usbtouchscreen.c 45 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /******************************************************************************
  3. * usbtouchscreen.c
  4. * Driver for USB Touchscreens, supporting those devices:
  5. * - eGalax Touchkit
  6. * includes eTurboTouch CT-410/510/700
  7. * - 3M/Microtouch EX II series
  8. * - ITM
  9. * - PanJit TouchSet
  10. * - eTurboTouch
  11. * - Gunze AHL61
  12. * - DMC TSC-10/25
  13. * - IRTOUCHSYSTEMS/UNITOP
  14. * - IdealTEK URTC1000
  15. * - General Touch
  16. * - GoTop Super_Q2/GogoPen/PenPower tablets
  17. * - JASTEC USB touch controller/DigiTech DTR-02U
  18. * - Zytronic capacitive touchscreen
  19. * - NEXIO/iNexio
  20. * - Elo TouchSystems 2700 IntelliTouch
  21. * - EasyTouch USB Dual/Multi touch controller from Data Modul
  22. *
  23. * Copyright (C) 2004-2007 by Daniel Ritz <[email protected]>
  24. * Copyright (C) by Todd E. Johnson (mtouchusb.c)
  25. *
  26. * Driver is based on touchkitusb.c
  27. * - ITM parts are from itmtouch.c
  28. * - 3M parts are from mtouchusb.c
  29. * - PanJit parts are from an unmerged driver by Lanslott Gish
  30. * - DMC TSC 10/25 are from Holger Schurig, with ideas from an unmerged
  31. * driver from Marius Vollmer
  32. *
  33. *****************************************************************************/
  34. //#define DEBUG
  35. #include <linux/kernel.h>
  36. #include <linux/slab.h>
  37. #include <linux/input.h>
  38. #include <linux/module.h>
  39. #include <linux/usb.h>
  40. #include <linux/usb/input.h>
  41. #include <linux/hid.h>
  42. #include <linux/mutex.h>
  43. static bool swap_xy;
  44. module_param(swap_xy, bool, 0644);
  45. MODULE_PARM_DESC(swap_xy, "If set X and Y axes are swapped.");
  46. static bool hwcalib_xy;
  47. module_param(hwcalib_xy, bool, 0644);
  48. MODULE_PARM_DESC(hwcalib_xy, "If set hw-calibrated X/Y are used if available");
  49. /* device specifc data/functions */
  50. struct usbtouch_usb;
  51. struct usbtouch_device_info {
  52. int min_xc, max_xc;
  53. int min_yc, max_yc;
  54. int min_press, max_press;
  55. int rept_size;
  56. /*
  57. * Always service the USB devices irq not just when the input device is
  58. * open. This is useful when devices have a watchdog which prevents us
  59. * from periodically polling the device. Leave this unset unless your
  60. * touchscreen device requires it, as it does consume more of the USB
  61. * bandwidth.
  62. */
  63. bool irq_always;
  64. void (*process_pkt) (struct usbtouch_usb *usbtouch, unsigned char *pkt, int len);
  65. /*
  66. * used to get the packet len. possible return values:
  67. * > 0: packet len
  68. * = 0: skip one byte
  69. * < 0: -return value more bytes needed
  70. */
  71. int (*get_pkt_len) (unsigned char *pkt, int len);
  72. int (*read_data) (struct usbtouch_usb *usbtouch, unsigned char *pkt);
  73. int (*alloc) (struct usbtouch_usb *usbtouch);
  74. int (*init) (struct usbtouch_usb *usbtouch);
  75. void (*exit) (struct usbtouch_usb *usbtouch);
  76. };
  77. /* a usbtouch device */
  78. struct usbtouch_usb {
  79. unsigned char *data;
  80. dma_addr_t data_dma;
  81. int data_size;
  82. unsigned char *buffer;
  83. int buf_len;
  84. struct urb *irq;
  85. struct usb_interface *interface;
  86. struct input_dev *input;
  87. struct usbtouch_device_info *type;
  88. struct mutex pm_mutex; /* serialize access to open/suspend */
  89. bool is_open;
  90. char name[128];
  91. char phys[64];
  92. void *priv;
  93. int x, y;
  94. int touch, press;
  95. };
  96. /* device types */
  97. enum {
  98. DEVTYPE_IGNORE = -1,
  99. DEVTYPE_EGALAX,
  100. DEVTYPE_PANJIT,
  101. DEVTYPE_3M,
  102. DEVTYPE_ITM,
  103. DEVTYPE_ETURBO,
  104. DEVTYPE_GUNZE,
  105. DEVTYPE_DMC_TSC10,
  106. DEVTYPE_IRTOUCH,
  107. DEVTYPE_IRTOUCH_HIRES,
  108. DEVTYPE_IDEALTEK,
  109. DEVTYPE_GENERAL_TOUCH,
  110. DEVTYPE_GOTOP,
  111. DEVTYPE_JASTEC,
  112. DEVTYPE_E2I,
  113. DEVTYPE_ZYTRONIC,
  114. DEVTYPE_TC45USB,
  115. DEVTYPE_NEXIO,
  116. DEVTYPE_ELO,
  117. DEVTYPE_ETOUCH,
  118. };
  119. #define USB_DEVICE_HID_CLASS(vend, prod) \
  120. .match_flags = USB_DEVICE_ID_MATCH_INT_CLASS \
  121. | USB_DEVICE_ID_MATCH_DEVICE, \
  122. .idVendor = (vend), \
  123. .idProduct = (prod), \
  124. .bInterfaceClass = USB_INTERFACE_CLASS_HID
  125. static const struct usb_device_id usbtouch_devices[] = {
  126. #ifdef CONFIG_TOUCHSCREEN_USB_EGALAX
  127. /* ignore the HID capable devices, handled by usbhid */
  128. {USB_DEVICE_HID_CLASS(0x0eef, 0x0001), .driver_info = DEVTYPE_IGNORE},
  129. {USB_DEVICE_HID_CLASS(0x0eef, 0x0002), .driver_info = DEVTYPE_IGNORE},
  130. /* normal device IDs */
  131. {USB_DEVICE(0x3823, 0x0001), .driver_info = DEVTYPE_EGALAX},
  132. {USB_DEVICE(0x3823, 0x0002), .driver_info = DEVTYPE_EGALAX},
  133. {USB_DEVICE(0x0123, 0x0001), .driver_info = DEVTYPE_EGALAX},
  134. {USB_DEVICE(0x0eef, 0x0001), .driver_info = DEVTYPE_EGALAX},
  135. {USB_DEVICE(0x0eef, 0x0002), .driver_info = DEVTYPE_EGALAX},
  136. {USB_DEVICE(0x1234, 0x0001), .driver_info = DEVTYPE_EGALAX},
  137. {USB_DEVICE(0x1234, 0x0002), .driver_info = DEVTYPE_EGALAX},
  138. #endif
  139. #ifdef CONFIG_TOUCHSCREEN_USB_PANJIT
  140. {USB_DEVICE(0x134c, 0x0001), .driver_info = DEVTYPE_PANJIT},
  141. {USB_DEVICE(0x134c, 0x0002), .driver_info = DEVTYPE_PANJIT},
  142. {USB_DEVICE(0x134c, 0x0003), .driver_info = DEVTYPE_PANJIT},
  143. {USB_DEVICE(0x134c, 0x0004), .driver_info = DEVTYPE_PANJIT},
  144. #endif
  145. #ifdef CONFIG_TOUCHSCREEN_USB_3M
  146. {USB_DEVICE(0x0596, 0x0001), .driver_info = DEVTYPE_3M},
  147. #endif
  148. #ifdef CONFIG_TOUCHSCREEN_USB_ITM
  149. {USB_DEVICE(0x0403, 0xf9e9), .driver_info = DEVTYPE_ITM},
  150. {USB_DEVICE(0x16e3, 0xf9e9), .driver_info = DEVTYPE_ITM},
  151. #endif
  152. #ifdef CONFIG_TOUCHSCREEN_USB_ETURBO
  153. {USB_DEVICE(0x1234, 0x5678), .driver_info = DEVTYPE_ETURBO},
  154. #endif
  155. #ifdef CONFIG_TOUCHSCREEN_USB_GUNZE
  156. {USB_DEVICE(0x0637, 0x0001), .driver_info = DEVTYPE_GUNZE},
  157. #endif
  158. #ifdef CONFIG_TOUCHSCREEN_USB_DMC_TSC10
  159. {USB_DEVICE(0x0afa, 0x03e8), .driver_info = DEVTYPE_DMC_TSC10},
  160. #endif
  161. #ifdef CONFIG_TOUCHSCREEN_USB_IRTOUCH
  162. {USB_DEVICE(0x255e, 0x0001), .driver_info = DEVTYPE_IRTOUCH},
  163. {USB_DEVICE(0x595a, 0x0001), .driver_info = DEVTYPE_IRTOUCH},
  164. {USB_DEVICE(0x6615, 0x0001), .driver_info = DEVTYPE_IRTOUCH},
  165. {USB_DEVICE(0x6615, 0x0012), .driver_info = DEVTYPE_IRTOUCH_HIRES},
  166. #endif
  167. #ifdef CONFIG_TOUCHSCREEN_USB_IDEALTEK
  168. {USB_DEVICE(0x1391, 0x1000), .driver_info = DEVTYPE_IDEALTEK},
  169. #endif
  170. #ifdef CONFIG_TOUCHSCREEN_USB_GENERAL_TOUCH
  171. {USB_DEVICE(0x0dfc, 0x0001), .driver_info = DEVTYPE_GENERAL_TOUCH},
  172. #endif
  173. #ifdef CONFIG_TOUCHSCREEN_USB_GOTOP
  174. {USB_DEVICE(0x08f2, 0x007f), .driver_info = DEVTYPE_GOTOP},
  175. {USB_DEVICE(0x08f2, 0x00ce), .driver_info = DEVTYPE_GOTOP},
