i3
workspace.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  * workspace.c: Modifying workspaces, accessing them, moving containers to
8  * workspaces.
9  *
10  */
11 #include "all.h"
12 #include "yajl_utils.h"
13 
14 /*
15  * Stores a copy of the name of the last used workspace for the workspace
16  * back-and-forth switching.
17  *
18  */
20 
21 /* NULL-terminated list of workspace names (in order) extracted from
22  * keybindings. */
23 static char **binding_workspace_names = NULL;
24 
25 /*
26  * Returns the workspace with the given name or NULL if such a workspace does
27  * not exist.
28  *
29  */
30 Con *get_existing_workspace_by_name(const char *name) {
31  Con *output, *workspace = NULL;
32  TAILQ_FOREACH(output, &(croot->nodes_head), nodes) {
33  GREP_FIRST(workspace, output_get_content(output), !strcasecmp(child->name, name));
34  }
35 
36  return workspace;
37 }
38 
39 /*
40  * Returns the workspace with the given number or NULL if such a workspace does
41  * not exist.
42  *
43  */
45  Con *output, *workspace = NULL;
46  TAILQ_FOREACH(output, &(croot->nodes_head), nodes) {
47  GREP_FIRST(workspace, output_get_content(output), child->num == num);
48  }
49 
50  return workspace;
51 }
52 
53 /*
54  * Sets ws->layout to splith/splitv if default_orientation was specified in the
55  * configfile. Otherwise, it uses splith/splitv depending on whether the output
56  * is higher than wide.
57  *
58  */
60  /* If default_orientation is set to NO_ORIENTATION we determine
61  * orientation depending on output resolution. */
63  Con *output = con_get_output(ws);
64  ws->layout = (output->rect.height > output->rect.width) ? L_SPLITV : L_SPLITH;
65  ws->rect = output->rect;
66  DLOG("Auto orientation. Workspace size set to (%d,%d), setting layout to %d.\n",
67  output->rect.width, output->rect.height, ws->layout);
68  } else {
70  }
71 }
72 
73 /*
74  * Returns the first output that is assigned to a workspace specified by the
75  * given name or number or NULL if no such output exists. If there is a
76  * workspace with a matching name and another workspace with a matching number,
77  * the output assigned to the first one is returned.
78  * The order of the 'ws_assignments' queue is respected: if multiple assignments
79  * match the specified workspace, the first one is returned.
80  * If 'name' is NULL it will be ignored.
81  * If 'parsed_num' is -1 it will be ignored.
82  *
83  */
84 static Con *get_assigned_output(const char *name, long parsed_num) {
85  Con *output = NULL;
86  struct Workspace_Assignment *assignment;
88  if (name && strcmp(assignment->name, name) == 0) {
89  DLOG("Found workspace name assignment to output \"%s\"\n", assignment->output);
90  Output *assigned_by_name = get_output_by_name(assignment->output, true);
91  if (assigned_by_name) {
92  /* When the name matches exactly, skip numbered assignments. */
93  return assigned_by_name->con;
94  }
95  } else if (!output && /* Only keep the first numbered assignment. */
96  parsed_num != -1 &&
97  name_is_digits(assignment->name) &&
98  ws_name_to_number(assignment->name) == parsed_num) {
99  DLOG("Found workspace number assignment to output \"%s\"\n", assignment->output);
100  Output *assigned_by_num = get_output_by_name(assignment->output, true);
101  if (assigned_by_num) {
102  output = assigned_by_num->con;
103  }
104  }
105  }
106 
107  return output;
108 }
109 
110 /*
111  * Returns true if the first output assigned to a workspace with the given
112  * workspace assignment is the same as the given output.
113  */
115  Con *assigned = get_assigned_output(assignment->name, -1);
116  return assigned && assigned == output->con;
117 }
118 
119 /*
120  * Returns a pointer to the workspace with the given number (starting at 0),
121  * creating the workspace if necessary (by allocating the necessary amount of
122  * memory and initializing the data structures correctly).
123  *
124  */
125 Con *workspace_get(const char *num, bool *created) {
126  Con *workspace = get_existing_workspace_by_name(num);
127 
128  if (workspace == NULL) {
129  LOG("Creating new workspace \"%s\"\n", num);
130 
131  /* We set workspace->num to the number if this workspace’s name begins
132  * with a positive number. Otherwise it’s a named ws and num will be
133  * -1. */
134  long parsed_num = ws_name_to_number(num);
135 
136  Con *output = get_assigned_output(num, parsed_num);
137  /* if an assignment is not found, we create this workspace on the current output */
138  if (!output) {
140  }
141 
142  Con *content = output_get_content(output);
143  LOG("got output %p with content %p\n", output, content);
144  /* We need to attach this container after setting its type. con_attach
145  * will handle CT_WORKSPACEs differently */
146  workspace = con_new(NULL, NULL);
147  char *name;
148  sasprintf(&name, "[i3 con] workspace %s", num);
149  x_set_name(workspace, name);
150  free(name);
151  workspace->type = CT_WORKSPACE;
152  FREE(workspace->name);
153  workspace->name = sstrdup(num);
155  workspace->num = parsed_num;
156  LOG("num = %d\n", workspace->num);
157 
158  workspace->parent = content;
160 
161  con_attach(workspace, content, false);
162 
163  ipc_send_workspace_event("init", workspace, NULL);
165  if (created != NULL)
166  *created = true;
167  } else if (created != NULL) {
168  *created = false;
169  }
170 
171  return workspace;
172 }
173 
174 /*
175  * Extracts workspace names from keybindings (e.g. “web” from “bindsym $mod+1
176  * workspace web”), so that when an output needs a workspace, i3 can start with
177  * the first configured one. Needs to be called before reorder_bindings() so
178  * that the config-file order is used, not the i3-internal order.
