btm_dev.c 23 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright (C) 1999-2012 Broadcom Corporation
  4. *
  5. * Licensed under the Apache License, Version 2.0 (the "License");
  6. * you may not use this file except in compliance with the License.
  7. * You may obtain a copy of the License at:
  8. *
  9. * http://www.apache.org/licenses/LICENSE-2.0
  10. *
  11. * Unless required by applicable law or agreed to in writing, software
  12. * distributed under the License is distributed on an "AS IS" BASIS,
  13. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  14. * See the License for the specific language governing permissions and
  15. * limitations under the License.
  16. *
  17. ******************************************************************************/
  18. /******************************************************************************
  19. *
  20. * This file contains functions for the Bluetooth Device Manager
  21. *
  22. ******************************************************************************/
  23. #include <stdlib.h>
  24. #include <string.h>
  25. //#include <stdio.h>
  26. #include <stddef.h>
  27. #include "stack/bt_types.h"
  28. #include "device/controller.h"
  29. #include "stack/hcimsgs.h"
  30. #include "stack/btu.h"
  31. #include "stack/btm_api.h"
  32. #include "btm_int.h"
  33. #include "stack/hcidefs.h"
  34. #include "stack/l2c_api.h"
  35. static tBTM_SEC_DEV_REC *btm_find_oldest_dev (void);
  36. /*******************************************************************************
  37. **
  38. ** Function BTM_SecAddDevice
  39. **
  40. ** Description Add/modify device. This function will be normally called
  41. ** during host startup to restore all required information
  42. ** stored in the NVRAM.
  43. **
  44. ** Parameters: bd_addr - BD address of the peer
  45. ** dev_class - Device Class
  46. ** bd_name - Name of the peer device. NULL if unknown.
  47. ** features - Remote device's features (up to 3 pages). NULL if not known
  48. ** trusted_mask - Bitwise OR of services that do not
  49. ** require authorization. (array of UINT32)
  50. ** link_key - Connection link key. NULL if unknown.
  51. **
  52. ** Returns TRUE if added OK, else FALSE
  53. **
  54. *******************************************************************************/
  55. BOOLEAN BTM_SecAddDevice (BD_ADDR bd_addr, DEV_CLASS dev_class, BD_NAME bd_name,
  56. UINT8 *features, UINT32 trusted_mask[],
  57. LINK_KEY link_key, UINT8 key_type, tBTM_IO_CAP io_cap,
  58. UINT8 pin_length, UINT8 sc_support)
  59. {
  60. #if (SMP_INCLUDED == TRUE)
  61. tBTM_SEC_DEV_REC *p_dev_rec;
  62. int i, j;
  63. BOOLEAN found = FALSE;
  64. BTM_TRACE_API("%s, link key type:%x\n", __FUNCTION__, key_type);
  65. p_dev_rec = btm_find_dev (bd_addr);
  66. if (!p_dev_rec) {
  67. /* There is no device record, allocate one.
  68. * If we can not find an empty spot for this one, let it fail. */
  69. for (i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++) {
  70. if (!(btm_cb.sec_dev_rec[i].sec_flags & BTM_SEC_IN_USE)) {
  71. p_dev_rec = &btm_cb.sec_dev_rec[i];
  72. /* Mark this record as in use and initialize */
