xenfb.c 29 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987
  1. /*
  2. * xen paravirt framebuffer backend
  3. *
  4. * Copyright IBM, Corp. 2005-2006
  5. * Copyright Red Hat, Inc. 2006-2008
  6. *
  7. * Authors:
  8. * Anthony Liguori <aliguori@us.ibm.com>,
  9. * Markus Armbruster <armbru@redhat.com>,
  10. * Daniel P. Berrange <berrange@redhat.com>,
  11. * Pat Campbell <plc@novell.com>,
  12. * Gerd Hoffmann <kraxel@redhat.com>
  13. *
  14. * This program is free software; you can redistribute it and/or modify
  15. * it under the terms of the GNU General Public License as published by
  16. * the Free Software Foundation; under version 2 of the License.
  17. *
  18. * This program is distributed in the hope that it will be useful,
  19. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  20. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  21. * GNU General Public License for more details.
  22. *
  23. * You should have received a copy of the GNU General Public License along
  24. * with this program; if not, see <http://www.gnu.org/licenses/>.
  25. */
  26. #include "qemu/osdep.h"
  27. #include "qemu/units.h"
  28. #include "ui/input.h"
  29. #include "ui/console.h"
  30. #include "hw/xen/xen-legacy-backend.h"
  31. #include "hw/xen/interface/io/fbif.h"
  32. #include "hw/xen/interface/io/kbdif.h"
  33. #include "hw/xen/interface/io/protocols.h"
  34. #include "trace.h"
  35. #ifndef BTN_LEFT
  36. #define BTN_LEFT 0x110 /* from <linux/input.h> */
  37. #endif
  38. /* -------------------------------------------------------------------- */
  39. struct common {
  40. struct XenLegacyDevice xendev; /* must be first */
  41. void *page;
  42. };
  43. struct XenInput {
  44. struct common c;
  45. int abs_pointer_wanted; /* Whether guest supports absolute pointer */
  46. int raw_pointer_wanted; /* Whether guest supports raw (unscaled) pointer */
  47. QemuInputHandlerState *qkbd;
  48. QemuInputHandlerState *qmou;
  49. int axis[INPUT_AXIS__MAX];
  50. int wheel;
  51. };
  52. #define UP_QUEUE 8
  53. struct XenFB {
  54. struct common c;
  55. QemuConsole *con;
  56. size_t fb_len;
  57. int row_stride;
  58. int depth;
  59. int width;
  60. int height;
  61. int offset;
  62. void *pixels;
  63. int fbpages;
  64. int feature_update;
  65. int bug_trigger;
  66. int do_resize;
  67. struct {
  68. int x,y,w,h;
  69. } up_rects[UP_QUEUE];
  70. int up_count;
  71. int up_fullscreen;
  72. };
  73. static const GraphicHwOps xenfb_ops;
  74. /* -------------------------------------------------------------------- */
  75. static int common_bind(struct common *c)
  76. {
  77. uint64_t val;
  78. xen_pfn_t mfn;
  79. if (xenstore_read_fe_uint64(&c->xendev, "page-ref", &val) == -1)
  80. return -1;
  81. mfn = (xen_pfn_t)val;
  82. assert(val == mfn);
  83. if (xenstore_read_fe_int(&c->xendev, "event-channel", &c->xendev.remote_port) == -1)
  84. return -1;
  85. c->page = xenforeignmemory_map(xen_fmem, c->xendev.dom,
  86. PROT_READ | PROT_WRITE, 1, &mfn, NULL);
  87. if (c->page == NULL)
  88. return -1;
  89. xen_be_bind_evtchn(&c->xendev);
  90. xen_pv_printf(&c->xendev, 1,
  91. "ring mfn %"PRI_xen_pfn", remote-port %d, local-port %d\n",
  92. mfn, c->xendev.remote_port, c->xendev.local_port);
  93. return 0;
  94. }
  95. static void common_unbind(struct common *c)
  96. {
  97. xen_pv_unbind_evtchn(&c->xendev);
  98. if (c->page) {
  99. xenforeignmemory_unmap(xen_fmem, c->page, 1);
  100. c->page = NULL;
  101. }
  102. }
  103. /* -------------------------------------------------------------------- */
  104. /* Send an event to the keyboard frontend driver */
  105. static int xenfb_kbd_event(struct XenInput *xenfb,
  106. union xenkbd_in_event *event)
  107. {
  108. struct xenkbd_page *page = xenfb->c.page;
  109. uint32_t prod;
  110. if (xenfb->c.xendev.be_state != XenbusStateConnected)
