hid-input.c 36 KB

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  1. /*
  2. * Copyright (c) 2000-2001 Vojtech Pavlik
  3. * Copyright (c) 2006-2010 Jiri Kosina
  4. *
  5. * HID to Linux Input mapping
  6. */
  7. /*
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  21. *
  22. * Should you need to contact me, the author, you can do so either by
  23. * e-mail - mail your message to <vojtech@ucw.cz>, or by paper mail:
  24. * Vojtech Pavlik, Simunkova 1594, Prague 8, 182 00 Czech Republic
  25. */
  26. #include <linux/module.h>
  27. #include <linux/slab.h>
  28. #include <linux/kernel.h>
  29. #include <linux/hid.h>
  30. #include <linux/hid-debug.h>
  31. #include "hid-ids.h"
  32. #define unk KEY_UNKNOWN
  33. static const unsigned char hid_keyboard[256] = {
  34. 0, 0, 0, 0, 30, 48, 46, 32, 18, 33, 34, 35, 23, 36, 37, 38,
  35. 50, 49, 24, 25, 16, 19, 31, 20, 22, 47, 17, 45, 21, 44, 2, 3,
  36. 4, 5, 6, 7, 8, 9, 10, 11, 28, 1, 14, 15, 57, 12, 13, 26,
  37. 27, 43, 43, 39, 40, 41, 51, 52, 53, 58, 59, 60, 61, 62, 63, 64,
  38. 65, 66, 67, 68, 87, 88, 99, 70,119,110,102,104,111,107,109,106,
  39. 105,108,103, 69, 98, 55, 74, 78, 96, 79, 80, 81, 75, 76, 77, 71,
  40. 72, 73, 82, 83, 86,127,116,117,183,184,185,186,187,188,189,190,
  41. 191,192,193,194,134,138,130,132,128,129,131,137,133,135,136,113,
  42. 115,114,unk,unk,unk,121,unk, 89, 93,124, 92, 94, 95,unk,unk,unk,
  43. 122,123, 90, 91, 85,unk,unk,unk,unk,unk,unk,unk,111,unk,unk,unk,
  44. unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,
  45. unk,unk,unk,unk,unk,unk,179,180,unk,unk,unk,unk,unk,unk,unk,unk,
  46. unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,unk,
  47. unk,unk,unk,unk,unk,unk,unk,unk,111,unk,unk,unk,unk,unk,unk,unk,
  48. 29, 42, 56,125, 97, 54,100,126,164,166,165,163,161,115,114,113,
  49. 150,158,159,128,136,177,178,176,142,152,173,140,unk,unk,unk,unk
  50. };
  51. static const struct {
  52. __s32 x;
  53. __s32 y;
  54. } hid_hat_to_axis[] = {{ 0, 0}, { 0,-1}, { 1,-1}, { 1, 0}, { 1, 1}, { 0, 1}, {-1, 1}, {-1, 0}, {-1,-1}};
  55. #define map_abs(c) hid_map_usage(hidinput, usage, &bit, &max, EV_ABS, (c))
  56. #define map_rel(c) hid_map_usage(hidinput, usage, &bit, &max, EV_REL, (c))
  57. #define map_key(c) hid_map_usage(hidinput, usage, &bit, &max, EV_KEY, (c))
  58. #define map_led(c) hid_map_usage(hidinput, usage, &bit, &max, EV_LED, (c))
  59. #define map_abs_clear(c) hid_map_usage_clear(hidinput, usage, &bit, \
  60. &max, EV_ABS, (c))
  61. #define map_key_clear(c) hid_map_usage_clear(hidinput, usage, &bit, \
  62. &max, EV_KEY, (c))
  63. static bool match_scancode(struct hid_usage *usage,
  64. unsigned int cur_idx, unsigned int scancode)
  65. {
  66. return (usage->hid & (HID_USAGE_PAGE | HID_USAGE)) == scancode;
  67. }
  68. static bool match_keycode(struct hid_usage *usage,
  69. unsigned int cur_idx, unsigned int keycode)
  70. {
  71. /*
  72. * We should exclude unmapped usages when doing lookup by keycode.
  73. */
  74. return (usage->type == EV_KEY && usage->code == keycode);
  75. }
  76. static bool match_index(struct hid_usage *usage,
  77. unsigned int cur_idx, unsigned int idx)
  78. {
  79. return cur_idx == idx;
  80. }
  81. typedef bool (*hid_usage_cmp_t)(struct hid_usage *usage,
  82. unsigned int cur_idx, unsigned int val);
  83. static struct hid_usage *hidinput_find_key(struct hid_device *hid,
  84. hid_usage_cmp_t match,
  85. unsigned int value,
  86. unsigned int *usage_idx)
  87. {
  88. unsigned int i, j, k, cur_idx = 0;
  89. struct hid_report *report;
  90. struct hid_usage *usage;
  91. for (k = HID_INPUT_REPORT; k <= HID_OUTPUT_REPORT; k++) {
  92. list_for_each_entry(report, &hid->report_enum[k].report_list, list) {
  93. for (i = 0; i < report->maxfield; i++) {
  94. for (j = 0; j < report->field[i]->maxusage; j++) {
  95. usage = report->field[i]->usage + j;
  96. if (usage->type == EV_KEY || usage->type == 0) {
  97. if (match(usage, cur_idx, value)) {
  98. if (usage_idx)
  99. *usage_idx = cur_idx;
  100. return usage;
  101. }
  102. cur_idx++;
  103. }
  104. }
  105. }
  106. }
  107. }
  108. return NULL;
  109. }
  110. static struct hid_usage *hidinput_locate_usage(struct hid_device *hid,
  111. const struct input_keymap_entry *ke,
  112. unsigned int *index)
  113. {
  114. struct hid_usage *usage;
  115. unsigned int scancode;
  116. if (ke->flags & INPUT_KEYMAP_BY_INDEX)
  117. usage = hidinput_find_key(hid, match_index, ke->index, index);
  118. else if (input_scancode_to_scalar(ke, &scancode) == 0)
  119. usage = hidinput_find_key(hid, match_scancode, scancode, index);
  120. else
  121. usage = NULL;
  122. return usage;
  123. }
  124. static int hidinput_getkeycode(struct input_dev *dev,
  125. struct input_keymap_entry *ke)
  126. {
  127. struct hid_device *hid = input_get_drvdata(dev);
  128. struct hid_usage *usage;
  129. unsigned int scancode, index;
  130. usage = hidinput_locate_usage(hid, ke, &index);
  131. if (usage) {
  132. ke->keycode = usage->type == EV_KEY ?
