ymodem.c 19 KB

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  1. /*
  2. * COPYRIGHT (C) 2012, Real-Thread Information Technology Ltd
  3. * All rights reserved
  4. *
  5. * SPDX-License-Identifier: Apache-2.0
  6. *
  7. * Change Logs:
  8. * Date Author Notes
  9. * 2013-04-14 Grissiom initial implementation
  10. * 2019-12-09 Steven Liu add YMODEM send protocol
  11. */
  12. #include <rthw.h>
  13. #include "ymodem.h"
  14. #ifdef YMODEM_USING_CRC_TABLE
  15. static const rt_uint16_t ccitt_table[256] =
  16. {
  17. 0x0000, 0x1021, 0x2042, 0x3063, 0x4084, 0x50A5, 0x60C6, 0x70E7,
  18. 0x8108, 0x9129, 0xA14A, 0xB16B, 0xC18C, 0xD1AD, 0xE1CE, 0xF1EF,
  19. 0x1231, 0x0210, 0x3273, 0x2252, 0x52B5, 0x4294, 0x72F7, 0x62D6,
  20. 0x9339, 0x8318, 0xB37B, 0xA35A, 0xD3BD, 0xC39C, 0xF3FF, 0xE3DE,
  21. 0x2462, 0x3443, 0x0420, 0x1401, 0x64E6, 0x74C7, 0x44A4, 0x5485,
  22. 0xA56A, 0xB54B, 0x8528, 0x9509, 0xE5EE, 0xF5CF, 0xC5AC, 0xD58D,
  23. 0x3653, 0x2672, 0x1611, 0x0630, 0x76D7, 0x66F6, 0x5695, 0x46B4,
  24. 0xB75B, 0xA77A, 0x9719, 0x8738, 0xF7DF, 0xE7FE, 0xD79D, 0xC7BC,
  25. 0x48C4, 0x58E5, 0x6886, 0x78A7, 0x0840, 0x1861, 0x2802, 0x3823,
  26. 0xC9CC, 0xD9ED, 0xE98E, 0xF9AF, 0x8948, 0x9969, 0xA90A, 0xB92B,
  27. 0x5AF5, 0x4AD4, 0x7AB7, 0x6A96, 0x1A71, 0x0A50, 0x3A33, 0x2A12,
  28. 0xDBFD, 0xCBDC, 0xFBBF, 0xEB9E, 0x9B79, 0x8B58, 0xBB3B, 0xAB1A,
  29. 0x6CA6, 0x7C87, 0x4CE4, 0x5CC5, 0x2C22, 0x3C03, 0x0C60, 0x1C41,
  30. 0xEDAE, 0xFD8F, 0xCDEC, 0xDDCD, 0xAD2A, 0xBD0B, 0x8D68, 0x9D49,
  31. 0x7E97, 0x6EB6, 0x5ED5, 0x4EF4, 0x3E13, 0x2E32, 0x1E51, 0x0E70,
  32. 0xFF9F, 0xEFBE, 0xDFDD, 0xCFFC, 0xBF1B, 0xAF3A, 0x9F59, 0x8F78,
  33. 0x9188, 0x81A9, 0xB1CA, 0xA1EB, 0xD10C, 0xC12D, 0xF14E, 0xE16F,
  34. 0x1080, 0x00A1, 0x30C2, 0x20E3, 0x5004, 0x4025, 0x7046, 0x6067,
  35. 0x83B9, 0x9398, 0xA3FB, 0xB3DA, 0xC33D, 0xD31C, 0xE37F, 0xF35E,
  36. 0x02B1, 0x1290, 0x22F3, 0x32D2, 0x4235, 0x5214, 0x6277, 0x7256,
  37. 0xB5EA, 0xA5CB, 0x95A8, 0x8589, 0xF56E, 0xE54F, 0xD52C, 0xC50D,
  38. 0x34E2, 0x24C3, 0x14A0, 0x0481, 0x7466, 0x6447, 0x5424, 0x4405,
  39. 0xA7DB, 0xB7FA, 0x8799, 0x97B8, 0xE75F, 0xF77E, 0xC71D, 0xD73C,
  40. 0x26D3, 0x36F2, 0x0691, 0x16B0, 0x6657, 0x7676, 0x4615, 0x5634,
  41. 0xD94C, 0xC96D, 0xF90E, 0xE92F, 0x99C8, 0x89E9, 0xB98A, 0xA9AB,
  42. 0x5844, 0x4865, 0x7806, 0x6827, 0x18C0, 0x08E1, 0x3882, 0x28A3,
  43. 0xCB7D, 0xDB5C, 0xEB3F, 0xFB1E, 0x8BF9, 0x9BD8, 0xABBB, 0xBB9A,
  44. 0x4A75, 0x5A54, 0x6A37, 0x7A16, 0x0AF1, 0x1AD0, 0x2AB3, 0x3A92,
  45. 0xFD2E, 0xED0F, 0xDD6C, 0xCD4D, 0xBDAA, 0xAD8B, 0x9DE8, 0x8DC9,
  46. 0x7C26, 0x6C07, 0x5C64, 0x4C45, 0x3CA2, 0x2C83, 0x1CE0, 0x0CC1,
  47. 0xEF1F, 0xFF3E, 0xCF5D, 0xDF7C, 0xAF9B, 0xBFBA, 0x8FD9, 0x9FF8,
  48. 0x6E17, 0x7E36, 0x4E55, 0x5E74, 0x2E93, 0x3EB2, 0x0ED1, 0x1EF0};
  49. static rt_uint16_t CRC16(unsigned char *q, int len)
  50. {
  51. rt_uint16_t crc = 0;
  52. while (len-- > 0)
  53. crc = (crc << 8) ^ ccitt_table[((crc >> 8) ^ *q++) & 0xff];
