hid-core.c 59 KB

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  1. /*
  2. * HID support for Linux
  3. *
  4. * Copyright (c) 1999 Andreas Gal
  5. * Copyright (c) 2000-2005 Vojtech Pavlik <vojtech@suse.cz>
  6. * Copyright (c) 2005 Michael Haboustak <mike-@cinci.rr.com> for Concept2, Inc
  7. * Copyright (c) 2006-2007 Jiri Kosina
  8. */
  9. /*
  10. * This program is free software; you can redistribute it and/or modify it
  11. * under the terms of the GNU General Public License as published by the Free
  12. * Software Foundation; either version 2 of the License, or (at your option)
  13. * any later version.
  14. */
  15. #include <linux/module.h>
  16. #include <linux/slab.h>
  17. #include <linux/init.h>
  18. #include <linux/kernel.h>
  19. #include <linux/list.h>
  20. #include <linux/mm.h>
  21. #include <linux/spinlock.h>
  22. #include <asm/unaligned.h>
  23. #include <asm/byteorder.h>
  24. #include <linux/input.h>
  25. #include <linux/wait.h>
  26. #include <linux/vmalloc.h>
  27. #include <linux/sched.h>
  28. #include <linux/hid.h>
  29. #include <linux/hiddev.h>
  30. #include <linux/hid-debug.h>
  31. #include <linux/hidraw.h>
  32. #include "hid-ids.h"
  33. /*
  34. * Version Information
  35. */
  36. #define DRIVER_DESC "HID core driver"
  37. #define DRIVER_LICENSE "GPL"
  38. int hid_debug = 0;
  39. module_param_named(debug, hid_debug, int, 0600);
  40. MODULE_PARM_DESC(debug, "toggle HID debugging messages");
  41. EXPORT_SYMBOL_GPL(hid_debug);
  42. /*
  43. * Register a new report for a device.
  44. */
  45. static struct hid_report *hid_register_report(struct hid_device *device, unsigned type, unsigned id)
  46. {
  47. struct hid_report_enum *report_enum = device->report_enum + type;
  48. struct hid_report *report;
  49. if (report_enum->report_id_hash[id])
  50. return report_enum->report_id_hash[id];
  51. if (!(report = kzalloc(sizeof(struct hid_report), GFP_KERNEL)))
  52. return NULL;
  53. if (id != 0)
  54. report_enum->numbered = 1;
  55. report->id = id;
  56. report->type = type;
  57. report->size = 0;
  58. report->device = device;
  59. report_enum->report_id_hash[id] = report;
  60. list_add_tail(&report->list, &report_enum->report_list);
  61. return report;
  62. }
  63. /*
  64. * Register a new field for this report.
  65. */
  66. static struct hid_field *hid_register_field(struct hid_report *report, unsigned usages, unsigned values)
  67. {
  68. struct hid_field *field;
  69. if (report->maxfield == HID_MAX_FIELDS) {
  70. dbg_hid("too many fields in report\n");
  71. return NULL;
  72. }
  73. if (!(field = kzalloc(sizeof(struct hid_field) + usages * sizeof(struct hid_usage)
  74. + values * sizeof(unsigned), GFP_KERNEL))) return NULL;
  75. field->index = report->maxfield++;
  76. report->field[field->index] = field;
  77. field->usage = (struct hid_usage *)(field + 1);
  78. field->value = (s32 *)(field->usage + usages);
  79. field->report = report;
  80. return field;
  81. }
  82. /*
  83. * Open a collection. The type/usage is pushed on the stack.
  84. */
  85. static int open_collection(struct hid_parser *parser, unsigned type)
  86. {
  87. struct hid_collection *collection;
  88. unsigned usage;
  89. usage = parser->local.usage[0];
  90. if (parser->collection_stack_ptr == HID_COLLECTION_STACK_SIZE) {
  91. dbg_hid("collection stack overflow\n");
  92. return -1;
  93. }
  94. if (parser->device->maxcollection == parser->device->collection_size) {
  95. collection = kmalloc(sizeof(struct hid_collection) *
  96. parser->device->collection_size * 2, GFP_KERNEL);
  97. if (collection == NULL) {
  98. dbg_hid("failed to reallocate collection array\n");
  99. return -1;
  100. }
  101. memcpy(collection, parser->device->collection,
  102. sizeof(struct hid_collection) *
  103. parser->device->collection_size);
  104. memset(collection + parser->device->collection_size, 0,
  105. sizeof(struct hid_collection) *
  106. parser->device->collection_size);
  107. kfree(parser->device->collection);
  108. parser->device->collection = collection;
  109. parser->device->collection_size *= 2;
  110. }
  111. parser->collection_stack[parser->collection_stack_ptr++] =
  112. parser->device->maxcollection;
  113. collection = parser->device->collection +
  114. parser->device->maxcollection++;
  115. collection->type = type;
  116. collection->usage = usage;
  117. collection->level = parser->collection_stack_ptr - 1;
  118. if (type == HID_COLLECTION_APPLICATION)
  119. parser->device->maxapplication++;
  120. return 0;
  121. }
  122. /*
  123. * Close a collection.
  124. */
  125. static int close_collection(struct hid_parser *parser)
  126. {
  127. if (!parser->collection_stack_ptr) {
  128. dbg_hid("collection stack underflow\n");
  129. return -1;
  130. }
  131. parser->collection_stack_ptr--;
  132. return 0;
  133. }
  134. /*
  135. * Climb up the stack, search for the specified collection type
  136. * and return the usage.
  137. */
  138. static unsigned hid_lookup_collection(struct hid_parser *parser, unsigned type)
  139. {
  140. int n;
  141. for (n = parser->collection_stack_ptr - 1; n >= 0; n--)
  142. if (parser->device->collection[parser->collection_stack[n]].type == type)
  143. return parser->device->collection[parser->collection_stack[n]].usage;
  144. return 0; /* we know nothing about this usage type */
  145. }
  146. /*
  147. * Add a usage to the temporary parser table.
  148. */
  149. static int hid_add_usage(struct hid_parser *parser, unsigned usage)
  150. {
  151. if (parser->local.usage_index >= HID_MAX_USAGES) {
  152. dbg_hid("usage index exceeded\n");
  153. return -1;
  154. }
  155. parser->local.usage[parser->local.usage_index] = usage;
  156. parser->local.collection_index[parser->local.usage_index] =
  157. parser->collection_stack_ptr ?
  158. parser->collection_stack[parser->collection_stack_ptr - 1] : 0;
  159. parser->local.usage_index++;
  160. return 0;
  161. }
  162. /*
  163. * Register a new field for this report.
  164. */
  165. static int hid_add_field(struct hid_parser *parser, unsigned report_type, unsigned flags)
  166. {
  167. struct hid_report *report;
  168. struct hid_field *field;
  169. int usages;
  170. unsigned offset;
  171. int i;
  172. if (!(report = hid_register_report(parser->device, report_type, parser->global.report_id))) {
  173. dbg_hid("hid_register_report failed\n");
  174. return -1;
  175. }
  176. if (parser->global.logical_maximum < parser->global.logical_minimum) {
  177. dbg_hid("logical range invalid %d %d\n", parser->global.logical_minimum, parser->global.logical_maximum);
  178. return -1;
  179. }
  180. offset = report->size;
  181. report->size += parser->global.report_size * parser->global.report_count;
  182. if (!parser->local.usage_index) /* Ignore padding fields */
  183. return 0;
  184. usages = max_t(int, parser->local.usage_index, parser->global.report_count);
  185. if ((field = hid_register_field(report, usages, parser->global.report_count)) == NULL)
  186. return 0;
  187. field->physical = hid_lookup_collection(parser, HID_COLLECTION_PHYSICAL);
  188. field->logical = hid_lookup_collection(parser, HID_COLLECTION_LOGICAL);
  189. field->application = hid_lookup_collection(parser, HID_COLLECTION_APPLICATION);
  190. for (i = 0; i < usages; i++) {
  191. int j = i;
  192. /* Duplicate the last usage we parsed if we have excess values */
  193. if (i >= parser->local.usage_index)
  194. j = parser->local.usage_index - 1;
  195. field->usage[i].hid = parser->local.usage[j];
  196. field->usage[i].collection_index =
  197. parser->local.collection_index[j];
  198. }
  199. field->maxusage = usages;
  200. field->flags = flags;
  201. field->report_offset = offset;
  202. field->report_type = report_type;
  203. field->report_size = parser->global.report_size;
  204. field->report_count = parser->global.report_count;
  205. field->logical_minimum = parser->global.logical_minimum;
  206. field->logical_maximum = parser->global.logical_maximum;
  207. field->physical_minimum = parser->global.physical_minimum;
  208. field->physical_maximum = parser->global.physical_maximum;
  209. field->unit_exponent = parser->global.unit_exponent;
  210. field->unit = parser->global.unit;
  211. return 0;
  212. }
  213. /*
  214. * Read data value from item.
  215. */
  216. static u32 item_udata(struct hid_item *item)
  217. {
  218. switch (item->size) {
  219. case 1: return item->data.u8;
  220. case 2: return item->data.u16;
  221. case 4: return item->data.u32;
  222. }
  223. return 0;
  224. }
  225. static s32 item_sdata(struct hid_item *item)
  226. {
  227. switch (item->size) {
  228. case 1: return item->data.s8;
  229. case 2: return item->data.s16;
  230. case 4: return item->data.s32;
  231. }
  232. return 0;
  233. }
  234. /*
  235. * Process a global item.