179  *
180  */
182  Binding *bind;
183  int n = 0;
184  if (binding_workspace_names != NULL) {
185  for (int i = 0; binding_workspace_names[i] != NULL; i++) {
186  free(binding_workspace_names[i]);
187  }
189  }
191  DLOG("binding with command %s\n", bind->command);
192  if (strlen(bind->command) < strlen("workspace ") ||
193  strncasecmp(bind->command, "workspace", strlen("workspace")) != 0)
194  continue;
195  DLOG("relevant command = %s\n", bind->command);
196  const char *target = bind->command + strlen("workspace ");
197  while (*target == ' ' || *target == '\t')
198  target++;
199  /* We check if this is the workspace
200  * next/prev/next_on_output/prev_on_output/back_and_forth command.
201  * Beware: The workspace names "next", "prev", "next_on_output",
202  * "prev_on_output", "back_and_forth" and "current" are OK,
203  * so we check before stripping the double quotes */
204  if (strncasecmp(target, "next", strlen("next")) == 0 ||
205  strncasecmp(target, "prev", strlen("prev")) == 0 ||
206  strncasecmp(target, "next_on_output", strlen("next_on_output")) == 0 ||
207  strncasecmp(target, "prev_on_output", strlen("prev_on_output")) == 0 ||
208  strncasecmp(target, "back_and_forth", strlen("back_and_forth")) == 0 ||
209  strncasecmp(target, "current", strlen("current")) == 0)
210  continue;
211  if (strncasecmp(target, "--no-auto-back-and-forth", strlen("--no-auto-back-and-forth")) == 0) {
212  target += strlen("--no-auto-back-and-forth");
213  while (*target == ' ' || *target == '\t')
214  target++;
215  }
216  if (strncasecmp(target, "number", strlen("number")) == 0) {
217  target += strlen("number");
218  while (*target == ' ' || *target == '\t')
219  target++;
220  }
221  char *target_name = parse_string(&target, false);
222  if (target_name == NULL)
223  continue;
224  if (strncasecmp(target_name, "__", strlen("__")) == 0) {
225  LOG("Cannot create workspace \"%s\". Names starting with __ are i3-internal.\n", target);
226  free(target_name);
227  continue;
228  }
229  DLOG("Saving workspace name \"%s\"\n", target_name);
230 
232  binding_workspace_names[n - 1] = target_name;
233  }
235  binding_workspace_names[n - 1] = NULL;
236 }
237 
238 /*
239  * Returns a pointer to a new workspace in the given output. The workspace
240  * is created attached to the tree hierarchy through the given content
241  * container.
242  *
243  */
245  /* add a workspace to this output */
246  char *name;
247  bool exists = true;
248  Con *ws = con_new(NULL, NULL);
249  ws->type = CT_WORKSPACE;
250 
251  /* try the configured workspace bindings first to find a free name */
252  for (int n = 0; binding_workspace_names[n] != NULL; n++) {
253  char *target_name = binding_workspace_names[n];
254  /* Ensure that this workspace is not assigned to a different output —
255  * otherwise we would create it, then move it over to its output, then
256  * find a new workspace, etc… */
257  Con *assigned = get_assigned_output(target_name, -1);
258  if (assigned && assigned != output->con) {
259  continue;
260  }
261 
262  exists = (get_existing_workspace_by_name(target_name) != NULL);
263  if (!exists) {
264  ws->name = sstrdup(target_name);
265  /* Set ->num to the number of the workspace, if the name actually
266  * is a number or starts with a number */
267  ws->num = ws_name_to_number(ws->name);
268  LOG("Used number %d for workspace with name %s\n", ws->num, ws->name);
269 
270  break;
271  }
272  }
273 
274  if (exists) {
275  /* get the next unused workspace number */
276  DLOG("Getting next unused workspace by number\n");
277  int c = 0;
278  while (exists) {
279  c++;
280  Con *assigned = get_assigned_output(NULL, c);
281  exists = (get_existing_workspace_by_num(c) || (assigned && assigned != output->con));
282  DLOG("result for ws %d: exists = %d\n", c, exists);
283  }
284  ws->num = c;
285  sasprintf(&(ws->name), "%d", c);
286  }
287  con_attach(ws, content, false);
288 
289  sasprintf(&name, "[i3 con] workspace %s", ws->name);
290  x_set_name(ws, name);
291  free(name);
292 
294 
297 
298  ipc_send_workspace_event("init", ws, NULL);
299  return ws;
300 }
301 
302 /*
303  * Returns true if the workspace is currently visible. Especially important for
304  * multi-monitor environments, as they can have multiple currenlty active
305  * workspaces.
306  *
307  */
309  Con *output = con_get_output(ws);
310  if (output == NULL)
311  return false;
313  LOG("workspace visible? fs = %p, ws = %p\n", fs, ws);
314  return (fs == ws);
315 }
316 
317 /*
318  * XXX: we need to clean up all this recursive walking code.
319  *
320  */
321 static Con *_get_sticky(Con *con, const char *sticky_group, Con *exclude) {
322  Con *current;
323 
324  TAILQ_FOREACH(current, &(con->nodes_head), nodes) {
325  if (current != exclude &&
326  current->sticky_group != NULL &&
327  current->window != NULL &&
328  strcmp(current->sticky_group, sticky_group) == 0)
329  return current;
330 
331  Con *recurse = _get_sticky(current, sticky_group, exclude);
332  if (recurse != NULL)
333  return recurse;
334  }
335 
336  TAILQ_FOREACH(current, &(con->floating_head), floating_windows) {
337  if (current != exclude &&
338  current->sticky_group != NULL &&
339  current->window != NULL &&
340  strcmp(current->sticky_group, sticky_group) == 0)
341  return current;
342 
343  Con *recurse = _get_sticky(current, sticky_group, exclude);
344  if (recurse != NULL)
345  return recurse;
346  }
347 
348  return NULL;
349 }
350 
351 /*
352  * Reassigns all child windows in sticky containers. Called when the user
353  * changes workspaces.
