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libworker.c revision 1.1.1.8
      1 /*
      2  * libunbound/worker.c - worker thread or process that resolves
      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 the worker process or thread that performs
     40  * the DNS resolving and validation. The worker is called by a procedure
     41  * and if in the background continues until exit, if in the foreground
     42  * returns from the procedure when done.
     43  */
     44 #include "config.h"
     45 #ifdef HAVE_SSL
     46 #include <openssl/ssl.h>
     47 #endif
     48 #include "libunbound/libworker.h"
     49 #include "libunbound/context.h"
     50 #include "libunbound/unbound.h"
     51 #include "libunbound/worker.h"
     52 #include "libunbound/unbound-event.h"
     53 #include "services/outside_network.h"
     54 #include "services/mesh.h"
     55 #include "services/localzone.h"
     56 #include "services/cache/rrset.h"
     57 #include "services/outbound_list.h"
     58 #include "services/authzone.h"
     59 #include "util/fptr_wlist.h"
     60 #include "util/module.h"
     61 #include "util/regional.h"
     62 #include "util/random.h"
     63 #include "util/config_file.h"
     64 #include "util/netevent.h"
     65 #include "util/proxy_protocol.h"
     66 #include "util/storage/lookup3.h"
     67 #include "util/storage/slabhash.h"
     68 #include "util/net_help.h"
     69 #include "util/data/dname.h"
     70 #include "util/data/msgreply.h"
     71 #include "util/data/msgencode.h"
     72 #include "util/tube.h"
     73 #include "iterator/iter_fwd.h"
     74 #include "iterator/iter_hints.h"
     75 #include "sldns/sbuffer.h"
     76 #include "sldns/str2wire.h"
     77 #ifdef USE_DNSTAP
     78 #include "dnstap/dtstream.h"
     79 #endif
     80 
     81 #ifdef HAVE_TARGETCONDITIONALS_H
     82 #include <TargetConditionals.h>
     83 #endif
     84 
     85 #if (defined(TARGET_OS_TV) && TARGET_OS_TV) || (defined(TARGET_OS_WATCH) && TARGET_OS_WATCH)
     86 #undef HAVE_FORK
     87 #endif
     88 
     89 /** handle new query command for bg worker */
     90 static void handle_newq(struct libworker* w, uint8_t* buf, uint32_t len);
     91 
     92 /** delete libworker env */
     93 static void
     94 libworker_delete_env(struct libworker* w)
     95 {
     96 	if(w->env) {
     97 		outside_network_quit_prepare(w->back);
     98 		mesh_delete(w->env->mesh);
     99 		context_release_alloc(w->ctx, w->env->alloc,
    100 			!w->is_bg || w->is_bg_thread);
    101 		sldns_buffer_free(w->env->scratch_buffer);
    102 		regional_destroy(w->env->scratch);
    103 		forwards_delete(w->env->fwds);
    104 		hints_delete(w->env->hints);
    105 		ub_randfree(w->env->rnd);
    106 		free(w->env);
    107 	}
    108 #ifdef HAVE_SSL
    109 	SSL_CTX_free(w->sslctx);
    110 #endif
    111 	outside_network_delete(w->back);
    112 }
    113 
    114 /** delete libworker struct */
    115 static void
    116 libworker_delete(struct libworker* w)
    117 {
    118 	if(!w) return;
    119 	libworker_delete_env(w);
    120 	comm_base_delete(w->base);
    121 	free(w);
    122 }
    123 
    124 void
    125 libworker_delete_event(struct libworker* w)
    126 {
    127 	if(!w) return;
    128 	libworker_delete_env(w);
    129 	comm_base_delete_no_base(w->base);
    130 	free(w);
    131 }
    132 
    133 /** setup fresh libworker struct */
    134 static struct libworker*
    135 libworker_setup(struct ub_ctx* ctx, int is_bg, struct ub_event_base* eb)
    136 {
    137 	struct libworker* w = (struct libworker*)calloc(1, sizeof(*w));
    138 	struct config_file* cfg = ctx->env->cfg;
    139 	int* ports;
    140 	int numports;
    141 	if(!w) return NULL;
    142 	w->is_bg = is_bg;
    143 	w->ctx = ctx;
    144 	w->env = (struct module_env*)malloc(sizeof(*w->env));
    145 	if(!w->env) {
    146 		free(w);
    147 		return NULL;
    148 	}
    149 	*w->env = *ctx->env;
    150 	w->env->alloc = context_obtain_alloc(ctx, !w->is_bg || w->is_bg_thread);
    151 	if(!w->env->alloc) {
    152 		libworker_delete(w);
    153 		return NULL;
    154 	}
    155 	w->thread_num = w->env->alloc->thread_num;
    156 	alloc_set_id_cleanup(w->env->alloc, &libworker_alloc_cleanup, w);
    157 	if(!w->is_bg || w->is_bg_thread) {
    158 		lock_basic_lock(&ctx->cfglock);
    159 	}
    160 	w->env->scratch = regional_create_custom(cfg->msg_buffer_size);
    161 	w->env->scratch_buffer = sldns_buffer_new(cfg->msg_buffer_size);
    162 	w->env->fwds = forwards_create();