  236. */
  237. static int hid_parser_global(struct hid_parser *parser, struct hid_item *item)
  238. {
  239. switch (item->tag) {
  240. case HID_GLOBAL_ITEM_TAG_PUSH:
  241. if (parser->global_stack_ptr == HID_GLOBAL_STACK_SIZE) {
  242. dbg_hid("global enviroment stack overflow\n");
  243. return -1;
  244. }
  245. memcpy(parser->global_stack + parser->global_stack_ptr++,
  246. &parser->global, sizeof(struct hid_global));
  247. return 0;
  248. case HID_GLOBAL_ITEM_TAG_POP:
  249. if (!parser->global_stack_ptr) {
  250. dbg_hid("global enviroment stack underflow\n");
  251. return -1;
  252. }
  253. memcpy(&parser->global, parser->global_stack +
  254. --parser->global_stack_ptr, sizeof(struct hid_global));
  255. return 0;
  256. case HID_GLOBAL_ITEM_TAG_USAGE_PAGE:
  257. parser->global.usage_page = item_udata(item);
  258. return 0;
  259. case HID_GLOBAL_ITEM_TAG_LOGICAL_MINIMUM:
  260. parser->global.logical_minimum = item_sdata(item);
  261. return 0;
  262. case HID_GLOBAL_ITEM_TAG_LOGICAL_MAXIMUM:
  263. if (parser->global.logical_minimum < 0)
  264. parser->global.logical_maximum = item_sdata(item);
  265. else
  266. parser->global.logical_maximum = item_udata(item);
  267. return 0;
  268. case HID_GLOBAL_ITEM_TAG_PHYSICAL_MINIMUM:
  269. parser->global.physical_minimum = item_sdata(item);
  270. return 0;
  271. case HID_GLOBAL_ITEM_TAG_PHYSICAL_MAXIMUM:
  272. if (parser->global.physical_minimum < 0)
  273. parser->global.physical_maximum = item_sdata(item);
  274. else
  275. parser->global.physical_maximum = item_udata(item);
  276. return 0;
  277. case HID_GLOBAL_ITEM_TAG_UNIT_EXPONENT:
  278. parser->global.unit_exponent = item_sdata(item);
  279. return 0;
  280. case HID_GLOBAL_ITEM_TAG_UNIT:
  281. parser->global.unit = item_udata(item);
  282. return 0;
  283. case HID_GLOBAL_ITEM_TAG_REPORT_SIZE:
  284. parser->global.report_size = item_udata(item);
  285. if (parser->global.report_size > 32) {
  286. dbg_hid("invalid report_size %d\n",
  287. parser->global.report_size);
  288. return -1;
  289. }
  290. return 0;
  291. case HID_GLOBAL_ITEM_TAG_REPORT_COUNT:
  292. parser->global.report_count = item_udata(item);
  293. if (parser->global.report_count > HID_MAX_USAGES) {
  294. dbg_hid("invalid report_count %d\n",
  295. parser->global.report_count);
  296. return -1;
  297. }
  298. return 0;
  299. case HID_GLOBAL_ITEM_TAG_REPORT_ID:
  300. parser->global.report_id = item_udata(item);
  301. if (parser->global.report_id == 0) {
  302. dbg_hid("report_id 0 is invalid\n");
  303. return -1;
  304. }
  305. return 0;
  306. default:
  307. dbg_hid("unknown global tag 0x%x\n", item->tag);
  308. return -1;
  309. }
  310. }
  311. /*
  312. * Process a local item.
  313. */
  314. static int hid_parser_local(struct hid_parser *parser, struct hid_item *item)
  315. {
  316. __u32 data;
  317. unsigned n;
  318. /* Local delimiter could have value 0, which allows size to be 0 */
  319. if (item->size == 0 && item->tag != HID_LOCAL_ITEM_TAG_DELIMITER) {
  320. dbg_hid("item data expected for local item\n");
  321. return -1;
  322. }
  323. data = item_udata(item);
  324. switch (item->tag) {
  325. case HID_LOCAL_ITEM_TAG_DELIMITER:
  326. if (data) {
  327. /*
  328. * We treat items before the first delimiter
  329. * as global to all usage sets (branch 0).
  330. * In the moment we process only these global
  331. * items and the first delimiter set.
  332. */
  333. if (parser->local.delimiter_depth != 0) {
  334. dbg_hid("nested delimiters\n");
  335. return -1;
  336. }
  337. parser->local.delimiter_depth++;
  338. parser->local.delimiter_branch++;
  339. } else {
  340. if (parser->local.delimiter_depth < 1) {
  341. dbg_hid("bogus close delimiter\n");
  342. return -1;
  343. }
  344. parser->local.delimiter_depth--;
  345. }
  346. return 1;
  347. case HID_LOCAL_ITEM_TAG_USAGE:
  348. if (parser->local.delimiter_branch > 1) {
  349. dbg_hid("alternative usage ignored\n");
  350. return 0;
  351. }
  352. if (item->size <= 2)
  353. data = (parser->global.usage_page << 16) + data;
  354. return hid_add_usage(parser, data);
  355. case HID_LOCAL_ITEM_TAG_USAGE_MINIMUM:
  356. if (parser->local.delimiter_branch > 1) {
  357. dbg_hid("alternative usage ignored\n");
  358. return 0;
  359. }
  360. if (item->size <= 2)
  361. data = (parser->global.usage_page << 16) + data;
  362. parser->local.usage_minimum = data;
  363. return 0;
  364. case HID_LOCAL_ITEM_TAG_USAGE_MAXIMUM:
  365. if (parser->local.delimiter_branch > 1) {
  366. dbg_hid("alternative usage ignored\n");
  367. return 0;
  368. }
  369. if (item->size <= 2)
  370. data = (parser->global.usage_page << 16) + data;
  371. for (n = parser->local.usage_minimum; n <= data; n++)
  372. if (hid_add_usage(parser, n)) {
  373. dbg_hid("hid_add_usage failed\n");
  374. return -1;
  375. }
  376. return 0;
  377. default:
  378. dbg_hid("unknown local item tag 0x%x\n", item->tag);
  379. return 0;
  380. }
  381. return 0;
  382. }
  383. /*
  384. * Process a main item.
  385. */
  386. static int hid_parser_main(struct hid_parser *parser, struct hid_item *item)
  387. {
  388. __u32 data;
  389. int ret;
  390. data = item_udata(item);
  391. switch (item->tag) {
  392. case HID_MAIN_ITEM_TAG_BEGIN_COLLECTION:
  393. ret = open_collection(parser, data & 0xff);
  394. break;
  395. case HID_MAIN_ITEM_TAG_END_COLLECTION:
  396. ret = close_collection(parser);
  397. break;
  398. case HID_MAIN_ITEM_TAG_INPUT:
  399. ret = hid_add_field(parser, HID_INPUT_REPORT, data);
  400. break;
  401. case HID_MAIN_ITEM_TAG_OUTPUT:
  402. ret = hid_add_field(parser, HID_OUTPUT_REPORT, data);
  403. break;
  404. case HID_MAIN_ITEM_TAG_FEATURE:
  405. ret = hid_add_field(parser, HID_FEATURE_REPORT, data);
  406. break;
  407. default:
  408. dbg_hid("unknown main item tag 0x%x\n", item->tag);
  409. ret = 0;
  410. }
  411. memset(&parser->local, 0, sizeof(parser->local)); /* Reset the local parser environment */
  412. return ret;
  413. }
  414. /*
  415. * Process a reserved item.
  416. */
  417. static int hid_parser_reserved(struct hid_parser *parser, struct hid_item *item)
  418. {
  419. dbg_hid("reserved item type, tag 0x%x\n", item->tag);
  420. return 0;
  421. }
  422. /*
  423. * Free a report and all registered fields. The field->usage and
  424. * field->value table's are allocated behind the field, so we need
  425. * only to free(field) itself.
  426. */
  427. static void hid_free_report(struct hid_report *report)
  428. {
  429. unsigned n;
  430. for (n = 0; n < report->maxfield; n++)
  431. kfree(report->field[n]);
  432. kfree(report);
  433. }
  434. /*
  435. * Free a device structure, all reports, and all fields.
  436. */
  437. static void hid_device_release(struct device *dev)
  438. {
  439. struct hid_device *device = container_of(dev, struct hid_device, dev);
  440. unsigned i, j;
  441. for (i = 0; i < HID_REPORT_TYPES; i++) {
  442. struct hid_report_enum *report_enum = device->report_enum + i;
  443. for (j = 0; j < 256; j++) {
  444. struct hid_report *report = report_enum->report_id_hash[j];
  445. if (report)
  446. hid_free_report(report);
  447. }
  448. }
  449. kfree(device->rdesc);
  450. kfree(device->collection);
  451. kfree(device);
  452. }
  453. /*
  454. * Fetch a report description item from the data stream. We support long
  455. * items, though they are not used yet.
  456. */
  457. static u8 *fetch_item(__u8 *start, __u8 *end, struct hid_item *item)
  458. {
  459. u8 b;
  460. if ((end - start) <= 0)
  461. return NULL;
  462. b = *start++;
  463. item->type = (b >> 2) & 3;
  464. item->tag = (b >> 4) & 15;
  465. if (item->tag == HID_ITEM_TAG_LONG) {
  466. item->format = HID_ITEM_FORMAT_LONG;
  467. if ((end - start) < 2)
  468. return NULL;
  469. item->size = *start++;
  470. item->tag = *start++;
  471. if ((end - start) < item->size)
  472. return NULL;
  473. item->data.longdata = start;
  474. start += item->size;
  475. return start;
  476. }
  477. item->format = HID_ITEM_FORMAT_SHORT;
  478. item->size = b & 3;
  479. switch (item->size) {
  480. case 0:
  481. return start;
  482. case 1:
  483. if ((end - start) < 1)
  484. return NULL;
  485. item->data.u8 = *start++;
  486. return start;
  487. case 2:
  488. if ((end - start) < 2)
  489. return NULL;
  490. item->data.u16 = get_unaligned_le16(start);
  491. start = (__u8 *)((__le16 *)start + 1);
  492. return start;
  493. case 3:
  494. item->size++;
  495. if ((end - start) < 4)
  496. return NULL;
  497. item->data.u32 = get_unaligned_le32(start);
  498. start = (__u8 *)((__le32 *)start + 1);
  499. return start;
  500. }
  501. return NULL;
  502. }
  503. /**
  504. * hid_parse_report - parse device report
  505. *
  506. * @device: hid device
  507. * @start: report start
  508. * @size: report size
  509. *
  510. * Parse a report description into a hid_device structure. Reports are
  511. * enumerated, fields are attached to these reports.
