i3
x.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 * x.c: Interface to X11, transfers our in-memory state to X11 (see also
8 * render.c). Basically a big state machine.
9 *
10 */
11#include "all.h"
12
13#ifndef MAX
14#define MAX(x, y) ((x) > (y) ? (x) : (y))
15#endif
16
17/* Stores the X11 window ID of the currently focused window */
18xcb_window_t focused_id = XCB_NONE;
19
20/* Because 'focused_id' might be reset to force input focus, we separately keep
21 * track of the X11 window ID to be able to always tell whether the focused
22 * window actually changed. */
23static xcb_window_t last_focused = XCB_NONE;
24
25/* Stores coordinates to warp mouse pointer to if set */
26static Rect *warp_to;
27
28/*
29 * Describes the X11 state we may modify (map state, position, window stack).
30 * There is one entry per container. The state represents the current situation
31 * as X11 sees it (with the exception of the order in the state_head CIRCLEQ,
32 * which represents the order that will be pushed to X11, while old_state_head
33 * represents the current order). It will be updated in x_push_changes().
34 *
35 */
36typedef struct con_state {
37 xcb_window_t id;
38 bool mapped;
42
43 /* The con for which this state is. */
45
46 /* For reparenting, we have a flag (need_reparent) and the X ID of the old
47 * frame this window was in. The latter is necessary because we need to
48 * ignore UnmapNotify events (by changing the window event mask). */
50 xcb_window_t old_frame;
51
52 /* The container was child of floating container during the previous call of
53 * x_push_node(). This is used to remove the shape when the container is no
54 * longer floating. */
56
59
60 bool initial;
61
62 char *name;
63
66
69
73
77
81
85
86/*
87 * Returns the container state for the given frame. This function always
88 * returns a container state (otherwise, there is a bug in the code and the
89 * container state of a container for which x_con_init() was not called was
90 * requested).
91 *
92 */
93static con_state *state_for_frame(xcb_window_t window) {
96 if (state->id == window)
97 return state;
98
99 /* TODO: better error handling? */
100 ELOG("No state found for window 0x%08x\n", window);
101 assert(false);
102 return NULL;
103}
104
105/*
106 * Changes the atoms on the root window and the windows themselves to properly
107 * reflect the current focus for ewmh compliance.
108 *
109 */
110static void change_ewmh_focus(xcb_window_t new_focus, xcb_window_t old_focus) {
111 if (new_focus == old_focus) {
112 return;
113 }
114
115 ewmh_update_active_window(new_focus);
116
117 if (new_focus != XCB_WINDOW_NONE) {
118 ewmh_update_focused(new_focus, true);
119 }
120
121 if (old_focus != XCB_WINDOW_NONE) {
122 ewmh_update_focused(old_focus, false);
123 }
124}
125
126/*
127 * Initializes the X11 part for the given container. Called exactly once for
128 * every container from con_new().
129 *
130 */
132 /* TODO: maybe create the window when rendering first? we could then even
133 * get the initial geometry right */
134
135 uint32_t mask = 0;
136 uint32_t values[5];
137
138 xcb_visualid_t visual = get_visualid_by_depth(con->depth);
139 xcb_colormap_t win_colormap;
140 if (con->depth != root_depth) {
141 /* We need to create a custom colormap. */
142 win_colormap = xcb_generate_id(conn);
143 xcb_create_colormap(conn, XCB_COLORMAP_ALLOC_NONE, win_colormap, root, visual);
144 con->colormap = win_colormap;
145 } else {
146 /* Use the default colormap. */
147 win_colormap = colormap;
148 con->colormap = XCB_NONE;
149 }
150
151 /* We explicitly set a background color and border color (even though we
152 * don’t even have a border) because the X11 server requires us to when
153 * using 32 bit color depths, see
154 * https://stackoverflow.com/questions/3645632 */
155 mask |= XCB_CW_BACK_PIXEL;
156 values[0] = root_screen->black_pixel;
157
158 mask |= XCB_CW_BORDER_PIXEL;
159 values[1] = root_screen->black_pixel;
160
161 /* our own frames should not be managed */
162 mask |= XCB_CW_OVERRIDE_REDIRECT;
163 values[2] = 1;
164
165 /* see include/xcb.h for the FRAME_EVENT_MASK */
166 mask |= XCB_CW_EVENT_MASK;
167 values[3] = FRAME_EVENT_MASK & ~XCB_EVENT_MASK_ENTER_WINDOW;
168
169 mask |= XCB_CW_COLORMAP;
170 values[4] = win_colormap;
171
172 Rect dims = {-15, -15, 10, 10};
173 xcb_window_t frame_id = create_window(conn, dims, con->depth, visual, XCB_WINDOW_CLASS_INPUT_OUTPUT, XCURSOR_CURSOR_POINTER, false, mask, values);
174 draw_util_surface_init(conn, &(con->frame), frame_id, get_visualtype_by_id(visual), dims.width, dims.height);
175 xcb_change_property(conn,
176 XCB_PROP_MODE_REPLACE,
177 con->frame.id,
178 XCB_ATOM_WM_CLASS,
179 XCB_ATOM_STRING,
180 8,
181 (strlen("i3-frame") + 1) * 2,
182 "i3-frame\0i3-frame\0");
183
184 struct con_state *state = scalloc(1, sizeof(struct con_state));
185 state->id = con->frame.id;
186 state->mapped = false;
187 state->initial = true;
188 DLOG("Adding window 0x%08x to lists\n", state->id);
192 DLOG("adding new state for window id 0x%08x\n", state->id);
193}
194
195/*
196 * Re-initializes the associated X window state for this container. You have
197 * to call this when you assign a client to an empty container to ensure that
198 * its state gets updated correctly.
199 *
200 */
202 struct con_state *state;
203
204 if ((state = state_for_frame(con->frame.id)) == NULL) {
205 ELOG("window state not found\n");
206 return;
207 }
208
209 DLOG("resetting state %p to initial\n", state);
210 state->initial = true;
211 state->child_mapped = false;
212 state->con = con;
213 memset(&(state->window_rect), 0, sizeof(Rect));
214}
215
216/*
217 * Reparents the child window of the given container (necessary for sticky
218 * containers). The reparenting happens in the next call of x_push_changes().
219 *
220 */
222 struct con_state *state;
223 if ((state = state_for_frame(con->frame.id)) == NULL) {
224 ELOG("window state for con not found\n");
225 return;
226 }
227
228 state->need_reparent = true;
229 state->old_frame = old->frame.id;
230}
231
232/*
233 * Moves a child window from Container src to Container dest.
234 *
235 */
236void x_move_win(Con *src, Con *dest) {
237 struct con_state *state_src, *state_dest;
238
239 if ((state_src = state_for_frame(src->frame.id)) == NULL) {
240 ELOG("window state for src not found\n");
241 return;
242 }
243
244 if ((state_dest = state_for_frame(dest->frame.id)) == NULL) {
245 ELOG("window state for dest not found\n");
246 return;
247 }
248
249 state_dest->con = state_src->con;
250 state_src->con = NULL;
251
252 if (rect_equals(state_dest->window_rect, (Rect){0, 0, 0, 0})) {
253 memcpy(&(state_dest->window_rect), &(state_src->window_rect), sizeof(Rect));
254 DLOG("COPYING RECT\n");
255 }
256}
257
258static void _x_con_kill(Con *con) {
260
261 if (con->colormap != XCB_NONE) {
262 xcb_free_colormap(conn, con->colormap);
263 }
264
267 xcb_free_pixmap(conn, con->frame_buffer.id);
268 con->frame_buffer.id = XCB_NONE;
273 FREE(state->name);
274 free(state);
275
276 /* Invalidate focused_id to correctly focus new windows with the same ID */
277 if (con->frame.id == focused_id) {
278 focused_id = XCB_NONE;
279 }
280 if (con->frame.id == last_focused) {
281 last_focused = XCB_NONE;
282 }
283}
284
285/*
286 * Kills the window decoration associated with the given container.
287 *
288 */
291 xcb_destroy_window(conn, con->frame.id);
292}
293
294/*
295 * Completely reinitializes the container's frame, without destroying the old window.
296 *
297 */
301}
302
303/*
304 * Returns true if the client supports the given protocol atom (like WM_DELETE_WINDOW)
305 *
306 */
307bool window_supports_protocol(xcb_window_t window, xcb_atom_t atom) {
308 xcb_get_property_cookie_t cookie;
309 xcb_icccm_get_wm_protocols_reply_t protocols;
310 bool result = false;
311
312 cookie = xcb_icccm_get_wm_protocols(conn, window, A_WM_PROTOCOLS);
313 if (xcb_icccm_get_wm_protocols_reply(conn, cookie, &protocols, NULL) != 1)
314 return false;
315
316 /* Check if the client’s protocols have the requested atom set */
317 for (uint32_t i = 0; i < protocols.atoms_len; i++)
318 if (protocols.atoms[i] == atom)
319 result = true;
320
321 xcb_icccm_get_wm_protocols_reply_wipe(&protocols);
322
323 return result;
324}
325
326/*
327 * Kills the given X11 window using WM_DELETE_WINDOW (if supported).
