xref: /freebsd/contrib/unbound/daemon/remote.c (revision 5fa84c6ec176d186ddad25d31f8760e50f48157f)
1 /*
2  * daemon/remote.c - remote control for the unbound daemon.
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  * This file contains the remote control functionality for the daemon.
40  * The remote control can be performed using either the commandline
41  * unbound-control tool, or a TLS capable web browser.
42  * The channel is secured using TLSv1, and certificates.
43  * Both the server and the client(control tool) have their own keys.
44  */
45 #include "config.h"
46 #ifdef HAVE_OPENSSL_ERR_H
47 #include <openssl/err.h>
48 #endif
49 #ifdef HAVE_OPENSSL_DH_H
50 #include <openssl/dh.h>
51 #endif
52 #ifdef HAVE_OPENSSL_BN_H
53 #include <openssl/bn.h>
54 #endif
55 #ifdef HAVE_STDATOMIC_H
56 #include <stdatomic.h>
57 #endif
58 
59 #include <ctype.h>
60 #include "daemon/remote.h"
61 #include "daemon/worker.h"
62 #include "daemon/daemon.h"
63 #include "daemon/stats.h"
64 #include "daemon/cachedump.h"
65 #include "util/log.h"
66 #include "util/config_file.h"
67 #include "util/net_help.h"
68 #include "util/module.h"
69 #include "util/ub_event.h"
70 #include "services/listen_dnsport.h"
71 #include "services/cache/rrset.h"
72 #include "services/cache/infra.h"
73 #include "services/mesh.h"
74 #include "services/localzone.h"
75 #include "services/authzone.h"
76 #include "services/rpz.h"
77 #include "util/storage/slabhash.h"
78 #include "util/fptr_wlist.h"
79 #include "util/data/dname.h"
80 #include "validator/validator.h"
81 #include "validator/val_kcache.h"
82 #include "validator/val_kentry.h"
83 #include "validator/val_anchor.h"
84 #include "validator/val_neg.h"
85 #include "iterator/iterator.h"
86 #include "iterator/iter_fwd.h"
87 #include "iterator/iter_hints.h"
88 #include "iterator/iter_delegpt.h"
89 #include "iterator/iter_utils.h"
90 #include "iterator/iter_donotq.h"
91 #include "iterator/iter_priv.h"
92 #include "services/outbound_list.h"
93 #include "services/outside_network.h"
94 #include "sldns/str2wire.h"
95 #include "sldns/parseutil.h"
96 #include "sldns/wire2str.h"
97 #include "sldns/sbuffer.h"
98 #include "util/timeval_func.h"
99 #include "util/tcp_conn_limit.h"
100 #include "util/edns.h"
101 #ifdef USE_CACHEDB
102 #include "cachedb/cachedb.h"
103 #endif
104 #ifdef CLIENT_SUBNET
105 #include "edns-subnet/subnetmod.h"
106 #include "edns-subnet/addrtree.h"
107 #endif
108 
109 #ifdef HAVE_SYS_TYPES_H
110 #  include <sys/types.h>
111 #endif
112 #ifdef HAVE_SYS_STAT_H
113 #include <sys/stat.h>
114 #endif
115 #ifdef HAVE_NETDB_H
116 #include <netdb.h>
117 #endif
118 #ifdef HAVE_POLL_H
119 #include <poll.h>
120 #endif
121 
122 /* just for portability */
123 #ifdef SQ
124 #undef SQ
125 #endif
126 
127 /** what to put on statistics lines between var and value, ": " or "=" */
128 #define SQ "="
129 
130 /** Acceptable lengths of str lines */
131 #define MAX_CMD_STRLINE 1024
132 #define MAX_STDIN_STRLINE 2048
133 /** What number of loop iterations is too much for ipc retries */
134 #define IPC_LOOP_MAX 200
135 /** Timeout in msec for ipc socket poll. */
136 #define IPC_NOTIFICATION_WAIT 200
137 
138 static void fr_printq_delete(struct fast_reload_printq* printq);
139 static void fr_main_perform_printout(struct fast_reload_thread* fr);
140 static int fr_printq_empty(struct fast_reload_printq* printq);
141 static void fr_printq_list_insert(struct fast_reload_printq* printq,
142 	struct daemon* daemon);
143 static void fr_printq_remove(struct fast_reload_printq* printq);
144 static void fr_check_cmd_from_thread(struct fast_reload_thread* fr);
145 
146 static int
remote_setup_ctx(struct daemon_remote * rc,struct config_file * cfg)147 remote_setup_ctx(struct daemon_remote* rc, struct config_file* cfg)
148 {
149 	char* s_cert;
150 	char* s_key;
151 	rc->ctx = SSL_CTX_new(SSLv23_server_method());
152 	if(!rc->ctx) {
153 		log_crypto_err("could not SSL_CTX_new");
154 		return 0;
155 	}
156 	if(!listen_sslctx_setup(rc->ctx, cfg->tls_protocols)) {
157 		return 0;
158 	}
159 
160 	s_cert = fname_after_chroot(cfg->server_cert_file, cfg, 1);
161 	s_key = fname_after_chroot(cfg->server_key_file, cfg, 1);
162 	if(!s_cert || !s_key) {
163 		log_err("out of memory in remote control fname");
164 		goto setup_error;
165 	}
166 	verbose(VERB_ALGO, "setup SSL certificates");
167 	if (!SSL_CTX_use_certificate_chain_file(rc->ctx,s_cert)) {
168 		log_err("Error for server-cert-file: %s", s_cert);
169 		log_crypto_err("Error in SSL_CTX use_certificate_chain_file");
170 		goto setup_error;
171 	}
172 	if(!SSL_CTX_use_PrivateKey_file(rc->ctx,s_key,SSL_FILETYPE_PEM)) {
173 		log_err("Error for server-key-file: %s", s_key);
174 		log_crypto_err("Error in SSL_CTX use_PrivateKey_file");
175 		goto setup_error;
176 	}
177 	if(!SSL_CTX_check_private_key(rc->ctx)) {
178 		log_err("Error for server-key-file: %s", s_key);
179 		log_crypto_err("Error in SSL_CTX check_private_key");
180 		goto setup_error;
181 	}
182 	listen_sslctx_setup_2(rc->ctx);
183 	if(!SSL_CTX_load_verify_locations(rc->ctx, s_cert, NULL)) {
184 		log_crypto_err("Error setting up SSL_CTX verify locations");
185 	setup_error:
186 		free(s_cert);
187 		free(s_key);
188 		return 0;
189 	}
190 	SSL_CTX_set_client_CA_list(rc->ctx, SSL_load_client_CA_file(s_cert));
191 	SSL_CTX_set_verify(rc->ctx, SSL_VERIFY_PEER, NULL);
192 	free(s_cert);
193 	free(s_key);
194 	return 1;
195 }
196 
197 struct daemon_remote*
daemon_remote_create(struct config_file * cfg)198 daemon_remote_create(struct config_file* cfg)
199 {
200 	struct daemon_remote* rc = (struct daemon_remote*)calloc(1,
201 		sizeof(*rc));
202 	if(!rc) {
203 		log_err("out of memory in daemon_remote_create");
204 		return NULL;
205 	}
206 	rc->max_active = 10;
207 
208 	if(!cfg->remote_control_enable) {
209 		rc->ctx = NULL;
210 		return rc;
211 	}
212 	if(options_remote_is_address(cfg) && cfg->control_use_cert) {
213 		if(!remote_setup_ctx(rc, cfg)) {
214 			daemon_remote_delete(rc);
215 			return NULL;
216 		}
217 		rc->use_cert = 1;
218 	} else {
219 		struct config_strlist* p;
220 		rc->ctx = NULL;
221 		rc->use_cert = 0;
222 		if(!options_remote_is_address(cfg))
223 		  for(p = cfg->control_ifs.first; p; p = p->next) {
224 			if(p->str && p->str[0] != '/')
225 				log_warn("control-interface %s is not using TLS, but plain transfer, because first control-interface in config file is a local socket (starts with a /).", p->str);
226 		}
227 	}
228 	return rc;
229 }
230 
daemon_remote_clear(struct daemon_remote * rc)231 void daemon_remote_clear(struct daemon_remote* rc)
232 {
233 	struct rc_state* p, *np;
234 	if(!rc) return;
235 	/* but do not close the ports */
236 	listen_list_delete(rc->accept_list);
237 	rc->accept_list = NULL;
238 	/* do close these sockets */
239 	p = rc->busy_list;
240 	while(p) {
241 		np = p->next;
242 		if(p->ssl)
243 			SSL_free(p->ssl);
244 		comm_point_delete(p->c);
245 		free(p);
246 		p = np;
247 	}
248 	rc->busy_list = NULL;
249 	rc->active = 0;
250 	rc->worker = NULL;
251 }
252 
daemon_remote_delete(struct daemon_remote * rc)253 void daemon_remote_delete(struct daemon_remote* rc)
254 {
255 	if(!rc) return;
256 	daemon_remote_clear(rc);
257 	if(rc->ctx) {
258 		SSL_CTX_free(rc->ctx);
259 	}
260 	free(rc);
261 }
262 
263 /**
264  * Add and open a new control port
265  * @param ip: ip str
266  * @param nr: port nr
267  * @param list: list head
268  * @param noproto_is_err: if lack of protocol support is an error.
269  * @param cfg: config with username for chown of unix-sockets.
270  * @return false on failure.
271  */
272 static int
add_open(const char * ip,int nr,struct listen_port ** list,int noproto_is_err,struct config_file * cfg)273 add_open(const char* ip, int nr, struct listen_port** list, int noproto_is_err,
274 	struct config_file* cfg)
275 {
276 	struct addrinfo hints;
277 	struct addrinfo* res;
278 	struct listen_port* n;
279 	int noproto = 0;
280 	int fd, r;
281 	char port[15];
282 	snprintf(port, sizeof(port), "%d", nr);
283 	port[sizeof(port)-1]=0;
284 	memset(&hints, 0, sizeof(hints));
285 	log_assert(ip);
286 
287 	if(ip[0] == '/') {
288 		/* This looks like a local socket */
289 		fd = create_local_accept_sock(ip, &noproto, cfg->use_systemd);
290 		/*
291 		 * Change socket ownership and permissions so users other
292 		 * than root can access it provided they are in the same
293 		 * group as the user we run as.
294 		 */
295 		if(fd != -1) {
296 #ifdef HAVE_CHOWN
297 			chmod(ip, (mode_t)(S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP));
298 			if (cfg->username && cfg->username[0] &&
299 				cfg_uid != (uid_t)-1) {
300 				if(chown(ip, cfg_uid, cfg_gid) == -1)
301 					verbose(VERB_QUERY, "cannot chown %u.%u %s: %s",
302 					  (unsigned)cfg_uid, (unsigned)cfg_gid,
303 					  ip, strerror(errno));
304 			}
305 #else
306 			(void)cfg;
307 #endif
308 		}
309 	} else {
310 		char* s = strchr(ip, '@');
311 		char newif[128];
312 		if(s) {
313 			/* override port with ifspec@port */
314 			int portnr;
315 			if((size_t)(s-ip) >= sizeof(newif)) {
316 				log_err("ifname too long: %s", ip);
317 				return -1;
318 			}
319 			portnr = atoi(s+1);
320 			if(portnr < 0 || 0 == portnr || portnr > 65535) {
321 				log_err("invalid portnumber in control-interface: %s", ip);
322 				return -1;
323 			}
324 			(void)strlcpy(newif, ip, sizeof(newif));
325 			newif[s-ip] = 0;
326 			ip = newif;
327 			snprintf(port, sizeof(port), "%d", portnr);
328 			port[sizeof(port)-1]=0;
329 		}
330 		hints.ai_socktype = SOCK_STREAM;
331 		hints.ai_flags = AI_PASSIVE | AI_NUMERICHOST;
332 		if((r = getaddrinfo(ip, port, &hints, &res)) != 0 || !res) {
333 #ifdef USE_WINSOCK
334 			if(!noproto_is_err && r == EAI_NONAME) {
335 				/* tried to lookup the address as name */
336 				return 1; /* return success, but do nothing */
337 			}
338 #endif /* USE_WINSOCK */
339 			log_err("control interface %s:%s getaddrinfo: %s %s",
340 				ip?ip:"default", port, gai_strerror(r),
341 #ifdef EAI_SYSTEM
342 				r==EAI_SYSTEM?(char*)strerror(errno):""
343 #else
344 				""
345 #endif
346 			);
347 			return 0;
348 		}
349 
350 		/* open fd */
351 		fd = create_tcp_accept_sock(res, 1, &noproto, 0,
352 			cfg->ip_transparent, 0, 0, cfg->ip_freebind,
353 			cfg->use_systemd, cfg->ip_dscp, "unbound-control");
354 		freeaddrinfo(res);
355 	}
356 
357 	if(fd == -1 && noproto) {
358 		if(!noproto_is_err)
359 			return 1; /* return success, but do nothing */
360 		log_err("cannot open control interface %s %d : "
361 			"protocol not supported", ip, nr);
362 		return 0;
363 	}
364 	if(fd == -1) {
365 		log_err("cannot open control interface %s %d", ip, nr);
366 		return 0;
367 	}
368 
369 	/* alloc */
370 	n = (struct listen_port*)calloc(1, sizeof(*n));
371 	if(!n) {
372 		sock_close(fd);
373 		log_err("out of memory");
374 		return 0;
375 	}
376 	n->next = *list;
377 	*list = n;
378 	n->fd = fd;
379 	return 1;
380 }
381 
daemon_remote_open_ports(struct config_file * cfg)382 struct listen_port* daemon_remote_open_ports(struct config_file* cfg)
383 {
384 	struct listen_port* l = NULL;
385 	log_assert(cfg->remote_control_enable && cfg->control_port);
386 	if(cfg->control_ifs.first) {
387 		char** rcif = NULL;
388 		int i, num_rcif = 0;
389 		if(!resolve_interface_names(NULL, 0, cfg->control_ifs.first,
390 			&rcif, &num_rcif)) {
391 			return NULL;
392 		}
393 		for(i=0; i<num_rcif; i++) {
394 			if(!add_open(rcif[i], cfg->control_port, &l, 1, cfg)) {
395 				listening_ports_free(l);
396 				config_del_strarray(rcif, num_rcif);
397 				return NULL;
398 			}
399 		}
400 		config_del_strarray(rcif, num_rcif);
401 	} else {
402 		/* defaults */
403 		if(cfg->do_ip6 &&
404 			!add_open("::1", cfg->control_port, &l, 0, cfg)) {
405 			listening_ports_free(l);
406 			return NULL;
407 		}
408 		if(cfg->do_ip4 &&
409 			!add_open("127.0.0.1", cfg->control_port, &l, 1, cfg)) {
410 			listening_ports_free(l);
411 			return NULL;
412 		}
413 	}
414 	return l;
415 }
416 
417 /** open accept commpoint */
418 static int
accept_open(struct daemon_remote * rc,int fd)419 accept_open(struct daemon_remote* rc, int fd)
420 {
421 	struct listen_list* n = (struct listen_list*)malloc(sizeof(*n));
422 	if(!n) {
423 		log_err("out of memory");
424 		return 0;
425 	}
426 	n->next = rc->accept_list;
427 	rc->accept_list = n;
428 	/* open commpt */
429 	n->com = comm_point_create_raw(rc->worker->base, fd, 0,
430 		&remote_accept_callback, rc);
431 	if(!n->com)
432 		return 0;
433 	/* keep this port open, its fd is kept in the rc portlist */
434 	n->com->do_not_close = 1;
435 	return 1;
436 }
437 
daemon_remote_open_accept(struct daemon_remote * rc,struct listen_port * ports,struct worker * worker)438 int daemon_remote_open_accept(struct daemon_remote* rc,
439 	struct listen_port* ports, struct worker* worker)
440 {
441 	struct listen_port* p;
442 	rc->worker = worker;
443 	for(p = ports; p; p = p->next) {
444 		if(!accept_open(rc, p->fd)) {
445 			log_err("could not create accept comm point");
446 			return 0;
447 		}
448 	}
449 	return 1;
450 }
451 
daemon_remote_stop_accept(struct daemon_remote * rc)452 void daemon_remote_stop_accept(struct daemon_remote* rc)
453 {
454 	struct listen_list* p;
455 	for(p=rc->accept_list; p; p=p->next) {
456 		comm_point_stop_listening(p->com);
457 	}
458 }
459 
daemon_remote_start_accept(struct daemon_remote * rc)460 void daemon_remote_start_accept(struct daemon_remote* rc)
461 {
462 	struct listen_list* p;
463 	for(p=rc->accept_list; p; p=p->next) {
464 		comm_point_start_listening(p->com, -1, -1);
465 	}
466 }
467 
remote_accept_callback(struct comm_point * c,void * arg,int err,struct comm_reply * ATTR_UNUSED (rep))468 int remote_accept_callback(struct comm_point* c, void* arg, int err,
469 	struct comm_reply* ATTR_UNUSED(rep))
470 {
471 	struct daemon_remote* rc = (struct daemon_remote*)arg;
472 	struct sockaddr_storage addr;
473 	socklen_t addrlen;
474 	int newfd;
475 	struct rc_state* n;
476 	if(err != NETEVENT_NOERROR) {
477 		log_err("error %d on remote_accept_callback", err);
478 		return 0;
479 	}
480 	/* perform the accept */
481 	newfd = comm_point_perform_accept(c, &addr, &addrlen);
482 	if(newfd == -1)
483 		return 0;
484 	/* create new commpoint unless we are servicing already */
485 	if(rc->active >= rc->max_active) {
486 		log_warn("drop incoming remote control: too many connections");
487 	close_exit:
488 		sock_close(newfd);
489 		return 0;
490 	}
491 
492 	/* setup commpoint to service the remote control command */
493 	n = (struct rc_state*)calloc(1, sizeof(*n));
494 	if(!n) {
495 		log_err("out of memory");
496 		goto close_exit;
497 	}
498 	n->fd = newfd;
499 	/* start in reading state */
500 	n->c = comm_point_create_raw(rc->worker->base, newfd, 0,
501 		&remote_control_callback, n);
502 	if(!n->c) {
503 		log_err("out of memory");
504 		free(n);
505 		goto close_exit;
506 	}
507 	log_addr(VERB_QUERY, "new control connection from", &addr, addrlen);
508 	n->c->do_not_close = 0;
509 	comm_point_stop_listening(n->c);
510 	comm_point_start_listening(n->c, -1, REMOTE_CONTROL_TCP_TIMEOUT);
511 	memcpy(&n->c->repinfo.remote_addr, &addr, addrlen);
512 	n->c->repinfo.remote_addrlen = addrlen;
513 	if(rc->use_cert) {
514 		n->shake_state = rc_hs_read;
515 		n->ssl = SSL_new(rc->ctx);
516 		if(!n->ssl) {
517 			log_crypto_err("could not SSL_new");
518 			comm_point_delete(n->c);
519 			free(n);
520 			goto close_exit;
521 		}
522 		SSL_set_accept_state(n->ssl);
523 		(void)SSL_set_mode(n->ssl, (long)SSL_MODE_AUTO_RETRY);
524 		if(!SSL_set_fd(n->ssl, newfd)) {
525 			log_crypto_err("could not SSL_set_fd");
526 			SSL_free(n->ssl);
527 			comm_point_delete(n->c);
528 			free(n);
529 			goto close_exit;
530 		}
531 	} else {
532 		n->ssl = NULL;
533 	}
534 
535 	n->rc = rc;
536 	n->next = rc->busy_list;
537 	rc->busy_list = n;
538 	rc->active ++;
539 
540 	/* perform the first nonblocking read already, for windows,
541 	 * so it can return wouldblock. could be faster too. */
542 	(void)remote_control_callback(n->c, n, NETEVENT_NOERROR, NULL);
543 	return 0;
544 }
545 
546 /** delete from list */
547 static void
state_list_remove_elem(struct rc_state ** list,struct comm_point * c)548 state_list_remove_elem(struct rc_state** list, struct comm_point* c)
549 {
550 	while(*list) {
551 		if( (*list)->c == c) {
552 			*list = (*list)->next;
553 			return;
554 		}
555 		list = &(*list)->next;
556 	}
557 }
558 
559 /** decrease active count and remove commpoint from busy list */
560 static void
clean_point(struct daemon_remote * rc,struct rc_state * s)561 clean_point(struct daemon_remote* rc, struct rc_state* s)
562 {
563 	if(!s->rc) {
564 		/* the state has been picked up and moved away */
565 		free(s);
566 		return;
567 	}
568 	state_list_remove_elem(&rc->busy_list, s->c);
569 	rc->active --;
570 	if(s->ssl) {
571 		SSL_shutdown(s->ssl);
572 		SSL_free(s->ssl);
573 	}
574 	comm_point_delete(s->c);
575 	free(s);
576 }
577 
578 int
ssl_print_text(RES * res,const char * text)579 ssl_print_text(RES* res, const char* text)
580 {
581 	int r;
582 	if(!res)
583 		return 0;
584 	if(res->ssl) {
585 		ERR_clear_error();
586 		if((r=SSL_write(res->ssl, text, (int)strlen(text))) <= 0) {
587 			int r2;
588 			if((r2=SSL_get_error(res->ssl, r)) == SSL_ERROR_ZERO_RETURN) {
589 				verbose(VERB_QUERY, "warning, in SSL_write, peer "
590 					"closed connection");
591 				return 0;
592 			}
593 			log_crypto_err_io("could not SSL_write", r2);
594 			return 0;
595 		}
596 	} else {
597 		size_t at = 0;
598 		while(at < strlen(text)) {
599 			ssize_t r = send(res->fd, text+at, strlen(text)-at, 0);
600 			if(r == -1) {
601 				if(errno == EAGAIN || errno == EINTR)
602 					continue;
603 				log_err("could not send: %s",
604 					sock_strerror(errno));
605 				return 0;
606 			}
607 			at += r;
608 		}
609 	}
610 	return 1;
611 }
612 
613 /** print text over the ssl connection */
614 static int
ssl_print_vmsg(RES * ssl,const char * format,va_list args)615 ssl_print_vmsg(RES* ssl, const char* format, va_list args)
616 {
617 	char msg[65535];
618 	vsnprintf(msg, sizeof(msg), format, args);
619 	return ssl_print_text(ssl, msg);
620 }
621 
622 /** printf style printing to the ssl connection */
ssl_printf(RES * ssl,const char * format,...)623 int ssl_printf(RES* ssl, const char* format, ...)
624 {
625 	va_list args;
626 	int ret;
627 	va_start(args, format);
628 	ret = ssl_print_vmsg(ssl, format, args);
629 	va_end(args);
630 	return ret;
631 }
632 
633 int
ssl_read_line(RES * res,char * buf,size_t max)634 ssl_read_line(RES* res, char* buf, size_t max)
635 {
636 	int r;
637 	size_t len = 0;
638 	if(!res)
639 		return 0;
640 	while(len < max) {
641 		if(res->ssl) {
642 			ERR_clear_error();
643 			if((r=SSL_read(res->ssl, buf+len, 1)) <= 0) {
644 				int r2;
645 				if((r2=SSL_get_error(res->ssl, r)) == SSL_ERROR_ZERO_RETURN) {
646 					buf[len] = 0;
647 					return 1;
648 				}
649 				log_crypto_err_io("could not SSL_read", r2);
650 				return 0;
651 			}
652 		} else {
653 			while(1) {
654 				ssize_t rr = recv(res->fd, buf+len, 1, 0);
655 				if(rr <= 0) {
656 					if(rr == 0) {
657 						buf[len] = 0;
658 						return 1;
659 					}
660 					if(errno == EINTR || errno == EAGAIN)
661 						continue;
662 					if(rr < 0) log_err("could not recv: %s",
663 						sock_strerror(errno));
664 					return 0;
665 				}
666 				break;
667 			}
668 		}
669 		if(buf[len] == '\n') {
670 			/* return string without \n */
671 			buf[len] = 0;
672 			return 1;
673 		}
674 		len++;
675 	}
676 	buf[max-1] = 0;
677 	log_err("control line too long (%d): %s", (int)max, buf);
678 	return 0;
679 }
680 
681 /** skip whitespace, return new pointer into string */
682 static char*
skipwhite(char * str)683 skipwhite(char* str)
684 {
685 	/* EOS \0 is not a space */
686 	while( isspace((unsigned char)*str) )
687 		str++;
688 	return str;
689 }
690 
691 /** send the OK to the control client */
send_ok(RES * ssl)692 static void send_ok(RES* ssl)
693 {
694 	(void)ssl_printf(ssl, "ok\n");
695 }
696 
697 /** tell other processes to execute the command */
698 static void
distribute_cmd(struct daemon_remote * rc,RES * ssl,char * cmd)699 distribute_cmd(struct daemon_remote* rc, RES* ssl, char* cmd)
700 {
701 	int i;
702 	if(!cmd || !ssl)
703 		return;
704 	/* skip i=0 which is me */
705 	for(i=1; i<rc->worker->daemon->num; i++) {
706 		worker_send_cmd(rc->worker->daemon->workers[i],
707 			worker_cmd_remote);
708 		if(!tube_write_msg(rc->worker->daemon->workers[i]->cmd,
709 			(uint8_t*)cmd, strlen(cmd)+1, 0)) {
710 			(void)ssl_printf(ssl, "error could not distribute cmd\n");
711 			return;
712 		}
713 	}
714 }
715 
716 /** do the stop command */
717 static void
do_stop(RES * ssl,struct worker * worker)718 do_stop(RES* ssl, struct worker* worker)
719 {
720 	worker->need_to_exit = 1;
721 	comm_base_exit(worker->base);
722 	send_ok(ssl);
723 }
724 
725 /** do the reload command */
726 static void
do_reload(RES * ssl,struct worker * worker,int reuse_cache)727 do_reload(RES* ssl, struct worker* worker, int reuse_cache)
728 {
729 	worker->reuse_cache = reuse_cache;
730 	worker->need_to_exit = 0;
731 	comm_base_exit(worker->base);
732 	send_ok(ssl);
733 }
734 
735 #ifndef THREADS_DISABLED
736 /** parse fast reload command options. */
737 static int
fr_parse_options(RES * ssl,char * arg,int * fr_verb,int * fr_nopause,int * fr_drop_mesh)738 fr_parse_options(RES* ssl, char* arg, int* fr_verb, int* fr_nopause,
739 	int* fr_drop_mesh)
740 {
741 	char* argp = arg;
742 	while(*argp=='+') {
743 		argp++;
744 		while(*argp!=0 && *argp!=' ' && *argp!='\t') {
745 			if(*argp == 'v') {
746 				(*fr_verb)++;
747 			} else if(*argp == 'p') {
748 				(*fr_nopause) = 1;
749 			} else if(*argp == 'd') {
750 				(*fr_drop_mesh) = 1;
751 			} else {
752 				if(!ssl_printf(ssl,
753 					"error: unknown option '+%c'\n",
754 					*argp))
755 					return 0;
756 				return 0;
757 			}
758 			argp++;
759 		}
760 		argp = skipwhite(argp);
761 	}
762 	if(*argp!=0) {
763 		if(!ssl_printf(ssl, "error: unknown option '%s'\n", argp))
764 			return 0;
765 		return 0;
766 	}
767 	return 1;
768 }
769 #endif /* !THREADS_DISABLED */
770 
771 /** do the fast_reload command */
772 static void
do_fast_reload(RES * ssl,struct worker * worker,struct rc_state * s,char * arg)773 do_fast_reload(RES* ssl, struct worker* worker, struct rc_state* s, char* arg)
774 {
775 #ifdef THREADS_DISABLED
776 	if(!ssl_printf(ssl, "error: no threads for fast_reload, compiled without threads.\n"))
777 		return;
778 	(void)worker;
779 	(void)s;
780 	(void)arg;
781 #else
782 	int fr_verb = 0, fr_nopause = 0, fr_drop_mesh = 0;
783 	if(!fr_parse_options(ssl, arg, &fr_verb, &fr_nopause, &fr_drop_mesh))
784 		return;
785 	if(fr_verb >= 1) {
786 		if(!ssl_printf(ssl, "start fast_reload\n"))
787 			return;
788 	}
789 	fast_reload_thread_start(ssl, worker, s, fr_verb, fr_nopause,
790 		fr_drop_mesh);
791 #endif
792 }
793 
794 /** do the verbosity command */
795 static void
do_verbosity(RES * ssl,char * str)796 do_verbosity(RES* ssl, char* str)
797 {
798 	int val = atoi(str);
799 	if(val == 0 && strcmp(str, "0") != 0) {
800 		ssl_printf(ssl, "error in verbosity number syntax: %s\n", str);
801 		return;
802 	}
803 	verbosity = val;
804 	send_ok(ssl);
805 }
806 
807 /** print stats from statinfo */
808 static int
print_stats(RES * ssl,const char * nm,struct ub_stats_info * s)809 print_stats(RES* ssl, const char* nm, struct ub_stats_info* s)
810 {
811 	struct timeval sumwait, avg;
812 	if(!ssl_printf(ssl, "%s.num.queries"SQ"%lu\n", nm,
813 		(unsigned long)s->svr.num_queries)) return 0;
814 	if(!ssl_printf(ssl, "%s.num.queries_ip_ratelimited"SQ"%lu\n", nm,
815 		(unsigned long)s->svr.num_queries_ip_ratelimited)) return 0;
816 	if(!ssl_printf(ssl, "%s.num.queries_cookie_valid"SQ"%lu\n", nm,
817 		(unsigned long)s->svr.num_queries_cookie_valid)) return 0;
818 	if(!ssl_printf(ssl, "%s.num.queries_cookie_client"SQ"%lu\n", nm,
819 		(unsigned long)s->svr.num_queries_cookie_client)) return 0;
820 	if(!ssl_printf(ssl, "%s.num.queries_cookie_invalid"SQ"%lu\n", nm,
821 		(unsigned long)s->svr.num_queries_cookie_invalid)) return 0;
822 	if(!ssl_printf(ssl, "%s.num.queries_discard_timeout"SQ"%lu\n", nm,
823 		(unsigned long)s->svr.num_queries_discard_timeout)) return 0;
824 	if(!ssl_printf(ssl, "%s.num.queries_replyaddr_limit"SQ"%lu\n", nm,
825 		(unsigned long)s->svr.num_queries_replyaddr_limit)) return 0;
826 	if(!ssl_printf(ssl, "%s.num.queries_wait_limit"SQ"%lu\n", nm,
827 		(unsigned long)s->svr.num_queries_wait_limit)) return 0;
828 	if(!ssl_printf(ssl, "%s.num.cachehits"SQ"%lu\n", nm,
829 		(unsigned long)(s->svr.num_queries
830 			- s->svr.num_queries_missed_cache))) return 0;
831 	if(!ssl_printf(ssl, "%s.num.cachemiss"SQ"%lu\n", nm,
832 		(unsigned long)s->svr.num_queries_missed_cache)) return 0;
833 	if(!ssl_printf(ssl, "%s.num.prefetch"SQ"%lu\n", nm,
834 		(unsigned long)s->svr.num_queries_prefetch)) return 0;
835 	if(!ssl_printf(ssl, "%s.num.queries_timed_out"SQ"%lu\n", nm,
836 		(unsigned long)s->svr.num_queries_timed_out)) return 0;
837 	if(!ssl_printf(ssl, "%s.query.queue_time_us.max"SQ"%lu\n", nm,
838 		(unsigned long)s->svr.max_query_time_us)) return 0;
839 	if(!ssl_printf(ssl, "%s.num.expired"SQ"%lu\n", nm,
840 		(unsigned long)s->svr.ans_expired)) return 0;
841 	if(!ssl_printf(ssl, "%s.num.recursivereplies"SQ"%lu\n", nm,
842 		(unsigned long)s->mesh_replies_sent)) return 0;
843 #ifdef USE_DNSCRYPT
844 	if(!ssl_printf(ssl, "%s.num.dnscrypt.crypted"SQ"%lu\n", nm,
845 		(unsigned long)s->svr.num_query_dnscrypt_crypted)) return 0;
846 	if(!ssl_printf(ssl, "%s.num.dnscrypt.cert"SQ"%lu\n", nm,
847 		(unsigned long)s->svr.num_query_dnscrypt_cert)) return 0;
848 	if(!ssl_printf(ssl, "%s.num.dnscrypt.cleartext"SQ"%lu\n", nm,
849 		(unsigned long)s->svr.num_query_dnscrypt_cleartext)) return 0;
850 	if(!ssl_printf(ssl, "%s.num.dnscrypt.malformed"SQ"%lu\n", nm,
851 		(unsigned long)s->svr.num_query_dnscrypt_crypted_malformed)) return 0;
852 #endif
853 	if(!ssl_printf(ssl, "%s.num.dns_error_reports"SQ"%lu\n", nm,
854 		(unsigned long)s->svr.num_dns_error_reports)) return 0;
855 	if(!ssl_printf(ssl, "%s.requestlist.avg"SQ"%g\n", nm,
856 		(s->svr.num_queries_missed_cache+s->svr.num_queries_prefetch)?
857 			(double)s->svr.sum_query_list_size/
858 			(double)(s->svr.num_queries_missed_cache+
859 			s->svr.num_queries_prefetch) : 0.0)) return 0;
860 	if(!ssl_printf(ssl, "%s.requestlist.max"SQ"%lu\n", nm,
861 		(unsigned long)s->svr.max_query_list_size)) return 0;
862 	if(!ssl_printf(ssl, "%s.requestlist.overwritten"SQ"%lu\n", nm,
863 		(unsigned long)s->mesh_jostled)) return 0;
864 	if(!ssl_printf(ssl, "%s.requestlist.exceeded"SQ"%lu\n", nm,
865 		(unsigned long)s->mesh_dropped)) return 0;
866 	if(!ssl_printf(ssl, "%s.requestlist.current.all"SQ"%lu\n", nm,
867 		(unsigned long)s->mesh_num_states)) return 0;
868 	if(!ssl_printf(ssl, "%s.requestlist.current.user"SQ"%lu\n", nm,
869 		(unsigned long)s->mesh_num_reply_states)) return 0;
870 	if(!ssl_printf(ssl, "%s.requestlist.current.replies"SQ"%lu\n", nm,
871 		(unsigned long)s->mesh_num_reply_addrs)) return 0;
872 #ifndef S_SPLINT_S
873 	sumwait.tv_sec = s->mesh_replies_sum_wait_sec;
874 	sumwait.tv_usec = s->mesh_replies_sum_wait_usec;
875 #endif
876 	timeval_divide(&avg, &sumwait, s->mesh_replies_sent);
877 	if(!ssl_printf(ssl, "%s.recursion.time.avg"SQ ARG_LL "d.%6.6d\n", nm,
878 		(long long)avg.tv_sec, (int)avg.tv_usec)) return 0;
879 	if(!ssl_printf(ssl, "%s.recursion.time.median"SQ"%g\n", nm,
880 		s->mesh_time_median)) return 0;
881 	if(!ssl_printf(ssl, "%s.tcpusage"SQ"%lu\n", nm,
882 		(unsigned long)s->svr.tcp_accept_usage)) return 0;
883 	return 1;
884 }
885 
886 /** print stats for one thread */
887 static int
print_thread_stats(RES * ssl,int i,struct ub_stats_info * s)888 print_thread_stats(RES* ssl, int i, struct ub_stats_info* s)
889 {
890 	char nm[32];
891 	snprintf(nm, sizeof(nm), "thread%d", i);
892 	nm[sizeof(nm)-1]=0;
893 	return print_stats(ssl, nm, s);
894 }
895 
896 /** print long number */
897 static int
print_longnum(RES * ssl,const char * desc,size_t x)898 print_longnum(RES* ssl, const char* desc, size_t x)
899 {
900 	if(x > 1024*1024*1024) {
901 		/* more than a Gb */
902 		size_t front = x / (size_t)1000000;
903 		size_t back = x % (size_t)1000000;
904 		return ssl_printf(ssl, "%s%u%6.6u\n", desc,
905 			(unsigned)front, (unsigned)back);
906 	} else {
907 		return ssl_printf(ssl, "%s%lu\n", desc, (unsigned long)x);
908 	}
909 }
910 
911 /** print mem stats */
912 static int
print_mem(RES * ssl,struct worker * worker,struct daemon * daemon,struct ub_stats_info * s)913 print_mem(RES* ssl, struct worker* worker, struct daemon* daemon,
914 	struct ub_stats_info* s)
915 {
916 	size_t msg, rrset, val, iter, respip;
917 #ifdef CLIENT_SUBNET
918 	size_t subnet = 0;
919 #endif /* CLIENT_SUBNET */
920 #ifdef USE_IPSECMOD
921 	size_t ipsecmod = 0;
922 #endif /* USE_IPSECMOD */
923 #ifdef USE_DNSCRYPT
924 	size_t dnscrypt_shared_secret = 0;
925 	size_t dnscrypt_nonce = 0;
926 #endif /* USE_DNSCRYPT */
927 #ifdef WITH_DYNLIBMODULE
928     size_t dynlib = 0;
929 #endif /* WITH_DYNLIBMODULE */
930 	msg = slabhash_get_mem(daemon->env->msg_cache);
931 	rrset = slabhash_get_mem(&daemon->env->rrset_cache->table);
932 	val = mod_get_mem(&worker->env, "validator");
933 	iter = mod_get_mem(&worker->env, "iterator");
934 	respip = mod_get_mem(&worker->env, "respip");
935 #ifdef CLIENT_SUBNET
936 	subnet = mod_get_mem(&worker->env, "subnetcache");
937 #endif /* CLIENT_SUBNET */
938 #ifdef USE_IPSECMOD
939 	ipsecmod = mod_get_mem(&worker->env, "ipsecmod");
940 #endif /* USE_IPSECMOD */
941 #ifdef USE_DNSCRYPT
942 	if(daemon->dnscenv) {
943 		dnscrypt_shared_secret = slabhash_get_mem(
944 			daemon->dnscenv->shared_secrets_cache);
945 		dnscrypt_nonce = slabhash_get_mem(daemon->dnscenv->nonces_cache);
946 	}
947 #endif /* USE_DNSCRYPT */
948 #ifdef WITH_DYNLIBMODULE
949     dynlib = mod_get_mem(&worker->env, "dynlib");
950 #endif /* WITH_DYNLIBMODULE */
951 
952 	if(!print_longnum(ssl, "mem.cache.rrset"SQ, rrset))
953 		return 0;
954 	if(!print_longnum(ssl, "mem.cache.message"SQ, msg))
955 		return 0;
956 	if(!print_longnum(ssl, "mem.mod.iterator"SQ, iter))
957 		return 0;
958 	if(!print_longnum(ssl, "mem.mod.validator"SQ, val))
959 		return 0;
960 	if(!print_longnum(ssl, "mem.mod.respip"SQ, respip))
961 		return 0;
962 #ifdef CLIENT_SUBNET
963 	if(!print_longnum(ssl, "mem.mod.subnet"SQ, subnet))
964 		return 0;
965 #endif /* CLIENT_SUBNET */
966 #ifdef USE_IPSECMOD
967 	if(!print_longnum(ssl, "mem.mod.ipsecmod"SQ, ipsecmod))
968 		return 0;
969 #endif /* USE_IPSECMOD */
970 #ifdef USE_DNSCRYPT
971 	if(!print_longnum(ssl, "mem.cache.dnscrypt_shared_secret"SQ,
972 			dnscrypt_shared_secret))
973 		return 0;
974 	if(!print_longnum(ssl, "mem.cache.dnscrypt_nonce"SQ,
975 			dnscrypt_nonce))
976 		return 0;
977 #endif /* USE_DNSCRYPT */
978 #ifdef WITH_DYNLIBMODULE
979 	if(!print_longnum(ssl, "mem.mod.dynlibmod"SQ, dynlib))
980 		return 0;
981 #endif /* WITH_DYNLIBMODULE */
982 	if(!print_longnum(ssl, "mem.streamwait"SQ,
983 		(size_t)s->svr.mem_stream_wait))
984 		return 0;
985 	if(!print_longnum(ssl, "mem.http.query_buffer"SQ,
986 		(size_t)s->svr.mem_http2_query_buffer))
987 		return 0;
988 	if(!print_longnum(ssl, "mem.http.response_buffer"SQ,
989 		(size_t)s->svr.mem_http2_response_buffer))
990 		return 0;
991 #ifdef HAVE_NGTCP2
992 	if(!print_longnum(ssl, "mem.quic"SQ, (size_t)s->svr.mem_quic))
993 		return 0;
994 #endif /* HAVE_NGTCP2 */
995 	return 1;
996 }
997 
998 /** print uptime stats */
999 static int
print_uptime(RES * ssl,struct worker * worker,int reset)1000 print_uptime(RES* ssl, struct worker* worker, int reset)
1001 {
1002 	struct timeval now = *worker->env.now_tv;
1003 	struct timeval up, dt;
1004 	timeval_subtract(&up, &now, &worker->daemon->time_boot);
1005 	timeval_subtract(&dt, &now, &worker->daemon->time_last_stat);
1006 	if(reset)
1007 		worker->daemon->time_last_stat = now;
1008 	if(!ssl_printf(ssl, "time.now"SQ ARG_LL "d.%6.6d\n",
1009 		(long long)now.tv_sec, (unsigned)now.tv_usec)) return 0;
1010 	if(!ssl_printf(ssl, "time.up"SQ ARG_LL "d.%6.6d\n",
1011 		(long long)up.tv_sec, (unsigned)up.tv_usec)) return 0;
1012 	if(!ssl_printf(ssl, "time.elapsed"SQ ARG_LL "d.%6.6d\n",
1013 		(long long)dt.tv_sec, (unsigned)dt.tv_usec)) return 0;
1014 	return 1;
1015 }
1016 
1017 /** print extended histogram */
1018 static int
print_hist(RES * ssl,struct ub_stats_info * s)1019 print_hist(RES* ssl, struct ub_stats_info* s)
1020 {
1021 	struct timehist* hist;
1022 	size_t i;
1023 	hist = timehist_setup();
1024 	if(!hist) {
1025 		log_err("out of memory");
1026 		return 0;
1027 	}
1028 	timehist_import(hist, s->svr.hist, NUM_BUCKETS_HIST);
1029 	for(i=0; i<hist->num; i++) {
1030 		if(!ssl_printf(ssl,
1031 			"histogram.%6.6d.%6.6d.to.%6.6d.%6.6d=%lu\n",
1032 			(int)hist->buckets[i].lower.tv_sec,
1033 			(int)hist->buckets[i].lower.tv_usec,
1034 			(int)hist->buckets[i].upper.tv_sec,
1035 			(int)hist->buckets[i].upper.tv_usec,
1036 			(unsigned long)hist->buckets[i].count)) {
1037 			timehist_delete(hist);
1038 			return 0;
1039 		}
1040 	}
1041 	timehist_delete(hist);
1042 	return 1;
1043 }
1044 
1045 /** print extended stats */
1046 static int
print_ext(RES * ssl,struct ub_stats_info * s,int inhibit_zero)1047 print_ext(RES* ssl, struct ub_stats_info* s, int inhibit_zero)
1048 {
1049 	int i;
1050 	char nm[32];
1051 	const sldns_rr_descriptor* desc;
1052 	const sldns_lookup_table* lt;
1053 	/* TYPE */
1054 	for(i=0; i<UB_STATS_QTYPE_NUM; i++) {
1055 		if(inhibit_zero && s->svr.qtype[i] == 0)
1056 			continue;
1057 		desc = sldns_rr_descript((uint16_t)i);
1058 		if(desc && desc->_name) {
1059 			snprintf(nm, sizeof(nm), "%s", desc->_name);
1060 		} else if (i == LDNS_RR_TYPE_IXFR) {
1061 			snprintf(nm, sizeof(nm), "IXFR");
1062 		} else if (i == LDNS_RR_TYPE_AXFR) {
1063 			snprintf(nm, sizeof(nm), "AXFR");
1064 		} else if (i == LDNS_RR_TYPE_MAILA) {
1065 			snprintf(nm, sizeof(nm), "MAILA");
1066 		} else if (i == LDNS_RR_TYPE_MAILB) {
1067 			snprintf(nm, sizeof(nm), "MAILB");
1068 		} else if (i == LDNS_RR_TYPE_ANY) {
1069 			snprintf(nm, sizeof(nm), "ANY");
1070 		} else {
1071 			snprintf(nm, sizeof(nm), "TYPE%d", i);
1072 		}
1073 		if(!ssl_printf(ssl, "num.query.type.%s"SQ"%lu\n",
1074 			nm, (unsigned long)s->svr.qtype[i])) return 0;
1075 	}
1076 	if(!inhibit_zero || s->svr.qtype_big) {
1077 		if(!ssl_printf(ssl, "num.query.type.other"SQ"%lu\n",
1078 			(unsigned long)s->svr.qtype_big)) return 0;
1079 	}
1080 	/* CLASS */
1081 	for(i=0; i<UB_STATS_QCLASS_NUM; i++) {
1082 		if(inhibit_zero && s->svr.qclass[i] == 0)
1083 			continue;
1084 		lt = sldns_lookup_by_id(sldns_rr_classes, i);
1085 		if(lt && lt->name) {
1086 			snprintf(nm, sizeof(nm), "%s", lt->name);
1087 		} else {
1088 			snprintf(nm, sizeof(nm), "CLASS%d", i);
1089 		}
1090 		if(!ssl_printf(ssl, "num.query.class.%s"SQ"%lu\n",
1091 			nm, (unsigned long)s->svr.qclass[i])) return 0;
1092 	}
1093 	if(!inhibit_zero || s->svr.qclass_big) {
1094 		if(!ssl_printf(ssl, "num.query.class.other"SQ"%lu\n",
1095 			(unsigned long)s->svr.qclass_big)) return 0;
1096 	}
1097 	/* OPCODE */
1098 	for(i=0; i<UB_STATS_OPCODE_NUM; i++) {
1099 		if(inhibit_zero && s->svr.qopcode[i] == 0)
1100 			continue;
1101 		lt = sldns_lookup_by_id(sldns_opcodes, i);
1102 		if(lt && lt->name) {
1103 			snprintf(nm, sizeof(nm), "%s", lt->name);
1104 		} else {
1105 			snprintf(nm, sizeof(nm), "OPCODE%d", i);
1106 		}
1107 		if(!ssl_printf(ssl, "num.query.opcode.%s"SQ"%lu\n",
1108 			nm, (unsigned long)s->svr.qopcode[i])) return 0;
1109 	}
1110 	/* transport */
1111 	if(!ssl_printf(ssl, "num.query.tcp"SQ"%lu\n",
1112 		(unsigned long)s->svr.qtcp)) return 0;
1113 	if(!ssl_printf(ssl, "num.query.tcpout"SQ"%lu\n",
1114 		(unsigned long)s->svr.qtcp_outgoing)) return 0;
1115 	if(!ssl_printf(ssl, "num.query.udpout"SQ"%lu\n",
1116 		(unsigned long)s->svr.qudp_outgoing)) return 0;
1117 	if(!ssl_printf(ssl, "num.query.tls"SQ"%lu\n",
1118 		(unsigned long)s->svr.qtls)) return 0;
1119 	if(!ssl_printf(ssl, "num.query.tls.resume"SQ"%lu\n",
1120 		(unsigned long)s->svr.qtls_resume)) return 0;
1121 	if(!ssl_printf(ssl, "num.query.ipv6"SQ"%lu\n",
1122 		(unsigned long)s->svr.qipv6)) return 0;
1123 	if(!ssl_printf(ssl, "num.query.https"SQ"%lu\n",
1124 		(unsigned long)s->svr.qhttps)) return 0;
1125 #ifdef HAVE_NGTCP2
1126 	if(!ssl_printf(ssl, "num.query.quic"SQ"%lu\n",
1127 		(unsigned long)s->svr.qquic)) return 0;
1128 #endif /* HAVE_NGTCP2 */
1129 	/* flags */
1130 	if(!ssl_printf(ssl, "num.query.flags.QR"SQ"%lu\n",
1131 		(unsigned long)s->svr.qbit_QR)) return 0;
1132 	if(!ssl_printf(ssl, "num.query.flags.AA"SQ"%lu\n",
1133 		(unsigned long)s->svr.qbit_AA)) return 0;
1134 	if(!ssl_printf(ssl, "num.query.flags.TC"SQ"%lu\n",
1135 		(unsigned long)s->svr.qbit_TC)) return 0;
1136 	if(!ssl_printf(ssl, "num.query.flags.RD"SQ"%lu\n",
1137 		(unsigned long)s->svr.qbit_RD)) return 0;
1138 	if(!ssl_printf(ssl, "num.query.flags.RA"SQ"%lu\n",
1139 		(unsigned long)s->svr.qbit_RA)) return 0;
1140 	if(!ssl_printf(ssl, "num.query.flags.Z"SQ"%lu\n",
1141 		(unsigned long)s->svr.qbit_Z)) return 0;
1142 	if(!ssl_printf(ssl, "num.query.flags.AD"SQ"%lu\n",
1143 		(unsigned long)s->svr.qbit_AD)) return 0;
1144 	if(!ssl_printf(ssl, "num.query.flags.CD"SQ"%lu\n",
1145 		(unsigned long)s->svr.qbit_CD)) return 0;
1146 	if(!ssl_printf(ssl, "num.query.edns.present"SQ"%lu\n",
1147 		(unsigned long)s->svr.qEDNS)) return 0;
1148 	if(!ssl_printf(ssl, "num.query.edns.DO"SQ"%lu\n",
1149 		(unsigned long)s->svr.qEDNS_DO)) return 0;
1150 
1151 	/* RCODE */
1152 	for(i=0; i<UB_STATS_RCODE_NUM; i++) {
1153 		/* Always include RCODEs 0-5 */
1154 		if(inhibit_zero && i > LDNS_RCODE_REFUSED && s->svr.ans_rcode[i] == 0)
1155 			continue;
1156 		lt = sldns_lookup_by_id(sldns_rcodes, i);
1157 		if(lt && lt->name) {
1158 			snprintf(nm, sizeof(nm), "%s", lt->name);
1159 		} else {
