app_ble.c 26 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776
  1. #include "main.h"
  2. #include "app_entry.h"
  3. #include "app_common.h"
  4. #include "dbg_trace.h"
  5. #include "ble.h"
  6. #include "tl.h"
  7. #include "app_ble.h"
  8. #include "cmsis_os.h"
  9. #include "shci.h"
  10. #include "otp.h"
  11. #include "dev_info_service.h"
  12. #include "battery_service.h"
  13. #include "serial_service.h"
  14. #include <furi-hal.h>
  15. typedef struct _tSecurityParams {
  16. uint8_t ioCapability;
  17. uint8_t mitm_mode;
  18. uint8_t bonding_mode;
  19. uint8_t Use_Fixed_Pin;
  20. uint8_t encryptionKeySizeMin;
  21. uint8_t encryptionKeySizeMax;
  22. uint32_t Fixed_Pin;
  23. uint8_t initiateSecurity;
  24. } tSecurityParams;
  25. typedef struct _tBLEProfileGlobalContext {
  26. tSecurityParams bleSecurityParam;
  27. uint16_t gapServiceHandle;
  28. uint16_t devNameCharHandle;
  29. uint16_t appearanceCharHandle;
  30. uint16_t connectionHandle;
  31. uint8_t advtServUUIDlen;
  32. uint8_t advtServUUID[100];
  33. } BleGlobalContext_t;
  34. typedef struct {
  35. BleGlobalContext_t BleApplicationContext_legacy;
  36. APP_BLE_ConnStatus_t Device_Connection_Status;
  37. uint8_t Advertising_mgr_timer_Id;
  38. } BleApplicationContext_t;
  39. #define FAST_ADV_TIMEOUT (30*1000*1000/CFG_TS_TICK_VAL) /**< 30s */
  40. #define INITIAL_ADV_TIMEOUT (60*1000*1000/CFG_TS_TICK_VAL) /**< 60s */
  41. #define BD_ADDR_SIZE_LOCAL 6
  42. #define LED_ON_TIMEOUT (0.005*1000*1000/CFG_TS_TICK_VAL) /**< 5ms */
  43. PLACE_IN_SECTION("MB_MEM1") ALIGN(4) static TL_CmdPacket_t BleCmdBuffer;
  44. static const uint8_t M_bd_addr[BD_ADDR_SIZE_LOCAL] =
  45. {
  46. (uint8_t)((CFG_ADV_BD_ADDRESS & 0x0000000000FF)),
  47. (uint8_t)((CFG_ADV_BD_ADDRESS & 0x00000000FF00) >> 8),
  48. (uint8_t)((CFG_ADV_BD_ADDRESS & 0x000000FF0000) >> 16),
  49. (uint8_t)((CFG_ADV_BD_ADDRESS & 0x0000FF000000) >> 24),
  50. (uint8_t)((CFG_ADV_BD_ADDRESS & 0x00FF00000000) >> 32),
  51. (uint8_t)((CFG_ADV_BD_ADDRESS & 0xFF0000000000) >> 40)
  52. };
  53. static uint8_t bd_addr_udn[BD_ADDR_SIZE_LOCAL];
  54. static const uint8_t BLE_CFG_IR_VALUE[16] = CFG_BLE_IRK;
  55. static const uint8_t BLE_CFG_ER_VALUE[16] = CFG_BLE_ERK;
  56. PLACE_IN_SECTION("TAG_OTA_END") const uint32_t MagicKeywordValue = 0x94448A29 ;
  57. PLACE_IN_SECTION("TAG_OTA_START") const uint32_t MagicKeywordAddress = (uint32_t)&MagicKeywordValue;
  58. PLACE_IN_SECTION("BLE_APP_CONTEXT") static BleApplicationContext_t BleApplicationContext;
  59. PLACE_IN_SECTION("BLE_APP_CONTEXT") static uint16_t AdvIntervalMin, AdvIntervalMax;
  60. uint8_t manuf_data[14] = {
  61. sizeof(manuf_data)-1, AD_TYPE_MANUFACTURER_SPECIFIC_DATA,
  62. 0x01/*SKD version */,
  63. 0x00 /* Generic*/,
  64. 0x00 /* GROUP A Feature */,
  65. 0x00 /* GROUP A Feature */,
  66. 0x00 /* GROUP B Feature */,
  67. 0x00 /* GROUP B Feature */,
  68. 0x00, /* BLE MAC start -MSB */
  69. 0x00,
  70. 0x00,
  71. 0x00,
  72. 0x00,
  73. 0x00, /* BLE MAC stop */
  74. };
  75. osMutexId_t MtxHciId;
  76. osSemaphoreId_t SemHciId;
  77. osThreadId_t AdvUpdateProcessId;
  78. osThreadId_t HciUserEvtProcessId;
  79. const osThreadAttr_t AdvUpdateProcess_attr = {
  80. .name = CFG_ADV_UPDATE_PROCESS_NAME,
  81. .attr_bits = CFG_ADV_UPDATE_PROCESS_ATTR_BITS,
  82. .cb_mem = CFG_ADV_UPDATE_PROCESS_CB_MEM,
  83. .cb_size = CFG_ADV_UPDATE_PROCESS_CB_SIZE,