  73. memset (p_dev_rec, 0, sizeof (tBTM_SEC_DEV_REC));
  74. p_dev_rec->sec_flags = BTM_SEC_IN_USE;
  75. memcpy (p_dev_rec->bd_addr, bd_addr, BD_ADDR_LEN);
  76. p_dev_rec->hci_handle = BTM_GetHCIConnHandle (bd_addr, BT_TRANSPORT_BR_EDR);
  77. p_dev_rec->ble_hci_handle = BTM_GetHCIConnHandle (bd_addr, BT_TRANSPORT_LE);
  78. #if BLE_INCLUDED == TRUE
  79. /* use default value for background connection params */
  80. /* update conn params, use default value for background connection params */
  81. memset(&p_dev_rec->conn_params, 0xff, sizeof(tBTM_LE_CONN_PRAMS));
  82. #endif
  83. break;
  84. }
  85. }
  86. if (!p_dev_rec) {
  87. return (FALSE);
  88. }
  89. }
  90. p_dev_rec->bond_type = BOND_TYPE_UNKNOWN; /* Default value */
  91. p_dev_rec->timestamp = btm_cb.dev_rec_count++;
  92. p_dev_rec->remote_secure_connection_previous_state = sc_support;
  93. if (dev_class) {
  94. memcpy (p_dev_rec->dev_class, dev_class, DEV_CLASS_LEN);
  95. }
  96. memset(p_dev_rec->sec_bd_name, 0, sizeof(tBTM_BD_NAME));
  97. if (bd_name && bd_name[0]) {
  98. p_dev_rec->sec_flags |= BTM_SEC_NAME_KNOWN;
  99. BCM_STRNCPY_S ((char *)p_dev_rec->sec_bd_name, (char *)bd_name, BTM_MAX_REM_BD_NAME_LEN);
  100. }
  101. p_dev_rec->num_read_pages = 0;
  102. if (features) {
  103. memcpy (p_dev_rec->features, features, sizeof (p_dev_rec->features));
  104. for (i = HCI_EXT_FEATURES_PAGE_MAX; i >= 0; i--) {
  105. for (j = 0; j < HCI_FEATURE_BYTES_PER_PAGE; j++) {
  106. if (p_dev_rec->features[i][j] != 0) {
  107. found = TRUE;
  108. break;
  109. }
  110. }
  111. if (found) {
  112. p_dev_rec->num_read_pages = i + 1;
  113. break;
  114. }
  115. }
  116. } else {
  117. memset (p_dev_rec->features, 0, sizeof (p_dev_rec->features));
  118. }
  119. BTM_SEC_COPY_TRUSTED_DEVICE(trusted_mask, p_dev_rec->trusted_mask);
  120. if (link_key) {
  121. BTM_TRACE_EVENT ("BTM_SecAddDevice() BDA: %02x:%02x:%02x:%02x:%02x:%02x\n",
  122. bd_addr[0], bd_addr[1], bd_addr[2],
  123. bd_addr[3], bd_addr[4], bd_addr[5]);
  124. p_dev_rec->sec_flags |= BTM_SEC_LINK_KEY_KNOWN;
  125. memcpy (p_dev_rec->link_key, link_key, LINK_KEY_LEN);
  126. p_dev_rec->link_key_type = key_type;
  127. p_dev_rec->pin_code_length = pin_length;
  128. if (pin_length >= 16 ||
  129. key_type == BTM_LKEY_TYPE_AUTH_COMB ||
  130. key_type == BTM_LKEY_TYPE_AUTH_COMB_P_256) {
  131. // Set the fiag if the link key was made by using either a 16 digit
  132. // pin or MITM.
  133. p_dev_rec->sec_flags |= BTM_SEC_16_DIGIT_PIN_AUTHED;
  134. }
  135. }
  136. #if defined(BTIF_MIXED_MODE_INCLUDED) && (BTIF_MIXED_MODE_INCLUDED == TRUE)
  137. if (key_type < BTM_MAX_PRE_SM4_LKEY_TYPE) {
  138. p_dev_rec->sm4 = BTM_SM4_KNOWN;
  139. } else {
  140. p_dev_rec->sm4 = BTM_SM4_TRUE;
  141. }
  142. #endif
  143. p_dev_rec->rmt_io_caps = io_cap;
  144. p_dev_rec->device_type |= BT_DEVICE_TYPE_BREDR;
  145. #endif ///SMP_INCLUDED == TRUE
  146. return (TRUE);
  147. }
  148. /*******************************************************************************
  149. **
  150. ** Function BTM_SecDeleteDevice
  151. **
  152. ** Description Free resources associated with the device.
