9c7b7ded177a1f31d7139091f1e7fd4cb4a35959
[project/mdnsd.git] / dns.c
1 /*
2  * Copyright (C) 2014 John Crispin <blogic@openwrt.org>
3  *
4  * This program is free software; you can redistribute it and/or modify
5  * it under the terms of the GNU Lesser General Public License version 2.1
6  * as published by 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 #include <sys/types.h>
15 #include <sys/stat.h>
16
17 #include <fcntl.h>
18 #include <time.h>
19 #include <stdio.h>
20 #include <unistd.h>
21 #include <sys/types.h>
22 #include <sys/socket.h>
23 #include <netinet/in.h>
24 #include <arpa/inet.h>
25 #include <asm/byteorder.h>
26 #include <arpa/nameser.h>
27 #include <resolv.h>
28 #include <stdlib.h>
29 #include <string.h>
30
31 #include <libubox/uloop.h>
32 #include <libubox/usock.h>
33 #include <libubox/utils.h>
34
35 #include "announce.h"
36 #include "util.h"
37 #include "dns.h"
38 #include "cache.h"
39 #include "service.h"
40 #include "interface.h"
41
42 static char name_buffer[MAX_NAME_LEN + 1];
43
44 const char*
45 dns_type_string(uint16_t type)
46 {
47         static const struct {
48                 uint16_t type;
49                 char str[5];
50         } type_str[] = {
51                 { TYPE_A, "A" },
52                 { TYPE_AAAA, "AAAA" },
53                 { TYPE_PTR, "PTR" },
54                 { TYPE_TXT, "TXT" },
55                 { TYPE_SRV, "SRV" },
56                 { TYPE_ANY, "ANY" },
57         };
58         int i;
59
60         for (i = 0; i < ARRAY_SIZE(type_str); i++) {
61                 if (type == type_str[i].type)
62                         return type_str[i].str;
63         }
64
65         return "N/A";
66 }
67
68 void
69 dns_send_question(struct interface *iface, const char *question, int type)
70 {
71         static struct dns_header h = {
72                 .questions = cpu_to_be16(1),
73         };
74         static struct dns_question q = {
75                 .class = cpu_to_be16(1),
76         };
77         static struct iovec iov[] = {
78                 {
79                         .iov_base = &h,
80                         .iov_len = sizeof(h),
81                 },
82                 {
83                         .iov_base = name_buffer,
84                 },
85                 {
86                         .iov_base = &q,
87                         .iov_len = sizeof(q),
88                 }
89         };
90         int len;
91
92         q.type = __cpu_to_be16(type);
93
94         len = dn_comp(question, (void *) name_buffer, sizeof(name_buffer), NULL, NULL);
95         if (len < 1)
96                 return;
97
98         iov[1].iov_len = len;
99
100         if (interface_send_packet(iface, iov, ARRAY_SIZE(iov)) < 0)
101                 fprintf(stderr, "failed to send question\n");
102         else
103                 DBG(1, "Q <- %s %s\n", dns_type_string(type), question);
104 }
105
106
107 struct dns_reply {
108         int type;
109         struct dns_answer a;
110         uint16_t rdlength;
111         uint8_t *rdata;
112         char *buffer;
113 };
114
115 #define MAX_ANSWER      8
116 static struct dns_reply dns_reply[1 + (MAX_ANSWER * 3)];
117 static int dns_answer_cnt;
118
119 void
120 dns_init_answer(void)
121 {
122         dns_answer_cnt = 0;
123 }
124
125 void
126 dns_add_answer(int type, const uint8_t *rdata, uint16_t rdlength)
127 {
128         struct dns_reply *a = &dns_reply[dns_answer_cnt];
129         if (dns_answer_cnt == MAX_ANSWER)
130                 return;
131         a->rdata = memdup(rdata, rdlength);
132         a->type = type;
133         a->rdlength = rdlength;
134         dns_answer_cnt++;
135 }
136
137 void
138 dns_send_answer(struct interface *iface, const char *answer)
139 {
140         uint8_t buffer[256];
141         struct dns_header h = { 0 };
142         struct iovec *iov;
143         int len, i;
144
145         if (!dns_answer_cnt)
146                 return;