  54. return crc;
  55. }
  56. #else
  57. static rt_uint16_t CRC16(unsigned char *q, int len)
  58. {
  59. rt_uint16_t crc;
  60. char i;
  61. crc = 0;
  62. while (--len >= 0)
  63. {
  64. crc = crc ^ (int)*q++ << 8;
  65. i = 8;
  66. do
  67. {
  68. if (crc & 0x8000)
  69. crc = crc << 1 ^ 0x1021;
  70. else
  71. crc = crc << 1;
  72. } while (--i);
  73. }
  74. return (crc);
  75. }
  76. #endif
  77. rt_uint32_t update_timeout = 0;
  78. // we could only use global varible because we could not use
  79. // rt_device_t->user_data(it is used by the serial driver)...
  80. static struct rym_ctx *_rym_the_ctx;
  81. static rt_err_t _rym_rx_ind(rt_device_t dev, rt_size_t size)
  82. {
  83. return rt_sem_release(&_rym_the_ctx->sem);
  84. }
  85. /* SOH/STX + seq + payload + crc */
  86. #define _RYM_SOH_PKG_SZ (1 + 2 + 128 + 2)
  87. #define _RYM_STX_PKG_SZ (1 + 2 + 1024 + 2)
  88. static enum rym_code _rym_read_code(
  89. struct rym_ctx *ctx,
  90. rt_tick_t timeout)
  91. {
  92. /* Fast path */
  93. if (rt_device_read(ctx->dev, 0, ctx->buf, 1) == 1)
  94. return (enum rym_code)(*ctx->buf);
  95. /* Slow path */
  96. do
  97. {
  98. rt_size_t rsz;
  99. /* No data yet, wait for one */
  100. if (rt_sem_take(&ctx->sem, timeout) != RT_EOK)
  101. return RYM_CODE_NONE;
  102. /* Try to read one */
  103. rsz = rt_device_read(ctx->dev, 0, ctx->buf, 1);
  104. if (rsz == 1)
  105. return (enum rym_code)(*ctx->buf);
  106. } while (1);
  107. }
  108. /* the caller should at least alloc _RYM_STX_PKG_SZ buffer */
  109. static rt_size_t _rym_read_data(
  110. struct rym_ctx *ctx,
  111. rt_size_t len)
  112. {
  113. /* we should already have had the code */
  114. rt_uint8_t *buf = ctx->buf + 1;
  115. rt_size_t readlen = 0;
  116. do
  117. {
  118. readlen += rt_device_read(ctx->dev,
  119. 0, buf + readlen, len - readlen);
  120. if (readlen >= len)
  121. return readlen;
  122. } while (rt_sem_take(&ctx->sem, RYM_WAIT_CHR_TICK) == RT_EOK);
  123. return readlen;
  124. }
  125. #include "control.h"
  126. static rt_err_t _rym_send_packet(
  127. struct rym_ctx *ctx,
  128. enum rym_code code,
  129. rt_uint8_t index)
  130. {
  131. rt_uint16_t send_crc;
  132. rt_uint8_t index_inv = ~index;
  133. rt_size_t writelen = 0;
  134. send_crc = CRC16(ctx->buf + 3, _RYM_SOH_PKG_SZ - 5);
  135. ctx->buf[0] = code;
  136. ctx->buf[1] = index;
  137. ctx->buf[2] = index_inv;
  138. ctx->buf[131] = (rt_uint8_t)(send_crc >> 8);
  139. ctx->buf[132] = (rt_uint8_t)send_crc & 0xff;
  140. // 两个串口指针分别是:
  141. // DTU_Write > 20005064 > 0
  142. // rym_recv_on_device > 20005F64 > 0
  143. do
  144. {
  145. rt_pin_mode(RE, PIN_MODE_OUTPUT);
  146. rt_pin_write(RE, 1);
  147. writelen += rt_device_write(ctx->dev, 0, ctx->buf + writelen,
  148. _RYM_SOH_PKG_SZ - writelen);
  149. rt_pin_write(RE, 0);
  150. } while (writelen < _RYM_SOH_PKG_SZ);
  151. return RT_EOK;
  152. }
