furi_hal_usb_hid.c 16 KB

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  1. #include "furi_hal_version.h"
  2. #include "furi_hal_usb_i.h"
  3. #include "furi_hal_usb.h"
  4. #include "furi_hal_usb_hid.h"
  5. #include <furi.h>
  6. #include "usb.h"
  7. #include "usb_hid.h"
  8. #define HID_EP_IN 0x81
  9. #define HID_EP_OUT 0x01
  10. #define HID_EP_SZ 0x10
  11. #define HID_KB_MAX_KEYS 6
  12. #define HID_CONSUMER_MAX_KEYS 2
  13. #define HID_INTERVAL 2
  14. #define HID_VID_DEFAULT 0x046D
  15. #define HID_PID_DEFAULT 0xC529
  16. struct HidIadDescriptor {
  17. struct usb_iad_descriptor hid_iad;
  18. struct usb_interface_descriptor hid;
  19. struct usb_hid_descriptor hid_desc;
  20. struct usb_endpoint_descriptor hid_ep_in;
  21. struct usb_endpoint_descriptor hid_ep_out;
  22. };
  23. struct HidConfigDescriptor {
  24. struct usb_config_descriptor config;
  25. struct HidIadDescriptor iad_0;
  26. } __attribute__((packed));
  27. enum HidReportId {
  28. ReportIdKeyboard = 1,
  29. ReportIdMouse = 2,
  30. ReportIdConsumer = 3,
  31. };
  32. /* HID report: keyboard+mouse */
  33. static const uint8_t hid_report_desc[] = {
  34. HID_USAGE_PAGE(HID_PAGE_DESKTOP),
  35. HID_USAGE(HID_DESKTOP_KEYBOARD),
  36. HID_COLLECTION(HID_APPLICATION_COLLECTION),
  37. HID_REPORT_ID(ReportIdKeyboard),
  38. HID_USAGE_PAGE(HID_DESKTOP_KEYPAD),
  39. HID_USAGE_MINIMUM(HID_KEYBOARD_L_CTRL),
  40. HID_USAGE_MAXIMUM(HID_KEYBOARD_R_GUI),
  41. HID_LOGICAL_MINIMUM(0),
  42. HID_LOGICAL_MAXIMUM(1),
  43. HID_REPORT_SIZE(1),
  44. HID_REPORT_COUNT(8),
  45. HID_INPUT(HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
  46. HID_REPORT_COUNT(1),
  47. HID_REPORT_SIZE(8),
  48. HID_INPUT(HID_IOF_CONSTANT | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
  49. HID_USAGE_PAGE(HID_PAGE_LED),
  50. HID_REPORT_COUNT(8),
  51. HID_REPORT_SIZE(1),
  52. HID_USAGE_MINIMUM(1),
  53. HID_USAGE_MAXIMUM(8),
  54. HID_OUTPUT(HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
  55. HID_REPORT_COUNT(HID_KB_MAX_KEYS),
  56. HID_REPORT_SIZE(8),
  57. HID_LOGICAL_MINIMUM(0),
  58. HID_LOGICAL_MAXIMUM(101),
  59. HID_USAGE_PAGE(HID_DESKTOP_KEYPAD),
  60. HID_USAGE_MINIMUM(0),
  61. HID_USAGE_MAXIMUM(101),
  62. HID_INPUT(HID_IOF_DATA | HID_IOF_ARRAY | HID_IOF_ABSOLUTE),
  63. HID_END_COLLECTION,
  64. HID_USAGE_PAGE(HID_PAGE_DESKTOP),
  65. HID_USAGE(HID_DESKTOP_MOUSE),
  66. HID_COLLECTION(HID_APPLICATION_COLLECTION),
  67. HID_USAGE(HID_DESKTOP_POINTER),
  68. HID_COLLECTION(HID_PHYSICAL_COLLECTION),
  69. HID_REPORT_ID(ReportIdMouse),
  70. HID_USAGE_PAGE(HID_PAGE_BUTTON),
  71. HID_USAGE_MINIMUM(1),
  72. HID_USAGE_MAXIMUM(3),
  73. HID_LOGICAL_MINIMUM(0),
  74. HID_LOGICAL_MAXIMUM(1),
  75. HID_REPORT_COUNT(3),
  76. HID_REPORT_SIZE(1),
  77. HID_INPUT(HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
