Export DHCPv6 server address to env
[project/odhcp6c.git] / src / odhcp6c.h
1 /**
2 * Copyright (C) 2012-2014 Steven Barth <steven@midlink.org>
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License v2 as published by
6 * the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 *
13 */
14 #pragma once
15 #include <stdint.h>
16 #include <stdbool.h>
17 #include <netinet/in.h>
18
19 #define _unused __attribute__((unused))
20 #define _packed __attribute__((packed))
21
22 #define ARRAY_SIZE(arr) (sizeof(arr) / sizeof((arr)[0]))
23
24 #define ND_OPT_RECURSIVE_DNS 25
25 #define ND_OPT_DNSSL 31
26
27 #define DHCPV6_SOL_MAX_RT 3600
28 #define DHCPV6_REQ_MAX_RT 30
29 #define DHCPV6_CNF_MAX_RT 4
30 #define DHCPV6_REN_MAX_RT 600
31 #define DHCPV6_REB_MAX_RT 600
32 #define DHCPV6_INF_MAX_RT 3600
33
34 #define DEFAULT_MIN_UPDATE_INTERVAL 30
35
36 enum dhcvp6_opt {
37 DHCPV6_OPT_CLIENTID = 1,
38 DHCPV6_OPT_SERVERID = 2,
39 DHCPV6_OPT_IA_NA = 3,
40 DHCPV6_OPT_IA_TA = 4,
41 DHCPV6_OPT_IA_ADDR = 5,
42 DHCPV6_OPT_ORO = 6,
43 DHCPV6_OPT_PREF = 7,
44 DHCPV6_OPT_ELAPSED = 8,
45 DHCPV6_OPT_RELAY_MSG = 9,
46 DHCPV6_OPT_AUTH = 11,
47 DHCPV6_OPT_UNICAST = 12,
48 DHCPV6_OPT_STATUS = 13,
49 DHCPV6_OPT_RAPID_COMMIT = 14,
50 DHCPV6_OPT_USER_CLASS = 15,
51 DHCPV6_OPT_VENDOR_CLASS = 16,
52 DHCPV6_OPT_RECONF_MESSAGE = 19,
53 DHCPV6_OPT_RECONF_ACCEPT = 20,
54 DHCPV6_OPT_DNS_SERVERS = 23,
55 DHCPV6_OPT_DNS_DOMAIN = 24,
56 DHCPV6_OPT_IA_PD = 25,
57 DHCPV6_OPT_IA_PREFIX = 26,
58 DHCPV6_OPT_SNTP_SERVERS = 31,
59 DHCPV6_OPT_INFO_REFRESH = 32,
60 DHCPV6_OPT_FQDN = 39,
61 DHCPV6_OPT_NTP_SERVER = 56,
62 DHCPV6_OPT_SIP_SERVER_D = 21,
63 DHCPV6_OPT_SIP_SERVER_A = 22,
64 DHCPV6_OPT_AFTR_NAME = 64,
65 DHCPV6_OPT_PD_EXCLUDE = 67,
66 DHCPV6_OPT_SOL_MAX_RT = 82,
67 DHCPV6_OPT_INF_MAX_RT = 83,
68 #ifdef EXT_PREFIX_CLASS
69 /* draft-bhandari-dhc-class-based-prefix, not yet standardized */
70 DHCPV6_OPT_PREFIX_CLASS = EXT_PREFIX_CLASS,
71 #endif
72 #ifdef EXT_CER_ID
73 /* draft-donley-dhc-cer-id-option-03 */
74 DHCPV6_OPT_CER_ID = EXT_CER_ID,
75 #endif
76 /* draft-ietf-softwire-map-dhcp-08 */
77 DHCPV6_OPT_S46_RULE = 89,
78 DHCPV6_OPT_S46_BR = 90,
79 DHCPV6_OPT_S46_DMR = 91,
80 DHCPV6_OPT_S46_V4V6BIND = 92,
81 DHCPV6_OPT_S46_PORTPARAMS = 93,
82 DHCPV6_OPT_S46_CONT_MAPE = 94,
83 DHCPV6_OPT_S46_CONT_MAPT = 95,
84 DHCPV6_OPT_S46_CONT_LW = 96,
85 };
86
87 enum dhcpv6_opt_npt {
88 NTP_SRV_ADDR = 1,
89 NTP_MC_ADDR = 2,
90 NTP_SRV_FQDN = 3
91 };
92
93 enum dhcpv6_msg {
94 DHCPV6_MSG_UNKNOWN = 0,
95 DHCPV6_MSG_SOLICIT = 1,
96 DHCPV6_MSG_ADVERT = 2,
97 DHCPV6_MSG_REQUEST = 3,
98 DHCPV6_MSG_RENEW = 5,
99 DHCPV6_MSG_REBIND = 6,
100 DHCPV6_MSG_REPLY = 7,
101 DHCPV6_MSG_RELEASE = 8,
102 DHCPV6_MSG_DECLINE = 9,
103 DHCPV6_MSG_RECONF = 10,
104 DHCPV6_MSG_INFO_REQ = 11,
105 _DHCPV6_MSG_MAX
106 };
107
108 enum dhcpv6_status {
109 DHCPV6_Success = 0,
110 DHCPV6_UnspecFail = 1,
111 DHCPV6_NoAddrsAvail = 2,
112 DHCPV6_NoBinding = 3,
113 DHCPV6_NotOnLink = 4,
114 DHCPV6_UseMulticast = 5,
