wayland_thread.cpp 131 KB

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  1. /**************************************************************************/
  2. /* wayland_thread.cpp */
  3. /**************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /**************************************************************************/
  8. /* Copyright (c) 2014-present Godot Engine contributors (see AUTHORS.md). */
  9. /* Copyright (c) 2007-2014 Juan Linietsky, Ariel Manzur. */
  10. /* */
  11. /* Permission is hereby granted, free of charge, to any person obtaining */
  12. /* a copy of this software and associated documentation files (the */
  13. /* "Software"), to deal in the Software without restriction, including */
  14. /* without limitation the rights to use, copy, modify, merge, publish, */
  15. /* distribute, sublicense, and/or sell copies of the Software, and to */
  16. /* permit persons to whom the Software is furnished to do so, subject to */
  17. /* the following conditions: */
  18. /* */
  19. /* The above copyright notice and this permission notice shall be */
  20. /* included in all copies or substantial portions of the Software. */
  21. /* */
  22. /* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
  23. /* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
  24. /* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. */
  25. /* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
  26. /* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
  27. /* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
  28. /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
  29. /**************************************************************************/
  30. #include "wayland_thread.h"
  31. #ifdef WAYLAND_ENABLED
  32. // FIXME: Does this cause issues with *BSDs?
  33. #include <linux/input-event-codes.h>
  34. // For the actual polling thread.
  35. #include <poll.h>
  36. // For shared memory buffer creation.
  37. #include <fcntl.h>
  38. #include <sys/mman.h>
  39. #include <unistd.h>
  40. // Fix the wl_array_for_each macro to work with C++. This is based on the
  41. // original from `wayland-util.h` in the Wayland client library.
  42. #undef wl_array_for_each
  43. #define wl_array_for_each(pos, array) \
  44. for (pos = (decltype(pos))(array)->data; (const char *)pos < ((const char *)(array)->data + (array)->size); (pos)++)
  45. #define WAYLAND_THREAD_DEBUG_LOGS_ENABLED
  46. #ifdef WAYLAND_THREAD_DEBUG_LOGS_ENABLED
  47. #define DEBUG_LOG_WAYLAND_THREAD(...) print_verbose(__VA_ARGS__)
  48. #else
  49. #define DEBUG_LOG_WAYLAND_THREAD(...)
  50. #endif
  51. // Read the content pointed by fd into a Vector<uint8_t>.
  52. Vector<uint8_t> WaylandThread::_read_fd(int fd) {
  53. // This is pretty much an arbitrary size.
  54. uint32_t chunk_size = 2048;
  55. LocalVector<uint8_t> data;
  56. data.resize(chunk_size);
  57. uint32_t bytes_read = 0;
  58. while (true) {
  59. ssize_t last_bytes_read = read(fd, data.ptr() + bytes_read, chunk_size);
  60. if (last_bytes_read < 0) {
  61. ERR_PRINT(vformat("Read error %d.", errno));
  62. data.clear();
  63. break;
  64. }
  65. if (last_bytes_read == 0) {
  66. // We're done, we've reached the EOF.
  67. DEBUG_LOG_WAYLAND_THREAD(vformat("Done reading %d bytes.", bytes_read));
  68. close(fd);
  69. data.resize(bytes_read);
  70. break;
  71. }
  72. DEBUG_LOG_WAYLAND_THREAD(vformat("Read chunk of %d bytes.", last_bytes_read));
  73. bytes_read += last_bytes_read;
  74. // Increase the buffer size by one chunk in preparation of the next read.
  75. data.resize(bytes_read + chunk_size);
  76. }
  77. return data;
  78. }
  79. // Based on the wayland book's shared memory boilerplate (PD/CC0).
  80. // See: https://wayland-book.com/surfaces/shared-memory.html
  81. int WaylandThread::_allocate_shm_file(size_t size) {
  82. int retries = 100;
  83. do {
  84. // Generate a random name.
  85. char name[] = "/wl_shm-godot-XXXXXX";
  86. for (long unsigned int i = sizeof(name) - 7; i < sizeof(name) - 1; i++) {
  87. name[i] = Math::random('A', 'Z');
  88. }
  89. // Try to open a shared memory object with that name.
  90. int fd = shm_open(name, O_RDWR | O_CREAT | O_EXCL, 0600);
  91. if (fd >= 0) {
  92. // Success, unlink its name as we just need the file descriptor.
  93. shm_unlink(name);
  94. // Resize the file to the requested length.
  95. int ret;
  96. do {
  97. ret = ftruncate(fd, size);
  98. } while (ret < 0 && errno == EINTR);
  99. if (ret < 0) {
  100. close(fd);
  101. return -1;
  102. }
  103. return fd;
  104. }
  105. retries--;
  106. } while (retries > 0 && errno == EEXIST);
  107. return -1;
  108. }
  109. // Return the content of a wl_data_offer.
  110. Vector<uint8_t> WaylandThread::_wl_data_offer_read(struct wl_display *p_display, const char *p_mime, struct wl_data_offer *p_offer) {
  111. if (!p_offer) {
  112. return Vector<uint8_t>();
  113. }
  114. int fds[2];
  115. if (pipe(fds) == 0) {
  116. wl_data_offer_receive(p_offer, p_mime, fds[1]);
  117. // Let the compositor know about the pipe.
  118. // NOTE: It's important to just flush and not roundtrip here as we would risk
  119. // running some cleanup event, like for example `wl_data_device::leave`. We're
  120. // going to wait for the message anyways as the read will probably block if
  121. // the compositor doesn't read from the other end of the pipe.
  122. wl_display_flush(p_display);
  123. // Close the write end of the pipe, which we don't need and would otherwise
  124. // just stall our next `read`s.
  125. close(fds[1]);
  126. return _read_fd(fds[0]);
  127. }
  128. return Vector<uint8_t>();
  129. }
  130. // Read the content of a wp_primary_selection_offer.
  131. Vector<uint8_t> WaylandThread::_wp_primary_selection_offer_read(struct wl_display *p_display, const char *p_mime, struct zwp_primary_selection_offer_v1 *p_offer) {
  132. if (!p_offer) {
  133. return Vector<uint8_t>();
  134. }
  135. int fds[2];
  136. if (pipe(fds) == 0) {
  137. // This function expects to return a string, so we can only ask for a MIME of
  138. // "text/plain"
  139. zwp_primary_selection_offer_v1_receive(p_offer, p_mime, fds[1]);
  140. // Wait for the compositor to know about the pipe.
  141. wl_display_roundtrip(p_display);
  142. // Close the write end of the pipe, which we don't need and would otherwise
  143. // just stall our next `read`s.
  144. close(fds[1]);
  145. return _read_fd(fds[0]);
  146. }
  147. return Vector<uint8_t>();
  148. }
  149. // Sets up an `InputEventKey` and returns whether it has any meaningful value.
  150. bool WaylandThread::_seat_state_configure_key_event(SeatState &p_ss, Ref<InputEventKey> p_event, xkb_keycode_t p_keycode, bool p_pressed) {
  151. // TODO: Handle keys that release multiple symbols?
  152. Key keycode = KeyMappingXKB::get_keycode(xkb_state_key_get_one_sym(p_ss.xkb_state, p_keycode));
  153. Key physical_keycode = KeyMappingXKB::get_scancode(p_keycode);
  154. KeyLocation key_location = KeyMappingXKB::get_location(p_keycode);
  155. if (physical_keycode == Key::NONE) {
  156. return false;
  157. }
  158. if (keycode == Key::NONE) {
  159. keycode = physical_keycode;
  160. }
  161. if (keycode >= Key::A + 32 && keycode <= Key::Z + 32) {
  162. keycode -= 'a' - 'A';
  163. }
  164. p_event->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  165. // Set all pressed modifiers.
  166. p_event->set_shift_pressed(p_ss.shift_pressed);
  167. p_event->set_ctrl_pressed(p_ss.ctrl_pressed);
  168. p_event->set_alt_pressed(p_ss.alt_pressed);
  169. p_event->set_meta_pressed(p_ss.meta_pressed);
  170. p_event->set_pressed(p_pressed);
  171. p_event->set_keycode(keycode);
  172. p_event->set_physical_keycode(physical_keycode);
  173. p_event->set_location(key_location);
  174. uint32_t unicode = xkb_state_key_get_utf32(p_ss.xkb_state, p_keycode);
  175. if (unicode != 0) {
  176. p_event->set_key_label(fix_key_label(unicode, keycode));
  177. } else {
  178. p_event->set_key_label(keycode);
  179. }
  180. if (p_pressed) {
  181. p_event->set_unicode(fix_unicode(unicode));
  182. }
  183. // Taken from DisplayServerX11.
  184. if (p_event->get_keycode() == Key::BACKTAB) {
  185. // Make it consistent across platforms.
  186. p_event->set_keycode(Key::TAB);
  187. p_event->set_physical_keycode(Key::TAB);
  188. p_event->set_shift_pressed(true);
  189. }
  190. return true;
  191. }
  192. void WaylandThread::_set_current_seat(struct wl_seat *p_seat) {
  193. if (p_seat == wl_seat_current) {
  194. return;
  195. }
  196. SeatState *old_state = wl_seat_get_seat_state(wl_seat_current);
  197. if (old_state) {
  198. seat_state_unlock_pointer(old_state);
  199. }
  200. SeatState *new_state = wl_seat_get_seat_state(p_seat);
  201. seat_state_unlock_pointer(new_state);
  202. wl_seat_current = p_seat;
  203. pointer_set_constraint(pointer_constraint);
  204. }
  205. // Returns whether it loaded the theme or not.
  206. bool WaylandThread::_load_cursor_theme(int p_cursor_size) {
  207. if (wl_cursor_theme) {
  208. wl_cursor_theme_destroy(wl_cursor_theme);
  209. wl_cursor_theme = nullptr;
  210. current_wl_cursor = nullptr;
  211. }
  212. if (cursor_theme_name.is_empty()) {
  213. cursor_theme_name = "default";
  214. }
  215. print_verbose(vformat("Loading cursor theme \"%s\" size %d.", cursor_theme_name, p_cursor_size));
  216. wl_cursor_theme = wl_cursor_theme_load(cursor_theme_name.utf8().get_data(), p_cursor_size, registry.wl_shm);
  217. ERR_FAIL_NULL_V_MSG(wl_cursor_theme, false, "Can't load any cursor theme.");
  218. static const char *cursor_names[] = {
  219. "left_ptr",
  220. "xterm",
  221. "hand2",
  222. "cross",
  223. "watch",
  224. "left_ptr_watch",
  225. "fleur",
  226. "dnd-move",
  227. "crossed_circle",
  228. "v_double_arrow",
  229. "h_double_arrow",
  230. "size_bdiag",
  231. "size_fdiag",
  232. "move",
  233. "row_resize",
  234. "col_resize",
  235. "question_arrow"
  236. };
  237. static const char *cursor_names_fallback[] = {
  238. nullptr,
  239. nullptr,
  240. "pointer",
  241. "cross",
  242. "wait",
  243. "progress",
  244. "grabbing",
  245. "hand1",
  246. "forbidden",
  247. "ns-resize",
  248. "ew-resize",
  249. "fd_double_arrow",
  250. "bd_double_arrow",
  251. "fleur",
  252. "sb_v_double_arrow",
  253. "sb_h_double_arrow",
  254. "help"
  255. };
  256. for (int i = 0; i < DisplayServer::CURSOR_MAX; i++) {
  257. struct wl_cursor *cursor = wl_cursor_theme_get_cursor(wl_cursor_theme, cursor_names[i]);
  258. if (!cursor && cursor_names_fallback[i]) {
  259. cursor = wl_cursor_theme_get_cursor(wl_cursor_theme, cursor_names_fallback[i]);
  260. }
  261. if (cursor && cursor->image_count > 0) {
  262. wl_cursors[i] = cursor;
  263. } else {
  264. wl_cursors[i] = nullptr;
  265. print_verbose("Failed loading cursor: " + String(cursor_names[i]));
  266. }
  267. }
  268. return true;
  269. }
  270. void WaylandThread::_update_scale(int p_scale) {
  271. if (p_scale <= cursor_scale) {
  272. return;
  273. }
  274. print_verbose(vformat("Bumping cursor scale to %d", p_scale));
  275. // There's some display that's bigger than the cache, let's update it.
  276. cursor_scale = p_scale;
  277. if (wl_cursor_theme == nullptr) {
  278. // Ugh. Either we're still initializing (this must've been called from the
  279. // first roundtrips) or we had some error while doing so. We'll trust that it
  280. // will be updated for us if needed.
  281. return;
  282. }
  283. int cursor_size = unscaled_cursor_size * p_scale;
  284. if (_load_cursor_theme(cursor_size)) {
  285. cursor_set_shape(last_cursor_shape);
  286. }
  287. }
  288. void WaylandThread::_wl_registry_on_global(void *data, struct wl_registry *wl_registry, uint32_t name, const char *interface, uint32_t version) {
  289. RegistryState *registry = (RegistryState *)data;
  290. ERR_FAIL_NULL(registry);
  291. if (strcmp(interface, wl_shm_interface.name) == 0) {
  292. registry->wl_shm = (struct wl_shm *)wl_registry_bind(wl_registry, name, &wl_shm_interface, 1);
  293. registry->wl_shm_name = name;
  294. return;
  295. }
  296. if (strcmp(interface, zxdg_exporter_v1_interface.name) == 0) {
  297. registry->wl_exporter = (struct zxdg_exporter_v1 *)wl_registry_bind(wl_registry, name, &zxdg_exporter_v1_interface, 1);
  298. registry->wl_exporter_name = name;
  299. return;
  300. }
  301. if (strcmp(interface, wl_compositor_interface.name) == 0) {
  302. registry->wl_compositor = (struct wl_compositor *)wl_registry_bind(wl_registry, name, &wl_compositor_interface, 4);
  303. registry->wl_compositor_name = name;
  304. return;
  305. }
  306. if (strcmp(interface, wl_subcompositor_interface.name) == 0) {
  307. registry->wl_subcompositor = (struct wl_subcompositor *)wl_registry_bind(wl_registry, name, &wl_subcompositor_interface, 1);
  308. registry->wl_subcompositor_name = name;
  309. return;
  310. }
  311. if (strcmp(interface, wl_data_device_manager_interface.name) == 0) {
  312. registry->wl_data_device_manager = (struct wl_data_device_manager *)wl_registry_bind(wl_registry, name, &wl_data_device_manager_interface, 3);
  313. registry->wl_data_device_manager_name = name;
  314. // This global creates some seats data. Let's do that for the ones already available.
  315. for (struct wl_seat *wl_seat : registry->wl_seats) {
  316. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  317. ERR_FAIL_NULL(ss);
  318. if (ss->wl_data_device == nullptr) {
  319. ss->wl_data_device = wl_data_device_manager_get_data_device(registry->wl_data_device_manager, wl_seat);
  320. wl_data_device_add_listener(ss->wl_data_device, &wl_data_device_listener, ss);
  321. }
  322. }
  323. return;
  324. }
  325. if (strcmp(interface, wl_output_interface.name) == 0) {
  326. struct wl_output *wl_output = (struct wl_output *)wl_registry_bind(wl_registry, name, &wl_output_interface, 2);
  327. wl_proxy_tag_godot((struct wl_proxy *)wl_output);
  328. registry->wl_outputs.push_back(wl_output);
  329. ScreenState *ss = memnew(ScreenState);
  330. ss->wl_output_name = name;
  331. ss->wayland_thread = registry->wayland_thread;
  332. wl_proxy_tag_godot((struct wl_proxy *)wl_output);
  333. wl_output_add_listener(wl_output, &wl_output_listener, ss);
  334. return;
  335. }
  336. if (strcmp(interface, wl_seat_interface.name) == 0) {
  337. struct wl_seat *wl_seat = (struct wl_seat *)wl_registry_bind(wl_registry, name, &wl_seat_interface, 5);
  338. wl_proxy_tag_godot((struct wl_proxy *)wl_seat);
  339. SeatState *ss = memnew(SeatState);
  340. ss->wl_seat = wl_seat;
  341. ss->wl_seat_name = name;
  342. ss->registry = registry;
  343. ss->wayland_thread = registry->wayland_thread;
  344. // Some extra stuff depends on other globals. We'll initialize them if the
  345. // globals are already there, otherwise we'll have to do that once and if they
  346. // get announced.
  347. //
  348. // NOTE: Don't forget to also bind/destroy with the respective global.
  349. if (!ss->wl_data_device && registry->wl_data_device_manager) {
  350. // Clipboard & DnD.
  351. ss->wl_data_device = wl_data_device_manager_get_data_device(registry->wl_data_device_manager, wl_seat);
  352. wl_data_device_add_listener(ss->wl_data_device, &wl_data_device_listener, ss);
  353. }
  354. if (!ss->wp_primary_selection_device && registry->wp_primary_selection_device_manager) {
  355. // Primary selection.
  356. ss->wp_primary_selection_device = zwp_primary_selection_device_manager_v1_get_device(registry->wp_primary_selection_device_manager, wl_seat);
  357. zwp_primary_selection_device_v1_add_listener(ss->wp_primary_selection_device, &wp_primary_selection_device_listener, ss);
  358. }
  359. #if 0
  360. // FIXME: Broken.
  361. if (!ss->wp_tablet_seat && registry->wp_tablet_manager) {
  362. // Tablet.
  363. ss->wp_tablet_seat = zwp_tablet_manager_v2_get_tablet_seat(registry->wp_tablet_manager, wl_seat);
  364. zwp_tablet_seat_v2_add_listener(ss->wp_tablet_seat, &wp_tablet_seat_listener, ss);
  365. }
  366. #endif
  367. registry->wl_seats.push_back(wl_seat);
  368. wl_seat_add_listener(wl_seat, &wl_seat_listener, ss);
  369. if (registry->wayland_thread->wl_seat_current == nullptr) {
  370. registry->wayland_thread->_set_current_seat(wl_seat);
  371. }
  372. return;
  373. }
  374. if (strcmp(interface, xdg_wm_base_interface.name) == 0) {
  375. registry->xdg_wm_base = (struct xdg_wm_base *)wl_registry_bind(wl_registry, name, &xdg_wm_base_interface, MAX(2, MIN(6, (int)version)));
  376. registry->xdg_wm_base_name = name;
  377. xdg_wm_base_add_listener(registry->xdg_wm_base, &xdg_wm_base_listener, nullptr);
  378. return;
  379. }
  380. if (strcmp(interface, wp_viewporter_interface.name) == 0) {
  381. registry->wp_viewporter = (struct wp_viewporter *)wl_registry_bind(wl_registry, name, &wp_viewporter_interface, 1);
  382. registry->wp_viewporter_name = name;
  383. }
  384. if (strcmp(interface, wp_fractional_scale_manager_v1_interface.name) == 0) {
  385. registry->wp_fractional_scale_manager = (struct wp_fractional_scale_manager_v1 *)wl_registry_bind(wl_registry, name, &wp_fractional_scale_manager_v1_interface, 1);
  386. registry->wp_fractional_scale_manager_name = name;
  387. // NOTE: We're not mapping the fractional scale object here because this is
  388. // supposed to be a "startup global". If for some reason this isn't true (who
  389. // knows), add a conditional branch for creating the add-on object.
  390. }
  391. if (strcmp(interface, zxdg_decoration_manager_v1_interface.name) == 0) {
  392. registry->xdg_decoration_manager = (struct zxdg_decoration_manager_v1 *)wl_registry_bind(wl_registry, name, &zxdg_decoration_manager_v1_interface, 1);
  393. registry->xdg_decoration_manager_name = name;
  394. return;
  395. }
  396. if (strcmp(interface, xdg_activation_v1_interface.name) == 0) {
  397. registry->xdg_activation = (struct xdg_activation_v1 *)wl_registry_bind(wl_registry, name, &xdg_activation_v1_interface, 1);
  398. registry->xdg_activation_name = name;
  399. return;
  400. }
  401. if (strcmp(interface, zwp_primary_selection_device_manager_v1_interface.name) == 0) {
  402. registry->wp_primary_selection_device_manager = (struct zwp_primary_selection_device_manager_v1 *)wl_registry_bind(wl_registry, name, &zwp_primary_selection_device_manager_v1_interface, 1);
  403. // This global creates some seats data. Let's do that for the ones already available.
  404. for (struct wl_seat *wl_seat : registry->wl_seats) {
  405. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  406. ERR_FAIL_NULL(ss);
  407. if (!ss->wp_primary_selection_device && registry->wp_primary_selection_device_manager) {
  408. ss->wp_primary_selection_device = zwp_primary_selection_device_manager_v1_get_device(registry->wp_primary_selection_device_manager, wl_seat);
  409. zwp_primary_selection_device_v1_add_listener(ss->wp_primary_selection_device, &wp_primary_selection_device_listener, ss);
  410. }
  411. }
  412. }
  413. if (strcmp(interface, zwp_relative_pointer_manager_v1_interface.name) == 0) {
  414. registry->wp_relative_pointer_manager = (struct zwp_relative_pointer_manager_v1 *)wl_registry_bind(wl_registry, name, &zwp_relative_pointer_manager_v1_interface, 1);
  415. registry->wp_relative_pointer_manager_name = name;
  416. return;
  417. }
  418. if (strcmp(interface, zwp_pointer_constraints_v1_interface.name) == 0) {
  419. registry->wp_pointer_constraints = (struct zwp_pointer_constraints_v1 *)wl_registry_bind(wl_registry, name, &zwp_pointer_constraints_v1_interface, 1);
  420. registry->wp_pointer_constraints_name = name;
  421. return;
  422. }
  423. if (strcmp(interface, zwp_pointer_gestures_v1_interface.name) == 0) {
  424. registry->wp_pointer_gestures = (struct zwp_pointer_gestures_v1 *)wl_registry_bind(wl_registry, name, &zwp_pointer_gestures_v1_interface, 1);
  425. registry->wp_pointer_gestures_name = name;
  426. return;
  427. }
  428. if (strcmp(interface, zwp_idle_inhibit_manager_v1_interface.name) == 0) {
  429. registry->wp_idle_inhibit_manager = (struct zwp_idle_inhibit_manager_v1 *)wl_registry_bind(wl_registry, name, &zwp_idle_inhibit_manager_v1_interface, 1);
  430. registry->wp_idle_inhibit_manager_name = name;
  431. return;
  432. }
  433. #if 0
  434. // FIXME: Broken.
