i3
ipc.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 * ipc.c: UNIX domain socket IPC (initialization, client handling, protocol).
8 *
9 */
10#include "all.h"
11
12#include "yajl_utils.h"
13
14#include <stdint.h>
15#include <sys/socket.h>
16#include <sys/un.h>
17#include <fcntl.h>
18#include <libgen.h>
19#include <ev.h>
20#include <yajl/yajl_gen.h>
21#include <yajl/yajl_parse.h>
22
23char *current_socketpath = NULL;
24
25TAILQ_HEAD(ipc_client_head, ipc_client)
27
28/*
29 * Puts the given socket file descriptor into non-blocking mode or dies if
30 * setting O_NONBLOCK failed. Non-blocking sockets are a good idea for our
31 * IPC model because we should by no means block the window manager.
32 *
33 */
34static void set_nonblock(int sockfd) {
35 int flags = fcntl(sockfd, F_GETFL, 0);
36 if (flags & O_NONBLOCK) {
37 return;
38 }
39 flags |= O_NONBLOCK;
40 if (fcntl(sockfd, F_SETFL, flags) < 0)
41 err(-1, "Could not set O_NONBLOCK");
42}
43
44static void ipc_client_timeout(EV_P_ ev_timer *w, int revents);
45static void ipc_socket_writeable_cb(EV_P_ struct ev_io *w, int revents);
46
47static ev_tstamp kill_timeout = 10.0;
48
49void ipc_set_kill_timeout(ev_tstamp new) {
50 kill_timeout = new;
51}
52
53/*
54 * Try to write the contents of the pending buffer to the client's subscription
55 * socket. Will set, reset or clear the timeout and io write callbacks depending
56 * on the result of the write operation.
57 *
58 */
59static void ipc_push_pending(ipc_client *client) {
60 const ssize_t result = writeall_nonblock(client->fd, client->buffer, client->buffer_size);
61 if (result < 0) {
62 return;
63 }
64
65 if ((size_t)result == client->buffer_size) {
66 /* Everything was written successfully: clear the timer and stop the io
67 * callback. */
68 FREE(client->buffer);
69 client->buffer_size = 0;
70 if (client->timeout) {
71 ev_timer_stop(main_loop, client->timeout);
72 FREE(client->timeout);
73 }
74 ev_io_stop(main_loop, client->write_callback);
75 return;
76 }
77
78 /* Otherwise, make sure that the io callback is enabled and create a new
79 * timer if needed. */
80 ev_io_start(main_loop, client->write_callback);
81
82 if (!client->timeout) {
83 struct ev_timer *timeout = scalloc(1, sizeof(struct ev_timer));
84 ev_timer_init(timeout, ipc_client_timeout, kill_timeout, 0.);
85 timeout->data = client;
86 client->timeout = timeout;
87 ev_set_priority(timeout, EV_MINPRI);
88 ev_timer_start(main_loop, client->timeout);
89 } else if (result > 0) {
90 /* Keep the old timeout when nothing is written. Otherwise, we would
91 * keep a dead connection by continuously renewing its timeouts. */
92 ev_timer_stop(main_loop, client->timeout);
93 ev_timer_set(client->timeout, kill_timeout, 0.0);
94 ev_timer_start(main_loop, client->timeout);
95 }
96 if (result == 0) {
97 return;
98 }
99
100 /* Shift the buffer to the left and reduce the allocated space. */
101 client->buffer_size -= (size_t)result;
102 memmove(client->buffer, client->buffer + result, client->buffer_size);
103 client->buffer = srealloc(client->buffer, client->buffer_size);
104}
105
106/*
107 * Given a message and a message type, create the corresponding header, merge it
108 * with the message and append it to the given client's output buffer. Also,
109 * send the message if the client's buffer was empty.
110 *
111 */
112static void ipc_send_client_message(ipc_client *client, size_t size, const uint32_t message_type, const uint8_t *payload) {
113 const i3_ipc_header_t header = {
114 .magic = {'i', '3', '-', 'i', 'p', 'c'},
115 .size = size,
116 .type = message_type};
117 const size_t header_size = sizeof(i3_ipc_header_t);
118 const size_t message_size = header_size + size;
119
120 const bool push_now = (client->buffer_size == 0);
121 client->buffer = srealloc(client->buffer, client->buffer_size + message_size);
122 memcpy(client->buffer + client->buffer_size, ((void *)&header), header_size);
123 memcpy(client->buffer + client->buffer_size + header_size, payload, size);
124 client->buffer_size += message_size;
125
126 if (push_now) {
127 ipc_push_pending(client);
128 }
129}
130
131static void free_ipc_client(ipc_client *client, int exempt_fd) {
132 if (client->fd != exempt_fd) {
133 DLOG("Disconnecting client on fd %d\n", client->fd);
134 close(client->fd);
135 }
136
137 ev_io_stop(main_loop, client->read_callback);
138 FREE(client->read_callback);
139 ev_io_stop(main_loop, client->write_callback);
140 FREE(client->write_callback);
141 if (client->timeout) {
142 ev_timer_stop(main_loop, client->timeout);
143 FREE(client->timeout);
144 }
145
146 free(client->buffer);
147
148 for (int i = 0; i < client->num_events; i++) {
149 free(client->events[i]);
150 }
151 free(client->events);
152 TAILQ_REMOVE(&all_clients, client, clients);
153 free(client);
154}
155
156/*
157 * Sends the specified event to all IPC clients which are currently connected
158 * and subscribed to this kind of event.
159 *
160 */
161void ipc_send_event(const char *event, uint32_t message_type, const char *payload) {
162 ipc_client *current;
163 TAILQ_FOREACH(current, &all_clients, clients) {
164 for (int i = 0; i < current->num_events; i++) {
165 if (strcasecmp(current->events[i], event) == 0) {
166 ipc_send_client_message(current, strlen(payload), message_type, (uint8_t *)payload);
167 break;
168 }
169 }
170 }
171}
172
173/*
174 * For shutdown events, we send the reason for the shutdown.
175 */
177 yajl_gen gen = ygenalloc();
178 y(map_open);
179
180 ystr("change");
181
182 if (reason == SHUTDOWN_REASON_RESTART) {
183 ystr("restart");
184 } else if (reason == SHUTDOWN_REASON_EXIT) {
185 ystr("exit");
186 }
187
188 y(map_close);
189
190 const unsigned char *payload;
191 ylength length;
192
193 y(get_buf, &payload, &length);
194 ipc_send_event("shutdown", I3_IPC_EVENT_SHUTDOWN, (const char *)payload);
195
196 y(free);
197}
198
199/*
200 * Calls shutdown() on each socket and closes it. This function is to be called
201 * when exiting or restarting only!
202 *
203 * exempt_fd is never closed. Set to -1 to close all fds.
204 *
205 */
206void ipc_shutdown(shutdown_reason_t reason, int exempt_fd) {
208
209 ipc_client *current;
210 while (!TAILQ_EMPTY(&all_clients)) {
211 current = TAILQ_FIRST(&all_clients);
212 if (current->fd != exempt_fd) {
213 shutdown(current->fd, SHUT_RDWR);
214 }
215 free_ipc_client(current, exempt_fd);
216 }
217}
218
219/*
220 * Executes the command and returns whether it could be successfully parsed
221 * or not (at the moment, always returns true).
