { .name = "network", .type = BLOBMSG_TYPE_ARRAY },
  67. [VLAN_ATTR_ISOLATE] = { .name = "isolate", .type = BLOBMSG_TYPE_BOOL },
  68. };
  69. static const struct uci_blob_param_list vlan_param = {
  70. .n_params = ARRAY_SIZE(vlan_policy),
  71. .params = vlan_policy,
  72. };
  73. enum {
  74. STA_ATTR_DISABLED,
  75. __STA_ATTR_MAX,
  76. };
  77. static const struct blobmsg_policy sta_policy[__STA_ATTR_MAX] = {
  78. [STA_ATTR_DISABLED] = { .name = "disabled", .type = BLOBMSG_TYPE_BOOL },
  79. };
  80. static const struct uci_blob_param_list station_param = {
  81. .n_params = ARRAY_SIZE(sta_policy),
  82. .params = sta_policy,
  83. };
  84. static void
  85. wireless_handler_stop(struct wireless_device *wdev)
  86. {
  87. if (wdev->handler_pending) {
  88. wdev->handler_pending = false;
  89. list_del(&wdev->handler);
  90. }
  91. }
  92. static void
  93. put_container(struct blob_buf *buf, struct blob_attr *attr, const char *name)
  94. {
  95. void *c = blobmsg_open_table(buf, name);
  96. blob_put_raw(buf, blob_data(attr), blob_len(attr));
  97. blobmsg_close_table(buf, c);
  98. }
  99. static void
  100. vif_config_add_bridge(struct blob_buf *buf, struct blob_attr *networks, bool prepare)
  101. {
  102. struct interface *iface;
  103. struct device *dev = NULL, *orig_dev;
  104. struct blob_attr *cur;
  105. const char *network;
  106. int rem;
  107. if (!networks)
  108. return;
  109. blobmsg_for_each_attr(cur, networks, rem) {
  110. network = blobmsg_data(cur);
  111. iface = vlist_find(&interfaces, network, iface, node);
  112. if (!iface)
  113. continue;
  114. dev = iface->main_dev.dev;
  115. if (!dev)
  116. return;
  117. if (!dev->hotplug_ops)
  118. return;
  119. }
  120. if (!dev)
  121. return;
  122. orig_dev = dev;
  123. if (dev->hotplug_ops && dev->hotplug_ops->prepare)
  124. dev->hotplug_ops->prepare(dev, &dev);
  125. if (!dev || !dev->type->bridge_capability)
  126. return;
  127. blobmsg_add_string(buf, "bridge", dev->ifname);
  128. blobmsg_add_string(buf, "bridge-ifname", orig_dev->ifname);
  129. if (dev->settings.flags & DEV_OPT_MULTICAST_TO_UNICAST)
  130. blobmsg_add_u8(buf, "multicast_to_unicast",
  131. dev->settings.multicast_to_unicast);
  132. }
  133. static void
  134. prepare_config(struct wireless_device *wdev, struct blob_buf *buf, bool up)
  135. {
  136. struct wireless_interface *vif;
  137. struct wireless_vlan *vlan;
  138. struct wireless_station *sta;
  139. void *l, *i, *j, *k;
  140. blob_buf_init(&b, 0);
  141. put_container(&b, wdev->config, "config");
  142. if (wdev->data)
  143. blobmsg_add_blob(&b, wdev->data);
  144. l = blobmsg_open_table(&b, "interfaces");
  145. vlist_for_each_element(&wdev->interfaces, vif, node) {
  146. i = blobmsg_open_table(&b, vif->name);
  147. vif_config_add_bridge(&b, vif->network, up);
  148. put_container(&b, vif->config, "config");
  149. if (vif->data)
  150. blobmsg_add_blob(&b, vif->data);
  151. j = blobmsg_open_table(&b, "vlans");
  152. vlist_for_each_element(&wdev->vlans, vlan, node) {
  153. if (strcmp(vlan->vif, vif->name))
  154. continue;
  155. k = blobmsg_open_table(&b, vlan->name);
  156. vif_config_add_bridge(&b, vlan->network, up);
  157. put_container(&b, vlan->config, "config");
  158. if (vlan->data)
  159. blobmsg_add_blob(&b, vlan->data);
  160. blobmsg_close_table(&b, k);
  161. }
  162. blobmsg_close_table(&b, j);
  163. j = blobmsg_open_table(&b, "stas");
  164. vlist_for_each_element(&wdev->stations, sta, node) {
  165. if (strcmp(sta->vif, vif->name))
  166. continue;
  167. k = blobmsg_open_table(&b, sta->name);
  168. put_container(&b, sta->config, "config");
  169. if (sta->data)
  170. blobmsg_add_blob(&b, sta->data);
  171. blobmsg_close_table(&b, k);
  172. }
  173. blobmsg_close_table(&b, j);
  174. blobmsg_close_table(&b, i);
  175. }
  176. blobmsg_close_table(&b, l);
  177. }
  178. static bool
  179. wireless_process_check(struct wireless_process *proc)
  180. {
  181. return check_pid_path(proc->pid, proc->exe);
  182. }
  183. static void
  184. wireless_complete_kill_request(struct wireless_device *wdev)
  185. {
  186. if (!wdev->kill_request)
  187. return;
  188. ubus_complete_deferred_request(ubus_ctx, wdev->kill_request, 0);
  189. free(wdev->kill_request);
  190. wdev->kill_request = NULL;
  191. }
  192. static void
  193. wireless_process_free(struct wireless_device *wdev, struct wireless_process *proc)
  194. {
  195. D(WIRELESS, "Wireless device '%s' free pid %d\n", wdev->name, proc->pid);
  196. list_del(&proc->list);
  197. free(proc);
  198. if (list_empty(&wdev->script_proc))
  199. wireless_complete_kill_request(wdev);
  200. }
  201. static void
  202. wireless_close_script_proc_fd(struct wireless_device *wdev)
  203. {
  204. if (wdev->script_proc_fd.fd < 0)
  205. return;
  206. uloop_fd_delete(&wdev->script_proc_fd);
  207. close(wdev->script_proc_fd.fd);
  208. wdev->script_proc_fd.fd = -1;
  209. }
  210. static void
  211. wireless_process_kill_all(struct wireless_device *wdev, int signal, bool free)
  212. {
  213. struct wireless_process *proc, *tmp;
  214. list_for_each_entry_safe(proc, tmp, &wdev->script_proc, list) {
  215. bool check = wireless_process_check(proc);
  216. if (check && !proc->keep) {