  435. if (strcmp(interface, zwp_tablet_manager_v2_interface.name) == 0) {
  436. registry->wp_tablet_manager = (struct zwp_tablet_manager_v2 *)wl_registry_bind(wl_registry, name, &zwp_tablet_manager_v2_interface, 1);
  437. registry->wp_tablet_manager_name = name;
  438. // This global creates some seats data. Let's do that for the ones already available.
  439. for (struct wl_seat *wl_seat : registry->wl_seats) {
  440. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  441. ERR_FAIL_NULL(ss);
  442. ss->wp_tablet_seat = zwp_tablet_manager_v2_get_tablet_seat(registry->wp_tablet_manager, wl_seat);
  443. zwp_tablet_seat_v2_add_listener(ss->wp_tablet_seat, &wp_tablet_seat_listener, ss);
  444. }
  445. return;
  446. }
  447. #endif
  448. }
  449. void WaylandThread::_wl_registry_on_global_remove(void *data, struct wl_registry *wl_registry, uint32_t name) {
  450. RegistryState *registry = (RegistryState *)data;
  451. ERR_FAIL_NULL(registry);
  452. if (name == registry->wl_shm_name) {
  453. if (registry->wl_shm) {
  454. wl_shm_destroy(registry->wl_shm);
  455. registry->wl_shm = nullptr;
  456. }
  457. registry->wl_shm_name = 0;
  458. return;
  459. }
  460. if (name == registry->wl_exporter_name) {
  461. if (registry->wl_exporter) {
  462. zxdg_exporter_v1_destroy(registry->wl_exporter);
  463. registry->wl_exporter = nullptr;
  464. }
  465. registry->wl_exporter_name = 0;
  466. return;
  467. }
  468. if (name == registry->wl_compositor_name) {
  469. if (registry->wl_compositor) {
  470. wl_compositor_destroy(registry->wl_compositor);
  471. registry->wl_compositor = nullptr;
  472. }
  473. registry->wl_compositor_name = 0;
  474. return;
  475. }
  476. if (name == registry->wl_subcompositor_name) {
  477. if (registry->wl_subcompositor) {
  478. wl_subcompositor_destroy(registry->wl_subcompositor);
  479. registry->wl_subcompositor = nullptr;
  480. }
  481. registry->wl_subcompositor_name = 0;
  482. return;
  483. }
  484. if (name == registry->wl_data_device_manager_name) {
  485. if (registry->wl_data_device_manager) {
  486. wl_data_device_manager_destroy(registry->wl_data_device_manager);
  487. registry->wl_data_device_manager = nullptr;
  488. }
  489. registry->wl_data_device_manager_name = 0;
  490. // This global is used to create some seat data. Let's clean it.
  491. for (struct wl_seat *wl_seat : registry->wl_seats) {
  492. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  493. ERR_FAIL_NULL(ss);
  494. if (ss->wl_data_device) {
  495. wl_data_device_destroy(ss->wl_data_device);
  496. ss->wl_data_device = nullptr;
  497. }
  498. ss->wl_data_device = nullptr;
  499. }
  500. return;
  501. }
  502. if (name == registry->xdg_wm_base_name) {
  503. if (registry->xdg_wm_base) {
  504. xdg_wm_base_destroy(registry->xdg_wm_base);
  505. registry->xdg_wm_base = nullptr;
  506. }
  507. registry->xdg_wm_base_name = 0;
  508. return;
  509. }
  510. if (name == registry->wp_viewporter_name) {
  511. WindowState *ws = &registry->wayland_thread->main_window;
  512. if (registry->wp_viewporter) {
  513. wp_viewporter_destroy(registry->wp_viewporter);
  514. registry->wp_viewporter = nullptr;
  515. }
  516. if (ws->wp_viewport) {
  517. wp_viewport_destroy(ws->wp_viewport);
  518. ws->wp_viewport = nullptr;
  519. }
  520. registry->wp_viewporter_name = 0;
  521. return;
  522. }
  523. if (name == registry->wp_fractional_scale_manager_name) {
  524. WindowState *ws = &registry->wayland_thread->main_window;
  525. if (registry->wp_fractional_scale_manager) {
  526. wp_fractional_scale_manager_v1_destroy(registry->wp_fractional_scale_manager);
  527. registry->wp_fractional_scale_manager = nullptr;
  528. }
  529. if (ws->wp_fractional_scale) {
  530. wp_fractional_scale_v1_destroy(ws->wp_fractional_scale);
  531. ws->wp_fractional_scale = nullptr;
  532. }
  533. registry->wp_fractional_scale_manager_name = 0;
  534. }
  535. if (name == registry->xdg_decoration_manager_name) {
  536. if (registry->xdg_decoration_manager) {
  537. zxdg_decoration_manager_v1_destroy(registry->xdg_decoration_manager);
  538. registry->xdg_decoration_manager = nullptr;
  539. }
  540. registry->xdg_decoration_manager_name = 0;
  541. return;
  542. }
  543. if (name == registry->xdg_activation_name) {
  544. if (registry->xdg_activation) {
  545. xdg_activation_v1_destroy(registry->xdg_activation);
  546. registry->xdg_activation = nullptr;
  547. }
  548. registry->xdg_activation_name = 0;
  549. return;
  550. }
  551. if (name == registry->wp_primary_selection_device_manager_name) {
  552. if (registry->wp_primary_selection_device_manager) {
  553. zwp_primary_selection_device_manager_v1_destroy(registry->wp_primary_selection_device_manager);
  554. registry->wp_primary_selection_device_manager = nullptr;
  555. }
  556. registry->wp_primary_selection_device_manager_name = 0;
  557. // This global is used to create some seat data. Let's clean it.
  558. for (struct wl_seat *wl_seat : registry->wl_seats) {
  559. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  560. ERR_FAIL_NULL(ss);
  561. if (ss->wp_primary_selection_device) {
  562. zwp_primary_selection_device_v1_destroy(ss->wp_primary_selection_device);
  563. ss->wp_primary_selection_device = nullptr;
  564. }
  565. if (ss->wp_primary_selection_source) {
  566. zwp_primary_selection_source_v1_destroy(ss->wp_primary_selection_source);
  567. ss->wp_primary_selection_source = nullptr;
  568. }
  569. if (ss->wp_primary_selection_offer) {
  570. memfree(wp_primary_selection_offer_get_offer_state(ss->wp_primary_selection_offer));
  571. zwp_primary_selection_offer_v1_destroy(ss->wp_primary_selection_offer);
  572. ss->wp_primary_selection_offer = nullptr;
  573. }
  574. }
  575. return;
  576. }
  577. if (name == registry->wp_relative_pointer_manager_name) {
  578. if (registry->wp_relative_pointer_manager) {
  579. zwp_relative_pointer_manager_v1_destroy(registry->wp_relative_pointer_manager);
  580. registry->wp_relative_pointer_manager = nullptr;
  581. }
  582. registry->wp_relative_pointer_manager_name = 0;
  583. // This global is used to create some seat data. Let's clean it.
  584. for (struct wl_seat *wl_seat : registry->wl_seats) {
  585. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  586. ERR_FAIL_NULL(ss);
  587. if (ss->wp_relative_pointer) {
  588. zwp_relative_pointer_v1_destroy(ss->wp_relative_pointer);
  589. ss->wp_relative_pointer = nullptr;
  590. }
  591. }
  592. return;
  593. }
  594. if (name == registry->wp_pointer_constraints_name) {
  595. if (registry->wp_pointer_constraints) {
  596. zwp_pointer_constraints_v1_destroy(registry->wp_pointer_constraints);
  597. registry->wp_pointer_constraints = nullptr;
  598. }
  599. registry->wp_pointer_constraints_name = 0;
  600. // This global is used to create some seat data. Let's clean it.
  601. for (struct wl_seat *wl_seat : registry->wl_seats) {
  602. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  603. ERR_FAIL_NULL(ss);
  604. if (ss->wp_relative_pointer) {
  605. zwp_relative_pointer_v1_destroy(ss->wp_relative_pointer);
  606. ss->wp_relative_pointer = nullptr;
  607. }
  608. if (ss->wp_locked_pointer) {
  609. zwp_locked_pointer_v1_destroy(ss->wp_locked_pointer);
  610. ss->wp_locked_pointer = nullptr;
  611. }
  612. if (ss->wp_confined_pointer) {
  613. zwp_confined_pointer_v1_destroy(ss->wp_confined_pointer);
  614. ss->wp_confined_pointer = nullptr;
  615. }
  616. }
  617. return;
  618. }
  619. if (name == registry->wp_pointer_gestures_name) {
  620. if (registry->wp_pointer_gestures) {
  621. zwp_pointer_gestures_v1_destroy(registry->wp_pointer_gestures);
  622. }
  623. registry->wp_pointer_gestures = nullptr;
  624. registry->wp_pointer_gestures_name = 0;
  625. // This global is used to create some seat data. Let's clean it.
  626. for (struct wl_seat *wl_seat : registry->wl_seats) {
  627. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  628. ERR_FAIL_NULL(ss);
  629. if (ss->wp_pointer_gesture_pinch) {
  630. zwp_pointer_gesture_pinch_v1_destroy(ss->wp_pointer_gesture_pinch);
  631. ss->wp_pointer_gesture_pinch = nullptr;
  632. }
  633. }
  634. return;
  635. }
  636. if (name == registry->wp_idle_inhibit_manager_name) {
  637. if (registry->wp_idle_inhibit_manager) {
  638. zwp_idle_inhibit_manager_v1_destroy(registry->wp_idle_inhibit_manager);
  639. registry->wp_idle_inhibit_manager = nullptr;
  640. }
  641. registry->wp_idle_inhibit_manager_name = 0;
  642. return;
  643. }
  644. #if 0
  645. // FIXME: Broken.
  646. if (name == registry->wp_tablet_manager_name) {
  647. if (registry->wp_tablet_manager) {
  648. zwp_tablet_manager_v2_destroy(registry->wp_tablet_manager);
  649. registry->wp_tablet_manager = nullptr;
  650. }
  651. registry->wp_tablet_manager_name = 0;
  652. // This global is used to create some seat data. Let's clean it.
  653. for (struct wl_seat *wl_seat : registry->wl_seats) {
  654. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  655. ERR_FAIL_NULL(ss);
  656. List<struct zwp_tablet_tool_v2 *>::Element *it = ss->tablet_tools.front();
  657. while (it) {
  658. zwp_tablet_tool_v2_destroy(it->get());
  659. ss->tablet_tools.erase(it);
  660. it = it->next();
  661. }
  662. }
  663. return;
  664. }
  665. #endif
  666. {
  667. // Iterate through all of the seats to find if any got removed.
  668. List<struct wl_seat *>::Element *it = registry->wl_seats.front();
  669. while (it) {
  670. struct wl_seat *wl_seat = it->get();
  671. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  672. ERR_FAIL_NULL(ss);
  673. if (ss->wl_seat_name == name) {
  674. if (wl_seat) {
  675. wl_seat_destroy(wl_seat);
  676. }
  677. if (ss->wl_data_device) {
  678. wl_data_device_destroy(ss->wl_data_device);
  679. }
  680. #if 0
  681. // FIXME: Broken.
  682. if (ss->wp_tablet_seat) {
  683. zwp_tablet_seat_v2_destroy(ss->wp_tablet_seat);
  684. for (struct zwp_tablet_tool_v2 *tool : ss->tablet_tools) {
  685. zwp_tablet_tool_v2_destroy(tool);
  686. }
  687. }
  688. // Let's destroy all tools.
  689. for (struct zwp_tablet_tool_v2 *tool : ss->tablet_tools) {
  690. zwp_tablet_tool_v2_destroy(tool);
  691. }
  692. memdelete(ss);
  693. registry->wl_seats.erase(it);
  694. #endif
  695. return;
  696. }
  697. it = it->next();
  698. }
  699. }
  700. {
  701. // Iterate through all of the outputs to find if any got removed.
  702. // FIXME: This is a very bruteforce approach.
  703. List<struct wl_output *>::Element *it = registry->wl_outputs.front();
  704. while (it) {
  705. // Iterate through all of the screens to find if any got removed.
  706. struct wl_output *wl_output = it->get();
  707. ERR_FAIL_NULL(wl_output);
  708. ScreenState *ss = wl_output_get_screen_state(wl_output);
  709. if (ss->wl_output_name == name) {
  710. registry->wl_outputs.erase(it);
  711. memdelete(ss);
  712. wl_output_destroy(wl_output);
  713. return;
  714. }
  715. it = it->next();
  716. }
  717. }
  718. }
  719. void WaylandThread::_wl_surface_on_enter(void *data, struct wl_surface *wl_surface, struct wl_output *wl_output) {
  720. if (!wl_output || !wl_proxy_is_godot((struct wl_proxy *)wl_output)) {
  721. // This won't have the right data bound to it. Not worth it and would probably
  722. // just break everything.
  723. return;
  724. }
  725. WindowState *ws = (WindowState *)data;
  726. ERR_FAIL_NULL(ws);
  727. DEBUG_LOG_WAYLAND_THREAD(vformat("Window entered output %x.\n", (size_t)wl_output));
  728. ws->wl_outputs.insert(wl_output);
  729. // Workaround for buffer scaling as there's no guaranteed way of knowing the
  730. // preferred scale.
  731. // TODO: Skip this branch for newer `wl_surface`s once we add support for
  732. // `wl_surface::preferred_buffer_scale`
  733. if (ws->preferred_fractional_scale == 0) {
  734. window_state_update_size(ws, ws->rect.size.width, ws->rect.size.height);
  735. }
  736. }
  737. void WaylandThread::_frame_wl_callback_on_done(void *data, struct wl_callback *wl_callback, uint32_t callback_data) {
  738. wl_callback_destroy(wl_callback);
  739. WindowState *ws = (WindowState *)data;
  740. ERR_FAIL_NULL(ws);
  741. ERR_FAIL_NULL(ws->wayland_thread);
  742. ERR_FAIL_NULL(ws->wl_surface);
  743. ws->wayland_thread->set_frame();
  744. ws->frame_callback = wl_surface_frame(ws->wl_surface),
  745. wl_callback_add_listener(ws->frame_callback, &frame_wl_callback_listener, ws);
  746. wl_surface_commit(ws->wl_surface);
  747. if (ws->wl_surface && ws->buffer_scale_changed) {
  748. // NOTE: We're only now setting the buffer scale as the idea is to get this
  749. // data committed together with the new frame, all by the rendering driver.
  750. // This is important because we might otherwise set an invalid combination of
  751. // buffer size and scale (e.g. odd size and 2x scale). We're pretty much
  752. // guaranteed to get a proper buffer in the next render loop as the rescaling
  753. // method also informs the engine of a "window rect change", triggering
  754. // rendering if needed.
  755. wl_surface_set_buffer_scale(ws->wl_surface, window_state_get_preferred_buffer_scale(ws));
  756. }
  757. // NOTE: Remember to set here also other buffer-dependent states (e.g. opaque
  758. // region) if used, to be as close as possible to an atomic surface update.
  759. // Ideally we'd only have one surface commit, but it's not really doable given
  760. // the current state of things.
  761. }
  762. void WaylandThread::_wl_surface_on_leave(void *data, struct wl_surface *wl_surface, struct wl_output *wl_output) {
  763. if (!wl_output || !wl_proxy_is_godot((struct wl_proxy *)wl_output)) {
  764. // This won't have the right data bound to it. Not worth it and would probably
  765. // just break everything.
  766. return;
  767. }
  768. WindowState *ws = (WindowState *)data;
  769. ERR_FAIL_NULL(ws);
  770. ws->wl_outputs.erase(wl_output);
  771. DEBUG_LOG_WAYLAND_THREAD(vformat("Window left output %x.\n", (size_t)wl_output));
  772. }
  773. // TODO: Add support to this event.
  774. void WaylandThread::_wl_surface_on_preferred_buffer_scale(void *data, struct wl_surface *wl_surface, int32_t factor) {
  775. }
  776. // TODO: Add support to this event.
  777. void WaylandThread::_wl_surface_on_preferred_buffer_transform(void *data, struct wl_surface *wl_surface, uint32_t transform) {
  778. }
  779. void WaylandThread::_wl_output_on_geometry(void *data, struct wl_output *wl_output, int32_t x, int32_t y, int32_t physical_width, int32_t physical_height, int32_t subpixel, const char *make, const char *model, int32_t transform) {
  780. ScreenState *ss = (ScreenState *)data;
  781. ERR_FAIL_NULL(ss);
  782. ss->pending_data.position.x = x;
  783. ss->pending_data.position.x = x;
  784. ss->pending_data.position.y = y;
  785. ss->pending_data.physical_size.width = physical_width;
  786. ss->pending_data.physical_size.height = physical_height;
  787. ss->pending_data.make.parse_utf8(make);
  788. ss->pending_data.model.parse_utf8(model);
  789. }
  790. void WaylandThread::_wl_output_on_mode(void *data, struct wl_output *wl_output, uint32_t flags, int32_t width, int32_t height, int32_t refresh) {
  791. ScreenState *ss = (ScreenState *)data;
  792. ERR_FAIL_NULL(ss);
  793. ss->pending_data.size.width = width;
  794. ss->pending_data.size.height = height;
  795. ss->pending_data.refresh_rate = refresh ? refresh / 1000.0f : -1;
  796. }
  797. void WaylandThread::_wl_output_on_done(void *data, struct wl_output *wl_output) {
  798. ScreenState *ss = (ScreenState *)data;
  799. ERR_FAIL_NULL(ss);
  800. ss->data = ss->pending_data;
  801. ss->wayland_thread->_update_scale(ss->data.scale);
  802. DEBUG_LOG_WAYLAND_THREAD(vformat("Output %x done.", (size_t)wl_output));
  803. }
  804. void WaylandThread::_wl_output_on_scale(void *data, struct wl_output *wl_output, int32_t factor) {
  805. ScreenState *ss = (ScreenState *)data;
  806. ERR_FAIL_NULL(ss);
  807. ss->pending_data.scale = factor;
  808. DEBUG_LOG_WAYLAND_THREAD(vformat("Output %x scale %d", (size_t)wl_output, factor));
  809. }
  810. void WaylandThread::_wl_output_on_name(void *data, struct wl_output *wl_output, const char *name) {
  811. }
  812. void WaylandThread::_wl_output_on_description(void *data, struct wl_output *wl_output, const char *description) {
  813. }
  814. void WaylandThread::_xdg_wm_base_on_ping(void *data, struct xdg_wm_base *xdg_wm_base, uint32_t serial) {
  815. xdg_wm_base_pong(xdg_wm_base, serial);
  816. }
  817. void WaylandThread::_xdg_surface_on_configure(void *data, struct xdg_surface *xdg_surface, uint32_t serial) {
  818. xdg_surface_ack_configure(xdg_surface, serial);
  819. WindowState *ws = (WindowState *)data;
  820. ERR_FAIL_NULL(ws);
  821. DEBUG_LOG_WAYLAND_THREAD(vformat("xdg surface on configure width %d height %d", ws->rect.size.width, ws->rect.size.height));
  822. }
  823. void WaylandThread::_xdg_toplevel_on_configure(void *data, struct xdg_toplevel *xdg_toplevel, int32_t width, int32_t height, struct wl_array *states) {
  824. WindowState *ws = (WindowState *)data;
  825. ERR_FAIL_NULL(ws);
  826. // Expect the window to be in a plain state. It will get properly set if the
  827. // compositor reports otherwise below.
  828. ws->mode = DisplayServer::WINDOW_MODE_WINDOWED;
  829. ws->suspended = false;
  830. uint32_t *state = nullptr;
  831. wl_array_for_each(state, states) {
  832. switch (*state) {
  833. case XDG_TOPLEVEL_STATE_MAXIMIZED: {
  834. ws->mode = DisplayServer::WINDOW_MODE_MAXIMIZED;
  835. } break;
  836. case XDG_TOPLEVEL_STATE_FULLSCREEN: {
  837. ws->mode = DisplayServer::WINDOW_MODE_FULLSCREEN;
  838. } break;
  839. case XDG_TOPLEVEL_STATE_SUSPENDED: {
  840. ws->suspended = true;
  841. } break;
  842. default: {
  843. // We don't care about the other states (for now).
