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Baptiste Assmann325137d2015-04-13 23:40:55 +02001/*
2 * Name server resolution
3 *
4 * Copyright 2014 Baptiste Assmann <bedis9@gmail.com>
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 *
11 */
12
13#include <errno.h>
14#include <fcntl.h>
15#include <stdio.h>
16#include <stdlib.h>
17#include <string.h>
18#include <unistd.h>
19
20#include <sys/types.h>
21
22#include <common/time.h>
23#include <common/ticks.h>
24
25#include <types/global.h>
26#include <types/dns.h>
27#include <types/proto_udp.h>
28
29#include <proto/checks.h>
30#include <proto/dns.h>
31#include <proto/fd.h>
32#include <proto/log.h>
33#include <proto/server.h>
34#include <proto/task.h>
35#include <proto/proto_udp.h>
36
37struct list dns_resolvers = LIST_HEAD_INIT(dns_resolvers);
38struct dns_resolution *resolution = NULL;
39
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +020040/*
41 * pre-allocated memory for maximum record names in a DNS response
42 * Each name is DNS_MAX_NAME_SIZE, we add 1 for the NULL character
43 *
44 * WARNING: this is not thread safe...
45 */
46struct dns_response_packet dns_response;
47struct chunk dns_trash = { };
48struct dns_query_item dns_query_records[DNS_MAX_QUERY_RECORDS];
49struct dns_answer_item dns_answer_records[DNS_MAX_ANSWER_RECORDS];
50
Baptiste Assmann325137d2015-04-13 23:40:55 +020051static int64_t dns_query_id_seed; /* random seed */
52
53/* proto_udp callback functions for a DNS resolution */
54struct dgram_data_cb resolve_dgram_cb = {
55 .recv = dns_resolve_recv,
56 .send = dns_resolve_send,
57};
58
59#if DEBUG
60/*
61 * go through the resolutions associated to a resolvers section and print the ID and hostname in
62 * domain name format
63 * should be used for debug purpose only
64 */
65void dns_print_current_resolutions(struct dns_resolvers *resolvers)
66{
67 list_for_each_entry(resolution, &resolvers->curr_resolution, list) {
68 printf(" resolution %d for %s\n", resolution->query_id, resolution->hostname_dn);
69 }
70}
71#endif
72
73/*
74 * check if there is more than 1 resolution in the resolver's resolution list
75 * return value:
76 * 0: empty list
77 * 1: exactly one entry in the list
78 * 2: more than one entry in the list
79 */
80int dns_check_resolution_queue(struct dns_resolvers *resolvers)
81{
82
83 if (LIST_ISEMPTY(&resolvers->curr_resolution))
84 return 0;
85
86 if ((resolvers->curr_resolution.n) && (resolvers->curr_resolution.n == resolvers->curr_resolution.p))
87 return 1;
88
89 if (! ((resolvers->curr_resolution.n == resolvers->curr_resolution.p)
90 && (&resolvers->curr_resolution != resolvers->curr_resolution.n)))
91 return 2;
92
93 return 0;
94}
95
96/*
97 * reset all parameters of a DNS resolution to 0 (or equivalent)
98 * and clean it up from all associated lists (resolution->qid and resolution->list)
99 */
100void dns_reset_resolution(struct dns_resolution *resolution)
101{
102 /* update resolution status */
103 resolution->step = RSLV_STEP_NONE;
104
105 resolution->try = 0;
106 resolution->try_cname = 0;
107 resolution->last_resolution = now_ms;
108 resolution->nb_responses = 0;
109
110 /* clean up query id */
111 eb32_delete(&resolution->qid);
112 resolution->query_id = 0;
113 resolution->qid.key = 0;
114
115 /* default values */
Thierry Fournierada34842016-02-17 21:25:09 +0100116 if (resolution->opts->family_prio == AF_INET) {
Andrew Hayworthe6a4a322015-10-19 22:29:51 +0000117 resolution->query_type = DNS_RTYPE_A;
118 } else {
119 resolution->query_type = DNS_RTYPE_AAAA;
120 }
Baptiste Assmann325137d2015-04-13 23:40:55 +0200121
122 /* the second resolution in the queue becomes the first one */
123 LIST_DEL(&resolution->list);
124}
125
126/*
127 * function called when a network IO is generated on a name server socket for an incoming packet
128 * It performs the following actions:
129 * - check if the packet requires processing (not outdated resolution)
130 * - ensure the DNS packet received is valid and call requester's callback
131 * - call requester's error callback if invalid response
Baptiste Assmann3cf7f982016-04-17 22:43:26 +0200132 * - check the dn_name in the packet against the one sent
Baptiste Assmann325137d2015-04-13 23:40:55 +0200133 */
134void dns_resolve_recv(struct dgram_conn *dgram)
135{
136 struct dns_nameserver *nameserver;
137 struct dns_resolvers *resolvers;
138 struct dns_resolution *resolution;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200139 struct dns_query_item *query;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200140 unsigned char buf[DNS_MAX_UDP_MESSAGE + 1];
141 unsigned char *bufend;
142 int fd, buflen, ret;
143 unsigned short query_id;
144 struct eb32_node *eb;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200145 struct dns_response_packet *dns_p = &dns_response;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200146
147 fd = dgram->t.sock.fd;
148
149 /* check if ready for reading */
150 if (!fd_recv_ready(fd))
151 return;
152
153 /* no need to go further if we can't retrieve the nameserver */
Vincent Bernat3c2f2f22016-04-03 13:48:42 +0200154 if ((nameserver = dgram->owner) == NULL)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200155 return;
156
157 resolvers = nameserver->resolvers;
158
159 /* process all pending input messages */
160 while (1) {
161 /* read message received */
162 memset(buf, '\0', DNS_MAX_UDP_MESSAGE + 1);
163 if ((buflen = recv(fd, (char*)buf , DNS_MAX_UDP_MESSAGE, 0)) < 0) {
164 /* FIXME : for now we consider EAGAIN only */
165 fd_cant_recv(fd);
166 break;
167 }
168
169 /* message too big */
170 if (buflen > DNS_MAX_UDP_MESSAGE) {
171 nameserver->counters.too_big += 1;
172 continue;
173 }
174
175 /* initializing variables */
176 bufend = buf + buflen; /* pointer to mark the end of the buffer */
177
178 /* read the query id from the packet (16 bits) */
179 if (buf + 2 > bufend) {
180 nameserver->counters.invalid += 1;
181 continue;
182 }
183 query_id = dns_response_get_query_id(buf);
184
185 /* search the query_id in the pending resolution tree */
Baptiste Assmann01daef32015-09-02 22:05:24 +0200186 eb = eb32_lookup(&resolvers->query_ids, query_id);
187 if (eb == NULL) {
