hid.c 21 KB

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  1. /*
  2. * File : hid.c
  3. * COPYRIGHT (C) 2008 - 2018, RT-Thread Development Team
  4. *
  5. * SPDX-License-Identifier: Apache-2.0
  6. *
  7. * Change Logs:
  8. * Date Author Notes
  9. * 2017-03-13 Urey the first version
  10. * 2017-11-16 ZYH Update to common hid
  11. */
  12. #include <rthw.h>
  13. #include <rtthread.h>
  14. #include <rtservice.h>
  15. #include <rtdevice.h>
  16. #include "drivers/usb_common.h"
  17. #include "drivers/usb_device.h"
  18. #include "hid.h"
  19. #ifdef RT_USB_DEVICE_HID
  20. struct hid_s
  21. {
  22. struct rt_device parent;
  23. struct ufunction *func;
  24. uep_t ep_in;
  25. uep_t ep_out;
  26. int status;
  27. rt_uint16_t protocol;
  28. rt_uint8_t report_buf[MAX_REPORT_SIZE];
  29. struct rt_messagequeue hid_mq;
  30. };
  31. /* CustomHID_ConfigDescriptor */
  32. const rt_uint8_t _report_desc[]=
  33. {
  34. #ifdef RT_USB_DEVICE_HID_KEYBOARD
  35. USAGE_PAGE(1), 0x01,
  36. USAGE(1), 0x06,
  37. COLLECTION(1), 0x01,
  38. REPORT_ID(1), HID_REPORT_ID_KEYBOARD1,
  39. USAGE_PAGE(1), 0x07,
  40. USAGE_MINIMUM(1), 0xE0,
  41. USAGE_MAXIMUM(1), 0xE7,
  42. LOGICAL_MINIMUM(1), 0x00,
  43. LOGICAL_MAXIMUM(1), 0x01,
  44. REPORT_SIZE(1), 0x01,
  45. REPORT_COUNT(1), 0x08,
  46. INPUT(1), 0x02,
  47. REPORT_COUNT(1), 0x01,
  48. REPORT_SIZE(1), 0x08,
  49. INPUT(1), 0x01,
  50. REPORT_COUNT(1), 0x05,
  51. REPORT_SIZE(1), 0x01,
  52. USAGE_PAGE(1), 0x08,
  53. USAGE_MINIMUM(1), 0x01,
  54. USAGE_MAXIMUM(1), 0x05,
  55. OUTPUT(1), 0x02,
  56. REPORT_COUNT(1), 0x01,
  57. REPORT_SIZE(1), 0x03,
  58. OUTPUT(1), 0x01,
  59. REPORT_COUNT(1), 0x06,
  60. REPORT_SIZE(1), 0x08,
  61. LOGICAL_MINIMUM(1), 0x00,
  62. LOGICAL_MAXIMUM(1), 0x65,
  63. USAGE_PAGE(1), 0x07,
  64. USAGE_MINIMUM(1), 0x00,
  65. USAGE_MAXIMUM(1), 0x65,
  66. INPUT(1), 0x00,
  67. END_COLLECTION(0),
  68. #if RT_USB_DEVICE_HID_KEYBOARD_NUMBER>1
  69. /****keyboard2*****/
  70. USAGE_PAGE(1), 0x01,
  71. USAGE(1), 0x06,
  72. COLLECTION(1), 0x01,
  73. REPORT_ID(1), HID_REPORT_ID_KEYBOARD2,
  74. USAGE_PAGE(1), 0x07,
  75. USAGE_MINIMUM(1), 0xE0,
  76. USAGE_MAXIMUM(1), 0xE7,
  77. LOGICAL_MINIMUM(1), 0x00,
  78. LOGICAL_MAXIMUM(1), 0x01,
  79. REPORT_SIZE(1), 0x01,
  80. REPORT_COUNT(1), 0x08,
  81. INPUT(1), 0x02,
  82. REPORT_COUNT(1), 0x01,
  83. REPORT_SIZE(1), 0x08,
  84. INPUT(1), 0x01,
  85. REPORT_COUNT(1), 0x06,
  86. REPORT_SIZE(1), 0x08,
  87. LOGICAL_MINIMUM(1), 0x00,
  88. LOGICAL_MAXIMUM(1), 0x65,
  89. USAGE_PAGE(1), 0x07,
