host.c 26 KB

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  1. #include "ble_comm.h"
  2. #include "app_flash.h"
  3. #include "system.h"
  4. #include "selfcheck.h"
  5. #include "hal_led.h"
  6. #include "app_safe.h"
  7. #if USENAMEFR
  8. char Target_scan[TARFET_LEN_MAX] = "SH_0000";
  9. #else
  10. char Target_scan[TARFET_LEN_MAX] = {0x01, 0xf9, 0x84, 0x6a, 0x83, 0xeb};
  11. #endif
  12. static Ble_receive_handler_t Rec_h = NULL;
  13. #define APP_BLE_OBSERVER_PRIO 3 /**< BLE observer priority of the application. There is no need to modify this value. */
  14. #define NUS_SERVICE_UUID_TYPE BLE_UUID_TYPE_VENDOR_BEGIN /**< UUID type for the Nordic UART Service (vendor specific). */
  15. #define ECHOBACK_BLE_UART_DATA 1 /**< Echo the UART data that is received over the Nordic UART Service (NUS) back to the sender. */
  16. BLE_NUS_C_DEF(m_ble_nus_c); /**< BLE Nordic UART Service (NUS) client instance. */
  17. NRF_BLE_GATT_DEF(m_gatt); /**< GATT module instance. */
  18. BLE_DB_DISCOVERY_DEF(m_db_disc); /**< Database discovery module instance. */
  19. NRF_BLE_SCAN_DEF(m_scan); /**< Scanning Module instance. */
  20. NRF_BLE_GQ_DEF(m_ble_gatt_queue, /**< BLE GATT Queue instance. */
  21. NRF_SDH_BLE_CENTRAL_LINK_COUNT,
  22. NRF_BLE_GQ_QUEUE_SIZE);
  23. static uint16_t m_ble_nus_max_data_len = BLE_GATT_ATT_MTU_DEFAULT - OPCODE_LENGTH - HANDLE_LENGTH; /**< Maximum length of data (in bytes) that can be transmitted to the peer by the Nordic UART service module. */
  24. unsigned char connect_to_server = 0;
  25. ble_gap_conn_params_t host_conn_params = {0};
  26. static void db_disc_handler(ble_db_discovery_evt_t *p_evt)
  27. {
  28. ble_nus_c_on_db_disc_evt(&m_ble_nus_c, p_evt);
  29. }
  30. void timer_init(void)
  31. {
  32. ret_code_t err_code = app_timer_init();
  33. APP_ERROR_CHECK(err_code);
  34. }
  35. static void db_discovery_init(void)
  36. {
  37. ble_db_discovery_init_t db_init;
  38. memset(&db_init, 0, sizeof(ble_db_discovery_init_t));
  39. db_init.evt_handler = db_disc_handler;
  40. db_init.p_gatt_queue = &m_ble_gatt_queue;
  41. ret_code_t err_code = ble_db_discovery_init(&db_init);
  42. APP_ERROR_CHECK(err_code);
  43. }
  44. void power_management_init(void)
  45. {
  46. ret_code_t err_code;
  47. err_code = nrf_pwr_mgmt_init();
  48. APP_ERROR_CHECK(err_code);
  49. }
  50. static void gatt_evt_handler(nrf_ble_gatt_t *p_gatt, nrf_ble_gatt_evt_t const *p_evt)
  51. {
  52. if (p_evt->evt_id == NRF_BLE_GATT_EVT_ATT_MTU_UPDATED)
  53. {
  54. BLE_PRINT("GATT MTU exchange completed.\r\r\n");
  55. m_ble_nus_max_data_len = p_evt->params.att_mtu_effective - OPCODE_LENGTH - HANDLE_LENGTH;
  56. BLE_PRINT("Ble NUS max data length set to 0x%X(%d)\r\r\n", m_ble_nus_max_data_len, m_ble_nus_max_data_len);
  57. }
  58. }
  59. void gatt_init(void)
  60. {
  61. ret_code_t err_code;
  62. err_code = nrf_ble_gatt_init(&m_gatt, gatt_evt_handler);
  63. APP_ERROR_CHECK(err_code);
  64. err_code = nrf_ble_gatt_att_mtu_central_set(&m_gatt, NRF_SDH_BLE_GATT_MAX_MTU_SIZE);
  65. APP_ERROR_CHECK(err_code);
  66. err_code = nrf_ble_gatt_att_mtu_periph_set(&m_gatt, NRF_SDH_BLE_GATT_MAX_MTU_SIZE);
  67. APP_ERROR_CHECK(err_code);
  68. }
  69. void scan_start(void)
  70. {
  71. ret_code_t ret;
  72. if(connect_to_server)return;
  73. ret = nrf_ble_scan_start(&m_scan);
  74. APP_ERROR_CHECK(ret);
  75. BLE_PRINT("scan_start -> scan_name <%s> \r\n", Target_scan);
  76. }
  77. void ST_scan_stop(void)
  78. {
  79. nrf_ble_scan_stop();
  80. BLE_PRINT("ST_scan_stop \r\n");
  81. }
  82. unsigned int ST_scan_start(void)
  83. {
  84. ret_code_t ret;
  85. ret = nrf_ble_scan_start(&m_scan);
  86. APP_ERROR_CHECK(ret);
