1 /*
2 * util/data/msgreply.c - store message and reply data.
3 *
4 * Copyright (c) 2007, NLnet Labs. All rights reserved.
5 *
6 * This software is open source.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 *
12 * Redistributions of source code must retain the above copyright notice,
13 * this list of conditions and the following disclaimer.
14 *
15 * Redistributions in binary form must reproduce the above copyright notice,
16 * this list of conditions and the following disclaimer in the documentation
17 * and/or other materials provided with the distribution.
18 *
19 * Neither the name of the NLNET LABS nor the names of its contributors may
20 * be used to endorse or promote products derived from this software without
21 * specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
24 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
25 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
26 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
27 * HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
28 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
29 * TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
30 * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
31 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
32 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
33 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 */
35
36 /**
37 * \file
38 *
39 * This file contains a data structure to store a message and its reply.
40 */
41
42 #include "config.h"
43 #include "util/data/msgreply.h"
44 #include "util/storage/lookup3.h"
45 #include "util/log.h"
46 #include "util/alloc.h"
47 #include "util/netevent.h"
48 #include "util/net_help.h"
49 #include "util/data/dname.h"
50 #include "util/regional.h"
51 #include "util/data/msgparse.h"
52 #include "util/data/msgencode.h"
53 #include "sldns/sbuffer.h"
54 #include "sldns/wire2str.h"
55 #include "util/module.h"
56 #include "util/fptr_wlist.h"
57
58 /** MAX TTL default for messages and rrsets */
59 time_t MAX_TTL = 3600 * 24 * 10; /* ten days */
60 /** MIN TTL default for messages and rrsets */
61 time_t MIN_TTL = 0;
62 /** MAX Negative TTL, for SOA records in authority section */
63 time_t MAX_NEG_TTL = 3600; /* one hour */
64 /** If we serve expired entries and prefetch them */
65 int SERVE_EXPIRED = 0;
66 /** Time to serve records after expiration */
67 time_t SERVE_EXPIRED_TTL = 0;
68 /** TTL to use for expired records */
69 time_t SERVE_EXPIRED_REPLY_TTL = 30;
70 /** If we serve the original TTL or decrementing TTLs */
71 int SERVE_ORIGINAL_TTL = 0;
72
73 /** allocate qinfo, return 0 on error */
74 static int
parse_create_qinfo(sldns_buffer * pkt,struct msg_parse * msg,struct query_info * qinf,struct regional * region)75 parse_create_qinfo(sldns_buffer* pkt, struct msg_parse* msg,
76 struct query_info* qinf, struct regional* region)
77 {
78 if(msg->qname) {
79 if(region)
80 qinf->qname = (uint8_t*)regional_alloc(region,
81 msg->qname_len);
82 else qinf->qname = (uint8_t*)malloc(msg->qname_len);
83 if(!qinf->qname) return 0;
84 dname_pkt_copy(pkt, qinf->qname, msg->qname);
85 } else qinf->qname = 0;
86 qinf->qname_len = msg->qname_len;
87 qinf->qtype = msg->qtype;
88 qinf->qclass = msg->qclass;
89 qinf->local_alias = NULL;
90 return 1;
91 }
92
93 /** constructor for replyinfo */
94 struct reply_info*
construct_reply_info_base(struct regional * region,uint16_t flags,size_t qd,time_t ttl,time_t prettl,time_t expttl,size_t an,size_t ns,size_t ar,size_t total,enum sec_status sec)95 construct_reply_info_base(struct regional* region, uint16_t flags, size_t qd,
96 time_t ttl, time_t prettl, time_t expttl, size_t an, size_t ns,
97 size_t ar, size_t total, enum sec_status sec)
98 {
99 struct reply_info* rep;
100 /* rrset_count-1 because the first ref is part of the struct. */
101 size_t s = sizeof(struct reply_info) - sizeof(struct rrset_ref) +
102 sizeof(struct ub_packed_rrset_key*) * total;
103 if(total >= RR_COUNT_MAX) return NULL; /* sanity check on numRRS*/
104 if(region)
105 rep = (struct reply_info*)regional_alloc(region, s);
106 else rep = (struct reply_info*)malloc(s +
107 sizeof(struct rrset_ref) * (total));
108 if(!rep)
109 return NULL;
110 rep->flags = flags;
111 rep->qdcount = qd;
112 rep->ttl = ttl;
113 rep->prefetch_ttl = prettl;
114 rep->serve_expired_ttl = expttl;
115 rep->an_numrrsets = an;
116 rep->ns_numrrsets = ns;
117 rep->ar_numrrsets = ar;
118 rep->rrset_count = total;
119 rep->security = sec;
120 rep->authoritative = 0;
121 /* array starts after the refs */
122 if(region)
123 rep->rrsets = (struct ub_packed_rrset_key**)&(rep->ref[0]);
124 else rep->rrsets = (struct ub_packed_rrset_key**)&(rep->ref[total]);
125 /* zero the arrays to assist cleanup in case of malloc failure */
126 memset( rep->rrsets, 0, sizeof(struct ub_packed_rrset_key*) * total);
127 if(!region)
128 memset( &rep->ref[0], 0, sizeof(struct rrset_ref) * total);
129 return rep;
130 }
131
132 /** allocate replyinfo, return 0 on error */
133 static int
parse_create_repinfo(struct msg_parse * msg,struct reply_info ** rep,struct regional * region)134 parse_create_repinfo(struct msg_parse* msg, struct reply_info** rep,
135 struct regional* region)
136 {
137 *rep = construct_reply_info_base(region, msg->flags, msg->qdcount, 0,
138 0, 0, msg->an_rrsets, msg->ns_rrsets, msg->ar_rrsets,
139 msg->rrset_count, sec_status_unchecked);
140 if(!*rep)
141 return 0;
142 return 1;
143 }
144
145 int
reply_info_alloc_rrset_keys(struct reply_info * rep,struct alloc_cache * alloc,struct regional * region)146 reply_info_alloc_rrset_keys(struct reply_info* rep, struct alloc_cache* alloc,
147 struct regional* region)
148 {