  111. return 0;
  112. if (!page)
  113. return 0;
  114. prod = page->in_prod;
  115. if (prod - page->in_cons == XENKBD_IN_RING_LEN) {
  116. errno = EAGAIN;
  117. return -1;
  118. }
  119. xen_mb(); /* ensure ring space available */
  120. XENKBD_IN_RING_REF(page, prod) = *event;
  121. xen_wmb(); /* ensure ring contents visible */
  122. page->in_prod = prod + 1;
  123. return xen_pv_send_notify(&xenfb->c.xendev);
  124. }
  125. /* Send a keyboard (or mouse button) event */
  126. static int xenfb_send_key(struct XenInput *xenfb, bool down, int keycode)
  127. {
  128. union xenkbd_in_event event;
  129. memset(&event, 0, XENKBD_IN_EVENT_SIZE);
  130. event.type = XENKBD_TYPE_KEY;
  131. event.key.pressed = down ? 1 : 0;
  132. event.key.keycode = keycode;
  133. return xenfb_kbd_event(xenfb, &event);
  134. }
  135. /* Send a relative mouse movement event */
  136. static int xenfb_send_motion(struct XenInput *xenfb,
  137. int rel_x, int rel_y, int rel_z)
  138. {
  139. union xenkbd_in_event event;
  140. memset(&event, 0, XENKBD_IN_EVENT_SIZE);
  141. event.type = XENKBD_TYPE_MOTION;
  142. event.motion.rel_x = rel_x;
  143. event.motion.rel_y = rel_y;
  144. event.motion.rel_z = rel_z;
  145. return xenfb_kbd_event(xenfb, &event);
  146. }
  147. /* Send an absolute mouse movement event */
  148. static int xenfb_send_position(struct XenInput *xenfb,
  149. int abs_x, int abs_y, int z)
  150. {
  151. union xenkbd_in_event event;
  152. memset(&event, 0, XENKBD_IN_EVENT_SIZE);
  153. event.type = XENKBD_TYPE_POS;
  154. event.pos.abs_x = abs_x;
  155. event.pos.abs_y = abs_y;
  156. event.pos.rel_z = z;
  157. return xenfb_kbd_event(xenfb, &event);
  158. }
  159. /*
  160. * Send a key event from the client to the guest OS
  161. * QEMU gives us a QCode.
  162. * We have to turn this into a Linux Input layer keycode.
  163. *
  164. * Wish we could just send scancodes straight to the guest which
  165. * already has code for dealing with this...
  166. */
  167. static void xenfb_key_event(DeviceState *dev, QemuConsole *src,
  168. InputEvent *evt)
  169. {
  170. struct XenInput *xenfb = (struct XenInput *)dev;
  171. InputKeyEvent *key = evt->u.key.data;
  172. int qcode = qemu_input_key_value_to_qcode(key->key);
  173. int lnx;
  174. if (qcode < qemu_input_map_qcode_to_linux_len) {
  175. lnx = qemu_input_map_qcode_to_linux[qcode];
  176. if (lnx) {
  177. trace_xenfb_key_event(xenfb, lnx, key->down);
  178. xenfb_send_key(xenfb, key->down, lnx);
  179. }
  180. }
  181. }
  182. /*
  183. * Send a mouse event from the client to the guest OS
  184. *
  185. * The QEMU mouse can be in either relative, or absolute mode.
  186. * Movement is sent separately from button state, which has to
  187. * be encoded as virtual key events. We also don't actually get
  188. * given any button up/down events, so have to track changes in
  189. * the button state.
  190. */
  191. static void xenfb_mouse_event(DeviceState *dev, QemuConsole *src,
  192. InputEvent *evt)
  193. {
  194. struct XenInput *xenfb = (struct XenInput *)dev;
  195. InputBtnEvent *btn;
  196. InputMoveEvent *move;
  197. QemuConsole *con;
  198. DisplaySurface *surface;
  199. int scale;
  200. switch (evt->type) {
  201. case INPUT_EVENT_KIND_BTN:
  202. btn = evt->u.btn.data;
  203. switch (btn->button) {
  204. case INPUT_BUTTON_LEFT:
  205. xenfb_send_key(xenfb, btn->down, BTN_LEFT);
  206. break;
  207. case INPUT_BUTTON_RIGHT:
  208. xenfb_send_key(xenfb, btn->down, BTN_LEFT + 1);
  209. break;
  210. case INPUT_BUTTON_MIDDLE:
  211. xenfb_send_key(xenfb, btn->down, BTN_LEFT + 2);
  212. break;
  213. case INPUT_BUTTON_WHEEL_UP:
  214. if (btn->down) {
  215. xenfb->wheel--;
  216. }
  217. break;
  218. case INPUT_BUTTON_WHEEL_DOWN:
  219. if (btn->down) {
  220. xenfb->wheel++;
  221. }
  222. break;
  223. default:
  224. break;
  225. }