  78. HID_REPORT_SIZE(1),
  79. HID_REPORT_COUNT(5),
  80. HID_INPUT(HID_IOF_CONSTANT | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
  81. HID_USAGE_PAGE(HID_PAGE_DESKTOP),
  82. HID_USAGE(HID_DESKTOP_X),
  83. HID_USAGE(HID_DESKTOP_Y),
  84. HID_USAGE(HID_DESKTOP_WHEEL),
  85. HID_LOGICAL_MINIMUM(-127),
  86. HID_LOGICAL_MAXIMUM(127),
  87. HID_REPORT_SIZE(8),
  88. HID_REPORT_COUNT(3),
  89. HID_INPUT(HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_RELATIVE),
  90. HID_END_COLLECTION,
  91. HID_END_COLLECTION,
  92. HID_USAGE_PAGE(HID_PAGE_CONSUMER),
  93. HID_USAGE(HID_CONSUMER_CONTROL),
  94. HID_COLLECTION(HID_APPLICATION_COLLECTION),
  95. HID_REPORT_ID(ReportIdConsumer),
  96. HID_LOGICAL_MINIMUM(0),
  97. HID_RI_LOGICAL_MAXIMUM(16, 0x3FF),
  98. HID_USAGE_MINIMUM(0),
  99. HID_RI_USAGE_MAXIMUM(16, 0x3FF),
  100. HID_REPORT_COUNT(HID_CONSUMER_MAX_KEYS),
  101. HID_REPORT_SIZE(16),
  102. HID_INPUT(HID_IOF_DATA | HID_IOF_ARRAY | HID_IOF_ABSOLUTE),
  103. HID_END_COLLECTION,
  104. };
  105. /* Device descriptor */
  106. static struct usb_device_descriptor hid_device_desc = {
  107. .bLength = sizeof(struct usb_device_descriptor),
  108. .bDescriptorType = USB_DTYPE_DEVICE,
  109. .bcdUSB = VERSION_BCD(2, 0, 0),
  110. .bDeviceClass = USB_CLASS_IAD,
  111. .bDeviceSubClass = USB_SUBCLASS_IAD,
  112. .bDeviceProtocol = USB_PROTO_IAD,
  113. .bMaxPacketSize0 = USB_EP0_SIZE,
  114. .idVendor = HID_VID_DEFAULT,
  115. .idProduct = HID_PID_DEFAULT,
  116. .bcdDevice = VERSION_BCD(1, 0, 0),
  117. .iManufacturer = 0,
  118. .iProduct = 0,
  119. .iSerialNumber = 0,
  120. .bNumConfigurations = 1,
  121. };
  122. /* Device configuration descriptor */
  123. static const struct HidConfigDescriptor hid_cfg_desc = {
  124. .config =
  125. {
  126. .bLength = sizeof(struct usb_config_descriptor),
  127. .bDescriptorType = USB_DTYPE_CONFIGURATION,
  128. .wTotalLength = sizeof(struct HidConfigDescriptor),
  129. .bNumInterfaces = 1,
  130. .bConfigurationValue = 1,
  131. .iConfiguration = NO_DESCRIPTOR,
  132. .bmAttributes = USB_CFG_ATTR_RESERVED | USB_CFG_ATTR_SELFPOWERED,
  133. .bMaxPower = USB_CFG_POWER_MA(100),
  134. },
  135. .iad_0 =
  136. {
  137. .hid_iad =
  138. {
  139. .bLength = sizeof(struct usb_iad_descriptor),
  140. .bDescriptorType = USB_DTYPE_INTERFASEASSOC,
  141. .bFirstInterface = 0,
  142. .bInterfaceCount = 1,
  143. .bFunctionClass = USB_CLASS_PER_INTERFACE,
  144. .bFunctionSubClass = USB_SUBCLASS_NONE,
  145. .bFunctionProtocol = USB_PROTO_NONE,
  146. .iFunction = NO_DESCRIPTOR,
  147. },
  148. .hid =
  149. {
  150. .bLength = sizeof(struct usb_interface_descriptor),
  151. .bDescriptorType = USB_DTYPE_INTERFACE,
  152. .bInterfaceNumber = 0,
  153. .bAlternateSetting = 0,
  154. .bNumEndpoints = 2,
  155. .bInterfaceClass = USB_CLASS_HID,
  156. .bInterfaceSubClass = USB_HID_SUBCLASS_NONBOOT,
