1 /* 2 * cachedb/cachedb.c - cache from a database external to the program module 3 * 4 * Copyright (c) 2016, 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 uses an external database to cache 40 * dns responses. 41 */ 42 43 #include "config.h" 44 #ifdef USE_CACHEDB 45 #include "cachedb/cachedb.h" 46 #include "util/regional.h" 47 #include "util/net_help.h" 48 #include "util/config_file.h" 49 #include "util/data/msgreply.h" 50 #include "util/data/msgencode.h" 51 #include "services/cache/dns.h" 52 #include "validator/val_neg.h" 53 #include "validator/val_secalgo.h" 54 #include "iterator/iter_utils.h" 55 #include "sldns/parseutil.h" 56 #include "sldns/wire2str.h" 57 #include "sldns/sbuffer.h" 58 59 #define CACHEDB_HASHSIZE 256 /* bit hash */ 60 61 /** the unit test testframe for cachedb, its module state contains 62 * a cache for a couple queries (in memory). */ 63 struct testframe_moddata { 64 /** lock for mutex */ 65 lock_basic_type lock; 66 /** key for single stored data element, NULL if none */ 67 char* stored_key; 68 /** data for single stored data element, NULL if none */ 69 uint8_t* stored_data; 70 /** length of stored data */ 71 size_t stored_datalen; 72 }; 73 74 static int 75 testframe_init(struct module_env* env, struct cachedb_env* cachedb_env) 76 { 77 struct testframe_moddata* d; 78 (void)env; 79 verbose(VERB_ALGO, "testframe_init"); 80 d = (struct testframe_moddata*)calloc(1, 81 sizeof(struct testframe_moddata)); 82 cachedb_env->backend_data = (void*)d; 83 if(!cachedb_env->backend_data) { 84 log_err("out of memory"); 85 return 0; 86 } 87 lock_basic_init(&d->lock); 88 lock_protect(&d->lock, d, sizeof(*d)); 89 return 1; 90 } 91 92 static void 93 testframe_deinit(struct module_env* env, struct cachedb_env* cachedb_env) 94 { 95 struct testframe_moddata* d = (struct testframe_moddata*) 96 cachedb_env->backend_data; 97 (void)env; 98 verbose(VERB_ALGO, "testframe_deinit"); 99 if(!d) 100 return; 101 lock_basic_destroy(&d->lock); 102 free(d->stored_key); 103 free(d->stored_data); 104 free(d); 105 } 106 107 static int 108 testframe_lookup(struct module_env* env, struct cachedb_env* cachedb_env, 109 char* key, struct sldns_buffer* result_buffer) 110 { 111 struct testframe_moddata* d = (struct testframe_moddata*) 112 cachedb_env->backend_data; 113 (void)env; 114 verbose(VERB_ALGO, "testframe_lookup of %s", key); 115 lock_basic_lock(&d->lock); 116 if(d->stored_key && strcmp(d->stored_key, key) == 0) { 117 if(d->stored_datalen > sldns_buffer_capacity(result_buffer)) { 118 lock_basic_unlock(&d->lock); 119 return 0; /* too large */ 120 } 121 verbose(VERB_ALGO, "testframe_lookup found %d bytes", 122 (int)d->stored_datalen); 123 sldns_buffer_clear(result_buffer); 124 sldns_buffer_write(result_buffer, d->stored_data, 125 d->stored_datalen); 126 sldns_buffer_flip(result_buffer); 127 lock_basic_unlock(&d->lock); 128 return 1; 129 } 130 lock_basic_unlock(&d->lock); 131 return 0; 132 } 133 134 static void 135 testframe_store(struct module_env* env, struct cachedb_env* cachedb_env, 136 char* key, uint8_t* data, size_t data_len) 137 { 138 struct testframe_moddata* d = (struct testframe_moddata*) 139 cachedb_env->backend_data; 140 (void)env; 141 