    163 	if(w->env->fwds && !forwards_apply_cfg(w->env->fwds, cfg)) {
    164 		forwards_delete(w->env->fwds);
    165 		w->env->fwds = NULL;
    166 	}
    167 	w->env->hints = hints_create();
    168 	if(w->env->hints && !hints_apply_cfg(w->env->hints, cfg)) {
    169 		hints_delete(w->env->hints);
    170 		w->env->hints = NULL;
    171 	}
    172 #ifdef HAVE_SSL
    173 	w->sslctx = connect_sslctx_create(NULL, NULL,
    174 		cfg->tls_cert_bundle, cfg->tls_win_cert);
    175 	if(!w->sslctx) {
    176 		/* to make the setup fail after unlock */
    177 		hints_delete(w->env->hints);
    178 		w->env->hints = NULL;
    179 	}
    180 #endif
    181 	if(!w->is_bg || w->is_bg_thread) {
    182 		lock_basic_unlock(&ctx->cfglock);
    183 	}
    184 	if(!w->env->scratch || !w->env->scratch_buffer || !w->env->fwds ||
    185 		!w->env->hints) {
    186 		libworker_delete(w);
    187 		return NULL;
    188 	}
    189 	w->env->worker = (struct worker*)w;
    190 	w->env->probe_timer = NULL;
    191 	if(!w->is_bg || w->is_bg_thread) {
    192 		lock_basic_lock(&ctx->cfglock);
    193 	}
    194 	if(!(w->env->rnd = ub_initstate(ctx->seed_rnd))) {
    195 		if(!w->is_bg || w->is_bg_thread) {
    196 			lock_basic_unlock(&ctx->cfglock);
    197 		}
    198 		libworker_delete(w);
    199 		return NULL;
    200 	}
    201 	if(!w->is_bg || w->is_bg_thread) {
    202 		lock_basic_unlock(&ctx->cfglock);
    203 	}
    204 	if(1) {
    205 		/* primitive lockout for threading: if it overwrites another
    206 		 * thread it is like wiping the cache (which is likely empty
    207 		 * at the start) */
    208 		/* note we are holding the ctx lock in normal threaded
    209 		 * cases so that is solved properly, it is only for many ctx
    210 		 * in different threads that this may clash */
    211 		static int done_raninit = 0;
    212 		if(!done_raninit) {
    213 			done_raninit = 1;
    214 			hash_set_raninit((uint32_t)ub_random(w->env->rnd));
    215 		}
    216 	}
    217 
    218 	if(eb)
    219 		w->base = comm_base_create_event(eb);
    220 	else	w->base = comm_base_create(0);
    221 	if(!w->base) {
    222 		libworker_delete(w);
    223 		return NULL;
    224 	}
    225 	w->env->worker_base = w->base;
    226 	if(!w->is_bg || w->is_bg_thread) {
    227 		lock_basic_lock(&ctx->cfglock);
    228 	}
    229 	numports = cfg_condense_ports(cfg, &ports);
    230 	if(numports == 0) {
    231 		if(!w->is_bg || w->is_bg_thread) {
    232 			lock_basic_unlock(&ctx->cfglock);
    233 		}
    234 		libworker_delete(w);
    235 		return NULL;
    236 	}
    237 	w->back = outside_network_create(w->base, cfg->msg_buffer_size,
    238 		(size_t)cfg->outgoing_num_ports, cfg->out_ifs,
    239 		cfg->num_out_ifs, cfg->do_ip4, cfg->do_ip6,
    240 		cfg->do_tcp?cfg->outgoing_num_tcp:0, cfg->ip_dscp,
    241 		w->env->infra_cache, w->env->rnd, cfg->use_caps_bits_for_id,
    242 		ports, numports, cfg->unwanted_threshold,
    243 		cfg->outgoing_tcp_mss, &libworker_alloc_cleanup, w,
    244 		cfg->do_udp || cfg->udp_upstream_without_downstream, w->sslctx,
    245 		cfg->delay_close, cfg->tls_use_sni, NULL, cfg->udp_connect,
    246 		cfg->max_reuse_tcp_queries, cfg->tcp_reuse_timeout,
    247 		cfg->tcp_auth_query_timeout);
    248 	w->env->outnet = w->back;
    249 	if(!w->is_bg || w->is_bg_thread) {
    250 		lock_basic_unlock(&ctx->cfglock);
    251 	}
    252 	free(ports);
    253 	if(!w->back) {
    254 		libworker_delete(w);
    255 		return NULL;
    256 	}
    257 	w->env->mesh = mesh_create(&ctx->mods, w->env);
    258 	if(!w->env->mesh) {
    259 		libworker_delete(w);
    260 		return NULL;
    261 	}
    262 	w->env->send_query = &libworker_send_query;
    263 	w->env->detach_subs = &mesh_detach_subs;
    264 	w->env->attach_sub = &mesh_attach_sub;
    265 	w->env->add_sub = &mesh_add_sub;
    266 	w->env->kill_sub = &mesh_state_delete;
    267 	w->env->detect_cycle = &mesh_detect_cycle;
    268 	comm_base_timept(w->base, &w->env->now, &w->env->now_tv);
    269 	pp_init(&sldns_write_uint16, &sldns_write_uint32);
    270 	return w;
    271 }
    272 
    273 struct libworker* libworker_create_event(struct ub_ctx* ctx,
    274 	struct ub_event_base* eb)
    275 {
    276 	return libworker_setup(ctx, 0, eb);
    277 }
    278 
    279 /** handle cancel command for bg worker */
    280 static void
    281 handle_cancel(struct libworker* w, uint8_t* buf, uint32_t len)
    282 {
    283 	struct ctx_query* q;
    284 	if(w->is_bg_thread) {
    285 		lock_basic_lock(&w->ctx->cfglock);