  153. static rt_size_t _rym_putchar(struct rym_ctx *ctx, rt_uint8_t code)
  154. {
  155. rt_pin_mode(RE, PIN_MODE_OUTPUT);
  156. rt_pin_write(RE, 1);
  157. rt_device_write(ctx->dev, 0, &code, sizeof(code));
  158. rt_pin_write(RE, 0);
  159. return 1;
  160. }
  161. static rt_size_t _rym_getchar(struct rym_ctx *ctx)
  162. {
  163. rt_uint8_t getc_ack;
  164. while (rt_device_read(ctx->dev, 0, &getc_ack, 1) != 1)
  165. {
  166. rt_sem_take(&ctx->sem, RT_WAITING_FOREVER);
  167. }
  168. return getc_ack;
  169. }
  170. static rt_err_t _rym_do_handshake(
  171. struct rym_ctx *ctx,
  172. int tm_sec)
  173. {
  174. enum rym_code code;
  175. rt_size_t i;
  176. rt_uint16_t recv_crc, cal_crc;
  177. rt_size_t data_sz;
  178. rt_tick_t tick;
  179. ctx->stage = RYM_STAGE_ESTABLISHING;
  180. /* send C every second, so the sender could know we are waiting for it. */
  181. for (i = 0; i < tm_sec; i++)
  182. {
  183. _rym_putchar(ctx, RYM_CODE_C);
  184. code = _rym_read_code(ctx,
  185. RYM_CHD_INTV_TICK);
  186. if (code == RYM_CODE_SOH)
  187. {
  188. update_timeout = 0;
  189. data_sz = _RYM_SOH_PKG_SZ;
  190. break;
  191. }
  192. else if (code == RYM_CODE_STX)
  193. {
  194. update_timeout = 0;
  195. data_sz = _RYM_STX_PKG_SZ;
  196. break;
  197. }
  198. // 超时重启
  199. update_timeout++;
  200. if (update_timeout == 30)
  201. {
  202. rt_hw_cpu_reset();
  203. }
  204. }
  205. if (i == tm_sec)
  206. {
  207. return -RYM_ERR_TMO;
  208. }
  209. /* receive all data */
  210. i = 0;
  211. /* automatic exit after receiving specified length data, timeout: 100ms */
  212. tick = rt_tick_get();
  213. while (rt_tick_get() <= (tick + rt_tick_from_millisecond(100)) && i < (data_sz - 1))
  214. {
  215. i += _rym_read_data(ctx, data_sz - 1);
  216. rt_thread_mdelay(5);
  217. }
  218. if (i != (data_sz - 1))
  219. return -RYM_ERR_DSZ;
  220. /* sanity check */
  221. if (ctx->buf[1] != 0 || ctx->buf[2] != 0xFF)
  222. return -RYM_ERR_SEQ;
  223. recv_crc = (rt_uint16_t)(*(ctx->buf + data_sz - 2) << 8) | *(ctx->buf + data_sz - 1);
  224. cal_crc = CRC16(ctx->buf + 3, data_sz - 5);
  225. if (recv_crc != cal_crc)
  226. return -RYM_ERR_CRC;
  227. /* congratulations, check passed. */
  228. if (ctx->on_begin && ctx->on_begin(ctx, ctx->buf + 3, data_sz - 5) != RYM_CODE_ACK)
  229. return -RYM_ERR_CAN;
  230. return RT_EOK;
  231. }
  232. static rt_err_t _rym_do_send_handshake(
  233. struct rym_ctx *ctx,
  234. int tm_sec)
  235. {
  236. enum rym_code code;
  237. rt_size_t i;
  238. rt_size_t data_sz;
  239. rt_uint8_t index = 0;
  240. rt_uint8_t getc_ack;
  241. ctx->stage = RYM_STAGE_ESTABLISHING;
  242. data_sz = _RYM_SOH_PKG_SZ;
  243. /* receive C every second */
  244. for (i = 0; i < tm_sec; i++)
  245. {
  246. code = _rym_read_code(ctx,
  247. RYM_CHD_INTV_TICK);
  248. if (code == RYM_CODE_C)
  249. {
  250. break;
  251. }
  252. }
  253. if (i == tm_sec)
  254. {
