dhcpv4: fix DHCP packet size
[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 #include <libgen.h>
7 #include <net/if.h>
8 #include <string.h>
9 #include <sys/stat.h>
10 #include <syslog.h>
11
12 #include <uci.h>
13 #include <uci_blob.h>
14 #include <libubox/utils.h>
15 #include <libubox/avl.h>
16 #include <libubox/avl-cmp.h>
17 #include <libubox/list.h>
18 #include <libubox/vlist.h>
19
20 #include "odhcpd.h"
21
22 static struct blob_buf b;
23 static int reload_pipe[2];
24
25 static int lease_cmp(const void *k1, const void *k2, void *ptr);
26 static void lease_update(struct vlist_tree *tree, struct vlist_node *node_new,
27 struct vlist_node *node_old);
28
29 struct vlist_tree leases = VLIST_TREE_INIT(leases, lease_cmp, lease_update, true, false);
30 AVL_TREE(interfaces, avl_strcmp, false, NULL);
31 struct config config = {.legacy = false, .main_dhcpv4 = false,
32 .dhcp_cb = NULL, .dhcp_statefile = NULL,
33 .log_level = LOG_WARNING};
34
35 enum {
36 IFACE_ATTR_INTERFACE,
37 IFACE_ATTR_IFNAME,
38 IFACE_ATTR_NETWORKID,
39 IFACE_ATTR_DYNAMICDHCP,
40 IFACE_ATTR_IGNORE,
41 IFACE_ATTR_LEASETIME,
42 IFACE_ATTR_LIMIT,
43 IFACE_ATTR_START,
44 IFACE_ATTR_MASTER,
45 IFACE_ATTR_UPSTREAM,
46 IFACE_ATTR_RA,
47 IFACE_ATTR_DHCPV4,
48 IFACE_ATTR_DHCPV6,
49 IFACE_ATTR_NDP,
50 IFACE_ATTR_ROUTER,
51 IFACE_ATTR_DNS,
52 IFACE_ATTR_DOMAIN,
53 IFACE_ATTR_FILTER_CLASS,
54 IFACE_ATTR_DHCPV4_FORCERECONF,
55 IFACE_ATTR_DHCPV6_RAW,
56 IFACE_ATTR_DHCPV6_ASSIGNALL,
57 IFACE_ATTR_DHCPV6_PD,
58 IFACE_ATTR_DHCPV6_NA,
59 IFACE_ATTR_RA_DEFAULT,
60 IFACE_ATTR_RA_MANAGEMENT,
61 IFACE_ATTR_RA_OFFLINK,
62 IFACE_ATTR_RA_PREFERENCE,
63 IFACE_ATTR_RA_ADVROUTER,
64 IFACE_ATTR_RA_MININTERVAL,
65 IFACE_ATTR_RA_MAXINTERVAL,
66 IFACE_ATTR_RA_LIFETIME,
67 IFACE_ATTR_RA_USELEASETIME,
68 IFACE_ATTR_RA_REACHABLETIME,
69 IFACE_ATTR_RA_RETRANSTIME,
70 IFACE_ATTR_RA_HOPLIMIT,
71 IFACE_ATTR_RA_MTU,
72 IFACE_ATTR_RA_DNS,
73 IFACE_ATTR_PD_MANAGER,
74 IFACE_ATTR_PD_CER,
75 IFACE_ATTR_NDPROXY_ROUTING,
76 IFACE_ATTR_NDPROXY_SLAVE,
77 IFACE_ATTR_PREFIX_FILTER,
78 IFACE_ATTR_MAX
79 };
80
81 static const struct blobmsg_policy iface_attrs[IFACE_ATTR_MAX] = {
82 [IFACE_ATTR_INTERFACE] = { .name = "interface", .type = BLOBMSG_TYPE_STRING },
83 [IFACE_ATTR_IFNAME] = { .name = "ifname", .type = BLOBMSG_TYPE_STRING },
84 [IFACE_ATTR_NETWORKID] = { .name = "networkid", .type = BLOBMSG_TYPE_STRING },
85 [IFACE_ATTR_DYNAMICDHCP] = { .name = "dynamicdhcp", .type = BLOBMSG_TYPE_BOOL },
86 [IFACE_ATTR_IGNORE] = { .name = "ignore", .type = BLOBMSG_TYPE_BOOL },
87 [IFACE_ATTR_LEASETIME] = { .name = "leasetime", .type = BLOBMSG_TYPE_STRING },
88 [IFACE_ATTR_START] = { .name = "start", .type = BLOBMSG_TYPE_INT32 },
89 [IFACE_ATTR_LIMIT] = { .name = "limit", .type = BLOBMSG_TYPE_INT32 },
90 [IFACE_ATTR_MASTER] = { .name = "master", .type = BLOBMSG_TYPE_BOOL },
91 [IFACE_ATTR_UPSTREAM] = { .name = "upstream", .type = BLOBMSG_TYPE_ARRAY },
92 [IFACE_ATTR_RA] = { .name = "ra", .type = BLOBMSG_TYPE_STRING },
93 [IFACE_ATTR_DHCPV4] = { .name = "dhcpv4", .type = BLOBMSG_TYPE_STRING },
94 [IFACE_ATTR_DHCPV6] = { .name = "dhcpv6", .type = BLOBMSG_TYPE_STRING },
95 [IFACE_ATTR_NDP] = { .name = "ndp", .type = BLOBMSG_TYPE_STRING },
96 [IFACE_ATTR_ROUTER] = { .name = "router", .type = BLOBMSG_TYPE_ARRAY },
97 [IFACE_ATTR_DNS] = { .name = "dns", .type = BLOBMSG_TYPE_ARRAY },
98 [IFACE_ATTR_DOMAIN] = { .name = "domain", .type = BLOBMSG_TYPE_ARRAY },
99 [IFACE_ATTR_FILTER_CLASS] = { .name = "filter_class", .type = BLOBMSG_TYPE_STRING },
100 [IFACE_ATTR_DHCPV4_FORCERECONF] = { .name = "dhcpv4_forcereconf", .type = BLOBMSG_TYPE_BOOL },
101 [IFACE_ATTR_DHCPV6_RAW] = { .name = "dhcpv6_raw", .type = BLOBMSG_TYPE_STRING },
102 [IFACE_ATTR_DHCPV6_ASSIGNALL] = { .name ="dhcpv6_assignall", .type = BLOBMSG_TYPE_BOOL },
