at_socket_bc28.c 27 KB

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  1. /*
  2. * File : at_socket_bc28.c
  3. * This file is part of RT-Thread RTOS
  4. * Copyright (c) 2020, RudyLo <luhuadong@163.com>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License along
  17. * with this program; if not, write to the Free Software Foundation, Inc.,
  18. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  19. *
  20. * Change Logs:
  21. * Date Author Notes
  22. * 2020-02-13 luhuadong first version
  23. * 2020-07-19 luhuadong support alloc socket
  24. */
  25. #include <stdio.h>
  26. #include <string.h>
  27. #include <at_device_bc28.h>
  28. #if !defined(AT_SW_VERSION_NUM) || AT_SW_VERSION_NUM < 0x10301
  29. #error "This AT Client version is older, please check and update latest AT Client!"
  30. #endif
  31. #define LOG_TAG "at.skt.bc28"
  32. #include <at_log.h>
  33. #if defined(AT_DEVICE_USING_BC28) && defined(AT_USING_SOCKET)
  34. #define BC28_MODULE_SEND_MAX_SIZE 1358
  35. #define BC28_MODULE_RECV_MAX_SIZE 1358
  36. /* set real event by current socket and current state */
  37. #define SET_EVENT(socket, event) (((socket + 1) << 16) | (event))
  38. /* AT socket event type */
  39. #define BC28_EVENT_CONN_OK (1L << 0)
  40. #define BC28_EVENT_SEND_OK (1L << 1)
  41. #define BC28_EVENT_RECV_OK (1L << 2)
  42. #define BC28_EVNET_CLOSE_OK (1L << 3)
  43. #define BC28_EVENT_CONN_FAIL (1L << 4)
  44. #define BC28_EVENT_SEND_FAIL (1L << 5)
  45. #define BC28_EVENT_DOMAIN_OK (1L << 6)
  46. #define BC28_EVENT_DOMAIN_FAIL (1L << 7)
  47. static at_evt_cb_t at_evt_cb_set[] = {
  48. [AT_SOCKET_EVT_RECV] = NULL,
  49. [AT_SOCKET_EVT_CLOSED] = NULL,
  50. };
  51. static struct at_socket_ip_info
  52. {
  53. char ip_addr[IP_ADDR_SIZE_MAX];
  54. int port;
  55. } bc28_sock_info[AT_DEVICE_BC28_SOCKETS_NUM];
  56. /**
  57. * convert data from ASCII string to Hex string.
  58. *
  59. * @param str input ASCII string
  60. * @param hex output Hex string
  61. * @param len length of str, or the size you want to convert
  62. *
  63. * @return =0: convert failed, or no data need to convert
  64. * >0: the size of convert success
  65. */
  66. static int string_to_hex(const char *str, char *hex, const rt_size_t len)
  67. {
  68. RT_ASSERT(str && hex);
  69. int str_len = rt_strlen(str);
  70. int pos = 0, i;
  71. if (len < 1 || str_len < len)
  72. {
  73. return 0;
  74. }
  75. for (i = 0; i < len; i++, pos += 2)
  76. {
  77. rt_sprintf(&hex[pos], "%02X", str[i]);
  78. }
  79. return i;
  80. }
  81. /**
  82. * convert data from Hex string to ASCII string.