354  *
355  * XXX: what about sticky containers which contain containers?
356  *
357  */
358 static void workspace_reassign_sticky(Con *con) {
359  Con *current;
360  /* 1: go through all containers */
361 
362  /* handle all children and floating windows of this node */
363  TAILQ_FOREACH(current, &(con->nodes_head), nodes) {
364  if (current->sticky_group == NULL) {
365  workspace_reassign_sticky(current);
366  continue;
367  }
368 
369  LOG("Ah, this one is sticky: %s / %p\n", current->name, current);
370  /* 2: find a window which we can re-assign */
371  Con *output = con_get_output(current);
372  Con *src = _get_sticky(output, current->sticky_group, current);
373 
374  if (src == NULL) {
375  LOG("No window found for this sticky group\n");
376  workspace_reassign_sticky(current);
377  continue;
378  }
379 
380  x_move_win(src, current);
381  current->window = src->window;
382  current->mapped = true;
383  src->window = NULL;
384  src->mapped = false;
385 
386  x_reparent_child(current, src);
387 
388  LOG("re-assigned window from src %p to dest %p\n", src, current);
389  }
390 
391  TAILQ_FOREACH(current, &(con->floating_head), floating_windows)
392  workspace_reassign_sticky(current);
393 }
394 
395 /*
396  * Callback to reset the urgent flag of the given con to false. May be started by
397  * workspace_show to avoid urgency hints being lost by switching to a workspace
398  * focusing the con.
399  *
400  */
401 static void workspace_defer_update_urgent_hint_cb(EV_P_ ev_timer *w, int revents) {
402  Con *con = w->data;
403 
404  ev_timer_stop(main_loop, con->urgency_timer);
405  FREE(con->urgency_timer);
406 
407  if (con->urgent) {
408  DLOG("Resetting urgency flag of con %p by timer\n", con);
409  con_set_urgency(con, false);
412  ipc_send_window_event("urgent", con);
413  tree_render();
414  }
415 }
416 
417 /*
418  * Switches to the given workspace
419  *
420  */
421 void workspace_show(Con *workspace) {
422  Con *current, *old = NULL;
423 
424  /* safe-guard against showing i3-internal workspaces like __i3_scratch */
425  if (con_is_internal(workspace))
426  return;
427 
428  /* disable fullscreen for the other workspaces and get the workspace we are
429  * currently on. */
430  TAILQ_FOREACH(current, &(workspace->parent->nodes_head), nodes) {
431  if (current->fullscreen_mode == CF_OUTPUT)
432  old = current;
433  current->fullscreen_mode = CF_NONE;
434  }
435 
436  /* enable fullscreen for the target workspace. If it happens to be the
437  * same one we are currently on anyways, we can stop here. */
438  workspace->fullscreen_mode = CF_OUTPUT;
439  current = con_get_workspace(focused);
440  if (workspace == current) {
441  DLOG("Not switching, already there.\n");
442  return;
443  }
444 
445  /* Used to correctly update focus when pushing sticky windows. Holds the
446  * previously focused container in the same output as workspace. For
447  * example, if a sticky window is focused and then we switch focus to a
448  * workspace in another output and then switch to a third workspace in the
449  * first output, the sticky window needs to be refocused. */
450  Con *old_focus = old ? con_descend_focused(old) : NULL;
451 
452  /* Remember currently focused workspace for switching back to it later with
453  * the 'workspace back_and_forth' command.
454  * NOTE: We have to duplicate the name as the original will be freed when
455  * the corresponding workspace is cleaned up.
456  * NOTE: Internal cons such as __i3_scratch (when a scratchpad window is
457  * focused) are skipped, see bug #868. */
458  if (current && !con_is_internal(current)) {
461  DLOG("Setting previous_workspace_name = %s\n", previous_workspace_name);
462  }
463 
464  workspace_reassign_sticky(workspace);
465 
466  DLOG("switching to %p / %s\n", workspace, workspace->name);
467  Con *next = con_descend_focused(workspace);
468 
469  /* Memorize current output */
470  Con *old_output = con_get_output(focused);
471 
472  /* Display urgency hint for a while if the newly visible workspace would
473  * focus and thereby immediately destroy it */
474  if (next->urgent && (int)(config.workspace_urgency_timer * 1000) > 0) {
475  /* focus for now… */
476  next->urgent = false;
477  con_focus(next);
478 
479  /* … but immediately reset urgency flags; they will be set to false by
480  * the timer callback in case the container is focused at the time of
481  * its expiration */
482  focused->urgent = true;
483  workspace->urgent = true;
484 
485  if (focused->urgency_timer == NULL) {
486  DLOG("Deferring reset of urgency flag of con %p on newly shown workspace %p\n",
487  focused, workspace);
488  focused->urgency_timer = scalloc(1, sizeof(struct ev_timer));
489  /* use a repeating timer to allow for easy resets */
492  focused->urgency_timer->data = focused;
493  ev_timer_start(main_loop, focused->urgency_timer);
494  } else {
495  DLOG("Resetting urgency timer of con %p on workspace %p\n",
496  focused, workspace);
497  ev_timer_again(main_loop, focused->urgency_timer);
498  }
499  } else
500  con_focus(next);
501 
502  ipc_send_workspace_event("focus", workspace, current);
503 
504  DLOG("old = %p / %s\n", old, (old ? old->name : "(null)"));
505  /* Close old workspace if necessary. This must be done *after* doing
506  * urgency handling, because tree_close_internal() will do a con_focus() on the next
507  * client, which will clear the urgency flag too early. Also, there is no
508  * way for con_focus() to know about when to clear urgency immediately and
509  * when to defer it. */
510  if (old && TAILQ_EMPTY(&(old->nodes_head)) && TAILQ_EMPTY(&(old->floating_head))) {
511  /* check if this workspace is currently visible */
512  if (!workspace_is_visible(old)) {
513  LOG("Closing old workspace (%p / %s), it is empty\n", old, old->name);
514  yajl_gen gen = ipc_marshal_workspace_event("empty", old, NULL);
516 
517  const unsigned char *payload;
518  ylength length;
519  y(get_buf, &payload, &length);
520  ipc_send_event("workspace", I3_IPC_EVENT_WORKSPACE, (const char *)payload);
521 
522  y(free);
523 
524  /* Avoid calling output_push_sticky_windows later with a freed container. */
525  if (old == old_focus) {
526  old_focus = NULL;
527  }
528 
530  }
531  }
532 
533  workspace->fullscreen_mode = CF_OUTPUT;
534  LOG("focused now = %p / %s\n", focused, focused->name);
535 
536  /* Set mouse pointer */
537  Con *new_output = con_get_output(focused);
538  if (old_output != new_output) {
539  x_set_warp_to(&next->rect);
540  }
541 
542  /* Update the EWMH hints */
544 
545  /* Push any sticky windows to the now visible workspace. */
546  output_push_sticky_windows(old_focus);
547 }
548 
549 /*
550  * Looks up the workspace by name and switches to it.
