hid-wiimote-core.c 33 KB

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  1. /*
  2. * HID driver for Nintendo Wiimote devices
  3. * Copyright (c) 2011 David Herrmann
  4. */
  5. /*
  6. * This program is free software; you can redistribute it and/or modify it
  7. * under the terms of the GNU General Public License as published by the Free
  8. * Software Foundation; either version 2 of the License, or (at your option)
  9. * any later version.
  10. */
  11. #include <linux/completion.h>
  12. #include <linux/device.h>
  13. #include <linux/hid.h>
  14. #include <linux/input.h>
  15. #include <linux/leds.h>
  16. #include <linux/module.h>
  17. #include <linux/mutex.h>
  18. #include <linux/power_supply.h>
  19. #include <linux/spinlock.h>
  20. #include "hid-ids.h"
  21. #include "hid-wiimote.h"
  22. enum wiiproto_keys {
  23. WIIPROTO_KEY_LEFT,
  24. WIIPROTO_KEY_RIGHT,
  25. WIIPROTO_KEY_UP,
  26. WIIPROTO_KEY_DOWN,
  27. WIIPROTO_KEY_PLUS,
  28. WIIPROTO_KEY_MINUS,
  29. WIIPROTO_KEY_ONE,
  30. WIIPROTO_KEY_TWO,
  31. WIIPROTO_KEY_A,
  32. WIIPROTO_KEY_B,
  33. WIIPROTO_KEY_HOME,
  34. WIIPROTO_KEY_COUNT
  35. };
  36. static __u16 wiiproto_keymap[] = {
  37. KEY_LEFT, /* WIIPROTO_KEY_LEFT */
  38. KEY_RIGHT, /* WIIPROTO_KEY_RIGHT */
  39. KEY_UP, /* WIIPROTO_KEY_UP */
  40. KEY_DOWN, /* WIIPROTO_KEY_DOWN */
  41. KEY_NEXT, /* WIIPROTO_KEY_PLUS */
  42. KEY_PREVIOUS, /* WIIPROTO_KEY_MINUS */
  43. BTN_1, /* WIIPROTO_KEY_ONE */
  44. BTN_2, /* WIIPROTO_KEY_TWO */
  45. BTN_A, /* WIIPROTO_KEY_A */
  46. BTN_B, /* WIIPROTO_KEY_B */
  47. BTN_MODE, /* WIIPROTO_KEY_HOME */
  48. };
  49. static enum power_supply_property wiimote_battery_props[] = {
  50. POWER_SUPPLY_PROP_CAPACITY
  51. };
  52. static ssize_t wiimote_hid_send(struct hid_device *hdev, __u8 *buffer,
  53. size_t count)
  54. {
  55. __u8 *buf;
  56. ssize_t ret;
  57. if (!hdev->hid_output_raw_report)
  58. return -ENODEV;
  59. buf = kmemdup(buffer, count, GFP_KERNEL);
  60. if (!buf)
  61. return -ENOMEM;
  62. ret = hdev->hid_output_raw_report(hdev, buf, count, HID_OUTPUT_REPORT);
  63. kfree(buf);
  64. return ret;
  65. }
  66. static void wiimote_worker(struct work_struct *work)
  67. {
  68. struct wiimote_data *wdata = container_of(work, struct wiimote_data,
  69. worker);
  70. unsigned long flags;
  71. spin_lock_irqsave(&wdata->qlock, flags);
  72. while (wdata->head != wdata->tail) {
  73. spin_unlock_irqrestore(&wdata->qlock, flags);
  74. wiimote_hid_send(wdata->hdev, wdata->outq[wdata->tail].data,
  75. wdata->outq[wdata->tail].size);
  76. spin_lock_irqsave(&wdata->qlock, flags);
  77. wdata->tail = (wdata->tail + 1) % WIIMOTE_BUFSIZE;
  78. }
  79. spin_unlock_irqrestore(&wdata->qlock, flags);
  80. }
  81. static void wiimote_queue(struct wiimote_data *wdata, const __u8 *buffer,
  82. size_t count)
  83. {
  84. unsigned long flags;
  85. __u8 newhead;
  86. if (count > HID_MAX_BUFFER_SIZE) {
  87. hid_warn(wdata->hdev, "Sending too large output report\n");
  88. return;
  89. }
  90. /*
  91. * Copy new request into our output queue and check whether the
  92. * queue is full. If it is full, discard this request.
  93. * If it is empty we need to start a new worker that will
  94. * send out the buffer to the hid device.
  95. * If the queue is not empty, then there must be a worker
  96. * that is currently sending out our buffer and this worker
  97. * will reschedule itself until the queue is empty.
  98. */
  99. spin_lock_irqsave(&wdata->qlock, flags);
  100. memcpy(wdata->outq[wdata->head].data, buffer, count);
  101. wdata->outq[wdata->head].size = count;
  102. newhead = (wdata->head + 1) % WIIMOTE_BUFSIZE;
  103. if (wdata->head == wdata->tail) {
  104. wdata->head = newhead;
  105. schedule_work(&wdata->worker);
  106. } else if (newhead != wdata->tail) {
  107. wdata->head = newhead;
  108. } else {
  109. hid_warn(wdata->hdev, "Output queue is full");
  110. }
  111. spin_unlock_irqrestore(&wdata->qlock, flags);
  112. }
  113. /*
  114. * This sets the rumble bit on the given output report if rumble is
  115. * currently enabled.
  116. * \cmd1 must point to the second byte in the output report => &cmd[1]
  117. * This must be called on nearly every output report before passing it
  118. * into the output queue!
