chiark / gitweb /
sd-dhcp-client: accept infinite lease lifetime
[elogind.git] / src / libsystemd-network / sd-dhcp-client.c
1 /***
2   This file is part of systemd.
3
4   Copyright (C) 2013 Intel Corporation. All rights reserved.
5
6   systemd is free software; you can redistribute it and/or modify it
7   under the terms of the GNU Lesser General Public License as published by
8   the Free Software Foundation; either version 2.1 of the License, or
9   (at your option) any later version.
10
11   systemd is distributed in the hope that it will be useful, but
12   WITHOUT ANY WARRANTY; without even the implied warranty of
13   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14   Lesser General Public License for more details.
15
16   You should have received a copy of the GNU Lesser General Public License
17   along with systemd; If not, see <http://www.gnu.org/licenses/>.
18 ***/
19
20 #include <stdlib.h>
21 #include <errno.h>
22 #include <string.h>
23 #include <stdio.h>
24 #include <net/ethernet.h>
25 #include <sys/param.h>
26 #include <sys/ioctl.h>
27
28 #include "util.h"
29 #include "list.h"
30
31 #include "dhcp-protocol.h"
32 #include "dhcp-internal.h"
33 #include "dhcp-lease-internal.h"
34 #include "sd-dhcp-client.h"
35
36 struct sd_dhcp_client {
37         DHCPState state;
38         sd_event *event;
39         int event_priority;
40         sd_event_source *timeout_resend;
41         int index;
42         int fd;
43         union sockaddr_union link;
44         sd_event_source *receive_message;
45         uint8_t *req_opts;
46         size_t req_opts_allocated;
47         size_t req_opts_size;
48         be32_t last_addr;
49         struct ether_addr mac_addr;
50         uint32_t xid;
51         usec_t start_time;
52         uint16_t secs;
53         unsigned int attempt;
54         usec_t request_sent;
55         sd_event_source *timeout_t1;
56         sd_event_source *timeout_t2;
57         sd_event_source *timeout_expire;
58         sd_dhcp_client_cb_t cb;
59         void *userdata;
60         sd_dhcp_lease *lease;
61 };
62
63 static const uint8_t default_req_opts[] = {
64         DHCP_OPTION_SUBNET_MASK,
65         DHCP_OPTION_ROUTER,
66         DHCP_OPTION_HOST_NAME,
67         DHCP_OPTION_DOMAIN_NAME,
68         DHCP_OPTION_DOMAIN_NAME_SERVER,
69         DHCP_OPTION_NTP_SERVER,
70 };
71
72 static int client_receive_message_raw(sd_event_source *s, int fd,
73                                       uint32_t revents, void *userdata);
74 static int client_receive_message_udp(sd_event_source *s, int fd,
75                                       uint32_t revents, void *userdata);
76
77 int sd_dhcp_client_set_callback(sd_dhcp_client *client, sd_dhcp_client_cb_t cb,
78                                 void *userdata) {
79         assert_return(client, -EINVAL);
80
81         client->cb = cb;
82         client->userdata = userdata;
83
84         return 0;
85 }
86
87 int sd_dhcp_client_set_request_option(sd_dhcp_client *client, uint8_t option) {
88         size_t i;
89
90         assert_return(client, -EINVAL);
91         assert_return (client->state == DHCP_STATE_INIT, -EBUSY);
92
93         switch(option) {
94         case DHCP_OPTION_PAD:
95         case DHCP_OPTION_OVERLOAD:
96         case DHCP_OPTION_MESSAGE_TYPE:
97         case DHCP_OPTION_PARAMETER_REQUEST_LIST:
98         case DHCP_OPTION_END:
99                 return -EINVAL;
100
101         default:
102                 break;
103         }
104
105         for (i = 0; i < client->req_opts_size; i++)
106                 if (client->req_opts[i] == option)
107                         return -EEXIST;
108
109         if (!GREEDY_REALLOC(client->req_opts, client->req_opts_allocated,
110                             client->req_opts_size + 1))
111                 return -ENOMEM;
112
113         client->req_opts[client->req_opts_size++] = option;
114
115         return 0;
116 }
117
118 int sd_dhcp_client_set_request_address(sd_dhcp_client *client,
119                                        const struct in_addr *last_addr) {
120         assert_return(client, -EINVAL);
121         assert_return(client->state == DHCP_STATE_INIT, -EBUSY);
122
123         if (last_addr)
124                 client->last_addr = last_addr->s_addr;
125         else
126                 client->last_addr = INADDR_ANY;
127
128         return 0;
129 }
130
131 int sd_dhcp_client_set_index(sd_dhcp_client *client, int interface_index) {
132         assert_return(client, -EINVAL);
133         assert_return(client->state == DHCP_STATE_INIT, -EBUSY);
134         assert_return(interface_index >= -1, -EINVAL);
135
136         client->index = interface_index;
137
138         return 0;
139 }
140
141 int sd_dhcp_client_set_mac(sd_dhcp_client *client,
142                            const struct ether_addr *addr) {
143         assert_return(client, -EINVAL);
144         assert_return(client->state == DHCP_STATE_INIT, -EBUSY);
145
146         log_dhcp_client(client, "set MAC address to "
