usb_main.c 34 KB

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  1. /*
  2. * (c) 2015 flabberast <s3+flabbergast@sdfeu.org>
  3. *
  4. * Based on the following work:
  5. * - Guillaume Duc's raw hid example (MIT License)
  6. * https://github.com/guiduc/usb-hid-chibios-example
  7. * - PJRC Teensy examples (MIT License)
  8. * https://www.pjrc.com/teensy/usb_keyboard.html
  9. * - hasu's TMK keyboard code (GPL v2 and some code Modified BSD)
  10. * https://github.com/tmk/tmk_keyboard/
  11. * - ChibiOS demo code (Apache 2.0 License)
  12. * http://www.chibios.org
  13. *
  14. * Since some GPL'd code is used, this work is licensed under
  15. * GPL v2 or later.
  16. */
  17. #include "ch.h"
  18. #include "hal.h"
  19. #include "usb_main.h"
  20. #include "host.h"
  21. #include "debug.h"
  22. #include "suspend.h"
  23. #ifdef SLEEP_LED_ENABLE
  24. # include "sleep_led.h"
  25. # include "led.h"
  26. #endif
  27. #include "wait.h"
  28. #include "usb_descriptor.h"
  29. #include "usb_driver.h"
  30. #ifdef NKRO_ENABLE
  31. # include "keycode_config.h"
  32. extern keymap_config_t keymap_config;
  33. #endif
  34. /* ---------------------------------------------------------
  35. * Global interface variables and declarations
  36. * ---------------------------------------------------------
  37. */
  38. #ifndef usb_lld_connect_bus
  39. # define usb_lld_connect_bus(usbp)
  40. #endif
  41. #ifndef usb_lld_disconnect_bus
  42. # define usb_lld_disconnect_bus(usbp)
  43. #endif
  44. uint8_t keyboard_idle __attribute__((aligned(2))) = 0;
  45. uint8_t keyboard_protocol __attribute__((aligned(2))) = 1;
  46. uint16_t keyboard_led_stats __attribute__((aligned(2))) = 0;
  47. volatile uint16_t keyboard_idle_count = 0;
  48. static virtual_timer_t keyboard_idle_timer;
  49. static void keyboard_idle_timer_cb(void *arg);
  50. report_keyboard_t keyboard_report_sent = {{0}};
  51. #ifdef MOUSE_ENABLE
  52. report_mouse_t mouse_report_blank = {0};
  53. #endif /* MOUSE_ENABLE */
  54. #ifdef EXTRAKEY_ENABLE
  55. uint8_t extra_report_blank[3] = {0};
  56. #endif /* EXTRAKEY_ENABLE */
  57. /* ---------------------------------------------------------
  58. * Descriptors and USB driver objects
  59. * ---------------------------------------------------------
  60. */
  61. /* HID specific constants */
  62. #define HID_GET_REPORT 0x01
  63. #define HID_GET_IDLE 0x02
  64. #define HID_GET_PROTOCOL 0x03
  65. #define HID_SET_REPORT 0x09
  66. #define HID_SET_IDLE 0x0A
  67. #define HID_SET_PROTOCOL 0x0B
  68. /*
  69. * Handles the GET_DESCRIPTOR callback
  70. *
  71. * Returns the proper descriptor
  72. */
  73. static const USBDescriptor *usb_get_descriptor_cb(USBDriver *usbp, uint8_t dtype, uint8_t dindex, uint16_t wIndex) {
  74. (void)usbp;
  75. static USBDescriptor desc;
  76. uint16_t wValue = ((uint16_t)dtype << 8) | dindex;
  77. desc.ud_string = NULL;
  78. desc.ud_size = get_usb_descriptor(wValue, wIndex, (const void **const) & desc.ud_string);
  79. if (desc.ud_string == NULL)
  80. return NULL;
  81. else
  82. return &desc;
  83. }
  84. #ifndef KEYBOARD_SHARED_EP
  85. /* keyboard endpoint state structure */
  86. static USBInEndpointState kbd_ep_state;
  87. /* keyboard endpoint initialization structure (IN) */
  88. static const USBEndpointConfig kbd_ep_config = {
  89. USB_EP_MODE_TYPE_INTR, /* Interrupt EP */
  90. NULL, /* SETUP packet notification callback */
  91. kbd_in_cb, /* IN notification callback */
  92. NULL, /* OUT notification callback */
  93. KEYBOARD_EPSIZE, /* IN maximum packet size */
  94. 0, /* OUT maximum packet size */
  95. &kbd_ep_state, /* IN Endpoint state */
  96. NULL, /* OUT endpoint state */
  97. 2, /* IN multiplier */
  98. NULL /* SETUP buffer (not a SETUP endpoint) */
