i3
manage.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 * manage.c: Initially managing new windows (or existing ones on restart).
8 *
9 */
10#include "all.h"
11
12#include "yajl_utils.h"
13
14#include <yajl/yajl_gen.h>
15
16/*
17 * Match frame and window depth. This is needed because X will refuse to reparent a
18 * window whose background is ParentRelative under a window with a different depth.
19 *
20 */
21static xcb_window_t _match_depth(i3Window *win, Con *con) {
22 xcb_window_t old_frame = XCB_NONE;
23 if (con->depth != win->depth) {
24 old_frame = con->frame.id;
25 con->depth = win->depth;
26 x_con_reframe(con);
27 }
28 return old_frame;
29}
30
31/*
32 * Remove all match criteria, the first swallowed window wins.
33 *
34 */
35static void _remove_matches(Con *con) {
36 while (!TAILQ_EMPTY(&(con->swallow_head))) {
37 Match *first = TAILQ_FIRST(&(con->swallow_head));
38 TAILQ_REMOVE(&(con->swallow_head), first, matches);
39 match_free(first);
40 free(first);
41 }
42}
43
44/*
45 * Go through all existing windows (if the window manager is restarted) and manage them
46 *
47 */
48void manage_existing_windows(xcb_window_t root) {
49 xcb_query_tree_reply_t *reply;
50 int i, len;
51 xcb_window_t *children;
52 xcb_get_window_attributes_cookie_t *cookies;
53
54 /* Get the tree of windows whose parent is the root window (= all) */
55 if ((reply = xcb_query_tree_reply(conn, xcb_query_tree(conn, root), 0)) == NULL)
56 return;
57
58 len = xcb_query_tree_children_length(reply);
59 cookies = smalloc(len * sizeof(*cookies));
60
61 /* Request the window attributes for every window */
62 children = xcb_query_tree_children(reply);
63 for (i = 0; i < len; ++i)
64 cookies[i] = xcb_get_window_attributes(conn, children[i]);
65
66 /* Call manage_window with the attributes for every window */
67 for (i = 0; i < len; ++i)
68 manage_window(children[i], cookies[i], true);
69
70 free(reply);
71 free(cookies);
72}
73
74/*
75 * Restores the geometry of each window by reparenting it to the root window
76 * at the position of its frame.
77 *
78 * This is to be called *only* before exiting/restarting i3 because of evil
79 * side-effects which are to be expected when continuing to run i3.
80 *
81 */
82void restore_geometry(void) {
83 DLOG("Restoring geometry\n");
84
85 Con *con;
87 if (con->window) {
88 DLOG("Re-adding X11 border of %d px\n", con->border_width);
89 con->window_rect.width += (2 * con->border_width);
90 con->window_rect.height += (2 * con->border_width);
92 DLOG("placing window %08x at %d %d\n", con->window->id, con->rect.x, con->rect.y);
93 xcb_reparent_window(conn, con->window->id, root,
94 con->rect.x, con->rect.y);
95 }
96
97 /* Strictly speaking, this line doesn’t really belong here, but since we
98 * are syncing, let’s un-register as a window manager first */
99 xcb_change_window_attributes(conn, root, XCB_CW_EVENT_MASK, (uint32_t[]){XCB_EVENT_MASK_SUBSTRUCTURE_REDIRECT});
100
101 /* Make sure our changes reach the X server, we restart/exit now */
102 xcb_aux_sync(conn);
103}
104
105/*
106 * Do some sanity checks and then reparent the window.
107 *
108 */
109void manage_window(xcb_window_t window, xcb_get_window_attributes_cookie_t cookie,
110 bool needs_to_be_mapped) {
111 DLOG("window 0x%08x\n", window);
112
113 xcb_drawable_t d = {window};
114 xcb_get_geometry_cookie_t geomc;
115 xcb_get_geometry_reply_t *geom;
116 xcb_get_window_attributes_reply_t *attr = NULL;
117
118 xcb_get_property_cookie_t wm_type_cookie, strut_cookie, state_cookie,
119 utf8_title_cookie, title_cookie, qubes_vmname_cookie, qubes_label_cookie,
120 class_cookie, leader_cookie, transient_cookie,
121 role_cookie, startup_id_cookie, wm_hints_cookie,
122 wm_normal_hints_cookie, motif_wm_hints_cookie, wm_user_time_cookie, wm_desktop_cookie;
123
124 geomc = xcb_get_geometry(conn, d);
125
126 /* Check if the window is mapped (it could be not mapped when intializing and
127 calling manage_window() for every window) */
128 if ((attr = xcb_get_window_attributes_reply(conn, cookie, 0)) == NULL) {
129 DLOG("Could not get attributes\n");
130 xcb_discard_reply(conn, geomc.sequence);
131 return;
132 }
133
134 if (needs_to_be_mapped && attr->map_state != XCB_MAP_STATE_VIEWABLE) {
135 xcb_discard_reply(conn, geomc.sequence);
136 goto out;
137 }
138
139 /* Don’t manage clients with the override_redirect flag */
140 if (attr->override_redirect) {
141 xcb_discard_reply(conn, geomc.sequence);
142 goto out;
143 }
144
145 /* Check if the window is already managed */
146 if (con_by_window_id(window) != NULL) {
147 DLOG("already managed (by con %p)\n", con_by_window_id(window));
148 xcb_discard_reply(conn, geomc.sequence);
149 goto out;
150 }
151
152 /* Get the initial geometry (position, size, …) */
153 if ((geom = xcb_get_geometry_reply(conn, geomc, 0)) == NULL) {
154 DLOG("could not get geometry\n");
155 goto out;
156 }
157
158 uint32_t values[1];
159
160 /* Set a temporary event mask for the new window, consisting only of
161 * PropertyChange and StructureNotify. We need to be notified of
162 * PropertyChanges because the client can change its properties *after* we
163 * requested them but *before* we actually reparented it and have set our
164 * final event mask.
