hid-pidff.c 36 KB

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  1. /*
  2. * Force feedback driver for USB HID PID compliant devices
  3. *
  4. * Copyright (c) 2005, 2006 Anssi Hannula <anssi.hannula@gmail.com>
  5. */
  6. /*
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  20. */
  21. /* #define DEBUG */
  22. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  23. #include <linux/input.h>
  24. #include <linux/slab.h>
  25. #include <linux/usb.h>
  26. #include <linux/hid.h>
  27. #include "usbhid.h"
  28. #define PID_EFFECTS_MAX 64
  29. /* Report usage table used to put reports into an array */
  30. #define PID_SET_EFFECT 0
  31. #define PID_EFFECT_OPERATION 1
  32. #define PID_DEVICE_GAIN 2
  33. #define PID_POOL 3
  34. #define PID_BLOCK_LOAD 4
  35. #define PID_BLOCK_FREE 5
  36. #define PID_DEVICE_CONTROL 6
  37. #define PID_CREATE_NEW_EFFECT 7
  38. #define PID_REQUIRED_REPORTS 7
  39. #define PID_SET_ENVELOPE 8
  40. #define PID_SET_CONDITION 9
  41. #define PID_SET_PERIODIC 10
  42. #define PID_SET_CONSTANT 11
  43. #define PID_SET_RAMP 12
  44. static const u8 pidff_reports[] = {
  45. 0x21, 0x77, 0x7d, 0x7f, 0x89, 0x90, 0x96, 0xab,
  46. 0x5a, 0x5f, 0x6e, 0x73, 0x74
  47. };
  48. /* device_control is really 0x95, but 0x96 specified as it is the usage of
  49. the only field in that report */
  50. /* Value usage tables used to put fields and values into arrays */
  51. #define PID_EFFECT_BLOCK_INDEX 0
  52. #define PID_DURATION 1
  53. #define PID_GAIN 2
  54. #define PID_TRIGGER_BUTTON 3
  55. #define PID_TRIGGER_REPEAT_INT 4
  56. #define PID_DIRECTION_ENABLE 5
  57. #define PID_START_DELAY 6
  58. static const u8 pidff_set_effect[] = {
  59. 0x22, 0x50, 0x52, 0x53, 0x54, 0x56, 0xa7
  60. };
  61. #define PID_ATTACK_LEVEL 1
  62. #define PID_ATTACK_TIME 2
  63. #define PID_FADE_LEVEL 3
  64. #define PID_FADE_TIME 4
  65. static const u8 pidff_set_envelope[] = { 0x22, 0x5b, 0x5c, 0x5d, 0x5e };
  66. #define PID_PARAM_BLOCK_OFFSET 1
  67. #define PID_CP_OFFSET 2
  68. #define PID_POS_COEFFICIENT 3
  69. #define PID_NEG_COEFFICIENT 4
  70. #define PID_POS_SATURATION 5
  71. #define PID_NEG_SATURATION 6
  72. #define PID_DEAD_BAND 7
  73. static const u8 pidff_set_condition[] = {
  74. 0x22, 0x23, 0x60, 0x61, 0x62, 0x63, 0x64, 0x65
  75. };
  76. #define PID_MAGNITUDE 1
  77. #define PID_OFFSET 2
  78. #define PID_PHASE 3
  79. #define PID_PERIOD 4
  80. static const u8 pidff_set_periodic[] = { 0x22, 0x70, 0x6f, 0x71, 0x72 };
  81. static const u8 pidff_set_constant[] = { 0x22, 0x70 };
  82. #define PID_RAMP_START 1
  83. #define PID_RAMP_END 2
  84. static const u8 pidff_set_ramp[] = { 0x22, 0x75, 0x76 };
  85. #define PID_RAM_POOL_AVAILABLE 1
  86. static const u8 pidff_block_load[] = { 0x22, 0xac };
  87. #define PID_LOOP_COUNT 1
  88. static const u8 pidff_effect_operation[] = { 0x22, 0x7c };
  89. static const u8 pidff_block_free[] = { 0x22 };
  90. #define PID_DEVICE_GAIN_FIELD 0
  91. static const u8 pidff_device_gain[] = { 0x7e };
  92. #define PID_RAM_POOL_SIZE 0
  93. #define PID_SIMULTANEOUS_MAX 1
  94. #define PID_DEVICE_MANAGED_POOL 2
  95. static const u8 pidff_pool[] = { 0x80, 0x83, 0xa9 };
  96. /* Special field key tables used to put special field keys into arrays */
  97. #define PID_ENABLE_ACTUATORS 0
  98. #define PID_RESET 1
  99. static const u8 pidff_device_control[] = { 0x97, 0x9a };
  100. #define PID_CONSTANT 0
  101. #define PID_RAMP 1
  102. #define PID_SQUARE 2
  103. #define PID_SINE 3
  104. #define PID_TRIANGLE 4
  105. #define PID_SAW_UP 5
  106. #define PID_SAW_DOWN 6
  107. #define PID_SPRING 7
  108. #define PID_DAMPER 8
  109. #define PID_INERTIA 9
  110. #define PID_FRICTION 10
  111. static const u8 pidff_effect_types[] = {
  112. 0x26, 0x27, 0x30, 0x31, 0x32, 0x33, 0x34,
  113. 0x40, 0x41, 0x42, 0x43
  114. };
  115. #define PID_BLOCK_LOAD_SUCCESS 0
  116. #define PID_BLOCK_LOAD_FULL 1
  117. static const u8 pidff_block_load_status[] = { 0x8c, 0x8d };
  118. #define PID_EFFECT_START 0
  119. #define PID_EFFECT_STOP 1
  120. static const u8 pidff_effect_operation_status[] = { 0x79, 0x7b };
  121. struct pidff_usage {
  122. struct hid_field *field;
  123. s32 *value;
  124. };
  125. struct pidff_device {
  126. struct hid_device *hid;
  127. struct hid_report *reports[sizeof(pidff_reports)];
  128. struct pidff_usage set_effect[sizeof(pidff_set_effect)];
  129. struct pidff_usage set_envelope[sizeof(pidff_set_envelope)];
  130. struct pidff_usage set_condition[sizeof(pidff_set_condition)];
  131. struct pidff_usage set_periodic[sizeof(pidff_set_periodic)];
  132. struct pidff_usage set_constant[sizeof(pidff_set_constant)];
  133. struct pidff_usage set_ramp[sizeof(pidff_set_ramp)];
  134. struct pidff_usage device_gain[sizeof(pidff_device_gain)];
  135. struct pidff_usage block_load[sizeof(pidff_block_load)];
  136. struct pidff_usage pool[sizeof(pidff_pool)];
  137. struct pidff_usage effect_operation[sizeof(pidff_effect_operation)];
  138. struct pidff_usage block_free[sizeof(pidff_block_free)];
  139. /* Special field is a field that is not composed of
  140. usage<->value pairs that pidff_usage values are */
  141. /* Special field in create_new_effect */
  142. struct hid_field *create_new_effect_type;
  143. /* Special fields in set_effect */
  144. struct hid_field *set_effect_type;
  145. struct hid_field *effect_direction;
  146. /* Special field in device_control */