  99. };
  100. #endif
  101. #if defined(MOUSE_ENABLE) && !defined(MOUSE_SHARED_EP)
  102. /* mouse endpoint state structure */
  103. static USBInEndpointState mouse_ep_state;
  104. /* mouse endpoint initialization structure (IN) */
  105. static const USBEndpointConfig mouse_ep_config = {
  106. USB_EP_MODE_TYPE_INTR, /* Interrupt EP */
  107. NULL, /* SETUP packet notification callback */
  108. mouse_in_cb, /* IN notification callback */
  109. NULL, /* OUT notification callback */
  110. MOUSE_EPSIZE, /* IN maximum packet size */
  111. 0, /* OUT maximum packet size */
  112. &mouse_ep_state, /* IN Endpoint state */
  113. NULL, /* OUT endpoint state */
  114. 2, /* IN multiplier */
  115. NULL /* SETUP buffer (not a SETUP endpoint) */
  116. };
  117. #endif
  118. #ifdef SHARED_EP_ENABLE
  119. /* shared endpoint state structure */
  120. static USBInEndpointState shared_ep_state;
  121. /* shared endpoint initialization structure (IN) */
  122. static const USBEndpointConfig shared_ep_config = {
  123. USB_EP_MODE_TYPE_INTR, /* Interrupt EP */
  124. NULL, /* SETUP packet notification callback */
  125. shared_in_cb, /* IN notification callback */
  126. NULL, /* OUT notification callback */
  127. SHARED_EPSIZE, /* IN maximum packet size */
  128. 0, /* OUT maximum packet size */
  129. &shared_ep_state, /* IN Endpoint state */
  130. NULL, /* OUT endpoint state */
  131. 2, /* IN multiplier */
  132. NULL /* SETUP buffer (not a SETUP endpoint) */
  133. };
  134. #endif
  135. typedef struct {
  136. size_t queue_capacity_in;
  137. size_t queue_capacity_out;
  138. USBInEndpointState in_ep_state;
  139. USBOutEndpointState out_ep_state;
  140. USBInEndpointState int_ep_state;
  141. USBEndpointConfig in_ep_config;
  142. USBEndpointConfig out_ep_config;
  143. USBEndpointConfig int_ep_config;
  144. const QMKUSBConfig config;
  145. QMKUSBDriver driver;
  146. } usb_driver_config_t;
  147. #define QMK_USB_DRIVER_CONFIG(stream, notification, fixedsize) \
  148. { \
  149. .queue_capacity_in = stream##_IN_CAPACITY, .queue_capacity_out = stream##_OUT_CAPACITY, \
  150. .in_ep_config = {.ep_mode = stream##_IN_MODE, \
  151. .setup_cb = NULL, \
  152. .in_cb = qmkusbDataTransmitted, \
  153. .out_cb = NULL, \
  154. .in_maxsize = stream##_EPSIZE, \
  155. .out_maxsize = 0, /* The pointer to the states will be filled during initialization */ \
  156. .in_state = NULL, \
  157. .out_state = NULL, \
  158. .ep_buffers = 2, \
  159. .setup_buf = NULL}, \
  160. .out_ep_config = \
  161. { \
  162. .ep_mode = stream##_OUT_MODE, \
  163. .setup_cb = NULL, \
  164. .in_cb = NULL, \
  165. .out_cb = qmkusbDataReceived, \
  166. .in_maxsize = 0, \
  167. .out_maxsize = stream##_EPSIZE, /* The pointer to the states will be filled during initialization */ \
  168. .in_state = NULL, \
  169. .out_state = NULL, \
  170. .ep_buffers = 2, \
  171. .setup_buf = NULL, \
  172. }, \
  173. .int_ep_config = \
  174. { \
  175. .ep_mode = USB_EP_MODE_TYPE_INTR, \
  176. .setup_cb = NULL, \
  177. .in_cb = qmkusbInterruptTransmitted, \
  178. .out_cb = NULL, \
  179. .in_maxsize = CDC_NOTIFICATION_EPSIZE, \
  180. .out_maxsize = 0, /* The pointer to the states will be filled during initialization */ \
  181. .in_state = NULL, \
  182. .out_state = NULL, \
  183. .ep_buffers = 2, \
  184. .setup_buf = NULL, \
  185. }, \
  186. .config = { \
  187. .usbp = &USB_DRIVER, \
  188. .bulk_in = stream##_IN_EPNUM, \
  189. .bulk_out = stream##_OUT_EPNUM, \
  190. .int_in = notification, \
  191. .in_buffers = stream##_IN_CAPACITY, \
  192. .out_buffers = stream##_OUT_CAPACITY, \
  193. .in_size = stream##_EPSIZE, \
  194. .out_size = stream##_EPSIZE, \
  195. .fixed_size = fixedsize, \