149 size_t i;
150 for(i=0; i<rep->rrset_count; i++) {
151 if(region) {
152 rep->rrsets[i] = (struct ub_packed_rrset_key*)
153 regional_alloc(region,
154 sizeof(struct ub_packed_rrset_key));
155 if(rep->rrsets[i]) {
156 memset(rep->rrsets[i], 0,
157 sizeof(struct ub_packed_rrset_key));
158 rep->rrsets[i]->entry.key = rep->rrsets[i];
159 }
160 }
161 else rep->rrsets[i] = alloc_special_obtain(alloc);
162 if(!rep->rrsets[i])
163 return 0;
164 rep->rrsets[i]->entry.data = NULL;
165 }
166 return 1;
167 }
168
169 /** find the minimumttl in the rdata of SOA record */
170 static time_t
soa_find_minttl(struct rr_parse * rr)171 soa_find_minttl(struct rr_parse* rr)
172 {
173 uint16_t rlen = sldns_read_uint16(rr->ttl_data+4);
174 if(rlen < 20)
175 return 0; /* rdata too small for SOA (dname, dname, 5*32bit) */
176 /* minimum TTL is the last 32bit value in the rdata of the record */
177 /* at position ttl_data + 4(ttl) + 2(rdatalen) + rdatalen - 4(timeval)*/
178 return (time_t)sldns_read_uint32(rr->ttl_data+6+rlen-4);
179 }
180
181 /** do the rdata copy */
182 static int
rdata_copy(sldns_buffer * pkt,struct packed_rrset_data * data,uint8_t * to,struct rr_parse * rr,time_t * rr_ttl,uint16_t type,sldns_pkt_section section)183 rdata_copy(sldns_buffer* pkt, struct packed_rrset_data* data, uint8_t* to,
184 struct rr_parse* rr, time_t* rr_ttl, uint16_t type,
185 sldns_pkt_section section)
186 {
187 uint16_t pkt_len;
188 const sldns_rr_descriptor* desc;
189
190 *rr_ttl = sldns_read_uint32(rr->ttl_data);
191 /* RFC 2181 Section 8. if msb of ttl is set treat as if zero. */
192 if(*rr_ttl & 0x80000000U)
193 *rr_ttl = 0;
194 if(type == LDNS_RR_TYPE_SOA && section == LDNS_SECTION_AUTHORITY) {
195 /* negative response. see if TTL of SOA record larger than the
196 * minimum-ttl in the rdata of the SOA record */
197 if(*rr_ttl > soa_find_minttl(rr))
198 *rr_ttl = soa_find_minttl(rr);
199 if(*rr_ttl > MAX_NEG_TTL)
200 *rr_ttl = MAX_NEG_TTL;
201 }
202 if(!SERVE_ORIGINAL_TTL && (*rr_ttl < MIN_TTL))
203 *rr_ttl = MIN_TTL;
204 if(!SERVE_ORIGINAL_TTL && (*rr_ttl > MAX_TTL))
205 *rr_ttl = MAX_TTL;
206 if(*rr_ttl < data->ttl)
207 data->ttl = *rr_ttl;
208
209 if(rr->outside_packet) {
210 /* uncompressed already, only needs copy */
211 memmove(to, rr->ttl_data+sizeof(uint32_t), rr->size);
212 return 1;
213 }
214
215 sldns_buffer_set_position(pkt, (size_t)
216 (rr->ttl_data - sldns_buffer_begin(pkt) + sizeof(uint32_t)));
217 /* insert decompressed size into rdata len stored in memory */
218 /* -2 because rdatalen bytes are not included. */
219 pkt_len = htons(rr->size - 2);
220 memmove(to, &pkt_len, sizeof(uint16_t));
221 to += 2;
222 /* read packet rdata len */
223 pkt_len = sldns_buffer_read_u16(pkt);
224 if(sldns_buffer_remaining(pkt) < pkt_len)
225 return 0;
226 desc = sldns_rr_descript(type);
227 if(pkt_len > 0 && desc && desc->_dname_count > 0) {
228 int count = (int)desc->_dname_count;
229 int rdf = 0;
230 size_t len;
231 size_t oldpos;
232 /* decompress dnames. */
233 while(pkt_len > 0 && count) {
234 switch(desc->_wireformat[rdf]) {
235 case LDNS_RDF_TYPE_DNAME:
236 oldpos = sldns_buffer_position(pkt);
237 dname_pkt_copy(pkt, to,
238 sldns_buffer_current(pkt));
239 to += pkt_dname_len(pkt);
240 pkt_len -= sldns_buffer_position(pkt)-oldpos;
241 count--;
242 len = 0;
243 break;
244 case LDNS_RDF_TYPE_STR:
245 len = sldns_buffer_current(pkt)[0] + 1;
246 break;
247 default:
248 len = get_rdf_size(desc->_wireformat[rdf]);
249 break;
250 }
251 if(len) {
252 log_assert(len <= pkt_len);
253 memmove(to, sldns_buffer_current(pkt), len);
254 to += len;
255 sldns_buffer_skip(pkt, (ssize_t)len);
256 pkt_len -= len;
257 }
258 rdf++;
259 }
260 }
261 /* copy remaining rdata */
262 if(pkt_len > 0)
263 memmove(to, sldns_buffer_current(pkt), pkt_len);
264
265 return 1;
266 }
267
268 /** copy over the data into packed rrset */
269 static int
parse_rr_copy(sldns_buffer * pkt,struct rrset_parse * pset,struct packed_rrset_data * data)270 parse_rr_copy(sldns_buffer* pkt, struct rrset_parse* pset,
271 struct packed_rrset_data* data)
272 {
273 size_t i;
274 struct rr_parse* rr = pset->rr_first;
275 uint8_t* nextrdata;
276 size_t total = pset->rr_count + pset->rrsig_count;
277 data->ttl = MAX_TTL;
278 data->count = pset->rr_count;
279 data->rrsig_count = pset->rrsig_count;
280 data->trust = rrset_trust_none;
281 data->security = sec_status_unchecked;
282 /* layout: struct - rr_len - rr_data - rr_ttl - rdata - rrsig */
283 data->rr_len = (size_t*)((uint8_t*)data +
284 sizeof(struct packed_rrset_data));
285 data->rr_data = (uint8_t**)&(data->rr_len[total]);
286 data->rr_ttl = (time_t*)&(data->rr_data[total]);
287 nextrdata = (uint8_t*)&(data->rr_ttl[total]);
288 for(i=0; i<data->count; i++) {
289 data->rr_len[i] = rr->size;
290 data->rr_data[i] = nextrdata;
291 nextrdata += rr->size;
292 if(!rdata_copy(pkt, data, data->rr_data[i], rr,
293 &data->rr_ttl[i], pset->type, pset->section))
294 return 0;
295 rr = rr->next;
296 }
297 /* if rrsig, its rdata is at nextrdata */
298 rr = pset->rrsig_first;
299 for(i=data->count; i<total; i++) {
300 data->rr_len[i] = rr->size;
301 data->rr_data[i] = nextrdata;
302 nextrdata += rr->size;
303 if(!rdata_copy(pkt, data, data->rr_data[i], rr,
304 &data->rr_ttl[i], LDNS_RR_TYPE_RRSIG, pset->section))
305 return 0;
306 rr = rr->next;
307 }
308 return 1;
309 }
310
311 /** create rrset return 0 on failure */
312 static int
parse_create_rrset(sldns_buffer * pkt,struct rrset_parse * pset,struct packed_rrset_data ** data,struct regional * region)313 parse_create_rrset(sldns_buffer* pkt, struct rrset_parse* pset,
314 struct packed_rrset_data** data, struct regional* region)
315 {
