hid-multitouch.c 36 KB

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  1. /*
  2. * HID driver for multitouch panels
  3. *
  4. * Copyright (c) 2010-2012 Stephane Chatty <chatty@enac.fr>
  5. * Copyright (c) 2010-2012 Benjamin Tissoires <benjamin.tissoires@gmail.com>
  6. * Copyright (c) 2010-2012 Ecole Nationale de l'Aviation Civile, France
  7. *
  8. * This code is partly based on hid-egalax.c:
  9. *
  10. * Copyright (c) 2010 Stephane Chatty <chatty@enac.fr>
  11. * Copyright (c) 2010 Henrik Rydberg <rydberg@euromail.se>
  12. * Copyright (c) 2010 Canonical, Ltd.
  13. *
  14. * This code is partly based on hid-3m-pct.c:
  15. *
  16. * Copyright (c) 2009-2010 Stephane Chatty <chatty@enac.fr>
  17. * Copyright (c) 2010 Henrik Rydberg <rydberg@euromail.se>
  18. * Copyright (c) 2010 Canonical, Ltd.
  19. *
  20. */
  21. /*
  22. * This program is free software; you can redistribute it and/or modify it
  23. * under the terms of the GNU General Public License as published by the Free
  24. * Software Foundation; either version 2 of the License, or (at your option)
  25. * any later version.
  26. */
  27. #include <linux/device.h>
  28. #include <linux/hid.h>
  29. #include <linux/module.h>
  30. #include <linux/slab.h>
  31. #include <linux/usb.h>
  32. #include <linux/input/mt.h>
  33. #include "usbhid/usbhid.h"
  34. MODULE_AUTHOR("Stephane Chatty <chatty@enac.fr>");
  35. MODULE_AUTHOR("Benjamin Tissoires <benjamin.tissoires@gmail.com>");
  36. MODULE_DESCRIPTION("HID multitouch panels");
  37. MODULE_LICENSE("GPL");
  38. #include "hid-ids.h"
  39. /* quirks to control the device */
  40. #define MT_QUIRK_NOT_SEEN_MEANS_UP (1 << 0)
  41. #define MT_QUIRK_SLOT_IS_CONTACTID (1 << 1)
  42. #define MT_QUIRK_CYPRESS (1 << 2)
  43. #define MT_QUIRK_SLOT_IS_CONTACTNUMBER (1 << 3)
  44. #define MT_QUIRK_ALWAYS_VALID (1 << 4)
  45. #define MT_QUIRK_VALID_IS_INRANGE (1 << 5)
  46. #define MT_QUIRK_VALID_IS_CONFIDENCE (1 << 6)
  47. #define MT_QUIRK_SLOT_IS_CONTACTID_MINUS_ONE (1 << 8)
  48. #define MT_QUIRK_NO_AREA (1 << 9)
  49. #define MT_QUIRK_IGNORE_DUPLICATES (1 << 10)
  50. #define MT_QUIRK_HOVERING (1 << 11)
  51. #define MT_QUIRK_CONTACT_CNT_ACCURATE (1 << 12)
  52. struct mt_slot {
  53. __s32 x, y, cx, cy, p, w, h;
  54. __s32 contactid; /* the device ContactID assigned to this slot */
  55. bool touch_state; /* is the touch valid? */
  56. bool inrange_state; /* is the finger in proximity of the sensor? */
  57. };
  58. struct mt_class {
  59. __s32 name; /* MT_CLS */
  60. __s32 quirks;
  61. __s32 sn_move; /* Signal/noise ratio for move events */
  62. __s32 sn_width; /* Signal/noise ratio for width events */
  63. __s32 sn_height; /* Signal/noise ratio for height events */
  64. __s32 sn_pressure; /* Signal/noise ratio for pressure events */
  65. __u8 maxcontacts;
  66. bool is_indirect; /* true for touchpads */
  67. };
  68. struct mt_fields {
  69. unsigned usages[HID_MAX_FIELDS];
  70. unsigned int length;
  71. };
  72. struct mt_device {
  73. struct mt_slot curdata; /* placeholder of incoming data */
  74. struct mt_class mtclass; /* our mt device class */
  75. struct mt_fields *fields; /* temporary placeholder for storing the
  76. multitouch fields */
  77. int cc_index; /* contact count field index in the report */
  78. int cc_value_index; /* contact count value index in the field */
  79. unsigned last_field_index; /* last field index of the report */
  80. unsigned last_slot_field; /* the last field of a slot */
  81. unsigned mt_report_id; /* the report ID of the multitouch device */
  82. __s8 inputmode; /* InputMode HID feature, -1 if non-existent */
  83. __s8 inputmode_index; /* InputMode HID feature index in the report */
  84. __s8 maxcontact_report_id; /* Maximum Contact Number HID feature,
  85. -1 if non-existent */
  86. __u8 num_received; /* how many contacts we received */
  87. __u8 num_expected; /* expected last contact index */
  88. __u8 maxcontacts;
  89. __u8 touches_by_report; /* how many touches are present in one report:
  90. * 1 means we should use a serial protocol
  91. * > 1 means hybrid (multitouch) protocol */
  92. bool serial_maybe; /* need to check for serial protocol */
  93. bool curvalid; /* is the current contact valid? */
  94. unsigned mt_flags; /* flags to pass to input-mt */
  95. };
  96. /* classes of device behavior */
  97. #define MT_CLS_DEFAULT 0x0001
  98. #define MT_CLS_SERIAL 0x0002
  99. #define MT_CLS_CONFIDENCE 0x0003
  100. #define MT_CLS_CONFIDENCE_CONTACT_ID 0x0004
  101. #define MT_CLS_CONFIDENCE_MINUS_ONE 0x0005
  102. #define MT_CLS_DUAL_INRANGE_CONTACTID 0x0006
  103. #define MT_CLS_DUAL_INRANGE_CONTACTNUMBER 0x0007
  104. #define MT_CLS_DUAL_NSMU_CONTACTID 0x0008
  105. #define MT_CLS_INRANGE_CONTACTNUMBER 0x0009
  106. #define MT_CLS_NSMU 0x000a
  107. #define MT_CLS_DUAL_CONTACT_NUMBER 0x0010
  108. #define MT_CLS_DUAL_CONTACT_ID 0x0011
  109. /* vendor specific classes */
  110. #define MT_CLS_3M 0x0101
  111. #define MT_CLS_CYPRESS 0x0102
  112. #define MT_CLS_EGALAX 0x0103
  113. #define MT_CLS_EGALAX_SERIAL 0x0104
  114. #define MT_CLS_TOPSEED 0x0105
  115. #define MT_CLS_PANASONIC 0x0106
  116. #define MT_CLS_FLATFROG 0x0107
  117. #define MT_CLS_GENERALTOUCH_TWOFINGERS 0x0108
  118. #define MT_CLS_GENERALTOUCH_PWT_TENFINGERS 0x0109
  119. #define MT_DEFAULT_MAXCONTACT 10
  120. #define MT_MAX_MAXCONTACT 250
  121. #define MT_USB_DEVICE(v, p) HID_DEVICE(BUS_USB, HID_GROUP_MULTITOUCH, v, p)
  122. #define MT_BT_DEVICE(v, p) HID_DEVICE(BUS_BLUETOOTH, HID_GROUP_MULTITOUCH, v, p)
  123. /*
  124. * these device-dependent functions determine what slot corresponds
  125. * to a valid contact that was just read.
