ili.c 17 KB

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  1. /*
  2. * Copyright (c) 2006-2022, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2022-02-25 Wayne the first version
  9. */
  10. #include <rtthread.h>
  11. #include <rtdevice.h>
  12. #include <nu_bitutil.h>
  13. #define DBG_TAG "ili_tpc"
  14. #define DBG_LVL DBG_INFO
  15. #include <rtdbg.h>
  16. #include "ili.h"
  17. #define ILI_MAX_TOUCH 5
  18. #define ILI_ADDRESS 0x41
  19. #define BL_V1_8 0x108
  20. #define BL_V1_7 0x107
  21. #define BL_V1_6 0x106
  22. #define ILITEK_TP_CMD_GET_TP_RES 0x20
  23. #define ILITEK_TP_CMD_GET_SCRN_RES 0x21
  24. #define ILITEK_TP_CMD_SET_IC_SLEEP 0x30
  25. #define ILITEK_TP_CMD_SET_IC_WAKE 0x31
  26. #define ILITEK_TP_CMD_GET_FW_VER 0x40
  27. #define ILITEK_TP_CMD_GET_PRL_VER 0x42
  28. #define ILITEK_TP_CMD_GET_MCU_VER 0x61
  29. #define ILITEK_TP_CMD_GET_IC_MODE 0xC0
  30. #define ILITEK_TP_CMD_RESET 0x60
  31. #define REPORT_COUNT_ADDRESS 61
  32. struct ili_protocol_info
  33. {
  34. rt_uint16_t ver;
  35. rt_uint8_t ver_major;
  36. };
  37. struct ili_ts_data
  38. {
  39. struct rt_touch_device touch_device;
  40. struct rt_i2c_client *client;
  41. rt_base_t reset_pin;
  42. rt_base_t irq_pin;
  43. struct ili_protocol_info ptl;
  44. rt_uint8_t product_id[30];
  45. rt_uint16_t mcu_ver;
  46. rt_uint8_t ic_mode;
  47. rt_uint8_t firmware_ver[8];
  48. rt_int32_t screen_max_x;
  49. rt_int32_t screen_max_y;
  50. rt_int32_t screen_min_x;
  51. rt_int32_t screen_min_y;
  52. rt_int32_t max_tp;
  53. };
  54. typedef struct ili_ts_data *ili_ts_data_t;
  55. // Private data
  56. static struct ili_ts_data g_iliTsData;
  57. static rt_err_t ili_i2c_write_and_read(struct rt_i2c_client *psI2cClient,
  58. rt_uint8_t *cmd, int write_len, int delay,
  59. rt_uint8_t *data, int read_len)
  60. {
  61. struct rt_i2c_msg msgs[] =
  62. {
  63. {
  64. .addr = psI2cClient->client_addr,
  65. .flags = RT_I2C_WR,
  66. .len = write_len,
  67. .buf = cmd,
  68. },
  69. {
  70. .addr = psI2cClient->client_addr,
  71. .flags = RT_I2C_RD,
  72. .len = read_len,
  73. .buf = data,
  74. },
  75. };
  76. if (delay == 0 && write_len > 0 && read_len > 0)
  77. {
  78. if (rt_i2c_transfer(psI2cClient->bus, msgs, 2) != 2)
  79. goto exit_ili_i2c_write_and_read;
  80. }
  81. else
  82. {
  83. if (write_len > 0)
  84. {
  85. if (rt_i2c_transfer(psI2cClient->bus, msgs, 1) != 1)
  86. goto exit_ili_i2c_write_and_read;
  87. }
  88. if (delay > 0)
  89. rt_thread_mdelay(delay);
  90. if (read_len > 0)
  91. {
  92. if (rt_i2c_transfer(psI2cClient->bus, msgs + 1, 1) != 1)
  93. goto exit_ili_i2c_write_and_read;
  94. }
  95. }
  96. return RT_EOK;
  97. exit_ili_i2c_write_and_read:
  98. return -RT_ERROR;
  99. }
  100. static int ili_get_ptl_ver(ili_ts_data_t psIliTs,
  101. rt_uint16_t cmd, rt_uint8_t *inbuf, rt_uint8_t *outbuf)
  102. {
  103. rt_int32_t error;
  104. rt_uint8_t buf[64];
