vnc.c 119 KB

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  1. /*
  2. * QEMU VNC display driver
  3. *
  4. * Copyright (C) 2006 Anthony Liguori <anthony@codemonkey.ws>
  5. * Copyright (C) 2006 Fabrice Bellard
  6. * Copyright (C) 2009 Red Hat, Inc
  7. *
  8. * Permission is hereby granted, free of charge, to any person obtaining a copy
  9. * of this software and associated documentation files (the "Software"), to deal
  10. * in the Software without restriction, including without limitation the rights
  11. * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  12. * copies of the Software, and to permit persons to whom the Software is
  13. * furnished to do so, subject to the following conditions:
  14. *
  15. * The above copyright notice and this permission notice shall be included in
  16. * all copies or substantial portions of the Software.
  17. *
  18. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  19. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  20. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  21. * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  22. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  23. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  24. * THE SOFTWARE.
  25. */
  26. #include "qemu/osdep.h"
  27. #include "vnc.h"
  28. #include "vnc-jobs.h"
  29. #include "trace.h"
  30. #include "hw/qdev.h"
  31. #include "sysemu/sysemu.h"
  32. #include "qemu/error-report.h"
  33. #include "qemu/sockets.h"
  34. #include "qemu/timer.h"
  35. #include "qemu/acl.h"
  36. #include "qemu/config-file.h"
  37. #include "qapi/qmp/qerror.h"
  38. #include "qapi/qmp/types.h"
  39. #include "qmp-commands.h"
  40. #include "ui/input.h"
  41. #include "qapi-event.h"
  42. #include "crypto/hash.h"
  43. #include "crypto/tlscredsanon.h"
  44. #include "crypto/tlscredsx509.h"
  45. #include "qom/object_interfaces.h"
  46. #include "qemu/cutils.h"
  47. #include "io/dns-resolver.h"
  48. #define VNC_REFRESH_INTERVAL_BASE GUI_REFRESH_INTERVAL_DEFAULT
  49. #define VNC_REFRESH_INTERVAL_INC 50
  50. #define VNC_REFRESH_INTERVAL_MAX GUI_REFRESH_INTERVAL_IDLE
  51. static const struct timeval VNC_REFRESH_STATS = { 0, 500000 };
  52. static const struct timeval VNC_REFRESH_LOSSY = { 2, 0 };
  53. #include "vnc_keysym.h"
  54. #include "crypto/cipher.h"
  55. static QTAILQ_HEAD(, VncDisplay) vnc_displays =
  56. QTAILQ_HEAD_INITIALIZER(vnc_displays);
  57. static int vnc_cursor_define(VncState *vs);
  58. static void vnc_release_modifiers(VncState *vs);
  59. static void vnc_set_share_mode(VncState *vs, VncShareMode mode)
  60. {
  61. #ifdef _VNC_DEBUG
  62. static const char *mn[] = {
  63. [0] = "undefined",
  64. [VNC_SHARE_MODE_CONNECTING] = "connecting",
  65. [VNC_SHARE_MODE_SHARED] = "shared",
  66. [VNC_SHARE_MODE_EXCLUSIVE] = "exclusive",
  67. [VNC_SHARE_MODE_DISCONNECTED] = "disconnected",
  68. };
  69. fprintf(stderr, "%s/%p: %s -> %s\n", __func__,
  70. vs->ioc, mn[vs->share_mode], mn[mode]);
  71. #endif
  72. switch (vs->share_mode) {
  73. case VNC_SHARE_MODE_CONNECTING:
  74. vs->vd->num_connecting--;
  75. break;
  76. case VNC_SHARE_MODE_SHARED:
  77. vs->vd->num_shared--;
  78. break;
  79. case VNC_SHARE_MODE_EXCLUSIVE:
  80. vs->vd->num_exclusive--;
  81. break;
  82. default:
  83. break;
  84. }
  85. vs->share_mode = mode;
  86. switch (vs->share_mode) {
  87. case VNC_SHARE_MODE_CONNECTING:
  88. vs->vd->num_connecting++;
  89. break;
  90. case VNC_SHARE_MODE_SHARED:
  91. vs->vd->num_shared++;
  92. break;
  93. case VNC_SHARE_MODE_EXCLUSIVE:
  94. vs->vd->num_exclusive++;
  95. break;
  96. default:
  97. break;
  98. }
  99. }
  100. static void vnc_init_basic_info(SocketAddress *addr,
  101. VncBasicInfo *info,
  102. Error **errp)
  103. {
  104. switch (addr->type) {
  105. case SOCKET_ADDRESS_KIND_INET:
  106. info->host = g_strdup(addr->u.inet.data->host);
  107. info->service = g_strdup(addr->u.inet.data->port);
  108. if (addr->u.inet.data->ipv6) {
  109. info->family = NETWORK_ADDRESS_FAMILY_IPV6;
  110. } else {
  111. info->family = NETWORK_ADDRESS_FAMILY_IPV4;
  112. }
  113. break;
  114. case SOCKET_ADDRESS_KIND_UNIX:
  115. info->host = g_strdup("");
  116. info->service = g_strdup(addr->u.q_unix.data->path);
  117. info->family = NETWORK_ADDRESS_FAMILY_UNIX;
  118. break;
  119. case SOCKET_ADDRESS_KIND_VSOCK:
  120. case SOCKET_ADDRESS_KIND_FD:
  121. error_setg(errp, "Unsupported socket address type %s",
  122. SocketAddressKind_lookup[addr->type]);
  123. break;
  124. default:
  125. abort();
  126. }
  127. return;
  128. }
  129. static void vnc_init_basic_info_from_server_addr(QIOChannelSocket *ioc,
  130. VncBasicInfo *info,
  131. Error **errp)
  132. {
  133. SocketAddress *addr = NULL;
  134. if (!ioc) {
  135. error_setg(errp, "No listener socket available");
  136. return;
  137. }
  138. addr = qio_channel_socket_get_local_address(ioc, errp);
  139. if (!addr) {
  140. return;
  141. }
  142. vnc_init_basic_info(addr, info, errp);
  143. qapi_free_SocketAddress(addr);
  144. }
  145. static void vnc_init_basic_info_from_remote_addr(QIOChannelSocket *ioc,
  146. VncBasicInfo *info,
  147. Error **errp)
  148. {
  149. SocketAddress *addr = NULL;
  150. addr = qio_channel_socket_get_remote_address(ioc, errp);
  151. if (!addr) {
  152. return;
  153. }
  154. vnc_init_basic_info(addr, info, errp);
  155. qapi_free_SocketAddress(addr);
  156. }
  157. static const char *vnc_auth_name(VncDisplay *vd) {
  158. switch (vd->auth) {
  159. case VNC_AUTH_INVALID:
  160. return "invalid";
  161. case VNC_AUTH_NONE:
  162. return "none";
  163. case VNC_AUTH_VNC:
  164. return "vnc";
  165. case VNC_AUTH_RA2:
  166. return "ra2";
  167. case VNC_AUTH_RA2NE:
  168. return "ra2ne";
  169. case VNC_AUTH_TIGHT:
  170. return "tight";
  171. case VNC_AUTH_ULTRA:
  172. return "ultra";
  173. case VNC_AUTH_TLS:
  174. return "tls";
  175. case VNC_AUTH_VENCRYPT:
  176. switch (vd->subauth) {
  177. case VNC_AUTH_VENCRYPT_PLAIN:
  178. return "vencrypt+plain";
  179. case VNC_AUTH_VENCRYPT_TLSNONE:
  180. return "vencrypt+tls+none";
  181. case VNC_AUTH_VENCRYPT_TLSVNC:
  182. return "vencrypt+tls+vnc";
  183. case VNC_AUTH_VENCRYPT_TLSPLAIN:
  184. return "vencrypt+tls+plain";
  185. case VNC_AUTH_VENCRYPT_X509NONE:
  186. return "vencrypt+x509+none";
  187. case VNC_AUTH_VENCRYPT_X509VNC:
  188. return "vencrypt+x509+vnc";
  189. case VNC_AUTH_VENCRYPT_X509PLAIN:
  190. return "vencrypt+x509+plain";
  191. case VNC_AUTH_VENCRYPT_TLSSASL:
  192. return "vencrypt+tls+sasl";
  193. case VNC_AUTH_VENCRYPT_X509SASL:
  194. return "vencrypt+x509+sasl";
  195. default:
  196. return "vencrypt";
  197. }
  198. case VNC_AUTH_SASL:
  199. return "sasl";
  200. }
  201. return "unknown";
  202. }
  203. static VncServerInfo *vnc_server_info_get(VncDisplay *vd)
  204. {
  205. VncServerInfo *info;
  206. Error *err = NULL;
  207. if (!vd->nlsock) {
  208. return NULL;
  209. }
  210. info = g_malloc0(sizeof(*info));
  211. vnc_init_basic_info_from_server_addr(vd->lsock[0],
  212. qapi_VncServerInfo_base(info), &err);
  213. info->has_auth = true;
  214. info->auth = g_strdup(vnc_auth_name(vd));
  215. if (err) {
  216. qapi_free_VncServerInfo(info);
  217. info = NULL;
  218. error_free(err);
  219. }
  220. return info;
  221. }
  222. static void vnc_client_cache_auth(VncState *client)
  223. {
  224. if (!client->info) {
  225. return;
  226. }
  227. if (client->tls) {
  228. client->info->x509_dname =
  229. qcrypto_tls_session_get_peer_name(client->tls);
  230. client->info->has_x509_dname =
  231. client->info->x509_dname != NULL;
  232. }
  233. #ifdef CONFIG_VNC_SASL
  234. if (client->sasl.conn &&
  235. client->sasl.username) {
  236. client->info->has_sasl_username = true;
  237. client->info->sasl_username = g_strdup(client->sasl.username);
  238. }
  239. #endif
  240. }
  241. static void vnc_client_cache_addr(VncState *client)
  242. {
  243. Error *err = NULL;
  244. client->info = g_malloc0(sizeof(*client->info));
  245. vnc_init_basic_info_from_remote_addr(client->sioc,
  246. qapi_VncClientInfo_base(client->info),
  247. &err);
  248. if (err) {
  249. qapi_free_VncClientInfo(client->info);
  250. client->info = NULL;
  251. error_free(err);
  252. }
  253. }
  254. static void vnc_qmp_event(VncState *vs, QAPIEvent event)
  255. {
  256. VncServerInfo *si;
  257. if (!vs->info) {
  258. return;
  259. }
  260. si = vnc_server_info_get(vs->vd);
  261. if (!si) {
  262. return;
  263. }
  264. switch (event) {
  265. case QAPI_EVENT_VNC_CONNECTED:
  266. qapi_event_send_vnc_connected(si, qapi_VncClientInfo_base(vs->info),
  267. &error_abort);
  268. break;
  269. case QAPI_EVENT_VNC_INITIALIZED:
  270. qapi_event_send_vnc_initialized(si, vs->info, &error_abort);
  271. break;
  272. case QAPI_EVENT_VNC_DISCONNECTED:
  273. qapi_event_send_vnc_disconnected(si, vs->info, &error_abort);
  274. break;
  275. default:
  276. break;
  277. }
  278. qapi_free_VncServerInfo(si);
  279. }
  280. static VncClientInfo *qmp_query_vnc_client(const VncState *client)
  281. {
  282. VncClientInfo *info;
  283. Error *err = NULL;
  284. info = g_malloc0(sizeof(*info));
  285. vnc_init_basic_info_from_remote_addr(client->sioc,
  286. qapi_VncClientInfo_base(info),
  287. &err);
  288. if (err) {
  289. error_free(err);
  290. qapi_free_VncClientInfo(info);
  291. return NULL;
  292. }
  293. info->websocket = client->websocket;
  294. if (client->tls) {
  295. info->x509_dname = qcrypto_tls_session_get_peer_name(client->tls);
  296. info->has_x509_dname = info->x509_dname != NULL;
  297. }
  298. #ifdef CONFIG_VNC_SASL
  299. if (client->sasl.conn && client->sasl.username) {
  300. info->has_sasl_username = true;
  301. info->sasl_username = g_strdup(client->sasl.username);
  302. }
  303. #endif
  304. return info;
  305. }
  306. static VncDisplay *vnc_display_find(const char *id)
  307. {
  308. VncDisplay *vd;
  309. if (id == NULL) {
  310. return QTAILQ_FIRST(&vnc_displays);
  311. }
  312. QTAILQ_FOREACH(vd, &vnc_displays, next) {
  313. if (strcmp(id, vd->id) == 0) {
  314. return vd;
  315. }
  316. }
  317. return NULL;
  318. }
  319. static VncClientInfoList *qmp_query_client_list(VncDisplay *vd)
  320. {
  321. VncClientInfoList *cinfo, *prev = NULL;
  322. VncState *client;
  323. QTAILQ_FOREACH(client, &vd->clients, next) {
  324. cinfo = g_new0(VncClientInfoList, 1);
  325. cinfo->value = qmp_query_vnc_client(client);
  326. cinfo->next = prev;
  327. prev = cinfo;
  328. }
  329. return prev;
  330. }
  331. VncInfo *qmp_query_vnc(Error **errp)
  332. {
  333. VncInfo *info = g_malloc0(sizeof(*info));
  334. VncDisplay *vd = vnc_display_find(NULL);
  335. SocketAddress *addr = NULL;
  336. if (vd == NULL || !vd->nlsock) {
  337. info->enabled = false;
  338. } else {
  339. info->enabled = true;
  340. /* for compatibility with the original command */
  341. info->has_clients = true;
  342. info->clients = qmp_query_client_list(vd);
  343. if (vd->lsock == NULL) {
  344. return info;
  345. }
  346. addr = qio_channel_socket_get_local_address(vd->lsock[0], errp);
  347. if (!addr) {
  348. goto out_error;
  349. }
  350. switch (addr->type) {
  351. case SOCKET_ADDRESS_KIND_INET:
  352. info->host = g_strdup(addr->u.inet.data->host);
  353. info->service = g_strdup(addr->u.inet.data->port);
  354. if (addr->u.inet.data->ipv6) {
  355. info->family = NETWORK_ADDRESS_FAMILY_IPV6;
  356. } else {
  357. info->family = NETWORK_ADDRESS_FAMILY_IPV4;
  358. }
  359. break;
  360. case SOCKET_ADDRESS_KIND_UNIX:
  361. info->host = g_strdup("");
  362. info->service = g_strdup(addr->u.q_unix.data->path);
  363. info->family = NETWORK_ADDRESS_FAMILY_UNIX;
  364. break;
  365. case SOCKET_ADDRESS_KIND_VSOCK:
  366. case SOCKET_ADDRESS_KIND_FD:
  367. error_setg(errp, "Unsupported socket address type %s",
  368. SocketAddressKind_lookup[addr->type]);
  369. goto out_error;
  370. default:
  371. abort();
  372. }
  373. info->has_host = true;
  374. info->has_service = true;
  375. info->has_family = true;
  376. info->has_auth = true;
  377. info->auth = g_strdup(vnc_auth_name(vd));
  378. }
  379. qapi_free_SocketAddress(addr);
  380. return info;
  381. out_error:
  382. qapi_free_SocketAddress(addr);
  383. qapi_free_VncInfo(info);
  384. return NULL;
  385. }
  386. static void qmp_query_auth(int auth, int subauth,
  387. VncPrimaryAuth *qmp_auth,
  388. VncVencryptSubAuth *qmp_vencrypt,
  389. bool *qmp_has_vencrypt);
  390. static VncServerInfo2List *qmp_query_server_entry(QIOChannelSocket *ioc,
  391. bool websocket,
  392. int auth,
  393. int subauth,
  394. VncServerInfo2List *prev)
  395. {
  396. VncServerInfo2List *list;
  397. VncServerInfo2 *info;
  398. Error *err = NULL;
  399. SocketAddress *addr;
  400. addr = qio_channel_socket_get_local_address(ioc, &err);
  401. if (!addr) {
  402. error_free(err);
  403. return prev;
  404. }
  405. info = g_new0(VncServerInfo2, 1);
  406. vnc_init_basic_info(addr, qapi_VncServerInfo2_base(info), &err);
  407. qapi_free_SocketAddress(addr);
  408. if (err) {
  409. qapi_free_VncServerInfo2(info);
  410. error_free(err);
  411. return prev;
  412. }
  413. info->websocket = websocket;
  414. qmp_query_auth(auth, subauth, &info->auth,
  415. &info->vencrypt, &info->has_vencrypt);
  416. list = g_new0(VncServerInfo2List, 1);
  417. list->value = info;
  418. list->next = prev;
  419. return list;
  420. }
  421. static void qmp_query_auth(int auth, int subauth,
  422. VncPrimaryAuth *qmp_auth,
  423. VncVencryptSubAuth *qmp_vencrypt,
  424. bool *qmp_has_vencrypt)
  425. {
  426. switch (auth) {
  427. case VNC_AUTH_VNC:
  428. *qmp_auth = VNC_PRIMARY_AUTH_VNC;
  429. break;
  430. case VNC_AUTH_RA2:
  431. *qmp_auth = VNC_PRIMARY_AUTH_RA2;
  432. break;
  433. case VNC_AUTH_RA2NE:
  434. *qmp_auth = VNC_PRIMARY_AUTH_RA2NE;
  435. break;
  436. case VNC_AUTH_TIGHT:
  437. *qmp_auth = VNC_PRIMARY_AUTH_TIGHT;
  438. break;
  439. case VNC_AUTH_ULTRA:
  440. *qmp_auth = VNC_PRIMARY_AUTH_ULTRA;
  441. break;
  442. case VNC_AUTH_TLS:
  443. *qmp_auth = VNC_PRIMARY_AUTH_TLS;
  444. break;
  445. case VNC_AUTH_VENCRYPT:
  446. *qmp_auth = VNC_PRIMARY_AUTH_VENCRYPT;
  447. *qmp_has_vencrypt = true;
  448. switch (subauth) {
  449. case VNC_AUTH_VENCRYPT_PLAIN:
  450. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_PLAIN;
  451. break;
  452. case VNC_AUTH_VENCRYPT_TLSNONE:
  453. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_TLS_NONE;
  454. break;
  455. case VNC_AUTH_VENCRYPT_TLSVNC:
  456. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_TLS_VNC;
  457. break;
  458. case VNC_AUTH_VENCRYPT_TLSPLAIN:
  459. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_TLS_PLAIN;
  460. break;
  461. case VNC_AUTH_VENCRYPT_X509NONE:
  462. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_X509_NONE;
  463. break;
  464. case VNC_AUTH_VENCRYPT_X509VNC:
  465. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_X509_VNC;
  466. break;
  467. case VNC_AUTH_VENCRYPT_X509PLAIN:
  468. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_X509_PLAIN;
  469. break;
  470. case VNC_AUTH_VENCRYPT_TLSSASL:
  471. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_TLS_SASL;
  472. break;
  473. case VNC_AUTH_VENCRYPT_X509SASL:
  474. *qmp_vencrypt = VNC_VENCRYPT_SUB_AUTH_X509_SASL;
  475. break;
  476. default:
  477. *qmp_has_vencrypt = false;
  478. break;
  479. }
  480. break;
  481. case VNC_AUTH_SASL:
  482. *qmp_auth = VNC_PRIMARY_AUTH_SASL;
  483. break;
  484. case VNC_AUTH_NONE:
  485. default:
  486. *qmp_auth = VNC_PRIMARY_AUTH_NONE;
  487. break;
  488. }
  489. }
  490. VncInfo2List *qmp_query_vnc_servers(Error **errp)
  491. {
  492. VncInfo2List *item, *prev = NULL;
  493. VncInfo2 *info;
  494. VncDisplay *vd;
  495. DeviceState *dev;
  496. size_t i;
  497. QTAILQ_FOREACH(vd, &vnc_displays, next) {
  498. info = g_new0(VncInfo2, 1);
  499. info->id = g_strdup(vd->id);
  500. info->clients = qmp_query_client_list(vd);
  501. qmp_query_auth(vd->auth, vd->subauth, &info->auth,
  502. &info->vencrypt, &info->has_vencrypt);
  503. if (vd->dcl.con) {
  504. dev = DEVICE(object_property_get_link(OBJECT(vd->dcl.con),
  505. "device", NULL));
  506. info->has_display = true;
  507. info->display = g_strdup(dev->id);
  508. }
  509. for (i = 0; i < vd->nlsock; i++) {
  510. info->server = qmp_query_server_entry(
  511. vd->lsock[i], false, vd->auth, vd->subauth, info->server);
  512. }
  513. for (i = 0; i < vd->nlwebsock; i++) {
  514. info->server = qmp_query_server_entry(
  515. vd->lwebsock[i], true, vd->ws_auth,
  516. vd->ws_subauth, info->server);
  517. }
  518. item = g_new0(VncInfo2List, 1);
  519. item->value = info;
  520. item->next = prev;
  521. prev = item;
  522. }
  523. return prev;
  524. }
  525. /* TODO
  526. 1) Get the queue working for IO.