  126. */
  127. static int cypress_compute_slot(struct mt_device *td)
  128. {
  129. if (td->curdata.contactid != 0 || td->num_received == 0)
  130. return td->curdata.contactid;
  131. else
  132. return -1;
  133. }
  134. static struct mt_class mt_classes[] = {
  135. { .name = MT_CLS_DEFAULT,
  136. .quirks = MT_QUIRK_ALWAYS_VALID |
  137. MT_QUIRK_CONTACT_CNT_ACCURATE },
  138. { .name = MT_CLS_NSMU,
  139. .quirks = MT_QUIRK_NOT_SEEN_MEANS_UP },
  140. { .name = MT_CLS_SERIAL,
  141. .quirks = MT_QUIRK_ALWAYS_VALID},
  142. { .name = MT_CLS_CONFIDENCE,
  143. .quirks = MT_QUIRK_VALID_IS_CONFIDENCE },
  144. { .name = MT_CLS_CONFIDENCE_CONTACT_ID,
  145. .quirks = MT_QUIRK_VALID_IS_CONFIDENCE |
  146. MT_QUIRK_SLOT_IS_CONTACTID },
  147. { .name = MT_CLS_CONFIDENCE_MINUS_ONE,
  148. .quirks = MT_QUIRK_VALID_IS_CONFIDENCE |
  149. MT_QUIRK_SLOT_IS_CONTACTID_MINUS_ONE },
  150. { .name = MT_CLS_DUAL_INRANGE_CONTACTID,
  151. .quirks = MT_QUIRK_VALID_IS_INRANGE |
  152. MT_QUIRK_SLOT_IS_CONTACTID,
  153. .maxcontacts = 2 },
  154. { .name = MT_CLS_DUAL_INRANGE_CONTACTNUMBER,
  155. .quirks = MT_QUIRK_VALID_IS_INRANGE |
  156. MT_QUIRK_SLOT_IS_CONTACTNUMBER,
  157. .maxcontacts = 2 },
  158. { .name = MT_CLS_DUAL_NSMU_CONTACTID,
  159. .quirks = MT_QUIRK_NOT_SEEN_MEANS_UP |
  160. MT_QUIRK_SLOT_IS_CONTACTID,
  161. .maxcontacts = 2 },
  162. { .name = MT_CLS_INRANGE_CONTACTNUMBER,
  163. .quirks = MT_QUIRK_VALID_IS_INRANGE |
  164. MT_QUIRK_SLOT_IS_CONTACTNUMBER },
  165. { .name = MT_CLS_DUAL_CONTACT_NUMBER,
  166. .quirks = MT_QUIRK_ALWAYS_VALID |
  167. MT_QUIRK_CONTACT_CNT_ACCURATE |
  168. MT_QUIRK_SLOT_IS_CONTACTNUMBER,
  169. .maxcontacts = 2 },
  170. { .name = MT_CLS_DUAL_CONTACT_ID,
  171. .quirks = MT_QUIRK_ALWAYS_VALID |
  172. MT_QUIRK_CONTACT_CNT_ACCURATE |
  173. MT_QUIRK_SLOT_IS_CONTACTID,
  174. .maxcontacts = 2 },
  175. /*
  176. * vendor specific classes
  177. */
  178. { .name = MT_CLS_3M,
  179. .quirks = MT_QUIRK_VALID_IS_CONFIDENCE |
  180. MT_QUIRK_SLOT_IS_CONTACTID,
  181. .sn_move = 2048,
  182. .sn_width = 128,
  183. .sn_height = 128,
  184. .maxcontacts = 60,
  185. },
  186. { .name = MT_CLS_CYPRESS,
  187. .quirks = MT_QUIRK_NOT_SEEN_MEANS_UP |
  188. MT_QUIRK_CYPRESS,
  189. .maxcontacts = 10 },
  190. { .name = MT_CLS_EGALAX,
  191. .quirks = MT_QUIRK_SLOT_IS_CONTACTID |
  192. MT_QUIRK_VALID_IS_INRANGE,
  193. .sn_move = 4096,
  194. .sn_pressure = 32,
  195. },
  196. { .name = MT_CLS_EGALAX_SERIAL,
  197. .quirks = MT_QUIRK_SLOT_IS_CONTACTID |
  198. MT_QUIRK_ALWAYS_VALID,
  199. .sn_move = 4096,
  200. .sn_pressure = 32,
  201. },
  202. { .name = MT_CLS_TOPSEED,
  203. .quirks = MT_QUIRK_ALWAYS_VALID,
  204. .is_indirect = true,
  205. .maxcontacts = 2,
  206. },
  207. { .name = MT_CLS_PANASONIC,
  208. .quirks = MT_QUIRK_NOT_SEEN_MEANS_UP,
  209. .maxcontacts = 4 },
  210. { .name = MT_CLS_GENERALTOUCH_TWOFINGERS,
  211. .quirks = MT_QUIRK_NOT_SEEN_MEANS_UP |
  212. MT_QUIRK_VALID_IS_INRANGE |
  213. MT_QUIRK_SLOT_IS_CONTACTNUMBER,
  214. .maxcontacts = 2
  215. },
  216. { .name = MT_CLS_GENERALTOUCH_PWT_TENFINGERS,
  217. .quirks = MT_QUIRK_NOT_SEEN_MEANS_UP |
  218. MT_QUIRK_SLOT_IS_CONTACTNUMBER
  219. },
  220. { .name = MT_CLS_FLATFROG,
  221. .quirks = MT_QUIRK_NOT_SEEN_MEANS_UP |
  222. MT_QUIRK_NO_AREA,
  223. .sn_move = 2048,
  224. .maxcontacts = 40,
  225. },
  226. { }
  227. };
  228. static ssize_t mt_show_quirks(struct device *dev,
  229. struct device_attribute *attr,
  230. char *buf)
  231. {
  232. struct hid_device *hdev = container_of(dev, struct hid_device, dev);
  233. struct mt_device *td = hid_get_drvdata(hdev);
  234. return sprintf(buf, "%u\n", td->mtclass.quirks);
  235. }
  236. static ssize_t mt_set_quirks(struct device *dev,
  237. struct device_attribute *attr,
  238. const char *buf, size_t count)
  239. {
  240. struct hid_device *hdev = container_of(dev, struct hid_device, dev);
  241. struct mt_device *td = hid_get_drvdata(hdev);
  242. unsigned long val;
  243. if (kstrtoul(buf, 0, &val))
  244. return -EINVAL;
  245. td->mtclass.quirks = val;
  246. if (td->cc_index < 0)
  247. td->mtclass.quirks &= ~MT_QUIRK_CONTACT_CNT_ACCURATE;
  248. return count;
  249. }
  250. static DEVICE_ATTR(quirks, S_IWUSR | S_IRUGO, mt_show_quirks, mt_set_quirks);
  251. static struct attribute *sysfs_attrs[] = {
  252. &dev_attr_quirks.attr,
  253. NULL
  254. };
  255. static struct attribute_group mt_attribute_group = {
  256. .attrs = sysfs_attrs
  257. };
  258. static void mt_feature_mapping(struct hid_device *hdev,
  259. struct hid_field *field, struct hid_usage *usage)
  260. {
  261. struct mt_device *td = hid_get_drvdata(hdev);
  262. int i;
  263. switch (usage->hid) {
  264. case HID_DG_INPUTMODE:
  265. td->inputmode = field->report->id;
  266. td->inputmode_index = 0; /* has to be updated below */
  267. for (i=0; i < field->maxusage; i++) {
  268. if (field->usage[i].hid == usage->hid) {
  269. td->inputmode_index = i;
  270. break;
  271. }
  272. }
  273. break;
  274. case HID_DG_CONTACTMAX:
  275. td->maxcontact_report_id = field->report->id;
  276. td->maxcontacts = field->value[0];
  277. if (!td->maxcontacts &&
  278. field->logical_maximum <= MT_MAX_MAXCONTACT)
  279. td->maxcontacts = field->logical_maximum;
  280. if (td->mtclass.maxcontacts)
  281. /* check if the maxcontacts is given by the class */
  282. td->maxcontacts = td->mtclass.maxcontacts;
  283. break;
  284. case 0xff0000c5:
  285. if (field->report_count == 256 && field->report_size == 8) {
  286. /* Win 8 devices need special quirks */
  287. __s32 *quirks = &td->mtclass.quirks;
  288. *quirks |= MT_QUIRK_ALWAYS_VALID;
  289. *quirks |= MT_QUIRK_IGNORE_DUPLICATES;
  290. *quirks |= MT_QUIRK_HOVERING;