165 * We need StructureNotify because the client may unmap the window before
166 * we get to re-parent it.
167 * If this request fails, we assume the client has already unmapped the
168 * window between the MapRequest and our event mask change. */
169 values[0] = XCB_EVENT_MASK_PROPERTY_CHANGE |
170 XCB_EVENT_MASK_STRUCTURE_NOTIFY;
171 xcb_void_cookie_t event_mask_cookie =
172 xcb_change_window_attributes_checked(conn, window, XCB_CW_EVENT_MASK, values);
173 if (xcb_request_check(conn, event_mask_cookie) != NULL) {
174 LOG("Could not change event mask, the window probably already disappeared.\n");
175 goto out;
176 }
177
178#define GET_PROPERTY(atom, len) xcb_get_property(conn, false, window, atom, XCB_GET_PROPERTY_TYPE_ANY, 0, len)
179
180 wm_type_cookie = GET_PROPERTY(A__NET_WM_WINDOW_TYPE, UINT32_MAX);
181 strut_cookie = GET_PROPERTY(A__NET_WM_STRUT_PARTIAL, UINT32_MAX);
182 state_cookie = GET_PROPERTY(A__NET_WM_STATE, UINT32_MAX);
183 utf8_title_cookie = GET_PROPERTY(A__NET_WM_NAME, 128);
184 qubes_vmname_cookie = GET_PROPERTY(A__QUBES_VMNAME, 128);
185 qubes_label_cookie = GET_PROPERTY(A__QUBES_LABEL, UINT32_MAX);
186 leader_cookie = GET_PROPERTY(A_WM_CLIENT_LEADER, UINT32_MAX);
187 transient_cookie = GET_PROPERTY(XCB_ATOM_WM_TRANSIENT_FOR, UINT32_MAX);
188 title_cookie = GET_PROPERTY(XCB_ATOM_WM_NAME, 128);
189 class_cookie = GET_PROPERTY(XCB_ATOM_WM_CLASS, 128);
190 role_cookie = GET_PROPERTY(A_WM_WINDOW_ROLE, 128);
191 startup_id_cookie = GET_PROPERTY(A__NET_STARTUP_ID, 512);
192 wm_hints_cookie = xcb_icccm_get_wm_hints(conn, window);
193 wm_normal_hints_cookie = xcb_icccm_get_wm_normal_hints(conn, window);
194 motif_wm_hints_cookie = GET_PROPERTY(A__MOTIF_WM_HINTS, 5 * sizeof(uint64_t));
195 wm_user_time_cookie = GET_PROPERTY(A__NET_WM_USER_TIME, UINT32_MAX);
196 wm_desktop_cookie = GET_PROPERTY(A__NET_WM_DESKTOP, UINT32_MAX);
197
198 i3Window *cwindow = scalloc(1, sizeof(i3Window));
199 cwindow->id = window;
200 cwindow->depth = get_visual_depth(attr->visual);
201
202 int *buttons = bindings_get_buttons_to_grab();
203 xcb_grab_buttons(conn, window, buttons);
204 FREE(buttons);
205
206 /* update as much information as possible so far (some replies may be NULL) */
207 window_update_class(cwindow, xcb_get_property_reply(conn, class_cookie, NULL));
208 window_update_name_legacy(cwindow, xcb_get_property_reply(conn, title_cookie, NULL));
209 window_update_name(cwindow, xcb_get_property_reply(conn, utf8_title_cookie, NULL));
210 window_update_qubes_vmname(cwindow, xcb_get_property_reply(conn, qubes_vmname_cookie, NULL), true);
211 window_update_qubes_label(cwindow, xcb_get_property_reply(conn, qubes_label_cookie, NULL), true);
212 window_update_leader(cwindow, xcb_get_property_reply(conn, leader_cookie, NULL));
213 window_update_transient_for(cwindow, xcb_get_property_reply(conn, transient_cookie, NULL));
214 window_update_strut_partial(cwindow, xcb_get_property_reply(conn, strut_cookie, NULL));
215 window_update_role(cwindow, xcb_get_property_reply(conn, role_cookie, NULL));
216 bool urgency_hint;
217 window_update_hints(cwindow, xcb_get_property_reply(conn, wm_hints_cookie, NULL), &urgency_hint);
218 border_style_t motif_border_style = BS_NORMAL;
219 window_update_motif_hints(cwindow, xcb_get_property_reply(conn, motif_wm_hints_cookie, NULL), &motif_border_style);
220 window_update_normal_hints(cwindow, xcb_get_property_reply(conn, wm_normal_hints_cookie, NULL), geom);
221 xcb_get_property_reply_t *type_reply = xcb_get_property_reply(conn, wm_type_cookie, NULL);
222 xcb_get_property_reply_t *state_reply = xcb_get_property_reply(conn, state_cookie, NULL);
223
224 xcb_get_property_reply_t *startup_id_reply;
225 startup_id_reply = xcb_get_property_reply(conn, startup_id_cookie, NULL);
226 char *startup_ws = startup_workspace_for_window(cwindow, startup_id_reply);
227 DLOG("startup workspace = %s\n", startup_ws);
228
229 /* Get _NET_WM_DESKTOP if it was set. */
230 xcb_get_property_reply_t *wm_desktop_reply;
231 wm_desktop_reply = xcb_get_property_reply(conn, wm_desktop_cookie, NULL);
233 if (wm_desktop_reply != NULL && xcb_get_property_value_length(wm_desktop_reply) != 0) {
234 uint32_t *wm_desktops = xcb_get_property_value(wm_desktop_reply);
235 cwindow->wm_desktop = (int32_t)wm_desktops[0];
236 }
237 FREE(wm_desktop_reply);
238
239 /* check if the window needs WM_TAKE_FOCUS */
240 cwindow->needs_take_focus = window_supports_protocol(cwindow->id, A_WM_TAKE_FOCUS);
241
242 /* read the preferred _NET_WM_WINDOW_TYPE atom */
243 cwindow->window_type = xcb_get_preferred_window_type(type_reply);