1160 			snprintf(nm, sizeof(nm), "RCODE%d", i);
1161 		}
1162 		if(!ssl_printf(ssl, "num.answer.rcode.%s"SQ"%lu\n",
1163 			nm, (unsigned long)s->svr.ans_rcode[i])) return 0;
1164 	}
1165 	if(!inhibit_zero || s->svr.ans_rcode_nodata) {
1166 		if(!ssl_printf(ssl, "num.answer.rcode.nodata"SQ"%lu\n",
1167 			(unsigned long)s->svr.ans_rcode_nodata)) return 0;
1168 	}
1169 	/* iteration */
1170 	if(!ssl_printf(ssl, "num.query.ratelimited"SQ"%lu\n",
1171 		(unsigned long)s->svr.queries_ratelimited)) return 0;
1172 	/* validation */
1173 	if(!ssl_printf(ssl, "num.answer.secure"SQ"%lu\n",
1174 		(unsigned long)s->svr.ans_secure)) return 0;
1175 	if(!ssl_printf(ssl, "num.answer.bogus"SQ"%lu\n",
1176 		(unsigned long)s->svr.ans_bogus)) return 0;
1177 	if(!ssl_printf(ssl, "num.rrset.bogus"SQ"%lu\n",
1178 		(unsigned long)s->svr.rrset_bogus)) return 0;
1179 	if(!ssl_printf(ssl, "num.valops"SQ"%lu\n",
1180 		(unsigned long)s->svr.val_ops)) return 0;
1181 	if(!ssl_printf(ssl, "num.query.aggressive.NOERROR"SQ"%lu\n",
1182 		(unsigned long)s->svr.num_neg_cache_noerror)) return 0;
1183 	if(!ssl_printf(ssl, "num.query.aggressive.NXDOMAIN"SQ"%lu\n",
1184 		(unsigned long)s->svr.num_neg_cache_nxdomain)) return 0;
1185 	/* threat detection */
1186 	if(!ssl_printf(ssl, "unwanted.queries"SQ"%lu\n",
1187 		(unsigned long)s->svr.unwanted_queries)) return 0;
1188 	if(!ssl_printf(ssl, "unwanted.replies"SQ"%lu\n",
1189 		(unsigned long)s->svr.unwanted_replies)) return 0;
1190 	/* cache counts */
1191 	if(!ssl_printf(ssl, "msg.cache.count"SQ"%u\n",
1192 		(unsigned)s->svr.msg_cache_count)) return 0;
1193 	if(!ssl_printf(ssl, "rrset.cache.count"SQ"%u\n",
1194 		(unsigned)s->svr.rrset_cache_count)) return 0;
1195 	if(!ssl_printf(ssl, "infra.cache.count"SQ"%u\n",
1196 		(unsigned)s->svr.infra_cache_count)) return 0;
1197 	if(!ssl_printf(ssl, "key.cache.count"SQ"%u\n",
1198 		(unsigned)s->svr.key_cache_count)) return 0;
1199 	/* max collisions */
1200 	if(!ssl_printf(ssl, "msg.cache.max_collisions"SQ"%u\n",
1201 		(unsigned)s->svr.msg_cache_max_collisions)) return 0;
1202 	if(!ssl_printf(ssl, "rrset.cache.max_collisions"SQ"%u\n",
1203 		(unsigned)s->svr.rrset_cache_max_collisions)) return 0;
1204 	/* applied RPZ actions */
1205 	for(i=0; i<UB_STATS_RPZ_ACTION_NUM; i++) {
1206 		if(i == RPZ_NO_OVERRIDE_ACTION)
1207 			continue;
1208 		if(inhibit_zero && s->svr.rpz_action[i] == 0)
1209 			continue;
1210 		if(!ssl_printf(ssl, "num.rpz.action.%s"SQ"%lu\n",
1211 			rpz_action_to_string(i),
1212 			(unsigned long)s->svr.rpz_action[i])) return 0;
1213 	}
1214 #ifdef USE_DNSCRYPT
1215 	if(!ssl_printf(ssl, "dnscrypt_shared_secret.cache.count"SQ"%u\n",
1216 		(unsigned)s->svr.shared_secret_cache_count)) return 0;
1217 	if(!ssl_printf(ssl, "dnscrypt_nonce.cache.count"SQ"%u\n",
1218 		(unsigned)s->svr.nonce_cache_count)) return 0;
1219 	if(!ssl_printf(ssl, "num.query.dnscrypt.shared_secret.cachemiss"SQ"%lu\n",
1220 		(unsigned long)s->svr.num_query_dnscrypt_secret_missed_cache)) return 0;
1221 	if(!ssl_printf(ssl, "num.query.dnscrypt.replay"SQ"%lu\n",
1222 		(unsigned long)s->svr.num_query_dnscrypt_replay)) return 0;
1223 #endif /* USE_DNSCRYPT */
1224 	if(!ssl_printf(ssl, "num.query.authzone.up"SQ"%lu\n",
1225 		(unsigned long)s->svr.num_query_authzone_up)) return 0;
1226 	if(!ssl_printf(ssl, "num.query.authzone.down"SQ"%lu\n",
1227 		(unsigned long)s->svr.num_query_authzone_down)) return 0;
1228 #ifdef CLIENT_SUBNET
1229 	if(!ssl_printf(ssl, "num.query.subnet"SQ"%lu\n",
1230 		(unsigned long)s->svr.num_query_subnet)) return 0;
1231 	if(!ssl_printf(ssl, "num.query.subnet_cache"SQ"%lu\n",
1232 		(unsigned long)s->svr.num_query_subnet_cache)) return 0;
1233 #endif /* CLIENT_SUBNET */
1234 #ifdef USE_CACHEDB
1235 	if(!ssl_printf(ssl, "num.query.cachedb"SQ"%lu\n",
1236 		(unsigned long)s->svr.num_query_cachedb)) return 0;
1237 #endif /* USE_CACHEDB */
1238 	return 1;
1239 }
1240 
1241 /** do the stats command */
1242 static void
do_stats(RES * ssl,struct worker * worker,int reset)1243 do_stats(RES* ssl, struct worker* worker, int reset)
1244 {
1245 	struct daemon* daemon = worker->daemon;
1246 	struct ub_stats_info total;
1247 	struct ub_stats_info s;
1248 	int i;
1249 	memset(&total, 0, sizeof(total));
1250 	log_assert(daemon->num > 0);
1251 	/* gather all thread statistics in one place */
1252 	for(i=0; i<daemon->num; i++) {
1253 		server_stats_obtain(worker, daemon->workers[i], &s, reset);
1254 		if(!print_thread_stats(ssl, i, &s))
1255 			return;
1256 		if(i == 0)
1257 			total = s;
1258 		else	server_stats_add(&total, &s);
1259 	}
1260 	/* print the thread statistics */
1261 	total.mesh_time_median /= (double)daemon->num;
1262 	if(!print_stats(ssl, "total", &total))
1263 		return;
1264 	if(!print_uptime(ssl, worker, reset))
1265 		return;
1266 	if(daemon->cfg->stat_extended) {
1267 		if(!print_mem(ssl, worker, daemon, &total))
1268 			return;
1269 		if(!print_hist(ssl, &total))
1270 			return;
1271 		if(!print_ext(ssl, &total, daemon->cfg->stat_inhibit_zero))
1272 			return;
1273 	}
1274 }
1275 
1276 /** parse commandline argument domain name */
1277 static int
parse_arg_name(RES * ssl,char * str,uint8_t ** res,size_t * len,int * labs)1278 parse_arg_name(RES* ssl, char* str, uint8_t** res, size_t* len, int* labs)
1279 {
1280 	uint8_t nm[LDNS_MAX_DOMAINLEN+1];
1281 	size_t nmlen = sizeof(nm);
1282 	int status;
1283 	*res = NULL;
1284 	*len = 0;
1285 	*labs = 0;
1286 	if(str[0] == '\0') {
1287 		ssl_printf(ssl, "error: this option requires a domain name\n");
1288 		return 0;
1289 	}
1290 	status = sldns_str2wire_dname_buf(str, nm, &nmlen);
1291 	if(status != 0) {
1292 		ssl_printf(ssl, "error cannot parse name %s at %d: %s\n", str,
1293 			LDNS_WIREPARSE_OFFSET(status),
1294 			sldns_get_errorstr_parse(status));
1295 		return 0;
1296 	}
1297 	*res = memdup(nm, nmlen);
1298 	if(!*res) {
1299 		ssl_printf(ssl, "error out of memory\n");
1300 		return 0;
1301 	}
1302 	*labs = dname_count_size_labels(*res, len);
1303 	return 1;
1304 }
1305 
1306 /** find second argument, modifies string */
1307 static int
find_arg2(RES * ssl,char * arg,char ** arg2)1308 find_arg2(RES* ssl, char* arg, char** arg2)
1309 {
1310 	char* as = strchr(arg, ' ');
1311 	char* at = strchr(arg, '\t');
1312 	if(as && at) {
1313 		if(at < as)
1314 			as = at;
1315 		as[0]=0;
1316 		*arg2 = skipwhite(as+1);
1317 	} else if(as) {
1318 		as[0]=0;
1319 		*arg2 = skipwhite(as+1);
1320 	} else if(at) {
1321 		at[0]=0;
1322 		*arg2 = skipwhite(at+1);
1323 	} else {
1324 		ssl_printf(ssl, "error could not find next argument "
1325 			"after %s\n", arg);
1326 		return 0;
1327 	}
1328 	return 1;
1329 }
1330 
1331 /** Add a new zone */
1332 static int
perform_zone_add(RES * ssl,struct local_zones * zones,char * arg)1333 perform_zone_add(RES* ssl, struct local_zones* zones, char* arg)
1334 {
1335 	uint8_t* nm;
1336 	int nmlabs;
1337 	size_t nmlen;
1338 	char* arg2;
1339 	enum localzone_type t;
1340 	struct local_zone* z;
1341 	if(!find_arg2(ssl, arg, &arg2))
1342 		return 0;
1343 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
1344 		return 0;
1345 	if(!local_zone_str2type(arg2, &t)) {
1346 		ssl_printf(ssl, "error not a zone type. %s\n", arg2);
1347 		free(nm);
1348 		return 0;
1349 	}
1350 	lock_rw_wrlock(&zones->lock);
1351 	if((z=local_zones_find(zones, nm, nmlen,
1352 		nmlabs, LDNS_RR_CLASS_IN))) {
1353 		/* already present in tree */
1354 		lock_rw_wrlock(&z->lock);
1355 		z->type = t; /* update type anyway */
1356 		lock_rw_unlock(&z->lock);
1357 		free(nm);
1358 		lock_rw_unlock(&zones->lock);
1359 		return 1;
1360 	}
1361 	if(!local_zones_add_zone(zones, nm, nmlen,
1362 		nmlabs, LDNS_RR_CLASS_IN, t)) {
1363 		lock_rw_unlock(&zones->lock);
1364 		ssl_printf(ssl, "error out of memory\n");
1365 		return 0;
1366 	}
1367 	lock_rw_unlock(&zones->lock);
1368 	return 1;
1369 }
1370 
1371 /** Do the local_zone command */
1372 static void
do_zone_add(RES * ssl,struct local_zones * zones,char * arg)1373 do_zone_add(RES* ssl, struct local_zones* zones, char* arg)
1374 {
1375 	if(!perform_zone_add(ssl, zones, arg))
1376 		return;
1377 	send_ok(ssl);
1378 }
1379 
1380 /** Do the local_zones command */
1381 static void
do_zones_add(struct daemon_remote * rc,RES * ssl,struct worker * worker)1382 do_zones_add(struct daemon_remote* rc, RES* ssl, struct worker* worker)
1383 {
1384 	char buf[MAX_CMD_STRLINE + MAX_STDIN_STRLINE] = "local_zone ";
1385 	int num = 0;
1386 	size_t cmd_len = strlen(buf);
1387 	while(ssl_read_line(ssl, buf+cmd_len, MAX_STDIN_STRLINE)) {
1388 		if(buf[0+cmd_len] == 0 ||
1389 			(buf[0+cmd_len] == 0x04 && buf[1+cmd_len] == 0))
1390 			break; /* zero byte line or end of transmission */
1391 #ifdef THREADS_DISABLED
1392 		/* distribute single item command */
1393 		if(rc) distribute_cmd(rc, ssl, buf);
1394 #else
1395 		(void)rc; /* unused */
1396 #endif
1397 		if(!perform_zone_add(ssl, worker->daemon->local_zones,
1398 			buf+cmd_len)) {
1399 			if(!ssl_printf(ssl, "error for input line: %s\n",
1400 				buf+cmd_len))
1401 				return;
1402 		}
1403 		else	num++;
1404 	}
1405 	(void)ssl_printf(ssl, "added %d zones\n", num);
1406 }
1407 
1408 /** Remove a zone */
1409 static int
perform_zone_remove(RES * ssl,struct local_zones * zones,char * arg)1410 perform_zone_remove(RES* ssl, struct local_zones* zones, char* arg)
1411 {
1412 	uint8_t* nm;
1413 	int nmlabs;
1414 	size_t nmlen;
1415 	struct local_zone* z;
1416 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
1417 		return 0;
1418 	lock_rw_wrlock(&zones->lock);
1419 	if((z=local_zones_find(zones, nm, nmlen,
1420 		nmlabs, LDNS_RR_CLASS_IN))) {
1421 		/* present in tree */
1422 		local_zones_del_zone(zones, z);
1423 	}
1424 	lock_rw_unlock(&zones->lock);
1425 	free(nm);
1426 	return 1;
1427 }
1428 
1429 /** Do the local_zone_remove command */
1430 static void
do_zone_remove(RES * ssl,struct local_zones * zones,char * arg)1431 do_zone_remove(RES* ssl, struct local_zones* zones, char* arg)
1432 {
1433 	if(!perform_zone_remove(ssl, zones, arg))
1434 		return;
1435 	send_ok(ssl);
1436 }
1437 
1438 /** Do the local_zones_remove command */
1439 static void
do_zones_remove(struct daemon_remote * rc,RES * ssl,struct worker * worker)1440 do_zones_remove(struct daemon_remote* rc, RES* ssl, struct worker* worker)
1441 {
1442 	char buf[MAX_CMD_STRLINE + MAX_STDIN_STRLINE] = "local_zone_remove ";
1443 	int num = 0;
1444 	size_t cmd_len = strlen(buf);
1445 	while(ssl_read_line(ssl, buf+cmd_len, MAX_STDIN_STRLINE)) {
1446 		if(buf[0+cmd_len] == 0 ||
1447 			(buf[0+cmd_len] == 0x04 && buf[1+cmd_len] == 0))
1448 			break; /* zero byte line or end of transmission */
1449 #ifdef THREADS_DISABLED
1450 		/* distribute single item command */
1451 		if(rc) distribute_cmd(rc, ssl, buf);
1452 #else
1453 		(void)rc; /* unused */
1454 #endif
1455 		if(!perform_zone_remove(ssl, worker->daemon->local_zones,
1456 			buf+cmd_len)) {
1457 			if(!ssl_printf(ssl, "error for input line: %s\n",
1458 				buf+cmd_len))
1459 				return;
1460 		}
1461 		else	num++;
1462 	}
1463 	(void)ssl_printf(ssl, "removed %d zones\n", num);
1464 }
1465 
1466 /** check syntax of newly added RR */
1467 static int
check_RR_syntax(RES * ssl,char * str,int line)1468 check_RR_syntax(RES* ssl, char* str, int line)
1469 {
1470 	uint8_t rr[LDNS_RR_BUF_SIZE];
1471 	size_t len = sizeof(rr), dname_len = 0;
1472 	int s = sldns_str2wire_rr_buf(str, rr, &len, &dname_len, 3600,
1473 		NULL, 0, NULL, 0);
1474 	if(s != 0) {
1475 		char linestr[32];
1476 		if(line == 0)
1477 			linestr[0]=0;
1478 		else 	snprintf(linestr, sizeof(linestr), "line %d ", line);
1479 		if(!ssl_printf(ssl, "error parsing local-data at %sposition %d '%s': %s\n",
1480 			linestr, LDNS_WIREPARSE_OFFSET(s), str,
1481 			sldns_get_errorstr_parse(s)))
1482 			return 0;
1483 		return 0;
1484 	}
1485 	return 1;
1486 }
1487 
1488 /** Add new RR data */
1489 static int
perform_data_add(RES * ssl,struct local_zones * zones,char * arg,int line)1490 perform_data_add(RES* ssl, struct local_zones* zones, char* arg, int line)
1491 {
1492 	if(!check_RR_syntax(ssl, arg, line)) {
1493 		return 0;
1494 	}
1495 	if(!local_zones_add_RR(zones, arg)) {
1496 		ssl_printf(ssl,"error in syntax or out of memory, %s\n", arg);
1497 		return 0;
1498 	}
1499 	return 1;
1500 }
1501 
1502 /** Do the local_data command */
1503 static void
do_data_add(RES * ssl,struct local_zones * zones,char * arg)1504 do_data_add(RES* ssl, struct local_zones* zones, char* arg)
1505 {
1506 	if(!perform_data_add(ssl, zones, arg, 0))
1507 		return;
1508 	send_ok(ssl);
1509 }
1510 
1511 /** Do the local_datas command */
1512 static void
do_datas_add(struct daemon_remote * rc,RES * ssl,struct worker * worker)1513 do_datas_add(struct daemon_remote* rc, RES* ssl, struct worker* worker)
1514 {
1515 	char buf[MAX_CMD_STRLINE + MAX_STDIN_STRLINE] = "local_data ";
1516 	int num = 0, line = 0;
1517 	size_t cmd_len = strlen(buf);
1518 	while(ssl_read_line(ssl, buf+cmd_len, MAX_STDIN_STRLINE)) {
1519 		if(buf[0+cmd_len] == 0 ||
1520 			(buf[0+cmd_len] == 0x04 && buf[1+cmd_len] == 0))
1521 			break; /* zero byte line or end of transmission */
1522 #ifdef THREADS_DISABLED
1523 		/* distribute single item command */
1524 		if(rc) distribute_cmd(rc, ssl, buf);
1525 #else
1526 		(void)rc; /* unused */
1527 #endif
1528 		line++;
1529 		if(perform_data_add(ssl, worker->daemon->local_zones,
1530 			buf+cmd_len, line))
1531 			num++;
1532 	}
1533 	(void)ssl_printf(ssl, "added %d datas\n", num);
1534 }
1535 
1536 /** Remove RR data */
1537 static int
perform_data_remove(RES * ssl,struct local_zones * zones,char * arg)1538 perform_data_remove(RES* ssl, struct local_zones* zones, char* arg)
1539 {
1540 	uint8_t* nm;
1541 	int nmlabs;
1542 	size_t nmlen;
1543 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
1544 		return 0;
1545 	local_zones_del_data(zones, nm,
1546 		nmlen, nmlabs, LDNS_RR_CLASS_IN);
1547 	free(nm);
1548 	return 1;
1549 }
1550 
1551 /** Do the local_data_remove command */
1552 static void
do_data_remove(RES * ssl,struct local_zones * zones,char * arg)1553 do_data_remove(RES* ssl, struct local_zones* zones, char* arg)
1554 {
1555 	if(!perform_data_remove(ssl, zones, arg))
1556 		return;
1557 	send_ok(ssl);
1558 }
1559 
1560 /** Do the local_datas_remove command */
1561 static void
do_datas_remove(struct daemon_remote * rc,RES * ssl,struct worker * worker)1562 do_datas_remove(struct daemon_remote* rc, RES* ssl, struct worker* worker)
1563 {
1564 	char buf[MAX_CMD_STRLINE + MAX_STDIN_STRLINE] = "local_data_remove ";
1565 	int num = 0;
1566 	size_t cmd_len = strlen(buf);
1567 	while(ssl_read_line(ssl, buf+cmd_len, MAX_STDIN_STRLINE)) {
1568 		if(buf[0+cmd_len] == 0 ||
1569 			(buf[0+cmd_len] == 0x04 && buf[1+cmd_len] == 0))
1570 			break; /* zero byte line or end of transmission */
1571 #ifdef THREADS_DISABLED
1572 		/* distribute single item command */
1573 		if(rc) distribute_cmd(rc, ssl, buf);
1574 #else
1575 		(void)rc; /* unused */
1576 #endif
1577 		if(!perform_data_remove(ssl, worker->daemon->local_zones,
1578 			buf+cmd_len)) {
1579 			if(!ssl_printf(ssl, "error for input line: %s\n",
1580 				buf+cmd_len))
1581 				return;
1582 		}
1583 		else	num++;
1584 	}
1585 	(void)ssl_printf(ssl, "removed %d datas\n", num);
1586 }
1587 
1588 /** Add a new zone to view */
1589 static void
do_view_zone_add(RES * ssl,struct worker * worker,char * arg)1590 do_view_zone_add(RES* ssl, struct worker* worker, char* arg)
1591 {
1592 	char* arg2;
1593 	struct view* v;
1594 	if(!find_arg2(ssl, arg, &arg2))
1595 		return;
1596 	v = views_find_view(worker->env.views, arg, 1 /* get write lock*/);
1597 	if(!v) {
1598 		ssl_printf(ssl,"no view with name: %s\n", arg);
1599 		return;
1600 	}
1601 	if(!v->local_zones) {
1602 		if(!(v->local_zones = local_zones_create())){
1603 			lock_rw_unlock(&v->lock);
1604 			ssl_printf(ssl,"error out of memory\n");
1605 			return;
1606 		}
1607 		if(!v->isfirst) {
1608 			/* Global local-zone is not used for this view,
1609 			 * therefore add defaults to this view-specific
1610 			 * local-zone. */
1611 			struct config_file lz_cfg;
1612 			memset(&lz_cfg, 0, sizeof(lz_cfg));
1613 			local_zone_enter_defaults(v->local_zones, &lz_cfg);
1614 		}
1615 	}
1616 	do_zone_add(ssl, v->local_zones, arg2);
1617 	lock_rw_unlock(&v->lock);
1618 }
1619 
1620 /** Remove a zone from view */
1621 static void
do_view_zone_remove(RES * ssl,struct worker * worker,char * arg)1622 do_view_zone_remove(RES* ssl, struct worker* worker, char* arg)
1623 {
1624 	char* arg2;
1625 	struct view* v;
1626 	if(!find_arg2(ssl, arg, &arg2))
1627 		return;
1628 	v = views_find_view(worker->env.views, arg, 1 /* get write lock*/);
1629 	if(!v) {
1630 		ssl_printf(ssl,"no view with name: %s\n", arg);
1631 		return;
1632 	}
1633 	if(!v->local_zones) {
1634 		lock_rw_unlock(&v->lock);
1635 		send_ok(ssl);
1636 		return;
1637 	}
1638 	do_zone_remove(ssl, v->local_zones, arg2);
1639 	lock_rw_unlock(&v->lock);
1640 }
1641 
1642 /** Add new RR data to view */
1643 static void
do_view_data_add(RES * ssl,struct worker * worker,char * arg)1644 do_view_data_add(RES* ssl, struct worker* worker, char* arg)
1645 {
1646 	char* arg2;
1647 	struct view* v;
1648 	if(!find_arg2(ssl, arg, &arg2))
1649 		return;
1650 	v = views_find_view(worker->env.views, arg, 1 /* get write lock*/);
1651 	if(!v) {
1652 		ssl_printf(ssl,"no view with name: %s\n", arg);
1653 		return;
1654 	}
1655 	if(!v->local_zones) {
1656 		if(!(v->local_zones = local_zones_create())){
1657 			lock_rw_unlock(&v->lock);
1658 			ssl_printf(ssl,"error out of memory\n");
1659 			return;
1660 		}
1661 	}
1662 	do_data_add(ssl, v->local_zones, arg2);
1663 	lock_rw_unlock(&v->lock);
1664 }
1665 
1666 /** Add new RR data from stdin to view */
1667 static void
do_view_datas_add(struct daemon_remote * rc,RES * ssl,struct worker * worker,char * arg)1668 do_view_datas_add(struct daemon_remote* rc, RES* ssl, struct worker* worker,
1669 	char* arg)
1670 {
1671 	struct view* v;
1672 	char buf[MAX_CMD_STRLINE + MAX_STDIN_STRLINE] = "view_local_data ";
1673 	size_t cmd_len;
1674 	int num = 0, line = 0;
1675 	v = views_find_view(worker->env.views, arg, 1 /* get write lock*/);
1676 	if(!v) {
1677 		ssl_printf(ssl,"no view with name: %s\n", arg);
1678 		return;
1679 	}
1680 	if(!v->local_zones) {
1681 		if(!(v->local_zones = local_zones_create())){
1682 			lock_rw_unlock(&v->lock);
1683 			ssl_printf(ssl,"error out of memory\n");
1684 			return;
1685 		}
1686 	}
1687 	/* put the view name in the command buf */
1688 	(void)snprintf(buf+strlen(buf), sizeof(buf)-strlen(buf), "%s ", arg);
1689 	cmd_len = strlen(buf);
1690 	while(ssl_read_line(ssl, buf+cmd_len, MAX_STDIN_STRLINE)) {
1691 		if(buf[0+cmd_len] == 0 ||
1692 			(buf[0+cmd_len] == 0x04 && buf[1+cmd_len] == 0))
1693 			break; /* zero byte line or end of transmission */
1694 #ifdef THREADS_DISABLED
1695 		/* distribute single item command */
1696 		if(rc) distribute_cmd(rc, ssl, buf);
1697 #else
1698 		(void)rc; /* unused */
1699 #endif
1700 		line++;
1701 		if(perform_data_add(ssl, v->local_zones, buf+cmd_len, line))
1702 			num++;
1703 	}
1704 	lock_rw_unlock(&v->lock);
1705 	(void)ssl_printf(ssl, "added %d datas\n", num);
1706 }
1707 
1708 /** Remove RR data from view */
1709 static void
do_view_data_remove(RES * ssl,struct worker * worker,char * arg)1710 do_view_data_remove(RES* ssl, struct worker* worker, char* arg)
1711 {
1712 	char* arg2;
1713 	struct view* v;
1714 	if(!find_arg2(ssl, arg, &arg2))
1715 		return;
1716 	v = views_find_view(worker->env.views, arg, 1 /* get write lock*/);
1717 	if(!v) {
1718 		ssl_printf(ssl,"no view with name: %s\n", arg);
1719 		return;
1720 	}
1721 	if(!v->local_zones) {
1722 		lock_rw_unlock(&v->lock);
1723 		send_ok(ssl);
1724 		return;
1725 	}
1726 	do_data_remove(ssl, v->local_zones, arg2);
1727 	lock_rw_unlock(&v->lock);
1728 }
1729 
1730 /** Remove RR data from stdin from view */
1731 static void
do_view_datas_remove(struct daemon_remote * rc,RES * ssl,struct worker * worker,char * arg)1732 do_view_datas_remove(struct daemon_remote* rc, RES* ssl, struct worker* worker,
1733 	char* arg)
1734 {
1735 	struct view* v;
1736 	char buf[MAX_CMD_STRLINE + MAX_STDIN_STRLINE] = "view_local_data_remove ";
1737 	int num = 0;
1738 	size_t cmd_len;
1739 	v = views_find_view(worker->env.views, arg, 1 /* get write lock*/);
1740 	if(!v) {
1741 		ssl_printf(ssl,"no view with name: %s\n", arg);
1742 		return;
1743 	}
1744 	if(!v->local_zones){
1745 		lock_rw_unlock(&v->lock);
1746 		ssl_printf(ssl, "removed 0 datas\n");
1747 		return;
1748 	}
1749 	/* put the view name in the command buf */
1750 	(void)snprintf(buf+strlen(buf), sizeof(buf)-strlen(buf), "%s ", arg);
1751 	cmd_len = strlen(buf);
1752 	while(ssl_read_line(ssl, buf+cmd_len, MAX_STDIN_STRLINE)) {
1753 		if(buf[0+cmd_len] == 0 ||
1754 			(buf[0+cmd_len] == 0x04 && buf[1+cmd_len] == 0))
1755 			break; /* zero byte line or end of transmission */
1756 #ifdef THREADS_DISABLED
1757 		/* distribute single item command */
1758 		if(rc) distribute_cmd(rc, ssl, buf);
1759 #else
1760 		(void)rc; /* unused */
1761 #endif
1762 		if(!perform_data_remove(ssl, v->local_zones, buf+cmd_len)) {
1763 			if(!ssl_printf(ssl, "error for input line: %s\n",
1764 				buf+cmd_len))
1765 				return;
1766 		}
1767 		else	num++;
1768 	}
1769 	lock_rw_unlock(&v->lock);
1770 	(void)ssl_printf(ssl, "removed %d datas\n", num);
1771 }
1772 
1773 /** information for the domain search */
1774 struct cache_lookup_info {
1775 	/** The connection to print on. */
1776 	RES* ssl;
1777 	/** The worker. */
1778 	struct worker* worker;
1779 	/** The domain, in wireformat. */
1780 	uint8_t* nm;
1781 	/** The length of nm. */
1782 	size_t nmlen;
1783 };
1784 
1785 #ifdef CLIENT_SUBNET
1786 static void addrtree_traverse_visit_node(struct addrnode* n, addrkey_t* addr,
1787 	size_t addr_size, int is_ipv6, time_t now, struct query_info* q,
1788 	void (*func)(struct query_info*, struct reply_info*, addrkey_t*,
1789 		size_t, int, addrlen_t, int, time_t, void*), void* arg);
1790 
1791 /** Lookup in subnet addrtree */
1792 static void
cache_lookup_subnet_addrnode(struct query_info * q,struct reply_info * d,addrkey_t * addr,size_t addr_size,int is_ipv6,addrlen_t scope,int only_match_scope_zero,time_t ttl,void * arg)1793 cache_lookup_subnet_addrnode(struct query_info* q, struct reply_info* d,
1794 	addrkey_t* addr, size_t addr_size, int is_ipv6, addrlen_t scope,
1795 	int only_match_scope_zero, time_t ttl, void* arg)
1796 {
1797 	size_t i;
1798 	char s[65535], tp[32], cl[32], rc[32], fg[32], astr[64];
1799 	struct cache_lookup_info* inf = (struct cache_lookup_info*)arg;
1800 	if(is_ipv6) {
1801 		if(addr_size < 16 || inet_ntop(AF_INET6, addr, astr,
1802 			sizeof(astr)) == NULL)
1803 			snprintf(astr, sizeof(astr), "(inet6ntoperror)");
1804 	} else {
1805 		if(addr_size < 4 || inet_ntop(AF_INET, addr, astr,
1806 			sizeof(astr)) == NULL)
1807 			snprintf(astr, sizeof(astr), "(inetntoperror)");
1808 	}
1809 	sldns_wire2str_dname_buf(q->qname, q->qname_len, s, sizeof(s));
1810 	sldns_wire2str_type_buf(q->qtype, tp, sizeof(tp));
1811 	sldns_wire2str_class_buf(q->qclass, cl, sizeof(cl));
1812 	sldns_wire2str_rcode_buf(FLAGS_GET_RCODE(d->flags),
1813 		rc, sizeof(rc));
1814 	snprintf(fg, sizeof(fg), "%s%s%s%s%s%s%s%s",
1815 		((d->flags&BIT_QR)?" QR":""),
1816 		((d->flags&BIT_AA)?" AA":""),
1817 		((d->flags&BIT_TC)?" TC":""),
1818 		((d->flags&BIT_RD)?" RD":""),
1819 		((d->flags&BIT_RA)?" RA":""),
1820 		((d->flags&BIT_Z)?" Z":""),
1821 		((d->flags&BIT_AD)?" AD":""),
1822 		((d->flags&BIT_CD)?" CD":""));
1823 	if(!rrset_array_lock(d->ref, d->rrset_count,
1824 		*inf->worker->env.now)) {
1825 		/* rrsets have timed out or do not exist */
1826 		return;
1827 	}
1828 	if(!ssl_printf(inf->ssl, "subnet %s/%d%s %s %s %s " ARG_LL "d\n", astr,
1829 		(int)scope, (only_match_scope_zero?" scope_zero":""),
1830 		s, cl, tp, (long long)(ttl-*inf->worker->env.now))) {
1831 		rrset_array_unlock(d->ref, d->rrset_count);
1832 		return;
1833 	}
1834 	ssl_printf(inf->ssl,
1835 		"subnet msg %s %s %s%s %s %d %d " ARG_LL "d %d %u %u %u %d %s\n",
1836 		s, cl, tp, fg, rc,
1837 		(int)d->flags, (int)d->qdcount,
1838 		(long long)(d->ttl-*inf->worker->env.now),
1839 		(int)d->security,
1840 		(unsigned)d->an_numrrsets,
1841 		(unsigned)d->ns_numrrsets,
1842 		(unsigned)d->ar_numrrsets,
1843 		(int)d->reason_bogus,
1844 		d->reason_bogus_str?d->reason_bogus_str:"");
1845 	for(i=0; i<d->rrset_count; i++) {
1846 		struct ub_packed_rrset_key* rk = d->rrsets[i];
1847 		struct packed_rrset_data* rd = (struct packed_rrset_data*)rk->entry.data;
1848 		size_t j;
1849 		for(j=0; j<rd->count + rd->rrsig_count; j++) {
1850 			if(!packed_rr_to_string(rk, j,
1851 				*inf->worker->env.now, s, sizeof(s))) {
1852 				ssl_printf(inf->ssl, "BADRR\n");
1853 			} else {
1854 				ssl_printf(inf->ssl, "%s", s);
1855 			}
1856 		}
1857 	}
1858 	rrset_array_unlock(d->ref, d->rrset_count);
1859 	ssl_printf(inf->ssl, "\n");
1860 }
1861 
1862 /** Visit an edge in subnet addrtree traverse */
1863 static void
addrtree_traverse_visit_edge(struct addredge * edge,addrkey_t * addr,size_t addr_size,int is_ipv6,time_t now,struct query_info * q,void (* func)(struct query_info *,struct reply_info *,addrkey_t *,size_t,int,addrlen_t,int,time_t,void *),void * arg)1864 addrtree_traverse_visit_edge(struct addredge* edge, addrkey_t* addr,
1865 	size_t addr_size, int is_ipv6, time_t now, struct query_info* q,
1866 	void (*func)(struct query_info*, struct reply_info*, addrkey_t*,
1867 		size_t, int, addrlen_t, int, time_t, void*), void* arg)
1868 {
1869 	size_t n;
1870 	addrlen_t addrlen;
1871 	if(!edge || !edge->node)
1872 		return;
1873 	addrlen = edge->len;
1874 	/* ceil() */
1875 	n = (size_t)((addrlen / KEYWIDTH) + ((addrlen % KEYWIDTH != 0)?1:0));
1876 	if(n > addr_size)
1877 		n = addr_size;
1878 	memset(addr, 0, addr_size);
1879 	memcpy(addr, edge->str, n);
1880 	addrtree_traverse_visit_node(edge->node, addr, addr_size, is_ipv6,
1881 		now, q, func, arg);
1882 }
1883 
1884 /** Visit a node in subnet addrtree traverse */
1885 static void
addrtree_traverse_visit_node(struct addrnode * n,addrkey_t * addr,size_t addr_size,int is_ipv6,time_t now,struct query_info * q,void (* func)(struct query_info *,struct reply_info *,addrkey_t *,size_t,int,addrlen_t,int,time_t,void *),void * arg)1886 addrtree_traverse_visit_node(struct addrnode* n, addrkey_t* addr,
1887 	size_t addr_size, int is_ipv6, time_t now, struct query_info* q,
1888 	void (*func)(struct query_info*, struct reply_info*, addrkey_t*,
1889 		size_t, int, addrlen_t, int, time_t, void*), void* arg)
1890 {
1891 	/* If this node has data, and not expired. */
1892 	if(n->elem && n->ttl >= now) {
1893 		func(q, (struct reply_info*)n->elem, addr, addr_size, is_ipv6,
1894 			n->scope, n->only_match_scope_zero, n->ttl, arg);
1895 	}
1896 	/* Traverse edges. */
1897 	addrtree_traverse_visit_edge(n->edge[0], addr, addr_size, is_ipv6,
1898 		now, q, func, arg);
1899 	addrtree_traverse_visit_edge(n->edge[1], addr, addr_size, is_ipv6,
1900 		now, q, func, arg);
1901 }
1902 
1903 /** Traverse subnet addrtree */
1904 static void
addrtree_traverse(struct addrtree * tree,int is_ipv6,time_t now,struct query_info * q,void (* func)(struct query_info *,struct reply_info *,addrkey_t *,size_t,int,addrlen_t,int,time_t,void *),void * arg)1905 addrtree_traverse(struct addrtree* tree, int is_ipv6, time_t now,
1906 	struct query_info* q,
1907 	void (*func)(struct query_info*, struct reply_info*, addrkey_t*,
1908 		size_t, int, addrlen_t, int, time_t, void*), void* arg)
1909 {
1910 	uint8_t addr[16]; /* Large enough for IPv4 and IPv6. */
1911 	memset(addr, 0, sizeof(addr));
1912 	addrtree_traverse_visit_node(tree->root, (addrkey_t*)addr,
1913 		sizeof(addr), is_ipv6, now, q, func, arg);
1914 }
1915 
1916 /** Lookup cache_lookup for subnet content. */
1917 static void
cache_lookup_subnet_msg(struct lruhash_entry * e,void * arg)1918 cache_lookup_subnet_msg(struct lruhash_entry* e, void* arg)
1919 {
1920 	struct cache_lookup_info* inf = (struct cache_lookup_info*)arg;
1921 	struct msgreply_entry *k = (struct msgreply_entry*)e->key;
1922 	struct subnet_msg_cache_data* d =
1923 		(struct subnet_msg_cache_data*)e->data;
1924 	if(!dname_subdomain_c(k->key.qname, inf->nm))
1925 		return;
1926 
1927 	if(d->tree4) {
1928 		addrtree_traverse(d->tree4, 0, *inf->worker->env.now, &k->key,
1929 			&cache_lookup_subnet_addrnode, inf);
1930 	}
1931 	if(d->tree6) {
1932 		addrtree_traverse(d->tree6, 1, *inf->worker->env.now, &k->key,
1933 			&cache_lookup_subnet_addrnode, inf);
1934 	}
1935 }
1936 #endif /* CLIENT_SUBNET */
1937 
1938 static void
cache_lookup_rrset(struct lruhash_entry * e,void * arg)1939 cache_lookup_rrset(struct lruhash_entry* e, void* arg)
1940 {
1941 	struct cache_lookup_info* inf = (struct cache_lookup_info*)arg;
1942 	struct ub_packed_rrset_key* k = (struct ub_packed_rrset_key*)e->key;
1943 	struct packed_rrset_data* d = (struct packed_rrset_data*)e->data;
1944 	if(*inf->worker->env.now < d->ttl &&
1945 		k->id != 0 && /* not deleted */
1946 		dname_subdomain_c(k->rk.dname, inf->nm)) {
1947 		size_t i;
1948 		for(i=0; i<d->count + d->rrsig_count; i++) {
1949 			char s[65535];
1950 			if(!packed_rr_to_string(k, i, *inf->worker->env.now,
1951 				s, sizeof(s))) {
1952 				ssl_printf(inf->ssl, "BADRR\n");
1953 				return;
1954 			}
1955 			ssl_printf(inf->ssl, "%s", s);
1956 		}
1957 		ssl_printf(inf->ssl, "\n");
1958 	}
1959 }
1960 
1961 static void
cache_lookup_msg(struct lruhash_entry * e,void * arg)1962 cache_lookup_msg(struct lruhash_entry* e, void* arg)
1963 {
1964 	struct cache_lookup_info* inf = (struct cache_lookup_info*)arg;
1965 	struct msgreply_entry* k = (struct msgreply_entry*)e->key;
1966 	struct reply_info* d = (struct reply_info*)e->data;
1967 	if(*inf->worker->env.now < d->ttl &&
1968 		dname_subdomain_c(k->key.qname, inf->nm)) {
1969 		size_t i;
1970 		char s[65535], tp[32], cl[32], rc[32], fg[32];
1971 		sldns_wire2str_dname_buf(k->key.qname, k->key.qname_len,
1972 			s, sizeof(s));
1973 		sldns_wire2str_type_buf(k->key.qtype, tp, sizeof(tp));
1974 		sldns_wire2str_class_buf(k->key.qclass, cl, sizeof(cl));
1975 		sldns_wire2str_rcode_buf(FLAGS_GET_RCODE(d->flags),
1976 			rc, sizeof(rc));
1977 		snprintf(fg, sizeof(fg), "%s%s%s%s%s%s%s%s",
1978 			((d->flags&BIT_QR)?" QR":""),
1979 			((d->flags&BIT_AA)?" AA":""),
1980 			((d->flags&BIT_TC)?" TC":""),
1981 			((d->flags&BIT_RD)?" RD":""),
1982 			((d->flags&BIT_RA)?" RA":""),
1983 			((d->flags&BIT_Z)?" Z":""),
1984 			((d->flags&BIT_AD)?" AD":""),
1985 			((d->flags&BIT_CD)?" CD":""));
1986 		if(!rrset_array_lock(d->ref, d->rrset_count,
1987 			*inf->worker->env.now)) {
1988 			/* rrsets have timed out or do not exist */
1989 			return;
1990 		}
1991 		ssl_printf(inf->ssl,
1992 			"msg %s %s %s%s %s %d %d " ARG_LL "d %d %u %u %u %d %s\n",
1993 			s, cl, tp, fg, rc,
1994 			(int)d->flags, (int)d->qdcount,
1995 			(long long)(d->ttl-*inf->worker->env.now),
1996 			(int)d->security,
1997 			(unsigned)d->an_numrrsets,
1998 			(unsigned)d->ns_numrrsets,
1999 			(unsigned)d->ar_numrrsets,
2000 			(int)d->reason_bogus,
2001 			d->reason_bogus_str?d->reason_bogus_str:"");
2002 		for(i=0; i<d->rrset_count; i++) {
2003 			struct ub_packed_rrset_key* rk = d->rrsets[i];
2004 			struct packed_rrset_data* rd = (struct packed_rrset_data*)rk->entry.data;
2005 			size_t j;
2006 			for(j=0; j<rd->count + rd->rrsig_count; j++) {
2007 				if(!packed_rr_to_string(rk, j,
2008 					*inf->worker->env.now, s, sizeof(s))) {
2009 					rrset_array_unlock(d->ref, d->rrset_count);
2010 					ssl_printf(inf->ssl, "BADRR\n");
2011 					return;
2012 				}
2013 				ssl_printf(inf->ssl, "%s", s);
2014 			}
2015 		}
2016 		rrset_array_unlock(d->ref, d->rrset_count);
2017 		ssl_printf(inf->ssl, "\n");
2018 	}
2019 }
2020 
2021 /** perform cache search for domain */
2022 static void
do_cache_lookup_domain(RES * ssl,struct worker * worker,uint8_t * nm,size_t nmlen)2023 do_cache_lookup_domain(RES* ssl, struct worker* worker, uint8_t* nm,
2024 	size_t nmlen)
2025 {
2026 #ifdef CLIENT_SUBNET
2027 	int m;
2028 	struct subnet_env* sn_env = NULL;
2029 #endif /* CLIENT_SUBNET */
2030 	struct cache_lookup_info inf;
2031 	inf.ssl = ssl;
2032 	inf.worker = worker;
2033 	inf.nm = nm;
2034 	inf.nmlen = nmlen;
2035 
2036 #ifdef CLIENT_SUBNET
2037 	m = modstack_find(worker->env.modstack, "subnetcache");
2038 	if(m != -1) sn_env = (struct subnet_env*)worker->env.modinfo[m];
2039 	if(sn_env) {
2040 		lock_rw_rdlock(&sn_env->biglock);
2041 		slabhash_traverse(sn_env->subnet_msg_cache, 0,
2042 			&cache_lookup_subnet_msg, &inf);
2043 		lock_rw_unlock(&sn_env->biglock);
2044 	}
2045 #endif /* CLIENT_SUBNET */
2046 
2047 	slabhash_traverse(&worker->env.rrset_cache->table, 0,
2048 		&cache_lookup_rrset, &inf);
2049 	slabhash_traverse(worker->env.msg_cache, 0, &cache_lookup_msg, &inf);
2050 }
2051 
2052 /** cache lookup of domain */
2053 static void
do_cache_lookup(RES * ssl,struct worker * worker,char * arg)2054 do_cache_lookup(RES* ssl, struct worker* worker, char* arg)
2055 {
2056 	uint8_t nm[LDNS_MAX_DOMAINLEN+1];
2057 	size_t nmlen;
2058 	int status;
2059 	char* s = arg, *next = NULL;
2060 	int allow_long = 0;
2061 
2062 	if(arg[0] == '+' && arg[1] == 't' && (arg[2]==' ' || arg[2]=='\t')) {
2063 		allow_long = 1;
2064 		s = arg+2;
2065 	}
2066 
2067 	/* Find the commandline arguments of domains. */
2068 	while(s && *s != 0) {
2069 		s = skipwhite(s);
2070 		if(*s == 0)
2071 			break;
2072 		if(strchr(s, ' ') || strchr(s, '\t')) {
2073 			char* sp = strchr(s, ' ');
2074 			if(strchr(s, '\t') != 0 && strchr(s, '\t') < sp)
2075 				sp = strchr(s, '\t');
2076 			*sp = 0;
2077 			next = sp+1;
2078 		} else {
2079 			next = NULL;
2080 		}
2081 
2082 		nmlen = sizeof(nm);
2083 		status = sldns_str2wire_dname_buf(s, nm, &nmlen);
2084 		if(status != 0) {
2085 			ssl_printf(ssl, "error cannot parse name %s at %d: %s\n", s,
2086 				LDNS_WIREPARSE_OFFSET(status),
2087 				sldns_get_errorstr_parse(status));
2088 			return;
2089 		}
2090 		if(!allow_long && dname_count_labels(nm) < 3) {
2091 			ssl_printf(ssl, "error name too short: '%s'. Need example.com. or longer, short names take very long, use +t to allow them.\n", s);
2092 			return;
2093 		}
2094 
2095 		do_cache_lookup_domain(ssl, worker, nm, nmlen);
2096 
2097 		s = next;
2098 	}
2099 }
2100 
2101 /** cache lookup of nameservers */
2102 static void
do_lookup(RES * ssl,struct worker * worker,char * arg)2103 do_lookup(RES* ssl, struct worker* worker, char* arg)
2104 {
2105 	uint8_t* nm;
2106 	int nmlabs;
2107 	size_t nmlen;
2108 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
2109 		return;
2110 	(void)print_deleg_lookup(ssl, worker, nm, nmlen, nmlabs);
2111 	free(nm);
2112 }
2113 
2114 /** flush something from rrset and msg caches */
2115 static void
do_cache_remove(struct worker * worker,uint8_t * nm,size_t nmlen,uint16_t t,uint16_t c,int remcachedb)2116 do_cache_remove(struct worker* worker, uint8_t* nm, size_t nmlen,
2117 	uint16_t t, uint16_t c, int remcachedb)
2118 {
2119 	hashvalue_type h;
2120 	struct query_info k;
2121 	rrset_cache_remove(worker->env.rrset_cache, nm, nmlen, t, c, 0);
2122 	if(t == LDNS_RR_TYPE_SOA)
2123 		rrset_cache_remove(worker->env.rrset_cache, nm, nmlen, t, c,
2124 			PACKED_RRSET_SOA_NEG);
2125 	k.qname = nm;
2126 	k.qname_len = nmlen;
2127 	k.qtype = t;
2128 	k.qclass = c;
2129 	k.local_alias = NULL;
2130 	h = query_info_hash(&k, 0);
2131 	slabhash_remove(worker->env.msg_cache, h, &k);
2132 	if(t == LDNS_RR_TYPE_AAAA) {
2133 		/* for AAAA also flush dns64 bit_cd packet */
2134 		h = query_info_hash(&k, BIT_CD);
2135 		slabhash_remove(worker->env.msg_cache, h, &k);
2136 	}
2137 #ifdef USE_CACHEDB
2138 	if(remcachedb && worker->env.cachedb_enabled)
2139 		cachedb_msg_remove_qinfo(&worker->env, &k);
2140 #else
2141 	(void)remcachedb;
2142 #endif
2143 }
2144 
2145 /** parse '+c' option, modifies string to return remainder. */
2146 static int
parse_remcachedb(RES * ssl,char ** arg,int * pc)2147 parse_remcachedb(RES* ssl, char** arg, int* pc)
2148 {
2149 	*arg = skipwhite(*arg);
2150 	if((*arg)[0] == '+' && (*arg)[1] == 'c') {
2151 		char* arg2;
2152 		*pc = 1;
2153 		if(!find_arg2(ssl, *arg, &arg2))
2154 			return 0;
2155 		*arg = arg2;
2156 		return 1;
2157 	}
2158 	/* The option was not found, no problem */
2159 	return 1;
2160 }
2161 
2162 /** flush a type */
2163 static void
do_flush_type(RES * ssl,struct worker * worker,char * arg)2164 do_flush_type(RES* ssl, struct worker* worker, char* arg)
2165 {
2166 	uint8_t* nm;
2167 	int nmlabs;
2168 	size_t nmlen;
2169 	char* arg2;
2170 	uint16_t t;
2171 	int pc = 0; /* '+c' option */
2172 	if(!parse_remcachedb(ssl, &arg, &pc))
2173 		return;
2174 	if(!find_arg2(ssl, arg, &arg2))
2175 		return;
2176 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
2177 		return;
2178 	t = sldns_get_rr_type_by_name(arg2);
2179 	if(t == 0 && strcmp(arg2, "TYPE0") != 0) {
2180 		(void)ssl_printf(ssl, "error parsing RRset type: '%s'\n", arg2);
2181 		free(nm);
2182 		return;
2183 	}
2184 	do_cache_remove(worker, nm, nmlen, t, LDNS_RR_CLASS_IN, pc);
2185 
2186 	free(nm);
2187 	send_ok(ssl);
2188 }
2189 
2190 /** flush statistics */
2191 static void
do_flush_stats(RES * ssl,struct worker * worker)2192 do_flush_stats(RES* ssl, struct worker* worker)
2193 {
2194 	worker_stats_clear(worker);
2195 	send_ok(ssl);
2196 }
2197 
2198 /**
2199  * Local info for deletion functions
2200  */
2201 struct del_info {
2202 	/** worker */
2203 	struct worker* worker;
2204 	/** name to delete */
2205 	uint8_t* name;
2206 	/** length */
2207 	size_t len;
2208 	/** labels */
2209 	int labs;
2210 	/** time to invalidate to */
2211 	time_t expired;
2212 	/** number of rrsets removed */
2213 	size_t num_rrsets;
2214 	/** number of msgs removed */
2215 	size_t num_msgs;
2216 	/** number of key entries removed */
2217 	size_t num_keys;
2218 	/** length of addr */