103 [IFACE_ATTR_DHCPV6_PD] = { .name = "dhcpv6_pd", .type = BLOBMSG_TYPE_BOOL },
104 [IFACE_ATTR_DHCPV6_NA] = { .name = "dhcpv6_na", .type = BLOBMSG_TYPE_BOOL },
105 [IFACE_ATTR_PD_MANAGER] = { .name = "pd_manager", .type = BLOBMSG_TYPE_STRING },
106 [IFACE_ATTR_PD_CER] = { .name = "pd_cer", .type = BLOBMSG_TYPE_STRING },
107 [IFACE_ATTR_RA_DEFAULT] = { .name = "ra_default", .type = BLOBMSG_TYPE_INT32 },
108 [IFACE_ATTR_RA_MANAGEMENT] = { .name = "ra_management", .type = BLOBMSG_TYPE_INT32 },
109 [IFACE_ATTR_RA_OFFLINK] = { .name = "ra_offlink", .type = BLOBMSG_TYPE_BOOL },
110 [IFACE_ATTR_RA_PREFERENCE] = { .name = "ra_preference", .type = BLOBMSG_TYPE_STRING },
111 [IFACE_ATTR_RA_ADVROUTER] = { .name = "ra_advrouter", .type = BLOBMSG_TYPE_BOOL },
112 [IFACE_ATTR_RA_MININTERVAL] = { .name = "ra_mininterval", .type = BLOBMSG_TYPE_INT32 },
113 [IFACE_ATTR_RA_MAXINTERVAL] = { .name = "ra_maxinterval", .type = BLOBMSG_TYPE_INT32 },
114 [IFACE_ATTR_RA_LIFETIME] = { .name = "ra_lifetime", .type = BLOBMSG_TYPE_INT32 },
115 [IFACE_ATTR_RA_USELEASETIME] = { .name = "ra_useleasetime", .type = BLOBMSG_TYPE_BOOL },
116 [IFACE_ATTR_RA_REACHABLETIME] = { .name = "ra_reachabletime", .type = BLOBMSG_TYPE_INT32 },
117 [IFACE_ATTR_RA_RETRANSTIME] = { .name = "ra_retranstime", .type = BLOBMSG_TYPE_INT32 },
118 [IFACE_ATTR_RA_HOPLIMIT] = { .name = "ra_hoplimit", .type = BLOBMSG_TYPE_INT32 },
119 [IFACE_ATTR_RA_MTU] = { .name = "ra_mtu", .type = BLOBMSG_TYPE_INT32 },
120 [IFACE_ATTR_RA_DNS] = { .name = "ra_dns", .type = BLOBMSG_TYPE_BOOL },
121 [IFACE_ATTR_NDPROXY_ROUTING] = { .name = "ndproxy_routing", .type = BLOBMSG_TYPE_BOOL },
122 [IFACE_ATTR_NDPROXY_SLAVE] = { .name = "ndproxy_slave", .type = BLOBMSG_TYPE_BOOL },
123 [IFACE_ATTR_PREFIX_FILTER] = { .name = "prefix_filter", .type = BLOBMSG_TYPE_STRING },
124 };
125
126 static const struct uci_blob_param_info iface_attr_info[IFACE_ATTR_MAX] = {
127 [IFACE_ATTR_UPSTREAM] = { .type = BLOBMSG_TYPE_STRING },
128 [IFACE_ATTR_DNS] = { .type = BLOBMSG_TYPE_STRING },
129 [IFACE_ATTR_DOMAIN] = { .type = BLOBMSG_TYPE_STRING },
130 };
131
132 const struct uci_blob_param_list interface_attr_list = {
133 .n_params = IFACE_ATTR_MAX,
134 .params = iface_attrs,
135 .info = iface_attr_info,
136 };
137
138 enum {
139 LEASE_ATTR_IP,
140 LEASE_ATTR_MAC,
141 LEASE_ATTR_DUID,
142 LEASE_ATTR_HOSTID,
143 LEASE_ATTR_LEASETIME,
144 LEASE_ATTR_NAME,
145 LEASE_ATTR_MAX
146 };
147
148 static const struct blobmsg_policy lease_attrs[LEASE_ATTR_MAX] = {
149 [LEASE_ATTR_IP] = { .name = "ip", .type = BLOBMSG_TYPE_STRING },
150 [LEASE_ATTR_MAC] = { .name = "mac", .type = BLOBMSG_TYPE_STRING },
151 [LEASE_ATTR_DUID] = { .name = "duid", .type = BLOBMSG_TYPE_STRING },
152 [LEASE_ATTR_HOSTID] = { .name = "hostid", .type = BLOBMSG_TYPE_STRING },
153 [LEASE_ATTR_LEASETIME] = { .name = "leasetime", .type = BLOBMSG_TYPE_STRING },
154 [LEASE_ATTR_NAME] = { .name = "name", .type = BLOBMSG_TYPE_STRING },
155 };
156
157 const struct uci_blob_param_list lease_attr_list = {
158 .n_params = LEASE_ATTR_MAX,
159 .params = lease_attrs,
160 };
161
162 enum {
163 ODHCPD_ATTR_LEGACY,
164 ODHCPD_ATTR_MAINDHCP,
165 ODHCPD_ATTR_LEASEFILE,
166 ODHCPD_ATTR_LEASETRIGGER,
167 ODHCPD_ATTR_LOGLEVEL,
168 ODHCPD_ATTR_MAX
169 };
170
171 static const struct blobmsg_policy odhcpd_attrs[ODHCPD_ATTR_MAX] = {
172 [ODHCPD_ATTR_LEGACY] = { .name = "legacy", .type = BLOBMSG_TYPE_BOOL },
173 [ODHCPD_ATTR_MAINDHCP] = { .name = "maindhcp", .type = BLOBMSG_TYPE_BOOL },
174 [ODHCPD_ATTR_LEASEFILE] = { .name = "leasefile", .type = BLOBMSG_TYPE_STRING },
175 [ODHCPD_ATTR_LEASETRIGGER] = { .name = "leasetrigger", .type = BLOBMSG_TYPE_STRING },
176 [ODHCPD_ATTR_LOGLEVEL] = { .name = "loglevel", .type = BLOBMSG_TYPE_INT32 },
177 };
178
