neard.c 20 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. *
  4. * BlueZ - Bluetooth protocol stack for Linux
  5. *
  6. * Copyright (C) 2012-2013 Tieto Poland
  7. *
  8. *
  9. */
  10. #ifdef HAVE_CONFIG_H
  11. #include <config.h>
  12. #endif
  13. #define _GNU_SOURCE
  14. #include <stdlib.h>
  15. #include <errno.h>
  16. #include "lib/bluetooth.h"
  17. #include "lib/hci.h"
  18. #include "lib/sdp.h"
  19. #include "gdbus/gdbus.h"
  20. #include "src/plugin.h"
  21. #include "src/log.h"
  22. #include "src/dbus-common.h"
  23. #include "src/adapter.h"
  24. #include "src/device.h"
  25. #include "src/eir.h"
  26. #include "src/agent.h"
  27. #include "src/btd.h"
  28. #define NEARD_NAME "org.neard"
  29. #define NEARD_PATH "/"
  30. #define NEARD_MANAGER_INTERFACE "org.neard.Manager"
  31. #define AGENT_INTERFACE "org.neard.HandoverAgent"
  32. #define AGENT_PATH "/org/bluez/neard_handover_agent"
  33. #define AGENT_CARRIER_TYPE "bluetooth"
  34. #define ERROR_INTERFACE "org.neard.HandoverAgent.Error"
  35. static guint watcher_id = 0;
  36. static char *neard_service = NULL;
  37. static bool agent_register_postpone = false;
  38. /* For NFC mimetype limits max OOB EIR size */
  39. #define NFC_OOB_EIR_MAX UINT8_MAX
  40. enum cps {
  41. CPS_ACTIVE,
  42. CPS_INACTIVE,
  43. CPS_ACTIVATING,
  44. CPS_UNKNOWN,
  45. };
  46. struct oob_params {
  47. bdaddr_t address;
  48. uint32_t class;
  49. char *name;
  50. GSList *services;
  51. uint8_t *hash;
  52. uint8_t *randomizer;
  53. uint8_t *pin;
  54. int pin_len;
  55. enum cps power_state;
  56. };
  57. static void free_oob_params(struct oob_params *params)
  58. {
  59. g_slist_free_full(params->services, free);
  60. g_free(params->name);
  61. g_free(params->hash);
  62. g_free(params->randomizer);
  63. g_free(params->pin);
  64. }
  65. static DBusMessage *error_reply(DBusMessage *msg, int error)
  66. {
  67. const char *name;
  68. if (error == EINPROGRESS)
  69. name = ERROR_INTERFACE ".InProgress";
  70. else
  71. name = ERROR_INTERFACE ".Failed";
  72. return g_dbus_create_error(msg, name , "%s", strerror(error));
  73. }
  74. static void register_agent(bool append_carrier);
  75. static void register_agent_cb(DBusPendingCall *call, void *user_data)
  76. {
  77. DBusMessage *reply;
  78. DBusError err;
  79. static bool try_fallback = true;
  80. reply = dbus_pending_call_steal_reply(call);
  81. dbus_error_init(&err);
  82. if (dbus_set_error_from_message(&err, reply)) {
  83. if (g_str_equal(DBUS_ERROR_UNKNOWN_METHOD, err.name) &&
  84. try_fallback) {
  85. DBG("Register to neard failed, trying legacy way");
  86. register_agent(false);
  87. try_fallback = false;
  88. } else {
  89. error("neard manager replied with an error: %s, %s",
  90. err.name, err.message);
  91. g_dbus_unregister_interface(btd_get_dbus_connection(),
  92. AGENT_PATH, AGENT_INTERFACE);
  93. try_fallback = true;
  94. }
  95. dbus_error_free(&err);
  96. dbus_message_unref(reply);
  97. return;
  98. }
  99. dbus_message_unref(reply);
  100. neard_service = g_strdup(dbus_message_get_sender(reply));
  101. try_fallback = true;
