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unbound-control.c revision 1.1.1.10
      1 /*
      2  * smallapp/unbound-control.c - remote control utility for unbound.
      3  *
      4  * Copyright (c) 2008, 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  * The remote control utility contacts the unbound server over ssl and
     40  * sends the command, receives the answer, and displays the result
     41  * from the commandline.
     42  */
     43 
     44 #include "config.h"
     45 #ifdef HAVE_GETOPT_H
     46 #include <getopt.h>
     47 #endif
     48 #ifdef HAVE_OPENSSL_SSL_H
     49 #include <openssl/ssl.h>
     50 #endif
     51 #ifdef HAVE_OPENSSL_ERR_H
     52 #include <openssl/err.h>
     53 #endif
     54 #ifdef HAVE_OPENSSL_RAND_H
     55 #include <openssl/rand.h>
     56 #endif
     57 #include "util/log.h"
     58 #include "util/config_file.h"
     59 #include "util/locks.h"
     60 #include "util/net_help.h"
     61 #include "util/shm_side/shm_main.h"
     62 #include "util/timeval_func.h"
     63 #include "daemon/stats.h"
     64 #include "sldns/wire2str.h"
     65 #include "sldns/pkthdr.h"
     66 #include "services/rpz.h"
     67 #include "services/listen_dnsport.h"
     68 
     69 #ifdef HAVE_SYS_IPC_H
     70 #include "sys/ipc.h"
     71 #endif
     72 #ifdef HAVE_SYS_SHM_H
     73 #include "sys/shm.h"
     74 #endif
     75 #ifdef HAVE_SYS_UN_H
     76 #include <sys/un.h>
     77 #endif
     78 
     79 #ifdef HAVE_TARGETCONDITIONALS_H
     80 #include <TargetConditionals.h>
     81 #endif
     82 
     83 static void usage(void) ATTR_NORETURN;
     84 static void ssl_err(const char* s) ATTR_NORETURN;
     85 static void ssl_path_err(const char* s, const char *path) ATTR_NORETURN;
     86 
     87 /** timeout to wait for connection over stream, in msec */
     88 #define UNBOUND_CONTROL_CONNECT_TIMEOUT 5000
     89 
     90 /** Give unbound-control usage, and exit (1). */
     91 static void
     92 usage(void)
     93 {
     94 	printf("Usage:	unbound-control [options] command\n");
     95 	printf("	Remote control utility for unbound server.\n");
     96 	printf("Options:\n");
     97 	printf("  -c file	config file, default is %s\n", CONFIGFILE);
     98 	printf("  -s ip[@port]	server address, if omitted config is used.\n");
     99 	printf("  -q		quiet (don't print anything if it works ok).\n");
    100 	printf("  -h		show this usage help.\n");
    101 	printf("Commands:\n");
    102 	printf("  start				start server; runs unbound(8)\n");
    103 	printf("  stop				stops the server\n");
    104 	printf("  reload			reloads the server\n");
    105 	printf("  				(this flushes data, stats, requestlist)\n");
    106 	printf("  reload_keep_cache		reloads the server but tries to\n");
    107 	printf("  				keep the RRset and message cache\n");
    108 	printf("  				if (re)configuration allows for it.\n");
    109 	printf("  				That means the caches sizes and\n");
    110 	printf("  				the number of threads must not\n");
    111 	printf("  				change between reloads.\n");
    112 	printf("  fast_reload [+dpv]		reloads the server but only briefly stops\n");
    113 	printf("  				server processing, keeps cache, and changes\n");
    114 	printf("  				most options; check unbound-control(8).\n");
    115 	printf("  		+d		drops running queries to keep consistency\n");
    116 	printf("  				on changed options while reloading.\n");
    117 	printf("  		+p		does not pause threads for even faster\n");
    118 	printf("  				reload but less options are supported\n");
    119 	printf("  				; check unbound-control(8).\n");
    120 	printf("  		+v		verbose output, it will include duration needed.\n");
    121 	printf("  		+vv		more verbose output, it will include memory needed.\n");
    122 	printf("  stats				print statistics\n");
    123 	printf("  stats_noreset			peek at statistics\n");
    124 #ifdef HAVE_SHMGET
    125 	printf("  stats_shm			print statistics using shm\n");
    126 #endif
    127 	printf("  status			display status of server\n");
    128 	printf("  verbosity <number>		change logging detail\n");
    129 	printf("  log_reopen			close and open the logfile\n");
    130 	printf("  local_zone <name> <type>	add new local zone\n");
    131 	printf("  local_zone_remove <name>	remove local zone and its contents\n");
    132 	printf("  local_data <RR data...>	add local data, for example\n");
    133 	printf("				local_data www.example.com A 192.0.2.1\n");
    134 	printf("  local_data_remove <name>	remove local RR data from name\n");
    135 	printf("  local_zones,\n");
    136 	printf("  local_zones_remove,\n");
    137 	printf("  local_datas,\n");
    138 	printf("  local_datas_remove		same, but read list from stdin\n");
    139 	printf("  				(one entry per line).\n");
    140 	printf("  dump_cache			print cache to stdout\n");
    141 	printf("				(not supported in remote unbounds in\n");
    142 	printf("				multi-process operation)\n");
    143 	printf("  load_cache			load cache from stdin\n");
    144 	printf("				(not supported in remote unbounds in\n");
    145 	printf("				multi-process operation)\n");
    146 	printf("  cache_lookup [+t] <names>	print rrsets and msgs at or under the names\n");
    147 	printf("		+t		allow tld and root names.\n");
    148 	printf("  lookup <name>			print nameservers for name\n");
    149 	printf("  flush [+c] <name>			flushes common types for name from cache\n");
    150 	printf("  				types:  A, AAAA, MX, PTR, NS,\n");
    151 	printf("					SOA, CNAME, DNAME, SRV, NAPTR\n");
    152 	printf("  flush_type [+c] <name> <type>	flush name, type from cache\n");
    153 	printf("		+c		remove from cachedb too\n");
    154 	printf("  flush_zone [+c] <name>	flush everything at or under name\n");
    155 	printf("  				from rr and dnssec caches\n");
    156 	printf("  flush_bogus [+c]		flush all bogus data\n");
    157 	printf("  flush_negative [+c]		flush all negative data\n");
    158 	printf("  flush_stats 			flush statistics, make zero\n");
    159 	printf("  flush_requestlist 		drop queries that are worked on\n");