Baptiste Assmann325137d2015-04-13 23:40:55 +0200188 /* unknown query id means an outdated response and can be safely ignored */
189 nameserver->counters.outdated += 1;
190 continue;
191 }
192
193 /* known query id means a resolution in prgress */
194 resolution = eb32_entry(eb, struct dns_resolution, qid);
195
196 if (!resolution) {
197 nameserver->counters.outdated += 1;
198 continue;
199 }
200
201 /* number of responses received */
202 resolution->nb_responses += 1;
203
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200204 ret = dns_validate_dns_response(buf, bufend, dns_p);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200205
206 /* treat only errors */
207 switch (ret) {
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200208 case DNS_RESP_QUERY_COUNT_ERROR:
Baptiste Assmann325137d2015-04-13 23:40:55 +0200209 case DNS_RESP_INVALID:
Baptiste Assmann325137d2015-04-13 23:40:55 +0200210 nameserver->counters.invalid += 1;
211 resolution->requester_error_cb(resolution, DNS_RESP_INVALID);
212 continue;
213
214 case DNS_RESP_ERROR:
215 nameserver->counters.other += 1;
216 resolution->requester_error_cb(resolution, DNS_RESP_ERROR);
217 continue;
218
219 case DNS_RESP_ANCOUNT_ZERO:
220 nameserver->counters.any_err += 1;
221 resolution->requester_error_cb(resolution, DNS_RESP_ANCOUNT_ZERO);
222 continue;
223
224 case DNS_RESP_NX_DOMAIN:
225 nameserver->counters.nx += 1;
226 resolution->requester_error_cb(resolution, DNS_RESP_NX_DOMAIN);
227 continue;
228
229 case DNS_RESP_REFUSED:
230 nameserver->counters.refused += 1;
231 resolution->requester_error_cb(resolution, DNS_RESP_REFUSED);
232 continue;
233
234 case DNS_RESP_CNAME_ERROR:
235 nameserver->counters.cname_error += 1;
236 resolution->requester_error_cb(resolution, DNS_RESP_CNAME_ERROR);
237 continue;
238
Baptiste Assmann0df5d962015-09-02 21:58:32 +0200239 case DNS_RESP_TRUNCATED:
240 nameserver->counters.truncated += 1;
241 resolution->requester_error_cb(resolution, DNS_RESP_TRUNCATED);
242 continue;
Baptiste Assmann96972bc2015-09-09 00:46:58 +0200243
244 case DNS_RESP_NO_EXPECTED_RECORD:
245 nameserver->counters.other += 1;
246 resolution->requester_error_cb(resolution, DNS_RESP_NO_EXPECTED_RECORD);
247 continue;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200248 }
249
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200250 /* Now let's check the query's dname corresponds to the one we sent.
251 * We can check only the first query of the list. We send one query at a time
252 * so we get one query in the response */
253 query = LIST_NEXT(&dns_p->query_list, struct dns_query_item *, list);
254 if (query && memcmp(query->name, resolution->hostname_dn, resolution->hostname_dn_len) != 0) {
255 nameserver->counters.other += 1;
256 resolution->requester_error_cb(resolution, DNS_RESP_WRONG_NAME);
257 continue;
258 }
259
Baptiste Assmann37bb3722015-08-07 10:18:32 +0200260 nameserver->counters.valid += 1;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200261 resolution->requester_cb(resolution, nameserver, dns_p);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200262 }
263}
264
265/*
266 * function called when a resolvers network socket is ready to send data
267 * It performs the following actions:
268 */
269void dns_resolve_send(struct dgram_conn *dgram)
270{
271 int fd;
272 struct dns_nameserver *nameserver;
273 struct dns_resolvers *resolvers;
274 struct dns_resolution *resolution;
275
276 fd = dgram->t.sock.fd;
277
278 /* check if ready for sending */
279 if (!fd_send_ready(fd))
280 return;
281
282 /* we don't want/need to be waked up any more for sending */
283 fd_stop_send(fd);
284
285 /* no need to go further if we can't retrieve the nameserver */
Vincent Bernat3c2f2f22016-04-03 13:48:42 +0200286 if ((nameserver = dgram->owner) == NULL)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200287 return;
288
289 resolvers = nameserver->resolvers;
290 resolution = LIST_NEXT(&resolvers->curr_resolution, struct dns_resolution *, list);
291
292 dns_send_query(resolution);
293 dns_update_resolvers_timeout(resolvers);
294}
295
296/*
297 * forge and send a DNS query to resolvers associated to a resolution
298 * It performs the following actions:
299 * returns:
300 * 0 in case of error or safe ignorance
301 * 1 if no error
302 */
303int dns_send_query(struct dns_resolution *resolution)
304{
305 struct dns_resolvers *resolvers;
306 struct dns_nameserver *nameserver;
Erwan Velu5457eb42015-10-15 15:07:26 +0200307 int ret, bufsize, fd;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200308
309 resolvers = resolution->resolvers;
310
Baptiste Assmann325137d2015-04-13 23:40:55 +0200311 bufsize = dns_build_query(resolution->query_id, resolution->query_type, resolution->hostname_dn,
312 resolution->hostname_dn_len, trash.str, trash.size);
313
314 if (bufsize == -1)
315 return 0;
316
317 list_for_each_entry(nameserver, &resolvers->nameserver_list, list) {
318 fd = nameserver->dgram->t.sock.fd;
319 errno = 0;
320
321 ret = send(fd, trash.str, bufsize, 0);
322
323 if (ret > 0)
324 nameserver->counters.sent += 1;
325
326 if (ret == 0 || errno == EAGAIN) {
327 /* nothing written, let's update the poller that we wanted to send
328 * but we were not able to */
329 fd_want_send(fd);
330 fd_cant_send(fd);
331 }
332 }
333
334 /* update resolution */
Baptiste Assmann325137d2015-04-13 23:40:55 +0200335 resolution->nb_responses = 0;
336 resolution->last_sent_packet = now_ms;
337
338 return 1;
339}
340
341/*
342 * update a resolvers' task timeout for next wake up
343 */
344void dns_update_resolvers_timeout(struct dns_resolvers *resolvers)
345{
346 struct dns_resolution *resolution;
347
348 if (LIST_ISEMPTY(&resolvers->curr_resolution)) {
349 /* no more resolution pending, so no wakeup anymore */
350 resolvers->t->expire = TICK_ETERNITY;
351 }
352 else {
353 resolution = LIST_NEXT(&resolvers->curr_resolution, struct dns_resolution *, list);
354 resolvers->t->expire = tick_add(resolution->last_sent_packet, resolvers->timeout.retry);
355 }
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200356}
357
358/*
359 * Analyse, re-build and copy the name <name> from the DNS response packet <buffer>.
