1 /*
2 * daemon/worker.c - worker that handles a pending list of requests.
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 implements the worker that handles callbacks on events, for
40 * pending requests.
41 */
42 #include "config.h"
43 #include "util/log.h"
44 #include "util/net_help.h"
45 #include "util/random.h"
46 #include "daemon/worker.h"
47 #include "daemon/daemon.h"
48 #include "daemon/remote.h"
49 #include "daemon/acl_list.h"
50 #include "util/netevent.h"
51 #include "util/config_file.h"
52 #include "util/module.h"
53 #include "util/regional.h"
54 #include "util/storage/slabhash.h"
55 #include "services/listen_dnsport.h"
56 #include "services/outside_network.h"
57 #include "services/outbound_list.h"
58 #include "services/cache/rrset.h"
59 #include "services/cache/infra.h"
60 #include "services/cache/dns.h"
61 #include "services/authzone.h"
62 #include "services/mesh.h"
63 #include "services/localzone.h"
64 #include "services/rpz.h"
65 #include "util/data/msgparse.h"
66 #include "util/data/msgencode.h"
67 #include "util/data/dname.h"
68 #include "util/fptr_wlist.h"
69 #include "util/tube.h"
70 #include "util/edns.h"
71 #include "iterator/iter_fwd.h"
72 #include "iterator/iter_hints.h"
73 #include "validator/autotrust.h"
74 #include "validator/val_anchor.h"
75 #include "respip/respip.h"
76 #include "libunbound/context.h"
77 #include "libunbound/libworker.h"
78 #include "sldns/sbuffer.h"
79 #include "sldns/wire2str.h"
80 #include "util/shm_side/shm_main.h"
81 #include "dnscrypt/dnscrypt.h"
82 #include "dnstap/dtstream.h"
83
84 #ifdef HAVE_SYS_TYPES_H
85 # include <sys/types.h>
86 #endif
87 #ifdef HAVE_NETDB_H
88 #include <netdb.h>
89 #endif
90 #include <signal.h>
91 #ifdef UB_ON_WINDOWS
92 #include "winrc/win_svc.h"
93 #endif
94
95 /** Size of an UDP datagram */
96 #define NORMAL_UDP_SIZE 512 /* bytes */
97 /** ratelimit for error responses */
98 #define ERROR_RATELIMIT 100 /* qps */
99
100 /**
101 * seconds to add to prefetch leeway. This is a TTL that expires old rrsets
102 * earlier than they should in order to put the new update into the cache.
103 * This additional value is to make sure that if not all TTLs are equal in
104 * the message to be updated(and replaced), that rrsets with up to this much
105 * extra TTL are also replaced. This means that the resulting new message
106 * will have (most likely) this TTL at least, avoiding very small 'split
107 * second' TTLs due to operators choosing relative primes for TTLs (or so).
108 * Also has to be at least one to break ties (and overwrite cached entry).
109 */
110 #define PREFETCH_EXPIRY_ADD 60
111
112 /** Report on memory usage by this thread and global */
113 static void
worker_mem_report(struct worker * ATTR_UNUSED (worker),struct serviced_query * ATTR_UNUSED (cur_serv))114 worker_mem_report(struct worker* ATTR_UNUSED(worker),
115 struct serviced_query* ATTR_UNUSED(cur_serv))
116 {
117 #ifdef UNBOUND_ALLOC_STATS
118 /* measure memory leakage */
119 extern size_t unbound_mem_alloc, unbound_mem_freed;
120 /* debug func in validator module */
121 size_t total, front, back, mesh, msg, rrset, infra, ac, superac;
122 size_t me, iter, val, anch;
123 int i;
124 #ifdef CLIENT_SUBNET
125 size_t subnet = 0;
126 #endif /* CLIENT_SUBNET */
127 if(verbosity < VERB_ALGO)
128 return;
129 front = listen_get_mem(worker->front);
130 back = outnet_get_mem(worker->back);
131 msg = slabhash_get_mem(worker->env.msg_cache);
132 rrset = slabhash_get_mem(&worker->env.rrset_cache->table);
133 infra = infra_get_mem(worker->env.infra_cache);
134 mesh = mesh_get_mem(worker->env.mesh);
135 ac = alloc_get_mem(&worker->alloc);
136 superac = alloc_get_mem(&worker->daemon->superalloc);
137 anch = anchors_get_mem(worker->env.anchors);
138 iter = 0;
139 val = 0;
140 for(i=0; i<worker->env.mesh->mods.num; i++) {
141 fptr_ok(fptr_whitelist_mod_get_mem(worker->env.mesh->
142 mods.mod[i]->get_mem));
143 if(strcmp(worker->env.mesh->mods.mod[i]->name, "validator")==0)
144 val += (*worker->env.mesh->mods.mod[i]->get_mem)
145 (&worker->env, i);
146 #ifdef CLIENT_SUBNET
147 else if(strcmp(worker->env.mesh->mods.mod[i]->name,
148 "subnet")==0)
149 subnet += (*worker->env.mesh->mods.mod[i]->get_mem)
150 (&worker->env, i);
151 #endif /* CLIENT_SUBNET */
152 else iter += (*worker->env.mesh->mods.mod[i]->get_mem)
153 (&worker->env, i);
154 }
155 me = sizeof(*worker) + sizeof(*worker->base) + sizeof(*worker->comsig)
156 + comm_point_get_mem(worker->cmd_com)
157 + sizeof(worker->rndstate)
158 + regional_get_mem(worker->scratchpad)
159 + sizeof(*worker->env.scratch_buffer)
160 + sldns_buffer_capacity(worker->env.scratch_buffer)
161 + forwards_get_mem(worker->env.fwds)
162 + hints_get_mem(worker->env.hints);
163 if(worker->thread_num == 0)
164 me += acl_list_get_mem(worker->daemon->acl);
165 if(cur_serv) {
166 me += serviced_get_mem(cur_serv);
167 }
168 total = front+back+mesh+msg+rrset+infra+iter+val+ac+superac+me;
169 #ifdef CLIENT_SUBNET
170 total += subnet;
171 log_info("Memory conditions: %u front=%u back=%u mesh=%u msg=%u "
172 "rrset=%u infra=%u iter=%u val=%u subnet=%u anchors=%u "
173 "alloccache=%u globalalloccache=%u me=%u",
174 (unsigned)total, (unsigned)front, (unsigned)back,
175 (unsigned)mesh, (unsigned)msg, (unsigned)rrset, (unsigned)infra,
176 (unsigned)iter, (unsigned)val,
177 (unsigned)subnet, (unsigned)anch, (unsigned)ac,
178 (unsigned)superac, (unsigned)me);
179 #else /* no CLIENT_SUBNET */
180 log_info("Memory conditions: %u front=%u back=%u mesh=%u msg=%u "
181 "rrset=%u infra=%u iter=%u val=%u anchors=%u "
182 "alloccache=%u globalalloccache=%u me=%u",
183 (unsigned)total, (unsigned)front, (unsigned)back,
184 (unsigned)mesh, (unsigned)msg, (unsigned)rrset,
185 (unsigned)infra, (unsigned)iter, (unsigned)val, (unsigned)anch,
186 (unsigned)ac, (unsigned)superac, (unsigned)me);
187 #endif /* CLIENT_SUBNET */
188 log_info("Total heap memory estimate: %u total-alloc: %u "
189 "total-free: %u", (unsigned)total,
190 (unsigned)unbound_mem_alloc, (unsigned)unbound_mem_freed);
191 #else /* no UNBOUND_ALLOC_STATS */
192 size_t val = 0;
193 #ifdef CLIENT_SUBNET
194 size_t subnet = 0;
195 #endif /* CLIENT_SUBNET */
196 int i;
197 if(verbosity < VERB_QUERY)
198 return;
199 for(i=0; i<worker->env.mesh->mods.num; i++) {
200 fptr_ok(fptr_whitelist_mod_get_mem(worker->env.mesh->
201 mods.mod[i]->get_mem));
202 if(strcmp(worker->env.mesh->mods.mod[i]->name, "validator")==0)
203 val += (*worker->env.mesh->mods.mod[i]->get_mem)
204 (&worker->env, i);
205 #ifdef CLIENT_SUBNET
206 else if(strcmp(worker->env.mesh->mods.mod[i]->name,
207 "subnet")==0)
208 subnet += (*worker->env.mesh->mods.mod[i]->get_mem)
209 (&worker->env, i);
210 #endif /* CLIENT_SUBNET */
211 }
212 #ifdef CLIENT_SUBNET
213 verbose(VERB_QUERY, "cache memory msg=%u rrset=%u infra=%u val=%u "
214 "subnet=%u",
215 (unsigned)slabhash_get_mem(worker->env.msg_cache),
216 (unsigned)slabhash_get_mem(&worker->env.rrset_cache->table),
217 (unsigned)infra_get_mem(worker->env.infra_cache),
218 (unsigned)val, (unsigned)subnet);
219 #else /* no CLIENT_SUBNET */
220 verbose(VERB_QUERY, "cache memory msg=%u rrset=%u infra=%u val=%u",
221 (unsigned)slabhash_get_mem(worker->env.msg_cache),
222 (unsigned)slabhash_get_mem(&worker->env.rrset_cache->table),
223 (unsigned)infra_get_mem(worker->env.infra_cache),
224 (unsigned)val);
225 #endif /* CLIENT_SUBNET */
226 #endif /* UNBOUND_ALLOC_STATS */
227 }
228
229 void
worker_send_cmd(struct worker * worker,enum worker_commands cmd)230 worker_send_cmd(struct worker* worker, enum worker_commands cmd)
231 {
232 uint32_t c = (uint32_t)htonl(cmd);
233 if(!tube_write_msg(worker->cmd, (uint8_t*)&c, sizeof(c), 0)) {
234 log_err("worker send cmd %d failed", (int)cmd);
235 }
236 }
237
238 int
worker_handle_reply(struct comm_point * c,void * arg,int error,struct comm_reply * reply_info)239 worker_handle_reply(struct comm_point* c, void* arg, int error,
240 struct comm_reply* reply_info)
241 {
242 struct module_qstate* q = (struct module_qstate*)arg;
243 struct worker* worker = q->env->worker;
244 struct outbound_entry e;
245 e.qstate = q;
246 e.qsent = NULL;
247
248 if(error != 0) {
249 mesh_report_reply(worker->env.mesh, &e, reply_info, error);
250 worker_mem_report(worker, NULL);
251 return 0;
252 }
253 /* sanity check. */
254 if(!LDNS_QR_WIRE(sldns_buffer_begin(c->buffer))
255 || LDNS_OPCODE_WIRE(sldns_buffer_begin(c->buffer)) !=
256 LDNS_PACKET_QUERY
257 || LDNS_QDCOUNT(sldns_buffer_begin(c->buffer)) > 1) {
258 /* error becomes timeout for the module as if this reply
259 * never arrived. */
260 mesh_report_reply(worker->env.mesh, &e, reply_info,
261 NETEVENT_TIMEOUT);
262 worker_mem_report(worker, NULL);
263 return 0;
264 }
265 mesh_report_reply(worker->env.mesh, &e, reply_info, NETEVENT_NOERROR);
266 worker_mem_report(worker, NULL);
267 return 0;
268 }
269
270 int
worker_handle_service_reply(struct comm_point * c,void * arg,int error,struct comm_reply * reply_info)271 worker_handle_service_reply(struct comm_point* c, void* arg, int error,
272 struct comm_reply* reply_info)
273 {
274 struct outbound_entry* e = (struct outbound_entry*)arg;
275 struct worker* worker = e->qstate->env->worker;
276 struct serviced_query *sq = e->qsent;
277
278 verbose(VERB_ALGO, "worker svcd callback for qstate %p", e->qstate);
279 if(error != 0) {
280 mesh_report_reply(worker->env.mesh, e, reply_info, error);
281 worker_mem_report(worker, sq);
282 return 0;
283 }
284 /* sanity check. */
285 if(!LDNS_QR_WIRE(sldns_buffer_begin(c->buffer))
286 || LDNS_OPCODE_WIRE(sldns_buffer_begin(c->buffer)) !=
287 LDNS_PACKET_QUERY
288 || LDNS_QDCOUNT(sldns_buffer_begin(c->buffer)) > 1) {
289 /* error becomes timeout for the module as if this reply
290 * never arrived. */
291 verbose(VERB_ALGO, "worker: bad reply handled as timeout");
292 mesh_report_reply(worker->env.mesh, e, reply_info,
293 NETEVENT_TIMEOUT);
294 worker_mem_report(worker, sq);
295 return 0;
296 }
297 mesh_report_reply(worker->env.mesh, e, reply_info, NETEVENT_NOERROR);
298 worker_mem_report(worker, sq);
299 return 0;
300 }
301
302 /** ratelimit error replies
303 * @param worker: the worker struct with ratelimit counter
304 * @param err: error code that would be wanted.