lock_basic_lock(&d->lock); 142 verbose(VERB_ALGO, "testframe_store %s (%d bytes)", key, (int)data_len); 143 144 /* free old data element (if any) */ 145 free(d->stored_key); 146 d->stored_key = NULL; 147 free(d->stored_data); 148 d->stored_data = NULL; 149 d->stored_datalen = 0; 150 151 d->stored_data = memdup(data, data_len); 152 if(!d->stored_data) { 153 lock_basic_unlock(&d->lock); 154 log_err("out of memory"); 155 return; 156 } 157 d->stored_datalen = data_len; 158 d->stored_key = strdup(key); 159 if(!d->stored_key) { 160 free(d->stored_data); 161 d->stored_data = NULL; 162 d->stored_datalen = 0; 163 lock_basic_unlock(&d->lock); 164 return; 165 } 166 lock_basic_unlock(&d->lock); 167 /* (key,data) successfully stored */ 168 } 169 170 /** The testframe backend is for unit tests */ 171 static struct cachedb_backend testframe_backend = { "testframe", 172 testframe_init, testframe_deinit, testframe_lookup, testframe_store 173 }; 174 175 /** find a particular backend from possible backends */ 176 static struct cachedb_backend* 177 cachedb_find_backend(const char* str) 178 { 179 if(strcmp(str, testframe_backend.name) == 0) 180 return &testframe_backend; 181 /* TODO add more backends here */ 182 return NULL; 183 } 184 185 /** apply configuration to cachedb module 'global' state */ 186 static int 187 cachedb_apply_cfg(struct cachedb_env* cachedb_env, struct config_file* cfg) 188 { 189 const char* backend_str = cfg->cachedb_backend; 190 191 /* If unspecified we use the in-memory test DB. */ 192 if(!backend_str) 193 backend_str = "testframe"; 194 cachedb_env->backend = cachedb_find_backend(backend_str); 195 if(!cachedb_env->backend) { 196 log_err("cachedb: cannot find backend name '%s'", backend_str); 197 return 0; 198 } 199 200 /* TODO see if more configuration needs to be applied or not */ 201 return 1; 202 } 203 204 int 205 cachedb_init(struct module_env* env, int id) 206 { 207 struct cachedb_env* cachedb_env = (struct cachedb_env*)calloc(1, 208 sizeof(struct cachedb_env)); 209 if(!cachedb_env) { 210 log_err("malloc failure"); 211 return 0; 212 } 213 env->modinfo[id] = (void*)cachedb_env; 214 if(!cachedb_apply_cfg(cachedb_env, env->cfg)) { 215 log_err("cachedb: could not apply configuration settings."); 216 return 0; 217 } 218 /* see if a backend is selected */ 219 if(!cachedb_env->backend || !cachedb_env->backend->name) 220 return 1; 221 if(!(*cachedb_env->backend->init)(env, cachedb_env)) { 222 log_err("cachedb: could not init %s backend", 223 cachedb_env->backend->name); 224 return 0; 225 } 226 cachedb_env->enabled = 1; 227 return 1; 228 } 229 230 void 231 cachedb_deinit(struct module_env* env, int id) 232 { 233 struct cachedb_env* cachedb_env; 234 if(!env || !env->modinfo[id]) 235 return; 236 cachedb_env = (struct cachedb_env*)env->modinfo[id]; 237 /* free contents */ 238 /* TODO */ 239 if(cachedb_env->enabled) { 240 (*cachedb_env->backend->deinit)(env, cachedb_env); 241 } 242 243 free(cachedb_env); 244 env->modinfo[id] = NULL; 245 } 246 247 /** new query for cachedb */ 248 static int 249 cachedb_new(struct module_qstate* qstate, int id) 250 { 251 struct cachedb_qstate* iq = (struct cachedb_qstate*)regional_alloc( 252 qstate->region, sizeof(struct cachedb_qstate)); 253 qstate->minfo[id] = iq; 254 if(!iq) 255 return 0; 256 memset(iq, 0, sizeof(*iq)); 257 /* initialise it */ 258 /* TODO */ 259 260 return 1; 261 } 262 263 /** 264 * Return an error 265 * @param qstate: our query state 266 * @param id: module id 267 * @param rcode: error code (DNS errcode). 