551  *
552  */
553 void workspace_show_by_name(const char *num) {
554  Con *workspace;
555  workspace = workspace_get(num, NULL);
556  workspace_show(workspace);
557 }
558 
559 /*
560  * Focuses the next workspace.
561  *
562  */
564  Con *current = con_get_workspace(focused);
565  Con *next = NULL, *first = NULL, *first_opposite = NULL;
566  Con *output;
567 
568  if (current->num == -1) {
569  /* If currently a named workspace, find next named workspace. */
570  if ((next = TAILQ_NEXT(current, nodes)) != NULL)
571  return next;
572  bool found_current = false;
573  TAILQ_FOREACH(output, &(croot->nodes_head), nodes) {
574  /* Skip outputs starting with __, they are internal. */
575  if (con_is_internal(output))
576  continue;
578  if (child->type != CT_WORKSPACE)
579  continue;
580  if (!first)
581  first = child;
582  if (!first_opposite || (child->num != -1 && child->num < first_opposite->num))
583  first_opposite = child;
584  if (child == current) {
585  found_current = true;
586  } else if (child->num == -1 && found_current) {
587  next = child;
588  return next;
589  }
590  }
591  }
592  } else {
593  /* If currently a numbered workspace, find next numbered workspace. */
594  TAILQ_FOREACH(output, &(croot->nodes_head), nodes) {
595  /* Skip outputs starting with __, they are internal. */
596  if (con_is_internal(output))
597  continue;
599  if (child->type != CT_WORKSPACE)
600  continue;
601  if (!first || (child->num != -1 && child->num < first->num))
602  first = child;
603  if (!first_opposite && child->num == -1)
604  first_opposite = child;
605  if (child->num == -1)
606  break;
607  /* Need to check child against current and next because we are
608  * traversing multiple lists and thus are not guaranteed the
609  * relative order between the list of workspaces. */
610  if (current->num < child->num && (!next || child->num < next->num))
611  next = child;
612  }
613  }
614  }
615 
616  if (!next)
617  next = first_opposite ? first_opposite : first;
618 
619  return next;
620 }
621 
622 /*
623  * Focuses the previous workspace.
624  *
625  */
627  Con *current = con_get_workspace(focused);
628  Con *prev = NULL, *first_opposite = NULL, *last = NULL;
629  Con *output;
630 
631  if (current->num == -1) {
632  /* If named workspace, find previous named workspace. */
633  prev = TAILQ_PREV(current, nodes_head, nodes);
634  if (prev && prev->num != -1)
635  prev = NULL;
636  if (!prev) {
637  bool found_current = false;
638  TAILQ_FOREACH_REVERSE(output, &(croot->nodes_head), nodes_head, nodes) {
639  /* Skip outputs starting with __, they are internal. */
640  if (con_is_internal(output))
641  continue;
643  if (child->type != CT_WORKSPACE)
644  continue;
645  if (!last)
646  last = child;
647  if (!first_opposite || (child->num != -1 && child->num > first_opposite->num))
648  first_opposite = child;
649  if (child == current) {
650  found_current = true;
651  } else if (child->num == -1 && found_current) {
652  prev = child;
653  return prev;
654  }
655  }
656  }
657  }
658  } else {
659  /* If numbered workspace, find previous numbered workspace. */
660  TAILQ_FOREACH_REVERSE(output, &(croot->nodes_head), nodes_head, nodes) {
661  /* Skip outputs starting with __, they are internal. */
662  if (con_is_internal(output))
663  continue;
665  if (child->type != CT_WORKSPACE)
666  continue;
667  if (!last || (child->num != -1 && last->num < child->num))
668  last = child;
669  if (!first_opposite && child->num == -1)
670  first_opposite = child;
671  if (child->num == -1)
672  continue;
673  /* Need to check child against current and previous because we
674  * are traversing multiple lists and thus are not guaranteed
675  * the relative order between the list of workspaces. */
676  if (current->num > child->num && (!prev || child->num > prev->num))
677  prev = child;
678  }
679  }
680  }
681 
682  if (!prev)
683  prev = first_opposite ? first_opposite : last;
684 
685  return prev;
686 }
687 
688 /*
689  * Focuses the next workspace on the same output.