147                         "%02hhx:%02hhx:%02hhx:%02hhx:%02hhx:%02hhx",
148                         addr->ether_addr_octet[0],
149                         addr->ether_addr_octet[1],
150                         addr->ether_addr_octet[2],
151                         addr->ether_addr_octet[3],
152                         addr->ether_addr_octet[4],
153                         addr->ether_addr_octet[5]);
154
155         memcpy(&client->mac_addr, addr, ETH_ALEN);
156
157         return 0;
158 }
159
160 int sd_dhcp_client_get_lease(sd_dhcp_client *client, sd_dhcp_lease **ret) {
161         assert_return(client, -EINVAL);
162         assert_return(ret, -EINVAL);
163
164         if (client->state != DHCP_STATE_BOUND &&
165             client->state != DHCP_STATE_RENEWING &&
166             client->state != DHCP_STATE_REBINDING)
167                 return -EADDRNOTAVAIL;
168
169         *ret = sd_dhcp_lease_ref(client->lease);
170
171         return 0;
172 }
173
174 static int client_notify(sd_dhcp_client *client, int event) {
175         if (client->cb)
176                 client->cb(client, event, client->userdata);
177
178         return 0;
179 }
180
181 static int client_initialize(sd_dhcp_client *client) {
182         assert_return(client, -EINVAL);
183
184         client->receive_message =
185                 sd_event_source_unref(client->receive_message);
186
187         client->fd = safe_close(client->fd);
188
189         client->timeout_resend = sd_event_source_unref(client->timeout_resend);
190
191         client->timeout_t1 = sd_event_source_unref(client->timeout_t1);
192         client->timeout_t2 = sd_event_source_unref(client->timeout_t2);
193         client->timeout_expire = sd_event_source_unref(client->timeout_expire);
194
195         client->attempt = 1;
196
197         client->start_time = 0;
198         client->secs = 0;
199         client->state = DHCP_STATE_INIT;
200         client->xid = 0;
201
202         if (client->lease)
203                 client->lease = sd_dhcp_lease_unref(client->lease);
204
205         return 0;
206 }
207
208 static int client_stop(sd_dhcp_client *client, int error) {
209         assert_return(client, -EINVAL);
210
211         client_notify(client, error);
212
213         client_initialize(client);
214
215         log_dhcp_client(client, "STOPPED");
216
217         return 0;
218 }
219
220 static int client_message_init(sd_dhcp_client *client, DHCPMessage *message,
221                                uint8_t type, uint16_t secs, uint8_t **opt,
222                                size_t *optlen) {
223         int r;
224
225         assert(secs);
226
227         r = dhcp_message_init(message, BOOTREQUEST, client->xid, type, opt,
228                               optlen);
229         if (r < 0)
230                 return r;
231
232         /* Although 'secs' field is a SHOULD in RFC 2131, certain DHCP servers
233            refuse to issue an DHCP lease if 'secs' is set to zero */
234         message->secs = htobe16(secs);
235
236         memcpy(&message->chaddr, &client->mac_addr, ETH_ALEN);
237
238         if (client->state == DHCP_STATE_RENEWING ||
239             client->state == DHCP_STATE_REBINDING)
240                 message->ciaddr = client->lease->address;
241
242         /* Some DHCP servers will refuse to issue an DHCP lease if the Client
243            Identifier option is not set */
244         r = dhcp_option_append(opt, optlen, DHCP_OPTION_CLIENT_IDENTIFIER,
245                                ETH_ALEN, &client->mac_addr);
246         if (r < 0)
247                 return r;
248
249         if (type == DHCP_DISCOVER || type == DHCP_REQUEST) {
250                 be16_t max_size;
251
252                 r = dhcp_option_append(opt, optlen,
253                                        DHCP_OPTION_PARAMETER_REQUEST_LIST,
254                                        client->req_opts_size,
255                                        client->req_opts);
256                 if (r < 0)
257                         return r;
258
259                 /* Some DHCP servers will send bigger DHCP packets than the
260                    defined default size unless the Maximum Messge Size option
261                    is explicitely set */
262                 max_size = htobe16(DHCP_IP_UDP_SIZE + DHCP_MESSAGE_SIZE +
263                                    DHCP_MIN_OPTIONS_SIZE);
264                 r = dhcp_option_append(opt, optlen,
265                                        DHCP_OPTION_MAXIMUM_MESSAGE_SIZE,
266                                        2, &max_size);
267                 if (r < 0)
268                         return r;
269         }
270
271         return 0;
272 }
273
274 static int dhcp_client_send_raw(sd_dhcp_client *client, DHCPPacket *packet,
275                                 size_t len) {
276         dhcp_packet_append_ip_headers(packet, INADDR_ANY, DHCP_PORT_CLIENT,
277                                       INADDR_BROADCAST, DHCP_PORT_SERVER, len);
278
279         return dhcp_network_send_raw_socket(client->fd, &client->link,