  87. BLE_PRINT("ST_scan_start -> scan_name <%s> \r\n", Target_scan);
  88. if(ret != APP_SUCCESS)
  89. {
  90. return APP_ERROR_RESOURCES;
  91. }
  92. return APP_SUCCESS;
  93. }
  94. int Continuous_scan_start(void)
  95. {
  96. ret_code_t ret;
  97. nrf_ble_scan_stop();
  98. m_scan.scan_params.interval = 80;
  99. m_scan.scan_params.window = 45;
  100. m_scan.scan_params.active = 0;
  101. ret = nrf_ble_scan_start(&m_scan);
  102. APP_ERROR_CHECK(ret);
  103. return 0;
  104. }
  105. static void ble_nus_c_evt_handler(ble_nus_c_t *p_ble_nus_c, ble_nus_c_evt_t const *p_ble_nus_evt)
  106. {
  107. ret_code_t err_code;
  108. switch (p_ble_nus_evt->evt_type)
  109. {
  110. case BLE_NUS_C_EVT_DISCOVERY_COMPLETE:
  111. BLE_PRINT("Discovery complete.\r\n");
  112. err_code = ble_nus_c_handles_assign(p_ble_nus_c, p_ble_nus_evt->conn_handle, &p_ble_nus_evt->handles);
  113. APP_ERROR_CHECK(err_code);
  114. err_code = ble_nus_c_tx_notif_enable(p_ble_nus_c);
  115. APP_ERROR_CHECK(err_code);
  116. BLE_PRINT("Connected to device with Nordic UART Service.\r\n");
  117. break;
  118. case BLE_NUS_C_EVT_NUS_TX_EVT: //作为主机接收从机的数据
  119. Rec_h(p_ble_nus_evt->p_data, p_ble_nus_evt->data_len);
  120. break;
  121. case BLE_NUS_C_EVT_DISCONNECTED:
  122. BLE_PRINT("Disconnected.\r\n");
  123. #if DEBUGBLE
  124. scan_start();
  125. #endif
  126. break;
  127. }
  128. }
  129. static void nus_error_handler(uint32_t nrf_error)
  130. {
  131. if (nrf_error == NRF_ERROR_RESOURCES)
  132. return;
  133. if (nrf_error == NRF_ERROR_INVALID_STATE)
  134. return;
  135. APP_ERROR_HANDLER(nrf_error);
  136. }
  137. static void nus_c_init(void)
  138. {
  139. ret_code_t err_code;
  140. ble_nus_c_init_t init;
  141. init.evt_handler = ble_nus_c_evt_handler;
  142. init.error_handler = nus_error_handler;
  143. init.p_gatt_queue = &m_ble_gatt_queue;
  144. err_code = ble_nus_c_init(&m_ble_nus_c, &init);
  145. APP_ERROR_CHECK(err_code);
  146. }
  147. #define host_connected_evt_num_max 3
  148. static uint8_t host_connected_evt_num = 0;
  149. static Ble_evt_cb ble_host_connected_evt_cb[host_connected_evt_num_max] = {0};
  150. int Ble_Host_Connectd_Evt_Regist(Ble_evt_cb cb)
  151. {
  152. for (int i = 0; i < host_connected_evt_num_max; i++)
  153. {
  154. if (ble_host_connected_evt_cb[i] == cb)
  155. return -1;
  156. if (ble_host_connected_evt_cb[i] == 0)
  157. {
  158. host_connected_evt_num++;
  159. ble_host_connected_evt_cb[i] = cb; //回调函数
  160. return 0;
  161. }
  162. }
  163. DEBUG_LOG( "ble_evt_Regist -> too many!\n");
  164. return -2;
  165. }
  166. void ble_host_connected_evt_pcs(void)
  167. {
  168. for (int i = 0; i < host_connected_evt_num; i++)
  169. { //DEBUG_LOG("time_cb[%d]=%d\n",i,time_cb[i]);
  170. if (ble_host_connected_evt_cb[i])
  171. {
  172. ble_host_connected_evt_cb[i](); //回调函数
  173. }
  174. }
  175. }
  176. #define host_disconn_evt_num_max 16
  177. static uint8_t host_disconn_evt_num = 0;
  178. static Ble_evt_cb ble_Host_disconn_evt_cb[host_disconn_evt_num_max] = {0};
  179. int Ble_Host_Disconn_Evt_Regist(Ble_evt_cb cb)
  180. {
  181. for (int i = 0; i < host_disconn_evt_num_max; i++)
  182. {
  183. if (ble_Host_disconn_evt_cb[i] == cb)
  184. return -1;
  185. if (ble_Host_disconn_evt_cb[i] == 0)
  186. {
  187. host_disconn_evt_num++;
  188. ble_Host_disconn_evt_cb[i] = cb; //回调函数
  189. return 0;
  190. }
  191. }
  192. DEBUG_LOG( "Ble_Slave_Disconn_Evt_Regist -> too many!\r\n");
  193. return -2;
  194. }
  195. void ble_host_dicconn_evt_pcs(void)
  196. {
  197. for (int i = 0; i < host_disconn_evt_num; i++)
  198. { //DEBUG_LOG("time_cb[%d]=%d\n",i,time_cb[i]);
  199. if (ble_Host_disconn_evt_cb[i])
  200. {
  201. ble_Host_disconn_evt_cb[i](); //回调函数