179 const struct uci_blob_param_list odhcpd_attr_list = {
180 .n_params = ODHCPD_ATTR_MAX,
181 .params = odhcpd_attrs,
182 };
183
184 static int mkdir_p(char *dir, mode_t mask)
185 {
186 char *l = strrchr(dir, '/');
187 int ret;
188
189 if (!l)
190 return 0;
191
192 *l = '\0';
193
194 if (mkdir_p(dir, mask))
195 return -1;
196
197 *l = '/';
198
199 ret = mkdir(dir, mask);
200 if (ret && errno == EEXIST)
201 return 0;
202
203 if (ret)
204 syslog(LOG_ERR, "mkdir(%s, %d) failed: %m\n", dir, mask);
205
206 return ret;
207 }
208
209 static void set_interface_defaults(struct interface *iface)
210 {
211 iface->learn_routes = 1;
212 iface->dhcpv4_leasetime = 43200;
213 iface->dhcpv6_assignall = true;
214 iface->dhcpv6_pd = true;
215 iface->dhcpv6_na = true;
216 iface->ra_managed = RA_MANAGED_MFLAG;
217 iface->ra_maxinterval = 600;
218 iface->ra_mininterval = iface->ra_maxinterval/3;
219 iface->ra_lifetime = -1;
220 iface->ra_dns = true;
221 }
222
223 static void clean_interface(struct interface *iface)
224 {
225 free(iface->dns);
226 free(iface->search);
227 free(iface->upstream);
228 free(iface->dhcpv4_router);
229 free(iface->dhcpv4_dns);
230 free(iface->dhcpv6_raw);
231 free(iface->filter_class);
232 memset(&iface->ra, 0, sizeof(*iface) - offsetof(struct interface, ra));
233 set_interface_defaults(iface);
234 }
235
236 static void close_interface(struct interface *iface)
237 {
238 avl_delete(&interfaces, &iface->avl);
239
240 router_setup_interface(iface, false);
241 dhcpv6_setup_interface(iface, false);
242 ndp_setup_interface(iface, false);
243 #ifdef DHCPV4_SUPPORT
244 dhcpv4_setup_interface(iface, false);
245 #endif
246
247 clean_interface(iface);
248 free(iface->addr4);
249 free(iface->addr6);
250 free(iface->ifname);
251 free(iface);
252 }
253
254 static int parse_mode(const char *mode)
255 {
256 if (!strcmp(mode, "disabled"))
257 return MODE_DISABLED;
258 else if (!strcmp(mode, "server"))
259 return MODE_SERVER;
260 else if (!strcmp(mode, "relay"))
261 return MODE_RELAY;
262 else if (!strcmp(mode, "hybrid"))
263 return MODE_HYBRID;
264 else
265 return -1;
266 }
267
268 static void set_config(struct uci_section *s)
269 {
270 struct blob_attr *tb[ODHCPD_ATTR_MAX], *c;
271
272 blob_buf_init(&b, 0);
273 uci_to_blob(&b, s, &odhcpd_attr_list);
274 blobmsg_parse(odhcpd_attrs, ODHCPD_ATTR_MAX, tb, blob_data(b.head), blob_len(b.head));
275
276 if ((c = tb[ODHCPD_ATTR_LEGACY]))
277 config.legacy = blobmsg_get_bool(c);
278
279 if ((c = tb[ODHCPD_ATTR_MAINDHCP]))
280 config.main_dhcpv4 = blobmsg_get_bool(c);
281
282 if ((c = tb[ODHCPD_ATTR_LEASEFILE])) {
283 free(config.dhcp_statefile);
284 config.dhcp_statefile = strdup(blobmsg_get_string(c));
285 }
286
287 if ((c = tb[ODHCPD_ATTR_LEASETRIGGER])) {
288 free(config.dhcp_cb);
289 config.dhcp_cb = strdup(blobmsg_get_string(c));
290 }
291
292 if ((c = tb[ODHCPD_ATTR_LOGLEVEL])) {
293 int log_level = (blobmsg_get_u32(c) & LOG_PRIMASK);
294
295 if (config.log_level != log_level) {
296 config.log_level = log_level;
297 setlogmask(LOG_UPTO(config.log_level));
298 }
299 }
300 }
301
302 static double parse_leasetime(struct blob_attr *c) {
303 char *val = blobmsg_get_string(c), *endptr = NULL;
304 double time = strcmp(val, "infinite") ? strtod(val, &endptr) : UINT32_MAX;
305
306 if (time && endptr && endptr[0]) {
307 if (endptr[0] == 's')
308 time *= 1;
309 else if (endptr[0] == 'm')
310 time *= 60;
311 else if (endptr[0] == 'h')
312 time *= 3600;
313 else if (endptr[0] == 'd')
314 time *= 24 * 3600;
315 else if (endptr[0] == 'w')
316 time *= 7 * 24 * 3600;
317 else
318 goto err;
319 }
320
321 if (time < 60)
322 time = 60;
323
324 return time;
325
326 err:
327 return -1;
328 }
329
330 static void free_lease(struct lease *l)
331 {
332 free(l->hostname);
333 free(l);
334 }
335