280                                             packet, len);
281 }
282
283 static int client_send_discover(sd_dhcp_client *client, uint16_t secs) {
284         int err = 0;
285         _cleanup_free_ DHCPPacket *discover;
286         size_t optlen, len;
287         uint8_t *opt;
288
289         optlen = DHCP_MIN_OPTIONS_SIZE;
290         len = sizeof(DHCPPacket) + optlen;
291
292         discover = malloc0(len);
293
294         if (!discover)
295                 return -ENOMEM;
296
297         err = client_message_init(client, &discover->dhcp, DHCP_DISCOVER,
298                                   secs, &opt, &optlen);
299         if (err < 0)
300                 return err;
301
302         if (client->last_addr != INADDR_ANY) {
303                 err = dhcp_option_append(&opt, &optlen,
304                                          DHCP_OPTION_REQUESTED_IP_ADDRESS,
305                                          4, &client->last_addr);
306                 if (err < 0)
307                         return err;
308         }
309
310         err = dhcp_option_append(&opt, &optlen, DHCP_OPTION_END, 0, NULL);
311         if (err < 0)
312                 return err;
313
314         err = dhcp_client_send_raw(client, discover, len);
315         if (err < 0)
316                 return err;
317
318         log_dhcp_client(client, "DISCOVER");
319
320         return 0;
321 }
322
323 static int client_send_request(sd_dhcp_client *client, uint16_t secs) {
324         _cleanup_free_ DHCPPacket *request;
325         size_t optlen, len;
326         int err;
327         uint8_t *opt;
328
329         optlen = DHCP_MIN_OPTIONS_SIZE;
330         len = sizeof(DHCPPacket) + optlen;
331
332         request = malloc0(len);
333         if (!request)
334                 return -ENOMEM;
335
336         err = client_message_init(client, &request->dhcp, DHCP_REQUEST, secs,
337                                   &opt, &optlen);
338         if (err < 0)
339                 return err;
340
341         switch (client->state) {
342
343         case DHCP_STATE_INIT_REBOOT:
344                 err = dhcp_option_append(&opt, &optlen,
345                                          DHCP_OPTION_REQUESTED_IP_ADDRESS,
346                                          4, &client->last_addr);
347                 if (err < 0)
348                         return err;
349                 break;
350
351         case DHCP_STATE_REQUESTING:
352                 err = dhcp_option_append(&opt, &optlen,
353                                          DHCP_OPTION_REQUESTED_IP_ADDRESS,
354                                          4, &client->lease->address);
355                 if (err < 0)
356                         return err;
357
358                 err = dhcp_option_append(&opt, &optlen,
359                                          DHCP_OPTION_SERVER_IDENTIFIER,
360                                          4, &client->lease->server_address);
361                 if (err < 0)
362                         return err;
363                 break;
364
365         case DHCP_STATE_INIT:
366         case DHCP_STATE_SELECTING:
367         case DHCP_STATE_REBOOTING:
368         case DHCP_STATE_BOUND:
369         case DHCP_STATE_RENEWING:
370         case DHCP_STATE_REBINDING:
371
372                 break;
373         }
374
375         err = dhcp_option_append(&opt, &optlen, DHCP_OPTION_END, 0, NULL);
376         if (err < 0)
377                 return err;
378
379         if (client->state == DHCP_STATE_RENEWING) {
380                 err = dhcp_network_send_udp_socket(client->fd,
381                                                    client->lease->server_address,
382                                                    DHCP_PORT_SERVER,
383                                                    &request->dhcp,
384                                                    len - DHCP_IP_UDP_SIZE);
385         } else {
386                 err = dhcp_client_send_raw(client, request, len);
387         }
388         if (err < 0)
389                 return err;
390
391         log_dhcp_client(client, "REQUEST");
392
393         return 0;
394 }
395
396 static uint16_t client_update_secs(sd_dhcp_client *client, usec_t time_now)
397 {
398         client->secs = ((time_now - client->start_time) / USEC_PER_SEC) ? : 1;
399
400         return client->secs;
401 }
402
403 static int client_timeout_resend(sd_event_source *s, uint64_t usec,
404                                  void *userdata) {
405         sd_dhcp_client *client = userdata;
406         usec_t next_timeout = 0;
407         uint64_t time_now;
408         uint32_t time_left;
409         int r;
410
411         assert(s);
412         assert(client);
413         assert(client->event);
414
415         r = sd_event_get_now_monotonic(client->event, &time_now);
416         if (r < 0)
417                 goto error;
418
419         switch (client->state) {
420         case DHCP_STATE_RENEWING:
421
422                 time_left = (client->lease->t2 - client->lease->t1) / 2;
