]> git.meshlink.io Git - catta/blob - avahi-core/dns.c
add an extra validity check when parsing mDNS queries and records in packets
[catta] / avahi-core / dns.c
1 /* $Id$ */
2
3 /***
4   This file is part of avahi.
5  
6   avahi is free software; you can redistribute it and/or modify it
7   under the terms of the GNU Lesser General Public License as
8   published by the Free Software Foundation; either version 2.1 of the
9   License, or (at your option) any later version.
10  
11   avahi is distributed in the hope that it will be useful, but WITHOUT
12   ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
13   or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General
14   Public License for more details.
15  
16   You should have received a copy of the GNU Lesser General Public
17   License along with avahi; if not, write to the Free Software
18   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
19   USA.
20 ***/
21
22 #ifdef HAVE_CONFIG_H
23 #include <config.h>
24 #endif
25
26 #include <stdlib.h>
27 #include <string.h>
28 #include <stdio.h>
29 #include <assert.h>
30
31 #include <netinet/in.h>
32
33 #include <avahi-common/defs.h>
34 #include <avahi-common/domain.h>
35 #include <avahi-common/malloc.h>
36
37 #include "dns.h"
38 #include "log.h"
39
40 AvahiDnsPacket* avahi_dns_packet_new(unsigned mtu) {
41     AvahiDnsPacket *p;
42     size_t max_size;
43
44     if (mtu <= 0)
45         max_size = AVAHI_DNS_PACKET_SIZE_MAX;
46     else if (mtu >= AVAHI_DNS_PACKET_EXTRA_SIZE)
47         max_size = mtu - AVAHI_DNS_PACKET_EXTRA_SIZE;
48     else
49         max_size = 0;
50
51     if (max_size < AVAHI_DNS_PACKET_HEADER_SIZE)
52         max_size = AVAHI_DNS_PACKET_HEADER_SIZE;
53     
54     if (!(p = avahi_malloc(sizeof(AvahiDnsPacket) + max_size)))
55         return p;
56     
57     p->size = p->rindex = AVAHI_DNS_PACKET_HEADER_SIZE;
58     p->max_size = max_size;
59     p->name_table = NULL;
60     p->data = NULL;
61
62     memset(AVAHI_DNS_PACKET_DATA(p), 0, p->size);
63     return p;
64 }
65
66 AvahiDnsPacket* avahi_dns_packet_new_query(unsigned mtu) {
67     AvahiDnsPacket *p;
68
69     if (!(p = avahi_dns_packet_new(mtu)))
70         return NULL;
71     
72     avahi_dns_packet_set_field(p, AVAHI_DNS_FIELD_FLAGS, AVAHI_DNS_FLAGS(0, 0, 0, 0, 0, 0, 0, 0, 0, 0));
73     return p;
74 }
75
76 AvahiDnsPacket* avahi_dns_packet_new_response(unsigned mtu, int aa) {
77     AvahiDnsPacket *p;
78
79     if (!(p = avahi_dns_packet_new(mtu)))
80         return NULL;
81     
82     avahi_dns_packet_set_field(p, AVAHI_DNS_FIELD_FLAGS, AVAHI_DNS_FLAGS(1, 0, aa, 0, 0, 0, 0, 0, 0, 0));
83     return p;
84 }
85
86 AvahiDnsPacket* avahi_dns_packet_new_reply(AvahiDnsPacket* p, unsigned mtu, int copy_queries, int aa) {
87     AvahiDnsPacket *r;
88     assert(p);
89
90     if (!(r = avahi_dns_packet_new_response(mtu, aa)))
91         return NULL;
92
93     if (copy_queries) {
94         unsigned saved_rindex;
95         uint32_t n;
96
97         saved_rindex = p->rindex;
98         p->rindex = AVAHI_DNS_PACKET_HEADER_SIZE;
99         
100         for (n = avahi_dns_packet_get_field(p, AVAHI_DNS_FIELD_QDCOUNT); n > 0; n--) {
101             AvahiKey *k;
102             int unicast_response;
103
104             if ((k = avahi_dns_packet_consume_key(p, &unicast_response))) {
105                 avahi_dns_packet_append_key(r, k, unicast_response);
106                 avahi_key_unref(k);
107             }
108         }
109
