display_server_x11.cpp 143 KB

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  1. /*************************************************************************/
  2. /* display_server_x11.cpp */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
  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 "display_server_x11.h"
  31. #ifdef X11_ENABLED
  32. #include "core/config/project_settings.h"
  33. #include "core/string/print_string.h"
  34. #include "core/string/ustring.h"
  35. #include "detect_prime_x11.h"
  36. #include "key_mapping_x11.h"
  37. #include "main/main.h"
  38. #include "scene/resources/texture.h"
  39. #if defined(VULKAN_ENABLED)
  40. #include "servers/rendering/renderer_rd/renderer_compositor_rd.h"
  41. #endif
  42. #if defined(GLES3_ENABLED)
  43. #include "drivers/gles3/rasterizer_gles3.h"
  44. #endif
  45. #include <limits.h>
  46. #include <stdio.h>
  47. #include <stdlib.h>
  48. #include <string.h>
  49. #include <X11/Xatom.h>
  50. #include <X11/Xutil.h>
  51. #include <X11/extensions/Xinerama.h>
  52. #include <X11/extensions/shape.h>
  53. // ICCCM
  54. #define WM_NormalState 1L // window normal state
  55. #define WM_IconicState 3L // window minimized
  56. // EWMH
  57. #define _NET_WM_STATE_REMOVE 0L // remove/unset property
  58. #define _NET_WM_STATE_ADD 1L // add/set property
  59. #define _NET_WM_STATE_TOGGLE 2L // toggle property
  60. #include <dlfcn.h>
  61. #include <fcntl.h>
  62. #include <sys/stat.h>
  63. #include <sys/types.h>
  64. #include <unistd.h>
  65. //stupid linux.h
  66. #ifdef KEY_TAB
  67. #undef KEY_TAB
  68. #endif
  69. #undef CursorShape
  70. #include <X11/XKBlib.h>
  71. // 2.2 is the first release with multitouch
  72. #define XINPUT_CLIENT_VERSION_MAJOR 2
  73. #define XINPUT_CLIENT_VERSION_MINOR 2
  74. #define VALUATOR_ABSX 0
  75. #define VALUATOR_ABSY 1
  76. #define VALUATOR_PRESSURE 2
  77. #define VALUATOR_TILTX 3
  78. #define VALUATOR_TILTY 4
  79. //#define DISPLAY_SERVER_X11_DEBUG_LOGS_ENABLED
  80. #ifdef DISPLAY_SERVER_X11_DEBUG_LOGS_ENABLED
  81. #define DEBUG_LOG_X11(...) printf(__VA_ARGS__)
  82. #else
  83. #define DEBUG_LOG_X11(...)
  84. #endif
  85. static const double abs_resolution_mult = 10000.0;
  86. static const double abs_resolution_range_mult = 10.0;
  87. // Hints for X11 fullscreen
  88. struct Hints {
  89. unsigned long flags = 0;
  90. unsigned long functions = 0;
  91. unsigned long decorations = 0;
  92. long inputMode = 0;
  93. unsigned long status = 0;
  94. };
  95. bool DisplayServerX11::has_feature(Feature p_feature) const {
  96. switch (p_feature) {
  97. case FEATURE_SUBWINDOWS:
  98. #ifdef TOUCH_ENABLED
  99. case FEATURE_TOUCHSCREEN:
  100. #endif
  101. case FEATURE_MOUSE:
  102. case FEATURE_MOUSE_WARP:
  103. case FEATURE_CLIPBOARD:
  104. case FEATURE_CURSOR_SHAPE:
  105. case FEATURE_CUSTOM_CURSOR_SHAPE:
  106. case FEATURE_IME:
  107. case FEATURE_WINDOW_TRANSPARENCY:
  108. //case FEATURE_HIDPI:
  109. case FEATURE_ICON:
  110. case FEATURE_NATIVE_ICON:
  111. case FEATURE_SWAP_BUFFERS:
  112. #ifdef DBUS_ENABLED
  113. case FEATURE_KEEP_SCREEN_ON:
  114. #endif
  115. case FEATURE_CLIPBOARD_PRIMARY:
  116. return true;
  117. default: {
  118. }
  119. }
  120. return false;
  121. }
  122. String DisplayServerX11::get_name() const {
  123. return "X11";
  124. }
  125. void DisplayServerX11::_update_real_mouse_position(const WindowData &wd) {
  126. Window root_return, child_return;
  127. int root_x, root_y, win_x, win_y;
  128. unsigned int mask_return;
  129. Bool xquerypointer_result = XQueryPointer(x11_display, wd.x11_window, &root_return, &child_return, &root_x, &root_y,
  130. &win_x, &win_y, &mask_return);
  131. if (xquerypointer_result) {
  132. if (win_x > 0 && win_y > 0 && win_x <= wd.size.width && win_y <= wd.size.height) {
  133. last_mouse_pos.x = win_x;
  134. last_mouse_pos.y = win_y;
  135. last_mouse_pos_valid = true;
  136. Input::get_singleton()->set_mouse_position(last_mouse_pos);
  137. }
  138. }
  139. }
  140. bool DisplayServerX11::_refresh_device_info() {
  141. int event_base, error_base;
  142. print_verbose("XInput: Refreshing devices.");
  143. if (!XQueryExtension(x11_display, "XInputExtension", &xi.opcode, &event_base, &error_base)) {
  144. print_verbose("XInput extension not available. Please upgrade your distribution.");
  145. return false;
  146. }
  147. int xi_major_query = XINPUT_CLIENT_VERSION_MAJOR;
  148. int xi_minor_query = XINPUT_CLIENT_VERSION_MINOR;
  149. if (XIQueryVersion(x11_display, &xi_major_query, &xi_minor_query) != Success) {
  150. print_verbose(vformat("XInput 2 not available (server supports %d.%d).", xi_major_query, xi_minor_query));
  151. xi.opcode = 0;
  152. return false;
  153. }
  154. if (xi_major_query < XINPUT_CLIENT_VERSION_MAJOR || (xi_major_query == XINPUT_CLIENT_VERSION_MAJOR && xi_minor_query < XINPUT_CLIENT_VERSION_MINOR)) {
  155. print_verbose(vformat("XInput %d.%d not available (server supports %d.%d). Touch input unavailable.",
  156. XINPUT_CLIENT_VERSION_MAJOR, XINPUT_CLIENT_VERSION_MINOR, xi_major_query, xi_minor_query));
  157. }
  158. xi.absolute_devices.clear();
  159. xi.touch_devices.clear();
  160. int dev_count;
  161. XIDeviceInfo *info = XIQueryDevice(x11_display, XIAllDevices, &dev_count);
  162. for (int i = 0; i < dev_count; i++) {
  163. XIDeviceInfo *dev = &info[i];
  164. if (!dev->enabled) {
  165. continue;
  166. }
  167. if (!(dev->use == XIMasterPointer || dev->use == XIFloatingSlave)) {
  168. continue;
  169. }
  170. bool direct_touch = false;
  171. bool absolute_mode = false;
  172. int resolution_x = 0;
  173. int resolution_y = 0;
  174. double abs_x_min = 0;
  175. double abs_x_max = 0;
  176. double abs_y_min = 0;
  177. double abs_y_max = 0;
  178. double pressure_min = 0;
  179. double pressure_max = 0;
  180. double tilt_x_min = 0;
  181. double tilt_x_max = 0;
  182. double tilt_y_min = 0;
  183. double tilt_y_max = 0;
  184. for (int j = 0; j < dev->num_classes; j++) {
  185. #ifdef TOUCH_ENABLED
  186. if (dev->classes[j]->type == XITouchClass && ((XITouchClassInfo *)dev->classes[j])->mode == XIDirectTouch) {
  187. direct_touch = true;
  188. }
  189. #endif
  190. if (dev->classes[j]->type == XIValuatorClass) {
  191. XIValuatorClassInfo *class_info = (XIValuatorClassInfo *)dev->classes[j];
  192. if (class_info->number == VALUATOR_ABSX && class_info->mode == XIModeAbsolute) {
  193. resolution_x = class_info->resolution;
  194. abs_x_min = class_info->min;
  195. abs_x_max = class_info->max;
  196. absolute_mode = true;
  197. } else if (class_info->number == VALUATOR_ABSY && class_info->mode == XIModeAbsolute) {
  198. resolution_y = class_info->resolution;
  199. abs_y_min = class_info->min;
  200. abs_y_max = class_info->max;
  201. absolute_mode = true;
  202. } else if (class_info->number == VALUATOR_PRESSURE && class_info->mode == XIModeAbsolute) {
  203. pressure_min = class_info->min;
  204. pressure_max = class_info->max;
  205. } else if (class_info->number == VALUATOR_TILTX && class_info->mode == XIModeAbsolute) {
  206. tilt_x_min = class_info->min;
  207. tilt_x_max = class_info->max;
  208. } else if (class_info->number == VALUATOR_TILTY && class_info->mode == XIModeAbsolute) {
  209. tilt_y_min = class_info->min;
  210. tilt_y_max = class_info->max;
  211. }
  212. }
  213. }
  214. if (direct_touch) {
  215. xi.touch_devices.push_back(dev->deviceid);
  216. print_verbose("XInput: Using touch device: " + String(dev->name));
  217. }
  218. if (absolute_mode) {
  219. // If no resolution was reported, use the min/max ranges.
  220. if (resolution_x <= 0) {
  221. resolution_x = (abs_x_max - abs_x_min) * abs_resolution_range_mult;
  222. }
  223. if (resolution_y <= 0) {
  224. resolution_y = (abs_y_max - abs_y_min) * abs_resolution_range_mult;
  225. }
  226. xi.absolute_devices[dev->deviceid] = Vector2(abs_resolution_mult / resolution_x, abs_resolution_mult / resolution_y);
  227. print_verbose("XInput: Absolute pointing device: " + String(dev->name));
  228. }
  229. xi.pressure = 0;
  230. xi.pen_pressure_range[dev->deviceid] = Vector2(pressure_min, pressure_max);
  231. xi.pen_tilt_x_range[dev->deviceid] = Vector2(tilt_x_min, tilt_x_max);
  232. xi.pen_tilt_y_range[dev->deviceid] = Vector2(tilt_y_min, tilt_y_max);
  233. }
  234. XIFreeDeviceInfo(info);
  235. #ifdef TOUCH_ENABLED
  236. if (!xi.touch_devices.size()) {
  237. print_verbose("XInput: No touch devices found.");
  238. }
  239. #endif
  240. return true;
  241. }
  242. void DisplayServerX11::_flush_mouse_motion() {
  243. // Block events polling while flushing motion events.
  244. MutexLock mutex_lock(events_mutex);
  245. for (uint32_t event_index = 0; event_index < polled_events.size(); ++event_index) {
  246. XEvent &event = polled_events[event_index];
  247. if (XGetEventData(x11_display, &event.xcookie) && event.xcookie.type == GenericEvent && event.xcookie.extension == xi.opcode) {
  248. XIDeviceEvent *event_data = (XIDeviceEvent *)event.xcookie.data;
  249. if (event_data->evtype == XI_RawMotion) {
  250. XFreeEventData(x11_display, &event.xcookie);
  251. polled_events.remove_at(event_index--);
  252. continue;
  253. }
  254. XFreeEventData(x11_display, &event.xcookie);
  255. break;
  256. }
  257. }
  258. xi.relative_motion.x = 0;
  259. xi.relative_motion.y = 0;
  260. }
  261. void DisplayServerX11::mouse_set_mode(MouseMode p_mode) {
  262. _THREAD_SAFE_METHOD_
  263. if (p_mode == mouse_mode) {
  264. return;
  265. }
  266. if (mouse_mode == MOUSE_MODE_CAPTURED || mouse_mode == MOUSE_MODE_CONFINED || mouse_mode == MOUSE_MODE_CONFINED_HIDDEN) {
  267. XUngrabPointer(x11_display, CurrentTime);
  268. }
  269. // The only modes that show a cursor are VISIBLE and CONFINED
  270. bool showCursor = (p_mode == MOUSE_MODE_VISIBLE || p_mode == MOUSE_MODE_CONFINED);
  271. for (const KeyValue<WindowID, WindowData> &E : windows) {
  272. if (showCursor) {
  273. XDefineCursor(x11_display, E.value.x11_window, cursors[current_cursor]); // show cursor
  274. } else {
  275. XDefineCursor(x11_display, E.value.x11_window, null_cursor); // hide cursor
  276. }
  277. }
  278. mouse_mode = p_mode;
  279. if (mouse_mode == MOUSE_MODE_CAPTURED || mouse_mode == MOUSE_MODE_CONFINED || mouse_mode == MOUSE_MODE_CONFINED_HIDDEN) {
  280. //flush pending motion events
  281. _flush_mouse_motion();
  282. WindowData &main_window = windows[MAIN_WINDOW_ID];
  283. if (XGrabPointer(
  284. x11_display, main_window.x11_window, True,
  285. ButtonPressMask | ButtonReleaseMask | PointerMotionMask,
  286. GrabModeAsync, GrabModeAsync, windows[MAIN_WINDOW_ID].x11_window, None, CurrentTime) != GrabSuccess) {
  287. ERR_PRINT("NO GRAB");
  288. }
  289. if (mouse_mode == MOUSE_MODE_CAPTURED) {
  290. center.x = main_window.size.width / 2;
  291. center.y = main_window.size.height / 2;
  292. XWarpPointer(x11_display, None, main_window.x11_window,
  293. 0, 0, 0, 0, (int)center.x, (int)center.y);
  294. Input::get_singleton()->set_mouse_position(center);
  295. }
  296. } else {
  297. do_mouse_warp = false;
  298. }
  299. XFlush(x11_display);
  300. }
  301. DisplayServerX11::MouseMode DisplayServerX11::mouse_get_mode() const {
  302. return mouse_mode;
  303. }
  304. void DisplayServerX11::mouse_warp_to_position(const Point2i &p_to) {
  305. _THREAD_SAFE_METHOD_
  306. if (mouse_mode == MOUSE_MODE_CAPTURED) {
  307. last_mouse_pos = p_to;
  308. } else {
  309. XWarpPointer(x11_display, None, windows[MAIN_WINDOW_ID].x11_window,
  310. 0, 0, 0, 0, (int)p_to.x, (int)p_to.y);
  311. }
  312. }
  313. Point2i DisplayServerX11::mouse_get_position() const {
  314. int root_x, root_y;
  315. int win_x, win_y;
  316. unsigned int mask_return;
  317. Window window_returned;
  318. Bool result = XQueryPointer(x11_display, RootWindow(x11_display, DefaultScreen(x11_display)), &window_returned,
  319. &window_returned, &root_x, &root_y, &win_x, &win_y,
  320. &mask_return);
  321. if (result == True) {
  322. return Point2i(root_x, root_y);
  323. }
  324. return Point2i();
  325. }
  326. Point2i DisplayServerX11::mouse_get_absolute_position() const {
  327. int number_of_screens = XScreenCount(x11_display);
  328. for (int i = 0; i < number_of_screens; i++) {
  329. Window root, child;
  330. int root_x, root_y, win_x, win_y;
  331. unsigned int mask;
  332. if (XQueryPointer(x11_display, XRootWindow(x11_display, i), &root, &child, &root_x, &root_y, &win_x, &win_y, &mask)) {
  333. XWindowAttributes root_attrs;
  334. XGetWindowAttributes(x11_display, root, &root_attrs);
  335. return Vector2i(root_attrs.x + root_x, root_attrs.y + root_y);
  336. }
  337. }
  338. return Vector2i();
  339. }
  340. MouseButton DisplayServerX11::mouse_get_button_state() const {
  341. return last_button_state;
  342. }
  343. void DisplayServerX11::clipboard_set(const String &p_text) {
  344. _THREAD_SAFE_METHOD_
  345. {
  346. // The clipboard content can be accessed while polling for events.
  347. MutexLock mutex_lock(events_mutex);
  348. internal_clipboard = p_text;
  349. }
  350. XSetSelectionOwner(x11_display, XA_PRIMARY, windows[MAIN_WINDOW_ID].x11_window, CurrentTime);
  351. XSetSelectionOwner(x11_display, XInternAtom(x11_display, "CLIPBOARD", 0), windows[MAIN_WINDOW_ID].x11_window, CurrentTime);
  352. }
  353. void DisplayServerX11::clipboard_set_primary(const String &p_text) {
  354. _THREAD_SAFE_METHOD_
  355. if (!p_text.is_empty()) {
  356. {
  357. // The clipboard content can be accessed while polling for events.
  358. MutexLock mutex_lock(events_mutex);
  359. internal_clipboard_primary = p_text;
  360. }
  361. XSetSelectionOwner(x11_display, XA_PRIMARY, windows[MAIN_WINDOW_ID].x11_window, CurrentTime);
  362. XSetSelectionOwner(x11_display, XInternAtom(x11_display, "PRIMARY", 0), windows[MAIN_WINDOW_ID].x11_window, CurrentTime);
  363. }
  364. }
  365. Bool DisplayServerX11::_predicate_clipboard_selection(Display *display, XEvent *event, XPointer arg) {
  366. if (event->type == SelectionNotify && event->xselection.requestor == *(Window *)arg) {
  367. return True;
  368. } else {
  369. return False;
  370. }
  371. }
  372. Bool DisplayServerX11::_predicate_clipboard_incr(Display *display, XEvent *event, XPointer arg) {
  373. if (event->type == PropertyNotify && event->xproperty.state == PropertyNewValue) {
  374. return True;
  375. } else {
  376. return False;
  377. }
  378. }
  379. String DisplayServerX11::_clipboard_get_impl(Atom p_source, Window x11_window, Atom target) const {
  380. String ret;
  381. Window selection_owner = XGetSelectionOwner(x11_display, p_source);
  382. if (selection_owner == x11_window) {
  383. static const char *target_type = "PRIMARY";
  384. if (p_source != None && String(XGetAtomName(x11_display, p_source)) == target_type) {
  385. return internal_clipboard_primary;
  386. } else {
  387. return internal_clipboard;
  388. }
  389. }
  390. if (selection_owner != None) {
  391. // Block events polling while processing selection events.
  392. MutexLock mutex_lock(events_mutex);
  393. Atom selection = XA_PRIMARY;
  394. XConvertSelection(x11_display, p_source, target, selection,
  395. x11_window, CurrentTime);
  396. XFlush(x11_display);
  397. // Blocking wait for predicate to be True and remove the event from the queue.
  398. XEvent event;
  399. XIfEvent(x11_display, &event, _predicate_clipboard_selection, (XPointer)&x11_window);
  400. // Do not get any data, see how much data is there.
  401. Atom type;
  402. int format, result;
  403. unsigned long len, bytes_left, dummy;
  404. unsigned char *data;
  405. XGetWindowProperty(x11_display, x11_window,
  406. selection, // Tricky..
  407. 0, 0, // offset - len
  408. 0, // Delete 0==FALSE
  409. AnyPropertyType, // flag
  410. &type, // return type
  411. &format, // return format
  412. &len, &bytes_left, // data length
  413. &data);
  414. if (data) {
  415. XFree(data);
  416. }
  417. if (type == XInternAtom(x11_display, "INCR", 0)) {
  418. // Data is going to be received incrementally.
  419. DEBUG_LOG_X11("INCR selection started.\n");
  420. LocalVector<uint8_t> incr_data;
  421. uint32_t data_size = 0;
  422. bool success = false;
  423. // Delete INCR property to notify the owner.
  424. XDeleteProperty(x11_display, x11_window, type);
  425. // Process events from the queue.
  426. bool done = false;
  427. while (!done) {
  428. if (!_wait_for_events()) {
  429. // Error or timeout, abort.
  430. break;
  431. }
  432. // Non-blocking wait for next event and remove it from the queue.
  433. XEvent ev;
  434. while (XCheckIfEvent(x11_display, &ev, _predicate_clipboard_incr, nullptr)) {
  435. result = XGetWindowProperty(x11_display, x11_window,
  436. selection, // selection type
  437. 0, LONG_MAX, // offset - len
  438. True, // delete property to notify the owner
  439. AnyPropertyType, // flag
  440. &type, // return type
  441. &format, // return format
  442. &len, &bytes_left, // data length
  443. &data);
  444. DEBUG_LOG_X11("PropertyNotify: len=%lu, format=%i\n", len, format);
  445. if (result == Success) {
  446. if (data && (len > 0)) {
  447. uint32_t prev_size = incr_data.size();
  448. if (prev_size == 0) {
  449. // First property contains initial data size.
  450. unsigned long initial_size = *(unsigned long *)data;
  451. incr_data.resize(initial_size);
  452. } else {
  453. // New chunk, resize to be safe and append data.
  454. incr_data.resize(MAX(data_size + len, prev_size));
  455. memcpy(incr_data.ptr() + data_size, data, len);
  456. data_size += len;
  457. }
  458. } else {
  459. // Last chunk, process finished.
  460. done = true;
  461. success = true;
  462. }
  463. } else {
  464. printf("Failed to get selection data chunk.\n");
  465. done = true;
  466. }
  467. if (data) {
  468. XFree(data);
  469. }
  470. if (done) {
  471. break;
  472. }
  473. }
  474. }
  475. if (success && (data_size > 0)) {
  476. ret.parse_utf8((const char *)incr_data.ptr(), data_size);
  477. }
  478. } else if (bytes_left > 0) {
  479. // Data is ready and can be processed all at once.
  480. result = XGetWindowProperty(x11_display, x11_window,
  481. selection, 0, bytes_left, 0,
  482. AnyPropertyType, &type, &format,
  483. &len, &dummy, &data);
  484. if (result == Success) {
  485. ret.parse_utf8((const char *)data);
  486. } else {
  487. printf("Failed to get selection data.\n");
  488. }
  489. if (data) {
  490. XFree(data);
  491. }
  492. }
  493. }
  494. return ret;
  495. }
  496. String DisplayServerX11::_clipboard_get(Atom p_source, Window x11_window) const {
  497. String ret;
  498. Atom utf8_atom = XInternAtom(x11_display, "UTF8_STRING", True);
  499. if (utf8_atom != None) {
  500. ret = _clipboard_get_impl(p_source, x11_window, utf8_atom);
  501. }
  502. if (ret.is_empty()) {
  503. ret = _clipboard_get_impl(p_source, x11_window, XA_STRING);
  504. }
  505. return ret;
  506. }
  507. String DisplayServerX11::clipboard_get() const {
  508. _THREAD_SAFE_METHOD_
  509. String ret;
  510. ret = _clipboard_get(XInternAtom(x11_display, "CLIPBOARD", 0), windows[MAIN_WINDOW_ID].x11_window);
  511. if (ret.is_empty()) {
  512. ret = _clipboard_get(XA_PRIMARY, windows[MAIN_WINDOW_ID].x11_window);
  513. }
  514. return ret;
  515. }
  516. String DisplayServerX11::clipboard_get_primary() const {
  517. _THREAD_SAFE_METHOD_
  518. String ret;
  519. ret = _clipboard_get(XInternAtom(x11_display, "PRIMARY", 0), windows[MAIN_WINDOW_ID].x11_window);
  520. if (ret.is_empty()) {
  521. ret = _clipboard_get(XA_PRIMARY, windows[MAIN_WINDOW_ID].x11_window);
  522. }
  523. return ret;
  524. }
  525. Bool DisplayServerX11::_predicate_clipboard_save_targets(Display *display, XEvent *event, XPointer arg) {
  526. if (event->xany.window == *(Window *)arg) {
  527. return (event->type == SelectionRequest) ||
  528. (event->type == SelectionNotify);
  529. } else {
  530. return False;
  531. }
  532. }
  533. void DisplayServerX11::_clipboard_transfer_ownership(Atom p_source, Window x11_window) const {
  534. _THREAD_SAFE_METHOD_
  535. Window selection_owner = XGetSelectionOwner(x11_display, p_source);
  536. if (selection_owner != x11_window) {
  537. return;
  538. }
  539. // Block events polling while processing selection events.
  540. MutexLock mutex_lock(events_mutex);
  541. Atom clipboard_manager = XInternAtom(x11_display, "CLIPBOARD_MANAGER", False);
  542. Atom save_targets = XInternAtom(x11_display, "SAVE_TARGETS", False);
  543. XConvertSelection(x11_display, clipboard_manager, save_targets, None,
  544. x11_window, CurrentTime);
  545. // Process events from the queue.
  546. while (true) {
  547. if (!_wait_for_events()) {
  548. // Error or timeout, abort.