423                 if (time_left < 60)
424                         time_left = 60;
425
426                 next_timeout = time_now + time_left * USEC_PER_SEC;
427
428                 break;
429
430         case DHCP_STATE_REBINDING:
431
432                 time_left = (client->lease->lifetime - client->lease->t2) / 2;
433                 if (time_left < 60)
434                         time_left = 60;
435
436                 next_timeout = time_now + time_left * USEC_PER_SEC;
437                 break;
438
439         case DHCP_STATE_REBOOTING:
440                 /* start over as we did not receive a timely ack or nak */
441                 client->state = DHCP_STATE_INIT;
442                 client->attempt = 1;
443                 client->xid = random_u32();
444
445                 /* fall through */
446         case DHCP_STATE_INIT:
447         case DHCP_STATE_INIT_REBOOT:
448         case DHCP_STATE_SELECTING:
449         case DHCP_STATE_REQUESTING:
450         case DHCP_STATE_BOUND:
451
452                 if (client->attempt < 64)
453                         client->attempt *= 2;
454
455                 next_timeout = time_now + (client->attempt - 1) * USEC_PER_SEC;
456
457                 break;
458         }
459
460         next_timeout += (random_u32() & 0x1fffff);
461
462         client->timeout_resend = sd_event_source_unref(client->timeout_resend);
463
464         r = sd_event_add_monotonic(client->event,
465                                      &client->timeout_resend,
466                                      next_timeout,
467                                      10 * USEC_PER_MSEC,
468                                      client_timeout_resend, client);
469         if (r < 0)
470                 goto error;
471
472         r = sd_event_source_set_priority(client->timeout_resend,
473                                          client->event_priority);
474         if (r < 0)
475                 goto error;
476
477         switch (client->state) {
478         case DHCP_STATE_INIT:
479
480                 client_update_secs(client, time_now);
481
482                 r = client_send_discover(client, client->secs);
483                 if (r >= 0) {
484                         client->state = DHCP_STATE_SELECTING;
485                         client->attempt = 1;
486                 } else {
487                         if (client->attempt >= 64)
488                                 goto error;
489                 }
490
491                 break;
492
493         case DHCP_STATE_SELECTING:
494                 client_update_secs(client, time_now);
495
496                 r = client_send_discover(client, client->secs);
497                 if (r < 0 && client->attempt >= 64)
498                         goto error;
499
500                 break;
501
502         case DHCP_STATE_INIT_REBOOT:
503         case DHCP_STATE_REQUESTING:
504         case DHCP_STATE_RENEWING:
505         case DHCP_STATE_REBINDING:
506                 r = client_send_request(client, client->secs);
507                 if (r < 0 && client->attempt >= 64)
508                          goto error;
509
510                 if (client->state == DHCP_STATE_INIT_REBOOT)
511                         client->state = DHCP_STATE_REBOOTING;
512
513                 client->request_sent = time_now;
514
515                 break;
516
517         case DHCP_STATE_REBOOTING:
518         case DHCP_STATE_BOUND:
519
520                 break;
521         }
522
523         return 0;
524
525 error:
526         client_stop(client, r);
527
528         /* Errors were dealt with when stopping the client, don't spill
529            errors into the event loop handler */
530         return 0;
531 }
532
533 static int client_initialize_events(sd_dhcp_client *client,
534                                     sd_event_io_handler_t io_callback) {
535         int r;
536
537         assert(client);
538         assert(client->event);
539
540         r = sd_event_add_io(client->event, &client->receive_message,
541                             client->fd, EPOLLIN, io_callback,
542                             client);
543         if (r < 0)
544                 goto error;
545
546         r = sd_event_source_set_priority(client->receive_message,
547                                          client->event_priority);
548         if (r < 0)
549                 goto error;
550
551         client->timeout_resend = sd_event_source_unref(client->timeout_resend);
552
553         r = sd_event_add_monotonic(client->event,
554                                    &client->timeout_resend, 0, 0,
555                                    client_timeout_resend, client);
556         if (r < 0)
557                 goto error;
558
559         r = sd_event_source_set_priority(client->timeout_resend,
560                                          client->event_priority);
561
562 error:
563         if (r < 0)
564                 client_stop(client, r);
565
566         return 0;
567
568 }
569