316 /* allocate */
317 size_t s;
318 if(pset->rr_count > RR_COUNT_MAX || pset->rrsig_count > RR_COUNT_MAX ||
319 pset->size > RR_COUNT_MAX)
320 return 0; /* protect against integer overflow */
321 s = sizeof(struct packed_rrset_data) +
322 (pset->rr_count + pset->rrsig_count) *
323 (sizeof(size_t)+sizeof(uint8_t*)+sizeof(time_t)) +
324 pset->size;
325 if(region)
326 *data = regional_alloc_zero(region, s);
327 else *data = calloc(1, s);
328 if(!*data)
329 return 0;
330 /* copy & decompress */
331 if(!parse_rr_copy(pkt, pset, *data)) {
332 if(!region) free(*data);
333 return 0;
334 }
335 return 1;
336 }
337
338 /** get trust value for rrset */
339 static enum rrset_trust
get_rrset_trust(struct msg_parse * msg,struct rrset_parse * rrset)340 get_rrset_trust(struct msg_parse* msg, struct rrset_parse* rrset)
341 {
342 uint16_t AA = msg->flags & BIT_AA;
343 if(rrset->section == LDNS_SECTION_ANSWER) {
344 if(AA) {
345 /* RFC2181 says remainder of CNAME chain is nonauth*/
346 if(msg->rrset_first &&
347 msg->rrset_first->section==LDNS_SECTION_ANSWER
348 && msg->rrset_first->type==LDNS_RR_TYPE_CNAME){
349 if(rrset == msg->rrset_first)
350 return rrset_trust_ans_AA;
351 else return rrset_trust_ans_noAA;
352 }
353 if(msg->rrset_first &&
354 msg->rrset_first->section==LDNS_SECTION_ANSWER
355 && msg->rrset_first->type==LDNS_RR_TYPE_DNAME){
356 if(rrset == msg->rrset_first ||
357 rrset == msg->rrset_first->rrset_all_next)
358 return rrset_trust_ans_AA;
359 else return rrset_trust_ans_noAA;
360 }
361 return rrset_trust_ans_AA;
362 }
363 else return rrset_trust_ans_noAA;
364 } else if(rrset->section == LDNS_SECTION_AUTHORITY) {
365 if(AA) return rrset_trust_auth_AA;
366 else return rrset_trust_auth_noAA;
367 } else {
368 /* addit section */
369 if(AA) return rrset_trust_add_AA;
370 else return rrset_trust_add_noAA;
371 }
372 /* NOTREACHED */
373 return rrset_trust_none;
374 }
375
376 int
parse_copy_decompress_rrset(sldns_buffer * pkt,struct msg_parse * msg,struct rrset_parse * pset,struct regional * region,struct ub_packed_rrset_key * pk)377 parse_copy_decompress_rrset(sldns_buffer* pkt, struct msg_parse* msg,
378 struct rrset_parse *pset, struct regional* region,
379 struct ub_packed_rrset_key* pk)
380 {
381 struct packed_rrset_data* data;
382 pk->rk.flags = pset->flags;
383 pk->rk.dname_len = pset->dname_len;
384 if(region)
385 pk->rk.dname = (uint8_t*)regional_alloc(
386 region, pset->dname_len);
387 else pk->rk.dname =
388 (uint8_t*)malloc(pset->dname_len);
389 if(!pk->rk.dname)
390 return 0;
391 /** copy & decompress dname */
392 dname_pkt_copy(pkt, pk->rk.dname, pset->dname);
393 /** copy over type and class */
394 pk->rk.type = htons(pset->type);
395 pk->rk.rrset_class = pset->rrset_class;
396 /** read data part. */
397 if(!parse_create_rrset(pkt, pset, &data, region))
398 return 0;
399 pk->entry.data = (void*)data;
400 pk->entry.key = (void*)pk;
401 pk->entry.hash = pset->hash;
402 data->trust = get_rrset_trust(msg, pset);
403 return 1;
404 }
405
406 /**
407 * Copy and decompress rrs
408 * @param pkt: the packet for compression pointer resolution.
409 * @param msg: the parsed message
410 * @param rep: reply info to put rrs into.
411 * @param region: if not NULL, used for allocation.
412 * @return 0 on failure.
413 */
414 static int
parse_copy_decompress(sldns_buffer * pkt,struct msg_parse * msg,struct reply_info * rep,struct regional * region)415 parse_copy_decompress(sldns_buffer* pkt, struct msg_parse* msg,
416 struct reply_info* rep, struct regional* region)
417 {
418 size_t i;
419 struct rrset_parse *pset = msg->rrset_first;
420 struct packed_rrset_data* data;
421 log_assert(rep);
422 rep->ttl = MAX_TTL;
423 rep->security = sec_status_unchecked;
424 if(rep->rrset_count == 0)
425 rep->ttl = NORR_TTL;
426
427 for(i=0; i<rep->rrset_count; i++) {
428 if(!parse_copy_decompress_rrset(pkt, msg, pset, region,
429 rep->rrsets[i]))
430 return 0;
431 data = (struct packed_rrset_data*)rep->rrsets[i]->entry.data;
432 if(data->ttl < rep->ttl)
433 rep->ttl = data->ttl;
434
435 pset = pset->rrset_all_next;
436 }
437 rep->prefetch_ttl = PREFETCH_TTL_CALC(rep->ttl);
438 rep->serve_expired_ttl = rep->ttl + SERVE_EXPIRED_TTL;
439 return 1;
440 }
441
442 int
parse_create_msg(sldns_buffer * pkt,struct msg_parse * msg,struct alloc_cache * alloc,struct query_info * qinf,struct reply_info ** rep,struct regional * region)443 parse_create_msg(sldns_buffer* pkt, struct msg_parse* msg,
444 struct alloc_cache* alloc, struct query_info* qinf,
445 struct reply_info** rep, struct regional* region)
446 {
447 log_assert(pkt && msg);
448 if(!parse_create_qinfo(pkt, msg, qinf, region))
449 return 0;
450 if(!parse_create_repinfo(msg, rep, region))
451 return 0;
452 if(!reply_info_alloc_rrset_keys(*rep, alloc, region)) {
453 if(!region) reply_info_parsedelete(*rep, alloc);
454 return 0;
455 }
456 if(!parse_copy_decompress(pkt, msg, *rep, region)) {
457 if(!region) reply_info_parsedelete(*rep, alloc);
458 return 0;
459 }
460 return 1;
461 }
462
reply_info_parse(sldns_buffer * pkt,struct alloc_cache * alloc,struct query_info * qinf,struct reply_info ** rep,struct regional * region,struct edns_data * edns)463 int reply_info_parse(sldns_buffer* pkt, struct alloc_cache* alloc,
464 struct query_info* qinf, struct reply_info** rep,
465 struct regional* region, struct edns_data* edns)
466 {
467 /* use scratch pad region-allocator during parsing. */
468 struct msg_parse* msg;
469 int ret;
470
471 qinf->qname = NULL;
472 qinf->local_alias = NULL;
473 *rep = NULL;
474 if(!(msg = regional_alloc(region, sizeof(*msg)))) {
475 return LDNS_RCODE_SERVFAIL;
476 }
477 memset(msg, 0, sizeof(*msg));
478
479 sldns_buffer_set_position(pkt, 0);