  226. break;
  227. case INPUT_EVENT_KIND_ABS:
  228. move = evt->u.abs.data;
  229. if (xenfb->raw_pointer_wanted) {
  230. xenfb->axis[move->axis] = move->value;
  231. } else {
  232. con = qemu_console_lookup_by_index(0);
  233. if (!con) {
  234. xen_pv_printf(&xenfb->c.xendev, 0, "No QEMU console available");
  235. return;
  236. }
  237. surface = qemu_console_surface(con);
  238. switch (move->axis) {
  239. case INPUT_AXIS_X:
  240. scale = surface_width(surface) - 1;
  241. break;
  242. case INPUT_AXIS_Y:
  243. scale = surface_height(surface) - 1;
  244. break;
  245. default:
  246. scale = 0x8000;
  247. break;
  248. }
  249. xenfb->axis[move->axis] = move->value * scale / 0x7fff;
  250. }
  251. break;
  252. case INPUT_EVENT_KIND_REL:
  253. move = evt->u.rel.data;
  254. xenfb->axis[move->axis] += move->value;
  255. break;
  256. default:
  257. break;
  258. }
  259. }
  260. static void xenfb_mouse_sync(DeviceState *dev)
  261. {
  262. struct XenInput *xenfb = (struct XenInput *)dev;
  263. trace_xenfb_mouse_event(xenfb, xenfb->axis[INPUT_AXIS_X],
  264. xenfb->axis[INPUT_AXIS_Y],
  265. xenfb->wheel, 0,
  266. xenfb->abs_pointer_wanted);
  267. if (xenfb->abs_pointer_wanted) {
  268. xenfb_send_position(xenfb, xenfb->axis[INPUT_AXIS_X],
  269. xenfb->axis[INPUT_AXIS_Y],
  270. xenfb->wheel);
  271. } else {
  272. xenfb_send_motion(xenfb, xenfb->axis[INPUT_AXIS_X],
  273. xenfb->axis[INPUT_AXIS_Y],
  274. xenfb->wheel);
  275. xenfb->axis[INPUT_AXIS_X] = 0;
  276. xenfb->axis[INPUT_AXIS_Y] = 0;
  277. }
  278. xenfb->wheel = 0;
  279. }
  280. static QemuInputHandler xenfb_keyboard = {
  281. .name = "Xen PV Keyboard",
  282. .mask = INPUT_EVENT_MASK_KEY,
  283. .event = xenfb_key_event,
  284. };
  285. static QemuInputHandler xenfb_abs_mouse = {
  286. .name = "Xen PV Mouse",
  287. .mask = INPUT_EVENT_MASK_BTN | INPUT_EVENT_MASK_ABS,
  288. .event = xenfb_mouse_event,
  289. .sync = xenfb_mouse_sync,
  290. };
  291. static QemuInputHandler xenfb_rel_mouse = {
  292. .name = "Xen PV Mouse",
  293. .mask = INPUT_EVENT_MASK_BTN | INPUT_EVENT_MASK_REL,
  294. .event = xenfb_mouse_event,
  295. .sync = xenfb_mouse_sync,
  296. };
  297. static int input_init(struct XenLegacyDevice *xendev)
  298. {
  299. xenstore_write_be_int(xendev, "feature-abs-pointer", 1);
  300. xenstore_write_be_int(xendev, "feature-raw-pointer", 1);
  301. return 0;
  302. }
  303. static int input_initialise(struct XenLegacyDevice *xendev)
  304. {
  305. struct XenInput *in = container_of(xendev, struct XenInput, c.xendev);
  306. int rc;
  307. rc = common_bind(&in->c);
  308. if (rc != 0)
  309. return rc;
  310. return 0;
  311. }
  312. static void input_connected(struct XenLegacyDevice *xendev)
  313. {
  314. struct XenInput *in = container_of(xendev, struct XenInput, c.xendev);
  315. if (xenstore_read_fe_int(xendev, "request-abs-pointer",
  316. &in->abs_pointer_wanted) == -1) {
  317. in->abs_pointer_wanted = 0;
  318. }
  319. if (xenstore_read_fe_int(xendev, "request-raw-pointer",
  320. &in->raw_pointer_wanted) == -1) {
  321. in->raw_pointer_wanted = 0;
  322. }
  323. if (in->raw_pointer_wanted && in->abs_pointer_wanted == 0) {
  324. xen_pv_printf(xendev, 0, "raw pointer set without abs pointer");
  325. }
  326. if (in->qkbd) {
  327. qemu_input_handler_unregister(in->qkbd);
  328. }
  329. if (in->qmou) {
  330. qemu_input_handler_unregister(in->qmou);
  331. }
  332. trace_xenfb_input_connected(xendev, in->abs_pointer_wanted);
  333. in->qkbd = qemu_input_handler_register((DeviceState *)in, &xenfb_keyboard);
  334. in->qmou = qemu_input_handler_register((DeviceState *)in,
  335. in->abs_pointer_wanted ? &xenfb_abs_mouse : &xenfb_rel_mouse);
  336. if (in->raw_pointer_wanted) {
  337. qemu_input_handler_activate(in->qkbd);
  338. qemu_input_handler_activate(in->qmou);
  339. }
  340. }