  844. } break;
  845. }
  846. }
  847. if (width != 0 && height != 0) {
  848. window_state_update_size(ws, width, height);
  849. }
  850. DEBUG_LOG_WAYLAND_THREAD(vformat("XDG toplevel on configure width %d height %d.", width, height));
  851. }
  852. void WaylandThread::_xdg_toplevel_on_close(void *data, struct xdg_toplevel *xdg_toplevel) {
  853. WindowState *ws = (WindowState *)data;
  854. ERR_FAIL_NULL(ws);
  855. Ref<WindowEventMessage> msg;
  856. msg.instantiate();
  857. msg->event = DisplayServer::WINDOW_EVENT_CLOSE_REQUEST;
  858. ws->wayland_thread->push_message(msg);
  859. }
  860. void WaylandThread::_xdg_toplevel_on_configure_bounds(void *data, struct xdg_toplevel *xdg_toplevel, int32_t width, int32_t height) {
  861. }
  862. void WaylandThread::_xdg_toplevel_on_wm_capabilities(void *data, struct xdg_toplevel *xdg_toplevel, struct wl_array *capabilities) {
  863. WindowState *ws = (WindowState *)data;
  864. ERR_FAIL_NULL(ws);
  865. ws->can_maximize = false;
  866. ws->can_fullscreen = false;
  867. ws->can_minimize = false;
  868. uint32_t *capability = nullptr;
  869. wl_array_for_each(capability, capabilities) {
  870. switch (*capability) {
  871. case XDG_TOPLEVEL_WM_CAPABILITIES_MAXIMIZE: {
  872. ws->can_maximize = true;
  873. } break;
  874. case XDG_TOPLEVEL_WM_CAPABILITIES_FULLSCREEN: {
  875. ws->can_fullscreen = true;
  876. } break;
  877. case XDG_TOPLEVEL_WM_CAPABILITIES_MINIMIZE: {
  878. ws->can_minimize = true;
  879. } break;
  880. default: {
  881. } break;
  882. }
  883. }
  884. }
  885. void WaylandThread::_xdg_exported_on_exported(void *data, zxdg_exported_v1 *exported, const char *handle) {
  886. WindowState *ws = (WindowState *)data;
  887. ERR_FAIL_NULL(ws);
  888. ws->exported_handle = vformat("wayland:%s", String::utf8(handle));
  889. }
  890. void WaylandThread::_xdg_toplevel_decoration_on_configure(void *data, struct zxdg_toplevel_decoration_v1 *xdg_toplevel_decoration, uint32_t mode) {
  891. if (mode == ZXDG_TOPLEVEL_DECORATION_V1_MODE_CLIENT_SIDE) {
  892. #ifdef LIBDECOR_ENABLED
  893. WARN_PRINT_ONCE("Native client side decorations are not yet supported without libdecor!");
  894. #else
  895. WARN_PRINT_ONCE("Native client side decorations are not yet supported!");
  896. #endif // LIBDECOR_ENABLED
  897. }
  898. }
  899. #ifdef LIBDECOR_ENABLED
  900. void WaylandThread::libdecor_on_error(struct libdecor *context, enum libdecor_error error, const char *message) {
  901. ERR_PRINT(vformat("libdecor error %d: %s", error, message));
  902. }
  903. // NOTE: This is pretty much a reimplementation of _xdg_surface_on_configure
  904. // and _xdg_toplevel_on_configure. Libdecor really likes wrapping everything,
  905. // forcing us to do stuff like this.
  906. void WaylandThread::libdecor_frame_on_configure(struct libdecor_frame *frame, struct libdecor_configuration *configuration, void *user_data) {
  907. WindowState *ws = (WindowState *)user_data;
  908. ERR_FAIL_NULL(ws);
  909. int width = 0;
  910. int height = 0;
  911. ws->pending_libdecor_configuration = configuration;
  912. if (!libdecor_configuration_get_content_size(configuration, frame, &width, &height)) {
  913. // The configuration doesn't have a size. We'll use the one already set in the window.
  914. width = ws->rect.size.width;
  915. height = ws->rect.size.height;
  916. }
  917. ERR_FAIL_COND_MSG(width == 0 || height == 0, "Window has invalid size.");
  918. libdecor_window_state window_state = LIBDECOR_WINDOW_STATE_NONE;
  919. // Expect the window to be in a plain state. It will get properly set if the
  920. // compositor reports otherwise below.
  921. ws->mode = DisplayServer::WINDOW_MODE_WINDOWED;
  922. ws->suspended = false;
  923. if (libdecor_configuration_get_window_state(configuration, &window_state)) {
  924. if (window_state & LIBDECOR_WINDOW_STATE_MAXIMIZED) {
  925. ws->mode = DisplayServer::WINDOW_MODE_MAXIMIZED;
  926. }
  927. if (window_state & LIBDECOR_WINDOW_STATE_FULLSCREEN) {
  928. ws->mode = DisplayServer::WINDOW_MODE_FULLSCREEN;
  929. }
  930. if (window_state & LIBDECOR_WINDOW_STATE_SUSPENDED) {
  931. ws->suspended = true;
  932. }
  933. }
  934. window_state_update_size(ws, width, height);
  935. DEBUG_LOG_WAYLAND_THREAD(vformat("libdecor frame on configure rect %s", ws->rect));
  936. }
  937. void WaylandThread::libdecor_frame_on_close(struct libdecor_frame *frame, void *user_data) {
  938. WindowState *ws = (WindowState *)user_data;
  939. ERR_FAIL_NULL(ws);
  940. Ref<WindowEventMessage> winevent_msg;
  941. winevent_msg.instantiate();
  942. winevent_msg->event = DisplayServer::WINDOW_EVENT_CLOSE_REQUEST;
  943. ws->wayland_thread->push_message(winevent_msg);
  944. DEBUG_LOG_WAYLAND_THREAD("libdecor frame on close");
  945. }
  946. void WaylandThread::libdecor_frame_on_commit(struct libdecor_frame *frame, void *user_data) {
  947. // We're skipping this as we don't really care about libdecor's commit for
  948. // atomicity reasons. See `_frame_wl_callback_on_done` for more info.
  949. DEBUG_LOG_WAYLAND_THREAD("libdecor frame on commit");
  950. }
  951. void WaylandThread::libdecor_frame_on_dismiss_popup(struct libdecor_frame *frame, const char *seat_name, void *user_data) {
  952. }
  953. #endif // LIBDECOR_ENABLED
  954. void WaylandThread::_wl_seat_on_capabilities(void *data, struct wl_seat *wl_seat, uint32_t capabilities) {
  955. SeatState *ss = (SeatState *)data;
  956. ERR_FAIL_NULL(ss);
  957. // TODO: Handle touch.
  958. // Pointer handling.
  959. if (capabilities & WL_SEAT_CAPABILITY_POINTER) {
  960. ss->cursor_surface = wl_compositor_create_surface(ss->registry->wl_compositor);
  961. ss->cursor_frame_callback = wl_surface_frame(ss->cursor_surface);
  962. wl_callback_add_listener(ss->cursor_frame_callback, &cursor_frame_callback_listener, ss);
  963. wl_surface_commit(ss->cursor_surface);
  964. ss->wl_pointer = wl_seat_get_pointer(wl_seat);
  965. wl_pointer_add_listener(ss->wl_pointer, &wl_pointer_listener, ss);
  966. if (ss->registry->wp_relative_pointer_manager) {
  967. ss->wp_relative_pointer = zwp_relative_pointer_manager_v1_get_relative_pointer(ss->registry->wp_relative_pointer_manager, ss->wl_pointer);
  968. zwp_relative_pointer_v1_add_listener(ss->wp_relative_pointer, &wp_relative_pointer_listener, ss);
  969. }
  970. if (ss->registry->wp_pointer_gestures) {
  971. ss->wp_pointer_gesture_pinch = zwp_pointer_gestures_v1_get_pinch_gesture(ss->registry->wp_pointer_gestures, ss->wl_pointer);
  972. zwp_pointer_gesture_pinch_v1_add_listener(ss->wp_pointer_gesture_pinch, &wp_pointer_gesture_pinch_listener, ss);
  973. }
  974. // TODO: Constrain new pointers if the global mouse mode is constrained.
  975. } else {
  976. if (ss->cursor_frame_callback) {
  977. // Just in case. I got bitten by weird race-like conditions already.
  978. wl_callback_set_user_data(ss->cursor_frame_callback, nullptr);
  979. wl_callback_destroy(ss->cursor_frame_callback);
  980. ss->cursor_frame_callback = nullptr;
  981. }
  982. if (ss->cursor_surface) {
  983. wl_surface_destroy(ss->cursor_surface);
  984. ss->cursor_surface = nullptr;
  985. }
  986. if (ss->wl_pointer) {
  987. wl_pointer_destroy(ss->wl_pointer);
  988. ss->wl_pointer = nullptr;
  989. }
  990. if (ss->wp_relative_pointer) {
  991. zwp_relative_pointer_v1_destroy(ss->wp_relative_pointer);
  992. ss->wp_relative_pointer = nullptr;
  993. }
  994. if (ss->wp_confined_pointer) {
  995. zwp_confined_pointer_v1_destroy(ss->wp_confined_pointer);
  996. ss->wp_confined_pointer = nullptr;
  997. }
  998. if (ss->wp_locked_pointer) {
  999. zwp_locked_pointer_v1_destroy(ss->wp_locked_pointer);
  1000. ss->wp_locked_pointer = nullptr;
  1001. }
  1002. }
  1003. // Keyboard handling.
  1004. if (capabilities & WL_SEAT_CAPABILITY_KEYBOARD) {
  1005. ss->xkb_context = xkb_context_new(XKB_CONTEXT_NO_FLAGS);
  1006. ERR_FAIL_NULL(ss->xkb_context);
  1007. ss->wl_keyboard = wl_seat_get_keyboard(wl_seat);
  1008. wl_keyboard_add_listener(ss->wl_keyboard, &wl_keyboard_listener, ss);
  1009. } else {
  1010. if (ss->xkb_context) {
  1011. xkb_context_unref(ss->xkb_context);
  1012. ss->xkb_context = nullptr;
  1013. }
  1014. if (ss->wl_keyboard) {
  1015. wl_keyboard_destroy(ss->wl_keyboard);
  1016. ss->wl_keyboard = nullptr;
  1017. }
  1018. }
  1019. }
  1020. void WaylandThread::_wl_seat_on_name(void *data, struct wl_seat *wl_seat, const char *name) {
  1021. }
  1022. void WaylandThread::_cursor_frame_callback_on_done(void *data, struct wl_callback *wl_callback, uint32_t time_ms) {
  1023. wl_callback_destroy(wl_callback);
  1024. SeatState *ss = (SeatState *)data;
  1025. ERR_FAIL_NULL(ss);
  1026. ss->cursor_time_ms = time_ms;
  1027. ss->cursor_frame_callback = wl_surface_frame(ss->cursor_surface);
  1028. wl_callback_add_listener(ss->cursor_frame_callback, &cursor_frame_callback_listener, ss);
  1029. wl_surface_commit(ss->cursor_surface);
  1030. seat_state_update_cursor(ss);
  1031. }
  1032. void WaylandThread::_wl_pointer_on_enter(void *data, struct wl_pointer *wl_pointer, uint32_t serial, struct wl_surface *surface, wl_fixed_t surface_x, wl_fixed_t surface_y) {
  1033. if (!surface || !wl_proxy_is_godot((struct wl_proxy *)surface)) {
  1034. return;
  1035. }
  1036. DEBUG_LOG_WAYLAND_THREAD("Pointing window.");
  1037. SeatState *ss = (SeatState *)data;
  1038. ERR_FAIL_NULL(ss);
  1039. ERR_FAIL_NULL(ss->cursor_surface);
  1040. ss->pointer_enter_serial = serial;
  1041. ss->pointed_surface = surface;
  1042. ss->last_pointed_surface = surface;
  1043. seat_state_update_cursor(ss);
  1044. Ref<WindowEventMessage> msg;
  1045. msg.instantiate();
  1046. msg->event = DisplayServer::WINDOW_EVENT_MOUSE_ENTER;
  1047. ss->wayland_thread->push_message(msg);
  1048. }
  1049. void WaylandThread::_wl_pointer_on_leave(void *data, struct wl_pointer *wl_pointer, uint32_t serial, struct wl_surface *surface) {
  1050. if (!surface || !wl_proxy_is_godot((struct wl_proxy *)surface)) {
  1051. return;
  1052. }
  1053. DEBUG_LOG_WAYLAND_THREAD("Left window.");
  1054. SeatState *ss = (SeatState *)data;
  1055. ERR_FAIL_NULL(ss);
  1056. WaylandThread *wayland_thread = ss->wayland_thread;
  1057. ERR_FAIL_NULL(wayland_thread);
  1058. ss->pointed_surface = nullptr;
  1059. Ref<WindowEventMessage> msg;
  1060. msg.instantiate();
  1061. msg->event = DisplayServer::WINDOW_EVENT_MOUSE_EXIT;
  1062. wayland_thread->push_message(msg);
  1063. }
  1064. void WaylandThread::_wl_pointer_on_motion(void *data, struct wl_pointer *wl_pointer, uint32_t time, wl_fixed_t surface_x, wl_fixed_t surface_y) {
  1065. SeatState *ss = (SeatState *)data;
  1066. ERR_FAIL_NULL(ss);
  1067. if (!ss->pointed_surface) {
  1068. // We're probably on a decoration or some other third-party thing.
  1069. return;
  1070. }
  1071. WindowState *ws = wl_surface_get_window_state(ss->pointed_surface);
  1072. ERR_FAIL_NULL(ws);
  1073. PointerData &pd = ss->pointer_data_buffer;
  1074. // TODO: Scale only when sending the Wayland message.
  1075. pd.position.x = wl_fixed_to_int(surface_x);
  1076. pd.position.y = wl_fixed_to_int(surface_y);
  1077. pd.position = scale_vector2i(pd.position, window_state_get_scale_factor(ws));
  1078. pd.motion_time = time;
  1079. }
  1080. void WaylandThread::_wl_pointer_on_button(void *data, struct wl_pointer *wl_pointer, uint32_t serial, uint32_t time, uint32_t button, uint32_t state) {
  1081. SeatState *ss = (SeatState *)data;
  1082. ERR_FAIL_NULL(ss);
  1083. if (!ss->pointed_surface) {
  1084. // We're probably on a decoration or some other third-party thing.
  1085. return;
  1086. }
  1087. PointerData &pd = ss->pointer_data_buffer;
  1088. MouseButton button_pressed = MouseButton::NONE;
  1089. switch (button) {
  1090. case BTN_LEFT:
  1091. button_pressed = MouseButton::LEFT;
  1092. break;
  1093. case BTN_MIDDLE:
  1094. button_pressed = MouseButton::MIDDLE;
  1095. break;
  1096. case BTN_RIGHT:
  1097. button_pressed = MouseButton::RIGHT;
  1098. break;
  1099. case BTN_EXTRA:
  1100. button_pressed = MouseButton::MB_XBUTTON1;
  1101. break;
  1102. case BTN_SIDE:
  1103. button_pressed = MouseButton::MB_XBUTTON2;
  1104. break;
  1105. default: {
  1106. }
  1107. }
  1108. MouseButtonMask mask = mouse_button_to_mask(button_pressed);
  1109. if (state & WL_POINTER_BUTTON_STATE_PRESSED) {
  1110. pd.pressed_button_mask.set_flag(mask);
  1111. pd.last_button_pressed = button_pressed;
  1112. pd.double_click_begun = true;
  1113. } else {
  1114. pd.pressed_button_mask.clear_flag(mask);
  1115. }
  1116. pd.button_time = time;
  1117. pd.button_serial = serial;
  1118. }
  1119. void WaylandThread::_wl_pointer_on_axis(void *data, struct wl_pointer *wl_pointer, uint32_t time, uint32_t axis, wl_fixed_t value) {
  1120. SeatState *ss = (SeatState *)data;
  1121. ERR_FAIL_NULL(ss);
  1122. if (!ss->pointed_surface) {
  1123. // We're probably on a decoration or some other third-party thing.
  1124. return;
  1125. }
  1126. PointerData &pd = ss->pointer_data_buffer;
  1127. switch (axis) {
  1128. case WL_POINTER_AXIS_VERTICAL_SCROLL: {
  1129. pd.scroll_vector.y = wl_fixed_to_double(value);
  1130. } break;
  1131. case WL_POINTER_AXIS_HORIZONTAL_SCROLL: {
  1132. pd.scroll_vector.x = wl_fixed_to_double(value);
  1133. } break;
  1134. }
  1135. pd.button_time = time;
  1136. }
  1137. void WaylandThread::_wl_pointer_on_frame(void *data, struct wl_pointer *wl_pointer) {
  1138. SeatState *ss = (SeatState *)data;
  1139. ERR_FAIL_NULL(ss);
  1140. if (!ss->pointed_surface) {
  1141. // We're probably on a decoration or some other third-party thing.
  1142. return;
  1143. }
  1144. WaylandThread *wayland_thread = ss->wayland_thread;
  1145. ERR_FAIL_NULL(wayland_thread);
  1146. wayland_thread->_set_current_seat(ss->wl_seat);
  1147. PointerData &old_pd = ss->pointer_data;
  1148. PointerData &pd = ss->pointer_data_buffer;
  1149. if (old_pd.motion_time != pd.motion_time || old_pd.relative_motion_time != pd.relative_motion_time) {
  1150. Ref<InputEventMouseMotion> mm;
  1151. mm.instantiate();
  1152. // Set all pressed modifiers.
  1153. mm->set_shift_pressed(ss->shift_pressed);
  1154. mm->set_ctrl_pressed(ss->ctrl_pressed);
  1155. mm->set_alt_pressed(ss->alt_pressed);
  1156. mm->set_meta_pressed(ss->meta_pressed);
  1157. mm->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1158. mm->set_button_mask(pd.pressed_button_mask);
  1159. mm->set_position(pd.position);
  1160. mm->set_global_position(pd.position);
  1161. Vector2i pos_delta = pd.position - old_pd.position;
  1162. if (old_pd.relative_motion_time != pd.relative_motion_time) {
  1163. uint32_t time_delta = pd.relative_motion_time - old_pd.relative_motion_time;
  1164. mm->set_relative(pd.relative_motion);
  1165. mm->set_velocity((Vector2)pos_delta / time_delta);
  1166. } else {
  1167. // The spec includes the possibility of having motion events without an
  1168. // associated relative motion event. If that's the case, fallback to a
  1169. // simple delta of the position. The captured mouse won't report the
  1170. // relative speed anymore though.
  1171. uint32_t time_delta = pd.motion_time - old_pd.motion_time;
  1172. mm->set_relative(pd.position - old_pd.position);
  1173. mm->set_velocity((Vector2)pos_delta / time_delta);
  1174. }
  1175. mm->set_relative_screen_position(mm->get_relative());
  1176. mm->set_screen_velocity(mm->get_velocity());
  1177. Ref<InputEventMessage> msg;
  1178. msg.instantiate();
  1179. msg->event = mm;
  1180. wayland_thread->push_message(msg);
  1181. }
  1182. if (pd.discrete_scroll_vector - old_pd.discrete_scroll_vector != Vector2i()) {
  1183. // This is a discrete scroll (eg. from a scroll wheel), so we'll just emit
  1184. // scroll wheel buttons.
  1185. if (pd.scroll_vector.y != 0) {
  1186. MouseButton button = pd.scroll_vector.y > 0 ? MouseButton::WHEEL_DOWN : MouseButton::WHEEL_UP;
  1187. pd.pressed_button_mask.set_flag(mouse_button_to_mask(button));
  1188. }
  1189. if (pd.scroll_vector.x != 0) {
  1190. MouseButton button = pd.scroll_vector.x > 0 ? MouseButton::WHEEL_RIGHT : MouseButton::WHEEL_LEFT;
  1191. pd.pressed_button_mask.set_flag(mouse_button_to_mask(button));
  1192. }
  1193. } else {
  1194. if (pd.scroll_vector - old_pd.scroll_vector != Vector2()) {
  1195. // This is a continuous scroll, so we'll emit a pan gesture.
  1196. Ref<InputEventPanGesture> pg;
  1197. pg.instantiate();
  1198. // Set all pressed modifiers.
  1199. pg->set_shift_pressed(ss->shift_pressed);
  1200. pg->set_ctrl_pressed(ss->ctrl_pressed);
  1201. pg->set_alt_pressed(ss->alt_pressed);
  1202. pg->set_meta_pressed(ss->meta_pressed);
  1203. pg->set_position(pd.position);
  1204. pg->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1205. pg->set_delta(pd.scroll_vector);
  1206. Ref<InputEventMessage> msg;
  1207. msg.instantiate();
  1208. msg->event = pg;
  1209. wayland_thread->push_message(msg);
  1210. }
  1211. }
  1212. if (old_pd.pressed_button_mask != pd.pressed_button_mask) {
  1213. BitField<MouseButtonMask> pressed_mask_delta = BitField<MouseButtonMask>((uint32_t)old_pd.pressed_button_mask ^ (uint32_t)pd.pressed_button_mask);
  1214. const MouseButton buttons_to_test[] = {
  1215. MouseButton::LEFT,
  1216. MouseButton::MIDDLE,
  1217. MouseButton::RIGHT,
  1218. MouseButton::WHEEL_UP,
  1219. MouseButton::WHEEL_DOWN,
  1220. MouseButton::WHEEL_LEFT,
  1221. MouseButton::WHEEL_RIGHT,
  1222. MouseButton::MB_XBUTTON1,
  1223. MouseButton::MB_XBUTTON2,
  1224. };
  1225. for (MouseButton test_button : buttons_to_test) {
  1226. MouseButtonMask test_button_mask = mouse_button_to_mask(test_button);
  1227. if (pressed_mask_delta.has_flag(test_button_mask)) {
  1228. Ref<InputEventMouseButton> mb;
  1229. mb.instantiate();
  1230. // Set all pressed modifiers.
  1231. mb->set_shift_pressed(ss->shift_pressed);
  1232. mb->set_ctrl_pressed(ss->ctrl_pressed);
  1233. mb->set_alt_pressed(ss->alt_pressed);
  1234. mb->set_meta_pressed(ss->meta_pressed);
  1235. mb->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1236. mb->set_position(pd.position);
  1237. mb->set_global_position(pd.position);
  1238. if (test_button == MouseButton::WHEEL_UP || test_button == MouseButton::WHEEL_DOWN) {
  1239. // If this is a discrete scroll, specify how many "clicks" it did for this
  1240. // pointer frame.
  1241. mb->set_factor(abs(pd.discrete_scroll_vector.y));
  1242. }
  1243. if (test_button == MouseButton::WHEEL_RIGHT || test_button == MouseButton::WHEEL_LEFT) {
  1244. // If this is a discrete scroll, specify how many "clicks" it did for this
  1245. // pointer frame.
  1246. mb->set_factor(abs(pd.discrete_scroll_vector.x));
  1247. }
  1248. mb->set_button_mask(pd.pressed_button_mask);
  1249. mb->set_button_index(test_button);
  1250. mb->set_pressed(pd.pressed_button_mask.has_flag(test_button_mask));
  1251. // We have to set the last position pressed here as we can't take for
  1252. // granted what the individual events might have seen due to them not having
  1253. // a garaunteed order.
  1254. if (mb->is_pressed()) {
  1255. pd.last_pressed_position = pd.position;
  1256. }
  1257. if (old_pd.double_click_begun && mb->is_pressed() && pd.last_button_pressed == old_pd.last_button_pressed && (pd.button_time - old_pd.button_time) < 400 && Vector2(old_pd.last_pressed_position).distance_to(Vector2(pd.last_pressed_position)) < 5) {
  1258. pd.double_click_begun = false;
  1259. mb->set_double_click(true);
  1260. }
  1261. Ref<InputEventMessage> msg;
  1262. msg.instantiate();
  1263. msg->event = mb;
  1264. wayland_thread->push_message(msg);
  1265. // Send an event resetting immediately the wheel key.
