atmel_mxt_ts.c 37 KB

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  1. /*
  2. * Atmel maXTouch Touchscreen driver
  3. *
  4. * Copyright (C) 2010 Samsung Electronics Co.Ltd
  5. * Copyright (C) 2012 Google, Inc.
  6. *
  7. * Author: Joonyoung Shim <jy0922.shim@samsung.com>
  8. *
  9. * This program is free software; you can redistribute it and/or modify it
  10. * under the terms of the GNU General Public License as published by the
  11. * Free Software Foundation; either version 2 of the License, or (at your
  12. * option) any later version.
  13. *
  14. */
  15. #include <linux/module.h>
  16. #include <linux/init.h>
  17. #include <linux/completion.h>
  18. #include <linux/delay.h>
  19. #include <linux/firmware.h>
  20. #include <linux/i2c.h>
  21. #include <linux/i2c/atmel_mxt_ts.h>
  22. #include <linux/input/mt.h>
  23. #include <linux/interrupt.h>
  24. #include <linux/slab.h>
  25. /* Version */
  26. #define MXT_VER_20 20
  27. #define MXT_VER_21 21
  28. #define MXT_VER_22 22
  29. /* Firmware */
  30. #define MXT_FW_NAME "maxtouch.fw"
  31. /* Registers */
  32. #define MXT_INFO 0x00
  33. #define MXT_FAMILY_ID 0x00
  34. #define MXT_VARIANT_ID 0x01
  35. #define MXT_VERSION 0x02
  36. #define MXT_BUILD 0x03
  37. #define MXT_MATRIX_X_SIZE 0x04
  38. #define MXT_MATRIX_Y_SIZE 0x05
  39. #define MXT_OBJECT_NUM 0x06
  40. #define MXT_OBJECT_START 0x07
  41. #define MXT_OBJECT_SIZE 6
  42. /* Object types */
  43. #define MXT_DEBUG_DIAGNOSTIC_T37 37
  44. #define MXT_GEN_MESSAGE_T5 5
  45. #define MXT_GEN_COMMAND_T6 6
  46. #define MXT_GEN_POWER_T7 7
  47. #define MXT_GEN_ACQUIRE_T8 8
  48. #define MXT_GEN_DATASOURCE_T53 53
  49. #define MXT_TOUCH_MULTI_T9 9
  50. #define MXT_TOUCH_KEYARRAY_T15 15
  51. #define MXT_TOUCH_PROXIMITY_T23 23
  52. #define MXT_TOUCH_PROXKEY_T52 52
  53. #define MXT_PROCI_GRIPFACE_T20 20
  54. #define MXT_PROCG_NOISE_T22 22
  55. #define MXT_PROCI_ONETOUCH_T24 24
  56. #define MXT_PROCI_TWOTOUCH_T27 27
  57. #define MXT_PROCI_GRIP_T40 40
  58. #define MXT_PROCI_PALM_T41 41
  59. #define MXT_PROCI_TOUCHSUPPRESSION_T42 42
  60. #define MXT_PROCI_STYLUS_T47 47
  61. #define MXT_PROCG_NOISESUPPRESSION_T48 48
  62. #define MXT_SPT_COMMSCONFIG_T18 18
  63. #define MXT_SPT_GPIOPWM_T19 19
  64. #define MXT_SPT_SELFTEST_T25 25
  65. #define MXT_SPT_CTECONFIG_T28 28
  66. #define MXT_SPT_USERDATA_T38 38
  67. #define MXT_SPT_DIGITIZER_T43 43
  68. #define MXT_SPT_MESSAGECOUNT_T44 44
  69. #define MXT_SPT_CTECONFIG_T46 46
  70. /* MXT_GEN_COMMAND_T6 field */
  71. #define MXT_COMMAND_RESET 0
  72. #define MXT_COMMAND_BACKUPNV 1
  73. #define MXT_COMMAND_CALIBRATE 2
  74. #define MXT_COMMAND_REPORTALL 3
  75. #define MXT_COMMAND_DIAGNOSTIC 5
  76. /* Define for T6 status byte */
  77. #define MXT_T6_STATUS_RESET (1 << 7)
  78. /* MXT_GEN_POWER_T7 field */
  79. #define MXT_POWER_IDLEACQINT 0
  80. #define MXT_POWER_ACTVACQINT 1
  81. #define MXT_POWER_ACTV2IDLETO 2
  82. /* MXT_GEN_ACQUIRE_T8 field */
  83. #define MXT_ACQUIRE_CHRGTIME 0
  84. #define MXT_ACQUIRE_TCHDRIFT 2
  85. #define MXT_ACQUIRE_DRIFTST 3
  86. #define MXT_ACQUIRE_TCHAUTOCAL 4
  87. #define MXT_ACQUIRE_SYNC 5
  88. #define MXT_ACQUIRE_ATCHCALST 6
  89. #define MXT_ACQUIRE_ATCHCALSTHR 7
  90. /* MXT_TOUCH_MULTI_T9 field */
  91. #define MXT_TOUCH_CTRL 0
  92. #define MXT_T9_ORIENT 9
  93. #define MXT_T9_RANGE 18
  94. /* MXT_TOUCH_MULTI_T9 status */
  95. #define MXT_T9_UNGRIP (1 << 0)
  96. #define MXT_T9_SUPPRESS (1 << 1)
  97. #define MXT_T9_AMP (1 << 2)
  98. #define MXT_T9_VECTOR (1 << 3)
  99. #define MXT_T9_MOVE (1 << 4)
  100. #define MXT_T9_RELEASE (1 << 5)
  101. #define MXT_T9_PRESS (1 << 6)
  102. #define MXT_T9_DETECT (1 << 7)
  103. struct t9_range {
  104. u16 x;
  105. u16 y;
  106. } __packed;
  107. /* MXT_TOUCH_MULTI_T9 orient */
  108. #define MXT_T9_ORIENT_SWITCH (1 << 0)
  109. /* MXT_PROCI_GRIPFACE_T20 field */
  110. #define MXT_GRIPFACE_CTRL 0
  111. #define MXT_GRIPFACE_XLOGRIP 1
  112. #define MXT_GRIPFACE_XHIGRIP 2
  113. #define MXT_GRIPFACE_YLOGRIP 3
  114. #define MXT_GRIPFACE_YHIGRIP 4
  115. #define MXT_GRIPFACE_MAXTCHS 5
  116. #define MXT_GRIPFACE_SZTHR1 7
  117. #define MXT_GRIPFACE_SZTHR2 8
  118. #define MXT_GRIPFACE_SHPTHR1 9
  119. #define MXT_GRIPFACE_SHPTHR2 10
  120. #define MXT_GRIPFACE_SUPEXTTO 11
  121. /* MXT_PROCI_NOISE field */
  122. #define MXT_NOISE_CTRL 0
  123. #define MXT_NOISE_OUTFLEN 1
  124. #define MXT_NOISE_GCAFUL_LSB 3
  125. #define MXT_NOISE_GCAFUL_MSB 4
  126. #define MXT_NOISE_GCAFLL_LSB 5
  127. #define MXT_NOISE_GCAFLL_MSB 6
  128. #define MXT_NOISE_ACTVGCAFVALID 7
