usb_kbd.c 13 KB

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  1. /*
  2. * (C) Copyright 2001
  3. * Denis Peter, MPL AG Switzerland
  4. *
  5. * Part of this source has been derived from the Linux USB
  6. * project.
  7. *
  8. * See file CREDITS for list of people who contributed to this
  9. * project.
  10. *
  11. * This program is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU General Public License as
  13. * published by the Free Software Foundation; either version 2 of
  14. * the License, or (at your option) any later version.
  15. *
  16. * This program is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  19. * GNU General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU General Public License
  22. * along with this program; if not, write to the Free Software
  23. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  24. * MA 02111-1307 USA
  25. *
  26. */
  27. #include <common.h>
  28. #include <malloc.h>
  29. #include <stdio_dev.h>
  30. #include <asm/byteorder.h>
  31. #include <usb.h>
  32. #ifdef USB_KBD_DEBUG
  33. #define USB_KBD_PRINTF(fmt, args...) printf(fmt, ##args)
  34. #else
  35. #define USB_KBD_PRINTF(fmt, args...)
  36. #endif
  37. /*
  38. * If overwrite_console returns 1, the stdin, stderr and stdout
  39. * are switched to the serial port, else the settings in the
  40. * environment are used
  41. */
  42. #ifdef CONFIG_SYS_CONSOLE_OVERWRITE_ROUTINE
  43. extern int overwrite_console(void);
  44. #else
  45. int overwrite_console(void)
  46. {
  47. return 0;
  48. }
  49. #endif
  50. /* Keyboard sampling rate */
  51. #define REPEAT_RATE (40 / 4) /* 40msec -> 25cps */
  52. #define REPEAT_DELAY 10 /* 10 x REPEAT_RATE = 400msec */
  53. #define NUM_LOCK 0x53
  54. #define CAPS_LOCK 0x39
  55. #define SCROLL_LOCK 0x47
  56. /* Modifier bits */
  57. #define LEFT_CNTR (1 << 0)
  58. #define LEFT_SHIFT (1 << 1)
  59. #define LEFT_ALT (1 << 2)
  60. #define LEFT_GUI (1 << 3)
  61. #define RIGHT_CNTR (1 << 4)
  62. #define RIGHT_SHIFT (1 << 5)
  63. #define RIGHT_ALT (1 << 6)
  64. #define RIGHT_GUI (1 << 7)
  65. /* Size of the keyboard buffer */
  66. #define USB_KBD_BUFFER_LEN 0x20
  67. /* Device name */
  68. #define DEVNAME "usbkbd"
  69. /* Keyboard maps */
  70. static const unsigned char usb_kbd_numkey[] = {
  71. '1', '2', '3', '4', '5', '6', '7', '8', '9', '0',
  72. '\r', 0x1b, '\b', '\t', ' ', '-', '=', '[', ']',
  73. '\\', '#', ';', '\'', '`', ',', '.', '/'
  74. };
  75. static const unsigned char usb_kbd_numkey_shifted[] = {
  76. '!', '@', '#', '$', '%', '^', '&', '*', '(', ')',
  77. '\r', 0x1b, '\b', '\t', ' ', '_', '+', '{', '}',
  78. '|', '~', ':', '"', '~', '<', '>', '?'
  79. };
  80. static const unsigned char usb_kbd_num_keypad[] = {
  81. '/', '*', '-', '+', '\r',
  82. '1', '2', '3', '4', '5', '6', '7', '8', '9', '0',
  83. '.', 0, 0, 0, '='
  84. };
  85. /*
  86. * map arrow keys to ^F/^B ^N/^P, can't really use the proper
  87. * ANSI sequence for arrow keys because the queuing code breaks
  88. * when a single keypress expands to 3 queue elements
  89. */
  90. static const unsigned char usb_kbd_arrow[] = {
  91. 0x6, 0x2, 0xe, 0x10
  92. };
  93. /*
  94. * NOTE: It's important for the NUM, CAPS, SCROLL-lock bits to be in this
  95. * order. See usb_kbd_setled() function!