  196. .ib = (uint8_t[BQ_BUFFER_SIZE(stream##_IN_CAPACITY, stream##_EPSIZE)]){}, \
  197. .ob = (uint8_t[BQ_BUFFER_SIZE(stream##_OUT_CAPACITY, stream##_EPSIZE)]){}, \
  198. } \
  199. }
  200. typedef struct {
  201. union {
  202. struct {
  203. #ifdef CONSOLE_ENABLE
  204. usb_driver_config_t console_driver;
  205. #endif
  206. #ifdef RAW_ENABLE
  207. usb_driver_config_t raw_driver;
  208. #endif
  209. #ifdef MIDI_ENABLE
  210. usb_driver_config_t midi_driver;
  211. #endif
  212. #ifdef VIRTSER_ENABLE
  213. usb_driver_config_t serial_driver;
  214. #endif
  215. };
  216. usb_driver_config_t array[0];
  217. };
  218. } usb_driver_configs_t;
  219. static usb_driver_configs_t drivers = {
  220. #ifdef CONSOLE_ENABLE
  221. # define CONSOLE_IN_CAPACITY 4
  222. # define CONSOLE_OUT_CAPACITY 4
  223. # define CONSOLE_IN_MODE USB_EP_MODE_TYPE_INTR
  224. # define CONSOLE_OUT_MODE USB_EP_MODE_TYPE_INTR
  225. .console_driver = QMK_USB_DRIVER_CONFIG(CONSOLE, 0, true),
  226. #endif
  227. #ifdef RAW_ENABLE
  228. # define RAW_IN_CAPACITY 4
  229. # define RAW_OUT_CAPACITY 4
  230. # define RAW_IN_MODE USB_EP_MODE_TYPE_INTR
  231. # define RAW_OUT_MODE USB_EP_MODE_TYPE_INTR
  232. .raw_driver = QMK_USB_DRIVER_CONFIG(RAW, 0, false),
  233. #endif
  234. #ifdef MIDI_ENABLE
  235. # define MIDI_STREAM_IN_CAPACITY 4
  236. # define MIDI_STREAM_OUT_CAPACITY 4
  237. # define MIDI_STREAM_IN_MODE USB_EP_MODE_TYPE_BULK
  238. # define MIDI_STREAM_OUT_MODE USB_EP_MODE_TYPE_BULK
  239. .midi_driver = QMK_USB_DRIVER_CONFIG(MIDI_STREAM, 0, false),
  240. #endif
  241. #ifdef VIRTSER_ENABLE
  242. # define CDC_IN_CAPACITY 4
  243. # define CDC_OUT_CAPACITY 4
  244. # define CDC_IN_MODE USB_EP_MODE_TYPE_BULK
  245. # define CDC_OUT_MODE USB_EP_MODE_TYPE_BULK
  246. .serial_driver = QMK_USB_DRIVER_CONFIG(CDC, CDC_NOTIFICATION_EPNUM, false),
  247. #endif
  248. };
  249. #define NUM_USB_DRIVERS (sizeof(drivers) / sizeof(usb_driver_config_t))
  250. /* ---------------------------------------------------------
  251. * USB driver functions
  252. * ---------------------------------------------------------
  253. */
  254. /* Handles the USB driver global events
  255. * TODO: maybe disable some things when connection is lost? */
  256. static void usb_event_cb(USBDriver *usbp, usbevent_t event) {
  257. switch (event) {
  258. case USB_EVENT_ADDRESS:
  259. return;
  260. case USB_EVENT_CONFIGURED:
  261. osalSysLockFromISR();
  262. /* Enable the endpoints specified into the configuration. */
  263. #ifndef KEYBOARD_SHARED_EP
  264. usbInitEndpointI(usbp, KEYBOARD_IN_EPNUM, &kbd_ep_config);
  265. #endif
  266. #if defined(MOUSE_ENABLE) && !defined(MOUSE_SHARED_EP)
  267. usbInitEndpointI(usbp, MOUSE_IN_EPNUM, &mouse_ep_config);
  268. #endif
  269. #ifdef SHARED_EP_ENABLE
  270. usbInitEndpointI(usbp, SHARED_IN_EPNUM, &shared_ep_config);
  271. #endif
  272. for (int i = 0; i < NUM_USB_DRIVERS; i++) {
  273. usbInitEndpointI(usbp, drivers.array[i].config.bulk_in, &drivers.array[i].in_ep_config);
  274. usbInitEndpointI(usbp, drivers.array[i].config.bulk_out, &drivers.array[i].out_ep_config);
  275. if (drivers.array[i].config.int_in) {
  276. usbInitEndpointI(usbp, drivers.array[i].config.int_in, &drivers.array[i].int_ep_config);
  277. }
  278. qmkusbConfigureHookI(&drivers.array[i].driver);
  279. }
  280. osalSysUnlockFromISR();
  281. return;
  282. case USB_EVENT_SUSPEND:
  283. #ifdef SLEEP_LED_ENABLE
  284. sleep_led_enable();
  285. #endif /* SLEEP_LED_ENABLE */
  286. /* Falls into.*/
  287. case USB_EVENT_UNCONFIGURED:
  288. /* Falls into.*/
  289. case USB_EVENT_RESET:
  290. for (int i = 0; i < NUM_USB_DRIVERS; i++) {
  291. chSysLockFromISR();
  292. /* Disconnection event on suspend.*/