  527. 2) there is some weirdness when using the -S option (the screen is grey
  528. and not totally invalidated
  529. 3) resolutions > 1024
  530. */
  531. static int vnc_update_client(VncState *vs, int has_dirty, bool sync);
  532. static void vnc_disconnect_start(VncState *vs);
  533. static void vnc_colordepth(VncState *vs);
  534. static void framebuffer_update_request(VncState *vs, int incremental,
  535. int x_position, int y_position,
  536. int w, int h);
  537. static void vnc_refresh(DisplayChangeListener *dcl);
  538. static int vnc_refresh_server_surface(VncDisplay *vd);
  539. static int vnc_width(VncDisplay *vd)
  540. {
  541. return MIN(VNC_MAX_WIDTH, ROUND_UP(surface_width(vd->ds),
  542. VNC_DIRTY_PIXELS_PER_BIT));
  543. }
  544. static int vnc_height(VncDisplay *vd)
  545. {
  546. return MIN(VNC_MAX_HEIGHT, surface_height(vd->ds));
  547. }
  548. static void vnc_set_area_dirty(DECLARE_BITMAP(dirty[VNC_MAX_HEIGHT],
  549. VNC_MAX_WIDTH / VNC_DIRTY_PIXELS_PER_BIT),
  550. VncDisplay *vd,
  551. int x, int y, int w, int h)
  552. {
  553. int width = vnc_width(vd);
  554. int height = vnc_height(vd);
  555. /* this is needed this to ensure we updated all affected
  556. * blocks if x % VNC_DIRTY_PIXELS_PER_BIT != 0 */
  557. w += (x % VNC_DIRTY_PIXELS_PER_BIT);
  558. x -= (x % VNC_DIRTY_PIXELS_PER_BIT);
  559. x = MIN(x, width);
  560. y = MIN(y, height);
  561. w = MIN(x + w, width) - x;
  562. h = MIN(y + h, height);
  563. for (; y < h; y++) {
  564. bitmap_set(dirty[y], x / VNC_DIRTY_PIXELS_PER_BIT,
  565. DIV_ROUND_UP(w, VNC_DIRTY_PIXELS_PER_BIT));
  566. }
  567. }
  568. static void vnc_dpy_update(DisplayChangeListener *dcl,
  569. int x, int y, int w, int h)
  570. {
  571. VncDisplay *vd = container_of(dcl, VncDisplay, dcl);
  572. struct VncSurface *s = &vd->guest;
  573. vnc_set_area_dirty(s->dirty, vd, x, y, w, h);
  574. }
  575. void vnc_framebuffer_update(VncState *vs, int x, int y, int w, int h,
  576. int32_t encoding)
  577. {
  578. vnc_write_u16(vs, x);
  579. vnc_write_u16(vs, y);
  580. vnc_write_u16(vs, w);
  581. vnc_write_u16(vs, h);
  582. vnc_write_s32(vs, encoding);
  583. }
  584. static void vnc_desktop_resize(VncState *vs)
  585. {
  586. if (vs->ioc == NULL || !vnc_has_feature(vs, VNC_FEATURE_RESIZE)) {
  587. return;
  588. }
  589. if (vs->client_width == pixman_image_get_width(vs->vd->server) &&
  590. vs->client_height == pixman_image_get_height(vs->vd->server)) {
  591. return;
  592. }
  593. vs->client_width = pixman_image_get_width(vs->vd->server);
  594. vs->client_height = pixman_image_get_height(vs->vd->server);
  595. vnc_lock_output(vs);
  596. vnc_write_u8(vs, VNC_MSG_SERVER_FRAMEBUFFER_UPDATE);
  597. vnc_write_u8(vs, 0);
  598. vnc_write_u16(vs, 1); /* number of rects */
  599. vnc_framebuffer_update(vs, 0, 0, vs->client_width, vs->client_height,
  600. VNC_ENCODING_DESKTOPRESIZE);
  601. vnc_unlock_output(vs);
  602. vnc_flush(vs);
  603. }
  604. static void vnc_abort_display_jobs(VncDisplay *vd)
  605. {
  606. VncState *vs;
  607. QTAILQ_FOREACH(vs, &vd->clients, next) {
  608. vnc_lock_output(vs);
  609. vs->abort = true;
  610. vnc_unlock_output(vs);
  611. }
  612. QTAILQ_FOREACH(vs, &vd->clients, next) {
  613. vnc_jobs_join(vs);
  614. }
  615. QTAILQ_FOREACH(vs, &vd->clients, next) {
  616. vnc_lock_output(vs);
  617. vs->abort = false;
  618. vnc_unlock_output(vs);
  619. }
  620. }
  621. int vnc_server_fb_stride(VncDisplay *vd)
  622. {
  623. return pixman_image_get_stride(vd->server);
  624. }
  625. void *vnc_server_fb_ptr(VncDisplay *vd, int x, int y)
  626. {
  627. uint8_t *ptr;
  628. ptr = (uint8_t *)pixman_image_get_data(vd->server);
  629. ptr += y * vnc_server_fb_stride(vd);
  630. ptr += x * VNC_SERVER_FB_BYTES;
  631. return ptr;
  632. }
  633. static void vnc_update_server_surface(VncDisplay *vd)
  634. {
  635. int width, height;
  636. qemu_pixman_image_unref(vd->server);
  637. vd->server = NULL;
  638. if (QTAILQ_EMPTY(&vd->clients)) {
  639. return;
  640. }
  641. width = vnc_width(vd);
  642. height = vnc_height(vd);
  643. vd->server = pixman_image_create_bits(VNC_SERVER_FB_FORMAT,
  644. width, height,
  645. NULL, 0);
  646. memset(vd->guest.dirty, 0x00, sizeof(vd->guest.dirty));
  647. vnc_set_area_dirty(vd->guest.dirty, vd, 0, 0,
  648. width, height);
  649. }
  650. static void vnc_dpy_switch(DisplayChangeListener *dcl,
  651. DisplaySurface *surface)
  652. {
  653. VncDisplay *vd = container_of(dcl, VncDisplay, dcl);
  654. VncState *vs;
  655. vnc_abort_display_jobs(vd);
  656. vd->ds = surface;
  657. /* server surface */
  658. vnc_update_server_surface(vd);
  659. /* guest surface */
  660. qemu_pixman_image_unref(vd->guest.fb);
  661. vd->guest.fb = pixman_image_ref(surface->image);
  662. vd->guest.format = surface->format;
  663. QTAILQ_FOREACH(vs, &vd->clients, next) {
  664. vnc_colordepth(vs);
  665. vnc_desktop_resize(vs);
  666. if (vs->vd->cursor) {
  667. vnc_cursor_define(vs);
  668. }
  669. memset(vs->dirty, 0x00, sizeof(vs->dirty));
  670. vnc_set_area_dirty(vs->dirty, vd, 0, 0,
  671. vnc_width(vd),
  672. vnc_height(vd));
  673. }
  674. }
  675. /* fastest code */
  676. static void vnc_write_pixels_copy(VncState *vs,
  677. void *pixels, int size)
  678. {
  679. vnc_write(vs, pixels, size);
  680. }
  681. /* slowest but generic code. */
  682. void vnc_convert_pixel(VncState *vs, uint8_t *buf, uint32_t v)
  683. {
  684. uint8_t r, g, b;
  685. #if VNC_SERVER_FB_FORMAT == PIXMAN_FORMAT(32, PIXMAN_TYPE_ARGB, 0, 8, 8, 8)
  686. r = (((v & 0x00ff0000) >> 16) << vs->client_pf.rbits) >> 8;
  687. g = (((v & 0x0000ff00) >> 8) << vs->client_pf.gbits) >> 8;
  688. b = (((v & 0x000000ff) >> 0) << vs->client_pf.bbits) >> 8;
  689. #else
  690. # error need some bits here if you change VNC_SERVER_FB_FORMAT
  691. #endif
  692. v = (r << vs->client_pf.rshift) |
  693. (g << vs->client_pf.gshift) |
  694. (b << vs->client_pf.bshift);
  695. switch (vs->client_pf.bytes_per_pixel) {
  696. case 1:
  697. buf[0] = v;
  698. break;
  699. case 2:
  700. if (vs->client_be) {
  701. buf[0] = v >> 8;
  702. buf[1] = v;
  703. } else {
  704. buf[1] = v >> 8;
  705. buf[0] = v;
  706. }
  707. break;
  708. default:
  709. case 4:
  710. if (vs->client_be) {
  711. buf[0] = v >> 24;
  712. buf[1] = v >> 16;
  713. buf[2] = v >> 8;
  714. buf[3] = v;
  715. } else {
  716. buf[3] = v >> 24;
  717. buf[2] = v >> 16;
  718. buf[1] = v >> 8;
  719. buf[0] = v;
  720. }
  721. break;
  722. }
  723. }
  724. static void vnc_write_pixels_generic(VncState *vs,
  725. void *pixels1, int size)
  726. {
  727. uint8_t buf[4];
  728. if (VNC_SERVER_FB_BYTES == 4) {
  729. uint32_t *pixels = pixels1;
  730. int n, i;
  731. n = size >> 2;
  732. for (i = 0; i < n; i++) {
  733. vnc_convert_pixel(vs, buf, pixels[i]);
  734. vnc_write(vs, buf, vs->client_pf.bytes_per_pixel);
  735. }
  736. }
  737. }
  738. int vnc_raw_send_framebuffer_update(VncState *vs, int x, int y, int w, int h)
  739. {
  740. int i;
  741. uint8_t *row;
  742. VncDisplay *vd = vs->vd;
  743. row = vnc_server_fb_ptr(vd, x, y);
  744. for (i = 0; i < h; i++) {
  745. vs->write_pixels(vs, row, w * VNC_SERVER_FB_BYTES);
  746. row += vnc_server_fb_stride(vd);
  747. }
  748. return 1;
  749. }
  750. int vnc_send_framebuffer_update(VncState *vs, int x, int y, int w, int h)
  751. {
  752. int n = 0;
  753. bool encode_raw = false;
  754. size_t saved_offs = vs->output.offset;
  755. switch(vs->vnc_encoding) {
  756. case VNC_ENCODING_ZLIB:
  757. n = vnc_zlib_send_framebuffer_update(vs, x, y, w, h);
  758. break;
  759. case VNC_ENCODING_HEXTILE:
  760. vnc_framebuffer_update(vs, x, y, w, h, VNC_ENCODING_HEXTILE);
  761. n = vnc_hextile_send_framebuffer_update(vs, x, y, w, h);
  762. break;
  763. case VNC_ENCODING_TIGHT:
  764. n = vnc_tight_send_framebuffer_update(vs, x, y, w, h);
  765. break;
  766. case VNC_ENCODING_TIGHT_PNG:
  767. n = vnc_tight_png_send_framebuffer_update(vs, x, y, w, h);
  768. break;
  769. case VNC_ENCODING_ZRLE:
  770. n = vnc_zrle_send_framebuffer_update(vs, x, y, w, h);
  771. break;
  772. case VNC_ENCODING_ZYWRLE:
  773. n = vnc_zywrle_send_framebuffer_update(vs, x, y, w, h);
  774. break;
  775. default:
  776. encode_raw = true;
  777. break;
  778. }
  779. /* If the client has the same pixel format as our internal buffer and
  780. * a RAW encoding would need less space fall back to RAW encoding to
  781. * save bandwidth and processing power in the client. */
  782. if (!encode_raw && vs->write_pixels == vnc_write_pixels_copy &&
  783. 12 + h * w * VNC_SERVER_FB_BYTES <= (vs->output.offset - saved_offs)) {
  784. vs->output.offset = saved_offs;
  785. encode_raw = true;
  786. }
  787. if (encode_raw) {
  788. vnc_framebuffer_update(vs, x, y, w, h, VNC_ENCODING_RAW);
  789. n = vnc_raw_send_framebuffer_update(vs, x, y, w, h);
  790. }
  791. return n;
  792. }
  793. static void vnc_mouse_set(DisplayChangeListener *dcl,
  794. int x, int y, int visible)
  795. {
  796. /* can we ask the client(s) to move the pointer ??? */
  797. }
  798. static int vnc_cursor_define(VncState *vs)
  799. {
  800. QEMUCursor *c = vs->vd->cursor;
  801. int isize;
  802. if (vnc_has_feature(vs, VNC_FEATURE_RICH_CURSOR)) {
  803. vnc_lock_output(vs);
  804. vnc_write_u8(vs, VNC_MSG_SERVER_FRAMEBUFFER_UPDATE);
  805. vnc_write_u8(vs, 0); /* padding */
  806. vnc_write_u16(vs, 1); /* # of rects */
  807. vnc_framebuffer_update(vs, c->hot_x, c->hot_y, c->width, c->height,
  808. VNC_ENCODING_RICH_CURSOR);
  809. isize = c->width * c->height * vs->client_pf.bytes_per_pixel;
  810. vnc_write_pixels_generic(vs, c->data, isize);
  811. vnc_write(vs, vs->vd->cursor_mask, vs->vd->cursor_msize);
  812. vnc_unlock_output(vs);
  813. return 0;
  814. }
  815. return -1;
  816. }
  817. static void vnc_dpy_cursor_define(DisplayChangeListener *dcl,
  818. QEMUCursor *c)
  819. {
  820. VncDisplay *vd = container_of(dcl, VncDisplay, dcl);
  821. VncState *vs;
  822. cursor_put(vd->cursor);
  823. g_free(vd->cursor_mask);
  824. vd->cursor = c;
  825. cursor_get(vd->cursor);
  826. vd->cursor_msize = cursor_get_mono_bpl(c) * c->height;
  827. vd->cursor_mask = g_malloc0(vd->cursor_msize);
  828. cursor_get_mono_mask(c, 0, vd->cursor_mask);
  829. QTAILQ_FOREACH(vs, &vd->clients, next) {
  830. vnc_cursor_define(vs);
  831. }
  832. }
  833. static int find_and_clear_dirty_height(VncState *vs,
  834. int y, int last_x, int x, int height)
  835. {
  836. int h;
  837. for (h = 1; h < (height - y); h++) {
  838. if (!test_bit(last_x, vs->dirty[y + h])) {
  839. break;
  840. }
  841. bitmap_clear(vs->dirty[y + h], last_x, x - last_x);
  842. }
  843. return h;
  844. }
  845. static int vnc_update_client(VncState *vs, int has_dirty, bool sync)
  846. {
  847. if (vs->disconnecting) {
  848. vnc_disconnect_finish(vs);
  849. return 0;
  850. }
  851. vs->has_dirty += has_dirty;
  852. if (vs->need_update && !vs->disconnecting) {
  853. VncDisplay *vd = vs->vd;
  854. VncJob *job;
  855. int y;
  856. int height, width;
  857. int n = 0;
  858. if (vs->output.offset && !vs->audio_cap && !vs->force_update)
  859. /* kernel send buffers are full -> drop frames to throttle */
  860. return 0;
  861. if (!vs->has_dirty && !vs->audio_cap && !vs->force_update)
  862. return 0;
  863. /*
  864. * Send screen updates to the vnc client using the server
  865. * surface and server dirty map. guest surface updates
  866. * happening in parallel don't disturb us, the next pass will
  867. * send them to the client.