360 * <name> must point to the 'data_len' information or pointer 'c0' for compressed data.
361 * The result is copied into <dest>, ensuring we don't overflow using <dest_len>
362 * Returns the number of bytes the caller can move forward. If 0 it means an error occured
363 * while parsing the name.
364 * <offset> is the number of bytes the caller could move forward.
365 */
366int dns_read_name(unsigned char *buffer, unsigned char *bufend, unsigned char *name, char *destination, int dest_len, int *offset)
367{
368 int nb_bytes = 0, n = 0;
369 int label_len;
370 unsigned char *reader = name;
371 char *dest = destination;
372
373 while (1) {
374 /* name compression is in use */
375 if ((*reader & 0xc0) == 0xc0) {
376 /* a pointer must point BEFORE current position */
377 if ((buffer + reader[1]) > reader) {
378 goto out_error;
379 }
380
381 n = dns_read_name(buffer, bufend, buffer + reader[1], dest, dest_len - nb_bytes, offset);
382 if (n == 0)
383 goto out_error;
384
385 dest += n;
386 nb_bytes += n;
387 goto out;
388 }
389
390 label_len = *reader;
391 if (label_len == 0)
392 goto out;
393 /* Check if:
394 * - we won't read outside the buffer
395 * - there is enough place in the destination
396 */
397 if ((reader + label_len >= bufend) || (nb_bytes + label_len >= dest_len))
398 goto out_error;
399
400 /* +1 to take label len + label string */
401 label_len += 1;
402
403 memcpy(dest, reader, label_len);
404
405 dest += label_len;
406 nb_bytes += label_len;
407 reader += label_len;
408 }
409
410 out:
411 /* offset computation:
412 * parse from <name> until finding either NULL or a pointer "c0xx"
413 */
414 reader = name;
415 *offset = 0;
416 while (reader < bufend) {
417 if ((reader[0] & 0xc0) == 0xc0) {
418 *offset += 2;
419 break;
420 }
421 else if (*reader == 0) {
422 *offset += 1;
423 break;
424 }
425 *offset += 1;
426 ++reader;
427 }
428
429 return nb_bytes;
430
431 out_error:
432 return 0;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200433}
434
435/*
436 * Function to validate that the buffer DNS response provided in <resp> and
437 * finishing before <bufend> is valid from a DNS protocol point of view.
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200438 *
439 * The result is stored in the structured pointed by <dns_p>.
440 * It's up to the caller to allocate memory for <dns_p>.
441 *
442 * This function returns one of the DNS_RESP_* code to indicate the type of
443 * error found.
Baptiste Assmann325137d2015-04-13 23:40:55 +0200444 */
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200445int dns_validate_dns_response(unsigned char *resp, unsigned char *bufend, struct dns_response_packet *dns_p)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200446{
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200447 unsigned char *reader;
448 char *previous_dname, tmpname[DNS_MAX_NAME_SIZE];
449 int len, flags, offset, ret;
450 int dns_query_record_id, dns_answer_record_id;
451 struct dns_query_item *dns_query;
452 struct dns_answer_item *dns_answer_record;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200453
454 reader = resp;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200455 len = 0;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200456 previous_dname = NULL;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200457
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200458 /* initialization of local buffer */
459 memset(dns_p, '\0', sizeof(struct dns_response_packet));
460 chunk_reset(&dns_trash);
461
462 /* query id */
463 if (reader + 2 >= bufend)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200464 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200465 dns_p->header.id = reader[0] * 256 + reader[1];
466 reader += 2;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200467
468 /*
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200469 * flags and rcode are stored over 2 bytes
Baptiste Assmann3440f0d2015-09-02 22:08:38 +0200470 * First byte contains:
471 * - response flag (1 bit)
472 * - opcode (4 bits)
473 * - authoritative (1 bit)
474 * - truncated (1 bit)
475 * - recursion desired (1 bit)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200476 */
Baptiste Assmann3440f0d2015-09-02 22:08:38 +0200477 if (reader + 2 >= bufend)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200478 return DNS_RESP_INVALID;
479
Baptiste Assmann3440f0d2015-09-02 22:08:38 +0200480 flags = reader[0] * 256 + reader[1];
481
482 if (flags & DNS_FLAG_TRUNCATED)
483 return DNS_RESP_TRUNCATED;
484
485 if ((flags & DNS_FLAG_REPLYCODE) != DNS_RCODE_NO_ERROR) {
486 if ((flags & DNS_FLAG_REPLYCODE) == DNS_RCODE_NX_DOMAIN)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200487 return DNS_RESP_NX_DOMAIN;
Baptiste Assmann3440f0d2015-09-02 22:08:38 +0200488 else if ((flags & DNS_FLAG_REPLYCODE) == DNS_RCODE_REFUSED)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200489 return DNS_RESP_REFUSED;
490
491 return DNS_RESP_ERROR;
492 }
493
Baptiste Assmann3440f0d2015-09-02 22:08:38 +0200494 /* move forward 2 bytes for flags */
495 reader += 2;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200496
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200497 /* 2 bytes for question count */
498 if (reader + 2 >= bufend)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200499 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200500 dns_p->header.qdcount = reader[0] * 256 + reader[1];
501 /* (for now) we send one query only, so we expect only one in the response too */
502 if (dns_p->header.qdcount != 1)
503 return DNS_RESP_QUERY_COUNT_ERROR;
504 if (dns_p->header.qdcount > DNS_MAX_QUERY_RECORDS)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200505 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200506 reader += 2;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200507
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200508 /* 2 bytes for answer count */
509 if (reader + 2 >= bufend)
510 return DNS_RESP_INVALID;
511 dns_p->header.ancount = reader[0] * 256 + reader[1];
512 if (dns_p->header.ancount == 0)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200513 return DNS_RESP_ANCOUNT_ZERO;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200514 /* check if too many records are announced */
515 if (dns_p->header.ancount > DNS_MAX_ANSWER_RECORDS)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200516 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200517 reader += 2;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200518
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200519 /* 2 bytes authority count */
520 if (reader + 2 >= bufend)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200521 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200522 dns_p->header.nscount = reader[0] * 256 + reader[1];
523 reader += 2;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200524
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200525 /* 2 bytes additional count */
526 if (reader + 2 >= bufend)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200527 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200528 dns_p->header.arcount = reader[0] * 256 + reader[1];
529 reader += 2;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200530
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200531 /* parsing dns queries */
532 LIST_INIT(&dns_p->query_list);
533 for (dns_query_record_id = 0; dns_query_record_id < dns_p->header.qdcount; dns_query_record_id++) {
534 /* use next pre-allocated dns_query_item after ensuring there is
535 * still one available.
