vusb.c 19 KB

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  1. /*
  2. Copyright 2011 Jun Wako <wakojun@gmail.com>
  3. This program is free software: you can redistribute it and/or modify
  4. it under the terms of the GNU General Public License as published by
  5. the Free Software Foundation, either version 2 of the License, or
  6. (at your option) any later version.
  7. This program is distributed in the hope that it will be useful,
  8. but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  10. GNU General Public License for more details.
  11. You should have received a copy of the GNU General Public License
  12. along with this program. If not, see <http://www.gnu.org/licenses/>.
  13. */
  14. #include <avr/eeprom.h>
  15. #include <avr/wdt.h>
  16. #include <stdint.h>
  17. #include "usbdrv.h"
  18. #include "usbconfig.h"
  19. #include "host.h"
  20. #include "report.h"
  21. #include "print.h"
  22. #include "debug.h"
  23. #include "host_driver.h"
  24. #include "vusb.h"
  25. #include <util/delay.h>
  26. static uint8_t vusb_keyboard_leds = 0;
  27. static uint8_t vusb_idle_rate = 0;
  28. /* Keyboard report send buffer */
  29. #define KBUF_SIZE 16
  30. static report_keyboard_t kbuf[KBUF_SIZE];
  31. static uint8_t kbuf_head = 0;
  32. static uint8_t kbuf_tail = 0;
  33. typedef struct {
  34. uint8_t modifier;
  35. uint8_t reserved;
  36. uint8_t keycode[6];
  37. } keyboard_report_t;
  38. static keyboard_report_t keyboard_report; // sent to PC
  39. #define VUSB_TRANSFER_KEYBOARD_MAX_TRIES 10
  40. /* transfer keyboard report from buffer */
  41. void vusb_transfer_keyboard(void) {
  42. for (int i = 0; i < VUSB_TRANSFER_KEYBOARD_MAX_TRIES; i++) {
  43. if (usbInterruptIsReady()) {
  44. if (kbuf_head != kbuf_tail) {
  45. usbSetInterrupt((void *)&kbuf[kbuf_tail], sizeof(report_keyboard_t));
  46. kbuf_tail = (kbuf_tail + 1) % KBUF_SIZE;
  47. if (debug_keyboard) {
  48. print("V-USB: kbuf[");
  49. pdec(kbuf_tail);
  50. print("->");
  51. pdec(kbuf_head);
  52. print("](");
  53. phex((kbuf_head < kbuf_tail) ? (KBUF_SIZE - kbuf_tail + kbuf_head) : (kbuf_head - kbuf_tail));
  54. print(")\n");
  55. }
  56. }
  57. break;
  58. }
  59. usbPoll();
  60. _delay_ms(1);
  61. }
  62. }
  63. /*------------------------------------------------------------------*
  64. * Host driver
  65. *------------------------------------------------------------------*/
  66. static uint8_t keyboard_leds(void);
  67. static void send_keyboard(report_keyboard_t *report);
  68. static void send_mouse(report_mouse_t *report);
  69. static void send_system(uint16_t data);
  70. static void send_consumer(uint16_t data);
  71. static host_driver_t driver = {keyboard_leds, send_keyboard, send_mouse, send_system, send_consumer};
  72. host_driver_t *vusb_driver(void) { return &driver; }
  73. static uint8_t keyboard_leds(void) { return vusb_keyboard_leds; }
  74. static void send_keyboard(report_keyboard_t *report) {
  75. uint8_t next = (kbuf_head + 1) % KBUF_SIZE;
  76. if (next != kbuf_tail) {
  77. kbuf[kbuf_head] = *report;
  78. kbuf_head = next;
  79. } else {
  80. debug("kbuf: full\n");
  81. }
  82. // NOTE: send key strokes of Macro
  83. usbPoll();
  84. vusb_transfer_keyboard();
  85. }
  86. typedef struct {
  87. uint8_t report_id;
  88. report_mouse_t report;
  89. } __attribute__((packed)) vusb_mouse_report_t;
  90. static void send_mouse(report_mouse_t *report) {
