i3
ipc.c
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1 #undef I3__FILE__
2 #define I3__FILE__ "ipc.c"
3 /*
4  * vim:ts=4:sw=4:expandtab
5  *
6  * i3 - an improved dynamic tiling window manager
7  * © 2009-2012 Michael Stapelberg and contributors (see also: LICENSE)
8  *
9  * ipc.c: UNIX domain socket IPC (initialization, client handling, protocol).
10  *
11  */
12 #include "all.h"
13 #include "yajl_utils.h"
14 
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 
23 char *current_socketpath = NULL;
24 
25 TAILQ_HEAD(ipc_client_head, ipc_client) all_clients = TAILQ_HEAD_INITIALIZER(all_clients);
26 
27 /*
28  * Puts the given socket file descriptor into non-blocking mode or dies if
29  * setting O_NONBLOCK failed. Non-blocking sockets are a good idea for our
30  * IPC model because we should by no means block the window manager.
31  *
32  */
33 static void set_nonblock(int sockfd) {
34  int flags = fcntl(sockfd, F_GETFL, 0);
35  flags |= O_NONBLOCK;
36  if (fcntl(sockfd, F_SETFL, flags) < 0)
37  err(-1, "Could not set O_NONBLOCK");
38 }
39 
40 /*
41  * Emulates mkdir -p (creates any missing folders)
42  *
43  */
44 bool mkdirp(const char *path) {
45  if (mkdir(path, S_IRWXU | S_IRGRP | S_IXGRP | S_IROTH | S_IXOTH) == 0)
46  return true;
47  if (errno != ENOENT) {
48  ELOG("mkdir(%s) failed: %s\n", path, strerror(errno));
49  return false;
50  }
51  char *copy = sstrdup(path);
52  /* strip trailing slashes, if any */
53  while (copy[strlen(copy) - 1] == '/')
54  copy[strlen(copy) - 1] = '\0';
55 
56  char *sep = strrchr(copy, '/');
57  if (sep == NULL) {
58  FREE(copy);
59  return false;
60  }
61  *sep = '\0';
62  bool result = false;
63  if (mkdirp(copy))
64  result = mkdirp(path);
65  free(copy);
66 
67  return result;
68 }
69 
70 /*
71  * Sends the specified event to all IPC clients which are currently connected
72  * and subscribed to this kind of event.
73  *
74  */
75 void ipc_send_event(const char *event, uint32_t message_type, const char *payload) {
76  ipc_client *current;
77  TAILQ_FOREACH(current, &all_clients, clients) {
78  /* see if this client is interested in this event */
79  bool interested = false;
80  for (int i = 0; i < current->num_events; i++) {
81  if (strcasecmp(current->events[i], event) != 0)
82  continue;
83  interested = true;
84  break;
85  }
86  if (!interested)
87  continue;
88 
89  ipc_send_message(current->fd, strlen(payload), message_type, (const uint8_t *)payload);
90  }
91 }
92 
93 /*
94  * Calls shutdown() on each socket and closes it. This function to be called
95  * when exiting or restarting only!
96  *
97  */
98 void ipc_shutdown(void) {
99  ipc_client *current;
100  while (!TAILQ_EMPTY(&all_clients)) {
101  current = TAILQ_FIRST(&all_clients);
102  shutdown(current->fd, SHUT_RDWR);
103  close(current->fd);
104  TAILQ_REMOVE(&all_clients, current, clients);
105  free(current);
106  }
107 }
108 
109 /*
110  * Executes the command and returns whether it could be successfully parsed
111  * or not (at the moment, always returns true).
112  *
113  */
114 IPC_HANDLER(command) {
115  /* To get a properly terminated buffer, we copy
116  * message_size bytes out of the buffer */
117  char *command = scalloc(message_size + 1);
118  strncpy(command, (const char *)message, message_size);
119  LOG("IPC: received: *%s*\n", command);
120  yajl_gen gen = yajl_gen_alloc(NULL);
121 
122  CommandResult *result = parse_command((const char *)command, gen);
123  free(command);
124 
125  if (result->needs_tree_render)
126  tree_render();
127 
128  command_result_free(result);
129 
130  const unsigned char *reply;
131  ylength length;
132  yajl_gen_get_buf(gen, &reply, &length);
133 
134  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_COMMAND,
135  (const uint8_t *)reply);
136 
137  yajl_gen_free(gen);
138 }
139 
140 static void dump_rect(yajl_gen gen, const char *name, Rect r) {
141  ystr(name);
142  y(map_open);
143  ystr("x");
144  y(integer, r.x);
145  ystr("y");
146  y(integer, r.y);
147  ystr("width");
148  y(integer, r.width);
149  ystr("height");
150  y(integer, r.height);
151  y(map_close);
152 }
153 
154 static void dump_binding(yajl_gen gen, Binding *bind) {
155  y(map_open);
156  ystr("input_code");
157  y(integer, bind->keycode);
158 
159  ystr("input_type");
160  ystr((const char*)(bind->input_type == B_KEYBOARD ? "keyboard" : "mouse"));
161 
162  ystr("symbol");
163  if (bind->symbol == NULL)
164  y(null);
165  else
166  ystr(bind->symbol);
167 
168  ystr("command");
169  ystr(bind->command);
170 
171  ystr("mods");
172  y(array_open);
173  for (int i = 0; i < 8; i++) {
174  if (bind->mods & (1 << i)) {
175  switch (1 << i) {
176  case XCB_MOD_MASK_SHIFT:
177  ystr("shift");
178  break;
179  case XCB_MOD_MASK_LOCK:
180  ystr("lock");
181  break;
182  case XCB_MOD_MASK_CONTROL:
183  ystr("ctrl");
184  break;
185  case XCB_MOD_MASK_1:
186  ystr("Mod1");
187  break;
188  case XCB_MOD_MASK_2:
189  ystr("Mod2");
190  break;
191  case XCB_MOD_MASK_3:
192  ystr("Mod3");
193  break;
194  case XCB_MOD_MASK_4:
195  ystr("Mod4");
196  break;
197  case XCB_MOD_MASK_5:
198  ystr("Mod5");
199  break;
200  }
201  }
202  }
203  y(array_close);
204 
205  y(map_close);
206 }
207 
208 void dump_node(yajl_gen gen, struct Con *con, bool inplace_restart) {
209  y(map_open);
210  ystr("id");
211  y(integer, (long int)con);
212 
213  ystr("type");
214  switch (con->type) {
215  case CT_ROOT:
216  ystr("root");
217  break;
218  case CT_OUTPUT:
219  ystr("output");
220  break;
221  case CT_CON:
222  ystr("con");
223  break;
224  case CT_FLOATING_CON:
225  ystr("floating_con");
226  break;
227  case CT_WORKSPACE:
228  ystr("workspace");
229  break;
230  case CT_DOCKAREA:
231  ystr("dockarea");
232  break;
233  default:
234  DLOG("About to dump unknown container type=%d. This is a bug.\n", con->type);
235  assert(false);
236  break;
237  }
238 
239  /* provided for backwards compatibility only. */
240  ystr("orientation");
241  if (!con_is_split(con))
242  ystr("none");
243  else {
244  if (con_orientation(con) == HORIZ)
245  ystr("horizontal");
246  else
247  ystr("vertical");
248  }
249 
250  ystr("scratchpad_state");
251  switch (con->scratchpad_state) {
252  case SCRATCHPAD_NONE:
253  ystr("none");
254  break;
255  case SCRATCHPAD_FRESH:
256  ystr("fresh");
257  break;
258  case SCRATCHPAD_CHANGED:
259  ystr("changed");
260  break;
261  }
262 
263  ystr("percent");
264  if (con->percent == 0.0)
265  y(null);
266  else
267  y(double, con->percent);
268 
269  ystr("urgent");
270  y(bool, con->urgent);
271 
272  if (con->mark != NULL) {
273  ystr("mark");
274  ystr(con->mark);
275  }
276 
277  ystr("focused");
278  y(bool, (con == focused));
279 
280  ystr("layout");
281  switch (con->layout) {
282  case L_DEFAULT:
283  DLOG("About to dump layout=default, this is a bug in the code.\n");
284  assert(false);
285  break;
286  case L_SPLITV:
287  ystr("splitv");
288  break;
289  case L_SPLITH:
290  ystr("splith");
291  break;
292  case L_STACKED:
293  ystr("stacked");
294  break;
295  case L_TABBED:
296  ystr("tabbed");
297  break;
298  case L_DOCKAREA:
299  ystr("dockarea");
300  break;
301  case L_OUTPUT:
302  ystr("output");
303  break;
304  }
305 
306  ystr("workspace_layout");
307  switch (con->workspace_layout) {
308  case L_DEFAULT:
309  ystr("default");
310  break;
311  case L_STACKED:
312  ystr("stacked");
313  break;
314  case L_TABBED:
315  ystr("tabbed");
316  break;
317  default:
318  DLOG("About to dump workspace_layout=%d (none of default/stacked/tabbed), this is a bug.\n", con->workspace_layout);
319  assert(false);
320  break;
321  }
322 
323  ystr("last_split_layout");
324  switch (con->layout) {
325  case L_SPLITV:
326  ystr("splitv");
327  break;
328  default:
329  ystr("splith");
330  break;
331  }
332 
333  ystr("border");
334  switch (con->border_style) {
335  case BS_NORMAL:
336  ystr("normal");
337  break;
338  case BS_NONE:
339  ystr("none");
340  break;
341  case BS_PIXEL:
342  ystr("pixel");
343  break;
344  }
345 
346  ystr("current_border_width");
347  y(integer, con->current_border_width);
348 
349  dump_rect(gen, "rect", con->rect);
350  dump_rect(gen, "deco_rect", con->deco_rect);
351  dump_rect(gen, "window_rect", con->window_rect);
352  dump_rect(gen, "geometry", con->geometry);
353 
354  ystr("name");
355  if (con->window && con->window->name)
356  ystr(i3string_as_utf8(con->window->name));
357  else if (con->name != NULL)
358  ystr(con->name);
359  else
360  y(null);
361 
362  if (con->type == CT_WORKSPACE) {
363  ystr("num");
364  y(integer, con->num);
365  }
366 
367  ystr("window");
368  if (con->window)
369  y(integer, con->window->id);
370  else
371  y(null);
372 
373  if (con->window && !inplace_restart) {
374  /* Window properties are useless to preserve when restarting because
375  * they will be queried again anyway. However, for i3-save-tree(1),
376  * they are very useful and save i3-save-tree dealing with X11. */
377  ystr("window_properties");
378  y(map_open);
379 
380 #define DUMP_PROPERTY(key, prop_name) \
381  do { \
382  if (con->window->prop_name != NULL) { \
383  ystr(key); \
384  ystr(con->window->prop_name); \
385  } \
386  } while (0)
387 
388  DUMP_PROPERTY("class", class_class);
389  DUMP_PROPERTY("instance", class_instance);
390  DUMP_PROPERTY("window_role", role);
391 
392  if (con->window->name != NULL) {
393  ystr("title");