  105. buf[0] = cmd;
  106. error = ili_i2c_write_and_read(psIliTs->client, buf, 1, 5, outbuf, 3);
  107. if (error)
  108. return error;
  109. psIliTs->ptl.ver = nu_get16_be(outbuf);
  110. psIliTs->ptl.ver_major = outbuf[0];
  111. return 0;
  112. }
  113. static int ili_get_mcu_ver(ili_ts_data_t psIliTs,
  114. rt_uint16_t cmd, rt_uint8_t *inbuf, rt_uint8_t *outbuf)
  115. {
  116. rt_int32_t error;
  117. rt_uint8_t buf[64];
  118. buf[0] = cmd;
  119. error = ili_i2c_write_and_read(psIliTs->client, buf, 1, 5, outbuf, 32);
  120. if (error)
  121. return error;
  122. psIliTs->mcu_ver = nu_get16_le(outbuf);
  123. rt_memset(psIliTs->product_id, 0, sizeof(psIliTs->product_id));
  124. rt_memcpy(psIliTs->product_id, outbuf + 6, 26);
  125. return 0;
  126. }
  127. static int ili_get_fw_ver(ili_ts_data_t psIliTs,
  128. rt_uint16_t cmd, rt_uint8_t *inbuf, rt_uint8_t *outbuf)
  129. {
  130. rt_int32_t error;
  131. rt_uint8_t buf[64];
  132. buf[0] = cmd;
  133. error = ili_i2c_write_and_read(psIliTs->client, buf, 1, 5, outbuf, 8);
  134. if (error)
  135. return error;
  136. rt_memcpy(psIliTs->firmware_ver, outbuf, 8);
  137. return 0;
  138. }
  139. static int ili_get_scrn_res(ili_ts_data_t psIliTs,
  140. rt_uint16_t cmd, rt_uint8_t *inbuf, rt_uint8_t *outbuf)
  141. {
  142. rt_int32_t error;
  143. rt_uint8_t buf[64];
  144. buf[0] = cmd;
  145. error = ili_i2c_write_and_read(psIliTs->client, buf, 1, 5, outbuf, 8);
  146. if (error)
  147. return error;
  148. psIliTs->screen_min_x = nu_get16_le(outbuf);
  149. psIliTs->screen_min_y = nu_get16_le(outbuf + 2);
  150. psIliTs->screen_max_x = nu_get16_le(outbuf + 4);
  151. psIliTs->screen_max_y = nu_get16_le(outbuf + 6);
  152. return 0;
  153. }
  154. static int ili_get_tp_res(ili_ts_data_t psIliTs,
  155. rt_uint16_t cmd, rt_uint8_t *inbuf, rt_uint8_t *outbuf)
  156. {
  157. rt_int32_t error;
  158. rt_uint8_t buf[64];
  159. buf[0] = cmd;
  160. error = ili_i2c_write_and_read(psIliTs->client, buf, 1, 5, outbuf, 15);
  161. if (error)
  162. return error;
  163. psIliTs->max_tp = outbuf[8];
  164. if (psIliTs->max_tp > ILI_MAX_TOUCH)
  165. {
  166. return -RT_EINVAL;
  167. }
  168. return 0;
  169. }
  170. static int ili_get_ic_mode(ili_ts_data_t psIliTs,
  171. rt_uint16_t cmd, rt_uint8_t *inbuf, rt_uint8_t *outbuf)
  172. {
  173. rt_int32_t error;
  174. rt_uint8_t buf[64];
  175. buf[0] = cmd;
  176. error = ili_i2c_write_and_read(psIliTs->client, buf, 1, 5, outbuf, 2);
  177. if (error)
  178. return error;
  179. psIliTs->ic_mode = outbuf[0];
  180. return 0;
  181. }
  182. static int ili_send_soft_reset(ili_ts_data_t psIliTs,
  183. rt_uint16_t cmd, rt_uint8_t *inbuf, rt_uint8_t *outbuf)
  184. {
  185. rt_int32_t error;
  186. rt_uint8_t buf[64];
  187. buf[0] = cmd;
  188. error = ili_i2c_write_and_read(psIliTs->client, buf, 1, 0, RT_NULL, 0);
  189. if (error)
  190. return error;
  191. return 0;
  192. }