  91. vusb_mouse_report_t r = {.report_id = REPORT_ID_MOUSE, .report = *report};
  92. if (usbInterruptIsReady3()) {
  93. usbSetInterrupt3((void *)&r, sizeof(vusb_mouse_report_t));
  94. }
  95. }
  96. typedef struct {
  97. uint8_t report_id;
  98. uint16_t usage;
  99. } __attribute__((packed)) report_extra_t;
  100. static void send_system(uint16_t data) {
  101. static uint16_t last_data = 0;
  102. if (data == last_data) return;
  103. last_data = data;
  104. report_extra_t report = {.report_id = REPORT_ID_SYSTEM, .usage = data};
  105. if (usbInterruptIsReady3()) {
  106. usbSetInterrupt3((void *)&report, sizeof(report));
  107. }
  108. }
  109. static void send_consumer(uint16_t data) {
  110. static uint16_t last_data = 0;
  111. if (data == last_data) return;
  112. last_data = data;
  113. report_extra_t report = {.report_id = REPORT_ID_CONSUMER, .usage = data};
  114. if (usbInterruptIsReady3()) {
  115. usbSetInterrupt3((void *)&report, sizeof(report));
  116. }
  117. }
  118. /*------------------------------------------------------------------*
  119. * Request from host *
  120. *------------------------------------------------------------------*/
  121. static struct {
  122. uint16_t len;
  123. enum { NONE, SET_LED } kind;
  124. } last_req;
  125. usbMsgLen_t usbFunctionSetup(uchar data[8]) {
  126. usbRequest_t *rq = (void *)data;
  127. if ((rq->bmRequestType & USBRQ_TYPE_MASK) == USBRQ_TYPE_CLASS) { /* class request type */
  128. if (rq->bRequest == USBRQ_HID_GET_REPORT) {
  129. debug("GET_REPORT:");
  130. /* we only have one report type, so don't look at wValue */
  131. usbMsgPtr = (void *)&keyboard_report;
  132. return sizeof(keyboard_report);
  133. } else if (rq->bRequest == USBRQ_HID_GET_IDLE) {
  134. debug("GET_IDLE: ");
  135. // debug_hex(vusb_idle_rate);
  136. usbMsgPtr = &vusb_idle_rate;
  137. return 1;
  138. } else if (rq->bRequest == USBRQ_HID_SET_IDLE) {
  139. vusb_idle_rate = rq->wValue.bytes[1];
  140. debug("SET_IDLE: ");
  141. debug_hex(vusb_idle_rate);
  142. } else if (rq->bRequest == USBRQ_HID_SET_REPORT) {
  143. debug("SET_REPORT: ");
  144. // Report Type: 0x02(Out)/ReportID: 0x00(none) && Interface: 0(keyboard)
  145. if (rq->wValue.word == 0x0200 && rq->wIndex.word == 0) {
  146. debug("SET_LED: ");
  147. last_req.kind = SET_LED;
  148. last_req.len = rq->wLength.word;
  149. }
  150. return USB_NO_MSG; // to get data in usbFunctionWrite
  151. } else {
  152. debug("UNKNOWN:");
  153. }
  154. } else {
  155. debug("VENDOR:");
  156. /* no vendor specific requests implemented */
  157. }
  158. debug("\n");
  159. return 0; /* default for not implemented requests: return no data back to host */
  160. }
  161. uchar usbFunctionWrite(uchar *data, uchar len) {
  162. if (last_req.len == 0) {
  163. return -1;
  164. }
  165. switch (last_req.kind) {
  166. case SET_LED:
  167. debug("SET_LED: ");
  168. debug_hex(data[0]);
  169. debug("\n");
  170. vusb_keyboard_leds = data[0];
  171. last_req.len = 0;
  172. return 1;
  173. break;
  174. case NONE:
  175. default:
  176. return -1;
  177. break;
  178. }
  179. return 1;
  180. }
  181. /*------------------------------------------------------------------*
  182. * Descriptors *
  183. *------------------------------------------------------------------*/
  184. /*
  185. * Report Descriptor for keyboard
  186. *
  187. * from an example in HID spec appendix
  188. */
  189. const PROGMEM uchar keyboard_hid_report[] = {