  83. *
  84. * @param hex input Hex string
  85. * @param str output ASCII string
  86. * @param len length of str, or the size you want to convert
  87. *
  88. * @return =0: convert failed, or no data need to convert
  89. * >0: the size of convert success
  90. */
  91. static int hex_to_string(const char *hex, char *str, const rt_size_t len)
  92. {
  93. RT_ASSERT(hex && str);
  94. int hex_len = rt_strlen(hex);
  95. int pos = 0, left, right, i;
  96. if (len < 1 || hex_len/2 < len)
  97. {
  98. return 0;
  99. }
  100. for (i = 0; i < len*2; i++, pos++)
  101. {
  102. left = hex[i++];
  103. right = hex[i];
  104. left = (left < 58) ? (left - 48) : (left - 55);
  105. right = (right < 58) ? (right - 48) : (right - 55);
  106. str[pos] = (left << 4) | right;
  107. }
  108. return pos;
  109. }
  110. static void at_tcp_ip_errcode_parse(int result)//TCP/IP_QIGETERROR
  111. {
  112. switch(result)
  113. {
  114. case 0 : LOG_D("%d : Operation successful", result); break;
  115. case 550 : LOG_E("%d : Unknown error", result); break;
  116. case 551 : LOG_E("%d : Operation blocked", result); break;
  117. case 552 : LOG_E("%d : Invalid parameters", result); break;
  118. case 553 : LOG_E("%d : Memory not enough", result); break;
  119. case 554 : LOG_E("%d : Create socket failed", result); break;
  120. case 555 : LOG_E("%d : Operation not supported", result); break;
  121. case 556 : LOG_E("%d : Socket bind failed", result); break;
  122. case 557 : LOG_E("%d : Socket listen failed", result); break;
  123. case 558 : LOG_E("%d : Socket write failed", result); break;
  124. case 559 : LOG_E("%d : Socket read failed", result); break;
  125. case 560 : LOG_E("%d : Socket accept failed", result); break;
  126. case 561 : LOG_E("%d : Open PDP context failed", result); break;
  127. case 562 : LOG_E("%d : Close PDP context failed", result); break;
  128. case 563 : LOG_W("%d : Socket identity has been used", result); break;
  129. case 564 : LOG_E("%d : DNS busy", result); break;
  130. case 565 : LOG_E("%d : DNS parse failed", result); break;
  131. case 566 : LOG_E("%d : Socket connect failed", result); break;
  132. // case 567 : LOG_W("%d : Socket has been closed", result); break;
  133. case 567 : break;
  134. case 568 : LOG_E("%d : Operation busy", result); break;
  135. case 569 : LOG_E("%d : Operation timeout", result); break;
  136. case 570 : LOG_E("%d : PDP context broken down", result); break;
  137. case 571 : LOG_E("%d : Cancel send", result); break;
  138. case 572 : LOG_E("%d : Operation not allowed", result); break;
  139. case 573 : LOG_E("%d : APN not configured", result); break;
  140. case 574 : LOG_E("%d : Port busy", result); break;
  141. default : LOG_E("%d : Unknown err code", result); break;
  142. }
  143. }
  144. static int bc28_socket_event_send(struct at_device *device, uint32_t event)
  145. {
  146. return (int) rt_event_send(device->socket_event, event);
  147. }
  148. static int bc28_socket_event_recv(struct at_device *device, uint32_t event, uint32_t timeout, rt_uint8_t option)
  149. {
  150. int result = RT_EOK;
  151. rt_uint32_t recved;
  152. result = rt_event_recv(device->socket_event, event, option | RT_EVENT_FLAG_CLEAR, timeout, &recved);
  153. if (result != RT_EOK)
  154. {
  155. return -RT_ETIMEOUT;
  156. }
  157. return recved;
  158. }
  159. /**
  160. * close socket by AT commands.
  161. *
  162. * @param current socket
  163. *
  164. * @return 0: close socket success
  165. * -1: send AT commands error
  166. * -2: wait socket event timeout
  167. * -5: no memory
  168. */
  169. static int bc28_socket_close(struct at_socket *socket)
  170. {
  171. int result = RT_EOK;
  172. at_response_t resp = RT_NULL;
  173. int device_socket = (int) socket->user_data;
  174. struct at_device *device = (struct at_device *) socket->device;
  175. resp = at_create_resp(64, 0, rt_tick_from_millisecond(3000));
  176. if (resp == RT_NULL)
  177. {
  178. LOG_E("no memory for resp create.");
  179. return -RT_ENOMEM;
  180. }
  181. result = at_obj_exec_cmd(device->client, resp, "AT+NSOCL=%d", device_socket);
  182. if (result < 0)
  183. {
  184. LOG_E("%s device close socket(%d) failed [%d].", device->name, device_socket, result);
  185. }
  186. else
  187. {
  188. LOG_D("%s device close socket(%d).", device->name, device_socket);
  189. }
  190. at_delete_resp(resp);
  191. return result;
  192. }
  193. /**
  194. * create socket by AT commands.