  153. **
  154. ** Parameters: bd_addr - BD address of the peer
  155. ** transport - BT_TRANSPORT_BR_EDR or BT_TRANSPORT_LE
  156. **
  157. ** Returns TRUE if removed OK, FALSE if not found or ACL link is active
  158. **
  159. *******************************************************************************/
  160. BOOLEAN BTM_SecDeleteDevice (BD_ADDR bd_addr, tBT_TRANSPORT transport)
  161. {
  162. tBTM_SEC_DEV_REC *p_dev_rec;
  163. if (BTM_IsAclConnectionUp(bd_addr, transport)) {
  164. BTM_TRACE_WARNING("%s FAILED: Cannot Delete when connection is active\n", __func__);
  165. return FALSE;
  166. }
  167. if ((p_dev_rec = btm_find_dev(bd_addr)) != NULL) {
  168. btm_sec_free_dev(p_dev_rec, transport);
  169. /* Tell controller to get rid of the link key, if it has one stored */
  170. BTM_DeleteStoredLinkKey (p_dev_rec->bd_addr, NULL);
  171. }
  172. return TRUE;
  173. }
  174. /*******************************************************************************
  175. **
  176. ** Function BTM_SecClearSecurityFlags
  177. **
  178. ** Description Reset the security flags (mark as not-paired) for a given
  179. ** remove device.
  180. **
  181. *******************************************************************************/
  182. extern void BTM_SecClearSecurityFlags (BD_ADDR bd_addr)
  183. {
  184. tBTM_SEC_DEV_REC *p_dev_rec = btm_find_dev(bd_addr);
  185. if (p_dev_rec == NULL) {
  186. return;
  187. }
  188. p_dev_rec->sec_flags = 0;
  189. p_dev_rec->sec_state = BTM_SEC_STATE_IDLE;
  190. p_dev_rec->sm4 = BTM_SM4_UNKNOWN;
  191. }
  192. /*******************************************************************************
  193. **
  194. ** Function BTM_SecReadDevName
  195. **
  196. ** Description Looks for the device name in the security database for the
  197. ** specified BD address.
  198. **
  199. ** Returns Pointer to the name or NULL
  200. **
  201. *******************************************************************************/
  202. char *BTM_SecReadDevName (BD_ADDR bd_addr)
  203. {
  204. char *p_name = NULL;
  205. tBTM_SEC_DEV_REC *p_srec;
  206. if ((p_srec = btm_find_dev(bd_addr)) != NULL) {
  207. p_name = (char *)p_srec->sec_bd_name;
  208. }
  209. return (p_name);
  210. }
  211. /*******************************************************************************
  212. **
  213. ** Function btm_sec_alloc_dev
  214. **
  215. ** Description Look for the record in the device database for the record
  216. ** with specified address
  217. **
  218. ** Returns Pointer to the record or NULL
  219. **
  220. *******************************************************************************/
  221. tBTM_SEC_DEV_REC *btm_sec_alloc_dev (BD_ADDR bd_addr)
  222. {
  223. tBTM_SEC_DEV_REC *p_dev_rec = NULL;
  224. tBTM_INQ_INFO *p_inq_info;
  225. int i;
  226. DEV_CLASS old_cod;
  227. int i_new_entry = BTM_SEC_MAX_DEVICE_RECORDS;
  228. int i_old_entry = BTM_SEC_MAX_DEVICE_RECORDS;
  229. BTM_TRACE_EVENT ("btm_sec_alloc_dev\n");
  230. for (i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++) {
  231. /* look for old entry where device details are present */
  232. if (!(btm_cb.sec_dev_rec[i].sec_flags & BTM_SEC_IN_USE) &&
  233. (!memcmp (btm_cb.sec_dev_rec[i].bd_addr, bd_addr, BD_ADDR_LEN))) {
  234. i_old_entry = i;
  235. BTM_TRACE_EVENT ("btm_sec_alloc_dev old device found\n");
  236. break;
  237. }
  238. }
  239. for (i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++) {
  240. if (!(btm_cb.sec_dev_rec[i].sec_flags & BTM_SEC_IN_USE)) {
  241. i_new_entry = i;
  242. break;
  243. }
  244. }
  245. if (i_new_entry == BTM_SEC_MAX_DEVICE_RECORDS) {