  133. usage->code : KEY_RESERVED;
  134. ke->index = index;
  135. scancode = usage->hid & (HID_USAGE_PAGE | HID_USAGE);
  136. ke->len = sizeof(scancode);
  137. memcpy(ke->scancode, &scancode, sizeof(scancode));
  138. return 0;
  139. }
  140. return -EINVAL;
  141. }
  142. static int hidinput_setkeycode(struct input_dev *dev,
  143. const struct input_keymap_entry *ke,
  144. unsigned int *old_keycode)
  145. {
  146. struct hid_device *hid = input_get_drvdata(dev);
  147. struct hid_usage *usage;
  148. usage = hidinput_locate_usage(hid, ke, NULL);
  149. if (usage) {
  150. *old_keycode = usage->type == EV_KEY ?
  151. usage->code : KEY_RESERVED;
  152. usage->code = ke->keycode;
  153. clear_bit(*old_keycode, dev->keybit);
  154. set_bit(usage->code, dev->keybit);
  155. dbg_hid("Assigned keycode %d to HID usage code %x\n",
  156. usage->code, usage->hid);
  157. /*
  158. * Set the keybit for the old keycode if the old keycode is used
  159. * by another key
  160. */
  161. if (hidinput_find_key(hid, match_keycode, *old_keycode, NULL))
  162. set_bit(*old_keycode, dev->keybit);
  163. return 0;
  164. }
  165. return -EINVAL;
  166. }
  167. /**
  168. * hidinput_calc_abs_res - calculate an absolute axis resolution
  169. * @field: the HID report field to calculate resolution for
  170. * @code: axis code
  171. *
  172. * The formula is:
  173. * (logical_maximum - logical_minimum)
  174. * resolution = ----------------------------------------------------------
  175. * (physical_maximum - physical_minimum) * 10 ^ unit_exponent
  176. *
  177. * as seen in the HID specification v1.11 6.2.2.7 Global Items.
  178. *
  179. * Only exponent 1 length units are processed. Centimeters and inches are
  180. * converted to millimeters. Degrees are converted to radians.
  181. */
  182. static __s32 hidinput_calc_abs_res(const struct hid_field *field, __u16 code)
  183. {
  184. __s32 unit_exponent = field->unit_exponent;
  185. __s32 logical_extents = field->logical_maximum -
  186. field->logical_minimum;
  187. __s32 physical_extents = field->physical_maximum -
  188. field->physical_minimum;
  189. __s32 prev;
  190. /* Check if the extents are sane */
  191. if (logical_extents <= 0 || physical_extents <= 0)
  192. return 0;
  193. /*
  194. * Verify and convert units.
  195. * See HID specification v1.11 6.2.2.7 Global Items for unit decoding
  196. */
  197. if (code == ABS_X || code == ABS_Y || code == ABS_Z) {
  198. if (field->unit == 0x11) { /* If centimeters */
  199. /* Convert to millimeters */
  200. unit_exponent += 1;
  201. } else if (field->unit == 0x13) { /* If inches */
  202. /* Convert to millimeters */
  203. prev = physical_extents;
  204. physical_extents *= 254;
  205. if (physical_extents < prev)
  206. return 0;
  207. unit_exponent -= 1;
  208. } else {
  209. return 0;
  210. }
  211. } else if (code == ABS_RX || code == ABS_RY || code == ABS_RZ) {
  212. if (field->unit == 0x14) { /* If degrees */
  213. /* Convert to radians */
  214. prev = logical_extents;
  215. logical_extents *= 573;
  216. if (logical_extents < prev)
  217. return 0;
  218. unit_exponent += 1;
  219. } else if (field->unit != 0x12) { /* If not radians */
  220. return 0;
  221. }
  222. } else {
  223. return 0;
  224. }
  225. /* Apply negative unit exponent */
  226. for (; unit_exponent < 0; unit_exponent++) {
  227. prev = logical_extents;
  228. logical_extents *= 10;
  229. if (logical_extents < prev)
  230. return 0;
  231. }
  232. /* Apply positive unit exponent */
  233. for (; unit_exponent > 0; unit_exponent--) {
  234. prev = physical_extents;
  235. physical_extents *= 10;
  236. if (physical_extents < prev)
  237. return 0;
  238. }
  239. /* Calculate resolution */
  240. return logical_extents / physical_extents;
  241. }
  242. #ifdef CONFIG_HID_BATTERY_STRENGTH
  243. static enum power_supply_property hidinput_battery_props[] = {
  244. POWER_SUPPLY_PROP_PRESENT,
  245. POWER_SUPPLY_PROP_ONLINE,
  246. POWER_SUPPLY_PROP_CAPACITY,
  247. POWER_SUPPLY_PROP_MODEL_NAME,
  248. POWER_SUPPLY_PROP_STATUS,
  249. POWER_SUPPLY_PROP_SCOPE,
  250. };
  251. #define HID_BATTERY_QUIRK_PERCENT (1 << 0) /* always reports percent */
  252. #define HID_BATTERY_QUIRK_FEATURE (1 << 1) /* ask for feature report */
  253. static const struct hid_device_id hid_battery_quirks[] = {
  254. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_APPLE,
  255. USB_DEVICE_ID_APPLE_ALU_WIRELESS_2011_ANSI),
  256. HID_BATTERY_QUIRK_PERCENT | HID_BATTERY_QUIRK_FEATURE },
  257. {}
  258. };
  259. static unsigned find_battery_quirk(struct hid_device *hdev)
  260. {
  261. unsigned quirks = 0;
  262. const struct hid_device_id *match;
  263. match = hid_match_id(hdev, hid_battery_quirks);
  264. if (match != NULL)
  265. quirks = match->driver_data;
  266. return quirks;
  267. }
  268. static int hidinput_get_battery_property(struct power_supply *psy,
  269. enum power_supply_property prop,
  270. union power_supply_propval *val)
  271. {
  272. struct hid_device *dev = container_of(psy, struct hid_device, battery);
  273. int ret = 0;
  274. __u8 buf[2] = {};