  341. static void input_disconnect(struct XenLegacyDevice *xendev)
  342. {
  343. struct XenInput *in = container_of(xendev, struct XenInput, c.xendev);
  344. if (in->qkbd) {
  345. qemu_input_handler_unregister(in->qkbd);
  346. in->qkbd = NULL;
  347. }
  348. if (in->qmou) {
  349. qemu_input_handler_unregister(in->qmou);
  350. in->qmou = NULL;
  351. }
  352. common_unbind(&in->c);
  353. }
  354. static void input_event(struct XenLegacyDevice *xendev)
  355. {
  356. struct XenInput *xenfb = container_of(xendev, struct XenInput, c.xendev);
  357. struct xenkbd_page *page = xenfb->c.page;
  358. /* We don't understand any keyboard events, so just ignore them. */
  359. if (page->out_prod == page->out_cons)
  360. return;
  361. page->out_cons = page->out_prod;
  362. xen_pv_send_notify(&xenfb->c.xendev);
  363. }
  364. /* -------------------------------------------------------------------- */
  365. static void xenfb_copy_mfns(int mode, int count, xen_pfn_t *dst, void *src)
  366. {
  367. uint32_t *src32 = src;
  368. uint64_t *src64 = src;
  369. int i;
  370. for (i = 0; i < count; i++)
  371. dst[i] = (mode == 32) ? src32[i] : src64[i];
  372. }
  373. static int xenfb_map_fb(struct XenFB *xenfb)
  374. {
  375. struct xenfb_page *page = xenfb->c.page;
  376. char *protocol = xenfb->c.xendev.protocol;
  377. int n_fbdirs;
  378. xen_pfn_t *pgmfns = NULL;
  379. xen_pfn_t *fbmfns = NULL;
  380. void *map, *pd;
  381. int mode, ret = -1;
  382. /* default to native */
  383. pd = page->pd;
  384. mode = sizeof(unsigned long) * 8;
  385. if (!protocol) {
  386. /*
  387. * Undefined protocol, some guesswork needed.
  388. *
  389. * Old frontends which don't set the protocol use
  390. * one page directory only, thus pd[1] must be zero.
  391. * pd[1] of the 32bit struct layout and the lower
  392. * 32 bits of pd[0] of the 64bit struct layout have
  393. * the same location, so we can check that ...
  394. */
  395. uint32_t *ptr32 = NULL;
  396. uint32_t *ptr64 = NULL;
  397. #if defined(__i386__)
  398. ptr32 = (void*)page->pd;
  399. ptr64 = ((void*)page->pd) + 4;
  400. #elif defined(__x86_64__)
  401. ptr32 = ((void*)page->pd) - 4;
  402. ptr64 = (void*)page->pd;
  403. #endif
  404. if (ptr32) {
  405. if (ptr32[1] == 0) {
  406. mode = 32;
  407. pd = ptr32;
  408. } else {
  409. mode = 64;
  410. pd = ptr64;
  411. }
  412. }
  413. #if defined(__x86_64__)
  414. } else if (strcmp(protocol, XEN_IO_PROTO_ABI_X86_32) == 0) {
  415. /* 64bit dom0, 32bit domU */
  416. mode = 32;
  417. pd = ((void*)page->pd) - 4;
  418. #elif defined(__i386__)
  419. } else if (strcmp(protocol, XEN_IO_PROTO_ABI_X86_64) == 0) {
  420. /* 32bit dom0, 64bit domU */
  421. mode = 64;
  422. pd = ((void*)page->pd) + 4;
  423. #endif
  424. }
  425. if (xenfb->pixels) {
  426. munmap(xenfb->pixels, xenfb->fbpages * XC_PAGE_SIZE);
  427. xenfb->pixels = NULL;
  428. }
  429. xenfb->fbpages = DIV_ROUND_UP(xenfb->fb_len, XC_PAGE_SIZE);
  430. n_fbdirs = xenfb->fbpages * mode / 8;
  431. n_fbdirs = DIV_ROUND_UP(n_fbdirs, XC_PAGE_SIZE);
  432. pgmfns = g_malloc0(sizeof(xen_pfn_t) * n_fbdirs);
  433. fbmfns = g_malloc0(sizeof(xen_pfn_t) * xenfb->fbpages);
  434. xenfb_copy_mfns(mode, n_fbdirs, pgmfns, pd);
  435. map = xenforeignmemory_map(xen_fmem, xenfb->c.xendev.dom,
  436. PROT_READ, n_fbdirs, pgmfns, NULL);
  437. if (map == NULL)
  438. goto out;
  439. xenfb_copy_mfns(mode, xenfb->fbpages, fbmfns, map);
  440. xenforeignmemory_unmap(xen_fmem, map, n_fbdirs);
  441. xenfb->pixels = xenforeignmemory_map(xen_fmem, xenfb->c.xendev.dom,
  442. PROT_READ, xenfb->fbpages, fbmfns, NULL);
  443. if (xenfb->pixels == NULL)
  444. goto out;
  445. ret = 0; /* all is fine */
  446. out:
  447. g_free(pgmfns);
  448. g_free(fbmfns);
  449. return ret;
  450. }
  451. static int xenfb_configure_fb(struct XenFB *xenfb, size_t fb_len_lim,
  452. int width, int height, int depth,