  84. .stack_mem = CFG_ADV_UPDATE_PROCESS_STACK_MEM,
  85. .priority = CFG_ADV_UPDATE_PROCESS_PRIORITY,
  86. .stack_size = CFG_ADV_UPDATE_PROCESS_STACK_SIZE
  87. };
  88. const osThreadAttr_t HciUserEvtProcess_attr = {
  89. .name = CFG_HCI_USER_EVT_PROCESS_NAME,
  90. .attr_bits = CFG_HCI_USER_EVT_PROCESS_ATTR_BITS,
  91. .cb_mem = CFG_HCI_USER_EVT_PROCESS_CB_MEM,
  92. .cb_size = CFG_HCI_USER_EVT_PROCESS_CB_SIZE,
  93. .stack_mem = CFG_HCI_USER_EVT_PROCESS_STACK_MEM,
  94. .priority = CFG_HCI_USER_EVT_PROCESS_PRIORITY,
  95. .stack_size = CFG_HCI_USER_EVT_PROCESS_STACK_SIZE
  96. };
  97. /* Private function prototypes -----------------------------------------------*/
  98. static void HciUserEvtProcess(void *argument);
  99. static void BLE_UserEvtRx( void * pPayload );
  100. static void BLE_StatusNot( HCI_TL_CmdStatus_t status );
  101. static void Ble_Tl_Init( void );
  102. static void Ble_Hci_Gap_Gatt_Init();
  103. static const uint8_t* BleGetBdAddress( void );
  104. static void Adv_Request( APP_BLE_ConnStatus_t New_Status );
  105. static void Adv_Mgr( void );
  106. static void AdvUpdateProcess(void *argument);
  107. static void Adv_Update( void );
  108. bool APP_BLE_Init() {
  109. SHCI_C2_Ble_Init_Cmd_Packet_t ble_init_cmd_packet = {
  110. {{0,0,0}}, /**< Header unused */
  111. {0, /** pBleBufferAddress not used */
  112. 0, /** BleBufferSize not used */
  113. CFG_BLE_NUM_GATT_ATTRIBUTES,
  114. CFG_BLE_NUM_GATT_SERVICES,
  115. CFG_BLE_ATT_VALUE_ARRAY_SIZE,
  116. CFG_BLE_NUM_LINK,
  117. CFG_BLE_DATA_LENGTH_EXTENSION,
  118. CFG_BLE_PREPARE_WRITE_LIST_SIZE,
  119. CFG_BLE_MBLOCK_COUNT,
  120. CFG_BLE_MAX_ATT_MTU,
  121. CFG_BLE_SLAVE_SCA,
  122. CFG_BLE_MASTER_SCA,
  123. CFG_BLE_LSE_SOURCE,
  124. CFG_BLE_MAX_CONN_EVENT_LENGTH,
  125. CFG_BLE_HSE_STARTUP_TIME,
  126. CFG_BLE_VITERBI_MODE,
  127. CFG_BLE_LL_ONLY,
  128. 0}
  129. };
  130. // Initialize Ble Transport Layer
  131. Ble_Tl_Init( );
  132. // Register the hci transport layer to handle BLE User Asynchronous Events
  133. HciUserEvtProcessId = osThreadNew(HciUserEvtProcess, NULL, &HciUserEvtProcess_attr);
  134. // Starts the BLE Stack on CPU2
  135. return (SHCI_C2_BLE_Init( &ble_init_cmd_packet ) == SHCI_Success);
  136. }
  137. static void set_advertisment_service_uid(uint8_t* uid, uint8_t uin_len);
  138. bool APP_BLE_Start() {
  139. if (APPE_Status() != BleGlueStatusStarted) {
  140. return false;
  141. }
  142. // Initialization of HCI & GATT & GAP layer
  143. Ble_Hci_Gap_Gatt_Init();
  144. // Initialization of the BLE Services
  145. SVCCTL_Init();
  146. // Initialization of the BLE App Context
  147. BleApplicationContext.Device_Connection_Status = APP_BLE_IDLE;
  148. BleApplicationContext.BleApplicationContext_legacy.connectionHandle = 0xFFFF;
  149. // From here, all initialization are BLE application specific
  150. AdvUpdateProcessId = osThreadNew(AdvUpdateProcess, NULL, &AdvUpdateProcess_attr);
  151. // Initialization of ADV - Ad Manufacturer Element - Support OTA Bit Masks
  152. #if(BLE_CFG_OTA_REBOOT_CHAR != 0)
  153. manuf_data[sizeof(manuf_data)-8] = CFG_FEATURE_OTA_REBOOT;
  154. #endif
  155. // Initialize DIS Application
  156. dev_info_service_init();
  157. // Initialize BAS Application
  158. battery_svc_init();
  159. // Initialize Serial application
  160. serial_svc_init();
  161. // Create timer to handle the connection state machine
