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1 #pragma once
2
3 /***
4 This file is part of systemd.
5
6 Copyright 2013 Lennart Poettering
7
8 systemd is free software; you can redistribute it and/or modify it
9 under the terms of the GNU Lesser General Public License as published by
10 the Free Software Foundation; either version 2.1 of the License, or
11 (at your option) any later version.
12
13 systemd is distributed in the hope that it will be useful, but
14 WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 Lesser General Public License for more details.
17
18 You should have received a copy of the GNU Lesser General Public License
19 along with systemd; If not, see <http://www.gnu.org/licenses/>.
20 ***/
21
22 #include <pthread.h>
23 #include <sys/socket.h>
24
25 #include "sd-bus.h"
26
27 #include "bus-error.h"
28 #include "bus-kernel.h"
29 #include "bus-match.h"
30 #include "hashmap.h"
31 #include "kdbus.h"
32 #include "list.h"
33 #include "prioq.h"
34 #include "refcnt.h"
35 #include "socket-util.h"
36 #include "util.h"
37
38 struct reply_callback {
39 sd_bus_message_handler_t callback;
40 usec_t timeout;
41 uint64_t cookie;
42 unsigned prioq_idx;
43 };
44
45 struct filter_callback {
46 sd_bus_message_handler_t callback;
47
48 unsigned last_iteration;
49
50 LIST_FIELDS(struct filter_callback, callbacks);
51 };
52
53 struct match_callback {
54 sd_bus_message_handler_t callback;
55
56 uint64_t cookie;
57 unsigned last_iteration;
58
59 char *match_string;
60
61 struct bus_match_node *match_node;
62 };
63
64 struct node {
65 char *path;
66 struct node *parent;
67 LIST_HEAD(struct node, child);
68 LIST_FIELDS(struct node, siblings);
69
70 LIST_HEAD(struct node_callback, callbacks);
71 LIST_HEAD(struct node_vtable, vtables);
72 LIST_HEAD(struct node_enumerator, enumerators);
73 LIST_HEAD(struct node_object_manager, object_managers);
74 };
75
76 struct node_callback {
77 struct node *node;
78
79 bool is_fallback;
80 sd_bus_message_handler_t callback;
81
82 unsigned last_iteration;
83
84 LIST_FIELDS(struct node_callback, callbacks);
85 };
86
87 struct node_enumerator {
88 struct node *node;
89
90 sd_bus_node_enumerator_t callback;
91
92 unsigned last_iteration;
93
94 LIST_FIELDS(struct node_enumerator, enumerators);
95 };
96
97 struct node_object_manager {
98 struct node *node;
99
100 LIST_FIELDS(struct node_object_manager, object_managers);
101 };
102
103 struct node_vtable {
104 struct node *node;
105
106 char *interface;
107 bool is_fallback;
108 const sd_bus_vtable *vtable;
109 sd_bus_object_find_t find;
110
111 unsigned last_iteration;
112
113 LIST_FIELDS(struct node_vtable, vtables);
114 };
115
116 struct vtable_member {
117 const char *path;
118 const char *interface;
119 const char *member;
120 struct node_vtable *parent;
121 unsigned last_iteration;
122 const sd_bus_vtable *vtable;
123 };
124
125 typedef enum BusSlotType {
126 BUS_REPLY_CALLBACK,
127 BUS_FILTER_CALLBACK,
128 BUS_MATCH_CALLBACK,
129 BUS_NODE_CALLBACK,
130 BUS_NODE_ENUMERATOR,
131 BUS_NODE_VTABLE,
132 BUS_NODE_OBJECT_MANAGER,
133 _BUS_SLOT_INVALID = -1,
134 } BusSlotType;
135
136 struct sd_bus_slot {
137 unsigned n_ref;
138 sd_bus *bus;
139 void *userdata;
140 BusSlotType type:5;
141 bool floating:1;
142 bool match_added:1;
143 char *description;
144
145 LIST_FIELDS(sd_bus_slot, slots);
146
147 union {
148 struct reply_callback reply_callback;
149 struct filter_callback filter_callback;
150 struct match_callback match_callback;
151 struct node_callback node_callback;