    286 		q = context_deserialize_cancel(w->ctx, buf, len);
    287 		lock_basic_unlock(&w->ctx->cfglock);
    288 	} else {
    289 		q = context_deserialize_cancel(w->ctx, buf, len);
    290 	}
    291 	if(!q) {
    292 		/* probably simply lookup failed, i.e. the message had been
    293 		 * processed and answered before the cancel arrived */
    294 		return;
    295 	}
    296 	q->cancelled = 1;
    297 	free(buf);
    298 }
    299 
    300 /** do control command coming into bg server */
    301 static void
    302 libworker_do_cmd(struct libworker* w, uint8_t* msg, uint32_t len)
    303 {
    304 	switch(context_serial_getcmd(msg, len)) {
    305 		default:
    306 		case UB_LIBCMD_ANSWER:
    307 			log_err("unknown command for bg worker %d",
    308 				(int)context_serial_getcmd(msg, len));
    309 			/* and fall through to quit */
    310 			/* fallthrough */
    311 		case UB_LIBCMD_QUIT:
    312 			free(msg);
    313 			comm_base_exit(w->base);
    314 			break;
    315 		case UB_LIBCMD_NEWQUERY:
    316 			handle_newq(w, msg, len);
    317 			break;
    318 		case UB_LIBCMD_CANCEL:
    319 			handle_cancel(w, msg, len);
    320 			break;
    321 	}
    322 }
    323 
    324 /** handle control command coming into server */
    325 void
    326 libworker_handle_control_cmd(struct tube* ATTR_UNUSED(tube),
    327 	uint8_t* msg, size_t len, int err, void* arg)
    328 {
    329 	struct libworker* w = (struct libworker*)arg;
    330 
    331 	if(err != 0) {
    332 		free(msg);
    333 		/* it is of no use to go on, exit */
    334 		comm_base_exit(w->base);
    335 		return;
    336 	}
    337 	libworker_do_cmd(w, msg, len); /* also frees the buf */
    338 }
    339 
    340 /** the background thread func */
    341 static void*
    342 libworker_dobg(void* arg)
    343 {
    344 	/* setup */
    345 	uint32_t m;
    346 	struct libworker* w = (struct libworker*)arg;
    347 	struct ub_ctx* ctx;
    348 	if(!w) {
    349 		log_err("libunbound bg worker init failed, nomem");
    350 		return NULL;
    351 	}
    352 	ctx = w->ctx;
    353 	log_thread_set(&w->thread_num);
    354 #ifdef THREADS_DISABLED
    355 	/* we are forked */
    356 	w->is_bg_thread = 0;
    357 	/* close non-used parts of the pipes */
    358 	tube_close_write(ctx->qq_pipe);
    359 	tube_close_read(ctx->rr_pipe);
    360 #endif
    361 	if(!tube_setup_bg_listen(ctx->qq_pipe, w->base,
    362 		libworker_handle_control_cmd, w)) {
    363 		log_err("libunbound bg worker init failed, no bglisten");
    364 		return NULL;
    365 	}
    366 	if(!tube_setup_bg_write(ctx->rr_pipe, w->base)) {
    367 		log_err("libunbound bg worker init failed, no bgwrite");
    368 		return NULL;
    369 	}
    370 
    371 	/* do the work */
    372 	comm_base_dispatch(w->base);
    373 
    374 	/* cleanup */
    375 	m = UB_LIBCMD_QUIT;
    376 	w->want_quit = 1;
    377 	tube_remove_bg_listen(w->ctx->qq_pipe);
    378 	tube_remove_bg_write(w->ctx->rr_pipe);
    379 	libworker_delete(w);
    380 	(void)tube_write_msg(ctx->rr_pipe, (uint8_t*)&m,
    381 		(uint32_t)sizeof(m), 0);
    382 #ifdef THREADS_DISABLED
    383 	/* close pipes from forked process before exit */
    384 	tube_close_read(ctx->qq_pipe);
    385 	tube_close_write(ctx->rr_pipe);
    386 #endif
    387 	return NULL;
    388 }
    389 
    390 int libworker_bg(struct ub_ctx* ctx)
    391 {
    392 	struct libworker* w;
    393 	/* fork or threadcreate */
    394 	lock_basic_lock(&ctx->cfglock);
    395 	if(ctx->dothread) {
    396 		lock_basic_unlock(&ctx->cfglock);
    397 		w = libworker_setup(ctx, 1, NULL);
    398 		if(!w) return UB_NOMEM;
    399 		w->is_bg_thread = 1;
    400 		ctx->thread_worker = w;
    401 #ifdef ENABLE_LOCK_CHECKS
    402 		w->thread_num = 1; /* for nicer DEBUG checklocks */
    403 #endif
    404 		ub_thread_create(&ctx->bg_tid, libworker_dobg, w);
    405 	} else {
    406 		lock_basic_unlock(&ctx->cfglock);
    407 #ifndef HAVE_FORK
    408 		/* no fork on windows */
    409 		return UB_FORKFAIL;
    410 #else /* HAVE_FORK */
    411 		switch((ctx->bg_pid=fork())) {
    412 			case 0:
    413 				w = libworker_setup(ctx, 1, NULL);
    414 				if(!w) fatal_exit("out of memory");
    415 				/* close non-used parts of the pipes */
    416 				tube_close_write(ctx->qq_pipe);
    417 				tube_close_read(ctx->rr_pipe);
    418 				(void)libworker_dobg(w);
    419 				exit(0);
    420 				break;
    421 			case -1:
    422 				return UB_FORKFAIL;
    423 			default:
    424 				/* close non-used parts, so that the worker