  129. #define MXT_NOISE_NOISETHR 8
  130. #define MXT_NOISE_FREQHOPSCALE 10
  131. #define MXT_NOISE_FREQ0 11
  132. #define MXT_NOISE_FREQ1 12
  133. #define MXT_NOISE_FREQ2 13
  134. #define MXT_NOISE_FREQ3 14
  135. #define MXT_NOISE_FREQ4 15
  136. #define MXT_NOISE_IDLEGCAFVALID 16
  137. /* MXT_SPT_COMMSCONFIG_T18 */
  138. #define MXT_COMMS_CTRL 0
  139. #define MXT_COMMS_CMD 1
  140. /* MXT_SPT_CTECONFIG_T28 field */
  141. #define MXT_CTE_CTRL 0
  142. #define MXT_CTE_CMD 1
  143. #define MXT_CTE_MODE 2
  144. #define MXT_CTE_IDLEGCAFDEPTH 3
  145. #define MXT_CTE_ACTVGCAFDEPTH 4
  146. #define MXT_CTE_VOLTAGE 5
  147. #define MXT_VOLTAGE_DEFAULT 2700000
  148. #define MXT_VOLTAGE_STEP 10000
  149. /* Define for MXT_GEN_COMMAND_T6 */
  150. #define MXT_BOOT_VALUE 0xa5
  151. #define MXT_RESET_VALUE 0x01
  152. #define MXT_BACKUP_VALUE 0x55
  153. /* Delay times */
  154. #define MXT_BACKUP_TIME 50 /* msec */
  155. #define MXT_RESET_TIME 200 /* msec */
  156. #define MXT_RESET_TIMEOUT 3000 /* msec */
  157. #define MXT_CRC_TIMEOUT 1000 /* msec */
  158. #define MXT_FW_RESET_TIME 3000 /* msec */
  159. #define MXT_FW_CHG_TIMEOUT 300 /* msec */
  160. /* Command to unlock bootloader */
  161. #define MXT_UNLOCK_CMD_MSB 0xaa
  162. #define MXT_UNLOCK_CMD_LSB 0xdc
  163. /* Bootloader mode status */
  164. #define MXT_WAITING_BOOTLOAD_CMD 0xc0 /* valid 7 6 bit only */
  165. #define MXT_WAITING_FRAME_DATA 0x80 /* valid 7 6 bit only */
  166. #define MXT_FRAME_CRC_CHECK 0x02
  167. #define MXT_FRAME_CRC_FAIL 0x03
  168. #define MXT_FRAME_CRC_PASS 0x04
  169. #define MXT_APP_CRC_FAIL 0x40 /* valid 7 8 bit only */
  170. #define MXT_BOOT_STATUS_MASK 0x3f
  171. #define MXT_BOOT_EXTENDED_ID (1 << 5)
  172. #define MXT_BOOT_ID_MASK 0x1f
  173. /* Touchscreen absolute values */
  174. #define MXT_MAX_AREA 0xff
  175. #define MXT_PIXELS_PER_MM 20
  176. struct mxt_info {
  177. u8 family_id;
  178. u8 variant_id;
  179. u8 version;
  180. u8 build;
  181. u8 matrix_xsize;
  182. u8 matrix_ysize;
  183. u8 object_num;
  184. };
  185. struct mxt_object {
  186. u8 type;
  187. u16 start_address;
  188. u8 size_minus_one;
  189. u8 instances_minus_one;
  190. u8 num_report_ids;
  191. } __packed;
  192. struct mxt_message {
  193. u8 reportid;
  194. u8 message[7];
  195. };
  196. /* Each client has this additional data */
  197. struct mxt_data {
  198. struct i2c_client *client;
  199. struct input_dev *input_dev;
  200. char phys[64]; /* device physical location */
  201. const struct mxt_platform_data *pdata;
  202. struct mxt_object *object_table;
  203. struct mxt_info info;
  204. unsigned int irq;
  205. unsigned int max_x;
  206. unsigned int max_y;
  207. bool in_bootloader;
  208. u32 config_crc;
  209. u8 bootloader_addr;
  210. /* Cached parameters from object table */
  211. u8 T6_reportid;
  212. u16 T6_address;
  213. u8 T9_reportid_min;
  214. u8 T9_reportid_max;
  215. u8 T19_reportid;
  216. /* for fw update in bootloader */
  217. struct completion bl_completion;
  218. /* for reset handling */
  219. struct completion reset_completion;
  220. /* for config update handling */
  221. struct completion crc_completion;
  222. };
  223. static size_t mxt_obj_size(const struct mxt_object *obj)
  224. {
  225. return obj->size_minus_one + 1;
  226. }
  227. static size_t mxt_obj_instances(const struct mxt_object *obj)
  228. {
  229. return obj->instances_minus_one + 1;
  230. }
  231. static bool mxt_object_readable(unsigned int type)
  232. {
  233. switch (type) {
  234. case MXT_GEN_COMMAND_T6:
  235. case MXT_GEN_POWER_T7:
  236. case MXT_GEN_ACQUIRE_T8:
  237. case MXT_GEN_DATASOURCE_T53:
  238. case MXT_TOUCH_MULTI_T9:
  239. case MXT_TOUCH_KEYARRAY_T15:
  240. case MXT_TOUCH_PROXIMITY_T23:
  241. case MXT_TOUCH_PROXKEY_T52:
  242. case MXT_PROCI_GRIPFACE_T20:
  243. case MXT_PROCG_NOISE_T22:
  244. case MXT_PROCI_ONETOUCH_T24:
  245. case MXT_PROCI_TWOTOUCH_T27:
  246. case MXT_PROCI_GRIP_T40:
  247. case MXT_PROCI_PALM_T41:
  248. case MXT_PROCI_TOUCHSUPPRESSION_T42:
  249. case MXT_PROCI_STYLUS_T47:
  250. case MXT_PROCG_NOISESUPPRESSION_T48:
  251. case MXT_SPT_COMMSCONFIG_T18:
  252. case MXT_SPT_GPIOPWM_T19:
  253. case MXT_SPT_SELFTEST_T25:
  254. case MXT_SPT_CTECONFIG_T28:
  255. case MXT_SPT_USERDATA_T38:
  256. case MXT_SPT_DIGITIZER_T43:
  257. case MXT_SPT_CTECONFIG_T46:
  258. return true;
  259. default:
  260. return false;
  261. }
  262. }
  263. static bool mxt_object_writable(unsigned int type)
  264. {
  265. switch (type) {
  266. case MXT_GEN_COMMAND_T6:
  267. case MXT_GEN_POWER_T7:
  268. case MXT_GEN_ACQUIRE_T8:
  269. case MXT_TOUCH_MULTI_T9:
  270. case MXT_TOUCH_KEYARRAY_T15:
  271. case MXT_TOUCH_PROXIMITY_T23:
  272. case MXT_TOUCH_PROXKEY_T52:
  273. case MXT_PROCI_GRIPFACE_T20:
  274. case MXT_PROCG_NOISE_T22:
  275. case MXT_PROCI_ONETOUCH_T24:
  276. case MXT_PROCI_TWOTOUCH_T27:
  277. case MXT_PROCI_GRIP_T40:
  278. case MXT_PROCI_PALM_T41:
  279. case MXT_PROCI_TOUCHSUPPRESSION_T42:
  280. case MXT_PROCI_STYLUS_T47:
  281. case MXT_PROCG_NOISESUPPRESSION_T48:
  282. case MXT_SPT_COMMSCONFIG_T18:
  283. case MXT_SPT_GPIOPWM_T19:
  284. case MXT_SPT_SELFTEST_T25:
  285. case MXT_SPT_CTECONFIG_T28:
  286. case MXT_SPT_DIGITIZER_T43:
  287. case MXT_SPT_CTECONFIG_T46:
  288. return true;
  289. default:
  290. return false;
  291. }
  292. }
  293. static void mxt_dump_message(struct device *dev,
  294. struct mxt_message *message)
  295. {
  296. dev_dbg(dev, "reportid: %u\tmessage: %*ph\n",
  297. message->reportid, 7, message->message);
  298. }
  299. static int mxt_wait_for_completion(struct mxt_data *data,
  300. struct completion *comp,
  301. unsigned int timeout_ms)
  302. {
  303. struct device *dev = &data->client->dev;
  304. unsigned long timeout = msecs_to_jiffies(timeout_ms);
  305. long ret;
  306. ret = wait_for_completion_interruptible_timeout(comp, timeout);
  307. if (ret < 0) {
  308. return ret;
  309. } else if (ret == 0) {
  310. dev_err(dev, "Wait for completion timed out.\n");
  311. return -ETIMEDOUT;
  312. }
  313. return 0;
  314. }
  315. static int mxt_bootloader_read(struct mxt_data *data,
  316. u8 *val, unsigned int count)
  317. {
  318. int ret;
  319. struct i2c_msg msg;
  320. msg.addr = data->bootloader_addr;
  321. msg.flags = data->client->flags & I2C_M_TEN;
  322. msg.flags |= I2C_M_RD;
  323. msg.len = count;
  324. msg.buf = val;
  325. ret = i2c_transfer(data->client->adapter, &msg, 1);
  326. if (ret == 1) {
  327. ret = 0;
  328. } else {
  329. ret = ret < 0 ? ret : -EIO;
  330. dev_err(&data->client->dev, "%s: i2c recv failed (%d)\n",
  331. __func__, ret);
  332. }
  333. return ret;
  334. }
  335. static int mxt_bootloader_write(struct mxt_data *data,
  336. const u8 * const val, unsigned int count)
  337. {
  338. int ret;
  339. struct i2c_msg msg;
  340. msg.addr = data->bootloader_addr;
  341. msg.flags = data->client->flags & I2C_M_TEN;
  342. msg.len = count;
  343. msg.buf = (u8 *)val;
  344. ret = i2c_transfer(data->client->adapter, &msg, 1);
  345. if (ret == 1) {
  346. ret = 0;
  347. } else {
  348. ret = ret < 0 ? ret : -EIO;
  349. dev_err(&data->client->dev, "%s: i2c send failed (%d)\n",
  350. __func__, ret);
  351. }
  352. return ret;
  353. }
  354. static int mxt_lookup_bootloader_address(struct mxt_data *data)
  355. {
  356. u8 appmode = data->client->addr;
  357. u8 bootloader;
  358. switch (appmode) {
  359. case 0x4a:
  360. case 0x4b:
  361. case 0x4c:
  362. case 0x4d:
  363. case 0x5a:
  364. case 0x5b:
  365. bootloader = appmode - 0x26;
  366. break;
  367. default:
  368. dev_err(&data->client->dev,
  369. "Appmode i2c address 0x%02x not found\n",
  370. appmode);
  371. return -EINVAL;
  372. }
  373. data->bootloader_addr = bootloader;
  374. return 0;
  375. }
  376. static u8 mxt_get_bootloader_version(struct mxt_data *data, u8 val)
  377. {
  378. struct device *dev = &data->client->dev;
  379. u8 buf[3];
  380. if (val & MXT_BOOT_EXTENDED_ID) {
  381. if (mxt_bootloader_read(data, &buf[0], 3) != 0) {
  382. dev_err(dev, "%s: i2c failure\n", __func__);
  383. return val;
  384. }
  385. dev_dbg(dev, "Bootloader ID:%d Version:%d\n", buf[1], buf[2]);
  386. return buf[0];
  387. } else {
  388. dev_dbg(dev, "Bootloader ID:%d\n", val & MXT_BOOT_ID_MASK);
  389. return val;
  390. }
  391. }
  392. static int mxt_check_bootloader(struct mxt_data *data, unsigned int state)
  393. {
  394. struct device *dev = &data->client->dev;
  395. u8 val;
  396. int ret;
  397. recheck:
  398. if (state != MXT_WAITING_BOOTLOAD_CMD) {
  399. /*
  400. * In application update mode, the interrupt
  401. * line signals state transitions. We must wait for the
  402. * CHG assertion before reading the status byte.
  403. * Once the status byte has been read, the line is deasserted.
  404. */
  405. ret = mxt_wait_for_completion(data, &data->bl_completion,
  406. MXT_FW_CHG_TIMEOUT);
  407. if (ret) {
  408. /*
  409. * TODO: handle -ERESTARTSYS better by terminating
  410. * fw update process before returning to userspace
  411. * by writing length 0x000 to device (iff we are in
  412. * WAITING_FRAME_DATA state).