  90. USAGE_MINIMUM(1), 0x00,
  91. USAGE_MAXIMUM(1), 0x65,
  92. INPUT(1), 0x00,
  93. END_COLLECTION(0),
  94. #if RT_USB_DEVICE_HID_KEYBOARD_NUMBER>2
  95. USAGE_PAGE(1), 0x01,
  96. USAGE(1), 0x06,
  97. COLLECTION(1), 0x01,
  98. REPORT_ID(1), HID_REPORT_ID_KEYBOARD3,
  99. USAGE_PAGE(1), 0x07,
  100. USAGE_MINIMUM(1), 0xE0,
  101. USAGE_MAXIMUM(1), 0xE7,
  102. LOGICAL_MINIMUM(1), 0x00,
  103. LOGICAL_MAXIMUM(1), 0x01,
  104. REPORT_SIZE(1), 0x01,
  105. REPORT_COUNT(1), 0x08,
  106. INPUT(1), 0x02,
  107. REPORT_COUNT(1), 0x01,
  108. REPORT_SIZE(1), 0x08,
  109. INPUT(1), 0x01,
  110. REPORT_COUNT(1), 0x06,
  111. REPORT_SIZE(1), 0x08,
  112. LOGICAL_MINIMUM(1), 0x00,
  113. LOGICAL_MAXIMUM(1), 0x65,
  114. USAGE_PAGE(1), 0x07,
  115. USAGE_MINIMUM(1), 0x00,
  116. USAGE_MAXIMUM(1), 0x65,
  117. INPUT(1), 0x00,
  118. END_COLLECTION(0),
  119. #if RT_USB_DEVICE_HID_KEYBOARD_NUMBER>3
  120. USAGE_PAGE(1), 0x01,
  121. USAGE(1), 0x06,
  122. COLLECTION(1), 0x01,
  123. REPORT_ID(1), HID_REPORT_ID_KEYBOARD4,
  124. USAGE_PAGE(1), 0x07,
  125. USAGE_MINIMUM(1), 0xE0,
  126. USAGE_MAXIMUM(1), 0xE7,
  127. LOGICAL_MINIMUM(1), 0x00,
  128. LOGICAL_MAXIMUM(1), 0x01,
  129. REPORT_SIZE(1), 0x01,
  130. REPORT_COUNT(1), 0x08,
  131. INPUT(1), 0x02,
  132. REPORT_COUNT(1), 0x01,
  133. REPORT_SIZE(1), 0x08,
  134. INPUT(1), 0x01,
  135. REPORT_COUNT(1), 0x06,
  136. REPORT_SIZE(1), 0x08,
  137. LOGICAL_MINIMUM(1), 0x00,
  138. LOGICAL_MAXIMUM(1), 0x65,
  139. USAGE_PAGE(1), 0x07,
  140. USAGE_MINIMUM(1), 0x00,
  141. USAGE_MAXIMUM(1), 0x65,
  142. INPUT(1), 0x00,
  143. END_COLLECTION(0),
  144. #endif
  145. #endif
  146. #endif
  147. #endif
  148. // Media Control
  149. #ifdef RT_USB_DEVICE_HID_MEDIA
  150. USAGE_PAGE(1), 0x0C,
  151. USAGE(1), 0x01,
  152. COLLECTION(1), 0x01,
  153. REPORT_ID(1), HID_REPORT_ID_MEDIA,
  154. USAGE_PAGE(1), 0x0C,
  155. LOGICAL_MINIMUM(1), 0x00,
  156. LOGICAL_MAXIMUM(1), 0x01,
  157. REPORT_SIZE(1), 0x01,
  158. REPORT_COUNT(1), 0x07,
  159. USAGE(1), 0xB5, // Next Track
  160. USAGE(1), 0xB6, // Previous Track
  161. USAGE(1), 0xB7, // Stop
  162. USAGE(1), 0xCD, // Play / Pause
  163. USAGE(1), 0xE2, // Mute
  164. USAGE(1), 0xE9, // Volume Up
  165. USAGE(1), 0xEA, // Volume Down
  166. INPUT(1), 0x02, // Input (Data, Variable, Absolute)
  167. REPORT_COUNT(1), 0x01,
  168. INPUT(1), 0x01,
  169. END_COLLECTION(0),
  170. #endif
  171. #ifdef RT_USB_DEVICE_HID_GENERAL
  172. USAGE_PAGE(1), 0x8c,
  173. USAGE(1), 0x01,
  174. COLLECTION(1), 0x01,
  175. REPORT_ID(1), HID_REPORT_ID_GENERAL,