  512. * 0 returned on success, otherwise nonzero error value.
  513. */
  514. int hid_parse_report(struct hid_device *device, __u8 *start,
  515. unsigned size)
  516. {
  517. struct hid_parser *parser;
  518. struct hid_item item;
  519. __u8 *end;
  520. int ret;
  521. static int (*dispatch_type[])(struct hid_parser *parser,
  522. struct hid_item *item) = {
  523. hid_parser_main,
  524. hid_parser_global,
  525. hid_parser_local,
  526. hid_parser_reserved
  527. };
  528. if (device->driver->report_fixup)
  529. device->driver->report_fixup(device, start, size);
  530. device->rdesc = kmalloc(size, GFP_KERNEL);
  531. if (device->rdesc == NULL)
  532. return -ENOMEM;
  533. memcpy(device->rdesc, start, size);
  534. device->rsize = size;
  535. parser = vmalloc(sizeof(struct hid_parser));
  536. if (!parser) {
  537. ret = -ENOMEM;
  538. goto err;
  539. }
  540. memset(parser, 0, sizeof(struct hid_parser));
  541. parser->device = device;
  542. end = start + size;
  543. ret = -EINVAL;
  544. while ((start = fetch_item(start, end, &item)) != NULL) {
  545. if (item.format != HID_ITEM_FORMAT_SHORT) {
  546. dbg_hid("unexpected long global item\n");
  547. goto err;
  548. }
  549. if (dispatch_type[item.type](parser, &item)) {
  550. dbg_hid("item %u %u %u %u parsing failed\n",
  551. item.format, (unsigned)item.size, (unsigned)item.type, (unsigned)item.tag);
  552. goto err;
  553. }
  554. if (start == end) {
  555. if (parser->collection_stack_ptr) {
  556. dbg_hid("unbalanced collection at end of report description\n");
  557. goto err;
  558. }
  559. if (parser->local.delimiter_depth) {
  560. dbg_hid("unbalanced delimiter at end of report description\n");
  561. goto err;
  562. }
  563. vfree(parser);
  564. return 0;
  565. }
  566. }
  567. dbg_hid("item fetching failed at offset %d\n", (int)(end - start));
  568. err:
  569. vfree(parser);
  570. return ret;
  571. }
  572. EXPORT_SYMBOL_GPL(hid_parse_report);
  573. /*
  574. * Convert a signed n-bit integer to signed 32-bit integer. Common
  575. * cases are done through the compiler, the screwed things has to be
  576. * done by hand.
  577. */
  578. static s32 snto32(__u32 value, unsigned n)
  579. {
  580. switch (n) {
  581. case 8: return ((__s8)value);
  582. case 16: return ((__s16)value);
  583. case 32: return ((__s32)value);
  584. }
  585. return value & (1 << (n - 1)) ? value | (-1 << n) : value;
  586. }
  587. /*
  588. * Convert a signed 32-bit integer to a signed n-bit integer.
  589. */
  590. static u32 s32ton(__s32 value, unsigned n)
  591. {
  592. s32 a = value >> (n - 1);
  593. if (a && a != -1)
  594. return value < 0 ? 1 << (n - 1) : (1 << (n - 1)) - 1;
  595. return value & ((1 << n) - 1);
  596. }
  597. /*
  598. * Extract/implement a data field from/to a little endian report (bit array).
  599. *
  600. * Code sort-of follows HID spec:
  601. * http://www.usb.org/developers/devclass_docs/HID1_11.pdf
  602. *
  603. * While the USB HID spec allows unlimited length bit fields in "report
  604. * descriptors", most devices never use more than 16 bits.
  605. * One model of UPS is claimed to report "LINEV" as a 32-bit field.
  606. * Search linux-kernel and linux-usb-devel archives for "hid-core extract".
  607. */
  608. static __inline__ __u32 extract(__u8 *report, unsigned offset, unsigned n)
  609. {
  610. u64 x;
  611. if (n > 32)
  612. printk(KERN_WARNING "HID: extract() called with n (%d) > 32! (%s)\n",
  613. n, current->comm);
  614. report += offset >> 3; /* adjust byte index */
  615. offset &= 7; /* now only need bit offset into one byte */
  616. x = get_unaligned_le64(report);
  617. x = (x >> offset) & ((1ULL << n) - 1); /* extract bit field */
  618. return (u32) x;
  619. }
  620. /*
  621. * "implement" : set bits in a little endian bit stream.
  622. * Same concepts as "extract" (see comments above).
  623. * The data mangled in the bit stream remains in little endian
  624. * order the whole time. It make more sense to talk about
  625. * endianness of register values by considering a register
  626. * a "cached" copy of the little endiad bit stream.
  627. */
  628. static __inline__ void implement(__u8 *report, unsigned offset, unsigned n, __u32 value)
  629. {
  630. u64 x;
  631. u64 m = (1ULL << n) - 1;
  632. if (n > 32)
  633. printk(KERN_WARNING "HID: implement() called with n (%d) > 32! (%s)\n",
  634. n, current->comm);
  635. if (value > m)
  636. printk(KERN_WARNING "HID: implement() called with too large value %d! (%s)\n",
  637. value, current->comm);
  638. WARN_ON(value > m);
  639. value &= m;
  640. report += offset >> 3;
  641. offset &= 7;
  642. x = get_unaligned_le64(report);
  643. x &= ~(m << offset);
  644. x |= ((u64)value) << offset;
  645. put_unaligned_le64(x, report);
  646. }
  647. /*
  648. * Search an array for a value.
  649. */
  650. static __inline__ int search(__s32 *array, __s32 value, unsigned n)
  651. {
  652. while (n--) {
  653. if (*array++ == value)
  654. return 0;
  655. }
  656. return -1;
  657. }
  658. /**
  659. * hid_match_report - check if driver's raw_event should be called
  660. *
  661. * @hid: hid device
  662. * @report_type: type to match against
  663. *
  664. * compare hid->driver->report_table->report_type to report->type
  665. */
  666. static int hid_match_report(struct hid_device *hid, struct hid_report *report)
  667. {
  668. const struct hid_report_id *id = hid->driver->report_table;
  669. if (!id) /* NULL means all */
  670. return 1;
  671. for (; id->report_type != HID_TERMINATOR; id++)
  672. if (id->report_type == HID_ANY_ID ||
  673. id->report_type == report->type)
  674. return 1;
  675. return 0;
  676. }
  677. /**
  678. * hid_match_usage - check if driver's event should be called
  679. *
  680. * @hid: hid device
  681. * @usage: usage to match against
  682. *
  683. * compare hid->driver->usage_table->usage_{type,code} to
  684. * usage->usage_{type,code}
  685. */
  686. static int hid_match_usage(struct hid_device *hid, struct hid_usage *usage)
  687. {
  688. const struct hid_usage_id *id = hid->driver->usage_table;
  689. if (!id) /* NULL means all */
  690. return 1;
  691. for (; id->usage_type != HID_ANY_ID - 1; id++)
  692. if ((id->usage_hid == HID_ANY_ID ||
  693. id->usage_hid == usage->hid) &&
  694. (id->usage_type == HID_ANY_ID ||
  695. id->usage_type == usage->type) &&
  696. (id->usage_code == HID_ANY_ID ||
  697. id->usage_code == usage->code))
  698. return 1;
  699. return 0;
  700. }
  701. static void hid_process_event(struct hid_device *hid, struct hid_field *field,
  702. struct hid_usage *usage, __s32 value, int interrupt)
  703. {
  704. struct hid_driver *hdrv = hid->driver;
  705. int ret;
  706. hid_dump_input(hid, usage, value);
  707. if (hdrv && hdrv->event && hid_match_usage(hid, usage)) {
  708. ret = hdrv->event(hid, field, usage, value);
  709. if (ret != 0) {
  710. if (ret < 0)
  711. dbg_hid("%s's event failed with %d\n",
  712. hdrv->name, ret);
  713. return;
  714. }
  715. }
  716. if (hid->claimed & HID_CLAIMED_INPUT)
  717. hidinput_hid_event(hid, field, usage, value);
  718. if (hid->claimed & HID_CLAIMED_HIDDEV && interrupt && hid->hiddev_hid_event)
  719. hid->hiddev_hid_event(hid, field, usage, value);
  720. }
  721. /*
  722. * Analyse a received field, and fetch the data from it. The field
  723. * content is stored for next report processing (we do differential
  724. * reporting to the layer).
  725. */
  726. static void hid_input_field(struct hid_device *hid, struct hid_field *field,
  727. __u8 *data, int interrupt)
  728. {
  729. unsigned n;
  730. unsigned count = field->report_count;
  731. unsigned offset = field->report_offset;
  732. unsigned size = field->report_size;
  733. __s32 min = field->logical_minimum;
  734. __s32 max = field->logical_maximum;
  735. __s32 *value;
  736. if (!(value = kmalloc(sizeof(__s32) * count, GFP_ATOMIC)))
  737. return;
  738. for (n = 0; n < count; n++) {
  739. value[n] = min < 0 ? snto32(extract(data, offset + n * size, size), size) :
  740. extract(data, offset + n * size, size);
  741. if (!(field->flags & HID_MAIN_ITEM_VARIABLE) /* Ignore report if ErrorRollOver */
  742. && value[n] >= min && value[n] <= max
  743. && field->usage[value[n] - min].hid == HID_UP_KEYBOARD + 1)
  744. goto exit;
  745. }
  746. for (n = 0; n < count; n++) {
  747. if (HID_MAIN_ITEM_VARIABLE & field->flags) {
  748. hid_process_event(hid, field, &field->usage[n], value[n], interrupt);
  749. continue;
  750. }
  751. if (field->value[n] >= min && field->value[n] <= max
  752. && field->usage[field->value[n] - min].hid
  753. && search(value, field->value[n], count))
  754. hid_process_event(hid, field, &field->usage[field->value[n] - min], 0, interrupt);
  755. if (value[n] >= min && value[n] <= max
  756. && field->usage[value[n] - min].hid
  757. && search(field->value, value[n], count))
  758. hid_process_event(hid, field, &field->usage[value[n] - min], 1, interrupt);
  759. }
  760. memcpy(field->value, value, count * sizeof(__s32));
  761. exit:
  762. kfree(value);
  763. }
  764. /*
  765. * Output the field into the report.