  157. .bInterfaceProtocol = USB_HID_PROTO_NONBOOT,
  158. .iInterface = NO_DESCRIPTOR,
  159. },
  160. .hid_desc =
  161. {
  162. .bLength = sizeof(struct usb_hid_descriptor),
  163. .bDescriptorType = USB_DTYPE_HID,
  164. .bcdHID = VERSION_BCD(1, 0, 0),
  165. .bCountryCode = USB_HID_COUNTRY_NONE,
  166. .bNumDescriptors = 1,
  167. .bDescriptorType0 = USB_DTYPE_HID_REPORT,
  168. .wDescriptorLength0 = sizeof(hid_report_desc),
  169. },
  170. .hid_ep_in =
  171. {
  172. .bLength = sizeof(struct usb_endpoint_descriptor),
  173. .bDescriptorType = USB_DTYPE_ENDPOINT,
  174. .bEndpointAddress = HID_EP_IN,
  175. .bmAttributes = USB_EPTYPE_INTERRUPT,
  176. .wMaxPacketSize = HID_EP_SZ,
  177. .bInterval = HID_INTERVAL,
  178. },
  179. .hid_ep_out =
  180. {
  181. .bLength = sizeof(struct usb_endpoint_descriptor),
  182. .bDescriptorType = USB_DTYPE_ENDPOINT,
  183. .bEndpointAddress = HID_EP_OUT,
  184. .bmAttributes = USB_EPTYPE_INTERRUPT,
  185. .wMaxPacketSize = HID_EP_SZ,
  186. .bInterval = HID_INTERVAL,
  187. },
  188. },
  189. };
  190. struct HidReportMouse {
  191. uint8_t report_id;
  192. uint8_t btn;
  193. int8_t x;
  194. int8_t y;
  195. int8_t wheel;
  196. } __attribute__((packed));
  197. struct HidReportKB {
  198. uint8_t report_id;
  199. uint8_t mods;
  200. uint8_t reserved;
  201. uint8_t btn[HID_KB_MAX_KEYS];
  202. } __attribute__((packed));
  203. struct HidReportConsumer {
  204. uint8_t report_id;
  205. uint16_t btn[HID_CONSUMER_MAX_KEYS];
  206. } __attribute__((packed));
  207. struct HidReportLED {
  208. uint8_t report_id;
  209. uint8_t led_state;
  210. } __attribute__((packed));
  211. static struct HidReport {
  212. struct HidReportKB keyboard;
  213. struct HidReportMouse mouse;
  214. struct HidReportConsumer consumer;
  215. } __attribute__((packed)) hid_report;
  216. static void hid_init(usbd_device* dev, FuriHalUsbInterface* intf, void* ctx);
  217. static void hid_deinit(usbd_device* dev);
  218. static void hid_on_wakeup(usbd_device* dev);
  219. static void hid_on_suspend(usbd_device* dev);
  220. FuriHalUsbInterface usb_hid = {
  221. .init = hid_init,
  222. .deinit = hid_deinit,
  223. .wakeup = hid_on_wakeup,
  224. .suspend = hid_on_suspend,
  225. .dev_descr = (struct usb_device_descriptor*)&hid_device_desc,
  226. .str_manuf_descr = NULL,
  227. .str_prod_descr = NULL,
  228. .str_serial_descr = NULL,
  229. .cfg_descr = (void*)&hid_cfg_desc,
  230. };
  231. static bool hid_send_report(uint8_t report_id);
  232. static usbd_respond hid_ep_config(usbd_device* dev, uint8_t cfg);
  233. static usbd_respond hid_control(usbd_device* dev, usbd_ctlreq* req, usbd_rqc_callback* callback);
  234. static usbd_device* usb_dev;
  235. static FuriSemaphore* hid_semaphore = NULL;
  236. static bool hid_connected = false;
  237. static HidStateCallback callback;