  176. REPORT_COUNT(1), RT_USB_DEVICE_HID_GENERAL_IN_REPORT_LENGTH,
  177. USAGE(1), 0x03,
  178. REPORT_SIZE(1), 0x08,
  179. LOGICAL_MINIMUM(1), 0x00,
  180. LOGICAL_MAXIMUM(1), 0xFF,
  181. INPUT(1), 0x02,
  182. REPORT_COUNT(1), RT_USB_DEVICE_HID_GENERAL_OUT_REPORT_LENGTH,
  183. USAGE(1), 0x04,
  184. REPORT_SIZE(1), 0x08,
  185. LOGICAL_MINIMUM(1), 0x00,
  186. LOGICAL_MAXIMUM(1), 0xFF,
  187. OUTPUT(1), 0x02,
  188. END_COLLECTION(0),
  189. #endif
  190. #ifdef RT_USB_DEVICE_HID_MOUSE
  191. USAGE_PAGE(1), 0x01, // Generic Desktop
  192. USAGE(1), 0x02, // Mouse
  193. COLLECTION(1), 0x01, // Application
  194. USAGE(1), 0x01, // Pointer
  195. COLLECTION(1), 0x00, // Physical
  196. REPORT_ID(1), HID_REPORT_ID_MOUSE,
  197. REPORT_COUNT(1), 0x03,
  198. REPORT_SIZE(1), 0x01,
  199. USAGE_PAGE(1), 0x09, // Buttons
  200. USAGE_MINIMUM(1), 0x1,
  201. USAGE_MAXIMUM(1), 0x3,
  202. LOGICAL_MINIMUM(1), 0x00,
  203. LOGICAL_MAXIMUM(1), 0x01,
  204. INPUT(1), 0x02,
  205. REPORT_COUNT(1), 0x01,
  206. REPORT_SIZE(1), 0x05,
  207. INPUT(1), 0x01,
  208. REPORT_COUNT(1), 0x03,
  209. REPORT_SIZE(1), 0x08,
  210. USAGE_PAGE(1), 0x01,
  211. USAGE(1), 0x30, // X
  212. USAGE(1), 0x31, // Y
  213. USAGE(1), 0x38, // scroll
  214. LOGICAL_MINIMUM(1), 0x81,
  215. LOGICAL_MAXIMUM(1), 0x7f,
  216. INPUT(1), 0x06,
  217. END_COLLECTION(0),
  218. END_COLLECTION(0),
  219. #endif
  220. }; /* CustomHID_ReportDescriptor */
  221. static struct udevice_descriptor _dev_desc =
  222. {
  223. USB_DESC_LENGTH_DEVICE, //bLength;
  224. USB_DESC_TYPE_DEVICE, //type;
  225. USB_BCD_VERSION, //bcdUSB;
  226. USB_CLASS_HID, //bDeviceClass;
  227. 0x00, //bDeviceSubClass;
  228. 0x00, //bDeviceProtocol;
  229. 64, //bMaxPacketSize0;
  230. _VENDOR_ID, //idVendor;
  231. _PRODUCT_ID, //idProduct;
  232. USB_BCD_DEVICE, //bcdDevice;
  233. USB_STRING_MANU_INDEX, //iManufacturer;
  234. USB_STRING_PRODUCT_INDEX, //iProduct;
  235. USB_STRING_SERIAL_INDEX, //iSerialNumber;
  236. USB_DYNAMIC, //bNumConfigurations;
  237. };
  238. //FS and HS needed
  239. static struct usb_qualifier_descriptor dev_qualifier =
  240. {
  241. sizeof(dev_qualifier), //bLength
  242. USB_DESC_TYPE_DEVICEQUALIFIER, //bDescriptorType
  243. 0x0200, //bcdUSB
  244. USB_CLASS_MASS_STORAGE, //bDeviceClass
  245. 0x06, //bDeviceSubClass
  246. 0x50, //bDeviceProtocol
  247. 64, //bMaxPacketSize0
  248. 0x01, //bNumConfigurations
  249. 0,
  250. };
  251. /* hid interface descriptor */
  252. const static struct uhid_comm_descriptor _hid_comm_desc =
  253. {
  254. #ifdef RT_USB_DEVICE_COMPOSITE