480 if((ret = parse_packet(pkt, msg, region)) != 0) {
481 return ret;
482 }
483 if((ret = parse_extract_edns(msg, edns, region)) != 0)
484 return ret;
485
486 /* parse OK, allocate return structures */
487 /* this also performs dname decompression */
488 if(!parse_create_msg(pkt, msg, alloc, qinf, rep, NULL)) {
489 query_info_clear(qinf);
490 reply_info_parsedelete(*rep, alloc);
491 *rep = NULL;
492 return LDNS_RCODE_SERVFAIL;
493 }
494 return 0;
495 }
496
497 /** helper compare function to sort in lock order */
498 static int
reply_info_sortref_cmp(const void * a,const void * b)499 reply_info_sortref_cmp(const void* a, const void* b)
500 {
501 struct rrset_ref* x = (struct rrset_ref*)a;
502 struct rrset_ref* y = (struct rrset_ref*)b;
503 if(x->key < y->key) return -1;
504 if(x->key > y->key) return 1;
505 return 0;
506 }
507
508 void
reply_info_sortref(struct reply_info * rep)509 reply_info_sortref(struct reply_info* rep)
510 {
511 qsort(&rep->ref[0], rep->rrset_count, sizeof(struct rrset_ref),
512 reply_info_sortref_cmp);
513 }
514
515 void
reply_info_set_ttls(struct reply_info * rep,time_t timenow)516 reply_info_set_ttls(struct reply_info* rep, time_t timenow)
517 {
518 size_t i, j;
519 rep->ttl += timenow;
520 rep->prefetch_ttl += timenow;
521 rep->serve_expired_ttl += timenow;
522 for(i=0; i<rep->rrset_count; i++) {
523 struct packed_rrset_data* data = (struct packed_rrset_data*)
524 rep->ref[i].key->entry.data;
525 if(i>0 && rep->ref[i].key == rep->ref[i-1].key)
526 continue;
527 data->ttl += timenow;
528 for(j=0; j<data->count + data->rrsig_count; j++) {
529 data->rr_ttl[j] += timenow;
530 }
531 data->ttl_add = timenow;
532 }
533 }
534
535 void
reply_info_parsedelete(struct reply_info * rep,struct alloc_cache * alloc)536 reply_info_parsedelete(struct reply_info* rep, struct alloc_cache* alloc)
537 {
538 size_t i;
539 if(!rep)
540 return;
541 /* no need to lock, since not shared in hashtables. */
542 for(i=0; i<rep->rrset_count; i++) {
543 ub_packed_rrset_parsedelete(rep->rrsets[i], alloc);
544 }
545 free(rep);
546 }
547
548 int
query_info_parse(struct query_info * m,sldns_buffer * query)549 query_info_parse(struct query_info* m, sldns_buffer* query)
550 {
551 uint8_t* q = sldns_buffer_begin(query);
552 /* minimum size: header + \0 + qtype + qclass */
553 if(sldns_buffer_limit(query) < LDNS_HEADER_SIZE + 5)
554 return 0;
555 if((LDNS_OPCODE_WIRE(q) != LDNS_PACKET_QUERY && LDNS_OPCODE_WIRE(q) !=
556 LDNS_PACKET_NOTIFY) || LDNS_QDCOUNT(q) != 1 ||
557 sldns_buffer_position(query) != 0)
558 return 0;
559 sldns_buffer_skip(query, LDNS_HEADER_SIZE);
560 m->qname = sldns_buffer_current(query);
561 if((m->qname_len = query_dname_len(query)) == 0)
562 return 0; /* parse error */
563 if(sldns_buffer_remaining(query) < 4)
564 return 0; /* need qtype, qclass */
565 m->qtype = sldns_buffer_read_u16(query);
566 m->qclass = sldns_buffer_read_u16(query);
567 m->local_alias = NULL;
568 return 1;
569 }
570
571 /** tiny subroutine for msgreply_compare */
572 #define COMPARE_IT(x, y) \
573 if( (x) < (y) ) return -1; \
574 else if( (x) > (y) ) return +1; \
575 log_assert( (x) == (y) );
576
577 int
query_info_compare(void * m1,void * m2)578 query_info_compare(void* m1, void* m2)
579 {
580 struct query_info* msg1 = (struct query_info*)m1;
581 struct query_info* msg2 = (struct query_info*)m2;
582 int mc;
583 /* from most different to least different for speed */
584 COMPARE_IT(msg1->qtype, msg2->qtype);
585 if((mc = query_dname_compare(msg1->qname, msg2->qname)) != 0)
586 return mc;
587 log_assert(msg1->qname_len == msg2->qname_len);
588 COMPARE_IT(msg1->qclass, msg2->qclass);
589 return 0;
590 #undef COMPARE_IT
591 }
592
593 void
query_info_clear(struct query_info * m)594 query_info_clear(struct query_info* m)
595 {
596 free(m->qname);
597 m->qname = NULL;
598 }
599
600 size_t
msgreply_sizefunc(void * k,void * d)601 msgreply_sizefunc(void* k, void* d)
602 {
603 struct msgreply_entry* q = (struct msgreply_entry*)k;
604 struct reply_info* r = (struct reply_info*)d;
605 size_t s = sizeof(struct msgreply_entry) + sizeof(struct reply_info)
606 + q->key.qname_len + lock_get_mem(&q->entry.lock)
607 - sizeof(struct rrset_ref);
608 s += r->rrset_count * sizeof(struct rrset_ref);
609 s += r->rrset_count * sizeof(struct ub_packed_rrset_key*);
610 return s;
611 }
612
613 void
query_entry_delete(void * k,void * ATTR_UNUSED (arg))614 query_entry_delete(void *k, void* ATTR_UNUSED(arg))
615 {
616 struct msgreply_entry* q = (struct msgreply_entry*)k;
617 lock_rw_destroy(&q->entry.lock);
618 query_info_clear(&q->key);
619 free(q);
620 }
621
622 void
reply_info_delete(void * d,void * ATTR_UNUSED (arg))623 reply_info_delete(void* d, void* ATTR_UNUSED(arg))
624 {
625 struct reply_info* r = (struct reply_info*)d;
626 free(r);
627 }
628
629 hashvalue_type
query_info_hash(struct query_info * q,uint16_t flags)630 query_info_hash(struct query_info *q, uint16_t flags)
631 {
632 hashvalue_type h = 0xab;
633 h = hashlittle(&q->qtype, sizeof(q->qtype), h);
634 if(q->qtype == LDNS_RR_TYPE_AAAA && (flags&BIT_CD))
635 h++;
636 h = hashlittle(&q->qclass, sizeof(q->qclass), h);
637 h = dname_query_hash(q->qname, h);
638 return h;
639 }
640
641 struct msgreply_entry*
query_info_entrysetup(struct query_info * q,struct reply_info * r,hashvalue_type h)642 query_info_entrysetup(struct query_info* q, struct reply_info* r,
643 hashvalue_type h)
644 {
645 struct msgreply_entry* e = (struct msgreply_entry*)malloc(
646 sizeof(struct msgreply_entry));
647 if(!e) return NULL;
648 memcpy(&e->key, q, sizeof(*q));
649 e->entry.hash = h;
650 e->entry.key = e;
651 e->entry.data = r;
652 lock_rw_init(&e->entry.lock);