  102. info("Registered as neard handover agent");
  103. }
  104. static void register_agent(bool append_carrier)
  105. {
  106. DBusMessage *message;
  107. DBusPendingCall *call;
  108. const char *path = AGENT_PATH;
  109. const char *carrier = AGENT_CARRIER_TYPE;
  110. message = dbus_message_new_method_call(NEARD_NAME, NEARD_PATH,
  111. NEARD_MANAGER_INTERFACE, "RegisterHandoverAgent");
  112. if (!message) {
  113. error("Couldn't allocate D-Bus message");
  114. return;
  115. }
  116. dbus_message_append_args(message, DBUS_TYPE_OBJECT_PATH, &path,
  117. DBUS_TYPE_INVALID);
  118. if (append_carrier)
  119. dbus_message_append_args(message, DBUS_TYPE_STRING, &carrier,
  120. DBUS_TYPE_INVALID);
  121. if (!g_dbus_send_message_with_reply(btd_get_dbus_connection(),
  122. message, &call, -1)) {
  123. dbus_message_unref(message);
  124. error("D-Bus send failed");
  125. return;
  126. }
  127. dbus_pending_call_set_notify(call, register_agent_cb, NULL, NULL);
  128. dbus_pending_call_unref(call);
  129. dbus_message_unref(message);
  130. }
  131. static void unregister_agent(void)
  132. {
  133. DBusMessage *message;
  134. const char *path = AGENT_PATH;
  135. const char *carrier = AGENT_CARRIER_TYPE;
  136. g_free(neard_service);
  137. neard_service = NULL;
  138. message = dbus_message_new_method_call(NEARD_NAME, NEARD_PATH,
  139. NEARD_MANAGER_INTERFACE, "UnregisterHandoverAgent");
  140. if (!message) {
  141. error("Couldn't allocate D-Bus message");
  142. goto unregister;
  143. }
  144. dbus_message_append_args(message, DBUS_TYPE_OBJECT_PATH, &path,
  145. DBUS_TYPE_INVALID);
  146. dbus_message_append_args(message, DBUS_TYPE_STRING, &carrier,
  147. DBUS_TYPE_INVALID);
  148. if (!g_dbus_send_message(btd_get_dbus_connection(), message))
  149. error("D-Bus send failed");
  150. unregister:
  151. g_dbus_unregister_interface(btd_get_dbus_connection(), AGENT_PATH,
  152. AGENT_INTERFACE);
  153. }
  154. static void add_power_state(DBusMessageIter *dict, struct btd_adapter *adapter)
  155. {
  156. const char *state;
  157. if (btd_adapter_get_powered(adapter) &&
  158. btd_adapter_get_connectable(adapter))
  159. state = "active";
  160. else
  161. state = "inactive";
  162. dict_append_entry(dict, "State", DBUS_TYPE_STRING, &state);
  163. }
  164. static DBusMessage *create_request_oob_reply(struct btd_adapter *adapter,
  165. const uint8_t *hash,
  166. const uint8_t *randomizer,
  167. DBusMessage *msg)
  168. {
  169. DBusMessage *reply;
  170. DBusMessageIter iter;
  171. DBusMessageIter dict;
  172. uint8_t eir[NFC_OOB_EIR_MAX];
  173. uint8_t *peir = eir;
  174. int len;
  175. len = eir_create_oob(btd_adapter_get_address(adapter),
  176. btd_adapter_get_name(adapter),
  177. btd_adapter_get_class(adapter), hash,
  178. randomizer, btd_opts.did_vendor,
  179. btd_opts.did_product, btd_opts.did_version,
  180. btd_opts.did_source,
  181. btd_adapter_get_services(adapter), eir);
  182. reply = dbus_message_new_method_return(msg);
  183. if (!reply)
  184. return NULL;
  185. dbus_message_iter_init_append(reply, &iter);