222 *
223 */
224IPC_HANDLER(run_command) {
225 /* To get a properly terminated buffer, we copy
226 * message_size bytes out of the buffer */
227 char *command = sstrndup((const char *)message, message_size);
228 LOG("IPC: received: *%s*\n", command);
229 yajl_gen gen = yajl_gen_alloc(NULL);
230
231 CommandResult *result = parse_command(command, gen, client);
232 free(command);
233
234 if (result->needs_tree_render)
235 tree_render();
236
237 command_result_free(result);
238
239 const unsigned char *reply;
240 ylength length;
241 yajl_gen_get_buf(gen, &reply, &length);
242
243 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_COMMAND,
244 (const uint8_t *)reply);
245
246 yajl_gen_free(gen);
247}
248
249static void dump_rect(yajl_gen gen, const char *name, Rect r) {
250 ystr(name);
251 y(map_open);
252 ystr("x");
253 y(integer, r.x);
254 ystr("y");
255 y(integer, r.y);
256 ystr("width");
257 y(integer, r.width);
258 ystr("height");
259 y(integer, r.height);
260 y(map_close);
261}
262
263static void dump_event_state_mask(yajl_gen gen, Binding *bind) {
264 y(array_open);
265 for (int i = 0; i < 20; i++) {
266 if (bind->event_state_mask & (1 << i)) {
267 switch (1 << i) {
268 case XCB_KEY_BUT_MASK_SHIFT:
269 ystr("shift");
270 break;
271 case XCB_KEY_BUT_MASK_LOCK:
272 ystr("lock");
273 break;
274 case XCB_KEY_BUT_MASK_CONTROL:
275 ystr("ctrl");
276 break;
277 case XCB_KEY_BUT_MASK_MOD_1:
278 ystr("Mod1");
279 break;
280 case XCB_KEY_BUT_MASK_MOD_2:
281 ystr("Mod2");
282 break;
283 case XCB_KEY_BUT_MASK_MOD_3:
284 ystr("Mod3");
285 break;
286 case XCB_KEY_BUT_MASK_MOD_4:
287 ystr("Mod4");
288 break;
289 case XCB_KEY_BUT_MASK_MOD_5:
290 ystr("Mod5");
291 break;
292 case XCB_KEY_BUT_MASK_BUTTON_1:
293 ystr("Button1");
294 break;
295 case XCB_KEY_BUT_MASK_BUTTON_2:
296 ystr("Button2");
297 break;
298 case XCB_KEY_BUT_MASK_BUTTON_3:
299 ystr("Button3");
300 break;
301 case XCB_KEY_BUT_MASK_BUTTON_4:
302 ystr("Button4");
303 break;
304 case XCB_KEY_BUT_MASK_BUTTON_5:
305 ystr("Button5");
306 break;
307 case (I3_XKB_GROUP_MASK_1 << 16):
308 ystr("Group1");
309 break;
310 case (I3_XKB_GROUP_MASK_2 << 16):
311 ystr("Group2");
312 break;
313 case (I3_XKB_GROUP_MASK_3 << 16):
314 ystr("Group3");
315 break;
316 case (I3_XKB_GROUP_MASK_4 << 16):
317 ystr("Group4");
318 break;
319 }
320 }
321 }
322 y(array_close);
323}
324
325static void dump_binding(yajl_gen gen, Binding *bind) {
326 y(map_open);
327 ystr("input_code");
328 y(integer, bind->keycode);
329
330 ystr("input_type");
331 ystr((const char *)(bind->input_type == B_KEYBOARD ? "keyboard" : "mouse"));
332
333 ystr("symbol");
334 if (bind->symbol == NULL)
335 y(null);
336 else
337 ystr(bind->symbol);
338
339 ystr("command");
340 ystr(bind->command);
341
342 // This key is only provided for compatibility, new programs should use
343 // event_state_mask instead.
344 ystr("mods");
345 dump_event_state_mask(gen, bind);
346
347 ystr("event_state_mask");
348 dump_event_state_mask(gen, bind);
349
350 y(map_close);
351}
352
353void dump_node(yajl_gen gen, struct Con *con, bool inplace_restart) {
354 y(map_open);
355 ystr("id");
356 y(integer, (uintptr_t)con);
357
358 ystr("type");
359 switch (con->type) {
360 case CT_ROOT:
361 ystr("root");
362 break;
363 case CT_OUTPUT:
364 ystr("output");
365 break;
366 case CT_CON:
367 ystr("con");
368 break;
369 case CT_FLOATING_CON:
370 ystr("floating_con");
371 break;
372 case CT_WORKSPACE:
373 ystr("workspace");
374 break;
375 case CT_DOCKAREA:
376 ystr("dockarea");
377 break;
378 }
379
380 /* provided for backwards compatibility only. */
381 ystr("orientation");
382 if (!con_is_split(con))
383 ystr("none");
384 else {
385 if (con_orientation(con) == HORIZ)
386 ystr("horizontal");
387 else
388 ystr("vertical");
389 }
390
391 ystr("scratchpad_state");
392 switch (con->scratchpad_state) {
393 case SCRATCHPAD_NONE:
394 ystr("none");
395 break;
396 case SCRATCHPAD_FRESH:
397 ystr("fresh");
398 break;
399 case SCRATCHPAD_CHANGED:
400 ystr("changed");
401 break;
402 }
403
404 ystr("percent");
405 if (con->percent == 0.0)
406 y(null);
407 else
408 y(double, con->percent);
409
410 ystr("urgent");
411 y(bool, con->urgent);
412
413 if (!TAILQ_EMPTY(&(con->marks_head))) {
414 ystr("marks");
415 y(array_open);
416
417 mark_t *mark;
418 TAILQ_FOREACH(mark, &(con->marks_head), marks) {
419 ystr(mark->name);
420 }
421
422 y(array_close);
423 }
424
425 ystr("focused");
426 y(bool, (con == focused));
427
428 if (con->type != CT_ROOT && con->type != CT_OUTPUT) {
429 ystr("output");
430 ystr(con_get_output(con)->name);
431 }
432
433 ystr("layout");
434 switch (con->layout) {
435 case L_DEFAULT:
436 DLOG("About to dump layout=default, this is a bug in the code.\n");
437 assert(false);
438 break;
439 case L_SPLITV:
440 ystr("splitv");
441 break;
442 case L_SPLITH:
443 ystr("splith");
444 break;
445 case L_STACKED:
446 ystr("stacked");
447 break;
448 case L_TABBED:
449 ystr("tabbed");
450 break;
451 case L_DOCKAREA:
452 ystr("dockarea");
453 break;
454 case L_OUTPUT:
455 ystr("output");
456 break;
457 }
458
459 ystr("workspace_layout");
460 switch (con->workspace_layout) {
461 case L_DEFAULT:
462 ystr("default");
463 break;
464 case L_STACKED:
465 ystr("stacked");
466 break;
467 case L_TABBED:
468 ystr("tabbed");
469 break;
470 default:
471 DLOG("About to dump workspace_layout=%d (none of default/stacked/tabbed), this is a bug.\n", con->workspace_layout);
472 assert(false);
473 break;
474 }
475
476 ystr("last_split_layout");
477 switch (con->layout) {
478 case L_SPLITV:
479 ystr("splitv");
480 break;
481 default:
482 ystr("splith");
483 break;
484 }
485
486 ystr("border");
487 switch (con->border_style) {
488 case BS_NORMAL:
489 ystr("normal");
490 break;
491 case BS_NONE:
492 ystr("none");
493 break;
494 case BS_PIXEL:
495 ystr("pixel");
496 break;
497 }
498
499 ystr("current_border_width");
500 y(integer, con->current_border_width);
501
502 dump_rect(gen, "rect", con->rect);
503 dump_rect(gen, "deco_rect", con->deco_rect);
504 dump_rect(gen, "window_rect", con->window_rect);
505 dump_rect(gen, "geometry", con->geometry);
506
507 ystr("name");
508 if (con->window && con->window->name)
510 else if (con->name != NULL)
511 ystr(con->name);
512 else
513 y(null);
514
515 if (con->title_format != NULL) {
516 ystr("title_format");
517 ystr(con->title_format);
518 }
519
520 if (con->type == CT_WORKSPACE) {
521 ystr("num");
522 y(integer, con->num);
523 }
524
525 ystr("window");
526 if (con->window)
527 y(integer, con->window->id);
528 else
529 y(null);
530
531 ystr("window_type");
532 if (con->window) {
533 if (con->window->window_type == A__NET_WM_WINDOW_TYPE_NORMAL) {
534 ystr("normal");
535 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_DOCK) {
536 ystr("dock");
537 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_DIALOG) {
538 ystr("dialog");
539 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_UTILITY) {
540 ystr("utility");
541 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_TOOLBAR) {
