Fix Router Advertisement/Solicitation option parsing
[project/odhcpd.git] / src / config.c
1 #include <fcntl.h>
2 #include <resolv.h>
3 #include <signal.h>
4 #include <arpa/inet.h>
5 #include <unistd.h>
6
7 #include <uci.h>
8 #include <uci_blob.h>
9
10 #include "odhcpd.h"
11
12 static struct blob_buf b;
13 static int reload_pipe[2];
14 struct list_head leases = LIST_HEAD_INIT(leases);
15 struct list_head interfaces = LIST_HEAD_INIT(interfaces);
16 struct config config = {false, NULL, NULL};
17
18 enum {
19         IFACE_ATTR_INTERFACE,
20         IFACE_ATTR_IFNAME,
21         IFACE_ATTR_NETWORKID,
22         IFACE_ATTR_DYNAMICDHCP,
23         IFACE_ATTR_IGNORE,
24         IFACE_ATTR_LEASETIME,
25         IFACE_ATTR_LIMIT,
26         IFACE_ATTR_START,
27         IFACE_ATTR_MASTER,
28         IFACE_ATTR_UPSTREAM,
29         IFACE_ATTR_RA,
30         IFACE_ATTR_DHCPV4,
31         IFACE_ATTR_DHCPV6,
32         IFACE_ATTR_NDP,
33         IFACE_ATTR_DNS,
34         IFACE_ATTR_DOMAIN,
35         IFACE_ATTR_ULA_COMPAT,
36         IFACE_ATTR_RA_DEFAULT,
37         IFACE_ATTR_RA_MANAGEMENT,
38         IFACE_ATTR_RA_OFFLINK,
39         IFACE_ATTR_RA_PREFERENCE,
40         IFACE_ATTR_NDPROXY_ROUTING,
41         IFACE_ATTR_NDPROXY_SLAVE,
42         IFACE_ATTR_NDPROXY_STATIC,
43         IFACE_ATTR_MAX
44 };
45
46 static const struct blobmsg_policy iface_attrs[IFACE_ATTR_MAX] = {
47         [IFACE_ATTR_INTERFACE] = { .name = "interface", .type = BLOBMSG_TYPE_STRING },
48         [IFACE_ATTR_IFNAME] = { .name = "ifname", .type = BLOBMSG_TYPE_STRING },
49         [IFACE_ATTR_NETWORKID] = { .name = "networkid", .type = BLOBMSG_TYPE_STRING },
50         [IFACE_ATTR_DYNAMICDHCP] = { .name = "dynamicdhcp", .type = BLOBMSG_TYPE_BOOL },
51         [IFACE_ATTR_IGNORE] = { .name = "ignore", .type = BLOBMSG_TYPE_BOOL },
52         [IFACE_ATTR_LEASETIME] = { .name = "leasetime", .type = BLOBMSG_TYPE_STRING },
53         [IFACE_ATTR_START] = { .name = "start", .type = BLOBMSG_TYPE_INT32 },
54         [IFACE_ATTR_LIMIT] = { .name = "limit", .type = BLOBMSG_TYPE_INT32 },
55         [IFACE_ATTR_MASTER] = { .name = "master", .type = BLOBMSG_TYPE_BOOL },
56         [IFACE_ATTR_UPSTREAM] = { .name = "upstream", .type = BLOBMSG_TYPE_ARRAY },
57         [IFACE_ATTR_RA] = { .name = "ra", .type = BLOBMSG_TYPE_STRING },
58         [IFACE_ATTR_DHCPV4] = { .name = "dhcpv4", .type = BLOBMSG_TYPE_STRING },
59         [IFACE_ATTR_DHCPV6] = { .name = "dhcpv6", .type = BLOBMSG_TYPE_STRING },
60         [IFACE_ATTR_NDP] = { .name = "ndp", .type = BLOBMSG_TYPE_STRING },
61         [IFACE_ATTR_DNS] = { .name = "dns", .type = BLOBMSG_TYPE_ARRAY },
62         [IFACE_ATTR_DOMAIN] = { .name = "domain", .type = BLOBMSG_TYPE_ARRAY },
63         [IFACE_ATTR_ULA_COMPAT] = { .name = "ula_compat", .type = BLOBMSG_TYPE_BOOL },
64         [IFACE_ATTR_RA_DEFAULT] = { .name = "ra_default", .type = BLOBMSG_TYPE_INT32 },
65         [IFACE_ATTR_RA_MANAGEMENT] = { .name = "ra_management", .type = BLOBMSG_TYPE_INT32 },
66         [IFACE_ATTR_RA_OFFLINK] = { .name = "ra_offlink", .type = BLOBMSG_TYPE_BOOL },
67         [IFACE_ATTR_RA_PREFERENCE] = { .name = "ra_preference", .type = BLOBMSG_TYPE_STRING },
68         [IFACE_ATTR_NDPROXY_ROUTING] = { .name = "ndproxy_routing", .type = BLOBMSG_TYPE_BOOL },
69         [IFACE_ATTR_NDPROXY_SLAVE] = { .name = "ndproxy_slave", .type = BLOBMSG_TYPE_BOOL },
70         [IFACE_ATTR_NDPROXY_STATIC] = { .name = "ndproxy_static", .type = BLOBMSG_TYPE_ARRAY },
71 };
72
73 static const struct uci_blob_param_info iface_attr_info[IFACE_ATTR_MAX] = {
74         [IFACE_ATTR_UPSTREAM] = { .type = BLOBMSG_TYPE_STRING },
75         [IFACE_ATTR_DNS] = { .type = BLOBMSG_TYPE_STRING },
76         [IFACE_ATTR_DOMAIN] = { .type = BLOBMSG_TYPE_STRING },
77         [IFACE_ATTR_NDPROXY_STATIC] = { .type = BLOBMSG_TYPE_STRING },
78 };
79
80 const struct uci_blob_param_list interface_attr_list = {
81         .n_params = IFACE_ATTR_MAX,
82         .params = iface_attrs,
83         .info = iface_attr_info,
84 };
85
86
87 enum {
88         LEASE_ATTR_IP,