  202. }
  203. }
  204. }
  205. bool advdata_name_find(uint8_t const * p_encoded_data,
  206. uint16_t data_len,
  207. char const * p_target_name)
  208. {
  209. return ble_advdata_name_find(p_encoded_data,data_len,p_target_name);
  210. }
  211. bool advdata_short_name_find(uint8_t const * p_encoded_data,
  212. uint16_t data_len,
  213. char const * p_target_name,
  214. uint8_t const short_name_min_len)
  215. {
  216. return ble_advdata_short_name_find(p_encoded_data,data_len,p_target_name,short_name_min_len);
  217. }
  218. #if BleNameHoldOn_ENANBLE
  219. uint8_t SaveFlashFlag_holdOn =0;
  220. #endif
  221. #define adv_rep_cb_MaxNumber 2
  222. advdata_rep_handler_t _advdata_rep_callback[adv_rep_cb_MaxNumber] ={NULL,NULL};
  223. void advdata_report_Evt_del(advdata_rep_handler_t handler){
  224. for(uint8_t i=0;i < adv_rep_cb_MaxNumber;i++){
  225. if(_advdata_rep_callback[i] == handler){
  226. _advdata_rep_callback[i] = NULL;
  227. break;
  228. }
  229. }
  230. }
  231. void advdata_report_Evt_Regist(advdata_rep_handler_t handler)
  232. {
  233. if(handler==NULL)
  234. {
  235. BLE_PRINT("advdata_report_Evt_Regist ERROR\r\n");
  236. }
  237. else
  238. {
  239. // BLE_PRINT("advdata_report_Evt_Regist SUCCESS,adv_rep_cb_cnt:%d\r\n",adv_rep_cb_cnt);
  240. for(uint8_t i=0;i < adv_rep_cb_MaxNumber;i++){
  241. if(_advdata_rep_callback[i] == NULL){
  242. _advdata_rep_callback[i] = handler;
  243. break;
  244. }
  245. }
  246. }
  247. }
  248. //static uint8_t Client_addr[6]={0};
  249. //uint8_t * HostConnted_peer_addr(void){
  250. // return Client_addr;
  251. //}
  252. static void on_ble_central_evt(ble_evt_t const *p_ble_evt, void *p_context) //作为主设备时的处理
  253. {
  254. ret_code_t err_code;
  255. ble_gap_evt_t const *p_gap_evt = &p_ble_evt->evt.gap_evt;
  256. uint8_t cnt =0;
  257. switch (p_ble_evt->header.evt_id)
  258. {
  259. case BLE_GAP_EVT_CONNECTED:
  260. err_code = ble_nus_c_handles_assign(&m_ble_nus_c, p_ble_evt->evt.gap_evt.conn_handle, NULL);
  261. APP_ERROR_CHECK(err_code);
  262. BLE_PRINT("start discovery services\r\n"); //添加开始发现服务提示
  263. connect_to_server = 1;
  264. // for(uint8_t i=0;i<6;i++){
  265. // Client_addr[i]=p_gap_evt->params.connected.peer_addr.addr[5-i];
  266. // }
  267. // start discovery of services. The NUS Client waits for a discovery result
  268. err_code = ble_db_discovery_start(&m_db_disc, p_ble_evt->evt.gap_evt.conn_handle);
  269. APP_ERROR_CHECK(err_code);
  270. ble_host_connected_evt_pcs();
  271. #if BleNameHoldOn_ENANBLE
  272. if(mFlash.isHost >0){
  273. uint8_t i =0;
  274. for(i=0;i<sizeof(mFlash.mClient.macAddr);i++){
  275. if(mFlash.mClient.macAddr[i] != 0xff)break;
  276. }
  277. if(sizeof(mFlash.mClient.macAddr) == i){
  278. for(i=0;i<sizeof(mFlash.mClient.macAddr);i++){
  279. mFlash.mClient.macAddr[i] = p_ble_evt->evt.gap_evt.params.connected.peer_addr.addr[5-i];
  280. }
  281. SaveFlashFlag_holdOn = 1;
  282. }
  283. }
  284. #endif
  285. sd_ble_gap_rssi_start(m_ble_nus_c.conn_handle, BLE_GAP_RSSI_THRESHOLD_INVALID, 0);
  286. break;
  287. case BLE_GAP_EVT_DISCONNECTED:
  288. connect_to_server = 0;
  289. BLE_PRINT("Disconnected. conn_handle: 0x%x, reason: 0x%x",
  290. p_gap_evt->conn_handle,
  291. p_gap_evt->params.disconnected.reason);
  292. BLE_PRINT("Disconnected to Server.\r\n");
  293. ble_host_dicconn_evt_pcs();
  294. sd_ble_gap_rssi_stop(m_ble_nus_c.conn_handle);
  295. break;
  296. case BLE_GAP_EVT_TIMEOUT:
  297. if (p_gap_evt->params.timeout.src == BLE_GAP_TIMEOUT_SRC_CONN)
  298. {
  299. BLE_PRINT("Connection Request timed out.\r\n");
  300. }
  301. break;
  302. case BLE_GAP_EVT_SEC_PARAMS_REQUEST:
  303. // Pairing not supported.