653 lock_protect(&e->entry.lock, &e->key.qname, sizeof(e->key.qname));
654 lock_protect(&e->entry.lock, &e->key.qname_len, sizeof(e->key.qname_len));
655 lock_protect(&e->entry.lock, &e->key.qtype, sizeof(e->key.qtype));
656 lock_protect(&e->entry.lock, &e->key.qclass, sizeof(e->key.qclass));
657 lock_protect(&e->entry.lock, &e->key.local_alias, sizeof(e->key.local_alias));
658 lock_protect(&e->entry.lock, &e->entry.hash, sizeof(e->entry.hash));
659 lock_protect(&e->entry.lock, &e->entry.key, sizeof(e->entry.key));
660 lock_protect(&e->entry.lock, &e->entry.data, sizeof(e->entry.data));
661 lock_protect(&e->entry.lock, e->key.qname, e->key.qname_len);
662 q->qname = NULL;
663 return e;
664 }
665
666 /** copy rrsets from replyinfo to dest replyinfo */
667 static int
repinfo_copy_rrsets(struct reply_info * dest,struct reply_info * from,struct regional * region)668 repinfo_copy_rrsets(struct reply_info* dest, struct reply_info* from,
669 struct regional* region)
670 {
671 size_t i, s;
672 struct packed_rrset_data* fd, *dd;
673 struct ub_packed_rrset_key* fk, *dk;
674 for(i=0; i<dest->rrset_count; i++) {
675 fk = from->rrsets[i];
676 dk = dest->rrsets[i];
677 fd = (struct packed_rrset_data*)fk->entry.data;
678 dk->entry.hash = fk->entry.hash;
679 dk->rk = fk->rk;
680 if(region) {
681 dk->id = fk->id;
682 dk->rk.dname = (uint8_t*)regional_alloc_init(region,
683 fk->rk.dname, fk->rk.dname_len);
684 } else
685 dk->rk.dname = (uint8_t*)memdup(fk->rk.dname,
686 fk->rk.dname_len);
687 if(!dk->rk.dname)
688 return 0;
689 s = packed_rrset_sizeof(fd);
690 if(region)
691 dd = (struct packed_rrset_data*)regional_alloc_init(
692 region, fd, s);
693 else dd = (struct packed_rrset_data*)memdup(fd, s);
694 if(!dd)
695 return 0;
696 packed_rrset_ptr_fixup(dd);
697 dk->entry.data = (void*)dd;
698 }
699 return 1;
700 }
701
702 struct reply_info*
reply_info_copy(struct reply_info * rep,struct alloc_cache * alloc,struct regional * region)703 reply_info_copy(struct reply_info* rep, struct alloc_cache* alloc,
704 struct regional* region)
705 {
706 struct reply_info* cp;
707 cp = construct_reply_info_base(region, rep->flags, rep->qdcount,
708 rep->ttl, rep->prefetch_ttl, rep->serve_expired_ttl,
709 rep->an_numrrsets, rep->ns_numrrsets, rep->ar_numrrsets,
710 rep->rrset_count, rep->security);
711 if(!cp)
712 return NULL;
713 /* allocate ub_key structures special or not */
714 if(!reply_info_alloc_rrset_keys(cp, alloc, region)) {
715 if(!region)
716 reply_info_parsedelete(cp, alloc);
717 return NULL;
718 }
719 if(!repinfo_copy_rrsets(cp, rep, region)) {
720 if(!region)
721 reply_info_parsedelete(cp, alloc);
722 return NULL;
723 }
724 return cp;
725 }
726
727 uint8_t*
reply_find_final_cname_target(struct query_info * qinfo,struct reply_info * rep)728 reply_find_final_cname_target(struct query_info* qinfo, struct reply_info* rep)
729 {
730 uint8_t* sname = qinfo->qname;
731 size_t snamelen = qinfo->qname_len;
732 size_t i;
733 for(i=0; i<rep->an_numrrsets; i++) {
734 struct ub_packed_rrset_key* s = rep->rrsets[i];
735 /* follow CNAME chain (if any) */
736 if(ntohs(s->rk.type) == LDNS_RR_TYPE_CNAME &&
737 ntohs(s->rk.rrset_class) == qinfo->qclass &&
738 snamelen == s->rk.dname_len &&
739 query_dname_compare(sname, s->rk.dname) == 0) {
740 get_cname_target(s, &sname, &snamelen);
741 }
742 }
743 if(sname != qinfo->qname)
744 return sname;
745 return NULL;
746 }
747
748 struct ub_packed_rrset_key*
reply_find_answer_rrset(struct query_info * qinfo,struct reply_info * rep)749 reply_find_answer_rrset(struct query_info* qinfo, struct reply_info* rep)
750 {
751 uint8_t* sname = qinfo->qname;
752 size_t snamelen = qinfo->qname_len;
753 size_t i;
754 for(i=0; i<rep->an_numrrsets; i++) {
755 struct ub_packed_rrset_key* s = rep->rrsets[i];
756 /* first match type, for query of qtype cname */
757 if(ntohs(s->rk.type) == qinfo->qtype &&
758 ntohs(s->rk.rrset_class) == qinfo->qclass &&
759 snamelen == s->rk.dname_len &&
760 query_dname_compare(sname, s->rk.dname) == 0) {
761 return s;
762 }
763 /* follow CNAME chain (if any) */
764 if(ntohs(s->rk.type) == LDNS_RR_TYPE_CNAME &&
765 ntohs(s->rk.rrset_class) == qinfo->qclass &&
766 snamelen == s->rk.dname_len &&
767 query_dname_compare(sname, s->rk.dname) == 0) {
768 get_cname_target(s, &sname, &snamelen);
769 }
770 }
771 return NULL;
772 }
773
reply_find_rrset_section_an(struct reply_info * rep,uint8_t * name,size_t namelen,uint16_t type,uint16_t dclass)774 struct ub_packed_rrset_key* reply_find_rrset_section_an(struct reply_info* rep,
775 uint8_t* name, size_t namelen, uint16_t type, uint16_t dclass)
776 {
777 size_t i;
778 for(i=0; i<rep->an_numrrsets; i++) {
779 struct ub_packed_rrset_key* s = rep->rrsets[i];
780 if(ntohs(s->rk.type) == type &&
781 ntohs(s->rk.rrset_class) == dclass &&
782 namelen == s->rk.dname_len &&
783 query_dname_compare(name, s->rk.dname) == 0) {
784 return s;
785 }
786 }
787 return NULL;
788 }
789
reply_find_rrset_section_ns(struct reply_info * rep,uint8_t * name,size_t namelen,uint16_t type,uint16_t dclass)790 struct ub_packed_rrset_key* reply_find_rrset_section_ns(struct reply_info* rep,
791 uint8_t* name, size_t namelen, uint16_t type, uint16_t dclass)
792 {
793 size_t i;
794 for(i=rep->an_numrrsets; i<rep->an_numrrsets+rep->ns_numrrsets; i++) {
795 struct ub_packed_rrset_key* s = rep->rrsets[i];
796 if(ntohs(s->rk.type) == type &&
797 ntohs(s->rk.rrset_class) == dclass &&
798 namelen == s->rk.dname_len &&
799 query_dname_compare(name, s->rk.dname) == 0) {
800 return s;
801 }
802 }
803 return NULL;
804 }
805
reply_find_rrset(struct reply_info * rep,uint8_t * name,size_t namelen,uint16_t type,uint16_t dclass)806 struct ub_packed_rrset_key* reply_find_rrset(struct reply_info* rep,