  193. static void ili_tpc_reset(ili_ts_data_t psIliTs, int delay_ms)
  194. {
  195. if (0)
  196. {
  197. //FIXME
  198. /* hw pin init*/
  199. rt_pin_mode(psIliTs->reset_pin, PIN_MODE_OUTPUT);
  200. /* Reset */
  201. rt_pin_write(psIliTs->reset_pin, PIN_HIGH);
  202. rt_thread_mdelay(10);
  203. rt_pin_write(psIliTs->reset_pin, PIN_LOW);
  204. }
  205. else
  206. {
  207. rt_err_t error;
  208. error = ili_send_soft_reset(psIliTs, ILITEK_TP_CMD_RESET, RT_NULL, RT_NULL);
  209. if (error)
  210. return;
  211. }
  212. rt_thread_mdelay(delay_ms);
  213. }
  214. static rt_err_t ili_get_info(ili_ts_data_t psIliTs, struct rt_touch_info *info)
  215. {
  216. rt_uint8_t outbuf[256];
  217. rt_err_t error;
  218. error = ili_get_ptl_ver(psIliTs, ILITEK_TP_CMD_GET_PRL_VER, RT_NULL, outbuf);
  219. if (error)
  220. goto exit_ili_get_info;
  221. error = ili_get_mcu_ver(psIliTs, ILITEK_TP_CMD_GET_MCU_VER, RT_NULL, outbuf);
  222. if (error)
  223. goto exit_ili_get_info;
  224. error = ili_get_fw_ver(psIliTs, ILITEK_TP_CMD_GET_FW_VER, NULL, outbuf);
  225. if (error)
  226. goto exit_ili_get_info;
  227. error = ili_get_scrn_res(psIliTs, ILITEK_TP_CMD_GET_SCRN_RES, NULL, outbuf);
  228. if (error)
  229. goto exit_ili_get_info;
  230. error = ili_get_tp_res(psIliTs, ILITEK_TP_CMD_GET_TP_RES, NULL, outbuf);
  231. if (error)
  232. goto exit_ili_get_info;
  233. error = ili_get_ic_mode(psIliTs, ILITEK_TP_CMD_GET_IC_MODE, NULL, outbuf);
  234. if (error)
  235. goto exit_ili_get_info;
  236. LOG_I("touch device probed");
  237. return RT_EOK;
  238. exit_ili_get_info:
  239. return -RT_ERROR;
  240. }
  241. static void ili_info_dump(ili_ts_data_t psIliTs)
  242. {
  243. rt_kprintf("reset_pin: %d\n", psIliTs->reset_pin);
  244. rt_kprintf("irq_pin: %d\n", psIliTs->irq_pin);
  245. rt_kprintf("ptl.ver: %x \n", psIliTs->ptl.ver_major);
  246. rt_kprintf("mcu_ver: %x\n", psIliTs->mcu_ver);
  247. rt_kprintf("firmware_ver:[%02X%02X.%02X%02X.%02X%02X.%02X%02X]\n",
  248. psIliTs->firmware_ver[0],
  249. psIliTs->firmware_ver[1],
  250. psIliTs->firmware_ver[2],
  251. psIliTs->firmware_ver[3],
  252. psIliTs->firmware_ver[4],
  253. psIliTs->firmware_ver[5],
  254. psIliTs->firmware_ver[6],
  255. psIliTs->firmware_ver[7]);
  256. rt_kprintf("product_id: %s\n", psIliTs->product_id);
  257. rt_kprintf("screen_max_x: %d\n", psIliTs->screen_max_x);
  258. rt_kprintf("screen_max_y: %d\n", psIliTs->screen_max_y);
  259. rt_kprintf("screen_min_x: %d\n", psIliTs->screen_min_x);
  260. rt_kprintf("screen_min_y: %d\n", psIliTs->screen_min_y);
  261. rt_kprintf("max_tp: %d\n", psIliTs->max_tp);
  262. rt_kprintf("ic_mode: %d\n", psIliTs->ic_mode);
  263. }
  264. static rt_int16_t pre_x[ILI_MAX_TOUCH];
  265. static rt_int16_t pre_y[ILI_MAX_TOUCH];
  266. static rt_int16_t pre_w[ILI_MAX_TOUCH];
  267. static rt_uint8_t s_tp_dowm[ILI_MAX_TOUCH];
  268. static void ili_touch_up(void *buf, int8_t id)
