i3
bindings.c
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1/*
2 * vim:ts=4:sw=4:expandtab
3 *
4 * i3 - an improved dynamic tiling window manager
5 * © 2009 Michael Stapelberg and contributors (see also: LICENSE)
6 *
7 * bindings.c: Functions for configuring, finding and, running bindings.
8 */
9#include "all.h"
10
11#include <xkbcommon/xkbcommon.h>
12#include <xkbcommon/xkbcommon-x11.h>
13
14static struct xkb_context *xkb_context;
15static struct xkb_keymap *xkb_keymap;
16
18
19/*
20 * The name of the default mode.
21 *
22 */
23const char *DEFAULT_BINDING_MODE = "default";
24
25/*
26 * Returns the mode specified by `name` or creates a new mode and adds it to
27 * the list of modes.
28 *
29 */
30static struct Mode *mode_from_name(const char *name, bool pango_markup) {
31 struct Mode *mode;
32
33 /* Try to find the mode in the list of modes and return it */
34 SLIST_FOREACH(mode, &modes, modes) {
35 if (strcmp(mode->name, name) == 0) {
36 return mode;
37 }
38 }
39
40 /* If the mode was not found, create a new one */
41 mode = scalloc(1, sizeof(struct Mode));
42 mode->name = sstrdup(name);
44 mode->bindings = scalloc(1, sizeof(struct bindings_head));
45 TAILQ_INIT(mode->bindings);
47
48 return mode;
49}
50
51/*
52 * Adds a binding from config parameters given as strings and returns a
53 * pointer to the binding structure. Returns NULL if the input code could not
54 * be parsed.
55 *
56 */
57Binding *configure_binding(const char *bindtype, const char *modifiers, const char *input_code,
58 const char *release, const char *border, const char *whole_window,
59 const char *exclude_titlebar, const char *command, const char *modename,
60 bool pango_markup) {
61 Binding *new_binding = scalloc(1, sizeof(Binding));
62 DLOG("Binding %p bindtype %s, modifiers %s, input code %s, release %s\n", new_binding, bindtype, modifiers, input_code, release);
63 new_binding->release = (release != NULL ? B_UPON_KEYRELEASE : B_UPON_KEYPRESS);
64 new_binding->border = (border != NULL);
65 new_binding->whole_window = (whole_window != NULL);
66 new_binding->exclude_titlebar = (exclude_titlebar != NULL);
67 if (strcmp(bindtype, "bindsym") == 0) {
68 new_binding->input_type = (strncasecmp(input_code, "button", (sizeof("button") - 1)) == 0
69 ? B_MOUSE
70 : B_KEYBOARD);
71
72 new_binding->symbol = sstrdup(input_code);
73 } else {
74 long keycode;
75 if (!parse_long(input_code, &keycode, 10)) {
76 ELOG("Could not parse \"%s\" as an input code, ignoring this binding.\n", input_code);
77 FREE(new_binding);
78 return NULL;
79 }
80
81 new_binding->keycode = keycode;
82 new_binding->input_type = B_KEYBOARD;
83 }
84 new_binding->command = sstrdup(command);
85 new_binding->event_state_mask = event_state_from_str(modifiers);
86 int group_bits_set = 0;
87 if ((new_binding->event_state_mask >> 16) & I3_XKB_GROUP_MASK_1)
88 group_bits_set++;
89 if ((new_binding->event_state_mask >> 16) & I3_XKB_GROUP_MASK_2)
90 group_bits_set++;
91 if ((new_binding->event_state_mask >> 16) & I3_XKB_GROUP_MASK_3)
92 group_bits_set++;
93 if ((new_binding->event_state_mask >> 16) & I3_XKB_GROUP_MASK_4)
94 group_bits_set++;
95 if (group_bits_set > 1)
96 ELOG("Keybinding has more than one Group specified, but your X server is always in precisely one group. The keybinding can never trigger.\n");
97
98 struct Mode *mode = mode_from_name(modename, pango_markup);
99 TAILQ_INSERT_TAIL(mode->bindings, new_binding, bindings);
100
101 TAILQ_INIT(&(new_binding->keycodes_head));
102
103 return new_binding;
104}
105
106static bool binding_in_current_group(const Binding *bind) {
107 /* If no bits are set, the binding should be installed in every group. */
108 if ((bind->event_state_mask >> 16) == I3_XKB_GROUP_MASK_ANY)
109 return true;
110 switch (xkb_current_group) {
111 case XCB_XKB_GROUP_1:
112 return ((bind->event_state_mask >> 16) & I3_XKB_GROUP_MASK_1);
113 case XCB_XKB_GROUP_2:
114 return ((bind->event_state_mask >> 16) & I3_XKB_GROUP_MASK_2);
115 case XCB_XKB_GROUP_3:
116 return ((bind->event_state_mask >> 16) & I3_XKB_GROUP_MASK_3);
117 case XCB_XKB_GROUP_4:
118 return ((bind->event_state_mask >> 16) & I3_XKB_GROUP_MASK_4);
119 default:
120 ELOG("BUG: xkb_current_group (= %d) outside of [XCB_XKB_GROUP_1..XCB_XKB_GROUP_4]\n", xkb_current_group);
121 return false;
122 }
123}
124
125static void grab_keycode_for_binding(xcb_connection_t *conn, Binding *bind, uint32_t keycode) {
126 /* Grab the key in all combinations */
127#define GRAB_KEY(modifier) \
128 do { \
129 xcb_grab_key(conn, 0, root, modifier, keycode, XCB_GRAB_MODE_SYNC, XCB_GRAB_MODE_ASYNC); \
130 } while (0)
131 const int mods = (bind->event_state_mask & 0xFFFF);
132 DLOG("Binding %p Grabbing keycode %d with event state mask 0x%x (mods 0x%x)\n",
133 bind, keycode, bind->event_state_mask, mods);
134 GRAB_KEY(mods);
135 /* Also bind the key with active NumLock */
137 /* Also bind the key with active CapsLock */
138 GRAB_KEY(mods | XCB_MOD_MASK_LOCK);
139 /* Also bind the key with active NumLock+CapsLock */
140 GRAB_KEY(mods | xcb_numlock_mask | XCB_MOD_MASK_LOCK);
141}
142
143/*
144 * Grab the bound keys (tell X to send us keypress events for those keycodes)
145 *
146 */
147void grab_all_keys(xcb_connection_t *conn) {
148 Binding *bind;
150 if (bind->input_type != B_KEYBOARD)
151 continue;
152
153 if (!binding_in_current_group(bind))
154 continue;
155
156 /* The easy case: the user specified a keycode directly. */
157 if (bind->keycode > 0) {
159 continue;
160 }
161
162 struct Binding_Keycode *binding_keycode;
163 TAILQ_FOREACH(binding_keycode, &(bind->keycodes_head), keycodes) {
164 const int keycode = binding_keycode->keycode;
165 const int mods = (binding_keycode->modifiers & 0xFFFF);
166 DLOG("Binding %p Grabbing keycode %d with mods %d\n", bind, keycode, mods);
167 xcb_grab_key(conn, 0, root, mods, keycode, XCB_GRAB_MODE_SYNC, XCB_GRAB_MODE_ASYNC);
168 }
169 }
170}
171
172/*
173 * Release the button grabs on all managed windows and regrab them,
174 * reevaluating which buttons need to be grabbed.