  766. */
  767. static void hid_output_field(struct hid_field *field, __u8 *data)
  768. {
  769. unsigned count = field->report_count;
  770. unsigned offset = field->report_offset;
  771. unsigned size = field->report_size;
  772. unsigned bitsused = offset + count * size;
  773. unsigned n;
  774. /* make sure the unused bits in the last byte are zeros */
  775. if (count > 0 && size > 0 && (bitsused % 8) != 0)
  776. data[(bitsused-1)/8] &= (1 << (bitsused % 8)) - 1;
  777. for (n = 0; n < count; n++) {
  778. if (field->logical_minimum < 0) /* signed values */
  779. implement(data, offset + n * size, size, s32ton(field->value[n], size));
  780. else /* unsigned values */
  781. implement(data, offset + n * size, size, field->value[n]);
  782. }
  783. }
  784. /*
  785. * Create a report.
  786. */
  787. void hid_output_report(struct hid_report *report, __u8 *data)
  788. {
  789. unsigned n;
  790. if (report->id > 0)
  791. *data++ = report->id;
  792. for (n = 0; n < report->maxfield; n++)
  793. hid_output_field(report->field[n], data);
  794. }
  795. EXPORT_SYMBOL_GPL(hid_output_report);
  796. /*
  797. * Set a field value. The report this field belongs to has to be
  798. * created and transferred to the device, to set this value in the
  799. * device.
  800. */
  801. int hid_set_field(struct hid_field *field, unsigned offset, __s32 value)
  802. {
  803. unsigned size = field->report_size;
  804. hid_dump_input(field->report->device, field->usage + offset, value);
  805. if (offset >= field->report_count) {
  806. dbg_hid("offset (%d) exceeds report_count (%d)\n", offset, field->report_count);
  807. return -1;
  808. }
  809. if (field->logical_minimum < 0) {
  810. if (value != snto32(s32ton(value, size), size)) {
  811. dbg_hid("value %d is out of range\n", value);
  812. return -1;
  813. }
  814. }
  815. field->value[offset] = value;
  816. return 0;
  817. }
  818. EXPORT_SYMBOL_GPL(hid_set_field);
  819. static struct hid_report *hid_get_report(struct hid_report_enum *report_enum,
  820. const u8 *data)
  821. {
  822. struct hid_report *report;
  823. unsigned int n = 0; /* Normally report number is 0 */
  824. /* Device uses numbered reports, data[0] is report number */
  825. if (report_enum->numbered)
  826. n = *data;
  827. report = report_enum->report_id_hash[n];
  828. if (report == NULL)
  829. dbg_hid("undefined report_id %u received\n", n);
  830. return report;
  831. }
  832. void hid_report_raw_event(struct hid_device *hid, int type, u8 *data, int size,
  833. int interrupt)
  834. {
  835. struct hid_report_enum *report_enum = hid->report_enum + type;
  836. struct hid_report *report;
  837. unsigned int a;
  838. int rsize, csize = size;
  839. u8 *cdata = data;
  840. report = hid_get_report(report_enum, data);
  841. if (!report)
  842. return;
  843. if (report_enum->numbered) {
  844. cdata++;
  845. csize--;
  846. }
  847. rsize = ((report->size - 1) >> 3) + 1;
  848. if (csize < rsize) {
  849. dbg_hid("report %d is too short, (%d < %d)\n", report->id,
  850. csize, rsize);
  851. memset(cdata + csize, 0, rsize - csize);
  852. }
  853. if ((hid->claimed & HID_CLAIMED_HIDDEV) && hid->hiddev_report_event)
  854. hid->hiddev_report_event(hid, report);
  855. if (hid->claimed & HID_CLAIMED_HIDRAW) {
  856. /* numbered reports need to be passed with the report num */
  857. if (report_enum->numbered)
  858. hidraw_report_event(hid, data - 1, size + 1);
  859. else
  860. hidraw_report_event(hid, data, size);
  861. }
  862. for (a = 0; a < report->maxfield; a++)
  863. hid_input_field(hid, report->field[a], cdata, interrupt);
  864. if (hid->claimed & HID_CLAIMED_INPUT)
  865. hidinput_report_event(hid, report);
  866. }
  867. EXPORT_SYMBOL_GPL(hid_report_raw_event);
  868. /**
  869. * hid_input_report - report data from lower layer (usb, bt...)
  870. *
  871. * @hid: hid device
  872. * @type: HID report type (HID_*_REPORT)
  873. * @data: report contents
  874. * @size: size of data parameter
  875. * @interrupt: distinguish between interrupt and control transfers
  876. *
  877. * This is data entry for lower layers.
  878. */
  879. int hid_input_report(struct hid_device *hid, int type, u8 *data, int size, int interrupt)
  880. {
  881. struct hid_report_enum *report_enum;
  882. struct hid_driver *hdrv;
  883. struct hid_report *report;
  884. char *buf;
  885. unsigned int i;
  886. int ret;
  887. if (!hid || !hid->driver)
  888. return -ENODEV;
  889. report_enum = hid->report_enum + type;
  890. hdrv = hid->driver;
  891. if (!size) {
  892. dbg_hid("empty report\n");
  893. return -1;
  894. }
  895. buf = kmalloc(sizeof(char) * HID_DEBUG_BUFSIZE, GFP_ATOMIC);
  896. if (!buf) {
  897. report = hid_get_report(report_enum, data);
  898. goto nomem;
  899. }
  900. snprintf(buf, HID_DEBUG_BUFSIZE - 1,
  901. "\nreport (size %u) (%snumbered)\n", size, report_enum->numbered ? "" : "un");
  902. hid_debug_event(hid, buf);
  903. report = hid_get_report(report_enum, data);
  904. if (!report) {
  905. kfree(buf);
  906. return -1;
  907. }
  908. /* dump the report */
  909. snprintf(buf, HID_DEBUG_BUFSIZE - 1,
  910. "report %d (size %u) = ", report->id, size);
  911. hid_debug_event(hid, buf);
  912. for (i = 0; i < size; i++) {
  913. snprintf(buf, HID_DEBUG_BUFSIZE - 1,
  914. " %02x", data[i]);
  915. hid_debug_event(hid, buf);
  916. }
  917. hid_debug_event(hid, "\n");
  918. kfree(buf);
  919. nomem:
  920. if (hdrv && hdrv->raw_event && hid_match_report(hid, report)) {
  921. ret = hdrv->raw_event(hid, report, data, size);
  922. if (ret != 0)
  923. return ret < 0 ? ret : 0;
  924. }
  925. hid_report_raw_event(hid, type, data, size, interrupt);
  926. return 0;
  927. }
  928. EXPORT_SYMBOL_GPL(hid_input_report);
  929. static bool hid_match_one_id(struct hid_device *hdev,
  930. const struct hid_device_id *id)
  931. {
  932. return id->bus == hdev->bus &&
  933. (id->vendor == HID_ANY_ID || id->vendor == hdev->vendor) &&
  934. (id->product == HID_ANY_ID || id->product == hdev->product);
  935. }
  936. static const struct hid_device_id *hid_match_id(struct hid_device *hdev,
  937. const struct hid_device_id *id)
  938. {
  939. for (; id->bus; id++)
  940. if (hid_match_one_id(hdev, id))
  941. return id;
  942. return NULL;
  943. }
  944. static const struct hid_device_id hid_hiddev_list[] = {
  945. { HID_USB_DEVICE(USB_VENDOR_ID_MGE, USB_DEVICE_ID_MGE_UPS) },
  946. { HID_USB_DEVICE(USB_VENDOR_ID_MGE, USB_DEVICE_ID_MGE_UPS1) },
  947. { }
  948. };
  949. static bool hid_hiddev(struct hid_device *hdev)
  950. {
  951. return !!hid_match_id(hdev, hid_hiddev_list);
  952. }
  953. int hid_connect(struct hid_device *hdev, unsigned int connect_mask)
  954. {
  955. static const char *types[] = { "Device", "Pointer", "Mouse", "Device",
  956. "Joystick", "Gamepad", "Keyboard", "Keypad",
  957. "Multi-Axis Controller"
  958. };
  959. const char *type, *bus;
  960. char buf[64];
  961. unsigned int i;
  962. int len;
  963. if (hdev->bus != BUS_USB)
  964. connect_mask &= ~HID_CONNECT_HIDDEV;
  965. if (hid_hiddev(hdev))
  966. connect_mask |= HID_CONNECT_HIDDEV_FORCE;
  967. if ((connect_mask & HID_CONNECT_HIDINPUT) && !hidinput_connect(hdev,
  968. connect_mask & HID_CONNECT_HIDINPUT_FORCE))
  969. hdev->claimed |= HID_CLAIMED_INPUT;
  970. if ((connect_mask & HID_CONNECT_HIDDEV) && hdev->hiddev_connect &&
  971. !hdev->hiddev_connect(hdev,
  972. connect_mask & HID_CONNECT_HIDDEV_FORCE))
  973. hdev->claimed |= HID_CLAIMED_HIDDEV;
  974. if ((connect_mask & HID_CONNECT_HIDRAW) && !hidraw_connect(hdev))
  975. hdev->claimed |= HID_CLAIMED_HIDRAW;
  976. if (!hdev->claimed) {
  977. dev_err(&hdev->dev, "claimed by neither input, hiddev nor "
  978. "hidraw\n");
  979. return -ENODEV;
  980. }
  981. if ((hdev->claimed & HID_CLAIMED_INPUT) &&
  982. (connect_mask & HID_CONNECT_FF) && hdev->ff_init)
  983. hdev->ff_init(hdev);
  984. len = 0;
  985. if (hdev->claimed & HID_CLAIMED_INPUT)
  986. len += sprintf(buf + len, "input");
  987. if (hdev->claimed & HID_CLAIMED_HIDDEV)
  988. len += sprintf(buf + len, "%shiddev%d", len ? "," : "",
  989. hdev->minor);
  990. if (hdev->claimed & HID_CLAIMED_HIDRAW)
  991. len += sprintf(buf + len, "%shidraw%d", len ? "," : "",
  992. ((struct hidraw *)hdev->hidraw)->minor);
  993. type = "Device";
  994. for (i = 0; i < hdev->maxcollection; i++) {
  995. struct hid_collection *col = &hdev->collection[i];
  996. if (col->type == HID_COLLECTION_APPLICATION &&
  997. (col->usage & HID_USAGE_PAGE) == HID_UP_GENDESK &&
  998. (col->usage & 0xffff) < ARRAY_SIZE(types)) {
  999. type = types[col->usage & 0xffff];
  1000. break;
  1001. }
  1002. }
  1003. switch (hdev->bus) {
  1004. case BUS_USB:
  1005. bus = "USB";
  1006. break;
  1007. case BUS_BLUETOOTH:
  1008. bus = "BLUETOOTH";
  1009. break;
  1010. default:
  1011. bus = "<UNKNOWN>";
  1012. }
  1013. dev_info(&hdev->dev, "%s: %s HID v%x.%02x %s [%s] on %s\n",
  1014. buf, bus, hdev->version >> 8, hdev->version & 0xff,
  1015. type, hdev->name, hdev->phys);
  1016. return 0;
  1017. }
  1018. EXPORT_SYMBOL_GPL(hid_connect);
  1019. void hid_disconnect(struct hid_device *hdev)