542 ystr("toolbar");
543 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_SPLASH) {
544 ystr("splash");
545 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_MENU) {
546 ystr("menu");
547 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_DROPDOWN_MENU) {
548 ystr("dropdown_menu");
549 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_POPUP_MENU) {
550 ystr("popup_menu");
551 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_TOOLTIP) {
552 ystr("tooltip");
553 } else if (con->window->window_type == A__NET_WM_WINDOW_TYPE_NOTIFICATION) {
554 ystr("notification");
555 } else {
556 ystr("unknown");
557 }
558 } else
559 y(null);
560
561 if (con->window && !inplace_restart) {
562 /* Window properties are useless to preserve when restarting because
563 * they will be queried again anyway. However, for i3-save-tree(1),
564 * they are very useful and save i3-save-tree dealing with X11. */
565 ystr("window_properties");
566 y(map_open);
567
568#define DUMP_PROPERTY(key, prop_name) \
569 do { \
570 if (con->window->prop_name != NULL) { \
571 ystr(key); \
572 ystr(con->window->prop_name); \
573 } \
574 } while (0)
575
576 DUMP_PROPERTY("class", class_class);
577 DUMP_PROPERTY("instance", class_instance);
578 DUMP_PROPERTY("window_role", role);
579
580 if (con->window->name != NULL) {
581 ystr("title");
583 }
584
585 ystr("transient_for");
586 if (con->window->transient_for == XCB_NONE)
587 y(null);
588 else
589 y(integer, con->window->transient_for);
590
591 y(map_close);
592 }
593
594 ystr("nodes");
595 y(array_open);
596 Con *node;
597 if (con->type != CT_DOCKAREA || !inplace_restart) {
598 TAILQ_FOREACH(node, &(con->nodes_head), nodes) {
599 dump_node(gen, node, inplace_restart);
600 }
601 }
602 y(array_close);
603
604 ystr("floating_nodes");
605 y(array_open);
606 TAILQ_FOREACH(node, &(con->floating_head), floating_windows) {
607 dump_node(gen, node, inplace_restart);
608 }
609 y(array_close);
610
611 ystr("focus");
612 y(array_open);
613 TAILQ_FOREACH(node, &(con->focus_head), focused) {
614 y(integer, (uintptr_t)node);
615 }
616 y(array_close);
617
618 ystr("fullscreen_mode");
619 y(integer, con->fullscreen_mode);
620
621 ystr("sticky");
622 y(bool, con->sticky);
623
624 ystr("floating");
625 switch (con->floating) {
626 case FLOATING_AUTO_OFF:
627 ystr("auto_off");
628 break;
629 case FLOATING_AUTO_ON:
630 ystr("auto_on");
631 break;
632 case FLOATING_USER_OFF:
633 ystr("user_off");
634 break;
635 case FLOATING_USER_ON:
636 ystr("user_on");
637 break;
638 }
639
640 ystr("swallows");
641 y(array_open);
642 Match *match;
643 TAILQ_FOREACH(match, &(con->swallow_head), matches) {
644 /* We will generate a new restart_mode match specification after this
645 * loop, so skip this one. */
646 if (match->restart_mode)
647 continue;
648 y(map_open);
649 if (match->dock != M_DONTCHECK) {
650 ystr("dock");
651 y(integer, match->dock);
652 ystr("insert_where");
653 y(integer, match->insert_where);
654 }
655
656#define DUMP_REGEX(re_name) \
657 do { \
658 if (match->re_name != NULL) { \
659 ystr(#re_name); \
660 ystr(match->re_name->pattern); \
661 } \
662 } while (0)
663
664 DUMP_REGEX(class);
665 DUMP_REGEX(instance);
666 DUMP_REGEX(window_role);
667 DUMP_REGEX(title);
668
669#undef DUMP_REGEX
670 y(map_close);
671 }
672
673 if (inplace_restart) {
674 if (con->window != NULL) {
675 y(map_open);
676 ystr("id");
677 y(integer, con->window->id);
678 ystr("restart_mode");
679 y(bool, true);
680 y(map_close);
681 }
682 }
683 y(array_close);
684
685 if (inplace_restart && con->window != NULL) {
686 ystr("depth");
687 y(integer, con->depth);
688 }
689
690 if (inplace_restart && con->type == CT_ROOT && previous_workspace_name) {
691 ystr("previous_workspace_name");
693 }
694
695 y(map_close);
696}
697
698static void dump_bar_bindings(yajl_gen gen, Barconfig *config) {
699 if (TAILQ_EMPTY(&(config->bar_bindings)))
700 return;
701
702 ystr("bindings");
703 y(array_open);
704
705 struct Barbinding *current;
706 TAILQ_FOREACH(current, &(config->bar_bindings), bindings) {
707 y(map_open);
708
709 ystr("input_code");
710 y(integer, current->input_code);
711 ystr("command");
712 ystr(current->command);
713 ystr("release");
714 y(bool, current->release == B_UPON_KEYRELEASE);
715
716 y(map_close);
717 }
718
719 y(array_close);
720}
721
722static char *canonicalize_output_name(char *name) {
723 /* Do not canonicalize special output names. */
724 if (strcasecmp(name, "primary") == 0) {
725 return name;
726 }
727 Output *output = get_output_by_name(name, false);
728 return output ? output_primary_name(output) : name;
729}
730
731static void dump_bar_config(yajl_gen gen, Barconfig *config) {
732 y(map_open);
733
734 ystr("id");
735 ystr(config->id);
736
737 if (config->num_outputs > 0) {
738 ystr("outputs");
739 y(array_open);
740 for (int c = 0; c < config->num_outputs; c++) {
741 /* Convert monitor names (RandR ≥ 1.5) or output names
742 * (RandR < 1.5) into monitor names. This way, existing
743 * configs which use output names transparently keep
744 * working. */
746 }
747 y(array_close);
748 }
749
750 if (!TAILQ_EMPTY(&(config->tray_outputs))) {
751 ystr("tray_outputs");
752 y(array_open);
753
754 struct tray_output_t *tray_output;
755 TAILQ_FOREACH(tray_output, &(config->tray_outputs), tray_outputs) {
756 ystr(canonicalize_output_name(tray_output->output));
757 }
758
759 y(array_close);
760 }
761
762#define YSTR_IF_SET(name) \
763 do { \
764 if (config->name) { \
765 ystr(#name); \
766 ystr(config->name); \
767 } \
768 } while (0)
769
770 ystr("tray_padding");
771 y(integer, config->tray_padding);
772
773 YSTR_IF_SET(socket_path);
774
775 ystr("mode");
776 switch (config->mode) {
777 case M_HIDE:
778 ystr("hide");
779 break;
780 case M_INVISIBLE:
781 ystr("invisible");
782 break;
783 case M_DOCK:
784 default:
785 ystr("dock");
786 break;
787 }
788
789 ystr("hidden_state");
790 switch (config->hidden_state) {
791 case S_SHOW:
792 ystr("show");
793 break;
794 case S_HIDE:
795 default:
796 ystr("hide");
797 break;
798 }
799
800 ystr("modifier");
801 y(integer, config->modifier);
802
804
805 ystr("position");
806 if (config->position == P_BOTTOM)
807 ystr("bottom");
808 else
809 ystr("top");
810
811 YSTR_IF_SET(status_command);
812 YSTR_IF_SET(font);
813
814 if (config->separator_symbol) {
815 ystr("separator_symbol");
816 ystr(config->separator_symbol);
817 }
818
819 ystr("workspace_buttons");
820 y(bool, !config->hide_workspace_buttons);
821
822 ystr("workspace_min_width");
823 y(integer, config->workspace_min_width);
824
825 ystr("strip_workspace_numbers");
826 y(bool, config->strip_workspace_numbers);
827
828 ystr("strip_workspace_name");
829 y(bool, config->strip_workspace_name);
830
831 ystr("binding_mode_indicator");
832 y(bool, !config->hide_binding_mode_indicator);
833
834 ystr("verbose");
835 y(bool, config->verbose);
836
837#undef YSTR_IF_SET
838#define YSTR_IF_SET(name) \
839 do { \
840 if (config->colors.name) { \
841 ystr(#name); \
842 ystr(config->colors.name); \
