btm_int.h 50 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 the main Bluetooth Manager (BTM) internal
  21. * definitions.
  22. *
  23. ******************************************************************************/
  24. #ifndef BTM_INT_H
  25. #define BTM_INT_H
  26. #include "bt_defs.h"
  27. #include "bt_target.h"
  28. #include "hcidefs.h"
  29. #include "rfcdefs.h"
  30. #include "btm_api.h"
  31. #if (BLE_INCLUDED == TRUE)
  32. #include "btm_ble_int.h"
  33. #if (SMP_INCLUDED == TRUE)
  34. #include "smp_api.h"
  35. #endif
  36. #endif
  37. #if BTM_MAX_LOC_BD_NAME_LEN > 0
  38. typedef char tBTM_LOC_BD_NAME[BTM_MAX_LOC_BD_NAME_LEN + 1];
  39. #endif
  40. #define BTM_ACL_IS_CONNECTED(bda) (btm_bda_to_acl (bda, BT_TRANSPORT_BR_EDR) != NULL)
  41. /* Definitions for Server Channel Number (SCN) management
  42. */
  43. #define BTM_MAX_SCN PORT_MAX_RFC_PORTS
  44. /* Define masks for supported and exception 2.0 ACL packet types
  45. */
  46. #define BTM_ACL_SUPPORTED_PKTS_MASK (HCI_PKT_TYPES_MASK_DM1 | \
  47. HCI_PKT_TYPES_MASK_DH1 | \
  48. HCI_PKT_TYPES_MASK_DM3 | \
  49. HCI_PKT_TYPES_MASK_DH3 | \
  50. HCI_PKT_TYPES_MASK_DM5 | \
  51. HCI_PKT_TYPES_MASK_DH5)
  52. #define BTM_ACL_EXCEPTION_PKTS_MASK (HCI_PKT_TYPES_MASK_NO_2_DH1 | \
  53. HCI_PKT_TYPES_MASK_NO_3_DH1 | \
  54. HCI_PKT_TYPES_MASK_NO_2_DH3 | \
  55. HCI_PKT_TYPES_MASK_NO_3_DH3 | \
  56. HCI_PKT_TYPES_MASK_NO_2_DH5 | \
  57. HCI_PKT_TYPES_MASK_NO_3_DH5)
  58. #define BTM_EPR_AVAILABLE(p) ((HCI_ATOMIC_ENCRYPT_SUPPORTED((p)->peer_lmp_features[HCI_EXT_FEATURES_PAGE_0]) && \
  59. HCI_ATOMIC_ENCRYPT_SUPPORTED(controller_get_interface()->get_features_classic(0)->as_array)) \
  60. ? TRUE : FALSE)
  61. #define BTM_IS_BRCM_CONTROLLER() (controller_get_interface()->get_bt_version()->manufacturer == LMP_COMPID_BROADCOM)
  62. /* Define the ACL Management control structure
  63. */
  64. typedef struct {
  65. UINT16 hci_handle;
  66. UINT16 pkt_types_mask;
  67. UINT16 clock_offset;
  68. BD_ADDR remote_addr;
  69. DEV_CLASS remote_dc;
  70. BD_NAME remote_name;
  71. UINT16 manufacturer;
  72. UINT16 lmp_subversion;
  73. UINT16 link_super_tout;
  74. BD_FEATURES peer_lmp_features[HCI_EXT_FEATURES_PAGE_MAX + 1]; /* Peer LMP Extended features mask table for the device */
  75. UINT8 num_read_pages;
  76. UINT8 lmp_version;
  77. BOOLEAN in_use;
  78. UINT8 link_role;
  79. BOOLEAN link_up_issued; /* True if busy_level link up has been issued */
  80. #define BTM_ACL_SWKEY_STATE_IDLE 0
  81. #define BTM_ACL_SWKEY_STATE_MODE_CHANGE 1
  82. #define BTM_ACL_SWKEY_STATE_ENCRYPTION_OFF 2
  83. #define BTM_ACL_SWKEY_STATE_SWITCHING 3
  84. #define BTM_ACL_SWKEY_STATE_ENCRYPTION_ON 4
  85. #define BTM_ACL_SWKEY_STATE_IN_PROGRESS 5
  86. UINT8 switch_role_state;
  87. #define BTM_ACL_ENCRYPT_STATE_IDLE 0
  88. #define BTM_ACL_ENCRYPT_STATE_ENCRYPT_OFF 1 /* encryption turning off */
  89. #define BTM_ACL_ENCRYPT_STATE_TEMP_FUNC 2 /* temporarily off for change link key or role switch */
  90. #define BTM_ACL_ENCRYPT_STATE_ENCRYPT_ON 3 /* encryption turning on */
  91. UINT8 encrypt_state; /* overall BTM encryption state */
  92. #if BLE_INCLUDED == TRUE
  93. tBT_TRANSPORT transport;
  94. BD_ADDR conn_addr; /* local device address used for this connection */
  95. UINT8 conn_addr_type; /* local device address type for this connection */
  96. BD_ADDR active_remote_addr; /* remote address used on this connection */
  97. UINT8 active_remote_addr_type; /* local device address type for this connection */
  98. BD_FEATURES peer_le_features; /* Peer LE Used features mask for the device */
  99. tBTM_SET_PKT_DATA_LENGTH_CBACK *p_set_pkt_data_cback;
  100. tBTM_LE_SET_PKT_DATA_LENGTH_PARAMS data_length_params;
  101. #endif
  102. } tACL_CONN;
  103. /*****************************************************
  104. ** TIMER Definitions
  105. ******************************************************/
  106. #define TT_DEV_RESET 1
  107. #define TT_DEV_RLN 2
  108. #define TT_DEV_RLNKP 4 /* Read Link Policy Settings */
  109. /* Define the Device Management control structure
  110. */
  111. typedef struct {
  112. tBTM_DEV_STATUS_CB *p_dev_status_cb; /* Device status change callback */
  113. tBTM_VS_EVT_CB *p_vend_spec_cb[BTM_MAX_VSE_CALLBACKS]; /* Register for vendor specific events */
  114. tBTM_CMPL_CB *p_stored_link_key_cmpl_cb; /* Read/Write/Delete stored link key */
  115. TIMER_LIST_ENT reset_timer;
  116. tBTM_CMPL_CB *p_reset_cmpl_cb;
  117. TIMER_LIST_ENT rln_timer;
  118. tBTM_CMPL_CB *p_rln_cmpl_cb; /* Callback function to be called when */
  119. /* read local name function complete */
  120. TIMER_LIST_ENT rssi_timer;
  121. tBTM_CMPL_CB *p_rssi_cmpl_cb; /* Callback function to be called when */
  122. /* read rssi function completes */
  123. TIMER_LIST_ENT lnk_quality_timer;
  124. tBTM_CMPL_CB *p_lnk_qual_cmpl_cb;/* Callback function to be called when */
  125. /* read link quality function completes */
  126. TIMER_LIST_ENT txpwer_timer;
  127. tBTM_CMPL_CB *p_txpwer_cmpl_cb; /* Callback function to be called when */
  128. /* read inq tx power function completes */
  129. TIMER_LIST_ENT qossu_timer;
  130. tBTM_CMPL_CB *p_qossu_cmpl_cb; /* Callback function to be called when */
  131. /* qos setup function completes */
  132. tBTM_ROLE_SWITCH_CMPL switch_role_ref_data;
  133. tBTM_CMPL_CB *p_switch_role_cb; /* Callback function to be called when */
  134. /* requested switch role is completed */
  135. TIMER_LIST_ENT tx_power_timer;
  136. tBTM_CMPL_CB *p_tx_power_cmpl_cb;/* Callback function to be called */
  137. DEV_CLASS dev_class; /* Local device class */
  138. #if BLE_INCLUDED == TRUE
  139. tBTM_CMPL_CB *p_le_test_cmd_cmpl_cb; /* Callback function to be called when
  140. LE test mode command has been sent successfully */
  141. BD_ADDR read_tx_pwr_addr; /* read TX power target address */
  142. #define BTM_LE_SUPPORT_STATE_SIZE 8
  143. UINT8 le_supported_states[BTM_LE_SUPPORT_STATE_SIZE];
  144. tBTM_BLE_LOCAL_ID_KEYS id_keys; /* local BLE ID keys */
  145. BT_OCTET16 ble_encryption_key_value; /* BLE encryption key */
  146. #if BTM_BLE_CONFORMANCE_TESTING == TRUE
  147. BOOLEAN no_disc_if_pair_fail;