  1020. {
  1021. if (hdev->claimed & HID_CLAIMED_INPUT)
  1022. hidinput_disconnect(hdev);
  1023. if (hdev->claimed & HID_CLAIMED_HIDDEV)
  1024. hdev->hiddev_disconnect(hdev);
  1025. if (hdev->claimed & HID_CLAIMED_HIDRAW)
  1026. hidraw_disconnect(hdev);
  1027. }
  1028. EXPORT_SYMBOL_GPL(hid_disconnect);
  1029. /* a list of devices for which there is a specialized driver on HID bus */
  1030. static const struct hid_device_id hid_blacklist[] = {
  1031. { HID_USB_DEVICE(USB_VENDOR_ID_3M, USB_DEVICE_ID_3M1968) },
  1032. { HID_USB_DEVICE(USB_VENDOR_ID_A4TECH, USB_DEVICE_ID_A4TECH_WCP32PU) },
  1033. { HID_USB_DEVICE(USB_VENDOR_ID_A4TECH, USB_DEVICE_ID_A4TECH_X5_005D) },
  1034. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ATV_IRCONTROL) },
  1035. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_IRCONTROL4) },
  1036. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_MIGHTYMOUSE) },
  1037. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_FOUNTAIN_ANSI) },
  1038. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_FOUNTAIN_ISO) },
  1039. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER_ANSI) },
  1040. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER_ISO) },
  1041. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER_JIS) },
  1042. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER3_ANSI) },
  1043. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER3_ISO) },
  1044. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER3_JIS) },
  1045. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_ANSI) },
  1046. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_ISO) },
  1047. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_JIS) },
  1048. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_MINI_ANSI) },
  1049. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_MINI_ISO) },
  1050. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_MINI_JIS) },
  1051. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_ANSI) },
  1052. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_ISO) },
  1053. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_JIS) },
  1054. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_HF_ANSI) },
  1055. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_HF_ISO) },
  1056. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_HF_JIS) },
  1057. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_WIRELESS_ANSI) },
  1058. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_WIRELESS_ISO) },
  1059. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_ALU_WIRELESS_JIS) },
  1060. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING_ANSI) },
  1061. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING_ISO) },
  1062. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING_JIS) },
  1063. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING2_ANSI) },
  1064. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING2_ISO) },
  1065. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING2_JIS) },
  1066. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING3_ANSI) },
  1067. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING3_ISO) },
  1068. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING3_JIS) },
  1069. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_FOUNTAIN_TP_ONLY) },
  1070. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER1_TP_ONLY) },
  1071. { HID_USB_DEVICE(USB_VENDOR_ID_BELKIN, USB_DEVICE_ID_FLIP_KVM) },
  1072. { HID_USB_DEVICE(USB_VENDOR_ID_CHERRY, USB_DEVICE_ID_CHERRY_CYMOTION) },
  1073. { HID_USB_DEVICE(USB_VENDOR_ID_CHICONY, USB_DEVICE_ID_CHICONY_TACTICAL_PAD) },
  1074. { HID_USB_DEVICE(USB_VENDOR_ID_CYPRESS, USB_DEVICE_ID_CYPRESS_BARCODE_1) },
  1075. { HID_USB_DEVICE(USB_VENDOR_ID_CYPRESS, USB_DEVICE_ID_CYPRESS_BARCODE_2) },
  1076. { HID_USB_DEVICE(USB_VENDOR_ID_CYPRESS, USB_DEVICE_ID_CYPRESS_BARCODE_3) },
  1077. { HID_USB_DEVICE(USB_VENDOR_ID_CYPRESS, USB_DEVICE_ID_CYPRESS_MOUSE) },
  1078. { HID_USB_DEVICE(USB_VENDOR_ID_DRAGONRISE, 0x0006) },
  1079. { HID_USB_DEVICE(USB_VENDOR_ID_EZKEY, USB_DEVICE_ID_BTC_8193) },
  1080. { HID_USB_DEVICE(USB_VENDOR_ID_GAMERON, USB_DEVICE_ID_GAMERON_DUAL_PSX_ADAPTOR) },
  1081. { HID_USB_DEVICE(USB_VENDOR_ID_GAMERON, USB_DEVICE_ID_GAMERON_DUAL_PCS_ADAPTOR) },
  1082. { HID_USB_DEVICE(USB_VENDOR_ID_GREENASIA, 0x0003) },
  1083. { HID_USB_DEVICE(USB_VENDOR_ID_GREENASIA, 0x0012) },
  1084. { HID_USB_DEVICE(USB_VENDOR_ID_GYRATION, USB_DEVICE_ID_GYRATION_REMOTE) },
  1085. { HID_USB_DEVICE(USB_VENDOR_ID_GYRATION, USB_DEVICE_ID_GYRATION_REMOTE_2) },
  1086. { HID_USB_DEVICE(USB_VENDOR_ID_KENSINGTON, USB_DEVICE_ID_KS_SLIMBLADE) },
  1087. { HID_USB_DEVICE(USB_VENDOR_ID_KYE, USB_DEVICE_ID_KYE_ERGO_525V) },
  1088. { HID_USB_DEVICE(USB_VENDOR_ID_LABTEC, USB_DEVICE_ID_LABTEC_WIRELESS_KEYBOARD) },
  1089. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_MX3000_RECEIVER) },
  1090. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_S510_RECEIVER) },
  1091. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_S510_RECEIVER_2) },
  1092. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_RECEIVER) },
  1093. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_DINOVO_DESKTOP) },
  1094. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_DINOVO_EDGE) },
  1095. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_DINOVO_MINI) },
  1096. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_ELITE_KBD) },
  1097. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_CORDLESS_DESKTOP_LX500) },
  1098. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_EXTREME_3D) },
  1099. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_WHEEL) },
  1100. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_RUMBLEPAD) },
  1101. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_RUMBLEPAD2_2) },
  1102. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_WINGMAN_F3D) },
  1103. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_WINGMAN_FFG ) },
  1104. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_FORCE3D_PRO) },
  1105. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_FLIGHT_SYSTEM_G940) },
  1106. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_MOMO_WHEEL) },
  1107. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_MOMO_WHEEL2) },
  1108. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_G25_WHEEL) },
  1109. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_LOGITECH_RUMBLEPAD2) },
  1110. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_SPACETRAVELLER) },
  1111. { HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH, USB_DEVICE_ID_SPACENAVIGATOR) },
  1112. { HID_USB_DEVICE(USB_VENDOR_ID_MICROSOFT, USB_DEVICE_ID_SIDEWINDER_GV) },
  1113. { HID_USB_DEVICE(USB_VENDOR_ID_MICROSOFT, USB_DEVICE_ID_MS_NE4K) },
  1114. { HID_USB_DEVICE(USB_VENDOR_ID_MICROSOFT, USB_DEVICE_ID_MS_LK6K) },
  1115. { HID_USB_DEVICE(USB_VENDOR_ID_MICROSOFT, USB_DEVICE_ID_MS_PRESENTER_8K_USB) },
  1116. { HID_USB_DEVICE(USB_VENDOR_ID_MICROSOFT, USB_DEVICE_ID_WIRELESS_OPTICAL_DESKTOP_3_0) },
  1117. { HID_USB_DEVICE(USB_VENDOR_ID_MONTEREY, USB_DEVICE_ID_GENIUS_KB29E) },
  1118. { HID_USB_DEVICE(USB_VENDOR_ID_NTRIG, USB_DEVICE_ID_NTRIG_TOUCH_SCREEN) },
  1119. { HID_USB_DEVICE(USB_VENDOR_ID_PETALYNX, USB_DEVICE_ID_PETALYNX_MAXTER_REMOTE) },
  1120. { HID_USB_DEVICE(USB_VENDOR_ID_SAMSUNG, USB_DEVICE_ID_SAMSUNG_IR_REMOTE) },
  1121. { HID_USB_DEVICE(USB_VENDOR_ID_SONY, USB_DEVICE_ID_SONY_PS3_CONTROLLER) },
  1122. { HID_USB_DEVICE(USB_VENDOR_ID_SONY, USB_DEVICE_ID_SONY_VAIO_VGX_MOUSE) },
  1123. { HID_USB_DEVICE(USB_VENDOR_ID_STANTUM, USB_DEVICE_ID_MTP) },
  1124. { HID_USB_DEVICE(USB_VENDOR_ID_SUNPLUS, USB_DEVICE_ID_SUNPLUS_WDESKTOP) },
  1125. { HID_USB_DEVICE(USB_VENDOR_ID_THRUSTMASTER, 0xb300) },
  1126. { HID_USB_DEVICE(USB_VENDOR_ID_THRUSTMASTER, 0xb304) },
  1127. { HID_USB_DEVICE(USB_VENDOR_ID_THRUSTMASTER, 0xb323) },
  1128. { HID_USB_DEVICE(USB_VENDOR_ID_THRUSTMASTER, 0xb324) },
  1129. { HID_USB_DEVICE(USB_VENDOR_ID_THRUSTMASTER, 0xb651) },
  1130. { HID_USB_DEVICE(USB_VENDOR_ID_THRUSTMASTER, 0xb654) },
  1131. { HID_USB_DEVICE(USB_VENDOR_ID_TOPSEED, USB_DEVICE_ID_TOPSEED_CYBERLINK) },
  1132. { HID_USB_DEVICE(USB_VENDOR_ID_TWINHAN, USB_DEVICE_ID_TWINHAN_IR_REMOTE) },
  1133. { HID_USB_DEVICE(USB_VENDOR_ID_WISEGROUP, USB_DEVICE_ID_SMARTJOY_PLUS) },
  1134. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_WACOM, USB_DEVICE_ID_WACOM_GRAPHIRE_BLUETOOTH) },
  1135. { HID_USB_DEVICE(USB_VENDOR_ID_ZEROPLUS, 0x0005) },
  1136. { HID_USB_DEVICE(USB_VENDOR_ID_ZEROPLUS, 0x0030) },
  1137. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_MICROSOFT, USB_DEVICE_ID_MS_PRESENTER_8K_BT) },
  1138. { }
  1139. };
  1140. struct hid_dynid {
  1141. struct list_head list;
  1142. struct hid_device_id id;
  1143. };
  1144. /**
  1145. * store_new_id - add a new HID device ID to this driver and re-probe devices
  1146. * @driver: target device driver
  1147. * @buf: buffer for scanning device ID data
  1148. * @count: input size
  1149. *
  1150. * Adds a new dynamic hid device ID to this driver,
  1151. * and causes the driver to probe for all devices again.