110         p->rindex = saved_rindex;
111
112         avahi_dns_packet_set_field(r, AVAHI_DNS_FIELD_QDCOUNT, avahi_dns_packet_get_field(p, AVAHI_DNS_FIELD_QDCOUNT));
113     }
114
115     avahi_dns_packet_set_field(r, AVAHI_DNS_FIELD_ID, avahi_dns_packet_get_field(p, AVAHI_DNS_FIELD_ID));
116
117     avahi_dns_packet_set_field(r, AVAHI_DNS_FIELD_FLAGS,
118                                (avahi_dns_packet_get_field(r, AVAHI_DNS_FIELD_FLAGS) & ~AVAHI_DNS_FLAG_OPCODE) |
119                                (avahi_dns_packet_get_field(p, AVAHI_DNS_FIELD_FLAGS) & AVAHI_DNS_FLAG_OPCODE));
120
121     return r;
122
123
124
125 void avahi_dns_packet_free(AvahiDnsPacket *p) {
126     assert(p);
127
128     if (p->name_table)
129         avahi_hashmap_free(p->name_table);
130     
131     avahi_free(p);
132 }
133
134 void avahi_dns_packet_set_field(AvahiDnsPacket *p, unsigned idx, uint16_t v) {
135     assert(p);
136     assert(idx < AVAHI_DNS_PACKET_HEADER_SIZE);
137     
138     ((uint16_t*) AVAHI_DNS_PACKET_DATA(p))[idx] = htons(v);
139 }
140
141 uint16_t avahi_dns_packet_get_field(AvahiDnsPacket *p, unsigned idx) {
142     assert(p);
143     assert(idx < AVAHI_DNS_PACKET_HEADER_SIZE);
144
145     return ntohs(((uint16_t*) AVAHI_DNS_PACKET_DATA(p))[idx]);
146 }
147
148 void avahi_dns_packet_inc_field(AvahiDnsPacket *p, unsigned idx) {
149     assert(p);
150     assert(idx < AVAHI_DNS_PACKET_HEADER_SIZE);
151
152     avahi_dns_packet_set_field(p, idx, avahi_dns_packet_get_field(p, idx) + 1);
153 }   
154
155 uint8_t* avahi_dns_packet_append_name(AvahiDnsPacket *p, const char *name) {
156     uint8_t *d, *saved_ptr = NULL;
157     size_t saved_size;
158     
159     assert(p);
160     assert(name);
161
162     saved_size = p->size;
163     saved_ptr = avahi_dns_packet_extend(p, 0);
164     
165     while (*name) {
166         uint8_t* prev;
167         const char *pname;
168         char label[64], *u;
169         
170         /* Check whether we can compress this name. */
171
172         if (p->name_table && (prev = avahi_hashmap_lookup(p->name_table, name))) {
173             unsigned idx;
174             
175             assert(prev >= AVAHI_DNS_PACKET_DATA(p));
176             idx = (unsigned) (prev - AVAHI_DNS_PACKET_DATA(p));
177
178             assert(idx < p->size);
179
180             if (idx < 0x4000) {
181                 uint8_t *t;
182                 if (!(t = (uint8_t*) avahi_dns_packet_extend(p, sizeof(uint16_t))))
183                     return NULL;
184
185                 t[0] = (uint8_t) ((0xC000 | idx) >> 8);
186                 t[1] = (uint8_t) idx;
187                 return saved_ptr;
188             }
189         }
190
191         pname = name;
192         
193         if (!(avahi_unescape_label(&name, label, sizeof(label))))
194             goto fail;
195
196         if (!(d = avahi_dns_packet_append_string(p, label)))
197             goto fail;
198
199         if (!p->name_table)
200             /* This works only for normalized domain names */
201             p->name_table = avahi_hashmap_new(avahi_string_hash, avahi_string_equal, avahi_free, NULL);
202
203         if (!(u = avahi_strdup(pname)))
204             avahi_log_error("avahi_strdup() failed.");
205         else
206             avahi_hashmap_insert(p->name_table, u, d);
207     }
208
209     if (!(d = avahi_dns_packet_extend(p, 1)))
210         goto fail;
211     
212     *d = 0;
213
214     return saved_ptr;
215
216 fail:
217     p->size = saved_size;