536 * It's then added to our packet query list.
537 */
538 if (dns_query_record_id > DNS_MAX_QUERY_RECORDS)
539 return DNS_RESP_INVALID;
540 dns_query = &dns_query_records[dns_query_record_id];
541 LIST_ADDQ(&dns_p->query_list, &dns_query->list);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200542
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200543 /* name is a NULL terminated string in our case, since we have
544 * one query per response and the first one can't be compressed
545 * (using the 0x0c format)
546 */
547 offset = 0;
548 len = dns_read_name(resp, bufend, reader, dns_query->name, DNS_MAX_NAME_SIZE, &offset);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200549
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200550 if (len == 0)
551 return DNS_RESP_INVALID;
552
553 reader += offset;
554 previous_dname = dns_query->name;
555
556 /* move forward 2 bytes for question type */
557 if (reader + 2 >= bufend)
558 return DNS_RESP_INVALID;
559 dns_query->type = reader[0] * 256 + reader[1];
560 reader += 2;
561
562 /* move forward 2 bytes for question class */
563 if (reader + 2 >= bufend)
564 return DNS_RESP_INVALID;
565 dns_query->class = reader[0] * 256 + reader[1];
566 reader += 2;
567 }
Baptiste Assmann325137d2015-04-13 23:40:55 +0200568
569 /* now parsing response records */
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200570 LIST_INIT(&dns_p->answer_list);
571 for (dns_answer_record_id = 0; dns_answer_record_id < dns_p->header.ancount; dns_answer_record_id++) {
Baptiste Assmann325137d2015-04-13 23:40:55 +0200572 if (reader >= bufend)
573 return DNS_RESP_INVALID;
574
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200575 /* pull next response record from the list, if still one available, then add it
576 * to the record list */
577 if (dns_answer_record_id > DNS_MAX_ANSWER_RECORDS)
578 return DNS_RESP_INVALID;
579 dns_answer_record = &dns_answer_records[dns_answer_record_id];
580 LIST_ADDQ(&dns_p->answer_list, &dns_answer_record->list);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200581
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200582 offset = 0;
583 len = dns_read_name(resp, bufend, reader, tmpname, DNS_MAX_NAME_SIZE, &offset);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200584
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200585 if (len == 0)
586 return DNS_RESP_INVALID;
587
588 /* check if the current record dname is valid.
589 * previous_dname points either to queried dname or last CNAME target
590 */
591 if (memcmp(previous_dname, tmpname, len) != 0) {
592 if (dns_answer_record_id == 0) {
593 /* first record, means a mismatch issue between queried dname
594 * and dname found in the first record */
Baptiste Assmann325137d2015-04-13 23:40:55 +0200595 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200596 } else {
597 /* if not the first record, this means we have a CNAME resolution
598 * error */
599 return DNS_RESP_CNAME_ERROR;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200600 }
601
Baptiste Assmann325137d2015-04-13 23:40:55 +0200602 }
603
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200604 dns_answer_record->name = chunk_newstr(&dns_trash);
605 if (dns_answer_record->name == NULL)
606 return DNS_RESP_INVALID;
Baptiste Assmann5d681ba2015-10-15 15:23:28 +0200607
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200608 ret = chunk_strncat(&dns_trash, tmpname, len);
609 if (ret == 0)
610 return DNS_RESP_INVALID;
Baptiste Assmann2359ff12015-08-07 11:24:05 +0200611
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200612 reader += offset;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200613 if (reader >= bufend)
614 return DNS_RESP_INVALID;
615
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200616 if (reader >= bufend)
617 return DNS_RESP_INVALID;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200618
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200619 /* 2 bytes for record type (A, AAAA, CNAME, etc...) */
Baptiste Assmann325137d2015-04-13 23:40:55 +0200620 if (reader + 2 > bufend)
621 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200622 dns_answer_record->type = reader[0] * 256 + reader[1];
623 reader += 2;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200624
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200625 /* 2 bytes for class (2) */
626 if (reader + 2 > bufend)
627 return DNS_RESP_INVALID;
628 dns_answer_record->class = reader[0] * 256 + reader[1];
Baptiste Assmann325137d2015-04-13 23:40:55 +0200629 reader += 2;
630
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200631 /* 4 bytes for ttl (4) */
632 if (reader + 4 > bufend)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200633 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200634 dns_answer_record->ttl = reader[0] * 16777216 + reader[1] * 65536
635 + reader[2] * 256 + reader[3];
636 reader += 4;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200637
638 /* now reading data len */
639 if (reader + 2 > bufend)
640 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200641 dns_answer_record->data_len = reader[0] * 256 + reader[1];
Baptiste Assmann325137d2015-04-13 23:40:55 +0200642
643 /* move forward 2 bytes for data len */
644 reader += 2;
645
646 /* analyzing record content */
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200647 switch (dns_answer_record->type) {
Baptiste Assmann325137d2015-04-13 23:40:55 +0200648 case DNS_RTYPE_A:
649 /* ipv4 is stored on 4 bytes */
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200650 if (dns_answer_record->data_len != 4)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200651 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200652 dns_answer_record->address.sa_family = AF_INET;
653 memcpy(&(((struct sockaddr_in *)&dns_answer_record->address)->sin_addr),
654 reader, dns_answer_record->data_len);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200655 break;
656
657 case DNS_RTYPE_CNAME:
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200658 /* check if this is the last record and update the caller about the status:
659 * no IP could be found and last record was a CNAME. Could be triggered
660 * by a wrong query type
661 *
662 * + 1 because dns_answer_record_id starts at 0 while number of answers
663 * is an integer and starts at 1.