  238. static void* cb_ctx;
  239. static uint8_t led_state;
  240. bool furi_hal_hid_is_connected() {
  241. return hid_connected;
  242. }
  243. uint8_t furi_hal_hid_get_led_state() {
  244. return led_state;
  245. }
  246. void furi_hal_hid_set_state_callback(HidStateCallback cb, void* ctx) {
  247. if(callback != NULL) {
  248. if(hid_connected == true) callback(false, cb_ctx);
  249. }
  250. callback = cb;
  251. cb_ctx = ctx;
  252. if(callback != NULL) {
  253. if(hid_connected == true) callback(true, cb_ctx);
  254. }
  255. }
  256. bool furi_hal_hid_kb_press(uint16_t button) {
  257. for(uint8_t key_nb = 0; key_nb < HID_KB_MAX_KEYS; key_nb++) {
  258. if(hid_report.keyboard.btn[key_nb] == 0) {
  259. hid_report.keyboard.btn[key_nb] = button & 0xFF;
  260. break;
  261. }
  262. }
  263. hid_report.keyboard.mods |= (button >> 8);
  264. return hid_send_report(ReportIdKeyboard);
  265. }
  266. bool furi_hal_hid_kb_release(uint16_t button) {
  267. for(uint8_t key_nb = 0; key_nb < HID_KB_MAX_KEYS; key_nb++) {
  268. if(hid_report.keyboard.btn[key_nb] == (button & 0xFF)) {
  269. hid_report.keyboard.btn[key_nb] = 0;
  270. break;
  271. }
  272. }
  273. hid_report.keyboard.mods &= ~(button >> 8);
  274. return hid_send_report(ReportIdKeyboard);
  275. }
  276. bool furi_hal_hid_kb_release_all() {
  277. for(uint8_t key_nb = 0; key_nb < HID_KB_MAX_KEYS; key_nb++) {
  278. hid_report.keyboard.btn[key_nb] = 0;
  279. }
  280. hid_report.keyboard.mods = 0;
  281. return hid_send_report(ReportIdKeyboard);
  282. }
  283. bool furi_hal_hid_mouse_move(int8_t dx, int8_t dy) {
  284. hid_report.mouse.x = dx;
  285. hid_report.mouse.y = dy;
  286. bool state = hid_send_report(ReportIdMouse);
  287. hid_report.mouse.x = 0;
  288. hid_report.mouse.y = 0;
  289. return state;
  290. }
  291. bool furi_hal_hid_mouse_press(uint8_t button) {
  292. hid_report.mouse.btn |= button;
  293. return hid_send_report(ReportIdMouse);
  294. }
  295. bool furi_hal_hid_mouse_release(uint8_t button) {
  296. hid_report.mouse.btn &= ~button;
  297. return hid_send_report(ReportIdMouse);
  298. }
  299. bool furi_hal_hid_mouse_scroll(int8_t delta) {
  300. hid_report.mouse.wheel = delta;
  301. bool state = hid_send_report(ReportIdMouse);
  302. hid_report.mouse.wheel = 0;
  303. return state;
  304. }
  305. bool furi_hal_hid_consumer_key_press(uint16_t button) {
  306. for(uint8_t key_nb = 0; key_nb < HID_CONSUMER_MAX_KEYS; key_nb++) {
  307. if(hid_report.consumer.btn[key_nb] == 0) {
  308. hid_report.consumer.btn[key_nb] = button;
  309. break;
  310. }
  311. }
  312. return hid_send_report(ReportIdConsumer);
  313. }
  314. bool furi_hal_hid_consumer_key_release(uint16_t button) {
  315. for(uint8_t key_nb = 0; key_nb < HID_CONSUMER_MAX_KEYS; key_nb++) {
  316. if(hid_report.consumer.btn[key_nb] == button) {