  147. struct hid_field *device_control;
  148. /* Special field in block_load */
  149. struct hid_field *block_load_status;
  150. /* Special field in effect_operation */
  151. struct hid_field *effect_operation_status;
  152. int control_id[sizeof(pidff_device_control)];
  153. int type_id[sizeof(pidff_effect_types)];
  154. int status_id[sizeof(pidff_block_load_status)];
  155. int operation_id[sizeof(pidff_effect_operation_status)];
  156. int pid_id[PID_EFFECTS_MAX];
  157. };
  158. /*
  159. * Scale an unsigned value with range 0..max for the given field
  160. */
  161. static int pidff_rescale(int i, int max, struct hid_field *field)
  162. {
  163. return i * (field->logical_maximum - field->logical_minimum) / max +
  164. field->logical_minimum;
  165. }
  166. /*
  167. * Scale a signed value in range -0x8000..0x7fff for the given field
  168. */
  169. static int pidff_rescale_signed(int i, struct hid_field *field)
  170. {
  171. return i == 0 ? 0 : i >
  172. 0 ? i * field->logical_maximum / 0x7fff : i *
  173. field->logical_minimum / -0x8000;
  174. }
  175. static void pidff_set(struct pidff_usage *usage, u16 value)
  176. {
  177. usage->value[0] = pidff_rescale(value, 0xffff, usage->field);
  178. pr_debug("calculated from %d to %d\n", value, usage->value[0]);
  179. }
  180. static void pidff_set_signed(struct pidff_usage *usage, s16 value)
  181. {
  182. if (usage->field->logical_minimum < 0)
  183. usage->value[0] = pidff_rescale_signed(value, usage->field);
  184. else {
  185. if (value < 0)
  186. usage->value[0] =
  187. pidff_rescale(-value, 0x8000, usage->field);
  188. else
  189. usage->value[0] =
  190. pidff_rescale(value, 0x7fff, usage->field);
  191. }
  192. pr_debug("calculated from %d to %d\n", value, usage->value[0]);
  193. }
  194. /*
  195. * Send envelope report to the device
  196. */
  197. static void pidff_set_envelope_report(struct pidff_device *pidff,
  198. struct ff_envelope *envelope)
  199. {
  200. pidff->set_envelope[PID_EFFECT_BLOCK_INDEX].value[0] =
  201. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
  202. pidff->set_envelope[PID_ATTACK_LEVEL].value[0] =
  203. pidff_rescale(envelope->attack_level >
  204. 0x7fff ? 0x7fff : envelope->attack_level, 0x7fff,
  205. pidff->set_envelope[PID_ATTACK_LEVEL].field);
  206. pidff->set_envelope[PID_FADE_LEVEL].value[0] =
  207. pidff_rescale(envelope->fade_level >
  208. 0x7fff ? 0x7fff : envelope->fade_level, 0x7fff,
  209. pidff->set_envelope[PID_FADE_LEVEL].field);
  210. pidff->set_envelope[PID_ATTACK_TIME].value[0] = envelope->attack_length;
  211. pidff->set_envelope[PID_FADE_TIME].value[0] = envelope->fade_length;
  212. hid_dbg(pidff->hid, "attack %u => %d\n",
  213. envelope->attack_level,
  214. pidff->set_envelope[PID_ATTACK_LEVEL].value[0]);
  215. hid_hw_request(pidff->hid, pidff->reports[PID_SET_ENVELOPE],
  216. HID_REQ_SET_REPORT);
  217. }
  218. /*
  219. * Test if the new envelope differs from old one
  220. */
  221. static int pidff_needs_set_envelope(struct ff_envelope *envelope,
  222. struct ff_envelope *old)
  223. {
  224. return envelope->attack_level != old->attack_level ||
  225. envelope->fade_level != old->fade_level ||
  226. envelope->attack_length != old->attack_length ||
  227. envelope->fade_length != old->fade_length;
  228. }
  229. /*
  230. * Send constant force report to the device
  231. */
  232. static void pidff_set_constant_force_report(struct pidff_device *pidff,
  233. struct ff_effect *effect)
  234. {
  235. pidff->set_constant[PID_EFFECT_BLOCK_INDEX].value[0] =
  236. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
  237. pidff_set_signed(&pidff->set_constant[PID_MAGNITUDE],
  238. effect->u.constant.level);
  239. hid_hw_request(pidff->hid, pidff->reports[PID_SET_CONSTANT],
  240. HID_REQ_SET_REPORT);
  241. }
  242. /*
  243. * Test if the constant parameters have changed between effects
  244. */
  245. static int pidff_needs_set_constant(struct ff_effect *effect,
  246. struct ff_effect *old)
  247. {
  248. return effect->u.constant.level != old->u.constant.level;
  249. }
  250. /*
  251. * Send set effect report to the device
  252. */
  253. static void pidff_set_effect_report(struct pidff_device *pidff,
  254. struct ff_effect *effect)
  255. {
  256. pidff->set_effect[PID_EFFECT_BLOCK_INDEX].value[0] =
  257. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
  258. pidff->set_effect_type->value[0] =
  259. pidff->create_new_effect_type->value[0];
  260. pidff->set_effect[PID_DURATION].value[0] = effect->replay.length;
  261. pidff->set_effect[PID_TRIGGER_BUTTON].value[0] = effect->trigger.button;
  262. pidff->set_effect[PID_TRIGGER_REPEAT_INT].value[0] =
  263. effect->trigger.interval;
  264. pidff->set_effect[PID_GAIN].value[0] =
  265. pidff->set_effect[PID_GAIN].field->logical_maximum;
  266. pidff->set_effect[PID_DIRECTION_ENABLE].value[0] = 1;
  267. pidff->effect_direction->value[0] =
  268. pidff_rescale(effect->direction, 0xffff,
  269. pidff->effect_direction);
  270. pidff->set_effect[PID_START_DELAY].value[0] = effect->replay.delay;
  271. hid_hw_request(pidff->hid, pidff->reports[PID_SET_EFFECT],
  272. HID_REQ_SET_REPORT);
  273. }
  274. /*
  275. * Test if the values used in set_effect have changed
  276. */
  277. static int pidff_needs_set_effect(struct ff_effect *effect,
  278. struct ff_effect *old)
  279. {
  280. return effect->replay.length != old->replay.length ||