  868. */
  869. job = vnc_job_new(vs);
  870. height = pixman_image_get_height(vd->server);
  871. width = pixman_image_get_width(vd->server);
  872. y = 0;
  873. for (;;) {
  874. int x, h;
  875. unsigned long x2;
  876. unsigned long offset = find_next_bit((unsigned long *) &vs->dirty,
  877. height * VNC_DIRTY_BPL(vs),
  878. y * VNC_DIRTY_BPL(vs));
  879. if (offset == height * VNC_DIRTY_BPL(vs)) {
  880. /* no more dirty bits */
  881. break;
  882. }
  883. y = offset / VNC_DIRTY_BPL(vs);
  884. x = offset % VNC_DIRTY_BPL(vs);
  885. x2 = find_next_zero_bit((unsigned long *) &vs->dirty[y],
  886. VNC_DIRTY_BPL(vs), x);
  887. bitmap_clear(vs->dirty[y], x, x2 - x);
  888. h = find_and_clear_dirty_height(vs, y, x, x2, height);
  889. x2 = MIN(x2, width / VNC_DIRTY_PIXELS_PER_BIT);
  890. if (x2 > x) {
  891. n += vnc_job_add_rect(job, x * VNC_DIRTY_PIXELS_PER_BIT, y,
  892. (x2 - x) * VNC_DIRTY_PIXELS_PER_BIT, h);
  893. }
  894. if (!x && x2 == width / VNC_DIRTY_PIXELS_PER_BIT) {
  895. y += h;
  896. if (y == height) {
  897. break;
  898. }
  899. }
  900. }
  901. vnc_job_push(job);
  902. if (sync) {
  903. vnc_jobs_join(vs);
  904. }
  905. vs->force_update = 0;
  906. vs->has_dirty = 0;
  907. return n;
  908. }
  909. if (vs->disconnecting) {
  910. vnc_disconnect_finish(vs);
  911. } else if (sync) {
  912. vnc_jobs_join(vs);
  913. }
  914. return 0;
  915. }
  916. /* audio */
  917. static void audio_capture_notify(void *opaque, audcnotification_e cmd)
  918. {
  919. VncState *vs = opaque;
  920. switch (cmd) {
  921. case AUD_CNOTIFY_DISABLE:
  922. vnc_lock_output(vs);
  923. vnc_write_u8(vs, VNC_MSG_SERVER_QEMU);
  924. vnc_write_u8(vs, VNC_MSG_SERVER_QEMU_AUDIO);
  925. vnc_write_u16(vs, VNC_MSG_SERVER_QEMU_AUDIO_END);
  926. vnc_unlock_output(vs);
  927. vnc_flush(vs);
  928. break;
  929. case AUD_CNOTIFY_ENABLE:
  930. vnc_lock_output(vs);
  931. vnc_write_u8(vs, VNC_MSG_SERVER_QEMU);
  932. vnc_write_u8(vs, VNC_MSG_SERVER_QEMU_AUDIO);
  933. vnc_write_u16(vs, VNC_MSG_SERVER_QEMU_AUDIO_BEGIN);
  934. vnc_unlock_output(vs);
  935. vnc_flush(vs);
  936. break;
  937. }
  938. }
  939. static void audio_capture_destroy(void *opaque)
  940. {
  941. }
  942. static void audio_capture(void *opaque, void *buf, int size)
  943. {
  944. VncState *vs = opaque;
  945. vnc_lock_output(vs);
  946. vnc_write_u8(vs, VNC_MSG_SERVER_QEMU);
  947. vnc_write_u8(vs, VNC_MSG_SERVER_QEMU_AUDIO);
  948. vnc_write_u16(vs, VNC_MSG_SERVER_QEMU_AUDIO_DATA);
  949. vnc_write_u32(vs, size);
  950. vnc_write(vs, buf, size);
  951. vnc_unlock_output(vs);
  952. vnc_flush(vs);
  953. }
  954. static void audio_add(VncState *vs)
  955. {
  956. struct audio_capture_ops ops;
  957. if (vs->audio_cap) {
  958. error_report("audio already running");
  959. return;
  960. }
  961. ops.notify = audio_capture_notify;
  962. ops.destroy = audio_capture_destroy;
  963. ops.capture = audio_capture;
  964. vs->audio_cap = AUD_add_capture(&vs->as, &ops, vs);
  965. if (!vs->audio_cap) {
  966. error_report("Failed to add audio capture");
  967. }
  968. }
  969. static void audio_del(VncState *vs)
  970. {
  971. if (vs->audio_cap) {
  972. AUD_del_capture(vs->audio_cap, vs);
  973. vs->audio_cap = NULL;
  974. }
  975. }
  976. static void vnc_disconnect_start(VncState *vs)
  977. {
  978. if (vs->disconnecting) {
  979. return;
  980. }
  981. vnc_set_share_mode(vs, VNC_SHARE_MODE_DISCONNECTED);
  982. if (vs->ioc_tag) {
  983. g_source_remove(vs->ioc_tag);
  984. }
  985. qio_channel_close(vs->ioc, NULL);
  986. vs->disconnecting = TRUE;
  987. }
  988. void vnc_disconnect_finish(VncState *vs)
  989. {
  990. int i;
  991. vnc_jobs_join(vs); /* Wait encoding jobs */
  992. vnc_lock_output(vs);
  993. vnc_qmp_event(vs, QAPI_EVENT_VNC_DISCONNECTED);
  994. buffer_free(&vs->input);
  995. buffer_free(&vs->output);
  996. qapi_free_VncClientInfo(vs->info);
  997. vnc_zlib_clear(vs);
  998. vnc_tight_clear(vs);
  999. vnc_zrle_clear(vs);
  1000. #ifdef CONFIG_VNC_SASL
  1001. vnc_sasl_client_cleanup(vs);
  1002. #endif /* CONFIG_VNC_SASL */
  1003. audio_del(vs);
  1004. vnc_release_modifiers(vs);
  1005. if (vs->mouse_mode_notifier.notify != NULL) {
  1006. qemu_remove_mouse_mode_change_notifier(&vs->mouse_mode_notifier);
  1007. }
  1008. QTAILQ_REMOVE(&vs->vd->clients, vs, next);
  1009. if (QTAILQ_EMPTY(&vs->vd->clients)) {
  1010. /* last client gone */
  1011. vnc_update_server_surface(vs->vd);
  1012. }
  1013. vnc_unlock_output(vs);
  1014. qemu_mutex_destroy(&vs->output_mutex);
  1015. if (vs->bh != NULL) {
  1016. qemu_bh_delete(vs->bh);
  1017. }
  1018. buffer_free(&vs->jobs_buffer);
  1019. for (i = 0; i < VNC_STAT_ROWS; ++i) {
  1020. g_free(vs->lossy_rect[i]);
  1021. }
  1022. g_free(vs->lossy_rect);
  1023. object_unref(OBJECT(vs->ioc));
  1024. vs->ioc = NULL;
  1025. object_unref(OBJECT(vs->sioc));
  1026. vs->sioc = NULL;
  1027. g_free(vs);
  1028. }
  1029. ssize_t vnc_client_io_error(VncState *vs, ssize_t ret, Error **errp)
  1030. {
  1031. if (ret <= 0) {
  1032. if (ret == 0) {
  1033. VNC_DEBUG("Closing down client sock: EOF\n");
  1034. vnc_disconnect_start(vs);
  1035. } else if (ret != QIO_CHANNEL_ERR_BLOCK) {
  1036. VNC_DEBUG("Closing down client sock: ret %zd (%s)\n",
  1037. ret, errp ? error_get_pretty(*errp) : "Unknown");
  1038. vnc_disconnect_start(vs);
  1039. }
  1040. if (errp) {
  1041. error_free(*errp);
  1042. *errp = NULL;
  1043. }
  1044. return 0;
  1045. }
  1046. return ret;
  1047. }
  1048. void vnc_client_error(VncState *vs)
  1049. {
  1050. VNC_DEBUG("Closing down client sock: protocol error\n");
  1051. vnc_disconnect_start(vs);
  1052. }
  1053. /*
  1054. * Called to write a chunk of data to the client socket. The data may
  1055. * be the raw data, or may have already been encoded by SASL.
  1056. * The data will be written either straight onto the socket, or
  1057. * written via the GNUTLS wrappers, if TLS/SSL encryption is enabled
  1058. *
  1059. * NB, it is theoretically possible to have 2 layers of encryption,
  1060. * both SASL, and this TLS layer. It is highly unlikely in practice
  1061. * though, since SASL encryption will typically be a no-op if TLS
  1062. * is active
  1063. *
  1064. * Returns the number of bytes written, which may be less than
  1065. * the requested 'datalen' if the socket would block. Returns
  1066. * -1 on error, and disconnects the client socket.
  1067. */
  1068. ssize_t vnc_client_write_buf(VncState *vs, const uint8_t *data, size_t datalen)
  1069. {
  1070. Error *err = NULL;
  1071. ssize_t ret;
  1072. ret = qio_channel_write(
  1073. vs->ioc, (const char *)data, datalen, &err);
  1074. VNC_DEBUG("Wrote wire %p %zd -> %ld\n", data, datalen, ret);
  1075. return vnc_client_io_error(vs, ret, &err);
  1076. }
  1077. /*
  1078. * Called to write buffered data to the client socket, when not
  1079. * using any SASL SSF encryption layers. Will write as much data
  1080. * as possible without blocking. If all buffered data is written,
  1081. * will switch the FD poll() handler back to read monitoring.
  1082. *
  1083. * Returns the number of bytes written, which may be less than
  1084. * the buffered output data if the socket would block. Returns
  1085. * -1 on error, and disconnects the client socket.
  1086. */
  1087. static ssize_t vnc_client_write_plain(VncState *vs)
  1088. {
  1089. ssize_t ret;
  1090. #ifdef CONFIG_VNC_SASL
  1091. VNC_DEBUG("Write Plain: Pending output %p size %zd offset %zd. Wait SSF %d\n",
  1092. vs->output.buffer, vs->output.capacity, vs->output.offset,
  1093. vs->sasl.waitWriteSSF);
  1094. if (vs->sasl.conn &&
  1095. vs->sasl.runSSF &&
  1096. vs->sasl.waitWriteSSF) {
  1097. ret = vnc_client_write_buf(vs, vs->output.buffer, vs->sasl.waitWriteSSF);
  1098. if (ret)
  1099. vs->sasl.waitWriteSSF -= ret;
  1100. } else
  1101. #endif /* CONFIG_VNC_SASL */
  1102. ret = vnc_client_write_buf(vs, vs->output.buffer, vs->output.offset);
  1103. if (!ret)
  1104. return 0;
  1105. buffer_advance(&vs->output, ret);
  1106. if (vs->output.offset == 0) {
  1107. if (vs->ioc_tag) {
  1108. g_source_remove(vs->ioc_tag);
  1109. }
  1110. vs->ioc_tag = qio_channel_add_watch(
  1111. vs->ioc, G_IO_IN, vnc_client_io, vs, NULL);
  1112. }
  1113. return ret;
  1114. }
  1115. /*
  1116. * First function called whenever there is data to be written to
  1117. * the client socket. Will delegate actual work according to whether
  1118. * SASL SSF layers are enabled (thus requiring encryption calls)
  1119. */
  1120. static void vnc_client_write_locked(VncState *vs)
  1121. {
  1122. #ifdef CONFIG_VNC_SASL
  1123. if (vs->sasl.conn &&
  1124. vs->sasl.runSSF &&
  1125. !vs->sasl.waitWriteSSF) {
  1126. vnc_client_write_sasl(vs);
  1127. } else
  1128. #endif /* CONFIG_VNC_SASL */
  1129. {
  1130. vnc_client_write_plain(vs);
  1131. }
  1132. }
  1133. static void vnc_client_write(VncState *vs)
  1134. {
  1135. vnc_lock_output(vs);
  1136. if (vs->output.offset) {
  1137. vnc_client_write_locked(vs);
  1138. } else if (vs->ioc != NULL) {
  1139. if (vs->ioc_tag) {
  1140. g_source_remove(vs->ioc_tag);
  1141. }
  1142. vs->ioc_tag = qio_channel_add_watch(
  1143. vs->ioc, G_IO_IN, vnc_client_io, vs, NULL);
  1144. }
  1145. vnc_unlock_output(vs);
  1146. }
  1147. void vnc_read_when(VncState *vs, VncReadEvent *func, size_t expecting)
  1148. {
  1149. vs->read_handler = func;
  1150. vs->read_handler_expect = expecting;
  1151. }
  1152. /*
  1153. * Called to read a chunk of data from the client socket. The data may
  1154. * be the raw data, or may need to be further decoded by SASL.
  1155. * The data will be read either straight from to the socket, or
  1156. * read via the GNUTLS wrappers, if TLS/SSL encryption is enabled
  1157. *
  1158. * NB, it is theoretically possible to have 2 layers of encryption,
  1159. * both SASL, and this TLS layer. It is highly unlikely in practice
  1160. * though, since SASL encryption will typically be a no-op if TLS
  1161. * is active
  1162. *
  1163. * Returns the number of bytes read, which may be less than
  1164. * the requested 'datalen' if the socket would block. Returns
  1165. * -1 on error, and disconnects the client socket.
  1166. */
  1167. ssize_t vnc_client_read_buf(VncState *vs, uint8_t *data, size_t datalen)
  1168. {
  1169. ssize_t ret;
  1170. Error *err = NULL;
  1171. ret = qio_channel_read(
  1172. vs->ioc, (char *)data, datalen, &err);
  1173. VNC_DEBUG("Read wire %p %zd -> %ld\n", data, datalen, ret);
  1174. return vnc_client_io_error(vs, ret, &err);
  1175. }
  1176. /*
  1177. * Called to read data from the client socket to the input buffer,
  1178. * when not using any SASL SSF encryption layers. Will read as much
  1179. * data as possible without blocking.
  1180. *
  1181. * Returns the number of bytes read. Returns -1 on error, and
  1182. * disconnects the client socket.
  1183. */
  1184. static ssize_t vnc_client_read_plain(VncState *vs)
  1185. {
  1186. ssize_t ret;
  1187. VNC_DEBUG("Read plain %p size %zd offset %zd\n",
  1188. vs->input.buffer, vs->input.capacity, vs->input.offset);
  1189. buffer_reserve(&vs->input, 4096);
  1190. ret = vnc_client_read_buf(vs, buffer_end(&vs->input), 4096);
  1191. if (!ret)
  1192. return 0;
  1193. vs->input.offset += ret;
  1194. return ret;
  1195. }
  1196. static void vnc_jobs_bh(void *opaque)
  1197. {
  1198. VncState *vs = opaque;
  1199. vnc_jobs_consume_buffer(vs);
  1200. }
  1201. /*
  1202. * First function called whenever there is more data to be read from
  1203. * the client socket. Will delegate actual work according to whether
  1204. * SASL SSF layers are enabled (thus requiring decryption calls)
  1205. * Returns 0 on success, -1 if client disconnected
  1206. */
  1207. static int vnc_client_read(VncState *vs)
  1208. {
  1209. ssize_t ret;
  1210. #ifdef CONFIG_VNC_SASL
  1211. if (vs->sasl.conn && vs->sasl.runSSF)
  1212. ret = vnc_client_read_sasl(vs);
  1213. else
  1214. #endif /* CONFIG_VNC_SASL */
  1215. ret = vnc_client_read_plain(vs);
  1216. if (!ret) {
  1217. if (vs->disconnecting) {
  1218. vnc_disconnect_finish(vs);
  1219. return -1;
  1220. }
  1221. return 0;
  1222. }
  1223. while (vs->read_handler && vs->input.offset >= vs->read_handler_expect) {
  1224. size_t len = vs->read_handler_expect;
  1225. int ret;
  1226. ret = vs->read_handler(vs, vs->input.buffer, len);
  1227. if (vs->disconnecting) {
  1228. vnc_disconnect_finish(vs);
  1229. return -1;
  1230. }
  1231. if (!ret) {
  1232. buffer_advance(&vs->input, len);
  1233. } else {
  1234. vs->read_handler_expect = ret;
  1235. }
  1236. }
  1237. return 0;
  1238. }
  1239. gboolean vnc_client_io(QIOChannel *ioc G_GNUC_UNUSED,
  1240. GIOCondition condition, void *opaque)
  1241. {
  1242. VncState *vs = opaque;
  1243. if (condition & G_IO_IN) {
  1244. if (vnc_client_read(vs) < 0) {
  1245. return TRUE;
  1246. }
  1247. }
  1248. if (condition & G_IO_OUT) {
  1249. vnc_client_write(vs);
  1250. }
  1251. return TRUE;
  1252. }
  1253. void vnc_write(VncState *vs, const void *data, size_t len)
  1254. {
  1255. buffer_reserve(&vs->output, len);
  1256. if (vs->ioc != NULL && buffer_empty(&vs->output)) {
  1257. if (vs->ioc_tag) {
  1258. g_source_remove(vs->ioc_tag);
  1259. }
  1260. vs->ioc_tag = qio_channel_add_watch(
  1261. vs->ioc, G_IO_IN | G_IO_OUT, vnc_client_io, vs, NULL);
  1262. }
  1263. buffer_append(&vs->output, data, len);
  1264. }
  1265. void vnc_write_s32(VncState *vs, int32_t value)
  1266. {
  1267. vnc_write_u32(vs, *(uint32_t *)&value);
  1268. }
  1269. void vnc_write_u32(VncState *vs, uint32_t value)
  1270. {
  1271. uint8_t buf[4];
  1272. buf[0] = (value >> 24) & 0xFF;
  1273. buf[1] = (value >> 16) & 0xFF;
  1274. buf[2] = (value >> 8) & 0xFF;
  1275. buf[3] = value & 0xFF;
  1276. vnc_write(vs, buf, 4);
  1277. }
  1278. void vnc_write_u16(VncState *vs, uint16_t value)
  1279. {
  1280. uint8_t buf[2];
  1281. buf[0] = (value >> 8) & 0xFF;
  1282. buf[1] = value & 0xFF;
  1283. vnc_write(vs, buf, 2);
  1284. }
  1285. void vnc_write_u8(VncState *vs, uint8_t value)
  1286. {
  1287. vnc_write(vs, (char *)&value, 1);
  1288. }
  1289. void vnc_flush(VncState *vs)
  1290. {
  1291. vnc_lock_output(vs);
  1292. if (vs->ioc != NULL && vs->output.offset) {
  1293. vnc_client_write_locked(vs);
  1294. }
  1295. vnc_unlock_output(vs);
  1296. }
  1297. static uint8_t read_u8(uint8_t *data, size_t offset)
  1298. {
  1299. return data[offset];
  1300. }
  1301. static uint16_t read_u16(uint8_t *data, size_t offset)
  1302. {
  1303. return ((data[offset] & 0xFF) << 8) | (data[offset + 1] & 0xFF);
  1304. }
  1305. static int32_t read_s32(uint8_t *data, size_t offset)
  1306. {
  1307. return (int32_t)((data[offset] << 24) | (data[offset + 1] << 16) |
  1308. (data[offset + 2] << 8) | data[offset + 3]);
  1309. }
  1310. uint32_t read_u32(uint8_t *data, size_t offset)
  1311. {
  1312. return ((data[offset] << 24) | (data[offset + 1] << 16) |
  1313. (data[offset + 2] << 8) | data[offset + 3]);
  1314. }
  1315. static void client_cut_text(VncState *vs, size_t len, uint8_t *text)
  1316. {
  1317. }
  1318. static void check_pointer_type_change(Notifier *notifier, void *data)
  1319. {
  1320. VncState *vs = container_of(notifier, VncState, mouse_mode_notifier);
  1321. int absolute = qemu_input_is_absolute();
  1322. if (vnc_has_feature(vs, VNC_FEATURE_POINTER_TYPE_CHANGE) && vs->absolute != absolute) {
  1323. vnc_lock_output(vs);
  1324. vnc_write_u8(vs, VNC_MSG_SERVER_FRAMEBUFFER_UPDATE);
  1325. vnc_write_u8(vs, 0);
  1326. vnc_write_u16(vs, 1);
  1327. vnc_framebuffer_update(vs, absolute, 0,
  1328. pixman_image_get_width(vs->vd->server),
  1329. pixman_image_get_height(vs->vd->server),
  1330. VNC_ENCODING_POINTER_TYPE_CHANGE);
  1331. vnc_unlock_output(vs);
  1332. vnc_flush(vs);
  1333. }
  1334. vs->absolute = absolute;
  1335. }
  1336. static void pointer_event(VncState *vs, int button_mask, int x, int y)
  1337. {
  1338. static uint32_t bmap[INPUT_BUTTON__MAX] = {
  1339. [INPUT_BUTTON_LEFT] = 0x01,
  1340. [INPUT_BUTTON_MIDDLE] = 0x02,
  1341. [INPUT_BUTTON_RIGHT] = 0x04,
  1342. [INPUT_BUTTON_WHEEL_UP] = 0x08,
  1343. [INPUT_BUTTON_WHEEL_DOWN] = 0x10,
  1344. };
  1345. QemuConsole *con = vs->vd->dcl.con;
  1346. int width = pixman_image_get_width(vs->vd->server);
  1347. int height = pixman_image_get_height(vs->vd->server);
  1348. if (vs->last_bmask != button_mask) {
  1349. qemu_input_update_buttons(con, bmap, vs->last_bmask, button_mask);
  1350. vs->last_bmask = button_mask;
  1351. }
  1352. if (vs->absolute) {
  1353. qemu_input_queue_abs(con, INPUT_AXIS_X, x, width);
  1354. qemu_input_queue_abs(con, INPUT_AXIS_Y, y, height);
  1355. } else if (vnc_has_feature(vs, VNC_FEATURE_POINTER_TYPE_CHANGE)) {
  1356. qemu_input_queue_rel(con, INPUT_AXIS_X, x - 0x7FFF);
  1357. qemu_input_queue_rel(con, INPUT_AXIS_Y, y - 0x7FFF);
  1358. } else {
  1359. if (vs->last_x != -1) {
  1360. qemu_input_queue_rel(con, INPUT_AXIS_X, x - vs->last_x);
  1361. qemu_input_queue_rel(con, INPUT_AXIS_Y, y - vs->last_y);
  1362. }
  1363. vs->last_x = x;
  1364. vs->last_y = y;
  1365. }
  1366. qemu_input_event_sync();
  1367. }
  1368. static void reset_keys(VncState *vs)
  1369. {
  1370. int i;
  1371. for(i = 0; i < 256; i++) {
  1372. if (vs->modifiers_state[i]) {
  1373. qemu_input_event_send_key_number(vs->vd->dcl.con, i, false);
  1374. qemu_input_event_send_key_delay(vs->vd->key_delay_ms);
  1375. vs->modifiers_state[i] = 0;
  1376. }
  1377. }
  1378. }
  1379. static void press_key(VncState *vs, int keysym)
  1380. {
  1381. int keycode = keysym2scancode(vs->vd->kbd_layout, keysym) & SCANCODE_KEYMASK;
  1382. qemu_input_event_send_key_number(vs->vd->dcl.con, keycode, true);
  1383. qemu_input_event_send_key_delay(vs->vd->key_delay_ms);
  1384. qemu_input_event_send_key_number(vs->vd->dcl.con, keycode, false);
  1385. qemu_input_event_send_key_delay(vs->vd->key_delay_ms);
  1386. }
  1387. static void vnc_led_state_change(VncState *vs)
  1388. {
  1389. if (!vnc_has_feature(vs, VNC_FEATURE_LED_STATE)) {
  1390. return;
  1391. }
  1392. vnc_lock_output(vs);
  1393. vnc_write_u8(vs, VNC_MSG_SERVER_FRAMEBUFFER_UPDATE);
  1394. vnc_write_u8(vs, 0);
  1395. vnc_write_u16(vs, 1);
  1396. vnc_framebuffer_update(vs, 0, 0, 1, 1, VNC_ENCODING_LED_STATE);
  1397. vnc_write_u8(vs, vs->vd->ledstate);
  1398. vnc_unlock_output(vs);
  1399. vnc_flush(vs);
  1400. }
  1401. static void kbd_leds(void *opaque, int ledstate)
  1402. {
  1403. VncDisplay *vd = opaque;
  1404. VncState *client;
  1405. trace_vnc_key_guest_leds((ledstate & QEMU_CAPS_LOCK_LED),
  1406. (ledstate & QEMU_NUM_LOCK_LED),
  1407. (ledstate & QEMU_SCROLL_LOCK_LED));
  1408. if (ledstate == vd->ledstate) {
  1409. return;
  1410. }
  1411. vd->ledstate = ledstate;
  1412. QTAILQ_FOREACH(client, &vd->clients, next) {
  1413. vnc_led_state_change(client);
  1414. }
  1415. }
  1416. static void do_key_event(VncState *vs, int down, int keycode, int sym)
  1417. {
  1418. /* QEMU console switch */
  1419. switch(keycode) {
  1420. case 0x2a: /* Left Shift */
  1421. case 0x36: /* Right Shift */
  1422. case 0x1d: /* Left CTRL */
  1423. case 0x9d: /* Right CTRL */
  1424. case 0x38: /* Left ALT */
  1425. case 0xb8: /* Right ALT */
  1426. if (down)
  1427. vs->modifiers_state[keycode] = 1;
  1428. else
  1429. vs->modifiers_state[keycode] = 0;
  1430. break;
  1431. case 0x02 ... 0x0a: /* '1' to '9' keys */
  1432. if (vs->vd->dcl.con == NULL &&
  1433. down && vs->modifiers_state[0x1d] && vs->modifiers_state[0x38]) {
  1434. /* Reset the modifiers sent to the current console */
  1435. reset_keys(vs);
  1436. console_select(keycode - 0x02);
  1437. return;
  1438. }
  1439. break;
  1440. case 0x3a: /* CapsLock */
  1441. case 0x45: /* NumLock */
  1442. if (down)
  1443. vs->modifiers_state[keycode] ^= 1;
  1444. break;
  1445. }
  1446. /* Turn off the lock state sync logic if the client support the led
  1447. state extension.