2219 	socklen_t addrlen;
2220 	/** socket address for host deletion */
2221 	struct sockaddr_storage addr;
2222 	/** if cachedb information should be flushed too */
2223 	int remcachedb;
2224 };
2225 
2226 /** callback to delete hosts in infra cache */
2227 static void
infra_del_host(struct lruhash_entry * e,void * arg)2228 infra_del_host(struct lruhash_entry* e, void* arg)
2229 {
2230 	/* entry is locked */
2231 	struct del_info* inf = (struct del_info*)arg;
2232 	struct infra_key* k = (struct infra_key*)e->key;
2233 	if(sockaddr_cmp(&inf->addr, inf->addrlen, &k->addr, k->addrlen) == 0) {
2234 		struct infra_data* d = (struct infra_data*)e->data;
2235 		d->probedelay = 0;
2236 		d->timeout_A = 0;
2237 		d->timeout_AAAA = 0;
2238 		d->timeout_other = 0;
2239 		rtt_init(&d->rtt);
2240 		if(d->ttl > inf->expired) {
2241 			d->ttl = inf->expired;
2242 			inf->num_keys++;
2243 		}
2244 	}
2245 }
2246 
2247 /** flush infra cache */
2248 static void
do_flush_infra(RES * ssl,struct worker * worker,char * arg)2249 do_flush_infra(RES* ssl, struct worker* worker, char* arg)
2250 {
2251 	struct sockaddr_storage addr;
2252 	socklen_t len;
2253 	struct del_info inf;
2254 	if(strcmp(arg, "all") == 0) {
2255 		slabhash_clear(worker->env.infra_cache->hosts);
2256 		send_ok(ssl);
2257 		return;
2258 	}
2259 	if(!ipstrtoaddr(arg, UNBOUND_DNS_PORT, &addr, &len)) {
2260 		(void)ssl_printf(ssl, "error parsing ip addr: '%s'\n", arg);
2261 		return;
2262 	}
2263 	/* delete all entries from cache */
2264 	/* what we do is to set them all expired */
2265 	inf.worker = worker;
2266 	inf.name = 0;
2267 	inf.len = 0;
2268 	inf.labs = 0;
2269 	inf.expired = *worker->env.now;
2270 	inf.expired -= 3; /* handle 3 seconds skew between threads */
2271 	inf.num_rrsets = 0;
2272 	inf.num_msgs = 0;
2273 	inf.num_keys = 0;
2274 	inf.addrlen = len;
2275 	inf.remcachedb = 0;
2276 	memmove(&inf.addr, &addr, len);
2277 	slabhash_traverse(worker->env.infra_cache->hosts, 1, &infra_del_host,
2278 		&inf);
2279 	send_ok(ssl);
2280 }
2281 
2282 /** flush requestlist */
2283 static void
do_flush_requestlist(RES * ssl,struct worker * worker)2284 do_flush_requestlist(RES* ssl, struct worker* worker)
2285 {
2286 	mesh_delete_all(worker->env.mesh);
2287 	send_ok(ssl);
2288 }
2289 
2290 /** callback to delete rrsets in a zone */
2291 static void
zone_del_rrset(struct lruhash_entry * e,void * arg)2292 zone_del_rrset(struct lruhash_entry* e, void* arg)
2293 {
2294 	/* entry is locked */
2295 	struct del_info* inf = (struct del_info*)arg;
2296 	struct ub_packed_rrset_key* k = (struct ub_packed_rrset_key*)e->key;
2297 	if(dname_subdomain_c(k->rk.dname, inf->name)) {
2298 		struct packed_rrset_data* d =
2299 			(struct packed_rrset_data*)e->data;
2300 		if(d->ttl > inf->expired) {
2301 			d->ttl = inf->expired;
2302 			inf->num_rrsets++;
2303 		}
2304 	}
2305 }
2306 
2307 /** callback to delete messages in a zone */
2308 static void
zone_del_msg(struct lruhash_entry * e,void * arg)2309 zone_del_msg(struct lruhash_entry* e, void* arg)
2310 {
2311 	/* entry is locked */
2312 	struct del_info* inf = (struct del_info*)arg;
2313 	struct msgreply_entry* k = (struct msgreply_entry*)e->key;
2314 	if(dname_subdomain_c(k->key.qname, inf->name)) {
2315 		struct reply_info* d = (struct reply_info*)e->data;
2316 		if(d->ttl > inf->expired) {
2317 			d->ttl = inf->expired;
2318 			d->prefetch_ttl = inf->expired;
2319 			d->serve_expired_ttl = inf->expired;
2320 			inf->num_msgs++;
2321 		}
2322 #ifdef USE_CACHEDB
2323 		if(inf->remcachedb && inf->worker->env.cachedb_enabled)
2324 			cachedb_msg_remove_qinfo(&inf->worker->env, &k->key);
2325 #endif
2326 	}
2327 }
2328 
2329 /** callback to delete keys in zone */
2330 static void
zone_del_kcache(struct lruhash_entry * e,void * arg)2331 zone_del_kcache(struct lruhash_entry* e, void* arg)
2332 {
2333 	/* entry is locked */
2334 	struct del_info* inf = (struct del_info*)arg;
2335 	struct key_entry_key* k = (struct key_entry_key*)e->key;
2336 	if(dname_subdomain_c(k->name, inf->name)) {
2337 		struct key_entry_data* d = (struct key_entry_data*)e->data;
2338 		if(d->ttl > inf->expired) {
2339 			d->ttl = inf->expired;
2340 			inf->num_keys++;
2341 		}
2342 	}
2343 }
2344 
2345 /** remove all rrsets and keys from zone from cache */
2346 static void
do_flush_zone(RES * ssl,struct worker * worker,char * arg)2347 do_flush_zone(RES* ssl, struct worker* worker, char* arg)
2348 {
2349 	uint8_t* nm;
2350 	int nmlabs;
2351 	size_t nmlen;
2352 	struct del_info inf;
2353 	int pc = 0; /* '+c' option */
2354 	if(!parse_remcachedb(ssl, &arg, &pc))
2355 		return;
2356 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
2357 		return;
2358 	/* delete all RRs and key entries from zone */
2359 	/* what we do is to set them all expired */
2360 	inf.worker = worker;
2361 	inf.name = nm;
2362 	inf.len = nmlen;
2363 	inf.labs = nmlabs;
2364 	inf.expired = *worker->env.now;
2365 	inf.expired -= 3; /* handle 3 seconds skew between threads */
2366 	inf.num_rrsets = 0;
2367 	inf.num_msgs = 0;
2368 	inf.num_keys = 0;
2369 	inf.remcachedb = pc;
2370 	slabhash_traverse(&worker->env.rrset_cache->table, 1,
2371 		&zone_del_rrset, &inf);
2372 
2373 	slabhash_traverse(worker->env.msg_cache, 1, &zone_del_msg, &inf);
2374 
2375 	/* and validator cache */
2376 	if(worker->env.key_cache) {
2377 		slabhash_traverse(worker->env.key_cache->slab, 1,
2378 			&zone_del_kcache, &inf);
2379 	}
2380 
2381 	free(nm);
2382 
2383 	(void)ssl_printf(ssl, "ok removed %lu rrsets, %lu messages "
2384 		"and %lu key entries\n", (unsigned long)inf.num_rrsets,
2385 		(unsigned long)inf.num_msgs, (unsigned long)inf.num_keys);
2386 }
2387 
2388 /** callback to delete bogus rrsets */
2389 static void
bogus_del_rrset(struct lruhash_entry * e,void * arg)2390 bogus_del_rrset(struct lruhash_entry* e, void* arg)
2391 {
2392 	/* entry is locked */
2393 	struct del_info* inf = (struct del_info*)arg;
2394 	struct packed_rrset_data* d = (struct packed_rrset_data*)e->data;
2395 	if(d->security == sec_status_bogus && d->ttl > inf->expired) {
2396 		d->ttl = inf->expired;
2397 		inf->num_rrsets++;
2398 	}
2399 }
2400 
2401 /** callback to delete bogus messages */
2402 static void
bogus_del_msg(struct lruhash_entry * e,void * arg)2403 bogus_del_msg(struct lruhash_entry* e, void* arg)
2404 {
2405 	/* entry is locked */
2406 	struct del_info* inf = (struct del_info*)arg;
2407 	struct reply_info* d = (struct reply_info*)e->data;
2408 	if(d->security == sec_status_bogus && d->ttl > inf->expired) {
2409 		d->ttl = inf->expired;
2410 		d->prefetch_ttl = inf->expired;
2411 		d->serve_expired_ttl = inf->expired;
2412 		inf->num_msgs++;
2413 #ifdef USE_CACHEDB
2414 		if(inf->remcachedb && inf->worker->env.cachedb_enabled)
2415 			cachedb_msg_remove_qinfo(&inf->worker->env,
2416 				&((struct msgreply_entry*)e->key)->key);
2417 #endif
2418 	}
2419 }
2420 
2421 /** callback to delete bogus keys */
2422 static void
bogus_del_kcache(struct lruhash_entry * e,void * arg)2423 bogus_del_kcache(struct lruhash_entry* e, void* arg)
2424 {
2425 	/* entry is locked */
2426 	struct del_info* inf = (struct del_info*)arg;
2427 	struct key_entry_data* d = (struct key_entry_data*)e->data;
2428 	if(d->isbad && d->ttl > inf->expired) {
2429 		d->ttl = inf->expired;
2430 		inf->num_keys++;
2431 	}
2432 }
2433 
2434 /** remove all bogus rrsets, msgs and keys from cache */
2435 static void
do_flush_bogus(RES * ssl,struct worker * worker,char * arg)2436 do_flush_bogus(RES* ssl, struct worker* worker, char* arg)
2437 {
2438 	struct del_info inf;
2439 	int pc = 0; /* '+c' option */
2440 	if(!parse_remcachedb(ssl, &arg, &pc))
2441 		return;
2442 	/* what we do is to set them all expired */
2443 	inf.worker = worker;
2444 	inf.expired = *worker->env.now;
2445 	inf.expired -= 3; /* handle 3 seconds skew between threads */
2446 	inf.num_rrsets = 0;
2447 	inf.num_msgs = 0;
2448 	inf.num_keys = 0;
2449 	inf.remcachedb = pc;
2450 	slabhash_traverse(&worker->env.rrset_cache->table, 1,
2451 		&bogus_del_rrset, &inf);
2452 
2453 	slabhash_traverse(worker->env.msg_cache, 1, &bogus_del_msg, &inf);
2454 
2455 	/* and validator cache */
2456 	if(worker->env.key_cache) {
2457 		slabhash_traverse(worker->env.key_cache->slab, 1,
2458 			&bogus_del_kcache, &inf);
2459 	}
2460 
2461 	(void)ssl_printf(ssl, "ok removed %lu rrsets, %lu messages "
2462 		"and %lu key entries\n", (unsigned long)inf.num_rrsets,
2463 		(unsigned long)inf.num_msgs, (unsigned long)inf.num_keys);
2464 }
2465 
2466 /** callback to delete negative and servfail rrsets */
2467 static void
negative_del_rrset(struct lruhash_entry * e,void * arg)2468 negative_del_rrset(struct lruhash_entry* e, void* arg)
2469 {
2470 	/* entry is locked */
2471 	struct del_info* inf = (struct del_info*)arg;
2472 	struct ub_packed_rrset_key* k = (struct ub_packed_rrset_key*)e->key;
2473 	struct packed_rrset_data* d = (struct packed_rrset_data*)e->data;
2474 	/* delete the parentside negative cache rrsets,
2475 	 * these are nameserver rrsets that failed lookup, rdata empty */
2476 	if((k->rk.flags & PACKED_RRSET_PARENT_SIDE) && d->count == 1 &&
2477 		d->rrsig_count == 0 && d->rr_len[0] == 0 &&
2478 		d->ttl > inf->expired) {
2479 		d->ttl = inf->expired;
2480 		inf->num_rrsets++;
2481 	}
2482 }
2483 
2484 /** callback to delete negative and servfail messages */
2485 static void
negative_del_msg(struct lruhash_entry * e,void * arg)2486 negative_del_msg(struct lruhash_entry* e, void* arg)
2487 {
2488 	/* entry is locked */
2489 	struct del_info* inf = (struct del_info*)arg;
2490 	struct reply_info* d = (struct reply_info*)e->data;
2491 	/* rcode not NOERROR: NXDOMAIN, SERVFAIL, ..: an nxdomain or error
2492 	 * or NOERROR rcode with ANCOUNT==0: a NODATA answer */
2493 	if((FLAGS_GET_RCODE(d->flags) != 0 || d->an_numrrsets == 0) &&
2494 		d->ttl > inf->expired) {
2495 		d->ttl = inf->expired;
2496 		d->prefetch_ttl = inf->expired;
2497 		d->serve_expired_ttl = inf->expired;
2498 		inf->num_msgs++;
2499 #ifdef USE_CACHEDB
2500 		if(inf->remcachedb && inf->worker->env.cachedb_enabled)
2501 			cachedb_msg_remove_qinfo(&inf->worker->env,
2502 				&((struct msgreply_entry*)e->key)->key);
2503 #endif
2504 	}
2505 }
2506 
2507 /** callback to delete negative key entries */
2508 static void
negative_del_kcache(struct lruhash_entry * e,void * arg)2509 negative_del_kcache(struct lruhash_entry* e, void* arg)
2510 {
2511 	/* entry is locked */
2512 	struct del_info* inf = (struct del_info*)arg;
2513 	struct key_entry_data* d = (struct key_entry_data*)e->data;
2514 	/* could be bad because of lookup failure on the DS, DNSKEY, which
2515 	 * was nxdomain or servfail, and thus a result of negative lookups */
2516 	if(d->isbad && d->ttl > inf->expired) {
2517 		d->ttl = inf->expired;
2518 		inf->num_keys++;
2519 	}
2520 }
2521 
2522 /** remove all negative(NODATA,NXDOMAIN), and servfail messages from cache */
2523 static void
do_flush_negative(RES * ssl,struct worker * worker,char * arg)2524 do_flush_negative(RES* ssl, struct worker* worker, char* arg)
2525 {
2526 	struct del_info inf;
2527 	int pc = 0; /* '+c' option */
2528 	if(!parse_remcachedb(ssl, &arg, &pc))
2529 		return;
2530 	/* what we do is to set them all expired */
2531 	inf.worker = worker;
2532 	inf.expired = *worker->env.now;
2533 	inf.expired -= 3; /* handle 3 seconds skew between threads */
2534 	inf.num_rrsets = 0;
2535 	inf.num_msgs = 0;
2536 	inf.num_keys = 0;
2537 	inf.remcachedb = pc;
2538 	slabhash_traverse(&worker->env.rrset_cache->table, 1,
2539 		&negative_del_rrset, &inf);
2540 
2541 	slabhash_traverse(worker->env.msg_cache, 1, &negative_del_msg, &inf);
2542 
2543 	/* and validator cache */
2544 	if(worker->env.key_cache) {
2545 		slabhash_traverse(worker->env.key_cache->slab, 1,
2546 			&negative_del_kcache, &inf);
2547 	}
2548 
2549 	(void)ssl_printf(ssl, "ok removed %lu rrsets, %lu messages "
2550 		"and %lu key entries\n", (unsigned long)inf.num_rrsets,
2551 		(unsigned long)inf.num_msgs, (unsigned long)inf.num_keys);
2552 }
2553 
2554 /** remove name rrset from cache */
2555 static void
do_flush_name(RES * ssl,struct worker * w,char * arg)2556 do_flush_name(RES* ssl, struct worker* w, char* arg)
2557 {
2558 	uint8_t* nm;
2559 	int nmlabs;
2560 	size_t nmlen;
2561 	int pc = 0; /* '+c' option */
2562 	if(!parse_remcachedb(ssl, &arg, &pc))
2563 		return;
2564 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
2565 		return;
2566 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_A, LDNS_RR_CLASS_IN, pc);
2567 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_AAAA, LDNS_RR_CLASS_IN, pc);
2568 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_NS, LDNS_RR_CLASS_IN, pc);
2569 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_SOA, LDNS_RR_CLASS_IN, pc);
2570 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_CNAME, LDNS_RR_CLASS_IN, pc);
2571 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_DNAME, LDNS_RR_CLASS_IN, pc);
2572 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_MX, LDNS_RR_CLASS_IN, pc);
2573 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_PTR, LDNS_RR_CLASS_IN, pc);
2574 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_SRV, LDNS_RR_CLASS_IN, pc);
2575 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_NAPTR, LDNS_RR_CLASS_IN, pc);
2576 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_SVCB, LDNS_RR_CLASS_IN, pc);
2577 	do_cache_remove(w, nm, nmlen, LDNS_RR_TYPE_HTTPS, LDNS_RR_CLASS_IN, pc);
2578 
2579 	free(nm);
2580 	send_ok(ssl);
2581 }
2582 
2583 /** printout a delegation point info */
2584 static int
ssl_print_name_dp(RES * ssl,const char * str,uint8_t * nm,uint16_t dclass,struct delegpt * dp)2585 ssl_print_name_dp(RES* ssl, const char* str, uint8_t* nm, uint16_t dclass,
2586 	struct delegpt* dp)
2587 {
2588 	char buf[LDNS_MAX_DOMAINLEN];
2589 	struct delegpt_ns* ns;
2590 	struct delegpt_addr* a;
2591 	int f = 0;
2592 	if(str) { /* print header for forward, stub */
2593 		char* c = sldns_wire2str_class(dclass);
2594 		dname_str(nm, buf);
2595 		if(!ssl_printf(ssl, "%s %s %s ", buf, (c?c:"CLASS??"), str)) {
2596 			free(c);
2597 			return 0;
2598 		}
2599 		free(c);
2600 	}
2601 	for(ns = dp->nslist; ns; ns = ns->next) {
2602 		dname_str(ns->name, buf);
2603 		if(!ssl_printf(ssl, "%s%s", (f?" ":""), buf))
2604 			return 0;
2605 		f = 1;
2606 	}
2607 	for(a = dp->target_list; a; a = a->next_target) {
2608 		addr_to_str(&a->addr, a->addrlen, buf, sizeof(buf));
2609 		if(!ssl_printf(ssl, "%s%s", (f?" ":""), buf))
2610 			return 0;
2611 		f = 1;
2612 	}
2613 	return ssl_printf(ssl, "\n");
2614 }
2615 
2616 
2617 /** print root forwards */
2618 static int
print_root_fwds(RES * ssl,struct iter_forwards * fwds,uint8_t * root)2619 print_root_fwds(RES* ssl, struct iter_forwards* fwds, uint8_t* root)
2620 {
2621 	struct delegpt* dp;
2622 	int nolock = 0;
2623 	dp = forwards_lookup(fwds, root, LDNS_RR_CLASS_IN, nolock);
2624 	if(!dp) {
2625 		return ssl_printf(ssl, "off (using root hints)\n");
2626 	}
2627 	/* if dp is returned it must be the root */
2628 	log_assert(query_dname_compare(dp->name, root)==0);
2629 	if(!ssl_print_name_dp(ssl, NULL, root, LDNS_RR_CLASS_IN, dp)) {
2630 		lock_rw_unlock(&fwds->lock);
2631 		return 0;
2632 	}
2633 	lock_rw_unlock(&fwds->lock);
2634 	return 1;
2635 }
2636 
2637 /** parse args into delegpt */
2638 static struct delegpt*
parse_delegpt(RES * ssl,char * args,uint8_t * nm)2639 parse_delegpt(RES* ssl, char* args, uint8_t* nm)
2640 {
2641 	/* parse args and add in */
2642 	char* p = args;
2643 	char* todo;
2644 	struct delegpt* dp = delegpt_create_mlc(nm);
2645 	struct sockaddr_storage addr;
2646 	socklen_t addrlen;
2647 	char* auth_name;
2648 	if(!dp) {
2649 		(void)ssl_printf(ssl, "error out of memory\n");
2650 		return NULL;
2651 	}
2652 	while(p) {
2653 		todo = p;
2654 		p = strchr(p, ' '); /* find next spot, if any */
2655 		if(p) {
2656 			*p++ = 0;	/* end this spot */
2657 			p = skipwhite(p); /* position at next spot */
2658 		}
2659 		/* parse address */
2660 		if(!authextstrtoaddr(todo, &addr, &addrlen, &auth_name)) {
2661 			uint8_t* dname= NULL;
2662 			int port;
2663 			dname = authextstrtodname(todo, &port, &auth_name);
2664 			if(!dname) {
2665 				(void)ssl_printf(ssl, "error cannot parse"
2666 					" '%s'\n", todo);
2667 				delegpt_free_mlc(dp);
2668 				return NULL;
2669 			}
2670 #if ! defined(HAVE_SSL_SET1_HOST) && ! defined(HAVE_X509_VERIFY_PARAM_SET1_HOST)
2671 			if(auth_name)
2672 				log_err("no name verification functionality in "
2673 				"ssl library, ignored name for %s", todo);
2674 #endif
2675 			if(!delegpt_add_ns_mlc(dp, dname, 0, auth_name, port)) {
2676 				(void)ssl_printf(ssl, "error out of memory\n");
2677 				free(dname);
2678 				delegpt_free_mlc(dp);
2679 				return NULL;
2680 			}
2681 		} else {
2682 #if ! defined(HAVE_SSL_SET1_HOST) && ! defined(HAVE_X509_VERIFY_PARAM_SET1_HOST)
2683 			if(auth_name)
2684 				log_err("no name verification functionality in "
2685 				"ssl library, ignored name for %s", todo);
2686 #endif
2687 			/* add address */
2688 			if(!delegpt_add_addr_mlc(dp, &addr, addrlen, 0, 0,
2689 				auth_name, -1)) {
2690 				(void)ssl_printf(ssl, "error out of memory\n");
2691 				delegpt_free_mlc(dp);
2692 				return NULL;
2693 			}
2694 		}
2695 	}
2696 	dp->has_parent_side_NS = 1;
2697 	return dp;
2698 }
2699 
2700 /** do the forward command */
2701 static void
do_forward(RES * ssl,struct worker * worker,char * args)2702 do_forward(RES* ssl, struct worker* worker, char* args)
2703 {
2704 	struct iter_forwards* fwd = worker->env.fwds;
2705 	uint8_t* root = (uint8_t*)"\000";
2706 	int nolock = 0;
2707 	if(!fwd) {
2708 		(void)ssl_printf(ssl, "error: structure not allocated\n");
2709 		return;
2710 	}
2711 	if(args == NULL || args[0] == 0) {
2712 		(void)print_root_fwds(ssl, fwd, root);
2713 		return;
2714 	}
2715 	/* set root forwards for this thread. since we are in remote control
2716 	 * the actual mesh is not running, so we can freely edit it. */
2717 	/* delete all the existing queries first */
2718 	mesh_delete_all(worker->env.mesh);
2719 	if(strcmp(args, "off") == 0) {
2720 		forwards_delete_zone(fwd, LDNS_RR_CLASS_IN, root, nolock);
2721 	} else {
2722 		struct delegpt* dp;
2723 		if(!(dp = parse_delegpt(ssl, args, root)))
2724 			return;
2725 		if(!forwards_add_zone(fwd, LDNS_RR_CLASS_IN, dp, nolock)) {
2726 			(void)ssl_printf(ssl, "error out of memory\n");
2727 			return;
2728 		}
2729 	}
2730 	send_ok(ssl);
2731 }
2732 
2733 static int
parse_fs_args(RES * ssl,char * args,uint8_t ** nm,struct delegpt ** dp,int * insecure,int * prime,int * tls)2734 parse_fs_args(RES* ssl, char* args, uint8_t** nm, struct delegpt** dp,
2735 	int* insecure, int* prime, int* tls)
2736 {
2737 	char* zonename;
2738 	char* rest;
2739 	size_t nmlen;
2740 	int nmlabs;
2741 	/* parse all -x args */
2742 	while(args[0] == '+') {
2743 		if(!find_arg2(ssl, args, &rest))
2744 			return 0;
2745 		while(*(++args) != 0) {
2746 			if(*args == 'i' && insecure)
2747 				*insecure = 1;
2748 			else if(*args == 'p' && prime)
2749 				*prime = 1;
2750 			else if(*args == 't' && tls)
2751 				*tls = 1;
2752 			else {
2753 				(void)ssl_printf(ssl, "error: unknown option %s\n", args);
2754 				return 0;
2755 			}
2756 		}
2757 		args = rest;
2758 	}
2759 	/* parse name */
2760 	if(dp) {
2761 		if(!find_arg2(ssl, args, &rest))
2762 			return 0;
2763 		zonename = args;
2764 		args = rest;
2765 	} else	zonename = args;
2766 	if(!parse_arg_name(ssl, zonename, nm, &nmlen, &nmlabs))
2767 		return 0;
2768 
2769 	/* parse dp */
2770 	if(dp) {
2771 		if(!(*dp = parse_delegpt(ssl, args, *nm))) {
2772 			free(*nm);
2773 			return 0;
2774 		}
2775 	}
2776 	return 1;
2777 }
2778 
2779 /** do the forward_add command */
2780 static void
do_forward_add(RES * ssl,struct worker * worker,char * args)2781 do_forward_add(RES* ssl, struct worker* worker, char* args)
2782 {
2783 	struct iter_forwards* fwd = worker->env.fwds;
2784 	int insecure = 0, tls = 0;
2785 	uint8_t* nm = NULL;
2786 	struct delegpt* dp = NULL;
2787 	int nolock = 1;
2788 	if(!parse_fs_args(ssl, args, &nm, &dp, &insecure, NULL, &tls))
2789 		return;
2790 	if(tls)
2791 		dp->ssl_upstream = 1;
2792 	/* prelock forwarders for atomic operation with anchors */
2793 	lock_rw_wrlock(&fwd->lock);
2794 	if(insecure && worker->env.anchors) {
2795 		if(!anchors_add_insecure(worker->env.anchors, LDNS_RR_CLASS_IN,
2796 			nm)) {
2797 			lock_rw_unlock(&fwd->lock);
2798 			(void)ssl_printf(ssl, "error out of memory\n");
2799 			delegpt_free_mlc(dp);
2800 			free(nm);
2801 			return;
2802 		}
2803 	}
2804 	if(!forwards_add_zone(fwd, LDNS_RR_CLASS_IN, dp, nolock)) {
2805 		lock_rw_unlock(&fwd->lock);
2806 		(void)ssl_printf(ssl, "error out of memory\n");
2807 		free(nm);
2808 		return;
2809 	}
2810 	lock_rw_unlock(&fwd->lock);
2811 	free(nm);
2812 	send_ok(ssl);
2813 }
2814 
2815 /** do the forward_remove command */
2816 static void
do_forward_remove(RES * ssl,struct worker * worker,char * args)2817 do_forward_remove(RES* ssl, struct worker* worker, char* args)
2818 {
2819 	struct iter_forwards* fwd = worker->env.fwds;
2820 	int insecure = 0;
2821 	uint8_t* nm = NULL;
2822 	int nolock = 1;
2823 	if(!parse_fs_args(ssl, args, &nm, NULL, &insecure, NULL, NULL))
2824 		return;
2825 	/* prelock forwarders for atomic operation with anchors */
2826 	lock_rw_wrlock(&fwd->lock);
2827 	if(insecure && worker->env.anchors)
2828 		anchors_delete_insecure(worker->env.anchors, LDNS_RR_CLASS_IN,
2829 			nm);
2830 	forwards_delete_zone(fwd, LDNS_RR_CLASS_IN, nm, nolock);
2831 	lock_rw_unlock(&fwd->lock);
2832 	free(nm);
2833 	send_ok(ssl);
2834 }
2835 
2836 /** do the stub_add command */
2837 static void
do_stub_add(RES * ssl,struct worker * worker,char * args)2838 do_stub_add(RES* ssl, struct worker* worker, char* args)
2839 {
2840 	struct iter_forwards* fwd = worker->env.fwds;
2841 	int insecure = 0, prime = 0, tls = 0;
2842 	uint8_t* nm = NULL;
2843 	struct delegpt* dp = NULL;
2844 	int nolock = 1;
2845 	if(!parse_fs_args(ssl, args, &nm, &dp, &insecure, &prime, &tls))
2846 		return;
2847 	if(tls)
2848 		dp->ssl_upstream = 1;
2849 	/* prelock forwarders and hints for atomic operation with anchors */
2850 	lock_rw_wrlock(&fwd->lock);
2851 	lock_rw_wrlock(&worker->env.hints->lock);
2852 	if(insecure && worker->env.anchors) {
2853 		if(!anchors_add_insecure(worker->env.anchors, LDNS_RR_CLASS_IN,
2854 			nm)) {
2855 			lock_rw_unlock(&fwd->lock);
2856 			lock_rw_unlock(&worker->env.hints->lock);
2857 			(void)ssl_printf(ssl, "error out of memory\n");
2858 			delegpt_free_mlc(dp);
2859 			free(nm);
2860 			return;
2861 		}
2862 	}
2863 	if(!forwards_add_stub_hole(fwd, LDNS_RR_CLASS_IN, nm, nolock)) {
2864 		if(insecure && worker->env.anchors)
2865 			anchors_delete_insecure(worker->env.anchors,
2866 				LDNS_RR_CLASS_IN, nm);
2867 		lock_rw_unlock(&fwd->lock);
2868 		lock_rw_unlock(&worker->env.hints->lock);
2869 		(void)ssl_printf(ssl, "error out of memory\n");
2870 		delegpt_free_mlc(dp);
2871 		free(nm);
2872 		return;
2873 	}
2874 	if(!hints_add_stub(worker->env.hints, LDNS_RR_CLASS_IN, dp, !prime,
2875 		nolock)) {
2876 		(void)ssl_printf(ssl, "error out of memory\n");
2877 		forwards_delete_stub_hole(fwd, LDNS_RR_CLASS_IN, nm, nolock);
2878 		if(insecure && worker->env.anchors)
2879 			anchors_delete_insecure(worker->env.anchors,
2880 				LDNS_RR_CLASS_IN, nm);
2881 		lock_rw_unlock(&fwd->lock);
2882 		lock_rw_unlock(&worker->env.hints->lock);
2883 		free(nm);
2884 		return;
2885 	}
2886 	lock_rw_unlock(&fwd->lock);
2887 	lock_rw_unlock(&worker->env.hints->lock);
2888 	free(nm);
2889 	send_ok(ssl);
2890 }
2891 
2892 /** do the stub_remove command */
2893 static void
do_stub_remove(RES * ssl,struct worker * worker,char * args)2894 do_stub_remove(RES* ssl, struct worker* worker, char* args)
2895 {
2896 	struct iter_forwards* fwd = worker->env.fwds;
2897 	int insecure = 0;
2898 	uint8_t* nm = NULL;
2899 	int nolock = 1;
2900 	if(!parse_fs_args(ssl, args, &nm, NULL, &insecure, NULL, NULL))
2901 		return;
2902 	/* prelock forwarders and hints for atomic operation with anchors */
2903 	lock_rw_wrlock(&fwd->lock);
2904 	lock_rw_wrlock(&worker->env.hints->lock);
2905 	if(insecure && worker->env.anchors)
2906 		anchors_delete_insecure(worker->env.anchors, LDNS_RR_CLASS_IN,
2907 			nm);
2908 	forwards_delete_stub_hole(fwd, LDNS_RR_CLASS_IN, nm, nolock);
2909 	hints_delete_stub(worker->env.hints, LDNS_RR_CLASS_IN, nm, nolock);
2910 	lock_rw_unlock(&fwd->lock);
2911 	lock_rw_unlock(&worker->env.hints->lock);
2912 	free(nm);
2913 	send_ok(ssl);
2914 }
2915 
2916 /** do the insecure_add command */
2917 static void
do_insecure_add(RES * ssl,struct worker * worker,char * arg)2918 do_insecure_add(RES* ssl, struct worker* worker, char* arg)
2919 {
2920 	size_t nmlen;
2921 	int nmlabs;
2922 	uint8_t* nm = NULL;
2923 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
2924 		return;
2925 	if(worker->env.anchors) {
2926 		if(!anchors_add_insecure(worker->env.anchors,
2927 			LDNS_RR_CLASS_IN, nm)) {
2928 			(void)ssl_printf(ssl, "error out of memory\n");
2929 			free(nm);
2930 			return;
2931 		}
2932 	}
2933 	free(nm);
2934 	send_ok(ssl);
2935 }
2936 
2937 /** do the insecure_remove command */
2938 static void
do_insecure_remove(RES * ssl,struct worker * worker,char * arg)2939 do_insecure_remove(RES* ssl, struct worker* worker, char* arg)
2940 {
2941 	size_t nmlen;
2942 	int nmlabs;
2943 	uint8_t* nm = NULL;
2944 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
2945 		return;
2946 	if(worker->env.anchors)
2947 		anchors_delete_insecure(worker->env.anchors,
2948 			LDNS_RR_CLASS_IN, nm);
2949 	free(nm);
2950 	send_ok(ssl);
2951 }
2952 
2953 static void
do_insecure_list(RES * ssl,struct worker * worker)2954 do_insecure_list(RES* ssl, struct worker* worker)
2955 {
2956 	char buf[LDNS_MAX_DOMAINLEN];
2957 	struct trust_anchor* a;
2958 	if(worker->env.anchors) {
2959 		RBTREE_FOR(a, struct trust_anchor*, worker->env.anchors->tree) {
2960 			if(a->numDS == 0 && a->numDNSKEY == 0) {
2961 				dname_str(a->name, buf);
2962 				ssl_printf(ssl, "%s\n", buf);
2963 			}
2964 		}
2965 	}
2966 }
2967 
2968 /** do the status command */
2969 static void
do_status(RES * ssl,struct worker * worker)2970 do_status(RES* ssl, struct worker* worker)
2971 {
2972 	int i;
2973 	time_t uptime;
2974 	if(!ssl_printf(ssl, "version: %s\n", PACKAGE_VERSION))
2975 		return;
2976 	if(!ssl_printf(ssl, "verbosity: %d\n", verbosity))
2977 		return;
2978 	if(!ssl_printf(ssl, "threads: %d\n", worker->daemon->num))
2979 		return;
2980 	if(!ssl_printf(ssl, "modules: %d [", worker->daemon->mods.num))
2981 		return;
2982 	for(i=0; i<worker->daemon->mods.num; i++) {
2983 		if(!ssl_printf(ssl, " %s", worker->daemon->mods.mod[i]->name))
2984 			return;
2985 	}
2986 	if(!ssl_printf(ssl, " ]\n"))
2987 		return;
2988 	uptime = (time_t)time(NULL) - (time_t)worker->daemon->time_boot.tv_sec;
2989 	if(!ssl_printf(ssl, "uptime: " ARG_LL "d seconds\n", (long long)uptime))
2990 		return;
2991 	if(!ssl_printf(ssl, "options:%s%s%s%s\n" ,
2992 		(worker->daemon->reuseport?" reuseport":""),
2993 		(worker->daemon->rc->accept_list?" control":""),
2994 		(worker->daemon->rc->accept_list && worker->daemon->rc->use_cert?"(ssl)":""),
2995 		(worker->daemon->rc->accept_list && worker->daemon->cfg->control_ifs.first && worker->daemon->cfg->control_ifs.first->str && worker->daemon->cfg->control_ifs.first->str[0] == '/'?"(namedpipe)":"")
2996 		))
2997 		return;
2998 	if(!ssl_printf(ssl, "unbound (pid %d) is running...\n",
2999 		(int)getpid()))
3000 		return;
3001 }
3002 
3003 /** get age for the mesh state */
3004 static void
get_mesh_age(struct mesh_state * m,char * buf,size_t len,struct module_env * env)3005 get_mesh_age(struct mesh_state* m, char* buf, size_t len,
3006 	struct module_env* env)
3007 {
3008 	if(m->reply_list) {
3009 		struct timeval d;
3010 		struct mesh_reply* r = m->reply_list;
3011 		/* last reply is the oldest */
3012 		while(r && r->next)
3013 			r = r->next;
3014 		timeval_subtract(&d, env->now_tv, &r->start_time);
3015 		snprintf(buf, len, ARG_LL "d.%6.6d",
3016 			(long long)d.tv_sec, (int)d.tv_usec);
3017 	} else {
3018 		snprintf(buf, len, "-");
3019 	}
3020 }
3021 
3022 /** get status of a mesh state */
3023 static void
get_mesh_status(struct mesh_area * mesh,struct mesh_state * m,char * buf,size_t len)3024 get_mesh_status(struct mesh_area* mesh, struct mesh_state* m,
3025 	char* buf, size_t len)
3026 {
3027 	enum module_ext_state s = m->s.ext_state[m->s.curmod];
3028 	const char *modname = mesh->mods.mod[m->s.curmod]->name;
3029 	size_t l;
3030 	if(strcmp(modname, "iterator") == 0 && s == module_wait_reply &&
3031 		m->s.minfo[m->s.curmod]) {
3032 		/* break into iterator to find out who its waiting for */
3033 		struct iter_qstate* qstate = (struct iter_qstate*)
3034 			m->s.minfo[m->s.curmod];
3035 		struct outbound_list* ol = &qstate->outlist;
3036 		struct outbound_entry* e;
3037 		snprintf(buf, len, "%s wait for", modname);
3038 		l = strlen(buf);
3039 		buf += l; len -= l;
3040 		if(ol->first == NULL)
3041 			snprintf(buf, len, " (empty_list)");
3042 		for(e = ol->first; e; e = e->next) {
3043 			snprintf(buf, len, " ");
3044 			l = strlen(buf);
3045 			buf += l; len -= l;
3046 			addr_to_str(&e->qsent->addr, e->qsent->addrlen,
3047 				buf, len);
3048 			l = strlen(buf);
3049 			buf += l; len -= l;
3050 		}
3051 	} else if(s == module_wait_subquery) {
3052 		/* look in subs from mesh state to see what */
3053 		char nm[LDNS_MAX_DOMAINLEN];
3054 		struct mesh_state_ref* sub;
3055 		snprintf(buf, len, "%s wants", modname);
3056 		l = strlen(buf);
3057 		buf += l; len -= l;
3058 		if(m->sub_set.count == 0)
3059 			snprintf(buf, len, " (empty_list)");
3060 		RBTREE_FOR(sub, struct mesh_state_ref*, &m->sub_set) {
3061 			char* t = sldns_wire2str_type(sub->s->s.qinfo.qtype);
3062 			char* c = sldns_wire2str_class(sub->s->s.qinfo.qclass);
3063 			dname_str(sub->s->s.qinfo.qname, nm);
3064 			snprintf(buf, len, " %s %s %s", (t?t:"TYPE??"),
3065 				(c?c:"CLASS??"), nm);
3066 			l = strlen(buf);
3067 			buf += l; len -= l;
3068 			free(t);
3069 			free(c);
3070 		}
3071 	} else {
3072 		snprintf(buf, len, "%s is %s", modname, strextstate(s));
3073 	}
3074 }
3075 
3076 /** do the dump_requestlist command */
3077 static void
do_dump_requestlist(RES * ssl,struct worker * worker)3078 do_dump_requestlist(RES* ssl, struct worker* worker)
3079 {
3080 	struct mesh_area* mesh;
3081 	struct mesh_state* m;
3082 	int num = 0;
3083 	char buf[LDNS_MAX_DOMAINLEN];
3084 	char timebuf[32];
3085 	char statbuf[10240];
3086 	if(!ssl_printf(ssl, "thread #%d\n", worker->thread_num))
3087 		return;
3088 	if(!ssl_printf(ssl, "#   type cl name    seconds    module status\n"))
3089 		return;
3090 	/* show worker mesh contents */
3091 	mesh = worker->env.mesh;
3092 	if(!mesh) return;
3093 	RBTREE_FOR(m, struct mesh_state*, &mesh->all) {
3094 		char* t = sldns_wire2str_type(m->s.qinfo.qtype);
3095 		char* c = sldns_wire2str_class(m->s.qinfo.qclass);
3096 		dname_str(m->s.qinfo.qname, buf);
3097 		get_mesh_age(m, timebuf, sizeof(timebuf), &worker->env);
3098 		get_mesh_status(mesh, m, statbuf, sizeof(statbuf));
3099 		if(!ssl_printf(ssl, "%3d %4s %2s %s %s %s\n",
3100 			num, (t?t:"TYPE??"), (c?c:"CLASS??"), buf, timebuf,
3101 			statbuf)) {
3102 			free(t);
3103 			free(c);
3104 			return;
3105 		}
3106 		num++;
3107 		free(t);
3108 		free(c);
3109 	}
3110 }
3111 
3112 /** structure for argument data for dump infra host */
3113 struct infra_arg {
3114 	/** the infra cache */
3115 	struct infra_cache* infra;
3116 	/** the SSL connection */
3117 	RES* ssl;
3118 	/** the time now */
3119 	time_t now;
3120 	/** ssl failure? stop writing and skip the rest.  If the tcp
3121 	 * connection is broken, and writes fail, we then stop writing. */
3122 	int ssl_failed;
3123 };
3124 
3125 /** callback for every host element in the infra cache */
3126 static void
dump_infra_host(struct lruhash_entry * e,void * arg)3127 dump_infra_host(struct lruhash_entry* e, void* arg)
3128 {
3129 	struct infra_arg* a = (struct infra_arg*)arg;
3130 	struct infra_key* k = (struct infra_key*)e->key;
3131 	struct infra_data* d = (struct infra_data*)e->data;
3132 	char ip_str[1024];
3133 	char name[LDNS_MAX_DOMAINLEN];
3134 	int port;
3135 	if(a->ssl_failed)
3136 		return;
3137 	addr_to_str(&k->addr, k->addrlen, ip_str, sizeof(ip_str));
3138 	dname_str(k->zonename, name);
3139 	port = (int)ntohs(((struct sockaddr_in*)&k->addr)->sin_port);
3140 	if(port != UNBOUND_DNS_PORT) {
3141 		snprintf(ip_str+strlen(ip_str), sizeof(ip_str)-strlen(ip_str),
3142 			"@%d", port);
3143 	}
3144 	/* skip expired stuff (only backed off) */
3145 	if(d->ttl < a->now) {
3146 		if(d->rtt.rto >= USEFUL_SERVER_TOP_TIMEOUT) {
3147 			if(!ssl_printf(a->ssl, "%s %s expired rto %d\n", ip_str,
3148 				name, d->rtt.rto))  {
3149 				a->ssl_failed = 1;
3150 				return;
3151 			}
3152 		}
3153 		return;
3154 	}
3155 	if(!ssl_printf(a->ssl, "%s %s ttl %lu ping %d var %d rtt %d rto %d "
3156 		"tA %d tAAAA %d tother %d "
3157 		"ednsknown %d edns %d delay %d lame dnssec %d rec %d A %d "
3158 		"other %d\n", ip_str, name, (unsigned long)(d->ttl - a->now),
3159 		d->rtt.srtt, d->rtt.rttvar, rtt_notimeout(&d->rtt), d->rtt.rto,
3160 		d->timeout_A, d->timeout_AAAA, d->timeout_other,
3161 		(int)d->edns_lame_known, (int)d->edns_version,
3162 		(int)(a->now<d->probedelay?(d->probedelay - a->now):0),
3163 		(int)d->isdnsseclame, (int)d->rec_lame, (int)d->lame_type_A,
3164 		(int)d->lame_other)) {
3165 		a->ssl_failed = 1;
3166 		return;
3167 	}
3168 }
3169 
3170 /** do the dump_infra command */
3171 static void
do_dump_infra(RES * ssl,struct worker * worker)3172 do_dump_infra(RES* ssl, struct worker* worker)
3173 {
3174 	struct infra_arg arg;
3175 	arg.infra = worker->env.infra_cache;
3176 	arg.ssl = ssl;
3177 	arg.now = *worker->env.now;
3178 	arg.ssl_failed = 0;
3179 	slabhash_traverse(arg.infra->hosts, 0, &dump_infra_host, (void*)&arg);
3180 }
3181 
3182 /** do the log_reopen command */
3183 static void
do_log_reopen(RES * ssl,struct worker * worker)3184 do_log_reopen(RES* ssl, struct worker* worker)
3185 {
3186 	struct config_file* cfg = worker->env.cfg;
3187 	send_ok(ssl);
3188 	log_init(cfg->logfile, cfg->use_syslog, cfg->chrootdir);
3189 }
3190 
3191 /** do the auth_zone_reload command */
3192 static void
do_auth_zone_reload(RES * ssl,struct worker * worker,char * arg)3193 do_auth_zone_reload(RES* ssl, struct worker* worker, char* arg)
3194 {
3195 	size_t nmlen;
3196 	int nmlabs;
3197 	uint8_t* nm = NULL;
3198 	struct auth_zones* az = worker->env.auth_zones;
3199 	struct auth_zone* z = NULL;
3200 	struct auth_xfer* xfr = NULL;
3201 	char* reason = NULL;
3202 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
3203 		return;
3204 	if(az) {
3205 		lock_rw_rdlock(&az->lock);
3206 		z = auth_zone_find(az, nm, nmlen, LDNS_RR_CLASS_IN);
3207 		if(z) {
3208 			lock_rw_wrlock(&z->lock);
3209 		}
3210 		xfr = auth_xfer_find(az, nm, nmlen, LDNS_RR_CLASS_IN);
3211 		if(xfr) {
3212 			lock_basic_lock(&xfr->lock);
3213 		}
3214 		lock_rw_unlock(&az->lock);
3215 	}
3216 	free(nm);
3217 	if(!z) {
3218 		if(xfr) {
3219 			lock_basic_unlock(&xfr->lock);
3220 		}
3221 		(void)ssl_printf(ssl, "error no auth-zone %s\n", arg);
3222 		return;
3223 	}
3224 	if(!auth_zone_read_zonefile(z, worker->env.cfg)) {
3225 		lock_rw_unlock(&z->lock);
3226 		if(xfr) {
3227 			lock_basic_unlock(&xfr->lock);
3228 		}
3229 		(void)ssl_printf(ssl, "error failed to read %s\n", arg);
3230 		return;
3231 	}
3232 
3233 	z->zone_expired = 0;
3234 	if(xfr) {
3235 		xfr->zone_expired = 0;
3236 		if(!xfr_find_soa(z, xfr)) {
3237 			if(z->data.count == 0) {
3238 				lock_rw_unlock(&z->lock);
3239 				lock_basic_unlock(&xfr->lock);
3240 				(void)ssl_printf(ssl, "zone %s has no contents\n", arg);
3241 				return;
3242 			}
3243 			lock_rw_unlock(&z->lock);
3244 			lock_basic_unlock(&xfr->lock);
3245 			(void)ssl_printf(ssl, "error: no SOA in zone after read %s\n", arg);
3246 			return;
3247 		}
3248 		if(xfr->have_zone) {
3249 			xfr->lease_time = *worker->env.now;
3250 			xfr->soa_zone_acquired = *worker->env.now;
3251 		}
3252 		lock_basic_unlock(&xfr->lock);
3253 	}
3254 	z->soa_zone_acquired = *worker->env.now;
3255 
3256 	auth_zone_verify_zonemd(z, &worker->env, &worker->env.mesh->mods,
3257 		&reason, 0, 0);
3258 	if(reason && z->zone_expired) {
3259 		lock_rw_unlock(&z->lock);
3260 		(void)ssl_printf(ssl, "error zonemd for %s failed: %s\n",
3261 			arg, reason);
3262 		free(reason);
3263 		return;
3264 	} else if(reason && strcmp(reason, "ZONEMD verification successful")
3265 		==0) {
3266 		(void)ssl_printf(ssl, "%s: %s\n", arg, reason);
3267 	}
3268 	lock_rw_unlock(&z->lock);
3269 	free(reason);
3270 	send_ok(ssl);
3271 }
3272 
3273 /** do the auth_zone_transfer command */
3274 static void
do_auth_zone_transfer(RES * ssl,struct worker * worker,char * arg)3275 do_auth_zone_transfer(RES* ssl, struct worker* worker, char* arg)
3276 {
3277 	size_t nmlen;
3278 	int nmlabs;
3279 	uint8_t* nm = NULL;
3280 	struct auth_zones* az = worker->env.auth_zones;
3281 	if(!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
3282 		return;
3283 	if(!az || !auth_zones_startprobesequence(az, &worker->env, nm, nmlen,
3284 		LDNS_RR_CLASS_IN)) {
3285 		(void)ssl_printf(ssl, "error zone xfr task not found %s\n", arg);
3286 		free(nm);
3287 		return;
3288 	}
3289 	free(nm);
3290 	send_ok(ssl);
3291 }
3292 
3293 /** do the set_option command */
3294 static void
do_set_option(RES * ssl,struct worker * worker,char * arg)3295 do_set_option(RES* ssl, struct worker* worker, char* arg)
3296 {
3297 	char* arg2;
3298 	if(!find_arg2(ssl, arg, &arg2))
3299 		return;
3300 	if(!config_set_option(worker->env.cfg, arg, arg2)) {
3301 		(void)ssl_printf(ssl, "error setting option\n");
3302 		return;
3303 	}
3304 	/* effectuate some arguments */
3305 	if(strcmp(arg, "val-override-date:") == 0) {