  281. effect->trigger.interval != old->trigger.interval ||
  282. effect->trigger.button != old->trigger.button ||
  283. effect->direction != old->direction ||
  284. effect->replay.delay != old->replay.delay;
  285. }
  286. /*
  287. * Send periodic effect report to the device
  288. */
  289. static void pidff_set_periodic_report(struct pidff_device *pidff,
  290. struct ff_effect *effect)
  291. {
  292. pidff->set_periodic[PID_EFFECT_BLOCK_INDEX].value[0] =
  293. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
  294. pidff_set_signed(&pidff->set_periodic[PID_MAGNITUDE],
  295. effect->u.periodic.magnitude);
  296. pidff_set_signed(&pidff->set_periodic[PID_OFFSET],
  297. effect->u.periodic.offset);
  298. pidff_set(&pidff->set_periodic[PID_PHASE], effect->u.periodic.phase);
  299. pidff->set_periodic[PID_PERIOD].value[0] = effect->u.periodic.period;
  300. hid_hw_request(pidff->hid, pidff->reports[PID_SET_PERIODIC],
  301. HID_REQ_SET_REPORT);
  302. }
  303. /*
  304. * Test if periodic effect parameters have changed
  305. */
  306. static int pidff_needs_set_periodic(struct ff_effect *effect,
  307. struct ff_effect *old)
  308. {
  309. return effect->u.periodic.magnitude != old->u.periodic.magnitude ||
  310. effect->u.periodic.offset != old->u.periodic.offset ||
  311. effect->u.periodic.phase != old->u.periodic.phase ||
  312. effect->u.periodic.period != old->u.periodic.period;
  313. }
  314. /*
  315. * Send condition effect reports to the device
  316. */
  317. static void pidff_set_condition_report(struct pidff_device *pidff,
  318. struct ff_effect *effect)
  319. {
  320. int i;
  321. pidff->set_condition[PID_EFFECT_BLOCK_INDEX].value[0] =
  322. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
  323. for (i = 0; i < 2; i++) {
  324. pidff->set_condition[PID_PARAM_BLOCK_OFFSET].value[0] = i;
  325. pidff_set_signed(&pidff->set_condition[PID_CP_OFFSET],
  326. effect->u.condition[i].center);
  327. pidff_set_signed(&pidff->set_condition[PID_POS_COEFFICIENT],
  328. effect->u.condition[i].right_coeff);
  329. pidff_set_signed(&pidff->set_condition[PID_NEG_COEFFICIENT],
  330. effect->u.condition[i].left_coeff);
  331. pidff_set(&pidff->set_condition[PID_POS_SATURATION],
  332. effect->u.condition[i].right_saturation);
  333. pidff_set(&pidff->set_condition[PID_NEG_SATURATION],
  334. effect->u.condition[i].left_saturation);
  335. pidff_set(&pidff->set_condition[PID_DEAD_BAND],
  336. effect->u.condition[i].deadband);
  337. hid_hw_request(pidff->hid, pidff->reports[PID_SET_CONDITION],
  338. HID_REQ_SET_REPORT);
  339. }
  340. }
  341. /*
  342. * Test if condition effect parameters have changed
  343. */
  344. static int pidff_needs_set_condition(struct ff_effect *effect,
  345. struct ff_effect *old)
  346. {
  347. int i;
  348. int ret = 0;
  349. for (i = 0; i < 2; i++) {
  350. struct ff_condition_effect *cond = &effect->u.condition[i];
  351. struct ff_condition_effect *old_cond = &old->u.condition[i];
  352. ret |= cond->center != old_cond->center ||
  353. cond->right_coeff != old_cond->right_coeff ||
  354. cond->left_coeff != old_cond->left_coeff ||
  355. cond->right_saturation != old_cond->right_saturation ||
  356. cond->left_saturation != old_cond->left_saturation ||
  357. cond->deadband != old_cond->deadband;
  358. }
  359. return ret;
  360. }
  361. /*
  362. * Send ramp force report to the device
  363. */
  364. static void pidff_set_ramp_force_report(struct pidff_device *pidff,
  365. struct ff_effect *effect)
  366. {
  367. pidff->set_ramp[PID_EFFECT_BLOCK_INDEX].value[0] =
  368. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
  369. pidff_set_signed(&pidff->set_ramp[PID_RAMP_START],
  370. effect->u.ramp.start_level);
  371. pidff_set_signed(&pidff->set_ramp[PID_RAMP_END],
  372. effect->u.ramp.end_level);
  373. hid_hw_request(pidff->hid, pidff->reports[PID_SET_RAMP],
  374. HID_REQ_SET_REPORT);
  375. }
  376. /*
  377. * Test if ramp force parameters have changed
  378. */
  379. static int pidff_needs_set_ramp(struct ff_effect *effect, struct ff_effect *old)
  380. {
  381. return effect->u.ramp.start_level != old->u.ramp.start_level ||
  382. effect->u.ramp.end_level != old->u.ramp.end_level;
  383. }
  384. /*
  385. * Send a request for effect upload to the device
  386. *
  387. * Returns 0 if device reported success, -ENOSPC if the device reported memory
  388. * is full. Upon unknown response the function will retry for 60 times, if
  389. * still unsuccessful -EIO is returned.
  390. */
  391. static int pidff_request_effect_upload(struct pidff_device *pidff, int efnum)
  392. {
  393. int j;
  394. pidff->create_new_effect_type->value[0] = efnum;
  395. hid_hw_request(pidff->hid, pidff->reports[PID_CREATE_NEW_EFFECT],
  396. HID_REQ_SET_REPORT);
  397. hid_dbg(pidff->hid, "create_new_effect sent, type: %d\n", efnum);
  398. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0] = 0;
  399. pidff->block_load_status->value[0] = 0;
  400. hid_hw_wait(pidff->hid);
  401. for (j = 0; j < 60; j++) {
  402. hid_dbg(pidff->hid, "pid_block_load requested\n");
  403. hid_hw_request(pidff->hid, pidff->reports[PID_BLOCK_LOAD],
  404. HID_REQ_GET_REPORT);
  405. hid_hw_wait(pidff->hid);
  406. if (pidff->block_load_status->value[0] ==
  407. pidff->status_id[PID_BLOCK_LOAD_SUCCESS]) {
  408. hid_dbg(pidff->hid, "device reported free memory: %d bytes\n",
  409. pidff->block_load[PID_RAM_POOL_AVAILABLE].value ?