  291. *quirks |= MT_QUIRK_CONTACT_CNT_ACCURATE;
  292. *quirks &= ~MT_QUIRK_NOT_SEEN_MEANS_UP;
  293. *quirks &= ~MT_QUIRK_VALID_IS_INRANGE;
  294. *quirks &= ~MT_QUIRK_VALID_IS_CONFIDENCE;
  295. }
  296. break;
  297. }
  298. }
  299. static void set_abs(struct input_dev *input, unsigned int code,
  300. struct hid_field *field, int snratio)
  301. {
  302. int fmin = field->logical_minimum;
  303. int fmax = field->logical_maximum;
  304. int fuzz = snratio ? (fmax - fmin) / snratio : 0;
  305. input_set_abs_params(input, code, fmin, fmax, fuzz, 0);
  306. input_abs_set_res(input, code, hidinput_calc_abs_res(field, code));
  307. }
  308. static void mt_store_field(struct hid_usage *usage, struct mt_device *td,
  309. struct hid_input *hi)
  310. {
  311. struct mt_fields *f = td->fields;
  312. if (f->length >= HID_MAX_FIELDS)
  313. return;
  314. f->usages[f->length++] = usage->hid;
  315. }
  316. static int mt_input_mapping(struct hid_device *hdev, struct hid_input *hi,
  317. struct hid_field *field, struct hid_usage *usage,
  318. unsigned long **bit, int *max)
  319. {
  320. struct mt_device *td = hid_get_drvdata(hdev);
  321. struct mt_class *cls = &td->mtclass;
  322. int code;
  323. struct hid_usage *prev_usage = NULL;
  324. /* Only map fields from TouchScreen or TouchPad collections.
  325. * We need to ignore fields that belong to other collections
  326. * such as Mouse that might have the same GenericDesktop usages. */
  327. if (field->application == HID_DG_TOUCHSCREEN)
  328. td->mt_flags |= INPUT_MT_DIRECT;
  329. else if (field->application != HID_DG_TOUCHPAD)
  330. return 0;
  331. /*
  332. * Model touchscreens providing buttons as touchpads.
  333. */
  334. if (field->application == HID_DG_TOUCHPAD ||
  335. (usage->hid & HID_USAGE_PAGE) == HID_UP_BUTTON)
  336. td->mt_flags |= INPUT_MT_POINTER;
  337. /* eGalax devices provide a Digitizer.Stylus input which overrides
  338. * the correct Digitizers.Finger X/Y ranges.
  339. * Let's just ignore this input. */
  340. if (field->physical == HID_DG_STYLUS)
  341. return -1;
  342. if (usage->usage_index)
  343. prev_usage = &field->usage[usage->usage_index - 1];
  344. switch (usage->hid & HID_USAGE_PAGE) {
  345. case HID_UP_GENDESK:
  346. switch (usage->hid) {
  347. case HID_GD_X:
  348. if (prev_usage && (prev_usage->hid == usage->hid)) {
  349. hid_map_usage(hi, usage, bit, max,
  350. EV_ABS, ABS_MT_TOOL_X);
  351. set_abs(hi->input, ABS_MT_TOOL_X, field,
  352. cls->sn_move);
  353. } else {
  354. hid_map_usage(hi, usage, bit, max,
  355. EV_ABS, ABS_MT_POSITION_X);
  356. set_abs(hi->input, ABS_MT_POSITION_X, field,
  357. cls->sn_move);
  358. }
  359. mt_store_field(usage, td, hi);
  360. td->last_field_index = field->index;
  361. return 1;
  362. case HID_GD_Y:
  363. if (prev_usage && (prev_usage->hid == usage->hid)) {
  364. hid_map_usage(hi, usage, bit, max,
  365. EV_ABS, ABS_MT_TOOL_Y);
  366. set_abs(hi->input, ABS_MT_TOOL_Y, field,
  367. cls->sn_move);
  368. } else {
  369. hid_map_usage(hi, usage, bit, max,
  370. EV_ABS, ABS_MT_POSITION_Y);
  371. set_abs(hi->input, ABS_MT_POSITION_Y, field,
  372. cls->sn_move);
  373. }
  374. mt_store_field(usage, td, hi);
  375. td->last_field_index = field->index;
  376. return 1;
  377. }
  378. return 0;
  379. case HID_UP_DIGITIZER:
  380. switch (usage->hid) {
  381. case HID_DG_INRANGE:
  382. if (cls->quirks & MT_QUIRK_HOVERING) {
  383. hid_map_usage(hi, usage, bit, max,
  384. EV_ABS, ABS_MT_DISTANCE);
  385. input_set_abs_params(hi->input,
  386. ABS_MT_DISTANCE, 0, 1, 0, 0);
  387. }
  388. mt_store_field(usage, td, hi);
  389. td->last_field_index = field->index;
  390. return 1;
  391. case HID_DG_CONFIDENCE:
  392. mt_store_field(usage, td, hi);
  393. td->last_field_index = field->index;
  394. return 1;
  395. case HID_DG_TIPSWITCH:
  396. hid_map_usage(hi, usage, bit, max, EV_KEY, BTN_TOUCH);
  397. input_set_capability(hi->input, EV_KEY, BTN_TOUCH);
  398. mt_store_field(usage, td, hi);
  399. td->last_field_index = field->index;
  400. return 1;
  401. case HID_DG_CONTACTID:
  402. mt_store_field(usage, td, hi);
  403. td->last_field_index = field->index;
  404. td->touches_by_report++;
  405. td->mt_report_id = field->report->id;
  406. return 1;
  407. case HID_DG_WIDTH:
  408. hid_map_usage(hi, usage, bit, max,
  409. EV_ABS, ABS_MT_TOUCH_MAJOR);
  410. if (!(cls->quirks & MT_QUIRK_NO_AREA))
  411. set_abs(hi->input, ABS_MT_TOUCH_MAJOR, field,
  412. cls->sn_width);
  413. mt_store_field(usage, td, hi);
  414. td->last_field_index = field->index;
  415. return 1;
  416. case HID_DG_HEIGHT:
  417. hid_map_usage(hi, usage, bit, max,
  418. EV_ABS, ABS_MT_TOUCH_MINOR);
  419. if (!(cls->quirks & MT_QUIRK_NO_AREA)) {
  420. set_abs(hi->input, ABS_MT_TOUCH_MINOR, field,
  421. cls->sn_height);
  422. input_set_abs_params(hi->input,
  423. ABS_MT_ORIENTATION, 0, 1, 0, 0);
  424. }
  425. mt_store_field(usage, td, hi);
  426. td->last_field_index = field->index;
  427. return 1;
  428. case HID_DG_TIPPRESSURE:
  429. hid_map_usage(hi, usage, bit, max,
  430. EV_ABS, ABS_MT_PRESSURE);
  431. set_abs(hi->input, ABS_MT_PRESSURE, field,
  432. cls->sn_pressure);
  433. mt_store_field(usage, td, hi);
  434. td->last_field_index = field->index;
  435. return 1;
  436. case HID_DG_CONTACTCOUNT:
  437. td->cc_index = field->index;
  438. td->cc_value_index = usage->usage_index;
  439. td->last_field_index = field->index;
  440. return 1;
  441. case HID_DG_CONTACTMAX:
  442. /* we don't set td->last_slot_field as contactcount and
  443. * contact max are global to the report */
  444. td->last_field_index = field->index;
  445. return -1;
  446. case HID_DG_TOUCH:
  447. /* Legacy devices use TIPSWITCH and not TOUCH.