394  ystr(i3string_as_utf8(con->window->name));
395  }
396 
397  ystr("transient_for");
398  if (con->window->transient_for == XCB_NONE)
399  y(null);
400  else y(integer, con->window->transient_for);
401 
402  y(map_close);
403  }
404 
405  ystr("nodes");
406  y(array_open);
407  Con *node;
408  if (con->type != CT_DOCKAREA || !inplace_restart) {
409  TAILQ_FOREACH(node, &(con->nodes_head), nodes) {
410  dump_node(gen, node, inplace_restart);
411  }
412  }
413  y(array_close);
414 
415  ystr("floating_nodes");
416  y(array_open);
417  TAILQ_FOREACH(node, &(con->floating_head), floating_windows) {
418  dump_node(gen, node, inplace_restart);
419  }
420  y(array_close);
421 
422  ystr("focus");
423  y(array_open);
424  TAILQ_FOREACH(node, &(con->focus_head), focused) {
425  y(integer, (long int)node);
426  }
427  y(array_close);
428 
429  ystr("fullscreen_mode");
430  y(integer, con->fullscreen_mode);
431 
432  ystr("floating");
433  switch (con->floating) {
434  case FLOATING_AUTO_OFF:
435  ystr("auto_off");
436  break;
437  case FLOATING_AUTO_ON:
438  ystr("auto_on");
439  break;
440  case FLOATING_USER_OFF:
441  ystr("user_off");
442  break;
443  case FLOATING_USER_ON:
444  ystr("user_on");
445  break;
446  }
447 
448  ystr("swallows");
449  y(array_open);
450  Match *match;
451  TAILQ_FOREACH(match, &(con->swallow_head), matches) {
452  y(map_open);
453  if (match->dock != -1) {
454  ystr("dock");
455  y(integer, match->dock);
456  ystr("insert_where");
457  y(integer, match->insert_where);
458  }
459 
460 #define DUMP_REGEX(re_name) \
461  do { \
462  if (match->re_name != NULL) { \
463  ystr(#re_name); \
464  ystr(match->re_name->pattern); \
465  } \
466  } while (0)
467 
468  DUMP_REGEX(class);
469  DUMP_REGEX(instance);
470  DUMP_REGEX(window_role);
471  DUMP_REGEX(title);
472 
473 #undef DUMP_REGEX
474  y(map_close);
475  }
476 
477  if (inplace_restart) {
478  if (con->window != NULL) {
479  y(map_open);
480  ystr("id");
481  y(integer, con->window->id);
482  ystr("restart_mode");
483  y(bool, true);
484  y(map_close);
485  }
486  }
487  y(array_close);
488 
489  if (inplace_restart && con->window != NULL) {
490  ystr("depth");
491  y(integer, con->depth);
492  }
493 
494  y(map_close);
495 }
496 
497 static void dump_bar_config(yajl_gen gen, Barconfig *config) {
498  y(map_open);
499 
500  ystr("id");
501  ystr(config->id);
502 
503  if (config->num_outputs > 0) {
504  ystr("outputs");
505  y(array_open);
506  for (int c = 0; c < config->num_outputs; c++)
507  ystr(config->outputs[c]);
508  y(array_close);
509  }
510 
511 #define YSTR_IF_SET(name) \
512  do { \
513  if (config->name) { \
514  ystr(#name); \
515  ystr(config->name); \
516  } \
517  } while (0)
518 
519  YSTR_IF_SET(tray_output);
520  YSTR_IF_SET(socket_path);
521 
522  ystr("mode");
523  switch (config->mode) {
524  case M_HIDE:
525  ystr("hide");
526  break;
527  case M_INVISIBLE:
528  ystr("invisible");
529  break;
530  case M_DOCK:
531  default:
532  ystr("dock");
533  break;
534  }
535 
536  ystr("hidden_state");
537  switch (config->hidden_state) {
538  case S_SHOW:
539  ystr("show");
540  break;
541  case S_HIDE:
542  default:
543  ystr("hide");
544  break;
545  }
546 
547  ystr("modifier");
548  switch (config->modifier) {
549  case M_CONTROL:
550  ystr("ctrl");
551  break;
552  case M_SHIFT:
553  ystr("shift");
554  break;
555  case M_MOD1:
556  ystr("Mod1");
557  break;
558  case M_MOD2:
559  ystr("Mod2");
560  break;
561  case M_MOD3:
562  ystr("Mod3");
563  break;
564  /*
565  case M_MOD4:
566  ystr("Mod4");
567  break;
568  */
569  case M_MOD5:
570  ystr("Mod5");
571  break;
572  default:
573  ystr("Mod4");
574  break;
575  }
576 
577  if (config->wheel_up_cmd) {
578  ystr("wheel_up_cmd");
579  ystr(config->wheel_up_cmd);
580  }
581 
582  if (config->wheel_down_cmd) {
583  ystr("wheel_down_cmd");
584  ystr(config->wheel_down_cmd);
585  }
586 
587  ystr("position");
588  if (config->position == P_BOTTOM)
589  ystr("bottom");
590  else
591  ystr("top");
592 
593  YSTR_IF_SET(status_command);
594  YSTR_IF_SET(font);
595 
596  ystr("workspace_buttons");
597  y(bool, !config->hide_workspace_buttons);
598 
599  ystr("strip_workspace_numbers");
600  y(bool, config->strip_workspace_numbers);
601 
602  ystr("binding_mode_indicator");
603  y(bool, !config->hide_binding_mode_indicator);
604 
605  ystr("verbose");
606  y(bool, config->verbose);
607 
608 #undef YSTR_IF_SET
609 #define YSTR_IF_SET(name) \
610  do { \
611  if (config->colors.name) { \
612  ystr(#name); \
613  ystr(config->colors.name); \
614  } \
615  } while (0)
616 
617  ystr("colors");
618  y(map_open);
619  YSTR_IF_SET(background);
620  YSTR_IF_SET(statusline);
621  YSTR_IF_SET(separator);