  176. {USB_DEVICE(0x08f2, 0x00f4), .driver_info = DEVTYPE_GOTOP},
  177. #endif
  178. #ifdef CONFIG_TOUCHSCREEN_USB_JASTEC
  179. {USB_DEVICE(0x0f92, 0x0001), .driver_info = DEVTYPE_JASTEC},
  180. #endif
  181. #ifdef CONFIG_TOUCHSCREEN_USB_E2I
  182. {USB_DEVICE(0x1ac7, 0x0001), .driver_info = DEVTYPE_E2I},
  183. #endif
  184. #ifdef CONFIG_TOUCHSCREEN_USB_ZYTRONIC
  185. {USB_DEVICE(0x14c8, 0x0003), .driver_info = DEVTYPE_ZYTRONIC},
  186. #endif
  187. #ifdef CONFIG_TOUCHSCREEN_USB_ETT_TC45USB
  188. /* TC5UH */
  189. {USB_DEVICE(0x0664, 0x0309), .driver_info = DEVTYPE_TC45USB},
  190. /* TC4UM */
  191. {USB_DEVICE(0x0664, 0x0306), .driver_info = DEVTYPE_TC45USB},
  192. #endif
  193. #ifdef CONFIG_TOUCHSCREEN_USB_NEXIO
  194. /* data interface only */
  195. {USB_DEVICE_AND_INTERFACE_INFO(0x10f0, 0x2002, 0x0a, 0x00, 0x00),
  196. .driver_info = DEVTYPE_NEXIO},
  197. {USB_DEVICE_AND_INTERFACE_INFO(0x1870, 0x0001, 0x0a, 0x00, 0x00),
  198. .driver_info = DEVTYPE_NEXIO},
  199. #endif
  200. #ifdef CONFIG_TOUCHSCREEN_USB_ELO
  201. {USB_DEVICE(0x04e7, 0x0020), .driver_info = DEVTYPE_ELO},
  202. #endif
  203. #ifdef CONFIG_TOUCHSCREEN_USB_EASYTOUCH
  204. {USB_DEVICE(0x7374, 0x0001), .driver_info = DEVTYPE_ETOUCH},
  205. #endif
  206. {}
  207. };
  208. /*****************************************************************************
  209. * e2i Part
  210. */
  211. #ifdef CONFIG_TOUCHSCREEN_USB_E2I
  212. static int e2i_init(struct usbtouch_usb *usbtouch)
  213. {
  214. int ret;
  215. struct usb_device *udev = interface_to_usbdev(usbtouch->interface);
  216. ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  217. 0x01, 0x02, 0x0000, 0x0081,
  218. NULL, 0, USB_CTRL_SET_TIMEOUT);
  219. dev_dbg(&usbtouch->interface->dev,
  220. "%s - usb_control_msg - E2I_RESET - bytes|err: %d\n",
  221. __func__, ret);
  222. return ret;
  223. }
  224. static int e2i_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  225. {
  226. int tmp = (pkt[0] << 8) | pkt[1];
  227. dev->x = (pkt[2] << 8) | pkt[3];
  228. dev->y = (pkt[4] << 8) | pkt[5];
  229. tmp = tmp - 0xA000;
  230. dev->touch = (tmp > 0);
  231. dev->press = (tmp > 0 ? tmp : 0);
  232. return 1;
  233. }
  234. #endif
  235. /*****************************************************************************
  236. * eGalax part
  237. */
  238. #ifdef CONFIG_TOUCHSCREEN_USB_EGALAX
  239. #ifndef MULTI_PACKET
  240. #define MULTI_PACKET
  241. #endif
  242. #define EGALAX_PKT_TYPE_MASK 0xFE
  243. #define EGALAX_PKT_TYPE_REPT 0x80
  244. #define EGALAX_PKT_TYPE_DIAG 0x0A
  245. static int egalax_init(struct usbtouch_usb *usbtouch)
  246. {
  247. int ret, i;
  248. unsigned char *buf;
  249. struct usb_device *udev = interface_to_usbdev(usbtouch->interface);
  250. /*
  251. * An eGalax diagnostic packet kicks the device into using the right
  252. * protocol. We send a "check active" packet. The response will be
  253. * read later and ignored.
  254. */
  255. buf = kmalloc(3, GFP_KERNEL);
  256. if (!buf)
  257. return -ENOMEM;
  258. buf[0] = EGALAX_PKT_TYPE_DIAG;
  259. buf[1] = 1; /* length */
  260. buf[2] = 'A'; /* command - check active */
  261. for (i = 0; i < 3; i++) {
  262. ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  263. 0,
  264. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  265. 0, 0, buf, 3,
  266. USB_CTRL_SET_TIMEOUT);
  267. if (ret >= 0) {
  268. ret = 0;
  269. break;
  270. }
  271. if (ret != -EPIPE)
  272. break;
  273. }
  274. kfree(buf);
  275. return ret;
  276. }
  277. static int egalax_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  278. {
  279. if ((pkt[0] & EGALAX_PKT_TYPE_MASK) != EGALAX_PKT_TYPE_REPT)
  280. return 0;
  281. dev->x = ((pkt[3] & 0x0F) << 7) | (pkt[4] & 0x7F);
  282. dev->y = ((pkt[1] & 0x0F) << 7) | (pkt[2] & 0x7F);
  283. dev->touch = pkt[0] & 0x01;
  284. return 1;
  285. }
  286. static int egalax_get_pkt_len(unsigned char *buf, int len)
  287. {
  288. switch (buf[0] & EGALAX_PKT_TYPE_MASK) {
  289. case EGALAX_PKT_TYPE_REPT:
  290. return 5;
  291. case EGALAX_PKT_TYPE_DIAG:
  292. if (len < 2)
  293. return -1;
  294. return buf[1] + 2;
  295. }
  296. return 0;
  297. }
  298. #endif
  299. /*****************************************************************************
  300. * EasyTouch part
  301. */
  302. #ifdef CONFIG_TOUCHSCREEN_USB_EASYTOUCH
  303. #ifndef MULTI_PACKET
  304. #define MULTI_PACKET
  305. #endif
  306. #define ETOUCH_PKT_TYPE_MASK 0xFE
  307. #define ETOUCH_PKT_TYPE_REPT 0x80
  308. #define ETOUCH_PKT_TYPE_REPT2 0xB0
  309. #define ETOUCH_PKT_TYPE_DIAG 0x0A
  310. static int etouch_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  311. {
  312. if ((pkt[0] & ETOUCH_PKT_TYPE_MASK) != ETOUCH_PKT_TYPE_REPT &&
  313. (pkt[0] & ETOUCH_PKT_TYPE_MASK) != ETOUCH_PKT_TYPE_REPT2)
  314. return 0;
  315. dev->x = ((pkt[1] & 0x1F) << 7) | (pkt[2] & 0x7F);
  316. dev->y = ((pkt[3] & 0x1F) << 7) | (pkt[4] & 0x7F);
  317. dev->touch = pkt[0] & 0x01;
  318. return 1;
  319. }
  320. static int etouch_get_pkt_len(unsigned char *buf, int len)
  321. {
  322. switch (buf[0] & ETOUCH_PKT_TYPE_MASK) {
  323. case ETOUCH_PKT_TYPE_REPT:
  324. case ETOUCH_PKT_TYPE_REPT2:
  325. return 5;
  326. case ETOUCH_PKT_TYPE_DIAG:
  327. if (len < 2)
  328. return -1;
  329. return buf[1] + 2;
  330. }
  331. return 0;
  332. }
  333. #endif
  334. /*****************************************************************************
  335. * PanJit Part
  336. */
  337. #ifdef CONFIG_TOUCHSCREEN_USB_PANJIT
  338. static int panjit_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  339. {
  340. dev->x = ((pkt[2] & 0x0F) << 8) | pkt[1];
  341. dev->y = ((pkt[4] & 0x0F) << 8) | pkt[3];
  342. dev->touch = pkt[0] & 0x01;
  343. return 1;
  344. }
  345. #endif
  346. /*****************************************************************************
  347. * 3M/Microtouch Part
  348. */
  349. #ifdef CONFIG_TOUCHSCREEN_USB_3M
  350. #define MTOUCHUSB_ASYNC_REPORT 1
  351. #define MTOUCHUSB_RESET 7
  352. #define MTOUCHUSB_REQ_CTRLLR_ID 10
  353. #define MTOUCHUSB_REQ_CTRLLR_ID_LEN 16
  354. static int mtouch_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  355. {
  356. if (hwcalib_xy) {
  357. dev->x = (pkt[4] << 8) | pkt[3];
  358. dev->y = 0xffff - ((pkt[6] << 8) | pkt[5]);
  359. } else {
  360. dev->x = (pkt[8] << 8) | pkt[7];
  361. dev->y = (pkt[10] << 8) | pkt[9];
  362. }
  363. dev->touch = (pkt[2] & 0x40) ? 1 : 0;
  364. return 1;
  365. }
  366. struct mtouch_priv {
  367. u8 fw_rev_major;
  368. u8 fw_rev_minor;
  369. };
  370. static ssize_t mtouch_firmware_rev_show(struct device *dev,
  371. struct device_attribute *attr, char *output)
  372. {
  373. struct usb_interface *intf = to_usb_interface(dev);
  374. struct usbtouch_usb *usbtouch = usb_get_intfdata(intf);
  375. struct mtouch_priv *priv = usbtouch->priv;
  376. return scnprintf(output, PAGE_SIZE, "%1x.%1x\n",
  377. priv->fw_rev_major, priv->fw_rev_minor);
  378. }