  448. * Let's just ignore this field. */
  449. return -1;
  450. }
  451. /* let hid-input decide for the others */
  452. return 0;
  453. case HID_UP_BUTTON:
  454. code = BTN_MOUSE + ((usage->hid - 1) & HID_USAGE);
  455. hid_map_usage(hi, usage, bit, max, EV_KEY, code);
  456. input_set_capability(hi->input, EV_KEY, code);
  457. return 1;
  458. case 0xff000000:
  459. /* we do not want to map these: no input-oriented meaning */
  460. return -1;
  461. }
  462. return 0;
  463. }
  464. static int mt_input_mapped(struct hid_device *hdev, struct hid_input *hi,
  465. struct hid_field *field, struct hid_usage *usage,
  466. unsigned long **bit, int *max)
  467. {
  468. if (usage->type == EV_KEY || usage->type == EV_ABS)
  469. set_bit(usage->type, hi->input->evbit);
  470. return -1;
  471. }
  472. static int mt_compute_slot(struct mt_device *td, struct input_dev *input)
  473. {
  474. __s32 quirks = td->mtclass.quirks;
  475. if (quirks & MT_QUIRK_SLOT_IS_CONTACTID)
  476. return td->curdata.contactid;
  477. if (quirks & MT_QUIRK_CYPRESS)
  478. return cypress_compute_slot(td);
  479. if (quirks & MT_QUIRK_SLOT_IS_CONTACTNUMBER)
  480. return td->num_received;
  481. if (quirks & MT_QUIRK_SLOT_IS_CONTACTID_MINUS_ONE)
  482. return td->curdata.contactid - 1;
  483. return input_mt_get_slot_by_key(input, td->curdata.contactid);
  484. }
  485. /*
  486. * this function is called when a whole contact has been processed,
  487. * so that it can assign it to a slot and store the data there
  488. */
  489. static void mt_complete_slot(struct mt_device *td, struct input_dev *input)
  490. {
  491. if ((td->mtclass.quirks & MT_QUIRK_CONTACT_CNT_ACCURATE) &&
  492. td->num_received >= td->num_expected)
  493. return;
  494. if (td->curvalid || (td->mtclass.quirks & MT_QUIRK_ALWAYS_VALID)) {
  495. int slotnum = mt_compute_slot(td, input);
  496. struct mt_slot *s = &td->curdata;
  497. struct input_mt *mt = input->mt;
  498. if (slotnum < 0 || slotnum >= td->maxcontacts)
  499. return;
  500. if ((td->mtclass.quirks & MT_QUIRK_IGNORE_DUPLICATES) && mt) {
  501. struct input_mt_slot *slot = &mt->slots[slotnum];
  502. if (input_mt_is_active(slot) &&
  503. input_mt_is_used(mt, slot))
  504. return;
  505. }
  506. input_mt_slot(input, slotnum);
  507. input_mt_report_slot_state(input, MT_TOOL_FINGER,
  508. s->touch_state || s->inrange_state);
  509. if (s->touch_state || s->inrange_state) {
  510. /* this finger is in proximity of the sensor */
  511. int wide = (s->w > s->h);
  512. /* divided by two to match visual scale of touch */
  513. int major = max(s->w, s->h) >> 1;
  514. int minor = min(s->w, s->h) >> 1;
  515. input_event(input, EV_ABS, ABS_MT_POSITION_X, s->x);
  516. input_event(input, EV_ABS, ABS_MT_POSITION_Y, s->y);
  517. input_event(input, EV_ABS, ABS_MT_TOOL_X, s->cx);
  518. input_event(input, EV_ABS, ABS_MT_TOOL_Y, s->cy);
  519. input_event(input, EV_ABS, ABS_MT_DISTANCE,
  520. !s->touch_state);
  521. input_event(input, EV_ABS, ABS_MT_ORIENTATION, wide);
  522. input_event(input, EV_ABS, ABS_MT_PRESSURE, s->p);
  523. input_event(input, EV_ABS, ABS_MT_TOUCH_MAJOR, major);
  524. input_event(input, EV_ABS, ABS_MT_TOUCH_MINOR, minor);
  525. }
  526. }
  527. td->num_received++;
  528. }
  529. /*
  530. * this function is called when a whole packet has been received and processed,
  531. * so that it can decide what to send to the input layer.
