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      1 /*
      2  * services/localzone.c - local zones authority service.
      3  *
      4  * Copyright (c) 2007, NLnet Labs. All rights reserved.
      5  *
      6  * This software is open source.
      7  *
      8  * Redistribution and use in source and binary forms, with or without
      9  * modification, are permitted provided that the following conditions
     10  * are met:
     11  *
     12  * Redistributions of source code must retain the above copyright notice,
     13  * this list of conditions and the following disclaimer.
     14  *
     15  * Redistributions in binary form must reproduce the above copyright notice,
     16  * this list of conditions and the following disclaimer in the documentation
     17  * and/or other materials provided with the distribution.
     18  *
     19  * Neither the name of the NLNET LABS nor the names of its contributors may
     20  * be used to endorse or promote products derived from this software without
     21  * specific prior written permission.
     22  *
     23  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     24  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     25  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
     26  * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
     27  * HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
     28  * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
     29  * TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
     30  * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
     31  * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
     32  * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
     33  * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     34  */
     35 
     36 /**
     37  * \file
     38  *
     39  * This file contains functions to enable local zone authority service.
     40  */
     41 #include "config.h"
     42 #include "services/localzone.h"
     43 #include "sldns/str2wire.h"
     44 #include "util/regional.h"
     45 #include "util/config_file.h"
     46 #include "util/data/dname.h"
     47 #include "util/data/packed_rrset.h"
     48 #include "util/data/msgencode.h"
     49 #include "util/net_help.h"
     50 #include "util/netevent.h"
     51 #include "util/data/msgreply.h"
     52 #include "util/data/msgparse.h"
     53 #include "util/as112.h"
     54 
     55 /* maximum RRs in an RRset, to cap possible 'endless' list RRs.
     56  * with 16 bytes for an A record, a 64K packet has about 4000 max */
     57 #define LOCALZONE_RRSET_COUNT_MAX 4096
     58 
     59 static const char* default_zones_reverse_array[] = {
     60 	"127.in-addr.arpa.", /* reverse ip4 zone */
     61 	"1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.ip6.arpa.", /* reverse ip6 zone */
     62 	0
     63 };
     64 const char** local_zones_default_reverse = default_zones_reverse_array;
     65 
     66 static const char* default_zones_special_array[] = {
     67 	"test.",		/* RFC 6761 */
     68 	"invalid.",		/* RFC 6761 */
     69 	"onion.",		/* RFC 7686 */
     70 	"home.arpa.",		/* RFC 8375 */
     71 	"resolver.arpa.",	/* RFC 9462 */
     72 	"service.arpa.",	/* RFC 9665 */
     73 	0
     74 };
     75 const char** local_zones_default_special = default_zones_special_array;
     76 
     77 /** print all RRsets in local zone */
     78 static void
     79 local_zone_out(struct local_zone* z)
     80 {
     81 	struct local_data* d;
     82 	struct local_rrset* p;
     83 	RBTREE_FOR(d, struct local_data*, &z->data) {
     84 		for(p = d->rrsets; p; p = p->next) {
     85 			log_nametypeclass(NO_VERBOSE, "rrset", d->name,
     86 				ntohs(p->rrset->rk.type),
     87 				ntohs(p->rrset->rk.rrset_class));
     88 		}
     89 	}
     90 }
     91 
     92 static void
     93 local_zone_print(struct local_zone* z)
     94 {
     95 	char buf[64];
     96 	lock_rw_rdlock(&z->lock);
     97 	snprintf(buf, sizeof(buf), "%s zone",
     98 		local_zone_type2str(z->type));
     99 	log_nametypeclass(NO_VERBOSE, buf, z->name, 0, z->dclass);
    100 	local_zone_out(z);
    101 	lock_rw_unlock(&z->lock);
    102 }
    103 
    104 void local_zones_print(struct local_zones* zones)
    105 {
    106 	struct local_zone* z;
    107 	lock_rw_rdlock(&zones->lock);
    108 	log_info("number of auth zones %u", (unsigned)zones->ztree.count);
    109 	RBTREE_FOR(z, struct local_zone*, &zones->ztree) {
    110 		local_zone_print(z);
    111 	}
    112 	lock_rw_unlock(&zones->lock);
    113 }
    114 
    115 struct local_zones*
    116 local_zones_create(void)
    117 {
    118 	struct local_zones* zones = (struct local_zones*)calloc(1,
    119 		sizeof(*zones));
    120 	if(!zones)
    121 		return NULL;
    122 	rbtree_init(&zones->ztree, &local_zone_cmp);
    123 	lock_rw_init(&zones->lock);
    124 	lock_protect(&zones->lock, &zones->ztree, sizeof(zones->ztree));
    125 	/* also lock protects the rbnode's in struct local_zone */
    126 	return zones;
    127 }
    128 
    129 /** helper traverse to delete zones */
    130 static void
    131 lzdel(rbnode_type* n, void* ATTR_UNUSED(arg))
    132 {
    133 	struct local_zone* z = (struct local_zone*)n->key;
    134 	local_zone_delete(z);
    135 }
    136 
    137 void
    138 local_zones_delete(struct local_zones* zones)
    139 {
    140 	if(!zones)
    141 		return;
    142 	lock_rw_destroy(&zones->lock);
    143 	/* walk through zones and delete them all */
    144 	traverse_postorder(&zones->ztree, lzdel, NULL);
    145 	free(zones);
    146 }
    147 
    148 void
    149 local_zone_delete(struct local_zone* z)
    150 {
    151 	if(!z)
    152 		return;
    153 	lock_rw_destroy(&z->lock);
    154 	regional_destroy(z->region);
    155 	free(z->name);
    156 	free(z->taglist);
    157 	free(z);
    158 }
    159 
    160 int
    161 local_zone_cmp(const void* z1, const void* z2)
    162 {
    163 	/* first sort on class, so that hierarchy can be maintained within
    164 	 * a class */
    165 	struct local_zone* a = (struct local_zone*)z1;
    166 	struct local_zone* b = (struct local_zone*)z2;
    167 	int m;
    168 	if(a->dclass != b->dclass) {
    169 		if(a->dclass < b->dclass)
    170 			return -1;
    171 		return 1;
    172 	}
    173 	return dname_lab_cmp(a->name, a->namelabs, b->name, b->namelabs, &m);
    174 }
    175 
    176 int
    177 local_data_cmp(const void* d1, const void* d2)
    178 {
    179 	struct local_data* a = (struct local_data*)d1;
    180 	struct local_data* b = (struct local_data*)d2;
    181 	int m;
    182 	return dname_canon_lab_cmp(a->name, a->namelabs, b->name,
    183 		b->namelabs, &m);
    184 }
    185 
    186 /* form wireformat from text format domain name */
    187 int
    188 parse_dname(const char* str, uint8_t** res, size_t* len, int* labs)
    189 {
    190 	*res = sldns_str2wire_dname(str, len);
    191 	*labs = 0;
    192 	if(!*res) {
    193 		log_err("cannot parse name %s", str);
    194 		return 0;
    195 	}
    196 	*labs = dname_count_size_labels(*res, len);
    197 	return 1;
    198 }
    199 
    200 /** create a new localzone */
    201 static struct local_zone*
    202 local_zone_create(uint8_t* nm, size_t len, int labs,
    203 	enum localzone_type t, uint16_t dclass)
    204 {
    205 	struct local_zone* z = (struct local_zone*)calloc(1, sizeof(*z));
    206 	if(!z) {
    207 		return NULL;
    208 	}
    209 	z->node.key = z;
    210 	z->dclass = dclass;
    211 	z->type = t;
    212 	z->name = nm;
    213 	z->namelen = len;
    214 	z->namelabs = labs;
    215 	lock_rw_init(&z->lock);
    216 	z->region = regional_create_nochunk(sizeof(struct regional));
    217 	if(!z->region) {