  162. HW_TS_Create(CFG_TIM_PROC_ID_ISR, &(BleApplicationContext.Advertising_mgr_timer_Id), hw_ts_SingleShot, Adv_Mgr);
  163. uint8_t adv_service_uid[2];
  164. adv_service_uid[0] = 0x80 | furi_hal_version_get_hw_color();
  165. adv_service_uid[1] = 0x30;
  166. set_advertisment_service_uid(adv_service_uid, sizeof(adv_service_uid));
  167. /* Initialize intervals for reconnexion without intervals update */
  168. AdvIntervalMin = CFG_FAST_CONN_ADV_INTERVAL_MIN;
  169. AdvIntervalMax = CFG_FAST_CONN_ADV_INTERVAL_MAX;
  170. Adv_Request(APP_BLE_FAST_ADV);
  171. return true;
  172. }
  173. void SVCCTL_SvcInit() {
  174. // Dummy function to prevent unused services initialization
  175. // TODO refactore
  176. }
  177. SVCCTL_UserEvtFlowStatus_t SVCCTL_App_Notification( void *pckt )
  178. {
  179. hci_event_pckt *event_pckt;
  180. evt_le_meta_event *meta_evt;
  181. evt_blue_aci *blue_evt;
  182. hci_le_phy_update_complete_event_rp0 *evt_le_phy_update_complete;
  183. uint8_t TX_PHY, RX_PHY;
  184. tBleStatus ret = BLE_STATUS_INVALID_PARAMS;
  185. event_pckt = (hci_event_pckt*) ((hci_uart_pckt *) pckt)->data;
  186. switch (event_pckt->evt) {
  187. case EVT_DISCONN_COMPLETE:
  188. {
  189. hci_disconnection_complete_event_rp0 *disconnection_complete_event;
  190. disconnection_complete_event = (hci_disconnection_complete_event_rp0 *) event_pckt->data;
  191. if (disconnection_complete_event->Connection_Handle == BleApplicationContext.BleApplicationContext_legacy.connectionHandle) {
  192. BleApplicationContext.BleApplicationContext_legacy.connectionHandle = 0;
  193. BleApplicationContext.Device_Connection_Status = APP_BLE_IDLE;
  194. APP_DBG_MSG("\r\n\r** DISCONNECTION EVENT WITH CLIENT \r\n");
  195. }
  196. /* restart advertising */
  197. Adv_Request(APP_BLE_FAST_ADV);
  198. furi_hal_power_insomnia_exit();
  199. }
  200. break; /* EVT_DISCONN_COMPLETE */
  201. case EVT_LE_META_EVENT:
  202. {
  203. meta_evt = (evt_le_meta_event*) event_pckt->data;
  204. switch (meta_evt->subevent)
  205. {
  206. case EVT_LE_CONN_UPDATE_COMPLETE:
  207. APP_DBG_MSG("\r\n\r** CONNECTION UPDATE EVENT WITH CLIENT \r\n");
  208. /* USER CODE BEGIN EVT_LE_CONN_UPDATE_COMPLETE */
  209. /* USER CODE END EVT_LE_CONN_UPDATE_COMPLETE */
  210. break;
  211. case EVT_LE_PHY_UPDATE_COMPLETE:
  212. APP_DBG_MSG("EVT_UPDATE_PHY_COMPLETE \r\n");
  213. evt_le_phy_update_complete = (hci_le_phy_update_complete_event_rp0*)meta_evt->data;
  214. if (evt_le_phy_update_complete->Status == 0)
  215. {
  216. APP_DBG_MSG("EVT_UPDATE_PHY_COMPLETE, status ok \r\n");
  217. }
  218. else
  219. {
  220. APP_DBG_MSG("EVT_UPDATE_PHY_COMPLETE, status nok \r\n");
  221. }
  222. ret = hci_le_read_phy(BleApplicationContext.BleApplicationContext_legacy.connectionHandle,&TX_PHY,&RX_PHY);
  223. if (ret == BLE_STATUS_SUCCESS)
  224. {
  225. APP_DBG_MSG("Read_PHY success \r\n");
  226. if ((TX_PHY == TX_2M) && (RX_PHY == RX_2M))
  227. {
  228. APP_DBG_MSG("PHY Param TX= %d, RX= %d \r\n", TX_PHY, RX_PHY);
  229. }
  230. else
  231. {
  232. APP_DBG_MSG("PHY Param TX= %d, RX= %d \r\n", TX_PHY, RX_PHY);
  233. }
  234. }
  235. else
  236. {
  237. APP_DBG_MSG("Read conf not succeess \r\n");
  238. }
  239. break;
  240. case EVT_LE_CONN_COMPLETE:
  241. {
  242. furi_hal_power_insomnia_enter();
  243. hci_le_connection_complete_event_rp0 *connection_complete_event;
  244. /**