147
148         h.answers = __cpu_to_be16(dns_answer_cnt);
149         h.flags = __cpu_to_be16(0x8400);
150
151         iov = alloca(sizeof(struct iovec) * ((dns_answer_cnt * 3) + 1));
152         iov[0].iov_base = &h;
153         iov[0].iov_len = sizeof(struct dns_header);
154
155         for (i = 0; i < dns_answer_cnt; i++) {
156                 struct dns_answer *a = &dns_reply[i].a;
157                 int id = (i * 3) + 1;
158
159                 memset(a, 0, sizeof(*a));
160                 a->type = __cpu_to_be16(dns_reply[i].type);
161                 a->class = __cpu_to_be16(1);
162                 a->ttl = __cpu_to_be32(announce_ttl);
163                 a->rdlength = __cpu_to_be16(dns_reply[i].rdlength);
164
165                 len = dn_comp(answer, buffer, sizeof(buffer), NULL, NULL);
166                 if (len < 1)
167                         return;
168
169                 dns_reply[i].buffer = iov[id].iov_base = memdup(buffer, len);
170                 iov[id].iov_len = len;
171
172                 iov[id + 1].iov_base = a;
173                 iov[id + 1].iov_len = sizeof(struct dns_answer);
174
175                 iov[id + 2].iov_base = dns_reply[i].rdata;
176                 iov[id + 2].iov_len = dns_reply[i].rdlength;
177
178                 DBG(1, "A <- %s %s\n", dns_type_string(dns_reply[i].type), answer);
179         }
180
181         if (interface_send_packet(iface, iov, (dns_answer_cnt * 3) + 1) < 0)
182                 fprintf(stderr, "failed to send question\n");
183
184         for (i = 0; i < dns_answer_cnt; i++) {
185                 free(dns_reply[i].buffer);
186                 free(dns_reply[i].rdata);
187         }
188         dns_answer_cnt = 0;
189 }
190
191 static int
192 scan_name(const uint8_t *buffer, int len)
193 {
194         int offset = 0;
195
196         while (len && (*buffer != '\0')) {
197                 int l = *buffer;
198
199                 if (IS_COMPRESSED(l))
200                         return offset + 2;
201
202                 len -= l + 1;
203                 offset += l + 1;
204                 buffer += l + 1;
205         }
206
207         if (!len || !offset || (*buffer != '\0'))
208                 return -1;
209
210         return offset + 1;
211 }
212
213 static struct dns_header*
214 dns_consume_header(uint8_t **data, int *len)
215 {
216         struct dns_header *h = (struct dns_header *) *data;
217         uint16_t *swap = (uint16_t *) h;
218         int endianess = 6;
219
220         if (*len < sizeof(struct dns_header))
221                 return NULL;
222
223         while (endianess--) {
224                 *swap = __be16_to_cpu(*swap);
225                 swap++;
226         }
227
228         *len -= sizeof(struct dns_header);
229         *data += sizeof(struct dns_header);
230
231         return h;
232 }
233
234 static struct dns_question*
235 dns_consume_question(uint8_t **data, int *len)
236 {
237         struct dns_question *q = (struct dns_question *) *data;
238         uint16_t *swap = (uint16_t *) q;
239         int endianess = 2;
240
241         if (*len < sizeof(struct dns_question))
242                 return NULL;
243
244         while (endianess--) {
245                 *swap = __be16_to_cpu(*swap);
246                 swap++;
247         }
248
249         *len -= sizeof(struct dns_question);
250         *data += sizeof(struct dns_question);
251
252         return q;
253 }
254
255 static struct dns_answer*
256 dns_consume_answer(uint8_t **data, int *len)
257 {
258         struct dns_answer *a = (struct dns_answer *) *data;
259
260         if (*len < sizeof(struct dns_answer))
261                 return NULL;
262
263         a->type = __be16_to_cpu(a->type);
264         a->class = __be16_to_cpu(a->class);
265         a->ttl = __be32_to_cpu(a->ttl);
266         a->rdlength = __be16_to_cpu(a->rdlength);
267
268         *len -= sizeof(struct dns_answer);