  148. BOOLEAN enable_test_mac_val;
  149. BT_OCTET8 test_mac;
  150. BOOLEAN enable_test_local_sign_cntr;
  151. UINT32 test_local_sign_cntr;
  152. #endif
  153. #endif /* BLE_INCLUDED */
  154. tBTM_IO_CAP loc_io_caps; /* IO capability of the local device */
  155. tBTM_AUTH_REQ loc_auth_req; /* the auth_req flag */
  156. BOOLEAN secure_connections_only; /* Rejects service level 0 connections if */
  157. /* itself or peer device doesn't support */
  158. /* secure connections */
  159. } tBTM_DEVCB;
  160. /* Define the structures and constants used for inquiry
  161. */
  162. /* Definitions of limits for inquiries */
  163. #define BTM_PER_INQ_MIN_MAX_PERIOD HCI_PER_INQ_MIN_MAX_PERIOD
  164. #define BTM_PER_INQ_MAX_MAX_PERIOD HCI_PER_INQ_MAX_MAX_PERIOD
  165. #define BTM_PER_INQ_MIN_MIN_PERIOD HCI_PER_INQ_MIN_MIN_PERIOD
  166. #define BTM_PER_INQ_MAX_MIN_PERIOD HCI_PER_INQ_MAX_MIN_PERIOD
  167. #define BTM_MAX_INQUIRY_LENGTH HCI_MAX_INQUIRY_LENGTH
  168. #define BTM_MIN_INQUIRY_LEN 0x01
  169. #define BTM_MIN_INQ_TX_POWER -70
  170. #define BTM_MAX_INQ_TX_POWER 20
  171. typedef struct {
  172. UINT32 inq_count; /* Used for determining if a response has already been */
  173. /* received for the current inquiry operation. (We do not */
  174. /* want to flood the caller with multiple responses from */
  175. /* the same device. */
  176. BD_ADDR bd_addr;
  177. } tINQ_BDADDR;
  178. typedef struct {
  179. UINT32 time_of_resp;
  180. UINT32 inq_count; /* "timestamps" the entry with a particular inquiry count */
  181. /* Used for determining if a response has already been */
  182. /* received for the current inquiry operation. (We do not */
  183. /* want to flood the caller with multiple responses from */
  184. /* the same device. */
  185. tBTM_INQ_INFO inq_info;
  186. BOOLEAN in_use;
  187. #if (BLE_INCLUDED == TRUE)
  188. BOOLEAN scan_rsp;
  189. #endif
  190. } tINQ_DB_ENT;
  191. enum {
  192. INQ_NONE,
  193. INQ_LE_OBSERVE,
  194. INQ_GENERAL
  195. };
  196. typedef UINT8 tBTM_INQ_TYPE;
  197. typedef struct {
  198. tBTM_CMPL_CB *p_remname_cmpl_cb;
  199. #define BTM_EXT_RMT_NAME_TIMEOUT 40
  200. TIMER_LIST_ENT rmt_name_timer_ent;
  201. UINT16 discoverable_mode;
  202. UINT16 connectable_mode;
  203. UINT16 page_scan_window;
  204. UINT16 page_scan_period;
  205. UINT16 inq_scan_window;
  206. UINT16 inq_scan_period;
  207. UINT16 inq_scan_type;
  208. UINT16 page_scan_type; /* current page scan type */
  209. tBTM_INQ_TYPE scan_type;
  210. BD_ADDR remname_bda; /* Name of bd addr for active remote name request */
  211. #define BTM_RMT_NAME_INACTIVE 0
  212. #define BTM_RMT_NAME_EXT 0x1 /* Initiated through API */
  213. #define BTM_RMT_NAME_SEC 0x2 /* Initiated internally by security manager */
  214. #define BTM_RMT_NAME_INQ 0x4 /* Remote name initiated internally by inquiry */
  215. BOOLEAN remname_active; /* State of a remote name request by external API */
  216. tBTM_CMPL_CB *p_inq_cmpl_cb;
  217. tBTM_INQ_RESULTS_CB *p_inq_results_cb;
  218. tBTM_CMPL_CB *p_inq_ble_cmpl_cb; /*completion callback exclusively for LE Observe*/
  219. tBTM_INQ_RESULTS_CB *p_inq_ble_results_cb;/*results callback exclusively for LE observe*/
  220. tBTM_CMPL_CB *p_inqfilter_cmpl_cb; /* Called (if not NULL) after inquiry filter completed */
  221. UINT32 inq_counter; /* Counter incremented each time an inquiry completes */
  222. /* Used for determining whether or not duplicate devices */
  223. /* have responded to the same inquiry */
  224. TIMER_LIST_ENT inq_timer_ent;
  225. tINQ_BDADDR *p_bd_db; /* Pointer to memory that holds bdaddrs */
  226. UINT16 num_bd_entries; /* Number of entries in database */
  227. UINT16 max_bd_entries; /* Maximum number of entries that can be stored */
  228. tINQ_DB_ENT inq_db[BTM_INQ_DB_SIZE];
  229. tBTM_INQ_PARMS inqparms; /* Contains the parameters for the current inquiry */
  230. tBTM_INQUIRY_CMPL inq_cmpl_info; /* Status and number of responses from the last inquiry */
  231. UINT16 per_min_delay; /* Current periodic minimum delay */
  232. UINT16 per_max_delay; /* Current periodic maximum delay */
  233. BOOLEAN inqfilt_active;
  234. UINT8 pending_filt_complete_event; /* to take care of btm_event_filter_complete corresponding to */
  235. /* inquiry that has been cancelled*/
  236. UINT8 inqfilt_type; /* Contains the inquiry filter type (BD ADDR, COD, or Clear) */
  237. #define BTM_INQ_INACTIVE_STATE 0
  238. #define BTM_INQ_CLR_FILT_STATE 1 /* Currently clearing the inquiry filter preceeding the inquiry request */
  239. /* (bypassed if filtering is not used) */
  240. #define BTM_INQ_SET_FILT_STATE 2 /* Sets the new filter (or turns off filtering) in this state */
  241. #define BTM_INQ_ACTIVE_STATE 3 /* Actual inquiry or periodic inquiry is in progress */
  242. #define BTM_INQ_REMNAME_STATE 4 /* Remote name requests are active */
  243. UINT8 state; /* Current state that the inquiry process is in */
  244. UINT8 inq_active; /* Bit Mask indicating type of inquiry is active */
  245. BOOLEAN no_inc_ssp; /* TRUE, to stop inquiry on incoming SSP */
  246. #if (defined(BTA_HOST_INTERLEAVE_SEARCH) && BTA_HOST_INTERLEAVE_SEARCH == TRUE)
  247. btm_inq_state next_state; /*interleaving state to determine next mode to be inquired*/
  248. #endif
  249. } tBTM_INQUIRY_VAR_ST;
  250. /* The MSB of the clock offset field indicates that the offset is valid if TRUE */
  251. #define BTM_CLOCK_OFFSET_VALID 0x8000
  252. /* Define the structures needed by security management
  253. */
  254. #define BTM_SEC_INVALID_HANDLE 0xFFFF
  255. typedef UINT8 *BTM_BD_NAME_PTR; /* Pointer to Device name */
  256. /* Security callback is called by this unit when security
  257. ** procedures are completed. Parameters are
  258. ** BD Address of remote
  259. ** Result of the operation
  260. */
  261. typedef tBTM_SEC_CBACK tBTM_SEC_CALLBACK;
  262. typedef void (tBTM_SCO_IND_CBACK) (UINT16 sco_inx) ;
  263. /* MACROs to convert from SCO packet types mask to ESCO and back */
  264. #define BTM_SCO_PKT_TYPE_MASK ( HCI_PKT_TYPES_MASK_HV1 \
  265. | HCI_PKT_TYPES_MASK_HV2 \
  266. | HCI_PKT_TYPES_MASK_HV3)