    160 	printf("  dump_requestlist		show what is worked on by first thread\n");
    161 	printf("  flush_infra [all | ip] 	remove ping, edns for one IP or all\n");
    162 	printf("  dump_infra			show ping and edns entries\n");
    163 	printf("  set_option opt: val		set option to value, no reload\n");
    164 	printf("  get_option opt		get option value\n");
    165 	printf("  list_stubs			list stub-zones and root hints in use\n");
    166 	printf("  list_forwards			list forward-zones in use\n");
    167 	printf("  list_insecure			list domain-insecure zones\n");
    168 	printf("  list_local_zones		list local-zones in use\n");
    169 	printf("  list_local_data		list local-data RRs in use\n");
    170 	printf("  insecure_add zone 		add domain-insecure zone\n");
    171 	printf("  insecure_remove zone		remove domain-insecure zone\n");
    172 	printf("  forward_add [+it] zone addr..	add forward-zone with servers\n");
    173 	printf("  forward_remove [+i] zone	remove forward zone\n");
    174 	printf("  stub_add [+ipt] zone addr..	add stub-zone with servers\n");
    175 	printf("  stub_remove [+i] zone		remove stub zone\n");
    176 	printf("		+i		also do dnssec insecure point\n");
    177 	printf("		+p		set stub to use priming\n");
    178 	printf("		+t		set to use tls upstream\n");
    179 	printf("  forward [off | addr ...]	without arg show forward setup\n");
    180 	printf("				or off to turn off root forwarding\n");
    181 	printf("				or give list of ip addresses\n");
    182 	printf("  ratelimit_list [+a]		list ratelimited domains\n");
    183 	printf("  ip_ratelimit_list [+a]	list ratelimited ip addresses\n");
    184 	printf("		+a		list all, also not ratelimited\n");
    185 	printf("  list_auth_zones		list auth zones (includes RPZ zones)\n");
    186 	printf("  auth_zone_reload zone		reload auth zone (or RPZ zone) from zonefile\n");
    187 	printf("  auth_zone_transfer zone	transfer auth zone (or RPZ zone) from master\n");
    188 	printf("  view_list_local_zones	view	list local-zones in view\n");
    189 	printf("  view_list_local_data	view	list local-data RRs in view\n");
    190 	printf("  view_local_zone view name type  	add local-zone in view\n");
    191 	printf("  view_local_zone_remove view name  	remove local-zone in view\n");
    192 	printf("  view_local_data view RR...		add local-data in view\n");
    193 	printf("  view_local_datas view 		add list of local-data to view\n");
    194 	printf("  					one entry per line read from stdin\n");
    195 	printf("  view_local_data_remove view name  	remove local-data in view\n");
    196 	printf("  view_local_datas_remove view 		remove list of local-data from view\n");
    197 	printf("  					one entry per line read from stdin\n");
    198 	printf("  rpz_enable zone		Enable the RPZ zone if it had previously\n");
    199 	printf("  				been disabled\n");
    200 	printf("  rpz_disable zone		Disable the RPZ zone\n");
    201 	printf("  add_cookie_secret <secret>	add (or replace) a new cookie secret <secret>\n");
    202 	printf("  drop_cookie_secret		drop a staging cookie secret\n");
    203 	printf("  activate_cookie_secret	make a staging cookie secret active\n");
    204 	printf("  print_cookie_secrets		show all cookie secrets with their status\n");
    205 	printf("Version %s\n", PACKAGE_VERSION);
    206 	printf("BSD licensed, see LICENSE in source package for details.\n");
    207 	printf("Report bugs to %s\n", PACKAGE_BUGREPORT);
    208 	exit(1);
    209 }
    210 
    211 #ifdef HAVE_SHMGET
    212 /** what to put on statistics lines between var and value, ": " or "=" */
    213 #define SQ "="
    214 /** print unsigned long stats value */
    215 #define PR_UL_NM(str, var) printf("%s."str SQ"%lu\n", nm, (unsigned long)(var));
    216 #define PR_UL(str, var) printf(str SQ"%lu\n", (unsigned long)(var));
    217 #define PR_UL_SUB(str, nm, var) printf(str".%s"SQ"%lu\n", nm, (unsigned long)(var));
    218 #define PR_TIMEVAL(str, var) printf(str SQ ARG_LL "d.%6.6d\n", \
    219 	(long long)var.tv_sec, (int)var.tv_usec);
    220 #define PR_STATSTIME(str, var) printf(str SQ ARG_LL "d.%6.6d\n", \
    221 	(long long)var ## _sec, (int)var ## _usec);
    222 #define PR_LL(str, var) printf(str SQ ARG_LL"d\n", (long long)(var));
    223 
    224 /** print stat block */
    225 static void pr_stats(const char* nm, struct ub_stats_info* s)
    226 {
    227 	struct timeval sumwait, avg;
    228 	PR_UL_NM("num.queries", s->svr.num_queries);
    229 	PR_UL_NM("num.queries_ip_ratelimited",
    230 		s->svr.num_queries_ip_ratelimited);
    231 	PR_UL_NM("num.queries_cookie_valid",
    232 		s->svr.num_queries_cookie_valid);
    233 	PR_UL_NM("num.queries_cookie_client",
    234 		s->svr.num_queries_cookie_client);
    235 	PR_UL_NM("num.queries_cookie_invalid",
    236 		s->svr.num_queries_cookie_invalid);
    237 	PR_UL_NM("num.queries_discard_timeout",
    238 		s->svr.num_queries_discard_timeout);
    239 	PR_UL_NM("num.queries_wait_limit", s->svr.num_queries_wait_limit);
    240 	PR_UL_NM("num.cachehits",
    241 		s->svr.num_queries - s->svr.num_queries_missed_cache);
    242 	PR_UL_NM("num.cachemiss", s->svr.num_queries_missed_cache);
    243 	PR_UL_NM("num.prefetch", s->svr.num_queries_prefetch);
    244 	PR_UL_NM("num.queries_timed_out", s->svr.num_queries_timed_out);
    245 	PR_UL_NM("query.queue_time_us.max", s->svr.max_query_time_us);
    246 	PR_UL_NM("num.expired", s->svr.ans_expired);
    247 	PR_UL_NM("num.recursivereplies", s->mesh_replies_sent);
    248 #ifdef USE_DNSCRYPT
    249 	PR_UL_NM("num.dnscrypt.crypted", s->svr.num_query_dnscrypt_crypted);
    250 	PR_UL_NM("num.dnscrypt.cert", s->svr.num_query_dnscrypt_cert);
    251 	PR_UL_NM("num.dnscrypt.cleartext", s->svr.num_query_dnscrypt_cleartext);
    252 	PR_UL_NM("num.dnscrypt.malformed",
    253 		s->svr.num_query_dnscrypt_crypted_malformed);
    254 #endif /* USE_DNSCRYPT */
    255 	PR_UL_NM("num.dns_error_reports", s->svr.num_dns_error_reports);
    256 	printf("%s.requestlist.avg"SQ"%g\n", nm,
    257 		(s->svr.num_queries_missed_cache+s->svr.num_queries_prefetch)?
