1 /* 2 * iterator/iterator.c - iterative resolver DNS query response module 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 module that performs recursive iterative DNS query 40 * processing. 41 */ 42 43 #include "config.h" 44 #include "iterator/iterator.h" 45 #include "iterator/iter_utils.h" 46 #include "iterator/iter_hints.h" 47 #include "iterator/iter_fwd.h" 48 #include "iterator/iter_donotq.h" 49 #include "iterator/iter_delegpt.h" 50 #include "iterator/iter_resptype.h" 51 #include "iterator/iter_scrub.h" 52 #include "iterator/iter_priv.h" 53 #include "validator/val_neg.h" 54 #include "services/cache/dns.h" 55 #include "services/cache/rrset.h" 56 #include "services/cache/infra.h" 57 #include "services/authzone.h" 58 #include "util/module.h" 59 #include "util/netevent.h" 60 #include "util/net_help.h" 61 #include "util/regional.h" 62 #include "util/data/dname.h" 63 #include "util/data/msgencode.h" 64 #include "util/fptr_wlist.h" 65 #include "util/config_file.h" 66 #include "util/random.h" 67 #include "sldns/rrdef.h" 68 #include "sldns/wire2str.h" 69 #include "sldns/str2wire.h" 70 #include "sldns/parseutil.h" 71 #include "sldns/sbuffer.h" 72 73 /* number of packets */ 74 int MAX_GLOBAL_QUOTA = 200; 75 /* in msec */ 76 int UNKNOWN_SERVER_NICENESS = 376; 77 /* in msec */ 78 int USEFUL_SERVER_TOP_TIMEOUT = 120000; 79 /* Equals USEFUL_SERVER_TOP_TIMEOUT*4 */ 80 int BLACKLIST_PENALTY = (120000*4); 81 /** Timeout when only a single probe query per IP is allowed. */ 82 int PROBE_MAXRTO = PROBE_MAXRTO_DEFAULT; /* in msec */ 83 84 static void target_count_increase_nx(struct iter_qstate* iq, int num); 85 86 int 87 iter_init(struct module_env* env, int id) 88 { 89 struct iter_env* iter_env = (struct iter_env*)calloc(1, 90 sizeof(struct iter_env)); 91 if(!iter_env) { 92 log_err("malloc failure"); 93 return 0; 94 } 95 env->modinfo[id] = (void*)iter_env; 96 97 lock_basic_init(&iter_env->queries_ratelimit_lock); 98 lock_protect(&iter_env->queries_ratelimit_lock, 99 &iter_env->num_queries_ratelimited, 100 sizeof(iter_env->num_queries_ratelimited)); 101 102 if(!iter_apply_cfg(iter_env, env->cfg)) { 103 log_err("iterator: could not apply configuration settings."); 104 return 0; 105 } 106 107 return 1; 108 } 109 110 void 111 iter_deinit(struct module_env* env, int id) 112 { 113 struct iter_env* iter_env; 114 if(!env || !env->modinfo[id]) 115 return; 116 iter_env = (struct iter_env*)env->modinfo[id]; 117 lock_basic_destroy(&iter_env->queries_ratelimit_lock); 118 free(iter_env->target_fetch_policy); 119 priv_delete(iter_env->priv); 120 donotq_delete(iter_env->donotq); 121 caps_white_delete(iter_env->caps_white); 122 free(iter_env); 123 env->modinfo[id] = NULL; 124 } 125 126 /** new query for iterator */ 127 static int 128 iter_new(struct module_qstate* qstate, int id) 129 { 130 struct iter_qstate* iq = (struct iter_qstate*)regional_alloc( 131 qstate->region, sizeof(struct iter_qstate)); 132 qstate->minfo[id] = iq; 133 if(!iq) 134 return 0; 135 memset(iq, 0, sizeof(*iq)); 136 iq->state = INIT_REQUEST_STATE; 137 iq->final_state = FINISHED_STATE; 138 iq->an_prepend_list = NULL; 139 iq->an_prepend_last = NULL; 140 iq->ns_prepend_list = NULL; 141 iq->ns_prepend_last = NULL; 142 iq->dp = NULL; 143 iq->depth = 0; 144 iq->num_target_queries = 0; 145 iq->num_current_queries = 0; 146 iq->query_restart_count = 0; 147 iq->referral_count = 0; 148 iq->sent_count = 0; 149 iq->ratelimit_ok = 0; 150 iq->target_count = NULL; 151 iq->dp_target_count = 0; 152 iq->wait_priming_stub = 0; 153 iq->refetch_glue = 0; 154 iq->dnssec_expected = 0; 155 iq->dnssec_lame_query = 0; 156 iq->chase_flags = qstate->query_flags; 157 /* Start with the (current) qname. */ 158 iq->qchase = qstate->qinfo; 159 outbound_list_init(&iq->outlist); 160 iq->minimise_count = 0; 161 iq->timeout_count = 0; 162 if (qstate->env->cfg->qname_minimisation) 163 iq->minimisation_state = INIT_MINIMISE_STATE; 164 else 165 iq->minimisation_state = DONOT_MINIMISE_STATE; 166 167 memset(&iq->qinfo_out, 0, sizeof(struct query_info)); 168 return 1; 169 } 170 171 /** 172 * Transition to the next state. This can be used to advance a currently 173 * processing event. It cannot be used to reactivate a forEvent. 174 * 175 * @param iq: iterator query state 176 * @param nextstate The state to transition to. 177 * @return true. This is so this can be called as the return value for the 178 * actual process*State() methods. (Transitioning to the next state 179 * implies further processing). 180 */ 181 static int 182 next_state(struct iter_qstate* iq, enum iter_state nextstate) 183 { 184 /* If transitioning to a "response" state, make sure that there is a 185 * response */ 186 if(iter_state_is_responsestate(nextstate)) { 187 if(iq->response == NULL) { 188 log_err("transitioning to response state sans " 189 "response."); 190 } 191 } 192 iq->state = nextstate; 193 return 1; 194 } 195 196 /** 197 * Transition an event to its final state. Final states always either return 198 * a result up the module chain, or reactivate a dependent event. Which 199 * final state to transition to is set in the module state for the event when 200 * it was created, and depends on the original purpose of the event. 201 * 202 * The response is stored in the qstate->buf buffer. 203 * 204 * @param iq: iterator query state 205 * @return false. This is so this method can be used as the return value for 206 * the processState methods. (Transitioning to the final state 207 */ 208 static int 209 final_state(struct iter_qstate* iq) 210 { 211 return next_state(iq, iq->final_state); 212 } 213 214 /** 215 * Callback routine to handle errors in parent query states 216 * @param qstate: query state that failed. 217 * @param id: module id. 218 * @param super: super state. 219 */ 220 static void 221 error_supers(struct module_qstate* qstate, int id, struct module_qstate* super) 222 { 223 struct iter_env* ie = (struct iter_env*)qstate->env->modinfo[id]; 224 struct iter_qstate* super_iq = (struct iter_qstate*)super->minfo[id]; 225 226 if(qstate->qinfo.qtype == LDNS_RR_TYPE_A || 227 qstate->qinfo.qtype == LDNS_RR_TYPE_AAAA) { 228 /* mark address as failed. */ 229 struct delegpt_ns* dpns = NULL; 230 super_iq->num_target_queries--; 231 if(super_iq->dp) 232 dpns = delegpt_find_ns(super_iq->dp, 233 qstate->qinfo.qname, qstate->qinfo.qname_len); 234 if(!dpns) { 235 /* not interested */ 236 /* this can happen, for eg. qname minimisation asked 237 * for an NXDOMAIN to be validated, and used qtype 238 * A for that, and the error of that, the name, is 239 * not listed in super_iq->dp */ 240 verbose(VERB_ALGO, "subq error, but not interested"); 241 log_query_info(VERB_ALGO, "superq", &super->qinfo); 242 return; 243 } else { 244 /* see if the failure did get (parent-lame) info */ 245 if(!cache_fill_missing(super->env, super_iq->qchase.qclass, 246 super->region, super_iq->dp, 0)) 247 log_err("out of memory adding missing"); 248 } 249 delegpt_mark_neg(dpns, qstate->qinfo.qtype); 250 if((dpns->got4 == 2 || (!ie->supports_ipv4 && !ie->nat64.use_nat64)) && 251 (dpns->got6 == 2 || !ie->supports_ipv6)) { 252 dpns->resolved = 1; /* mark as failed */ 253 target_count_increase_nx(super_iq, 1); 254 } 255 } 256 if(qstate->qinfo.qtype == LDNS_RR_TYPE_NS) { 257 /* prime failed to get delegation */ 258 super_iq->dp = NULL; 259 } 260 /* evaluate targets again */ 261 super_iq->state = QUERYTARGETS_STATE; 262 /* super becomes runnable, and will process this change */ 263 } 264 265 /** 266 * Return an error to the client 267 * @param qstate: our query state 268 * @param id: module id 269 * @param rcode: error code (DNS errcode). 270 * @return: 0 for use by caller, to make notation easy, like: 271 * return error_response(..). 272 */ 273 static int 274 error_response(struct module_qstate* qstate, int id, int rcode) 275 { 276 verbose(VERB_QUERY, "return error response %s", 277 sldns_lookup_by_id(sldns_rcodes, rcode)? 278 sldns_lookup_by_id(sldns_rcodes, rcode)->name:"??"); 279 qstate->return_rcode = rcode; 280 qstate->return_msg = NULL; 281 qstate->ext_state[id] = module_finished; 282 return 0; 283 } 284 285 /** 286 * Return an error to the client and cache the error code in the 287 * message cache (so per qname, qtype, qclass). 288 * @param qstate: our query state 289 * @param id: module id 290 * @param rcode: error code (DNS errcode). 291 * @return: 0 for use by caller, to make notation easy, like: 292 * return error_response(..). 293 */ 294 static int 295 error_response_cache(struct module_qstate* qstate, int id, int rcode) 296 { 297 struct reply_info err; 298 struct msgreply_entry* msg; 299 if(qstate->no_cache_store) { 300 qstate->error_response_cache = 1; 301 return error_response(qstate, id, rcode); 302 } 303 if(qstate->prefetch_leeway > NORR_TTL) { 304 verbose(VERB_ALGO, "error response for prefetch in cache"); 305 /* attempt to adjust the cache entry prefetch */ 306 if(dns_cache_prefetch_adjust(qstate->env, &qstate->qinfo, 307 NORR_TTL, qstate->query_flags)) 308 return error_response(qstate, id, rcode); 309 /* if that fails (not in cache), fall through to store err */ 310 } 311 if((msg=msg_cache_lookup(qstate->env, 312 qstate->qinfo.qname, qstate->qinfo.qname_len, 313 qstate->qinfo.qtype, qstate->qinfo.qclass, 314 qstate->query_flags, 0, 315 qstate->env->cfg->serve_expired)) != NULL) { 316 struct reply_info* rep = (struct reply_info*)msg->entry.data; 317 if(qstate->env->cfg->serve_expired && rep) { 318 if(qstate->env->cfg->serve_expired_ttl_reset && 319 *qstate->env->now + qstate->env->cfg->serve_expired_ttl 320 > rep->serve_expired_ttl) { 321 verbose(VERB_ALGO, "reset serve-expired-ttl for " 322 "response in cache"); 323 rep->serve_expired_ttl = *qstate->env->now + 324 qstate->env->cfg->serve_expired_ttl; 325 } 326 verbose(VERB_ALGO, "set serve-expired-norec-ttl for " 327 "response in cache"); 328 rep->serve_expired_norec_ttl = NORR_TTL + 329 *qstate->env->now; 330 } 331 if(rep && (FLAGS_GET_RCODE(rep->flags) == 332 LDNS_RCODE_NOERROR || 333 FLAGS_GET_RCODE(rep->flags) == 334 LDNS_RCODE_NXDOMAIN || 335 FLAGS_GET_RCODE(rep->flags) == 336 LDNS_RCODE_YXDOMAIN) && 337 (qstate->env->cfg->serve_expired || 338 *qstate->env->now <= rep->ttl)) { 339 /* we have a good entry, don't overwrite */ 340 lock_rw_unlock(&msg->entry.lock); 341 return error_response(qstate, id, rcode); 342 } 343 lock_rw_unlock(&msg->entry.lock); 344 /* nothing interesting is cached (already error response or 345 * expired good record when we don't serve expired), so this 346 * servfail cache entry is useful (stops waste of time on this 347 * servfail NORR_TTL) */ 348 } 349 /* store in cache */ 350 memset(&err, 0, sizeof(err)); 351 err.flags = (uint16_t)(BIT_QR | BIT_RA); 352 FLAGS_SET_RCODE(err.flags, rcode); 353 err.qdcount = 1; 354 err.ttl = NORR_TTL; 355 err.prefetch_ttl = PREFETCH_TTL_CALC(err.ttl); 356 err.serve_expired_ttl = NORR_TTL; 357 /* do not waste time trying to validate this servfail */ 358 err.security = sec_status_indeterminate; 359 verbose(VERB_ALGO, "store error response in message cache"); 360 iter_dns_store(qstate->env, &qstate->qinfo, &err, 0, 0, 0, NULL, 361 qstate->query_flags, qstate->qstarttime, qstate->is_valrec); 362 return error_response(qstate, id, rcode); 363 } 364 365 /** check if prepend item is duplicate item */ 366 static int 367 prepend_is_duplicate(struct ub_packed_rrset_key** sets, size_t to, 368 struct ub_packed_rrset_key* dup) 369 { 370 size_t i; 371 for(i=0; i<to; i++) { 372 if(sets[i]->rk.type == dup->rk.type && 373 sets[i]->rk.rrset_class == dup->rk.rrset_class && 374 sets[i]->rk.dname_len == dup->rk.dname_len && 375 query_dname_compare(sets[i]->rk.dname, dup->rk.dname) 376 == 0) 377 return 1; 378 } 379 return 0; 380 } 381 382 /** prepend the prepend list in the answer and authority section of dns_msg */ 383 static int 384 iter_prepend(struct iter_qstate* iq, struct dns_msg* msg, 385 struct regional* region) 386 { 387 struct iter_prep_list* p; 388 struct ub_packed_rrset_key** sets; 389 size_t num_an = 0, num_ns = 0;; 390 for(p = iq->an_prepend_list; p; p = p->next) 391 num_an++; 392 for(p = iq->ns_prepend_list; p; p = p->next) 393 num_ns++; 394 if(num_an + num_ns == 0) 395 return 1; 396 verbose(VERB_ALGO, "prepending %d rrsets", (int)num_an + (int)num_ns); 397 if(num_an > RR_COUNT_MAX || num_ns > RR_COUNT_MAX || 398 msg->rep->rrset_count > RR_COUNT_MAX) return 0; /* overflow */ 399 sets = regional_alloc(region, (num_an+num_ns+msg->rep->rrset_count) * 400 sizeof(struct ub_packed_rrset_key*)); 401 if(!sets) 402 return 0; 403 /* ANSWER section */ 404 num_an = 0; 405 for(p = iq->an_prepend_list; p; p = p->next) { 406 sets[num_an++] = p->rrset; 407 if(ub_packed_rrset_ttl(p->rrset) < msg->rep->ttl) { 408 msg->rep->ttl = ub_packed_rrset_ttl(p->rrset); 409 msg->rep->prefetch_ttl = PREFETCH_TTL_CALC(msg->rep->ttl); 410 msg->rep->serve_expired_ttl = msg->rep->ttl + SERVE_EXPIRED_TTL; 411 } 412 } 413 memcpy(sets+num_an, msg->rep->rrsets, msg->rep->an_numrrsets * 414 sizeof(struct ub_packed_rrset_key*)); 415 /* AUTH section */ 416 num_ns = 0; 417 for(p = iq->ns_prepend_list; p; p = p->next) { 418 if(prepend_is_duplicate(sets+msg->rep->an_numrrsets+num_an, 419 num_ns, p->rrset) || prepend_is_duplicate( 420 msg->rep->rrsets+msg->rep->an_numrrsets, 421 msg->rep->ns_numrrsets, p->rrset)) 422 continue; 423 sets[msg->rep->an_numrrsets + num_an + num_ns++] = p->rrset; 424 if(ub_packed_rrset_ttl(p->rrset) < msg->rep->ttl) { 425 msg->rep->ttl = ub_packed_rrset_ttl(p->rrset); 426 msg->rep->prefetch_ttl = PREFETCH_TTL_CALC(msg->rep->ttl); 427 msg->rep->serve_expired_ttl = msg->rep->ttl + SERVE_EXPIRED_TTL; 428 } 429 } 430 memcpy(sets + num_an + msg->rep->an_numrrsets + num_ns, 431 msg->rep->rrsets + msg->rep->an_numrrsets, 432 (msg->rep->ns_numrrsets + msg->rep->ar_numrrsets) * 433 sizeof(struct ub_packed_rrset_key*)); 434 435 /* NXDOMAIN rcode can stay if we prepended DNAME/CNAMEs, because 436 * this is what recursors should give. */ 437 msg->rep->rrset_count += num_an + num_ns; 438 msg->rep->an_numrrsets += num_an; 439 msg->rep->ns_numrrsets += num_ns; 440 msg->rep->rrsets = sets; 441 return 1; 442 } 443 444 /** 445 * Find rrset in ANSWER prepend list. 446 * to avoid duplicate DNAMEs when a DNAME is traversed twice. 447 * @param iq: iterator query state. 448 * @param rrset: rrset to add. 449 * @return false if not found 450 */ 451 static int 452 iter_find_rrset_in_prepend_answer(struct iter_qstate* iq, 453 struct ub_packed_rrset_key* rrset) 454 { 455 struct iter_prep_list* p = iq->an_prepend_list; 456 while(p) { 457 if(ub_rrset_compare(p->rrset, rrset) == 0 && 458 rrsetdata_equal((struct packed_rrset_data*)p->rrset 459 ->entry.data, (struct packed_rrset_data*)rrset 460 ->entry.data)) 461 return 1; 462 p = p->next; 463 } 464 return 0; 465 } 466 467 /** 468 * Add rrset to ANSWER prepend list 469 * @param qstate: query state. 470 * @param iq: iterator query state. 471 * @param rrset: rrset to add. 472 * @return false on failure (malloc). 473 */ 474 static int 475 iter_add_prepend_answer(struct module_qstate* qstate, struct iter_qstate* iq, 476 struct ub_packed_rrset_key* rrset) 477 { 478 struct iter_prep_list* p = (struct iter_prep_list*)regional_alloc( 479 qstate->region, sizeof(struct iter_prep_list)); 480 if(!p) 481 return 0; 482 p->rrset = rrset; 483 p->next = NULL; 484 /* add at end */ 485 if(iq->an_prepend_last) 486 iq->an_prepend_last->next = p; 487 else iq->an_prepend_list = p; 488 iq->an_prepend_last = p; 489 return 1; 490 } 491 492 /** 493 * Add rrset to AUTHORITY prepend list 494 * @param qstate: query state. 495 * @param iq: iterator query state. 496 * @param rrset: rrset to add. 497 * @return false on failure (malloc). 498 */ 499 static int 500 iter_add_prepend_auth(struct module_qstate* qstate, struct iter_qstate* iq, 501 struct ub_packed_rrset_key* rrset) 502 { 503 struct iter_prep_list* p = (struct iter_prep_list*)regional_alloc( 504 qstate->region, sizeof(struct iter_prep_list)); 505 if(!p) 506 return 0; 507 p->rrset = rrset; 508 p->next = NULL; 509 /* add at end */ 510 if(iq->ns_prepend_last) 511 iq->ns_prepend_last->next = p; 512 else iq->ns_prepend_list = p; 513 iq->ns_prepend_last = p; 514 return 1; 515 } 516 517 /** 518 * Given a CNAME response (defined as a response containing a CNAME or DNAME 519 * that does not answer the request), process the response, modifying the 520 * state as necessary. This follows the CNAME/DNAME chain and returns the 521 * final query name. 522 * 523 * sets the new query name, after following the CNAME/DNAME chain. 524 * @param qstate: query state. 525 * @param iq: iterator query state. 526 * @param msg: the response. 527 * @param mname: returned target new query name. 528 * @param mname_len: length of mname. 529 * @return false on (malloc) error. 530 */ 531 static int 532 handle_cname_response(struct module_qstate* qstate, struct iter_qstate* iq, 533 struct dns_msg* msg, uint8_t** mname, size_t* mname_len) 534 { 535 size_t i; 536 /* Start with the (current) qname. */ 537 *mname = iq->qchase.qname; 538 *mname_len = iq->qchase.qname_len; 539 540 /* Iterate over the ANSWER rrsets in order, looking for CNAMEs and 541 * DNAMES. */ 542 for(i=0; i<msg->rep->an_numrrsets; i++) { 543 struct ub_packed_rrset_key* r = msg->rep->rrsets[i]; 544 /* If there is a (relevant) DNAME, add it to the list. 545 * We always expect there to be CNAME that was generated 546 * by this DNAME following, so we don't process the DNAME 547 * directly. */ 548 if(ntohs(r->rk.type) == LDNS_RR_TYPE_DNAME && 549 dname_strict_subdomain_c(*mname, r->rk.dname) && 550 !iter_find_rrset_in_prepend_answer(iq, r)) { 551 if(!iter_add_prepend_answer(qstate, iq, r)) 552 return 0; 553 continue; 554 } 555 556 if(ntohs(r->rk.type) == LDNS_RR_TYPE_CNAME && 557 query_dname_compare(*mname, r->rk.dname) == 0 && 558 !iter_find_rrset_in_prepend_answer(iq, r)) { 559 /* Add this relevant CNAME rrset to the prepend list.*/ 560 if(!iter_add_prepend_answer(qstate, iq, r)) 561 return 0; 562 get_cname_target(r, mname, mname_len); 563 } 564 565 /* Other rrsets in the section are ignored. */ 566 } 567 /* add authority rrsets to authority prepend, for wildcarded CNAMEs */ 568 for(i=msg->rep->an_numrrsets; i<msg->rep->an_numrrsets + 569 msg->rep->ns_numrrsets; i++) { 570 struct ub_packed_rrset_key* r = msg->rep->rrsets[i]; 571 /* only add NSEC/NSEC3, as they may be needed for validation */ 572 if(ntohs(r->rk.type) == LDNS_RR_TYPE_NSEC || 573 ntohs(r->rk.type) == LDNS_RR_TYPE_NSEC3) { 574 if(!iter_add_prepend_auth(qstate, iq, r)) 575 return 0; 576 } 577 } 578 return 1; 579 } 580 581 /** fill fail address for later recovery */ 582 static void 583 fill_fail_addr(struct iter_qstate* iq, struct sockaddr_storage* addr, 584 socklen_t addrlen) 585 { 586 if(addrlen == 0) { 587 iq->fail_addr_type = 0; 588 return; 589 } 590 if(((struct sockaddr_in*)addr)->sin_family == AF_INET) { 591 iq->fail_addr_type = 4; 592 memcpy(&iq->fail_addr.in, 593 &((struct sockaddr_in*)addr)->sin_addr, 594 sizeof(iq->fail_addr.in)); 595 } 596 #ifdef AF_INET6 597 else if(((struct sockaddr_in*)addr)->sin_family == AF_INET6) { 598 iq->fail_addr_type = 6; 599 memcpy(&iq->fail_addr.in6, 600 &((struct sockaddr_in6*)addr)->sin6_addr, 601 sizeof(iq->fail_addr.in6)); 602 } 603 #endif 604 else { 605 iq->fail_addr_type = 0; 606 } 607 } 608 609 /** print fail addr to string */ 610 static void 611 print_fail_addr(struct iter_qstate* iq, char* buf, size_t len) 612 { 613 if(iq->fail_addr_type == 4) { 614 if(inet_ntop(AF_INET, &iq->fail_addr.in, buf, 615 (socklen_t)len) == 0) 616 (void)strlcpy(buf, "(inet_ntop error)", len); 617 } 618 #ifdef AF_INET6 619 else if(iq->fail_addr_type == 6) { 620 if(inet_ntop(AF_INET6, &iq->fail_addr.in6, buf, 621 (socklen_t)len) == 0) 622 (void)strlcpy(buf, "(inet_ntop error)", len); 623 } 624 #endif 625 else 626 (void)strlcpy(buf, "", len); 627 } 628 629 /** add response specific error information for log servfail */ 630 static void 631 errinf_reply(struct module_qstate* qstate, struct iter_qstate* iq) 632 { 633 if(qstate->env->cfg->val_log_level < 2 && !qstate->env->cfg->log_servfail) 634 return; 635 if((qstate->reply && qstate->reply->remote_addrlen != 0) || 636 (iq->fail_addr_type != 0)) { 637 char from[256], frm[512]; 638 if(qstate->reply && qstate->reply->remote_addrlen != 0) 639 addr_to_str(&qstate->reply->remote_addr, 640 qstate->reply->remote_addrlen, from, 641 sizeof(from)); 642 else 643 print_fail_addr(iq, from, sizeof(from)); 644 snprintf(frm, sizeof(frm), "from %s", from); 645 errinf(qstate, frm); 646 } 647 if(iq->scrub_failures || iq->parse_failures) { 648 if(iq->scrub_failures) 649 errinf(qstate, "upstream response failed scrub"); 650 if(iq->parse_failures) 651 errinf(qstate, "could not parse upstream response"); 652 } else if(iq->response == NULL && iq->timeout_count != 0) { 653 errinf(qstate, "upstream server timeout"); 654 } else if(iq->response == NULL) { 655 errinf(qstate, "no server to query"); 656 if(iq->dp) { 657 if(iq->dp->target_list == NULL) 658 errinf(qstate, "no addresses for nameservers"); 659 else errinf(qstate, "nameserver addresses not usable"); 660 if(iq->dp->nslist == NULL) 661 errinf(qstate, "have no nameserver names"); 662 if(iq->dp->bogus) 663 errinf(qstate, "NS record was dnssec bogus"); 664 } 665 } 666 if(iq->response && iq->response->rep) { 667 if(FLAGS_GET_RCODE(iq->response->rep->flags) != 0) { 668 char rcode[256], rc[32]; 669 (void)sldns_wire2str_rcode_buf( 670 FLAGS_GET_RCODE(iq->response->rep->flags), 671 rc, sizeof(rc)); 672 snprintf(rcode, sizeof(rcode), "got %s", rc); 673 errinf(qstate, rcode); 674 } else { 675 /* rcode NOERROR */ 676 if(iq->response->rep->an_numrrsets == 0) { 677 errinf(qstate, "nodata answer"); 678 } 679 } 680 } 681 } 682 683 /** see if last resort is possible - does config allow queries to parent */ 684 static int 685 can_have_last_resort(struct module_env* env, uint8_t* nm, size_t ATTR_UNUSED(nmlen), 686 uint16_t qclass, int* have_dp, struct delegpt** retdp, 687 struct regional* region) 688 { 689 struct delegpt* dp = NULL; 690 int nolock = 0; 691 /* do not process a last resort (the parent side) if a stub 692 * or forward is configured, because we do not want to go 'above' 693 * the configured servers */ 694 if(!dname_is_root(nm) && 695 (dp = hints_find(env->hints, nm, qclass, nolock)) && 696 /* has_parent side is turned off for stub_first, where we 697 * are allowed to go to the parent */ 698 dp->has_parent_side_NS) { 699 if(retdp) *retdp = delegpt_copy(dp, region); 700 lock_rw_unlock(&env->hints->lock); 701 if(have_dp) *have_dp = 1; 702 return 0; 703 } 704 if(dp) { 705 lock_rw_unlock(&env->hints->lock); 706 dp = NULL; 707 } 708 if((dp = forwards_find(env->fwds, nm, qclass, nolock)) && 709 /* has_parent_side is turned off for forward_first, where 710 * we are allowed to go to the parent */ 711 dp->has_parent_side_NS) { 712 if(retdp) *retdp = delegpt_copy(dp, region); 713 lock_rw_unlock(&env->fwds->lock); 714 if(have_dp) *have_dp = 1; 715 return 0; 716 } 717 /* lock_() calls are macros that could be nothing, surround in {} */ 718 if(dp) { lock_rw_unlock(&env->fwds->lock); } 719 return 1; 720 } 721 722 /** see if target name is caps-for-id whitelisted */ 723 static int 724 is_caps_whitelisted(struct iter_env* ie, struct iter_qstate* iq) 725 { 726 if(!ie->caps_white) return 0; /* no whitelist, or no capsforid */ 727 return name_tree_lookup(ie->caps_white, iq->qchase.qname, 728 iq->qchase.qname_len, dname_count_labels(iq->qchase.qname), 729 iq->qchase.qclass) != NULL; 730 } 731 732 /** 733 * Create target count structure for this query. This is always explicitly 734 * created for the parent query. 