305 * @return value of err if okay, or -1 if it should be discarded instead.
306 */
307 static int
worker_err_ratelimit(struct worker * worker,int err)308 worker_err_ratelimit(struct worker* worker, int err)
309 {
310 if(worker->err_limit_time == *worker->env.now) {
311 /* see if limit is exceeded for this second */
312 if(worker->err_limit_count++ > ERROR_RATELIMIT)
313 return -1;
314 } else {
315 /* new second, new limits */
316 worker->err_limit_time = *worker->env.now;
317 worker->err_limit_count = 1;
318 }
319 return err;
320 }
321
322 /** check request sanity.
323 * @param pkt: the wire packet to examine for sanity.
324 * @param worker: parameters for checking.
325 * @return error code, 0 OK, or -1 discard.
326 */
327 static int
worker_check_request(sldns_buffer * pkt,struct worker * worker)328 worker_check_request(sldns_buffer* pkt, struct worker* worker)
329 {
330 if(sldns_buffer_limit(pkt) < LDNS_HEADER_SIZE) {
331 verbose(VERB_QUERY, "request too short, discarded");
332 return -1;
333 }
334 if(sldns_buffer_limit(pkt) > NORMAL_UDP_SIZE &&
335 worker->daemon->cfg->harden_large_queries) {
336 verbose(VERB_QUERY, "request too large, discarded");
337 return -1;
338 }
339 if(LDNS_QR_WIRE(sldns_buffer_begin(pkt))) {
340 verbose(VERB_QUERY, "request has QR bit on, discarded");
341 return -1;
342 }
343 if(LDNS_TC_WIRE(sldns_buffer_begin(pkt))) {
344 LDNS_TC_CLR(sldns_buffer_begin(pkt));
345 verbose(VERB_QUERY, "request bad, has TC bit on");
346 return worker_err_ratelimit(worker, LDNS_RCODE_FORMERR);
347 }
348 if(LDNS_OPCODE_WIRE(sldns_buffer_begin(pkt)) != LDNS_PACKET_QUERY &&
349 LDNS_OPCODE_WIRE(sldns_buffer_begin(pkt)) != LDNS_PACKET_NOTIFY) {
350 verbose(VERB_QUERY, "request unknown opcode %d",
351 LDNS_OPCODE_WIRE(sldns_buffer_begin(pkt)));
352 return worker_err_ratelimit(worker, LDNS_RCODE_NOTIMPL);
353 }
354 if(LDNS_QDCOUNT(sldns_buffer_begin(pkt)) != 1) {
355 verbose(VERB_QUERY, "request wrong nr qd=%d",
356 LDNS_QDCOUNT(sldns_buffer_begin(pkt)));
357 return worker_err_ratelimit(worker, LDNS_RCODE_FORMERR);
358 }
359 if(LDNS_ANCOUNT(sldns_buffer_begin(pkt)) != 0 &&
360 (LDNS_ANCOUNT(sldns_buffer_begin(pkt)) != 1 ||
361 LDNS_OPCODE_WIRE(sldns_buffer_begin(pkt)) != LDNS_PACKET_NOTIFY)) {
362 verbose(VERB_QUERY, "request wrong nr an=%d",
363 LDNS_ANCOUNT(sldns_buffer_begin(pkt)));
364 return worker_err_ratelimit(worker, LDNS_RCODE_FORMERR);
365 }
366 if(LDNS_NSCOUNT(sldns_buffer_begin(pkt)) != 0) {
367 verbose(VERB_QUERY, "request wrong nr ns=%d",
368 LDNS_NSCOUNT(sldns_buffer_begin(pkt)));
369 return worker_err_ratelimit(worker, LDNS_RCODE_FORMERR);
370 }
371 if(LDNS_ARCOUNT(sldns_buffer_begin(pkt)) > 1) {
372 verbose(VERB_QUERY, "request wrong nr ar=%d",
373 LDNS_ARCOUNT(sldns_buffer_begin(pkt)));
374 return worker_err_ratelimit(worker, LDNS_RCODE_FORMERR);
375 }
376 return 0;
377 }
378
379 void
worker_handle_control_cmd(struct tube * ATTR_UNUSED (tube),uint8_t * msg,size_t len,int error,void * arg)380 worker_handle_control_cmd(struct tube* ATTR_UNUSED(tube), uint8_t* msg,
381 size_t len, int error, void* arg)
382 {
383 struct worker* worker = (struct worker*)arg;
384 enum worker_commands cmd;
385 if(error != NETEVENT_NOERROR) {
386 free(msg);
387 if(error == NETEVENT_CLOSED)
388 comm_base_exit(worker->base);
389 else log_info("control event: %d", error);
390 return;
391 }
392 if(len != sizeof(uint32_t)) {
393 fatal_exit("bad control msg length %d", (int)len);
394 }
395 cmd = sldns_read_uint32(msg);
396 free(msg);
397 switch(cmd) {
398 case worker_cmd_quit:
399 verbose(VERB_ALGO, "got control cmd quit");
400 comm_base_exit(worker->base);
401 break;
402 case worker_cmd_stats:
403 verbose(VERB_ALGO, "got control cmd stats");
404 server_stats_reply(worker, 1);
405 break;
406 case worker_cmd_stats_noreset:
407 verbose(VERB_ALGO, "got control cmd stats_noreset");
408 server_stats_reply(worker, 0);
409 break;
410 case worker_cmd_remote:
411 verbose(VERB_ALGO, "got control cmd remote");
412 daemon_remote_exec(worker);
413 break;
414 default:
415 log_err("bad command %d", (int)cmd);
416 break;
417 }
418 }
419
420 /** check if a delegation is secure */
421 static enum sec_status
check_delegation_secure(struct reply_info * rep)422 check_delegation_secure(struct reply_info *rep)
423 {
424 /* return smallest security status */
425 size_t i;
426 enum sec_status sec = sec_status_secure;
427 enum sec_status s;
428 size_t num = rep->an_numrrsets + rep->ns_numrrsets;
429 /* check if answer and authority are OK */
430 for(i=0; i<num; i++) {
431 s = ((struct packed_rrset_data*)rep->rrsets[i]->entry.data)
432 ->security;
433 if(s < sec)
434 sec = s;
435 }
436 /* in additional, only unchecked triggers revalidation */
437 for(i=num; i<rep->rrset_count; i++) {
438 s = ((struct packed_rrset_data*)rep->rrsets[i]->entry.data)
439 ->security;
440 if(s == sec_status_unchecked)
441 return s;
442 }
443 return sec;
444 }
445
446 /** remove nonsecure from a delegation referral additional section */
447 static void
deleg_remove_nonsecure_additional(struct reply_info * rep)448 deleg_remove_nonsecure_additional(struct reply_info* rep)
449 {
450 /* we can simply edit it, since we are working in the scratch region */
451 size_t i;
452 enum sec_status s;
453
454 for(i = rep->an_numrrsets+rep->ns_numrrsets; i<rep->rrset_count; i++) {
455 s = ((struct packed_rrset_data*)rep->rrsets[i]->entry.data)
456 ->security;
457 if(s != sec_status_secure) {
458 memmove(rep->rrsets+i, rep->rrsets+i+1,
459 sizeof(struct ub_packed_rrset_key*)*
460 (rep->rrset_count - i - 1));
461 rep->ar_numrrsets--;
462 rep->rrset_count--;
463 i--;
464 }
465 }
466 }
467
468 /** answer nonrecursive query from the cache */
469 static int
answer_norec_from_cache(struct worker * worker,struct query_info * qinfo,uint16_t id,uint16_t flags,struct comm_reply * repinfo,struct edns_data * edns)470 answer_norec_from_cache(struct worker* worker, struct query_info* qinfo,
471 uint16_t id, uint16_t flags, struct comm_reply* repinfo,
472 struct edns_data* edns)
473 {
474 /* for a nonrecursive query return either:
475 * o an error (servfail; we try to avoid this)
476 * o a delegation (closest we have; this routine tries that)
477 * o the answer (checked by answer_from_cache)
478 *
479 * So, grab a delegation from the rrset cache.
480 * Then check if it needs validation, if so, this routine fails,
481 * so that iterator can prime and validator can verify rrsets.
482 */
483 struct edns_data edns_bak;
484 uint16_t udpsize = edns->udp_size;
485 int secure = 0;
486 time_t timenow = *worker->env.now;
487 int must_validate = (!(flags&BIT_CD) || worker->env.cfg->ignore_cd)
488 && worker->env.need_to_validate;
489 struct dns_msg *msg = NULL;
490 struct delegpt *dp;
491
492 dp = dns_cache_find_delegation(&worker->env, qinfo->qname,
493 qinfo->qname_len, qinfo->qtype, qinfo->qclass,
494 worker->scratchpad, &msg, timenow);
495 if(!dp) { /* no delegation, need to reprime */
496 return 0;
497 }
498 /* In case we have a local alias, copy it into the delegation message.
499 * Shallow copy should be fine, as we'll be done with msg in this
500 * function. */
501 msg->qinfo.local_alias = qinfo->local_alias;
502 if(must_validate) {
503 switch(check_delegation_secure(msg->rep)) {
504 case sec_status_unchecked:
505 /* some rrsets have not been verified yet, go and
506 * let validator do that */
507 return 0;
508 case sec_status_bogus:
509 case sec_status_secure_sentinel_fail:
510 /* some rrsets are bogus, reply servfail */
511 edns->edns_version = EDNS_ADVERTISED_VERSION;
512 edns->udp_size = EDNS_ADVERTISED_SIZE;
513 edns->ext_rcode = 0;
514 edns->bits &= EDNS_DO;
515 if(!inplace_cb_reply_servfail_call(&worker->env, qinfo, NULL,
516 msg->rep, LDNS_RCODE_SERVFAIL, edns, repinfo, worker->scratchpad,
517 worker->env.now_tv))
518 return 0;
519 error_encode(repinfo->c->buffer, LDNS_RCODE_SERVFAIL,
520 &msg->qinfo, id, flags, edns);
521 if(worker->stats.extended) {
522 worker->stats.ans_bogus++;
523 worker->stats.ans_rcode[LDNS_RCODE_SERVFAIL]++;
524 }
525 return 1;
526 case sec_status_secure:
527 /* all rrsets are secure */
528 /* remove non-secure rrsets from the add. section*/
529 if(worker->env.cfg->val_clean_additional)
530 deleg_remove_nonsecure_additional(msg->rep);
531 secure = 1;
532 break;
533 case sec_status_indeterminate:
534 case sec_status_insecure:
535 default:
536 /* not secure */
537 secure = 0;
538 break;
539 }
540 }
541 /* return this delegation from the cache */
542 edns_bak = *edns;
543 edns->edns_version = EDNS_ADVERTISED_VERSION;
544 edns->udp_size = EDNS_ADVERTISED_SIZE;
545 edns->ext_rcode = 0;
546 edns->bits &= EDNS_DO;
547 if(!inplace_cb_reply_cache_call(&worker->env, qinfo, NULL, msg->rep,
548 (int)(flags&LDNS_RCODE_MASK), edns, repinfo, worker->scratchpad,
549 worker->env.now_tv))
550 return 0;
551 msg->rep->flags |= BIT_QR|BIT_RA;
552 if(!apply_edns_options(edns, &edns_bak, worker->env.cfg,
553 repinfo->c, worker->scratchpad) ||
554 !reply_info_answer_encode(&msg->qinfo, msg->rep, id, flags,
555 repinfo->c->buffer, 0, 1, worker->scratchpad,
556 udpsize, edns, (int)(edns->bits & EDNS_DO), secure)) {
557 if(!inplace_cb_reply_servfail_call(&worker->env, qinfo, NULL, NULL,
558 LDNS_RCODE_SERVFAIL, edns, repinfo, worker->scratchpad,
559 worker->env.now_tv))
560 edns->opt_list = NULL;
561 error_encode(repinfo->c->buffer, LDNS_RCODE_SERVFAIL,
562 &msg->qinfo, id, flags, edns);
563 }
564 if(worker->stats.extended) {
565 if(secure) worker->stats.ans_secure++;
566 server_stats_insrcode(&worker->stats, repinfo->c->buffer);
567 }
568 return 1;
569 }
570
571 /** Apply, if applicable, a response IP action to a cached answer.
572 * If the answer is rewritten as a result of an action, '*encode_repp' will
573 * point to the reply info containing the modified answer. '*encode_repp' will
574 * be intact otherwise.