    258 			(double)s->svr.sum_query_list_size/
    259 			(double)(s->svr.num_queries_missed_cache+
    260 			s->svr.num_queries_prefetch) : 0.0);
    261 	PR_UL_NM("requestlist.max", s->svr.max_query_list_size);
    262 	PR_UL_NM("requestlist.overwritten", s->mesh_jostled);
    263 	PR_UL_NM("requestlist.exceeded", s->mesh_dropped);
    264 	PR_UL_NM("requestlist.current.all", s->mesh_num_states);
    265 	PR_UL_NM("requestlist.current.user", s->mesh_num_reply_states);
    266 #ifndef S_SPLINT_S
    267 	sumwait.tv_sec = s->mesh_replies_sum_wait_sec;
    268 	sumwait.tv_usec = s->mesh_replies_sum_wait_usec;
    269 #endif
    270 	timeval_divide(&avg, &sumwait, s->mesh_replies_sent);
    271 	printf("%s.", nm);
    272 	PR_TIMEVAL("recursion.time.avg", avg);
    273 	printf("%s.recursion.time.median"SQ"%g\n", nm, s->mesh_time_median);
    274 	PR_UL_NM("tcpusage", s->svr.tcp_accept_usage);
    275 }
    276 
    277 /** print uptime */
    278 static void print_uptime(struct ub_shm_stat_info* shm_stat)
    279 {
    280 	PR_STATSTIME("time.now", shm_stat->time.now);
    281 	PR_STATSTIME("time.up", shm_stat->time.up);
    282 	PR_STATSTIME("time.elapsed", shm_stat->time.elapsed);
    283 }
    284 
    285 /** print memory usage */
    286 static void print_mem(struct ub_shm_stat_info* shm_stat,
    287 	struct ub_stats_info* s)
    288 {
    289 	PR_LL("mem.cache.rrset", shm_stat->mem.rrset);
    290 	PR_LL("mem.cache.message", shm_stat->mem.msg);
    291 	PR_LL("mem.mod.iterator", shm_stat->mem.iter);
    292 	PR_LL("mem.mod.validator", shm_stat->mem.val);
    293 	PR_LL("mem.mod.respip", shm_stat->mem.respip);
    294 #ifdef CLIENT_SUBNET
    295 	PR_LL("mem.mod.subnet", shm_stat->mem.subnet);
    296 #endif
    297 #ifdef USE_IPSECMOD
    298 	PR_LL("mem.mod.ipsecmod", shm_stat->mem.ipsecmod);
    299 #endif
    300 #ifdef WITH_DYNLIBMODULE
    301 	PR_LL("mem.mod.dynlib", shm_stat->mem.dynlib);
    302 #endif
    303 #ifdef USE_DNSCRYPT
    304 	PR_LL("mem.cache.dnscrypt_shared_secret",
    305 		shm_stat->mem.dnscrypt_shared_secret);
    306 	PR_LL("mem.cache.dnscrypt_nonce",
    307 		shm_stat->mem.dnscrypt_nonce);
    308 #endif
    309 	PR_LL("mem.streamwait", s->svr.mem_stream_wait);
    310 	PR_LL("mem.http.query_buffer", s->svr.mem_http2_query_buffer);
    311 	PR_LL("mem.http.response_buffer", s->svr.mem_http2_response_buffer);
    312 #ifdef HAVE_NGTCP2
    313 	PR_LL("mem.quic", s->svr.mem_quic);
    314 #endif
    315 }
    316 
    317 /** print histogram */
    318 static void print_hist(struct ub_stats_info* s)
    319 {
    320 	struct timehist* hist;
    321 	size_t i;
    322 	hist = timehist_setup();
    323 	if(!hist)
    324 		fatal_exit("out of memory");
    325 	timehist_import(hist, s->svr.hist, NUM_BUCKETS_HIST);
    326 	for(i=0; i<hist->num; i++) {
    327 		printf("histogram.%6.6d.%6.6d.to.%6.6d.%6.6d=%lu\n",
    328 			(int)hist->buckets[i].lower.tv_sec,
    329 			(int)hist->buckets[i].lower.tv_usec,
    330 			(int)hist->buckets[i].upper.tv_sec,
    331 			(int)hist->buckets[i].upper.tv_usec,
    332 			(unsigned long)hist->buckets[i].count);
    333 	}
    334 	timehist_delete(hist);
    335 }
    336 
    337 /** print extended */
    338 static void print_extended(struct ub_stats_info* s, int inhibit_zero)
    339 {
    340 	int i;
    341 	char nm[16];
    342 
    343 	/* TYPE */
    344 	for(i=0; i<UB_STATS_QTYPE_NUM; i++) {
    345 		if(inhibit_zero && s->svr.qtype[i] == 0)
    346 			continue;
    347 		sldns_wire2str_type_buf((uint16_t)i, nm, sizeof(nm));
    348 		PR_UL_SUB("num.query.type", nm, s->svr.qtype[i]);
    349 	}
    350 	if(!inhibit_zero || s->svr.qtype_big) {
    351 		PR_UL("num.query.type.other", s->svr.qtype_big);
    352 	}
    353 
    354 	/* CLASS */
    355 	for(i=0; i<UB_STATS_QCLASS_NUM; i++) {
    356 		if(inhibit_zero && s->svr.qclass[i] == 0)
    357 			continue;
    358 		sldns_wire2str_class_buf((uint16_t)i, nm, sizeof(nm));
    359 		PR_UL_SUB("num.query.class", nm, s->svr.qclass[i]);
    360 	}
    361 	if(!inhibit_zero || s->svr.qclass_big) {
    362 		PR_UL("num.query.class.other", s->svr.qclass_big);
    363 	}
    364 
    365 	/* OPCODE */
    366 	for(i=0; i<UB_STATS_OPCODE_NUM; i++) {
    367 		if(inhibit_zero && s->svr.qopcode[i] == 0)
    368 			continue;
    369 		sldns_wire2str_opcode_buf(i, nm, sizeof(nm));
    370 		PR_UL_SUB("num.query.opcode", nm, s->svr.qopcode[i]);
    371 	}
    372 
    373 	/* transport */
    374 	PR_UL("num.query.tcp", s->svr.qtcp);
    375 	PR_UL("num.query.tcpout", s->svr.qtcp_outgoing);
    376 	PR_UL("num.query.udpout", s->svr.qudp_outgoing);
    377 	PR_UL("num.query.tls", s->svr.qtls);
    378 	PR_UL("num.query.tls_resume", s->svr.qtls_resume);
    379 	PR_UL("num.query.ipv6", s->svr.qipv6);
    380 	PR_UL("num.query.https", s->svr.qhttps);
    381 #ifdef HAVE_NGTCP2
    382 	PR_UL("num.query.quic", s->svr.qquic);
    383 #endif
    384 
    385 	/* flags */