  217. D(WIRELESS, "Wireless device '%s' kill pid %d\n", wdev->name, proc->pid);
  218. kill(proc->pid, signal);
  219. }
  220. if (free || !check)
  221. wireless_process_free(wdev, proc);
  222. }
  223. if (free)
  224. wireless_close_script_proc_fd(wdev);
  225. }
  226. static void
  227. wireless_device_free_state(struct wireless_device *wdev)
  228. {
  229. struct wireless_interface *vif;
  230. struct wireless_vlan *vlan;
  231. struct wireless_station *sta;
  232. wireless_handler_stop(wdev);
  233. uloop_timeout_cancel(&wdev->script_check);
  234. uloop_timeout_cancel(&wdev->timeout);
  235. wireless_complete_kill_request(wdev);
  236. free(wdev->data);
  237. wdev->data = NULL;
  238. vlist_for_each_element(&wdev->interfaces, vif, node) {
  239. free(vif->data);
  240. vif->data = NULL;
  241. vif->ifname = NULL;
  242. }
  243. vlist_for_each_element(&wdev->vlans, vlan, node) {
  244. free(vlan->data);
  245. vlan->data = NULL;
  246. vlan->ifname = NULL;
  247. }
  248. vlist_for_each_element(&wdev->stations, sta, node) {
  249. free(sta->data);
  250. sta->data = NULL;
  251. }
  252. }
  253. static void wireless_interface_handle_link(struct wireless_interface *vif, bool up)
  254. {
  255. struct interface *iface;
  256. struct blob_attr *cur;
  257. const char *network;
  258. int rem;
  259. if (!vif->network || !vif->ifname)
  260. return;
  261. if (up) {
  262. struct device *dev = device_get(vif->ifname, 2);
  263. if (dev) {
  264. dev->wireless_isolate = vif->isolate;
  265. dev->wireless = true;
  266. dev->wireless_ap = vif->ap_mode;
  267. }
  268. }
  269. blobmsg_for_each_attr(cur, vif->network, rem) {
  270. network = blobmsg_data(cur);
  271. iface = vlist_find(&interfaces, network, iface, node);
  272. if (!iface)
  273. continue;
  274. interface_handle_link(iface, vif->ifname, NULL, up, true);
  275. }
  276. }
  277. static void wireless_vlan_handle_link(struct wireless_vlan *vlan, bool up)
  278. {
  279. struct interface *iface;
  280. struct blob_attr *cur;
  281. const char *network;
  282. int rem;
  283. if (!vlan->network || !vlan->ifname)
  284. return;
  285. if (up) {
  286. struct device *dev = device_get(vlan->ifname, 2);
  287. if (dev) {
  288. dev->wireless_isolate = vlan->isolate;
  289. dev->wireless = true;
  290. dev->wireless_ap = true;
  291. }
  292. }
  293. blobmsg_for_each_attr(cur, vlan->network, rem) {
  294. network = blobmsg_data(cur);
  295. iface = vlist_find(&interfaces, network, iface, node);
  296. if (!iface)
  297. continue;
  298. interface_handle_link(iface, vlan->ifname, NULL, up, true);
  299. }
  300. }
  301. static void
  302. wireless_device_setup_cancel(struct wireless_device *wdev)
  303. {
  304. if (wdev->cancel)
  305. return;
  306. wireless_handler_stop(wdev);
  307. D(WIRELESS, "Cancel wireless device '%s' setup\n", wdev->name);
  308. wdev->cancel = true;
  309. uloop_timeout_set(&wdev->timeout, 10 * 1000);
  310. }
  311. static void
  312. wireless_device_run_handler(struct wireless_device *wdev, bool up)
  313. {
  314. const char *action = up ? "setup" : "teardown";
  315. const char *argv[6];
  316. char *config;
  317. int i = 0;
  318. int fds[2] = { -1, -1 };
  319. wireless_handler_stop(wdev);
  320. if (handler_pending && wdev->serialize) {
  321. wdev->handler_action = up;
  322. wdev->handler_pending = true;
  323. list_add_tail(&wdev->handler, &handlers);
  324. return;
  325. }
  326. if (wdev->serialize)
  327. handler_pending = true;
  328. D(WIRELESS, "Wireless device '%s' run %s handler\n", wdev->name, action);
  329. if (!up && wdev->prev_config) {
  330. config = blobmsg_format_json(wdev->prev_config, true);
  331. free(wdev->prev_config);
  332. wdev->prev_config = NULL;
  333. } else {
  334. prepare_config(wdev, &b, up);
  335. config = blobmsg_format_json(b.head, true);
  336. }
  337. argv[i++] = wdev->drv->script;
  338. argv[i++] = wdev->drv->name;
  339. argv[i++] = action;
  340. argv[i++] = wdev->name;
  341. argv[i++] = config;
  342. argv[i] = NULL;
  343. if (up && pipe(fds) == 0) {
  344. wdev->script_proc_fd.fd = fds[0];
  345. uloop_fd_add(&wdev->script_proc_fd,
  346. ULOOP_READ | ULOOP_EDGE_TRIGGER);
  347. }
  348. netifd_start_process(argv, NULL, &wdev->script_task);
  349. if (fds[1] >= 0)
  350. close(fds[1]);
  351. free(config);
  352. }
  353. static void
  354. wireless_handler_next(void)
  355. {
  356. struct wireless_device *wdev;
  357. if (handler_pending)
  358. return;
  359. if (list_empty(&handlers))
  360. return;
  361. wdev = list_first_entry(&handlers, struct wireless_device, handler);
  362. list_del(&wdev->handler);
  363. wdev->handler_pending = false;
  364. wireless_device_run_handler(wdev, wdev->handler_action);
  365. }
  366. static void
  367. __wireless_device_set_up(struct wireless_device *wdev, int force)
  368. {
  369. if (wdev->disabled)
  370. return;
  371. if (wdev->retry_setup_failed)
  372. return;
  373. if (!wdev->autostart)
  374. return;
  375. if (!force && (wdev->state != IFS_DOWN || config_init))
  376. return;
  377. free(wdev->prev_config);
  378. wdev->prev_config = NULL;
  379. wdev->state = IFS_SETUP;
  380. wireless_device_run_handler(wdev, true);
  381. }
  382. static void
  383. wireless_device_free(struct wireless_device *wdev)
  384. {