  186. dbus_message_iter_open_container(&iter, DBUS_TYPE_ARRAY,
  187. DBUS_DICT_ENTRY_BEGIN_CHAR_AS_STRING
  188. DBUS_TYPE_STRING_AS_STRING
  189. DBUS_TYPE_VARIANT_AS_STRING
  190. DBUS_DICT_ENTRY_END_CHAR_AS_STRING,
  191. &dict);
  192. dict_append_array(&dict, "EIR", DBUS_TYPE_BYTE, &peir, len);
  193. add_power_state(&dict, adapter);
  194. dbus_message_iter_close_container(&iter, &dict);
  195. return reply;
  196. }
  197. static void read_local_complete(struct btd_adapter *adapter,
  198. const uint8_t *hash, const uint8_t *randomizer,
  199. void *user_data)
  200. {
  201. DBusMessage *msg = user_data;
  202. DBusMessage *reply;
  203. DBG("");
  204. if (neard_service == NULL) {
  205. dbus_message_unref(msg);
  206. if (agent_register_postpone) {
  207. agent_register_postpone = false;
  208. register_agent(true);
  209. }
  210. return;
  211. }
  212. if (hash && randomizer)
  213. reply = create_request_oob_reply(adapter, hash, randomizer,
  214. msg);
  215. else
  216. reply = error_reply(msg, EIO);
  217. dbus_message_unref(msg);
  218. if (!g_dbus_send_message(btd_get_dbus_connection(), reply))
  219. error("D-Bus send failed");
  220. }
  221. static void bonding_complete(struct btd_adapter *adapter,
  222. const bdaddr_t *bdaddr, uint8_t status,
  223. void *user_data)
  224. {
  225. DBusMessage *msg = user_data;
  226. DBusMessage *reply;
  227. DBG("");
  228. if (neard_service == NULL) {
  229. dbus_message_unref(msg);
  230. if (agent_register_postpone) {
  231. agent_register_postpone = false;
  232. register_agent(true);
  233. }
  234. return;
  235. }
  236. if (status)
  237. reply = error_reply(msg, EIO);
  238. else
  239. reply = g_dbus_create_reply(msg, DBUS_TYPE_INVALID);
  240. dbus_message_unref(msg);
  241. if (!g_dbus_send_message(btd_get_dbus_connection(), reply))
  242. error("D-Bus send failed");
  243. }
  244. static int check_device(struct btd_device *device)
  245. {
  246. if (!device)
  247. return -ENOENT;
  248. /* If already paired */
  249. if (device_is_paired(device, BDADDR_BREDR)) {
  250. DBG("already paired");
  251. return -EALREADY;
  252. }
  253. /* Pairing in progress... */
  254. if (device_is_bonding(device, NULL)) {
  255. DBG("pairing in progress");
  256. return -EINPROGRESS;
  257. }
  258. return 0;
  259. }
  260. static int process_eir(uint8_t *eir, size_t size, struct oob_params *remote)
  261. {
  262. struct eir_data eir_data;
  263. DBG("size %zu", size);
  264. memset(&eir_data, 0, sizeof(eir_data));
  265. if (eir_parse_oob(&eir_data, eir, size) < 0)
  266. return -EINVAL;
  267. bacpy(&remote->address, &eir_data.addr);
  268. remote->class = eir_data.class;
  269. remote->name = eir_data.name;
  270. eir_data.name = NULL;
  271. remote->services = eir_data.services;
  272. eir_data.services = NULL;
  273. remote->hash = eir_data.hash;
  274. eir_data.hash = NULL;
  275. remote->randomizer = eir_data.randomizer;
  276. eir_data.randomizer = NULL;
  277. eir_data_free(&eir_data);
  278. return 0;
  279. }
  280. /*
  281. * This is (barely documented) Nokia extension format, most work was done by
  282. * reverse engineering.