  195. *
  196. * @param type connect socket type(tcp, udp)
  197. *
  198. * @return >=0: create socket success, return the socket id (0-6)
  199. * -1: send or exec AT commands error
  200. * -5: no memory
  201. */
  202. static int bc28_socket_create(struct at_device *device, enum at_socket_type type)
  203. {
  204. const char *type_str = RT_NULL;
  205. uint32_t protocol = 0;
  206. uint32_t port = 0; /* range: 0-65535, if 0 means get a random port */
  207. at_response_t resp = RT_NULL;
  208. int socket = -1, result = 0;
  209. switch(type)
  210. {
  211. case AT_SOCKET_TCP:
  212. type_str = "STREAM";
  213. protocol = 6;
  214. break;
  215. case AT_SOCKET_UDP:
  216. type_str = "DGRAM";
  217. protocol = 17;
  218. break;
  219. default:
  220. return -RT_ERROR;
  221. }
  222. resp = at_create_resp(128, 0, rt_tick_from_millisecond(300));
  223. if (resp == RT_NULL)
  224. {
  225. LOG_E("no memory for resp create.");
  226. return -RT_ENOMEM;
  227. }
  228. /* create socket */
  229. if (at_obj_exec_cmd(device->client, resp, "AT+NSOCR=%s,%d,%d,1", type_str, protocol, port) < 0)
  230. {
  231. result = -RT_ERROR;
  232. goto __exit;
  233. }
  234. /* check socket */
  235. if (at_resp_parse_line_args(resp, 2, "%d", &socket) <= 0)
  236. {
  237. LOG_E("%s device create %s socket failed.", device->name, type_str);
  238. result = -RT_ERROR;
  239. goto __exit;
  240. }
  241. else
  242. {
  243. LOG_D("%s device create a %s socket(%d).", device->name, type_str, socket);
  244. result = socket;
  245. }
  246. __exit:
  247. if (resp)
  248. {
  249. at_delete_resp(resp);
  250. }
  251. return result;
  252. }
  253. /**
  254. * create TCP/UDP client or server connect by AT commands.
  255. *
  256. * @param socket current socket
  257. * @param ip server or client IP address
  258. * @param port server or client port
  259. * @param type connect socket type(tcp, udp)
  260. * @param is_client connection is client
  261. *
  262. * @return 0: connect success
  263. * -1: connect failed, send commands error or type error
  264. * -2: wait socket event timeout
  265. * -5: no memory
  266. */
  267. static int bc28_socket_connect(struct at_socket *socket, char *ip, int32_t port,
  268. enum at_socket_type type, rt_bool_t is_client)
  269. {
  270. #define CONN_RETRY 3
  271. int i = 0;
  272. uint32_t event = 0;
  273. at_response_t resp = RT_NULL;
  274. int result = 0, event_result = 0;
  275. int device_socket = (int) socket->user_data;
  276. int return_socket = -1;
  277. struct at_device *device = (struct at_device *) socket->device;
  278. RT_ASSERT(ip);
  279. RT_ASSERT(port >= 0);
  280. if (!is_client)
  281. {
  282. return -RT_ERROR;
  283. }
  284. resp = at_create_resp(128, 0, rt_tick_from_millisecond(300));
  285. if (resp == RT_NULL)
  286. {
  287. LOG_E("no memory for resp create.");
  288. return -RT_ENOMEM;
  289. }
  290. /* if the protocol is not tcp, no need connect to server */
  291. if (type != AT_SOCKET_TCP)
  292. {
  293. if (type == AT_SOCKET_UDP)
  294. {
  295. rt_strncpy(bc28_sock_info[device_socket].ip_addr, ip, IP_ADDR_SIZE_MAX);
  296. bc28_sock_info[device_socket].port = port;
  297. }
  298. return RT_EOK;
  299. }
  300. for(i=0; i<CONN_RETRY; i++)
  301. {