  453. size_t fb_len, int offset, int row_stride)
  454. {
  455. size_t mfn_sz = sizeof_field(struct xenfb_page, pd[0]);
  456. size_t pd_len = sizeof_field(struct xenfb_page, pd) / mfn_sz;
  457. size_t fb_pages = pd_len * XC_PAGE_SIZE / mfn_sz;
  458. size_t fb_len_max = fb_pages * XC_PAGE_SIZE;
  459. int max_width, max_height;
  460. if (fb_len_lim > fb_len_max) {
  461. xen_pv_printf(&xenfb->c.xendev, 0,
  462. "fb size limit %zu exceeds %zu, corrected\n",
  463. fb_len_lim, fb_len_max);
  464. fb_len_lim = fb_len_max;
  465. }
  466. if (fb_len_lim && fb_len > fb_len_lim) {
  467. xen_pv_printf(&xenfb->c.xendev, 0,
  468. "frontend fb size %zu limited to %zu\n",
  469. fb_len, fb_len_lim);
  470. fb_len = fb_len_lim;
  471. }
  472. if (depth != 8 && depth != 16 && depth != 24 && depth != 32) {
  473. xen_pv_printf(&xenfb->c.xendev, 0,
  474. "can't handle frontend fb depth %d\n",
  475. depth);
  476. return -1;
  477. }
  478. if (row_stride <= 0 || row_stride > fb_len) {
  479. xen_pv_printf(&xenfb->c.xendev, 0, "invalid frontend stride %d\n",
  480. row_stride);
  481. return -1;
  482. }
  483. max_width = row_stride / (depth / 8);
  484. if (width < 0 || width > max_width) {
  485. xen_pv_printf(&xenfb->c.xendev, 0,
  486. "invalid frontend width %d limited to %d\n",
  487. width, max_width);
  488. width = max_width;
  489. }
  490. if (offset < 0 || offset >= fb_len) {
  491. xen_pv_printf(&xenfb->c.xendev, 0,
  492. "invalid frontend offset %d (max %zu)\n",
  493. offset, fb_len - 1);
  494. return -1;
  495. }
  496. max_height = (fb_len - offset) / row_stride;
  497. if (height < 0 || height > max_height) {
  498. xen_pv_printf(&xenfb->c.xendev, 0,
  499. "invalid frontend height %d limited to %d\n",
  500. height, max_height);
  501. height = max_height;
  502. }
  503. xenfb->fb_len = fb_len;
  504. xenfb->row_stride = row_stride;
  505. xenfb->depth = depth;
  506. xenfb->width = width;
  507. xenfb->height = height;
  508. xenfb->offset = offset;
  509. xenfb->up_fullscreen = 1;
  510. xenfb->do_resize = 1;
  511. xen_pv_printf(&xenfb->c.xendev, 1,
  512. "framebuffer %dx%dx%d offset %d stride %d\n",
  513. width, height, depth, offset, row_stride);
  514. return 0;
  515. }
  516. /* A convenient function for munging pixels between different depths */
  517. #define BLT(SRC_T,DST_T,RSB,GSB,BSB,RDB,GDB,BDB) \
  518. for (line = y ; line < (y+h) ; line++) { \
  519. SRC_T *src = (SRC_T *)(xenfb->pixels \
  520. + xenfb->offset \
  521. + (line * xenfb->row_stride) \
  522. + (x * xenfb->depth / 8)); \
  523. DST_T *dst = (DST_T *)(data \
  524. + (line * linesize) \
  525. + (x * bpp / 8)); \
  526. int col; \
  527. const int RSS = 32 - (RSB + GSB + BSB); \
  528. const int GSS = 32 - (GSB + BSB); \
  529. const int BSS = 32 - (BSB); \
  530. const uint32_t RSM = (~0U) << (32 - RSB); \
  531. const uint32_t GSM = (~0U) << (32 - GSB); \
  532. const uint32_t BSM = (~0U) << (32 - BSB); \
  533. const int RDS = 32 - (RDB + GDB + BDB); \
  534. const int GDS = 32 - (GDB + BDB); \
  535. const int BDS = 32 - (BDB); \
  536. const uint32_t RDM = (~0U) << (32 - RDB); \
  537. const uint32_t GDM = (~0U) << (32 - GDB); \
  538. const uint32_t BDM = (~0U) << (32 - BDB); \
  539. for (col = x ; col < (x+w) ; col++) { \
  540. uint32_t spix = *src; \
  541. *dst = (((spix << RSS) & RSM & RDM) >> RDS) | \
  542. (((spix << GSS) & GSM & GDM) >> GDS) | \
  543. (((spix << BSS) & BSM & BDM) >> BDS); \
  544. src = (SRC_T *) ((unsigned long) src + xenfb->depth / 8); \
  545. dst = (DST_T *) ((unsigned long) dst + bpp / 8); \
  546. } \
  547. }
  548. /*
  549. * This copies data from the guest framebuffer region, into QEMU's
  550. * displaysurface. qemu uses 16 or 32 bpp. In case the pv framebuffer
  551. * uses something else we must convert and copy, otherwise we can
  552. * supply the buffer directly and no thing here.
