xen-kbdfront.c 7.9 KB

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  1. /*
  2. * Xen para-virtual input device
  3. *
  4. * Copyright (C) 2005 Anthony Liguori <aliguori@us.ibm.com>
  5. * Copyright (C) 2006-2008 Red Hat, Inc., Markus Armbruster <armbru@redhat.com>
  6. *
  7. * Based on linux/drivers/input/mouse/sermouse.c
  8. *
  9. * This file is subject to the terms and conditions of the GNU General Public
  10. * License. See the file COPYING in the main directory of this archive for
  11. * more details.
  12. */
  13. /*
  14. * TODO:
  15. *
  16. * Switch to grant tables together with xen-fbfront.c.
  17. */
  18. #include <linux/kernel.h>
  19. #include <linux/errno.h>
  20. #include <linux/module.h>
  21. #include <linux/input.h>
  22. #include <asm/xen/hypervisor.h>
  23. #include <xen/events.h>
  24. #include <xen/page.h>
  25. #include <xen/interface/io/fbif.h>
  26. #include <xen/interface/io/kbdif.h>
  27. #include <xen/xenbus.h>
  28. struct xenkbd_info {
  29. struct input_dev *kbd;
  30. struct input_dev *ptr;
  31. struct xenkbd_page *page;
  32. int irq;
  33. struct xenbus_device *xbdev;
  34. char phys[32];
  35. };
  36. static int xenkbd_remove(struct xenbus_device *);
  37. static int xenkbd_connect_backend(struct xenbus_device *, struct xenkbd_info *);
  38. static void xenkbd_disconnect_backend(struct xenkbd_info *);
  39. /*
  40. * Note: if you need to send out events, see xenfb_do_update() for how
  41. * to do that.
  42. */
  43. static irqreturn_t input_handler(int rq, void *dev_id)
  44. {
  45. struct xenkbd_info *info = dev_id;
  46. struct xenkbd_page *page = info->page;
  47. __u32 cons, prod;
  48. prod = page->in_prod;
  49. if (prod == page->in_cons)
  50. return IRQ_HANDLED;
  51. rmb(); /* ensure we see ring contents up to prod */
  52. for (cons = page->in_cons; cons != prod; cons++) {
  53. union xenkbd_in_event *event;
  54. struct input_dev *dev;
  55. event = &XENKBD_IN_RING_REF(page, cons);
  56. dev = info->ptr;
  57. switch (event->type) {
  58. case XENKBD_TYPE_MOTION:
  59. input_report_rel(dev, REL_X, event->motion.rel_x);
  60. input_report_rel(dev, REL_Y, event->motion.rel_y);
  61. break;
  62. case XENKBD_TYPE_KEY:
  63. dev = NULL;
  64. if (test_bit(event->key.keycode, info->kbd->keybit))
  65. dev = info->kbd;
  66. if (test_bit(event->key.keycode, info->ptr->keybit))
  67. dev = info->ptr;
  68. if (dev)
  69. input_report_key(dev, event->key.keycode,
  70. event->key.pressed);
  71. else
  72. printk(KERN_WARNING
  73. "xenkbd: unhandled keycode 0x%x\n",
  74. event->key.keycode);
  75. break;
  76. case XENKBD_TYPE_POS:
  77. input_report_abs(dev, ABS_X, event->pos.abs_x);
  78. input_report_abs(dev, ABS_Y, event->pos.abs_y);
  79. break;
  80. }
  81. if (dev)
  82. input_sync(dev);
  83. }
  84. mb(); /* ensure we got ring contents */
  85. page->in_cons = cons;
  86. notify_remote_via_irq(info->irq);
  87. return IRQ_HANDLED;
  88. }
  89. static int __devinit xenkbd_probe(struct xenbus_device *dev,
  90. const struct xenbus_device_id *id)
  91. {
  92. int ret, i;
  93. struct xenkbd_info *info;
  94. struct input_dev *kbd, *ptr;
  95. info = kzalloc(sizeof(*info), GFP_KERNEL);
  96. if (!info) {