570 static int client_start(sd_dhcp_client *client) {
571         int r;
572
573         assert_return(client, -EINVAL);
574         assert_return(client->event, -EINVAL);
575         assert_return(client->index > 0, -EINVAL);
576         assert_return(client->fd < 0, -EBUSY);
577         assert_return(client->xid == 0, -EINVAL);
578         assert_return(client->state == DHCP_STATE_INIT ||
579                       client->state == DHCP_STATE_INIT_REBOOT, -EBUSY);
580
581         client->xid = random_u32();
582
583         r = dhcp_network_bind_raw_socket(client->index, &client->link);
584
585         if (r < 0) {
586                 client_stop(client, r);
587                 return r;
588         }
589
590         client->fd = r;
591         client->start_time = now(CLOCK_MONOTONIC);
592         client->secs = 0;
593
594         log_dhcp_client(client, "STARTED");
595
596         return client_initialize_events(client, client_receive_message_raw);
597 }
598
599 static int client_timeout_expire(sd_event_source *s, uint64_t usec,
600                                  void *userdata) {
601         sd_dhcp_client *client = userdata;
602
603         log_dhcp_client(client, "EXPIRED");
604
605         client_notify(client, DHCP_EVENT_EXPIRED);
606
607         /* start over as the lease was lost */
608         client_initialize(client);
609         client_start(client);
610
611         return 0;
612 }
613
614 static int client_timeout_t2(sd_event_source *s, uint64_t usec, void *userdata) {
615         sd_dhcp_client *client = userdata;
616         int r;
617
618         client->receive_message = sd_event_source_unref(client->receive_message);
619         client->fd = safe_close(client->fd);
620
621         client->state = DHCP_STATE_REBINDING;
622         client->attempt = 1;
623
624         r = dhcp_network_bind_raw_socket(client->index, &client->link);
625         if (r < 0) {
626                 client_stop(client, r);
627                 return 0;
628         }
629
630         client->fd = r;
631
632         log_dhcp_client(client, "TIMEOUT T2");
633
634         return client_initialize_events(client, client_receive_message_raw);
635 }
636
637 static int client_timeout_t1(sd_event_source *s, uint64_t usec,
638                              void *userdata) {
639         sd_dhcp_client *client = userdata;
640         int r;
641
642         client->state = DHCP_STATE_RENEWING;
643         client->attempt = 1;
644
645         r = dhcp_network_bind_udp_socket(client->index,
646                                          client->lease->address,
647                                          DHCP_PORT_CLIENT);
648         if (r < 0) {
649                 client_stop(client, r);
650                 return 0;
651         }
652
653         client->fd = r;
654
655         log_dhcp_client(client, "TIMEOUT T1");
656
657         return client_initialize_events(client, client_receive_message_udp);
658 }
659
660 static int client_handle_offer(sd_dhcp_client *client, DHCPMessage *offer,
661                                size_t len) {
662         _cleanup_dhcp_lease_unref_ sd_dhcp_lease *lease = NULL;
663         int r;
664
665         r = dhcp_lease_new(&lease);
666         if (r < 0)
667                 return r;
668
669         r = dhcp_option_parse(offer, len, dhcp_lease_parse_options, lease);
670         if (r != DHCP_OFFER)
671                 return -ENOMSG;
672
673         lease->next_server = offer->siaddr;
674
675         lease->address = offer->yiaddr;
676
677         if (lease->address == INADDR_ANY ||
678             lease->server_address == INADDR_ANY ||
679             lease->subnet_mask == INADDR_ANY ||
680             lease->lifetime == 0)
681                 return -ENOMSG;
682
683         client->lease = lease;
684         lease = NULL;
685
686         log_dhcp_client(client, "OFFER");
687
688         return 0;
689 }
690
691 static int client_handle_ack(sd_dhcp_client *client, DHCPMessage *ack,
692                              size_t len) {
693         _cleanup_dhcp_lease_unref_ sd_dhcp_lease *lease = NULL;
694         int r;
695
696         r = dhcp_lease_new(&lease);
697         if (r < 0)
698                 return r;
699
700         r = dhcp_option_parse(ack, len, dhcp_lease_parse_options, lease);
701         if (r == DHCP_NAK) {
702                 log_dhcp_client(client, "NAK");
703                 return DHCP_EVENT_NO_LEASE;
704         }
705
706         if (r != DHCP_ACK)
707                 return -ENOMSG;
708
709         lease->next_server = ack->siaddr;
710
711         lease->address = ack->yiaddr;
712
713         if (lease->address == INADDR_ANY ||
714             lease->server_address == INADDR_ANY ||
715             lease->subnet_mask == INADDR_ANY || lease->lifetime == 0)
716                 return -ENOMSG;
717
718         r = DHCP_EVENT_IP_ACQUIRE;
719         if (client->lease) {
720                 if (client->lease->address != lease->address ||
721                     client->lease->subnet_mask != lease->subnet_mask ||