  532. */
  533. static void mt_sync_frame(struct mt_device *td, struct input_dev *input)
  534. {
  535. input_mt_sync_frame(input);
  536. input_sync(input);
  537. td->num_received = 0;
  538. }
  539. static int mt_event(struct hid_device *hid, struct hid_field *field,
  540. struct hid_usage *usage, __s32 value)
  541. {
  542. /* we will handle the hidinput part later, now remains hiddev */
  543. if (hid->claimed & HID_CLAIMED_HIDDEV && hid->hiddev_hid_event)
  544. hid->hiddev_hid_event(hid, field, usage, value);
  545. return 1;
  546. }
  547. static void mt_process_mt_event(struct hid_device *hid, struct hid_field *field,
  548. struct hid_usage *usage, __s32 value)
  549. {
  550. struct mt_device *td = hid_get_drvdata(hid);
  551. __s32 quirks = td->mtclass.quirks;
  552. if (hid->claimed & HID_CLAIMED_INPUT) {
  553. switch (usage->hid) {
  554. case HID_DG_INRANGE:
  555. if (quirks & MT_QUIRK_VALID_IS_INRANGE)
  556. td->curvalid = value;
  557. if (quirks & MT_QUIRK_HOVERING)
  558. td->curdata.inrange_state = value;
  559. break;
  560. case HID_DG_TIPSWITCH:
  561. if (quirks & MT_QUIRK_NOT_SEEN_MEANS_UP)
  562. td->curvalid = value;
  563. td->curdata.touch_state = value;
  564. break;
  565. case HID_DG_CONFIDENCE:
  566. if (quirks & MT_QUIRK_VALID_IS_CONFIDENCE)
  567. td->curvalid = value;
  568. break;
  569. case HID_DG_CONTACTID:
  570. td->curdata.contactid = value;
  571. break;
  572. case HID_DG_TIPPRESSURE:
  573. td->curdata.p = value;
  574. break;
  575. case HID_GD_X:
  576. if (usage->code == ABS_MT_TOOL_X)
  577. td->curdata.cx = value;
  578. else
  579. td->curdata.x = value;
  580. break;
  581. case HID_GD_Y:
  582. if (usage->code == ABS_MT_TOOL_Y)
  583. td->curdata.cy = value;
  584. else
  585. td->curdata.y = value;
  586. break;
  587. case HID_DG_WIDTH:
  588. td->curdata.w = value;
  589. break;
  590. case HID_DG_HEIGHT:
  591. td->curdata.h = value;
  592. break;
  593. case HID_DG_CONTACTCOUNT:
  594. break;
  595. case HID_DG_TOUCH:
  596. /* do nothing */
  597. break;
  598. default:
  599. return;
  600. }
  601. if (usage->usage_index + 1 == field->report_count) {
  602. /* we only take into account the last report. */
  603. if (usage->hid == td->last_slot_field)
  604. mt_complete_slot(td, field->hidinput->input);
  605. if (field->index == td->last_field_index
  606. && td->num_received >= td->num_expected)
  607. mt_sync_frame(td, field->hidinput->input);
  608. }
  609. }
  610. }
  611. static void mt_report(struct hid_device *hid, struct hid_report *report)
  612. {
  613. struct mt_device *td = hid_get_drvdata(hid);
  614. struct hid_field *field;
  615. unsigned count;
  616. int r, n;
  617. if (report->id != td->mt_report_id)
  618. return;
  619. if (!(hid->claimed & HID_CLAIMED_INPUT))
  620. return;
  621. /*
  622. * Includes multi-packet support where subsequent
  623. * packets are sent with zero contactcount.
  624. */
  625. if (td->cc_index >= 0) {
  626. struct hid_field *field = report->field[td->cc_index];
  627. int value = field->value[td->cc_value_index];
  628. if (value)
  629. td->num_expected = value;
  630. }
  631. for (r = 0; r < report->maxfield; r++) {
  632. field = report->field[r];
  633. count = field->report_count;
  634. if (!(HID_MAIN_ITEM_VARIABLE & field->flags))
  635. continue;
  636. for (n = 0; n < count; n++)
  637. mt_process_mt_event(hid, field, &field->usage[n],
  638. field->value[n]);
  639. }
  640. }
  641. static void mt_set_input_mode(struct hid_device *hdev)
  642. {
  643. struct mt_device *td = hid_get_drvdata(hdev);
  644. struct hid_report *r;
  645. struct hid_report_enum *re;
  646. if (td->inputmode < 0)
  647. return;
  648. re = &(hdev->report_enum[HID_FEATURE_REPORT]);
  649. r = re->report_id_hash[td->inputmode];
  650. if (r) {
  651. r->field[0]->value[td->inputmode_index] = 0x02;
  652. usbhid_submit_report(hdev, r, USB_DIR_OUT);
  653. }
  654. }
  655. static void mt_set_maxcontacts(struct hid_device *hdev)
  656. {
  657. struct mt_device *td = hid_get_drvdata(hdev);
  658. struct hid_report *r;
  659. struct hid_report_enum *re;
  660. int fieldmax, max;
  661. if (td->maxcontact_report_id < 0)
  662. return;
  663. if (!td->mtclass.maxcontacts)
  664. return;
  665. re = &hdev->report_enum[HID_FEATURE_REPORT];
  666. r = re->report_id_hash[td->maxcontact_report_id];
  667. if (r) {
  668. max = td->mtclass.maxcontacts;
  669. fieldmax = r->field[0]->logical_maximum;
  670. max = min(fieldmax, max);
  671. if (r->field[0]->value[0] != max) {
  672. r->field[0]->value[0] = max;
  673. usbhid_submit_report(hdev, r, USB_DIR_OUT);
  674. }
  675. }
  676. }
  677. static void mt_post_parse_default_settings(struct mt_device *td)
  678. {
  679. __s32 quirks = td->mtclass.quirks;
  680. /* unknown serial device needs special quirks */
  681. if (td->touches_by_report == 1) {
  682. quirks |= MT_QUIRK_ALWAYS_VALID;
  683. quirks &= ~MT_QUIRK_NOT_SEEN_MEANS_UP;
  684. quirks &= ~MT_QUIRK_VALID_IS_INRANGE;
  685. quirks &= ~MT_QUIRK_VALID_IS_CONFIDENCE;
  686. quirks &= ~MT_QUIRK_CONTACT_CNT_ACCURATE;
  687. }
  688. td->mtclass.quirks = quirks;
  689. }
  690. static void mt_post_parse(struct mt_device *td)
  691. {
  692. struct mt_fields *f = td->fields;
  693. struct mt_class *cls = &td->mtclass;
  694. if (td->touches_by_report > 0) {
  695. int field_count_per_touch = f->length / td->touches_by_report;
  696. td->last_slot_field = f->usages[field_count_per_touch - 1];
  697. }
  698. if (td->cc_index < 0)
  699. cls->quirks &= ~MT_QUIRK_CONTACT_CNT_ACCURATE;
  700. }
  701. static void mt_input_configured(struct hid_device *hdev, struct hid_input *hi)
  702. {
  703. struct mt_device *td = hid_get_drvdata(hdev);
  704. struct mt_class *cls = &td->mtclass;
  705. struct input_dev *input = hi->input;
  706. /* Only initialize slots for MT input devices */
  707. if (!test_bit(ABS_MT_POSITION_X, input->absbit))
  708. return;
  709. if (!td->maxcontacts)
  710. td->maxcontacts = MT_DEFAULT_MAXCONTACT;
  711. mt_post_parse(td);
  712. if (td->serial_maybe)
  713. mt_post_parse_default_settings(td);
  714. if (cls->is_indirect)
  715. td->mt_flags |= INPUT_MT_POINTER;
  716. if (cls->quirks & MT_QUIRK_NOT_SEEN_MEANS_UP)
  717. td->mt_flags |= INPUT_MT_DROP_UNUSED;
  718. input_mt_init_slots(input, td->maxcontacts, td->mt_flags);
  719. td->mt_flags = 0;
  720. }
  721. static int mt_probe(struct hid_device *hdev, const struct hid_device_id *id)
  722. {
  723. int ret, i;
  724. struct mt_device *td;
  725. struct mt_class *mtclass = mt_classes; /* MT_CLS_DEFAULT */
  726. for (i = 0; mt_classes[i].name ; i++) {
  727. if (id->driver_data == mt_classes[i].name) {
  728. mtclass = &(mt_classes[i]);
  729. break;
  730. }
  731. }
  732. /* This allows the driver to correctly support devices
  733. * that emit events over several HID messages.