  379. static DEVICE_ATTR(firmware_rev, 0444, mtouch_firmware_rev_show, NULL);
  380. static struct attribute *mtouch_attrs[] = {
  381. &dev_attr_firmware_rev.attr,
  382. NULL
  383. };
  384. static const struct attribute_group mtouch_attr_group = {
  385. .attrs = mtouch_attrs,
  386. };
  387. static int mtouch_get_fw_revision(struct usbtouch_usb *usbtouch)
  388. {
  389. struct usb_device *udev = interface_to_usbdev(usbtouch->interface);
  390. struct mtouch_priv *priv = usbtouch->priv;
  391. u8 *buf;
  392. int ret;
  393. buf = kzalloc(MTOUCHUSB_REQ_CTRLLR_ID_LEN, GFP_NOIO);
  394. if (!buf)
  395. return -ENOMEM;
  396. ret = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0),
  397. MTOUCHUSB_REQ_CTRLLR_ID,
  398. USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  399. 0, 0, buf, MTOUCHUSB_REQ_CTRLLR_ID_LEN,
  400. USB_CTRL_SET_TIMEOUT);
  401. if (ret != MTOUCHUSB_REQ_CTRLLR_ID_LEN) {
  402. dev_warn(&usbtouch->interface->dev,
  403. "Failed to read FW rev: %d\n", ret);
  404. ret = ret < 0 ? ret : -EIO;
  405. goto free;
  406. }
  407. priv->fw_rev_major = buf[3];
  408. priv->fw_rev_minor = buf[4];
  409. ret = 0;
  410. free:
  411. kfree(buf);
  412. return ret;
  413. }
  414. static int mtouch_alloc(struct usbtouch_usb *usbtouch)
  415. {
  416. int ret;
  417. usbtouch->priv = kmalloc(sizeof(struct mtouch_priv), GFP_KERNEL);
  418. if (!usbtouch->priv)
  419. return -ENOMEM;
  420. ret = sysfs_create_group(&usbtouch->interface->dev.kobj,
  421. &mtouch_attr_group);
  422. if (ret) {
  423. kfree(usbtouch->priv);
  424. usbtouch->priv = NULL;
  425. return ret;
  426. }
  427. return 0;
  428. }
  429. static int mtouch_init(struct usbtouch_usb *usbtouch)
  430. {
  431. int ret, i;
  432. struct usb_device *udev = interface_to_usbdev(usbtouch->interface);
  433. ret = mtouch_get_fw_revision(usbtouch);
  434. if (ret)
  435. return ret;
  436. ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  437. MTOUCHUSB_RESET,
  438. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  439. 1, 0, NULL, 0, USB_CTRL_SET_TIMEOUT);
  440. dev_dbg(&usbtouch->interface->dev,
  441. "%s - usb_control_msg - MTOUCHUSB_RESET - bytes|err: %d\n",
  442. __func__, ret);
  443. if (ret < 0)
  444. return ret;
  445. msleep(150);
  446. for (i = 0; i < 3; i++) {
  447. ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
  448. MTOUCHUSB_ASYNC_REPORT,
  449. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  450. 1, 1, NULL, 0, USB_CTRL_SET_TIMEOUT);
  451. dev_dbg(&usbtouch->interface->dev,
  452. "%s - usb_control_msg - MTOUCHUSB_ASYNC_REPORT - bytes|err: %d\n",
  453. __func__, ret);
  454. if (ret >= 0)
  455. break;
  456. if (ret != -EPIPE)
  457. return ret;
  458. }
  459. /* Default min/max xy are the raw values, override if using hw-calib */
  460. if (hwcalib_xy) {
  461. input_set_abs_params(usbtouch->input, ABS_X, 0, 0xffff, 0, 0);
  462. input_set_abs_params(usbtouch->input, ABS_Y, 0, 0xffff, 0, 0);
  463. }
  464. return 0;
  465. }
  466. static void mtouch_exit(struct usbtouch_usb *usbtouch)
  467. {
  468. struct mtouch_priv *priv = usbtouch->priv;
  469. sysfs_remove_group(&usbtouch->interface->dev.kobj, &mtouch_attr_group);
  470. kfree(priv);
  471. }
  472. #endif
  473. /*****************************************************************************
  474. * ITM Part
  475. */
  476. #ifdef CONFIG_TOUCHSCREEN_USB_ITM
  477. static int itm_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  478. {
  479. int touch;
  480. /*
  481. * ITM devices report invalid x/y data if not touched.
  482. * if the screen was touched before but is not touched any more
  483. * report touch as 0 with the last valid x/y data once. then stop
  484. * reporting data until touched again.
  485. */
  486. dev->press = ((pkt[2] & 0x01) << 7) | (pkt[5] & 0x7F);
  487. touch = ~pkt[7] & 0x20;
  488. if (!touch) {
  489. if (dev->touch) {
  490. dev->touch = 0;
  491. return 1;
  492. }
  493. return 0;
  494. }
  495. dev->x = ((pkt[0] & 0x1F) << 7) | (pkt[3] & 0x7F);
  496. dev->y = ((pkt[1] & 0x1F) << 7) | (pkt[4] & 0x7F);
  497. dev->touch = touch;
  498. return 1;
  499. }
  500. #endif
  501. /*****************************************************************************
  502. * eTurboTouch part
  503. */
  504. #ifdef CONFIG_TOUCHSCREEN_USB_ETURBO
  505. #ifndef MULTI_PACKET
  506. #define MULTI_PACKET
  507. #endif
  508. static int eturbo_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  509. {
  510. unsigned int shift;
  511. /* packets should start with sync */
  512. if (!(pkt[0] & 0x80))
  513. return 0;
  514. shift = (6 - (pkt[0] & 0x03));
  515. dev->x = ((pkt[3] << 7) | pkt[4]) >> shift;
  516. dev->y = ((pkt[1] << 7) | pkt[2]) >> shift;
  517. dev->touch = (pkt[0] & 0x10) ? 1 : 0;
  518. return 1;
  519. }
  520. static int eturbo_get_pkt_len(unsigned char *buf, int len)
  521. {
  522. if (buf[0] & 0x80)
  523. return 5;
  524. if (buf[0] == 0x01)
  525. return 3;
  526. return 0;
  527. }
  528. #endif
  529. /*****************************************************************************
  530. * Gunze part
  531. */
  532. #ifdef CONFIG_TOUCHSCREEN_USB_GUNZE
  533. static int gunze_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  534. {
  535. if (!(pkt[0] & 0x80) || ((pkt[1] | pkt[2] | pkt[3]) & 0x80))
  536. return 0;
  537. dev->x = ((pkt[0] & 0x1F) << 7) | (pkt[2] & 0x7F);
  538. dev->y = ((pkt[1] & 0x1F) << 7) | (pkt[3] & 0x7F);
  539. dev->touch = pkt[0] & 0x20;
  540. return 1;
  541. }
  542. #endif
  543. /*****************************************************************************
  544. * DMC TSC-10/25 Part
  545. *
  546. * Documentation about the controller and it's protocol can be found at
  547. * http://www.dmccoltd.com/files/controler/tsc10usb_pi_e.pdf
  548. * http://www.dmccoltd.com/files/controler/tsc25_usb_e.pdf
  549. */
  550. #ifdef CONFIG_TOUCHSCREEN_USB_DMC_TSC10
  551. /* supported data rates. currently using 130 */
  552. #define TSC10_RATE_POINT 0x50
  553. #define TSC10_RATE_30 0x40
  554. #define TSC10_RATE_50 0x41
  555. #define TSC10_RATE_80 0x42
  556. #define TSC10_RATE_100 0x43
  557. #define TSC10_RATE_130 0x44
  558. #define TSC10_RATE_150 0x45
  559. /* commands */
  560. #define TSC10_CMD_RESET 0x55
  561. #define TSC10_CMD_RATE 0x05
  562. #define TSC10_CMD_DATA1 0x01
  563. static int dmc_tsc10_init(struct usbtouch_usb *usbtouch)
  564. {
  565. struct usb_device *dev = interface_to_usbdev(usbtouch->interface);
  566. int ret = -ENOMEM;
  567. unsigned char *buf;
  568. buf = kmalloc(2, GFP_NOIO);
  569. if (!buf)
  570. goto err_nobuf;
  571. /* reset */
  572. buf[0] = buf[1] = 0xFF;
  573. ret = usb_control_msg(dev, usb_rcvctrlpipe (dev, 0),
  574. TSC10_CMD_RESET,
  575. USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  576. 0, 0, buf, 2, USB_CTRL_SET_TIMEOUT);
  577. if (ret < 0)
  578. goto err_out;
  579. if (buf[0] != 0x06) {
  580. ret = -ENODEV;
  581. goto err_out;
  582. }
  583. /* TSC-25 data sheet specifies a delay after the RESET command */