  255. /* Interface Association Descriptor */
  256. {
  257. USB_DESC_LENGTH_IAD,
  258. USB_DESC_TYPE_IAD,
  259. USB_DYNAMIC,
  260. 0x01,
  261. 0x03, /* bInterfaceClass: HID */
  262. #if defined(RT_USB_DEVICE_HID_KEYBOARD)||defined(RT_USB_DEVICE_HID_MOUSE)
  263. USB_HID_SUBCLASS_BOOT, /* bInterfaceSubClass : 1=BOOT, 0=no boot */
  264. #else
  265. USB_HID_SUBCLASS_NOBOOT, /* bInterfaceSubClass : 1=BOOT, 0=no boot */
  266. #endif
  267. #if !defined(RT_USB_DEVICE_HID_KEYBOARD)||!defined(RT_USB_DEVICE_HID_MOUSE)||!defined(RT_USB_DEVICE_HID_MEDIA)
  268. USB_HID_PROTOCOL_NONE, /* nInterfaceProtocol : 0=none, 1=keyboard, 2=mouse */
  269. #elif !defined(RT_USB_DEVICE_HID_MOUSE)
  270. USB_HID_PROTOCOL_KEYBOARD, /* nInterfaceProtocol : 0=none, 1=keyboard, 2=mouse */
  271. #else
  272. USB_HID_PROTOCOL_MOUSE, /* nInterfaceProtocol : 0=none, 1=keyboard, 2=mouse */
  273. #endif
  274. 0x00,
  275. },
  276. #endif
  277. /* Interface Descriptor */
  278. {
  279. USB_DESC_LENGTH_INTERFACE,
  280. USB_DESC_TYPE_INTERFACE,
  281. USB_DYNAMIC, /* bInterfaceNumber: Number of Interface */
  282. 0x00, /* bAlternateSetting: Alternate setting */
  283. 0x02, /* bNumEndpoints */
  284. 0x03, /* bInterfaceClass: HID */
  285. #if defined(RT_USB_DEVICE_HID_KEYBOARD)||defined(RT_USB_DEVICE_HID_MOUSE)
  286. USB_HID_SUBCLASS_BOOT, /* bInterfaceSubClass : 1=BOOT, 0=no boot */
  287. #else
  288. USB_HID_SUBCLASS_NOBOOT, /* bInterfaceSubClass : 1=BOOT, 0=no boot */
  289. #endif
  290. #if !defined(RT_USB_DEVICE_HID_KEYBOARD)||!defined(RT_USB_DEVICE_HID_MOUSE)||!defined(RT_USB_DEVICE_HID_MEDIA)
  291. USB_HID_PROTOCOL_NONE, /* nInterfaceProtocol : 0=none, 1=keyboard, 2=mouse */
  292. #elif !defined(RT_USB_DEVICE_HID_MOUSE)
  293. USB_HID_PROTOCOL_KEYBOARD, /* nInterfaceProtocol : 0=none, 1=keyboard, 2=mouse */
  294. #else
  295. USB_HID_PROTOCOL_MOUSE, /* nInterfaceProtocol : 0=none, 1=keyboard, 2=mouse */
  296. #endif
  297. 0, /* iInterface: Index of string descriptor */
  298. },
  299. /* HID Descriptor */
  300. {
  301. HID_DESCRIPTOR_SIZE, /* bLength: HID Descriptor size */
  302. HID_DESCRIPTOR_TYPE, /* bDescriptorType: HID */
  303. 0x0110, /* bcdHID: HID Class Spec release number */
  304. 0x00, /* bCountryCode: Hardware target country */
  305. 0x01, /* bNumDescriptors: Number of HID class descriptors to follow */
  306. {
  307. {
  308. 0x22, /* bDescriptorType */
  309. sizeof(_report_desc), /* wItemLength: Total length of Report descriptor */
  310. },
  311. },
  312. },
  313. /* Endpoint Descriptor IN */
  314. {