  317. hid_report.consumer.btn[key_nb] = 0;
  318. break;
  319. }
  320. }
  321. return hid_send_report(ReportIdConsumer);
  322. }
  323. static void* hid_set_string_descr(char* str) {
  324. furi_assert(str);
  325. uint8_t len = strlen(str);
  326. struct usb_string_descriptor* dev_str_desc = malloc(len * 2 + 2);
  327. dev_str_desc->bLength = len * 2 + 2;
  328. dev_str_desc->bDescriptorType = USB_DTYPE_STRING;
  329. for(uint8_t i = 0; i < len; i++) dev_str_desc->wString[i] = str[i];
  330. return dev_str_desc;
  331. }
  332. static void hid_init(usbd_device* dev, FuriHalUsbInterface* intf, void* ctx) {
  333. UNUSED(intf);
  334. FuriHalUsbHidConfig* cfg = (FuriHalUsbHidConfig*)ctx;
  335. if(hid_semaphore == NULL) hid_semaphore = furi_semaphore_alloc(1, 1);
  336. usb_dev = dev;
  337. hid_report.keyboard.report_id = ReportIdKeyboard;
  338. hid_report.mouse.report_id = ReportIdMouse;
  339. hid_report.consumer.report_id = ReportIdConsumer;
  340. usb_hid.dev_descr->iManufacturer = 0;
  341. usb_hid.dev_descr->iProduct = 0;
  342. usb_hid.str_manuf_descr = NULL;
  343. usb_hid.str_prod_descr = NULL;
  344. usb_hid.dev_descr->idVendor = HID_VID_DEFAULT;
  345. usb_hid.dev_descr->idProduct = HID_PID_DEFAULT;
  346. if(cfg != NULL) {
  347. usb_hid.dev_descr->idVendor = cfg->vid;
  348. usb_hid.dev_descr->idProduct = cfg->pid;
  349. if(cfg->manuf[0] != '\0') {
  350. usb_hid.str_manuf_descr = hid_set_string_descr(cfg->manuf);
  351. usb_hid.dev_descr->iManufacturer = UsbDevManuf;
  352. }
  353. if(cfg->product[0] != '\0') {
  354. usb_hid.str_prod_descr = hid_set_string_descr(cfg->product);
  355. usb_hid.dev_descr->iProduct = UsbDevProduct;
  356. }
  357. }
  358. usbd_reg_config(dev, hid_ep_config);
  359. usbd_reg_control(dev, hid_control);
  360. usbd_connect(dev, true);
  361. }
  362. static void hid_deinit(usbd_device* dev) {
  363. usbd_reg_config(dev, NULL);
  364. usbd_reg_control(dev, NULL);
  365. free(usb_hid.str_manuf_descr);
  366. free(usb_hid.str_prod_descr);
  367. }
  368. static void hid_on_wakeup(usbd_device* dev) {
  369. UNUSED(dev);
  370. if(!hid_connected) {
  371. hid_connected = true;
  372. if(callback != NULL) {
  373. callback(true, cb_ctx);
  374. }
  375. }
  376. }
  377. static void hid_on_suspend(usbd_device* dev) {
  378. UNUSED(dev);
  379. if(hid_connected) {
  380. hid_connected = false;
  381. furi_semaphore_release(hid_semaphore);
  382. if(callback != NULL) {
  383. callback(false, cb_ctx);
  384. }
  385. }
  386. }
  387. static bool hid_send_report(uint8_t report_id) {
  388. if((hid_semaphore == NULL) || (hid_connected == false)) return false;
  389. furi_check(furi_semaphore_acquire(hid_semaphore, FuriWaitForever) == FuriStatusOk);
  390. if(hid_connected == true) {
  391. if(report_id == ReportIdKeyboard)