575 * It returns 1 on success, 0 otherwise. */
576 static int
apply_respip_action(struct worker * worker,const struct query_info * qinfo,struct respip_client_info * cinfo,struct reply_info * rep,struct comm_reply * repinfo,struct ub_packed_rrset_key ** alias_rrset,struct reply_info ** encode_repp,struct auth_zones * az)577 apply_respip_action(struct worker* worker, const struct query_info* qinfo,
578 struct respip_client_info* cinfo, struct reply_info* rep,
579 struct comm_reply* repinfo, struct ub_packed_rrset_key** alias_rrset,
580 struct reply_info** encode_repp, struct auth_zones* az)
581 {
582 struct respip_action_info actinfo = {0, 0, 0, 0, NULL, 0, NULL};
583 actinfo.action = respip_none;
584
585 if(qinfo->qtype != LDNS_RR_TYPE_A &&
586 qinfo->qtype != LDNS_RR_TYPE_AAAA &&
587 qinfo->qtype != LDNS_RR_TYPE_ANY)
588 return 1;
589
590 if(!respip_rewrite_reply(qinfo, cinfo, rep, encode_repp, &actinfo,
591 alias_rrset, 0, worker->scratchpad, az))
592 return 0;
593
594 /* xxx_deny actions mean dropping the reply, unless the original reply
595 * was redirected to response-ip data. */
596 if((actinfo.action == respip_deny ||
597 actinfo.action == respip_inform_deny) &&
598 *encode_repp == rep)
599 *encode_repp = NULL;
600
601 /* If address info is returned, it means the action should be an
602 * 'inform' variant and the information should be logged. */
603 if(actinfo.addrinfo) {
604 respip_inform_print(&actinfo, qinfo->qname,
605 qinfo->qtype, qinfo->qclass, qinfo->local_alias,
606 repinfo);
607
608 if(worker->stats.extended && actinfo.rpz_used) {
609 if(actinfo.rpz_disabled)
610 worker->stats.rpz_action[RPZ_DISABLED_ACTION]++;
611 if(actinfo.rpz_cname_override)
612 worker->stats.rpz_action[RPZ_CNAME_OVERRIDE_ACTION]++;
613 else
614 worker->stats.rpz_action[
615 respip_action_to_rpz_action(actinfo.action)]++;
616 }
617 }
618
619 return 1;
620 }
621
622 /** answer query from the cache.
623 * Normally, the answer message will be built in repinfo->c->buffer; if the
624 * answer is supposed to be suppressed or the answer is supposed to be an
625 * incomplete CNAME chain, the buffer is explicitly cleared to signal the
626 * caller as such. In the latter case *partial_rep will point to the incomplete
627 * reply, and this function is (possibly) supposed to be called again with that
628 * *partial_rep value to complete the chain. In addition, if the query should
629 * be completely dropped, '*need_drop' will be set to 1. */
630 static int
answer_from_cache(struct worker * worker,struct query_info * qinfo,struct respip_client_info * cinfo,int * need_drop,int * is_expired_answer,int * is_secure_answer,struct ub_packed_rrset_key ** alias_rrset,struct reply_info ** partial_repp,struct reply_info * rep,uint16_t id,uint16_t flags,struct comm_reply * repinfo,struct edns_data * edns)631 answer_from_cache(struct worker* worker, struct query_info* qinfo,
632 struct respip_client_info* cinfo, int* need_drop, int* is_expired_answer,
633 int* is_secure_answer, struct ub_packed_rrset_key** alias_rrset,
634 struct reply_info** partial_repp,
635 struct reply_info* rep, uint16_t id, uint16_t flags,
636 struct comm_reply* repinfo, struct edns_data* edns)
637 {
638 struct edns_data edns_bak;
639 time_t timenow = *worker->env.now;
640 uint16_t udpsize = edns->udp_size;
641 struct reply_info* encode_rep = rep;
642 struct reply_info* partial_rep = *partial_repp;
643 int must_validate = (!(flags&BIT_CD) || worker->env.cfg->ignore_cd)
644 && worker->env.need_to_validate;
645 *partial_repp = NULL; /* avoid accidental further pass */
646
647 /* Check TTL */
648 if(rep->ttl < timenow) {
649 /* Check if we need to serve expired now */
650 if(worker->env.cfg->serve_expired &&
651 !worker->env.cfg->serve_expired_client_timeout) {
652 if(worker->env.cfg->serve_expired_ttl &&
653 rep->serve_expired_ttl < timenow)
654 return 0;
655 if(!rrset_array_lock(rep->ref, rep->rrset_count, 0))
656 return 0;
657 *is_expired_answer = 1;
658 } else {
659 /* the rrsets may have been updated in the meantime.
660 * we will refetch the message format from the
661 * authoritative server
662 */
663 return 0;
664 }
665 } else {
666 if(!rrset_array_lock(rep->ref, rep->rrset_count, timenow))
667 return 0;
668 }
669 /* locked and ids and ttls are OK. */
670
671 /* check CNAME chain (if any) */
672 if(rep->an_numrrsets > 0 && (rep->rrsets[0]->rk.type ==
673 htons(LDNS_RR_TYPE_CNAME) || rep->rrsets[0]->rk.type ==
674 htons(LDNS_RR_TYPE_DNAME))) {
675 if(!reply_check_cname_chain(qinfo, rep)) {
676 /* cname chain invalid, redo iterator steps */
677 verbose(VERB_ALGO, "Cache reply: cname chain broken");
678 goto bail_out;
679 }
680 }
681 /* check security status of the cached answer */
682 if(must_validate && (rep->security == sec_status_bogus ||
683 rep->security == sec_status_secure_sentinel_fail)) {
684 /* BAD cached */
685 edns->edns_version = EDNS_ADVERTISED_VERSION;
686 edns->udp_size = EDNS_ADVERTISED_SIZE;
687 edns->ext_rcode = 0;
688 edns->bits &= EDNS_DO;
689 if(!inplace_cb_reply_servfail_call(&worker->env, qinfo, NULL, rep,
690 LDNS_RCODE_SERVFAIL, edns, repinfo, worker->scratchpad,
691 worker->env.now_tv))
692 goto bail_out;
693 error_encode(repinfo->c->buffer, LDNS_RCODE_SERVFAIL,
694 qinfo, id, flags, edns);
695 rrset_array_unlock_touch(worker->env.rrset_cache,
696 worker->scratchpad, rep->ref, rep->rrset_count);
697 if(worker->stats.extended) {
698 worker->stats.ans_bogus ++;
699 worker->stats.ans_rcode[LDNS_RCODE_SERVFAIL] ++;
700 }
701 return 1;
702 } else if(rep->security == sec_status_unchecked && must_validate) {
703 verbose(VERB_ALGO, "Cache reply: unchecked entry needs "
704 "validation");
705 goto bail_out; /* need to validate cache entry first */
706 } else if(rep->security == sec_status_secure) {
707 if(reply_all_rrsets_secure(rep)) {
708 *is_secure_answer = 1;
709 } else {
710 if(must_validate) {
711 verbose(VERB_ALGO, "Cache reply: secure entry"
712 " changed status");
713 goto bail_out; /* rrset changed, re-verify */
714 }
715 *is_secure_answer = 0;
716 }
717 } else *is_secure_answer = 0;
718
719 edns_bak = *edns;
720 edns->edns_version = EDNS_ADVERTISED_VERSION;
721 edns->udp_size = EDNS_ADVERTISED_SIZE;
722 edns->ext_rcode = 0;
723 edns->bits &= EDNS_DO;
724 if(!inplace_cb_reply_cache_call(&worker->env, qinfo, NULL, rep,
725 (int)(flags&LDNS_RCODE_MASK), edns, repinfo, worker->scratchpad,
726 worker->env.now_tv))
727 goto bail_out;
728 *alias_rrset = NULL; /* avoid confusion if caller set it to non-NULL */
729 if((worker->daemon->use_response_ip || worker->daemon->use_rpz) &&
730 !partial_rep && !apply_respip_action(worker, qinfo, cinfo, rep,
731 repinfo, alias_rrset,
732 &encode_rep, worker->env.auth_zones)) {
733 goto bail_out;
734 } else if(partial_rep &&
735 !respip_merge_cname(partial_rep, qinfo, rep, cinfo,
736 must_validate, &encode_rep, worker->scratchpad,
737 worker->env.auth_zones)) {
738 goto bail_out;
739 }
740 if(encode_rep != rep) {
741 /* if rewritten, it can't be considered "secure" */
742 *is_secure_answer = 0;
743 }
744 if(!encode_rep || *alias_rrset) {
745 if(!encode_rep)
746 *need_drop = 1;
747 else {
748 /* If a partial CNAME chain is found, we first need to
749 * make a copy of the reply in the scratchpad so we
750 * can release the locks and lookup the cache again. */
751 *partial_repp = reply_info_copy(encode_rep, NULL,
752 worker->scratchpad);
753 if(!*partial_repp)
754 goto bail_out;
755 }
756 } else if(!apply_edns_options(edns, &edns_bak, worker->env.cfg,
757 repinfo->c, worker->scratchpad) ||
758 !reply_info_answer_encode(qinfo, encode_rep, id, flags,
759 repinfo->c->buffer, timenow, 1, worker->scratchpad,
760 udpsize, edns, (int)(edns->bits & EDNS_DO), *is_secure_answer)) {
761 if(!inplace_cb_reply_servfail_call(&worker->env, qinfo, NULL, NULL,
762 LDNS_RCODE_SERVFAIL, edns, repinfo, worker->scratchpad,
763 worker->env.now_tv))
764 edns->opt_list = NULL;
765 error_encode(repinfo->c->buffer, LDNS_RCODE_SERVFAIL,
766 qinfo, id, flags, edns);
767 }
768 /* cannot send the reply right now, because blocking network syscall
769 * is bad while holding locks. */
770 rrset_array_unlock_touch(worker->env.rrset_cache, worker->scratchpad,
771 rep->ref, rep->rrset_count);
772 /* go and return this buffer to the client */
773 return 1;
774
775 bail_out:
776 rrset_array_unlock_touch(worker->env.rrset_cache,
777 worker->scratchpad, rep->ref, rep->rrset_count);
778 return 0;
779 }
780
781 /** Reply to client and perform prefetch to keep cache up to date. */
782 static void
reply_and_prefetch(struct worker * worker,struct query_info * qinfo,uint16_t flags,struct comm_reply * repinfo,time_t leeway,int noreply)783 reply_and_prefetch(struct worker* worker, struct query_info* qinfo,
784 uint16_t flags, struct comm_reply* repinfo, time_t leeway, int noreply)
785 {
786 /* first send answer to client to keep its latency
787 * as small as a cachereply */
788 if(!noreply) {
789 if(repinfo->c->tcp_req_info) {
790 sldns_buffer_copy(
791 repinfo->c->tcp_req_info->spool_buffer,
792 repinfo->c->buffer);
793 }
794 comm_point_send_reply(repinfo);
795 }
796 server_stats_prefetch(&worker->stats, worker);
797
798 /* create the prefetch in the mesh as a normal lookup without
799 * client addrs waiting, which has the cache blacklisted (to bypass
800 * the cache and go to the network for the data). */
801 /* this (potentially) runs the mesh for the new query */
802 mesh_new_prefetch(worker->env.mesh, qinfo, flags, leeway +
803 PREFETCH_EXPIRY_ADD);
804 }
805
806 /**
807 * Fill CH class answer into buffer. Keeps query.
808 * @param pkt: buffer
809 * @param str: string to put into text record (<255).
810 * array of strings, every string becomes a text record.
811 * @param num: number of strings in array.
812 * @param edns: edns reply information.
813 * @param worker: worker with scratch region.
814 * @param repinfo: reply information for a communication point.