  275. switch (prop) {
  276. case POWER_SUPPLY_PROP_PRESENT:
  277. case POWER_SUPPLY_PROP_ONLINE:
  278. val->intval = 1;
  279. break;
  280. case POWER_SUPPLY_PROP_CAPACITY:
  281. ret = dev->hid_get_raw_report(dev, dev->battery_report_id,
  282. buf, sizeof(buf),
  283. dev->battery_report_type);
  284. if (ret != 2) {
  285. if (ret >= 0)
  286. ret = -EINVAL;
  287. break;
  288. }
  289. if (dev->battery_min < dev->battery_max &&
  290. buf[1] >= dev->battery_min &&
  291. buf[1] <= dev->battery_max)
  292. val->intval = (100 * (buf[1] - dev->battery_min)) /
  293. (dev->battery_max - dev->battery_min);
  294. break;
  295. case POWER_SUPPLY_PROP_MODEL_NAME:
  296. val->strval = dev->name;
  297. break;
  298. case POWER_SUPPLY_PROP_STATUS:
  299. val->intval = POWER_SUPPLY_STATUS_DISCHARGING;
  300. break;
  301. case POWER_SUPPLY_PROP_SCOPE:
  302. val->intval = POWER_SUPPLY_SCOPE_DEVICE;
  303. break;
  304. default:
  305. ret = -EINVAL;
  306. break;
  307. }
  308. return ret;
  309. }
  310. static bool hidinput_setup_battery(struct hid_device *dev, unsigned report_type, struct hid_field *field)
  311. {
  312. struct power_supply *battery = &dev->battery;
  313. int ret;
  314. unsigned quirks;
  315. s32 min, max;
  316. if (field->usage->hid != HID_DC_BATTERYSTRENGTH)
  317. return false; /* no match */
  318. if (battery->name != NULL)
  319. goto out; /* already initialized? */
  320. battery->name = kasprintf(GFP_KERNEL, "hid-%s-battery", dev->uniq);
  321. if (battery->name == NULL)
  322. goto out;
  323. battery->type = POWER_SUPPLY_TYPE_BATTERY;
  324. battery->properties = hidinput_battery_props;
  325. battery->num_properties = ARRAY_SIZE(hidinput_battery_props);
  326. battery->use_for_apm = 0;
  327. battery->get_property = hidinput_get_battery_property;
  328. quirks = find_battery_quirk(dev);
  329. hid_dbg(dev, "device %x:%x:%x %d quirks %d\n",
  330. dev->bus, dev->vendor, dev->product, dev->version, quirks);
  331. min = field->logical_minimum;
  332. max = field->logical_maximum;
  333. if (quirks & HID_BATTERY_QUIRK_PERCENT) {
  334. min = 0;
  335. max = 100;
  336. }
  337. if (quirks & HID_BATTERY_QUIRK_FEATURE)
  338. report_type = HID_FEATURE_REPORT;
  339. dev->battery_min = min;
  340. dev->battery_max = max;
  341. dev->battery_report_type = report_type;
  342. dev->battery_report_id = field->report->id;
  343. ret = power_supply_register(&dev->dev, battery);
  344. if (ret != 0) {
  345. hid_warn(dev, "can't register power supply: %d\n", ret);
  346. kfree(battery->name);
  347. battery->name = NULL;
  348. }
  349. power_supply_powers(battery, &dev->dev);
  350. out:
  351. return true;
  352. }
  353. static void hidinput_cleanup_battery(struct hid_device *dev)
  354. {
  355. if (!dev->battery.name)
  356. return;
  357. power_supply_unregister(&dev->battery);
  358. kfree(dev->battery.name);
  359. dev->battery.name = NULL;
  360. }
  361. #else /* !CONFIG_HID_BATTERY_STRENGTH */
  362. static bool hidinput_setup_battery(struct hid_device *dev, unsigned report_type,
  363. struct hid_field *field)
  364. {
  365. return false;
  366. }
  367. static void hidinput_cleanup_battery(struct hid_device *dev)
  368. {
  369. }
  370. #endif /* CONFIG_HID_BATTERY_STRENGTH */
  371. static void hidinput_configure_usage(struct hid_input *hidinput, struct hid_field *field,
  372. struct hid_usage *usage)
  373. {
  374. struct input_dev *input = hidinput->input;
  375. struct hid_device *device = input_get_drvdata(input);
  376. int max = 0, code;
  377. unsigned long *bit = NULL;
  378. field->hidinput = hidinput;
  379. if (field->flags & HID_MAIN_ITEM_CONSTANT)
  380. goto ignore;
  381. /* only LED usages are supported in output fields */
  382. if (field->report_type == HID_OUTPUT_REPORT &&
  383. (usage->hid & HID_USAGE_PAGE) != HID_UP_LED) {
  384. goto ignore;
  385. }
  386. if (device->driver->input_mapping) {
  387. int ret = device->driver->input_mapping(device, hidinput, field,
  388. usage, &bit, &max);
  389. if (ret > 0)
  390. goto mapped;
  391. if (ret < 0)
  392. goto ignore;
  393. }
  394. switch (usage->hid & HID_USAGE_PAGE) {
  395. case HID_UP_UNDEFINED:
  396. goto ignore;
  397. case HID_UP_KEYBOARD:
  398. set_bit(EV_REP, input->evbit);
  399. if ((usage->hid & HID_USAGE) < 256) {
  400. if (!hid_keyboard[usage->hid & HID_USAGE]) goto ignore;
  401. map_key_clear(hid_keyboard[usage->hid & HID_USAGE]);
  402. } else
  403. map_key(KEY_UNKNOWN);
  404. break;
  405. case HID_UP_BUTTON:
  406. code = ((usage->hid - 1) & HID_USAGE);
  407. switch (field->application) {
  408. case HID_GD_MOUSE:
  409. case HID_GD_POINTER: code += BTN_MOUSE; break;
  410. case HID_GD_JOYSTICK:
  411. if (code <= 0xf)
  412. code += BTN_JOYSTICK;
  413. else
  414. code += BTN_TRIGGER_HAPPY;
  415. break;
  416. case HID_GD_GAMEPAD: code += BTN_GAMEPAD; break;
  417. default:
  418. switch (field->physical) {
  419. case HID_GD_MOUSE:
  420. case HID_GD_POINTER: code += BTN_MOUSE; break;
  421. case HID_GD_JOYSTICK: code += BTN_JOYSTICK; break;
  422. case HID_GD_GAMEPAD: code += BTN_GAMEPAD; break;
  423. default: code += BTN_MISC;