  119. */
  120. static inline void wiiproto_keep_rumble(struct wiimote_data *wdata, __u8 *cmd1)
  121. {
  122. if (wdata->state.flags & WIIPROTO_FLAG_RUMBLE)
  123. *cmd1 |= 0x01;
  124. }
  125. static void wiiproto_req_rumble(struct wiimote_data *wdata, __u8 rumble)
  126. {
  127. __u8 cmd[2];
  128. rumble = !!rumble;
  129. if (rumble == !!(wdata->state.flags & WIIPROTO_FLAG_RUMBLE))
  130. return;
  131. if (rumble)
  132. wdata->state.flags |= WIIPROTO_FLAG_RUMBLE;
  133. else
  134. wdata->state.flags &= ~WIIPROTO_FLAG_RUMBLE;
  135. cmd[0] = WIIPROTO_REQ_RUMBLE;
  136. cmd[1] = 0;
  137. wiiproto_keep_rumble(wdata, &cmd[1]);
  138. wiimote_queue(wdata, cmd, sizeof(cmd));
  139. }
  140. static void wiiproto_req_leds(struct wiimote_data *wdata, int leds)
  141. {
  142. __u8 cmd[2];
  143. leds &= WIIPROTO_FLAGS_LEDS;
  144. if ((wdata->state.flags & WIIPROTO_FLAGS_LEDS) == leds)
  145. return;
  146. wdata->state.flags = (wdata->state.flags & ~WIIPROTO_FLAGS_LEDS) | leds;
  147. cmd[0] = WIIPROTO_REQ_LED;
  148. cmd[1] = 0;
  149. if (leds & WIIPROTO_FLAG_LED1)
  150. cmd[1] |= 0x10;
  151. if (leds & WIIPROTO_FLAG_LED2)
  152. cmd[1] |= 0x20;
  153. if (leds & WIIPROTO_FLAG_LED3)
  154. cmd[1] |= 0x40;
  155. if (leds & WIIPROTO_FLAG_LED4)
  156. cmd[1] |= 0x80;
  157. wiiproto_keep_rumble(wdata, &cmd[1]);
  158. wiimote_queue(wdata, cmd, sizeof(cmd));
  159. }
  160. /*
  161. * Check what peripherals of the wiimote are currently
  162. * active and select a proper DRM that supports all of
  163. * the requested data inputs.
  164. */
  165. static __u8 select_drm(struct wiimote_data *wdata)
  166. {
  167. __u8 ir = wdata->state.flags & WIIPROTO_FLAGS_IR;
  168. bool ext = wiiext_active(wdata);
  169. if (ir == WIIPROTO_FLAG_IR_BASIC) {
  170. if (wdata->state.flags & WIIPROTO_FLAG_ACCEL)
  171. return WIIPROTO_REQ_DRM_KAIE;
  172. else
  173. return WIIPROTO_REQ_DRM_KIE;
  174. } else if (ir == WIIPROTO_FLAG_IR_EXT) {
  175. return WIIPROTO_REQ_DRM_KAI;
  176. } else if (ir == WIIPROTO_FLAG_IR_FULL) {
  177. return WIIPROTO_REQ_DRM_SKAI1;
  178. } else {
  179. if (wdata->state.flags & WIIPROTO_FLAG_ACCEL) {
  180. if (ext)
  181. return WIIPROTO_REQ_DRM_KAE;
  182. else
  183. return WIIPROTO_REQ_DRM_KA;
  184. } else {
  185. if (ext)
  186. return WIIPROTO_REQ_DRM_KE;
  187. else
  188. return WIIPROTO_REQ_DRM_K;
  189. }
  190. }
  191. }
  192. void wiiproto_req_drm(struct wiimote_data *wdata, __u8 drm)
  193. {
  194. __u8 cmd[3];
  195. if (drm == WIIPROTO_REQ_NULL)
  196. drm = select_drm(wdata);
  197. cmd[0] = WIIPROTO_REQ_DRM;
  198. cmd[1] = 0;
  199. cmd[2] = drm;
  200. wdata->state.drm = drm;
  201. wiiproto_keep_rumble(wdata, &cmd[1]);
  202. wiimote_queue(wdata, cmd, sizeof(cmd));
  203. }
  204. static void wiiproto_req_status(struct wiimote_data *wdata)
  205. {
  206. __u8 cmd[2];
  207. cmd[0] = WIIPROTO_REQ_SREQ;
  208. cmd[1] = 0;
  209. wiiproto_keep_rumble(wdata, &cmd[1]);
  210. wiimote_queue(wdata, cmd, sizeof(cmd));
  211. }
  212. static void wiiproto_req_accel(struct wiimote_data *wdata, __u8 accel)
  213. {
  214. accel = !!accel;
  215. if (accel == !!(wdata->state.flags & WIIPROTO_FLAG_ACCEL))
  216. return;
  217. if (accel)
  218. wdata->state.flags |= WIIPROTO_FLAG_ACCEL;
  219. else
  220. wdata->state.flags &= ~WIIPROTO_FLAG_ACCEL;
  221. wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
  222. }
  223. static void wiiproto_req_ir1(struct wiimote_data *wdata, __u8 flags)
  224. {
  225. __u8 cmd[2];
  226. cmd[0] = WIIPROTO_REQ_IR1;
  227. cmd[1] = flags;
  228. wiiproto_keep_rumble(wdata, &cmd[1]);
  229. wiimote_queue(wdata, cmd, sizeof(cmd));
  230. }
  231. static void wiiproto_req_ir2(struct wiimote_data *wdata, __u8 flags)
  232. {
  233. __u8 cmd[2];
  234. cmd[0] = WIIPROTO_REQ_IR2;
  235. cmd[1] = flags;
  236. wiiproto_keep_rumble(wdata, &cmd[1]);
  237. wiimote_queue(wdata, cmd, sizeof(cmd));
  238. }
  239. #define wiiproto_req_wreg(wdata, os, buf, sz) \
  240. wiiproto_req_wmem((wdata), false, (os), (buf), (sz))
  241. #define wiiproto_req_weeprom(wdata, os, buf, sz) \
  242. wiiproto_req_wmem((wdata), true, (os), (buf), (sz))
  243. static void wiiproto_req_wmem(struct wiimote_data *wdata, bool eeprom,
  244. __u32 offset, const __u8 *buf, __u8 size)
  245. {
  246. __u8 cmd[22];
  247. if (size > 16 || size == 0) {
  248. hid_warn(wdata->hdev, "Invalid length %d wmem request\n", size);
  249. return;
  250. }
  251. memset(cmd, 0, sizeof(cmd));
  252. cmd[0] = WIIPROTO_REQ_WMEM;
  253. cmd[2] = (offset >> 16) & 0xff;
  254. cmd[3] = (offset >> 8) & 0xff;
  255. cmd[4] = offset & 0xff;
  256. cmd[5] = size;
  257. memcpy(&cmd[6], buf, size);
  258. if (!eeprom)
  259. cmd[1] |= 0x04;
  260. wiiproto_keep_rumble(wdata, &cmd[1]);
  261. wiimote_queue(wdata, cmd, sizeof(cmd));
  262. }
  263. void wiiproto_req_rmem(struct wiimote_data *wdata, bool eeprom, __u32 offset,
  264. __u16 size)
  265. {
  266. __u8 cmd[7];
  267. if (size == 0) {
  268. hid_warn(wdata->hdev, "Invalid length %d rmem request\n", size);
  269. return;
  270. }
  271. cmd[0] = WIIPROTO_REQ_RMEM;
  272. cmd[1] = 0;
  273. cmd[2] = (offset >> 16) & 0xff;
  274. cmd[3] = (offset >> 8) & 0xff;
  275. cmd[4] = offset & 0xff;
  276. cmd[5] = (size >> 8) & 0xff;
  277. cmd[6] = size & 0xff;
  278. if (!eeprom)
  279. cmd[1] |= 0x04;
  280. wiiproto_keep_rumble(wdata, &cmd[1]);
  281. wiimote_queue(wdata, cmd, sizeof(cmd));
  282. }
  283. /* requries the cmd-mutex to be held */