815 */
816 static void
chaos_replystr(sldns_buffer * pkt,char ** str,int num,struct edns_data * edns,struct worker * worker,struct comm_reply * repinfo)817 chaos_replystr(sldns_buffer* pkt, char** str, int num, struct edns_data* edns,
818 struct worker* worker, struct comm_reply* repinfo)
819 {
820 int i;
821 unsigned int rd = LDNS_RD_WIRE(sldns_buffer_begin(pkt));
822 unsigned int cd = LDNS_CD_WIRE(sldns_buffer_begin(pkt));
823 sldns_buffer_clear(pkt);
824 sldns_buffer_skip(pkt, (ssize_t)sizeof(uint16_t)); /* skip id */
825 sldns_buffer_write_u16(pkt, (uint16_t)(BIT_QR|BIT_RA));
826 if(rd) LDNS_RD_SET(sldns_buffer_begin(pkt));
827 if(cd) LDNS_CD_SET(sldns_buffer_begin(pkt));
828 sldns_buffer_write_u16(pkt, 1); /* qdcount */
829 sldns_buffer_write_u16(pkt, (uint16_t)num); /* ancount */
830 sldns_buffer_write_u16(pkt, 0); /* nscount */
831 sldns_buffer_write_u16(pkt, 0); /* arcount */
832 (void)query_dname_len(pkt); /* skip qname */
833 sldns_buffer_skip(pkt, (ssize_t)sizeof(uint16_t)); /* skip qtype */
834 sldns_buffer_skip(pkt, (ssize_t)sizeof(uint16_t)); /* skip qclass */
835 for(i=0; i<num; i++) {
836 size_t len = strlen(str[i]);
837 if(len>255) len=255; /* cap size of TXT record */
838 sldns_buffer_write_u16(pkt, 0xc00c); /* compr ptr to query */
839 sldns_buffer_write_u16(pkt, LDNS_RR_TYPE_TXT);
840 sldns_buffer_write_u16(pkt, LDNS_RR_CLASS_CH);
841 sldns_buffer_write_u32(pkt, 0); /* TTL */
842 sldns_buffer_write_u16(pkt, sizeof(uint8_t) + len);
843 sldns_buffer_write_u8(pkt, len);
844 sldns_buffer_write(pkt, str[i], len);
845 }
846 sldns_buffer_flip(pkt);
847 edns->edns_version = EDNS_ADVERTISED_VERSION;
848 edns->udp_size = EDNS_ADVERTISED_SIZE;
849 edns->bits &= EDNS_DO;
850 if(!inplace_cb_reply_local_call(&worker->env, NULL, NULL, NULL,
851 LDNS_RCODE_NOERROR, edns, repinfo, worker->scratchpad,
852 worker->env.now_tv))
853 edns->opt_list = NULL;
854 if(sldns_buffer_capacity(pkt) >=
855 sldns_buffer_limit(pkt)+calc_edns_field_size(edns))
856 attach_edns_record(pkt, edns);
857 }
858
859 /** Reply with one string */
860 static void
chaos_replyonestr(sldns_buffer * pkt,const char * str,struct edns_data * edns,struct worker * worker,struct comm_reply * repinfo)861 chaos_replyonestr(sldns_buffer* pkt, const char* str, struct edns_data* edns,
862 struct worker* worker, struct comm_reply* repinfo)
863 {
864 chaos_replystr(pkt, (char**)&str, 1, edns, worker, repinfo);
865 }
866
867 /**
868 * Create CH class trustanchor answer.
869 * @param pkt: buffer
870 * @param edns: edns reply information.
871 * @param w: worker with scratch region.
872 * @param repinfo: reply information for a communication point.
873 */
874 static void
chaos_trustanchor(sldns_buffer * pkt,struct edns_data * edns,struct worker * w,struct comm_reply * repinfo)875 chaos_trustanchor(sldns_buffer* pkt, struct edns_data* edns, struct worker* w,
876 struct comm_reply* repinfo)
877 {
878 #define TA_RESPONSE_MAX_TXT 16 /* max number of TXT records */
879 #define TA_RESPONSE_MAX_TAGS 32 /* max number of tags printed per zone */
880 char* str_array[TA_RESPONSE_MAX_TXT];
881 uint16_t tags[TA_RESPONSE_MAX_TAGS];
882 int num = 0;
883 struct trust_anchor* ta;
884
885 if(!w->env.need_to_validate) {
886 /* no validator module, reply no trustanchors */
887 chaos_replystr(pkt, NULL, 0, edns, w, repinfo);
888 return;
889 }
890
891 /* fill the string with contents */
892 lock_basic_lock(&w->env.anchors->lock);
893 RBTREE_FOR(ta, struct trust_anchor*, w->env.anchors->tree) {
894 char* str;
895 size_t i, numtag, str_len = 255;
896 if(num == TA_RESPONSE_MAX_TXT) continue;
897 str = (char*)regional_alloc(w->scratchpad, str_len);
898 if(!str) continue;
899 lock_basic_lock(&ta->lock);
900 numtag = anchor_list_keytags(ta, tags, TA_RESPONSE_MAX_TAGS);
901 if(numtag == 0) {
902 /* empty, insecure point */
903 lock_basic_unlock(&ta->lock);
904 continue;
905 }
906 str_array[num] = str;
907 num++;
908
909 /* spool name of anchor */
910 (void)sldns_wire2str_dname_buf(ta->name, ta->namelen, str, str_len);
911 str_len -= strlen(str); str += strlen(str);
912 /* spool tags */
913 for(i=0; i<numtag; i++) {
914 snprintf(str, str_len, " %u", (unsigned)tags[i]);
915 str_len -= strlen(str); str += strlen(str);
916 }
917 lock_basic_unlock(&ta->lock);
918 }
919 lock_basic_unlock(&w->env.anchors->lock);
920
921 chaos_replystr(pkt, str_array, num, edns, w, repinfo);
922 regional_free_all(w->scratchpad);
923 }
924
925 /**
926 * Answer CH class queries.
927 * @param w: worker
928 * @param qinfo: query info. Pointer into packet buffer.
929 * @param edns: edns info from query.
930 * @param repinfo: reply information for a communication point.
931 * @param pkt: packet buffer.
932 * @return: true if a reply is to be sent.
933 */
934 static int
answer_chaos(struct worker * w,struct query_info * qinfo,struct edns_data * edns,struct comm_reply * repinfo,sldns_buffer * pkt)935 answer_chaos(struct worker* w, struct query_info* qinfo,
936 struct edns_data* edns, struct comm_reply* repinfo, sldns_buffer* pkt)
937 {
938 struct config_file* cfg = w->env.cfg;
939 if(qinfo->qtype != LDNS_RR_TYPE_ANY && qinfo->qtype != LDNS_RR_TYPE_TXT)
940 return 0;
941 if(query_dname_compare(qinfo->qname,
942 (uint8_t*)"\002id\006server") == 0 ||
943 query_dname_compare(qinfo->qname,
944 (uint8_t*)"\010hostname\004bind") == 0)
945 {
946 if(cfg->hide_identity)
947 return 0;
948 if(cfg->identity==NULL || cfg->identity[0]==0) {
949 char buf[MAXHOSTNAMELEN+1];
950 if (gethostname(buf, MAXHOSTNAMELEN) == 0) {
951 buf[MAXHOSTNAMELEN] = 0;
952 chaos_replyonestr(pkt, buf, edns, w, repinfo);
953 } else {
954 log_err("gethostname: %s", strerror(errno));
955 chaos_replyonestr(pkt, "no hostname", edns, w, repinfo);
956 }
957 }
958 else chaos_replyonestr(pkt, cfg->identity, edns, w, repinfo);
959 return 1;
960 }
961 if(query_dname_compare(qinfo->qname,
962 (uint8_t*)"\007version\006server") == 0 ||
963 query_dname_compare(qinfo->qname,
964 (uint8_t*)"\007version\004bind") == 0)
965 {
966 if(cfg->hide_version)
967 return 0;
968 if(cfg->version==NULL || cfg->version[0]==0)
969 chaos_replyonestr(pkt, PACKAGE_STRING, edns, w, repinfo);
970 else chaos_replyonestr(pkt, cfg->version, edns, w, repinfo);
971 return 1;
972 }
973 if(query_dname_compare(qinfo->qname,
974 (uint8_t*)"\013trustanchor\007unbound") == 0)
975 {
976 if(cfg->hide_trustanchor)
977 return 0;
978 chaos_trustanchor(pkt, edns, w, repinfo);
979 return 1;
980 }
981
982 return 0;
983 }
984
985 /**
986 * Answer notify queries. These are notifies for authoritative zones,
987 * the reply is an ack that the notify has been received. We need to check
988 * access permission here.
989 * @param w: worker
990 * @param qinfo: query info. Pointer into packet buffer.
991 * @param edns: edns info from query.
992 * @param repinfo: reply info with source address.
993 * @param pkt: packet buffer.
994 */
995 static void
answer_notify(struct worker * w,struct query_info * qinfo,struct edns_data * edns,sldns_buffer * pkt,struct comm_reply * repinfo)996 answer_notify(struct worker* w, struct query_info* qinfo,
997 struct edns_data* edns, sldns_buffer* pkt, struct comm_reply* repinfo)
998 {
999 int refused = 0;
1000 int rcode = LDNS_RCODE_NOERROR;
1001 uint32_t serial = 0;
1002 int has_serial;
1003 if(!w->env.auth_zones) return;
1004 has_serial = auth_zone_parse_notify_serial(pkt, &serial);
1005 if(auth_zones_notify(w->env.auth_zones, &w->env, qinfo->qname,
1006 qinfo->qname_len, qinfo->qclass, &repinfo->addr,
1007 repinfo->addrlen, has_serial, serial, &refused)) {
1008 rcode = LDNS_RCODE_NOERROR;
1009 } else {
1010 if(refused)
1011 rcode = LDNS_RCODE_REFUSED;
1012 else rcode = LDNS_RCODE_SERVFAIL;
1013 }
1014
1015 if(verbosity >= VERB_DETAIL) {
1016 char buf[380];
1017 char zname[255+1];
1018 char sr[25];
1019 dname_str(qinfo->qname, zname);
1020 sr[0]=0;
1021 if(has_serial)
1022 snprintf(sr, sizeof(sr), "serial %u ",
1023 (unsigned)serial);
1024 if(rcode == LDNS_RCODE_REFUSED)
1025 snprintf(buf, sizeof(buf),
1026 "refused NOTIFY %sfor %s from", sr, zname);
1027 else if(rcode == LDNS_RCODE_SERVFAIL)
1028 snprintf(buf, sizeof(buf),
1029 "servfail for NOTIFY %sfor %s from", sr, zname);
1030 else snprintf(buf, sizeof(buf),
1031 "received NOTIFY %sfor %s from", sr, zname);
1032 log_addr(VERB_DETAIL, buf, &repinfo->addr, repinfo->addrlen);
1033 }
1034 edns->edns_version = EDNS_ADVERTISED_VERSION;
1035 edns->udp_size = EDNS_ADVERTISED_SIZE;
1036 edns->ext_rcode = 0;
1037 edns->bits &= EDNS_DO;
1038 edns->opt_list = NULL;
1039 error_encode(pkt, rcode, qinfo,
1040 *(uint16_t*)(void *)sldns_buffer_begin(pkt),
1041 sldns_buffer_read_u16_at(pkt, 2), edns);
1042 LDNS_OPCODE_SET(sldns_buffer_begin(pkt), LDNS_PACKET_NOTIFY);
1043 }
1044
1045 static int
deny_refuse(struct comm_point * c,enum acl_access acl,enum acl_access deny,enum acl_access refuse,struct worker * worker,struct comm_reply * repinfo)1046 deny_refuse(struct comm_point* c, enum acl_access acl,
1047 enum acl_access deny, enum acl_access refuse,
1048 struct worker* worker, struct comm_reply* repinfo)
1049 {
1050 if(acl == deny) {
1051 comm_point_drop_reply(repinfo);
1052 if(worker->stats.extended)
1053 worker->stats.unwanted_queries++;
1054 return 0;
1055 } else if(acl == refuse) {
1056 log_addr(VERB_ALGO, "refused query from",
1057 &repinfo->addr, repinfo->addrlen);
1058 log_buf(VERB_ALGO, "refuse", c->buffer);
1059 if(worker->stats.extended)
1060 worker->stats.unwanted_queries++;
1061 if(worker_check_request(c->buffer, worker) == -1) {
1062 comm_point_drop_reply(repinfo);
1063 return 0; /* discard this */
1064 }
1065 sldns_buffer_set_limit(c->buffer, LDNS_HEADER_SIZE);
1066 sldns_buffer_write_at(c->buffer, 4,
1067 (uint8_t*)"\0\0\0\0\0\0\0\0", 8);
1068 LDNS_QR_SET(sldns_buffer_begin(c->buffer));
1069 LDNS_RCODE_SET(sldns_buffer_begin(c->buffer),
1070 LDNS_RCODE_REFUSED);
1071 sldns_buffer_set_position(c->buffer, LDNS_HEADER_SIZE);
1072 sldns_buffer_flip(c->buffer);
1073 return 1;
1074 }
1075
1076 return -1;
1077 }
1078
1079 static int
deny_refuse_all(struct comm_point * c,enum acl_access acl,struct worker * worker,struct comm_reply * repinfo)1080 deny_refuse_all(struct comm_point* c, enum acl_access acl,
1081 struct worker* worker, struct comm_reply* repinfo)
1082 {
1083 return deny_refuse(c, acl, acl_deny, acl_refuse, worker, repinfo);
1084 }
1085