  413. */
  414. dev_err(dev, "Update wait error %d\n", ret);
  415. return ret;
  416. }
  417. }
  418. ret = mxt_bootloader_read(data, &val, 1);
  419. if (ret)
  420. return ret;
  421. if (state == MXT_WAITING_BOOTLOAD_CMD)
  422. val = mxt_get_bootloader_version(data, val);
  423. switch (state) {
  424. case MXT_WAITING_BOOTLOAD_CMD:
  425. case MXT_WAITING_FRAME_DATA:
  426. val &= ~MXT_BOOT_STATUS_MASK;
  427. break;
  428. case MXT_FRAME_CRC_PASS:
  429. if (val == MXT_FRAME_CRC_CHECK) {
  430. goto recheck;
  431. } else if (val == MXT_FRAME_CRC_FAIL) {
  432. dev_err(dev, "Bootloader CRC fail\n");
  433. return -EINVAL;
  434. }
  435. break;
  436. default:
  437. return -EINVAL;
  438. }
  439. if (val != state) {
  440. dev_err(dev, "Invalid bootloader state %02X != %02X\n",
  441. val, state);
  442. return -EINVAL;
  443. }
  444. return 0;
  445. }
  446. static int mxt_unlock_bootloader(struct mxt_data *data)
  447. {
  448. int ret;
  449. u8 buf[2];
  450. buf[0] = MXT_UNLOCK_CMD_LSB;
  451. buf[1] = MXT_UNLOCK_CMD_MSB;
  452. ret = mxt_bootloader_write(data, buf, 2);
  453. if (ret)
  454. return ret;
  455. return 0;
  456. }
  457. static int __mxt_read_reg(struct i2c_client *client,
  458. u16 reg, u16 len, void *val)
  459. {
  460. struct i2c_msg xfer[2];
  461. u8 buf[2];
  462. int ret;
  463. buf[0] = reg & 0xff;
  464. buf[1] = (reg >> 8) & 0xff;
  465. /* Write register */
  466. xfer[0].addr = client->addr;
  467. xfer[0].flags = 0;
  468. xfer[0].len = 2;
  469. xfer[0].buf = buf;
  470. /* Read data */
  471. xfer[1].addr = client->addr;
  472. xfer[1].flags = I2C_M_RD;
  473. xfer[1].len = len;
  474. xfer[1].buf = val;
  475. ret = i2c_transfer(client->adapter, xfer, 2);
  476. if (ret == 2) {
  477. ret = 0;
  478. } else {
  479. if (ret >= 0)
  480. ret = -EIO;
  481. dev_err(&client->dev, "%s: i2c transfer failed (%d)\n",
  482. __func__, ret);
  483. }
  484. return ret;
  485. }
  486. static int __mxt_write_reg(struct i2c_client *client, u16 reg, u16 len,
  487. const void *val)
  488. {
  489. u8 *buf;
  490. size_t count;
  491. int ret;
  492. count = len + 2;
  493. buf = kmalloc(count, GFP_KERNEL);
  494. if (!buf)
  495. return -ENOMEM;
  496. buf[0] = reg & 0xff;
  497. buf[1] = (reg >> 8) & 0xff;
  498. memcpy(&buf[2], val, len);
  499. ret = i2c_master_send(client, buf, count);
  500. if (ret == count) {
  501. ret = 0;
  502. } else {
  503. if (ret >= 0)
  504. ret = -EIO;
  505. dev_err(&client->dev, "%s: i2c send failed (%d)\n",
  506. __func__, ret);
  507. }
  508. kfree(buf);
  509. return ret;
  510. }
  511. static int mxt_write_reg(struct i2c_client *client, u16 reg, u8 val)
  512. {
  513. return __mxt_write_reg(client, reg, 1, &val);
  514. }
  515. static struct mxt_object *
  516. mxt_get_object(struct mxt_data *data, u8 type)
  517. {
  518. struct mxt_object *object;
  519. int i;
  520. for (i = 0; i < data->info.object_num; i++) {
  521. object = data->object_table + i;
  522. if (object->type == type)
  523. return object;
  524. }
  525. dev_err(&data->client->dev, "Invalid object type T%u\n", type);
  526. return NULL;
  527. }
  528. static int mxt_read_message(struct mxt_data *data,
  529. struct mxt_message *message)
  530. {
  531. struct mxt_object *object;
  532. u16 reg;
  533. object = mxt_get_object(data, MXT_GEN_MESSAGE_T5);
  534. if (!object)
  535. return -EINVAL;
  536. reg = object->start_address;
  537. return __mxt_read_reg(data->client, reg,
  538. sizeof(struct mxt_message), message);
  539. }
  540. static int mxt_write_object(struct mxt_data *data,
  541. u8 type, u8 offset, u8 val)
  542. {
  543. struct mxt_object *object;
  544. u16 reg;
  545. object = mxt_get_object(data, type);
  546. if (!object || offset >= mxt_obj_size(object))
  547. return -EINVAL;
  548. reg = object->start_address;
  549. return mxt_write_reg(data->client, reg + offset, val);
  550. }
  551. static void mxt_input_button(struct mxt_data *data, struct mxt_message *message)
  552. {
  553. struct input_dev *input = data->input_dev;
  554. const struct mxt_platform_data *pdata = data->pdata;
  555. bool button;
  556. int i;
  557. /* Active-low switch */
  558. for (i = 0; i < pdata->t19_num_keys; i++) {
  559. if (pdata->t19_keymap[i] == KEY_RESERVED)
  560. continue;
  561. button = !(message->message[0] & (1 << i));
  562. input_report_key(input, pdata->t19_keymap[i], button);
  563. }
  564. }
  565. static void mxt_input_sync(struct input_dev *input_dev)
  566. {
  567. input_mt_report_pointer_emulation(input_dev, false);
  568. input_sync(input_dev);
  569. }
  570. static void mxt_input_touchevent(struct mxt_data *data,
  571. struct mxt_message *message, int id)
  572. {
  573. struct device *dev = &data->client->dev;
  574. u8 status = message->message[0];
  575. struct input_dev *input_dev = data->input_dev;
  576. int x;
  577. int y;
  578. int area;
  579. int amplitude;
  580. x = (message->message[1] << 4) | ((message->message[3] >> 4) & 0xf);
  581. y = (message->message[2] << 4) | ((message->message[3] & 0xf));
  582. /* Handle 10/12 bit switching */
  583. if (data->max_x < 1024)
  584. x >>= 2;
  585. if (data->max_y < 1024)
  586. y >>= 2;
  587. area = message->message[4];
  588. amplitude = message->message[5];
  589. dev_dbg(dev,
  590. "[%u] %c%c%c%c%c%c%c%c x: %5u y: %5u area: %3u amp: %3u\n",
  591. id,
  592. (status & MXT_T9_DETECT) ? 'D' : '.',
  593. (status & MXT_T9_PRESS) ? 'P' : '.',
  594. (status & MXT_T9_RELEASE) ? 'R' : '.',
  595. (status & MXT_T9_MOVE) ? 'M' : '.',
  596. (status & MXT_T9_VECTOR) ? 'V' : '.',
  597. (status & MXT_T9_AMP) ? 'A' : '.',
  598. (status & MXT_T9_SUPPRESS) ? 'S' : '.',
  599. (status & MXT_T9_UNGRIP) ? 'U' : '.',
  600. x, y, area, amplitude);
  601. input_mt_slot(input_dev, id);
  602. if (status & MXT_T9_DETECT) {
  603. /*
  604. * Multiple bits may be set if the host is slow to read
  605. * the status messages, indicating all the events that
  606. * have happened.