664 */
665 if (dns_answer_record_id + 1 == dns_p->header.ancount)
666 return DNS_RESP_CNAME_ERROR;
667
668 offset = 0;
669 len = dns_read_name(resp, bufend, reader, tmpname, DNS_MAX_NAME_SIZE, &offset);
670
671 if (len == 0)
672 return DNS_RESP_INVALID;
673
674 dns_answer_record->target = chunk_newstr(&dns_trash);
675 if (dns_answer_record->target == NULL)
676 return DNS_RESP_INVALID;
677
678 ret = chunk_strncat(&dns_trash, tmpname, len);
679 if (ret == 0)
680 return DNS_RESP_INVALID;
681
682 previous_dname = dns_answer_record->target;
683
Baptiste Assmann325137d2015-04-13 23:40:55 +0200684 break;
685
686 case DNS_RTYPE_AAAA:
687 /* ipv6 is stored on 16 bytes */
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200688 if (dns_answer_record->data_len != 16)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200689 return DNS_RESP_INVALID;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200690 dns_answer_record->address.sa_family = AF_INET6;
691 memcpy(&(((struct sockaddr_in6 *)&dns_answer_record->address)->sin6_addr),
692 reader, dns_answer_record->data_len);
Baptiste Assmann325137d2015-04-13 23:40:55 +0200693 break;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200694
Baptiste Assmann325137d2015-04-13 23:40:55 +0200695 } /* switch (record type) */
696
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200697 /* move forward dns_answer_record->data_len for analyzing next record in the response */
698 reader += dns_answer_record->data_len;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200699 } /* for i 0 to ancount */
700
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200701 /* let's add a last \0 to close our last string */
702 ret = chunk_strncat(&dns_trash, "\0", 1);
703 if (ret == 0)
704 return DNS_RESP_INVALID;
Baptiste Assmann96972bc2015-09-09 00:46:58 +0200705
Baptiste Assmann325137d2015-04-13 23:40:55 +0200706 return DNS_RESP_VALID;
707}
708
709/*
710 * search dn_name resolution in resp.
711 * If existing IP not found, return the first IP matching family_priority,
712 * otherwise, first ip found
713 * The following tasks are the responsibility of the caller:
Baptiste Assmann3cf7f982016-04-17 22:43:26 +0200714 * - <dns_p> contains an error free DNS response
Baptiste Assmann325137d2015-04-13 23:40:55 +0200715 * For both cases above, dns_validate_dns_response is required
716 * returns one of the DNS_UPD_* code
717 */
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100718#define DNS_MAX_IP_REC 20
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200719int dns_get_ip_from_response(struct dns_response_packet *dns_p,
Thierry Fournierada34842016-02-17 21:25:09 +0100720 struct dns_resolution *resol, void *currentip,
721 short currentip_sin_family,
722 void **newip, short *newip_sin_family)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200723{
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200724 struct dns_answer_item *record;
Thierry Fournierada34842016-02-17 21:25:09 +0100725 int family_priority;
Baptiste Assmann3cf7f982016-04-17 22:43:26 +0200726 int i, currentip_found;
727 unsigned char *newip4, *newip6;
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100728 struct {
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200729 void *ip;
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100730 unsigned char type;
731 } rec[DNS_MAX_IP_REC];
732 int currentip_sel;
733 int j;
734 int rec_nb = 0;
735 int score, max_score;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200736
Thierry Fournierada34842016-02-17 21:25:09 +0100737 family_priority = resol->opts->family_prio;
Baptiste Assmann3cf7f982016-04-17 22:43:26 +0200738 *newip = newip4 = newip6 = NULL;
739 currentip_found = 0;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200740 *newip_sin_family = AF_UNSPEC;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200741
742 /* now parsing response records */
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200743 list_for_each_entry(record, &dns_response.answer_list, list) {
Baptiste Assmann325137d2015-04-13 23:40:55 +0200744 /* analyzing record content */
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200745 switch (record->type) {
Baptiste Assmann325137d2015-04-13 23:40:55 +0200746 case DNS_RTYPE_A:
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100747 /* Store IPv4, only if some room is avalaible. */
748 if (rec_nb < DNS_MAX_IP_REC) {
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200749 rec[rec_nb].ip = &(((struct sockaddr_in *)&record->address)->sin_addr);
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100750 rec[rec_nb].type = AF_INET;
751 rec_nb++;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200752 }
Baptiste Assmann325137d2015-04-13 23:40:55 +0200753 break;
754
Baptiste Assmann3cf7f982016-04-17 22:43:26 +0200755 /* we're looking for IPs only. CNAME validation is done when
756 * parsing the response buffer for the first time */
Baptiste Assmann325137d2015-04-13 23:40:55 +0200757 case DNS_RTYPE_CNAME:
Baptiste Assmann325137d2015-04-13 23:40:55 +0200758 break;
759
760 case DNS_RTYPE_AAAA:
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100761 /* Store IPv6, only if some room is avalaible. */
762 if (rec_nb < DNS_MAX_IP_REC) {
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200763 rec[rec_nb].ip = &(((struct sockaddr_in6 *)&record->address)->sin6_addr);
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100764 rec[rec_nb].type = AF_INET6;
765 rec_nb++;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200766 }
Baptiste Assmann325137d2015-04-13 23:40:55 +0200767 break;
768
Baptiste Assmann325137d2015-04-13 23:40:55 +0200769 } /* switch (record type) */
Baptiste Assmannbcbd4912016-04-18 19:42:57 +0200770 } /* list for each record entries */
Baptiste Assmann325137d2015-04-13 23:40:55 +0200771
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100772 /* Select an IP regarding configuration preference.
773 * Top priority is the prefered network ip version,
774 * second priority is the prefered network.
775 * the last priority is the currently used IP,
776 *
777 * For these three priorities, a score is calculated. The
778 * weight are:
779 * 4 - prefered netwok ip version.
780 * 2 - prefered network.
781 * 1 - current ip.
782 * The result with the biggest score is returned.