  584. msleep(150);
  585. /* set coordinate output rate */
  586. buf[0] = buf[1] = 0xFF;
  587. ret = usb_control_msg(dev, usb_rcvctrlpipe (dev, 0),
  588. TSC10_CMD_RATE,
  589. USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  590. TSC10_RATE_150, 0, buf, 2, USB_CTRL_SET_TIMEOUT);
  591. if (ret < 0)
  592. goto err_out;
  593. if ((buf[0] != 0x06) && (buf[0] != 0x15 || buf[1] != 0x01)) {
  594. ret = -ENODEV;
  595. goto err_out;
  596. }
  597. /* start sending data */
  598. ret = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  599. TSC10_CMD_DATA1,
  600. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  601. 0, 0, NULL, 0, USB_CTRL_SET_TIMEOUT);
  602. err_out:
  603. kfree(buf);
  604. err_nobuf:
  605. return ret;
  606. }
  607. static int dmc_tsc10_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  608. {
  609. dev->x = ((pkt[2] & 0x03) << 8) | pkt[1];
  610. dev->y = ((pkt[4] & 0x03) << 8) | pkt[3];
  611. dev->touch = pkt[0] & 0x01;
  612. return 1;
  613. }
  614. #endif
  615. /*****************************************************************************
  616. * IRTOUCH Part
  617. */
  618. #ifdef CONFIG_TOUCHSCREEN_USB_IRTOUCH
  619. static int irtouch_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  620. {
  621. dev->x = (pkt[3] << 8) | pkt[2];
  622. dev->y = (pkt[5] << 8) | pkt[4];
  623. dev->touch = (pkt[1] & 0x03) ? 1 : 0;
  624. return 1;
  625. }
  626. #endif
  627. /*****************************************************************************
  628. * ET&T TC5UH/TC4UM part
  629. */
  630. #ifdef CONFIG_TOUCHSCREEN_USB_ETT_TC45USB
  631. static int tc45usb_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  632. {
  633. dev->x = ((pkt[2] & 0x0F) << 8) | pkt[1];
  634. dev->y = ((pkt[4] & 0x0F) << 8) | pkt[3];
  635. dev->touch = pkt[0] & 0x01;
  636. return 1;
  637. }
  638. #endif
  639. /*****************************************************************************
  640. * IdealTEK URTC1000 Part
  641. */
  642. #ifdef CONFIG_TOUCHSCREEN_USB_IDEALTEK
  643. #ifndef MULTI_PACKET
  644. #define MULTI_PACKET
  645. #endif
  646. static int idealtek_get_pkt_len(unsigned char *buf, int len)
  647. {
  648. if (buf[0] & 0x80)
  649. return 5;
  650. if (buf[0] == 0x01)
  651. return len;
  652. return 0;
  653. }
  654. static int idealtek_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  655. {
  656. switch (pkt[0] & 0x98) {
  657. case 0x88:
  658. /* touch data in IdealTEK mode */
  659. dev->x = (pkt[1] << 5) | (pkt[2] >> 2);
  660. dev->y = (pkt[3] << 5) | (pkt[4] >> 2);
  661. dev->touch = (pkt[0] & 0x40) ? 1 : 0;
  662. return 1;
  663. case 0x98:
  664. /* touch data in MT emulation mode */
  665. dev->x = (pkt[2] << 5) | (pkt[1] >> 2);
  666. dev->y = (pkt[4] << 5) | (pkt[3] >> 2);
  667. dev->touch = (pkt[0] & 0x40) ? 1 : 0;
  668. return 1;
  669. default:
  670. return 0;
  671. }
  672. }
  673. #endif
  674. /*****************************************************************************
  675. * General Touch Part
  676. */
  677. #ifdef CONFIG_TOUCHSCREEN_USB_GENERAL_TOUCH
  678. static int general_touch_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  679. {
  680. dev->x = (pkt[2] << 8) | pkt[1];
  681. dev->y = (pkt[4] << 8) | pkt[3];
  682. dev->press = pkt[5] & 0xff;
  683. dev->touch = pkt[0] & 0x01;
  684. return 1;
  685. }
  686. #endif
  687. /*****************************************************************************
  688. * GoTop Part
  689. */
  690. #ifdef CONFIG_TOUCHSCREEN_USB_GOTOP
  691. static int gotop_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  692. {
  693. dev->x = ((pkt[1] & 0x38) << 4) | pkt[2];
  694. dev->y = ((pkt[1] & 0x07) << 7) | pkt[3];
  695. dev->touch = pkt[0] & 0x01;
  696. return 1;
  697. }
  698. #endif
  699. /*****************************************************************************
  700. * JASTEC Part
  701. */
  702. #ifdef CONFIG_TOUCHSCREEN_USB_JASTEC
  703. static int jastec_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  704. {
  705. dev->x = ((pkt[0] & 0x3f) << 6) | (pkt[2] & 0x3f);
  706. dev->y = ((pkt[1] & 0x3f) << 6) | (pkt[3] & 0x3f);
  707. dev->touch = (pkt[0] & 0x40) >> 6;
  708. return 1;
  709. }
  710. #endif
  711. /*****************************************************************************
  712. * Zytronic Part
  713. */
  714. #ifdef CONFIG_TOUCHSCREEN_USB_ZYTRONIC
  715. static int zytronic_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  716. {
  717. struct usb_interface *intf = dev->interface;
  718. switch (pkt[0]) {
  719. case 0x3A: /* command response */
  720. dev_dbg(&intf->dev, "%s: Command response %d\n", __func__, pkt[1]);
  721. break;
  722. case 0xC0: /* down */
  723. dev->x = (pkt[1] & 0x7f) | ((pkt[2] & 0x07) << 7);
  724. dev->y = (pkt[3] & 0x7f) | ((pkt[4] & 0x07) << 7);
  725. dev->touch = 1;
  726. dev_dbg(&intf->dev, "%s: down %d,%d\n", __func__, dev->x, dev->y);
  727. return 1;
  728. case 0x80: /* up */
  729. dev->x = (pkt[1] & 0x7f) | ((pkt[2] & 0x07) << 7);
  730. dev->y = (pkt[3] & 0x7f) | ((pkt[4] & 0x07) << 7);
  731. dev->touch = 0;
  732. dev_dbg(&intf->dev, "%s: up %d,%d\n", __func__, dev->x, dev->y);
  733. return 1;
  734. default:
  735. dev_dbg(&intf->dev, "%s: Unknown return %d\n", __func__, pkt[0]);
  736. break;
  737. }
  738. return 0;
  739. }
  740. #endif
  741. /*****************************************************************************
  742. * NEXIO Part
  743. */
  744. #ifdef CONFIG_TOUCHSCREEN_USB_NEXIO
  745. #define NEXIO_TIMEOUT 5000
  746. #define NEXIO_BUFSIZE 1024
  747. #define NEXIO_THRESHOLD 50
  748. struct nexio_priv {
  749. struct urb *ack;
  750. unsigned char *ack_buf;
  751. };
  752. struct nexio_touch_packet {
  753. u8 flags; /* 0xe1 = touch, 0xe1 = release */
  754. __be16 data_len; /* total bytes of touch data */
  755. __be16 x_len; /* bytes for X axis */
  756. __be16 y_len; /* bytes for Y axis */
  757. u8 data[];
  758. } __attribute__ ((packed));
  759. static unsigned char nexio_ack_pkt[2] = { 0xaa, 0x02 };
  760. static unsigned char nexio_init_pkt[4] = { 0x82, 0x04, 0x0a, 0x0f };
  761. static void nexio_ack_complete(struct urb *urb)
  762. {
  763. }
  764. static int nexio_alloc(struct usbtouch_usb *usbtouch)
  765. {
  766. struct nexio_priv *priv;
  767. int ret = -ENOMEM;
  768. usbtouch->priv = kmalloc(sizeof(struct nexio_priv), GFP_KERNEL);
  769. if (!usbtouch->priv)
  770. goto out_buf;
  771. priv = usbtouch->priv;
  772. priv->ack_buf = kmemdup(nexio_ack_pkt, sizeof(nexio_ack_pkt),
  773. GFP_KERNEL);
  774. if (!priv->ack_buf)
  775. goto err_priv;
  776. priv->ack = usb_alloc_urb(0, GFP_KERNEL);
  777. if (!priv->ack) {
  778. dev_dbg(&usbtouch->interface->dev,
  779. "%s - usb_alloc_urb failed: usbtouch->ack\n", __func__);
  780. goto err_ack_buf;
  781. }
  782. return 0;
  783. err_ack_buf:
  784. kfree(priv->ack_buf);
  785. err_priv:
  786. kfree(priv);
  787. out_buf:
  788. return ret;
  789. }
  790. static int nexio_init(struct usbtouch_usb *usbtouch)
  791. {
  792. struct usb_device *dev = interface_to_usbdev(usbtouch->interface);
  793. struct usb_host_interface *interface = usbtouch->interface->cur_altsetting;
  794. struct nexio_priv *priv = usbtouch->priv;
  795. int ret = -ENOMEM;
  796. int actual_len, i;
  797. unsigned char *buf;
  798. char *firmware_ver = NULL, *device_name = NULL;
  799. int input_ep = 0, output_ep = 0;
  800. /* find first input and output endpoint */
  801. for (i = 0; i < interface->desc.bNumEndpoints; i++) {
  802. if (!input_ep &&
  803. usb_endpoint_dir_in(&interface->endpoint[i].desc))
  804. input_ep = interface->endpoint[i].desc.bEndpointAddress;
  805. if (!output_ep &&
  806. usb_endpoint_dir_out(&interface->endpoint[i].desc))
  807. output_ep = interface->endpoint[i].desc.bEndpointAddress;
  808. }
  809. if (!input_ep || !output_ep)
  810. return -ENXIO;
  811. buf = kmalloc(NEXIO_BUFSIZE, GFP_NOIO);
  812. if (!buf)
  813. goto out_buf;
  814. /* two empty reads */
  815. for (i = 0; i < 2; i++) {
  816. ret = usb_bulk_msg(dev, usb_rcvbulkpipe(dev, input_ep),
  817. buf, NEXIO_BUFSIZE, &actual_len,
  818. NEXIO_TIMEOUT);
  819. if (ret < 0)
  820. goto out_buf;
  821. }
  822. /* send init command */
  823. memcpy(buf, nexio_init_pkt, sizeof(nexio_init_pkt));
  824. ret = usb_bulk_msg(dev, usb_sndbulkpipe(dev, output_ep),
  825. buf, sizeof(nexio_init_pkt), &actual_len,
  826. NEXIO_TIMEOUT);
  827. if (ret < 0)
  828. goto out_buf;
  829. /* read replies */
  830. for (i = 0; i < 3; i++) {
  831. memset(buf, 0, NEXIO_BUFSIZE);
  832. ret = usb_bulk_msg(dev, usb_rcvbulkpipe(dev, input_ep),
  833. buf, NEXIO_BUFSIZE, &actual_len,
  834. NEXIO_TIMEOUT);
  835. if (ret < 0 || actual_len < 1 || buf[1] != actual_len)
  836. continue;
  837. switch (buf[0]) {
  838. case 0x83: /* firmware version */
  839. if (!firmware_ver)
  840. firmware_ver = kstrdup(&buf[2], GFP_NOIO);
  841. break;
  842. case 0x84: /* device name */
  843. if (!device_name)
  844. device_name = kstrdup(&buf[2], GFP_NOIO);
  845. break;
  846. }
  847. }
  848. printk(KERN_INFO "Nexio device: %s, firmware version: %s\n",
  849. device_name, firmware_ver);
  850. kfree(firmware_ver);
  851. kfree(device_name);
  852. usb_fill_bulk_urb(priv->ack, dev, usb_sndbulkpipe(dev, output_ep),
  853. priv->ack_buf, sizeof(nexio_ack_pkt),
  854. nexio_ack_complete, usbtouch);
  855. ret = 0;
  856. out_buf:
  857. kfree(buf);
  858. return ret;
  859. }
  860. static void nexio_exit(struct usbtouch_usb *usbtouch)
  861. {
  862. struct nexio_priv *priv = usbtouch->priv;
  863. usb_kill_urb(priv->ack);
  864. usb_free_urb(priv->ack);
  865. kfree(priv->ack_buf);
  866. kfree(priv);
  867. }
  868. static int nexio_read_data(struct usbtouch_usb *usbtouch, unsigned char *pkt)
  869. {
  870. struct device *dev = &usbtouch->interface->dev;
  871. struct nexio_touch_packet *packet = (void *) pkt;
  872. struct nexio_priv *priv = usbtouch->priv;
  873. unsigned int data_len = be16_to_cpu(packet->data_len);
  874. unsigned int x_len = be16_to_cpu(packet->x_len);
  875. unsigned int y_len = be16_to_cpu(packet->y_len);
  876. int x, y, begin_x, begin_y, end_x, end_y, w, h, ret;
  877. /* got touch data? */
  878. if ((pkt[0] & 0xe0) != 0xe0)
  879. return 0;
  880. if (data_len > 0xff)
  881. data_len -= 0x100;
  882. if (x_len > 0xff)
  883. x_len -= 0x80;
  884. /* send ACK */
  885. ret = usb_submit_urb(priv->ack, GFP_ATOMIC);
  886. if (ret)
  887. dev_warn(dev, "Failed to submit ACK URB: %d\n", ret);
  888. if (!usbtouch->type->max_xc) {
  889. usbtouch->type->max_xc = 2 * x_len;
  890. input_set_abs_params(usbtouch->input, ABS_X,
  891. 0, usbtouch->type->max_xc, 0, 0);
  892. usbtouch->type->max_yc = 2 * y_len;
  893. input_set_abs_params(usbtouch->input, ABS_Y,
  894. 0, usbtouch->type->max_yc, 0, 0);
  895. }
  896. /*
  897. * The device reports state of IR sensors on X and Y axes.
  898. * Each byte represents "darkness" percentage (0-100) of one element.
  899. * 17" touchscreen reports only 64 x 52 bytes so the resolution is low.
  900. * This also means that there's a limited multi-touch capability but
  901. * it's disabled (and untested) here as there's no X driver for that.
  902. */
  903. begin_x = end_x = begin_y = end_y = -1;
  904. for (x = 0; x < x_len; x++) {
  905. if (begin_x == -1 && packet->data[x] > NEXIO_THRESHOLD) {
  906. begin_x = x;
  907. continue;
  908. }
  909. if (end_x == -1 && begin_x != -1 && packet->data[x] < NEXIO_THRESHOLD) {
  910. end_x = x - 1;
  911. for (y = x_len; y < data_len; y++) {
  912. if (begin_y == -1 && packet->data[y] > NEXIO_THRESHOLD) {
  913. begin_y = y - x_len;
  914. continue;
  915. }
  916. if (end_y == -1 &&
  917. begin_y != -1 && packet->data[y] < NEXIO_THRESHOLD) {
  918. end_y = y - 1 - x_len;
  919. w = end_x - begin_x;
  920. h = end_y - begin_y;
  921. #if 0
  922. /* multi-touch */
  923. input_report_abs(usbtouch->input,
  924. ABS_MT_TOUCH_MAJOR, max(w,h));
  925. input_report_abs(usbtouch->input,
  926. ABS_MT_TOUCH_MINOR, min(x,h));
  927. input_report_abs(usbtouch->input,
  928. ABS_MT_POSITION_X, 2*begin_x+w);
  929. input_report_abs(usbtouch->input,
  930. ABS_MT_POSITION_Y, 2*begin_y+h);
  931. input_report_abs(usbtouch->input,
  932. ABS_MT_ORIENTATION, w > h);
  933. input_mt_sync(usbtouch->input);
  934. #endif
  935. /* single touch */
  936. usbtouch->x = 2 * begin_x + w;
  937. usbtouch->y = 2 * begin_y + h;
  938. usbtouch->touch = packet->flags & 0x01;
  939. begin_y = end_y = -1;
  940. return 1;
  941. }
  942. }
  943. begin_x = end_x = -1;
  944. }
  945. }
  946. return 0;
  947. }
  948. #endif
  949. /*****************************************************************************
  950. * ELO part
  951. */
  952. #ifdef CONFIG_TOUCHSCREEN_USB_ELO
  953. static int elo_read_data(struct usbtouch_usb *dev, unsigned char *pkt)
  954. {
  955. dev->x = (pkt[3] << 8) | pkt[2];
  956. dev->y = (pkt[5] << 8) | pkt[4];
  957. dev->touch = pkt[6] > 0;
  958. dev->press = pkt[6];
  959. return 1;
  960. }
  961. #endif
  962. /*****************************************************************************
  963. * the different device descriptors
  964. */
  965. #ifdef MULTI_PACKET
  966. static void usbtouch_process_multi(struct usbtouch_usb *usbtouch,
  967. unsigned char *pkt, int len);
  968. #endif
  969. static struct usbtouch_device_info usbtouch_dev_info[] = {
  970. #ifdef CONFIG_TOUCHSCREEN_USB_ELO
  971. [DEVTYPE_ELO] = {
  972. .min_xc = 0x0,
  973. .max_xc = 0x0fff,
  974. .min_yc = 0x0,
  975. .max_yc = 0x0fff,
  976. .max_press = 0xff,
  977. .rept_size = 8,
  978. .read_data = elo_read_data,
  979. },
  980. #endif
  981. #ifdef CONFIG_TOUCHSCREEN_USB_EGALAX
  982. [DEVTYPE_EGALAX] = {
  983. .min_xc = 0x0,
  984. .max_xc = 0x07ff,
  985. .min_yc = 0x0,
  986. .max_yc = 0x07ff,
  987. .rept_size = 16,
  988. .process_pkt = usbtouch_process_multi,