  607. */
  608. if (status & MXT_T9_RELEASE) {
  609. input_mt_report_slot_state(input_dev,
  610. MT_TOOL_FINGER, 0);
  611. mxt_input_sync(input_dev);
  612. }
  613. /* Touch active */
  614. input_mt_report_slot_state(input_dev, MT_TOOL_FINGER, 1);
  615. input_report_abs(input_dev, ABS_MT_POSITION_X, x);
  616. input_report_abs(input_dev, ABS_MT_POSITION_Y, y);
  617. input_report_abs(input_dev, ABS_MT_PRESSURE, amplitude);
  618. input_report_abs(input_dev, ABS_MT_TOUCH_MAJOR, area);
  619. } else {
  620. /* Touch no longer active, close out slot */
  621. input_mt_report_slot_state(input_dev, MT_TOOL_FINGER, 0);
  622. }
  623. }
  624. static u16 mxt_extract_T6_csum(const u8 *csum)
  625. {
  626. return csum[0] | (csum[1] << 8) | (csum[2] << 16);
  627. }
  628. static bool mxt_is_T9_message(struct mxt_data *data, struct mxt_message *msg)
  629. {
  630. u8 id = msg->reportid;
  631. return (id >= data->T9_reportid_min && id <= data->T9_reportid_max);
  632. }
  633. static irqreturn_t mxt_process_messages_until_invalid(struct mxt_data *data)
  634. {
  635. struct mxt_message message;
  636. const u8 *payload = &message.message[0];
  637. struct device *dev = &data->client->dev;
  638. u8 reportid;
  639. bool update_input = false;
  640. u32 crc;
  641. do {
  642. if (mxt_read_message(data, &message)) {
  643. dev_err(dev, "Failed to read message\n");
  644. return IRQ_NONE;
  645. }
  646. reportid = message.reportid;
  647. if (reportid == data->T6_reportid) {
  648. u8 status = payload[0];
  649. crc = mxt_extract_T6_csum(&payload[1]);
  650. if (crc != data->config_crc) {
  651. data->config_crc = crc;
  652. complete(&data->crc_completion);
  653. }
  654. dev_dbg(dev, "Status: %02x Config Checksum: %06x\n",
  655. status, data->config_crc);
  656. if (status & MXT_T6_STATUS_RESET)
  657. complete(&data->reset_completion);
  658. } else if (mxt_is_T9_message(data, &message)) {
  659. int id = reportid - data->T9_reportid_min;
  660. mxt_input_touchevent(data, &message, id);
  661. update_input = true;
  662. } else if (message.reportid == data->T19_reportid) {
  663. mxt_input_button(data, &message);
  664. update_input = true;
  665. } else {
  666. mxt_dump_message(dev, &message);
  667. }
  668. } while (reportid != 0xff);
  669. if (update_input)
  670. mxt_input_sync(data->input_dev);
  671. return IRQ_HANDLED;
  672. }
  673. static irqreturn_t mxt_interrupt(int irq, void *dev_id)
  674. {
  675. struct mxt_data *data = dev_id;
  676. if (data->in_bootloader) {
  677. /* bootloader state transition completion */
  678. complete(&data->bl_completion);
  679. return IRQ_HANDLED;
  680. }
  681. return mxt_process_messages_until_invalid(data);
  682. }
  683. static int mxt_t6_command(struct mxt_data *data, u16 cmd_offset,
  684. u8 value, bool wait)
  685. {
  686. u16 reg;
  687. u8 command_register;
  688. int timeout_counter = 0;
  689. int ret;
  690. reg = data->T6_address + cmd_offset;
  691. ret = mxt_write_reg(data->client, reg, value);
  692. if (ret)
  693. return ret;
  694. if (!wait)
  695. return 0;
  696. do {
  697. msleep(20);
  698. ret = __mxt_read_reg(data->client, reg, 1, &command_register);
  699. if (ret)
  700. return ret;
  701. } while (command_register != 0 && timeout_counter++ <= 100);
  702. if (timeout_counter > 100) {
  703. dev_err(&data->client->dev, "Command failed!\n");
  704. return -EIO;
  705. }
  706. return 0;
  707. }
  708. static int mxt_soft_reset(struct mxt_data *data)
  709. {
  710. struct device *dev = &data->client->dev;
  711. int ret = 0;
  712. dev_info(dev, "Resetting chip\n");
  713. reinit_completion(&data->reset_completion);
  714. ret = mxt_t6_command(data, MXT_COMMAND_RESET, MXT_RESET_VALUE, false);
  715. if (ret)
  716. return ret;
  717. ret = mxt_wait_for_completion(data, &data->reset_completion,
  718. MXT_RESET_TIMEOUT);
  719. if (ret)
  720. return ret;
  721. return 0;
  722. }
  723. static void mxt_update_crc(struct mxt_data *data, u8 cmd, u8 value)
  724. {
  725. /*
  726. * On failure, CRC is set to 0 and config will always be
  727. * downloaded.
  728. */
  729. data->config_crc = 0;
  730. reinit_completion(&data->crc_completion);
  731. mxt_t6_command(data, cmd, value, true);
  732. /*
  733. * Wait for crc message. On failure, CRC is set to 0 and config will
  734. * always be downloaded.
  735. */
  736. mxt_wait_for_completion(data, &data->crc_completion, MXT_CRC_TIMEOUT);
  737. }
  738. static int mxt_check_reg_init(struct mxt_data *data)
  739. {
  740. const struct mxt_platform_data *pdata = data->pdata;
  741. struct mxt_object *object;
  742. struct device *dev = &data->client->dev;
  743. int index = 0;
  744. int i, size;
  745. int ret;
  746. if (!pdata->config) {
  747. dev_dbg(dev, "No cfg data defined, skipping reg init\n");
  748. return 0;
  749. }
  750. mxt_update_crc(data, MXT_COMMAND_REPORTALL, 1);
  751. if (data->config_crc == pdata->config_crc) {
  752. dev_info(dev, "Config CRC 0x%06X: OK\n", data->config_crc);
  753. return 0;
  754. }
  755. dev_info(dev, "Config CRC 0x%06X: does not match 0x%06X\n",
  756. data->config_crc, pdata->config_crc);
  757. for (i = 0; i < data->info.object_num; i++) {
  758. object = data->object_table + i;
  759. if (!mxt_object_writable(object->type))
  760. continue;
  761. size = mxt_obj_size(object) * mxt_obj_instances(object);
  762. if (index + size > pdata->config_length) {
  763. dev_err(dev, "Not enough config data!\n");
  764. return -EINVAL;
  765. }
  766. ret = __mxt_write_reg(data->client, object->start_address,
  767. size, &pdata->config[index]);
  768. if (ret)
  769. return ret;
  770. index += size;
  771. }
  772. mxt_update_crc(data, MXT_COMMAND_BACKUPNV, MXT_BACKUP_VALUE);
  773. ret = mxt_soft_reset(data);
  774. if (ret)
  775. return ret;
  776. dev_info(dev, "Config successfully updated\n");
  777. return 0;
  778. }
  779. static int mxt_make_highchg(struct mxt_data *data)
  780. {
  781. struct device *dev = &data->client->dev;
  782. struct mxt_message message;
  783. int count = 10;
  784. int error;
  785. /* Read dummy message to make high CHG pin */
  786. do {
  787. error = mxt_read_message(data, &message);
  788. if (error)
  789. return error;
  790. } while (message.reportid != 0xff && --count);