807 uint8_t* name, size_t namelen, uint16_t type, uint16_t dclass)
808 {
809 size_t i;
810 for(i=0; i<rep->rrset_count; i++) {
811 struct ub_packed_rrset_key* s = rep->rrsets[i];
812 if(ntohs(s->rk.type) == type &&
813 ntohs(s->rk.rrset_class) == dclass &&
814 namelen == s->rk.dname_len &&
815 query_dname_compare(name, s->rk.dname) == 0) {
816 return s;
817 }
818 }
819 return NULL;
820 }
821
822 void
log_dns_msg(const char * str,struct query_info * qinfo,struct reply_info * rep)823 log_dns_msg(const char* str, struct query_info* qinfo, struct reply_info* rep)
824 {
825 /* not particularly fast but flexible, make wireformat and print */
826 sldns_buffer* buf = sldns_buffer_new(65535);
827 struct regional* region = regional_create();
828 if(!reply_info_encode(qinfo, rep, 0, rep->flags, buf, 0,
829 region, 65535, 1, 0)) {
830 log_info("%s: log_dns_msg: out of memory", str);
831 } else {
832 char* s = sldns_wire2str_pkt(sldns_buffer_begin(buf),
833 sldns_buffer_limit(buf));
834 if(!s) {
835 log_info("%s: log_dns_msg: ldns tostr failed", str);
836 } else {
837 log_info("%s %s", str, s);
838 }
839 free(s);
840 }
841 sldns_buffer_free(buf);
842 regional_destroy(region);
843 }
844
845 void
log_reply_info(enum verbosity_value v,struct query_info * qinf,struct sockaddr_storage * addr,socklen_t addrlen,struct timeval dur,int cached,struct sldns_buffer * rmsg)846 log_reply_info(enum verbosity_value v, struct query_info *qinf,
847 struct sockaddr_storage *addr, socklen_t addrlen, struct timeval dur,
848 int cached, struct sldns_buffer *rmsg)
849 {
850 char qname_buf[LDNS_MAX_DOMAINLEN+1];
851 char clientip_buf[128];
852 char rcode_buf[16];
853 char type_buf[16];
854 char class_buf[16];
855 size_t pktlen;
856 uint16_t rcode = FLAGS_GET_RCODE(sldns_buffer_read_u16_at(rmsg, 2));
857
858 if(verbosity < v)
859 return;
860
861 sldns_wire2str_rcode_buf((int)rcode, rcode_buf, sizeof(rcode_buf));
862 addr_to_str(addr, addrlen, clientip_buf, sizeof(clientip_buf));
863 if(rcode == LDNS_RCODE_FORMERR)
864 {
865 if(LOG_TAG_QUERYREPLY)
866 log_reply("%s - - - %s - - - ", clientip_buf, rcode_buf);
867 else log_info("%s - - - %s - - - ", clientip_buf, rcode_buf);
868 } else {
869 if(qinf->qname)
870 dname_str(qinf->qname, qname_buf);
871 else snprintf(qname_buf, sizeof(qname_buf), "null");
872 pktlen = sldns_buffer_limit(rmsg);
873 sldns_wire2str_type_buf(qinf->qtype, type_buf, sizeof(type_buf));
874 sldns_wire2str_class_buf(qinf->qclass, class_buf, sizeof(class_buf));
875 if(LOG_TAG_QUERYREPLY)
876 log_reply("%s %s %s %s %s " ARG_LL "d.%6.6d %d %d",
877 clientip_buf, qname_buf, type_buf, class_buf,
878 rcode_buf, (long long)dur.tv_sec, (int)dur.tv_usec, cached, (int)pktlen);
879 else log_info("%s %s %s %s %s " ARG_LL "d.%6.6d %d %d",
880 clientip_buf, qname_buf, type_buf, class_buf,
881 rcode_buf, (long long)dur.tv_sec, (int)dur.tv_usec, cached, (int)pktlen);
882 }
883 }
884
885 void
log_query_info(enum verbosity_value v,const char * str,struct query_info * qinf)886 log_query_info(enum verbosity_value v, const char* str,
887 struct query_info* qinf)
888 {
889 log_nametypeclass(v, str, qinf->qname, qinf->qtype, qinf->qclass);
890 }
891
892 int
reply_check_cname_chain(struct query_info * qinfo,struct reply_info * rep)893 reply_check_cname_chain(struct query_info* qinfo, struct reply_info* rep)
894 {
895 /* check only answer section rrs for matching cname chain.
896 * the cache may return changed rdata, but owner names are untouched.*/
897 size_t i;
898 uint8_t* sname = qinfo->qname;
899 size_t snamelen = qinfo->qname_len;
900 for(i=0; i<rep->an_numrrsets; i++) {
901 uint16_t t = ntohs(rep->rrsets[i]->rk.type);
902 if(t == LDNS_RR_TYPE_DNAME)
903 continue; /* skip dnames; note TTL 0 not cached */
904 /* verify that owner matches current sname */
905 if(query_dname_compare(sname, rep->rrsets[i]->rk.dname) != 0){
906 /* cname chain broken */
907 return 0;
908 }
909 /* if this is a cname; move on */
910 if(t == LDNS_RR_TYPE_CNAME) {
911 get_cname_target(rep->rrsets[i], &sname, &snamelen);
912 }
913 }
914 return 1;
915 }
916
917 int
reply_all_rrsets_secure(struct reply_info * rep)918 reply_all_rrsets_secure(struct reply_info* rep)
919 {
920 size_t i;
921 for(i=0; i<rep->rrset_count; i++) {
922 if( ((struct packed_rrset_data*)rep->rrsets[i]->entry.data)
923 ->security != sec_status_secure )
924 return 0;
925 }
926 return 1;
927 }
928
929 struct reply_info*
parse_reply_in_temp_region(sldns_buffer * pkt,struct regional * region,struct query_info * qi)930 parse_reply_in_temp_region(sldns_buffer* pkt, struct regional* region,
931 struct query_info* qi)
932 {
933 struct reply_info* rep;
934 struct msg_parse* msg;
935 if(!(msg = regional_alloc(region, sizeof(*msg)))) {
936 return NULL;
937 }
938 memset(msg, 0, sizeof(*msg));
939 sldns_buffer_set_position(pkt, 0);
940 if(parse_packet(pkt, msg, region) != 0){
941 return 0;
942 }
943 if(!parse_create_msg(pkt, msg, NULL, qi, &rep, region)) {
944 return 0;
945 }
946 return rep;
947 }
948
edns_opt_append(struct edns_data * edns,struct regional * region,uint16_t code,size_t len,uint8_t * data)949 int edns_opt_append(struct edns_data* edns, struct regional* region,
950 uint16_t code, size_t len, uint8_t* data)
951 {
952 struct edns_option** prevp;
953 struct edns_option* opt;
954
955 /* allocate new element */
956 opt = (struct edns_option*)regional_alloc(region, sizeof(*opt));
957 if(!opt)
958 return 0;
959 opt->next = NULL;
960 opt->opt_code = code;
961 opt->opt_len = len;
962 opt->opt_data = NULL;
963 if(len > 0) {
964 opt->opt_data = regional_alloc_init(region, data, len);