3306 		int m = modstack_find(&worker->env.mesh->mods, "validator");
3307 		struct val_env* val_env = NULL;
3308 		if(m != -1) val_env = (struct val_env*)worker->env.modinfo[m];
3309 		if(val_env)
3310 			val_env->date_override = worker->env.cfg->val_date_override;
3311 	}
3312 	send_ok(ssl);
3313 }
3314 
3315 /* routine to printout option values over SSL */
remote_get_opt_ssl(char * line,void * arg)3316 void remote_get_opt_ssl(char* line, void* arg)
3317 {
3318 	RES* ssl = (RES*)arg;
3319 	(void)ssl_printf(ssl, "%s\n", line);
3320 }
3321 
3322 /** do the get_option command */
3323 static void
do_get_option(RES * ssl,struct worker * worker,char * arg)3324 do_get_option(RES* ssl, struct worker* worker, char* arg)
3325 {
3326 	int r;
3327 	r = config_get_option(worker->env.cfg, arg, remote_get_opt_ssl, ssl);
3328 	if(!r) {
3329 		(void)ssl_printf(ssl, "error unknown option\n");
3330 		return;
3331 	}
3332 }
3333 
3334 /** do the list_forwards command */
3335 static void
do_list_forwards(RES * ssl,struct worker * worker)3336 do_list_forwards(RES* ssl, struct worker* worker)
3337 {
3338 	/* since its a per-worker structure no locks needed */
3339 	struct iter_forwards* fwds = worker->env.fwds;
3340 	struct iter_forward_zone* z;
3341 	struct trust_anchor* a;
3342 	int insecure;
3343 	lock_rw_rdlock(&fwds->lock);
3344 	RBTREE_FOR(z, struct iter_forward_zone*, fwds->tree) {
3345 		if(!z->dp) continue; /* skip empty marker for stub */
3346 
3347 		/* see if it is insecure */
3348 		insecure = 0;
3349 		if(worker->env.anchors &&
3350 			(a=anchor_find(worker->env.anchors, z->name,
3351 			z->namelabs, z->namelen,  z->dclass))) {
3352 			if(!a->keylist && !a->numDS && !a->numDNSKEY)
3353 				insecure = 1;
3354 			lock_basic_unlock(&a->lock);
3355 		}
3356 
3357 		if(!ssl_print_name_dp(ssl, (insecure?"forward +i":"forward"),
3358 			z->name, z->dclass, z->dp)) {
3359 			lock_rw_unlock(&fwds->lock);
3360 			return;
3361 		}
3362 	}
3363 	lock_rw_unlock(&fwds->lock);
3364 }
3365 
3366 /** do the list_stubs command */
3367 static void
do_list_stubs(RES * ssl,struct worker * worker)3368 do_list_stubs(RES* ssl, struct worker* worker)
3369 {
3370 	struct iter_hints_stub* z;
3371 	struct trust_anchor* a;
3372 	int insecure;
3373 	char str[32];
3374 	lock_rw_rdlock(&worker->env.hints->lock);
3375 	RBTREE_FOR(z, struct iter_hints_stub*, &worker->env.hints->tree) {
3376 
3377 		/* see if it is insecure */
3378 		insecure = 0;
3379 		if(worker->env.anchors &&
3380 			(a=anchor_find(worker->env.anchors, z->node.name,
3381 			z->node.labs, z->node.len,  z->node.dclass))) {
3382 			if(!a->keylist && !a->numDS && !a->numDNSKEY)
3383 				insecure = 1;
3384 			lock_basic_unlock(&a->lock);
3385 		}
3386 
3387 		snprintf(str, sizeof(str), "stub %sprime%s",
3388 			(z->noprime?"no":""), (insecure?" +i":""));
3389 		if(!ssl_print_name_dp(ssl, str, z->node.name,
3390 			z->node.dclass, z->dp)) {
3391 			lock_rw_unlock(&worker->env.hints->lock);
3392 			return;
3393 		}
3394 	}
3395 	lock_rw_unlock(&worker->env.hints->lock);
3396 }
3397 
3398 /** do the list_auth_zones command */
3399 static void
do_list_auth_zones(RES * ssl,struct auth_zones * az)3400 do_list_auth_zones(RES* ssl, struct auth_zones* az)
3401 {
3402 	struct auth_zone* z;
3403 	char buf[LDNS_MAX_DOMAINLEN], buf2[256], buf3[256];
3404 	lock_rw_rdlock(&az->lock);
3405 	RBTREE_FOR(z, struct auth_zone*, &az->ztree) {
3406 		lock_rw_rdlock(&z->lock);
3407 		dname_str(z->name, buf);
3408 		if(z->zone_expired)
3409 			snprintf(buf2, sizeof(buf2), "expired");
3410 		else {
3411 			uint32_t serial = 0;
3412 			if(auth_zone_get_serial(z, &serial)) {
3413 				snprintf(buf2, sizeof(buf2), "serial %u",
3414 					(unsigned)serial);
3415 				if(z->soa_zone_acquired != 0) {
3416 #if defined(HAVE_STRFTIME) && defined(HAVE_LOCALTIME_R)
3417 					char tmbuf[32];
3418 					struct tm tm;
3419 					struct tm *tm_p;
3420 					tm_p = localtime_r(
3421 						&z->soa_zone_acquired, &tm);
3422 					if(!strftime(tmbuf, sizeof(tmbuf), "%Y-%m-%dT%H:%M:%S", tm_p))
3423 						snprintf(tmbuf, sizeof(tmbuf), "strftime-err-%u", (unsigned)z->soa_zone_acquired);
3424 					snprintf(buf3, sizeof(buf3),
3425 						"\t since %u %s",
3426 						(unsigned)z->soa_zone_acquired,
3427 						tmbuf);
3428 #else
3429 					snprintf(buf3, sizeof(buf3),
3430 						"\t since %u",
3431 						(unsigned)z->soa_zone_acquired);
3432 #endif
3433 				} else {
3434 					buf3[0]=0;
3435 				}
3436 			} else	{
3437 				snprintf(buf2, sizeof(buf2), "no serial");
3438 				buf3[0]=0;
3439 			}
3440 		}
3441 		lock_rw_unlock(&z->lock);
3442 		if(!ssl_printf(ssl, "%s\t%s%s\n", buf, buf2, buf3)) {
3443 			/* failure to print */
3444 			lock_rw_unlock(&az->lock);
3445 			return;
3446 		}
3447 	}
3448 	lock_rw_unlock(&az->lock);
3449 }
3450 
3451 /** do the list_local_zones command */
3452 static void
do_list_local_zones(RES * ssl,struct local_zones * zones)3453 do_list_local_zones(RES* ssl, struct local_zones* zones)
3454 {
3455 	struct local_zone* z;
3456 	char buf[LDNS_MAX_DOMAINLEN];
3457 	lock_rw_rdlock(&zones->lock);
3458 	RBTREE_FOR(z, struct local_zone*, &zones->ztree) {
3459 		lock_rw_rdlock(&z->lock);
3460 		dname_str(z->name, buf);
3461 		if(!ssl_printf(ssl, "%s %s\n", buf,
3462 			local_zone_type2str(z->type))) {
3463 			/* failure to print */
3464 			lock_rw_unlock(&z->lock);
3465 			lock_rw_unlock(&zones->lock);
3466 			return;
3467 		}
3468 		lock_rw_unlock(&z->lock);
3469 	}
3470 	lock_rw_unlock(&zones->lock);
3471 }
3472 
3473 /** do the list_local_data command */
3474 static void
do_list_local_data(RES * ssl,struct worker * worker,struct local_zones * zones)3475 do_list_local_data(RES* ssl, struct worker* worker, struct local_zones* zones)
3476 {
3477 	struct local_zone* z;
3478 	struct local_data* d;
3479 	struct local_rrset* p;
3480 	char* s = (char*)sldns_buffer_begin(worker->env.scratch_buffer);
3481 	size_t slen = sldns_buffer_capacity(worker->env.scratch_buffer);
3482 	lock_rw_rdlock(&zones->lock);
3483 	RBTREE_FOR(z, struct local_zone*, &zones->ztree) {
3484 		lock_rw_rdlock(&z->lock);
3485 		RBTREE_FOR(d, struct local_data*, &z->data) {
3486 			for(p = d->rrsets; p; p = p->next) {
3487 				struct packed_rrset_data* d =
3488 					(struct packed_rrset_data*)p->rrset->entry.data;
3489 				size_t i;
3490 				for(i=0; i<d->count + d->rrsig_count; i++) {
3491 					if(!packed_rr_to_string(p->rrset, i,
3492 						0, s, slen)) {
3493 						if(!ssl_printf(ssl, "BADRR\n")) {
3494 							lock_rw_unlock(&z->lock);
3495 							lock_rw_unlock(&zones->lock);
3496 							return;
3497 						}
3498 					}
3499 				        if(!ssl_printf(ssl, "%s\n", s)) {
3500 						lock_rw_unlock(&z->lock);
3501 						lock_rw_unlock(&zones->lock);
3502 						return;
3503 					}
3504 				}
3505 			}
3506 		}
3507 		lock_rw_unlock(&z->lock);
3508 	}
3509 	lock_rw_unlock(&zones->lock);
3510 }
3511 
3512 /** do the view_list_local_zones command */
3513 static void
do_view_list_local_zones(RES * ssl,struct worker * worker,char * arg)3514 do_view_list_local_zones(RES* ssl, struct worker* worker, char* arg)
3515 {
3516 	struct view* v = views_find_view(worker->env.views,
3517 		arg, 0 /* get read lock*/);
3518 	if(!v) {
3519 		ssl_printf(ssl,"no view with name: %s\n", arg);
3520 		return;
3521 	}
3522 	if(v->local_zones) {
3523 		do_list_local_zones(ssl, v->local_zones);
3524 	}
3525 	lock_rw_unlock(&v->lock);
3526 }
3527 
3528 /** do the view_list_local_data command */
3529 static void
do_view_list_local_data(RES * ssl,struct worker * worker,char * arg)3530 do_view_list_local_data(RES* ssl, struct worker* worker, char* arg)
3531 {
3532 	struct view* v = views_find_view(worker->env.views,
3533 		arg, 0 /* get read lock*/);
3534 	if(!v) {
3535 		ssl_printf(ssl,"no view with name: %s\n", arg);
3536 		return;
3537 	}
3538 	if(v->local_zones) {
3539 		do_list_local_data(ssl, worker, v->local_zones);
3540 	}
3541 	lock_rw_unlock(&v->lock);
3542 }
3543 
3544 /** struct for user arg ratelimit list */
3545 struct ratelimit_list_arg {
3546 	/** the infra cache */
3547 	struct infra_cache* infra;
3548 	/** the SSL to print to */
3549 	RES* ssl;
3550 	/** all or only ratelimited */
3551 	int all;
3552 	/** current time */
3553 	time_t now;
3554 	/** if backoff is enabled */
3555 	int backoff;
3556 };
3557 
3558 #define ip_ratelimit_list_arg ratelimit_list_arg
3559 
3560 /** list items in the ratelimit table */
3561 static void
rate_list(struct lruhash_entry * e,void * arg)3562 rate_list(struct lruhash_entry* e, void* arg)
3563 {
3564 	struct ratelimit_list_arg* a = (struct ratelimit_list_arg*)arg;
3565 	struct rate_key* k = (struct rate_key*)e->key;
3566 	struct rate_data* d = (struct rate_data*)e->data;
3567 	char buf[LDNS_MAX_DOMAINLEN];
3568 	int lim = infra_find_ratelimit(a->infra, k->name, k->namelen);
3569 	int max = infra_rate_max(d, a->now, a->backoff);
3570 	if(a->all == 0) {
3571 		if(max < lim)
3572 			return;
3573 	}
3574 	dname_str(k->name, buf);
3575 	ssl_printf(a->ssl, "%s %d limit %d\n", buf, max, lim);
3576 }
3577 
3578 /** list items in the ip_ratelimit table */
3579 static void
ip_rate_list(struct lruhash_entry * e,void * arg)3580 ip_rate_list(struct lruhash_entry* e, void* arg)
3581 {
3582 	char ip[128];
3583 	struct ip_ratelimit_list_arg* a = (struct ip_ratelimit_list_arg*)arg;
3584 	struct ip_rate_key* k = (struct ip_rate_key*)e->key;
3585 	struct ip_rate_data* d = (struct ip_rate_data*)e->data;
3586 	int lim = infra_ip_ratelimit;
3587 	int max = infra_rate_max(d, a->now, a->backoff);
3588 	if(a->all == 0) {
3589 		if(max < lim)
3590 			return;
3591 	}
3592 	addr_to_str(&k->addr, k->addrlen, ip, sizeof(ip));
3593 	ssl_printf(a->ssl, "%s %d limit %d\n", ip, max, lim);
3594 }
3595 
3596 /** do the ratelimit_list command */
3597 static void
do_ratelimit_list(RES * ssl,struct worker * worker,char * arg)3598 do_ratelimit_list(RES* ssl, struct worker* worker, char* arg)
3599 {
3600 	struct ratelimit_list_arg a;
3601 	a.all = 0;
3602 	a.infra = worker->env.infra_cache;
3603 	a.now = *worker->env.now;
3604 	a.ssl = ssl;
3605 	a.backoff = worker->env.cfg->ratelimit_backoff;
3606 	arg = skipwhite(arg);
3607 	if(strcmp(arg, "+a") == 0)
3608 		a.all = 1;
3609 	if(a.infra->domain_rates==NULL ||
3610 		(a.all == 0 && infra_dp_ratelimit == 0))
3611 		return;
3612 	slabhash_traverse(a.infra->domain_rates, 0, rate_list, &a);
3613 }
3614 
3615 /** do the ip_ratelimit_list command */
3616 static void
do_ip_ratelimit_list(RES * ssl,struct worker * worker,char * arg)3617 do_ip_ratelimit_list(RES* ssl, struct worker* worker, char* arg)
3618 {
3619 	struct ip_ratelimit_list_arg a;
3620 	a.all = 0;
3621 	a.infra = worker->env.infra_cache;
3622 	a.now = *worker->env.now;
3623 	a.ssl = ssl;
3624 	a.backoff = worker->env.cfg->ip_ratelimit_backoff;
3625 	arg = skipwhite(arg);
3626 	if(strcmp(arg, "+a") == 0)
3627 		a.all = 1;
3628 	if(a.infra->client_ip_rates==NULL ||
3629 		(a.all == 0 && infra_ip_ratelimit == 0))
3630 		return;
3631 	slabhash_traverse(a.infra->client_ip_rates, 0, ip_rate_list, &a);
3632 }
3633 
3634 /** do the rpz_enable/disable command */
3635 static void
do_rpz_enable_disable(RES * ssl,struct worker * worker,char * arg,int enable)3636 do_rpz_enable_disable(RES* ssl, struct worker* worker, char* arg, int enable) {
3637     size_t nmlen;
3638     int nmlabs;
3639     uint8_t *nm = NULL;
3640     struct auth_zones *az = worker->env.auth_zones;
3641     struct auth_zone *z = NULL;
3642     if (!parse_arg_name(ssl, arg, &nm, &nmlen, &nmlabs))
3643         return;
3644     if (az) {
3645         lock_rw_rdlock(&az->lock);
3646         z = auth_zone_find(az, nm, nmlen, LDNS_RR_CLASS_IN);
3647         if (z) {
3648             lock_rw_wrlock(&z->lock);
3649         }
3650         lock_rw_unlock(&az->lock);
3651     }
3652     free(nm);
3653     if (!z) {
3654         (void) ssl_printf(ssl, "error no auth-zone %s\n", arg);
3655         return;
3656     }
3657     if (!z->rpz) {
3658         (void) ssl_printf(ssl, "error auth-zone %s not RPZ\n", arg);
3659         lock_rw_unlock(&z->lock);
3660         return;
3661     }
3662     if (enable) {
3663         rpz_enable(z->rpz);
3664     } else {
3665         rpz_disable(z->rpz);
3666     }
3667     lock_rw_unlock(&z->lock);
3668     send_ok(ssl);
3669 }
3670 
3671 /** do the rpz_enable command */
3672 static void
do_rpz_enable(RES * ssl,struct worker * worker,char * arg)3673 do_rpz_enable(RES* ssl, struct worker* worker, char* arg)
3674 {
3675     do_rpz_enable_disable(ssl, worker, arg, 1);
3676 }
3677 
3678 /** do the rpz_disable command */
3679 static void
do_rpz_disable(RES * ssl,struct worker * worker,char * arg)3680 do_rpz_disable(RES* ssl, struct worker* worker, char* arg)
3681 {
3682     do_rpz_enable_disable(ssl, worker, arg, 0);
3683 }
3684 
3685 /** Write the cookie secrets to file, returns `0` on failure.
3686  * Caller has to hold the lock. */
3687 static int
cookie_secret_file_dump(RES * ssl,struct worker * worker)3688 cookie_secret_file_dump(RES* ssl, struct worker* worker) {
3689 	char const* secret_file = worker->env.cfg->cookie_secret_file;
3690 	struct cookie_secrets* cookie_secrets = worker->daemon->cookie_secrets;
3691 	char secret_hex[UNBOUND_COOKIE_SECRET_SIZE * 2 + 1];
3692 	FILE* f;
3693 	size_t i;
3694 	if(secret_file == NULL || secret_file[0]==0) {
3695 		(void)ssl_printf(ssl, "error: no cookie secret file configured\n");
3696 		return 0;
3697 	}
3698 	log_assert( secret_file != NULL );
3699 
3700 	/* open write only and truncate */
3701 	if((f = fopen(secret_file, "w")) == NULL ) {
3702 		(void)ssl_printf(ssl, "unable to open cookie secret file %s: %s",
3703 		                 secret_file, strerror(errno));
3704 		return 0;
3705 	}
3706 	if(cookie_secrets == NULL) {
3707 		/* nothing to write */
3708 		fclose(f);
3709 		return 1;
3710 	}
3711 
3712 	for(i = 0; i < cookie_secrets->cookie_count; i++) {
3713 		struct cookie_secret const* cs = &cookie_secrets->
3714 			cookie_secrets[i];
3715 		ssize_t const len = hex_ntop(cs->cookie_secret,
3716 			UNBOUND_COOKIE_SECRET_SIZE, secret_hex,
3717 			sizeof(secret_hex));
3718 		(void)len; /* silence unused variable warning with -DNDEBUG */
3719 		log_assert( len == UNBOUND_COOKIE_SECRET_SIZE * 2 );
3720 		secret_hex[UNBOUND_COOKIE_SECRET_SIZE * 2] = '\0';
3721 		fprintf(f, "%s\n", secret_hex);
3722 	}
3723 	explicit_bzero(secret_hex, sizeof(secret_hex));
3724 	fclose(f);
3725 	return 1;
3726 }
3727 
3728 /** Activate cookie secret */
3729 static void
do_activate_cookie_secret(RES * ssl,struct worker * worker)3730 do_activate_cookie_secret(RES* ssl, struct worker* worker) {
3731 	char const* secret_file = worker->env.cfg->cookie_secret_file;
3732 	struct cookie_secrets* cookie_secrets = worker->daemon->cookie_secrets;
3733 
3734 	if(secret_file == NULL || secret_file[0] == 0) {
3735 		(void)ssl_printf(ssl, "error: no cookie secret file configured\n");
3736 		return;
3737 	}
3738 	if(cookie_secrets == NULL) {
3739 		(void)ssl_printf(ssl, "error: there are no cookie_secrets.");
3740 		return;
3741 	}
3742 	lock_basic_lock(&cookie_secrets->lock);
3743 
3744 	if(cookie_secrets->cookie_count <= 1 ) {
3745 		lock_basic_unlock(&cookie_secrets->lock);
3746 		(void)ssl_printf(ssl, "error: no staging cookie secret to activate\n");
3747 		return;
3748 	}
3749 	/* Only the worker 0 writes to file, the others update state. */
3750 	if(worker->thread_num == 0 && !cookie_secret_file_dump(ssl, worker)) {
3751 		lock_basic_unlock(&cookie_secrets->lock);
3752 		(void)ssl_printf(ssl, "error: writing to cookie secret file: \"%s\"\n",
3753 				secret_file);
3754 		return;
3755 	}
3756 	activate_cookie_secret(cookie_secrets);
3757 	if(worker->thread_num == 0)
3758 		(void)cookie_secret_file_dump(ssl, worker);
3759 	lock_basic_unlock(&cookie_secrets->lock);
3760 	send_ok(ssl);
3761 }
3762 
3763 /** Drop cookie secret */
3764 static void
do_drop_cookie_secret(RES * ssl,struct worker * worker)3765 do_drop_cookie_secret(RES* ssl, struct worker* worker) {
3766 	char const* secret_file = worker->env.cfg->cookie_secret_file;
3767 	struct cookie_secrets* cookie_secrets = worker->daemon->cookie_secrets;
3768 
3769 	if(secret_file == NULL || secret_file[0] == 0) {
3770 		(void)ssl_printf(ssl, "error: no cookie secret file configured\n");
3771 		return;
3772 	}
3773 	if(cookie_secrets == NULL) {
3774 		(void)ssl_printf(ssl, "error: there are no cookie_secrets.");
3775 		return;
3776 	}
3777 	lock_basic_lock(&cookie_secrets->lock);
3778 
3779 	if(cookie_secrets->cookie_count <= 1 ) {
3780 		lock_basic_unlock(&cookie_secrets->lock);
3781 		(void)ssl_printf(ssl, "error: can not drop the currently active cookie secret\n");
3782 		return;
3783 	}
3784 	/* Only the worker 0 writes to file, the others update state. */
3785 	if(worker->thread_num == 0 && !cookie_secret_file_dump(ssl, worker)) {
3786 		lock_basic_unlock(&cookie_secrets->lock);
3787 		(void)ssl_printf(ssl, "error: writing to cookie secret file: \"%s\"\n",
3788 				secret_file);
3789 		return;
3790 	}
3791 	drop_cookie_secret(cookie_secrets);
3792 	if(worker->thread_num == 0)
3793 		(void)cookie_secret_file_dump(ssl, worker);
3794 	lock_basic_unlock(&cookie_secrets->lock);
3795 	send_ok(ssl);
3796 }
3797 
3798 /** Add cookie secret */
3799 static void
do_add_cookie_secret(RES * ssl,struct worker * worker,char * arg)3800 do_add_cookie_secret(RES* ssl, struct worker* worker, char* arg) {
3801 	uint8_t secret[UNBOUND_COOKIE_SECRET_SIZE];
3802 	char const* secret_file = worker->env.cfg->cookie_secret_file;
3803 	struct cookie_secrets* cookie_secrets = worker->daemon->cookie_secrets;
3804 
3805 	if(secret_file == NULL || secret_file[0] == 0) {
3806 		(void)ssl_printf(ssl, "error: no cookie secret file configured\n");
3807 		return;
3808 	}
3809 	if(cookie_secrets == NULL) {
3810 		worker->daemon->cookie_secrets = cookie_secrets_create();
3811 		if(!worker->daemon->cookie_secrets) {
3812 			(void)ssl_printf(ssl, "error: out of memory");
3813 			return;
3814 		}
3815 		cookie_secrets = worker->daemon->cookie_secrets;
3816 	}
3817 	lock_basic_lock(&cookie_secrets->lock);
3818 
3819 	if(*arg == '\0') {
3820 		lock_basic_unlock(&cookie_secrets->lock);
3821 		(void)ssl_printf(ssl, "error: missing argument (cookie_secret)\n");
3822 		return;
3823 	}
3824 	if(strlen(arg) != 32) {
3825 		lock_basic_unlock(&cookie_secrets->lock);
3826 		explicit_bzero(arg, strlen(arg));
3827 		(void)ssl_printf(ssl, "invalid cookie secret: invalid argument length\n");
3828 		(void)ssl_printf(ssl, "please provide a 128bit hex encoded secret\n");
3829 		return;
3830 	}
3831 	if(hex_pton(arg, secret, UNBOUND_COOKIE_SECRET_SIZE) !=
3832 		UNBOUND_COOKIE_SECRET_SIZE ) {
3833 		lock_basic_unlock(&cookie_secrets->lock);
3834 		explicit_bzero(secret, UNBOUND_COOKIE_SECRET_SIZE);
3835 		explicit_bzero(arg, strlen(arg));
3836 		(void)ssl_printf(ssl, "invalid cookie secret: parse error\n");
3837 		(void)ssl_printf(ssl, "please provide a 128bit hex encoded secret\n");
3838 		return;
3839 	}
3840 	/* Only the worker 0 writes to file, the others update state. */
3841 	if(worker->thread_num == 0 && !cookie_secret_file_dump(ssl, worker)) {
3842 		lock_basic_unlock(&cookie_secrets->lock);
3843 		explicit_bzero(secret, UNBOUND_COOKIE_SECRET_SIZE);
3844 		explicit_bzero(arg, strlen(arg));
3845 		(void)ssl_printf(ssl, "error: writing to cookie secret file: \"%s\"\n",
3846 				secret_file);
3847 		return;
3848 	}
3849 	add_cookie_secret(cookie_secrets, secret, UNBOUND_COOKIE_SECRET_SIZE);
3850 	explicit_bzero(secret, UNBOUND_COOKIE_SECRET_SIZE);
3851 	if(worker->thread_num == 0)
3852 		(void)cookie_secret_file_dump(ssl, worker);
3853 	lock_basic_unlock(&cookie_secrets->lock);
3854 	explicit_bzero(arg, strlen(arg));
3855 	send_ok(ssl);
3856 }
3857 
3858 /** Print cookie secrets */
3859 static void
do_print_cookie_secrets(RES * ssl,struct worker * worker)3860 do_print_cookie_secrets(RES* ssl, struct worker* worker) {
3861 	struct cookie_secrets* cookie_secrets = worker->daemon->cookie_secrets;
3862 	char secret_hex[UNBOUND_COOKIE_SECRET_SIZE * 2 + 1];
3863 	int i;
3864 
3865 	if(!cookie_secrets)
3866 		return; /* Output is empty. */
3867 	lock_basic_lock(&cookie_secrets->lock);
3868 	for(i = 0; (size_t)i < cookie_secrets->cookie_count; i++) {
3869 		struct cookie_secret const* cs = &cookie_secrets->
3870 			cookie_secrets[i];
3871 		ssize_t const len = hex_ntop(cs->cookie_secret,
3872 			UNBOUND_COOKIE_SECRET_SIZE, secret_hex,
3873 			sizeof(secret_hex));
3874 		(void)len; /* silence unused variable warning with -DNDEBUG */
3875 		log_assert( len == UNBOUND_COOKIE_SECRET_SIZE * 2 );
3876 		secret_hex[UNBOUND_COOKIE_SECRET_SIZE * 2] = '\0';
3877 		if (i == 0)
3878 			(void)ssl_printf(ssl, "active : %s\n",  secret_hex);
3879 		else if (cookie_secrets->cookie_count == 2)
3880 			(void)ssl_printf(ssl, "staging: %s\n",  secret_hex);
3881 		else
3882 			(void)ssl_printf(ssl, "staging[%d]: %s\n", i,
3883 				secret_hex);
3884 	}
3885 	lock_basic_unlock(&cookie_secrets->lock);
3886 	explicit_bzero(secret_hex, sizeof(secret_hex));
3887 }
3888 
3889 /** check that there is no argument after a command that takes no arguments. */
3890 static int
cmd_no_args(RES * ssl,char * cmd,char * p)3891 cmd_no_args(RES* ssl, char* cmd, char* p)
3892 {
3893 	if(p && *p != 0) {
3894 		/* cmd contains the command that is called at the start,
3895 		 * with space or tab after it. */
3896 		char* c = cmd;
3897 		if(strchr(c, ' ') && strchr(c, '\t')) {
3898 			if(strchr(c, ' ') < strchr(c, '\t'))
3899 				*strchr(c, ' ')=0;
3900 			else	*strchr(c, '\t')=0;
3901 		} else if(strchr(c, ' ')) {
3902 			*strchr(c, ' ')=0;
3903 		} else if(strchr(c, '\t')) {
3904 			*strchr(c, '\t')=0;
3905 		}
3906 		(void)ssl_printf(ssl, "error command %s takes no arguments,"
3907 			" have '%s'\n", c, p);
3908 		return 1;
3909 	}
3910 	return 0;
3911 }
3912 
3913 /** check for name with end-of-string, space or tab after it */
3914 static int
cmdcmp(char * p,const char * cmd,size_t len)3915 cmdcmp(char* p, const char* cmd, size_t len)
3916 {
3917 	return strncmp(p,cmd,len)==0 && (p[len]==0||p[len]==' '||p[len]=='\t');
3918 }
3919 
3920 /** execute a remote control command */
3921 static void
execute_cmd(struct daemon_remote * rc,struct rc_state * s,RES * ssl,char * cmd,struct worker * worker)3922 execute_cmd(struct daemon_remote* rc, struct rc_state* s, RES* ssl, char* cmd,
3923 	struct worker* worker)
3924 {
3925 	char* p = skipwhite(cmd);
3926 	/* compare command */
3927 	if(cmdcmp(p, "stop", 4)) {
3928 		if(cmd_no_args(ssl, p, skipwhite(p+4)))
3929 			return;
3930 		do_stop(ssl, worker);
3931 		return;
3932 	} else if(cmdcmp(p, "reload_keep_cache", 17)) {
3933 		if(cmd_no_args(ssl, p, skipwhite(p+17)))
3934 			return;
3935 		do_reload(ssl, worker, 1);
3936 		return;
3937 	} else if(cmdcmp(p, "reload", 6)) {
3938 		if(cmd_no_args(ssl, p, skipwhite(p+6)))
3939 			return;
3940 		do_reload(ssl, worker, 0);
3941 		return;
3942 	} else if(cmdcmp(p, "fast_reload", 11)) {
3943 		do_fast_reload(ssl, worker, s, skipwhite(p+11));
3944 		return;
3945 	} else if(cmdcmp(p, "stats_noreset", 13)) {
3946 		if(cmd_no_args(ssl, p, skipwhite(p+13)))
3947 			return;
3948 		do_stats(ssl, worker, 0);
3949 		return;
3950 	} else if(cmdcmp(p, "stats", 5)) {
3951 		if(cmd_no_args(ssl, p, skipwhite(p+5)))
3952 			return;
3953 		do_stats(ssl, worker, 1);
3954 		return;
3955 	} else if(cmdcmp(p, "status", 6)) {
3956 		if(cmd_no_args(ssl, p, skipwhite(p+6)))
3957 			return;
3958 		do_status(ssl, worker);
3959 		return;
3960 	} else if(cmdcmp(p, "dump_cache", 10)) {
3961 		if(cmd_no_args(ssl, p, skipwhite(p+10)))
3962 			return;
3963 #ifdef THREADS_DISABLED
3964 		if(worker->daemon->num > 1) {
3965 			(void)ssl_printf(ssl, "dump_cache/load_cache is not "
3966 				"supported in multi-process operation\n");
3967 			return;
3968 		}
3969 #endif
3970 		(void)dump_cache(ssl, worker);
3971 		return;
3972 	} else if(cmdcmp(p, "load_cache", 10)) {
3973 		if(cmd_no_args(ssl, p, skipwhite(p+10)))
3974 			return;
3975 #ifdef THREADS_DISABLED
3976 		if(worker->daemon->num > 1) {
3977 			/* The warning can't be printed when stdin is sending
3978 			 * data; just return */
3979 			return;
3980 		}
3981 #endif
3982 		if(load_cache(ssl, worker)) send_ok(ssl);
3983 		return;
3984 	} else if(cmdcmp(p, "list_forwards", 13)) {
3985 		if(cmd_no_args(ssl, p, skipwhite(p+13)))
3986 			return;
3987 		do_list_forwards(ssl, worker);
3988 		return;
3989 	} else if(cmdcmp(p, "list_stubs", 10)) {
3990 		if(cmd_no_args(ssl, p, skipwhite(p+10)))
3991 			return;
3992 		do_list_stubs(ssl, worker);
3993 		return;
3994 	} else if(cmdcmp(p, "list_insecure", 13)) {
3995 		if(cmd_no_args(ssl, p, skipwhite(p+13)))
3996 			return;
3997 		do_insecure_list(ssl, worker);
3998 		return;
3999 	} else if(cmdcmp(p, "list_local_zones", 16)) {
4000 		if(cmd_no_args(ssl, p, skipwhite(p+16)))
4001 			return;
4002 		do_list_local_zones(ssl, worker->daemon->local_zones);
4003 		return;
4004 	} else if(cmdcmp(p, "list_local_data", 15)) {
4005 		if(cmd_no_args(ssl, p, skipwhite(p+15)))
4006 			return;
4007 		do_list_local_data(ssl, worker, worker->daemon->local_zones);
4008 		return;
4009 	} else if(cmdcmp(p, "view_list_local_zones", 21)) {
4010 		do_view_list_local_zones(ssl, worker, skipwhite(p+21));
4011 		return;
4012 	} else if(cmdcmp(p, "view_list_local_data", 20)) {
4013 		do_view_list_local_data(ssl, worker, skipwhite(p+20));
4014 		return;
4015 	} else if(cmdcmp(p, "ratelimit_list", 14)) {
4016 		do_ratelimit_list(ssl, worker, p+14);
4017 		return;
4018 	} else if(cmdcmp(p, "ip_ratelimit_list", 17)) {
4019 		do_ip_ratelimit_list(ssl, worker, p+17);
4020 		return;
4021 	} else if(cmdcmp(p, "list_auth_zones", 15)) {
4022 		if(cmd_no_args(ssl, p, skipwhite(p+15)))
4023 			return;
4024 		do_list_auth_zones(ssl, worker->env.auth_zones);
4025 		return;
4026 	} else if(cmdcmp(p, "auth_zone_reload", 16)) {
4027 		do_auth_zone_reload(ssl, worker, skipwhite(p+16));
4028 		return;
4029 	} else if(cmdcmp(p, "auth_zone_transfer", 18)) {
4030 		do_auth_zone_transfer(ssl, worker, skipwhite(p+18));
4031 		return;
4032 	} else if(cmdcmp(p, "insecure_add", 12)) {
4033 		/* must always distribute this cmd */
4034 		if(rc) distribute_cmd(rc, ssl, cmd);
4035 		do_insecure_add(ssl, worker, skipwhite(p+12));
4036 		return;
4037 	} else if(cmdcmp(p, "insecure_remove", 15)) {
4038 		/* must always distribute this cmd */
4039 		if(rc) distribute_cmd(rc, ssl, cmd);
4040 		do_insecure_remove(ssl, worker, skipwhite(p+15));
4041 		return;
4042 	} else if(cmdcmp(p, "flush_stats", 11)) {
4043 		/* must always distribute this cmd */
4044 		if(cmd_no_args(ssl, p, skipwhite(p+11)))
4045 			return;
4046 		if(rc) distribute_cmd(rc, ssl, cmd);
4047 		do_flush_stats(ssl, worker);
4048 		return;
4049 	} else if(cmdcmp(p, "flush_requestlist", 17)) {
4050 		/* must always distribute this cmd */
4051 		if(cmd_no_args(ssl, p, skipwhite(p+17)))
4052 			return;
4053 		if(rc) distribute_cmd(rc, ssl, cmd);
4054 		do_flush_requestlist(ssl, worker);
4055 		return;
4056 	} else if(cmdcmp(p, "cache_lookup", 12)) {
4057 		do_cache_lookup(ssl, worker, skipwhite(p+12));
4058 		return;
4059 	} else if(cmdcmp(p, "lookup", 6)) {
4060 		do_lookup(ssl, worker, skipwhite(p+6));
4061 		return;
4062 	/* The following are commands that read stdin.
4063 	 * Each line needs to be distributed if THREADS_DISABLED.
4064 	 */
4065 	} else if(cmdcmp(p, "local_zones_remove", 18)) {
4066 		if(cmd_no_args(ssl, p, skipwhite(p+18)))
4067 			return;
4068 		do_zones_remove(rc, ssl, worker);
4069 		return;
4070 	} else if(cmdcmp(p, "local_zones", 11)) {
4071 		if(cmd_no_args(ssl, p, skipwhite(p+11)))
4072 			return;
4073 		do_zones_add(rc, ssl, worker);
4074 		return;
4075 	} else if(cmdcmp(p, "local_datas_remove", 18)) {
4076 		if(cmd_no_args(ssl, p, skipwhite(p+18)))
4077 			return;
4078 		do_datas_remove(rc, ssl, worker);
4079 		return;
4080 	} else if(cmdcmp(p, "local_datas", 11)) {
4081 		if(cmd_no_args(ssl, p, skipwhite(p+11)))
4082 			return;
4083 		do_datas_add(rc, ssl, worker);
4084 		return;
4085 	} else if(cmdcmp(p, "view_local_datas_remove", 23)){
4086 		do_view_datas_remove(rc, ssl, worker, skipwhite(p+23));
4087 		return;
4088 	} else if(cmdcmp(p, "view_local_datas", 16)) {
4089 		do_view_datas_add(rc, ssl, worker, skipwhite(p+16));
4090 		return;
4091 	} else if(cmdcmp(p, "print_cookie_secrets", 20)) {
4092 		if(cmd_no_args(ssl, p, skipwhite(p+20)))
4093 			return;
4094 		do_print_cookie_secrets(ssl, worker);
4095 		return;
4096 	}
4097 
4098 #ifdef THREADS_DISABLED
4099 	/* other processes must execute the command as well */
4100 	/* commands that should not be distributed, returned above. */
4101 	if(rc) { /* only if this thread is the master (rc) thread */
4102 		/* done before the code below, which may split the string */
4103 		distribute_cmd(rc, ssl, cmd);
4104 	}
4105 #endif
4106 	if(cmdcmp(p, "verbosity", 9)) {
4107 		do_verbosity(ssl, skipwhite(p+9));
4108 	} else if(cmdcmp(p, "local_zone_remove", 17)) {
4109 		do_zone_remove(ssl, worker->daemon->local_zones, skipwhite(p+17));
4110 	} else if(cmdcmp(p, "local_zone", 10)) {
4111 		do_zone_add(ssl, worker->daemon->local_zones, skipwhite(p+10));
4112 	} else if(cmdcmp(p, "local_data_remove", 17)) {
4113 		do_data_remove(ssl, worker->daemon->local_zones, skipwhite(p+17));
4114 	} else if(cmdcmp(p, "local_data", 10)) {
4115 		do_data_add(ssl, worker->daemon->local_zones, skipwhite(p+10));
4116 	} else if(cmdcmp(p, "forward_add", 11)) {
4117 		do_forward_add(ssl, worker, skipwhite(p+11));
4118 	} else if(cmdcmp(p, "forward_remove", 14)) {
4119 		do_forward_remove(ssl, worker, skipwhite(p+14));
4120 	} else if(cmdcmp(p, "forward", 7)) {
4121 		do_forward(ssl, worker, skipwhite(p+7));
4122 	} else if(cmdcmp(p, "stub_add", 8)) {
4123 		do_stub_add(ssl, worker, skipwhite(p+8));
4124 	} else if(cmdcmp(p, "stub_remove", 11)) {
4125 		do_stub_remove(ssl, worker, skipwhite(p+11));
4126 	} else if(cmdcmp(p, "view_local_zone_remove", 22)) {
4127 		do_view_zone_remove(ssl, worker, skipwhite(p+22));
4128 	} else if(cmdcmp(p, "view_local_zone", 15)) {
4129 		do_view_zone_add(ssl, worker, skipwhite(p+15));
4130 	} else if(cmdcmp(p, "view_local_data_remove", 22)) {
4131 		do_view_data_remove(ssl, worker, skipwhite(p+22));
4132 	} else if(cmdcmp(p, "view_local_data", 15)) {
4133 		do_view_data_add(ssl, worker, skipwhite(p+15));
4134 	} else if(cmdcmp(p, "flush_zone", 10)) {
4135 		do_flush_zone(ssl, worker, skipwhite(p+10));
4136 	} else if(cmdcmp(p, "flush_type", 10)) {
4137 		do_flush_type(ssl, worker, skipwhite(p+10));
4138 	} else if(cmdcmp(p, "flush_infra", 11)) {
4139 		do_flush_infra(ssl, worker, skipwhite(p+11));
4140 	} else if(cmdcmp(p, "flush", 5)) {
4141 		do_flush_name(ssl, worker, skipwhite(p+5));
4142 	} else if(cmdcmp(p, "dump_requestlist", 16)) {
4143 		if(cmd_no_args(ssl, p, skipwhite(p+16)))
4144 			return;
4145 		do_dump_requestlist(ssl, worker);
4146 	} else if(cmdcmp(p, "dump_infra", 10)) {
4147 		if(cmd_no_args(ssl, p, skipwhite(p+10)))
4148 			return;
4149 		do_dump_infra(ssl, worker);
4150 	} else if(cmdcmp(p, "log_reopen", 10)) {
4151 		if(cmd_no_args(ssl, p, skipwhite(p+10)))
4152 			return;
4153 		do_log_reopen(ssl, worker);
4154 	} else if(cmdcmp(p, "set_option", 10)) {
4155 		do_set_option(ssl, worker, skipwhite(p+10));
4156 	} else if(cmdcmp(p, "get_option", 10)) {
4157 		do_get_option(ssl, worker, skipwhite(p+10));
4158 	} else if(cmdcmp(p, "flush_bogus", 11)) {
4159 		do_flush_bogus(ssl, worker, skipwhite(p+11));
4160 	} else if(cmdcmp(p, "flush_negative", 14)) {
4161 		do_flush_negative(ssl, worker, skipwhite(p+14));
4162 	} else if(cmdcmp(p, "rpz_enable", 10)) {
4163 		do_rpz_enable(ssl, worker, skipwhite(p+10));
4164 	} else if(cmdcmp(p, "rpz_disable", 11)) {
4165 		do_rpz_disable(ssl, worker, skipwhite(p+11));
4166 	} else if(cmdcmp(p, "add_cookie_secret", 17)) {
4167 		do_add_cookie_secret(ssl, worker, skipwhite(p+17));
4168 	} else if(cmdcmp(p, "drop_cookie_secret", 18)) {
4169 		if(cmd_no_args(ssl, p, skipwhite(p+18)))
4170 			return;
4171 		do_drop_cookie_secret(ssl, worker);
4172 	} else if(cmdcmp(p, "activate_cookie_secret", 22)) {
4173 		if(cmd_no_args(ssl, p, skipwhite(p+22)))
4174 			return;
4175 		do_activate_cookie_secret(ssl, worker);
4176 	} else {
4177 		(void)ssl_printf(ssl, "error unknown command '%s'\n", p);
4178 	}
4179 }
4180 
4181 void
daemon_remote_exec(struct worker * worker)4182 daemon_remote_exec(struct worker* worker)
4183 {
4184 	/* read the cmd string */
4185 	uint8_t* msg = NULL;
4186 	uint32_t len = 0;
4187 	if(!tube_read_msg(worker->cmd, &msg, &len, 0)) {
4188 		log_err("daemon_remote_exec: tube_read_msg failed");
4189 		return;
4190 	}
4191 	verbose(VERB_ALGO, "remote exec distributed: %s", (char*)msg);
4192 	execute_cmd(NULL, NULL, NULL, (char*)msg, worker);
4193 	free(msg);
4194 }
4195 
4196 /** handle remote control request */
4197 static void
handle_req(struct daemon_remote * rc,struct rc_state * s,RES * res)4198 handle_req(struct daemon_remote* rc, struct rc_state* s, RES* res)
4199 {
4200 	int r;
4201 	char pre[10];
4202 	char magic[7];
4203 	char buf[MAX_CMD_STRLINE];
4204 #ifdef USE_WINSOCK
4205 	/* makes it possible to set the socket blocking again. */
4206 	/* basically removes it from winsock_event ... */
4207 	WSAEventSelect(s->c->fd, NULL, 0);
4208 #endif
4209 	fd_set_block(s->c->fd);
4210 
4211 	/* try to read magic UBCT[version]_space_ string */
4212 	if(res->ssl) {
4213 		ERR_clear_error();
4214 		if((r=SSL_read(res->ssl, magic, (int)sizeof(magic)-1)) <= 0) {
4215 			int r2;
4216 			if((r2=SSL_get_error(res->ssl, r)) == SSL_ERROR_ZERO_RETURN)
4217 				return;
4218 			log_crypto_err_io("could not SSL_read", r2);
4219 			return;
4220 		}
4221 	} else {
4222 		while(1) {
4223 			ssize_t rr = recv(res->fd, magic, sizeof(magic)-1, 0);
4224 			if(rr <= 0) {
4225 				if(rr == 0) return;
4226 				if(errno == EINTR || errno == EAGAIN)
4227 					continue;
4228 				log_err("could not recv: %s", sock_strerror(errno));
4229 				return;
4230 			}
4231 			r = (int)rr;
4232 			break;
4233 		}
4234 	}
4235 	magic[6] = 0;
4236 	if( r != 6 || strncmp(magic, "UBCT", 4) != 0) {
4237 		verbose(VERB_QUERY, "control connection has bad magic string");
4238 		/* probably wrong tool connected, ignore it completely */
4239 		return;
4240 	}
4241 
4242 	/* read the command line */
4243 	if(!ssl_read_line(res, buf, sizeof(buf))) {
4244 		return;
4245 	}
4246 	snprintf(pre, sizeof(pre), "UBCT%d ", UNBOUND_CONTROL_VERSION);
4247 	if(strcmp(magic, pre) != 0) {
4248 		verbose(VERB_QUERY, "control connection had bad "
4249 			"version %s, cmd: %s", magic, buf);
4250 		ssl_printf(res, "error version mismatch\n");
4251 		return;
4252 	}
4253 	verbose(VERB_DETAIL, "control cmd: %s", buf);
4254 
4255 	/* figure out what to do */
4256 	execute_cmd(rc, s, res, buf, rc->worker);
4257 }
4258 
4259 /** handle SSL_do_handshake changes to the file descriptor to wait for later */
4260 static int
remote_handshake_later(struct daemon_remote * rc,struct rc_state * s,struct comm_point * c,int r,int r2)4261 remote_handshake_later(struct daemon_remote* rc, struct rc_state* s,
4262 	struct comm_point* c, int r, int r2)
4263 {
4264 	if(r2 == SSL_ERROR_WANT_READ) {
4265 		if(s->shake_state == rc_hs_read) {
4266 			/* try again later */
4267 			return 0;
4268 		}
4269 		s->shake_state = rc_hs_read;
4270 		comm_point_listen_for_rw(c, 1, 0);
4271 		return 0;
4272 	} else if(r2 == SSL_ERROR_WANT_WRITE) {
4273 		if(s->shake_state == rc_hs_write) {
4274 			/* try again later */
4275 			return 0;
4276 		}
4277 		s->shake_state = rc_hs_write;
4278 		comm_point_listen_for_rw(c, 0, 1);
4279 		return 0;
4280 	} else {
4281 		if(r == 0)
4282 			log_err("remote control connection closed prematurely");
4283 		log_addr(VERB_OPS, "failed connection from",
4284 			&s->c->repinfo.remote_addr, s->c->repinfo.remote_addrlen);
4285 		log_crypto_err_io("remote control failed ssl", r2);
4286 		clean_point(rc, s);
4287 	}
4288 	return 0;
4289 }
4290 
remote_control_callback(struct comm_point * c,void * arg,int err,struct comm_reply * ATTR_UNUSED (rep))4291 int remote_control_callback(struct comm_point* c, void* arg, int err,
4292 	struct comm_reply* ATTR_UNUSED(rep))
4293 {
4294 	RES res;
4295 	struct rc_state* s = (struct rc_state*)arg;
4296 	struct daemon_remote* rc = s->rc;
4297 	int r;
4298 	if(err != NETEVENT_NOERROR) {
4299 		if(err==NETEVENT_TIMEOUT)
4300 			log_err("remote control timed out");
4301 		clean_point(rc, s);
4302 		return 0;
4303 	}
4304 	if(s->ssl) {
4305 		/* (continue to) setup the SSL connection */
4306 		ERR_clear_error();
4307 		r = SSL_do_handshake(s->ssl);
4308 		if(r != 1) {
4309 			int r2 = SSL_get_error(s->ssl, r);
4310 			return remote_handshake_later(rc, s, c, r, r2);
4311 		}
4312 		s->shake_state = rc_none;
4313 	}
4314 
4315 	/* once handshake has completed, check authentication */
4316 	if (!rc->use_cert) {
4317 		verbose(VERB_ALGO, "unauthenticated remote control connection");
4318 	} else if(SSL_get_verify_result(s->ssl) == X509_V_OK) {
4319 #ifdef HAVE_SSL_GET1_PEER_CERTIFICATE
4320 		X509* x = SSL_get1_peer_certificate(s->ssl);
4321 #else
4322 		X509* x = SSL_get_peer_certificate(s->ssl);
4323 #endif
4324 		if(!x) {
4325 			verbose(VERB_DETAIL, "remote control connection "
4326 				"provided no client certificate");
4327 			clean_point(rc, s);
4328 			return 0;
4329 		}
4330 		verbose(VERB_ALGO, "remote control connection authenticated");
4331 		X509_free(x);
4332 	} else {
4333 		verbose(VERB_DETAIL, "remote control connection failed to "
4334 			"authenticate with client certificate");
4335 		clean_point(rc, s);
4336 		return 0;
4337 	}
4338 
4339 	/* if OK start to actually handle the request */
4340 	res.ssl = s->ssl;
4341 	res.fd = c->fd;
4342 	handle_req(rc, s, &res);
4343 
4344 	verbose(VERB_ALGO, "remote control operation completed");
4345 	clean_point(rc, s);
4346 	return 0;
4347 }
4348 
4349 /**
4350  * This routine polls a socket for readiness.