    386 	PR_UL("num.query.flags.QR", s->svr.qbit_QR);
    387 	PR_UL("num.query.flags.AA", s->svr.qbit_AA);
    388 	PR_UL("num.query.flags.TC", s->svr.qbit_TC);
    389 	PR_UL("num.query.flags.RD", s->svr.qbit_RD);
    390 	PR_UL("num.query.flags.RA", s->svr.qbit_RA);
    391 	PR_UL("num.query.flags.Z", s->svr.qbit_Z);
    392 	PR_UL("num.query.flags.AD", s->svr.qbit_AD);
    393 	PR_UL("num.query.flags.CD", s->svr.qbit_CD);
    394 	PR_UL("num.query.edns.present", s->svr.qEDNS);
    395 	PR_UL("num.query.edns.DO", s->svr.qEDNS_DO);
    396 
    397 	/* RCODE */
    398 	for(i=0; i<UB_STATS_RCODE_NUM; i++) {
    399 		/* Always include RCODEs 0-5 */
    400 		if(inhibit_zero && i > LDNS_RCODE_REFUSED && s->svr.ans_rcode[i] == 0)
    401 			continue;
    402 		sldns_wire2str_rcode_buf(i, nm, sizeof(nm));
    403 		PR_UL_SUB("num.answer.rcode", nm, s->svr.ans_rcode[i]);
    404 	}
    405 	if(!inhibit_zero || s->svr.ans_rcode_nodata) {
    406 		PR_UL("num.answer.rcode.nodata", s->svr.ans_rcode_nodata);
    407 	}
    408 	/* iteration */
    409 	PR_UL("num.query.ratelimited", s->svr.queries_ratelimited);
    410 	/* validation */
    411 	PR_UL("num.answer.secure", s->svr.ans_secure);
    412 	PR_UL("num.answer.bogus", s->svr.ans_bogus);
    413 	PR_UL("num.rrset.bogus", s->svr.rrset_bogus);
    414 	PR_UL("num.valops", s->svr.val_ops);
    415 	PR_UL("num.query.aggressive.NOERROR", s->svr.num_neg_cache_noerror);
    416 	PR_UL("num.query.aggressive.NXDOMAIN", s->svr.num_neg_cache_nxdomain);
    417 	/* threat detection */
    418 	PR_UL("unwanted.queries", s->svr.unwanted_queries);
    419 	PR_UL("unwanted.replies", s->svr.unwanted_replies);
    420 	/* cache counts */
    421 	PR_UL("msg.cache.count", s->svr.msg_cache_count);
    422 	PR_UL("rrset.cache.count", s->svr.rrset_cache_count);
    423 	PR_UL("infra.cache.count", s->svr.infra_cache_count);
    424 	PR_UL("key.cache.count", s->svr.key_cache_count);
    425 	/* max collisions */
    426 	PR_UL("msg.cache.max_collisions", s->svr.msg_cache_max_collisions);
    427 	PR_UL("rrset.cache.max_collisions", s->svr.rrset_cache_max_collisions);
    428 	/* applied RPZ actions */
    429 	for(i=0; i<UB_STATS_RPZ_ACTION_NUM; i++) {
    430 		if(i == RPZ_NO_OVERRIDE_ACTION)
    431 			continue;
    432 		if(inhibit_zero && s->svr.rpz_action[i] == 0)
    433 			continue;
    434 		PR_UL_SUB("num.rpz.action", rpz_action_to_string(i), s->svr.rpz_action[i]);
    435 	}
    436 #ifdef USE_DNSCRYPT
    437 	PR_UL("dnscrypt_shared_secret.cache.count",
    438 			 s->svr.shared_secret_cache_count);
    439 	PR_UL("num.query.dnscrypt.shared_secret.cachemiss",
    440 			 s->svr.num_query_dnscrypt_secret_missed_cache);
    441 	PR_UL("dnscrypt_nonce.cache.count", s->svr.nonce_cache_count);
    442 	PR_UL("num.query.dnscrypt.replay",
    443 			 s->svr.num_query_dnscrypt_replay);
    444 #endif /* USE_DNSCRYPT */
    445 	PR_UL("num.query.authzone.up", s->svr.num_query_authzone_up);
    446 	PR_UL("num.query.authzone.down", s->svr.num_query_authzone_down);
    447 #ifdef CLIENT_SUBNET
    448 	PR_UL("num.query.subnet", s->svr.num_query_subnet);
    449 	PR_UL("num.query.subnet_cache", s->svr.num_query_subnet_cache);
    450 #endif
    451 #ifdef USE_CACHEDB
    452 	PR_UL("num.query.cachedb", s->svr.num_query_cachedb);
    453 #endif
    454 }
    455 
    456 /** print statistics out of memory structures */
    457 static void do_stats_shm(struct config_file* cfg, struct ub_stats_info* stats,
    458 	struct ub_shm_stat_info* shm_stat)
    459 {
    460 	int i;
    461 	char nm[32];
    462 	for(i=0; i<cfg->num_threads; i++) {
    463 		snprintf(nm, sizeof(nm), "thread%d", i);
    464 		pr_stats(nm, &stats[i+1]);
    465 	}
    466 	pr_stats("total", &stats[0]);
    467 	print_uptime(shm_stat);
    468 	if(cfg->stat_extended) {
    469 		print_mem(shm_stat, &stats[0]);
    470 		print_hist(stats);
    471 		print_extended(stats, cfg->stat_inhibit_zero);
    472 	}
    473 }
    474 #endif /* HAVE_SHMGET */
    475 
    476 /** print statistics from shm memory segment */
    477 static void print_stats_shm(const char* cfgfile, int quiet)
    478 {
    479 #ifdef HAVE_SHMGET
    480 	struct config_file* cfg;
    481 	struct ub_stats_info* stats;
    482 	struct ub_shm_stat_info* shm_stat;
    483 	int id_ctl, id_arr;
    484 	/* read config */
    485 	if(!(cfg = config_create()))
    486 		fatal_exit("out of memory");
    487 	if(!config_read(cfg, cfgfile, NULL))
    488 		fatal_exit("could not read config file");
    489 	/* get shm segments */
    490 	id_ctl = shmget(cfg->shm_key, sizeof(int), SHM_R);
    491 	if(id_ctl == -1) {
    492 		fatal_exit("shmget(%d): %s", cfg->shm_key, strerror(errno));
    493 	}
    494 	id_arr = shmget(cfg->shm_key+1, sizeof(int), SHM_R);
    495 	if(id_arr == -1) {
    496 		fatal_exit("shmget(%d): %s", cfg->shm_key+1, strerror(errno));
    497 	}
    498 	shm_stat = (struct ub_shm_stat_info*)shmat(id_ctl, NULL, SHM_RDONLY);