89         LEASE_ATTR_MAC,
90         LEASE_ATTR_DUID,
91         LEASE_ATTR_HOSTID,
92         LEASE_ATTR_HOSTNAME,
93         LEASE_ATTR_MAX
94 };
95
96
97 static const struct blobmsg_policy lease_attrs[LEASE_ATTR_MAX] = {
98         [LEASE_ATTR_IP] = { .name = "ip", .type = BLOBMSG_TYPE_STRING },
99         [LEASE_ATTR_MAC] = { .name = "mac", .type = BLOBMSG_TYPE_STRING },
100         [LEASE_ATTR_DUID] = { .name = "duid", .type = BLOBMSG_TYPE_STRING },
101         [LEASE_ATTR_HOSTID] = { .name = "hostid", .type = BLOBMSG_TYPE_STRING },
102         [LEASE_ATTR_HOSTNAME] = { .name = "hostname", .type = BLOBMSG_TYPE_STRING },
103 };
104
105
106 const struct uci_blob_param_list lease_attr_list = {
107         .n_params = LEASE_ATTR_MAX,
108         .params = lease_attrs,
109 };
110
111
112 enum {
113         ODHCPD_ATTR_LEGACY,
114         ODHCPD_ATTR_LEASEFILE,
115         ODHCPD_ATTR_LEASETRIGGER,
116         ODHCPD_ATTR_MAX
117 };
118
119
120 static const struct blobmsg_policy odhcpd_attrs[LEASE_ATTR_MAX] = {
121         [ODHCPD_ATTR_LEGACY] = { .name = "legacy", .type = BLOBMSG_TYPE_BOOL },
122         [ODHCPD_ATTR_LEASEFILE] = { .name = "leasefile", .type = BLOBMSG_TYPE_STRING },
123         [ODHCPD_ATTR_LEASETRIGGER] = { .name = "leasetrigger", .type = BLOBMSG_TYPE_STRING },
124 };
125
126
127 const struct uci_blob_param_list odhcpd_attr_list = {
128         .n_params = ODHCPD_ATTR_MAX,
129         .params = odhcpd_attrs,
130 };
131
132
133 static struct interface* get_interface(const char *name)
134 {
135         struct interface *c;
136         list_for_each_entry(c, &interfaces, head)
137                 if (!strcmp(c->name, name))
138                         return c;
139         return NULL;
140 }
141
142
143 static void clean_interface(struct interface *iface)
144 {
145         free(iface->dns);
146         free(iface->search);
147         free(iface->upstream);
148         free(iface->static_ndp);
149         free(iface->dhcpv4_dns);
150         memset(&iface->ra, 0, sizeof(*iface) - offsetof(struct interface, ra));
151 }
152
153
154 static void close_interface(struct interface *iface)
155 {
156         if (iface->head.next)
157                 list_del(&iface->head);
158
159         setup_router_interface(iface, false);
160         setup_dhcpv6_interface(iface, false);
161         setup_ndp_interface(iface, false);
162         setup_dhcpv4_interface(iface, false);
163
164         clean_interface(iface);
165         free(iface);
166 }
167
168
169 static int parse_mode(const char *mode)
170 {
171         if (!strcmp(mode, "disabled")) {
172                 return RELAYD_DISABLED;
173         } else if (!strcmp(mode, "server")) {
174                 return RELAYD_SERVER;
175         } else if (!strcmp(mode, "relay")) {
176                 return RELAYD_RELAY;
177         } else if (!strcmp(mode, "hybrid")) {
178                 return RELAYD_HYBRID;
179         } else {
180                 return -1;
181         }
182 }
183
184
185 static void set_config(struct uci_section *s)
186 {
187         struct blob_attr *tb[ODHCPD_ATTR_MAX], *c;
188
189         blob_buf_init(&b, 0);
190         uci_to_blob(&b, s, &odhcpd_attr_list);
191         blobmsg_parse(odhcpd_attrs, ODHCPD_ATTR_MAX, tb, blob_data(b.head), blob_len(b.head));
192
193         if ((c = tb[ODHCPD_ATTR_LEGACY]))
194                 config.legacy = blobmsg_get_bool(c);
195
196         if ((c = tb[ODHCPD_ATTR_LEASEFILE])) {
197                 free(config.dhcp_statefile);
198                 config.dhcp_statefile = strdup(blobmsg_get_string(c));
199         }
200
201         if ((c = tb[ODHCPD_ATTR_LEASETRIGGER])) {
202                 free(config.dhcp_cb);
203                 config.dhcp_cb = strdup(blobmsg_get_string(c));
204         }
205 }
206
207
208 static int set_lease(struct uci_section *s)
209 {
210         struct blob_attr *tb[LEASE_ATTR_MAX], *c;
211
212         blob_buf_init(&b, 0);
213         uci_to_blob(&b, s, &lease_attr_list);
214         blobmsg_parse(lease_attrs, LEASE_ATTR_MAX, tb, blob_data(b.head), blob_len(b.head));