175 *
176 */
177void regrab_all_buttons(xcb_connection_t *conn) {
178 int *buttons = bindings_get_buttons_to_grab();
179 xcb_grab_server(conn);
180
181 Con *con;
183 if (con->window == NULL)
184 continue;
185
186 xcb_ungrab_button(conn, XCB_BUTTON_INDEX_ANY, con->window->id, XCB_BUTTON_MASK_ANY);
187 xcb_grab_buttons(conn, con->window->id, buttons);
188 }
189
190 FREE(buttons);
191 xcb_ungrab_server(conn);
192}
193
194/*
195 * Returns a pointer to the Binding with the specified modifiers and
196 * keycode or NULL if no such binding exists.
197 *
198 */
199static Binding *get_binding(i3_event_state_mask_t state_filtered, bool is_release, uint16_t input_code, input_type_t input_type) {
200 Binding *bind;
201 Binding *result = NULL;
202
203 if (!is_release) {
204 /* On a press event, we first reset all B_UPON_KEYRELEASE_IGNORE_MODS
205 * bindings back to B_UPON_KEYRELEASE */
207 if (bind->input_type != input_type)
208 continue;
209 if (bind->release == B_UPON_KEYRELEASE_IGNORE_MODS)
210 bind->release = B_UPON_KEYRELEASE;
211 }
212 }
213
214 const uint32_t xkb_group_state = (state_filtered & 0xFFFF0000);
215 const uint32_t modifiers_state = (state_filtered & 0x0000FFFF);
217 if (bind->input_type != input_type) {
218 continue;
219 }
220
221 const uint32_t xkb_group_mask = (bind->event_state_mask & 0xFFFF0000);
222 const bool groups_match = ((xkb_group_state & xkb_group_mask) == xkb_group_mask);
223 if (!groups_match) {
224 DLOG("skipping binding %p because XKB groups do not match\n", bind);
225 continue;
226 }
227
228 /* For keyboard bindings where a symbol was specified by the user, we
229 * need to look in the array of translated keycodes for the event’s
230 * keycode */
231 bool found_keycode = false;
232 if (input_type == B_KEYBOARD && bind->symbol != NULL) {
233 xcb_keycode_t input_keycode = (xcb_keycode_t)input_code;
234 struct Binding_Keycode *binding_keycode;
235 TAILQ_FOREACH(binding_keycode, &(bind->keycodes_head), keycodes) {
236 const uint32_t modifiers_mask = (binding_keycode->modifiers & 0x0000FFFF);
237 const bool mods_match = (modifiers_mask == modifiers_state);
238 DLOG("binding_keycode->modifiers = %d, modifiers_mask = %d, modifiers_state = %d, mods_match = %s\n",
239 binding_keycode->modifiers, modifiers_mask, modifiers_state, (mods_match ? "yes" : "no"));
240 if (binding_keycode->keycode == input_keycode &&
241 (mods_match || (bind->release == B_UPON_KEYRELEASE_IGNORE_MODS && is_release))) {
242 found_keycode = true;
243 break;
244 }
245 }
246 } else {
247 /* This case is easier: The user specified a keycode */
248 if (bind->keycode != input_code) {
249 continue;
250 }
251
252 struct Binding_Keycode *binding_keycode;
253 TAILQ_FOREACH(binding_keycode, &(bind->keycodes_head), keycodes) {
254 const uint32_t modifiers_mask = (binding_keycode->modifiers & 0x0000FFFF);
255 const bool mods_match = (modifiers_mask == modifiers_state);
256 DLOG("binding_keycode->modifiers = %d, modifiers_mask = %d, modifiers_state = %d, mods_match = %s\n",
257 binding_keycode->modifiers, modifiers_mask, modifiers_state, (mods_match ? "yes" : "no"));
258 if (mods_match || (bind->release == B_UPON_KEYRELEASE_IGNORE_MODS && is_release)) {
259 found_keycode = true;
260 break;
261 }
262 }
263 }
264 if (!found_keycode) {
265 continue;
266 }
267
268 /* If this binding is a release binding, it matches the key which the
269 * user pressed. We therefore mark it as B_UPON_KEYRELEASE_IGNORE_MODS
270 * for later, so that the user can release the modifiers before the
271 * actual key or button and the release event will still be matched. */
272 if (bind->release == B_UPON_KEYRELEASE && !is_release) {
273 bind->release = B_UPON_KEYRELEASE_IGNORE_MODS;
274 DLOG("marked bind %p as B_UPON_KEYRELEASE_IGNORE_MODS\n", bind);
275 if (result) {
276 break;
277 }
278 continue;
279 }
280
281 /* Check if the binding is for a press or a release event */
282 if ((bind->release == B_UPON_KEYPRESS && is_release)) {
283 continue;
284 }
285
286 if (is_release) {
287 return bind;
288 } else if (!result) {
289 /* Continue looping to mark needed B_UPON_KEYRELEASE_IGNORE_MODS. */
290 result = bind;
291 }
292 }
293
294 return result;
295}
296
297/*
298 * Returns a pointer to the Binding that matches the given xcb button or key
299 * event or NULL if no such binding exists.