  293. qmkusbSuspendHookI(&drivers.array[i].driver);
  294. chSysUnlockFromISR();
  295. }
  296. return;
  297. case USB_EVENT_WAKEUP:
  298. // TODO: from ISR! print("[W]");
  299. for (int i = 0; i < NUM_USB_DRIVERS; i++) {
  300. chSysLockFromISR();
  301. /* Disconnection event on suspend.*/
  302. qmkusbWakeupHookI(&drivers.array[i].driver);
  303. chSysUnlockFromISR();
  304. }
  305. suspend_wakeup_init();
  306. #ifdef SLEEP_LED_ENABLE
  307. sleep_led_disable();
  308. // NOTE: converters may not accept this
  309. led_set(host_keyboard_leds());
  310. #endif /* SLEEP_LED_ENABLE */
  311. return;
  312. case USB_EVENT_STALLED:
  313. return;
  314. }
  315. }
  316. /* Function used locally in os/hal/src/usb.c for getting descriptors
  317. * need it here for HID descriptor */
  318. static uint16_t get_hword(uint8_t *p) {
  319. uint16_t hw;
  320. hw = (uint16_t)*p++;
  321. hw |= (uint16_t)*p << 8U;
  322. return hw;
  323. }
  324. /*
  325. * Appendix G: HID Request Support Requirements
  326. *
  327. * The following table enumerates the requests that need to be supported by various types of HID class devices.
  328. * Device type GetReport SetReport GetIdle SetIdle GetProtocol SetProtocol
  329. * ------------------------------------------------------------------------------------------
  330. * Boot Mouse Required Optional Optional Optional Required Required
  331. * Non-Boot Mouse Required Optional Optional Optional Optional Optional
  332. * Boot Keyboard Required Optional Required Required Required Required
  333. * Non-Boot Keybrd Required Optional Required Required Optional Optional
  334. * Other Device Required Optional Optional Optional Optional Optional
  335. */
  336. #ifdef SHARED_EP_ENABLE
  337. static uint8_t set_report_buf[2] __attribute__((aligned(2)));
  338. static void set_led_transfer_cb(USBDriver *usbp) {
  339. if ((set_report_buf[0] == REPORT_ID_KEYBOARD) || (set_report_buf[0] == REPORT_ID_NKRO)) {
  340. keyboard_led_stats = set_report_buf[1];
  341. }
  342. }
  343. #endif
  344. /* Callback for SETUP request on the endpoint 0 (control) */
  345. static bool usb_request_hook_cb(USBDriver *usbp) {
  346. const USBDescriptor *dp;
  347. int has_report_id;
  348. /* usbp->setup fields:
  349. * 0: bmRequestType (bitmask)
  350. * 1: bRequest
  351. * 2,3: (LSB,MSB) wValue
  352. * 4,5: (LSB,MSB) wIndex
  353. * 6,7: (LSB,MSB) wLength (number of bytes to transfer if there is a data phase) */
  354. /* Handle HID class specific requests */
  355. if (((usbp->setup[0] & USB_RTYPE_TYPE_MASK) == USB_RTYPE_TYPE_CLASS) && ((usbp->setup[0] & USB_RTYPE_RECIPIENT_MASK) == USB_RTYPE_RECIPIENT_INTERFACE)) {
  356. switch (usbp->setup[0] & USB_RTYPE_DIR_MASK) {
  357. case USB_RTYPE_DIR_DEV2HOST:
  358. switch (usbp->setup[1]) { /* bRequest */
  359. case HID_GET_REPORT:
  360. switch (usbp->setup[4]) { /* LSB(wIndex) (check MSB==0?) */
  361. case KEYBOARD_INTERFACE:
  362. usbSetupTransfer(usbp, (uint8_t *)&keyboard_report_sent, sizeof(keyboard_report_sent), NULL);
  363. return TRUE;
  364. break;
  365. #if defined(MOUSE_ENABLE) && !defined(MOUSE_SHARED_EP)
  366. case MOUSE_INTERFACE:
  367. usbSetupTransfer(usbp, (uint8_t *)&mouse_report_blank, sizeof(mouse_report_blank), NULL);
  368. return TRUE;
  369. break;
  370. #endif
  371. default:
  372. usbSetupTransfer(usbp, NULL, 0, NULL);
  373. return TRUE;
  374. break;
  375. }
  376. break;
  377. case HID_GET_PROTOCOL:
  378. if ((usbp->setup[4] == KEYBOARD_INTERFACE) && (usbp->setup[5] == 0)) { /* wIndex */
  379. usbSetupTransfer(usbp, &keyboard_protocol, 1, NULL);
  380. return TRUE;
  381. }
  382. break;
  383. case HID_GET_IDLE:
  384. usbSetupTransfer(usbp, &keyboard_idle, 1, NULL);
  385. return TRUE;
  386. break;
  387. }