  97. xenbus_dev_fatal(dev, -ENOMEM, "allocating info structure");
  98. return -ENOMEM;
  99. }
  100. dev->dev.driver_data = info;
  101. info->xbdev = dev;
  102. info->irq = -1;
  103. snprintf(info->phys, sizeof(info->phys), "xenbus/%s", dev->nodename);
  104. info->page = (void *)__get_free_page(GFP_KERNEL | __GFP_ZERO);
  105. if (!info->page)
  106. goto error_nomem;
  107. /* keyboard */
  108. kbd = input_allocate_device();
  109. if (!kbd)
  110. goto error_nomem;
  111. kbd->name = "Xen Virtual Keyboard";
  112. kbd->phys = info->phys;
  113. kbd->id.bustype = BUS_PCI;
  114. kbd->id.vendor = 0x5853;
  115. kbd->id.product = 0xffff;
  116. kbd->evbit[0] = BIT(EV_KEY);
  117. for (i = KEY_ESC; i < KEY_UNKNOWN; i++)
  118. set_bit(i, kbd->keybit);
  119. for (i = KEY_OK; i < KEY_MAX; i++)
  120. set_bit(i, kbd->keybit);
  121. ret = input_register_device(kbd);
  122. if (ret) {
  123. input_free_device(kbd);
  124. xenbus_dev_fatal(dev, ret, "input_register_device(kbd)");
  125. goto error;
  126. }
  127. info->kbd = kbd;
  128. /* pointing device */
  129. ptr = input_allocate_device();
  130. if (!ptr)
  131. goto error_nomem;
  132. ptr->name = "Xen Virtual Pointer";
  133. ptr->phys = info->phys;
  134. ptr->id.bustype = BUS_PCI;
  135. ptr->id.vendor = 0x5853;
  136. ptr->id.product = 0xfffe;
  137. ptr->evbit[0] = BIT(EV_KEY) | BIT(EV_REL) | BIT(EV_ABS);
  138. for (i = BTN_LEFT; i <= BTN_TASK; i++)
  139. set_bit(i, ptr->keybit);
  140. ptr->relbit[0] = BIT(REL_X) | BIT(REL_Y);
  141. input_set_abs_params(ptr, ABS_X, 0, XENFB_WIDTH, 0, 0);
  142. input_set_abs_params(ptr, ABS_Y, 0, XENFB_HEIGHT, 0, 0);
  143. ret = input_register_device(ptr);
  144. if (ret) {
  145. input_free_device(ptr);
  146. xenbus_dev_fatal(dev, ret, "input_register_device(ptr)");
  147. goto error;
  148. }
  149. info->ptr = ptr;
  150. ret = xenkbd_connect_backend(dev, info);
  151. if (ret < 0)
  152. goto error;
  153. return 0;
  154. error_nomem:
  155. ret = -ENOMEM;
  156. xenbus_dev_fatal(dev, ret, "allocating device memory");
  157. error:
  158. xenkbd_remove(dev);
  159. return ret;
  160. }
  161. static int xenkbd_resume(struct xenbus_device *dev)
  162. {
  163. struct xenkbd_info *info = dev->dev.driver_data;
  164. xenkbd_disconnect_backend(info);
  165. memset(info->page, 0, PAGE_SIZE);
  166. return xenkbd_connect_backend(dev, info);
  167. }
  168. static int xenkbd_remove(struct xenbus_device *dev)
  169. {
  170. struct xenkbd_info *info = dev->dev.driver_data;
  171. xenkbd_disconnect_backend(info);
  172. if (info->kbd)
  173. input_unregister_device(info->kbd);
  174. if (info->ptr)
  175. input_unregister_device(info->ptr);
  176. free_page((unsigned long)info->page);
  177. kfree(info);
  178. return 0;
  179. }
  180. static int xenkbd_connect_backend(struct xenbus_device *dev,
  181. struct xenkbd_info *info)
  182. {
  183. int ret, evtchn;
  184. struct xenbus_transaction xbt;
  185. ret = xenbus_alloc_evtchn(dev, &evtchn);
  186. if (ret)
  187. return ret;
  188. ret = bind_evtchn_to_irqhandler(evtchn, input_handler,
  189. 0, dev->devicetype, info);
  190. if (ret < 0) {
  191. xenbus_free_evtchn(dev, evtchn);
  192. xenbus_dev_fatal(dev, ret, "bind_evtchn_to_irqhandler");
