esp_hid_gap.c 27 KB

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  1. /*
  2. * SPDX-FileCopyrightText: 2021-2022 Espressif Systems (Shanghai) CO LTD
  3. *
  4. * SPDX-License-Identifier: Unlicense OR CC0-1.0
  5. */
  6. #include <string.h>
  7. #include <stdbool.h>
  8. #include "freertos/FreeRTOS.h"
  9. #include "freertos/task.h"
  10. #include "freertos/semphr.h"
  11. #include "esp_hid_gap.h"
  12. static const char *TAG = "ESP_HID_GAP";
  13. // uncomment to print all devices that were seen during a scan
  14. #define GAP_DBG_PRINTF(...) printf(__VA_ARGS__)
  15. #if CONFIG_BT_HID_HOST_ENABLED
  16. static const char * gap_bt_prop_type_names[5] = {"","BDNAME","COD","RSSI","EIR"};
  17. #endif
  18. static esp_hid_scan_result_t *bt_scan_results = NULL;
  19. static size_t num_bt_scan_results = 0;
  20. static esp_hid_scan_result_t *ble_scan_results = NULL;
  21. static size_t num_ble_scan_results = 0;
  22. static SemaphoreHandle_t bt_hidh_cb_semaphore = NULL;
  23. #define WAIT_BT_CB() xSemaphoreTake(bt_hidh_cb_semaphore, portMAX_DELAY)
  24. #define SEND_BT_CB() xSemaphoreGive(bt_hidh_cb_semaphore)
  25. static SemaphoreHandle_t ble_hidh_cb_semaphore = NULL;
  26. #define WAIT_BLE_CB() xSemaphoreTake(ble_hidh_cb_semaphore, portMAX_DELAY)
  27. #define SEND_BLE_CB() xSemaphoreGive(ble_hidh_cb_semaphore)
  28. #define SIZEOF_ARRAY(a) (sizeof(a)/sizeof(*a))
  29. static const char *ble_gap_evt_names[] = { "ADV_DATA_SET_COMPLETE", "SCAN_RSP_DATA_SET_COMPLETE", "SCAN_PARAM_SET_COMPLETE", "SCAN_RESULT", "ADV_DATA_RAW_SET_COMPLETE", "SCAN_RSP_DATA_RAW_SET_COMPLETE", "ADV_START_COMPLETE", "SCAN_START_COMPLETE", "AUTH_CMPL", "KEY", "SEC_REQ", "PASSKEY_NOTIF", "PASSKEY_REQ", "OOB_REQ", "LOCAL_IR", "LOCAL_ER", "NC_REQ", "ADV_STOP_COMPLETE", "SCAN_STOP_COMPLETE", "SET_STATIC_RAND_ADDR", "UPDATE_CONN_PARAMS", "SET_PKT_LENGTH_COMPLETE", "SET_LOCAL_PRIVACY_COMPLETE", "REMOVE_BOND_DEV_COMPLETE", "CLEAR_BOND_DEV_COMPLETE", "GET_BOND_DEV_COMPLETE", "READ_RSSI_COMPLETE", "UPDATE_WHITELIST_COMPLETE"};
  30. static const char *bt_gap_evt_names[] = { "DISC_RES", "DISC_STATE_CHANGED", "RMT_SRVCS", "RMT_SRVC_REC", "AUTH_CMPL", "PIN_REQ", "CFM_REQ", "KEY_NOTIF", "KEY_REQ", "READ_RSSI_DELTA"};
  31. static const char *ble_addr_type_names[] = {"PUBLIC", "RANDOM", "RPA_PUBLIC", "RPA_RANDOM"};
  32. const char *ble_addr_type_str(esp_ble_addr_type_t ble_addr_type)
  33. {
  34. if (ble_addr_type > BLE_ADDR_TYPE_RPA_RANDOM) {
  35. return "UNKNOWN";
  36. }
  37. return ble_addr_type_names[ble_addr_type];
  38. }
  39. const char *ble_gap_evt_str(uint8_t event)
  40. {
  41. if (event >= SIZEOF_ARRAY(ble_gap_evt_names)) {
  42. return "UNKNOWN";
  43. }
  44. return ble_gap_evt_names[event];
  45. }
  46. const char *bt_gap_evt_str(uint8_t event)
  47. {
  48. if (event >= SIZEOF_ARRAY(bt_gap_evt_names)) {
  49. return "UNKNOWN";
  50. }
  51. return bt_gap_evt_names[event];
  52. }
  53. #if CONFIG_BT_BLE_ENABLED
  54. const char *esp_ble_key_type_str(esp_ble_key_type_t key_type)
  55. {
  56. const char *key_str = NULL;
  57. switch (key_type) {
  58. case ESP_LE_KEY_NONE:
  59. key_str = "ESP_LE_KEY_NONE";
  60. break;
  61. case ESP_LE_KEY_PENC:
  62. key_str = "ESP_LE_KEY_PENC";
  63. break;
  64. case ESP_LE_KEY_PID:
  65. key_str = "ESP_LE_KEY_PID";
  66. break;
  67. case ESP_LE_KEY_PCSRK:
  68. key_str = "ESP_LE_KEY_PCSRK";
  69. break;
  70. case ESP_LE_KEY_PLK:
  71. key_str = "ESP_LE_KEY_PLK";
  72. break;
  73. case ESP_LE_KEY_LLK:
  74. key_str = "ESP_LE_KEY_LLK";
  75. break;
  76. case ESP_LE_KEY_LENC:
  77. key_str = "ESP_LE_KEY_LENC";
  78. break;
  79. case ESP_LE_KEY_LID:
  80. key_str = "ESP_LE_KEY_LID";
  81. break;
  82. case ESP_LE_KEY_LCSRK:
  83. key_str = "ESP_LE_KEY_LCSRK";
  84. break;
  85. default:
  86. key_str = "INVALID BLE KEY TYPE";
  87. break;
  88. }
  89. return key_str;
  90. }
  91. #endif /* CONFIG_BT_BLE_ENABLED */
  92. void esp_hid_scan_results_free(esp_hid_scan_result_t *results)
  93. {
  94. esp_hid_scan_result_t *r = NULL;
  95. while (results) {
  96. r = results;
  97. results = results->next;
  98. if (r->name != NULL) {
  99. free((char *)r->name);
  100. }
  101. free(r);
  102. }
  103. }
  104. #if (CONFIG_BT_HID_HOST_ENABLED || CONFIG_BT_BLE_ENABLED)
  105. static esp_hid_scan_result_t *find_scan_result(esp_bd_addr_t bda, esp_hid_scan_result_t *results)
  106. {
  107. esp_hid_scan_result_t *r = results;
  108. while (r) {
  109. if (memcmp(bda, r->bda, sizeof(esp_bd_addr_t)) == 0) {
  110. return r;
  111. }
  112. r = r->next;
  113. }
  114. return NULL;
  115. }
  116. #endif /* (CONFIG_BT_HID_HOST_ENABLED || CONFIG_BT_BLE_ENABLED) */
  117. #if CONFIG_BT_HID_HOST_ENABLED
  118. static void add_bt_scan_result(esp_bd_addr_t bda, esp_bt_cod_t *cod, esp_bt_uuid_t *uuid, uint8_t *name, uint8_t name_len, int rssi)
  119. {
  120. esp_hid_scan_result_t *r = find_scan_result(bda, bt_scan_results);
  121. if (r) {
  122. //Some info may come later
  123. if (r->name == NULL && name && name_len) {
  124. char *name_s = (char *)malloc(name_len + 1);
  125. if (name_s == NULL) {
  126. ESP_LOGE(TAG, "Malloc result name failed!");
  127. return;
  128. }
  129. memcpy(name_s, name, name_len);
  130. name_s[name_len] = 0;
  131. r->name = (const char *)name_s;
  132. }
  133. if (r->bt.uuid.len == 0 && uuid->len) {
  134. memcpy(&r->bt.uuid, uuid, sizeof(esp_bt_uuid_t));
  135. }
  136. if (rssi != 0) {
  137. r->rssi = rssi;
  138. }
  139. return;
  140. }
  141. r = (esp_hid_scan_result_t *)malloc(sizeof(esp_hid_scan_result_t));
  142. if (r == NULL) {
  143. ESP_LOGE(TAG, "Malloc bt_hidh_scan_result_t failed!");
  144. return;
  145. }
  146. r->transport = ESP_HID_TRANSPORT_BT;
  147. memcpy(r->bda, bda, sizeof(esp_bd_addr_t));
  148. memcpy(&r->bt.cod, cod, sizeof(esp_bt_cod_t));
  149. memcpy(&r->bt.uuid, uuid, sizeof(esp_bt_uuid_t));
  150. r->usage = esp_hid_usage_from_cod((uint32_t)cod);
  151. r->rssi = rssi;
  152. r->name = NULL;
  153. if (name_len && name) {
  154. char *name_s = (char *)malloc(name_len + 1);
  155. if (name_s == NULL) {
  156. free(r);
  157. ESP_LOGE(TAG, "Malloc result name failed!");
  158. return;
  159. }
  160. memcpy(name_s, name, name_len);
  161. name_s[name_len] = 0;
  162. r->name = (const char *)name_s;
  163. }
  164. r->next = bt_scan_results;
  165. bt_scan_results = r;
  166. num_bt_scan_results++;
  167. }
  168. #endif
  169. #if CONFIG_BT_BLE_ENABLED
  170. static void add_ble_scan_result(esp_bd_addr_t bda, esp_ble_addr_type_t addr_type, uint16_t appearance, uint8_t *name, uint8_t name_len, int rssi)
  171. {
  172. if (find_scan_result(bda, ble_scan_results)) {
  173. ESP_LOGW(TAG, "Result already exists!");
  174. return;
  175. }
  176. esp_hid_scan_result_t *r = (esp_hid_scan_result_t *)malloc(sizeof(esp_hid_scan_result_t));
  177. if (r == NULL) {
  178. ESP_LOGE(TAG, "Malloc ble_hidh_scan_result_t failed!");
  179. return;
  180. }
  181. r->transport = ESP_HID_TRANSPORT_BLE;
  182. memcpy(r->bda, bda, sizeof(esp_bd_addr_t));
  183. r->ble.appearance = appearance;
  184. r->ble.addr_type = addr_type;