  1448. */
  1449. if (down && vs->vd->lock_key_sync &&
  1450. !vnc_has_feature(vs, VNC_FEATURE_LED_STATE) &&
  1451. keycode_is_keypad(vs->vd->kbd_layout, keycode)) {
  1452. /* If the numlock state needs to change then simulate an additional
  1453. keypress before sending this one. This will happen if the user
  1454. toggles numlock away from the VNC window.
  1455. */
  1456. if (keysym_is_numlock(vs->vd->kbd_layout, sym & 0xFFFF)) {
  1457. if (!vs->modifiers_state[0x45]) {
  1458. trace_vnc_key_sync_numlock(true);
  1459. vs->modifiers_state[0x45] = 1;
  1460. press_key(vs, 0xff7f);
  1461. }
  1462. } else {
  1463. if (vs->modifiers_state[0x45]) {
  1464. trace_vnc_key_sync_numlock(false);
  1465. vs->modifiers_state[0x45] = 0;
  1466. press_key(vs, 0xff7f);
  1467. }
  1468. }
  1469. }
  1470. if (down && vs->vd->lock_key_sync &&
  1471. !vnc_has_feature(vs, VNC_FEATURE_LED_STATE) &&
  1472. ((sym >= 'A' && sym <= 'Z') || (sym >= 'a' && sym <= 'z'))) {
  1473. /* If the capslock state needs to change then simulate an additional
  1474. keypress before sending this one. This will happen if the user
  1475. toggles capslock away from the VNC window.
  1476. */
  1477. int uppercase = !!(sym >= 'A' && sym <= 'Z');
  1478. int shift = !!(vs->modifiers_state[0x2a] | vs->modifiers_state[0x36]);
  1479. int capslock = !!(vs->modifiers_state[0x3a]);
  1480. if (capslock) {
  1481. if (uppercase == shift) {
  1482. trace_vnc_key_sync_capslock(false);
  1483. vs->modifiers_state[0x3a] = 0;
  1484. press_key(vs, 0xffe5);
  1485. }
  1486. } else {
  1487. if (uppercase != shift) {
  1488. trace_vnc_key_sync_capslock(true);
  1489. vs->modifiers_state[0x3a] = 1;
  1490. press_key(vs, 0xffe5);
  1491. }
  1492. }
  1493. }
  1494. if (qemu_console_is_graphic(NULL)) {
  1495. qemu_input_event_send_key_number(vs->vd->dcl.con, keycode, down);
  1496. qemu_input_event_send_key_delay(vs->vd->key_delay_ms);
  1497. } else {
  1498. bool numlock = vs->modifiers_state[0x45];
  1499. bool control = (vs->modifiers_state[0x1d] ||
  1500. vs->modifiers_state[0x9d]);
  1501. /* QEMU console emulation */
  1502. if (down) {
  1503. switch (keycode) {
  1504. case 0x2a: /* Left Shift */
  1505. case 0x36: /* Right Shift */
  1506. case 0x1d: /* Left CTRL */
  1507. case 0x9d: /* Right CTRL */
  1508. case 0x38: /* Left ALT */
  1509. case 0xb8: /* Right ALT */
  1510. break;
  1511. case 0xc8:
  1512. kbd_put_keysym(QEMU_KEY_UP);
  1513. break;
  1514. case 0xd0:
  1515. kbd_put_keysym(QEMU_KEY_DOWN);
  1516. break;
  1517. case 0xcb:
  1518. kbd_put_keysym(QEMU_KEY_LEFT);
  1519. break;
  1520. case 0xcd:
  1521. kbd_put_keysym(QEMU_KEY_RIGHT);
  1522. break;
  1523. case 0xd3:
  1524. kbd_put_keysym(QEMU_KEY_DELETE);
  1525. break;
  1526. case 0xc7:
  1527. kbd_put_keysym(QEMU_KEY_HOME);
  1528. break;
  1529. case 0xcf:
  1530. kbd_put_keysym(QEMU_KEY_END);
  1531. break;
  1532. case 0xc9:
  1533. kbd_put_keysym(QEMU_KEY_PAGEUP);
  1534. break;
  1535. case 0xd1:
  1536. kbd_put_keysym(QEMU_KEY_PAGEDOWN);
  1537. break;
  1538. case 0x47:
  1539. kbd_put_keysym(numlock ? '7' : QEMU_KEY_HOME);
  1540. break;
  1541. case 0x48:
  1542. kbd_put_keysym(numlock ? '8' : QEMU_KEY_UP);
  1543. break;
  1544. case 0x49:
  1545. kbd_put_keysym(numlock ? '9' : QEMU_KEY_PAGEUP);
  1546. break;
  1547. case 0x4b:
  1548. kbd_put_keysym(numlock ? '4' : QEMU_KEY_LEFT);
  1549. break;
  1550. case 0x4c:
  1551. kbd_put_keysym('5');
  1552. break;
  1553. case 0x4d:
  1554. kbd_put_keysym(numlock ? '6' : QEMU_KEY_RIGHT);
  1555. break;
  1556. case 0x4f:
  1557. kbd_put_keysym(numlock ? '1' : QEMU_KEY_END);
  1558. break;
  1559. case 0x50:
  1560. kbd_put_keysym(numlock ? '2' : QEMU_KEY_DOWN);
  1561. break;
  1562. case 0x51:
  1563. kbd_put_keysym(numlock ? '3' : QEMU_KEY_PAGEDOWN);
  1564. break;
  1565. case 0x52:
  1566. kbd_put_keysym('0');
  1567. break;
  1568. case 0x53:
  1569. kbd_put_keysym(numlock ? '.' : QEMU_KEY_DELETE);
  1570. break;
  1571. case 0xb5:
  1572. kbd_put_keysym('/');
  1573. break;
  1574. case 0x37:
  1575. kbd_put_keysym('*');
  1576. break;
  1577. case 0x4a:
  1578. kbd_put_keysym('-');
  1579. break;
  1580. case 0x4e:
  1581. kbd_put_keysym('+');
  1582. break;
  1583. case 0x9c:
  1584. kbd_put_keysym('\n');
  1585. break;
  1586. default:
  1587. if (control) {
  1588. kbd_put_keysym(sym & 0x1f);
  1589. } else {
  1590. kbd_put_keysym(sym);
  1591. }
  1592. break;
  1593. }
  1594. }
  1595. }
  1596. }
  1597. static void vnc_release_modifiers(VncState *vs)
  1598. {
  1599. static const int keycodes[] = {
  1600. /* shift, control, alt keys, both left & right */
  1601. 0x2a, 0x36, 0x1d, 0x9d, 0x38, 0xb8,
  1602. };
  1603. int i, keycode;
  1604. if (!qemu_console_is_graphic(NULL)) {
  1605. return;
  1606. }
  1607. for (i = 0; i < ARRAY_SIZE(keycodes); i++) {
  1608. keycode = keycodes[i];
  1609. if (!vs->modifiers_state[keycode]) {
  1610. continue;
  1611. }
  1612. qemu_input_event_send_key_number(vs->vd->dcl.con, keycode, false);
  1613. qemu_input_event_send_key_delay(vs->vd->key_delay_ms);
  1614. }
  1615. }
  1616. static const char *code2name(int keycode)
  1617. {
  1618. return QKeyCode_lookup[qemu_input_key_number_to_qcode(keycode)];
  1619. }
  1620. static void key_event(VncState *vs, int down, uint32_t sym)
  1621. {
  1622. int keycode;
  1623. int lsym = sym;
  1624. if (lsym >= 'A' && lsym <= 'Z' && qemu_console_is_graphic(NULL)) {
  1625. lsym = lsym - 'A' + 'a';
  1626. }
  1627. keycode = keysym2scancode(vs->vd->kbd_layout, lsym & 0xFFFF) & SCANCODE_KEYMASK;
  1628. trace_vnc_key_event_map(down, sym, keycode, code2name(keycode));
  1629. do_key_event(vs, down, keycode, sym);
  1630. }
  1631. static void ext_key_event(VncState *vs, int down,
  1632. uint32_t sym, uint16_t keycode)
  1633. {
  1634. /* if the user specifies a keyboard layout, always use it */
  1635. if (keyboard_layout) {
  1636. key_event(vs, down, sym);
  1637. } else {
  1638. trace_vnc_key_event_ext(down, sym, keycode, code2name(keycode));
  1639. do_key_event(vs, down, keycode, sym);
  1640. }
  1641. }
  1642. static void framebuffer_update_request(VncState *vs, int incremental,
  1643. int x, int y, int w, int h)
  1644. {
  1645. vs->need_update = 1;
  1646. if (incremental) {
  1647. return;
  1648. }
  1649. vs->force_update = 1;
  1650. vnc_set_area_dirty(vs->dirty, vs->vd, x, y, w, h);
  1651. }
  1652. static void send_ext_key_event_ack(VncState *vs)
  1653. {
  1654. vnc_lock_output(vs);
  1655. vnc_write_u8(vs, VNC_MSG_SERVER_FRAMEBUFFER_UPDATE);
  1656. vnc_write_u8(vs, 0);
  1657. vnc_write_u16(vs, 1);
  1658. vnc_framebuffer_update(vs, 0, 0,
  1659. pixman_image_get_width(vs->vd->server),
  1660. pixman_image_get_height(vs->vd->server),
  1661. VNC_ENCODING_EXT_KEY_EVENT);
  1662. vnc_unlock_output(vs);
  1663. vnc_flush(vs);
  1664. }
  1665. static void send_ext_audio_ack(VncState *vs)
  1666. {
  1667. vnc_lock_output(vs);
  1668. vnc_write_u8(vs, VNC_MSG_SERVER_FRAMEBUFFER_UPDATE);
  1669. vnc_write_u8(vs, 0);
  1670. vnc_write_u16(vs, 1);
  1671. vnc_framebuffer_update(vs, 0, 0,
  1672. pixman_image_get_width(vs->vd->server),
  1673. pixman_image_get_height(vs->vd->server),
  1674. VNC_ENCODING_AUDIO);
  1675. vnc_unlock_output(vs);
  1676. vnc_flush(vs);
  1677. }
  1678. static void set_encodings(VncState *vs, int32_t *encodings, size_t n_encodings)
  1679. {
  1680. int i;
  1681. unsigned int enc = 0;
  1682. vs->features = 0;
  1683. vs->vnc_encoding = 0;
  1684. vs->tight.compression = 9;
  1685. vs->tight.quality = -1; /* Lossless by default */
  1686. vs->absolute = -1;
  1687. /*
  1688. * Start from the end because the encodings are sent in order of preference.
  1689. * This way the preferred encoding (first encoding defined in the array)
  1690. * will be set at the end of the loop.
  1691. */
  1692. for (i = n_encodings - 1; i >= 0; i--) {
  1693. enc = encodings[i];
  1694. switch (enc) {
  1695. case VNC_ENCODING_RAW:
  1696. vs->vnc_encoding = enc;
  1697. break;
  1698. case VNC_ENCODING_COPYRECT:
  1699. vs->features |= VNC_FEATURE_COPYRECT_MASK;
  1700. break;
  1701. case VNC_ENCODING_HEXTILE:
  1702. vs->features |= VNC_FEATURE_HEXTILE_MASK;
  1703. vs->vnc_encoding = enc;
  1704. break;
  1705. case VNC_ENCODING_TIGHT:
  1706. vs->features |= VNC_FEATURE_TIGHT_MASK;
  1707. vs->vnc_encoding = enc;
  1708. break;
  1709. #ifdef CONFIG_VNC_PNG
  1710. case VNC_ENCODING_TIGHT_PNG:
  1711. vs->features |= VNC_FEATURE_TIGHT_PNG_MASK;
  1712. vs->vnc_encoding = enc;
  1713. break;
  1714. #endif
  1715. case VNC_ENCODING_ZLIB:
  1716. vs->features |= VNC_FEATURE_ZLIB_MASK;
  1717. vs->vnc_encoding = enc;
  1718. break;
  1719. case VNC_ENCODING_ZRLE:
  1720. vs->features |= VNC_FEATURE_ZRLE_MASK;
  1721. vs->vnc_encoding = enc;
  1722. break;
  1723. case VNC_ENCODING_ZYWRLE:
  1724. vs->features |= VNC_FEATURE_ZYWRLE_MASK;
  1725. vs->vnc_encoding = enc;
  1726. break;
  1727. case VNC_ENCODING_DESKTOPRESIZE:
  1728. vs->features |= VNC_FEATURE_RESIZE_MASK;
  1729. break;
  1730. case VNC_ENCODING_POINTER_TYPE_CHANGE:
  1731. vs->features |= VNC_FEATURE_POINTER_TYPE_CHANGE_MASK;
  1732. break;
  1733. case VNC_ENCODING_RICH_CURSOR:
  1734. vs->features |= VNC_FEATURE_RICH_CURSOR_MASK;
  1735. if (vs->vd->cursor) {
  1736. vnc_cursor_define(vs);
  1737. }
  1738. break;
  1739. case VNC_ENCODING_EXT_KEY_EVENT:
  1740. send_ext_key_event_ack(vs);
  1741. break;
  1742. case VNC_ENCODING_AUDIO:
  1743. send_ext_audio_ack(vs);
  1744. break;
  1745. case VNC_ENCODING_WMVi:
  1746. vs->features |= VNC_FEATURE_WMVI_MASK;
  1747. break;
  1748. case VNC_ENCODING_LED_STATE:
  1749. vs->features |= VNC_FEATURE_LED_STATE_MASK;
  1750. break;
  1751. case VNC_ENCODING_COMPRESSLEVEL0 ... VNC_ENCODING_COMPRESSLEVEL0 + 9:
  1752. vs->tight.compression = (enc & 0x0F);
  1753. break;
  1754. case VNC_ENCODING_QUALITYLEVEL0 ... VNC_ENCODING_QUALITYLEVEL0 + 9:
  1755. if (vs->vd->lossy) {
  1756. vs->tight.quality = (enc & 0x0F);
  1757. }
  1758. break;
  1759. default:
  1760. VNC_DEBUG("Unknown encoding: %d (0x%.8x): %d\n", i, enc, enc);
  1761. break;
  1762. }
  1763. }
  1764. vnc_desktop_resize(vs);
  1765. check_pointer_type_change(&vs->mouse_mode_notifier, NULL);
  1766. vnc_led_state_change(vs);
  1767. }
  1768. static void set_pixel_conversion(VncState *vs)
  1769. {
  1770. pixman_format_code_t fmt = qemu_pixman_get_format(&vs->client_pf);
  1771. if (fmt == VNC_SERVER_FB_FORMAT) {
  1772. vs->write_pixels = vnc_write_pixels_copy;
  1773. vnc_hextile_set_pixel_conversion(vs, 0);
  1774. } else {
  1775. vs->write_pixels = vnc_write_pixels_generic;
  1776. vnc_hextile_set_pixel_conversion(vs, 1);
  1777. }
  1778. }
  1779. static void send_color_map(VncState *vs)
  1780. {
  1781. int i;
  1782. vnc_write_u8(vs, VNC_MSG_SERVER_SET_COLOUR_MAP_ENTRIES);
  1783. vnc_write_u8(vs, 0); /* padding */
  1784. vnc_write_u16(vs, 0); /* first color */
  1785. vnc_write_u16(vs, 256); /* # of colors */
  1786. for (i = 0; i < 256; i++) {
  1787. PixelFormat *pf = &vs->client_pf;
  1788. vnc_write_u16(vs, (((i >> pf->rshift) & pf->rmax) << (16 - pf->rbits)));
  1789. vnc_write_u16(vs, (((i >> pf->gshift) & pf->gmax) << (16 - pf->gbits)));
  1790. vnc_write_u16(vs, (((i >> pf->bshift) & pf->bmax) << (16 - pf->bbits)));
  1791. }
  1792. }
  1793. static void set_pixel_format(VncState *vs, int bits_per_pixel,
  1794. int big_endian_flag, int true_color_flag,
  1795. int red_max, int green_max, int blue_max,
  1796. int red_shift, int green_shift, int blue_shift)
  1797. {
  1798. if (!true_color_flag) {
  1799. /* Expose a reasonable default 256 color map */
  1800. bits_per_pixel = 8;
  1801. red_max = 7;
  1802. green_max = 7;
  1803. blue_max = 3;
  1804. red_shift = 0;
  1805. green_shift = 3;
  1806. blue_shift = 6;
  1807. }
  1808. switch (bits_per_pixel) {
  1809. case 8:
  1810. case 16:
  1811. case 32:
  1812. break;
  1813. default:
  1814. vnc_client_error(vs);
  1815. return;
  1816. }
  1817. vs->client_pf.rmax = red_max ? red_max : 0xFF;
  1818. vs->client_pf.rbits = hweight_long(red_max);
  1819. vs->client_pf.rshift = red_shift;
  1820. vs->client_pf.rmask = red_max << red_shift;
  1821. vs->client_pf.gmax = green_max ? green_max : 0xFF;
  1822. vs->client_pf.gbits = hweight_long(green_max);
  1823. vs->client_pf.gshift = green_shift;
  1824. vs->client_pf.gmask = green_max << green_shift;
  1825. vs->client_pf.bmax = blue_max ? blue_max : 0xFF;
  1826. vs->client_pf.bbits = hweight_long(blue_max);
  1827. vs->client_pf.bshift = blue_shift;
  1828. vs->client_pf.bmask = blue_max << blue_shift;
  1829. vs->client_pf.bits_per_pixel = bits_per_pixel;
  1830. vs->client_pf.bytes_per_pixel = bits_per_pixel / 8;
  1831. vs->client_pf.depth = bits_per_pixel == 32 ? 24 : bits_per_pixel;
  1832. vs->client_be = big_endian_flag;
  1833. if (!true_color_flag) {
  1834. send_color_map(vs);
  1835. }
  1836. set_pixel_conversion(vs);
  1837. graphic_hw_invalidate(vs->vd->dcl.con);
  1838. graphic_hw_update(vs->vd->dcl.con);
  1839. }
  1840. static void pixel_format_message (VncState *vs) {
  1841. char pad[3] = { 0, 0, 0 };
  1842. vs->client_pf = qemu_default_pixelformat(32);
  1843. vnc_write_u8(vs, vs->client_pf.bits_per_pixel); /* bits-per-pixel */
  1844. vnc_write_u8(vs, vs->client_pf.depth); /* depth */
  1845. #ifdef HOST_WORDS_BIGENDIAN
  1846. vnc_write_u8(vs, 1); /* big-endian-flag */
  1847. #else
  1848. vnc_write_u8(vs, 0); /* big-endian-flag */
  1849. #endif
  1850. vnc_write_u8(vs, 1); /* true-color-flag */
  1851. vnc_write_u16(vs, vs->client_pf.rmax); /* red-max */
  1852. vnc_write_u16(vs, vs->client_pf.gmax); /* green-max */
  1853. vnc_write_u16(vs, vs->client_pf.bmax); /* blue-max */
  1854. vnc_write_u8(vs, vs->client_pf.rshift); /* red-shift */
  1855. vnc_write_u8(vs, vs->client_pf.gshift); /* green-shift */
  1856. vnc_write_u8(vs, vs->client_pf.bshift); /* blue-shift */
  1857. vnc_write(vs, pad, 3); /* padding */
  1858. vnc_hextile_set_pixel_conversion(vs, 0);
  1859. vs->write_pixels = vnc_write_pixels_copy;
  1860. }
  1861. static void vnc_colordepth(VncState *vs)
  1862. {
  1863. if (vnc_has_feature(vs, VNC_FEATURE_WMVI)) {