  245. * The connection is done, there is no need anymore to schedule the LP ADV
  246. */
  247. connection_complete_event = (hci_le_connection_complete_event_rp0 *) meta_evt->data;
  248. HW_TS_Stop(BleApplicationContext.Advertising_mgr_timer_Id);
  249. APP_DBG_MSG("EVT_LE_CONN_COMPLETE for connection handle 0x%x\r\n", connection_complete_event->Connection_Handle);
  250. if (BleApplicationContext.Device_Connection_Status == APP_BLE_LP_CONNECTING)
  251. {
  252. /* Connection as client */
  253. BleApplicationContext.Device_Connection_Status = APP_BLE_CONNECTED_CLIENT;
  254. }
  255. else
  256. {
  257. /* Connection as server */
  258. BleApplicationContext.Device_Connection_Status = APP_BLE_CONNECTED_SERVER;
  259. }
  260. BleApplicationContext.BleApplicationContext_legacy.connectionHandle = connection_complete_event->Connection_Handle;
  261. }
  262. break; /* HCI_EVT_LE_CONN_COMPLETE */
  263. default:
  264. break;
  265. }
  266. }
  267. break; /* HCI_EVT_LE_META_EVENT */
  268. case EVT_VENDOR:
  269. blue_evt = (evt_blue_aci*) event_pckt->data;
  270. switch (blue_evt->ecode) {
  271. aci_gap_pairing_complete_event_rp0 *pairing_complete;
  272. case EVT_BLUE_GAP_LIMITED_DISCOVERABLE:
  273. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_LIMITED_DISCOVERABLE \r\n");
  274. break; /* EVT_BLUE_GAP_LIMITED_DISCOVERABLE */
  275. case EVT_BLUE_GAP_PASS_KEY_REQUEST:
  276. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_PASS_KEY_REQUEST \r\n");
  277. aci_gap_pass_key_resp(BleApplicationContext.BleApplicationContext_legacy.connectionHandle,123456);
  278. APP_DBG_MSG("\r\n\r** aci_gap_pass_key_resp \r\n");
  279. break; /* EVT_BLUE_GAP_PASS_KEY_REQUEST */
  280. case EVT_BLUE_GAP_AUTHORIZATION_REQUEST:
  281. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_AUTHORIZATION_REQUEST \r\n");
  282. break; /* EVT_BLUE_GAP_AUTHORIZATION_REQUEST */
  283. case EVT_BLUE_GAP_SLAVE_SECURITY_INITIATED:
  284. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_SLAVE_SECURITY_INITIATED \r\n");
  285. break; /* EVT_BLUE_GAP_SLAVE_SECURITY_INITIATED */
  286. case EVT_BLUE_GAP_BOND_LOST:
  287. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_BOND_LOST \r\n");
  288. aci_gap_allow_rebond(BleApplicationContext.BleApplicationContext_legacy.connectionHandle);
  289. APP_DBG_MSG("\r\n\r** Send allow rebond \r\n");
  290. break; /* EVT_BLUE_GAP_BOND_LOST */
  291. case EVT_BLUE_GAP_DEVICE_FOUND:
  292. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_DEVICE_FOUND \r\n");
  293. break; /* EVT_BLUE_GAP_DEVICE_FOUND */
  294. case EVT_BLUE_GAP_ADDR_NOT_RESOLVED:
  295. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_DEVICE_FOUND \r\n");
  296. break; /* EVT_BLUE_GAP_DEVICE_FOUND */
  297. case (EVT_BLUE_GAP_KEYPRESS_NOTIFICATION):
  298. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_KEYPRESS_NOTIFICATION \r\n");
  299. break; /* EVT_BLUE_GAP_KEY_PRESS_NOTIFICATION */
  300. case (EVT_BLUE_GAP_NUMERIC_COMPARISON_VALUE):
  301. APP_DBG_MSG("numeric_value = %ld\r\n",
  302. ((aci_gap_numeric_comparison_value_event_rp0 *)(blue_evt->data))->Numeric_Value);
  303. APP_DBG_MSG("Hex_value = %lx\r\n",
  304. ((aci_gap_numeric_comparison_value_event_rp0 *)(blue_evt->data))->Numeric_Value);
  305. aci_gap_numeric_comparison_value_confirm_yesno(BleApplicationContext.BleApplicationContext_legacy.connectionHandle, 1); /* CONFIRM_YES = 1 */