300 *
301 */
302Binding *get_binding_from_xcb_event(xcb_generic_event_t *event) {
303 const bool is_release = (event->response_type == XCB_KEY_RELEASE ||
304 event->response_type == XCB_BUTTON_RELEASE);
305
306 const input_type_t input_type = ((event->response_type == XCB_BUTTON_RELEASE ||
307 event->response_type == XCB_BUTTON_PRESS)
308 ? B_MOUSE
309 : B_KEYBOARD);
310
311 const uint16_t event_state = ((xcb_key_press_event_t *)event)->state;
312 const uint16_t event_detail = ((xcb_key_press_event_t *)event)->detail;
313
314 /* Remove the CapsLock bit */
315 i3_event_state_mask_t state_filtered = event_state & ~XCB_MOD_MASK_LOCK;
316 DLOG("(removed capslock, state = 0x%x)\n", state_filtered);
317 /* Transform the keyboard_group from bit 13 and bit 14 into an
318 * i3_xkb_group_mask_t, so that get_binding() can just bitwise AND the
319 * configured bindings against |state_filtered|.
320 *
321 * These bits are only set because we set the XKB client flags
322 * XCB_XKB_PER_CLIENT_FLAG_GRABS_USE_XKB_STATE and
323 * XCB_XKB_PER_CLIENT_FLAG_LOOKUP_STATE_WHEN_GRABBED. See also doc/kbproto
324 * section 2.2.2:
325 * https://www.x.org/releases/X11R7.7/doc/kbproto/xkbproto.html#Computing_A_State_Field_from_an_XKB_State */
326 switch ((event_state & 0x6000) >> 13) {
327 case XCB_XKB_GROUP_1:
328 state_filtered |= (I3_XKB_GROUP_MASK_1 << 16);
329 break;
330 case XCB_XKB_GROUP_2:
331 state_filtered |= (I3_XKB_GROUP_MASK_2 << 16);
332 break;
333 case XCB_XKB_GROUP_3:
334 state_filtered |= (I3_XKB_GROUP_MASK_3 << 16);
335 break;
336 case XCB_XKB_GROUP_4:
337 state_filtered |= (I3_XKB_GROUP_MASK_4 << 16);
338 break;
339 }
340 state_filtered &= ~0x6000;
341 DLOG("(transformed keyboard group, state = 0x%x)\n", state_filtered);
342 return get_binding(state_filtered, is_release, event_detail, input_type);
343}
344
345struct resolve {
346 /* The binding which we are resolving. */
348
349 /* |bind|’s keysym (translated to xkb_keysym_t), e.g. XKB_KEY_R. */
350 xkb_keysym_t keysym;
351
352 /* The xkb state built from the user-provided modifiers and group. */
354
355 /* Like |xkb_state|, just without the shift modifier, if shift was specified. */
357
358 /* Like |xkb_state|, but with NumLock. */
360
361 /* Like |xkb_state|, but with NumLock, just without the shift modifier, if shift was specified. */
363};
364
365#define ADD_TRANSLATED_KEY(code, mods) \
366 do { \
367 struct Binding_Keycode *binding_keycode = smalloc(sizeof(struct Binding_Keycode)); \
368 binding_keycode->modifiers = (mods); \
369 binding_keycode->keycode = (code); \
370 TAILQ_INSERT_TAIL(&(bind->keycodes_head), binding_keycode, keycodes); \
371 } while (0)
372
373/*
374 * add_keycode_if_matches is called for each keycode in the keymap and will add
375 * the keycode to |data->bind| if the keycode can result in the keysym
376 * |data->resolving|.
377 *
378 */
379static void add_keycode_if_matches(struct xkb_keymap *keymap, xkb_keycode_t key, void *data) {
380 const struct resolve *resolving = data;
381 struct xkb_state *numlock_state = resolving->xkb_state_numlock;
382 xkb_keysym_t sym = xkb_state_key_get_one_sym(resolving->xkb_state, key);
383 if (sym != resolving->keysym) {
384 /* Check if Shift was specified, and try resolving the symbol without
385 * shift, so that “bindsym $mod+Shift+a nop” actually works. */
386 const xkb_layout_index_t layout = xkb_state_key_get_layout(resolving->xkb_state, key);
387 if (layout == XKB_LAYOUT_INVALID)
388 return;
389 if (xkb_state_key_get_level(resolving->xkb_state, key, layout) > 1)
390 return;
391 /* Skip the Shift fallback for keypad keys, otherwise one cannot bind
392 * KP_1 independent of KP_End. */
393 if (sym >= XKB_KEY_KP_Space && sym <= XKB_KEY_KP_Equal)
394 return;
395 numlock_state = resolving->xkb_state_numlock_no_shift;
396 sym = xkb_state_key_get_one_sym(resolving->xkb_state_no_shift, key);
397 if (sym != resolving->keysym)
398 return;
399 }
400 Binding *bind = resolving->bind;
401
403
404 /* Also bind the key with active CapsLock */
405 ADD_TRANSLATED_KEY(key, bind->event_state_mask | XCB_MOD_MASK_LOCK);
406
407 /* If this binding is not explicitly for NumLock, check whether we need to
408 * add a fallback. */
410 /* Check whether the keycode results in the same keysym when NumLock is
411 * active. If so, grab the key with NumLock as well, so that users don’t
412 * need to duplicate every key binding with an additional Mod2 specified.
413 */
414 xkb_keysym_t sym_numlock = xkb_state_key_get_one_sym(numlock_state, key);
415 if (sym_numlock == resolving->keysym) {
416 /* Also bind the key with active NumLock */
418
419 /* Also bind the key with active NumLock+CapsLock */
420 ADD_TRANSLATED_KEY(key, bind->event_state_mask | xcb_numlock_mask | XCB_MOD_MASK_LOCK);
421 } else {
422 DLOG("Skipping automatic numlock fallback, key %d resolves to 0x%x with numlock\n",
423 key, sym_numlock);
424 }
425 }
426}
427
428/*
429 * Translates keysymbols to keycodes for all bindings which use keysyms.