  302. /* clear socket connect event */
  303. event = SET_EVENT(device_socket, BC28_EVENT_CONN_OK | BC28_EVENT_CONN_FAIL);
  304. bc28_socket_event_recv(device, event, 0, RT_EVENT_FLAG_OR);
  305. if (at_obj_exec_cmd(device->client, resp, "AT+NSOCO=%d,%s,%d", device_socket, ip, port) < 0)
  306. {
  307. result = -RT_ERROR;
  308. continue;
  309. }
  310. LOG_D("%s device socket(%d) try connect to %s:%d.", device->name, device_socket, ip, port);
  311. if(!at_resp_get_line_by_kw(resp, "OK"))
  312. {
  313. result = -RT_ERROR;
  314. continue;
  315. }
  316. /* waiting result event from AT URC, the device default connection timeout is 30 seconds*/
  317. if (bc28_socket_event_recv(device, SET_EVENT(device_socket, 0),
  318. 30 * RT_TICK_PER_SECOND, RT_EVENT_FLAG_OR) < 0)
  319. {
  320. LOG_D("%s device socket(%d) wait connect result timeout.", device->name, device_socket);
  321. /* No news is good news */
  322. result = RT_EOK;
  323. break;
  324. }
  325. /* waiting OK or failed result */
  326. event_result = bc28_socket_event_recv(device, BC28_EVENT_CONN_OK | BC28_EVENT_CONN_FAIL,
  327. 1 * RT_TICK_PER_SECOND, RT_EVENT_FLAG_OR);
  328. if (event_result & BC28_EVENT_CONN_FAIL)
  329. {
  330. LOG_E("%s device socket(%d) connect failed.", device->name, device_socket);
  331. result = -RT_ERROR;
  332. continue;
  333. }
  334. else
  335. {
  336. result = RT_EOK;
  337. break;
  338. }
  339. }
  340. __exit:
  341. if (resp)
  342. {
  343. at_delete_resp(resp);
  344. }
  345. return result;
  346. }
  347. /**
  348. * send data to server or client by AT commands.
  349. *
  350. * @param socket current socket
  351. * @param buff send buffer
  352. * @param bfsz send buffer size
  353. * @param type connect socket type(tcp, udp)
  354. *
  355. * @return >=0: the size of send success
  356. * -1: send AT commands error or send data error
  357. * -2: waited socket event timeout
  358. * -5: no memory
  359. */
  360. static int bc28_socket_send(struct at_socket *socket, const char *buff,
  361. size_t bfsz, enum at_socket_type type)
  362. {
  363. uint32_t event = 0;
  364. int result = 0, event_result = 0;
  365. size_t cur_pkt_size = 0, sent_size = 0;
  366. at_response_t resp = RT_NULL;
  367. int device_socket = (int) socket->user_data;
  368. struct at_device *device = (struct at_device *) socket->device;
  369. struct at_device_bc28 *bc28 = (struct at_device_bc28 *) device->user_data;
  370. rt_mutex_t lock = device->client->lock;
  371. RT_ASSERT(buff);
  372. resp = at_create_resp(128, 0, rt_tick_from_millisecond(300));
  373. if (resp == RT_NULL)
  374. {
  375. LOG_E("no memory for resp create.");
  376. return -RT_ENOMEM;
  377. }
  378. rt_mutex_take(lock, RT_WAITING_FOREVER);
  379. /* clear socket send event */
  380. event = SET_EVENT(device_socket, BC28_EVENT_SEND_OK | BC28_EVENT_SEND_FAIL);
  381. bc28_socket_event_recv(device, event, 0, RT_EVENT_FLAG_OR);
  382. /* only use for UDP socket */
  383. const char *ip = bc28_sock_info[device_socket].ip_addr;
  384. const int port = bc28_sock_info[device_socket].port;
  385. while (sent_size < bfsz)
  386. {
  387. if (bfsz - sent_size < BC28_MODULE_SEND_MAX_SIZE)
  388. {
  389. cur_pkt_size = bfsz - sent_size;
  390. }
  391. else
  392. {