  549. break;
  550. }
  551. // Non-blocking wait for next event and remove it from the queue.
  552. XEvent ev;
  553. while (XCheckIfEvent(x11_display, &ev, _predicate_clipboard_save_targets, (XPointer)&x11_window)) {
  554. switch (ev.type) {
  555. case SelectionRequest:
  556. _handle_selection_request_event(&(ev.xselectionrequest));
  557. break;
  558. case SelectionNotify: {
  559. if (ev.xselection.target == save_targets) {
  560. // Once SelectionNotify is received, we're done whether it succeeded or not.
  561. return;
  562. }
  563. break;
  564. }
  565. }
  566. }
  567. }
  568. }
  569. int DisplayServerX11::get_screen_count() const {
  570. _THREAD_SAFE_METHOD_
  571. // Using Xinerama Extension
  572. int event_base, error_base;
  573. const Bool ext_okay = XineramaQueryExtension(x11_display, &event_base, &error_base);
  574. if (!ext_okay) {
  575. return 0;
  576. }
  577. int count;
  578. XineramaScreenInfo *xsi = XineramaQueryScreens(x11_display, &count);
  579. XFree(xsi);
  580. return count;
  581. }
  582. Rect2i DisplayServerX11::_screen_get_rect(int p_screen) const {
  583. Rect2i rect(0, 0, 0, 0);
  584. if (p_screen == SCREEN_OF_MAIN_WINDOW) {
  585. p_screen = window_get_current_screen();
  586. }
  587. ERR_FAIL_COND_V(p_screen < 0, rect);
  588. // Using Xinerama Extension.
  589. int event_base, error_base;
  590. if (XineramaQueryExtension(x11_display, &event_base, &error_base)) {
  591. int count;
  592. XineramaScreenInfo *xsi = XineramaQueryScreens(x11_display, &count);
  593. // Check if screen is valid.
  594. if (p_screen < count) {
  595. rect.position.x = xsi[p_screen].x_org;
  596. rect.position.y = xsi[p_screen].y_org;
  597. rect.size.width = xsi[p_screen].width;
  598. rect.size.height = xsi[p_screen].height;
  599. } else {
  600. ERR_PRINT("Invalid screen index: " + itos(p_screen) + "(count: " + itos(count) + ").");
  601. }
  602. if (xsi) {
  603. XFree(xsi);
  604. }
  605. }
  606. return rect;
  607. }
  608. Point2i DisplayServerX11::screen_get_position(int p_screen) const {
  609. _THREAD_SAFE_METHOD_
  610. return _screen_get_rect(p_screen).position;
  611. }
  612. Size2i DisplayServerX11::screen_get_size(int p_screen) const {
  613. _THREAD_SAFE_METHOD_
  614. return _screen_get_rect(p_screen).size;
  615. }
  616. bool g_bad_window = false;
  617. int bad_window_error_handler(Display *display, XErrorEvent *error) {
  618. if (error->error_code == BadWindow) {
  619. g_bad_window = true;
  620. } else {
  621. ERR_PRINT("Unhandled XServer error code: " + itos(error->error_code));
  622. }
  623. return 0;
  624. }
  625. Rect2i DisplayServerX11::screen_get_usable_rect(int p_screen) const {
  626. _THREAD_SAFE_METHOD_
  627. if (p_screen == SCREEN_OF_MAIN_WINDOW) {
  628. p_screen = window_get_current_screen();
  629. }
  630. int screen_count = get_screen_count();
  631. // Check if screen is valid.
  632. ERR_FAIL_INDEX_V(p_screen, screen_count, Rect2i(0, 0, 0, 0));
  633. bool is_multiscreen = screen_count > 1;
  634. // Use full monitor size as fallback.
  635. Rect2i rect = _screen_get_rect(p_screen);
  636. // There's generally only one screen reported by xlib even in multi-screen setup,
  637. // in this case it's just one virtual screen composed of all physical monitors.
  638. int x11_screen_count = ScreenCount(x11_display);
  639. Window x11_window = RootWindow(x11_display, p_screen < x11_screen_count ? p_screen : 0);
  640. Atom type;
  641. int format = 0;
  642. unsigned long remaining = 0;
  643. // Find active desktop for the root window.
  644. unsigned int desktop_index = 0;
  645. Atom desktop_prop = XInternAtom(x11_display, "_NET_CURRENT_DESKTOP", True);
  646. if (desktop_prop != None) {
  647. unsigned long desktop_len = 0;
  648. unsigned char *desktop_data = nullptr;
  649. if (XGetWindowProperty(x11_display, x11_window, desktop_prop, 0, LONG_MAX, False, XA_CARDINAL, &type, &format, &desktop_len, &remaining, &desktop_data) == Success) {
  650. if ((format == 32) && (desktop_len > 0) && desktop_data) {
  651. desktop_index = (unsigned int)desktop_data[0];
  652. }
  653. if (desktop_data) {
  654. XFree(desktop_data);
  655. }
  656. }
  657. }
  658. bool use_simple_method = true;
  659. // First check for GTK work area, which is more accurate for multi-screen setup.
  660. if (is_multiscreen) {
  661. // Use already calculated work area when available.
  662. Atom gtk_workareas_prop = XInternAtom(x11_display, "_GTK_WORKAREAS", False);
  663. if (gtk_workareas_prop != None) {
  664. char gtk_workarea_prop_name[32];
  665. snprintf(gtk_workarea_prop_name, 32, "_GTK_WORKAREAS_D%d", desktop_index);
  666. Atom gtk_workarea_prop = XInternAtom(x11_display, gtk_workarea_prop_name, True);
  667. if (gtk_workarea_prop != None) {
  668. unsigned long workarea_len = 0;
  669. unsigned char *workarea_data = nullptr;
  670. if (XGetWindowProperty(x11_display, x11_window, gtk_workarea_prop, 0, LONG_MAX, False, XA_CARDINAL, &type, &format, &workarea_len, &remaining, &workarea_data) == Success) {
  671. if ((format == 32) && (workarea_len % 4 == 0) && workarea_data) {
  672. long *rect_data = (long *)workarea_data;
  673. for (uint32_t data_offset = 0; data_offset < workarea_len; data_offset += 4) {
  674. Rect2i workarea_rect;
  675. workarea_rect.position.x = rect_data[data_offset];
  676. workarea_rect.position.y = rect_data[data_offset + 1];
  677. workarea_rect.size.x = rect_data[data_offset + 2];
  678. workarea_rect.size.y = rect_data[data_offset + 3];
  679. // Intersect with actual monitor size to find the correct area,
  680. // because areas are not in the same order as screens from Xinerama.
  681. if (rect.grow(-1).intersects(workarea_rect)) {
  682. rect = rect.intersection(workarea_rect);
  683. XFree(workarea_data);
  684. return rect;
  685. }
  686. }
  687. }
  688. }
  689. if (workarea_data) {
  690. XFree(workarea_data);
  691. }
  692. }
  693. }
  694. // Fallback to calculating work area by hand from struts.
  695. Atom client_list_prop = XInternAtom(x11_display, "_NET_CLIENT_LIST", True);
  696. if (client_list_prop != None) {
  697. unsigned long clients_len = 0;
  698. unsigned char *clients_data = nullptr;
  699. if (XGetWindowProperty(x11_display, x11_window, client_list_prop, 0, LONG_MAX, False, XA_WINDOW, &type, &format, &clients_len, &remaining, &clients_data) == Success) {
  700. if ((format == 32) && (clients_len > 0) && clients_data) {
  701. Window *windows_data = (Window *)clients_data;
  702. Rect2i desktop_rect;
  703. bool desktop_valid = false;
  704. // Get full desktop size.
  705. {
  706. Atom desktop_geometry_prop = XInternAtom(x11_display, "_NET_DESKTOP_GEOMETRY", True);
  707. if (desktop_geometry_prop != None) {
  708. unsigned long geom_len = 0;
  709. unsigned char *geom_data = nullptr;
  710. if (XGetWindowProperty(x11_display, x11_window, desktop_geometry_prop, 0, LONG_MAX, False, XA_CARDINAL, &type, &format, &geom_len, &remaining, &geom_data) == Success) {
  711. if ((format == 32) && (geom_len >= 2) && geom_data) {
  712. desktop_valid = true;
  713. long *size_data = (long *)geom_data;
  714. desktop_rect.size.x = size_data[0];
  715. desktop_rect.size.y = size_data[1];
  716. }
  717. }
  718. if (geom_data) {
  719. XFree(geom_data);
  720. }
  721. }
  722. }
  723. // Get full desktop position.
  724. if (desktop_valid) {
  725. Atom desktop_viewport_prop = XInternAtom(x11_display, "_NET_DESKTOP_VIEWPORT", True);
  726. if (desktop_viewport_prop != None) {
  727. unsigned long viewport_len = 0;
  728. unsigned char *viewport_data = nullptr;
  729. if (XGetWindowProperty(x11_display, x11_window, desktop_viewport_prop, 0, LONG_MAX, False, XA_CARDINAL, &type, &format, &viewport_len, &remaining, &viewport_data) == Success) {
  730. if ((format == 32) && (viewport_len >= 2) && viewport_data) {
  731. desktop_valid = true;
  732. long *pos_data = (long *)viewport_data;
  733. desktop_rect.position.x = pos_data[0];
  734. desktop_rect.position.y = pos_data[1];
  735. }
  736. }
  737. if (viewport_data) {
  738. XFree(viewport_data);
  739. }
  740. }
  741. }
  742. if (desktop_valid) {
  743. use_simple_method = false;
  744. // Handle bad window errors silently because there's no other way to check
  745. // that one of the windows has been destroyed in the meantime.
  746. int (*oldHandler)(Display *, XErrorEvent *) = XSetErrorHandler(&bad_window_error_handler);
  747. for (unsigned long win_index = 0; win_index < clients_len; ++win_index) {
  748. g_bad_window = false;
  749. // Remove strut size from desktop size to get a more accurate result.
  750. bool strut_found = false;
  751. unsigned long strut_len = 0;
  752. unsigned char *strut_data = nullptr;
  753. Atom strut_partial_prop = XInternAtom(x11_display, "_NET_WM_STRUT_PARTIAL", True);
  754. if (strut_partial_prop != None) {
  755. if (XGetWindowProperty(x11_display, windows_data[win_index], strut_partial_prop, 0, LONG_MAX, False, XA_CARDINAL, &type, &format, &strut_len, &remaining, &strut_data) == Success) {
  756. strut_found = true;
  757. }
  758. }
  759. // Fallback to older strut property.
  760. if (!g_bad_window && !strut_found) {
  761. Atom strut_prop = XInternAtom(x11_display, "_NET_WM_STRUT", True);
  762. if (strut_prop != None) {
  763. if (XGetWindowProperty(x11_display, windows_data[win_index], strut_prop, 0, LONG_MAX, False, XA_CARDINAL, &type, &format, &strut_len, &remaining, &strut_data) == Success) {
  764. strut_found = true;
  765. }
  766. }
  767. }
  768. if (!g_bad_window && strut_found && (format == 32) && (strut_len >= 4) && strut_data) {
  769. long *struts = (long *)strut_data;
  770. long left = struts[0];
  771. long right = struts[1];
  772. long top = struts[2];
  773. long bottom = struts[3];
  774. long left_start_y, left_end_y, right_start_y, right_end_y;
  775. long top_start_x, top_end_x, bottom_start_x, bottom_end_x;
  776. if (strut_len >= 12) {
  777. left_start_y = struts[4];
  778. left_end_y = struts[5];
  779. right_start_y = struts[6];
  780. right_end_y = struts[7];
  781. top_start_x = struts[8];
  782. top_end_x = struts[9];
  783. bottom_start_x = struts[10];
  784. bottom_end_x = struts[11];
  785. } else {
  786. left_start_y = 0;
  787. left_end_y = desktop_rect.size.y;
  788. right_start_y = 0;
  789. right_end_y = desktop_rect.size.y;
  790. top_start_x = 0;
  791. top_end_x = desktop_rect.size.x;
  792. bottom_start_x = 0;
  793. bottom_end_x = desktop_rect.size.x;
  794. }
  795. const Point2i &pos = desktop_rect.position;
  796. const Size2i &size = desktop_rect.size;
  797. Rect2i left_rect(pos.x, pos.y + left_start_y, left, left_end_y - left_start_y);
  798. if (left_rect.size.x > 0) {
  799. Rect2i intersection = rect.intersection(left_rect);
  800. if (!intersection.has_no_area() && intersection.size.x < rect.size.x) {
  801. rect.position.x = left_rect.size.x;
  802. rect.size.x = rect.size.x - intersection.size.x;
  803. }
  804. }
  805. Rect2i right_rect(pos.x + size.x - right, pos.y + right_start_y, right, right_end_y - right_start_y);
  806. if (right_rect.size.x > 0) {
  807. Rect2i intersection = rect.intersection(right_rect);
  808. if (!intersection.has_no_area() && right_rect.size.x < rect.size.x) {
  809. rect.size.x = intersection.position.x - rect.position.x;
  810. }
  811. }
  812. Rect2i top_rect(pos.x + top_start_x, pos.y, top_end_x - top_start_x, top);
  813. if (top_rect.size.y > 0) {
  814. Rect2i intersection = rect.intersection(top_rect);
  815. if (!intersection.has_no_area() && intersection.size.y < rect.size.y) {
  816. rect.position.y = top_rect.size.y;
  817. rect.size.y = rect.size.y - intersection.size.y;
  818. }
  819. }
  820. Rect2i bottom_rect(pos.x + bottom_start_x, pos.y + size.y - bottom, bottom_end_x - bottom_start_x, bottom);
  821. if (bottom_rect.size.y > 0) {
  822. Rect2i intersection = rect.intersection(bottom_rect);
  823. if (!intersection.has_no_area() && right_rect.size.y < rect.size.y) {
  824. rect.size.y = intersection.position.y - rect.position.y;
  825. }
  826. }
  827. }
  828. if (strut_data) {
  829. XFree(strut_data);
  830. }
  831. }
  832. // Restore default error handler.
  833. XSetErrorHandler(oldHandler);
  834. }
  835. }
  836. }
  837. if (clients_data) {
  838. XFree(clients_data);
  839. }
  840. }
  841. }
  842. // Single screen or fallback for multi screen.
  843. if (use_simple_method) {
  844. // Get desktop available size from the global work area.
  845. Atom workarea_prop = XInternAtom(x11_display, "_NET_WORKAREA", True);
  846. if (workarea_prop != None) {
  847. unsigned long workarea_len = 0;
  848. unsigned char *workarea_data = nullptr;
  849. if (XGetWindowProperty(x11_display, x11_window, workarea_prop, 0, LONG_MAX, False, XA_CARDINAL, &type, &format, &workarea_len, &remaining, &workarea_data) == Success) {
  850. if ((format == 32) && (workarea_len >= ((desktop_index + 1) * 4)) && workarea_data) {
  851. long *rect_data = (long *)workarea_data;
  852. int data_offset = desktop_index * 4;
  853. Rect2i workarea_rect;
  854. workarea_rect.position.x = rect_data[data_offset];
  855. workarea_rect.position.y = rect_data[data_offset + 1];
  856. workarea_rect.size.x = rect_data[data_offset + 2];
  857. workarea_rect.size.y = rect_data[data_offset + 3];
  858. // Intersect with actual monitor size to get a proper approximation in multi-screen setup.
  859. if (!is_multiscreen) {
  860. rect = workarea_rect;
  861. } else if (rect.intersects(workarea_rect)) {
  862. rect = rect.intersection(workarea_rect);
  863. }
  864. }
  865. }
  866. if (workarea_data) {
  867. XFree(workarea_data);
  868. }
  869. }
  870. }
  871. return rect;
  872. }
  873. int DisplayServerX11::screen_get_dpi(int p_screen) const {
  874. _THREAD_SAFE_METHOD_
  875. if (p_screen == SCREEN_OF_MAIN_WINDOW) {
  876. p_screen = window_get_current_screen();
  877. }
  878. //invalid screen?
  879. ERR_FAIL_INDEX_V(p_screen, get_screen_count(), 0);
  880. //Get physical monitor Dimensions through XRandR and calculate dpi
  881. Size2i sc = screen_get_size(p_screen);
  882. if (xrandr_ext_ok) {
  883. int count = 0;
  884. if (xrr_get_monitors) {
  885. xrr_monitor_info *monitors = xrr_get_monitors(x11_display, windows[MAIN_WINDOW_ID].x11_window, true, &count);
  886. if (p_screen < count) {
  887. double xdpi = sc.width / (double)monitors[p_screen].mwidth * 25.4;
  888. double ydpi = sc.height / (double)monitors[p_screen].mheight * 25.4;
  889. xrr_free_monitors(monitors);
  890. return (xdpi + ydpi) / 2;
  891. }
  892. xrr_free_monitors(monitors);
  893. } else if (p_screen == 0) {
  894. XRRScreenSize *sizes = XRRSizes(x11_display, 0, &count);
  895. if (sizes) {
  896. double xdpi = sc.width / (double)sizes[0].mwidth * 25.4;
  897. double ydpi = sc.height / (double)sizes[0].mheight * 25.4;
  898. return (xdpi + ydpi) / 2;
  899. }
  900. }
  901. }
  902. int width_mm = DisplayWidthMM(x11_display, p_screen);
  903. int height_mm = DisplayHeightMM(x11_display, p_screen);
  904. double xdpi = (width_mm ? sc.width / (double)width_mm * 25.4 : 0);
  905. double ydpi = (height_mm ? sc.height / (double)height_mm * 25.4 : 0);
  906. if (xdpi || ydpi) {
  907. return (xdpi + ydpi) / (xdpi && ydpi ? 2 : 1);
  908. }
  909. //could not get dpi
  910. return 96;
  911. }
  912. bool DisplayServerX11::screen_is_touchscreen(int p_screen) const {
  913. _THREAD_SAFE_METHOD_
  914. #ifndef _MSC_VER
  915. #warning Need to get from proper window
  916. #endif
  917. return DisplayServer::screen_is_touchscreen(p_screen);
  918. }
  919. #ifdef DBUS_ENABLED
  920. void DisplayServerX11::screen_set_keep_on(bool p_enable) {
  921. if (screen_is_kept_on() == p_enable) {
  922. return;
  923. }
  924. if (p_enable) {
  925. screensaver->inhibit();
  926. } else {
  927. screensaver->uninhibit();
  928. }
  929. keep_screen_on = p_enable;
  930. }
  931. bool DisplayServerX11::screen_is_kept_on() const {
  932. return keep_screen_on;
  933. }
  934. #endif
  935. Vector<DisplayServer::WindowID> DisplayServerX11::get_window_list() const {
  936. _THREAD_SAFE_METHOD_
  937. Vector<int> ret;
  938. for (const KeyValue<WindowID, WindowData> &E : windows) {
  939. ret.push_back(E.key);
  940. }
  941. return ret;
  942. }
  943. DisplayServer::WindowID DisplayServerX11::create_sub_window(WindowMode p_mode, VSyncMode p_vsync_mode, uint32_t p_flags, const Rect2i &p_rect) {
  944. _THREAD_SAFE_METHOD_
  945. WindowID id = _create_window(p_mode, p_vsync_mode, p_flags, p_rect);
  946. for (int i = 0; i < WINDOW_FLAG_MAX; i++) {
  947. if (p_flags & (1 << i)) {
  948. window_set_flag(WindowFlags(i), true, id);
  949. }
  950. }
  951. return id;
  952. }
  953. void DisplayServerX11::show_window(WindowID p_id) {
  954. _THREAD_SAFE_METHOD_
  955. const WindowData &wd = windows[p_id];
  956. DEBUG_LOG_X11("show_window: %lu (%u) \n", wd.x11_window, p_id);
  957. XMapWindow(x11_display, wd.x11_window);
  958. }
  959. void DisplayServerX11::delete_sub_window(WindowID p_id) {
  960. _THREAD_SAFE_METHOD_
  961. ERR_FAIL_COND(!windows.has(p_id));
  962. ERR_FAIL_COND_MSG(p_id == MAIN_WINDOW_ID, "Main window can't be deleted"); //ma
  963. WindowData &wd = windows[p_id];
  964. DEBUG_LOG_X11("delete_sub_window: %lu (%u) \n", wd.x11_window, p_id);
  965. while (wd.transient_children.size()) {
  966. window_set_transient(wd.transient_children.front()->get(), INVALID_WINDOW_ID);
  967. }
  968. if (wd.transient_parent != INVALID_WINDOW_ID) {
  969. window_set_transient(p_id, INVALID_WINDOW_ID);
  970. }
  971. #ifdef VULKAN_ENABLED
  972. if (context_vulkan) {
  973. context_vulkan->window_destroy(p_id);
  974. }
  975. #endif
  976. #ifdef GLES3_ENABLED
  977. if (gl_manager) {
  978. gl_manager->window_destroy(p_id);
  979. }
  980. #endif
  981. XUnmapWindow(x11_display, wd.x11_window);
  982. XDestroyWindow(x11_display, wd.x11_window);
  983. if (wd.xic) {
  984. XDestroyIC(wd.xic);
  985. wd.xic = nullptr;
  986. }
  987. windows.erase(p_id);
  988. }
  989. int64_t DisplayServerX11::window_get_native_handle(HandleType p_handle_type, WindowID p_window) const {
  990. ERR_FAIL_COND_V(!windows.has(p_window), 0);
  991. switch (p_handle_type) {
  992. case DISPLAY_HANDLE: {
  993. return (int64_t)x11_display;
  994. }
  995. case WINDOW_HANDLE: {
  996. return (int64_t)windows[p_window].x11_window;
  997. }
  998. case WINDOW_VIEW: {
  999. return 0; // Not supported.
  1000. }
  1001. default: {
  1002. return 0;
  1003. }
  1004. }
  1005. }
  1006. void DisplayServerX11::window_attach_instance_id(ObjectID p_instance, WindowID p_window) {
  1007. ERR_FAIL_COND(!windows.has(p_window));
  1008. WindowData &wd = windows[p_window];
  1009. wd.instance_id = p_instance;
  1010. }
  1011. ObjectID DisplayServerX11::window_get_attached_instance_id(WindowID p_window) const {
  1012. ERR_FAIL_COND_V(!windows.has(p_window), ObjectID());
  1013. const WindowData &wd = windows[p_window];
  1014. return wd.instance_id;
  1015. }
  1016. DisplayServerX11::WindowID DisplayServerX11::get_window_at_screen_position(const Point2i &p_position) const {
  1017. WindowID found_window = INVALID_WINDOW_ID;
  1018. WindowID parent_window = INVALID_WINDOW_ID;
  1019. unsigned int focus_order = 0;
  1020. for (const KeyValue<WindowID, WindowData> &E : windows) {
  1021. const WindowData &wd = E.value;
  1022. // Discard windows with no focus.
  1023. if (wd.focus_order == 0) {
  1024. continue;
  1025. }
  1026. // Find topmost window which contains the given position.
  1027. WindowID window_id = E.key;
  1028. Rect2i win_rect = Rect2i(window_get_position(window_id), window_get_size(window_id));
  1029. if (win_rect.has_point(p_position)) {
  1030. // For siblings, pick the window which was focused last.