215
216         size_t hostlen = 1;
217         if ((c = tb[LEASE_ATTR_HOSTNAME]))
218                 hostlen = blobmsg_data_len(c);
219
220         struct lease *lease = calloc(1, sizeof(*lease) + hostlen);
221         if (!lease)
222                 goto err;
223
224         if (hostlen > 1)
225                 memcpy(lease->hostname, blobmsg_get_string(c), hostlen);
226
227         if ((c = tb[LEASE_ATTR_IP]))
228                 if (inet_pton(AF_INET, blobmsg_get_string(c), &lease->ipaddr) < 0)
229                         goto err;
230
231         if ((c = tb[LEASE_ATTR_MAC]))
232                 if (!ether_aton_r(blobmsg_get_string(c), &lease->mac))
233                         goto err;
234
235         if ((c = tb[LEASE_ATTR_DUID])) {
236                 size_t duidlen = (blobmsg_data_len(c) - 1) / 2;
237                 lease->duid = malloc(duidlen);
238                 if (!lease->duid)
239                         goto err;
240
241                 ssize_t len = odhcpd_unhexlify(lease->duid,
242                                 duidlen, blobmsg_get_string(c));
243
244                 if (len < 0)
245                         goto err;
246
247                 lease->duid_len = len;
248         }
249
250         if ((c = tb[LEASE_ATTR_HOSTID]))
251                 if (odhcpd_unhexlify((uint8_t*)&lease->hostid, sizeof(lease->hostid),
252                                 blobmsg_get_string(c)) < 0)
253                         goto err;
254
255         list_add(&lease->head, &leases);
256         return 0;
257
258 err:
259         if (lease) {
260                 free(lease->duid);
261                 free(lease);
262         }
263         return -1;
264 }
265
266
267 int config_parse_interface(void *data, size_t len, const char *name, bool overwrite)
268 {
269         struct blob_attr *tb[IFACE_ATTR_MAX], *c;
270         blobmsg_parse(iface_attrs, IFACE_ATTR_MAX, tb, data, len);
271
272         if (tb[IFACE_ATTR_INTERFACE])
273                 name = blobmsg_get_string(tb[IFACE_ATTR_INTERFACE]);
274
275         if (!name)
276                 return -1;
277
278         struct interface *iface = get_interface(name);
279         if (!iface) {
280                 iface = calloc(1, sizeof(*iface));
281                 if (!iface)
282                         return -1;
283
284                 strncpy(iface->name, name, sizeof(iface->name) - 1);
285                 list_add(&iface->head, &interfaces);
286         }
287
288         const char *ifname = NULL;
289 #ifdef WITH_UBUS
290         if (overwrite || !iface->ifname[0])
291                 ifname = ubus_get_ifname(name);
292 #endif
293
294         if (overwrite) {
295                 if ((c = tb[IFACE_ATTR_IFNAME]))
296                         ifname = blobmsg_get_string(c);
297                 else if ((c = tb[IFACE_ATTR_NETWORKID]))
298                         ifname = blobmsg_get_string(c);
299         }
300
301         if (!iface->ifname[0] && !ifname)
302                 return -1;
303
304         if (ifname)
305                 strncpy(iface->ifname, ifname, sizeof(iface->ifname) - 1);
306
307         iface->inuse = true;
308
309         if ((c = tb[IFACE_ATTR_DYNAMICDHCP]))
310                 iface->no_dynamic_dhcp = !blobmsg_get_bool(c);
311
312         if (overwrite && (c = tb[IFACE_ATTR_IGNORE]))
313                 iface->ignore = blobmsg_get_bool(c);
314
315         if ((c = tb[IFACE_ATTR_LEASETIME])) {
316                 char *val = blobmsg_get_string(c), *endptr;
317                 double time = strtod(val, &endptr);
318                 if (time && endptr[0]) {
319                         if (endptr[0] == 's')
320                                 time *= 1;
321                         else if (endptr[0] == 'm')
322                                 time *= 60;
323                         else if (endptr[0] == 'h')
324                                 time *= 3600;
325                         else if (endptr[0] == 'd')
326                                 time *= 24 * 3600;
327                         else if (endptr[0] == 'w')