    218 		free(z);
    219 		return NULL;
    220 	}
    221 	rbtree_init(&z->data, &local_data_cmp);
    222 	lock_protect(&z->lock, &z->parent, sizeof(*z)-sizeof(rbnode_type));
    223 	/* also the zones->lock protects node, parent, name*, class */
    224 	return z;
    225 }
    226 
    227 /** enter a new zone with allocated dname returns with WRlock */
    228 static struct local_zone*
    229 lz_enter_zone_dname(struct local_zones* zones, uint8_t* nm, size_t len,
    230 	int labs, enum localzone_type t, uint16_t c)
    231 {
    232 	struct local_zone* z = local_zone_create(nm, len, labs, t, c);
    233 	if(!z) {
    234 		free(nm);
    235 		log_err("out of memory");
    236 		return NULL;
    237 	}
    238 
    239 	/* add to rbtree */
    240 	lock_rw_wrlock(&zones->lock);
    241 	lock_rw_wrlock(&z->lock);
    242 	if(!rbtree_insert(&zones->ztree, &z->node)) {
    243 		struct local_zone* oldz;
    244 		char str[LDNS_MAX_DOMAINLEN];
    245 		dname_str(nm, str);
    246 		log_warn("duplicate local-zone %s", str);
    247 		lock_rw_unlock(&z->lock);
    248 		/* save zone name locally before deallocation,
    249 		 * otherwise, nm is gone if we zone_delete now. */
    250 		oldz = z;
    251 		/* find the correct zone, so not an error for duplicate */
    252 		z = local_zones_find(zones, nm, len, labs, c);
    253 		lock_rw_wrlock(&z->lock);
    254 		lock_rw_unlock(&zones->lock);
    255 		local_zone_delete(oldz);
    256 		return z;
    257 	}
    258 	lock_rw_unlock(&zones->lock);
    259 	return z;
    260 }
    261 
    262 /** enter a new zone */
    263 struct local_zone*
    264 lz_enter_zone(struct local_zones* zones, const char* name, const char* type,
    265 	uint16_t dclass)
    266 {
    267 	struct local_zone* z;
    268 	enum localzone_type t;
    269 	uint8_t* nm;
    270 	size_t len;
    271 	int labs;
    272 	if(!parse_dname(name, &nm, &len, &labs)) {
    273 		log_err("bad zone name %s %s", name, type);
    274 		return NULL;
    275 	}
    276 	if(!local_zone_str2type(type, &t)) {
    277 		log_err("bad lz_enter_zone type %s %s", name, type);
    278 		free(nm);
    279 		return NULL;
    280 	}
    281 	if(!(z=lz_enter_zone_dname(zones, nm, len, labs, t, dclass))) {
    282 		log_err("could not enter zone %s %s", name, type);
    283 		return NULL;
    284 	}
    285 	return z;
    286 }
    287 
    288 int
    289 rrstr_get_rr_content(const char* str, uint8_t** nm, uint16_t* type,
    290 	uint16_t* dclass, time_t* ttl, uint8_t* rr, size_t len,
    291 	uint8_t** rdata, size_t* rdata_len)
    292 {
    293 	size_t dname_len = 0;
    294 	int e = sldns_str2wire_rr_buf(str, rr, &len, &dname_len, 3600,
    295 		NULL, 0, NULL, 0);
    296 	if(e) {
    297 		log_err("error parsing local-data at %d: '%s': %s",
    298 			LDNS_WIREPARSE_OFFSET(e), str,
    299 			sldns_get_errorstr_parse(e));
    300 		return 0;
    301 	}
    302 	*nm = memdup(rr, dname_len);
    303 	if(!*nm) {
    304 		log_err("out of memory");
    305 		return 0;
    306 	}
    307 	*dclass = sldns_wirerr_get_class(rr, len, dname_len);
    308 	*type = sldns_wirerr_get_type(rr, len, dname_len);
    309 	*ttl = (time_t)sldns_wirerr_get_ttl(rr, len, dname_len);
    310 	*rdata = sldns_wirerr_get_rdatawl(rr, len, dname_len);
    311 	*rdata_len = sldns_wirerr_get_rdatalen(rr, len, dname_len)+2;
    312 	return 1;
    313 }
    314 
    315 /** return name and class of rr; parses string */
    316 static int
    317 get_rr_nameclass(const char* str, uint8_t** nm, uint16_t* dclass,
    318 	uint16_t* dtype)
    319 {
    320 	uint8_t rr[LDNS_RR_BUF_SIZE];
    321 	size_t len = sizeof(rr), dname_len = 0;
    322 	int s = sldns_str2wire_rr_buf(str, rr, &len, &dname_len, 3600,
    323 		NULL, 0, NULL, 0);
    324 	if(s != 0) {
    325 		log_err("error parsing local-data at %d '%s': %s",
    326 			LDNS_WIREPARSE_OFFSET(s), str,
    327 			sldns_get_errorstr_parse(s));
    328 		return 0;
    329 	}
    330 	*nm = memdup(rr, dname_len);
    331 	*dclass = sldns_wirerr_get_class(rr, len, dname_len);
    332 	*dtype = sldns_wirerr_get_type(rr, len, dname_len);
    333 	if(!*nm) {
    334 		log_err("out of memory");
    335 		return 0;
    336 	}
    337 	return 1;
    338 }
    339 
    340 /**
    341  * Find an rrset in local data structure.
    342  * @param data: local data domain name structure.
    343  * @param type: type to look for (host order).
    344  * @param alias_ok: 1 if matching a non-exact, alias type such as CNAME is
    345  * allowed.  otherwise 0.
    346  * @return rrset pointer or NULL if not found.
    347  */
    348 static struct local_rrset*
    349 local_data_find_type(struct local_data* data, uint16_t type, int alias_ok)
    350 {
    351 	struct local_rrset* p, *cname = NULL;
    352 	type = htons(type);
    353 	for(p = data->rrsets; p; p = p->next) {
    354 		if(p->rrset->rk.type == type)
    355 			return p;
    356 		if(alias_ok && p->rrset->rk.type == htons(LDNS_RR_TYPE_CNAME))
    357 			cname = p;
    358 	}
    359 	if(alias_ok)
    360 		return cname;
    361 	return NULL;
    362 }
    363 
    364 /** check for RR duplicates */
    365 static int
    366 rr_is_duplicate(struct packed_rrset_data* pd, uint8_t* rdata, size_t rdata_len)
    367 {
    368 	size_t i;
    369 	for(i=0; i<pd->count; i++) {
    370 		if(pd->rr_len[i] == rdata_len &&
    371 			memcmp(pd->rr_data[i], rdata, rdata_len) == 0)
    372 			return 1;
    373 	}
    374 	return 0;
    375 }
    376 
    377 /** new local_rrset */
    378 static struct local_rrset*
    379 new_local_rrset(struct regional* region, struct local_data* node,
    380 	uint16_t rrtype, uint16_t rrclass)
    381 {
    382 	struct packed_rrset_data* pd;
    383 	struct local_rrset* rrset = (struct local_rrset*)
    384 		regional_alloc_zero(region, sizeof(*rrset));
    385 	if(!rrset) {
    386 		log_err("out of memory");
    387 		return NULL;
    388 	}
    389 	rrset->rrset = (struct ub_packed_rrset_key*)
    390 		regional_alloc_zero(region, sizeof(*rrset->rrset));
    391 	if(!rrset->rrset) {
    392 		log_err("out of memory");
    393 		return NULL;
    394 	}
    395 	rrset->rrset->entry.key = rrset->rrset;
    396 	pd = (struct packed_rrset_data*)regional_alloc_zero(region,
    397 		sizeof(*pd));
    398 	if(!pd) {
    399 		log_err("out of memory");
    400 		return NULL;
    401 	}
    402 	pd->trust = rrset_trust_prim_noglue;
    403 	pd->security = sec_status_insecure;
    404 	rrset->rrset->entry.data = pd;
    405 	rrset->rrset->rk.dname = node->name;
    406 	rrset->rrset->rk.dname_len = node->namelen;
    407 	rrset->rrset->rk.type = htons(rrtype);
    408 	rrset->rrset->rk.rrset_class = htons(rrclass);
    409 	rrset->next = node->rrsets;
    410 	node->rrsets = rrset;
    411 	return rrset;
    412 }
    413 
    414 /** insert RR into RRset data structure; Wastes a couple of bytes */
    415 int
    416 rrset_insert_rr(struct regional* region, struct packed_rrset_data* pd,
    417 	uint8_t* rdata, size_t rdata_len, time_t ttl, const char* rrstr)
    418 {
    419 	size_t* oldlen = pd->rr_len;
    420 	time_t* oldttl = pd->rr_ttl;
    421 	uint8_t** olddata = pd->rr_data;
    422 
    423 	/* add RR to rrset */
    424 	if(pd->count > LOCALZONE_RRSET_COUNT_MAX) {
    425 		log_warn("RRset '%s' has more than %d records, record ignored",
    426 			rrstr, LOCALZONE_RRSET_COUNT_MAX);
    427 		return 1;
    428 	}
    429 	pd->count++;
    430 	pd->rr_len = regional_alloc(region, sizeof(*pd->rr_len)*pd->count);
    431 	pd->rr_ttl = regional_alloc(region, sizeof(*pd->rr_ttl)*pd->count);
    432 	pd->rr_data = regional_alloc(region, sizeof(*pd->rr_data)*pd->count);