  284. int wiimote_cmd_write(struct wiimote_data *wdata, __u32 offset,
  285. const __u8 *wmem, __u8 size)
  286. {
  287. unsigned long flags;
  288. int ret;
  289. spin_lock_irqsave(&wdata->state.lock, flags);
  290. wiimote_cmd_set(wdata, WIIPROTO_REQ_WMEM, 0);
  291. wiiproto_req_wreg(wdata, offset, wmem, size);
  292. spin_unlock_irqrestore(&wdata->state.lock, flags);
  293. ret = wiimote_cmd_wait(wdata);
  294. if (!ret && wdata->state.cmd_err)
  295. ret = -EIO;
  296. return ret;
  297. }
  298. /* requries the cmd-mutex to be held */
  299. ssize_t wiimote_cmd_read(struct wiimote_data *wdata, __u32 offset, __u8 *rmem,
  300. __u8 size)
  301. {
  302. unsigned long flags;
  303. ssize_t ret;
  304. spin_lock_irqsave(&wdata->state.lock, flags);
  305. wdata->state.cmd_read_size = size;
  306. wdata->state.cmd_read_buf = rmem;
  307. wiimote_cmd_set(wdata, WIIPROTO_REQ_RMEM, offset & 0xffff);
  308. wiiproto_req_rreg(wdata, offset, size);
  309. spin_unlock_irqrestore(&wdata->state.lock, flags);
  310. ret = wiimote_cmd_wait(wdata);
  311. spin_lock_irqsave(&wdata->state.lock, flags);
  312. wdata->state.cmd_read_buf = NULL;
  313. spin_unlock_irqrestore(&wdata->state.lock, flags);
  314. if (!ret) {
  315. if (wdata->state.cmd_read_size == 0)
  316. ret = -EIO;
  317. else
  318. ret = wdata->state.cmd_read_size;
  319. }
  320. return ret;
  321. }
  322. static int wiimote_battery_get_property(struct power_supply *psy,
  323. enum power_supply_property psp,
  324. union power_supply_propval *val)
  325. {
  326. struct wiimote_data *wdata = container_of(psy,
  327. struct wiimote_data, battery);
  328. int ret = 0, state;
  329. unsigned long flags;
  330. ret = wiimote_cmd_acquire(wdata);
  331. if (ret)
  332. return ret;
  333. spin_lock_irqsave(&wdata->state.lock, flags);
  334. wiimote_cmd_set(wdata, WIIPROTO_REQ_SREQ, 0);
  335. wiiproto_req_status(wdata);
  336. spin_unlock_irqrestore(&wdata->state.lock, flags);
  337. ret = wiimote_cmd_wait(wdata);
  338. state = wdata->state.cmd_battery;
  339. wiimote_cmd_release(wdata);
  340. if (ret)
  341. return ret;
  342. switch (psp) {
  343. case POWER_SUPPLY_PROP_CAPACITY:
  344. val->intval = state * 100 / 255;
  345. break;
  346. default:
  347. ret = -EINVAL;
  348. break;
  349. }
  350. return ret;
  351. }
  352. static int wiimote_init_ir(struct wiimote_data *wdata, __u16 mode)
  353. {
  354. int ret;
  355. unsigned long flags;
  356. __u8 format = 0;
  357. static const __u8 data_enable[] = { 0x01 };
  358. static const __u8 data_sens1[] = { 0x02, 0x00, 0x00, 0x71, 0x01,
  359. 0x00, 0xaa, 0x00, 0x64 };
  360. static const __u8 data_sens2[] = { 0x63, 0x03 };
  361. static const __u8 data_fin[] = { 0x08 };
  362. spin_lock_irqsave(&wdata->state.lock, flags);
  363. if (mode == (wdata->state.flags & WIIPROTO_FLAGS_IR)) {
  364. spin_unlock_irqrestore(&wdata->state.lock, flags);
  365. return 0;
  366. }
  367. if (mode == 0) {
  368. wdata->state.flags &= ~WIIPROTO_FLAGS_IR;
  369. wiiproto_req_ir1(wdata, 0);
  370. wiiproto_req_ir2(wdata, 0);
  371. wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
  372. spin_unlock_irqrestore(&wdata->state.lock, flags);
  373. return 0;
  374. }
  375. spin_unlock_irqrestore(&wdata->state.lock, flags);
  376. ret = wiimote_cmd_acquire(wdata);
  377. if (ret)
  378. return ret;
  379. /* send PIXEL CLOCK ENABLE cmd first */
  380. spin_lock_irqsave(&wdata->state.lock, flags);
  381. wiimote_cmd_set(wdata, WIIPROTO_REQ_IR1, 0);
  382. wiiproto_req_ir1(wdata, 0x06);
  383. spin_unlock_irqrestore(&wdata->state.lock, flags);
  384. ret = wiimote_cmd_wait(wdata);
  385. if (ret)
  386. goto unlock;
  387. if (wdata->state.cmd_err) {
  388. ret = -EIO;
  389. goto unlock;
  390. }
  391. /* enable IR LOGIC */
  392. spin_lock_irqsave(&wdata->state.lock, flags);
  393. wiimote_cmd_set(wdata, WIIPROTO_REQ_IR2, 0);
  394. wiiproto_req_ir2(wdata, 0x06);
  395. spin_unlock_irqrestore(&wdata->state.lock, flags);
  396. ret = wiimote_cmd_wait(wdata);
  397. if (ret)
  398. goto unlock;
  399. if (wdata->state.cmd_err) {
  400. ret = -EIO;
  401. goto unlock;
  402. }
  403. /* enable IR cam but do not make it send data, yet */
  404. ret = wiimote_cmd_write(wdata, 0xb00030, data_enable,
  405. sizeof(data_enable));
  406. if (ret)
  407. goto unlock;
  408. /* write first sensitivity block */
  409. ret = wiimote_cmd_write(wdata, 0xb00000, data_sens1,
  410. sizeof(data_sens1));
  411. if (ret)
  412. goto unlock;
  413. /* write second sensitivity block */
  414. ret = wiimote_cmd_write(wdata, 0xb0001a, data_sens2,
  415. sizeof(data_sens2));
  416. if (ret)
  417. goto unlock;
  418. /* put IR cam into desired state */
  419. switch (mode) {
  420. case WIIPROTO_FLAG_IR_FULL:
  421. format = 5;
  422. break;
  423. case WIIPROTO_FLAG_IR_EXT:
  424. format = 3;
  425. break;
  426. case WIIPROTO_FLAG_IR_BASIC:
  427. format = 1;
  428. break;
  429. }
  430. ret = wiimote_cmd_write(wdata, 0xb00033, &format, sizeof(format));
  431. if (ret)
  432. goto unlock;
  433. /* make IR cam send data */
  434. ret = wiimote_cmd_write(wdata, 0xb00030, data_fin, sizeof(data_fin));
  435. if (ret)
  436. goto unlock;
  437. /* request new DRM mode compatible to IR mode */
  438. spin_lock_irqsave(&wdata->state.lock, flags);
  439. wdata->state.flags &= ~WIIPROTO_FLAGS_IR;
  440. wdata->state.flags |= mode & WIIPROTO_FLAGS_IR;
  441. wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
  442. spin_unlock_irqrestore(&wdata->state.lock, flags);
  443. unlock:
  444. wiimote_cmd_release(wdata);