152 struct node_enumerator node_enumerator;
153 struct node_object_manager node_object_manager;
154 struct node_vtable node_vtable;
155 };
156 };
157
158 enum bus_state {
159 BUS_UNSET,
160 BUS_OPENING,
161 BUS_AUTHENTICATING,
162 BUS_HELLO,
163 BUS_RUNNING,
164 BUS_CLOSING,
165 BUS_CLOSED
166 };
167
168 static inline bool BUS_IS_OPEN(enum bus_state state) {
169 return state > BUS_UNSET && state < BUS_CLOSING;
170 }
171
172 enum bus_auth {
173 _BUS_AUTH_INVALID,
174 BUS_AUTH_EXTERNAL,
175 BUS_AUTH_ANONYMOUS
176 };
177
178 struct sd_bus {
179 /* We use atomic ref counting here since sd_bus_message
180 objects retain references to their originating sd_bus but
181 we want to allow them to be processed in a different
182 thread. We won't provide full thread safety, but only the
183 bare minimum that makes it possible to use sd_bus and
184 sd_bus_message objects independently and on different
185 threads as long as each object is used only once at the
186 same time. */
187 RefCount n_ref;
188
189 enum bus_state state;
190 int input_fd, output_fd;
191 int message_version;
192 int message_endian;
193
194 bool is_kernel:1;
195 bool can_fds:1;
196 bool bus_client:1;
197 bool ucred_valid:1;
198 bool is_server:1;
199 bool anonymous_auth:1;
200 bool prefer_readv:1;
201 bool prefer_writev:1;
202 bool match_callbacks_modified:1;
203 bool filter_callbacks_modified:1;
204 bool nodes_modified:1;
205 bool trusted:1;
206 bool fake_creds_valid:1;
207 bool fake_pids_valid:1;
208 bool manual_peer_interface:1;
209 bool is_system:1;
210 bool is_user:1;
211 bool allow_interactive_authorization:1;
212
213 int use_memfd;
214
215 void *rbuffer;
216 size_t rbuffer_size;
217
218 sd_bus_message **rqueue;
219 unsigned rqueue_size;
220 size_t rqueue_allocated;
221
222 sd_bus_message **wqueue;
223 unsigned wqueue_size;
224 size_t windex;
225 size_t wqueue_allocated;
226
227 uint64_t cookie;
228
229 char *unique_name;
230 uint64_t unique_id;
231
232 struct bus_match_node match_callbacks;
233 Prioq *reply_callbacks_prioq;
234 OrderedHashmap *reply_callbacks;
235 LIST_HEAD(struct filter_callback, filter_callbacks);
236
237 Hashmap *nodes;
238 Hashmap *vtable_methods;
239 Hashmap *vtable_properties;
240
241 union sockaddr_union sockaddr;
242 socklen_t sockaddr_size;
243
244 char *kernel;
245 char *machine;
246 pid_t nspid;
247
248 sd_id128_t server_id;
249
250 char *address;
251 unsigned address_index;
252
253 int last_connect_error;
254
255 enum bus_auth auth;
256 size_t auth_rbegin;
257 struct iovec auth_iovec[3];
258 unsigned auth_index;
259 char *auth_buffer;
260 usec_t auth_timeout;
261
262 struct ucred ucred;
263 char *label;
264
265 uint64_t creds_mask;
266
267 int *fds;
268 unsigned n_fds;
269
270 char *exec_path;
271 char **exec_argv;
272
273 unsigned iteration_counter;
274
275 void *kdbus_buffer;
276
277 /* We do locking around the memfd cache, since we want to
278 * allow people to process a sd_bus_message in a different
279 * thread then it was generated on and free it there. Since
280 * adding something to the memfd cache might happen when a
281 * message is released, we hence need to protect this bit with
282 * a mutex. */
283 pthread_mutex_t memfd_cache_mutex;
284 struct memfd_cache memfd_cache[MEMFD_CACHE_MAX];
285 unsigned n_memfd_cache;
286
287 pid_t original_pid;
288
289 uint64_t hello_flags;
290 uint64_t attach_flags;
291
292 uint64_t match_cookie;
293
294 sd_event_source *input_io_event_source;
295 sd_event_source *output_io_event_source;