  1031. if ((parent_window != wd.transient_parent) || (wd.focus_order > focus_order)) {
  1032. found_window = window_id;
  1033. parent_window = wd.transient_parent;
  1034. focus_order = wd.focus_order;
  1035. }
  1036. }
  1037. }
  1038. return found_window;
  1039. }
  1040. void DisplayServerX11::window_set_title(const String &p_title, WindowID p_window) {
  1041. _THREAD_SAFE_METHOD_
  1042. ERR_FAIL_COND(!windows.has(p_window));
  1043. WindowData &wd = windows[p_window];
  1044. XStoreName(x11_display, wd.x11_window, p_title.utf8().get_data());
  1045. Atom _net_wm_name = XInternAtom(x11_display, "_NET_WM_NAME", false);
  1046. Atom utf8_string = XInternAtom(x11_display, "UTF8_STRING", false);
  1047. if (_net_wm_name != None && utf8_string != None) {
  1048. XChangeProperty(x11_display, wd.x11_window, _net_wm_name, utf8_string, 8, PropModeReplace, (unsigned char *)p_title.utf8().get_data(), p_title.utf8().length());
  1049. }
  1050. }
  1051. void DisplayServerX11::window_set_mouse_passthrough(const Vector<Vector2> &p_region, WindowID p_window) {
  1052. _THREAD_SAFE_METHOD_
  1053. ERR_FAIL_COND(!windows.has(p_window));
  1054. const WindowData &wd = windows[p_window];
  1055. int event_base, error_base;
  1056. const Bool ext_okay = XShapeQueryExtension(x11_display, &event_base, &error_base);
  1057. if (ext_okay) {
  1058. Region region;
  1059. if (p_region.size() == 0) {
  1060. region = XCreateRegion();
  1061. XRectangle rect;
  1062. rect.x = 0;
  1063. rect.y = 0;
  1064. rect.width = window_get_real_size(p_window).x;
  1065. rect.height = window_get_real_size(p_window).y;
  1066. XUnionRectWithRegion(&rect, region, region);
  1067. } else {
  1068. XPoint *points = (XPoint *)memalloc(sizeof(XPoint) * p_region.size());
  1069. for (int i = 0; i < p_region.size(); i++) {
  1070. points[i].x = p_region[i].x;
  1071. points[i].y = p_region[i].y;
  1072. }
  1073. region = XPolygonRegion(points, p_region.size(), EvenOddRule);
  1074. memfree(points);
  1075. }
  1076. XShapeCombineRegion(x11_display, wd.x11_window, ShapeInput, 0, 0, region, ShapeSet);
  1077. XDestroyRegion(region);
  1078. }
  1079. }
  1080. void DisplayServerX11::window_set_rect_changed_callback(const Callable &p_callable, WindowID p_window) {
  1081. _THREAD_SAFE_METHOD_
  1082. ERR_FAIL_COND(!windows.has(p_window));
  1083. WindowData &wd = windows[p_window];
  1084. wd.rect_changed_callback = p_callable;
  1085. }
  1086. void DisplayServerX11::window_set_window_event_callback(const Callable &p_callable, WindowID p_window) {
  1087. _THREAD_SAFE_METHOD_
  1088. ERR_FAIL_COND(!windows.has(p_window));
  1089. WindowData &wd = windows[p_window];
  1090. wd.event_callback = p_callable;
  1091. }
  1092. void DisplayServerX11::window_set_input_event_callback(const Callable &p_callable, WindowID p_window) {
  1093. _THREAD_SAFE_METHOD_
  1094. ERR_FAIL_COND(!windows.has(p_window));
  1095. WindowData &wd = windows[p_window];
  1096. wd.input_event_callback = p_callable;
  1097. }
  1098. void DisplayServerX11::window_set_input_text_callback(const Callable &p_callable, WindowID p_window) {
  1099. _THREAD_SAFE_METHOD_
  1100. ERR_FAIL_COND(!windows.has(p_window));
  1101. WindowData &wd = windows[p_window];
  1102. wd.input_text_callback = p_callable;
  1103. }
  1104. void DisplayServerX11::window_set_drop_files_callback(const Callable &p_callable, WindowID p_window) {
  1105. _THREAD_SAFE_METHOD_
  1106. ERR_FAIL_COND(!windows.has(p_window));
  1107. WindowData &wd = windows[p_window];
  1108. wd.drop_files_callback = p_callable;
  1109. }
  1110. int DisplayServerX11::window_get_current_screen(WindowID p_window) const {
  1111. _THREAD_SAFE_METHOD_
  1112. int count = get_screen_count();
  1113. if (count < 2) {
  1114. // Early exit with single monitor.
  1115. return 0;
  1116. }
  1117. ERR_FAIL_COND_V(!windows.has(p_window), 0);
  1118. const WindowData &wd = windows[p_window];
  1119. const Rect2i window_rect(wd.position, wd.size);
  1120. // Find which monitor has the largest overlap with the given window.
  1121. int screen_index = 0;
  1122. int max_area = 0;
  1123. for (int i = 0; i < count; i++) {
  1124. Rect2i screen_rect = _screen_get_rect(i);
  1125. Rect2i intersection = screen_rect.intersection(window_rect);
  1126. int area = intersection.get_area();
  1127. if (area > max_area) {
  1128. max_area = area;
  1129. screen_index = i;
  1130. }
  1131. }
  1132. return screen_index;
  1133. }
  1134. void DisplayServerX11::gl_window_make_current(DisplayServer::WindowID p_window_id) {
  1135. #if defined(GLES3_ENABLED)
  1136. if (gl_manager)
  1137. gl_manager->window_make_current(p_window_id);
  1138. #endif
  1139. }
  1140. void DisplayServerX11::window_set_current_screen(int p_screen, WindowID p_window) {
  1141. _THREAD_SAFE_METHOD_
  1142. ERR_FAIL_COND(!windows.has(p_window));
  1143. WindowData &wd = windows[p_window];
  1144. if (p_screen == SCREEN_OF_MAIN_WINDOW) {
  1145. p_screen = window_get_current_screen();
  1146. }
  1147. // Check if screen is valid
  1148. ERR_FAIL_INDEX(p_screen, get_screen_count());
  1149. if (window_get_mode(p_window) == WINDOW_MODE_FULLSCREEN) {
  1150. Point2i position = screen_get_position(p_screen);
  1151. Size2i size = screen_get_size(p_screen);
  1152. XMoveResizeWindow(x11_display, wd.x11_window, position.x, position.y, size.x, size.y);
  1153. } else {
  1154. if (p_screen != window_get_current_screen(p_window)) {
  1155. Point2i position = screen_get_position(p_screen);
  1156. XMoveWindow(x11_display, wd.x11_window, position.x, position.y);
  1157. }
  1158. }
  1159. }
  1160. void DisplayServerX11::window_set_transient(WindowID p_window, WindowID p_parent) {
  1161. _THREAD_SAFE_METHOD_
  1162. ERR_FAIL_COND(p_window == p_parent);
  1163. ERR_FAIL_COND(!windows.has(p_window));
  1164. WindowData &wd_window = windows[p_window];
  1165. WindowID prev_parent = wd_window.transient_parent;
  1166. ERR_FAIL_COND(prev_parent == p_parent);
  1167. DEBUG_LOG_X11("window_set_transient: %lu (%u), prev_parent=%u, parent=%u\n", wd_window.x11_window, p_window, prev_parent, p_parent);
  1168. ERR_FAIL_COND_MSG(wd_window.on_top, "Windows with the 'on top' can't become transient.");
  1169. if (p_parent == INVALID_WINDOW_ID) {
  1170. //remove transient
  1171. ERR_FAIL_COND(prev_parent == INVALID_WINDOW_ID);
  1172. ERR_FAIL_COND(!windows.has(prev_parent));
  1173. WindowData &wd_parent = windows[prev_parent];
  1174. wd_window.transient_parent = INVALID_WINDOW_ID;
  1175. wd_parent.transient_children.erase(p_window);
  1176. XSetTransientForHint(x11_display, wd_window.x11_window, None);
  1177. // Set focus to parent sub window to avoid losing all focus when closing a nested sub-menu.
  1178. // RevertToPointerRoot is used to make sure we don't lose all focus in case
  1179. // a subwindow and its parent are both destroyed.
  1180. if (wd_window.menu_type && !wd_window.no_focus && wd_window.focused) {
  1181. if (!wd_parent.no_focus) {
  1182. XSetInputFocus(x11_display, wd_parent.x11_window, RevertToPointerRoot, CurrentTime);
  1183. }
  1184. }
  1185. } else {
  1186. ERR_FAIL_COND(!windows.has(p_parent));
  1187. ERR_FAIL_COND_MSG(prev_parent != INVALID_WINDOW_ID, "Window already has a transient parent");
  1188. WindowData &wd_parent = windows[p_parent];
  1189. wd_window.transient_parent = p_parent;
  1190. wd_parent.transient_children.insert(p_window);
  1191. XSetTransientForHint(x11_display, wd_window.x11_window, wd_parent.x11_window);
  1192. }
  1193. }
  1194. // Helper method. Assumes that the window id has already been checked and exists.
  1195. void DisplayServerX11::_update_size_hints(WindowID p_window) {
  1196. WindowData &wd = windows[p_window];
  1197. WindowMode window_mode = window_get_mode(p_window);
  1198. XSizeHints *xsh = XAllocSizeHints();
  1199. // Always set the position and size hints - they should be synchronized with the actual values after the window is mapped anyway
  1200. xsh->flags |= PPosition | PSize;
  1201. xsh->x = wd.position.x;
  1202. xsh->y = wd.position.y;
  1203. xsh->width = wd.size.width;
  1204. xsh->height = wd.size.height;
  1205. if (window_mode == WINDOW_MODE_FULLSCREEN) {
  1206. // Do not set any other hints to prevent the window manager from ignoring the fullscreen flags
  1207. } else if (window_get_flag(WINDOW_FLAG_RESIZE_DISABLED, p_window)) {
  1208. // If resizing is disabled, use the forced size
  1209. xsh->flags |= PMinSize | PMaxSize;
  1210. xsh->min_width = wd.size.x;
  1211. xsh->max_width = wd.size.x;
  1212. xsh->min_height = wd.size.y;
  1213. xsh->max_height = wd.size.y;
  1214. } else {
  1215. // Otherwise, just respect min_size and max_size
  1216. if (wd.min_size != Size2i()) {
  1217. xsh->flags |= PMinSize;
  1218. xsh->min_width = wd.min_size.x;
  1219. xsh->min_height = wd.min_size.y;
  1220. }
  1221. if (wd.max_size != Size2i()) {
  1222. xsh->flags |= PMaxSize;
  1223. xsh->max_width = wd.max_size.x;
  1224. xsh->max_height = wd.max_size.y;
  1225. }
  1226. }
  1227. XSetWMNormalHints(x11_display, wd.x11_window, xsh);
  1228. XFree(xsh);
  1229. }
  1230. Point2i DisplayServerX11::window_get_position(WindowID p_window) const {
  1231. _THREAD_SAFE_METHOD_
  1232. ERR_FAIL_COND_V(!windows.has(p_window), Point2i());
  1233. const WindowData &wd = windows[p_window];
  1234. return wd.position;
  1235. }
  1236. void DisplayServerX11::window_set_position(const Point2i &p_position, WindowID p_window) {
  1237. _THREAD_SAFE_METHOD_
  1238. ERR_FAIL_COND(!windows.has(p_window));
  1239. WindowData &wd = windows[p_window];
  1240. int x = 0;
  1241. int y = 0;
  1242. if (!window_get_flag(WINDOW_FLAG_BORDERLESS, p_window)) {
  1243. //exclude window decorations
  1244. XSync(x11_display, False);
  1245. Atom prop = XInternAtom(x11_display, "_NET_FRAME_EXTENTS", True);
  1246. if (prop != None) {
  1247. Atom type;
  1248. int format;
  1249. unsigned long len;
  1250. unsigned long remaining;
  1251. unsigned char *data = nullptr;
  1252. if (XGetWindowProperty(x11_display, wd.x11_window, prop, 0, 4, False, AnyPropertyType, &type, &format, &len, &remaining, &data) == Success) {
  1253. if (format == 32 && len == 4 && data) {
  1254. long *extents = (long *)data;
  1255. x = extents[0];
  1256. y = extents[2];
  1257. }
  1258. XFree(data);
  1259. }
  1260. }
  1261. }
  1262. XMoveWindow(x11_display, wd.x11_window, p_position.x - x, p_position.y - y);
  1263. _update_real_mouse_position(wd);
  1264. }
  1265. void DisplayServerX11::window_set_max_size(const Size2i p_size, WindowID p_window) {
  1266. _THREAD_SAFE_METHOD_
  1267. ERR_FAIL_COND(!windows.has(p_window));
  1268. WindowData &wd = windows[p_window];
  1269. if ((p_size != Size2i()) && ((p_size.x < wd.min_size.x) || (p_size.y < wd.min_size.y))) {
  1270. ERR_PRINT("Maximum window size can't be smaller than minimum window size!");
  1271. return;
  1272. }
  1273. wd.max_size = p_size;
  1274. _update_size_hints(p_window);
  1275. XFlush(x11_display);
  1276. }
  1277. Size2i DisplayServerX11::window_get_max_size(WindowID p_window) const {
  1278. _THREAD_SAFE_METHOD_
  1279. ERR_FAIL_COND_V(!windows.has(p_window), Size2i());
  1280. const WindowData &wd = windows[p_window];
  1281. return wd.max_size;
  1282. }
  1283. void DisplayServerX11::window_set_min_size(const Size2i p_size, WindowID p_window) {
  1284. _THREAD_SAFE_METHOD_
  1285. ERR_FAIL_COND(!windows.has(p_window));
  1286. WindowData &wd = windows[p_window];
  1287. if ((p_size != Size2i()) && (wd.max_size != Size2i()) && ((p_size.x > wd.max_size.x) || (p_size.y > wd.max_size.y))) {
  1288. ERR_PRINT("Minimum window size can't be larger than maximum window size!");
  1289. return;
  1290. }
  1291. wd.min_size = p_size;
  1292. _update_size_hints(p_window);
  1293. XFlush(x11_display);
  1294. }
  1295. Size2i DisplayServerX11::window_get_min_size(WindowID p_window) const {
  1296. _THREAD_SAFE_METHOD_
  1297. ERR_FAIL_COND_V(!windows.has(p_window), Size2i());
  1298. const WindowData &wd = windows[p_window];
  1299. return wd.min_size;
  1300. }
  1301. void DisplayServerX11::window_set_size(const Size2i p_size, WindowID p_window) {
  1302. _THREAD_SAFE_METHOD_
  1303. ERR_FAIL_COND(!windows.has(p_window));
  1304. Size2i size = p_size;
  1305. size.x = MAX(1, size.x);
  1306. size.y = MAX(1, size.y);
  1307. WindowData &wd = windows[p_window];
  1308. if (wd.size.width == size.width && wd.size.height == size.height) {
  1309. return;
  1310. }
  1311. XWindowAttributes xwa;
  1312. XSync(x11_display, False);
  1313. XGetWindowAttributes(x11_display, wd.x11_window, &xwa);
  1314. int old_w = xwa.width;
  1315. int old_h = xwa.height;
  1316. // Update our videomode width and height
  1317. wd.size = size;
  1318. // Update the size hints first to make sure the window size can be set
  1319. _update_size_hints(p_window);
  1320. // Resize the window
  1321. XResizeWindow(x11_display, wd.x11_window, size.x, size.y);
  1322. for (int timeout = 0; timeout < 50; ++timeout) {
  1323. XSync(x11_display, False);
  1324. XGetWindowAttributes(x11_display, wd.x11_window, &xwa);
  1325. if (old_w != xwa.width || old_h != xwa.height) {
  1326. break;
  1327. }
  1328. usleep(10000);
  1329. }
  1330. }
  1331. Size2i DisplayServerX11::window_get_size(WindowID p_window) const {
  1332. _THREAD_SAFE_METHOD_
  1333. ERR_FAIL_COND_V(!windows.has(p_window), Size2i());
  1334. const WindowData &wd = windows[p_window];
  1335. return wd.size;
  1336. }
  1337. Size2i DisplayServerX11::window_get_real_size(WindowID p_window) const {
  1338. _THREAD_SAFE_METHOD_
  1339. ERR_FAIL_COND_V(!windows.has(p_window), Size2i());
  1340. const WindowData &wd = windows[p_window];
  1341. XWindowAttributes xwa;
  1342. XSync(x11_display, False);
  1343. XGetWindowAttributes(x11_display, wd.x11_window, &xwa);
  1344. int w = xwa.width;
  1345. int h = xwa.height;
  1346. Atom prop = XInternAtom(x11_display, "_NET_FRAME_EXTENTS", True);
  1347. if (prop != None) {
  1348. Atom type;
  1349. int format;
  1350. unsigned long len;
  1351. unsigned long remaining;
  1352. unsigned char *data = nullptr;
  1353. if (XGetWindowProperty(x11_display, wd.x11_window, prop, 0, 4, False, AnyPropertyType, &type, &format, &len, &remaining, &data) == Success) {
  1354. if (format == 32 && len == 4 && data) {
  1355. long *extents = (long *)data;
  1356. w += extents[0] + extents[1]; // left, right
  1357. h += extents[2] + extents[3]; // top, bottom
  1358. }
  1359. XFree(data);
  1360. }
  1361. }
  1362. return Size2i(w, h);
  1363. }
  1364. // Just a helper to reduce code duplication in `window_is_maximize_allowed`
  1365. // and `_set_wm_maximized`.
  1366. bool DisplayServerX11::_window_maximize_check(WindowID p_window, const char *p_atom_name) const {
  1367. ERR_FAIL_COND_V(!windows.has(p_window), false);
  1368. const WindowData &wd = windows[p_window];
  1369. Atom property = XInternAtom(x11_display, p_atom_name, False);
  1370. Atom type;
  1371. int format;
  1372. unsigned long len;
  1373. unsigned long remaining;
  1374. unsigned char *data = nullptr;
  1375. bool retval = false;
  1376. if (property == None) {
  1377. return false;
  1378. }
  1379. int result = XGetWindowProperty(
  1380. x11_display,
  1381. wd.x11_window,
  1382. property,
  1383. 0,
  1384. 1024,
  1385. False,
  1386. XA_ATOM,
  1387. &type,
  1388. &format,
  1389. &len,
  1390. &remaining,
  1391. &data);
  1392. if (result == Success && data) {
  1393. Atom *atoms = (Atom *)data;
  1394. Atom wm_act_max_horz = XInternAtom(x11_display, "_NET_WM_ACTION_MAXIMIZE_HORZ", False);
  1395. Atom wm_act_max_vert = XInternAtom(x11_display, "_NET_WM_ACTION_MAXIMIZE_VERT", False);
  1396. bool found_wm_act_max_horz = false;
  1397. bool found_wm_act_max_vert = false;
  1398. for (uint64_t i = 0; i < len; i++) {
  1399. if (atoms[i] == wm_act_max_horz) {
  1400. found_wm_act_max_horz = true;
  1401. }
  1402. if (atoms[i] == wm_act_max_vert) {
  1403. found_wm_act_max_vert = true;
  1404. }
  1405. if (found_wm_act_max_horz || found_wm_act_max_vert) {
  1406. retval = true;
  1407. break;
  1408. }
  1409. }
  1410. XFree(data);
  1411. }
  1412. return retval;
  1413. }
  1414. bool DisplayServerX11::window_is_maximize_allowed(WindowID p_window) const {
  1415. _THREAD_SAFE_METHOD_
  1416. return _window_maximize_check(p_window, "_NET_WM_ALLOWED_ACTIONS");
  1417. }
  1418. void DisplayServerX11::_set_wm_maximized(WindowID p_window, bool p_enabled) {
  1419. ERR_FAIL_COND(!windows.has(p_window));
  1420. WindowData &wd = windows[p_window];
  1421. // Using EWMH -- Extended Window Manager Hints
  1422. XEvent xev;
  1423. Atom wm_state = XInternAtom(x11_display, "_NET_WM_STATE", False);
  1424. Atom wm_max_horz = XInternAtom(x11_display, "_NET_WM_STATE_MAXIMIZED_HORZ", False);
  1425. Atom wm_max_vert = XInternAtom(x11_display, "_NET_WM_STATE_MAXIMIZED_VERT", False);
  1426. memset(&xev, 0, sizeof(xev));
  1427. xev.type = ClientMessage;
  1428. xev.xclient.window = wd.x11_window;
  1429. xev.xclient.message_type = wm_state;
  1430. xev.xclient.format = 32;
  1431. xev.xclient.data.l[0] = p_enabled ? _NET_WM_STATE_ADD : _NET_WM_STATE_REMOVE;
  1432. xev.xclient.data.l[1] = wm_max_horz;
  1433. xev.xclient.data.l[2] = wm_max_vert;
  1434. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1435. if (p_enabled && window_is_maximize_allowed(p_window)) {
  1436. // Wait for effective resizing (so the GLX context is too).
  1437. // Give up after 0.5s, it's not going to happen on this WM.
  1438. // https://github.com/godotengine/godot/issues/19978
  1439. for (int attempt = 0; window_get_mode(p_window) != WINDOW_MODE_MAXIMIZED && attempt < 50; attempt++) {
  1440. usleep(10000);
  1441. }
  1442. }
  1443. }
  1444. void DisplayServerX11::_set_wm_fullscreen(WindowID p_window, bool p_enabled) {
  1445. ERR_FAIL_COND(!windows.has(p_window));
  1446. WindowData &wd = windows[p_window];
  1447. if (p_enabled && !window_get_flag(WINDOW_FLAG_BORDERLESS, p_window)) {
  1448. // remove decorations if the window is not already borderless
  1449. Hints hints;
  1450. Atom property;
  1451. hints.flags = 2;
  1452. hints.decorations = 0;
  1453. property = XInternAtom(x11_display, "_MOTIF_WM_HINTS", True);
  1454. if (property != None) {
  1455. XChangeProperty(x11_display, wd.x11_window, property, property, 32, PropModeReplace, (unsigned char *)&hints, 5);
  1456. }
  1457. }
  1458. if (p_enabled) {
  1459. // Set the window as resizable to prevent window managers to ignore the fullscreen state flag.
  1460. _update_size_hints(p_window);
  1461. }
  1462. // Using EWMH -- Extended Window Manager Hints
  1463. XEvent xev;
  1464. Atom wm_state = XInternAtom(x11_display, "_NET_WM_STATE", False);
  1465. Atom wm_fullscreen = XInternAtom(x11_display, "_NET_WM_STATE_FULLSCREEN", False);
  1466. memset(&xev, 0, sizeof(xev));
  1467. xev.type = ClientMessage;
  1468. xev.xclient.window = wd.x11_window;
  1469. xev.xclient.message_type = wm_state;
  1470. xev.xclient.format = 32;
  1471. xev.xclient.data.l[0] = p_enabled ? _NET_WM_STATE_ADD : _NET_WM_STATE_REMOVE;
  1472. xev.xclient.data.l[1] = wm_fullscreen;
  1473. xev.xclient.data.l[2] = 0;
  1474. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1475. // set bypass compositor hint
  1476. Atom bypass_compositor = XInternAtom(x11_display, "_NET_WM_BYPASS_COMPOSITOR", False);
  1477. unsigned long compositing_disable_on = p_enabled ? 1 : 0;
  1478. if (bypass_compositor != None) {
  1479. XChangeProperty(x11_display, wd.x11_window, bypass_compositor, XA_CARDINAL, 32, PropModeReplace, (unsigned char *)&compositing_disable_on, 1);
  1480. }
  1481. XFlush(x11_display);
  1482. if (!p_enabled) {
  1483. // Reset the non-resizable flags if we un-set these before.