  1152. */
  1153. static ssize_t store_new_id(struct device_driver *drv, const char *buf,
  1154. size_t count)
  1155. {
  1156. struct hid_driver *hdrv = container_of(drv, struct hid_driver, driver);
  1157. struct hid_dynid *dynid;
  1158. __u32 bus, vendor, product;
  1159. unsigned long driver_data = 0;
  1160. int ret;
  1161. ret = sscanf(buf, "%x %x %x %lx",
  1162. &bus, &vendor, &product, &driver_data);
  1163. if (ret < 3)
  1164. return -EINVAL;
  1165. dynid = kzalloc(sizeof(*dynid), GFP_KERNEL);
  1166. if (!dynid)
  1167. return -ENOMEM;
  1168. dynid->id.bus = bus;
  1169. dynid->id.vendor = vendor;
  1170. dynid->id.product = product;
  1171. dynid->id.driver_data = driver_data;
  1172. spin_lock(&hdrv->dyn_lock);
  1173. list_add_tail(&dynid->list, &hdrv->dyn_list);
  1174. spin_unlock(&hdrv->dyn_lock);
  1175. ret = 0;
  1176. if (get_driver(&hdrv->driver)) {
  1177. ret = driver_attach(&hdrv->driver);
  1178. put_driver(&hdrv->driver);
  1179. }
  1180. return ret ? : count;
  1181. }
  1182. static DRIVER_ATTR(new_id, S_IWUSR, NULL, store_new_id);
  1183. static void hid_free_dynids(struct hid_driver *hdrv)
  1184. {
  1185. struct hid_dynid *dynid, *n;
  1186. spin_lock(&hdrv->dyn_lock);
  1187. list_for_each_entry_safe(dynid, n, &hdrv->dyn_list, list) {
  1188. list_del(&dynid->list);
  1189. kfree(dynid);
  1190. }
  1191. spin_unlock(&hdrv->dyn_lock);
  1192. }
  1193. static const struct hid_device_id *hid_match_device(struct hid_device *hdev,
  1194. struct hid_driver *hdrv)
  1195. {
  1196. struct hid_dynid *dynid;
  1197. spin_lock(&hdrv->dyn_lock);
  1198. list_for_each_entry(dynid, &hdrv->dyn_list, list) {
  1199. if (hid_match_one_id(hdev, &dynid->id)) {
  1200. spin_unlock(&hdrv->dyn_lock);
  1201. return &dynid->id;
  1202. }
  1203. }
  1204. spin_unlock(&hdrv->dyn_lock);
  1205. return hid_match_id(hdev, hdrv->id_table);
  1206. }
  1207. static int hid_bus_match(struct device *dev, struct device_driver *drv)
  1208. {
  1209. struct hid_driver *hdrv = container_of(drv, struct hid_driver, driver);
  1210. struct hid_device *hdev = container_of(dev, struct hid_device, dev);
  1211. if (!hid_match_device(hdev, hdrv))
  1212. return 0;
  1213. /* generic wants all non-blacklisted */
  1214. if (!strncmp(hdrv->name, "generic-", 8))
  1215. return !hid_match_id(hdev, hid_blacklist);
  1216. return 1;
  1217. }
  1218. static int hid_device_probe(struct device *dev)
  1219. {
  1220. struct hid_driver *hdrv = container_of(dev->driver,
  1221. struct hid_driver, driver);
  1222. struct hid_device *hdev = container_of(dev, struct hid_device, dev);
  1223. const struct hid_device_id *id;
  1224. int ret = 0;
  1225. if (!hdev->driver) {
  1226. id = hid_match_device(hdev, hdrv);
  1227. if (id == NULL)
  1228. return -ENODEV;
  1229. hdev->driver = hdrv;
  1230. if (hdrv->probe) {
  1231. ret = hdrv->probe(hdev, id);
  1232. } else { /* default probe */
  1233. ret = hid_parse(hdev);
  1234. if (!ret)
  1235. ret = hid_hw_start(hdev, HID_CONNECT_DEFAULT);
  1236. }
  1237. if (ret)
  1238. hdev->driver = NULL;
  1239. }
  1240. return ret;
  1241. }
  1242. static int hid_device_remove(struct device *dev)
  1243. {
  1244. struct hid_device *hdev = container_of(dev, struct hid_device, dev);
  1245. struct hid_driver *hdrv = hdev->driver;
  1246. if (hdrv) {
  1247. if (hdrv->remove)
  1248. hdrv->remove(hdev);
  1249. else /* default remove */
  1250. hid_hw_stop(hdev);
  1251. hdev->driver = NULL;
  1252. }
  1253. return 0;
  1254. }
  1255. static int hid_uevent(struct device *dev, struct kobj_uevent_env *env)
  1256. {
  1257. struct hid_device *hdev = container_of(dev, struct hid_device, dev);
  1258. if (add_uevent_var(env, "HID_ID=%04X:%08X:%08X",
  1259. hdev->bus, hdev->vendor, hdev->product))
  1260. return -ENOMEM;
  1261. if (add_uevent_var(env, "HID_NAME=%s", hdev->name))
  1262. return -ENOMEM;
  1263. if (add_uevent_var(env, "HID_PHYS=%s", hdev->phys))
  1264. return -ENOMEM;
  1265. if (add_uevent_var(env, "HID_UNIQ=%s", hdev->uniq))
  1266. return -ENOMEM;
  1267. if (add_uevent_var(env, "MODALIAS=hid:b%04Xv%08Xp%08X",
  1268. hdev->bus, hdev->vendor, hdev->product))
  1269. return -ENOMEM;
  1270. return 0;
  1271. }
  1272. static struct bus_type hid_bus_type = {
  1273. .name = "hid",
  1274. .match = hid_bus_match,
  1275. .probe = hid_device_probe,
  1276. .remove = hid_device_remove,
  1277. .uevent = hid_uevent,
  1278. };
  1279. /* a list of devices that shouldn't be handled by HID core at all */
  1280. static const struct hid_device_id hid_ignore_list[] = {
  1281. { HID_USB_DEVICE(USB_VENDOR_ID_ACECAD, USB_DEVICE_ID_ACECAD_FLAIR) },
  1282. { HID_USB_DEVICE(USB_VENDOR_ID_ACECAD, USB_DEVICE_ID_ACECAD_302) },
  1283. { HID_USB_DEVICE(USB_VENDOR_ID_ADS_TECH, USB_DEVICE_ID_ADS_TECH_RADIO_SI470X) },
  1284. { HID_USB_DEVICE(USB_VENDOR_ID_AIPTEK, USB_DEVICE_ID_AIPTEK_01) },
  1285. { HID_USB_DEVICE(USB_VENDOR_ID_AIPTEK, USB_DEVICE_ID_AIPTEK_10) },
  1286. { HID_USB_DEVICE(USB_VENDOR_ID_AIPTEK, USB_DEVICE_ID_AIPTEK_20) },
  1287. { HID_USB_DEVICE(USB_VENDOR_ID_AIPTEK, USB_DEVICE_ID_AIPTEK_21) },
  1288. { HID_USB_DEVICE(USB_VENDOR_ID_AIPTEK, USB_DEVICE_ID_AIPTEK_22) },
  1289. { HID_USB_DEVICE(USB_VENDOR_ID_AIPTEK, USB_DEVICE_ID_AIPTEK_23) },
  1290. { HID_USB_DEVICE(USB_VENDOR_ID_AIPTEK, USB_DEVICE_ID_AIPTEK_24) },
  1291. { HID_USB_DEVICE(USB_VENDOR_ID_AIRCABLE, USB_DEVICE_ID_AIRCABLE1) },
  1292. { HID_USB_DEVICE(USB_VENDOR_ID_ALCOR, USB_DEVICE_ID_ALCOR_USBRS232) },
  1293. { HID_USB_DEVICE(USB_VENDOR_ID_ASUS, USB_DEVICE_ID_ASUS_LCM)},
  1294. { HID_USB_DEVICE(USB_VENDOR_ID_ASUS, USB_DEVICE_ID_ASUS_LCM2)},
  1295. { HID_USB_DEVICE(USB_VENDOR_ID_AVERMEDIA, USB_DEVICE_ID_AVER_FM_MR800) },
  1296. { HID_USB_DEVICE(USB_VENDOR_ID_BERKSHIRE, USB_DEVICE_ID_BERKSHIRE_PCWD) },
  1297. { HID_USB_DEVICE(USB_VENDOR_ID_CIDC, 0x0103) },
  1298. { HID_USB_DEVICE(USB_VENDOR_ID_CYGNAL, USB_DEVICE_ID_CYGNAL_RADIO_SI470X) },
  1299. { HID_USB_DEVICE(USB_VENDOR_ID_CMEDIA, USB_DEVICE_ID_CM109) },
  1300. { HID_USB_DEVICE(USB_VENDOR_ID_CYPRESS, USB_DEVICE_ID_CYPRESS_HIDCOM) },
  1301. { HID_USB_DEVICE(USB_VENDOR_ID_CYPRESS, USB_DEVICE_ID_CYPRESS_ULTRAMOUSE) },
  1302. { HID_USB_DEVICE(USB_VENDOR_ID_DEALEXTREAME, USB_DEVICE_ID_DEALEXTREAME_RADIO_SI4701) },
  1303. { HID_USB_DEVICE(USB_VENDOR_ID_DELORME, USB_DEVICE_ID_DELORME_EARTHMATE) },
  1304. { HID_USB_DEVICE(USB_VENDOR_ID_DELORME, USB_DEVICE_ID_DELORME_EM_LT20) },
  1305. { HID_USB_DEVICE(USB_VENDOR_ID_ESSENTIAL_REALITY, USB_DEVICE_ID_ESSENTIAL_REALITY_P5) },
  1306. { HID_USB_DEVICE(USB_VENDOR_ID_GENERAL_TOUCH, 0x0001) },
  1307. { HID_USB_DEVICE(USB_VENDOR_ID_GENERAL_TOUCH, 0x0002) },
  1308. { HID_USB_DEVICE(USB_VENDOR_ID_GENERAL_TOUCH, 0x0003) },
  1309. { HID_USB_DEVICE(USB_VENDOR_ID_GENERAL_TOUCH, 0x0004) },
  1310. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_4_PHIDGETSERVO_30) },
  1311. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_1_PHIDGETSERVO_30) },
  1312. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_0_0_4_IF_KIT) },
  1313. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_0_16_16_IF_KIT) },
  1314. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_8_8_8_IF_KIT) },
  1315. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_0_8_7_IF_KIT) },
  1316. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_0_8_8_IF_KIT) },
  1317. { HID_USB_DEVICE(USB_VENDOR_ID_GLAB, USB_DEVICE_ID_PHIDGET_MOTORCONTROL) },
  1318. { HID_USB_DEVICE(USB_VENDOR_ID_GOTOP, USB_DEVICE_ID_SUPER_Q2) },
  1319. { HID_USB_DEVICE(USB_VENDOR_ID_GOTOP, USB_DEVICE_ID_GOGOPEN) },
  1320. { HID_USB_DEVICE(USB_VENDOR_ID_GOTOP, USB_DEVICE_ID_PENPOWER) },