  267. /* Mask defining only the SCO types of an esco packet type */
  268. #define BTM_ESCO_PKT_TYPE_MASK ( HCI_ESCO_PKT_TYPES_MASK_HV1 \
  269. | HCI_ESCO_PKT_TYPES_MASK_HV2 \
  270. | HCI_ESCO_PKT_TYPES_MASK_HV3)
  271. #define BTM_SCO_2_ESCO(scotype) ((UINT16)(((scotype) & BTM_SCO_PKT_TYPE_MASK) >> 5))
  272. #define BTM_ESCO_2_SCO(escotype) ((UINT16)(((escotype) & BTM_ESCO_PKT_TYPE_MASK) << 5))
  273. /* Define masks for supported and exception 2.0 SCO packet types
  274. */
  275. #define BTM_SCO_SUPPORTED_PKTS_MASK (HCI_ESCO_PKT_TYPES_MASK_HV1 | \
  276. HCI_ESCO_PKT_TYPES_MASK_HV2 | \
  277. HCI_ESCO_PKT_TYPES_MASK_HV3 | \
  278. HCI_ESCO_PKT_TYPES_MASK_EV3 | \
  279. HCI_ESCO_PKT_TYPES_MASK_EV4 | \
  280. HCI_ESCO_PKT_TYPES_MASK_EV5)
  281. #define BTM_SCO_EXCEPTION_PKTS_MASK (HCI_ESCO_PKT_TYPES_MASK_NO_2_EV3 | \
  282. HCI_ESCO_PKT_TYPES_MASK_NO_3_EV3 | \
  283. HCI_ESCO_PKT_TYPES_MASK_NO_2_EV5 | \
  284. HCI_ESCO_PKT_TYPES_MASK_NO_3_EV5)
  285. #define BTM_SCO_ROUTE_UNKNOWN 0xff
  286. /* Define the structure that contains (e)SCO data */
  287. typedef struct {
  288. tBTM_ESCO_CBACK *p_esco_cback; /* Callback for eSCO events */
  289. tBTM_ESCO_PARAMS setup;
  290. tBTM_ESCO_DATA data; /* Connection complete information */
  291. UINT8 hci_status;
  292. } tBTM_ESCO_INFO;
  293. /* Define the structure used for SCO Management
  294. */
  295. typedef struct {
  296. tBTM_ESCO_INFO esco; /* Current settings */
  297. #if BTM_SCO_HCI_INCLUDED == TRUE
  298. fixed_queue_t *xmit_data_q; /* SCO data transmitting queue */
  299. #endif
  300. tBTM_SCO_CB *p_conn_cb; /* Callback for when connected */
  301. tBTM_SCO_CB *p_disc_cb; /* Callback for when disconnect */
  302. UINT16 state; /* The state of the SCO link */
  303. UINT16 hci_handle; /* HCI Handle */
  304. BOOLEAN is_orig; /* TRUE if the originator */
  305. BOOLEAN rem_bd_known; /* TRUE if remote BD addr known */
  306. } tSCO_CONN;
  307. /* SCO Management control block */
  308. typedef struct {
  309. tBTM_SCO_IND_CBACK *app_sco_ind_cb;
  310. #if BTM_SCO_HCI_INCLUDED == TRUE
  311. tBTM_SCO_DATA_CB *p_data_cb; /* Callback for SCO data over HCI */
  312. UINT32 xmit_window_size; /* Total SCO window in bytes */
  313. #endif
  314. tSCO_CONN sco_db[BTM_MAX_SCO_LINKS];
  315. tBTM_ESCO_PARAMS def_esco_parms;
  316. BD_ADDR xfer_addr;
  317. UINT16 sco_disc_reason;
  318. BOOLEAN esco_supported; /* TRUE if 1.2 cntlr AND supports eSCO links */
  319. tBTM_SCO_TYPE desired_sco_mode;
  320. tBTM_SCO_TYPE xfer_sco_type;
  321. tBTM_SCO_PCM_PARAM sco_pcm_param;
  322. tBTM_SCO_CODEC_TYPE codec_in_use; /* None, CVSD, MSBC, etc. */
  323. #if BTM_SCO_HCI_INCLUDED == TRUE
  324. tBTM_SCO_ROUTE_TYPE sco_path;
  325. #endif
  326. } tSCO_CB;
  327. #if BTM_SCO_INCLUDED == TRUE
  328. void btm_set_sco_ind_cback( tBTM_SCO_IND_CBACK *sco_ind_cb );
  329. void btm_accept_sco_link(UINT16 sco_inx, tBTM_ESCO_PARAMS *p_setup,
  330. tBTM_SCO_CB *p_conn_cb, tBTM_SCO_CB *p_disc_cb);
  331. void btm_reject_sco_link(UINT16 sco_inx );
  332. void btm_sco_chk_pend_rolechange (UINT16 hci_handle);
  333. #else
  334. #define btm_accept_sco_link(sco_inx, p_setup, p_conn_cb, p_disc_cb)
  335. #define btm_reject_sco_link(sco_inx)
  336. #define btm_set_sco_ind_cback(sco_ind_cb)
  337. #define btm_sco_chk_pend_rolechange(hci_handle)
  338. #endif /* BTM_SCO_INCLUDED */
  339. /*
  340. ** Define structure for Security Service Record.
  341. ** A record exists for each service registered with the Security Manager
  342. */
  343. #define BTM_SEC_OUT_FLAGS (BTM_SEC_OUT_AUTHENTICATE | BTM_SEC_OUT_ENCRYPT | BTM_SEC_OUT_AUTHORIZE)
  344. #define BTM_SEC_IN_FLAGS (BTM_SEC_IN_AUTHENTICATE | BTM_SEC_IN_ENCRYPT | BTM_SEC_IN_AUTHORIZE)
  345. #define BTM_SEC_OUT_LEVEL4_FLAGS (BTM_SEC_OUT_AUTHENTICATE | BTM_SEC_OUT_ENCRYPT | \
  346. BTM_SEC_OUT_MITM | BTM_SEC_MODE4_LEVEL4)
  347. #define BTM_SEC_IN_LEVEL4_FLAGS (BTM_SEC_IN_AUTHENTICATE | BTM_SEC_IN_ENCRYPT | \
  348. BTM_SEC_IN_MITM | BTM_SEC_MODE4_LEVEL4)
  349. typedef struct {
  350. UINT32 mx_proto_id; /* Service runs over this multiplexer protocol */
  351. UINT32 orig_mx_chan_id; /* Channel on the multiplexer protocol */
  352. UINT32 term_mx_chan_id; /* Channel on the multiplexer protocol */
  353. UINT16 psm; /* L2CAP PSM value */
  354. UINT16 security_flags; /* Bitmap of required security features */
  355. UINT8 service_id; /* Passed in authorization callback */
  356. #if (L2CAP_UCD_INCLUDED == TRUE)
  357. UINT16 ucd_security_flags; /* Bitmap of required security features for UCD */
  358. #endif
  359. #if BTM_SEC_SERVICE_NAME_LEN > 0
  360. UINT8 orig_service_name[BTM_SEC_SERVICE_NAME_LEN + 1];
  361. UINT8 term_service_name[BTM_SEC_SERVICE_NAME_LEN + 1];
  362. #endif
  363. } tBTM_SEC_SERV_REC;
  364. #if BLE_INCLUDED == TRUE
  365. /* LE Security information of device in Slave Role */
  366. typedef struct {
  367. BT_OCTET16 irk; /* peer diverified identity root */
  368. BT_OCTET16 pltk; /* peer long term key */
  369. BT_OCTET16 pcsrk; /* peer SRK peer device used to secured sign local data */
  370. BT_OCTET16 lltk; /* local long term key */
  371. BT_OCTET16 lcsrk; /* local SRK peer device used to secured sign local data */
  372. BT_OCTET8 rand; /* random vector for LTK generation */
  373. UINT16 ediv; /* LTK diversifier of this slave device */
  374. UINT16 div; /* local DIV to generate local LTK=d1(ER,DIV,0) and CSRK=d1(ER,DIV,1) */
  375. UINT8 sec_level; /* local pairing security level */
  376. UINT8 key_size; /* key size of the LTK delivered to peer device */
  377. UINT8 srk_sec_level; /* security property of peer SRK for this device */
  378. UINT8 local_csrk_sec_level; /* security property of local CSRK for this device */
  379. UINT32 counter; /* peer sign counter for verifying rcv signed cmd */
  380. UINT32 local_counter; /* local sign counter for sending signed write cmd*/
  381. } tBTM_SEC_BLE_KEYS;
  382. typedef struct {
  383. BD_ADDR pseudo_addr; /* LE pseudo address of the device if different from device address */
  384. tBLE_ADDR_TYPE ble_addr_type; /* LE device type: public or random address */
  385. tBLE_ADDR_TYPE static_addr_type; /* static address type */