328                                 time *= 7 * 24 * 3600;
329                         else
330                                 goto err;
331                 }
332
333                 if (time >= 60)
334                         iface->dhcpv4_leasetime = time;
335         }
336
337         if ((c = tb[IFACE_ATTR_START])) {
338                 iface->dhcpv4_start.s_addr = htonl(blobmsg_get_u32(c));
339
340                 if (config.legacy)
341                         iface->dhcpv4 = RELAYD_SERVER;
342         }
343
344         if ((c = tb[IFACE_ATTR_LIMIT]))
345                 iface->dhcpv4_end.s_addr = htonl(
346                                 ntohl(iface->dhcpv4_start.s_addr) + blobmsg_get_u32(c));
347
348         if ((c = tb[IFACE_ATTR_MASTER]))
349                 iface->master = blobmsg_get_bool(c);
350
351         if (overwrite && (c = tb[IFACE_ATTR_UPSTREAM])) {
352                 struct blob_attr *cur;
353                 unsigned rem;
354
355                 blobmsg_for_each_attr(cur, c, rem) {
356                         if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, NULL))
357                                 continue;
358
359                         iface->upstream = realloc(iface->upstream,
360                                         iface->upstream_len + blobmsg_data_len(cur));
361                         if (!iface->upstream)
362                                 goto err;
363
364                         memcpy(iface->upstream + iface->upstream_len, blobmsg_get_string(cur), blobmsg_data_len(cur));
365                         iface->upstream_len += blobmsg_data_len(cur);
366                 }
367         }
368
369         int mode;
370         if ((c = tb[IFACE_ATTR_RA])) {
371                 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0)
372                         iface->ra = mode;
373                 else
374                         goto err;
375         }
376
377         if ((c = tb[IFACE_ATTR_DHCPV4])) {
378                 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0)
379                         iface->dhcpv4 = mode;
380                 else
381                         goto err;
382         }
383
384         if ((c = tb[IFACE_ATTR_DHCPV6])) {
385                 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0)
386                         iface->dhcpv6 = mode;
387                 else
388                         goto err;
389         }
390
391         if ((c = tb[IFACE_ATTR_NDP])) {
392                 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0)
393                         iface->ndp = mode;
394                 else
395                         goto err;
396         }
397
398         if ((c = tb[IFACE_ATTR_DNS])) {
399                 struct blob_attr *cur;
400                 unsigned rem;
401
402                 iface->always_rewrite_dns = true;
403                 blobmsg_for_each_attr(cur, c, rem) {
404                         if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, NULL))
405                                 continue;
406
407                         struct in_addr addr4;
408                         struct in6_addr addr6;
409                         if (inet_pton(AF_INET, blobmsg_get_string(cur), &addr4) == 1) {
410                                 iface->dhcpv4_dns = realloc(iface->dhcpv4_dns,
411                                                 (++iface->dhcpv4_dns_cnt) * sizeof(*iface->dhcpv4_dns));
412                                 if (!iface->dhcpv4_dns)
413                                         goto err;
414
415                                 iface->dhcpv4_dns[iface->dhcpv4_dns_cnt - 1] = addr4;
416                         } else if (inet_pton(AF_INET6, blobmsg_get_string(cur), &addr6) == 1) {
417                                 iface->dns = realloc(iface->dns,
418                                                 (++iface->dns_cnt) * sizeof(*iface->dns));
419                                 if (!iface->dns)
420                                         goto err;
421
422                                 iface->dns[iface->dns_cnt - 1] = addr6;