328 *
329 */
330void x_window_kill(xcb_window_t window, kill_window_t kill_window) {
331 /* if this window does not support WM_DELETE_WINDOW, we kill it the hard way */
332 if (!window_supports_protocol(window, A_WM_DELETE_WINDOW)) {
333 if (kill_window == KILL_WINDOW) {
334 LOG("Killing specific window 0x%08x\n", window);
335 xcb_destroy_window(conn, window);
336 } else {
337 LOG("Killing the X11 client which owns window 0x%08x\n", window);
338 xcb_kill_client(conn, window);
339 }
340 return;
341 }
342
343 /* Every X11 event is 32 bytes long. Therefore, XCB will copy 32 bytes.
344 * In order to properly initialize these bytes, we allocate 32 bytes even
345 * though we only need less for an xcb_configure_notify_event_t */
346 void *event = scalloc(32, 1);
347 xcb_client_message_event_t *ev = event;
348
349 ev->response_type = XCB_CLIENT_MESSAGE;
350 ev->window = window;
351 ev->type = A_WM_PROTOCOLS;
352 ev->format = 32;
353 ev->data.data32[0] = A_WM_DELETE_WINDOW;
354 ev->data.data32[1] = XCB_CURRENT_TIME;
355
356 LOG("Sending WM_DELETE to the client\n");
357 xcb_send_event(conn, false, window, XCB_EVENT_MASK_NO_EVENT, (char *)ev);
358 xcb_flush(conn);
359 free(event);
360}
361
363 assert(con->parent != NULL);
364
365 Rect *dr = &(con->deco_rect);
366
367 /* Left */
369 dr->x, dr->y, 1, dr->height);
370
371 /* Right */
373 dr->x + dr->width - 1, dr->y, 1, dr->height);
374
375 /* Top */
377 dr->x, dr->y, dr->width, 1);
378
379 /* Bottom */
381 dr->x, dr->y + dr->height - 1, dr->width, 1);
382}
383
385 assert(con->parent != NULL);
386
387 Rect *dr = &(con->deco_rect);
388
389 /* Redraw the right border to cut off any text that went past it.
390 * This is necessary when the text was drawn using XCB since cutting text off
391 * automatically does not work there. For pango rendering, this isn't necessary. */
392 if (!font_is_pango()) {
393 /* We actually only redraw the far right two pixels as that is the
394 * distance we keep from the edge (not the entire border width).
395 * Redrawing the entire border would cause text to be cut off. */
397 dr->x + dr->width - 2 * logical_px(1),
398 dr->y,
399 2 * logical_px(1),
400 dr->height);
401 }
402
403 /* Redraw the border. */
405}
406
407/*
408 * Get rectangles representing the border around the child window. Some borders
409 * are adjacent to the screen-edge and thus not returned. Return value is the
410 * number of rectangles.
411 *
412 */
413static size_t x_get_border_rectangles(Con *con, xcb_rectangle_t rectangles[4]) {
414 size_t count = 0;
415 int border_style = con_border_style(con);
416
417 if (border_style != BS_NONE && con_is_leaf(con)) {
420
421 if (!(borders_to_hide & ADJ_LEFT_SCREEN_EDGE)) {
422 rectangles[count++] = (xcb_rectangle_t){
423 .x = 0,
424 .y = 0,
425 .width = br.x,
426 .height = con->rect.height,
427 };
428 }
429 if (!(borders_to_hide & ADJ_RIGHT_SCREEN_EDGE)) {
430 rectangles[count++] = (xcb_rectangle_t){
431 .x = con->rect.width + (br.width + br.x),
432 .y = 0,
433 .width = -(br.width + br.x),
434 .height = con->rect.height,
435 };
436 }
437 if (!(borders_to_hide & ADJ_LOWER_SCREEN_EDGE)) {
438 rectangles[count++] = (xcb_rectangle_t){
439 .x = br.x,
440 .y = con->rect.height + (br.height + br.y),
441 .width = con->rect.width + br.width,
442 .height = -(br.height + br.y),
443 };
444 }
445 /* pixel border have an additional line at the top */
446 if (border_style == BS_PIXEL && !(borders_to_hide & ADJ_UPPER_SCREEN_EDGE)) {
447 rectangles[count++] = (xcb_rectangle_t){
448 .x = br.x,
449 .y = 0,
450 .width = con->rect.width + br.width,
451 .height = br.y,
452 };
453 }
454 }
455
456 return count;
457}
458
459/*
460 * Draws the decoration of the given container onto its parent.
461 *
462 */
464 Con *parent = con->parent;
465 bool leaf = con_is_leaf(con);
466
467 /* This code needs to run for:
468 * • leaf containers
469 * • non-leaf containers which are in a stacked/tabbed container
470 *
471 * It does not need to run for:
472 * • direct children of outputs or dockareas
473 * • floating containers (they don’t have a decoration)
474 */
475 if ((!leaf &&
476 parent->layout != L_STACKED &&
477 parent->layout != L_TABBED) ||
478 parent->type == CT_OUTPUT ||
479 parent->type == CT_DOCKAREA ||
480 con->type == CT_FLOATING_CON)
481 return;
482
483 /* Skip containers whose height is 0 (for example empty dockareas) */
484 if (con->rect.height == 0)
485 return;
486
487 /* Skip containers whose pixmap has not yet been created (can happen when
488 * decoration rendering happens recursively for a window for which
489 * x_push_node() was not yet called) */
490 if (leaf && con->frame_buffer.id == XCB_NONE)
491 return;
492
493 /* 1: build deco_params and compare with cache */
494 struct deco_render_params *p = scalloc(1, sizeof(struct deco_render_params));
495
496 /* Find out which Qubes label to use */
497 qube_label_t label = QUBE_DOM0;
498 struct Window *win = con->window;
499 if (win != NULL) {
500 DLOG("con->qubes_label is %d\n", win->qubes_label);
501 if (win->qubes_label >= 0 && win->qubes_label < QUBE_NUM_LABELS) {
502 label = win->qubes_label;
503 }
504 }
505
506 /* find out which colors to use */
507 if (con->urgent)
508 p->color = &config.client[label].urgent;
509 else if (con == focused || con_inside_focused(con))
510 p->color = &config.client[label].focused;
511 else if (con == TAILQ_FIRST(&(parent->focus_head)))
512 p->color = &config.client[label].focused_inactive;
513 else
514 p->color = &config.client[label].unfocused;
515
517
518 Rect *r = &(con->rect);
519 Rect *w = &(con->window_rect);
520 p->con_rect = (struct width_height){r->width, r->height};
521 p->con_window_rect = (struct width_height){w->width, w->height};
526
527 if (con->deco_render_params != NULL &&
528 (con->window == NULL || !con->window->name_x_changed) &&
529 !parent->pixmap_recreated &&
531 !con->mark_changed &&
532 memcmp(p, con->deco_render_params, sizeof(struct deco_render_params)) == 0) {
533 free(p);
534 goto copy_pixmaps;
535 }
536
537 Con *next = con;
538 while ((next = TAILQ_NEXT(next, nodes))) {
540 }
541
544
545 if (con->window != NULL && con->window->name_x_changed)
546 con->window->name_x_changed = false;
547
548 parent->pixmap_recreated = false;
549 con->pixmap_recreated = false;
550 con->mark_changed = false;
551
552 /* 2: draw the client.background, but only for the parts around the window_rect */
553 if (con->window != NULL) {
554 /* top area */
556 0, 0, r->width, w->y);
557 /* bottom area */
559 0, w->y + w->height, r->width, r->height - (w->y + w->height));
560 /* left area */
562 0, 0, w->x, r->height);
563 /* right area */
565 w->x + w->width, 0, r->width - (w->x + w->width), r->height);
566 }
567
568 /* 3: draw a rectangle in border color around the client */
569 if (p->border_style != BS_NONE && p->con_is_leaf) {
570 /* Fill the border. We don’t just fill the whole rectangle because some
571 * children are not freely resizable and we want their background color
572 * to "shine through". */
573 xcb_rectangle_t rectangles[4];