  255. return -RYM_ERR_TMO;
  256. }
  257. /* congratulations, check passed. */
  258. if (ctx->on_begin && ctx->on_begin(ctx, ctx->buf + 3, data_sz - 5) != RYM_CODE_SOH)
  259. return -RYM_ERR_CODE;
  260. code = RYM_CODE_SOH;
  261. _rym_send_packet(ctx, code, index);
  262. rt_device_set_rx_indicate(ctx->dev, _rym_rx_ind);
  263. getc_ack = _rym_getchar(ctx);
  264. if (getc_ack != RYM_CODE_ACK)
  265. {
  266. return -RYM_ERR_ACK;
  267. }
  268. getc_ack = _rym_getchar(ctx);
  269. if (getc_ack != RYM_CODE_C)
  270. {
  271. return -RYM_ERR_ACK;
  272. }
  273. ctx->stage = RYM_STAGE_ESTABLISHED;
  274. return RT_EOK;
  275. }
  276. static rt_err_t _rym_trans_data(
  277. struct rym_ctx *ctx,
  278. rt_size_t data_sz,
  279. enum rym_code *code)
  280. {
  281. const rt_size_t tsz = 2 + data_sz + 2;
  282. rt_uint16_t recv_crc;
  283. /* seq + data + crc */
  284. rt_size_t i = _rym_read_data(ctx, tsz);
  285. if (i != tsz)
  286. return -RYM_ERR_DSZ;
  287. if ((ctx->buf[1] + ctx->buf[2]) != 0xFF)
  288. {
  289. return -RYM_ERR_SEQ;
  290. }
  291. /* As we are sending C continuously, there is a chance that the
  292. * sender(remote) receive an C after sending the first handshake package.
  293. * So the sender will interpret it as NAK and re-send the package. So we
  294. * just ignore it and proceed. */
  295. if (ctx->stage == RYM_STAGE_ESTABLISHED && ctx->buf[1] == 0x00)
  296. {
  297. *code = RYM_CODE_NONE;
  298. return RT_EOK;
  299. }
  300. ctx->stage = RYM_STAGE_TRANSMITTING;
  301. /* sanity check */
  302. recv_crc = (rt_uint16_t)(*(ctx->buf + tsz - 1) << 8) | *(ctx->buf + tsz);
  303. if (recv_crc != CRC16(ctx->buf + 3, data_sz))
  304. return -RYM_ERR_CRC;
  305. /* congratulations, check passed. */
  306. if (ctx->on_data)
  307. *code = ctx->on_data(ctx, ctx->buf + 3, data_sz);
  308. else
  309. *code = RYM_CODE_ACK;
  310. return RT_EOK;
  311. }
  312. static rt_err_t _rym_do_trans(struct rym_ctx *ctx)
  313. {
  314. _rym_putchar(ctx, RYM_CODE_ACK);
  315. _rym_putchar(ctx, RYM_CODE_C);
  316. ctx->stage = RYM_STAGE_ESTABLISHED;
  317. while (1)
  318. {
  319. rt_err_t err;
  320. enum rym_code code;
  321. rt_size_t data_sz, i;
  322. code = _rym_read_code(ctx,
  323. RYM_WAIT_PKG_TICK);
  324. switch (code)
  325. {
  326. case RYM_CODE_SOH:
  327. data_sz = 128;
  328. break;
  329. case RYM_CODE_STX:
  330. data_sz = 1024;
  331. break;
  332. case RYM_CODE_EOT:
  333. return RT_EOK;
  334. default:
  335. return -RYM_ERR_CODE;
  336. };
  337. err = _rym_trans_data(ctx, data_sz, &code);
  338. if (err != RT_EOK)
  339. return err;
  340. switch (code)
  341. {
  342. case RYM_CODE_CAN:
  343. /* the spec require multiple CAN */
  344. for (i = 0; i < RYM_END_SESSION_SEND_CAN_NUM; i++)
  345. {
  346. _rym_putchar(ctx, RYM_CODE_CAN);
  347. }
  348. return -RYM_ERR_CAN;
  349. case RYM_CODE_ACK:
  350. _rym_putchar(ctx, RYM_CODE_ACK);
  351. break;