    433 	if(!pd->rr_len || !pd->rr_ttl || !pd->rr_data) {
    434 		pd->count--;
    435 		pd->rr_len = oldlen;
    436 		pd->rr_ttl = oldttl;
    437 		pd->rr_data = olddata;
    438 		log_err("out of memory");
    439 		return 0;
    440 	}
    441 	if(pd->count > 1) {
    442 		memcpy(pd->rr_len+1, oldlen,
    443 			sizeof(*pd->rr_len)*(pd->count-1));
    444 		memcpy(pd->rr_ttl+1, oldttl,
    445 			sizeof(*pd->rr_ttl)*(pd->count-1));
    446 		memcpy(pd->rr_data+1, olddata,
    447 			sizeof(*pd->rr_data)*(pd->count-1));
    448 	}
    449 	pd->rr_len[0] = rdata_len;
    450 	pd->rr_ttl[0] = ttl;
    451 	pd->rr_data[0] = regional_alloc_init(region, rdata, rdata_len);
    452 	if(!pd->rr_data[0]) {
    453 		pd->count--;
    454 		pd->rr_len = oldlen;
    455 		pd->rr_ttl = oldttl;
    456 		pd->rr_data = olddata;
    457 		log_err("out of memory");
    458 		return 0;
    459 	}
    460 	return 1;
    461 }
    462 
    463 /** Delete RR from local-zone RRset, wastes memory as the deleted RRs cannot be
    464  * free'd (regionally alloc'd) */
    465 int
    466 local_rrset_remove_rr(struct packed_rrset_data* pd, size_t index)
    467 {
    468 	log_assert(pd->count > 0);
    469 	if(index >= pd->count) {
    470 		log_warn("Trying to remove RR with out of bound index");
    471 		return 0;
    472 	}
    473 	if(index + 1 < pd->count) {
    474 		/* not removing last element */
    475 		size_t nexti = index + 1;
    476 		size_t num = pd->count - nexti;
    477 		memmove(pd->rr_len+index, pd->rr_len+nexti, sizeof(*pd->rr_len)*num);
    478 		memmove(pd->rr_ttl+index, pd->rr_ttl+nexti, sizeof(*pd->rr_ttl)*num);
    479 		memmove(pd->rr_data+index, pd->rr_data+nexti, sizeof(*pd->rr_data)*num);
    480 	}
    481 	pd->count--;
    482 	return 1;
    483 }
    484 
    485 struct local_data*
    486 local_zone_find_data(struct local_zone* z, uint8_t* nm, size_t nmlen, int nmlabs)
    487 {
    488 	struct local_data key;
    489 	key.node.key = &key;
    490 	key.name = nm;
    491 	key.namelen = nmlen;
    492 	key.namelabs = nmlabs;
    493 	return (struct local_data*)rbtree_search(&z->data, &key.node);
    494 }
    495 
    496 /** find a node, create it if not and all its empty nonterminal parents */
    497 static int
    498 lz_find_create_node(struct local_zone* z, uint8_t* nm, size_t nmlen,
    499 	int nmlabs, struct local_data** res)
    500 {
    501 	struct local_data* ld = local_zone_find_data(z, nm, nmlen, nmlabs);
    502 	if(!ld) {
    503 		/* create a domain name to store rr. */
    504 		ld = (struct local_data*)regional_alloc_zero(z->region,
    505 			sizeof(*ld));
    506 		if(!ld) {
    507 			log_err("out of memory adding local data");
    508 			return 0;
    509 		}
    510 		ld->node.key = ld;
    511 		ld->name = regional_alloc_init(z->region, nm, nmlen);
    512 		if(!ld->name) {
    513 			log_err("out of memory");
    514 			return 0;
    515 		}
    516 		ld->namelen = nmlen;
    517 		ld->namelabs = nmlabs;
    518 		if(!rbtree_insert(&z->data, &ld->node)) {
    519 			log_assert(0); /* duplicate name */
    520 		}
    521 		/* see if empty nonterminals need to be created */
    522 		if(nmlabs > z->namelabs) {
    523 			dname_remove_label(&nm, &nmlen);
    524 			if(!lz_find_create_node(z, nm, nmlen, nmlabs-1, res))
    525 				return 0;
    526 		}
    527 	}
    528 	*res = ld;
    529 	return 1;
    530 }
    531 
    532 /* Mark the SOA record for the zone. This only marks the SOA rrset; the data
    533  * for the RR is entered later on local_zone_enter_rr() as with the other
    534  * records. An artificial soa_negative record with a modified TTL (minimum of
    535  * the TTL and the SOA.MINIMUM) is also created and marked for usage with
    536  * negative answers and to avoid allocations during those answers. */
    537 static int
    538 lz_mark_soa_for_zone(struct local_zone* z, struct ub_packed_rrset_key* soa_rrset,
    539 	uint8_t* rdata, size_t rdata_len, time_t ttl, const char* rrstr)
    540 {
    541 	struct packed_rrset_data* pd = (struct packed_rrset_data*)
    542 		regional_alloc_zero(z->region, sizeof(*pd));
    543 	struct ub_packed_rrset_key* rrset_negative = (struct ub_packed_rrset_key*)
    544 		regional_alloc_zero(z->region, sizeof(*rrset_negative));
    545 	time_t minimum;
    546 	if(!rrset_negative||!pd) {
    547 		log_err("out of memory");
    548 		return 0;
    549 	}
    550 	/* Mark the original SOA record and then continue with the negative one. */
    551 	z->soa = soa_rrset;
    552 	rrset_negative->entry.key = rrset_negative;
    553 	pd->trust = rrset_trust_prim_noglue;
    554 	pd->security = sec_status_insecure;
    555 	rrset_negative->entry.data = pd;
    556 	rrset_negative->rk.dname = soa_rrset->rk.dname;
    557 	rrset_negative->rk.dname_len = soa_rrset->rk.dname_len;
    558 	rrset_negative->rk.type = soa_rrset->rk.type;
    559 	rrset_negative->rk.rrset_class = soa_rrset->rk.rrset_class;
    560 	if(!rrset_insert_rr(z->region, pd, rdata, rdata_len, ttl, rrstr))
    561 		return 0;
    562 	/* last 4 bytes are minimum ttl in network format */
    563 	if(pd->count == 0 || pd->rr_len[0] < 2+4)
    564 		return 0;
    565 	minimum = (time_t)sldns_read_uint32(pd->rr_data[0]+(pd->rr_len[0]-4));
    566 	minimum = ttl<minimum?ttl:minimum;
    567 	pd->ttl = minimum;
    568 	pd->rr_ttl[0] = minimum;
    569 
    570 	z->soa_negative = rrset_negative;
    571 	return 1;
    572 }
    573 
    574 int
    575 local_zone_enter_rr(struct local_zone* z, uint8_t* nm, size_t nmlen,
    576 	int nmlabs, uint16_t rrtype, uint16_t rrclass, time_t ttl,
    577 	uint8_t* rdata, size_t rdata_len, const char* rrstr)
    578 {
    579 	struct local_data* node;
    580 	struct local_rrset* rrset;
    581 	struct packed_rrset_data* pd;
    582 
    583 	if(!lz_find_create_node(z, nm, nmlen, nmlabs, &node)) {
    584 		return 0;
    585 	}
    586 	log_assert(node);
    587 
    588 	/* Reject it if we would end up having CNAME and other data (including
    589 	 * another CNAME) for a redirect zone. */
    590 	if((z->type == local_zone_redirect ||
    591 		z->type == local_zone_inform_redirect) && node->rrsets) {
    592 		const char* othertype = NULL;
    593 		if (rrtype == LDNS_RR_TYPE_CNAME)
    594 			othertype = "other";
    595 		else if (node->rrsets->rrset->rk.type ==
    596 			 htons(LDNS_RR_TYPE_CNAME)) {
    597 			othertype = "CNAME";
    598 		}
    599 		if(othertype) {
    600 			log_err("local-data '%s' in redirect zone must not "
    601 				"coexist with %s local-data", rrstr, othertype);
    602 			return 0;
    603 		}
    604 	}
    605 	rrset = local_data_find_type(node, rrtype, 0);
    606 	if(!rrset) {
    607 		rrset = new_local_rrset(z->region, node, rrtype, rrclass);
    608 		if(!rrset)
    609 			return 0;
    610 		if(query_dname_compare(node->name, z->name) == 0) {
    611 			if(rrtype == LDNS_RR_TYPE_NSEC)
    612 			  rrset->rrset->rk.flags = PACKED_RRSET_NSEC_AT_APEX;
    613 			if(rrtype == LDNS_RR_TYPE_SOA &&
    614 				!lz_mark_soa_for_zone(z, rrset->rrset, rdata, rdata_len, ttl,
    615 					rrstr))
    616 				return 0;
    617 		}
    618 	}
    619 	pd = (struct packed_rrset_data*)rrset->rrset->entry.data;
    620 	log_assert(rrset && pd);
    621 
    622 	/* check for duplicate RR */
    623 	if(rr_is_duplicate(pd, rdata, rdata_len)) {
    624 		verbose(VERB_ALGO, "ignoring duplicate RR: %s", rrstr);
    625 		return 1;
    626 	}
    627 	return rrset_insert_rr(z->region, pd, rdata, rdata_len, ttl, rrstr);
    628 }
    629 
    630 /** enter data RR into auth zone */
    631 static int
    632 lz_enter_rr_into_zone(struct local_zone* z, const char* rrstr)
    633 {
    634 	uint8_t* nm;
    635 	size_t nmlen;