  791. if (!count) {
  792. dev_err(dev, "CHG pin isn't cleared\n");
  793. return -EBUSY;
  794. }
  795. return 0;
  796. }
  797. static int mxt_get_info(struct mxt_data *data)
  798. {
  799. struct i2c_client *client = data->client;
  800. struct mxt_info *info = &data->info;
  801. int error;
  802. /* Read 7-byte info block starting at address 0 */
  803. error = __mxt_read_reg(client, MXT_INFO, sizeof(*info), info);
  804. if (error)
  805. return error;
  806. return 0;
  807. }
  808. static int mxt_get_object_table(struct mxt_data *data)
  809. {
  810. struct i2c_client *client = data->client;
  811. size_t table_size;
  812. int error;
  813. int i;
  814. u8 reportid;
  815. table_size = data->info.object_num * sizeof(struct mxt_object);
  816. error = __mxt_read_reg(client, MXT_OBJECT_START, table_size,
  817. data->object_table);
  818. if (error)
  819. return error;
  820. /* Valid Report IDs start counting from 1 */
  821. reportid = 1;
  822. for (i = 0; i < data->info.object_num; i++) {
  823. struct mxt_object *object = data->object_table + i;
  824. u8 min_id, max_id;
  825. le16_to_cpus(&object->start_address);
  826. if (object->num_report_ids) {
  827. min_id = reportid;
  828. reportid += object->num_report_ids *
  829. mxt_obj_instances(object);
  830. max_id = reportid - 1;
  831. } else {
  832. min_id = 0;
  833. max_id = 0;
  834. }
  835. dev_dbg(&data->client->dev,
  836. "T%u Start:%u Size:%zu Instances:%zu Report IDs:%u-%u\n",
  837. object->type, object->start_address,
  838. mxt_obj_size(object), mxt_obj_instances(object),
  839. min_id, max_id);
  840. switch (object->type) {
  841. case MXT_GEN_COMMAND_T6:
  842. data->T6_reportid = min_id;
  843. data->T6_address = object->start_address;
  844. break;
  845. case MXT_TOUCH_MULTI_T9:
  846. data->T9_reportid_min = min_id;
  847. data->T9_reportid_max = max_id;
  848. break;
  849. case MXT_SPT_GPIOPWM_T19:
  850. data->T19_reportid = min_id;
  851. break;
  852. }
  853. }
  854. return 0;
  855. }
  856. static void mxt_free_object_table(struct mxt_data *data)
  857. {
  858. kfree(data->object_table);
  859. data->object_table = NULL;
  860. data->T6_reportid = 0;
  861. data->T9_reportid_min = 0;
  862. data->T9_reportid_max = 0;
  863. data->T19_reportid = 0;
  864. }
  865. static int mxt_read_t9_resolution(struct mxt_data *data)
  866. {
  867. struct i2c_client *client = data->client;
  868. int error;
  869. struct t9_range range;
  870. unsigned char orient;
  871. struct mxt_object *object;
  872. object = mxt_get_object(data, MXT_TOUCH_MULTI_T9);
  873. if (!object)
  874. return -EINVAL;
  875. error = __mxt_read_reg(client,
  876. object->start_address + MXT_T9_RANGE,
  877. sizeof(range), &range);
  878. if (error)
  879. return error;
  880. le16_to_cpus(&range.x);
  881. le16_to_cpus(&range.y);
  882. error = __mxt_read_reg(client,
  883. object->start_address + MXT_T9_ORIENT,
  884. 1, &orient);
  885. if (error)
  886. return error;
  887. /* Handle default values */
  888. if (range.x == 0)
  889. range.x = 1023;
  890. if (range.y == 0)
  891. range.y = 1023;
  892. if (orient & MXT_T9_ORIENT_SWITCH) {
  893. data->max_x = range.y;
  894. data->max_y = range.x;
  895. } else {
  896. data->max_x = range.x;
  897. data->max_y = range.y;
  898. }
  899. dev_dbg(&client->dev,
  900. "Touchscreen size X%uY%u\n", data->max_x, data->max_y);
  901. return 0;
  902. }
  903. static int mxt_initialize(struct mxt_data *data)
  904. {
  905. struct i2c_client *client = data->client;
  906. struct mxt_info *info = &data->info;
  907. int error;
  908. error = mxt_get_info(data);
  909. if (error)
  910. return error;
  911. data->object_table = kcalloc(info->object_num,
  912. sizeof(struct mxt_object),
  913. GFP_KERNEL);
  914. if (!data->object_table) {
  915. dev_err(&client->dev, "Failed to allocate memory\n");
  916. return -ENOMEM;
  917. }
  918. /* Get object table information */
  919. error = mxt_get_object_table(data);
  920. if (error) {
  921. dev_err(&client->dev, "Error %d reading object table\n", error);
  922. goto err_free_object_table;
  923. }
  924. /* Check register init values */
  925. error = mxt_check_reg_init(data);
  926. if (error) {
  927. dev_err(&client->dev, "Error %d initializing configuration\n",
  928. error);
  929. goto err_free_object_table;
  930. }
  931. error = mxt_read_t9_resolution(data);
  932. if (error) {
  933. dev_err(&client->dev, "Failed to initialize T9 resolution\n");
  934. goto err_free_object_table;
  935. }
  936. dev_info(&client->dev,
  937. "Family: %u Variant: %u Firmware V%u.%u.%02X Objects: %u\n",
  938. info->family_id, info->variant_id, info->version >> 4,
  939. info->version & 0xf, info->build, info->object_num);
  940. return 0;
  941. err_free_object_table:
  942. mxt_free_object_table(data);
  943. return error;
  944. }
  945. /* Firmware Version is returned as Major.Minor.Build */
  946. static ssize_t mxt_fw_version_show(struct device *dev,
  947. struct device_attribute *attr, char *buf)
  948. {
  949. struct mxt_data *data = dev_get_drvdata(dev);
  950. struct mxt_info *info = &data->info;
  951. return scnprintf(buf, PAGE_SIZE, "%u.%u.%02X\n",
  952. info->version >> 4, info->version & 0xf, info->build);
  953. }
  954. /* Hardware Version is returned as FamilyID.VariantID */
  955. static ssize_t mxt_hw_version_show(struct device *dev,
  956. struct device_attribute *attr, char *buf)
  957. {
  958. struct mxt_data *data = dev_get_drvdata(dev);
  959. struct mxt_info *info = &data->info;
  960. return scnprintf(buf, PAGE_SIZE, "%u.%u\n",
  961. info->family_id, info->variant_id);
  962. }
  963. static ssize_t mxt_show_instance(char *buf, int count,
  964. struct mxt_object *object, int instance,
  965. const u8 *val)
  966. {
  967. int i;
  968. if (mxt_obj_instances(object) > 1)
  969. count += scnprintf(buf + count, PAGE_SIZE - count,
  970. "Instance %u\n", instance);
  971. for (i = 0; i < mxt_obj_size(object); i++)
  972. count += scnprintf(buf + count, PAGE_SIZE - count,
  973. "\t[%2u]: %02x (%d)\n", i, val[i], val[i]);
  974. count += scnprintf(buf + count, PAGE_SIZE - count, "\n");
  975. return count;
  976. }
  977. static ssize_t mxt_object_show(struct device *dev,
  978. struct device_attribute *attr, char *buf)