  445. return ret;
  446. }
  447. static enum led_brightness wiimote_leds_get(struct led_classdev *led_dev)
  448. {
  449. struct wiimote_data *wdata;
  450. struct device *dev = led_dev->dev->parent;
  451. int i;
  452. unsigned long flags;
  453. bool value = false;
  454. wdata = hid_get_drvdata(container_of(dev, struct hid_device, dev));
  455. for (i = 0; i < 4; ++i) {
  456. if (wdata->leds[i] == led_dev) {
  457. spin_lock_irqsave(&wdata->state.lock, flags);
  458. value = wdata->state.flags & WIIPROTO_FLAG_LED(i + 1);
  459. spin_unlock_irqrestore(&wdata->state.lock, flags);
  460. break;
  461. }
  462. }
  463. return value ? LED_FULL : LED_OFF;
  464. }
  465. static void wiimote_leds_set(struct led_classdev *led_dev,
  466. enum led_brightness value)
  467. {
  468. struct wiimote_data *wdata;
  469. struct device *dev = led_dev->dev->parent;
  470. int i;
  471. unsigned long flags;
  472. __u8 state, flag;
  473. wdata = hid_get_drvdata(container_of(dev, struct hid_device, dev));
  474. for (i = 0; i < 4; ++i) {
  475. if (wdata->leds[i] == led_dev) {
  476. flag = WIIPROTO_FLAG_LED(i + 1);
  477. spin_lock_irqsave(&wdata->state.lock, flags);
  478. state = wdata->state.flags;
  479. if (value == LED_OFF)
  480. wiiproto_req_leds(wdata, state & ~flag);
  481. else
  482. wiiproto_req_leds(wdata, state | flag);
  483. spin_unlock_irqrestore(&wdata->state.lock, flags);
  484. break;
  485. }
  486. }
  487. }
  488. static int wiimote_ff_play(struct input_dev *dev, void *data,
  489. struct ff_effect *eff)
  490. {
  491. struct wiimote_data *wdata = input_get_drvdata(dev);
  492. __u8 value;
  493. unsigned long flags;
  494. /*
  495. * The wiimote supports only a single rumble motor so if any magnitude
  496. * is set to non-zero then we start the rumble motor. If both are set to
  497. * zero, we stop the rumble motor.
  498. */
  499. if (eff->u.rumble.strong_magnitude || eff->u.rumble.weak_magnitude)
  500. value = 1;
  501. else
  502. value = 0;
  503. spin_lock_irqsave(&wdata->state.lock, flags);
  504. wiiproto_req_rumble(wdata, value);
  505. spin_unlock_irqrestore(&wdata->state.lock, flags);
  506. return 0;
  507. }
  508. static int wiimote_input_open(struct input_dev *dev)
  509. {
  510. struct wiimote_data *wdata = input_get_drvdata(dev);
  511. return hid_hw_open(wdata->hdev);
  512. }
  513. static void wiimote_input_close(struct input_dev *dev)
  514. {
  515. struct wiimote_data *wdata = input_get_drvdata(dev);
  516. hid_hw_close(wdata->hdev);
  517. }
  518. static int wiimote_accel_open(struct input_dev *dev)
  519. {
  520. struct wiimote_data *wdata = input_get_drvdata(dev);
  521. int ret;
  522. unsigned long flags;
  523. ret = hid_hw_open(wdata->hdev);
  524. if (ret)
  525. return ret;
  526. spin_lock_irqsave(&wdata->state.lock, flags);
  527. wiiproto_req_accel(wdata, true);
  528. spin_unlock_irqrestore(&wdata->state.lock, flags);
  529. return 0;
  530. }
  531. static void wiimote_accel_close(struct input_dev *dev)
  532. {
  533. struct wiimote_data *wdata = input_get_drvdata(dev);
  534. unsigned long flags;
  535. spin_lock_irqsave(&wdata->state.lock, flags);
  536. wiiproto_req_accel(wdata, false);
  537. spin_unlock_irqrestore(&wdata->state.lock, flags);
  538. hid_hw_close(wdata->hdev);
  539. }
  540. static int wiimote_ir_open(struct input_dev *dev)
  541. {
  542. struct wiimote_data *wdata = input_get_drvdata(dev);
  543. int ret;
  544. ret = hid_hw_open(wdata->hdev);
  545. if (ret)
  546. return ret;
  547. ret = wiimote_init_ir(wdata, WIIPROTO_FLAG_IR_BASIC);
  548. if (ret) {
  549. hid_hw_close(wdata->hdev);
  550. return ret;
  551. }
  552. return 0;
  553. }
  554. static void wiimote_ir_close(struct input_dev *dev)
  555. {
  556. struct wiimote_data *wdata = input_get_drvdata(dev);
  557. wiimote_init_ir(wdata, 0);
  558. hid_hw_close(wdata->hdev);
  559. }
  560. static void handler_keys(struct wiimote_data *wdata, const __u8 *payload)
  561. {
  562. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_LEFT],
  563. !!(payload[0] & 0x01));
  564. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_RIGHT],
  565. !!(payload[0] & 0x02));
  566. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_DOWN],
  567. !!(payload[0] & 0x04));
  568. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_UP],
  569. !!(payload[0] & 0x08));
  570. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_PLUS],
  571. !!(payload[0] & 0x10));
  572. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_TWO],
  573. !!(payload[1] & 0x01));
  574. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_ONE],
  575. !!(payload[1] & 0x02));
  576. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_B],
  577. !!(payload[1] & 0x04));
  578. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_A],
  579. !!(payload[1] & 0x08));
  580. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_MINUS],
  581. !!(payload[1] & 0x10));
  582. input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_HOME],
  583. !!(payload[1] & 0x80));
  584. input_sync(wdata->input);
  585. }
  586. static void handler_accel(struct wiimote_data *wdata, const __u8 *payload)
  587. {
  588. __u16 x, y, z;
  589. if (!(wdata->state.flags & WIIPROTO_FLAG_ACCEL))
  590. return;
  591. /*
  592. * payload is: BB BB XX YY ZZ
  593. * Accelerometer data is encoded into 3 10bit values. XX, YY and ZZ
  594. * contain the upper 8 bits of each value. The lower 2 bits are
  595. * contained in the buttons data BB BB.