  388. break;
  389. case USB_RTYPE_DIR_HOST2DEV:
  390. switch (usbp->setup[1]) { /* bRequest */
  391. case HID_SET_REPORT:
  392. switch (usbp->setup[4]) { /* LSB(wIndex) (check MSB==0 and wLength==1?) */
  393. case KEYBOARD_INTERFACE:
  394. #if defined(SHARED_EP_ENABLE) && !defined(KEYBOARD_SHARED_EP)
  395. case SHARED_INTERFACE:
  396. #endif
  397. /* keyboard_led_stats = <read byte from next OUT report>
  398. * keyboard_led_stats needs be word (or dword), otherwise we get an exception on F0 */
  399. has_report_id = 0;
  400. #if defined(SHARED_EP_ENABLE)
  401. if (usbp->setup[4] == SHARED_INTERFACE) {
  402. has_report_id = 1;
  403. }
  404. #endif
  405. if (usbp->setup[4] == KEYBOARD_INTERFACE && !keyboard_protocol) {
  406. has_report_id = 0;
  407. }
  408. if (has_report_id) {
  409. usbSetupTransfer(usbp, set_report_buf, sizeof(set_report_buf), set_led_transfer_cb);
  410. } else {
  411. usbSetupTransfer(usbp, (uint8_t *)&keyboard_led_stats, 1, NULL);
  412. }
  413. return TRUE;
  414. break;
  415. }
  416. break;
  417. case HID_SET_PROTOCOL:
  418. if ((usbp->setup[4] == KEYBOARD_INTERFACE) && (usbp->setup[5] == 0)) { /* wIndex */
  419. keyboard_protocol = ((usbp->setup[2]) != 0x00); /* LSB(wValue) */
  420. #ifdef NKRO_ENABLE
  421. keymap_config.nkro = !!keyboard_protocol;
  422. if (!keymap_config.nkro && keyboard_idle) {
  423. #else /* NKRO_ENABLE */
  424. if (keyboard_idle) {
  425. #endif /* NKRO_ENABLE */
  426. /* arm the idle timer if boot protocol & idle */
  427. osalSysLockFromISR();
  428. chVTSetI(&keyboard_idle_timer, 4 * MS2ST(keyboard_idle), keyboard_idle_timer_cb, (void *)usbp);
  429. osalSysUnlockFromISR();
  430. }
  431. }
  432. usbSetupTransfer(usbp, NULL, 0, NULL);
  433. return TRUE;
  434. break;
  435. case HID_SET_IDLE:
  436. keyboard_idle = usbp->setup[3]; /* MSB(wValue) */
  437. /* arm the timer */
  438. #ifdef NKRO_ENABLE
  439. if (!keymap_config.nkro && keyboard_idle) {
  440. #else /* NKRO_ENABLE */
  441. if (keyboard_idle) {
  442. #endif /* NKRO_ENABLE */
  443. osalSysLockFromISR();
  444. chVTSetI(&keyboard_idle_timer, 4 * MS2ST(keyboard_idle), keyboard_idle_timer_cb, (void *)usbp);
  445. osalSysUnlockFromISR();
  446. }
  447. usbSetupTransfer(usbp, NULL, 0, NULL);
  448. return TRUE;
  449. break;
  450. }
  451. break;
  452. }
  453. }
  454. /* Handle the Get_Descriptor Request for HID class (not handled by the default hook) */
  455. if ((usbp->setup[0] == 0x81) && (usbp->setup[1] == USB_REQ_GET_DESCRIPTOR)) {
  456. dp = usbp->config->get_descriptor_cb(usbp, usbp->setup[3], usbp->setup[2], get_hword(&usbp->setup[4]));
  457. if (dp == NULL) return FALSE;
  458. usbSetupTransfer(usbp, (uint8_t *)dp->ud_string, dp->ud_size, NULL);
  459. return TRUE;
  460. }
  461. for (int i = 0; i < NUM_USB_DRIVERS; i++) {
  462. if (drivers.array[i].config.int_in) {
  463. // NOTE: Assumes that we only have one serial driver
  464. return qmkusbRequestsHook(usbp);
  465. }
  466. }
  467. return FALSE;
  468. }
  469. /* Start-of-frame callback */
  470. static void usb_sof_cb(USBDriver *usbp) {
  471. kbd_sof_cb(usbp);
  472. osalSysLockFromISR();
  473. for (int i = 0; i < NUM_USB_DRIVERS; i++) {
  474. qmkusbSOFHookI(&drivers.array[i].driver);
  475. }
  476. osalSysUnlockFromISR();
  477. }
  478. /* USB driver configuration */
  479. static const USBConfig usbcfg = {
  480. usb_event_cb, /* USB events callback */
  481. usb_get_descriptor_cb, /* Device GET_DESCRIPTOR request callback */
  482. usb_request_hook_cb, /* Requests hook callback */
  483. usb_sof_cb /* Start Of Frame callback */
  484. };
  485. /*
  486. * Initialize the USB driver
  487. */
  488. void init_usb_driver(USBDriver *usbp) {
  489. for (int i = 0; i < NUM_USB_DRIVERS; i++) {