  385. wireless_handler_stop(wdev);
  386. vlist_flush_all(&wdev->interfaces);
  387. vlist_flush_all(&wdev->vlans);
  388. vlist_flush_all(&wdev->stations);
  389. avl_delete(&wireless_devices.avl, &wdev->node.avl);
  390. free(wdev->config);
  391. free(wdev->prev_config);
  392. free(wdev);
  393. }
  394. static void
  395. wdev_handle_config_change(struct wireless_device *wdev)
  396. {
  397. enum interface_config_state state = wdev->config_state;
  398. switch(state) {
  399. case IFC_NORMAL:
  400. case IFC_RELOAD:
  401. __wireless_device_set_up(wdev, 0);
  402. wdev->config_state = IFC_NORMAL;
  403. break;
  404. case IFC_REMOVE:
  405. wireless_device_free(wdev);
  406. break;
  407. }
  408. }
  409. static void
  410. wireless_device_mark_down(struct wireless_device *wdev)
  411. {
  412. struct wireless_interface *vif;
  413. struct wireless_vlan *vlan;
  414. D(WIRELESS, "Wireless device '%s' is now down\n", wdev->name);
  415. vlist_for_each_element(&wdev->vlans, vlan, node)
  416. wireless_vlan_handle_link(vlan, false);
  417. vlist_for_each_element(&wdev->interfaces, vif, node)
  418. wireless_interface_handle_link(vif, false);
  419. wireless_process_kill_all(wdev, SIGTERM, true);
  420. wdev->cancel = false;
  421. wdev->state = IFS_DOWN;
  422. wireless_device_free_state(wdev);
  423. wdev_handle_config_change(wdev);
  424. }
  425. static void
  426. wireless_device_setup_timeout(struct uloop_timeout *timeout)
  427. {
  428. struct wireless_device *wdev = container_of(timeout, struct wireless_device, timeout);
  429. if (wdev->handler_pending) {
  430. wdev->handler_pending = false;
  431. list_del(&wdev->handler);
  432. }
  433. netifd_kill_process(&wdev->script_task);
  434. wdev->script_task.cb(&wdev->script_task, -1);
  435. wireless_device_mark_down(wdev);
  436. }
  437. void
  438. wireless_device_set_up(struct wireless_device *wdev)
  439. {
  440. wdev->retry = WIRELESS_SETUP_RETRY;
  441. wdev->autostart = true;
  442. __wireless_device_set_up(wdev, 0);
  443. }
  444. void
  445. wireless_device_reconf(struct wireless_device *wdev)
  446. {
  447. wdev->retry = WIRELESS_SETUP_RETRY;
  448. wdev->autostart = true;
  449. __wireless_device_set_up(wdev, wdev->reconf && (wdev->state == IFS_UP));
  450. }
  451. static void
  452. __wireless_device_set_down(struct wireless_device *wdev)
  453. {
  454. if (wdev->state == IFS_TEARDOWN || wdev->state == IFS_DOWN)
  455. return;
  456. if (wdev->script_task.uloop.pending) {
  457. wireless_device_setup_cancel(wdev);
  458. return;
  459. }
  460. wdev->state = IFS_TEARDOWN;
  461. wireless_device_run_handler(wdev, false);
  462. }
  463. static void
  464. wireless_device_mark_up(struct wireless_device *wdev)
  465. {
  466. struct wireless_interface *vif;
  467. struct wireless_vlan *vlan;
  468. if (wdev->cancel) {
  469. wdev->cancel = false;
  470. __wireless_device_set_down(wdev);
  471. return;
  472. }
  473. D(WIRELESS, "Wireless device '%s' is now up\n", wdev->name);
  474. wdev->state = IFS_UP;
  475. vlist_for_each_element(&wdev->interfaces, vif, node)
  476. wireless_interface_handle_link(vif, true);
  477. vlist_for_each_element(&wdev->vlans, vlan, node)
  478. wireless_vlan_handle_link(vlan, true);
  479. }
  480. static void
  481. wireless_device_retry_setup(struct wireless_device *wdev)
  482. {
  483. if (wdev->state == IFS_TEARDOWN || wdev->state == IFS_DOWN || wdev->cancel)
  484. return;
  485. if (--wdev->retry < 0)
  486. wdev->retry_setup_failed = true;
  487. __wireless_device_set_down(wdev);
  488. }
  489. static void
  490. wireless_device_script_task_cb(struct netifd_process *proc, int ret)
  491. {
  492. struct wireless_device *wdev = container_of(proc, struct wireless_device, script_task);
  493. switch (wdev->state) {
  494. case IFS_SETUP:
  495. wireless_device_retry_setup(wdev);
  496. break;
  497. case IFS_TEARDOWN:
  498. wireless_device_mark_down(wdev);
  499. break;
  500. default:
  501. break;
  502. }
  503. if (wdev->serialize) {
  504. handler_pending = false;
  505. wireless_handler_next();
  506. }
  507. }
  508. void
  509. wireless_device_set_down(struct wireless_device *wdev)
  510. {
  511. wdev->retry_setup_failed = false;
  512. wdev->autostart = false;
  513. __wireless_device_set_down(wdev);
  514. }
  515. static void
  516. wdev_set_config_state(struct wireless_device *wdev, enum interface_config_state s)
  517. {
  518. if (wdev->config_state != IFC_NORMAL)
  519. return;
  520. wdev->config_state = s;
  521. if (wdev->state == IFS_DOWN)
  522. wdev_handle_config_change(wdev);
  523. else if (!wdev->reconf || wdev->state != IFS_UP)
  524. __wireless_device_set_down(wdev);
  525. }
  526. static void
  527. wdev_prepare_prev_config(struct wireless_device *wdev)
  528. {
  529. if (wdev->prev_config)
  530. return;
  531. prepare_config(wdev, &b, false);
  532. wdev->prev_config = blob_memdup(b.head);
  533. }
  534. static void
  535. wdev_change_config(struct wireless_device *wdev, struct wireless_device *wd_new)
  536. {
  537. struct blob_attr *new_config = wd_new->config;
  538. bool disabled = wd_new->disabled;
  539. free(wd_new);
  540. wdev_prepare_prev_config(wdev);
  541. if (blob_attr_equal(wdev->config, new_config) && wdev->disabled == disabled)
  542. return;