  424. }
  425. }
  426. map_key(code);
  427. break;
  428. case HID_UP_SIMULATION:
  429. switch (usage->hid & 0xffff) {
  430. case 0xba: map_abs(ABS_RUDDER); break;
  431. case 0xbb: map_abs(ABS_THROTTLE); break;
  432. case 0xc4: map_abs(ABS_GAS); break;
  433. case 0xc5: map_abs(ABS_BRAKE); break;
  434. case 0xc8: map_abs(ABS_WHEEL); break;
  435. default: goto ignore;
  436. }
  437. break;
  438. case HID_UP_GENDESK:
  439. if ((usage->hid & 0xf0) == 0x80) { /* SystemControl */
  440. switch (usage->hid & 0xf) {
  441. case 0x1: map_key_clear(KEY_POWER); break;
  442. case 0x2: map_key_clear(KEY_SLEEP); break;
  443. case 0x3: map_key_clear(KEY_WAKEUP); break;
  444. case 0x4: map_key_clear(KEY_CONTEXT_MENU); break;
  445. case 0x5: map_key_clear(KEY_MENU); break;
  446. case 0x6: map_key_clear(KEY_PROG1); break;
  447. case 0x7: map_key_clear(KEY_HELP); break;
  448. case 0x8: map_key_clear(KEY_EXIT); break;
  449. case 0x9: map_key_clear(KEY_SELECT); break;
  450. case 0xa: map_key_clear(KEY_RIGHT); break;
  451. case 0xb: map_key_clear(KEY_LEFT); break;
  452. case 0xc: map_key_clear(KEY_UP); break;
  453. case 0xd: map_key_clear(KEY_DOWN); break;
  454. case 0xe: map_key_clear(KEY_POWER2); break;
  455. case 0xf: map_key_clear(KEY_RESTART); break;
  456. default: goto unknown;
  457. }
  458. break;
  459. }
  460. if ((usage->hid & 0xf0) == 0x90) { /* D-pad */
  461. switch (usage->hid) {
  462. case HID_GD_UP: usage->hat_dir = 1; break;
  463. case HID_GD_DOWN: usage->hat_dir = 5; break;
  464. case HID_GD_RIGHT: usage->hat_dir = 3; break;
  465. case HID_GD_LEFT: usage->hat_dir = 7; break;
  466. default: goto unknown;
  467. }
  468. if (field->dpad) {
  469. map_abs(field->dpad);
  470. goto ignore;
  471. }
  472. map_abs(ABS_HAT0X);
  473. break;
  474. }
  475. switch (usage->hid) {
  476. /* These usage IDs map directly to the usage codes. */
  477. case HID_GD_X: case HID_GD_Y: case HID_GD_Z:
  478. case HID_GD_RX: case HID_GD_RY: case HID_GD_RZ:
  479. case HID_GD_SLIDER: case HID_GD_DIAL: case HID_GD_WHEEL:
  480. if (field->flags & HID_MAIN_ITEM_RELATIVE)
  481. map_rel(usage->hid & 0xf);
  482. else
  483. map_abs(usage->hid & 0xf);
  484. break;
  485. case HID_GD_HATSWITCH:
  486. usage->hat_min = field->logical_minimum;
  487. usage->hat_max = field->logical_maximum;
  488. map_abs(ABS_HAT0X);
  489. break;
  490. case HID_GD_START: map_key_clear(BTN_START); break;
  491. case HID_GD_SELECT: map_key_clear(BTN_SELECT); break;
  492. default: goto unknown;
  493. }
  494. break;
  495. case HID_UP_LED:
  496. switch (usage->hid & 0xffff) { /* HID-Value: */
  497. case 0x01: map_led (LED_NUML); break; /* "Num Lock" */
  498. case 0x02: map_led (LED_CAPSL); break; /* "Caps Lock" */
  499. case 0x03: map_led (LED_SCROLLL); break; /* "Scroll Lock" */
  500. case 0x04: map_led (LED_COMPOSE); break; /* "Compose" */
  501. case 0x05: map_led (LED_KANA); break; /* "Kana" */
  502. case 0x27: map_led (LED_SLEEP); break; /* "Stand-By" */
  503. case 0x4c: map_led (LED_SUSPEND); break; /* "System Suspend" */
  504. case 0x09: map_led (LED_MUTE); break; /* "Mute" */
  505. case 0x4b: map_led (LED_MISC); break; /* "Generic Indicator" */
  506. case 0x19: map_led (LED_MAIL); break; /* "Message Waiting" */
  507. case 0x4d: map_led (LED_CHARGING); break; /* "External Power Connected" */
  508. default: goto ignore;
  509. }
  510. break;
  511. case HID_UP_DIGITIZER:
  512. switch (usage->hid & 0xff) {
  513. case 0x00: /* Undefined */
  514. goto ignore;
  515. case 0x30: /* TipPressure */
  516. if (!test_bit(BTN_TOUCH, input->keybit)) {
  517. device->quirks |= HID_QUIRK_NOTOUCH;
  518. set_bit(EV_KEY, input->evbit);
  519. set_bit(BTN_TOUCH, input->keybit);
  520. }
  521. map_abs_clear(ABS_PRESSURE);
  522. break;
  523. case 0x32: /* InRange */
  524. switch (field->physical & 0xff) {
  525. case 0x21: map_key(BTN_TOOL_MOUSE); break;
  526. case 0x22: map_key(BTN_TOOL_FINGER); break;
  527. default: map_key(BTN_TOOL_PEN); break;
  528. }
  529. break;
  530. case 0x3c: /* Invert */
  531. map_key_clear(BTN_TOOL_RUBBER);
  532. break;
  533. case 0x33: /* Touch */
  534. case 0x42: /* TipSwitch */
  535. case 0x43: /* TipSwitch2 */
  536. device->quirks &= ~HID_QUIRK_NOTOUCH;
  537. map_key_clear(BTN_TOUCH);
  538. break;
  539. case 0x44: /* BarrelSwitch */
  540. map_key_clear(BTN_STYLUS);
  541. break;
  542. case 0x46: /* TabletPick */
  543. map_key_clear(BTN_STYLUS2);
  544. break;
  545. default: goto unknown;
  546. }
  547. break;
  548. case HID_UP_CONSUMER: /* USB HUT v1.12, pages 75-84 */
  549. switch (usage->hid & HID_USAGE) {
  550. case 0x000: goto ignore;
  551. case 0x030: map_key_clear(KEY_POWER); break;
  552. case 0x031: map_key_clear(KEY_RESTART); break;
  553. case 0x032: map_key_clear(KEY_SLEEP); break;
  554. case 0x034: map_key_clear(KEY_SLEEP); break;
  555. case 0x035: map_key_clear(KEY_KBDILLUMTOGGLE); break;
  556. case 0x036: map_key_clear(BTN_MISC); break;
  557. case 0x040: map_key_clear(KEY_MENU); break; /* Menu */
  558. case 0x041: map_key_clear(KEY_SELECT); break; /* Menu Pick */