  96. */
  97. #define USB_KBD_NUMLOCK (1 << 0)
  98. #define USB_KBD_CAPSLOCK (1 << 1)
  99. #define USB_KBD_SCROLLLOCK (1 << 2)
  100. #define USB_KBD_CTRL (1 << 3)
  101. #define USB_KBD_LEDMASK \
  102. (USB_KBD_NUMLOCK | USB_KBD_CAPSLOCK | USB_KBD_SCROLLLOCK)
  103. struct usb_kbd_pdata {
  104. uint32_t repeat_delay;
  105. uint32_t usb_in_pointer;
  106. uint32_t usb_out_pointer;
  107. uint8_t usb_kbd_buffer[USB_KBD_BUFFER_LEN];
  108. uint8_t *new;
  109. uint8_t old[8];
  110. uint8_t flags;
  111. };
  112. /* Generic keyboard event polling. */
  113. void usb_kbd_generic_poll(void)
  114. {
  115. struct stdio_dev *dev;
  116. struct usb_device *usb_kbd_dev;
  117. struct usb_kbd_pdata *data;
  118. struct usb_interface *iface;
  119. struct usb_endpoint_descriptor *ep;
  120. int pipe;
  121. int maxp;
  122. /* Get the pointer to USB Keyboard device pointer */
  123. dev = stdio_get_by_name(DEVNAME);
  124. usb_kbd_dev = (struct usb_device *)dev->priv;
  125. data = usb_kbd_dev->privptr;
  126. iface = &usb_kbd_dev->config.if_desc[0];
  127. ep = &iface->ep_desc[0];
  128. pipe = usb_rcvintpipe(usb_kbd_dev, ep->bEndpointAddress);
  129. /* Submit a interrupt transfer request */
  130. maxp = usb_maxpacket(usb_kbd_dev, pipe);
  131. usb_submit_int_msg(usb_kbd_dev, pipe, data->new,
  132. maxp > 8 ? 8 : maxp, ep->bInterval);
  133. }
  134. /* Puts character in the queue and sets up the in and out pointer. */
  135. static void usb_kbd_put_queue(struct usb_kbd_pdata *data, char c)
  136. {
  137. if (data->usb_in_pointer == USB_KBD_BUFFER_LEN - 1) {
  138. /* Check for buffer full. */
  139. if (data->usb_out_pointer == 0)
  140. return;
  141. data->usb_in_pointer = 0;
  142. } else {
  143. /* Check for buffer full. */
  144. if (data->usb_in_pointer == data->usb_out_pointer - 1)
  145. return;
  146. data->usb_in_pointer++;
  147. }
  148. data->usb_kbd_buffer[data->usb_in_pointer] = c;
  149. }
  150. /*
  151. * Set the LEDs. Since this is used in the irq routine, the control job is
  152. * issued with a timeout of 0. This means, that the job is queued without
  153. * waiting for job completion.
  154. */
  155. static void usb_kbd_setled(struct usb_device *dev)
  156. {
  157. struct usb_interface *iface = &dev->config.if_desc[0];
  158. struct usb_kbd_pdata *data = dev->privptr;
  159. uint32_t leds = data->flags & USB_KBD_LEDMASK;
  160. usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  161. USB_REQ_SET_REPORT, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  162. 0x200, iface->desc.bInterfaceNumber, (void *)&leds, 1, 0);
  163. }
  164. #define CAPITAL_MASK 0x20
  165. /* Translate the scancode in ASCII */
  166. static int usb_kbd_translate(struct usb_kbd_pdata *data, unsigned char scancode,
  167. unsigned char modifier, int pressed)
  168. {
  169. uint8_t keycode = 0;
  170. /* Key released */
  171. if (pressed == 0) {
  172. data->repeat_delay = 0;
  173. return 0;
  174. }
  175. if (pressed == 2) {
  176. data->repeat_delay++;
  177. if (data->repeat_delay < REPEAT_DELAY)
  178. return 0;
  179. data->repeat_delay = REPEAT_DELAY;
  180. }
  181. /* Alphanumeric values */