    636 	int nmlabs, ret;
    637 	uint16_t rrtype = 0, rrclass = 0;
    638 	time_t ttl = 0;
    639 	uint8_t rr[LDNS_RR_BUF_SIZE];
    640 	uint8_t* rdata;
    641 	size_t rdata_len;
    642 	if(!rrstr_get_rr_content(rrstr, &nm, &rrtype, &rrclass, &ttl, rr,
    643 		sizeof(rr), &rdata, &rdata_len)) {
    644 		log_err("bad local-data: %s", rrstr);
    645 		return 0;
    646 	}
    647 	log_assert(z->dclass == rrclass);
    648 	if((z->type == local_zone_redirect ||
    649 		z->type == local_zone_inform_redirect) &&
    650 		query_dname_compare(z->name, nm) != 0) {
    651 		log_err("local-data in redirect zone must reside at top of zone"
    652 			", not at %s", rrstr);
    653 		free(nm);
    654 		return 0;
    655 	}
    656 	nmlabs = dname_count_size_labels(nm, &nmlen);
    657 	ret = local_zone_enter_rr(z, nm, nmlen, nmlabs, rrtype, rrclass, ttl,
    658 		rdata, rdata_len, rrstr);
    659 	free(nm);
    660 	return ret;
    661 }
    662 
    663 /** enter a data RR into auth data; a zone for it must exist */
    664 static int
    665 lz_enter_rr_str(struct local_zones* zones, const char* rr)
    666 {
    667 	uint8_t* rr_name;
    668 	uint16_t rr_class, rr_type;
    669 	size_t len;
    670 	int labs;
    671 	struct local_zone* z;
    672 	int r;
    673 	if(!get_rr_nameclass(rr, &rr_name, &rr_class, &rr_type)) {
    674 		log_err("bad rr %s", rr);
    675 		return 0;
    676 	}
    677 	labs = dname_count_size_labels(rr_name, &len);
    678 	lock_rw_rdlock(&zones->lock);
    679 	z = local_zones_lookup(zones, rr_name, len, labs, rr_class, rr_type, 1);
    680 	if(!z) {
    681 		lock_rw_unlock(&zones->lock);
    682 		log_err("internal error: no zone for rr %s", rr);
    683 		free(rr_name);
    684 		return 0;
    685 	}
    686 	lock_rw_wrlock(&z->lock);
    687 	lock_rw_unlock(&zones->lock);
    688 	free(rr_name);
    689 	r = lz_enter_rr_into_zone(z, rr);
    690 	lock_rw_unlock(&z->lock);
    691 	return r;
    692 }
    693 
    694 /** enter tagstring into zone */
    695 static int
    696 lz_enter_zone_tag(struct local_zones* zones, char* zname, uint8_t* list,
    697 	size_t len, uint16_t rr_class)
    698 {
    699 	uint8_t dname[LDNS_MAX_DOMAINLEN+1];
    700 	size_t dname_len = sizeof(dname);
    701 	int dname_labs, r = 0;
    702 	struct local_zone* z;
    703 
    704 	if(sldns_str2wire_dname_buf(zname, dname, &dname_len) != 0) {
    705 		log_err("cannot parse zone name in local-zone-tag: %s", zname);
    706 		return 0;
    707 	}
    708 	dname_labs = dname_count_labels(dname);
    709 
    710 	lock_rw_rdlock(&zones->lock);
    711 	z = local_zones_find(zones, dname, dname_len, dname_labs, rr_class);
    712 	if(!z) {
    713 		lock_rw_unlock(&zones->lock);
    714 		log_err("no local-zone for tag %s", zname);
    715 		return 0;
    716 	}
    717 	lock_rw_wrlock(&z->lock);
    718 	lock_rw_unlock(&zones->lock);
    719 	free(z->taglist);
    720 	z->taglist = memdup(list, len);
    721 	z->taglen = len;
    722 	if(z->taglist)
    723 		r = 1;
    724 	lock_rw_unlock(&z->lock);
    725 	return r;
    726 }
    727 
    728 /** enter override into zone */
    729 static int
    730 lz_enter_override(struct local_zones* zones, char* zname, char* netblock,
    731 	char* type, uint16_t rr_class)
    732 {
    733 	uint8_t dname[LDNS_MAX_DOMAINLEN+1];
    734 	size_t dname_len = sizeof(dname);
    735 	int dname_labs;
    736 	struct sockaddr_storage addr;
    737 	int net;
    738 	socklen_t addrlen;
    739 	struct local_zone* z;
    740 	enum localzone_type t;
    741 
    742 	/* parse zone name */
    743 	if(sldns_str2wire_dname_buf(zname, dname, &dname_len) != 0) {
    744 		log_err("cannot parse zone name in local-zone-override: %s %s",
    745 			zname, netblock);
    746 		return 0;
    747 	}
    748 	dname_labs = dname_count_labels(dname);
    749 
    750 	/* parse netblock */
    751 	if(!netblockstrtoaddr(netblock, UNBOUND_DNS_PORT, &addr, &addrlen,
    752 		&net)) {
    753 		log_err("cannot parse netblock in local-zone-override: %s %s",
    754 			zname, netblock);
    755 		return 0;
    756 	}
    757 
    758 	/* parse zone type */
    759 	if(!local_zone_str2type(type, &t)) {
    760 		log_err("cannot parse type in local-zone-override: %s %s %s",
    761 			zname, netblock, type);
    762 		return 0;
    763 	}
    764 
    765 	/* find localzone entry */
    766 	lock_rw_rdlock(&zones->lock);
    767 	z = local_zones_find(zones, dname, dname_len, dname_labs, rr_class);
    768 	if(!z) {
    769 		lock_rw_unlock(&zones->lock);
    770 		log_err("no local-zone for local-zone-override %s", zname);
    771 		return 0;
    772 	}
    773 	lock_rw_wrlock(&z->lock);
    774 	lock_rw_unlock(&zones->lock);
    775 
    776 	/* create netblock addr_tree if not present yet */
    777 	if(!z->override_tree) {
    778 		z->override_tree = (struct rbtree_type*)regional_alloc_zero(
    779 			z->region, sizeof(*z->override_tree));
    780 		if(!z->override_tree) {
    781 			lock_rw_unlock(&z->lock);
    782 			log_err("out of memory");
    783 			return 0;
    784 		}
    785 		addr_tree_init(z->override_tree);
    786 	}
    787 	/* add new elem to tree */
    788 	if(z->override_tree) {
    789 		struct local_zone_override* n;
    790 		n = (struct local_zone_override*)regional_alloc_zero(
    791 			z->region, sizeof(*n));
    792 		if(!n) {
    793 			lock_rw_unlock(&z->lock);
    794 			log_err("out of memory");
    795 			return 0;
    796 		}
    797 		n->type = t;
    798 		if(!addr_tree_insert(z->override_tree,
    799 			(struct addr_tree_node*)n, &addr, addrlen, net)) {
    800 			lock_rw_unlock(&z->lock);
    801 			log_err("duplicate local-zone-override %s %s",
    802 				zname, netblock);
    803 			return 1;
    804 		}
    805 	}
    806 
    807 	lock_rw_unlock(&z->lock);
    808 	return 1;
    809 }
    810 
    811 /** parse local-zone: statements */
    812 static int
    813 lz_enter_zones(struct local_zones* zones, struct config_file* cfg)
    814 {
    815 	struct config_str2list* p;
    816 #ifndef THREADS_DISABLED
    817 	struct local_zone* z;
    818 #endif
    819 	for(p = cfg->local_zones; p; p = p->next) {
    820 		if(!(
    821 #ifndef THREADS_DISABLED
    822 			z=
    823 #endif
    824 			lz_enter_zone(zones, p->str, p->str2,
    825 			LDNS_RR_CLASS_IN)))
    826 			return 0;
    827 		lock_rw_unlock(&z->lock);
    828 	}
    829 	return 1;
    830 }
    831 
    832 /** lookup a zone in rbtree; exact match only; SLOW due to parse */
    833 static int
    834 lz_exists(struct local_zones* zones, const char* name)
    835 {
    836 	struct local_zone z;
    837 	z.node.key = &z;
    838 	z.dclass = LDNS_RR_CLASS_IN;
    839 	if(!parse_dname(name, &z.name, &z.namelen, &z.namelabs)) {
    840 		log_err("bad name %s", name);
    841 		return 0;
    842 	}
    843 	lock_rw_rdlock(&zones->lock);
    844 	if(rbtree_search(&zones->ztree, &z.node)) {
    845 		lock_rw_unlock(&zones->lock);
    846 		free(z.name);
    847 		return 1;
    848 	}
    849 	lock_rw_unlock(&zones->lock);
    850 	free(z.name);
    851 	return 0;
    852 }
    853 
    854 /** lookup a zone in cfg->nodefault list */
    855 static int
    856 lz_nodefault(struct config_file* cfg, const char* name)
    857 {
    858 	struct config_strlist* p;
    859 	size_t len = strlen(name);
    860 	if(len == 0) return 0;
    861 	if(name[len-1] == '.') len--;
    862 
    863 	for(p = cfg->local_zones_nodefault; p; p = p->next) {
    864 		/* compare zone name, lowercase, compare without ending . */
    865 		if(strncasecmp(p->str, name, len) == 0 &&
    866 			(strlen(p->str) == len || (strlen(p->str)==len+1 &&
    867 			p->str[len] == '.')))