  734. */
  735. hdev->quirks |= HID_QUIRK_NO_INPUT_SYNC;
  736. td = kzalloc(sizeof(struct mt_device), GFP_KERNEL);
  737. if (!td) {
  738. dev_err(&hdev->dev, "cannot allocate multitouch data\n");
  739. return -ENOMEM;
  740. }
  741. td->mtclass = *mtclass;
  742. td->inputmode = -1;
  743. td->maxcontact_report_id = -1;
  744. td->cc_index = -1;
  745. hid_set_drvdata(hdev, td);
  746. td->fields = kzalloc(sizeof(struct mt_fields), GFP_KERNEL);
  747. if (!td->fields) {
  748. dev_err(&hdev->dev, "cannot allocate multitouch fields data\n");
  749. ret = -ENOMEM;
  750. goto fail;
  751. }
  752. if (id->vendor == HID_ANY_ID && id->product == HID_ANY_ID)
  753. td->serial_maybe = true;
  754. ret = hid_parse(hdev);
  755. if (ret != 0)
  756. goto fail;
  757. ret = hid_hw_start(hdev, HID_CONNECT_DEFAULT);
  758. if (ret)
  759. goto fail;
  760. ret = sysfs_create_group(&hdev->dev.kobj, &mt_attribute_group);
  761. mt_set_maxcontacts(hdev);
  762. mt_set_input_mode(hdev);
  763. kfree(td->fields);
  764. td->fields = NULL;
  765. return 0;
  766. fail:
  767. kfree(td->fields);
  768. kfree(td);
  769. return ret;
  770. }
  771. #ifdef CONFIG_PM
  772. static int mt_reset_resume(struct hid_device *hdev)
  773. {
  774. mt_set_maxcontacts(hdev);
  775. mt_set_input_mode(hdev);
  776. return 0;
  777. }
  778. static int mt_resume(struct hid_device *hdev)
  779. {
  780. struct usb_interface *intf;
  781. struct usb_host_interface *interface;
  782. struct usb_device *dev;
  783. if (hdev->bus != BUS_USB)
  784. return 0;
  785. intf = to_usb_interface(hdev->dev.parent);
  786. interface = intf->cur_altsetting;
  787. dev = hid_to_usb_dev(hdev);
  788. /* Some Elan legacy devices require SET_IDLE to be set on resume.
  789. * It should be safe to send it to other devices too.
  790. * Tested on 3M, Stantum, Cypress, Zytronic, eGalax, and Elan panels. */
  791. usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  792. HID_REQ_SET_IDLE,
  793. USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  794. 0, interface->desc.bInterfaceNumber,
  795. NULL, 0, USB_CTRL_SET_TIMEOUT);
  796. return 0;
  797. }
  798. #endif
  799. static void mt_remove(struct hid_device *hdev)
  800. {
  801. struct mt_device *td = hid_get_drvdata(hdev);
  802. sysfs_remove_group(&hdev->dev.kobj, &mt_attribute_group);
  803. hid_hw_stop(hdev);
  804. kfree(td);
  805. hid_set_drvdata(hdev, NULL);
  806. }
  807. static const struct hid_device_id mt_devices[] = {
  808. /* 3M panels */
  809. { .driver_data = MT_CLS_3M,
  810. MT_USB_DEVICE(USB_VENDOR_ID_3M,
  811. USB_DEVICE_ID_3M1968) },
  812. { .driver_data = MT_CLS_3M,
  813. MT_USB_DEVICE(USB_VENDOR_ID_3M,
  814. USB_DEVICE_ID_3M2256) },
  815. { .driver_data = MT_CLS_3M,
  816. MT_USB_DEVICE(USB_VENDOR_ID_3M,
  817. USB_DEVICE_ID_3M3266) },
  818. /* ActionStar panels */
  819. { .driver_data = MT_CLS_NSMU,
  820. MT_USB_DEVICE(USB_VENDOR_ID_ACTIONSTAR,
  821. USB_DEVICE_ID_ACTIONSTAR_1011) },
  822. /* Atmel panels */
  823. { .driver_data = MT_CLS_SERIAL,
  824. MT_USB_DEVICE(USB_VENDOR_ID_ATMEL,
  825. USB_DEVICE_ID_ATMEL_MULTITOUCH) },
  826. { .driver_data = MT_CLS_SERIAL,
  827. MT_USB_DEVICE(USB_VENDOR_ID_ATMEL,
  828. USB_DEVICE_ID_ATMEL_MXT_DIGITIZER) },
  829. /* Baanto multitouch devices */
  830. { .driver_data = MT_CLS_NSMU,
  831. MT_USB_DEVICE(USB_VENDOR_ID_BAANTO,
  832. USB_DEVICE_ID_BAANTO_MT_190W2) },
  833. /* Cando panels */
  834. { .driver_data = MT_CLS_DUAL_INRANGE_CONTACTNUMBER,
  835. MT_USB_DEVICE(USB_VENDOR_ID_CANDO,
  836. USB_DEVICE_ID_CANDO_MULTI_TOUCH) },
  837. { .driver_data = MT_CLS_DUAL_CONTACT_NUMBER,
  838. MT_USB_DEVICE(USB_VENDOR_ID_CANDO,
  839. USB_DEVICE_ID_CANDO_MULTI_TOUCH_10_1) },
  840. { .driver_data = MT_CLS_DUAL_INRANGE_CONTACTNUMBER,
  841. MT_USB_DEVICE(USB_VENDOR_ID_CANDO,
  842. USB_DEVICE_ID_CANDO_MULTI_TOUCH_11_6) },
  843. { .driver_data = MT_CLS_DUAL_INRANGE_CONTACTNUMBER,
  844. MT_USB_DEVICE(USB_VENDOR_ID_CANDO,
  845. USB_DEVICE_ID_CANDO_MULTI_TOUCH_15_6) },
  846. /* Chunghwa Telecom touch panels */
  847. { .driver_data = MT_CLS_NSMU,
  848. MT_USB_DEVICE(USB_VENDOR_ID_CHUNGHWAT,
  849. USB_DEVICE_ID_CHUNGHWAT_MULTITOUCH) },
  850. /* CVTouch panels */
  851. { .driver_data = MT_CLS_NSMU,
  852. MT_USB_DEVICE(USB_VENDOR_ID_CVTOUCH,
  853. USB_DEVICE_ID_CVTOUCH_SCREEN) },
  854. /* Cypress panel */
  855. { .driver_data = MT_CLS_CYPRESS,
  856. HID_USB_DEVICE(USB_VENDOR_ID_CYPRESS,
  857. USB_DEVICE_ID_CYPRESS_TRUETOUCH) },
  858. /* eGalax devices (resistive) */
  859. { .driver_data = MT_CLS_EGALAX,
  860. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  861. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_480D) },
  862. { .driver_data = MT_CLS_EGALAX,
  863. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  864. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_480E) },
  865. /* eGalax devices (capacitive) */
  866. { .driver_data = MT_CLS_EGALAX,
  867. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  868. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_720C) },
  869. { .driver_data = MT_CLS_EGALAX_SERIAL,
  870. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  871. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_7207) },
  872. { .driver_data = MT_CLS_EGALAX_SERIAL,