  553. */
  554. static void xenfb_guest_copy(struct XenFB *xenfb, int x, int y, int w, int h)
  555. {
  556. DisplaySurface *surface = qemu_console_surface(xenfb->con);
  557. int line, oops = 0;
  558. int bpp = surface_bits_per_pixel(surface);
  559. int linesize = surface_stride(surface);
  560. uint8_t *data = surface_data(surface);
  561. if (!is_buffer_shared(surface)) {
  562. switch (xenfb->depth) {
  563. case 8:
  564. if (bpp == 16) {
  565. BLT(uint8_t, uint16_t, 3, 3, 2, 5, 6, 5);
  566. } else if (bpp == 32) {
  567. BLT(uint8_t, uint32_t, 3, 3, 2, 8, 8, 8);
  568. } else {
  569. oops = 1;
  570. }
  571. break;
  572. case 24:
  573. if (bpp == 16) {
  574. BLT(uint32_t, uint16_t, 8, 8, 8, 5, 6, 5);
  575. } else if (bpp == 32) {
  576. BLT(uint32_t, uint32_t, 8, 8, 8, 8, 8, 8);
  577. } else {
  578. oops = 1;
  579. }
  580. break;
  581. default:
  582. oops = 1;
  583. }
  584. }
  585. if (oops) /* should not happen */
  586. xen_pv_printf(&xenfb->c.xendev, 0, "%s: oops: convert %d -> %d bpp?\n",
  587. __func__, xenfb->depth, bpp);
  588. dpy_gfx_update(xenfb->con, x, y, w, h);
  589. }
  590. #ifdef XENFB_TYPE_REFRESH_PERIOD
  591. static int xenfb_queue_full(struct XenFB *xenfb)
  592. {
  593. struct xenfb_page *page = xenfb->c.page;
  594. uint32_t cons, prod;
  595. if (!page)
  596. return 1;
  597. prod = page->in_prod;
  598. cons = page->in_cons;
  599. return prod - cons == XENFB_IN_RING_LEN;
  600. }
  601. static void xenfb_send_event(struct XenFB *xenfb, union xenfb_in_event *event)
  602. {
  603. uint32_t prod;
  604. struct xenfb_page *page = xenfb->c.page;
  605. prod = page->in_prod;
  606. /* caller ensures !xenfb_queue_full() */
  607. xen_mb(); /* ensure ring space available */
  608. XENFB_IN_RING_REF(page, prod) = *event;
  609. xen_wmb(); /* ensure ring contents visible */
  610. page->in_prod = prod + 1;
  611. xen_pv_send_notify(&xenfb->c.xendev);
  612. }
  613. static void xenfb_send_refresh_period(struct XenFB *xenfb, int period)
  614. {
  615. union xenfb_in_event event;
  616. memset(&event, 0, sizeof(event));
  617. event.type = XENFB_TYPE_REFRESH_PERIOD;
  618. event.refresh_period.period = period;
  619. xenfb_send_event(xenfb, &event);
  620. }
  621. #endif
  622. /*
  623. * Periodic update of display.
  624. * Also transmit the refresh interval to the frontend.
  625. *
  626. * Never ever do any qemu display operations
  627. * (resize, screen update) outside this function.
  628. * Our screen might be inactive. When asked for
  629. * an update we know it is active.