735 */ 736 static void 737 target_count_create(struct iter_qstate* iq) 738 { 739 if(!iq->target_count) { 740 iq->target_count = (int*)calloc(TARGET_COUNT_MAX, sizeof(int)); 741 /* if calloc fails we simply do not track this number */ 742 if(iq->target_count) { 743 iq->target_count[TARGET_COUNT_REF] = 1; 744 iq->nxns_dp = (uint8_t**)calloc(1, sizeof(uint8_t*)); 745 } 746 } 747 } 748 749 static void 750 target_count_increase(struct iter_qstate* iq, int num) 751 { 752 target_count_create(iq); 753 if(iq->target_count) 754 iq->target_count[TARGET_COUNT_QUERIES] += num; 755 iq->dp_target_count++; 756 } 757 758 static void 759 target_count_increase_nx(struct iter_qstate* iq, int num) 760 { 761 target_count_create(iq); 762 if(iq->target_count) 763 iq->target_count[TARGET_COUNT_NX] += num; 764 } 765 766 static void 767 target_count_increase_global_quota(struct iter_qstate* iq, int num) 768 { 769 target_count_create(iq); 770 if(iq->target_count) 771 iq->target_count[TARGET_COUNT_GLOBAL_QUOTA] += num; 772 } 773 774 /** 775 * Generate a subrequest. 776 * Generate a local request event. Local events are tied to this module, and 777 * have a corresponding (first tier) event that is waiting for this event to 778 * resolve to continue. 779 * 780 * @param qname The query name for this request. 781 * @param qnamelen length of qname 782 * @param qtype The query type for this request. 783 * @param qclass The query class for this request. 784 * @param qstate The event that is generating this event. 785 * @param id: module id. 786 * @param iq: The iterator state that is generating this event. 787 * @param initial_state The initial response state (normally this 788 * is QUERY_RESP_STATE, unless it is known that the request won't 789 * need iterative processing 790 * @param finalstate The final state for the response to this request. 791 * @param subq_ret: if newly allocated, the subquerystate, or NULL if it does 792 * not need initialisation. 793 * @param v: if true, validation is done on the subquery. 794 * @param detached: true if this qstate should not attach to the subquery 795 * @return false on error (malloc). 796 */ 797 static int 798 generate_sub_request(uint8_t* qname, size_t qnamelen, uint16_t qtype, 799 uint16_t qclass, struct module_qstate* qstate, int id, 800 struct iter_qstate* iq, enum iter_state initial_state, 801 enum iter_state finalstate, struct module_qstate** subq_ret, int v, 802 int detached) 803 { 804 struct module_qstate* subq = NULL; 805 struct iter_qstate* subiq = NULL; 806 uint16_t qflags = 0; /* OPCODE QUERY, no flags */ 807 struct query_info qinf; 808 int prime = (finalstate == PRIME_RESP_STATE)?1:0; 809 int valrec = 0; 810 qinf.qname = qname; 811 qinf.qname_len = qnamelen; 812 qinf.qtype = qtype; 813 qinf.qclass = qclass; 814 qinf.local_alias = NULL; 815 816 /* RD should be set only when sending the query back through the INIT 817 * state. */ 818 if(initial_state == INIT_REQUEST_STATE) 819 qflags |= BIT_RD; 820 /* We set the CD flag so we can send this through the "head" of 821 * the resolution chain, which might have a validator. We are 822 * uninterested in validating things not on the direct resolution 823 * path. */ 824 if(!v) { 825 qflags |= BIT_CD; 826 valrec = 1; 827 } 828 829 if(detached) { 830 struct mesh_state* sub = NULL; 831 fptr_ok(fptr_whitelist_modenv_add_sub( 832 qstate->env->add_sub)); 833 if(!(*qstate->env->add_sub)(qstate, &qinf, NULL, 834 qflags, prime, valrec, &subq, &sub)){ 835 return 0; 836 } 837 } 838 else { 839 /* attach subquery, lookup existing or make a new one */ 840 fptr_ok(fptr_whitelist_modenv_attach_sub( 841 qstate->env->attach_sub)); 842 if(!(*qstate->env->attach_sub)(qstate, &qinf, NULL, qflags, 843 prime, valrec, &subq)) { 844 return 0; 845 } 846 } 847 *subq_ret = subq; 848 if(subq) { 849 /* initialise the new subquery */ 850 subq->curmod = id; 851 subq->ext_state[id] = module_state_initial; 852 subq->minfo[id] = regional_alloc(subq->region, 853 sizeof(struct iter_qstate)); 854 if(!subq->minfo[id]) { 855 log_err("init subq: out of memory"); 856 fptr_ok(fptr_whitelist_modenv_kill_sub( 857 qstate->env->kill_sub)); 858 (*qstate->env->kill_sub)(subq); 859 return 0; 860 } 861 subiq = (struct iter_qstate*)subq->minfo[id]; 862 memset(subiq, 0, sizeof(*subiq)); 863 subiq->num_target_queries = 0; 864 target_count_create(iq); 865 subiq->target_count = iq->target_count; 866 if(iq->target_count) { 867 iq->target_count[TARGET_COUNT_REF] ++; /* extra reference */ 868 subiq->nxns_dp = iq->nxns_dp; 869 } 870 subiq->dp_target_count = 0; 871 subiq->num_current_queries = 0; 872 subiq->depth = iq->depth+1; 873 outbound_list_init(&subiq->outlist); 874 subiq->state = initial_state; 875 subiq->final_state = finalstate; 876 subiq->qchase = subq->qinfo; 877 subiq->chase_flags = subq->query_flags; 878 subiq->refetch_glue = 0; 879 if(qstate->env->cfg->qname_minimisation) 880 subiq->minimisation_state = INIT_MINIMISE_STATE; 881 else 882 subiq->minimisation_state = DONOT_MINIMISE_STATE; 883 memset(&subiq->qinfo_out, 0, sizeof(struct query_info)); 884 } 885 return 1; 886 } 887 888 /** 889 * Generate and send a root priming request. 890 * @param qstate: the qtstate that triggered the need to prime. 891 * @param iq: iterator query state. 892 * @param id: module id. 893 * @param qclass: the class to prime. 894 * @return 0 on failure 895 */ 896 static int 897 prime_root(struct module_qstate* qstate, struct iter_qstate* iq, int id, 898 uint16_t qclass) 899 { 900 struct delegpt* dp; 901 struct module_qstate* subq; 902 int nolock = 0; 903 verbose(VERB_DETAIL, "priming . %s NS", 904 sldns_lookup_by_id(sldns_rr_classes, (int)qclass)? 905 sldns_lookup_by_id(sldns_rr_classes, (int)qclass)->name:"??"); 906 dp = hints_find_root(qstate->env->hints, qclass, nolock); 907 if(!dp) { 908 verbose(VERB_ALGO, "Cannot prime due to lack of hints"); 909 return 0; 910 } 911 /* Priming requests start at the QUERYTARGETS state, skipping 912 * the normal INIT state logic (which would cause an infloop). */ 913 if(!generate_sub_request((uint8_t*)"\000", 1, LDNS_RR_TYPE_NS, 914 qclass, qstate, id, iq, QUERYTARGETS_STATE, PRIME_RESP_STATE, 915 &subq, 0, 0)) { 916 lock_rw_unlock(&qstate->env->hints->lock); 917 verbose(VERB_ALGO, "could not prime root"); 918 return 0; 919 } 920 if(subq) { 921 struct iter_qstate* subiq = 922 (struct iter_qstate*)subq->minfo[id]; 923 /* Set the initial delegation point to the hint. 924 * copy dp, it is now part of the root prime query. 925 * dp was part of in the fixed hints structure. */ 926 subiq->dp = delegpt_copy(dp, subq->region); 927 lock_rw_unlock(&qstate->env->hints->lock); 928 if(!subiq->dp) { 929 log_err("out of memory priming root, copydp"); 930 fptr_ok(fptr_whitelist_modenv_kill_sub( 931 qstate->env->kill_sub)); 932 (*qstate->env->kill_sub)(subq); 933 return 0; 934 } 935 /* there should not be any target queries. */ 936 subiq->num_target_queries = 0; 937 subiq->dnssec_expected = iter_indicates_dnssec( 938 qstate->env, subiq->dp, NULL, subq->qinfo.qclass); 939 } else { 940 lock_rw_unlock(&qstate->env->hints->lock); 941 } 942 943 /* this module stops, our submodule starts, and does the query. */ 944 qstate->ext_state[id] = module_wait_subquery; 945 return 1; 946 } 947 948 /** 949 * Generate and process a stub priming request. This method tests for the 950 * need to prime a stub zone, so it is safe to call for every request. 951 * 952 * @param qstate: the qtstate that triggered the need to prime. 953 * @param iq: iterator query state. 954 * @param id: module id. 955 * @param qname: request name. 956 * @param qclass: request class. 957 * @return true if a priming subrequest was made, false if not. The will only 958 * issue a priming request if it detects an unprimed stub. 959 * Uses value of 2 to signal during stub-prime in root-prime situation 960 * that a noprime-stub is available and resolution can continue. 961 */ 962 static int 963 prime_stub(struct module_qstate* qstate, struct iter_qstate* iq, int id, 964 uint8_t* qname, uint16_t qclass) 965 { 966 /* Lookup the stub hint. This will return null if the stub doesn't 967 * need to be re-primed. */ 968 struct iter_hints_stub* stub; 969 struct delegpt* stub_dp; 970 struct module_qstate* subq; 971 int nolock = 0; 972 973 if(!qname) return 0; 974 stub = hints_lookup_stub(qstate->env->hints, qname, qclass, iq->dp, 975 nolock); 976 /* The stub (if there is one) does not need priming. */ 977 if(!stub) return 0; 978 stub_dp = stub->dp; 979 /* if we have an auth_zone dp, and stub is equal, don't prime stub 980 * yet, unless we want to fallback and avoid the auth_zone */ 981 if(!iq->auth_zone_avoid && iq->dp && iq->dp->auth_dp && 982 query_dname_compare(iq->dp->name, stub_dp->name) == 0) { 983 lock_rw_unlock(&qstate->env->hints->lock); 984 return 0; 985 } 986 987 /* is it a noprime stub (always use) */ 988 if(stub->noprime) { 989 int r = 0; 990 if(iq->dp == NULL) r = 2; 991 /* copy the dp out of the fixed hints structure, so that 992 * it can be changed when servicing this query */ 993 iq->dp = delegpt_copy(stub_dp, qstate->region); 994 lock_rw_unlock(&qstate->env->hints->lock); 995 if(!iq->dp) { 996 log_err("out of memory priming stub"); 997 errinf(qstate, "malloc failure, priming stub"); 998 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 999 return 1; /* return 1 to make module stop, with error */ 1000 } 1001 log_nametypeclass(VERB_DETAIL, "use stub", iq->dp->name, 1002 LDNS_RR_TYPE_NS, qclass); 1003 return r; 1004 } 1005 1006 /* Otherwise, we need to (re)prime the stub. */ 1007 log_nametypeclass(VERB_DETAIL, "priming stub", stub_dp->name, 1008 LDNS_RR_TYPE_NS, qclass); 1009 1010 /* Stub priming events start at the QUERYTARGETS state to avoid the 1011 * redundant INIT state processing. */ 1012 if(!generate_sub_request(stub_dp->name, stub_dp->namelen, 1013 LDNS_RR_TYPE_NS, qclass, qstate, id, iq, 1014 QUERYTARGETS_STATE, PRIME_RESP_STATE, &subq, 0, 0)) { 1015 lock_rw_unlock(&qstate->env->hints->lock); 1016 verbose(VERB_ALGO, "could not prime stub"); 1017 errinf(qstate, "could not generate lookup for stub prime"); 1018 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1019 return 1; /* return 1 to make module stop, with error */ 1020 } 1021 if(subq) { 1022 struct iter_qstate* subiq = 1023 (struct iter_qstate*)subq->minfo[id]; 1024 1025 /* Set the initial delegation point to the hint. */ 1026 /* make copy to avoid use of stub dp by different qs/threads */ 1027 subiq->dp = delegpt_copy(stub_dp, subq->region); 1028 lock_rw_unlock(&qstate->env->hints->lock); 1029 if(!subiq->dp) { 1030 log_err("out of memory priming stub, copydp"); 1031 fptr_ok(fptr_whitelist_modenv_kill_sub( 1032 qstate->env->kill_sub)); 1033 (*qstate->env->kill_sub)(subq); 1034 errinf(qstate, "malloc failure, in stub prime"); 1035 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1036 return 1; /* return 1 to make module stop, with error */ 1037 } 1038 /* there should not be any target queries -- although there 1039 * wouldn't be anyway, since stub hints never have 1040 * missing targets. */ 1041 subiq->num_target_queries = 0; 1042 subiq->wait_priming_stub = 1; 1043 subiq->dnssec_expected = iter_indicates_dnssec( 1044 qstate->env, subiq->dp, NULL, subq->qinfo.qclass); 1045 } else { 1046 lock_rw_unlock(&qstate->env->hints->lock); 1047 } 1048 1049 /* this module stops, our submodule starts, and does the query. */ 1050 qstate->ext_state[id] = module_wait_subquery; 1051 return 1; 1052 } 1053 1054 /** 1055 * Generate a delegation point for an auth zone (unless cached dp is better) 1056 * false on alloc failure. 1057 */ 1058 static int 1059 auth_zone_delegpt(struct module_qstate* qstate, struct iter_qstate* iq, 1060 uint8_t* delname, size_t delnamelen) 1061 { 1062 struct auth_zone* z; 1063 if(iq->auth_zone_avoid) 1064 return 1; 1065 if(!delname) { 1066 delname = iq->qchase.qname; 1067 delnamelen = iq->qchase.qname_len; 1068 } 1069 lock_rw_rdlock(&qstate->env->auth_zones->lock); 1070 z = auth_zones_find_zone(qstate->env->auth_zones, delname, delnamelen, 1071 qstate->qinfo.qclass); 1072 if(!z) { 1073 lock_rw_unlock(&qstate->env->auth_zones->lock); 1074 return 1; 1075 } 1076 lock_rw_rdlock(&z->lock); 1077 lock_rw_unlock(&qstate->env->auth_zones->lock); 1078 if(z->for_upstream) { 1079 if(iq->dp && query_dname_compare(z->name, iq->dp->name) == 0 1080 && iq->dp->auth_dp && qstate->blacklist && 1081 z->fallback_enabled) { 1082 /* cache is blacklisted and fallback, and we 1083 * already have an auth_zone dp */ 1084 if(verbosity>=VERB_ALGO) { 1085 char buf[LDNS_MAX_DOMAINLEN]; 1086 dname_str(z->name, buf); 1087 verbose(VERB_ALGO, "auth_zone %s " 1088 "fallback because cache blacklisted", 1089 buf); 1090 } 1091 lock_rw_unlock(&z->lock); 1092 iq->dp = NULL; 1093 return 1; 1094 } 1095 if(iq->dp==NULL || dname_subdomain_c(z->name, iq->dp->name)) { 1096 struct delegpt* dp; 1097 if(qstate->blacklist && z->fallback_enabled) { 1098 /* cache is blacklisted because of a DNSSEC 1099 * validation failure, and the zone allows 1100 * fallback to the internet, query there. */ 1101 if(verbosity>=VERB_ALGO) { 1102 char buf[LDNS_MAX_DOMAINLEN]; 1103 dname_str(z->name, buf); 1104 verbose(VERB_ALGO, "auth_zone %s " 1105 "fallback because cache blacklisted", 1106 buf); 1107 } 1108 lock_rw_unlock(&z->lock); 1109 return 1; 1110 } 1111 dp = (struct delegpt*)regional_alloc_zero( 1112 qstate->region, sizeof(*dp)); 1113 if(!dp) { 1114 log_err("alloc failure"); 1115 if(z->fallback_enabled) { 1116 lock_rw_unlock(&z->lock); 1117 return 1; /* just fallback */ 1118 } 1119 lock_rw_unlock(&z->lock); 1120 errinf(qstate, "malloc failure"); 1121 return 0; 1122 } 1123 dp->name = regional_alloc_init(qstate->region, 1124 z->name, z->namelen); 1125 if(!dp->name) { 1126 log_err("alloc failure"); 1127 if(z->fallback_enabled) { 1128 lock_rw_unlock(&z->lock); 1129 return 1; /* just fallback */ 1130 } 1131 lock_rw_unlock(&z->lock); 1132 errinf(qstate, "malloc failure"); 1133 return 0; 1134 } 1135 dp->namelen = z->namelen; 1136 dp->namelabs = z->namelabs; 1137 dp->auth_dp = 1; 1138 iq->dp = dp; 1139 } 1140 } 1141 1142 lock_rw_unlock(&z->lock); 1143 return 1; 1144 } 1145 1146 /** 1147 * Generate A and AAAA checks for glue that is in-zone for the referral 1148 * we just got to obtain authoritative information on the addresses. 1149 * 1150 * @param qstate: the qtstate that triggered the need to prime. 1151 * @param iq: iterator query state. 1152 * @param id: module id. 1153 */ 1154 static void 1155 generate_a_aaaa_check(struct module_qstate* qstate, struct iter_qstate* iq, 1156 int id) 1157 { 1158 struct iter_env* ie = (struct iter_env*)qstate->env->modinfo[id]; 1159 struct module_qstate* subq; 1160 size_t i; 1161 struct reply_info* rep = iq->response->rep; 1162 struct ub_packed_rrset_key* s; 1163 log_assert(iq->dp); 1164 1165 if(iq->depth == ie->max_dependency_depth) 1166 return; 1167 /* walk through additional, and check if in-zone, 1168 * only relevant A, AAAA are left after scrub anyway */ 1169 for(i=rep->an_numrrsets+rep->ns_numrrsets; i<rep->rrset_count; i++) { 1170 s = rep->rrsets[i]; 1171 /* check *ALL* addresses that are transmitted in additional*/ 1172 /* is it an address ? */ 1173 if( !(ntohs(s->rk.type)==LDNS_RR_TYPE_A || 1174 ntohs(s->rk.type)==LDNS_RR_TYPE_AAAA)) { 1175 continue; 1176 } 1177 /* is this query the same as the A/AAAA check for it */ 1178 if(qstate->qinfo.qtype == ntohs(s->rk.type) && 1179 qstate->qinfo.qclass == ntohs(s->rk.rrset_class) && 1180 query_dname_compare(qstate->qinfo.qname, 1181 s->rk.dname)==0 && 1182 (qstate->query_flags&BIT_RD) && 1183 !(qstate->query_flags&BIT_CD)) 1184 continue; 1185 1186 /* generate subrequest for it */ 1187 log_nametypeclass(VERB_ALGO, "schedule addr fetch", 1188 s->rk.dname, ntohs(s->rk.type), 1189 ntohs(s->rk.rrset_class)); 1190 if(!generate_sub_request(s->rk.dname, s->rk.dname_len, 1191 ntohs(s->rk.type), ntohs(s->rk.rrset_class), 1192 qstate, id, iq, 1193 INIT_REQUEST_STATE, FINISHED_STATE, &subq, 1, 0)) { 1194 verbose(VERB_ALGO, "could not generate addr check"); 1195 return; 1196 } 1197 /* ignore subq - not need for more init */ 1198 } 1199 } 1200 1201 /** 1202 * Generate a NS check request to obtain authoritative information 1203 * on an NS rrset. 1204 * 1205 * @param qstate: the qstate that triggered the need to prime. 1206 * @param iq: iterator query state. 1207 * @param id: module id. 1208 */ 1209 static void 1210 generate_ns_check(struct module_qstate* qstate, struct iter_qstate* iq, int id) 1211 { 1212 struct iter_env* ie = (struct iter_env*)qstate->env->modinfo[id]; 1213 struct module_qstate* subq; 1214 log_assert(iq->dp); 1215 1216 if(iq->depth == ie->max_dependency_depth) 1217 return; 1218 if(!can_have_last_resort(qstate->env, iq->dp->name, iq->dp->namelen, 1219 iq->qchase.qclass, NULL, NULL, NULL)) 1220 return; 1221 /* is this query the same as the nscheck? */ 1222 if(qstate->qinfo.qtype == LDNS_RR_TYPE_NS && 1223 query_dname_compare(iq->dp->name, qstate->qinfo.qname)==0 && 1224 (qstate->query_flags&BIT_RD) && !(qstate->query_flags&BIT_CD)){ 1225 /* spawn off A, AAAA queries for in-zone glue to check */ 1226 generate_a_aaaa_check(qstate, iq, id); 1227 return; 1228 } 1229 /* no need to get the NS record for DS, it is above the zonecut */ 1230 if(qstate->qinfo.qtype == LDNS_RR_TYPE_DS) 1231 return; 1232 1233 log_nametypeclass(VERB_ALGO, "schedule ns fetch", 1234 iq->dp->name, LDNS_RR_TYPE_NS, iq->qchase.qclass); 1235 if(!generate_sub_request(iq->dp->name, iq->dp->namelen, 1236 LDNS_RR_TYPE_NS, iq->qchase.qclass, qstate, id, iq, 1237 INIT_REQUEST_STATE, FINISHED_STATE, &subq, 1, 0)) { 1238 verbose(VERB_ALGO, "could not generate ns check"); 1239 return; 1240 } 1241 if(subq) { 1242 struct iter_qstate* subiq = 1243 (struct iter_qstate*)subq->minfo[id]; 1244 1245 /* make copy to avoid use of stub dp by different qs/threads */ 1246 /* refetch glue to start higher up the tree */ 1247 subiq->refetch_glue = 1; 1248 subiq->dp = delegpt_copy(iq->dp, subq->region); 1249 if(!subiq->dp) { 1250 log_err("out of memory generating ns check, copydp"); 1251 fptr_ok(fptr_whitelist_modenv_kill_sub( 1252 qstate->env->kill_sub)); 1253 (*qstate->env->kill_sub)(subq); 1254 return; 1255 } 1256 } 1257 } 1258 1259 /** 1260 * Generate a DNSKEY prefetch query to get the DNSKEY for the DS record we 1261 * just got in a referral (where we have dnssec_expected, thus have trust 1262 * anchors above it). Note that right after calling this routine the 1263 * iterator detached subqueries (because of following the referral), and thus 1264 * the DNSKEY query becomes detached, its return stored in the cache for 1265 * later lookup by the validator. This cache lookup by the validator avoids 1266 * the roundtrip incurred by the DNSKEY query. The DNSKEY query is now 1267 * performed at about the same time the original query is sent to the domain, 1268 * thus the two answers are likely to be returned at about the same time, 1269 * saving a roundtrip from the validated lookup. 1270 * 1271 * @param qstate: the qtstate that triggered the need to prime. 1272 * @param iq: iterator query state. 1273 * @param id: module id. 1274 */ 1275 static void 1276 generate_dnskey_prefetch(struct module_qstate* qstate, 1277 struct iter_qstate* iq, int id) 1278 { 1279 struct module_qstate* subq; 1280 log_assert(iq->dp); 1281 1282 /* is this query the same as the prefetch? */ 1283 if(qstate->qinfo.qtype == LDNS_RR_TYPE_DNSKEY && 1284 query_dname_compare(iq->dp->name, qstate->qinfo.qname)==0 && 1285 (qstate->query_flags&BIT_RD) && !