  386. BD_ADDR static_addr; /* static address */
  387. #define BTM_WHITE_LIST_BIT 0x01
  388. #define BTM_RESOLVING_LIST_BIT 0x02
  389. UINT8 in_controller_list; /* in controller resolving list or not */
  390. UINT8 resolving_list_index;
  391. #if BLE_PRIVACY_SPT == TRUE
  392. BD_ADDR cur_rand_addr; /* current random address */
  393. #define BTM_BLE_ADDR_PSEUDO 0 /* address index device record */
  394. #define BTM_BLE_ADDR_RRA 1 /* cur_rand_addr */
  395. #define BTM_BLE_ADDR_STATIC 2 /* static_addr */
  396. UINT8 active_addr_type;
  397. #endif
  398. #if SMP_INCLUDED == TRUE
  399. tBTM_LE_KEY_TYPE key_type; /* bit mask of valid key types in record */
  400. tBTM_SEC_BLE_KEYS keys; /* LE device security info in slave rode */
  401. #endif
  402. #if (BLE_PRIVACY_SPT == TRUE)
  403. tBLE_ADDR_TYPE current_addr_type; /* current adv addr type*/
  404. BD_ADDR current_addr; /* current adv addr*/
  405. bool current_addr_valid; /* current addr info is valid or not*/
  406. #endif
  407. } tBTM_SEC_BLE;
  408. #endif /* BLE_INCLUDED */
  409. /* Peering bond type */
  410. enum {
  411. BOND_TYPE_UNKNOWN,
  412. BOND_TYPE_PERSISTENT,
  413. BOND_TYPE_TEMPORARY
  414. };
  415. typedef UINT8 tBTM_BOND_TYPE;
  416. /*
  417. ** Define structure for Security Device Record.
  418. ** A record exists for each device authenticated with this device
  419. */
  420. typedef struct {
  421. tBTM_SEC_SERV_REC *p_cur_service;
  422. tBTM_SEC_CALLBACK *p_callback;
  423. void *p_ref_data;
  424. UINT32 timestamp; /* Timestamp of the last connection */
  425. UINT32 trusted_mask[BTM_SEC_SERVICE_ARRAY_SIZE]; /* Bitwise OR of trusted services */
  426. UINT16 hci_handle; /* Handle to connection when exists */
  427. UINT16 clock_offset; /* Latest known clock offset */
  428. BD_ADDR bd_addr; /* BD_ADDR of the device */
  429. DEV_CLASS dev_class; /* DEV_CLASS of the device */
  430. LINK_KEY link_key; /* Device link key */
  431. UINT8 pin_code_length; /* Length of the pin_code used for paring */
  432. #define BTM_SEC_AUTHORIZED BTM_SEC_FLAG_AUTHORIZED /* 0x01 */
  433. #define BTM_SEC_AUTHENTICATED BTM_SEC_FLAG_AUTHENTICATED /* 0x02 */
  434. #define BTM_SEC_ENCRYPTED BTM_SEC_FLAG_ENCRYPTED /* 0x04 */
  435. #define BTM_SEC_NAME_KNOWN 0x08
  436. #define BTM_SEC_LINK_KEY_KNOWN BTM_SEC_FLAG_LKEY_KNOWN /* 0x10 */
  437. #define BTM_SEC_LINK_KEY_AUTHED BTM_SEC_FLAG_LKEY_AUTHED /* 0x20 */
  438. #define BTM_SEC_ROLE_SWITCHED 0x40
  439. #define BTM_SEC_IN_USE 0x80
  440. /* LE link security flag */
  441. #define BTM_SEC_LE_AUTHENTICATED 0x0200 /* LE link is encrypted after pairing with MITM */
  442. #define BTM_SEC_LE_ENCRYPTED 0x0400 /* LE link is encrypted */
  443. #define BTM_SEC_LE_NAME_KNOWN 0x0800 /* not used */
  444. #define BTM_SEC_LE_LINK_KEY_KNOWN 0x1000 /* bonded with peer (peer LTK and/or SRK is saved) */
  445. #define BTM_SEC_LE_LINK_KEY_AUTHED 0x2000 /* pairing is done with MITM */
  446. #define BTM_SEC_16_DIGIT_PIN_AUTHED 0x4000 /* pairing is done with 16 digit pin */
  447. UINT16 sec_flags; /* Current device security state */
  448. tBTM_BD_NAME sec_bd_name; /* User friendly name of the device. (may be truncated to save space in dev_rec table) */
  449. BD_FEATURES features[HCI_EXT_FEATURES_PAGE_MAX + 1]; /* Features supported by the device */
  450. UINT8 num_read_pages;
  451. #define BTM_SEC_STATE_IDLE 0
  452. #define BTM_SEC_STATE_AUTHENTICATING 1
  453. #define BTM_SEC_STATE_ENCRYPTING 2
  454. #define BTM_SEC_STATE_GETTING_NAME 3
  455. #define BTM_SEC_STATE_AUTHORIZING 4
  456. #define BTM_SEC_STATE_SWITCHING_ROLE 5
  457. #define BTM_SEC_STATE_DISCONNECTING 6 /* disconnecting BR/EDR */
  458. #define BTM_SEC_STATE_DELAY_FOR_ENC 7 /* delay to check for encryption to work around */
  459. /* controller problems */
  460. #define BTM_SEC_STATE_DISCONNECTING_BLE 8 /* disconnecting BLE */
  461. #define BTM_SEC_STATE_DISCONNECTING_BOTH 9 /* disconnecting BR/EDR and BLE */
  462. UINT8 sec_state; /* Operating state */
  463. BOOLEAN is_originator; /* TRUE if device is originating connection */
  464. #if (L2CAP_UCD_INCLUDED == TRUE)
  465. BOOLEAN is_ucd; /* TRUE if device is sending or receiving UCD */
  466. /* if incoming security failed, received UCD will be discarded */
  467. #endif
  468. BOOLEAN role_master; /* TRUE if current mode is master */
  469. UINT16 security_required; /* Security required for connection */
  470. BOOLEAN link_key_not_sent; /* link key notification has not been sent waiting for name */
  471. UINT8 link_key_type; /* Type of key used in pairing */
  472. BOOLEAN link_key_changed; /* Changed link key during current connection */
  473. #define BTM_MAX_PRE_SM4_LKEY_TYPE BTM_LKEY_TYPE_REMOTE_UNIT /* the link key type used by legacy pairing */
  474. #define BTM_SM4_UNKNOWN 0x00
  475. #define BTM_SM4_KNOWN 0x10
  476. #define BTM_SM4_TRUE 0x11
  477. #define BTM_SM4_REQ_PEND 0x08 /* set this bit when getting remote features */
  478. #define BTM_SM4_UPGRADE 0x04 /* set this bit when upgrading link key */
  479. #define BTM_SM4_RETRY 0x02 /* set this bit to retry on HCI_ERR_KEY_MISSING or HCI_ERR_LMP_ERR_TRANS_COLLISION */
  480. #define BTM_SM4_DD_ACP 0x20 /* set this bit to indicate peer initiated dedicated bonding */
  481. #define BTM_SM4_CONN_PEND 0x40 /* set this bit to indicate accepting acl conn; to be cleared on btm_acl_created */
  482. UINT8 sm4; /* BTM_SM4_TRUE, if the peer supports SM4 */
  483. tBTM_IO_CAP rmt_io_caps; /* IO capability of the peer device */
  484. tBTM_AUTH_REQ rmt_auth_req; /* the auth_req flag as in the IO caps rsp evt */
  485. BOOLEAN remote_supports_secure_connections;
  486. BOOLEAN remote_features_needed; /* set to true if the local device is in */
  487. /* "Secure Connections Only" mode and it receives */
  488. /* HCI_IO_CAPABILITY_REQUEST_EVT from the peer before */
  489. /* it knows peer's support for Secure Connections */
  490. UINT16 ble_hci_handle; /* use in DUMO connection */
  491. UINT8 enc_key_size; /* current link encryption key size */
  492. tBT_DEVICE_TYPE device_type;
  493. BOOLEAN new_encryption_key_is_p256; /* Set to TRUE when the newly generated LK
  494. ** is generated from P-256.