    868 			return 1;
    869 	}
    870 	return 0;
    871 }
    872 
    873 /** enter reverse default zone */
    874 static int
    875 add_reverse_default(struct local_zones* zones, struct config_file* cfg,
    876         const char* name)
    877 {
    878 	struct local_zone* z;
    879 	char str[1024]; /* known long enough */
    880 	if(lz_exists(zones, name) || lz_nodefault(cfg, name))
    881 		return 1; /* do not enter default content */
    882 	if(!(z=lz_enter_zone(zones, name, "static", LDNS_RR_CLASS_IN)))
    883 		return 0;
    884 	snprintf(str, sizeof(str), "%s 10800 IN SOA localhost. "
    885 		"nobody.invalid. 1 3600 1200 604800 10800", name);
    886 	if(!lz_enter_rr_into_zone(z, str)) {
    887 		lock_rw_unlock(&z->lock);
    888 		return 0;
    889 	}
    890 	snprintf(str, sizeof(str), "%s 10800 IN NS localhost. ", name);
    891 	if(!lz_enter_rr_into_zone(z, str)) {
    892 		lock_rw_unlock(&z->lock);
    893 		return 0;
    894 	}
    895 	if(strncasecmp("127.in-addr.arpa.", name, 17) ==  0) {
    896 		if(!lz_enter_rr_into_zone(z,
    897 			"1.0.0.127.in-addr.arpa. 10800 IN PTR localhost.")) {
    898 			lock_rw_unlock(&z->lock);
    899 			return 0;
    900 		}
    901 	} else if(strncasecmp("1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.ip6.arpa.", name, 73) ==  0) {
    902 		snprintf(str, sizeof(str), "%s 10800 IN PTR localhost.", name);
    903 		if(!lz_enter_rr_into_zone(z, str)) {
    904 			lock_rw_unlock(&z->lock);
    905 			return 0;
    906 		}
    907 	}
    908 	lock_rw_unlock(&z->lock);
    909 	return 1;
    910 }
    911 
    912 /** enter (AS112) empty default zone */
    913 static int
    914 add_empty_default(struct local_zones* zones, struct config_file* cfg,
    915         const char* name)
    916 {
    917 	struct local_zone* z;
    918 	char str[1024]; /* known long enough */
    919 	if(lz_exists(zones, name) || lz_nodefault(cfg, name))
    920 		return 1; /* do not enter default content */
    921 	if(!(z=lz_enter_zone(zones, name, "static", LDNS_RR_CLASS_IN)))
    922 		return 0;
    923 	snprintf(str, sizeof(str), "%s 10800 IN SOA localhost. "
    924 		"nobody.invalid. 1 3600 1200 604800 10800", name);
    925 	if(!lz_enter_rr_into_zone(z, str)) {
    926 		lock_rw_unlock(&z->lock);
    927 		return 0;
    928 	}
    929 	snprintf(str, sizeof(str), "%s 10800 IN NS localhost. ", name);
    930 	if(!lz_enter_rr_into_zone(z, str)) {
    931 		lock_rw_unlock(&z->lock);
    932 		return 0;
    933 	}
    934 	lock_rw_unlock(&z->lock);
    935 	return 1;
    936 }
    937 
    938 /** enter default zones */
    939 int local_zone_enter_defaults(struct local_zones* zones, struct config_file* cfg)
    940 {
    941 	struct local_zone* z;
    942 	const char** zstr;
    943 
    944 	/* Do not add any default */
    945 	if(cfg->local_zones_disable_default)
    946 		return 1;
    947 
    948 	/* this list of zones is from RFC 6303 and RFC 7686 */
    949 
    950 	/* block localhost level zones first, then onion and later the LAN zones */
    951 
    952 	/* localhost. zone */
    953 	if(!lz_exists(zones, "localhost.") &&
    954 		!lz_nodefault(cfg, "localhost.")) {
    955 		if(!(z=lz_enter_zone(zones, "localhost.", "redirect",
    956 			LDNS_RR_CLASS_IN)) ||
    957 		   !lz_enter_rr_into_zone(z,
    958 			"localhost. 10800 IN NS localhost.") ||
    959 		   !lz_enter_rr_into_zone(z,
    960 			"localhost. 10800 IN SOA localhost. nobody.invalid. "
    961 			"1 3600 1200 604800 10800") ||
    962 		   !lz_enter_rr_into_zone(z,
    963 			"localhost. 10800 IN A 127.0.0.1") ||
    964 		   !lz_enter_rr_into_zone(z,
    965 			"localhost. 10800 IN AAAA ::1")) {
    966 			log_err("out of memory adding default zone");
    967 			if(z) { lock_rw_unlock(&z->lock); }
    968 			return 0;
    969 		}
    970 		lock_rw_unlock(&z->lock);
    971 	}
    972 
    973 	/* ip4 and ip6 reverse */
    974 	for(zstr = local_zones_default_reverse; *zstr; zstr++) {
    975 		if(!add_reverse_default(zones, cfg, *zstr)) {
    976 			log_err("out of memory adding default zone");
    977 			return 0;
    978 		}
    979 	}
    980 
    981 	/* special-use zones */
    982 	for(zstr = local_zones_default_special; *zstr; zstr++) {
    983 		if(!add_empty_default(zones, cfg, *zstr)) {
    984 			log_err("out of memory adding default zone");
    985 			return 0;
    986 		}
    987 	}
    988 
    989 	/* block AS112 zones, unless asked not to */
    990 	if(!cfg->unblock_lan_zones) {
    991 		for(zstr = as112_zones; *zstr; zstr++) {
    992 			if(!add_empty_default(zones, cfg, *zstr)) {
    993 				log_err("out of memory adding default zone");
    994 				return 0;
    995 			}
    996 		}
    997 	}
    998 	return 1;
    999 }
   1000 
   1001 /** parse local-zone-override: statements */
   1002 static int
   1003 lz_enter_overrides(struct local_zones* zones, struct config_file* cfg)
   1004 {
   1005 	struct config_str3list* p;
   1006 	for(p = cfg->local_zone_overrides; p; p = p->next) {
   1007 		if(!lz_enter_override(zones, p->str, p->str2, p->str3,
   1008 			LDNS_RR_CLASS_IN))
   1009 			return 0;
   1010 	}
   1011 	return 1;
   1012 }
   1013 
   1014 /* return closest parent in the tree, NULL if none */
   1015 static struct local_zone* find_closest_parent(struct local_zone* curr,
   1016 	struct local_zone* prev)
   1017 {
   1018 	struct local_zone* p;
   1019 	int m;
   1020 	if(!prev || prev->dclass != curr->dclass) return NULL;
   1021 	(void)dname_lab_cmp(prev->name, prev->namelabs, curr->name,
   1022 		curr->namelabs, &m); /* we know prev is smaller */
   1023 	/* sort order like: . com. bla.com. zwb.com. net. */
   1024 	/* find the previous, or parent-parent-parent */
   1025 	for(p = prev; p; p = p->parent) {
   1026 		/* looking for name with few labels, a parent */
   1027 		if(p->namelabs <= m) {
   1028 			/* ==: since prev matched m, this is closest*/
   1029 			/* <: prev matches more, but is not a parent,
   1030 			    * this one is a (grand)parent */
   1031 			return p;
   1032 		}
   1033 	}
   1034 	return NULL;
   1035 }
   1036 
   1037 /** setup parent pointers, so that a lookup can be done for closest match */
   1038 void
   1039 lz_init_parents(struct local_zones* zones)
   1040 {
   1041 	struct local_zone* node, *prev = NULL;
   1042 	lock_rw_wrlock(&zones->lock);
   1043 	RBTREE_FOR(node, struct local_zone*, &zones->ztree) {
   1044 		lock_rw_wrlock(&node->lock);
   1045 		node->parent = find_closest_parent(node, prev);
   1046 		prev = node;
   1047 		if(node->override_tree)
   1048 			addr_tree_init_parents(node->override_tree);
   1049 		lock_rw_unlock(&node->lock);
   1050 	}
   1051 	lock_rw_unlock(&zones->lock);
   1052 }
   1053 
   1054 /** enter implicit transparent zone for local-data: without local-zone: */
   1055 static int
   1056 lz_setup_implicit(struct local_zones* zones, struct config_file* cfg)
   1057 {
   1058 	/* walk over all items that have no parent zone and find
   1059 	 * the name that covers them all (could be the root) and
   1060 	 * add that as a transparent zone */
   1061 	struct config_strlist* p;
   1062 	int have_name = 0;
   1063 	int have_other_classes = 0;
   1064 	uint16_t dclass = 0;
   1065 	uint8_t* nm = 0;
   1066 	size_t nmlen = 0;