(qstate->query_flags&BIT_CD)){ 1286 return; 1287 } 1288 /* we do not generate this prefetch when the query list is full, 1289 * the query is fetched, if needed, when the validator wants it. 1290 * At that time the validator waits for it, after spawning it. 1291 * This means there is one state that uses cpu and a socket, the 1292 * spawned while this one waits, and not several at the same time, 1293 * if we had created the lookup here. And this helps to keep 1294 * the total load down, but the query still succeeds to resolve. */ 1295 if(mesh_jostle_exceeded(qstate->env->mesh)) 1296 return; 1297 1298 /* if the DNSKEY is in the cache this lookup will stop quickly */ 1299 log_nametypeclass(VERB_ALGO, "schedule dnskey prefetch", 1300 iq->dp->name, LDNS_RR_TYPE_DNSKEY, iq->qchase.qclass); 1301 if(!generate_sub_request(iq->dp->name, iq->dp->namelen, 1302 LDNS_RR_TYPE_DNSKEY, iq->qchase.qclass, qstate, id, iq, 1303 INIT_REQUEST_STATE, FINISHED_STATE, &subq, 0, 0)) { 1304 /* we'll be slower, but it'll work */ 1305 verbose(VERB_ALGO, "could not generate dnskey prefetch"); 1306 return; 1307 } 1308 if(subq) { 1309 struct iter_qstate* subiq = 1310 (struct iter_qstate*)subq->minfo[id]; 1311 /* this qstate has the right delegation for the dnskey lookup*/ 1312 /* make copy to avoid use of stub dp by different qs/threads */ 1313 subiq->dp = delegpt_copy(iq->dp, subq->region); 1314 /* if !subiq->dp, it'll start from the cache, no problem */ 1315 } 1316 } 1317 1318 /** 1319 * See if the query needs forwarding. 1320 * 1321 * @param qstate: query state. 1322 * @param iq: iterator query state. 1323 * @return true if the request is forwarded, false if not. 1324 * If returns true but, iq->dp is NULL then a malloc failure occurred. 1325 */ 1326 static int 1327 forward_request(struct module_qstate* qstate, struct iter_qstate* iq) 1328 { 1329 struct delegpt* dp; 1330 uint8_t* delname = iq->qchase.qname; 1331 size_t delnamelen = iq->qchase.qname_len; 1332 int nolock = 0; 1333 if(iq->refetch_glue && iq->dp) { 1334 delname = iq->dp->name; 1335 delnamelen = iq->dp->namelen; 1336 } 1337 /* strip one label off of DS query to lookup higher for it */ 1338 if( (iq->qchase.qtype == LDNS_RR_TYPE_DS || iq->refetch_glue) 1339 && !dname_is_root(iq->qchase.qname)) 1340 dname_remove_label(&delname, &delnamelen); 1341 dp = forwards_lookup(qstate->env->fwds, delname, iq->qchase.qclass, 1342 nolock); 1343 if(!dp) return 0; 1344 /* send recursion desired to forward addr */ 1345 iq->chase_flags |= BIT_RD; 1346 iq->dp = delegpt_copy(dp, qstate->region); 1347 lock_rw_unlock(&qstate->env->fwds->lock); 1348 /* iq->dp checked by caller */ 1349 verbose(VERB_ALGO, "forwarding request"); 1350 return 1; 1351 } 1352 1353 /** 1354 * Process the initial part of the request handling. This state roughly 1355 * corresponds to resolver algorithms steps 1 (find answer in cache) and 2 1356 * (find the best servers to ask). 1357 * 1358 * Note that all requests start here, and query restarts revisit this state. 1359 * 1360 * This state either generates: 1) a response, from cache or error, 2) a 1361 * priming event, or 3) forwards the request to the next state (init2, 1362 * generally). 1363 * 1364 * @param qstate: query state. 1365 * @param iq: iterator query state. 1366 * @param ie: iterator shared global environment. 1367 * @param id: module id. 1368 * @return true if the event needs more request processing immediately, 1369 * false if not. 1370 */ 1371 static int 1372 processInitRequest(struct module_qstate* qstate, struct iter_qstate* iq, 1373 struct iter_env* ie, int id) 1374 { 1375 uint8_t dpname_storage[LDNS_MAX_DOMAINLEN+1]; 1376 uint8_t* delname, *dpname=NULL; 1377 size_t delnamelen, dpnamelen=0; 1378 struct dns_msg* msg = NULL; 1379 1380 log_query_info(VERB_DETAIL, "resolving", &qstate->qinfo); 1381 /* check effort */ 1382 1383 /* We enforce a maximum number of query restarts. This is primarily a 1384 * cheap way to prevent CNAME loops. */ 1385 if(iq->query_restart_count > ie->max_query_restarts) { 1386 verbose(VERB_QUERY, "request has exceeded the maximum number" 1387 " of query restarts with %d", iq->query_restart_count); 1388 errinf(qstate, "request has exceeded the maximum number " 1389 "restarts (eg. indirections)"); 1390 if(iq->qchase.qname) 1391 errinf_dname(qstate, "stop at", iq->qchase.qname); 1392 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 1393 } 1394 1395 /* We enforce a maximum recursion/dependency depth -- in general, 1396 * this is unnecessary for dependency loops (although it will 1397 * catch those), but it provides a sensible limit to the amount 1398 * of work required to answer a given query. */ 1399 verbose(VERB_ALGO, "request has dependency depth of %d", iq->depth); 1400 if(iq->depth > ie->max_dependency_depth) { 1401 verbose(VERB_QUERY, "request has exceeded the maximum " 1402 "dependency depth with depth of %d", iq->depth); 1403 errinf(qstate, "request has exceeded the maximum dependency " 1404 "depth (eg. nameserver lookup recursion)"); 1405 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1406 } 1407 1408 /* If the request is qclass=ANY, setup to generate each class */ 1409 if(qstate->qinfo.qclass == LDNS_RR_CLASS_ANY) { 1410 iq->qchase.qclass = 0; 1411 return next_state(iq, COLLECT_CLASS_STATE); 1412 } 1413 1414 /* 1415 * If we are restricted by a forward-zone or a stub-zone, we 1416 * can't re-fetch glue for this delegation point. 1417 * we won’t try to re-fetch glue if the iq->dp is null. 1418 */ 1419 if (iq->refetch_glue && 1420 iq->dp && 1421 !can_have_last_resort(qstate->env, iq->dp->name, 1422 iq->dp->namelen, iq->qchase.qclass, NULL, NULL, NULL)) { 1423 iq->refetch_glue = 0; 1424 } 1425 1426 /* Resolver Algorithm Step 1 -- Look for the answer in local data. */ 1427 1428 /* This either results in a query restart (CNAME cache response), a 1429 * terminating response (ANSWER), or a cache miss (null). */ 1430 1431 /* Check RPZ for override */ 1432 if(qstate->env->auth_zones) { 1433 /* apply rpz qname triggers, like after cname */ 1434 struct dns_msg* forged_response = 1435 rpz_callback_from_iterator_cname(qstate, iq); 1436 if(forged_response) { 1437 uint8_t* sname = 0; 1438 size_t slen = 0; 1439 int count = 0; 1440 while(forged_response && reply_find_rrset_section_an( 1441 forged_response->rep, iq->qchase.qname, 1442 iq->qchase.qname_len, LDNS_RR_TYPE_CNAME, 1443 iq->qchase.qclass) && 1444 iq->qchase.qtype != LDNS_RR_TYPE_CNAME && 1445 count++ < ie->max_query_restarts) { 1446 /* another cname to follow */ 1447 if(!handle_cname_response(qstate, iq, forged_response, 1448 &sname, &slen)) { 1449 errinf(qstate, "malloc failure, CNAME info"); 1450 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1451 } 1452 iq->qchase.qname = sname; 1453 iq->qchase.qname_len = slen; 1454 forged_response = 1455 rpz_callback_from_iterator_cname(qstate, iq); 1456 } 1457 if(forged_response != NULL) { 1458 qstate->ext_state[id] = module_finished; 1459 qstate->return_rcode = LDNS_RCODE_NOERROR; 1460 qstate->return_msg = forged_response; 1461 iq->response = forged_response; 1462 next_state(iq, FINISHED_STATE); 1463 if(!iter_prepend(iq, qstate->return_msg, qstate->region)) { 1464 log_err("rpz: after cached cname, prepend rrsets: out of memory"); 1465 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1466 } 1467 qstate->return_msg->qinfo = qstate->qinfo; 1468 return 0; 1469 } 1470 /* Follow the CNAME response */ 1471 iq->dp = NULL; 1472 iq->refetch_glue = 0; 1473 iq->query_restart_count++; 1474 iq->sent_count = 0; 1475 iq->dp_target_count = 0; 1476 sock_list_insert(&qstate->reply_origin, NULL, 0, qstate->region); 1477 if(qstate->env->cfg->qname_minimisation) 1478 iq->minimisation_state = INIT_MINIMISE_STATE; 1479 return next_state(iq, INIT_REQUEST_STATE); 1480 } 1481 } 1482 1483 if (iter_stub_fwd_no_cache(qstate, &iq->qchase, &dpname, &dpnamelen, 1484 dpname_storage, sizeof(dpname_storage))) { 1485 /* Asked to not query cache. */ 1486 verbose(VERB_ALGO, "no-cache set, going to the network"); 1487 qstate->no_cache_lookup = 1; 1488 qstate->no_cache_store = 1; 1489 msg = NULL; 1490 } else if(qstate->blacklist) { 1491 /* if cache, or anything else, was blacklisted then 1492 * getting older results from cache is a bad idea, no cache */ 1493 verbose(VERB_ALGO, "cache blacklisted, going to the network"); 1494 msg = NULL; 1495 } else if(!qstate->no_cache_lookup) { 1496 msg = dns_cache_lookup(qstate->env, iq->qchase.qname, 1497 iq->qchase.qname_len, iq->qchase.qtype, 1498 iq->qchase.qclass, qstate->query_flags, 1499 qstate->region, qstate->env->scratch, 0, dpname, 1500 dpnamelen); 1501 if(!msg && qstate->env->neg_cache && 1502 iter_qname_indicates_dnssec(qstate->env, &iq->qchase)) { 1503 /* lookup in negative cache; may result in 1504 * NOERROR/NODATA or NXDOMAIN answers that need validation */ 1505 msg = val_neg_getmsg(qstate->env->neg_cache, &iq->qchase, 1506 qstate->region, qstate->env->rrset_cache, 1507 qstate->env->scratch_buffer, 1508 *qstate->env->now, 1/*add SOA*/, NULL, 1509 qstate->env->cfg); 1510 } 1511 /* item taken from cache does not match our query name, thus 1512 * security needs to be re-examined later */ 1513 if(msg && query_dname_compare(qstate->qinfo.qname, 1514 iq->qchase.qname) != 0) 1515 msg->rep->security = sec_status_unchecked; 1516 } 1517 if(msg) { 1518 /* handle positive cache response */ 1519 enum response_type type = response_type_from_cache(msg, 1520 &iq->qchase); 1521 if(verbosity >= VERB_ALGO) { 1522 log_dns_msg("msg from cache lookup", &msg->qinfo, 1523 msg->rep); 1524 verbose(VERB_ALGO, "msg ttl is %d, prefetch ttl %d", 1525 (int)msg->rep->ttl, 1526 (int)msg->rep->prefetch_ttl); 1527 } 1528 1529 if(type == RESPONSE_TYPE_CNAME) { 1530 uint8_t* sname = 0; 1531 size_t slen = 0; 1532 verbose(VERB_ALGO, "returning CNAME response from " 1533 "cache"); 1534 if(!handle_cname_response(qstate, iq, msg, 1535 &sname, &slen)) { 1536 errinf(qstate, "failed to prepend CNAME " 1537 "components, malloc failure"); 1538 return error_response(qstate, id, 1539 LDNS_RCODE_SERVFAIL); 1540 } 1541 iq->qchase.qname = sname; 1542 iq->qchase.qname_len = slen; 1543 /* This *is* a query restart, even if it is a cheap 1544 * one. */ 1545 iq->dp = NULL; 1546 iq->refetch_glue = 0; 1547 iq->query_restart_count++; 1548 iq->sent_count = 0; 1549 iq->dp_target_count = 0; 1550 sock_list_insert(&qstate->reply_origin, NULL, 0, qstate->region); 1551 if(qstate->env->cfg->qname_minimisation) 1552 iq->minimisation_state = INIT_MINIMISE_STATE; 1553 return next_state(iq, INIT_REQUEST_STATE); 1554 } 1555 /* if from cache, NULL, else insert 'cache IP' len=0 */ 1556 if(qstate->reply_origin) 1557 sock_list_insert(&qstate->reply_origin, NULL, 0, qstate->region); 1558 if(FLAGS_GET_RCODE(msg->rep->flags) == LDNS_RCODE_SERVFAIL) 1559 errinf(qstate, "SERVFAIL in cache"); 1560 /* it is an answer, response, to final state */ 1561 verbose(VERB_ALGO, "returning answer from cache."); 1562 iq->response = msg; 1563 return final_state(iq); 1564 } 1565 1566 /* attempt to forward the request */ 1567 if(forward_request(qstate, iq)) 1568 { 1569 if(!iq->dp) { 1570 log_err("alloc failure for forward dp"); 1571 errinf(qstate, "malloc failure for forward zone"); 1572 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1573 } 1574 if(!cache_fill_missing(qstate->env, iq->qchase.qclass, 1575 qstate->region, iq->dp, 0)) { 1576 errinf(qstate, "malloc failure, copy extra info into delegation point"); 1577 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1578 } 1579 if((qstate->query_flags&BIT_RD)==0) { 1580 /* If the server accepts RD=0 queries and forwards 1581 * with RD=1, then if the server is listed as an NS 1582 * entry, it starts query loops. Stop that loop by 1583 * disallowing the query. The RD=0 was previously used 1584 * to check the cache with allow_snoop. For stubs, 1585 * the iterator pass would have primed the stub and 1586 * then cached information can be used for further 1587 * queries. */ 1588 verbose(VERB_ALGO, "cannot forward RD=0 query, to stop query loops"); 1589 errinf(qstate, "cannot forward RD=0 query"); 1590 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1591 } 1592 iq->refetch_glue = 0; 1593 iq->minimisation_state = DONOT_MINIMISE_STATE; 1594 /* the request has been forwarded. 1595 * forwarded requests need to be immediately sent to the 1596 * next state, QUERYTARGETS. */ 1597 return next_state(iq, QUERYTARGETS_STATE); 1598 } 1599 1600 /* Resolver Algorithm Step 2 -- find the "best" servers. */ 1601 1602 /* first, adjust for DS queries. To avoid the grandparent problem, 1603 * we just look for the closest set of server to the parent of qname. 1604 * When re-fetching glue we also need to ask the parent. 1605 */ 1606 if(iq->refetch_glue) { 1607 if(!iq->dp) { 1608 log_err("internal or malloc fail: no dp for refetch"); 1609 errinf(qstate, "malloc failure, for delegation info"); 1610 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1611 } 1612 delname = iq->dp->name; 1613 delnamelen = iq->dp->namelen; 1614 } else { 1615 delname = iq->qchase.qname; 1616 delnamelen = iq->qchase.qname_len; 1617 } 1618 if(iq->qchase.qtype == LDNS_RR_TYPE_DS || iq->refetch_glue || 1619 (iq->qchase.qtype == LDNS_RR_TYPE_NS && qstate->prefetch_leeway 1620 && can_have_last_resort(qstate->env, delname, delnamelen, iq->qchase.qclass, NULL, NULL, NULL))) { 1621 /* remove first label from delname, root goes to hints, 1622 * but only to fetch glue, not for qtype=DS. */ 1623 /* also when prefetching an NS record, fetch it again from 1624 * its parent, just as if it expired, so that you do not 1625 * get stuck on an older nameserver that gives old NSrecords */ 1626 if(dname_is_root(delname) && (iq->refetch_glue || 1627 (iq->qchase.qtype == LDNS_RR_TYPE_NS && 1628 qstate->prefetch_leeway))) 1629 delname = NULL; /* go to root priming */ 1630 else dname_remove_label(&delname, &delnamelen); 1631 } 1632 /* delname is the name to lookup a delegation for. If NULL rootprime */ 1633 while(1) { 1634 1635 /* Lookup the delegation in the cache. If null, then the 1636 * cache needs to be primed for the qclass. */ 1637 if(delname) 1638 iq->dp = dns_cache_find_delegation(qstate->env, delname, 1639 delnamelen, iq->qchase.qtype, iq->qchase.qclass, 1640 qstate->region, &iq->deleg_msg, 1641 *qstate->env->now+qstate->prefetch_leeway, 1, 1642 dpname, dpnamelen); 1643 else iq->dp = NULL; 1644 1645 /* If the cache has returned nothing, then we have a 1646 * root priming situation. */ 1647 if(iq->dp == NULL) { 1648 int r; 1649 int nolock = 0; 1650 /* if under auth zone, no prime needed */ 1651 if(!auth_zone_delegpt(qstate, iq, delname, delnamelen)) 1652 return error_response(qstate, id, 1653 LDNS_RCODE_SERVFAIL); 1654 if(iq->dp) /* use auth zone dp */ 1655 return next_state(iq, INIT_REQUEST_2_STATE); 1656 /* if there is a stub, then no root prime needed */ 1657 r = prime_stub(qstate, iq, id, delname, 1658 iq->qchase.qclass); 1659 if(r == 2) 1660 break; /* got noprime-stub-zone, continue */ 1661 else if(r) 1662 return 0; /* stub prime request made */ 1663 if(forwards_lookup_root(qstate->env->fwds, 1664 iq->qchase.qclass, nolock)) { 1665 lock_rw_unlock(&qstate->env->fwds->lock); 1666 /* forward zone root, no root prime needed */ 1667 /* fill in some dp - safety belt */ 1668 iq->dp = hints_find_root(qstate->env->hints, 1669 iq->qchase.qclass, nolock); 1670 if(!iq->dp) { 1671 log_err("internal error: no hints dp"); 1672 errinf(qstate, "no hints for this class"); 1673 return error_response_cache(qstate, id, 1674 LDNS_RCODE_SERVFAIL); 1675 } 1676 iq->dp = delegpt_copy(iq->dp, qstate->region); 1677 lock_rw_unlock(&qstate->env->hints->lock); 1678 if(!iq->dp) { 1679 log_err("out of memory in safety belt"); 1680 errinf(qstate, "malloc failure, in safety belt"); 1681 return error_response(qstate, id, 1682 LDNS_RCODE_SERVFAIL); 1683 } 1684 return next_state(iq, INIT_REQUEST_2_STATE); 1685 } 1686 /* Note that the result of this will set a new 1687 * DelegationPoint based on the result of priming. */ 1688 if(!prime_root(qstate, iq, id, iq->qchase.qclass)) 1689 return error_response(qstate, id, 1690 LDNS_RCODE_REFUSED); 1691 1692 /* priming creates and sends a subordinate query, with 1693 * this query as the parent. So further processing for 1694 * this event will stop until reactivated by the 1695 * results of priming. */ 1696 return 0; 1697 } 1698 if(!iq->ratelimit_ok && qstate->prefetch_leeway) 1699 iq->ratelimit_ok = 1; /* allow prefetches, this keeps 1700 otherwise valid data in the cache */ 1701 1702 /* see if this dp not useless. 1703 * It is useless if: 1704 * o all NS items are required glue. 1705 * or the query is for NS item that is required glue. 1706 * o no addresses are provided. 1707 * o RD qflag is on. 1708 * Instead, go up one level, and try to get even further 1709 * If the root was useless, use safety belt information. 1710 * Only check cache returns, because replies for servers 1711 * could be useless but lead to loops (bumping into the 1712 * same server reply) if useless-checked. 1713 */ 1714 if(iter_dp_is_useless(&qstate->qinfo, qstate->query_flags, 1715 iq->dp, ie->supports_ipv4, ie->supports_ipv6, 1716 ie->nat64.use_nat64)) { 1717 int have_dp = 0; 1718 if(!can_have_last_resort(qstate->env, iq->dp->name, iq->dp->namelen, iq->qchase.qclass, &have_dp, &iq->dp, qstate->region)) { 1719 if(have_dp) { 1720 verbose(VERB_QUERY, "cache has stub " 1721 "or fwd but no addresses, " 1722 "fallback to config"); 1723 if(have_dp && !iq->dp) { 1724 log_err("out of memory in " 1725 "stub/fwd fallback"); 1726 errinf(qstate, "malloc failure, for fallback to config"); 1727 return error_response(qstate, 1728 id, LDNS_RCODE_SERVFAIL); 1729 } 1730 break; 1731 } 1732 verbose(VERB_ALGO, "useless dp " 1733 "but cannot go up, servfail"); 1734 delegpt_log(VERB_ALGO, iq->dp); 1735 errinf(qstate, "no useful nameservers, " 1736 "and cannot go up"); 1737 errinf_dname(qstate, "for zone", iq->dp->name); 1738 return error_response(qstate, id, 1739 LDNS_RCODE_SERVFAIL); 1740 } 1741 if(dname_is_root(iq->dp->name)) { 1742 /* use safety belt */ 1743 int nolock = 0; 1744 verbose(VERB_QUERY, "Cache has root NS but " 1745 "no addresses. Fallback to the safety belt."); 1746 iq->dp = hints_find_root(qstate->env->hints, 1747 iq->qchase.qclass, nolock); 1748 /* note deleg_msg is from previous lookup, 1749 * but RD is on, so it is not used */ 1750 if(!iq->dp) { 1751 log_err("internal error: no hints dp"); 1752 return error_response(qstate, id, 1753 LDNS_RCODE_REFUSED); 1754 } 1755 iq->dp = delegpt_copy(iq->dp, qstate->region); 1756 lock_rw_unlock(&qstate->env->hints->lock); 1757 if(!iq->dp) { 1758 log_err("out of memory in safety belt"); 1759 errinf(qstate, "malloc failure, in safety belt, for root"); 1760 return error_response(qstate, id, 1761 LDNS_RCODE_SERVFAIL); 1762 } 1763 break; 1764 } else { 1765 verbose(VERB_ALGO, 1766 "cache delegation was useless:"); 1767 delegpt_log(VERB_ALGO, iq->dp); 1768 /* go up */ 1769 delname = iq->dp->name; 1770 delnamelen = iq->dp->namelen; 1771 dname_remove_label(&delname, &delnamelen); 1772 } 1773 } else break; 1774 } 1775 1776 verbose(VERB_ALGO, "cache delegation returns delegpt"); 1777 delegpt_log(VERB_ALGO, iq->dp); 1778 1779 /* Otherwise, set the current delegation point and move on to the 1780 * next state. */ 1781 return next_state(iq, INIT_REQUEST_2_STATE); 1782 } 1783 1784 /** 1785 * Process the second part of the initial request handling. This state 1786 * basically exists so that queries that generate root priming events have 1787 * the same init processing as ones that do not. Request events that reach 1788 * this state must have a valid currentDelegationPoint set. 1789 * 1790 * This part is primarily handling stub zone priming. Events that reach this 1791 * state must have a current delegation point. 1792 * 1793 * @param qstate: query state. 1794 * @param iq: iterator query state. 1795 * @param id: module id. 1796 * @return true if the event needs more request processing immediately, 1797 * false if not. 1798 */ 1799 static int 1800 processInitRequest2(struct module_qstate* qstate, struct iter_qstate* iq, 1801 int id) 1802 { 1803 uint8_t* delname; 1804 size_t delnamelen; 1805 log_query_info(VERB_QUERY, "resolving (init part 2): ", 1806 &qstate->qinfo); 1807 1808 delname = iq->qchase.qname; 1809 delnamelen = iq->qchase.qname_len; 1810 if(iq->refetch_glue) { 1811 struct iter_hints_stub* stub; 1812 int nolock = 0; 1813 if(!iq->dp) { 1814 log_err("internal or malloc fail: no dp for refetch"); 1815 errinf(qstate, "malloc failure, no delegation info"); 1816 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1817 } 1818 /* Do not send queries above stub, do not set delname to dp if 1819 * this is above stub without stub-first. */ 1820 stub = hints_lookup_stub( 1821 qstate->env->hints, iq->qchase.qname, iq->qchase.qclass, 1822 iq->dp, nolock); 1823 if(!stub || !stub->dp->has_parent_side_NS || 1824 dname_subdomain_c(iq->dp->name, stub->dp->name)) { 1825 delname = iq->dp->name; 1826 delnamelen = iq->dp->namelen; 1827 } 1828 /* lock_() calls are macros that could be nothing, surround in {} */ 1829 if(stub) { lock_rw_unlock(&qstate->env->hints->lock); } 1830 } 1831 if(iq->qchase.qtype == LDNS_RR_TYPE_DS || iq->refetch_glue) { 1832 if(!dname_is_root(delname)) 1833 dname_remove_label(&delname, &delnamelen); 1834 iq->refetch_glue = 0; /* if CNAME causes restart, no refetch */ 1835 } 1836 1837 /* see if we have an auth zone to answer from, improves dp from cache 1838 * (if any dp from cache) with auth zone dp, if that is lower */ 1839 if(!auth_zone_delegpt(qstate, iq, delname, delnamelen)) 1840 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 1841 1842 /* Check to see if we need to prime a stub zone. */ 1843 if(prime_stub(qstate, iq, id, delname, iq->qchase.qclass)) { 1844 /* A priming sub request was made */ 1845 return 0; 1846 } 1847 1848 /* most events just get forwarded to the next state. */ 1849 return next_state(iq, INIT_REQUEST_3_STATE); 1850 } 1851 1852 /** 1853 * Process the third part of the initial request handling. This state exists 1854 * as a separate state so that queries that generate stub priming events 1855 * will get the tail end of the init process but not repeat the stub priming 1856 * check. 