  1484. _update_size_hints(p_window);
  1485. // put back or remove decorations according to the last set borderless state
  1486. Hints hints;
  1487. Atom property;
  1488. hints.flags = 2;
  1489. hints.decorations = window_get_flag(WINDOW_FLAG_BORDERLESS, p_window) ? 0 : 1;
  1490. property = XInternAtom(x11_display, "_MOTIF_WM_HINTS", True);
  1491. if (property != None) {
  1492. XChangeProperty(x11_display, wd.x11_window, property, property, 32, PropModeReplace, (unsigned char *)&hints, 5);
  1493. }
  1494. }
  1495. }
  1496. void DisplayServerX11::window_set_mode(WindowMode p_mode, WindowID p_window) {
  1497. _THREAD_SAFE_METHOD_
  1498. ERR_FAIL_COND(!windows.has(p_window));
  1499. WindowData &wd = windows[p_window];
  1500. WindowMode old_mode = window_get_mode(p_window);
  1501. if (old_mode == p_mode) {
  1502. return; // do nothing
  1503. }
  1504. //remove all "extra" modes
  1505. switch (old_mode) {
  1506. case WINDOW_MODE_WINDOWED: {
  1507. //do nothing
  1508. } break;
  1509. case WINDOW_MODE_MINIMIZED: {
  1510. //Un-Minimize
  1511. // Using ICCCM -- Inter-Client Communication Conventions Manual
  1512. XEvent xev;
  1513. Atom wm_change = XInternAtom(x11_display, "WM_CHANGE_STATE", False);
  1514. memset(&xev, 0, sizeof(xev));
  1515. xev.type = ClientMessage;
  1516. xev.xclient.window = wd.x11_window;
  1517. xev.xclient.message_type = wm_change;
  1518. xev.xclient.format = 32;
  1519. xev.xclient.data.l[0] = WM_NormalState;
  1520. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1521. Atom wm_state = XInternAtom(x11_display, "_NET_WM_STATE", False);
  1522. Atom wm_hidden = XInternAtom(x11_display, "_NET_WM_STATE_HIDDEN", False);
  1523. memset(&xev, 0, sizeof(xev));
  1524. xev.type = ClientMessage;
  1525. xev.xclient.window = wd.x11_window;
  1526. xev.xclient.message_type = wm_state;
  1527. xev.xclient.format = 32;
  1528. xev.xclient.data.l[0] = _NET_WM_STATE_ADD;
  1529. xev.xclient.data.l[1] = wm_hidden;
  1530. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1531. } break;
  1532. case WINDOW_MODE_FULLSCREEN: {
  1533. //Remove full-screen
  1534. wd.fullscreen = false;
  1535. _set_wm_fullscreen(p_window, false);
  1536. //un-maximize required for always on top
  1537. bool on_top = window_get_flag(WINDOW_FLAG_ALWAYS_ON_TOP, p_window);
  1538. window_set_position(wd.last_position_before_fs, p_window);
  1539. if (on_top) {
  1540. _set_wm_maximized(p_window, false);
  1541. }
  1542. } break;
  1543. case WINDOW_MODE_MAXIMIZED: {
  1544. _set_wm_maximized(p_window, false);
  1545. } break;
  1546. }
  1547. switch (p_mode) {
  1548. case WINDOW_MODE_WINDOWED: {
  1549. //do nothing
  1550. } break;
  1551. case WINDOW_MODE_MINIMIZED: {
  1552. // Using ICCCM -- Inter-Client Communication Conventions Manual
  1553. XEvent xev;
  1554. Atom wm_change = XInternAtom(x11_display, "WM_CHANGE_STATE", False);
  1555. memset(&xev, 0, sizeof(xev));
  1556. xev.type = ClientMessage;
  1557. xev.xclient.window = wd.x11_window;
  1558. xev.xclient.message_type = wm_change;
  1559. xev.xclient.format = 32;
  1560. xev.xclient.data.l[0] = WM_IconicState;
  1561. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1562. Atom wm_state = XInternAtom(x11_display, "_NET_WM_STATE", False);
  1563. Atom wm_hidden = XInternAtom(x11_display, "_NET_WM_STATE_HIDDEN", False);
  1564. memset(&xev, 0, sizeof(xev));
  1565. xev.type = ClientMessage;
  1566. xev.xclient.window = wd.x11_window;
  1567. xev.xclient.message_type = wm_state;
  1568. xev.xclient.format = 32;
  1569. xev.xclient.data.l[0] = _NET_WM_STATE_ADD;
  1570. xev.xclient.data.l[1] = wm_hidden;
  1571. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1572. } break;
  1573. case WINDOW_MODE_FULLSCREEN: {
  1574. wd.last_position_before_fs = wd.position;
  1575. if (window_get_flag(WINDOW_FLAG_ALWAYS_ON_TOP, p_window)) {
  1576. _set_wm_maximized(p_window, true);
  1577. }
  1578. wd.fullscreen = true;
  1579. _set_wm_fullscreen(p_window, true);
  1580. } break;
  1581. case WINDOW_MODE_MAXIMIZED: {
  1582. _set_wm_maximized(p_window, true);
  1583. } break;
  1584. }
  1585. }
  1586. DisplayServer::WindowMode DisplayServerX11::window_get_mode(WindowID p_window) const {
  1587. _THREAD_SAFE_METHOD_
  1588. ERR_FAIL_COND_V(!windows.has(p_window), WINDOW_MODE_WINDOWED);
  1589. const WindowData &wd = windows[p_window];
  1590. if (wd.fullscreen) { //if fullscreen, it's not in another mode
  1591. return WINDOW_MODE_FULLSCREEN;
  1592. }
  1593. // Test maximized.
  1594. // Using EWMH -- Extended Window Manager Hints
  1595. if (_window_maximize_check(p_window, "_NET_WM_STATE")) {
  1596. return WINDOW_MODE_MAXIMIZED;
  1597. }
  1598. { // Test minimized.
  1599. // Using ICCCM -- Inter-Client Communication Conventions Manual
  1600. Atom property = XInternAtom(x11_display, "WM_STATE", True);
  1601. if (property == None) {
  1602. return WINDOW_MODE_WINDOWED;
  1603. }
  1604. Atom type;
  1605. int format;
  1606. unsigned long len;
  1607. unsigned long remaining;
  1608. unsigned char *data = nullptr;
  1609. int result = XGetWindowProperty(
  1610. x11_display,
  1611. wd.x11_window,
  1612. property,
  1613. 0,
  1614. 32,
  1615. False,
  1616. AnyPropertyType,
  1617. &type,
  1618. &format,
  1619. &len,
  1620. &remaining,
  1621. &data);
  1622. if (result == Success && data) {
  1623. long *state = (long *)data;
  1624. if (state[0] == WM_IconicState) {
  1625. XFree(data);
  1626. return WINDOW_MODE_MINIMIZED;
  1627. }
  1628. XFree(data);
  1629. }
  1630. }
  1631. // All other discarded, return windowed.
  1632. return WINDOW_MODE_WINDOWED;
  1633. }
  1634. void DisplayServerX11::window_set_flag(WindowFlags p_flag, bool p_enabled, WindowID p_window) {
  1635. _THREAD_SAFE_METHOD_
  1636. ERR_FAIL_COND(!windows.has(p_window));
  1637. WindowData &wd = windows[p_window];
  1638. switch (p_flag) {
  1639. case WINDOW_FLAG_RESIZE_DISABLED: {
  1640. wd.resize_disabled = p_enabled;
  1641. _update_size_hints(p_window);
  1642. XFlush(x11_display);
  1643. } break;
  1644. case WINDOW_FLAG_BORDERLESS: {
  1645. Hints hints;
  1646. Atom property;
  1647. hints.flags = 2;
  1648. hints.decorations = p_enabled ? 0 : 1;
  1649. property = XInternAtom(x11_display, "_MOTIF_WM_HINTS", True);
  1650. if (property != None) {
  1651. XChangeProperty(x11_display, wd.x11_window, property, property, 32, PropModeReplace, (unsigned char *)&hints, 5);
  1652. }
  1653. // Preserve window size
  1654. window_set_size(window_get_size(p_window), p_window);
  1655. wd.borderless = p_enabled;
  1656. } break;
  1657. case WINDOW_FLAG_ALWAYS_ON_TOP: {
  1658. ERR_FAIL_COND_MSG(wd.transient_parent != INVALID_WINDOW_ID, "Can't make a window transient if the 'on top' flag is active.");
  1659. if (p_enabled && wd.fullscreen) {
  1660. _set_wm_maximized(p_window, true);
  1661. }
  1662. Atom wm_state = XInternAtom(x11_display, "_NET_WM_STATE", False);
  1663. Atom wm_above = XInternAtom(x11_display, "_NET_WM_STATE_ABOVE", False);
  1664. XClientMessageEvent xev;
  1665. memset(&xev, 0, sizeof(xev));
  1666. xev.type = ClientMessage;
  1667. xev.window = wd.x11_window;
  1668. xev.message_type = wm_state;
  1669. xev.format = 32;
  1670. xev.data.l[0] = p_enabled ? _NET_WM_STATE_ADD : _NET_WM_STATE_REMOVE;
  1671. xev.data.l[1] = wm_above;
  1672. xev.data.l[3] = 1;
  1673. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, (XEvent *)&xev);
  1674. if (!p_enabled && !wd.fullscreen) {
  1675. _set_wm_maximized(p_window, false);
  1676. }
  1677. wd.on_top = p_enabled;
  1678. } break;
  1679. case WINDOW_FLAG_TRANSPARENT: {
  1680. //todo reimplement
  1681. } break;
  1682. default: {
  1683. }
  1684. }
  1685. }
  1686. bool DisplayServerX11::window_get_flag(WindowFlags p_flag, WindowID p_window) const {
  1687. _THREAD_SAFE_METHOD_
  1688. ERR_FAIL_COND_V(!windows.has(p_window), false);
  1689. const WindowData &wd = windows[p_window];
  1690. switch (p_flag) {
  1691. case WINDOW_FLAG_RESIZE_DISABLED: {
  1692. return wd.resize_disabled;
  1693. } break;
  1694. case WINDOW_FLAG_BORDERLESS: {
  1695. bool borderless = wd.borderless;
  1696. Atom prop = XInternAtom(x11_display, "_MOTIF_WM_HINTS", True);
  1697. if (prop != None) {
  1698. Atom type;
  1699. int format;
  1700. unsigned long len;
  1701. unsigned long remaining;
  1702. unsigned char *data = nullptr;
  1703. if (XGetWindowProperty(x11_display, wd.x11_window, prop, 0, sizeof(Hints), False, AnyPropertyType, &type, &format, &len, &remaining, &data) == Success) {
  1704. if (data && (format == 32) && (len >= 5)) {
  1705. borderless = !((Hints *)data)->decorations;
  1706. }
  1707. if (data) {
  1708. XFree(data);
  1709. }
  1710. }
  1711. }
  1712. return borderless;
  1713. } break;
  1714. case WINDOW_FLAG_ALWAYS_ON_TOP: {
  1715. return wd.on_top;
  1716. } break;
  1717. case WINDOW_FLAG_TRANSPARENT: {
  1718. //todo reimplement
  1719. } break;
  1720. default: {
  1721. }
  1722. }
  1723. return false;
  1724. }
  1725. void DisplayServerX11::window_request_attention(WindowID p_window) {
  1726. _THREAD_SAFE_METHOD_
  1727. ERR_FAIL_COND(!windows.has(p_window));
  1728. WindowData &wd = windows[p_window];
  1729. // Using EWMH -- Extended Window Manager Hints
  1730. //
  1731. // Sets the _NET_WM_STATE_DEMANDS_ATTENTION atom for WM_STATE
  1732. // Will be unset by the window manager after user react on the request for attention
  1733. XEvent xev;
  1734. Atom wm_state = XInternAtom(x11_display, "_NET_WM_STATE", False);
  1735. Atom wm_attention = XInternAtom(x11_display, "_NET_WM_STATE_DEMANDS_ATTENTION", False);
  1736. memset(&xev, 0, sizeof(xev));
  1737. xev.type = ClientMessage;
  1738. xev.xclient.window = wd.x11_window;
  1739. xev.xclient.message_type = wm_state;
  1740. xev.xclient.format = 32;
  1741. xev.xclient.data.l[0] = _NET_WM_STATE_ADD;
  1742. xev.xclient.data.l[1] = wm_attention;
  1743. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1744. XFlush(x11_display);
  1745. }
  1746. void DisplayServerX11::window_move_to_foreground(WindowID p_window) {
  1747. _THREAD_SAFE_METHOD_
  1748. ERR_FAIL_COND(!windows.has(p_window));
  1749. WindowData &wd = windows[p_window];
  1750. XEvent xev;
  1751. Atom net_active_window = XInternAtom(x11_display, "_NET_ACTIVE_WINDOW", False);
  1752. memset(&xev, 0, sizeof(xev));
  1753. xev.type = ClientMessage;
  1754. xev.xclient.window = wd.x11_window;
  1755. xev.xclient.message_type = net_active_window;
  1756. xev.xclient.format = 32;
  1757. xev.xclient.data.l[0] = 1;
  1758. xev.xclient.data.l[1] = CurrentTime;
  1759. XSendEvent(x11_display, DefaultRootWindow(x11_display), False, SubstructureRedirectMask | SubstructureNotifyMask, &xev);
  1760. XFlush(x11_display);
  1761. }
  1762. bool DisplayServerX11::window_can_draw(WindowID p_window) const {
  1763. //this seems to be all that is provided by X11
  1764. return window_get_mode(p_window) != WINDOW_MODE_MINIMIZED;
  1765. }
  1766. bool DisplayServerX11::can_any_window_draw() const {
  1767. _THREAD_SAFE_METHOD_
  1768. for (const KeyValue<WindowID, WindowData> &E : windows) {
  1769. if (window_get_mode(E.key) != WINDOW_MODE_MINIMIZED) {
  1770. return true;
  1771. }
  1772. }
  1773. return false;
  1774. }
  1775. void DisplayServerX11::window_set_ime_active(const bool p_active, WindowID p_window) {
  1776. _THREAD_SAFE_METHOD_
  1777. ERR_FAIL_COND(!windows.has(p_window));
  1778. WindowData &wd = windows[p_window];
  1779. wd.im_active = p_active;
  1780. if (!wd.xic) {
  1781. return;
  1782. }
  1783. // Block events polling while changing input focus
  1784. // because it triggers some event polling internally.
  1785. if (p_active) {
  1786. {
  1787. MutexLock mutex_lock(events_mutex);
  1788. XSetICFocus(wd.xic);
  1789. }
  1790. window_set_ime_position(wd.im_position, p_window);
  1791. } else {
  1792. MutexLock mutex_lock(events_mutex);
  1793. XUnsetICFocus(wd.xic);
  1794. }
  1795. }
  1796. void DisplayServerX11::window_set_ime_position(const Point2i &p_pos, WindowID p_window) {
  1797. _THREAD_SAFE_METHOD_
  1798. ERR_FAIL_COND(!windows.has(p_window));
  1799. WindowData &wd = windows[p_window];
  1800. wd.im_position = p_pos;
  1801. if (!wd.xic) {
  1802. return;
  1803. }
  1804. ::XPoint spot;
  1805. spot.x = short(p_pos.x);
  1806. spot.y = short(p_pos.y);
  1807. XVaNestedList preedit_attr = XVaCreateNestedList(0, XNSpotLocation, &spot, nullptr);
  1808. {
  1809. // Block events polling during this call
  1810. // because it triggers some event polling internally.
  1811. MutexLock mutex_lock(events_mutex);
  1812. XSetICValues(wd.xic, XNPreeditAttributes, preedit_attr, nullptr);
  1813. }
  1814. XFree(preedit_attr);
  1815. }
  1816. void DisplayServerX11::cursor_set_shape(CursorShape p_shape) {
  1817. _THREAD_SAFE_METHOD_
  1818. ERR_FAIL_INDEX(p_shape, CURSOR_MAX);
  1819. if (p_shape == current_cursor) {
  1820. return;
  1821. }
  1822. if (mouse_mode == MOUSE_MODE_VISIBLE || mouse_mode == MOUSE_MODE_CONFINED) {
  1823. if (cursors[p_shape] != None) {
  1824. for (const KeyValue<WindowID, WindowData> &E : windows) {
  1825. XDefineCursor(x11_display, E.value.x11_window, cursors[p_shape]);
  1826. }
  1827. } else if (cursors[CURSOR_ARROW] != None) {
  1828. for (const KeyValue<WindowID, WindowData> &E : windows) {
  1829. XDefineCursor(x11_display, E.value.x11_window, cursors[CURSOR_ARROW]);
  1830. }
  1831. }
  1832. }
  1833. current_cursor = p_shape;
  1834. }
  1835. DisplayServerX11::CursorShape DisplayServerX11::cursor_get_shape() const {
  1836. return current_cursor;
  1837. }
  1838. void DisplayServerX11::cursor_set_custom_image(const RES &p_cursor, CursorShape p_shape, const Vector2 &p_hotspot) {
  1839. _THREAD_SAFE_METHOD_
  1840. if (p_cursor.is_valid()) {
  1841. Map<CursorShape, Vector<Variant>>::Element *cursor_c = cursors_cache.find(p_shape);
  1842. if (cursor_c) {
  1843. if (cursor_c->get()[0] == p_cursor && cursor_c->get()[1] == p_hotspot) {
  1844. cursor_set_shape(p_shape);
  1845. return;
  1846. }
  1847. cursors_cache.erase(p_shape);
  1848. }
  1849. Ref<Texture2D> texture = p_cursor;
  1850. Ref<AtlasTexture> atlas_texture = p_cursor;
  1851. Ref<Image> image;
  1852. Size2i texture_size;
  1853. Rect2i atlas_rect;
  1854. if (texture.is_valid()) {
  1855. image = texture->get_image();
  1856. }
  1857. if (!image.is_valid() && atlas_texture.is_valid()) {
  1858. texture = atlas_texture->get_atlas();
  1859. atlas_rect.size.width = texture->get_width();
  1860. atlas_rect.size.height = texture->get_height();
  1861. atlas_rect.position.x = atlas_texture->get_region().position.x;
  1862. atlas_rect.position.y = atlas_texture->get_region().position.y;
  1863. texture_size.width = atlas_texture->get_region().size.x;
  1864. texture_size.height = atlas_texture->get_region().size.y;
  1865. } else if (image.is_valid()) {
  1866. texture_size.width = texture->get_width();
  1867. texture_size.height = texture->get_height();
  1868. }
  1869. ERR_FAIL_COND(!texture.is_valid());
  1870. ERR_FAIL_COND(p_hotspot.x < 0 || p_hotspot.y < 0);
  1871. ERR_FAIL_COND(texture_size.width > 256 || texture_size.height > 256);
  1872. ERR_FAIL_COND(p_hotspot.x > texture_size.width || p_hotspot.y > texture_size.height);
  1873. image = texture->get_image();
  1874. ERR_FAIL_COND(!image.is_valid());
  1875. // Create the cursor structure
  1876. XcursorImage *cursor_image = XcursorImageCreate(texture_size.width, texture_size.height);
  1877. XcursorUInt image_size = texture_size.width * texture_size.height;
  1878. XcursorDim size = sizeof(XcursorPixel) * image_size;
  1879. cursor_image->version = 1;
  1880. cursor_image->size = size;
  1881. cursor_image->xhot = p_hotspot.x;
  1882. cursor_image->yhot = p_hotspot.y;
  1883. // allocate memory to contain the whole file
  1884. cursor_image->pixels = (XcursorPixel *)memalloc(size);
  1885. for (XcursorPixel index = 0; index < image_size; index++) {
  1886. int row_index = floor(index / texture_size.width) + atlas_rect.position.y;
  1887. int column_index = (index % int(texture_size.width)) + atlas_rect.position.x;
  1888. if (atlas_texture.is_valid()) {
  1889. column_index = MIN(column_index, atlas_rect.size.width - 1);
  1890. row_index = MIN(row_index, atlas_rect.size.height - 1);
  1891. }
  1892. *(cursor_image->pixels + index) = image->get_pixel(column_index, row_index).to_argb32();
  1893. }
  1894. ERR_FAIL_COND(cursor_image->pixels == nullptr);
  1895. // Save it for a further usage
  1896. cursors[p_shape] = XcursorImageLoadCursor(x11_display, cursor_image);
  1897. Vector<Variant> params;
  1898. params.push_back(p_cursor);
  1899. params.push_back(p_hotspot);
  1900. cursors_cache.insert(p_shape, params);
  1901. if (p_shape == current_cursor) {
  1902. if (mouse_mode == MOUSE_MODE_VISIBLE || mouse_mode == MOUSE_MODE_CONFINED) {
  1903. for (const KeyValue<WindowID, WindowData> &E : windows) {
  1904. XDefineCursor(x11_display, E.value.x11_window, cursors[p_shape]);
  1905. }
  1906. }
  1907. }
  1908. memfree(cursor_image->pixels);
  1909. XcursorImageDestroy(cursor_image);
  1910. } else {
  1911. // Reset to default system cursor
  1912. if (img[p_shape]) {
  1913. cursors[p_shape] = XcursorImageLoadCursor(x11_display, img[p_shape]);
  1914. }
  1915. CursorShape c = current_cursor;
  1916. current_cursor = CURSOR_MAX;
  1917. cursor_set_shape(c);
  1918. cursors_cache.erase(p_shape);
  1919. }
  1920. }
  1921. int DisplayServerX11::keyboard_get_layout_count() const {
  1922. int _group_count = 0;
  1923. XkbDescRec *kbd = XkbAllocKeyboard();
  1924. if (kbd) {
  1925. kbd->dpy = x11_display;
  1926. XkbGetControls(x11_display, XkbAllControlsMask, kbd);
  1927. XkbGetNames(x11_display, XkbSymbolsNameMask, kbd);
  1928. const Atom *groups = kbd->names->groups;
  1929. if (kbd->ctrls != nullptr) {
  1930. _group_count = kbd->ctrls->num_groups;
  1931. } else {
  1932. while (_group_count < XkbNumKbdGroups && groups[_group_count] != None) {
  1933. _group_count++;
  1934. }
  1935. }
  1936. XkbFreeKeyboard(kbd, 0, true);
  1937. }
  1938. return _group_count;
  1939. }
  1940. int DisplayServerX11::keyboard_get_current_layout() const {
  1941. XkbStateRec state;
  1942. XkbGetState(x11_display, XkbUseCoreKbd, &state);
  1943. return state.group;
  1944. }
  1945. void DisplayServerX11::keyboard_set_current_layout(int p_index) {
  1946. ERR_FAIL_INDEX(p_index, keyboard_get_layout_count());
  1947. XkbLockGroup(x11_display, XkbUseCoreKbd, p_index);
  1948. }
  1949. String DisplayServerX11::keyboard_get_layout_language(int p_index) const {
  1950. String ret;
  1951. XkbDescRec *kbd = XkbAllocKeyboard();
  1952. if (kbd) {
  1953. kbd->dpy = x11_display;
  1954. XkbGetControls(x11_display, XkbAllControlsMask, kbd);
  1955. XkbGetNames(x11_display, XkbSymbolsNameMask, kbd);
  1956. XkbGetNames(x11_display, XkbGroupNamesMask, kbd);
  1957. int _group_count = 0;
  1958. const Atom *groups = kbd->names->groups;
  1959. if (kbd->ctrls != nullptr) {
  1960. _group_count = kbd->ctrls->num_groups;
  1961. } else {
  1962. while (_group_count < XkbNumKbdGroups && groups[_group_count] != None) {
  1963. _group_count++;
  1964. }
  1965. }
  1966. Atom names = kbd->names->symbols;
  1967. if (names != None) {
  1968. char *name = XGetAtomName(x11_display, names);
  1969. Vector<String> info = String(name).split("+");
  1970. if (p_index >= 0 && p_index < _group_count) {
  1971. if (p_index + 1 < info.size()) {
  1972. ret = info[p_index + 1]; // Skip "pc" at the start and "inet"/"group" at the end of symbols.
  1973. } else {
  1974. ret = "en"; // No symbol for layout fallback to "en".
  1975. }
  1976. } else {
  1977. ERR_PRINT("Index " + itos(p_index) + "is out of bounds (" + itos(_group_count) + ").");
  1978. }
  1979. XFree(name);
  1980. }
  1981. XkbFreeKeyboard(kbd, 0, true);
  1982. }
  1983. return ret.substr(0, 2);
  1984. }
  1985. String DisplayServerX11::keyboard_get_layout_name(int p_index) const {
  1986. String ret;
  1987. XkbDescRec *kbd = XkbAllocKeyboard();
  1988. if (kbd) {
  1989. kbd->dpy = x11_display;
  1990. XkbGetControls(x11_display, XkbAllControlsMask, kbd);
  1991. XkbGetNames(x11_display, XkbSymbolsNameMask, kbd);
  1992. XkbGetNames(x11_display, XkbGroupNamesMask, kbd);
  1993. int _group_count = 0;
  1994. const Atom *groups = kbd->names->groups;
  1995. if (kbd->ctrls != nullptr) {
  1996. _group_count = kbd->ctrls->num_groups;
  1997. } else {
  1998. while (_group_count < XkbNumKbdGroups && groups[_group_count] != None) {
  1999. _group_count++;
  2000. }
  2001. }
  2002. if (p_index >= 0 && p_index < _group_count) {
  2003. char *full_name = XGetAtomName(x11_display, groups[p_index]);
  2004. ret.parse_utf8(full_name);
  2005. XFree(full_name);
  2006. } else {
  2007. ERR_PRINT("Index " + itos(p_index) + "is out of bounds (" + itos(_group_count) + ").");
  2008. }
  2009. XkbFreeKeyboard(kbd, 0, true);
  2010. }
  2011. return ret;
  2012. }
  2013. Key DisplayServerX11::keyboard_get_keycode_from_physical(Key p_keycode) const {
  2014. Key modifiers = p_keycode & KeyModifierMask::MODIFIER_MASK;
  2015. Key keycode_no_mod = p_keycode & KeyModifierMask::CODE_MASK;
  2016. unsigned int xkeycode = KeyMappingX11::get_xlibcode(keycode_no_mod);
  2017. KeySym xkeysym = XkbKeycodeToKeysym(x11_display, xkeycode, 0, 0);
  2018. if (xkeysym >= 'a' && xkeysym <= 'z') {
  2019. xkeysym -= ('a' - 'A');
  2020. }
  2021. Key key = KeyMappingX11::get_keycode(xkeysym);
  2022. // If not found, fallback to QWERTY.