268 * @return: 0 for use by caller, to make notation easy, like: 269 * return error_response(..). 270 */ 271 static int 272 error_response(struct module_qstate* qstate, int id, int rcode) 273 { 274 verbose(VERB_QUERY, "return error response %s", 275 sldns_lookup_by_id(sldns_rcodes, rcode)? 276 sldns_lookup_by_id(sldns_rcodes, rcode)->name:"??"); 277 qstate->return_rcode = rcode; 278 qstate->return_msg = NULL; 279 qstate->ext_state[id] = module_finished; 280 return 0; 281 } 282 283 /** 284 * Hash the query name, type, class and dbacess-secret into lookup buffer. 285 * @param qstate: query state with query info 286 * and env->cfg with secret. 287 * @param buf: returned buffer with hash to lookup 288 * @param len: length of the buffer. 289 */ 290 static void 291 calc_hash(struct module_qstate* qstate, char* buf, size_t len) 292 { 293 uint8_t clear[1024]; 294 size_t clen = 0; 295 uint8_t hash[CACHEDB_HASHSIZE/8]; 296 const char* hex = "0123456789ABCDEF"; 297 const char* secret = qstate->env->cfg->cachedb_secret ? 298 qstate->env->cfg->cachedb_secret : "default"; 299 size_t i; 300 301 /* copy the hash info into the clear buffer */ 302 if(clen + qstate->qinfo.qname_len < sizeof(clear)) { 303 memmove(clear+clen, qstate->qinfo.qname, 304 qstate->qinfo.qname_len); 305 clen += qstate->qinfo.qname_len; 306 } 307 if(clen + 4 < sizeof(clear)) { 308 uint16_t t = htons(qstate->qinfo.qtype); 309 uint16_t c = htons(qstate->qinfo.qclass); 310 memmove(clear+clen, &t, 2); 311 memmove(clear+clen+2, &c, 2); 312 clen += 4; 313 } 314 if(secret && secret[0] && clen + strlen(secret) < sizeof(clear)) { 315 memmove(clear+clen, secret, strlen(secret)); 316 clen += strlen(secret); 317 } 318 319 /* hash the buffer */ 320 secalgo_hash_sha256(clear, clen, hash); 321 memset(clear, 0, clen); 322 323 /* hex encode output for portability (some online dbs need 324 * no nulls, no control characters, and so on) */ 325 log_assert(len >= sizeof(hash)*2 + 1); 326 (void)len; 327 for(i=0; i<sizeof(hash); i++) { 328 buf[i*2] = hex[(hash[i]&0xf0)>>4]; 329 buf[i*2+1] = hex[hash[i]&0x0f]; 330 } 331 buf[sizeof(hash)*2] = 0; 332 } 333 334 /** convert data from return_msg into the data buffer */ 335 static int 336 prep_data(struct module_qstate* qstate, struct sldns_buffer* buf) 337 { 338 uint64_t timestamp, expiry; 339 size_t oldlim; 340 struct edns_data edns; 341 memset(&edns, 0, sizeof(edns)); 342 edns.edns_present = 1; 343 edns.bits = EDNS_DO; 344 edns.ext_rcode = 0; 345 edns.edns_version = EDNS_ADVERTISED_VERSION; 346 edns.udp_size = EDNS_ADVERTISED_SIZE; 347 348 if(!qstate->return_msg || !qstate->return_msg->rep) 349 return 0; 350 if(verbosity >= VERB_ALGO) 351 log_dns_msg("cachedb encoding", &qstate->return_msg->qinfo, 352 qstate->return_msg->rep); 353 if(!reply_info_answer_encode(&qstate->return_msg->qinfo, 354 qstate->return_msg->rep, 0, qstate->query_flags, 355 buf, 0, 