622  YSTR_IF_SET(focused_workspace_border);
623  YSTR_IF_SET(focused_workspace_bg);
624  YSTR_IF_SET(focused_workspace_text);
625  YSTR_IF_SET(active_workspace_border);
626  YSTR_IF_SET(active_workspace_bg);
627  YSTR_IF_SET(active_workspace_text);
628  YSTR_IF_SET(inactive_workspace_border);
629  YSTR_IF_SET(inactive_workspace_bg);
630  YSTR_IF_SET(inactive_workspace_text);
631  YSTR_IF_SET(urgent_workspace_border);
632  YSTR_IF_SET(urgent_workspace_bg);
633  YSTR_IF_SET(urgent_workspace_text);
634  y(map_close);
635 
636  y(map_close);
637 #undef YSTR_IF_SET
638 }
639 
640 IPC_HANDLER(tree) {
641  setlocale(LC_NUMERIC, "C");
642  yajl_gen gen = ygenalloc();
643  dump_node(gen, croot, false);
644  setlocale(LC_NUMERIC, "");
645 
646  const unsigned char *payload;
647  ylength length;
648  y(get_buf, &payload, &length);
649 
650  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_TREE, payload);
651  y(free);
652 }
653 
654 /*
655  * Formats the reply message for a GET_WORKSPACES request and sends it to the
656  * client
657  *
658  */
659 IPC_HANDLER(get_workspaces) {
660  yajl_gen gen = ygenalloc();
661  y(array_open);
662 
663  Con *focused_ws = con_get_workspace(focused);
664 
665  Con *output;
666  TAILQ_FOREACH(output, &(croot->nodes_head), nodes) {
667  if (con_is_internal(output))
668  continue;
669  Con *ws;
670  TAILQ_FOREACH(ws, &(output_get_content(output)->nodes_head), nodes) {
671  assert(ws->type == CT_WORKSPACE);
672  y(map_open);
673 
674  ystr("num");
675  y(integer, ws->num);
676 
677  ystr("name");
678  ystr(ws->name);
679 
680  ystr("visible");
681  y(bool, workspace_is_visible(ws));
682 
683  ystr("focused");
684  y(bool, ws == focused_ws);
685 
686  ystr("rect");
687  y(map_open);
688  ystr("x");
689  y(integer, ws->rect.x);
690  ystr("y");
691  y(integer, ws->rect.y);
692  ystr("width");
693  y(integer, ws->rect.width);
694  ystr("height");
695  y(integer, ws->rect.height);
696  y(map_close);
697 
698  ystr("output");
699  ystr(output->name);
700 
701  ystr("urgent");
702  y(bool, ws->urgent);
703 
704  y(map_close);
705  }
706  }
707 
708  y(array_close);
709 
710  const unsigned char *payload;
711  ylength length;
712  y(get_buf, &payload, &length);
713 
714  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_WORKSPACES, payload);
715  y(free);
716 }
717 
718 /*
719  * Formats the reply message for a GET_OUTPUTS request and sends it to the
720  * client
721  *
722  */
723 IPC_HANDLER(get_outputs) {
724  yajl_gen gen = ygenalloc();
725  y(array_open);
726 
727  Output *output;
728  TAILQ_FOREACH(output, &outputs, outputs) {
729  y(map_open);
730 
731  ystr("name");
732  ystr(output->name);
733 
734  ystr("active");
735  y(bool, output->active);
736 
737  ystr("primary");
738  y(bool, output->primary);
739 
740  ystr("rect");
741  y(map_open);
742  ystr("x");
743  y(integer, output->rect.x);
744  ystr("y");
745  y(integer, output->rect.y);
746  ystr("width");
747  y(integer, output->rect.width);
748  ystr("height");
749  y(integer, output->rect.height);
750  y(map_close);
751 
752  ystr("current_workspace");
753  Con *ws = NULL;
754  if (output->con && (ws = con_get_fullscreen_con(output->con, CF_OUTPUT)))
755  ystr(ws->name);
756  else
757  y(null);
758 
759  y(map_close);
760  }
761 
762  y(array_close);
763 
764  const unsigned char *payload;
765  ylength length;
766  y(get_buf, &payload, &length);
767 
768  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_OUTPUTS, payload);
769  y(free);
770 }
771 
772 /*
773  * Formats the reply message for a GET_MARKS request and sends it to the
774  * client
775  *
776  */
777 IPC_HANDLER(get_marks) {
778  yajl_gen gen = ygenalloc();
779  y(array_open);
780 
781  Con *con;
783  if (con->mark != NULL)
784  ystr(con->mark);
785 
786  y(array_close);
787 
788  const unsigned char *payload;
789  ylength length;
790  y(get_buf, &payload, &length);
791 
792  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_MARKS, payload);
793  y(free);
794 }
795 
796 /*
797  * Returns the version of i3
798  *
799  */
800 IPC_HANDLER(get_version) {
801  yajl_gen gen = ygenalloc();
802  y(map_open);
803 
804  ystr("major");
805  y(integer, MAJOR_VERSION);
806 
807  ystr("minor");
808  y(integer, MINOR_VERSION);
809 
810  ystr("patch");
811  y(integer, PATCH_VERSION);
812 
813  ystr("human_readable");
814  ystr(I3_VERSION);
815 
816  y(map_close);
817 
818  const unsigned char *payload;
819  ylength length;
820  y(get_buf, &payload, &length);
821 
822  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_VERSION, payload);
823  y(free);
824 }
825 
826 /*
827  * Formats the reply message for a GET_BAR_CONFIG request and sends it to the
828  * client.