  185. r->usage = esp_hid_usage_from_appearance(appearance);
  186. r->rssi = rssi;
  187. r->name = NULL;
  188. if (name_len && name) {
  189. char *name_s = (char *)malloc(name_len + 1);
  190. if (name_s == NULL) {
  191. free(r);
  192. ESP_LOGE(TAG, "Malloc result name failed!");
  193. return;
  194. }
  195. memcpy(name_s, name, name_len);
  196. name_s[name_len] = 0;
  197. r->name = (const char *)name_s;
  198. }
  199. r->next = ble_scan_results;
  200. ble_scan_results = r;
  201. num_ble_scan_results++;
  202. }
  203. #endif /* CONFIG_BT_BLE_ENABLED */
  204. void print_uuid(esp_bt_uuid_t *uuid)
  205. {
  206. if (uuid->len == ESP_UUID_LEN_16) {
  207. GAP_DBG_PRINTF("UUID16: 0x%04x", uuid->uuid.uuid16);
  208. } else if (uuid->len == ESP_UUID_LEN_32) {
  209. GAP_DBG_PRINTF("UUID32: 0x%08x", uuid->uuid.uuid32);
  210. } else if (uuid->len == ESP_UUID_LEN_128) {
  211. GAP_DBG_PRINTF("UUID128: %02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x", uuid->uuid.uuid128[0],
  212. uuid->uuid.uuid128[1], uuid->uuid.uuid128[2], uuid->uuid.uuid128[3],
  213. uuid->uuid.uuid128[4], uuid->uuid.uuid128[5], uuid->uuid.uuid128[6],
  214. uuid->uuid.uuid128[7], uuid->uuid.uuid128[8], uuid->uuid.uuid128[9],
  215. uuid->uuid.uuid128[10], uuid->uuid.uuid128[11], uuid->uuid.uuid128[12],
  216. uuid->uuid.uuid128[13], uuid->uuid.uuid128[14], uuid->uuid.uuid128[15]);
  217. }
  218. }
  219. #if CONFIG_BT_HID_HOST_ENABLED
  220. static void handle_bt_device_result(struct disc_res_param *disc_res)
  221. {
  222. GAP_DBG_PRINTF("BT : " ESP_BD_ADDR_STR, ESP_BD_ADDR_HEX(disc_res->bda));
  223. uint32_t codv = 0;
  224. esp_bt_cod_t *cod = (esp_bt_cod_t *)&codv;
  225. int8_t rssi = 0;
  226. uint8_t *name = NULL;
  227. uint8_t name_len = 0;
  228. esp_bt_uuid_t uuid;
  229. uuid.len = ESP_UUID_LEN_16;
  230. uuid.uuid.uuid16 = 0;
  231. for (int i = 0; i < disc_res->num_prop; i++) {
  232. esp_bt_gap_dev_prop_t *prop = &disc_res->prop[i];
  233. if (prop->type != ESP_BT_GAP_DEV_PROP_EIR) {
  234. GAP_DBG_PRINTF(", %s: ", gap_bt_prop_type_names[prop->type]);
  235. }
  236. if (prop->type == ESP_BT_GAP_DEV_PROP_BDNAME) {
  237. name = (uint8_t *)prop->val;
  238. name_len = strlen((const char *)name);
  239. GAP_DBG_PRINTF("%s", (const char *)name);
  240. } else if (prop->type == ESP_BT_GAP_DEV_PROP_RSSI) {
  241. rssi = *((int8_t *)prop->val);
  242. GAP_DBG_PRINTF("%d", rssi);
  243. } else if (prop->type == ESP_BT_GAP_DEV_PROP_COD) {
  244. memcpy(&codv, prop->val, sizeof(uint32_t));
  245. GAP_DBG_PRINTF("major: %s, minor: %d, service: 0x%03x", esp_hid_cod_major_str(cod->major), cod->minor, cod->service);
  246. } else if (prop->type == ESP_BT_GAP_DEV_PROP_EIR) {
  247. uint8_t len = 0;
  248. uint8_t *data = 0;
  249. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_CMPL_16BITS_UUID, &len);
  250. if (data == NULL) {
  251. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_INCMPL_16BITS_UUID, &len);
  252. }
  253. if (data && len == ESP_UUID_LEN_16) {
  254. uuid.len = ESP_UUID_LEN_16;
  255. uuid.uuid.uuid16 = data[0] + (data[1] << 8);
  256. GAP_DBG_PRINTF(", "); print_uuid(&uuid);
  257. continue;
  258. }
  259. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_CMPL_32BITS_UUID, &len);
  260. if (data == NULL) {
  261. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_INCMPL_32BITS_UUID, &len);
  262. }
  263. if (data && len == ESP_UUID_LEN_32) {
  264. uuid.len = len;
  265. memcpy(&uuid.uuid.uuid32, data, sizeof(uint32_t));
  266. GAP_DBG_PRINTF(", "); print_uuid(&uuid);
  267. continue;