4351  * @param fd: file descriptor, -1 uses no fd for a timer only.
4352  * @param timeout: time in msec to wait. 0 means nonblocking test,
4353  * 	-1 waits blocking for events.
4354  * @param pollin: check for input event.
4355  * @param pollout: check for output event.
4356  * @param event: output variable, set to true if the event happens.
4357  * 	It is false if there was an error or timeout.
4358  * @return false is system call failure, also logged.
4359  */
4360 static int
sock_poll_timeout(int fd,int timeout,int pollin,int pollout,int * event)4361 sock_poll_timeout(int fd, int timeout, int pollin, int pollout, int* event)
4362 {
4363 	int loopcount = 0;
4364 	/* Loop if the system call returns an errno to do so, like EINTR. */
4365 	log_assert(pollin || pollout);
4366 	while(1) {
4367 		struct pollfd p, *fds;
4368 		int nfds, ret;
4369 		if(++loopcount > IPC_LOOP_MAX) {
4370 			log_err("sock_poll_timeout: loop");
4371 			if(event)
4372 				*event = 0;
4373 			return 0;
4374 		}
4375 		if(fd == -1) {
4376 			fds = NULL;
4377 			nfds = 0;
4378 		} else {
4379 			fds = &p;
4380 			nfds = 1;
4381 			memset(&p, 0, sizeof(p));
4382 			p.fd = fd;
4383 #ifndef USE_WINSOCK
4384 			p.events = POLLERR
4385 				| POLLHUP
4386 				;
4387 #endif
4388 			if(pollin)
4389 				p.events |= POLLIN;
4390 			if(pollout)
4391 				p.events |= POLLOUT;
4392 		}
4393 #ifndef USE_WINSOCK
4394 		ret = poll(fds, nfds, timeout);
4395 #else
4396 		if(fds == NULL) {
4397 			Sleep(timeout);
4398 			ret = 0;
4399 		} else {
4400 			ret = WSAPoll(fds, nfds, timeout);
4401 		}
4402 #endif
4403 		if(ret == -1) {
4404 #ifndef USE_WINSOCK
4405 			if(
4406 				errno == EINTR || errno == EAGAIN
4407 #  ifdef EWOULDBLOCK
4408 				|| errno == EWOULDBLOCK
4409 #  endif
4410 			) continue; /* Try again. */
4411 #endif
4412 			/* For WSAPoll we only get errors here:
4413 			 * o WSAENETDOWN
4414 			 * o WSAEFAULT
4415 			 * o WSAEINVAL
4416 			 * o WSAENOBUFS
4417 			 */
4418 			log_err("poll: %s", sock_strerror(errno));
4419 			if(event)
4420 				*event = 0;
4421 			return 0;
4422 		} else if(ret == 0) {
4423 			/* Timeout */
4424 			if(event)
4425 				*event = 0;
4426 			return 1;
4427 		}
4428 		break;
4429 	}
4430 	if(event)
4431 		*event = 1;
4432 	return 1;
4433 }
4434 
4435 /** fast reload convert fast reload notification status to string */
4436 static const char*
fr_notification_to_string(enum fast_reload_notification status)4437 fr_notification_to_string(enum fast_reload_notification status)
4438 {
4439 	switch(status) {
4440 	case fast_reload_notification_none:
4441 		return "none";
4442 	case fast_reload_notification_done:
4443 		return "done";
4444 	case fast_reload_notification_done_error:
4445 		return "done_error";
4446 	case fast_reload_notification_exit:
4447 		return "exit";
4448 	case fast_reload_notification_exited:
4449 		return "exited";
4450 	case fast_reload_notification_printout:
4451 		return "printout";
4452 	case fast_reload_notification_reload_stop:
4453 		return "reload_stop";
4454 	case fast_reload_notification_reload_ack:
4455 		return "reload_ack";
4456 	case fast_reload_notification_reload_nopause_poll:
4457 		return "reload_nopause_poll";
4458 	case fast_reload_notification_reload_start:
4459 		return "reload_start";
4460 	default:
4461 		break;
4462 	}
4463 	return "unknown";
4464 }
4465 
4466 #ifndef THREADS_DISABLED
4467 /** fast reload, poll for notification incoming. True if quit */
4468 static int
fr_poll_for_quit(struct fast_reload_thread * fr)4469 fr_poll_for_quit(struct fast_reload_thread* fr)
4470 {
4471 	int inevent, loopexit = 0, bcount = 0;
4472 	uint32_t cmd;
4473 	ssize_t ret;
4474 
4475 	if(fr->need_to_quit)
4476 		return 1;
4477 	/* Is there data? */
4478 	if(!sock_poll_timeout(fr->commpair[1], 0, 1, 0, &inevent)) {
4479 		log_err("fr_poll_for_quit: poll failed");
4480 		return 0;
4481 	}
4482 	if(!inevent)
4483 		return 0;
4484 
4485 	/* Read the data */
4486 	while(1) {
4487 		if(++loopexit > IPC_LOOP_MAX) {
4488 			log_err("fr_poll_for_quit: recv loops %s",
4489 				sock_strerror(errno));
4490 			return 0;
4491 		}
4492 		ret = recv(fr->commpair[1], ((char*)&cmd)+bcount,
4493 			sizeof(cmd)-bcount, 0);
4494 		if(ret == -1) {
4495 			if(
4496 #ifndef USE_WINSOCK
4497 				errno == EINTR || errno == EAGAIN
4498 #  ifdef EWOULDBLOCK
4499 				|| errno == EWOULDBLOCK
4500 #  endif
4501 #else
4502 				WSAGetLastError() == WSAEINTR ||
4503 				WSAGetLastError() == WSAEINPROGRESS ||
4504 				WSAGetLastError() == WSAEWOULDBLOCK
4505 #endif
4506 				)
4507 				continue; /* Try again. */
4508 			log_err("fr_poll_for_quit: recv: %s",
4509 				sock_strerror(errno));
4510 			return 0;
4511 		} else if(ret+(ssize_t)bcount != sizeof(cmd)) {
4512 			bcount += ret;
4513 			if((size_t)bcount < sizeof(cmd))
4514 				continue;
4515 		}
4516 		break;
4517 	}
4518 	if(cmd == fast_reload_notification_exit) {
4519 		fr->need_to_quit = 1;
4520 		verbose(VERB_ALGO, "fast reload: exit notification received");
4521 		return 1;
4522 	}
4523 	log_err("fr_poll_for_quit: unknown notification status received: %d %s",
4524 		cmd, fr_notification_to_string(cmd));
4525 	return 0;
4526 }
4527 
4528 /** fast reload thread. Send notification from the fast reload thread */
4529 static void
fr_send_notification(struct fast_reload_thread * fr,enum fast_reload_notification status)4530 fr_send_notification(struct fast_reload_thread* fr,
4531 	enum fast_reload_notification status)
4532 {
4533 	int outevent, loopexit = 0, bcount = 0;
4534 	uint32_t cmd;
4535 	ssize_t ret;
4536 	verbose(VERB_ALGO, "fast reload: send notification %s",
4537 		fr_notification_to_string(status));
4538 	/* Make a blocking attempt to send. But meanwhile stay responsive,
4539 	 * once in a while for quit commands. In case the server has to quit. */
4540 	/* see if there is incoming quit signals */
4541 	if(fr_poll_for_quit(fr))
4542 		return;
4543 	cmd = status;
4544 	while(1) {
4545 		if(++loopexit > IPC_LOOP_MAX) {
4546 			log_err("fast reload: could not send notification");
4547 			return;
4548 		}
4549 		/* wait for socket to become writable */
4550 		if(!sock_poll_timeout(fr->commpair[1], IPC_NOTIFICATION_WAIT,
4551 			0, 1, &outevent)) {
4552 			log_err("fast reload: poll failed");
4553 			return;
4554 		}
4555 		if(fr_poll_for_quit(fr))
4556 			return;
4557 		if(!outevent)
4558 			continue;
4559 		ret = send(fr->commpair[1], ((char*)&cmd)+bcount,
4560 			sizeof(cmd)-bcount, 0);
4561 		if(ret == -1) {
4562 			if(
4563 #ifndef USE_WINSOCK
4564 				errno == EINTR || errno == EAGAIN
4565 #  ifdef EWOULDBLOCK
4566 				|| errno == EWOULDBLOCK
4567 #  endif
4568 #else
4569 				WSAGetLastError() == WSAEINTR ||
4570 				WSAGetLastError() == WSAEINPROGRESS ||
4571 				WSAGetLastError() == WSAEWOULDBLOCK
4572 #endif
4573 				)
4574 				continue; /* Try again. */
4575 			log_err("fast reload send notification: send: %s",
4576 				sock_strerror(errno));
4577 			return;
4578 		} else if(ret+(ssize_t)bcount != sizeof(cmd)) {
4579 			bcount += ret;
4580 			if((size_t)bcount < sizeof(cmd))
4581 				continue;
4582 		}
4583 		break;
4584 	}
4585 }
4586 
4587 /** fast reload thread queue up text string for output */
4588 static int
fr_output_text(struct fast_reload_thread * fr,const char * msg)4589 fr_output_text(struct fast_reload_thread* fr, const char* msg)
4590 {
4591 	char* item = strdup(msg);
4592 	if(!item) {
4593 		log_err("fast reload output text: strdup out of memory");
4594 		return 0;
4595 	}
4596 	lock_basic_lock(&fr->fr_output_lock);
4597 	if(!cfg_strlist_append(fr->fr_output, item)) {
4598 		lock_basic_unlock(&fr->fr_output_lock);
4599 		/* The item is freed by cfg_strlist_append on failure. */
4600 		log_err("fast reload output text: append out of memory");
4601 		return 0;
4602 	}
4603 	lock_basic_unlock(&fr->fr_output_lock);
4604 	return 1;
4605 }
4606 
4607 /** fast reload thread output vmsg function */
4608 static int
fr_output_vmsg(struct fast_reload_thread * fr,const char * format,va_list args)4609 fr_output_vmsg(struct fast_reload_thread* fr, const char* format, va_list args)
4610 {
4611 	char msg[1024];
4612 	vsnprintf(msg, sizeof(msg), format, args);
4613 	return fr_output_text(fr, msg);
4614 }
4615 
4616 /** fast reload thread printout function, with printf arguments */
4617 static int fr_output_printf(struct fast_reload_thread* fr,
4618 	const char* format, ...) ATTR_FORMAT(printf, 2, 3);
4619 
4620 /** fast reload thread printout function, prints to list and signals
4621  * the remote control thread to move that to get written to the socket
4622  * of the remote control connection. */
4623 static int
fr_output_printf(struct fast_reload_thread * fr,const char * format,...)4624 fr_output_printf(struct fast_reload_thread* fr, const char* format, ...)
4625 {
4626 	va_list args;
4627 	int ret;
4628 	va_start(args, format);
4629 	ret = fr_output_vmsg(fr, format, args);
4630 	va_end(args);
4631 	return ret;
4632 }
4633 
4634 /** fast reload thread, init time counters */
4635 static void
fr_init_time(struct timeval * time_start,struct timeval * time_read,struct timeval * time_construct,struct timeval * time_reload,struct timeval * time_end)4636 fr_init_time(struct timeval* time_start, struct timeval* time_read,
4637 	struct timeval* time_construct, struct timeval* time_reload,
4638 	struct timeval* time_end)
4639 {
4640 	memset(time_start, 0, sizeof(*time_start));
4641 	memset(time_read, 0, sizeof(*time_read));
4642 	memset(time_construct, 0, sizeof(*time_construct));
4643 	memset(time_reload, 0, sizeof(*time_reload));
4644 	memset(time_end, 0, sizeof(*time_end));
4645 	if(gettimeofday(time_start, NULL) < 0)
4646 		log_err("gettimeofday: %s", strerror(errno));
4647 }
4648 
4649 /**
4650  * Structure with constructed elements for use during fast reload.
4651  * At the start it contains the tree items for the new config.
4652  * After the tree items are swapped into the server, the old elements
4653  * are kept in here. They can then be deleted.
4654  */
4655 struct fast_reload_construct {
4656 	/** ssl context for listening to dnstcp over ssl */
4657 	void* listen_dot_sslctx;
4658 	/** ssl context for connecting to dnstcp over ssl */
4659 	void* connect_dot_sslctx;
4660 	/** ssl context for listening to DoH */
4661 	void* listen_doh_sslctx;
4662 	/** ssl context for listening to quic */
4663 	void* listen_quic_sslctx;
4664 	/** the file name that the ssl context is made with, private key. */
4665 	char* ssl_service_key;
4666 	/** the file name that the ssl context is made with, certificate. */
4667 	char* ssl_service_pem;
4668 	/** modification time for ssl_service_key, in sec and ns. Like
4669 	 * in a struct timespec, but without that for portability. */
4670 	time_t mtime_ssl_service_key;
4671 	long mtime_ns_ssl_service_key;
4672 	/** modification time for ssl_service_pem, in sec and ns. Like
4673 	 * in a struct timespec, but without that for portability. */
4674 	time_t mtime_ssl_service_pem;
4675 	long mtime_ns_ssl_service_pem;
4676 	/** construct for views */
4677 	struct views* views;
4678 	/** construct for auth zones */
4679 	struct auth_zones* auth_zones;
4680 	/** construct for forwards */
4681 	struct iter_forwards* fwds;
4682 	/** construct for stubs */
4683 	struct iter_hints* hints;
4684 	/** construct for respip_set */
4685 	struct respip_set* respip_set;
4686 	/** construct for access control */
4687 	struct acl_list* acl;
4688 	/** construct for access control interface */
4689 	struct acl_list* acl_interface;
4690 	/** construct for tcp connection limit */
4691 	struct tcl_list* tcl;
4692 	/** construct for local zones */
4693 	struct local_zones* local_zones;
4694 	/** if there is response ip configuration in use */
4695 	int use_response_ip;
4696 	/** if there is an rpz zone */
4697 	int use_rpz;
4698 	/** construct for edns strings */
4699 	struct edns_strings* edns_strings;
4700 	/** construct for trust anchors */
4701 	struct val_anchors* anchors;
4702 	/** construct for nsec3 key size */
4703 	size_t* nsec3_keysize;
4704 	/** construct for nsec3 max iter */
4705 	size_t* nsec3_maxiter;
4706 	/** construct for nsec3 keyiter count */
4707 	int nsec3_keyiter_count;
4708 	/** construct for target fetch policy */
4709 	int* target_fetch_policy;
4710 	/** construct for max dependency depth */
4711 	int max_dependency_depth;
4712 	/** construct for donotquery addresses */
4713 	struct iter_donotq* donotq;
4714 	/** construct for private addresses and domains */
4715 	struct iter_priv* priv;
4716 	/** construct whitelist for capsforid names */
4717 	struct rbtree_type* caps_white;
4718 	/** construct for nat64 */
4719 	struct iter_nat64 nat64;
4720 	/** construct for wait_limits_netblock */
4721 	struct rbtree_type wait_limits_netblock;
4722 	/** construct for wait_limits_cookie_netblock */
4723 	struct rbtree_type wait_limits_cookie_netblock;
4724 	/** construct for domain limits */
4725 	struct rbtree_type domain_limits;
4726 	/** storage for the old configuration elements. The outer struct
4727 	 * is allocated with malloc here, the items are from config. */
4728 	struct config_file* oldcfg;
4729 };
4730 
4731 /** fast reload thread, read config */
4732 static int
fr_read_config(struct fast_reload_thread * fr,struct config_file ** newcfg)4733 fr_read_config(struct fast_reload_thread* fr, struct config_file** newcfg)
4734 {
4735 	/* Create new config structure. */
4736 	*newcfg = config_create();
4737 	if(!*newcfg) {
4738 		if(!fr_output_printf(fr, "config_create failed: out of memory\n"))
4739 			return 0;
4740 		fr_send_notification(fr, fast_reload_notification_printout);
4741 		return 0;
4742 	}
4743 	if(fr_poll_for_quit(fr))
4744 		return 1;
4745 
4746 	/* Read new config from file */
4747 	if(!config_read(*newcfg, fr->worker->daemon->cfgfile,
4748 		fr->worker->daemon->chroot)) {
4749 		config_delete(*newcfg);
4750 		if(!fr_output_printf(fr, "config_read %s%s%s%s failed: %s\n",
4751 			(fr->worker->daemon->chroot?"<chroot:":""),
4752 			(fr->worker->daemon->chroot?fr->worker->daemon->chroot:""),
4753 			(fr->worker->daemon->chroot?"> ":""),
4754 			fr->worker->daemon->cfgfile, strerror(errno)))
4755 			return 0;
4756 		fr_send_notification(fr, fast_reload_notification_printout);
4757 		return 0;
4758 	}
4759 	if(fr_poll_for_quit(fr))
4760 		return 1;
4761 	if(fr->fr_verb >= 1) {
4762 		if(!fr_output_printf(fr, "done read config file %s%s%s%s\n",
4763 			(fr->worker->daemon->chroot?"<chroot:":""),
4764 			(fr->worker->daemon->chroot?fr->worker->daemon->chroot:""),
4765 			(fr->worker->daemon->chroot?"> ":""),
4766 			fr->worker->daemon->cfgfile))
4767 			return 0;
4768 		fr_send_notification(fr, fast_reload_notification_printout);
4769 	}
4770 
4771 	return 1;
4772 }
4773 
4774 /** Check if two taglists are equal. */
4775 static int
taglist_equal(char ** tagname_a,int num_tags_a,char ** tagname_b,int num_tags_b)4776 taglist_equal(char** tagname_a, int num_tags_a, char** tagname_b,
4777 	int num_tags_b)
4778 {
4779 	int i;
4780 	if(num_tags_a != num_tags_b)
4781 		return 0;
4782 	for(i=0; i<num_tags_a; i++) {
4783 		if(strcmp(tagname_a[i], tagname_b[i]) != 0)
4784 			return 0;
4785 	}
4786 	return 1;
4787 }
4788 
4789 /** Check the change from a to b is only new entries at the end. */
4790 static int
taglist_change_at_end(char ** tagname_a,int num_tags_a,char ** tagname_b,int num_tags_b)4791 taglist_change_at_end(char** tagname_a, int num_tags_a, char** tagname_b,
4792 	int num_tags_b)
4793 {
4794 	if(num_tags_a < 0 || num_tags_b < 0)
4795 		return 0;
4796 	if(num_tags_a >= num_tags_b)
4797 		return 0;
4798 	/* So, b is longer than a. Check if the initial start of the two
4799 	 * taglists is the same. */
4800 	if(!taglist_equal(tagname_a, num_tags_a, tagname_b, num_tags_a))
4801 		return 0;
4802 	return 1;
4803 }
4804 
4805 /** fast reload thread, check tag defines. */
4806 static int
fr_check_tag_defines(struct fast_reload_thread * fr,struct config_file * newcfg)4807 fr_check_tag_defines(struct fast_reload_thread* fr, struct config_file* newcfg)
4808 {
4809 	/* The tags are kept in a bitlist for items. Some of them are stored
4810 	 * in query info. If the tags change, then the old values are
4811 	 * inaccurate. The solution is to then flush the query list.
4812 	 * Unless the change only involves adding new tags at the end, that
4813 	 * needs no changes. */
4814 	if(!taglist_equal(fr->worker->daemon->cfg->tagname,
4815 			fr->worker->daemon->cfg->num_tags, newcfg->tagname,
4816 			newcfg->num_tags) &&
4817 		!taglist_change_at_end(fr->worker->daemon->cfg->tagname,
4818 			fr->worker->daemon->cfg->num_tags, newcfg->tagname,
4819 			newcfg->num_tags)) {
4820 		/* The tags have changed too much, the define-tag config. */
4821 		if(fr->fr_drop_mesh)
4822 			return 1; /* already dropping queries */
4823 		fr->fr_drop_mesh = 1;
4824 		fr->worker->daemon->fast_reload_drop_mesh = fr->fr_drop_mesh;
4825 		if(!fr_output_printf(fr, "tags have changed, with "
4826 			"'define-tag', and the queries have to be dropped "
4827 			"for consistency, setting '+d'\n"))
4828 			return 0;
4829 		fr_send_notification(fr, fast_reload_notification_printout);
4830 	}
4831 	return 1;
4832 }
4833 
4834 /** fast reload thread, add incompatible option to the explanatory string */
4835 static void
fr_add_incompatible_option(const char * desc,char * str,size_t len)4836 fr_add_incompatible_option(const char* desc, char* str, size_t len)
4837 {
4838 	size_t slen = strlen(str);
4839 	size_t desclen = strlen(desc);
4840 	if(slen == 0) {
4841 		snprintf(str, len, "%s", desc);
4842 		return;
4843 	}
4844 	if(len - slen < desclen+2)
4845 		return; /* It does not fit */
4846 	snprintf(str+slen, len-slen, " %s", desc);
4847 }
4848 
4849 /** fast reload thread, check if config item has changed; thus incompatible */
4850 #define FR_CHECK_CHANGED_CFG(desc, var, str)				\
4851 do {									\
4852 	if(cfg->var != newcfg->var) {					\
4853 		fr_add_incompatible_option(desc, str, sizeof(str));	\
4854 	}								\
4855 } while(0);
4856 
4857 /** fast reload thread, check if config string has changed, checks NULLs. */
4858 #define FR_CHECK_CHANGED_CFG_STR(desc, var, str)			\
4859 do {									\
4860 	if((!cfg->var && newcfg->var) ||				\
4861 		(cfg->var && !newcfg->var) ||				\
4862 		(cfg->var && newcfg->var				\
4863 		&& strcmp(cfg->var, newcfg->var) != 0)) {		\
4864 		fr_add_incompatible_option(desc, str, sizeof(str));	\
4865 	}								\
4866 } while(0);
4867 
4868 /** fast reload thread, check if config strlist has changed. */
4869 #define FR_CHECK_CHANGED_CFG_STRLIST(desc, var, str) do {		\
4870 	fr_check_changed_cfg_strlist(cfg->var, newcfg->var, desc, str,	\
4871 		sizeof(str));						\
4872 	} while(0);
4873 static void
fr_check_changed_cfg_strlist(struct config_strlist * cmp1,struct config_strlist * cmp2,const char * desc,char * str,size_t len)4874 fr_check_changed_cfg_strlist(struct config_strlist* cmp1,
4875 	struct config_strlist* cmp2, const char* desc, char* str, size_t len)
4876 {
4877 	struct config_strlist* p1 = cmp1, *p2 = cmp2;
4878 	while(p1 && p2) {
4879 		if((!p1->str && p2->str) ||
4880 			(p1->str && !p2->str) ||
4881 			(p1->str && p2->str && strcmp(p1->str, p2->str) != 0)) {
4882 			/* The strlist is different. */
4883 			fr_add_incompatible_option(desc, str, len);
4884 			return;
4885 		}
4886 		p1 = p1->next;
4887 		p2 = p2->next;
4888 	}
4889 	if((!p1 && p2) || (p1 && !p2)) {
4890 		fr_add_incompatible_option(desc, str, len);
4891 	}
4892 }
4893 
4894 /** fast reload thread, check if config str2list has changed. */
4895 #define FR_CHECK_CHANGED_CFG_STR2LIST(desc, var, buff) do {		\
4896 	fr_check_changed_cfg_str2list(cfg->var, newcfg->var, desc, buff,\
4897 		sizeof(buff));						\
4898 	} while(0);
4899 static void
fr_check_changed_cfg_str2list(struct config_str2list * cmp1,struct config_str2list * cmp2,const char * desc,char * str,size_t len)4900 fr_check_changed_cfg_str2list(struct config_str2list* cmp1,
4901 	struct config_str2list* cmp2, const char* desc, char* str, size_t len)
4902 {
4903 	struct config_str2list* p1 = cmp1, *p2 = cmp2;
4904 	while(p1 && p2) {
4905 		if((!p1->str && p2->str) ||
4906 			(p1->str && !p2->str) ||
4907 			(p1->str && p2->str && strcmp(p1->str, p2->str) != 0)) {
4908 			/* The str2list is different. */
4909 			fr_add_incompatible_option(desc, str, len);
4910 			return;
4911 		}
4912 		if((!p1->str2 && p2->str2) ||
4913 			(p1->str2 && !p2->str2) ||
4914 			(p1->str2 && p2->str2 &&
4915 			strcmp(p1->str2, p2->str2) != 0)) {
4916 			/* The str2list is different. */
4917 			fr_add_incompatible_option(desc, str, len);
4918 			return;
4919 		}
4920 		p1 = p1->next;
4921 		p2 = p2->next;
4922 	}
4923 	if((!p1 && p2) || (p1 && !p2)) {
4924 		fr_add_incompatible_option(desc, str, len);
4925 	}
4926 }
4927 
4928 /** fast reload thread, check compatible config items */
4929 static int
fr_check_compat_cfg(struct fast_reload_thread * fr,struct config_file * newcfg)4930 fr_check_compat_cfg(struct fast_reload_thread* fr, struct config_file* newcfg)
4931 {
4932 	int i;
4933 	char changed_str[1024];
4934 	struct config_file* cfg = fr->worker->env.cfg;
4935 	changed_str[0]=0;
4936 
4937 	/* Find incompatible options, and if so, print an error. */
4938 	FR_CHECK_CHANGED_CFG("num-threads", num_threads, changed_str);
4939 	FR_CHECK_CHANGED_CFG("do-ip4", do_ip4, changed_str);
4940 	FR_CHECK_CHANGED_CFG("do-ip6", do_ip6, changed_str);
4941 	FR_CHECK_CHANGED_CFG("do-udp", do_udp, changed_str);
4942 	FR_CHECK_CHANGED_CFG("do-tcp", do_tcp, changed_str);
4943 	FR_CHECK_CHANGED_CFG("port", port, changed_str);
4944 	/* But cfg->outgoing_num_ports has been changed at startup,
4945 	 * possibly to reduce it, so do not check it here. */
4946 	FR_CHECK_CHANGED_CFG("outgoing-num-tcp", outgoing_num_tcp, changed_str);
4947 	FR_CHECK_CHANGED_CFG("incoming-num-tcp", incoming_num_tcp, changed_str);
4948 	FR_CHECK_CHANGED_CFG("outgoing-interface", num_out_ifs, changed_str);
4949 	if(cfg->num_out_ifs == newcfg->num_out_ifs) {
4950 		for(i=0; i<cfg->num_out_ifs; i++)
4951 			FR_CHECK_CHANGED_CFG_STR("outgoing-interface",
4952 				out_ifs[i], changed_str);
4953 	}
4954 	FR_CHECK_CHANGED_CFG("interface", num_ifs, changed_str);
4955 	if(cfg->num_ifs == newcfg->num_ifs) {
4956 		for(i=0; i<cfg->num_ifs; i++)
4957 			FR_CHECK_CHANGED_CFG_STR("interface",
4958 				ifs[i], changed_str);
4959 	}
4960 	FR_CHECK_CHANGED_CFG("interface-automatic", if_automatic, changed_str);
4961 	FR_CHECK_CHANGED_CFG("so-rcvbuf", so_rcvbuf, changed_str);
4962 	FR_CHECK_CHANGED_CFG("so-sndbuf", so_sndbuf, changed_str);
4963 	FR_CHECK_CHANGED_CFG("so-reuseport", so_reuseport, changed_str);
4964 	FR_CHECK_CHANGED_CFG("ip-transparent", ip_transparent, changed_str);
4965 	FR_CHECK_CHANGED_CFG("ip-freebind", ip_freebind, changed_str);
4966 	FR_CHECK_CHANGED_CFG("udp-connect", udp_connect, changed_str);
4967 	FR_CHECK_CHANGED_CFG("msg-buffer-size", msg_buffer_size, changed_str);
4968 	FR_CHECK_CHANGED_CFG("edns-tcp-keepalive", do_tcp_keepalive, changed_str);
4969 	FR_CHECK_CHANGED_CFG("edns-tcp-keepalive-timeout", tcp_keepalive_timeout, changed_str);
4970 	FR_CHECK_CHANGED_CFG("tcp-idle-timeout", tcp_idle_timeout, changed_str);
4971 	/* Not changed, only if DoH is used, it is then stored in commpoints,
4972 	 * as well as used from cfg. */
4973 	FR_CHECK_CHANGED_CFG("harden-large-queries", harden_large_queries, changed_str);
4974 	FR_CHECK_CHANGED_CFG("http-max-streams", http_max_streams, changed_str);
4975 	FR_CHECK_CHANGED_CFG_STR("http-endpoint", http_endpoint, changed_str);
4976 	FR_CHECK_CHANGED_CFG("http_notls_downstream", http_notls_downstream, changed_str);
4977 	FR_CHECK_CHANGED_CFG("https-port", https_port, changed_str);
4978 	FR_CHECK_CHANGED_CFG("tls-port", ssl_port, changed_str);
4979 	FR_CHECK_CHANGED_CFG_STR("tls-protocols", tls_protocols, changed_str);
4980 	FR_CHECK_CHANGED_CFG_STRLIST("proxy-protocol-port", proxy_protocol_port, changed_str);
4981 	FR_CHECK_CHANGED_CFG_STRLIST("tls-additional-port", tls_additional_port, changed_str);
4982 	FR_CHECK_CHANGED_CFG_STR("interface-automatic-ports", if_automatic_ports, changed_str);
4983 	FR_CHECK_CHANGED_CFG("udp-upstream-without-downstream", udp_upstream_without_downstream, changed_str);
4984 
4985 	if(changed_str[0] != 0) {
4986 		/* The new config changes some items that do not work with
4987 		 * fast reload. */
4988 		if(!fr_output_printf(fr, "The config changes items that are "
4989 			"not compatible with fast_reload, perhaps do reload "
4990 			"or restart: %s", changed_str) ||
4991 			!fr_output_printf(fr, "\n"))
4992 			return 0;
4993 		fr_send_notification(fr, fast_reload_notification_printout);
4994 		return 0;
4995 	}
4996 	return 1;
4997 }
4998 
4999 /** fast reload thread, check nopause config items */
5000 static int
fr_check_nopause_compat_cfg(struct fast_reload_thread * fr,struct config_file * newcfg)5001 fr_check_nopause_compat_cfg(struct fast_reload_thread* fr, struct config_file* newcfg)
5002 {
5003 	char changed_str[1024];
5004 	struct config_file* cfg = fr->worker->env.cfg;
5005 	if(!fr->fr_nopause)
5006 		return 1; /* The nopause is not enabled, so no problem. */
5007 	changed_str[0]=0;
5008 
5009 	/* Check for iter_env. */
5010 	FR_CHECK_CHANGED_CFG("outbound-msg-retry", outbound_msg_retry, changed_str);
5011 	FR_CHECK_CHANGED_CFG("max-sent-count", max_sent_count, changed_str);
5012 	FR_CHECK_CHANGED_CFG("max-query-restarts", max_query_restarts, changed_str);
5013 	FR_CHECK_CHANGED_CFG_STR("target-fetch-policy", target_fetch_policy, changed_str);
5014 	FR_CHECK_CHANGED_CFG("do-not-query-localhost", donotquery_localhost, changed_str);
5015 	FR_CHECK_CHANGED_CFG_STRLIST("do-not-query-address", donotqueryaddrs, changed_str);
5016 	FR_CHECK_CHANGED_CFG_STRLIST("private-address", private_address, changed_str);
5017 	FR_CHECK_CHANGED_CFG_STRLIST("private-domain", private_domain, changed_str);
5018 	FR_CHECK_CHANGED_CFG_STRLIST("caps-exempt", caps_whitelist, changed_str);
5019 	FR_CHECK_CHANGED_CFG("do-nat64", do_nat64, changed_str);
5020 	FR_CHECK_CHANGED_CFG_STR("nat64-prefix", nat64_prefix, changed_str);
5021 
5022 	/* Check for val_env. */
5023 	FR_CHECK_CHANGED_CFG("val-bogus-ttl", bogus_ttl, changed_str);
5024 	FR_CHECK_CHANGED_CFG("val-date-override", val_date_override, changed_str);
5025 	FR_CHECK_CHANGED_CFG("val-sig-skew-min", val_sig_skew_min, changed_str);
5026 	FR_CHECK_CHANGED_CFG("val-sig-skew-max", val_sig_skew_max, changed_str);
5027 	FR_CHECK_CHANGED_CFG("val-max-restart", val_max_restart, changed_str);
5028 	FR_CHECK_CHANGED_CFG_STR("val-nsec3-keysize-iterations",
5029 		val_nsec3_key_iterations, changed_str);
5030 
5031 	/* Check for infra. */
5032 	FR_CHECK_CHANGED_CFG("infra-host-ttl", host_ttl, changed_str);
5033 	FR_CHECK_CHANGED_CFG("infra-keep-probing", infra_keep_probing, changed_str);
5034 	FR_CHECK_CHANGED_CFG("ratelimit", ratelimit, changed_str);
5035 	FR_CHECK_CHANGED_CFG("ip-ratelimit", ip_ratelimit, changed_str);
5036 	FR_CHECK_CHANGED_CFG("ip-ratelimit-cookie", ip_ratelimit_cookie, changed_str);
5037 	FR_CHECK_CHANGED_CFG_STR2LIST("wait-limit-netblock", wait_limit_netblock, changed_str);
5038 	FR_CHECK_CHANGED_CFG_STR2LIST("wait-limit-cookie-netblock", wait_limit_cookie_netblock, changed_str);
5039 	FR_CHECK_CHANGED_CFG_STR2LIST("ratelimit-below-domain", ratelimit_below_domain, changed_str);
5040 	FR_CHECK_CHANGED_CFG_STR2LIST("ratelimit-for-domain", ratelimit_for_domain, changed_str);
5041 
5042 	/* Check for dnstap. */
5043 	FR_CHECK_CHANGED_CFG("dnstap-send-identity", dnstap_send_identity, changed_str);
5044 	FR_CHECK_CHANGED_CFG("dnstap-send-version", dnstap_send_version, changed_str);
5045 	FR_CHECK_CHANGED_CFG_STR("dnstap-identity", dnstap_identity, changed_str);
5046 	FR_CHECK_CHANGED_CFG_STR("dnstap-version", dnstap_version, changed_str);
5047 
5048 	if(changed_str[0] != 0) {
5049 		/* The new config changes some items that need a pause,
5050 		 * to be able to update the variables. */
5051 		if(!fr_output_printf(fr, "The config changes items that need "
5052 			"the fast_reload +p option, for nopause, "
5053 			"disabled to be reloaded: %s", changed_str) ||
5054 			!fr_output_printf(fr, "\n"))
5055 			return 0;
5056 		fr_send_notification(fr, fast_reload_notification_printout);
5057 		return 0;
5058 	}
5059 	return 1;
5060 }
5061 
5062 /** fast reload thread, clear construct information, deletes items */
5063 static void
fr_construct_clear(struct fast_reload_construct * ct)5064 fr_construct_clear(struct fast_reload_construct* ct)
5065 {
5066 	if(!ct)
5067 		return;
5068 	auth_zones_delete(ct->auth_zones);
5069 	forwards_delete(ct->fwds);
5070 	hints_delete(ct->hints);
5071 	respip_set_delete(ct->respip_set);
5072 	local_zones_delete(ct->local_zones);
5073 	acl_list_delete(ct->acl);
5074 	acl_list_delete(ct->acl_interface);
5075 	tcl_list_delete(ct->tcl);
5076 	edns_strings_delete(ct->edns_strings);
5077 	anchors_delete(ct->anchors);
5078 	views_delete(ct->views);
5079 	free(ct->nsec3_keysize);
5080 	free(ct->nsec3_maxiter);
5081 	free(ct->target_fetch_policy);
5082 	donotq_delete(ct->donotq);
5083 	priv_delete(ct->priv);
5084 	caps_white_delete(ct->caps_white);
5085 	wait_limits_free(&ct->wait_limits_netblock);
5086 	wait_limits_free(&ct->wait_limits_cookie_netblock);
5087 	domain_limits_free(&ct->domain_limits);
5088 #ifdef HAVE_SSL
5089 	/* The SSL contexts can be SSL_CTX_free here. It is reference
5090 	 * counted. So ongoing transfers with can continue.
5091 	 * Once they are done, the context is freed. */
5092 	SSL_CTX_free((SSL_CTX*)ct->listen_dot_sslctx);
5093 	SSL_CTX_free((SSL_CTX*)ct->connect_dot_sslctx);
5094 	SSL_CTX_free((SSL_CTX*)ct->listen_doh_sslctx);
5095 #endif /* HAVE_SSL */
5096 #ifdef HAVE_NGTCP2
5097 	SSL_CTX_free((SSL_CTX*)ct->listen_quic_sslctx);
5098 #endif
5099 	free(ct->ssl_service_key);
5100 	free(ct->ssl_service_pem);
5101 	/* Delete the log identity here so that the global value is not
5102 	 * reset by config_delete. */
5103 	if(ct->oldcfg && ct->oldcfg->log_identity) {
5104 		free(ct->oldcfg->log_identity);
5105 		ct->oldcfg->log_identity = NULL;
5106 	}
5107 	config_delete(ct->oldcfg);
5108 }
5109 
5110 /** get memory for strlist */
5111 static size_t
getmem_config_strlist(struct config_strlist * p)5112 getmem_config_strlist(struct config_strlist* p)
5113 {
5114 	size_t m = 0;
5115 	struct config_strlist* s;
5116 	for(s = p; s; s = s->next)
5117 		m += sizeof(*s) + getmem_str(s->str);
5118 	return m;
5119 }
5120 
5121 /** get memory for str2list */
5122 static size_t
getmem_config_str2list(struct config_str2list * p)5123 getmem_config_str2list(struct config_str2list* p)
5124 {
5125 	size_t m = 0;
5126 	struct config_str2list* s;
5127 	for(s = p; s; s = s->next)
5128 		m += sizeof(*s) + getmem_str(s->str) + getmem_str(s->str2);
5129 	return m;
5130 }
5131 
5132 /** get memory for str3list */
5133 static size_t
getmem_config_str3list(struct config_str3list * p)5134 getmem_config_str3list(struct config_str3list* p)
5135 {
5136 	size_t m = 0;
5137 	struct config_str3list* s;
5138 	for(s = p; s; s = s->next)
5139 		m += sizeof(*s) + getmem_str(s->str) + getmem_str(s->str2)
5140 			+ getmem_str(s->str3);
5141 	return m;
5142 }
5143 
5144 /** get memory for strbytelist */
5145 static size_t
getmem_config_strbytelist(struct config_strbytelist * p)5146 getmem_config_strbytelist(struct config_strbytelist* p)
5147 {
5148 	size_t m = 0;
5149 	struct config_strbytelist* s;
5150 	for(s = p; s; s = s->next)
5151 		m += sizeof(*s) + getmem_str(s->str) + (s->str2?s->str2len:0);
5152 	return m;
5153 }
5154 
5155 /** get memory used by ifs array */
5156 static size_t
getmem_ifs(int numifs,char ** ifs)5157 getmem_ifs(int numifs, char** ifs)
5158 {
5159 	size_t m = 0;
5160 	int i;
5161 	m += numifs * sizeof(char*);
5162 	for(i=0; i<numifs; i++)
5163 		m += getmem_str(ifs[i]);
5164 	return m;
5165 }
5166 
5167 /** get memory for config_stub */
5168 static size_t
getmem_config_stub(struct config_stub * p)5169 getmem_config_stub(struct config_stub* p)
5170 {
5171 	size_t m = 0;
5172 	struct config_stub* s;
5173 	for(s = p; s; s = s->next)
5174 		m += sizeof(*s) + getmem_str(s->name)
5175 			+ getmem_config_strlist(s->hosts)
5176 			+ getmem_config_strlist(s->addrs);
5177 	return m;
5178 }
5179 
5180 /** get memory for config_auth */
5181 static size_t
getmem_config_auth(struct config_auth * p)5182 getmem_config_auth(struct config_auth* p)
5183 {
5184 	size_t m = 0;
5185 	struct config_auth* s;
5186 	for(s = p; s; s = s->next)
5187 		m += sizeof(*s) + getmem_str(s->name)
5188 			+ getmem_config_strlist(s->masters)
5189 			+ getmem_config_strlist(s->urls)
5190 			+ getmem_config_strlist(s->allow_notify)
5191 			+ getmem_str(s->zonefile)
5192 			+ s->rpz_taglistlen
5193 			+ getmem_str(s->rpz_action_override)
5194 			+ getmem_str(s->rpz_log_name)
5195 			+ getmem_str(s->rpz_cname);
5196 	return m;
5197 }
5198 
5199 /** get memory for config_view */
5200 static size_t
getmem_config_view(struct config_view * p)5201 getmem_config_view(struct config_view* p)
5202 {
5203 	size_t m = 0;
5204 	struct config_view* s;
5205 	for(s = p; s; s = s->next)
5206 		m += sizeof(*s) + getmem_str(s->name)
5207 			+ getmem_config_str2list(s->local_zones)
5208 			+ getmem_config_strlist(s->local_data)
5209 			+ getmem_config_strlist(s->local_zones_nodefault)
5210 #ifdef USE_IPSET
5211 			+ getmem_config_strlist(s->local_zones_ipset)
5212 #endif
5213 			+ getmem_config_str2list(s->respip_actions)
5214 			+ getmem_config_str2list(s->respip_data);
5215 
5216 	return m;
5217 }
5218 
5219 /** get memory used by config_file item, estimate */
5220 static size_t
config_file_getmem(struct config_file * cfg)5221 config_file_getmem(struct config_file* cfg)
5222 {
5223 	size_t m = 0;
5224 	m += sizeof(*cfg);
5225 	m += getmem_config_strlist(cfg->proxy_protocol_port);
5226 	m += getmem_str(cfg->ssl_service_key);
5227 	m += getmem_str(cfg->ssl_service_pem);
5228 	m += getmem_str(cfg->tls_cert_bundle);
5229 	m += getmem_config_strlist(cfg->tls_additional_port);
5230 	m += getmem_config_strlist(cfg->tls_session_ticket_keys.first);
5231 	m += getmem_str(cfg->tls_ciphers);
5232 	m += getmem_str(cfg->tls_ciphersuites);
5233 	m += getmem_str(cfg->tls_protocols);
5234 	m += getmem_str(cfg->http_endpoint);
5235 	m += (cfg->outgoing_avail_ports?65536*sizeof(int):0);
5236 	m += getmem_str(cfg->target_fetch_policy);
5237 	m += getmem_str(cfg->if_automatic_ports);
5238 	m += getmem_ifs(cfg->num_ifs, cfg->ifs);
5239 	m += getmem_ifs(cfg->num_out_ifs, cfg->out_ifs);
5240 	m += getmem_config_strlist(cfg->root_hints);
5241 	m += getmem_config_stub(cfg->stubs);
5242 	m += getmem_config_stub(cfg->forwards);
5243 	m += getmem_config_auth(cfg->auths);
5244 	m += getmem_config_view(cfg->views);
5245 	m += getmem_config_strlist(cfg->donotqueryaddrs);
5246 #ifdef CLIENT_SUBNET
5247 	m += getmem_config_strlist(cfg->client_subnet);
5248 	m += getmem_config_strlist(cfg->client_subnet_zone);
5249 #endif
5250 	m += getmem_config_str2list(cfg->acls);
5251 	m += getmem_config_str2list(cfg->tcp_connection_limits);
5252 	m += getmem_config_strlist(cfg->caps_whitelist);
5253 	m += getmem_config_strlist(cfg->private_address);
5254 	m += getmem_config_strlist(cfg->private_domain);
5255 	m += getmem_str(cfg->chrootdir);
5256 	m += getmem_str(cfg->username);
5257 	m += getmem_str(cfg->directory);
5258 	m += getmem_str(cfg->logfile);
5259 	m += getmem_str(cfg->pidfile);
5260 	m += getmem_str(cfg->log_identity);
5261 	m += getmem_str(cfg->identity);
5262 	m += getmem_str(cfg->version);
5263 	m += getmem_str(cfg->http_user_agent);
5264 	m += getmem_str(cfg->nsid_cfg_str);
5265 	m += (cfg->nsid?cfg->nsid_len:0);
5266 	m += getmem_str(cfg->module_conf);
5267 	m += getmem_config_strlist(cfg->trust_anchor_file_list);
5268 	m += getmem_config_strlist(cfg->trust_anchor_list);
5269 	m += getmem_config_strlist(cfg->auto_trust_anchor_file_list);
5270 	m += getmem_config_strlist(cfg->trusted_keys_file_list);
5271 	m += getmem_config_strlist(cfg->domain_insecure);
5272 	m += getmem_str(cfg->val_nsec3_key_iterations);
5273 	m += getmem_config_str2list(cfg->local_zones);
5274 	m += getmem_config_strlist(cfg->local_zones_nodefault);
5275 #ifdef USE_IPSET
5276 	m += getmem_config_strlist(cfg->local_zones_ipset);
5277 #endif
5278 	m += getmem_config_strlist(cfg->local_data);
5279 	m += getmem_config_str3list(cfg->local_zone_overrides);
5280 	m += getmem_config_strbytelist(cfg->local_zone_tags);
5281 	m += getmem_config_strbytelist(cfg->acl_tags);
5282 	m += getmem_config_str3list(cfg->acl_tag_actions);
5283 	m += getmem_config_str3list(cfg->acl_tag_datas);
5284 	m += getmem_config_str2list(cfg->acl_view);
5285 	m += getmem_config_str2list(cfg->interface_actions);
5286 	m += getmem_config_strbytelist(cfg->interface_tags);
5287 	m += getmem_config_str3list(cfg->interface_tag_actions);
5288 	m += getmem_config_str3list(cfg->interface_tag_datas);
5289 	m += getmem_config_str2list(cfg->interface_view);
5290 	m += getmem_config_strbytelist(cfg->respip_tags);
5291 	m += getmem_config_str2list(cfg->respip_actions);
5292 	m += getmem_config_str2list(cfg->respip_data);
5293 	m += getmem_ifs(cfg->num_tags, cfg->tagname);
5294 	m += getmem_config_strlist(cfg->control_ifs.first);
5295 	m += getmem_str(cfg->server_key_file);
5296 	m += getmem_str(cfg->server_cert_file);
5297 	m += getmem_str(cfg->control_key_file);
5298 	m += getmem_str(cfg->control_cert_file);
5299 	m += getmem_config_strlist(cfg->python_script);
5300 	m += getmem_config_strlist(cfg->dynlib_file);
5301 	m += getmem_str(cfg->dns64_prefix);
5302 	m += getmem_config_strlist(cfg->dns64_ignore_aaaa);
5303 	m += getmem_str(cfg->nat64_prefix);
5304 	m += getmem_str(cfg->dnstap_socket_path);
5305 	m += getmem_str(cfg->dnstap_ip);
5306 	m += getmem_str(cfg->dnstap_tls_server_name);
5307 	m += getmem_str(cfg->dnstap_tls_cert_bundle);
5308 	m += getmem_str(cfg->dnstap_tls_client_key_file);
5309 	m += getmem_str(cfg->dnstap_tls_client_cert_file);
5310 	m += getmem_str(cfg->dnstap_identity);
5311 	m += getmem_str(cfg->dnstap_version);
5312 	m += getmem_config_str2list(cfg->ratelimit_for_domain);
5313 	m += getmem_config_str2list(cfg->ratelimit_below_domain);
5314 	m += getmem_config_str2list(cfg->edns_client_strings);
5315 	m += getmem_str(cfg->dnscrypt_provider);
5316 	m += getmem_config_strlist(cfg->dnscrypt_secret_key);
5317 	m += getmem_config_strlist(cfg->dnscrypt_provider_cert);
5318 	m += getmem_config_strlist(cfg->dnscrypt_provider_cert_rotated);
5319 #ifdef USE_IPSECMOD
5320 	m += getmem_config_strlist(cfg->ipsecmod_whitelist);
5321 	m += getmem_str(cfg->ipsecmod_hook);
5322 #endif
5323 #ifdef USE_CACHEDB
5324 	m += getmem_str(cfg->cachedb_backend);
5325 	m += getmem_str(cfg->cachedb_secret);
5326 #ifdef USE_REDIS
5327 	m += getmem_str(cfg->redis_server_host);
5328 	m += getmem_str(cfg->redis_replica_server_host);
5329 	m += getmem_str(cfg->redis_server_path);
5330 	m += getmem_str(cfg->redis_replica_server_path);
5331 	m += getmem_str(cfg->redis_server_password);
5332 	m += getmem_str(cfg->redis_replica_server_password);
5333 #endif
5334 #endif
5335 #ifdef USE_IPSET
5336 	m += getmem_str(cfg->ipset_name_v4);
5337 	m += getmem_str(cfg->ipset_name_v6);
5338 #endif
5339 	return m;
5340 }
5341 
5342 /** fast reload thread, print memory used by construct of items. */
5343 static int
fr_printmem(struct fast_reload_thread * fr,struct config_file * newcfg,struct fast_reload_construct * ct)5344 fr_printmem(struct fast_reload_thread* fr,
5345 	struct config_file* newcfg, struct fast_reload_construct* ct)
5346 {
5347 	size_t mem = 0;
5348 	if(fr_poll_for_quit(fr))
5349 		return 1;
5350 	mem += getmem_str(ct->ssl_service_key);
5351 	mem += getmem_str(ct->ssl_service_pem);
5352 	mem += views_get_mem(ct->views);
5353 	mem += respip_set_get_mem(ct->respip_set);
5354 	mem += auth_zones_get_mem(ct->auth_zones);
5355 	mem += forwards_get_mem(ct->fwds);
5356 	mem += hints_get_mem(ct->hints);
5357 	mem += local_zones_get_mem(ct->local_zones);
5358 	mem += acl_list_get_mem(ct->acl);
5359 	mem += acl_list_get_mem(ct->acl_interface);
5360 	mem += tcl_list_get_mem(ct->tcl);
5361 	mem += edns_strings_get_mem(ct->edns_strings);
5362 	mem += anchors_get_mem(ct->anchors);
5363 	mem += sizeof(*ct->oldcfg);
5364 	mem += config_file_getmem(newcfg);
5365 
5366 	if(!fr_output_printf(fr, "memory use %d bytes\n", (int)mem))
5367 		return 0;
5368 	fr_send_notification(fr, fast_reload_notification_printout);
5369 
5370 	return 1;
5371 }
5372 
5373 /** fast reload thread, setup the acl_interface for the ports that
5374  * the server has. */
5375 static int
ct_acl_interface_setup_ports(struct acl_list * acl_interface,struct daemon * daemon)5376 ct_acl_interface_setup_ports(struct acl_list* acl_interface,
5377 	struct daemon* daemon)
5378 {
5379 	/* clean acl_interface */
5380 	acl_interface_init(acl_interface);
5381 	if(!setup_acl_for_ports(acl_interface, daemon->ports[0]))
5382 		return 0;
5383 	if(daemon->reuseport) {
5384 		size_t i;
5385 		for(i=1; i<daemon->num_ports; i++) {
5386 			if(!setup_acl_for_ports(acl_interface,
5387 				daemon->ports[i]))
5388 				return 0;
5389 		}
5390 	}
5391 	return 1;
5392 }
5393 
5394 /** fast reload, add new change to list of auth zones */
5395 static int
fr_add_auth_zone_change(struct fast_reload_thread * fr,struct auth_zone * old_z,struct auth_zone * new_z,int is_deleted,int is_added,int is_changed)5396 fr_add_auth_zone_change(struct fast_reload_thread* fr, struct auth_zone* old_z,
5397 	struct auth_zone* new_z, int is_deleted, int is_added, int is_changed)
5398 {
5399 	struct fast_reload_auth_change* item;
5400 	item = calloc(1, sizeof(*item));
5401 	if(!item) {
5402 		log_err("malloc failure in add auth zone change");
5403 		return 0;
5404 	}
5405 	item->old_z = old_z;
5406 	item->new_z = new_z;
5407 	item->is_deleted = is_deleted;
5408 	item->is_added = is_added;
5409 	item->is_changed = is_changed;
5410 
5411 	item->next = fr->auth_zone_change_list;
5412 	fr->auth_zone_change_list = item;
5413 	return 1;
5414 }
5415 
5416 /** See if auth master is equal */
5417 static int
xfr_auth_master_equal(struct auth_master * m1,struct auth_master * m2)5418 xfr_auth_master_equal(struct auth_master* m1, struct auth_master* m2)
5419 {
5420 	if(!m1 && !m2)
5421 		return 1;
5422 	if(!m1 || !m2)
5423 		return 0;
5424 
5425 	if((m1->host && !m2->host) || (!m1->host && m2->host))
5426 		return 0;
5427 	if(m1->host && m2->host && strcmp(m1->host, m2->host) != 0)
5428 		return 0;
5429 
5430 	if((m1->file && !m2->file) || (!m1->file && m2->file))
5431 		return 0;
5432 	if(m1->file && m2->file && strcmp(m1->file, m2->file) != 0)
5433 		return 0;
5434 
5435 	if((m1->http && !m2->http) || (!m1->http && m2->http))
5436 		return 0;
5437 	if((m1->ixfr && !m2->ixfr) || (!m1->ixfr && m2->ixfr))
5438 		return 0;
5439 	if((m1->allow_notify && !m2->allow_notify) || (!m1->allow_notify && m2->allow_notify))
5440 		return 0;
5441 	if((m1->ssl && !m2->ssl) || (!m1->ssl && m2->ssl))
5442 		return 0;
5443 	if(m1->port != m2->port)
5444 		return 0;
5445 	return 1;
5446 }
5447 
5448 /** See if list of auth masters is equal */
5449 static int
xfr_masterlist_equal(struct auth_master * list1,struct auth_master * list2)5450 xfr_masterlist_equal(struct auth_master* list1, struct auth_master* list2)
5451 {
5452 	struct auth_master* p1 = list1, *p2 = list2;
5453 	while(p1 && p2) {
5454 		if(!xfr_auth_master_equal(p1, p2))
5455 			return 0;
5456 		p1 = p1->next;
5457 		p2 = p2->next;
5458 	}
5459 	if(!p1 && !p2)
5460 		return 1;
5461 	return 0;
5462 }
5463 
5464 /** See if the list of masters has changed. */
5465 static int
xfr_masters_equal(struct auth_xfer * xfr1,struct auth_xfer * xfr2)5466 xfr_masters_equal(struct auth_xfer* xfr1, struct auth_xfer* xfr2)
5467 {
5468 	if(xfr1 == NULL && xfr2 == NULL)
5469 		return 1;
5470 	if(xfr1 == NULL && xfr2 != NULL)
5471 		return 0;
5472 	if(xfr1 != NULL && xfr2 == NULL)
5473 		return 0;
5474 	if(xfr_masterlist_equal(xfr1->task_probe->masters,
5475 		xfr2->task_probe->masters) &&
5476 		xfr_masterlist_equal(xfr1->task_transfer->masters,
5477 		xfr2->task_transfer->masters))
5478 		return 1;
5479 	return 0;
5480 }
5481 
5482 /** Check what has changed in auth zones, like added and deleted zones */
5483 static int
auth_zones_check_changes(struct fast_reload_thread * fr,struct fast_reload_construct * ct)5484 auth_zones_check_changes(struct fast_reload_thread* fr,
5485 	struct fast_reload_construct* ct)
5486 {
5487 	/* Check every zone in turn. */
5488 	struct auth_zone* new_z, *old_z;
5489 	struct module_env* env = &fr->worker->env;
5490 
5491 	fr->old_auth_zones = ct->auth_zones;
5492 	/* Nobody is using the new ct version yet.