  1321. { HID_USB_DEVICE(USB_VENDOR_ID_GRETAGMACBETH, USB_DEVICE_ID_GRETAGMACBETH_HUEY) },
  1322. { HID_USB_DEVICE(USB_VENDOR_ID_GRIFFIN, USB_DEVICE_ID_POWERMATE) },
  1323. { HID_USB_DEVICE(USB_VENDOR_ID_GRIFFIN, USB_DEVICE_ID_SOUNDKNOB) },
  1324. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_90) },
  1325. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_100) },
  1326. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_101) },
  1327. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_103) },
  1328. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_104) },
  1329. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_105) },
  1330. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_106) },
  1331. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_107) },
  1332. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_108) },
  1333. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_200) },
  1334. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_201) },
  1335. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_202) },
  1336. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_203) },
  1337. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_204) },
  1338. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_205) },
  1339. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_206) },
  1340. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_207) },
  1341. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_300) },
  1342. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_301) },
  1343. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_302) },
  1344. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_303) },
  1345. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_304) },
  1346. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_305) },
  1347. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_306) },
  1348. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_307) },
  1349. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_308) },
  1350. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_309) },
  1351. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_400) },
  1352. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_401) },
  1353. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_402) },
  1354. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_403) },
  1355. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_404) },
  1356. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_405) },
  1357. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_500) },
  1358. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_501) },
  1359. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_502) },
  1360. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_503) },
  1361. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_504) },
  1362. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1000) },
  1363. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1001) },
  1364. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1002) },
  1365. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1003) },
  1366. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1004) },
  1367. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1005) },
  1368. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1006) },
  1369. { HID_USB_DEVICE(USB_VENDOR_ID_GTCO, USB_DEVICE_ID_GTCO_1007) },
  1370. { HID_USB_DEVICE(USB_VENDOR_ID_IMATION, USB_DEVICE_ID_DISC_STAKKA) },
  1371. { HID_USB_DEVICE(USB_VENDOR_ID_KBGEAR, USB_DEVICE_ID_KBGEAR_JAMSTUDIO) },
  1372. { HID_USB_DEVICE(USB_VENDOR_ID_KWORLD, USB_DEVICE_ID_KWORLD_RADIO_FM700) },
  1373. { HID_USB_DEVICE(USB_VENDOR_ID_KYE, USB_DEVICE_ID_KYE_GPEN_560) },
  1374. { HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_KYE, 0x0058) },
  1375. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_CASSY) },
  1376. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_POCKETCASSY) },
  1377. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_MOBILECASSY) },
  1378. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_JWM) },
  1379. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_DMMP) },
  1380. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_UMIP) },
  1381. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_XRAY1) },
  1382. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_XRAY2) },
  1383. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_VIDEOCOM) },
  1384. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_COM3LAB) },
  1385. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_TELEPORT) },
  1386. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_NETWORKANALYSER) },
  1387. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_POWERCONTROL) },
  1388. { HID_USB_DEVICE(USB_VENDOR_ID_LD, USB_DEVICE_ID_LD_MACHINETEST) },
  1389. { HID_USB_DEVICE(USB_VENDOR_ID_MCC, USB_DEVICE_ID_MCC_PMD1024LS) },
  1390. { HID_USB_DEVICE(USB_VENDOR_ID_MCC, USB_DEVICE_ID_MCC_PMD1208LS) },
  1391. { HID_USB_DEVICE(USB_VENDOR_ID_MICROCHIP, USB_DEVICE_ID_PICKIT1) },
  1392. { HID_USB_DEVICE(USB_VENDOR_ID_MICROCHIP, USB_DEVICE_ID_PICKIT2) },
  1393. { HID_USB_DEVICE(USB_VENDOR_ID_NATIONAL_SEMICONDUCTOR, USB_DEVICE_ID_N_S_HARMONY) },
  1394. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100) },
  1395. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 20) },
  1396. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 30) },
  1397. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 100) },
  1398. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 108) },
  1399. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 118) },
  1400. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 200) },
  1401. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 300) },
  1402. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 400) },
  1403. { HID_USB_DEVICE(USB_VENDOR_ID_ONTRAK, USB_DEVICE_ID_ONTRAK_ADU100 + 500) },
  1404. { HID_USB_DEVICE(USB_VENDOR_ID_PANJIT, 0x0001) },
  1405. { HID_USB_DEVICE(USB_VENDOR_ID_PANJIT, 0x0002) },
  1406. { HID_USB_DEVICE(USB_VENDOR_ID_PANJIT, 0x0003) },
  1407. { HID_USB_DEVICE(USB_VENDOR_ID_PANJIT, 0x0004) },
  1408. { HID_USB_DEVICE(USB_VENDOR_ID_PHILIPS, USB_DEVICE_ID_PHILIPS_IEEE802154_DONGLE) },
  1409. { HID_USB_DEVICE(USB_VENDOR_ID_POWERCOM, USB_DEVICE_ID_POWERCOM_UPS) },
  1410. { HID_USB_DEVICE(USB_VENDOR_ID_TENX, USB_DEVICE_ID_TENX_IBUDDY1) },
  1411. { HID_USB_DEVICE(USB_VENDOR_ID_TENX, USB_DEVICE_ID_TENX_IBUDDY2) },
  1412. { HID_USB_DEVICE(USB_VENDOR_ID_VERNIER, USB_DEVICE_ID_VERNIER_LABPRO) },
  1413. { HID_USB_DEVICE(USB_VENDOR_ID_VERNIER, USB_DEVICE_ID_VERNIER_GOTEMP) },
  1414. { HID_USB_DEVICE(USB_VENDOR_ID_VERNIER, USB_DEVICE_ID_VERNIER_SKIP) },
  1415. { HID_USB_DEVICE(USB_VENDOR_ID_VERNIER, USB_DEVICE_ID_VERNIER_CYCLOPS) },
  1416. { HID_USB_DEVICE(USB_VENDOR_ID_VERNIER, USB_DEVICE_ID_VERNIER_LCSPEC) },
  1417. { HID_USB_DEVICE(USB_VENDOR_ID_WACOM, HID_ANY_ID) },
  1418. { HID_USB_DEVICE(USB_VENDOR_ID_WISEGROUP, USB_DEVICE_ID_4_PHIDGETSERVO_20) },
  1419. { HID_USB_DEVICE(USB_VENDOR_ID_WISEGROUP, USB_DEVICE_ID_1_PHIDGETSERVO_20) },
  1420. { HID_USB_DEVICE(USB_VENDOR_ID_WISEGROUP, USB_DEVICE_ID_8_8_4_IF_KIT) },
  1421. { HID_USB_DEVICE(USB_VENDOR_ID_YEALINK, USB_DEVICE_ID_YEALINK_P1K_P4K_B2K) },
  1422. { }
  1423. };
  1424. /**
  1425. * hid_mouse_ignore_list - mouse devices which should not be handled by the hid layer
  1426. *
  1427. * There are composite devices for which we want to ignore only a certain
  1428. * interface. This is a list of devices for which only the mouse interface will
  1429. * be ignored. This allows a dedicated driver to take care of the interface.