829  *
830  */
831 IPC_HANDLER(get_bar_config) {
832  yajl_gen gen = ygenalloc();
833 
834  /* If no ID was passed, we return a JSON array with all IDs */
835  if (message_size == 0) {
836  y(array_open);
837  Barconfig *current;
838  TAILQ_FOREACH(current, &barconfigs, configs) {
839  ystr(current->id);
840  }
841  y(array_close);
842 
843  const unsigned char *payload;
844  ylength length;
845  y(get_buf, &payload, &length);
846 
847  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_BAR_CONFIG, payload);
848  y(free);
849  return;
850  }
851 
852  /* To get a properly terminated buffer, we copy
853  * message_size bytes out of the buffer */
854  char *bar_id = scalloc(message_size + 1);
855  strncpy(bar_id, (const char *)message, message_size);
856  LOG("IPC: looking for config for bar ID \"%s\"\n", bar_id);
857  Barconfig *current, *config = NULL;
858  TAILQ_FOREACH(current, &barconfigs, configs) {
859  if (strcmp(current->id, bar_id) != 0)
860  continue;
861 
862  config = current;
863  break;
864  }
865 
866  if (!config) {
867  /* If we did not find a config for the given ID, the reply will contain
868  * a null 'id' field. */
869  y(map_open);
870 
871  ystr("id");
872  y(null);
873 
874  y(map_close);
875  } else {
876  dump_bar_config(gen, config);
877  }
878 
879  const unsigned char *payload;
880  ylength length;
881  y(get_buf, &payload, &length);
882 
883  ipc_send_message(fd, length, I3_IPC_REPLY_TYPE_BAR_CONFIG, payload);
884  y(free);
885 }
886 
887 /*
888  * Callback for the YAJL parser (will be called when a string is parsed).
889  *
890  */
891 static int add_subscription(void *extra, const unsigned char *s,
892  ylength len) {
893  ipc_client *client = extra;
894 
895  DLOG("should add subscription to extra %p, sub %.*s\n", client, (int)len, s);
896  int event = client->num_events;
897 
898  client->num_events++;
899  client->events = realloc(client->events, client->num_events * sizeof(char *));
900  /* We copy the string because it is not null-terminated and strndup()
901  * is missing on some BSD systems */
902  client->events[event] = scalloc(len + 1);
903  memcpy(client->events[event], s, len);
904 
905  DLOG("client is now subscribed to:\n");
906  for (int i = 0; i < client->num_events; i++)
907  DLOG("event %s\n", client->events[i]);
908  DLOG("(done)\n");
909 
910  return 1;
911 }
912 
913 /*
914  * Subscribes this connection to the event types which were given as a JSON
915  * serialized array in the payload field of the message.
916  *
917  */
918 IPC_HANDLER(subscribe) {
919  yajl_handle p;
920  yajl_status stat;
921  ipc_client *current, *client = NULL;
922 
923  /* Search the ipc_client structure for this connection */
924  TAILQ_FOREACH(current, &all_clients, clients) {
925  if (current->fd != fd)
926  continue;
927 
928  client = current;
929  break;
930  }
931 
932  if (client == NULL) {
933  ELOG("Could not find ipc_client data structure for fd %d\n", fd);
934  return;
935  }
936 
937  /* Setup the JSON parser */
938  static yajl_callbacks callbacks = {
939  .yajl_string = add_subscription,
940  };
941 
942  p = yalloc(&callbacks, (void *)client);
943  stat = yajl_parse(p, (const unsigned char *)message, message_size);
944  if (stat != yajl_status_ok) {
945  unsigned char *err;
946  err = yajl_get_error(p, true, (const unsigned char *)message,
947  message_size);
948  ELOG("YAJL parse error: %s\n", err);
949  yajl_free_error(p, err);
950 
951  const char *reply = "{\"success\":false}";
952  ipc_send_message(fd, strlen(reply), I3_IPC_REPLY_TYPE_SUBSCRIBE, (const uint8_t *)reply);
953  yajl_free(p);
954  return;
955  }
956  yajl_free(p);
957  const char *reply = "{\"success\":true}";
958  ipc_send_message(fd, strlen(reply), I3_IPC_REPLY_TYPE_SUBSCRIBE, (const uint8_t *)reply);
959 }
960 
961 /* The index of each callback function corresponds to the numeric
962  * value of the message type (see include/i3/ipc.h) */
964  handle_command,
965  handle_get_workspaces,
966  handle_subscribe,
967  handle_get_outputs,
968  handle_tree,
969  handle_get_marks,
970  handle_get_bar_config,
971  handle_get_version,
972 };
973 
974 /*
975  * Handler for activity on a client connection, receives a message from a
976  * client.
977  *
978  * For now, the maximum message size is 2048. I’m not sure for what the
979  * IPC interface will be used in the future, thus I’m not implementing a
980  * mechanism for arbitrarily long messages, as it seems like overkill
981  * at the moment.