    499 	if(shm_stat == (void*)-1) {
    500 		fatal_exit("shmat(%d): %s", id_ctl, strerror(errno));
    501 	}
    502 	stats = (struct ub_stats_info*)shmat(id_arr, NULL, SHM_RDONLY);
    503 	if(stats == (void*)-1) {
    504 		fatal_exit("shmat(%d): %s", id_arr, strerror(errno));
    505 	}
    506 
    507 
    508 	if(!quiet) {
    509 		/* print the stats */
    510 		do_stats_shm(cfg, stats, shm_stat);
    511 	}
    512 
    513 	/* shutdown */
    514 	shmdt(shm_stat);
    515 	shmdt(stats);
    516 	config_delete(cfg);
    517 #else
    518 	(void)cfgfile;
    519 	(void)quiet;
    520 #endif /* HAVE_SHMGET */
    521 }
    522 
    523 /** exit with ssl error */
    524 static void ssl_err(const char* s)
    525 {
    526 	fprintf(stderr, "error: %s\n", s);
    527 	ERR_print_errors_fp(stderr);
    528 	exit(1);
    529 }
    530 
    531 /** exit with ssl error related to a file path */
    532 static void ssl_path_err(const char* s, const char *path)
    533 {
    534 	unsigned long err;
    535 	err = ERR_peek_error();
    536 	if(ERR_GET_LIB(err) == ERR_LIB_SYS) {
    537 		fprintf(stderr, "error: %s\n%s: %s\n",
    538 			s, path, ERR_reason_error_string(err));
    539 		exit(1);
    540 	} else {
    541 		ssl_err(s);
    542 	}
    543 }
    544 
    545 /** setup SSL context */
    546 static SSL_CTX*
    547 setup_ctx(struct config_file* cfg)
    548 {
    549 	char* s_cert=NULL, *c_key=NULL, *c_cert=NULL;
    550 	SSL_CTX* ctx;
    551 
    552 	if(!(options_remote_is_address(cfg) && cfg->control_use_cert))
    553 		return NULL;
    554 	s_cert = fname_after_chroot(cfg->server_cert_file, cfg, 1);
    555 	c_key = fname_after_chroot(cfg->control_key_file, cfg, 1);
    556 	c_cert = fname_after_chroot(cfg->control_cert_file, cfg, 1);
    557 	if(!s_cert || !c_key || !c_cert)
    558 		fatal_exit("out of memory");
    559 	ctx = SSL_CTX_new(SSLv23_client_method());
    560 	if(!ctx)
    561 		ssl_err("could not allocate SSL_CTX pointer");
    562 #if SSL_OP_NO_SSLv2 != 0
    563 	if((SSL_CTX_set_options(ctx, SSL_OP_NO_SSLv2) & SSL_OP_NO_SSLv2)
    564 		!= SSL_OP_NO_SSLv2)
    565 		ssl_err("could not set SSL_OP_NO_SSLv2");
    566 #endif
    567 	if((SSL_CTX_set_options(ctx, SSL_OP_NO_SSLv3) & SSL_OP_NO_SSLv3)
    568 		!= SSL_OP_NO_SSLv3)
    569 		ssl_err("could not set SSL_OP_NO_SSLv3");
    570 #if defined(SSL_OP_NO_RENEGOTIATION)
    571 	/* disable client renegotiation */
    572 	if((SSL_CTX_set_options(ctx, SSL_OP_NO_RENEGOTIATION) &
    573 		SSL_OP_NO_RENEGOTIATION) != SSL_OP_NO_RENEGOTIATION)
    574 		ssl_err("could not set SSL_OP_NO_RENEGOTIATION");
    575 #endif
    576 	if(!SSL_CTX_use_certificate_chain_file(ctx,c_cert))
    577 		ssl_path_err("Error setting up SSL_CTX client cert", c_cert);
    578 	if(!SSL_CTX_use_PrivateKey_file(ctx,c_key,SSL_FILETYPE_PEM))
    579 		ssl_path_err("Error setting up SSL_CTX client key", c_key);
    580 	if(!SSL_CTX_check_private_key(ctx))
    581 		ssl_err("Error setting up SSL_CTX client key");
    582 	if(SSL_CTX_load_verify_locations(ctx, s_cert, NULL) != 1)
    583 		ssl_path_err("Error setting up SSL_CTX verify, server cert",
    584 			     s_cert);
    585 	SSL_CTX_set_verify(ctx, SSL_VERIFY_PEER, NULL);
    586 
    587 	free(s_cert);
    588 	free(c_key);
    589 	free(c_cert);
    590 	return ctx;
    591 }
    592 
    593 /** check connect error */
    594 static void
    595 checkconnecterr(int err, const char* svr, struct sockaddr_storage* addr,
    596 	socklen_t addrlen, int statuscmd, int useport)
    597 {
    598 #ifndef USE_WINSOCK
    599 	if(!useport) log_err("connect: %s for %s", strerror(err), svr);
    600 	else log_err_addr("connect", strerror(err), addr, addrlen);
    601 	if(err == ECONNREFUSED && statuscmd) {
    602 		printf("unbound is stopped\n");
    603 		exit(3);
    604 	}
    605 #else
    606 	int wsaerr = err;
    607 	if(!useport) log_err("connect: %s for %s", wsa_strerror(wsaerr), svr);
    608 	else log_err_addr("connect", wsa_strerror(wsaerr), addr, addrlen);
    609 	if(wsaerr == WSAECONNREFUSED && statuscmd) {
    610 		printf("unbound is stopped\n");
    611 		exit(3);
    612 	}
    613 #endif
    614 	exit(1);
    615 }
    616 
    617 /** contact the server with TCP connect */
    618 static int
    619 contact_server(const char* svr, struct config_file* cfg, int statuscmd)
    620 {
    621 	struct sockaddr_storage addr;
    622 	socklen_t addrlen;
    623 	int addrfamily = 0, proto = IPPROTO_TCP;
    624 	int fd, useport = 1;
    625 	char** rcif = NULL;
    626 	int num_rcif = 0;
    627 	/* use svr or the first config entry */
    628 	if(!svr) {
    629 		if(cfg->control_ifs.first) {
    630 			struct sockaddr_storage addr2;
    631 			socklen_t addrlen2;
    632 			if(extstrtoaddr(cfg->control_ifs.first->str, &addr2,
    633 				&addrlen2, UNBOUND_DNS_PORT)) {
    634 				svr = cfg->control_ifs.first->str;