269         *data += sizeof(struct dns_answer);
270
271         return a;
272 }
273
274 static char *
275 dns_consume_name(const uint8_t *base, int blen, uint8_t **data, int *len)
276 {
277         int nlen = scan_name(*data, *len);
278
279         if (nlen < 1)
280                 return NULL;
281
282         if (dn_expand(base, base + blen, *data, name_buffer, MAX_NAME_LEN) < 0) {
283                 perror("dns_consume_name/dn_expand");
284                 return NULL;
285         }
286
287         *len -= nlen;
288         *data += nlen;
289
290         return name_buffer;
291 }
292
293 static int
294 parse_answer(struct interface *iface, uint8_t *buffer, int len, uint8_t **b, int *rlen, int cache)
295 {
296         char *name = dns_consume_name(buffer, len, b, rlen);
297         struct dns_answer *a;
298         uint8_t *rdata;
299
300         if (!name) {
301                 fprintf(stderr, "dropping: bad question\n");
302                 return -1;
303         }
304
305         a = dns_consume_answer(b, rlen);
306         if (!a) {
307                 fprintf(stderr, "dropping: bad question\n");
308                 return -1;
309         }
310
311         rdata = *b;
312         if (a->rdlength > *rlen) {
313                 fprintf(stderr, "dropping: bad question\n");
314                 return -1;
315         }
316
317         *rlen -= a->rdlength;
318         *b += a->rdlength;
319
320         if (cache)
321                 cache_answer(iface, buffer, len, name, a, rdata);
322
323         return 0;
324 }
325
326 static void
327 parse_question(struct interface *iface, char *name, struct dns_question *q)
328 {
329         char *host;
330
331         DBG(1, "Q -> %s %s\n", dns_type_string(q->type), name);
332
333         switch (q->type) {
334         case TYPE_ANY:
335                 if (!strcmp(name, mdns_hostname_local))
336                         service_reply(iface, NULL);
337                 break;
338
339         case TYPE_PTR:
340                 service_announce_services(iface, name);
341                 service_reply(iface, name);
342                 break;
343
344         case TYPE_AAAA:
345         case TYPE_A:
346                 host = strstr(name, ".local");
347                 if (host)
348                         *host = '\0';
349                 if (!strcmp(mdns_hostname, name))
350                         service_reply_a(iface, q->type);
351                 break;
352         };
353 }
354
355 void
356 dns_handle_packet(struct interface *iface, uint8_t *buffer, int len)
357 {
358         struct dns_header *h;
359         uint8_t *b = buffer;
360         int rlen = len;
361
362         h = dns_consume_header(&b, &rlen);
363         if (!h) {
364                 fprintf(stderr, "dropping: bad header\n");
365                 return;
366         }
367
368         while (h->questions-- > 0) {
369                 char *name = dns_consume_name(buffer, len, &b, &rlen);
370                 struct dns_question *q;
371
372                 if (!name) {
373                         fprintf(stderr, "dropping: bad name\n");
374                         return;
375                 }
376
377                 q = dns_consume_question(&b, &rlen);
378                 if (!q) {
379                         fprintf(stderr, "dropping: bad question\n");
380                         return;
381                 }
382
383                 if (!(h->flags & FLAG_RESPONSE))
384                         parse_question(iface, name, q);
385         }
386
387         if (!(h->flags & FLAG_RESPONSE))
388                 return;
389
390         while (h->answers-- > 0)
391                 parse_answer(iface, buffer, len, &b, &rlen, 1);
392
393         while (h->authority-- > 0)
394                 parse_answer(iface, buffer, len, &b, &rlen, 0);
395
396         while (h->additional-- > 0)
397                 parse_answer(iface, buffer, len, &b, &rlen, 1);
398 }