  315. USB_DESC_LENGTH_ENDPOINT,
  316. USB_DESC_TYPE_ENDPOINT,
  317. USB_DYNAMIC | USB_DIR_IN,
  318. USB_EP_ATTR_INT,
  319. 0x40,
  320. 0x01,
  321. },
  322. /* Endpoint Descriptor OUT */
  323. {
  324. USB_DESC_LENGTH_ENDPOINT,
  325. USB_DESC_TYPE_ENDPOINT,
  326. USB_DYNAMIC | USB_DIR_OUT,
  327. USB_EP_ATTR_INT,
  328. 0x40,
  329. 0x01,
  330. },
  331. };
  332. const static char* _ustring[] =
  333. {
  334. "Language",
  335. "RT-Thread Team.",
  336. "RTT HID-Device",
  337. "32021919830108",
  338. "Configuration",
  339. "Interface",
  340. };
  341. static void dump_data(uint8_t *data, rt_size_t size)
  342. {
  343. rt_size_t i;
  344. for (i = 0; i < size; i++)
  345. {
  346. rt_kprintf("%02x ", *data++);
  347. if ((i + 1) % 8 == 0)
  348. {
  349. rt_kprintf("\n");
  350. }else if ((i + 1) % 4 == 0){
  351. rt_kprintf(" ");
  352. }
  353. }
  354. }
  355. static void dump_report(struct hid_report * report)
  356. {
  357. rt_kprintf("\nHID Recived:");
  358. rt_kprintf("\nReport ID %02x \n", report->report_id);
  359. dump_data(report->report,report->size);
  360. }
  361. static rt_err_t _ep_out_handler(ufunction_t func, rt_size_t size)
  362. {
  363. struct hid_s *data;
  364. struct hid_report report;
  365. RT_ASSERT(func != RT_NULL);
  366. RT_ASSERT(func->device != RT_NULL);
  367. data = (struct hid_s *) func->user_data;
  368. if(size != 0)
  369. {
  370. rt_memcpy((void *)&report,(void*)data->ep_out->buffer,size);
  371. report.size = size-1;
  372. rt_mq_send(&data->hid_mq,(void *)&report,sizeof(report));
  373. }
  374. data->ep_out->request.buffer = data->ep_out->buffer;
  375. data->ep_out->request.size = EP_MAXPACKET(data->ep_out);
  376. data->ep_out->request.req_type = UIO_REQUEST_READ_BEST;
  377. rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
  378. return RT_EOK;
  379. }
  380. static rt_err_t _ep_in_handler(ufunction_t func, rt_size_t size)
  381. {
  382. struct hid_s *data;
  383. RT_ASSERT(func != RT_NULL);
  384. RT_ASSERT(func->device != RT_NULL);
  385. data = (struct hid_s *) func->user_data;
  386. if(data->parent.tx_complete != RT_NULL)
  387. {
  388. data->parent.tx_complete(&data->parent,RT_NULL);
  389. }
  390. return RT_EOK;
  391. }
  392. static rt_err_t _hid_set_report_callback(udevice_t device, rt_size_t size)
  393. {
  394. RT_DEBUG_LOG(RT_DEBUG_USB, ("_hid_set_report_callback\n"));
  395. if(size != 0)
  396. {
  397. }
  398. dcd_ep0_send_status(device->dcd);
  399. return RT_EOK;
  400. }
  401. /**
  402. * This function will handle hid interface bRequest.