1086 static int
deny_refuse_non_local(struct comm_point * c,enum acl_access acl,struct worker * worker,struct comm_reply * repinfo)1087 deny_refuse_non_local(struct comm_point* c, enum acl_access acl,
1088 struct worker* worker, struct comm_reply* repinfo)
1089 {
1090 return deny_refuse(c, acl, acl_deny_non_local, acl_refuse_non_local, worker, repinfo);
1091 }
1092
1093 int
worker_handle_request(struct comm_point * c,void * arg,int error,struct comm_reply * repinfo)1094 worker_handle_request(struct comm_point* c, void* arg, int error,
1095 struct comm_reply* repinfo)
1096 {
1097 struct worker* worker = (struct worker*)arg;
1098 int ret;
1099 hashvalue_type h;
1100 struct lruhash_entry* e;
1101 struct query_info qinfo;
1102 struct edns_data edns;
1103 enum acl_access acl;
1104 struct acl_addr* acladdr;
1105 int rc = 0;
1106 int need_drop = 0;
1107 int is_expired_answer = 0;
1108 int is_secure_answer = 0;
1109 /* We might have to chase a CNAME chain internally, in which case
1110 * we'll have up to two replies and combine them to build a complete
1111 * answer. These variables control this case. */
1112 struct ub_packed_rrset_key* alias_rrset = NULL;
1113 struct reply_info* partial_rep = NULL;
1114 struct query_info* lookup_qinfo = &qinfo;
1115 struct query_info qinfo_tmp; /* placeholder for lookup_qinfo */
1116 struct respip_client_info* cinfo = NULL, cinfo_tmp;
1117 memset(&qinfo, 0, sizeof(qinfo));
1118
1119 if((error != NETEVENT_NOERROR && error != NETEVENT_DONE)|| !repinfo) {
1120 /* some bad tcp query DNS formats give these error calls */
1121 verbose(VERB_ALGO, "handle request called with err=%d", error);
1122 return 0;
1123 }
1124 #ifdef USE_DNSCRYPT
1125 repinfo->max_udp_size = worker->daemon->cfg->max_udp_size;
1126 if(!dnsc_handle_curved_request(worker->daemon->dnscenv, repinfo)) {
1127 worker->stats.num_query_dnscrypt_crypted_malformed++;
1128 return 0;
1129 }
1130 if(c->dnscrypt && !repinfo->is_dnscrypted) {
1131 char buf[LDNS_MAX_DOMAINLEN+1];
1132 /* Check if this is unencrypted and asking for certs */
1133 if(worker_check_request(c->buffer, worker) != 0) {
1134 verbose(VERB_ALGO,
1135 "dnscrypt: worker check request: bad query.");
1136 log_addr(VERB_CLIENT,"from",&repinfo->addr,
1137 repinfo->addrlen);
1138 comm_point_drop_reply(repinfo);
1139 return 0;
1140 }
1141 if(!query_info_parse(&qinfo, c->buffer)) {
1142 verbose(VERB_ALGO,
1143 "dnscrypt: worker parse request: formerror.");
1144 log_addr(VERB_CLIENT, "from", &repinfo->addr,
1145 repinfo->addrlen);
1146 comm_point_drop_reply(repinfo);
1147 return 0;
1148 }
1149 dname_str(qinfo.qname, buf);
1150 if(!(qinfo.qtype == LDNS_RR_TYPE_TXT &&
1151 strcasecmp(buf,
1152 worker->daemon->dnscenv->provider_name) == 0)) {
1153 verbose(VERB_ALGO,
1154 "dnscrypt: not TXT \"%s\". Received: %s \"%s\"",
1155 worker->daemon->dnscenv->provider_name,
1156 sldns_rr_descript(qinfo.qtype)->_name,
1157 buf);
1158 comm_point_drop_reply(repinfo);
1159 worker->stats.num_query_dnscrypt_cleartext++;
1160 return 0;
1161 }
1162 worker->stats.num_query_dnscrypt_cert++;
1163 sldns_buffer_rewind(c->buffer);
1164 } else if(c->dnscrypt && repinfo->is_dnscrypted) {
1165 worker->stats.num_query_dnscrypt_crypted++;
1166 }
1167 #endif
1168 #ifdef USE_DNSTAP
1169 if(worker->dtenv.log_client_query_messages)
1170 dt_msg_send_client_query(&worker->dtenv, &repinfo->addr, c->type,
1171 c->buffer);
1172 #endif
1173 acladdr = acl_addr_lookup(worker->daemon->acl, &repinfo->addr,
1174 repinfo->addrlen);
1175 acl = acl_get_control(acladdr);
1176 if((ret=deny_refuse_all(c, acl, worker, repinfo)) != -1)
1177 {
1178 if(ret == 1)
1179 goto send_reply;
1180 return ret;
1181 }
1182 if((ret=worker_check_request(c->buffer, worker)) != 0) {
1183 verbose(VERB_ALGO, "worker check request: bad query.");
1184 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1185 if(ret != -1) {
1186 LDNS_QR_SET(sldns_buffer_begin(c->buffer));
1187 LDNS_RCODE_SET(sldns_buffer_begin(c->buffer), ret);
1188 return 1;
1189 }
1190 comm_point_drop_reply(repinfo);
1191 return 0;
1192 }
1193
1194 worker->stats.num_queries++;
1195
1196 /* check if this query should be dropped based on source ip rate limiting */
1197 if(!infra_ip_ratelimit_inc(worker->env.infra_cache, repinfo,
1198 *worker->env.now, c->buffer)) {
1199 /* See if we are passed through with slip factor */
1200 if(worker->env.cfg->ip_ratelimit_factor != 0 &&
1201 ub_random_max(worker->env.rnd,
1202 worker->env.cfg->ip_ratelimit_factor) == 0) {
1203
1204 char addrbuf[128];
1205 addr_to_str(&repinfo->addr, repinfo->addrlen,
1206 addrbuf, sizeof(addrbuf));
1207 verbose(VERB_QUERY, "ip_ratelimit allowed through for ip address %s because of slip in ip_ratelimit_factor",
1208 addrbuf);
1209 } else {
1210 worker->stats.num_queries_ip_ratelimited++;
1211 comm_point_drop_reply(repinfo);
1212 return 0;
1213 }
1214 }
1215
1216 /* see if query is in the cache */
1217 if(!query_info_parse(&qinfo, c->buffer)) {
1218 verbose(VERB_ALGO, "worker parse request: formerror.");
1219 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1220 memset(&qinfo, 0, sizeof(qinfo)); /* zero qinfo.qname */
1221 if(worker_err_ratelimit(worker, LDNS_RCODE_FORMERR) == -1) {
1222 comm_point_drop_reply(repinfo);
1223 return 0;
1224 }
1225 sldns_buffer_rewind(c->buffer);
1226 LDNS_QR_SET(sldns_buffer_begin(c->buffer));
1227 LDNS_RCODE_SET(sldns_buffer_begin(c->buffer),
1228 LDNS_RCODE_FORMERR);
1229 goto send_reply;
1230 }
1231 if(worker->env.cfg->log_queries) {
1232 char ip[128];
1233 addr_to_str(&repinfo->addr, repinfo->addrlen, ip, sizeof(ip));
1234 log_query_in(ip, qinfo.qname, qinfo.qtype, qinfo.qclass);
1235 }
1236 if(qinfo.qtype == LDNS_RR_TYPE_AXFR ||
1237 qinfo.qtype == LDNS_RR_TYPE_IXFR) {
1238 verbose(VERB_ALGO, "worker request: refused zone transfer.");
1239 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1240 sldns_buffer_rewind(c->buffer);
1241 LDNS_QR_SET(sldns_buffer_begin(c->buffer));
1242 LDNS_RCODE_SET(sldns_buffer_begin(c->buffer),
1243 LDNS_RCODE_REFUSED);
1244 if(worker->stats.extended) {
1245 worker->stats.qtype[qinfo.qtype]++;
1246 }
1247 goto send_reply;
1248 }
1249 if(qinfo.qtype == LDNS_RR_TYPE_OPT ||
1250 qinfo.qtype == LDNS_RR_TYPE_TSIG ||
1251 qinfo.qtype == LDNS_RR_TYPE_TKEY ||
1252 qinfo.qtype == LDNS_RR_TYPE_MAILA ||
1253 qinfo.qtype == LDNS_RR_TYPE_MAILB ||
1254 (qinfo.qtype >= 128 && qinfo.qtype <= 248)) {
1255 verbose(VERB_ALGO, "worker request: formerror for meta-type.");
1256 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1257 if(worker_err_ratelimit(worker, LDNS_RCODE_FORMERR) == -1) {
1258 comm_point_drop_reply(repinfo);
1259 return 0;
1260 }
1261 sldns_buffer_rewind(c->buffer);
1262 LDNS_QR_SET(sldns_buffer_begin(c->buffer));
1263 LDNS_RCODE_SET(sldns_buffer_begin(c->buffer),
1264 LDNS_RCODE_FORMERR);
1265 if(worker->stats.extended) {
1266 worker->stats.qtype[qinfo.qtype]++;
1267 }
1268 goto send_reply;
1269 }
1270 if((ret=parse_edns_from_pkt(c->buffer, &edns, worker->scratchpad)) != 0) {
1271 struct edns_data reply_edns;
1272 verbose(VERB_ALGO, "worker parse edns: formerror.");
1273 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1274 memset(&reply_edns, 0, sizeof(reply_edns));
1275 reply_edns.edns_present = 1;
1276 reply_edns.udp_size = EDNS_ADVERTISED_SIZE;
1277 LDNS_RCODE_SET(sldns_buffer_begin(c->buffer), ret);
1278 error_encode(c->buffer, ret, &qinfo,
1279 *(uint16_t*)(void *)sldns_buffer_begin(c->buffer),
1280 sldns_buffer_read_u16_at(c->buffer, 2), &reply_edns);
1281 regional_free_all(worker->scratchpad);
1282 goto send_reply;
1283 }
1284 if(edns.edns_present) {
1285 struct edns_option* edns_opt;
1286 if(edns.edns_version != 0) {
1287 edns.ext_rcode = (uint8_t)(EDNS_RCODE_BADVERS>>4);
1288 edns.edns_version = EDNS_ADVERTISED_VERSION;
1289 edns.udp_size = EDNS_ADVERTISED_SIZE;
1290 edns.bits &= EDNS_DO;
1291 edns.opt_list = NULL;
1292 edns.padding_block_size = 0;
1293 verbose(VERB_ALGO, "query with bad edns version.");
1294 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1295 error_encode(c->buffer, EDNS_RCODE_BADVERS&0xf, &qinfo,
1296 *(uint16_t*)(void *)sldns_buffer_begin(c->buffer),
1297 sldns_buffer_read_u16_at(c->buffer, 2), NULL);
1298 if(sldns_buffer_capacity(c->buffer) >=
1299 sldns_buffer_limit(c->buffer)+calc_edns_field_size(&edns))
1300 attach_edns_record(c->buffer, &edns);
1301 regional_free_all(worker->scratchpad);
1302 goto send_reply;
1303 }
1304 if(edns.udp_size < NORMAL_UDP_SIZE &&
1305 worker->daemon->cfg->harden_short_bufsize) {
1306 verbose(VERB_QUERY, "worker request: EDNS bufsize %d ignored",
1307 (int)edns.udp_size);
1308 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1309 edns.udp_size = NORMAL_UDP_SIZE;
1310 }
1311 if(c->type != comm_udp) {
1312 edns_opt = edns_opt_list_find(edns.opt_list, LDNS_EDNS_KEEPALIVE);
1313 if(edns_opt && edns_opt->opt_len > 0) {
1314 edns.ext_rcode = 0;
1315 edns.edns_version = EDNS_ADVERTISED_VERSION;
1316 edns.udp_size = EDNS_ADVERTISED_SIZE;
1317 edns.bits &= EDNS_DO;
1318 edns.opt_list = NULL;
1319 verbose(VERB_ALGO, "query with bad edns keepalive.");
1320 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1321 error_encode(c->buffer, LDNS_RCODE_FORMERR, &qinfo,
1322 *(uint16_t*)(void *)sldns_buffer_begin(c->buffer),
1323 sldns_buffer_read_u16_at(c->buffer, 2), NULL);
1324 if(sldns_buffer_capacity(c->buffer) >=
1325 sldns_buffer_limit(c->buffer)+calc_edns_field_size(&edns))
1326 attach_edns_record(c->buffer, &edns);
1327 regional_free_all(worker->scratchpad);
1328 goto send_reply;
1329 }
1330 }
1331 }
1332 if(edns.udp_size > worker->daemon->cfg->max_udp_size &&
1333 c->type == comm_udp) {
1334 verbose(VERB_QUERY,
1335 "worker request: max UDP reply size modified"
1336 " (%d to max-udp-size)", (int)edns.udp_size);
1337 log_addr(VERB_CLIENT,"from",&repinfo->addr, repinfo->addrlen);
1338 edns.udp_size = worker->daemon->cfg->max_udp_size;
1339 }
1340 if(edns.udp_size < LDNS_HEADER_SIZE) {
1341 verbose(VERB_ALGO, "worker request: edns is too small.");
1342 log_addr(VERB_CLIENT, "from", &repinfo->addr, repinfo->addrlen);
1343 LDNS_QR_SET(sldns_buffer_begin(c->buffer));
1344 LDNS_TC_SET(sldns_buffer_begin(c->buffer));
1345 LDNS_RCODE_SET(sldns_buffer_begin(c->buffer),
1346 LDNS_RCODE_SERVFAIL);
1347 sldns_buffer_set_position(c->buffer, LDNS_HEADER_SIZE);
1348 sldns_buffer_write_at(c->buffer, 4,