244
245 /* Where to start searching for a container that swallows the new one? */
246 Con *search_at = croot;
247
248 if (xcb_reply_contains_atom(type_reply, A__NET_WM_WINDOW_TYPE_DOCK)) {
249 LOG("This window is of type dock\n");
250 Output *output = get_output_containing(geom->x, geom->y);
251 if (output != NULL) {
252 DLOG("Starting search at output %s\n", output_primary_name(output));
253 search_at = output->con;
254 }
255
256 /* find out the desired position of this dock window */
257 if (cwindow->reserved.top > 0 && cwindow->reserved.bottom == 0) {
258 DLOG("Top dock client\n");
259 cwindow->dock = W_DOCK_TOP;
260 } else if (cwindow->reserved.top == 0 && cwindow->reserved.bottom > 0) {
261 DLOG("Bottom dock client\n");
262 cwindow->dock = W_DOCK_BOTTOM;
263 } else {
264 DLOG("Ignoring invalid reserved edges (_NET_WM_STRUT_PARTIAL), using position as fallback:\n");
265 if (geom->y < (int16_t)(search_at->rect.height / 2)) {
266 DLOG("geom->y = %d < rect.height / 2 = %d, it is a top dock client\n",
267 geom->y, (search_at->rect.height / 2));
268 cwindow->dock = W_DOCK_TOP;
269 } else {
270 DLOG("geom->y = %d >= rect.height / 2 = %d, it is a bottom dock client\n",
271 geom->y, (search_at->rect.height / 2));
272 cwindow->dock = W_DOCK_BOTTOM;
273 }
274 }
275 }
276
277 DLOG("Initial geometry: (%d, %d, %d, %d)\n", geom->x, geom->y, geom->width, geom->height);
278
279 /* See if any container swallows this new window */
280 Match *match = NULL;
281 Con *nc = con_for_window(search_at, cwindow, &match);
282 const bool match_from_restart_mode = (match && match->restart_mode);
283 if (nc == NULL) {
284 Con *wm_desktop_ws = NULL;
285 Assignment *assignment;
286
287 /* If not, check if it is assigned to a specific workspace */
288 if ((assignment = assignment_for(cwindow, A_TO_WORKSPACE)) ||
289 (assignment = assignment_for(cwindow, A_TO_WORKSPACE_NUMBER))) {
290 DLOG("Assignment matches (%p)\n", match);
291
292 Con *assigned_ws = NULL;
293 if (assignment->type == A_TO_WORKSPACE_NUMBER) {
294 long parsed_num = ws_name_to_number(assignment->dest.workspace);
295
296 assigned_ws = get_existing_workspace_by_num(parsed_num);
297 }
298 /* A_TO_WORKSPACE type assignment or fallback from A_TO_WORKSPACE_NUMBER
299 * when the target workspace number does not exist yet. */
300 if (!assigned_ws) {
301 assigned_ws = workspace_get(assignment->dest.workspace, NULL);
302 }
303
304 nc = con_descend_tiling_focused(assigned_ws);
305 DLOG("focused on ws %s: %p / %s\n", assigned_ws->name, nc, nc->name);
306 if (nc->type == CT_WORKSPACE)
307 nc = tree_open_con(nc, cwindow);
308 else
309 nc = tree_open_con(nc->parent, cwindow);
310
311 /* set the urgency hint on the window if the workspace is not visible */
312 if (!workspace_is_visible(assigned_ws))
313 urgency_hint = true;
314 } else if (cwindow->wm_desktop != NET_WM_DESKTOP_NONE &&
315 cwindow->wm_desktop != NET_WM_DESKTOP_ALL &&
316 (wm_desktop_ws = ewmh_get_workspace_by_index(cwindow->wm_desktop)) != NULL) {
317 /* If _NET_WM_DESKTOP is set to a specific desktop, we open it
318 * there. Note that we ignore the special value 0xFFFFFFFF here
319 * since such a window will be made sticky anyway. */
320
321 DLOG("Using workspace %p / %s because _NET_WM_DESKTOP = %d.\n",
322 wm_desktop_ws, wm_desktop_ws->name, cwindow->wm_desktop);
323
324 nc = con_descend_tiling_focused(wm_desktop_ws);
325 if (nc->type == CT_WORKSPACE)
326 nc = tree_open_con(nc, cwindow);
327 else
328 nc = tree_open_con(nc->parent, cwindow);
329 } else if (startup_ws) {
330 /* If it was started on a specific workspace, we want to open it there. */
331 DLOG("Using workspace on which this application was started (%s)\n", startup_ws);
332 nc = con_descend_tiling_focused(workspace_get(startup_ws, NULL));
333 DLOG("focused on ws %s: %p / %s\n", startup_ws, nc, nc->name);
334 if (nc->type == CT_WORKSPACE)
335 nc = tree_open_con(nc, cwindow);
336 else
337 nc = tree_open_con(nc->parent, cwindow);
338 } else {
339 /* If not, insert it at the currently focused position */
340 if (focused->type == CT_CON && con_accepts_window(focused)) {
341 LOG("using current container, focused = %p, focused->name = %s\n",
343 nc = focused;
344 } else
345 nc = tree_open_con(NULL, cwindow);
346 }
347
348 if ((assignment = assignment_for(cwindow, A_TO_OUTPUT))) {
349 con_move_to_output_name(nc, assignment->dest.output, true);
350 }
351 } else {
352 /* M_BELOW inserts the new window as a child of the one which was
353 * matched (e.g. dock areas) */
354 if (match != NULL && match->insert_where == M_BELOW) {
355 nc = tree_open_con(nc, cwindow);