  2023. // This should match the behavior of the event pump
  2024. if (key == Key::NONE) {
  2025. return p_keycode;
  2026. }
  2027. return (Key)(key | modifiers);
  2028. }
  2029. DisplayServerX11::Property DisplayServerX11::_read_property(Display *p_display, Window p_window, Atom p_property) {
  2030. Atom actual_type = None;
  2031. int actual_format = 0;
  2032. unsigned long nitems = 0;
  2033. unsigned long bytes_after = 0;
  2034. unsigned char *ret = nullptr;
  2035. int read_bytes = 1024;
  2036. // Keep trying to read the property until there are no bytes unread.
  2037. if (p_property != None) {
  2038. do {
  2039. if (ret != nullptr) {
  2040. XFree(ret);
  2041. }
  2042. XGetWindowProperty(p_display, p_window, p_property, 0, read_bytes, False, AnyPropertyType,
  2043. &actual_type, &actual_format, &nitems, &bytes_after,
  2044. &ret);
  2045. read_bytes *= 2;
  2046. } while (bytes_after != 0);
  2047. }
  2048. Property p = { ret, actual_format, (int)nitems, actual_type };
  2049. return p;
  2050. }
  2051. static Atom pick_target_from_list(Display *p_display, Atom *p_list, int p_count) {
  2052. static const char *target_type = "text/uri-list";
  2053. for (int i = 0; i < p_count; i++) {
  2054. Atom atom = p_list[i];
  2055. if (atom != None && String(XGetAtomName(p_display, atom)) == target_type) {
  2056. return atom;
  2057. }
  2058. }
  2059. return None;
  2060. }
  2061. static Atom pick_target_from_atoms(Display *p_disp, Atom p_t1, Atom p_t2, Atom p_t3) {
  2062. static const char *target_type = "text/uri-list";
  2063. if (p_t1 != None && String(XGetAtomName(p_disp, p_t1)) == target_type) {
  2064. return p_t1;
  2065. }
  2066. if (p_t2 != None && String(XGetAtomName(p_disp, p_t2)) == target_type) {
  2067. return p_t2;
  2068. }
  2069. if (p_t3 != None && String(XGetAtomName(p_disp, p_t3)) == target_type) {
  2070. return p_t3;
  2071. }
  2072. return None;
  2073. }
  2074. void DisplayServerX11::_get_key_modifier_state(unsigned int p_x11_state, Ref<InputEventWithModifiers> state) {
  2075. state->set_shift_pressed((p_x11_state & ShiftMask));
  2076. state->set_ctrl_pressed((p_x11_state & ControlMask));
  2077. state->set_alt_pressed((p_x11_state & Mod1Mask /*|| p_x11_state&Mod5Mask*/)); //altgr should not count as alt
  2078. state->set_meta_pressed((p_x11_state & Mod4Mask));
  2079. }
  2080. MouseButton DisplayServerX11::_get_mouse_button_state(MouseButton p_x11_button, int p_x11_type) {
  2081. MouseButton mask = mouse_button_to_mask(p_x11_button);
  2082. if (p_x11_type == ButtonPress) {
  2083. last_button_state |= mask;
  2084. } else {
  2085. last_button_state &= ~mask;
  2086. }
  2087. return last_button_state;
  2088. }
  2089. void DisplayServerX11::_handle_key_event(WindowID p_window, XKeyEvent *p_event, LocalVector<XEvent> &p_events, uint32_t &p_event_index, bool p_echo) {
  2090. WindowData wd = windows[p_window];
  2091. // X11 functions don't know what const is
  2092. XKeyEvent *xkeyevent = p_event;
  2093. // This code was pretty difficult to write.
  2094. // The docs stink and every toolkit seems to
  2095. // do it in a different way.
  2096. /* Phase 1, obtain a proper keysym */
  2097. // This was also very difficult to figure out.
  2098. // You'd expect you could just use Keysym provided by
  2099. // XKeycodeToKeysym to obtain internationalized
  2100. // input.. WRONG!!
  2101. // you must use XLookupString (???) which not only wastes
  2102. // cycles generating an unnecessary string, but also
  2103. // still works in half the cases. (won't handle deadkeys)
  2104. // For more complex input methods (deadkeys and more advanced)
  2105. // you have to use XmbLookupString (??).
  2106. // So then you have to choose which of both results
  2107. // you want to keep.
  2108. // This is a real bizarreness and cpu waster.
  2109. KeySym keysym_keycode = 0; // keysym used to find a keycode
  2110. KeySym keysym_unicode = 0; // keysym used to find unicode
  2111. // XLookupString returns keysyms usable as nice keycodes.
  2112. char str[256 + 1];
  2113. XKeyEvent xkeyevent_no_mod = *xkeyevent;
  2114. xkeyevent_no_mod.state &= ~ShiftMask;
  2115. xkeyevent_no_mod.state &= ~ControlMask;
  2116. XLookupString(xkeyevent, str, 256, &keysym_unicode, nullptr);
  2117. XLookupString(&xkeyevent_no_mod, nullptr, 0, &keysym_keycode, nullptr);
  2118. // Meanwhile, XLookupString returns keysyms useful for unicode.
  2119. if (!xmbstring) {
  2120. // keep a temporary buffer for the string
  2121. xmbstring = (char *)memalloc(sizeof(char) * 8);
  2122. xmblen = 8;
  2123. }
  2124. if (xkeyevent->type == KeyPress && wd.xic) {
  2125. Status status;
  2126. #ifdef X_HAVE_UTF8_STRING
  2127. int utf8len = 8;
  2128. char *utf8string = (char *)memalloc(sizeof(char) * utf8len);
  2129. int utf8bytes = Xutf8LookupString(wd.xic, xkeyevent, utf8string,
  2130. utf8len - 1, &keysym_unicode, &status);
  2131. if (status == XBufferOverflow) {
  2132. utf8len = utf8bytes + 1;
  2133. utf8string = (char *)memrealloc(utf8string, utf8len);
  2134. utf8bytes = Xutf8LookupString(wd.xic, xkeyevent, utf8string,
  2135. utf8len - 1, &keysym_unicode, &status);
  2136. }
  2137. utf8string[utf8bytes] = '\0';
  2138. if (status == XLookupChars) {
  2139. bool keypress = xkeyevent->type == KeyPress;
  2140. Key keycode = KeyMappingX11::get_keycode(keysym_keycode);
  2141. Key physical_keycode = KeyMappingX11::get_scancode(xkeyevent->keycode);
  2142. if (keycode >= Key::A + 32 && keycode <= Key::Z + 32) {
  2143. keycode -= 'a' - 'A';
  2144. }
  2145. String tmp;
  2146. tmp.parse_utf8(utf8string, utf8bytes);
  2147. for (int i = 0; i < tmp.length(); i++) {
  2148. Ref<InputEventKey> k;
  2149. k.instantiate();
  2150. if (physical_keycode == Key::NONE && keycode == Key::NONE && tmp[i] == 0) {
  2151. continue;
  2152. }
  2153. if (keycode == Key::NONE) {
  2154. keycode = (Key)physical_keycode;
  2155. }
  2156. _get_key_modifier_state(xkeyevent->state, k);
  2157. k->set_window_id(p_window);
  2158. k->set_unicode(tmp[i]);
  2159. k->set_pressed(keypress);
  2160. k->set_keycode(keycode);
  2161. k->set_physical_keycode((Key)physical_keycode);
  2162. k->set_echo(false);
  2163. if (k->get_keycode() == Key::BACKTAB) {
  2164. //make it consistent across platforms.
  2165. k->set_keycode(Key::TAB);
  2166. k->set_physical_keycode(Key::TAB);
  2167. k->set_shift_pressed(true);
  2168. }
  2169. Input::get_singleton()->parse_input_event(k);
  2170. }
  2171. memfree(utf8string);
  2172. return;
  2173. }
  2174. memfree(utf8string);
  2175. #else
  2176. do {
  2177. int mnbytes = XmbLookupString(xic, xkeyevent, xmbstring, xmblen - 1, &keysym_unicode, &status);
  2178. xmbstring[mnbytes] = '\0';
  2179. if (status == XBufferOverflow) {
  2180. xmblen = mnbytes + 1;
  2181. xmbstring = (char *)memrealloc(xmbstring, xmblen);
  2182. }
  2183. } while (status == XBufferOverflow);
  2184. #endif
  2185. }
  2186. /* Phase 2, obtain a Godot keycode from the keysym */
  2187. // KeyMappingX11 just translated the X11 keysym to a PIGUI
  2188. // keysym, so it works in all platforms the same.
  2189. Key keycode = KeyMappingX11::get_keycode(keysym_keycode);
  2190. Key physical_keycode = KeyMappingX11::get_scancode(xkeyevent->keycode);
  2191. /* Phase 3, obtain a unicode character from the keysym */
  2192. // KeyMappingX11 also translates keysym to unicode.
  2193. // It does a binary search on a table to translate
  2194. // most properly.
  2195. unsigned int unicode = keysym_unicode > 0 ? KeyMappingX11::get_unicode_from_keysym(keysym_unicode) : 0;
  2196. /* Phase 4, determine if event must be filtered */
  2197. // This seems to be a side-effect of using XIM.
  2198. // XFilterEvent looks like a core X11 function,
  2199. // but it's actually just used to see if we must
  2200. // ignore a deadkey, or events XIM determines
  2201. // must not reach the actual gui.
  2202. // Guess it was a design problem of the extension
  2203. bool keypress = xkeyevent->type == KeyPress;
  2204. if (physical_keycode == Key::NONE && keycode == Key::NONE && unicode == 0) {
  2205. return;
  2206. }
  2207. if (keycode == Key::NONE) {
  2208. keycode = (Key)physical_keycode;
  2209. }
  2210. /* Phase 5, determine modifier mask */
  2211. // No problems here, except I had no way to
  2212. // know Mod1 was ALT and Mod4 was META (applekey/winkey)
  2213. // just tried Mods until i found them.
  2214. //print_verbose("mod1: "+itos(xkeyevent->state&Mod1Mask)+" mod 5: "+itos(xkeyevent->state&Mod5Mask));
  2215. Ref<InputEventKey> k;
  2216. k.instantiate();
  2217. k->set_window_id(p_window);
  2218. _get_key_modifier_state(xkeyevent->state, k);
  2219. /* Phase 6, determine echo character */
  2220. // Echo characters in X11 are a keyrelease and a keypress
  2221. // one after the other with the (almot) same timestamp.
  2222. // To detect them, i compare to the next event in list and
  2223. // check that their difference in time is below a threshold.
  2224. if (xkeyevent->type != KeyPress) {
  2225. p_echo = false;
  2226. // make sure there are events pending,
  2227. // so this call won't block.
  2228. if (p_event_index + 1 < p_events.size()) {
  2229. XEvent &peek_event = p_events[p_event_index + 1];
  2230. // I'm using a threshold of 5 msecs,
  2231. // since sometimes there seems to be a little
  2232. // jitter. I'm still not convinced that all this approach
  2233. // is correct, but the xorg developers are
  2234. // not very helpful today.
  2235. #define ABSDIFF(x, y) (((x) < (y)) ? ((y) - (x)) : ((x) - (y)))
  2236. ::Time threshold = ABSDIFF(peek_event.xkey.time, xkeyevent->time);
  2237. #undef ABSDIFF
  2238. if (peek_event.type == KeyPress && threshold < 5) {
  2239. KeySym rk;
  2240. XLookupString((XKeyEvent *)&peek_event, str, 256, &rk, nullptr);
  2241. if (rk == keysym_keycode) {
  2242. // Consume to next event.
  2243. ++p_event_index;
  2244. _handle_key_event(p_window, (XKeyEvent *)&peek_event, p_events, p_event_index, true);
  2245. return; //ignore current, echo next
  2246. }
  2247. }
  2248. // use the time from peek_event so it always works
  2249. }
  2250. // save the time to check for echo when keypress happens
  2251. }
  2252. /* Phase 7, send event to Window */
  2253. k->set_pressed(keypress);
  2254. if (keycode >= Key::A + 32 && keycode <= Key::Z + 32) {
  2255. keycode -= int('a' - 'A');
  2256. }
  2257. k->set_keycode(keycode);
  2258. k->set_physical_keycode((Key)physical_keycode);
  2259. k->set_unicode(unicode);
  2260. k->set_echo(p_echo);
  2261. if (k->get_keycode() == Key::BACKTAB) {
  2262. //make it consistent across platforms.
  2263. k->set_keycode(Key::TAB);
  2264. k->set_physical_keycode(Key::TAB);
  2265. k->set_shift_pressed(true);
  2266. }
  2267. //don't set mod state if modifier keys are released by themselves
  2268. //else event.is_action() will not work correctly here
  2269. if (!k->is_pressed()) {
  2270. if (k->get_keycode() == Key::SHIFT) {
  2271. k->set_shift_pressed(false);
  2272. } else if (k->get_keycode() == Key::CTRL) {
  2273. k->set_ctrl_pressed(false);
  2274. } else if (k->get_keycode() == Key::ALT) {
  2275. k->set_alt_pressed(false);
  2276. } else if (k->get_keycode() == Key::META) {
  2277. k->set_meta_pressed(false);
  2278. }
  2279. }
  2280. bool last_is_pressed = Input::get_singleton()->is_key_pressed(k->get_keycode());
  2281. if (k->is_pressed()) {
  2282. if (last_is_pressed) {
  2283. k->set_echo(true);
  2284. }
  2285. }
  2286. Input::get_singleton()->parse_input_event(k);
  2287. }
  2288. Atom DisplayServerX11::_process_selection_request_target(Atom p_target, Window p_requestor, Atom p_property, Atom p_selection) const {
  2289. if (p_target == XInternAtom(x11_display, "TARGETS", 0)) {
  2290. // Request to list all supported targets.
  2291. Atom data[9];
  2292. data[0] = XInternAtom(x11_display, "TARGETS", 0);
  2293. data[1] = XInternAtom(x11_display, "SAVE_TARGETS", 0);
  2294. data[2] = XInternAtom(x11_display, "MULTIPLE", 0);
  2295. data[3] = XInternAtom(x11_display, "UTF8_STRING", 0);
  2296. data[4] = XInternAtom(x11_display, "COMPOUND_TEXT", 0);
  2297. data[5] = XInternAtom(x11_display, "TEXT", 0);
  2298. data[6] = XA_STRING;
  2299. data[7] = XInternAtom(x11_display, "text/plain;charset=utf-8", 0);
  2300. data[8] = XInternAtom(x11_display, "text/plain", 0);
  2301. XChangeProperty(x11_display,
  2302. p_requestor,
  2303. p_property,
  2304. XA_ATOM,
  2305. 32,
  2306. PropModeReplace,
  2307. (unsigned char *)&data,
  2308. sizeof(data) / sizeof(data[0]));
  2309. return p_property;
  2310. } else if (p_target == XInternAtom(x11_display, "SAVE_TARGETS", 0)) {
  2311. // Request to check if SAVE_TARGETS is supported, nothing special to do.
  2312. XChangeProperty(x11_display,
  2313. p_requestor,
  2314. p_property,
  2315. XInternAtom(x11_display, "NULL", False),
  2316. 32,
  2317. PropModeReplace,
  2318. nullptr,
  2319. 0);
  2320. return p_property;
  2321. } else if (p_target == XInternAtom(x11_display, "UTF8_STRING", 0) ||
  2322. p_target == XInternAtom(x11_display, "COMPOUND_TEXT", 0) ||
  2323. p_target == XInternAtom(x11_display, "TEXT", 0) ||
  2324. p_target == XA_STRING ||
  2325. p_target == XInternAtom(x11_display, "text/plain;charset=utf-8", 0) ||
  2326. p_target == XInternAtom(x11_display, "text/plain", 0)) {
  2327. // Directly using internal clipboard because we know our window
  2328. // is the owner during a selection request.
  2329. CharString clip;
  2330. static const char *target_type = "PRIMARY";
  2331. if (p_selection != None && String(XGetAtomName(x11_display, p_selection)) == target_type) {
  2332. clip = internal_clipboard_primary.utf8();
  2333. } else {
  2334. clip = internal_clipboard.utf8();
  2335. }
  2336. XChangeProperty(x11_display,
  2337. p_requestor,
  2338. p_property,
  2339. p_target,
  2340. 8,
  2341. PropModeReplace,
  2342. (unsigned char *)clip.get_data(),
  2343. clip.length());
  2344. return p_property;
  2345. } else {
  2346. char *target_name = XGetAtomName(x11_display, p_target);
  2347. printf("Target '%s' not supported.\n", target_name);
  2348. if (target_name) {
  2349. XFree(target_name);
  2350. }
  2351. return None;
  2352. }
  2353. }
  2354. void DisplayServerX11::_handle_selection_request_event(XSelectionRequestEvent *p_event) const {
  2355. XEvent respond;
  2356. if (p_event->target == XInternAtom(x11_display, "MULTIPLE", 0)) {
  2357. // Request for multiple target conversions at once.
  2358. Atom atom_pair = XInternAtom(x11_display, "ATOM_PAIR", False);
  2359. respond.xselection.property = None;
  2360. Atom type;
  2361. int format;
  2362. unsigned long len;
  2363. unsigned long remaining;
  2364. unsigned char *data = nullptr;
  2365. if (XGetWindowProperty(x11_display, p_event->requestor, p_event->property, 0, LONG_MAX, False, atom_pair, &type, &format, &len, &remaining, &data) == Success) {
  2366. if ((len >= 2) && data) {
  2367. Atom *targets = (Atom *)data;
  2368. for (uint64_t i = 0; i < len; i += 2) {
  2369. Atom target = targets[i];
  2370. Atom &property = targets[i + 1];
  2371. property = _process_selection_request_target(target, p_event->requestor, property, p_event->selection);
  2372. }
  2373. XChangeProperty(x11_display,
  2374. p_event->requestor,
  2375. p_event->property,
  2376. atom_pair,
  2377. 32,
  2378. PropModeReplace,
  2379. (unsigned char *)targets,
  2380. len);
  2381. respond.xselection.property = p_event->property;
  2382. }
  2383. XFree(data);
  2384. }
  2385. } else {
  2386. // Request for target conversion.
  2387. respond.xselection.property = _process_selection_request_target(p_event->target, p_event->requestor, p_event->property, p_event->selection);
  2388. }
  2389. respond.xselection.type = SelectionNotify;
  2390. respond.xselection.display = p_event->display;
  2391. respond.xselection.requestor = p_event->requestor;
  2392. respond.xselection.selection = p_event->selection;
  2393. respond.xselection.target = p_event->target;
  2394. respond.xselection.time = p_event->time;
  2395. XSendEvent(x11_display, p_event->requestor, True, NoEventMask, &respond);
  2396. XFlush(x11_display);
  2397. }
  2398. void DisplayServerX11::_xim_destroy_callback(::XIM im, ::XPointer client_data,
  2399. ::XPointer call_data) {
  2400. WARN_PRINT("Input method stopped");
  2401. DisplayServerX11 *ds = reinterpret_cast<DisplayServerX11 *>(client_data);
  2402. ds->xim = nullptr;
  2403. for (KeyValue<WindowID, WindowData> &E : ds->windows) {
  2404. E.value.xic = nullptr;
  2405. }
  2406. }
  2407. void DisplayServerX11::_window_changed(XEvent *event) {
  2408. WindowID window_id = MAIN_WINDOW_ID;
  2409. // Assign the event to the relevant window
  2410. for (const KeyValue<WindowID, WindowData> &E : windows) {
  2411. if (event->xany.window == E.value.x11_window) {
  2412. window_id = E.key;
  2413. break;
  2414. }
  2415. }
  2416. Rect2i new_rect;
  2417. WindowData &wd = windows[window_id];
  2418. if (wd.x11_window != event->xany.window) { // Check if the correct window, in case it was not main window or anything else
  2419. return;
  2420. }
  2421. {
  2422. //the position in xconfigure is not useful here, obtain it manually
  2423. int x, y;
  2424. Window child;
  2425. XTranslateCoordinates(x11_display, wd.x11_window, DefaultRootWindow(x11_display), 0, 0, &x, &y, &child);
  2426. new_rect.position.x = x;
  2427. new_rect.position.y = y;
  2428. new_rect.size.width = event->xconfigure.width;
  2429. new_rect.size.height = event->xconfigure.height;
  2430. }
  2431. if (new_rect == Rect2i(wd.position, wd.size)) {
  2432. return;
  2433. }
  2434. if (wd.xic) {
  2435. // Not portable.
  2436. window_set_ime_position(Point2(0, 1));
  2437. }
  2438. wd.position = new_rect.position;
  2439. wd.size = new_rect.size;
  2440. #if defined(VULKAN_ENABLED)
  2441. if (context_vulkan) {
  2442. context_vulkan->window_resize(window_id, wd.size.width, wd.size.height);
  2443. }
  2444. #endif
  2445. #if defined(GLES3_ENABLED)
  2446. if (gl_manager) {
  2447. gl_manager->window_resize(window_id, wd.size.width, wd.size.height);
  2448. }
  2449. #endif
  2450. if (!wd.rect_changed_callback.is_null()) {
  2451. Rect2i r = new_rect;
  2452. Variant rect = r;
  2453. Variant *rectp = &rect;
  2454. Variant ret;
  2455. Callable::CallError ce;
  2456. wd.rect_changed_callback.call((const Variant **)&rectp, 1, ret, ce);
  2457. }
  2458. }
  2459. void DisplayServerX11::_dispatch_input_events(const Ref<InputEvent> &p_event) {
  2460. ((DisplayServerX11 *)(get_singleton()))->_dispatch_input_event(p_event);
  2461. }
  2462. void DisplayServerX11::_dispatch_input_event(const Ref<InputEvent> &p_event) {
  2463. Variant ev = p_event;
  2464. Variant *evp = &ev;
  2465. Variant ret;
  2466. Callable::CallError ce;
  2467. Ref<InputEventFromWindow> event_from_window = p_event;
  2468. if (event_from_window.is_valid() && event_from_window->get_window_id() != INVALID_WINDOW_ID) {
  2469. //send to a window
  2470. ERR_FAIL_COND(!windows.has(event_from_window->get_window_id()));
  2471. Callable callable = windows[event_from_window->get_window_id()].input_event_callback;
  2472. if (callable.is_null()) {
  2473. return;
  2474. }
  2475. callable.call((const Variant **)&evp, 1, ret, ce);
  2476. } else {
  2477. //send to all windows
  2478. for (KeyValue<WindowID, WindowData> &E : windows) {
  2479. Callable callable = E.value.input_event_callback;
  2480. if (callable.is_null()) {
  2481. continue;
  2482. }
  2483. callable.call((const Variant **)&evp, 1, ret, ce);
  2484. }
  2485. }
  2486. }
  2487. void DisplayServerX11::_send_window_event(const WindowData &wd, WindowEvent p_event) {
  2488. if (!wd.event_callback.is_null()) {
  2489. Variant event = int(p_event);
  2490. Variant *eventp = &event;
  2491. Variant ret;
  2492. Callable::CallError ce;
  2493. wd.event_callback.call((const Variant **)&eventp, 1, ret, ce);
  2494. }
  2495. }
  2496. void DisplayServerX11::_poll_events_thread(void *ud) {
  2497. DisplayServerX11 *display_server = (DisplayServerX11 *)ud;
  2498. display_server->_poll_events();
  2499. }
  2500. Bool DisplayServerX11::_predicate_all_events(Display *display, XEvent *event, XPointer arg) {
  2501. // Just accept all events.
  2502. return True;
  2503. }
  2504. bool DisplayServerX11::_wait_for_events() const {
  2505. int x11_fd = ConnectionNumber(x11_display);
  2506. fd_set in_fds;
  2507. XFlush(x11_display);
  2508. FD_ZERO(&in_fds);
  2509. FD_SET(x11_fd, &in_fds);
  2510. struct timeval tv;
  2511. tv.tv_usec = 0;
  2512. tv.tv_sec = 1;
  2513. // Wait for next event or timeout.