430 *
431 */
433 struct xkb_state *dummy_state = NULL;
434 struct xkb_state *dummy_state_no_shift = NULL;
435 struct xkb_state *dummy_state_numlock = NULL;
436 struct xkb_state *dummy_state_numlock_no_shift = NULL;
437 bool has_errors = false;
438
439 if ((dummy_state = xkb_state_new(xkb_keymap)) == NULL ||
440 (dummy_state_no_shift = xkb_state_new(xkb_keymap)) == NULL ||
441 (dummy_state_numlock = xkb_state_new(xkb_keymap)) == NULL ||
442 (dummy_state_numlock_no_shift = xkb_state_new(xkb_keymap)) == NULL) {
443 ELOG("Could not create XKB state, cannot translate keysyms.\n");
444 goto out;
445 }
446
447 Binding *bind;
449 if (bind->input_type == B_MOUSE) {
450 long button;
451 if (!parse_long(bind->symbol + (sizeof("button") - 1), &button, 10)) {
452 ELOG("Could not translate string to button: \"%s\"\n", bind->symbol);
453 }
454
455 xcb_keycode_t key = button;
456 bind->keycode = key;
457 DLOG("Binding Mouse button, Keycode = %d\n", key);
458 }
459
460 xkb_layout_index_t group = XCB_XKB_GROUP_1;
461 if ((bind->event_state_mask >> 16) & I3_XKB_GROUP_MASK_2)
462 group = XCB_XKB_GROUP_2;
463 else if ((bind->event_state_mask >> 16) & I3_XKB_GROUP_MASK_3)
464 group = XCB_XKB_GROUP_3;
465 else if ((bind->event_state_mask >> 16) & I3_XKB_GROUP_MASK_4)
466 group = XCB_XKB_GROUP_4;
467
468 DLOG("Binding %p group = %d, event_state_mask = %d, &2 = %s, &3 = %s, &4 = %s\n",
469 bind,
470 group,
471 bind->event_state_mask,
472 (bind->event_state_mask & I3_XKB_GROUP_MASK_2) ? "yes" : "no",
473 (bind->event_state_mask & I3_XKB_GROUP_MASK_3) ? "yes" : "no",
474 (bind->event_state_mask & I3_XKB_GROUP_MASK_4) ? "yes" : "no");
475 (void)xkb_state_update_mask(
476 dummy_state,
477 (bind->event_state_mask & 0x1FFF) /* xkb_mod_mask_t base_mods, */,
478 0 /* xkb_mod_mask_t latched_mods, */,
479 0 /* xkb_mod_mask_t locked_mods, */,
480 0 /* xkb_layout_index_t base_group, */,
481 0 /* xkb_layout_index_t latched_group, */,
482 group /* xkb_layout_index_t locked_group, */);
483
484 (void)xkb_state_update_mask(
485 dummy_state_no_shift,
486 (bind->event_state_mask & 0x1FFF) ^ XCB_KEY_BUT_MASK_SHIFT /* xkb_mod_mask_t base_mods, */,
487 0 /* xkb_mod_mask_t latched_mods, */,
488 0 /* xkb_mod_mask_t locked_mods, */,
489 0 /* xkb_layout_index_t base_group, */,
490 0 /* xkb_layout_index_t latched_group, */,
491 group /* xkb_layout_index_t locked_group, */);
492
493 (void)xkb_state_update_mask(
494 dummy_state_numlock,
495 (bind->event_state_mask & 0x1FFF) | xcb_numlock_mask /* xkb_mod_mask_t base_mods, */,
496 0 /* xkb_mod_mask_t latched_mods, */,
497 0 /* xkb_mod_mask_t locked_mods, */,
498 0 /* xkb_layout_index_t base_group, */,
499 0 /* xkb_layout_index_t latched_group, */,
500 group /* xkb_layout_index_t locked_group, */);
501
502 (void)xkb_state_update_mask(
503 dummy_state_numlock_no_shift,
504 ((bind->event_state_mask & 0x1FFF) | xcb_numlock_mask) ^ XCB_KEY_BUT_MASK_SHIFT /* xkb_mod_mask_t base_mods, */,
505 0 /* xkb_mod_mask_t latched_mods, */,
506 0 /* xkb_mod_mask_t locked_mods, */,
507 0 /* xkb_layout_index_t base_group, */,
508 0 /* xkb_layout_index_t latched_group, */,
509 group /* xkb_layout_index_t locked_group, */);
510
511 if (bind->keycode > 0) {
512 /* We need to specify modifiers for the keycode binding (numlock
513 * fallback). */
514 while (!TAILQ_EMPTY(&(bind->keycodes_head))) {
515 struct Binding_Keycode *first = TAILQ_FIRST(&(bind->keycodes_head));
516 TAILQ_REMOVE(&(bind->keycodes_head), first, keycodes);
517 FREE(first);
518 }
519
521
522 /* Also bind the key with active CapsLock */
523 ADD_TRANSLATED_KEY(bind->keycode, bind->event_state_mask | XCB_MOD_MASK_LOCK);
524
525 /* If this binding is not explicitly for NumLock, check whether we need to
526 * add a fallback. */
528 /* Check whether the keycode results in the same keysym when NumLock is
529 * active. If so, grab the key with NumLock as well, so that users don’t
530 * need to duplicate every key binding with an additional Mod2 specified.