5493 	 * Also the ct lock is picked up before the env lock for auth_zones. */
5494 	lock_rw_rdlock(&ct->auth_zones->lock);
5495 
5496 	/* Find deleted zones by looping over the current list and looking
5497 	 * up in the new tree. */
5498 	lock_rw_rdlock(&env->auth_zones->lock);
5499 	RBTREE_FOR(old_z, struct auth_zone*, &env->auth_zones->ztree) {
5500 		new_z = auth_zone_find(ct->auth_zones, old_z->name,
5501 			old_z->namelen, old_z->dclass);
5502 		if(!new_z) {
5503 			/* The zone has been removed. */
5504 			if(!fr_add_auth_zone_change(fr, old_z, NULL, 1, 0,
5505 				0)) {
5506 				lock_rw_unlock(&env->auth_zones->lock);
5507 				lock_rw_unlock(&ct->auth_zones->lock);
5508 				return 0;
5509 			}
5510 		}
5511 	}
5512 	lock_rw_unlock(&env->auth_zones->lock);
5513 
5514 	/* Find added zones by looping over new list and lookup in current. */
5515 	RBTREE_FOR(new_z, struct auth_zone*, &ct->auth_zones->ztree) {
5516 		lock_rw_rdlock(&env->auth_zones->lock);
5517 		old_z = auth_zone_find(env->auth_zones, new_z->name,
5518 			new_z->namelen, new_z->dclass);
5519 		if(!old_z) {
5520 			/* The zone has been added. */
5521 			lock_rw_unlock(&env->auth_zones->lock);
5522 			if(!fr_add_auth_zone_change(fr, NULL, new_z, 0, 1,
5523 				0)) {
5524 				lock_rw_unlock(&ct->auth_zones->lock);
5525 				return 0;
5526 			}
5527 		} else {
5528 			uint32_t old_serial = 0, new_serial = 0;
5529 			int have_old = 0, have_new = 0;
5530 			struct auth_xfer* old_xfr, *new_xfr;
5531 			lock_rw_rdlock(&new_z->lock);
5532 			lock_rw_rdlock(&old_z->lock);
5533 			new_xfr = auth_xfer_find(ct->auth_zones, new_z->name,
5534 				new_z->namelen, new_z->dclass);
5535 			old_xfr = auth_xfer_find(env->auth_zones, old_z->name,
5536 				old_z->namelen, old_z->dclass);
5537 			if(new_xfr) {
5538 				lock_basic_lock(&new_xfr->lock);
5539 			}
5540 			if(old_xfr) {
5541 				lock_basic_lock(&old_xfr->lock);
5542 			}
5543 			lock_rw_unlock(&env->auth_zones->lock);
5544 
5545 			/* Change in the auth zone can be detected. */
5546 			/* A change in serial number means that auth_xfer
5547 			 * has to be updated. */
5548 			have_old = (auth_zone_get_serial(old_z,
5549 				&old_serial)!=0);
5550 			have_new = (auth_zone_get_serial(new_z,
5551 				&new_serial)!=0);
5552 			if(have_old != have_new || old_serial != new_serial
5553 				|| !xfr_masters_equal(old_xfr, new_xfr)) {
5554 				/* The zone has been changed. */
5555 				if(!fr_add_auth_zone_change(fr, old_z, new_z,
5556 					0, 0, 1)) {
5557 					lock_rw_unlock(&old_z->lock);
5558 					lock_rw_unlock(&new_z->lock);
5559 					lock_rw_unlock(&ct->auth_zones->lock);
5560 					if(new_xfr) {
5561 						lock_basic_unlock(&new_xfr->lock);
5562 					}
5563 					if(old_xfr) {
5564 						lock_basic_unlock(&old_xfr->lock);
5565 					}
5566 					return 0;
5567 				}
5568 			}
5569 
5570 			if(new_xfr) {
5571 				lock_basic_unlock(&new_xfr->lock);
5572 			}
5573 			if(old_xfr) {
5574 				lock_basic_unlock(&old_xfr->lock);
5575 			}
5576 			lock_rw_unlock(&old_z->lock);
5577 			lock_rw_unlock(&new_z->lock);
5578 		}
5579 	}
5580 
5581 	lock_rw_unlock(&ct->auth_zones->lock);
5582 	return 1;
5583 }
5584 
5585 /** Check if the sslctxs have changed. */
5586 static int
fr_check_sslctx_change(struct fast_reload_thread * fr,struct config_file * newcfg)5587 fr_check_sslctx_change(struct fast_reload_thread* fr,
5588 	struct config_file* newcfg)
5589 {
5590 #ifdef HAVE_SSL
5591 	struct daemon* daemon = fr->worker->daemon;
5592 	if(newcfg->ssl_service_key && newcfg->ssl_service_key[0]) {
5593 		if(!daemon->ssl_service_key ||
5594 			ssl_cert_changed(daemon, newcfg))
5595 			return 1;
5596 	} else {
5597 		if(daemon->ssl_service_key)
5598 			return 1; /* it is removed */
5599 	}
5600 	if((daemon->cfg->tls_cert_bundle && !newcfg->tls_cert_bundle) ||
5601 	   (!daemon->cfg->tls_cert_bundle && newcfg->tls_cert_bundle) ||
5602 	   (daemon->cfg->tls_cert_bundle && newcfg->tls_cert_bundle &&
5603 	    strcmp(daemon->cfg->tls_cert_bundle, newcfg->tls_cert_bundle)!=0))
5604 		return 1; /* The tls-cert-bundle has changed and return
5605 			true here makes it reload the connect_dot_sslctx. */
5606 #else
5607 	(void)fr; (void)newcfg;
5608 #endif /* HAVE_SSL */
5609 	return 0;
5610 }
5611 
5612 /** Create the SSL CTXs when they have changed. */
5613 static int
ct_create_sslctxs(struct fast_reload_construct * ct,struct config_file * newcfg,struct daemon * daemon)5614 ct_create_sslctxs(struct fast_reload_construct* ct,
5615 	struct config_file* newcfg, struct daemon* daemon)
5616 {
5617 #ifdef HAVE_SSL
5618 	char* chroot = daemon->chroot;
5619 	char* key = newcfg->ssl_service_key;
5620 	char* pem = newcfg->ssl_service_pem;
5621 
5622 	if(!(newcfg->ssl_service_key && newcfg->ssl_service_key[0])) {
5623 		/* Leave listen ctxs and file str at NULL */
5624 		ct->connect_dot_sslctx = daemon_setup_connect_dot_sslctx(
5625 			daemon, newcfg);
5626 		return 1;
5627 	}
5628 
5629 	if(chroot && strncmp(key, chroot, strlen(chroot)) == 0)
5630 		key += strlen(chroot);
5631 	if(chroot && pem && strncmp(pem, chroot, strlen(chroot)) == 0)
5632 		pem += strlen(chroot);
5633 
5634 	ct->listen_dot_sslctx = daemon_setup_listen_dot_sslctx(daemon, newcfg);
5635 #ifdef HAVE_NGHTTP2_NGHTTP2_H
5636 	if(cfg_has_https(newcfg)) {
5637 		ct->listen_doh_sslctx = daemon_setup_listen_doh_sslctx(
5638 			daemon, newcfg);
5639 	}
5640 #endif
5641 #ifdef HAVE_NGTCP2
5642 	if(cfg_has_quic(newcfg)) {
5643 		ct->listen_quic_sslctx = daemon_setup_listen_quic_sslctx(
5644 			daemon, newcfg);
5645 	}
5646 #endif /* HAVE_NGTCP2 */
5647 	ct->connect_dot_sslctx = daemon_setup_connect_dot_sslctx(daemon,
5648 		newcfg);
5649 
5650 	/* Store mtime and names */
5651 	ct->ssl_service_key = strdup(newcfg->ssl_service_key);
5652 	if(!ct->ssl_service_key) {
5653 		log_err("ct_create_sslctxs: out of memory");
5654 		return 0;
5655 	}
5656 	ct->ssl_service_pem = strdup(newcfg->ssl_service_pem);
5657 	if(!ct->ssl_service_pem) {
5658 		log_err("ct_create_sslctxs: out of memory");
5659 		return 0;
5660 	}
5661 	if(!file_get_mtime(key, &ct->mtime_ssl_service_key,
5662 		&ct->mtime_ns_ssl_service_key, NULL))
5663 		log_err("Could not stat(%s): %s",
5664 			key, strerror(errno));
5665 	if(!file_get_mtime(pem, &ct->mtime_ssl_service_pem,
5666 		&ct->mtime_ns_ssl_service_pem, NULL))
5667 		log_err("Could not stat(%s): %s",
5668 			pem, strerror(errno));
5669 #else
5670 	(void)ct; (void)newcfg; (void)daemon;
5671 #endif /* HAVE_SSL */
5672 	return 1;
5673 }
5674 
5675 /** fast reload thread, construct from config the new items */
5676 static int
fr_construct_from_config(struct fast_reload_thread * fr,struct config_file * newcfg,struct fast_reload_construct * ct)5677 fr_construct_from_config(struct fast_reload_thread* fr,
5678 	struct config_file* newcfg, struct fast_reload_construct* ct)
5679 {
5680 	int have_view_respip_cfg = 0;
5681 
5682 	fr->sslctxs_changed = fr_check_sslctx_change(fr, newcfg);
5683 	if(fr->sslctxs_changed) {
5684 		if(!ct_create_sslctxs(ct, newcfg, fr->worker->daemon)) {
5685 			fr_construct_clear(ct);
5686 			return 0;
5687 		}
5688 	}
5689 	if(!(ct->views = views_create())) {
5690 		fr_construct_clear(ct);
5691 		return 0;
5692 	}
5693 	if(!views_apply_cfg(ct->views, newcfg)) {
5694 		fr_construct_clear(ct);
5695 		return 0;
5696 	}
5697 	if(fr_poll_for_quit(fr))
5698 		return 1;
5699 
5700 	if(!(ct->acl = acl_list_create())) {
5701 		fr_construct_clear(ct);
5702 		return 0;
5703 	}
5704 	if(!acl_list_apply_cfg(ct->acl, newcfg, ct->views)) {
5705 		fr_construct_clear(ct);
5706 		return 0;
5707 	}
5708 	if(fr_poll_for_quit(fr))
5709 		return 1;
5710 
5711 	if(!(ct->acl_interface = acl_list_create())) {
5712 		fr_construct_clear(ct);
5713 		return 0;
5714 	}
5715 	if(!ct_acl_interface_setup_ports(ct->acl_interface,
5716 		fr->worker->daemon)) {
5717 		fr_construct_clear(ct);
5718 		return 0;
5719 	}
5720 	if(!acl_interface_apply_cfg(ct->acl_interface, newcfg, ct->views)) {
5721 		fr_construct_clear(ct);
5722 		return 0;
5723 	}
5724 	if(fr_poll_for_quit(fr))
5725 		return 1;
5726 
5727 	if(!(ct->tcl = tcl_list_create())) {
5728 		fr_construct_clear(ct);
5729 		return 0;
5730 	}
5731 	if(!tcl_list_apply_cfg(ct->tcl, newcfg)) {
5732 		fr_construct_clear(ct);
5733 		return 0;
5734 	}
5735 	if(fr->worker->daemon->tcl->tree.count != 0)
5736 		fr->worker->daemon->fast_reload_tcl_has_changes = 1;
5737 	else	fr->worker->daemon->fast_reload_tcl_has_changes = 0;
5738 	if(fr_poll_for_quit(fr))
5739 		return 1;
5740 
5741 	if(!(ct->auth_zones = auth_zones_create())) {
5742 		fr_construct_clear(ct);
5743 		return 0;
5744 	}
5745 	if(!auth_zones_apply_cfg(ct->auth_zones, newcfg, 1, &ct->use_rpz,
5746 		fr->worker->daemon->env, &fr->worker->daemon->mods)) {
5747 		fr_construct_clear(ct);
5748 		return 0;
5749 	}
5750 	if(!auth_zones_check_changes(fr, ct)) {
5751 		fr_construct_clear(ct);
5752 		return 0;
5753 	}
5754 	if(fr_poll_for_quit(fr))
5755 		return 1;
5756 
5757 	if(!(ct->fwds = forwards_create())) {
5758 		fr_construct_clear(ct);
5759 		return 0;
5760 	}
5761 	if(!forwards_apply_cfg(ct->fwds, newcfg)) {
5762 		fr_construct_clear(ct);
5763 		return 0;
5764 	}
5765 	if(fr_poll_for_quit(fr))
5766 		return 1;
5767 
5768 	if(!(ct->hints = hints_create())) {
5769 		fr_construct_clear(ct);
5770 		return 0;
5771 	}
5772 	if(!hints_apply_cfg(ct->hints, newcfg)) {
5773 		fr_construct_clear(ct);
5774 		return 0;
5775 	}
5776 	if(fr_poll_for_quit(fr))
5777 		return 1;
5778 
5779 	if(!(ct->local_zones = local_zones_create())) {
5780 		fr_construct_clear(ct);
5781 		return 0;
5782 	}
5783 	if(!local_zones_apply_cfg(ct->local_zones, newcfg)) {
5784 		fr_construct_clear(ct);
5785 		return 0;
5786 	}
5787 	if(fr_poll_for_quit(fr))
5788 		return 1;
5789 
5790 	if(!(ct->respip_set = respip_set_create())) {
5791 		fr_construct_clear(ct);
5792 		return 0;
5793 	}
5794 	if(!respip_global_apply_cfg(ct->respip_set, newcfg)) {
5795 		fr_construct_clear(ct);
5796 		return 0;
5797 	}
5798 	if(fr_poll_for_quit(fr))
5799 		return 1;
5800 	if(!respip_views_apply_cfg(ct->views, newcfg, &have_view_respip_cfg)) {
5801 		fr_construct_clear(ct);
5802 		return 0;
5803 	}
5804 	ct->use_response_ip = !respip_set_is_empty(ct->respip_set) ||
5805 		have_view_respip_cfg;
5806 	if(fr_poll_for_quit(fr))
5807 		return 1;
5808 
5809 	if(!(ct->edns_strings = edns_strings_create())) {
5810 		fr_construct_clear(ct);
5811 		return 0;
5812 	}
5813 	if(!edns_strings_apply_cfg(ct->edns_strings, newcfg)) {
5814 		fr_construct_clear(ct);
5815 		return 0;
5816 	}
5817 	if(fr_poll_for_quit(fr))
5818 		return 1;
5819 
5820 	if(fr->worker->env.anchors) {
5821 		/* There are trust anchors already, so create it for reload. */
5822 		if(!(ct->anchors = anchors_create())) {
5823 			fr_construct_clear(ct);
5824 			return 0;
5825 		}
5826 		if(!anchors_apply_cfg(ct->anchors, newcfg)) {
5827 			fr_construct_clear(ct);
5828 			return 0;
5829 		}
5830 		if(fr_poll_for_quit(fr))
5831 			return 1;
5832 	}
5833 
5834 	if(!val_env_parse_key_iter(newcfg->val_nsec3_key_iterations,
5835 		&ct->nsec3_keysize, &ct->nsec3_maxiter,
5836 		&ct->nsec3_keyiter_count)) {
5837 		fr_construct_clear(ct);
5838 		return 0;
5839 	}
5840 	if(fr_poll_for_quit(fr))
5841 		return 1;
5842 
5843 	if(!read_fetch_policy(&ct->target_fetch_policy,
5844 		&ct->max_dependency_depth, newcfg->target_fetch_policy)) {
5845 		fr_construct_clear(ct);
5846 		return 0;
5847 	}
5848 	if(!(ct->donotq = donotq_create())) {
5849 		fr_construct_clear(ct);
5850 		return 0;
5851 	}
5852 	if(!donotq_apply_cfg(ct->donotq, newcfg)) {
5853 		fr_construct_clear(ct);
5854 		return 0;
5855 	}
5856 	if(!(ct->priv = priv_create())) {
5857 		fr_construct_clear(ct);
5858 		return 0;
5859 	}
5860 	if(!priv_apply_cfg(ct->priv, newcfg)) {
5861 		fr_construct_clear(ct);
5862 		return 0;
5863 	}
5864 	if(newcfg->caps_whitelist) {
5865 		if(!(ct->caps_white = caps_white_create())) {
5866 			fr_construct_clear(ct);
5867 			return 0;
5868 		}
5869 		if(!caps_white_apply_cfg(ct->caps_white, newcfg)) {
5870 			fr_construct_clear(ct);
5871 			return 0;
5872 		}
5873 	}
5874 	if(!nat64_apply_cfg(&ct->nat64, newcfg)) {
5875 		fr_construct_clear(ct);
5876 		return 0;
5877 	}
5878 	if(fr_poll_for_quit(fr))
5879 		return 1;
5880 
5881 	if(!setup_wait_limits(&ct->wait_limits_netblock,
5882 		&ct->wait_limits_cookie_netblock, newcfg)) {
5883 		fr_construct_clear(ct);
5884 		return 0;
5885 	}
5886 	if(!setup_domain_limits(&ct->domain_limits, newcfg)) {
5887 		fr_construct_clear(ct);
5888 		return 0;
5889 	}
5890 	if(fr_poll_for_quit(fr))
5891 		return 1;
5892 
5893 	if(!(ct->oldcfg = (struct config_file*)calloc(1,
5894 		sizeof(*ct->oldcfg)))) {
5895 		fr_construct_clear(ct);
5896 		log_err("out of memory");
5897 		return 0;
5898 	}
5899 	if(fr->fr_verb >= 2) {
5900 		if(!fr_printmem(fr, newcfg, ct))
5901 			return 0;
5902 	}
5903 	return 1;
5904 }
5905 
5906 /** fast reload thread, finish timers */
5907 static int
fr_finish_time(struct fast_reload_thread * fr,struct timeval * time_start,struct timeval * time_read,struct timeval * time_construct,struct timeval * time_reload,struct timeval * time_end)5908 fr_finish_time(struct fast_reload_thread* fr, struct timeval* time_start,
5909 	struct timeval* time_read, struct timeval* time_construct,
5910 	struct timeval* time_reload, struct timeval* time_end)
5911 {
5912 	struct timeval total, readtime, constructtime, reloadtime, deletetime;
5913 	if(gettimeofday(time_end, NULL) < 0)
5914 		log_err("gettimeofday: %s", strerror(errno));
5915 
5916 	timeval_subtract(&total, time_end, time_start);
5917 	timeval_subtract(&readtime, time_read, time_start);
5918 	timeval_subtract(&constructtime, time_construct, time_read);
5919 	timeval_subtract(&reloadtime, time_reload, time_construct);
5920 	timeval_subtract(&deletetime, time_end, time_reload);
5921 	if(!fr_output_printf(fr, "read disk  %3d.%6.6ds\n",
5922 		(int)readtime.tv_sec, (int)readtime.tv_usec))
5923 		return 0;
5924 	if(!fr_output_printf(fr, "construct  %3d.%6.6ds\n",
5925 		(int)constructtime.tv_sec, (int)constructtime.tv_usec))
5926 		return 0;
5927 	if(!fr_output_printf(fr, "reload     %3d.%6.6ds\n",
5928 		(int)reloadtime.tv_sec, (int)reloadtime.tv_usec))
5929 		return 0;
5930 	if(!fr_output_printf(fr, "deletes    %3d.%6.6ds\n",
5931 		(int)deletetime.tv_sec, (int)deletetime.tv_usec))
5932 		return 0;
5933 	if(!fr_output_printf(fr, "total time %3d.%6.6ds\n", (int)total.tv_sec,
5934 		(int)total.tv_usec))
5935 		return 0;
5936 	fr_send_notification(fr, fast_reload_notification_printout);
5937 	return 1;
5938 }
5939 
5940 /** Swap auth zone information */
5941 static void
auth_zones_swap(struct auth_zones * az,struct auth_zones * data)5942 auth_zones_swap(struct auth_zones* az, struct auth_zones* data)
5943 {
5944 	rbtree_type oldztree = az->ztree;
5945 	int old_have_downstream = az->have_downstream;
5946 	struct auth_zone* old_rpz_first = az->rpz_first;
5947 
5948 	az->ztree = data->ztree;
5949 	data->ztree = oldztree;
5950 
5951 	az->have_downstream = data->have_downstream;
5952 	data->have_downstream = old_have_downstream;
5953 
5954 	/* Leave num_query_up and num_query_down, the statistics can
5955 	 * remain counted. */
5956 
5957 	az->rpz_first = data->rpz_first;
5958 	data->rpz_first = old_rpz_first;
5959 
5960 	/* The xtree is not swapped. This contains the auth_xfer elements
5961 	 * that contain tasks in progress, like zone transfers.
5962 	 * The unchanged zones can keep their tasks in the tree, and thus
5963 	 * the xfer elements can continue to be their callbacks. */
5964 }
5965 
5966 /** Swap two void* */
5967 static void
void_ptr_swap(void ** a,void ** b)5968 void_ptr_swap(void** a, void **b)
5969 {
5970 	void* tmp = *a;
5971 	*a = *b;
5972 	*b = tmp;
5973 }
5974 
5975 /** Swap two char* */
5976 static void
char_ptr_swap(char ** a,char ** b)5977 char_ptr_swap(char** a, char **b)
5978 {
5979 	char* tmp = *a;
5980 	*a = *b;
5981 	*b = tmp;
5982 }
5983 
5984 /** Swap and set ssl ctx information */
5985 static void
sslctxs_swap(struct daemon * daemon,struct fast_reload_construct * ct)5986 sslctxs_swap(struct daemon* daemon, struct fast_reload_construct* ct)
5987 {
5988 	void_ptr_swap(&daemon->listen_dot_sslctx, &ct->listen_dot_sslctx);
5989 	void_ptr_swap(&daemon->connect_dot_sslctx, &ct->connect_dot_sslctx);
5990 #ifdef HAVE_NGHTTP2_NGHTTP2_H
5991 	void_ptr_swap(&daemon->listen_doh_sslctx, &ct->listen_doh_sslctx);
5992 #endif
5993 #ifdef HAVE_NGTCP2
5994 	void_ptr_swap(&daemon->listen_quic_sslctx, &ct->listen_quic_sslctx);
5995 #endif /* HAVE_NGTCP2 */
5996 	char_ptr_swap(&daemon->ssl_service_key, &ct->ssl_service_key);
5997 	char_ptr_swap(&daemon->ssl_service_pem, &ct->ssl_service_pem);
5998 	daemon->mtime_ssl_service_key = ct->mtime_ssl_service_key;
5999 	daemon->mtime_ns_ssl_service_key = ct->mtime_ns_ssl_service_key;
6000 	daemon->mtime_ssl_service_pem = ct->mtime_ssl_service_pem;
6001 	daemon->mtime_ns_ssl_service_pem = ct->mtime_ns_ssl_service_pem;
6002 }
6003 
6004 #if defined(ATOMIC_POINTER_LOCK_FREE) && defined(HAVE_LINK_ATOMIC_STORE)
6005 /** Fast reload thread, if atomics are available, copy the config items
6006  * one by one with atomic store operations. */
6007 static void
fr_atomic_copy_cfg(struct config_file * oldcfg,struct config_file * cfg,struct config_file * newcfg)6008 fr_atomic_copy_cfg(struct config_file* oldcfg, struct config_file* cfg,
6009 	struct config_file* newcfg)
6010 {
6011 #define COPY_VAR_int(var) oldcfg->var = cfg->var; atomic_store((_Atomic int*)&cfg->var, newcfg->var); newcfg->var = 0;
6012 #define COPY_VAR_ptr(var) oldcfg->var = cfg->var; atomic_store((void* _Atomic*)&cfg->var, newcfg->var); newcfg->var = 0;
6013 #define COPY_VAR_unsigned_int(var) oldcfg->var = cfg->var; atomic_store((_Atomic unsigned*)&cfg->var, newcfg->var); newcfg->var = 0;
6014 #define COPY_VAR_size_t(var) oldcfg->var = cfg->var; atomic_store((_Atomic size_t*)&cfg->var, newcfg->var); newcfg->var = 0;
6015 #define COPY_VAR_uint8_t(var) oldcfg->var = cfg->var; atomic_store((_Atomic uint8_t*)&cfg->var, newcfg->var); newcfg->var = 0;
6016 #define COPY_VAR_uint16_t(var) oldcfg->var = cfg->var; atomic_store((_Atomic uint16_t*)&cfg->var, newcfg->var); newcfg->var = 0;
6017 #define COPY_VAR_uint32_t(var) oldcfg->var = cfg->var; atomic_store((_Atomic uint32_t*)&cfg->var, newcfg->var); newcfg->var = 0;
6018 #define COPY_VAR_int32_t(var) oldcfg->var = cfg->var; atomic_store((_Atomic int32_t*)&cfg->var, newcfg->var); newcfg->var = 0;
6019 	/* If config file items are missing from this list, they are
6020 	 * not updated by fast-reload +p. */
6021 	/* For missing items, the oldcfg item is not updated, still NULL,
6022 	 * and the cfg stays the same. The newcfg item is untouched.
6023 	 * The newcfg item is then deleted later. */
6024 	/* Items that need synchronisation are omitted from the list.
6025 	 * Use fast-reload without +p to update them together. */
6026 	COPY_VAR_int(verbosity);
6027 	COPY_VAR_int(stat_interval);
6028 	COPY_VAR_int(stat_cumulative);
6029 	COPY_VAR_int(stat_extended);
6030 	COPY_VAR_int(stat_inhibit_zero);
6031 	COPY_VAR_int(num_threads);
6032 	COPY_VAR_int(port);
6033 	COPY_VAR_int(do_ip4);
6034 	COPY_VAR_int(do_ip6);
6035 	COPY_VAR_int(do_nat64);
6036 	COPY_VAR_int(prefer_ip4);
6037 	COPY_VAR_int(prefer_ip6);
6038 	COPY_VAR_int(do_udp);
6039 	COPY_VAR_int(do_tcp);
6040 	COPY_VAR_size_t(max_reuse_tcp_queries);
6041 	COPY_VAR_int(tcp_reuse_timeout);
6042 	COPY_VAR_int(tcp_auth_query_timeout);
6043 	COPY_VAR_int(tcp_upstream);
6044 	COPY_VAR_int(udp_upstream_without_downstream);
6045 	COPY_VAR_int(tcp_mss);
6046 	COPY_VAR_int(outgoing_tcp_mss);
6047 	COPY_VAR_int(tcp_idle_timeout);
6048 	COPY_VAR_int(do_tcp_keepalive);
6049 	COPY_VAR_int(tcp_keepalive_timeout);
6050 	COPY_VAR_int(sock_queue_timeout);
6051 	COPY_VAR_ptr(proxy_protocol_port);
6052 	COPY_VAR_ptr(ssl_service_key);
6053 	COPY_VAR_ptr(ssl_service_pem);
6054 	COPY_VAR_int(ssl_port);
6055 	COPY_VAR_int(ssl_upstream);
6056 	COPY_VAR_ptr(tls_cert_bundle);
6057 	COPY_VAR_int(tls_win_cert);
6058 	COPY_VAR_ptr(tls_additional_port);
6059 	/* The first is used to walk through the list but last is
6060 	 * only used during config read. */
6061 	COPY_VAR_ptr(tls_session_ticket_keys.first);
6062 	COPY_VAR_ptr(tls_session_ticket_keys.last);
6063 	COPY_VAR_ptr(tls_ciphers);
6064 	COPY_VAR_ptr(tls_ciphersuites);
6065 	COPY_VAR_ptr(tls_protocols);
6066 	COPY_VAR_int(tls_use_sni);
6067 	COPY_VAR_int(https_port);
6068 	COPY_VAR_ptr(http_endpoint);
6069 	COPY_VAR_uint32_t(http_max_streams);
6070 	COPY_VAR_size_t(http_query_buffer_size);
6071 	COPY_VAR_size_t(http_response_buffer_size);
6072 	COPY_VAR_int(http_nodelay);
6073 	COPY_VAR_int(http_notls_downstream);
6074 	COPY_VAR_int(outgoing_num_ports);
6075 	COPY_VAR_size_t(outgoing_num_tcp);
6076 	COPY_VAR_size_t(incoming_num_tcp);
6077 	COPY_VAR_ptr(outgoing_avail_ports);
6078 	COPY_VAR_size_t(edns_buffer_size);
6079 	COPY_VAR_size_t(stream_wait_size);
6080 	COPY_VAR_size_t(msg_buffer_size);
6081 	COPY_VAR_size_t(msg_cache_size);
6082 	COPY_VAR_size_t(msg_cache_slabs);
6083 	COPY_VAR_size_t(num_queries_per_thread);
6084 	COPY_VAR_size_t(jostle_time);
6085 	COPY_VAR_size_t(rrset_cache_size);
6086 	COPY_VAR_size_t(rrset_cache_slabs);
6087 	COPY_VAR_int(host_ttl);
6088 	COPY_VAR_size_t(infra_cache_slabs);
6089 	COPY_VAR_size_t(infra_cache_numhosts);
6090 	COPY_VAR_int(infra_cache_min_rtt);
6091 	COPY_VAR_int(infra_cache_max_rtt);
6092 	COPY_VAR_int(infra_keep_probing);
6093 	COPY_VAR_int(delay_close);
6094 	COPY_VAR_int(udp_connect);
6095 	COPY_VAR_ptr(target_fetch_policy);
6096 	COPY_VAR_int(fast_server_permil);
6097 	COPY_VAR_size_t(fast_server_num);
6098 	COPY_VAR_int(if_automatic);
6099 	COPY_VAR_ptr(if_automatic_ports);
6100 	COPY_VAR_size_t(so_rcvbuf);
6101 	COPY_VAR_size_t(so_sndbuf);
6102 	COPY_VAR_int(so_reuseport);
6103 	COPY_VAR_int(ip_transparent);
6104 	COPY_VAR_int(ip_freebind);
6105 	COPY_VAR_int(ip_dscp);
6106 	/* Not copied because the length and items could then not match.
6107 	   num_ifs, ifs, num_out_ifs, out_ifs
6108 	*/
6109 	COPY_VAR_ptr(root_hints);
6110 	COPY_VAR_ptr(stubs);
6111 	COPY_VAR_ptr(forwards);
6112 	COPY_VAR_ptr(auths);
6113 	COPY_VAR_ptr(views);
6114 	COPY_VAR_ptr(donotqueryaddrs);
6115 #ifdef CLIENT_SUBNET
6116 	COPY_VAR_ptr(client_subnet);
6117 	COPY_VAR_ptr(client_subnet_zone);
6118 	COPY_VAR_uint16_t(client_subnet_opcode);
6119 	COPY_VAR_int(client_subnet_always_forward);
6120 	COPY_VAR_uint8_t(max_client_subnet_ipv4);
6121 	COPY_VAR_uint8_t(max_client_subnet_ipv6);
6122 	COPY_VAR_uint8_t(min_client_subnet_ipv4);
6123 	COPY_VAR_uint8_t(min_client_subnet_ipv6);
6124 	COPY_VAR_uint32_t(max_ecs_tree_size_ipv4);
6125 	COPY_VAR_uint32_t(max_ecs_tree_size_ipv6);
6126 #endif
6127 	COPY_VAR_ptr(acls);
6128 	COPY_VAR_int(donotquery_localhost);
6129 	COPY_VAR_ptr(tcp_connection_limits);
6130 	COPY_VAR_int(harden_short_bufsize);
6131 	COPY_VAR_int(harden_large_queries);
6132 	COPY_VAR_int(harden_glue);
6133 	COPY_VAR_int(harden_dnssec_stripped);
6134 	COPY_VAR_int(harden_below_nxdomain);
6135 	COPY_VAR_int(harden_referral_path);
6136 	COPY_VAR_int(harden_algo_downgrade);
6137 	COPY_VAR_int(harden_unknown_additional);
6138 	COPY_VAR_int(use_caps_bits_for_id);
6139 	COPY_VAR_ptr(caps_whitelist);
6140 	COPY_VAR_ptr(private_address);
6141 	COPY_VAR_ptr(private_domain);
6142 	COPY_VAR_size_t(unwanted_threshold);
6143 	COPY_VAR_int(max_ttl);
6144 	COPY_VAR_int(min_ttl);
6145 	COPY_VAR_int(max_negative_ttl);
6146 	COPY_VAR_int(min_negative_ttl);
6147 	COPY_VAR_int(prefetch);
6148 	COPY_VAR_int(prefetch_key);
6149 	COPY_VAR_int(deny_any);
6150 	COPY_VAR_ptr(chrootdir);
6151 	COPY_VAR_ptr(username);
6152 	COPY_VAR_ptr(directory);
6153 	COPY_VAR_ptr(logfile);
6154 	COPY_VAR_ptr(pidfile);
6155 	COPY_VAR_int(use_syslog);
6156 	COPY_VAR_int(log_time_ascii);
6157 	COPY_VAR_int(log_queries);
6158 	COPY_VAR_int(log_replies);
6159 	COPY_VAR_int(log_tag_queryreply);
6160 	COPY_VAR_int(log_local_actions);
6161 	COPY_VAR_int(log_servfail);
6162 	COPY_VAR_ptr(log_identity);
6163 	COPY_VAR_int(log_destaddr);
6164 	COPY_VAR_int(log_thread_id);
6165 	COPY_VAR_int(hide_identity);
6166 	COPY_VAR_int(hide_version);
6167 	COPY_VAR_int(hide_trustanchor);
6168 	COPY_VAR_int(hide_http_user_agent);
6169 	COPY_VAR_ptr(identity);
6170 	COPY_VAR_ptr(version);
6171 	COPY_VAR_ptr(http_user_agent);
6172 	COPY_VAR_ptr(nsid_cfg_str);
6173 	/* Not copied because the length and items could then not match.
6174 	nsid;
6175 	nsid_len;
6176 	*/
6177 	COPY_VAR_ptr(module_conf);
6178 	COPY_VAR_ptr(trust_anchor_file_list);
6179 	COPY_VAR_ptr(trust_anchor_list);
6180 	COPY_VAR_ptr(auto_trust_anchor_file_list);
6181 	COPY_VAR_ptr(trusted_keys_file_list);
6182 	COPY_VAR_ptr(domain_insecure);
6183 	COPY_VAR_int(trust_anchor_signaling);
6184 	COPY_VAR_int(root_key_sentinel);
6185 	COPY_VAR_int32_t(val_date_override);
6186 	COPY_VAR_int32_t(val_sig_skew_min);
6187 	COPY_VAR_int32_t(val_sig_skew_max);
6188 	COPY_VAR_int32_t(val_max_restart);
6189 	COPY_VAR_int(bogus_ttl);
6190 	COPY_VAR_int(val_clean_additional);
6191 	COPY_VAR_int(val_log_level);
6192 	COPY_VAR_int(val_log_squelch);
6193 	COPY_VAR_int(val_permissive_mode);
6194 	COPY_VAR_int(aggressive_nsec);
6195 	COPY_VAR_int(ignore_cd);
6196 	COPY_VAR_int(disable_edns_do);
6197 	COPY_VAR_int(serve_expired);
6198 	COPY_VAR_int(serve_expired_ttl);
6199 	COPY_VAR_int(serve_expired_ttl_reset);
6200 	COPY_VAR_int(serve_expired_reply_ttl);
6201 	COPY_VAR_int(serve_expired_client_timeout);
6202 	COPY_VAR_int(ede_serve_expired);
6203 	COPY_VAR_int(dns_error_reporting);
6204 	COPY_VAR_int(serve_original_ttl);
6205 	COPY_VAR_ptr(val_nsec3_key_iterations);
6206 	COPY_VAR_int(zonemd_permissive_mode);
6207 	COPY_VAR_unsigned_int(add_holddown);
6208 	COPY_VAR_unsigned_int(del_holddown);
6209 	COPY_VAR_unsigned_int(keep_missing);
6210 	COPY_VAR_int(permit_small_holddown);
6211 	COPY_VAR_size_t(key_cache_size);
6212 	COPY_VAR_size_t(key_cache_slabs);
6213 	COPY_VAR_size_t(neg_cache_size);
6214 	COPY_VAR_ptr(local_zones);
6215 	COPY_VAR_ptr(local_zones_nodefault);
6216 #ifdef USE_IPSET
6217 	COPY_VAR_ptr(local_zones_ipset);
6218 #endif
6219 	COPY_VAR_int(local_zones_disable_default);
6220 	COPY_VAR_ptr(local_data);
6221 	COPY_VAR_ptr(local_zone_overrides);
6222 	COPY_VAR_int(unblock_lan_zones);
6223 	COPY_VAR_int(insecure_lan_zones);
6224 	/* These reference tags
6225 	COPY_VAR_ptr(local_zone_tags);
6226 	COPY_VAR_ptr(acl_tags);
6227 	COPY_VAR_ptr(acl_tag_actions);
6228 	COPY_VAR_ptr(acl_tag_datas);
6229 	*/
6230 	COPY_VAR_ptr(acl_view);
6231 	COPY_VAR_ptr(interface_actions);
6232 	/* These reference tags
6233 	COPY_VAR_ptr(interface_tags);
6234 	COPY_VAR_ptr(interface_tag_actions);
6235 	COPY_VAR_ptr(interface_tag_datas);
6236 	*/
6237 	COPY_VAR_ptr(interface_view);
6238 	/* This references tags
6239 	COPY_VAR_ptr(respip_tags);
6240 	*/
6241 	COPY_VAR_ptr(respip_actions);
6242 	COPY_VAR_ptr(respip_data);
6243 	/* Not copied because the length and items could then not match.
6244 	 * also the respip module keeps a pointer to the array in its state.
6245 	   tagname, num_tags
6246 	*/
6247 	COPY_VAR_int(remote_control_enable);
6248 	/* The first is used to walk through the list but last is
6249 	 * only used during config read. */
6250 	COPY_VAR_ptr(control_ifs.first);
6251 	COPY_VAR_ptr(control_ifs.last);
6252 	COPY_VAR_int(control_use_cert);
6253 	COPY_VAR_int(control_port);
6254 	COPY_VAR_ptr(server_key_file);
6255 	COPY_VAR_ptr(server_cert_file);
6256 	COPY_VAR_ptr(control_key_file);
6257 	COPY_VAR_ptr(control_cert_file);
6258 	COPY_VAR_ptr(python_script);
6259 	COPY_VAR_ptr(dynlib_file);
6260 	COPY_VAR_int(use_systemd);
6261 	COPY_VAR_int(do_daemonize);
6262 	COPY_VAR_int(minimal_responses);
6263 	COPY_VAR_int(rrset_roundrobin);
6264 	COPY_VAR_int(unknown_server_time_limit);
6265 	COPY_VAR_int(discard_timeout);
6266 	COPY_VAR_int(wait_limit);
6267 	COPY_VAR_int(wait_limit_cookie);
6268 	COPY_VAR_ptr(wait_limit_netblock);
6269 	COPY_VAR_ptr(wait_limit_cookie_netblock);
6270 	COPY_VAR_size_t(max_udp_size);
6271 	COPY_VAR_ptr(dns64_prefix);
6272 	COPY_VAR_int(dns64_synthall);
6273 	COPY_VAR_ptr(dns64_ignore_aaaa);
6274 	COPY_VAR_ptr(nat64_prefix);
6275 	COPY_VAR_int(dnstap);
6276 	COPY_VAR_int(dnstap_bidirectional);
6277 	COPY_VAR_ptr(dnstap_socket_path);
6278 	COPY_VAR_ptr(dnstap_ip);
6279 	COPY_VAR_int(dnstap_tls);
6280 	COPY_VAR_ptr(dnstap_tls_server_name);
6281 	COPY_VAR_ptr(dnstap_tls_cert_bundle);
6282 	COPY_VAR_ptr(dnstap_tls_client_key_file);
6283 	COPY_VAR_ptr(dnstap_tls_client_cert_file);
6284 	COPY_VAR_int(dnstap_send_identity);
6285 	COPY_VAR_int(dnstap_send_version);
6286 	COPY_VAR_ptr(dnstap_identity);
6287 	COPY_VAR_ptr(dnstap_version);
6288 	COPY_VAR_int(dnstap_sample_rate);
6289 	COPY_VAR_int(dnstap_log_resolver_query_messages);
6290 	COPY_VAR_int(dnstap_log_resolver_response_messages);
6291 	COPY_VAR_int(dnstap_log_client_query_messages);
6292 	COPY_VAR_int(dnstap_log_client_response_messages);
6293 	COPY_VAR_int(dnstap_log_forwarder_query_messages);
6294 	COPY_VAR_int(dnstap_log_forwarder_response_messages);
6295 	COPY_VAR_int(disable_dnssec_lame_check);
6296 	COPY_VAR_int(ip_ratelimit);
6297 	COPY_VAR_int(ip_ratelimit_cookie);
6298 	COPY_VAR_size_t(ip_ratelimit_slabs);
6299 	COPY_VAR_size_t(ip_ratelimit_size);
6300 	COPY_VAR_int(ip_ratelimit_factor);
6301 	COPY_VAR_int(ip_ratelimit_backoff);
6302 	COPY_VAR_int(ratelimit);
6303 	COPY_VAR_size_t(ratelimit_slabs);
6304 	COPY_VAR_size_t(ratelimit_size);
6305 	COPY_VAR_ptr(ratelimit_for_domain);
6306 	COPY_VAR_ptr(ratelimit_below_domain);
6307 	COPY_VAR_int(ratelimit_factor);
6308 	COPY_VAR_int(ratelimit_backoff);
6309 	COPY_VAR_int(outbound_msg_retry);
6310 	COPY_VAR_int(max_sent_count);
6311 	COPY_VAR_int(max_query_restarts);
6312 	COPY_VAR_int(qname_minimisation);
6313 	COPY_VAR_int(qname_minimisation_strict);
6314 	COPY_VAR_int(shm_enable);
6315 	COPY_VAR_int(shm_key);
6316 	COPY_VAR_ptr(edns_client_strings);
6317 	COPY_VAR_uint16_t(edns_client_string_opcode);
6318 	COPY_VAR_int(dnscrypt);
6319 	COPY_VAR_int(dnscrypt_port);
6320 	COPY_VAR_ptr(dnscrypt_provider);
6321 	COPY_VAR_ptr(dnscrypt_secret_key);
6322 	COPY_VAR_ptr(dnscrypt_provider_cert);
6323 	COPY_VAR_ptr(dnscrypt_provider_cert_rotated);
6324 	COPY_VAR_size_t(dnscrypt_shared_secret_cache_size);
6325 	COPY_VAR_size_t(dnscrypt_shared_secret_cache_slabs);
6326 	COPY_VAR_size_t(dnscrypt_nonce_cache_size);
6327 	COPY_VAR_size_t(dnscrypt_nonce_cache_slabs);
6328 	COPY_VAR_int(pad_responses);
6329 	COPY_VAR_size_t(pad_responses_block_size);
6330 	COPY_VAR_int(pad_queries);
6331 	COPY_VAR_size_t(pad_queries_block_size);
6332 #ifdef USE_IPSECMOD
6333 	COPY_VAR_int(ipsecmod_enabled);
6334 	COPY_VAR_ptr(ipsecmod_whitelist);
6335 	COPY_VAR_ptr(ipsecmod_hook);
6336 	COPY_VAR_int(ipsecmod_ignore_bogus);
6337 	COPY_VAR_int(ipsecmod_max_ttl);
6338 	COPY_VAR_int(ipsecmod_strict);
6339 #endif
6340 #ifdef USE_CACHEDB
6341 	COPY_VAR_ptr(cachedb_backend);
6342 	COPY_VAR_ptr(cachedb_secret);
6343 	COPY_VAR_int(cachedb_no_store);
6344 	COPY_VAR_int(cachedb_check_when_serve_expired);
6345 #ifdef USE_REDIS
6346 	COPY_VAR_ptr(redis_server_host);
6347 	COPY_VAR_ptr(redis_replica_server_host);
6348 	COPY_VAR_int(redis_server_port);
6349 	COPY_VAR_int(redis_replica_server_port);
6350 	COPY_VAR_ptr(redis_server_path);
6351 	COPY_VAR_ptr(redis_replica_server_path);
6352 	COPY_VAR_ptr(redis_server_password);
6353 	COPY_VAR_ptr(redis_replica_server_password);
6354 	COPY_VAR_int(redis_timeout);
6355 	COPY_VAR_int(redis_replica_timeout);
6356 	COPY_VAR_int(redis_command_timeout);
6357 	COPY_VAR_int(redis_replica_command_timeout);
6358 	COPY_VAR_int(redis_connect_timeout);
6359 	COPY_VAR_int(redis_replica_connect_timeout);
6360 	COPY_VAR_int(redis_expire_records);
6361 	COPY_VAR_int(redis_logical_db);
6362 	COPY_VAR_int(redis_replica_logical_db);
6363 #endif
6364 #endif
6365 	COPY_VAR_int(do_answer_cookie);
6366 	/* Not copied because the length and content could then not match.