  2514. int num_ready_fds = select(x11_fd + 1, &in_fds, nullptr, nullptr, &tv);
  2515. if (num_ready_fds > 0) {
  2516. // Event received.
  2517. return true;
  2518. } else {
  2519. // Error or timeout.
  2520. if (num_ready_fds < 0) {
  2521. ERR_PRINT("_wait_for_events: select error: " + itos(errno));
  2522. }
  2523. return false;
  2524. }
  2525. }
  2526. void DisplayServerX11::_poll_events() {
  2527. while (!events_thread_done.is_set()) {
  2528. _wait_for_events();
  2529. // Process events from the queue.
  2530. {
  2531. MutexLock mutex_lock(events_mutex);
  2532. _check_pending_events(polled_events);
  2533. }
  2534. }
  2535. }
  2536. void DisplayServerX11::_check_pending_events(LocalVector<XEvent> &r_events) {
  2537. // Flush to make sure to gather all pending events.
  2538. XFlush(x11_display);
  2539. // Non-blocking wait for next event and remove it from the queue.
  2540. XEvent ev;
  2541. while (XCheckIfEvent(x11_display, &ev, _predicate_all_events, nullptr)) {
  2542. // Check if the input manager wants to process the event.
  2543. if (XFilterEvent(&ev, None)) {
  2544. // Event has been filtered by the Input Manager,
  2545. // it has to be ignored and a new one will be received.
  2546. continue;
  2547. }
  2548. // Handle selection request events directly in the event thread, because
  2549. // communication through the x server takes several events sent back and forth
  2550. // and we don't want to block other programs while processing only one each frame.
  2551. if (ev.type == SelectionRequest) {
  2552. _handle_selection_request_event(&(ev.xselectionrequest));
  2553. continue;
  2554. }
  2555. r_events.push_back(ev);
  2556. }
  2557. }
  2558. void DisplayServerX11::process_events() {
  2559. _THREAD_SAFE_METHOD_
  2560. #ifdef DISPLAY_SERVER_X11_DEBUG_LOGS_ENABLED
  2561. static int frame = 0;
  2562. ++frame;
  2563. #endif
  2564. if (app_focused) {
  2565. //verify that one of the windows has focus, else send focus out notification
  2566. bool focus_found = false;
  2567. for (const KeyValue<WindowID, WindowData> &E : windows) {
  2568. if (E.value.focused) {
  2569. focus_found = true;
  2570. break;
  2571. }
  2572. }
  2573. if (!focus_found) {
  2574. uint64_t delta = OS::get_singleton()->get_ticks_msec() - time_since_no_focus;
  2575. if (delta > 250) {
  2576. //X11 can go between windows and have no focus for a while, when creating them or something else. Use this as safety to avoid unnecessary focus in/outs.
  2577. if (OS::get_singleton()->get_main_loop()) {
  2578. DEBUG_LOG_X11("All focus lost, triggering NOTIFICATION_APPLICATION_FOCUS_OUT\n");
  2579. OS::get_singleton()->get_main_loop()->notification(MainLoop::NOTIFICATION_APPLICATION_FOCUS_OUT);
  2580. }
  2581. app_focused = false;
  2582. }
  2583. } else {
  2584. time_since_no_focus = OS::get_singleton()->get_ticks_msec();
  2585. }
  2586. }
  2587. do_mouse_warp = false;
  2588. // Is the current mouse mode one where it needs to be grabbed.
  2589. bool mouse_mode_grab = mouse_mode == MOUSE_MODE_CAPTURED || mouse_mode == MOUSE_MODE_CONFINED || mouse_mode == MOUSE_MODE_CONFINED_HIDDEN;
  2590. xi.pressure = 0;
  2591. xi.tilt = Vector2();
  2592. xi.pressure_supported = false;
  2593. LocalVector<XEvent> events;
  2594. {
  2595. // Block events polling while flushing events.
  2596. MutexLock mutex_lock(events_mutex);
  2597. events = polled_events;
  2598. polled_events.clear();
  2599. // Check for more pending events to avoid an extra frame delay.
  2600. _check_pending_events(events);
  2601. }
  2602. for (uint32_t event_index = 0; event_index < events.size(); ++event_index) {
  2603. XEvent &event = events[event_index];
  2604. WindowID window_id = MAIN_WINDOW_ID;
  2605. // Assign the event to the relevant window
  2606. for (const KeyValue<WindowID, WindowData> &E : windows) {
  2607. if (event.xany.window == E.value.x11_window) {
  2608. window_id = E.key;
  2609. break;
  2610. }
  2611. }
  2612. if (XGetEventData(x11_display, &event.xcookie)) {
  2613. if (event.xcookie.type == GenericEvent && event.xcookie.extension == xi.opcode) {
  2614. XIDeviceEvent *event_data = (XIDeviceEvent *)event.xcookie.data;
  2615. int index = event_data->detail;
  2616. Vector2 pos = Vector2(event_data->event_x, event_data->event_y);
  2617. switch (event_data->evtype) {
  2618. case XI_HierarchyChanged:
  2619. case XI_DeviceChanged: {
  2620. _refresh_device_info();
  2621. } break;
  2622. case XI_RawMotion: {
  2623. XIRawEvent *raw_event = (XIRawEvent *)event_data;
  2624. int device_id = raw_event->deviceid;
  2625. // Determine the axis used (called valuators in XInput for some forsaken reason)
  2626. // Mask is a bitmask indicating which axes are involved.
  2627. // We are interested in the values of axes 0 and 1.
  2628. if (raw_event->valuators.mask_len <= 0) {
  2629. break;
  2630. }
  2631. const double *values = raw_event->raw_values;
  2632. double rel_x = 0.0;
  2633. double rel_y = 0.0;
  2634. if (XIMaskIsSet(raw_event->valuators.mask, VALUATOR_ABSX)) {
  2635. rel_x = *values;
  2636. values++;
  2637. }
  2638. if (XIMaskIsSet(raw_event->valuators.mask, VALUATOR_ABSY)) {
  2639. rel_y = *values;
  2640. values++;
  2641. }
  2642. if (XIMaskIsSet(raw_event->valuators.mask, VALUATOR_PRESSURE)) {
  2643. Map<int, Vector2>::Element *pen_pressure = xi.pen_pressure_range.find(device_id);
  2644. if (pen_pressure) {
  2645. Vector2 pen_pressure_range = pen_pressure->value();
  2646. if (pen_pressure_range != Vector2()) {
  2647. xi.pressure_supported = true;
  2648. xi.pressure = (*values - pen_pressure_range[0]) /
  2649. (pen_pressure_range[1] - pen_pressure_range[0]);
  2650. }
  2651. }
  2652. values++;
  2653. }
  2654. if (XIMaskIsSet(raw_event->valuators.mask, VALUATOR_TILTX)) {
  2655. Map<int, Vector2>::Element *pen_tilt_x = xi.pen_tilt_x_range.find(device_id);
  2656. if (pen_tilt_x) {
  2657. Vector2 pen_tilt_x_range = pen_tilt_x->value();
  2658. if (pen_tilt_x_range[0] != 0 && *values < 0) {
  2659. xi.tilt.x = *values / -pen_tilt_x_range[0];
  2660. } else if (pen_tilt_x_range[1] != 0) {
  2661. xi.tilt.x = *values / pen_tilt_x_range[1];
  2662. }
  2663. }
  2664. values++;
  2665. }
  2666. if (XIMaskIsSet(raw_event->valuators.mask, VALUATOR_TILTY)) {
  2667. Map<int, Vector2>::Element *pen_tilt_y = xi.pen_tilt_y_range.find(device_id);
  2668. if (pen_tilt_y) {
  2669. Vector2 pen_tilt_y_range = pen_tilt_y->value();
  2670. if (pen_tilt_y_range[0] != 0 && *values < 0) {
  2671. xi.tilt.y = *values / -pen_tilt_y_range[0];
  2672. } else if (pen_tilt_y_range[1] != 0) {
  2673. xi.tilt.y = *values / pen_tilt_y_range[1];
  2674. }
  2675. }
  2676. values++;
  2677. }
  2678. // https://bugs.freedesktop.org/show_bug.cgi?id=71609
  2679. // http://lists.libsdl.org/pipermail/commits-libsdl.org/2015-June/000282.html
  2680. if (raw_event->time == xi.last_relative_time && rel_x == xi.relative_motion.x && rel_y == xi.relative_motion.y) {
  2681. break; // Flush duplicate to avoid overly fast motion
  2682. }
  2683. xi.old_raw_pos.x = xi.raw_pos.x;
  2684. xi.old_raw_pos.y = xi.raw_pos.y;
  2685. xi.raw_pos.x = rel_x;
  2686. xi.raw_pos.y = rel_y;
  2687. Map<int, Vector2>::Element *abs_info = xi.absolute_devices.find(device_id);
  2688. if (abs_info) {
  2689. // Absolute mode device
  2690. Vector2 mult = abs_info->value();
  2691. xi.relative_motion.x += (xi.raw_pos.x - xi.old_raw_pos.x) * mult.x;
  2692. xi.relative_motion.y += (xi.raw_pos.y - xi.old_raw_pos.y) * mult.y;
  2693. } else {
  2694. // Relative mode device
  2695. xi.relative_motion.x = xi.raw_pos.x;
  2696. xi.relative_motion.y = xi.raw_pos.y;
  2697. }
  2698. xi.last_relative_time = raw_event->time;
  2699. } break;
  2700. #ifdef TOUCH_ENABLED
  2701. case XI_TouchBegin:
  2702. case XI_TouchEnd: {
  2703. bool is_begin = event_data->evtype == XI_TouchBegin;
  2704. Ref<InputEventScreenTouch> st;
  2705. st.instantiate();
  2706. st->set_window_id(window_id);
  2707. st->set_index(index);
  2708. st->set_position(pos);
  2709. st->set_pressed(is_begin);
  2710. if (is_begin) {
  2711. if (xi.state.has(index)) { // Defensive
  2712. break;
  2713. }
  2714. xi.state[index] = pos;
  2715. if (xi.state.size() == 1) {
  2716. // X11 may send a motion event when a touch gesture begins, that would result
  2717. // in a spurious mouse motion event being sent to Godot; remember it to be able to filter it out
  2718. xi.mouse_pos_to_filter = pos;
  2719. }
  2720. Input::get_singleton()->parse_input_event(st);
  2721. } else {
  2722. if (!xi.state.has(index)) { // Defensive
  2723. break;
  2724. }
  2725. xi.state.erase(index);
  2726. Input::get_singleton()->parse_input_event(st);
  2727. }
  2728. } break;
  2729. case XI_TouchUpdate: {
  2730. Map<int, Vector2>::Element *curr_pos_elem = xi.state.find(index);
  2731. if (!curr_pos_elem) { // Defensive
  2732. break;
  2733. }
  2734. if (curr_pos_elem->value() != pos) {
  2735. Ref<InputEventScreenDrag> sd;
  2736. sd.instantiate();
  2737. sd->set_window_id(window_id);
  2738. sd->set_index(index);
  2739. sd->set_position(pos);
  2740. sd->set_relative(pos - curr_pos_elem->value());
  2741. Input::get_singleton()->parse_input_event(sd);
  2742. curr_pos_elem->value() = pos;
  2743. }
  2744. } break;
  2745. #endif
  2746. }
  2747. }
  2748. }
  2749. XFreeEventData(x11_display, &event.xcookie);
  2750. switch (event.type) {
  2751. case MapNotify: {
  2752. DEBUG_LOG_X11("[%u] MapNotify window=%lu (%u) \n", frame, event.xmap.window, window_id);
  2753. const WindowData &wd = windows[window_id];
  2754. // Set focus when menu window is started.
  2755. // RevertToPointerRoot is used to make sure we don't lose all focus in case
  2756. // a subwindow and its parent are both destroyed.
  2757. if (wd.menu_type && !wd.no_focus) {
  2758. XSetInputFocus(x11_display, wd.x11_window, RevertToPointerRoot, CurrentTime);
  2759. }
  2760. } break;
  2761. case Expose: {
  2762. DEBUG_LOG_X11("[%u] Expose window=%lu (%u), count='%u' \n", frame, event.xexpose.window, window_id, event.xexpose.count);
  2763. Main::force_redraw();
  2764. } break;
  2765. case NoExpose: {
  2766. DEBUG_LOG_X11("[%u] NoExpose drawable=%lu (%u) \n", frame, event.xnoexpose.drawable, window_id);
  2767. windows[window_id].minimized = true;
  2768. } break;
  2769. case VisibilityNotify: {
  2770. DEBUG_LOG_X11("[%u] VisibilityNotify window=%lu (%u), state=%u \n", frame, event.xvisibility.window, window_id, event.xvisibility.state);
  2771. XVisibilityEvent *visibility = (XVisibilityEvent *)&event;
  2772. windows[window_id].minimized = (visibility->state == VisibilityFullyObscured);
  2773. } break;
  2774. case LeaveNotify: {
  2775. DEBUG_LOG_X11("[%u] LeaveNotify window=%lu (%u), mode='%u' \n", frame, event.xcrossing.window, window_id, event.xcrossing.mode);
  2776. if (!mouse_mode_grab) {
  2777. _send_window_event(windows[window_id], WINDOW_EVENT_MOUSE_EXIT);
  2778. }
  2779. } break;
  2780. case EnterNotify: {
  2781. DEBUG_LOG_X11("[%u] EnterNotify window=%lu (%u), mode='%u' \n", frame, event.xcrossing.window, window_id, event.xcrossing.mode);
  2782. if (!mouse_mode_grab) {
  2783. _send_window_event(windows[window_id], WINDOW_EVENT_MOUSE_ENTER);
  2784. }
  2785. } break;
  2786. case FocusIn: {
  2787. DEBUG_LOG_X11("[%u] FocusIn window=%lu (%u), mode='%u' \n", frame, event.xfocus.window, window_id, event.xfocus.mode);
  2788. WindowData &wd = windows[window_id];
  2789. wd.focused = true;
  2790. if (wd.xic) {
  2791. // Block events polling while changing input focus
  2792. // because it triggers some event polling internally.
  2793. MutexLock mutex_lock(events_mutex);
  2794. XSetICFocus(wd.xic);
  2795. }
  2796. // Keep track of focus order for overlapping windows.
  2797. static unsigned int focus_order = 0;
  2798. wd.focus_order = ++focus_order;
  2799. _send_window_event(wd, WINDOW_EVENT_FOCUS_IN);
  2800. if (mouse_mode_grab) {
  2801. // Show and update the cursor if confined and the window regained focus.
  2802. for (const KeyValue<WindowID, WindowData> &E : windows) {
  2803. if (mouse_mode == MOUSE_MODE_CONFINED) {
  2804. XUndefineCursor(x11_display, E.value.x11_window);
  2805. } else if (mouse_mode == MOUSE_MODE_CAPTURED || mouse_mode == MOUSE_MODE_CONFINED_HIDDEN) { // Or re-hide it.
  2806. XDefineCursor(x11_display, E.value.x11_window, null_cursor);
  2807. }
  2808. XGrabPointer(
  2809. x11_display, E.value.x11_window, True,
  2810. ButtonPressMask | ButtonReleaseMask | PointerMotionMask,
  2811. GrabModeAsync, GrabModeAsync, E.value.x11_window, None, CurrentTime);
  2812. }
  2813. }
  2814. #ifdef TOUCH_ENABLED
  2815. // Grab touch devices to avoid OS gesture interference
  2816. /*for (int i = 0; i < xi.touch_devices.size(); ++i) {
  2817. XIGrabDevice(x11_display, xi.touch_devices[i], x11_window, CurrentTime, None, XIGrabModeAsync, XIGrabModeAsync, False, &xi.touch_event_mask);
  2818. }*/
  2819. #endif
  2820. if (!app_focused) {
  2821. if (OS::get_singleton()->get_main_loop()) {
  2822. OS::get_singleton()->get_main_loop()->notification(MainLoop::NOTIFICATION_APPLICATION_FOCUS_IN);
  2823. }
  2824. app_focused = true;
  2825. }
  2826. } break;
  2827. case FocusOut: {
  2828. DEBUG_LOG_X11("[%u] FocusOut window=%lu (%u), mode='%u' \n", frame, event.xfocus.window, window_id, event.xfocus.mode);
  2829. WindowData &wd = windows[window_id];
  2830. wd.focused = false;
  2831. if (wd.xic) {
  2832. // Block events polling while changing input focus
  2833. // because it triggers some event polling internally.
  2834. MutexLock mutex_lock(events_mutex);
  2835. XUnsetICFocus(wd.xic);
  2836. }
  2837. Input::get_singleton()->release_pressed_events();
  2838. _send_window_event(wd, WINDOW_EVENT_FOCUS_OUT);
  2839. if (mouse_mode_grab) {
  2840. for (const KeyValue<WindowID, WindowData> &E : windows) {
  2841. //dear X11, I try, I really try, but you never work, you do whatever you want.
  2842. if (mouse_mode == MOUSE_MODE_CAPTURED) {
  2843. // Show the cursor if we're in captured mode so it doesn't look weird.
  2844. XUndefineCursor(x11_display, E.value.x11_window);
  2845. }
  2846. }
  2847. XUngrabPointer(x11_display, CurrentTime);
  2848. }
  2849. #ifdef TOUCH_ENABLED
  2850. // Ungrab touch devices so input works as usual while we are unfocused
  2851. /*for (int i = 0; i < xi.touch_devices.size(); ++i) {
  2852. XIUngrabDevice(x11_display, xi.touch_devices[i], CurrentTime);
  2853. }*/
  2854. // Release every pointer to avoid sticky points
  2855. for (const KeyValue<int, Vector2> &E : xi.state) {
  2856. Ref<InputEventScreenTouch> st;
  2857. st.instantiate();
  2858. st->set_index(E.key);
  2859. st->set_window_id(window_id);
  2860. st->set_position(E.value);
  2861. Input::get_singleton()->parse_input_event(st);
  2862. }
  2863. xi.state.clear();
  2864. #endif
  2865. } break;
  2866. case ConfigureNotify: {
  2867. DEBUG_LOG_X11("[%u] ConfigureNotify window=%lu (%u), event=%lu, above=%lu, override_redirect=%u \n", frame, event.xconfigure.window, window_id, event.xconfigure.event, event.xconfigure.above, event.xconfigure.override_redirect);
  2868. const WindowData &wd = windows[window_id];
  2869. // Set focus when menu window is re-used.
  2870. // RevertToPointerRoot is used to make sure we don't lose all focus in case
  2871. // a subwindow and its parent are both destroyed.
  2872. if (wd.menu_type && !wd.no_focus) {
  2873. XSetInputFocus(x11_display, wd.x11_window, RevertToPointerRoot, CurrentTime);
  2874. }
  2875. _window_changed(&event);
  2876. } break;
  2877. case ButtonPress:
  2878. case ButtonRelease: {
  2879. /* exit in case of a mouse button press */
  2880. last_timestamp = event.xbutton.time;
  2881. if (mouse_mode == MOUSE_MODE_CAPTURED) {
  2882. event.xbutton.x = last_mouse_pos.x;
  2883. event.xbutton.y = last_mouse_pos.y;
  2884. }
  2885. Ref<InputEventMouseButton> mb;
  2886. mb.instantiate();
  2887. mb->set_window_id(window_id);
  2888. _get_key_modifier_state(event.xbutton.state, mb);
  2889. mb->set_button_index((MouseButton)event.xbutton.button);
  2890. if (mb->get_button_index() == MouseButton::RIGHT) {
  2891. mb->set_button_index(MouseButton::MIDDLE);
  2892. } else if (mb->get_button_index() == MouseButton::MIDDLE) {
  2893. mb->set_button_index(MouseButton::RIGHT);
  2894. }
  2895. mb->set_button_mask(_get_mouse_button_state(mb->get_button_index(), event.xbutton.type));
  2896. mb->set_position(Vector2(event.xbutton.x, event.xbutton.y));
  2897. mb->set_global_position(mb->get_position());
  2898. mb->set_pressed((event.type == ButtonPress));
  2899. const WindowData &wd = windows[window_id];
  2900. if (event.type == ButtonPress) {
  2901. DEBUG_LOG_X11("[%u] ButtonPress window=%lu (%u), button_index=%u \n", frame, event.xbutton.window, window_id, mb->get_button_index());
  2902. // Ensure window focus on click.
  2903. // RevertToPointerRoot is used to make sure we don't lose all focus in case
  2904. // a subwindow and its parent are both destroyed.
  2905. if (!wd.no_focus) {
  2906. XSetInputFocus(x11_display, wd.x11_window, RevertToPointerRoot, CurrentTime);
  2907. }
  2908. uint64_t diff = OS::get_singleton()->get_ticks_usec() / 1000 - last_click_ms;
  2909. if (mb->get_button_index() == last_click_button_index) {
  2910. if (diff < 400 && Vector2(last_click_pos).distance_to(Vector2(event.xbutton.x, event.xbutton.y)) < 5) {
  2911. last_click_ms = 0;
  2912. last_click_pos = Point2i(-100, -100);
  2913. last_click_button_index = MouseButton::NONE;
  2914. mb->set_double_click(true);
  2915. }
  2916. } else if (mb->get_button_index() < MouseButton::WHEEL_UP || mb->get_button_index() > MouseButton::WHEEL_RIGHT) {
  2917. last_click_button_index = mb->get_button_index();
  2918. }
  2919. if (!mb->is_double_click()) {
  2920. last_click_ms += diff;
  2921. last_click_pos = Point2i(event.xbutton.x, event.xbutton.y);
  2922. }
  2923. } else {
  2924. DEBUG_LOG_X11("[%u] ButtonRelease window=%lu (%u), button_index=%u \n", frame, event.xbutton.window, window_id, mb->get_button_index());
  2925. if (!wd.focused) {
  2926. // Propagate the event to the focused window,
  2927. // because it's received only on the topmost window.
  2928. // Note: This is needed for drag & drop to work between windows,
  2929. // because the engine expects events to keep being processed
  2930. // on the same window dragging started.
  2931. for (const KeyValue<WindowID, WindowData> &E : windows) {
  2932. const WindowData &wd_other = E.value;
  2933. WindowID window_id_other = E.key;
  2934. if (wd_other.focused) {
  2935. if (window_id_other != window_id) {
  2936. int x, y;
  2937. Window child;
  2938. XTranslateCoordinates(x11_display, wd.x11_window, wd_other.x11_window, event.xbutton.x, event.xbutton.y, &x, &y, &child);
  2939. mb->set_window_id(window_id_other);
  2940. mb->set_position(Vector2(x, y));
  2941. mb->set_global_position(mb->get_position());
  2942. Input::get_singleton()->parse_input_event(mb);
  2943. }
  2944. break;
  2945. }
  2946. }
  2947. }
  2948. }
  2949. Input::get_singleton()->parse_input_event(mb);
  2950. } break;
  2951. case MotionNotify: {
  2952. // The X11 API requires filtering one-by-one through the motion
  2953. // notify events, in order to figure out which event is the one
  2954. // generated by warping the mouse pointer.
  2955. while (true) {
  2956. if (mouse_mode == MOUSE_MODE_CAPTURED && event.xmotion.x == windows[MAIN_WINDOW_ID].size.width / 2 && event.xmotion.y == windows[MAIN_WINDOW_ID].size.height / 2) {
  2957. //this is likely the warp event since it was warped here
  2958. center = Vector2(event.xmotion.x, event.xmotion.y);
  2959. break;
  2960. }
  2961. if (event_index + 1 < events.size()) {
  2962. const XEvent &next_event = events[event_index + 1];
  2963. if (next_event.type == MotionNotify) {
  2964. ++event_index;
  2965. event = next_event;
  2966. } else {
  2967. break;
  2968. }
  2969. } else {
  2970. break;
  2971. }
  2972. }
  2973. last_timestamp = event.xmotion.time;
  2974. // Motion is also simple.
  2975. // A little hack is in order
  2976. // to be able to send relative motion events.