  246. p_dev_rec = btm_find_oldest_dev();
  247. } else {
  248. /* if the old device entry not present go with
  249. new entry */
  250. if (i_old_entry == BTM_SEC_MAX_DEVICE_RECORDS) {
  251. p_dev_rec = &btm_cb.sec_dev_rec[i_new_entry];
  252. } else {
  253. p_dev_rec = &btm_cb.sec_dev_rec[i_old_entry];
  254. memcpy (old_cod, p_dev_rec->dev_class, DEV_CLASS_LEN);
  255. }
  256. }
  257. memset (p_dev_rec, 0, sizeof (tBTM_SEC_DEV_REC));
  258. /* Retain the old COD for device */
  259. if (i_old_entry != BTM_SEC_MAX_DEVICE_RECORDS) {
  260. BTM_TRACE_EVENT ("btm_sec_alloc_dev restoring cod \n");
  261. memcpy (p_dev_rec->dev_class, old_cod, DEV_CLASS_LEN);
  262. }
  263. p_dev_rec->bond_type = BOND_TYPE_UNKNOWN; /* Default value */
  264. p_dev_rec->sec_flags = BTM_SEC_IN_USE;
  265. /* Check with the BT manager if details about remote device are known */
  266. /* outgoing connection */
  267. if ((p_inq_info = BTM_InqDbRead(bd_addr)) != NULL) {
  268. memcpy (p_dev_rec->dev_class, p_inq_info->results.dev_class, DEV_CLASS_LEN);
  269. #if BLE_INCLUDED == TRUE
  270. p_dev_rec->device_type = p_inq_info->results.device_type;
  271. p_dev_rec->ble.ble_addr_type = p_inq_info->results.ble_addr_type;
  272. /* update conn params, use default value for background connection params */
  273. memset(&p_dev_rec->conn_params, 0xff, sizeof(tBTM_LE_CONN_PRAMS));
  274. #endif
  275. } else {
  276. #if BLE_INCLUDED == TRUE
  277. /* update conn params, use default value for background connection params */
  278. memset(&p_dev_rec->conn_params, 0xff, sizeof(tBTM_LE_CONN_PRAMS));
  279. #endif
  280. if (!memcmp (bd_addr, btm_cb.connecting_bda, BD_ADDR_LEN)) {
  281. memcpy (p_dev_rec->dev_class, btm_cb.connecting_dc, DEV_CLASS_LEN);
  282. }
  283. }
  284. memcpy (p_dev_rec->bd_addr, bd_addr, BD_ADDR_LEN);
  285. #if BLE_INCLUDED == TRUE
  286. p_dev_rec->ble_hci_handle = BTM_GetHCIConnHandle (bd_addr, BT_TRANSPORT_LE);
  287. #endif
  288. p_dev_rec->hci_handle = BTM_GetHCIConnHandle (bd_addr, BT_TRANSPORT_BR_EDR);
  289. p_dev_rec->timestamp = btm_cb.dev_rec_count++;
  290. return (p_dev_rec);
  291. }
  292. /*******************************************************************************
  293. **
  294. ** Function btm_sec_free_dev
  295. **
  296. ** Description Mark device record as not used
  297. **
  298. *******************************************************************************/
  299. void btm_sec_free_dev (tBTM_SEC_DEV_REC *p_dev_rec, tBT_TRANSPORT transport)
  300. {
  301. if (transport == BT_TRANSPORT_BR_EDR) {
  302. memset(p_dev_rec->link_key, 0, LINK_KEY_LEN);
  303. p_dev_rec->sec_flags &= ~(BTM_SEC_AUTHORIZED | BTM_SEC_AUTHENTICATED
  304. | BTM_SEC_ENCRYPTED | BTM_SEC_NAME_KNOWN
  305. | BTM_SEC_LINK_KEY_KNOWN | BTM_SEC_LINK_KEY_AUTHED
  306. | BTM_SEC_ROLE_SWITCHED | BTM_SEC_16_DIGIT_PIN_AUTHED);
  307. } else if (transport == BT_TRANSPORT_LE) {
  308. p_dev_rec->bond_type = BOND_TYPE_UNKNOWN;
  309. p_dev_rec->sec_flags &= ~(BTM_SEC_LE_AUTHENTICATED | BTM_SEC_LE_ENCRYPTED
  310. | BTM_SEC_LE_NAME_KNOWN | BTM_SEC_LE_LINK_KEY_KNOWN
  311. | BTM_SEC_LE_LINK_KEY_AUTHED | BTM_SEC_ROLE_SWITCHED);
  312. #if BLE_INCLUDED == TRUE
  313. /* Clear out any saved BLE keys */
  314. btm_sec_clear_ble_keys (p_dev_rec);
  315. #endif
  316. } else {
  317. p_dev_rec->bond_type = BOND_TYPE_UNKNOWN;
  318. memset(p_dev_rec->link_key, 0, LINK_KEY_LEN);
  319. p_dev_rec->sec_flags = 0;
  320. #if BLE_INCLUDED == TRUE
  321. /* Clear out any saved BLE keys */
  322. btm_sec_clear_ble_keys (p_dev_rec);
  323. #endif
  324. }
  325. /* No BLE keys and BT keys, clear the sec_flags */