  495. ** Link encrypted with such LK can be used
  496. ** for SM over BR/EDR.
  497. */
  498. BOOLEAN no_smp_on_br; /* if set to TRUE then SMP on BR/EDR doesn't */
  499. /* work, i.e. link keys crosspairing */
  500. /* SC BR/EDR->SC LE doesn't happen */
  501. tBTM_BOND_TYPE bond_type; /* peering bond type */
  502. #if BLE_INCLUDED == TRUE
  503. tBTM_SEC_BLE ble;
  504. tBTM_LE_CONN_PRAMS conn_params;
  505. #endif
  506. // btla-specific ++
  507. #if BTM_DISC_DURING_RS == TRUE
  508. #define BTM_SEC_RS_NOT_PENDING 0 /* Role Switch not in progress */
  509. #define BTM_SEC_RS_PENDING 1 /* Role Switch in progress */
  510. #define BTM_SEC_DISC_PENDING 2 /* Disconnect is pending */
  511. UINT8 rs_disc_pending;
  512. #endif
  513. // btla-specific --
  514. #define BTM_SEC_NO_LAST_SERVICE_ID 0
  515. UINT8 last_author_service_id; /* ID of last serviced authorized: Reset after each l2cap connection */
  516. } tBTM_SEC_DEV_REC;
  517. #define BTM_SEC_IS_SM4(sm) ((BOOLEAN)(BTM_SM4_TRUE == ((sm)&BTM_SM4_TRUE)))
  518. #define BTM_SEC_IS_SM4_LEGACY(sm) ((BOOLEAN)(BTM_SM4_KNOWN == ((sm)&BTM_SM4_TRUE)))
  519. #define BTM_SEC_IS_SM4_UNKNOWN(sm) ((BOOLEAN)(BTM_SM4_UNKNOWN == ((sm)&BTM_SM4_TRUE)))
  520. #define BTM_SEC_LE_MASK (BTM_SEC_LE_AUTHENTICATED|BTM_SEC_LE_ENCRYPTED|BTM_SEC_LE_LINK_KEY_KNOWN|BTM_SEC_LE_LINK_KEY_AUTHED)
  521. /*
  522. ** Define device configuration structure
  523. */
  524. typedef struct {
  525. #if BTM_MAX_LOC_BD_NAME_LEN > 0
  526. tBTM_LOC_BD_NAME bd_name; /* local Bluetooth device name */
  527. #endif
  528. BOOLEAN pin_type; /* TRUE if PIN type is fixed */
  529. UINT8 pin_code_len; /* Bonding information */
  530. PIN_CODE pin_code; /* PIN CODE if pin type is fixed */
  531. BOOLEAN connectable; /* If TRUE page scan should be enabled */
  532. UINT8 def_inq_scan_mode; /* ??? limited/general/none */
  533. } tBTM_CFG;
  534. enum {
  535. BTM_PM_ST_ACTIVE = BTM_PM_STS_ACTIVE,
  536. BTM_PM_ST_HOLD = BTM_PM_STS_HOLD,
  537. BTM_PM_ST_SNIFF = BTM_PM_STS_SNIFF,
  538. BTM_PM_ST_PARK = BTM_PM_STS_PARK,
  539. BTM_PM_ST_PENDING = BTM_PM_STS_PENDING
  540. };
  541. typedef UINT8 tBTM_PM_STATE;
  542. enum {
  543. BTM_PM_SET_MODE_EVT, /* Set power mode API is called. */
  544. BTM_PM_UPDATE_EVT,
  545. BTM_PM_RD_MODE_EVT /* Read power mode API is called. */
  546. };
  547. typedef UINT8 tBTM_PM_EVENT;
  548. typedef struct {
  549. UINT16 event;
  550. UINT16 len;
  551. UINT8 link_ind;
  552. } tBTM_PM_MSG_DATA;
  553. typedef struct {
  554. UINT8 hci_status;
  555. UINT8 mode;
  556. UINT16 interval;
  557. } tBTM_PM_MD_CHG_DATA;
  558. typedef struct {
  559. UINT8 pm_id; /* the entity that calls SetPowerMode API */
  560. tBTM_PM_PWR_MD *p_pmd;
  561. } tBTM_PM_SET_MD_DATA;
  562. typedef struct {
  563. void *p_data;
  564. UINT8 link_ind;
  565. } tBTM_PM_SM_DATA;
  566. typedef struct {
  567. tBTM_PM_PWR_MD req_mode[BTM_MAX_PM_RECORDS + 1]; /* the desired mode and parameters of the connection*/
  568. tBTM_PM_PWR_MD set_mode; /* the mode and parameters sent down to the host controller. */
  569. UINT16 interval; /* the interval from last mode change event. */
  570. #if (BTM_SSR_INCLUDED == TRUE)
  571. UINT16 max_lat; /* stored SSR maximum latency */
  572. UINT16 min_rmt_to;/* stored SSR minimum remote timeout */
  573. UINT16 min_loc_to;/* stored SSR minimum local timeout */
  574. #endif
  575. tBTM_PM_STATE state; /* contains the current mode of the connection */
  576. BOOLEAN chg_ind; /* a request change indication */
  577. } tBTM_PM_MCB;
  578. #define BTM_PM_REC_NOT_USED 0
  579. typedef struct {
  580. tBTM_PM_STATUS_CBACK *cback;/* to notify the registered party of mode change event */
  581. UINT8 mask; /* registered request mask. 0, if this entry is not used */
  582. } tBTM_PM_RCB;
  583. enum {
  584. BTM_BLI_ACL_UP_EVT,
  585. BTM_BLI_ACL_DOWN_EVT,
  586. BTM_BLI_PAGE_EVT,
  587. BTM_BLI_PAGE_DONE_EVT,
  588. BTM_BLI_INQ_EVT,
  589. BTM_BLI_INQ_CANCEL_EVT,
  590. BTM_BLI_INQ_DONE_EVT
  591. };
  592. typedef UINT8 tBTM_BLI_EVENT;
  593. /* Pairing State */
  594. enum {
  595. BTM_PAIR_STATE_IDLE, /* Idle */
  596. BTM_PAIR_STATE_GET_REM_NAME, /* Getting the remote name (to check for SM4) */
  597. BTM_PAIR_STATE_WAIT_PIN_REQ, /* Started authentication, waiting for PIN req (PIN is pre-fetched) */
  598. BTM_PAIR_STATE_WAIT_LOCAL_PIN, /* Waiting for local PIN code */
  599. BTM_PAIR_STATE_WAIT_NUMERIC_CONFIRM, /* Waiting user 'yes' to numeric confirmation */
  600. BTM_PAIR_STATE_KEY_ENTRY, /* Key entry state (we are a keyboard) */
  601. BTM_PAIR_STATE_WAIT_LOCAL_OOB_RSP, /* Waiting for local response to peer OOB data */
  602. BTM_PAIR_STATE_WAIT_LOCAL_IOCAPS, /* Waiting for local IO capabilities and OOB data */
  603. BTM_PAIR_STATE_INCOMING_SSP, /* Incoming SSP (got peer IO caps when idle) */
  604. BTM_PAIR_STATE_WAIT_AUTH_COMPLETE, /* All done, waiting authentication cpmplete */
  605. BTM_PAIR_STATE_WAIT_DISCONNECT /* Waiting to disconnect the ACL */
  606. };
  607. typedef UINT8 tBTM_PAIRING_STATE;
  608. #define BTM_PAIR_FLAGS_WE_STARTED_DD 0x01 /* We want to do dedicated bonding */
  609. #define BTM_PAIR_FLAGS_PEER_STARTED_DD 0x02 /* Peer initiated dedicated bonding */
  610. #define BTM_PAIR_FLAGS_DISC_WHEN_DONE 0x04 /* Disconnect when done */
  611. #define BTM_PAIR_FLAGS_PIN_REQD 0x08 /* set this bit when pin_callback is called */
  612. #define BTM_PAIR_FLAGS_PRE_FETCH_PIN 0x10 /* set this bit when pre-fetch pin */
  613. #define BTM_PAIR_FLAGS_REJECTED_CONNECT 0x20 /* set this bit when rejected incoming connection */
  614. #define BTM_PAIR_FLAGS_WE_CANCEL_DD 0x40 /* set this bit when cancelling a bonding procedure */