  873. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  874. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_725E) },
  875. { .driver_data = MT_CLS_EGALAX_SERIAL,
  876. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  877. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_7224) },
  878. { .driver_data = MT_CLS_EGALAX_SERIAL,
  879. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  880. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_722A) },
  881. { .driver_data = MT_CLS_EGALAX,
  882. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  883. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_726B) },
  884. { .driver_data = MT_CLS_EGALAX_SERIAL,
  885. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  886. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_7262) },
  887. { .driver_data = MT_CLS_EGALAX,
  888. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  889. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_72A1) },
  890. { .driver_data = MT_CLS_EGALAX_SERIAL,
  891. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  892. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_72AA) },
  893. { .driver_data = MT_CLS_EGALAX,
  894. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  895. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_72FA) },
  896. { .driver_data = MT_CLS_EGALAX,
  897. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  898. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_7302) },
  899. { .driver_data = MT_CLS_EGALAX_SERIAL,
  900. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  901. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_7349) },
  902. { .driver_data = MT_CLS_EGALAX_SERIAL,
  903. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  904. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_73F7) },
  905. { .driver_data = MT_CLS_EGALAX_SERIAL,
  906. MT_USB_DEVICE(USB_VENDOR_ID_DWAV,
  907. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_A001) },
  908. { .driver_data = MT_CLS_EGALAX,
  909. HID_USB_DEVICE(USB_VENDOR_ID_DWAV,
  910. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_7224) },
  911. { .driver_data = MT_CLS_EGALAX,
  912. HID_USB_DEVICE(USB_VENDOR_ID_DWAV,
  913. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_72D0) },
  914. { .driver_data = MT_CLS_EGALAX,
  915. HID_USB_DEVICE(USB_VENDOR_ID_DWAV,
  916. USB_DEVICE_ID_DWAV_EGALAX_MULTITOUCH_72C4) },
  917. /* Elo TouchSystems IntelliTouch Plus panel */
  918. { .driver_data = MT_CLS_DUAL_CONTACT_ID,
  919. MT_USB_DEVICE(USB_VENDOR_ID_ELO,
  920. USB_DEVICE_ID_ELO_TS2515) },
  921. /* Flatfrog Panels */
  922. { .driver_data = MT_CLS_FLATFROG,
  923. MT_USB_DEVICE(USB_VENDOR_ID_FLATFROG,
  924. USB_DEVICE_ID_MULTITOUCH_3200) },
  925. /* GeneralTouch panel */
  926. { .driver_data = MT_CLS_GENERALTOUCH_TWOFINGERS,
  927. MT_USB_DEVICE(USB_VENDOR_ID_GENERAL_TOUCH,
  928. USB_DEVICE_ID_GENERAL_TOUCH_WIN7_TWOFINGERS) },
  929. { .driver_data = MT_CLS_GENERALTOUCH_PWT_TENFINGERS,
  930. MT_USB_DEVICE(USB_VENDOR_ID_GENERAL_TOUCH,
  931. USB_DEVICE_ID_GENERAL_TOUCH_WIN8_PWT_TENFINGERS) },
  932. /* Gametel game controller */
  933. { .driver_data = MT_CLS_NSMU,
  934. MT_BT_DEVICE(USB_VENDOR_ID_FRUCTEL,
  935. USB_DEVICE_ID_GAMETEL_MT_MODE) },
  936. /* GoodTouch panels */
  937. { .driver_data = MT_CLS_NSMU,
  938. MT_USB_DEVICE(USB_VENDOR_ID_GOODTOUCH,
  939. USB_DEVICE_ID_GOODTOUCH_000f) },
  940. /* Hanvon panels */
  941. { .driver_data = MT_CLS_DUAL_INRANGE_CONTACTID,
  942. MT_USB_DEVICE(USB_VENDOR_ID_HANVON_ALT,
  943. USB_DEVICE_ID_HANVON_ALT_MULTITOUCH) },
  944. /* Ideacom panel */
  945. { .driver_data = MT_CLS_SERIAL,
  946. MT_USB_DEVICE(USB_VENDOR_ID_IDEACOM,
  947. USB_DEVICE_ID_IDEACOM_IDC6650) },
  948. { .driver_data = MT_CLS_SERIAL,
  949. MT_USB_DEVICE(USB_VENDOR_ID_IDEACOM,
  950. USB_DEVICE_ID_IDEACOM_IDC6651) },
  951. /* Ilitek dual touch panel */
  952. { .driver_data = MT_CLS_NSMU,
  953. MT_USB_DEVICE(USB_VENDOR_ID_ILITEK,
  954. USB_DEVICE_ID_ILITEK_MULTITOUCH) },
  955. /* IRTOUCH panels */
  956. { .driver_data = MT_CLS_DUAL_INRANGE_CONTACTID,
  957. MT_USB_DEVICE(USB_VENDOR_ID_IRTOUCHSYSTEMS,
  958. USB_DEVICE_ID_IRTOUCH_INFRARED_USB) },
  959. /* LG Display panels */
  960. { .driver_data = MT_CLS_DEFAULT,
  961. MT_USB_DEVICE(USB_VENDOR_ID_LG,
  962. USB_DEVICE_ID_LG_MULTITOUCH) },
  963. /* Lumio panels */
  964. { .driver_data = MT_CLS_CONFIDENCE_MINUS_ONE,
  965. MT_USB_DEVICE(USB_VENDOR_ID_LUMIO,
  966. USB_DEVICE_ID_CRYSTALTOUCH) },
  967. { .driver_data = MT_CLS_CONFIDENCE_MINUS_ONE,
  968. MT_USB_DEVICE(USB_VENDOR_ID_LUMIO,
  969. USB_DEVICE_ID_CRYSTALTOUCH_DUAL) },
  970. /* MosArt panels */
  971. { .driver_data = MT_CLS_CONFIDENCE_MINUS_ONE,
  972. MT_USB_DEVICE(USB_VENDOR_ID_ASUS,
  973. USB_DEVICE_ID_ASUS_T91MT)},
  974. { .driver_data = MT_CLS_CONFIDENCE_MINUS_ONE,
  975. MT_USB_DEVICE(USB_VENDOR_ID_ASUS,
  976. USB_DEVICE_ID_ASUSTEK_MULTITOUCH_YFO) },
  977. { .driver_data = MT_CLS_CONFIDENCE_MINUS_ONE,
  978. MT_USB_DEVICE(USB_VENDOR_ID_TURBOX,
  979. USB_DEVICE_ID_TURBOX_TOUCHSCREEN_MOSART) },
  980. /* Nexio panels */
  981. { .driver_data = MT_CLS_DEFAULT,
  982. MT_USB_DEVICE(USB_VENDOR_ID_NEXIO,
  983. USB_DEVICE_ID_NEXIO_MULTITOUCH_420)},
  984. /* Panasonic panels */
  985. { .driver_data = MT_CLS_PANASONIC,