1, qstate->env->scratch, 65535, &edns, 1, 0)) 356 return 0; 357 358 /* TTLs in the return_msg are relative to time(0) so we have to 359 * store that, we also store the smallest ttl in the packet+time(0) 360 * as the packet expiry time */ 361 /* qstate->return_msg->rep->ttl contains that relative shortest ttl */ 362 timestamp = (uint64_t)*qstate->env->now; 363 expiry = timestamp + (uint64_t)qstate->return_msg->rep->ttl; 364 timestamp = htobe64(timestamp); 365 expiry = htobe64(expiry); 366 oldlim = sldns_buffer_limit(buf); 367 if(oldlim + sizeof(timestamp)+sizeof(expiry) >= 368 sldns_buffer_capacity(buf)) 369 return 0; /* doesn't fit. */ 370 sldns_buffer_set_limit(buf, oldlim + sizeof(timestamp)+sizeof(expiry)); 371 sldns_buffer_write_at(buf, oldlim, ×tamp, sizeof(timestamp)); 372 sldns_buffer_write_at(buf, oldlim+sizeof(timestamp), &expiry, 373 sizeof(expiry)); 374 375 return 1; 376 } 377 378 /** check expiry, return true if matches OK */ 379 static int 380 good_expiry_and_qinfo(struct module_qstate* qstate, struct sldns_buffer* buf) 381 { 382 uint64_t expiry; 383 /* the expiry time is the last bytes of the buffer */ 384 if(sldns_buffer_limit(buf) < sizeof(expiry)) 385 return 0; 386 sldns_buffer_read_at(buf, sldns_buffer_limit(buf)-sizeof(expiry), 387 &expiry, sizeof(expiry)); 388 expiry = be64toh(expiry); 389 390 if((time_t)expiry < *qstate->env->now) 391 return 0; 392 393 return 1; 394 } 395 396 static void 397 packed_rrset_ttl_subtract(struct packed_rrset_data* data, time_t subtract) 398 { 399 size_t i; 400 size_t total = data->count + data->rrsig_count; 401 if(data->ttl > subtract) 402 data->ttl -= subtract; 403 else data->ttl = 0; 404 for(i=0; i<total; i++) { 405 if(data->rr_ttl[i] > subtract) 406 data->rr_ttl[i] -= subtract; 407 else data->rr_ttl[i] = 0; 408 } 409 } 410 411 static void 412 adjust_msg_ttl(struct dns_msg* msg, time_t adjust) 413 { 414 size_t i; 415 if(msg->rep->ttl > adjust) 416 msg->rep->ttl -= adjust; 417 else msg->rep->ttl = 0; 418 msg->rep->prefetch_ttl = PREFETCH_TTL_CALC(msg->rep->ttl); 419 420 for(i=0; i<msg->rep->rrset_count; i++) { 421 packed_rrset_ttl_subtract((struct packed_rrset_data*)msg-> 422 rep->rrsets[i]->entry.data, adjust); 423 } 424 } 425 426 /** convert dns message in buffer to return_msg */ 427 static int 428 parse_data(struct module_qstate* qstate, struct sldns_buffer* buf) 429 { 430 struct msg_parse* prs; 431 struct edns_data edns; 432 uint64_t timestamp, expiry; 433 time_t adjust; 434 size_t lim = sldns_buffer_limit(buf); 435 if(lim < LDNS_HEADER_SIZE+sizeof(timestamp)+sizeof(expiry)) 436 return 0; /* too short */ 437 438 /* remove timestamp and expiry from end */ 439 sldns_buffer_read_at(buf, lim-sizeof(expiry), &expiry, sizeof(expiry)); 440 sldns_buffer_read_at(buf, lim-sizeof(expiry)-sizeof(timestamp), 441 ×tamp, sizeof(timestamp)); 442 expiry = be64toh(expiry); 443 timestamp = be64toh(timestamp); 444 445 /* parse DNS packet */ 446 regional_free_all(qstate->env->scratch); 447 prs = (struct msg_parse*)regional_alloc(qstate->env->scratch, 448 sizeof(struct msg_parse)); 449 if(!prs) 450 return 0; /* out of memory */ 451 memset(prs, 0, sizeof(*prs)); 452 memset(&edns, 0, sizeof(edns)); 453 sldns_buffer_set_limit(buf, lim - sizeof(expiry)-sizeof(timestamp)); 454 if(parse_packet(buf, prs, qstate->env->scratch) != LDNS_RCODE_NOERROR) { 455 sldns_buffer_set_limit(buf, lim); 456 return 0; 457 } 458 if(parse_extract_edns(prs, &edns, qstate->env->scratch) != 459 LDNS_RCODE_NOERROR) { 460 sldns_buffer_set_limit(buf, lim); 461 return 0; 462 } 463 464 qstate->return_msg = dns_alloc_msg(buf, prs, qstate->region); 465 sldns_buffer_set_limit(buf, lim); 466 if(!qstate->return_msg) 467 return 0; 468 469 qstate->return_rcode = LDNS_RCODE_NOERROR; 470 471 /* see how much of the TTL expired, and remove it */ 472 if(*qstate->env->now <= (time_t)timestamp) { 473 verbose(VERB_ALGO, "cachedb msg adjust by zero"); 474 return 1; /* message from the future (clock skew?) */ 475 } 476 adjust = *qstate->env->now - (time_t)timestamp; 477 if(qstate->return_msg->rep->ttl < adjust) { 478 verbose(VERB_ALGO, "cachedb msg expired"); 479 return 0; /* message expired */ 480 } 481 verbose(VERB_ALGO, "cachedb msg adjusted down by %d", (int)adjust); 482 adjust_msg_ttl(qstate->return_msg, adjust); 483 return 1; 484 } 485 486 /** 487 * Lookup the qstate.qinfo in extcache, store in qstate.return_msg. 488 * return true if lookup was successful. 489 */ 490 static int 491 cachedb_extcache_lookup(struct module_qstate* qstate, struct cachedb_env* ie) 492 { 493 char key[(CACHEDB_HASHSIZE/8)*2+1]; 494 calc_hash(qstate, key, sizeof(key)); 495 496 /* call backend to fetch data for key into scratch buffer */ 497 if( !(*ie->backend->lookup)(qstate->env, ie, key, 498 qstate->env->scratch_buffer)) { 499 return 0; 500 } 501 502 /* check expiry date and check if query-data matches */ 503 if( !good_expiry_and_qinfo(qstate, qstate->env->scratch_buffer) ) { 504 return 0; 505 } 506 507 /* parse dns message into return_msg */ 508 if( !parse_data(qstate, qstate->env->scratch_buffer) ) { 509 return 0; 510 } 511 return 1; 512 } 513 514 /** 515 * Store the qstate.return_msg in extcache for key qstate.info 516 */ 517 static void 518 cachedb_extcache_store(struct module_qstate* qstate, struct cachedb_env* ie) 519 { 520 char key[(CACHEDB_HASHSIZE/8)*2+1]; 521 calc_hash(qstate, key, sizeof(key)); 522 523 /* prepare data in scratch buffer */ 524 if(!prep_data(qstate, qstate->env->scratch_buffer)) 525 return; 526 527 /* call backend */ 528 (*ie->backend->store)(qstate->env, ie, key, 529 sldns_buffer_begin(qstate->env->scratch_buffer), 530 sldns_buffer_limit(qstate->env->scratch_buffer)); 531 } 532 533 /** 534 * See if unbound's internal cache can answer the query 535 */ 536 static int 537 cachedb_intcache_lookup(struct module_qstate* qstate) 538 { 539 struct dns_msg* msg; 540 msg = dns_cache_lookup(qstate->env, qstate->qinfo.qname, 541 qstate->qinfo.qname_len, qstate->qinfo.qtype, 542 qstate->qinfo.qclass, qstate->query_flags, 543 qstate->region, qstate->env->scratch); 544 if(!msg && qstate->env->neg_cache) { 545 /* lookup in negative cache; may result in 546 * NOERROR/NODATA or NXDOMAIN answers that need validation */ 547 msg = val_neg_getmsg(qstate->env->neg_cache, &qstate->qinfo, 548 qstate->region, qstate->env->rrset_cache, 549 qstate->env->scratch_buffer, 550 *qstate->env->now, 1/*add SOA*/, NULL); 551 } 552 if(!msg) 553 return 0; 554 /* this is the returned msg */ 555 qstate->return_rcode = LDNS_RCODE_NOERROR; 556 qstate->return_msg = msg; 557 return 1; 558 } 559 560 /** 561 * Store query into the internal cache of unbound. 