  615. #define BTM_PAIR_FLAGS_LE_ACTIVE 0x80 /* use this bit when SMP pairing is active */
  616. typedef struct {
  617. BOOLEAN is_mux;
  618. BD_ADDR bd_addr;
  619. UINT16 psm;
  620. BOOLEAN is_orig;
  621. tBTM_SEC_CALLBACK *p_callback;
  622. void *p_ref_data;
  623. UINT32 mx_proto_id;
  624. UINT32 mx_chan_id;
  625. tBT_TRANSPORT transport;
  626. } tBTM_SEC_QUEUE_ENTRY;
  627. #if (L2CAP_UCD_INCLUDED == TRUE)
  628. #define CONN_ORIENT_TERM 0x00 /* incoming connection oriented */
  629. #define CONN_ORIENT_ORIG 0x01 /* outgoing connection oriented */
  630. #define CONNLESS_TERM 0x02 /* incoming connectionless */
  631. #define CONNLESS_ORIG 0x03 /* outgoing connectionless */
  632. #define CONNECTION_TYPE_ORIG_MASK 0x01 /* mask for direction */
  633. #define CONNECTION_TYPE_CONNLESS_MASK 0x02 /* mask for connectionless or not */
  634. typedef UINT8 CONNECTION_TYPE;
  635. #else
  636. #define CONN_ORIENT_TERM FALSE
  637. #define CONN_ORIENT_ORIG TRUE
  638. typedef BOOLEAN CONNECTION_TYPE;
  639. #endif /* (L2CAP_UCD_INCLUDED == TRUE) */
  640. /* Define a structure to hold all the BTM data
  641. */
  642. #define BTM_STATE_BUFFER_SIZE 5 /* size of state buffer */
  643. typedef struct {
  644. tBTM_CFG cfg; /* Device configuration */
  645. /****************************************************
  646. ** ACL Management
  647. ****************************************************/
  648. tACL_CONN acl_db[MAX_L2CAP_LINKS];
  649. #if (CLASSIC_BT_INCLUDED == TRUE)
  650. UINT8 btm_scn[BTM_MAX_SCN]; /* current SCNs: TRUE if SCN is in use */
  651. #endif ///CLASSIC_BT_INCLUDED == TRUE
  652. UINT16 btm_def_link_policy;
  653. UINT16 btm_def_link_super_tout;
  654. tBTM_BL_EVENT_MASK bl_evt_mask;
  655. tBTM_BL_CHANGE_CB *p_bl_changed_cb; /* Callback for when Busy Level changed */
  656. /****************************************************
  657. ** Power Management
  658. ****************************************************/
  659. tBTM_PM_MCB pm_mode_db[MAX_L2CAP_LINKS]; /* per ACL link */
  660. tBTM_PM_RCB pm_reg_db[BTM_MAX_PM_RECORDS + 1]; /* per application/module */
  661. UINT8 pm_pend_link; /* the index of acl_db, which has a pending PM cmd */
  662. UINT8 pm_pend_id; /* the id pf the module, which has a pending PM cmd */
  663. /*****************************************************
  664. ** Device control
  665. *****************************************************/
  666. tBTM_DEVCB devcb;
  667. /*****************************************************
  668. ** BLE Device controllers
  669. *****************************************************/
  670. #if (BLE_INCLUDED == TRUE)
  671. tBTM_BLE_CB ble_ctr_cb;
  672. UINT16 enc_handle;
  673. BT_OCTET8 enc_rand; /* received rand value from LTK request*/
  674. UINT16 ediv; /* received ediv value from LTK request */
  675. UINT8 key_size;
  676. tBTM_BLE_VSC_CB cmn_ble_vsc_cb;
  677. #endif
  678. /* Packet types supported by the local device */
  679. UINT16 btm_acl_pkt_types_supported;
  680. UINT16 btm_sco_pkt_types_supported;
  681. /*****************************************************
  682. ** Inquiry
  683. *****************************************************/
  684. tBTM_INQUIRY_VAR_ST btm_inq_vars;
  685. /*****************************************************
  686. ** SCO Management
  687. *****************************************************/
  688. #if BTM_SCO_INCLUDED == TRUE
  689. tSCO_CB sco_cb;
  690. #endif
  691. /*****************************************************
  692. ** Security Management
  693. *****************************************************/
  694. tBTM_APPL_INFO api;
  695. #define BTM_SEC_MAX_RMT_NAME_CALLBACKS 2
  696. tBTM_RMT_NAME_CALLBACK *p_rmt_name_callback[BTM_SEC_MAX_RMT_NAME_CALLBACKS];
  697. #if (SMP_INCLUDED == TRUE)
  698. tBTM_SEC_DEV_REC *p_collided_dev_rec;
  699. #endif ///SMP_INCLUDED == TRUE
  700. TIMER_LIST_ENT sec_collision_tle;
  701. UINT32 collision_start_time;
  702. UINT32 max_collision_delay;
  703. UINT32 dev_rec_count; /* Counter used for device record timestamp */
  704. UINT8 security_mode;
  705. BOOLEAN pairing_disabled;
  706. BOOLEAN connect_only_paired;
  707. BOOLEAN security_mode_changed; /* mode changed during bonding */
  708. BOOLEAN pin_type_changed; /* pin type changed during bonding */
  709. BOOLEAN sec_req_pending; /* TRUE if a request is pending */
  710. #if (SMP_INCLUDED == TRUE)
  711. // btla-specific ++
  712. #ifdef PORCHE_PAIRING_CONFLICT
  713. UINT8 pin_code_len_saved; /* for legacy devices */
  714. #endif
  715. // btla-specific --
  716. UINT8 pin_code_len; /* for legacy devices */
  717. PIN_CODE pin_code; /* for legacy devices */
  718. tBTM_PAIRING_STATE pairing_state; /* The current pairing state */
  719. UINT8 pairing_flags; /* The current pairing flags */
  720. BD_ADDR pairing_bda; /* The device currently pairing */
  721. TIMER_LIST_ENT pairing_tle; /* Timer for pairing process */
  722. UINT16 disc_handle; /* for legacy devices */
  723. UINT8 disc_reason; /* for legacy devices */
  724. #endif ///SMP_INCLUDED == TRUE
  725. #if SMP_INCLUDED == TRUE || CLASSIC_BT_INCLUDED == TRUE
  726. tBTM_SEC_SERV_REC sec_serv_rec[BTM_SEC_MAX_SERVICE_RECORDS];
  727. #endif // SMP_INCLUDED == TRUE || CLASSIC_BT_ENABLED == TRUE
  728. tBTM_SEC_DEV_REC sec_dev_rec[BTM_SEC_MAX_DEVICE_RECORDS];
  729. tBTM_SEC_SERV_REC *p_out_serv;
  730. tBTM_MKEY_CALLBACK *mkey_cback;
  731. BD_ADDR connecting_bda;
  732. DEV_CLASS connecting_dc;
  733. UINT8 acl_disc_reason;
  734. UINT8 trace_level;
  735. UINT8 busy_level; /* the current busy level */
  736. BOOLEAN is_paging; /* TRUE, if paging is in progess */
  737. BOOLEAN is_inquiry; /* TRUE, if inquiry is in progess */
  738. fixed_queue_t *page_queue;