531 */
532 xkb_keysym_t sym = xkb_state_key_get_one_sym(dummy_state, bind->keycode);
533 xkb_keysym_t sym_numlock = xkb_state_key_get_one_sym(dummy_state_numlock, bind->keycode);
534 if (sym == sym_numlock) {
535 /* Also bind the key with active NumLock */
537
538 /* Also bind the key with active NumLock+CapsLock */
539 ADD_TRANSLATED_KEY(bind->keycode, bind->event_state_mask | xcb_numlock_mask | XCB_MOD_MASK_LOCK);
540 } else {
541 DLOG("Skipping automatic numlock fallback, key %d resolves to 0x%x with numlock\n",
542 bind->keycode, sym_numlock);
543 }
544 }
545
546 continue;
547 }
548
549 /* We need to translate the symbol to a keycode */
550 const xkb_keysym_t keysym = xkb_keysym_from_name(bind->symbol, XKB_KEYSYM_NO_FLAGS);
551 if (keysym == XKB_KEY_NoSymbol) {
552 ELOG("Could not translate string to key symbol: \"%s\"\n",
553 bind->symbol);
554 continue;
555 }
556
557 struct resolve resolving = {
558 .bind = bind,
559 .keysym = keysym,
560 .xkb_state = dummy_state,
561 .xkb_state_no_shift = dummy_state_no_shift,
562 .xkb_state_numlock = dummy_state_numlock,
563 .xkb_state_numlock_no_shift = dummy_state_numlock_no_shift,
564 };
565 while (!TAILQ_EMPTY(&(bind->keycodes_head))) {
566 struct Binding_Keycode *first = TAILQ_FIRST(&(bind->keycodes_head));
567 TAILQ_REMOVE(&(bind->keycodes_head), first, keycodes);
568 FREE(first);
569 }
570 xkb_keymap_key_for_each(xkb_keymap, add_keycode_if_matches, &resolving);
571 char *keycodes = sstrdup("");
572 int num_keycodes = 0;
573 struct Binding_Keycode *binding_keycode;
574 TAILQ_FOREACH(binding_keycode, &(bind->keycodes_head), keycodes) {
575 char *tmp;
576 sasprintf(&tmp, "%s %d", keycodes, binding_keycode->keycode);
577 free(keycodes);
578 keycodes = tmp;
579 num_keycodes++;
580
581 /* check for duplicate bindings */
582 Binding *check;
584 if (check == bind)
585 continue;
586 if (check->symbol != NULL)
587 continue;
588 if (check->keycode != binding_keycode->keycode ||
589 check->event_state_mask != binding_keycode->modifiers ||
590 check->release != bind->release)
591 continue;
592 has_errors = true;
593 ELOG("Duplicate keybinding in config file:\n keysym = %s, keycode = %d, state_mask = 0x%x\n", bind->symbol, check->keycode, bind->event_state_mask);
594 }
595 }
596 DLOG("state=0x%x, cfg=\"%s\", sym=0x%x → keycodes%s (%d)\n",
597 bind->event_state_mask, bind->symbol, keysym, keycodes, num_keycodes);
598 free(keycodes);
599 }
600
601out:
602 xkb_state_unref(dummy_state);
603 xkb_state_unref(dummy_state_no_shift);
604 xkb_state_unref(dummy_state_numlock);
605 xkb_state_unref(dummy_state_numlock_no_shift);
606
607 if (has_errors) {
609 }
610}
611
612#undef ADD_TRANSLATED_KEY
613
614/*
615 * Switches the key bindings to the given mode, if the mode exists
616 *
617 */
618void switch_mode(const char *new_mode) {
619 struct Mode *mode;
620
621 DLOG("Switching to mode %s\n", new_mode);
622
623 SLIST_FOREACH(mode, &modes, modes) {
624 if (strcmp(mode->name, new_mode) != 0)
625 continue;
626
628 bindings = mode->bindings;
631
632 /* Reset all B_UPON_KEYRELEASE_IGNORE_MODS bindings to avoid possibly
633 * activating one of them. */
634 Binding *bind;
636 if (bind->release == B_UPON_KEYRELEASE_IGNORE_MODS)
637 bind->release = B_UPON_KEYRELEASE;
638 }
639
640 char *event_msg;
641 sasprintf(&event_msg, "{\"change\":\"%s\", \"pango_markup\":%s}",
642 mode->name, (mode->pango_markup ? "true" : "false"));
643
644 ipc_send_event("mode", I3_IPC_EVENT_MODE, event_msg);
645 FREE(event_msg);
646
647 return;
648 }
649
650 ELOG("Mode not found\n");
651}
652
653static int reorder_binding_cmp(const void *a, const void *b) {
654 Binding *first = *((Binding **)a);
655 Binding *second = *((Binding **)b);
656 if (first->event_state_mask < second->event_state_mask) {
657 return 1;
658 } else if (first->event_state_mask == second->event_state_mask) {
659 return 0;
660 } else {
661 return -1;
662 }
663}
664
665static void reorder_bindings_of_mode(struct Mode *mode) {
666 /* Copy the bindings into an array, so that we can use qsort(3). */
667 int n = 0;
668 Binding *current;
669 TAILQ_FOREACH(current, mode->bindings, bindings) {
670 n++;
671 }
672 Binding **tmp = scalloc(n, sizeof(Binding *));
673 n = 0;
674 TAILQ_FOREACH(current, mode->bindings, bindings) {
675 tmp[n++] = current;
676 }
677
678 qsort(tmp, n, sizeof(Binding *), reorder_binding_cmp);
679
680 struct bindings_head *reordered = scalloc(1, sizeof(struct bindings_head));
681 TAILQ_INIT(reordered);
682 for (int i = 0; i < n; i++) {
683 current = tmp[i];
684 TAILQ_REMOVE(mode->bindings, current, bindings);
685 TAILQ_INSERT_TAIL(reordered, current, bindings);
686 }
687 free(tmp);
688 assert(TAILQ_EMPTY(mode->bindings));
689 /* Free the old bindings_head, which is now empty. */
690 free(mode->bindings);
691 mode->bindings = reordered;
692}
693
694/*
695 * Reorders bindings by event_state_mask descendingly so that get_binding()
696 * correctly matches more specific bindings before more generic bindings. Take
697 * the following binding configuration as an example:
698 *
699 * bindsym n nop lower-case n pressed
700 * bindsym Shift+n nop upper-case n pressed
701 *
702 * Without reordering, the first binding’s event_state_mask of 0x0 would match
703 * the actual event_stat_mask of 0x1 and hence trigger instead of the second
704 * keybinding.
705 *
706 */
708 struct Mode *mode;
709 SLIST_FOREACH(mode, &modes, modes) {
710 const bool current_mode = (mode->bindings == bindings);
712 if (current_mode)
713 bindings = mode->bindings;
714 }
715}
716
717/*
718 * Checks for duplicate key bindings (the same keycode or keysym is configured
719 * more than once). If a duplicate binding is found, a message is printed to
720 * stderr and the has_errors variable is set to true, which will start
721 * i3-nagbar.
722 *
723 */
725 Binding *bind, *current;
726 TAILQ_FOREACH(current, bindings, bindings) {
728 /* Abort when we reach the current keybinding, only check the
729 * bindings before */
730 if (bind == current)
731 break;
732
733 /* Check if the input types are different */
734 if (bind->input_type != current->input_type)
735 continue;
736
737 /* Check if one is using keysym while the other is using bindsym.
738 * If so, skip. */
739 if ((bind->symbol == NULL && current->symbol != NULL) ||
740 (bind->symbol != NULL && current->symbol == NULL))
741 continue;
742
743 /* If bind is NULL, current has to be NULL, too (see above).
744 * If the keycodes differ, it can't be a duplicate. */
745 if (bind->symbol != NULL &&
746 strcasecmp(bind->symbol, current->symbol) != 0)
747 continue;
748
749 /* Check if the keycodes or modifiers are different. If so, they
750 * can't be duplicate */
751 if (bind->keycode != current->keycode ||
752 bind->event_state_mask != current->event_state_mask ||
753 bind->release != current->release)
754 continue;
755
756 context->has_errors = true;
757 if (current->keycode != 0) {
758 ELOG("Duplicate keybinding in config file:\n state mask 0x%x with keycode %d, command \"%s\"\n",
759 current->event_state_mask, current->keycode, current->command);
760 } else {
761 ELOG("Duplicate keybinding in config file:\n state mask 0x%x with keysym %s, command \"%s\"\n",
762 current->event_state_mask, current->symbol, current->command);
763 }
764 }
765 }
766}
767
768/*
769 * Creates a dynamically allocated copy of bind.