690  *
691  */
693  Con *current = con_get_workspace(focused);
694  Con *next = NULL;
696 
697  if (current->num == -1) {
698  /* If currently a named workspace, find next named workspace. */
699  next = TAILQ_NEXT(current, nodes);
700  } else {
701  /* If currently a numbered workspace, find next numbered workspace. */
703  if (child->type != CT_WORKSPACE)
704  continue;
705  if (child->num == -1)
706  break;
707  /* Need to check child against current and next because we are
708  * traversing multiple lists and thus are not guaranteed the
709  * relative order between the list of workspaces. */
710  if (current->num < child->num && (!next || child->num < next->num))
711  next = child;
712  }
713  }
714 
715  /* Find next named workspace. */
716  if (!next) {
717  bool found_current = false;
719  if (child->type != CT_WORKSPACE)
720  continue;
721  if (child == current) {
722  found_current = true;
723  } else if (child->num == -1 && (current->num != -1 || found_current)) {
724  next = child;
725  goto workspace_next_on_output_end;
726  }
727  }
728  }
729 
730  /* Find first workspace. */
731  if (!next) {
733  if (child->type != CT_WORKSPACE)
734  continue;
735  if (!next || (child->num != -1 && child->num < next->num))
736  next = child;
737  }
738  }
739 workspace_next_on_output_end:
740  return next;
741 }
742 
743 /*
744  * Focuses the previous workspace on same output.
745  *
746  */
748  Con *current = con_get_workspace(focused);
749  Con *prev = NULL;
751  DLOG("output = %s\n", output->name);
752 
753  if (current->num == -1) {
754  /* If named workspace, find previous named workspace. */
755  prev = TAILQ_PREV(current, nodes_head, nodes);
756  if (prev && prev->num != -1)
757  prev = NULL;
758  } else {
759  /* If numbered workspace, find previous numbered workspace. */
761  if (child->type != CT_WORKSPACE || child->num == -1)
762  continue;
763  /* Need to check child against current and previous because we
764  * are traversing multiple lists and thus are not guaranteed
765  * the relative order between the list of workspaces. */
766  if (current->num > child->num && (!prev || child->num > prev->num))
767  prev = child;
768  }
769  }
770 
771  /* Find previous named workspace. */
772  if (!prev) {
773  bool found_current = false;
775  if (child->type != CT_WORKSPACE)
776  continue;
777  if (child == current) {
778  found_current = true;
779  } else if (child->num == -1 && (current->num != -1 || found_current)) {
780  prev = child;
781  goto workspace_prev_on_output_end;
782  }
783  }
784  }
785 
786  /* Find last workspace. */
787  if (!prev) {
789  if (child->type != CT_WORKSPACE)
790  continue;
791  if (!prev || child->num > prev->num)
792  prev = child;
793  }
794  }
795 
796 workspace_prev_on_output_end:
797  return prev;
798 }
799 
800 /*
801  * Focuses the previously focused workspace.
802  *
803  */
806  DLOG("No previous workspace name set. Not switching.\n");
807  return;
808  }
809 
811 }
812 
813 /*
814  * Returns the previously focused workspace con, or NULL if unavailable.
815  *
816  */
819  DLOG("No previous workspace name set.\n");
820  return NULL;
821  }
822 
823  Con *workspace;
824  workspace = workspace_get(previous_workspace_name, NULL);
825 
826  return workspace;
827 }
828 
829 static bool get_urgency_flag(Con *con) {
830  Con *child;
831  TAILQ_FOREACH(child, &(con->nodes_head), nodes)
832  if (child->urgent || get_urgency_flag(child))
833  return true;
834 
835  TAILQ_FOREACH(child, &(con->floating_head), floating_windows)
836  if (child->urgent || get_urgency_flag(child))
837  return true;
838 
839  return false;
840 }
841 
842 /*
843  * Goes through all clients on the given workspace and updates the workspace’s
844  * urgent flag accordingly.
845  *
846  */
848  bool old_flag = ws->urgent;
849  ws->urgent = get_urgency_flag(ws);
850  DLOG("Workspace urgency flag changed from %d to %d\n", old_flag, ws->urgent);
851 
852  if (old_flag != ws->urgent)
853  ipc_send_workspace_event("urgent", ws, NULL);
854 }
855 
856 /*
857  * 'Forces' workspace orientation by moving all cons into a new split-con with
858  * the same layout as the workspace and then changing the workspace layout.
859  *
860  */
861 void ws_force_orientation(Con *ws, orientation_t orientation) {
862  /* 1: create a new split container */
863  Con *split = con_new(NULL, NULL);
864  split->parent = ws;
865 
866  /* 2: copy layout from workspace */
867  split->layout = ws->layout;
868 
869  /* 3: move the existing cons of this workspace below the new con */
870  Con **focus_order = get_focus_order(ws);
871 
872  DLOG("Moving cons\n");
873  while (!TAILQ_EMPTY(&(ws->nodes_head))) {
874  Con *child = TAILQ_FIRST(&(ws->nodes_head));
875  con_detach(child);
876  con_attach(child, split, true);
877  }
878 
879  set_focus_order(split, focus_order);
880  free(focus_order);
881 
882  /* 4: switch workspace layout */
883  ws->layout = (orientation == HORIZ) ? L_SPLITH : L_SPLITV;
884  DLOG("split->layout = %d, ws->layout = %d\n", split->layout, ws->layout);
885 
886  /* 5: attach the new split container to the workspace */
887  DLOG("Attaching new split (%p) to ws (%p)\n", split, ws);
888  con_attach(split, ws, false);
889 
890  /* 6: fix the percentages */
891  con_fix_percent(ws);
892 }
893 
894 /*
895  * Called when a new con (with a window, not an empty or split con) should be
896  * attached to the workspace (for example when managing a new window or when
897  * moving an existing window to the workspace level).