  403. *
  404. * @param device the usb device object.
  405. * @param setup the setup bRequest.
  406. *
  407. * @return RT_EOK on successful.
  408. */
  409. static rt_err_t _interface_handler(ufunction_t func, ureq_t setup)
  410. {
  411. RT_ASSERT(func != RT_NULL);
  412. RT_ASSERT(func->device != RT_NULL);
  413. RT_ASSERT(setup != RT_NULL);
  414. struct hid_s *data = (struct hid_s *) func->user_data;
  415. if(setup->wIndex != 0)
  416. return -RT_EIO;
  417. switch (setup->bRequest)
  418. {
  419. case USB_REQ_GET_DESCRIPTOR:
  420. if((setup->wValue >> 8) == USB_DESC_TYPE_REPORT)
  421. {
  422. rt_usbd_ep0_write(func->device, (void *)(&_report_desc[0]), sizeof(_report_desc));
  423. }
  424. else if((setup->wValue >> 8) == USB_DESC_TYPE_HID)
  425. {
  426. rt_usbd_ep0_write(func->device, (void *)(&_hid_comm_desc.hid_desc), sizeof(struct uhid_descriptor));
  427. }
  428. break;
  429. case USB_HID_REQ_GET_REPORT:
  430. if(setup->wLength == 0)
  431. {
  432. rt_usbd_ep0_set_stall(func->device);
  433. break;
  434. }
  435. if((setup->wLength == 0) || (setup->wLength > MAX_REPORT_SIZE))
  436. setup->wLength = MAX_REPORT_SIZE;
  437. rt_usbd_ep0_write(func->device, data->report_buf,setup->wLength);
  438. break;
  439. case USB_HID_REQ_GET_IDLE:
  440. dcd_ep0_send_status(func->device->dcd);
  441. break;
  442. case USB_HID_REQ_GET_PROTOCOL:
  443. rt_usbd_ep0_write(func->device, &data->protocol,2);
  444. break;
  445. case USB_HID_REQ_SET_REPORT:
  446. if((setup->wLength == 0) || (setup->wLength > MAX_REPORT_SIZE))
  447. rt_usbd_ep0_set_stall(func->device);
  448. rt_usbd_ep0_read(func->device, data->report_buf, setup->wLength, _hid_set_report_callback);
  449. break;
  450. case USB_HID_REQ_SET_IDLE:
  451. dcd_ep0_send_status(func->device->dcd);
  452. break;
  453. case USB_HID_REQ_SET_PROTOCOL:
  454. data->protocol = setup->wValue;
  455. dcd_ep0_send_status(func->device->dcd);
  456. break;
  457. }
  458. return RT_EOK;
  459. }
  460. /**
  461. * This function will run cdc function, it will be called on handle set configuration bRequest.
  462. *
  463. * @param func the usb function object.
  464. *
  465. * @return RT_EOK on successful.
  466. */
  467. static rt_err_t _function_enable(ufunction_t func)
  468. {
  469. struct hid_s *data;
  470. RT_ASSERT(func != RT_NULL);
  471. RT_ASSERT(func->device != RT_NULL);
  472. data = (struct hid_s *) func->user_data;
  473. RT_DEBUG_LOG(RT_DEBUG_USB, ("hid function enable\n"));
  474. //
  475. // _vcom_reset_state(func);
  476. //
  477. if(data->ep_out->buffer == RT_NULL)
  478. {
  479. data->ep_out->buffer = rt_malloc(HID_RX_BUFSIZE);
  480. }
  481. data->ep_out->request.buffer = data->ep_out->buffer;
  482. data->ep_out->request.size = EP_MAXPACKET(data->ep_out);
  483. data->ep_out->request.req_type = UIO_REQUEST_READ_BEST;
  484. rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
  485. return RT_EOK;
  486. }
  487. /**
  488. * This function will stop cdc function, it will be called on handle set configuration bRequest.