  352. default:
  353. // wrong code
  354. break;
  355. };
  356. }
  357. }
  358. static rt_err_t _rym_do_send_trans(struct rym_ctx *ctx)
  359. {
  360. ctx->stage = RYM_STAGE_TRANSMITTING;
  361. enum rym_code code;
  362. rt_size_t data_sz;
  363. rt_uint32_t index = 1;
  364. rt_uint8_t getc_ack;
  365. data_sz = _RYM_SOH_PKG_SZ;
  366. while (1)
  367. {
  368. if (ctx->on_data && ctx->on_data(ctx, ctx->buf + 3, data_sz - 5) != RYM_CODE_SOH)
  369. return -RYM_ERR_CODE;
  370. code = RYM_CODE_SOH;
  371. _rym_send_packet(ctx, code, index);
  372. index++;
  373. rt_device_set_rx_indicate(ctx->dev, _rym_rx_ind);
  374. getc_ack = _rym_getchar(ctx);
  375. if (getc_ack != RYM_CODE_ACK)
  376. {
  377. return -RYM_ERR_ACK;
  378. }
  379. if (ctx->stage == RYM_STAGE_FINISHING)
  380. break;
  381. }
  382. return RT_EOK;
  383. }
  384. static rt_err_t _rym_do_fin(struct rym_ctx *ctx)
  385. {
  386. enum rym_code code;
  387. rt_uint16_t recv_crc;
  388. rt_size_t i;
  389. rt_size_t data_sz;
  390. ctx->stage = RYM_STAGE_FINISHING;
  391. /* we already got one EOT in the caller. invoke the callback if there is
  392. * one. */
  393. if (ctx->on_end)
  394. ctx->on_end(ctx, ctx->buf + 3, 128);
  395. _rym_putchar(ctx, RYM_CODE_NAK);
  396. code = _rym_read_code(ctx, RYM_WAIT_PKG_TICK);
  397. if (code != RYM_CODE_EOT)
  398. return -RYM_ERR_CODE;
  399. _rym_putchar(ctx, RYM_CODE_ACK);
  400. _rym_putchar(ctx, RYM_CODE_C);
  401. code = _rym_read_code(ctx, RYM_WAIT_PKG_TICK);
  402. if (code == RYM_CODE_SOH)
  403. {
  404. data_sz = _RYM_SOH_PKG_SZ;
  405. }
  406. else if (code == RYM_CODE_STX)
  407. {
  408. data_sz = _RYM_STX_PKG_SZ;
  409. }
  410. else
  411. return -RYM_ERR_CODE;
  412. i = _rym_read_data(ctx, _RYM_SOH_PKG_SZ - 1);
  413. if (i != (_RYM_SOH_PKG_SZ - 1))
  414. return -RYM_ERR_DSZ;
  415. /* sanity check
  416. */
  417. if (ctx->buf[1] != 0 || ctx->buf[2] != 0xFF)
  418. return -RYM_ERR_SEQ;
  419. recv_crc = (rt_uint16_t)(*(ctx->buf + _RYM_SOH_PKG_SZ - 2) << 8) | *(ctx->buf + _RYM_SOH_PKG_SZ - 1);
  420. if (recv_crc != CRC16(ctx->buf + 3, _RYM_SOH_PKG_SZ - 5))
  421. return -RYM_ERR_CRC;
  422. /*next file transmission*/
  423. if (ctx->buf[3] != 0)
  424. {
  425. if (ctx->on_begin && ctx->on_begin(ctx, ctx->buf + 3, data_sz - 5) != RYM_CODE_ACK)
  426. return -RYM_ERR_CAN;
  427. return RT_EOK;
  428. }
  429. /* congratulations, check passed. */
  430. ctx->stage = RYM_STAGE_FINISHED;
  431. /* put the last ACK */
  432. _rym_putchar(ctx, RYM_CODE_ACK);
  433. return RT_EOK;
  434. }
  435. static rt_err_t _rym_do_send_fin(struct rym_ctx *ctx)
  436. {
  437. enum rym_code code;
  438. rt_size_t data_sz;
  439. rt_uint8_t index = 0;
  440. rt_uint8_t getc_ack;
  441. data_sz = _RYM_SOH_PKG_SZ;
  442. rt_device_set_rx_indicate(ctx->dev, _rym_rx_ind);
  443. _rym_putchar(ctx, RYM_CODE_EOT);
  444. getc_ack = _rym_getchar(ctx);
  445. if (getc_ack != RYM_CODE_NAK)