965 if(!opt->opt_data)
966 return 0;
967 }
968
969 /* append at end of list */
970 prevp = &edns->opt_list;
971 while(*prevp != NULL)
972 prevp = &((*prevp)->next);
973 *prevp = opt;
974 return 1;
975 }
976
edns_opt_list_append(struct edns_option ** list,uint16_t code,size_t len,uint8_t * data,struct regional * region)977 int edns_opt_list_append(struct edns_option** list, uint16_t code, size_t len,
978 uint8_t* data, struct regional* region)
979 {
980 struct edns_option** prevp;
981 struct edns_option* opt;
982
983 /* allocate new element */
984 opt = (struct edns_option*)regional_alloc(region, sizeof(*opt));
985 if(!opt)
986 return 0;
987 opt->next = NULL;
988 opt->opt_code = code;
989 opt->opt_len = len;
990 opt->opt_data = NULL;
991 if(len > 0) {
992 opt->opt_data = regional_alloc_init(region, data, len);
993 if(!opt->opt_data)
994 return 0;
995 }
996
997 /* append at end of list */
998 prevp = list;
999 while(*prevp != NULL) {
1000 prevp = &((*prevp)->next);
1001 }
1002 *prevp = opt;
1003 return 1;
1004 }
1005
edns_opt_list_remove(struct edns_option ** list,uint16_t code)1006 int edns_opt_list_remove(struct edns_option** list, uint16_t code)
1007 {
1008 /* The list should already be allocated in a region. Freeing the
1009 * allocated space in a region is not possible. We just unlink the
1010 * required elements and they will be freed together with the region. */
1011
1012 struct edns_option* prev;
1013 struct edns_option* curr;
1014 if(!list || !(*list)) return 0;
1015
1016 /* Unlink and repoint if the element(s) are first in list */
1017 while(list && *list && (*list)->opt_code == code) {
1018 *list = (*list)->next;
1019 }
1020
1021 if(!list || !(*list)) return 1;
1022 /* Unlink elements and reattach the list */
1023 prev = *list;
1024 curr = (*list)->next;
1025 while(curr != NULL) {
1026 if(curr->opt_code == code) {
1027 prev->next = curr->next;
1028 curr = curr->next;
1029 } else {
1030 prev = curr;
1031 curr = curr->next;
1032 }
1033 }
1034 return 1;
1035 }
1036
inplace_cb_reply_call_generic(struct inplace_cb * callback_list,enum inplace_cb_list_type type,struct query_info * qinfo,struct module_qstate * qstate,struct reply_info * rep,int rcode,struct edns_data * edns,struct comm_reply * repinfo,struct regional * region,struct timeval * start_time)1037 static int inplace_cb_reply_call_generic(
1038 struct inplace_cb* callback_list, enum inplace_cb_list_type type,
1039 struct query_info* qinfo, struct module_qstate* qstate,
1040 struct reply_info* rep, int rcode, struct edns_data* edns,
1041 struct comm_reply* repinfo, struct regional* region,
1042 struct timeval* start_time)
1043 {
1044 struct inplace_cb* cb;
1045 struct edns_option* opt_list_out = NULL;
1046 #if defined(EXPORT_ALL_SYMBOLS)
1047 (void)type; /* param not used when fptr_ok disabled */
1048 #endif
1049 if(qstate)
1050 opt_list_out = qstate->edns_opts_front_out;
1051 for(cb=callback_list; cb; cb=cb->next) {
1052 fptr_ok(fptr_whitelist_inplace_cb_reply_generic(
1053 (inplace_cb_reply_func_type*)cb->cb, type));
1054 (void)(*(inplace_cb_reply_func_type*)cb->cb)(qinfo, qstate, rep,
1055 rcode, edns, &opt_list_out, repinfo, region, start_time, cb->id, cb->cb_arg);
1056 }
1057 edns->opt_list = opt_list_out;
1058 return 1;
1059 }
1060
inplace_cb_reply_call(struct module_env * env,struct query_info * qinfo,struct module_qstate * qstate,struct reply_info * rep,int rcode,struct edns_data * edns,struct comm_reply * repinfo,struct regional * region,struct timeval * start_time)1061 int inplace_cb_reply_call(struct module_env* env, struct query_info* qinfo,
1062 struct module_qstate* qstate, struct reply_info* rep, int rcode,
1063 struct edns_data* edns, struct comm_reply* repinfo, struct regional* region,
1064 struct timeval* start_time)
1065 {
1066 return inplace_cb_reply_call_generic(
1067 env->inplace_cb_lists[inplace_cb_reply], inplace_cb_reply, qinfo,
1068 qstate, rep, rcode, edns, repinfo, region, start_time);
1069 }
1070
inplace_cb_reply_cache_call(struct module_env * env,struct query_info * qinfo,struct module_qstate * qstate,struct reply_info * rep,int rcode,struct edns_data * edns,struct comm_reply * repinfo,struct regional * region,struct timeval * start_time)1071 int inplace_cb_reply_cache_call(struct module_env* env,
1072 struct query_info* qinfo, struct module_qstate* qstate,
1073 struct reply_info* rep, int rcode, struct edns_data* edns,
1074 struct comm_reply* repinfo, struct regional* region,
1075 struct timeval* start_time)
1076 {
1077 return inplace_cb_reply_call_generic(
1078 env->inplace_cb_lists[inplace_cb_reply_cache], inplace_cb_reply_cache,
1079 qinfo, qstate, rep, rcode, edns, repinfo, region, start_time);
1080 }
1081
inplace_cb_reply_local_call(struct module_env * env,struct query_info * qinfo,struct module_qstate * qstate,struct reply_info * rep,int rcode,struct edns_data * edns,struct comm_reply * repinfo,struct regional * region,struct timeval * start_time)1082 int inplace_cb_reply_local_call(struct module_env* env,
1083 struct query_info* qinfo, struct module_qstate* qstate,
1084 struct reply_info* rep, int rcode, struct edns_data* edns,
1085 struct comm_reply* repinfo, struct regional* region,
1086 struct timeval* start_time)
1087 {
1088 return inplace_cb_reply_call_generic(
1089 env->inplace_cb_lists[inplace_cb_reply_local], inplace_cb_reply_local,
1090 qinfo, qstate, rep, rcode, edns, repinfo, region, start_time);
1091 }
1092
inplace_cb_reply_servfail_call(struct module_env * env,struct query_info * qinfo,struct module_qstate * qstate,struct reply_info * rep,int rcode,struct edns_data * edns,struct comm_reply * repinfo,struct regional * region,struct timeval * start_time)1093 int inplace_cb_reply_servfail_call(struct module_env* env,