    425 				 * bgprocess gets 'pipe closed' when the
    426 				 * main process exits */
    427 				tube_close_read(ctx->qq_pipe);
    428 				tube_close_write(ctx->rr_pipe);
    429 				break;
    430 		}
    431 #endif /* HAVE_FORK */
    432 	}
    433 	return UB_NOERROR;
    434 }
    435 
    436 /** insert canonname */
    437 static int
    438 fill_canon(struct ub_result* res, uint8_t* s)
    439 {
    440 	char buf[255+2];
    441 	dname_str(s, buf);
    442 	res->canonname = strdup(buf);
    443 	return res->canonname != 0;
    444 }
    445 
    446 /** fill data into result */
    447 static int
    448 fill_res(struct ub_result* res, struct ub_packed_rrset_key* answer,
    449 	uint8_t* finalcname, struct query_info* rq, struct reply_info* rep)
    450 {
    451 	size_t i;
    452 	struct packed_rrset_data* data;
    453 	res->ttl = 0;
    454 	if(!answer) {
    455 		if(finalcname) {
    456 			if(!fill_canon(res, finalcname))
    457 				return 0; /* out of memory */
    458 		}
    459 		if(rep->rrset_count != 0)
    460 			res->ttl = (int)rep->ttl;
    461 		res->data = (char**)calloc(1, sizeof(char*));
    462 		if(!res->data)
    463 			return 0; /* out of memory */
    464 		res->len = (int*)calloc(1, sizeof(int));
    465 		if(!res->len) {
    466 			free(res->data);
    467 			res->data = NULL;
    468 			return 0; /* out of memory */
    469 		}
    470 		return 1;
    471 	}
    472 	data = (struct packed_rrset_data*)answer->entry.data;
    473 	if(query_dname_compare(rq->qname, answer->rk.dname) != 0) {
    474 		if(!fill_canon(res, answer->rk.dname))
    475 			return 0; /* out of memory */
    476 	} else	res->canonname = NULL;
    477 	res->data = (char**)calloc(data->count+1, sizeof(char*));
    478 	if(!res->data)
    479 		return 0; /* out of memory */
    480 	res->len = (int*)calloc(data->count+1, sizeof(int));
    481 	if(!res->len) {
    482 		free(res->data);
    483 		res->data = NULL;
    484 		return 0; /* out of memory */
    485 	}
    486 	for(i=0; i<data->count; i++) {
    487 		/* remove rdlength from rdata */
    488 		res->len[i] = (int)(data->rr_len[i] - 2);
    489 		res->data[i] = memdup(data->rr_data[i]+2, (size_t)res->len[i]);
    490 		if(!res->data[i]) {
    491 			size_t j;
    492 			for(j=0; j<i; j++) {
    493 				free(res->data[j]);
    494 				res->data[j] = NULL;
    495 			}
    496 			free(res->data);
    497 			res->data = NULL;
    498 			free(res->len);
    499 			res->len = NULL;
    500 			return 0; /* out of memory */
    501 		}
    502 	}
    503 	/* ttl for positive answers, from CNAME and answer RRs */
    504 	if(data->count != 0) {
    505 		size_t j;
    506 		res->ttl = (int)data->ttl;
    507 		for(j=0; j<rep->an_numrrsets; j++) {
    508 			struct packed_rrset_data* d =
    509 				(struct packed_rrset_data*)rep->rrsets[j]->
    510 				entry.data;
    511 			if((int)d->ttl < res->ttl)
    512 				res->ttl = (int)d->ttl;
    513 		}
    514 	}
    515 	/* ttl for negative answers */
    516 	if(data->count == 0 && rep->rrset_count != 0)
    517 		res->ttl = (int)rep->ttl;
    518 	res->data[data->count] = NULL;
    519 	res->len[data->count] = 0;
    520 	return 1;
    521 }
    522 
    523 /** fill result from parsed message, on error fills servfail */
    524 void
    525 libworker_enter_result(struct ub_result* res, sldns_buffer* buf,
    526 	struct regional* temp, enum sec_status msg_security)
    527 {
    528 	struct query_info rq;
    529 	struct reply_info* rep;
    530 	res->rcode = LDNS_RCODE_SERVFAIL;
    531 	rep = parse_reply_in_temp_region(buf, temp, &rq);
    532 	if(!rep) {
    533 		log_err("cannot parse buf");
    534 		return; /* error parsing buf, or out of memory */
    535 	}
    536 	if(!fill_res(res, reply_find_answer_rrset(&rq, rep),
    537 		reply_find_final_cname_target(&rq, rep), &rq, rep))
    538 		return; /* out of memory */
    539 	/* rcode, havedata, nxdomain, secure, bogus */
    540 	res->rcode = (int)FLAGS_GET_RCODE(rep->flags);
    541 	if(res->data && res->data[0])
    542 		res->havedata = 1;
    543 	if(res->rcode == LDNS_RCODE_NXDOMAIN)
    544 		res->nxdomain = 1;
    545 	if(msg_security == sec_status_secure)
    546 		res->secure = 1;
    547 	if(msg_security == sec_status_bogus ||
    548 		msg_security == sec_status_secure_sentinel_fail)
    549 		res->bogus = 1;
    550 }
    551 
    552 /** fillup fg results */
    553 static void
    554 libworker_fillup_fg(struct ctx_query* q, int rcode, sldns_buffer* buf,