898  *
899  * Depending on the workspace_layout setting, this function either returns the
900  * workspace itself (default layout) or creates a new stacked/tabbed con and
901  * returns that.
902  *
903  */
905  DLOG("Attaching a window to workspace %p / %s\n", ws, ws->name);
906 
907  if (ws->workspace_layout == L_DEFAULT) {
908  DLOG("Default layout, just attaching it to the workspace itself.\n");
909  return ws;
910  }
911 
912  DLOG("Non-default layout, creating a new split container\n");
913  /* 1: create a new split container */
914  Con *new = con_new(NULL, NULL);
915  new->parent = ws;
916 
917  /* 2: set the requested layout on the split con */
918  new->layout = ws->workspace_layout;
919 
920  /* 4: attach the new split container to the workspace */
921  DLOG("Attaching new split %p to workspace %p\n", new, ws);
922  con_attach(new, ws, false);
923 
924  /* 5: fix the percentages */
925  con_fix_percent(ws);
926 
927  return new;
928 }
929 
930 /*
931  * Creates a new container and re-parents all of children from the given
932  * workspace into it.
933  *
934  * The container inherits the layout from the workspace.
935  */
937  if (TAILQ_EMPTY(&(ws->nodes_head))) {
938  ELOG("Workspace %p / %s has no children to encapsulate\n", ws, ws->name);
939  return NULL;
940  }
941 
942  Con *new = con_new(NULL, NULL);
943  new->parent = ws;
944  new->layout = ws->layout;
945 
946  Con **focus_order = get_focus_order(ws);
947 
948  DLOG("Moving children of workspace %p / %s into container %p\n",
949  ws, ws->name, new);
950  Con *child;
951  while (!TAILQ_EMPTY(&(ws->nodes_head))) {
952  child = TAILQ_FIRST(&(ws->nodes_head));
953  con_detach(child);
954  con_attach(child, new, true);
955  }
956 
957  set_focus_order(new, focus_order);
958  free(focus_order);
959 
960  con_attach(new, ws, true);
961 
962  return new;
963 }
964 
965 /*
966  * Move the given workspace to the specified output.
967  */
969  DLOG("Moving workspace %p / %s to output %p / \"%s\".\n", ws, ws->name, output, output_primary_name(output));
970 
971  Output *current_output = get_output_for_con(ws);
972  Con *content = output_get_content(output->con);
973  DLOG("got output %p with content %p\n", output, content);
974 
975  if (ws->parent == content) {
976  DLOG("Nothing to do, workspace already there\n");
977  return;
978  }
979 
980  Con *previously_visible_ws = TAILQ_FIRST(&(content->focus_head));
981  if (previously_visible_ws) {
982  DLOG("Previously visible workspace = %p / %s\n", previously_visible_ws, previously_visible_ws->name);
983  } else {
984  DLOG("No previously visible workspace on output.\n");
985  }
986 
987  bool workspace_was_visible = workspace_is_visible(ws);
988  if (con_num_children(ws->parent) == 1) {
989  DLOG("Creating a new workspace to replace \"%s\" (last on its output).\n", ws->name);
990 
991  /* check if we can find a workspace assigned to this output */
992  bool used_assignment = false;
993  struct Workspace_Assignment *assignment;
995  bool attached;
996  int num;
997  if (!output_triggers_assignment(current_output, assignment)) {
998  continue;
999  }
1000  /* check if this workspace's name or num is already attached to the tree */
1001  num = ws_name_to_number(assignment->name);
1002  attached = ((num == -1) ? get_existing_workspace_by_name(assignment->name) : get_existing_workspace_by_num(num)) != NULL;
1003  if (attached) {
1004  continue;
1005  }
1006 
1007  /* so create the workspace referenced to by this assignment */
1008  DLOG("Creating workspace from assignment %s.\n", assignment->name);
1009  workspace_get(assignment->name, NULL);
1010  used_assignment = true;
1011  break;
1012  }
1013 
1014  /* if we couldn't create the workspace using an assignment, create it on
1015  * the output. Workspace init IPC events are sent either by
1016  * workspace_get or create_workspace_on_output. */
1017  if (!used_assignment) {
1018  create_workspace_on_output(current_output, ws->parent);
1019  }
1020  }
1021  DLOG("Detaching\n");
1022 
1023  /* detach from the old output and attach to the new output */
1024  Con *old_content = ws->parent;
1025  con_detach(ws);
1026  if (workspace_was_visible) {
1027  /* The workspace which we just detached was visible, so focus the next
1028  * one in the focus-stack. */
1029  Con *focus_ws = TAILQ_FIRST(&(old_content->focus_head));
1030  DLOG("workspace was visible, focusing %p / %s now\n", focus_ws, focus_ws->name);
1031  workspace_show(focus_ws);
1032  }
1033  con_attach(ws, content, false);
1034 
1035  /* fix the coordinates of the floating containers */
1036  Con *floating_con;
1037  TAILQ_FOREACH(floating_con, &(ws->floating_head), floating_windows) {
1038  floating_fix_coordinates(floating_con, &(old_content->rect), &(content->rect));
1039  }
1040 
1041  ipc_send_workspace_event("move", ws, NULL);
1042  if (workspace_was_visible) {
1043  /* Focus the moved workspace on the destination output. */
1044  workspace_show(ws);
1045  }
1046 
1048 
1049  if (!previously_visible_ws) {
1050  return;
1051  }
1052 
1053  /* NB: We cannot simply work with previously_visible_ws since it might have
1054  * been cleaned up by workspace_show() already, depending on the focus
1055  * order/number of other workspaces on the output. Instead, we loop through
1056  * the available workspaces and only work with previously_visible_ws if we
1057  * still find it. */
1058  TAILQ_FOREACH(ws, &(content->nodes_head), nodes) {
1059  if (ws != previously_visible_ws) {
1060  continue;
1061  }
1062 
1063  /* Call the on_remove_child callback of the workspace which previously
1064  * was visible on the destination output. Since it is no longer visible,
1065  * it might need to get cleaned up. */
1066  CALL(previously_visible_ws, on_remove_child);
1067  break;
1068  }
1069 }
uint32_t height
Definition: data.h:179
static Con * get_assigned_output(const char *name, long parsed_num)
Definition: workspace.c:84
void con_fix_percent(Con *con)
Updates the percent attribute of the children of the given container.