1857 * 1858 * @param qstate: query state. 1859 * @param iq: iterator query state. 1860 * @param id: module id. 1861 * @return true, advancing the event to the QUERYTARGETS_STATE. 1862 */ 1863 static int 1864 processInitRequest3(struct module_qstate* qstate, struct iter_qstate* iq, 1865 int id) 1866 { 1867 log_query_info(VERB_QUERY, "resolving (init part 3): ", 1868 &qstate->qinfo); 1869 /* if the cache reply dp equals a validation anchor or msg has DS, 1870 * then DNSSEC RRSIGs are expected in the reply */ 1871 iq->dnssec_expected = iter_indicates_dnssec(qstate->env, iq->dp, 1872 iq->deleg_msg, iq->qchase.qclass); 1873 1874 /* If the RD flag wasn't set, then we just finish with the 1875 * cached referral as the response. */ 1876 if(!(qstate->query_flags & BIT_RD) && iq->deleg_msg) { 1877 iq->response = iq->deleg_msg; 1878 if(verbosity >= VERB_ALGO && iq->response) 1879 log_dns_msg("no RD requested, using delegation msg", 1880 &iq->response->qinfo, iq->response->rep); 1881 if(qstate->reply_origin) 1882 sock_list_insert(&qstate->reply_origin, NULL, 0, qstate->region); 1883 return final_state(iq); 1884 } 1885 /* After this point, unset the RD flag -- this query is going to 1886 * be sent to an auth. server. */ 1887 iq->chase_flags &= ~BIT_RD; 1888 1889 /* if dnssec expected, fetch key for the trust-anchor or cached-DS */ 1890 if(iq->dnssec_expected && qstate->env->cfg->prefetch_key && 1891 !(qstate->query_flags&BIT_CD)) { 1892 generate_dnskey_prefetch(qstate, iq, id); 1893 fptr_ok(fptr_whitelist_modenv_detach_subs( 1894 qstate->env->detach_subs)); 1895 (*qstate->env->detach_subs)(qstate); 1896 } 1897 1898 /* Jump to the next state. */ 1899 return next_state(iq, QUERYTARGETS_STATE); 1900 } 1901 1902 /** 1903 * Given a basic query, generate a parent-side "target" query. 1904 * These are subordinate queries for missing delegation point target addresses, 1905 * for which only the parent of the delegation provides correct IP addresses. 1906 * 1907 * @param qstate: query state. 1908 * @param iq: iterator query state. 1909 * @param id: module id. 1910 * @param name: target qname. 1911 * @param namelen: target qname length. 1912 * @param qtype: target qtype (either A or AAAA). 1913 * @param qclass: target qclass. 1914 * @return true on success, false on failure. 1915 */ 1916 static int 1917 generate_parentside_target_query(struct module_qstate* qstate, 1918 struct iter_qstate* iq, int id, uint8_t* name, size_t namelen, 1919 uint16_t qtype, uint16_t qclass) 1920 { 1921 struct module_qstate* subq; 1922 if(!generate_sub_request(name, namelen, qtype, qclass, qstate, 1923 id, iq, INIT_REQUEST_STATE, FINISHED_STATE, &subq, 0, 0)) 1924 return 0; 1925 if(subq) { 1926 struct iter_qstate* subiq = 1927 (struct iter_qstate*)subq->minfo[id]; 1928 /* blacklist the cache - we want to fetch parent stuff */ 1929 sock_list_insert(&subq->blacklist, NULL, 0, subq->region); 1930 subiq->query_for_pside_glue = 1; 1931 if(dname_subdomain_c(name, iq->dp->name)) { 1932 subiq->dp = delegpt_copy(iq->dp, subq->region); 1933 subiq->dnssec_expected = iter_indicates_dnssec( 1934 qstate->env, subiq->dp, NULL, 1935 subq->qinfo.qclass); 1936 subiq->refetch_glue = 1; 1937 } else { 1938 subiq->dp = dns_cache_find_delegation(qstate->env, 1939 name, namelen, qtype, qclass, subq->region, 1940 &subiq->deleg_msg, 1941 *qstate->env->now+subq->prefetch_leeway, 1942 1, NULL, 0); 1943 /* if no dp, then it's from root, refetch unneeded */ 1944 if(subiq->dp) { 1945 subiq->dnssec_expected = iter_indicates_dnssec( 1946 qstate->env, subiq->dp, NULL, 1947 subq->qinfo.qclass); 1948 subiq->refetch_glue = 1; 1949 } 1950 } 1951 } 1952 log_nametypeclass(VERB_QUERY, "new pside target", name, qtype, qclass); 1953 return 1; 1954 } 1955 1956 /** 1957 * Given a basic query, generate a "target" query. These are subordinate 1958 * queries for missing delegation point target addresses. 1959 * 1960 * @param qstate: query state. 1961 * @param iq: iterator query state. 1962 * @param id: module id. 1963 * @param name: target qname. 1964 * @param namelen: target qname length. 1965 * @param qtype: target qtype (either A or AAAA). 1966 * @param qclass: target qclass. 1967 * @return true on success, false on failure. 1968 */ 1969 static int 1970 generate_target_query(struct module_qstate* qstate, struct iter_qstate* iq, 1971 int id, uint8_t* name, size_t namelen, uint16_t qtype, uint16_t qclass) 1972 { 1973 struct module_qstate* subq; 1974 if(!generate_sub_request(name, namelen, qtype, qclass, qstate, 1975 id, iq, INIT_REQUEST_STATE, FINISHED_STATE, &subq, 0, 0)) 1976 return 0; 1977 log_nametypeclass(VERB_QUERY, "new target", name, qtype, qclass); 1978 return 1; 1979 } 1980 1981 /** 1982 * Given an event at a certain state, generate zero or more target queries 1983 * for it's current delegation point. 1984 * 1985 * @param qstate: query state. 1986 * @param iq: iterator query state. 1987 * @param ie: iterator shared global environment. 1988 * @param id: module id. 1989 * @param maxtargets: The maximum number of targets to query for. 1990 * if it is negative, there is no maximum number of targets. 1991 * @param num: returns the number of queries generated and processed, 1992 * which may be zero if there were no missing targets. 1993 * @return 0 on success, nonzero on error. 1 means temporary failure and 1994 * 2 means the failure can be cached. 1995 */ 1996 static int 1997 query_for_targets(struct module_qstate* qstate, struct iter_qstate* iq, 1998 struct iter_env* ie, int id, int maxtargets, int* num) 1999 { 2000 int query_count = 0; 2001 struct delegpt_ns* ns; 2002 int missing; 2003 int toget = 0; 2004 2005 iter_mark_cycle_targets(qstate, iq->dp); 2006 missing = (int)delegpt_count_missing_targets(iq->dp, NULL); 2007 log_assert(maxtargets != 0); /* that would not be useful */ 2008 2009 /* Generate target requests. Basically, any missing targets 2010 * are queried for here, regardless if it is necessary to do 2011 * so to continue processing. */ 2012 if(maxtargets < 0 || maxtargets > missing) 2013 toget = missing; 2014 else toget = maxtargets; 2015 if(toget == 0) { 2016 *num = 0; 2017 return 0; 2018 } 2019 2020 /* now that we are sure that a target query is going to be made, 2021 * check the limits. */ 2022 if(iq->depth == ie->max_dependency_depth) 2023 return 1; 2024 if(iq->depth > 0 && iq->target_count && 2025 iq->target_count[TARGET_COUNT_QUERIES] > MAX_TARGET_COUNT) { 2026 char s[LDNS_MAX_DOMAINLEN]; 2027 dname_str(qstate->qinfo.qname, s); 2028 verbose(VERB_QUERY, "request %s has exceeded the maximum " 2029 "number of glue fetches %d", s, 2030 iq->target_count[TARGET_COUNT_QUERIES]); 2031 return 2; 2032 } 2033 if(iq->dp_target_count > MAX_DP_TARGET_COUNT) { 2034 char s[LDNS_MAX_DOMAINLEN]; 2035 dname_str(qstate->qinfo.qname, s); 2036 verbose(VERB_QUERY, "request %s has exceeded the maximum " 2037 "number of glue fetches %d to a single delegation point", 2038 s, iq->dp_target_count); 2039 return 2; 2040 } 2041 2042 /* select 'toget' items from the total of 'missing' items */ 2043 log_assert(toget <= missing); 2044 2045 /* loop over missing targets */ 2046 for(ns = iq->dp->nslist; ns; ns = ns->next) { 2047 if(ns->resolved) 2048 continue; 2049 2050 /* randomly select this item with probability toget/missing */ 2051 if(!iter_ns_probability(qstate->env->rnd, toget, missing)) { 2052 /* do not select this one, next; select toget number 2053 * of items from a list one less in size */ 2054 missing --; 2055 continue; 2056 } 2057 2058 if(ie->supports_ipv6 && 2059 ((ns->lame && !ns->done_pside6) || 2060 (!ns->lame && !ns->got6))) { 2061 /* Send the AAAA request. */ 2062 if(!generate_target_query(qstate, iq, id, 2063 ns->name, ns->namelen, 2064 LDNS_RR_TYPE_AAAA, iq->qchase.qclass)) { 2065 *num = query_count; 2066 if(query_count > 0) 2067 qstate->ext_state[id] = module_wait_subquery; 2068 return 1; 2069 } 2070 query_count++; 2071 /* If the mesh query list is full, exit the loop here. 2072 * This makes the routine spawn one query at a time, 2073 * and this means there is no query state load 2074 * increase, because the spawned state uses cpu and a 2075 * socket while this state waits for that spawned 2076 * state. Next time we can look up further targets */ 2077 if(mesh_jostle_exceeded(qstate->env->mesh)) { 2078 /* If no ip4 query is possible, that makes 2079 * this ns resolved. */ 2080 if(!((ie->supports_ipv4 || ie->nat64.use_nat64) && 2081 ((ns->lame && !ns->done_pside4) || 2082 (!ns->lame && !ns->got4)))) { 2083 ns->resolved = 1; 2084 } 2085 break; 2086 } 2087 } 2088 /* Send the A request. */ 2089 if((ie->supports_ipv4 || ie->nat64.use_nat64) && 2090 ((ns->lame && !ns->done_pside4) || 2091 (!ns->lame && !ns->got4))) { 2092 if(!generate_target_query(qstate, iq, id, 2093 ns->name, ns->namelen, 2094 LDNS_RR_TYPE_A, iq->qchase.qclass)) { 2095 *num = query_count; 2096 if(query_count > 0) 2097 qstate->ext_state[id] = module_wait_subquery; 2098 return 1; 2099 } 2100 query_count++; 2101 /* If the mesh query list is full, exit the loop. */ 2102 if(mesh_jostle_exceeded(qstate->env->mesh)) { 2103 /* With the ip6 query already checked for, 2104 * this makes the ns resolved. It is no longer 2105 * a missing target. */ 2106 ns->resolved = 1; 2107 break; 2108 } 2109 } 2110 2111 /* mark this target as in progress. */ 2112 ns->resolved = 1; 2113 missing--; 2114 toget--; 2115 if(toget == 0) 2116 break; 2117 } 2118 *num = query_count; 2119 if(query_count > 0) 2120 qstate->ext_state[id] = module_wait_subquery; 2121 2122 return 0; 2123 } 2124 2125 /** 2126 * Called by processQueryTargets when it would like extra targets to query 2127 * but it seems to be out of options. At last resort some less appealing 2128 * options are explored. If there are no more options, the result is SERVFAIL 2129 * 2130 * @param qstate: query state. 2131 * @param iq: iterator query state. 2132 * @param ie: iterator shared global environment. 2133 * @param id: module id. 2134 * @return true if the event requires more request processing immediately, 2135 * false if not. 2136 */ 2137 static int 2138 processLastResort(struct module_qstate* qstate, struct iter_qstate* iq, 2139 struct iter_env* ie, int id) 2140 { 2141 struct delegpt_ns* ns; 2142 int query_count = 0; 2143 verbose(VERB_ALGO, "No more query targets, attempting last resort"); 2144 log_assert(iq->dp); 2145 2146 if(!can_have_last_resort(qstate->env, iq->dp->name, iq->dp->namelen, 2147 iq->qchase.qclass, NULL, NULL, NULL)) { 2148 /* fail -- no more targets, no more hope of targets, no hope 2149 * of a response. */ 2150 errinf(qstate, "all the configured stub or forward servers failed,"); 2151 errinf_dname(qstate, "at zone", iq->dp->name); 2152 errinf_reply(qstate, iq); 2153 verbose(VERB_QUERY, "configured stub or forward servers failed -- returning SERVFAIL"); 2154 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2155 } 2156 iq->dp->fallback_to_parent_side_NS = 1; 2157 if(qstate->env->cfg->harden_unverified_glue) { 2158 if(!cache_fill_missing(qstate->env, iq->qchase.qclass, 2159 qstate->region, iq->dp, PACKED_RRSET_UNVERIFIED_GLUE)) 2160 log_err("out of memory in cache_fill_missing"); 2161 if(iq->dp->usable_list) { 2162 verbose(VERB_ALGO, "try unverified glue from cache"); 2163 return next_state(iq, QUERYTARGETS_STATE); 2164 } 2165 } 2166 if(!iq->dp->has_parent_side_NS && dname_is_root(iq->dp->name)) { 2167 struct delegpt* dp; 2168 int nolock = 0; 2169 dp = hints_find_root(qstate->env->hints, 2170 iq->qchase.qclass, nolock); 2171 if(dp) { 2172 struct delegpt_addr* a; 2173 iq->chase_flags &= ~BIT_RD; /* go to authorities */ 2174 for(ns = dp->nslist; ns; ns=ns->next) { 2175 (void)delegpt_add_ns(iq->dp, qstate->region, 2176 ns->name, ns->lame, ns->tls_auth_name, 2177 ns->port); 2178 } 2179 for(a = dp->target_list; a; a=a->next_target) { 2180 (void)delegpt_add_addr(iq->dp, qstate->region, 2181 &a->addr, a->addrlen, a->bogus, 2182 a->lame, a->tls_auth_name, -1, NULL); 2183 } 2184 lock_rw_unlock(&qstate->env->hints->lock); 2185 /* copy over some configuration since we update the 2186 * delegation point in place */ 2187 iq->dp->tcp_upstream = dp->tcp_upstream; 2188 iq->dp->ssl_upstream = dp->ssl_upstream; 2189 } 2190 iq->dp->has_parent_side_NS = 1; 2191 } else if(!iq->dp->has_parent_side_NS) { 2192 if(!iter_lookup_parent_NS_from_cache(qstate->env, iq->dp, 2193 qstate->region, &qstate->qinfo) 2194 || !iq->dp->has_parent_side_NS) { 2195 /* if: malloc failure in lookup go up to try */ 2196 /* if: no parent NS in cache - go up one level */ 2197 verbose(VERB_ALGO, "try to grab parent NS"); 2198 iq->store_parent_NS = iq->dp; 2199 iq->chase_flags &= ~BIT_RD; /* go to authorities */ 2200 iq->deleg_msg = NULL; 2201 iq->refetch_glue = 1; 2202 iq->query_restart_count++; 2203 iq->sent_count = 0; 2204 iq->dp_target_count = 0; 2205 if(qstate->env->cfg->qname_minimisation) 2206 iq->minimisation_state = INIT_MINIMISE_STATE; 2207 return next_state(iq, INIT_REQUEST_STATE); 2208 } 2209 } 2210 /* see if that makes new names available */ 2211 if(!cache_fill_missing(qstate->env, iq->qchase.qclass, 2212 qstate->region, iq->dp, 0)) 2213 log_err("out of memory in cache_fill_missing"); 2214 if(iq->dp->usable_list) { 2215 verbose(VERB_ALGO, "try parent-side-name, w. glue from cache"); 2216 return next_state(iq, QUERYTARGETS_STATE); 2217 } 2218 /* try to fill out parent glue from cache */ 2219 if(iter_lookup_parent_glue_from_cache(qstate->env, iq->dp, 2220 qstate->region, &qstate->qinfo)) { 2221 /* got parent stuff from cache, see if we can continue */ 2222 verbose(VERB_ALGO, "try parent-side glue from cache"); 2223 return next_state(iq, QUERYTARGETS_STATE); 2224 } 2225 /* query for an extra name added by the parent-NS record */ 2226 if(delegpt_count_missing_targets(iq->dp, NULL) > 0) { 2227 int qs = 0, ret; 2228 verbose(VERB_ALGO, "try parent-side target name"); 2229 if((ret=query_for_targets(qstate, iq, ie, id, 1, &qs))!=0) { 2230 errinf(qstate, "could not fetch nameserver"); 2231 errinf_dname(qstate, "at zone", iq->dp->name); 2232 if(ret == 1) 2233 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2234 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2235 } 2236 iq->num_target_queries += qs; 2237 target_count_increase(iq, qs); 2238 if(qs != 0) { 2239 qstate->ext_state[id] = module_wait_subquery; 2240 return 0; /* and wait for them */ 2241 } 2242 } 2243 if(iq->depth == ie->max_dependency_depth) { 2244 verbose(VERB_QUERY, "maxdepth and need more nameservers, fail"); 2245 errinf(qstate, "cannot fetch more nameservers because at max dependency depth"); 2246 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2247 } 2248 if(iq->depth > 0 && iq->target_count && 2249 iq->target_count[TARGET_COUNT_QUERIES] > MAX_TARGET_COUNT) { 2250 char s[LDNS_MAX_DOMAINLEN]; 2251 dname_str(qstate->qinfo.qname, s); 2252 verbose(VERB_QUERY, "request %s has exceeded the maximum " 2253 "number of glue fetches %d", s, 2254 iq->target_count[TARGET_COUNT_QUERIES]); 2255 errinf(qstate, "exceeded the maximum number of glue fetches"); 2256 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2257 } 2258 /* mark cycle targets for parent-side lookups */ 2259 iter_mark_pside_cycle_targets(qstate, iq->dp); 2260 /* see if we can issue queries to get nameserver addresses */ 2261 /* this lookup is not randomized, but sequential. */ 2262 for(ns = iq->dp->nslist; ns; ns = ns->next) { 2263 /* if this nameserver is at a delegation point, but that 2264 * delegation point is a stub and we cannot go higher, skip*/ 2265 if( ((ie->supports_ipv6 && !ns->done_pside6) || 2266 ((ie->supports_ipv4 || ie->nat64.use_nat64) && !ns->done_pside4)) && 2267 !can_have_last_resort(qstate->env, ns->name, ns->namelen, 2268 iq->qchase.qclass, NULL, NULL, NULL)) { 2269 log_nametypeclass(VERB_ALGO, "cannot pside lookup ns " 2270 "because it is also a stub/forward,", 2271 ns->name, LDNS_RR_TYPE_NS, iq->qchase.qclass); 2272 if(ie->supports_ipv6) ns->done_pside6 = 1; 2273 if(ie->supports_ipv4 || ie->nat64.use_nat64) ns->done_pside4 = 1; 2274 continue; 2275 } 2276 /* query for parent-side A and AAAA for nameservers */ 2277 if(ie->supports_ipv6 && !ns->done_pside6) { 2278 /* Send the AAAA request. */ 2279 if(!generate_parentside_target_query(qstate, iq, id, 2280 ns->name, ns->namelen, 2281 LDNS_RR_TYPE_AAAA, iq->qchase.qclass)) { 2282 errinf_dname(qstate, "could not generate nameserver AAAA lookup for", ns->name); 2283 return error_response(qstate, id, 2284 LDNS_RCODE_SERVFAIL); 2285 } 2286 ns->done_pside6 = 1; 2287 query_count++; 2288 if(mesh_jostle_exceeded(qstate->env->mesh)) { 2289 /* Wait for the lookup; do not spawn multiple 2290 * lookups at a time. */ 2291 verbose(VERB_ALGO, "try parent-side glue lookup"); 2292 iq->num_target_queries += query_count; 2293 target_count_increase(iq, query_count); 2294 qstate->ext_state[id] = module_wait_subquery; 2295 return 0; 2296 } 2297 } 2298 if((ie->supports_ipv4 || ie->nat64.use_nat64) && !ns->done_pside4) { 2299 /* Send the A request. */ 2300 if(!generate_parentside_target_query(qstate, iq, id, 2301 ns->name, ns->namelen, 2302 LDNS_RR_TYPE_A, iq->qchase.qclass)) { 2303 errinf_dname(qstate, "could not generate nameserver A lookup for", ns->name); 2304 return error_response(qstate, id, 2305 LDNS_RCODE_SERVFAIL); 2306 } 2307 ns->done_pside4 = 1; 2308 query_count++; 2309 } 2310 if(query_count != 0) { /* suspend to await results */ 2311 verbose(VERB_ALGO, "try parent-side glue lookup"); 2312 iq->num_target_queries += query_count; 2313 target_count_increase(iq, query_count); 2314 qstate->ext_state[id] = module_wait_subquery; 2315 return 0; 2316 } 2317 } 2318 2319 /* if this was a parent-side glue query itself, then store that 2320 * failure in cache. */ 2321 if(!qstate->no_cache_store && iq->query_for_pside_glue 2322 && !iq->pside_glue) 2323 iter_store_parentside_neg(qstate->env, &qstate->qinfo, 2324 iq->deleg_msg?iq->deleg_msg->rep: 2325 (iq->response?iq->response->rep:NULL)); 2326 2327 errinf(qstate, "all servers for this domain failed,"); 2328 errinf_dname(qstate, "at zone", iq->dp->name); 2329 errinf_reply(qstate, iq); 2330 verbose(VERB_QUERY, "out of query targets -- returning SERVFAIL"); 2331 /* fail -- no more targets, no more hope of targets, no hope 2332 * of a response. */ 2333 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2334 } 2335 2336 /** 2337 * Try to find the NS record set that will resolve a qtype DS query. Due 2338 * to grandparent/grandchild reasons we did not get a proper lookup right 2339 * away. We need to create type NS queries until we get the right parent 2340 * for this lookup. We remove labels from the query to find the right point. 2341 * If we end up at the old dp name, then there is no solution. 2342 * 2343 * @param qstate: query state. 2344 * @param iq: iterator query state. 2345 * @param id: module id. 2346 * @return true if the event requires more immediate processing, false if 2347 * not. This is generally only true when forwarding the request to 2348 * the final state (i.e., on answer). 2349 */ 2350 static int 2351 processDSNSFind(struct module_qstate* qstate, struct iter_qstate* iq, int id) 2352 { 2353 struct module_qstate* subq = NULL; 2354 verbose(VERB_ALGO, "processDSNSFind"); 2355 2356 if(!iq->dsns_point) { 2357 /* initialize */ 2358 iq->dsns_point = iq->qchase.qname; 2359 iq->dsns_point_len = iq->qchase.qname_len; 2360 } 2361 /* robustcheck for internal error: we are not underneath the dp */ 2362 if(!dname_subdomain_c(iq->dsns_point, iq->dp->name)) { 2363 errinf_dname(qstate, "for DS query parent-child nameserver search the query is not under the zone", iq->dp->name); 2364 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2365 } 2366 2367 /* go up one (more) step, until we hit the dp, if so, end */ 2368 dname_remove_label(&iq->dsns_point, &iq->dsns_point_len); 2369 if(query_dname_compare(iq->dsns_point, iq->dp->name) == 0) { 2370 /* there was no inbetween nameserver, use the old delegation 2371 * point again. And this time, because dsns_point is nonNULL 2372 * we are going to accept the (bad) result */ 2373 iq->state = QUERYTARGETS_STATE; 2374 return 1; 2375 } 2376 iq->state = DSNS_FIND_STATE; 2377 2378 /* spawn NS lookup (validation not needed, this is for DS lookup) */ 2379 log_nametypeclass(VERB_ALGO, "fetch nameservers", 2380 iq->dsns_point, LDNS_RR_TYPE_NS, iq->qchase.qclass); 2381 if(!generate_sub_request(iq->dsns_point, iq->dsns_point_len, 2382 LDNS_RR_TYPE_NS, iq->qchase.qclass, qstate, id, iq, 2383 INIT_REQUEST_STATE, FINISHED_STATE, &subq, 0, 0)) { 2384 errinf_dname(qstate, "for DS query parent-child nameserver search, could not generate NS lookup for", iq->dsns_point); 2385 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2386 } 2387 2388 return 0; 2389 } 2390 2391 /** 2392 * Check if we wait responses for sent queries and update the iterator's 2393 * external state. 