  410. pidff->block_load[PID_RAM_POOL_AVAILABLE].value[0] : -1);
  411. return 0;
  412. }
  413. if (pidff->block_load_status->value[0] ==
  414. pidff->status_id[PID_BLOCK_LOAD_FULL]) {
  415. hid_dbg(pidff->hid, "not enough memory free: %d bytes\n",
  416. pidff->block_load[PID_RAM_POOL_AVAILABLE].value ?
  417. pidff->block_load[PID_RAM_POOL_AVAILABLE].value[0] : -1);
  418. return -ENOSPC;
  419. }
  420. }
  421. hid_err(pidff->hid, "pid_block_load failed 60 times\n");
  422. return -EIO;
  423. }
  424. /*
  425. * Play the effect with PID id n times
  426. */
  427. static void pidff_playback_pid(struct pidff_device *pidff, int pid_id, int n)
  428. {
  429. pidff->effect_operation[PID_EFFECT_BLOCK_INDEX].value[0] = pid_id;
  430. if (n == 0) {
  431. pidff->effect_operation_status->value[0] =
  432. pidff->operation_id[PID_EFFECT_STOP];
  433. } else {
  434. pidff->effect_operation_status->value[0] =
  435. pidff->operation_id[PID_EFFECT_START];
  436. pidff->effect_operation[PID_LOOP_COUNT].value[0] = n;
  437. }
  438. hid_hw_request(pidff->hid, pidff->reports[PID_EFFECT_OPERATION],
  439. HID_REQ_SET_REPORT);
  440. }
  441. /**
  442. * Play the effect with effect id @effect_id for @value times
  443. */
  444. static int pidff_playback(struct input_dev *dev, int effect_id, int value)
  445. {
  446. struct pidff_device *pidff = dev->ff->private;
  447. pidff_playback_pid(pidff, pidff->pid_id[effect_id], value);
  448. return 0;
  449. }
  450. /*
  451. * Erase effect with PID id
  452. */
  453. static void pidff_erase_pid(struct pidff_device *pidff, int pid_id)
  454. {
  455. pidff->block_free[PID_EFFECT_BLOCK_INDEX].value[0] = pid_id;
  456. hid_hw_request(pidff->hid, pidff->reports[PID_BLOCK_FREE],
  457. HID_REQ_SET_REPORT);
  458. }
  459. /*
  460. * Stop and erase effect with effect_id
  461. */
  462. static int pidff_erase_effect(struct input_dev *dev, int effect_id)
  463. {
  464. struct pidff_device *pidff = dev->ff->private;
  465. int pid_id = pidff->pid_id[effect_id];
  466. hid_dbg(pidff->hid, "starting to erase %d/%d\n",
  467. effect_id, pidff->pid_id[effect_id]);
  468. /* Wait for the queue to clear. We do not want a full fifo to
  469. prevent the effect removal. */
  470. hid_hw_wait(pidff->hid);
  471. pidff_playback_pid(pidff, pid_id, 0);
  472. pidff_erase_pid(pidff, pid_id);
  473. return 0;
  474. }
  475. /*
  476. * Effect upload handler
  477. */
  478. static int pidff_upload_effect(struct input_dev *dev, struct ff_effect *effect,
  479. struct ff_effect *old)
  480. {
  481. struct pidff_device *pidff = dev->ff->private;
  482. int type_id;
  483. int error;
  484. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0] = 0;
  485. if (old) {
  486. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0] =
  487. pidff->pid_id[effect->id];
  488. }
  489. switch (effect->type) {
  490. case FF_CONSTANT:
  491. if (!old) {
  492. error = pidff_request_effect_upload(pidff,
  493. pidff->type_id[PID_CONSTANT]);
  494. if (error)
  495. return error;
  496. }
  497. if (!old || pidff_needs_set_effect(effect, old))
  498. pidff_set_effect_report(pidff, effect);
  499. if (!old || pidff_needs_set_constant(effect, old))
  500. pidff_set_constant_force_report(pidff, effect);
  501. if (!old ||
  502. pidff_needs_set_envelope(&effect->u.constant.envelope,
  503. &old->u.constant.envelope))
  504. pidff_set_envelope_report(pidff,
  505. &effect->u.constant.envelope);
  506. break;
  507. case FF_PERIODIC:
  508. if (!old) {
  509. switch (effect->u.periodic.waveform) {
  510. case FF_SQUARE:
  511. type_id = PID_SQUARE;
  512. break;
  513. case FF_TRIANGLE:
  514. type_id = PID_TRIANGLE;
  515. break;
  516. case FF_SINE:
  517. type_id = PID_SINE;
  518. break;
  519. case FF_SAW_UP:
  520. type_id = PID_SAW_UP;
  521. break;
  522. case FF_SAW_DOWN:
  523. type_id = PID_SAW_DOWN;
  524. break;
  525. default:
  526. hid_err(pidff->hid, "invalid waveform\n");
  527. return -EINVAL;
  528. }
  529. error = pidff_request_effect_upload(pidff,
  530. pidff->type_id[type_id]);
  531. if (error)
  532. return error;
  533. }
  534. if (!old || pidff_needs_set_effect(effect, old))
  535. pidff_set_effect_report(pidff, effect);
  536. if (!old || pidff_needs_set_periodic(effect, old))
  537. pidff_set_periodic_report(pidff, effect);
  538. if (!old ||
  539. pidff_needs_set_envelope(&effect->u.periodic.envelope,
  540. &old->u.periodic.envelope))
  541. pidff_set_envelope_report(pidff,
  542. &effect->u.periodic.envelope);
  543. break;
  544. case FF_RAMP:
  545. if (!old) {
  546. error = pidff_request_effect_upload(pidff,
  547. pidff->type_id[PID_RAMP]);
  548. if (error)
  549. return error;
  550. }
  551. if (!old || pidff_needs_set_effect(effect, old))
  552. pidff_set_effect_report(pidff, effect);
  553. if (!old || pidff_needs_set_ramp(effect, old))
  554. pidff_set_ramp_force_report(pidff, effect);
  555. if (!old ||
  556. pidff_needs_set_envelope(&effect->u.ramp.envelope,
  557. &old->u.ramp.envelope))
  558. pidff_set_envelope_report(pidff,
  559. &effect->u.ramp.envelope);
  560. break;
  561. case FF_SPRING:
  562. if (!old) {