  393. cur_pkt_size = BC28_MODULE_SEND_MAX_SIZE;
  394. }
  395. size_t i = 0, ind = 0;
  396. char hex_data[cur_pkt_size * 2 + 1];
  397. rt_memset(hex_data, 0, sizeof(hex_data));
  398. for (i=0, ind=0; i<cur_pkt_size; i++, ind+=2)
  399. {
  400. sprintf(&hex_data[ind], "%02X", buff[sent_size + i]);
  401. }
  402. switch (type)
  403. {
  404. case AT_SOCKET_TCP:
  405. /* AT+NSOSD=<socket>,<length>,<data>[,<flag>[,<sequence>]] */
  406. if (at_obj_exec_cmd(device->client, resp, "AT+NSOSD=%d,%d,%s,0x100,1", device_socket,
  407. (int)cur_pkt_size, hex_data) < 0)
  408. {
  409. result = -RT_ERROR;
  410. goto __exit;
  411. }
  412. LOG_D("%s device tcp socket(%d) send %d bytes.\n>> %s", device->name, device_socket, (int)cur_pkt_size, hex_data);
  413. break;
  414. case AT_SOCKET_UDP:
  415. /* AT+NSOST=<socket>,<remote_addr>,<remote_port>,<length>,<data>[,<sequence>] */
  416. if (at_obj_exec_cmd(device->client, resp, "AT+NSOST=%d,%s,%d,%d,%s,1", device_socket,
  417. ip, port, (int)cur_pkt_size, hex_data) < 0)
  418. {
  419. result = -RT_ERROR;
  420. goto __exit;
  421. }
  422. LOG_D("%s device udp socket(%d) send %d bytes to %s:%d.\n>> %s", device->name, device_socket, ip, port, (int)cur_pkt_size, hex_data);
  423. break;
  424. default:
  425. LOG_E("not supported send type %d.", type);
  426. result = -RT_ERROR;
  427. goto __exit;
  428. }
  429. /* check if sent ok */
  430. if (!at_resp_get_line_by_kw(resp, "OK"))
  431. {
  432. LOG_E("%s device socket(%d) send data failed.", device->name, device_socket);
  433. result = -RT_ERROR;
  434. goto __exit;
  435. }
  436. int return_socket = -1, return_size = -1;
  437. if (at_resp_parse_line_args(resp, 2, "%d,%d", &return_socket, &return_size) <= 0)
  438. {
  439. LOG_E("%s device socket(%d) send data failed.", device->name, device_socket);
  440. result = -RT_ERROR;
  441. goto __exit;
  442. }
  443. if (return_socket != device_socket || return_size != cur_pkt_size)
  444. {
  445. LOG_E("%s device socket(%d) send data incompletely.", device->name, device_socket);
  446. result = -RT_ERROR;
  447. goto __exit;
  448. }
  449. /* waiting result event from AT URC, the device default timeout is 60 seconds*/
  450. if (bc28_socket_event_recv(device, SET_EVENT(device_socket, 0),
  451. 60 * RT_TICK_PER_SECOND, RT_EVENT_FLAG_OR) < 0)
  452. {
  453. LOG_E("%s device socket(%d) wait send result timeout.", device->name, device_socket);
  454. result = -RT_ETIMEOUT;
  455. goto __exit;
  456. }
  457. /* waiting OK or failed result */
  458. event_result = bc28_socket_event_recv(device, BC28_EVENT_SEND_OK | BC28_EVENT_SEND_FAIL,
  459. 1 * RT_TICK_PER_SECOND, RT_EVENT_FLAG_OR);
  460. if (event_result & BC28_EVENT_SEND_FAIL)
  461. {
  462. LOG_E("%s device socket(%d) send failed.", device->name, device_socket);
  463. result = -RT_ERROR;
  464. goto __exit;
  465. }
  466. else
  467. {
  468. LOG_D("%s device socket(%d) send success.", device->name, device_socket);
  469. sent_size += cur_pkt_size;
  470. result = sent_size;
  471. }
  472. }
  473. __exit:
  474. rt_mutex_release(lock);
  475. if (resp)
  476. {
  477. at_delete_resp(resp);
  478. }
  479. return result > 0 ? sent_size : result;
  480. }
  481. /**
  482. * domain resolve by AT commands.