  490. QMKUSBDriver *driver = &drivers.array[i].driver;
  491. drivers.array[i].in_ep_config.in_state = &drivers.array[i].in_ep_state;
  492. drivers.array[i].out_ep_config.out_state = &drivers.array[i].out_ep_state;
  493. drivers.array[i].int_ep_config.in_state = &drivers.array[i].int_ep_state;
  494. qmkusbObjectInit(driver, &drivers.array[i].config);
  495. qmkusbStart(driver, &drivers.array[i].config);
  496. }
  497. /*
  498. * Activates the USB driver and then the USB bus pull-up on D+.
  499. * Note, a delay is inserted in order to not have to disconnect the cable
  500. * after a reset.
  501. */
  502. usbDisconnectBus(usbp);
  503. wait_ms(1500);
  504. usbStart(usbp, &usbcfg);
  505. usbConnectBus(usbp);
  506. chVTObjectInit(&keyboard_idle_timer);
  507. }
  508. /* ---------------------------------------------------------
  509. * Keyboard functions
  510. * ---------------------------------------------------------
  511. */
  512. /* keyboard IN callback hander (a kbd report has made it IN) */
  513. #ifndef KEYBOARD_SHARED_EP
  514. void kbd_in_cb(USBDriver *usbp, usbep_t ep) {
  515. /* STUB */
  516. (void)usbp;
  517. (void)ep;
  518. }
  519. #endif
  520. /* start-of-frame handler
  521. * TODO: i guess it would be better to re-implement using timers,
  522. * so that this is not going to have to be checked every 1ms */
  523. void kbd_sof_cb(USBDriver *usbp) { (void)usbp; }
  524. /* Idle requests timer code
  525. * callback (called from ISR, unlocked state) */
  526. static void keyboard_idle_timer_cb(void *arg) {
  527. USBDriver *usbp = (USBDriver *)arg;
  528. osalSysLockFromISR();
  529. /* check that the states of things are as they're supposed to */
  530. if (usbGetDriverStateI(usbp) != USB_ACTIVE) {
  531. /* do not rearm the timer, should be enabled on IDLE request */
  532. osalSysUnlockFromISR();
  533. return;
  534. }
  535. #ifdef NKRO_ENABLE
  536. if (!keymap_config.nkro && keyboard_idle && keyboard_protocol) {
  537. #else /* NKRO_ENABLE */
  538. if (keyboard_idle && keyboard_protocol) {
  539. #endif /* NKRO_ENABLE */
  540. /* TODO: are we sure we want the KBD_ENDPOINT? */
  541. if (!usbGetTransmitStatusI(usbp, KEYBOARD_IN_EPNUM)) {
  542. usbStartTransmitI(usbp, KEYBOARD_IN_EPNUM, (uint8_t *)&keyboard_report_sent, KEYBOARD_EPSIZE);
  543. }
  544. /* rearm the timer */
  545. chVTSetI(&keyboard_idle_timer, 4 * MS2ST(keyboard_idle), keyboard_idle_timer_cb, (void *)usbp);
  546. }
  547. /* do not rearm the timer if the condition above fails
  548. * it should be enabled again on either IDLE or SET_PROTOCOL requests */
  549. osalSysUnlockFromISR();
  550. }
  551. /* LED status */
  552. uint8_t keyboard_leds(void) { return (uint8_t)(keyboard_led_stats & 0xFF); }
  553. /* prepare and start sending a report IN
  554. * not callable from ISR or locked state */
  555. void send_keyboard(report_keyboard_t *report) {
  556. osalSysLock();
  557. if (usbGetDriverStateI(&USB_DRIVER) != USB_ACTIVE) {
  558. osalSysUnlock();
  559. return;
  560. }
  561. osalSysUnlock();
  562. #ifdef NKRO_ENABLE
  563. if (keymap_config.nkro && keyboard_protocol) { /* NKRO protocol */
  564. /* need to wait until the previous packet has made it through */
  565. /* can rewrite this using the synchronous API, then would wait
  566. * until *after* the packet has been transmitted. I think
  567. * this is more efficient */
  568. /* busy wait, should be short and not very common */
  569. osalSysLock();
  570. if (usbGetTransmitStatusI(&USB_DRIVER, SHARED_IN_EPNUM)) {
  571. /* Need to either suspend, or loop and call unlock/lock during
  572. * every iteration - otherwise the system will remain locked,
  573. * no interrupts served, so USB not going through as well.