1349 (uint8_t*)"\0\0\0\0\0\0\0\0", 8);
1350 sldns_buffer_flip(c->buffer);
1351 regional_free_all(worker->scratchpad);
1352 goto send_reply;
1353 }
1354 if(worker->stats.extended)
1355 server_stats_insquery(&worker->stats, c, qinfo.qtype,
1356 qinfo.qclass, &edns, repinfo);
1357 if(c->type != comm_udp)
1358 edns.udp_size = 65535; /* max size for TCP replies */
1359 if(qinfo.qclass == LDNS_RR_CLASS_CH && answer_chaos(worker, &qinfo,
1360 &edns, repinfo, c->buffer)) {
1361 regional_free_all(worker->scratchpad);
1362 goto send_reply;
1363 }
1364 if(LDNS_OPCODE_WIRE(sldns_buffer_begin(c->buffer)) ==
1365 LDNS_PACKET_NOTIFY) {
1366 answer_notify(worker, &qinfo, &edns, c->buffer, repinfo);
1367 regional_free_all(worker->scratchpad);
1368 goto send_reply;
1369 }
1370 if(local_zones_answer(worker->daemon->local_zones, &worker->env, &qinfo,
1371 &edns, c->buffer, worker->scratchpad, repinfo, acladdr->taglist,
1372 acladdr->taglen, acladdr->tag_actions,
1373 acladdr->tag_actions_size, acladdr->tag_datas,
1374 acladdr->tag_datas_size, worker->daemon->cfg->tagname,
1375 worker->daemon->cfg->num_tags, acladdr->view)) {
1376 regional_free_all(worker->scratchpad);
1377 if(sldns_buffer_limit(c->buffer) == 0) {
1378 comm_point_drop_reply(repinfo);
1379 return 0;
1380 }
1381 goto send_reply;
1382 }
1383 if(worker->env.auth_zones &&
1384 rpz_apply_qname_trigger(worker->env.auth_zones,
1385 &worker->env, &qinfo, &edns, c->buffer, worker->scratchpad,
1386 repinfo, acladdr->taglist, acladdr->taglen, &worker->stats)) {
1387 regional_free_all(worker->scratchpad);
1388 if(sldns_buffer_limit(c->buffer) == 0) {
1389 comm_point_drop_reply(repinfo);
1390 return 0;
1391 }
1392 goto send_reply;
1393 }
1394 if(worker->env.auth_zones &&
1395 auth_zones_answer(worker->env.auth_zones, &worker->env,
1396 &qinfo, &edns, repinfo, c->buffer, worker->scratchpad)) {
1397 regional_free_all(worker->scratchpad);
1398 if(sldns_buffer_limit(c->buffer) == 0) {
1399 comm_point_drop_reply(repinfo);
1400 return 0;
1401 }
1402 /* set RA for everyone that can have recursion (based on
1403 * access control list) */
1404 if(LDNS_RD_WIRE(sldns_buffer_begin(c->buffer)) &&
1405 acl != acl_deny_non_local && acl != acl_refuse_non_local)
1406 LDNS_RA_SET(sldns_buffer_begin(c->buffer));
1407 goto send_reply;
1408 }
1409
1410 /* We've looked in our local zones. If the answer isn't there, we
1411 * might need to bail out based on ACLs now. */
1412 if((ret=deny_refuse_non_local(c, acl, worker, repinfo)) != -1)
1413 {
1414 regional_free_all(worker->scratchpad);
1415 if(ret == 1)
1416 goto send_reply;
1417 return ret;
1418 }
1419
1420 /* If this request does not have the recursion bit set, verify
1421 * ACLs allow the recursion bit to be treated as set. */
1422 if(!(LDNS_RD_WIRE(sldns_buffer_begin(c->buffer))) &&
1423 acl == acl_allow_setrd ) {
1424 LDNS_RD_SET(sldns_buffer_begin(c->buffer));
1425 }
1426
1427 /* If this request does not have the recursion bit set, verify
1428 * ACLs allow the snooping. */
1429 if(!(LDNS_RD_WIRE(sldns_buffer_begin(c->buffer))) &&
1430 acl != acl_allow_snoop ) {
1431 error_encode(c->buffer, LDNS_RCODE_REFUSED, &qinfo,
1432 *(uint16_t*)(void *)sldns_buffer_begin(c->buffer),
1433 sldns_buffer_read_u16_at(c->buffer, 2), NULL);
1434 regional_free_all(worker->scratchpad);
1435 log_addr(VERB_ALGO, "refused nonrec (cache snoop) query from",
1436 &repinfo->addr, repinfo->addrlen);
1437 goto send_reply;
1438 }
1439
1440 /* If we've found a local alias, replace the qname with the alias
1441 * target before resolving it. */
1442 if(qinfo.local_alias) {
1443 struct ub_packed_rrset_key* rrset = qinfo.local_alias->rrset;
1444 struct packed_rrset_data* d = rrset->entry.data;
1445
1446 /* Sanity check: our current implementation only supports
1447 * a single CNAME RRset as a local alias. */
1448 if(qinfo.local_alias->next ||
1449 rrset->rk.type != htons(LDNS_RR_TYPE_CNAME) ||
1450 d->count != 1) {
1451 log_err("assumption failure: unexpected local alias");
1452 regional_free_all(worker->scratchpad);
1453 return 0; /* drop it */
1454 }
1455 qinfo.qname = d->rr_data[0] + 2;
1456 qinfo.qname_len = d->rr_len[0] - 2;
1457 }
1458
1459 /* If we may apply IP-based actions to the answer, build the client
1460 * information. As this can be expensive, skip it if there is
1461 * absolutely no possibility of it. */
1462 if((worker->daemon->use_response_ip || worker->daemon->use_rpz) &&
1463 (qinfo.qtype == LDNS_RR_TYPE_A ||
1464 qinfo.qtype == LDNS_RR_TYPE_AAAA ||
1465 qinfo.qtype == LDNS_RR_TYPE_ANY)) {
1466 cinfo_tmp.taglist = acladdr->taglist;
1467 cinfo_tmp.taglen = acladdr->taglen;
1468 cinfo_tmp.tag_actions = acladdr->tag_actions;
1469 cinfo_tmp.tag_actions_size = acladdr->tag_actions_size;
1470 cinfo_tmp.tag_datas = acladdr->tag_datas;
1471 cinfo_tmp.tag_datas_size = acladdr->tag_datas_size;
1472 cinfo_tmp.view = acladdr->view;
1473 cinfo_tmp.respip_set = worker->daemon->respip_set;
1474 cinfo = &cinfo_tmp;
1475 }
1476
1477 lookup_cache:
1478 /* Lookup the cache. In case we chase an intermediate CNAME chain
1479 * this is a two-pass operation, and lookup_qinfo is different for
1480 * each pass. We should still pass the original qinfo to
1481 * answer_from_cache(), however, since it's used to build the reply. */
1482 if(!edns_bypass_cache_stage(edns.opt_list, &worker->env)) {
1483 is_expired_answer = 0;
1484 is_secure_answer = 0;
1485 h = query_info_hash(lookup_qinfo, sldns_buffer_read_u16_at(c->buffer, 2));
1486 if((e=slabhash_lookup(worker->env.msg_cache, h, lookup_qinfo, 0))) {
1487 /* answer from cache - we have acquired a readlock on it */
1488 if(answer_from_cache(worker, &qinfo,
1489 cinfo, &need_drop, &is_expired_answer, &is_secure_answer,
1490 &alias_rrset, &partial_rep, (struct reply_info*)e->data,
1491 *(uint16_t*)(void *)sldns_buffer_begin(c->buffer),
1492 sldns_buffer_read_u16_at(c->buffer, 2), repinfo,
1493 &edns)) {
1494 /* prefetch it if the prefetch TTL expired.
1495 * Note that if there is more than one pass
1496 * its qname must be that used for cache
1497 * lookup. */
1498 if((worker->env.cfg->prefetch && *worker->env.now >=
1499 ((struct reply_info*)e->data)->prefetch_ttl) ||
1500 (worker->env.cfg->serve_expired &&
1501 *worker->env.now >= ((struct reply_info*)e->data)->ttl)) {
1502
1503 time_t leeway = ((struct reply_info*)e->
1504 data)->ttl - *worker->env.now;
1505 if(((struct reply_info*)e->data)->ttl
1506 < *worker->env.now)
1507 leeway = 0;
1508 lock_rw_unlock(&e->lock);
1509 reply_and_prefetch(worker, lookup_qinfo,
1510 sldns_buffer_read_u16_at(c->buffer, 2),
1511 repinfo, leeway,
1512 (partial_rep || need_drop));
1513 if(!partial_rep) {
1514 rc = 0;
1515 regional_free_all(worker->scratchpad);
1516 goto send_reply_rc;
1517 }
1518 } else if(!partial_rep) {
1519 lock_rw_unlock(&e->lock);
1520 regional_free_all(worker->scratchpad);
1521 goto send_reply;
1522 } else {
1523 /* Note that we've already released the
1524 * lock if we're here after prefetch. */
1525 lock_rw_unlock(&e->lock);
1526 }
1527 /* We've found a partial reply ending with an
1528 * alias. Replace the lookup qinfo for the
1529 * alias target and lookup the cache again to
1530 * (possibly) complete the reply. As we're
1531 * passing the "base" reply, there will be no
1532 * more alias chasing. */
1533 memset(&qinfo_tmp, 0, sizeof(qinfo_tmp));
1534 get_cname_target(alias_rrset, &qinfo_tmp.qname,
1535 &qinfo_tmp.qname_len);
1536 if(!qinfo_tmp.qname) {
1537 log_err("unexpected: invalid answer alias");
1538 regional_free_all(worker->scratchpad);
1539 return 0; /* drop query */
1540 }
1541 qinfo_tmp.qtype = qinfo.qtype;
1542 qinfo_tmp.qclass = qinfo.qclass;
1543 lookup_qinfo = &qinfo_tmp;
1544 goto lookup_cache;
1545 }
1546 verbose(VERB_ALGO, "answer from the cache failed");
1547 lock_rw_unlock(&e->lock);
1548 }
1549 if(!LDNS_RD_WIRE(sldns_buffer_begin(c->buffer))) {
1550 if(answer_norec_from_cache(worker, &qinfo,
1551 *(uint16_t*)(void *)sldns_buffer_begin(c->buffer),
1552 sldns_buffer_read_u16_at(c->buffer, 2), repinfo,
1553 &edns)) {
1554 regional_free_all(worker->scratchpad);
1555 goto send_reply;
1556 }
1557 verbose(VERB_ALGO, "answer norec from cache -- "
1558 "need to validate or not primed");
1559 }
1560 }
1561 sldns_buffer_rewind(c->buffer);
1562 server_stats_querymiss(&worker->stats, worker);
1563
1564 if(verbosity >= VERB_CLIENT) {
1565 if(c->type == comm_udp)
1566 log_addr(VERB_CLIENT, "udp request from",
1567 &repinfo->addr, repinfo->addrlen);
1568 else log_addr(VERB_CLIENT, "tcp request from",
1569 &repinfo->addr, repinfo->addrlen);
1570 }
1571
1572 /* grab a work request structure for this new request */
1573 mesh_new_client(worker->env.mesh, &qinfo, cinfo,
1574 sldns_buffer_read_u16_at(c->buffer, 2),
1575 &edns, repinfo, *(uint16_t*)(void *)sldns_buffer_begin(c->buffer));
1576 regional_free_all(worker->scratchpad);
1577 worker_mem_report(worker, NULL);
1578 return 0;
1579
1580 send_reply:
1581 rc = 1;
1582 send_reply_rc:
1583 if(need_drop) {
1584 comm_point_drop_reply(repinfo);
1585 return 0;
1586 }
1587 if(is_expired_answer) {
1588 worker->stats.ans_expired++;
1589 }
1590 server_stats_insrcode(&worker->stats, c->buffer);
1591 if(worker->stats.extended) {
1592 if(is_secure_answer) worker->stats.ans_secure++;
1593 }
1594 #ifdef USE_DNSTAP
1595 if(worker->dtenv.log_client_response_messages)
1596 dt_msg_send_client_response(&worker->dtenv, &repinfo->addr,
1597 c->type, c->buffer);
1598 #endif
1599 if(worker->env.cfg->log_replies)
1600 {
1601 struct timeval tv;
1602 memset(&tv, 0, sizeof(tv));
1603 if(qinfo.local_alias && qinfo.local_alias->rrset &&
1604 qinfo.local_alias->rrset->rk.dname) {
1605 /* log original qname, before the local alias was
1606 * used to resolve that CNAME to something else */
1607 qinfo.qname = qinfo.local_alias->rrset->rk.dname;
1608 log_reply_info(NO_VERBOSE, &qinfo, &repinfo->addr, repinfo->addrlen,
1609 tv, 1, c->buffer);
1610 } else {
1611 log_reply_info(NO_VERBOSE, &qinfo, &repinfo->addr, repinfo->addrlen,
1612 tv, 1, c->buffer);
1613 }
1614 }
1615 #ifdef USE_DNSCRYPT
1616 if(!dnsc_handle_uncurved_request(repinfo)) {
1617 return 0;
1618 }
1619 #endif
1620 return rc;
1621 }
1622
1623 void
worker_sighandler(int sig,void * arg)1624 worker_sighandler(int sig, void* arg)
1625 {
1626 /* note that log, print, syscalls here give race conditions.