  182. if ((scancode > 3) && (scancode <= 0x1d)) {
  183. keycode = scancode - 4 + 'a';
  184. if (data->flags & USB_KBD_CAPSLOCK)
  185. keycode &= ~CAPITAL_MASK;
  186. if (modifier & (LEFT_SHIFT | RIGHT_SHIFT)) {
  187. /* Handle CAPSLock + Shift pressed simultaneously */
  188. if (keycode & CAPITAL_MASK)
  189. keycode &= ~CAPITAL_MASK;
  190. else
  191. keycode |= CAPITAL_MASK;
  192. }
  193. }
  194. if ((scancode > 0x1d) && (scancode < 0x3a)) {
  195. /* Shift pressed */
  196. if (modifier & (LEFT_SHIFT | RIGHT_SHIFT))
  197. keycode = usb_kbd_numkey_shifted[scancode - 0x1e];
  198. else
  199. keycode = usb_kbd_numkey[scancode - 0x1e];
  200. }
  201. /* Arrow keys */
  202. if ((scancode >= 0x4f) && (scancode <= 0x52))
  203. keycode = usb_kbd_arrow[scancode - 0x4f];
  204. /* Numeric keypad */
  205. if ((scancode >= 0x54) && (scancode <= 0x67))
  206. keycode = usb_kbd_num_keypad[scancode - 0x54];
  207. if (data->flags & USB_KBD_CTRL)
  208. keycode = scancode - 0x3;
  209. if (pressed == 1) {
  210. if (scancode == NUM_LOCK) {
  211. data->flags ^= USB_KBD_NUMLOCK;
  212. return 1;
  213. }
  214. if (scancode == CAPS_LOCK) {
  215. data->flags ^= USB_KBD_CAPSLOCK;
  216. return 1;
  217. }
  218. if (scancode == SCROLL_LOCK) {
  219. data->flags ^= USB_KBD_SCROLLLOCK;
  220. return 1;
  221. }
  222. }
  223. /* Report keycode if any */
  224. if (keycode) {
  225. USB_KBD_PRINTF("%c", keycode);
  226. usb_kbd_put_queue(data, keycode);
  227. }
  228. return 0;
  229. }
  230. static uint32_t usb_kbd_service_key(struct usb_device *dev, int i, int up)
  231. {
  232. uint32_t res = 0;
  233. struct usb_kbd_pdata *data = dev->privptr;
  234. uint8_t *new;
  235. uint8_t *old;
  236. if (up) {
  237. new = data->old;
  238. old = data->new;
  239. } else {
  240. new = data->new;
  241. old = data->old;
  242. }
  243. if ((old[i] > 3) && (memscan(new + 2, old[i], 6) == new + 8))
  244. res |= usb_kbd_translate(data, old[i], data->new[0], up);
  245. return res;
  246. }
  247. /* Interrupt service routine */
  248. static int usb_kbd_irq_worker(struct usb_device *dev)
  249. {
  250. struct usb_kbd_pdata *data = dev->privptr;
  251. int i, res = 0;
  252. /* No combo key pressed */
  253. if (data->new[0] == 0x00)
  254. data->flags &= ~USB_KBD_CTRL;
  255. /* Left or Right Ctrl pressed */
  256. else if ((data->new[0] == LEFT_CNTR) || (data->new[0] == RIGHT_CNTR))
  257. data->flags |= USB_KBD_CTRL;
  258. for (i = 2; i < 8; i++) {
  259. res |= usb_kbd_service_key(dev, i, 0);
  260. res |= usb_kbd_service_key(dev, i, 1);
  261. }
  262. /* Key is still pressed */
  263. if ((data->new[2] > 3) && (data->old[2] == data->new[2]))
  264. res |= usb_kbd_translate(data, data->new[2], data->new[0], 2);
  265. if (res == 1)
  266. usb_kbd_setled(dev);
  267. memcpy(data->old, data->new, 8);
  268. return 1;
  269. }
  270. /* Keyboard interrupt handler */
  271. static int usb_kbd_irq(struct usb_device *dev)
  272. {
  273. if ((dev->irq_status != 0) || (dev->irq_act_len != 8)) {
  274. USB_KBD_PRINTF("USB KBD: Error %lX, len %d\n",
  275. dev->irq_status, dev->irq_act_len);
  276. return 1;
  277. }
  278. return usb_kbd_irq_worker(dev);