  563. error = pidff_request_effect_upload(pidff,
  564. pidff->type_id[PID_SPRING]);
  565. if (error)
  566. return error;
  567. }
  568. if (!old || pidff_needs_set_effect(effect, old))
  569. pidff_set_effect_report(pidff, effect);
  570. if (!old || pidff_needs_set_condition(effect, old))
  571. pidff_set_condition_report(pidff, effect);
  572. break;
  573. case FF_FRICTION:
  574. if (!old) {
  575. error = pidff_request_effect_upload(pidff,
  576. pidff->type_id[PID_FRICTION]);
  577. if (error)
  578. return error;
  579. }
  580. if (!old || pidff_needs_set_effect(effect, old))
  581. pidff_set_effect_report(pidff, effect);
  582. if (!old || pidff_needs_set_condition(effect, old))
  583. pidff_set_condition_report(pidff, effect);
  584. break;
  585. case FF_DAMPER:
  586. if (!old) {
  587. error = pidff_request_effect_upload(pidff,
  588. pidff->type_id[PID_DAMPER]);
  589. if (error)
  590. return error;
  591. }
  592. if (!old || pidff_needs_set_effect(effect, old))
  593. pidff_set_effect_report(pidff, effect);
  594. if (!old || pidff_needs_set_condition(effect, old))
  595. pidff_set_condition_report(pidff, effect);
  596. break;
  597. case FF_INERTIA:
  598. if (!old) {
  599. error = pidff_request_effect_upload(pidff,
  600. pidff->type_id[PID_INERTIA]);
  601. if (error)
  602. return error;
  603. }
  604. if (!old || pidff_needs_set_effect(effect, old))
  605. pidff_set_effect_report(pidff, effect);
  606. if (!old || pidff_needs_set_condition(effect, old))
  607. pidff_set_condition_report(pidff, effect);
  608. break;
  609. default:
  610. hid_err(pidff->hid, "invalid type\n");
  611. return -EINVAL;
  612. }
  613. if (!old)
  614. pidff->pid_id[effect->id] =
  615. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
  616. hid_dbg(pidff->hid, "uploaded\n");
  617. return 0;
  618. }
  619. /*
  620. * set_gain() handler
  621. */
  622. static void pidff_set_gain(struct input_dev *dev, u16 gain)
  623. {
  624. struct pidff_device *pidff = dev->ff->private;
  625. pidff_set(&pidff->device_gain[PID_DEVICE_GAIN_FIELD], gain);
  626. hid_hw_request(pidff->hid, pidff->reports[PID_DEVICE_GAIN],
  627. HID_REQ_SET_REPORT);
  628. }
  629. static void pidff_autocenter(struct pidff_device *pidff, u16 magnitude)
  630. {
  631. struct hid_field *field =
  632. pidff->block_load[PID_EFFECT_BLOCK_INDEX].field;
  633. if (!magnitude) {
  634. pidff_playback_pid(pidff, field->logical_minimum, 0);
  635. return;
  636. }
  637. pidff_playback_pid(pidff, field->logical_minimum, 1);
  638. pidff->set_effect[PID_EFFECT_BLOCK_INDEX].value[0] =
  639. pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_minimum;
  640. pidff->set_effect_type->value[0] = pidff->type_id[PID_SPRING];
  641. pidff->set_effect[PID_DURATION].value[0] = 0;
  642. pidff->set_effect[PID_TRIGGER_BUTTON].value[0] = 0;
  643. pidff->set_effect[PID_TRIGGER_REPEAT_INT].value[0] = 0;
  644. pidff_set(&pidff->set_effect[PID_GAIN], magnitude);
  645. pidff->set_effect[PID_DIRECTION_ENABLE].value[0] = 1;
  646. pidff->set_effect[PID_START_DELAY].value[0] = 0;
  647. hid_hw_request(pidff->hid, pidff->reports[PID_SET_EFFECT],
  648. HID_REQ_SET_REPORT);
  649. }
  650. /*
  651. * pidff_set_autocenter() handler
  652. */
  653. static void pidff_set_autocenter(struct input_dev *dev, u16 magnitude)
  654. {
  655. struct pidff_device *pidff = dev->ff->private;
  656. pidff_autocenter(pidff, magnitude);
  657. }
  658. /*
  659. * Find fields from a report and fill a pidff_usage
  660. */
  661. static int pidff_find_fields(struct pidff_usage *usage, const u8 *table,
  662. struct hid_report *report, int count, int strict)
  663. {
  664. int i, j, k, found;
  665. for (k = 0; k < count; k++) {
  666. found = 0;
  667. for (i = 0; i < report->maxfield; i++) {
  668. if (report->field[i]->maxusage !=
  669. report->field[i]->report_count) {
  670. pr_debug("maxusage and report_count do not match, skipping\n");
  671. continue;
  672. }
  673. for (j = 0; j < report->field[i]->maxusage; j++) {
  674. if (report->field[i]->usage[j].hid ==
  675. (HID_UP_PID | table[k])) {
  676. pr_debug("found %d at %d->%d\n",
  677. k, i, j);
  678. usage[k].field = report->field[i];
  679. usage[k].value =
  680. &report->field[i]->value[j];
  681. found = 1;
  682. break;
  683. }
  684. }
  685. if (found)
  686. break;
  687. }
  688. if (!found && strict) {
  689. pr_debug("failed to locate %d\n", k);
  690. return -1;
  691. }
  692. }
  693. return 0;
  694. }
  695. /*
  696. * Return index into pidff_reports for the given usage
  697. */
  698. static int pidff_check_usage(int usage)
  699. {
  700. int i;
  701. for (i = 0; i < sizeof(pidff_reports); i++)
  702. if (usage == (HID_UP_PID | pidff_reports[i]))
  703. return i;
  704. return -1;
  705. }
  706. /*
  707. * Find the reports and fill pidff->reports[]
  708. * report_type specifies either OUTPUT or FEATURE reports
  709. */
  710. static void pidff_find_reports(struct hid_device *hid, int report_type,
  711. struct pidff_device *pidff)
  712. {
  713. struct hid_report *report;
  714. int i, ret;
  715. list_for_each_entry(report,