  489. *
  490. * @param func the usb function object.
  491. *
  492. * @return RT_EOK on successful.
  493. */
  494. static rt_err_t _function_disable(ufunction_t func)
  495. {
  496. struct hid_s *data;
  497. RT_ASSERT(func != RT_NULL);
  498. RT_ASSERT(func->device != RT_NULL);
  499. data = (struct hid_s *) func->user_data;
  500. RT_DEBUG_LOG(RT_DEBUG_USB, ("hid function disable\n"));
  501. if(data->ep_out->buffer != RT_NULL)
  502. {
  503. rt_free(data->ep_out->buffer);
  504. data->ep_out->buffer = RT_NULL;
  505. }
  506. return RT_EOK;
  507. }
  508. static struct ufunction_ops ops =
  509. {
  510. _function_enable,
  511. _function_disable,
  512. RT_NULL,
  513. };
  514. /**
  515. * This function will configure hid descriptor.
  516. *
  517. * @param comm the communication interface number.
  518. * @param data the data interface number.
  519. *
  520. * @return RT_EOK on successful.
  521. */
  522. static rt_err_t _hid_descriptor_config(uhid_comm_desc_t hid, rt_uint8_t cintf_nr)
  523. {
  524. #ifdef RT_USB_DEVICE_COMPOSITE
  525. hid->iad_desc.bFirstInterface = cintf_nr;
  526. #endif
  527. return RT_EOK;
  528. }
  529. static rt_size_t _hid_write(rt_device_t dev, rt_off_t pos, const void *buffer, rt_size_t size)
  530. {
  531. struct hid_s *hiddev = (struct hid_s *)dev;
  532. struct hid_report report;
  533. if (hiddev->func->device->state == USB_STATE_CONFIGURED)
  534. {
  535. report.report_id = pos;
  536. rt_memcpy((void *)report.report,(void *)buffer,size);
  537. report.size = size;
  538. hiddev->ep_in->request.buffer = (void *)&report;
  539. hiddev->ep_in->request.size = (size+1) > 64 ? 64 : size+1;
  540. hiddev->ep_in->request.req_type = UIO_REQUEST_WRITE;
  541. rt_usbd_io_request(hiddev->func->device, hiddev->ep_in, &hiddev->ep_in->request);
  542. return size;
  543. }
  544. return 0;
  545. }
  546. RT_WEAK void HID_Report_Received(hid_report_t report)
  547. {
  548. dump_report(report);
  549. }
  550. ALIGN(RT_ALIGN_SIZE)
  551. static rt_uint8_t hid_thread_stack[512];
  552. static struct rt_thread hid_thread;
  553. static void hid_thread_entry(void* parameter)
  554. {
  555. struct hid_report report;
  556. struct hid_s *hiddev;
  557. hiddev = (struct hid_s *)parameter;
  558. while(1)
  559. {
  560. if(rt_mq_recv(&hiddev->hid_mq, &report, sizeof(report),RT_WAITING_FOREVER) != RT_EOK )
  561. continue;
  562. HID_Report_Received(&report);
  563. }
  564. }
  565. #ifdef RT_USING_DEVICE_OPS
  566. const static struct rt_device_ops hid_device_ops =
  567. {
  568. RT_NULL,
  569. RT_NULL,
  570. RT_NULL,
  571. RT_NULL,
  572. _hid_write,
  573. RT_NULL,
  574. };
  575. #endif
  576. static rt_uint8_t hid_mq_pool[(sizeof(struct hid_report)+sizeof(void*))*8];
  577. static void rt_usb_hid_init(struct ufunction *func)
  578. {
  579. struct hid_s *hiddev;
  580. hiddev = (struct hid_s *)func->user_data;
  581. rt_memset(&hiddev->parent, 0, sizeof(hiddev->parent));
  582. #ifdef RT_USING_DEVICE_OPS
  583. hiddev->parent.ops = &hid_device_ops;
  584. #else
  585. hiddev->parent.write = _hid_write;
  586. #endif
  587. hiddev->func = func;
  588. rt_device_register(&hiddev->parent, "hidd", RT_DEVICE_FLAG_RDWR);
  589. rt_mq_init(&hiddev->hid_mq, "hiddmq", hid_mq_pool, sizeof(struct hid_report),
  590. sizeof(hid_mq_pool), RT_IPC_FLAG_FIFO);
  591. rt_thread_init(&hid_thread, "hidd", hid_thread_entry, hiddev,
  592. hid_thread_stack, sizeof(hid_thread_stack), RT_USBD_THREAD_PRIO, 20);
  593. rt_thread_startup(&hid_thread);
  594. }
  595. /**
  596. * This function will create a hid function instance.