  326. if(p_dev_rec->sec_flags == BTM_SEC_IN_USE) {
  327. p_dev_rec->sec_flags = 0;
  328. }
  329. }
  330. /*******************************************************************************
  331. **
  332. ** Function btm_dev_support_switch
  333. **
  334. ** Description This function is called by the L2CAP to check if remote
  335. ** device supports role switch
  336. **
  337. ** Parameters: bd_addr - Address of the peer device
  338. **
  339. ** Returns TRUE if device is known and role switch is supported
  340. **
  341. *******************************************************************************/
  342. BOOLEAN btm_dev_support_switch (BD_ADDR bd_addr)
  343. {
  344. tBTM_SEC_DEV_REC *p_dev_rec;
  345. UINT8 xx;
  346. BOOLEAN feature_empty = TRUE;
  347. #if BTM_SCO_INCLUDED == TRUE
  348. /* Role switch is not allowed if a SCO is up */
  349. if (btm_is_sco_active_by_bdaddr(bd_addr)) {
  350. return (FALSE);
  351. }
  352. #endif
  353. p_dev_rec = btm_find_dev (bd_addr);
  354. if (p_dev_rec && controller_get_interface()->supports_master_slave_role_switch()) {
  355. if (HCI_SWITCH_SUPPORTED(p_dev_rec->features[HCI_EXT_FEATURES_PAGE_0])) {
  356. BTM_TRACE_DEBUG("btm_dev_support_switch return TRUE (feature found)\n");
  357. return (TRUE);
  358. }
  359. /* If the feature field is all zero, we never received them */
  360. for (xx = 0 ; xx < BD_FEATURES_LEN ; xx++) {
  361. if (p_dev_rec->features[HCI_EXT_FEATURES_PAGE_0][xx] != 0x00) {
  362. feature_empty = FALSE; /* at least one is != 0 */
  363. break;
  364. }
  365. }
  366. /* If we don't know peer's capabilities, assume it supports Role-switch */
  367. if (feature_empty) {
  368. BTM_TRACE_DEBUG("btm_dev_support_switch return TRUE (feature empty)\n");
  369. return (TRUE);
  370. }
  371. }
  372. BTM_TRACE_DEBUG("btm_dev_support_switch return FALSE\n");
  373. return (FALSE);
  374. }
  375. /*******************************************************************************
  376. **
  377. ** Function btm_find_dev_by_handle
  378. **
  379. ** Description Look for the record in the device database for the record
  380. ** with specified handle
  381. **
  382. ** Returns Pointer to the record or NULL
  383. **
  384. *******************************************************************************/
  385. tBTM_SEC_DEV_REC *btm_find_dev_by_handle (UINT16 handle)
  386. {
  387. tBTM_SEC_DEV_REC *p_dev_rec = &btm_cb.sec_dev_rec[0];
  388. int i;
  389. for (i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++, p_dev_rec++) {
  390. if ((p_dev_rec->sec_flags & BTM_SEC_IN_USE)
  391. && ((p_dev_rec->hci_handle == handle)
  392. #if BLE_INCLUDED == TRUE
  393. || (p_dev_rec->ble_hci_handle == handle)
  394. #endif
  395. )) {
  396. return (p_dev_rec);
  397. }
  398. }
  399. return (NULL);
  400. }
  401. /*******************************************************************************
  402. **
  403. ** Function btm_find_dev
  404. **
  405. ** Description Look for the record in the device database for the record
  406. ** with specified BD address
  407. **
  408. ** Returns Pointer to the record or NULL
  409. **
  410. *******************************************************************************/
  411. tBTM_SEC_DEV_REC *btm_find_dev(BD_ADDR bd_addr)
  412. {
  413. tBTM_SEC_DEV_REC *p_dev_rec = &btm_cb.sec_dev_rec[0];
  414. if (bd_addr) {
  415. for (uint8_t i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++, p_dev_rec++) {
  416. if (p_dev_rec->sec_flags & BTM_SEC_IN_USE) {
  417. if (!memcmp (p_dev_rec->bd_addr, bd_addr, BD_ADDR_LEN)) {
  418. return (p_dev_rec);
  419. }
  420. #if BLE_INCLUDED == TRUE