722                     client->lease->router != lease->router) {
723                         r = DHCP_EVENT_IP_CHANGE;
724                 }
725
726                 client->lease = sd_dhcp_lease_unref(client->lease);
727         }
728
729         client->lease = lease;
730         lease = NULL;
731
732         log_dhcp_client(client, "ACK");
733
734         return r;
735 }
736
737 static uint64_t client_compute_timeout(uint64_t request_sent,
738                                        uint32_t lifetime) {
739         return request_sent + (lifetime - 3) * USEC_PER_SEC +
740                 + (random_u32() & 0x1fffff);
741 }
742
743 static int client_set_lease_timeouts(sd_dhcp_client *client, uint64_t usec) {
744         uint64_t next_timeout;
745         int r;
746
747         assert(client);
748         assert(client->event);
749
750         /* don't set timers for infinite leases */
751         if (client->lease->lifetime == 0xffffffff)
752                 return 0;
753
754         if (client->lease->lifetime < 10)
755                 return -EINVAL;
756
757         client->timeout_t1 = sd_event_source_unref(client->timeout_t1);
758         client->timeout_t2 = sd_event_source_unref(client->timeout_t2);
759         client->timeout_expire = sd_event_source_unref(client->timeout_expire);
760
761         if (!client->lease->t1)
762                 client->lease->t1 = client->lease->lifetime / 2;
763
764         next_timeout = client_compute_timeout(client->request_sent,
765                                               client->lease->t1);
766         if (next_timeout < usec)
767                 return -EINVAL;
768
769         r = sd_event_add_monotonic(client->event,
770                                    &client->timeout_t1,
771                                    next_timeout,
772                                    10 * USEC_PER_MSEC,
773                                    client_timeout_t1, client);
774         if (r < 0)
775                 return r;
776
777         r = sd_event_source_set_priority(client->timeout_t1,
778                                          client->event_priority);
779         if (r < 0)
780                 return r;
781
782         if (!client->lease->t2)
783                 client->lease->t2 = client->lease->lifetime * 7 / 8;
784
785         if (client->lease->t2 < client->lease->t1)
786                 return -EINVAL;
787
788         if (client->lease->lifetime < client->lease->t2)
789                 return -EINVAL;
790
791         next_timeout = client_compute_timeout(client->request_sent,
792                                               client->lease->t2);
793         if (next_timeout < usec)
794                 return -EINVAL;
795
796         r = sd_event_add_monotonic(client->event,
797                                    &client->timeout_t2,
798                                    next_timeout,
799                                    10 * USEC_PER_MSEC,
800                                    client_timeout_t2, client);
801         if (r < 0)
802                 return r;
803
804         r = sd_event_source_set_priority(client->timeout_t2,
805                                          client->event_priority);
806         if (r < 0)
807                 return r;
808
809         next_timeout = client_compute_timeout(client->request_sent,
810                                               client->lease->lifetime);
811         if (next_timeout < usec)
812                 return -EINVAL;
813
814         r = sd_event_add_monotonic(client->event,
815                                    &client->timeout_expire, next_timeout,
816                                    10 * USEC_PER_MSEC,
817                                    client_timeout_expire, client);
818         if (r < 0)
819                 return r;
820
821         r = sd_event_source_set_priority(client->timeout_expire,
822                                          client->event_priority);
823         if (r < 0)
824                 return r;
825
826         return 0;
827 }
828
829 static int client_handle_message(sd_dhcp_client *client, DHCPMessage *message,
830                                  int len, usec_t time_now) {
831         int r = 0, notify_event = 0;
832
833         assert(client);
834         assert(client->event);
835         assert(message);
836
837         if (len < DHCP_MESSAGE_SIZE) {
838                 log_dhcp_client(client, "message too small (%d bytes): "
839                                 "ignoring", len);
840                 return 0;
841         }
842
843         if (message->op != BOOTREPLY) {
844                 log_dhcp_client(client, "not a BOOTREPLY message: ignoring");
845                 return 0;
846         }
847
848         if (be32toh(message->xid) != client->xid) {
849                 log_dhcp_client(client, "received xid (%u) does not match "
850                                 "expected (%u): ignoring",
851                                 be32toh(message->xid), client->xid);
852                 return 0;
853         }