2394 */ 2395 static void 2396 check_waiting_queries(struct iter_qstate* iq, struct module_qstate* qstate, 2397 int id) 2398 { 2399 if(iq->num_target_queries>0 && iq->num_current_queries>0) { 2400 verbose(VERB_ALGO, "waiting for %d targets to " 2401 "resolve or %d outstanding queries to " 2402 "respond", iq->num_target_queries, 2403 iq->num_current_queries); 2404 qstate->ext_state[id] = module_wait_reply; 2405 } else if(iq->num_target_queries>0) { 2406 verbose(VERB_ALGO, "waiting for %d targets to " 2407 "resolve", iq->num_target_queries); 2408 qstate->ext_state[id] = module_wait_subquery; 2409 } else { 2410 verbose(VERB_ALGO, "waiting for %d " 2411 "outstanding queries to respond", 2412 iq->num_current_queries); 2413 qstate->ext_state[id] = module_wait_reply; 2414 } 2415 } 2416 2417 /** 2418 * This is the request event state where the request will be sent to one of 2419 * its current query targets. This state also handles issuing target lookup 2420 * queries for missing target IP addresses. Queries typically iterate on 2421 * this state, both when they are just trying different targets for a given 2422 * delegation point, and when they change delegation points. This state 2423 * roughly corresponds to RFC 1034 algorithm steps 3 and 4. 2424 * 2425 * @param qstate: query state. 2426 * @param iq: iterator query state. 2427 * @param ie: iterator shared global environment. 2428 * @param id: module id. 2429 * @return true if the event requires more request processing immediately, 2430 * false if not. This state only returns true when it is generating 2431 * a SERVFAIL response because the query has hit a dead end. 2432 */ 2433 static int 2434 processQueryTargets(struct module_qstate* qstate, struct iter_qstate* iq, 2435 struct iter_env* ie, int id) 2436 { 2437 int tf_policy; 2438 struct delegpt_addr* target; 2439 struct outbound_entry* outq; 2440 int auth_fallback = 0; 2441 uint8_t* qout_orig = NULL; 2442 size_t qout_orig_len = 0; 2443 int sq_check_ratelimit = 1; 2444 int sq_was_ratelimited = 0; 2445 int can_do_promisc = 0; 2446 2447 /* NOTE: a request will encounter this state for each target it 2448 * needs to send a query to. That is, at least one per referral, 2449 * more if some targets timeout or return throwaway answers. */ 2450 2451 log_query_info(VERB_QUERY, "processQueryTargets:", &qstate->qinfo); 2452 verbose(VERB_ALGO, "processQueryTargets: targetqueries %d, " 2453 "currentqueries %d sentcount %d", iq->num_target_queries, 2454 iq->num_current_queries, iq->sent_count); 2455 2456 /* Make sure that we haven't run away */ 2457 if(iq->referral_count > MAX_REFERRAL_COUNT) { 2458 verbose(VERB_QUERY, "request has exceeded the maximum " 2459 "number of referrrals with %d", iq->referral_count); 2460 errinf(qstate, "exceeded the maximum of referrals"); 2461 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2462 } 2463 if(iq->sent_count > ie->max_sent_count) { 2464 verbose(VERB_QUERY, "request has exceeded the maximum " 2465 "number of sends with %d", iq->sent_count); 2466 errinf(qstate, "exceeded the maximum number of sends"); 2467 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2468 } 2469 2470 /* Check if we reached MAX_TARGET_NX limit without a fallback activation. */ 2471 if(iq->target_count && !*iq->nxns_dp && 2472 iq->target_count[TARGET_COUNT_NX] > MAX_TARGET_NX) { 2473 struct delegpt_ns* ns; 2474 /* If we can wait for resolution, do so. */ 2475 if(iq->num_target_queries>0 || iq->num_current_queries>0) { 2476 check_waiting_queries(iq, qstate, id); 2477 return 0; 2478 } 2479 verbose(VERB_ALGO, "request has exceeded the maximum " 2480 "number of nxdomain nameserver lookups (%d) with %d", 2481 MAX_TARGET_NX, iq->target_count[TARGET_COUNT_NX]); 2482 /* Check for dp because we require one below */ 2483 if(!iq->dp) { 2484 verbose(VERB_QUERY, "Failed to get a delegation, " 2485 "giving up"); 2486 errinf(qstate, "failed to get a delegation (eg. prime " 2487 "failure)"); 2488 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2489 } 2490 /* We reached the limit but we already have parent side 2491 * information; stop resolution */ 2492 if(iq->dp->has_parent_side_NS) { 2493 verbose(VERB_ALGO, "parent-side information is " 2494 "already present for the delegation point, no " 2495 "fallback possible"); 2496 errinf(qstate, "exceeded the maximum nameserver nxdomains"); 2497 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2498 } 2499 verbose(VERB_ALGO, "initiating parent-side fallback for " 2500 "nxdomain nameserver lookups"); 2501 /* Mark all the current NSes as resolved to allow for parent 2502 * fallback */ 2503 for(ns=iq->dp->nslist; ns; ns=ns->next) { 2504 ns->resolved = 1; 2505 } 2506 /* Note the delegation point that triggered the NXNS fallback; 2507 * no reason for shared queries to keep trying there. 2508 * This also marks the fallback activation. */ 2509 *iq->nxns_dp = malloc(iq->dp->namelen); 2510 if(!*iq->nxns_dp) { 2511 verbose(VERB_ALGO, "out of memory while initiating " 2512 "fallback"); 2513 errinf(qstate, "exceeded the maximum nameserver " 2514 "nxdomains (malloc)"); 2515 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2516 } 2517 memcpy(*iq->nxns_dp, iq->dp->name, iq->dp->namelen); 2518 } else if(iq->target_count && *iq->nxns_dp) { 2519 /* Handle the NXNS fallback case. */ 2520 /* If we can wait for resolution, do so. */ 2521 if(iq->num_target_queries>0 || iq->num_current_queries>0) { 2522 check_waiting_queries(iq, qstate, id); 2523 return 0; 2524 } 2525 /* Check for dp because we require one below */ 2526 if(!iq->dp) { 2527 verbose(VERB_QUERY, "Failed to get a delegation, " 2528 "giving up"); 2529 errinf(qstate, "failed to get a delegation (eg. prime " 2530 "failure)"); 2531 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2532 } 2533 2534 if(iq->target_count[TARGET_COUNT_NX] > MAX_TARGET_NX_FALLBACK) { 2535 verbose(VERB_ALGO, "request has exceeded the maximum " 2536 "number of fallback nxdomain nameserver " 2537 "lookups (%d) with %d", MAX_TARGET_NX_FALLBACK, 2538 iq->target_count[TARGET_COUNT_NX]); 2539 errinf(qstate, "exceeded the maximum nameserver nxdomains"); 2540 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2541 } 2542 2543 if(!iq->dp->has_parent_side_NS) { 2544 struct delegpt_ns* ns; 2545 if(!dname_canonical_compare(*iq->nxns_dp, iq->dp->name)) { 2546 verbose(VERB_ALGO, "this delegation point " 2547 "initiated the fallback, marking the " 2548 "nslist as resolved"); 2549 for(ns=iq->dp->nslist; ns; ns=ns->next) { 2550 ns->resolved = 1; 2551 } 2552 } 2553 } 2554 } 2555 2556 /* Make sure we have a delegation point, otherwise priming failed 2557 * or another failure occurred */ 2558 if(!iq->dp) { 2559 verbose(VERB_QUERY, "Failed to get a delegation, giving up"); 2560 errinf(qstate, "failed to get a delegation (eg. prime failure)"); 2561 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2562 } 2563 if(!ie->supports_ipv6) 2564 delegpt_no_ipv6(iq->dp); 2565 if(!ie->supports_ipv4 && !ie->nat64.use_nat64) 2566 delegpt_no_ipv4(iq->dp); 2567 delegpt_log(VERB_ALGO, iq->dp); 2568 2569 if(iq->num_current_queries>0) { 2570 /* already busy answering a query, this restart is because 2571 * more delegpt addrs became available, wait for existing 2572 * query. */ 2573 verbose(VERB_ALGO, "woke up, but wait for outstanding query"); 2574 qstate->ext_state[id] = module_wait_reply; 2575 return 0; 2576 } 2577 2578 if(iq->minimisation_state == INIT_MINIMISE_STATE 2579 && !(iq->chase_flags & BIT_RD)) { 2580 /* (Re)set qinfo_out to (new) delegation point, except when 2581 * qinfo_out is already a subdomain of dp. This happens when 2582 * increasing by more than one label at once (QNAMEs with more 2583 * than MAX_MINIMISE_COUNT labels). */ 2584 if(!(iq->qinfo_out.qname_len 2585 && dname_subdomain_c(iq->qchase.qname, 2586 iq->qinfo_out.qname) 2587 && dname_subdomain_c(iq->qinfo_out.qname, 2588 iq->dp->name))) { 2589 iq->qinfo_out.qname = iq->dp->name; 2590 iq->qinfo_out.qname_len = iq->dp->namelen; 2591 iq->qinfo_out.qtype = LDNS_RR_TYPE_A; 2592 iq->qinfo_out.qclass = iq->qchase.qclass; 2593 iq->qinfo_out.local_alias = NULL; 2594 iq->minimise_count = 0; 2595 } 2596 2597 iq->minimisation_state = MINIMISE_STATE; 2598 } 2599 if(iq->minimisation_state == MINIMISE_STATE) { 2600 int qchaselabs = dname_count_labels(iq->qchase.qname); 2601 int labdiff = qchaselabs - 2602 dname_count_labels(iq->qinfo_out.qname); 2603 2604 qout_orig = iq->qinfo_out.qname; 2605 qout_orig_len = iq->qinfo_out.qname_len; 2606 iq->qinfo_out.qname = iq->qchase.qname; 2607 iq->qinfo_out.qname_len = iq->qchase.qname_len; 2608 iq->minimise_count++; 2609 iq->timeout_count = 0; 2610 2611 iter_dec_attempts(iq->dp, 1, ie->outbound_msg_retry); 2612 2613 /* Limit number of iterations for QNAMEs with more 2614 * than MAX_MINIMISE_COUNT labels. Send first MINIMISE_ONE_LAB 2615 * labels of QNAME always individually. 2616 */ 2617 if(qchaselabs > MAX_MINIMISE_COUNT && labdiff > 1 && 2618 iq->minimise_count > MINIMISE_ONE_LAB) { 2619 if(iq->minimise_count < MAX_MINIMISE_COUNT) { 2620 int multilabs = qchaselabs - 1 - 2621 MINIMISE_ONE_LAB; 2622 int extralabs = multilabs / 2623 MINIMISE_MULTIPLE_LABS; 2624 2625 if (MAX_MINIMISE_COUNT - iq->minimise_count >= 2626 multilabs % MINIMISE_MULTIPLE_LABS) 2627 /* Default behaviour is to add 1 label 2628 * every iteration. Therefore, decrement 2629 * the extralabs by 1 */ 2630 extralabs--; 2631 if (extralabs < labdiff) 2632 labdiff -= extralabs; 2633 else 2634 labdiff = 1; 2635 } 2636 /* Last minimised iteration, send all labels with 2637 * QTYPE=NS */ 2638 else 2639 labdiff = 1; 2640 } 2641 2642 if(labdiff > 1) { 2643 verbose(VERB_QUERY, "removing %d labels", labdiff-1); 2644 dname_remove_labels(&iq->qinfo_out.qname, 2645 &iq->qinfo_out.qname_len, 2646 labdiff-1); 2647 } 2648 if(labdiff < 1 || (labdiff < 2 2649 && (iq->qchase.qtype == LDNS_RR_TYPE_DS 2650 || iq->qchase.qtype == LDNS_RR_TYPE_A))) 2651 /* Stop minimising this query, resolve "as usual" */ 2652 iq->minimisation_state = DONOT_MINIMISE_STATE; 2653 else if(!qstate->no_cache_lookup) { 2654 struct dns_msg* msg = dns_cache_lookup(qstate->env, 2655 iq->qinfo_out.qname, iq->qinfo_out.qname_len, 2656 iq->qinfo_out.qtype, iq->qinfo_out.qclass, 2657 qstate->query_flags, qstate->region, 2658 qstate->env->scratch, 0, iq->dp->name, 2659 iq->dp->namelen); 2660 if(msg && FLAGS_GET_RCODE(msg->rep->flags) == 2661 LDNS_RCODE_NOERROR) 2662 /* no need to send query if it is already 2663 * cached as NOERROR */ 2664 return 1; 2665 if(msg && FLAGS_GET_RCODE(msg->rep->flags) == 2666 LDNS_RCODE_NXDOMAIN && 2667 qstate->env->need_to_validate && 2668 qstate->env->cfg->harden_below_nxdomain) { 2669 if(msg->rep->security == sec_status_secure) { 2670 iq->response = msg; 2671 return final_state(iq); 2672 } 2673 if(msg->rep->security == sec_status_unchecked) { 2674 struct module_qstate* subq = NULL; 2675 if(!generate_sub_request( 2676 iq->qinfo_out.qname, 2677 iq->qinfo_out.qname_len, 2678 iq->qinfo_out.qtype, 2679 iq->qinfo_out.qclass, 2680 qstate, id, iq, 2681 INIT_REQUEST_STATE, 2682 FINISHED_STATE, &subq, 1, 1)) 2683 verbose(VERB_ALGO, 2684 "could not validate NXDOMAIN " 2685 "response"); 2686 } 2687 } 2688 if(msg && FLAGS_GET_RCODE(msg->rep->flags) == 2689 LDNS_RCODE_NXDOMAIN) { 2690 /* return and add a label in the next 2691 * minimisation iteration. 2692 */ 2693 return 1; 2694 } 2695 } 2696 } 2697 if(iq->minimisation_state == SKIP_MINIMISE_STATE) { 2698 if(iq->timeout_count < MAX_MINIMISE_TIMEOUT_COUNT) 2699 /* Do not increment qname, continue incrementing next 2700 * iteration */ 2701 iq->minimisation_state = MINIMISE_STATE; 2702 else if(!qstate->env->cfg->qname_minimisation_strict) 2703 /* Too many time-outs detected for this QNAME and QTYPE. 2704 * We give up, disable QNAME minimisation. */ 2705 iq->minimisation_state = DONOT_MINIMISE_STATE; 2706 } 2707 if(iq->minimisation_state == DONOT_MINIMISE_STATE) 2708 iq->qinfo_out = iq->qchase; 2709 2710 /* now find an answer to this query */ 2711 /* see if authority zones have an answer */ 2712 /* now we know the dp, we can check the auth zone for locally hosted 2713 * contents */ 2714 if(!iq->auth_zone_avoid && qstate->blacklist) { 2715 if(auth_zones_can_fallback(qstate->env->auth_zones, 2716 iq->dp->name, iq->dp->namelen, iq->qinfo_out.qclass)) { 2717 /* if cache is blacklisted and this zone allows us 2718 * to fallback to the internet, then do so, and 2719 * fetch results from the internet servers */ 2720 iq->auth_zone_avoid = 1; 2721 } 2722 } 2723 if(iq->auth_zone_avoid) { 2724 iq->auth_zone_avoid = 0; 2725 auth_fallback = 1; 2726 } else if(auth_zones_lookup(qstate->env->auth_zones, &iq->qinfo_out, 2727 qstate->region, &iq->response, &auth_fallback, iq->dp->name, 2728 iq->dp->namelen)) { 2729 /* use this as a response to be processed by the iterator */ 2730 if(verbosity >= VERB_ALGO) { 2731 log_dns_msg("msg from auth zone", 2732 &iq->response->qinfo, iq->response->rep); 2733 } 2734 if((iq->chase_flags&BIT_RD) && !(iq->response->rep->flags&BIT_AA)) { 2735 verbose(VERB_ALGO, "forwarder, ignoring referral from auth zone"); 2736 } else { 2737 qstate->env->mesh->num_query_authzone_up++; 2738 iq->num_current_queries++; 2739 iq->chase_to_rd = 0; 2740 iq->dnssec_lame_query = 0; 2741 iq->auth_zone_response = 1; 2742 return next_state(iq, QUERY_RESP_STATE); 2743 } 2744 } 2745 iq->auth_zone_response = 0; 2746 if(auth_fallback == 0) { 2747 /* like we got servfail from the auth zone lookup, and 2748 * no internet fallback */ 2749 verbose(VERB_ALGO, "auth zone lookup failed, no fallback," 2750 " servfail"); 2751 errinf(qstate, "auth zone lookup failed, fallback is off"); 2752 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2753 } 2754 if(iq->dp->auth_dp) { 2755 /* we wanted to fallback, but had no delegpt, only the 2756 * auth zone generated delegpt, create an actual one */ 2757 iq->auth_zone_avoid = 1; 2758 return next_state(iq, INIT_REQUEST_STATE); 2759 } 2760 /* but mostly, fallback==1 (like, when no such auth zone exists) 2761 * and we continue with lookups */ 2762 2763 tf_policy = 0; 2764 /* < not <=, because although the array is large enough for <=, the 2765 * generated query will immediately be discarded due to depth and 2766 * that servfail is cached, which is not good as opportunism goes. */ 2767 if(iq->depth < ie->max_dependency_depth 2768 && iq->num_target_queries == 0 2769 && (!iq->target_count || iq->target_count[TARGET_COUNT_NX]==0) 2770 && iq->sent_count < TARGET_FETCH_STOP) { 2771 can_do_promisc = 1; 2772 } 2773 /* if the mesh query list is full, then do not waste cpu and sockets to 2774 * fetch promiscuous targets. They can be looked up when needed. */ 2775 if(!iq->dp->fallback_to_parent_side_NS && can_do_promisc 2776 && !mesh_jostle_exceeded(qstate->env->mesh)) { 2777 tf_policy = ie->target_fetch_policy[iq->depth]; 2778 } 2779 2780 /* if in 0x20 fallback get as many targets as possible */ 2781 if(iq->caps_fallback) { 2782 int extra = 0, ret; 2783 size_t naddr, nres, navail; 2784 if((ret=query_for_targets(qstate, iq, ie, id, -1, &extra))!=0) { 2785 errinf(qstate, "could not fetch nameservers for 0x20 fallback"); 2786 if(ret == 1) 2787 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2788 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 2789 } 2790 iq->num_target_queries += extra; 2791 target_count_increase(iq, extra); 2792 if(iq->num_target_queries > 0) { 2793 /* wait to get all targets, we want to try em */ 2794 verbose(VERB_ALGO, "wait for all targets for fallback"); 2795 qstate->ext_state[id] = module_wait_reply; 2796 /* undo qname minimise step because we'll get back here 2797 * to do it again */ 2798 if(qout_orig && iq->minimise_count > 0) { 2799 iq->minimise_count--; 2800 iq->qinfo_out.qname = qout_orig; 2801 iq->qinfo_out.qname_len = qout_orig_len; 2802 } 2803 return 0; 2804 } 2805 /* did we do enough fallback queries already? */ 2806 delegpt_count_addr(iq->dp, &naddr, &nres, &navail); 2807 /* the current caps_server is the number of fallbacks sent. 2808 * the original query is one that matched too, so we have 2809 * caps_server+1 number of matching queries now */ 2810 if(iq->caps_server+1 >= naddr*3 || 2811 iq->caps_server*2+2 >= (size_t)ie->max_sent_count) { 2812 /* *2 on sentcount check because ipv6 may fail */ 2813 /* we're done, process the response */ 2814 verbose(VERB_ALGO, "0x20 fallback had %d responses " 2815 "match for %d wanted, done.", 2816 (int)iq->caps_server+1, (int)naddr*3); 2817 iq->response = iq->caps_response; 2818 iq->caps_fallback = 0; 2819 iter_dec_attempts(iq->dp, 3, ie->outbound_msg_retry); /* space for fallback */ 2820 iq->num_current_queries++; /* RespState decrements it*/ 2821 iq->referral_count++; /* make sure we don't loop */ 2822 iq->sent_count = 0; 2823 iq->dp_target_count = 0; 2824 iq->state = QUERY_RESP_STATE; 2825 return 1; 2826 } 2827 verbose(VERB_ALGO, "0x20 fallback number %d", 2828 (int)iq->caps_server); 2829 2830 /* if there is a policy to fetch missing targets 2831 * opportunistically, do it. we rely on the fact that once a 2832 * query (or queries) for a missing name have been issued, 2833 * they will not show up again. */ 2834 } else if(tf_policy != 0) { 2835 int extra = 0; 2836 verbose(VERB_ALGO, "attempt to get extra %d targets", 2837 tf_policy); 2838 (void)query_for_targets(qstate, iq, ie, id, tf_policy, &extra); 2839 /* errors ignored, these targets are not strictly necessary for 2840 * this result, we do not have to reply with SERVFAIL */ 2841 iq->num_target_queries += extra; 2842 target_count_increase(iq, extra); 2843 } 2844 2845 /* Add the current set of unused targets to our queue. */ 2846 delegpt_add_unused_targets(iq->dp); 2847 2848 if(qstate->env->auth_zones) { 2849 uint8_t* sname = NULL; 2850 size_t snamelen = 0; 2851 /* apply rpz triggers at query time; nameserver IP and dname */ 2852 struct dns_msg* forged_response_after_cname; 2853 struct dns_msg* forged_response = rpz_callback_from_iterator_module(qstate, iq); 2854 int count = 0; 2855 while(forged_response && reply_find_rrset_section_an( 2856 forged_response->rep, iq->qchase.qname, 2857 iq->qchase.qname_len, LDNS_RR_TYPE_CNAME, 2858 iq->qchase.qclass) && 2859 iq->qchase.qtype != LDNS_RR_TYPE_CNAME && 2860 count++ < ie->max_query_restarts) { 2861 /* another cname to follow */ 2862 if(!handle_cname_response(qstate, iq, forged_response, 2863 &sname, &snamelen)) { 2864 errinf(qstate, "malloc failure, CNAME info"); 2865 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2866 } 2867 iq->qchase.qname = sname; 2868 iq->qchase.qname_len = snamelen; 2869 forged_response_after_cname = 2870 rpz_callback_from_iterator_cname(qstate, iq); 2871 if(forged_response_after_cname) { 2872 forged_response = forged_response_after_cname; 2873 } else { 2874 /* Follow the CNAME with a query restart */ 2875 iq->deleg_msg = NULL; 2876 iq->dp = NULL; 2877 iq->dsns_point = NULL; 2878 iq->auth_zone_response = 0; 2879 iq->refetch_glue = 0; 2880 iq->query_restart_count++; 2881 iq->sent_count = 0; 2882 iq->dp_target_count = 0; 2883 if(qstate->env->cfg->qname_minimisation) 2884 iq->minimisation_state = INIT_MINIMISE_STATE; 2885 outbound_list_clear(&iq->outlist); 2886 iq->num_current_queries = 0; 2887 fptr_ok(fptr_whitelist_modenv_detach_subs( 2888 qstate->env->detach_subs)); 2889 (*qstate->env->detach_subs)(qstate); 2890 iq->num_target_queries = 0; 2891 return next_state(iq, INIT_REQUEST_STATE); 2892 } 2893 } 2894 if(forged_response != NULL) { 2895 qstate->ext_state[id] = module_finished; 2896 qstate->return_rcode = LDNS_RCODE_NOERROR; 2897 qstate->return_msg = forged_response; 2898 iq->response = forged_response; 2899 next_state(iq, FINISHED_STATE); 2900 if(!iter_prepend(iq, qstate->return_msg, qstate->region)) { 2901 log_err("rpz: prepend rrsets: out of memory"); 2902 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 2903 } 2904 return 0; 2905 } 2906 } 2907 2908 /* Select the next usable target, filtering out unsuitable targets. */ 2909 target = iter_server_selection(ie, qstate->env, iq->dp, 2910 iq->dp->name, iq->dp->namelen, iq->qchase.qtype, 2911 &iq->dnssec_lame_query, &iq->chase_to_rd, 2912 iq->num_target_queries, qstate->blacklist, 2913 qstate->prefetch_leeway); 2914 2915 /* If no usable target was selected... */ 2916 if(!target) { 2917 /* Here we distinguish between three states: generate a new 2918 * target query, just wait, or quit (with a SERVFAIL). 2919 * We have the following information: number of active 2920 * target queries, number of active current queries, 2921 * the presence of missing targets at this delegation 2922 * point, and the given query target policy. */ 2923 2924 /* Check for the wait condition. If this is true, then 2925 * an action must be taken. */ 2926 if(iq->num_target_queries==0 && iq->num_current_queries==0) { 2927 /* If there is nothing to wait for, then we need 2928 * to distinguish between generating (a) new target 2929 * query, or failing. */ 2930 if(delegpt_count_missing_targets(iq->dp, NULL) > 0) { 2931 int qs = 0, ret; 2932 verbose(VERB_ALGO, "querying for next " 2933 "missing target"); 2934 if((ret=query_for_targets(qstate, iq, ie, id, 2935 1, &qs))!