    555 	enum sec_status s, char* why_bogus, int was_ratelimited)
    556 {
    557 	q->res->was_ratelimited = was_ratelimited;
    558 	if(why_bogus)
    559 		q->res->why_bogus = strdup(why_bogus);
    560 	if(rcode != 0) {
    561 		q->res->rcode = rcode;
    562 		q->msg_security = s;
    563 		return;
    564 	}
    565 
    566 	q->res->rcode = LDNS_RCODE_SERVFAIL;
    567 	q->msg_security = sec_status_unchecked;
    568 	q->msg = memdup(sldns_buffer_begin(buf), sldns_buffer_limit(buf));
    569 	q->msg_len = sldns_buffer_limit(buf);
    570 	if(!q->msg) {
    571 		return; /* the error is in the rcode */
    572 	}
    573 
    574 	/* canonname and results */
    575 	q->msg_security = s;
    576 	libworker_enter_result(q->res, buf, q->w->env->scratch, s);
    577 }
    578 
    579 void
    580 libworker_fg_done_cb(void* arg, int rcode, sldns_buffer* buf, enum sec_status s,
    581 	char* why_bogus, int was_ratelimited)
    582 {
    583 	struct ctx_query* q = (struct ctx_query*)arg;
    584 	/* fg query is done; exit comm base */
    585 	comm_base_exit(q->w->base);
    586 
    587 	libworker_fillup_fg(q, rcode, buf, s, why_bogus, was_ratelimited);
    588 }
    589 
    590 /** setup qinfo and edns */
    591 static int
    592 setup_qinfo_edns(struct libworker* w, struct ctx_query* q,
    593 	struct query_info* qinfo, struct edns_data* edns)
    594 {
    595 	qinfo->qtype = (uint16_t)q->res->qtype;
    596 	qinfo->qclass = (uint16_t)q->res->qclass;
    597 	qinfo->local_alias = NULL;
    598 	qinfo->qname = sldns_str2wire_dname(q->res->qname, &qinfo->qname_len);
    599 	if(!qinfo->qname) {
    600 		return 0;
    601 	}
    602 	edns->edns_present = 1;
    603 	edns->ext_rcode = 0;
    604 	edns->edns_version = 0;
    605 	edns->bits = EDNS_DO;
    606 	edns->opt_list_in = NULL;
    607 	edns->opt_list_out = NULL;
    608 	edns->opt_list_inplace_cb_out = NULL;
    609 	edns->padding_block_size = 0;
    610 	edns->cookie_present = 0;
    611 	edns->cookie_valid = 0;
    612 	if(sldns_buffer_capacity(w->back->udp_buff) < 65535)
    613 		edns->udp_size = (uint16_t)sldns_buffer_capacity(
    614 			w->back->udp_buff);
    615 	else	edns->udp_size = 65535;
    616 	return 1;
    617 }
    618 
    619 int libworker_fg(struct ub_ctx* ctx, struct ctx_query* q)
    620 {
    621 	struct libworker* w = libworker_setup(ctx, 0, NULL);
    622 	uint16_t qflags, qid;
    623 	struct query_info qinfo;
    624 	struct edns_data edns;
    625 	if(!w)
    626 		return UB_INITFAIL;
    627 	if(!setup_qinfo_edns(w, q, &qinfo, &edns)) {
    628 		libworker_delete(w);
    629 		return UB_SYNTAX;
    630 	}
    631 	qid = 0;
    632 	qflags = BIT_RD;
    633 	q->w = w;
    634 	/* see if there is a fixed answer */
    635 	sldns_buffer_write_u16_at(w->back->udp_buff, 0, qid);
    636 	sldns_buffer_write_u16_at(w->back->udp_buff, 2, qflags);
    637 	if(local_zones_answer(ctx->local_zones, w->env, &qinfo, &edns,
    638 		w->back->udp_buff, w->env->scratch, NULL, NULL, 0, NULL, 0,
    639 		NULL, 0, NULL, 0, NULL)) {
    640 		regional_free_all(w->env->scratch);
    641 		libworker_fillup_fg(q, LDNS_RCODE_NOERROR,
    642 			w->back->udp_buff, sec_status_insecure, NULL, 0);
    643 		libworker_delete(w);
    644 		free(qinfo.qname);
    645 		return UB_NOERROR;
    646 	}
    647 	if(ctx->env->auth_zones && auth_zones_answer(ctx->env->auth_zones,
    648 		w->env, &qinfo, &edns, NULL, w->back->udp_buff, w->env->scratch)) {
    649 		regional_free_all(w->env->scratch);
    650 		libworker_fillup_fg(q, LDNS_RCODE_NOERROR,
    651 			w->back->udp_buff, sec_status_insecure, NULL, 0);
    652 		libworker_delete(w);
    653 		free(qinfo.qname);
    654 		return UB_NOERROR;
    655 	}
    656 	/* process new query */
    657 	if(!mesh_new_callback(w->env->mesh, &qinfo, qflags, &edns,
    658 		w->back->udp_buff, qid, libworker_fg_done_cb, q, 0)) {
    659 		free(qinfo.qname);
    660 		return UB_NOMEM;
    661 	}
    662 	free(qinfo.qname);
    663 
    664 	/* wait for reply */
    665 	comm_base_dispatch(w->base);
    666 
    667 	libworker_delete(w);
    668 	return UB_NOERROR;
    669 }
    670 
    671 void
    672 libworker_event_done_cb(void* arg, int rcode, sldns_buffer* buf,
    673 	enum sec_status s, char* why_bogus, int was_ratelimited)
    674 {
    675 	struct ctx_query* q = (struct ctx_query*)arg;
    676 	ub_event_callback_type cb = q->cb_event;
    677 	void* cb_arg = q->cb_arg;
    678 	int cancelled = q->cancelled;
    679 
    680 	/* delete it now */