574 size_t rectangles_count = x_get_border_rectangles(con, rectangles);
575 for (size_t i = 0; i < rectangles_count; i++) {
577 rectangles[i].x,
578 rectangles[i].y,
579 rectangles[i].width,
580 rectangles[i].height);
581 }
582
583 /* Highlight the side of the border at which the next window will be
584 * opened if we are rendering a single window within a split container
585 * (which is undistinguishable from a single window outside a split
586 * container otherwise. */
588 if (TAILQ_NEXT(con, nodes) == NULL &&
589 TAILQ_PREV(con, nodes_head, nodes) == NULL &&
590 con->parent->type != CT_FLOATING_CON) {
591 if (p->parent_layout == L_SPLITH) {
593 r->width + (br.width + br.x), br.y, -(br.width + br.x), r->height + br.height);
594 } else if (p->parent_layout == L_SPLITV) {
596 br.x, r->height + (br.height + br.y), r->width + br.width, -(br.height + br.y));
597 }
598 }
599 }
600
601 /* if this is a borderless/1pixel window, we don’t need to render the
602 * decoration. */
603 if (p->border_style != BS_NORMAL)
604 goto copy_pixmaps;
605
606 /* If the parent hasn't been set up yet, skip the decoration rendering
607 * for now. */
608 if (parent->frame_buffer.id == XCB_NONE)
609 goto copy_pixmaps;
610
611 /* For the first child, we clear the parent pixmap to ensure there's no
612 * garbage left on there. This is important to avoid tearing when using
613 * transparency. */
614 if (con == TAILQ_FIRST(&(con->parent->nodes_head))) {
617 }
618
619 /* 4: paint the bar */
622
623 /* 5: draw title border */
625
626 /* 6: draw the title */
627 int text_offset_y = (con->deco_rect.height - config.font.height) / 2;
628
629 const int title_padding = logical_px(2);
630 const int deco_width = (int)con->deco_rect.width;
631 int mark_width = 0;
633 char *formatted_mark = sstrdup("");
634 bool had_visible_mark = false;
635
636 mark_t *mark;
637 TAILQ_FOREACH(mark, &(con->marks_head), marks) {
638 if (mark->name[0] == '_')
639 continue;
640 had_visible_mark = true;
641
642 char *buf;
643 sasprintf(&buf, "%s[%s]", formatted_mark, mark->name);
644 free(formatted_mark);
645 formatted_mark = buf;
646 }
647
648 if (had_visible_mark) {
649 i3String *mark = i3string_from_utf8(formatted_mark);
650 mark_width = predict_text_width(mark);
651
652 int mark_offset_x = (config.title_align == ALIGN_RIGHT)
653 ? title_padding
654 : deco_width - mark_width - title_padding;
655
656 draw_util_text(mark, &(parent->frame_buffer),
657 p->color->text, p->color->background,
658 con->deco_rect.x + mark_offset_x,
659 con->deco_rect.y + text_offset_y, mark_width);
660 I3STRING_FREE(mark);
661
662 mark_width += title_padding;
663 }
664
665 FREE(formatted_mark);
666 }
667
668 i3String *title = NULL;
669 if (win == NULL) {
670 if (con->title_format == NULL) {
671 char *_title;
672 char *tree = con_get_tree_representation(con);
673 sasprintf(&_title, "i3: %s", tree);
674 free(tree);
675
676 title = i3string_from_utf8(_title);
677 FREE(_title);
678 } else {
680 }
681 } else {
682 title = con->title_format == NULL ? win->name : con_parse_title_format(con);
683 }
684 if (title == NULL) {
685 goto copy_pixmaps;
686 }
687
688 /* Set Qubes window title only when the container has a title and contains
689 * a window. */
690 if (win != NULL) {
691 char *title_buf;
692 sasprintf(&title_buf, "[%s] %s", i3string_as_utf8(win->qubes_vmname), i3string_as_utf8(title));
693 if (con->title_format != NULL)
694 I3STRING_FREE(title);
695 title = i3string_from_utf8(title_buf);
696 FREE(title_buf);
697 }
698
699 int title_offset_x;
700 switch (config.title_align) {
701 case ALIGN_LEFT:
702 /* (pad)[text ](pad)[mark + its pad) */
703 title_offset_x = title_padding;
704 break;
705 case ALIGN_CENTER:
706 /* (pad)[ text ](pad)[mark + its pad)
707 * To center the text inside its allocated space, the surface
708 * between the brackets, we use the formula
709 * (surface_width - predict_text_width) / 2
710 * where surface_width = deco_width - 2 * pad - mark_width
711 * so, offset = pad + (surface_width - predict_text_width) / 2 =
712 * = … = (deco_width - mark_width - predict_text_width) / 2 */
713 title_offset_x = max(title_padding, (deco_width - mark_width - predict_text_width(title)) / 2);
714 break;
715 case ALIGN_RIGHT:
716 /* [mark + its pad](pad)[ text](pad) */
717 title_offset_x = max(title_padding + mark_width, deco_width - title_padding - predict_text_width(title));
718 break;
719 }
720
721 draw_util_text(title, &(parent->frame_buffer),
722 p->color->text, p->color->background,
723 con->deco_rect.x + title_offset_x,
724 con->deco_rect.y + text_offset_y,
725 deco_width - mark_width - 2 * title_padding);
726
727 I3STRING_FREE(title);
728
730copy_pixmaps:
732}
733
734/*
735 * Recursively calls x_draw_decoration. This cannot be done in x_push_node
736 * because x_push_node uses focus order to recurse (see the comment above)
737 * while drawing the decoration needs to happen in the actual order.
738 *
739 */
741 Con *current;
742 bool leaf = TAILQ_EMPTY(&(con->nodes_head)) &&
745
746 if (!leaf) {
747 TAILQ_FOREACH(current, &(con->nodes_head), nodes)
748 x_deco_recurse(current);
749
750 TAILQ_FOREACH(current, &(con->floating_head), floating_windows)
751 x_deco_recurse(current);
752
753 if (state->mapped) {
755 }
756 }
757
758 if ((con->type != CT_ROOT && con->type != CT_OUTPUT) &&
759 (!leaf || con->mapped))
761}
762
763/*
764 * Sets or removes the _NET_WM_STATE_HIDDEN property on con if necessary.
765 *
766 */
767static void set_hidden_state(Con *con) {
768 if (con->window == NULL) {
769 return;
770 }
771
773 bool should_be_hidden = con_is_hidden(con);
774 if (should_be_hidden == state->is_hidden)
775 return;
776
777 if (should_be_hidden) {
778 DLOG("setting _NET_WM_STATE_HIDDEN for con = %p\n", con);
779 xcb_add_property_atom(conn, con->window->id, A__NET_WM_STATE, A__NET_WM_STATE_HIDDEN);
780 } else {
781 DLOG("removing _NET_WM_STATE_HIDDEN for con = %p\n", con);
782 xcb_remove_property_atom(conn, con->window->id, A__NET_WM_STATE, A__NET_WM_STATE_HIDDEN);
783 }
784
785 state->is_hidden = should_be_hidden;
786}
787
788/*
789 * Set the container frame shape as the union of the window shape and the
790 * shape of the frame borders.
791 */
792static void x_shape_frame(Con *con, xcb_shape_sk_t shape_kind) {
793 assert(con->window);
794
795 xcb_shape_combine(conn, XCB_SHAPE_SO_SET, shape_kind, shape_kind,
796 con->frame.id,
799 con->window->id);
800 xcb_rectangle_t rectangles[4];
801 size_t rectangles_count = x_get_border_rectangles(con, rectangles);
802 if (rectangles_count) {
803 xcb_shape_rectangles(conn, XCB_SHAPE_SO_UNION, shape_kind,
804 XCB_CLIP_ORDERING_UNSORTED, con->frame.id,
805 0, 0, rectangles_count, rectangles);
806 }
807}
808
809/*
810 * Reset the container frame shape.
811 */
812static void x_unshape_frame(Con *con, xcb_shape_sk_t shape_kind) {
813 assert(con->window);
814
815 xcb_shape_mask(conn, XCB_SHAPE_SO_SET, shape_kind, con->frame.id, 0, 0, XCB_PIXMAP_NONE);
816}
817
818/*
819 * Shape or unshape container frame based on the con state.