423                         } else {
424                                 goto err;
425                         }
426                 }
427         }
428
429         if ((c = tb[IFACE_ATTR_DOMAIN])) {
430                 struct blob_attr *cur;
431                 unsigned rem;
432
433                 blobmsg_for_each_attr(cur, c, rem) {
434                         if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, NULL))
435                                 continue;
436
437                         uint8_t buf[256];
438                         int len = dn_comp(blobmsg_get_string(cur), buf, sizeof(buf), NULL, NULL);
439                         if (len <= 0)
440                                 goto err;
441
442                         iface->search = realloc(iface->search, iface->search_len + len);
443                         if (!iface->search)
444                                 goto err;
445
446                         memcpy(&iface->search[iface->search_len], buf, len);
447                         iface->search_len += len;
448                 }
449         }
450
451         if ((c = tb[IFACE_ATTR_ULA_COMPAT]))
452                 iface->deprecate_ula_if_public_avail = blobmsg_get_bool(c);
453
454         if ((c = tb[IFACE_ATTR_RA_DEFAULT]))
455                 iface->default_router = blobmsg_get_u32(c);
456
457         if ((c = tb[IFACE_ATTR_RA_MANAGEMENT]))
458                 iface->managed = blobmsg_get_u32(c);
459
460         if ((c = tb[IFACE_ATTR_RA_OFFLINK]))
461                 iface->ra_not_onlink = blobmsg_get_bool(c);
462
463         if ((c = tb[IFACE_ATTR_RA_PREFERENCE])) {
464                 const char *prio = blobmsg_get_string(c);
465
466                 if (!strcmp(prio, "high"))
467                         iface->route_preference = 1;
468                 else if (!strcmp(prio, "low"))
469                         iface->route_preference = -1;
470                 else if (!strcmp(prio, "medium") || !strcmp(prio, "default"))
471                         iface->route_preference = 0;
472                 else
473                         goto err;
474         }
475
476         if ((c = tb[IFACE_ATTR_NDPROXY_ROUTING]))
477                 iface->learn_routes = blobmsg_get_bool(c);
478
479         if ((c = tb[IFACE_ATTR_NDPROXY_SLAVE]))
480                 iface->external = blobmsg_get_bool(c);
481
482         if ((c = tb[IFACE_ATTR_NDPROXY_STATIC])) {
483                 struct blob_attr *cur;
484                 unsigned rem;
485
486                 blobmsg_for_each_attr(cur, c, rem) {
487                         if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, NULL))
488                                 continue;
489
490                         int len = blobmsg_data_len(cur);
491                         iface->static_ndp = realloc(iface->static_ndp, iface->static_ndp_len + len);
492                         if (!iface->static_ndp)
493                                 goto err;
494
495                         memcpy(&iface->static_ndp[iface->static_ndp_len], blobmsg_get_string(cur), len);
496                         iface->static_ndp_len += len;
497                 }
498         }
499
500         iface->ignore = (iface->ifindex = if_nametoindex(iface->ifname)) < 0;
501         return 0;
502
503 err:
504         close_interface(iface);
505         return -1;
506 }
507
508 static int set_interface(struct uci_section *s)
509 {
510         blob_buf_init(&b, 0);
511         uci_to_blob(&b, s, &interface_attr_list);
512         return config_parse_interface(blob_data(b.head), blob_len(b.head), s->e.name, true);
513 }
514
515
516 void odhcpd_reload(void)
517 {
518         struct uci_context *uci = uci_alloc_context();
519         struct lease *l;
520         list_for_each_entry(l, &leases, head) {
521                 list_del(&l->head);
522                 free(l->duid);
523                 free(l);
524         }
525
526         struct interface *master = NULL, *i, *n;
527
528         if (!uci)
529                 return;
530
531         list_for_each_entry(i, &interfaces, head)