  630. */
  631. static void xenfb_update(void *opaque)
  632. {
  633. struct XenFB *xenfb = opaque;
  634. DisplaySurface *surface;
  635. int i;
  636. if (xenfb->c.xendev.be_state != XenbusStateConnected)
  637. return;
  638. if (!xenfb->feature_update) {
  639. /* we don't get update notifications, thus use the
  640. * sledge hammer approach ... */
  641. xenfb->up_fullscreen = 1;
  642. }
  643. /* resize if needed */
  644. if (xenfb->do_resize) {
  645. pixman_format_code_t format;
  646. xenfb->do_resize = 0;
  647. switch (xenfb->depth) {
  648. case 16:
  649. case 32:
  650. /* console.c supported depth -> buffer can be used directly */
  651. format = qemu_default_pixman_format(xenfb->depth, true);
  652. surface = qemu_create_displaysurface_from
  653. (xenfb->width, xenfb->height, format,
  654. xenfb->row_stride, xenfb->pixels + xenfb->offset);
  655. break;
  656. default:
  657. /* we must convert stuff */
  658. surface = qemu_create_displaysurface(xenfb->width, xenfb->height);
  659. break;
  660. }
  661. dpy_gfx_replace_surface(xenfb->con, surface);
  662. xen_pv_printf(&xenfb->c.xendev, 1,
  663. "update: resizing: %dx%d @ %d bpp%s\n",
  664. xenfb->width, xenfb->height, xenfb->depth,
  665. is_buffer_shared(surface) ? " (shared)" : "");
  666. xenfb->up_fullscreen = 1;
  667. }
  668. /* run queued updates */
  669. if (xenfb->up_fullscreen) {
  670. xen_pv_printf(&xenfb->c.xendev, 3, "update: fullscreen\n");
  671. xenfb_guest_copy(xenfb, 0, 0, xenfb->width, xenfb->height);
  672. } else if (xenfb->up_count) {
  673. xen_pv_printf(&xenfb->c.xendev, 3, "update: %d rects\n",
  674. xenfb->up_count);
  675. for (i = 0; i < xenfb->up_count; i++)
  676. xenfb_guest_copy(xenfb,
  677. xenfb->up_rects[i].x,
  678. xenfb->up_rects[i].y,
  679. xenfb->up_rects[i].w,
  680. xenfb->up_rects[i].h);
  681. } else {
  682. xen_pv_printf(&xenfb->c.xendev, 3, "update: nothing\n");
  683. }
  684. xenfb->up_count = 0;
  685. xenfb->up_fullscreen = 0;
  686. }
  687. static void xenfb_update_interval(void *opaque, uint64_t interval)
  688. {
  689. struct XenFB *xenfb = opaque;
  690. if (xenfb->feature_update) {
  691. #ifdef XENFB_TYPE_REFRESH_PERIOD
  692. if (xenfb_queue_full(xenfb)) {
  693. return;
  694. }
  695. xenfb_send_refresh_period(xenfb, interval);
  696. #endif
  697. }
  698. }
  699. /* QEMU display state changed, so refresh the framebuffer copy */
  700. static void xenfb_invalidate(void *opaque)
  701. {
  702. struct XenFB *xenfb = opaque;
  703. xenfb->up_fullscreen = 1;
  704. }
  705. static void xenfb_handle_events(struct XenFB *xenfb)
  706. {
  707. uint32_t prod, cons, out_cons;
  708. struct xenfb_page *page = xenfb->c.page;
  709. prod = page->out_prod;
  710. out_cons = page->out_cons;
  711. if (prod - out_cons > XENFB_OUT_RING_LEN) {
  712. return;
  713. }
  714. xen_rmb(); /* ensure we see ring contents up to prod */
  715. for (cons = out_cons; cons != prod; cons++) {
  716. union xenfb_out_event *event = &XENFB_OUT_RING_REF(page, cons);
  717. uint8_t type = event->type;
  718. int x, y, w, h;
  719. switch (type) {
  720. case XENFB_TYPE_UPDATE:
  721. if (xenfb->up_count == UP_QUEUE)
  722. xenfb->up_fullscreen = 1;
  723. if (xenfb->up_fullscreen)
  724. break;
  725. x = MAX(event->update.x, 0);
  726. y = MAX(event->update.y, 0);
  727. w = MIN(event->update.width, xenfb->width - x);
  728. h = MIN(event->update.height, xenfb->height - y);
  729. if (w < 0 || h < 0) {
  730. xen_pv_printf(&xenfb->c.xendev, 1, "bogus update ignored\n");
  731. break;
  732. }
  733. if (x != event->update.x ||
  734. y != event->update.y ||
  735. w != event->update.width ||
  736. h != event->update.height) {
  737. xen_pv_printf(&xenfb->c.xendev, 1, "bogus update clipped\n");
  738. }
  739. if (w == xenfb->width && h > xenfb->height / 2) {
  740. /* scroll detector: updated more than 50% of the lines,
  741. * don't bother keeping track of the rectangles then */
  742. xenfb->up_fullscreen = 1;
  743. } else {
  744. xenfb->up_rects[xenfb->up_count].x = x;
  745. xenfb->up_rects[xenfb->up_count].y = y;
  746. xenfb->up_rects[xenfb->up_count].w = w;
  747. xenfb->up_rects[xenfb->up_count].h = h;
  748. xenfb->up_count++;
  749. }
  750. break;
  751. #ifdef XENFB_TYPE_RESIZE