  2977. Point2i pos(event.xmotion.x, event.xmotion.y);
  2978. // Avoidance of spurious mouse motion (see handling of touch)
  2979. bool filter = false;
  2980. // Adding some tolerance to match better Point2i to Vector2
  2981. if (xi.state.size() && Vector2(pos).distance_squared_to(xi.mouse_pos_to_filter) < 2) {
  2982. filter = true;
  2983. }
  2984. // Invalidate to avoid filtering a possible legitimate similar event coming later
  2985. xi.mouse_pos_to_filter = Vector2(1e10, 1e10);
  2986. if (filter) {
  2987. break;
  2988. }
  2989. const WindowData &wd = windows[window_id];
  2990. bool focused = wd.focused;
  2991. if (mouse_mode == MOUSE_MODE_CAPTURED) {
  2992. if (xi.relative_motion.x == 0 && xi.relative_motion.y == 0) {
  2993. break;
  2994. }
  2995. Point2i new_center = pos;
  2996. pos = last_mouse_pos + xi.relative_motion;
  2997. center = new_center;
  2998. do_mouse_warp = focused; // warp the cursor if we're focused in
  2999. }
  3000. if (!last_mouse_pos_valid) {
  3001. last_mouse_pos = pos;
  3002. last_mouse_pos_valid = true;
  3003. }
  3004. // Hackish but relative mouse motion is already handled in the RawMotion event.
  3005. // RawMotion does not provide the absolute mouse position (whereas MotionNotify does).
  3006. // Therefore, RawMotion cannot be the authority on absolute mouse position.
  3007. // RawMotion provides more precision than MotionNotify, which doesn't sense subpixel motion.
  3008. // Therefore, MotionNotify cannot be the authority on relative mouse motion.
  3009. // This means we need to take a combined approach...
  3010. Point2i rel;
  3011. // Only use raw input if in capture mode. Otherwise use the classic behavior.
  3012. if (mouse_mode == MOUSE_MODE_CAPTURED) {
  3013. rel = xi.relative_motion;
  3014. } else {
  3015. rel = pos - last_mouse_pos;
  3016. }
  3017. // Reset to prevent lingering motion
  3018. xi.relative_motion.x = 0;
  3019. xi.relative_motion.y = 0;
  3020. if (mouse_mode == MOUSE_MODE_CAPTURED) {
  3021. pos = Point2i(windows[MAIN_WINDOW_ID].size.width / 2, windows[MAIN_WINDOW_ID].size.height / 2);
  3022. }
  3023. Ref<InputEventMouseMotion> mm;
  3024. mm.instantiate();
  3025. mm->set_window_id(window_id);
  3026. if (xi.pressure_supported) {
  3027. mm->set_pressure(xi.pressure);
  3028. } else {
  3029. mm->set_pressure(bool(mouse_get_button_state() & MouseButton::MASK_LEFT) ? 1.0f : 0.0f);
  3030. }
  3031. mm->set_tilt(xi.tilt);
  3032. _get_key_modifier_state(event.xmotion.state, mm);
  3033. mm->set_button_mask((MouseButton)mouse_get_button_state());
  3034. mm->set_position(pos);
  3035. mm->set_global_position(pos);
  3036. Input::get_singleton()->set_mouse_position(pos);
  3037. mm->set_velocity(Input::get_singleton()->get_last_mouse_velocity());
  3038. mm->set_relative(rel);
  3039. last_mouse_pos = pos;
  3040. // printf("rel: %d,%d\n", rel.x, rel.y );
  3041. // Don't propagate the motion event unless we have focus
  3042. // this is so that the relative motion doesn't get messed up
  3043. // after we regain focus.
  3044. if (focused) {
  3045. Input::get_singleton()->parse_input_event(mm);
  3046. } else {
  3047. // Propagate the event to the focused window,
  3048. // because it's received only on the topmost window.
  3049. // Note: This is needed for drag & drop to work between windows,
  3050. // because the engine expects events to keep being processed
  3051. // on the same window dragging started.
  3052. for (const KeyValue<WindowID, WindowData> &E : windows) {
  3053. const WindowData &wd_other = E.value;
  3054. if (wd_other.focused) {
  3055. int x, y;
  3056. Window child;
  3057. XTranslateCoordinates(x11_display, wd.x11_window, wd_other.x11_window, event.xmotion.x, event.xmotion.y, &x, &y, &child);
  3058. Point2i pos_focused(x, y);
  3059. mm->set_window_id(E.key);
  3060. mm->set_position(pos_focused);
  3061. mm->set_global_position(pos_focused);
  3062. mm->set_velocity(Input::get_singleton()->get_last_mouse_velocity());
  3063. Input::get_singleton()->parse_input_event(mm);
  3064. break;
  3065. }
  3066. }
  3067. }
  3068. } break;
  3069. case KeyPress:
  3070. case KeyRelease: {
  3071. #ifdef DISPLAY_SERVER_X11_DEBUG_LOGS_ENABLED
  3072. if (event.type == KeyPress) {
  3073. DEBUG_LOG_X11("[%u] KeyPress window=%lu (%u), keycode=%u, time=%lu \n", frame, event.xkey.window, window_id, event.xkey.keycode, event.xkey.time);
  3074. } else {
  3075. DEBUG_LOG_X11("[%u] KeyRelease window=%lu (%u), keycode=%u, time=%lu \n", frame, event.xkey.window, window_id, event.xkey.keycode, event.xkey.time);
  3076. }
  3077. #endif
  3078. last_timestamp = event.xkey.time;
  3079. // key event is a little complex, so
  3080. // it will be handled in its own function.
  3081. _handle_key_event(window_id, &event.xkey, events, event_index);
  3082. } break;
  3083. case SelectionNotify:
  3084. if (event.xselection.target == requested) {
  3085. Property p = _read_property(x11_display, windows[window_id].x11_window, XInternAtom(x11_display, "PRIMARY", 0));
  3086. Vector<String> files = String((char *)p.data).split("\n", false);
  3087. for (int i = 0; i < files.size(); i++) {
  3088. files.write[i] = files[i].replace("file://", "").uri_decode().strip_edges();
  3089. }
  3090. if (!windows[window_id].drop_files_callback.is_null()) {
  3091. Variant v = files;
  3092. Variant *vp = &v;
  3093. Variant ret;
  3094. Callable::CallError ce;
  3095. windows[window_id].drop_files_callback.call((const Variant **)&vp, 1, ret, ce);
  3096. }
  3097. //Reply that all is well.
  3098. XClientMessageEvent m;
  3099. memset(&m, 0, sizeof(m));
  3100. m.type = ClientMessage;
  3101. m.display = x11_display;
  3102. m.window = xdnd_source_window;
  3103. m.message_type = xdnd_finished;
  3104. m.format = 32;
  3105. m.data.l[0] = windows[window_id].x11_window;
  3106. m.data.l[1] = 1;
  3107. m.data.l[2] = xdnd_action_copy; //We only ever copy.
  3108. XSendEvent(x11_display, xdnd_source_window, False, NoEventMask, (XEvent *)&m);
  3109. }
  3110. break;
  3111. case ClientMessage:
  3112. if ((unsigned int)event.xclient.data.l[0] == (unsigned int)wm_delete) {
  3113. _send_window_event(windows[window_id], WINDOW_EVENT_CLOSE_REQUEST);
  3114. }
  3115. else if ((unsigned int)event.xclient.message_type == (unsigned int)xdnd_enter) {
  3116. //File(s) have been dragged over the window, check for supported target (text/uri-list)
  3117. xdnd_version = (event.xclient.data.l[1] >> 24);
  3118. Window source = event.xclient.data.l[0];
  3119. bool more_than_3 = event.xclient.data.l[1] & 1;
  3120. if (more_than_3) {
  3121. Property p = _read_property(x11_display, source, XInternAtom(x11_display, "XdndTypeList", False));
  3122. requested = pick_target_from_list(x11_display, (Atom *)p.data, p.nitems);
  3123. } else {
  3124. requested = pick_target_from_atoms(x11_display, event.xclient.data.l[2], event.xclient.data.l[3], event.xclient.data.l[4]);
  3125. }
  3126. } else if ((unsigned int)event.xclient.message_type == (unsigned int)xdnd_position) {
  3127. //xdnd position event, reply with an XDND status message
  3128. //just depending on type of data for now
  3129. XClientMessageEvent m;
  3130. memset(&m, 0, sizeof(m));
  3131. m.type = ClientMessage;
  3132. m.display = event.xclient.display;
  3133. m.window = event.xclient.data.l[0];
  3134. m.message_type = xdnd_status;
  3135. m.format = 32;
  3136. m.data.l[0] = windows[window_id].x11_window;
  3137. m.data.l[1] = (requested != None);
  3138. m.data.l[2] = 0; //empty rectangle
  3139. m.data.l[3] = 0;
  3140. m.data.l[4] = xdnd_action_copy;
  3141. XSendEvent(x11_display, event.xclient.data.l[0], False, NoEventMask, (XEvent *)&m);
  3142. XFlush(x11_display);
  3143. } else if ((unsigned int)event.xclient.message_type == (unsigned int)xdnd_drop) {
  3144. if (requested != None) {
  3145. xdnd_source_window = event.xclient.data.l[0];
  3146. if (xdnd_version >= 1) {
  3147. XConvertSelection(x11_display, xdnd_selection, requested, XInternAtom(x11_display, "PRIMARY", 0), windows[window_id].x11_window, event.xclient.data.l[2]);
  3148. } else {
  3149. XConvertSelection(x11_display, xdnd_selection, requested, XInternAtom(x11_display, "PRIMARY", 0), windows[window_id].x11_window, CurrentTime);
  3150. }
  3151. } else {
  3152. //Reply that we're not interested.
  3153. XClientMessageEvent m;
  3154. memset(&m, 0, sizeof(m));
  3155. m.type = ClientMessage;
  3156. m.display = event.xclient.display;
  3157. m.window = event.xclient.data.l[0];
  3158. m.message_type = xdnd_finished;
  3159. m.format = 32;
  3160. m.data.l[0] = windows[window_id].x11_window;
  3161. m.data.l[1] = 0;
  3162. m.data.l[2] = None; //Failed.
  3163. XSendEvent(x11_display, event.xclient.data.l[0], False, NoEventMask, (XEvent *)&m);
  3164. }
  3165. }
  3166. break;
  3167. default:
  3168. break;
  3169. }
  3170. }
  3171. XFlush(x11_display);
  3172. if (do_mouse_warp) {
  3173. XWarpPointer(x11_display, None, windows[MAIN_WINDOW_ID].x11_window,
  3174. 0, 0, 0, 0, (int)windows[MAIN_WINDOW_ID].size.width / 2, (int)windows[MAIN_WINDOW_ID].size.height / 2);
  3175. /*
  3176. Window root, child;
  3177. int root_x, root_y;
  3178. int win_x, win_y;
  3179. unsigned int mask;
  3180. XQueryPointer( x11_display, x11_window, &root, &child, &root_x, &root_y, &win_x, &win_y, &mask );
  3181. printf("Root: %d,%d\n", root_x, root_y);
  3182. printf("Win: %d,%d\n", win_x, win_y);
  3183. */
  3184. }
  3185. Input::get_singleton()->flush_buffered_events();
  3186. }
  3187. void DisplayServerX11::release_rendering_thread() {
  3188. #if defined(GLES3_ENABLED)
  3189. // gl_manager->release_current();
  3190. #endif
  3191. }
  3192. void DisplayServerX11::make_rendering_thread() {
  3193. #if defined(GLES3_ENABLED)
  3194. // gl_manager->make_current();
  3195. #endif
  3196. }
  3197. void DisplayServerX11::swap_buffers() {
  3198. #if defined(GLES3_ENABLED)
  3199. if (gl_manager) {
  3200. gl_manager->swap_buffers();
  3201. }
  3202. #endif
  3203. }
  3204. void DisplayServerX11::_update_context(WindowData &wd) {
  3205. XClassHint *classHint = XAllocClassHint();
  3206. if (classHint) {
  3207. CharString name_str;
  3208. switch (context) {
  3209. case CONTEXT_EDITOR:
  3210. name_str = "Godot_Editor";
  3211. break;
  3212. case CONTEXT_PROJECTMAN:
  3213. name_str = "Godot_ProjectList";
  3214. break;
  3215. case CONTEXT_ENGINE:
  3216. name_str = "Godot_Engine";
  3217. break;
  3218. }
  3219. CharString class_str;
  3220. if (context == CONTEXT_ENGINE) {
  3221. String config_name = GLOBAL_GET("application/config/name");
  3222. if (config_name.length() == 0) {
  3223. class_str = "Godot_Engine";
  3224. } else {
  3225. class_str = config_name.utf8();
  3226. }
  3227. } else {
  3228. class_str = "Godot";
  3229. }
  3230. classHint->res_class = class_str.ptrw();
  3231. classHint->res_name = name_str.ptrw();
  3232. XSetClassHint(x11_display, wd.x11_window, classHint);
  3233. XFree(classHint);
  3234. }
  3235. }
  3236. void DisplayServerX11::set_context(Context p_context) {
  3237. _THREAD_SAFE_METHOD_
  3238. context = p_context;
  3239. for (KeyValue<WindowID, WindowData> &E : windows) {
  3240. _update_context(E.value);
  3241. }
  3242. }
  3243. void DisplayServerX11::set_native_icon(const String &p_filename) {
  3244. WARN_PRINT("Native icon not supported by this display server.");
  3245. }
  3246. bool g_set_icon_error = false;
  3247. int set_icon_errorhandler(Display *dpy, XErrorEvent *ev) {
  3248. g_set_icon_error = true;
  3249. return 0;
  3250. }
  3251. void DisplayServerX11::set_icon(const Ref<Image> &p_icon) {
  3252. _THREAD_SAFE_METHOD_
  3253. WindowData &wd = windows[MAIN_WINDOW_ID];
  3254. int (*oldHandler)(Display *, XErrorEvent *) = XSetErrorHandler(&set_icon_errorhandler);
  3255. Atom net_wm_icon = XInternAtom(x11_display, "_NET_WM_ICON", False);
  3256. if (p_icon.is_valid()) {
  3257. Ref<Image> img = p_icon->duplicate();
  3258. img->convert(Image::FORMAT_RGBA8);
  3259. while (true) {
  3260. int w = img->get_width();
  3261. int h = img->get_height();
  3262. if (g_set_icon_error) {
  3263. g_set_icon_error = false;
  3264. WARN_PRINT("Icon too large, attempting to resize icon.");
  3265. int new_width, new_height;
  3266. if (w > h) {
  3267. new_width = w / 2;
  3268. new_height = h * new_width / w;
  3269. } else {
  3270. new_height = h / 2;
  3271. new_width = w * new_height / h;
  3272. }
  3273. w = new_width;
  3274. h = new_height;
  3275. if (!w || !h) {
  3276. WARN_PRINT("Unable to set icon.");
  3277. break;
  3278. }
  3279. img->resize(w, h, Image::INTERPOLATE_CUBIC);
  3280. }
  3281. // We're using long to have wordsize (32Bit build -> 32 Bits, 64 Bit build -> 64 Bits
  3282. Vector<long> pd;
  3283. pd.resize(2 + w * h);
  3284. pd.write[0] = w;
  3285. pd.write[1] = h;
  3286. const uint8_t *r = img->get_data().ptr();
  3287. long *wr = &pd.write[2];
  3288. uint8_t const *pr = r;
  3289. for (int i = 0; i < w * h; i++) {
  3290. long v = 0;
  3291. // A R G B
  3292. v |= pr[3] << 24 | pr[0] << 16 | pr[1] << 8 | pr[2];
  3293. *wr++ = v;
  3294. pr += 4;
  3295. }
  3296. if (net_wm_icon != None) {
  3297. XChangeProperty(x11_display, wd.x11_window, net_wm_icon, XA_CARDINAL, 32, PropModeReplace, (unsigned char *)pd.ptr(), pd.size());
  3298. }
  3299. if (!g_set_icon_error) {
  3300. break;
  3301. }
  3302. }
  3303. } else {
  3304. XDeleteProperty(x11_display, wd.x11_window, net_wm_icon);
  3305. }
  3306. XFlush(x11_display);
  3307. XSetErrorHandler(oldHandler);
  3308. }
  3309. void DisplayServerX11::window_set_vsync_mode(DisplayServer::VSyncMode p_vsync_mode, WindowID p_window) {
  3310. _THREAD_SAFE_METHOD_
  3311. #if defined(VULKAN_ENABLED)
  3312. if (context_vulkan) {
  3313. context_vulkan->set_vsync_mode(p_window, p_vsync_mode);
  3314. }
  3315. #endif
  3316. #if defined(GLES3_ENABLED)
  3317. if (gl_manager) {
  3318. gl_manager->set_use_vsync(p_vsync_mode == DisplayServer::VSYNC_ENABLED);
  3319. }
  3320. #endif
  3321. }
  3322. DisplayServer::VSyncMode DisplayServerX11::window_get_vsync_mode(WindowID p_window) const {
  3323. _THREAD_SAFE_METHOD_
  3324. #if defined(VULKAN_ENABLED)
  3325. if (context_vulkan) {
  3326. return context_vulkan->get_vsync_mode(p_window);
  3327. }
  3328. #endif
  3329. #if defined(GLES3_ENABLED)
  3330. if (gl_manager) {
  3331. return gl_manager->is_using_vsync() ? DisplayServer::VSYNC_ENABLED : DisplayServer::VSYNC_DISABLED;
  3332. }
  3333. #endif
  3334. return DisplayServer::VSYNC_ENABLED;
  3335. }
  3336. Vector<String> DisplayServerX11::get_rendering_drivers_func() {
  3337. Vector<String> drivers;
  3338. #ifdef VULKAN_ENABLED
  3339. drivers.push_back("vulkan");
  3340. #endif
  3341. #ifdef GLES3_ENABLED
  3342. drivers.push_back("opengl3");
  3343. #endif
  3344. return drivers;
  3345. }
  3346. DisplayServer *DisplayServerX11::create_func(const String &p_rendering_driver, WindowMode p_mode, VSyncMode p_vsync_mode, uint32_t p_flags, const Vector2i &p_resolution, Error &r_error) {
  3347. DisplayServer *ds = memnew(DisplayServerX11(p_rendering_driver, p_mode, p_vsync_mode, p_flags, p_resolution, r_error));
  3348. if (r_error != OK) {
  3349. OS::get_singleton()->alert("Your video card driver does not support any of the supported Vulkan or OpenGL versions.\n"
  3350. "Please update your drivers or if you have a very old or integrated GPU, upgrade it.\n"
  3351. "If you have updated your graphics drivers recently, try rebooting.",
  3352. "Unable to initialize Video driver");
  3353. }
  3354. return ds;
  3355. }
  3356. DisplayServerX11::WindowID DisplayServerX11::_create_window(WindowMode p_mode, VSyncMode p_vsync_mode, uint32_t p_flags, const Rect2i &p_rect) {
  3357. //Create window
  3358. long visualMask = VisualScreenMask;
  3359. int numberOfVisuals;
  3360. XVisualInfo vInfoTemplate = {};
  3361. vInfoTemplate.screen = DefaultScreen(x11_display);
  3362. XVisualInfo *visualInfo = XGetVisualInfo(x11_display, visualMask, &vInfoTemplate, &numberOfVisuals);
  3363. Colormap colormap = XCreateColormap(x11_display, RootWindow(x11_display, vInfoTemplate.screen), visualInfo->visual, AllocNone);
  3364. XSetWindowAttributes windowAttributes = {};
  3365. windowAttributes.colormap = colormap;
  3366. windowAttributes.background_pixel = 0xFFFFFFFF;
  3367. windowAttributes.border_pixel = 0;
  3368. windowAttributes.event_mask = KeyPressMask | KeyReleaseMask | StructureNotifyMask | ExposureMask;
  3369. unsigned long valuemask = CWBorderPixel | CWColormap | CWEventMask;
  3370. WindowID id = window_id_counter++;
  3371. WindowData &wd = windows[id];
  3372. if ((id != MAIN_WINDOW_ID) && (p_flags & WINDOW_FLAG_BORDERLESS_BIT)) {
  3373. wd.menu_type = true;
  3374. }
  3375. if (p_flags & WINDOW_FLAG_NO_FOCUS_BIT) {
  3376. wd.menu_type = true;
  3377. wd.no_focus = true;
  3378. }
  3379. // Setup for menu subwindows:
  3380. // - override_redirect forces the WM not to interfere with the window, to avoid delays due to
  3381. // handling decorations and placement.
  3382. // On the other hand, focus changes need to be handled manually when this is set.
  3383. // - save_under is a hint for the WM to keep the content of windows behind to avoid repaint.
  3384. if (wd.menu_type) {
  3385. windowAttributes.override_redirect = True;
  3386. windowAttributes.save_under = True;
  3387. valuemask |= CWOverrideRedirect | CWSaveUnder;
  3388. }
  3389. {
  3390. wd.x11_window = XCreateWindow(x11_display, RootWindow(x11_display, visualInfo->screen), p_rect.position.x, p_rect.position.y, p_rect.size.width > 0 ? p_rect.size.width : 1, p_rect.size.height > 0 ? p_rect.size.height : 1, 0, visualInfo->depth, InputOutput, visualInfo->visual, valuemask, &windowAttributes);
  3391. // Enable receiving notification when the window is initialized (MapNotify)
  3392. // so the focus can be set at the right time.
  3393. if (wd.menu_type && !wd.no_focus) {
  3394. XSelectInput(x11_display, wd.x11_window, StructureNotifyMask);
  3395. }
  3396. //associate PID
  3397. // make PID known to X11
  3398. {
  3399. const long pid = OS::get_singleton()->get_process_id();
  3400. Atom net_wm_pid = XInternAtom(x11_display, "_NET_WM_PID", False);
  3401. if (net_wm_pid != None) {
  3402. XChangeProperty(x11_display, wd.x11_window, net_wm_pid, XA_CARDINAL, 32, PropModeReplace, (unsigned char *)&pid, 1);
  3403. }
  3404. }
  3405. long im_event_mask = 0;
  3406. {
  3407. XIEventMask all_event_mask;
  3408. XSetWindowAttributes new_attr;
  3409. new_attr.event_mask = KeyPressMask | KeyReleaseMask | ButtonPressMask |
  3410. ButtonReleaseMask | EnterWindowMask |
  3411. LeaveWindowMask | PointerMotionMask |
  3412. Button1MotionMask |
  3413. Button2MotionMask | Button3MotionMask |
  3414. Button4MotionMask | Button5MotionMask |
  3415. ButtonMotionMask | KeymapStateMask |
  3416. ExposureMask | VisibilityChangeMask |
  3417. StructureNotifyMask |
  3418. SubstructureNotifyMask | SubstructureRedirectMask |
  3419. FocusChangeMask | PropertyChangeMask |
  3420. ColormapChangeMask | OwnerGrabButtonMask |
  3421. im_event_mask;
  3422. XChangeWindowAttributes(x11_display, wd.x11_window, CWEventMask, &new_attr);
  3423. static unsigned char all_mask_data[XIMaskLen(XI_LASTEVENT)] = {};
  3424. all_event_mask.deviceid = XIAllDevices;
  3425. all_event_mask.mask_len = sizeof(all_mask_data);
  3426. all_event_mask.mask = all_mask_data;
  3427. XISetMask(all_event_mask.mask, XI_HierarchyChanged);
  3428. #ifdef TOUCH_ENABLED
  3429. if (xi.touch_devices.size()) {
  3430. XISetMask(all_event_mask.mask, XI_TouchBegin);
  3431. XISetMask(all_event_mask.mask, XI_TouchUpdate);
  3432. XISetMask(all_event_mask.mask, XI_TouchEnd);
  3433. XISetMask(all_event_mask.mask, XI_TouchOwnership);
  3434. }
  3435. #endif
  3436. XISelectEvents(x11_display, wd.x11_window, &all_event_mask, 1);
  3437. }
  3438. /* set the titlebar name */
  3439. XStoreName(x11_display, wd.x11_window, "Godot");
  3440. XSetWMProtocols(x11_display, wd.x11_window, &wm_delete, 1);
  3441. if (xdnd_aware != None) {
  3442. XChangeProperty(x11_display, wd.x11_window, xdnd_aware, XA_ATOM, 32, PropModeReplace, (unsigned char *)&xdnd_version, 1);
  3443. }
  3444. if (xim && xim_style) {
  3445. // Block events polling while changing input focus
  3446. // because it triggers some event polling internally.