  421. // If a LE random address is looking for device record
  422. if (!memcmp(p_dev_rec->ble.pseudo_addr, bd_addr, BD_ADDR_LEN)) {
  423. return (p_dev_rec);
  424. }
  425. if (btm_ble_addr_resolvable(bd_addr, p_dev_rec)) {
  426. return (p_dev_rec);
  427. }
  428. #endif
  429. }
  430. }
  431. }
  432. return (NULL);
  433. }
  434. /*******************************************************************************
  435. **
  436. ** Function btm_consolidate_dev
  437. **
  438. ** Description combine security records if identified as same peer
  439. **
  440. ** Returns none
  441. **
  442. *******************************************************************************/
  443. void btm_consolidate_dev(tBTM_SEC_DEV_REC *p_target_rec)
  444. {
  445. #if BLE_INCLUDED == TRUE && SMP_INCLUDED == TRUE
  446. tBTM_SEC_DEV_REC *p_dev_rec = &btm_cb.sec_dev_rec[0];
  447. tBTM_SEC_DEV_REC temp_rec = *p_target_rec;
  448. BTM_TRACE_DEBUG("%s\n", __func__);
  449. for (uint8_t i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++, p_dev_rec++) {
  450. if (p_target_rec != p_dev_rec && p_dev_rec->sec_flags & BTM_SEC_IN_USE) {
  451. if (!memcmp (p_dev_rec->bd_addr, p_target_rec->bd_addr, BD_ADDR_LEN)) {
  452. memcpy(p_target_rec, p_dev_rec, sizeof(tBTM_SEC_DEV_REC));
  453. p_target_rec->ble = temp_rec.ble;
  454. p_target_rec->ble_hci_handle = temp_rec.ble_hci_handle;
  455. p_target_rec->enc_key_size = temp_rec.enc_key_size;
  456. p_target_rec->conn_params = temp_rec.conn_params;
  457. p_target_rec->device_type |= temp_rec.device_type;
  458. p_target_rec->sec_flags |= temp_rec.sec_flags;
  459. p_target_rec->new_encryption_key_is_p256 = temp_rec.new_encryption_key_is_p256;
  460. p_target_rec->no_smp_on_br = temp_rec.no_smp_on_br;
  461. p_target_rec->bond_type = temp_rec.bond_type;
  462. /* mark the combined record as unused */
  463. p_dev_rec->sec_flags &= ~BTM_SEC_IN_USE;
  464. p_dev_rec->bond_type = BOND_TYPE_UNKNOWN;
  465. break;
  466. }
  467. /* an RPA device entry is a duplicate of the target record */
  468. if (btm_ble_addr_resolvable(p_dev_rec->bd_addr, p_target_rec)) {
  469. if (memcmp(p_target_rec->ble.pseudo_addr, p_dev_rec->bd_addr, BD_ADDR_LEN) == 0) {
  470. p_target_rec->ble.ble_addr_type = p_dev_rec->ble.ble_addr_type;
  471. p_target_rec->device_type |= p_dev_rec->device_type;
  472. p_dev_rec->sec_flags &= ~BTM_SEC_IN_USE;
  473. p_dev_rec->bond_type = BOND_TYPE_UNKNOWN;
  474. }
  475. break;
  476. }
  477. }
  478. }
  479. #endif
  480. }
  481. /*******************************************************************************
  482. **
  483. ** Function btm_find_or_alloc_dev
  484. **
  485. ** Description Look for the record in the device database for the record
  486. ** with specified BD address
  487. **
  488. ** Returns Pointer to the record or NULL
  489. **
  490. *******************************************************************************/
  491. tBTM_SEC_DEV_REC *btm_find_or_alloc_dev (BD_ADDR bd_addr)
  492. {
  493. tBTM_SEC_DEV_REC *p_dev_rec;
  494. BTM_TRACE_EVENT ("btm_find_or_alloc_dev\n");
  495. if ((p_dev_rec = btm_find_dev (bd_addr)) == NULL) {
  496. /* Allocate a new device record or reuse the oldest one */
  497. p_dev_rec = btm_sec_alloc_dev (bd_addr);
  498. }
  499. return (p_dev_rec);
  500. }
  501. /*******************************************************************************
  502. **
  503. ** Function btm_find_oldest_dev
  504. **
  505. ** Description Locates the oldest device in use. It first looks for
  506. ** the oldest non-paired device. If all devices are paired it
  507. ** deletes the oldest paired device.