  979. {
  980. struct mxt_data *data = dev_get_drvdata(dev);
  981. struct mxt_object *object;
  982. int count = 0;
  983. int i, j;
  984. int error;
  985. u8 *obuf;
  986. /* Pre-allocate buffer large enough to hold max sized object. */
  987. obuf = kmalloc(256, GFP_KERNEL);
  988. if (!obuf)
  989. return -ENOMEM;
  990. error = 0;
  991. for (i = 0; i < data->info.object_num; i++) {
  992. object = data->object_table + i;
  993. if (!mxt_object_readable(object->type))
  994. continue;
  995. count += scnprintf(buf + count, PAGE_SIZE - count,
  996. "T%u:\n", object->type);
  997. for (j = 0; j < mxt_obj_instances(object); j++) {
  998. u16 size = mxt_obj_size(object);
  999. u16 addr = object->start_address + j * size;
  1000. error = __mxt_read_reg(data->client, addr, size, obuf);
  1001. if (error)
  1002. goto done;
  1003. count = mxt_show_instance(buf, count, object, j, obuf);
  1004. }
  1005. }
  1006. done:
  1007. kfree(obuf);
  1008. return error ?: count;
  1009. }
  1010. static int mxt_check_firmware_format(struct device *dev,
  1011. const struct firmware *fw)
  1012. {
  1013. unsigned int pos = 0;
  1014. char c;
  1015. while (pos < fw->size) {
  1016. c = *(fw->data + pos);
  1017. if (c < '0' || (c > '9' && c < 'A') || c > 'F')
  1018. return 0;
  1019. pos++;
  1020. }
  1021. /*
  1022. * To convert file try:
  1023. * xxd -r -p mXTXXX__APP_VX-X-XX.enc > maxtouch.fw
  1024. */
  1025. dev_err(dev, "Aborting: firmware file must be in binary format\n");
  1026. return -EINVAL;
  1027. }
  1028. static int mxt_load_fw(struct device *dev, const char *fn)
  1029. {
  1030. struct mxt_data *data = dev_get_drvdata(dev);
  1031. const struct firmware *fw = NULL;
  1032. unsigned int frame_size;
  1033. unsigned int pos = 0;
  1034. unsigned int retry = 0;
  1035. unsigned int frame = 0;
  1036. int ret;
  1037. ret = request_firmware(&fw, fn, dev);
  1038. if (ret) {
  1039. dev_err(dev, "Unable to open firmware %s\n", fn);
  1040. return ret;
  1041. }
  1042. /* Check for incorrect enc file */
  1043. ret = mxt_check_firmware_format(dev, fw);
  1044. if (ret)
  1045. goto release_firmware;
  1046. ret = mxt_lookup_bootloader_address(data);
  1047. if (ret)
  1048. goto release_firmware;
  1049. /* Change to the bootloader mode */
  1050. data->in_bootloader = true;
  1051. ret = mxt_t6_command(data, MXT_COMMAND_RESET, MXT_BOOT_VALUE, false);
  1052. if (ret)
  1053. goto release_firmware;
  1054. msleep(MXT_RESET_TIME);
  1055. reinit_completion(&data->bl_completion);
  1056. ret = mxt_check_bootloader(data, MXT_WAITING_BOOTLOAD_CMD);
  1057. if (ret)
  1058. goto disable_irq;
  1059. /* Unlock bootloader */
  1060. mxt_unlock_bootloader(data);
  1061. while (pos < fw->size) {
  1062. ret = mxt_check_bootloader(data, MXT_WAITING_FRAME_DATA);
  1063. if (ret)
  1064. goto disable_irq;
  1065. frame_size = ((*(fw->data + pos) << 8) | *(fw->data + pos + 1));
  1066. /* Take account of CRC bytes */
  1067. frame_size += 2;
  1068. /* Write one frame to device */
  1069. ret = mxt_bootloader_write(data, fw->data + pos, frame_size);
  1070. if (ret)
  1071. goto disable_irq;
  1072. ret = mxt_check_bootloader(data, MXT_FRAME_CRC_PASS);
  1073. if (ret) {
  1074. retry++;
  1075. /* Back off by 20ms per retry */
  1076. msleep(retry * 20);
  1077. if (retry > 20) {
  1078. dev_err(dev, "Retry count exceeded\n");
  1079. goto disable_irq;
  1080. }
  1081. } else {
  1082. retry = 0;
  1083. pos += frame_size;
  1084. frame++;
  1085. }
  1086. if (frame % 50 == 0)
  1087. dev_dbg(dev, "Sent %d frames, %d/%zd bytes\n",
  1088. frame, pos, fw->size);
  1089. }
  1090. /* Wait for flash. */
  1091. ret = mxt_wait_for_completion(data, &data->bl_completion,
  1092. MXT_FW_RESET_TIME);
  1093. if (ret)
  1094. goto disable_irq;
  1095. dev_dbg(dev, "Sent %d frames, %d bytes\n", frame, pos);
  1096. /*
  1097. * Wait for device to reset. Some bootloader versions do not assert
  1098. * the CHG line after bootloading has finished, so ignore potential
  1099. * errors.
  1100. */
  1101. mxt_wait_for_completion(data, &data->bl_completion, MXT_FW_RESET_TIME);
  1102. data->in_bootloader = false;
  1103. disable_irq:
  1104. disable_irq(data->irq);
  1105. release_firmware:
  1106. release_firmware(fw);
  1107. return ret;
  1108. }
  1109. static ssize_t mxt_update_fw_store(struct device *dev,
  1110. struct device_attribute *attr,
  1111. const char *buf, size_t count)
  1112. {
  1113. struct mxt_data *data = dev_get_drvdata(dev);
  1114. int error;
  1115. error = mxt_load_fw(dev, MXT_FW_NAME);
  1116. if (error) {
  1117. dev_err(dev, "The firmware update failed(%d)\n", error);
  1118. count = error;
  1119. } else {
  1120. dev_info(dev, "The firmware update succeeded\n");
  1121. mxt_free_object_table(data);
  1122. mxt_initialize(data);
  1123. enable_irq(data->irq);
  1124. error = mxt_make_highchg(data);
  1125. if (error)
  1126. return error;
  1127. }
  1128. return count;
  1129. }
  1130. static DEVICE_ATTR(fw_version, S_IRUGO, mxt_fw_version_show, NULL);
  1131. static DEVICE_ATTR(hw_version, S_IRUGO, mxt_hw_version_show, NULL);
  1132. static DEVICE_ATTR(object, S_IRUGO, mxt_object_show, NULL);
  1133. static DEVICE_ATTR(update_fw, S_IWUSR, NULL, mxt_update_fw_store);
  1134. static struct attribute *mxt_attrs[] = {
  1135. &dev_attr_fw_version.attr,
  1136. &dev_attr_hw_version.attr,
  1137. &dev_attr_object.attr,
  1138. &dev_attr_update_fw.attr,
  1139. NULL
  1140. };
  1141. static const struct attribute_group mxt_attr_group = {
  1142. .attrs = mxt_attrs,
  1143. };
  1144. static void mxt_start(struct mxt_data *data)
  1145. {
  1146. /* Touch enable */
  1147. mxt_write_object(data,
  1148. MXT_TOUCH_MULTI_T9, MXT_TOUCH_CTRL, 0x83);
  1149. }
  1150. static void mxt_stop(struct mxt_data *data)
  1151. {
  1152. /* Touch disable */
  1153. mxt_write_object(data,
  1154. MXT_TOUCH_MULTI_T9, MXT_TOUCH_CTRL, 0);
  1155. }
  1156. static int mxt_input_open(struct input_dev *dev)
  1157. {
  1158. struct mxt_data *data = input_get_drvdata(dev);
  1159. mxt_start(data);
  1160. return 0;
  1161. }
  1162. static void mxt_input_close(struct input_dev *dev)
  1163. {
  1164. struct mxt_data *data = input_get_drvdata(dev);
  1165. mxt_stop(data);