  268. }
  269. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_CMPL_128BITS_UUID, &len);
  270. if (data == NULL) {
  271. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_INCMPL_128BITS_UUID, &len);
  272. }
  273. if (data && len == ESP_UUID_LEN_128) {
  274. uuid.len = len;
  275. memcpy(uuid.uuid.uuid128, (uint8_t *)data, len);
  276. GAP_DBG_PRINTF(", "); print_uuid(&uuid);
  277. continue;
  278. }
  279. //try to find a name
  280. if (name == NULL) {
  281. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_CMPL_LOCAL_NAME, &len);
  282. if (data == NULL) {
  283. data = esp_bt_gap_resolve_eir_data((uint8_t *)prop->val, ESP_BT_EIR_TYPE_SHORT_LOCAL_NAME, &len);
  284. }
  285. if (data && len) {
  286. name = data;
  287. name_len = len;
  288. GAP_DBG_PRINTF(", NAME: ");
  289. for (int x = 0; x < len; x++) {
  290. GAP_DBG_PRINTF("%c", (char)data[x]);
  291. }
  292. }
  293. }
  294. }
  295. }
  296. GAP_DBG_PRINTF("\n");
  297. if (cod->major == ESP_BT_COD_MAJOR_DEV_PERIPHERAL || (find_scan_result(disc_res->bda, bt_scan_results) != NULL)) {
  298. add_bt_scan_result(disc_res->bda, cod, &uuid, name, name_len, rssi);
  299. }
  300. }
  301. #endif
  302. #if CONFIG_BT_BLE_ENABLED
  303. static void handle_ble_device_result(struct ble_scan_result_evt_param *scan_rst)
  304. {
  305. uint16_t uuid = 0;
  306. uint16_t appearance = 0;
  307. char name[64] = {0};
  308. uint8_t uuid_len = 0;
  309. uint8_t *uuid_d = esp_ble_resolve_adv_data(scan_rst->ble_adv, ESP_BLE_AD_TYPE_16SRV_CMPL, &uuid_len);
  310. if (uuid_d != NULL && uuid_len) {
  311. uuid = uuid_d[0] + (uuid_d[1] << 8);
  312. }
  313. uint8_t appearance_len = 0;
  314. uint8_t *appearance_d = esp_ble_resolve_adv_data(scan_rst->ble_adv, ESP_BLE_AD_TYPE_APPEARANCE, &appearance_len);
  315. if (appearance_d != NULL && appearance_len) {
  316. appearance = appearance_d[0] + (appearance_d[1] << 8);
  317. }
  318. uint8_t adv_name_len = 0;
  319. uint8_t *adv_name = esp_ble_resolve_adv_data(scan_rst->ble_adv, ESP_BLE_AD_TYPE_NAME_CMPL, &adv_name_len);
  320. if (adv_name == NULL) {
  321. adv_name = esp_ble_resolve_adv_data(scan_rst->ble_adv, ESP_BLE_AD_TYPE_NAME_SHORT, &adv_name_len);
  322. }
  323. if (adv_name != NULL && adv_name_len) {
  324. memcpy(name, adv_name, adv_name_len);
  325. name[adv_name_len] = 0;
  326. }
  327. GAP_DBG_PRINTF("BLE: " ESP_BD_ADDR_STR ", ", ESP_BD_ADDR_HEX(scan_rst->bda));
  328. GAP_DBG_PRINTF("RSSI: %d, ", scan_rst->rssi);
  329. GAP_DBG_PRINTF("UUID: 0x%04x, ", uuid);
  330. GAP_DBG_PRINTF("APPEARANCE: 0x%04x, ", appearance);
  331. GAP_DBG_PRINTF("ADDR_TYPE: '%s'", ble_addr_type_str(scan_rst->ble_addr_type));
  332. if (adv_name_len) {
  333. GAP_DBG_PRINTF(", NAME: '%s'", name);
  334. }
  335. GAP_DBG_PRINTF("\n");
  336. if (uuid == ESP_GATT_UUID_HID_SVC) {
  337. add_ble_scan_result(scan_rst->bda, scan_rst->ble_addr_type, appearance, adv_name, adv_name_len, scan_rst->rssi);
  338. }
  339. }
  340. #endif /* CONFIG_BT_BLE_ENABLED */
  341. #if CONFIG_BT_HID_HOST_ENABLED
  342. /*
  343. * BT GAP
  344. * */
  345. static void bt_gap_event_handler(esp_bt_gap_cb_event_t event, esp_bt_gap_cb_param_t *param)
  346. {
  347. switch (event) {
  348. case ESP_BT_GAP_DISC_STATE_CHANGED_EVT: {
  349. ESP_LOGV(TAG, "BT GAP DISC_STATE %s", (param->disc_st_chg.state == ESP_BT_GAP_DISCOVERY_STARTED) ? "START" : "STOP");
  350. if (param->disc_st_chg.state == ESP_BT_GAP_DISCOVERY_STOPPED) {
  351. SEND_BT_CB();
  352. }
  353. break;
  354. }
  355. case ESP_BT_GAP_DISC_RES_EVT: {