  306. APP_DBG_MSG("\r\n\r** aci_gap_numeric_comparison_value_confirm_yesno-->YES \r\n");
  307. break;
  308. case (EVT_BLUE_GAP_PAIRING_CMPLT):
  309. {
  310. pairing_complete = (aci_gap_pairing_complete_event_rp0*)blue_evt->data;
  311. APP_DBG_MSG("BLE_CTRL_App_Notification: EVT_BLUE_GAP_PAIRING_CMPLT, pairing_complete->Status = %d\r\n",pairing_complete->Status);
  312. if (pairing_complete->Status == 0) {
  313. APP_DBG_MSG("\r\n\r** Pairing OK \r\n");
  314. } else {
  315. APP_DBG_MSG("\r\n\r** Pairing KO \r\n");
  316. }
  317. }
  318. break;
  319. /* USER CODE END ecode */
  320. case EVT_BLUE_GAP_PROCEDURE_COMPLETE:
  321. APP_DBG_MSG("\r\n\r** EVT_BLUE_GAP_PROCEDURE_COMPLETE \r\n");
  322. break;
  323. }
  324. break; /* EVT_VENDOR */
  325. default:
  326. break;
  327. }
  328. return (SVCCTL_UserEvtFlowEnable);
  329. }
  330. static void set_advertisment_service_uid(uint8_t* uid, uint8_t uid_len) {
  331. BleApplicationContext.BleApplicationContext_legacy.advtServUUIDlen = 1;
  332. if(uid_len == 2) {
  333. BleApplicationContext.BleApplicationContext_legacy.advtServUUID[0] = AD_TYPE_16_BIT_SERV_UUID;
  334. } else if (uid_len == 4) {
  335. BleApplicationContext.BleApplicationContext_legacy.advtServUUID[0] = AD_TYPE_32_BIT_SERV_UUID;
  336. } else if(uid_len == 16) {
  337. BleApplicationContext.BleApplicationContext_legacy.advtServUUID[0] = AD_TYPE_128_BIT_SERV_UUID_CMPLT_LIST;
  338. }
  339. memcpy(&BleApplicationContext.BleApplicationContext_legacy.advtServUUID[1], uid, uid_len);
  340. BleApplicationContext.BleApplicationContext_legacy.advtServUUIDlen += uid_len;
  341. }
  342. APP_BLE_ConnStatus_t APP_BLE_Get_Server_Connection_Status() {
  343. return BleApplicationContext.Device_Connection_Status;
  344. }
  345. static void Ble_Tl_Init( void ) {
  346. HCI_TL_HciInitConf_t Hci_Tl_Init_Conf;
  347. MtxHciId = osMutexNew( NULL );
  348. SemHciId = osSemaphoreNew( 1, 0, NULL ); /*< Create the semaphore and make it busy at initialization */
  349. Hci_Tl_Init_Conf.p_cmdbuffer = (uint8_t*)&BleCmdBuffer;
  350. Hci_Tl_Init_Conf.StatusNotCallBack = BLE_StatusNot;
  351. hci_init(BLE_UserEvtRx, (void*) &Hci_Tl_Init_Conf);
  352. }
  353. static void Ble_Hci_Gap_Gatt_Init() {
  354. uint8_t role;
  355. uint16_t gap_service_handle, gap_dev_name_char_handle, gap_appearance_char_handle;
  356. const uint8_t *bd_addr;
  357. uint32_t srd_bd_addr[2];
  358. uint16_t appearance[1] = { BLE_CFG_GAP_APPEARANCE };
  359. /*HCI Reset to synchronise BLE Stack*/
  360. hci_reset();
  361. /**
  362. * Write the BD Address
  363. */
  364. bd_addr = BleGetBdAddress();
  365. aci_hal_write_config_data(CONFIG_DATA_PUBADDR_OFFSET,
  366. CONFIG_DATA_PUBADDR_LEN,
  367. (uint8_t*) bd_addr);
  368. /* BLE MAC in ADV Packet */
  369. manuf_data[ sizeof(manuf_data)-6] = bd_addr[5];
  370. manuf_data[ sizeof(manuf_data)-5] = bd_addr[4];
  371. manuf_data[ sizeof(manuf_data)-4] = bd_addr[3];
  372. manuf_data[ sizeof(manuf_data)-3] = bd_addr[2];
  373. manuf_data[ sizeof(manuf_data)-2] = bd_addr[1];
  374. manuf_data[ sizeof(manuf_data)-1] = bd_addr[0];
  375. /**
  376. * Write Identity root key used to derive LTK and CSRK
  377. */
  378. aci_hal_write_config_data(CONFIG_DATA_IR_OFFSET,
  379. CONFIG_DATA_IR_LEN,
  380. (uint8_t*) BLE_CFG_IR_VALUE);
  381. /**
  382. * Write Encryption root key used to derive LTK and CSRK
  383. */
  384. aci_hal_write_config_data(CONFIG_DATA_ER_OFFSET,