  596. * Bits 6 and 7 of the first buttons byte BB is the lower 2 bits of the
  597. * X accel value. Bit 5 of the second buttons byte is the 2nd bit of Y
  598. * accel value and bit 6 is the second bit of the Z value.
  599. * The first bit of Y and Z values is not available and always set to 0.
  600. * 0x200 is returned on no movement.
  601. */
  602. x = payload[2] << 2;
  603. y = payload[3] << 2;
  604. z = payload[4] << 2;
  605. x |= (payload[0] >> 5) & 0x3;
  606. y |= (payload[1] >> 4) & 0x2;
  607. z |= (payload[1] >> 5) & 0x2;
  608. input_report_abs(wdata->accel, ABS_RX, x - 0x200);
  609. input_report_abs(wdata->accel, ABS_RY, y - 0x200);
  610. input_report_abs(wdata->accel, ABS_RZ, z - 0x200);
  611. input_sync(wdata->accel);
  612. }
  613. #define ir_to_input0(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
  614. ABS_HAT0X, ABS_HAT0Y)
  615. #define ir_to_input1(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
  616. ABS_HAT1X, ABS_HAT1Y)
  617. #define ir_to_input2(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
  618. ABS_HAT2X, ABS_HAT2Y)
  619. #define ir_to_input3(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
  620. ABS_HAT3X, ABS_HAT3Y)
  621. static void __ir_to_input(struct wiimote_data *wdata, const __u8 *ir,
  622. bool packed, __u8 xid, __u8 yid)
  623. {
  624. __u16 x, y;
  625. if (!(wdata->state.flags & WIIPROTO_FLAGS_IR))
  626. return;
  627. /*
  628. * Basic IR data is encoded into 3 bytes. The first two bytes are the
  629. * upper 8 bit of the X/Y data, the 3rd byte contains the lower 2 bits
  630. * of both.
  631. * If data is packed, then the 3rd byte is put first and slightly
  632. * reordered. This allows to interleave packed and non-packed data to
  633. * have two IR sets in 5 bytes instead of 6.
  634. * The resulting 10bit X/Y values are passed to the ABS_HATXY input dev.
  635. */
  636. if (packed) {
  637. x = ir[1] << 2;
  638. y = ir[2] << 2;
  639. x |= ir[0] & 0x3;
  640. y |= (ir[0] >> 2) & 0x3;
  641. } else {
  642. x = ir[0] << 2;
  643. y = ir[1] << 2;
  644. x |= (ir[2] >> 4) & 0x3;
  645. y |= (ir[2] >> 6) & 0x3;
  646. }
  647. input_report_abs(wdata->ir, xid, x);
  648. input_report_abs(wdata->ir, yid, y);
  649. }
  650. static void handler_status(struct wiimote_data *wdata, const __u8 *payload)
  651. {
  652. handler_keys(wdata, payload);
  653. /* on status reports the drm is reset so we need to resend the drm */
  654. wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
  655. wiiext_event(wdata, payload[2] & 0x02);
  656. if (wiimote_cmd_pending(wdata, WIIPROTO_REQ_SREQ, 0)) {
  657. wdata->state.cmd_battery = payload[5];
  658. wiimote_cmd_complete(wdata);
  659. }
  660. }
  661. static void handler_data(struct wiimote_data *wdata, const __u8 *payload)
  662. {
  663. __u16 offset = payload[3] << 8 | payload[4];
  664. __u8 size = (payload[2] >> 4) + 1;
  665. __u8 err = payload[2] & 0x0f;
  666. handler_keys(wdata, payload);
  667. if (wiimote_cmd_pending(wdata, WIIPROTO_REQ_RMEM, offset)) {
  668. if (err)
  669. size = 0;
  670. else if (size > wdata->state.cmd_read_size)
  671. size = wdata->state.cmd_read_size;
  672. wdata->state.cmd_read_size = size;
  673. if (wdata->state.cmd_read_buf)
  674. memcpy(wdata->state.cmd_read_buf, &payload[5], size);
  675. wiimote_cmd_complete(wdata);
  676. }
  677. }
  678. static void handler_return(struct wiimote_data *wdata, const __u8 *payload)
  679. {
  680. __u8 err = payload[3];
  681. __u8 cmd = payload[2];
  682. handler_keys(wdata, payload);
  683. if (wiimote_cmd_pending(wdata, cmd, 0)) {
  684. wdata->state.cmd_err = err;
  685. wiimote_cmd_complete(wdata);
  686. } else if (err) {
  687. hid_warn(wdata->hdev, "Remote error %hhu on req %hhu\n", err,
  688. cmd);
  689. }
  690. }
  691. static void handler_drm_KA(struct wiimote_data *wdata, const __u8 *payload)
  692. {
  693. handler_keys(wdata, payload);
  694. handler_accel(wdata, payload);
  695. }
  696. static void handler_drm_KE(struct wiimote_data *wdata, const __u8 *payload)
  697. {
  698. handler_keys(wdata, payload);
  699. wiiext_handle(wdata, &payload[2]);
  700. }
  701. static void handler_drm_KAI(struct wiimote_data *wdata, const __u8 *payload)
  702. {
  703. handler_keys(wdata, payload);
  704. handler_accel(wdata, payload);
  705. ir_to_input0(wdata, &payload[5], false);
  706. ir_to_input1(wdata, &payload[8], false);
  707. ir_to_input2(wdata, &payload[11], false);
  708. ir_to_input3(wdata, &payload[14], false);
  709. input_sync(wdata->ir);
  710. }
  711. static void handler_drm_KEE(struct wiimote_data *wdata, const __u8 *payload)
  712. {
  713. handler_keys(wdata, payload);