336 static int set_lease(struct uci_section *s)
337 {
338 struct blob_attr *tb[LEASE_ATTR_MAX], *c;
339 struct lease *l;
340 size_t duidlen = 0;
341 uint8_t *duid;
342
343 blob_buf_init(&b, 0);
344 uci_to_blob(&b, s, &lease_attr_list);
345 blobmsg_parse(lease_attrs, LEASE_ATTR_MAX, tb, blob_data(b.head), blob_len(b.head));
346
347 if ((c = tb[LEASE_ATTR_DUID]))
348 duidlen = (blobmsg_data_len(c) - 1) / 2;
349
350 l = calloc_a(sizeof(*l), &duid, duidlen);
351 if (!l)
352 goto err;
353
354 if ((c = tb[LEASE_ATTR_MAC]))
355 if (!ether_aton_r(blobmsg_get_string(c), &l->mac))
356 goto err;
357
358 if ((c = tb[LEASE_ATTR_DUID])) {
359 ssize_t len;
360
361 l->duid = duid;
362 len = odhcpd_unhexlify(l->duid, duidlen, blobmsg_get_string(c));
363
364 if (len < 0)
365 goto err;
366
367 l->duid_len = len;
368 }
369
370 if ((c = tb[LEASE_ATTR_NAME])) {
371 l->hostname = strdup(blobmsg_get_string(c));
372 if (!l->hostname || !odhcpd_valid_hostname(l->hostname))
373 goto err;
374 }
375
376 if ((c = tb[LEASE_ATTR_IP]))
377 if (inet_pton(AF_INET, blobmsg_get_string(c), &l->ipaddr) < 0)
378 goto err;
379
380 if ((c = tb[LEASE_ATTR_HOSTID])) {
381 errno = 0;
382 l->hostid = strtoul(blobmsg_get_string(c), NULL, 16);
383 if (errno)
384 goto err;
385 } else {
386 uint32_t i4a = ntohl(l->ipaddr) & 0xff;
387 l->hostid = ((i4a / 100) << 8) | (((i4a % 100) / 10) << 4) | (i4a % 10);
388 }
389
390 if ((c = tb[LEASE_ATTR_LEASETIME])) {
391 double time = parse_leasetime(c);
392 if (time < 0)
393 goto err;
394
395 l->leasetime = time;
396 }
397
398 INIT_LIST_HEAD(&l->assignments);
399 vlist_add(&leases, &l->node, l);
400 return 0;
401
402 err:
403 if (l)
404 free_lease(l);
405
406 return -1;
407 }
408
409 int config_parse_interface(void *data, size_t len, const char *name, bool overwrite)
410 {
411 struct interface *iface;
412 struct blob_attr *tb[IFACE_ATTR_MAX], *c;
413 bool get_addrs = false;
414
415 blobmsg_parse(iface_attrs, IFACE_ATTR_MAX, tb, data, len);
416
417 if (tb[IFACE_ATTR_INTERFACE])
418 name = blobmsg_get_string(tb[IFACE_ATTR_INTERFACE]);
419
420 if (!name)
421 return -1;
422
423 iface = avl_find_element(&interfaces, name, iface, avl);
424 if (!iface) {
425 char *new_name;
426
427 iface = calloc_a(sizeof(*iface), &new_name, strlen(name) + 1);
428 if (!iface)
429 return -1;
430
431 iface->name = strcpy(new_name, name);
432 iface->avl.key = iface->name;
433 iface->router_event.uloop.fd = -1;
434 iface->dhcpv6_event.uloop.fd = -1;
435 iface->ndp_event.uloop.fd = -1;
436 iface->ndp_ping_fd = -1;
437 iface->dhcpv4_event.uloop.fd = -1;
438 set_interface_defaults(iface);
439
440 avl_insert(&interfaces, &iface->avl);
441 get_addrs = overwrite = true;
442 }
443
444 const char *ifname = NULL;
445 if (overwrite) {
446 if ((c = tb[IFACE_ATTR_IFNAME]))
447 ifname = blobmsg_get_string(c);
448 else if ((c = tb[IFACE_ATTR_NETWORKID]))
449 ifname = blobmsg_get_string(c);
450 }
451
452 #ifdef WITH_UBUS
453 if (overwrite || !iface->ifname)
454 ifname = ubus_get_ifname(name);
455 #endif
456
457 if (!iface->ifname && !ifname)
458 goto err;
459
460 if (ifname) {
461 free(iface->ifname);
462 iface->ifname = strdup(ifname);
463
464 if (!iface->ifname)
465 goto err;
466
467 if (!iface->ifindex &&
468 (iface->ifindex = if_nametoindex(iface->ifname)) <= 0)
469 goto err;
470 }
471
472 if (get_addrs) {
473 ssize_t len = netlink_get_interface_addrs(iface->ifindex,
474 true, &iface->addr6);
475
476 if (len > 0)
477 iface->addr6_len = len;
478
479 len = netlink_get_interface_addrs(iface->ifindex,
480 false, &iface->addr4);
481 if (len > 0)
482 iface->addr4_len = len;
483 }
484
485 iface->inuse = true;
486
487 if ((c = tb[IFACE_ATTR_DYNAMICDHCP]))
488 iface->no_dynamic_dhcp = !blobmsg_get_bool(c);
489
490 if (overwrite && (c = tb[IFACE_ATTR_IGNORE]))