115 DHCPV6_NoPrefixAvail = 6,
116 _DHCPV6_Status_Max
117 };
118
119 enum dhcpv6_config {
120 DHCPV6_STRICT_OPTIONS = 1,
121 DHCPV6_CLIENT_FQDN = 2,
122 DHCPV6_ACCEPT_RECONFIGURE = 4,
123 };
124
125 typedef int(reply_handler)(enum dhcpv6_msg orig, const int rc,
126 const void *opt, const void *end, const struct sockaddr_in6 *from);
127
128 // retransmission strategy
129 struct dhcpv6_retx {
130 bool delay;
131 uint8_t init_timeo;
132 uint16_t max_timeo;
133 uint8_t max_rc;
134 char name[8];
135 reply_handler *handler_reply;
136 int(*handler_finish)(void);
137 };
138
139 // DHCPv6 Protocol Headers
140 struct dhcpv6_header {
141 uint8_t msg_type;
142 uint8_t tr_id[3];
143 } __attribute__((packed));
144
145 struct dhcpv6_ia_hdr {
146 uint16_t type;
147 uint16_t len;
148 uint32_t iaid;
149 uint32_t t1;
150 uint32_t t2;
151 } _packed;
152
153 struct dhcpv6_ia_addr {
154 uint16_t type;
155 uint16_t len;
156 struct in6_addr addr;
157 uint32_t preferred;
158 uint32_t valid;
159 } _packed;
160
161 struct dhcpv6_ia_prefix {
162 uint16_t type;
163 uint16_t len;
164 uint32_t preferred;
165 uint32_t valid;
166 uint8_t prefix;
167 struct in6_addr addr;
168 } _packed;
169
170 struct dhcpv6_duid {
171 uint16_t type;
172 uint16_t len;
173 uint16_t duid_type;
174 uint8_t data[128];
175 } _packed;
176
177 struct dhcpv6_auth_reconfigure {
178 uint16_t type;
179 uint16_t len;
180 uint8_t protocol;
181 uint8_t algorithm;
182 uint8_t rdm;
183 uint64_t replay;
184 uint8_t reconf_type;
185 uint8_t key[16];
186 } _packed;
187
188 struct dhcpv6_cer_id {
189 uint16_t type;
190 uint16_t len;
191 uint16_t reserved;
192 uint16_t auth_type;
193 uint8_t auth[16];
194 struct in6_addr addr;
195 } _packed;
196
197 struct dhcpv6_s46_portparams {
198 uint8_t offset;
199 uint8_t psid_len;
200 uint16_t psid;
201 } _packed;
202
203 struct dhcpv6_s46_v4v6bind {
204 struct in_addr ipv4_address;
205 uint8_t bindprefix6_len;
206 uint8_t bind_ipv6_prefix[];
207 } _packed;
208
209 struct dhcpv6_s46_dmr {
210 uint8_t dmr_prefix6_len;
211 uint8_t dmr_ipv6_prefix[];
212 } _packed;
213
214 struct dhcpv6_s46_rule {
215 uint8_t flags;
216 uint8_t ea_len;
217 uint8_t prefix4_len;
218 struct in_addr ipv4_prefix;
219 uint8_t prefix6_len;
220 uint8_t ipv6_prefix[];
221 } _packed;
222
223 #define dhcpv6_for_each_option(start, end, otype, olen, odata)\
224 for (uint8_t *_o = (uint8_t*)(start); _o + 4 <= (uint8_t*)(end) &&\
225 ((otype) = _o[0] << 8 | _o[1]) && ((odata) = (void*)&_o[4]) &&\
226 ((olen) = _o[2] << 8 | _o[3]) + (odata) <= (uint8_t*)(end); \
227 _o += 4 + (_o[2] << 8 | _o[3]))
228
229
230 struct dhcpv6_server_cand {
231 bool has_noaddravail;
232 bool wants_reconfigure;
233 int16_t preference;
234 uint8_t duid_len;
235 uint8_t duid[130];
236 uint32_t sol_max_rt;
237 uint32_t inf_max_rt;
238 void *ia_na;
239 void *ia_pd;
240 size_t ia_na_len;
241 size_t ia_pd_len;
242 };
243
244
245 enum odhcp6c_state {
246 STATE_CLIENT_ID,
247 STATE_SERVER_ID,