  574. * Note: for suspend, need USB_USE_WAIT == TRUE in halconf.h */
  575. osalThreadSuspendS(&(&USB_DRIVER)->epc[SHARED_IN_EPNUM]->in_state->thread);
  576. }
  577. usbStartTransmitI(&USB_DRIVER, SHARED_IN_EPNUM, (uint8_t *)report, sizeof(struct nkro_report));
  578. osalSysUnlock();
  579. } else
  580. #endif /* NKRO_ENABLE */
  581. { /* regular protocol */
  582. /* need to wait until the previous packet has made it through */
  583. /* busy wait, should be short and not very common */
  584. osalSysLock();
  585. if (usbGetTransmitStatusI(&USB_DRIVER, KEYBOARD_IN_EPNUM)) {
  586. /* Need to either suspend, or loop and call unlock/lock during
  587. * every iteration - otherwise the system will remain locked,
  588. * no interrupts served, so USB not going through as well.
  589. * Note: for suspend, need USB_USE_WAIT == TRUE in halconf.h */
  590. osalThreadSuspendS(&(&USB_DRIVER)->epc[KEYBOARD_IN_EPNUM]->in_state->thread);
  591. }
  592. uint8_t *data, size;
  593. if (keyboard_protocol) {
  594. data = (uint8_t *)report;
  595. size = KEYBOARD_REPORT_SIZE;
  596. } else { /* boot protocol */
  597. data = &report->mods;
  598. size = 8;
  599. }
  600. usbStartTransmitI(&USB_DRIVER, KEYBOARD_IN_EPNUM, data, size);
  601. osalSysUnlock();
  602. }
  603. keyboard_report_sent = *report;
  604. }
  605. /* ---------------------------------------------------------
  606. * Mouse functions
  607. * ---------------------------------------------------------
  608. */
  609. #ifdef MOUSE_ENABLE
  610. # ifndef MOUSE_SHARED_EP
  611. /* mouse IN callback hander (a mouse report has made it IN) */
  612. void mouse_in_cb(USBDriver *usbp, usbep_t ep) {
  613. (void)usbp;
  614. (void)ep;
  615. }
  616. # endif
  617. void send_mouse(report_mouse_t *report) {
  618. osalSysLock();
  619. if (usbGetDriverStateI(&USB_DRIVER) != USB_ACTIVE) {
  620. osalSysUnlock();
  621. return;
  622. }
  623. if (usbGetTransmitStatusI(&USB_DRIVER, MOUSE_IN_EPNUM)) {
  624. /* Need to either suspend, or loop and call unlock/lock during
  625. * every iteration - otherwise the system will remain locked,
  626. * no interrupts served, so USB not going through as well.