843 } \
844 } while (0)
845
846 ystr("colors");
847 y(map_open);
848 YSTR_IF_SET(background);
849 YSTR_IF_SET(statusline);
850 YSTR_IF_SET(separator);
851 YSTR_IF_SET(focused_background);
852 YSTR_IF_SET(focused_statusline);
853 YSTR_IF_SET(focused_separator);
854 YSTR_IF_SET(focused_workspace_border);
855 YSTR_IF_SET(focused_workspace_bg);
856 YSTR_IF_SET(focused_workspace_text);
857 YSTR_IF_SET(active_workspace_border);
858 YSTR_IF_SET(active_workspace_bg);
859 YSTR_IF_SET(active_workspace_text);
860 YSTR_IF_SET(inactive_workspace_border);
861 YSTR_IF_SET(inactive_workspace_bg);
862 YSTR_IF_SET(inactive_workspace_text);
863 YSTR_IF_SET(urgent_workspace_border);
864 YSTR_IF_SET(urgent_workspace_bg);
865 YSTR_IF_SET(urgent_workspace_text);
866 YSTR_IF_SET(binding_mode_border);
867 YSTR_IF_SET(binding_mode_bg);
868 YSTR_IF_SET(binding_mode_text);
869 y(map_close);
870
871 y(map_close);
872#undef YSTR_IF_SET
873}
874
876 setlocale(LC_NUMERIC, "C");
877 yajl_gen gen = ygenalloc();
878 dump_node(gen, croot, false);
879 setlocale(LC_NUMERIC, "");
880
881 const unsigned char *payload;
882 ylength length;
883 y(get_buf, &payload, &length);
884
885 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_TREE, payload);
886 y(free);
887}
888
889/*
890 * Formats the reply message for a GET_WORKSPACES request and sends it to the
891 * client
892 *
893 */
894IPC_HANDLER(get_workspaces) {
895 yajl_gen gen = ygenalloc();
896 y(array_open);
897
898 Con *focused_ws = con_get_workspace(focused);
899
900 Con *output;
901 TAILQ_FOREACH(output, &(croot->nodes_head), nodes) {
903 continue;
904 Con *ws;
905 TAILQ_FOREACH(ws, &(output_get_content(output)->nodes_head), nodes) {
906 assert(ws->type == CT_WORKSPACE);
907 y(map_open);
908
909 ystr("id");
910 y(integer, (uintptr_t)ws);
911
912 ystr("num");
913 y(integer, ws->num);
914
915 ystr("name");
916 ystr(ws->name);
917
918 ystr("visible");
919 y(bool, workspace_is_visible(ws));
920
921 ystr("focused");
922 y(bool, ws == focused_ws);
923
924 ystr("rect");
925 y(map_open);
926 ystr("x");
927 y(integer, ws->rect.x);
928 ystr("y");
929 y(integer, ws->rect.y);
930 ystr("width");
931 y(integer, ws->rect.width);
932 ystr("height");
933 y(integer, ws->rect.height);
934 y(map_close);
935
936 ystr("output");
937 ystr(output->name);
938
939 ystr("urgent");
940 y(bool, ws->urgent);
941
942 y(map_close);
943 }
944 }
945
946 y(array_close);
947
948 const unsigned char *payload;
949 ylength length;
950 y(get_buf, &payload, &length);
951
952 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_WORKSPACES, payload);
953 y(free);
954}
955
956/*
957 * Formats the reply message for a GET_OUTPUTS request and sends it to the
958 * client
959 *
960 */
961IPC_HANDLER(get_outputs) {
962 yajl_gen gen = ygenalloc();
963 y(array_open);
964
965 Output *output;
967 y(map_open);
968
969 ystr("name");
971
972 ystr("active");
973 y(bool, output->active);
974
975 ystr("primary");
976 y(bool, output->primary);
977
978 ystr("rect");
979 y(map_open);
980 ystr("x");
981 y(integer, output->rect.x);
982 ystr("y");
983 y(integer, output->rect.y);
984 ystr("width");
985 y(integer, output->rect.width);
986 ystr("height");
987 y(integer, output->rect.height);
988 y(map_close);
989
990 ystr("current_workspace");
991 Con *ws = NULL;
992 if (output->con && (ws = con_get_fullscreen_con(output->con, CF_OUTPUT)))
993 ystr(ws->name);
994 else
995 y(null);
996
997 y(map_close);
998 }
999
1000 y(array_close);
1001
1002 const unsigned char *payload;
1003 ylength length;
1004 y(get_buf, &payload, &length);
1005
1006 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_OUTPUTS, payload);
1007 y(free);
1008}
1009
1010/*
1011 * Formats the reply message for a GET_MARKS request and sends it to the
1012 * client
1013 *
1014 */
1015IPC_HANDLER(get_marks) {
1016 yajl_gen gen = ygenalloc();
1017 y(array_open);
1018
1019 Con *con;
1021 mark_t *mark;
1022 TAILQ_FOREACH(mark, &(con->marks_head), marks) {
1023 ystr(mark->name);
1024 }
1025 }
1026
1027 y(array_close);
1028
1029 const unsigned char *payload;
1030 ylength length;
1031 y(get_buf, &payload, &length);
1032
1033 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_MARKS, payload);
1034 y(free);
1035}
1036
1037/*
1038 * Returns the version of i3
1039 *
1040 */
1041IPC_HANDLER(get_version) {
1042 yajl_gen gen = ygenalloc();
1043 y(map_open);
1044
1045 ystr("major");
1046 y(integer, MAJOR_VERSION);
1047
1048 ystr("minor");
1049 y(integer, MINOR_VERSION);
1050
1051 ystr("patch");
1052 y(integer, PATCH_VERSION);
1053
1054 ystr("human_readable");
1056
1057 ystr("loaded_config_file_name");
1059
1060 y(map_close);
1061
1062 const unsigned char *payload;
1063 ylength length;
1064 y(get_buf, &payload, &length);
1065
1066 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_VERSION, payload);
1067 y(free);
1068}
1069
1070/*
1071 * Formats the reply message for a GET_BAR_CONFIG request and sends it to the
1072 * client.
1073 *
1074 */
1075IPC_HANDLER(get_bar_config) {
1076 yajl_gen gen = ygenalloc();
1077
1078 /* If no ID was passed, we return a JSON array with all IDs */
1079 if (message_size == 0) {
1080 y(array_open);
1081 Barconfig *current;
1082 TAILQ_FOREACH(current, &barconfigs, configs) {
1083 ystr(current->id);
1084 }
1085 y(array_close);
1086
1087 const unsigned char *payload;
1088 ylength length;
1089 y(get_buf, &payload, &length);
1090
1091 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_BAR_CONFIG, payload);
1092 y(free);
1093 return;
1094 }
1095
1096 /* To get a properly terminated buffer, we copy
1097 * message_size bytes out of the buffer */
1098 char *bar_id = NULL;
1099 sasprintf(&bar_id, "%.*s", message_size, message);
1100 LOG("IPC: looking for config for bar ID \"%s\"\n", bar_id);
1101 Barconfig *current, *config = NULL;
1102 TAILQ_FOREACH(current, &barconfigs, configs) {
1103 if (strcmp(current->id, bar_id) != 0)
1104 continue;
1105
1106 config = current;
1107 break;
1108 }
1109 free(bar_id);
1110
1111 if (!config) {
1112 /* If we did not find a config for the given ID, the reply will contain
1113 * a null 'id' field. */
1114 y(map_open);
1115
1116 ystr("id");
1117 y(null);
1118
1119 y(map_close);
1120 } else {
1121 dump_bar_config(gen, config);
1122 }
1123
1124 const unsigned char *payload;
1125 ylength length;
1126 y(get_buf, &payload, &length);
1127
1128 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_BAR_CONFIG, payload);
1129 y(free);
1130}
1131
1132/*
1133 * Returns a list of configured binding modes
1134 *
1135 */
1136IPC_HANDLER(get_binding_modes) {
1137 yajl_gen gen = ygenalloc();
1138
1139 y(array_open);
1140 struct Mode *mode;
1141 SLIST_FOREACH(mode, &modes, modes) {
1142 ystr(mode->name);
1143 }
1144 y(array_close);
1145
1146 const unsigned char *payload;
1147 ylength length;
1148 y(get_buf, &payload, &length);
1149
1150 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_BINDING_MODES, payload);
1151 y(free);
1152}
1153
1154/*
1155 * Callback for the YAJL parser (will be called when a string is parsed).