    681 	struct ub_ctx* ctx = q->w->ctx;
    682 	lock_basic_lock(&ctx->cfglock);
    683 	(void)rbtree_delete(&ctx->queries, q->node.key);
    684 	ctx->num_async--;
    685 	context_query_delete(q);
    686 	lock_basic_unlock(&ctx->cfglock);
    687 
    688 	if(!cancelled) {
    689 		/* call callback */
    690 		int sec = 0;
    691 		if(s == sec_status_bogus)
    692 			sec = 1;
    693 		else if(s == sec_status_secure)
    694 			sec = 2;
    695 		(*cb)(cb_arg, rcode, (buf?(void*)sldns_buffer_begin(buf):NULL),
    696 			(buf?(int)sldns_buffer_limit(buf):0), sec, why_bogus, was_ratelimited);
    697 	}
    698 }
    699 
    700 int libworker_attach_mesh(struct ub_ctx* ctx, struct ctx_query* q,
    701 	int* async_id)
    702 {
    703 	struct libworker* w = ctx->event_worker;
    704 	uint16_t qflags, qid;
    705 	struct query_info qinfo;
    706 	struct edns_data edns;
    707 	if(!w)
    708 		return UB_INITFAIL;
    709 	if(!setup_qinfo_edns(w, q, &qinfo, &edns))
    710 		return UB_SYNTAX;
    711 	qid = 0;
    712 	qflags = BIT_RD;
    713 	q->w = w;
    714 	/* see if there is a fixed answer */
    715 	sldns_buffer_write_u16_at(w->back->udp_buff, 0, qid);
    716 	sldns_buffer_write_u16_at(w->back->udp_buff, 2, qflags);
    717 	if(local_zones_answer(ctx->local_zones, w->env, &qinfo, &edns,
    718 		w->back->udp_buff, w->env->scratch, NULL, NULL, 0, NULL, 0,
    719 		NULL, 0, NULL, 0, NULL)) {
    720 		regional_free_all(w->env->scratch);
    721 		free(qinfo.qname);
    722 		libworker_event_done_cb(q, LDNS_RCODE_NOERROR,
    723 			w->back->udp_buff, sec_status_insecure, NULL, 0);
    724 		return UB_NOERROR;
    725 	}
    726 	if(ctx->env->auth_zones && auth_zones_answer(ctx->env->auth_zones,
    727 		w->env, &qinfo, &edns, NULL, w->back->udp_buff, w->env->scratch)) {
    728 		regional_free_all(w->env->scratch);
    729 		free(qinfo.qname);
    730 		libworker_event_done_cb(q, LDNS_RCODE_NOERROR,
    731 			w->back->udp_buff, sec_status_insecure, NULL, 0);
    732 		return UB_NOERROR;
    733 	}
    734 	/* process new query */
    735 	if(async_id)
    736 		*async_id = q->querynum;
    737 	if(!mesh_new_callback(w->env->mesh, &qinfo, qflags, &edns,
    738 		w->back->udp_buff, qid, libworker_event_done_cb, q, 0)) {
    739 		free(qinfo.qname);
    740 		return UB_NOMEM;
    741 	}
    742 	free(qinfo.qname);
    743 	return UB_NOERROR;
    744 }
    745 
    746 /** add result to the bg worker result queue */
    747 static void
    748 add_bg_result(struct libworker* w, struct ctx_query* q, sldns_buffer* pkt,
    749 	int err, char* reason, int was_ratelimited)
    750 {
    751 	uint8_t* msg = NULL;
    752 	uint32_t len = 0;
    753 
    754 	if(w->want_quit) {
    755 		context_query_delete(q);
    756 		return;
    757 	}
    758 	/* serialize and delete unneeded q */
    759 	if(w->is_bg_thread) {
    760 		lock_basic_lock(&w->ctx->cfglock);
    761 		if(reason)
    762 			q->res->why_bogus = strdup(reason);
    763 		q->res->was_ratelimited = was_ratelimited;
    764 		if(pkt) {
    765 			q->msg_len = sldns_buffer_remaining(pkt);
    766 			q->msg = memdup(sldns_buffer_begin(pkt), q->msg_len);
    767 			if(!q->msg) {
    768 				msg = context_serialize_answer(q, UB_NOMEM, NULL, &len);
    769 			} else {
    770 				msg = context_serialize_answer(q, err, NULL, &len);
    771 			}
    772 		} else {
    773 			msg = context_serialize_answer(q, err, NULL, &len);
    774 		}
    775 		lock_basic_unlock(&w->ctx->cfglock);
    776 	} else {
    777 		if(reason)
    778 			q->res->why_bogus = strdup(reason);
    779 		q->res->was_ratelimited = was_ratelimited;
    780 		msg = context_serialize_answer(q, err, pkt, &len);
    781 		(void)rbtree_delete(&w->ctx->queries, q->node.key);
    782 		w->ctx->num_async--;
    783 		context_query_delete(q);
    784 	}
    785 
    786 	if(!msg) {
    787 		log_err("out of memory for async answer");
    788 		return;
    789 	}
    790 	if(!tube_queue_item(w->ctx->rr_pipe, msg, len)) {
    791 		log_err("out of memory for async answer");
    792 		return;
    793 	}
    794 }
    795 
    796 void
    797 libworker_bg_done_cb(void* arg, int rcode, sldns_buffer* buf, enum sec_status s,
    798 	char* why_bogus, int was_ratelimited)
    799 {
    800 	struct ctx_query* q = (struct ctx_query*)arg;
    801 
    802 	if(q->cancelled || q->w->back->want_to_quit) {
    803 		if(q->w->is_bg_thread) {
    804 			/* delete it now */
    805 			struct ub_ctx* ctx = q->w->ctx;
    806 			lock_basic_lock(&ctx->cfglock);