820 */
821static void set_shape_state(Con *con, bool need_reshape) {
822 if (!shape_supported || con->window == NULL) {
823 return;
824 }
825
826 struct con_state *state;
827 if ((state = state_for_frame(con->frame.id)) == NULL) {
828 ELOG("window state for con %p not found\n", con);
829 return;
830 }
831
832 if (need_reshape && con_is_floating(con)) {
833 /* We need to reshape the window frame only if it already has shape. */
834 if (con->window->shaped) {
835 x_shape_frame(con, XCB_SHAPE_SK_BOUNDING);
836 }
837 if (con->window->input_shaped) {
838 x_shape_frame(con, XCB_SHAPE_SK_INPUT);
839 }
840 }
841
842 if (state->was_floating && !con_is_floating(con)) {
843 /* Remove the shape when container is no longer floating. */
844 if (con->window->shaped) {
845 x_unshape_frame(con, XCB_SHAPE_SK_BOUNDING);
846 }
847 if (con->window->input_shaped) {
848 x_unshape_frame(con, XCB_SHAPE_SK_INPUT);
849 }
850 }
851}
852
853/*
854 * This function pushes the properties of each node of the layout tree to
855 * X11 if they have changed (like the map state, position of the window, …).
856 * It recursively traverses all children of the given node.
857 *
858 */
860 Con *current;
862 Rect rect = con->rect;
863
864 //DLOG("Pushing changes for node %p / %s\n", con, con->name);
866
867 if (state->name != NULL) {
868 DLOG("pushing name %s for con %p\n", state->name, con);
869
870 xcb_change_property(conn, XCB_PROP_MODE_REPLACE, con->frame.id,
871 XCB_ATOM_WM_NAME, XCB_ATOM_STRING, 8, strlen(state->name), state->name);
872 FREE(state->name);
873 }
874
875 if (con->window == NULL) {
876 /* Calculate the height of all window decorations which will be drawn on to
877 * this frame. */
878 uint32_t max_y = 0, max_height = 0;
879 TAILQ_FOREACH(current, &(con->nodes_head), nodes) {
880 Rect *dr = &(current->deco_rect);
881 if (dr->y >= max_y && dr->height >= max_height) {
882 max_y = dr->y;
883 max_height = dr->height;
884 }
885 }
886 rect.height = max_y + max_height;
887 if (rect.height == 0)
888 con->mapped = false;
889 }
890
891 bool need_reshape = false;
892
893 /* reparent the child window (when the window was moved due to a sticky
894 * container) */
895 if (state->need_reparent && con->window != NULL) {
896 DLOG("Reparenting child window\n");
897
898 /* Temporarily set the event masks to XCB_NONE so that we won’t get
899 * UnmapNotify events (otherwise the handler would close the container).
900 * These events are generated automatically when reparenting. */
901 uint32_t values[] = {XCB_NONE};
902 xcb_change_window_attributes(conn, state->old_frame, XCB_CW_EVENT_MASK, values);
903 xcb_change_window_attributes(conn, con->window->id, XCB_CW_EVENT_MASK, values);
904
905 xcb_reparent_window(conn, con->window->id, con->frame.id, 0, 0);
906
907 values[0] = FRAME_EVENT_MASK;
908 xcb_change_window_attributes(conn, state->old_frame, XCB_CW_EVENT_MASK, values);
909 values[0] = CHILD_EVENT_MASK;
910 xcb_change_window_attributes(conn, con->window->id, XCB_CW_EVENT_MASK, values);
911
912 state->old_frame = XCB_NONE;
913 state->need_reparent = false;
914
915 con->ignore_unmap++;
916 DLOG("ignore_unmap for reparenting of con %p (win 0x%08x) is now %d\n",
918
919 need_reshape = true;
920 }
921
922 /* We need to update shape when window frame dimensions is updated. */
923 need_reshape |= state->rect.width != rect.width ||
924 state->rect.height != rect.height ||
925 state->window_rect.width != con->window_rect.width ||
926 state->window_rect.height != con->window_rect.height;
927
928 /* We need to set shape when container becomes floating. */
929 need_reshape |= con_is_floating(con) && !state->was_floating;
930
931 /* The pixmap of a borderless leaf container will not be used except
932 * for the titlebar in a stack or tabs (issue #1013). */
933 bool is_pixmap_needed = (con->border_style != BS_NONE ||
934 !con_is_leaf(con) ||
935 con->parent->layout == L_STACKED ||
937
938 /* The root con and output cons will never require a pixmap. In particular for the
939 * __i3 output, this will likely not work anyway because it might be ridiculously
940 * large, causing an XCB_ALLOC error. */
941 if (con->type == CT_ROOT || con->type == CT_OUTPUT)
942 is_pixmap_needed = false;
943
944 bool fake_notify = false;
945 /* Set new position if rect changed (and if height > 0) or if the pixmap
946 * needs to be recreated */
947 if ((is_pixmap_needed && con->frame_buffer.id == XCB_NONE) || (!rect_equals(state->rect, rect) &&
948 rect.height > 0)) {
949 /* We first create the new pixmap, then render to it, set it as the
950 * background and only afterwards change the window size. This reduces
951 * flickering. */
952
953 bool has_rect_changed = (state->rect.x != rect.x || state->rect.y != rect.y ||
954 state->rect.width != rect.width || state->rect.height != rect.height);
955
956 /* Check if the container has an unneeded pixmap left over from
957 * previously having a border or titlebar. */
958 if (!is_pixmap_needed && con->frame_buffer.id != XCB_NONE) {
960 xcb_free_pixmap(conn, con->frame_buffer.id);
961 con->frame_buffer.id = XCB_NONE;
962 }
963
964 if (is_pixmap_needed && (has_rect_changed || con->frame_buffer.id == XCB_NONE)) {
965 if (con->frame_buffer.id == XCB_NONE) {
966 con->frame_buffer.id = xcb_generate_id(conn);
967 } else {
969 xcb_free_pixmap(conn, con->frame_buffer.id);
970 }
971
972 uint16_t win_depth = root_depth;
973 if (con->window)
974 win_depth = con->window->depth;
975
976 /* Ensure we have valid dimensions for our surface. */
977 // TODO This is probably a bug in the condition above as we should never enter this path
978 // for height == 0. Also, we should probably handle width == 0 the same way.
979 int width = MAX((int32_t)rect.width, 1);
980 int height = MAX((int32_t)rect.height, 1);
981
982 xcb_create_pixmap(conn, win_depth, con->frame_buffer.id, con->frame.id, width, height);
984 get_visualtype_by_id(get_visualid_by_depth(win_depth)), width, height);
985
986 /* For the graphics context, we disable GraphicsExposure events.
987 * Those will be sent when a CopyArea request cannot be fulfilled
988 * properly due to parts of the source being unmapped or otherwise
989 * unavailable. Since we always copy from pixmaps to windows, this
990 * is not a concern for us. */
991 xcb_change_gc(conn, con->frame_buffer.gc, XCB_GC_GRAPHICS_EXPOSURES, (uint32_t[]){0});
992
993 draw_util_surface_set_size(&(con->frame), width, height);
994 con->pixmap_recreated = true;
995
996 /* Don’t render the decoration for windows inside a stack which are
997 * not visible right now */
998 // TODO Should this work the same way for L_TABBED?
999 if (!con->parent ||
1000 con->parent->layout != L_STACKED ||
1002 /* Render the decoration now to make the correct decoration visible
1003 * from the very first moment. Later calls will be cached, so this
1004 * doesn’t hurt performance. */
1006 }
1007
1008 DLOG("setting rect (%d, %d, %d, %d)\n", rect.x, rect.y, rect.width, rect.height);
1009 /* flush to ensure that the following commands are sent in a single
1010 * buffer and will be processed directly afterwards (the contents of a
1011 * window get lost when resizing it, therefore we want to provide it as
1012 * fast as possible) */
1013 xcb_flush(conn);
1015 if (con->frame_buffer.id != XCB_NONE) {
1017 }
1018 xcb_flush(conn);
1019
1020 memcpy(&(state->rect), &rect, sizeof(Rect));
1021 fake_notify = true;
1022 }
1023
1024 /* dito, but for child windows */
1025 if (con->window != NULL &&
1026 !rect_equals(state->window_rect, con->window_rect)) {
1027 DLOG("setting window rect (%d, %d, %d, %d)\n",
1030 memcpy(&(state->window_rect), &(con->window_rect), sizeof(Rect));
1031 fake_notify = true;
1032 }
1033
1034 set_shape_state(con, need_reshape);
1035
1036 /* Map if map state changed, also ensure that the child window
1037 * is changed if we are mapped and there is a new, unmapped child window.