356 }
357
358 /* If M_BELOW is not used, the container is replaced. This happens with
359 * "swallows" criteria that are used for stored layouts, in which case
360 * we need to remove that criterion, because they should only be valid
361 * once. */
362 if (match != NULL && match->insert_where != M_BELOW) {
363 DLOG("Removing match %p from container %p\n", match, nc);
364 TAILQ_REMOVE(&(nc->swallow_head), match, matches);
365 match_free(match);
366 FREE(match);
367 }
368 }
369
370 DLOG("new container = %p\n", nc);
371 if (nc->window != NULL && nc->window != cwindow) {
373 DLOG("Uh?! Container without a placeholder, but with a window, has swallowed this to-be-managed window?!\n");
374 } else {
375 /* Remove remaining criteria, the first swallowed window wins. */
376 _remove_matches(nc);
377 }
378 }
379 xcb_window_t old_frame = XCB_NONE;
380 if (nc->window != cwindow && nc->window != NULL) {
381 window_free(nc->window);
382 old_frame = _match_depth(cwindow, nc);
383 }
384 nc->window = cwindow;
385 x_reinit(nc);
386
387 nc->border_width = geom->border_width;
388
389 char *name;
390 sasprintf(&name, "[i3 con] container around %p", cwindow);
391 x_set_name(nc, name);
392 free(name);
393
394 /* handle fullscreen containers */
395 Con *ws = con_get_workspace(nc);
397
398 if (xcb_reply_contains_atom(state_reply, A__NET_WM_STATE_FULLSCREEN)) {
399 /* If this window is already fullscreen (after restarting!), skip
400 * toggling fullscreen, that would drop it out of fullscreen mode. */
401 if (fs != nc) {
402 Output *output = get_output_with_dimensions((Rect){geom->x, geom->y, geom->width, geom->height});
403 /* If the requested window geometry spans the whole area
404 * of an output, move the window to that output. This is
405 * needed e.g. for LibreOffice Impress multi-monitor
406 * presentations to work out of the box. */
407 if (output != NULL)
408 con_move_to_output(nc, output, false);
410 }
411 fs = NULL;
412 }
413
414 bool set_focus = false;
415
416 if (fs == NULL) {
417 DLOG("Not in fullscreen mode, focusing\n");
418 if (!cwindow->dock) {
419 /* Check that the workspace is visible and on the same output as
420 * the current focused container. If the window was assigned to an
421 * invisible workspace, we should not steal focus. */
422 Con *current_output = con_get_output(focused);
423 Con *target_output = con_get_output(ws);
424
425 if (workspace_is_visible(ws) && current_output == target_output) {
426 if (!match_from_restart_mode) {
427 set_focus = true;
428 } else {
429 DLOG("not focusing, matched with restart_mode == true\n");
430 }
431 } else {
432 DLOG("workspace not visible, not focusing\n");
433 }
434 } else {
435 DLOG("dock, not focusing\n");
436 }
437 } else {
438 DLOG("fs = %p, ws = %p, not focusing\n", fs, ws);
439 /* Insert the new container in focus stack *after* the currently
440 * focused (fullscreen) con. This way, the new container will be
441 * focused after we return from fullscreen mode */
442 Con *first = TAILQ_FIRST(&(nc->parent->focus_head));
443 if (first != nc) {
444 /* We only modify the focus stack if the container is not already
445 * the first one. This can happen when existing containers swallow
446 * new windows, for example when restarting. */
448 TAILQ_INSERT_AFTER(&(nc->parent->focus_head), first, nc, focused);
449 }
450 }
451
452 /* set floating if necessary */
453 bool want_floating = false;
454 if (xcb_reply_contains_atom(type_reply, A__NET_WM_WINDOW_TYPE_DIALOG) ||
455 xcb_reply_contains_atom(type_reply, A__NET_WM_WINDOW_TYPE_UTILITY) ||
456 xcb_reply_contains_atom(type_reply, A__NET_WM_WINDOW_TYPE_TOOLBAR) ||
457 xcb_reply_contains_atom(type_reply, A__NET_WM_WINDOW_TYPE_SPLASH) ||
458 xcb_reply_contains_atom(state_reply, A__NET_WM_STATE_MODAL) ||
459 (cwindow->max_width > 0 && cwindow->max_height > 0 &&
460 cwindow->min_height == cwindow->max_height &&
461 cwindow->min_width == cwindow->max_width)) {
462 LOG("This window is a dialog window, setting floating\n");
463 want_floating = true;
464 }
465
466 if (xcb_reply_contains_atom(state_reply, A__NET_WM_STATE_STICKY))
467 nc->sticky = true;
468
469 /* We ignore the hint for an internal workspace because windows in the
470 * scratchpad also have this value, but upon restarting i3 we don't want
471 * them to become sticky windows. */
472 if (cwindow->wm_desktop == NET_WM_DESKTOP_ALL && (ws == NULL || !con_is_internal(ws))) {
473 DLOG("This window has _NET_WM_DESKTOP = 0xFFFFFFFF. Will float it and make it sticky.\n");
474 nc->sticky = true;
475 want_floating = true;
476 }
477
478 FREE(state_reply);