  559. case 0x042: map_key_clear(KEY_UP); break; /* Menu Up */
  560. case 0x043: map_key_clear(KEY_DOWN); break; /* Menu Down */
  561. case 0x044: map_key_clear(KEY_LEFT); break; /* Menu Left */
  562. case 0x045: map_key_clear(KEY_RIGHT); break; /* Menu Right */
  563. case 0x046: map_key_clear(KEY_ESC); break; /* Menu Escape */
  564. case 0x047: map_key_clear(KEY_KPPLUS); break; /* Menu Value Increase */
  565. case 0x048: map_key_clear(KEY_KPMINUS); break; /* Menu Value Decrease */
  566. case 0x060: map_key_clear(KEY_INFO); break; /* Data On Screen */
  567. case 0x061: map_key_clear(KEY_SUBTITLE); break; /* Closed Caption */
  568. case 0x063: map_key_clear(KEY_VCR); break; /* VCR/TV */
  569. case 0x065: map_key_clear(KEY_CAMERA); break; /* Snapshot */
  570. case 0x069: map_key_clear(KEY_RED); break;
  571. case 0x06a: map_key_clear(KEY_GREEN); break;
  572. case 0x06b: map_key_clear(KEY_BLUE); break;
  573. case 0x06c: map_key_clear(KEY_YELLOW); break;
  574. case 0x06d: map_key_clear(KEY_ZOOM); break;
  575. case 0x082: map_key_clear(KEY_VIDEO_NEXT); break;
  576. case 0x083: map_key_clear(KEY_LAST); break;
  577. case 0x084: map_key_clear(KEY_ENTER); break;
  578. case 0x088: map_key_clear(KEY_PC); break;
  579. case 0x089: map_key_clear(KEY_TV); break;
  580. case 0x08a: map_key_clear(KEY_WWW); break;
  581. case 0x08b: map_key_clear(KEY_DVD); break;
  582. case 0x08c: map_key_clear(KEY_PHONE); break;
  583. case 0x08d: map_key_clear(KEY_PROGRAM); break;
  584. case 0x08e: map_key_clear(KEY_VIDEOPHONE); break;
  585. case 0x08f: map_key_clear(KEY_GAMES); break;
  586. case 0x090: map_key_clear(KEY_MEMO); break;
  587. case 0x091: map_key_clear(KEY_CD); break;
  588. case 0x092: map_key_clear(KEY_VCR); break;
  589. case 0x093: map_key_clear(KEY_TUNER); break;
  590. case 0x094: map_key_clear(KEY_EXIT); break;
  591. case 0x095: map_key_clear(KEY_HELP); break;
  592. case 0x096: map_key_clear(KEY_TAPE); break;
  593. case 0x097: map_key_clear(KEY_TV2); break;
  594. case 0x098: map_key_clear(KEY_SAT); break;
  595. case 0x09a: map_key_clear(KEY_PVR); break;
  596. case 0x09c: map_key_clear(KEY_CHANNELUP); break;
  597. case 0x09d: map_key_clear(KEY_CHANNELDOWN); break;
  598. case 0x0a0: map_key_clear(KEY_VCR2); break;
  599. case 0x0b0: map_key_clear(KEY_PLAY); break;
  600. case 0x0b1: map_key_clear(KEY_PAUSE); break;
  601. case 0x0b2: map_key_clear(KEY_RECORD); break;
  602. case 0x0b3: map_key_clear(KEY_FASTFORWARD); break;
  603. case 0x0b4: map_key_clear(KEY_REWIND); break;
  604. case 0x0b5: map_key_clear(KEY_NEXTSONG); break;
  605. case 0x0b6: map_key_clear(KEY_PREVIOUSSONG); break;
  606. case 0x0b7: map_key_clear(KEY_STOPCD); break;
  607. case 0x0b8: map_key_clear(KEY_EJECTCD); break;
  608. case 0x0bc: map_key_clear(KEY_MEDIA_REPEAT); break;
  609. case 0x0b9: map_key_clear(KEY_SHUFFLE); break;
  610. case 0x0bf: map_key_clear(KEY_SLOW); break;
  611. case 0x0cd: map_key_clear(KEY_PLAYPAUSE); break;
  612. case 0x0e0: map_abs_clear(ABS_VOLUME); break;
  613. case 0x0e2: map_key_clear(KEY_MUTE); break;
  614. case 0x0e5: map_key_clear(KEY_BASSBOOST); break;
  615. case 0x0e9: map_key_clear(KEY_VOLUMEUP); break;
  616. case 0x0ea: map_key_clear(KEY_VOLUMEDOWN); break;
  617. case 0x0f5: map_key_clear(KEY_SLOW); break;
  618. case 0x182: map_key_clear(KEY_BOOKMARKS); break;
  619. case 0x183: map_key_clear(KEY_CONFIG); break;
  620. case 0x184: map_key_clear(KEY_WORDPROCESSOR); break;
  621. case 0x185: map_key_clear(KEY_EDITOR); break;
  622. case 0x186: map_key_clear(KEY_SPREADSHEET); break;
  623. case 0x187: map_key_clear(KEY_GRAPHICSEDITOR); break;
  624. case 0x188: map_key_clear(KEY_PRESENTATION); break;
  625. case 0x189: map_key_clear(KEY_DATABASE); break;
  626. case 0x18a: map_key_clear(KEY_MAIL); break;
  627. case 0x18b: map_key_clear(KEY_NEWS); break;
  628. case 0x18c: map_key_clear(KEY_VOICEMAIL); break;
  629. case 0x18d: map_key_clear(KEY_ADDRESSBOOK); break;
  630. case 0x18e: map_key_clear(KEY_CALENDAR); break;
  631. case 0x191: map_key_clear(KEY_FINANCE); break;
  632. case 0x192: map_key_clear(KEY_CALC); break;
  633. case 0x193: map_key_clear(KEY_PLAYER); break;
  634. case 0x194: map_key_clear(KEY_FILE); break;
  635. case 0x196: map_key_clear(KEY_WWW); break;
  636. case 0x199: map_key_clear(KEY_CHAT); break;
  637. case 0x19c: map_key_clear(KEY_LOGOFF); break;
  638. case 0x19e: map_key_clear(KEY_COFFEE); break;
  639. case 0x1a6: map_key_clear(KEY_HELP); break;
  640. case 0x1a7: map_key_clear(KEY_DOCUMENTS); break;
  641. case 0x1ab: map_key_clear(KEY_SPELLCHECK); break;
  642. case 0x1ae: map_key_clear(KEY_KEYBOARD); break;
  643. case 0x1b6: map_key_clear(KEY_IMAGES); break;
  644. case 0x1b7: map_key_clear(KEY_AUDIO); break;
  645. case 0x1b8: map_key_clear(KEY_VIDEO); break;
  646. case 0x1bc: map_key_clear(KEY_MESSENGER); break;
  647. case 0x1bd: map_key_clear(KEY_INFO); break;
  648. case 0x201: map_key_clear(KEY_NEW); break;
  649. case 0x202: map_key_clear(KEY_OPEN); break;
  650. case 0x203: map_key_clear(KEY_CLOSE); break;
  651. case 0x204: map_key_clear(KEY_EXIT); break;
  652. case 0x207: map_key_clear(KEY_SAVE); break;