  752. case XENFB_TYPE_RESIZE:
  753. if (xenfb_configure_fb(xenfb, xenfb->fb_len,
  754. event->resize.width,
  755. event->resize.height,
  756. event->resize.depth,
  757. xenfb->fb_len,
  758. event->resize.offset,
  759. event->resize.stride) < 0)
  760. break;
  761. xenfb_invalidate(xenfb);
  762. break;
  763. #endif
  764. }
  765. }
  766. xen_mb(); /* ensure we're done with ring contents */
  767. page->out_cons = cons;
  768. }
  769. static int fb_init(struct XenLegacyDevice *xendev)
  770. {
  771. #ifdef XENFB_TYPE_RESIZE
  772. xenstore_write_be_int(xendev, "feature-resize", 1);
  773. #endif
  774. return 0;
  775. }
  776. static int fb_initialise(struct XenLegacyDevice *xendev)
  777. {
  778. struct XenFB *fb = container_of(xendev, struct XenFB, c.xendev);
  779. struct xenfb_page *fb_page;
  780. int videoram;
  781. int rc;
  782. if (xenstore_read_fe_int(xendev, "videoram", &videoram) == -1)
  783. videoram = 0;
  784. rc = common_bind(&fb->c);
  785. if (rc != 0)
  786. return rc;
  787. fb_page = fb->c.page;
  788. rc = xenfb_configure_fb(fb, videoram * MiB,
  789. fb_page->width, fb_page->height, fb_page->depth,
  790. fb_page->mem_length, 0, fb_page->line_length);
  791. if (rc != 0)
  792. return rc;
  793. rc = xenfb_map_fb(fb);
  794. if (rc != 0)
  795. return rc;
  796. fb->con = graphic_console_init(NULL, 0, &xenfb_ops, fb);
  797. if (xenstore_read_fe_int(xendev, "feature-update", &fb->feature_update) == -1)
  798. fb->feature_update = 0;
  799. if (fb->feature_update)
  800. xenstore_write_be_int(xendev, "request-update", 1);
  801. xen_pv_printf(xendev, 1, "feature-update=%d, videoram=%d\n",
  802. fb->feature_update, videoram);
  803. return 0;
  804. }
  805. static void fb_disconnect(struct XenLegacyDevice *xendev)
  806. {
  807. struct XenFB *fb = container_of(xendev, struct XenFB, c.xendev);
  808. /*
  809. * FIXME: qemu can't un-init gfx display (yet?).
  810. * Replacing the framebuffer with anonymous shared memory
  811. * instead. This releases the guest pages and keeps qemu happy.
  812. */
  813. xenforeignmemory_unmap(xen_fmem, fb->pixels, fb->fbpages);
  814. fb->pixels = mmap(fb->pixels, fb->fbpages * XC_PAGE_SIZE,
  815. PROT_READ | PROT_WRITE, MAP_SHARED | MAP_ANON,
  816. -1, 0);
  817. if (fb->pixels == MAP_FAILED) {
  818. xen_pv_printf(xendev, 0,
  819. "Couldn't replace the framebuffer with anonymous memory errno=%d\n",
  820. errno);
  821. }
  822. common_unbind(&fb->c);
  823. fb->feature_update = 0;
  824. fb->bug_trigger = 0;
  825. }
  826. static void fb_frontend_changed(struct XenLegacyDevice *xendev,
  827. const char *node)
  828. {
  829. struct XenFB *fb = container_of(xendev, struct XenFB, c.xendev);
  830. /*
  831. * Set state to Connected *again* once the frontend switched
  832. * to connected. We must trigger the watch a second time to
  833. * workaround a frontend bug.
  834. */
  835. if (fb->bug_trigger == 0 && strcmp(node, "state") == 0 &&
  836. xendev->fe_state == XenbusStateConnected &&
  837. xendev->be_state == XenbusStateConnected) {
  838. xen_pv_printf(xendev, 2, "re-trigger connected (frontend bug)\n");
  839. xen_be_set_state(xendev, XenbusStateConnected);
  840. fb->bug_trigger = 1; /* only once */
  841. }
  842. }
  843. static void fb_event(struct XenLegacyDevice *xendev)
  844. {
  845. struct XenFB *xenfb = container_of(xendev, struct XenFB, c.xendev);
  846. xenfb_handle_events(xenfb);
  847. xen_pv_send_notify(&xenfb->c.xendev);
  848. }
  849. /* -------------------------------------------------------------------- */
  850. struct XenDevOps xen_kbdmouse_ops = {
  851. .size = sizeof(struct XenInput),
  852. .init = input_init,
  853. .initialise = input_initialise,
  854. .connected = input_connected,
  855. .disconnect = input_disconnect,
  856. .event = input_event,
  857. };
  858. struct XenDevOps xen_framebuffer_ops = {
  859. .size = sizeof(struct XenFB),
  860. .init = fb_init,
  861. .initialise = fb_initialise,
  862. .disconnect = fb_disconnect,
  863. .event = fb_event,
  864. .frontend_changed = fb_frontend_changed,
  865. };
  866. static const GraphicHwOps xenfb_ops = {
  867. .invalidate = xenfb_invalidate,
  868. .gfx_update = xenfb_update,
  869. .update_interval = xenfb_update_interval,
  870. };