  739. BOOLEAN paging;
  740. BOOLEAN discing;
  741. fixed_queue_t *sec_pending_q; /* pending sequrity requests in tBTM_SEC_QUEUE_ENTRY format */
  742. #if (!defined(BT_TRACE_VERBOSE) || (BT_TRACE_VERBOSE == FALSE))
  743. char state_temp_buffer[BTM_STATE_BUFFER_SIZE];
  744. #endif
  745. } tBTM_CB;
  746. typedef struct{
  747. //connection parameters update callback
  748. tBTM_UPDATE_CONN_PARAM_CBACK *update_conn_param_cb;
  749. }tBTM_CallbackFunc;
  750. extern tBTM_CallbackFunc conn_param_update_cb;
  751. /* security action for L2CAP COC channels */
  752. #define BTM_SEC_OK 1
  753. #define BTM_SEC_ENCRYPT 2 /* encrypt the link with current key */
  754. #define BTM_SEC_ENCRYPT_NO_MITM 3 /* unauthenticated encryption or better */
  755. #define BTM_SEC_ENCRYPT_MITM 4 /* authenticated encryption */
  756. #define BTM_SEC_ENC_PENDING 5 /* wait for link encryption pending */
  757. typedef UINT8 tBTM_SEC_ACTION;
  758. /*
  759. #ifdef __cplusplus
  760. extern "C"
  761. {
  762. #endif
  763. */
  764. #if BTM_DYNAMIC_MEMORY == FALSE
  765. extern tBTM_CB btm_cb;
  766. #else
  767. extern tBTM_CB *btm_cb_ptr;
  768. #define btm_cb (*btm_cb_ptr)
  769. #endif
  770. /* Internal functions provided by btm_main.c
  771. ********************************************
  772. */
  773. void btm_init (void);
  774. void btm_free (void);
  775. /* Internal functions provided by btm_inq.c
  776. *******************************************
  777. */
  778. tBTM_STATUS btm_initiate_rem_name (BD_ADDR remote_bda,
  779. tBTM_INQ_INFO *p_cur,
  780. UINT8 origin, UINT32 timeout,
  781. tBTM_CMPL_CB *p_cb);
  782. void btm_process_remote_name (BD_ADDR bda, BD_NAME name, UINT16 evt_len,
  783. UINT8 hci_status);
  784. void btm_inq_rmt_name_failed(void);
  785. /* Inquiry related functions */
  786. void btm_clr_inq_db (BD_ADDR p_bda);
  787. void btm_inq_db_init (void);
  788. void btm_process_inq_results (UINT8 *p, UINT8 inq_res_mode);
  789. void btm_process_inq_complete (UINT8 status, UINT8 mode);
  790. void btm_process_cancel_complete(UINT8 status, UINT8 mode);
  791. void btm_event_filter_complete (UINT8 *p);
  792. void btm_inq_stop_on_ssp(void);
  793. void btm_inq_clear_ssp(void);
  794. tINQ_DB_ENT *btm_inq_db_find (BD_ADDR p_bda);
  795. BOOLEAN btm_inq_find_bdaddr (BD_ADDR p_bda);
  796. BOOLEAN btm_lookup_eir(BD_ADDR_PTR p_rem_addr);
  797. /* Internal functions provided by btm_acl.c
  798. ********************************************
  799. */
  800. void btm_acl_init (void);
  801. void btm_acl_created (BD_ADDR bda, DEV_CLASS dc, BD_NAME bdn,
  802. UINT16 hci_handle, UINT8 link_role, tBT_TRANSPORT transport);
  803. void btm_acl_removed (BD_ADDR bda, tBT_TRANSPORT transport);
  804. void btm_acl_device_down (void);
  805. void btm_acl_update_busy_level (tBTM_BLI_EVENT event);
  806. void btm_cont_rswitch (tACL_CONN *p,
  807. tBTM_SEC_DEV_REC *p_dev_rec,
  808. UINT8 hci_status);
  809. UINT8 btm_handle_to_acl_index (UINT16 hci_handle);
  810. tACL_CONN *btm_handle_to_acl (UINT16 hci_handle);
  811. void btm_read_link_policy_complete (UINT8 *p);
  812. void btm_read_rssi_complete (UINT8 *p);
  813. void btm_read_tx_power_complete (UINT8 *p, BOOLEAN is_ble);
  814. void btm_read_link_quality_complete (UINT8 *p);
  815. tBTM_STATUS btm_set_packet_types (tACL_CONN *p, UINT16 pkt_types);
  816. void btm_process_clk_off_comp_evt (UINT16 hci_handle, UINT16 clock_offset);
  817. void btm_acl_role_changed (UINT8 hci_status, BD_ADDR bd_addr, UINT8 new_role);
  818. void btm_acl_encrypt_change (UINT16 handle, UINT8 status, UINT8 encr_enable);
  819. UINT16 btm_get_acl_disc_reason_code (void);
  820. tBTM_STATUS btm_remove_acl (BD_ADDR bd_addr, tBT_TRANSPORT transport);
  821. void btm_read_remote_features_complete (UINT8 *p);
  822. void btm_read_remote_ext_features_complete (UINT8 *p);
  823. void btm_read_remote_ext_features_failed (UINT8 status, UINT16 handle);
  824. void btm_read_remote_version_complete (UINT8 *p);
  825. void btm_establish_continue (tACL_CONN *p_acl_cb);
  826. // btla-specific ++
  827. void btm_acl_chk_peer_pkt_type_support (tACL_CONN *p, UINT16 *p_pkt_type);
  828. // btla-specific --
  829. /* Read maximum data packet that can be sent over current connection */
  830. UINT16 btm_get_max_packet_size (BD_ADDR addr);
  831. tACL_CONN *btm_bda_to_acl (BD_ADDR bda, tBT_TRANSPORT transport);
  832. BOOLEAN btm_acl_notif_conn_collision (BD_ADDR bda);
  833. void btm_pm_reset(void);
  834. void btm_pm_sm_alloc(UINT8 ind);
  835. void btm_pm_proc_cmd_status(UINT8 status);
  836. void btm_pm_proc_mode_change (UINT8 hci_status, UINT16 hci_handle, UINT8 mode,
  837. UINT16 interval);
  838. void btm_pm_proc_ssr_evt (UINT8 *p, UINT16 evt_len);
  839. #if BTM_SCO_INCLUDED == TRUE
  840. void btm_sco_chk_pend_unpark (UINT8 hci_status, UINT16 hci_handle);
  841. #else
  842. #define btm_sco_chk_pend_unpark(hci_status, hci_handle)
  843. #endif /* BTM_SCO_INCLUDED */
  844. void btm_qos_setup_complete (UINT8 status, UINT16 handle, FLOW_SPEC *p_flow);
  845. /* Internal functions provided by btm_sco.c
  846. ********************************************
  847. */
  848. void btm_sco_init (void);
  849. void btm_sco_connected (UINT8 hci_status, BD_ADDR bda, UINT16 hci_handle,
  850. tBTM_ESCO_DATA *p_esco_data);
  851. void btm_esco_proc_conn_chg (UINT8 status, UINT16 handle, UINT8 tx_interval,
  852. UINT8 retrans_window, UINT16 rx_pkt_len,
  853. UINT16 tx_pkt_len);
  854. void btm_sco_conn_req (BD_ADDR bda, DEV_CLASS dev_class, UINT8 link_type);
  855. void btm_sco_removed (UINT16 hci_handle, UINT8 reason);
  856. void btm_sco_acl_removed (BD_ADDR bda);
  857. void btm_route_sco_data (BT_HDR *p_msg);