  1266. // Wayland specification defines axis_stop events as optional and says to
  1267. // treat all axis events as unterminated. As such, we have to manually do
  1268. // it ourselves.
  1269. if (test_button == MouseButton::WHEEL_UP || test_button == MouseButton::WHEEL_DOWN || test_button == MouseButton::WHEEL_LEFT || test_button == MouseButton::WHEEL_RIGHT) {
  1270. // FIXME: This is ugly, I can't find a clean way to clone an InputEvent.
  1271. // This works for now, despite being horrible.
  1272. Ref<InputEventMouseButton> wh_up;
  1273. wh_up.instantiate();
  1274. wh_up->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1275. wh_up->set_position(pd.position);
  1276. wh_up->set_global_position(pd.position);
  1277. // We have to unset the button to avoid it getting stuck.
  1278. pd.pressed_button_mask.clear_flag(test_button_mask);
  1279. wh_up->set_button_mask(pd.pressed_button_mask);
  1280. wh_up->set_button_index(test_button);
  1281. wh_up->set_pressed(false);
  1282. Ref<InputEventMessage> msg_up;
  1283. msg_up.instantiate();
  1284. msg_up->event = wh_up;
  1285. wayland_thread->push_message(msg_up);
  1286. }
  1287. }
  1288. }
  1289. }
  1290. // Reset the scroll vectors as we already handled them.
  1291. pd.scroll_vector = Vector2();
  1292. pd.discrete_scroll_vector = Vector2();
  1293. // Update the data all getters read. Wayland's specification requires us to do
  1294. // this, since all pointer actions are sent in individual events.
  1295. old_pd = pd;
  1296. }
  1297. void WaylandThread::_wl_pointer_on_axis_source(void *data, struct wl_pointer *wl_pointer, uint32_t axis_source) {
  1298. SeatState *ss = (SeatState *)data;
  1299. ERR_FAIL_NULL(ss);
  1300. if (!ss->pointed_surface) {
  1301. // We're probably on a decoration or some other third-party thing.
  1302. return;
  1303. }
  1304. ss->pointer_data_buffer.scroll_type = axis_source;
  1305. }
  1306. void WaylandThread::_wl_pointer_on_axis_stop(void *data, struct wl_pointer *wl_pointer, uint32_t time, uint32_t axis) {
  1307. }
  1308. void WaylandThread::_wl_pointer_on_axis_discrete(void *data, struct wl_pointer *wl_pointer, uint32_t axis, int32_t discrete) {
  1309. SeatState *ss = (SeatState *)data;
  1310. ERR_FAIL_NULL(ss);
  1311. if (!ss->pointed_surface) {
  1312. // We're probably on a decoration or some other third-party thing.
  1313. return;
  1314. }
  1315. PointerData &pd = ss->pointer_data_buffer;
  1316. if (axis == WL_POINTER_AXIS_VERTICAL_SCROLL) {
  1317. pd.discrete_scroll_vector.y = discrete;
  1318. }
  1319. if (axis == WL_POINTER_AXIS_VERTICAL_SCROLL) {
  1320. pd.discrete_scroll_vector.x = discrete;
  1321. }
  1322. }
  1323. // TODO: Add support to this event.
  1324. void WaylandThread::_wl_pointer_on_axis_value120(void *data, struct wl_pointer *wl_pointer, uint32_t axis, int32_t value120) {
  1325. }
  1326. // TODO: Add support to this event.
  1327. void WaylandThread::_wl_pointer_on_axis_relative_direction(void *data, struct wl_pointer *wl_pointer, uint32_t axis, uint32_t direction) {
  1328. }
  1329. void WaylandThread::_wl_keyboard_on_keymap(void *data, struct wl_keyboard *wl_keyboard, uint32_t format, int32_t fd, uint32_t size) {
  1330. ERR_FAIL_COND_MSG(format != WL_KEYBOARD_KEYMAP_FORMAT_XKB_V1, "Unsupported keymap format announced from the Wayland compositor.");
  1331. SeatState *ss = (SeatState *)data;
  1332. ERR_FAIL_NULL(ss);
  1333. if (ss->keymap_buffer) {
  1334. // We have already a mapped buffer, so we unmap it. There's no need to reset
  1335. // its pointer or size, as we're gonna set them below.
  1336. munmap((void *)ss->keymap_buffer, ss->keymap_buffer_size);
  1337. ss->keymap_buffer = nullptr;
  1338. }
  1339. ss->keymap_buffer = (const char *)mmap(NULL, size, PROT_READ, MAP_PRIVATE, fd, 0);
  1340. ss->keymap_buffer_size = size;
  1341. xkb_keymap_unref(ss->xkb_keymap);
  1342. ss->xkb_keymap = xkb_keymap_new_from_string(ss->xkb_context, ss->keymap_buffer,
  1343. XKB_KEYMAP_FORMAT_TEXT_V1, XKB_KEYMAP_COMPILE_NO_FLAGS);
  1344. xkb_state_unref(ss->xkb_state);
  1345. ss->xkb_state = xkb_state_new(ss->xkb_keymap);
  1346. }
  1347. void WaylandThread::_wl_keyboard_on_enter(void *data, struct wl_keyboard *wl_keyboard, uint32_t serial, struct wl_surface *surface, struct wl_array *keys) {
  1348. SeatState *ss = (SeatState *)data;
  1349. ERR_FAIL_NULL(ss);
  1350. WaylandThread *wayland_thread = ss->wayland_thread;
  1351. ERR_FAIL_NULL(wayland_thread);
  1352. wayland_thread->_set_current_seat(ss->wl_seat);
  1353. Ref<WindowEventMessage> msg;
  1354. msg.instantiate();
  1355. msg->event = DisplayServer::WINDOW_EVENT_FOCUS_IN;
  1356. wayland_thread->push_message(msg);
  1357. }
  1358. void WaylandThread::_wl_keyboard_on_leave(void *data, struct wl_keyboard *wl_keyboard, uint32_t serial, struct wl_surface *surface) {
  1359. SeatState *ss = (SeatState *)data;
  1360. ERR_FAIL_NULL(ss);
  1361. WaylandThread *wayland_thread = ss->wayland_thread;
  1362. ERR_FAIL_NULL(wayland_thread);
  1363. ss->repeating_keycode = XKB_KEYCODE_INVALID;
  1364. Ref<WindowEventMessage> msg;
  1365. msg.instantiate();
  1366. msg->event = DisplayServer::WINDOW_EVENT_FOCUS_OUT;
  1367. wayland_thread->push_message(msg);
  1368. }
  1369. void WaylandThread::_wl_keyboard_on_key(void *data, struct wl_keyboard *wl_keyboard, uint32_t serial, uint32_t time, uint32_t key, uint32_t state) {
  1370. SeatState *ss = (SeatState *)data;
  1371. ERR_FAIL_NULL(ss);
  1372. WaylandThread *wayland_thread = ss->wayland_thread;
  1373. ERR_FAIL_NULL(wayland_thread);
  1374. // We have to add 8 to the scancode to get an XKB-compatible keycode.
  1375. xkb_keycode_t xkb_keycode = key + 8;
  1376. bool pressed = state & WL_KEYBOARD_KEY_STATE_PRESSED;
  1377. if (pressed) {
  1378. if (xkb_keymap_key_repeats(ss->xkb_keymap, xkb_keycode)) {
  1379. ss->last_repeat_start_msec = OS::get_singleton()->get_ticks_msec();
  1380. ss->repeating_keycode = xkb_keycode;
  1381. }
  1382. ss->last_key_pressed_serial = serial;
  1383. } else if (ss->repeating_keycode == xkb_keycode) {
  1384. ss->repeating_keycode = XKB_KEYCODE_INVALID;
  1385. }
  1386. Ref<InputEventKey> k;
  1387. k.instantiate();
  1388. if (!_seat_state_configure_key_event(*ss, k, xkb_keycode, pressed)) {
  1389. return;
  1390. }
  1391. Ref<InputEventMessage> msg;
  1392. msg.instantiate();
  1393. msg->event = k;
  1394. wayland_thread->push_message(msg);
  1395. }
  1396. void WaylandThread::_wl_keyboard_on_modifiers(void *data, struct wl_keyboard *wl_keyboard, uint32_t serial, uint32_t mods_depressed, uint32_t mods_latched, uint32_t mods_locked, uint32_t group) {
  1397. SeatState *ss = (SeatState *)data;
  1398. ERR_FAIL_NULL(ss);
  1399. xkb_state_update_mask(ss->xkb_state, mods_depressed, mods_latched, mods_locked, ss->current_layout_index, ss->current_layout_index, group);
  1400. ss->shift_pressed = xkb_state_mod_name_is_active(ss->xkb_state, XKB_MOD_NAME_SHIFT, XKB_STATE_MODS_DEPRESSED);
  1401. ss->ctrl_pressed = xkb_state_mod_name_is_active(ss->xkb_state, XKB_MOD_NAME_CTRL, XKB_STATE_MODS_DEPRESSED);
  1402. ss->alt_pressed = xkb_state_mod_name_is_active(ss->xkb_state, XKB_MOD_NAME_ALT, XKB_STATE_MODS_DEPRESSED);
  1403. ss->meta_pressed = xkb_state_mod_name_is_active(ss->xkb_state, XKB_MOD_NAME_LOGO, XKB_STATE_MODS_DEPRESSED);
  1404. ss->current_layout_index = group;
  1405. }
  1406. void WaylandThread::_wl_keyboard_on_repeat_info(void *data, struct wl_keyboard *wl_keyboard, int32_t rate, int32_t delay) {
  1407. SeatState *ss = (SeatState *)data;
  1408. ERR_FAIL_NULL(ss);
  1409. ss->repeat_key_delay_msec = 1000 / rate;
  1410. ss->repeat_start_delay_msec = delay;
  1411. }
  1412. // NOTE: Don't forget to `memfree` the offer's state.
  1413. void WaylandThread::_wl_data_device_on_data_offer(void *data, struct wl_data_device *wl_data_device, struct wl_data_offer *id) {
  1414. wl_proxy_tag_godot((struct wl_proxy *)id);
  1415. wl_data_offer_add_listener(id, &wl_data_offer_listener, memnew(OfferState));
  1416. }
  1417. void WaylandThread::_wl_data_device_on_enter(void *data, struct wl_data_device *wl_data_device, uint32_t serial, struct wl_surface *surface, wl_fixed_t x, wl_fixed_t y, struct wl_data_offer *id) {
  1418. SeatState *ss = (SeatState *)data;
  1419. ERR_FAIL_NULL(ss);
  1420. ss->dnd_enter_serial = serial;
  1421. ss->wl_data_offer_dnd = id;
  1422. // Godot only supports DnD file copying for now.
  1423. wl_data_offer_accept(id, serial, "text/uri-list");
  1424. wl_data_offer_set_actions(id, WL_DATA_DEVICE_MANAGER_DND_ACTION_COPY, WL_DATA_DEVICE_MANAGER_DND_ACTION_COPY);
  1425. }
  1426. void WaylandThread::_wl_data_device_on_leave(void *data, struct wl_data_device *wl_data_device) {
  1427. SeatState *ss = (SeatState *)data;
  1428. ERR_FAIL_NULL(ss);
  1429. if (ss->wl_data_offer_dnd) {
  1430. memdelete(wl_data_offer_get_offer_state(ss->wl_data_offer_dnd));
  1431. wl_data_offer_destroy(ss->wl_data_offer_dnd);
  1432. ss->wl_data_offer_dnd = nullptr;
  1433. }
  1434. }
  1435. void WaylandThread::_wl_data_device_on_motion(void *data, struct wl_data_device *wl_data_device, uint32_t time, wl_fixed_t x, wl_fixed_t y) {
  1436. }
  1437. void WaylandThread::_wl_data_device_on_drop(void *data, struct wl_data_device *wl_data_device) {
  1438. SeatState *ss = (SeatState *)data;
  1439. ERR_FAIL_NULL(ss);
  1440. WaylandThread *wayland_thread = ss->wayland_thread;
  1441. ERR_FAIL_NULL(wayland_thread);
  1442. OfferState *os = wl_data_offer_get_offer_state(ss->wl_data_offer_dnd);
  1443. ERR_FAIL_NULL(os);
  1444. if (os) {
  1445. Ref<DropFilesEventMessage> msg;
  1446. msg.instantiate();
  1447. Vector<uint8_t> list_data = _wl_data_offer_read(wayland_thread->wl_display, "text/uri-list", ss->wl_data_offer_dnd);
  1448. msg->files = String::utf8((const char *)list_data.ptr(), list_data.size()).split("\r\n", false);
  1449. for (int i = 0; i < msg->files.size(); i++) {
  1450. msg->files.write[i] = msg->files[i].replace("file://", "").uri_decode();
  1451. }
  1452. wayland_thread->push_message(msg);
  1453. wl_data_offer_finish(ss->wl_data_offer_dnd);
  1454. }
  1455. memdelete(wl_data_offer_get_offer_state(ss->wl_data_offer_dnd));
  1456. wl_data_offer_destroy(ss->wl_data_offer_dnd);
  1457. ss->wl_data_offer_dnd = nullptr;
  1458. }
  1459. void WaylandThread::_wl_data_device_on_selection(void *data, struct wl_data_device *wl_data_device, struct wl_data_offer *id) {
  1460. SeatState *ss = (SeatState *)data;
  1461. ERR_FAIL_NULL(ss);
  1462. if (ss->wl_data_offer_selection) {
  1463. memdelete(wl_data_offer_get_offer_state(ss->wl_data_offer_selection));
  1464. wl_data_offer_destroy(ss->wl_data_offer_selection);
  1465. }
  1466. ss->wl_data_offer_selection = id;
  1467. }
  1468. void WaylandThread::_wl_data_offer_on_offer(void *data, struct wl_data_offer *wl_data_offer, const char *mime_type) {
  1469. OfferState *os = (OfferState *)data;
  1470. ERR_FAIL_NULL(os);
  1471. if (os) {
  1472. os->mime_types.insert(String::utf8(mime_type));
  1473. }
  1474. }
  1475. void WaylandThread::_wl_data_offer_on_source_actions(void *data, struct wl_data_offer *wl_data_offer, uint32_t source_actions) {
  1476. }
  1477. void WaylandThread::_wl_data_offer_on_action(void *data, struct wl_data_offer *wl_data_offer, uint32_t dnd_action) {
  1478. }
  1479. void WaylandThread::_wl_data_source_on_target(void *data, struct wl_data_source *wl_data_source, const char *mime_type) {
  1480. }
  1481. void WaylandThread::_wl_data_source_on_send(void *data, struct wl_data_source *wl_data_source, const char *mime_type, int32_t fd) {
  1482. SeatState *ss = (SeatState *)data;
  1483. ERR_FAIL_NULL(ss);
  1484. Vector<uint8_t> *data_to_send = nullptr;
  1485. if (wl_data_source == ss->wl_data_source_selection) {
  1486. data_to_send = &ss->selection_data;
  1487. DEBUG_LOG_WAYLAND_THREAD("Clipboard: requested selection.");
  1488. }
  1489. if (data_to_send) {
  1490. ssize_t written_bytes = 0;
  1491. bool valid_mime = false;
  1492. if (strcmp(mime_type, "text/plain;charset=utf-8") == 0) {
  1493. valid_mime = true;
  1494. } else if (strcmp(mime_type, "text/plain") == 0) {
  1495. valid_mime = true;
  1496. }
  1497. if (valid_mime) {
  1498. written_bytes = write(fd, data_to_send->ptr(), data_to_send->size());
  1499. }
  1500. if (written_bytes > 0) {
  1501. DEBUG_LOG_WAYLAND_THREAD(vformat("Clipboard: sent %d bytes.", written_bytes));
  1502. } else if (written_bytes == 0) {
  1503. DEBUG_LOG_WAYLAND_THREAD("Clipboard: no bytes sent.");
  1504. } else {
  1505. ERR_PRINT(vformat("Clipboard: write error %d.", errno));
  1506. }
  1507. }
  1508. close(fd);
  1509. }
  1510. void WaylandThread::_wl_data_source_on_cancelled(void *data, struct wl_data_source *wl_data_source) {
  1511. SeatState *ss = (SeatState *)data;
  1512. ERR_FAIL_NULL(ss);
  1513. wl_data_source_destroy(wl_data_source);
  1514. if (wl_data_source == ss->wl_data_source_selection) {
  1515. ss->wl_data_source_selection = nullptr;
  1516. ss->selection_data.clear();
  1517. DEBUG_LOG_WAYLAND_THREAD("Clipboard: selection set by another program.");
  1518. return;
  1519. }
  1520. }
  1521. void WaylandThread::_wl_data_source_on_dnd_drop_performed(void *data, struct wl_data_source *wl_data_source) {
  1522. }
  1523. void WaylandThread::_wl_data_source_on_dnd_finished(void *data, struct wl_data_source *wl_data_source) {
  1524. }
  1525. void WaylandThread::_wl_data_source_on_action(void *data, struct wl_data_source *wl_data_source, uint32_t dnd_action) {
  1526. }
  1527. void WaylandThread::_wp_fractional_scale_on_preferred_scale(void *data, struct wp_fractional_scale_v1 *wp_fractional_scale_v1, uint32_t scale) {
  1528. WindowState *ws = (WindowState *)data;
  1529. ERR_FAIL_NULL(ws);
  1530. ws->preferred_fractional_scale = (double)scale / 120;
  1531. window_state_update_size(ws, ws->rect.size.width, ws->rect.size.height);
  1532. }
  1533. void WaylandThread::_wp_relative_pointer_on_relative_motion(void *data, struct zwp_relative_pointer_v1 *wp_relative_pointer, uint32_t uptime_hi, uint32_t uptime_lo, wl_fixed_t dx, wl_fixed_t dy, wl_fixed_t dx_unaccel, wl_fixed_t dy_unaccel) {
  1534. SeatState *ss = (SeatState *)data;
  1535. ERR_FAIL_NULL(ss);
  1536. PointerData &pd = ss->pointer_data_buffer;
  1537. pd.relative_motion.x = wl_fixed_to_double(dx);
  1538. pd.relative_motion.y = wl_fixed_to_double(dy);
  1539. pd.relative_motion_time = uptime_lo;
  1540. }
  1541. void WaylandThread::_wp_pointer_gesture_pinch_on_begin(void *data, struct zwp_pointer_gesture_pinch_v1 *zwp_pointer_gesture_pinch_v1, uint32_t serial, uint32_t time, struct wl_surface *surface, uint32_t fingers) {
  1542. SeatState *ss = (SeatState *)data;
  1543. ERR_FAIL_NULL(ss);
  1544. if (fingers == 2) {
  1545. ss->old_pinch_scale = wl_fixed_from_int(1);
  1546. ss->active_gesture = Gesture::MAGNIFY;
  1547. }
  1548. }
  1549. void WaylandThread::_wp_pointer_gesture_pinch_on_update(void *data, struct zwp_pointer_gesture_pinch_v1 *zwp_pointer_gesture_pinch_v1, uint32_t time, wl_fixed_t dx, wl_fixed_t dy, wl_fixed_t scale, wl_fixed_t rotation) {
  1550. SeatState *ss = (SeatState *)data;
  1551. ERR_FAIL_NULL(ss);
  1552. WaylandThread *wayland_thread = ss->wayland_thread;
  1553. ERR_FAIL_NULL(wayland_thread);
  1554. PointerData &pd = ss->pointer_data_buffer;
  1555. if (ss->active_gesture == Gesture::MAGNIFY) {
  1556. Ref<InputEventMagnifyGesture> mg;
  1557. mg.instantiate();
  1558. mg->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1559. // Set all pressed modifiers.
  1560. mg->set_shift_pressed(ss->shift_pressed);
  1561. mg->set_ctrl_pressed(ss->ctrl_pressed);
  1562. mg->set_alt_pressed(ss->alt_pressed);
  1563. mg->set_meta_pressed(ss->meta_pressed);
  1564. mg->set_position(pd.position);
  1565. wl_fixed_t scale_delta = scale - ss->old_pinch_scale;
  1566. mg->set_factor(1 + wl_fixed_to_double(scale_delta));
  1567. Ref<InputEventMessage> magnify_msg;
  1568. magnify_msg.instantiate();
  1569. magnify_msg->event = mg;
  1570. // Since Wayland allows only one gesture at a time and godot instead expects
  1571. // both of them, we'll have to create two separate input events: one for
  1572. // magnification and one for panning.
  1573. Ref<InputEventPanGesture> pg;
  1574. pg.instantiate();
  1575. pg->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1576. // Set all pressed modifiers.
  1577. pg->set_shift_pressed(ss->shift_pressed);
  1578. pg->set_ctrl_pressed(ss->ctrl_pressed);
  1579. pg->set_alt_pressed(ss->alt_pressed);
  1580. pg->set_meta_pressed(ss->meta_pressed);
  1581. pg->set_position(pd.position);
  1582. pg->set_delta(Vector2(wl_fixed_to_double(dx), wl_fixed_to_double(dy)));
  1583. Ref<InputEventMessage> pan_msg;
  1584. pan_msg.instantiate();
  1585. pan_msg->event = pg;
  1586. wayland_thread->push_message(magnify_msg);
  1587. wayland_thread->push_message(pan_msg);
  1588. ss->old_pinch_scale = scale;
  1589. }
  1590. }
  1591. void WaylandThread::_wp_pointer_gesture_pinch_on_end(void *data, struct zwp_pointer_gesture_pinch_v1 *zwp_pointer_gesture_pinch_v1, uint32_t serial, uint32_t time, int32_t cancelled) {
  1592. SeatState *ss = (SeatState *)data;
  1593. ERR_FAIL_NULL(ss);
  1594. ss->active_gesture = Gesture::NONE;
  1595. }
  1596. // NOTE: Don't forget to `memfree` the offer's state.