  356. handle_bt_device_result(&param->disc_res);
  357. break;
  358. }
  359. case ESP_BT_GAP_KEY_NOTIF_EVT:
  360. ESP_LOGI(TAG, "BT GAP KEY_NOTIF passkey:%d", param->key_notif.passkey);
  361. break;
  362. case ESP_BT_GAP_MODE_CHG_EVT:
  363. ESP_LOGI(TAG, "BT GAP MODE_CHG_EVT mode:%d", param->mode_chg.mode);
  364. break;
  365. default:
  366. ESP_LOGV(TAG, "BT GAP EVENT %s", bt_gap_evt_str(event));
  367. break;
  368. }
  369. }
  370. static esp_err_t init_bt_gap(void)
  371. {
  372. esp_err_t ret;
  373. esp_bt_sp_param_t param_type = ESP_BT_SP_IOCAP_MODE;
  374. esp_bt_io_cap_t iocap = ESP_BT_IO_CAP_IO;
  375. esp_bt_gap_set_security_param(param_type, &iocap, sizeof(uint8_t));
  376. /*
  377. * Set default parameters for Legacy Pairing
  378. * Use fixed pin code
  379. */
  380. esp_bt_pin_type_t pin_type = ESP_BT_PIN_TYPE_FIXED;
  381. esp_bt_pin_code_t pin_code;
  382. pin_code[0] = '1';
  383. pin_code[1] = '2';
  384. pin_code[2] = '3';
  385. pin_code[3] = '4';
  386. esp_bt_gap_set_pin(pin_type, 4, pin_code);
  387. if ((ret = esp_bt_gap_register_callback(bt_gap_event_handler)) != ESP_OK) {
  388. ESP_LOGE(TAG, "esp_bt_gap_register_callback failed: %d", ret);
  389. return ret;
  390. }
  391. // Allow BT devices to connect back to us
  392. if ((ret = esp_bt_gap_set_scan_mode(ESP_BT_CONNECTABLE, ESP_BT_NON_DISCOVERABLE)) != ESP_OK) {
  393. ESP_LOGE(TAG, "esp_bt_gap_set_scan_mode failed: %d", ret);
  394. return ret;
  395. }
  396. return ret;
  397. }
  398. static esp_err_t start_bt_scan(uint32_t seconds)
  399. {
  400. esp_err_t ret = ESP_OK;
  401. if ((ret = esp_bt_gap_start_discovery(ESP_BT_INQ_MODE_GENERAL_INQUIRY, (int)(seconds / 1.28), 0)) != ESP_OK) {
  402. ESP_LOGE(TAG, "esp_bt_gap_start_discovery failed: %d", ret);
  403. return ret;
  404. }
  405. return ret;
  406. }
  407. #endif
  408. #if CONFIG_BT_BLE_ENABLED
  409. /*
  410. * BLE GAP
  411. * */
  412. static void ble_gap_event_handler(esp_gap_ble_cb_event_t event, esp_ble_gap_cb_param_t *param)
  413. {
  414. switch (event) {
  415. /*
  416. * SCAN
  417. * */
  418. case ESP_GAP_BLE_SCAN_PARAM_SET_COMPLETE_EVT: {
  419. ESP_LOGV(TAG, "BLE GAP EVENT SCAN_PARAM_SET_COMPLETE");
  420. SEND_BLE_CB();
  421. break;
  422. }
  423. case ESP_GAP_BLE_SCAN_RESULT_EVT: {
  424. esp_ble_gap_cb_param_t *scan_result = (esp_ble_gap_cb_param_t *)param;
  425. switch (scan_result->scan_rst.search_evt) {
  426. case ESP_GAP_SEARCH_INQ_RES_EVT: {
  427. handle_ble_device_result(&scan_result->scan_rst);
  428. break;
  429. }
  430. case ESP_GAP_SEARCH_INQ_CMPL_EVT:
  431. ESP_LOGV(TAG, "BLE GAP EVENT SCAN DONE: %d", scan_result->scan_rst.num_resps);
  432. SEND_BLE_CB();
  433. break;
  434. default:
  435. break;
  436. }
  437. break;
  438. }
  439. case ESP_GAP_BLE_SCAN_STOP_COMPLETE_EVT: {
  440. ESP_LOGV(TAG, "BLE GAP EVENT SCAN CANCELED");
  441. break;
  442. }
  443. /*
  444. * ADVERTISEMENT
  445. * */
  446. case ESP_GAP_BLE_ADV_DATA_SET_COMPLETE_EVT:
  447. ESP_LOGV(TAG, "BLE GAP ADV_DATA_SET_COMPLETE");
  448. break;
  449. case ESP_GAP_BLE_ADV_START_COMPLETE_EVT:
  450. ESP_LOGV(TAG, "BLE GAP ADV_START_COMPLETE");
  451. break;
  452. /*
  453. * AUTHENTICATION
  454. * */
  455. case ESP_GAP_BLE_AUTH_CMPL_EVT:
  456. if (!param->ble_security.auth_cmpl.success) {
  457. ESP_LOGE(TAG, "BLE GAP AUTH ERROR: 0x%x", param->ble_security.auth_cmpl.fail_reason);
  458. } else {
  459. ESP_LOGI(TAG, "BLE GAP AUTH SUCCESS");
  460. }
  461. break;
  462. case ESP_GAP_BLE_KEY_EVT: //shows the ble key info share with peer device to the user.