532                 clean_interface(i);
533
534         struct uci_package *dhcp = NULL;
535         if (!uci_load(uci, "dhcp", &dhcp)) {
536                 struct uci_element *e;
537                 uci_foreach_element(&dhcp->sections, e) {
538                         struct uci_section *s = uci_to_section(e);
539                         if (!strcmp(s->type, "lease"))
540                                 set_lease(s);
541                         else if (!strcmp(s->type, "odhcpd"))
542                                 set_config(s);
543                 }
544
545                 uci_foreach_element(&dhcp->sections, e) {
546                         struct uci_section *s = uci_to_section(e);
547                         if (!strcmp(s->type, "dhcp"))
548                                 set_interface(s);
549                 }
550         }
551
552
553 #ifdef WITH_UBUS
554         ubus_apply_network();
555 #endif
556
557         // Evaluate hybrid mode for master
558         list_for_each_entry(i, &interfaces, head) {
559                 if (!i->master)
560                         continue;
561
562                 enum odhcpd_mode hybrid_mode = RELAYD_DISABLED;
563 #ifdef WITH_UBUS
564                 if (ubus_has_prefix(i->name, i->ifname))
565                         hybrid_mode = RELAYD_RELAY;
566 #endif
567
568                 if (i->dhcpv6 == RELAYD_HYBRID)
569                         i->dhcpv6 = hybrid_mode;
570
571                 if (i->ra == RELAYD_HYBRID)
572                         i->ra = hybrid_mode;
573
574                 if (i->ndp == RELAYD_HYBRID)
575                         i->ndp = hybrid_mode;
576
577                 if (i->dhcpv6 == RELAYD_RELAY || i->ra == RELAYD_RELAY || i->ndp == RELAYD_RELAY)
578                         master = i;
579         }
580
581
582         list_for_each_entry_safe(i, n, &interfaces, head) {
583                 if (i->inuse) {
584                         // Resolve hybrid mode
585                         if (i->dhcpv6 == RELAYD_HYBRID)
586                                 i->dhcpv6 = (master && master->dhcpv6 == RELAYD_RELAY) ?
587                                                 RELAYD_RELAY : RELAYD_SERVER;
588
589                         if (i->ra == RELAYD_HYBRID)
590                                 i->ra = (master && master->ra == RELAYD_RELAY) ?
591                                                 RELAYD_RELAY : RELAYD_SERVER;
592
593                         if (i->ndp == RELAYD_HYBRID)
594                                 i->ndp = (master && master->ndp == RELAYD_RELAY) ?
595                                                 RELAYD_RELAY : RELAYD_SERVER;
596
597                         setup_router_interface(i, true);
598                         setup_dhcpv6_interface(i, true);
599                         setup_ndp_interface(i, true);
600                         setup_dhcpv4_interface(i, true);
601                 } else {
602                         close_interface(i);
603                 }
604         }
605
606         uci_unload(uci, dhcp);
607         uci_free_context(uci);
608 }
609
610
611 static void handle_signal(int signal)
612 {
613         char b[1] = {0};
614         if (signal == SIGHUP)
615                 write(reload_pipe[1], b, sizeof(b));
616         else
617                 uloop_end();
618 }
619
620
621
622 static void reload_cb(struct uloop_fd *u, _unused unsigned int events)
623 {
624         char b[512];
625         read(u->fd, b, sizeof(b));
626         odhcpd_reload();
627 }
628
629 static struct uloop_fd reload_fd = { .cb = reload_cb };
630
631 void odhcpd_run(void)
632 {
633         pipe2(reload_pipe, O_NONBLOCK | O_CLOEXEC);
634         reload_fd.fd = reload_pipe[0];
635         uloop_fd_add(&reload_fd, ULOOP_READ);
636
637         signal(SIGTERM, handle_signal);
638         signal(SIGINT, handle_signal);
639         signal(SIGHUP, handle_signal);
640
641 #ifdef WITH_UBUS
642         while (init_ubus())
643                 sleep(1);
644 #endif
645
646         odhcpd_reload();
647         uloop_run();
648 }
649