  714. wiiext_handle(wdata, &payload[2]);
  715. }
  716. static void handler_drm_KIE(struct wiimote_data *wdata, const __u8 *payload)
  717. {
  718. handler_keys(wdata, payload);
  719. ir_to_input0(wdata, &payload[2], false);
  720. ir_to_input1(wdata, &payload[4], true);
  721. ir_to_input2(wdata, &payload[7], false);
  722. ir_to_input3(wdata, &payload[9], true);
  723. input_sync(wdata->ir);
  724. wiiext_handle(wdata, &payload[12]);
  725. }
  726. static void handler_drm_KAE(struct wiimote_data *wdata, const __u8 *payload)
  727. {
  728. handler_keys(wdata, payload);
  729. handler_accel(wdata, payload);
  730. wiiext_handle(wdata, &payload[5]);
  731. }
  732. static void handler_drm_KAIE(struct wiimote_data *wdata, const __u8 *payload)
  733. {
  734. handler_keys(wdata, payload);
  735. handler_accel(wdata, payload);
  736. ir_to_input0(wdata, &payload[5], false);
  737. ir_to_input1(wdata, &payload[7], true);
  738. ir_to_input2(wdata, &payload[10], false);
  739. ir_to_input3(wdata, &payload[12], true);
  740. input_sync(wdata->ir);
  741. wiiext_handle(wdata, &payload[15]);
  742. }
  743. static void handler_drm_E(struct wiimote_data *wdata, const __u8 *payload)
  744. {
  745. wiiext_handle(wdata, payload);
  746. }
  747. static void handler_drm_SKAI1(struct wiimote_data *wdata, const __u8 *payload)
  748. {
  749. handler_keys(wdata, payload);
  750. wdata->state.accel_split[0] = payload[2];
  751. wdata->state.accel_split[1] = (payload[0] >> 1) & (0x10 | 0x20);
  752. wdata->state.accel_split[1] |= (payload[1] << 1) & (0x40 | 0x80);
  753. ir_to_input0(wdata, &payload[3], false);
  754. ir_to_input1(wdata, &payload[12], false);
  755. input_sync(wdata->ir);
  756. }
  757. static void handler_drm_SKAI2(struct wiimote_data *wdata, const __u8 *payload)
  758. {
  759. __u8 buf[5];
  760. handler_keys(wdata, payload);
  761. wdata->state.accel_split[1] |= (payload[0] >> 5) & (0x01 | 0x02);
  762. wdata->state.accel_split[1] |= (payload[1] >> 3) & (0x04 | 0x08);
  763. buf[0] = 0;
  764. buf[1] = 0;
  765. buf[2] = wdata->state.accel_split[0];
  766. buf[3] = payload[2];
  767. buf[4] = wdata->state.accel_split[1];
  768. handler_accel(wdata, buf);
  769. ir_to_input2(wdata, &payload[3], false);
  770. ir_to_input3(wdata, &payload[12], false);
  771. input_sync(wdata->ir);
  772. }
  773. struct wiiproto_handler {
  774. __u8 id;
  775. size_t size;
  776. void (*func)(struct wiimote_data *wdata, const __u8 *payload);
  777. };
  778. static struct wiiproto_handler handlers[] = {
  779. { .id = WIIPROTO_REQ_STATUS, .size = 6, .func = handler_status },
  780. { .id = WIIPROTO_REQ_DATA, .size = 21, .func = handler_data },
  781. { .id = WIIPROTO_REQ_RETURN, .size = 4, .func = handler_return },
  782. { .id = WIIPROTO_REQ_DRM_K, .size = 2, .func = handler_keys },
  783. { .id = WIIPROTO_REQ_DRM_KA, .size = 5, .func = handler_drm_KA },
  784. { .id = WIIPROTO_REQ_DRM_KE, .size = 10, .func = handler_drm_KE },
  785. { .id = WIIPROTO_REQ_DRM_KAI, .size = 17, .func = handler_drm_KAI },
  786. { .id = WIIPROTO_REQ_DRM_KEE, .size = 21, .func = handler_drm_KEE },
  787. { .id = WIIPROTO_REQ_DRM_KAE, .size = 21, .func = handler_drm_KAE },
  788. { .id = WIIPROTO_REQ_DRM_KIE, .size = 21, .func = handler_drm_KIE },
  789. { .id = WIIPROTO_REQ_DRM_KAIE, .size = 21, .func = handler_drm_KAIE },
  790. { .id = WIIPROTO_REQ_DRM_E, .size = 21, .func = handler_drm_E },
  791. { .id = WIIPROTO_REQ_DRM_SKAI1, .size = 21, .func = handler_drm_SKAI1 },
  792. { .id = WIIPROTO_REQ_DRM_SKAI2, .size = 21, .func = handler_drm_SKAI2 },
  793. { .id = 0 }
  794. };
  795. static int wiimote_hid_event(struct hid_device *hdev, struct hid_report *report,
  796. u8 *raw_data, int size)
  797. {
  798. struct wiimote_data *wdata = hid_get_drvdata(hdev);
  799. struct wiiproto_handler *h;
  800. int i;
  801. unsigned long flags;
  802. bool handled = false;
  803. if (size < 1)
  804. return -EINVAL;
  805. spin_lock_irqsave(&wdata->state.lock, flags);
  806. for (i = 0; handlers[i].id; ++i) {
  807. h = &handlers[i];
  808. if (h->id == raw_data[0] && h->size < size) {
  809. h->func(wdata, &raw_data[1]);
  810. handled = true;
  811. }
  812. }
  813. if (!handled)
  814. hid_warn(hdev, "Unhandled report %hhu size %d\n", raw_data[0],
  815. size);
  816. spin_unlock_irqrestore(&wdata->state.lock, flags);
  817. return 0;
  818. }
  819. static void wiimote_leds_destroy(struct wiimote_data *wdata)
  820. {
  821. int i;
  822. struct led_classdev *led;
  823. for (i = 0; i < 4; ++i) {
  824. if (wdata->leds[i]) {
  825. led = wdata->leds[i];
  826. wdata->leds[i] = NULL;
  827. led_classdev_unregister(led);
  828. kfree(led);