  989. .get_pkt_len = egalax_get_pkt_len,
  990. .read_data = egalax_read_data,
  991. .init = egalax_init,
  992. },
  993. #endif
  994. #ifdef CONFIG_TOUCHSCREEN_USB_PANJIT
  995. [DEVTYPE_PANJIT] = {
  996. .min_xc = 0x0,
  997. .max_xc = 0x0fff,
  998. .min_yc = 0x0,
  999. .max_yc = 0x0fff,
  1000. .rept_size = 8,
  1001. .read_data = panjit_read_data,
  1002. },
  1003. #endif
  1004. #ifdef CONFIG_TOUCHSCREEN_USB_3M
  1005. [DEVTYPE_3M] = {
  1006. .min_xc = 0x0,
  1007. .max_xc = 0x4000,
  1008. .min_yc = 0x0,
  1009. .max_yc = 0x4000,
  1010. .rept_size = 11,
  1011. .read_data = mtouch_read_data,
  1012. .alloc = mtouch_alloc,
  1013. .init = mtouch_init,
  1014. .exit = mtouch_exit,
  1015. },
  1016. #endif
  1017. #ifdef CONFIG_TOUCHSCREEN_USB_ITM
  1018. [DEVTYPE_ITM] = {
  1019. .min_xc = 0x0,
  1020. .max_xc = 0x0fff,
  1021. .min_yc = 0x0,
  1022. .max_yc = 0x0fff,
  1023. .max_press = 0xff,
  1024. .rept_size = 8,
  1025. .read_data = itm_read_data,
  1026. },
  1027. #endif
  1028. #ifdef CONFIG_TOUCHSCREEN_USB_ETURBO
  1029. [DEVTYPE_ETURBO] = {
  1030. .min_xc = 0x0,
  1031. .max_xc = 0x07ff,
  1032. .min_yc = 0x0,
  1033. .max_yc = 0x07ff,
  1034. .rept_size = 8,
  1035. .process_pkt = usbtouch_process_multi,
  1036. .get_pkt_len = eturbo_get_pkt_len,
  1037. .read_data = eturbo_read_data,
  1038. },
  1039. #endif
  1040. #ifdef CONFIG_TOUCHSCREEN_USB_GUNZE
  1041. [DEVTYPE_GUNZE] = {
  1042. .min_xc = 0x0,
  1043. .max_xc = 0x0fff,
  1044. .min_yc = 0x0,
  1045. .max_yc = 0x0fff,
  1046. .rept_size = 4,
  1047. .read_data = gunze_read_data,
  1048. },
  1049. #endif
  1050. #ifdef CONFIG_TOUCHSCREEN_USB_DMC_TSC10
  1051. [DEVTYPE_DMC_TSC10] = {
  1052. .min_xc = 0x0,
  1053. .max_xc = 0x03ff,
  1054. .min_yc = 0x0,
  1055. .max_yc = 0x03ff,
  1056. .rept_size = 5,
  1057. .init = dmc_tsc10_init,
  1058. .read_data = dmc_tsc10_read_data,
  1059. },
  1060. #endif
  1061. #ifdef CONFIG_TOUCHSCREEN_USB_IRTOUCH
  1062. [DEVTYPE_IRTOUCH] = {
  1063. .min_xc = 0x0,
  1064. .max_xc = 0x0fff,
  1065. .min_yc = 0x0,
  1066. .max_yc = 0x0fff,
  1067. .rept_size = 8,
  1068. .read_data = irtouch_read_data,
  1069. },
  1070. [DEVTYPE_IRTOUCH_HIRES] = {
  1071. .min_xc = 0x0,
  1072. .max_xc = 0x7fff,
  1073. .min_yc = 0x0,
  1074. .max_yc = 0x7fff,
  1075. .rept_size = 8,
  1076. .read_data = irtouch_read_data,
  1077. },
  1078. #endif
  1079. #ifdef CONFIG_TOUCHSCREEN_USB_IDEALTEK
  1080. [DEVTYPE_IDEALTEK] = {
  1081. .min_xc = 0x0,
  1082. .max_xc = 0x0fff,
  1083. .min_yc = 0x0,
  1084. .max_yc = 0x0fff,
  1085. .rept_size = 8,
  1086. .process_pkt = usbtouch_process_multi,
  1087. .get_pkt_len = idealtek_get_pkt_len,
  1088. .read_data = idealtek_read_data,
  1089. },
  1090. #endif
  1091. #ifdef CONFIG_TOUCHSCREEN_USB_GENERAL_TOUCH
  1092. [DEVTYPE_GENERAL_TOUCH] = {
  1093. .min_xc = 0x0,
  1094. .max_xc = 0x7fff,
  1095. .min_yc = 0x0,
  1096. .max_yc = 0x7fff,
  1097. .rept_size = 7,
  1098. .read_data = general_touch_read_data,
  1099. },
  1100. #endif
  1101. #ifdef CONFIG_TOUCHSCREEN_USB_GOTOP
  1102. [DEVTYPE_GOTOP] = {
  1103. .min_xc = 0x0,
  1104. .max_xc = 0x03ff,
  1105. .min_yc = 0x0,
  1106. .max_yc = 0x03ff,
  1107. .rept_size = 4,
  1108. .read_data = gotop_read_data,
  1109. },
  1110. #endif
  1111. #ifdef CONFIG_TOUCHSCREEN_USB_JASTEC
  1112. [DEVTYPE_JASTEC] = {
  1113. .min_xc = 0x0,
  1114. .max_xc = 0x0fff,
  1115. .min_yc = 0x0,
  1116. .max_yc = 0x0fff,
  1117. .rept_size = 4,
  1118. .read_data = jastec_read_data,
  1119. },
  1120. #endif
  1121. #ifdef CONFIG_TOUCHSCREEN_USB_E2I
  1122. [DEVTYPE_E2I] = {
  1123. .min_xc = 0x0,
  1124. .max_xc = 0x7fff,
  1125. .min_yc = 0x0,
  1126. .max_yc = 0x7fff,
  1127. .rept_size = 6,
  1128. .init = e2i_init,
  1129. .read_data = e2i_read_data,
  1130. },
  1131. #endif
  1132. #ifdef CONFIG_TOUCHSCREEN_USB_ZYTRONIC
  1133. [DEVTYPE_ZYTRONIC] = {
  1134. .min_xc = 0x0,
  1135. .max_xc = 0x03ff,
  1136. .min_yc = 0x0,
  1137. .max_yc = 0x03ff,
  1138. .rept_size = 5,
  1139. .read_data = zytronic_read_data,
  1140. .irq_always = true,
  1141. },
  1142. #endif
  1143. #ifdef CONFIG_TOUCHSCREEN_USB_ETT_TC45USB
  1144. [DEVTYPE_TC45USB] = {
  1145. .min_xc = 0x0,
  1146. .max_xc = 0x0fff,
  1147. .min_yc = 0x0,
  1148. .max_yc = 0x0fff,
  1149. .rept_size = 5,
  1150. .read_data = tc45usb_read_data,
  1151. },
  1152. #endif
  1153. #ifdef CONFIG_TOUCHSCREEN_USB_NEXIO
  1154. [DEVTYPE_NEXIO] = {
  1155. .rept_size = 1024,
  1156. .irq_always = true,
  1157. .read_data = nexio_read_data,
  1158. .alloc = nexio_alloc,
  1159. .init = nexio_init,
  1160. .exit = nexio_exit,
  1161. },
  1162. #endif
  1163. #ifdef CONFIG_TOUCHSCREEN_USB_EASYTOUCH
  1164. [DEVTYPE_ETOUCH] = {
  1165. .min_xc = 0x0,
  1166. .max_xc = 0x07ff,
  1167. .min_yc = 0x0,
  1168. .max_yc = 0x07ff,
  1169. .rept_size = 16,
  1170. .process_pkt = usbtouch_process_multi,
  1171. .get_pkt_len = etouch_get_pkt_len,
  1172. .read_data = etouch_read_data,
  1173. },
  1174. #endif
  1175. };
  1176. /*****************************************************************************
  1177. * Generic Part
  1178. */
  1179. static void usbtouch_process_pkt(struct usbtouch_usb *usbtouch,
  1180. unsigned char *pkt, int len)
  1181. {
  1182. struct usbtouch_device_info *type = usbtouch->type;
  1183. if (!type->read_data(usbtouch, pkt))
  1184. return;
  1185. input_report_key(usbtouch->input, BTN_TOUCH, usbtouch->touch);
  1186. if (swap_xy) {
  1187. input_report_abs(usbtouch->input, ABS_X, usbtouch->y);
  1188. input_report_abs(usbtouch->input, ABS_Y, usbtouch->x);
  1189. } else {
  1190. input_report_abs(usbtouch->input, ABS_X, usbtouch->x);
  1191. input_report_abs(usbtouch->input, ABS_Y, usbtouch->y);
  1192. }
  1193. if (type->max_press)
  1194. input_report_abs(usbtouch->input, ABS_PRESSURE, usbtouch->press);
  1195. input_sync(usbtouch->input);
  1196. }
  1197. #ifdef MULTI_PACKET
  1198. static void usbtouch_process_multi(struct usbtouch_usb *usbtouch,
  1199. unsigned char *pkt, int len)
  1200. {
  1201. unsigned char *buffer;
  1202. int pkt_len, pos, buf_len, tmp;
  1203. /* process buffer */
  1204. if (unlikely(usbtouch->buf_len)) {
  1205. /* try to get size */
  1206. pkt_len = usbtouch->type->get_pkt_len(
  1207. usbtouch->buffer, usbtouch->buf_len);
  1208. /* drop? */
  1209. if (unlikely(!pkt_len))
  1210. goto out_flush_buf;
  1211. /* need to append -pkt_len bytes before able to get size */
  1212. if (unlikely(pkt_len < 0)) {
  1213. int append = -pkt_len;
  1214. if (unlikely(append > len))
  1215. append = len;
  1216. if (usbtouch->buf_len + append >= usbtouch->type->rept_size)
  1217. goto out_flush_buf;
  1218. memcpy(usbtouch->buffer + usbtouch->buf_len, pkt, append);
  1219. usbtouch->buf_len += append;
  1220. pkt_len = usbtouch->type->get_pkt_len(
  1221. usbtouch->buffer, usbtouch->buf_len);
  1222. if (pkt_len < 0)
  1223. return;
  1224. }
  1225. /* append */
  1226. tmp = pkt_len - usbtouch->buf_len;