  283. *
  284. * Binary format varies among different devices, type depends on first byte
  285. * 0x00 - BT address not reversed, 16 bytes authentication data (all zeros)
  286. * 0x01 - BT address not reversed, 16 bytes authentication data (4 digit PIN,
  287. * padded with zeros)
  288. * 0x02 - BT address not reversed, 16 bytes authentication data (not sure if
  289. * 16 digit PIN or link key?, Nokia refers to it as ' Public Key')
  290. * 0x10 - BT address reversed, no authentication data
  291. * 0x24 - BT address not reversed, 4 bytes authentication data (4 digit PIN)
  292. *
  293. * General structure:
  294. * 1 byte - marker
  295. * 6 bytes - BT address (reversed or not, depends on marker)
  296. * 3 bytes - Class of Device
  297. * 0, 4 or 16 bytes - authentication data, interpretation depends on marker
  298. * 1 bytes - name length
  299. * N bytes - name
  300. */
  301. static int process_nokia_long (void *data, size_t size, uint8_t marker,
  302. struct oob_params *remote)
  303. {
  304. struct {
  305. bdaddr_t address;
  306. uint8_t class[3];
  307. uint8_t authentication[16];
  308. uint8_t name_len;
  309. uint8_t name[0];
  310. } __attribute__((packed)) *n = data;
  311. if (size != sizeof(*n) + n->name_len)
  312. return -EINVAL;
  313. /* address is not reverted */
  314. baswap(&remote->address, &n->address);
  315. remote->class = n->class[0] | (n->class[1] << 8) | (n->class[2] << 16);
  316. if (n->name_len > 0)
  317. remote->name = g_strndup((char *)n->name, n->name_len);
  318. if (marker == 0x01) {
  319. remote->pin = g_memdup(n->authentication, 4);
  320. remote->pin_len = 4;
  321. } else if (marker == 0x02) {
  322. remote->pin = g_memdup(n->authentication, 16);
  323. remote->pin_len = 16;
  324. }
  325. return 0;
  326. }
  327. static int process_nokia_short (void *data, size_t size,
  328. struct oob_params *remote)
  329. {
  330. struct {
  331. bdaddr_t address;
  332. uint8_t class[3];
  333. uint8_t authentication[4];
  334. uint8_t name_len;
  335. uint8_t name[0];
  336. } __attribute__((packed)) *n = data;
  337. if (size != sizeof(*n) + n->name_len)
  338. return -EINVAL;
  339. /* address is not reverted */
  340. baswap(&remote->address, &n->address);
  341. remote->class = n->class[0] | (n->class[1] << 8) | (n->class[2] << 16);
  342. if (n->name_len > 0)
  343. remote->name = g_strndup((char *)n->name, n->name_len);
  344. remote->pin = g_memdup(n->authentication, 4);
  345. remote->pin_len = 4;
  346. return 0;
  347. }
  348. static int process_nokia_extra_short (void *data, size_t size,
  349. struct oob_params *remote)
  350. {
  351. struct {
  352. bdaddr_t address;
  353. uint8_t class[3];
  354. uint8_t name_len;
  355. uint8_t name[0];
  356. } __attribute__((packed)) *n = data;
  357. if (size != sizeof(*n) + n->name_len)
  358. return -EINVAL;
  359. bacpy(&remote->address, &n->address);
  360. remote->class = n->class[0] | (n->class[1] << 8) | (n->class[2] << 16);
  361. if (n->name_len > 0)
  362. remote->name = g_strndup((char *)n->name, n->name_len);
  363. return 0;
  364. }
  365. static int process_nokia_com_bt(uint8_t *data, size_t size,
  366. struct oob_params *remote)
  367. {
  368. uint8_t marker;
  369. marker = *data++;
  370. size--;
  371. DBG("marker: 0x%.2x size: %zu", marker, size);
  372. switch (marker) {
  373. case 0x00:
  374. case 0x01:
  375. case 0x02:
  376. return process_nokia_long(data, size, marker, remote);
  377. case 0x10:
  378. return process_nokia_extra_short(data, size, remote);
  379. case 0x24:
  380. return process_nokia_short(data, size, remote);
  381. default:
  382. warn("Not supported Nokia NFC extension (0x%.2x)", marker);
  383. return -EPROTONOSUPPORT;
  384. }
  385. }
  386. static enum cps process_state(const char *state)
  387. {
  388. if (strcasecmp(state, "active") == 0)
  389. return CPS_ACTIVE;
  390. if (strcasecmp(state, "activating") == 0)
  391. return CPS_ACTIVATING;