  269. {
  270. struct rt_touch_data *read_data = (struct rt_touch_data *)buf;
  271. if (s_tp_dowm[id] == 1)
  272. {
  273. s_tp_dowm[id] = 0;
  274. read_data[id].event = RT_TOUCH_EVENT_UP;
  275. }
  276. else
  277. {
  278. read_data[id].event = RT_TOUCH_EVENT_NONE;
  279. }
  280. read_data[id].timestamp = rt_touch_get_ts();
  281. read_data[id].width = pre_w[id];
  282. read_data[id].x_coordinate = pre_x[id];
  283. read_data[id].y_coordinate = pre_y[id];
  284. read_data[id].track_id = id;
  285. pre_x[id] = -1; /* last point is none */
  286. pre_y[id] = -1;
  287. pre_w[id] = -1;
  288. }
  289. static void ili_touch_down(void *buf, int8_t id, int16_t x, int16_t y, int16_t w)
  290. {
  291. struct rt_touch_data *read_data = (struct rt_touch_data *)buf;
  292. if (s_tp_dowm[id] == 1)
  293. {
  294. read_data[id].event = RT_TOUCH_EVENT_MOVE;
  295. }
  296. else
  297. {
  298. read_data[id].event = RT_TOUCH_EVENT_DOWN;
  299. s_tp_dowm[id] = 1;
  300. }
  301. read_data[id].timestamp = rt_touch_get_ts();
  302. read_data[id].width = w;
  303. read_data[id].x_coordinate = x;
  304. read_data[id].y_coordinate = y;
  305. read_data[id].track_id = id;
  306. pre_x[id] = x; /* save last point */
  307. pre_y[id] = y;
  308. pre_w[id] = w;
  309. }
  310. static int8_t pre_id[ILI_MAX_TOUCH];
  311. static rt_uint8_t pre_touch = 0;
  312. static rt_size_t ili_read_point(struct rt_touch_device *touch, void *buf, rt_size_t read_num)
  313. {
  314. #define DIV_ROUND_UP(n,d) (((n) + (d) - 1) / (d))
  315. struct ili_ts_data *ts = (ili_ts_data_t)touch;
  316. rt_uint8_t tmpbuf[256] = {0};
  317. rt_err_t error = 0;
  318. rt_int32_t packet_len = 5;
  319. rt_int32_t packet_max_point = 10;
  320. rt_int8_t touch_num;
  321. rt_int32_t i, count;
  322. rt_uint16_t x, y;
  323. rt_int32_t tip, point_id;
  324. RT_ASSERT(touch);
  325. RT_ASSERT(buf);
  326. RT_ASSERT(read_num != 0);
  327. RT_ASSERT(read_num <= ILI_MAX_TOUCH);
  328. error = ili_i2c_write_and_read(ts->client, NULL, 0, 0, tmpbuf, 64);
  329. if (error)
  330. {
  331. LOG_E("get touch info failed, err:%d\n", error);
  332. goto exit_ili_read_point;
  333. }
  334. touch_num = tmpbuf[REPORT_COUNT_ADDRESS];
  335. if (touch_num > ts->max_tp)
  336. {
  337. LOG_E("FW report max point:%d > panel info. max:%d\n", touch_num, ts->max_tp);
  338. goto exit_ili_read_point;
  339. }
  340. count = DIV_ROUND_UP(touch_num, packet_max_point);
  341. for (i = 1; i < count; i++)
  342. {
  343. error = ili_i2c_write_and_read(ts->client, NULL, 0, 0, tmpbuf + i * 64, 64);
  344. if (error)
  345. {
  346. LOG_E("get touch info. failed, cnt:%d, err:%d\n", count, error);
  347. goto exit_ili_read_point;
  348. }
  349. }
  350. if (pre_touch > touch_num) /* point up */
  351. {
  352. for (i = 0; i < ILI_MAX_TOUCH; i++)
  353. {
  354. rt_uint8_t j;
  355. for (j = 0; j < touch_num; j++) /* this time touch num */
  356. {