  279. }
  280. /* Interrupt polling */
  281. static inline void usb_kbd_poll_for_event(struct usb_device *dev)
  282. {
  283. #if defined(CONFIG_SYS_USB_EVENT_POLL)
  284. struct usb_interface *iface;
  285. struct usb_endpoint_descriptor *ep;
  286. struct usb_kbd_pdata *data;
  287. int pipe;
  288. int maxp;
  289. /* Get the pointer to USB Keyboard device pointer */
  290. data = dev->privptr;
  291. iface = &dev->config.if_desc[0];
  292. ep = &iface->ep_desc[0];
  293. pipe = usb_rcvintpipe(dev, ep->bEndpointAddress);
  294. /* Submit a interrupt transfer request */
  295. maxp = usb_maxpacket(dev, pipe);
  296. usb_submit_int_msg(dev, pipe, &data->new[0],
  297. maxp > 8 ? 8 : maxp, ep->bInterval);
  298. usb_kbd_irq_worker(dev);
  299. #elif defined(CONFIG_SYS_USB_EVENT_POLL_VIA_CONTROL_EP)
  300. struct usb_interface *iface;
  301. struct usb_kbd_pdata *data = dev->privptr;
  302. iface = &dev->config.if_desc[0];
  303. usb_get_report(dev, iface->desc.bInterfaceNumber,
  304. 1, 0, data->new, sizeof(data->new));
  305. if (memcmp(data->old, data->new, sizeof(data->new)))
  306. usb_kbd_irq_worker(dev);
  307. #endif
  308. }
  309. /* test if a character is in the queue */
  310. static int usb_kbd_testc(void)
  311. {
  312. struct stdio_dev *dev;
  313. struct usb_device *usb_kbd_dev;
  314. struct usb_kbd_pdata *data;
  315. dev = stdio_get_by_name(DEVNAME);
  316. usb_kbd_dev = (struct usb_device *)dev->priv;
  317. data = usb_kbd_dev->privptr;
  318. usb_kbd_poll_for_event(usb_kbd_dev);
  319. return !(data->usb_in_pointer == data->usb_out_pointer);
  320. }
  321. /* gets the character from the queue */
  322. static int usb_kbd_getc(void)
  323. {
  324. struct stdio_dev *dev;
  325. struct usb_device *usb_kbd_dev;
  326. struct usb_kbd_pdata *data;
  327. dev = stdio_get_by_name(DEVNAME);
  328. usb_kbd_dev = (struct usb_device *)dev->priv;
  329. data = usb_kbd_dev->privptr;
  330. while (data->usb_in_pointer == data->usb_out_pointer)
  331. usb_kbd_poll_for_event(usb_kbd_dev);
  332. if (data->usb_out_pointer == USB_KBD_BUFFER_LEN - 1)
  333. data->usb_out_pointer = 0;
  334. else
  335. data->usb_out_pointer++;
  336. return data->usb_kbd_buffer[data->usb_out_pointer];
  337. }
  338. /* probes the USB device dev for keyboard type. */
  339. static int usb_kbd_probe(struct usb_device *dev, unsigned int ifnum)
  340. {
  341. struct usb_interface *iface;
  342. struct usb_endpoint_descriptor *ep;
  343. struct usb_kbd_pdata *data;
  344. int pipe, maxp;
  345. if (dev->descriptor.bNumConfigurations != 1)
  346. return 0;
  347. iface = &dev->config.if_desc[ifnum];
  348. if (iface->desc.bInterfaceClass != 3)
  349. return 0;
  350. if (iface->desc.bInterfaceSubClass != 1)
  351. return 0;
  352. if (iface->desc.bInterfaceProtocol != 1)
  353. return 0;
  354. if (iface->desc.bNumEndpoints != 1)
  355. return 0;
  356. ep = &iface->ep_desc[0];
  357. /* Check if endpoint 1 is interrupt endpoint */
  358. if (!(ep->bEndpointAddress & 0x80))
  359. return 0;
  360. if ((ep->bmAttributes & 3) != 3)
  361. return 0;
  362. USB_KBD_PRINTF("USB KBD: found set protocol...\n");
  363. data = malloc(sizeof(struct usb_kbd_pdata));