   1067 	int nmlabs = 0;
   1068 	int match = 0; /* number of labels match count */
   1069 
   1070 	lz_init_parents(zones); /* to enable local_zones_lookup() */
   1071 	for(p = cfg->local_data; p; p = p->next) {
   1072 		uint8_t* rr_name;
   1073 		uint16_t rr_class, rr_type;
   1074 		size_t len;
   1075 		int labs;
   1076 		if(!get_rr_nameclass(p->str, &rr_name, &rr_class, &rr_type)) {
   1077 			log_err("Bad local-data RR %s", p->str);
   1078 			return 0;
   1079 		}
   1080 		labs = dname_count_size_labels(rr_name, &len);
   1081 		lock_rw_rdlock(&zones->lock);
   1082 		if(!local_zones_lookup(zones, rr_name, len, labs, rr_class,
   1083 			rr_type, 1)) {
   1084 			/* Check if there is a zone that this could go
   1085 			 * under but for different class; created zones are
   1086 			 * always for LDNS_RR_CLASS_IN. Create the zone with
   1087 			 * a different class but the same configured
   1088 			 * local_zone_type. */
   1089 			struct local_zone* z = local_zones_lookup(zones,
   1090 				rr_name, len, labs, LDNS_RR_CLASS_IN, rr_type,
   1091 				1);
   1092 			if(z) {
   1093 				uint8_t* name = memdup(z->name, z->namelen);
   1094 				size_t znamelen = z->namelen;
   1095 				int znamelabs = z->namelabs;
   1096 				enum localzone_type ztype = z->type;
   1097 				lock_rw_unlock(&zones->lock);
   1098 				if(!name) {
   1099 					log_err("out of memory");
   1100 					free(rr_name);
   1101 					return 0;
   1102 				}
   1103 				if(!(
   1104 #ifndef THREADS_DISABLED
   1105 					z =
   1106 #endif
   1107 					lz_enter_zone_dname(zones, name,
   1108 						znamelen, znamelabs,
   1109 						ztype, rr_class))) {
   1110 					free(rr_name);
   1111 					return 0;
   1112 				}
   1113 				lock_rw_unlock(&z->lock);
   1114 				free(rr_name);
   1115 				continue;
   1116 			}
   1117 			if(!have_name) {
   1118 				dclass = rr_class;
   1119 				nm = rr_name;
   1120 				nmlen = len;
   1121 				nmlabs = labs;
   1122 				match = labs;
   1123 				have_name = 1;
   1124 			} else {
   1125 				int m;
   1126 				if(rr_class != dclass) {
   1127 					/* process other classes later */
   1128 					free(rr_name);
   1129 					have_other_classes = 1;
   1130 					lock_rw_unlock(&zones->lock);
   1131 					continue;
   1132 				}
   1133 				/* find smallest shared topdomain */
   1134 				(void)dname_lab_cmp(nm, nmlabs,
   1135 					rr_name, labs, &m);
   1136 				free(rr_name);
   1137 				if(m < match)
   1138 					match = m;
   1139 			}
   1140 		} else free(rr_name);
   1141 		lock_rw_unlock(&zones->lock);
   1142 	}
   1143 	if(have_name) {
   1144 		uint8_t* n2;
   1145 #ifndef THREADS_DISABLED
   1146 		struct local_zone* z;
   1147 #endif
   1148 		/* allocate zone of smallest shared topdomain to contain em */
   1149 		n2 = nm;
   1150 		dname_remove_labels(&n2, &nmlen, nmlabs - match);
   1151 		n2 = memdup(n2, nmlen);
   1152 		free(nm);
   1153 		if(!n2) {
   1154 			log_err("out of memory");
   1155 			return 0;
   1156 		}
   1157 		log_nametypeclass(VERB_ALGO, "implicit transparent local-zone",
   1158 			n2, 0, dclass);
   1159 		if(!(
   1160 #ifndef THREADS_DISABLED
   1161 			z=
   1162 #endif
   1163 			lz_enter_zone_dname(zones, n2, nmlen, match,
   1164 			local_zone_transparent, dclass))) {
   1165 			return 0;
   1166 		}
   1167 		lock_rw_unlock(&z->lock);
   1168 	}
   1169 	if(have_other_classes) {
   1170 		/* restart to setup other class */
   1171 		return lz_setup_implicit(zones, cfg);
   1172 	}
   1173 	return 1;
   1174 }
   1175 
   1176 /** enter local-zone-tag info */
   1177 static int
   1178 lz_enter_zone_tags(struct local_zones* zones, struct config_file* cfg)
   1179 {
   1180 	struct config_strbytelist* p;
   1181 	int c = 0;
   1182 	for(p = cfg->local_zone_tags; p; p = p->next) {
   1183 		if(!lz_enter_zone_tag(zones, p->str, p->str2, p->str2len,
   1184 			LDNS_RR_CLASS_IN))
   1185 			return 0;
   1186 		c++;
   1187 	}
   1188 	if(c) verbose(VERB_ALGO, "applied tags to %d local zones", c);
   1189 	return 1;
   1190 }
   1191 
   1192 /** enter auth data */
   1193 static int
   1194 lz_enter_data(struct local_zones* zones, struct config_file* cfg)
   1195 {
   1196 	struct config_strlist* p;
   1197 	for(p = cfg->local_data; p; p = p->next) {
   1198 		if(!lz_enter_rr_str(zones, p->str))
   1199 			return 0;
   1200 	}
   1201 	return 1;
   1202 }
   1203 
   1204 /** free memory from config */
   1205 static void
   1206 lz_freeup_cfg(struct config_file* cfg)
   1207 {
   1208 	config_deldblstrlist(cfg->local_zones);
   1209 	cfg->local_zones = NULL;
   1210 	config_delstrlist(cfg->local_zones_nodefault);
   1211 	cfg->local_zones_nodefault = NULL;
   1212 	config_delstrlist(cfg->local_data);
   1213 	cfg->local_data = NULL;
   1214 }
   1215 
   1216 int
   1217 local_zones_apply_cfg(struct local_zones* zones, struct config_file* cfg)
   1218 {
   1219 	/* create zones from zone statements. */
   1220 	if(!lz_enter_zones(zones, cfg)) {
   1221 		return 0;
   1222 	}
   1223 	/* apply default zones+content (unless disabled, or overridden) */
   1224 	if(!local_zone_enter_defaults(zones, cfg)) {
   1225 		return 0;
   1226 	}
   1227 	/* enter local zone overrides */
   1228 	if(!lz_enter_overrides(zones, cfg)) {
   1229 		return 0;
   1230 	}
   1231 	/* create implicit transparent zone from data. */
   1232 	if(!lz_setup_implicit(zones, cfg)) {
   1233 		return 0;
   1234 	}
   1235 
   1236 	/* setup parent ptrs for lookup during data entry */
   1237 	lz_init_parents(zones);
   1238 	/* insert local zone tags */
   1239 	if(!lz_enter_zone_tags(zones, cfg)) {
   1240 		return 0;
   1241 	}
   1242 	/* insert local data */
   1243 	if(!lz_enter_data(zones, cfg)) {
   1244 		return 0;
   1245 	}
   1246 	/* freeup memory from cfg struct. */
   1247 	lz_freeup_cfg(cfg);
   1248 	return 1;
   1249 }
   1250 
   1251 struct local_zone*
   1252 local_zones_lookup(struct local_zones* zones,
   1253         uint8_t* name, size_t len, int labs, uint16_t dclass, uint16_t dtype,
   1254 	int foradd)
   1255 {
   1256 	return local_zones_tags_lookup(zones, name, len, labs,
   1257 		dclass, dtype, NULL, 0, 1, foradd);
   1258 }
   1259 
   1260 struct local_zone*
   1261 local_zones_tags_lookup(struct local_zones* zones,
   1262         uint8_t* name, size_t len, int labs, uint16_t dclass, uint16_t dtype,
   1263 	uint8_t* taglist, size_t taglen, int ignoretags, int foradd)
   1264 {
   1265 	rbnode_type* res = NULL;
   1266 	struct local_zone *result;
   1267 	struct local_zone key;
   1268 	int m;
   1269 	key.node.key = &key;
   1270 	key.dclass = dclass;
   1271 	/* for type DS use a zone higher when on a zonecut */
   1272 	if(dtype == LDNS_RR_TYPE_DS && !dname_is_root(name)) {
   1273 		/* If this is at a zone cut, of a local-zone, and it is
   1274 		 * of type always_refuse. Then also refuse the type DS
   1275 		 * for it. That could make it DNSSEC bogus, but it is
   1276 		 * REFUSED anyway. It stops CNAME type answers in the
   1277 		 * type DS lookup. */
   1278 		key.name = name;
   1279 		key.namelen = len;
   1280 		key.namelabs = labs;
   1281 		/* For additions and removals, use the ordinary rule,
   1282 		 * to remove a label for type DS to locate the parent zone.