=0) { 2936 errinf(qstate, "could not fetch nameserver"); 2937 errinf_dname(qstate, "at zone", iq->dp->name); 2938 if(ret == 1) 2939 return error_response(qstate, id, 2940 LDNS_RCODE_SERVFAIL); 2941 return error_response_cache(qstate, id, 2942 LDNS_RCODE_SERVFAIL); 2943 } 2944 if(qs == 0 && 2945 delegpt_count_missing_targets(iq->dp, NULL) == 0){ 2946 /* it looked like there were missing 2947 * targets, but they did not turn up. 2948 * Try the bad choices again (if any), 2949 * when we get back here missing==0, 2950 * so this is not a loop. */ 2951 return 1; 2952 } 2953 if(qs == 0) { 2954 /* There should be targets now, and 2955 * if there are not, it should not 2956 * wait for no targets. Stop it from 2957 * waiting forever, or looping to 2958 * here, as a safeguard. */ 2959 errinf(qstate, "could not generate nameserver lookups"); 2960 errinf_dname(qstate, "at zone", iq->dp->name); 2961 return error_response(qstate, id, 2962 LDNS_RCODE_SERVFAIL); 2963 } 2964 iq->num_target_queries += qs; 2965 target_count_increase(iq, qs); 2966 } 2967 /* Since a target query might have been made, we 2968 * need to check again. */ 2969 if(iq->num_target_queries == 0) { 2970 /* if in capsforid fallback, instead of last 2971 * resort, we agree with the current reply 2972 * we have (if any) (our count of addrs bad)*/ 2973 if(iq->caps_fallback && iq->caps_reply) { 2974 /* we're done, process the response */ 2975 verbose(VERB_ALGO, "0x20 fallback had %d responses, " 2976 "but no more servers except " 2977 "last resort, done.", 2978 (int)iq->caps_server+1); 2979 iq->response = iq->caps_response; 2980 iq->caps_fallback = 0; 2981 iter_dec_attempts(iq->dp, 3, ie->outbound_msg_retry); /* space for fallback */ 2982 iq->num_current_queries++; /* RespState decrements it*/ 2983 iq->referral_count++; /* make sure we don't loop */ 2984 iq->sent_count = 0; 2985 iq->dp_target_count = 0; 2986 iq->state = QUERY_RESP_STATE; 2987 return 1; 2988 } 2989 return processLastResort(qstate, iq, ie, id); 2990 } 2991 } 2992 2993 /* otherwise, we have no current targets, so submerge 2994 * until one of the target or direct queries return. */ 2995 verbose(VERB_ALGO, "no current targets"); 2996 check_waiting_queries(iq, qstate, id); 2997 /* undo qname minimise step because we'll get back here 2998 * to do it again */ 2999 if(qout_orig && iq->minimise_count > 0) { 3000 iq->minimise_count--; 3001 iq->qinfo_out.qname = qout_orig; 3002 iq->qinfo_out.qname_len = qout_orig_len; 3003 } 3004 return 0; 3005 } 3006 3007 /* We have a target. We could have created promiscuous target 3008 * queries but we are currently under pressure (mesh_jostle_exceeded). 3009 * If we are configured to allow promiscuous target queries and haven't 3010 * gone out to the network for a target query for this delegation, then 3011 * it is possible to slip in a promiscuous one with a 1/10 chance. */ 3012 if(can_do_promisc && tf_policy == 0 && iq->depth == 0 3013 && iq->depth < ie->max_dependency_depth 3014 && ie->target_fetch_policy[iq->depth] != 0 3015 && iq->dp_target_count == 0 3016 && !ub_random_max(qstate->env->rnd, 10)) { 3017 int extra = 0; 3018 verbose(VERB_ALGO, "available target exists in cache but " 3019 "attempt to get extra 1 target"); 3020 (void)query_for_targets(qstate, iq, ie, id, 1, &extra); 3021 /* errors ignored, these targets are not strictly necessary for 3022 * this result, we do not have to reply with SERVFAIL */ 3023 if(extra > 0) { 3024 iq->num_target_queries += extra; 3025 target_count_increase(iq, extra); 3026 check_waiting_queries(iq, qstate, id); 3027 /* undo qname minimise step because we'll get back here 3028 * to do it again */ 3029 if(qout_orig && iq->minimise_count > 0) { 3030 iq->minimise_count--; 3031 iq->qinfo_out.qname = qout_orig; 3032 iq->qinfo_out.qname_len = qout_orig_len; 3033 } 3034 return 0; 3035 } 3036 } 3037 3038 target_count_increase_global_quota(iq, 1); 3039 if(iq->target_count && iq->target_count[TARGET_COUNT_GLOBAL_QUOTA] 3040 > MAX_GLOBAL_QUOTA) { 3041 char s[LDNS_MAX_DOMAINLEN]; 3042 dname_str(qstate->qinfo.qname, s); 3043 verbose(VERB_QUERY, "request %s has exceeded the maximum " 3044 "global quota on number of upstream queries %d", s, 3045 iq->target_count[TARGET_COUNT_GLOBAL_QUOTA]); 3046 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 3047 } 3048 3049 /* Do not check ratelimit for forwarding queries or if we already got a 3050 * pass. */ 3051 sq_check_ratelimit = (!(iq->chase_flags & BIT_RD) && !iq->ratelimit_ok); 3052 /* We have a valid target. */ 3053 if(verbosity >= VERB_QUERY) { 3054 log_query_info(VERB_QUERY, "sending query:", &iq->qinfo_out); 3055 log_name_addr(VERB_QUERY, "sending to target:", iq->dp->name, 3056 &target->addr, target->addrlen); 3057 verbose(VERB_ALGO, "dnssec status: %s%s", 3058 iq->dnssec_expected?"expected": "not expected", 3059 iq->dnssec_lame_query?" but lame_query anyway": ""); 3060 } 3061 3062 fptr_ok(fptr_whitelist_modenv_send_query(qstate->env->send_query)); 3063 outq = (*qstate->env->send_query)(&iq->qinfo_out, 3064 iq->chase_flags | (iq->chase_to_rd?BIT_RD:0), 3065 /* unset CD if to forwarder(RD set) and not dnssec retry 3066 * (blacklist nonempty) and no trust-anchors are configured 3067 * above the qname or on the first attempt when dnssec is on */ 3068 (qstate->env->cfg->disable_edns_do?0:EDNS_DO)| 3069 ((iq->chase_to_rd||(iq->chase_flags&BIT_RD)!=0)&& 3070 !qstate->blacklist&&(!iter_qname_indicates_dnssec(qstate->env, 3071 &iq->qinfo_out)||target->attempts==1)?0:BIT_CD), 3072 iq->dnssec_expected, iq->caps_fallback || is_caps_whitelisted( 3073 ie, iq), sq_check_ratelimit, &target->addr, target->addrlen, 3074 iq->dp->name, iq->dp->namelen, 3075 (iq->dp->tcp_upstream || qstate->env->cfg->tcp_upstream), 3076 (iq->dp->ssl_upstream || qstate->env->cfg->ssl_upstream), 3077 target->tls_auth_name, qstate, &sq_was_ratelimited); 3078 if(!outq) { 3079 if(sq_was_ratelimited) { 3080 lock_basic_lock(&ie->queries_ratelimit_lock); 3081 ie->num_queries_ratelimited++; 3082 lock_basic_unlock(&ie->queries_ratelimit_lock); 3083 verbose(VERB_ALGO, "query exceeded ratelimits"); 3084 qstate->was_ratelimited = 1; 3085 errinf_dname(qstate, "exceeded ratelimit for zone", 3086 iq->dp->name); 3087 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 3088 } 3089 log_addr(VERB_QUERY, "error sending query to auth server", 3090 &target->addr, target->addrlen); 3091 if(qstate->env->cfg->qname_minimisation) 3092 iq->minimisation_state = SKIP_MINIMISE_STATE; 3093 return next_state(iq, QUERYTARGETS_STATE); 3094 } 3095 outbound_list_insert(&iq->outlist, outq); 3096 iq->num_current_queries++; 3097 iq->sent_count++; 3098 qstate->ext_state[id] = module_wait_reply; 3099 3100 return 0; 3101 } 3102 3103 /** find NS rrset in given list */ 3104 static struct ub_packed_rrset_key* 3105 find_NS(struct reply_info* rep, size_t from, size_t to) 3106 { 3107 size_t i; 3108 for(i=from; i<to; i++) { 3109 if(ntohs(rep->rrsets[i]->rk.type) == LDNS_RR_TYPE_NS) 3110 return rep->rrsets[i]; 3111 } 3112 return NULL; 3113 } 3114 3115 3116 /** 3117 * Process the query response. All queries end up at this state first. This 3118 * process generally consists of analyzing the response and routing the 3119 * event to the next state (either bouncing it back to a request state, or 3120 * terminating the processing for this event). 3121 * 3122 * @param qstate: query state. 3123 * @param iq: iterator query state. 3124 * @param ie: iterator shared global environment. 3125 * @param id: module id. 3126 * @return true if the event requires more immediate processing, false if 3127 * not. This is generally only true when forwarding the request to 3128 * the final state (i.e., on answer). 3129 */ 3130 static int 3131 processQueryResponse(struct module_qstate* qstate, struct iter_qstate* iq, 3132 struct iter_env* ie, int id) 3133 { 3134 int dnsseclame = 0, origtypecname = 0, orig_empty_nodata_found; 3135 enum response_type type; 3136 3137 iq->num_current_queries--; 3138 3139 if(!inplace_cb_query_response_call(qstate->env, qstate, iq->response)) 3140 log_err("unable to call query_response callback"); 3141 3142 if(iq->response == NULL) { 3143 /* Don't increment qname when QNAME minimisation is enabled */ 3144 if(qstate->env->cfg->qname_minimisation) { 3145 iq->minimisation_state = SKIP_MINIMISE_STATE; 3146 } 3147 iq->timeout_count++; 3148 iq->chase_to_rd = 0; 3149 iq->dnssec_lame_query = 0; 3150 verbose(VERB_ALGO, "query response was timeout"); 3151 return next_state(iq, QUERYTARGETS_STATE); 3152 } 3153 iq->timeout_count = 0; 3154 orig_empty_nodata_found = iq->empty_nodata_found; 3155 type = response_type_from_server( 3156 (int)((iq->chase_flags&BIT_RD) || iq->chase_to_rd), 3157 iq->response, &iq->qinfo_out, iq->dp, &iq->empty_nodata_found); 3158 iq->chase_to_rd = 0; 3159 /* remove TC flag, if this is erroneously set by TCP upstream */ 3160 iq->response->rep->flags &= ~BIT_TC; 3161 if(orig_empty_nodata_found != iq->empty_nodata_found && 3162 iq->empty_nodata_found < EMPTY_NODATA_RETRY_COUNT) { 3163 /* try to search at another server */ 3164 if(qstate->reply) { 3165 struct delegpt_addr* a = delegpt_find_addr( 3166 iq->dp, &qstate->reply->remote_addr, 3167 qstate->reply->remote_addrlen); 3168 /* make selection disprefer it */ 3169 if(a) a->lame = 1; 3170 } 3171 return next_state(iq, QUERYTARGETS_STATE); 3172 } 3173 if(type == RESPONSE_TYPE_REFERRAL && (iq->chase_flags&BIT_RD) && 3174 !iq->auth_zone_response) { 3175 /* When forwarding (RD bit is set), we handle referrals 3176 * differently. No queries should be sent elsewhere */ 3177 type = RESPONSE_TYPE_ANSWER; 3178 } 3179 if(!qstate->env->cfg->disable_dnssec_lame_check && iq->dnssec_expected 3180 && !iq->dnssec_lame_query && 3181 !(iq->chase_flags&BIT_RD) 3182 && iq->sent_count < DNSSEC_LAME_DETECT_COUNT 3183 && type != RESPONSE_TYPE_LAME 3184 && type != RESPONSE_TYPE_REC_LAME 3185 && type != RESPONSE_TYPE_THROWAWAY 3186 && type != RESPONSE_TYPE_UNTYPED) { 3187 /* a possible answer, see if it is missing DNSSEC */ 3188 /* but not when forwarding, so we dont mark fwder lame */ 3189 if(!iter_msg_has_dnssec(iq->response)) { 3190 /* Mark this address as dnsseclame in this dp, 3191 * because that will make serverselection disprefer 3192 * it, but also, once it is the only final option, 3193 * use dnssec-lame-bypass if it needs to query there.*/ 3194 if(qstate->reply) { 3195 struct delegpt_addr* a = delegpt_find_addr( 3196 iq->dp, &qstate->reply->remote_addr, 3197 qstate->reply->remote_addrlen); 3198 if(a) a->dnsseclame = 1; 3199 } 3200 /* test the answer is from the zone we expected, 3201 * otherwise, (due to parent,child on same server), we 3202 * might mark the server,zone lame inappropriately */ 3203 if(!iter_msg_from_zone(iq->response, iq->dp, type, 3204 iq->qchase.qclass)) 3205 qstate->reply = NULL; 3206 type = RESPONSE_TYPE_LAME; 3207 dnsseclame = 1; 3208 } 3209 } else iq->dnssec_lame_query = 0; 3210 /* see if referral brings us close to the target */ 3211 if(type == RESPONSE_TYPE_REFERRAL) { 3212 struct ub_packed_rrset_key* ns = find_NS( 3213 iq->response->rep, iq->response->rep->an_numrrsets, 3214 iq->response->rep->an_numrrsets 3215 + iq->response->rep->ns_numrrsets); 3216 if(!ns) ns = find_NS(iq->response->rep, 0, 3217 iq->response->rep->an_numrrsets); 3218 if(!ns || !dname_strict_subdomain_c(ns->rk.dname, iq->dp->name) 3219 || !dname_subdomain_c(iq->qchase.qname, ns->rk.dname)){ 3220 verbose(VERB_ALGO, "bad referral, throwaway"); 3221 type = RESPONSE_TYPE_THROWAWAY; 3222 } else 3223 iter_scrub_ds(iq->response, ns, iq->dp->name); 3224 } else iter_scrub_ds(iq->response, NULL, NULL); 3225 if(type == RESPONSE_TYPE_THROWAWAY && 3226 FLAGS_GET_RCODE(iq->response->rep->flags) == LDNS_RCODE_YXDOMAIN) { 3227 /* YXDOMAIN is a permanent error for DNAME expansion overflow 3228 * (RFC 6672 Section 2.2). Only accept if the response 3229 * contains a DNAME record in the answer section; otherwise 3230 * treat as invalid, to make sure the authoritative answer 3231 * make sense. */ 3232 size_t i; 3233 for(i=0; i<iq->response->rep->an_numrrsets; i++) { 3234 if(ntohs(iq->response->rep->rrsets[i]->rk.type) 3235 == LDNS_RR_TYPE_DNAME) { 3236 type = RESPONSE_TYPE_ANSWER; 3237 break; 3238 } 3239 } 3240 } 3241 if(type == RESPONSE_TYPE_CNAME) 3242 origtypecname = 1; 3243 if(type == RESPONSE_TYPE_CNAME && iq->response->rep->an_numrrsets >= 1 3244 && ntohs(iq->response->rep->rrsets[0]->rk.type) == LDNS_RR_TYPE_DNAME) { 3245 uint8_t* sname = NULL; 3246 size_t snamelen = 0; 3247 get_cname_target(iq->response->rep->rrsets[0], &sname, 3248 &snamelen); 3249 if(snamelen && dname_subdomain_c(sname, iq->response->rep->rrsets[0]->rk.dname)) { 3250 /* DNAME to a subdomain loop; do not recurse */ 3251 type = RESPONSE_TYPE_ANSWER; 3252 } 3253 } 3254 if(type == RESPONSE_TYPE_CNAME && 3255 (iq->qchase.qtype == LDNS_RR_TYPE_CNAME || 3256 iq->qchase.qtype == LDNS_RR_TYPE_ANY) && 3257 iq->minimisation_state == MINIMISE_STATE && 3258 query_dname_compare(iq->qchase.qname, iq->qinfo_out.qname) == 0) { 3259 /* The minimised query for full QTYPE and hidden QTYPE can be 3260 * classified as CNAME response type, even when the original 3261 * QTYPE=CNAME. This should be treated as answer response type. 3262 */ 3263 /* For QTYPE=ANY, it is also considered the response, that 3264 * is what the classifier would say, if it saw qtype ANY, 3265 * and this same response was returned for that. The response 3266 * can already be treated as such an answer, without having 3267 * to send another query with a new qtype. */ 3268 type = RESPONSE_TYPE_ANSWER; 3269 } 3270 3271 /* handle each of the type cases */ 3272 if(type == RESPONSE_TYPE_ANSWER) { 3273 /* ANSWER type responses terminate the query algorithm, 3274 * so they sent on their */ 3275 if(verbosity >= VERB_DETAIL) { 3276 verbose(VERB_DETAIL, "query response was %s", 3277 FLAGS_GET_RCODE(iq->response->rep->flags) 3278 ==LDNS_RCODE_NXDOMAIN?"NXDOMAIN ANSWER": 3279 (iq->response->rep->an_numrrsets?"ANSWER": 3280 "nodata ANSWER")); 3281 } 3282 /* if qtype is DS, check we have the right level of answer, 3283 * like grandchild answer but we need the middle, reject it */ 3284 if(iq->qchase.qtype == LDNS_RR_TYPE_DS && !iq->dsns_point 3285 && !(iq->chase_flags&BIT_RD) 3286 && iter_ds_toolow(iq->response, iq->dp) 3287 && iter_dp_cangodown(&iq->qchase, iq->dp)) { 3288 /* close down outstanding requests to be discarded */ 3289 outbound_list_clear(&iq->outlist); 3290 iq->num_current_queries = 0; 3291 fptr_ok(fptr_whitelist_modenv_detach_subs( 3292 qstate->env->detach_subs)); 3293 (*qstate->env->detach_subs)(qstate); 3294 iq->num_target_queries = 0; 3295 return processDSNSFind(qstate, iq, id); 3296 } 3297 if(iq->qchase.qtype == LDNS_RR_TYPE_DNSKEY && SERVE_EXPIRED 3298 && qstate->is_valrec && 3299 reply_find_answer_rrset(&iq->qchase, iq->response->rep) != NULL) { 3300 /* clean out the authority section, if any, so it 3301 * does not overwrite dnssec valid data in the 3302 * validation recursion lookup. */ 3303 verbose(VERB_ALGO, "make DNSKEY minimal for serve " 3304 "expired"); 3305 iter_make_minimal(iq->response->rep); 3306 } 3307 if(!qstate->no_cache_store) 3308 iter_dns_store(qstate->env, &iq->response->qinfo, 3309 iq->response->rep, 3310 iq->qchase.qtype != iq->response->qinfo.qtype, 3311 qstate->prefetch_leeway, 3312 iq->dp&&iq->dp->has_parent_side_NS, 3313 qstate->region, qstate->query_flags, 3314 qstate->qstarttime, qstate->is_valrec); 3315 /* close down outstanding requests to be discarded */ 3316 outbound_list_clear(&iq->outlist); 3317 iq->num_current_queries = 0; 3318 fptr_ok(fptr_whitelist_modenv_detach_subs( 3319 qstate->env->detach_subs)); 3320 (*qstate->env->detach_subs)(qstate); 3321 iq->num_target_queries = 0; 3322 if(qstate->reply) 3323 sock_list_insert(&qstate->reply_origin, 3324 &qstate->reply->remote_addr, 3325 qstate->reply->remote_addrlen, qstate->region); 3326 if(iq->minimisation_state != DONOT_MINIMISE_STATE 3327 && !(iq->chase_flags & BIT_RD)) { 3328 if(FLAGS_GET_RCODE(iq->response->rep->flags) != 3329 LDNS_RCODE_NOERROR) { 3330 if(qstate->env->cfg->qname_minimisation_strict) { 3331 if(FLAGS_GET_RCODE(iq->response->rep->flags) == 3332 LDNS_RCODE_NXDOMAIN) { 3333 iter_scrub_nxdomain(iq->response); 3334 return final_state(iq); 3335 } 3336 return error_response_cache(qstate, id, 3337 LDNS_RCODE_SERVFAIL); 3338 } 3339 /* Best effort qname-minimisation. 3340 * Stop minimising and send full query when 3341 * RCODE is not NOERROR. */ 3342 iq->minimisation_state = DONOT_MINIMISE_STATE; 3343 } 3344 if(FLAGS_GET_RCODE(iq->response->rep->flags) == 3345 LDNS_RCODE_NXDOMAIN && !origtypecname) { 3346 /* Stop resolving when NXDOMAIN is DNSSEC 3347 * signed. Based on assumption that nameservers 3348 * serving signed zones do not return NXDOMAIN 3349 * for empty-non-terminals. */ 3350 /* If this response is actually a CNAME type, 3351 * the nxdomain rcode may not be for the qname, 3352 * and so it is not the final response. */ 3353 if(iq->dnssec_expected) 3354 return final_state(iq); 3355 /* Make subrequest to validate intermediate 3356 * NXDOMAIN if harden-below-nxdomain is 3357 * enabled. */ 3358 if(qstate->env->cfg->harden_below_nxdomain && 3359 qstate->env->need_to_validate) { 3360 struct module_qstate* subq = NULL; 3361 log_query_info(VERB_QUERY, 3362 "schedule NXDOMAIN validation:", 3363 &iq->response->qinfo); 3364 if(!generate_sub_request( 3365 iq->response->qinfo.qname, 3366 iq->response->qinfo.qname_len, 3367 iq->response->qinfo.qtype, 3368 iq->response->qinfo.qclass, 3369 qstate, id, iq, 3370 INIT_REQUEST_STATE, 3371 FINISHED_STATE, &subq, 1, 1)) 3372 verbose(VERB_ALGO, 3373 "could not validate NXDOMAIN " 3374 "response"); 3375 } 3376 } 3377 return next_state(iq, QUERYTARGETS_STATE); 3378 } 3379 return final_state(iq); 3380 } else if(type == RESPONSE_TYPE_REFERRAL) { 3381 struct delegpt* old_dp = NULL; 3382 /* REFERRAL type responses get a reset of the 3383 * delegation point, and back to the QUERYTARGETS_STATE. */ 3384 verbose(VERB_DETAIL, "query response was REFERRAL"); 3385 3386 /* if hardened, only store referral if we asked for it */ 3387 if(!qstate->no_cache_store && 3388 (!qstate->env->cfg->harden_referral_path || 3389 ( qstate->qinfo.qtype == LDNS_RR_TYPE_NS 3390 && (qstate->query_flags&BIT_RD) 3391 && !(qstate->query_flags&BIT_CD) 3392 /* we know that all other NS rrsets are scrubbed 3393 * away, thus on referral only one is left. 3394 * see if that equals the query name... */ 3395 && ( /* auth section, but sometimes in answer section*/ 3396 reply_find_rrset_section_ns(iq->response->rep, 3397 iq->qchase.qname, iq->qchase.qname_len, 3398 LDNS_RR_TYPE_NS, iq->qchase.qclass) 3399 || reply_find_rrset_section_an(iq->response->rep, 3400 iq->qchase.qname, iq->qchase.qname_len, 3401 LDNS_RR_TYPE_NS, iq->qchase.qclass) 3402 ) 3403 ))) { 3404 /* Store the referral under the current query */ 3405 /* no prefetch-leeway, since its not the answer */ 3406 iter_dns_store(qstate->env, &iq->response->qinfo, 3407 iq->response->rep, 1, 0, 0, NULL, 0, 3408 qstate->qstarttime, qstate->is_valrec); 3409 if(iq->store_parent_NS) 3410 iter_store_parentside_NS(qstate->env, 3411 iq->response->rep); 3412 if(qstate->env->neg_cache) 3413 val_neg_addreferral(qstate->env->neg_cache, 3414 iq->response->rep, iq->dp->name); 3415 } 3416 /* store parent-side-in-zone-glue, if directly queried for */ 3417 if(!qstate->no_cache_store && iq->query_for_pside_glue 3418 && !iq->pside_glue) { 3419 iq->pside_glue = reply_find_rrset(iq->response->rep, 3420 iq->qchase.qname, iq->qchase.qname_len, 3421 iq->qchase.qtype, iq->qchase.qclass); 3422 if(iq->pside_glue) { 3423 log_rrset_key(VERB_ALGO, "found parent-side " 3424 "glue", iq->pside_glue); 3425 iter_store_parentside_rrset(qstate->env, 3426 iq->pside_glue); 3427 } 3428 } 3429 3430 /* Reset the event state, setting the current delegation 3431 * point to the referral. */ 3432 iq->deleg_msg = iq->response; 3433 /* Keep current delegation point for label comparison */ 3434 old_dp = iq->dp; 3435 iq->dp = delegpt_from_message(iq->response, qstate->region); 3436 if (qstate->env->cfg->qname_minimisation) 3437 iq->minimisation_state = INIT_MINIMISE_STATE; 3438 if(!iq->dp) { 3439 errinf(qstate, "malloc failure, for delegation point"); 3440 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 3441 } 3442 if(old_dp->namelabs + 1 < iq->dp->namelabs) { 3443 /* We got a grandchild delegation (more than one label 3444 * difference) than expected. Check for in-between 3445 * delegations in the cache and remove them. 3446 * They could prove problematic when they expire 3447 * and rrset_expired_above() encounters them during 3448 * delegation cache lookups. */ 3449 uint8_t* qname = iq->dp->name; 3450 size_t qnamelen = iq->dp->namelen; 3451 rrset_cache_remove_above(qstate->env->rrset_cache, 3452 &qname, &qnamelen, LDNS_RR_TYPE_NS, 3453 iq->qchase.qclass, *qstate->env->now, 3454 old_dp->name, old_dp->namelen); 3455 } 3456 if(!cache_fill_missing(qstate->env, iq->qchase.qclass, 3457 qstate->region, iq->dp, 0)) { 3458 errinf(qstate, "malloc failure, copy extra info into delegation point"); 3459 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 3460 } 3461 if(iq->store_parent_NS && query_dname_compare(iq->dp->name, 3462 iq->store_parent_NS->name) == 0) 3463 iter_merge_retry_counts(iq->dp, iq->store_parent_NS, 3464 ie->outbound_msg_retry); 3465 delegpt_log(VERB_ALGO, iq->dp); 3466 /* Count this as a referral. */ 3467 iq->referral_count++; 3468 iq->sent_count = 0; 3469 iq->dp_target_count = 0; 3470 /* see if the next dp is a trust anchor, or a DS was sent 3471 * along, indicating dnssec is expected for next zone */ 3472 iq->dnssec_expected = iter_indicates_dnssec(qstate->env, 3473 iq->dp, iq->response, iq->qchase.qclass); 3474 /* if dnssec, validating then also fetch the key for the DS */ 3475 if(iq->dnssec_expected && qstate->env->cfg->prefetch_key && 3476 !