  357. point_id = tmpbuf[j * packet_len + 1] & 0x3F;
  358. if (pre_id[i] == point_id) /* this id is not free */
  359. break;
  360. }
  361. if ((j == touch_num) && (pre_id[i] != -1))
  362. {
  363. ili_touch_up(buf, pre_id[i]);
  364. pre_id[i] = -1;
  365. }
  366. }
  367. }
  368. if (touch_num > 0)
  369. {
  370. uint32_t range_x = touch->info.range_x;
  371. uint32_t range_y = touch->info.range_y;
  372. for (i = 0; i < touch_num; i++)
  373. {
  374. tip = tmpbuf[i * packet_len + 1] & 0x40;
  375. point_id = tmpbuf[i * packet_len + 1] & 0x3F;
  376. pre_id[i] = point_id;
  377. if (!tip)
  378. {
  379. // Up
  380. ili_touch_up(buf, point_id);
  381. continue;
  382. }
  383. x = nu_get16_le(tmpbuf + i * packet_len + 2);
  384. y = nu_get16_le(tmpbuf + i * packet_len + 4);
  385. if (x > ts->screen_max_x || x < ts->screen_min_x ||
  386. y > ts->screen_max_y || y < ts->screen_min_y)
  387. {
  388. LOG_E("invalid position, X[%d,%u,%d], Y[%d,%u,%d]\n",
  389. ts->screen_min_x, x, ts->screen_max_x,
  390. ts->screen_min_y, y, ts->screen_max_y);
  391. continue;
  392. }
  393. x = (uint16_t)(range_x * x / ts->screen_max_x);
  394. y = (uint16_t)(range_y * y / ts->screen_max_y);
  395. ili_touch_down(buf, point_id, x, y, 255);
  396. }
  397. }
  398. pre_touch = touch_num;
  399. return read_num;
  400. exit_ili_read_point:
  401. pre_touch = 0;
  402. return 0;
  403. }
  404. static rt_err_t ili_control(struct rt_touch_device *touch, int cmd, void *arg)
  405. {
  406. switch (cmd)
  407. {
  408. case RT_TOUCH_CTRL_GET_ID:
  409. {
  410. RT_ASSERT(arg);
  411. rt_uint8_t *pu8ID = arg;
  412. rt_memcpy((void *)pu8ID, (void *)&g_iliTsData.product_id[0], 8);
  413. }
  414. break;
  415. case RT_TOUCH_CTRL_GET_INFO:
  416. {
  417. RT_ASSERT(arg);
  418. touch->info.type = RT_TOUCH_TYPE_CAPACITANCE;
  419. touch->info.vendor = RT_TOUCH_VENDOR_UNKNOWN;
  420. touch->info.point_num = g_iliTsData.max_tp;
  421. rt_memcpy(arg, &touch->info, sizeof(struct rt_touch_info));
  422. }
  423. break;
  424. case RT_TOUCH_CTRL_SET_X_RANGE:
  425. {
  426. RT_ASSERT(arg);
  427. uint16_t range_x = *(rt_uint16_t *)arg;
  428. if (range_x > g_iliTsData.screen_max_x || range_x < g_iliTsData.screen_min_x)
  429. {
  430. LOG_E("Set x range failed. %d", range_x);
  431. }
  432. else
  433. {
  434. touch->info.range_x = range_x;
  435. }
  436. }
  437. break;
  438. case RT_TOUCH_CTRL_SET_Y_RANGE:
  439. {
  440. RT_ASSERT(arg);
  441. uint16_t range_y = *(rt_uint16_t *)arg;
  442. if (range_y > g_iliTsData.screen_max_y || range_y < g_iliTsData.screen_min_y)
  443. {
  444. LOG_E("Set y range failed. %d", range_y);
  445. }
  446. else
  447. {
  448. touch->info.range_y = range_y;
  449. }
  450. }
  451. break;
  452. case RT_TOUCH_CTRL_SET_MODE:
  453. {
  454. rt_uint16_t trig_type;
  455. RT_ASSERT(arg);
  456. trig_type = *(rt_uint16_t *)arg;
  457. switch (trig_type)
  458. {
  459. case RT_DEVICE_FLAG_INT_RX:
  460. break;
  461. case RT_DEVICE_FLAG_RDONLY:
  462. break;
  463. default:
  464. break;
  465. }
  466. }
  467. break;
  468. default:
  469. {
  470. }
  471. break;
  472. }
  473. return RT_EOK;
  474. }
  475. static struct rt_touch_ops ili_touch_ops =
  476. {
  477. .touch_readpoint = ili_read_point,
  478. .touch_control = ili_control,
  479. };
  480. int rt_hw_ili_tpc_init(const char *name, struct rt_touch_config *cfg)
  481. {
  482. struct rt_touch_device *touch_device = RT_NULL;
  483. rt_uint32_t bus_speed = 400000;
  484. touch_device = (struct rt_touch_device *)&g_iliTsData.touch_device;
  485. rt_memset((void *)touch_device, 0, sizeof(struct rt_touch_device));
  486. g_iliTsData.client = (struct rt_i2c_client *)rt_malloc(sizeof(struct rt_i2c_client));
  487. if (g_iliTsData.client == RT_NULL)
  488. {
  489. LOG_E("touch device malloc fail");
  490. goto exit_rt_hw_ili_tpc_init;
  491. }
  492. rt_memset((void *)g_iliTsData.client, 0, sizeof(struct rt_i2c_client));
  493. g_iliTsData.reset_pin = *((rt_base_t *)cfg->user_data);
  494. g_iliTsData.irq_pin = cfg->irq_pin.pin;
  495. g_iliTsData.client->client_addr = ILI_ADDRESS;
  496. g_iliTsData.client->bus = (struct rt_i2c_bus_device *)rt_device_find(cfg->dev_name);
  497. if (g_iliTsData.client->bus == RT_NULL)
  498. {
  499. LOG_E("Can't find %s device", cfg->dev_name);
  500. goto exit_rt_hw_ili_tpc_init;
  501. }
  502. if (rt_device_open((rt_device_t)g_iliTsData.client->bus, RT_DEVICE_FLAG_RDWR) != RT_EOK)
  503. {
  504. LOG_E("open %s device failed", cfg->dev_name);
  505. goto exit_rt_hw_ili_tpc_init;
  506. }
  507. rt_memset(&pre_x[0], 0xff, ILI_MAX_TOUCH * sizeof(rt_int16_t));
  508. rt_memset(&pre_y[0], 0xff, ILI_MAX_TOUCH * sizeof(rt_int16_t));
  509. rt_memset(&pre_w[0], 0xff, ILI_MAX_TOUCH * sizeof(rt_int16_t));
  510. rt_memset(&s_tp_dowm[0], 0, ILI_MAX_TOUCH * sizeof(rt_uint8_t));
  511. rt_memset(&pre_id[0], 0xff, ILI_MAX_TOUCH * sizeof(rt_uint8_t));
  512. /* register touch device */
  513. rt_memcpy(&touch_device->config, cfg, sizeof(struct rt_touch_config));
  514. touch_device->ops = &ili_touch_ops;
  515. if (rt_hw_touch_register(touch_device, name, RT_DEVICE_FLAG_INT_RX, RT_NULL) != RT_EOK)
  516. {
  517. LOG_E("register %s device failed", name);
  518. goto exit_rt_hw_ili_tpc_init;
  519. }
  520. ili_tpc_reset(&g_iliTsData, 300);
  521. if (rt_device_control((rt_device_t)g_iliTsData.client->bus, RT_I2C_DEV_CTRL_CLK, &bus_speed) != RT_EOK)
  522. {
  523. LOG_E("control %s device failed", cfg->dev_name);
  524. goto exit_rt_hw_ili_tpc_init;
  525. }
  526. /* Probe */
  527. if (ili_get_info(&g_iliTsData, &touch_device->info) != RT_EOK)
  528. {
  529. LOG_E("Get info failed");
  530. return -RT_ERROR;
  531. }
  532. ili_info_dump(&g_iliTsData);
  533. return 0;
  534. exit_rt_hw_ili_tpc_init:
  535. if (g_iliTsData.client)
  536. rt_free(g_iliTsData.client);
  537. return -RT_ERROR;
  538. }