  463. ESP_LOGI(TAG, "BLE GAP KEY type = %s", esp_ble_key_type_str(param->ble_security.ble_key.key_type));
  464. break;
  465. case ESP_GAP_BLE_PASSKEY_NOTIF_EVT: // ESP_IO_CAP_OUT
  466. // The app will receive this evt when the IO has Output capability and the peer device IO has Input capability.
  467. // Show the passkey number to the user to input it in the peer device.
  468. ESP_LOGI(TAG, "BLE GAP PASSKEY_NOTIF passkey:%d", param->ble_security.key_notif.passkey);
  469. break;
  470. case ESP_GAP_BLE_NC_REQ_EVT: // ESP_IO_CAP_IO
  471. // The app will receive this event when the IO has DisplayYesNO capability and the peer device IO also has DisplayYesNo capability.
  472. // show the passkey number to the user to confirm it with the number displayed by peer device.
  473. ESP_LOGI(TAG, "BLE GAP NC_REQ passkey:%d", param->ble_security.key_notif.passkey);
  474. esp_ble_confirm_reply(param->ble_security.key_notif.bd_addr, true);
  475. break;
  476. case ESP_GAP_BLE_PASSKEY_REQ_EVT: // ESP_IO_CAP_IN
  477. // The app will receive this evt when the IO has Input capability and the peer device IO has Output capability.
  478. // See the passkey number on the peer device and send it back.
  479. ESP_LOGI(TAG, "BLE GAP PASSKEY_REQ");
  480. //esp_ble_passkey_reply(param->ble_security.ble_req.bd_addr, true, 1234);
  481. break;
  482. case ESP_GAP_BLE_SEC_REQ_EVT:
  483. ESP_LOGI(TAG, "BLE GAP SEC_REQ");
  484. // Send the positive(true) security response to the peer device to accept the security request.
  485. // If not accept the security request, should send the security response with negative(false) accept value.
  486. esp_ble_gap_security_rsp(param->ble_security.ble_req.bd_addr, true);
  487. break;
  488. default:
  489. ESP_LOGV(TAG, "BLE GAP EVENT %s", ble_gap_evt_str(event));
  490. break;
  491. }
  492. }
  493. static esp_err_t init_ble_gap(void)
  494. {
  495. esp_err_t ret;
  496. if ((ret = esp_ble_gap_register_callback(ble_gap_event_handler)) != ESP_OK) {
  497. ESP_LOGE(TAG, "esp_ble_gap_register_callback failed: %d", ret);
  498. return ret;
  499. }
  500. return ret;
  501. }
  502. static esp_ble_scan_params_t hid_scan_params = {
  503. .scan_type = BLE_SCAN_TYPE_ACTIVE,
  504. .own_addr_type = BLE_ADDR_TYPE_PUBLIC,
  505. .scan_filter_policy = BLE_SCAN_FILTER_ALLOW_ALL,
  506. .scan_interval = 0x50,
  507. .scan_window = 0x30,
  508. .scan_duplicate = BLE_SCAN_DUPLICATE_ENABLE,
  509. };
  510. static esp_err_t start_ble_scan(uint32_t seconds)
  511. {
  512. esp_err_t ret = ESP_OK;
  513. if ((ret = esp_ble_gap_set_scan_params(&hid_scan_params)) != ESP_OK) {
  514. ESP_LOGE(TAG, "esp_ble_gap_set_scan_params failed: %d", ret);
  515. return ret;
  516. }
  517. WAIT_BLE_CB();
  518. if ((ret = esp_ble_gap_start_scanning(seconds)) != ESP_OK) {
  519. ESP_LOGE(TAG, "esp_ble_gap_start_scanning failed: %d", ret);
  520. return ret;
  521. }
  522. return ret;
  523. }
  524. esp_err_t esp_hid_ble_gap_adv_init(uint16_t appearance, const char *device_name)
  525. {
  526. esp_err_t ret;
  527. const uint8_t hidd_service_uuid128[] = {
  528. 0xfb, 0x34, 0x9b, 0x5f, 0x80, 0x00, 0x00, 0x80, 0x00, 0x10, 0x00, 0x00, 0x12, 0x18, 0x00, 0x00,
  529. };
  530. esp_ble_adv_data_t ble_adv_data = {
  531. .set_scan_rsp = false,
  532. .include_name = true,
  533. .include_txpower = true,
  534. .min_interval = 0x0006, //slave connection min interval, Time = min_interval * 1.25 msec
  535. .max_interval = 0x0010, //slave connection max interval, Time = max_interval * 1.25 msec