  653. case 0x208: map_key_clear(KEY_PRINT); break;
  654. case 0x209: map_key_clear(KEY_PROPS); break;
  655. case 0x21a: map_key_clear(KEY_UNDO); break;
  656. case 0x21b: map_key_clear(KEY_COPY); break;
  657. case 0x21c: map_key_clear(KEY_CUT); break;
  658. case 0x21d: map_key_clear(KEY_PASTE); break;
  659. case 0x21f: map_key_clear(KEY_FIND); break;
  660. case 0x221: map_key_clear(KEY_SEARCH); break;
  661. case 0x222: map_key_clear(KEY_GOTO); break;
  662. case 0x223: map_key_clear(KEY_HOMEPAGE); break;
  663. case 0x224: map_key_clear(KEY_BACK); break;
  664. case 0x225: map_key_clear(KEY_FORWARD); break;
  665. case 0x226: map_key_clear(KEY_STOP); break;
  666. case 0x227: map_key_clear(KEY_REFRESH); break;
  667. case 0x22a: map_key_clear(KEY_BOOKMARKS); break;
  668. case 0x22d: map_key_clear(KEY_ZOOMIN); break;
  669. case 0x22e: map_key_clear(KEY_ZOOMOUT); break;
  670. case 0x22f: map_key_clear(KEY_ZOOMRESET); break;
  671. case 0x233: map_key_clear(KEY_SCROLLUP); break;
  672. case 0x234: map_key_clear(KEY_SCROLLDOWN); break;
  673. case 0x238: map_rel(REL_HWHEEL); break;
  674. case 0x23d: map_key_clear(KEY_EDIT); break;
  675. case 0x25f: map_key_clear(KEY_CANCEL); break;
  676. case 0x269: map_key_clear(KEY_INSERT); break;
  677. case 0x26a: map_key_clear(KEY_DELETE); break;
  678. case 0x279: map_key_clear(KEY_REDO); break;
  679. case 0x289: map_key_clear(KEY_REPLY); break;
  680. case 0x28b: map_key_clear(KEY_FORWARDMAIL); break;
  681. case 0x28c: map_key_clear(KEY_SEND); break;
  682. default: goto ignore;
  683. }
  684. break;
  685. case HID_UP_GENDEVCTRLS:
  686. if (hidinput_setup_battery(device, HID_INPUT_REPORT, field))
  687. goto ignore;
  688. else
  689. goto unknown;
  690. break;
  691. case HID_UP_HPVENDOR: /* Reported on a Dutch layout HP5308 */
  692. set_bit(EV_REP, input->evbit);
  693. switch (usage->hid & HID_USAGE) {
  694. case 0x021: map_key_clear(KEY_PRINT); break;
  695. case 0x070: map_key_clear(KEY_HP); break;
  696. case 0x071: map_key_clear(KEY_CAMERA); break;
  697. case 0x072: map_key_clear(KEY_SOUND); break;
  698. case 0x073: map_key_clear(KEY_QUESTION); break;
  699. case 0x080: map_key_clear(KEY_EMAIL); break;
  700. case 0x081: map_key_clear(KEY_CHAT); break;
  701. case 0x082: map_key_clear(KEY_SEARCH); break;
  702. case 0x083: map_key_clear(KEY_CONNECT); break;
  703. case 0x084: map_key_clear(KEY_FINANCE); break;
  704. case 0x085: map_key_clear(KEY_SPORT); break;
  705. case 0x086: map_key_clear(KEY_SHOP); break;
  706. default: goto ignore;
  707. }
  708. break;
  709. case HID_UP_MSVENDOR:
  710. goto ignore;
  711. case HID_UP_CUSTOM: /* Reported on Logitech and Apple USB keyboards */
  712. set_bit(EV_REP, input->evbit);
  713. goto ignore;
  714. case HID_UP_LOGIVENDOR:
  715. goto ignore;
  716. case HID_UP_PID:
  717. switch (usage->hid & HID_USAGE) {
  718. case 0xa4: map_key_clear(BTN_DEAD); break;
  719. default: goto ignore;
  720. }
  721. break;
  722. default:
  723. unknown:
  724. if (field->report_size == 1) {
  725. if (field->report->type == HID_OUTPUT_REPORT) {
  726. map_led(LED_MISC);
  727. break;
  728. }
  729. map_key(BTN_MISC);
  730. break;
  731. }
  732. if (field->flags & HID_MAIN_ITEM_RELATIVE) {
  733. map_rel(REL_MISC);
  734. break;
  735. }
  736. map_abs(ABS_MISC);
  737. break;
  738. }
  739. mapped:
  740. if (device->driver->input_mapped && device->driver->input_mapped(device,
  741. hidinput, field, usage, &bit, &max) < 0)
  742. goto ignore;
  743. set_bit(usage->type, input->evbit);
  744. while (usage->code <= max && test_and_set_bit(usage->code, bit))
  745. usage->code = find_next_zero_bit(bit, max + 1, usage->code);
  746. if (usage->code > max)
  747. goto ignore;
  748. if (usage->type == EV_ABS) {
  749. int a = field->logical_minimum;
  750. int b = field->logical_maximum;
  751. if ((device->quirks & HID_QUIRK_BADPAD) && (usage->code == ABS_X || usage->code == ABS_Y)) {
  752. a = field->logical_minimum = 0;
  753. b = field->logical_maximum = 255;
  754. }
  755. if (field->application == HID_GD_GAMEPAD || field->application == HID_GD_JOYSTICK)
  756. input_set_abs_params(input, usage->code, a, b, (b - a) >> 8, (b - a) >> 4);
  757. else input_set_abs_params(input, usage->code, a, b, 0, 0);
  758. input_abs_set_res(input, usage->code,
  759. hidinput_calc_abs_res(field, usage->code));
  760. /* use a larger default input buffer for MT devices */
  761. if (usage->code == ABS_MT_POSITION_X && input->hint_events_per_packet == 0)
  762. input_set_events_per_packet(input, 60);
  763. }
  764. if (usage->type == EV_ABS &&
  765. (usage->hat_min < usage->hat_max || usage->hat_dir)) {
  766. int i;
  767. for (i = usage->code; i < usage->code + 2 && i <= max; i++) {
  768. input_set_abs_params(input, i, -1, 1, 0, 0);
  769. set_bit(i, input->absbit);
  770. }
  771. if (usage->hat_dir && !field->dpad)
  772. field->dpad = usage->code;
  773. }
  774. /* for those devices which produce Consumer volume usage as relative,
  775. * we emulate pressing volumeup/volumedown appropriate number of times
  776. * in hidinput_hid_event()
  777. */