  1597. void WaylandThread::_wp_primary_selection_device_on_data_offer(void *data, struct zwp_primary_selection_device_v1 *wp_primary_selection_device_v1, struct zwp_primary_selection_offer_v1 *offer) {
  1598. wl_proxy_tag_godot((struct wl_proxy *)offer);
  1599. zwp_primary_selection_offer_v1_add_listener(offer, &wp_primary_selection_offer_listener, memnew(OfferState));
  1600. }
  1601. void WaylandThread::_wp_primary_selection_device_on_selection(void *data, struct zwp_primary_selection_device_v1 *wp_primary_selection_device_v1, struct zwp_primary_selection_offer_v1 *id) {
  1602. SeatState *ss = (SeatState *)data;
  1603. ERR_FAIL_NULL(ss);
  1604. if (ss->wp_primary_selection_offer) {
  1605. memfree(wp_primary_selection_offer_get_offer_state(ss->wp_primary_selection_offer));
  1606. zwp_primary_selection_offer_v1_destroy(ss->wp_primary_selection_offer);
  1607. }
  1608. ss->wp_primary_selection_offer = id;
  1609. }
  1610. void WaylandThread::_wp_primary_selection_offer_on_offer(void *data, struct zwp_primary_selection_offer_v1 *zwp_primary_selection_offer_v1, const char *mime_type) {
  1611. OfferState *os = (OfferState *)data;
  1612. ERR_FAIL_NULL(os);
  1613. if (os) {
  1614. os->mime_types.insert(String::utf8(mime_type));
  1615. }
  1616. }
  1617. void WaylandThread::_wp_primary_selection_source_on_send(void *data, struct zwp_primary_selection_source_v1 *wp_primary_selection_source_v1, const char *mime_type, int32_t fd) {
  1618. SeatState *ss = (SeatState *)data;
  1619. ERR_FAIL_NULL(ss);
  1620. Vector<uint8_t> *data_to_send = nullptr;
  1621. if (wp_primary_selection_source_v1 == ss->wp_primary_selection_source) {
  1622. data_to_send = &ss->primary_data;
  1623. DEBUG_LOG_WAYLAND_THREAD("Clipboard: requested primary selection.");
  1624. }
  1625. if (data_to_send) {
  1626. ssize_t written_bytes = 0;
  1627. if (strcmp(mime_type, "text/plain") == 0) {
  1628. written_bytes = write(fd, data_to_send->ptr(), data_to_send->size());
  1629. }
  1630. if (written_bytes > 0) {
  1631. DEBUG_LOG_WAYLAND_THREAD(vformat("Clipboard: sent %d bytes.", written_bytes));
  1632. } else if (written_bytes == 0) {
  1633. DEBUG_LOG_WAYLAND_THREAD("Clipboard: no bytes sent.");
  1634. } else {
  1635. ERR_PRINT(vformat("Clipboard: write error %d.", errno));
  1636. }
  1637. }
  1638. close(fd);
  1639. }
  1640. void WaylandThread::_wp_primary_selection_source_on_cancelled(void *data, struct zwp_primary_selection_source_v1 *wp_primary_selection_source_v1) {
  1641. SeatState *ss = (SeatState *)data;
  1642. ERR_FAIL_NULL(ss);
  1643. if (wp_primary_selection_source_v1 == ss->wp_primary_selection_source) {
  1644. zwp_primary_selection_source_v1_destroy(ss->wp_primary_selection_source);
  1645. ss->wp_primary_selection_source = nullptr;
  1646. ss->primary_data.clear();
  1647. DEBUG_LOG_WAYLAND_THREAD("Clipboard: primary selection set by another program.");
  1648. return;
  1649. }
  1650. }
  1651. void WaylandThread::_wp_tablet_seat_on_tablet_added(void *data, struct zwp_tablet_seat_v2 *zwp_tablet_seat_v2, struct zwp_tablet_v2 *id) {
  1652. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet seat %x on tablet %x added", (size_t)zwp_tablet_seat_v2, (size_t)id));
  1653. }
  1654. void WaylandThread::_wp_tablet_seat_on_tool_added(void *data, struct zwp_tablet_seat_v2 *zwp_tablet_seat_v2, struct zwp_tablet_tool_v2 *id) {
  1655. SeatState *ss = (SeatState *)data;
  1656. ERR_FAIL_NULL(ss);
  1657. ss->tablet_tools.push_back(id);
  1658. zwp_tablet_tool_v2_add_listener(id, &wp_tablet_tool_listener, ss);
  1659. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet seat %x on tool %x added", (size_t)zwp_tablet_seat_v2, (size_t)id));
  1660. }
  1661. void WaylandThread::_wp_tablet_seat_on_pad_added(void *data, struct zwp_tablet_seat_v2 *zwp_tablet_seat_v2, struct zwp_tablet_pad_v2 *id) {
  1662. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet seat %x on pad %x added", (size_t)zwp_tablet_seat_v2, (size_t)id));
  1663. }
  1664. void WaylandThread::_wp_tablet_tool_on_type(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t tool_type) {
  1665. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on type %d", (size_t)zwp_tablet_tool_v2, tool_type));
  1666. }
  1667. void WaylandThread::_wp_tablet_tool_on_hardware_serial(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t hardware_serial_hi, uint32_t hardware_serial_lo) {
  1668. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on hardware serial %x%x", (size_t)zwp_tablet_tool_v2, hardware_serial_hi, hardware_serial_lo));
  1669. }
  1670. void WaylandThread::_wp_tablet_tool_on_hardware_id_wacom(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t hardware_id_hi, uint32_t hardware_id_lo) {
  1671. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on hardware id wacom hardware id %x%x", (size_t)zwp_tablet_tool_v2, hardware_id_hi, hardware_id_lo));
  1672. }
  1673. void WaylandThread::_wp_tablet_tool_on_capability(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t capability) {
  1674. SeatState *ss = (SeatState *)data;
  1675. ERR_FAIL_NULL(ss);
  1676. if (capability == ZWP_TABLET_TOOL_V2_TYPE_ERASER) {
  1677. ss->tablet_tool_data_buffer.is_eraser = true;
  1678. }
  1679. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on capability %d", (size_t)zwp_tablet_tool_v2, capability));
  1680. }
  1681. void WaylandThread::_wp_tablet_tool_on_done(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2) {
  1682. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on done", (size_t)zwp_tablet_tool_v2));
  1683. }
  1684. void WaylandThread::_wp_tablet_tool_on_removed(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2) {
  1685. SeatState *ss = (SeatState *)data;
  1686. ERR_FAIL_NULL(ss);
  1687. List<struct zwp_tablet_tool_v2 *>::Element *it = ss->tablet_tools.front();
  1688. while (it) {
  1689. struct zwp_tablet_tool_v2 *tool = it->get();
  1690. if (tool == zwp_tablet_tool_v2) {
  1691. zwp_tablet_tool_v2_destroy(tool);
  1692. ss->tablet_tools.erase(it);
  1693. break;
  1694. }
  1695. }
  1696. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on removed", (size_t)zwp_tablet_tool_v2));
  1697. }
  1698. void WaylandThread::_wp_tablet_tool_on_proximity_in(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t serial, struct zwp_tablet_v2 *tablet, struct wl_surface *surface) {
  1699. SeatState *ss = (SeatState *)data;
  1700. ERR_FAIL_NULL(ss);
  1701. WaylandThread *wayland_thread = ss->wayland_thread;
  1702. ERR_FAIL_NULL(wayland_thread);
  1703. ss->tablet_tool_data_buffer.in_proximity = true;
  1704. ss->pointer_enter_serial = serial;
  1705. ss->pointed_surface = surface;
  1706. ss->last_pointed_surface = surface;
  1707. Ref<WindowEventMessage> msg;
  1708. msg.instantiate();
  1709. msg->event = DisplayServer::WINDOW_EVENT_MOUSE_ENTER;
  1710. wayland_thread->push_message(msg);
  1711. DEBUG_LOG_WAYLAND_THREAD("Tablet tool entered window.");
  1712. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on proximity in serial %d tablet %x surface %x", (size_t)zwp_tablet_tool_v2, serial, (size_t)tablet, (size_t)surface));
  1713. }
  1714. void WaylandThread::_wp_tablet_tool_on_proximity_out(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2) {
  1715. SeatState *ss = (SeatState *)data;
  1716. ERR_FAIL_NULL(ss);
  1717. WaylandThread *wayland_thread = ss->wayland_thread;
  1718. ERR_FAIL_NULL(wayland_thread);
  1719. ss->pointed_surface = nullptr;
  1720. ss->tablet_tool_data_buffer.in_proximity = false;
  1721. DEBUG_LOG_WAYLAND_THREAD("Tablet tool left window.");
  1722. Ref<WindowEventMessage> msg;
  1723. msg.instantiate();
  1724. msg->event = DisplayServer::WINDOW_EVENT_MOUSE_EXIT;
  1725. wayland_thread->push_message(msg);
  1726. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on proximity out", (size_t)zwp_tablet_tool_v2));
  1727. }
  1728. void WaylandThread::_wp_tablet_tool_on_down(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t serial) {
  1729. SeatState *ss = (SeatState *)data;
  1730. ERR_FAIL_NULL(ss);
  1731. TabletToolData &td = ss->tablet_tool_data_buffer;
  1732. td.touching = true;
  1733. td.pressed_button_mask.set_flag(mouse_button_to_mask(MouseButton::LEFT));
  1734. td.last_button_pressed = MouseButton::LEFT;
  1735. td.double_click_begun = true;
  1736. // The protocol doesn't cover this, but we can use this funky hack to make
  1737. // double clicking work.
  1738. td.button_time = OS::get_singleton()->get_ticks_msec();
  1739. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on down serial %x", (size_t)zwp_tablet_tool_v2, serial));
  1740. }
  1741. void WaylandThread::_wp_tablet_tool_on_up(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2) {
  1742. SeatState *ss = (SeatState *)data;
  1743. ERR_FAIL_NULL(ss);
  1744. TabletToolData &td = ss->tablet_tool_data_buffer;
  1745. td.touching = false;
  1746. td.pressed_button_mask.clear_flag(mouse_button_to_mask(MouseButton::LEFT));
  1747. // The protocol doesn't cover this, but we can use this funky hack to make
  1748. // double clicking work.
  1749. td.button_time = OS::get_singleton()->get_ticks_msec();
  1750. DEBUG_LOG_WAYLAND_THREAD(vformat("wp tablet tool %x on up", (size_t)zwp_tablet_tool_v2));
  1751. }
  1752. void WaylandThread::_wp_tablet_tool_on_motion(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, wl_fixed_t x, wl_fixed_t y) {
  1753. SeatState *ss = (SeatState *)data;
  1754. ERR_FAIL_NULL(ss);
  1755. WindowState *ws = wl_surface_get_window_state(ss->pointed_surface);
  1756. ERR_FAIL_NULL(ws);
  1757. double scale_factor = window_state_get_scale_factor(ws);
  1758. TabletToolData &td = ss->tablet_tool_data_buffer;
  1759. td.position = scale_vector2i(td.position, scale_factor);
  1760. }
  1761. void WaylandThread::_wp_tablet_tool_on_pressure(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t pressure) {
  1762. SeatState *ss = (SeatState *)data;
  1763. ERR_FAIL_NULL(ss);
  1764. ss->tablet_tool_data_buffer.pressure = pressure;
  1765. }
  1766. void WaylandThread::_wp_tablet_tool_on_distance(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t distance) {
  1767. // Unsupported
  1768. }
  1769. void WaylandThread::_wp_tablet_tool_on_tilt(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, wl_fixed_t tilt_x, wl_fixed_t tilt_y) {
  1770. SeatState *ss = (SeatState *)data;
  1771. ERR_FAIL_NULL(ss);
  1772. ss->tablet_tool_data_buffer.tilt.x = wl_fixed_to_double(tilt_x);
  1773. ss->tablet_tool_data_buffer.tilt.y = wl_fixed_to_double(tilt_y);
  1774. }
  1775. void WaylandThread::_wp_tablet_tool_on_rotation(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, wl_fixed_t degrees) {
  1776. // Unsupported.
  1777. }
  1778. void WaylandThread::_wp_tablet_tool_on_slider(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, int32_t position) {
  1779. // Unsupported.
  1780. }
  1781. void WaylandThread::_wp_tablet_tool_on_wheel(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, wl_fixed_t degrees, int32_t clicks) {
  1782. // TODO
  1783. }
  1784. void WaylandThread::_wp_tablet_tool_on_button(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t serial, uint32_t button, uint32_t state) {
  1785. SeatState *ss = (SeatState *)data;
  1786. ERR_FAIL_NULL(ss);
  1787. TabletToolData &td = ss->tablet_tool_data_buffer;
  1788. MouseButton mouse_button = MouseButton::NONE;
  1789. if (button == BTN_STYLUS) {
  1790. mouse_button = MouseButton::LEFT;
  1791. }
  1792. if (button == BTN_STYLUS2) {
  1793. mouse_button = MouseButton::RIGHT;
  1794. }
  1795. if (mouse_button != MouseButton::NONE) {
  1796. MouseButtonMask mask = mouse_button_to_mask(mouse_button);
  1797. if (state == ZWP_TABLET_TOOL_V2_BUTTON_STATE_PRESSED) {
  1798. td.pressed_button_mask.set_flag(mask);
  1799. td.last_button_pressed = mouse_button;
  1800. td.double_click_begun = true;
  1801. } else {
  1802. td.pressed_button_mask.clear_flag(mask);
  1803. }
  1804. // The protocol doesn't cover this, but we can use this funky hack to make
  1805. // double clicking work.
  1806. td.button_time = OS::get_singleton()->get_ticks_msec();
  1807. }
  1808. }
  1809. void WaylandThread::_wp_tablet_tool_on_frame(void *data, struct zwp_tablet_tool_v2 *zwp_tablet_tool_v2, uint32_t time) {
  1810. SeatState *ss = (SeatState *)data;
  1811. ERR_FAIL_NULL(ss);
  1812. WaylandThread *wayland_thread = ss->wayland_thread;
  1813. ERR_FAIL_NULL(wayland_thread);
  1814. TabletToolData &old_td = ss->tablet_tool_data;
  1815. TabletToolData &td = ss->tablet_tool_data_buffer;
  1816. if (old_td.position != td.position || old_td.tilt != td.tilt || old_td.pressure != td.pressure) {
  1817. Ref<InputEventMouseMotion> mm;
  1818. mm.instantiate();
  1819. mm->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1820. // Set all pressed modifiers.
  1821. mm->set_shift_pressed(ss->shift_pressed);
  1822. mm->set_ctrl_pressed(ss->ctrl_pressed);
  1823. mm->set_alt_pressed(ss->alt_pressed);
  1824. mm->set_meta_pressed(ss->meta_pressed);
  1825. mm->set_button_mask(td.pressed_button_mask);
  1826. mm->set_position(td.position);
  1827. mm->set_global_position(td.position);
  1828. // NOTE: The Godot API expects normalized values and we store them raw,
  1829. // straight from the compositor, so we have to normalize them here.
  1830. // According to the tablet proto spec, tilt is expressed in degrees relative
  1831. // to the Z axis of the tablet, so it shouldn't go over 90 degrees, I think.
  1832. // TODO: Investigate whether the tilt can go over 90 degrees (it shouldn't).
  1833. mm->set_tilt(td.tilt / 90);
  1834. // The tablet proto spec explicitly says that pressure is defined as a value
  1835. // between 0 to 65535.
  1836. mm->set_pressure(td.pressure / (float)65535);
  1837. // FIXME: Tool handling is broken.
  1838. mm->set_pen_inverted(td.is_eraser);
  1839. mm->set_relative(td.position - old_td.position);
  1840. mm->set_relative_screen_position(mm->get_relative());
  1841. // FIXME: Stop doing this to calculate speed.
  1842. // FIXME2: It has been done, port this from the pointer logic once this works again.
  1843. Input::get_singleton()->set_mouse_position(td.position);
  1844. mm->set_velocity(Input::get_singleton()->get_last_mouse_velocity());
  1845. mm->set_screen_velocity(mm->get_velocity());
  1846. Ref<InputEventMessage> inputev_msg;
  1847. inputev_msg.instantiate();
  1848. inputev_msg->event = mm;
  1849. wayland_thread->push_message(inputev_msg);
  1850. }
  1851. if (old_td.pressed_button_mask != td.pressed_button_mask) {
  1852. BitField<MouseButtonMask> pressed_mask_delta = BitField<MouseButtonMask>((int64_t)old_td.pressed_button_mask ^ (int64_t)td.pressed_button_mask);
  1853. for (MouseButton test_button : { MouseButton::LEFT, MouseButton::RIGHT }) {
  1854. MouseButtonMask test_button_mask = mouse_button_to_mask(test_button);
  1855. if (pressed_mask_delta.has_flag(test_button_mask)) {
  1856. Ref<InputEventMouseButton> mb;
  1857. mb.instantiate();
  1858. // Set all pressed modifiers.
  1859. mb->set_shift_pressed(ss->shift_pressed);
  1860. mb->set_ctrl_pressed(ss->ctrl_pressed);
  1861. mb->set_alt_pressed(ss->alt_pressed);
  1862. mb->set_meta_pressed(ss->meta_pressed);
  1863. mb->set_window_id(DisplayServer::MAIN_WINDOW_ID);
  1864. mb->set_position(td.position);
  1865. mb->set_global_position(td.position);
  1866. mb->set_button_mask(td.pressed_button_mask);
  1867. mb->set_button_index(test_button);
  1868. mb->set_pressed(td.pressed_button_mask.has_flag(test_button_mask));
  1869. // We have to set the last position pressed here as we can't take for
  1870. // granted what the individual events might have seen due to them not having
  1871. // a garaunteed order.
  1872. if (mb->is_pressed()) {
  1873. td.last_pressed_position = td.position;
  1874. }
  1875. if (old_td.double_click_begun && mb->is_pressed() && td.last_button_pressed == old_td.last_button_pressed && (td.button_time - old_td.button_time) < 400 && Vector2(td.last_pressed_position).distance_to(Vector2(old_td.last_pressed_position)) < 5) {
  1876. td.double_click_begun = false;
  1877. mb->set_double_click(true);
  1878. }
  1879. Ref<InputEventMessage> msg;
  1880. msg.instantiate();
  1881. msg->event = mb;
  1882. wayland_thread->push_message(msg);
  1883. }
  1884. }
  1885. }
  1886. old_td = td;
  1887. }
  1888. void WaylandThread::_xdg_activation_token_on_done(void *data, struct xdg_activation_token_v1 *xdg_activation_token, const char *token) {
  1889. WindowState *ws = (WindowState *)data;
  1890. ERR_FAIL_NULL(ws);
  1891. ERR_FAIL_NULL(ws->wayland_thread);
  1892. ERR_FAIL_NULL(ws->wl_surface);
  1893. xdg_activation_v1_activate(ws->wayland_thread->registry.xdg_activation, token, ws->wl_surface);
  1894. xdg_activation_token_v1_destroy(xdg_activation_token);
  1895. DEBUG_LOG_WAYLAND_THREAD(vformat("Received activation token and requested window activation."));
  1896. }
  1897. // NOTE: This must be started after a valid wl_display is loaded.
  1898. void WaylandThread::_poll_events_thread(void *p_data) {
  1899. ThreadData *data = (ThreadData *)p_data;
  1900. ERR_FAIL_NULL(data);
  1901. ERR_FAIL_NULL(data->wl_display);
  1902. struct pollfd poll_fd;
  1903. poll_fd.fd = wl_display_get_fd(data->wl_display);
  1904. poll_fd.events = POLLIN | POLLHUP;
  1905. while (true) {
  1906. // Empty the event queue while it's full.
  1907. while (wl_display_prepare_read(data->wl_display) != 0) {
  1908. // We aren't using wl_display_dispatch(), instead "manually" handling events
  1909. // through wl_display_dispatch_pending so that we can use a global mutex and
  1910. // be sure that this and the main thread won't race over stuff, as long as
  1911. // the main thread locks it too.
  1912. //
  1913. // Note that the main thread can still call wl_display_roundtrip as that
  1914. // method directly handles all events, effectively bypassing this polling
  1915. // loop and thus the mutex locking, avoiding a deadlock.
  1916. MutexLock mutex_lock(data->mutex);
  1917. if (wl_display_dispatch_pending(data->wl_display) == -1) {
  1918. // Oh no. We'll check and handle any display error below.
  1919. break;
  1920. }
  1921. }
  1922. int werror = wl_display_get_error(data->wl_display);
  1923. if (werror) {
  1924. if (werror == EPROTO) {
  1925. struct wl_interface *wl_interface = nullptr;
  1926. uint32_t id = 0;
  1927. int error_code = wl_display_get_protocol_error(data->wl_display, (const struct wl_interface **)&wl_interface, &id);
  1928. CRASH_NOW_MSG(vformat("Wayland protocol error %d on interface %s@%d.", error_code, wl_interface ? wl_interface->name : "unknown", id));
  1929. } else {
  1930. CRASH_NOW_MSG(vformat("Wayland client error code %d.", werror));
  1931. }
  1932. }
  1933. wl_display_flush(data->wl_display);
  1934. // Wait for the event file descriptor to have new data.
  1935. poll(&poll_fd, 1, -1);
  1936. if (data->thread_done.is_set()) {
  1937. wl_display_cancel_read(data->wl_display);
  1938. break;
  1939. }
  1940. if (poll_fd.revents | POLLIN) {
  1941. // Load the queues with fresh new data.
  1942. wl_display_read_events(data->wl_display);
  1943. } else {
  1944. // Oh well... Stop signaling that we want to read.
  1945. wl_display_cancel_read(data->wl_display);
  1946. }
  1947. // The docs advise to redispatch unconditionally and it looks like that if we
  1948. // don't do this we can't catch protocol errors, which is bad.
  1949. MutexLock mutex_lock(data->mutex);
  1950. wl_display_dispatch_pending(data->wl_display);
  1951. }
  1952. }
  1953. struct wl_display *WaylandThread::get_wl_display() const {
  1954. return wl_display;
  1955. }
  1956. // NOTE: Stuff like libdecor can (and will) register foreign proxies which
  1957. // aren't formatted as we like. This method is needed to detect whether a proxy
  1958. // has our tag. Also, be careful! The proxy has to be manually tagged or it
  1959. // won't be recognized.