218     return NULL;
219 }
220
221 uint8_t* avahi_dns_packet_append_uint16(AvahiDnsPacket *p, uint16_t v) {
222     uint8_t *d;
223     assert(p);
224     
225     if (!(d = avahi_dns_packet_extend(p, sizeof(uint16_t))))
226         return NULL;
227     
228     d[0] = (uint8_t) (v >> 8);
229     d[1] = (uint8_t) v;
230     return d;
231 }
232
233 uint8_t *avahi_dns_packet_append_uint32(AvahiDnsPacket *p, uint32_t v) {
234     uint8_t *d;
235     assert(p);
236
237     if (!(d = avahi_dns_packet_extend(p, sizeof(uint32_t))))
238         return NULL;
239     
240     d[0] = (uint8_t) (v >> 24);
241     d[1] = (uint8_t) (v >> 16);
242     d[2] = (uint8_t) (v >> 8);
243     d[3] = (uint8_t) v;
244
245     return d;
246 }
247
248 uint8_t *avahi_dns_packet_append_bytes(AvahiDnsPacket  *p, const void *b, size_t l) {
249     uint8_t* d;
250
251     assert(p);
252     assert(b);
253     assert(l);
254
255     if (!(d = avahi_dns_packet_extend(p, l)))
256         return NULL;
257
258     memcpy(d, b, l);
259     return d;
260 }
261
262 uint8_t* avahi_dns_packet_append_string(AvahiDnsPacket *p, const char *s) {
263     uint8_t* d;
264     size_t k;
265     
266     assert(p);
267     assert(s);
268
269     if ((k = strlen(s)) >= 255)
270         k = 255;
271     
272     if (!(d = avahi_dns_packet_extend(p, k+1)))
273         return NULL;
274
275     *d = (uint8_t) k;
276     memcpy(d+1, s, k);
277
278     return d;
279 }
280
281 uint8_t *avahi_dns_packet_extend(AvahiDnsPacket *p, size_t l) {
282     uint8_t *d;
283     
284     assert(p);
285
286     if (p->size+l > p->max_size)
287         return NULL;
288     
289     d = AVAHI_DNS_PACKET_DATA(p) + p->size;
290     p->size += l;
291     
292     return d;
293 }
294
295 int avahi_dns_packet_check_valid(AvahiDnsPacket *p) {
296     uint16_t flags;
297     assert(p);
298
299     if (p->size < AVAHI_DNS_PACKET_HEADER_SIZE)
300         return -1;
301
302     flags = avahi_dns_packet_get_field(p, AVAHI_DNS_FIELD_FLAGS);
303     
304     if (flags & AVAHI_DNS_FLAG_OPCODE)
305         return -1;
306
307     return 0;
308 }
309
310 int avahi_dns_packet_check_valid_multicast(AvahiDnsPacket *p) {
311     uint16_t flags;
312     assert(p);
313
314     if (avahi_dns_packet_check_valid(p) < 0)
315         return -1;
316     
317     flags = avahi_dns_packet_get_field(p, AVAHI_DNS_FIELD_FLAGS);
318     
319     if (flags & AVAHI_DNS_FLAG_RCODE)
320         return -1;
321
322     return 0;
323 }
324
325 int avahi_dns_packet_is_query(AvahiDnsPacket *p) {
326     assert(p);
327     
328     return !(avahi_dns_packet_get_field(p, AVAHI_DNS_FIELD_FLAGS) & AVAHI_DNS_FLAG_QR);
329 }
330
331 static int consume_labels(AvahiDnsPacket *p, unsigned idx, char *ret_name, size_t l) {
332     int ret = 0;
333     int compressed = 0;
334     int first_label = 1;
335     assert(p && ret_name && l);
336     
337     for (;;) {
338         uint8_t n;
339
340         if (idx+1 > p->size)
341             return -1;
342
343         n = AVAHI_DNS_PACKET_DATA(p)[idx];
344
345         if (!n) {
346             idx++;
347             if (!compressed)
348                 ret++;
349
350             if (l < 1)
351                 return -1;
352             *ret_name = 0;
353             
354             return ret;
355             
356         } else if (n <= 63) {
357             /* Uncompressed label */
358             idx++;
359             if (!compressed)
360                 ret++;
361         