  446. {
  447. return -RYM_ERR_ACK;
  448. }
  449. _rym_putchar(ctx, RYM_CODE_EOT);
  450. getc_ack = _rym_getchar(ctx);
  451. if (getc_ack != RYM_CODE_ACK)
  452. {
  453. return -RYM_ERR_ACK;
  454. }
  455. getc_ack = _rym_getchar(ctx);
  456. if (getc_ack != RYM_CODE_C)
  457. {
  458. return -RYM_ERR_ACK;
  459. }
  460. if (ctx->on_end && ctx->on_end(ctx, ctx->buf + 3, data_sz - 5) != RYM_CODE_SOH)
  461. return -RYM_ERR_CODE;
  462. code = RYM_CODE_SOH;
  463. _rym_send_packet(ctx, code, index);
  464. ctx->stage = RYM_STAGE_FINISHED;
  465. return RT_EOK;
  466. }
  467. static rt_err_t _rym_do_recv(
  468. struct rym_ctx *ctx,
  469. int handshake_timeout)
  470. {
  471. rt_err_t err;
  472. ctx->stage = RYM_STAGE_NONE;
  473. ctx->buf = rt_malloc(_RYM_STX_PKG_SZ);
  474. if (ctx->buf == RT_NULL)
  475. return -RT_ENOMEM;
  476. err = _rym_do_handshake(ctx, handshake_timeout);
  477. if (err != RT_EOK)
  478. {
  479. rt_free(ctx->buf);
  480. return err;
  481. }
  482. while (1)
  483. {
  484. err = _rym_do_trans(ctx);
  485. if (err != RT_EOK)
  486. {
  487. rt_free(ctx->buf);
  488. return err;
  489. }
  490. err = _rym_do_fin(ctx);
  491. if (err != RT_EOK)
  492. {
  493. rt_free(ctx->buf);
  494. return err;
  495. }
  496. if (ctx->stage == RYM_STAGE_FINISHED)
  497. break;
  498. }
  499. rt_free(ctx->buf);
  500. return err;
  501. }
  502. static rt_err_t _rym_do_send(
  503. struct rym_ctx *ctx,
  504. int handshake_timeout)
  505. {
  506. rt_err_t err;
  507. ctx->stage = RYM_STAGE_NONE;
  508. ctx->buf = rt_malloc(_RYM_STX_PKG_SZ);
  509. if (ctx->buf == RT_NULL)
  510. return -RT_ENOMEM;
  511. err = _rym_do_send_handshake(ctx, handshake_timeout);
  512. if (err != RT_EOK)
  513. {
  514. rt_free(ctx->buf);
  515. return err;
  516. }
  517. err = _rym_do_send_trans(ctx);
  518. if (err != RT_EOK)
  519. {
  520. rt_free(ctx->buf);
  521. return err;
  522. }
  523. err = _rym_do_send_fin(ctx);
  524. if (err != RT_EOK)
  525. {
  526. rt_free(ctx->buf);
  527. return err;
  528. }
  529. rt_free(ctx->buf);
  530. return err;
  531. }
  532. rt_err_t rym_recv_on_device(
  533. struct rym_ctx *ctx,
  534. rt_device_t dev,
  535. rt_uint16_t oflag,
  536. rym_callback on_begin,
  537. rym_callback on_data,
  538. rym_callback on_end,
  539. int handshake_timeout)
  540. {
  541. rt_err_t res;
  542. rt_err_t (*odev_rx_ind)(rt_device_t dev, rt_size_t size);
  543. rt_uint16_t odev_flag;
  544. int int_lvl;
  545. RT_ASSERT(_rym_the_ctx == 0);
  546. _rym_the_ctx = ctx;
  547. ctx->on_begin = on_begin;
  548. ctx->on_data = on_data;
  549. ctx->on_end = on_end;
  550. ctx->dev = dev;
  551. // rt_kprintf("rym_recv_on_device > %X > %d\n" , &dev , dev->device_id);
  552. rt_sem_init(&ctx->sem, "rymsem", 0, RT_IPC_FLAG_FIFO);
  553. odev_rx_ind = dev->rx_indicate;
  554. /* no data should be received before the device has been fully setted up.