479 FREE(type_reply);
480
481 if (cwindow->transient_for != XCB_NONE ||
482 (cwindow->leader != XCB_NONE &&
483 cwindow->leader != cwindow->id &&
484 con_by_window_id(cwindow->leader) != NULL)) {
485 LOG("This window is transient for another window, setting floating\n");
486 want_floating = true;
487
488 if (config.popup_during_fullscreen == PDF_LEAVE_FULLSCREEN &&
489 fs != NULL) {
490 LOG("There is a fullscreen window, leaving fullscreen mode\n");
492 } else if (config.popup_during_fullscreen == PDF_SMART &&
493 fs != NULL &&
494 fs->window != NULL) {
495 i3Window *transient_win = cwindow;
496 while (transient_win != NULL &&
497 transient_win->transient_for != XCB_NONE) {
498 if (transient_win->transient_for == fs->window->id) {
499 LOG("This floating window belongs to the fullscreen window (popup_during_fullscreen == smart)\n");
500 set_focus = true;
501 break;
502 }
503 Con *next_transient = con_by_window_id(transient_win->transient_for);
504 if (next_transient == NULL)
505 break;
506 /* Some clients (e.g. x11-ssh-askpass) actually set
507 * WM_TRANSIENT_FOR to their own window id, so break instead of
508 * looping endlessly. */
509 if (transient_win == next_transient->window)
510 break;
511 transient_win = next_transient->window;
512 }
513 }
514 }
515
516 /* dock clients cannot be floating, that makes no sense */
517 if (cwindow->dock)
518 want_floating = false;
519
520 /* Store the requested geometry. The width/height gets raised to at least
521 * 75x50 when entering floating mode, which is the minimum size for a
522 * window to be useful (smaller windows are usually overlays/toolbars/…
523 * which are not managed by the wm anyways). We store the original geometry
524 * here because it’s used for dock clients. */
525 if (nc->geometry.width == 0)
526 nc->geometry = (Rect){geom->x, geom->y, geom->width, geom->height};
527
528 if (motif_border_style != BS_NORMAL) {
529 DLOG("MOTIF_WM_HINTS specifies decorations (border_style = %d)\n", motif_border_style);
530 if (want_floating) {
532 } else {
533 con_set_border_style(nc, motif_border_style, config.default_border_width);
534 }
535 }
536
537 if (want_floating) {
538 DLOG("geometry = %d x %d\n", nc->geometry.width, nc->geometry.height);
539 /* automatically set the border to the default value if a motif border
540 * was not specified */
541 bool automatic_border = (motif_border_style == BS_NORMAL);
542
543 floating_enable(nc, automatic_border);
544 }
545
546 /* explicitly set the border width to the default */
547 if (nc->current_border_width == -1) {
549 }
550
551 /* to avoid getting an UnmapNotify event due to reparenting, we temporarily
552 * declare no interest in any state change event of this window */
553 values[0] = XCB_NONE;
554 xcb_change_window_attributes(conn, window, XCB_CW_EVENT_MASK, values);
555
556 xcb_void_cookie_t rcookie = xcb_reparent_window_checked(conn, window, nc->frame.id, 0, 0);
557 if (xcb_request_check(conn, rcookie) != NULL) {
558 LOG("Could not reparent the window, aborting\n");
559 goto geom_out;
560 }
561
562 values[0] = CHILD_EVENT_MASK & ~XCB_EVENT_MASK_ENTER_WINDOW;
563 xcb_change_window_attributes(conn, window, XCB_CW_EVENT_MASK, values);
564 xcb_flush(conn);
565
566 /* Put the client inside the save set. Upon termination (whether killed or
567 * normal exit does not matter) of the window manager, these clients will
568 * be correctly reparented to their most closest living ancestor (=
569 * cleanup) */
570 xcb_change_save_set(conn, XCB_SET_MODE_INSERT, window);
571
572 if (shape_supported) {
573 /* Receive ShapeNotify events whenever the client altered its window
574 * shape. */
575 xcb_shape_select_input(conn, window, true);
576
577 /* Check if the window is shaped. Sadly, we can check only for the
578 * bounding shape, not for the input shape. */
579 xcb_shape_query_extents_cookie_t cookie =
580 xcb_shape_query_extents(conn, window);
581 xcb_shape_query_extents_reply_t *reply =
582 xcb_shape_query_extents_reply(conn, cookie, NULL);
583 if (reply != NULL && reply->bounding_shaped) {
584 cwindow->shaped = true;
585 }
586 FREE(reply);
587 }
588
589 /* Check if any assignments match */
590 run_assignments(cwindow);
591
592 /* 'ws' may be invalid because of the assignments, e.g. when the user uses
593 * "move window to workspace 1", but had it assigned to workspace 2. */
594 ws = con_get_workspace(nc);
595
596 /* If this window was put onto an invisible workspace (via assignments), we
597 * render this workspace. It wouldn’t be rendered in our normal code path
598 * because only the visible workspaces get rendered.