783 */
784 max_score = -1;
785 for (i = 0; i < rec_nb; i++) {
786
787 score = 0;
788
789 /* Check for prefered ip protocol. */
790 if (rec[i].type == family_priority)
791 score += 4;
792
793 /* Check for prefered network. */
794 for (j = 0; j < resol->opts->pref_net_nb; j++) {
795
796 /* Compare only the same adresses class. */
797 if (resol->opts->pref_net[j].family != rec[i].type)
798 continue;
799
800 if ((rec[i].type == AF_INET &&
Willy Tarreaueec1d382016-07-13 11:59:39 +0200801 in_net_ipv4(rec[i].ip,
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100802 &resol->opts->pref_net[j].mask.in4,
803 &resol->opts->pref_net[j].addr.in4)) ||
804 (rec[i].type == AF_INET6 &&
Willy Tarreaueec1d382016-07-13 11:59:39 +0200805 in_net_ipv6(rec[i].ip,
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100806 &resol->opts->pref_net[j].mask.in6,
807 &resol->opts->pref_net[j].addr.in6))) {
808 score += 2;
809 break;
810 }
811 }
812
813 /* Check for current ip matching. */
814 if (rec[i].type == currentip_sin_family &&
815 ((currentip_sin_family == AF_INET &&
Willy Tarreaueec1d382016-07-13 11:59:39 +0200816 memcmp(rec[i].ip, currentip, 4) == 0) ||
Thierry Fournierac88cfe2016-02-17 22:05:30 +0100817 (currentip_sin_family == AF_INET6 &&
818 memcmp(rec[i].ip, currentip, 16) == 0))) {
819 score += 1;
820 currentip_sel = 1;
821 } else
822 currentip_sel = 0;
823
824 /* Keep the address if the score is better than the previous
825 * score. The maximum score is 7, if this value is reached,
826 * we break the parsing. Implicitly, this score is reached
827 * the ip selected is the current ip.
828 */
829 if (score > max_score) {
830 if (rec[i].type == AF_INET)
831 newip4 = rec[i].ip;
832 else
833 newip6 = rec[i].ip;
834 currentip_found = currentip_sel;
835 if (score == 7)
836 return DNS_UPD_NO;
837 max_score = score;
838 }
839 }
840
Baptiste Assmann0453a1d2015-09-09 00:51:08 +0200841 /* no IP found in the response */
842 if (!newip4 && !newip6) {
843 return DNS_UPD_NO_IP_FOUND;
844 }
845
Baptiste Assmann325137d2015-04-13 23:40:55 +0200846 /* case when the caller looks first for an IPv4 address */
847 if (family_priority == AF_INET) {
848 if (newip4) {
849 *newip = newip4;
850 *newip_sin_family = AF_INET;
851 if (currentip_found == 1)
852 return DNS_UPD_NO;
853 return DNS_UPD_SRVIP_NOT_FOUND;
854 }
855 else if (newip6) {
856 *newip = newip6;
857 *newip_sin_family = AF_INET6;
858 if (currentip_found == 1)
859 return DNS_UPD_NO;
860 return DNS_UPD_SRVIP_NOT_FOUND;
861 }
862 }
863 /* case when the caller looks first for an IPv6 address */
864 else if (family_priority == AF_INET6) {
865 if (newip6) {
866 *newip = newip6;
867 *newip_sin_family = AF_INET6;
868 if (currentip_found == 1)
869 return DNS_UPD_NO;
870 return DNS_UPD_SRVIP_NOT_FOUND;
871 }
872 else if (newip4) {
873 *newip = newip4;
874 *newip_sin_family = AF_INET;
875 if (currentip_found == 1)
876 return DNS_UPD_NO;
877 return DNS_UPD_SRVIP_NOT_FOUND;
878 }
879 }
880 /* case when the caller have no preference (we prefer IPv6) */
881 else if (family_priority == AF_UNSPEC) {
882 if (newip6) {
883 *newip = newip6;
884 *newip_sin_family = AF_INET6;
885 if (currentip_found == 1)
886 return DNS_UPD_NO;
887 return DNS_UPD_SRVIP_NOT_FOUND;
888 }
889 else if (newip4) {
890 *newip = newip4;
891 *newip_sin_family = AF_INET;
892 if (currentip_found == 1)
893 return DNS_UPD_NO;
894 return DNS_UPD_SRVIP_NOT_FOUND;
895 }
896 }
897
898 /* no reason why we should change the server's IP address */
899 return DNS_UPD_NO;
900}
901
902/*
903 * returns the query id contained in a DNS response
904 */
Thiago Farinab1af23e2016-01-20 23:46:34 +0100905unsigned short dns_response_get_query_id(unsigned char *resp)
Baptiste Assmann325137d2015-04-13 23:40:55 +0200906{
907 /* read the query id from the response */
908 return resp[0] * 256 + resp[1];
909}
910
911/*
912 * used during haproxy's init phase
913 * parses resolvers sections and initializes:
914 * - task (time events) for each resolvers section
915 * - the datagram layer (network IO events) for each nameserver
916 * returns:
917 * 0 in case of error
918 * 1 when no error
919 */
920int dns_init_resolvers(void)
921{
922 struct dns_resolvers *curr_resolvers;
923 struct dns_nameserver *curnameserver;
924 struct dgram_conn *dgram;
925 struct task *t;
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200926 char *dns_trash_str;
Baptiste Assmann325137d2015-04-13 23:40:55 +0200927 int fd;
928
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200929 dns_trash_str = malloc(global.tune.bufsize);
930 if (dns_trash_str == NULL) {
Willy Tarreauc3d8cd42016-10-01 09:20:32 +0200931 Alert("Starting resolvers: out of memory.\n");
Baptiste Assmannc1ce5f32016-05-14 11:26:22 +0200932 return 0;
933 }
934
935 /* allocate memory for the dns_trash buffer used to temporarily store
936 * the records of the received response */
937 chunk_init(&dns_trash, dns_trash_str, global.tune.bufsize);
938
Baptiste Assmann325137d2015-04-13 23:40:55 +0200939 /* give a first random value to our dns query_id seed */
940 dns_query_id_seed = random();
941
942 /* run through the resolvers section list */
943 list_for_each_entry(curr_resolvers, &dns_resolvers, list) {
944 /* create the task associated to the resolvers section */
945 if ((t = task_new()) == NULL) {
946 Alert("Starting [%s] resolvers: out of memory.\n", curr_resolvers->id);
947 return 0;
948 }
949
950 /* update task's parameters */
951 t->process = dns_process_resolve;