  1960. bool WaylandThread::wl_proxy_is_godot(struct wl_proxy *p_proxy) {
  1961. ERR_FAIL_NULL_V(p_proxy, false);
  1962. return wl_proxy_get_tag(p_proxy) == &proxy_tag;
  1963. }
  1964. void WaylandThread::wl_proxy_tag_godot(struct wl_proxy *p_proxy) {
  1965. ERR_FAIL_NULL(p_proxy);
  1966. wl_proxy_set_tag(p_proxy, &proxy_tag);
  1967. }
  1968. // Returns the wl_surface's `WindowState`, otherwise `nullptr`.
  1969. // NOTE: This will fail if the surface isn't tagged as ours.
  1970. WaylandThread::WindowState *WaylandThread::wl_surface_get_window_state(struct wl_surface *p_surface) {
  1971. if (p_surface && wl_proxy_is_godot((wl_proxy *)p_surface)) {
  1972. return (WindowState *)wl_surface_get_user_data(p_surface);
  1973. }
  1974. return nullptr;
  1975. }
  1976. // Returns the wl_outputs's `ScreenState`, otherwise `nullptr`.
  1977. // NOTE: This will fail if the output isn't tagged as ours.
  1978. WaylandThread::ScreenState *WaylandThread::wl_output_get_screen_state(struct wl_output *p_output) {
  1979. if (p_output && wl_proxy_is_godot((wl_proxy *)p_output)) {
  1980. return (ScreenState *)wl_output_get_user_data(p_output);
  1981. }
  1982. return nullptr;
  1983. }
  1984. // Returns the wl_seat's `SeatState`, otherwise `nullptr`.
  1985. // NOTE: This will fail if the output isn't tagged as ours.
  1986. WaylandThread::SeatState *WaylandThread::wl_seat_get_seat_state(struct wl_seat *p_seat) {
  1987. if (p_seat && wl_proxy_is_godot((wl_proxy *)p_seat)) {
  1988. return (SeatState *)wl_seat_get_user_data(p_seat);
  1989. }
  1990. return nullptr;
  1991. }
  1992. // Returns the wl_data_offer's `OfferState`, otherwise `nullptr`.
  1993. // NOTE: This will fail if the output isn't tagged as ours.
  1994. WaylandThread::OfferState *WaylandThread::wl_data_offer_get_offer_state(struct wl_data_offer *p_offer) {
  1995. if (p_offer && wl_proxy_is_godot((wl_proxy *)p_offer)) {
  1996. return (OfferState *)wl_data_offer_get_user_data(p_offer);
  1997. }
  1998. return nullptr;
  1999. }
  2000. // Returns the wl_data_offer's `OfferState`, otherwise `nullptr`.
  2001. // NOTE: This will fail if the output isn't tagged as ours.
  2002. WaylandThread::OfferState *WaylandThread::wp_primary_selection_offer_get_offer_state(struct zwp_primary_selection_offer_v1 *p_offer) {
  2003. if (p_offer && wl_proxy_is_godot((wl_proxy *)p_offer)) {
  2004. return (OfferState *)zwp_primary_selection_offer_v1_get_user_data(p_offer);
  2005. }
  2006. return nullptr;
  2007. }
  2008. // This is implemented as a method because this is the simplest way of
  2009. // accounting for dynamic output scale changes.
  2010. int WaylandThread::window_state_get_preferred_buffer_scale(WindowState *p_ws) {
  2011. ERR_FAIL_NULL_V(p_ws, 1);
  2012. if (p_ws->preferred_fractional_scale > 0) {
  2013. // We're scaling fractionally. Per spec, the buffer scale is always 1.
  2014. return 1;
  2015. }
  2016. if (p_ws->wl_outputs.is_empty()) {
  2017. DEBUG_LOG_WAYLAND_THREAD("Window has no output associated, returning buffer scale of 1.");
  2018. return 1;
  2019. }
  2020. // TODO: Cache value?
  2021. int max_size = 1;
  2022. // ================================ IMPORTANT =================================
  2023. // NOTE: Due to a Godot limitation, we can't really rescale the whole UI yet.
  2024. // Because of this reason, all platforms have resorted to forcing the highest
  2025. // scale possible of a system on any window, despite of what screen it's onto.
  2026. // On this backend everything's already in place for dynamic window scale
  2027. // handling, but in the meantime we'll just select the biggest _global_ output.
  2028. // To restore dynamic scale selection, simply iterate over `p_ws->wl_outputs`
  2029. // instead.
  2030. for (struct wl_output *wl_output : p_ws->registry->wl_outputs) {
  2031. ScreenState *ss = wl_output_get_screen_state(wl_output);
  2032. if (ss && ss->pending_data.scale > max_size) {
  2033. // NOTE: For some mystical reason, wl_output.done is emitted _after_ windows
  2034. // get resized but the scale event gets sent _before_ that. I'm still leaning
  2035. // towards the idea that rescaling when a window gets a resolution change is a
  2036. // pretty good approach, but this means that we'll have to use the screen data
  2037. // before it's "committed".
  2038. // FIXME: Use the committed data. Somehow.
  2039. max_size = ss->pending_data.scale;
  2040. }
  2041. }
  2042. return max_size;
  2043. }
  2044. double WaylandThread::window_state_get_scale_factor(WindowState *p_ws) {
  2045. ERR_FAIL_NULL_V(p_ws, 1);
  2046. if (p_ws->fractional_scale > 0) {
  2047. // The fractional scale amount takes priority.
  2048. return p_ws->fractional_scale;
  2049. }
  2050. return p_ws->buffer_scale;
  2051. }
  2052. void WaylandThread::window_state_update_size(WindowState *p_ws, int p_width, int p_height) {
  2053. ERR_FAIL_NULL(p_ws);
  2054. int preferred_buffer_scale = window_state_get_preferred_buffer_scale(p_ws);
  2055. bool using_fractional = p_ws->preferred_fractional_scale > 0;
  2056. // If neither is true we no-op.
  2057. bool scale_changed = false;
  2058. bool size_changed = false;
  2059. if (p_ws->rect.size.width != p_width || p_ws->rect.size.height != p_height) {
  2060. p_ws->rect.size.width = p_width;
  2061. p_ws->rect.size.height = p_height;
  2062. size_changed = true;
  2063. }
  2064. if (using_fractional && p_ws->fractional_scale != p_ws->preferred_fractional_scale) {
  2065. p_ws->fractional_scale = p_ws->preferred_fractional_scale;
  2066. scale_changed = true;
  2067. }
  2068. if (p_ws->buffer_scale != preferred_buffer_scale) {
  2069. // The buffer scale is always important, even if we use frac scaling.
  2070. p_ws->buffer_scale = preferred_buffer_scale;
  2071. p_ws->buffer_scale_changed = true;
  2072. if (!using_fractional) {
  2073. // We don't bother updating everything else if it's turned on though.
  2074. scale_changed = true;
  2075. }
  2076. }
  2077. if (p_ws->wl_surface && (size_changed || scale_changed)) {
  2078. if (p_ws->wp_viewport) {
  2079. wp_viewport_set_destination(p_ws->wp_viewport, p_width, p_height);
  2080. }
  2081. if (p_ws->xdg_surface) {
  2082. xdg_surface_set_window_geometry(p_ws->xdg_surface, 0, 0, p_width, p_height);
  2083. }
  2084. }
  2085. #ifdef LIBDECOR_ENABLED
  2086. if (p_ws->libdecor_frame) {
  2087. struct libdecor_state *state = libdecor_state_new(p_width, p_height);
  2088. libdecor_frame_commit(p_ws->libdecor_frame, state, p_ws->pending_libdecor_configuration);
  2089. libdecor_state_free(state);
  2090. p_ws->pending_libdecor_configuration = nullptr;
  2091. }
  2092. #endif
  2093. if (size_changed || scale_changed) {
  2094. Size2i scaled_size = scale_vector2i(p_ws->rect.size, window_state_get_scale_factor(p_ws));
  2095. if (using_fractional) {
  2096. DEBUG_LOG_WAYLAND_THREAD(vformat("Resizing the window from %s to %s (fractional scale x%f).", p_ws->rect.size, scaled_size, p_ws->fractional_scale));
  2097. } else {
  2098. DEBUG_LOG_WAYLAND_THREAD(vformat("Resizing the window from %s to %s (buffer scale x%d).", p_ws->rect.size, scaled_size, p_ws->buffer_scale));
  2099. }
  2100. // FIXME: Actually resize the hint instead of centering it.
  2101. p_ws->wayland_thread->pointer_set_hint(scaled_size / 2);
  2102. Ref<WindowRectMessage> rect_msg;
  2103. rect_msg.instantiate();
  2104. rect_msg->rect = p_ws->rect;
  2105. rect_msg->rect.size = scaled_size;
  2106. p_ws->wayland_thread->push_message(rect_msg);
  2107. }
  2108. if (scale_changed) {
  2109. Ref<WindowEventMessage> dpi_msg;
  2110. dpi_msg.instantiate();
  2111. dpi_msg->event = DisplayServer::WINDOW_EVENT_DPI_CHANGE;
  2112. p_ws->wayland_thread->push_message(dpi_msg);
  2113. }
  2114. }
  2115. // Scales a vector according to wp_fractional_scale's rules, where coordinates
  2116. // must be scaled with away from zero half-rounding.
  2117. Vector2i WaylandThread::scale_vector2i(const Vector2i &p_vector, double p_amount) {
  2118. // This snippet is tiny, I know, but this is done a lot.
  2119. int x = round(p_vector.x * p_amount);
  2120. int y = round(p_vector.y * p_amount);
  2121. return Vector2i(x, y);
  2122. }
  2123. void WaylandThread::seat_state_unlock_pointer(SeatState *p_ss) {
  2124. ERR_FAIL_NULL(p_ss);
  2125. if (p_ss->wl_pointer == nullptr) {
  2126. return;
  2127. }
  2128. if (p_ss->wp_locked_pointer) {
  2129. zwp_locked_pointer_v1_destroy(p_ss->wp_locked_pointer);
  2130. p_ss->wp_locked_pointer = nullptr;
  2131. }
  2132. if (p_ss->wp_confined_pointer) {
  2133. zwp_confined_pointer_v1_destroy(p_ss->wp_confined_pointer);
  2134. p_ss->wp_confined_pointer = nullptr;
  2135. }
  2136. }
  2137. void WaylandThread::seat_state_lock_pointer(SeatState *p_ss) {
  2138. ERR_FAIL_NULL(p_ss);
  2139. if (p_ss->wl_pointer == nullptr) {
  2140. return;
  2141. }
  2142. if (registry.wp_pointer_constraints == nullptr) {
  2143. return;
  2144. }
  2145. if (p_ss->wp_locked_pointer == nullptr) {
  2146. struct wl_surface *locked_surface = p_ss->last_pointed_surface;
  2147. if (locked_surface == nullptr) {
  2148. locked_surface = window_get_wl_surface(DisplayServer::MAIN_WINDOW_ID);
  2149. }
  2150. ERR_FAIL_NULL(locked_surface);
  2151. p_ss->wp_locked_pointer = zwp_pointer_constraints_v1_lock_pointer(registry.wp_pointer_constraints, locked_surface, p_ss->wl_pointer, NULL, ZWP_POINTER_CONSTRAINTS_V1_LIFETIME_PERSISTENT);
  2152. }
  2153. }
  2154. void WaylandThread::seat_state_set_hint(SeatState *p_ss, int p_x, int p_y) {
  2155. if (p_ss->wp_locked_pointer == nullptr) {
  2156. return;
  2157. }
  2158. zwp_locked_pointer_v1_set_cursor_position_hint(p_ss->wp_locked_pointer, wl_fixed_from_int(p_x), wl_fixed_from_int(p_y));
  2159. }
  2160. void WaylandThread::seat_state_confine_pointer(SeatState *p_ss) {
  2161. ERR_FAIL_NULL(p_ss);
  2162. if (p_ss->wl_pointer == nullptr) {
  2163. return;
  2164. }
  2165. if (registry.wp_pointer_constraints == nullptr) {
  2166. return;
  2167. }
  2168. if (p_ss->wp_confined_pointer == nullptr) {
  2169. struct wl_surface *confined_surface = p_ss->last_pointed_surface;
  2170. if (confined_surface == nullptr) {
  2171. confined_surface = window_get_wl_surface(DisplayServer::MAIN_WINDOW_ID);
  2172. }
  2173. ERR_FAIL_NULL(confined_surface);
  2174. p_ss->wp_confined_pointer = zwp_pointer_constraints_v1_confine_pointer(registry.wp_pointer_constraints, confined_surface, p_ss->wl_pointer, NULL, ZWP_POINTER_CONSTRAINTS_V1_LIFETIME_PERSISTENT);
  2175. }
  2176. }
  2177. void WaylandThread::seat_state_update_cursor(SeatState *p_ss) {
  2178. ERR_FAIL_NULL(p_ss);
  2179. ERR_FAIL_NULL(p_ss->wayland_thread);
  2180. if (p_ss->wl_pointer && p_ss->cursor_surface) {
  2181. // NOTE: Those values are valid by default and will hide the cursor when
  2182. // unchanged, which happens when both the current custom cursor and the
  2183. // current wl_cursor are `nullptr`.
  2184. struct wl_buffer *cursor_buffer = nullptr;
  2185. uint32_t hotspot_x = 0;
  2186. uint32_t hotspot_y = 0;
  2187. int scale = 1;
  2188. CustomCursor *custom_cursor = p_ss->wayland_thread->current_custom_cursor;
  2189. struct wl_cursor *wl_cursor = p_ss->wayland_thread->current_wl_cursor;
  2190. if (custom_cursor) {
  2191. cursor_buffer = custom_cursor->wl_buffer;
  2192. hotspot_x = custom_cursor->hotspot.x;
  2193. hotspot_y = custom_cursor->hotspot.y;
  2194. // We can't really reasonably scale custom cursors, so we'll let the
  2195. // compositor do it for us (badly).
  2196. scale = 1;
  2197. } else if (wl_cursor) {
  2198. int frame_idx = wl_cursor_frame(wl_cursor, p_ss->cursor_time_ms);
  2199. struct wl_cursor_image *wl_cursor_image = wl_cursor->images[frame_idx];
  2200. scale = p_ss->wayland_thread->cursor_scale;
  2201. cursor_buffer = wl_cursor_image_get_buffer(wl_cursor_image);
  2202. // As the surface's buffer is scaled (thus the surface is smaller) and the
  2203. // hotspot must be expressed in surface-local coordinates, we need to scale
  2204. // them down accordingly.
  2205. hotspot_x = wl_cursor_image->hotspot_x / scale;
  2206. hotspot_y = wl_cursor_image->hotspot_y / scale;
  2207. }
  2208. wl_pointer_set_cursor(p_ss->wl_pointer, p_ss->pointer_enter_serial, p_ss->cursor_surface, hotspot_x, hotspot_y);
  2209. wl_surface_set_buffer_scale(p_ss->cursor_surface, scale);
  2210. wl_surface_attach(p_ss->cursor_surface, cursor_buffer, 0, 0);
  2211. wl_surface_damage_buffer(p_ss->cursor_surface, 0, 0, INT_MAX, INT_MAX);
  2212. wl_surface_commit(p_ss->cursor_surface);
  2213. }
  2214. }
  2215. void WaylandThread::seat_state_echo_keys(SeatState *p_ss) {
  2216. ERR_FAIL_NULL(p_ss);
  2217. if (p_ss->wl_keyboard == nullptr) {
  2218. return;
  2219. }
  2220. // TODO: Comment and document out properly this block of code.
  2221. // In short, this implements key repeating.
  2222. if (p_ss->repeat_key_delay_msec && p_ss->repeating_keycode != XKB_KEYCODE_INVALID) {
  2223. uint64_t current_ticks = OS::get_singleton()->get_ticks_msec();
  2224. uint64_t delayed_start_ticks = p_ss->last_repeat_start_msec + p_ss->repeat_start_delay_msec;
  2225. if (p_ss->last_repeat_msec < delayed_start_ticks) {
  2226. p_ss->last_repeat_msec = delayed_start_ticks;
  2227. }
  2228. if (current_ticks >= delayed_start_ticks) {
  2229. uint64_t ticks_delta = current_ticks - p_ss->last_repeat_msec;
  2230. int keys_amount = (ticks_delta / p_ss->repeat_key_delay_msec);
  2231. for (int i = 0; i < keys_amount; i++) {
  2232. Ref<InputEventKey> k;
  2233. k.instantiate();
  2234. if (!_seat_state_configure_key_event(*p_ss, k, p_ss->repeating_keycode, true)) {
  2235. continue;
  2236. }
  2237. k->set_echo(true);
  2238. Input::get_singleton()->parse_input_event(k);
  2239. }
  2240. p_ss->last_repeat_msec += ticks_delta - (ticks_delta % p_ss->repeat_key_delay_msec);
  2241. }
  2242. }
  2243. }
  2244. void WaylandThread::push_message(Ref<Message> message) {
  2245. messages.push_back(message);
  2246. }
  2247. bool WaylandThread::has_message() {
  2248. return messages.front() != nullptr;
  2249. }
  2250. Ref<WaylandThread::Message> WaylandThread::pop_message() {
  2251. if (messages.front() != nullptr) {
  2252. Ref<Message> msg = messages.front()->get();
  2253. messages.pop_front();
  2254. return msg;
  2255. }
  2256. // This method should only be called if `has_messages` returns true but if
  2257. // that isn't the case we'll just return an invalid `Ref`. After all, due to
  2258. // its `InputEvent`-like interface, we still have to dynamically cast and check
  2259. // the `Ref`'s validity anyways.
  2260. return Ref<Message>();
  2261. }
  2262. void WaylandThread::window_create(DisplayServer::WindowID p_window_id, int p_width, int p_height) {
  2263. // TODO: Implement multi-window support.
  2264. WindowState &ws = main_window;
  2265. ws.registry = &registry;
  2266. ws.wayland_thread = this;
  2267. ws.rect.size.width = p_width;
  2268. ws.rect.size.height = p_height;
  2269. ws.wl_surface = wl_compositor_create_surface(registry.wl_compositor);
  2270. wl_proxy_tag_godot((struct wl_proxy *)ws.wl_surface);
  2271. wl_surface_add_listener(ws.wl_surface, &wl_surface_listener, &ws);
  2272. if (registry.wp_viewporter) {
  2273. ws.wp_viewport = wp_viewporter_get_viewport(registry.wp_viewporter, ws.wl_surface);
  2274. if (registry.wp_fractional_scale_manager) {
  2275. ws.wp_fractional_scale = wp_fractional_scale_manager_v1_get_fractional_scale(registry.wp_fractional_scale_manager, ws.wl_surface);
  2276. wp_fractional_scale_v1_add_listener(ws.wp_fractional_scale, &wp_fractional_scale_listener, &ws);
  2277. }
  2278. }
  2279. bool decorated = false;
  2280. #ifdef LIBDECOR_ENABLED
  2281. if (!decorated && libdecor_context) {
  2282. ws.libdecor_frame = libdecor_decorate(libdecor_context, ws.wl_surface, (struct libdecor_frame_interface *)&libdecor_frame_interface, &ws);
  2283. libdecor_frame_map(ws.libdecor_frame);
  2284. decorated = true;
  2285. }
  2286. #endif
  2287. if (!decorated) {
  2288. // libdecor has failed loading or is disabled, we shall handle xdg_toplevel
  2289. // creation and decoration ourselves (and by decorating for now I just mean
  2290. // asking for SSDs and hoping for the best).
  2291. ws.xdg_surface = xdg_wm_base_get_xdg_surface(registry.xdg_wm_base, ws.wl_surface);
  2292. xdg_surface_add_listener(ws.xdg_surface, &xdg_surface_listener, &ws);
  2293. ws.xdg_toplevel = xdg_surface_get_toplevel(ws.xdg_surface);
  2294. xdg_toplevel_add_listener(ws.xdg_toplevel, &xdg_toplevel_listener, &ws);
  2295. if (registry.xdg_decoration_manager) {
  2296. ws.xdg_toplevel_decoration = zxdg_decoration_manager_v1_get_toplevel_decoration(registry.xdg_decoration_manager, ws.xdg_toplevel);
  2297. zxdg_toplevel_decoration_v1_add_listener(ws.xdg_toplevel_decoration, &xdg_toplevel_decoration_listener, &ws);
  2298. decorated = true;
  2299. }
  2300. }
  2301. ws.frame_callback = wl_surface_frame(ws.wl_surface);
  2302. wl_callback_add_listener(ws.frame_callback, &frame_wl_callback_listener, &ws);
  2303. // NOTE: This commit is only called once to start the whole frame callback
  2304. // "loop".
  2305. wl_surface_commit(ws.wl_surface);
  2306. if (registry.wl_exporter) {
  2307. ws.xdg_exported = zxdg_exporter_v1_export(registry.wl_exporter, ws.wl_surface);
  2308. zxdg_exported_v1_add_listener(ws.xdg_exported, &xdg_exported_listener, &ws);
  2309. }
  2310. // Wait for the surface to be configured before continuing.
  2311. wl_display_roundtrip(wl_display);
  2312. }
  2313. struct wl_surface *WaylandThread::window_get_wl_surface(DisplayServer::WindowID p_window_id) const {
  2314. // TODO: Use window IDs for multiwindow support.
  2315. const WindowState &ws = main_window;
  2316. return ws.wl_surface;
  2317. }
  2318. void WaylandThread::window_set_max_size(DisplayServer::WindowID p_window_id, const Size2i &p_size) {
  2319. // TODO: Use window IDs for multiwindow support.
  2320. WindowState &ws = main_window;
  2321. Vector2i logical_max_size = p_size / window_state_get_scale_factor(&ws);
  2322. if (ws.wl_surface && ws.xdg_toplevel) {
  2323. xdg_toplevel_set_max_size(ws.xdg_toplevel, logical_max_size.width, logical_max_size.height);
  2324. }
  2325. #ifdef LIBDECOR_ENABLED
  2326. if (ws.libdecor_frame) {
  2327. libdecor_frame_set_max_content_size(ws.libdecor_frame, logical_max_size.width, logical_max_size.height);
  2328. }
  2329. // FIXME: I'm not sure whether we have to commit the surface for this to apply.