  1864. /* Sending a WMVi message to notify the client*/
  1865. vnc_lock_output(vs);
  1866. vnc_write_u8(vs, VNC_MSG_SERVER_FRAMEBUFFER_UPDATE);
  1867. vnc_write_u8(vs, 0);
  1868. vnc_write_u16(vs, 1); /* number of rects */
  1869. vnc_framebuffer_update(vs, 0, 0,
  1870. pixman_image_get_width(vs->vd->server),
  1871. pixman_image_get_height(vs->vd->server),
  1872. VNC_ENCODING_WMVi);
  1873. pixel_format_message(vs);
  1874. vnc_unlock_output(vs);
  1875. vnc_flush(vs);
  1876. } else {
  1877. set_pixel_conversion(vs);
  1878. }
  1879. }
  1880. static int protocol_client_msg(VncState *vs, uint8_t *data, size_t len)
  1881. {
  1882. int i;
  1883. uint16_t limit;
  1884. VncDisplay *vd = vs->vd;
  1885. if (data[0] > 3) {
  1886. update_displaychangelistener(&vd->dcl, VNC_REFRESH_INTERVAL_BASE);
  1887. }
  1888. switch (data[0]) {
  1889. case VNC_MSG_CLIENT_SET_PIXEL_FORMAT:
  1890. if (len == 1)
  1891. return 20;
  1892. set_pixel_format(vs, read_u8(data, 4),
  1893. read_u8(data, 6), read_u8(data, 7),
  1894. read_u16(data, 8), read_u16(data, 10),
  1895. read_u16(data, 12), read_u8(data, 14),
  1896. read_u8(data, 15), read_u8(data, 16));
  1897. break;
  1898. case VNC_MSG_CLIENT_SET_ENCODINGS:
  1899. if (len == 1)
  1900. return 4;
  1901. if (len == 4) {
  1902. limit = read_u16(data, 2);
  1903. if (limit > 0)
  1904. return 4 + (limit * 4);
  1905. } else
  1906. limit = read_u16(data, 2);
  1907. for (i = 0; i < limit; i++) {
  1908. int32_t val = read_s32(data, 4 + (i * 4));
  1909. memcpy(data + 4 + (i * 4), &val, sizeof(val));
  1910. }
  1911. set_encodings(vs, (int32_t *)(data + 4), limit);
  1912. break;
  1913. case VNC_MSG_CLIENT_FRAMEBUFFER_UPDATE_REQUEST:
  1914. if (len == 1)
  1915. return 10;
  1916. framebuffer_update_request(vs,
  1917. read_u8(data, 1), read_u16(data, 2), read_u16(data, 4),
  1918. read_u16(data, 6), read_u16(data, 8));
  1919. break;
  1920. case VNC_MSG_CLIENT_KEY_EVENT:
  1921. if (len == 1)
  1922. return 8;
  1923. key_event(vs, read_u8(data, 1), read_u32(data, 4));
  1924. break;
  1925. case VNC_MSG_CLIENT_POINTER_EVENT:
  1926. if (len == 1)
  1927. return 6;
  1928. pointer_event(vs, read_u8(data, 1), read_u16(data, 2), read_u16(data, 4));
  1929. break;
  1930. case VNC_MSG_CLIENT_CUT_TEXT:
  1931. if (len == 1) {
  1932. return 8;
  1933. }
  1934. if (len == 8) {
  1935. uint32_t dlen = read_u32(data, 4);
  1936. if (dlen > (1 << 20)) {
  1937. error_report("vnc: client_cut_text msg payload has %u bytes"
  1938. " which exceeds our limit of 1MB.", dlen);
  1939. vnc_client_error(vs);
  1940. break;
  1941. }
  1942. if (dlen > 0) {
  1943. return 8 + dlen;
  1944. }
  1945. }
  1946. client_cut_text(vs, read_u32(data, 4), data + 8);
  1947. break;
  1948. case VNC_MSG_CLIENT_QEMU:
  1949. if (len == 1)
  1950. return 2;
  1951. switch (read_u8(data, 1)) {
  1952. case VNC_MSG_CLIENT_QEMU_EXT_KEY_EVENT:
  1953. if (len == 2)
  1954. return 12;
  1955. ext_key_event(vs, read_u16(data, 2),
  1956. read_u32(data, 4), read_u32(data, 8));
  1957. break;
  1958. case VNC_MSG_CLIENT_QEMU_AUDIO:
  1959. if (len == 2)
  1960. return 4;
  1961. switch (read_u16 (data, 2)) {
  1962. case VNC_MSG_CLIENT_QEMU_AUDIO_ENABLE:
  1963. audio_add(vs);
  1964. break;
  1965. case VNC_MSG_CLIENT_QEMU_AUDIO_DISABLE:
  1966. audio_del(vs);
  1967. break;
  1968. case VNC_MSG_CLIENT_QEMU_AUDIO_SET_FORMAT:
  1969. if (len == 4)
  1970. return 10;
  1971. switch (read_u8(data, 4)) {
  1972. case 0: vs->as.fmt = AUD_FMT_U8; break;
  1973. case 1: vs->as.fmt = AUD_FMT_S8; break;
  1974. case 2: vs->as.fmt = AUD_FMT_U16; break;
  1975. case 3: vs->as.fmt = AUD_FMT_S16; break;
  1976. case 4: vs->as.fmt = AUD_FMT_U32; break;
  1977. case 5: vs->as.fmt = AUD_FMT_S32; break;
  1978. default:
  1979. VNC_DEBUG("Invalid audio format %d\n", read_u8(data, 4));
  1980. vnc_client_error(vs);
  1981. break;
  1982. }
  1983. vs->as.nchannels = read_u8(data, 5);
  1984. if (vs->as.nchannels != 1 && vs->as.nchannels != 2) {
  1985. VNC_DEBUG("Invalid audio channel coount %d\n",
  1986. read_u8(data, 5));
  1987. vnc_client_error(vs);
  1988. break;
  1989. }
  1990. vs->as.freq = read_u32(data, 6);
  1991. break;
  1992. default:
  1993. VNC_DEBUG("Invalid audio message %d\n", read_u8(data, 4));
  1994. vnc_client_error(vs);
  1995. break;
  1996. }
  1997. break;
  1998. default:
  1999. VNC_DEBUG("Msg: %d\n", read_u16(data, 0));
  2000. vnc_client_error(vs);
  2001. break;
  2002. }
  2003. break;
  2004. default:
  2005. VNC_DEBUG("Msg: %d\n", data[0]);
  2006. vnc_client_error(vs);
  2007. break;
  2008. }
  2009. vnc_read_when(vs, protocol_client_msg, 1);
  2010. return 0;
  2011. }
  2012. static int protocol_client_init(VncState *vs, uint8_t *data, size_t len)
  2013. {
  2014. char buf[1024];
  2015. VncShareMode mode;
  2016. int size;
  2017. mode = data[0] ? VNC_SHARE_MODE_SHARED : VNC_SHARE_MODE_EXCLUSIVE;
  2018. switch (vs->vd->share_policy) {
  2019. case VNC_SHARE_POLICY_IGNORE:
  2020. /*
  2021. * Ignore the shared flag. Nothing to do here.
  2022. *
  2023. * Doesn't conform to the rfb spec but is traditional qemu
  2024. * behavior, thus left here as option for compatibility
  2025. * reasons.
  2026. */
  2027. break;
  2028. case VNC_SHARE_POLICY_ALLOW_EXCLUSIVE:
  2029. /*
  2030. * Policy: Allow clients ask for exclusive access.
  2031. *
  2032. * Implementation: When a client asks for exclusive access,
  2033. * disconnect all others. Shared connects are allowed as long
  2034. * as no exclusive connection exists.
  2035. *
  2036. * This is how the rfb spec suggests to handle the shared flag.
  2037. */
  2038. if (mode == VNC_SHARE_MODE_EXCLUSIVE) {
  2039. VncState *client;
  2040. QTAILQ_FOREACH(client, &vs->vd->clients, next) {
  2041. if (vs == client) {
  2042. continue;
  2043. }
  2044. if (client->share_mode != VNC_SHARE_MODE_EXCLUSIVE &&
  2045. client->share_mode != VNC_SHARE_MODE_SHARED) {
  2046. continue;
  2047. }
  2048. vnc_disconnect_start(client);
  2049. }
  2050. }
  2051. if (mode == VNC_SHARE_MODE_SHARED) {
  2052. if (vs->vd->num_exclusive > 0) {
  2053. vnc_disconnect_start(vs);
  2054. return 0;
  2055. }
  2056. }
  2057. break;
  2058. case VNC_SHARE_POLICY_FORCE_SHARED:
  2059. /*
  2060. * Policy: Shared connects only.
  2061. * Implementation: Disallow clients asking for exclusive access.
  2062. *
  2063. * Useful for shared desktop sessions where you don't want
  2064. * someone forgetting to say -shared when running the vnc
  2065. * client disconnect everybody else.
  2066. */
  2067. if (mode == VNC_SHARE_MODE_EXCLUSIVE) {
  2068. vnc_disconnect_start(vs);
  2069. return 0;
  2070. }
  2071. break;
  2072. }
  2073. vnc_set_share_mode(vs, mode);
  2074. if (vs->vd->num_shared > vs->vd->connections_limit) {
  2075. vnc_disconnect_start(vs);
  2076. return 0;
  2077. }
  2078. vs->client_width = pixman_image_get_width(vs->vd->server);
  2079. vs->client_height = pixman_image_get_height(vs->vd->server);
  2080. vnc_write_u16(vs, vs->client_width);
  2081. vnc_write_u16(vs, vs->client_height);
  2082. pixel_format_message(vs);
  2083. if (qemu_name) {
  2084. size = snprintf(buf, sizeof(buf), "QEMU (%s)", qemu_name);
  2085. if (size > sizeof(buf)) {
  2086. size = sizeof(buf);
  2087. }
  2088. } else {
  2089. size = snprintf(buf, sizeof(buf), "QEMU");
  2090. }
  2091. vnc_write_u32(vs, size);
  2092. vnc_write(vs, buf, size);
  2093. vnc_flush(vs);
  2094. vnc_client_cache_auth(vs);
  2095. vnc_qmp_event(vs, QAPI_EVENT_VNC_INITIALIZED);
  2096. vnc_read_when(vs, protocol_client_msg, 1);
  2097. return 0;
  2098. }
  2099. void start_client_init(VncState *vs)
  2100. {
  2101. vnc_read_when(vs, protocol_client_init, 1);
  2102. }
  2103. static void make_challenge(VncState *vs)
  2104. {
  2105. int i;
  2106. srand(time(NULL)+getpid()+getpid()*987654+rand());
  2107. for (i = 0 ; i < sizeof(vs->challenge) ; i++)
  2108. vs->challenge[i] = (int) (256.0*rand()/(RAND_MAX+1.0));
  2109. }
  2110. static int protocol_client_auth_vnc(VncState *vs, uint8_t *data, size_t len)
  2111. {
  2112. unsigned char response[VNC_AUTH_CHALLENGE_SIZE];
  2113. size_t i, pwlen;
  2114. unsigned char key[8];
  2115. time_t now = time(NULL);
  2116. QCryptoCipher *cipher = NULL;
  2117. Error *err = NULL;
  2118. if (!vs->vd->password) {
  2119. VNC_DEBUG("No password configured on server");
  2120. goto reject;
  2121. }
  2122. if (vs->vd->expires < now) {
  2123. VNC_DEBUG("Password is expired");
  2124. goto reject;
  2125. }
  2126. memcpy(response, vs->challenge, VNC_AUTH_CHALLENGE_SIZE);
  2127. /* Calculate the expected challenge response */
  2128. pwlen = strlen(vs->vd->password);
  2129. for (i=0; i<sizeof(key); i++)
  2130. key[i] = i<pwlen ? vs->vd->password[i] : 0;
  2131. cipher = qcrypto_cipher_new(
  2132. QCRYPTO_CIPHER_ALG_DES_RFB,
  2133. QCRYPTO_CIPHER_MODE_ECB,
  2134. key, G_N_ELEMENTS(key),
  2135. &err);
  2136. if (!cipher) {
  2137. VNC_DEBUG("Cannot initialize cipher %s",
  2138. error_get_pretty(err));
  2139. error_free(err);
  2140. goto reject;
  2141. }
  2142. if (qcrypto_cipher_encrypt(cipher,
  2143. vs->challenge,
  2144. response,
  2145. VNC_AUTH_CHALLENGE_SIZE,
  2146. &err) < 0) {
  2147. VNC_DEBUG("Cannot encrypt challenge %s",
  2148. error_get_pretty(err));
  2149. error_free(err);
  2150. goto reject;
  2151. }
  2152. /* Compare expected vs actual challenge response */
  2153. if (memcmp(response, data, VNC_AUTH_CHALLENGE_SIZE) != 0) {
  2154. VNC_DEBUG("Client challenge response did not match\n");
  2155. goto reject;
  2156. } else {
  2157. VNC_DEBUG("Accepting VNC challenge response\n");
  2158. vnc_write_u32(vs, 0); /* Accept auth */
  2159. vnc_flush(vs);
  2160. start_client_init(vs);
  2161. }
  2162. qcrypto_cipher_free(cipher);
  2163. return 0;
  2164. reject:
  2165. vnc_write_u32(vs, 1); /* Reject auth */
  2166. if (vs->minor >= 8) {
  2167. static const char err[] = "Authentication failed";
  2168. vnc_write_u32(vs, sizeof(err));
  2169. vnc_write(vs, err, sizeof(err));
  2170. }
  2171. vnc_flush(vs);
  2172. vnc_client_error(vs);
  2173. qcrypto_cipher_free(cipher);
  2174. return 0;
  2175. }
  2176. void start_auth_vnc(VncState *vs)
  2177. {
  2178. make_challenge(vs);
  2179. /* Send client a 'random' challenge */
  2180. vnc_write(vs, vs->challenge, sizeof(vs->challenge));
  2181. vnc_flush(vs);
  2182. vnc_read_when(vs, protocol_client_auth_vnc, sizeof(vs->challenge));
  2183. }
  2184. static int protocol_client_auth(VncState *vs, uint8_t *data, size_t len)
  2185. {
  2186. /* We only advertise 1 auth scheme at a time, so client
  2187. * must pick the one we sent. Verify this */
  2188. if (data[0] != vs->auth) { /* Reject auth */
  2189. VNC_DEBUG("Reject auth %d because it didn't match advertized\n", (int)data[0]);
  2190. vnc_write_u32(vs, 1);
  2191. if (vs->minor >= 8) {
  2192. static const char err[] = "Authentication failed";
  2193. vnc_write_u32(vs, sizeof(err));
  2194. vnc_write(vs, err, sizeof(err));
  2195. }
  2196. vnc_client_error(vs);
  2197. } else { /* Accept requested auth */
  2198. VNC_DEBUG("Client requested auth %d\n", (int)data[0]);
  2199. switch (vs->auth) {
  2200. case VNC_AUTH_NONE:
  2201. VNC_DEBUG("Accept auth none\n");
  2202. if (vs->minor >= 8) {
  2203. vnc_write_u32(vs, 0); /* Accept auth completion */
  2204. vnc_flush(vs);
  2205. }
  2206. start_client_init(vs);
  2207. break;
  2208. case VNC_AUTH_VNC:
  2209. VNC_DEBUG("Start VNC auth\n");
  2210. start_auth_vnc(vs);
  2211. break;
  2212. case VNC_AUTH_VENCRYPT:
  2213. VNC_DEBUG("Accept VeNCrypt auth\n");
  2214. start_auth_vencrypt(vs);
  2215. break;
  2216. #ifdef CONFIG_VNC_SASL
  2217. case VNC_AUTH_SASL:
  2218. VNC_DEBUG("Accept SASL auth\n");
  2219. start_auth_sasl(vs);
  2220. break;
  2221. #endif /* CONFIG_VNC_SASL */
  2222. default: /* Should not be possible, but just in case */
  2223. VNC_DEBUG("Reject auth %d server code bug\n", vs->auth);
  2224. vnc_write_u8(vs, 1);
  2225. if (vs->minor >= 8) {
  2226. static const char err[] = "Authentication failed";
  2227. vnc_write_u32(vs, sizeof(err));
  2228. vnc_write(vs, err, sizeof(err));
  2229. }
  2230. vnc_client_error(vs);
  2231. }
  2232. }
  2233. return 0;
  2234. }
  2235. static int protocol_version(VncState *vs, uint8_t *version, size_t len)
  2236. {
  2237. char local[13];
  2238. memcpy(local, version, 12);
  2239. local[12] = 0;
  2240. if (sscanf(local, "RFB %03d.%03d\n", &vs->major, &vs->minor) != 2) {
  2241. VNC_DEBUG("Malformed protocol version %s\n", local);
  2242. vnc_client_error(vs);
  2243. return 0;
  2244. }
  2245. VNC_DEBUG("Client request protocol version %d.%d\n", vs->major, vs->minor);
  2246. if (vs->major != 3 ||
  2247. (vs->minor != 3 &&
  2248. vs->minor != 4 &&
  2249. vs->minor != 5 &&
  2250. vs->minor != 7 &&
  2251. vs->minor != 8)) {
  2252. VNC_DEBUG("Unsupported client version\n");
  2253. vnc_write_u32(vs, VNC_AUTH_INVALID);
  2254. vnc_flush(vs);
  2255. vnc_client_error(vs);
  2256. return 0;
  2257. }
  2258. /* Some broken clients report v3.4 or v3.5, which spec requires to be treated
  2259. * as equivalent to v3.3 by servers
  2260. */
  2261. if (vs->minor == 4 || vs->minor == 5)
  2262. vs->minor = 3;
  2263. if (vs->minor == 3) {
  2264. if (vs->auth == VNC_AUTH_NONE) {
  2265. VNC_DEBUG("Tell client auth none\n");
  2266. vnc_write_u32(vs, vs->auth);
  2267. vnc_flush(vs);
  2268. start_client_init(vs);
  2269. } else if (vs->auth == VNC_AUTH_VNC) {
  2270. VNC_DEBUG("Tell client VNC auth\n");
  2271. vnc_write_u32(vs, vs->auth);
  2272. vnc_flush(vs);
  2273. start_auth_vnc(vs);
  2274. } else {
  2275. VNC_DEBUG("Unsupported auth %d for protocol 3.3\n", vs->auth);
  2276. vnc_write_u32(vs, VNC_AUTH_INVALID);
  2277. vnc_flush(vs);
  2278. vnc_client_error(vs);
  2279. }
  2280. } else {
  2281. VNC_DEBUG("Telling client we support auth %d\n", vs->auth);
  2282. vnc_write_u8(vs, 1); /* num auth */
  2283. vnc_write_u8(vs, vs->auth);
  2284. vnc_read_when(vs, protocol_client_auth, 1);
  2285. vnc_flush(vs);
  2286. }
  2287. return 0;
  2288. }
  2289. static VncRectStat *vnc_stat_rect(VncDisplay *vd, int x, int y)