1156 *
1157 */
1158static int add_subscription(void *extra, const unsigned char *s,
1159 ylength len) {
1160 ipc_client *client = extra;
1161
1162 DLOG("should add subscription to extra %p, sub %.*s\n", client, (int)len, s);
1163 int event = client->num_events;
1164
1165 client->num_events++;
1166 client->events = srealloc(client->events, client->num_events * sizeof(char *));
1167 /* We copy the string because it is not null-terminated and strndup()
1168 * is missing on some BSD systems */
1169 client->events[event] = scalloc(len + 1, 1);
1170 memcpy(client->events[event], s, len);
1171
1172 DLOG("client is now subscribed to:\n");
1173 for (int i = 0; i < client->num_events; i++) {
1174 DLOG("event %s\n", client->events[i]);
1175 }
1176 DLOG("(done)\n");
1177
1178 return 1;
1179}
1180
1181/*
1182 * Subscribes this connection to the event types which were given as a JSON
1183 * serialized array in the payload field of the message.
1184 *
1185 */
1186IPC_HANDLER(subscribe) {
1187 yajl_handle p;
1188 yajl_status stat;
1189
1190 /* Setup the JSON parser */
1191 static yajl_callbacks callbacks = {
1192 .yajl_string = add_subscription,
1193 };
1194
1195 p = yalloc(&callbacks, (void *)client);
1196 stat = yajl_parse(p, (const unsigned char *)message, message_size);
1197 if (stat != yajl_status_ok) {
1198 unsigned char *err;
1199 err = yajl_get_error(p, true, (const unsigned char *)message,
1200 message_size);
1201 ELOG("YAJL parse error: %s\n", err);
1202 yajl_free_error(p, err);
1203
1204 const char *reply = "{\"success\":false}";
1205 ipc_send_client_message(client, strlen(reply), I3_IPC_REPLY_TYPE_SUBSCRIBE, (const uint8_t *)reply);
1206 yajl_free(p);
1207 return;
1208 }
1209 yajl_free(p);
1210 const char *reply = "{\"success\":true}";
1211 ipc_send_client_message(client, strlen(reply), I3_IPC_REPLY_TYPE_SUBSCRIBE, (const uint8_t *)reply);
1212
1213 if (client->first_tick_sent) {
1214 return;
1215 }
1216
1217 bool is_tick = false;
1218 for (int i = 0; i < client->num_events; i++) {
1219 if (strcmp(client->events[i], "tick") == 0) {
1220 is_tick = true;
1221 break;
1222 }
1223 }
1224 if (!is_tick) {
1225 return;
1226 }
1227
1228 client->first_tick_sent = true;
1229 const char *payload = "{\"first\":true,\"payload\":\"\"}";
1230 ipc_send_client_message(client, strlen(payload), I3_IPC_EVENT_TICK, (const uint8_t *)payload);
1231}
1232
1233/*
1234 * Returns the raw last loaded i3 configuration file contents.
1235 */
1236IPC_HANDLER(get_config) {
1237 yajl_gen gen = ygenalloc();
1238
1239 y(map_open);
1240
1241 ystr("config");
1243
1244 y(map_close);
1245
1246 const unsigned char *payload;
1247 ylength length;
1248 y(get_buf, &payload, &length);
1249
1250 ipc_send_client_message(client, length, I3_IPC_REPLY_TYPE_CONFIG, payload);
1251 y(free);
1252}
1253
1254/*
1255 * Sends the tick event from the message payload to subscribers. Establishes a
1256 * synchronization point in event-related tests.
1257 */
1258IPC_HANDLER(send_tick) {
1259 yajl_gen gen = ygenalloc();
1260
1261 y(map_open);
1262
1263 ystr("first");
1264 y(bool, false);
1265
1266 ystr("payload");
1267 yajl_gen_string(gen, (unsigned char *)message, message_size);
1268
1269 y(map_close);
1270
1271 const unsigned char *payload;
1272 ylength length;
1273 y(get_buf, &payload, &length);
1274
1275 ipc_send_event("tick", I3_IPC_EVENT_TICK, (const char *)payload);
1276 y(free);
1277
1278 const char *reply = "{\"success\":true}";
1279 ipc_send_client_message(client, strlen(reply), I3_IPC_REPLY_TYPE_TICK, (const uint8_t *)reply);
1280 DLOG("Sent tick event\n");
1281}
1282
1285 uint32_t rnd;
1286 xcb_window_t window;
1287};
1288
1289static int _sync_json_key(void *extra, const unsigned char *val, size_t len) {
1290 struct sync_state *state = extra;
1291 FREE(state->last_key);
1292 state->last_key = scalloc(len + 1, 1);
1293 memcpy(state->last_key, val, len);
1294 return 1;
1295}
1296
1297static int _sync_json_int(void *extra, long long val) {
1298 struct sync_state *state = extra;
1299 if (strcasecmp(state->last_key, "rnd") == 0) {
1300 state->rnd = val;
1301 } else if (strcasecmp(state->last_key, "window") == 0) {
1302 state->window = (xcb_window_t)val;
1303 }
1304 return 1;
1305}
1306
1308 yajl_handle p;
1309 yajl_status stat;
1310
1311 /* Setup the JSON parser */
1312 static yajl_callbacks callbacks = {
1313 .yajl_map_key = _sync_json_key,
1314 .yajl_integer = _sync_json_int,
1315 };
1316
1317 struct sync_state state;
1318 memset(&state, '\0', sizeof(struct sync_state));
1319 p = yalloc(&callbacks, (void *)&state);
1320 stat = yajl_parse(p, (const unsigned char *)message, message_size);
1321 FREE(state.last_key);
1322 if (stat != yajl_status_ok) {
1323 unsigned char *err;
1324 err = yajl_get_error(p, true, (const unsigned char *)message,
1325 message_size);
1326 ELOG("YAJL parse error: %s\n", err);
1327 yajl_free_error(p, err);
1328
1329 const char *reply = "{\"success\":false}";
1330 ipc_send_client_message(client, strlen(reply), I3_IPC_REPLY_TYPE_SYNC, (const uint8_t *)reply);
1331 yajl_free(p);
1332 return;
1333 }
1334 yajl_free(p);
1335
1336 DLOG("received IPC sync request (rnd = %d, window = 0x%08x)\n", state.rnd, state.window);
1337 sync_respond(state.window, state.rnd);
1338 const char *reply = "{\"success\":true}";
1339 ipc_send_client_message(client, strlen(reply), I3_IPC_REPLY_TYPE_SYNC, (const uint8_t *)reply);
1340}
1341
1342/* The index of each callback function corresponds to the numeric
1343 * value of the message type (see include/i3/ipc.h) */
1345 handle_run_command,
1346 handle_get_workspaces,
1347 handle_subscribe,
1348 handle_get_outputs,
1349 handle_tree,
1350 handle_get_marks,
1351 handle_get_bar_config,
1352 handle_get_version,
1353 handle_get_binding_modes,
1354 handle_get_config,
1355 handle_send_tick,
1356 handle_sync,
1357};
1358
1359/*
1360 * Handler for activity on a client connection, receives a message from a
1361 * client.