  716. &hid->report_enum[report_type].report_list, list) {
  717. if (report->maxfield < 1)
  718. continue;
  719. ret = pidff_check_usage(report->field[0]->logical);
  720. if (ret != -1) {
  721. hid_dbg(hid, "found usage 0x%02x from field->logical\n",
  722. pidff_reports[ret]);
  723. pidff->reports[ret] = report;
  724. continue;
  725. }
  726. /*
  727. * Sometimes logical collections are stacked to indicate
  728. * different usages for the report and the field, in which
  729. * case we want the usage of the parent. However, Linux HID
  730. * implementation hides this fact, so we have to dig it up
  731. * ourselves
  732. */
  733. i = report->field[0]->usage[0].collection_index;
  734. if (i <= 0 ||
  735. hid->collection[i - 1].type != HID_COLLECTION_LOGICAL)
  736. continue;
  737. ret = pidff_check_usage(hid->collection[i - 1].usage);
  738. if (ret != -1 && !pidff->reports[ret]) {
  739. hid_dbg(hid,
  740. "found usage 0x%02x from collection array\n",
  741. pidff_reports[ret]);
  742. pidff->reports[ret] = report;
  743. }
  744. }
  745. }
  746. /*
  747. * Test if the required reports have been found
  748. */
  749. static int pidff_reports_ok(struct pidff_device *pidff)
  750. {
  751. int i;
  752. for (i = 0; i <= PID_REQUIRED_REPORTS; i++) {
  753. if (!pidff->reports[i]) {
  754. hid_dbg(pidff->hid, "%d missing\n", i);
  755. return 0;
  756. }
  757. }
  758. return 1;
  759. }
  760. /*
  761. * Find a field with a specific usage within a report
  762. */
  763. static struct hid_field *pidff_find_special_field(struct hid_report *report,
  764. int usage, int enforce_min)
  765. {
  766. int i;
  767. for (i = 0; i < report->maxfield; i++) {
  768. if (report->field[i]->logical == (HID_UP_PID | usage) &&
  769. report->field[i]->report_count > 0) {
  770. if (!enforce_min ||
  771. report->field[i]->logical_minimum == 1)
  772. return report->field[i];
  773. else {
  774. pr_err("logical_minimum is not 1 as it should be\n");
  775. return NULL;
  776. }
  777. }
  778. }
  779. return NULL;
  780. }
  781. /*
  782. * Fill a pidff->*_id struct table
  783. */
  784. static int pidff_find_special_keys(int *keys, struct hid_field *fld,
  785. const u8 *usagetable, int count)
  786. {
  787. int i, j;
  788. int found = 0;
  789. for (i = 0; i < count; i++) {
  790. for (j = 0; j < fld->maxusage; j++) {
  791. if (fld->usage[j].hid == (HID_UP_PID | usagetable[i])) {
  792. keys[i] = j + 1;
  793. found++;
  794. break;
  795. }
  796. }
  797. }
  798. return found;
  799. }
  800. #define PIDFF_FIND_SPECIAL_KEYS(keys, field, name) \
  801. pidff_find_special_keys(pidff->keys, pidff->field, pidff_ ## name, \
  802. sizeof(pidff_ ## name))
  803. /*
  804. * Find and check the special fields
  805. */
  806. static int pidff_find_special_fields(struct pidff_device *pidff)
  807. {
  808. hid_dbg(pidff->hid, "finding special fields\n");
  809. pidff->create_new_effect_type =
  810. pidff_find_special_field(pidff->reports[PID_CREATE_NEW_EFFECT],
  811. 0x25, 1);
  812. pidff->set_effect_type =
  813. pidff_find_special_field(pidff->reports[PID_SET_EFFECT],
  814. 0x25, 1);
  815. pidff->effect_direction =
  816. pidff_find_special_field(pidff->reports[PID_SET_EFFECT],
  817. 0x57, 0);
  818. pidff->device_control =
  819. pidff_find_special_field(pidff->reports[PID_DEVICE_CONTROL],
  820. 0x96, 1);
  821. pidff->block_load_status =
  822. pidff_find_special_field(pidff->reports[PID_BLOCK_LOAD],
  823. 0x8b, 1);
  824. pidff->effect_operation_status =
  825. pidff_find_special_field(pidff->reports[PID_EFFECT_OPERATION],
  826. 0x78, 1);
  827. hid_dbg(pidff->hid, "search done\n");
  828. if (!pidff->create_new_effect_type || !pidff->set_effect_type) {
  829. hid_err(pidff->hid, "effect lists not found\n");
  830. return -1;
  831. }
  832. if (!pidff->effect_direction) {
  833. hid_err(pidff->hid, "direction field not found\n");
  834. return -1;
  835. }
  836. if (!pidff->device_control) {
  837. hid_err(pidff->hid, "device control field not found\n");
  838. return -1;
  839. }
  840. if (!pidff->block_load_status) {
  841. hid_err(pidff->hid, "block load status field not found\n");
  842. return -1;
  843. }
  844. if (!pidff->effect_operation_status) {
  845. hid_err(pidff->hid, "effect operation field not found\n");
  846. return -1;
  847. }
  848. pidff_find_special_keys(pidff->control_id, pidff->device_control,
  849. pidff_device_control,
  850. sizeof(pidff_device_control));
  851. PIDFF_FIND_SPECIAL_KEYS(control_id, device_control, device_control);
  852. if (!PIDFF_FIND_SPECIAL_KEYS(type_id, create_new_effect_type,
  853. effect_types)) {
  854. hid_err(pidff->hid, "no effect types found\n");
  855. return -1;
  856. }
  857. if (PIDFF_FIND_SPECIAL_KEYS(status_id, block_load_status,
  858. block_load_status) !=
  859. sizeof(pidff_block_load_status)) {
  860. hid_err(pidff->hid,
  861. "block load status identifiers not found\n");
  862. return -1;
  863. }
  864. if (PIDFF_FIND_SPECIAL_KEYS(operation_id, effect_operation_status,
  865. effect_operation_status) !=
  866. sizeof(pidff_effect_operation_status)) {
  867. hid_err(pidff->hid, "effect operation identifiers not found\n");