982  *
983  */
984 static void ipc_receive_message(EV_P_ struct ev_io *w, int revents) {
985  uint32_t message_type;
986  uint32_t message_length;
987  uint8_t *message = NULL;
988 
989  int ret = ipc_recv_message(w->fd, &message_type, &message_length, &message);
990  /* EOF or other error */
991  if (ret < 0) {
992  /* Was this a spurious read? See ev(3) */
993  if (ret == -1 && errno == EAGAIN) {
994  FREE(message);
995  return;
996  }
997 
998  /* If not, there was some kind of error. We don’t bother
999  * and close the connection */
1000  close(w->fd);
1001 
1002  /* Delete the client from the list of clients */
1003  ipc_client *current;
1004  TAILQ_FOREACH(current, &all_clients, clients) {
1005  if (current->fd != w->fd)
1006  continue;
1007 
1008  for (int i = 0; i < current->num_events; i++)
1009  free(current->events[i]);
1010  /* We can call TAILQ_REMOVE because we break out of the
1011  * TAILQ_FOREACH afterwards */
1012  TAILQ_REMOVE(&all_clients, current, clients);
1013  free(current);
1014  break;
1015  }
1016 
1017  ev_io_stop(EV_A_ w);
1018  free(w);
1019  FREE(message);
1020 
1021  DLOG("IPC: client disconnected\n");
1022  return;
1023  }
1024 
1025  if (message_type >= (sizeof(handlers) / sizeof(handler_t)))
1026  DLOG("Unhandled message type: %d\n", message_type);
1027  else {
1028  handler_t h = handlers[message_type];
1029  h(w->fd, message, 0, message_length, message_type);
1030  }
1031 
1032  FREE(message);
1033 }
1034 
1035 /*
1036  * Handler for activity on the listening socket, meaning that a new client
1037  * has just connected and we should accept() him. Sets up the event handler
1038  * for activity on the new connection and inserts the file descriptor into
1039  * the list of clients.
1040  *
1041  */
1042 void ipc_new_client(EV_P_ struct ev_io *w, int revents) {
1043  struct sockaddr_un peer;
1044  socklen_t len = sizeof(struct sockaddr_un);
1045  int client;
1046  if ((client = accept(w->fd, (struct sockaddr *)&peer, &len)) < 0) {
1047  if (errno == EINTR)
1048  return;
1049  else
1050  perror("accept()");
1051  return;
1052  }
1053 
1054  /* Close this file descriptor on exec() */
1055  (void)fcntl(client, F_SETFD, FD_CLOEXEC);
1056 
1057  set_nonblock(client);
1058 
1059  struct ev_io *package = scalloc(sizeof(struct ev_io));
1060  ev_io_init(package, ipc_receive_message, client, EV_READ);
1061  ev_io_start(EV_A_ package);
1062 
1063  DLOG("IPC: new client connected on fd %d\n", w->fd);
1064 
1065  ipc_client *new = scalloc(sizeof(ipc_client));
1066  new->fd = client;
1067 
1068  TAILQ_INSERT_TAIL(&all_clients, new, clients);
1069 }
1070 
1071 /*
1072  * Creates the UNIX domain socket at the given path, sets it to non-blocking
1073  * mode, bind()s and listen()s on it.
1074  *
1075  */
1076 int ipc_create_socket(const char *filename) {
1077  int sockfd;
1078 
1080 
1081  char *resolved = resolve_tilde(filename);
1082  DLOG("Creating IPC-socket at %s\n", resolved);
1083  char *copy = sstrdup(resolved);
1084  const char *dir = dirname(copy);
1085  if (!path_exists(dir))
1086  mkdirp(dir);
1087  free(copy);
1088 
1089  /* Unlink the unix domain socket before */
1090  unlink(resolved);
1091 
1092  if ((sockfd = socket(AF_LOCAL, SOCK_STREAM, 0)) < 0) {
1093  perror("socket()");
1094  free(resolved);
1095  return -1;
1096  }
1097 
1098  (void)fcntl(sockfd, F_SETFD, FD_CLOEXEC);
1099 
1100  struct sockaddr_un addr;
1101  memset(&addr, 0, sizeof(struct sockaddr_un));
1102  addr.sun_family = AF_LOCAL;
1103  strncpy(addr.sun_path, resolved, sizeof(addr.sun_path) - 1);
1104  if (bind(sockfd, (struct sockaddr *)&addr, sizeof(struct sockaddr_un)) < 0) {
1105  perror("bind()");
1106  free(resolved);
1107  return -1;
1108  }
1109 
1110  set_nonblock(sockfd);
1111 
1112  if (listen(sockfd, 5) < 0) {
1113  perror("listen()");
1114  free(resolved);
1115  return -1;
1116  }
1117 
1118  current_socketpath = resolved;
1119  return sockfd;
1120 }
1121 
1122 /*
1123  * Generates a json workspace event. Returns a dynamically allocated yajl
1124  * generator. Free with yajl_gen_free().
1125  */
1126 yajl_gen ipc_marshal_workspace_event(const char *change, Con *current, Con *old) {
1127  setlocale(LC_NUMERIC, "C");
1128  yajl_gen gen = ygenalloc();
1129 
1130  y(map_open);
1131 
1132  ystr("change");
1133  ystr(change);
1134 
1135  ystr("current");
1136  if (current == NULL)
1137  y(null);
1138  else
1139  dump_node(gen, current, false);
1140 
1141  ystr("old");
1142  if (old == NULL)
1143  y(null);
1144  else
1145  dump_node(gen, old, false);
1146 
1147  y(map_close);
1148 
1149  setlocale(LC_NUMERIC, "");
1150 
1151  return gen;
1152 }
1153 
1154 /*
1155  * For the workspace events we send, along with the usual "change" field, also
1156  * the workspace container in "current". For focus events, we send the
1157  * previously focused workspace in "old".