  193. return ret;
  194. }
  195. info->irq = ret;
  196. again:
  197. ret = xenbus_transaction_start(&xbt);
  198. if (ret) {
  199. xenbus_dev_fatal(dev, ret, "starting transaction");
  200. return ret;
  201. }
  202. ret = xenbus_printf(xbt, dev->nodename, "page-ref", "%lu",
  203. virt_to_mfn(info->page));
  204. if (ret)
  205. goto error_xenbus;
  206. ret = xenbus_printf(xbt, dev->nodename, "event-channel", "%u",
  207. evtchn);
  208. if (ret)
  209. goto error_xenbus;
  210. ret = xenbus_transaction_end(xbt, 0);
  211. if (ret) {
  212. if (ret == -EAGAIN)
  213. goto again;
  214. xenbus_dev_fatal(dev, ret, "completing transaction");
  215. return ret;
  216. }
  217. xenbus_switch_state(dev, XenbusStateInitialised);
  218. return 0;
  219. error_xenbus:
  220. xenbus_transaction_end(xbt, 1);
  221. xenbus_dev_fatal(dev, ret, "writing xenstore");
  222. return ret;
  223. }
  224. static void xenkbd_disconnect_backend(struct xenkbd_info *info)
  225. {
  226. if (info->irq >= 0)
  227. unbind_from_irqhandler(info->irq, info);
  228. info->irq = -1;
  229. }
  230. static void xenkbd_backend_changed(struct xenbus_device *dev,
  231. enum xenbus_state backend_state)
  232. {
  233. struct xenkbd_info *info = dev->dev.driver_data;
  234. int ret, val;
  235. switch (backend_state) {
  236. case XenbusStateInitialising:
  237. case XenbusStateInitialised:
  238. case XenbusStateUnknown:
  239. case XenbusStateClosed:
  240. break;
  241. case XenbusStateInitWait:
  242. InitWait:
  243. ret = xenbus_scanf(XBT_NIL, info->xbdev->otherend,
  244. "feature-abs-pointer", "%d", &val);
  245. if (ret < 0)
  246. val = 0;
  247. if (val) {
  248. ret = xenbus_printf(XBT_NIL, info->xbdev->nodename,
  249. "request-abs-pointer", "1");
  250. if (ret)
  251. printk(KERN_WARNING
  252. "xenkbd: can't request abs-pointer");
  253. }
  254. xenbus_switch_state(dev, XenbusStateConnected);
  255. break;
  256. case XenbusStateConnected:
  257. /*
  258. * Work around xenbus race condition: If backend goes
  259. * through InitWait to Connected fast enough, we can
  260. * get Connected twice here.
  261. */
  262. if (dev->state != XenbusStateConnected)
  263. goto InitWait; /* no InitWait seen yet, fudge it */
  264. break;
  265. case XenbusStateClosing:
  266. xenbus_frontend_closed(dev);
  267. break;
  268. }
  269. }
  270. static struct xenbus_device_id xenkbd_ids[] = {
  271. { "vkbd" },
  272. { "" }
  273. };
  274. static struct xenbus_driver xenkbd = {
  275. .name = "vkbd",
  276. .owner = THIS_MODULE,
  277. .ids = xenkbd_ids,
  278. .probe = xenkbd_probe,
  279. .remove = xenkbd_remove,
  280. .resume = xenkbd_resume,
  281. .otherend_changed = xenkbd_backend_changed,
  282. };
  283. static int __init xenkbd_init(void)
  284. {
  285. if (!is_running_on_xen())
  286. return -ENODEV;
  287. /* Nothing to do if running in dom0. */
  288. if (is_initial_xendomain())
  289. return -ENODEV;
  290. return xenbus_register_frontend(&xenkbd);
  291. }
  292. static void __exit xenkbd_cleanup(void)
  293. {
  294. xenbus_unregister_driver(&xenkbd);
  295. }
  296. module_init(xenkbd_init);
  297. module_exit(xenkbd_cleanup);
  298. MODULE_LICENSE("GPL");