  2290. {
  2291. struct VncSurface *vs = &vd->guest;
  2292. return &vs->stats[y / VNC_STAT_RECT][x / VNC_STAT_RECT];
  2293. }
  2294. void vnc_sent_lossy_rect(VncState *vs, int x, int y, int w, int h)
  2295. {
  2296. int i, j;
  2297. w = (x + w) / VNC_STAT_RECT;
  2298. h = (y + h) / VNC_STAT_RECT;
  2299. x /= VNC_STAT_RECT;
  2300. y /= VNC_STAT_RECT;
  2301. for (j = y; j <= h; j++) {
  2302. for (i = x; i <= w; i++) {
  2303. vs->lossy_rect[j][i] = 1;
  2304. }
  2305. }
  2306. }
  2307. static int vnc_refresh_lossy_rect(VncDisplay *vd, int x, int y)
  2308. {
  2309. VncState *vs;
  2310. int sty = y / VNC_STAT_RECT;
  2311. int stx = x / VNC_STAT_RECT;
  2312. int has_dirty = 0;
  2313. y = y / VNC_STAT_RECT * VNC_STAT_RECT;
  2314. x = x / VNC_STAT_RECT * VNC_STAT_RECT;
  2315. QTAILQ_FOREACH(vs, &vd->clients, next) {
  2316. int j;
  2317. /* kernel send buffers are full -> refresh later */
  2318. if (vs->output.offset) {
  2319. continue;
  2320. }
  2321. if (!vs->lossy_rect[sty][stx]) {
  2322. continue;
  2323. }
  2324. vs->lossy_rect[sty][stx] = 0;
  2325. for (j = 0; j < VNC_STAT_RECT; ++j) {
  2326. bitmap_set(vs->dirty[y + j],
  2327. x / VNC_DIRTY_PIXELS_PER_BIT,
  2328. VNC_STAT_RECT / VNC_DIRTY_PIXELS_PER_BIT);
  2329. }
  2330. has_dirty++;
  2331. }
  2332. return has_dirty;
  2333. }
  2334. static int vnc_update_stats(VncDisplay *vd, struct timeval * tv)
  2335. {
  2336. int width = MIN(pixman_image_get_width(vd->guest.fb),
  2337. pixman_image_get_width(vd->server));
  2338. int height = MIN(pixman_image_get_height(vd->guest.fb),
  2339. pixman_image_get_height(vd->server));
  2340. int x, y;
  2341. struct timeval res;
  2342. int has_dirty = 0;
  2343. for (y = 0; y < height; y += VNC_STAT_RECT) {
  2344. for (x = 0; x < width; x += VNC_STAT_RECT) {
  2345. VncRectStat *rect = vnc_stat_rect(vd, x, y);
  2346. rect->updated = false;
  2347. }
  2348. }
  2349. qemu_timersub(tv, &VNC_REFRESH_STATS, &res);
  2350. if (timercmp(&vd->guest.last_freq_check, &res, >)) {
  2351. return has_dirty;
  2352. }
  2353. vd->guest.last_freq_check = *tv;
  2354. for (y = 0; y < height; y += VNC_STAT_RECT) {
  2355. for (x = 0; x < width; x += VNC_STAT_RECT) {
  2356. VncRectStat *rect= vnc_stat_rect(vd, x, y);
  2357. int count = ARRAY_SIZE(rect->times);
  2358. struct timeval min, max;
  2359. if (!timerisset(&rect->times[count - 1])) {
  2360. continue ;
  2361. }
  2362. max = rect->times[(rect->idx + count - 1) % count];
  2363. qemu_timersub(tv, &max, &res);
  2364. if (timercmp(&res, &VNC_REFRESH_LOSSY, >)) {
  2365. rect->freq = 0;
  2366. has_dirty += vnc_refresh_lossy_rect(vd, x, y);
  2367. memset(rect->times, 0, sizeof (rect->times));
  2368. continue ;
  2369. }
  2370. min = rect->times[rect->idx];
  2371. max = rect->times[(rect->idx + count - 1) % count];
  2372. qemu_timersub(&max, &min, &res);
  2373. rect->freq = res.tv_sec + res.tv_usec / 1000000.;
  2374. rect->freq /= count;
  2375. rect->freq = 1. / rect->freq;
  2376. }
  2377. }
  2378. return has_dirty;
  2379. }
  2380. double vnc_update_freq(VncState *vs, int x, int y, int w, int h)
  2381. {
  2382. int i, j;
  2383. double total = 0;
  2384. int num = 0;
  2385. x = (x / VNC_STAT_RECT) * VNC_STAT_RECT;
  2386. y = (y / VNC_STAT_RECT) * VNC_STAT_RECT;
  2387. for (j = y; j <= y + h; j += VNC_STAT_RECT) {
  2388. for (i = x; i <= x + w; i += VNC_STAT_RECT) {
  2389. total += vnc_stat_rect(vs->vd, i, j)->freq;
  2390. num++;
  2391. }
  2392. }
  2393. if (num) {
  2394. return total / num;
  2395. } else {
  2396. return 0;
  2397. }
  2398. }
  2399. static void vnc_rect_updated(VncDisplay *vd, int x, int y, struct timeval * tv)
  2400. {
  2401. VncRectStat *rect;
  2402. rect = vnc_stat_rect(vd, x, y);
  2403. if (rect->updated) {
  2404. return ;
  2405. }
  2406. rect->times[rect->idx] = *tv;
  2407. rect->idx = (rect->idx + 1) % ARRAY_SIZE(rect->times);
  2408. rect->updated = true;
  2409. }
  2410. static int vnc_refresh_server_surface(VncDisplay *vd)
  2411. {
  2412. int width = MIN(pixman_image_get_width(vd->guest.fb),
  2413. pixman_image_get_width(vd->server));
  2414. int height = MIN(pixman_image_get_height(vd->guest.fb),
  2415. pixman_image_get_height(vd->server));
  2416. int cmp_bytes, server_stride, line_bytes, guest_ll, guest_stride, y = 0;
  2417. uint8_t *guest_row0 = NULL, *server_row0;
  2418. VncState *vs;
  2419. int has_dirty = 0;
  2420. pixman_image_t *tmpbuf = NULL;
  2421. struct timeval tv = { 0, 0 };
  2422. if (!vd->non_adaptive) {
  2423. gettimeofday(&tv, NULL);
  2424. has_dirty = vnc_update_stats(vd, &tv);
  2425. }
  2426. /*
  2427. * Walk through the guest dirty map.
  2428. * Check and copy modified bits from guest to server surface.
  2429. * Update server dirty map.
  2430. */
  2431. server_row0 = (uint8_t *)pixman_image_get_data(vd->server);
  2432. server_stride = guest_stride = guest_ll =
  2433. pixman_image_get_stride(vd->server);
  2434. cmp_bytes = MIN(VNC_DIRTY_PIXELS_PER_BIT * VNC_SERVER_FB_BYTES,
  2435. server_stride);
  2436. if (vd->guest.format != VNC_SERVER_FB_FORMAT) {
  2437. int width = pixman_image_get_width(vd->server);
  2438. tmpbuf = qemu_pixman_linebuf_create(VNC_SERVER_FB_FORMAT, width);
  2439. } else {
  2440. int guest_bpp =
  2441. PIXMAN_FORMAT_BPP(pixman_image_get_format(vd->guest.fb));
  2442. guest_row0 = (uint8_t *)pixman_image_get_data(vd->guest.fb);
  2443. guest_stride = pixman_image_get_stride(vd->guest.fb);
  2444. guest_ll = pixman_image_get_width(vd->guest.fb) * ((guest_bpp + 7) / 8);
  2445. }
  2446. line_bytes = MIN(server_stride, guest_ll);
  2447. for (;;) {
  2448. int x;
  2449. uint8_t *guest_ptr, *server_ptr;
  2450. unsigned long offset = find_next_bit((unsigned long *) &vd->guest.dirty,
  2451. height * VNC_DIRTY_BPL(&vd->guest),
  2452. y * VNC_DIRTY_BPL(&vd->guest));
  2453. if (offset == height * VNC_DIRTY_BPL(&vd->guest)) {
  2454. /* no more dirty bits */
  2455. break;
  2456. }
  2457. y = offset / VNC_DIRTY_BPL(&vd->guest);
  2458. x = offset % VNC_DIRTY_BPL(&vd->guest);
  2459. server_ptr = server_row0 + y * server_stride + x * cmp_bytes;
  2460. if (vd->guest.format != VNC_SERVER_FB_FORMAT) {
  2461. qemu_pixman_linebuf_fill(tmpbuf, vd->guest.fb, width, 0, y);
  2462. guest_ptr = (uint8_t *)pixman_image_get_data(tmpbuf);
  2463. } else {
  2464. guest_ptr = guest_row0 + y * guest_stride;
  2465. }
  2466. guest_ptr += x * cmp_bytes;
  2467. for (; x < DIV_ROUND_UP(width, VNC_DIRTY_PIXELS_PER_BIT);
  2468. x++, guest_ptr += cmp_bytes, server_ptr += cmp_bytes) {
  2469. int _cmp_bytes = cmp_bytes;
  2470. if (!test_and_clear_bit(x, vd->guest.dirty[y])) {
  2471. continue;
  2472. }
  2473. if ((x + 1) * cmp_bytes > line_bytes) {
  2474. _cmp_bytes = line_bytes - x * cmp_bytes;
  2475. }
  2476. assert(_cmp_bytes >= 0);
  2477. if (memcmp(server_ptr, guest_ptr, _cmp_bytes) == 0) {
  2478. continue;
  2479. }
  2480. memcpy(server_ptr, guest_ptr, _cmp_bytes);
  2481. if (!vd->non_adaptive) {
  2482. vnc_rect_updated(vd, x * VNC_DIRTY_PIXELS_PER_BIT,
  2483. y, &tv);
  2484. }
  2485. QTAILQ_FOREACH(vs, &vd->clients, next) {
  2486. set_bit(x, vs->dirty[y]);
  2487. }
  2488. has_dirty++;
  2489. }
  2490. y++;
  2491. }
  2492. qemu_pixman_image_unref(tmpbuf);
  2493. return has_dirty;
  2494. }
  2495. static void vnc_refresh(DisplayChangeListener *dcl)
  2496. {
  2497. VncDisplay *vd = container_of(dcl, VncDisplay, dcl);
  2498. VncState *vs, *vn;
  2499. int has_dirty, rects = 0;
  2500. if (QTAILQ_EMPTY(&vd->clients)) {
  2501. update_displaychangelistener(&vd->dcl, VNC_REFRESH_INTERVAL_MAX);
  2502. return;
  2503. }
  2504. graphic_hw_update(vd->dcl.con);
  2505. if (vnc_trylock_display(vd)) {
  2506. update_displaychangelistener(&vd->dcl, VNC_REFRESH_INTERVAL_BASE);
  2507. return;
  2508. }
  2509. has_dirty = vnc_refresh_server_surface(vd);
  2510. vnc_unlock_display(vd);
  2511. QTAILQ_FOREACH_SAFE(vs, &vd->clients, next, vn) {
  2512. rects += vnc_update_client(vs, has_dirty, false);
  2513. /* vs might be free()ed here */
  2514. }
  2515. if (has_dirty && rects) {
  2516. vd->dcl.update_interval /= 2;
  2517. if (vd->dcl.update_interval < VNC_REFRESH_INTERVAL_BASE) {
  2518. vd->dcl.update_interval = VNC_REFRESH_INTERVAL_BASE;
  2519. }
  2520. } else {
  2521. vd->dcl.update_interval += VNC_REFRESH_INTERVAL_INC;
  2522. if (vd->dcl.update_interval > VNC_REFRESH_INTERVAL_MAX) {
  2523. vd->dcl.update_interval = VNC_REFRESH_INTERVAL_MAX;
  2524. }
  2525. }
  2526. }
  2527. static void vnc_connect(VncDisplay *vd, QIOChannelSocket *sioc,
  2528. bool skipauth, bool websocket)
  2529. {
  2530. VncState *vs = g_new0(VncState, 1);
  2531. bool first_client = QTAILQ_EMPTY(&vd->clients);
  2532. int i;
  2533. vs->sioc = sioc;
  2534. object_ref(OBJECT(vs->sioc));
  2535. vs->ioc = QIO_CHANNEL(sioc);
  2536. object_ref(OBJECT(vs->ioc));
  2537. vs->vd = vd;
  2538. buffer_init(&vs->input, "vnc-input/%p", sioc);
  2539. buffer_init(&vs->output, "vnc-output/%p", sioc);
  2540. buffer_init(&vs->jobs_buffer, "vnc-jobs_buffer/%p", sioc);
  2541. buffer_init(&vs->tight.tight, "vnc-tight/%p", sioc);
  2542. buffer_init(&vs->tight.zlib, "vnc-tight-zlib/%p", sioc);
  2543. buffer_init(&vs->tight.gradient, "vnc-tight-gradient/%p", sioc);
  2544. #ifdef CONFIG_VNC_JPEG
  2545. buffer_init(&vs->tight.jpeg, "vnc-tight-jpeg/%p", sioc);
  2546. #endif
  2547. #ifdef CONFIG_VNC_PNG
  2548. buffer_init(&vs->tight.png, "vnc-tight-png/%p", sioc);
  2549. #endif
  2550. buffer_init(&vs->zlib.zlib, "vnc-zlib/%p", sioc);
  2551. buffer_init(&vs->zrle.zrle, "vnc-zrle/%p", sioc);
  2552. buffer_init(&vs->zrle.fb, "vnc-zrle-fb/%p", sioc);
  2553. buffer_init(&vs->zrle.zlib, "vnc-zrle-zlib/%p", sioc);
  2554. if (skipauth) {
  2555. vs->auth = VNC_AUTH_NONE;
  2556. vs->subauth = VNC_AUTH_INVALID;
  2557. } else {
  2558. if (websocket) {
  2559. vs->auth = vd->ws_auth;
  2560. vs->subauth = VNC_AUTH_INVALID;
  2561. } else {
  2562. vs->auth = vd->auth;
  2563. vs->subauth = vd->subauth;
  2564. }
  2565. }
  2566. VNC_DEBUG("Client sioc=%p ws=%d auth=%d subauth=%d\n",
  2567. sioc, websocket, vs->auth, vs->subauth);
  2568. vs->lossy_rect = g_malloc0(VNC_STAT_ROWS * sizeof (*vs->lossy_rect));
  2569. for (i = 0; i < VNC_STAT_ROWS; ++i) {
  2570. vs->lossy_rect[i] = g_new0(uint8_t, VNC_STAT_COLS);
  2571. }
  2572. VNC_DEBUG("New client on socket %p\n", vs->sioc);
  2573. update_displaychangelistener(&vd->dcl, VNC_REFRESH_INTERVAL_BASE);
  2574. qio_channel_set_blocking(vs->ioc, false, NULL);
  2575. if (websocket) {
  2576. vs->websocket = 1;
  2577. if (vd->tlscreds) {
  2578. vs->ioc_tag = qio_channel_add_watch(
  2579. vs->ioc, G_IO_IN, vncws_tls_handshake_io, vs, NULL);
  2580. } else {
  2581. vs->ioc_tag = qio_channel_add_watch(
  2582. vs->ioc, G_IO_IN, vncws_handshake_io, vs, NULL);
  2583. }
  2584. } else {
  2585. vs->ioc_tag = qio_channel_add_watch(
  2586. vs->ioc, G_IO_IN, vnc_client_io, vs, NULL);
  2587. }
  2588. vnc_client_cache_addr(vs);
  2589. vnc_qmp_event(vs, QAPI_EVENT_VNC_CONNECTED);
  2590. vnc_set_share_mode(vs, VNC_SHARE_MODE_CONNECTING);
  2591. vs->last_x = -1;
  2592. vs->last_y = -1;
  2593. vs->as.freq = 44100;
  2594. vs->as.nchannels = 2;
  2595. vs->as.fmt = AUD_FMT_S16;
  2596. vs->as.endianness = 0;
  2597. qemu_mutex_init(&vs->output_mutex);
  2598. vs->bh = qemu_bh_new(vnc_jobs_bh, vs);
  2599. QTAILQ_INSERT_TAIL(&vd->clients, vs, next);
  2600. if (first_client) {
  2601. vnc_update_server_surface(vd);
  2602. }
  2603. graphic_hw_update(vd->dcl.con);
  2604. if (!vs->websocket) {
  2605. vnc_start_protocol(vs);
  2606. }
  2607. if (vd->num_connecting > vd->connections_limit) {
  2608. QTAILQ_FOREACH(vs, &vd->clients, next) {
  2609. if (vs->share_mode == VNC_SHARE_MODE_CONNECTING) {
  2610. vnc_disconnect_start(vs);
  2611. return;
  2612. }
  2613. }
  2614. }
  2615. }
  2616. void vnc_start_protocol(VncState *vs)
  2617. {
  2618. vnc_write(vs, "RFB 003.008\n", 12);
  2619. vnc_flush(vs);
  2620. vnc_read_when(vs, protocol_version, 12);
  2621. vs->mouse_mode_notifier.notify = check_pointer_type_change;
  2622. qemu_add_mouse_mode_change_notifier(&vs->mouse_mode_notifier);
  2623. }
  2624. static gboolean vnc_listen_io(QIOChannel *ioc,
  2625. GIOCondition condition,
  2626. void *opaque)
  2627. {
  2628. VncDisplay *vd = opaque;
  2629. QIOChannelSocket *sioc = NULL;
  2630. Error *err = NULL;
  2631. bool isWebsock = false;
  2632. size_t i;
  2633. for (i = 0; i < vd->nlwebsock; i++) {
  2634. if (ioc == QIO_CHANNEL(vd->lwebsock[i])) {
  2635. isWebsock = true;
  2636. break;
  2637. }
  2638. }
  2639. sioc = qio_channel_socket_accept(QIO_CHANNEL_SOCKET(ioc), &err);
  2640. if (sioc != NULL) {
  2641. qio_channel_set_name(QIO_CHANNEL(sioc),
  2642. isWebsock ? "vnc-ws-server" : "vnc-server");
  2643. qio_channel_set_delay(QIO_CHANNEL(sioc), false);
  2644. vnc_connect(vd, sioc, false, isWebsock);
  2645. object_unref(OBJECT(sioc));
  2646. } else {
  2647. /* client probably closed connection before we got there */
  2648. error_free(err);
  2649. }
  2650. return TRUE;
  2651. }
  2652. static const DisplayChangeListenerOps dcl_ops = {
  2653. .dpy_name = "vnc",
  2654. .dpy_refresh = vnc_refresh,
  2655. .dpy_gfx_update = vnc_dpy_update,
  2656. .dpy_gfx_switch = vnc_dpy_switch,
  2657. .dpy_gfx_check_format = qemu_pixman_check_format,
  2658. .dpy_mouse_set = vnc_mouse_set,
  2659. .dpy_cursor_define = vnc_dpy_cursor_define,
  2660. };
  2661. void vnc_display_init(const char *id)
  2662. {
  2663. VncDisplay *vd;
  2664. if (vnc_display_find(id) != NULL) {
  2665. return;
  2666. }
  2667. vd = g_malloc0(sizeof(*vd));
  2668. vd->id = strdup(id);
  2669. QTAILQ_INSERT_TAIL(&vnc_displays, vd, next);
  2670. QTAILQ_INIT(&vd->clients);
  2671. vd->expires = TIME_MAX;
  2672. if (keyboard_layout) {
  2673. trace_vnc_key_map_init(keyboard_layout);
  2674. vd->kbd_layout = init_keyboard_layout(name2keysym, keyboard_layout);
  2675. } else {
  2676. vd->kbd_layout = init_keyboard_layout(name2keysym, "en-us");
  2677. }
  2678. if (!vd->kbd_layout) {
  2679. exit(1);
  2680. }
  2681. vd->share_policy = VNC_SHARE_POLICY_ALLOW_EXCLUSIVE;