  778. if ((usage->type == EV_ABS) && (field->flags & HID_MAIN_ITEM_RELATIVE) &&
  779. (usage->code == ABS_VOLUME)) {
  780. set_bit(KEY_VOLUMEUP, input->keybit);
  781. set_bit(KEY_VOLUMEDOWN, input->keybit);
  782. }
  783. if (usage->type == EV_KEY) {
  784. set_bit(EV_MSC, input->evbit);
  785. set_bit(MSC_SCAN, input->mscbit);
  786. }
  787. ignore:
  788. return;
  789. }
  790. void hidinput_hid_event(struct hid_device *hid, struct hid_field *field, struct hid_usage *usage, __s32 value)
  791. {
  792. struct input_dev *input;
  793. unsigned *quirks = &hid->quirks;
  794. if (!field->hidinput)
  795. return;
  796. input = field->hidinput->input;
  797. if (!usage->type)
  798. return;
  799. if (usage->hat_min < usage->hat_max || usage->hat_dir) {
  800. int hat_dir = usage->hat_dir;
  801. if (!hat_dir)
  802. hat_dir = (value - usage->hat_min) * 8 / (usage->hat_max - usage->hat_min + 1) + 1;
  803. if (hat_dir < 0 || hat_dir > 8) hat_dir = 0;
  804. input_event(input, usage->type, usage->code , hid_hat_to_axis[hat_dir].x);
  805. input_event(input, usage->type, usage->code + 1, hid_hat_to_axis[hat_dir].y);
  806. return;
  807. }
  808. if (usage->hid == (HID_UP_DIGITIZER | 0x003c)) { /* Invert */
  809. *quirks = value ? (*quirks | HID_QUIRK_INVERT) : (*quirks & ~HID_QUIRK_INVERT);
  810. return;
  811. }
  812. if (usage->hid == (HID_UP_DIGITIZER | 0x0032)) { /* InRange */
  813. if (value) {
  814. input_event(input, usage->type, (*quirks & HID_QUIRK_INVERT) ? BTN_TOOL_RUBBER : usage->code, 1);
  815. return;
  816. }
  817. input_event(input, usage->type, usage->code, 0);
  818. input_event(input, usage->type, BTN_TOOL_RUBBER, 0);
  819. return;
  820. }
  821. if (usage->hid == (HID_UP_DIGITIZER | 0x0030) && (*quirks & HID_QUIRK_NOTOUCH)) { /* Pressure */
  822. int a = field->logical_minimum;
  823. int b = field->logical_maximum;
  824. input_event(input, EV_KEY, BTN_TOUCH, value > a + ((b - a) >> 3));
  825. }
  826. if (usage->hid == (HID_UP_PID | 0x83UL)) { /* Simultaneous Effects Max */
  827. dbg_hid("Maximum Effects - %d\n",value);
  828. return;
  829. }
  830. if (usage->hid == (HID_UP_PID | 0x7fUL)) {
  831. dbg_hid("PID Pool Report\n");
  832. return;
  833. }
  834. if ((usage->type == EV_KEY) && (usage->code == 0)) /* Key 0 is "unassigned", not KEY_UNKNOWN */
  835. return;
  836. if ((usage->type == EV_ABS) && (field->flags & HID_MAIN_ITEM_RELATIVE) &&
  837. (usage->code == ABS_VOLUME)) {
  838. int count = abs(value);
  839. int direction = value > 0 ? KEY_VOLUMEUP : KEY_VOLUMEDOWN;
  840. int i;
  841. for (i = 0; i < count; i++) {
  842. input_event(input, EV_KEY, direction, 1);
  843. input_sync(input);
  844. input_event(input, EV_KEY, direction, 0);
  845. input_sync(input);
  846. }
  847. return;
  848. }
  849. /*
  850. * Ignore out-of-range values as per HID specification,
  851. * section 5.10 and 6.2.25
  852. */
  853. if ((field->flags & HID_MAIN_ITEM_VARIABLE) &&
  854. (value < field->logical_minimum ||
  855. value > field->logical_maximum)) {
  856. dbg_hid("Ignoring out-of-range value %x\n", value);
  857. return;
  858. }
  859. /* report the usage code as scancode if the key status has changed */
  860. if (usage->type == EV_KEY && !!test_bit(usage->code, input->key) != value)
  861. input_event(input, EV_MSC, MSC_SCAN, usage->hid);
  862. input_event(input, usage->type, usage->code, value);
  863. if ((field->flags & HID_MAIN_ITEM_RELATIVE) && (usage->type == EV_KEY))
  864. input_event(input, usage->type, usage->code, 0);
  865. }
  866. void hidinput_report_event(struct hid_device *hid, struct hid_report *report)
  867. {
  868. struct hid_input *hidinput;
  869. if (hid->quirks & HID_QUIRK_NO_INPUT_SYNC)
  870. return;
  871. list_for_each_entry(hidinput, &hid->inputs, list)
  872. input_sync(hidinput->input);
  873. }
  874. EXPORT_SYMBOL_GPL(hidinput_report_event);
  875. int hidinput_find_field(struct hid_device *hid, unsigned int type, unsigned int code, struct hid_field **field)
  876. {
  877. struct hid_report *report;
  878. int i, j;
  879. list_for_each_entry(report, &hid->report_enum[HID_OUTPUT_REPORT].report_list, list) {
  880. for (i = 0; i < report->maxfield; i++) {
  881. *field = report->field[i];
  882. for (j = 0; j < (*field)->maxusage; j++)
  883. if ((*field)->usage[j].type == type && (*field)->usage[j].code == code)
  884. return j;
  885. }
  886. }
  887. return -1;
  888. }
  889. EXPORT_SYMBOL_GPL(hidinput_find_field);
  890. struct hid_field *hidinput_get_led_field(struct hid_device *hid)
  891. {
  892. struct hid_report *report;
  893. struct hid_field *field;
  894. int i, j;
  895. list_for_each_entry(report,
  896. &hid->report_enum[HID_OUTPUT_REPORT].report_list,
  897. list) {
  898. for (i = 0; i < report->maxfield; i++) {
  899. field = report->field[i];
  900. for (j = 0; j < field->maxusage; j++)
  901. if (field->usage[j].type == EV_LED)
  902. return field;
  903. }
  904. }
  905. return NULL;
  906. }
  907. EXPORT_SYMBOL_GPL(hidinput_get_led_field);
  908. unsigned int hidinput_count_leds(struct hid_device *hid)
  909. {
  910. struct hid_report *report;