491 iface->ignore = blobmsg_get_bool(c);
492
493 if ((c = tb[IFACE_ATTR_LEASETIME])) {
494 double time = parse_leasetime(c);
495 if (time < 0)
496 goto err;
497
498 iface->dhcpv4_leasetime = time;
499 }
500
501 if ((c = tb[IFACE_ATTR_START])) {
502 iface->dhcpv4_start.s_addr = htonl(blobmsg_get_u32(c));
503
504 if (config.main_dhcpv4 && config.legacy)
505 iface->dhcpv4 = MODE_SERVER;
506 }
507
508 if ((c = tb[IFACE_ATTR_LIMIT]))
509 iface->dhcpv4_end.s_addr = htonl(
510 ntohl(iface->dhcpv4_start.s_addr) + blobmsg_get_u32(c));
511
512 if ((c = tb[IFACE_ATTR_MASTER]))
513 iface->master = blobmsg_get_bool(c);
514
515 if (overwrite && (c = tb[IFACE_ATTR_UPSTREAM])) {
516 struct blob_attr *cur;
517 unsigned rem;
518
519 blobmsg_for_each_attr(cur, c, rem) {
520 if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, false))
521 continue;
522
523 iface->upstream = realloc(iface->upstream,
524 iface->upstream_len + blobmsg_data_len(cur));
525 if (!iface->upstream)
526 goto err;
527
528 memcpy(iface->upstream + iface->upstream_len, blobmsg_get_string(cur), blobmsg_data_len(cur));
529 iface->upstream_len += blobmsg_data_len(cur);
530 }
531 }
532
533 int mode;
534 if ((c = tb[IFACE_ATTR_RA])) {
535 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0)
536 iface->ra = mode;
537 else
538 goto err;
539 }
540
541 if ((c = tb[IFACE_ATTR_DHCPV4])) {
542 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0) {
543 if (config.main_dhcpv4)
544 iface->dhcpv4 = mode;
545 }
546 else
547 goto err;
548 }
549
550 if ((c = tb[IFACE_ATTR_DHCPV6])) {
551 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0)
552 iface->dhcpv6 = mode;
553 else
554 goto err;
555 }
556
557 if ((c = tb[IFACE_ATTR_NDP])) {
558 if ((mode = parse_mode(blobmsg_get_string(c))) >= 0)
559 iface->ndp = mode;
560 else
561 goto err;
562 }
563
564 if ((c = tb[IFACE_ATTR_ROUTER])) {
565 struct blob_attr *cur;
566 unsigned rem;
567
568 blobmsg_for_each_attr(cur, c, rem) {
569 if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, false))
570 continue;
571
572 struct in_addr addr4;
573 if (inet_pton(AF_INET, blobmsg_get_string(cur), &addr4) == 1) {
574 iface->dhcpv4_router = realloc(iface->dhcpv4_router,
575 (++iface->dhcpv4_router_cnt) * sizeof(*iface->dhcpv4_router));
576 if (!iface->dhcpv4_router)
577 goto err;
578
579 iface->dhcpv4_router[iface->dhcpv4_router_cnt - 1] = addr4;
580 } else
581 goto err;
582 }
583 }
584
585 if ((c = tb[IFACE_ATTR_DNS])) {
586 struct blob_attr *cur;
587 unsigned rem;
588
589 iface->always_rewrite_dns = true;
590 blobmsg_for_each_attr(cur, c, rem) {
591 if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, false))
592 continue;
593
594 struct in_addr addr4;
595 struct in6_addr addr6;
596 if (inet_pton(AF_INET, blobmsg_get_string(cur), &addr4) == 1) {
597 if (addr4.s_addr == INADDR_ANY)
598 goto err;
599
600 iface->dhcpv4_dns = realloc(iface->dhcpv4_dns,
601 (++iface->dhcpv4_dns_cnt) * sizeof(*iface->dhcpv4_dns));
602 if (!iface->dhcpv4_dns)
603 goto err;
604
605 iface->dhcpv4_dns[iface->dhcpv4_dns_cnt - 1] = addr4;
606 } else if (inet_pton(AF_INET6, blobmsg_get_string(cur), &addr6) == 1) {
607 if (IN6_IS_ADDR_UNSPECIFIED(&addr6))
608 goto err;
609
610 iface->dns = realloc(iface->dns,
611 (++iface->dns_cnt) * sizeof(*iface->dns));
612 if (!iface->dns)
613 goto err;
614
615 iface->dns[iface->dns_cnt - 1] = addr6;
616 } else
617 goto err;
618 }
619 }
620
621 if ((c = tb[IFACE_ATTR_DOMAIN])) {
622 struct blob_attr *cur;
623 unsigned rem;
624
625 blobmsg_for_each_attr(cur, c, rem) {
626 if (blobmsg_type(cur) != BLOBMSG_TYPE_STRING || !blobmsg_check_attr(cur, false))
627 continue;
628
629 uint8_t buf[256];
630 char *domain = blobmsg_get_string(cur);
631 size_t domainlen = strlen(domain);
632 if (domainlen > 0 && domain[domainlen - 1] == '.')