   1283 		 * That is where the DS RR needs to be put. */
   1284 		if(!foradd &&
   1285 			(result=(struct local_zone*)rbtree_search(
   1286 			&zones->ztree, &key)) != NULL &&
   1287 			result->type == local_zone_always_refuse) {
   1288 			/* The type DS does not go up one label. */
   1289 			return result;
   1290 		} else {
   1291 			dname_remove_label(&name, &len);
   1292 			labs--;
   1293 		}
   1294 	}
   1295 	key.name = name;
   1296 	key.namelen = len;
   1297 	key.namelabs = labs;
   1298 	rbtree_find_less_equal(&zones->ztree, &key, &res);
   1299 	result = (struct local_zone*)res;
   1300 	/* exact or smaller element (or no element) */
   1301 	if(!result || result->dclass != dclass)
   1302 		return NULL;
   1303 	/* count number of labels matched */
   1304 	(void)dname_lab_cmp(result->name, result->namelabs, key.name,
   1305 		key.namelabs, &m);
   1306 	while(result) { /* go up until qname is zone or subdomain of zone */
   1307 		if(result->namelabs <= m)
   1308 			if(ignoretags || !result->taglist ||
   1309 				taglist_intersect(result->taglist,
   1310 				result->taglen, taglist, taglen))
   1311 				break;
   1312 		result = result->parent;
   1313 	}
   1314 	return result;
   1315 }
   1316 
   1317 struct local_zone*
   1318 local_zones_find(struct local_zones* zones,
   1319         uint8_t* name, size_t len, int labs, uint16_t dclass)
   1320 {
   1321 	struct local_zone key;
   1322 	key.node.key = &key;
   1323 	key.dclass = dclass;
   1324 	key.name = name;
   1325 	key.namelen = len;
   1326 	key.namelabs = labs;
   1327 	/* exact */
   1328 	return (struct local_zone*)rbtree_search(&zones->ztree, &key);
   1329 }
   1330 
   1331 struct local_zone*
   1332 local_zones_find_le(struct local_zones* zones,
   1333         uint8_t* name, size_t len, int labs, uint16_t dclass,
   1334 	int* exact)
   1335 {
   1336 	struct local_zone key;
   1337 	rbnode_type *node;
   1338 	key.node.key = &key;
   1339 	key.dclass = dclass;
   1340 	key.name = name;
   1341 	key.namelen = len;
   1342 	key.namelabs = labs;
   1343 	*exact = rbtree_find_less_equal(&zones->ztree, &key, &node);
   1344 	return (struct local_zone*)node;
   1345 }
   1346 
   1347 /** encode answer consisting of 1 rrset */
   1348 static int
   1349 local_encode(struct query_info* qinfo, struct module_env* env,
   1350 	struct edns_data* edns, struct comm_reply* repinfo, sldns_buffer* buf,
   1351 	struct regional* temp, struct ub_packed_rrset_key* rrset, int ansec,
   1352 	int rcode)
   1353 {
   1354 	struct reply_info rep;
   1355 	uint16_t udpsize;
   1356 	/* make answer with time=0 for fixed TTL values */
   1357 	memset(&rep, 0, sizeof(rep));
   1358 	rep.flags = (uint16_t)((BIT_QR | BIT_AA | BIT_RA) | rcode);
   1359 	rep.qdcount = 1;
   1360 	if(ansec)
   1361 		rep.an_numrrsets = 1;
   1362 	else	rep.ns_numrrsets = 1;
   1363 	rep.rrset_count = 1;
   1364 	rep.rrsets = &rrset;
   1365 	rep.reason_bogus = LDNS_EDE_NONE;
   1366 	udpsize = edns->udp_size;
   1367 	edns->edns_version = EDNS_ADVERTISED_VERSION;
   1368 	edns->udp_size = EDNS_ADVERTISED_SIZE;
   1369 	edns->ext_rcode = 0;
   1370 	edns->bits &= EDNS_DO;
   1371 	if(!inplace_cb_reply_local_call(env, qinfo, NULL, &rep, rcode, edns,
   1372 		repinfo, temp, env->now_tv) || !reply_info_answer_encode(qinfo, &rep,
   1373 		*(uint16_t*)sldns_buffer_begin(buf), sldns_buffer_read_u16_at(buf, 2),
   1374 		buf, 0, 0, temp, udpsize, edns, (int)(edns->bits&EDNS_DO), 0)) {
   1375 		error_encode(buf, (LDNS_RCODE_SERVFAIL|BIT_AA), qinfo,
   1376 			*(uint16_t*)sldns_buffer_begin(buf),
   1377 			sldns_buffer_read_u16_at(buf, 2), edns);
   1378 	}
   1379 	return 1;
   1380 }
   1381 
   1382 /** encode local error answer */
   1383 static void
   1384 local_error_encode(struct query_info* qinfo, struct module_env* env,
   1385 	struct edns_data* edns, struct comm_reply* repinfo, sldns_buffer* buf,
   1386 	struct regional* temp, int rcode, int r, int ede_code,
   1387 	const char* ede_txt)
   1388 {
   1389 	edns->edns_version = EDNS_ADVERTISED_VERSION;
   1390 	edns->udp_size = EDNS_ADVERTISED_SIZE;
   1391 	edns->ext_rcode = 0;
   1392 	edns->bits &= EDNS_DO;
   1393 
   1394 	if(!inplace_cb_reply_local_call(env, qinfo, NULL, NULL,
   1395 		rcode, edns, repinfo, temp, env->now_tv))
   1396 		edns->opt_list_inplace_cb_out = NULL;
   1397 
   1398 	if(ede_code != LDNS_EDE_NONE && env->cfg->ede) {
   1399 		edns_opt_list_append_ede(&edns->opt_list_out, temp,
   1400 			ede_code, ede_txt);
   1401 	}
   1402 
   1403 	error_encode(buf, r, qinfo, *(uint16_t*)sldns_buffer_begin(buf),
   1404 		sldns_buffer_read_u16_at(buf, 2), edns);
   1405 }
   1406 
   1407 /** find local data tag string match for the given type in the list */
   1408 int
   1409 local_data_find_tag_datas(const struct query_info* qinfo,
   1410 	struct config_strlist* list, struct ub_packed_rrset_key* r,
   1411 	struct regional* temp)
   1412 {
   1413 	struct config_strlist* p;
   1414 	char buf[65536];
   1415 	uint8_t rr[LDNS_RR_BUF_SIZE];
   1416 	size_t len;
   1417 	int res;
   1418 	struct packed_rrset_data* d;
   1419 	for(p=list; p; p=p->next) {
   1420 		uint16_t rdr_type;
   1421 
   1422 		len = sizeof(rr);
   1423 		/* does this element match the type? */
   1424 		snprintf(buf, sizeof(buf), ". %s", p->str);
   1425 		res = sldns_str2wire_rr_buf(buf, rr, &len, NULL, 3600,
   1426 			NULL, 0, NULL, 0);
   1427 		if(res != 0)
   1428 			/* parse errors are already checked before, in
   1429 			 * acllist check_data, skip this for robustness */
   1430 			continue;
   1431 		if(len < 1 /* . */ + 8 /* typeclassttl*/ + 2 /*rdatalen*/)
   1432 			continue;
   1433 		rdr_type = sldns_wirerr_get_type(rr, len, 1);
   1434 		if(rdr_type != qinfo->qtype && rdr_type != LDNS_RR_TYPE_CNAME)
   1435 			continue;
   1436 
   1437 		/* do we have entries already? if not setup key */
   1438 		if(r->rk.dname == NULL) {
   1439 			r->entry.key = r;
   1440 			r->rk.dname = qinfo->qname;
   1441 			r->rk.dname_len = qinfo->qname_len;
   1442 			r->rk.type = htons(rdr_type);
   1443 			r->rk.rrset_class = htons(qinfo->qclass);
   1444 			r->rk.flags = 0;
   1445 			d = (struct packed_rrset_data*)regional_alloc_zero(
   1446 				temp, sizeof(struct packed_rrset_data)
   1447 				+ sizeof(size_t) + sizeof(uint8_t*) +
   1448 				sizeof(time_t));
   1449 			if(!d) return 0; /* out of memory */
   1450 			r->entry.data = d;
   1451 			d->ttl = sldns_wirerr_get_ttl(rr, len, 1);
   1452 			d->rr_len = (size_t*)((uint8_t*)d +
   1453 				sizeof(struct packed_rrset_data));
   1454 			d->rr_data = (uint8_t**)&(d->rr_len[1]);
   1455 			d->rr_ttl = (time_t*)&(d->rr_data[1]);
   1456 		}
   1457 		d = (struct packed_rrset_data*)r->entry.data;
   1458 		/* add entry to the data */
   1459 		if(d->count != 0) {
   1460 			size_t* oldlen = d->rr_len;
   1461 			uint8_t** olddata = d->rr_data;
   1462 			time_t* oldttl = d->rr_ttl;
   1463 			/* increase arrays for lookup */
   1464 			/* this is of course slow for very many records,
