silead.c 14 KB

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  1. /* -------------------------------------------------------------------------
  2. * Copyright (C) 2014-2015, Intel Corporation
  3. *
  4. * Derived from:
  5. * gslX68X.c
  6. * Copyright (C) 2010-2015, Shanghai Sileadinc Co.Ltd
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. * -------------------------------------------------------------------------
  18. */
  19. #include <linux/i2c.h>
  20. #include <linux/module.h>
  21. #include <linux/acpi.h>
  22. #include <linux/interrupt.h>
  23. #include <linux/gpio/consumer.h>
  24. #include <linux/delay.h>
  25. #include <linux/firmware.h>
  26. #include <linux/input.h>
  27. #include <linux/input/mt.h>
  28. #include <linux/input/touchscreen.h>
  29. #include <linux/pm.h>
  30. #include <linux/irq.h>
  31. #include <linux/regulator/consumer.h>
  32. #include <asm/unaligned.h>
  33. #define SILEAD_TS_NAME "silead_ts"
  34. #define SILEAD_REG_RESET 0xE0
  35. #define SILEAD_REG_DATA 0x80
  36. #define SILEAD_REG_TOUCH_NR 0x80
  37. #define SILEAD_REG_POWER 0xBC
  38. #define SILEAD_REG_CLOCK 0xE4
  39. #define SILEAD_REG_STATUS 0xB0
  40. #define SILEAD_REG_ID 0xFC
  41. #define SILEAD_REG_MEM_CHECK 0xB0
  42. #define SILEAD_STATUS_OK 0x5A5A5A5A
  43. #define SILEAD_TS_DATA_LEN 44
  44. #define SILEAD_CLOCK 0x04
  45. #define SILEAD_CMD_RESET 0x88
  46. #define SILEAD_CMD_START 0x00
  47. #define SILEAD_POINT_DATA_LEN 0x04
  48. #define SILEAD_POINT_Y_OFF 0x00
  49. #define SILEAD_POINT_Y_MSB_OFF 0x01
  50. #define SILEAD_POINT_X_OFF 0x02
  51. #define SILEAD_POINT_X_MSB_OFF 0x03
  52. #define SILEAD_TOUCH_ID_MASK 0xF0
  53. #define SILEAD_CMD_SLEEP_MIN 10000
  54. #define SILEAD_CMD_SLEEP_MAX 20000
  55. #define SILEAD_POWER_SLEEP 20
  56. #define SILEAD_STARTUP_SLEEP 30
  57. #define SILEAD_MAX_FINGERS 10
  58. enum silead_ts_power {
  59. SILEAD_POWER_ON = 1,
  60. SILEAD_POWER_OFF = 0
  61. };
  62. struct silead_ts_data {
  63. struct i2c_client *client;
  64. struct gpio_desc *gpio_power;
  65. struct input_dev *input;
  66. struct regulator_bulk_data regulators[2];
  67. char fw_name[64];
  68. struct touchscreen_properties prop;
  69. u32 max_fingers;
  70. u32 chip_id;
  71. struct input_mt_pos pos[SILEAD_MAX_FINGERS];
  72. int slots[SILEAD_MAX_FINGERS];
  73. int id[SILEAD_MAX_FINGERS];
  74. };
  75. struct silead_fw_data {
  76. u32 offset;
  77. u32 val;
  78. };
  79. static int silead_ts_request_input_dev(struct silead_ts_data *data)
  80. {
  81. struct device *dev = &data->client->dev;
  82. int error;
  83. data->input = devm_input_allocate_device(dev);
  84. if (!data->input) {
  85. dev_err(dev,
  86. "Failed to allocate input device\n");
  87. return -ENOMEM;
  88. }
  89. input_set_abs_params(data->input, ABS_MT_POSITION_X, 0, 4095, 0, 0);
  90. input_set_abs_params(data->input, ABS_MT_POSITION_Y, 0, 4095, 0, 0);
  91. touchscreen_parse_properties(data->input, true, &data->prop);
  92. input_mt_init_slots(data->input, data->max_fingers,
  93. INPUT_MT_DIRECT | INPUT_MT_DROP_UNUSED |
  94. INPUT_MT_TRACK);
  95. data->input->name = SILEAD_TS_NAME;
  96. data->input->phys = "input/ts";
  97. data->input->id.bustype = BUS_I2C;
  98. error = input_register_device(data->input);
  99. if (error) {
  100. dev_err(dev, "Failed to register input device: %d\n", error);
  101. return error;
  102. }
  103. return 0;
  104. }
  105. static void silead_ts_set_power(struct i2c_client *client,