633 domain[domainlen - 1] = 0;
634
635 int len = dn_comp(domain, buf, sizeof(buf), NULL, NULL);
636 if (len <= 0)
637 goto err;
638
639 iface->search = realloc(iface->search, iface->search_len + len);
640 if (!iface->search)
641 goto err;
642
643 memcpy(&iface->search[iface->search_len], buf, len);
644 iface->search_len += len;
645 }
646 }
647
648 if ((c = tb[IFACE_ATTR_FILTER_CLASS])) {
649 iface->filter_class = realloc(iface->filter_class, blobmsg_data_len(c) + 1);
650 memcpy(iface->filter_class, blobmsg_get_string(c), blobmsg_data_len(c) + 1);
651 }
652
653 if ((c = tb[IFACE_ATTR_DHCPV4_FORCERECONF]))
654 iface->dhcpv4_forcereconf = blobmsg_get_bool(c);
655
656 if ((c = tb[IFACE_ATTR_DHCPV6_RAW])) {
657 iface->dhcpv6_raw_len = blobmsg_data_len(c) / 2;
658 iface->dhcpv6_raw = realloc(iface->dhcpv6_raw, iface->dhcpv6_raw_len);
659 odhcpd_unhexlify(iface->dhcpv6_raw, iface->dhcpv6_raw_len, blobmsg_get_string(c));
660 }
661
662 if ((c = tb[IFACE_ATTR_DHCPV6_ASSIGNALL]))
663 iface->dhcpv6_assignall = blobmsg_get_bool(c);
664
665 if ((c = tb[IFACE_ATTR_DHCPV6_PD]))
666 iface->dhcpv6_pd = blobmsg_get_bool(c);
667
668 if ((c = tb[IFACE_ATTR_DHCPV6_NA]))
669 iface->dhcpv6_na = blobmsg_get_bool(c);
670
671 if ((c = tb[IFACE_ATTR_RA_DEFAULT]))
672 iface->default_router = blobmsg_get_u32(c);
673
674 if ((c = tb[IFACE_ATTR_RA_MANAGEMENT]))
675 iface->ra_managed = blobmsg_get_u32(c);
676
677 if ((c = tb[IFACE_ATTR_RA_REACHABLETIME])) {
678 uint32_t ra_reachabletime = blobmsg_get_u32(c);
679 if (ra_reachabletime > 3600000)
680 goto err;
681
682 iface->ra_reachabletime = ra_reachabletime;
683 }
684
685 if ((c = tb[IFACE_ATTR_RA_RETRANSTIME])) {
686 uint32_t ra_retranstime = blobmsg_get_u32(c);
687 if (ra_retranstime > 60000)
688 goto err;
689
690 iface->ra_retranstime = ra_retranstime;
691 }
692
693 if ((c = tb[IFACE_ATTR_RA_HOPLIMIT])) {
694 uint32_t ra_hoplimit = blobmsg_get_u32(c);
695 if (ra_hoplimit > 255)
696 goto err;
697
698 iface->ra_hoplimit = ra_hoplimit;
699 }
700
701 if ((c = tb[IFACE_ATTR_RA_MTU])) {
702 uint32_t ra_mtu = blobmsg_get_u32(c);
703 if (ra_mtu < 1280 || ra_mtu > 65535)
704 goto err;
705
706 iface->ra_mtu = ra_mtu;
707 }
708
709 if ((c = tb[IFACE_ATTR_RA_OFFLINK]))
710 iface->ra_not_onlink = blobmsg_get_bool(c);
711
712 if ((c = tb[IFACE_ATTR_RA_ADVROUTER]))
713 iface->ra_advrouter = blobmsg_get_bool(c);
714
715 if ((c = tb[IFACE_ATTR_RA_MININTERVAL]))
716 iface->ra_mininterval = blobmsg_get_u32(c);
717
718 if ((c = tb[IFACE_ATTR_RA_MAXINTERVAL]))
719 iface->ra_maxinterval = blobmsg_get_u32(c);
720
721 if ((c = tb[IFACE_ATTR_RA_LIFETIME]))
722 iface->ra_lifetime = blobmsg_get_u32(c);
723
724 if ((c = tb[IFACE_ATTR_RA_USELEASETIME]))
725 iface->ra_useleasetime = blobmsg_get_bool(c);
726
727 if ((c = tb[IFACE_ATTR_RA_DNS]))
728 iface->ra_dns = blobmsg_get_bool(c);
729
730 if ((c = tb[IFACE_ATTR_RA_PREFERENCE])) {
731 const char *prio = blobmsg_get_string(c);
732
733 if (!strcmp(prio, "high"))
734 iface->route_preference = 1;
735 else if (!strcmp(prio, "low"))
736 iface->route_preference = -1;
737 else if (!strcmp(prio, "medium") || !strcmp(prio, "default"))
738 iface->route_preference = 0;
739 else
740 goto err;
741 }
742
743 if ((c = tb[IFACE_ATTR_PD_MANAGER]))
744 strncpy(iface->dhcpv6_pd_manager, blobmsg_get_string(c),
745 sizeof(iface->dhcpv6_pd_manager) - 1);
746
747 if ((c = tb[IFACE_ATTR_PD_CER]) &&
748 inet_pton(AF_INET6, blobmsg_get_string(c), &iface->dhcpv6_pd_cer) < 1)
749 goto err;
750
751 if ((c = tb[IFACE_ATTR_NDPROXY_ROUTING]))
752 iface->learn_routes = blobmsg_get_bool(c);
753
754 if ((c = tb[IFACE_ATTR_NDPROXY_SLAVE]))
755 iface->external = blobmsg_get_bool(c);
756
757 if ((c = tb[IFACE_ATTR_PREFIX_FILTER])) {
758 const char *str = blobmsg_get_string(c);
759 char *astr = malloc(strlen(str) + 1);
760 char *delim;
761 int l;
762
763 if (!astr || !strcpy(astr, str) ||
764 (delim = strchr(astr, '/')) == NULL || (*(delim++) = 0) ||
765 sscanf(delim, "%i", &l) == 0 || l > 128 ||
766 inet_pton(AF_INET6, astr, &iface->pio_filter_addr) == 0)
767 iface->pio_filter_length = 0;