  2330. #endif
  2331. }
  2332. void WaylandThread::window_set_min_size(DisplayServer::WindowID p_window_id, const Size2i &p_size) {
  2333. // TODO: Use window IDs for multiwindow support.
  2334. WindowState &ws = main_window;
  2335. Size2i logical_min_size = p_size / window_state_get_scale_factor(&ws);
  2336. if (ws.wl_surface && ws.xdg_toplevel) {
  2337. xdg_toplevel_set_min_size(ws.xdg_toplevel, logical_min_size.width, logical_min_size.height);
  2338. }
  2339. #ifdef LIBDECOR_ENABLED
  2340. if (ws.libdecor_frame) {
  2341. libdecor_frame_set_min_content_size(ws.libdecor_frame, logical_min_size.width, logical_min_size.height);
  2342. }
  2343. // FIXME: I'm not sure whether we have to commit the surface for this to apply.
  2344. #endif
  2345. }
  2346. bool WaylandThread::window_can_set_mode(DisplayServer::WindowID p_window_id, DisplayServer::WindowMode p_window_mode) const {
  2347. // TODO: Use window IDs for multiwindow support.
  2348. const WindowState &ws = main_window;
  2349. switch (p_window_mode) {
  2350. case DisplayServer::WINDOW_MODE_WINDOWED: {
  2351. // Looks like it's guaranteed.
  2352. return true;
  2353. };
  2354. case DisplayServer::WINDOW_MODE_MINIMIZED: {
  2355. #ifdef LIBDECOR_ENABLED
  2356. if (ws.libdecor_frame) {
  2357. return libdecor_frame_has_capability(ws.libdecor_frame, LIBDECOR_ACTION_MINIMIZE);
  2358. }
  2359. #endif // LIBDECOR_ENABLED
  2360. return ws.can_minimize;
  2361. };
  2362. case DisplayServer::WINDOW_MODE_MAXIMIZED: {
  2363. // NOTE: libdecor doesn't seem to have a maximize capability query?
  2364. // The fact that there's a fullscreen one makes me suspicious.
  2365. return ws.can_maximize;
  2366. };
  2367. case DisplayServer::WINDOW_MODE_FULLSCREEN: {
  2368. #ifdef LIBDECOR_ENABLED
  2369. if (ws.libdecor_frame) {
  2370. return libdecor_frame_has_capability(ws.libdecor_frame, LIBDECOR_ACTION_FULLSCREEN);
  2371. }
  2372. #endif // LIBDECOR_ENABLED
  2373. return ws.can_fullscreen;
  2374. };
  2375. case DisplayServer::WINDOW_MODE_EXCLUSIVE_FULLSCREEN: {
  2376. // I'm not really sure but from what I can find Wayland doesn't really have
  2377. // the concept of exclusive fullscreen.
  2378. // TODO: Discuss whether to fallback to regular fullscreen or not.
  2379. return false;
  2380. };
  2381. }
  2382. return false;
  2383. }
  2384. void WaylandThread::window_try_set_mode(DisplayServer::WindowID p_window_id, DisplayServer::WindowMode p_window_mode) {
  2385. // TODO: Use window IDs for multiwindow support.
  2386. WindowState &ws = main_window;
  2387. if (ws.mode == p_window_mode) {
  2388. return;
  2389. }
  2390. // Don't waste time with hidden windows and whatnot. Behave like it worked.
  2391. #ifdef LIBDECOR_ENABLED
  2392. if ((!ws.wl_surface || !ws.xdg_toplevel) && !ws.libdecor_frame) {
  2393. #else
  2394. if (!ws.wl_surface || !ws.xdg_toplevel) {
  2395. #endif // LIBDECOR_ENABLED
  2396. ws.mode = p_window_mode;
  2397. return;
  2398. }
  2399. // Return back to a windowed state so that we can apply what the user asked.
  2400. switch (ws.mode) {
  2401. case DisplayServer::WINDOW_MODE_WINDOWED: {
  2402. // Do nothing.
  2403. } break;
  2404. case DisplayServer::WINDOW_MODE_MINIMIZED: {
  2405. // We can't do much according to the xdg_shell protocol. I have no idea
  2406. // whether this implies that we should return or who knows what. For now
  2407. // we'll do nothing.
  2408. // TODO: Test this properly.
  2409. } break;
  2410. case DisplayServer::WINDOW_MODE_MAXIMIZED: {
  2411. // Try to unmaximize. This isn't garaunteed to work actually, so we'll have
  2412. // to check whether something changed.
  2413. if (ws.xdg_toplevel) {
  2414. xdg_toplevel_unset_maximized(ws.xdg_toplevel);
  2415. }
  2416. #ifdef LIBDECOR_ENABLED
  2417. if (ws.libdecor_frame) {
  2418. libdecor_frame_unset_maximized(ws.libdecor_frame);
  2419. }
  2420. #endif // LIBDECOR_ENABLED
  2421. } break;
  2422. case DisplayServer::WINDOW_MODE_FULLSCREEN:
  2423. case DisplayServer::WINDOW_MODE_EXCLUSIVE_FULLSCREEN: {
  2424. // Same thing as above, unset fullscreen and check later if it worked.
  2425. if (ws.xdg_toplevel) {
  2426. xdg_toplevel_unset_fullscreen(ws.xdg_toplevel);
  2427. }
  2428. #ifdef LIBDECOR_ENABLED
  2429. if (ws.libdecor_frame) {
  2430. libdecor_frame_unset_fullscreen(ws.libdecor_frame);
  2431. }
  2432. #endif // LIBDECOR_ENABLED
  2433. } break;
  2434. }
  2435. // Wait for a configure event and hope that something changed.
  2436. wl_display_roundtrip(wl_display);
  2437. if (ws.mode != DisplayServer::WINDOW_MODE_WINDOWED) {
  2438. // The compositor refused our "normalization" request. It'd be useless or
  2439. // unpredictable to attempt setting a new state. We're done.
  2440. return;
  2441. }
  2442. // Ask the compositor to set the state indicated by the new mode.
  2443. switch (p_window_mode) {
  2444. case DisplayServer::WINDOW_MODE_WINDOWED: {
  2445. // Do nothing. We're already windowed.
  2446. } break;
  2447. case DisplayServer::WINDOW_MODE_MINIMIZED: {
  2448. if (!window_can_set_mode(p_window_id, p_window_mode)) {
  2449. // Minimization is special (read below). Better not mess with it if the
  2450. // compositor explicitly announces that it doesn't support it.
  2451. break;
  2452. }
  2453. if (ws.xdg_toplevel) {
  2454. xdg_toplevel_set_minimized(ws.xdg_toplevel);
  2455. }
  2456. #ifdef LIBDECOR_ENABLED
  2457. if (ws.libdecor_frame) {
  2458. libdecor_frame_set_minimized(ws.libdecor_frame);
  2459. }
  2460. #endif // LIBDECOR_ENABLED
  2461. // We have no way to actually detect this state, so we'll have to report it
  2462. // manually to the engine (hoping that it worked). In the worst case it'll
  2463. // get reset by the next configure event.
  2464. ws.mode = DisplayServer::WINDOW_MODE_MINIMIZED;
  2465. } break;
  2466. case DisplayServer::WINDOW_MODE_MAXIMIZED: {
  2467. if (ws.xdg_toplevel) {
  2468. xdg_toplevel_set_maximized(ws.xdg_toplevel);
  2469. }
  2470. #ifdef LIBDECOR_ENABLED
  2471. if (ws.libdecor_frame) {
  2472. libdecor_frame_set_maximized(ws.libdecor_frame);
  2473. }
  2474. #endif // LIBDECOR_ENABLED
  2475. } break;
  2476. case DisplayServer::WINDOW_MODE_FULLSCREEN: {
  2477. if (ws.xdg_toplevel) {
  2478. xdg_toplevel_set_fullscreen(ws.xdg_toplevel, nullptr);
  2479. }
  2480. #ifdef LIBDECOR_ENABLED
  2481. if (ws.libdecor_frame) {
  2482. libdecor_frame_set_fullscreen(ws.libdecor_frame, nullptr);
  2483. }
  2484. #endif // LIBDECOR_ENABLED
  2485. } break;
  2486. default: {
  2487. } break;
  2488. }
  2489. }
  2490. void WaylandThread::window_set_borderless(DisplayServer::WindowID p_window_id, bool p_borderless) {
  2491. // TODO: Use window IDs for multiwindow support.
  2492. WindowState &ws = main_window;
  2493. if (ws.xdg_toplevel_decoration) {
  2494. if (p_borderless) {
  2495. // We implement borderless windows by simply asking the compositor to let
  2496. // us handle decorations (we don't).
  2497. zxdg_toplevel_decoration_v1_set_mode(ws.xdg_toplevel_decoration, ZXDG_TOPLEVEL_DECORATION_V1_MODE_CLIENT_SIDE);
  2498. } else {
  2499. zxdg_toplevel_decoration_v1_set_mode(ws.xdg_toplevel_decoration, ZXDG_TOPLEVEL_DECORATION_V1_MODE_SERVER_SIDE);
  2500. }
  2501. }
  2502. #ifdef LIBDECOR_ENABLED
  2503. if (ws.libdecor_frame) {
  2504. bool visible_current = libdecor_frame_is_visible(ws.libdecor_frame);
  2505. bool visible_target = !p_borderless;
  2506. // NOTE: We have to do this otherwise we trip on a libdecor bug where it's
  2507. // possible to destroy the frame more than once, by setting the visibility
  2508. // to false multiple times and thus crashing.
  2509. if (visible_current != visible_target) {
  2510. print_verbose(vformat("Setting libdecor frame visibility to %d", visible_target));
  2511. libdecor_frame_set_visibility(ws.libdecor_frame, visible_target);
  2512. }
  2513. }
  2514. #endif // LIBDECOR_ENABLED
  2515. }
  2516. void WaylandThread::window_set_title(DisplayServer::WindowID p_window_id, const String &p_title) {
  2517. // TODO: Use window IDs for multiwindow support.
  2518. WindowState &ws = main_window;
  2519. #ifdef LIBDECOR_ENABLED
  2520. if (ws.libdecor_frame) {
  2521. libdecor_frame_set_title(ws.libdecor_frame, p_title.utf8());
  2522. }
  2523. #endif // LIBDECOR_ENABLE
  2524. if (ws.xdg_toplevel) {
  2525. xdg_toplevel_set_title(ws.xdg_toplevel, p_title.utf8());
  2526. }
  2527. }
  2528. void WaylandThread::window_set_app_id(DisplayServer::WindowID p_window_id, const String &p_app_id) {
  2529. // TODO: Use window IDs for multiwindow support.
  2530. WindowState &ws = main_window;
  2531. #ifdef LIBDECOR_ENABLED
  2532. if (ws.libdecor_frame) {
  2533. libdecor_frame_set_app_id(ws.libdecor_frame, p_app_id.utf8());
  2534. return;
  2535. }
  2536. #endif // LIBDECOR_ENABLED
  2537. if (ws.xdg_toplevel) {
  2538. xdg_toplevel_set_app_id(ws.xdg_toplevel, p_app_id.utf8());
  2539. return;
  2540. }
  2541. }
  2542. DisplayServer::WindowMode WaylandThread::window_get_mode(DisplayServer::WindowID p_window_id) const {
  2543. // TODO: Use window IDs for multiwindow support.
  2544. const WindowState &ws = main_window;
  2545. return ws.mode;
  2546. }
  2547. void WaylandThread::window_request_attention(DisplayServer::WindowID p_window_id) {
  2548. // TODO: Use window IDs for multiwindow support.
  2549. WindowState &ws = main_window;
  2550. if (registry.xdg_activation) {
  2551. // Window attention requests are done through the XDG activation protocol.
  2552. xdg_activation_token_v1 *xdg_activation_token = xdg_activation_v1_get_activation_token(registry.xdg_activation);
  2553. xdg_activation_token_v1_add_listener(xdg_activation_token, &xdg_activation_token_listener, &ws);
  2554. xdg_activation_token_v1_commit(xdg_activation_token);
  2555. }
  2556. }
  2557. void WaylandThread::window_set_idle_inhibition(DisplayServer::WindowID p_window_id, bool p_enable) {
  2558. // TODO: Use window IDs for multiwindow support.
  2559. WindowState &ws = main_window;
  2560. if (p_enable) {
  2561. if (ws.registry->wp_idle_inhibit_manager && !ws.wp_idle_inhibitor) {
  2562. ERR_FAIL_NULL(ws.wl_surface);
  2563. ws.wp_idle_inhibitor = zwp_idle_inhibit_manager_v1_create_inhibitor(ws.registry->wp_idle_inhibit_manager, ws.wl_surface);
  2564. }
  2565. } else {
  2566. if (ws.wp_idle_inhibitor) {
  2567. zwp_idle_inhibitor_v1_destroy(ws.wp_idle_inhibitor);
  2568. ws.wp_idle_inhibitor = nullptr;
  2569. }
  2570. }
  2571. }
  2572. bool WaylandThread::window_get_idle_inhibition(DisplayServer::WindowID p_window_id) const {
  2573. // TODO: Use window IDs for multiwindow support.
  2574. const WindowState &ws = main_window;
  2575. return ws.wp_idle_inhibitor != nullptr;
  2576. }
  2577. WaylandThread::ScreenData WaylandThread::screen_get_data(int p_screen) const {
  2578. ERR_FAIL_INDEX_V(p_screen, registry.wl_outputs.size(), ScreenData());
  2579. return wl_output_get_screen_state(registry.wl_outputs[p_screen])->data;
  2580. }
  2581. int WaylandThread::get_screen_count() const {
  2582. return registry.wl_outputs.size();
  2583. }
  2584. DisplayServer::WindowID WaylandThread::pointer_get_pointed_window_id() const {
  2585. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2586. if (ss) {
  2587. WindowState *ws = wl_surface_get_window_state(ss->pointed_surface);
  2588. if (ws) {
  2589. return ws->id;
  2590. }
  2591. }
  2592. return DisplayServer::INVALID_WINDOW_ID;
  2593. }
  2594. void WaylandThread::pointer_set_constraint(PointerConstraint p_constraint) {
  2595. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2596. if (ss) {
  2597. seat_state_unlock_pointer(ss);
  2598. if (p_constraint == PointerConstraint::LOCKED) {
  2599. seat_state_lock_pointer(ss);
  2600. } else if (p_constraint == PointerConstraint::CONFINED) {
  2601. seat_state_confine_pointer(ss);
  2602. }
  2603. }
  2604. pointer_constraint = p_constraint;
  2605. }
  2606. void WaylandThread::pointer_set_hint(const Point2i &p_hint) {
  2607. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2608. if (!ss) {
  2609. return;
  2610. }
  2611. WindowState *ws = wl_surface_get_window_state(ss->pointed_surface);
  2612. int hint_x = 0;
  2613. int hint_y = 0;
  2614. if (ws) {
  2615. // NOTE: It looks like it's not really recommended to convert from
  2616. // "godot-space" to "wayland-space" and in general I received mixed feelings
  2617. // discussing about this. I'm not really sure about the maths behind this but,
  2618. // oh well, we're setting a cursor hint. ¯\_(ツ)_/¯
  2619. // See: https://oftc.irclog.whitequark.org/wayland/2023-08-23#1692756914-1692816818
  2620. hint_x = round(p_hint.x / window_state_get_scale_factor(ws));
  2621. hint_y = round(p_hint.y / window_state_get_scale_factor(ws));
  2622. }
  2623. if (ss) {
  2624. seat_state_set_hint(ss, hint_x, hint_y);
  2625. }
  2626. }
  2627. WaylandThread::PointerConstraint WaylandThread::pointer_get_constraint() const {
  2628. return pointer_constraint;
  2629. }
  2630. BitField<MouseButtonMask> WaylandThread::pointer_get_button_mask() const {
  2631. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2632. if (ss) {
  2633. return ss->pointer_data.pressed_button_mask;
  2634. }
  2635. return BitField<MouseButtonMask>();
  2636. }
  2637. Error WaylandThread::init() {
  2638. #ifdef SOWRAP_ENABLED
  2639. #ifdef DEBUG_ENABLED
  2640. int dylibloader_verbose = 1;
  2641. #else
  2642. int dylibloader_verbose = 0;
  2643. #endif // DEBUG_ENABLED
  2644. if (initialize_wayland_client(dylibloader_verbose) != 0) {
  2645. WARN_PRINT("Can't load the Wayland client library.");
  2646. return ERR_CANT_CREATE;
  2647. }
  2648. if (initialize_wayland_cursor(dylibloader_verbose) != 0) {
  2649. WARN_PRINT("Can't load the Wayland cursor library.");
  2650. return ERR_CANT_CREATE;
  2651. }
  2652. if (initialize_xkbcommon(dylibloader_verbose) != 0) {
  2653. WARN_PRINT("Can't load the XKBcommon library.");
  2654. return ERR_CANT_CREATE;
  2655. }
  2656. #endif // SOWRAP_ENABLED
  2657. KeyMappingXKB::initialize();
  2658. wl_display = wl_display_connect(nullptr);
  2659. ERR_FAIL_NULL_V_MSG(wl_display, ERR_CANT_CREATE, "Can't connect to a Wayland display.");
  2660. thread_data.wl_display = wl_display;
  2661. events_thread.start(_poll_events_thread, &thread_data);
  2662. wl_registry = wl_display_get_registry(wl_display);
  2663. ERR_FAIL_NULL_V_MSG(wl_registry, ERR_UNAVAILABLE, "Can't obtain the Wayland registry global.");
  2664. registry.wayland_thread = this;
  2665. wl_registry_add_listener(wl_registry, &wl_registry_listener, &registry);
  2666. // Wait for registry to get notified from the compositor.
  2667. wl_display_roundtrip(wl_display);
  2668. ERR_FAIL_NULL_V_MSG(registry.wl_shm, ERR_UNAVAILABLE, "Can't obtain the Wayland shared memory global.");
  2669. ERR_FAIL_NULL_V_MSG(registry.wl_compositor, ERR_UNAVAILABLE, "Can't obtain the Wayland compositor global.");
  2670. ERR_FAIL_NULL_V_MSG(registry.wl_subcompositor, ERR_UNAVAILABLE, "Can't obtain the Wayland subcompositor global.");
  2671. ERR_FAIL_NULL_V_MSG(registry.wl_data_device_manager, ERR_UNAVAILABLE, "Can't obtain the Wayland data device manager global.");
  2672. ERR_FAIL_NULL_V_MSG(registry.wp_pointer_constraints, ERR_UNAVAILABLE, "Can't obtain the Wayland pointer constraints global.");
  2673. ERR_FAIL_NULL_V_MSG(registry.xdg_wm_base, ERR_UNAVAILABLE, "Can't obtain the Wayland XDG shell global.");
  2674. if (!registry.xdg_decoration_manager) {
  2675. #ifdef LIBDECOR_ENABLED
  2676. WARN_PRINT("Can't obtain the XDG decoration manager. Libdecor will be used for drawing CSDs, if available.");
  2677. #else
  2678. WARN_PRINT("Can't obtain the XDG decoration manager. Decorations won't show up.");
  2679. #endif // LIBDECOR_ENABLED
  2680. }
  2681. if (!registry.xdg_activation) {
  2682. WARN_PRINT("Can't obtain the XDG activation global. Attention requesting won't work!");
  2683. }
  2684. #ifndef DBUS_ENABLED
  2685. if (!registry.wp_idle_inhibit_manager) {
  2686. WARN_PRINT("Can't obtain the idle inhibition manager. The screen might turn off even after calling screen_set_keep_on()!");
  2687. }
  2688. #endif // DBUS_ENABLED
  2689. // Wait for seat capabilities.
  2690. wl_display_roundtrip(wl_display);
  2691. #ifdef LIBDECOR_ENABLED
  2692. bool libdecor_found = true;
  2693. #ifdef SOWRAP_ENABLED
  2694. if (initialize_libdecor(dylibloader_verbose) != 0) {
  2695. libdecor_found = false;
  2696. }
  2697. #endif // SOWRAP_ENABLED
  2698. if (libdecor_found) {
  2699. libdecor_context = libdecor_new(wl_display, (struct libdecor_interface *)&libdecor_interface);
  2700. } else {
  2701. print_verbose("libdecor not found. Client-side decorations disabled.");
  2702. }
  2703. #endif // LIBDECOR_ENABLED
  2704. cursor_theme_name = OS::get_singleton()->get_environment("XCURSOR_THEME");
  2705. unscaled_cursor_size = OS::get_singleton()->get_environment("XCURSOR_SIZE").to_int();
  2706. if (unscaled_cursor_size <= 0) {
  2707. print_verbose("Detected invalid cursor size preference, defaulting to 24.");
  2708. unscaled_cursor_size = 24;
  2709. }
  2710. // NOTE: The scale is useful here as it might've been updated by _update_scale.
  2711. bool cursor_theme_loaded = _load_cursor_theme(unscaled_cursor_size * cursor_scale);
  2712. if (!cursor_theme_loaded) {
  2713. return ERR_CANT_CREATE;
  2714. }
  2715. // Update the cursor.
  2716. cursor_set_shape(DisplayServer::CURSOR_ARROW);
  2717. initialized = true;
  2718. return OK;
  2719. }
  2720. void WaylandThread::cursor_hide() {
  2721. current_wl_cursor = nullptr;
  2722. current_custom_cursor = nullptr;
  2723. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2724. ERR_FAIL_NULL(ss);
  2725. seat_state_update_cursor(ss);
  2726. }
  2727. void WaylandThread::cursor_set_shape(DisplayServer::CursorShape p_cursor_shape) {
  2728. if (!wl_cursors[p_cursor_shape]) {
  2729. return;
  2730. }
  2731. // The point of this method is make the current cursor a "plain" shape and, as
  2732. // the custom cursor overrides what gets set, we have to clear it too.