1627 * And cause hangups if the log-lock is held by the application. */
1628 struct worker* worker = (struct worker*)arg;
1629 switch(sig) {
1630 #ifdef SIGHUP
1631 case SIGHUP:
1632 comm_base_exit(worker->base);
1633 break;
1634 #endif
1635 case SIGINT:
1636 worker->need_to_exit = 1;
1637 comm_base_exit(worker->base);
1638 break;
1639 #ifdef SIGQUIT
1640 case SIGQUIT:
1641 worker->need_to_exit = 1;
1642 comm_base_exit(worker->base);
1643 break;
1644 #endif
1645 case SIGTERM:
1646 worker->need_to_exit = 1;
1647 comm_base_exit(worker->base);
1648 break;
1649 default:
1650 /* unknown signal, ignored */
1651 break;
1652 }
1653 }
1654
1655 /** restart statistics timer for worker, if enabled */
1656 static void
worker_restart_timer(struct worker * worker)1657 worker_restart_timer(struct worker* worker)
1658 {
1659 if(worker->env.cfg->stat_interval > 0) {
1660 struct timeval tv;
1661 #ifndef S_SPLINT_S
1662 tv.tv_sec = worker->env.cfg->stat_interval;
1663 tv.tv_usec = 0;
1664 #endif
1665 comm_timer_set(worker->stat_timer, &tv);
1666 }
1667 }
1668
worker_stat_timer_cb(void * arg)1669 void worker_stat_timer_cb(void* arg)
1670 {
1671 struct worker* worker = (struct worker*)arg;
1672 server_stats_log(&worker->stats, worker, worker->thread_num);
1673 mesh_stats(worker->env.mesh, "mesh has");
1674 worker_mem_report(worker, NULL);
1675 /* SHM is enabled, process data to SHM */
1676 if (worker->daemon->cfg->shm_enable) {
1677 shm_main_run(worker);
1678 }
1679 if(!worker->daemon->cfg->stat_cumulative) {
1680 worker_stats_clear(worker);
1681 }
1682 /* start next timer */
1683 worker_restart_timer(worker);
1684 }
1685
worker_probe_timer_cb(void * arg)1686 void worker_probe_timer_cb(void* arg)
1687 {
1688 struct worker* worker = (struct worker*)arg;
1689 struct timeval tv;
1690 #ifndef S_SPLINT_S
1691 tv.tv_sec = (time_t)autr_probe_timer(&worker->env);
1692 tv.tv_usec = 0;
1693 #endif
1694 if(tv.tv_sec != 0)
1695 comm_timer_set(worker->env.probe_timer, &tv);
1696 }
1697
1698 struct worker*
worker_create(struct daemon * daemon,int id,int * ports,int n)1699 worker_create(struct daemon* daemon, int id, int* ports, int n)
1700 {
1701 unsigned int seed;
1702 struct worker* worker = (struct worker*)calloc(1,
1703 sizeof(struct worker));
1704 if(!worker)
1705 return NULL;
1706 worker->numports = n;
1707 worker->ports = (int*)memdup(ports, sizeof(int)*n);
1708 if(!worker->ports) {
1709 free(worker);
1710 return NULL;
1711 }
1712 worker->daemon = daemon;
1713 worker->thread_num = id;
1714 if(!(worker->cmd = tube_create())) {
1715 free(worker->ports);
1716 free(worker);
1717 return NULL;
1718 }
1719 /* create random state here to avoid locking trouble in RAND_bytes */
1720 if(!(worker->rndstate = ub_initstate(daemon->rand))) {
1721 log_err("could not init random numbers.");
1722 tube_delete(worker->cmd);
1723 free(worker->ports);
1724 free(worker);
1725 return NULL;
1726 }
1727 explicit_bzero(&seed, sizeof(seed));
1728 return worker;
1729 }
1730
1731 int
worker_init(struct worker * worker,struct config_file * cfg,struct listen_port * ports,int do_sigs)1732 worker_init(struct worker* worker, struct config_file *cfg,
1733 struct listen_port* ports, int do_sigs)
1734 {
1735 #ifdef USE_DNSTAP
1736 struct dt_env* dtenv = &worker->dtenv;
1737 #else
1738 void* dtenv = NULL;
1739 #endif
1740 worker->need_to_exit = 0;
1741 worker->base = comm_base_create(do_sigs);
1742 if(!worker->base) {
1743 log_err("could not create event handling base");
1744 worker_delete(worker);
1745 return 0;
1746 }
1747 comm_base_set_slow_accept_handlers(worker->base, &worker_stop_accept,
1748 &worker_start_accept, worker);
1749 if(do_sigs) {
1750 #ifdef SIGHUP
1751 ub_thread_sig_unblock(SIGHUP);
1752 #endif
1753 ub_thread_sig_unblock(SIGINT);
1754 #ifdef SIGQUIT
1755 ub_thread_sig_unblock(SIGQUIT);
1756 #endif
1757 ub_thread_sig_unblock(SIGTERM);
1758 #ifndef LIBEVENT_SIGNAL_PROBLEM
1759 worker->comsig = comm_signal_create(worker->base,
1760 worker_sighandler, worker);
1761 if(!worker->comsig
1762 #ifdef SIGHUP
1763 || !comm_signal_bind(worker->comsig, SIGHUP)
1764 #endif
1765 #ifdef SIGQUIT
1766 || !comm_signal_bind(worker->comsig, SIGQUIT)
1767 #endif
1768 || !comm_signal_bind(worker->comsig, SIGTERM)
1769 || !comm_signal_bind(worker->comsig, SIGINT)) {
1770 log_err("could not create signal handlers");
1771 worker_delete(worker);
1772 return 0;
1773 }
1774 #endif /* LIBEVENT_SIGNAL_PROBLEM */
1775 if(!daemon_remote_open_accept(worker->daemon->rc,
1776 worker->daemon->rc_ports, worker)) {
1777 worker_delete(worker);
1778 return 0;
1779 }
1780 #ifdef UB_ON_WINDOWS
1781 wsvc_setup_worker(worker);
1782 #endif /* UB_ON_WINDOWS */
1783 } else { /* !do_sigs */
1784 worker->comsig = NULL;
1785 }
1786 #ifdef USE_DNSTAP
1787 if(cfg->dnstap) {
1788 log_assert(worker->daemon->dtenv != NULL);
1789 memcpy(&worker->dtenv, worker->daemon->dtenv, sizeof(struct dt_env));
1790 if(!dt_init(&worker->dtenv, worker->base))
1791 fatal_exit("dt_init failed");
1792 }
1793 #endif
1794 worker->front = listen_create(worker->base, ports,
1795 cfg->msg_buffer_size, (int)cfg->incoming_num_tcp,
1796 cfg->do_tcp_keepalive
1797 ? cfg->tcp_keepalive_timeout
1798 : cfg->tcp_idle_timeout,
1799 cfg->harden_large_queries, cfg->http_max_streams,
1800 cfg->http_endpoint, cfg->http_notls_downstream,
1801 worker->daemon->tcl, worker->daemon->listen_sslctx,
1802 dtenv, worker_handle_request, worker);
1803 if(!worker->front) {
1804 log_err("could not create listening sockets");
1805 worker_delete(worker);
1806 return 0;
1807 }
1808 worker->back = outside_network_create(worker->base,
1809 cfg->msg_buffer_size, (size_t)cfg->outgoing_num_ports,
1810 cfg->out_ifs, cfg->num_out_ifs, cfg->do_ip4, cfg->do_ip6,
1811 cfg->do_tcp?cfg->outgoing_num_tcp:0, cfg->ip_dscp,
1812 worker->daemon->env->infra_cache, worker->rndstate,
1813 cfg->use_caps_bits_for_id, worker->ports, worker->numports,
1814 cfg->unwanted_threshold, cfg->outgoing_tcp_mss,
1815 &worker_alloc_cleanup, worker,
1816 cfg->do_udp || cfg->udp_upstream_without_downstream,
1817 worker->daemon->connect_sslctx, cfg->delay_close,
1818 cfg->tls_use_sni, dtenv, cfg->udp_connect);
1819 if(!worker->back) {
1820 log_err("could not create outgoing sockets");
1821 worker_delete(worker);
1822 return 0;
1823 }
1824 /* start listening to commands */
1825 if(!tube_setup_bg_listen(worker->cmd, worker->base,
1826 &worker_handle_control_cmd, worker)) {
1827 log_err("could not create control compt.");
1828 worker_delete(worker);
1829 return 0;
1830 }
1831 worker->stat_timer = comm_timer_create(worker->base,
1832 worker_stat_timer_cb, worker);
1833 if(!worker->stat_timer) {
1834 log_err("could not create statistics timer");
1835 }
1836
1837 /* we use the msg_buffer_size as a good estimate for what the
1838 * user wants for memory usage sizes */
1839 worker->scratchpad = regional_create_custom(cfg->msg_buffer_size);
1840 if(!worker->scratchpad) {
1841 log_err("malloc failure");
1842 worker_delete(worker);
1843 return 0;
1844 }
1845
1846 server_stats_init(&worker->stats, cfg);
1847 alloc_init(&worker->alloc, &worker->daemon->superalloc,
1848 worker->thread_num);
1849 alloc_set_id_cleanup(&worker->alloc, &worker_alloc_cleanup, worker);
1850 worker->env = *worker->daemon->env;
1851 comm_base_timept(worker->base, &worker->env.now, &worker->env.now_tv);
1852 worker->env.worker = worker;
1853 worker->env.worker_base = worker->base;
1854 worker->env.send_query = &worker_send_query;
1855 worker->env.alloc = &worker->alloc;
1856 worker->env.outnet = worker->back;
1857 worker->env.rnd = worker->rndstate;
1858 /* If case prefetch is triggered, the corresponding mesh will clear
1859 * the scratchpad for the module env in the middle of request handling.