362             if (idx + n > p->size)
363                 return -1;
364
365             if ((size_t) n + 1 > l)
366                 return -1;
367
368             if (!first_label) {
369                 *(ret_name++) = '.';
370                 l--;
371             } else
372                 first_label = 0;
373
374             if (!(avahi_escape_label((char*) AVAHI_DNS_PACKET_DATA(p) + idx, n, &ret_name, &l)))
375                 return -1;
376
377             idx += n;
378             
379             if (!compressed)
380                 ret += n;
381         } else if ((n & 0xC0) == 0xC0) {
382             /* Compressed label */
383
384             if (idx+2 > p->size)
385                 return -1;
386
387             idx = ((unsigned) (AVAHI_DNS_PACKET_DATA(p)[idx] & ~0xC0)) << 8 | AVAHI_DNS_PACKET_DATA(p)[idx+1];
388
389             if (!compressed)
390                 ret += 2;
391             
392             compressed = 1;
393         } else
394             return -1;
395     }
396 }
397
398 int avahi_dns_packet_consume_name(AvahiDnsPacket *p, char *ret_name, size_t l) {
399     int r;
400     
401     if ((r = consume_labels(p, p->rindex, ret_name, l)) < 0)
402         return -1;
403
404     p->rindex += r;
405     return 0;
406 }
407
408 int avahi_dns_packet_consume_uint16(AvahiDnsPacket *p, uint16_t *ret_v) {
409     uint8_t *d;
410
411     assert(p);
412     assert(ret_v);
413
414     if (p->rindex + sizeof(uint16_t) > p->size)
415         return -1;
416
417     d = (uint8_t*) (AVAHI_DNS_PACKET_DATA(p) + p->rindex);
418     *ret_v = (d[0] << 8) | d[1];
419     p->rindex += sizeof(uint16_t);
420
421     return 0;
422 }
423
424 int avahi_dns_packet_consume_uint32(AvahiDnsPacket *p, uint32_t *ret_v) {
425     uint8_t* d;
426
427     assert(p);
428     assert(ret_v);
429
430     if (p->rindex + sizeof(uint32_t) > p->size)
431         return -1;
432
433     d = (uint8_t*) (AVAHI_DNS_PACKET_DATA(p) + p->rindex);
434     *ret_v = (d[0] << 24) | (d[1] << 16) | (d[2] << 8) | d[3];
435     p->rindex += sizeof(uint32_t);
436     
437     return 0;
438 }
439
440 int avahi_dns_packet_consume_bytes(AvahiDnsPacket *p, void * ret_data, size_t l) {
441     assert(p);
442     assert(ret_data);
443     assert(l > 0);
444     
445     if (p->rindex + l > p->size)
446         return -1;
447
448     memcpy(ret_data, AVAHI_DNS_PACKET_DATA(p) + p->rindex, l);
449     p->rindex += l;
450
451     return 0;
452 }
453
454 int avahi_dns_packet_consume_string(AvahiDnsPacket *p, char *ret_string, size_t l) {
455     size_t k;
456     
457     assert(p);
458     assert(ret_string);
459     assert(l > 0);
460
461     if (p->rindex >= p->size)
462         return -1;
463
464     k = AVAHI_DNS_PACKET_DATA(p)[p->rindex];
465
466     if (p->rindex+1+k > p->size)
467         return -1;
468
469     if (l > k+1)
470         l = k+1;
471
472     memcpy(ret_string, AVAHI_DNS_PACKET_DATA(p)+p->rindex+1, l-1);
473     ret_string[l-1] = 0;
474     
475     p->rindex += 1+k;
476
477     return 0;
478 }
479
480 const void* avahi_dns_packet_get_rptr(AvahiDnsPacket *p) {
481     assert(p);
482     
483     if (p->rindex > p->size)
484         return NULL;
485
486     return AVAHI_DNS_PACKET_DATA(p) + p->rindex;
487 }
488
489 int avahi_dns_packet_skip(AvahiDnsPacket *p, size_t length) {
490     assert(p);
491
492     if (p->rindex + length > p->size)
493         return -1;
494
495     p->rindex += length;
496     return 0;
497 }
498