  304. err_code = sd_ble_gap_sec_params_reply(p_ble_evt->evt.gap_evt.conn_handle, BLE_GAP_SEC_STATUS_PAIRING_NOT_SUPP, NULL, NULL);
  305. APP_ERROR_CHECK(err_code);
  306. BLE_PRINT("on_ble_central_evt -> BLE_GAP_EVT_SEC_PARAMS_REQUEST\r\n");
  307. break;
  308. case BLE_GAP_EVT_PHY_UPDATE_REQUEST:
  309. {
  310. BLE_PRINT("Connection 0x%x PHY update request.", p_ble_evt->evt.gap_evt.conn_handle);
  311. ble_gap_phys_t const phys =
  312. {
  313. .rx_phys = BLE_GAP_PHY_AUTO,
  314. .tx_phys = BLE_GAP_PHY_AUTO,
  315. };
  316. err_code = sd_ble_gap_phy_update(p_ble_evt->evt.gap_evt.conn_handle, &phys);
  317. APP_ERROR_CHECK(err_code);
  318. }
  319. break;
  320. case BLE_GAP_EVT_CONN_PARAM_UPDATE_REQUEST:
  321. // Accepting parameters requested by peer.
  322. err_code = sd_ble_gap_conn_param_update(p_gap_evt->conn_handle,
  323. &p_gap_evt->params.conn_param_update_request.conn_params); //主机接受从机连接参数更新连接参数
  324. APP_ERROR_CHECK(err_code);
  325. BLE_PRINT("on_ble_central_evt -> BLE_GAP_EVT_CONN_PARAM_UPDATE_REQUEST\r\n");
  326. break;
  327. case BLE_GAP_EVT_CONN_PARAM_UPDATE:
  328. BLE_PRINT("on_ble_central_evt -> BLE_GAP_EVT_CONN_PARAM_UPDATE\r\n");
  329. memcpy(&host_conn_params, &p_gap_evt->params.conn_param_update_request.conn_params, sizeof(ble_gap_conn_params_t));
  330. BLE_PRINT("min_conn_interval : %d * 1.25 ms\r\n", p_gap_evt->params.conn_param_update_request.conn_params.min_conn_interval);
  331. BLE_PRINT("max_conn_interval : %d * 1.25 ms\r\n", p_gap_evt->params.conn_param_update_request.conn_params.max_conn_interval);
  332. BLE_PRINT("slave_latency : %d\r\n", p_gap_evt->params.conn_param_update_request.conn_params.slave_latency);
  333. BLE_PRINT("conn_sup_timeout : %d * 10 ms\r\n", p_gap_evt->params.conn_param_update_request.conn_params.conn_sup_timeout);
  334. break;
  335. case BLE_GATTC_EVT_TIMEOUT:
  336. // Disconnect on GATT Client timeout event.
  337. BLE_PRINT("GATT Client Timeout.\r\n");
  338. err_code = sd_ble_gap_disconnect(p_ble_evt->evt.gattc_evt.conn_handle,
  339. BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
  340. APP_ERROR_CHECK(err_code);
  341. break;
  342. case BLE_GATTS_EVT_TIMEOUT:
  343. // Disconnect on GATT Server timeout event.