  508. **
  509. ** Returns Pointer to the record or NULL
  510. **
  511. *******************************************************************************/
  512. tBTM_SEC_DEV_REC *btm_find_oldest_dev (void)
  513. {
  514. tBTM_SEC_DEV_REC *p_dev_rec = &btm_cb.sec_dev_rec[0];
  515. tBTM_SEC_DEV_REC *p_oldest = p_dev_rec;
  516. UINT32 ot = 0xFFFFFFFF;
  517. int i;
  518. /* First look for the non-paired devices for the oldest entry */
  519. for (i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++, p_dev_rec++) {
  520. if (((p_dev_rec->sec_flags & BTM_SEC_IN_USE) == 0)
  521. || ((p_dev_rec->sec_flags & (BTM_SEC_LINK_KEY_KNOWN | BTM_SEC_LE_LINK_KEY_KNOWN)) != 0)) {
  522. continue; /* Device is paired so skip it */
  523. }
  524. if (p_dev_rec->timestamp < ot) {
  525. p_oldest = p_dev_rec;
  526. ot = p_dev_rec->timestamp;
  527. }
  528. }
  529. if (ot != 0xFFFFFFFF) {
  530. return (p_oldest);
  531. }
  532. /* All devices are paired; find the oldest */
  533. p_dev_rec = &btm_cb.sec_dev_rec[0];
  534. for (i = 0; i < BTM_SEC_MAX_DEVICE_RECORDS; i++, p_dev_rec++) {
  535. if ((p_dev_rec->sec_flags & BTM_SEC_IN_USE) == 0) {
  536. continue;
  537. }
  538. if (p_dev_rec->timestamp < ot) {
  539. p_oldest = p_dev_rec;
  540. ot = p_dev_rec->timestamp;
  541. }
  542. }
  543. return (p_oldest);
  544. }
  545. /*******************************************************************************
  546. **
  547. ** Function btm_get_bond_type_dev
  548. **
  549. ** Description Get the bond type for a device in the device database
  550. ** with specified BD address
  551. **
  552. ** Returns The device bond type if known, otherwise BOND_TYPE_UNKNOWN
  553. **
  554. *******************************************************************************/
  555. tBTM_BOND_TYPE btm_get_bond_type_dev(BD_ADDR bd_addr)
  556. {
  557. tBTM_SEC_DEV_REC *p_dev_rec = btm_find_dev(bd_addr);
  558. if (p_dev_rec == NULL) {
  559. return BOND_TYPE_UNKNOWN;
  560. }
  561. return p_dev_rec->bond_type;
  562. }
  563. /*******************************************************************************
  564. **
  565. ** Function btm_set_bond_type_dev
  566. **
  567. ** Description Set the bond type for a device in the device database
  568. ** with specified BD address
  569. **
  570. ** Returns TRUE on success, otherwise FALSE
  571. **
  572. *******************************************************************************/
  573. BOOLEAN btm_set_bond_type_dev(BD_ADDR bd_addr, tBTM_BOND_TYPE bond_type)
  574. {
  575. tBTM_SEC_DEV_REC *p_dev_rec = btm_find_dev(bd_addr);
  576. if (p_dev_rec == NULL) {
  577. return FALSE;
  578. }
  579. p_dev_rec->bond_type = bond_type;
  580. return TRUE;
  581. }