1860 * It would be prone to a use-after-free kind of bug, so we avoid
1861 * sharing it with worker's own scratchpad at the cost of having
1862 * one more pad per worker. */
1863 worker->env.scratch = regional_create_custom(cfg->msg_buffer_size);
1864 if(!worker->env.scratch) {
1865 log_err("malloc failure");
1866 worker_delete(worker);
1867 return 0;
1868 }
1869 worker->env.mesh = mesh_create(&worker->daemon->mods, &worker->env);
1870 /* Pass on daemon variables that we would need in the mesh area */
1871 worker->env.mesh->use_response_ip = worker->daemon->use_response_ip;
1872 worker->env.mesh->use_rpz = worker->daemon->use_rpz;
1873
1874 worker->env.detach_subs = &mesh_detach_subs;
1875 worker->env.attach_sub = &mesh_attach_sub;
1876 worker->env.add_sub = &mesh_add_sub;
1877 worker->env.kill_sub = &mesh_state_delete;
1878 worker->env.detect_cycle = &mesh_detect_cycle;
1879 worker->env.scratch_buffer = sldns_buffer_new(cfg->msg_buffer_size);
1880 if(!(worker->env.fwds = forwards_create()) ||
1881 !forwards_apply_cfg(worker->env.fwds, cfg)) {
1882 log_err("Could not set forward zones");
1883 worker_delete(worker);
1884 return 0;
1885 }
1886 if(!(worker->env.hints = hints_create()) ||
1887 !hints_apply_cfg(worker->env.hints, cfg)) {
1888 log_err("Could not set root or stub hints");
1889 worker_delete(worker);
1890 return 0;
1891 }
1892 /* one probe timer per process -- if we have 5011 anchors */
1893 if(autr_get_num_anchors(worker->env.anchors) > 0
1894 #ifndef THREADS_DISABLED
1895 && worker->thread_num == 0
1896 #endif
1897 ) {
1898 struct timeval tv;
1899 tv.tv_sec = 0;
1900 tv.tv_usec = 0;
1901 worker->env.probe_timer = comm_timer_create(worker->base,
1902 worker_probe_timer_cb, worker);
1903 if(!worker->env.probe_timer) {
1904 log_err("could not create 5011-probe timer");
1905 } else {
1906 /* let timer fire, then it can reset itself */
1907 comm_timer_set(worker->env.probe_timer, &tv);
1908 }
1909 }
1910 /* zone transfer tasks, setup once per process, if any */
1911 if(worker->env.auth_zones
1912 #ifndef THREADS_DISABLED
1913 && worker->thread_num == 0
1914 #endif
1915 ) {
1916 auth_xfer_pickup_initial(worker->env.auth_zones, &worker->env);
1917 }
1918 #ifdef USE_DNSTAP
1919 if(worker->daemon->cfg->dnstap
1920 #ifndef THREADS_DISABLED
1921 && worker->thread_num == 0
1922 #endif
1923 ) {
1924 if(!dt_io_thread_start(dtenv->dtio, comm_base_internal(
1925 worker->base), worker->daemon->num)) {
1926 log_err("could not start dnstap io thread");
1927 worker_delete(worker);
1928 return 0;
1929 }
1930 }
1931 #endif /* USE_DNSTAP */
1932 if(!worker->env.mesh || !worker->env.scratch_buffer) {
1933 worker_delete(worker);
1934 return 0;
1935 }
1936 worker_mem_report(worker, NULL);
1937 /* if statistics enabled start timer */
1938 if(worker->env.cfg->stat_interval > 0) {
1939 verbose(VERB_ALGO, "set statistics interval %d secs",
1940 worker->env.cfg->stat_interval);
1941 worker_restart_timer(worker);
1942 }
1943 return 1;
1944 }
1945
1946 void
worker_work(struct worker * worker)1947 worker_work(struct worker* worker)
1948 {
1949 comm_base_dispatch(worker->base);
1950 }
1951
1952 void
worker_delete(struct worker * worker)1953 worker_delete(struct worker* worker)
1954 {
1955 if(!worker)
1956 return;
1957 if(worker->env.mesh && verbosity >= VERB_OPS) {
1958 server_stats_log(&worker->stats, worker, worker->thread_num);
1959 mesh_stats(worker->env.mesh, "mesh has");
1960 worker_mem_report(worker, NULL);
1961 }
1962 outside_network_quit_prepare(worker->back);
1963 mesh_delete(worker->env.mesh);
1964 sldns_buffer_free(worker->env.scratch_buffer);
1965 forwards_delete(worker->env.fwds);
1966 hints_delete(worker->env.hints);
1967 listen_delete(worker->front);
1968 outside_network_delete(worker->back);
1969 comm_signal_delete(worker->comsig);
1970 tube_delete(worker->cmd);
1971 comm_timer_delete(worker->stat_timer);
1972 comm_timer_delete(worker->env.probe_timer);
1973 free(worker->ports);
1974 if(worker->thread_num == 0) {
1975 #ifdef UB_ON_WINDOWS
1976 wsvc_desetup_worker(worker);
1977 #endif /* UB_ON_WINDOWS */
1978 }
1979 #ifdef USE_DNSTAP
1980 if(worker->daemon->cfg->dnstap
1981 #ifndef THREADS_DISABLED
1982 && worker->thread_num == 0
1983 #endif
1984 ) {
1985 dt_io_thread_stop(worker->dtenv.dtio);
1986 }
1987 dt_deinit(&worker->dtenv);
1988 #endif /* USE_DNSTAP */
1989 comm_base_delete(worker->base);
1990 ub_randfree(worker->rndstate);
1991 alloc_clear(&worker->alloc);
1992 regional_destroy(worker->env.scratch);
1993 regional_destroy(worker->scratchpad);
1994 free(worker);
1995 }
1996
1997 struct outbound_entry*
worker_send_query(struct query_info * qinfo,uint16_t flags,int dnssec,int want_dnssec,int nocaps,struct sockaddr_storage * addr,socklen_t addrlen,uint8_t * zone,size_t zonelen,int ssl_upstream,char * tls_auth_name,struct module_qstate * q)1998 worker_send_query(struct query_info* qinfo, uint16_t flags, int dnssec,
1999 int want_dnssec, int nocaps, struct sockaddr_storage* addr,
2000 socklen_t addrlen, uint8_t* zone, size_t zonelen, int ssl_upstream,
2001 char* tls_auth_name, struct module_qstate* q)
2002 {
2003 struct worker* worker = q->env->worker;
2004 struct outbound_entry* e = (struct outbound_entry*)regional_alloc(
2005 q->region, sizeof(*e));
2006 if(!e)
2007 return NULL;
2008 e->qstate = q;
2009 e->qsent = outnet_serviced_query(worker->back, qinfo, flags, dnssec,
2010 want_dnssec, nocaps, q->env->cfg->tcp_upstream,
2011 ssl_upstream, tls_auth_name, addr, addrlen, zone, zonelen, q,
2012 worker_handle_service_reply, e, worker->back->udp_buff, q->env);
2013 if(!e->qsent) {
2014 return NULL;
2015 }
2016 return e;
2017 }
2018
2019 void
worker_alloc_cleanup(void * arg)2020 worker_alloc_cleanup(void* arg)
2021 {
2022 struct worker* worker = (struct worker*)arg;
2023 slabhash_clear(&worker->env.rrset_cache->table);
2024 slabhash_clear(worker->env.msg_cache);
2025 }
2026
worker_stats_clear(struct worker * worker)2027 void worker_stats_clear(struct worker* worker)
2028 {
2029 server_stats_init(&worker->stats, worker->env.cfg);
2030 mesh_stats_clear(worker->env.mesh);
2031 worker->back->unwanted_replies = 0;
2032 worker->back->num_tcp_outgoing = 0;
2033 }
2034
worker_start_accept(void * arg)2035 void worker_start_accept(void* arg)
2036 {
2037 struct worker* worker = (struct worker*)arg;
2038 listen_start_accept(worker->front);
2039 if(worker->thread_num == 0)
2040 daemon_remote_start_accept(worker->daemon->rc);
2041 }
2042
worker_stop_accept(void * arg)2043 void worker_stop_accept(void* arg)
2044 {
2045 struct worker* worker = (struct worker*)arg;
2046 listen_stop_accept(worker->front);
2047 if(worker->thread_num == 0)
2048 daemon_remote_stop_accept(worker->daemon->rc);
2049 }
2050
2051 /* --- fake callbacks for fptr_wlist to work --- */
libworker_send_query(struct query_info * ATTR_UNUSED (qinfo),uint16_t ATTR_UNUSED (flags),int ATTR_UNUSED (dnssec),int ATTR_UNUSED (want_dnssec),int ATTR_UNUSED (nocaps),struct sockaddr_storage * ATTR_UNUSED (addr),socklen_t ATTR_UNUSED (addrlen),uint8_t * ATTR_UNUSED (zone),size_t ATTR_UNUSED (zonelen),int ATTR_UNUSED (ssl_upstream),char * ATTR_UNUSED (tls_auth_name),struct module_qstate * ATTR_UNUSED (q))2052 struct outbound_entry* libworker_send_query(
2053 struct query_info* ATTR_UNUSED(qinfo),
2054 uint16_t ATTR_UNUSED(flags), int ATTR_UNUSED(dnssec),
2055 int ATTR_UNUSED(want_dnssec), int ATTR_UNUSED(nocaps),
2056 struct sockaddr_storage* ATTR_UNUSED(addr), socklen_t ATTR_UNUSED(addrlen),
2057 uint8_t* ATTR_UNUSED(zone), size_t ATTR_UNUSED(zonelen),
2058 int ATTR_UNUSED(ssl_upstream), char* ATTR_UNUSED(tls_auth_name),
2059 struct module_qstate* ATTR_UNUSED(q))
2060 {
2061 log_assert(0);
2062 return 0;
2063 }
2064
libworker_handle_reply(struct comm_point * ATTR_UNUSED (c),void * ATTR_UNUSED (arg),int ATTR_UNUSED (error),struct comm_reply * ATTR_UNUSED (reply_info))2065 int libworker_handle_reply(struct comm_point* ATTR_UNUSED(c),
2066 void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
2067 struct comm_reply* ATTR_UNUSED(reply_info))
2068 {
2069 log_assert(0);
2070 return 0;
2071 }
2072
libworker_handle_service_reply(struct comm_point * ATTR_UNUSED (c),void * ATTR_UNUSED (arg),int ATTR_UNUSED (error),struct comm_reply * ATTR_UNUSED (reply_info))2073 int libworker_handle_service_reply(struct comm_point* ATTR_UNUSED(c),
2074 void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
2075 struct comm_reply* ATTR_UNUSED(reply_info))
2076 {
2077 log_assert(0);
2078 return 0;
2079 }
2080
libworker_handle_control_cmd(struct tube * ATTR_UNUSED (tube),uint8_t * ATTR_UNUSED (buffer),size_t ATTR_UNUSED (len),int ATTR_UNUSED (error),void * ATTR_UNUSED (arg))2081 void libworker_handle_control_cmd(struct tube* ATTR_UNUSED(tube),
2082 uint8_t* ATTR_UNUSED(buffer), size_t ATTR_UNUSED(len),
2083 int ATTR_UNUSED(error), void* ATTR_UNUSED(arg))
2084 {
2085 log_assert(0);
2086 }
2087
libworker_fg_done_cb(void * ATTR_UNUSED (arg),int ATTR_UNUSED (rcode),sldns_buffer * ATTR_UNUSED (buf),enum sec_status ATTR_UNUSED (s),char * ATTR_UNUSED (why_bogus),int ATTR_UNUSED (was_ratelimited))2088 void libworker_fg_done_cb(void* ATTR_UNUSED(arg), int ATTR_UNUSED(rcode),
2089 sldns_buffer* ATTR_UNUSED(buf), enum sec_status ATTR_UNUSED(s),
2090 char* ATTR_UNUSED(why_bogus), int ATTR_UNUSED(was_ratelimited))
2091 {
2092 log_assert(0);
2093 }
2094
libworker_bg_done_cb(void * ATTR_UNUSED (arg),int ATTR_UNUSED (rcode),sldns_buffer * ATTR_UNUSED (buf),enum sec_status ATTR_UNUSED (s),char * ATTR_UNUSED (why_bogus),int ATTR_UNUSED (was_ratelimited))2095 void libworker_bg_done_cb(void* ATTR_UNUSED(arg), int ATTR_UNUSED(rcode),
2096 sldns_buffer* ATTR_UNUSED(buf), enum sec_status ATTR_UNUSED(s),
2097 char* ATTR_UNUSED(why_bogus), int ATTR_UNUSED(was_ratelimited))
2098 {
2099 log_assert(0);
2100 }
2101
libworker_event_done_cb(void * ATTR_UNUSED (arg),int ATTR_UNUSED (rcode),sldns_buffer * ATTR_UNUSED (buf),enum sec_status ATTR_UNUSED (s),char * ATTR_UNUSED (why_bogus),int ATTR_UNUSED (was_ratelimited))2102 void libworker_event_done_cb(void* ATTR_UNUSED(arg), int ATTR_UNUSED(rcode),
2103 sldns_buffer* ATTR_UNUSED(buf), enum sec_status ATTR_UNUSED(s),
2104 char* ATTR_UNUSED(why_bogus), int ATTR_UNUSED(was_ratelimited))
2105 {
2106 log_assert(0);
2107 }
2108
context_query_cmp(const void * ATTR_UNUSED (a),const void * ATTR_UNUSED (b))2109 int context_query_cmp(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
2110 {
2111 log_assert(0);
2112 return 0;
2113 }
2114
order_lock_cmp(const void * ATTR_UNUSED (e1),const void * ATTR_UNUSED (e2))2115 int order_lock_cmp(const void* ATTR_UNUSED(e1), const void* ATTR_UNUSED(e2))
2116 {
2117 log_assert(0);
2118 return 0;
2119 }
2120
codeline_cmp(const void * ATTR_UNUSED (a),const void * ATTR_UNUSED (b))2121 int codeline_cmp(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
2122 {
2123 log_assert(0);
2124 return 0;
2125 }
2126
2127 #ifdef USE_DNSTAP
dtio_tap_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (ev),void * ATTR_UNUSED (arg))2128 void dtio_tap_callback(int ATTR_UNUSED(fd), short ATTR_UNUSED(ev),
2129 void* ATTR_UNUSED(arg))
2130 {
2131 log_assert(0);
2132 }
2133 #endif
2134
2135 #ifdef USE_DNSTAP
dtio_mainfdcallback(int ATTR_UNUSED (fd),short ATTR_UNUSED (ev),void * ATTR_UNUSED (arg))2136 void dtio_mainfdcallback(int ATTR_UNUSED(fd), short ATTR_UNUSED(ev),
2137 void* ATTR_UNUSED(arg))
2138 {
2139 log_assert(0);
2140 }
2141 #endif
2142