599 *
600 * By rendering the workspace, we assign proper coordinates (read: not
601 * width=0, height=0) to the window, which is important for windows who
602 * actually use them to position their GUI elements, e.g. rhythmbox. */
603 if (ws && !workspace_is_visible(ws)) {
604 /* This is a bit hackish: we need to copy the content container’s rect
605 * to the workspace, because calling render_con() on the content
606 * container would also take the shortcut and not render the invisible
607 * workspace at all. However, just calling render_con() on the
608 * workspace isn’t enough either — it needs the rect. */
609 ws->rect = ws->parent->rect;
610 render_con(ws);
611 /* Disable setting focus, otherwise we’d move focus to an invisible
612 * workspace, which we generally prevent (e.g. in
613 * con_move_to_workspace). */
614 set_focus = false;
615 }
617
618 cwindow->managed_since = time(NULL);
619
620 /* Send an event about window creation */
621 ipc_send_window_event("new", nc);
622
623 if (set_focus && assignment_for(cwindow, A_NO_FOCUS) != NULL) {
624 /* The first window on a workspace should always be focused. We have to
625 * compare with == 1 because the container has already been inserted at
626 * this point. */
627 if (con_num_windows(ws) == 1) {
628 DLOG("This is the first window on this workspace, ignoring no_focus.\n");
629 } else {
630 DLOG("no_focus was set for con = %p, not setting focus.\n", nc);
631 set_focus = false;
632 }
633 }
634
635 if (set_focus) {
636 DLOG("Checking con = %p for _NET_WM_USER_TIME.\n", nc);
637
638 uint32_t *wm_user_time;
639 xcb_get_property_reply_t *wm_user_time_reply = xcb_get_property_reply(conn, wm_user_time_cookie, NULL);
640 if (wm_user_time_reply != NULL && xcb_get_property_value_length(wm_user_time_reply) != 0 &&
641 (wm_user_time = xcb_get_property_value(wm_user_time_reply)) &&
642 wm_user_time[0] == 0) {
643 DLOG("_NET_WM_USER_TIME set to 0, not focusing con = %p.\n", nc);
644 set_focus = false;
645 }
646
647 FREE(wm_user_time_reply);
648 } else {
649 xcb_discard_reply(conn, wm_user_time_cookie.sequence);
650 }
651
652 if (set_focus) {
653 /* Even if the client doesn't want focus, we still need to focus the
654 * container to not break focus workflows. Our handling towards X will
655 * take care of not setting the input focus. However, one exception to
656 * this are clients using the globally active input model which we
657 * don't want to focus at all. */
659 set_focus = false;
660 }
661 }
662
663 /* Defer setting focus after the 'new' event has been sent to ensure the
664 * proper window event sequence. */
665 if (set_focus && nc->mapped) {
666 DLOG("Now setting focus.\n");
667 con_activate(nc);
668 }
669
670 tree_render();
671
672 /* Destroy the old frame if we had to reframe the container. This needs to be done
673 * after rendering in order to prevent the background from flickering in its place. */
674 if (old_frame != XCB_NONE) {
675 xcb_destroy_window(conn, old_frame);
676 }
677
678 /* Windows might get managed with the urgency hint already set (Pidgin is
679 * known to do that), so check for that and handle the hint accordingly.
680 * This code needs to be in this part of manage_window() because the window
681 * needs to be on the final workspace first. */
682 con_set_urgency(nc, urgency_hint);
683
684 /* Update _NET_WM_DESKTOP. We invalidate the cached value first to force an update. */
687
688 /* If a sticky window was mapped onto another workspace, make sure to pop it to the front. */
690
691geom_out:
692 free(geom);
693out:
694 free(attr);
695}
696
697/*
698 * Remanages a window: performs a swallow check and runs assignments.
699 * Returns con for the window regardless if it updated.
700 *
701 */
703 Match *match;
704 Con *nc = con_for_window(croot, con->window, &match);
705 if (nc == NULL || nc->window == NULL || nc->window == con->window) {
707 return con;
708 }
709 /* Make sure the placeholder that wants to swallow this window didn't spawn
710 * after the window to follow current behavior: adding a placeholder won't
711 * swallow windows currently managed. */
712 if (nc->window->managed_since > con->window->managed_since) {
714 return con;
715 }
716
718 DLOG("Uh?! Container without a placeholder, but with a window, has swallowed this managed window?!\n");
719 } else {
720 _remove_matches(nc);
721 }
722 window_free(nc->window);
723
724 xcb_window_t old_frame = _match_depth(con->window, nc);
725
726 x_reparent_child(nc, con);
727
728 bool moved_workpaces = (con_get_workspace(nc) != con_get_workspace(con));
729
730 con_merge_into(con, nc);
731
732 /* Destroy the old frame if we had to reframe the container. This needs to be done
733 * after rendering in order to prevent the background from flickering in its place. */
734 if (old_frame != XCB_NONE) {
735 xcb_destroy_window(conn, old_frame);
736 }
737
739
740 if (moved_workpaces) {
741 /* If the window is associated with a startup sequence, delete it so
742 * child windows won't be created on the old workspace. */
744
746 }
747
748 return nc;
749}
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
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
char * output_primary_name(Output *output)
Retrieves the primary name of an output.
Definition: output.c:51
void run_assignments(i3Window *window)
Checks the list of assignments for the given window and runs all matching ones (unless they have alre...
Definition: assignments.c:17
Assignment * assignment_for(i3Window *window, int type)
Returns the first matching assignment for the given window.
Definition: assignments.c:69
bool restore_kill_placeholder(xcb_window_t placeholder)
Kill the placeholder window, if placeholder refers to a placeholder window.
void startup_sequence_delete_by_window(i3Window *win)
Deletes the startup sequence for a window if it exists.
Definition: startup.c:373
char * startup_workspace_for_window(i3Window *cwindow, xcb_get_property_reply_t *startup_id_reply)
Checks if the given window belongs to a startup notification by checking if the _NET_STARTUP_ID prope...
Definition: startup.c:353
int * bindings_get_buttons_to_grab(void)
Returns a list of buttons that should be grabbed on a window.
Definition: bindings.c:984
void restore_geometry(void)
Restores the geometry of each window by reparenting it to the root window at the position of its fram...
Definition: manage.c:82
static void _remove_matches(Con *con)
Definition: manage.c:35
static xcb_window_t _match_depth(i3Window *win, Con *con)
Definition: manage.c:21
void manage_existing_windows(xcb_window_t root)
Go through all existing windows (if the window manager is restarted) and manage them.
Definition: manage.c:48
Con * remanage_window(Con *con)
Remanages a window: performs a swallow check and runs assignments.