499 static int parse_rdata(AvahiDnsPacket *p, AvahiRecord *r, uint16_t rdlength) {
500     char buf[AVAHI_DOMAIN_NAME_MAX];
501     const void* start;
502     
503     assert(p);
504     assert(r);
505
506     start = avahi_dns_packet_get_rptr(p);
507  
508     switch (r->key->type) {
509         case AVAHI_DNS_TYPE_PTR:
510         case AVAHI_DNS_TYPE_CNAME:
511         case AVAHI_DNS_TYPE_NS:
512             
513             if (avahi_dns_packet_consume_name(p, buf, sizeof(buf)) < 0)
514                 return -1;
515
516             r->data.ptr.name = avahi_strdup(buf);
517             break;
518
519             
520         case AVAHI_DNS_TYPE_SRV:
521             
522             if (avahi_dns_packet_consume_uint16(p, &r->data.srv.priority) < 0 ||
523                 avahi_dns_packet_consume_uint16(p, &r->data.srv.weight) < 0 ||
524                 avahi_dns_packet_consume_uint16(p, &r->data.srv.port) < 0 ||
525                 avahi_dns_packet_consume_name(p, buf, sizeof(buf)) < 0)
526                 return -1;
527             
528             r->data.srv.name = avahi_strdup(buf);
529             break;
530
531         case AVAHI_DNS_TYPE_HINFO:
532
533             if (avahi_dns_packet_consume_string(p, buf, sizeof(buf)) < 0)
534                 return -1;
535             
536             r->data.hinfo.cpu = avahi_strdup(buf);
537             
538             if (avahi_dns_packet_consume_string(p, buf, sizeof(buf)) < 0)
539                 return -1;
540             
541             r->data.hinfo.os = avahi_strdup(buf);
542             break;
543
544         case AVAHI_DNS_TYPE_TXT:
545
546             if (rdlength > 0) {
547                 if (avahi_string_list_parse(avahi_dns_packet_get_rptr(p), rdlength, &r->data.txt.string_list) < 0)
548                     return -1;
549                 
550                 if (avahi_dns_packet_skip(p, rdlength) < 0)
551                     return -1;
552             } else
553                 r->data.txt.string_list = NULL;
554             
555             break;
556
557         case AVAHI_DNS_TYPE_A:
558
559 /*             avahi_log_debug("A"); */
560
561             if (avahi_dns_packet_consume_bytes(p, &r->data.a.address, sizeof(AvahiIPv4Address)) < 0)
562                 return -1;
563             
564             break;
565
566         case AVAHI_DNS_TYPE_AAAA:
567
568 /*             avahi_log_debug("aaaa"); */
569             
570             if (avahi_dns_packet_consume_bytes(p, &r->data.aaaa.address, sizeof(AvahiIPv6Address)) < 0)
571                 return -1;
572             
573             break;
574             
575         default:
576
577 /*             avahi_log_debug("generic"); */
578             
579             if (rdlength > 0) {
580
581                 r->data.generic.data = avahi_memdup(avahi_dns_packet_get_rptr(p), rdlength);
582                 
583                 if (avahi_dns_packet_skip(p, rdlength) < 0)
584                     return -1;
585             }
586
587             break;
588     }
589
590     /* Check if we read enough data */
591     if ((const uint8_t*) avahi_dns_packet_get_rptr(p) - (const uint8_t*) start != rdlength)
592         return -1;
593     
594     return 0;
595 }
596
597 AvahiRecord* avahi_dns_packet_consume_record(AvahiDnsPacket *p, int *ret_cache_flush) {
598     char name[AVAHI_DOMAIN_NAME_MAX];
599     uint16_t type, class;
600     uint32_t ttl;
601     uint16_t rdlength;
602     AvahiRecord *r = NULL;
603
604     assert(p);
605