6367 	   cookie_secret[40], cookie_secret_len
6368 	*/
6369 #ifdef USE_IPSET
6370 	COPY_VAR_ptr(ipset_name_v4);
6371 	COPY_VAR_ptr(ipset_name_v6);
6372 #endif
6373 	COPY_VAR_int(ede);
6374 	COPY_VAR_int(iter_scrub_ns);
6375 	COPY_VAR_int(iter_scrub_cname);
6376 	COPY_VAR_int(iter_scrub_rrsig);
6377 	COPY_VAR_int(max_global_quota);
6378 	COPY_VAR_int(iter_scrub_promiscuous);
6379 
6380 #undef COPY_VAR_int
6381 #undef COPY_VAR_ptr
6382 #undef COPY_VAR_unsigned_int
6383 #undef COPY_VAR_size_t
6384 #undef COPY_VAR_uint8_t
6385 #undef COPY_VAR_uint16_t
6386 #undef COPY_VAR_uint32_t
6387 #undef COPY_VAR_int32_t
6388 }
6389 #endif /* ATOMIC_POINTER_LOCK_FREE && HAVE_LINK_ATOMIC_STORE */
6390 
6391 /** fast reload thread, adjust the cache sizes */
6392 static void
fr_adjust_cache(struct module_env * env,struct config_file * oldcfg)6393 fr_adjust_cache(struct module_env* env, struct config_file* oldcfg)
6394 {
6395 	if(env->cfg->msg_cache_size != oldcfg->msg_cache_size)
6396 		slabhash_adjust_size(env->msg_cache, env->cfg->msg_cache_size);
6397 	if(env->cfg->rrset_cache_size != oldcfg->rrset_cache_size)
6398 		slabhash_adjust_size(&env->rrset_cache->table,
6399 			env->cfg->rrset_cache_size);
6400 	if(env->key_cache &&
6401 		env->cfg->key_cache_size != oldcfg->key_cache_size)
6402 		slabhash_adjust_size(env->key_cache->slab,
6403 			env->cfg->key_cache_size);
6404 	if(env->cfg->infra_cache_numhosts != oldcfg->infra_cache_numhosts) {
6405 		size_t inframem = env->cfg->infra_cache_numhosts *
6406 			(sizeof(struct infra_key) + sizeof(struct infra_data)
6407 			+ INFRA_BYTES_NAME);
6408 		slabhash_adjust_size(env->infra_cache->hosts, inframem);
6409 	}
6410 	if(env->cfg->ratelimit_size != oldcfg->ratelimit_size) {
6411 		slabhash_adjust_size(env->infra_cache->domain_rates,
6412 			env->cfg->ratelimit_size);
6413 		slabhash_adjust_size(env->infra_cache->client_ip_rates,
6414 			env->cfg->ratelimit_size);
6415 	}
6416 	if(env->neg_cache &&
6417 		env->cfg->neg_cache_size != oldcfg->neg_cache_size) {
6418 		val_neg_adjust_size(env->neg_cache, env->cfg->neg_cache_size);
6419 	}
6420 }
6421 
6422 /** fast reload thread, adjust the iterator env */
6423 static void
fr_adjust_iter_env(struct module_env * env,struct fast_reload_construct * ct)6424 fr_adjust_iter_env(struct module_env* env, struct fast_reload_construct* ct)
6425 {
6426 	int m;
6427 	struct iter_env* iter_env = NULL;
6428 	/* There is no comparison here to see if no options changed and thus
6429 	 * no swap is needed, the trees with addresses and domains can be
6430 	 * large and that would take too long. Instead the trees are
6431 	 * swapped in. */
6432 
6433 	/* Because the iterator env is not locked, the update cannot happen
6434 	 * when fr nopause is used. Without it the fast reload pauses the
6435 	 * other threads, so they are not currently using the structure. */
6436 	m = modstack_find(env->modstack, "iterator");
6437 	if(m != -1) iter_env = (struct iter_env*)env->modinfo[m];
6438 	if(iter_env) {
6439 		/* Swap the data so that the delete happens afterwards. */
6440 		int* oldtargetfetchpolicy = iter_env->target_fetch_policy;
6441 		int oldmaxdependencydepth = iter_env->max_dependency_depth;
6442 		struct iter_donotq* olddonotq = iter_env->donotq;
6443 		struct iter_priv* oldpriv = iter_env->priv;
6444 		struct rbtree_type* oldcapswhite = iter_env->caps_white;
6445 		struct iter_nat64 oldnat64 = iter_env->nat64;
6446 
6447 		iter_env->target_fetch_policy = ct->target_fetch_policy;
6448 		iter_env->max_dependency_depth = ct->max_dependency_depth;
6449 		iter_env->donotq = ct->donotq;
6450 		iter_env->priv = ct->priv;
6451 		iter_env->caps_white = ct->caps_white;
6452 		iter_env->nat64 = ct->nat64;
6453 		iter_env->outbound_msg_retry = env->cfg->outbound_msg_retry;
6454 		iter_env->max_sent_count = env->cfg->max_sent_count;
6455 		iter_env->max_query_restarts = env->cfg->max_query_restarts;
6456 
6457 		ct->target_fetch_policy = oldtargetfetchpolicy;
6458 		ct->max_dependency_depth = oldmaxdependencydepth;
6459 		ct->donotq = olddonotq;
6460 		ct->priv = oldpriv;
6461 		ct->caps_white = oldcapswhite;
6462 		ct->nat64 = oldnat64;
6463 	}
6464 }
6465 
6466 /** fast reload thread, adjust the validator env */
6467 static void
fr_adjust_val_env(struct module_env * env,struct fast_reload_construct * ct,struct config_file * oldcfg)6468 fr_adjust_val_env(struct module_env* env, struct fast_reload_construct* ct,
6469 	struct config_file* oldcfg)
6470 {
6471 	int m;
6472 	struct val_env* val_env = NULL;
6473 	if(env->cfg->bogus_ttl == oldcfg->bogus_ttl &&
6474 		env->cfg->val_date_override == oldcfg->val_date_override &&
6475 		env->cfg->val_sig_skew_min == oldcfg->val_sig_skew_min &&
6476 		env->cfg->val_sig_skew_max == oldcfg->val_sig_skew_max &&
6477 		env->cfg->val_max_restart == oldcfg->val_max_restart &&
6478 		strcmp(env->cfg->val_nsec3_key_iterations,
6479 		oldcfg->val_nsec3_key_iterations) == 0)
6480 		return; /* no changes */
6481 
6482 	/* Because the validator env is not locked, the update cannot happen
6483 	 * when fr nopause is used. Without it the fast reload pauses the
6484 	 * other threads, so they are not currently using the structure. */
6485 	m = modstack_find(env->modstack, "validator");
6486 	if(m != -1) val_env = (struct val_env*)env->modinfo[m];
6487 	if(val_env) {
6488 		/* Swap the arrays so that the delete happens afterwards. */
6489 		size_t* oldkeysize = val_env->nsec3_keysize;
6490 		size_t* oldmaxiter = val_env->nsec3_maxiter;
6491 		val_env->nsec3_keysize = NULL;
6492 		val_env->nsec3_maxiter = NULL;
6493 		val_env_apply_cfg(val_env, env->cfg, ct->nsec3_keysize,
6494 			ct->nsec3_maxiter, ct->nsec3_keyiter_count);
6495 		ct->nsec3_keysize = oldkeysize;
6496 		ct->nsec3_maxiter = oldmaxiter;
6497 		if(env->neg_cache) {
6498 			lock_basic_lock(&env->neg_cache->lock);
6499 			env->neg_cache->nsec3_max_iter = val_env->
6500 				nsec3_maxiter[val_env->nsec3_keyiter_count-1];
6501 			lock_basic_unlock(&env->neg_cache->lock);
6502 		}
6503 	}
6504 }
6505 
6506 /** fast reload thread, adjust the infra cache parameters */
6507 static void
fr_adjust_infra(struct module_env * env,struct fast_reload_construct * ct)6508 fr_adjust_infra(struct module_env* env, struct fast_reload_construct* ct)
6509 {
6510 	struct infra_cache* infra = env->infra_cache;
6511 	struct config_file* cfg = env->cfg;
6512 	struct rbtree_type oldwaitlim = infra->wait_limits_netblock;
6513 	struct rbtree_type oldwaitlimcookie =
6514 		infra->wait_limits_cookie_netblock;
6515 	struct rbtree_type olddomainlim = infra->domain_limits;
6516 
6517 	/* The size of the infra cache and ip rates is changed
6518 	 * in fr_adjust_cache. */
6519 	infra->host_ttl = cfg->host_ttl;
6520 	infra->infra_keep_probing = cfg->infra_keep_probing;
6521 	infra_dp_ratelimit = cfg->ratelimit;
6522 	infra_ip_ratelimit = cfg->ip_ratelimit;
6523 	infra_ip_ratelimit_cookie = cfg->ip_ratelimit_cookie;
6524 	infra->wait_limits_netblock = ct->wait_limits_netblock;
6525 	infra->wait_limits_cookie_netblock = ct->wait_limits_cookie_netblock;
6526 	infra->domain_limits = ct->domain_limits;
6527 
6528 	ct->wait_limits_netblock = oldwaitlim;
6529 	ct->wait_limits_cookie_netblock = oldwaitlimcookie;
6530 	ct->domain_limits = olddomainlim;
6531 }
6532 
6533 /** fast reload thread, reload config with putting the new config items
6534  * in place and swapping out the old items. */
6535 static int
fr_reload_config(struct fast_reload_thread * fr,struct config_file * newcfg,struct fast_reload_construct * ct)6536 fr_reload_config(struct fast_reload_thread* fr, struct config_file* newcfg,
6537 	struct fast_reload_construct* ct)
6538 {
6539 	struct daemon* daemon = fr->worker->daemon;
6540 	struct module_env* env = daemon->env;
6541 
6542 	/* These are constructed in the fr_construct_from_config routine. */
6543 	log_assert(ct->oldcfg);
6544 	log_assert(ct->fwds);
6545 	log_assert(ct->hints);
6546 
6547 	/* Grab big locks to satisfy lock conditions. */
6548 	lock_rw_wrlock(&ct->views->lock);
6549 	lock_rw_wrlock(&env->views->lock);
6550 	lock_rw_wrlock(&ct->respip_set->lock);
6551 	lock_rw_wrlock(&env->respip_set->lock);
6552 	lock_rw_wrlock(&ct->local_zones->lock);
6553 	lock_rw_wrlock(&daemon->local_zones->lock);
6554 	lock_rw_wrlock(&ct->auth_zones->rpz_lock);
6555 	lock_rw_wrlock(&env->auth_zones->rpz_lock);
6556 	lock_rw_wrlock(&ct->auth_zones->lock);
6557 	lock_rw_wrlock(&env->auth_zones->lock);
6558 	lock_rw_wrlock(&ct->fwds->lock);
6559 	lock_rw_wrlock(&env->fwds->lock);
6560 	lock_rw_wrlock(&ct->hints->lock);
6561 	lock_rw_wrlock(&env->hints->lock);
6562 	if(ct->anchors) {
6563 		lock_basic_lock(&ct->anchors->lock);
6564 		lock_basic_lock(&env->anchors->lock);
6565 	}
6566 
6567 #if defined(ATOMIC_POINTER_LOCK_FREE) && defined(HAVE_LINK_ATOMIC_STORE)
6568 	if(fr->fr_nopause) {
6569 		fr_atomic_copy_cfg(ct->oldcfg, env->cfg, newcfg);
6570 	} else {
6571 #endif
6572 		/* Store old config elements. */
6573 		*ct->oldcfg = *env->cfg;
6574 		/* Insert new config elements. */
6575 		*env->cfg = *newcfg;
6576 #if defined(ATOMIC_POINTER_LOCK_FREE) && defined(HAVE_LINK_ATOMIC_STORE)
6577 	}
6578 #endif
6579 
6580 	if(env->cfg->log_identity || ct->oldcfg->log_identity) {
6581 		/* pick up new log_identity string to use for log output. */
6582 		log_ident_set_or_default(env->cfg->log_identity);
6583 	}
6584 	/* the newcfg elements are in env->cfg, so should not be freed here. */
6585 #if defined(ATOMIC_POINTER_LOCK_FREE) && defined(HAVE_LINK_ATOMIC_STORE)
6586 	/* if used, the routine that copies the config has zeroed items. */
6587 	if(!fr->fr_nopause)
6588 #endif
6589 		memset(newcfg, 0, sizeof(*newcfg));
6590 
6591 	/* Quickly swap the tree roots themselves with the already allocated
6592 	 * elements. This is a quick swap operation on the pointer.
6593 	 * The other threads are stopped and locks are held, so that a
6594 	 * consistent view of the configuration, before, and after, exists
6595 	 * towards the state machine for query resolution. */
6596 	forwards_swap_tree(env->fwds, ct->fwds);
6597 	hints_swap_tree(env->hints, ct->hints);
6598 	views_swap_tree(env->views, ct->views);
6599 	acl_list_swap_tree(daemon->acl, ct->acl);
6600 	acl_list_swap_tree(daemon->acl_interface, ct->acl_interface);
6601 	tcl_list_swap_tree(daemon->tcl, ct->tcl);
6602 	local_zones_swap_tree(daemon->local_zones, ct->local_zones);
6603 	respip_set_swap_tree(env->respip_set, ct->respip_set);
6604 	daemon->use_response_ip = ct->use_response_ip;
6605 	daemon->use_rpz = ct->use_rpz;
6606 	auth_zones_swap(env->auth_zones, ct->auth_zones);
6607 	edns_strings_swap_tree(env->edns_strings, ct->edns_strings);
6608 	anchors_swap_tree(env->anchors, ct->anchors);
6609 #ifdef USE_CACHEDB
6610 	daemon->env->cachedb_enabled = cachedb_is_enabled(&daemon->mods,
6611 		daemon->env);
6612 #endif
6613 	if(fr->sslctxs_changed) {
6614 		sslctxs_swap(daemon, ct);
6615 	}
6616 #ifdef USE_DNSTAP
6617 	if(env->cfg->dnstap) {
6618 		if(!fr->fr_nopause)
6619 			dt_apply_cfg(daemon->dtenv, env->cfg);
6620 		else dt_apply_logcfg(daemon->dtenv, env->cfg);
6621 	}
6622 #endif
6623 	fr_adjust_cache(env, ct->oldcfg);
6624 	if(!fr->fr_nopause) {
6625 		fr_adjust_iter_env(env, ct);
6626 		fr_adjust_val_env(env, ct, ct->oldcfg);
6627 		fr_adjust_infra(env, ct);
6628 	}
6629 
6630 	/* Set globals with new config. */
6631 	config_apply(env->cfg);
6632 
6633 	lock_rw_unlock(&ct->views->lock);
6634 	lock_rw_unlock(&env->views->lock);
6635 	lock_rw_unlock(&ct->respip_set->lock);
6636 	lock_rw_unlock(&env->respip_set->lock);
6637 	lock_rw_unlock(&ct->local_zones->lock);
6638 	lock_rw_unlock(&daemon->local_zones->lock);
6639 	lock_rw_unlock(&ct->auth_zones->lock);
6640 	lock_rw_unlock(&env->auth_zones->lock);
6641 	lock_rw_unlock(&ct->auth_zones->rpz_lock);
6642 	lock_rw_unlock(&env->auth_zones->rpz_lock);
6643 	lock_rw_unlock(&ct->fwds->lock);
6644 	lock_rw_unlock(&env->fwds->lock);
6645 	lock_rw_unlock(&ct->hints->lock);
6646 	lock_rw_unlock(&env->hints->lock);
6647 	if(ct->anchors) {
6648 		lock_basic_unlock(&ct->anchors->lock);
6649 		lock_basic_unlock(&env->anchors->lock);
6650 	}
6651 
6652 	return 1;
6653 }
6654 
6655 /** fast reload, poll for ack incoming. */
6656 static void
fr_poll_for_ack(struct fast_reload_thread * fr)6657 fr_poll_for_ack(struct fast_reload_thread* fr)
6658 {
6659 	int loopexit = 0, bcount = 0;
6660 	uint32_t cmd;
6661 	ssize_t ret;
6662 
6663 	if(fr->need_to_quit)
6664 		return;
6665 	/* Is there data? */
6666 	if(!sock_poll_timeout(fr->commpair[1], -1, 1, 0, NULL)) {
6667 		log_err("fr_poll_for_ack: poll failed");
6668 		return;
6669 	}
6670 
6671 	/* Read the data */
6672 	while(1) {
6673 		if(++loopexit > IPC_LOOP_MAX) {
6674 			log_err("fr_poll_for_ack: recv loops %s",
6675 				sock_strerror(errno));
6676 			return;
6677 		}
6678 		ret = recv(fr->commpair[1], ((char*)&cmd)+bcount,
6679 			sizeof(cmd)-bcount, 0);
6680 		if(ret == -1) {
6681 			if(
6682 #ifndef USE_WINSOCK
6683 				errno == EINTR || errno == EAGAIN
6684 #  ifdef EWOULDBLOCK
6685 				|| errno == EWOULDBLOCK
6686 #  endif
6687 #else
6688 				WSAGetLastError() == WSAEINTR ||
6689 				WSAGetLastError() == WSAEINPROGRESS ||
6690 				WSAGetLastError() == WSAEWOULDBLOCK
6691 #endif
6692 				)
6693 				continue; /* Try again. */
6694 			log_err("fr_poll_for_ack: recv: %s",
6695 				sock_strerror(errno));
6696 			return;
6697 		} else if(ret+(ssize_t)bcount != sizeof(cmd)) {
6698 			bcount += ret;
6699 			if((size_t)bcount < sizeof(cmd))
6700 				continue;
6701 		}
6702 		break;
6703 	}
6704 	if(cmd == fast_reload_notification_exit) {
6705 		fr->need_to_quit = 1;
6706 		verbose(VERB_ALGO, "fast reload wait for ack: "
6707 			"exit notification received");
6708 		return;
6709 	}
6710 	if(cmd != fast_reload_notification_reload_ack) {
6711 		verbose(VERB_ALGO, "fast reload wait for ack: "
6712 			"wrong notification %d", (int)cmd);
6713 	}
6714 }
6715 
6716 /** fast reload thread, reload ipc communication to stop and start threads. */
6717 static int
fr_reload_ipc(struct fast_reload_thread * fr,struct config_file * newcfg,struct fast_reload_construct * ct)6718 fr_reload_ipc(struct fast_reload_thread* fr, struct config_file* newcfg,
6719 	struct fast_reload_construct* ct)
6720 {
6721 	int result = 1;
6722 	if(!fr->fr_nopause) {
6723 		fr_send_notification(fr, fast_reload_notification_reload_stop);
6724 		fr_poll_for_ack(fr);
6725 	}
6726 	if(!fr_reload_config(fr, newcfg, ct)) {
6727 		result = 0;
6728 	}
6729 	if(!fr->fr_nopause) {
6730 		fr_send_notification(fr, fast_reload_notification_reload_start);
6731 		fr_poll_for_ack(fr);
6732 	}
6733 	return result;
6734 }
6735 
6736 /** fast reload thread, load config */
6737 static int
fr_load_config(struct fast_reload_thread * fr,struct timeval * time_read,struct timeval * time_construct,struct timeval * time_reload)6738 fr_load_config(struct fast_reload_thread* fr, struct timeval* time_read,
6739 	struct timeval* time_construct, struct timeval* time_reload)
6740 {
6741 	struct fast_reload_construct ct;
6742 	struct config_file* newcfg = NULL;
6743 	memset(&ct, 0, sizeof(ct));
6744 
6745 	/* Read file. */
6746 	if(!fr_read_config(fr, &newcfg))
6747 		return 0;
6748 	if(gettimeofday(time_read, NULL) < 0)
6749 		log_err("gettimeofday: %s", strerror(errno));
6750 	if(fr_poll_for_quit(fr)) {
6751 		config_delete(newcfg);
6752 		return 1;
6753 	}
6754 
6755 	/* Check if the config can be loaded */
6756 	if(!fr_check_tag_defines(fr, newcfg)) {
6757 		config_delete(newcfg);
6758 		return 0;
6759 	}
6760 	if(!fr_check_compat_cfg(fr, newcfg)) {
6761 		config_delete(newcfg);
6762 		return 0;
6763 	}
6764 	if(!fr_check_nopause_compat_cfg(fr, newcfg)) {
6765 		config_delete(newcfg);
6766 		return 0;
6767 	}
6768 	if(fr_poll_for_quit(fr)) {
6769 		config_delete(newcfg);
6770 		return 1;
6771 	}
6772 
6773 	/* Construct items. */
6774 	if(!fr_construct_from_config(fr, newcfg, &ct)) {
6775 		config_delete(newcfg);
6776 		if(!fr_output_printf(fr, "Could not construct from the "
6777 			"config, check for errors with unbound-checkconf, or "
6778 			"out of memory. The parse errors are printed in "
6779 			"the log.\n"))
6780 			return 0;
6781 		fr_send_notification(fr, fast_reload_notification_printout);
6782 		return 0;
6783 	}
6784 	if(gettimeofday(time_construct, NULL) < 0)
6785 		log_err("gettimeofday: %s", strerror(errno));
6786 	if(fr_poll_for_quit(fr)) {
6787 		config_delete(newcfg);
6788 		fr_construct_clear(&ct);
6789 		return 1;
6790 	}
6791 
6792 	/* Reload server. */
6793 	if(!fr_reload_ipc(fr, newcfg, &ct)) {
6794 		config_delete(newcfg);
6795 		fr_construct_clear(&ct);
6796 		if(!fr_output_printf(fr, "error: reload failed\n"))
6797 			return 0;
6798 		fr_send_notification(fr, fast_reload_notification_printout);
6799 		return 0;
6800 	}
6801 	if(gettimeofday(time_reload, NULL) < 0)
6802 		log_err("gettimeofday: %s", strerror(errno));
6803 
6804 	if(fr_poll_for_quit(fr)) {
6805 		config_delete(newcfg);
6806 		fr_construct_clear(&ct);
6807 		return 1;
6808 	}
6809 	if(fr->fr_nopause) {
6810 		/* Poll every thread, with a no-work poll item over the
6811 		 * command pipe. This makes the worker thread surely move
6812 		 * to deal with that event, and thus the thread is no longer
6813 		 * holding, eg. a string item from the old config struct.
6814 		 * And then the old config struct can safely be deleted.
6815 		 * Only needed when nopause is used, because without that
6816 		 * the worker threads are already waiting on a command pipe
6817 		 * item. This nopause command pipe item does not take work,
6818 		 * it returns immediately, so it does not delay the workers.
6819 		 * They can be polled one at a time. But its processing causes
6820 		 * the worker to have released data items from old config.
6821 		 * This also makes sure the threads are not holding locks on
6822 		 * individual items in the local_zones, views, respip_set. */
6823 		fr_send_notification(fr,
6824 			fast_reload_notification_reload_nopause_poll);
6825 		fr_poll_for_ack(fr);
6826 	}
6827 
6828 	/* Delete old. */
6829 	config_delete(newcfg);
6830 	fr_construct_clear(&ct);
6831 	return 1;
6832 }
6833 
6834 /** fast reload thread. the thread main function */
fast_reload_thread_main(void * arg)6835 static void* fast_reload_thread_main(void* arg)
6836 {
6837 	struct fast_reload_thread* fast_reload_thread = (struct fast_reload_thread*)arg;
6838 	struct timeval time_start, time_read, time_construct, time_reload,
6839 		time_end;
6840 	const char name[16] = "unbound/freload"; /* seems to be the safest size
6841 						    between different OSes */
6842 
6843 #if defined(HAVE_GETTID) && !defined(THREADS_DISABLED)
6844 	fast_reload_thread->thread_tid = gettid();
6845 	if(fast_reload_thread->thread_tid_log)
6846 		log_thread_set(&fast_reload_thread->thread_tid);
6847 	else
6848 #endif
6849 		log_thread_set(&fast_reload_thread->threadnum);
6850 
6851 	ub_thread_setname(fast_reload_thread->tid, name);
6852 	(void)name; /* When setname is not defined, ignore the name variable. */
6853 
6854 	verbose(VERB_ALGO, "start fast reload thread");
6855 	if(fast_reload_thread->fr_verb >= 1) {
6856 		fr_init_time(&time_start, &time_read, &time_construct,
6857 			&time_reload, &time_end);
6858 		if(fr_poll_for_quit(fast_reload_thread))
6859 			goto done;
6860 	}
6861 
6862 	/* print output to the client */
6863 	if(fast_reload_thread->fr_verb >= 1) {
6864 		if(!fr_output_printf(fast_reload_thread, "thread started\n"))
6865 			goto done_error;
6866 		fr_send_notification(fast_reload_thread,
6867 			fast_reload_notification_printout);
6868 		if(fr_poll_for_quit(fast_reload_thread))
6869 			goto done;
6870 	}
6871 
6872 	if(!fr_load_config(fast_reload_thread, &time_read, &time_construct,
6873 		&time_reload))
6874 		goto done_error;
6875 	if(fr_poll_for_quit(fast_reload_thread))
6876 		goto done;
6877 
6878 	if(fast_reload_thread->fr_verb >= 1) {
6879 		if(!fr_finish_time(fast_reload_thread, &time_start, &time_read,
6880 			&time_construct, &time_reload, &time_end))
6881 			goto done_error;
6882 		if(fr_poll_for_quit(fast_reload_thread))
6883 			goto done;
6884 	}
6885 
6886 	if(!fr_output_printf(fast_reload_thread, "ok\n"))
6887 		goto done_error;
6888 	fr_send_notification(fast_reload_thread,
6889 		fast_reload_notification_printout);
6890 	verbose(VERB_ALGO, "stop fast reload thread");
6891 	/* If this is not an exit due to quit earlier, send regular done. */
6892 	if(!fast_reload_thread->need_to_quit)
6893 		fr_send_notification(fast_reload_thread,
6894 			fast_reload_notification_done);
6895 	/* If during the fast_reload_notification_done send,
6896 	 * fast_reload_notification_exit was received, ack it. If the
6897 	 * thread is exiting due to quit received earlier, also ack it.*/
6898 done:
6899 	if(fast_reload_thread->need_to_quit)
6900 		fr_send_notification(fast_reload_thread,
6901 			fast_reload_notification_exited);
6902 	return NULL;
6903 done_error:
6904 	verbose(VERB_ALGO, "stop fast reload thread with done_error");
6905 	fr_send_notification(fast_reload_thread,
6906 		fast_reload_notification_done_error);
6907 	return NULL;
6908 }
6909 #endif /* !THREADS_DISABLED */
6910 
6911 /** create a socketpair for bidirectional communication, false on failure */
6912 static int
create_socketpair(int * pair,struct ub_randstate * rand)6913 create_socketpair(int* pair, struct ub_randstate* rand)
6914 {
6915 #ifndef USE_WINSOCK
6916 	if(socketpair(AF_UNIX, SOCK_STREAM, 0, pair) == -1) {
6917 		log_err("socketpair: %s", strerror(errno));
6918 		return 0;
6919 	}
6920 	(void)rand;
6921 #else
6922 	struct sockaddr_in addr, baddr, accaddr, connaddr;
6923 	socklen_t baddrlen, accaddrlen, connaddrlen;
6924 	uint8_t localhost[] = {127, 0, 0, 1};
6925 	uint8_t nonce[16], recvnonce[16];
6926 	size_t i;
6927 	int lst, pollin_event, bcount, loopcount;
6928 	int connect_poll_timeout = 200; /* msec to wait for connection */
6929 	ssize_t ret;
6930 	pair[0] = -1;
6931 	pair[1] = -1;
6932 	for(i=0; i<sizeof(nonce); i++) {
6933 		nonce[i] = ub_random_max(rand, 256);
6934 	}
6935 	lst = socket(AF_INET, SOCK_STREAM, 0);
6936 	if(lst == -1) {
6937 		log_err("create_socketpair: socket: %s", sock_strerror(errno));
6938 		return 0;
6939 	}
6940 	memset(&addr, 0, sizeof(addr));
6941 	addr.sin_family = AF_INET;
6942 	addr.sin_port = 0;
6943 	memcpy(&addr.sin_addr, localhost, 4);
6944 	if(bind(lst, (struct sockaddr*)&addr, (socklen_t)sizeof(addr))
6945 		== -1) {
6946 		log_err("create socketpair: bind: %s", sock_strerror(errno));
6947 		sock_close(lst);
6948 		return 0;
6949 	}
6950 	if(listen(lst, 12) == -1) {
6951 		log_err("create socketpair: listen: %s", sock_strerror(errno));
6952 		sock_close(lst);
6953 		return 0;
6954 	}
6955 
6956 	pair[1] = socket(AF_INET, SOCK_STREAM, 0);
6957 	if(pair[1] == -1) {
6958 		log_err("create socketpair: socket: %s", sock_strerror(errno));
6959 		sock_close(lst);
6960 		return 0;
6961 	}
6962 	baddrlen = (socklen_t)sizeof(baddr);
6963 	if(getsockname(lst, (struct sockaddr*)&baddr, &baddrlen) == -1) {
6964 		log_err("create socketpair: getsockname: %s",
6965 			sock_strerror(errno));
6966 		sock_close(lst);
6967 		sock_close(pair[1]);
6968 		pair[1] = -1;
6969 		return 0;
6970 	}
6971 	if(baddrlen > (socklen_t)sizeof(baddr)) {
6972 		log_err("create socketpair: getsockname returned addr too big");
6973 		sock_close(lst);
6974 		sock_close(pair[1]);
6975 		pair[1] = -1;
6976 		return 0;
6977 	}
6978 	/* the socket is blocking */
6979 	if(connect(pair[1], (struct sockaddr*)&baddr, baddrlen) == -1) {
6980 		log_err("create socketpair: connect: %s",
6981 			sock_strerror(errno));
6982 		sock_close(lst);
6983 		sock_close(pair[1]);
6984 		pair[1] = -1;
6985 		return 0;
6986 	}
6987 	if(!sock_poll_timeout(lst, connect_poll_timeout, 1, 0, &pollin_event)) {
6988 		log_err("create socketpair: poll for accept failed: %s",
6989 			sock_strerror(errno));
6990 		sock_close(lst);
6991 		sock_close(pair[1]);
6992 		pair[1] = -1;
6993 		return 0;
6994 	}
6995 	if(!pollin_event) {
6996 		log_err("create socketpair: poll timeout for accept");
6997 		sock_close(lst);
6998 		sock_close(pair[1]);
6999 		pair[1] = -1;
7000 		return 0;
7001 	}
7002 	accaddrlen = (socklen_t)sizeof(accaddr);
7003 	pair[0] = accept(lst, (struct sockaddr*)&accaddr, &accaddrlen);
7004 	if(pair[0] == -1) {
7005 		log_err("create socketpair: accept: %s", sock_strerror(errno));
7006 		sock_close(lst);
7007 		sock_close(pair[1]);
7008 		pair[1] = -1;
7009 		return 0;
7010 	}
7011 	if(accaddrlen > (socklen_t)sizeof(accaddr)) {
7012 		log_err("create socketpair: accept returned addr too big");
7013 		sock_close(lst);
7014 		sock_close(pair[0]);
7015 		sock_close(pair[1]);
7016 		pair[0] = -1;
7017 		pair[1] = -1;
7018 		return 0;
7019 	}
7020 	if(accaddr.sin_family != AF_INET ||
7021 	   memcmp(localhost, &accaddr.sin_addr, 4) != 0) {
7022 		log_err("create socketpair: accept from wrong address");
7023 		sock_close(lst);
7024 		sock_close(pair[0]);
7025 		sock_close(pair[1]);
7026 		pair[0] = -1;
7027 		pair[1] = -1;
7028 		return 0;
7029 	}
7030 	connaddrlen = (socklen_t)sizeof(connaddr);
7031 	if(getsockname(pair[1], (struct sockaddr*)&connaddr, &connaddrlen)
7032 		== -1) {
7033 		log_err("create socketpair: getsockname connectedaddr: %s",
7034 			sock_strerror(errno));
7035 		sock_close(lst);
7036 		sock_close(pair[0]);
7037 		sock_close(pair[1]);
7038 		pair[0] = -1;
7039 		pair[1] = -1;
7040 		return 0;
7041 	}
7042 	if(connaddrlen > (socklen_t)sizeof(connaddr)) {
7043 		log_err("create socketpair: getsockname connectedaddr returned addr too big");
7044 		sock_close(lst);
7045 		sock_close(pair[0]);
7046 		sock_close(pair[1]);
7047 		pair[0] = -1;
7048 		pair[1] = -1;
7049 		return 0;
7050 	}
7051 	if(connaddr.sin_family != AF_INET ||
7052 	   memcmp(localhost, &connaddr.sin_addr, 4) != 0) {
7053 		log_err("create socketpair: getsockname connectedaddr returned wrong address");
7054 		sock_close(lst);
7055 		sock_close(pair[0]);
7056 		sock_close(pair[1]);
7057 		pair[0] = -1;
7058 		pair[1] = -1;
7059 		return 0;
7060 	}
7061 	if(accaddr.sin_port != connaddr.sin_port) {
7062 		log_err("create socketpair: accept from wrong port");
7063 		sock_close(lst);
7064 		sock_close(pair[0]);
7065 		sock_close(pair[1]);
7066 		pair[0] = -1;
7067 		pair[1] = -1;
7068 		return 0;
7069 	}
7070 	sock_close(lst);
7071 
7072 	loopcount = 0;
7073 	bcount = 0;
7074 	while(1) {
7075 		if(++loopcount > IPC_LOOP_MAX) {
7076 			log_err("create socketpair: send failed due to loop");
7077 			sock_close(pair[0]);
7078 			sock_close(pair[1]);
7079 			pair[0] = -1;
7080 			pair[1] = -1;
7081 			return 0;
7082 		}
7083 		ret = send(pair[1], (void*)(nonce+bcount),
7084 			sizeof(nonce)-bcount, 0);
7085 		if(ret == -1) {
7086 			if(
7087 #ifndef USE_WINSOCK
7088 				errno == EINTR || errno == EAGAIN
7089 #  ifdef EWOULDBLOCK
7090 				|| errno == EWOULDBLOCK
7091 #  endif
7092 #else
7093 				WSAGetLastError() == WSAEINTR ||
7094 				WSAGetLastError() == WSAEINPROGRESS ||
7095 				WSAGetLastError() == WSAEWOULDBLOCK
7096 #endif
7097 				)
7098 				continue; /* Try again. */
7099 			log_err("create socketpair: send: %s", sock_strerror(errno));
7100 			sock_close(pair[0]);
7101 			sock_close(pair[1]);
7102 			pair[0] = -1;
7103 			pair[1] = -1;
7104 			return 0;
7105 		} else if(ret+(ssize_t)bcount != sizeof(nonce)) {
7106 			bcount += ret;
7107 			if((size_t)bcount < sizeof(nonce))
7108 				continue;
7109 		}
7110 		break;
7111 	}
7112 
7113 	if(!sock_poll_timeout(pair[0], connect_poll_timeout, 1, 0, &pollin_event)) {
7114 		log_err("create socketpair: poll failed: %s",
7115 			sock_strerror(errno));
7116 		sock_close(pair[0]);
7117 		sock_close(pair[1]);
7118 		pair[0] = -1;
7119 		pair[1] = -1;
7120 		return 0;
7121 	}
7122 	if(!pollin_event) {
7123 		log_err("create socketpair: poll timeout for recv");
7124 		sock_close(pair[0]);
7125 		sock_close(pair[1]);
7126 		pair[0] = -1;
7127 		pair[1] = -1;
7128 		return 0;
7129 	}
7130 
7131 	loopcount = 0;
7132 	bcount = 0;
7133 	while(1) {
7134 		if(++loopcount > IPC_LOOP_MAX) {
7135 			log_err("create socketpair: recv failed due to loop");
7136 			sock_close(pair[0]);
7137 			sock_close(pair[1]);
7138 			pair[0] = -1;
7139 			pair[1] = -1;
7140 			return 0;
7141 		}
7142 		ret = recv(pair[0], (void*)(recvnonce+bcount),
7143 			sizeof(nonce)-bcount, 0);
7144 		if(ret == -1) {
7145 			if(
7146 #ifndef USE_WINSOCK
7147 				errno == EINTR || errno == EAGAIN
7148 #  ifdef EWOULDBLOCK
7149 				|| errno == EWOULDBLOCK
7150 #  endif
7151 #else
7152 				WSAGetLastError() == WSAEINTR ||
7153 				WSAGetLastError() == WSAEINPROGRESS ||
7154 				WSAGetLastError() == WSAEWOULDBLOCK
7155 #endif
7156 				)
7157 				continue; /* Try again. */
7158 			log_err("create socketpair: recv: %s", sock_strerror(errno));
7159 			sock_close(pair[0]);
7160 			sock_close(pair[1]);
7161 			pair[0] = -1;
7162 			pair[1] = -1;
7163 			return 0;
7164 		} else if(ret == 0) {
7165 			log_err("create socketpair: stream closed");
7166 			sock_close(pair[0]);
7167 			sock_close(pair[1]);
7168 			pair[0] = -1;
7169 			pair[1] = -1;
7170 			return 0;
7171 		} else if(ret+(ssize_t)bcount != sizeof(nonce)) {
7172 			bcount += ret;
7173 			if((size_t)bcount < sizeof(nonce))
7174 				continue;
7175 		}
7176 		break;
7177 	}
7178 
7179 	if(memcmp(nonce, recvnonce, sizeof(nonce)) != 0) {
7180 		log_err("create socketpair: recv wrong nonce");
7181 		sock_close(pair[0]);
7182 		sock_close(pair[1]);
7183 		pair[0] = -1;
7184 		pair[1] = -1;
7185 		return 0;
7186 	}
7187 #endif
7188 	return 1;
7189 }
7190 
7191 /** fast reload thread. setup the thread info */
7192 static int
fast_reload_thread_setup(struct worker * worker,int fr_verb,int fr_nopause,int fr_drop_mesh)7193 fast_reload_thread_setup(struct worker* worker, int fr_verb, int fr_nopause,
7194 	int fr_drop_mesh)
7195 {
7196 	struct fast_reload_thread* fr;
7197 	int numworkers = worker->daemon->num;
7198 	worker->daemon->fast_reload_thread = (struct fast_reload_thread*)
7199 		calloc(1, sizeof(*worker->daemon->fast_reload_thread));
7200 	if(!worker->daemon->fast_reload_thread)
7201 		return 0;
7202 	fr = worker->daemon->fast_reload_thread;
7203 	fr->fr_verb = fr_verb;
7204 	fr->fr_nopause = fr_nopause;
7205 	fr->fr_drop_mesh = fr_drop_mesh;
7206 	worker->daemon->fast_reload_drop_mesh = fr->fr_drop_mesh;
7207 	/* The thread id printed in logs, numworker+1 is the dnstap thread.
7208 	 * This is numworkers+2. */
7209 	fr->threadnum = numworkers+2;
7210 	fr->commpair[0] = -1;
7211 	fr->commpair[1] = -1;
7212 	fr->commreload[0] = -1;
7213 	fr->commreload[1] = -1;
7214 	if(!create_socketpair(fr->commpair, worker->daemon->rand)) {
7215 		free(fr);
7216 		worker->daemon->fast_reload_thread = NULL;
7217 		return 0;
7218 	}
7219 	fr->worker = worker;
7220 	fr->fr_output = (struct config_strlist_head*)calloc(1,
7221 		sizeof(*fr->fr_output));
7222 	if(!fr->fr_output) {
7223 		sock_close(fr->commpair[0]);
7224 		sock_close(fr->commpair[1]);
7225 		free(fr);
7226 		worker->daemon->fast_reload_thread = NULL;
7227 		return 0;
7228 	}
7229 	if(!create_socketpair(fr->commreload, worker->daemon->rand)) {
7230 		sock_close(fr->commpair[0]);
7231 		sock_close(fr->commpair[1]);
7232 		free(fr->fr_output);
7233 		free(fr);
7234 		worker->daemon->fast_reload_thread = NULL;
7235 		return 0;
7236 	}
7237 	lock_basic_init(&fr->fr_output_lock);
7238 	lock_protect(&fr->fr_output_lock, fr->fr_output,
7239 		sizeof(*fr->fr_output));
7240 #ifdef HAVE_GETTID
7241 	fr->thread_tid_log = worker->env.cfg->log_thread_id;
7242 #endif
7243 	return 1;
7244 }
7245 
7246 /** fast reload, delete auth zone change list */
7247 static void
fr_auth_change_list_delete(struct fast_reload_auth_change * auth_zone_change_list)7248 fr_auth_change_list_delete(
7249 	struct fast_reload_auth_change* auth_zone_change_list)
7250 {
7251 	struct fast_reload_auth_change* item, *next;
7252 	item = auth_zone_change_list;
7253 	while(item) {
7254 		next = item->next;
7255 		free(item);
7256 		item = next;
7257 	}
7258 }
7259 
7260 /** fast reload thread. desetup and delete the thread info. */
7261 static void
fast_reload_thread_desetup(struct fast_reload_thread * fast_reload_thread)7262 fast_reload_thread_desetup(struct fast_reload_thread* fast_reload_thread)
7263 {
7264 	if(!fast_reload_thread)
7265 		return;
7266 	if(fast_reload_thread->service_event &&
7267 		fast_reload_thread->service_event_is_added) {
7268 		ub_event_del(fast_reload_thread->service_event);
7269 		fast_reload_thread->service_event_is_added = 0;
7270 	}
7271 	if(fast_reload_thread->service_event)
7272 		ub_event_free(fast_reload_thread->service_event);
7273 	sock_close(fast_reload_thread->commpair[0]);
7274 	sock_close(fast_reload_thread->commpair[1]);
7275 	sock_close(fast_reload_thread->commreload[0]);
7276 	sock_close(fast_reload_thread->commreload[1]);
7277 	if(fast_reload_thread->printq) {
7278 		fr_main_perform_printout(fast_reload_thread);
7279 		/* If it is empty now, there is nothing to print on fd. */
7280 		if(fr_printq_empty(fast_reload_thread->printq)) {
7281 			fr_printq_delete(fast_reload_thread->printq);
7282 		} else {
7283 			/* Keep the printq around to printout the remaining
7284 			 * text to the remote client. Until it is done, it
7285 			 * sits on a list, that is in the daemon struct.
7286 			 * The event can then spool the remaining text to the
7287 			 * remote client and eventually delete itself from the
7288 			 * callback. */
7289 			fr_printq_list_insert(fast_reload_thread->printq,
7290 				fast_reload_thread->worker->daemon);
7291 			fast_reload_thread->printq = NULL;
7292 		}
7293 	}
7294 	lock_basic_destroy(&fast_reload_thread->fr_output_lock);
7295 	if(fast_reload_thread->fr_output) {
7296 		config_delstrlist(fast_reload_thread->fr_output->first);
7297 		free(fast_reload_thread->fr_output);
7298 	}
7299 	fr_auth_change_list_delete(fast_reload_thread->auth_zone_change_list);
7300 
7301 	free(fast_reload_thread);
7302 }
7303 
7304 /**
7305  * Fast reload thread, send a command to the thread. Blocking on timeout.
7306  * It handles received input from the thread, if any is received.
7307  */
7308 static void
fr_send_cmd_to(struct fast_reload_thread * fr,enum fast_reload_notification status,int check_cmds,int blocking)7309 fr_send_cmd_to(struct fast_reload_thread* fr,
7310 	enum fast_reload_notification status, int check_cmds, int blocking)
7311 {
7312 	int outevent, loopexit = 0, bcount = 0;
7313 	uint32_t cmd;
7314 	ssize_t ret;
7315 	verbose(VERB_ALGO, "send notification to fast reload thread: %s",
7316 		fr_notification_to_string(status));
7317 	cmd = status;
7318 	while(1) {
7319 		if(++loopexit > IPC_LOOP_MAX) {
7320 			log_err("send notification to fast reload: could not send notification: loop");
7321 			return;
7322 		}
7323 		if(check_cmds)
7324 			fr_check_cmd_from_thread(fr);
7325 		/* wait for socket to become writable */
7326 		if(!sock_poll_timeout(fr->commpair[0],
7327 			(blocking?-1:IPC_NOTIFICATION_WAIT),
7328 			0, 1, &outevent)) {
7329 			log_err("send notification to fast reload: poll failed");
7330 			return;
7331 		}
7332 		if(!outevent)
7333 			continue;
7334 		/* keep static analyzer happy; send(-1,..) */
7335 		log_assert(fr->commpair[0] >= 0);
7336 		ret = send(fr->commpair[0], ((char*)&cmd)+bcount,
7337 			sizeof(cmd)-bcount, 0);
7338 		if(ret == -1) {
7339 			if(
7340 #ifndef USE_WINSOCK
7341 				errno == EINTR || errno == EAGAIN
7342 #  ifdef EWOULDBLOCK
7343 				|| errno == EWOULDBLOCK
7344 #  endif
7345 #else
7346 				WSAGetLastError() == WSAEINTR ||
7347 				WSAGetLastError() == WSAEINPROGRESS ||
7348 				WSAGetLastError() == WSAEWOULDBLOCK
7349 #endif
7350 				)
7351 				continue; /* Try again. */
7352 			log_err("send notification to fast reload: send: %s",
7353 				sock_strerror(errno));
7354 			return;
7355 		} else if(ret+(ssize_t)bcount != sizeof(cmd)) {
7356 			bcount += ret;
7357 			if((size_t)bcount < sizeof(cmd))
7358 				continue;
7359 		}
7360 		break;
7361 	}
7362 }
7363 
7364 /** Fast reload, the main thread handles that the fast reload thread has
7365  * exited. */
7366 static void
fr_main_perform_done(struct fast_reload_thread * fr)7367 fr_main_perform_done(struct fast_reload_thread* fr)
7368 {
7369 	struct worker* worker = fr->worker;
7370 	verbose(VERB_ALGO, "join with fastreload thread");
7371 	ub_thread_join(fr->tid);
7372 	verbose(VERB_ALGO, "joined with fastreload thread");
7373 	fast_reload_thread_desetup(fr);
7374 	worker->daemon->fast_reload_thread = NULL;
7375 }
7376 
7377 /** Append strlist after strlist */
7378 static void
cfg_strlist_append_listhead(struct config_strlist_head * list,struct config_strlist_head * more)7379 cfg_strlist_append_listhead(struct config_strlist_head* list,
7380 	struct config_strlist_head* more)
7381 {
7382 	if(!more->first)
7383 		return;
7384 	if(list->last)
7385 		list->last->next = more->first;
7386 	else
7387 		list->first = more->first;
7388 	list->last = more->last;
7389 }
7390 
7391 /** Fast reload, the remote control thread handles that the fast reload thread
7392  * has output to be printed, on the linked list that is locked. */
7393 static void
fr_main_perform_printout(struct fast_reload_thread * fr)7394 fr_main_perform_printout(struct fast_reload_thread* fr)
7395 {
7396 	struct config_strlist_head out;
7397 
7398 	/* Fetch the list of items to be printed */
7399 	lock_basic_lock(&fr->fr_output_lock);
7400 	out.first = fr->fr_output->first;
7401 	out.last = fr->fr_output->last;
7402 	fr->fr_output->first = NULL;
7403 	fr->fr_output->last = NULL;
7404 	lock_basic_unlock(&fr->fr_output_lock);
7405 
7406 	if(!fr->printq || !fr->printq->client_cp) {
7407 		/* There is no output socket, delete it. */
7408 		config_delstrlist(out.first);
7409 		return;
7410 	}
7411 
7412 	/* Put them on the output list, not locked because the list
7413 	 * producer and consumer are both owned by the remote control thread,
7414 	 * it moves the items to the list for printing in the event callback
7415 	 * for the client_cp. */
7416 	cfg_strlist_append_listhead(fr->printq->to_print, &out);
7417 
7418 	/* Set the client_cp to output if not already */
7419 	if(!fr->printq->client_cp->event_added)
7420 		comm_point_listen_for_rw(fr->printq->client_cp, 0, 1);
7421 }
7422 
7423 /** fast reload, receive ack from workers that they are waiting, run
7424  * by the mainthr after sending them reload_stop. */
7425 static void
fr_read_ack_from_workers(struct fast_reload_thread * fr)7426 fr_read_ack_from_workers(struct fast_reload_thread* fr)
7427 {
7428 	struct daemon* daemon = fr->worker->daemon;
7429 	/* Every worker sends one byte, wait for num-1 bytes. */
7430 	int count=0, total=daemon->num-1;
7431 	while(count < total) {
7432 		uint8_t r;
7433 		ssize_t ret;
7434 		ret = recv(fr->commreload[0], (void*)&r, 1, 0);
7435 		if(ret == -1) {
7436 			if(
7437 #ifndef USE_WINSOCK
7438 				errno == EINTR || errno == EAGAIN
7439 #  ifdef EWOULDBLOCK
7440 				|| errno == EWOULDBLOCK
7441 #  endif
7442 #else
7443 				WSAGetLastError() == WSAEINTR ||
7444 				WSAGetLastError() == WSAEINPROGRESS ||
7445 				WSAGetLastError() == WSAEWOULDBLOCK
7446 #endif
7447 				)
7448 				continue; /* Try again */
7449 			log_err("worker reload ack: recv failed: %s",
7450 				sock_strerror(errno));
7451 			return;
7452 		}
7453 		count++;
7454 		verbose(VERB_ALGO, "worker reload ack from (uint8_t)%d",
7455 			(int)r);
7456 	}
7457 }
7458 
7459 /** fast reload, poll for reload_start in mainthr waiting on a notification
7460  * from the fast reload thread. */
7461 static void
fr_poll_for_reload_start(struct fast_reload_thread * fr)7462 fr_poll_for_reload_start(struct fast_reload_thread* fr)
7463 {
7464 	int loopexit = 0, bcount = 0;
7465 	uint32_t cmd;
7466 	ssize_t ret;
7467 
7468 	/* Is there data? */
7469 	if(!sock_poll_timeout(fr->commpair[0], -1, 1, 0, NULL)) {
7470 		log_err("fr_poll_for_reload_start: poll failed");
7471 		return;
7472 	}
7473 
7474 	/* Read the data */
7475 	while(1) {
7476 		if(++loopexit > IPC_LOOP_MAX) {
7477 			log_err("fr_poll_for_reload_start: recv loops %s",
7478 				sock_strerror(errno));
7479 			return;
7480 		}
7481 		ret = recv(fr->commpair[0], ((char*)&cmd)+bcount,
7482 			sizeof(cmd)-bcount, 0);
7483 		if(ret == -1) {
7484 			if(
7485 #ifndef USE_WINSOCK
7486 				errno == EINTR || errno == EAGAIN
7487 #  ifdef EWOULDBLOCK
7488 				|| errno == EWOULDBLOCK
7489 #  endif
7490 #else
7491 				WSAGetLastError() == WSAEINTR ||
7492 				WSAGetLastError() == WSAEINPROGRESS ||
7493 				WSAGetLastError() == WSAEWOULDBLOCK
7494 #endif
7495 				)
7496 				continue; /* Try again. */
7497 			log_err("fr_poll_for_reload_start: recv: %s",
7498 				sock_strerror(errno));
7499 			return;
7500 		} else if(ret+(ssize_t)bcount != sizeof(cmd)) {
7501 			bcount += ret;
7502 			if((size_t)bcount < sizeof(cmd))
7503 				continue;
7504 		}
7505 		break;
7506 	}
7507 	if(cmd != fast_reload_notification_reload_start) {
7508 		verbose(VERB_ALGO, "fast reload wait for ack: "
7509 			"wrong notification %d", (int)cmd);
7510 	}
7511 }
7512 
7513 /** Pick up the worker mesh changes, after fast reload. */
7514 static void
fr_worker_pickup_mesh(struct worker * worker)7515 fr_worker_pickup_mesh(struct worker* worker)
7516 {
7517 	struct mesh_area* mesh = worker->env.mesh;
7518 	struct config_file* cfg = worker->env.cfg;
7519 	mesh->use_response_ip = worker->daemon->use_response_ip;
7520 	mesh->use_rpz = worker->daemon->use_rpz;
7521 	mesh->max_reply_states = cfg->num_queries_per_thread;
7522 	mesh->max_forever_states = (mesh->max_reply_states+1)/2;
7523 #ifndef S_SPLINT_S
7524 	mesh->jostle_max.tv_sec = (time_t)(cfg->jostle_time / 1000);
7525 	mesh->jostle_max.tv_usec = (time_t)((cfg->jostle_time % 1000)*1000);
7526 #endif
7527 }
7528 
7529 /**
7530  * Remove the old tcl_addr entries from the open connections.