    807 			(void)rbtree_delete(&ctx->queries, q->node.key);
    808 			ctx->num_async--;
    809 			context_query_delete(q);
    810 			lock_basic_unlock(&ctx->cfglock);
    811 		}
    812 		/* cancelled, do not give answer */
    813 		return;
    814 	}
    815 	q->msg_security = s;
    816 	if(!buf) {
    817 		buf = q->w->env->scratch_buffer;
    818 	}
    819 	if(rcode != 0) {
    820 		error_encode(buf, rcode, NULL, 0, BIT_RD, NULL);
    821 	}
    822 	add_bg_result(q->w, q, buf, UB_NOERROR, why_bogus, was_ratelimited);
    823 }
    824 
    825 
    826 /** handle new query command for bg worker */
    827 static void
    828 handle_newq(struct libworker* w, uint8_t* buf, uint32_t len)
    829 {
    830 	uint16_t qflags, qid;
    831 	struct query_info qinfo;
    832 	struct edns_data edns;
    833 	struct ctx_query* q;
    834 	if(w->is_bg_thread) {
    835 		lock_basic_lock(&w->ctx->cfglock);
    836 		q = context_lookup_new_query(w->ctx, buf, len);
    837 		lock_basic_unlock(&w->ctx->cfglock);
    838 	} else {
    839 		q = context_deserialize_new_query(w->ctx, buf, len);
    840 	}
    841 	free(buf);
    842 	if(!q) {
    843 		log_err("failed to deserialize newq");
    844 		return;
    845 	}
    846 	if(!setup_qinfo_edns(w, q, &qinfo, &edns)) {
    847 		add_bg_result(w, q, NULL, UB_SYNTAX, NULL, 0);
    848 		return;
    849 	}
    850 	qid = 0;
    851 	qflags = BIT_RD;
    852 	/* see if there is a fixed answer */
    853 	sldns_buffer_write_u16_at(w->back->udp_buff, 0, qid);
    854 	sldns_buffer_write_u16_at(w->back->udp_buff, 2, qflags);
    855 	if(local_zones_answer(w->ctx->local_zones, w->env, &qinfo, &edns,
    856 		w->back->udp_buff, w->env->scratch, NULL, NULL, 0, NULL, 0,
    857 		NULL, 0, NULL, 0, NULL)) {
    858 		regional_free_all(w->env->scratch);
    859 		q->msg_security = sec_status_insecure;
    860 		add_bg_result(w, q, w->back->udp_buff, UB_NOERROR, NULL, 0);
    861 		free(qinfo.qname);
    862 		return;
    863 	}
    864 	if(w->ctx->env->auth_zones && auth_zones_answer(w->ctx->env->auth_zones,
    865 		w->env, &qinfo, &edns, NULL, w->back->udp_buff, w->env->scratch)) {
    866 		regional_free_all(w->env->scratch);
    867 		q->msg_security = sec_status_insecure;
    868 		add_bg_result(w, q, w->back->udp_buff, UB_NOERROR, NULL, 0);
    869 		free(qinfo.qname);
    870 		return;
    871 	}
    872 	q->w = w;
    873 	/* process new query */
    874 	if(!mesh_new_callback(w->env->mesh, &qinfo, qflags, &edns,
    875 		w->back->udp_buff, qid, libworker_bg_done_cb, q, 0)) {
    876 		add_bg_result(w, q, NULL, UB_NOMEM, NULL, 0);
    877 	}
    878 	free(qinfo.qname);
    879 }
    880 
    881 void libworker_alloc_cleanup(void* arg)
    882 {
    883 	struct libworker* w = (struct libworker*)arg;
    884 	slabhash_clear(&w->env->rrset_cache->table);
    885         slabhash_clear(w->env->msg_cache);
    886 }
    887 
    888 struct outbound_entry* libworker_send_query(struct query_info* qinfo,
    889 	uint16_t flags, int dnssec, int want_dnssec, int nocaps,
    890 	int check_ratelimit,
    891 	struct sockaddr_storage* addr, socklen_t addrlen, uint8_t* zone,
    892 	size_t zonelen, int tcp_upstream, int ssl_upstream, char* tls_auth_name,
    893 	struct module_qstate* q, int* was_ratelimited)
    894 {
    895 	struct libworker* w = (struct libworker*)q->env->worker;
    896 	struct outbound_entry* e = (struct outbound_entry*)regional_alloc(
    897 		q->region, sizeof(*e));
    898 	if(!e)
    899 		return NULL;
    900 	e->qstate = q;
    901 	e->qsent = outnet_serviced_query(w->back, qinfo, flags, dnssec,
    902 		want_dnssec, nocaps, check_ratelimit, tcp_upstream, ssl_upstream,
    903 		tls_auth_name, addr, addrlen, zone, zonelen, q,
    904 		libworker_handle_service_reply, e, w->back->udp_buff, q->env,
    905 		was_ratelimited);
    906 	if(!e->qsent) {
    907 		return NULL;
    908 	}
    909 	return e;
    910 }
    911 
    912 int
    913 libworker_handle_service_reply(struct comm_point* c, void* arg, int error,
    914         struct comm_reply* reply_info)
    915 {
    916 	struct outbound_entry* e = (struct outbound_entry*)arg;
    917 	struct libworker* lw = (struct libworker*)e->qstate->env->worker;
    918 
    919 	if(error != 0) {
    920 		mesh_report_reply(lw->env->mesh, e, reply_info, error);
    921 		return 0;
    922 	}
    923 	/* sanity check. */
    924 	if(!LDNS_QR_WIRE(sldns_buffer_begin(c->buffer))
    925 		|| LDNS_OPCODE_WIRE(sldns_buffer_begin(c->buffer)) !=