  392. if (strcasecmp(state, "inactive") == 0)
  393. return CPS_INACTIVE;
  394. return CPS_UNKNOWN;
  395. }
  396. static int process_message(DBusMessage *msg, struct oob_params *remote)
  397. {
  398. DBusMessageIter iter;
  399. DBusMessageIter dict;
  400. dbus_message_iter_init(msg, &iter);
  401. if (dbus_message_iter_get_arg_type(&iter) != DBUS_TYPE_ARRAY)
  402. return -EINVAL;
  403. /* set CPS to unknown in case State was not provided */
  404. remote->power_state = CPS_UNKNOWN;
  405. dbus_message_iter_recurse(&iter, &dict);
  406. while (dbus_message_iter_get_arg_type(&dict) == DBUS_TYPE_DICT_ENTRY) {
  407. DBusMessageIter value;
  408. DBusMessageIter entry;
  409. const char *key;
  410. dbus_message_iter_recurse(&dict, &entry);
  411. if (dbus_message_iter_get_arg_type(&entry) != DBUS_TYPE_STRING)
  412. goto error;
  413. dbus_message_iter_get_basic(&entry, &key);
  414. dbus_message_iter_next(&entry);
  415. dbus_message_iter_recurse(&entry, &value);
  416. if (strcasecmp(key, "EIR") == 0) {
  417. DBusMessageIter array;
  418. uint8_t *eir;
  419. int size;
  420. /* nokia.com:bt and EIR should not be passed together */
  421. if (bacmp(&remote->address, BDADDR_ANY) != 0)
  422. goto error;
  423. if (dbus_message_iter_get_arg_type(&value) !=
  424. DBUS_TYPE_ARRAY)
  425. goto error;
  426. dbus_message_iter_recurse(&value, &array);
  427. dbus_message_iter_get_fixed_array(&array, &eir, &size);
  428. if (process_eir(eir, size, remote) < 0)
  429. goto error;
  430. } else if (strcasecmp(key, "nokia.com:bt") == 0) {
  431. DBusMessageIter array;
  432. uint8_t *data;
  433. int size;
  434. /* nokia.com:bt and EIR should not be passed together */
  435. if (bacmp(&remote->address, BDADDR_ANY) != 0)
  436. goto error;
  437. if (dbus_message_iter_get_arg_type(&value) !=
  438. DBUS_TYPE_ARRAY)
  439. goto error;
  440. dbus_message_iter_recurse(&value, &array);
  441. dbus_message_iter_get_fixed_array(&array, &data, &size);
  442. if (process_nokia_com_bt(data, size, remote))
  443. goto error;
  444. } else if (strcasecmp(key, "State") == 0) {
  445. DBusMessageIter array;
  446. const char *state;
  447. if (dbus_message_iter_get_arg_type(&value) !=
  448. DBUS_TYPE_STRING)
  449. goto error;
  450. dbus_message_iter_recurse(&value, &array);
  451. dbus_message_iter_get_basic(&value, &state);
  452. remote->power_state = process_state(state);
  453. if (remote->power_state == CPS_UNKNOWN)
  454. goto error;
  455. }
  456. dbus_message_iter_next(&dict);
  457. }
  458. /* Check if 'State' was passed along with one of other fields */
  459. if (remote->power_state != CPS_UNKNOWN
  460. && bacmp(&remote->address, BDADDR_ANY) == 0)
  461. return -EINVAL;
  462. return 0;
  463. error:
  464. if (bacmp(&remote->address, BDADDR_ANY) != 0) {
  465. free_oob_params(remote);
  466. memset(remote, 0, sizeof(*remote));
  467. }
  468. return -EINVAL;
  469. }
  470. static int check_adapter(struct btd_adapter *adapter)
  471. {
  472. if (!adapter)
  473. return -ENOENT;
  474. if (btd_adapter_check_oob_handler(adapter))
  475. return -EINPROGRESS;
  476. if (!btd_adapter_ssp_enabled(adapter))
  477. return -ENOTSUP;
  478. return 0;
  479. }
  480. static void store_params(struct btd_adapter *adapter, struct btd_device *device,
  481. struct oob_params *params)
  482. {
  483. if (params->class != 0)
  484. device_set_class(device, params->class);
  485. if (params->name) {
  486. device_store_cached_name(device, params->name);
  487. btd_device_device_set_name(device, params->name);
  488. }
  489. if (params->services)
  490. device_add_eir_uuids(device, params->services);
  491. if (params->hash) {
  492. btd_adapter_add_remote_oob_data(adapter, &params->address,
  493. params->hash,
  494. params->randomizer);
  495. } else if (params->pin_len) {
  496. /* TODO
  497. * Handle PIN, for now only discovery mode and 'common' PINs
  498. * that might be provided by agent will work correctly.