Definition: con.c:985
void set_focus_order(Con *con, Con **focus_order)
Clear the container's focus stack and re-add it using the provided container array.
Definition: con.c:898
void con_detach(Con *con)
Detaches the given container from its current parent.
Definition: con.c:206
Con * workspace_get(const char *num, bool *created)
Returns a pointer to the workspace with the given number (starting at 0), creating the workspace if n...
Definition: workspace.c:125
Definition: data.h:100
void ewmh_update_current_desktop(void)
Updates _NET_CURRENT_DESKTOP with the current desktop number.
Definition: ewmh.c:26
char * parse_string(const char **walk, bool as_word)
Parses a string (or word, if as_word is true).
void workspace_show_by_name(const char *num)
Looks up the workspace by name and switches to it.
Definition: workspace.c:553
#define TAILQ_FOREACH(var, head, field)
Definition: queue.h:347
static Con * _get_sticky(Con *con, const char *sticky_group, Con *exclude)
Definition: workspace.c:321
#define LOG(fmt,...)
Definition: libi3.h:94
focus_head
Definition: data.h:725
void x_set_warp_to(Rect *rect)
Set warp_to coordinates.
Definition: x.c:1445
layout_t default_layout
Definition: data.h:99
void ipc_send_window_event(const char *property, Con *con)
For the window events we send, along the usual "change" field, also the window container,...
Definition: ipc.c:1614
Con * get_existing_workspace_by_name(const char *name)
Returns the workspace with the given name or NULL if such a workspace does not exist.
Definition: workspace.c:30
static void workspace_defer_update_urgent_hint_cb(EV_P_ ev_timer *w, int revents)
Definition: workspace.c:401
Con * con
Pointer to the Con which represents this output.
Definition: data.h:414
struct Window * window
Definition: data.h:709
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
static void workspace_reassign_sticky(Con *con)
Definition: workspace.c:358
bool urgent
Definition: data.h:646
Definition: data.h:94
#define y(x,...)
Definition: commands.c:21
uint32_t width
Definition: data.h:178
struct Con * croot
Definition: tree.c:12
void extract_workspace_names_from_bindings(void)
Extracts workspace names from keybindings (e.g.
Definition: workspace.c:181
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...
struct bindings_head * bindings
Definition: main.c:74
void con_focus(Con *con)
Sets input focus to the given container.
Definition: con.c:222
void x_set_name(Con *con, const char *name)
Sets the WM_NAME property (so, no UTF8, but used only for debugging anyways) of the given name.
Definition: x.c:1399
void workspace_move_to_output(Con *ws, Output *output)
Move the given workspace to the specified output.
Definition: workspace.c:968
Con ** get_focus_order(Con *con)
Iterate over the container's focus stack and return an array with the containers inside it,...
Definition: con.c:878
A 'Con' represents everything from the X11 root window down to a single X11 window.
Definition: data.h:641
Definition: data.h:626
Con * output_get_content(Con *output)
Returns the output container below the given output container.
Definition: output.c:16
#define ELOG(fmt,...)
Definition: libi3.h:99
nodes_head
Definition: data.h:722
int default_orientation
Default orientation for new containers.
#define CALL(obj, member,...)
Definition: util.h:53
struct Rect rect
Definition: data.h:677
#define GREP_FIRST(dest, head, condition)
Definition: util.h:38
Con * get_existing_workspace_by_num(int num)
Returns the workspace with the given number or NULL if such a workspace does not exist.
Definition: workspace.c:44
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
long ws_name_to_number(const char *name)
Parses the workspace name as a number.
Definition: util.c:106
char * sstrdup(const char *str)
Safe-wrapper around strdup which exits if malloc returns NULL (meaning that there is no more memory a...
#define NODES_FOREACH_REVERSE(head)
Definition: util.h:33
Con * workspace_attach_to(Con *ws)
Called when a new con (with a window, not an empty or split con) should be attached to the workspace ...
Definition: workspace.c:904
void x_reparent_child(Con *con, Con *old)
Reparents the child window of the given container (necessary for sticky containers).
Definition: x.c:221
enum Con::@20 type
char * previous_workspace_name
Stores a copy of the name of the last used workspace for the workspace back-and-forth switching.
Definition: workspace.c:19
struct ws_assignments_head ws_assignments
Definition: main.c:87
Con * create_workspace_on_output(Output *output, Con *content)
Returns a pointer to a new workspace in the given output.
Definition: workspace.c:244
char * name
Definition: data.h:687
layout_t layout
Definition: data.h:751
void floating_fix_coordinates(Con *con, Rect *old_rect, Rect *new_rect)
Fixes the coordinates of the floating window whenever the window gets reassigned to a different outpu...
Definition: floating.c:801
Con * con_get_workspace(Con *con)
Gets the workspace container this node is on.
Definition: con.c:453
Con * con_get_output(Con *con)
Gets the output container (first container with CT_OUTPUT in hierarchy) this node is on.
Definition: con.c:439
Con * workspace_prev_on_output(void)
Returns the previous workspace on the same output.
Definition: workspace.c:747
int con_num_children(Con *con)
Returns the number of children of this container.