  106. enum silead_ts_power state)
  107. {
  108. struct silead_ts_data *data = i2c_get_clientdata(client);
  109. if (data->gpio_power) {
  110. gpiod_set_value_cansleep(data->gpio_power, state);
  111. msleep(SILEAD_POWER_SLEEP);
  112. }
  113. }
  114. static void silead_ts_read_data(struct i2c_client *client)
  115. {
  116. struct silead_ts_data *data = i2c_get_clientdata(client);
  117. struct input_dev *input = data->input;
  118. struct device *dev = &client->dev;
  119. u8 *bufp, buf[SILEAD_TS_DATA_LEN];
  120. int touch_nr, error, i;
  121. error = i2c_smbus_read_i2c_block_data(client, SILEAD_REG_DATA,
  122. SILEAD_TS_DATA_LEN, buf);
  123. if (error < 0) {
  124. dev_err(dev, "Data read error %d\n", error);
  125. return;
  126. }
  127. touch_nr = buf[0];
  128. if (touch_nr > data->max_fingers) {
  129. dev_warn(dev, "More touches reported then supported %d > %d\n",
  130. touch_nr, data->max_fingers);
  131. touch_nr = data->max_fingers;
  132. }
  133. bufp = buf + SILEAD_POINT_DATA_LEN;
  134. for (i = 0; i < touch_nr; i++, bufp += SILEAD_POINT_DATA_LEN) {
  135. /* Bits 4-7 are the touch id */
  136. data->id[i] = (bufp[SILEAD_POINT_X_MSB_OFF] &
  137. SILEAD_TOUCH_ID_MASK) >> 4;
  138. touchscreen_set_mt_pos(&data->pos[i], &data->prop,
  139. get_unaligned_le16(&bufp[SILEAD_POINT_X_OFF]) & 0xfff,
  140. get_unaligned_le16(&bufp[SILEAD_POINT_Y_OFF]) & 0xfff);
  141. }
  142. input_mt_assign_slots(input, data->slots, data->pos, touch_nr, 0);
  143. for (i = 0; i < touch_nr; i++) {
  144. input_mt_slot(input, data->slots[i]);
  145. input_mt_report_slot_state(input, MT_TOOL_FINGER, true);
  146. input_report_abs(input, ABS_MT_POSITION_X, data->pos[i].x);
  147. input_report_abs(input, ABS_MT_POSITION_Y, data->pos[i].y);
  148. dev_dbg(dev, "x=%d y=%d hw_id=%d sw_id=%d\n", data->pos[i].x,
  149. data->pos[i].y, data->id[i], data->slots[i]);
  150. }
  151. input_mt_sync_frame(input);
  152. input_sync(input);
  153. }
  154. static int silead_ts_init(struct i2c_client *client)
  155. {
  156. struct silead_ts_data *data = i2c_get_clientdata(client);
  157. int error;
  158. error = i2c_smbus_write_byte_data(client, SILEAD_REG_RESET,
  159. SILEAD_CMD_RESET);
  160. if (error)
  161. goto i2c_write_err;
  162. usleep_range(SILEAD_CMD_SLEEP_MIN, SILEAD_CMD_SLEEP_MAX);
  163. error = i2c_smbus_write_byte_data(client, SILEAD_REG_TOUCH_NR,
  164. data->max_fingers);
  165. if (error)
  166. goto i2c_write_err;
  167. usleep_range(SILEAD_CMD_SLEEP_MIN, SILEAD_CMD_SLEEP_MAX);
  168. error = i2c_smbus_write_byte_data(client, SILEAD_REG_CLOCK,
  169. SILEAD_CLOCK);
  170. if (error)
  171. goto i2c_write_err;
  172. usleep_range(SILEAD_CMD_SLEEP_MIN, SILEAD_CMD_SLEEP_MAX);
  173. error = i2c_smbus_write_byte_data(client, SILEAD_REG_RESET,
  174. SILEAD_CMD_START);
  175. if (error)
  176. goto i2c_write_err;
  177. usleep_range(SILEAD_CMD_SLEEP_MIN, SILEAD_CMD_SLEEP_MAX);
  178. return 0;
  179. i2c_write_err:
  180. dev_err(&client->dev, "Registers clear error %d\n", error);
  181. return error;
  182. }
  183. static int silead_ts_reset(struct i2c_client *client)
  184. {
  185. int error;
  186. error = i2c_smbus_write_byte_data(client, SILEAD_REG_RESET,
  187. SILEAD_CMD_RESET);
  188. if (error)
  189. goto i2c_write_err;
  190. usleep_range(SILEAD_CMD_SLEEP_MIN, SILEAD_CMD_SLEEP_MAX);
  191. error = i2c_smbus_write_byte_data(client, SILEAD_REG_CLOCK,
  192. SILEAD_CLOCK);