  499. */
  500. }
  501. }
  502. static DBusMessage *push_oob(DBusConnection *conn, DBusMessage *msg, void *data)
  503. {
  504. struct btd_adapter *adapter;
  505. struct agent *agent;
  506. struct oob_handler *handler;
  507. struct oob_params remote;
  508. struct btd_device *device;
  509. uint8_t io_cap;
  510. int err;
  511. if (neard_service == NULL ||
  512. !g_str_equal(neard_service, dbus_message_get_sender(msg)))
  513. return error_reply(msg, EPERM);
  514. DBG("");
  515. adapter = btd_adapter_get_default();
  516. err = check_adapter(adapter);
  517. if (err < 0)
  518. return error_reply(msg, -err);
  519. if (!btd_adapter_get_powered(adapter))
  520. return error_reply(msg, ENONET);
  521. agent = adapter_get_agent(adapter);
  522. if (!agent)
  523. return error_reply(msg, ENONET);
  524. io_cap = agent_get_io_capability(agent);
  525. agent_unref(agent);
  526. memset(&remote, 0, sizeof(remote));
  527. err = process_message(msg, &remote);
  528. if (err < 0)
  529. return error_reply(msg, -err);
  530. if (bacmp(&remote.address, BDADDR_ANY) == 0) {
  531. free_oob_params(&remote);
  532. return error_reply(msg, EINVAL);
  533. }
  534. device = btd_adapter_get_device(adapter, &remote.address,
  535. BDADDR_BREDR);
  536. err = check_device(device);
  537. if (err < 0) {
  538. free_oob_params(&remote);
  539. /* already paired, reply immediately */
  540. if (err == -EALREADY)
  541. return g_dbus_create_reply(msg, DBUS_TYPE_INVALID);
  542. return error_reply(msg, -err);
  543. }
  544. if (!btd_adapter_get_pairable(adapter)) {
  545. free_oob_params(&remote);
  546. return error_reply(msg, ENONET);
  547. }
  548. store_params(adapter, device, &remote);
  549. free_oob_params(&remote);
  550. err = adapter_create_bonding(adapter, device_get_address(device),
  551. BDADDR_BREDR, io_cap);
  552. if (err < 0)
  553. return error_reply(msg, -err);
  554. handler = g_new0(struct oob_handler, 1);
  555. handler->bonding_cb = bonding_complete;
  556. bacpy(&handler->remote_addr, device_get_address(device));
  557. handler->user_data = dbus_message_ref(msg);
  558. btd_adapter_set_oob_handler(adapter, handler);
  559. return NULL;
  560. }
  561. static DBusMessage *request_oob(DBusConnection *conn, DBusMessage *msg,
  562. void *data)
  563. {
  564. struct btd_adapter *adapter;
  565. struct oob_handler *handler;
  566. struct oob_params remote;
  567. struct btd_device *device;
  568. int err;
  569. if (neard_service == NULL ||
  570. !g_str_equal(neard_service, dbus_message_get_sender(msg)))
  571. return error_reply(msg, EPERM);
  572. DBG("");
  573. adapter = btd_adapter_get_default();
  574. err = check_adapter(adapter);
  575. if (err < 0)
  576. return error_reply(msg, -err);
  577. memset(&remote, 0, sizeof(remote));
  578. err = process_message(msg, &remote);
  579. if (err < 0)
  580. return error_reply(msg, -err);
  581. if (bacmp(&remote.address, BDADDR_ANY) == 0) {
  582. if (btd_adapter_get_powered(adapter))
  583. goto read_local;
  584. goto done;
  585. }
  586. device = btd_adapter_get_device(adapter, &remote.address, BDADDR_BREDR);
  587. err = check_device(device);
  588. if (err < 0)
  589. goto done;
  590. if (!btd_adapter_get_pairable(adapter)) {
  591. err = -ENONET;
  592. goto done;
  593. }