562 */ 563 static void 564 cachedb_intcache_store(struct module_qstate* qstate) 565 { 566 if(!qstate->return_msg) 567 return; 568 (void)dns_cache_store(qstate->env, &qstate->qinfo, 569 qstate->return_msg->rep, 0, qstate->prefetch_leeway, 0, 570 qstate->region, qstate->query_flags); 571 } 572 573 /** 574 * Handle a cachedb module event with a query 575 * @param qstate: query state (from the mesh), passed between modules. 576 * contains qstate->env module environment with global caches and so on. 577 * @param iq: query state specific for this module. per-query. 578 * @param ie: environment specific for this module. global. 579 * @param id: module id. 580 */ 581 static void 582 cachedb_handle_query(struct module_qstate* qstate, 583 struct cachedb_qstate* ATTR_UNUSED(iq), 584 struct cachedb_env* ie, int id) 585 { 586 /* check if we are enabled, and skip if so */ 587 if(!ie->enabled) { 588 /* pass request to next module */ 589 qstate->ext_state[id] = module_wait_module; 590 return; 591 } 592 593 if(qstate->blacklist || qstate->no_cache_lookup) { 594 /* cache is blacklisted or we are instructed from edns to not look */ 595 /* pass request to next module */ 596 qstate->ext_state[id] = module_wait_module; 597 return; 598 } 599 600 /* lookup inside unbound's internal cache */ 601 if(cachedb_intcache_lookup(qstate)) { 602 if(verbosity >= VERB_ALGO) { 603 if(qstate->return_msg->rep) 604 log_dns_msg("cachedb internal cache lookup", 605 &qstate->return_msg->qinfo, 606 qstate->return_msg->rep); 607 else log_info("cachedb internal cache lookup: rcode %s", 608 sldns_lookup_by_id(sldns_rcodes, qstate->return_rcode)? 609 sldns_lookup_by_id(sldns_rcodes, qstate->return_rcode)->name:"??"); 610 } 611 /* we are done with the query */ 612 qstate->ext_state[id] = module_finished; 613 return; 614 } 615 616 /* ask backend cache to see if we have data */ 617 if(cachedb_extcache_lookup(qstate, ie)) { 618 if(verbosity >= VERB_ALGO) 619 log_dns_msg(ie->backend->name, 620 &qstate->return_msg->qinfo, 621 qstate->return_msg->rep); 622 /* store this result in internal cache */ 623 cachedb_intcache_store(qstate); 624 /* we are done with the query */ 625 qstate->ext_state[id] = module_finished; 626 return; 627 } 628 629 /* no cache fetches */ 630 /* pass request to next module */ 631 qstate->ext_state[id] = module_wait_module; 632 } 633 634 /** 635 * Handle a cachedb module event with a response from the iterator. 636 * @param qstate: query state (from the mesh), passed between modules. 637 * contains qstate->env module environment with global caches and so on. 638 * @param iq: query state specific for this module. per-query. 639 * @param ie: environment specific for this module. global. 