  543. D(WIRELESS, "Update configuration of wireless device '%s'\n", wdev->name);
  544. free(wdev->config);
  545. wdev->config = blob_memdup(new_config);
  546. wdev->disabled = disabled;
  547. wdev->retry_setup_failed = false;
  548. wdev_set_config_state(wdev, IFC_RELOAD);
  549. }
  550. static void
  551. wdev_create(struct wireless_device *wdev)
  552. {
  553. wdev->retry = WIRELESS_SETUP_RETRY;
  554. wdev->config = blob_memdup(wdev->config);
  555. }
  556. static void
  557. wdev_update(struct vlist_tree *tree, struct vlist_node *node_new,
  558. struct vlist_node *node_old)
  559. {
  560. struct wireless_device *wd_old = container_of(node_old, struct wireless_device, node);
  561. struct wireless_device *wd_new = container_of(node_new, struct wireless_device, node);
  562. if (wd_old && wd_new) {
  563. D(WIRELESS, "Update wireless device '%s'\n", wd_old->name);
  564. wdev_change_config(wd_old, wd_new);
  565. } else if (wd_old) {
  566. D(WIRELESS, "Delete wireless device '%s'\n", wd_old->name);
  567. wdev_set_config_state(wd_old, IFC_REMOVE);
  568. } else if (wd_new) {
  569. D(WIRELESS, "Create wireless device '%s'\n", wd_new->name);
  570. wdev_create(wd_new);
  571. }
  572. }
  573. static void
  574. wireless_add_handler(const char *script, const char *name, json_object *obj)
  575. {
  576. struct wireless_driver *drv;
  577. char *name_str, *script_str;
  578. json_object *dev_config_obj, *iface_config_obj, *vlan_config_obj, *station_config_obj;
  579. struct uci_blob_param_list *dev_config, *iface_config, *vlan_config, *station_config;
  580. dev_config_obj = json_get_field(obj, "device", json_type_array);
  581. iface_config_obj = json_get_field(obj, "iface", json_type_array);
  582. vlan_config_obj = json_get_field(obj, "vlan", json_type_array);
  583. station_config_obj = json_get_field(obj, "station", json_type_array);
  584. if (!dev_config_obj || !iface_config_obj || !vlan_config_obj || !station_config_obj)
  585. return;
  586. drv = calloc_a(sizeof(*drv),
  587. &dev_config, sizeof(*dev_config) + sizeof(void *),
  588. &iface_config, sizeof(*iface_config) + sizeof(void *),
  589. &vlan_config, sizeof(*vlan_config) + sizeof(void *),
  590. &station_config, sizeof(*station_config) + sizeof(void *),
  591. &name_str, strlen(name) + 1,
  592. &script_str, strlen(script) + 1);
  593. drv->name = strcpy(name_str, name);
  594. drv->script = strcpy(script_str, script);
  595. dev_config->n_next = 1;
  596. dev_config->next[0] = &wdev_param;
  597. drv->device.config = dev_config;
  598. iface_config->n_next = 1;
  599. iface_config->next[0] = &vif_param;
  600. drv->interface.config = iface_config;
  601. vlan_config->n_next = 1;
  602. vlan_config->next[0] = &vlan_param;
  603. drv->vlan.config = vlan_config;
  604. station_config->n_next = 1;
  605. station_config->next[0] = &station_param;
  606. drv->station.config = station_config;
  607. drv->device.buf = netifd_handler_parse_config(drv->device.config, dev_config_obj);
  608. drv->interface.buf = netifd_handler_parse_config(drv->interface.config, iface_config_obj);
  609. drv->vlan.buf = netifd_handler_parse_config(drv->vlan.config, vlan_config_obj);
  610. drv->station.buf = netifd_handler_parse_config(drv->station.config, station_config_obj);
  611. drv->node.key = drv->name;
  612. avl_insert(&wireless_drivers, &drv->node);
  613. D(WIRELESS, "Add handler for script %s: %s\n", script, name);
  614. }
  615. void wireless_init(void)
  616. {
  617. vlist_init(&wireless_devices, avl_strcmp, wdev_update);
  618. wireless_devices.keep_old = true;
  619. wireless_devices.no_delete = true;
  620. avl_init(&wireless_drivers, avl_strcmp, false, NULL);
  621. drv_fd = netifd_open_subdir("wireless");
  622. if (drv_fd < 0)
  623. return;
  624. netifd_init_script_handlers(drv_fd, wireless_add_handler);
  625. }
  626. static void
  627. wireless_interface_init_config(struct wireless_interface *vif)
  628. {
  629. struct blob_attr *tb[__VIF_ATTR_MAX];
  630. struct blob_attr *cur;
  631. vif->network = NULL;
  632. blobmsg_parse(vif_policy, __VIF_ATTR_MAX, tb, blob_data(vif->config), blob_len(vif->config));
  633. if ((cur = tb[VIF_ATTR_NETWORK]))
  634. vif->network = cur;
  635. cur = tb[VIF_ATTR_ISOLATE];
  636. if (cur)
  637. vif->isolate = blobmsg_get_bool(cur);
  638. cur = tb[VIF_ATTR_MODE];
  639. if (cur)
  640. vif->ap_mode = !strcmp(blobmsg_get_string(cur), "ap");
  641. }
  642. static void
  643. vif_update(struct vlist_tree *tree, struct vlist_node *node_new,
  644. struct vlist_node *node_old)
  645. {
  646. struct wireless_interface *vif_old = container_of(node_old, struct wireless_interface, node);
  647. struct wireless_interface *vif_new = container_of(node_new, struct wireless_interface, node);
  648. struct wireless_device *wdev;
  649. if (vif_old)
  650. wdev = vif_old->wdev;
  651. else
  652. wdev = vif_new->wdev;
  653. if (vif_old && vif_new) {
  654. free((void *) vif_old->section);
  655. vif_old->section = strdup(vif_new->section);
  656. if (blob_attr_equal(vif_old->config, vif_new->config)) {
  657. free(vif_new);
  658. return;
  659. }
  660. D(WIRELESS, "Update wireless interface %s on device %s\n", vif_new->name, wdev->name);
  661. wireless_interface_handle_link(vif_old, false);
  662. free(vif_old->config);