7531  * They are only incremented when an accept is performed on a tcp comm point.
7532  * @param front: listening comm ports of the worker.
7533  */
7534 static void
tcl_remove_old(struct listen_dnsport * front)7535 tcl_remove_old(struct listen_dnsport* front)
7536 {
7537 	struct listen_list* l;
7538 	l = front->cps;
7539 	while(l) {
7540 		if(l->com->type == comm_tcp_accept) {
7541 			int i;
7542 			for(i=0; i<l->com->max_tcp_count; i++) {
7543 				if(l->com->tcp_handlers[i]->tcl_addr) {
7544 					/* Because the increment of the
7545 					 * connection limit was in the old
7546 					 * tcl list, the new list does not
7547 					 * need a decrement. With NULL it is
7548 					 * not decremented when the connection
7549 					 * is done, and also there is no
7550 					 * reference to the old connection
7551 					 * limit structure. */
7552 					l->com->tcp_handlers[i]->tcl_addr =
7553 						NULL;
7554 				}
7555 			}
7556 		}
7557 		l = l->next;
7558 	}
7559 }
7560 
7561 /** Stop zonemd lookup */
7562 static void
auth_zone_zonemd_stop_lookup(struct auth_zone * z,struct mesh_area * mesh)7563 auth_zone_zonemd_stop_lookup(struct auth_zone* z, struct mesh_area* mesh)
7564 {
7565 	struct query_info qinfo;
7566 	uint16_t qflags = BIT_RD;
7567 	qinfo.qname_len = z->namelen;
7568 	qinfo.qname = z->name;
7569 	qinfo.qclass = z->dclass;
7570 	qinfo.qtype = z->zonemd_callback_qtype;
7571 	qinfo.local_alias = NULL;
7572 
7573 	mesh_remove_callback(mesh, &qinfo, qflags,
7574 		&auth_zonemd_dnskey_lookup_callback, z);
7575 }
7576 
7577 /** Pick up the auth zone locks. */
7578 static void
fr_pickup_auth_locks(struct worker * worker,struct auth_zone * namez,struct auth_zone * old_z,struct auth_zone * new_z,struct auth_xfer ** xfr,struct auth_xfer ** loadxfr)7579 fr_pickup_auth_locks(struct worker* worker, struct auth_zone* namez,
7580 	struct auth_zone* old_z, struct auth_zone* new_z,
7581 	struct auth_xfer** xfr, struct auth_xfer** loadxfr)
7582 {
7583 	uint8_t nm[LDNS_MAX_DOMAINLEN+1];
7584 	size_t nmlen;
7585 	uint16_t dclass;
7586 
7587 	log_assert(namez->namelen <= sizeof(nm));
7588 	lock_rw_rdlock(&namez->lock);
7589 	nmlen = namez->namelen;
7590 	dclass = namez->dclass;
7591 	memmove(nm, namez->name, nmlen);
7592 	lock_rw_unlock(&namez->lock);
7593 
7594 	lock_rw_wrlock(&worker->daemon->fast_reload_thread->old_auth_zones->lock);
7595 	lock_rw_wrlock(&worker->env.auth_zones->lock);
7596 	if(new_z) {
7597 		lock_rw_wrlock(&new_z->lock);
7598 	}
7599 	if(old_z) {
7600 		lock_rw_wrlock(&old_z->lock);
7601 	}
7602 	if(loadxfr)
7603 		*loadxfr = auth_xfer_find(worker->daemon->fast_reload_thread->
7604 			old_auth_zones, nm, nmlen, dclass);
7605 	if(xfr)
7606 		*xfr = auth_xfer_find(worker->env.auth_zones, nm, nmlen,
7607 			dclass);
7608 	if(loadxfr && *loadxfr) {
7609 		lock_basic_lock(&(*loadxfr)->lock);
7610 	}
7611 	if(xfr && *xfr) {
7612 		lock_basic_lock(&(*xfr)->lock);
7613 	}
7614 }
7615 
7616 /** Fast reload, worker picks up deleted auth zone */
7617 static void
fr_worker_auth_del(struct worker * worker,struct fast_reload_auth_change * item,int for_change)7618 fr_worker_auth_del(struct worker* worker, struct fast_reload_auth_change* item,
7619 	int for_change)
7620 {
7621 	int released = 0; /* Did this routine release callbacks. */
7622 	struct auth_xfer* xfr = NULL;
7623 
7624 	lock_rw_wrlock(&item->old_z->lock);
7625 	if(item->old_z->zonemd_callback_env &&
7626 	   item->old_z->zonemd_callback_env->worker == worker){
7627 		/* This worker was performing a zonemd lookup,
7628 		 * stop the lookup and remove that entry. */
7629 		auth_zone_zonemd_stop_lookup(item->old_z, worker->env.mesh);
7630 		item->old_z->zonemd_callback_env = NULL;
7631 	}
7632 	lock_rw_unlock(&item->old_z->lock);
7633 
7634 	fr_pickup_auth_locks(worker, item->old_z, item->old_z, NULL, &xfr,
7635 		NULL);
7636 	lock_rw_unlock(&worker->daemon->fast_reload_thread->old_auth_zones->lock);
7637 	lock_rw_unlock(&worker->env.auth_zones->lock);
7638 	lock_rw_unlock(&item->old_z->lock);
7639 	if(xfr) {
7640 		/* Release callbacks on the xfr, if this worker holds them. */
7641 		if(xfr->task_nextprobe->worker == worker ||
7642 			xfr->task_probe->worker == worker ||
7643 			xfr->task_transfer->worker == worker) {
7644 			released = 1;
7645 			xfr_disown_tasks(xfr, worker);
7646 		}
7647 		lock_basic_unlock(&xfr->lock);
7648 	}
7649 
7650 	if(!for_change && (released || worker->thread_num == 0)) {
7651 		/* See if the xfr item can be deleted. */
7652 		xfr = NULL;
7653 		fr_pickup_auth_locks(worker, item->old_z, item->old_z, NULL,
7654 			&xfr, NULL);
7655 		lock_rw_unlock(&worker->daemon->fast_reload_thread->old_auth_zones->lock);
7656 		lock_rw_unlock(&item->old_z->lock);
7657 		if(xfr && xfr->task_nextprobe->worker == NULL &&
7658 			xfr->task_probe->worker == NULL &&
7659 			xfr->task_transfer->worker == NULL) {
7660 			(void)rbtree_delete(&worker->env.auth_zones->xtree,
7661 				&xfr->node);
7662 			lock_rw_unlock(&worker->env.auth_zones->lock);
7663 			lock_basic_unlock(&xfr->lock);
7664 			auth_xfer_delete(xfr);
7665 		} else {
7666 			lock_rw_unlock(&worker->env.auth_zones->lock);
7667 			if(xfr) {
7668 				lock_basic_unlock(&xfr->lock);
7669 			}
7670 		}
7671 	}
7672 }
7673 
7674 /** Fast reload, auth xfer config is picked up */
7675 static void
auth_xfr_pickup_config(struct auth_xfer * loadxfr,struct auth_xfer * xfr)7676 auth_xfr_pickup_config(struct auth_xfer* loadxfr, struct auth_xfer* xfr)
7677 {
7678 	struct auth_master *probe_masters, *transfer_masters;
7679 	log_assert(loadxfr->namelen == xfr->namelen);
7680 	log_assert(loadxfr->namelabs == xfr->namelabs);
7681 	log_assert(loadxfr->dclass == xfr->dclass);
7682 
7683 	/* The lists can be swapped in, the other xfr struct will be deleted
7684 	 * afterwards. */
7685 	probe_masters = xfr->task_probe->masters;
7686 	transfer_masters = xfr->task_transfer->masters;
7687 	xfr->task_probe->masters = loadxfr->task_probe->masters;
7688 	xfr->task_transfer->masters = loadxfr->task_transfer->masters;
7689 	loadxfr->task_probe->masters = probe_masters;
7690 	loadxfr->task_transfer->masters = transfer_masters;
7691 }
7692 
7693 /** Fast reload, worker picks up added auth zone */
7694 static void
fr_worker_auth_add(struct worker * worker,struct fast_reload_auth_change * item,int for_change)7695 fr_worker_auth_add(struct worker* worker, struct fast_reload_auth_change* item,
7696 	int for_change)
7697 {
7698 	struct auth_xfer* xfr = NULL, *loadxfr = NULL;
7699 
7700 	/* Start zone transfers and lookups. */
7701 	fr_pickup_auth_locks(worker, item->new_z, NULL, item->new_z, &xfr,
7702 		&loadxfr);
7703 	if(xfr == NULL && item->new_z->zone_is_slave) {
7704 		/* The xfr item needs to be created. The auth zones lock
7705 		 * is held to make this possible. */
7706 		xfr = auth_xfer_create(worker->env.auth_zones, item->new_z);
7707 		auth_xfr_pickup_config(loadxfr, xfr);
7708 		/* Serial information is copied into the xfr struct. */
7709 		if(!xfr_find_soa(item->new_z, xfr)) {
7710 			xfr->serial = 0;
7711 		}
7712 	} else if(for_change && xfr) {
7713 		if(!xfr_find_soa(item->new_z, xfr)) {
7714 			xfr->serial = 0;
7715 		}
7716 	}
7717 	auth_zone_pickup_initial_zone(item->new_z, &worker->env);
7718 	lock_rw_unlock(&item->new_z->lock);
7719 	lock_rw_unlock(&worker->env.auth_zones->lock);
7720 	lock_rw_unlock(&worker->daemon->fast_reload_thread->old_auth_zones->lock);
7721 	if(loadxfr) {
7722 		lock_basic_unlock(&loadxfr->lock);
7723 	}
7724 	if(xfr) {
7725 		auth_xfer_pickup_initial_zone(xfr, &worker->env);
7726 		if(for_change) {
7727 			xfr->task_probe->only_lookup = 0;
7728 		}
7729 		lock_basic_unlock(&xfr->lock);
7730 	}
7731 
7732 	/* Perform ZONEMD verification lookups. */
7733 	lock_rw_wrlock(&item->new_z->lock);
7734 	/* holding only the new_z lock */
7735 	auth_zone_verify_zonemd(item->new_z, &worker->env,
7736 		&worker->env.mesh->mods, NULL, 0, 1);
7737 	lock_rw_unlock(&item->new_z->lock);
7738 }
7739 
7740 /** Fast reload, worker picks up changed auth zone */
7741 static void
fr_worker_auth_cha(struct worker * worker,struct fast_reload_auth_change * item)7742 fr_worker_auth_cha(struct worker* worker, struct fast_reload_auth_change* item)
7743 {
7744 	int todelete = 0;
7745 	struct auth_xfer* loadxfr = NULL, *xfr = NULL;
7746 	/* Since the zone has been changed, by rereading it from zone file,
7747 	 * existing transfers and probes are likely for the old version.
7748 	 * Stop them, and start new ones if needed. */
7749 	fr_worker_auth_del(worker, item, 1);
7750 
7751 	if(worker->thread_num != 0)
7752 		return;
7753 
7754 	/* The old callbacks are stopped, tasks have been disowned. The
7755 	 * new config contents can be picked up. SOA information is picked
7756 	 * up in the auth_add routine, as it has the new_z ready. */
7757 
7758 	fr_pickup_auth_locks(worker, item->new_z, item->old_z, item->new_z,
7759 		&xfr, &loadxfr);
7760 
7761 	/* The xfr is not there any more if the zone is not set to have
7762 	 * zone transfers. Or the xfr needs to be created if it is set to
7763 	 * have zone transfers. */
7764 	if(loadxfr && xfr) {
7765 		/* Copy the config from loadxfr to the xfr in current use. */
7766 		auth_xfr_pickup_config(loadxfr, xfr);
7767 	} else if(!loadxfr && xfr) {
7768 		/* Delete the xfr. */
7769 		(void)rbtree_delete(&worker->env.auth_zones->xtree,
7770 			&xfr->node);
7771 		todelete = 1;
7772 		item->new_z->zone_is_slave = 0;
7773 	} else if(loadxfr && !xfr) {
7774 		/* Create the xfr. */
7775 		xfr = auth_xfer_create(worker->env.auth_zones, item->new_z);
7776 		auth_xfr_pickup_config(loadxfr, xfr);
7777 		item->new_z->zone_is_slave = 1;
7778 	}
7779 	lock_rw_unlock(&item->new_z->lock);
7780 	lock_rw_unlock(&item->old_z->lock);
7781 	lock_rw_unlock(&worker->daemon->fast_reload_thread->old_auth_zones->lock);
7782 	lock_rw_unlock(&worker->env.auth_zones->lock);
7783 	if(loadxfr) {
7784 		lock_basic_unlock(&loadxfr->lock);
7785 	}
7786 	if(xfr) {
7787 		lock_basic_unlock(&xfr->lock);
7788 	}
7789 	if(todelete) {
7790 		auth_xfer_delete(xfr);
7791 	}
7792 
7793 	fr_worker_auth_add(worker, item, 1);
7794 }
7795 
7796 /** Fast reload, the worker picks up changes in auth zones. */
7797 static void
fr_worker_pickup_auth_changes(struct worker * worker,struct fast_reload_auth_change * auth_zone_change_list)7798 fr_worker_pickup_auth_changes(struct worker* worker,
7799 	struct fast_reload_auth_change* auth_zone_change_list)
7800 {
7801 	struct fast_reload_auth_change* item;
7802 	for(item = auth_zone_change_list; item; item = item->next) {
7803 		if(item->is_deleted) {
7804 			fr_worker_auth_del(worker, item, 0);
7805 		}
7806 		if(item->is_added) {
7807 			if(worker->thread_num == 0) {
7808 				fr_worker_auth_add(worker, item, 0);
7809 			}
7810 		}
7811 		if(item->is_changed) {
7812 			fr_worker_auth_cha(worker, item);
7813 		}
7814 	}
7815 }
7816 
7817 /** Fast reload, the worker picks up changes in listen_dnsport. */
7818 static void
fr_worker_pickup_listen_dnsport(struct worker * worker)7819 fr_worker_pickup_listen_dnsport(struct worker* worker)
7820 {
7821 	struct listen_dnsport* front = worker->front;
7822 	struct daemon* daemon = worker->daemon;
7823 	if(worker->daemon->fast_reload_thread->sslctxs_changed) {
7824 		struct listen_list* ll;
7825 		void* dot_sslctx = daemon->listen_dot_sslctx;
7826 		void* doh_sslctx = daemon->listen_doh_sslctx;
7827 #ifdef HAVE_NGTCP2
7828 		void* quic_sslctx = daemon->listen_quic_sslctx;
7829 #endif  /* HAVE_NGTCP2 */
7830 		for(ll = front->cps; ll; ll = ll->next) {
7831 			struct comm_point* cp = ll->com;
7832 			if(cp->type == comm_tcp_accept &&
7833 				cp->tcp_handlers &&
7834 				cp->max_tcp_count > 0 &&
7835 				cp->tcp_handlers[0]->type == comm_http) {
7836 				if(cp->ssl)
7837 					cp->ssl = doh_sslctx;
7838 			} else if(cp->type == comm_tcp_accept) {
7839 				if(cp->ssl)
7840 					cp->ssl = dot_sslctx;
7841 #ifdef HAVE_NGTCP2
7842 			} else if(cp->type == comm_doq) {
7843 				if(cp->ssl) {
7844 					cp->ssl = quic_sslctx;
7845 					if(cp->doq_socket)
7846 						cp->doq_socket->ctx =
7847 							(SSL_CTX*)quic_sslctx;
7848 				}
7849 #endif  /* HAVE_NGTCP2 */
7850 			}
7851 		}
7852 	}
7853 }
7854 
7855 /** Fast reload, the worker picks up changes in outside_network. */
7856 static void
fr_worker_pickup_outside_network(struct worker * worker)7857 fr_worker_pickup_outside_network(struct worker* worker)
7858 {
7859 	struct outside_network* outnet = worker->back;
7860 	struct config_file* cfg = worker->env.cfg;
7861 	outnet->use_caps_for_id = cfg->use_caps_bits_for_id;
7862 	outnet->unwanted_threshold = cfg->unwanted_threshold;
7863 	outnet->tls_use_sni = cfg->tls_use_sni;
7864 	outnet->tcp_mss = cfg->outgoing_tcp_mss;
7865 	outnet->ip_dscp = cfg->ip_dscp;
7866 	outnet->max_reuse_tcp_queries = cfg->max_reuse_tcp_queries;
7867 	outnet->tcp_reuse_timeout = cfg->tcp_reuse_timeout;
7868 	outnet->tcp_auth_query_timeout = cfg->tcp_auth_query_timeout;
7869 	outnet->delayclose = cfg->delay_close;
7870 	if(worker->daemon->fast_reload_thread->sslctxs_changed)
7871 		outnet->sslctx = worker->daemon->connect_dot_sslctx;
7872 	if(outnet->delayclose) {
7873 #ifndef S_SPLINT_S
7874 		outnet->delay_tv.tv_sec = cfg->delay_close/1000;
7875 		outnet->delay_tv.tv_usec = (cfg->delay_close%1000)*1000;
7876 #endif
7877 	}
7878 }
7879 
7880 #ifdef USE_DNSTAP
7881 /** Fast reload, the worker picks up changes to DNSTAP configuration. */
7882 static void
fr_worker_pickup_dnstap_changes(struct worker * worker)7883 fr_worker_pickup_dnstap_changes(struct worker* worker)
7884 {
7885 	struct dt_env* w_dtenv = &worker->dtenv;
7886 	struct dt_env* d_dtenv = worker->daemon->dtenv;
7887 	log_assert(d_dtenv != NULL || !worker->daemon->cfg->dnstap);
7888 	if(d_dtenv == NULL) {
7889 		/* There is no environment when DNSTAP was not enabled
7890 		 * in the configuration. */
7891 		return;
7892 	}
7893 	w_dtenv->identity = d_dtenv->identity;
7894 	w_dtenv->len_identity = d_dtenv->len_identity;
7895 	w_dtenv->version = d_dtenv->version;
7896 	w_dtenv->len_version = d_dtenv->len_version;
7897 	w_dtenv->log_resolver_query_messages =
7898 		d_dtenv->log_resolver_query_messages;
7899 	w_dtenv->log_resolver_response_messages =
7900 		d_dtenv->log_resolver_response_messages;
7901 	w_dtenv->log_client_query_messages =
7902 		d_dtenv->log_client_query_messages;
7903 	w_dtenv->log_client_response_messages =
7904 		d_dtenv->log_client_response_messages;
7905 	w_dtenv->log_forwarder_query_messages =
7906 		d_dtenv->log_forwarder_query_messages;
7907 	w_dtenv->log_forwarder_response_messages =
7908 		d_dtenv->log_forwarder_response_messages;
7909 	lock_basic_lock(&d_dtenv->sample_lock);
7910 	w_dtenv->sample_rate = d_dtenv->sample_rate;
7911 	lock_basic_unlock(&d_dtenv->sample_lock);
7912 }
7913 #endif /* USE_DNSTAP */
7914 
7915 void
fast_reload_worker_pickup_changes(struct worker * worker)7916 fast_reload_worker_pickup_changes(struct worker* worker)
7917 {
7918 	/* The pickup of changes is called when the fast reload has
7919 	 * a synchronized moment, and all the threads are paused and the
7920 	 * reload has been applied. Then the worker can pick up the new
7921 	 * changes and store them in worker-specific structs.
7922 	 * The pickup is also called when there is no pause, and then
7923 	 * it is called after the reload has completed, and the worker
7924 	 * get a signal to release old information, it can then pick
7925 	 * up the new information. But in the mean time, the reload has
7926 	 * swapped in trees, and the worker has been running with the
7927 	 * older information for some time. */
7928 	fr_worker_pickup_mesh(worker);
7929 
7930 	/* If the tcp connection limit has changed, the open connections
7931 	 * need to remove their reference for the old tcp limits counters. */
7932 	if(worker->daemon->fast_reload_tcl_has_changes)
7933 		tcl_remove_old(worker->front);
7934 
7935 	/* If there are zonemd lookups, but the zone was deleted, the
7936 	 * lookups should be cancelled. */
7937 	fr_worker_pickup_auth_changes(worker,
7938 		worker->daemon->fast_reload_thread->auth_zone_change_list);
7939 #ifdef USE_CACHEDB
7940 	worker->env.cachedb_enabled = worker->daemon->env->cachedb_enabled;
7941 #endif
7942 	fr_worker_pickup_listen_dnsport(worker);
7943 	fr_worker_pickup_outside_network(worker);
7944 #ifdef USE_DNSTAP
7945 	fr_worker_pickup_dnstap_changes(worker);
7946 #endif
7947 }
7948 
7949 /** fast reload thread, handle reload_stop notification, send reload stop
7950  * to other threads over IPC and collect their ack. When that is done,
7951  * ack to the caller, the fast reload thread, and wait for it to send start. */
7952 static void
fr_main_perform_reload_stop(struct fast_reload_thread * fr)7953 fr_main_perform_reload_stop(struct fast_reload_thread* fr)
7954 {
7955 	struct daemon* daemon = fr->worker->daemon;
7956 	int i;
7957 
7958 	/* Send reload_stop to other threads. */
7959 	for(i=0; i<daemon->num; i++) {
7960 		if(i == fr->worker->thread_num)
7961 			continue; /* Do not send to ourselves. */
7962 		worker_send_cmd(daemon->workers[i], worker_cmd_reload_stop);
7963 	}
7964 
7965 	/* Wait for the other threads to ack. */
7966 	fr_read_ack_from_workers(fr);
7967 
7968 	/* Send ack to fast reload thread. */
7969 	fr_send_cmd_to(fr, fast_reload_notification_reload_ack, 0, 1);
7970 
7971 	/* Wait for reload_start from fast reload thread to resume. */
7972 	fr_poll_for_reload_start(fr);
7973 
7974 	/* Send reload_start to other threads */
7975 	for(i=0; i<daemon->num; i++) {
7976 		if(i == fr->worker->thread_num)
7977 			continue; /* Do not send to ourselves. */
7978 		worker_send_cmd(daemon->workers[i], worker_cmd_reload_start);
7979 	}
7980 
7981 	/* Pick up changes for this worker. */
7982 	if(fr->worker->daemon->fast_reload_drop_mesh) {
7983 		verbose(VERB_ALGO, "worker: drop mesh queries after reload");
7984 		mesh_delete_all(fr->worker->env.mesh);
7985 	}
7986 	fast_reload_worker_pickup_changes(fr->worker);
7987 
7988 	/* Wait for the other threads to ack. */
7989 	fr_read_ack_from_workers(fr);
7990 
7991 	/* Send ack to fast reload thread. */
7992 	fr_send_cmd_to(fr, fast_reload_notification_reload_ack, 0, 1);
7993 
7994 	verbose(VERB_ALGO, "worker resume after reload");
7995 }
7996 
7997 /** Fast reload, the main thread performs the nopause poll. It polls every
7998  * other worker thread briefly over the command pipe ipc. The command takes
7999  * no time for the worker, it can return immediately. After that it sends
8000  * an acknowledgement to the fastreload thread. */
8001 static void
fr_main_perform_reload_nopause_poll(struct fast_reload_thread * fr)8002 fr_main_perform_reload_nopause_poll(struct fast_reload_thread* fr)
8003 {
8004 	struct daemon* daemon = fr->worker->daemon;
8005 	int i;
8006 
8007 	/* Send the reload_poll to other threads. They can respond
8008 	 * one at a time. */
8009 	for(i=0; i<daemon->num; i++) {
8010 		if(i == fr->worker->thread_num)
8011 			continue; /* Do not send to ourselves. */
8012 		worker_send_cmd(daemon->workers[i], worker_cmd_reload_poll);
8013 	}
8014 
8015 	/* Wait for the other threads to ack. */
8016 	fr_read_ack_from_workers(fr);
8017 	fast_reload_worker_pickup_changes(fr->worker);
8018 
8019 	/* Send ack to fast reload thread. */
8020 	fr_send_cmd_to(fr, fast_reload_notification_reload_ack, 0, 1);
8021 }
8022 
8023 /** Fast reload, perform the command received from the fast reload thread */
8024 static void
fr_main_perform_cmd(struct fast_reload_thread * fr,enum fast_reload_notification status)8025 fr_main_perform_cmd(struct fast_reload_thread* fr,
8026 	enum fast_reload_notification status)
8027 {
8028 	verbose(VERB_ALGO, "main perform fast reload status: %s",
8029 		fr_notification_to_string(status));
8030 	if(status == fast_reload_notification_printout) {
8031 		fr_main_perform_printout(fr);
8032 	} else if(status == fast_reload_notification_done ||
8033 		status == fast_reload_notification_done_error ||
8034 		status == fast_reload_notification_exited) {
8035 		fr_main_perform_done(fr);
8036 	} else if(status == fast_reload_notification_reload_stop) {
8037 		fr_main_perform_reload_stop(fr);
8038 	} else if(status == fast_reload_notification_reload_nopause_poll) {
8039 		fr_main_perform_reload_nopause_poll(fr);
8040 	} else {
8041 		log_err("main received unknown status from fast reload: %d %s",
8042 			(int)status, fr_notification_to_string(status));
8043 	}
8044 }
8045 
8046 /** Fast reload, handle command from fast reload to the main thread. */
8047 static void
fr_main_handle_cmd(struct fast_reload_thread * fr)8048 fr_main_handle_cmd(struct fast_reload_thread* fr)
8049 {
8050 	enum fast_reload_notification status;
8051 	ssize_t ret;
8052 	/* keep static analyzer happy; recv(-1,..) */
8053 	log_assert(fr->commpair[0] >= 0);
8054 	ret = recv(fr->commpair[0],
8055 		((char*)&fr->service_read_cmd)+fr->service_read_cmd_count,
8056 		sizeof(fr->service_read_cmd)-fr->service_read_cmd_count, 0);
8057 	if(ret == -1) {
8058 		if(
8059 #ifndef USE_WINSOCK
8060 			errno == EINTR || errno == EAGAIN
8061 #  ifdef EWOULDBLOCK
8062 			|| errno == EWOULDBLOCK
8063 #  endif
8064 #else
8065 			WSAGetLastError() == WSAEINTR ||
8066 			WSAGetLastError() == WSAEINPROGRESS
8067 #endif
8068 			)
8069 			return; /* Continue later. */
8070 #ifdef USE_WINSOCK
8071 		if(WSAGetLastError() == WSAEWOULDBLOCK) {
8072 			ub_winsock_tcp_wouldblock(fr->service_event,
8073 				UB_EV_READ);
8074 			return; /* Continue later. */
8075 		}
8076 #endif
8077 		log_err("read cmd from fast reload thread, recv: %s",
8078 			sock_strerror(errno));
8079 		return;
8080 	} else if(ret == 0) {
8081 		verbose(VERB_ALGO, "closed connection from fast reload thread");
8082 		fr->service_read_cmd_count = 0;
8083 		/* handle this like an error */
8084 		fr->service_read_cmd = fast_reload_notification_done_error;
8085 	} else if(ret + (ssize_t)fr->service_read_cmd_count <
8086 		(ssize_t)sizeof(fr->service_read_cmd)) {
8087 		fr->service_read_cmd_count += ret;
8088 		/* Continue later. */
8089 		return;
8090 	}
8091 	status = fr->service_read_cmd;
8092 	fr->service_read_cmd = 0;
8093 	fr->service_read_cmd_count = 0;
8094 	fr_main_perform_cmd(fr, status);
8095 }
8096 
8097 /** Fast reload, poll for and handle cmd from fast reload thread. */
8098 static void
fr_check_cmd_from_thread(struct fast_reload_thread * fr)8099 fr_check_cmd_from_thread(struct fast_reload_thread* fr)
8100 {
8101 	int inevent = 0;
8102 	struct worker* worker = fr->worker;
8103 	/* Stop in case the thread has exited, or there is no read event. */
8104 	while(worker->daemon->fast_reload_thread) {
8105 		if(!sock_poll_timeout(fr->commpair[0], 0, 1, 0, &inevent)) {
8106 			log_err("check for cmd from fast reload thread: "
8107 				"poll failed");
8108 #ifdef USE_WINSOCK
8109 			if(worker->daemon->fast_reload_thread)
8110 				ub_winsock_tcp_wouldblock(worker->daemon->
8111 					fast_reload_thread->service_event,
8112 					UB_EV_READ);
8113 #endif
8114 			return;
8115 		}
8116 		if(!inevent) {
8117 #ifdef USE_WINSOCK
8118 			if(worker->daemon->fast_reload_thread)
8119 				ub_winsock_tcp_wouldblock(worker->daemon->
8120 					fast_reload_thread->service_event,
8121 					UB_EV_READ);
8122 #endif
8123 			return;
8124 		}
8125 		fr_main_handle_cmd(fr);
8126 	}
8127 }
8128 
fast_reload_service_cb(int ATTR_UNUSED (fd),short ATTR_UNUSED (bits),void * arg)8129 void fast_reload_service_cb(int ATTR_UNUSED(fd), short ATTR_UNUSED(bits),
8130 	void* arg)
8131 {
8132 	struct fast_reload_thread* fast_reload_thread =
8133 		(struct fast_reload_thread*)arg;
8134 	struct worker* worker = fast_reload_thread->worker;
8135 
8136 	/* Read and handle the command */
8137 	fr_main_handle_cmd(fast_reload_thread);
8138 	if(worker->daemon->fast_reload_thread != NULL) {
8139 		/* If not exited, see if there are more pending statuses
8140 		 * from the fast reload thread. */
8141 		fr_check_cmd_from_thread(fast_reload_thread);
8142 	}
8143 }
8144 
8145 #ifdef HAVE_SSL
8146 /** fast reload, send client item over SSL. Returns number of bytes
8147  * printed, 0 on wait later, or -1 on failure. */
8148 static int
fr_client_send_item_ssl(struct fast_reload_printq * printq)8149 fr_client_send_item_ssl(struct fast_reload_printq* printq)
8150 {
8151 	int r;
8152 	ERR_clear_error();
8153 	r = SSL_write(printq->remote.ssl,
8154 		printq->client_item+printq->client_byte_count,
8155 		printq->client_len - printq->client_byte_count);
8156 	if(r <= 0) {
8157 		int want = SSL_get_error(printq->remote.ssl, r);
8158 		if(want == SSL_ERROR_ZERO_RETURN) {
8159 			log_err("fast_reload print to remote client: "
8160 				"SSL_write says connection closed.");
8161 			return -1;
8162 		} else if(want == SSL_ERROR_WANT_READ) {
8163 			/* wait for read condition */
8164 			printq->client_cp->ssl_shake_state = comm_ssl_shake_hs_read;
8165 			comm_point_listen_for_rw(printq->client_cp, 1, 0);
8166 			return 0;
8167 		} else if(want == SSL_ERROR_WANT_WRITE) {
8168 #ifdef USE_WINSOCK
8169 			ub_winsock_tcp_wouldblock(comm_point_internal(printq->client_cp), UB_EV_WRITE);
8170 #endif
8171 			return 0; /* write more later */
8172 		} else if(want == SSL_ERROR_SYSCALL) {
8173 #ifdef EPIPE
8174 			if(errno == EPIPE && verbosity < 2) {
8175 				/* silence 'broken pipe' */
8176 				return -1;
8177 			}
8178 #endif
8179 			if(errno != 0)
8180 				log_err("fast_reload print to remote client: "
8181 					"SSL_write syscall: %s",
8182 					sock_strerror(errno));
8183 			return -1;
8184 		}
8185 		log_crypto_err_io("fast_reload print to remote client: "
8186 			"could not SSL_write", want);
8187 		return -1;
8188 	}
8189 	return r;
8190 }
8191 #endif /* HAVE_SSL */
8192 
8193 /** fast reload, send client item for fd, returns bytes sent, or 0 for wait
8194  * later, or -1 on failure. */
8195 static int
fr_client_send_item_fd(struct fast_reload_printq * printq)8196 fr_client_send_item_fd(struct fast_reload_printq* printq)
8197 {
8198 	int r;
8199 	r = (int)send(printq->remote.fd,
8200 		printq->client_item+printq->client_byte_count,
8201 		printq->client_len - printq->client_byte_count, 0);
8202 	if(r == -1) {
8203 		if(
8204 #ifndef USE_WINSOCK
8205 			errno == EINTR || errno == EAGAIN
8206 #  ifdef EWOULDBLOCK
8207 			|| errno == EWOULDBLOCK
8208 #  endif
8209 #else
8210 			WSAGetLastError() == WSAEINTR ||
8211 			WSAGetLastError() == WSAEINPROGRESS ||
8212 			WSAGetLastError() == WSAEWOULDBLOCK
8213 #endif
8214 			) {
8215 #ifdef USE_WINSOCK
8216 			ub_winsock_tcp_wouldblock(comm_point_internal(printq->client_cp), UB_EV_WRITE);
8217 #endif
8218 			return 0; /* Try again. */
8219 		}
8220 		log_err("fast_reload print to remote client: send failed: %s",
8221 			sock_strerror(errno));
8222 		return -1;
8223 	}
8224 	return r;
8225 }
8226 
8227 /** fast reload, send current client item. false on failure or wait later. */
8228 static int
fr_client_send_item(struct fast_reload_printq * printq)8229 fr_client_send_item(struct fast_reload_printq* printq)
8230 {
8231 	int r;
8232 #ifdef HAVE_SSL
8233 	if(printq->remote.ssl) {
8234 		r = fr_client_send_item_ssl(printq);
8235 	} else {
8236 #endif
8237 		r = fr_client_send_item_fd(printq);
8238 #ifdef HAVE_SSL
8239 	}
8240 #endif
8241 	if(r == 0) {
8242 		/* Wait for later. */
8243 		return 0;
8244 	} else if(r == -1) {
8245 		/* It failed, close comm point and stop sending. */
8246 		fr_printq_remove(printq);
8247 		return 0;
8248 	}
8249 	printq->client_byte_count += r;
8250 	if(printq->client_byte_count < printq->client_len)
8251 		return 0; /* Print more later. */
8252 	return 1;
8253 }
8254 
8255 /** fast reload, pick up the next item to print */
8256 static void
fr_client_pickup_next_item(struct fast_reload_printq * printq)8257 fr_client_pickup_next_item(struct fast_reload_printq* printq)
8258 {
8259 	struct config_strlist* item;
8260 	/* Pop first off the list. */
8261 	if(!printq->to_print->first) {
8262 		printq->client_item = NULL;
8263 		printq->client_len = 0;
8264 		printq->client_byte_count = 0;
8265 		return;
8266 	}
8267 	item = printq->to_print->first;
8268 	if(item->next) {
8269 		printq->to_print->first = item->next;
8270 	} else {
8271 		printq->to_print->first = NULL;
8272 		printq->to_print->last = NULL;
8273 	}
8274 	item->next = NULL;
8275 	printq->client_len = 0;
8276 	printq->client_byte_count = 0;
8277 	printq->client_item = item->str;
8278 	item->str = NULL;
8279 	free(item);
8280 	/* The len is the number of bytes to print out, and thus excludes
8281 	 * the terminator zero. */
8282 	if(printq->client_item)
8283 		printq->client_len = (int)strlen(printq->client_item);
8284 }
8285 
fast_reload_client_callback(struct comm_point * ATTR_UNUSED (c),void * arg,int err,struct comm_reply * ATTR_UNUSED (rep))8286 int fast_reload_client_callback(struct comm_point* ATTR_UNUSED(c), void* arg,
8287 	int err, struct comm_reply* ATTR_UNUSED(rep))
8288 {
8289 	struct fast_reload_printq* printq = (struct fast_reload_printq*)arg;
8290 	if(!printq->client_cp) {
8291 		fr_printq_remove(printq);
8292 		return 0; /* the output is closed and deleted */
8293 	}
8294 	if(err != NETEVENT_NOERROR) {
8295 		verbose(VERB_ALGO, "fast reload client: error, close it");
8296 		fr_printq_remove(printq);
8297 		return 0;
8298 	}
8299 #ifdef HAVE_SSL
8300 	if(printq->client_cp->ssl_shake_state == comm_ssl_shake_hs_read) {
8301 		/* read condition satisfied back to writing */
8302 		comm_point_listen_for_rw(printq->client_cp, 0, 1);
8303 		printq->client_cp->ssl_shake_state = comm_ssl_shake_none;
8304 	}
8305 #endif /* HAVE_SSL */
8306 
8307 	/* Pickup an item if there are none */
8308 	if(!printq->client_item) {
8309 		fr_client_pickup_next_item(printq);
8310 	}
8311 	if(!printq->client_item) {
8312 		if(printq->in_list) {
8313 			/* Nothing more to print, it can be removed. */
8314 			fr_printq_remove(printq);
8315 			return 0;
8316 		}
8317 		/* Done with printing for now. */
8318 		comm_point_stop_listening(printq->client_cp);
8319 		return 0;
8320 	}
8321 
8322 	/* Try to print out a number of items, if they can print in full. */
8323 	while(printq->client_item) {
8324 		/* Send current item, if any. */
8325 		if(printq->client_item && printq->client_len != 0 &&
8326 			printq->client_byte_count < printq->client_len) {
8327 			if(!fr_client_send_item(printq))
8328 				return 0;
8329 		}
8330 
8331 		/* The current item is done. */
8332 		if(printq->client_item) {
8333 			free(printq->client_item);
8334 			printq->client_item = NULL;
8335 			printq->client_len = 0;
8336 			printq->client_byte_count = 0;
8337 		}
8338 		if(!printq->to_print->first) {
8339 			if(printq->in_list) {
8340 				/* Nothing more to print, it can be removed. */
8341 				fr_printq_remove(printq);
8342 				return 0;
8343 			}
8344 			/* Done with printing for now. */
8345 			comm_point_stop_listening(printq->client_cp);
8346 			return 0;
8347 		}
8348 		fr_client_pickup_next_item(printq);
8349 	}
8350 
8351 	return 0;
8352 }
8353 
8354 #ifndef THREADS_DISABLED
8355 /** fast reload printq create */
8356 static struct fast_reload_printq*
fr_printq_create(struct comm_point * c,struct worker * worker)8357 fr_printq_create(struct comm_point* c, struct worker* worker)
8358 {
8359 	struct fast_reload_printq* printq = calloc(1, sizeof(*printq));
8360 	if(!printq)
8361 		return NULL;
8362 	printq->to_print = calloc(1, sizeof(*printq->to_print));
8363 	if(!printq->to_print) {
8364 		free(printq);
8365 		return NULL;
8366 	}
8367 	printq->worker = worker;
8368 	printq->client_cp = c;
8369 	printq->client_cp->callback = fast_reload_client_callback;
8370 	printq->client_cp->cb_arg = printq;
8371 	return printq;
8372 }
8373 #endif /* !THREADS_DISABLED */
8374 
8375 /** fast reload printq delete */
8376 static void
fr_printq_delete(struct fast_reload_printq * printq)8377 fr_printq_delete(struct fast_reload_printq* printq)
8378 {
8379 	if(!printq)
8380 		return;
8381 #ifdef HAVE_SSL
8382 	if(printq->remote.ssl) {
8383 		SSL_shutdown(printq->remote.ssl);
8384 		SSL_free(printq->remote.ssl);
8385 	}
8386 #endif
8387 	comm_point_delete(printq->client_cp);
8388 	if(printq->to_print) {
8389 		config_delstrlist(printq->to_print->first);
8390 		free(printq->to_print);
8391 	}
8392 	free(printq);
8393 }
8394 
8395 /** fast reload printq, returns true if the list is empty and no item */
8396 static int
fr_printq_empty(struct fast_reload_printq * printq)8397 fr_printq_empty(struct fast_reload_printq* printq)
8398 {
8399 	if(printq->to_print->first == NULL && printq->client_item == NULL)
8400 		return 1;
8401 	return 0;
8402 }
8403 
8404 /** fast reload printq, insert onto list */
8405 static void
fr_printq_list_insert(struct fast_reload_printq * printq,struct daemon * daemon)8406 fr_printq_list_insert(struct fast_reload_printq* printq, struct daemon* daemon)
8407 {
8408 	if(printq->in_list)
8409 		return;
8410 	printq->next = daemon->fast_reload_printq_list;
8411 	if(printq->next)
8412 		printq->next->prev = printq;
8413 	printq->prev = NULL;
8414 	printq->in_list = 1;
8415 	daemon->fast_reload_printq_list = printq;
8416 }
8417 
8418 /** fast reload printq delete list */
8419 void
fast_reload_printq_list_delete(struct fast_reload_printq * list)8420 fast_reload_printq_list_delete(struct fast_reload_printq* list)
8421 {
8422 	struct fast_reload_printq* printq = list, *next;
8423 	while(printq) {
8424 		next = printq->next;
8425 		fr_printq_delete(printq);
8426 		printq = next;
8427 	}
8428 }
8429 
8430 /** fast reload printq remove the item from the printq list */
8431 static void
fr_printq_list_remove(struct fast_reload_printq * printq)8432 fr_printq_list_remove(struct fast_reload_printq* printq)
8433 {
8434 	struct daemon* daemon = printq->worker->daemon;
8435 	if(printq->prev == NULL)
8436 		daemon->fast_reload_printq_list = printq->next;
8437 	else	printq->prev->next = printq->next;
8438 	if(printq->next)
8439 		printq->next->prev = printq->prev;
8440 	printq->in_list = 0;
8441 }
8442 
8443 /** fast reload printq, remove the printq when no longer needed,
8444  * like the stream is closed. */
8445 static void
fr_printq_remove(struct fast_reload_printq * printq)8446 fr_printq_remove(struct fast_reload_printq* printq)
8447 {
8448 	if(!printq)
8449 		return;
8450 	if(printq->worker->daemon->fast_reload_thread &&
8451 		printq->worker->daemon->fast_reload_thread->printq == printq)
8452 		printq->worker->daemon->fast_reload_thread->printq = NULL;
8453 	if(printq->in_list)
8454 		fr_printq_list_remove(printq);
8455 	fr_printq_delete(printq);
8456 }
8457 
8458 /** fast reload thread, send stop command to the thread, from the main thread.
8459  */
8460 static void
fr_send_stop(struct fast_reload_thread * fr)8461 fr_send_stop(struct fast_reload_thread* fr)
8462 {
8463 	fr_send_cmd_to(fr, fast_reload_notification_exit, 1, 0);
8464 }
8465 
8466 void
fast_reload_thread_start(RES * ssl,struct worker * worker,struct rc_state * s,int fr_verb,int fr_nopause,int fr_drop_mesh)8467 fast_reload_thread_start(RES* ssl, struct worker* worker, struct rc_state* s,
8468 	int fr_verb, int fr_nopause, int fr_drop_mesh)
8469 {
8470 	if(worker->daemon->fast_reload_thread) {
8471 		log_err("fast reload thread already running");
8472 		return;
8473 	}
8474 	if(!fast_reload_thread_setup(worker, fr_verb, fr_nopause,
8475 		fr_drop_mesh)) {
8476 		if(!ssl_printf(ssl, "error could not setup thread\n"))
8477 			return;
8478 		return;
8479 	}
8480 	worker->daemon->fast_reload_thread->started = 1;
8481 
8482 #ifndef THREADS_DISABLED
8483 	/* Setup command listener in remote servicing thread */
8484 	/* The listener has to be nonblocking, so the the remote servicing
8485 	 * thread can continue to service DNS queries, the fast reload
8486 	 * thread is going to read the config from disk and apply it. */
8487 	/* The commpair[1] element can stay blocking, it is used by the
8488 	 * fast reload thread to communicate back. The thread needs to wait
8489 	 * at these times, when it has to check briefly it can use poll. */
8490 	fd_set_nonblock(worker->daemon->fast_reload_thread->commpair[0]);
8491 	worker->daemon->fast_reload_thread->service_event = ub_event_new(
8492 		comm_base_internal(worker->base),
8493 		worker->daemon->fast_reload_thread->commpair[0],
8494 		UB_EV_READ | UB_EV_PERSIST, fast_reload_service_cb,
8495 		worker->daemon->fast_reload_thread);
8496 	if(!worker->daemon->fast_reload_thread->service_event) {
8497 		fast_reload_thread_desetup(worker->daemon->fast_reload_thread);
8498 		if(!ssl_printf(ssl, "error out of memory\n"))
8499 			return;
8500 		return;
8501 	}
8502 	if(ub_event_add(worker->daemon->fast_reload_thread->service_event,
8503 		NULL) != 0) {
8504 		fast_reload_thread_desetup(worker->daemon->fast_reload_thread);
8505 		if(!ssl_printf(ssl, "error out of memory adding service event\n"))
8506 			return;
8507 		return;
8508 	}
8509 	worker->daemon->fast_reload_thread->service_event_is_added = 1;
8510 
8511 	/* Setup the comm point to the remote control client as an event
8512 	 * on the remote servicing thread, which it already is.
8513 	 * It needs a new callback to service it. */
8514 	log_assert(s);
8515 	state_list_remove_elem(&s->rc->busy_list, s->c);
8516 	s->rc->active --;
8517 	/* Set the comm point file descriptor to nonblocking. So that
8518 	 * printout to the remote control client does not block the
8519 	 * server thread from servicing DNS queries. */
8520 	fd_set_nonblock(s->c->fd);
8521 	worker->daemon->fast_reload_thread->printq = fr_printq_create(s->c,
8522 		worker);
8523 	if(!worker->daemon->fast_reload_thread->printq) {
8524 		fast_reload_thread_desetup(worker->daemon->fast_reload_thread);
8525 		if(!ssl_printf(ssl, "error out of memory create printq\n"))
8526 			return;
8527 		return;
8528 	}
8529 	worker->daemon->fast_reload_thread->printq->remote = *ssl;
8530 	s->rc = NULL; /* move away the rc state */
8531 	/* Nothing to print right now, so no need to have it active. */
8532 	comm_point_stop_listening(worker->daemon->fast_reload_thread->printq->client_cp);
8533 
8534 	/* Start fast reload thread */
8535 	ub_thread_create(&worker->daemon->fast_reload_thread->tid,
8536 		fast_reload_thread_main, worker->daemon->fast_reload_thread);
8537 #else
8538 	(void)s;
8539 #endif
8540 }
8541 
8542 void
fast_reload_thread_stop(struct fast_reload_thread * fast_reload_thread)8543 fast_reload_thread_stop(struct fast_reload_thread* fast_reload_thread)
8544 {
8545 	struct worker* worker = fast_reload_thread->worker;
8546 	if(!fast_reload_thread)
8547 		return;
8548 	fr_send_stop(fast_reload_thread);
8549 	if(worker->daemon->fast_reload_thread != NULL) {
8550 		/* If it did not exit yet, join with the thread now. It is
8551 		 * going to exit because the exit command is sent to it. */
8552 		fr_main_perform_done(fast_reload_thread);
8553 	}
8554 }
8555