  594. store_params(adapter, device, &remote);
  595. if (remote.hash && btd_adapter_get_powered(adapter))
  596. goto read_local;
  597. done:
  598. free_oob_params(&remote);
  599. if (err < 0 && err != -EALREADY)
  600. return error_reply(msg, -err);
  601. return create_request_oob_reply(adapter, NULL, NULL, msg);
  602. read_local:
  603. free_oob_params(&remote);
  604. err = btd_adapter_read_local_oob_data(adapter);
  605. if (err < 0)
  606. return error_reply(msg, -err);
  607. handler = g_new0(struct oob_handler, 1);
  608. handler->read_local_cb = read_local_complete;
  609. handler->user_data = dbus_message_ref(msg);
  610. btd_adapter_set_oob_handler(adapter, handler);
  611. return NULL;
  612. }
  613. static DBusMessage *release(DBusConnection *conn, DBusMessage *msg,
  614. void *user_data)
  615. {
  616. if (neard_service == NULL ||
  617. !g_str_equal(neard_service, dbus_message_get_sender(msg)))
  618. return error_reply(msg, EPERM);
  619. DBG("");
  620. g_free(neard_service);
  621. neard_service = NULL;
  622. g_dbus_unregister_interface(conn, AGENT_PATH, AGENT_INTERFACE);
  623. return g_dbus_create_reply(msg, DBUS_TYPE_INVALID);
  624. }
  625. static const GDBusMethodTable neard_methods[] = {
  626. { GDBUS_ASYNC_METHOD("RequestOOB",
  627. GDBUS_ARGS({ "data", "a{sv}" }),
  628. GDBUS_ARGS({ "data", "a{sv}" }), request_oob) },
  629. { GDBUS_ASYNC_METHOD("PushOOB",
  630. GDBUS_ARGS({ "data", "a{sv}"}), NULL, push_oob) },
  631. { GDBUS_METHOD("Release", NULL, NULL, release) },
  632. { }
  633. };
  634. static void neard_appeared(DBusConnection *conn, void *user_data)
  635. {
  636. struct btd_adapter *adapter;
  637. DBG("");
  638. if (!g_dbus_register_interface(conn, AGENT_PATH, AGENT_INTERFACE,
  639. neard_methods,
  640. NULL, NULL, NULL, NULL)) {
  641. error("neard interface init failed on path " AGENT_PATH);
  642. return;
  643. }
  644. /*
  645. * If there is pending action ongoing when neard appeared, possibly
  646. * due to neard crash or release before action was completed, postpone
  647. * register until action is finished.
  648. */
  649. adapter = btd_adapter_get_default();
  650. if (adapter && btd_adapter_check_oob_handler(adapter))
  651. agent_register_postpone = true;
  652. else
  653. register_agent(true);
  654. }
  655. static void neard_vanished(DBusConnection *conn, void *user_data)
  656. {
  657. DBG("");
  658. /* neard existed without unregistering agent */
  659. if (neard_service != NULL) {
  660. g_free(neard_service);
  661. neard_service = NULL;
  662. g_dbus_unregister_interface(conn, AGENT_PATH, AGENT_INTERFACE);
  663. }
  664. }
  665. static int neard_init(void)
  666. {
  667. DBG("Setup neard plugin");
  668. watcher_id = g_dbus_add_service_watch(btd_get_dbus_connection(),
  669. NEARD_NAME, neard_appeared,
  670. neard_vanished, NULL, NULL);
  671. if (watcher_id == 0)
  672. return -ENOMEM;
  673. return 0;
  674. }
  675. static void neard_exit(void)
  676. {
  677. DBG("Cleanup neard plugin");
  678. g_dbus_remove_watch(btd_get_dbus_connection(), watcher_id);
  679. watcher_id = 0;
  680. if (neard_service != NULL)
  681. unregister_agent();
  682. }
  683. BLUETOOTH_PLUGIN_DEFINE(neard, VERSION, BLUETOOTH_PLUGIN_PRIORITY_DEFAULT,
  684. neard_init, neard_exit)