1094 struct query_info* qinfo, struct module_qstate* qstate,
1095 struct reply_info* rep, int rcode, struct edns_data* edns,
1096 struct comm_reply* repinfo, struct regional* region,
1097 struct timeval* start_time)
1098 {
1099 /* We are going to servfail. Remove any potential edns options. */
1100 if(qstate)
1101 qstate->edns_opts_front_out = NULL;
1102 return inplace_cb_reply_call_generic(
1103 env->inplace_cb_lists[inplace_cb_reply_servfail],
1104 inplace_cb_reply_servfail, qinfo, qstate, rep, rcode, edns, repinfo,
1105 region, start_time);
1106 }
1107
inplace_cb_query_call(struct module_env * env,struct query_info * qinfo,uint16_t flags,struct sockaddr_storage * addr,socklen_t addrlen,uint8_t * zone,size_t zonelen,struct module_qstate * qstate,struct regional * region)1108 int inplace_cb_query_call(struct module_env* env, struct query_info* qinfo,
1109 uint16_t flags, struct sockaddr_storage* addr, socklen_t addrlen,
1110 uint8_t* zone, size_t zonelen, struct module_qstate* qstate,
1111 struct regional* region)
1112 {
1113 struct inplace_cb* cb = env->inplace_cb_lists[inplace_cb_query];
1114 for(; cb; cb=cb->next) {
1115 fptr_ok(fptr_whitelist_inplace_cb_query(
1116 (inplace_cb_query_func_type*)cb->cb));
1117 (void)(*(inplace_cb_query_func_type*)cb->cb)(qinfo, flags,
1118 qstate, addr, addrlen, zone, zonelen, region,
1119 cb->id, cb->cb_arg);
1120 }
1121 return 1;
1122 }
1123
inplace_cb_edns_back_parsed_call(struct module_env * env,struct module_qstate * qstate)1124 int inplace_cb_edns_back_parsed_call(struct module_env* env,
1125 struct module_qstate* qstate)
1126 {
1127 struct inplace_cb* cb =
1128 env->inplace_cb_lists[inplace_cb_edns_back_parsed];
1129 for(; cb; cb=cb->next) {
1130 fptr_ok(fptr_whitelist_inplace_cb_edns_back_parsed(
1131 (inplace_cb_edns_back_parsed_func_type*)cb->cb));
1132 (void)(*(inplace_cb_edns_back_parsed_func_type*)cb->cb)(qstate,
1133 cb->id, cb->cb_arg);
1134 }
1135 return 1;
1136 }
1137
inplace_cb_query_response_call(struct module_env * env,struct module_qstate * qstate,struct dns_msg * response)1138 int inplace_cb_query_response_call(struct module_env* env,
1139 struct module_qstate* qstate, struct dns_msg* response) {
1140 struct inplace_cb* cb =
1141 env->inplace_cb_lists[inplace_cb_query_response];
1142 for(; cb; cb=cb->next) {
1143 fptr_ok(fptr_whitelist_inplace_cb_query_response(
1144 (inplace_cb_query_response_func_type*)cb->cb));
1145 (void)(*(inplace_cb_query_response_func_type*)cb->cb)(qstate,
1146 response, cb->id, cb->cb_arg);
1147 }
1148 return 1;
1149 }
1150
edns_opt_copy_region(struct edns_option * list,struct regional * region)1151 struct edns_option* edns_opt_copy_region(struct edns_option* list,
1152 struct regional* region)
1153 {
1154 struct edns_option* result = NULL, *cur = NULL, *s;
1155 while(list) {
1156 /* copy edns option structure */
1157 s = regional_alloc_init(region, list, sizeof(*list));
1158 if(!s) return NULL;
1159 s->next = NULL;
1160
1161 /* copy option data */
1162 if(s->opt_data) {
1163 s->opt_data = regional_alloc_init(region, s->opt_data,
1164 s->opt_len);
1165 if(!s->opt_data)
1166 return NULL;
1167 }
1168
1169 /* link into list */
1170 if(cur)
1171 cur->next = s;
1172 else result = s;
1173 cur = s;
1174
1175 /* examine next element */
1176 list = list->next;
1177 }
1178 return result;
1179 }
1180
edns_opt_compare(struct edns_option * p,struct edns_option * q)1181 int edns_opt_compare(struct edns_option* p, struct edns_option* q)
1182 {
1183 if(!p && !q) return 0;
1184 if(!p) return -1;
1185 if(!q) return 1;
1186 log_assert(p && q);
1187 if(p->opt_code != q->opt_code)
1188 return (int)q->opt_code - (int)p->opt_code;
1189 if(p->opt_len != q->opt_len)
1190 return (int)q->opt_len - (int)p->opt_len;
1191 if(p->opt_len != 0)
1192 return memcmp(p->opt_data, q->opt_data, p->opt_len);
1193 return 0;
1194 }
1195
edns_opt_list_compare(struct edns_option * p,struct edns_option * q)1196 int edns_opt_list_compare(struct edns_option* p, struct edns_option* q)
1197 {
1198 int r;
1199 while(p && q) {
1200 r = edns_opt_compare(p, q);
1201 if(r != 0)
1202 return r;
1203 p = p->next;
1204 q = q->next;
1205 }
1206 if(p || q) {
1207 /* uneven length lists */
1208 if(p) return 1;
1209 if(q) return -1;
1210 }
1211 return 0;
1212 }
1213
edns_opt_list_free(struct edns_option * list)1214 void edns_opt_list_free(struct edns_option* list)
1215 {
1216 struct edns_option* n;
1217 while(list) {
1218 free(list->opt_data);
1219 n = list->next;
1220 free(list);
1221 list = n;
1222 }
1223 }
1224
edns_opt_copy_alloc(struct edns_option * list)1225 struct edns_option* edns_opt_copy_alloc(struct edns_option* list)
1226 {
1227 struct edns_option* result = NULL, *cur = NULL, *s;
1228 while(list) {
1229 /* copy edns option structure */
1230 s = memdup(list, sizeof(*list));
1231 if(!s) {
1232 edns_opt_list_free(result);
1233 return NULL;
1234 }
1235 s->next = NULL;
1236
1237 /* copy option data */
1238 if(s->opt_data) {
1239 s->opt_data = memdup(s->opt_data, s->opt_len);
1240 if(!s->opt_data) {
1241 free(s);
1242 edns_opt_list_free(result);
1243 return NULL;
1244 }
1245 }
1246
1247 /* link into list */
1248 if(cur)
1249 cur->next = s;
1250 else result = s;
1251 cur = s;
1252
1253 /* examine next element */
1254 list = list->next;
1255 }
1256 return result;
1257 }
1258
edns_opt_list_find(struct edns_option * list,uint16_t code)1259 struct edns_option* edns_opt_list_find(struct edns_option* list, uint16_t code)
1260 {
1261 struct edns_option* p;
1262 for(p=list; p; p=p->next) {
1263 if(p->opt_code == code)
1264 return p;
1265 }
1266 return NULL;
1267 }
1268