  1227. if (usbtouch->buf_len + tmp >= usbtouch->type->rept_size)
  1228. goto out_flush_buf;
  1229. memcpy(usbtouch->buffer + usbtouch->buf_len, pkt, tmp);
  1230. usbtouch_process_pkt(usbtouch, usbtouch->buffer, pkt_len);
  1231. buffer = pkt + tmp;
  1232. buf_len = len - tmp;
  1233. } else {
  1234. buffer = pkt;
  1235. buf_len = len;
  1236. }
  1237. /* loop over the received packet, process */
  1238. pos = 0;
  1239. while (pos < buf_len) {
  1240. /* get packet len */
  1241. pkt_len = usbtouch->type->get_pkt_len(buffer + pos,
  1242. buf_len - pos);
  1243. /* unknown packet: skip one byte */
  1244. if (unlikely(!pkt_len)) {
  1245. pos++;
  1246. continue;
  1247. }
  1248. /* full packet: process */
  1249. if (likely((pkt_len > 0) && (pkt_len <= buf_len - pos))) {
  1250. usbtouch_process_pkt(usbtouch, buffer + pos, pkt_len);
  1251. } else {
  1252. /* incomplete packet: save in buffer */
  1253. memcpy(usbtouch->buffer, buffer + pos, buf_len - pos);
  1254. usbtouch->buf_len = buf_len - pos;
  1255. return;
  1256. }
  1257. pos += pkt_len;
  1258. }
  1259. out_flush_buf:
  1260. usbtouch->buf_len = 0;
  1261. return;
  1262. }
  1263. #endif
  1264. static void usbtouch_irq(struct urb *urb)
  1265. {
  1266. struct usbtouch_usb *usbtouch = urb->context;
  1267. struct device *dev = &usbtouch->interface->dev;
  1268. int retval;
  1269. switch (urb->status) {
  1270. case 0:
  1271. /* success */
  1272. break;
  1273. case -ETIME:
  1274. /* this urb is timing out */
  1275. dev_dbg(dev,
  1276. "%s - urb timed out - was the device unplugged?\n",
  1277. __func__);
  1278. return;
  1279. case -ECONNRESET:
  1280. case -ENOENT:
  1281. case -ESHUTDOWN:
  1282. case -EPIPE:
  1283. /* this urb is terminated, clean up */
  1284. dev_dbg(dev, "%s - urb shutting down with status: %d\n",
  1285. __func__, urb->status);
  1286. return;
  1287. default:
  1288. dev_dbg(dev, "%s - nonzero urb status received: %d\n",
  1289. __func__, urb->status);
  1290. goto exit;
  1291. }
  1292. usbtouch->type->process_pkt(usbtouch, usbtouch->data, urb->actual_length);
  1293. exit:
  1294. usb_mark_last_busy(interface_to_usbdev(usbtouch->interface));
  1295. retval = usb_submit_urb(urb, GFP_ATOMIC);
  1296. if (retval)
  1297. dev_err(dev, "%s - usb_submit_urb failed with result: %d\n",
  1298. __func__, retval);
  1299. }
  1300. static int usbtouch_open(struct input_dev *input)
  1301. {
  1302. struct usbtouch_usb *usbtouch = input_get_drvdata(input);
  1303. int r;
  1304. usbtouch->irq->dev = interface_to_usbdev(usbtouch->interface);
  1305. r = usb_autopm_get_interface(usbtouch->interface) ? -EIO : 0;
  1306. if (r < 0)
  1307. goto out;
  1308. mutex_lock(&usbtouch->pm_mutex);
  1309. if (!usbtouch->type->irq_always) {
  1310. if (usb_submit_urb(usbtouch->irq, GFP_KERNEL)) {
  1311. r = -EIO;
  1312. goto out_put;
  1313. }
  1314. }
  1315. usbtouch->interface->needs_remote_wakeup = 1;
  1316. usbtouch->is_open = true;
  1317. out_put:
  1318. mutex_unlock(&usbtouch->pm_mutex);
  1319. usb_autopm_put_interface(usbtouch->interface);
  1320. out:
  1321. return r;
  1322. }
  1323. static void usbtouch_close(struct input_dev *input)
  1324. {
  1325. struct usbtouch_usb *usbtouch = input_get_drvdata(input);
  1326. int r;
  1327. mutex_lock(&usbtouch->pm_mutex);
  1328. if (!usbtouch->type->irq_always)
  1329. usb_kill_urb(usbtouch->irq);
  1330. usbtouch->is_open = false;
  1331. mutex_unlock(&usbtouch->pm_mutex);
  1332. r = usb_autopm_get_interface(usbtouch->interface);
  1333. usbtouch->interface->needs_remote_wakeup = 0;
  1334. if (!r)
  1335. usb_autopm_put_interface(usbtouch->interface);
  1336. }
  1337. static int usbtouch_suspend
  1338. (struct usb_interface *intf, pm_message_t message)
  1339. {
  1340. struct usbtouch_usb *usbtouch = usb_get_intfdata(intf);
  1341. usb_kill_urb(usbtouch->irq);
  1342. return 0;
  1343. }
  1344. static int usbtouch_resume(struct usb_interface *intf)
  1345. {
  1346. struct usbtouch_usb *usbtouch = usb_get_intfdata(intf);
  1347. int result = 0;
  1348. mutex_lock(&usbtouch->pm_mutex);
  1349. if (usbtouch->is_open || usbtouch->type->irq_always)
  1350. result = usb_submit_urb(usbtouch->irq, GFP_NOIO);
  1351. mutex_unlock(&usbtouch->pm_mutex);
  1352. return result;
  1353. }
  1354. static int usbtouch_reset_resume(struct usb_interface *intf)
  1355. {
  1356. struct usbtouch_usb *usbtouch = usb_get_intfdata(intf);
  1357. int err = 0;
  1358. /* reinit the device */
  1359. if (usbtouch->type->init) {
  1360. err = usbtouch->type->init(usbtouch);
  1361. if (err) {
  1362. dev_dbg(&intf->dev,
  1363. "%s - type->init() failed, err: %d\n",
  1364. __func__, err);
  1365. return err;
  1366. }
  1367. }
  1368. /* restart IO if needed */
  1369. mutex_lock(&usbtouch->pm_mutex);
  1370. if (usbtouch->is_open)
  1371. err = usb_submit_urb(usbtouch->irq, GFP_NOIO);
  1372. mutex_unlock(&usbtouch->pm_mutex);
  1373. return err;
  1374. }
  1375. static void usbtouch_free_buffers(struct usb_device *udev,
  1376. struct usbtouch_usb *usbtouch)
  1377. {
  1378. usb_free_coherent(udev, usbtouch->data_size,
  1379. usbtouch->data, usbtouch->data_dma);
  1380. kfree(usbtouch->buffer);
  1381. }
  1382. static struct usb_endpoint_descriptor *
  1383. usbtouch_get_input_endpoint(struct usb_host_interface *interface)
  1384. {
  1385. int i;
  1386. for (i = 0; i < interface->desc.bNumEndpoints; i++)
  1387. if (usb_endpoint_dir_in(&interface->endpoint[i].desc))
  1388. return &interface->endpoint[i].desc;
  1389. return NULL;
  1390. }
  1391. static int usbtouch_probe(struct usb_interface *intf,
  1392. const struct usb_device_id *id)
  1393. {
  1394. struct usbtouch_usb *usbtouch;
  1395. struct input_dev *input_dev;
  1396. struct usb_endpoint_descriptor *endpoint;
  1397. struct usb_device *udev = interface_to_usbdev(intf);
  1398. struct usbtouch_device_info *type;
  1399. int err = -ENOMEM;
  1400. /* some devices are ignored */
  1401. if (id->driver_info == DEVTYPE_IGNORE)
  1402. return -ENODEV;
  1403. if (id->driver_info >= ARRAY_SIZE(usbtouch_dev_info))
  1404. return -ENODEV;
  1405. endpoint = usbtouch_get_input_endpoint(intf->cur_altsetting);
  1406. if (!endpoint)
  1407. return -ENXIO;
  1408. usbtouch = kzalloc(sizeof(struct usbtouch_usb), GFP_KERNEL);
  1409. input_dev = input_allocate_device();
  1410. if (!usbtouch || !input_dev)
  1411. goto out_free;
  1412. mutex_init(&usbtouch->pm_mutex);
  1413. type = &usbtouch_dev_info[id->driver_info];
  1414. usbtouch->type = type;
  1415. if (!type->process_pkt)
  1416. type->process_pkt = usbtouch_process_pkt;
  1417. usbtouch->data_size = type->rept_size;
  1418. if (type->get_pkt_len) {
  1419. /*
  1420. * When dealing with variable-length packets we should
  1421. * not request more than wMaxPacketSize bytes at once
  1422. * as we do not know if there is more data coming or
  1423. * we filled exactly wMaxPacketSize bytes and there is
  1424. * nothing else.