  829. }
  830. }
  831. }
  832. static int wiimote_leds_create(struct wiimote_data *wdata)
  833. {
  834. int i, ret;
  835. struct device *dev = &wdata->hdev->dev;
  836. size_t namesz = strlen(dev_name(dev)) + 9;
  837. struct led_classdev *led;
  838. char *name;
  839. for (i = 0; i < 4; ++i) {
  840. led = kzalloc(sizeof(struct led_classdev) + namesz, GFP_KERNEL);
  841. if (!led) {
  842. ret = -ENOMEM;
  843. goto err;
  844. }
  845. name = (void*)&led[1];
  846. snprintf(name, namesz, "%s:blue:p%d", dev_name(dev), i);
  847. led->name = name;
  848. led->brightness = 0;
  849. led->max_brightness = 1;
  850. led->brightness_get = wiimote_leds_get;
  851. led->brightness_set = wiimote_leds_set;
  852. ret = led_classdev_register(dev, led);
  853. if (ret) {
  854. kfree(led);
  855. goto err;
  856. }
  857. wdata->leds[i] = led;
  858. }
  859. return 0;
  860. err:
  861. wiimote_leds_destroy(wdata);
  862. return ret;
  863. }
  864. static struct wiimote_data *wiimote_create(struct hid_device *hdev)
  865. {
  866. struct wiimote_data *wdata;
  867. int i;
  868. wdata = kzalloc(sizeof(*wdata), GFP_KERNEL);
  869. if (!wdata)
  870. return NULL;
  871. wdata->input = input_allocate_device();
  872. if (!wdata->input)
  873. goto err;
  874. wdata->hdev = hdev;
  875. hid_set_drvdata(hdev, wdata);
  876. input_set_drvdata(wdata->input, wdata);
  877. wdata->input->open = wiimote_input_open;
  878. wdata->input->close = wiimote_input_close;
  879. wdata->input->dev.parent = &wdata->hdev->dev;
  880. wdata->input->id.bustype = wdata->hdev->bus;
  881. wdata->input->id.vendor = wdata->hdev->vendor;
  882. wdata->input->id.product = wdata->hdev->product;
  883. wdata->input->id.version = wdata->hdev->version;
  884. wdata->input->name = WIIMOTE_NAME;
  885. set_bit(EV_KEY, wdata->input->evbit);
  886. for (i = 0; i < WIIPROTO_KEY_COUNT; ++i)
  887. set_bit(wiiproto_keymap[i], wdata->input->keybit);
  888. set_bit(FF_RUMBLE, wdata->input->ffbit);
  889. if (input_ff_create_memless(wdata->input, NULL, wiimote_ff_play))
  890. goto err_input;
  891. wdata->accel = input_allocate_device();
  892. if (!wdata->accel)
  893. goto err_input;
  894. input_set_drvdata(wdata->accel, wdata);
  895. wdata->accel->open = wiimote_accel_open;
  896. wdata->accel->close = wiimote_accel_close;
  897. wdata->accel->dev.parent = &wdata->hdev->dev;
  898. wdata->accel->id.bustype = wdata->hdev->bus;
  899. wdata->accel->id.vendor = wdata->hdev->vendor;
  900. wdata->accel->id.product = wdata->hdev->product;
  901. wdata->accel->id.version = wdata->hdev->version;
  902. wdata->accel->name = WIIMOTE_NAME " Accelerometer";
  903. set_bit(EV_ABS, wdata->accel->evbit);
  904. set_bit(ABS_RX, wdata->accel->absbit);
  905. set_bit(ABS_RY, wdata->accel->absbit);
  906. set_bit(ABS_RZ, wdata->accel->absbit);
  907. input_set_abs_params(wdata->accel, ABS_RX, -500, 500, 2, 4);
  908. input_set_abs_params(wdata->accel, ABS_RY, -500, 500, 2, 4);
  909. input_set_abs_params(wdata->accel, ABS_RZ, -500, 500, 2, 4);
  910. wdata->ir = input_allocate_device();
  911. if (!wdata->ir)
  912. goto err_ir;
  913. input_set_drvdata(wdata->ir, wdata);
  914. wdata->ir->open = wiimote_ir_open;
  915. wdata->ir->close = wiimote_ir_close;
  916. wdata->ir->dev.parent = &wdata->hdev->dev;
  917. wdata->ir->id.bustype = wdata->hdev->bus;
  918. wdata->ir->id.vendor = wdata->hdev->vendor;
  919. wdata->ir->id.product = wdata->hdev->product;
  920. wdata->ir->id.version = wdata->hdev->version;
  921. wdata->ir->name = WIIMOTE_NAME " IR";
  922. set_bit(EV_ABS, wdata->ir->evbit);
  923. set_bit(ABS_HAT0X, wdata->ir->absbit);
  924. set_bit(ABS_HAT0Y, wdata->ir->absbit);
  925. set_bit(ABS_HAT1X, wdata->ir->absbit);
  926. set_bit(ABS_HAT1Y, wdata->ir->absbit);
  927. set_bit(ABS_HAT2X, wdata->ir->absbit);
  928. set_bit(ABS_HAT2Y, wdata->ir->absbit);
  929. set_bit(ABS_HAT3X, wdata->ir->absbit);
  930. set_bit(ABS_HAT3Y, wdata->ir->absbit);
  931. input_set_abs_params(wdata->ir, ABS_HAT0X, 0, 1023, 2, 4);
  932. input_set_abs_params(wdata->ir, ABS_HAT0Y, 0, 767, 2, 4);
  933. input_set_abs_params(wdata->ir, ABS_HAT1X, 0, 1023, 2, 4);
  934. input_set_abs_params(wdata->ir, ABS_HAT1Y, 0, 767, 2, 4);
  935. input_set_abs_params(wdata->ir, ABS_HAT2X, 0, 1023, 2, 4);
  936. input_set_abs_params(wdata->ir, ABS_HAT2Y, 0, 767, 2, 4);
  937. input_set_abs_params(wdata->ir, ABS_HAT3X, 0, 1023, 2, 4);
  938. input_set_abs_params(wdata->ir, ABS_HAT3Y, 0, 767, 2, 4);
  939. spin_lock_init(&wdata->qlock);
  940. INIT_WORK(&wdata->worker, wiimote_worker);
  941. spin_lock_init(&wdata->state.lock);
  942. init_completion(&wdata->state.ready);
  943. mutex_init(&wdata->state.sync);