248 STATE_SERVER_CAND,
249 STATE_SERVER_ADDR,
250 STATE_ORO,
251 STATE_DNS,
252 STATE_SEARCH,
253 STATE_IA_NA,
254 STATE_IA_PD,
255 STATE_IA_PD_INIT,
256 STATE_CUSTOM_OPTS,
257 STATE_SNTP_IP,
258 STATE_NTP_IP,
259 STATE_NTP_FQDN,
260 STATE_SIP_IP,
261 STATE_SIP_FQDN,
262 STATE_RA_ROUTE,
263 STATE_RA_PREFIX,
264 STATE_RA_DNS,
265 STATE_AFTR_NAME,
266 STATE_VENDORCLASS,
267 STATE_USERCLASS,
268 STATE_CER,
269 STATE_S46_MAPT,
270 STATE_S46_MAPE,
271 STATE_S46_LW,
272 STATE_PASSTHRU,
273 _STATE_MAX
274 };
275
276
277 struct icmp6_opt {
278 uint8_t type;
279 uint8_t len;
280 uint8_t data[6];
281 };
282
283
284 enum dhcpv6_mode {
285 DHCPV6_UNKNOWN = -1,
286 DHCPV6_STATELESS,
287 DHCPV6_STATEFUL
288 };
289
290 enum odhcp6c_ia_mode {
291 IA_MODE_NONE,
292 IA_MODE_TRY,
293 IA_MODE_FORCE,
294 };
295
296
297 struct odhcp6c_entry {
298 struct in6_addr router;
299 uint16_t length;
300 int16_t priority;
301 struct in6_addr target;
302 uint32_t valid;
303 uint32_t preferred;
304 uint32_t t1;
305 uint32_t t2;
306 uint16_t class;
307 uint32_t iaid;
308 };
309
310 struct odhcp6c_request_prefix {
311 uint32_t iaid;
312 uint16_t length;
313 };
314
315 int init_dhcpv6(const char *ifname, unsigned int client_options, int sol_timeout);
316 void dhcpv6_set_ia_mode(enum odhcp6c_ia_mode na, enum odhcp6c_ia_mode pd);
317 int dhcpv6_request(enum dhcpv6_msg type);
318 int dhcpv6_poll_reconfigure(void);
319 int dhcpv6_promote_server_cand(void);
320
321 int init_rtnetlink(void);
322 int set_rtnetlink_addr(int ifindex, const struct in6_addr *addr,
323 uint32_t pref, uint32_t valid);
324
325 int script_init(const char *path, const char *ifname);
326 ssize_t script_unhexlify(uint8_t *dst, size_t len, const char *src);
327 void script_call(const char *status);
328 void script_delay_call(const char *status, int timeout);
329
330 bool odhcp6c_signal_process(void);
331 uint64_t odhcp6c_get_milli_time(void);
332 void odhcp6c_random(void *buf, size_t len);
333 bool odhcp6c_is_bound(void);
334
335 // State manipulation
336 void odhcp6c_clear_state(enum odhcp6c_state state);
337 void odhcp6c_add_state(enum odhcp6c_state state, const void *data, size_t len);
338 void odhcp6c_append_state(enum odhcp6c_state state, const void *data, size_t len);
339 void odhcp6c_insert_state(enum odhcp6c_state state, size_t offset, const void *data, size_t len);
340 size_t odhcp6c_remove_state(enum odhcp6c_state state, size_t offset, size_t len);
341 void* odhcp6c_move_state(enum odhcp6c_state state, size_t *len);
342 void* odhcp6c_get_state(enum odhcp6c_state state, size_t *len);
343
344 // Entry manipulation
345 struct odhcp6c_entry* odhcp6c_find_entry(enum odhcp6c_state state, const struct odhcp6c_entry *new);
346 bool odhcp6c_update_entry(enum odhcp6c_state state, struct odhcp6c_entry *new);
347 bool odhcp6c_update_entry_safe(enum odhcp6c_state state, struct odhcp6c_entry *new, uint32_t safe);
348
349 void odhcp6c_expire(void);
350 uint32_t odhcp6c_elapsed(void);