768 else
769 iface->pio_filter_length = l;
770
771 if (astr)
772 free(astr);
773 }
774
775 return 0;
776
777 err:
778 close_interface(iface);
779 return -1;
780 }
781
782 static int set_interface(struct uci_section *s)
783 {
784 blob_buf_init(&b, 0);
785 uci_to_blob(&b, s, &interface_attr_list);
786
787 return config_parse_interface(blob_data(b.head), blob_len(b.head), s->e.name, true);
788 }
789
790 static void lease_delete_assignments(struct lease *l, bool v6)
791 {
792 struct dhcp_assignment *a, *tmp;
793 unsigned int flag = v6 ? OAF_DHCPV6 : OAF_DHCPV4;
794
795 list_for_each_entry_safe(a, tmp, &l->assignments, lease_list) {
796 if (a->flags & flag)
797 free_assignment(a);
798 }
799 }
800
801 static void lease_update_assignments(struct lease *l)
802 {
803 struct dhcp_assignment *a;
804
805 list_for_each_entry(a, &l->assignments, lease_list) {
806 if (a->hostname)
807 free(a->hostname);
808 a->hostname = NULL;
809
810 if (l->hostname)
811 a->hostname = strdup(l->hostname);
812
813 a->leasetime = l->leasetime;
814 }
815 }
816
817 static int lease_cmp(const void *k1, const void *k2, _unused void *ptr)
818 {
819 const struct lease *l1 = k1, *l2 = k2;
820 int cmp = 0;
821
822 if (l1->duid_len != l2->duid_len)
823 return l1->duid_len - l2->duid_len;
824
825 if (l1->duid_len && l2->duid_len)
826 cmp = memcmp(l1->duid, l2->duid, l1->duid_len);
827
828 if (cmp)
829 return cmp;
830
831 return memcmp(l1->mac.ether_addr_octet, l2->mac.ether_addr_octet,
832 sizeof(l1->mac.ether_addr_octet));
833 }
834
835 static void lease_change_config(struct lease *l_old, struct lease *l_new)
836 {
837 bool update = false;
838
839 if ((!!l_new->hostname != !!l_old->hostname) ||
840 (l_new->hostname && strcmp(l_new->hostname, l_old->hostname))) {
841 free(l_old->hostname);
842 l_old->hostname = NULL;
843
844 if (l_new->hostname)
845 l_old->hostname = strdup(l_new->hostname);
846
847 update = true;
848 }
849
850 if (l_old->leasetime != l_new->leasetime) {
851 l_old->leasetime = l_new->leasetime;
852 update = true;
853 }
854
855 if (l_old->ipaddr != l_new->ipaddr) {
856 l_old->ipaddr = l_new->ipaddr;
857 lease_delete_assignments(l_old, false);
858 }
859
860 if (l_old->hostid != l_new->hostid) {
861 l_old->hostid = l_new->hostid;
862 lease_delete_assignments(l_old, true);
863 }
864
865 if (update)
866 lease_update_assignments(l_old);
867
868 free_lease(l_new);
869 }
870
871 static void lease_delete(struct lease *l)
872 {
873 struct dhcp_assignment *a;
874
875 list_for_each_entry(a, &l->assignments, lease_list)
876 free_assignment(a);
877
878 free_lease(l);
879 }
880
881 static void lease_update(_unused struct vlist_tree *tree, struct vlist_node *node_new,
882 struct vlist_node *node_old)
883 {
884 struct lease *lease_new = container_of(node_new, struct lease, node);
885 struct lease *lease_old = container_of(node_old, struct lease, node);
886
887 if (node_old && node_new)
888 lease_change_config(lease_old, lease_new);
889 else if (node_old)
890 lease_delete(lease_old);
891 }
892
893 struct lease *config_find_lease_by_duid(const uint8_t *duid, const uint16_t len)
894 {
895 struct lease *l;
896
897 vlist_for_each_element(&leases, l, node) {
898 if (l->duid_len == len && !memcmp(l->duid, duid, len))
899 return l;
900 }
901
902 return NULL;
903 }
904
905 struct lease *config_find_lease_by_mac(const uint8_t *mac)
906 {
907 struct lease *l;
908
909 vlist_for_each_element(&leases, l, node) {
910 if (!memcmp(l->mac.ether_addr_octet, mac,
911 sizeof(l->mac.ether_addr_octet)))
912 return l;
913 }
914
915 return NULL;
916 }
917
918 struct lease *config_find_lease_by_hostid(const uint32_t hostid)
919 {
920 struct lease *l;
921
922 vlist_for_each_element(&leases, l, node) {
923 if (l->hostid == hostid)
924 return l;
925 }
926
927 return NULL;
928 }
929
930 struct lease *config_find_lease_by_ipaddr(const uint32_t ipaddr)
931 {
932 struct lease *l;
933
934 vlist_for_each_element(&leases, l, node) {
935 if (l->ipaddr == ipaddr)
936 return l;
937 }
938
939 return NULL;
940 }
941
942 void odhcpd_reload(void)
943 {