  190. 0x05, 0x01, // Usage Page (Generic Desktop),
  191. 0x09, 0x06, // Usage (Keyboard),
  192. 0xA1, 0x01, // Collection (Application),
  193. 0x75, 0x01, // Report Size (1),
  194. 0x95, 0x08, // Report Count (8),
  195. 0x05, 0x07, // Usage Page (Key Codes),
  196. 0x19, 0xE0, // Usage Minimum (224),
  197. 0x29, 0xE7, // Usage Maximum (231),
  198. 0x15, 0x00, // Logical Minimum (0),
  199. 0x25, 0x01, // Logical Maximum (1),
  200. 0x81, 0x02, // Input (Data, Variable, Absolute), ;Modifier byte
  201. 0x95, 0x01, // Report Count (1),
  202. 0x75, 0x08, // Report Size (8),
  203. 0x81, 0x03, // Input (Constant), ;Reserved byte
  204. 0x95, 0x05, // Report Count (5),
  205. 0x75, 0x01, // Report Size (1),
  206. 0x05, 0x08, // Usage Page (LEDs),
  207. 0x19, 0x01, // Usage Minimum (1),
  208. 0x29, 0x05, // Usage Maximum (5),
  209. 0x91, 0x02, // Output (Data, Variable, Absolute), ;LED report
  210. 0x95, 0x01, // Report Count (1),
  211. 0x75, 0x03, // Report Size (3),
  212. 0x91, 0x03, // Output (Constant), ;LED report padding
  213. 0x95, 0x06, // Report Count (6),
  214. 0x75, 0x08, // Report Size (8),
  215. 0x15, 0x00, // Logical Minimum (0),
  216. 0x26, 0xFF, 0x00, // Logical Maximum(255),
  217. 0x05, 0x07, // Usage Page (Key Codes),
  218. 0x19, 0x00, // Usage Minimum (0),
  219. 0x29, 0xFF, // Usage Maximum (255),
  220. 0x81, 0x00, // Input (Data, Array),
  221. 0xc0 // End Collection
  222. };
  223. /*
  224. * Report Descriptor for mouse
  225. *
  226. * Mouse Protocol 1, HID 1.11 spec, Appendix B, page 59-60, with wheel extension
  227. * http://www.microchip.com/forums/tm.aspx?high=&m=391435&mpage=1#391521
  228. * http://www.keil.com/forum/15671/
  229. * http://www.microsoft.com/whdc/device/input/wheel.mspx
  230. */
  231. const PROGMEM uchar mouse_hid_report[] = {
  232. /* mouse */
  233. 0x05, 0x01, // USAGE_PAGE (Generic Desktop)
  234. 0x09, 0x02, // USAGE (Mouse)
  235. 0xa1, 0x01, // COLLECTION (Application)
  236. 0x85, REPORT_ID_MOUSE, // REPORT_ID (1)
  237. 0x09, 0x01, // USAGE (Pointer)
  238. 0xa1, 0x00, // COLLECTION (Physical)
  239. // ---------------------------- Buttons
  240. 0x05, 0x09, // USAGE_PAGE (Button)
  241. 0x19, 0x01, // USAGE_MINIMUM (Button 1)
  242. 0x29, 0x05, // USAGE_MAXIMUM (Button 5)
  243. 0x15, 0x00, // LOGICAL_MINIMUM (0)
  244. 0x25, 0x01, // LOGICAL_MAXIMUM (1)
  245. 0x75, 0x01, // REPORT_SIZE (1)
  246. 0x95, 0x05, // REPORT_COUNT (5)
  247. 0x81, 0x02, // INPUT (Data,Var,Abs)
  248. 0x75, 0x03, // REPORT_SIZE (3)
  249. 0x95, 0x01, // REPORT_COUNT (1)
  250. 0x81, 0x03, // INPUT (Cnst,Var,Abs)
  251. // ---------------------------- X,Y position
  252. 0x05, 0x01, // USAGE_PAGE (Generic Desktop)
  253. 0x09, 0x30, // USAGE (X)
  254. 0x09, 0x31, // USAGE (Y)
  255. 0x15, 0x81, // LOGICAL_MINIMUM (-127)
  256. 0x25, 0x7f, // LOGICAL_MAXIMUM (127)
  257. 0x75, 0x08, // REPORT_SIZE (8)
  258. 0x95, 0x02, // REPORT_COUNT (2)
  259. 0x81, 0x06, // INPUT (Data,Var,Rel)
  260. // ---------------------------- Vertical wheel
  261. 0x09, 0x38, // USAGE (Wheel)
  262. 0x15, 0x81, // LOGICAL_MINIMUM (-127)
  263. 0x25, 0x7f, // LOGICAL_MAXIMUM (127)
  264. 0x35, 0x00, // PHYSICAL_MINIMUM (0) - reset physical
  265. 0x45, 0x00, // PHYSICAL_MAXIMUM (0)
  266. 0x75, 0x08, // REPORT_SIZE (8)
  267. 0x95, 0x01, // REPORT_COUNT (1)
  268. 0x81, 0x06, // INPUT (Data,Var,Rel)
  269. // ---------------------------- Horizontal wheel
  270. 0x05, 0x0c, // USAGE_PAGE (Consumer Devices)