  2682. vd->connections_limit = 32;
  2683. qemu_mutex_init(&vd->mutex);
  2684. vnc_start_worker_thread();
  2685. vd->dcl.ops = &dcl_ops;
  2686. register_displaychangelistener(&vd->dcl);
  2687. }
  2688. static void vnc_display_close(VncDisplay *vd)
  2689. {
  2690. size_t i;
  2691. if (!vd) {
  2692. return;
  2693. }
  2694. vd->is_unix = false;
  2695. for (i = 0; i < vd->nlsock; i++) {
  2696. if (vd->lsock_tag[i]) {
  2697. g_source_remove(vd->lsock_tag[i]);
  2698. }
  2699. object_unref(OBJECT(vd->lsock[i]));
  2700. }
  2701. g_free(vd->lsock);
  2702. g_free(vd->lsock_tag);
  2703. vd->lsock = NULL;
  2704. vd->lsock_tag = NULL;
  2705. vd->nlsock = 0;
  2706. for (i = 0; i < vd->nlwebsock; i++) {
  2707. if (vd->lwebsock_tag[i]) {
  2708. g_source_remove(vd->lwebsock_tag[i]);
  2709. }
  2710. object_unref(OBJECT(vd->lwebsock[i]));
  2711. }
  2712. g_free(vd->lwebsock);
  2713. g_free(vd->lwebsock_tag);
  2714. vd->lwebsock = NULL;
  2715. vd->lwebsock_tag = NULL;
  2716. vd->nlwebsock = 0;
  2717. vd->auth = VNC_AUTH_INVALID;
  2718. vd->subauth = VNC_AUTH_INVALID;
  2719. if (vd->tlscreds) {
  2720. object_unparent(OBJECT(vd->tlscreds));
  2721. vd->tlscreds = NULL;
  2722. }
  2723. g_free(vd->tlsaclname);
  2724. vd->tlsaclname = NULL;
  2725. if (vd->lock_key_sync) {
  2726. qemu_remove_led_event_handler(vd->led);
  2727. vd->led = NULL;
  2728. }
  2729. }
  2730. int vnc_display_password(const char *id, const char *password)
  2731. {
  2732. VncDisplay *vd = vnc_display_find(id);
  2733. if (!vd) {
  2734. return -EINVAL;
  2735. }
  2736. if (vd->auth == VNC_AUTH_NONE) {
  2737. error_printf_unless_qmp("If you want use passwords please enable "
  2738. "password auth using '-vnc ${dpy},password'.\n");
  2739. return -EINVAL;
  2740. }
  2741. g_free(vd->password);
  2742. vd->password = g_strdup(password);
  2743. return 0;
  2744. }
  2745. int vnc_display_pw_expire(const char *id, time_t expires)
  2746. {
  2747. VncDisplay *vd = vnc_display_find(id);
  2748. if (!vd) {
  2749. return -EINVAL;
  2750. }
  2751. vd->expires = expires;
  2752. return 0;
  2753. }
  2754. static void vnc_display_print_local_addr(VncDisplay *vd)
  2755. {
  2756. SocketAddress *addr;
  2757. Error *err = NULL;
  2758. if (!vd->nlsock) {
  2759. return;
  2760. }
  2761. addr = qio_channel_socket_get_local_address(vd->lsock[0], &err);
  2762. if (!addr) {
  2763. return;
  2764. }
  2765. if (addr->type != SOCKET_ADDRESS_KIND_INET) {
  2766. qapi_free_SocketAddress(addr);
  2767. return;
  2768. }
  2769. error_printf_unless_qmp("VNC server running on %s:%s\n",
  2770. addr->u.inet.data->host,
  2771. addr->u.inet.data->port);
  2772. qapi_free_SocketAddress(addr);
  2773. }
  2774. static QemuOptsList qemu_vnc_opts = {
  2775. .name = "vnc",
  2776. .head = QTAILQ_HEAD_INITIALIZER(qemu_vnc_opts.head),
  2777. .implied_opt_name = "vnc",
  2778. .desc = {
  2779. {
  2780. .name = "vnc",
  2781. .type = QEMU_OPT_STRING,
  2782. },{
  2783. .name = "websocket",
  2784. .type = QEMU_OPT_STRING,
  2785. },{
  2786. .name = "tls-creds",
  2787. .type = QEMU_OPT_STRING,
  2788. },{
  2789. /* Deprecated in favour of tls-creds */
  2790. .name = "x509",
  2791. .type = QEMU_OPT_STRING,
  2792. },{
  2793. .name = "share",
  2794. .type = QEMU_OPT_STRING,
  2795. },{
  2796. .name = "display",
  2797. .type = QEMU_OPT_STRING,
  2798. },{
  2799. .name = "head",
  2800. .type = QEMU_OPT_NUMBER,
  2801. },{
  2802. .name = "connections",
  2803. .type = QEMU_OPT_NUMBER,
  2804. },{
  2805. .name = "to",
  2806. .type = QEMU_OPT_NUMBER,
  2807. },{
  2808. .name = "ipv4",
  2809. .type = QEMU_OPT_BOOL,
  2810. },{
  2811. .name = "ipv6",
  2812. .type = QEMU_OPT_BOOL,
  2813. },{
  2814. .name = "password",
  2815. .type = QEMU_OPT_BOOL,
  2816. },{
  2817. .name = "reverse",
  2818. .type = QEMU_OPT_BOOL,
  2819. },{
  2820. .name = "lock-key-sync",
  2821. .type = QEMU_OPT_BOOL,
  2822. },{
  2823. .name = "key-delay-ms",
  2824. .type = QEMU_OPT_NUMBER,
  2825. },{
  2826. .name = "sasl",
  2827. .type = QEMU_OPT_BOOL,
  2828. },{
  2829. /* Deprecated in favour of tls-creds */
  2830. .name = "tls",
  2831. .type = QEMU_OPT_BOOL,
  2832. },{
  2833. /* Deprecated in favour of tls-creds */
  2834. .name = "x509verify",
  2835. .type = QEMU_OPT_STRING,
  2836. },{
  2837. .name = "acl",
  2838. .type = QEMU_OPT_BOOL,
  2839. },{
  2840. .name = "lossy",
  2841. .type = QEMU_OPT_BOOL,
  2842. },{
  2843. .name = "non-adaptive",
  2844. .type = QEMU_OPT_BOOL,
  2845. },
  2846. { /* end of list */ }
  2847. },
  2848. };
  2849. static int
  2850. vnc_display_setup_auth(int *auth,
  2851. int *subauth,
  2852. QCryptoTLSCreds *tlscreds,
  2853. bool password,
  2854. bool sasl,
  2855. bool websocket,
  2856. Error **errp)
  2857. {
  2858. /*
  2859. * We have a choice of 3 authentication options
  2860. *
  2861. * 1. none
  2862. * 2. vnc
  2863. * 3. sasl
  2864. *
  2865. * The channel can be run in 2 modes
  2866. *
  2867. * 1. clear
  2868. * 2. tls
  2869. *
  2870. * And TLS can use 2 types of credentials
  2871. *
  2872. * 1. anon
  2873. * 2. x509
  2874. *
  2875. * We thus have 9 possible logical combinations
  2876. *
  2877. * 1. clear + none
  2878. * 2. clear + vnc
  2879. * 3. clear + sasl
  2880. * 4. tls + anon + none
  2881. * 5. tls + anon + vnc
  2882. * 6. tls + anon + sasl
  2883. * 7. tls + x509 + none
  2884. * 8. tls + x509 + vnc
  2885. * 9. tls + x509 + sasl
  2886. *
  2887. * These need to be mapped into the VNC auth schemes
  2888. * in an appropriate manner. In regular VNC, all the
  2889. * TLS options get mapped into VNC_AUTH_VENCRYPT
  2890. * sub-auth types.
  2891. *
  2892. * In websockets, the https:// protocol already provides
  2893. * TLS support, so there is no need to make use of the
  2894. * VeNCrypt extension. Furthermore, websockets browser
  2895. * clients could not use VeNCrypt even if they wanted to,
  2896. * as they cannot control when the TLS handshake takes
  2897. * place. Thus there is no option but to rely on https://,
  2898. * meaning combinations 4->6 and 7->9 will be mapped to
  2899. * VNC auth schemes in the same way as combos 1->3.
  2900. *
  2901. * Regardless of fact that we have a different mapping to
  2902. * VNC auth mechs for plain VNC vs websockets VNC, the end
  2903. * result has the same security characteristics.
  2904. */
  2905. if (websocket || !tlscreds) {
  2906. if (password) {
  2907. VNC_DEBUG("Initializing VNC server with password auth\n");
  2908. *auth = VNC_AUTH_VNC;
  2909. } else if (sasl) {
  2910. VNC_DEBUG("Initializing VNC server with SASL auth\n");
  2911. *auth = VNC_AUTH_SASL;
  2912. } else {
  2913. VNC_DEBUG("Initializing VNC server with no auth\n");
  2914. *auth = VNC_AUTH_NONE;
  2915. }
  2916. *subauth = VNC_AUTH_INVALID;
  2917. } else {
  2918. bool is_x509 = object_dynamic_cast(OBJECT(tlscreds),
  2919. TYPE_QCRYPTO_TLS_CREDS_X509) != NULL;
  2920. bool is_anon = object_dynamic_cast(OBJECT(tlscreds),
  2921. TYPE_QCRYPTO_TLS_CREDS_ANON) != NULL;
  2922. if (!is_x509 && !is_anon) {
  2923. error_setg(errp,
  2924. "Unsupported TLS cred type %s",
  2925. object_get_typename(OBJECT(tlscreds)));
  2926. return -1;
  2927. }
  2928. *auth = VNC_AUTH_VENCRYPT;
  2929. if (password) {
  2930. if (is_x509) {
  2931. VNC_DEBUG("Initializing VNC server with x509 password auth\n");
  2932. *subauth = VNC_AUTH_VENCRYPT_X509VNC;
  2933. } else {
  2934. VNC_DEBUG("Initializing VNC server with TLS password auth\n");
  2935. *subauth = VNC_AUTH_VENCRYPT_TLSVNC;
  2936. }
  2937. } else if (sasl) {
  2938. if (is_x509) {
  2939. VNC_DEBUG("Initializing VNC server with x509 SASL auth\n");
  2940. *subauth = VNC_AUTH_VENCRYPT_X509SASL;
  2941. } else {
  2942. VNC_DEBUG("Initializing VNC server with TLS SASL auth\n");
  2943. *subauth = VNC_AUTH_VENCRYPT_TLSSASL;
  2944. }
  2945. } else {
  2946. if (is_x509) {
  2947. VNC_DEBUG("Initializing VNC server with x509 no auth\n");
  2948. *subauth = VNC_AUTH_VENCRYPT_X509NONE;
  2949. } else {
  2950. VNC_DEBUG("Initializing VNC server with TLS no auth\n");
  2951. *subauth = VNC_AUTH_VENCRYPT_TLSNONE;
  2952. }
  2953. }
  2954. }
  2955. return 0;
  2956. }
  2957. /*
  2958. * Handle back compat with old CLI syntax by creating some
  2959. * suitable QCryptoTLSCreds objects
  2960. */
  2961. static QCryptoTLSCreds *
  2962. vnc_display_create_creds(bool x509,
  2963. bool x509verify,
  2964. const char *dir,
  2965. const char *id,
  2966. Error **errp)
  2967. {
  2968. gchar *credsid = g_strdup_printf("tlsvnc%s", id);
  2969. Object *parent = object_get_objects_root();
  2970. Object *creds;
  2971. Error *err = NULL;
  2972. if (x509) {
  2973. creds = object_new_with_props(TYPE_QCRYPTO_TLS_CREDS_X509,
  2974. parent,
  2975. credsid,
  2976. &err,
  2977. "endpoint", "server",
  2978. "dir", dir,
  2979. "verify-peer", x509verify ? "yes" : "no",
  2980. NULL);
  2981. } else {
  2982. creds = object_new_with_props(TYPE_QCRYPTO_TLS_CREDS_ANON,
  2983. parent,
  2984. credsid,
  2985. &err,
  2986. "endpoint", "server",
  2987. NULL);
  2988. }
  2989. g_free(credsid);
  2990. if (err) {
  2991. error_propagate(errp, err);
  2992. return NULL;
  2993. }
  2994. return QCRYPTO_TLS_CREDS(creds);
  2995. }
  2996. static int vnc_display_get_address(const char *addrstr,
  2997. bool websocket,
  2998. bool reverse,
  2999. int displaynum,
  3000. int to,
  3001. bool has_ipv4,
  3002. bool has_ipv6,
  3003. bool ipv4,
  3004. bool ipv6,
  3005. SocketAddress **retaddr,
  3006. Error **errp)
  3007. {
  3008. int ret = -1;
  3009. SocketAddress *addr = NULL;
  3010. addr = g_new0(SocketAddress, 1);
  3011. if (strncmp(addrstr, "unix:", 5) == 0) {
  3012. addr->type = SOCKET_ADDRESS_KIND_UNIX;
  3013. addr->u.q_unix.data = g_new0(UnixSocketAddress, 1);
  3014. addr->u.q_unix.data->path = g_strdup(addrstr + 5);
  3015. if (websocket) {
  3016. error_setg(errp, "UNIX sockets not supported with websock");
  3017. goto cleanup;
  3018. }
  3019. if (to) {
  3020. error_setg(errp, "Port range not support with UNIX socket");
  3021. goto cleanup;
  3022. }
  3023. ret = 0;
  3024. } else {
  3025. const char *port;
  3026. size_t hostlen;
  3027. unsigned long long baseport = 0;
  3028. InetSocketAddress *inet;
  3029. port = strrchr(addrstr, ':');
  3030. if (!port) {
  3031. if (websocket) {
  3032. hostlen = 0;
  3033. port = addrstr;
  3034. } else {
  3035. error_setg(errp, "no vnc port specified");
  3036. goto cleanup;
  3037. }
  3038. } else {
  3039. hostlen = port - addrstr;
  3040. port++;
  3041. if (*port == '\0') {
  3042. error_setg(errp, "vnc port cannot be empty");
  3043. goto cleanup;
  3044. }
  3045. }
  3046. addr->type = SOCKET_ADDRESS_KIND_INET;
  3047. inet = addr->u.inet.data = g_new0(InetSocketAddress, 1);
  3048. if (addrstr[0] == '[' && addrstr[hostlen - 1] == ']') {
  3049. inet->host = g_strndup(addrstr + 1, hostlen - 2);
  3050. } else {
  3051. inet->host = g_strndup(addrstr, hostlen);
  3052. }
  3053. /* plain VNC port is just an offset, for websocket
  3054. * port is absolute */
  3055. if (websocket) {
  3056. if (g_str_equal(addrstr, "") ||
  3057. g_str_equal(addrstr, "on")) {
  3058. if (displaynum == -1) {
  3059. error_setg(errp, "explicit websocket port is required");
  3060. goto cleanup;
  3061. }
  3062. inet->port = g_strdup_printf(
  3063. "%d", displaynum + 5700);
  3064. if (to) {
  3065. inet->has_to = true;
  3066. inet->to = to + 5700;
  3067. }
  3068. } else {
  3069. inet->port = g_strdup(port);
  3070. }
  3071. } else {
  3072. int offset = reverse ? 0 : 5900;
  3073. if (parse_uint_full(port, &baseport, 10) < 0) {
  3074. error_setg(errp, "can't convert to a number: %s", port);
  3075. goto cleanup;
  3076. }
  3077. if (baseport > 65535 ||
  3078. baseport + offset > 65535) {
  3079. error_setg(errp, "port %s out of range", port);
  3080. goto cleanup;
  3081. }
  3082. inet->port = g_strdup_printf(
  3083. "%d", (int)baseport + offset);
  3084. if (to) {
  3085. inet->has_to = true;
  3086. inet->to = to + offset;
  3087. }
  3088. }
  3089. inet->ipv4 = ipv4;
  3090. inet->has_ipv4 = has_ipv4;
  3091. inet->ipv6 = ipv6;
  3092. inet->has_ipv6 = has_ipv6;
  3093. ret = baseport;
  3094. }
  3095. *retaddr = addr;
  3096. cleanup:
  3097. if (ret < 0) {
  3098. qapi_free_SocketAddress(addr);
  3099. }
  3100. return ret;
  3101. }
  3102. static int vnc_display_get_addresses(QemuOpts *opts,
  3103. bool reverse,
  3104. SocketAddress ***retsaddr,
  3105. size_t *retnsaddr,
  3106. SocketAddress ***retwsaddr,
  3107. size_t *retnwsaddr,
  3108. Error **errp)
  3109. {
  3110. SocketAddress *saddr = NULL;
  3111. SocketAddress *wsaddr = NULL;
  3112. QemuOptsIter addriter;
  3113. const char *addr;
  3114. int to = qemu_opt_get_number(opts, "to", 0);
  3115. bool has_ipv4 = qemu_opt_get(opts, "ipv4");
  3116. bool has_ipv6 = qemu_opt_get(opts, "ipv6");
  3117. bool ipv4 = qemu_opt_get_bool(opts, "ipv4", false);
  3118. bool ipv6 = qemu_opt_get_bool(opts, "ipv6", false);
  3119. size_t i;
  3120. int displaynum = -1;
  3121. int ret = -1;
  3122. *retsaddr = NULL;
  3123. *retnsaddr = 0;
  3124. *retwsaddr = NULL;
  3125. *retnwsaddr = 0;
  3126. addr = qemu_opt_get(opts, "vnc");
  3127. if (addr == NULL || g_str_equal(addr, "none")) {
  3128. ret = 0;
  3129. goto cleanup;
  3130. }
  3131. if (qemu_opt_get(opts, "websocket") &&
  3132. !qcrypto_hash_supports(QCRYPTO_HASH_ALG_SHA1)) {
  3133. error_setg(errp,
  3134. "SHA1 hash support is required for websockets");
  3135. goto cleanup;
  3136. }
  3137. qemu_opt_iter_init(&addriter, opts, "vnc");
  3138. while ((addr = qemu_opt_iter_next(&addriter)) != NULL) {
  3139. int rv;
  3140. rv = vnc_display_get_address(addr, false, reverse, 0, to,
  3141. has_ipv4, has_ipv6,
  3142. ipv4, ipv6,
  3143. &saddr, errp);
  3144. if (rv < 0) {
  3145. goto cleanup;
  3146. }
  3147. /* Historical compat - first listen address can be used
  3148. * to set the default websocket port
  3149. */
  3150. if (displaynum == -1) {
  3151. displaynum = rv;
  3152. }
  3153. *retsaddr = g_renew(SocketAddress *, *retsaddr, *retnsaddr + 1);
  3154. (*retsaddr)[(*retnsaddr)++] = saddr;