(qstate->query_flags&BIT_CD)) 3477 generate_dnskey_prefetch(qstate, iq, id); 3478 3479 /* spawn off NS and addr to auth servers for the NS we just 3480 * got in the referral. This gets authoritative answer 3481 * (answer section trust level) rrset. 3482 * right after, we detach the subs, answer goes to cache. */ 3483 if(qstate->env->cfg->harden_referral_path) 3484 generate_ns_check(qstate, iq, id); 3485 3486 /* stop current outstanding queries. 3487 * FIXME: should the outstanding queries be waited for and 3488 * handled? Say by a subquery that inherits the outbound_entry. 3489 */ 3490 outbound_list_clear(&iq->outlist); 3491 iq->num_current_queries = 0; 3492 fptr_ok(fptr_whitelist_modenv_detach_subs( 3493 qstate->env->detach_subs)); 3494 (*qstate->env->detach_subs)(qstate); 3495 iq->num_target_queries = 0; 3496 iq->response = NULL; 3497 iq->fail_addr_type = 0; 3498 verbose(VERB_ALGO, "cleared outbound list for next round"); 3499 return next_state(iq, QUERYTARGETS_STATE); 3500 } else if(type == RESPONSE_TYPE_CNAME) { 3501 uint8_t* sname = NULL; 3502 size_t snamelen = 0; 3503 /* CNAME type responses get a query restart (i.e., get a 3504 * reset of the query state and go back to INIT_REQUEST_STATE). 3505 */ 3506 verbose(VERB_DETAIL, "query response was CNAME"); 3507 if(verbosity >= VERB_ALGO) 3508 log_dns_msg("cname msg", &iq->response->qinfo, 3509 iq->response->rep); 3510 /* if qtype is DS, check we have the right level of answer, 3511 * like grandchild answer but we need the middle, reject it */ 3512 if(iq->qchase.qtype == LDNS_RR_TYPE_DS && !iq->dsns_point 3513 && !(iq->chase_flags&BIT_RD) 3514 && iter_ds_toolow(iq->response, iq->dp) 3515 && iter_dp_cangodown(&iq->qchase, iq->dp)) { 3516 outbound_list_clear(&iq->outlist); 3517 iq->num_current_queries = 0; 3518 fptr_ok(fptr_whitelist_modenv_detach_subs( 3519 qstate->env->detach_subs)); 3520 (*qstate->env->detach_subs)(qstate); 3521 iq->num_target_queries = 0; 3522 return processDSNSFind(qstate, iq, id); 3523 } 3524 if(iq->minimisation_state == MINIMISE_STATE && 3525 query_dname_compare(iq->qchase.qname, 3526 iq->qinfo_out.qname) != 0) { 3527 verbose(VERB_ALGO, "continue query minimisation, " 3528 "downwards, after CNAME response for " 3529 "intermediate label"); 3530 /* continue query minimisation, downwards */ 3531 return next_state(iq, QUERYTARGETS_STATE); 3532 } 3533 /* Process the CNAME response. */ 3534 if(!handle_cname_response(qstate, iq, iq->response, 3535 &sname, &snamelen)) { 3536 errinf(qstate, "malloc failure, CNAME info"); 3537 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 3538 } 3539 /* cache the CNAME response under the current query */ 3540 /* NOTE : set referral=1, so that rrsets get stored but not 3541 * the partial query answer (CNAME only). */ 3542 /* prefetchleeway applied because this updates answer parts */ 3543 if(!qstate->no_cache_store) 3544 iter_dns_store(qstate->env, &iq->response->qinfo, 3545 iq->response->rep, 1, qstate->prefetch_leeway, 3546 iq->dp&&iq->dp->has_parent_side_NS, NULL, 3547 qstate->query_flags, qstate->qstarttime, 3548 qstate->is_valrec); 3549 /* set the current request's qname to the new value. */ 3550 iq->qchase.qname = sname; 3551 iq->qchase.qname_len = snamelen; 3552 if(qstate->env->auth_zones) { 3553 /* apply rpz qname triggers after cname */ 3554 struct dns_msg* forged_response = 3555 rpz_callback_from_iterator_cname(qstate, iq); 3556 int count = 0; 3557 while(forged_response && reply_find_rrset_section_an( 3558 forged_response->rep, iq->qchase.qname, 3559 iq->qchase.qname_len, LDNS_RR_TYPE_CNAME, 3560 iq->qchase.qclass) && 3561 iq->qchase.qtype != LDNS_RR_TYPE_CNAME && 3562 count++ < ie->max_query_restarts) { 3563 /* another cname to follow */ 3564 if(!handle_cname_response(qstate, iq, forged_response, 3565 &sname, &snamelen)) { 3566 errinf(qstate, "malloc failure, CNAME info"); 3567 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 3568 } 3569 iq->qchase.qname = sname; 3570 iq->qchase.qname_len = snamelen; 3571 forged_response = 3572 rpz_callback_from_iterator_cname(qstate, iq); 3573 } 3574 if(forged_response != NULL) { 3575 qstate->ext_state[id] = module_finished; 3576 qstate->return_rcode = LDNS_RCODE_NOERROR; 3577 qstate->return_msg = forged_response; 3578 iq->response = forged_response; 3579 next_state(iq, FINISHED_STATE); 3580 if(!iter_prepend(iq, qstate->return_msg, qstate->region)) { 3581 log_err("rpz: after cname, prepend rrsets: out of memory"); 3582 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 3583 } 3584 qstate->return_msg->qinfo = qstate->qinfo; 3585 return 0; 3586 } 3587 } 3588 /* Clear the query state, since this is a query restart. */ 3589 iq->deleg_msg = NULL; 3590 iq->dp = NULL; 3591 iq->dsns_point = NULL; 3592 iq->auth_zone_response = 0; 3593 iq->sent_count = 0; 3594 iq->dp_target_count = 0; 3595 iq->query_restart_count++; 3596 if(qstate->env->cfg->qname_minimisation) 3597 iq->minimisation_state = INIT_MINIMISE_STATE; 3598 3599 /* stop current outstanding queries. 3600 * FIXME: should the outstanding queries be waited for and 3601 * handled? Say by a subquery that inherits the outbound_entry. 3602 */ 3603 outbound_list_clear(&iq->outlist); 3604 iq->num_current_queries = 0; 3605 fptr_ok(fptr_whitelist_modenv_detach_subs( 3606 qstate->env->detach_subs)); 3607 (*qstate->env->detach_subs)(qstate); 3608 iq->num_target_queries = 0; 3609 if(qstate->reply) 3610 sock_list_insert(&qstate->reply_origin, 3611 &qstate->reply->remote_addr, 3612 qstate->reply->remote_addrlen, qstate->region); 3613 verbose(VERB_ALGO, "cleared outbound list for query restart"); 3614 /* go to INIT_REQUEST_STATE for new qname. */ 3615 return next_state(iq, INIT_REQUEST_STATE); 3616 } else if(type == RESPONSE_TYPE_LAME) { 3617 /* Cache the LAMEness. */ 3618 verbose(VERB_DETAIL, "query response was categorized as %sLAME", 3619 dnsseclame?"DNSSEC ":""); 3620 if(!dname_subdomain_c(iq->qchase.qname, iq->dp->name)) { 3621 log_err("mark lame: mismatch in qname and dpname"); 3622 /* throwaway this reply below */ 3623 } else if(qstate->reply) { 3624 /* need addr for lameness cache, but we may have 3625 * gotten this from cache, so test to be sure */ 3626 if(!infra_set_lame(qstate->env->infra_cache, 3627 &qstate->reply->remote_addr, 3628 qstate->reply->remote_addrlen, 3629 iq->dp->name, iq->dp->namelen, 3630 *qstate->env->now, dnsseclame, 0, 3631 iq->qchase.qtype)) 3632 log_err("mark host lame: out of memory"); 3633 } 3634 } else if(type == RESPONSE_TYPE_REC_LAME) { 3635 /* Cache the LAMEness. */ 3636 verbose(VERB_DETAIL, "query response REC_LAME: " 3637 "recursive but not authoritative server"); 3638 if(!dname_subdomain_c(iq->qchase.qname, iq->dp->name)) { 3639 log_err("mark rec_lame: mismatch in qname and dpname"); 3640 /* throwaway this reply below */ 3641 } else if(qstate->reply) { 3642 /* need addr for lameness cache, but we may have 3643 * gotten this from cache, so test to be sure */ 3644 verbose(VERB_DETAIL, "mark as REC_LAME"); 3645 if(!infra_set_lame(qstate->env->infra_cache, 3646 &qstate->reply->remote_addr, 3647 qstate->reply->remote_addrlen, 3648 iq->dp->name, iq->dp->namelen, 3649 *qstate->env->now, 0, 1, iq->qchase.qtype)) 3650 log_err("mark host lame: out of memory"); 3651 } 3652 } else if(type == RESPONSE_TYPE_THROWAWAY) { 3653 /* LAME and THROWAWAY responses are handled the same way. 3654 * In this case, the event is just sent directly back to 3655 * the QUERYTARGETS_STATE without resetting anything, 3656 * because, clearly, the next target must be tried. */ 3657 verbose(VERB_DETAIL, "query response was categorized as THROWAWAY"); 3658 } else { 3659 log_warn("A query response came back with an unknown type: %d", 3660 (int)type); 3661 } 3662 3663 /* LAME, THROWAWAY and "unknown" all end up here. 3664 * Recycle to the QUERYTARGETS state to hopefully try a 3665 * different target. */ 3666 if (qstate->env->cfg->qname_minimisation && 3667 !qstate->env->cfg->qname_minimisation_strict) 3668 iq->minimisation_state = DONOT_MINIMISE_STATE; 3669 if(iq->auth_zone_response) { 3670 /* can we fallback? */ 3671 iq->auth_zone_response = 0; 3672 if(!auth_zones_can_fallback(qstate->env->auth_zones, 3673 iq->dp->name, iq->dp->namelen, qstate->qinfo.qclass)) { 3674 verbose(VERB_ALGO, "auth zone response bad, and no" 3675 " fallback possible, servfail"); 3676 errinf_dname(qstate, "response is bad, no fallback, " 3677 "for auth zone", iq->dp->name); 3678 return error_response_cache(qstate, id, LDNS_RCODE_SERVFAIL); 3679 } 3680 verbose(VERB_ALGO, "auth zone response was bad, " 3681 "fallback enabled"); 3682 iq->auth_zone_avoid = 1; 3683 if(iq->dp->auth_dp) { 3684 /* we are using a dp for the auth zone, with no 3685 * nameservers, get one first */ 3686 iq->dp = NULL; 3687 return next_state(iq, INIT_REQUEST_STATE); 3688 } 3689 } 3690 return next_state(iq, QUERYTARGETS_STATE); 3691 } 3692 3693 /** 3694 * Return priming query results to interested super querystates. 3695 * 3696 * Sets the delegation point and delegation message (not nonRD queries). 3697 * This is a callback from walk_supers. 3698 * 3699 * @param qstate: priming query state that finished. 3700 * @param id: module id. 3701 * @param forq: the qstate for which priming has been done. 3702 */ 3703 static void 3704 prime_supers(struct module_qstate* qstate, int id, struct module_qstate* forq) 3705 { 3706 struct iter_qstate* foriq = (struct iter_qstate*)forq->minfo[id]; 3707 struct delegpt* dp = NULL; 3708 3709 log_assert(qstate->is_priming || foriq->wait_priming_stub); 3710 log_assert(qstate->return_rcode == LDNS_RCODE_NOERROR); 3711 /* Convert our response to a delegation point */ 3712 dp = delegpt_from_message(qstate->return_msg, forq->region); 3713 if(!dp) { 3714 /* if there is no convertible delegation point, then 3715 * the ANSWER type was (presumably) a negative answer. */ 3716 verbose(VERB_ALGO, "prime response was not a positive " 3717 "ANSWER; failing"); 3718 foriq->dp = NULL; 3719 foriq->state = QUERYTARGETS_STATE; 3720 return; 3721 } 3722 3723 log_query_info(VERB_DETAIL, "priming successful for", &qstate->qinfo); 3724 delegpt_log(VERB_ALGO, dp); 3725 foriq->dp = dp; 3726 foriq->deleg_msg = dns_copy_msg(qstate->return_msg, forq->region); 3727 if(!foriq->deleg_msg) { 3728 log_err("copy prime response: out of memory"); 3729 foriq->dp = NULL; 3730 foriq->state = QUERYTARGETS_STATE; 3731 return; 3732 } 3733 3734 /* root priming responses go to init stage 2, priming stub 3735 * responses to to stage 3. */ 3736 if(foriq->wait_priming_stub) { 3737 foriq->state = INIT_REQUEST_3_STATE; 3738 foriq->wait_priming_stub = 0; 3739 } else foriq->state = INIT_REQUEST_2_STATE; 3740 /* because we are finished, the parent will be reactivated */ 3741 } 3742 3743 /** 3744 * This handles the response to a priming query. This is used to handle both 3745 * root and stub priming responses. This is basically the equivalent of the 3746 * QUERY_RESP_STATE, but will not handle CNAME responses and will treat 3747 * REFERRALs as ANSWERS. It will also update and reactivate the originating 3748 * event. 3749 * 3750 * @param qstate: query state. 3751 * @param id: module id. 3752 * @return true if the event needs more immediate processing, false if not. 3753 * This state always returns false. 3754 */ 3755 static int 3756 processPrimeResponse(struct module_qstate* qstate, int id) 3757 { 3758 struct iter_qstate* iq = (struct iter_qstate*)qstate->minfo[id]; 3759 enum response_type type; 3760 iq->response->rep->flags &= ~(BIT_RD|BIT_RA); /* ignore rec-lame */ 3761 type = response_type_from_server( 3762 (int)((iq->chase_flags&BIT_RD) || iq->chase_to_rd), 3763 iq->response, &iq->qchase, iq->dp, NULL); 3764 if(type == RESPONSE_TYPE_ANSWER) { 3765 qstate->return_rcode = LDNS_RCODE_NOERROR; 3766 qstate->return_msg = iq->response; 3767 } else { 3768 errinf(qstate, "prime response did not get an answer"); 3769 errinf_dname(qstate, "for", qstate->qinfo.qname); 3770 qstate->return_rcode = LDNS_RCODE_SERVFAIL; 3771 qstate->return_msg = NULL; 3772 } 3773 3774 /* validate the root or stub after priming (if enabled). 3775 * This is the same query as the prime query, but with validation. 3776 * Now that we are primed, the additional queries that validation 3777 * may need can be resolved. */ 3778 if(qstate->env->cfg->harden_referral_path) { 3779 struct module_qstate* subq = NULL; 3780 log_nametypeclass(VERB_ALGO, "schedule prime validation", 3781 qstate->qinfo.qname, qstate->qinfo.qtype, 3782 qstate->qinfo.qclass); 3783 if(!generate_sub_request(qstate->qinfo.qname, 3784 qstate->qinfo.qname_len, qstate->qinfo.qtype, 3785 qstate->qinfo.qclass, qstate, id, iq, 3786 INIT_REQUEST_STATE, FINISHED_STATE, &subq, 1, 0)) { 3787 verbose(VERB_ALGO, "could not generate prime check"); 3788 } 3789 generate_a_aaaa_check(qstate, iq, id); 3790 } 3791 3792 /* This event is finished. */ 3793 qstate->ext_state[id] = module_finished; 3794 return 0; 3795 } 3796 3797 /** 3798 * Do final processing on responses to target queries. Events reach this 3799 * state after the iterative resolution algorithm terminates. This state is 3800 * responsible for reactivating the original event, and housekeeping related 3801 * to received target responses (caching, updating the current delegation 3802 * point, etc). 3803 * Callback from walk_supers for every super state that is interested in 3804 * the results from this query. 3805 * 3806 * @param qstate: query state. 3807 * @param id: module id. 3808 * @param forq: super query state. 3809 */ 3810 static void 3811 processTargetResponse(struct module_qstate* qstate, int id, 3812 struct module_qstate* forq) 3813 { 3814 struct iter_env* ie = (struct iter_env*)qstate->env->modinfo[id]; 3815 struct iter_qstate* iq = (struct iter_qstate*)qstate->minfo[id]; 3816 struct iter_qstate* foriq = (struct iter_qstate*)forq->minfo[id]; 3817 struct ub_packed_rrset_key* rrset; 3818 struct delegpt_ns* dpns; 3819 log_assert(qstate->return_rcode == LDNS_RCODE_NOERROR); 3820 3821 foriq->state = QUERYTARGETS_STATE; 3822 log_query_info(VERB_ALGO, "processTargetResponse", &qstate->qinfo); 3823 log_query_info(VERB_ALGO, "processTargetResponse super", &forq->qinfo); 3824 3825 /* Tell the originating event that this target query has finished 3826 * (regardless if it succeeded or not). */ 3827 foriq->num_target_queries--; 3828 3829 /* check to see if parent event is still interested (in orig name). */ 3830 if(!foriq->dp) { 3831 verbose(VERB_ALGO, "subq: parent not interested, was reset"); 3832 return; /* not interested anymore */ 3833 } 3834 dpns = delegpt_find_ns(foriq->dp, qstate->qinfo.qname, 3835 qstate->qinfo.qname_len); 3836 if(!dpns) { 3837 /* If not interested, just stop processing this event */ 3838 verbose(VERB_ALGO, "subq: parent not interested anymore"); 3839 /* could be because parent was jostled out of the cache, 3840 and a new identical query arrived, that does not want it*/ 3841 return; 3842 } 3843 3844 /* if iq->query_for_pside_glue then add the pside_glue (marked lame) */ 3845 if(iq->pside_glue) { 3846 /* if the pside_glue is NULL, then it could not be found, 3847 * the done_pside is already set when created and a cache 3848 * entry created in processFinished so nothing to do here */ 3849 log_rrset_key(VERB_ALGO, "add parentside glue to dp", 3850 iq->pside_glue); 3851 if(!delegpt_add_rrset(foriq->dp, forq->region, 3852 iq->pside_glue, 1, NULL)) 3853 log_err("out of memory adding pside glue"); 3854 } 3855 3856 /* This response is relevant to the current query, so we 3857 * add (attempt to add, anyway) this target(s) and reactivate 3858 * the original event. 3859 * NOTE: we could only look for the AnswerRRset if the 3860 * response type was ANSWER. */ 3861 rrset = reply_find_answer_rrset(&iq->qchase, qstate->return_msg->rep); 3862 if(rrset) { 3863 int additions = 0; 3864 /* if CNAMEs have been followed - add new NS to delegpt. */ 3865 /* BTW. RFC 1918 says NS should not have got CNAMEs. Robust. */ 3866 if(!delegpt_find_ns(foriq->dp, rrset->rk.dname, 3867 rrset->rk.dname_len)) { 3868 /* if dpns->lame then set newcname ns lame too */ 3869 if(!delegpt_add_ns(foriq->dp, forq->region, 3870 rrset->rk.dname, dpns->lame, dpns->tls_auth_name, 3871 dpns->port)) 3872 log_err("out of memory adding cnamed-ns"); 3873 } 3874 /* if dpns->lame then set the address(es) lame too */ 3875 if(!delegpt_add_rrset(foriq->dp, forq->region, rrset, 3876 dpns->lame, &additions)) 3877 log_err("out of memory adding targets"); 3878 if(!additions) { 3879 /* no new addresses, increase the nxns counter, like 3880 * this could be a list of wildcards with no new 3881 * addresses */ 3882 target_count_increase_nx(foriq, 1); 3883 } 3884 verbose(VERB_ALGO, "added target response"); 3885 delegpt_log(VERB_ALGO, foriq->dp); 3886 } else { 3887 verbose(VERB_ALGO, "iterator TargetResponse failed"); 3888 delegpt_mark_neg(dpns, qstate->qinfo.qtype); 3889 if((dpns->got4 == 2 || (!ie->supports_ipv4 && !ie->nat64.use_nat64)) && 3890 (dpns->got6 == 2 || !ie->supports_ipv6)) { 3891 dpns->resolved = 1; /* fail the target */ 3892 /* do not count cached answers */ 3893 if(qstate->reply_origin && qstate->reply_origin->len != 0) { 3894 target_count_increase_nx(foriq, 1); 3895 } 3896 } 3897 } 3898 } 3899 3900 /** 3901 * Process response for DS NS Find queries, that attempt to find the delegation 3902 * point where we ask the DS query from. 3903 * 3904 * @param qstate: query state. 3905 * @param id: module id. 3906 * @param forq: super query state. 3907 */ 3908 static void 3909 processDSNSResponse(struct module_qstate* qstate, int id, 3910 struct module_qstate* forq) 3911 { 3912 struct iter_qstate* foriq = (struct iter_qstate*)forq->minfo[id]; 3913 3914 /* if the finished (iq->response) query has no NS set: continue 3915 * up to look for the right dp; nothing to change, do DPNSstate */ 3916 if(qstate->return_rcode != LDNS_RCODE_NOERROR) 3917 return; /* seek further */ 3918 /* find the NS RRset (without allowing CNAMEs) */ 3919 if(!reply_find_rrset(qstate->return_msg->rep, qstate->qinfo.qname, 3920 qstate->qinfo.qname_len, LDNS_RR_TYPE_NS, 3921 qstate->qinfo.qclass)){ 3922 return; /* seek further */ 3923 } 3924 3925 /* else, store as DP and continue at querytargets */ 3926 foriq->state = QUERYTARGETS_STATE; 3927 foriq->dp = delegpt_from_message(qstate->return_msg, forq->region); 3928 if(!foriq->dp) { 3929 log_err("out of memory in dsns dp alloc"); 3930 errinf(qstate, "malloc failure, in DS search"); 3931 return; /* dp==NULL in QUERYTARGETS makes SERVFAIL */ 3932 } 3933 /* success, go query the querytargets in the new dp (and go down) */ 3934 } 3935 3936 /** 3937 * Process response for qclass=ANY queries for a particular class. 3938 * Append to result or error-exit. 3939 * 3940 * @param qstate: query state. 3941 * @param id: module id. 3942 * @param forq: super query state. 3943 */ 3944 static void 3945 processClassResponse(struct module_qstate* qstate, int id, 3946 struct module_qstate* forq) 3947 { 3948 struct iter_qstate* foriq = (struct iter_qstate*)forq->minfo[id]; 3949 struct dns_msg* from = qstate->return_msg; 3950 log_query_info(VERB_ALGO, "processClassResponse", &qstate->qinfo); 3951 log_query_info(VERB_ALGO, "processClassResponse super", &forq->qinfo); 3952 if(qstate->return_rcode != LDNS_RCODE_NOERROR) { 3953 /* cause servfail for qclass ANY query */ 3954 foriq->response = NULL; 3955 foriq->state = FINISHED_STATE; 3956 return; 3957 } 3958 /* append result */ 3959 if(!foriq->response) { 3960 /* allocate the response: copy RCODE, sec_state */ 3961 foriq->response = dns_copy_msg(from, forq->region); 3962 if(!foriq->response) { 3963 log_err("malloc failed for qclass ANY response"); 3964 foriq->state = FINISHED_STATE; 3965 return; 3966 } 3967 foriq->response->qinfo.qclass = forq->qinfo.qclass; 3968 /* qclass ANY does not receive the AA flag on replies */ 3969 foriq->response->rep->authoritative = 0; 3970 } else { 3971 struct dns_msg* to = foriq->response; 3972 /* add _from_ this response _to_ existing collection */ 3973 /* if there are records, copy RCODE */ 3974 /* lower sec_state if this message is lower */ 3975 if(from->rep->rrset_count != 0) { 3976 size_t n = from->rep->rrset_count+to->rep->rrset_count; 3977 struct ub_packed_rrset_key** dest, **d; 3978 /* copy appropriate rcode */ 3979 to->rep->flags = from->rep->flags; 3980 /* copy rrsets */ 3981 if(from->rep->rrset_count > RR_COUNT_MAX || 3982 to->rep->rrset_count > RR_COUNT_MAX) { 3983 log_err("malloc failed (too many rrsets) in collect ANY"); 3984 foriq->state = FINISHED_STATE; 3985 return; /* integer overflow protection */ 3986 } 3987 dest = regional_alloc(forq->region, sizeof(dest[0])*n); 3988 if(!dest) { 3989 log_err("malloc failed in collect ANY"); 3990 foriq->state = FINISHED_STATE; 3991 return; 3992 } 3993 d = dest; 3994 /* copy AN */ 3995 memcpy(dest, to->rep->rrsets, to->rep->an_numrrsets 3996 * sizeof(dest[0])); 3997 dest += to->rep->an_numrrsets; 3998 memcpy(dest, from->rep->rrsets, from->rep->an_numrrsets 3999 * sizeof(dest[0])); 4000 dest += from->rep->an_numrrsets; 4001 /* copy NS */ 4002 memcpy(dest, to->rep->rrsets+to->rep->an_numrrsets, 4003 to->rep->ns_numrrsets * sizeof(dest[0])); 4004 dest += to->rep->ns_numrrsets; 4005 memcpy(dest, from->rep->rrsets+from->rep->an_numrrsets, 4006 from->rep->ns_numrrsets * sizeof(dest[0])); 4007 dest += from->rep->ns_numrrsets; 4008 /* copy AR */ 4009 memcpy(dest, to->rep->rrsets+to->rep->an_numrrsets+ 4010 to->rep->ns_numrrsets, 4011 to->rep->ar_numrrsets * sizeof(dest[0])); 4012 dest += to->rep->ar_numrrsets; 4013 memcpy(dest, from->rep->rrsets+from->rep->an_numrrsets+ 4014 from->rep->ns_numrrsets, 4015 from->rep->ar_numrrsets * sizeof(dest[0])); 4016 /* update counts */ 4017 to->rep->rrsets = d; 4018 to->rep->an_numrrsets += from->rep->an_numrrsets; 4019 to->rep->ns_numrrsets += from->rep->ns_numrrsets; 4020 to->rep->ar_numrrsets += from->rep->ar_numrrsets; 4021 to->rep->rrset_count = n; 4022 } 4023 if(from->rep->security < to->rep->security) /* lowest sec */ 4024 to->rep->security = from->rep->security; 4025 if(from->rep->qdcount != 0) /* insert qd if appropriate */ 4026 to->rep->qdcount = from->rep->qdcount; 4027 if(from->rep->ttl < to->rep->ttl) /* use smallest TTL */ 4028 to->rep->ttl = from->rep->ttl; 4029 if(from->rep->prefetch_ttl < to->rep->prefetch_ttl) 4030 to->rep->prefetch_ttl = from->rep->prefetch_ttl; 4031 if(from->rep->serve_expired_ttl < to->rep->serve_expired_ttl) 4032 to->rep->serve_expired_ttl = from->rep->serve_expired_ttl; 4033 if(from->rep->serve_expired_norec_ttl < to->rep->serve_expired_norec_ttl) 4034 to->rep->serve_expired_norec_ttl = from->rep->serve_expired_norec_ttl; 4035 } 4036 /* are we done? */ 4037 foriq->num_current_queries --; 4038 if(foriq->num_current_queries == 0) 4039 foriq->state = FINISHED_STATE; 4040 } 4041 4042 /** 4043 * Collect class ANY responses and make them into one response. This 4044 * state is started and it creates queries for all classes (that have 4045 * root hints). The answers are then collected. 