944 struct uci_context *uci = uci_alloc_context();
945 struct interface *master = NULL, *i, *tmp;
946
947 if (!uci)
948 return;
949
950 vlist_update(&leases);
951 avl_for_each_element(&interfaces, i, avl)
952 clean_interface(i);
953
954 struct uci_package *dhcp = NULL;
955 if (!uci_load(uci, "dhcp", &dhcp)) {
956 struct uci_element *e;
957 uci_foreach_element(&dhcp->sections, e) {
958 struct uci_section *s = uci_to_section(e);
959 if (!strcmp(s->type, "host"))
960 set_lease(s);
961 else if (!strcmp(s->type, "odhcpd"))
962 set_config(s);
963 }
964
965 uci_foreach_element(&dhcp->sections, e) {
966 struct uci_section *s = uci_to_section(e);
967 if (!strcmp(s->type, "dhcp"))
968 set_interface(s);
969 }
970 }
971
972 if (config.dhcp_statefile) {
973 char *path = strdup(config.dhcp_statefile);
974
975 mkdir_p(dirname(path), 0755);
976 free(path);
977 }
978
979 vlist_flush(&leases);
980
981 #ifdef WITH_UBUS
982 ubus_apply_network();
983 #endif
984
985 bool any_dhcpv6_slave = false, any_ra_slave = false, any_ndp_slave = false;
986
987 /* Test for */
988 avl_for_each_element(&interfaces, i, avl) {
989 if (i->master)
990 continue;
991
992 if (i->dhcpv6 == MODE_HYBRID || i->dhcpv6 == MODE_RELAY)
993 any_dhcpv6_slave = true;
994
995 if (i->ra == MODE_HYBRID || i->ra == MODE_RELAY)
996 any_ra_slave = true;
997
998 if (i->ndp == MODE_HYBRID || i->ndp == MODE_RELAY)
999 any_ndp_slave = true;
1000 }
1001
1002 /* Evaluate hybrid mode for master */
1003 avl_for_each_element(&interfaces, i, avl) {
1004 if (!i->master)
1005 continue;
1006
1007 enum odhcpd_mode hybrid_mode = MODE_DISABLED;
1008 #ifdef WITH_UBUS
1009 if (!ubus_has_prefix(i->name, i->ifname))
1010 hybrid_mode = MODE_RELAY;
1011 #endif
1012
1013 if (i->dhcpv6 == MODE_HYBRID)
1014 i->dhcpv6 = hybrid_mode;
1015
1016 if (i->dhcpv6 == MODE_RELAY && !any_dhcpv6_slave)
1017 i->dhcpv6 = MODE_DISABLED;
1018
1019 if (i->ra == MODE_HYBRID)
1020 i->ra = hybrid_mode;
1021
1022 if (i->ra == MODE_RELAY && !any_ra_slave)
1023 i->ra = MODE_DISABLED;
1024
1025 if (i->ndp == MODE_HYBRID)
1026 i->ndp = hybrid_mode;
1027
1028 if (i->ndp == MODE_RELAY && !any_ndp_slave)
1029 i->ndp = MODE_DISABLED;
1030
1031 if (i->dhcpv6 == MODE_RELAY || i->ra == MODE_RELAY || i->ndp == MODE_RELAY)
1032 master = i;
1033 }
1034
1035
1036 avl_for_each_element_safe(&interfaces, i, avl, tmp) {
1037 if (i->inuse) {
1038 /* Resolve hybrid mode */
1039 if (i->dhcpv6 == MODE_HYBRID)
1040 i->dhcpv6 = (master && master->dhcpv6 == MODE_RELAY) ?
1041 MODE_RELAY : MODE_SERVER;
1042
1043 if (i->ra == MODE_HYBRID)
1044 i->ra = (master && master->ra == MODE_RELAY) ?
1045 MODE_RELAY : MODE_SERVER;
1046
1047 if (i->ndp == MODE_HYBRID)
1048 i->ndp = (master && master->ndp == MODE_RELAY) ?
1049 MODE_RELAY : MODE_DISABLED;
1050
1051 router_setup_interface(i, !i->ignore || i->ra != MODE_DISABLED);
1052 dhcpv6_setup_interface(i, !i->ignore || i->dhcpv6 != MODE_DISABLED);
1053 ndp_setup_interface(i, !i->ignore || i->ndp != MODE_DISABLED);
1054 #ifdef DHCPV4_SUPPORT
1055 dhcpv4_setup_interface(i, !i->ignore || i->dhcpv4 != MODE_DISABLED);
1056 #endif
1057 } else
1058 close_interface(i);
1059 }
1060
1061 uci_unload(uci, dhcp);
1062 uci_free_context(uci);
1063 }
1064
1065 static void handle_signal(int signal)
1066 {
1067 char b[1] = {0};
1068
1069 if (signal == SIGHUP) {
1070 if (write(reload_pipe[1], b, sizeof(b)) < 0) {}
1071 } else
1072 uloop_end();
1073 }
1074
1075 static void reload_cb(struct uloop_fd *u, _unused unsigned int events)
1076 {
1077 char b[512];
1078 if (read(u->fd, b, sizeof(b)) < 0) {}
1079
1080 odhcpd_reload();
1081 }
1082
1083 static struct uloop_fd reload_fd = { .cb = reload_cb };
1084
1085 void odhcpd_run(void)
1086 {
1087 if (pipe2(reload_pipe, O_NONBLOCK | O_CLOEXEC) < 0) {}
1088
1089 reload_fd.fd = reload_pipe[0];
1090 uloop_fd_add(&reload_fd, ULOOP_READ);
1091
1092 signal(SIGTERM, handle_signal);
1093 signal(SIGINT, handle_signal);
1094 signal(SIGHUP, handle_signal);
1095
1096 #ifdef WITH_UBUS
1097 while (ubus_init())
1098 sleep(1);
1099 #endif
1100
1101 odhcpd_reload();
1102 uloop_run();
1103 }