  555. */
  556. int_lvl = rt_hw_interrupt_disable();
  557. rt_device_set_rx_indicate(dev, _rym_rx_ind);
  558. odev_flag = dev->open_flag;
  559. /* make sure the device don't change the content. */
  560. dev->open_flag &= ~RT_DEVICE_FLAG_STREAM;
  561. rt_hw_interrupt_enable(int_lvl);
  562. res = rt_device_open(dev, oflag);
  563. if (res != RT_EOK)
  564. goto __exit;
  565. res = _rym_do_recv(ctx, handshake_timeout);
  566. rt_device_close(dev);
  567. __exit:
  568. /* no rx_ind should be called before the callback has been fully detached.
  569. */
  570. int_lvl = rt_hw_interrupt_disable();
  571. rt_sem_detach(&ctx->sem);
  572. dev->open_flag = odev_flag;
  573. rt_device_set_rx_indicate(dev, odev_rx_ind);
  574. rt_hw_interrupt_enable(int_lvl);
  575. _rym_the_ctx = RT_NULL;
  576. return res;
  577. }
  578. rt_err_t rym_send_on_device(
  579. struct rym_ctx *ctx,
  580. rt_device_t dev,
  581. rt_uint16_t oflag,
  582. rym_callback on_begin,
  583. rym_callback on_data,
  584. rym_callback on_end,
  585. int handshake_timeout)
  586. {
  587. rt_err_t res = 0;
  588. rt_err_t (*odev_rx_ind)(rt_device_t dev, rt_size_t size);
  589. rt_uint16_t odev_flag;
  590. int int_lvl;
  591. RT_ASSERT(_rym_the_ctx == 0);
  592. _rym_the_ctx = ctx;
  593. ctx->on_begin = on_begin;
  594. ctx->on_data = on_data;
  595. ctx->on_end = on_end;
  596. ctx->dev = dev;
  597. rt_sem_init(&ctx->sem, "rymsem", 0, RT_IPC_FLAG_FIFO);
  598. odev_rx_ind = dev->rx_indicate;
  599. /* no data should be received before the device has been fully setted up.
  600. */
  601. int_lvl = rt_hw_interrupt_disable();
  602. rt_device_set_rx_indicate(dev, _rym_rx_ind);
  603. odev_flag = dev->open_flag;
  604. /* make sure the device don't change the content. */
  605. dev->open_flag &= ~RT_DEVICE_FLAG_STREAM;
  606. rt_hw_interrupt_enable(int_lvl);
  607. res = rt_device_open(dev, oflag);
  608. if (res != RT_EOK)
  609. goto __exit;
  610. res = _rym_do_send(ctx, handshake_timeout);
  611. rt_device_close(dev);
  612. __exit:
  613. int_lvl = rt_hw_interrupt_disable();
  614. rt_sem_detach(&ctx->sem);
  615. dev->open_flag = odev_flag;
  616. rt_device_set_rx_indicate(dev, odev_rx_ind);
  617. rt_hw_interrupt_enable(int_lvl);
  618. _rym_the_ctx = RT_NULL;
  619. return res;
  620. }