  385. CONFIG_DATA_ER_LEN,
  386. (uint8_t*) BLE_CFG_ER_VALUE);
  387. /**
  388. * Write random bd_address
  389. */
  390. /* random_bd_address = R_bd_address;
  391. aci_hal_write_config_data(CONFIG_DATA_RANDOM_ADDRESS_WR,
  392. CONFIG_DATA_RANDOM_ADDRESS_LEN,
  393. (uint8_t*) random_bd_address);
  394. */
  395. /**
  396. * Static random Address
  397. * The two upper bits shall be set to 1
  398. * The lowest 32bits is read from the UDN to differentiate between devices
  399. * The RNG may be used to provide a random number on each power on
  400. */
  401. srd_bd_addr[1] = 0x0000ED6E;
  402. srd_bd_addr[0] = LL_FLASH_GetUDN( );
  403. aci_hal_write_config_data( CONFIG_DATA_RANDOM_ADDRESS_OFFSET, CONFIG_DATA_RANDOM_ADDRESS_LEN, (uint8_t*)srd_bd_addr );
  404. /**
  405. * Write Identity root key used to derive LTK and CSRK
  406. */
  407. aci_hal_write_config_data( CONFIG_DATA_IR_OFFSET, CONFIG_DATA_IR_LEN, (uint8_t*)BLE_CFG_IR_VALUE );
  408. /**
  409. * Write Encryption root key used to derive LTK and CSRK
  410. */
  411. aci_hal_write_config_data( CONFIG_DATA_ER_OFFSET, CONFIG_DATA_ER_LEN, (uint8_t*)BLE_CFG_ER_VALUE );
  412. /**
  413. * Set TX Power to 0dBm.
  414. */
  415. aci_hal_set_tx_power_level(1, CFG_TX_POWER);
  416. /**
  417. * Initialize GATT interface
  418. */
  419. aci_gatt_init();
  420. /**
  421. * Initialize GAP interface
  422. */
  423. role = 0;
  424. #if (BLE_CFG_PERIPHERAL == 1)
  425. role |= GAP_PERIPHERAL_ROLE;
  426. #endif
  427. #if (BLE_CFG_CENTRAL == 1)
  428. role |= GAP_CENTRAL_ROLE;
  429. #endif
  430. if (role > 0)
  431. {
  432. const char *name = furi_hal_version_get_device_name_ptr();
  433. aci_gap_init(role, 0,
  434. strlen(name),
  435. &gap_service_handle, &gap_dev_name_char_handle, &gap_appearance_char_handle);
  436. if (aci_gatt_update_char_value(gap_service_handle, gap_dev_name_char_handle, 0, strlen(name), (uint8_t *) name))
  437. {
  438. BLE_DBG_SVCCTL_MSG("Device Name aci_gatt_update_char_value failed.\r\n");
  439. }
  440. }
  441. if(aci_gatt_update_char_value(gap_service_handle,
  442. gap_appearance_char_handle,
  443. 0,
  444. 2,
  445. (uint8_t *)&appearance))
  446. {
  447. BLE_DBG_SVCCTL_MSG("Appearance aci_gatt_update_char_value failed.\r\n");
  448. }
  449. /**
  450. * Initialize Default PHY
  451. */
  452. hci_le_set_default_phy(ALL_PHYS_PREFERENCE,TX_2M_PREFERRED,RX_2M_PREFERRED);
  453. /**
  454. * Initialize IO capability
  455. */
  456. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.ioCapability = CFG_IO_CAPABILITY;
  457. aci_gap_set_io_capability(BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.ioCapability);
  458. /**
  459. * Initialize authentication
  460. */
  461. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.mitm_mode = CFG_MITM_PROTECTION;
  462. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.encryptionKeySizeMin = CFG_ENCRYPTION_KEY_SIZE_MIN;
  463. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.encryptionKeySizeMax = CFG_ENCRYPTION_KEY_SIZE_MAX;
  464. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.Use_Fixed_Pin = CFG_USED_FIXED_PIN;
  465. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.Fixed_Pin = CFG_FIXED_PIN;
  466. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.bonding_mode = CFG_BONDING_MODE;
  467. aci_gap_set_authentication_requirement(BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.bonding_mode,