1038 * Unmaps are handled in x_push_node_unmaps(). */
1039 if ((state->mapped != con->mapped || (con->window != NULL && !state->child_mapped)) &&
1040 con->mapped) {
1041 xcb_void_cookie_t cookie;
1042
1043 if (con->window != NULL) {
1044 /* Set WM_STATE_NORMAL because GTK applications don’t want to
1045 * drag & drop if we don’t. Also, xprop(1) needs it. */
1046 long data[] = {XCB_ICCCM_WM_STATE_NORMAL, XCB_NONE};
1047 xcb_change_property(conn, XCB_PROP_MODE_REPLACE, con->window->id,
1048 A_WM_STATE, A_WM_STATE, 32, 2, data);
1049 }
1050
1051 uint32_t values[1];
1052 if (!state->child_mapped && con->window != NULL) {
1053 cookie = xcb_map_window(conn, con->window->id);
1054
1055 /* We are interested in EnterNotifys as soon as the window is
1056 * mapped */
1057 values[0] = CHILD_EVENT_MASK;
1058 xcb_change_window_attributes(conn, con->window->id, XCB_CW_EVENT_MASK, values);
1059 DLOG("mapping child window (serial %d)\n", cookie.sequence);
1060 state->child_mapped = true;
1061 }
1062
1063 cookie = xcb_map_window(conn, con->frame.id);
1064
1065 values[0] = FRAME_EVENT_MASK;
1066 xcb_change_window_attributes(conn, con->frame.id, XCB_CW_EVENT_MASK, values);
1067
1068 /* copy the pixmap contents to the frame window immediately after mapping */
1069 if (con->frame_buffer.id != XCB_NONE) {
1071 }
1072 xcb_flush(conn);
1073
1074 DLOG("mapping container %08x (serial %d)\n", con->frame.id, cookie.sequence);
1075 state->mapped = con->mapped;
1076 }
1077
1078 state->unmap_now = (state->mapped != con->mapped) && !con->mapped;
1079 state->was_floating = con_is_floating(con);
1080
1081 if (fake_notify) {
1082 DLOG("Sending fake configure notify\n");
1084 }
1085
1087
1088 /* Handle all children and floating windows of this node. We recurse
1089 * in focus order to display the focused client in a stack first when
1090 * switching workspaces (reduces flickering). */
1091 TAILQ_FOREACH(current, &(con->focus_head), focused) {
1092 x_push_node(current);
1093 }
1094}
1095
1096/*
1097 * Same idea as in x_push_node(), but this function only unmaps windows. It is
1098 * necessary to split this up to handle new fullscreen clients properly: The
1099 * new window needs to be mapped and focus needs to be set *before* the
1100 * underlying windows are unmapped. Otherwise, focus will revert to the
1101 * PointerRoot and will then be set to the new window, generating unnecessary
1102 * FocusIn/FocusOut events.
1103 *
1104 */
1106 Con *current;
1108
1109 //DLOG("Pushing changes (with unmaps) for node %p / %s\n", con, con->name);
1111
1112 /* map/unmap if map state changed, also ensure that the child window
1113 * is changed if we are mapped *and* in initial state (meaning the
1114 * container was empty before, but now got a child) */
1115 if (state->unmap_now) {
1116 xcb_void_cookie_t cookie;
1117 if (con->window != NULL) {
1118 /* Set WM_STATE_WITHDRAWN, it seems like Java apps need it */
1119 long data[] = {XCB_ICCCM_WM_STATE_WITHDRAWN, XCB_NONE};
1120 xcb_change_property(conn, XCB_PROP_MODE_REPLACE, con->window->id,
1121 A_WM_STATE, A_WM_STATE, 32, 2, data);
1122 }
1123
1124 cookie = xcb_unmap_window(conn, con->frame.id);
1125 DLOG("unmapping container %p / %s (serial %d)\n", con, con->name, cookie.sequence);
1126 /* we need to increase ignore_unmap for this container (if it
1127 * contains a window) and for every window "under" this one which
1128 * contains a window */
1129 if (con->window != NULL) {
1130 con->ignore_unmap++;
1131 DLOG("ignore_unmap for con %p (frame 0x%08x) now %d\n", con, con->frame.id, con->ignore_unmap);
1132 }
1133 state->mapped = con->mapped;
1134 }
1135
1136 /* handle all children and floating windows of this node */
1137 TAILQ_FOREACH(current, &(con->nodes_head), nodes)
1138 x_push_node_unmaps(current);
1139
1140 TAILQ_FOREACH(current, &(con->floating_head), floating_windows)
1141 x_push_node_unmaps(current);
1142}
1143
1144/*
1145 * Returns true if the given container is currently attached to its parent.
1146 *
1147 * TODO: Remove once #1185 has been fixed
1148 */
1149static bool is_con_attached(Con *con) {
1150 if (con->parent == NULL)
1151 return false;
1152
1153 Con *current;
1154 TAILQ_FOREACH(current, &(con->parent->nodes_head), nodes) {
1155 if (current == con)
1156 return true;
1157 }
1158
1159 return false;
1160}
1161
1162/*
1163 * Pushes all changes (state of each node, see x_push_node() and the window
1164 * stack) to X11.
1165 *
1166 * NOTE: We need to push the stack first so that the windows have the correct
1167 * stacking order. This is relevant for workspace switching where we map the
1168 * windows because mapping may generate EnterNotify events. When they are
1169 * generated in the wrong order, this will cause focus problems when switching
1170 * workspaces.
1171 *
1172 */
1175 xcb_query_pointer_cookie_t pointercookie;
1176
1177 /* If we need to warp later, we request the pointer position as soon as possible */
1178 if (warp_to) {
1179 pointercookie = xcb_query_pointer(conn, root);
1180 }
1181
1182 DLOG("-- PUSHING WINDOW STACK --\n");
1183 //DLOG("Disabling EnterNotify\n");
1184 /* We need to keep SubstructureRedirect around, otherwise clients can send
1185 * ConfigureWindow requests and get them applied directly instead of having
1186 * them become ConfigureRequests that i3 handles. */
1187 uint32_t values[1] = {XCB_EVENT_MASK_SUBSTRUCTURE_REDIRECT};
1189 if (state->mapped)
1190 xcb_change_window_attributes(conn, state->id, XCB_CW_EVENT_MASK, values);
1191 }
1192 //DLOG("Done, EnterNotify disabled\n");
1193 bool order_changed = false;
1194 bool stacking_changed = false;
1195
1196 /* count first, necessary to (re)allocate memory for the bottom-to-top
1197 * stack afterwards */
1198 int cnt = 0;
1200 if (con_has_managed_window(state->con))
1201 cnt++;
1202
1203 /* The bottom-to-top window stack of all windows which are managed by i3.