854
855         if (memcmp(&message->chaddr[0], &client->mac_addr.ether_addr_octet,
856                    ETHER_ADDR_LEN)) {
857                 log_dhcp_client(client, "received chaddr does not match "
858                                 "expected: ignoring");
859                 return 0;
860         }
861
862         switch (client->state) {
863         case DHCP_STATE_SELECTING:
864
865                 r = client_handle_offer(client, message, len);
866                 if (r >= 0) {
867
868                         client->timeout_resend =
869                                 sd_event_source_unref(client->timeout_resend);
870
871                         client->state = DHCP_STATE_REQUESTING;
872                         client->attempt = 1;
873
874                         r = sd_event_add_monotonic(client->event,
875                                                    &client->timeout_resend, 0,
876                                                    0, client_timeout_resend,
877                                                    client);
878                         if (r < 0)
879                                 goto error;
880
881                         r = sd_event_source_set_priority(client->timeout_resend,
882                                                          client->event_priority);
883                         if (r < 0)
884                                 goto error;
885                 }
886
887                 break;
888
889         case DHCP_STATE_REBOOTING:
890         case DHCP_STATE_REQUESTING:
891         case DHCP_STATE_RENEWING:
892         case DHCP_STATE_REBINDING:
893
894                 r = client_handle_ack(client, message, len);
895
896                 if (r == DHCP_EVENT_NO_LEASE) {
897
898                         client->timeout_resend =
899                                 sd_event_source_unref(client->timeout_resend);
900
901                         if (client->state == DHCP_STATE_REBOOTING) {
902                                 r = client_initialize(client);
903                                 if (r < 0)
904                                         goto error;
905
906                                 r = client_start(client);
907                                 if (r < 0)
908                                         goto error;
909                         }
910
911                         goto error;
912                 }
913
914                 if (r >= 0) {
915                         client->timeout_resend =
916                                 sd_event_source_unref(client->timeout_resend);
917
918                         if (IN_SET(client->state, DHCP_STATE_REQUESTING,
919                                    DHCP_STATE_REBOOTING))
920                                 notify_event = DHCP_EVENT_IP_ACQUIRE;
921                         else if (r != DHCP_EVENT_IP_ACQUIRE)
922                                 notify_event = r;
923
924                         client->state = DHCP_STATE_BOUND;
925                         client->attempt = 1;
926
927                         client->last_addr = client->lease->address;
928
929                         r = client_set_lease_timeouts(client, time_now);
930                         if (r < 0)
931                                 goto error;
932
933                         if (notify_event)
934                                 client_notify(client, notify_event);
935
936                         client->receive_message =
937                                 sd_event_source_unref(client->receive_message);
938                         client->fd = safe_close(client->fd);
939                 }
940
941                 r = 0;
942
943                 break;
944
945         case DHCP_STATE_INIT:
946         case DHCP_STATE_INIT_REBOOT:
947         case DHCP_STATE_BOUND:
948
949                 break;
950         }
951
952 error:
953         if (r < 0 || r == DHCP_EVENT_NO_LEASE)
954                 return client_stop(client, r);
955
956         return 0;
957 }
958
959 static int client_receive_message_udp(sd_event_source *s, int fd,
960                                       uint32_t revents, void *userdata) {
961         sd_dhcp_client *client = userdata;
962         _cleanup_free_ DHCPMessage *message = NULL;
963         int buflen = 0, len, r;
964         usec_t time_now;
965
966         assert(s);
967         assert(client);
968         assert(client->event);
969
970         r = ioctl(fd, FIONREAD, &buflen);
971         if (r < 0 || buflen <= 0)
972                 buflen = sizeof(DHCPMessage) + DHCP_MIN_OPTIONS_SIZE;
973
974         message = malloc0(buflen);
975         if (!message)
976                 return -ENOMEM;
977
978         len = read(fd, message, buflen);
979         if (len < 0)
980                 return 0;
981
982         r = sd_event_get_now_monotonic(client->event, &time_now);
983         if (r < 0)
984                 return client_stop(client, r);
985
986         return client_handle_message(client, message, len,
987                                      time_now);