1362 *
1363 * For now, the maximum message size is 2048. I’m not sure for what the
1364 * IPC interface will be used in the future, thus I’m not implementing a
1365 * mechanism for arbitrarily long messages, as it seems like overkill
1366 * at the moment.
1367 *
1368 */
1369static void ipc_receive_message(EV_P_ struct ev_io *w, int revents) {
1370 uint32_t message_type;
1371 uint32_t message_length;
1372 uint8_t *message = NULL;
1373 ipc_client *client = (ipc_client *)w->data;
1374 assert(client->fd == w->fd);
1375
1376 int ret = ipc_recv_message(w->fd, &message_type, &message_length, &message);
1377 /* EOF or other error */
1378 if (ret < 0) {
1379 /* Was this a spurious read? See ev(3) */
1380 if (ret == -1 && errno == EAGAIN) {
1381 FREE(message);
1382 return;
1383 }
1384
1385 /* If not, there was some kind of error. We don’t bother and close the
1386 * connection. Delete the client from the list of clients. */
1387 free_ipc_client(client, -1);
1388 FREE(message);
1389 return;
1390 }
1391
1392 if (message_type >= (sizeof(handlers) / sizeof(handler_t)))
1393 DLOG("Unhandled message type: %d\n", message_type);
1394 else {
1395 handler_t h = handlers[message_type];
1396 h(client, message, 0, message_length, message_type);
1397 }
1398
1399 FREE(message);
1400}
1401
1402static void ipc_client_timeout(EV_P_ ev_timer *w, int revents) {
1403 /* No need to be polite and check for writeability, the other callback would
1404 * have been called by now. */
1405 ipc_client *client = (ipc_client *)w->data;
1406
1407 char *cmdline = NULL;
1408#if defined(__linux__) && defined(SO_PEERCRED)
1409 struct ucred peercred;
1410 socklen_t so_len = sizeof(peercred);
1411 if (getsockopt(client->fd, SOL_SOCKET, SO_PEERCRED, &peercred, &so_len) != 0) {
1412 goto end;
1413 }
1414 char *exepath;
1415 sasprintf(&exepath, "/proc/%d/cmdline", peercred.pid);
1416
1417 int fd = open(exepath, O_RDONLY);
1418 free(exepath);
1419 if (fd == -1) {
1420 goto end;
1421 }
1422 char buf[512] = {'\0'}; /* cut off cmdline for the error message. */
1423 const ssize_t n = read(fd, buf, sizeof(buf));
1424 close(fd);
1425 if (n < 0) {
1426 goto end;
1427 }
1428 for (char *walk = buf; walk < buf + n - 1; walk++) {
1429 if (*walk == '\0') {
1430 *walk = ' ';
1431 }
1432 }
1433 cmdline = buf;
1434
1435 if (cmdline) {
1436 ELOG("client %p with pid %d and cmdline '%s' on fd %d timed out, killing\n", client, peercred.pid, cmdline, client->fd);
1437 }
1438
1439end:
1440#endif
1441 if (!cmdline) {
1442 ELOG("client %p on fd %d timed out, killing\n", client, client->fd);
1443 }
1444
1445 free_ipc_client(client, -1);
1446}
1447
1448static void ipc_socket_writeable_cb(EV_P_ ev_io *w, int revents) {
1449 DLOG("fd %d writeable\n", w->fd);
1450 ipc_client *client = (ipc_client *)w->data;
1451
1452 /* If this callback is called then there should be a corresponding active
1453 * timer. */
1454 assert(client->timeout != NULL);
1455 ipc_push_pending(client);
1456}
1457
1458/*
1459 * Handler for activity on the listening socket, meaning that a new client
1460 * has just connected and we should accept() him. Sets up the event handler
1461 * for activity on the new connection and inserts the file descriptor into
1462 * the list of clients.
1463 *
1464 */
1465void ipc_new_client(EV_P_ struct ev_io *w, int revents) {
1466 struct sockaddr_un peer;
1467 socklen_t len = sizeof(struct sockaddr_un);
1468 int fd;
1469 if ((fd = accept(w->fd, (struct sockaddr *)&peer, &len)) < 0) {
1470 if (errno != EINTR) {
1471 perror("accept()");
1472 }
1473 return;
1474 }
1475
1476 /* Close this file descriptor on exec() */
1477 (void)fcntl(fd, F_SETFD, FD_CLOEXEC);
1478
1479 ipc_new_client_on_fd(EV_A_ fd);
1480}
1481
1482/*
1483 * ipc_new_client_on_fd() only sets up the event handler
1484 * for activity on the new connection and inserts the file descriptor into
1485 * the list of clients.
1486 *
1487 * This variant is useful for the inherited IPC connection when restarting.
1488 *
1489 */
1491 set_nonblock(fd);
1492
1493 ipc_client *client = scalloc(1, sizeof(ipc_client));
1494 client->fd = fd;
1495
1496 client->read_callback = scalloc(1, sizeof(struct ev_io));
1497 client->read_callback->data = client;
1498 ev_io_init(client->read_callback, ipc_receive_message, fd, EV_READ);
1499 ev_io_start(EV_A_ client->read_callback);
1500
1501 client->write_callback = scalloc(1, sizeof(struct ev_io));
1502 client->write_callback->data = client;
1503 ev_io_init(client->write_callback, ipc_socket_writeable_cb, fd, EV_WRITE);
1504
1505 DLOG("IPC: new client connected on fd %d\n", fd);
1506 TAILQ_INSERT_TAIL(&all_clients, client, clients);
1507 return client;
1508}
1509
1510/*
1511 * Creates the UNIX domain socket at the given path, sets it to non-blocking
1512 * mode, bind()s and listen()s on it.
1513 *
1514 */
1515int ipc_create_socket(const char *filename) {
1516 int sockfd;
1517
1519
1520 char *resolved = resolve_tilde(filename);
1521 DLOG("Creating IPC-socket at %s\n", resolved);
1522 char *copy = sstrdup(resolved);
1523 const char *dir = dirname(copy);
1524 if (!path_exists(dir))
1526 free(copy);
1527
1528 /* Unlink the unix domain socket before */
1529 unlink(resolved);
1530
1531 if ((sockfd = socket(AF_LOCAL, SOCK_STREAM, 0)) < 0) {
1532 perror("socket()");
1533 free(resolved);
1534 return -1;
1535 }
1536
1537 (void)fcntl(sockfd, F_SETFD, FD_CLOEXEC);
1538
1539 struct sockaddr_un addr;
1540 memset(&addr, 0, sizeof(struct sockaddr_un));
1541 addr.sun_family = AF_LOCAL;
1542 strncpy(addr.sun_path, resolved, sizeof(addr.sun_path) - 1);
1543 if (bind(sockfd, (struct sockaddr *)&addr, sizeof(struct sockaddr_un)) < 0) {
1544 perror("bind()");
1545 free(resolved);
1546 return -1;
1547 }
1548
1549 set_nonblock(sockfd);
1550
1551 if (listen(sockfd, 5) < 0) {
1552 perror("listen()");
1553 free(resolved);
1554 return -1;
1555 }
1556
1557 current_socketpath = resolved;
1558 return sockfd;
1559}
1560
1561/*
1562 * Generates a json workspace event. Returns a dynamically allocated yajl
1563 * generator. Free with yajl_gen_free().
1564 */
1565yajl_gen ipc_marshal_workspace_event(const char *change, Con *current, Con *old) {
1566 setlocale(LC_NUMERIC, "C");
1567 yajl_gen gen = ygenalloc();
1568
1569 y(map_open);
1570
1571 ystr("change");
1572 ystr(change);
1573
1574 ystr("current");
1575 if (current == NULL)
1576 y(null);
1577 else
1578 dump_node(gen, current, false);
1579
1580 ystr("old");
1581 if (old == NULL)
1582 y(null);
1583 else
1584 dump_node(gen, old, false);
1585
1586 y(map_close);
1587
1588 setlocale(LC_NUMERIC, "");
1589
1590 return gen;
1591}
1592
1593/*
1594 * For the workspace events we send, along with the usual "change" field, also
1595 * the workspace container in "current". For focus events, we send the
1596 * previously focused workspace in "old".