  483. *
  484. * @param name domain name
  485. * @param ip parsed IP address, it's length must be 16
  486. *
  487. * @return 0: domain resolve success
  488. * -1: send AT commands error or response error
  489. * -2: wait socket event timeout
  490. * -5: no memory
  491. */
  492. int bc28_domain_resolve(const char *name, char ip[16])
  493. {
  494. #define RESOLVE_RETRY 1
  495. int i, result, event_result = 0;
  496. at_response_t resp = RT_NULL;
  497. struct at_device *device = RT_NULL;
  498. struct at_device_bc28 *bc28 = RT_NULL;
  499. RT_ASSERT(name);
  500. RT_ASSERT(ip);
  501. device = at_device_get_first_initialized();
  502. if (device == RT_NULL)
  503. {
  504. LOG_E("get first init device failed.");
  505. return -RT_ERROR;
  506. }
  507. /* the maximum response time is 60 seconds, but it set to 10 seconds is convenient to use. */
  508. resp = at_create_resp(128, 0, rt_tick_from_millisecond(300));
  509. if (!resp)
  510. {
  511. LOG_E("no memory for resp create.");
  512. return -RT_ENOMEM;
  513. }
  514. /* clear BC28_EVENT_DOMAIN_OK */
  515. bc28_socket_event_recv(device, BC28_EVENT_DOMAIN_OK, 0, RT_EVENT_FLAG_OR);
  516. bc28 = (struct at_device_bc28 *) device->user_data;
  517. bc28->socket_data = ip;
  518. if (at_obj_exec_cmd(device->client, resp, "AT+QDNS=0,%s", name) < 0)
  519. {
  520. result = -RT_ERROR;
  521. goto __exit;
  522. }
  523. for(i = 0; i < RESOLVE_RETRY; i++)
  524. {
  525. /* waiting result event from AT URC, the device default connection timeout is 30 seconds.*/
  526. event_result = bc28_socket_event_recv(device, BC28_EVENT_DOMAIN_OK | BC28_EVENT_DOMAIN_FAIL,
  527. 30 * RT_TICK_PER_SECOND, RT_EVENT_FLAG_OR);
  528. if (event_result < 0)
  529. {
  530. result = -RT_ETIMEOUT;
  531. continue;
  532. }
  533. else if (event_result & BC28_EVENT_DOMAIN_FAIL)
  534. {
  535. LOG_E("%d device resolve domain name failed.", device->name);
  536. result = -RT_ERROR;
  537. continue;
  538. }
  539. else
  540. {
  541. result = RT_EOK;
  542. break;
  543. }
  544. }
  545. __exit:
  546. bc28->socket_data = RT_NULL;
  547. if (resp)
  548. {
  549. at_delete_resp(resp);
  550. }
  551. return result;
  552. }
  553. /**
  554. * set AT socket event notice callback
  555. *
  556. * @param event notice event
  557. * @param cb notice callback
  558. */
  559. static void bc28_socket_set_event_cb(at_socket_evt_t event, at_evt_cb_t cb)
  560. {
  561. if (event < sizeof(at_evt_cb_set) / sizeof(at_evt_cb_set[1]))
  562. {
  563. at_evt_cb_set[event] = cb;
  564. }
  565. }
  566. static void urc_connect_func(struct at_client *client, const char *data, rt_size_t size)
  567. {
  568. int device_socket = 0, result = 0;
  569. struct at_device *device = RT_NULL;
  570. char *client_name = client->device->parent.name;
  571. RT_ASSERT(data && size);
  572. device = at_device_get_by_name(AT_DEVICE_NAMETYPE_CLIENT, client_name);
  573. if (device == RT_NULL)
  574. {
  575. LOG_E("get device(%s) failed.", client_name);
  576. return;
  577. }
  578. /* only for firmware version base BC28JAR02xxx */
  579. sscanf(data, "+QTCPIND: %d,%d", &device_socket , &result);
  580. if (result == 0)
  581. {
  582. bc28_socket_event_send(device, SET_EVENT(device_socket, BC28_EVENT_CONN_OK));
  583. }
  584. else
  585. {
  586. at_tcp_ip_errcode_parse(result);
  587. bc28_socket_event_send(device, SET_EVENT(device_socket, BC28_EVENT_CONN_FAIL));
  588. }
  589. }