  597. *
  598. * @param device the usb device object.
  599. *
  600. * @return RT_EOK on successful.
  601. */
  602. ufunction_t rt_usbd_function_hid_create(udevice_t device)
  603. {
  604. ufunction_t func;
  605. struct hid_s *data;
  606. uintf_t hid_intf;
  607. ualtsetting_t hid_setting;
  608. uhid_comm_desc_t hid_desc;
  609. /* parameter check */
  610. RT_ASSERT(device != RT_NULL);
  611. /* set usb device string description */
  612. rt_usbd_device_set_string(device, _ustring);
  613. /* create a cdc function */
  614. func = rt_usbd_function_new(device, &_dev_desc, &ops);
  615. //not support hs
  616. //rt_usbd_device_set_qualifier(device, &_dev_qualifier);
  617. /* allocate memory for cdc vcom data */
  618. data = (struct hid_s*)rt_malloc(sizeof(struct hid_s));
  619. rt_memset(data, 0, sizeof(struct hid_s));
  620. func->user_data = (void*)data;
  621. /* create an interface object */
  622. hid_intf = rt_usbd_interface_new(device, _interface_handler);
  623. /* create an alternate setting object */
  624. hid_setting = rt_usbd_altsetting_new(sizeof(struct uhid_comm_descriptor));
  625. /* config desc in alternate setting */
  626. rt_usbd_altsetting_config_descriptor(hid_setting, &_hid_comm_desc, (rt_off_t)&((uhid_comm_desc_t)0)->intf_desc);
  627. /* configure the hid interface descriptor */
  628. _hid_descriptor_config(hid_setting->desc, hid_intf->intf_num);
  629. /* create endpoint */
  630. hid_desc = (uhid_comm_desc_t)hid_setting->desc;
  631. data->ep_out = rt_usbd_endpoint_new(&hid_desc->ep_out_desc, _ep_out_handler);
  632. data->ep_in = rt_usbd_endpoint_new(&hid_desc->ep_in_desc, _ep_in_handler);
  633. /* add the int out and int in endpoint to the alternate setting */
  634. rt_usbd_altsetting_add_endpoint(hid_setting, data->ep_out);
  635. rt_usbd_altsetting_add_endpoint(hid_setting, data->ep_in);
  636. /* add the alternate setting to the interface, then set default setting */
  637. rt_usbd_interface_add_altsetting(hid_intf, hid_setting);
  638. rt_usbd_set_altsetting(hid_intf, 0);
  639. /* add the interface to the mass storage function */
  640. rt_usbd_function_add_interface(func, hid_intf);
  641. /* initilize hid */
  642. rt_usb_hid_init(func);
  643. return func;
  644. }
  645. struct udclass hid_class =
  646. {
  647. .rt_usbd_function_create = rt_usbd_function_hid_create
  648. };
  649. int rt_usbd_hid_class_register(void)
  650. {
  651. rt_usbd_class_register(&hid_class);
  652. return 0;
  653. }
  654. INIT_PREV_EXPORT(rt_usbd_hid_class_register);
  655. #endif /* RT_USB_DEVICE_HID */