  2733. current_custom_cursor = nullptr;
  2734. current_wl_cursor = wl_cursors[p_cursor_shape];
  2735. for (struct wl_seat *wl_seat : registry.wl_seats) {
  2736. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  2737. ERR_FAIL_NULL(ss);
  2738. seat_state_update_cursor(ss);
  2739. }
  2740. last_cursor_shape = p_cursor_shape;
  2741. }
  2742. void WaylandThread::cursor_set_custom_shape(DisplayServer::CursorShape p_cursor_shape) {
  2743. ERR_FAIL_COND(!custom_cursors.has(p_cursor_shape));
  2744. current_custom_cursor = &custom_cursors[p_cursor_shape];
  2745. for (struct wl_seat *wl_seat : registry.wl_seats) {
  2746. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  2747. ERR_FAIL_NULL(ss);
  2748. seat_state_update_cursor(ss);
  2749. }
  2750. last_cursor_shape = p_cursor_shape;
  2751. }
  2752. void WaylandThread::cursor_shape_set_custom_image(DisplayServer::CursorShape p_cursor_shape, Ref<Image> p_image, const Point2i &p_hotspot) {
  2753. ERR_FAIL_COND(!p_image.is_valid());
  2754. Size2i image_size = p_image->get_size();
  2755. // NOTE: The stride is the width of the image in bytes.
  2756. unsigned int image_stride = image_size.width * 4;
  2757. unsigned int data_size = image_stride * image_size.height;
  2758. // We need a shared memory object file descriptor in order to create a
  2759. // wl_buffer through wl_shm.
  2760. int fd = WaylandThread::_allocate_shm_file(data_size);
  2761. ERR_FAIL_COND(fd == -1);
  2762. CustomCursor &cursor = custom_cursors[p_cursor_shape];
  2763. cursor.hotspot = p_hotspot;
  2764. if (cursor.buffer_data) {
  2765. // Clean up the old buffer data.
  2766. munmap(cursor.buffer_data, cursor.buffer_data_size);
  2767. }
  2768. cursor.buffer_data = (uint32_t *)mmap(NULL, data_size, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0);
  2769. if (cursor.wl_buffer) {
  2770. // Clean up the old Wayland buffer.
  2771. wl_buffer_destroy(cursor.wl_buffer);
  2772. }
  2773. // Create the Wayland buffer.
  2774. struct wl_shm_pool *wl_shm_pool = wl_shm_create_pool(registry.wl_shm, fd, image_size.height * data_size);
  2775. // TODO: Make sure that WL_SHM_FORMAT_ARGB8888 format is supported. It
  2776. // technically isn't garaunteed to be supported, but I think that'd be a
  2777. // pretty unlikely thing to stumble upon.
  2778. cursor.wl_buffer = wl_shm_pool_create_buffer(wl_shm_pool, 0, image_size.width, image_size.height, image_stride, WL_SHM_FORMAT_ARGB8888);
  2779. wl_shm_pool_destroy(wl_shm_pool);
  2780. // Fill the cursor buffer with the image data.
  2781. for (unsigned int index = 0; index < (unsigned int)(image_size.width * image_size.height); index++) {
  2782. int row_index = floor(index / image_size.width);
  2783. int column_index = (index % int(image_size.width));
  2784. cursor.buffer_data[index] = p_image->get_pixel(column_index, row_index).to_argb32();
  2785. // Wayland buffers, unless specified, require associated alpha, so we'll just
  2786. // associate the alpha in-place.
  2787. uint8_t *pixel_data = (uint8_t *)&cursor.buffer_data[index];
  2788. pixel_data[0] = pixel_data[0] * pixel_data[3] / 255;
  2789. pixel_data[1] = pixel_data[1] * pixel_data[3] / 255;
  2790. pixel_data[2] = pixel_data[2] * pixel_data[3] / 255;
  2791. }
  2792. }
  2793. void WaylandThread::cursor_shape_clear_custom_image(DisplayServer::CursorShape p_cursor_shape) {
  2794. if (custom_cursors.has(p_cursor_shape)) {
  2795. CustomCursor cursor = custom_cursors[p_cursor_shape];
  2796. custom_cursors.erase(p_cursor_shape);
  2797. current_custom_cursor = nullptr;
  2798. if (cursor.wl_buffer) {
  2799. wl_buffer_destroy(cursor.wl_buffer);
  2800. }
  2801. if (cursor.buffer_data) {
  2802. munmap(cursor.buffer_data, cursor.buffer_data_size);
  2803. }
  2804. }
  2805. }
  2806. int WaylandThread::keyboard_get_layout_count() const {
  2807. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2808. if (ss && ss->xkb_keymap) {
  2809. return xkb_keymap_num_layouts(ss->xkb_keymap);
  2810. }
  2811. return 0;
  2812. }
  2813. int WaylandThread::keyboard_get_current_layout_index() const {
  2814. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2815. if (ss) {
  2816. return ss->current_layout_index;
  2817. }
  2818. return 0;
  2819. }
  2820. void WaylandThread::keyboard_set_current_layout_index(int p_index) {
  2821. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2822. if (ss) {
  2823. ss->current_layout_index = p_index;
  2824. }
  2825. }
  2826. String WaylandThread::keyboard_get_layout_name(int p_index) const {
  2827. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2828. if (ss && ss->xkb_keymap) {
  2829. String ret;
  2830. ret.parse_utf8(xkb_keymap_layout_get_name(ss->xkb_keymap, p_index));
  2831. return ret;
  2832. }
  2833. return "";
  2834. }
  2835. Key WaylandThread::keyboard_get_key_from_physical(Key p_key) const {
  2836. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2837. if (ss && ss->xkb_state) {
  2838. xkb_keycode_t xkb_keycode = KeyMappingXKB::get_xkb_keycode(p_key);
  2839. return KeyMappingXKB::get_keycode(xkb_state_key_get_one_sym(ss->xkb_state, xkb_keycode));
  2840. }
  2841. return Key::NONE;
  2842. }
  2843. void WaylandThread::keyboard_echo_keys() {
  2844. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2845. if (ss) {
  2846. seat_state_echo_keys(ss);
  2847. }
  2848. }
  2849. void WaylandThread::selection_set_text(const String &p_text) {
  2850. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2851. if (registry.wl_data_device_manager == nullptr) {
  2852. DEBUG_LOG_WAYLAND_THREAD("Couldn't set selection, wl_data_device_manager global not available.");
  2853. }
  2854. if (ss == nullptr) {
  2855. DEBUG_LOG_WAYLAND_THREAD("Couldn't set selection, current seat not set.");
  2856. return;
  2857. }
  2858. if (ss->wl_data_device == nullptr) {
  2859. DEBUG_LOG_WAYLAND_THREAD("Couldn't set selection, seat doesn't have wl_data_device.");
  2860. }
  2861. ss->selection_data = p_text.to_utf8_buffer();
  2862. if (ss->wl_data_source_selection == nullptr) {
  2863. ss->wl_data_source_selection = wl_data_device_manager_create_data_source(registry.wl_data_device_manager);
  2864. wl_data_source_add_listener(ss->wl_data_source_selection, &wl_data_source_listener, ss);
  2865. wl_data_source_offer(ss->wl_data_source_selection, "text/plain;charset=utf-8");
  2866. wl_data_source_offer(ss->wl_data_source_selection, "text/plain");
  2867. }
  2868. // TODO: Implement a good way of getting the latest serial from the user.
  2869. wl_data_device_set_selection(ss->wl_data_device, ss->wl_data_source_selection, MAX(ss->pointer_data.button_serial, ss->last_key_pressed_serial));
  2870. // Wait for the message to get to the server before continuing, otherwise the
  2871. // clipboard update might come with a delay.
  2872. wl_display_roundtrip(wl_display);
  2873. }
  2874. bool WaylandThread::selection_has_mime(const String &p_mime) const {
  2875. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2876. if (ss == nullptr) {
  2877. DEBUG_LOG_WAYLAND_THREAD("Couldn't get selection, current seat not set.");
  2878. return false;
  2879. }
  2880. OfferState *os = wl_data_offer_get_offer_state(ss->wl_data_offer_selection);
  2881. if (!os) {
  2882. return false;
  2883. }
  2884. return os->mime_types.has(p_mime);
  2885. }
  2886. Vector<uint8_t> WaylandThread::selection_get_mime(const String &p_mime) const {
  2887. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2888. if (ss == nullptr) {
  2889. DEBUG_LOG_WAYLAND_THREAD("Couldn't get selection, current seat not set.");
  2890. return Vector<uint8_t>();
  2891. }
  2892. if (ss->wl_data_source_selection) {
  2893. // We have a source so the stuff we're pasting is ours. We'll have to pass the
  2894. // data directly or we'd stall waiting for Godot (ourselves) to send us the
  2895. // data :P
  2896. OfferState *os = wl_data_offer_get_offer_state(ss->wl_data_offer_selection);
  2897. ERR_FAIL_NULL_V(os, Vector<uint8_t>());
  2898. if (os->mime_types.has(p_mime)) {
  2899. // All righty, we're offering this type. Let's just return the data as is.
  2900. return ss->selection_data;
  2901. }
  2902. // ... we don't offer that type. Oh well.
  2903. return Vector<uint8_t>();
  2904. }
  2905. return _wl_data_offer_read(wl_display, p_mime.utf8(), ss->wl_data_offer_selection);
  2906. }
  2907. bool WaylandThread::primary_has_mime(const String &p_mime) const {
  2908. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2909. if (ss == nullptr) {
  2910. DEBUG_LOG_WAYLAND_THREAD("Couldn't get selection, current seat not set.");
  2911. return false;
  2912. }
  2913. OfferState *os = wp_primary_selection_offer_get_offer_state(ss->wp_primary_selection_offer);
  2914. if (!os) {
  2915. return false;
  2916. }
  2917. return os->mime_types.has(p_mime);
  2918. }
  2919. Vector<uint8_t> WaylandThread::primary_get_mime(const String &p_mime) const {
  2920. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2921. if (ss == nullptr) {
  2922. DEBUG_LOG_WAYLAND_THREAD("Couldn't get primary, current seat not set.");
  2923. return Vector<uint8_t>();
  2924. }
  2925. if (ss->wp_primary_selection_source) {
  2926. // We have a source so the stuff we're pasting is ours. We'll have to pass the
  2927. // data directly or we'd stall waiting for Godot (ourselves) to send us the
  2928. // data :P
  2929. OfferState *os = wp_primary_selection_offer_get_offer_state(ss->wp_primary_selection_offer);
  2930. ERR_FAIL_NULL_V(os, Vector<uint8_t>());
  2931. if (os->mime_types.has(p_mime)) {
  2932. // All righty, we're offering this type. Let's just return the data as is.
  2933. return ss->selection_data;
  2934. }
  2935. // ... we don't offer that type. Oh well.
  2936. return Vector<uint8_t>();
  2937. }
  2938. return _wp_primary_selection_offer_read(wl_display, p_mime.utf8(), ss->wp_primary_selection_offer);
  2939. }
  2940. void WaylandThread::primary_set_text(const String &p_text) {
  2941. SeatState *ss = wl_seat_get_seat_state(wl_seat_current);
  2942. if (registry.wp_primary_selection_device_manager == nullptr) {
  2943. DEBUG_LOG_WAYLAND_THREAD("Couldn't set primary, protocol not available");
  2944. return;
  2945. }
  2946. if (ss == nullptr) {
  2947. DEBUG_LOG_WAYLAND_THREAD("Couldn't set primary, current seat not set.");
  2948. return;
  2949. }
  2950. ss->primary_data = p_text.to_utf8_buffer();
  2951. if (ss->wp_primary_selection_source == nullptr) {
  2952. ss->wp_primary_selection_source = zwp_primary_selection_device_manager_v1_create_source(registry.wp_primary_selection_device_manager);
  2953. zwp_primary_selection_source_v1_add_listener(ss->wp_primary_selection_source, &wp_primary_selection_source_listener, ss);
  2954. zwp_primary_selection_source_v1_offer(ss->wp_primary_selection_source, "text/plain;charset=utf-8");
  2955. zwp_primary_selection_source_v1_offer(ss->wp_primary_selection_source, "text/plain");
  2956. }
  2957. // TODO: Implement a good way of getting the latest serial from the user.
  2958. zwp_primary_selection_device_v1_set_selection(ss->wp_primary_selection_device, ss->wp_primary_selection_source, MAX(ss->pointer_data.button_serial, ss->last_key_pressed_serial));
  2959. // Wait for the message to get to the server before continuing, otherwise the
  2960. // clipboard update might come with a delay.
  2961. wl_display_roundtrip(wl_display);
  2962. }
  2963. void WaylandThread::set_frame() {
  2964. frame = true;
  2965. }
  2966. bool WaylandThread::get_reset_frame() {
  2967. bool old_frame = frame;
  2968. frame = false;
  2969. return old_frame;
  2970. }
  2971. // Dispatches events until a frame event is received, a window is reported as
  2972. // suspended or the timeout expires.
  2973. bool WaylandThread::wait_frame_suspend_ms(int p_timeout) {
  2974. if (main_window.suspended) {
  2975. // The window is suspended! The compositor is telling us _explicitly_ that we
  2976. // don't need to draw, without letting us guess through the frame event's
  2977. // timing and stuff like that. Our job here is done.
  2978. return false;
  2979. }
  2980. if (frame) {
  2981. // We already have a frame! Probably it got there while the caller locked :D
  2982. frame = false;
  2983. return true;
  2984. }
  2985. struct pollfd poll_fd;
  2986. poll_fd.fd = wl_display_get_fd(wl_display);
  2987. poll_fd.events = POLLIN | POLLHUP;
  2988. int begin_ms = OS::get_singleton()->get_ticks_msec();
  2989. int remaining_ms = p_timeout;
  2990. while (remaining_ms > 0) {
  2991. // Empty the event queue while it's full.
  2992. while (wl_display_prepare_read(wl_display) != 0) {
  2993. if (wl_display_dispatch_pending(wl_display) == -1) {
  2994. // Oh no. We'll check and handle any display error below.
  2995. break;
  2996. }
  2997. if (main_window.suspended) {
  2998. return false;
  2999. }
  3000. if (frame) {
  3001. // We had a frame event in the queue :D
  3002. frame = false;
  3003. return true;
  3004. }
  3005. }
  3006. int werror = wl_display_get_error(wl_display);
  3007. if (werror) {
  3008. if (werror == EPROTO) {
  3009. struct wl_interface *wl_interface = nullptr;
  3010. uint32_t id = 0;
  3011. int error_code = wl_display_get_protocol_error(wl_display, (const struct wl_interface **)&wl_interface, &id);
  3012. CRASH_NOW_MSG(vformat("Wayland protocol error %d on interface %s@%d.", error_code, wl_interface ? wl_interface->name : "unknown", id));
  3013. } else {
  3014. CRASH_NOW_MSG(vformat("Wayland client error code %d.", werror));
  3015. }
  3016. }
  3017. wl_display_flush(wl_display);
  3018. // Wait for the event file descriptor to have new data.
  3019. poll(&poll_fd, 1, remaining_ms);
  3020. if (poll_fd.revents | POLLIN) {
  3021. // Load the queues with fresh new data.
  3022. wl_display_read_events(wl_display);
  3023. } else {
  3024. // Oh well... Stop signaling that we want to read.
  3025. wl_display_cancel_read(wl_display);
  3026. // We've got no new events :(
  3027. // We won't even bother with checking the frame flag.
  3028. return false;
  3029. }
  3030. // Let's try dispatching now...
  3031. wl_display_dispatch_pending(wl_display);
  3032. if (main_window.suspended) {
  3033. return false;
  3034. }
  3035. if (frame) {
  3036. frame = false;
  3037. return true;
  3038. }
  3039. remaining_ms -= OS::get_singleton()->get_ticks_msec() - begin_ms;
  3040. }
  3041. DEBUG_LOG_WAYLAND_THREAD("Frame timeout.");
  3042. return false;
  3043. }
  3044. bool WaylandThread::is_suspended() const {
  3045. return main_window.suspended;
  3046. }
  3047. void WaylandThread::destroy() {
  3048. if (!initialized) {
  3049. return;
  3050. }
  3051. if (wl_display && events_thread.is_started()) {
  3052. thread_data.thread_done.set();
  3053. // By sending a roundtrip message we're unblocking the polling thread so that
  3054. // it can realize that it's done and also handle every event that's left.
  3055. wl_display_roundtrip(wl_display);
  3056. events_thread.wait_to_finish();
  3057. }
  3058. if (main_window.wp_fractional_scale) {
  3059. wp_fractional_scale_v1_destroy(main_window.wp_fractional_scale);
  3060. }
  3061. if (main_window.wp_viewport) {
  3062. wp_viewport_destroy(main_window.wp_viewport);
  3063. }
  3064. if (main_window.frame_callback) {
  3065. wl_callback_destroy(main_window.frame_callback);
  3066. }
  3067. #ifdef LIBDECOR_ENABLED
  3068. if (main_window.libdecor_frame) {
  3069. libdecor_frame_close(main_window.libdecor_frame);
  3070. }
  3071. #endif // LIBDECOR_ENABLED
  3072. if (main_window.xdg_toplevel) {
  3073. xdg_toplevel_destroy(main_window.xdg_toplevel);
  3074. }
  3075. if (main_window.xdg_surface) {
  3076. xdg_surface_destroy(main_window.xdg_surface);
  3077. }
  3078. if (main_window.wl_surface) {
  3079. wl_surface_destroy(main_window.wl_surface);
  3080. }
  3081. for (struct wl_seat *wl_seat : registry.wl_seats) {
  3082. SeatState *ss = wl_seat_get_seat_state(wl_seat);
  3083. ERR_FAIL_NULL(ss);
  3084. wl_seat_destroy(wl_seat);
  3085. xkb_context_unref(ss->xkb_context);
  3086. xkb_state_unref(ss->xkb_state);
  3087. xkb_keymap_unref(ss->xkb_keymap);
  3088. if (ss->wl_keyboard) {
  3089. wl_keyboard_destroy(ss->wl_keyboard);
  3090. }
  3091. if (ss->keymap_buffer) {
  3092. munmap((void *)ss->keymap_buffer, ss->keymap_buffer_size);
  3093. }
  3094. if (ss->wl_pointer) {
  3095. wl_pointer_destroy(ss->wl_pointer);
  3096. }
  3097. if (ss->cursor_frame_callback) {
  3098. // We don't need to set a null userdata for safety as the thread is done.
  3099. wl_callback_destroy(ss->cursor_frame_callback);
  3100. }
  3101. if (ss->cursor_surface) {
  3102. wl_surface_destroy(ss->cursor_surface);
  3103. }
  3104. if (ss->wl_data_device) {
  3105. wl_data_device_destroy(ss->wl_data_device);
  3106. }
  3107. if (ss->wp_relative_pointer) {
  3108. zwp_relative_pointer_v1_destroy(ss->wp_relative_pointer);
  3109. }
  3110. if (ss->wp_locked_pointer) {
  3111. zwp_locked_pointer_v1_destroy(ss->wp_locked_pointer);
  3112. }
  3113. if (ss->wp_confined_pointer) {
  3114. zwp_confined_pointer_v1_destroy(ss->wp_confined_pointer);
  3115. }
  3116. #if 0
  3117. // FIXME: Broken.
  3118. if (ss->wp_tablet_seat) {
  3119. zwp_tablet_seat_v2_destroy(ss->wp_tablet_seat);
  3120. }
  3121. #endif
  3122. for (struct zwp_tablet_tool_v2 *tool : ss->tablet_tools) {
  3123. zwp_tablet_tool_v2_destroy(tool);
  3124. }
  3125. memdelete(ss);
  3126. }
  3127. for (struct wl_output *wl_output : registry.wl_outputs) {
  3128. ERR_FAIL_NULL(wl_output);
  3129. memdelete(wl_output_get_screen_state(wl_output));
  3130. wl_output_destroy(wl_output);
  3131. }
  3132. if (wl_cursor_theme) {
  3133. wl_cursor_theme_destroy(wl_cursor_theme);
  3134. }
  3135. if (registry.wp_idle_inhibit_manager) {
  3136. zwp_idle_inhibit_manager_v1_destroy(registry.wp_idle_inhibit_manager);
  3137. }
  3138. if (registry.wp_pointer_constraints) {
  3139. zwp_pointer_constraints_v1_destroy(registry.wp_pointer_constraints);
  3140. }
  3141. if (registry.wp_pointer_gestures) {
  3142. zwp_pointer_gestures_v1_destroy(registry.wp_pointer_gestures);
  3143. }
  3144. if (registry.wp_relative_pointer_manager) {
  3145. zwp_relative_pointer_manager_v1_destroy(registry.wp_relative_pointer_manager);
  3146. }
  3147. if (registry.xdg_activation) {
  3148. xdg_activation_v1_destroy(registry.xdg_activation);
  3149. }
  3150. if (registry.xdg_decoration_manager) {
  3151. zxdg_decoration_manager_v1_destroy(registry.xdg_decoration_manager);
  3152. }
  3153. if (registry.wp_fractional_scale_manager) {
  3154. wp_fractional_scale_manager_v1_destroy(registry.wp_fractional_scale_manager);
  3155. }
  3156. if (registry.wp_viewporter) {
  3157. wp_viewporter_destroy(registry.wp_viewporter);
  3158. }
  3159. if (registry.xdg_wm_base) {
  3160. xdg_wm_base_destroy(registry.xdg_wm_base);
  3161. }
  3162. if (registry.wl_exporter) {
  3163. zxdg_exporter_v1_destroy(registry.wl_exporter);
  3164. }
  3165. if (registry.wl_shm) {
  3166. wl_shm_destroy(registry.wl_shm);
  3167. }
  3168. if (registry.wl_subcompositor) {
  3169. wl_subcompositor_destroy(registry.wl_subcompositor);
  3170. }
  3171. if (registry.wl_compositor) {
  3172. wl_compositor_destroy(registry.wl_compositor);
  3173. }
  3174. if (wl_registry) {
  3175. wl_registry_destroy(wl_registry);
  3176. }
  3177. if (wl_display) {
  3178. wl_display_disconnect(wl_display);
  3179. }
  3180. }
  3181. #endif // WAYLAND_ENABLED