1597 */
1598void ipc_send_workspace_event(const char *change, Con *current, Con *old) {
1599 yajl_gen gen = ipc_marshal_workspace_event(change, current, old);
1600
1601 const unsigned char *payload;
1602 ylength length;
1603 y(get_buf, &payload, &length);
1604
1605 ipc_send_event("workspace", I3_IPC_EVENT_WORKSPACE, (const char *)payload);
1606
1607 y(free);
1608}
1609
1610/*
1611 * For the window events we send, along the usual "change" field,
1612 * also the window container, in "container".
1613 */
1614void ipc_send_window_event(const char *property, Con *con) {
1615 DLOG("Issue IPC window %s event (con = %p, window = 0x%08x)\n",
1616 property, con, (con->window ? con->window->id : XCB_WINDOW_NONE));
1617
1618 setlocale(LC_NUMERIC, "C");
1619 yajl_gen gen = ygenalloc();
1620
1621 y(map_open);
1622
1623 ystr("change");
1624 ystr(property);
1625
1626 ystr("container");
1627 dump_node(gen, con, false);
1628
1629 y(map_close);
1630
1631 const unsigned char *payload;
1632 ylength length;
1633 y(get_buf, &payload, &length);
1634
1635 ipc_send_event("window", I3_IPC_EVENT_WINDOW, (const char *)payload);
1636 y(free);
1637 setlocale(LC_NUMERIC, "");
1638}
1639
1640/*
1641 * For the barconfig update events, we send the serialized barconfig.
1642 */
1644 DLOG("Issue barconfig_update event for id = %s\n", barconfig->id);
1645 setlocale(LC_NUMERIC, "C");
1646 yajl_gen gen = ygenalloc();
1647
1648 dump_bar_config(gen, barconfig);
1649
1650 const unsigned char *payload;
1651 ylength length;
1652 y(get_buf, &payload, &length);
1653
1654 ipc_send_event("barconfig_update", I3_IPC_EVENT_BARCONFIG_UPDATE, (const char *)payload);
1655 y(free);
1656 setlocale(LC_NUMERIC, "");
1657}
1658
1659/*
1660 * For the binding events, we send the serialized binding struct.
1661 */
1662void ipc_send_binding_event(const char *event_type, Binding *bind) {
1663 DLOG("Issue IPC binding %s event (sym = %s, code = %d)\n", event_type, bind->symbol, bind->keycode);
1664
1665 setlocale(LC_NUMERIC, "C");
1666
1667 yajl_gen gen = ygenalloc();
1668
1669 y(map_open);
1670
1671 ystr("change");
1672 ystr(event_type);
1673
1674 ystr("binding");
1675 dump_binding(gen, bind);
1676
1677 y(map_close);
1678
1679 const unsigned char *payload;
1680 ylength length;
1681 y(get_buf, &payload, &length);
1682
1683 ipc_send_event("binding", I3_IPC_EVENT_BINDING, (const char *)payload);
1684
1685 y(free);
1686 setlocale(LC_NUMERIC, "");
1687}
1688
1689/*
1690 * Sends a restart reply to the IPC client on the specified fd.
1691 */
1693 DLOG("ipc_confirm_restart(fd %d)\n", client->fd);
1694 static const char *reply = "[{\"success\":true}]";
1696 client, strlen(reply), I3_IPC_REPLY_TYPE_COMMAND,
1697 (const uint8_t *)reply);
1698 ipc_push_pending(client);
1699}
CommandResult * parse_command(const char *input, yajl_gen gen, ipc_client *client)
Parses and executes the given command.
void command_result_free(CommandResult *result)
Frees a CommandResult.
static cmdp_state state
void sync_respond(xcb_window_t window, uint32_t rnd)
Definition: sync.c:12
static void free_ipc_client(ipc_client *client, int exempt_fd)
Definition: ipc.c:131
static int _sync_json_int(void *extra, long long val)
Definition: ipc.c:1297
void ipc_set_kill_timeout(ev_tstamp new)
Set the maximum duration that we allow for a connection with an unwriteable socket.
Definition: ipc.c:49
static void dump_event_state_mask(yajl_gen gen, Binding *bind)
Definition: ipc.c:263
int ipc_create_socket(const char *filename)
Creates the UNIX domain socket at the given path, sets it to non-blocking mode, bind()s and listen()s...
Definition: ipc.c:1515
static void ipc_send_shutdown_event(shutdown_reason_t reason)
Definition: ipc.c:176
static void dump_bar_config(yajl_gen gen, Barconfig *config)
Definition: ipc.c:731
#define DUMP_REGEX(re_name)
static void set_nonblock(int sockfd)
Definition: ipc.c:34
static void dump_rect(yajl_gen gen, const char *name, Rect r)
Definition: ipc.c:249
static int _sync_json_key(void *extra, const unsigned char *val, size_t len)
Definition: ipc.c:1289
static void ipc_client_timeout(EV_P_ ev_timer *w, int revents)
Definition: ipc.c:1402
static void dump_binding(yajl_gen gen, Binding *bind)
Definition: ipc.c:325
void ipc_confirm_restart(ipc_client *client)
Sends a restart reply to the IPC client on the specified fd.
Definition: ipc.c:1692
static void ipc_socket_writeable_cb(EV_P_ struct ev_io *w, int revents)
ipc_client * ipc_new_client_on_fd(EV_P_ int fd)
ipc_new_client_on_fd() only sets up the event handler for activity on the new connection and inserts ...
Definition: ipc.c:1490
char * current_socketpath
Definition: ipc.c:23
static void dump_bar_bindings(yajl_gen gen, Barconfig *config)
Definition: ipc.c:698
static void ipc_receive_message(EV_P_ struct ev_io *w, int revents)
Definition: ipc.c:1369
void ipc_shutdown(shutdown_reason_t reason, int exempt_fd)
Calls shutdown() on each socket and closes it.
Definition: ipc.c:206
void dump_node(yajl_gen gen, struct Con *con, bool inplace_restart)
Definition: ipc.c:353
static void ipc_send_client_message(ipc_client *client, size_t size, const uint32_t message_type, const uint8_t *payload)
Definition: ipc.c:112
#define YSTR_IF_SET(name)
void ipc_send_workspace_event(const char *change, Con *current, Con *old)
For the workspace events we send, along with the usual "change" field, also the workspace container i...
Definition: ipc.c:1598
static ev_tstamp kill_timeout
Definition: ipc.c:47
void ipc_send_binding_event(const char *event_type, Binding *bind)
For the binding events, we send the serialized binding struct.
Definition: ipc.c:1662
void ipc_new_client(EV_P_ struct ev_io *w, int revents)
Handler for activity on the listening socket, meaning that a new client has just connected and we sho...
Definition: ipc.c:1465
handler_t handlers[12]
Definition: ipc.c:1344
void ipc_send_barconfig_update_event(Barconfig *barconfig)
For the barconfig update events, we send the serialized barconfig.
Definition: ipc.c:1643
all_clients
Definition: ipc.c:26
void ipc_send_event(const char *event, uint32_t message_type, const char *payload)
Sends the specified event to all IPC clients which are currently connected and subscribed to this kin...
Definition: ipc.c:161
yajl_gen ipc_marshal_workspace_event(const char *change, Con *current, Con *old)
Generates a json workspace event.
Definition: ipc.c:1565
static int add_subscription(void *extra, const unsigned char *s, ylength len)
Definition: ipc.c:1158
static char * canonicalize_output_name(char *name)
Definition: ipc.c:722
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
static void ipc_push_pending(ipc_client *client)
Definition: ipc.c:59
#define DUMP_PROPERTY(key, prop_name)
char * output_primary_name(Output *output)
Retrieves the primary name of an output.
Definition: output.c:51
Con * output_get_content(Con *output)
Returns the output container below the given output container.
Definition: output.c:16
struct pending_marks * marks
bool path_exists(const char *path)
Checks if the given path exists by calling stat().