  627. * Note: for suspend, need USB_USE_WAIT == TRUE in halconf.h */
  628. if (osalThreadSuspendTimeoutS(&(&USB_DRIVER)->epc[MOUSE_IN_EPNUM]->in_state->thread, MS2ST(10)) == MSG_TIMEOUT) {
  629. osalSysUnlock();
  630. return;
  631. }
  632. }
  633. usbStartTransmitI(&USB_DRIVER, MOUSE_IN_EPNUM, (uint8_t *)report, sizeof(report_mouse_t));
  634. osalSysUnlock();
  635. }
  636. #else /* MOUSE_ENABLE */
  637. void send_mouse(report_mouse_t *report) { (void)report; }
  638. #endif /* MOUSE_ENABLE */
  639. /* ---------------------------------------------------------
  640. * Shared EP functions
  641. * ---------------------------------------------------------
  642. */
  643. #ifdef SHARED_EP_ENABLE
  644. /* shared IN callback hander */
  645. void shared_in_cb(USBDriver *usbp, usbep_t ep) {
  646. /* STUB */
  647. (void)usbp;
  648. (void)ep;
  649. }
  650. #endif
  651. /* ---------------------------------------------------------
  652. * Extrakey functions
  653. * ---------------------------------------------------------
  654. */
  655. #ifdef EXTRAKEY_ENABLE
  656. static void send_extra_report(uint8_t report_id, uint16_t data) {
  657. osalSysLock();
  658. if (usbGetDriverStateI(&USB_DRIVER) != USB_ACTIVE) {
  659. osalSysUnlock();
  660. return;
  661. }
  662. report_extra_t report = {.report_id = report_id, .usage = data};
  663. usbStartTransmitI(&USB_DRIVER, SHARED_IN_EPNUM, (uint8_t *)&report, sizeof(report_extra_t));
  664. osalSysUnlock();
  665. }
  666. void send_system(uint16_t data) { send_extra_report(REPORT_ID_SYSTEM, data); }
  667. void send_consumer(uint16_t data) { send_extra_report(REPORT_ID_CONSUMER, data); }
  668. #else /* EXTRAKEY_ENABLE */
  669. void send_system(uint16_t data) { (void)data; }
  670. void send_consumer(uint16_t data) { (void)data; }
  671. #endif /* EXTRAKEY_ENABLE */
  672. /* ---------------------------------------------------------
  673. * Console functions
  674. * ---------------------------------------------------------
  675. */
  676. #ifdef CONSOLE_ENABLE
  677. int8_t sendchar(uint8_t c) {
  678. // The previous implmentation had timeouts, but I think it's better to just slow down
  679. // and make sure that everything is transferred, rather than dropping stuff
  680. return chnWrite(&drivers.console_driver.driver, &c, 1);
  681. }
  682. // Just a dummy function for now, this could be exposed as a weak function
  683. // Or connected to the actual QMK console
  684. static void console_receive(uint8_t *data, uint8_t length) {
  685. (void)data;
  686. (void)length;
  687. }
  688. void console_task(void) {
  689. uint8_t buffer[CONSOLE_EPSIZE];
  690. size_t size = 0;
  691. do {
  692. size_t size = chnReadTimeout(&drivers.console_driver.driver, buffer, sizeof(buffer), TIME_IMMEDIATE);
  693. if (size > 0) {
  694. console_receive(buffer, size);
  695. }
  696. } while (size > 0);
  697. }
  698. #else /* CONSOLE_ENABLE */
  699. int8_t sendchar(uint8_t c) {
  700. (void)c;
  701. return 0;
  702. }
  703. #endif /* CONSOLE_ENABLE */
  704. void sendchar_pf(void *p, char c) {
  705. (void)p;
  706. sendchar((uint8_t)c);
  707. }
  708. #ifdef RAW_ENABLE
  709. void raw_hid_send(uint8_t *data, uint8_t length) {
  710. // TODO: implement variable size packet
  711. if (length != RAW_EPSIZE) {
  712. return;
  713. }
  714. chnWrite(&drivers.raw_driver.driver, data, length);
  715. }
  716. __attribute__((weak)) void raw_hid_receive(uint8_t *data, uint8_t length) {
  717. // Users should #include "raw_hid.h" in their own code
  718. // and implement this function there. Leave this as weak linkage
  719. // so users can opt to not handle data coming in.
  720. }
  721. void raw_hid_task(void) {
  722. uint8_t buffer[RAW_EPSIZE];
  723. size_t size = 0;
  724. do {
  725. size_t size = chnReadTimeout(&drivers.raw_driver.driver, buffer, sizeof(buffer), TIME_IMMEDIATE);
  726. if (size > 0) {
  727. raw_hid_receive(buffer, size);
  728. }
  729. } while (size > 0);
  730. }
  731. #endif
  732. #ifdef MIDI_ENABLE
  733. void send_midi_packet(MIDI_EventPacket_t *event) { chnWrite(&drivers.midi_driver.driver, (uint8_t *)event, sizeof(MIDI_EventPacket_t)); }
  734. bool recv_midi_packet(MIDI_EventPacket_t *const event) {
  735. size_t size = chnReadTimeout(&drivers.midi_driver.driver, (uint8_t *)event, sizeof(MIDI_EventPacket_t), TIME_IMMEDIATE);
  736. return size == sizeof(MIDI_EventPacket_t);
  737. }
  738. #endif
  739. #ifdef VIRTSER_ENABLE
  740. void virtser_send(const uint8_t byte) { chnWrite(&drivers.serial_driver.driver, &byte, 1); }
  741. __attribute__((weak)) void virtser_recv(uint8_t c) {
  742. // Ignore by default
  743. }
  744. void virtser_task(void) {
  745. uint8_t numBytesReceived = 0;
  746. uint8_t buffer[16];
  747. do {
  748. numBytesReceived = chnReadTimeout(&drivers.serial_driver.driver, buffer, sizeof(buffer), TIME_IMMEDIATE);
  749. for (int i = 0; i < numBytesReceived; i++) {
  750. virtser_recv(buffer[i]);
  751. }
  752. } while (numBytesReceived > 0);
  753. }
  754. #endif