  344. BLE_PRINT("GATT Server Timeout.\r\n");
  345. err_code = sd_ble_gap_disconnect(p_ble_evt->evt.gatts_evt.conn_handle,
  346. BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
  347. APP_ERROR_CHECK(err_code);
  348. break;
  349. case BLE_GAP_EVT_ADV_REPORT:
  350. {
  351. // if(p_gap_evt->params.adv_report.type.scan_response == 0){
  352. for(cnt=0; cnt < adv_rep_cb_MaxNumber ; cnt++){
  353. if(NULL != _advdata_rep_callback[cnt])_advdata_rep_callback[cnt](&(p_gap_evt->params.adv_report));
  354. // }
  355. // unsigned short parsed_name_len;
  356. // uint16_t offset = 0;
  357. // parsed_name_len = ble_advdata_search(p_gap_evt->params.adv_report.data.p_data,p_gap_evt->params.adv_report.data.len,&offset,BLE_GAP_AD_TYPE_COMPLETE_LOCAL_NAME);
  358. // if(parsed_name_len>0)
  359. // {
  360. // printf( " RSSI:%d \tNAME :",p_gap_evt->params.adv_report.rssi);
  361. // for(int k=0;k<parsed_name_len;k++)
  362. // {
  363. // printf( "%c" ,p_gap_evt->params.adv_report.data.p_data[k+offset] );
  364. // }
  365. // printf( "\r\n");
  366. // }
  367. }
  368. }
  369. break;
  370. default:
  371. break;
  372. }
  373. }
  374. static volatile uint16_t led_cnt =0;
  375. extern bool ble_evt_is_advertising_timeout(ble_evt_t const *p_ble_evt);
  376. extern void on_ble_peripheral_evt(ble_evt_t const *p_ble_evt); //作为从设备的处理
  377. static void ble_evt_handler(ble_evt_t const *p_ble_evt, void *p_context)
  378. {
  379. uint16_t conn_handle = p_ble_evt->evt.gap_evt.conn_handle;
  380. uint16_t role = ble_conn_state_role(conn_handle);
  381. ble_gap_evt_t const *p_gap_evt = &p_ble_evt->evt.gap_evt;
  382. ble_gap_evt_connected_t const * p_connected_evt = &p_gap_evt->params.connected;
  383. //静态地址最高两个 bit 为 “11”。
  384. //addr:48-bit 的MAC地址数组,低字节在前,所以与我们实际看到的地址顺序相反
  385. uint8_t aa_addr[6] = {0xAA,0xAA,0xAA,0xAA,0xAA,0xC0};
  386. uint8_t bb_addr[6] = {0xBB,0xBB,0xBB,0xBB,0xBB,0xC0};
  387. uint8_t cc_addr[6] = {0xCC,0xCC,0xCC,0xCC,0xCC,0xC0};
  388. // uint8_t ver1 = 0,ver2 = 0;
  389. switch(p_ble_evt->header.evt_id)
  390. {
  391. case BLE_GAP_EVT_SCAN_REQ_REPORT:
  392. if(memcmp(p_gap_evt->params.scan_req_report.peer_addr.addr,aa_addr,6) == 0)
  393. {
  394. if(p_gap_evt->params.scan_req_report.rssi <= -60)break;
  395. selfcheck_trigger_set_order(0x01); //天线-60,不检测震动和前脚装反
  396. }
  397. else if(memcmp(p_gap_evt->params.scan_req_report.peer_addr.addr,bb_addr,6) == 0)
  398. {
  399. if(p_gap_evt->params.scan_req_report.rssi <= -60)break;
  400. selfcheck_trigger_set_order(0x02); //天线-60,检测震动,但不检测前脚装反
  401. }
  402. else if(memcmp(p_gap_evt->params.scan_req_report.peer_addr.addr,cc_addr,6) == 0)
  403. {
  404. if(p_gap_evt->params.scan_req_report.rssi <= -60)break;
  405. selfcheck_trigger_set_order(0x03); //天线-18,检测震动,且检测前脚装反
  406. }
  407. uint8_t ver1 = (p_gap_evt->params.scan_req_report.peer_addr.addr[0] + p_gap_evt->params.scan_req_report.peer_addr.addr[1] + p_gap_evt->params.scan_req_report.peer_addr.addr[2] + p_gap_evt->params.scan_req_report.peer_addr.addr[5]);
  408. uint8_t ver2 = (p_gap_evt->params.scan_req_report.peer_addr.addr[0] ^ p_gap_evt->params.scan_req_report.peer_addr.addr[1] ^ p_gap_evt->params.scan_req_report.peer_addr.addr[2] ^ p_gap_evt->params.scan_req_report.peer_addr.addr[5]);
  409. // SEGGER_RTT_printf(0,"V1:%d,V2:%d\r\n",ver1,ver2);
  410. // SEGGER_RTT_printf(0,"111 V1:%d,V2:%d\r\n",p_gap_evt->params.scan_req_report.peer_addr.addr[4],p_gap_evt->params.scan_req_report.peer_addr.addr[3]);
  411. if(p_gap_evt->params.scan_req_report.peer_addr.addr[4] == ver1 && p_gap_evt->params.scan_req_report.peer_addr.addr[3] == ver2)
  412. {