  1430. */
  1431. static const struct hid_device_id hid_mouse_ignore_list[] = {
  1432. /* appletouch driver */
  1433. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_FOUNTAIN_ANSI) },
  1434. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_FOUNTAIN_ISO) },
  1435. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER_ANSI) },
  1436. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER_ISO) },
  1437. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER_JIS) },
  1438. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER3_ANSI) },
  1439. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER3_ISO) },
  1440. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER3_JIS) },
  1441. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_ANSI) },
  1442. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_ISO) },
  1443. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_JIS) },
  1444. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_HF_ANSI) },
  1445. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_HF_ISO) },
  1446. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER4_HF_JIS) },
  1447. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING_ANSI) },
  1448. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING_ISO) },
  1449. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING_JIS) },
  1450. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING2_ANSI) },
  1451. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING2_ISO) },
  1452. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING2_JIS) },
  1453. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING3_ANSI) },
  1454. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING3_ISO) },
  1455. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_WELLSPRING3_JIS) },
  1456. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_FOUNTAIN_TP_ONLY) },
  1457. { HID_USB_DEVICE(USB_VENDOR_ID_APPLE, USB_DEVICE_ID_APPLE_GEYSER1_TP_ONLY) },
  1458. { }
  1459. };
  1460. static bool hid_ignore(struct hid_device *hdev)
  1461. {
  1462. switch (hdev->vendor) {
  1463. case USB_VENDOR_ID_CODEMERCS:
  1464. /* ignore all Code Mercenaries IOWarrior devices */
  1465. if (hdev->product >= USB_DEVICE_ID_CODEMERCS_IOW_FIRST &&
  1466. hdev->product <= USB_DEVICE_ID_CODEMERCS_IOW_LAST)
  1467. return true;
  1468. break;
  1469. case USB_VENDOR_ID_LOGITECH:
  1470. if (hdev->product >= USB_DEVICE_ID_LOGITECH_HARMONY_FIRST &&
  1471. hdev->product <= USB_DEVICE_ID_LOGITECH_HARMONY_LAST)
  1472. return true;
  1473. break;
  1474. case USB_VENDOR_ID_SOUNDGRAPH:
  1475. if (hdev->product >= USB_DEVICE_ID_SOUNDGRAPH_IMON_FIRST &&
  1476. hdev->product <= USB_DEVICE_ID_SOUNDGRAPH_IMON_LAST)
  1477. return true;
  1478. break;
  1479. }
  1480. if (hdev->type == HID_TYPE_USBMOUSE &&
  1481. hid_match_id(hdev, hid_mouse_ignore_list))
  1482. return true;
  1483. return !!hid_match_id(hdev, hid_ignore_list);
  1484. }
  1485. int hid_add_device(struct hid_device *hdev)
  1486. {
  1487. static atomic_t id = ATOMIC_INIT(0);
  1488. int ret;
  1489. if (WARN_ON(hdev->status & HID_STAT_ADDED))
  1490. return -EBUSY;
  1491. /* we need to kill them here, otherwise they will stay allocated to
  1492. * wait for coming driver */
  1493. if (hid_ignore(hdev))
  1494. return -ENODEV;
  1495. /* XXX hack, any other cleaner solution after the driver core
  1496. * is converted to allow more than 20 bytes as the device name? */
  1497. dev_set_name(&hdev->dev, "%04X:%04X:%04X.%04X", hdev->bus,
  1498. hdev->vendor, hdev->product, atomic_inc_return(&id));
  1499. ret = device_add(&hdev->dev);
  1500. if (!ret)
  1501. hdev->status |= HID_STAT_ADDED;
  1502. hid_debug_register(hdev, dev_name(&hdev->dev));
  1503. return ret;
  1504. }
  1505. EXPORT_SYMBOL_GPL(hid_add_device);
  1506. /**
  1507. * hid_allocate_device - allocate new hid device descriptor
  1508. *
  1509. * Allocate and initialize hid device, so that hid_destroy_device might be
  1510. * used to free it.
  1511. *
  1512. * New hid_device pointer is returned on success, otherwise ERR_PTR encoded
  1513. * error value.
  1514. */
  1515. struct hid_device *hid_allocate_device(void)
  1516. {
  1517. struct hid_device *hdev;
  1518. unsigned int i;
  1519. int ret = -ENOMEM;
  1520. hdev = kzalloc(sizeof(*hdev), GFP_KERNEL);
  1521. if (hdev == NULL)
  1522. return ERR_PTR(ret);
  1523. device_initialize(&hdev->dev);
  1524. hdev->dev.release = hid_device_release;
  1525. hdev->dev.bus = &hid_bus_type;
  1526. hdev->collection = kcalloc(HID_DEFAULT_NUM_COLLECTIONS,
  1527. sizeof(struct hid_collection), GFP_KERNEL);
  1528. if (hdev->collection == NULL)
  1529. goto err;
  1530. hdev->collection_size = HID_DEFAULT_NUM_COLLECTIONS;
  1531. for (i = 0; i < HID_REPORT_TYPES; i++)
  1532. INIT_LIST_HEAD(&hdev->report_enum[i].report_list);
  1533. init_waitqueue_head(&hdev->debug_wait);
  1534. INIT_LIST_HEAD(&hdev->debug_list);
  1535. return hdev;
  1536. err:
  1537. put_device(&hdev->dev);
  1538. return ERR_PTR(ret);
  1539. }
  1540. EXPORT_SYMBOL_GPL(hid_allocate_device);
  1541. static void hid_remove_device(struct hid_device *hdev)
  1542. {
  1543. if (hdev->status & HID_STAT_ADDED) {
  1544. device_del(&hdev->dev);
  1545. hid_debug_unregister(hdev);
  1546. hdev->status &= ~HID_STAT_ADDED;
  1547. }
  1548. }
  1549. /**
  1550. * hid_destroy_device - free previously allocated device
  1551. *
  1552. * @hdev: hid device
  1553. *
  1554. * If you allocate hid_device through hid_allocate_device, you should ever
  1555. * free by this function.
  1556. */
  1557. void hid_destroy_device(struct hid_device *hdev)
  1558. {
  1559. hid_remove_device(hdev);
  1560. put_device(&hdev->dev);
  1561. }
  1562. EXPORT_SYMBOL_GPL(hid_destroy_device);
  1563. int __hid_register_driver(struct hid_driver *hdrv, struct module *owner,
  1564. const char *mod_name)
  1565. {
  1566. int ret;
  1567. hdrv->driver.name = hdrv->name;
  1568. hdrv->driver.bus = &hid_bus_type;
  1569. hdrv->driver.owner = owner;
  1570. hdrv->driver.mod_name = mod_name;
  1571. INIT_LIST_HEAD(&hdrv->dyn_list);
  1572. spin_lock_init(&hdrv->dyn_lock);
  1573. ret = driver_register(&hdrv->driver);
  1574. if (ret)
  1575. return ret;
  1576. ret = driver_create_file(&hdrv->driver, &driver_attr_new_id);
  1577. if (ret)
  1578. driver_unregister(&hdrv->driver);
  1579. return ret;
  1580. }
  1581. EXPORT_SYMBOL_GPL(__hid_register_driver);
  1582. void hid_unregister_driver(struct hid_driver *hdrv)
  1583. {
  1584. driver_remove_file(&hdrv->driver, &driver_attr_new_id);
  1585. driver_unregister(&hdrv->driver);
  1586. hid_free_dynids(hdrv);
  1587. }
  1588. EXPORT_SYMBOL_GPL(hid_unregister_driver);
  1589. int hid_check_keys_pressed(struct hid_device *hid)
  1590. {
  1591. struct hid_input *hidinput;
  1592. int i;
  1593. if (!(hid->claimed & HID_CLAIMED_INPUT))
  1594. return 0;
  1595. list_for_each_entry(hidinput, &hid->inputs, list) {
  1596. for (i = 0; i < BITS_TO_LONGS(KEY_MAX); i++)
  1597. if (hidinput->input->key[i])
  1598. return 1;
  1599. }
  1600. return 0;
  1601. }
  1602. EXPORT_SYMBOL_GPL(hid_check_keys_pressed);
  1603. static int __init hid_init(void)
  1604. {
  1605. int ret;
  1606. if (hid_debug)
  1607. printk(KERN_WARNING "HID: hid_debug is now used solely for parser and driver debugging.\n"
  1608. "HID: debugfs is now used for inspecting the device (report descriptor, reports)\n");
  1609. ret = bus_register(&hid_bus_type);
  1610. if (ret) {
  1611. printk(KERN_ERR "HID: can't register hid bus\n");
  1612. goto err;
  1613. }
  1614. ret = hidraw_init();
  1615. if (ret)
  1616. goto err_bus;
  1617. hid_debug_init();
  1618. return 0;
  1619. err_bus:
  1620. bus_unregister(&hid_bus_type);
  1621. err:
  1622. return ret;
  1623. }
  1624. static void __exit hid_exit(void)
  1625. {
  1626. hid_debug_exit();
  1627. hidraw_exit();
  1628. bus_unregister(&hid_bus_type);
  1629. }
  1630. module_init(hid_init);
  1631. module_exit(hid_exit);
  1632. MODULE_AUTHOR("Andreas Gal");
  1633. MODULE_AUTHOR("Vojtech Pavlik");
  1634. MODULE_AUTHOR("Jiri Kosina");
  1635. MODULE_LICENSE(DRIVER_LICENSE);