4046 * 4047 * @param qstate: query state. 4048 * @param id: module id. 4049 * @return true if the event needs more immediate processing, false if not. 4050 */ 4051 static int 4052 processCollectClass(struct module_qstate* qstate, int id) 4053 { 4054 struct iter_qstate* iq = (struct iter_qstate*)qstate->minfo[id]; 4055 struct module_qstate* subq; 4056 /* If qchase.qclass == 0 then send out queries for all classes. 4057 * Otherwise, do nothing (wait for all answers to arrive and the 4058 * processClassResponse to put them together, and that moves us 4059 * towards the Finished state when done. */ 4060 if(iq->qchase.qclass == 0) { 4061 uint16_t c = 0; 4062 iq->qchase.qclass = LDNS_RR_CLASS_ANY; 4063 while(iter_get_next_root(qstate->env->hints, 4064 qstate->env->fwds, &c)) { 4065 /* generate query for this class */ 4066 log_nametypeclass(VERB_ALGO, "spawn collect query", 4067 qstate->qinfo.qname, qstate->qinfo.qtype, c); 4068 if(!generate_sub_request(qstate->qinfo.qname, 4069 qstate->qinfo.qname_len, qstate->qinfo.qtype, 4070 c, qstate, id, iq, INIT_REQUEST_STATE, 4071 FINISHED_STATE, &subq, 4072 (int)!(qstate->query_flags&BIT_CD), 0)) { 4073 errinf(qstate, "could not generate class ANY" 4074 " lookup query"); 4075 return error_response(qstate, id, 4076 LDNS_RCODE_SERVFAIL); 4077 } 4078 /* ignore subq, no special init required */ 4079 iq->num_current_queries ++; 4080 if(c == 0xffff) 4081 break; 4082 else c++; 4083 } 4084 /* if no roots are configured at all, return */ 4085 if(iq->num_current_queries == 0) { 4086 verbose(VERB_ALGO, "No root hints or fwds, giving up " 4087 "on qclass ANY"); 4088 return error_response_cache(qstate, id, LDNS_RCODE_REFUSED); 4089 } 4090 /* return false, wait for queries to return */ 4091 } 4092 /* if woke up here because of an answer, wait for more answers */ 4093 return 0; 4094 } 4095 4096 /** 4097 * This handles the final state for first-tier responses (i.e., responses to 4098 * externally generated queries). 4099 * 4100 * @param qstate: query state. 4101 * @param iq: iterator query state. 4102 * @param id: module id. 4103 * @return true if the event needs more processing, false if not. Since this 4104 * is the final state for an event, it always returns false. 4105 */ 4106 static int 4107 processFinished(struct module_qstate* qstate, struct iter_qstate* iq, 4108 int id) 4109 { 4110 log_query_info(VERB_QUERY, "finishing processing for", 4111 &qstate->qinfo); 4112 4113 /* store negative cache element for parent side glue. */ 4114 if(!qstate->no_cache_store && iq->query_for_pside_glue 4115 && !iq->pside_glue) 4116 iter_store_parentside_neg(qstate->env, &qstate->qinfo, 4117 iq->deleg_msg?iq->deleg_msg->rep: 4118 (iq->response?iq->response->rep:NULL)); 4119 if(!iq->response) { 4120 verbose(VERB_ALGO, "No response is set, servfail"); 4121 errinf(qstate, "(no response found at query finish)"); 4122 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 4123 } 4124 4125 /* Make sure that the RA flag is set (since the presence of 4126 * this module means that recursion is available) */ 4127 iq->response->rep->flags |= BIT_RA; 4128 4129 /* Clear the AA flag */ 4130 /* FIXME: does this action go here or in some other module? */ 4131 iq->response->rep->flags &= ~BIT_AA; 4132 4133 /* make sure QR flag is on */ 4134 iq->response->rep->flags |= BIT_QR; 4135 4136 /* explicitly set the EDE string to NULL */ 4137 iq->response->rep->reason_bogus_str = NULL; 4138 if((qstate->env->cfg->val_log_level >= 2 || 4139 qstate->env->cfg->log_servfail) && qstate->errinf && 4140 !qstate->env->cfg->val_log_squelch) { 4141 char* err_str = errinf_to_str_misc(qstate); 4142 if(err_str) { 4143 verbose(VERB_ALGO, "iterator EDE: %s", err_str); 4144 iq->response->rep->reason_bogus_str = err_str; 4145 } 4146 } 4147 4148 /* we have finished processing this query */ 4149 qstate->ext_state[id] = module_finished; 4150 4151 /* TODO: we are using a private TTL, trim the response. */ 4152 /* if (mPrivateTTL > 0){IterUtils.setPrivateTTL(resp, mPrivateTTL); } */ 4153 4154 /* prepend any items we have accumulated */ 4155 if(iq->an_prepend_list || iq->ns_prepend_list) { 4156 if(!iter_prepend(iq, iq->response, qstate->region)) { 4157 log_err("prepend rrsets: out of memory"); 4158 return error_response(qstate, id, LDNS_RCODE_SERVFAIL); 4159 } 4160 /* reset the query name back */ 4161 iq->response->qinfo = qstate->qinfo; 4162 /* the security state depends on the combination */ 4163 iq->response->rep->security = sec_status_unchecked; 4164 /* store message with the finished prepended items, 4165 * but only if we did recursion. The nonrecursion referral 4166 * from cache does not need to be stored in the msg cache. */ 4167 if(!qstate->no_cache_store && (qstate->query_flags&BIT_RD)) { 4168 iter_dns_store(qstate->env, &qstate->qinfo, 4169 iq->response->rep, 0, qstate->prefetch_leeway, 4170 iq->dp&&iq->dp->has_parent_side_NS, 4171 qstate->region, qstate->query_flags, 4172 qstate->qstarttime, qstate->is_valrec); 4173 } 4174 } 4175 qstate->return_rcode = LDNS_RCODE_NOERROR; 4176 qstate->return_msg = iq->response; 4177 return 0; 4178 } 4179 4180 /* 4181 * Return priming query results to interested super querystates. 4182 * 4183 * Sets the delegation point and delegation message (not nonRD queries). 4184 * This is a callback from walk_supers. 4185 * 4186 * @param qstate: query state that finished. 4187 * @param id: module id. 4188 * @param super: the qstate to inform. 4189 */ 4190 void 4191 iter_inform_super(struct module_qstate* qstate, int id, 4192 struct module_qstate* super) 4193 { 4194 if(!qstate->is_priming && super->qinfo.qclass == LDNS_RR_CLASS_ANY) 4195 processClassResponse(qstate, id, super); 4196 else if(super->qinfo.qtype == LDNS_RR_TYPE_DS && ((struct iter_qstate*) 4197 super->minfo[id])->state == DSNS_FIND_STATE) 4198 processDSNSResponse(qstate, id, super); 4199 else if(qstate->return_rcode != LDNS_RCODE_NOERROR) 4200 error_supers(qstate, id, super); 4201 else if(qstate->is_priming) 4202 prime_supers(qstate, id, super); 4203 else processTargetResponse(qstate, id, super); 4204 } 4205 4206 /** 4207 * Handle iterator state. 4208 * Handle events. This is the real processing loop for events, responsible 4209 * for moving events through the various states. If a processing method 4210 * returns true, then it will be advanced to the next state. If false, then 4211 * processing will stop. 4212 * 4213 * @param qstate: query state. 4214 * @param ie: iterator shared global environment. 4215 * @param iq: iterator query state. 4216 * @param id: module id. 4217 */ 4218 static void 4219 iter_handle(struct module_qstate* qstate, struct iter_qstate* iq, 4220 struct iter_env* ie, int id) 4221 { 4222 int cont = 1; 4223 while(cont) { 4224 verbose(VERB_ALGO, "iter_handle processing q with state %s", 4225 iter_state_to_string(iq->state)); 4226 switch(iq->state) { 4227 case INIT_REQUEST_STATE: 4228 cont = processInitRequest(qstate, iq, ie, id); 4229 break; 4230 case INIT_REQUEST_2_STATE: 4231 cont = processInitRequest2(qstate, iq, id); 4232 break; 4233 case INIT_REQUEST_3_STATE: 4234 cont = processInitRequest3(qstate, iq, id); 4235 break; 4236 case QUERYTARGETS_STATE: 4237 cont = processQueryTargets(qstate, iq, ie, id); 4238 break; 4239 case QUERY_RESP_STATE: 4240 cont = processQueryResponse(qstate, iq, ie, id); 4241 break; 4242 case PRIME_RESP_STATE: 4243 cont = processPrimeResponse(qstate, id); 4244 break; 4245 case COLLECT_CLASS_STATE: 4246 cont = processCollectClass(qstate, id); 4247 break; 4248 case DSNS_FIND_STATE: 4249 cont = processDSNSFind(qstate, iq, id); 4250 break; 4251 case FINISHED_STATE: 4252 cont = processFinished(qstate, iq, id); 4253 break; 4254 default: 4255 log_warn("iterator: invalid state: %d", 4256 iq->state); 4257 cont = 0; 4258 break; 4259 } 4260 } 4261 } 4262 4263 /** 4264 * This is the primary entry point for processing request events. Note that 4265 * this method should only be used by external modules. 4266 * @param qstate: query state. 4267 * @param ie: iterator shared global environment. 4268 * @param iq: iterator query state. 4269 * @param id: module id. 4270 */ 4271 static void 4272 process_request(struct module_qstate* qstate, struct iter_qstate* iq, 4273 struct iter_env* ie, int id) 4274 { 4275 /* external requests start in the INIT state, and finish using the 4276 * FINISHED state. */ 4277 iq->state = INIT_REQUEST_STATE; 4278 iq->final_state = FINISHED_STATE; 4279 verbose(VERB_ALGO, "process_request: new external request event"); 4280 iter_handle(qstate, iq, ie, id); 4281 } 4282 4283 /** process authoritative server reply */ 4284 static void 4285 process_response(struct module_qstate* qstate, struct iter_qstate* iq, 4286 struct iter_env* ie, int id, struct outbound_entry* outbound, 4287 enum module_ev event) 4288 { 4289 struct msg_parse* prs; 4290 struct edns_data edns; 4291 sldns_buffer* pkt; 4292 4293 verbose(VERB_ALGO, "process_response: new external response event"); 4294 iq->response = NULL; 4295 iq->state = QUERY_RESP_STATE; 4296 if(event == module_event_noreply || event == module_event_error) { 4297 if(event == module_event_noreply && iq->timeout_count >= 3 && 4298 qstate->env->cfg->use_caps_bits_for_id && 4299 !iq->caps_fallback && !is_caps_whitelisted(ie, iq)) { 4300 /* start fallback */ 4301 iq->caps_fallback = 1; 4302 iq->caps_server = 0; 4303 iq->caps_reply = NULL; 4304 iq->caps_response = NULL; 4305 iq->caps_minimisation_state = DONOT_MINIMISE_STATE; 4306 iq->state = QUERYTARGETS_STATE; 4307 iq->num_current_queries--; 4308 /* need fresh attempts for the 0x20 fallback, if 4309 * that was the cause for the failure */ 4310 iter_dec_attempts(iq->dp, 3, ie->outbound_msg_retry); 4311 verbose(VERB_DETAIL, "Capsforid: timeouts, starting fallback"); 4312 goto handle_it; 4313 } 4314 goto handle_it; 4315 } 4316 if( (event != module_event_reply && event != module_event_capsfail) 4317 || !qstate->reply) { 4318 log_err("Bad event combined with response"); 4319 outbound_list_remove(&iq->outlist, outbound); 4320 errinf(qstate, "module iterator received wrong internal event with a response message"); 4321 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 4322 return; 4323 } 4324 4325 /* parse message */ 4326 fill_fail_addr(iq, &qstate->reply->remote_addr, 4327 qstate->reply->remote_addrlen); 4328 prs = (struct msg_parse*)regional_alloc(qstate->env->scratch, 4329 sizeof(struct msg_parse)); 4330 if(!prs) { 4331 log_err("out of memory on incoming message"); 4332 /* like packet got dropped */ 4333 goto handle_it; 4334 } 4335 memset(prs, 0, sizeof(*prs)); 4336 memset(&edns, 0, sizeof(edns)); 4337 pkt = qstate->reply->c->buffer; 4338 sldns_buffer_set_position(pkt, 0); 4339 if(parse_packet(pkt, prs, qstate->env->scratch) != LDNS_RCODE_NOERROR) { 4340 verbose(VERB_ALGO, "parse error on reply packet"); 4341 iq->parse_failures++; 4342 goto handle_it; 4343 } 4344 /* edns is not examined, but removed from message to help cache */ 4345 if(parse_extract_edns_from_response_msg(prs, &edns, qstate->env->scratch) != 4346 LDNS_RCODE_NOERROR) { 4347 iq->parse_failures++; 4348 goto handle_it; 4349 } 4350 4351 /* Copy the edns options we may got from the back end */ 4352 qstate->edns_opts_back_in = NULL; 4353 if(edns.opt_list_in) { 4354 qstate->edns_opts_back_in = edns_opt_copy_region(edns.opt_list_in, 4355 qstate->region); 4356 if(!qstate->edns_opts_back_in) { 4357 log_err("out of memory on incoming message"); 4358 /* like packet got dropped */ 4359 goto handle_it; 4360 } 4361 } 4362 if(!inplace_cb_edns_back_parsed_call(qstate->env, qstate)) { 4363 log_err("unable to call edns_back_parsed callback"); 4364 goto handle_it; 4365 } 4366 4367 /* remove CD-bit, we asked for in case we handle validation ourself */ 4368 prs->flags &= ~BIT_CD; 4369 4370 /* normalize and sanitize: easy to delete items from linked lists */ 4371 if(!scrub_message(pkt, prs, &iq->qinfo_out, iq->dp->name, 4372 qstate->env->scratch, qstate->env, qstate, ie)) { 4373 /* if 0x20 enabled, start fallback, but we have no message */ 4374 if(event == module_event_capsfail && !iq->caps_fallback) { 4375 iq->caps_fallback = 1; 4376 iq->caps_server = 0; 4377 iq->caps_reply = NULL; 4378 iq->caps_response = NULL; 4379 iq->caps_minimisation_state = DONOT_MINIMISE_STATE; 4380 iq->state = QUERYTARGETS_STATE; 4381 iq->num_current_queries--; 4382 verbose(VERB_DETAIL, "Capsforid: scrub failed, starting fallback with no response"); 4383 } 4384 iq->scrub_failures++; 4385 goto handle_it; 4386 } 4387 4388 /* allocate response dns_msg in region */ 4389 iq->response = dns_alloc_msg(pkt, prs, qstate->region); 4390 if(!iq->response) 4391 goto handle_it; 4392 log_query_info(VERB_DETAIL, "response for", &qstate->qinfo); 4393 log_name_addr(VERB_DETAIL, "reply from", iq->dp->name, 4394 &qstate->reply->remote_addr, qstate->reply->remote_addrlen); 4395 if(verbosity >= VERB_ALGO) 4396 log_dns_msg("incoming scrubbed packet:", &iq->response->qinfo, 4397 iq->response->rep); 4398 4399 if(qstate->env->cfg->aggressive_nsec) { 4400 limit_nsec_ttl(iq->response); 4401 } 4402 if(event == module_event_capsfail || iq->caps_fallback) { 4403 if(qstate->env->cfg->qname_minimisation && 4404 iq->minimisation_state != DONOT_MINIMISE_STATE) { 4405 /* Skip QNAME minimisation for next query, since that 4406 * one has to match the current query. */ 4407 iq->minimisation_state = SKIP_MINIMISE_STATE; 4408 } 4409 /* for fallback we care about main answer, not additionals */ 4410 /* removing that makes comparison more likely to succeed */ 4411 caps_strip_reply(iq->response->rep); 4412 4413 if(iq->caps_fallback && 4414 iq->caps_minimisation_state != iq->minimisation_state) { 4415 /* QNAME minimisation state has changed, restart caps 4416 * fallback. */ 4417 iq->caps_fallback = 0; 4418 } 4419 4420 if(!iq->caps_fallback) { 4421 /* start fallback */ 4422 iq->caps_fallback = 1; 4423 iq->caps_server = 0; 4424 iq->caps_reply = iq->response->rep; 4425 iq->caps_response = iq->response; 4426 iq->caps_minimisation_state = iq->minimisation_state; 4427 iq->state = QUERYTARGETS_STATE; 4428 iq->num_current_queries--; 4429 verbose(VERB_DETAIL, "Capsforid: starting fallback"); 4430 goto handle_it; 4431 } else { 4432 /* check if reply is the same, otherwise, fail */ 4433 if(!iq->caps_reply) { 4434 iq->caps_reply = iq->response->rep; 4435 iq->caps_response = iq->response; 4436 iq->caps_server = -1; /*become zero at ++, 4437 so that we start the full set of trials */ 4438 } else if(caps_failed_rcode(iq->caps_reply) && 4439 !caps_failed_rcode(iq->response->rep)) { 4440 /* prefer to upgrade to non-SERVFAIL */ 4441 iq->caps_reply = iq->response->rep; 4442 iq->caps_response = iq->response; 4443 } else if(!caps_failed_rcode(iq->caps_reply) && 4444 caps_failed_rcode(iq->response->rep)) { 4445 /* if we have non-SERVFAIL as answer then 4446 * we can ignore SERVFAILs for the equality 4447 * comparison */ 4448 /* no instructions here, skip other else */ 4449 } else if(caps_failed_rcode(iq->caps_reply) && 4450 caps_failed_rcode(iq->response->rep)) { 4451 /* failure is same as other failure in fallbk*/ 4452 /* no instructions here, skip other else */ 4453 } else if(!reply_equal(iq->response->rep, iq->caps_reply, 4454 qstate->env->scratch)) { 4455 verbose(VERB_DETAIL, "Capsforid fallback: " 4456 "getting different replies, failed"); 4457 outbound_list_remove(&iq->outlist, outbound); 4458 errinf(qstate, "0x20 failed, then got different replies in fallback"); 4459 (void)error_response_cache(qstate, id, 4460 LDNS_RCODE_SERVFAIL); 4461 return; 4462 } 4463 /* continue the fallback procedure at next server */ 4464 iq->caps_server++; 4465 iq->state = QUERYTARGETS_STATE; 4466 iq->num_current_queries--; 4467 verbose(VERB_DETAIL, "Capsforid: reply is equal. " 4468 "go to next fallback"); 4469 goto handle_it; 4470 } 4471 } 4472 iq->caps_fallback = 0; /* if we were in fallback, 0x20 is OK now */ 4473 4474 handle_it: 4475 outbound_list_remove(&iq->outlist, outbound); 4476 iter_handle(qstate, iq, ie, id); 4477 } 4478 4479 void 4480 iter_operate(struct module_qstate* qstate, enum module_ev event, int id, 4481 struct outbound_entry* outbound) 4482 { 4483 struct iter_env* ie = (struct iter_env*)qstate->env->modinfo[id]; 4484 struct iter_qstate* iq = (struct iter_qstate*)qstate->minfo[id]; 4485 verbose(VERB_QUERY, "iterator[module %d] operate: extstate:%s event:%s", 4486 id, strextstate(qstate->ext_state[id]), strmodulevent(event)); 4487 if(iq) log_query_info(VERB_QUERY, "iterator operate: query", 4488 &qstate->qinfo); 4489 if(iq && qstate->qinfo.qname != iq->qchase.qname) 4490 log_query_info(VERB_QUERY, "iterator operate: chased to", 4491 &iq->qchase); 4492 4493 /* perform iterator state machine */ 4494 if((event == module_event_new || event == module_event_pass) && 4495 iq == NULL) { 4496 if(!iter_new(qstate, id)) { 4497 errinf(qstate, "malloc failure, new iterator module allocation"); 4498 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 4499 return; 4500 } 4501 iq = (struct iter_qstate*)qstate->minfo[id]; 4502 process_request(qstate, iq, ie, id); 4503 return; 4504 } 4505 if(iq && event == module_event_pass) { 4506 iter_handle(qstate, iq, ie, id); 4507 return; 4508 } 4509 if(iq && outbound) { 4510 process_response(qstate, iq, ie, id, outbound, event); 4511 return; 4512 } 4513 if(event == module_event_error) { 4514 verbose(VERB_ALGO, "got called with event error, giving up"); 4515 errinf(qstate, "iterator module got the error event"); 4516 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 4517 return; 4518 } 4519 4520 log_err("bad event for iterator"); 4521 errinf(qstate, "iterator module received wrong event"); 4522 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 4523 } 4524 4525 void 4526 iter_clear(struct module_qstate* qstate, int id) 4527 { 4528 struct iter_qstate* iq; 4529 if(!qstate) 4530 return; 4531 iq = (struct iter_qstate*)qstate->minfo[id]; 4532 if(iq) { 4533 outbound_list_clear(&iq->outlist); 4534 if(iq->target_count && --iq->target_count[TARGET_COUNT_REF] == 0) { 4535 free(iq->target_count); 4536 if(*iq->nxns_dp) free(*iq->nxns_dp); 4537 free(iq->nxns_dp); 4538 } 4539 iq->num_current_queries = 0; 4540 } 4541 qstate->minfo[id] = NULL; 4542 } 4543 4544 size_t 4545 iter_get_mem(struct module_env* env, int id) 4546 { 4547 struct iter_env* ie = (struct iter_env*)env->modinfo[id]; 4548 if(!ie) 4549 return 0; 4550 return sizeof(*ie) + sizeof(int)*((size_t)ie->max_dependency_depth+1) 4551 + donotq_get_mem(ie->donotq) + priv_get_mem(ie->priv); 4552 } 4553 4554 /** 4555 * The iterator function block 4556 */ 4557 static struct module_func_block iter_block = { 4558 "iterator", 4559 NULL, NULL, &iter_init, &iter_deinit, &iter_operate, 4560 &iter_inform_super, &iter_clear, &iter_get_mem 4561 }; 4562 4563 struct module_func_block* 4564 iter_get_funcblock(void) 4565 { 4566 return &iter_block; 4567 } 4568 4569 const char* 4570 iter_state_to_string(enum iter_state state) 4571 { 4572 switch (state) 4573 { 4574 case INIT_REQUEST_STATE : 4575 return "INIT REQUEST STATE"; 4576 case INIT_REQUEST_2_STATE : 4577 return "INIT REQUEST STATE (stage 2)"; 4578 case INIT_REQUEST_3_STATE: 4579 return "INIT REQUEST STATE (stage 3)"; 4580 case QUERYTARGETS_STATE : 4581 return "QUERY TARGETS STATE"; 4582 case PRIME_RESP_STATE : 4583 return "PRIME RESPONSE STATE"; 4584 case COLLECT_CLASS_STATE : 4585 return "COLLECT CLASS STATE"; 4586 case DSNS_FIND_STATE : 4587 return "DSNS FIND STATE"; 4588 case QUERY_RESP_STATE : 4589 return "QUERY RESPONSE STATE"; 4590 case FINISHED_STATE : 4591 return "FINISHED RESPONSE STATE"; 4592 default : 4593 return "UNKNOWN ITER STATE"; 4594 } 4595 } 4596 4597 int 4598 iter_state_is_responsestate(enum iter_state s) 4599 { 4600 switch(s) { 4601 case INIT_REQUEST_STATE : 4602 case INIT_REQUEST_2_STATE : 4603 case INIT_REQUEST_3_STATE : 4604 case QUERYTARGETS_STATE : 4605 case COLLECT_CLASS_STATE : 4606 return 0; 4607 default: 4608 break; 4609 } 4610 return 1; 4611 } 4612