Definition: manage.c:702
void manage_window(xcb_window_t window, xcb_get_window_attributes_cookie_t cookie, bool needs_to_be_mapped)
Do some sanity checks and then reparent the window.
Definition: manage.c:109
#define GET_PROPERTY(atom, len)
long ws_name_to_number(const char *name)
Parses the workspace name as a number.
Definition: util.c:106
struct Con * focused
Definition: tree.c:13
struct Con * croot
Definition: tree.c:12
Con * tree_open_con(Con *con, i3Window *window)
Opens an empty container in the current container.
Definition: tree.c:149
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
void render_con(Con *con)
"Renders" the given container (and its children), meaning that all rects are updated correctly.
Definition: render.c:40
void x_reparent_child(Con *con, Con *old)
Reparents the child window of the given container (necessary for sticky containers).
Definition: x.c:221
void x_con_reframe(Con *con)
Definition: x.c:298
void x_reinit(Con *con)
Re-initializes the associated X window state for this container.
Definition: x.c:201
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
bool window_supports_protocol(xcb_window_t window, xcb_atom_t atom)
Returns true if the client supports the given protocol atom (like WM_DELETE_WINDOW)
Definition: x.c:307
void match_free(Match *match)
Frees the given match.
Definition: match.c:241
Config config
Definition: config.c:17
bool con_move_to_output_name(Con *con, const char *name, bool fix_coordinates)
Moves the given container to the currently focused container on the visible workspace on the output s...
Definition: con.c:1425
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
Con * con_for_window(Con *con, i3Window *window, Match **store_match)
Returns the first container below 'con' which wants to swallow this window TODO: priority.
Definition: con.c:827
Con * con_get_workspace(Con *con)
Gets the workspace container this node is on.
Definition: con.c:453
Con * con_descend_tiling_focused(Con *con)
Returns the focused con inside this client, descending the tree as far as possible.
Definition: con.c:1531
Con * con_by_window_id(xcb_window_t window)
Returns the container with the given client window ID or NULL if no such container exists.
Definition: con.c:647
Con * con_get_fullscreen_covering_ws(Con *ws)
Returns the fullscreen node that covers the given workspace if it exists.
Definition: con.c:552
bool con_accepts_window(Con *con)
Returns true if this node accepts a window (if the node swallows windows, it might already have swall...
Definition: con.c:420
bool con_is_internal(Con *con)
Returns true if the container is internal, such as __i3_scratch.
Definition: con.c:567
void con_move_to_output(Con *con, Output *output, bool fix_coordinates)
Moves the given container to the currently focused container on the visible workspace on the given ou...
Definition: con.c:1410
void con_toggle_fullscreen(Con *con, int fullscreen_mode)
Toggles fullscreen mode for the given container.
Definition: con.c:1033
void con_set_border_style(Con *con, int border_style, int border_width)
Sets the given border style on con, correctly keeping the position/size of a floating window.
Definition: con.c:1726
void con_merge_into(Con *old, Con *new)
Merges container specific data that should move with the window (e.g.
Definition: con.c:2436
void con_activate(Con *con)
Sets input focus to the given container and raises it to the top.
Definition: con.c:263
int con_num_windows(Con *con)
Count the number of windows (i.e., leaf containers).
Definition: con.c:959
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
void floating_enable(Con *con, bool automatic)
Enables floating mode for the given container by detaching it from its parent, creating a new contain...
Definition: floating.c:224
bool workspace_is_visible(Con *ws)
Returns true if the workspace is currently visible.
Definition: workspace.c:308
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
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
Output * get_output_with_dimensions(Rect rect)
Returns the active output which spans exactly the area specified by rect or NULL if there is no outpu...
Definition: randr.c:147
Output * get_output_containing(unsigned int x, unsigned int y)
Returns the active (!) output which contains the coordinates x, y or NULL if there is no output which...
Definition: randr.c:113
xcb_connection_t * conn
XCB connection and root screen.
Definition: main.c:44
xcb_window_t root
Definition: main.c:57
bool shape_supported
Definition: main.c:92
Con * ewmh_get_workspace_by_index(uint32_t idx)
Returns the workspace container as enumerated by the EWMH desktop model.
Definition: ewmh.c:351
void ewmh_update_wm_desktop(void)
Updates _NET_WM_DESKTOP for all windows.
Definition: ewmh.c:182
xcb_atom_t xcb_get_preferred_window_type(xcb_get_property_reply_t *reply)
Returns the first supported _NET_WM_WINDOW_TYPE atom.
Definition: xcb.c:133
void xcb_set_window_rect(xcb_connection_t *conn, xcb_window_t window, Rect r)
Configures the given window to have the size/position specified by given rect.
Definition: xcb.c:117
uint16_t get_visual_depth(xcb_visualid_t visual_id)
Get depth of visual specified by visualid.
Definition: xcb.c:200
bool xcb_reply_contains_atom(xcb_get_property_reply_t *prop, xcb_atom_t atom)
Returns true if the given reply contains the given data.
Definition: xcb.c:163
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
void window_update_qubes_label(i3Window *win, xcb_get_property_reply_t *prop, bool before_mgmt)
Updates the qubes label by using _QUBES_LABEL (encoded in UTF-8) for the given window.
Definition: window.c:170
void window_update_motif_hints(i3Window *win, xcb_get_property_reply_t *prop, border_style_t *motif_border_style)
Updates the MOTIF_WM_HINTS.
Definition: window.c:469
void window_update_hints(i3Window *win, xcb_get_property_reply_t *prop, bool *urgency_hint)
Updates the WM_HINTS (we only care about the input focus handling part).