    635 			} else {
    636 				if(!resolve_interface_names(NULL, 0,
    637 					cfg->control_ifs.first, &rcif,
    638 					&num_rcif)) {
    639 					fatal_exit("could not resolve interface names");
    640 				}
    641 				if(rcif == NULL || num_rcif == 0) {
    642 					fatal_exit("no control interfaces");
    643 				}
    644 				svr = rcif[0];
    645 			}
    646 		} else if(cfg->do_ip4) {
    647 			svr = "127.0.0.1";
    648 		} else {
    649 			svr = "::1";
    650 		}
    651 		/* config 0 addr (everything), means ask localhost */
    652 		if(strcmp(svr, "0.0.0.0") == 0)
    653 			svr = "127.0.0.1";
    654 		else if(strcmp(svr, "::0") == 0 ||
    655 			strcmp(svr, "0::0") == 0 ||
    656 			strcmp(svr, "0::") == 0 ||
    657 			strcmp(svr, "::") == 0)
    658 			svr = "::1";
    659 	}
    660 	if(strchr(svr, '@')) {
    661 		if(!extstrtoaddr(svr, &addr, &addrlen, UNBOUND_DNS_PORT))
    662 			fatal_exit("could not parse IP@port: %s", svr);
    663 #ifdef HAVE_SYS_UN_H
    664 	} else if(svr[0] == '/') {
    665 		struct sockaddr_un* usock = (struct sockaddr_un *) &addr;
    666 		usock->sun_family = AF_LOCAL;
    667 #ifdef HAVE_STRUCT_SOCKADDR_UN_SUN_LEN
    668 		usock->sun_len = (unsigned)sizeof(usock);
    669 #endif
    670 		(void)strlcpy(usock->sun_path, svr, sizeof(usock->sun_path));
    671 		addrlen = (socklen_t)sizeof(struct sockaddr_un);
    672 		addrfamily = AF_LOCAL;
    673 		useport = 0;
    674 		proto = 0;
    675 #endif
    676 	} else {
    677 		if(!ipstrtoaddr(svr, cfg->control_port, &addr, &addrlen))
    678 			fatal_exit("could not parse IP: %s", svr);
    679 	}
    680 
    681 	if(addrfamily == 0)
    682 		addrfamily = addr_is_ip6(&addr, addrlen)?PF_INET6:PF_INET;
    683 	fd = socket(addrfamily, SOCK_STREAM, proto);
    684 	if(fd == -1) {
    685 		fatal_exit("socket: %s", sock_strerror(errno));
    686 	}
    687 	fd_set_nonblock(fd);
    688 	if(connect(fd, (struct sockaddr*)&addr, addrlen) < 0) {
    689 #ifndef USE_WINSOCK
    690 #ifdef EINPROGRESS
    691 		if(errno != EINPROGRESS) {
    692 			checkconnecterr(errno, svr, &addr,
    693 				addrlen, statuscmd, useport);
    694 		}
    695 #endif
    696 #else
    697 		if(WSAGetLastError() != WSAEINPROGRESS &&
    698 			WSAGetLastError() != WSAEWOULDBLOCK) {
    699 			checkconnecterr(WSAGetLastError(), svr, &addr,
    700 				addrlen, statuscmd, useport);
    701 		}
    702 #endif
    703 	}
    704 	while(1) {
    705 		fd_set rset, wset, eset;
    706 		struct timeval tv;
    707 		FD_ZERO(&rset);
    708 		FD_SET(FD_SET_T fd, &rset);
    709 		FD_ZERO(&wset);
    710 		FD_SET(FD_SET_T fd, &wset);
    711 		FD_ZERO(&eset);
    712 		FD_SET(FD_SET_T fd, &eset);
    713 		tv.tv_sec = UNBOUND_CONTROL_CONNECT_TIMEOUT/1000;
    714 		tv.tv_usec= (UNBOUND_CONTROL_CONNECT_TIMEOUT%1000)*1000;
    715 		if(select(fd+1, &rset, &wset, &eset, &tv) == -1) {
    716 			fatal_exit("select: %s", sock_strerror(errno));
    717 		}
    718 		if(!FD_ISSET(fd, &rset) && !FD_ISSET(fd, &wset) &&
    719 			!FD_ISSET(fd, &eset)) {
    720 			fatal_exit("timeout: could not connect to server");
    721 		} else {
    722 			/* check nonblocking connect error */
    723 			int error = 0;
    724 			socklen_t len = (socklen_t)sizeof(error);
    725 			if(getsockopt(fd, SOL_SOCKET, SO_ERROR, (void*)&error,
    726 				&len) < 0) {
    727 #ifndef USE_WINSOCK
    728 				error = errno; /* on solaris errno is error */
    729 #else
    730 				error = WSAGetLastError();
    731 #endif
    732 			}
    733 			if(error != 0) {
    734 #ifndef USE_WINSOCK
    735 #ifdef EINPROGRESS
    736 				if(error == EINPROGRESS)
    737 					continue; /* try again later */
    738 #endif
    739 #ifdef EWOULDBLOCK
    740 				if(error == EWOULDBLOCK)
    741 					continue; /* try again later */
    742 #endif
    743 #else
    744 				if(error == WSAEINPROGRESS)
    745 					continue; /* try again later */
    746 				if(error == WSAEWOULDBLOCK)
    747 					continue; /* try again later */
    748 #endif
    749 				checkconnecterr(error, svr, &addr, addrlen,
    750 					statuscmd, useport);
    751 			}
    752 		}
    753 		break;
    754 	}
    755 	fd_set_block(fd);
    756 	config_del_strarray(rcif, num_rcif);
    757 	return fd;
    758 }
    759 
    760 /** setup SSL on the connection */
    761 static SSL*
    762 setup_ssl(SSL_CTX* ctx, int fd)
    763 {
    764 	SSL* ssl;
    765 	X509* x;
    766 	int r;
    767 
    768 	if(!ctx) return NULL;
    769 	ssl = SSL_new(ctx);
    770 	if(!ssl)
    771 		ssl_err("could not SSL_new");
    772 	SSL_set_connect_state(ssl);
    773 	(void)SSL_set_mode(ssl, (long)SSL_MODE_AUTO_RETRY);
    774 	if(!SSL_set_fd(ssl, fd))
    775 		ssl_err("could not SSL_set_fd");
    776 	while(1) {
    777 		ERR_clear_error();
    778 		if( (r=SSL_do_handshake(ssl)) == 1)
    779 			break;
    780 		r = SSL_get_error(ssl, r);
    781 		if(r != SSL_ERROR_WANT_READ && r != SSL_ERROR_WANT_WRITE)