640 * @param id: module id. 641 */ 642 static void 643 cachedb_handle_response(struct module_qstate* qstate, 644 struct cachedb_qstate* ATTR_UNUSED(iq), struct cachedb_env* ie, int id) 645 { 646 /* check if we are not enabled or instructed to not cache, and skip */ 647 if(!ie->enabled || qstate->no_cache_store) { 648 /* we are done with the query */ 649 qstate->ext_state[id] = module_finished; 650 return; 651 } 652 653 /* store the item into the backend cache */ 654 cachedb_extcache_store(qstate, ie); 655 656 /* we are done with the query */ 657 qstate->ext_state[id] = module_finished; 658 } 659 660 void 661 cachedb_operate(struct module_qstate* qstate, enum module_ev event, int id, 662 struct outbound_entry* outbound) 663 { 664 struct cachedb_env* ie = (struct cachedb_env*)qstate->env->modinfo[id]; 665 struct cachedb_qstate* iq = (struct cachedb_qstate*)qstate->minfo[id]; 666 verbose(VERB_QUERY, "cachedb[module %d] operate: extstate:%s event:%s", 667 id, strextstate(qstate->ext_state[id]), strmodulevent(event)); 668 if(iq) log_query_info(VERB_QUERY, "cachedb operate: query", 669 &qstate->qinfo); 670 671 /* perform cachedb state machine */ 672 if((event == module_event_new || event == module_event_pass) && 673 iq == NULL) { 674 if(!cachedb_new(qstate, id)) { 675 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 676 return; 677 } 678 iq = (struct cachedb_qstate*)qstate->minfo[id]; 679 } 680 if(iq && (event == module_event_pass || event == module_event_new)) { 681 cachedb_handle_query(qstate, iq, ie, id); 682 return; 683 } 684 if(iq && (event == module_event_moddone)) { 685 cachedb_handle_response(qstate, iq, ie, id); 686 return; 687 } 688 if(iq && outbound) { 689 /* cachedb does not need to process responses at this time 690 * ignore it. 691 cachedb_process_response(qstate, iq, ie, id, outbound, event); 692 */ 693 return; 694 } 695 if(event == module_event_error) { 696 verbose(VERB_ALGO, "got called with event error, giving up"); 697 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 698 return; 699 } 700 if(!iq && (event == module_event_moddone)) { 701 /* during priming, module done but we never started */ 702 qstate->ext_state[id] = module_finished; 703 return; 704 } 705 706 log_err("bad event for cachedb"); 707 (void)error_response(qstate, id, LDNS_RCODE_SERVFAIL); 708 } 709 710 void 711 cachedb_inform_super(struct module_qstate* ATTR_UNUSED(qstate), 712 int ATTR_UNUSED(id), struct module_qstate* ATTR_UNUSED(super)) 713 { 714 /* cachedb does not use subordinate requests at this time */ 715 verbose(VERB_ALGO, "cachedb inform_super was called"); 716 } 717 718 void 719 cachedb_clear(struct module_qstate* qstate, int id) 720 { 721 struct cachedb_qstate* iq; 722 if(!qstate) 723 return; 724 iq = (struct cachedb_qstate*)qstate->minfo[id]; 725 if(iq) { 726 /* free contents of iq */ 727 /* TODO */ 728 } 729 qstate->minfo[id] = NULL; 730 } 731 732 size_t 733 cachedb_get_mem(struct module_env* env, int id) 734 { 735 struct cachedb_env* ie = (struct cachedb_env*)env->modinfo[id]; 736 if(!ie) 737 return 0; 738 return sizeof(*ie); /* TODO - more mem */ 739 } 740 741 /** 742 * The cachedb function block 743 */ 744 static struct module_func_block cachedb_block = { 745 "cachedb", 746 &cachedb_init, &cachedb_deinit, &cachedb_operate, 747 &cachedb_inform_super, &cachedb_clear, &cachedb_get_mem 748 }; 749 750 struct module_func_block* 751 cachedb_get_funcblock(void) 752 { 753 return &cachedb_block; 754 } 755 #endif /* USE_CACHEDB */ 756