  3447. MutexLock mutex_lock(events_mutex);
  3448. wd.xic = XCreateIC(xim, XNInputStyle, xim_style, XNClientWindow, wd.x11_window, XNFocusWindow, wd.x11_window, (char *)nullptr);
  3449. if (XGetICValues(wd.xic, XNFilterEvents, &im_event_mask, nullptr) != nullptr) {
  3450. WARN_PRINT("XGetICValues couldn't obtain XNFilterEvents value");
  3451. XDestroyIC(wd.xic);
  3452. wd.xic = nullptr;
  3453. }
  3454. if (wd.xic) {
  3455. XUnsetICFocus(wd.xic);
  3456. } else {
  3457. WARN_PRINT("XCreateIC couldn't create wd.xic");
  3458. }
  3459. } else {
  3460. wd.xic = nullptr;
  3461. WARN_PRINT("XCreateIC couldn't create wd.xic");
  3462. }
  3463. _update_context(wd);
  3464. if (p_flags & WINDOW_FLAG_BORDERLESS_BIT) {
  3465. Hints hints;
  3466. Atom property;
  3467. hints.flags = 2;
  3468. hints.decorations = 0;
  3469. property = XInternAtom(x11_display, "_MOTIF_WM_HINTS", True);
  3470. if (property != None) {
  3471. XChangeProperty(x11_display, wd.x11_window, property, property, 32, PropModeReplace, (unsigned char *)&hints, 5);
  3472. }
  3473. }
  3474. if (wd.menu_type) {
  3475. // Set Utility type to disable fade animations.
  3476. Atom type_atom = XInternAtom(x11_display, "_NET_WM_WINDOW_TYPE_UTILITY", False);
  3477. Atom wt_atom = XInternAtom(x11_display, "_NET_WM_WINDOW_TYPE", False);
  3478. if (wt_atom != None && type_atom != None) {
  3479. XChangeProperty(x11_display, wd.x11_window, wt_atom, XA_ATOM, 32, PropModeReplace, (unsigned char *)&type_atom, 1);
  3480. }
  3481. } else {
  3482. Atom type_atom = XInternAtom(x11_display, "_NET_WM_WINDOW_TYPE_NORMAL", False);
  3483. Atom wt_atom = XInternAtom(x11_display, "_NET_WM_WINDOW_TYPE", False);
  3484. if (wt_atom != None && type_atom != None) {
  3485. XChangeProperty(x11_display, wd.x11_window, wt_atom, XA_ATOM, 32, PropModeReplace, (unsigned char *)&type_atom, 1);
  3486. }
  3487. }
  3488. _update_size_hints(id);
  3489. #if defined(VULKAN_ENABLED)
  3490. if (context_vulkan) {
  3491. Error err = context_vulkan->window_create(id, p_vsync_mode, wd.x11_window, x11_display, p_rect.size.width, p_rect.size.height);
  3492. ERR_FAIL_COND_V_MSG(err != OK, INVALID_WINDOW_ID, "Can't create a Vulkan window");
  3493. }
  3494. #endif
  3495. #ifdef GLES3_ENABLED
  3496. if (gl_manager) {
  3497. Error err = gl_manager->window_create(id, wd.x11_window, x11_display, p_rect.size.width, p_rect.size.height);
  3498. ERR_FAIL_COND_V_MSG(err != OK, INVALID_WINDOW_ID, "Can't create an OpenGL window");
  3499. }
  3500. #endif
  3501. //set_class_hint(x11_display, wd.x11_window);
  3502. XFlush(x11_display);
  3503. XSync(x11_display, False);
  3504. //XSetErrorHandler(oldHandler);
  3505. XFree(visualInfo);
  3506. }
  3507. window_set_mode(p_mode, id);
  3508. //sync size
  3509. {
  3510. XWindowAttributes xwa;
  3511. XSync(x11_display, False);
  3512. XGetWindowAttributes(x11_display, wd.x11_window, &xwa);
  3513. wd.position.x = xwa.x;
  3514. wd.position.y = xwa.y;
  3515. wd.size.width = xwa.width;
  3516. wd.size.height = xwa.height;
  3517. }
  3518. //set cursor
  3519. if (cursors[current_cursor] != None) {
  3520. XDefineCursor(x11_display, wd.x11_window, cursors[current_cursor]);
  3521. }
  3522. return id;
  3523. }
  3524. DisplayServerX11::DisplayServerX11(const String &p_rendering_driver, WindowMode p_mode, VSyncMode p_vsync_mode, uint32_t p_flags, const Vector2i &p_resolution, Error &r_error) {
  3525. Input::get_singleton()->set_event_dispatch_function(_dispatch_input_events);
  3526. r_error = OK;
  3527. current_cursor = CURSOR_ARROW;
  3528. mouse_mode = MOUSE_MODE_VISIBLE;
  3529. for (int i = 0; i < CURSOR_MAX; i++) {
  3530. cursors[i] = None;
  3531. img[i] = nullptr;
  3532. }
  3533. xmbstring = nullptr;
  3534. last_click_ms = 0;
  3535. last_click_button_index = MouseButton::NONE;
  3536. last_click_pos = Point2i(-100, -100);
  3537. last_timestamp = 0;
  3538. last_mouse_pos_valid = false;
  3539. last_keyrelease_time = 0;
  3540. XInitThreads(); //always use threads
  3541. /** XLIB INITIALIZATION **/
  3542. x11_display = XOpenDisplay(nullptr);
  3543. if (!x11_display) {
  3544. ERR_PRINT("X11 Display is not available");
  3545. r_error = ERR_UNAVAILABLE;
  3546. return;
  3547. }
  3548. char *modifiers = nullptr;
  3549. Bool xkb_dar = False;
  3550. XAutoRepeatOn(x11_display);
  3551. xkb_dar = XkbSetDetectableAutoRepeat(x11_display, True, nullptr);
  3552. // Try to support IME if detectable auto-repeat is supported
  3553. if (xkb_dar == True) {
  3554. #ifdef X_HAVE_UTF8_STRING
  3555. // Xutf8LookupString will be used later instead of XmbLookupString before
  3556. // the multibyte sequences can be converted to unicode string.
  3557. modifiers = XSetLocaleModifiers("");
  3558. #endif
  3559. }
  3560. if (modifiers == nullptr) {
  3561. if (OS::get_singleton()->is_stdout_verbose()) {
  3562. WARN_PRINT("IME is disabled");
  3563. }
  3564. XSetLocaleModifiers("@im=none");
  3565. WARN_PRINT("Error setting locale modifiers");
  3566. }
  3567. const char *err;
  3568. xrr_get_monitors = nullptr;
  3569. xrr_free_monitors = nullptr;
  3570. int xrandr_major = 0;
  3571. int xrandr_minor = 0;
  3572. int event_base, error_base;
  3573. xrandr_ext_ok = XRRQueryExtension(x11_display, &event_base, &error_base);
  3574. xrandr_handle = dlopen("libXrandr.so.2", RTLD_LAZY);
  3575. if (!xrandr_handle) {
  3576. err = dlerror();
  3577. // For some arcane reason, NetBSD now ships libXrandr.so.3 while the rest of the world has libXrandr.so.2...
  3578. // In case this happens for other X11 platforms in the future, let's give it a try too before failing.
  3579. xrandr_handle = dlopen("libXrandr.so.3", RTLD_LAZY);
  3580. if (!xrandr_handle) {
  3581. fprintf(stderr, "could not load libXrandr.so.2, Error: %s\n", err);
  3582. }
  3583. } else {
  3584. XRRQueryVersion(x11_display, &xrandr_major, &xrandr_minor);
  3585. if (((xrandr_major << 8) | xrandr_minor) >= 0x0105) {
  3586. xrr_get_monitors = (xrr_get_monitors_t)dlsym(xrandr_handle, "XRRGetMonitors");
  3587. if (!xrr_get_monitors) {
  3588. err = dlerror();
  3589. fprintf(stderr, "could not find symbol XRRGetMonitors\nError: %s\n", err);
  3590. } else {
  3591. xrr_free_monitors = (xrr_free_monitors_t)dlsym(xrandr_handle, "XRRFreeMonitors");
  3592. if (!xrr_free_monitors) {
  3593. err = dlerror();
  3594. fprintf(stderr, "could not find XRRFreeMonitors\nError: %s\n", err);
  3595. xrr_get_monitors = nullptr;
  3596. }
  3597. }
  3598. }
  3599. }
  3600. if (!_refresh_device_info()) {
  3601. OS::get_singleton()->alert("Your system does not support XInput 2.\n"
  3602. "Please upgrade your distribution.",
  3603. "Unable to initialize XInput");
  3604. r_error = ERR_UNAVAILABLE;
  3605. return;
  3606. }
  3607. xim = XOpenIM(x11_display, nullptr, nullptr, nullptr);
  3608. if (xim == nullptr) {
  3609. WARN_PRINT("XOpenIM failed");
  3610. xim_style = 0L;
  3611. } else {
  3612. ::XIMCallback im_destroy_callback;
  3613. im_destroy_callback.client_data = (::XPointer)(this);
  3614. im_destroy_callback.callback = (::XIMProc)(_xim_destroy_callback);
  3615. if (XSetIMValues(xim, XNDestroyCallback, &im_destroy_callback,
  3616. nullptr) != nullptr) {
  3617. WARN_PRINT("Error setting XIM destroy callback");
  3618. }
  3619. ::XIMStyles *xim_styles = nullptr;
  3620. xim_style = 0L;
  3621. char *imvalret = XGetIMValues(xim, XNQueryInputStyle, &xim_styles, nullptr);
  3622. if (imvalret != nullptr || xim_styles == nullptr) {
  3623. fprintf(stderr, "Input method doesn't support any styles\n");
  3624. }
  3625. if (xim_styles) {
  3626. xim_style = 0L;
  3627. for (int i = 0; i < xim_styles->count_styles; i++) {
  3628. if (xim_styles->supported_styles[i] ==
  3629. (XIMPreeditNothing | XIMStatusNothing)) {
  3630. xim_style = xim_styles->supported_styles[i];
  3631. break;
  3632. }
  3633. }
  3634. XFree(xim_styles);
  3635. }
  3636. XFree(imvalret);
  3637. }
  3638. /* Atorm internment */
  3639. wm_delete = XInternAtom(x11_display, "WM_DELETE_WINDOW", true);
  3640. //Set Xdnd (drag & drop) support
  3641. xdnd_aware = XInternAtom(x11_display, "XdndAware", False);
  3642. xdnd_version = 5;
  3643. xdnd_enter = XInternAtom(x11_display, "XdndEnter", False);
  3644. xdnd_position = XInternAtom(x11_display, "XdndPosition", False);
  3645. xdnd_status = XInternAtom(x11_display, "XdndStatus", False);
  3646. xdnd_action_copy = XInternAtom(x11_display, "XdndActionCopy", False);
  3647. xdnd_drop = XInternAtom(x11_display, "XdndDrop", False);
  3648. xdnd_finished = XInternAtom(x11_display, "XdndFinished", False);
  3649. xdnd_selection = XInternAtom(x11_display, "XdndSelection", False);
  3650. //!!!!!!!!!!!!!!!!!!!!!!!!!!
  3651. //TODO - do Vulkan and OpenGL support checks, driver selection and fallback
  3652. rendering_driver = p_rendering_driver;
  3653. bool driver_found = false;
  3654. #if defined(VULKAN_ENABLED)
  3655. if (rendering_driver == "vulkan") {
  3656. context_vulkan = memnew(VulkanContextX11);
  3657. if (context_vulkan->initialize() != OK) {
  3658. memdelete(context_vulkan);
  3659. context_vulkan = nullptr;
  3660. r_error = ERR_CANT_CREATE;
  3661. ERR_FAIL_MSG("Could not initialize Vulkan");
  3662. }
  3663. driver_found = true;
  3664. }
  3665. #endif
  3666. // Initialize context and rendering device.
  3667. #if defined(GLES3_ENABLED)
  3668. if (rendering_driver == "opengl3") {
  3669. if (getenv("DRI_PRIME") == nullptr) {
  3670. int use_prime = -1;
  3671. if (getenv("PRIMUS_DISPLAY") ||
  3672. getenv("PRIMUS_libGLd") ||
  3673. getenv("PRIMUS_libGLa") ||
  3674. getenv("PRIMUS_libGL") ||
  3675. getenv("PRIMUS_LOAD_GLOBAL") ||
  3676. getenv("BUMBLEBEE_SOCKET")) {
  3677. print_verbose("Optirun/primusrun detected. Skipping GPU detection");
  3678. use_prime = 0;
  3679. }
  3680. // Some tools use fake libGL libraries and have them override the real one using
  3681. // LD_LIBRARY_PATH, so we skip them. *But* Steam also sets LD_LIBRARY_PATH for its
  3682. // runtime and includes system `/lib` and `/lib64`... so ignore Steam.
  3683. if (use_prime == -1 && getenv("LD_LIBRARY_PATH") && !getenv("STEAM_RUNTIME_LIBRARY_PATH")) {
  3684. String ld_library_path(getenv("LD_LIBRARY_PATH"));
  3685. Vector<String> libraries = ld_library_path.split(":");
  3686. for (int i = 0; i < libraries.size(); ++i) {
  3687. if (FileAccess::exists(libraries[i] + "/libGL.so.1") ||
  3688. FileAccess::exists(libraries[i] + "/libGL.so")) {
  3689. print_verbose("Custom libGL override detected. Skipping GPU detection");
  3690. use_prime = 0;
  3691. }
  3692. }
  3693. }
  3694. if (use_prime == -1) {
  3695. print_verbose("Detecting GPUs, set DRI_PRIME in the environment to override GPU detection logic.");
  3696. use_prime = detect_prime();
  3697. }
  3698. if (use_prime) {
  3699. print_line("Found discrete GPU, setting DRI_PRIME=1 to use it.");
  3700. print_line("Note: Set DRI_PRIME=0 in the environment to disable Godot from using the discrete GPU.");
  3701. setenv("DRI_PRIME", "1", 1);
  3702. }
  3703. }
  3704. GLManager_X11::ContextType opengl_api_type = GLManager_X11::GLES_3_0_COMPATIBLE;
  3705. gl_manager = memnew(GLManager_X11(p_resolution, opengl_api_type));
  3706. if (gl_manager->initialize() != OK) {
  3707. memdelete(gl_manager);
  3708. gl_manager = nullptr;
  3709. r_error = ERR_UNAVAILABLE;
  3710. return;
  3711. }
  3712. driver_found = true;
  3713. // gl_manager->set_use_vsync(current_videomode.use_vsync);
  3714. if (true) {
  3715. // if (RasterizerGLES3::is_viable() == OK) {
  3716. // RasterizerGLES3::register_config();
  3717. RasterizerGLES3::make_current();
  3718. } else {
  3719. memdelete(gl_manager);
  3720. gl_manager = nullptr;
  3721. r_error = ERR_UNAVAILABLE;
  3722. return;
  3723. }
  3724. }
  3725. #endif
  3726. if (!driver_found) {
  3727. r_error = ERR_UNAVAILABLE;
  3728. ERR_FAIL_MSG("Video driver not found");
  3729. }
  3730. Point2i window_position(
  3731. (screen_get_size(0).width - p_resolution.width) / 2,
  3732. (screen_get_size(0).height - p_resolution.height) / 2);
  3733. WindowID main_window = _create_window(p_mode, p_vsync_mode, p_flags, Rect2i(window_position, p_resolution));
  3734. if (main_window == INVALID_WINDOW_ID) {
  3735. r_error = ERR_CANT_CREATE;
  3736. return;
  3737. }
  3738. for (int i = 0; i < WINDOW_FLAG_MAX; i++) {
  3739. if (p_flags & (1 << i)) {
  3740. window_set_flag(WindowFlags(i), true, main_window);
  3741. }
  3742. }
  3743. show_window(main_window);
  3744. #if defined(VULKAN_ENABLED)
  3745. if (rendering_driver == "vulkan") {
  3746. //temporary
  3747. rendering_device_vulkan = memnew(RenderingDeviceVulkan);
  3748. rendering_device_vulkan->initialize(context_vulkan);
  3749. RendererCompositorRD::make_current();
  3750. }
  3751. #endif
  3752. {
  3753. //set all event master mask
  3754. XIEventMask all_master_event_mask;
  3755. static unsigned char all_master_mask_data[XIMaskLen(XI_LASTEVENT)] = {};
  3756. all_master_event_mask.deviceid = XIAllMasterDevices;
  3757. all_master_event_mask.mask_len = sizeof(all_master_mask_data);
  3758. all_master_event_mask.mask = all_master_mask_data;
  3759. XISetMask(all_master_event_mask.mask, XI_DeviceChanged);
  3760. XISetMask(all_master_event_mask.mask, XI_RawMotion);
  3761. XISelectEvents(x11_display, DefaultRootWindow(x11_display), &all_master_event_mask, 1);
  3762. }
  3763. cursor_size = XcursorGetDefaultSize(x11_display);
  3764. cursor_theme = XcursorGetTheme(x11_display);
  3765. if (!cursor_theme) {
  3766. print_verbose("XcursorGetTheme could not get cursor theme");
  3767. cursor_theme = "default";
  3768. }
  3769. for (int i = 0; i < CURSOR_MAX; i++) {
  3770. static const char *cursor_file[] = {
  3771. "left_ptr",
  3772. "xterm",
  3773. "hand2",
  3774. "cross",
  3775. "watch",
  3776. "left_ptr_watch",
  3777. "fleur",
  3778. "dnd-move",
  3779. "crossed_circle",
  3780. "v_double_arrow",
  3781. "h_double_arrow",
  3782. "size_bdiag",
  3783. "size_fdiag",
  3784. "move",
  3785. "row_resize",
  3786. "col_resize",
  3787. "question_arrow"
  3788. };
  3789. img[i] = XcursorLibraryLoadImage(cursor_file[i], cursor_theme, cursor_size);
  3790. if (!img[i]) {
  3791. const char *fallback = nullptr;
  3792. switch (i) {
  3793. case CURSOR_POINTING_HAND:
  3794. fallback = "pointer";
  3795. break;
  3796. case CURSOR_CROSS:
  3797. fallback = "crosshair";
  3798. break;
  3799. case CURSOR_WAIT:
  3800. fallback = "wait";
  3801. break;
  3802. case CURSOR_BUSY:
  3803. fallback = "progress";
  3804. break;
  3805. case CURSOR_DRAG:
  3806. fallback = "grabbing";
  3807. break;
  3808. case CURSOR_CAN_DROP:
  3809. fallback = "hand1";
  3810. break;
  3811. case CURSOR_FORBIDDEN:
  3812. fallback = "forbidden";
  3813. break;
  3814. case CURSOR_VSIZE:
  3815. fallback = "ns-resize";
  3816. break;
  3817. case CURSOR_HSIZE:
  3818. fallback = "ew-resize";
  3819. break;
  3820. case CURSOR_BDIAGSIZE:
  3821. fallback = "fd_double_arrow";
  3822. break;
  3823. case CURSOR_FDIAGSIZE:
  3824. fallback = "bd_double_arrow";
  3825. break;
  3826. case CURSOR_MOVE:
  3827. img[i] = img[CURSOR_DRAG];
  3828. break;
  3829. case CURSOR_VSPLIT:
  3830. fallback = "sb_v_double_arrow";
  3831. break;
  3832. case CURSOR_HSPLIT:
  3833. fallback = "sb_h_double_arrow";
  3834. break;
  3835. case CURSOR_HELP:
  3836. fallback = "help";
  3837. break;
  3838. }
  3839. if (fallback != nullptr) {
  3840. img[i] = XcursorLibraryLoadImage(fallback, cursor_theme, cursor_size);
  3841. }
  3842. }
  3843. if (img[i]) {
  3844. cursors[i] = XcursorImageLoadCursor(x11_display, img[i]);
  3845. } else {
  3846. print_verbose("Failed loading custom cursor: " + String(cursor_file[i]));
  3847. }
  3848. }
  3849. {
  3850. // Creating an empty/transparent cursor
  3851. // Create 1x1 bitmap
  3852. Pixmap cursormask = XCreatePixmap(x11_display,
  3853. RootWindow(x11_display, DefaultScreen(x11_display)), 1, 1, 1);
  3854. // Fill with zero
  3855. XGCValues xgc;
  3856. xgc.function = GXclear;
  3857. GC gc = XCreateGC(x11_display, cursormask, GCFunction, &xgc);
  3858. XFillRectangle(x11_display, cursormask, gc, 0, 0, 1, 1);
  3859. // Color value doesn't matter. Mask zero means no foreground or background will be drawn
  3860. XColor col = {};
  3861. Cursor cursor = XCreatePixmapCursor(x11_display,
  3862. cursormask, // source (using cursor mask as placeholder, since it'll all be ignored)
  3863. cursormask, // mask
  3864. &col, &col, 0, 0);
  3865. XFreePixmap(x11_display, cursormask);
  3866. XFreeGC(x11_display, gc);
  3867. if (cursor == None) {
  3868. ERR_PRINT("FAILED CREATING CURSOR");
  3869. }
  3870. null_cursor = cursor;
  3871. }
  3872. cursor_set_shape(CURSOR_BUSY);
  3873. requested = None;
  3874. /*if (p_desired.layered) {
  3875. set_window_per_pixel_transparency_enabled(true);
  3876. }*/
  3877. XEvent xevent;
  3878. while (XPending(x11_display) > 0) {
  3879. XNextEvent(x11_display, &xevent);
  3880. if (xevent.type == ConfigureNotify) {
  3881. _window_changed(&xevent);
  3882. }
  3883. }
  3884. events_thread.start(_poll_events_thread, this);
  3885. _update_real_mouse_position(windows[MAIN_WINDOW_ID]);
  3886. #ifdef DBUS_ENABLED
  3887. screensaver = memnew(FreeDesktopScreenSaver);
  3888. screen_set_keep_on(GLOBAL_DEF("display/window/energy_saving/keep_screen_on", true));
  3889. #endif
  3890. r_error = OK;
  3891. }
  3892. DisplayServerX11::~DisplayServerX11() {
  3893. // Send owned clipboard data to clipboard manager before exit.
  3894. Window x11_main_window = windows[MAIN_WINDOW_ID].x11_window;
  3895. _clipboard_transfer_ownership(XA_PRIMARY, x11_main_window);
  3896. _clipboard_transfer_ownership(XInternAtom(x11_display, "CLIPBOARD", 0), x11_main_window);
  3897. events_thread_done.set();
  3898. events_thread.wait_to_finish();
  3899. //destroy all windows
  3900. for (KeyValue<WindowID, WindowData> &E : windows) {
  3901. #ifdef VULKAN_ENABLED
  3902. if (context_vulkan) {
  3903. context_vulkan->window_destroy(E.key);
  3904. }
  3905. #endif
  3906. #ifdef GLES3_ENABLED
  3907. if (gl_manager) {
  3908. gl_manager->window_destroy(E.key);
  3909. }
  3910. #endif
  3911. WindowData &wd = E.value;
  3912. if (wd.xic) {
  3913. XDestroyIC(wd.xic);
  3914. wd.xic = nullptr;
  3915. }
  3916. XUnmapWindow(x11_display, wd.x11_window);
  3917. XDestroyWindow(x11_display, wd.x11_window);
  3918. }
  3919. //destroy drivers
  3920. #if defined(VULKAN_ENABLED)
  3921. if (rendering_device_vulkan) {
  3922. rendering_device_vulkan->finalize();
  3923. memdelete(rendering_device_vulkan);
  3924. rendering_device_vulkan = nullptr;
  3925. }
  3926. if (context_vulkan) {
  3927. memdelete(context_vulkan);
  3928. context_vulkan = nullptr;
  3929. }
  3930. #endif
  3931. #ifdef GLES3_ENABLED
  3932. if (gl_manager) {
  3933. memdelete(gl_manager);
  3934. gl_manager = nullptr;
  3935. }
  3936. #endif
  3937. if (xrandr_handle) {
  3938. dlclose(xrandr_handle);
  3939. }
  3940. for (int i = 0; i < CURSOR_MAX; i++) {
  3941. if (cursors[i] != None) {
  3942. XFreeCursor(x11_display, cursors[i]);
  3943. }
  3944. if (img[i] != nullptr) {
  3945. XcursorImageDestroy(img[i]);
  3946. }
  3947. };
  3948. if (xim) {
  3949. XCloseIM(xim);
  3950. }
  3951. XCloseDisplay(x11_display);
  3952. if (xmbstring) {
  3953. memfree(xmbstring);
  3954. }
  3955. #ifdef DBUS_ENABLED
  3956. memdelete(screensaver);
  3957. #endif
  3958. }
  3959. void DisplayServerX11::register_x11_driver() {
  3960. register_create_function("x11", create_func, get_rendering_drivers_func);
  3961. }
  3962. #endif // X11 enabled