988 }
989
990 static int client_receive_message_raw(sd_event_source *s, int fd,
991                                       uint32_t revents, void *userdata) {
992         sd_dhcp_client *client = userdata;
993         _cleanup_free_ DHCPPacket *packet = NULL;
994         usec_t time_now;
995         uint8_t cmsgbuf[CMSG_LEN(sizeof(struct tpacket_auxdata))];
996         struct iovec iov = {};
997         struct msghdr msg = {
998                 .msg_iov = &iov,
999                 .msg_iovlen = 1,
1000                 .msg_control = cmsgbuf,
1001                 .msg_controllen = sizeof(cmsgbuf),
1002         };
1003         struct cmsghdr *cmsg;
1004         bool checksum = true;
1005         int buflen = 0, len, r;
1006
1007         assert(s);
1008         assert(client);
1009         assert(client->event);
1010
1011         r = ioctl(fd, FIONREAD, &buflen);
1012         if (r < 0 || buflen <= 0)
1013                 buflen = sizeof(DHCPPacket) + DHCP_MIN_OPTIONS_SIZE;
1014
1015         packet = malloc0(buflen);
1016         if (!packet)
1017                 return -ENOMEM;
1018
1019         iov.iov_base = packet;
1020         iov.iov_len = buflen;
1021
1022         len = recvmsg(fd, &msg, 0);
1023         if (len < 0) {
1024                 log_dhcp_client(client, "could not receive message from raw "
1025                                 "socket: %s", strerror(errno));
1026                 return 0;
1027         }
1028
1029         for (cmsg = CMSG_FIRSTHDR(&msg); cmsg; cmsg = CMSG_NXTHDR(&msg, cmsg)) {
1030                 if (cmsg->cmsg_level == SOL_PACKET && cmsg->cmsg_type == PACKET_AUXDATA) {
1031                         struct tpacket_auxdata *aux = (void *)CMSG_DATA(cmsg);
1032
1033                         checksum = !(aux->tp_status & TP_STATUS_CSUMNOTREADY);
1034                         break;
1035                 }
1036         }
1037
1038         r = dhcp_packet_verify_headers(packet, len, checksum);
1039         if (r < 0)
1040                 return 0;
1041
1042         len -= DHCP_IP_UDP_SIZE;
1043
1044         r = sd_event_get_now_monotonic(client->event, &time_now);
1045         if (r < 0)
1046                 return client_stop(client, r);
1047
1048         return client_handle_message(client, &packet->dhcp, len, time_now);
1049 }
1050
1051 int sd_dhcp_client_start(sd_dhcp_client *client) {
1052         int r;
1053
1054         assert_return(client, -EINVAL);
1055
1056         r = client_initialize(client);
1057         if (r < 0)
1058                 return r;
1059
1060         if (client->last_addr)
1061                 client->state = DHCP_STATE_INIT_REBOOT;
1062
1063         return client_start(client);
1064 }
1065
1066 int sd_dhcp_client_stop(sd_dhcp_client *client) {
1067         return client_stop(client, DHCP_EVENT_STOP);
1068 }
1069
1070 int sd_dhcp_client_attach_event(sd_dhcp_client *client, sd_event *event,
1071                                 int priority) {
1072         int r;
1073
1074         assert_return(client, -EINVAL);
1075         assert_return(!client->event, -EBUSY);
1076
1077         if (event)
1078                 client->event = sd_event_ref(event);
1079         else {
1080                 r = sd_event_default(&client->event);
1081                 if (r < 0)
1082                         return 0;
1083         }
1084
1085         client->event_priority = priority;
1086
1087         return 0;
1088 }
1089
1090 int sd_dhcp_client_detach_event(sd_dhcp_client *client) {
1091         assert_return(client, -EINVAL);
1092
1093         client->event = sd_event_unref(client->event);
1094
1095         return 0;
1096 }
1097
1098 sd_event *sd_dhcp_client_get_event(sd_dhcp_client *client) {
1099         if (!client)
1100                 return NULL;
1101
1102         return client->event;
1103 }
1104
1105 void sd_dhcp_client_free(sd_dhcp_client *client) {
1106         if (!client)
1107                 return;
1108
1109         sd_dhcp_client_stop(client);
1110         sd_dhcp_client_detach_event(client);
1111
1112         free(client->req_opts);
1113         free(client);
1114 }
1115
1116 DEFINE_TRIVIAL_CLEANUP_FUNC(sd_dhcp_client*, sd_dhcp_client_free);
1117 #define _cleanup_dhcp_client_free_ _cleanup_(sd_dhcp_client_freep)
1118
1119 int sd_dhcp_client_new(sd_dhcp_client **ret) {
1120         _cleanup_dhcp_client_free_ sd_dhcp_client *client = NULL;
1121
1122         assert_return(ret, -EINVAL);
1123
1124         client = new0(sd_dhcp_client, 1);
1125         if (!client)
1126                 return -ENOMEM;
1127
1128         client->state = DHCP_STATE_INIT;
1129         client->index = -1;
1130         client->fd = -1;
1131         client->attempt = 1;
1132
1133         client->req_opts_size = ELEMENTSOF(default_req_opts);
1134
1135         client->req_opts = memdup(default_req_opts, client->req_opts_size);
1136         if (!client->req_opts)
1137                 return -ENOMEM;
1138
1139         *ret = client;
1140         client = NULL;
1141
1142         return 0;
1143 }