  1166. }
  1167. static int mxt_probe(struct i2c_client *client,
  1168. const struct i2c_device_id *id)
  1169. {
  1170. const struct mxt_platform_data *pdata = dev_get_platdata(&client->dev);
  1171. struct mxt_data *data;
  1172. struct input_dev *input_dev;
  1173. int error;
  1174. unsigned int num_mt_slots;
  1175. unsigned int mt_flags = 0;
  1176. int i;
  1177. if (!pdata)
  1178. return -EINVAL;
  1179. data = kzalloc(sizeof(struct mxt_data), GFP_KERNEL);
  1180. input_dev = input_allocate_device();
  1181. if (!data || !input_dev) {
  1182. dev_err(&client->dev, "Failed to allocate memory\n");
  1183. error = -ENOMEM;
  1184. goto err_free_mem;
  1185. }
  1186. input_dev->name = "Atmel maXTouch Touchscreen";
  1187. snprintf(data->phys, sizeof(data->phys), "i2c-%u-%04x/input0",
  1188. client->adapter->nr, client->addr);
  1189. input_dev->phys = data->phys;
  1190. input_dev->id.bustype = BUS_I2C;
  1191. input_dev->dev.parent = &client->dev;
  1192. input_dev->open = mxt_input_open;
  1193. input_dev->close = mxt_input_close;
  1194. data->client = client;
  1195. data->input_dev = input_dev;
  1196. data->pdata = pdata;
  1197. data->irq = client->irq;
  1198. init_completion(&data->bl_completion);
  1199. init_completion(&data->reset_completion);
  1200. init_completion(&data->crc_completion);
  1201. error = mxt_initialize(data);
  1202. if (error)
  1203. goto err_free_mem;
  1204. __set_bit(EV_ABS, input_dev->evbit);
  1205. __set_bit(EV_KEY, input_dev->evbit);
  1206. __set_bit(BTN_TOUCH, input_dev->keybit);
  1207. if (pdata->t19_num_keys) {
  1208. __set_bit(INPUT_PROP_BUTTONPAD, input_dev->propbit);
  1209. for (i = 0; i < pdata->t19_num_keys; i++)
  1210. if (pdata->t19_keymap[i] != KEY_RESERVED)
  1211. input_set_capability(input_dev, EV_KEY,
  1212. pdata->t19_keymap[i]);
  1213. mt_flags |= INPUT_MT_POINTER;
  1214. input_abs_set_res(input_dev, ABS_X, MXT_PIXELS_PER_MM);
  1215. input_abs_set_res(input_dev, ABS_Y, MXT_PIXELS_PER_MM);
  1216. input_abs_set_res(input_dev, ABS_MT_POSITION_X,
  1217. MXT_PIXELS_PER_MM);
  1218. input_abs_set_res(input_dev, ABS_MT_POSITION_Y,
  1219. MXT_PIXELS_PER_MM);
  1220. input_dev->name = "Atmel maXTouch Touchpad";
  1221. }
  1222. /* For single touch */
  1223. input_set_abs_params(input_dev, ABS_X,
  1224. 0, data->max_x, 0, 0);
  1225. input_set_abs_params(input_dev, ABS_Y,
  1226. 0, data->max_y, 0, 0);
  1227. input_set_abs_params(input_dev, ABS_PRESSURE,
  1228. 0, 255, 0, 0);
  1229. /* For multi touch */
  1230. num_mt_slots = data->T9_reportid_max - data->T9_reportid_min + 1;
  1231. error = input_mt_init_slots(input_dev, num_mt_slots, mt_flags);
  1232. if (error)
  1233. goto err_free_object;
  1234. input_set_abs_params(input_dev, ABS_MT_TOUCH_MAJOR,
  1235. 0, MXT_MAX_AREA, 0, 0);
  1236. input_set_abs_params(input_dev, ABS_MT_POSITION_X,
  1237. 0, data->max_x, 0, 0);
  1238. input_set_abs_params(input_dev, ABS_MT_POSITION_Y,
  1239. 0, data->max_y, 0, 0);
  1240. input_set_abs_params(input_dev, ABS_MT_PRESSURE,
  1241. 0, 255, 0, 0);
  1242. input_set_drvdata(input_dev, data);
  1243. i2c_set_clientdata(client, data);
  1244. error = request_threaded_irq(client->irq, NULL, mxt_interrupt,
  1245. pdata->irqflags | IRQF_ONESHOT,
  1246. client->name, data);
  1247. if (error) {
  1248. dev_err(&client->dev, "Failed to register interrupt\n");
  1249. goto err_free_object;
  1250. }
  1251. error = mxt_make_highchg(data);
  1252. if (error)
  1253. goto err_free_irq;
  1254. error = input_register_device(input_dev);
  1255. if (error) {
  1256. dev_err(&client->dev, "Error %d registering input device\n",
  1257. error);
  1258. goto err_free_irq;
  1259. }
  1260. error = sysfs_create_group(&client->dev.kobj, &mxt_attr_group);
  1261. if (error) {
  1262. dev_err(&client->dev, "Failure %d creating sysfs group\n",
  1263. error);
  1264. goto err_unregister_device;
  1265. }
  1266. return 0;
  1267. err_unregister_device:
  1268. input_unregister_device(input_dev);
  1269. input_dev = NULL;
  1270. err_free_irq:
  1271. free_irq(client->irq, data);
  1272. err_free_object:
  1273. kfree(data->object_table);
  1274. err_free_mem:
  1275. input_free_device(input_dev);
  1276. kfree(data);
  1277. return error;
  1278. }
  1279. static int mxt_remove(struct i2c_client *client)
  1280. {
  1281. struct mxt_data *data = i2c_get_clientdata(client);
  1282. sysfs_remove_group(&client->dev.kobj, &mxt_attr_group);
  1283. free_irq(data->irq, data);
  1284. input_unregister_device(data->input_dev);
  1285. kfree(data->object_table);
  1286. kfree(data);
  1287. return 0;
  1288. }
  1289. #ifdef CONFIG_PM_SLEEP
  1290. static int mxt_suspend(struct device *dev)
  1291. {
  1292. struct i2c_client *client = to_i2c_client(dev);
  1293. struct mxt_data *data = i2c_get_clientdata(client);
  1294. struct input_dev *input_dev = data->input_dev;
  1295. mutex_lock(&input_dev->mutex);
  1296. if (input_dev->users)
  1297. mxt_stop(data);
  1298. mutex_unlock(&input_dev->mutex);
  1299. return 0;
  1300. }
  1301. static int mxt_resume(struct device *dev)
  1302. {
  1303. struct i2c_client *client = to_i2c_client(dev);
  1304. struct mxt_data *data = i2c_get_clientdata(client);
  1305. struct input_dev *input_dev = data->input_dev;
  1306. mxt_soft_reset(data);
  1307. mutex_lock(&input_dev->mutex);
  1308. if (input_dev->users)
  1309. mxt_start(data);
  1310. mutex_unlock(&input_dev->mutex);
  1311. return 0;
  1312. }
  1313. #endif
  1314. static SIMPLE_DEV_PM_OPS(mxt_pm_ops, mxt_suspend, mxt_resume);
  1315. static const struct i2c_device_id mxt_id[] = {
  1316. { "qt602240_ts", 0 },
  1317. { "atmel_mxt_ts", 0 },
  1318. { "atmel_mxt_tp", 0 },
  1319. { "mXT224", 0 },
  1320. { }
  1321. };
  1322. MODULE_DEVICE_TABLE(i2c, mxt_id);
  1323. static struct i2c_driver mxt_driver = {
  1324. .driver = {
  1325. .name = "atmel_mxt_ts",
  1326. .owner = THIS_MODULE,
  1327. .pm = &mxt_pm_ops,
  1328. },
  1329. .probe = mxt_probe,
  1330. .remove = mxt_remove,
  1331. .id_table = mxt_id,
  1332. };
  1333. module_i2c_driver(mxt_driver);
  1334. /* Module information */
  1335. MODULE_AUTHOR("Joonyoung Shim <jy0922.shim@samsung.com>");
  1336. MODULE_DESCRIPTION("Atmel maXTouch Touchscreen driver");
  1337. MODULE_LICENSE("GPL");