Definition: util.c:182
struct Con * focused
Definition: tree.c:13
struct Con * croot
Definition: tree.c:12
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
#define y(x,...)
Definition: commands.c:21
#define ystr(str)
Definition: commands.c:22
Config config
Definition: config.c:17
struct barconfig_head barconfigs
Definition: config.c:19
struct modes_head modes
Definition: config.c:18
char * current_configpath
Definition: config.c:15
char * current_config
Definition: config.c:16
Con * con_get_fullscreen_con(Con *con, fullscreen_mode_t fullscreen_mode)
Returns the first fullscreen node below this node.
Definition: con.c:502
orientation_t con_orientation(Con *con)
Returns the orientation of the given container (for stacked containers, vertical orientation is used ...
Definition: con.c:1443
Con * con_get_workspace(Con *con)
Gets the workspace container this node is on.
Definition: con.c:453
bool con_is_split(Con *con)
Returns true if a container should be considered split.
Definition: con.c:361
bool con_is_internal(Con *con)
Returns true if the container is internal, such as __i3_scratch.
Definition: con.c:567
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
bool workspace_is_visible(Con *ws)
Returns true if the workspace is currently visible.
Definition: workspace.c:308
char * previous_workspace_name
Stores a copy of the name of the last used workspace for the workspace back-and-forth switching.
Definition: workspace.c:19
static i3_shmlog_header * header
Definition: log.c:55
Output * get_output_by_name(const char *name, const bool require_active)
Returns the output with the given name or NULL.
Definition: randr.c:47
struct outputs_head outputs
Definition: randr.c:21
struct ev_loop * main_loop
Definition: main.c:66
struct bindings_head * bindings
Definition: main.c:74
const char * i3_version
Git commit identifier, from version.c.
Definition: version.c:13
#define IPC_HANDLER(name)
Definition: ipc.h:61
void(* handler_t)(ipc_client *, uint8_t *, int, uint32_t, uint32_t)
Definition: ipc.h:58
shutdown_reason_t
Calls to ipc_shutdown() should provide a reason for the shutdown.
Definition: ipc.h:102
@ SHUTDOWN_REASON_RESTART
Definition: ipc.h:103
@ SHUTDOWN_REASON_EXIT
Definition: ipc.h:104
#define SLIST_FOREACH(var, head, field)
Definition: queue.h:114
#define TAILQ_FOREACH(var, head, field)
Definition: queue.h:347
#define TAILQ_HEAD(name, type)
Definition: queue.h:318
#define TAILQ_INSERT_TAIL(head, elm, field)
Definition: queue.h:376
#define TAILQ_FIRST(head)
Definition: queue.h:336
#define TAILQ_REMOVE(head, elm, field)
Definition: queue.h:402
#define TAILQ_HEAD_INITIALIZER(head)
Definition: queue.h:324
#define TAILQ_EMPTY(head)
Definition: queue.h:344
char * resolve_tilde(const char *path)
This function resolves ~ in pathnames.
ssize_t writeall_nonblock(int fd, const void *buf, size_t count)
Like writeall, but instead of retrying upon EAGAIN (returned when a write would block),...
#define DLOG(fmt,...)
Definition: libi3.h:104
#define DEFAULT_DIR_MODE
Definition: libi3.h:25
#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.
int ipc_recv_message(int sockfd, uint32_t *message_type, uint32_t *reply_length, uint8_t **reply)
Reads a message from the given socket file descriptor and stores its length (reply_length) as well as...
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...
char * sstrndup(const char *str, size_t size)
Safe-wrapper around strndup which exits if strndup returns NULL (meaning that there is no more memory...
void * srealloc(void *ptr, size_t size)
Safe-wrapper around realloc which exits if realloc returns NULL (meaning that there is no more memory...
int mkdirp(const char *path, mode_t mode)
Emulates mkdir -p (creates any missing folders)
@ I3_XKB_GROUP_MASK_2
Definition: data.h:117
@ I3_XKB_GROUP_MASK_3
Definition: data.h:118
@ I3_XKB_GROUP_MASK_4
Definition: data.h:119
@ I3_XKB_GROUP_MASK_1
Definition: data.h:116
@ L_STACKED
Definition: data.h:95
@ L_TABBED
Definition: data.h:96
@ L_DOCKAREA
Definition: data.h:97
@ L_OUTPUT
Definition: data.h:98
@ L_SPLITH
Definition: data.h:100
@ L_SPLITV
Definition: data.h:99
@ L_DEFAULT
Definition: data.h:94
@ HORIZ
Definition: data.h:60
@ CF_OUTPUT
Definition: data.h:627
@ BS_NONE
Definition: data.h:65
@ BS_PIXEL
Definition: data.h:66
@ BS_NORMAL
Definition: data.h:64
@ B_KEYBOARD
Definition: data.h:107
#define yalloc(callbacks, client)
Definition: yajl_utils.h:23
size_t ylength
Definition: yajl_utils.h:24
#define ygenalloc()
Definition: yajl_utils.h:22
#define FREE(pointer)
Definition: util.h:47
char * last_key
Definition: ipc.c:1284
xcb_window_t window
Definition: ipc.c:1286
uint32_t rnd
Definition: ipc.c:1285
A struct that contains useful information about the result of a command as a whole (e....
The configuration file can contain multiple sets of bindings.
Definition: configuration.h:82
char * name
Definition: configuration.h:83
Holds the status bar configuration (i3bar).
char * id
Automatically generated ID for this bar config.
Defines a mouse command to be executed instead of the default behavior when clicking on the non-statu...
bool release
If true, the command will be executed after the button is released.
int input_code
The button to be used (e.g., 1 for "button1").
char * command
The command which is to be executed for this button.
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
Holds a keybinding, consisting of a keycode combined with modifiers and the command which is executed...
Definition: data.h:300
char * command
Command, like in command mode.
Definition: data.h:352
uint32_t keycode
Keycode to bind.
Definition: data.h:333
char * symbol
Symbol the user specified in configfile, if any.
Definition: data.h:343
i3_event_state_mask_t event_state_mask
Bitmask which is applied against event->state for KeyPress and KeyRelease events to determine whether...
Definition: data.h:338
input_type_t input_type
Definition: data.h:303
An Output is a physical output on your graphics driver.
Definition: data.h:393
i3String * name
The name of the window.
Definition: data.h:445
xcb_window_t id
Definition: data.h:429
xcb_atom_t window_type
The _NET_WM_WINDOW_TYPE for this window.
Definition: data.h:472
xcb_window_t transient_for
Definition: data.h:434
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::@15 dock
enum Match::@17 insert_where
bool restart_mode
Definition: data.h:579
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 Rect deco_rect
Definition: data.h:683
layout_t workspace_layout
Definition: data.h:751
double percent
Definition: data.h:703
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
enum Con::@21 floating
floating? (= not in tiling layout) This cannot be simply a bool because we want to keep track of whet...
layout_t layout
Definition: data.h:751
int num
the workspace number, if this Con is of type CT_WORKSPACE and the workspace is not a named workspace ...
Definition: data.h:671
struct Rect window_rect
Definition: data.h:680
struct Window * window
Definition: data.h:709
nodes_head
Definition: data.h:722
enum Con::@22 scratchpad_state
char * title_format
The format with which the window's name should be displayed.
Definition: data.h:690
border_style_t border_style
Definition: data.h:752
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
marks_head
Definition: data.h:699
floating_head
Definition: data.h:719
fullscreen_mode_t fullscreen_mode
Definition: data.h:730
bool urgent
Definition: data.h:646
Definition: ipc.h:27
char ** events
Definition: ipc.h:32
int num_events
Definition: ipc.h:31
size_t buffer_size
Definition: ipc.h:42
struct ev_io * read_callback
Definition: ipc.h:38
struct ev_timer * timeout
Definition: ipc.h:40
int fd
Definition: ipc.h:28
uint8_t * buffer
Definition: ipc.h:41
struct ev_io * write_callback
Definition: ipc.h:39
uint32_t size
Definition: shmlog.h:36