1204 * Used for x_get_window_stack(). */
1205 static xcb_window_t *client_list_windows = NULL;
1206 static int client_list_count = 0;
1207
1208 if (cnt != client_list_count) {
1209 client_list_windows = srealloc(client_list_windows, sizeof(xcb_window_t) * cnt);
1210 client_list_count = cnt;
1211 }
1212
1213 xcb_window_t *walk = client_list_windows;
1214
1215 /* X11 correctly represents the stack if we push it from bottom to top */
1217 if (con_has_managed_window(state->con))
1218 memcpy(walk++, &(state->con->window->id), sizeof(xcb_window_t));
1219
1220 //DLOG("stack: 0x%08x\n", state->id);
1222 con_state *old_prev = CIRCLEQ_PREV(state, old_state);
1223 if (prev != old_prev)
1224 order_changed = true;
1225 if ((state->initial || order_changed) && prev != CIRCLEQ_END(&state_head)) {
1226 stacking_changed = true;
1227 //DLOG("Stacking 0x%08x above 0x%08x\n", prev->id, state->id);
1228 uint32_t mask = 0;
1229 mask |= XCB_CONFIG_WINDOW_SIBLING;
1230 mask |= XCB_CONFIG_WINDOW_STACK_MODE;
1231 uint32_t values[] = {state->id, XCB_STACK_MODE_ABOVE};
1232
1233 xcb_configure_window(conn, prev->id, mask, values);
1234 }
1235 state->initial = false;
1236 }
1237
1238 /* If we re-stacked something (or a new window appeared), we need to update
1239 * the _NET_CLIENT_LIST and _NET_CLIENT_LIST_STACKING hints */
1240 if (stacking_changed) {
1241 DLOG("Client list changed (%i clients)\n", cnt);
1242 ewmh_update_client_list_stacking(client_list_windows, client_list_count);
1243
1244 walk = client_list_windows;
1245
1246 /* reorder by initial mapping */
1248 if (con_has_managed_window(state->con))
1249 *walk++ = state->con->window->id;
1250 }
1251
1252 ewmh_update_client_list(client_list_windows, client_list_count);
1253 }
1254
1255 DLOG("PUSHING CHANGES\n");
1257
1258 if (warp_to) {
1259 xcb_query_pointer_reply_t *pointerreply = xcb_query_pointer_reply(conn, pointercookie, NULL);
1260 if (!pointerreply) {
1261 ELOG("Could not query pointer position, not warping pointer\n");
1262 } else {
1263 int mid_x = warp_to->x + (warp_to->width / 2);
1264 int mid_y = warp_to->y + (warp_to->height / 2);
1265
1266 Output *current = get_output_containing(pointerreply->root_x, pointerreply->root_y);
1267 Output *target = get_output_containing(mid_x, mid_y);
1268 if (current != target) {
1269 /* Ignore MotionNotify events generated by warping */
1270 xcb_change_window_attributes(conn, root, XCB_CW_EVENT_MASK, (uint32_t[]){XCB_EVENT_MASK_SUBSTRUCTURE_REDIRECT});
1271 xcb_warp_pointer(conn, XCB_NONE, root, 0, 0, 0, 0, mid_x, mid_y);
1272 xcb_change_window_attributes(conn, root, XCB_CW_EVENT_MASK, (uint32_t[]){ROOT_EVENT_MASK});
1273 }
1274
1275 free(pointerreply);
1276 }
1277 warp_to = NULL;
1278 }
1279
1280 //DLOG("Re-enabling EnterNotify\n");
1281 values[0] = FRAME_EVENT_MASK;
1283 if (state->mapped)
1284 xcb_change_window_attributes(conn, state->id, XCB_CW_EVENT_MASK, values);
1285 }
1286 //DLOG("Done, EnterNotify re-enabled\n");
1287
1289
1290 xcb_window_t to_focus = focused->frame.id;
1291 if (focused->window != NULL)
1293
1294 if (focused_id != to_focus) {
1295 if (!focused->mapped) {
1296 DLOG("Not updating focus (to %p / %s), focused window is not mapped.\n", focused, focused->name);
1297 /* Invalidate focused_id to correctly focus new windows with the same ID */
1298 focused_id = XCB_NONE;
1299 } else {
1300 if (focused->window != NULL &&
1303 DLOG("Updating focus by sending WM_TAKE_FOCUS to window 0x%08x (focused: %p / %s)\n",
1306
1308
1311 } else {
1312 DLOG("Updating focus (focused: %p / %s) to X11 window 0x%08x\n", focused, focused->name, to_focus);
1313 /* We remove XCB_EVENT_MASK_FOCUS_CHANGE from the event mask to get
1314 * no focus change events for our own focus changes. We only want
1315 * these generated by the clients. */
1316 if (focused->window != NULL) {
1317 values[0] = CHILD_EVENT_MASK & ~(XCB_EVENT_MASK_FOCUS_CHANGE);
1318 xcb_change_window_attributes(conn, focused->window->id, XCB_CW_EVENT_MASK, values);
1319 }
1320 xcb_set_input_focus(conn, XCB_INPUT_FOCUS_POINTER_ROOT, to_focus, last_timestamp);
1321 if (focused->window != NULL) {
1322 values[0] = CHILD_EVENT_MASK;
1323 xcb_change_window_attributes(conn, focused->window->id, XCB_CW_EVENT_MASK, values);
1324 }
1325
1327
1328 if (to_focus != XCB_NONE && to_focus != last_focused && focused->window != NULL && is_con_attached(focused))
1330 }
1331
1333 }
1334 }
1335
1336 if (focused_id == XCB_NONE) {
1337 /* If we still have no window to focus, we focus the EWMH window instead. We use this rather than the
1338 * root window in order to avoid an X11 fallback mechanism causing a ghosting effect (see #1378). */
1339 DLOG("Still no window focused, better set focus to the EWMH support window (%d)\n", ewmh_window);
1340 xcb_set_input_focus(conn, XCB_INPUT_FOCUS_POINTER_ROOT, ewmh_window, last_timestamp);
1341 change_ewmh_focus(XCB_WINDOW_NONE, last_focused);
1342
1344 last_focused = XCB_NONE;
1345 }
1346
1347 xcb_flush(conn);
1348 DLOG("ENDING CHANGES\n");
1349
1350 /* Disable EnterWindow events for windows which will be unmapped in
1351 * x_push_node_unmaps() now. Unmapping windows happens when switching
1352 * workspaces. We want to avoid getting EnterNotifies during that phase
1353 * because they would screw up our focus. One of these cases is having a
1354 * stack with two windows. If the first window is focused and gets
1355 * unmapped, the second one appears under the cursor and therefore gets an
1356 * EnterNotify event. */
1357 values[0] = FRAME_EVENT_MASK & ~XCB_EVENT_MASK_ENTER_WINDOW;
1359 if (!state->unmap_now)
1360 continue;
1361 xcb_change_window_attributes(conn, state->id, XCB_CW_EVENT_MASK, values);
1362 }
1363
1364 /* Push all pending unmaps */
1366
1367 /* save the current stack as old stack */
1371 }
1372 //CIRCLEQ_FOREACH(state, &old_state_head, old_state) {
1373 // DLOG("old stack: 0x%08x\n", state->id);
1374 //}
1375
1376 xcb_flush(conn);
1377}
1378
1379/*
1380 * Raises the specified container in the internal stack of X windows. The
1381 * next call to x_push_changes() will make the change visible in X11.
1382 *
1383 */
1387 //DLOG("raising in new stack: %p / %s / %s / xid %08x\n", con, con->name, con->window ? con->window->name_json : "", state->id);
1388
1391}
1392
1393/*
1394 * Sets the WM_NAME property (so, no UTF8, but used only for debugging anyways)
1395 * of the given name. Used for properly tagging the windows for easily spotting
1396 * i3 windows in xwininfo -root -all.
1397 *
1398 */
1399void x_set_name(Con *con, const char *name) {
1400 struct con_state *state;
1401
1402 if ((state = state_for_frame(con->frame.id)) == NULL) {
1403 ELOG("window state not found\n");
1404 return;
1405 }
1406
1407 FREE(state->name);
1408 state->name = sstrdup(name);
1409}
1410
1411/*
1412 * Set up the I3_SHMLOG_PATH atom.
1413 *
1414 */
1416 if (*shmlogname == '\0') {
1417 xcb_delete_property(conn, root, A_I3_SHMLOG_PATH);
1418 } else {
1419 xcb_change_property(conn, XCB_PROP_MODE_REPLACE, root,
1420 A_I3_SHMLOG_PATH, A_UTF8_STRING, 8,
1421 strlen(shmlogname), shmlogname);
1422 }
1423}
1424
1425/*
1426 * Sets up i3 specific atoms (I3_SOCKET_PATH and I3_CONFIG_PATH)
1427 *
1428 */
1429void x_set_i3_atoms(void) {
1430 pid_t pid = getpid();
1431 xcb_change_property(conn, XCB_PROP_MODE_REPLACE, root, A_I3_SOCKET_PATH, A_UTF8_STRING, 8,
1432 (current_socketpath == NULL ? 0 : strlen(current_socketpath)),
1434 xcb_change_property(conn, XCB_PROP_MODE_REPLACE, root, A_I3_PID, XCB_ATOM_CARDINAL, 32, 1, &pid);
1435 xcb_change_property(conn, XCB_PROP_MODE_REPLACE, root, A_I3_CONFIG_PATH, A_UTF8_STRING, 8,
1438}
1439
1440/*
1441 * Set warp_to coordinates. This will trigger on the next call to
1442 * x_push_changes().
1443 *
1444 */
1447 warp_to = rect;
1448}
1449
1450/*
1451 * Applies the given mask to the event mask of every i3 window decoration X11
1452 * window. This is useful to disable EnterNotify while resizing so that focus
1453 * is untouched.
1454 *
1455 */
1456void x_mask_event_mask(uint32_t mask) {
1457 uint32_t values[] = {FRAME_EVENT_MASK & mask};
1458
1461 if (state->mapped)
1462 xcb_change_window_attributes(conn, state->id, XCB_CW_EVENT_MASK, values);
1463 }
1464}
1465
1466/*
1467 * Enables or disables nonrectangular shape of the container frame.
1468 */
1469void x_set_shape(Con *con, xcb_shape_sk_t kind, bool enable) {
1470 struct con_state *state;
1471 if ((state = state_for_frame(con->frame.id)) == NULL) {
1472 ELOG("window state for con %p not found\n", con);
1473 return;
1474 }
1475
1476 switch (kind) {
1477 case XCB_SHAPE_SK_BOUNDING:
1478 con->window->shaped = enable;
1479 break;
1480 case XCB_SHAPE_SK_INPUT:
1481 con->window->input_shaped = enable;
1482 break;
1483 default:
1484 ELOG("Received unknown shape event kind for con %p. This is a bug.\n",
1485 con);
1486 return;
1487 }
1488
1489 if (con_is_floating(con)) {
1490 if (enable) {
1491 x_shape_frame(con, kind);
1492 } else {
1493 x_unshape_frame(con, kind);
1494 }
1495
1496 xcb_flush(conn);
1497 }
1498}
char * current_socketpath
Definition: ipc.c:23
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
struct pending_marks * marks
static Con * to_focus
Definition: load_layout.c:23
bool rect_equals(Rect a, Rect b)
Definition: util.c:56
int max(int a, int b)
Definition: util.c:31
struct Con * focused
Definition: tree.c:13
#define y(x,...)