1158  */
1159 void ipc_send_workspace_event(const char *change, Con *current, Con *old) {
1160  yajl_gen gen = ipc_marshal_workspace_event(change, current, old);
1161 
1162  const unsigned char *payload;
1163  ylength length;
1164  y(get_buf, &payload, &length);
1165 
1166  ipc_send_event("workspace", I3_IPC_EVENT_WORKSPACE, (const char *)payload);
1167 
1168  y(free);
1169 }
1170 
1175 void ipc_send_window_event(const char *property, Con *con) {
1176  DLOG("Issue IPC window %s event (con = %p, window = 0x%08x)\n",
1177  property, con, (con->window ? con->window->id : XCB_WINDOW_NONE));
1178 
1179  setlocale(LC_NUMERIC, "C");
1180  yajl_gen gen = ygenalloc();
1181 
1182  y(map_open);
1183 
1184  ystr("change");
1185  ystr(property);
1186 
1187  ystr("container");
1188  dump_node(gen, con, false);
1189 
1190  y(map_close);
1191 
1192  const unsigned char *payload;
1193  ylength length;
1194  y(get_buf, &payload, &length);
1195 
1196  ipc_send_event("window", I3_IPC_EVENT_WINDOW, (const char *)payload);
1197  y(free);
1198  setlocale(LC_NUMERIC, "");
1199 }
1200 
1205  DLOG("Issue barconfig_update event for id = %s\n", barconfig->id);
1206  setlocale(LC_NUMERIC, "C");
1207  yajl_gen gen = ygenalloc();
1208 
1209  dump_bar_config(gen, barconfig);
1210 
1211  const unsigned char *payload;
1212  ylength length;
1213  y(get_buf, &payload, &length);
1214 
1215  ipc_send_event("barconfig_update", I3_IPC_EVENT_BARCONFIG_UPDATE, (const char *)payload);
1216  y(free);
1217  setlocale(LC_NUMERIC, "");
1218 }
1219 
1220 /*
1221  * For the binding events, we send the serialized binding struct.
1222  */
1223 void ipc_send_binding_event(const char *event_type, Binding *bind) {
1224  DLOG("Issue IPC binding %s event (sym = %s, code = %d)\n", event_type, bind->symbol, bind->keycode);
1225 
1226  setlocale(LC_NUMERIC, "C");
1227 
1228  yajl_gen gen = ygenalloc();
1229 
1230  y(map_open);
1231 
1232  ystr("change");
1233  ystr(event_type);
1234 
1235  ystr("binding");
1236  dump_binding(gen, bind);
1237 
1238  y(map_close);
1239 
1240  const unsigned char *payload;
1241  ylength length;
1242  y(get_buf, &payload, &length);
1243 
1244  ipc_send_event("binding", I3_IPC_EVENT_BINDING, (const char *)payload);
1245 
1246  y(free);
1247  setlocale(LC_NUMERIC, "");
1248 }
Definition: ipc.h:25
Definition: data.h:95
const char * i3string_as_utf8(i3String *str)
Returns the UTF-8 encoded version of the i3String.
char * sstrdup(const char *str)
Safe-wrapper around strdup which exits if malloc returns NULL (meaning that there is no more memory a...
void ipc_shutdown(void)
Calls shutdown() on each socket and closes it.
Definition: ipc.c:98
bool urgent
Definition: data.h:504
char * name
Name of the output.
Definition: data.h:328
char * symbol
Symbol the user specified in configfile, if any.
Definition: data.h:274
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:507
Definition: data.h:61
bool mkdirp(const char *path)
Emulates mkdir -p (creates any missing folders)
Definition: ipc.c:44
uint32_t y
Definition: data.h:132
#define TAILQ_REMOVE(head, elm, field)
Definition: queue.h:402
Config config
Definition: config.c:17
bool hide_binding_mode_indicator
Hide mode button? Configuration option is 'binding_mode_indicator no' but we invert the bool for the ...
Definition: config.h:299
Con * con_get_workspace(Con *con)
Gets the workspace container this node is on.
Definition: con.c:298
static void dump_bar_config(yajl_gen gen, Barconfig *config)
Definition: ipc.c:497
Stores a rectangle, for example the size of a window, the child window etc.
Definition: data.h:130
#define LOG(fmt,...)
Definition: libi3.h:76
bool workspace_is_visible(Con *ws)
Returns true if the workspace is currently visible.
Definition: workspace.c:228
enum Barconfig::@5 mode
Bar display mode (hide unless modifier is pressed or show in dock mode or always hide in invisible mo...
Definition: data.h:62
input_type_t input_type
Definition: data.h:242
enum Barconfig::@8 position
Bar position (bottom by default).
struct Rect rect
Definition: data.h:534
struct all_cons_head all_cons
Definition: tree.c:17
char * mark
Definition: data.h:548
Rect rect
x, y, width, height
Definition: data.h:334
#define ystr(str)
Definition: commands.c:20
CommandResult * parse_command(const char *input, yajl_gen gen)
Parses and executes the given command.
bool verbose
Enable verbose mode? Useful for debugging purposes.
Definition: config.h:302
size_t ylength
Definition: yajl_utils.h:22
#define TAILQ_FIRST(head)
Definition: queue.h:336
TAILQ_HEAD(ipc_client_head, ipc_client)
Definition: ipc.c:25
struct Window * window
Definition: data.h:567
IPC_HANDLER(command)
Definition: ipc.c:114
void dump_node(yajl_gen gen, struct Con *con, bool inplace_restart)
Definition: ipc.c:208
handler_t handlers[8]
Definition: ipc.c:963
An Output is a physical output on your graphics driver.
Definition: data.h:313
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...
bool con_is_internal(Con *con)
Returns true if the container is internal, such as __i3_scratch.
Definition: con.c:392
void command_result_free(CommandResult *result)
Frees a CommandResult.
Holds a keybinding, consisting of a keycode combined with modifiers and the command which is executed...