  3155. }
  3156. /* If we had multiple primary displays, we don't do defaults
  3157. * for websocket, and require explicit config instead. */
  3158. if (*retnsaddr > 1) {
  3159. displaynum = -1;
  3160. }
  3161. qemu_opt_iter_init(&addriter, opts, "websocket");
  3162. while ((addr = qemu_opt_iter_next(&addriter)) != NULL) {
  3163. if (vnc_display_get_address(addr, true, reverse, displaynum, to,
  3164. has_ipv4, has_ipv6,
  3165. ipv4, ipv6,
  3166. &wsaddr, errp) < 0) {
  3167. goto cleanup;
  3168. }
  3169. /* Historical compat - if only a single listen address was
  3170. * provided, then this is used to set the default listen
  3171. * address for websocket too
  3172. */
  3173. if (*retnsaddr == 1 &&
  3174. (*retsaddr)[0]->type == SOCKET_ADDRESS_KIND_INET &&
  3175. wsaddr->type == SOCKET_ADDRESS_KIND_INET &&
  3176. g_str_equal(wsaddr->u.inet.data->host, "") &&
  3177. !g_str_equal((*retsaddr)[0]->u.inet.data->host, "")) {
  3178. g_free(wsaddr->u.inet.data->host);
  3179. wsaddr->u.inet.data->host =
  3180. g_strdup((*retsaddr)[0]->u.inet.data->host);
  3181. }
  3182. *retwsaddr = g_renew(SocketAddress *, *retwsaddr, *retnwsaddr + 1);
  3183. (*retwsaddr)[(*retnwsaddr)++] = wsaddr;
  3184. }
  3185. ret = 0;
  3186. cleanup:
  3187. if (ret < 0) {
  3188. for (i = 0; i < *retnsaddr; i++) {
  3189. qapi_free_SocketAddress((*retsaddr)[i]);
  3190. }
  3191. g_free(*retsaddr);
  3192. for (i = 0; i < *retnwsaddr; i++) {
  3193. qapi_free_SocketAddress((*retwsaddr)[i]);
  3194. }
  3195. g_free(*retwsaddr);
  3196. *retsaddr = *retwsaddr = NULL;
  3197. *retnsaddr = *retnwsaddr = 0;
  3198. }
  3199. return ret;
  3200. }
  3201. static int vnc_display_connect(VncDisplay *vd,
  3202. SocketAddress **saddr,
  3203. size_t nsaddr,
  3204. SocketAddress **wsaddr,
  3205. size_t nwsaddr,
  3206. Error **errp)
  3207. {
  3208. /* connect to viewer */
  3209. QIOChannelSocket *sioc = NULL;
  3210. if (nwsaddr != 0) {
  3211. error_setg(errp, "Cannot use websockets in reverse mode");
  3212. return -1;
  3213. }
  3214. if (nsaddr != 1) {
  3215. error_setg(errp, "Expected a single address in reverse mode");
  3216. return -1;
  3217. }
  3218. /* TODO SOCKET_ADDRESS_KIND_FD when fd has AF_UNIX */
  3219. vd->is_unix = saddr[0]->type == SOCKET_ADDRESS_KIND_UNIX;
  3220. sioc = qio_channel_socket_new();
  3221. qio_channel_set_name(QIO_CHANNEL(sioc), "vnc-reverse");
  3222. if (qio_channel_socket_connect_sync(sioc, saddr[0], errp) < 0) {
  3223. return -1;
  3224. }
  3225. vnc_connect(vd, sioc, false, false);
  3226. object_unref(OBJECT(sioc));
  3227. return 0;
  3228. }
  3229. static int vnc_display_listen_addr(VncDisplay *vd,
  3230. SocketAddress *addr,
  3231. const char *name,
  3232. QIOChannelSocket ***lsock,
  3233. guint **lsock_tag,
  3234. size_t *nlsock,
  3235. Error **errp)
  3236. {
  3237. QIODNSResolver *resolver = qio_dns_resolver_get_instance();
  3238. SocketAddress **rawaddrs = NULL;
  3239. size_t nrawaddrs = 0;
  3240. Error *listenerr = NULL;
  3241. bool listening = false;
  3242. size_t i;
  3243. if (qio_dns_resolver_lookup_sync(resolver, addr, &nrawaddrs,
  3244. &rawaddrs, errp) < 0) {
  3245. return -1;
  3246. }
  3247. for (i = 0; i < nrawaddrs; i++) {
  3248. QIOChannelSocket *sioc = qio_channel_socket_new();
  3249. qio_channel_set_name(QIO_CHANNEL(sioc), name);
  3250. if (qio_channel_socket_listen_sync(
  3251. sioc, rawaddrs[i], listenerr == NULL ? &listenerr : NULL) < 0) {
  3252. object_unref(OBJECT(sioc));
  3253. continue;
  3254. }
  3255. listening = true;
  3256. (*nlsock)++;
  3257. *lsock = g_renew(QIOChannelSocket *, *lsock, *nlsock);
  3258. *lsock_tag = g_renew(guint, *lsock_tag, *nlsock);
  3259. (*lsock)[*nlsock - 1] = sioc;
  3260. (*lsock_tag)[*nlsock - 1] = 0;
  3261. }
  3262. for (i = 0; i < nrawaddrs; i++) {
  3263. qapi_free_SocketAddress(rawaddrs[i]);
  3264. }
  3265. g_free(rawaddrs);
  3266. if (listenerr) {
  3267. if (!listening) {
  3268. error_propagate(errp, listenerr);
  3269. return -1;
  3270. } else {
  3271. error_free(listenerr);
  3272. }
  3273. }
  3274. for (i = 0; i < *nlsock; i++) {
  3275. (*lsock_tag)[i] = qio_channel_add_watch(
  3276. QIO_CHANNEL((*lsock)[i]),
  3277. G_IO_IN, vnc_listen_io, vd, NULL);
  3278. }
  3279. return 0;
  3280. }
  3281. static int vnc_display_listen(VncDisplay *vd,
  3282. SocketAddress **saddr,
  3283. size_t nsaddr,
  3284. SocketAddress **wsaddr,
  3285. size_t nwsaddr,
  3286. Error **errp)
  3287. {
  3288. size_t i;
  3289. for (i = 0; i < nsaddr; i++) {
  3290. if (vnc_display_listen_addr(vd, saddr[i],
  3291. "vnc-listen",
  3292. &vd->lsock,
  3293. &vd->lsock_tag,
  3294. &vd->nlsock,
  3295. errp) < 0) {
  3296. return -1;
  3297. }
  3298. }
  3299. for (i = 0; i < nwsaddr; i++) {
  3300. if (vnc_display_listen_addr(vd, wsaddr[i],
  3301. "vnc-ws-listen",
  3302. &vd->lwebsock,
  3303. &vd->lwebsock_tag,
  3304. &vd->nlwebsock,
  3305. errp) < 0) {
  3306. return -1;
  3307. }
  3308. }
  3309. return 0;
  3310. }
  3311. void vnc_display_open(const char *id, Error **errp)
  3312. {
  3313. VncDisplay *vd = vnc_display_find(id);
  3314. QemuOpts *opts = qemu_opts_find(&qemu_vnc_opts, id);
  3315. SocketAddress **saddr = NULL, **wsaddr = NULL;
  3316. size_t nsaddr, nwsaddr;
  3317. const char *share, *device_id;
  3318. QemuConsole *con;
  3319. bool password = false;
  3320. bool reverse = false;
  3321. const char *credid;
  3322. bool sasl = false;
  3323. #ifdef CONFIG_VNC_SASL
  3324. int saslErr;
  3325. #endif
  3326. int acl = 0;
  3327. int lock_key_sync = 1;
  3328. int key_delay_ms;
  3329. size_t i;
  3330. if (!vd) {
  3331. error_setg(errp, "VNC display not active");
  3332. return;
  3333. }
  3334. vnc_display_close(vd);
  3335. if (!opts) {
  3336. return;
  3337. }
  3338. reverse = qemu_opt_get_bool(opts, "reverse", false);
  3339. if (vnc_display_get_addresses(opts, reverse, &saddr, &nsaddr,
  3340. &wsaddr, &nwsaddr, errp) < 0) {
  3341. goto fail;
  3342. }
  3343. password = qemu_opt_get_bool(opts, "password", false);
  3344. if (password) {
  3345. if (fips_get_state()) {
  3346. error_setg(errp,
  3347. "VNC password auth disabled due to FIPS mode, "
  3348. "consider using the VeNCrypt or SASL authentication "
  3349. "methods as an alternative");
  3350. goto fail;
  3351. }
  3352. if (!qcrypto_cipher_supports(
  3353. QCRYPTO_CIPHER_ALG_DES_RFB, QCRYPTO_CIPHER_MODE_ECB)) {
  3354. error_setg(errp,
  3355. "Cipher backend does not support DES RFB algorithm");
  3356. goto fail;
  3357. }
  3358. }
  3359. lock_key_sync = qemu_opt_get_bool(opts, "lock-key-sync", true);
  3360. key_delay_ms = qemu_opt_get_number(opts, "key-delay-ms", 10);
  3361. sasl = qemu_opt_get_bool(opts, "sasl", false);
  3362. #ifndef CONFIG_VNC_SASL
  3363. if (sasl) {
  3364. error_setg(errp, "VNC SASL auth requires cyrus-sasl support");
  3365. goto fail;
  3366. }
  3367. #endif /* CONFIG_VNC_SASL */
  3368. credid = qemu_opt_get(opts, "tls-creds");
  3369. if (credid) {
  3370. Object *creds;
  3371. if (qemu_opt_get(opts, "tls") ||
  3372. qemu_opt_get(opts, "x509") ||
  3373. qemu_opt_get(opts, "x509verify")) {
  3374. error_setg(errp,
  3375. "'tls-creds' parameter is mutually exclusive with "
  3376. "'tls', 'x509' and 'x509verify' parameters");
  3377. goto fail;
  3378. }
  3379. creds = object_resolve_path_component(
  3380. object_get_objects_root(), credid);
  3381. if (!creds) {
  3382. error_setg(errp, "No TLS credentials with id '%s'",
  3383. credid);
  3384. goto fail;
  3385. }
  3386. vd->tlscreds = (QCryptoTLSCreds *)
  3387. object_dynamic_cast(creds,
  3388. TYPE_QCRYPTO_TLS_CREDS);
  3389. if (!vd->tlscreds) {
  3390. error_setg(errp, "Object with id '%s' is not TLS credentials",
  3391. credid);
  3392. goto fail;
  3393. }
  3394. object_ref(OBJECT(vd->tlscreds));
  3395. if (vd->tlscreds->endpoint != QCRYPTO_TLS_CREDS_ENDPOINT_SERVER) {
  3396. error_setg(errp,
  3397. "Expecting TLS credentials with a server endpoint");
  3398. goto fail;
  3399. }
  3400. } else {
  3401. const char *path;
  3402. bool tls = false, x509 = false, x509verify = false;
  3403. tls = qemu_opt_get_bool(opts, "tls", false);
  3404. if (tls) {
  3405. path = qemu_opt_get(opts, "x509");
  3406. if (path) {
  3407. x509 = true;
  3408. } else {
  3409. path = qemu_opt_get(opts, "x509verify");
  3410. if (path) {
  3411. x509 = true;
  3412. x509verify = true;
  3413. }
  3414. }
  3415. vd->tlscreds = vnc_display_create_creds(x509,
  3416. x509verify,
  3417. path,
  3418. vd->id,
  3419. errp);
  3420. if (!vd->tlscreds) {
  3421. goto fail;
  3422. }
  3423. }
  3424. }
  3425. acl = qemu_opt_get_bool(opts, "acl", false);
  3426. share = qemu_opt_get(opts, "share");
  3427. if (share) {
  3428. if (strcmp(share, "ignore") == 0) {
  3429. vd->share_policy = VNC_SHARE_POLICY_IGNORE;
  3430. } else if (strcmp(share, "allow-exclusive") == 0) {
  3431. vd->share_policy = VNC_SHARE_POLICY_ALLOW_EXCLUSIVE;
  3432. } else if (strcmp(share, "force-shared") == 0) {
  3433. vd->share_policy = VNC_SHARE_POLICY_FORCE_SHARED;
  3434. } else {
  3435. error_setg(errp, "unknown vnc share= option");
  3436. goto fail;
  3437. }
  3438. } else {
  3439. vd->share_policy = VNC_SHARE_POLICY_ALLOW_EXCLUSIVE;
  3440. }
  3441. vd->connections_limit = qemu_opt_get_number(opts, "connections", 32);
  3442. #ifdef CONFIG_VNC_JPEG
  3443. vd->lossy = qemu_opt_get_bool(opts, "lossy", false);
  3444. #endif
  3445. vd->non_adaptive = qemu_opt_get_bool(opts, "non-adaptive", false);
  3446. /* adaptive updates are only used with tight encoding and
  3447. * if lossy updates are enabled so we can disable all the
  3448. * calculations otherwise */
  3449. if (!vd->lossy) {
  3450. vd->non_adaptive = true;
  3451. }
  3452. if (acl) {
  3453. if (strcmp(vd->id, "default") == 0) {
  3454. vd->tlsaclname = g_strdup("vnc.x509dname");
  3455. } else {
  3456. vd->tlsaclname = g_strdup_printf("vnc.%s.x509dname", vd->id);
  3457. }
  3458. qemu_acl_init(vd->tlsaclname);
  3459. }
  3460. #ifdef CONFIG_VNC_SASL
  3461. if (acl && sasl) {
  3462. char *aclname;
  3463. if (strcmp(vd->id, "default") == 0) {
  3464. aclname = g_strdup("vnc.username");
  3465. } else {
  3466. aclname = g_strdup_printf("vnc.%s.username", vd->id);
  3467. }
  3468. vd->sasl.acl = qemu_acl_init(aclname);
  3469. g_free(aclname);
  3470. }
  3471. #endif
  3472. if (vnc_display_setup_auth(&vd->auth, &vd->subauth,
  3473. vd->tlscreds, password,
  3474. sasl, false, errp) < 0) {
  3475. goto fail;
  3476. }
  3477. if (vnc_display_setup_auth(&vd->ws_auth, &vd->ws_subauth,
  3478. vd->tlscreds, password,
  3479. sasl, true, errp) < 0) {
  3480. goto fail;
  3481. }
  3482. #ifdef CONFIG_VNC_SASL
  3483. if ((saslErr = sasl_server_init(NULL, "qemu")) != SASL_OK) {
  3484. error_setg(errp, "Failed to initialize SASL auth: %s",
  3485. sasl_errstring(saslErr, NULL, NULL));
  3486. goto fail;
  3487. }
  3488. #endif
  3489. vd->lock_key_sync = lock_key_sync;
  3490. if (lock_key_sync) {
  3491. vd->led = qemu_add_led_event_handler(kbd_leds, vd);
  3492. }
  3493. vd->ledstate = 0;
  3494. vd->key_delay_ms = key_delay_ms;
  3495. device_id = qemu_opt_get(opts, "display");
  3496. if (device_id) {
  3497. int head = qemu_opt_get_number(opts, "head", 0);
  3498. Error *err = NULL;
  3499. con = qemu_console_lookup_by_device_name(device_id, head, &err);
  3500. if (err) {
  3501. error_propagate(errp, err);
  3502. goto fail;
  3503. }
  3504. } else {
  3505. con = NULL;
  3506. }
  3507. if (con != vd->dcl.con) {
  3508. unregister_displaychangelistener(&vd->dcl);
  3509. vd->dcl.con = con;
  3510. register_displaychangelistener(&vd->dcl);
  3511. }
  3512. if (saddr == NULL) {
  3513. goto cleanup;
  3514. }
  3515. if (reverse) {
  3516. if (vnc_display_connect(vd, saddr, nsaddr, wsaddr, nwsaddr, errp) < 0) {
  3517. goto fail;
  3518. }
  3519. } else {
  3520. if (vnc_display_listen(vd, saddr, nsaddr, wsaddr, nwsaddr, errp) < 0) {
  3521. goto fail;
  3522. }
  3523. }
  3524. if (qemu_opt_get(opts, "to")) {
  3525. vnc_display_print_local_addr(vd);
  3526. }
  3527. cleanup:
  3528. for (i = 0; i < nsaddr; i++) {
  3529. qapi_free_SocketAddress(saddr[i]);
  3530. }
  3531. for (i = 0; i < nwsaddr; i++) {
  3532. qapi_free_SocketAddress(wsaddr[i]);
  3533. }
  3534. return;
  3535. fail:
  3536. vnc_display_close(vd);
  3537. goto cleanup;
  3538. }
  3539. void vnc_display_add_client(const char *id, int csock, bool skipauth)
  3540. {
  3541. VncDisplay *vd = vnc_display_find(id);
  3542. QIOChannelSocket *sioc;
  3543. if (!vd) {
  3544. return;
  3545. }
  3546. sioc = qio_channel_socket_new_fd(csock, NULL);
  3547. if (sioc) {
  3548. qio_channel_set_name(QIO_CHANNEL(sioc), "vnc-server");
  3549. vnc_connect(vd, sioc, skipauth, false);
  3550. object_unref(OBJECT(sioc));
  3551. }
  3552. }
  3553. static void vnc_auto_assign_id(QemuOptsList *olist, QemuOpts *opts)
  3554. {
  3555. int i = 2;
  3556. char *id;
  3557. id = g_strdup("default");
  3558. while (qemu_opts_find(olist, id)) {
  3559. g_free(id);
  3560. id = g_strdup_printf("vnc%d", i++);
  3561. }
  3562. qemu_opts_set_id(opts, id);
  3563. }
  3564. QemuOpts *vnc_parse(const char *str, Error **errp)
  3565. {
  3566. QemuOptsList *olist = qemu_find_opts("vnc");
  3567. QemuOpts *opts = qemu_opts_parse(olist, str, true, errp);
  3568. const char *id;
  3569. if (!opts) {
  3570. return NULL;
  3571. }
  3572. id = qemu_opts_id(opts);
  3573. if (!id) {
  3574. /* auto-assign id if not present */
  3575. vnc_auto_assign_id(olist, opts);
  3576. }
  3577. return opts;
  3578. }
  3579. int vnc_init_func(void *opaque, QemuOpts *opts, Error **errp)
  3580. {
  3581. Error *local_err = NULL;
  3582. char *id = (char *)qemu_opts_id(opts);
  3583. assert(id);
  3584. vnc_display_init(id);
  3585. vnc_display_open(id, &local_err);
  3586. if (local_err != NULL) {
  3587. error_reportf_err(local_err, "Failed to start VNC server: ");
  3588. exit(1);
  3589. }
  3590. return 0;
  3591. }
  3592. static void vnc_register_config(void)
  3593. {
  3594. qemu_add_opts(&qemu_vnc_opts);
  3595. }
  3596. opts_init(vnc_register_config);