  944. wdata->state.drm = WIIPROTO_REQ_DRM_K;
  945. return wdata;
  946. err_ir:
  947. input_free_device(wdata->accel);
  948. err_input:
  949. input_free_device(wdata->input);
  950. err:
  951. kfree(wdata);
  952. return NULL;
  953. }
  954. static void wiimote_destroy(struct wiimote_data *wdata)
  955. {
  956. wiidebug_deinit(wdata);
  957. wiiext_deinit(wdata);
  958. wiimote_leds_destroy(wdata);
  959. power_supply_unregister(&wdata->battery);
  960. input_unregister_device(wdata->accel);
  961. input_unregister_device(wdata->ir);
  962. input_unregister_device(wdata->input);
  963. cancel_work_sync(&wdata->worker);
  964. hid_hw_stop(wdata->hdev);
  965. kfree(wdata);
  966. }
  967. static int wiimote_hid_probe(struct hid_device *hdev,
  968. const struct hid_device_id *id)
  969. {
  970. struct wiimote_data *wdata;
  971. int ret;
  972. hdev->quirks |= HID_QUIRK_NO_INIT_REPORTS;
  973. wdata = wiimote_create(hdev);
  974. if (!wdata) {
  975. hid_err(hdev, "Can't alloc device\n");
  976. return -ENOMEM;
  977. }
  978. ret = hid_parse(hdev);
  979. if (ret) {
  980. hid_err(hdev, "HID parse failed\n");
  981. goto err;
  982. }
  983. ret = hid_hw_start(hdev, HID_CONNECT_HIDRAW);
  984. if (ret) {
  985. hid_err(hdev, "HW start failed\n");
  986. goto err;
  987. }
  988. ret = input_register_device(wdata->accel);
  989. if (ret) {
  990. hid_err(hdev, "Cannot register input device\n");
  991. goto err_stop;
  992. }
  993. ret = input_register_device(wdata->ir);
  994. if (ret) {
  995. hid_err(hdev, "Cannot register input device\n");
  996. goto err_ir;
  997. }
  998. ret = input_register_device(wdata->input);
  999. if (ret) {
  1000. hid_err(hdev, "Cannot register input device\n");
  1001. goto err_input;
  1002. }
  1003. wdata->battery.properties = wiimote_battery_props;
  1004. wdata->battery.num_properties = ARRAY_SIZE(wiimote_battery_props);
  1005. wdata->battery.get_property = wiimote_battery_get_property;
  1006. wdata->battery.name = "wiimote_battery";
  1007. wdata->battery.type = POWER_SUPPLY_TYPE_BATTERY;
  1008. wdata->battery.use_for_apm = 0;
  1009. ret = power_supply_register(&wdata->hdev->dev, &wdata->battery);
  1010. if (ret) {
  1011. hid_err(hdev, "Cannot register battery device\n");
  1012. goto err_battery;
  1013. }
  1014. ret = wiimote_leds_create(wdata);
  1015. if (ret)
  1016. goto err_free;
  1017. ret = wiiext_init(wdata);
  1018. if (ret)
  1019. goto err_free;
  1020. ret = wiidebug_init(wdata);
  1021. if (ret)
  1022. goto err_free;
  1023. hid_info(hdev, "New device registered\n");
  1024. /* by default set led1 after device initialization */
  1025. spin_lock_irq(&wdata->state.lock);
  1026. wiiproto_req_leds(wdata, WIIPROTO_FLAG_LED1);
  1027. spin_unlock_irq(&wdata->state.lock);
  1028. return 0;
  1029. err_free:
  1030. wiimote_destroy(wdata);
  1031. return ret;
  1032. err_battery:
  1033. input_unregister_device(wdata->input);
  1034. wdata->input = NULL;
  1035. err_input:
  1036. input_unregister_device(wdata->ir);
  1037. wdata->ir = NULL;
  1038. err_ir:
  1039. input_unregister_device(wdata->accel);
  1040. wdata->accel = NULL;
  1041. err_stop:
  1042. hid_hw_stop(hdev);
  1043. err:
  1044. input_free_device(wdata->ir);
  1045. input_free_device(wdata->accel);
  1046. input_free_device(wdata->input);
  1047. kfree(wdata);
  1048. return ret;
  1049. }
  1050. static void wiimote_hid_remove(struct hid_device *hdev)
  1051. {
  1052. struct wiimote_data *wdata = hid_get_drvdata(hdev);
  1053. hid_info(hdev, "Device removed\n");
  1054. wiimote_destroy(wdata);
  1055. }
  1056. static const struct hid_device_id wiimote_hid_devices[] = {
  1057. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_NINTENDO,
  1058. USB_DEVICE_ID_NINTENDO_WIIMOTE) },
  1059. { }
  1060. };
  1061. MODULE_DEVICE_TABLE(hid, wiimote_hid_devices);
  1062. static struct hid_driver wiimote_hid_driver = {
  1063. .name = "wiimote",
  1064. .id_table = wiimote_hid_devices,
  1065. .probe = wiimote_hid_probe,
  1066. .remove = wiimote_hid_remove,
  1067. .raw_event = wiimote_hid_event,
  1068. };
  1069. static int __init wiimote_init(void)
  1070. {
  1071. int ret;
  1072. ret = hid_register_driver(&wiimote_hid_driver);
  1073. if (ret)
  1074. pr_err("Can't register wiimote hid driver\n");
  1075. return ret;
  1076. }
  1077. static void __exit wiimote_exit(void)
  1078. {
  1079. hid_unregister_driver(&wiimote_hid_driver);
  1080. }
  1081. module_init(wiimote_init);
  1082. module_exit(wiimote_exit);
  1083. MODULE_LICENSE("GPL");
  1084. MODULE_AUTHOR("David Herrmann <dh.herrmann@gmail.com>");
  1085. MODULE_DESCRIPTION(WIIMOTE_NAME " Device Driver");