  536. .appearance = appearance,
  537. .manufacturer_len = 0,
  538. .p_manufacturer_data = NULL,
  539. .service_data_len = 0,
  540. .p_service_data = NULL,
  541. .service_uuid_len = sizeof(hidd_service_uuid128),
  542. .p_service_uuid = (uint8_t *)hidd_service_uuid128,
  543. .flag = 0x6,
  544. };
  545. esp_ble_auth_req_t auth_req = ESP_LE_AUTH_REQ_SC_MITM_BOND;
  546. //esp_ble_io_cap_t iocap = ESP_IO_CAP_OUT;//you have to enter the key on the host
  547. //esp_ble_io_cap_t iocap = ESP_IO_CAP_IN;//you have to enter the key on the device
  548. esp_ble_io_cap_t iocap = ESP_IO_CAP_IO;//you have to agree that key matches on both
  549. //esp_ble_io_cap_t iocap = ESP_IO_CAP_NONE;//device is not capable of input or output, unsecure
  550. uint8_t init_key = ESP_BLE_ENC_KEY_MASK | ESP_BLE_ID_KEY_MASK;
  551. uint8_t rsp_key = ESP_BLE_ENC_KEY_MASK | ESP_BLE_ID_KEY_MASK;
  552. uint8_t key_size = 16; //the key size should be 7~16 bytes
  553. uint32_t passkey = 1234;//ESP_IO_CAP_OUT
  554. if ((ret = esp_ble_gap_set_security_param(ESP_BLE_SM_AUTHEN_REQ_MODE, &auth_req, 1)) != ESP_OK) {
  555. ESP_LOGE(TAG, "GAP set_security_param AUTHEN_REQ_MODE failed: %d", ret);
  556. return ret;
  557. }
  558. if ((ret = esp_ble_gap_set_security_param(ESP_BLE_SM_IOCAP_MODE, &iocap, 1)) != ESP_OK) {
  559. ESP_LOGE(TAG, "GAP set_security_param IOCAP_MODE failed: %d", ret);
  560. return ret;
  561. }
  562. if ((ret = esp_ble_gap_set_security_param(ESP_BLE_SM_SET_INIT_KEY, &init_key, 1)) != ESP_OK) {
  563. ESP_LOGE(TAG, "GAP set_security_param SET_INIT_KEY failed: %d", ret);
  564. return ret;
  565. }
  566. if ((ret = esp_ble_gap_set_security_param(ESP_BLE_SM_SET_RSP_KEY, &rsp_key, 1)) != ESP_OK) {
  567. ESP_LOGE(TAG, "GAP set_security_param SET_RSP_KEY failed: %d", ret);
  568. return ret;
  569. }
  570. if ((ret = esp_ble_gap_set_security_param(ESP_BLE_SM_MAX_KEY_SIZE, &key_size, 1)) != ESP_OK) {
  571. ESP_LOGE(TAG, "GAP set_security_param MAX_KEY_SIZE failed: %d", ret);
  572. return ret;
  573. }
  574. if ((ret = esp_ble_gap_set_security_param(ESP_BLE_SM_SET_STATIC_PASSKEY, &passkey, sizeof(uint32_t))) != ESP_OK) {
  575. ESP_LOGE(TAG, "GAP set_security_param SET_STATIC_PASSKEY failed: %d", ret);
  576. return ret;
  577. }
  578. if ((ret = esp_ble_gap_set_device_name(device_name)) != ESP_OK) {
  579. ESP_LOGE(TAG, "GAP set_device_name failed: %d", ret);
  580. return ret;
  581. }
  582. if ((ret = esp_ble_gap_config_adv_data(&ble_adv_data)) != ESP_OK) {
  583. ESP_LOGE(TAG, "GAP config_adv_data failed: %d", ret);
  584. return ret;
  585. }
  586. return ret;
  587. }
  588. esp_err_t esp_hid_ble_gap_adv_start(void)
  589. {
  590. static esp_ble_adv_params_t hidd_adv_params = {
  591. .adv_int_min = 0x20,
  592. .adv_int_max = 0x30,
  593. .adv_type = ADV_TYPE_IND,
  594. .own_addr_type = BLE_ADDR_TYPE_PUBLIC,
  595. .channel_map = ADV_CHNL_ALL,
  596. .adv_filter_policy = ADV_FILTER_ALLOW_SCAN_ANY_CON_ANY,
  597. };
  598. return esp_ble_gap_start_advertising(&hidd_adv_params);
  599. }
  600. #endif /* CONFIG_BT_BLE_ENABLED */
  601. /*
  602. * CONTROLLER INIT
  603. * */
  604. static esp_err_t init_low_level(uint8_t mode)
  605. {
  606. esp_err_t ret;
  607. esp_bt_controller_config_t bt_cfg = BT_CONTROLLER_INIT_CONFIG_DEFAULT();
  608. #if CONFIG_IDF_TARGET_ESP32
  609. bt_cfg.mode = mode;
  610. #endif
  611. #if CONFIG_BT_HID_HOST_ENABLED
  612. if (mode & ESP_BT_MODE_CLASSIC_BT) {
  613. bt_cfg.bt_max_acl_conn = 3;