  663. vif_old->config = blob_memdup(vif_new->config);
  664. vif_old->isolate = vif_new->isolate;
  665. vif_old->ap_mode = vif_new->ap_mode;
  666. wireless_interface_init_config(vif_old);
  667. free(vif_new);
  668. } else if (vif_new) {
  669. D(WIRELESS, "Create new wireless interface %s on device %s\n", vif_new->name, wdev->name);
  670. vif_new->section = strdup(vif_new->section);
  671. vif_new->config = blob_memdup(vif_new->config);
  672. wireless_interface_init_config(vif_new);
  673. } else if (vif_old) {
  674. D(WIRELESS, "Delete wireless interface %s on device %s\n", vif_old->name, wdev->name);
  675. wireless_interface_handle_link(vif_old, false);
  676. free((void *) vif_old->section);
  677. free(vif_old->config);
  678. free(vif_old);
  679. }
  680. wdev_set_config_state(wdev, IFC_RELOAD);
  681. }
  682. static void
  683. wireless_vlan_init_config(struct wireless_vlan *vlan)
  684. {
  685. struct blob_attr *tb[__VLAN_ATTR_MAX];
  686. struct blob_attr *cur;
  687. vlan->network = NULL;
  688. blobmsg_parse(vlan_policy, __VLAN_ATTR_MAX, tb, blob_data(vlan->config), blob_len(vlan->config));
  689. if ((cur = tb[VLAN_ATTR_NETWORK]))
  690. vlan->network = cur;
  691. cur = tb[VLAN_ATTR_ISOLATE];
  692. if (cur)
  693. vlan->isolate = blobmsg_get_bool(cur);
  694. }
  695. static void
  696. vlan_update(struct vlist_tree *tree, struct vlist_node *node_new,
  697. struct vlist_node *node_old)
  698. {
  699. struct wireless_vlan *vlan_old = container_of(node_old, struct wireless_vlan, node);
  700. struct wireless_vlan *vlan_new = container_of(node_new, struct wireless_vlan, node);
  701. struct wireless_device *wdev;
  702. if (vlan_old)
  703. wdev = vlan_old->wdev;
  704. else
  705. wdev = vlan_new->wdev;
  706. if (vlan_old && vlan_new) {
  707. free((void *) vlan_old->section);
  708. vlan_old->section = strdup(vlan_new->section);
  709. if (blob_attr_equal(vlan_old->config, vlan_new->config)) {
  710. free(vlan_new);
  711. return;
  712. }
  713. D(WIRELESS, "Update wireless vlan %s on device %s\n", vlan_new->name, wdev->name);
  714. wireless_vlan_handle_link(vlan_old, false);
  715. free(vlan_old->config);
  716. vlan_old->config = blob_memdup(vlan_new->config);
  717. vlan_old->isolate = vlan_new->isolate;
  718. wireless_vlan_init_config(vlan_old);
  719. free(vlan_new);
  720. } else if (vlan_new) {
  721. D(WIRELESS, "Create new wireless vlan %s on device %s\n", vlan_new->name, wdev->name);
  722. vlan_new->section = strdup(vlan_new->section);
  723. vlan_new->config = blob_memdup(vlan_new->config);
  724. wireless_vlan_init_config(vlan_new);
  725. } else if (vlan_old) {
  726. D(WIRELESS, "Delete wireless interface %s on device %s\n", vlan_old->name, wdev->name);
  727. wireless_vlan_handle_link(vlan_old, false);
  728. free((void *) vlan_old->section);
  729. free(vlan_old->config);
  730. free(vlan_old);
  731. }
  732. wdev_set_config_state(wdev, IFC_RELOAD);
  733. }
  734. static void
  735. station_update(struct vlist_tree *tree, struct vlist_node *node_new,
  736. struct vlist_node *node_old)
  737. {
  738. struct wireless_station *sta_old = container_of(node_old, struct wireless_station, node);
  739. struct wireless_station *sta_new = container_of(node_new, struct wireless_station, node);
  740. struct wireless_device *wdev;
  741. if (sta_old)
  742. wdev = sta_old->wdev;
  743. else
  744. wdev = sta_new->wdev;
  745. if (sta_old && sta_new) {
  746. free((void *) sta_old->section);
  747. sta_old->section = strdup(sta_new->section);
  748. if (blob_attr_equal(sta_old->config, sta_new->config)) {
  749. free(sta_new);
  750. return;
  751. }
  752. D(WIRELESS, "Update wireless station %s on device %s\n", sta_new->name, wdev->name);
  753. free(sta_old->config);
  754. sta_old->config = blob_memdup(sta_new->config);
  755. free(sta_new);
  756. } else if (sta_new) {
  757. D(WIRELESS, "Create new wireless station %s on device %s\n", sta_new->name, wdev->name);
  758. sta_new->section = strdup(sta_new->section);
  759. sta_new->config = blob_memdup(sta_new->config);
  760. } else if (sta_old) {
  761. D(WIRELESS, "Delete wireless station %s on device %s\n", sta_old->name, wdev->name);
  762. free((void *) sta_old->section);
  763. free(sta_old->config);
  764. free(sta_old);
  765. }
  766. wdev_set_config_state(wdev, IFC_RELOAD);
  767. }
  768. static void
  769. wireless_proc_poll_fd(struct uloop_fd *fd, unsigned int events)
  770. {
  771. struct wireless_device *wdev = container_of(fd, struct wireless_device, script_proc_fd);
  772. char buf[128];
  773. while (1) {
  774. int b = read(fd->fd, buf, sizeof(buf));
  775. if (b < 0) {
  776. if (errno == EINTR)
  777. continue;
  778. if (errno == EAGAIN)
  779. return;
  780. goto done;
  781. }
  782. if (!b)
  783. goto done;
  784. }
  785. done:
  786. uloop_timeout_set(&wdev->script_check, 0);
  787. wireless_close_script_proc_fd(wdev);
  788. }
  789. static void
  790. wireless_device_check_script_tasks(struct uloop_timeout *timeout)
  791. {
  792. struct wireless_device *wdev = container_of(timeout, struct wireless_device, script_check);
  793. struct wireless_process *proc, *tmp;
  794. bool restart = false;
  795. list_for_each_entry_safe(proc, tmp, &wdev->script_proc, list) {