Definition: con.c:922
#define TAILQ_EMPTY(head)
Definition: queue.h:344
Con * workspace_next_on_output(void)
Returns the next workspace on the same output.
Definition: workspace.c:692
struct Con * focused
Definition: tree.c:13
char * command
Command, like in command mode.
Definition: data.h:352
#define NODES_FOREACH(head)
Definition: util.h:29
void con_set_urgency(Con *con, bool urgent)
Set urgency flag to the container, all the parent containers and the workspace.
Definition: con.c:2158
void output_push_sticky_windows(Con *old_focus)
Iterates over all outputs and pushes sticky windows to the currently visible workspace on that output...
Definition: output.c:75
size_t ylength
Definition: yajl_utils.h:24
#define FREE(pointer)
Definition: util.h:47
layout_t workspace_layout
Definition: data.h:751
bool con_is_internal(Con *con)
Returns true if the container is internal, such as __i3_scratch.
Definition: con.c:567
#define TAILQ_NEXT(elm, field)
Definition: queue.h:338
#define TAILQ_FOREACH_REVERSE(var, head, headname, field)
Definition: queue.h:352
#define TAILQ_PREV(elm, headname, field)
Definition: queue.h:342
Con * workspace_encapsulate(Con *ws)
Creates a new container and re-parents all of children from the given workspace into it.
Definition: workspace.c:936
floating_head
Definition: data.h:719
fullscreen_mode_t fullscreen_mode
Definition: data.h:730
static char ** binding_workspace_names
Definition: workspace.c:23
bool mapped
Definition: data.h:642
char * output_primary_name(Output *output)
Retrieves the primary name of an output.
Definition: output.c:51
yajl_gen ipc_marshal_workspace_event(const char *change, Con *current, Con *old)
Generates a json workspace event.
Definition: ipc.c:1565
bool tree_close_internal(Con *con, kill_window_t kill_window, bool dont_kill_parent)
Closes the given container including all children.
Definition: tree.c:191
void workspace_show(Con *workspace)
Switches to the given workspace.
Definition: workspace.c:421
Con * con_descend_focused(Con *con)
Returns the focused con inside this client, descending the tree as far as possible.
Definition: con.c:1516
Stores which workspace (by name or number) goes to which output.
Definition: data.h:225
Output * get_output_by_name(const char *name, const bool require_active)
Returns the output with the given name or NULL.
Definition: randr.c:47
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...
Con * con_new(Con *parent, i3Window *window)
A wrapper for con_new_skeleton, to retain the old con_new behaviour.
Definition: con.c:69
An Output is a physical output on your graphics driver.
Definition: data.h:393
void ewmh_update_desktop_properties(void)
Updates all the EWMH desktop properties.
Definition: ewmh.c:116
Holds a keybinding, consisting of a keycode combined with modifiers and the command which is executed...
Definition: data.h:300
Con * con_get_fullscreen_con(Con *con, fullscreen_mode_t fullscreen_mode)
Returns the first fullscreen node below this node.
Definition: con.c:502
Output * get_output_for_con(Con *con)
Returns the output for the given con.
Definition: output.c:55
Definition: data.h:60
void * srealloc(void *ptr, size_t size)
Safe-wrapper around realloc which exits if realloc returns NULL (meaning that there is no more memory...
Con * workspace_prev(void)
Returns the previous workspace.
Definition: workspace.c:626
bool workspace_is_visible(Con *ws)
Returns true if the workspace is currently visible.
Definition: workspace.c:308
orientation_t
Definition: data.h:59
#define DLOG(fmt,...)
Definition: libi3.h:104
bool output_triggers_assignment(Output *output, struct Workspace_Assignment *assignment)
Returns true if the first output assigned to a workspace with the given workspace assignment is the s...
Definition: workspace.c:114
Con * workspace_next(void)
Returns the next workspace.
Definition: workspace.c:563
void con_attach(Con *con, Con *parent, bool ignore_focus)
Attaches the given container to the given parent.
Definition: con.c:198
float workspace_urgency_timer
By default, urgency is cleared immediately when switching to another workspace leads to focusing the ...
struct Con * parent
Definition: data.h:673
static void _workspace_apply_default_orientation(Con *ws)
Definition: workspace.c:59
Config config
Definition: config.c:17
void workspace_update_urgent_flag(Con *ws)
Goes through all clients on the given workspace and updates the workspace’s urgent flag accordingly.
Definition: workspace.c:847
#define TAILQ_FIRST(head)
Definition: queue.h:336
static bool get_urgency_flag(Con *con)
Definition: workspace.c:829
void ws_force_orientation(Con *ws, orientation_t orientation)
'Forces' workspace orientation by moving all cons into a new split-con with the same orientation as t...
Definition: workspace.c:861
int num
the workspace number, if this Con is of type CT_WORKSPACE and the workspace is not a named workspace ...
Definition: data.h:671
void ipc_send_workspace_event(const char *change, Con *current, Con *old)
For the workspace events we send, along with the usual "change" field, also the workspace container i...
Definition: ipc.c:1598
Con * workspace_back_and_forth_get(void)
Returns the previously focused workspace con, or NULL if unavailable.
Definition: workspace.c:817
struct ev_timer * urgency_timer
Definition: data.h:712
struct ev_loop * main_loop
Definition: main.c:66
void workspace_back_and_forth(void)
Focuses the previously focused workspace.
Definition: workspace.c:804
void con_update_parents_urgency(Con *con)
Make all parent containers urgent if con is urgent or clear the urgent flag of all parent containers ...
Definition: con.c:2130
void x_move_win(Con *src, Con *dest)
Moves a child window from Container src to Container dest.
Definition: x.c:236
char * sticky_group
Definition: data.h:695