  1425. */
  1426. usbtouch->data_size = min(usbtouch->data_size,
  1427. usb_endpoint_maxp(endpoint));
  1428. }
  1429. usbtouch->data = usb_alloc_coherent(udev, usbtouch->data_size,
  1430. GFP_KERNEL, &usbtouch->data_dma);
  1431. if (!usbtouch->data)
  1432. goto out_free;
  1433. if (type->get_pkt_len) {
  1434. usbtouch->buffer = kmalloc(type->rept_size, GFP_KERNEL);
  1435. if (!usbtouch->buffer)
  1436. goto out_free_buffers;
  1437. }
  1438. usbtouch->irq = usb_alloc_urb(0, GFP_KERNEL);
  1439. if (!usbtouch->irq) {
  1440. dev_dbg(&intf->dev,
  1441. "%s - usb_alloc_urb failed: usbtouch->irq\n", __func__);
  1442. goto out_free_buffers;
  1443. }
  1444. usbtouch->interface = intf;
  1445. usbtouch->input = input_dev;
  1446. if (udev->manufacturer)
  1447. strscpy(usbtouch->name, udev->manufacturer, sizeof(usbtouch->name));
  1448. if (udev->product) {
  1449. if (udev->manufacturer)
  1450. strlcat(usbtouch->name, " ", sizeof(usbtouch->name));
  1451. strlcat(usbtouch->name, udev->product, sizeof(usbtouch->name));
  1452. }
  1453. if (!strlen(usbtouch->name))
  1454. snprintf(usbtouch->name, sizeof(usbtouch->name),
  1455. "USB Touchscreen %04x:%04x",
  1456. le16_to_cpu(udev->descriptor.idVendor),
  1457. le16_to_cpu(udev->descriptor.idProduct));
  1458. usb_make_path(udev, usbtouch->phys, sizeof(usbtouch->phys));
  1459. strlcat(usbtouch->phys, "/input0", sizeof(usbtouch->phys));
  1460. input_dev->name = usbtouch->name;
  1461. input_dev->phys = usbtouch->phys;
  1462. usb_to_input_id(udev, &input_dev->id);
  1463. input_dev->dev.parent = &intf->dev;
  1464. input_set_drvdata(input_dev, usbtouch);
  1465. input_dev->open = usbtouch_open;
  1466. input_dev->close = usbtouch_close;
  1467. input_dev->evbit[0] = BIT_MASK(EV_KEY) | BIT_MASK(EV_ABS);
  1468. input_dev->keybit[BIT_WORD(BTN_TOUCH)] = BIT_MASK(BTN_TOUCH);
  1469. input_set_abs_params(input_dev, ABS_X, type->min_xc, type->max_xc, 0, 0);
  1470. input_set_abs_params(input_dev, ABS_Y, type->min_yc, type->max_yc, 0, 0);
  1471. if (type->max_press)
  1472. input_set_abs_params(input_dev, ABS_PRESSURE, type->min_press,
  1473. type->max_press, 0, 0);
  1474. if (usb_endpoint_type(endpoint) == USB_ENDPOINT_XFER_INT)
  1475. usb_fill_int_urb(usbtouch->irq, udev,
  1476. usb_rcvintpipe(udev, endpoint->bEndpointAddress),
  1477. usbtouch->data, usbtouch->data_size,
  1478. usbtouch_irq, usbtouch, endpoint->bInterval);
  1479. else
  1480. usb_fill_bulk_urb(usbtouch->irq, udev,
  1481. usb_rcvbulkpipe(udev, endpoint->bEndpointAddress),
  1482. usbtouch->data, usbtouch->data_size,
  1483. usbtouch_irq, usbtouch);
  1484. usbtouch->irq->dev = udev;
  1485. usbtouch->irq->transfer_dma = usbtouch->data_dma;
  1486. usbtouch->irq->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  1487. /* device specific allocations */
  1488. if (type->alloc) {
  1489. err = type->alloc(usbtouch);
  1490. if (err) {
  1491. dev_dbg(&intf->dev,
  1492. "%s - type->alloc() failed, err: %d\n",
  1493. __func__, err);
  1494. goto out_free_urb;
  1495. }
  1496. }
  1497. /* device specific initialisation*/
  1498. if (type->init) {
  1499. err = type->init(usbtouch);
  1500. if (err) {
  1501. dev_dbg(&intf->dev,
  1502. "%s - type->init() failed, err: %d\n",
  1503. __func__, err);
  1504. goto out_do_exit;
  1505. }
  1506. }
  1507. err = input_register_device(usbtouch->input);
  1508. if (err) {
  1509. dev_dbg(&intf->dev,
  1510. "%s - input_register_device failed, err: %d\n",
  1511. __func__, err);
  1512. goto out_do_exit;
  1513. }
  1514. usb_set_intfdata(intf, usbtouch);
  1515. if (usbtouch->type->irq_always) {
  1516. /* this can't fail */
  1517. usb_autopm_get_interface(intf);
  1518. err = usb_submit_urb(usbtouch->irq, GFP_KERNEL);
  1519. if (err) {
  1520. usb_autopm_put_interface(intf);
  1521. dev_err(&intf->dev,
  1522. "%s - usb_submit_urb failed with result: %d\n",
  1523. __func__, err);
  1524. goto out_unregister_input;
  1525. }
  1526. }
  1527. return 0;
  1528. out_unregister_input:
  1529. input_unregister_device(input_dev);
  1530. input_dev = NULL;
  1531. out_do_exit:
  1532. if (type->exit)
  1533. type->exit(usbtouch);
  1534. out_free_urb:
  1535. usb_free_urb(usbtouch->irq);
  1536. out_free_buffers:
  1537. usbtouch_free_buffers(udev, usbtouch);
  1538. out_free:
  1539. input_free_device(input_dev);
  1540. kfree(usbtouch);
  1541. return err;
  1542. }
  1543. static void usbtouch_disconnect(struct usb_interface *intf)
  1544. {
  1545. struct usbtouch_usb *usbtouch = usb_get_intfdata(intf);
  1546. if (!usbtouch)
  1547. return;
  1548. dev_dbg(&intf->dev,
  1549. "%s - usbtouch is initialized, cleaning up\n", __func__);
  1550. usb_set_intfdata(intf, NULL);
  1551. /* this will stop IO via close */
  1552. input_unregister_device(usbtouch->input);
  1553. usb_free_urb(usbtouch->irq);
  1554. if (usbtouch->type->exit)
  1555. usbtouch->type->exit(usbtouch);
  1556. usbtouch_free_buffers(interface_to_usbdev(intf), usbtouch);
  1557. kfree(usbtouch);
  1558. }
  1559. MODULE_DEVICE_TABLE(usb, usbtouch_devices);
  1560. static struct usb_driver usbtouch_driver = {
  1561. .name = "usbtouchscreen",
  1562. .probe = usbtouch_probe,
  1563. .disconnect = usbtouch_disconnect,
  1564. .suspend = usbtouch_suspend,
  1565. .resume = usbtouch_resume,
  1566. .reset_resume = usbtouch_reset_resume,
  1567. .id_table = usbtouch_devices,
  1568. .supports_autosuspend = 1,
  1569. };
  1570. module_usb_driver(usbtouch_driver);
  1571. MODULE_AUTHOR("Daniel Ritz <[email protected]>");
  1572. MODULE_DESCRIPTION("USB Touchscreen Driver");
  1573. MODULE_LICENSE("GPL");
  1574. MODULE_ALIAS("touchkitusb");
  1575. MODULE_ALIAS("itmtouch");
  1576. MODULE_ALIAS("mtouchusb");