  796. if (wireless_process_check(proc))
  797. continue;
  798. D(WIRELESS, "Wireless device '%s' pid %d has terminated\n", wdev->name, proc->pid);
  799. if (proc->required)
  800. restart = true;
  801. wireless_process_free(wdev, proc);
  802. }
  803. if (restart)
  804. wireless_device_retry_setup(wdev);
  805. else
  806. uloop_timeout_set(&wdev->script_check, 1000);
  807. }
  808. void
  809. wireless_device_create(struct wireless_driver *drv, const char *name, struct blob_attr *data)
  810. {
  811. struct wireless_device *wdev;
  812. char *name_buf;
  813. struct blob_attr *tb[__WDEV_ATTR_MAX];
  814. struct blob_attr *cur;
  815. blobmsg_parse(wdev_policy, __WDEV_ATTR_MAX, tb, blob_data(data), blob_len(data));
  816. wdev = calloc_a(sizeof(*wdev), &name_buf, strlen(name) + 1);
  817. cur = tb[WDEV_ATTR_DISABLED];
  818. wdev->disabled = cur && blobmsg_get_bool(cur);
  819. wdev->drv = drv;
  820. wdev->state = IFS_DOWN;
  821. wdev->config_state = IFC_NORMAL;
  822. wdev->name = strcpy(name_buf, name);
  823. wdev->config = data;
  824. wdev->handler_pending = false;
  825. cur = tb[WDEV_ATTR_SERIALIZE];
  826. wdev->serialize = cur && blobmsg_get_bool(cur);
  827. cur = tb[WDEV_ATTR_RECONF];
  828. wdev->reconf = cur && blobmsg_get_bool(cur);
  829. wdev->retry_setup_failed = false;
  830. wdev->autostart = true;
  831. INIT_LIST_HEAD(&wdev->script_proc);
  832. vlist_init(&wdev->interfaces, avl_strcmp, vif_update);
  833. wdev->interfaces.keep_old = true;
  834. vlist_init(&wdev->vlans, avl_strcmp, vlan_update);
  835. wdev->vlans.keep_old = true;
  836. vlist_init(&wdev->stations, avl_strcmp, station_update);
  837. wdev->stations.keep_old = true;
  838. wdev->timeout.cb = wireless_device_setup_timeout;
  839. wdev->script_task.cb = wireless_device_script_task_cb;
  840. wdev->script_task.dir_fd = drv_fd;
  841. wdev->script_task.log_prefix = wdev->name;
  842. wdev->script_proc_fd.fd = -1;
  843. wdev->script_proc_fd.cb = wireless_proc_poll_fd;
  844. wdev->script_check.cb = wireless_device_check_script_tasks;
  845. vlist_add(&wireless_devices, &wdev->node, wdev->name);
  846. }
  847. void
  848. wireless_station_create(struct wireless_device *wdev, char *vif, struct blob_attr *data, const char *section)
  849. {
  850. struct wireless_station *sta;
  851. struct blob_attr *tb[__STA_ATTR_MAX];
  852. struct blob_attr *cur;
  853. char *name_buf, *vif_buf;
  854. char name[8];
  855. blobmsg_parse(sta_policy, __STA_ATTR_MAX, tb, blob_data(data), blob_len(data));
  856. cur = tb[STA_ATTR_DISABLED];
  857. if (cur && blobmsg_get_bool(cur))
  858. return;
  859. sprintf(name, "%d", wdev->vlan_idx++);
  860. sta = calloc_a(sizeof(*sta),
  861. &name_buf, strlen(name) + 1,
  862. &vif_buf, strlen(vif) + 1);
  863. sta->name = strcpy(name_buf, name);
  864. sta->vif = strcpy(vif_buf, vif);
  865. sta->wdev = wdev;
  866. sta->config = data;
  867. sta->section = section;
  868. vlist_add(&wdev->stations, &sta->node, sta->name);
  869. }
  870. static void
  871. wireless_station_status(struct wireless_station *sta, struct blob_buf *b)
  872. {
  873. void *i;
  874. i = blobmsg_open_table(b, NULL);
  875. if (sta->section)
  876. blobmsg_add_string(b, "section", sta->section);
  877. put_container(b, sta->config, "config");
  878. blobmsg_close_table(b, i);
  879. }
  880. void
  881. wireless_vlan_create(struct wireless_device *wdev, char *vif, struct blob_attr *data, const char *section)
  882. {
  883. struct wireless_vlan *vlan;
  884. struct blob_attr *tb[__VLAN_ATTR_MAX];
  885. struct blob_attr *cur;
  886. char *name_buf, *vif_buf;
  887. char name[8];
  888. blobmsg_parse(vlan_policy, __VLAN_ATTR_MAX, tb, blob_data(data), blob_len(data));
  889. cur = tb[VLAN_ATTR_DISABLED];
  890. if (cur && blobmsg_get_bool(cur))
  891. return;
  892. sprintf(name, "%d", wdev->vlan_idx++);
  893. vlan = calloc_a(sizeof(*vlan),
  894. &name_buf, strlen(name) + 1,
  895. &vif_buf, strlen(vif) + 1);
  896. vlan->name = strcpy(name_buf, name);
  897. vlan->vif = strcpy(vif_buf, vif);
  898. vlan->wdev = wdev;
  899. vlan->config = data;
  900. vlan->section = section;
  901. vlan->isolate = false;
  902. vlist_add(&wdev->vlans, &vlan->node, vlan->name);
  903. }
  904. static void
  905. wireless_vlan_status(struct wireless_vlan *vlan, struct blob_buf *b)
  906. {
  907. void *i;
  908. i = blobmsg_open_table(b, NULL);
  909. if (vlan->section)
  910. blobmsg_add_string(b, "section", vlan->section);
  911. if (vlan->ifname)
  912. blobmsg_add_string(b, "ifname", vlan->ifname);
  913. put_container(b, vlan->config, "config");
  914. blobmsg_close_table(b, i);
  915. }
  916. struct wireless_interface* wireless_interface_create(struct wireless_device *wdev, struct blob_attr *data, const char *section)
  917. {
  918. struct wireless_interface *vif;
  919. struct blob_attr *tb[__VIF_ATTR_MAX];
  920. struct blob_attr *cur;
  921. char *name_buf;
  922. char name[8];
  923. blobmsg_parse(vif_policy, __VIF_ATTR_MAX, tb, blob_data(data), blob_len(data));
  924. cur = tb[VIF_ATTR_DISABLED];
  925. if (cur && blobmsg_get_bool(cur))
  926. return NULL;
  927. sprintf(name, "%d", wdev->vif_idx++);
  928. vif = calloc_a(sizeof(*vif),
  929. &name_buf, strlen(name) + 1);
  930. vif->name = strcpy(name_buf, name);
  931. vif->wdev = wdev;