770 */
772 Binding *ret = smalloc(sizeof(Binding));
773 *ret = *bind;
774 if (bind->symbol != NULL)
775 ret->symbol = sstrdup(bind->symbol);
776 if (bind->command != NULL)
777 ret->command = sstrdup(bind->command);
778 TAILQ_INIT(&(ret->keycodes_head));
779 struct Binding_Keycode *binding_keycode;
780 TAILQ_FOREACH(binding_keycode, &(bind->keycodes_head), keycodes) {
781 struct Binding_Keycode *ret_binding_keycode = smalloc(sizeof(struct Binding_Keycode));
782 *ret_binding_keycode = *binding_keycode;
783 TAILQ_INSERT_TAIL(&(ret->keycodes_head), ret_binding_keycode, keycodes);
784 }
785
786 return ret;
787}
788
789/*
790 * Frees the binding. If bind is null, it simply returns.
791 */
793 if (bind == NULL) {
794 return;
795 }
796
797 while (!TAILQ_EMPTY(&(bind->keycodes_head))) {
798 struct Binding_Keycode *first = TAILQ_FIRST(&(bind->keycodes_head));
799 TAILQ_REMOVE(&(bind->keycodes_head), first, keycodes);
800 FREE(first);
801 }
802
803 FREE(bind->symbol);
804 FREE(bind->command);
805 FREE(bind);
806}
807
808/*
809 * Runs the given binding and handles parse errors. If con is passed, it will
810 * execute the command binding with that container selected by criteria.
811 * Returns a CommandResult for running the binding's command. Free with
812 * command_result_free().
813 *
814 */
816 char *command;
817
818 /* We need to copy the binding and command since “reload” may be part of
819 * the command, and then the memory that bind points to may not contain the
820 * same data anymore. */
821 if (con == NULL)
822 command = sstrdup(bind->command);
823 else
824 sasprintf(&command, "[con_id=\"%p\"] %s", con, bind->command);
825
826 Binding *bind_cp = binding_copy(bind);
827 CommandResult *result = parse_command(command, NULL, NULL);
828 free(command);
829
830 if (result->needs_tree_render)
831 tree_render();
832
833 if (result->parse_error) {
834 char *pageraction;
835 sasprintf(&pageraction, "i3-sensible-pager \"%s\"\n", errorfilename);
836 char *argv[] = {
837 NULL, /* will be replaced by the executable path */
838 "-f",
840 "-t",
841 "error",
842 "-m",
843 "The configured command for this shortcut could not be run successfully.",
844 "-b",
845 "show errors",
846 pageraction,
847 NULL};
849 free(pageraction);
850 }
851
852 ipc_send_binding_event("run", bind_cp);
853 binding_free(bind_cp);
854
855 return result;
856}
857
858static int fill_rmlvo_from_root(struct xkb_rule_names *xkb_names) {
859 xcb_intern_atom_reply_t *atom_reply;
860 size_t content_max_words = 256;
861
862 atom_reply = xcb_intern_atom_reply(
863 conn, xcb_intern_atom(conn, 0, strlen("_XKB_RULES_NAMES"), "_XKB_RULES_NAMES"), NULL);
864 if (atom_reply == NULL)
865 return -1;
866
867 xcb_get_property_cookie_t prop_cookie;
868 xcb_get_property_reply_t *prop_reply;
869 prop_cookie = xcb_get_property_unchecked(conn, false, root, atom_reply->atom,
870 XCB_GET_PROPERTY_TYPE_ANY, 0, content_max_words);
871 prop_reply = xcb_get_property_reply(conn, prop_cookie, NULL);
872 if (prop_reply == NULL) {
873 free(atom_reply);
874 return -1;
875 }
876 if (xcb_get_property_value_length(prop_reply) > 0 && prop_reply->bytes_after > 0) {
877 /* We received an incomplete value. Ask again but with a properly
878 * adjusted size. */
879 content_max_words += ceil(prop_reply->bytes_after / 4.0);
880 /* Repeat the request, with adjusted size */
881 free(prop_reply);
882 prop_cookie = xcb_get_property_unchecked(conn, false, root, atom_reply->atom,
883 XCB_GET_PROPERTY_TYPE_ANY, 0, content_max_words);
884 prop_reply = xcb_get_property_reply(conn, prop_cookie, NULL);
885 if (prop_reply == NULL) {
886 free(atom_reply);
887 return -1;
888 }
889 }
890 if (xcb_get_property_value_length(prop_reply) == 0) {
891 free(atom_reply);
892 free(prop_reply);
893 return -1;
894 }
895
896 const char *walk = (const char *)xcb_get_property_value(prop_reply);
897 int remaining = xcb_get_property_value_length(prop_reply);
898 for (int i = 0; i < 5 && remaining > 0; i++) {
899 const int len = strnlen(walk, remaining);
900 switch (i) {
901 case 0:
902 sasprintf((char **)&(xkb_names->rules), "%.*s", len, walk);
903 break;
904 case 1:
905 sasprintf((char **)&(xkb_names->model), "%.*s", len, walk);
906 break;
907 case 2:
908 sasprintf((char **)&(xkb_names->layout), "%.*s", len, walk);
909 break;
910 case 3:
911 sasprintf((char **)&(xkb_names->variant), "%.*s", len, walk);
912 break;
913 case 4:
914 sasprintf((char **)&(xkb_names->options), "%.*s", len, walk);
915 break;
916 }
917 DLOG("component %d of _XKB_RULES_NAMES is \"%.*s\"\n", i, len, walk);
918 walk += (len + 1);
919 remaining -= (len + 1);
920 }
921
922 free(atom_reply);
923 free(prop_reply);
924 return 0;
925}
926
927/*
928 * Loads the XKB keymap from the X11 server and feeds it to xkbcommon.