  911. struct hid_field *field;
  912. int i, j;
  913. unsigned int count = 0;
  914. list_for_each_entry(report,
  915. &hid->report_enum[HID_OUTPUT_REPORT].report_list,
  916. list) {
  917. for (i = 0; i < report->maxfield; i++) {
  918. field = report->field[i];
  919. for (j = 0; j < field->maxusage; j++)
  920. if (field->usage[j].type == EV_LED &&
  921. field->value[j])
  922. count += 1;
  923. }
  924. }
  925. return count;
  926. }
  927. EXPORT_SYMBOL_GPL(hidinput_count_leds);
  928. static int hidinput_open(struct input_dev *dev)
  929. {
  930. struct hid_device *hid = input_get_drvdata(dev);
  931. return hid_hw_open(hid);
  932. }
  933. static void hidinput_close(struct input_dev *dev)
  934. {
  935. struct hid_device *hid = input_get_drvdata(dev);
  936. hid_hw_close(hid);
  937. }
  938. static void report_features(struct hid_device *hid)
  939. {
  940. struct hid_driver *drv = hid->driver;
  941. struct hid_report_enum *rep_enum;
  942. struct hid_report *rep;
  943. int i, j;
  944. rep_enum = &hid->report_enum[HID_FEATURE_REPORT];
  945. list_for_each_entry(rep, &rep_enum->report_list, list)
  946. for (i = 0; i < rep->maxfield; i++)
  947. for (j = 0; j < rep->field[i]->maxusage; j++) {
  948. /* Verify if Battery Strength feature is available */
  949. hidinput_setup_battery(hid, HID_FEATURE_REPORT, rep->field[i]);
  950. if (drv->feature_mapping)
  951. drv->feature_mapping(hid, rep->field[i],
  952. rep->field[i]->usage + j);
  953. }
  954. }
  955. /*
  956. * Register the input device; print a message.
  957. * Configure the input layer interface
  958. * Read all reports and initialize the absolute field values.
  959. */
  960. int hidinput_connect(struct hid_device *hid, unsigned int force)
  961. {
  962. struct hid_report *report;
  963. struct hid_input *hidinput = NULL;
  964. struct input_dev *input_dev;
  965. int i, j, k;
  966. INIT_LIST_HEAD(&hid->inputs);
  967. if (!force) {
  968. for (i = 0; i < hid->maxcollection; i++) {
  969. struct hid_collection *col = &hid->collection[i];
  970. if (col->type == HID_COLLECTION_APPLICATION ||
  971. col->type == HID_COLLECTION_PHYSICAL)
  972. if (IS_INPUT_APPLICATION(col->usage))
  973. break;
  974. }
  975. if (i == hid->maxcollection)
  976. return -1;
  977. }
  978. report_features(hid);
  979. for (k = HID_INPUT_REPORT; k <= HID_OUTPUT_REPORT; k++) {
  980. if (k == HID_OUTPUT_REPORT &&
  981. hid->quirks & HID_QUIRK_SKIP_OUTPUT_REPORTS)
  982. continue;
  983. list_for_each_entry(report, &hid->report_enum[k].report_list, list) {
  984. if (!report->maxfield)
  985. continue;
  986. if (!hidinput) {
  987. hidinput = kzalloc(sizeof(*hidinput), GFP_KERNEL);
  988. input_dev = input_allocate_device();
  989. if (!hidinput || !input_dev) {
  990. kfree(hidinput);
  991. input_free_device(input_dev);
  992. hid_err(hid, "Out of memory during hid input probe\n");
  993. goto out_unwind;
  994. }
  995. input_set_drvdata(input_dev, hid);
  996. input_dev->event =
  997. hid->ll_driver->hidinput_input_event;
  998. input_dev->open = hidinput_open;
  999. input_dev->close = hidinput_close;
  1000. input_dev->setkeycode = hidinput_setkeycode;
  1001. input_dev->getkeycode = hidinput_getkeycode;
  1002. input_dev->name = hid->name;
  1003. input_dev->phys = hid->phys;
  1004. input_dev->uniq = hid->uniq;
  1005. input_dev->id.bustype = hid->bus;
  1006. input_dev->id.vendor = hid->vendor;
  1007. input_dev->id.product = hid->product;
  1008. input_dev->id.version = hid->version;
  1009. input_dev->dev.parent = hid->dev.parent;
  1010. hidinput->input = input_dev;
  1011. list_add_tail(&hidinput->list, &hid->inputs);
  1012. }
  1013. for (i = 0; i < report->maxfield; i++)
  1014. for (j = 0; j < report->field[i]->maxusage; j++)
  1015. hidinput_configure_usage(hidinput, report->field[i],
  1016. report->field[i]->usage + j);
  1017. if (hid->quirks & HID_QUIRK_MULTI_INPUT) {
  1018. /* This will leave hidinput NULL, so that it
  1019. * allocates another one if we have more inputs on
  1020. * the same interface. Some devices (e.g. Happ's
  1021. * UGCI) cram a lot of unrelated inputs into the
  1022. * same interface. */
  1023. hidinput->report = report;
  1024. if (input_register_device(hidinput->input))
  1025. goto out_cleanup;
  1026. hidinput = NULL;
  1027. }
  1028. }
  1029. }
  1030. if (hidinput && input_register_device(hidinput->input))
  1031. goto out_cleanup;
  1032. return 0;
  1033. out_cleanup:
  1034. list_del(&hidinput->list);
  1035. input_free_device(hidinput->input);
  1036. kfree(hidinput);
  1037. out_unwind:
  1038. /* unwind the ones we already registered */
  1039. hidinput_disconnect(hid);
  1040. return -1;
  1041. }
  1042. EXPORT_SYMBOL_GPL(hidinput_connect);
  1043. void hidinput_disconnect(struct hid_device *hid)
  1044. {
  1045. struct hid_input *hidinput, *next;
  1046. hidinput_cleanup_battery(hid);
  1047. list_for_each_entry_safe(hidinput, next, &hid->inputs, list) {
  1048. list_del(&hidinput->list);
  1049. input_unregister_device(hidinput->input);
  1050. kfree(hidinput);
  1051. }
  1052. }
  1053. EXPORT_SYMBOL_GPL(hidinput_disconnect);