  413. uint8_t cmd = (p_gap_evt->params.scan_req_report.peer_addr.addr[5] & 0x3f);
  414. // SEGGER_RTT_printf(0,"222 cmd:%d\r\n",cmd);
  415. switch(cmd){
  416. case 0x01:{
  417. uint16_t softversion = (uint16_t)(p_gap_evt->params.scan_req_report.peer_addr.addr[2]<<8 | p_gap_evt->params.scan_req_report.peer_addr.addr[1]);
  418. if(SOFTWARE_VERSION == softversion){
  419. LED_Start(LED_ONPURPLE,COLOR_PURPLE);
  420. led_cnt =600;
  421. Process_SetHoldOn(app_BLE_LEDON_PURPLE_process,1);
  422. selfcheck_trigger_set_order(p_gap_evt->params.scan_req_report.peer_addr.addr[0]);
  423. }
  424. break;}
  425. case 0x02:
  426. if(0x02 == p_gap_evt->params.scan_req_report.peer_addr.addr[1] && LR_FLAG_VALUE == mFlash.LR_FLAG){//查询左右鞋
  427. if(mFlash.isHost)LED_Start(LED_LR_LED,COLOR_CYAN);
  428. else LED_Start(LED_LR_LED,COLOR_YELLOW);
  429. led_cnt =600;
  430. Process_SetHoldOn(app_BLE_LEDON_PURPLE_process,1);
  431. }
  432. // else if(0x00 == p_gap_evt->params.scan_req_report.peer_addr.addr[1] && LR_FLAG_VALUE == mFlash.LR_FLAG){//清除左右鞋的配置
  433. // if(p_gap_evt->params.scan_req_report.rssi <= -60)break;
  434. // app_SetRestsettting();
  435. // }
  436. break;
  437. default:
  438. break;
  439. }
  440. }
  441. break;
  442. }
  443. // Based on the role this device plays in the connection, dispatch to the right handler.不同角色下所做的处理
  444. if (role == BLE_GAP_ROLE_PERIPH || ble_evt_is_advertising_timeout(p_ble_evt))
  445. {
  446. // ble_nus_on_ble_evt(p_ble_evt, &m_nus);
  447. on_ble_peripheral_evt(p_ble_evt);
  448. }
  449. else if ((role == BLE_GAP_ROLE_CENTRAL) || (p_ble_evt->header.evt_id == BLE_GAP_EVT_ADV_REPORT))
  450. {
  451. // ble_nus_c_on_ble_evt(p_ble_evt, &m_ble_nus_c);
  452. on_ble_central_evt(p_ble_evt, NULL);
  453. }
  454. else
  455. {
  456. BLE_PRINT("ble_evt_handler -> other\r\n");
  457. }
  458. }
  459. static void host_ledclose_process(void){
  460. if(led_cnt>0){ led_cnt--;
  461. if(led_cnt==0){
  462. LED_Stop(LED_ONPURPLE);
  463. LED_Stop(LED_LR_LED);
  464. Process_SetHoldOn(app_BLE_LEDON_PURPLE_process,0);
  465. }
  466. }
  467. }
  468. void ble_stack_init(void)
  469. {
  470. ret_code_t err_code;
  471. err_code = nrf_sdh_enable_request();
  472. APP_ERROR_CHECK(err_code);
  473. // Configure the BLE stack using the default settings.
  474. // Fetch the start address of the application RAM.
  475. uint32_t ram_start = 0;
  476. err_code = nrf_sdh_ble_default_cfg_set(APP_BLE_CONN_CFG_TAG, &ram_start);
  477. APP_ERROR_CHECK(err_code);
  478. // Enable BLE stack.
  479. err_code = nrf_sdh_ble_enable(&ram_start);
  480. APP_ERROR_CHECK(err_code);
  481. // Register a handler for BLE events.
  482. NRF_SDH_BLE_OBSERVER(m_ble_observer, APP_BLE_OBSERVER_PRIO, ble_evt_handler, NULL);
  483. Process_Start(1000,"host_ledclose",host_ledclose_process);
  484. }
  485. #define PRINT_MAC 0
  486. /**@brief Function for handling Scanning Module events.
  487. */
  488. static void scan_evt_handler(scan_evt_t const *p_scan_evt)
  489. {
  490. switch (p_scan_evt->scan_evt_id)
  491. {
  492. case NRF_BLE_SCAN_EVT_CONNECTING_ERROR:
  493. {
  494. // ret_code_t err_code = p_scan_evt->params.connecting_err.err_code;
  495. // APP_ERROR_CHECK(err_code);
  496. BLE_PRINT("scan_evt_handler -> NRF_BLE_SCAN_EVT_CONNECTING_ERROR \r\n");
  497. }
  498. break;
  499. case NRF_BLE_SCAN_EVT_CONNECTED:
  500. {
  501. BLE_PRINT("scan_evt_handler -> NRF_BLE_SCAN_EVT_CONNECTED\r\n");
  502. #if PRINT_MAC
  503. ble_gap_evt_connected_t const *p_connected =
  504. p_scan_evt->params.connected.p_connected;
  505. // Scan is automatically stopped by the connection.