Definition: window.c:428
void window_update_strut_partial(i3Window *win, xcb_get_property_reply_t *prop)
Updates the _NET_WM_STRUT_PARTIAL (reserved pixels at the screen edges)
Definition: window.c:243
void window_update_role(i3Window *win, xcb_get_property_reply_t *prop)
Updates the WM_WINDOW_ROLE.
Definition: window.c:268
void window_update_qubes_vmname(i3Window *win, xcb_get_property_reply_t *prop, bool before_mgmt)
Updates the qubes vmname by using _QUBES_VMNAME (encoded in UTF-8) for the given window.
Definition: window.c:138
void window_update_name_legacy(i3Window *win, xcb_get_property_reply_t *prop)
Updates the name by using WM_NAME (encoded in COMPOUND_TEXT).
Definition: window.c:98
void window_free(i3Window *win)
Frees an i3Window and all its members.
Definition: window.c:16
void window_update_transient_for(i3Window *win, xcb_get_property_reply_t *prop)
Updates the TRANSIENT_FOR (logical parent window).
Definition: window.c:218
void window_update_leader(i3Window *win, xcb_get_property_reply_t *prop)
Updates the CLIENT_LEADER (logical parent window).
Definition: window.c:193
bool window_update_normal_hints(i3Window *win, xcb_get_property_reply_t *reply, xcb_get_geometry_reply_t *geom)
Updates the WM_NORMAL_HINTS.
Definition: window.c:307
void window_update_name(i3Window *win, xcb_get_property_reply_t *prop)
Updates the name by using _NET_WM_NAME (encoded in UTF-8) for the given window.
Definition: window.c:62
void window_update_class(i3Window *win, xcb_get_property_reply_t *prop)
Updates the WM_CLASS (consisting of the class and instance) for the given window.
Definition: window.c:29
#define TAILQ_FOREACH(var, head, field)
Definition: queue.h:347
#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 TAILQ_INSERT_AFTER(head, listelm, elm, field)
Definition: queue.h:384
#define DLOG(fmt,...)
Definition: libi3.h:104
#define LOG(fmt,...)
Definition: libi3.h:94
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...
@ CF_OUTPUT
Definition: data.h:627
border_style_t
Definition: data.h:64
@ BS_NORMAL
Definition: data.h:64
#define NET_WM_DESKTOP_ALL
Definition: workspace.h:25
#define NET_WM_DESKTOP_NONE
Definition: workspace.h:24
#define CHILD_EVENT_MASK
The XCB_CW_EVENT_MASK for the child (= real window)
Definition: xcb.h:35
#define FREE(pointer)
Definition: util.h:47
int default_border_width
int default_floating_border_width
enum Config::@8 popup_during_fullscreen
What should happen when a new popup is opened during fullscreen mode.
Stores a rectangle, for example the size of a window, the child window etc.
Definition: data.h:175
uint32_t height
Definition: data.h:179
uint32_t x
Definition: data.h:176
uint32_t y
Definition: data.h:177
uint32_t width
Definition: data.h:178
uint32_t top
Definition: data.h:190
uint32_t bottom
Definition: data.h:191
An Output is a physical output on your graphics driver.
Definition: data.h:393
Con * con
Pointer to the Con which represents this output.
Definition: data.h:414
A 'Window' is a type which contains an xcb_window_t and all the related information (hints like _NET_...
Definition: data.h:428
time_t managed_since
Definition: data.h:519
int max_height
Definition: data.h:506
int max_width
Definition: data.h:505
xcb_window_t id
Definition: data.h:429
int min_height
Definition: data.h:502
xcb_atom_t window_type
The _NET_WM_WINDOW_TYPE for this window.
Definition: data.h:472
bool doesnt_accept_focus
Whether this window accepts focus.
Definition: data.h:469
bool shaped
The window has a nonrectangular shape.
Definition: data.h:513
bool needs_take_focus
Whether the application needs to receive WM_TAKE_FOCUS.
Definition: data.h:465
enum Window::@13 dock
Whether the window says it is a dock window.
xcb_window_t transient_for
Definition: data.h:434
uint32_t wm_desktop
The _NET_WM_DESKTOP for this window.
Definition: data.h:475
struct reservedpx reserved
Pixels the window reserves.
Definition: data.h:486
xcb_window_t leader
Holds the xcb_window_t (just an ID) for the leader window (logical parent for toolwindows and similar...
Definition: data.h:433
uint16_t depth
Depth of the window.
Definition: data.h:489
int min_width
Definition: data.h:501
A "match" is a data structure which acts like a mask or expression to match certain windows or not.
Definition: data.h:530
enum Match::@17 insert_where
bool restart_mode
Definition: data.h:579
An Assignment makes specific windows go to a specific workspace/output or run a command for that wind...
Definition: data.h:590
char * output
Definition: data.h:618
union Assignment::@19 dest
destination workspace/command/output, depending on the type
char * workspace
Definition: data.h:617
enum Assignment::@18 type
type of this assignment:
A 'Con' represents everything from the X11 root window down to a single X11 window.
Definition: data.h:641
struct Con * parent
Definition: data.h:673
int border_width
Definition: data.h:706
struct Rect rect
Definition: data.h:677
swallow_head
Definition: data.h:728
enum Con::@20 type
int current_border_width
Definition: data.h:707
bool sticky
Definition: data.h:735
focus_head
Definition: data.h:725
bool mapped
Definition: data.h:642
struct Rect window_rect
Definition: data.h:680
struct Window * window
Definition: data.h:709
surface_t frame
Definition: data.h:656
char * name
Definition: data.h:687
struct Rect geometry
the geometry this window requested when getting mapped
Definition: data.h:685
uint16_t depth
Definition: data.h:798
xcb_drawable_t id
Definition: libi3.h:563