929 *
930 */
931bool load_keymap(void) {
932 if (xkb_context == NULL) {
933 if ((xkb_context = xkb_context_new(0)) == NULL) {
934 ELOG("Could not create xkbcommon context\n");
935 return false;
936 }
937 }
938
939 struct xkb_keymap *new_keymap = NULL;
940 int32_t device_id;
941 if (xkb_supported && (device_id = xkb_x11_get_core_keyboard_device_id(conn)) > -1) {
942 if ((new_keymap = xkb_x11_keymap_new_from_device(xkb_context, conn, device_id, 0)) == NULL) {
943 ELOG("xkb_x11_keymap_new_from_device failed\n");
944 return false;
945 }
946 } else {
947 /* Likely there is no XKB support on this server, possibly because it
948 * is a VNC server. */
949 LOG("No XKB / core keyboard device? Assembling keymap from local RMLVO.\n");
950 struct xkb_rule_names names = {
951 .rules = NULL,
952 .model = NULL,
953 .layout = NULL,
954 .variant = NULL,
955 .options = NULL};
956 if (fill_rmlvo_from_root(&names) == -1) {
957 ELOG("Could not get _XKB_RULES_NAMES atom from root window, falling back to defaults.\n");
958 /* Using NULL for the fields of xkb_rule_names. */
959 }
960 new_keymap = xkb_keymap_new_from_names(xkb_context, &names, 0);
961 free((char *)names.rules);
962 free((char *)names.model);
963 free((char *)names.layout);
964 free((char *)names.variant);
965 free((char *)names.options);
966 if (new_keymap == NULL) {
967 ELOG("xkb_keymap_new_from_names failed\n");
968 return false;
969 }
970 }
971 xkb_keymap_unref(xkb_keymap);
972 xkb_keymap = new_keymap;
973
974 return true;
975}
976
977/*
978 * Returns a list of buttons that should be grabbed on a window.
979 * This list will always contain 1–3, all higher buttons will only be returned
980 * if there is a whole-window binding for it on some window in the current
981 * config.
982 * The list is terminated by a 0.
983 */
985 /* Let's make the reasonable assumption that there's no more than 25
986 * buttons. */
987 int num_max = 25;
988
989 int buffer[num_max];
990 int num = 0;
991
992 /* We always return buttons 1 through 3. */
993 buffer[num++] = 1;
994 buffer[num++] = 2;
995 buffer[num++] = 3;
996
997 Binding *bind;
999 if (num + 1 == num_max)
1000 break;
1001
1002 /* We are only interested in whole window mouse bindings. */
1003 if (bind->input_type != B_MOUSE || !bind->whole_window)
1004 continue;
1005
1006 long button;
1007 if (!parse_long(bind->symbol + (sizeof("button") - 1), &button, 10)) {
1008 ELOG("Could not parse button number, skipping this binding. Please report this bug in i3.\n");
1009 continue;
1010 }
1011
1012 /* Avoid duplicates. */
1013 for (int i = 0; i < num; i++) {
1014 if (buffer[i] == button)
1015 continue;
1016 }
1017
1018 buffer[num++] = button;
1019 }
1020 buffer[num++] = 0;
1021
1022 int *buttons = scalloc(num, sizeof(int));
1023 memcpy(buttons, buffer, num * sizeof(int));
1024
1025 return buttons;
1026}
CommandResult * parse_command(const char *input, yajl_gen gen, ipc_client *client)
Parses and executes the given command.
void ipc_send_binding_event(const char *event_type, Binding *bind)
For the binding events, we send the serialized binding struct.
Definition: ipc.c:1662
void ipc_send_event(const char *event, uint32_t message_type, const char *payload)
Sends the specified event to all IPC clients which are currently connected and subscribed to this kin...
Definition: ipc.c:161
void binding_free(Binding *bind)
Frees the binding.
Definition: bindings.c:792
static struct xkb_context * xkb_context
Definition: bindings.c:14
void check_for_duplicate_bindings(struct context *context)
Checks for duplicate key bindings (the same keycode or keysym is configured more than once).
Definition: bindings.c:724
static Binding * binding_copy(Binding *bind)
Definition: bindings.c:771
bool load_keymap(void)
Loads the XKB keymap from the X11 server and feeds it to xkbcommon.
Definition: bindings.c:931
static int reorder_binding_cmp(const void *a, const void *b)
Definition: bindings.c:653
void grab_all_keys(xcb_connection_t *conn)
Grab the bound keys (tell X to send us keypress events for those keycodes)
Definition: bindings.c:147
static void add_keycode_if_matches(struct xkb_keymap *keymap, xkb_keycode_t key, void *data)
Definition: bindings.c:379
const char * DEFAULT_BINDING_MODE
The name of the default mode.
Definition: bindings.c:23
static struct xkb_keymap * xkb_keymap
Definition: bindings.c:15
static Binding * get_binding(i3_event_state_mask_t state_filtered, bool is_release, uint16_t input_code, input_type_t input_type)
Definition: bindings.c:199
Binding * get_binding_from_xcb_event(xcb_generic_event_t *event)
Returns a pointer to the Binding that matches the given xcb event or NULL if no such binding exists.
Definition: bindings.c:302
void regrab_all_buttons(xcb_connection_t *conn)
Release the button grabs on all managed windows and regrab them, reevaluating which buttons need to b...
Definition: bindings.c:177
int * bindings_get_buttons_to_grab(void)
Returns a list of buttons that should be grabbed on a window.
Definition: bindings.c:984
void switch_mode(const char *new_mode)
Switches the key bindings to the given mode, if the mode exists.
Definition: bindings.c:618
static int fill_rmlvo_from_root(struct xkb_rule_names *xkb_names)
Definition: bindings.c:858
Binding * configure_binding(const char *bindtype, const char *modifiers, const char *input_code, const char *release, const char *border, const char *whole_window, const char *exclude_titlebar, const char *command, const char *modename, bool pango_markup)
Adds a binding from config parameters given as strings and returns a pointer to the binding structure...
Definition: bindings.c:57
#define GRAB_KEY(modifier)
static struct Mode * mode_from_name(const char *name, bool pango_markup)
Definition: bindings.c:30
static void grab_keycode_for_binding(xcb_connection_t *conn, Binding *bind, uint32_t keycode)
Definition: bindings.c:125
pid_t command_error_nagbar_pid
Definition: bindings.c:17
CommandResult * run_binding(Binding *bind, Con *con)
Runs the given binding and handles parse errors.
Definition: bindings.c:815
#define ADD_TRANSLATED_KEY(code, mods)
Definition: bindings.c:365
static void reorder_bindings_of_mode(struct Mode *mode)
Definition: bindings.c:665
void reorder_bindings(void)
Reorders bindings by event_state_mask descendingly so that get_binding() correctly matches more speci...