  193. if (error)
  194. goto i2c_write_err;
  195. usleep_range(SILEAD_CMD_SLEEP_MIN, SILEAD_CMD_SLEEP_MAX);
  196. error = i2c_smbus_write_byte_data(client, SILEAD_REG_POWER,
  197. SILEAD_CMD_START);
  198. if (error)
  199. goto i2c_write_err;
  200. usleep_range(SILEAD_CMD_SLEEP_MIN, SILEAD_CMD_SLEEP_MAX);
  201. return 0;
  202. i2c_write_err:
  203. dev_err(&client->dev, "Chip reset error %d\n", error);
  204. return error;
  205. }
  206. static int silead_ts_startup(struct i2c_client *client)
  207. {
  208. int error;
  209. error = i2c_smbus_write_byte_data(client, SILEAD_REG_RESET, 0x00);
  210. if (error) {
  211. dev_err(&client->dev, "Startup error %d\n", error);
  212. return error;
  213. }
  214. msleep(SILEAD_STARTUP_SLEEP);
  215. return 0;
  216. }
  217. static int silead_ts_load_fw(struct i2c_client *client)
  218. {
  219. struct device *dev = &client->dev;
  220. struct silead_ts_data *data = i2c_get_clientdata(client);
  221. unsigned int fw_size, i;
  222. const struct firmware *fw;
  223. struct silead_fw_data *fw_data;
  224. int error;
  225. dev_dbg(dev, "Firmware file name: %s", data->fw_name);
  226. error = request_firmware(&fw, data->fw_name, dev);
  227. if (error) {
  228. dev_err(dev, "Firmware request error %d\n", error);
  229. return error;
  230. }
  231. fw_size = fw->size / sizeof(*fw_data);
  232. fw_data = (struct silead_fw_data *)fw->data;
  233. for (i = 0; i < fw_size; i++) {
  234. error = i2c_smbus_write_i2c_block_data(client,
  235. fw_data[i].offset,
  236. 4,
  237. (u8 *)&fw_data[i].val);
  238. if (error) {
  239. dev_err(dev, "Firmware load error %d\n", error);
  240. break;
  241. }
  242. }
  243. release_firmware(fw);
  244. return error ?: 0;
  245. }
  246. static u32 silead_ts_get_status(struct i2c_client *client)
  247. {
  248. int error;
  249. __le32 status;
  250. error = i2c_smbus_read_i2c_block_data(client, SILEAD_REG_STATUS,
  251. sizeof(status), (u8 *)&status);
  252. if (error < 0) {
  253. dev_err(&client->dev, "Status read error %d\n", error);
  254. return error;
  255. }
  256. return le32_to_cpu(status);
  257. }
  258. static int silead_ts_get_id(struct i2c_client *client)
  259. {
  260. struct silead_ts_data *data = i2c_get_clientdata(client);
  261. __le32 chip_id;
  262. int error;
  263. error = i2c_smbus_read_i2c_block_data(client, SILEAD_REG_ID,
  264. sizeof(chip_id), (u8 *)&chip_id);
  265. if (error < 0) {
  266. dev_err(&client->dev, "Chip ID read error %d\n", error);
  267. return error;
  268. }
  269. data->chip_id = le32_to_cpu(chip_id);
  270. dev_info(&client->dev, "Silead chip ID: 0x%8X", data->chip_id);
  271. return 0;
  272. }
  273. static int silead_ts_setup(struct i2c_client *client)
  274. {
  275. int error;
  276. u32 status;
  277. silead_ts_set_power(client, SILEAD_POWER_OFF);
  278. silead_ts_set_power(client, SILEAD_POWER_ON);
  279. error = silead_ts_get_id(client);
  280. if (error)
  281. return error;
  282. error = silead_ts_init(client);
  283. if (error)
  284. return error;
  285. error = silead_ts_reset(client);
  286. if (error)
  287. return error;
  288. error = silead_ts_load_fw(client);
  289. if (error)
  290. return error;
  291. error = silead_ts_startup(client);
  292. if (error)
  293. return error;
  294. status = silead_ts_get_status(client);
  295. if (status != SILEAD_STATUS_OK) {
  296. dev_err(&client->dev,
  297. "Initialization error, status: 0x%X\n", status);
  298. return -ENODEV;