    782 			ssl_err("SSL handshake failed");
    783 		/* wants to be called again */
    784 	}
    785 
    786 	/* check authenticity of server */
    787 	if(SSL_get_verify_result(ssl) != X509_V_OK)
    788 		ssl_err("SSL verification failed");
    789 #ifdef HAVE_SSL_GET1_PEER_CERTIFICATE
    790 	x = SSL_get1_peer_certificate(ssl);
    791 #else
    792 	x = SSL_get_peer_certificate(ssl);
    793 #endif
    794 	if(!x)
    795 		ssl_err("Server presented no peer certificate");
    796 	X509_free(x);
    797 
    798 	return ssl;
    799 }
    800 
    801 /** read from ssl or fd, fatalexit on error, 0 EOF, 1 success */
    802 static int
    803 remote_read(SSL* ssl, int fd, char* buf, size_t len)
    804 {
    805 	if(ssl) {
    806 		int r;
    807 		ERR_clear_error();
    808 		if((r = SSL_read(ssl, buf, (int)len-1)) <= 0) {
    809 			if(SSL_get_error(ssl, r) == SSL_ERROR_ZERO_RETURN) {
    810 				/* EOF */
    811 				return 0;
    812 			}
    813 			ssl_err("could not SSL_read");
    814 		}
    815 		buf[r] = 0;
    816 	} else {
    817 		ssize_t rr = recv(fd, buf, len-1, 0);
    818 		if(rr <= 0) {
    819 			if(rr == 0) {
    820 				/* EOF */
    821 				return 0;
    822 			}
    823 			fatal_exit("could not recv: %s", sock_strerror(errno));
    824 		}
    825 		buf[rr] = 0;
    826 	}
    827 	return 1;
    828 }
    829 
    830 /** write to ssl or fd, fatalexit on error */
    831 static void
    832 remote_write(SSL* ssl, int fd, const char* buf, size_t len)
    833 {
    834 	if(ssl) {
    835 		if(SSL_write(ssl, buf, (int)len) <= 0)
    836 			ssl_err("could not SSL_write");
    837 	} else {
    838 		if(send(fd, buf, len, 0) < (ssize_t)len) {
    839 			fatal_exit("could not send: %s", sock_strerror(errno));
    840 		}
    841 	}
    842 }
    843 
    844 /** check args, to see if too many args. Because when a file is sent it
    845  * would wait for the terminal, and we can check for too many arguments,
    846  * eg. user put arguments on the commandline. */
    847 static void
    848 check_args_for_listcmd(int argc, char* argv[])
    849 {
    850 	if(argc >= 1 && (strcmp(argv[0], "local_zones") == 0 ||
    851 		strcmp(argv[0], "local_zones_remove") == 0 ||
    852 		strcmp(argv[0], "local_datas") == 0 ||
    853 		strcmp(argv[0], "local_datas_remove") == 0) &&
    854 		argc >= 2) {
    855 		fatal_exit("too many arguments for command '%s', "
    856 			"content is piped in from stdin", argv[0]);
    857 	}
    858 	if(argc >= 1 && (strcmp(argv[0], "view_local_datas") == 0 ||
    859 		strcmp(argv[0], "view_local_datas_remove") == 0) &&
    860 		argc >= 3) {
    861 		fatal_exit("too many arguments for command '%s', "
    862 			"content is piped in from stdin", argv[0]);
    863 	}
    864 }
    865 
    866 /** send stdin to server */
    867 static void
    868 send_file(SSL* ssl, int fd, FILE* in, char* buf, size_t sz)
    869 {
    870 	while(fgets(buf, (int)sz, in)) {
    871 		remote_write(ssl, fd, buf, strlen(buf));
    872 	}
    873 }
    874 
    875 /** send end-of-file marker to server */
    876 static void
    877 send_eof(SSL* ssl, int fd)
    878 {
    879 	char e[] = {0x04, 0x0a};
    880 	remote_write(ssl, fd, e, sizeof(e));
    881 }
    882 
    883 /** send command and display result */
    884 static int
    885 go_cmd(SSL* ssl, int fd, int quiet, int argc, char* argv[])
    886 {
    887 	char pre[10];
    888 	const char* space=" ";
    889 	const char* newline="\n";
    890 	int was_error = 0, first_line = 1;
    891 	int i;
    892 	char buf[1024];
    893 	snprintf(pre, sizeof(pre), "UBCT%d ", UNBOUND_CONTROL_VERSION);
    894 	remote_write(ssl, fd, pre, strlen(pre));
    895 	for(i=0; i<argc; i++) {
    896 		remote_write(ssl, fd, space, strlen(space));
    897 		remote_write(ssl, fd, argv[i], strlen(argv[i]));
    898 	}
    899 	remote_write(ssl, fd, newline, strlen(newline));
    900 
    901 	if(argc == 1 && strcmp(argv[0], "load_cache") == 0) {
    902 		send_file(ssl, fd, stdin, buf, sizeof(buf));
    903 	}
    904 	else if(argc >= 1 && (strcmp(argv[0], "local_zones") == 0 ||
    905 		strcmp(argv[0], "local_zones_remove") == 0 ||
    906 		strcmp(argv[0], "local_datas") == 0 ||
    907 		strcmp(argv[0], "view_local_datas") == 0 ||
    908 		strcmp(argv[0], "local_datas_remove") == 0 ||
    909 		strcmp(argv[0], "view_local_datas_remove") == 0)) {
    910 		send_file(ssl, fd, stdin, buf, sizeof(buf));
    911 		send_eof(ssl, fd);
    912 	}
    913 
    914 	while(1) {
    915 		if(remote_read(ssl, fd, buf, sizeof(buf)) == 0) {
    916 			break; /* EOF */
    917 		}
    918 		if(first_line && strncmp(buf, "error", 5) == 0) {
    919 			printf("%s", buf);
    920 			was_error = 1;
    921 		} else if(!quiet) {
    922 			printf("%s", buf);
    923 		}
    924 
    925 		first_line = 0;
    926 	}
    927 	return was_error;
    928 }
    929 