606     if (avahi_dns_packet_consume_name(p, name, sizeof(name)) < 0 ||
607         avahi_dns_packet_consume_uint16(p, &type) < 0 ||
608         avahi_dns_packet_consume_uint16(p, &class) < 0 ||
609         avahi_dns_packet_consume_uint32(p, &ttl) < 0 ||
610         avahi_dns_packet_consume_uint16(p, &rdlength) < 0 ||
611         p->rindex + rdlength > p->size)
612         goto fail;
613
614     if (ret_cache_flush)
615         *ret_cache_flush = !!(class & AVAHI_DNS_CACHE_FLUSH);
616     class &= ~AVAHI_DNS_CACHE_FLUSH;
617     
618     if (!(r = avahi_record_new_full(name, class, type, ttl)))
619         goto fail;
620     
621     if (parse_rdata(p, r, rdlength) < 0)
622         goto fail;
623
624     if (!avahi_record_is_valid(r))
625         goto fail;
626     
627     return r;
628
629 fail:
630     if (r)
631         avahi_record_unref(r);
632
633     return NULL;
634 }
635
636 AvahiKey* avahi_dns_packet_consume_key(AvahiDnsPacket *p, int *ret_unicast_response) {
637     char name[256];
638     uint16_t type, class;
639     AvahiKey *k;
640
641     assert(p);
642
643     if (avahi_dns_packet_consume_name(p, name, sizeof(name)) < 0 ||
644         avahi_dns_packet_consume_uint16(p, &type) < 0 ||
645         avahi_dns_packet_consume_uint16(p, &class) < 0)
646         return NULL;
647
648     if (ret_unicast_response)
649         *ret_unicast_response = !!(class & AVAHI_DNS_UNICAST_RESPONSE);
650
651     class &= ~AVAHI_DNS_UNICAST_RESPONSE;
652     
653     if (!(k = avahi_key_new(name, class, type)))
654         return NULL;
655
656     if (!avahi_key_is_valid(k)) {
657         avahi_key_unref(k);
658         return NULL;
659     }
660
661     return k;
662 }
663
664 uint8_t* avahi_dns_packet_append_key(AvahiDnsPacket *p, AvahiKey *k, int unicast_response) {
665     uint8_t *t;
666     size_t size;
667     
668     assert(p);
669     assert(k);
670
671     size = p->size;
672     
673     if (!(t = avahi_dns_packet_append_name(p, k->name)) ||
674         !avahi_dns_packet_append_uint16(p, k->type) ||
675         !avahi_dns_packet_append_uint16(p, k->clazz | (unicast_response ? AVAHI_DNS_UNICAST_RESPONSE : 0))) {
676         p->size = size;
677         return NULL;
678     }
679
680     return t;
681 }
682
683 static int append_rdata(AvahiDnsPacket *p, AvahiRecord *r) {
684     assert(p);
685     assert(r);
686     
687     switch (r->key->type) {
688         
689         case AVAHI_DNS_TYPE_PTR:
690         case AVAHI_DNS_TYPE_CNAME:
691         case AVAHI_DNS_TYPE_NS:
692             
693             if (!(avahi_dns_packet_append_name(p, r->data.ptr.name)))
694                 return -1;
695             
696             break;
697
698         case AVAHI_DNS_TYPE_SRV:
699
700             if (!avahi_dns_packet_append_uint16(p, r->data.srv.priority) ||
701                 !avahi_dns_packet_append_uint16(p, r->data.srv.weight) ||
702                 !avahi_dns_packet_append_uint16(p, r->data.srv.port) ||
703                 !avahi_dns_packet_append_name(p, r->data.srv.name))
704                 return -1;
705
706             break;
707
708         case AVAHI_DNS_TYPE_HINFO:
709             if (!avahi_dns_packet_append_string(p, r->data.hinfo.cpu) ||
710                 !avahi_dns_packet_append_string(p, r->data.hinfo.os))
711                 return -1;
712
713             break;
714
715         case AVAHI_DNS_TYPE_TXT: {
716
717             uint8_t *data;
718             size_t n;
719
720             n = avahi_string_list_serialize(r->data.txt.string_list, NULL, 0);