  614. bt_cfg.bt_max_sync_conn = 3;
  615. } else
  616. #endif
  617. {
  618. ret = esp_bt_controller_mem_release(ESP_BT_MODE_CLASSIC_BT);
  619. if (ret) {
  620. ESP_LOGE(TAG, "esp_bt_controller_mem_release failed: %d", ret);
  621. return ret;
  622. }
  623. }
  624. ret = esp_bt_controller_init(&bt_cfg);
  625. if (ret) {
  626. ESP_LOGE(TAG, "esp_bt_controller_init failed: %d", ret);
  627. return ret;
  628. }
  629. ret = esp_bt_controller_enable(mode);
  630. if (ret) {
  631. ESP_LOGE(TAG, "esp_bt_controller_enable failed: %d", ret);
  632. return ret;
  633. }
  634. ret = esp_bluedroid_init();
  635. if (ret) {
  636. ESP_LOGE(TAG, "esp_bluedroid_init failed: %d", ret);
  637. return ret;
  638. }
  639. ret = esp_bluedroid_enable();
  640. if (ret) {
  641. ESP_LOGE(TAG, "esp_bluedroid_enable failed: %d", ret);
  642. return ret;
  643. }
  644. #if CONFIG_BT_HID_HOST_ENABLED
  645. if (mode & ESP_BT_MODE_CLASSIC_BT) {
  646. ret = init_bt_gap();
  647. if (ret) {
  648. return ret;
  649. }
  650. }
  651. #endif
  652. #if CONFIG_BT_BLE_ENABLED
  653. if (mode & ESP_BT_MODE_BLE) {
  654. ret = init_ble_gap();
  655. if (ret) {
  656. return ret;
  657. }
  658. }
  659. #endif /* CONFIG_BT_BLE_ENABLED */
  660. return ret;
  661. }
  662. esp_err_t esp_hid_gap_init(uint8_t mode)
  663. {
  664. esp_err_t ret;
  665. if (!mode || mode > ESP_BT_MODE_BTDM) {
  666. ESP_LOGE(TAG, "Invalid mode given!");
  667. return ESP_FAIL;
  668. }
  669. if (bt_hidh_cb_semaphore != NULL) {
  670. ESP_LOGE(TAG, "Already initialised");
  671. return ESP_FAIL;
  672. }
  673. bt_hidh_cb_semaphore = xSemaphoreCreateBinary();
  674. if (bt_hidh_cb_semaphore == NULL) {
  675. ESP_LOGE(TAG, "xSemaphoreCreateMutex failed!");
  676. return ESP_FAIL;
  677. }
  678. ble_hidh_cb_semaphore = xSemaphoreCreateBinary();
  679. if (ble_hidh_cb_semaphore == NULL) {
  680. ESP_LOGE(TAG, "xSemaphoreCreateMutex failed!");
  681. vSemaphoreDelete(bt_hidh_cb_semaphore);
  682. bt_hidh_cb_semaphore = NULL;
  683. return ESP_FAIL;
  684. }
  685. ret = init_low_level(mode);
  686. if (ret != ESP_OK) {
  687. vSemaphoreDelete(bt_hidh_cb_semaphore);
  688. bt_hidh_cb_semaphore = NULL;
  689. vSemaphoreDelete(ble_hidh_cb_semaphore);
  690. ble_hidh_cb_semaphore = NULL;
  691. return ret;
  692. }
  693. return ESP_OK;
  694. }
  695. esp_err_t esp_hid_scan(uint32_t seconds, size_t *num_results, esp_hid_scan_result_t **results)
  696. {
  697. if (num_bt_scan_results || bt_scan_results || num_ble_scan_results || ble_scan_results) {
  698. ESP_LOGE(TAG, "There are old scan results. Free them first!");
  699. return ESP_FAIL;
  700. }
  701. #if CONFIG_BT_BLE_ENABLED
  702. if (start_ble_scan(seconds) == ESP_OK) {
  703. WAIT_BLE_CB();
  704. } else {
  705. return ESP_FAIL;
  706. }
  707. #endif /* CONFIG_BT_BLE_ENABLED */
  708. #if CONFIG_BT_HID_HOST_ENABLED
  709. if (start_bt_scan(seconds) == ESP_OK) {
  710. WAIT_BT_CB();
  711. } else {
  712. return ESP_FAIL;
  713. }
  714. #endif
  715. *num_results = num_bt_scan_results + num_ble_scan_results;
  716. *results = bt_scan_results;
  717. if (num_bt_scan_results) {
  718. while (bt_scan_results->next != NULL) {
  719. bt_scan_results = bt_scan_results->next;
  720. }
  721. bt_scan_results->next = ble_scan_results;
  722. } else {
  723. *results = ble_scan_results;
  724. }
  725. num_bt_scan_results = 0;
  726. bt_scan_results = NULL;
  727. num_ble_scan_results = 0;
  728. ble_scan_results = NULL;
  729. return ESP_OK;
  730. }