296 sd_event_source *time_event_source;
297 sd_event_source *quit_event_source;
298 sd_event *event;
299 int event_priority;
300
301 sd_bus_message *current_message;
302 sd_bus_slot *current_slot;
303 sd_bus_message_handler_t current_handler;
304 void *current_userdata;
305
306 sd_bus **default_bus_ptr;
307 pid_t tid;
308
309 struct kdbus_creds fake_creds;
310 struct kdbus_pids fake_pids;
311 char *fake_label;
312
313 char *cgroup_root;
314
315 char *description;
316
317 size_t bloom_size;
318 unsigned bloom_n_hash;
319
320 sd_bus_track *track_queue;
321
322 LIST_HEAD(sd_bus_slot, slots);
323 };
324
325 #define BUS_DEFAULT_TIMEOUT ((usec_t) (25 * USEC_PER_SEC))
326
327 #define BUS_WQUEUE_MAX 1024
328 #define BUS_RQUEUE_MAX 64*1024
329
330 #define BUS_MESSAGE_SIZE_MAX (64*1024*1024)
331 #define BUS_AUTH_SIZE_MAX (64*1024)
332
333 #define BUS_CONTAINER_DEPTH 128
334
335 /* Defined by the specification as maximum size of an array in
336 * bytes */
337 #define BUS_ARRAY_MAX_SIZE 67108864
338
339 #define BUS_FDS_MAX 1024
340
341 #define BUS_EXEC_ARGV_MAX 256
342
343 bool interface_name_is_valid(const char *p) _pure_;
344 bool service_name_is_valid(const char *p) _pure_;
345 char* service_name_startswith(const char *a, const char *b);
346 bool member_name_is_valid(const char *p) _pure_;
347 bool object_path_is_valid(const char *p) _pure_;
348 char *object_path_startswith(const char *a, const char *b) _pure_;
349
350 bool namespace_complex_pattern(const char *pattern, const char *value) _pure_;
351 bool path_complex_pattern(const char *pattern, const char *value) _pure_;
352
353 bool namespace_simple_pattern(const char *pattern, const char *value) _pure_;
354 bool path_simple_pattern(const char *pattern, const char *value) _pure_;
355
356 int bus_message_type_from_string(const char *s, uint8_t *u) _pure_;
357 const char *bus_message_type_to_string(uint8_t u) _pure_;
358
359 #define error_name_is_valid interface_name_is_valid
360
361 int bus_ensure_running(sd_bus *bus);
362 int bus_start_running(sd_bus *bus);
363 int bus_next_address(sd_bus *bus);
364
365 int bus_seal_synthetic_message(sd_bus *b, sd_bus_message *m);
366
367 int bus_rqueue_make_room(sd_bus *bus);
368
369 bool bus_pid_changed(sd_bus *bus);
370
371 char *bus_address_escape(const char *v);
372
373 #define OBJECT_PATH_FOREACH_PREFIX(prefix, path) \
374 for (char *_slash = ({ strcpy((prefix), (path)); streq((prefix), "/") ? NULL : strrchr((prefix), '/'); }) ; \
375 _slash && !(_slash[(_slash) == (prefix)] = 0); \
376 _slash = streq((prefix), "/") ? NULL : strrchr((prefix), '/'))
377
378 /* If we are invoking callbacks of a bus object, ensure unreffing the
379 * bus from the callback doesn't destroy the object we are working
380 * on */
381 #define BUS_DONT_DESTROY(bus) \
382 _cleanup_(sd_bus_unrefp) _unused_ sd_bus *_dont_destroy_##bus = sd_bus_ref(bus)
383
384 int bus_set_address_system(sd_bus *bus);
385 int bus_set_address_user(sd_bus *bus);
386 int bus_set_address_system_remote(sd_bus *b, const char *host);
387 int bus_set_address_system_machine(sd_bus *b, const char *machine);
388
389 int bus_remove_match_by_string(sd_bus *bus, const char *match, sd_bus_message_handler_t callback, void *userdata);
390
391 int bus_get_root_path(sd_bus *bus);
392
393 int bus_maybe_reply_error(sd_bus_message *m, int r, sd_bus_error *error);
394
395 #define bus_assert_return(expr, r, error) \
396 do { \
397 if (!assert_log(expr, #expr)) \
398 return sd_bus_error_set_errno(error, r); \
399 } while (false)