  858. BOOLEAN btm_is_sco_active (UINT16 handle);
  859. void btm_remove_sco_links (BD_ADDR bda);
  860. BOOLEAN btm_is_sco_active_by_bdaddr (BD_ADDR remote_bda);
  861. tBTM_SCO_TYPE btm_read_def_esco_mode (tBTM_ESCO_PARAMS *p_parms);
  862. UINT16 btm_find_scb_by_handle (UINT16 handle);
  863. void btm_sco_flush_sco_data(UINT16 sco_inx);
  864. /* Internal functions provided by btm_devctl.c
  865. **********************************************
  866. */
  867. void btm_dev_init (void);
  868. void btm_dev_timeout (TIMER_LIST_ENT *p_tle);
  869. void btm_read_local_name_complete (UINT8 *p, UINT16 evt_len);
  870. #if (BLE_INCLUDED == TRUE)
  871. void btm_ble_add_2_white_list_complete(UINT8 status);
  872. void btm_ble_remove_from_white_list_complete(UINT8 *p, UINT16 evt_len);
  873. void btm_ble_clear_white_list_complete(UINT8 *p, UINT16 evt_len);
  874. BOOLEAN btm_ble_addr_resolvable(BD_ADDR rpa, tBTM_SEC_DEV_REC *p_dev_rec);
  875. tBTM_STATUS btm_ble_read_resolving_list_entry(tBTM_SEC_DEV_REC *p_dev_rec);
  876. BOOLEAN btm_ble_resolving_list_load_dev(tBTM_SEC_DEV_REC *p_dev_rec);
  877. void btm_ble_resolving_list_remove_dev(tBTM_SEC_DEV_REC *p_dev_rec);
  878. #endif /* BLE_INCLUDED */
  879. /* Vendor Specific Command complete evt handler */
  880. void btm_vsc_complete (UINT8 *p, UINT16 cc_opcode, UINT16 evt_len,
  881. tBTM_CMPL_CB *p_vsc_cplt_cback);
  882. void btm_inq_db_reset (void);
  883. void btm_vendor_specific_evt (UINT8 *p, UINT8 evt_len);
  884. void btm_delete_stored_link_key_complete (UINT8 *p);
  885. void btm_report_device_status (tBTM_DEV_STATUS status);
  886. /* Internal functions provided by btm_dev.c
  887. **********************************************
  888. */
  889. BOOLEAN btm_dev_support_switch (BD_ADDR bd_addr);
  890. tBTM_SEC_DEV_REC *btm_sec_alloc_dev (BD_ADDR bd_addr);
  891. void btm_sec_free_dev (tBTM_SEC_DEV_REC *p_dev_rec);
  892. tBTM_SEC_DEV_REC *btm_find_dev (BD_ADDR bd_addr);
  893. tBTM_SEC_DEV_REC *btm_find_or_alloc_dev (BD_ADDR bd_addr);
  894. tBTM_SEC_DEV_REC *btm_find_dev_by_handle (UINT16 handle);
  895. tBTM_BOND_TYPE btm_get_bond_type_dev(BD_ADDR bd_addr);
  896. BOOLEAN btm_set_bond_type_dev(BD_ADDR bd_addr,
  897. tBTM_BOND_TYPE bond_type);
  898. /* Internal functions provided by btm_sec.c
  899. **********************************************
  900. */
  901. BOOLEAN btm_dev_support_switch (BD_ADDR bd_addr);
  902. tBTM_STATUS btm_sec_l2cap_access_req (BD_ADDR bd_addr, UINT16 psm,
  903. UINT16 handle, CONNECTION_TYPE conn_type,
  904. tBTM_SEC_CALLBACK *p_callback, void *p_ref_data);
  905. tBTM_STATUS btm_sec_mx_access_request (BD_ADDR bd_addr, UINT16 psm, BOOLEAN is_originator,
  906. UINT32 mx_proto_id, UINT32 mx_chan_id,
  907. tBTM_SEC_CALLBACK *p_callback, void *p_ref_data);
  908. void btm_sec_conn_req (UINT8 *bda, UINT8 *dc);
  909. void btm_create_conn_cancel_complete (UINT8 *p);
  910. void btm_read_linq_tx_power_complete (UINT8 *p);
  911. void btm_sec_init (UINT8 sec_mode);
  912. void btm_sec_dev_reset (void);
  913. void btm_sec_abort_access_req (BD_ADDR bd_addr);
  914. void btm_sec_auth_complete (UINT16 handle, UINT8 status);
  915. void btm_sec_encrypt_change (UINT16 handle, UINT8 status, UINT8 encr_enable);
  916. void btm_sec_connected (UINT8 *bda, UINT16 handle, UINT8 status, UINT8 enc_mode);
  917. tBTM_STATUS btm_sec_disconnect (UINT16 handle, UINT8 reason);
  918. void btm_sec_disconnected (UINT16 handle, UINT8 reason);
  919. void btm_sec_rmt_name_request_complete (UINT8 *bd_addr, UINT8 *bd_name, UINT8 status);
  920. void btm_sec_rmt_host_support_feat_evt (UINT8 *p);
  921. void btm_io_capabilities_req (UINT8 *p);
  922. void btm_io_capabilities_rsp (UINT8 *p);
  923. void btm_proc_sp_req_evt (tBTM_SP_EVT event, UINT8 *p);
  924. void btm_keypress_notif_evt (UINT8 *p);
  925. void btm_simple_pair_complete (UINT8 *p);
  926. void btm_sec_link_key_notification (UINT8 *p_bda, UINT8 *p_link_key, UINT8 key_type);
  927. void btm_sec_link_key_request (UINT8 *p_bda);
  928. void btm_sec_pin_code_request (UINT8 *p_bda);
  929. void btm_sec_update_clock_offset (UINT16 handle, UINT16 clock_offset);
  930. void btm_sec_dev_rec_cback_event (tBTM_SEC_DEV_REC *p_dev_rec, UINT8 res, BOOLEAN is_le_trasnport);
  931. void btm_sec_set_peer_sec_caps (tACL_CONN *p_acl_cb, tBTM_SEC_DEV_REC *p_dev_rec);
  932. #if BLE_INCLUDED == TRUE
  933. void btm_sec_clear_ble_keys (tBTM_SEC_DEV_REC *p_dev_rec);
  934. BOOLEAN btm_sec_find_bonded_dev (UINT8 start_idx, UINT8 *p_found_idx, tBTM_SEC_DEV_REC **p_rec);
  935. BOOLEAN btm_sec_is_a_bonded_dev (BD_ADDR bda);
  936. void btm_consolidate_dev(tBTM_SEC_DEV_REC *p_target_rec);
  937. BOOLEAN btm_sec_is_le_capable_dev (BD_ADDR bda);
  938. BOOLEAN btm_ble_init_pseudo_addr (tBTM_SEC_DEV_REC *p_dev_rec, BD_ADDR new_pseudo_addr);
  939. extern BOOLEAN btm_ble_start_sec_check(BD_ADDR bd_addr, UINT16 psm, BOOLEAN is_originator,
  940. tBTM_SEC_CALLBACK *p_callback, void *p_ref_data);
  941. extern tBTM_SEC_SERV_REC *btm_sec_find_first_serv (CONNECTION_TYPE conn_type, UINT16 psm);
  942. #endif /* BLE_INCLUDED */
  943. tINQ_DB_ENT *btm_inq_db_new (BD_ADDR p_bda);
  944. #if BTM_OOB_INCLUDED == TRUE
  945. void btm_rem_oob_req (UINT8 *p);
  946. void btm_read_local_oob_complete (UINT8 *p);
  947. #else
  948. #define btm_rem_oob_req(p)
  949. #define btm_read_local_oob_complete(p)
  950. #endif
  951. void btm_acl_resubmit_page (void);
  952. void btm_acl_reset_paging (void);
  953. void btm_acl_paging (BT_HDR *p, BD_ADDR dest);
  954. UINT8 btm_sec_clr_service_by_psm (UINT16 psm);
  955. void btm_sec_clr_temp_auth_service (BD_ADDR bda);
  956. /*
  957. #ifdef __cplusplus
  958. }
  959. #endif
  960. */
  961. #endif