  932. vif->config = data;
  933. vif->section = section;
  934. vif->isolate = false;
  935. vlist_add(&wdev->interfaces, &vif->node, vif->name);
  936. return vlist_find(&wdev->interfaces, name, vif, node);
  937. }
  938. static void
  939. wireless_interface_status(struct wireless_interface *iface, struct blob_buf *b)
  940. {
  941. struct wireless_vlan *vlan;
  942. struct wireless_station *sta;
  943. void *i, *j;
  944. i = blobmsg_open_table(b, NULL);
  945. if (iface->section)
  946. blobmsg_add_string(b, "section", iface->section);
  947. if (iface->ifname)
  948. blobmsg_add_string(b, "ifname", iface->ifname);
  949. put_container(b, iface->config, "config");
  950. j = blobmsg_open_array(b, "vlans");
  951. vlist_for_each_element(&iface->wdev->vlans, vlan, node)
  952. if (!strcmp(iface->name, vlan->vif))
  953. wireless_vlan_status(vlan, b);
  954. blobmsg_close_array(b, j);
  955. j = blobmsg_open_array(b, "stations");
  956. vlist_for_each_element(&iface->wdev->stations, sta, node)
  957. if (!strcmp(iface->name, sta->vif))
  958. wireless_station_status(sta, b);
  959. blobmsg_close_array(b, j);
  960. blobmsg_close_table(b, i);
  961. }
  962. void
  963. wireless_device_status(struct wireless_device *wdev, struct blob_buf *b)
  964. {
  965. struct wireless_interface *iface;
  966. void *c, *i;
  967. c = blobmsg_open_table(b, wdev->name);
  968. blobmsg_add_u8(b, "up", wdev->state == IFS_UP);
  969. blobmsg_add_u8(b, "pending", wdev->state == IFS_SETUP || wdev->state == IFS_TEARDOWN);
  970. blobmsg_add_u8(b, "autostart", wdev->autostart);
  971. blobmsg_add_u8(b, "disabled", wdev->disabled);
  972. blobmsg_add_u8(b, "retry_setup_failed", wdev->retry_setup_failed);
  973. put_container(b, wdev->config, "config");
  974. i = blobmsg_open_array(b, "interfaces");
  975. vlist_for_each_element(&wdev->interfaces, iface, node)
  976. wireless_interface_status(iface, b);
  977. blobmsg_close_array(b, i);
  978. blobmsg_close_table(b, c);
  979. }
  980. void
  981. wireless_device_get_validate(struct wireless_device *wdev, struct blob_buf *b)
  982. {
  983. struct uci_blob_param_list *p;
  984. void *c, *d;
  985. int i;
  986. c = blobmsg_open_table(b, wdev->name);
  987. d = blobmsg_open_table(b, "device");
  988. p = wdev->drv->device.config;
  989. for (i = 0; i < p->n_params; i++)
  990. blobmsg_add_string(b, p->params[i].name, uci_get_validate_string(p, i));
  991. blobmsg_close_table(b, d);
  992. d = blobmsg_open_table(b, "interface");
  993. p = wdev->drv->interface.config;
  994. for (i = 0; i < p->n_params; i++)
  995. blobmsg_add_string(b, p->params[i].name, uci_get_validate_string(p, i));
  996. blobmsg_close_table(b, d);
  997. blobmsg_close_table(b, c);
  998. }
  999. static void
  1000. wireless_interface_set_data(struct wireless_interface *vif)
  1001. {
  1002. enum {
  1003. VIF_DATA_IFNAME,
  1004. __VIF_DATA_MAX,
  1005. };
  1006. static const struct blobmsg_policy data_policy[__VIF_DATA_MAX] = {
  1007. [VIF_DATA_IFNAME] = { .name = "ifname", .type = BLOBMSG_TYPE_STRING },
  1008. };
  1009. struct blob_attr *tb[__VIF_DATA_MAX];
  1010. struct blob_attr *cur;
  1011. blobmsg_parse(data_policy, __VIF_DATA_MAX, tb,
  1012. blobmsg_data(vif->data), blobmsg_data_len(vif->data));
  1013. if ((cur = tb[VIF_DATA_IFNAME]))
  1014. vif->ifname = blobmsg_data(cur);
  1015. }
  1016. static void
  1017. wireless_vlan_set_data(struct wireless_vlan *vlan)
  1018. {
  1019. enum {
  1020. VLAN_DATA_IFNAME,
  1021. __VLAN_DATA_MAX,
  1022. };
  1023. static const struct blobmsg_policy data_policy[__VLAN_DATA_MAX] = {
  1024. [VLAN_DATA_IFNAME] = { .name = "ifname", .type = BLOBMSG_TYPE_STRING },
  1025. };
  1026. struct blob_attr *tb[__VLAN_DATA_MAX];
  1027. struct blob_attr *cur;
  1028. blobmsg_parse(data_policy, __VLAN_DATA_MAX, tb,
  1029. blobmsg_data(vlan->data), blobmsg_data_len(vlan->data));
  1030. if ((cur = tb[VLAN_DATA_IFNAME]))
  1031. vlan->ifname = blobmsg_data(cur);
  1032. }
  1033. static int
  1034. wireless_device_add_process(struct wireless_device *wdev, struct blob_attr *data)
  1035. {
  1036. enum {
  1037. PROC_ATTR_PID,
  1038. PROC_ATTR_EXE,
  1039. PROC_ATTR_REQUIRED,
  1040. PROC_ATTR_KEEP,
  1041. __PROC_ATTR_MAX
  1042. };
  1043. static const struct blobmsg_policy proc_policy[__PROC_ATTR_MAX] = {
  1044. [PROC_ATTR_PID] = { .name = "pid", .type = BLOBMSG_TYPE_INT32 },
  1045. [PROC_ATTR_EXE] = { .name = "exe", .type = BLOBMSG_TYPE_STRING },
  1046. [PROC_ATTR_REQUIRED] = { .name = "required", .type = BLOBMSG_TYPE_BOOL },
  1047. [PROC_ATTR_KEEP] = { .name = "keep", .type = BLOBMSG_TYPE_BOOL },
  1048. };
  1049. struct blob_attr *tb[__PROC_ATTR_MAX];
  1050. struct wireless_process *proc;
  1051. char *name;
  1052. int pid;
  1053. if (!data)
  1054. return UBUS_STATUS_INVALID_ARGUMENT;
  1055. blobmsg_parse(proc_policy, __PROC_ATTR_MAX, tb, blobmsg_data(data), blobmsg_data_len(data));
  1056. if (!tb[PROC_ATTR_PID] || !tb[PROC_ATTR_EXE])
  1057. return UBUS_STATUS_INVALID_ARGUMENT;
  1058. pid = blobmsg_get_u32(tb[PROC_ATTR_PID]);
  1059. if (pid < 2)
  1060. return UBUS_STATUS_INVALID_ARGUMENT;
  1061. proc = calloc_a(sizeof(*proc),
  1062. &name, strlen(blobmsg_data(tb[PROC_ATTR_EXE])) + 1);
  1063. proc->pid = pid;