Definition: data.h:239
static void ipc_receive_message(EV_P_ struct ev_io *w, int revents)
Definition: ipc.c:984
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:75
static void dump_binding(yajl_gen gen, Binding *bind)
Definition: ipc.c:154
enum Con::@18 type
Definition: data.h:93
#define DLOG(fmt,...)
Definition: libi3.h:86
A struct that contains useful information about the result of a command as a whole (e...
char * command
Command, like in command mode.
Definition: data.h:284
Definition: data.h:94
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:1076
Con * con_get_fullscreen_con(Con *con, fullscreen_mode_t fullscreen_mode)
Returns the first fullscreen node below this node.
Definition: con.c:346
char * wheel_up_cmd
Command that should be run when mouse wheel up button is pressed over i3bar to override the default b...
Definition: config.h:266
char ** events
Definition: ipc.h:30
struct outputs_head outputs
Definition: randr.c:28
uint32_t height
Definition: data.h:134
char * wheel_down_cmd
Command that should be run when mouse wheel down button is pressed over i3bar to override the default...
Definition: config.h:270
Con * focused
Definition: tree.c:15
Con * con
Pointer to the Con which represents this output.
Definition: data.h:331
char * id
Automatically generated ID for this bar config.
Definition: config.h:226
int num
the workspace number, if this Con is of type CT_WORKSPACE and the workspace is not a named workspace ...
Definition: data.h:530
char * name
Definition: data.h:540
Definition: data.h:99
enum Barconfig::@7 modifier
Bar modifier (to show bar when in hide mode).
static void dump_rect(yajl_gen gen, const char *name, Rect r)
Definition: ipc.c:140
int num_events
Definition: ipc.h:29
#define TAILQ_EMPTY(head)
Definition: queue.h:344
int ipc_send_message(int sockfd, const uint32_t message_size, const uint32_t message_type, const uint8_t *payload)
Formats a message (payload) of the given size and type and sends it to i3 via the given socket file d...
#define yalloc(callbacks, client)
Definition: yajl_utils.h:21
#define YSTR_IF_SET(name)
bool strip_workspace_numbers
Strip workspace numbers? Configuration option is 'strip_workspace_numbers yes'.
Definition: config.h:295
#define ygenalloc()
Definition: yajl_utils.h:20
bool active
Whether the output is currently active (has a CRTC attached with a valid mode)
Definition: data.h:319
char * resolve_tilde(const char *path)
This function resolves ~ in pathnames.
Definition: util.c:168
bool con_is_split(Con *con)
Definition: con.c:246
enum Match::@13 dock
#define ELOG(fmt,...)
Definition: libi3.h:81
Definition: data.h:58
A "match" is a data structure which acts like a mask or expression to match certain windows or not...
Definition: data.h:404
static int add_subscription(void *extra, const unsigned char *s, ylength len)
Definition: ipc.c:891
orientation_t con_orientation(Con *con)
Returns the orientation of the given container (for stacked containers, vertical orientation is used ...
Definition: con.c:889
A 'Con' represents everything from the X11 root window down to a single X11 window.
Definition: data.h:499
uint32_t x
Definition: data.h:131
enum Barconfig::@6 hidden_state
void * scalloc(size_t size)
Safe-wrapper around calloc which exits if malloc returns NULL (meaning that there is no more memory a...
char * current_socketpath
Definition: ipc.c:23
Definition: data.h:97
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:1159
uint32_t keycode
Keycode to bind.
Definition: data.h:266
enum Match::@15 insert_where
#define TAILQ_INSERT_TAIL(head, elm, field)
Definition: queue.h:376
uint32_t mods
Bitmask consisting of BIND_MOD_1, BIND_MODE_SWITCH, …
Definition: data.h:269
struct Con * croot
Definition: tree.c:14
bool hide_workspace_buttons
Hide workspace buttons? Configuration option is 'workspace_buttons no' but we invert the bool to get ...
Definition: config.h:291
#define TAILQ_HEAD_INITIALIZER(head)
Definition: queue.h:324
yajl_gen ipc_marshal_workspace_event(const char *change, Con *current, Con *old)
Generates a json workspace event.
Definition: ipc.c:1126
bool path_exists(const char *path)
Checks if the given path exists by calling stat().
Definition: util.c:198
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:1042
struct barconfig_head barconfigs
Definition: config.c:19
char ** outputs
Outputs on which this bar should show up on.
Definition: config.h:232
Con * output_get_content(Con *output)
Returns the output container below the given output container.
Definition: output.c:18
uint32_t y
Definition: data.h:31
xcb_window_t id
Definition: data.h:345
#define TAILQ_FOREACH(var, head, field)
Definition: queue.h:347
void(* handler_t)(int, uint8_t *, int, uint32_t, uint32_t)
Definition: ipc.h:45
#define DUMP_PROPERTY(key, prop_name)
Holds the status bar configuration (i3bar).
Definition: config.h:223
#define FREE(pointer)
Definition: util.h:48
bool primary
Definition: data.h:325
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, in "container".
Definition: ipc.c:1175
Definition: data.h:60
int fd
Definition: ipc.h:26
uint32_t width
Definition: data.h:133
#define DUMP_REGEX(re_name)
Definition: data.h:98
void ipc_send_binding_event(const char *event_type, Binding *bind)
For the binding events, we send the serialized binding struct.
Definition: ipc.c:1223
int num_outputs
Number of outputs in the outputs array.
Definition: config.h:229
void ipc_send_barconfig_update_event(Barconfig *barconfig)
For the barconfig update events, we send the serialized barconfig.
Definition: ipc.c:1204