  271. 0x0a, 0x38, 0x02, // USAGE (AC Pan)
  272. 0x15, 0x81, // LOGICAL_MINIMUM (-127)
  273. 0x25, 0x7f, // LOGICAL_MAXIMUM (127)
  274. 0x75, 0x08, // REPORT_SIZE (8)
  275. 0x95, 0x01, // REPORT_COUNT (1)
  276. 0x81, 0x06, // INPUT (Data,Var,Rel)
  277. 0xc0, // END_COLLECTION
  278. 0xc0, // END_COLLECTION
  279. /* system control */
  280. 0x05, 0x01, // USAGE_PAGE (Generic Desktop)
  281. 0x09, 0x80, // USAGE (System Control)
  282. 0xa1, 0x01, // COLLECTION (Application)
  283. 0x85, REPORT_ID_SYSTEM, // REPORT_ID (2)
  284. 0x15, 0x01, // LOGICAL_MINIMUM (0x1)
  285. 0x26, 0xb7, 0x00, // LOGICAL_MAXIMUM (0xb7)
  286. 0x19, 0x01, // USAGE_MINIMUM (0x1)
  287. 0x29, 0xb7, // USAGE_MAXIMUM (0xb7)
  288. 0x75, 0x10, // REPORT_SIZE (16)
  289. 0x95, 0x01, // REPORT_COUNT (1)
  290. 0x81, 0x00, // INPUT (Data,Array,Abs)
  291. 0xc0, // END_COLLECTION
  292. /* consumer */
  293. 0x05, 0x0c, // USAGE_PAGE (Consumer Devices)
  294. 0x09, 0x01, // USAGE (Consumer Control)
  295. 0xa1, 0x01, // COLLECTION (Application)
  296. 0x85, REPORT_ID_CONSUMER, // REPORT_ID (3)
  297. 0x15, 0x01, // LOGICAL_MINIMUM (0x1)
  298. 0x26, 0x9c, 0x02, // LOGICAL_MAXIMUM (0x29c)
  299. 0x19, 0x01, // USAGE_MINIMUM (0x1)
  300. 0x2a, 0x9c, 0x02, // USAGE_MAXIMUM (0x29c)
  301. 0x75, 0x10, // REPORT_SIZE (16)
  302. 0x95, 0x01, // REPORT_COUNT (1)
  303. 0x81, 0x00, // INPUT (Data,Array,Abs)
  304. 0xc0, // END_COLLECTION
  305. };
  306. #ifndef USB_MAX_POWER_CONSUMPTION
  307. # define USB_MAX_POWER_CONSUMPTION 500
  308. #endif
  309. // TODO: change this to 10ms to match LUFA
  310. #ifndef USB_POLLING_INTERVAL_MS
  311. # define USB_POLLING_INTERVAL_MS 1
  312. #endif
  313. /*
  314. * Descriptor for compite device: Keyboard + Mouse
  315. *
  316. * contains: device, interface, HID and endpoint descriptors
  317. */
  318. #if USB_CFG_DESCR_PROPS_CONFIGURATION
  319. const PROGMEM char usbDescriptorConfiguration[] = {
  320. /* USB configuration descriptor */
  321. 9, /* sizeof(usbDescriptorConfiguration): length of descriptor in bytes */
  322. USBDESCR_CONFIG, /* descriptor type */
  323. 9 + (9 + 9 + 7) + (9 + 9 + 7), 0,
  324. // 18 + 7 * USB_CFG_HAVE_INTRIN_ENDPOINT + 7 * USB_CFG_HAVE_INTRIN_ENDPOINT3 + 9, 0,
  325. /* total length of data returned (including inlined descriptors) */
  326. 2, /* number of interfaces in this configuration */
  327. 1, /* index of this configuration */
  328. 0, /* configuration name string index */
  329. # if USB_CFG_IS_SELF_POWERED
  330. (1 << 7) | USBATTR_SELFPOWER, /* attributes */
  331. # else
  332. (1 << 7), /* attributes */
  333. # endif
  334. USB_MAX_POWER_CONSUMPTION / 2, /* max USB current in 2mA units */
  335. /*
  336. * Keyboard interface
  337. */
  338. /* Interface descriptor */
  339. 9, /* sizeof(usbDescrInterface): length of descriptor in bytes */
  340. USBDESCR_INTERFACE, /* descriptor type */
  341. 0, /* index of this interface */
  342. 0, /* alternate setting for this interface */
  343. USB_CFG_HAVE_INTRIN_ENDPOINT, /* endpoints excl 0: number of endpoint descriptors to follow */
  344. USB_CFG_INTERFACE_CLASS, USB_CFG_INTERFACE_SUBCLASS, USB_CFG_INTERFACE_PROTOCOL, 0, /* string index for interface */
  345. /* HID descriptor */
  346. 9, /* sizeof(usbDescrHID): length of descriptor in bytes */
  347. USBDESCR_HID, /* descriptor type: HID */
  348. 0x01, 0x01, /* BCD representation of HID version */
  349. 0x00, /* target country code */