  299. }
  300. return 0;
  301. }
  302. static irqreturn_t silead_ts_threaded_irq_handler(int irq, void *id)
  303. {
  304. struct silead_ts_data *data = id;
  305. struct i2c_client *client = data->client;
  306. silead_ts_read_data(client);
  307. return IRQ_HANDLED;
  308. }
  309. static void silead_ts_read_props(struct i2c_client *client)
  310. {
  311. struct silead_ts_data *data = i2c_get_clientdata(client);
  312. struct device *dev = &client->dev;
  313. const char *str;
  314. int error;
  315. error = device_property_read_u32(dev, "silead,max-fingers",
  316. &data->max_fingers);
  317. if (error) {
  318. dev_dbg(dev, "Max fingers read error %d\n", error);
  319. data->max_fingers = 5; /* Most devices handle up-to 5 fingers */
  320. }
  321. error = device_property_read_string(dev, "firmware-name", &str);
  322. if (!error)
  323. snprintf(data->fw_name, sizeof(data->fw_name),
  324. "silead/%s", str);
  325. else
  326. dev_dbg(dev, "Firmware file name read error. Using default.");
  327. }
  328. #ifdef CONFIG_ACPI
  329. static int silead_ts_set_default_fw_name(struct silead_ts_data *data,
  330. const struct i2c_device_id *id)
  331. {
  332. const struct acpi_device_id *acpi_id;
  333. struct device *dev = &data->client->dev;
  334. int i;
  335. if (ACPI_HANDLE(dev)) {
  336. acpi_id = acpi_match_device(dev->driver->acpi_match_table, dev);
  337. if (!acpi_id)
  338. return -ENODEV;
  339. snprintf(data->fw_name, sizeof(data->fw_name),
  340. "silead/%s.fw", acpi_id->id);
  341. for (i = 0; i < strlen(data->fw_name); i++)
  342. data->fw_name[i] = tolower(data->fw_name[i]);
  343. } else {
  344. snprintf(data->fw_name, sizeof(data->fw_name),
  345. "silead/%s.fw", id->name);
  346. }
  347. return 0;
  348. }
  349. #else
  350. static int silead_ts_set_default_fw_name(struct silead_ts_data *data,
  351. const struct i2c_device_id *id)
  352. {
  353. snprintf(data->fw_name, sizeof(data->fw_name),
  354. "silead/%s.fw", id->name);
  355. return 0;
  356. }
  357. #endif
  358. static void silead_disable_regulator(void *arg)
  359. {
  360. struct silead_ts_data *data = arg;
  361. regulator_bulk_disable(ARRAY_SIZE(data->regulators), data->regulators);
  362. }
  363. static int silead_ts_probe(struct i2c_client *client,
  364. const struct i2c_device_id *id)
  365. {
  366. struct silead_ts_data *data;
  367. struct device *dev = &client->dev;
  368. int error;
  369. if (!i2c_check_functionality(client->adapter,
  370. I2C_FUNC_I2C |
  371. I2C_FUNC_SMBUS_READ_I2C_BLOCK |
  372. I2C_FUNC_SMBUS_WRITE_I2C_BLOCK)) {
  373. dev_err(dev, "I2C functionality check failed\n");
  374. return -ENXIO;
  375. }
  376. data = devm_kzalloc(dev, sizeof(*data), GFP_KERNEL);
  377. if (!data)
  378. return -ENOMEM;
  379. i2c_set_clientdata(client, data);
  380. data->client = client;
  381. error = silead_ts_set_default_fw_name(data, id);
  382. if (error)
  383. return error;
  384. silead_ts_read_props(client);
  385. /* We must have the IRQ provided by DT or ACPI subsytem */
  386. if (client->irq <= 0)
  387. return -ENODEV;
  388. data->regulators[0].supply = "vddio";
  389. data->regulators[1].supply = "avdd";
  390. error = devm_regulator_bulk_get(dev, ARRAY_SIZE(data->regulators),
  391. data->regulators);
  392. if (error)
  393. return error;
  394. /*
  395. * Enable regulators at probe and disable them at remove, we need
  396. * to keep the chip powered otherwise it forgets its firmware.