  1064. proc->exe = strcpy(name, blobmsg_data(tb[PROC_ATTR_EXE]));
  1065. if (tb[PROC_ATTR_REQUIRED])
  1066. proc->required = blobmsg_get_bool(tb[PROC_ATTR_REQUIRED]);
  1067. if (tb[PROC_ATTR_KEEP])
  1068. proc->keep = blobmsg_get_bool(tb[PROC_ATTR_KEEP]);
  1069. D(WIRELESS, "Wireless device '%s' add pid %d\n", wdev->name, proc->pid);
  1070. list_add(&proc->list, &wdev->script_proc);
  1071. uloop_timeout_set(&wdev->script_check, 0);
  1072. return 0;
  1073. }
  1074. static int
  1075. wireless_device_process_kill_all(struct wireless_device *wdev, struct blob_attr *data,
  1076. struct ubus_request_data *req)
  1077. {
  1078. enum {
  1079. KILL_ATTR_SIGNAL,
  1080. KILL_ATTR_IMMEDIATE,
  1081. __KILL_ATTR_MAX
  1082. };
  1083. static const struct blobmsg_policy kill_policy[__KILL_ATTR_MAX] = {
  1084. [KILL_ATTR_SIGNAL] = { .name = "signal", .type = BLOBMSG_TYPE_INT32 },
  1085. [KILL_ATTR_IMMEDIATE] = { .name = "immediate", .type = BLOBMSG_TYPE_BOOL },
  1086. };
  1087. struct blob_attr *tb[__KILL_ATTR_MAX];
  1088. struct blob_attr *cur;
  1089. bool immediate = false;
  1090. int signal = SIGTERM;
  1091. blobmsg_parse(kill_policy, __KILL_ATTR_MAX, tb, blobmsg_data(data), blobmsg_data_len(data));
  1092. if ((cur = tb[KILL_ATTR_SIGNAL]))
  1093. signal = blobmsg_get_u32(cur);
  1094. if ((cur = tb[KILL_ATTR_IMMEDIATE]))
  1095. immediate = blobmsg_get_bool(cur);
  1096. if (wdev->state != IFS_TEARDOWN || wdev->kill_request)
  1097. return UBUS_STATUS_PERMISSION_DENIED;
  1098. wireless_process_kill_all(wdev, signal, immediate);
  1099. if (list_empty(&wdev->script_proc))
  1100. return 0;
  1101. wdev->kill_request = calloc(1, sizeof(*wdev->kill_request));
  1102. ubus_defer_request(ubus_ctx, req, wdev->kill_request);
  1103. return 0;
  1104. }
  1105. static int
  1106. wireless_device_set_retry(struct wireless_device *wdev, struct blob_attr *data)
  1107. {
  1108. static const struct blobmsg_policy retry_policy = {
  1109. .name = "retry", .type = BLOBMSG_TYPE_INT32
  1110. };
  1111. struct blob_attr *val;
  1112. blobmsg_parse(&retry_policy, 1, &val, blobmsg_data(data), blobmsg_data_len(data));
  1113. if (!val)
  1114. return UBUS_STATUS_INVALID_ARGUMENT;
  1115. wdev->retry = blobmsg_get_u32(val);
  1116. return 0;
  1117. }
  1118. enum {
  1119. NOTIFY_CMD_UP = 0,
  1120. NOTIFY_CMD_SET_DATA = 1,
  1121. NOTIFY_CMD_PROCESS_ADD = 2,
  1122. NOTIFY_CMD_PROCESS_KILL_ALL = 3,
  1123. NOTIFY_CMD_SET_RETRY = 4,
  1124. };
  1125. int
  1126. wireless_device_notify(struct wireless_device *wdev, struct blob_attr *data,
  1127. struct ubus_request_data *req)
  1128. {
  1129. enum {
  1130. NOTIFY_ATTR_COMMAND,
  1131. NOTIFY_ATTR_VIF,
  1132. NOTIFY_ATTR_VLAN,
  1133. NOTIFY_ATTR_DATA,
  1134. __NOTIFY_MAX,
  1135. };
  1136. static const struct blobmsg_policy notify_policy[__NOTIFY_MAX] = {
  1137. [NOTIFY_ATTR_COMMAND] = { .name = "command", .type = BLOBMSG_TYPE_INT32 },
  1138. [NOTIFY_ATTR_VIF] = { .name = "interface", .type = BLOBMSG_TYPE_STRING },
  1139. [NOTIFY_ATTR_VLAN] = { .name = "vlan", .type = BLOBMSG_TYPE_STRING },
  1140. [NOTIFY_ATTR_DATA] = { .name = "data", .type = BLOBMSG_TYPE_TABLE },
  1141. };
  1142. struct wireless_interface *vif = NULL;
  1143. struct wireless_vlan *vlan = NULL;
  1144. struct blob_attr *tb[__NOTIFY_MAX];
  1145. struct blob_attr *cur, **pdata;
  1146. blobmsg_parse(notify_policy, __NOTIFY_MAX, tb, blob_data(data), blob_len(data));
  1147. if (!tb[NOTIFY_ATTR_COMMAND])
  1148. return UBUS_STATUS_INVALID_ARGUMENT;
  1149. if ((cur = tb[NOTIFY_ATTR_VIF]) != NULL) {
  1150. vif = vlist_find(&wdev->interfaces, blobmsg_data(cur), vif, node);
  1151. if (!vif)
  1152. return UBUS_STATUS_NOT_FOUND;
  1153. }
  1154. if ((cur = tb[NOTIFY_ATTR_VLAN]) != NULL) {
  1155. vlan = vlist_find(&wdev->vlans, blobmsg_data(cur), vlan, node);
  1156. if (!vlan)
  1157. return UBUS_STATUS_NOT_FOUND;
  1158. }
  1159. cur = tb[NOTIFY_ATTR_DATA];
  1160. if (!cur)
  1161. return UBUS_STATUS_INVALID_ARGUMENT;
  1162. switch (blobmsg_get_u32(tb[NOTIFY_ATTR_COMMAND])) {
  1163. case NOTIFY_CMD_UP:
  1164. if (vif || vlan)
  1165. return UBUS_STATUS_INVALID_ARGUMENT;
  1166. if (wdev->state != IFS_SETUP)
  1167. return UBUS_STATUS_PERMISSION_DENIED;
  1168. wireless_device_mark_up(wdev);
  1169. break;
  1170. case NOTIFY_CMD_SET_DATA:
  1171. if (vif)
  1172. pdata = &vif->data;
  1173. else if (vlan)
  1174. pdata = &vlan->data;
  1175. else
  1176. pdata = &wdev->data;
  1177. if (*pdata)
  1178. return UBUS_STATUS_INVALID_ARGUMENT;
  1179. *pdata = blob_memdup(cur);
  1180. if (vif)
  1181. wireless_interface_set_data(vif);
  1182. else if (vlan)
  1183. wireless_vlan_set_data(vlan);
  1184. break;
  1185. case NOTIFY_CMD_PROCESS_ADD:
  1186. return wireless_device_add_process(wdev, cur);
  1187. case NOTIFY_CMD_PROCESS_KILL_ALL:
  1188. return wireless_device_process_kill_all(wdev, cur, req);
  1189. case NOTIFY_CMD_SET_RETRY:
  1190. return wireless_device_set_retry(wdev, cur);
  1191. default:
  1192. return UBUS_STATUS_INVALID_ARGUMENT;
  1193. }
  1194. return 0;
  1195. }
  1196. void
  1197. wireless_start_pending(void)
  1198. {
  1199. struct wireless_device *wdev;
  1200. vlist_for_each_element(&wireless_devices, wdev, node)
  1201. __wireless_device_set_up(wdev, 0);
  1202. }