    930 /** go ahead and read config, contact server and perform command and display */
    931 static int
    932 go(const char* cfgfile, char* svr, int quiet, int argc, char* argv[])
    933 {
    934 	struct config_file* cfg;
    935 	int fd, ret;
    936 	SSL_CTX* ctx;
    937 	SSL* ssl;
    938 
    939 	/* read config */
    940 	if(!(cfg = config_create()))
    941 		fatal_exit("out of memory");
    942 	if(!config_read(cfg, cfgfile, NULL))
    943 		fatal_exit("could not read config file");
    944 	if(!cfg->remote_control_enable)
    945 		log_warn("control-enable is 'no' in the config file.");
    946 #ifdef UB_ON_WINDOWS
    947 	w_config_adjust_directory(cfg);
    948 #endif
    949 	ctx = setup_ctx(cfg);
    950 
    951 	/* contact server */
    952 	fd = contact_server(svr, cfg, argc>0&&strcmp(argv[0],"status")==0);
    953 	ssl = setup_ssl(ctx, fd);
    954 
    955 	/* send command */
    956 	ret = go_cmd(ssl, fd, quiet, argc, argv);
    957 
    958 	if(ssl) SSL_free(ssl);
    959 	sock_close(fd);
    960 	if(ctx) SSL_CTX_free(ctx);
    961 	config_delete(cfg);
    962 	return ret;
    963 }
    964 
    965 /** getopt global, in case header files fail to declare it. */
    966 extern int optind;
    967 /** getopt global, in case header files fail to declare it. */
    968 extern char* optarg;
    969 
    970 /** Main routine for unbound-control */
    971 int main(int argc, char* argv[])
    972 {
    973 	int c, ret;
    974 	int quiet = 0;
    975 	const char* cfgfile = CONFIGFILE;
    976 	char* svr = NULL;
    977 #ifdef USE_WINSOCK
    978 	int r;
    979 	WSADATA wsa_data;
    980 #endif
    981 #ifdef USE_THREAD_DEBUG
    982 	/* stop the file output from unbound-control, overwrites the servers */
    983 	extern int check_locking_order;
    984 	check_locking_order = 0;
    985 #endif /* USE_THREAD_DEBUG */
    986 	checklock_start();
    987 	log_ident_set("unbound-control");
    988 	log_init(NULL, 0, NULL);
    989 #ifdef USE_WINSOCK
    990 	/* use registry config file in preference to compiletime location */
    991 	if(!(cfgfile=w_lookup_reg_str("Software\\Unbound", "ConfigFile")))
    992 		cfgfile = CONFIGFILE;
    993 #endif
    994 	/* parse the options */
    995 	while( (c=getopt(argc, argv, "c:s:qh")) != -1) {
    996 		switch(c) {
    997 		case 'c':
    998 			cfgfile = optarg;
    999 			break;
   1000 		case 's':
   1001 			svr = optarg;
   1002 			break;
   1003 		case 'q':
   1004 			quiet = 1;
   1005 			break;
   1006 		case '?':
   1007 		case 'h':
   1008 		default:
   1009 			usage();
   1010 		}
   1011 	}
   1012 	argc -= optind;
   1013 	argv += optind;
   1014 	if(argc == 0)
   1015 		usage();
   1016 	if(argc >= 1 && strcmp(argv[0], "start")==0) {
   1017 #if (defined(TARGET_OS_TV) && TARGET_OS_TV) || (defined(TARGET_OS_WATCH) && TARGET_OS_WATCH)
   1018 		fatal_exit("could not exec unbound: %s",
   1019 			strerror(ENOSYS));
   1020 #else
   1021 		if(execlp("unbound", "unbound", "-c", cfgfile,
   1022 			(char*)NULL) < 0) {
   1023 			fatal_exit("could not exec unbound: %s",
   1024 				strerror(errno));
   1025 		}
   1026 #endif
   1027 	}
   1028 	if(argc >= 1 && strcmp(argv[0], "stats_shm")==0) {
   1029 		print_stats_shm(cfgfile, quiet);
   1030 		return 0;
   1031 	}
   1032 	check_args_for_listcmd(argc, argv);
   1033 
   1034 #ifdef USE_WINSOCK
   1035 	if((r = WSAStartup(MAKEWORD(2,2), &wsa_data)) != 0)
   1036 		fatal_exit("WSAStartup failed: %s", wsa_strerror(r));
   1037 #endif
   1038 
   1039 #ifdef HAVE_ERR_LOAD_CRYPTO_STRINGS
   1040 	ERR_load_crypto_strings();
   1041 #endif
   1042 #if OPENSSL_VERSION_NUMBER < 0x10100000 || !defined(HAVE_OPENSSL_INIT_SSL)
   1043 	ERR_load_SSL_strings();
   1044 #endif
   1045 #if OPENSSL_VERSION_NUMBER < 0x10100000 || !defined(HAVE_OPENSSL_INIT_CRYPTO)
   1046 #  ifndef S_SPLINT_S
   1047 	OpenSSL_add_all_algorithms();
   1048 #  endif
   1049 #else
   1050 	OPENSSL_init_crypto(OPENSSL_INIT_ADD_ALL_CIPHERS
   1051 		| OPENSSL_INIT_ADD_ALL_DIGESTS
   1052 		| OPENSSL_INIT_LOAD_CRYPTO_STRINGS, NULL);
   1053 #endif
   1054 #if OPENSSL_VERSION_NUMBER < 0x10100000 || !defined(HAVE_OPENSSL_INIT_SSL)
   1055 	(void)SSL_library_init();
   1056 #else
   1057 	(void)OPENSSL_init_ssl(OPENSSL_INIT_LOAD_SSL_STRINGS, NULL);
   1058 #endif
   1059 
   1060 	if(!RAND_status()) {
   1061 		/* try to seed it */
   1062 		unsigned char buf[256];
   1063 		unsigned int seed=(unsigned)time(NULL) ^ (unsigned)getpid();
   1064 		unsigned int v = seed;
   1065 		size_t i;
   1066 		for(i=0; i<256/sizeof(v); i++) {
   1067 			memmove(buf+i*sizeof(v), &v, sizeof(v));
   1068 			v = v*seed + (unsigned int)i;
   1069 		}
   1070 		RAND_seed(buf, 256);
   1071 		log_warn("no entropy, seeding openssl PRNG with time\n");
   1072 	}
   1073 
   1074 	ret = go(cfgfile, svr, quiet, argc, argv);
   1075 
   1076 #ifdef USE_WINSOCK
   1077 	WSACleanup();
   1078 #endif
   1079 	checklock_stop();
   1080 	return ret;
   1081 }
   1082