Definition: commands.c:21
static Rect * warp_to
Definition: x.c:26
static void change_ewmh_focus(xcb_window_t new_focus, xcb_window_t old_focus)
Definition: x.c:110
static void x_shape_frame(Con *con, xcb_shape_sk_t shape_kind)
Definition: x.c:792
void x_con_init(Con *con)
Initializes the X11 part for the given container.
Definition: x.c:131
static size_t x_get_border_rectangles(Con *con, xcb_rectangle_t rectangles[4])
Definition: x.c:413
static void x_push_node_unmaps(Con *con)
Definition: x.c:1105
void x_move_win(Con *src, Con *dest)
Moves a child window from Container src to Container dest.
Definition: x.c:236
void x_deco_recurse(Con *con)
Recursively calls x_draw_decoration.
Definition: x.c:740
xcb_window_t focused_id
Stores the X11 window ID of the currently focused window.
Definition: x.c:18
static void x_draw_title_border(Con *con, struct deco_render_params *p)
Definition: x.c:362
static void set_hidden_state(Con *con)
Definition: x.c:767
void update_shmlog_atom(void)
Set up the SHMLOG_PATH atom.
Definition: x.c:1415
void x_reparent_child(Con *con, Con *old)
Reparents the child window of the given container (necessary for sticky containers).
Definition: x.c:221
static void x_draw_decoration_after_title(Con *con, struct deco_render_params *p)
Definition: x.c:384
initial_mapping_head
Definition: x.c:83
static xcb_window_t last_focused
Definition: x.c:23
state_head
Definition: x.c:75
void x_con_reframe(Con *con)
Definition: x.c:298
void x_set_warp_to(Rect *rect)
Set warp_to coordinates.
Definition: x.c:1445
void x_reinit(Con *con)
Re-initializes the associated X window state for this container.
Definition: x.c:201
void x_window_kill(xcb_window_t window, kill_window_t kill_window)
Kills the given X11 window using WM_DELETE_WINDOW (if supported).
Definition: x.c:330
old_state_head
Definition: x.c:79
void x_raise_con(Con *con)
Raises the specified container in the internal stack of X windows.
Definition: x.c:1384
static void set_shape_state(Con *con, bool need_reshape)
Definition: x.c:821
static void _x_con_kill(Con *con)
Definition: x.c:258
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
#define MAX(x, y)
Definition: x.c:14
void x_draw_decoration(Con *con)
Draws the decoration of the given container onto its parent.
Definition: x.c:463
void x_push_node(Con *con)
This function pushes the properties of each node of the layout tree to X11 if they have changed (like...
Definition: x.c:859
void x_set_i3_atoms(void)
Sets up i3 specific atoms (I3_SOCKET_PATH and I3_CONFIG_PATH)
Definition: x.c:1429
static void x_unshape_frame(Con *con, xcb_shape_sk_t shape_kind)
Definition: x.c:812
static con_state * state_for_frame(xcb_window_t window)
Definition: x.c:93
void x_mask_event_mask(uint32_t mask)
Applies the given mask to the event mask of every i3 window decoration X11 window.
Definition: x.c:1456
void x_push_changes(Con *con)
Pushes all changes (state of each node, see x_push_node() and the window stack) to X11.
Definition: x.c:1173
static bool is_con_attached(Con *con)
Definition: x.c:1149
void x_con_kill(Con *con)
Kills the window decoration associated with the given container.
Definition: x.c:289
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 x_set_shape(Con *con, xcb_shape_sk_t kind, bool enable)
Enables or disables nonrectangular shape of the container frame.
Definition: x.c:1469
Config config
Definition: config.c:17
char * current_configpath
Definition: config.c:15
char * con_get_tree_representation(Con *con)
Create a string representing the subtree under con.
Definition: con.c:2199
bool con_is_floating(Con *con)
Returns true if the node is floating.
Definition: con.c:575
bool con_has_managed_window(Con *con)
Returns true when this con is a leaf node with a managed X11 window (e.g., excluding dock containers)
Definition: con.c:345
bool con_is_hidden(Con *con)
This will only return true for containers which have some parent with a tabbed / stacked parent of wh...
Definition: con.c:380
Rect con_border_style_rect(Con *con)
Returns a "relative" Rect which contains the amount of pixels that need to be added to the original R...
Definition: con.c:1623
int con_border_style(Con *con)
Use this function to get a container’s border style.
Definition: con.c:1703
i3String * con_parse_title_format(Con *con)
Returns the window title considering the current title format.
Definition: con.c:2262
bool con_inside_focused(Con *con)
Checks if the given container is inside a focused container.
Definition: con.c:617
bool con_is_leaf(Con *con)
Returns true when this node is a leaf node (has no children)
Definition: con.c:337
adjacent_t con_adjacent_borders(Con *con)
Returns adjacent borders of the window.
Definition: con.c:1674
char * shmlogname
Definition: log.c:46
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_timestamp_t last_timestamp
The last timestamp we got from X11 (timestamps are included in some events and are used for some thin...
Definition: main.c:54
xcb_connection_t * conn
XCB connection and root screen.
Definition: main.c:44
xcb_colormap_t colormap
Definition: main.c:64
uint8_t root_depth
Definition: main.c:62
xcb_window_t root
Definition: main.c:57
xcb_screen_t * root_screen
Definition: main.c:56
bool shape_supported
Definition: main.c:92
void ewmh_update_active_window(xcb_window_t window)
Updates _NET_ACTIVE_WINDOW with the currently focused window.
Definition: ewmh.c:205
void ewmh_update_client_list(xcb_window_t *list, int num_windows)
Updates the _NET_CLIENT_LIST hint.
Definition: ewmh.c:245
void ewmh_update_focused(xcb_window_t window, bool is_focused)
Set or remove _NEW_WM_STATE_FOCUSED on the window.
Definition: ewmh.c:291
xcb_window_t ewmh_window
The EWMH support window that is used to indicate that an EWMH-compliant window manager is present.
Definition: ewmh.c:12
void ewmh_update_client_list_stacking(xcb_window_t *stack, int num_windows)
Updates the _NET_CLIENT_LIST_STACKING hint.
Definition: ewmh.c:261
xcb_window_t create_window(xcb_connection_t *conn, Rect dims, uint16_t depth, xcb_visualid_t visual, uint16_t window_class, enum xcursor_cursor_t cursor, bool map, uint32_t mask, uint32_t *values)
Convenience wrapper around xcb_create_window which takes care of depth, generating an ID and checking...
Definition: xcb.c:19
xcb_visualid_t get_visualid_by_depth(uint16_t depth)
Get visualid with specified depth.
Definition: xcb.c:242
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
void send_take_focus(xcb_window_t window, xcb_timestamp_t timestamp)
Sends the WM_TAKE_FOCUS ClientMessage to the given window.
Definition: xcb.c:94
void xcb_add_property_atom(xcb_connection_t *conn, xcb_window_t window, xcb_atom_t property, xcb_atom_t atom)
Add an atom to a list of atoms the given property defines.
Definition: xcb.c:265
void xcb_remove_property_atom(xcb_connection_t *conn, xcb_window_t window, xcb_atom_t property, xcb_atom_t atom)
Remove an atom from a list of atoms the given property defines without removing any other potentially...
Definition: xcb.c:275
void fake_absolute_configure_notify(Con *con)
Generates a configure_notify_event with absolute coordinates (relative to the X root window,...
Definition: xcb.c:75
xcb_visualtype_t * get_visualtype_by_id(xcb_visualid_t visual_id)
Get visual type specified by visualid.