  468. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.mitm_mode,
  469. CFG_SC_SUPPORT,
  470. CFG_KEYPRESS_NOTIFICATION_SUPPORT,
  471. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.encryptionKeySizeMin,
  472. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.encryptionKeySizeMax,
  473. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.Use_Fixed_Pin,
  474. BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.Fixed_Pin,
  475. PUBLIC_ADDR
  476. );
  477. /**
  478. * Initialize whitelist
  479. */
  480. if (BleApplicationContext.BleApplicationContext_legacy.bleSecurityParam.bonding_mode)
  481. {
  482. aci_gap_configure_whitelist();
  483. }
  484. }
  485. static void Adv_Request(APP_BLE_ConnStatus_t New_Status)
  486. {
  487. tBleStatus ret = BLE_STATUS_INVALID_PARAMS;
  488. uint16_t Min_Inter, Max_Inter;
  489. if (New_Status == APP_BLE_FAST_ADV)
  490. {
  491. Min_Inter = AdvIntervalMin;
  492. Max_Inter = AdvIntervalMax;
  493. }
  494. else
  495. {
  496. Min_Inter = CFG_LP_CONN_ADV_INTERVAL_MIN;
  497. Max_Inter = CFG_LP_CONN_ADV_INTERVAL_MAX;
  498. }
  499. /**
  500. * Stop the timer, it will be restarted for a new shot
  501. * It does not hurt if the timer was not running
  502. */
  503. HW_TS_Stop(BleApplicationContext.Advertising_mgr_timer_Id);
  504. APP_DBG_MSG("First index in %d state \r\n", BleApplicationContext.Device_Connection_Status);
  505. if ((New_Status == APP_BLE_LP_ADV)
  506. && ((BleApplicationContext.Device_Connection_Status == APP_BLE_FAST_ADV)
  507. || (BleApplicationContext.Device_Connection_Status == APP_BLE_LP_ADV)))
  508. {
  509. /* Connection in ADVERTISE mode have to stop the current advertising */
  510. ret = aci_gap_set_non_discoverable();
  511. if (ret == BLE_STATUS_SUCCESS)
  512. {
  513. APP_DBG_MSG("Successfully Stopped Advertising \r\n");
  514. }
  515. else
  516. {
  517. APP_DBG_MSG("Stop Advertising Failed , result: %d \r\n", ret);
  518. }
  519. }
  520. BleApplicationContext.Device_Connection_Status = New_Status;
  521. const char* name = furi_hal_version_get_ble_local_device_name_ptr();
  522. /* Start Fast or Low Power Advertising */
  523. ret = aci_gap_set_discoverable(
  524. ADV_IND,
  525. Min_Inter,
  526. Max_Inter,
  527. PUBLIC_ADDR,
  528. NO_WHITE_LIST_USE, /* use white list */
  529. strlen(name),
  530. (uint8_t*)name,
  531. BleApplicationContext.BleApplicationContext_legacy.advtServUUIDlen,
  532. BleApplicationContext.BleApplicationContext_legacy.advtServUUID,
  533. 0,
  534. 0);
  535. if(ret) {
  536. FURI_LOG_E("APP ble", "Set discoverable err: %d", ret);
  537. }
  538. /* Update Advertising data */
  539. ret = aci_gap_update_adv_data(sizeof(manuf_data), (uint8_t*) manuf_data);
  540. if (ret == BLE_STATUS_SUCCESS) {
  541. if (New_Status == APP_BLE_FAST_ADV) {
  542. APP_DBG_MSG("Successfully Start Fast Advertising \r\n" );
  543. /* Start Timer to STOP ADV - TIMEOUT */
  544. HW_TS_Start(BleApplicationContext.Advertising_mgr_timer_Id, INITIAL_ADV_TIMEOUT);
  545. } else {
  546. APP_DBG_MSG("Successfully Start Low Power Advertising \r\n");
  547. }
  548. } else {
  549. if (New_Status == APP_BLE_FAST_ADV) {
  550. APP_DBG_MSG("Start Fast Advertising Failed , result: %d \r\n", ret);
  551. } else {
  552. APP_DBG_MSG("Start Low Power Advertising Failed , result: %d \r\n", ret);
  553. }
  554. }
  555. }