  986. MT_USB_DEVICE(USB_VENDOR_ID_PANASONIC,
  987. USB_DEVICE_ID_PANABOARD_UBT780) },
  988. { .driver_data = MT_CLS_PANASONIC,
  989. MT_USB_DEVICE(USB_VENDOR_ID_PANASONIC,
  990. USB_DEVICE_ID_PANABOARD_UBT880) },
  991. /* Novatek Panel */
  992. { .driver_data = MT_CLS_NSMU,
  993. MT_USB_DEVICE(USB_VENDOR_ID_NOVATEK,
  994. USB_DEVICE_ID_NOVATEK_PCT) },
  995. /* PenMount panels */
  996. { .driver_data = MT_CLS_CONFIDENCE,
  997. MT_USB_DEVICE(USB_VENDOR_ID_PENMOUNT,
  998. USB_DEVICE_ID_PENMOUNT_PCI) },
  999. /* PixArt optical touch screen */
  1000. { .driver_data = MT_CLS_INRANGE_CONTACTNUMBER,
  1001. MT_USB_DEVICE(USB_VENDOR_ID_PIXART,
  1002. USB_DEVICE_ID_PIXART_OPTICAL_TOUCH_SCREEN) },
  1003. { .driver_data = MT_CLS_INRANGE_CONTACTNUMBER,
  1004. MT_USB_DEVICE(USB_VENDOR_ID_PIXART,
  1005. USB_DEVICE_ID_PIXART_OPTICAL_TOUCH_SCREEN1) },
  1006. { .driver_data = MT_CLS_INRANGE_CONTACTNUMBER,
  1007. MT_USB_DEVICE(USB_VENDOR_ID_PIXART,
  1008. USB_DEVICE_ID_PIXART_OPTICAL_TOUCH_SCREEN2) },
  1009. /* PixCir-based panels */
  1010. { .driver_data = MT_CLS_DUAL_INRANGE_CONTACTID,
  1011. MT_USB_DEVICE(USB_VENDOR_ID_HANVON,
  1012. USB_DEVICE_ID_HANVON_MULTITOUCH) },
  1013. { .driver_data = MT_CLS_DUAL_INRANGE_CONTACTID,
  1014. MT_USB_DEVICE(USB_VENDOR_ID_CANDO,
  1015. USB_DEVICE_ID_CANDO_PIXCIR_MULTI_TOUCH) },
  1016. /* Quanta-based panels */
  1017. { .driver_data = MT_CLS_CONFIDENCE_CONTACT_ID,
  1018. MT_USB_DEVICE(USB_VENDOR_ID_QUANTA,
  1019. USB_DEVICE_ID_QUANTA_OPTICAL_TOUCH) },
  1020. { .driver_data = MT_CLS_CONFIDENCE_CONTACT_ID,
  1021. MT_USB_DEVICE(USB_VENDOR_ID_QUANTA,
  1022. USB_DEVICE_ID_QUANTA_OPTICAL_TOUCH_3001) },
  1023. { .driver_data = MT_CLS_CONFIDENCE_CONTACT_ID,
  1024. MT_USB_DEVICE(USB_VENDOR_ID_QUANTA,
  1025. USB_DEVICE_ID_QUANTA_OPTICAL_TOUCH_3008) },
  1026. /* Stantum panels */
  1027. { .driver_data = MT_CLS_CONFIDENCE,
  1028. MT_USB_DEVICE(USB_VENDOR_ID_STANTUM,
  1029. USB_DEVICE_ID_MTP)},
  1030. { .driver_data = MT_CLS_CONFIDENCE,
  1031. MT_USB_DEVICE(USB_VENDOR_ID_STANTUM_STM,
  1032. USB_DEVICE_ID_MTP_STM)},
  1033. { .driver_data = MT_CLS_DEFAULT,
  1034. MT_USB_DEVICE(USB_VENDOR_ID_STANTUM_SITRONIX,
  1035. USB_DEVICE_ID_MTP_SITRONIX)},
  1036. /* TopSeed panels */
  1037. { .driver_data = MT_CLS_TOPSEED,
  1038. MT_USB_DEVICE(USB_VENDOR_ID_TOPSEED2,
  1039. USB_DEVICE_ID_TOPSEED2_PERIPAD_701) },
  1040. /* Touch International panels */
  1041. { .driver_data = MT_CLS_NSMU,
  1042. MT_USB_DEVICE(USB_VENDOR_ID_TOUCH_INTL,
  1043. USB_DEVICE_ID_TOUCH_INTL_MULTI_TOUCH) },
  1044. /* Unitec panels */
  1045. { .driver_data = MT_CLS_NSMU,
  1046. MT_USB_DEVICE(USB_VENDOR_ID_UNITEC,
  1047. USB_DEVICE_ID_UNITEC_USB_TOUCH_0709) },
  1048. { .driver_data = MT_CLS_NSMU,
  1049. MT_USB_DEVICE(USB_VENDOR_ID_UNITEC,
  1050. USB_DEVICE_ID_UNITEC_USB_TOUCH_0A19) },
  1051. /* XAT */
  1052. { .driver_data = MT_CLS_NSMU,
  1053. MT_USB_DEVICE(USB_VENDOR_ID_XAT,
  1054. USB_DEVICE_ID_XAT_CSR) },
  1055. /* Xiroku */
  1056. { .driver_data = MT_CLS_NSMU,
  1057. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1058. USB_DEVICE_ID_XIROKU_SPX) },
  1059. { .driver_data = MT_CLS_NSMU,
  1060. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1061. USB_DEVICE_ID_XIROKU_MPX) },
  1062. { .driver_data = MT_CLS_NSMU,
  1063. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1064. USB_DEVICE_ID_XIROKU_CSR) },
  1065. { .driver_data = MT_CLS_NSMU,
  1066. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1067. USB_DEVICE_ID_XIROKU_SPX1) },
  1068. { .driver_data = MT_CLS_NSMU,
  1069. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1070. USB_DEVICE_ID_XIROKU_MPX1) },
  1071. { .driver_data = MT_CLS_NSMU,
  1072. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1073. USB_DEVICE_ID_XIROKU_CSR1) },
  1074. { .driver_data = MT_CLS_NSMU,
  1075. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1076. USB_DEVICE_ID_XIROKU_SPX2) },
  1077. { .driver_data = MT_CLS_NSMU,
  1078. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1079. USB_DEVICE_ID_XIROKU_MPX2) },
  1080. { .driver_data = MT_CLS_NSMU,
  1081. MT_USB_DEVICE(USB_VENDOR_ID_XIROKU,
  1082. USB_DEVICE_ID_XIROKU_CSR2) },
  1083. /* Zytronic panels */
  1084. { .driver_data = MT_CLS_SERIAL,
  1085. MT_USB_DEVICE(USB_VENDOR_ID_ZYTRONIC,
  1086. USB_DEVICE_ID_ZYTRONIC_ZXY100) },
  1087. /* Generic MT device */
  1088. { HID_DEVICE(HID_BUS_ANY, HID_GROUP_MULTITOUCH, HID_ANY_ID, HID_ANY_ID) },
  1089. { }
  1090. };
  1091. MODULE_DEVICE_TABLE(hid, mt_devices);
  1092. static const struct hid_usage_id mt_grabbed_usages[] = {
  1093. { HID_ANY_ID, HID_ANY_ID, HID_ANY_ID },
  1094. { HID_ANY_ID - 1, HID_ANY_ID - 1, HID_ANY_ID - 1}
  1095. };
  1096. static struct hid_driver mt_driver = {
  1097. .name = "hid-multitouch",
  1098. .id_table = mt_devices,
  1099. .probe = mt_probe,
  1100. .remove = mt_remove,
  1101. .input_mapping = mt_input_mapping,
  1102. .input_mapped = mt_input_mapped,
  1103. .input_configured = mt_input_configured,
  1104. .feature_mapping = mt_feature_mapping,
  1105. .usage_table = mt_grabbed_usages,
  1106. .event = mt_event,
  1107. .report = mt_report,
  1108. #ifdef CONFIG_PM
  1109. .reset_resume = mt_reset_resume,
  1110. .resume = mt_resume,
  1111. #endif
  1112. };
  1113. module_hid_driver(mt_driver);