  397. */
  398. error = regulator_bulk_enable(ARRAY_SIZE(data->regulators),
  399. data->regulators);
  400. if (error)
  401. return error;
  402. error = devm_add_action_or_reset(dev, silead_disable_regulator, data);
  403. if (error)
  404. return error;
  405. /* Power GPIO pin */
  406. data->gpio_power = devm_gpiod_get_optional(dev, "power", GPIOD_OUT_LOW);
  407. if (IS_ERR(data->gpio_power)) {
  408. if (PTR_ERR(data->gpio_power) != -EPROBE_DEFER)
  409. dev_err(dev, "Shutdown GPIO request failed\n");
  410. return PTR_ERR(data->gpio_power);
  411. }
  412. error = silead_ts_setup(client);
  413. if (error)
  414. return error;
  415. error = silead_ts_request_input_dev(data);
  416. if (error)
  417. return error;
  418. error = devm_request_threaded_irq(dev, client->irq,
  419. NULL, silead_ts_threaded_irq_handler,
  420. IRQF_ONESHOT, client->name, data);
  421. if (error) {
  422. if (error != -EPROBE_DEFER)
  423. dev_err(dev, "IRQ request failed %d\n", error);
  424. return error;
  425. }
  426. return 0;
  427. }
  428. static int __maybe_unused silead_ts_suspend(struct device *dev)
  429. {
  430. struct i2c_client *client = to_i2c_client(dev);
  431. silead_ts_set_power(client, SILEAD_POWER_OFF);
  432. return 0;
  433. }
  434. static int __maybe_unused silead_ts_resume(struct device *dev)
  435. {
  436. struct i2c_client *client = to_i2c_client(dev);
  437. int error, status;
  438. silead_ts_set_power(client, SILEAD_POWER_ON);
  439. error = silead_ts_reset(client);
  440. if (error)
  441. return error;
  442. error = silead_ts_startup(client);
  443. if (error)
  444. return error;
  445. status = silead_ts_get_status(client);
  446. if (status != SILEAD_STATUS_OK) {
  447. dev_err(dev, "Resume error, status: 0x%02x\n", status);
  448. return -ENODEV;
  449. }
  450. return 0;
  451. }
  452. static SIMPLE_DEV_PM_OPS(silead_ts_pm, silead_ts_suspend, silead_ts_resume);
  453. static const struct i2c_device_id silead_ts_id[] = {
  454. { "gsl1680", 0 },
  455. { "gsl1688", 0 },
  456. { "gsl3670", 0 },
  457. { "gsl3675", 0 },
  458. { "gsl3692", 0 },
  459. { "mssl1680", 0 },
  460. { }
  461. };
  462. MODULE_DEVICE_TABLE(i2c, silead_ts_id);
  463. #ifdef CONFIG_ACPI
  464. static const struct acpi_device_id silead_ts_acpi_match[] = {
  465. { "GSL1680", 0 },
  466. { "GSL1688", 0 },
  467. { "GSL3670", 0 },
  468. { "GSL3675", 0 },
  469. { "GSL3692", 0 },
  470. { "MSSL1680", 0 },
  471. { }
  472. };
  473. MODULE_DEVICE_TABLE(acpi, silead_ts_acpi_match);
  474. #endif
  475. static struct i2c_driver silead_ts_driver = {
  476. .probe = silead_ts_probe,
  477. .id_table = silead_ts_id,
  478. .driver = {
  479. .name = SILEAD_TS_NAME,
  480. .acpi_match_table = ACPI_PTR(silead_ts_acpi_match),
  481. .pm = &silead_ts_pm,
  482. },
  483. };
  484. module_i2c_driver(silead_ts_driver);
  485. MODULE_AUTHOR("Robert Dolca <robert.dolca@intel.com>");
  486. MODULE_DESCRIPTION("Silead I2C touchscreen driver");
  487. MODULE_LICENSE("GPL");