  506. BLE_PRINT("Connecting to Host %02x%02x %02x%02x %02x%02x\r\r\n",
  507. p_connected->peer_addr.addr[0],
  508. p_connected->peer_addr.addr[1],
  509. p_connected->peer_addr.addr[2],
  510. p_connected->peer_addr.addr[3],
  511. p_connected->peer_addr.addr[4],
  512. p_connected->peer_addr.addr[5]);
  513. #endif
  514. }
  515. break;
  516. case NRF_BLE_SCAN_EVT_SCAN_TIMEOUT:
  517. {
  518. BLE_PRINT("scan_evt_handler -> NRF_BLE_SCAN_EVT_SCAN_TIMEOUT -> Scan timed out.\r\n");
  519. scan_start();
  520. }
  521. break;
  522. case NRF_BLE_SCAN_EVT_FILTER_MATCH:
  523. {
  524. BLE_PRINT("scan_evt_handler -> NRF_BLE_SCAN_EVT_FILTER_MATCH\r\n");
  525. }
  526. break;
  527. case NRF_BLE_SCAN_EVT_WHITELIST_REQUEST:
  528. {
  529. BLE_PRINT("scan_evt_handler -> NRF_BLE_SCAN_EVT_WHITELIST_REQUEST\r\n");
  530. }
  531. break;
  532. case NRF_BLE_SCAN_EVT_WHITELIST_ADV_REPORT:
  533. {
  534. BLE_PRINT("scan_evt_handler -> NRF_BLE_SCAN_EVT_WHITELIST_ADV_REPORT\r\n");
  535. }
  536. break;
  537. case NRF_BLE_SCAN_EVT_NOT_FOUND:
  538. {
  539. // BLE_PRINT("scan_evt_handler -> NRF_BLE_SCAN_EVT_NOT_FOUND");
  540. }
  541. break;
  542. default:
  543. BLE_PRINT("scan_evt_handler -> default:%d \r\n", p_scan_evt->scan_evt_id);
  544. break;
  545. }
  546. }
  547. unsigned int send_bytes_server(uint8_t *bytes, uint16_t len)
  548. {
  549. if (connect_to_server == 0)
  550. {
  551. BLE_PRINT("send_bytes_server -> APP_ERR_DISCONN\r\n");
  552. return APP_ERR_DISCONN;
  553. }
  554. if (len > m_ble_nus_max_data_len)
  555. {
  556. BLE_PRINT("send_bytes_server -> fail ->overlength\r\n");
  557. return APP_ERR_OVERLENGTH;
  558. }
  559. if (NRF_SUCCESS != ble_nus_c_string_send(&m_ble_nus_c, bytes, len))
  560. {
  561. BLE_PRINT("send_bytes_server -> fail\r\n");
  562. }
  563. return APP_SUCCESS;
  564. }
  565. static void scan_init(void)
  566. {
  567. ret_code_t err_code;
  568. nrf_ble_scan_init_t init_scan;
  569. memset(&init_scan, 0, sizeof(init_scan));
  570. init_scan.connect_if_match = true;
  571. init_scan.conn_cfg_tag = APP_BLE_CONN_CFG_TAG;
  572. err_code = nrf_ble_scan_init(&m_scan, &init_scan, scan_evt_handler);
  573. APP_ERROR_CHECK(err_code);
  574. #if USENAMEFR
  575. err_code = nrf_ble_scan_filter_set(&m_scan, SCAN_NAME_FILTER, &Target_scan);
  576. APP_ERROR_CHECK(err_code);
  577. err_code = nrf_ble_scan_filters_enable(&m_scan, NRF_BLE_SCAN_NAME_FILTER, false);
  578. APP_ERROR_CHECK(err_code);
  579. BLE_PRINT("scan_init -> scan_name <%s> \r\n", Target_scan);
  580. #else
  581. err_code = nrf_ble_scan_filter_set(&m_scan, SCAN_ADDR_FILTER, &Target_scan);
  582. APP_ERROR_CHECK(err_code);
  583. err_code = nrf_ble_scan_filters_enable(&m_scan, NRF_BLE_SCAN_ADDR_FILTER, false);
  584. APP_ERROR_CHECK(err_code);
  585. BLE_PRINT("scan_start -> scan_MAC [ %02X %02X %02X %02X %02X %02X ]\r\n", Target_scan[0], Target_scan[1], Target_scan[2], Target_scan[3], Target_scan[4], Target_scan[5]);
  586. #endif
  587. }
  588. unsigned char host_isconnect(void)
  589. {
  590. return connect_to_server;
  591. }
  592. char ble_stack_init_sta = 1;
  593. char host_init_sta = 0;
  594. void host_init(Ble_receive_handler_t receive_handler)
  595. {
  596. if (receive_handler == NULL)
  597. {
  598. BLE_PRINT("host_init -> param err \r\n");
  599. return;
  600. }
  601. Rec_h = receive_handler;
  602. if (ble_stack_init_sta)
  603. {