  364. if (!data) {
  365. printf("USB KBD: Error allocating private data\n");
  366. return 0;
  367. }
  368. /* Clear private data */
  369. memset(data, 0, sizeof(struct usb_kbd_pdata));
  370. /* allocate input buffer aligned and sized to USB DMA alignment */
  371. data->new = memalign(USB_DMA_MINALIGN, roundup(8, USB_DMA_MINALIGN));
  372. /* Insert private data into USB device structure */
  373. dev->privptr = data;
  374. /* Set IRQ handler */
  375. dev->irq_handle = usb_kbd_irq;
  376. pipe = usb_rcvintpipe(dev, ep->bEndpointAddress);
  377. maxp = usb_maxpacket(dev, pipe);
  378. /* We found a USB Keyboard, install it. */
  379. usb_set_protocol(dev, iface->desc.bInterfaceNumber, 0);
  380. USB_KBD_PRINTF("USB KBD: found set idle...\n");
  381. usb_set_idle(dev, iface->desc.bInterfaceNumber, REPEAT_RATE, 0);
  382. USB_KBD_PRINTF("USB KBD: enable interrupt pipe...\n");
  383. usb_submit_int_msg(dev, pipe, data->new, maxp > 8 ? 8 : maxp,
  384. ep->bInterval);
  385. /* Success. */
  386. return 1;
  387. }
  388. /* Search for keyboard and register it if found. */
  389. int drv_usb_kbd_init(void)
  390. {
  391. struct stdio_dev usb_kbd_dev, *old_dev;
  392. struct usb_device *dev;
  393. char *stdinname = getenv("stdin");
  394. int error, i;
  395. /* Scan all USB Devices */
  396. for (i = 0; i < USB_MAX_DEVICE; i++) {
  397. /* Get USB device. */
  398. dev = usb_get_dev_index(i);
  399. if (!dev)
  400. return -1;
  401. if (dev->devnum == -1)
  402. continue;
  403. /* Try probing the keyboard */
  404. if (usb_kbd_probe(dev, 0) != 1)
  405. continue;
  406. /* We found a keyboard, check if it is already registered. */
  407. USB_KBD_PRINTF("USB KBD: found set up device.\n");
  408. old_dev = stdio_get_by_name(DEVNAME);
  409. if (old_dev) {
  410. /* Already registered, just return ok. */
  411. USB_KBD_PRINTF("USB KBD: is already registered.\n");
  412. return 1;
  413. }
  414. /* Register the keyboard */
  415. USB_KBD_PRINTF("USB KBD: register.\n");
  416. memset(&usb_kbd_dev, 0, sizeof(struct stdio_dev));
  417. strcpy(usb_kbd_dev.name, DEVNAME);
  418. usb_kbd_dev.flags = DEV_FLAGS_INPUT | DEV_FLAGS_SYSTEM;
  419. usb_kbd_dev.putc = NULL;
  420. usb_kbd_dev.puts = NULL;
  421. usb_kbd_dev.getc = usb_kbd_getc;
  422. usb_kbd_dev.tstc = usb_kbd_testc;
  423. usb_kbd_dev.priv = (void *)dev;
  424. error = stdio_register(&usb_kbd_dev);
  425. if (error)
  426. return error;
  427. #ifdef CONFIG_CONSOLE_MUX
  428. error = iomux_doenv(stdin, stdinname);
  429. if (error)
  430. return error;
  431. #else
  432. /* Check if this is the standard input device. */
  433. if (strcmp(stdinname, DEVNAME))
  434. return 1;
  435. /* Reassign the console */
  436. if (overwrite_console())
  437. return 1;
  438. error = console_assign(stdin, DEVNAME);
  439. if (error)
  440. return error;
  441. #endif
  442. return 1;
  443. }
  444. /* No USB Keyboard found */
  445. return -1;
  446. }
  447. /* Deregister the keyboard. */
  448. int usb_kbd_deregister(void)
  449. {
  450. #ifdef CONFIG_SYS_STDIO_DEREGISTER
  451. return stdio_deregister(DEVNAME);
  452. #else
  453. return 1;
  454. #endif
  455. }