721
722             if (!(data = avahi_dns_packet_extend(p, n)))
723                 return -1;
724
725             avahi_string_list_serialize(r->data.txt.string_list, data, n);
726             break;
727         }
728
729
730         case AVAHI_DNS_TYPE_A:
731
732             if (!avahi_dns_packet_append_bytes(p, &r->data.a.address, sizeof(r->data.a.address)))
733                 return -1;
734             
735             break;
736
737         case AVAHI_DNS_TYPE_AAAA:
738             
739             if (!avahi_dns_packet_append_bytes(p, &r->data.aaaa.address, sizeof(r->data.aaaa.address)))
740                 return -1;
741             
742             break;
743             
744         default:
745
746             if (r->data.generic.size)
747                 if (avahi_dns_packet_append_bytes(p, r->data.generic.data, r->data.generic.size))
748                     return -1;
749
750             break;
751     }
752
753     return 0;
754 }
755
756
757 uint8_t* avahi_dns_packet_append_record(AvahiDnsPacket *p, AvahiRecord *r, int cache_flush, unsigned max_ttl) {
758     uint8_t *t, *l, *start;
759     size_t size;
760
761     assert(p);
762     assert(r);
763
764     size = p->size;
765
766     if (!(t = avahi_dns_packet_append_name(p, r->key->name)) ||
767         !avahi_dns_packet_append_uint16(p, r->key->type) ||
768         !avahi_dns_packet_append_uint16(p, cache_flush ? (r->key->clazz | AVAHI_DNS_CACHE_FLUSH) : (r->key->clazz &~ AVAHI_DNS_CACHE_FLUSH)) ||
769         !avahi_dns_packet_append_uint32(p, (max_ttl && r->ttl > max_ttl) ? max_ttl : r->ttl) ||
770         !(l = avahi_dns_packet_append_uint16(p, 0)))
771         goto fail;
772
773     start = avahi_dns_packet_extend(p, 0);
774
775     if (append_rdata(p, r) < 0)
776         goto fail;
777     
778     size = avahi_dns_packet_extend(p, 0) - start;
779     assert(size <= 0xFFFF);
780
781 /*     avahi_log_debug("appended %u", size); */
782
783     l[0] = (uint8_t) ((uint16_t) size >> 8);
784     l[1] = (uint8_t) ((uint16_t) size);
785     
786     return t;
787
788
789 fail:
790     p->size = size;
791     return NULL;
792 }
793
794 int avahi_dns_packet_is_empty(AvahiDnsPacket *p) {
795     assert(p);
796
797     return p->size <= AVAHI_DNS_PACKET_HEADER_SIZE;
798 }
799
800 size_t avahi_dns_packet_space(AvahiDnsPacket *p) {
801     assert(p);
802
803     assert(p->size <= p->max_size);
804     
805     return p->max_size - p->size;
806 }
807
808 int avahi_rdata_parse(AvahiRecord *record, const void* rdata, size_t size) {
809     int ret;
810     AvahiDnsPacket p;
811     
812     assert(record);
813     assert(rdata);
814     
815     p.data = (void*) rdata;
816     p.max_size = p.size = size;
817     p.rindex = 0;
818     p.name_table = NULL;
819
820     ret = parse_rdata(&p, record, size);
821
822     assert(!p.name_table);
823     
824     return ret;
825 }
826
827 size_t avahi_rdata_serialize(AvahiRecord *record, void *rdata, size_t max_size) {
828     int ret;
829     AvahiDnsPacket p;
830     
831     assert(record);
832     assert(rdata);
833     assert(max_size > 0);
834
835     p.data = (void*) rdata;
836     p.max_size = max_size;
837     p.size = p.rindex = 0;
838     p.name_table = NULL;
839
840     ret = append_rdata(&p, record);
841
842     if (p.name_table)
843          avahi_hashmap_free(p.name_table);
844
845     if (ret < 0)
846         return (size_t) -1;
847     
848     return p.size;
849 }