  590. static void urc_send_func(struct at_client *client, const char *data, rt_size_t size)
  591. {
  592. int device_socket = 0, sequence = 0, status = 0;
  593. struct at_device *device = RT_NULL;
  594. struct at_device_bc28 *bc28 = RT_NULL;
  595. char *client_name = client->device->parent.name;
  596. RT_ASSERT(data && size);
  597. device = at_device_get_by_name(AT_DEVICE_NAMETYPE_CLIENT, client_name);
  598. if (device == RT_NULL)
  599. {
  600. LOG_E("get device(%s) failed.", client_name);
  601. return;
  602. }
  603. sscanf(data, "+NSOSTR:%d,%d,%d", &device_socket, &sequence, &status);
  604. if (1 == status)
  605. {
  606. bc28_socket_event_send(device, SET_EVENT(device_socket, BC28_EVENT_SEND_OK));
  607. }
  608. else
  609. {
  610. bc28_socket_event_send(device, SET_EVENT(device_socket, BC28_EVENT_SEND_FAIL));
  611. }
  612. }
  613. static void urc_close_func(struct at_client *client, const char *data, rt_size_t size)
  614. {
  615. int device_socket = 0;
  616. struct at_socket *socket = RT_NULL;
  617. struct at_device *device = RT_NULL;
  618. char *client_name = client->device->parent.name;
  619. RT_ASSERT(data && size);
  620. device = at_device_get_by_name(AT_DEVICE_NAMETYPE_CLIENT, client_name);
  621. if (device == RT_NULL)
  622. {
  623. LOG_E("get device(%s) failed.", client_name);
  624. return;
  625. }
  626. sscanf(data, "+NSOCLI: %d", &device_socket);
  627. bc28_socket_event_send(device, SET_EVENT(device_socket, BC28_EVENT_CONN_FAIL));
  628. if (device_socket >= 0)
  629. {
  630. /* get at socket object by device socket descriptor */
  631. socket = &(device->sockets[device_socket]);
  632. /* notice the socket is disconnect by remote */
  633. if (at_evt_cb_set[AT_SOCKET_EVT_CLOSED])
  634. {
  635. at_evt_cb_set[AT_SOCKET_EVT_CLOSED](socket, AT_SOCKET_EVT_CLOSED, NULL, 0);
  636. }
  637. }
  638. }
  639. static void urc_recv_func(struct at_client *client, const char *data, rt_size_t size)
  640. {
  641. int device_socket = 0;
  642. rt_int32_t timeout;
  643. rt_size_t bfsz = 0, temp_size = 0;
  644. char *recv_buf = RT_NULL, *hex_buf = RT_NULL, temp[8] = {0};
  645. char remote_addr[IP_ADDR_SIZE_MAX] = {0};
  646. int remote_port = -1, return_socket = -1, data_length = 0, remaining_length = 0;
  647. struct at_socket *socket = RT_NULL;
  648. struct at_device *device = RT_NULL;
  649. char *client_name = client->device->parent.name;
  650. RT_ASSERT(data && size);
  651. device = at_device_get_by_name(AT_DEVICE_NAMETYPE_CLIENT, client_name);
  652. if (device == RT_NULL)
  653. {
  654. LOG_E("get device(%s) failed.", client_name);
  655. return;
  656. }
  657. hex_buf = (char *) rt_calloc(1, BC28_MODULE_RECV_MAX_SIZE * 2 + 1);
  658. /* get the current socket and receive buffer size by receive data */
  659. /* mode 2 => +NSONMI:<socket>,<remote_addr>, <remote_port>,<length>,<data> */
  660. sscanf(data, "+NSONMI:%d,%[0-9.],%d,%d,%s", &device_socket, remote_addr, &remote_port, (int *) &bfsz, hex_buf);
  661. LOG_D("%s device socket(%d) recv %d bytes from %s:%d\n>> %s", device_socket, bfsz, remote_addr, remote_port, hex_buf);
  662. /* set receive timeout by receive buffer length, not less than 10 ms */
  663. timeout = bfsz > 10 ? bfsz : 10;
  664. if (device_socket < 0 || bfsz == 0)
  665. {
  666. return;
  667. }
  668. recv_buf = (char *) rt_calloc(1, bfsz + 1);
  669. if (recv_buf == RT_NULL || hex_buf == RT_NULL)
  670. {