  556. const uint8_t* BleGetBdAddress( void ) {
  557. uint8_t *otp_addr;
  558. const uint8_t *bd_addr;
  559. uint32_t udn;
  560. uint32_t company_id;
  561. uint32_t device_id;
  562. udn = LL_FLASH_GetUDN();
  563. if(udn != 0xFFFFFFFF) {
  564. company_id = LL_FLASH_GetSTCompanyID();
  565. device_id = LL_FLASH_GetDeviceID();
  566. bd_addr_udn[0] = (uint8_t)(udn & 0x000000FF);
  567. bd_addr_udn[1] = (uint8_t)( (udn & 0x0000FF00) >> 8 );
  568. bd_addr_udn[2] = (uint8_t)( (udn & 0x00FF0000) >> 16 );
  569. bd_addr_udn[3] = (uint8_t)device_id;
  570. bd_addr_udn[4] = (uint8_t)(company_id & 0x000000FF);;
  571. bd_addr_udn[5] = (uint8_t)( (company_id & 0x0000FF00) >> 8 );
  572. bd_addr = (const uint8_t *)bd_addr_udn;
  573. } else {
  574. otp_addr = OTP_Read(0);
  575. if(otp_addr) {
  576. bd_addr = ((OTP_ID0_t*)otp_addr)->bd_address;
  577. } else {
  578. bd_addr = M_bd_addr;
  579. }
  580. }
  581. return bd_addr;
  582. }
  583. /*************************************************************
  584. *
  585. *SPECIFIC FUNCTIONS
  586. *
  587. *************************************************************/
  588. static void Adv_Mgr( void ) {
  589. /**
  590. * The code shall be executed in the background as an aci command may be sent
  591. * The background is the only place where the application can make sure a new aci command
  592. * is not sent if there is a pending one
  593. */
  594. osThreadFlagsSet( AdvUpdateProcessId, 1 );
  595. }
  596. static void AdvUpdateProcess(void *argument) {
  597. UNUSED(argument);
  598. for(;;) {
  599. osThreadFlagsWait( 1, osFlagsWaitAny, osWaitForever);
  600. Adv_Update( );
  601. }
  602. }
  603. static void Adv_Update( void ) {
  604. Adv_Request(APP_BLE_LP_ADV);
  605. }
  606. static void HciUserEvtProcess(void *argument) {
  607. UNUSED(argument);
  608. for(;;)
  609. {
  610. osThreadFlagsWait( 1, osFlagsWaitAny, osWaitForever);
  611. hci_user_evt_proc( );
  612. }
  613. }
  614. /*************************************************************
  615. *
  616. * WRAP FUNCTIONS
  617. *
  618. *************************************************************/
  619. void hci_notify_asynch_evt(void* pdata) {
  620. UNUSED(pdata);
  621. osThreadFlagsSet( HciUserEvtProcessId, 1 );
  622. }
  623. void hci_cmd_resp_release(uint32_t flag) {
  624. UNUSED(flag);
  625. osSemaphoreRelease( SemHciId );
  626. }
  627. void hci_cmd_resp_wait(uint32_t timeout) {
  628. UNUSED(timeout);
  629. osSemaphoreAcquire( SemHciId, osWaitForever );
  630. }
  631. static void BLE_UserEvtRx( void * pPayload ) {
  632. SVCCTL_UserEvtFlowStatus_t svctl_return_status;
  633. tHCI_UserEvtRxParam *pParam;
  634. pParam = (tHCI_UserEvtRxParam *)pPayload;
  635. svctl_return_status = SVCCTL_UserEvtRx((void *)&(pParam->pckt->evtserial));
  636. if (svctl_return_status != SVCCTL_UserEvtFlowDisable) {
  637. pParam->status = HCI_TL_UserEventFlow_Enable;
  638. } else {
  639. pParam->status = HCI_TL_UserEventFlow_Disable;
  640. }
  641. }
  642. static void BLE_StatusNot( HCI_TL_CmdStatus_t status ) {
  643. switch (status) {
  644. case HCI_TL_CmdBusy:
  645. osMutexAcquire( MtxHciId, osWaitForever );
  646. break;
  647. case HCI_TL_CmdAvailable:
  648. osMutexRelease( MtxHciId );
  649. break;
  650. default:
  651. break;
  652. }
  653. }
  654. void SVCCTL_ResumeUserEventFlow( void ) {
  655. hci_resume_flow();
  656. }