  392. usbd_ep_write(usb_dev, HID_EP_IN, &hid_report.keyboard, sizeof(hid_report.keyboard));
  393. else if(report_id == ReportIdMouse)
  394. usbd_ep_write(usb_dev, HID_EP_IN, &hid_report.mouse, sizeof(hid_report.mouse));
  395. else if(report_id == ReportIdConsumer)
  396. usbd_ep_write(usb_dev, HID_EP_IN, &hid_report.consumer, sizeof(hid_report.consumer));
  397. return true;
  398. }
  399. return false;
  400. }
  401. static void hid_txrx_ep_callback(usbd_device* dev, uint8_t event, uint8_t ep) {
  402. UNUSED(dev);
  403. if(event == usbd_evt_eptx) {
  404. furi_semaphore_release(hid_semaphore);
  405. } else {
  406. struct HidReportLED leds;
  407. usbd_ep_read(usb_dev, ep, &leds, 2);
  408. led_state = leds.led_state;
  409. }
  410. }
  411. /* Configure endpoints */
  412. static usbd_respond hid_ep_config(usbd_device* dev, uint8_t cfg) {
  413. switch(cfg) {
  414. case 0:
  415. /* deconfiguring device */
  416. usbd_ep_deconfig(dev, HID_EP_OUT);
  417. usbd_ep_deconfig(dev, HID_EP_IN);
  418. usbd_reg_endpoint(dev, HID_EP_OUT, 0);
  419. usbd_reg_endpoint(dev, HID_EP_IN, 0);
  420. return usbd_ack;
  421. case 1:
  422. /* configuring device */
  423. usbd_ep_config(dev, HID_EP_IN, USB_EPTYPE_INTERRUPT, HID_EP_SZ);
  424. usbd_ep_config(dev, HID_EP_OUT, USB_EPTYPE_INTERRUPT, HID_EP_SZ);
  425. usbd_reg_endpoint(dev, HID_EP_IN, hid_txrx_ep_callback);
  426. usbd_reg_endpoint(dev, HID_EP_OUT, hid_txrx_ep_callback);
  427. usbd_ep_write(dev, HID_EP_IN, 0, 0);
  428. return usbd_ack;
  429. default:
  430. return usbd_fail;
  431. }
  432. }
  433. /* Control requests handler */
  434. static usbd_respond hid_control(usbd_device* dev, usbd_ctlreq* req, usbd_rqc_callback* callback) {
  435. UNUSED(callback);
  436. /* HID control requests */
  437. if(((USB_REQ_RECIPIENT | USB_REQ_TYPE) & req->bmRequestType) ==
  438. (USB_REQ_INTERFACE | USB_REQ_CLASS) &&
  439. req->wIndex == 0) {
  440. switch(req->bRequest) {
  441. case USB_HID_SETIDLE:
  442. return usbd_ack;
  443. case USB_HID_GETREPORT:
  444. dev->status.data_ptr = &hid_report;
  445. dev->status.data_count = sizeof(hid_report);
  446. return usbd_ack;
  447. default:
  448. return usbd_fail;
  449. }
  450. }
  451. if(((USB_REQ_RECIPIENT | USB_REQ_TYPE) & req->bmRequestType) ==
  452. (USB_REQ_INTERFACE | USB_REQ_STANDARD) &&
  453. req->wIndex == 0 && req->bRequest == USB_STD_GET_DESCRIPTOR) {
  454. switch(req->wValue >> 8) {
  455. case USB_DTYPE_HID:
  456. dev->status.data_ptr = (uint8_t*)&(hid_cfg_desc.iad_0.hid_desc);
  457. dev->status.data_count = sizeof(hid_cfg_desc.iad_0.hid_desc);
  458. return usbd_ack;
  459. case USB_DTYPE_HID_REPORT:
  460. dev->status.data_ptr = (uint8_t*)hid_report_desc;
  461. dev->status.data_count = sizeof(hid_report_desc);
  462. return usbd_ack;
  463. default:
  464. return usbd_fail;
  465. }
  466. }
  467. return usbd_fail;
  468. }