952 t->context = curr_resolvers;
953 t->expire = TICK_ETERNITY;
954
955 curr_resolvers->t = t;
956
957 list_for_each_entry(curnameserver, &curr_resolvers->nameserver_list, list) {
Vincent Bernat02779b62016-04-03 13:48:43 +0200958 if ((dgram = calloc(1, sizeof(*dgram))) == NULL) {
Baptiste Assmann325137d2015-04-13 23:40:55 +0200959 Alert("Starting [%s/%s] nameserver: out of memory.\n", curr_resolvers->id,
960 curnameserver->id);
961 return 0;
962 }
963 /* update datagram's parameters */
964 dgram->owner = (void *)curnameserver;
965 dgram->data = &resolve_dgram_cb;
966
967 /* create network UDP socket for this nameserver */
968 if ((fd = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP)) == -1) {
969 Alert("Starting [%s/%s] nameserver: can't create socket.\n", curr_resolvers->id,
970 curnameserver->id);
971 free(dgram);
972 dgram = NULL;
973 return 0;
974 }
975
976 /* "connect" the UDP socket to the name server IP */
Baptiste Assmann8c62c472015-09-21 20:55:08 +0200977 if (connect(fd, (struct sockaddr*)&curnameserver->addr, get_addr_len(&curnameserver->addr)) == -1) {
Baptiste Assmann325137d2015-04-13 23:40:55 +0200978 Alert("Starting [%s/%s] nameserver: can't connect socket.\n", curr_resolvers->id,
979 curnameserver->id);
980 close(fd);
981 free(dgram);
982 dgram = NULL;
983 return 0;
984 }
985
986 /* make the socket non blocking */
987 fcntl(fd, F_SETFL, O_NONBLOCK);
988
989 /* add the fd in the fd list and update its parameters */
990 fd_insert(fd);
991 fdtab[fd].owner = dgram;
992 fdtab[fd].iocb = dgram_fd_handler;
993 fd_want_recv(fd);
994 dgram->t.sock.fd = fd;
995
996 /* update nameserver's datagram property */
997 curnameserver->dgram = dgram;
998
999 continue;
1000 }
1001
1002 /* task can be queued */
1003 task_queue(t);
1004 }
1005
1006 return 1;
1007}
1008
1009/*
1010 * Forge a DNS query. It needs the following information from the caller:
1011 * - <query_id>: the DNS query id corresponding to this query
1012 * - <query_type>: DNS_RTYPE_* request DNS record type (A, AAAA, ANY, etc...)
1013 * - <hostname_dn>: hostname in domain name format
1014 * - <hostname_dn_len>: length of <hostname_dn>
1015 * To store the query, the caller must pass a buffer <buf> and its size <bufsize>
1016 *
1017 * the DNS query is stored in <buf>
1018 * returns:
1019 * -1 if <buf> is too short
1020 */
1021int dns_build_query(int query_id, int query_type, char *hostname_dn, int hostname_dn_len, char *buf, int bufsize)
1022{
1023 struct dns_header *dns;
Vincent Bernat9b7125c2016-04-08 22:17:45 +02001024 struct dns_question qinfo;
Baptiste Assmann325137d2015-04-13 23:40:55 +02001025 char *ptr, *bufend;
1026
1027 memset(buf, '\0', bufsize);
1028 ptr = buf;
1029 bufend = buf + bufsize;
1030
1031 /* check if there is enough room for DNS headers */
1032 if (ptr + sizeof(struct dns_header) >= bufend)
1033 return -1;
1034
1035 /* set dns query headers */
1036 dns = (struct dns_header *)ptr;
1037 dns->id = (unsigned short) htons(query_id);
Nenad Merdanovic8ab79422016-07-13 14:03:43 +02001038 dns->flags = htons(0x0100); /* qr=0, opcode=0, aa=0, tc=0, rd=1, ra=0, z=0, rcode=0 */
Baptiste Assmann325137d2015-04-13 23:40:55 +02001039 dns->qdcount = htons(1); /* 1 question */
1040 dns->ancount = 0;
1041 dns->nscount = 0;
1042 dns->arcount = 0;
1043
1044 /* move forward ptr */
1045 ptr += sizeof(struct dns_header);
1046
1047 /* check if there is enough room for query hostname */
1048 if ((ptr + hostname_dn_len) >= bufend)
1049 return -1;
1050
1051 /* set up query hostname */
1052 memcpy(ptr, hostname_dn, hostname_dn_len);
1053 ptr[hostname_dn_len + 1] = '\0';
1054
1055 /* move forward ptr */
1056 ptr += (hostname_dn_len + 1);
1057
1058 /* check if there is enough room for query hostname*/
1059 if (ptr + sizeof(struct dns_question) >= bufend)
1060 return -1;
1061
1062 /* set up query info (type and class) */
Vincent Bernat9b7125c2016-04-08 22:17:45 +02001063 qinfo.qtype = htons(query_type);
1064 qinfo.qclass = htons(DNS_RCLASS_IN);
1065 memcpy(ptr, &qinfo, sizeof(qinfo));
Baptiste Assmann325137d2015-04-13 23:40:55 +02001066
1067 ptr += sizeof(struct dns_question);
1068
1069 return ptr - buf;
1070}
1071
1072/*
1073 * turn a string into domain name label:
1074 * www.haproxy.org into 3www7haproxy3org
1075 * if dn memory is pre-allocated, you must provide its size in dn_len
1076 * if dn memory isn't allocated, dn_len must be set to 0.
1077 * In the second case, memory will be allocated.
1078 * in case of error, -1 is returned, otherwise, number of bytes copied in dn
1079 */
Willy Tarreau2100b492015-07-22 16:42:43 +02001080char *dns_str_to_dn_label(const char *string, char *dn, int dn_len)
Baptiste Assmann325137d2015-04-13 23:40:55 +02001081{
1082 char *c, *d;
1083 int i, offset;
1084
1085 /* offset between string size and theorical dn size */
1086 offset = 1;
1087
1088 /*
1089 * first, get the size of the string turned into its domain name version
1090 * This function also validates the string respect the RFC
1091 */
1092 if ((i = dns_str_to_dn_label_len(string)) == -1)
1093 return NULL;
1094
1095 /* yes, so let's check there is enough memory */
1096 if (dn_len < i + offset)
1097 return NULL;
1098
Willy Tarreaud69d6f32015-07-22 16:45:36 +02001099 i = strlen(string);
Baptiste Assmann325137d2015-04-13 23:40:55 +02001100 memcpy(dn + offset, string, i);
1101 dn[i + offset] = '\0';
1102 /* avoid a '\0' at the beginning of dn string which may prevent the for loop
1103 * below from working.