  604. timer_init(); //
  605. power_management_init(); //
  606. ble_stack_init(); //
  607. gatt_init(); //
  608. ble_stack_init_sta = 0;
  609. }
  610. db_discovery_init();
  611. nus_c_init();
  612. scan_init();
  613. host_init_sta=1;
  614. }
  615. void err(int err_num)
  616. {
  617. BLE_PRINT("APP ERROR -> %d \r\n", err_num);
  618. }
  619. unsigned int host_set_scan_name(char *name, int len)
  620. {
  621. unsigned int err_code;
  622. if (len > TARFET_LEN_MAX)
  623. return APP_ERR_OVERLENGTH;
  624. if(connect_to_server)
  625. return APP_ERR_CONNECTED;
  626. memset(Target_scan, 0, TARFET_LEN_MAX);
  627. if(host_init_sta)
  628. {
  629. memcpy(Target_scan, name, len);
  630. err_code =nrf_ble_scan_all_filter_remove(&m_scan);
  631. APP_ERROR_CHECK(err_code);
  632. #if USENAMEFR
  633. err_code = nrf_ble_scan_filter_set(&m_scan, SCAN_NAME_FILTER, &Target_scan);
  634. APP_ERROR_CHECK(err_code);
  635. err_code = nrf_ble_scan_filters_enable(&m_scan, NRF_BLE_SCAN_NAME_FILTER, false);
  636. APP_ERROR_CHECK(err_code);
  637. BLE_PRINT("host_set_scan_name -> scan_name <%s> \r\n", Target_scan);
  638. #else
  639. err_code = nrf_ble_scan_filter_set(&m_scan, SCAN_ADDR_FILTER, &Target_scan);
  640. APP_ERROR_CHECK(err_code);
  641. err_code = nrf_ble_scan_filters_enable(&m_scan, NRF_BLE_SCAN_ADDR_FILTER, false);
  642. APP_ERROR_CHECK(err_code);
  643. BLE_PRINT("host_set_scan_name -> scan_MAC [ %02X %02X %02X %02X %02X %02X ]\r\n", Target_scan[0], Target_scan[1], Target_scan[2], Target_scan[3], Target_scan[4], Target_scan[5]);
  644. #endif
  645. }
  646. else
  647. {
  648. memcpy(Target_scan, name, len);
  649. }
  650. return APP_SUCCESS;
  651. }
  652. unsigned int Ble_update_conn_interval(float min_conn_interval, float max_conn_interval)
  653. {
  654. ret_code_t err_code;
  655. ble_gap_conn_params_t bgcp;
  656. //主机接受从机连接参数更新连接参数
  657. if (connect_to_server)
  658. {
  659. if ((max_conn_interval > 1.25 * 1599) || (max_conn_interval < min_conn_interval))
  660. return APP_ERR_PARAMERR;
  661. if (min_conn_interval < 7.5f)
  662. return APP_ERR_PARAMERR;
  663. bgcp.max_conn_interval = MSEC_TO_UNITS(max_conn_interval, UNIT_1_25_MS);
  664. bgcp.min_conn_interval = MSEC_TO_UNITS(min_conn_interval, UNIT_1_25_MS);
  665. bgcp.conn_sup_timeout = MSEC_TO_UNITS(4000, UNIT_10_MS);
  666. bgcp.slave_latency = 0;
  667. err_code = sd_ble_gap_conn_param_update(m_ble_nus_c.conn_handle, &bgcp);
  668. if(err_code != NRF_ERROR_INVALID_STATE && err_code != NRF_ERROR_BUSY && err_code != NRF_SUCCESS){
  669. APP_ERROR_CHECK(err_code);
  670. }
  671. return err_code;
  672. }
  673. else
  674. {
  675. return APP_ERR_DISCONN;
  676. }
  677. }
  678. void host_disconnect(void)
  679. {
  680. BLE_PRINT("host sd_ble_gap_disconnect\r\n");
  681. if (connect_to_server)
  682. sd_ble_gap_disconnect(m_ble_nus_c.conn_handle, BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
  683. }
  684. void host_get_conn_params(ble_gap_conn_params_t *p)
  685. {
  686. memcpy(p, &host_conn_params, sizeof(ble_gap_conn_params_t));
  687. }
  688. static signed char rssi = 0;
  689. signed char host_get_rssi(void)
  690. {
  691. unsigned char channel;
  692. if (connect_to_server == 0)
  693. return 1;
  694. sd_ble_gap_rssi_get(m_ble_nus_c.conn_handle, &rssi, &channel);
  695. ///BLE_PRINT("rssi= %d channel=%d\r\n", rssi, channel);
  696. return rssi;
  697. }