    926 			LDNS_PACKET_QUERY
    927 		|| LDNS_QDCOUNT(sldns_buffer_begin(c->buffer)) > 1) {
    928 		/* error becomes timeout for the module as if this reply
    929 		 * never arrived. */
    930 		mesh_report_reply(lw->env->mesh, e, reply_info,
    931 			NETEVENT_TIMEOUT);
    932 		return 0;
    933 	}
    934 	mesh_report_reply(lw->env->mesh,  e, reply_info, NETEVENT_NOERROR);
    935 	return 0;
    936 }
    937 
    938 /* --- fake callbacks for fptr_wlist to work --- */
    939 void worker_handle_control_cmd(struct tube* ATTR_UNUSED(tube),
    940 	uint8_t* ATTR_UNUSED(buffer), size_t ATTR_UNUSED(len),
    941 	int ATTR_UNUSED(error), void* ATTR_UNUSED(arg))
    942 {
    943 	log_assert(0);
    944 }
    945 
    946 int worker_handle_request(struct comm_point* ATTR_UNUSED(c),
    947 	void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
    948         struct comm_reply* ATTR_UNUSED(repinfo))
    949 {
    950 	log_assert(0);
    951 	return 0;
    952 }
    953 
    954 int worker_handle_service_reply(struct comm_point* ATTR_UNUSED(c),
    955 	void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
    956         struct comm_reply* ATTR_UNUSED(reply_info))
    957 {
    958 	log_assert(0);
    959 	return 0;
    960 }
    961 
    962 int remote_accept_callback(struct comm_point* ATTR_UNUSED(c),
    963 	void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
    964         struct comm_reply* ATTR_UNUSED(repinfo))
    965 {
    966 	log_assert(0);
    967 	return 0;
    968 }
    969 
    970 int remote_control_callback(struct comm_point* ATTR_UNUSED(c),
    971 	void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
    972         struct comm_reply* ATTR_UNUSED(repinfo))
    973 {
    974 	log_assert(0);
    975 	return 0;
    976 }
    977 
    978 void worker_sighandler(int ATTR_UNUSED(sig), void* ATTR_UNUSED(arg))
    979 {
    980 	log_assert(0);
    981 }
    982 
    983 struct outbound_entry* worker_send_query(struct query_info* ATTR_UNUSED(qinfo),
    984 	uint16_t ATTR_UNUSED(flags), int ATTR_UNUSED(dnssec),
    985 	int ATTR_UNUSED(want_dnssec), int ATTR_UNUSED(nocaps),
    986 	int ATTR_UNUSED(check_ratelimit),
    987 	struct sockaddr_storage* ATTR_UNUSED(addr), socklen_t ATTR_UNUSED(addrlen),
    988 	uint8_t* ATTR_UNUSED(zone), size_t ATTR_UNUSED(zonelen), int ATTR_UNUSED(tcp_upstream),
    989 	int ATTR_UNUSED(ssl_upstream), char* ATTR_UNUSED(tls_auth_name),
    990 	struct module_qstate* ATTR_UNUSED(q), int* ATTR_UNUSED(was_ratelimited))
    991 {
    992 	log_assert(0);
    993 	return 0;
    994 }
    995 
    996 void
    997 worker_alloc_cleanup(void* ATTR_UNUSED(arg))
    998 {
    999 	log_assert(0);
   1000 }
   1001 
   1002 void worker_stat_timer_cb(void* ATTR_UNUSED(arg))
   1003 {
   1004 	log_assert(0);
   1005 }
   1006 
   1007 void worker_probe_timer_cb(void* ATTR_UNUSED(arg))
   1008 {
   1009 	log_assert(0);
   1010 }
   1011 
   1012 void worker_start_accept(void* ATTR_UNUSED(arg))
   1013 {
   1014 	log_assert(0);
   1015 }
   1016 
   1017 void worker_stop_accept(void* ATTR_UNUSED(arg))
   1018 {
   1019 	log_assert(0);
   1020 }
   1021 
   1022 int order_lock_cmp(const void* ATTR_UNUSED(e1), const void* ATTR_UNUSED(e2))
   1023 {
   1024 	log_assert(0);
   1025 	return 0;
   1026 }
   1027 
   1028 int
   1029 codeline_cmp(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
   1030 {
   1031 	log_assert(0);
   1032 	return 0;
   1033 }
   1034 
   1035 int replay_var_compare(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
   1036 {
   1037         log_assert(0);
   1038         return 0;
   1039 }
   1040 
   1041 void remote_get_opt_ssl(char* ATTR_UNUSED(str), void* ATTR_UNUSED(arg))
   1042 {
   1043         log_assert(0);
   1044 }
   1045 
   1046 #ifdef UB_ON_WINDOWS
   1047 void
   1048 worker_win_stop_cb(int ATTR_UNUSED(fd), short ATTR_UNUSED(ev), void*
   1049         ATTR_UNUSED(arg)) {
   1050         log_assert(0);
   1051 }
   1052 
   1053 void
   1054 wsvc_cron_cb(void* ATTR_UNUSED(arg))
   1055 {
   1056         log_assert(0);
   1057 }
   1058 #endif /* UB_ON_WINDOWS */
   1059 
   1060 #ifdef USE_DNSTAP
   1061 void dtio_tap_callback(int ATTR_UNUSED(fd), short ATTR_UNUSED(ev),
   1062 	void* ATTR_UNUSED(arg))
   1063 {
   1064 	log_assert(0);
   1065 }
   1066 #endif
   1067 
   1068 #ifdef USE_DNSTAP
   1069 void dtio_mainfdcallback(int ATTR_UNUSED(fd), short ATTR_UNUSED(ev),
   1070 	void* ATTR_UNUSED(arg))
   1071 {
   1072 	log_assert(0);
   1073 }
   1074 #endif
   1075