  350. 0x01, /* number of HID Report (or other HID class) Descriptor infos to follow */
  351. 0x22, /* descriptor type: report */
  352. sizeof(keyboard_hid_report), 0, /* total length of report descriptor */
  353. /* Endpoint descriptor */
  354. # if USB_CFG_HAVE_INTRIN_ENDPOINT /* endpoint descriptor for endpoint 1 */
  355. 7, /* sizeof(usbDescrEndpoint) */
  356. USBDESCR_ENDPOINT, /* descriptor type = endpoint */
  357. (char)0x81, /* IN endpoint number 1 */
  358. 0x03, /* attrib: Interrupt endpoint */
  359. 8, 0, /* maximum packet size */
  360. USB_POLLING_INTERVAL_MS, /* in ms */
  361. # endif
  362. /*
  363. * Mouse interface
  364. */
  365. /* Interface descriptor */
  366. 9, /* sizeof(usbDescrInterface): length of descriptor in bytes */
  367. USBDESCR_INTERFACE, /* descriptor type */
  368. 1, /* index of this interface */
  369. 0, /* alternate setting for this interface */
  370. USB_CFG_HAVE_INTRIN_ENDPOINT3, /* endpoints excl 0: number of endpoint descriptors to follow */
  371. 0x03, /* CLASS: HID */
  372. 0, /* SUBCLASS: none */
  373. 0, /* PROTOCOL: none */
  374. 0, /* string index for interface */
  375. /* HID descriptor */
  376. 9, /* sizeof(usbDescrHID): length of descriptor in bytes */
  377. USBDESCR_HID, /* descriptor type: HID */
  378. 0x01, 0x01, /* BCD representation of HID version */
  379. 0x00, /* target country code */
  380. 0x01, /* number of HID Report (or other HID class) Descriptor infos to follow */
  381. 0x22, /* descriptor type: report */
  382. sizeof(mouse_hid_report), 0, /* total length of report descriptor */
  383. # if USB_CFG_HAVE_INTRIN_ENDPOINT3 /* endpoint descriptor for endpoint 3 */
  384. /* Endpoint descriptor */
  385. 7, /* sizeof(usbDescrEndpoint) */
  386. USBDESCR_ENDPOINT, /* descriptor type = endpoint */
  387. (char)(0x80 | USB_CFG_EP3_NUMBER), /* IN endpoint number 3 */
  388. 0x03, /* attrib: Interrupt endpoint */
  389. 8, 0, /* maximum packet size */
  390. USB_POLLING_INTERVAL_MS, /* in ms */
  391. # endif
  392. };
  393. #endif
  394. USB_PUBLIC usbMsgLen_t usbFunctionDescriptor(struct usbRequest *rq) {
  395. usbMsgLen_t len = 0;
  396. /*
  397. debug("usbFunctionDescriptor: ");
  398. debug_hex(rq->bmRequestType); debug(" ");
  399. debug_hex(rq->bRequest); debug(" ");
  400. debug_hex16(rq->wValue.word); debug(" ");
  401. debug_hex16(rq->wIndex.word); debug(" ");
  402. debug_hex16(rq->wLength.word); debug("\n");
  403. */
  404. switch (rq->wValue.bytes[1]) {
  405. #if USB_CFG_DESCR_PROPS_CONFIGURATION
  406. case USBDESCR_CONFIG:
  407. usbMsgPtr = (unsigned char *)usbDescriptorConfiguration;
  408. len = sizeof(usbDescriptorConfiguration);
  409. break;
  410. #endif
  411. case USBDESCR_HID:
  412. switch (rq->wValue.bytes[0]) {
  413. case 0:
  414. usbMsgPtr = (unsigned char *)(usbDescriptorConfiguration + 9 + 9);
  415. len = 9;
  416. break;
  417. case 1:
  418. usbMsgPtr = (unsigned char *)(usbDescriptorConfiguration + 9 + (9 + 9 + 7) + 9);
  419. len = 9;
  420. break;
  421. }
  422. break;
  423. case USBDESCR_HID_REPORT:
  424. /* interface index */
  425. switch (rq->wIndex.word) {
  426. case 0:
  427. usbMsgPtr = (unsigned char *)keyboard_hid_report;
  428. len = sizeof(keyboard_hid_report);
  429. break;
  430. case 1:
  431. usbMsgPtr = (unsigned char *)mouse_hid_report;
  432. len = sizeof(mouse_hid_report);
  433. break;
  434. }
  435. break;
  436. }
  437. // debug("desc len: "); debug_hex(len); debug("\n");
  438. return len;
  439. }