1104 * Actually, this is the reason of the offset. */
1105 dn[0] = '0';
1106
1107 for (c = dn; *c ; ++c) {
1108 /* c points to the first '0' char or a dot, which we don't want to read */
1109 d = c + offset;
1110 i = 0;
1111 while (*d != '.' && *d) {
1112 i++;
1113 d++;
1114 }
1115 *c = i;
1116
1117 c = d - 1; /* because of c++ of the for loop */
1118 }
1119
1120 return dn;
1121}
1122
1123/*
1124 * compute and return the length of <string> it it were translated into domain name
1125 * label:
1126 * www.haproxy.org into 3www7haproxy3org would return 16
1127 * NOTE: add +1 for '\0' when allocating memory ;)
1128 */
1129int dns_str_to_dn_label_len(const char *string)
1130{
1131 return strlen(string) + 1;
1132}
1133
1134/*
1135 * validates host name:
1136 * - total size
1137 * - each label size individually
1138 * returns:
1139 * 0 in case of error. If <err> is not NULL, an error message is stored there.
1140 * 1 when no error. <err> is left unaffected.
1141 */
1142int dns_hostname_validation(const char *string, char **err)
1143{
1144 const char *c, *d;
1145 int i;
1146
1147 if (strlen(string) > DNS_MAX_NAME_SIZE) {
1148 if (err)
1149 *err = DNS_TOO_LONG_FQDN;
1150 return 0;
1151 }
1152
1153 c = string;
1154 while (*c) {
1155 d = c;
1156
1157 i = 0;
1158 while (*d != '.' && *d && i <= DNS_MAX_LABEL_SIZE) {
1159 i++;
1160 if (!((*d == '-') || (*d == '_') ||
1161 ((*d >= 'a') && (*d <= 'z')) ||
1162 ((*d >= 'A') && (*d <= 'Z')) ||
1163 ((*d >= '0') && (*d <= '9')))) {
1164 if (err)
1165 *err = DNS_INVALID_CHARACTER;
1166 return 0;
1167 }
1168 d++;
1169 }
1170
1171 if ((i >= DNS_MAX_LABEL_SIZE) && (d[i] != '.')) {
1172 if (err)
1173 *err = DNS_LABEL_TOO_LONG;
1174 return 0;
1175 }
1176
1177 if (*d == '\0')
1178 goto out;
1179
1180 c = ++d;
1181 }
1182 out:
1183 return 1;
1184}
1185
1186/*
1187 * 2 bytes random generator to generate DNS query ID
1188 */
1189uint16_t dns_rnd16(void)
1190{
1191 dns_query_id_seed ^= dns_query_id_seed << 13;
1192 dns_query_id_seed ^= dns_query_id_seed >> 7;
1193 dns_query_id_seed ^= dns_query_id_seed << 17;
1194 return dns_query_id_seed;
1195}
1196
1197
1198/*
1199 * function called when a timeout occurs during name resolution process
1200 * if max number of tries is reached, then stop, otherwise, retry.
1201 */
1202struct task *dns_process_resolve(struct task *t)
1203{
1204 struct dns_resolvers *resolvers = t->context;
1205 struct dns_resolution *resolution, *res_back;
Baptiste Assmann060e5732016-01-06 02:01:59 +01001206 int res_preferred_afinet, res_preferred_afinet6;
Baptiste Assmann325137d2015-04-13 23:40:55 +02001207
1208 /* timeout occurs inevitably for the first element of the FIFO queue */
1209 if (LIST_ISEMPTY(&resolvers->curr_resolution)) {
1210 /* no first entry, so wake up was useless */
1211 t->expire = TICK_ETERNITY;
1212 return t;
1213 }
1214
1215 /* look for the first resolution which is not expired */
1216 list_for_each_entry_safe(resolution, res_back, &resolvers->curr_resolution, list) {
1217 /* when we find the first resolution in the future, then we can stop here */
1218 if (tick_is_le(now_ms, resolution->last_sent_packet))
1219 goto out;
1220
1221 /*
1222 * if current resolution has been tried too many times and finishes in timeout
1223 * we update its status and remove it from the list
1224 */
Baptiste Assmannf778bb42015-09-09 00:54:38 +02001225 if (resolution->try <= 0) {
Baptiste Assmann325137d2015-04-13 23:40:55 +02001226 /* clean up resolution information and remove from the list */
1227 dns_reset_resolution(resolution);
1228
1229 /* notify the result to the requester */
1230 resolution->requester_error_cb(resolution, DNS_RESP_TIMEOUT);
Baptiste Assmann382824c2016-01-06 01:53:46 +01001231 goto out;
Baptiste Assmann325137d2015-04-13 23:40:55 +02001232 }
1233
Baptiste Assmannf778bb42015-09-09 00:54:38 +02001234 resolution->try -= 1;
1235
Baptiste Assmann6f79aca2016-04-05 21:19:51 +02001236 res_preferred_afinet = resolution->opts->family_prio == AF_INET && resolution->query_type == DNS_RTYPE_A;
1237 res_preferred_afinet6 = resolution->opts->family_prio == AF_INET6 && resolution->query_type == DNS_RTYPE_AAAA;
Baptiste Assmann060e5732016-01-06 02:01:59 +01001238
1239 /* let's change the query type if needed */
1240 if (res_preferred_afinet6) {
1241 /* fallback from AAAA to A */
1242 resolution->query_type = DNS_RTYPE_A;
1243 }
1244 else if (res_preferred_afinet) {
1245 /* fallback from A to AAAA */
1246 resolution->query_type = DNS_RTYPE_AAAA;
1247 }
1248
Baptiste Assmann382824c2016-01-06 01:53:46 +01001249 /* resend the DNS query */
1250 dns_send_query(resolution);
Baptiste Assmann325137d2015-04-13 23:40:55 +02001251
Baptiste Assmann382824c2016-01-06 01:53:46 +01001252 /* check if we have more than one resolution in the list */
1253 if (dns_check_resolution_queue(resolvers) > 1) {
1254 /* move the rsolution to the end of the list */
1255 LIST_DEL(&resolution->list);
1256 LIST_ADDQ(&resolvers->curr_resolution, &resolution->list);
Baptiste Assmann325137d2015-04-13 23:40:55 +02001257 }
1258 }
1259
1260 out:
1261 dns_update_resolvers_timeout(resolvers);
1262 return t;
1263}