  671. LOG_E("no memory for URC receive buffer(%d).", bfsz);
  672. /* read and clean the coming data */
  673. while (temp_size < bfsz)
  674. {
  675. if (bfsz - temp_size > sizeof(temp))
  676. {
  677. at_client_obj_recv(client, temp, sizeof(temp), timeout);
  678. }
  679. else
  680. {
  681. at_client_obj_recv(client, temp, bfsz - temp_size, timeout);
  682. }
  683. temp_size += sizeof(temp);
  684. }
  685. if (recv_buf) rt_free(recv_buf);
  686. if (hex_buf) rt_free(hex_buf);
  687. return;
  688. }
  689. /* convert receive data */
  690. hex_to_string(hex_buf, recv_buf, bfsz);
  691. rt_free(hex_buf);
  692. /* get at socket object by device socket descriptor */
  693. socket = &(device->sockets[device_socket]);
  694. /* notice the receive buffer and buffer size */
  695. if (at_evt_cb_set[AT_SOCKET_EVT_RECV])
  696. {
  697. at_evt_cb_set[AT_SOCKET_EVT_RECV](socket, AT_SOCKET_EVT_RECV, recv_buf, bfsz);
  698. }
  699. }
  700. static void urc_dns_func(struct at_client *client, const char *data, rt_size_t size)
  701. {
  702. int i = 0, j = 0;
  703. char recv_ip[16] = {0};
  704. int result, ip_count, dns_ttl;
  705. struct at_device *device = RT_NULL;
  706. struct at_device_bc28 *bc28 = RT_NULL;
  707. char *client_name = client->device->parent.name;
  708. RT_ASSERT(data && size);
  709. device = at_device_get_by_name(AT_DEVICE_NAMETYPE_CLIENT, client_name);
  710. if (device == RT_NULL)
  711. {
  712. LOG_E("get device(%s) failed.", client_name);
  713. return;
  714. }
  715. bc28 = (struct at_device_bc28 *) device->user_data;
  716. if (bc28->socket_data == RT_NULL)
  717. {
  718. LOG_D("%s device socket_data no config.", bc28->device_name);
  719. return;
  720. }
  721. sscanf(data, "+QDNS:%s", recv_ip);
  722. recv_ip[15] = '\0';
  723. if (rt_strstr(recv_ip, "FAIL"))
  724. {
  725. bc28_socket_event_send(device, BC28_EVENT_DOMAIN_FAIL);
  726. }
  727. else
  728. {
  729. rt_memcpy(bc28->socket_data, recv_ip, sizeof(recv_ip));
  730. bc28_socket_event_send(device, BC28_EVENT_DOMAIN_OK);
  731. }
  732. }
  733. static void urc_func(struct at_client *client, const char *data, rt_size_t size)
  734. {
  735. RT_ASSERT(data);
  736. LOG_I("URC data : %.*s", size, data);
  737. }
  738. /* +NSOSTR:<socket>,<sequence>,<status> */
  739. static const struct at_urc urc_table[] =
  740. {
  741. {"+QDNS:", "\r\n", urc_dns_func},
  742. {"+QTCPIND:", "\r\n", urc_connect_func},
  743. {"+NSOSTR:", "\r\n", urc_send_func},
  744. {"+NSONMI:", "\r\n", urc_recv_func},
  745. {"+NSOCLI:", "\r\n", urc_close_func},
  746. };
  747. static const struct at_socket_ops bc28_socket_ops =
  748. {
  749. bc28_socket_connect,
  750. bc28_socket_close,
  751. bc28_socket_send,
  752. bc28_domain_resolve,
  753. bc28_socket_set_event_cb,
  754. #if defined(AT_SW_VERSION_NUM) && AT_SW_VERSION_NUM > 0x10300
  755. bc28_socket_create,
  756. #endif
  757. };
  758. int bc28_socket_init(struct at_device *device)
  759. {
  760. RT_ASSERT(device);
  761. /* register URC data execution function */
  762. at_obj_set_urc_table(device->client, urc_table, sizeof(urc_table) / sizeof(urc_table[0]));
  763. return RT_EOK;
  764. }
  765. int bc28_socket_class_register(struct at_device_class *class)
  766. {
  767. RT_ASSERT(class);
  768. class->socket_num = AT_DEVICE_BC28_SOCKETS_NUM;
  769. class->socket_ops = &bc28_socket_ops;
  770. return RT_EOK;
  771. }
  772. #endif /* AT_DEVICE_USING_BC28 && AT_USING_SOCKET */