  868. return -1;
  869. }
  870. return 0;
  871. }
  872. /**
  873. * Find the implemented effect types
  874. */
  875. static int pidff_find_effects(struct pidff_device *pidff,
  876. struct input_dev *dev)
  877. {
  878. int i;
  879. for (i = 0; i < sizeof(pidff_effect_types); i++) {
  880. int pidff_type = pidff->type_id[i];
  881. if (pidff->set_effect_type->usage[pidff_type].hid !=
  882. pidff->create_new_effect_type->usage[pidff_type].hid) {
  883. hid_err(pidff->hid,
  884. "effect type number %d is invalid\n", i);
  885. return -1;
  886. }
  887. }
  888. if (pidff->type_id[PID_CONSTANT])
  889. set_bit(FF_CONSTANT, dev->ffbit);
  890. if (pidff->type_id[PID_RAMP])
  891. set_bit(FF_RAMP, dev->ffbit);
  892. if (pidff->type_id[PID_SQUARE]) {
  893. set_bit(FF_SQUARE, dev->ffbit);
  894. set_bit(FF_PERIODIC, dev->ffbit);
  895. }
  896. if (pidff->type_id[PID_SINE]) {
  897. set_bit(FF_SINE, dev->ffbit);
  898. set_bit(FF_PERIODIC, dev->ffbit);
  899. }
  900. if (pidff->type_id[PID_TRIANGLE]) {
  901. set_bit(FF_TRIANGLE, dev->ffbit);
  902. set_bit(FF_PERIODIC, dev->ffbit);
  903. }
  904. if (pidff->type_id[PID_SAW_UP]) {
  905. set_bit(FF_SAW_UP, dev->ffbit);
  906. set_bit(FF_PERIODIC, dev->ffbit);
  907. }
  908. if (pidff->type_id[PID_SAW_DOWN]) {
  909. set_bit(FF_SAW_DOWN, dev->ffbit);
  910. set_bit(FF_PERIODIC, dev->ffbit);
  911. }
  912. if (pidff->type_id[PID_SPRING])
  913. set_bit(FF_SPRING, dev->ffbit);
  914. if (pidff->type_id[PID_DAMPER])
  915. set_bit(FF_DAMPER, dev->ffbit);
  916. if (pidff->type_id[PID_INERTIA])
  917. set_bit(FF_INERTIA, dev->ffbit);
  918. if (pidff->type_id[PID_FRICTION])
  919. set_bit(FF_FRICTION, dev->ffbit);
  920. return 0;
  921. }
  922. #define PIDFF_FIND_FIELDS(name, report, strict) \
  923. pidff_find_fields(pidff->name, pidff_ ## name, \
  924. pidff->reports[report], \
  925. sizeof(pidff_ ## name), strict)
  926. /*
  927. * Fill and check the pidff_usages
  928. */
  929. static int pidff_init_fields(struct pidff_device *pidff, struct input_dev *dev)
  930. {
  931. int envelope_ok = 0;
  932. if (PIDFF_FIND_FIELDS(set_effect, PID_SET_EFFECT, 1)) {
  933. hid_err(pidff->hid, "unknown set_effect report layout\n");
  934. return -ENODEV;
  935. }
  936. PIDFF_FIND_FIELDS(block_load, PID_BLOCK_LOAD, 0);
  937. if (!pidff->block_load[PID_EFFECT_BLOCK_INDEX].value) {
  938. hid_err(pidff->hid, "unknown pid_block_load report layout\n");
  939. return -ENODEV;
  940. }
  941. if (PIDFF_FIND_FIELDS(effect_operation, PID_EFFECT_OPERATION, 1)) {
  942. hid_err(pidff->hid, "unknown effect_operation report layout\n");
  943. return -ENODEV;
  944. }
  945. if (PIDFF_FIND_FIELDS(block_free, PID_BLOCK_FREE, 1)) {
  946. hid_err(pidff->hid, "unknown pid_block_free report layout\n");
  947. return -ENODEV;
  948. }
  949. if (!PIDFF_FIND_FIELDS(set_envelope, PID_SET_ENVELOPE, 1))
  950. envelope_ok = 1;
  951. if (pidff_find_special_fields(pidff) || pidff_find_effects(pidff, dev))
  952. return -ENODEV;
  953. if (!envelope_ok) {
  954. if (test_and_clear_bit(FF_CONSTANT, dev->ffbit))
  955. hid_warn(pidff->hid,
  956. "has constant effect but no envelope\n");
  957. if (test_and_clear_bit(FF_RAMP, dev->ffbit))
  958. hid_warn(pidff->hid,
  959. "has ramp effect but no envelope\n");
  960. if (test_and_clear_bit(FF_PERIODIC, dev->ffbit))
  961. hid_warn(pidff->hid,
  962. "has periodic effect but no envelope\n");
  963. }
  964. if (test_bit(FF_CONSTANT, dev->ffbit) &&
  965. PIDFF_FIND_FIELDS(set_constant, PID_SET_CONSTANT, 1)) {
  966. hid_warn(pidff->hid, "unknown constant effect layout\n");
  967. clear_bit(FF_CONSTANT, dev->ffbit);
  968. }
  969. if (test_bit(FF_RAMP, dev->ffbit) &&
  970. PIDFF_FIND_FIELDS(set_ramp, PID_SET_RAMP, 1)) {
  971. hid_warn(pidff->hid, "unknown ramp effect layout\n");
  972. clear_bit(FF_RAMP, dev->ffbit);
  973. }
  974. if ((test_bit(FF_SPRING, dev->ffbit) ||
  975. test_bit(FF_DAMPER, dev->ffbit) ||
  976. test_bit(FF_FRICTION, dev->ffbit) ||
  977. test_bit(FF_INERTIA, dev->ffbit)) &&
  978. PIDFF_FIND_FIELDS(set_condition, PID_SET_CONDITION, 1)) {
  979. hid_warn(pidff->hid, "unknown condition effect layout\n");
  980. clear_bit(FF_SPRING, dev->ffbit);
  981. clear_bit(FF_DAMPER, dev->ffbit);
  982. clear_bit(FF_FRICTION, dev->ffbit);
  983. clear_bit(FF_INERTIA, dev->ffbit);
  984. }
  985. if (test_bit(FF_PERIODIC, dev->ffbit) &&
  986. PIDFF_FIND_FIELDS(set_periodic, PID_SET_PERIODIC, 1)) {
  987. hid_warn(pidff->hid, "unknown periodic effect layout\n");
  988. clear_bit(FF_PERIODIC, dev->ffbit);
  989. }
  990. PIDFF_FIND_FIELDS(pool, PID_POOL, 0);
  991. if (!PIDFF_FIND_FIELDS(device_gain, PID_DEVICE_GAIN, 1))
  992. set_bit(FF_GAIN, dev->ffbit);
  993. return 0;
  994. }
  995. /*
  996. * Reset the device
  997. */
  998. static void pidff_reset(struct pidff_device *pidff)
  999. {
  1000. struct hid_device *hid = pidff->hid;
  1001. int i = 0;
  1002. pidff->device_control->value[0] = pidff->control_id[PID_RESET];
  1003. /* We reset twice as sometimes hid_wait_io isn't waiting long enough */
  1004. hid_hw_request(hid, pidff->reports[PID_DEVICE_CONTROL], HID_REQ_SET_REPORT);