Definition: xcb.c:221
#define TAILQ_FOREACH(var, head, field)
Definition: queue.h:347
#define CIRCLEQ_FOREACH_REVERSE(var, head, field)
Definition: queue.h:476
#define CIRCLEQ_INSERT_HEAD(head, elm, field)
Definition: queue.h:512
#define TAILQ_HEAD(name, type)
Definition: queue.h:318
#define TAILQ_INSERT_TAIL(head, elm, field)
Definition: queue.h:376
#define TAILQ_PREV(elm, headname, field)
Definition: queue.h:342
#define CIRCLEQ_HEAD_INITIALIZER(head)
Definition: queue.h:448
#define TAILQ_FIRST(head)
Definition: queue.h:336
#define CIRCLEQ_INSERT_TAIL(head, elm, field)
Definition: queue.h:523
#define TAILQ_REMOVE(head, elm, field)
Definition: queue.h:402
#define CIRCLEQ_ENTRY(type)
Definition: queue.h:454
#define TAILQ_NEXT(elm, field)
Definition: queue.h:338
#define TAILQ_HEAD_INITIALIZER(head)
Definition: queue.h:324
#define TAILQ_EMPTY(head)
Definition: queue.h:344
#define CIRCLEQ_HEAD(name, type)
Definition: queue.h:442
#define CIRCLEQ_END(head)
Definition: queue.h:465
#define CIRCLEQ_PREV(elm, field)
Definition: queue.h:467
#define CIRCLEQ_REMOVE(head, elm, field)
Definition: queue.h:534
#define CIRCLEQ_FOREACH(var, head, field)
Definition: queue.h:471
#define TAILQ_ENTRY(type)
Definition: queue.h:327
void draw_util_surface_init(xcb_connection_t *conn, surface_t *surface, xcb_drawable_t drawable, xcb_visualtype_t *visual, int width, int height)
Initialize the surface to represent the given drawable.
struct _i3String i3String
Opaque data structure for storing strings.
Definition: libi3.h:48
void draw_util_copy_surface(surface_t *src, surface_t *dest, double src_x, double src_y, double dest_x, double dest_y, double width, double height)
Copies a surface onto another surface.
void draw_util_text(i3String *text, surface_t *surface, color_t fg_color, color_t bg_color, int x, int y, int max_width)
Draw the given text using libi3.
int logical_px(const int logical)
Convert a logical amount of pixels (e.g.
#define DLOG(fmt,...)
Definition: libi3.h:104
void draw_util_surface_free(xcb_connection_t *conn, surface_t *surface)
Destroys the surface.
#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
const char * i3string_as_utf8(i3String *str)
Returns the UTF-8 encoded version of the i3String.
#define COLOR_TRANSPARENT
Definition: libi3.h:423
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 * srealloc(void *ptr, size_t size)
Safe-wrapper around realloc which exits if realloc returns NULL (meaning that there is no more memory...
#define I3STRING_FREE(str)
Securely i3string_free by setting the pointer to NULL to prevent accidentally using freed memory.
Definition: libi3.h:236
void draw_util_surface_set_size(surface_t *surface, int width, int height)
Resize the surface to the given size.
void draw_util_rectangle(surface_t *surface, color_t color, double x, double y, double w, double h)
Draws a filled rectangle.
i3String * i3string_from_utf8(const char *from_utf8)
Build an i3String from an UTF-8 encoded string.
int predict_text_width(i3String *text)
Predict the text width in pixels for the given text.
void draw_util_clear_surface(surface_t *surface, color_t color)
Clears a surface with the given color.
bool font_is_pango(void)
Returns true if and only if the current font is a pango font.
@ POINTER_WARPING_NONE
Definition: data.h:135
@ L_STACKED
Definition: data.h:95
@ L_TABBED
Definition: data.h:96
@ L_SPLITH
Definition: data.h:100
@ L_SPLITV
Definition: data.h:99
adjacent_t
describes if the window is adjacent to the output (physical screen) edges.
Definition: data.h:75
@ ADJ_LEFT_SCREEN_EDGE
Definition: data.h:76
@ ADJ_LOWER_SCREEN_EDGE
Definition: data.h:79
@ ADJ_RIGHT_SCREEN_EDGE
Definition: data.h:77
@ ADJ_UPPER_SCREEN_EDGE
Definition: data.h:78
@ BS_NONE
Definition: data.h:65
@ BS_PIXEL
Definition: data.h:66
@ BS_NORMAL
Definition: data.h:64
kill_window_t
parameter to specify whether tree_close_internal() and x_window_kill() should kill only this specific...
Definition: data.h:70
@ KILL_WINDOW
Definition: data.h:71
qube_label_t
Qubes colors.
Definition: data.h:151
@ QUBE_DOM0
Definition: data.h:152
#define QUBE_NUM_LABELS
Definition: data.h:163
#define CHILD_EVENT_MASK
The XCB_CW_EVENT_MASK for the child (= real window)
Definition: xcb.h:35
#define ROOT_EVENT_MASK
Definition: xcb.h:49
#define FRAME_EVENT_MASK
The XCB_CW_EVENT_MASK for its frame.
Definition: xcb.h:40
@ XCURSOR_CURSOR_POINTER
Definition: xcursor.h:17
#define FREE(pointer)
Definition: util.h:47
Definition: x.c:36
xcb_window_t old_frame
Definition: x.c:50
bool need_reparent
Definition: x.c:49
Con * con
Definition: x.c:44
bool was_floating
Definition: x.c:55
xcb_window_t id
Definition: x.c:37
Rect rect
Definition: x.c:57
bool is_hidden
Definition: x.c:41
char * name
Definition: x.c:62
Rect window_rect
Definition: x.c:58
initial_mapping_order
Definition: x.c:71
old_state
Definition: x.c:68
state
Definition: x.c:65
bool child_mapped
Definition: x.c:40
bool initial
Definition: x.c:60
bool mapped
Definition: x.c:38
bool unmap_now
Definition: x.c:39
color_t border
Definition: configuration.h:55
color_t child_border
Definition: configuration.h:59
color_t indicator
Definition: configuration.h:58
color_t background
Definition: configuration.h:56
color_t text
Definition: configuration.h:57
enum Config::@7 title_align
Title alignment options.
i3Font font
Definition: configuration.h:98
hide_edge_borders_mode_t hide_edge_borders
Remove borders if they are adjacent to the screen edge.
warping_t mouse_warping
By default, when switching focus to a window on a different output (e.g.
bool show_marks
Specifies whether or not marks should be displayed in the window decoration.
struct Config::config_client client[QUBE_NUM_LABELS]
struct Colortriple focused
struct Colortriple unfocused
struct Colortriple urgent
struct Colortriple focused_inactive
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
Stores a width/height pair, used as part of deco_render_params to check whether the rects width/heigh...
Definition: data.h:199
Stores the parameters for rendering a window decoration.
Definition: data.h:210
int border_style
Definition: data.h:212
struct Colortriple * color
Definition: data.h:211
bool con_is_leaf
Definition: data.h:218
color_t background
Definition: data.h:216
layout_t parent_layout
Definition: data.h:217
struct width_height con_rect
Definition: data.h:213
Rect con_deco_rect
Definition: data.h:215
struct width_height con_window_rect
Definition: data.h:214
An Output is a physical output on your graphics driver.
Definition: data.h:393
A 'Window' is a type which contains an xcb_window_t and all the related information (hints like _NET_...
Definition: data.h:428
i3String * qubes_vmname
The name of the qubes vm.
Definition: data.h:448
bool input_shaped
The window has a nonrectangular input shape.
Definition: data.h:515
i3String * name
The name of the window.
Definition: data.h:445
bool name_x_changed
Flag to force re-rendering the decoration upon changes.
Definition: data.h:459
xcb_window_t id
Definition: data.h:429
int qubes_label
The qubes label.
Definition: data.h:451
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
uint16_t depth
Depth of the window.
Definition: data.h:489
Definition: data.h:630
char * name
Definition: data.h:631
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
struct Rect deco_rect
Definition: data.h:683
int border_width
Definition: data.h:706
struct Rect rect
Definition: data.h:677
enum Con::@20 type
focus_head
Definition: data.h:725
xcb_colormap_t colormap
Definition: data.h:801
bool pixmap_recreated
Definition: data.h:658
layout_t layout
Definition: data.h:751
bool mapped
Definition: data.h:642
uint8_t ignore_unmap
This counter contains the number of UnmapNotify events for this container (or, more precisely,...
Definition: data.h:653
struct Rect window_rect
Definition: data.h:680
struct Window * window
Definition: data.h:709
nodes_head
Definition: data.h:722
char * title_format
The format with which the window's name should be displayed.
Definition: data.h:690
surface_t frame
Definition: data.h:656
border_style_t border_style
Definition: data.h:752
char * name
Definition: data.h:687
uint16_t depth
Definition: data.h:798
surface_t frame_buffer
Definition: data.h:657
marks_head
Definition: data.h:699
floating_head
Definition: data.h:719
struct deco_render_params * deco_render_params
Cache for the decoration rendering.
Definition: data.h:715
bool mark_changed
Definition: data.h:701
bool urgent
Definition: data.h:646
int height
The height of the font, built from font_ascent + font_descent.
Definition: libi3.h:67
xcb_gcontext_t gc
Definition: libi3.h:566
xcb_drawable_t id
Definition: libi3.h:563