Definition: bindings.c:707
static bool binding_in_current_group(const Binding *bind)
Definition: bindings.c:106
void translate_keysyms(void)
Translates keysymbols to keycodes for all bindings which use keysyms.
Definition: bindings.c:432
void start_config_error_nagbar(const char *configpath, bool has_errors)
Launch nagbar to indicate errors in the configuration file.
void start_nagbar(pid_t *nagbar_pid, char *argv[])
Starts an i3-nagbar instance with the given parameters.
Definition: util.c:373
bool parse_long(const char *str, long *out, int base)
Converts a string into a long using strtol().
Definition: util.c:435
struct all_cons_head all_cons
Definition: tree.c:15
void tree_render(void)
Renders the tree, that is rendering all outputs using render_con() and pushing the changes to X11 usi...
Definition: tree.c:449
static char * current_mode
i3_event_state_mask_t event_state_from_str(const char *str)
A utility function to convert a string containing the group and modifiers to the corresponding bit ma...
Config config
Definition: config.c:17
struct modes_head modes
Definition: config.c:18
char * current_configpath
Definition: config.c:15
void ungrab_all_keys(xcb_connection_t *conn)
Ungrabs all keys, to be called before re-grabbing the keys because of a mapping_notify event or a con...
Definition: config.c:26
char * errorfilename
Definition: log.c:40
int xkb_current_group
Definition: handlers.c:22
bool xkb_supported
Definition: main.c:91
xcb_connection_t * conn
XCB connection and root screen.
Definition: main.c:44
xcb_window_t root
Definition: main.c:57
struct bindings_head * bindings
Definition: main.c:74
unsigned int xcb_numlock_mask
Definition: xcb.c:12
void xcb_grab_buttons(xcb_connection_t *conn, xcb_window_t window, int *buttons)
Grab the specified buttons on a window when managing it.
Definition: xcb.c:309
#define SLIST_FOREACH(var, head, field)
Definition: queue.h:114
#define TAILQ_FOREACH(var, head, field)
Definition: queue.h:347
#define TAILQ_INIT(head)
Definition: queue.h:360
#define SLIST_INSERT_HEAD(head, elm, field)
Definition: queue.h:138
#define TAILQ_INSERT_TAIL(head, elm, field)
Definition: queue.h:376
#define TAILQ_FIRST(head)
Definition: queue.h:336
#define TAILQ_REMOVE(head, elm, field)
Definition: queue.h:402
#define TAILQ_EMPTY(head)
Definition: queue.h:344
#define DLOG(fmt,...)
Definition: libi3.h:104
#define LOG(fmt,...)
Definition: libi3.h:94
char * sstrdup(const char *str)
Safe-wrapper around strdup which exits if malloc returns NULL (meaning that there is no more memory a...
#define ELOG(fmt,...)
Definition: libi3.h:99
void * scalloc(size_t num, size_t size)
Safe-wrapper around calloc which exits if malloc returns NULL (meaning that there is no more memory a...
int sasprintf(char **strp, const char *fmt,...)
Safe-wrapper around asprintf which exits if it returns -1 (meaning that there is no more memory avail...
void * smalloc(size_t size)
Safe-wrapper around malloc which exits if malloc returns NULL (meaning that there is no more memory a...
@ I3_XKB_GROUP_MASK_2
Definition: data.h:117
@ I3_XKB_GROUP_MASK_3
Definition: data.h:118
@ I3_XKB_GROUP_MASK_4
Definition: data.h:119
@ I3_XKB_GROUP_MASK_1
Definition: data.h:116
@ I3_XKB_GROUP_MASK_ANY
Definition: data.h:115
uint32_t i3_event_state_mask_t
The lower 16 bits contain a xcb_key_but_mask_t, the higher 16 bits contain an i3_xkb_group_mask_t.
Definition: data.h:128
input_type_t
Binding input types.
Definition: data.h:106
@ B_KEYBOARD
Definition: data.h:107
@ B_MOUSE
Definition: data.h:108
#define FREE(pointer)
Definition: util.h:47
struct xkb_state * xkb_state_numlock_no_shift
Definition: bindings.c:362
struct xkb_state * xkb_state
Definition: bindings.c:353
struct xkb_state * xkb_state_numlock
Definition: bindings.c:359
Binding * bind
Definition: bindings.c:347
xkb_keysym_t keysym
Definition: bindings.c:350
struct xkb_state * xkb_state_no_shift
Definition: bindings.c:356
A struct that contains useful information about the result of a command as a whole (e....
Used during the config file lexing/parsing to keep the state of the lexer in order to provide useful ...
Definition: configuration.h:34
bool has_errors
Definition: configuration.h:35
The configuration file can contain multiple sets of bindings.
Definition: configuration.h:82
char * name
Definition: configuration.h:83
struct bindings_head * bindings
Definition: configuration.h:85
bool pango_markup
Definition: configuration.h:84
i3Font font
Definition: configuration.h:98
Stores a resolved keycode (from a keysym), including the modifier mask.
Definition: data.h:282
i3_event_state_mask_t modifiers
Definition: data.h:284
xcb_keycode_t keycode
Definition: data.h:283
Holds a keybinding, consisting of a keycode combined with modifiers and the command which is executed...
Definition: data.h:300
enum Binding::@12 release
If true, the binding should be executed upon a KeyRelease event, not a KeyPress (the default).
keycodes_head
Only in use if symbol != NULL.
Definition: data.h:349
bool whole_window
If this is true for a mouse binding, the binding should be executed when the button is pressed over a...
Definition: data.h:326
char * command
Command, like in command mode.
Definition: data.h:352
bool border
If this is true for a mouse binding, the binding should be executed when the button is pressed over t...
Definition: data.h:321
uint32_t keycode
Keycode to bind.
Definition: data.h:333
char * symbol
Symbol the user specified in configfile, if any.
Definition: data.h:343
bool exclude_titlebar
If this is true for a mouse binding, the binding should only be executed if the button press was not ...
Definition: data.h:330
i3_event_state_mask_t event_state_mask
Bitmask which is applied against event->state for KeyPress and KeyRelease events to determine whether...
Definition: data.h:338
input_type_t input_type
Definition: data.h:303
xcb_window_t id
Definition: data.h:429
A 'Con' represents everything from the X11 root window down to a single X11 window.
Definition: data.h:641
struct Window * window
Definition: data.h:709
char * pattern
The pattern/name used to load the font.
Definition: libi3.h:70