  1005. hid_hw_wait(hid);
  1006. hid_hw_request(hid, pidff->reports[PID_DEVICE_CONTROL], HID_REQ_SET_REPORT);
  1007. hid_hw_wait(hid);
  1008. pidff->device_control->value[0] =
  1009. pidff->control_id[PID_ENABLE_ACTUATORS];
  1010. hid_hw_request(hid, pidff->reports[PID_DEVICE_CONTROL], HID_REQ_SET_REPORT);
  1011. hid_hw_wait(hid);
  1012. /* pool report is sometimes messed up, refetch it */
  1013. hid_hw_request(hid, pidff->reports[PID_POOL], HID_REQ_GET_REPORT);
  1014. hid_hw_wait(hid);
  1015. if (pidff->pool[PID_SIMULTANEOUS_MAX].value) {
  1016. while (pidff->pool[PID_SIMULTANEOUS_MAX].value[0] < 2) {
  1017. if (i++ > 20) {
  1018. hid_warn(pidff->hid,
  1019. "device reports %d simultaneous effects\n",
  1020. pidff->pool[PID_SIMULTANEOUS_MAX].value[0]);
  1021. break;
  1022. }
  1023. hid_dbg(pidff->hid, "pid_pool requested again\n");
  1024. hid_hw_request(hid, pidff->reports[PID_POOL],
  1025. HID_REQ_GET_REPORT);
  1026. hid_hw_wait(hid);
  1027. }
  1028. }
  1029. }
  1030. /*
  1031. * Test if autocenter modification is using the supported method
  1032. */
  1033. static int pidff_check_autocenter(struct pidff_device *pidff,
  1034. struct input_dev *dev)
  1035. {
  1036. int error;
  1037. /*
  1038. * Let's find out if autocenter modification is supported
  1039. * Specification doesn't specify anything, so we request an
  1040. * effect upload and cancel it immediately. If the approved
  1041. * effect id was one above the minimum, then we assume the first
  1042. * effect id is a built-in spring type effect used for autocenter
  1043. */
  1044. error = pidff_request_effect_upload(pidff, 1);
  1045. if (error) {
  1046. hid_err(pidff->hid, "upload request failed\n");
  1047. return error;
  1048. }
  1049. if (pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0] ==
  1050. pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_minimum + 1) {
  1051. pidff_autocenter(pidff, 0xffff);
  1052. set_bit(FF_AUTOCENTER, dev->ffbit);
  1053. } else {
  1054. hid_notice(pidff->hid,
  1055. "device has unknown autocenter control method\n");
  1056. }
  1057. pidff_erase_pid(pidff,
  1058. pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0]);
  1059. return 0;
  1060. }
  1061. /*
  1062. * Check if the device is PID and initialize it
  1063. */
  1064. int hid_pidff_init(struct hid_device *hid)
  1065. {
  1066. struct pidff_device *pidff;
  1067. struct hid_input *hidinput = list_entry(hid->inputs.next,
  1068. struct hid_input, list);
  1069. struct input_dev *dev = hidinput->input;
  1070. struct ff_device *ff;
  1071. int max_effects;
  1072. int error;
  1073. hid_dbg(hid, "starting pid init\n");
  1074. if (list_empty(&hid->report_enum[HID_OUTPUT_REPORT].report_list)) {
  1075. hid_dbg(hid, "not a PID device, no output report\n");
  1076. return -ENODEV;
  1077. }
  1078. pidff = kzalloc(sizeof(*pidff), GFP_KERNEL);
  1079. if (!pidff)
  1080. return -ENOMEM;
  1081. pidff->hid = hid;
  1082. hid_device_io_start(hid);
  1083. pidff_find_reports(hid, HID_OUTPUT_REPORT, pidff);
  1084. pidff_find_reports(hid, HID_FEATURE_REPORT, pidff);
  1085. if (!pidff_reports_ok(pidff)) {
  1086. hid_dbg(hid, "reports not ok, aborting\n");
  1087. error = -ENODEV;
  1088. goto fail;
  1089. }
  1090. error = pidff_init_fields(pidff, dev);
  1091. if (error)
  1092. goto fail;
  1093. pidff_reset(pidff);
  1094. if (test_bit(FF_GAIN, dev->ffbit)) {
  1095. pidff_set(&pidff->device_gain[PID_DEVICE_GAIN_FIELD], 0xffff);
  1096. hid_hw_request(hid, pidff->reports[PID_DEVICE_GAIN],
  1097. HID_REQ_SET_REPORT);
  1098. }
  1099. error = pidff_check_autocenter(pidff, dev);
  1100. if (error)
  1101. goto fail;
  1102. max_effects =
  1103. pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_maximum -
  1104. pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_minimum +
  1105. 1;
  1106. hid_dbg(hid, "max effects is %d\n", max_effects);
  1107. if (max_effects > PID_EFFECTS_MAX)
  1108. max_effects = PID_EFFECTS_MAX;
  1109. if (pidff->pool[PID_SIMULTANEOUS_MAX].value)
  1110. hid_dbg(hid, "max simultaneous effects is %d\n",
  1111. pidff->pool[PID_SIMULTANEOUS_MAX].value[0]);
  1112. if (pidff->pool[PID_RAM_POOL_SIZE].value)
  1113. hid_dbg(hid, "device memory size is %d bytes\n",
  1114. pidff->pool[PID_RAM_POOL_SIZE].value[0]);
  1115. if (pidff->pool[PID_DEVICE_MANAGED_POOL].value &&
  1116. pidff->pool[PID_DEVICE_MANAGED_POOL].value[0] == 0) {
  1117. hid_notice(hid,
  1118. "device does not support device managed pool\n");
  1119. goto fail;
  1120. }
  1121. error = input_ff_create(dev, max_effects);
  1122. if (error)
  1123. goto fail;
  1124. ff = dev->ff;
  1125. ff->private = pidff;
  1126. ff->upload = pidff_upload_effect;
  1127. ff->erase = pidff_erase_effect;
  1128. ff->set_gain = pidff_set_gain;
  1129. ff->set_autocenter = pidff_set_autocenter;
  1130. ff->playback = pidff_playback;
  1131. hid_info(dev, "Force feedback for USB HID PID devices by Anssi Hannula <anssi.hannula@gmail.com>\n");
  1132. hid_device_io_stop(hid);
  1133. return 0;
  1134. fail:
  1135. hid_device_io_stop(hid);
  1136. kfree(pidff);
  1137. return error;
  1138. }