   1465 			 * but most redirects are expected with few records */
   1466 			d->rr_len = (size_t*)regional_alloc_zero(temp,
   1467 				(d->count+1)*sizeof(size_t));
   1468 			d->rr_data = (uint8_t**)regional_alloc_zero(temp,
   1469 				(d->count+1)*sizeof(uint8_t*));
   1470 			d->rr_ttl = (time_t*)regional_alloc_zero(temp,
   1471 				(d->count+1)*sizeof(time_t));
   1472 			if(!d->rr_len || !d->rr_data || !d->rr_ttl)
   1473 				return 0; /* out of memory */
   1474 			/* first one was allocated after struct d, but new
   1475 			 * ones get their own array increment alloc, so
   1476 			 * copy old content */
   1477 			memmove(d->rr_len, oldlen, d->count*sizeof(size_t));
   1478 			memmove(d->rr_data, olddata, d->count*sizeof(uint8_t*));
   1479 			memmove(d->rr_ttl, oldttl, d->count*sizeof(time_t));
   1480 		}
   1481 
   1482 		d->rr_len[d->count] = sldns_wirerr_get_rdatalen(rr, len, 1)+2;
   1483 		d->rr_ttl[d->count] = sldns_wirerr_get_ttl(rr, len, 1);
   1484 		d->rr_data[d->count] = regional_alloc_init(temp,
   1485 			sldns_wirerr_get_rdatawl(rr, len, 1),
   1486 			d->rr_len[d->count]);
   1487 		if(!d->rr_data[d->count])
   1488 			return 0; /* out of memory */
   1489 		d->count++;
   1490 	}
   1491 	if(r->rk.dname)
   1492 		return 1;
   1493 	return 0;
   1494 }
   1495 
   1496 static int
   1497 find_tag_datas(struct query_info* qinfo, struct config_strlist* list,
   1498 	struct ub_packed_rrset_key* r, struct regional* temp)
   1499 {
   1500 	int result = local_data_find_tag_datas(qinfo, list, r, temp);
   1501 
   1502 	/* If we've found a non-exact alias type of local data, make a shallow
   1503 	 * copy of the RRset and remember it in qinfo to complete the alias
   1504 	 * chain later. */
   1505 	if(result && qinfo->qtype != LDNS_RR_TYPE_CNAME &&
   1506 		r->rk.type == htons(LDNS_RR_TYPE_CNAME)) {
   1507 		qinfo->local_alias =
   1508 			regional_alloc_zero(temp, sizeof(struct local_rrset));
   1509 		if(!qinfo->local_alias)
   1510 			return 0; /* out of memory */
   1511 		qinfo->local_alias->rrset =
   1512 			regional_alloc_init(temp, r, sizeof(*r));
   1513 		if(!qinfo->local_alias->rrset) {
   1514 			qinfo->local_alias = NULL;
   1515 			return 0; /* out of memory */
   1516 		}
   1517 	}
   1518 	return result;
   1519 }
   1520 
   1521 int
   1522 local_data_answer(struct local_zone* z, struct module_env* env,
   1523 	struct query_info* qinfo, struct edns_data* edns,
   1524 	struct comm_reply* repinfo, sldns_buffer* buf,
   1525 	struct regional* temp, int labs, struct local_data** ldp,
   1526 	enum localzone_type lz_type, int tag, struct config_strlist** tag_datas,
   1527 	size_t tag_datas_size, char** tagname, int num_tags)
   1528 {
   1529 	struct local_data key;
   1530 	struct local_data* ld;
   1531 	struct local_rrset* lr;
   1532 	key.node.key = &key;
   1533 	key.name = qinfo->qname;
   1534 	key.namelen = qinfo->qname_len;
   1535 	key.namelabs = labs;
   1536 	if(lz_type == local_zone_redirect ||
   1537 		lz_type == local_zone_inform_redirect) {
   1538 		key.name = z->name;
   1539 		key.namelen = z->namelen;
   1540 		key.namelabs = z->namelabs;
   1541 		if(tag != -1 && (size_t)tag<tag_datas_size && tag_datas[tag]) {
   1542 			struct ub_packed_rrset_key r;
   1543 			memset(&r, 0, sizeof(r));
   1544 			if(find_tag_datas(qinfo, tag_datas[tag], &r, temp)) {
   1545 				verbose(VERB_ALGO, "redirect with tag data [%d] %s",
   1546 					tag, (tag<num_tags?tagname[tag]:"null"));
   1547 
   1548 				/* If we found a matching alias, we should
   1549 				 * use it as part of the answer, but we can't
   1550 				 * encode it until we complete the alias
   1551 				 * chain. */
   1552 				if(qinfo->local_alias)
   1553 					return 1;
   1554 				return local_encode(qinfo, env, edns, repinfo, buf, temp,
   1555 					&r, 1, LDNS_RCODE_NOERROR);
   1556 			}
   1557 		}
   1558 	}
   1559 	ld = (struct local_data*)rbtree_search(&z->data, &key.node);
   1560 	*ldp = ld;
   1561 	if(!ld) {
   1562 		return 0;
   1563 	}
   1564 	lr = local_data_find_type(ld, qinfo->qtype, 1);
   1565 	if(!lr)
   1566 		return 0;
   1567 
   1568 	/* Special case for alias matching.  See local_data_answer(). */
   1569 	if((lz_type == local_zone_redirect ||
   1570 		lz_type == local_zone_inform_redirect) &&
   1571 		qinfo->qtype != LDNS_RR_TYPE_CNAME &&
   1572 		lr->rrset->rk.type == htons(LDNS_RR_TYPE_CNAME)) {
   1573 		uint8_t* ctarget;
   1574 		size_t ctargetlen = 0;
   1575 
   1576 		qinfo->local_alias =
   1577 			regional_alloc_zero(temp, sizeof(struct local_rrset));
   1578 		if(!qinfo->local_alias)
   1579 			return 0; /* out of memory */
   1580 		qinfo->local_alias->rrset = regional_alloc_init(
   1581 			temp, lr->rrset, sizeof(*lr->rrset));
   1582 		if(!qinfo->local_alias->rrset) {
   1583 			qinfo->local_alias = NULL;
   1584 			return 0; /* out of memory */
   1585 		}
   1586 		qinfo->local_alias->rrset->rk.dname = qinfo->qname;
   1587 		qinfo->local_alias->rrset->rk.dname_len = qinfo->qname_len;
   1588 		get_cname_target(lr->rrset, &ctarget, &ctargetlen);
   1589 		if(!ctargetlen) {
   1590 			qinfo->local_alias = NULL;
   1591 			return 0; /* invalid cname */
   1592 		}
   1593 		if(dname_is_wild(ctarget)) {
   1594 			/* synthesize cname target */
   1595 			struct packed_rrset_data* d, *lr_d;
   1596 			/* -3 for wildcard label and root label from qname */
   1597 			size_t newtargetlen = qinfo->qname_len + ctargetlen - 3;
   1598 
   1599 			log_assert(ctargetlen >= 3);
   1600 			log_assert(qinfo->qname_len >= 1);
   1601 
   1602 			if(newtargetlen > LDNS_MAX_DOMAINLEN) {
   1603 				qinfo->local_alias = NULL;
   1604 				local_error_encode(qinfo, env, edns, repinfo,
   1605 					buf, temp, LDNS_RCODE_YXDOMAIN,
   1606 					(LDNS_RCODE_YXDOMAIN|BIT_AA),
   1607 					LDNS_EDE_OTHER,
   1608 					"DNAME expansion became too large");
   1609 				return 1;
   1610 			}
   1611 			memset(&qinfo->local_alias->rrset->entry, 0,
   1612 				sizeof(qinfo->local_alias->rrset->entry));
   1613 			qinfo->local_alias->rrset->entry.key =
   1614 				qinfo->local_alias->rrset;
   1615 			qinfo->local_alias->rrset->entry.hash =
   1616 				rrset_key_hash(&qinfo->local_alias->rrset->rk);
   1617 			d = (struct packed_rrset_data*)regional_alloc_zero(temp,
   1618 				sizeof(struct packed_rrset_data) + sizeof(size_t) +
   1619 				sizeof(uint8_t*) + sizeof(time_t) + sizeof(uint16_t)
   1620 				+ newtargetlen);
   1621 			if(!d) {
   1622 				qinfo->local_alias = NULL;
   1623 				return 0; /* out of memory */
   1624 			}
   1625 			lr_d = (struct packed_rrset_data*)lr->rrset->entry.data;
   1626 			qinfo->local_alias->rrset->entry.data = d;
   1627 			d->ttl = lr_d->rr_ttl[0]; /* RFC6672-like behavior:
   1628 					    synth CNAME TTL uses original TTL*/
   1629 			d->count = 1;
   1630 			d->rrsig_count = 0;
   1631 			d->trust = rrset_trust_ans_noAA;
   1632 			d->rr_len = (size_t*)((uint8_t*)d +
   1633 				sizeof(struct packed_rrset_data));
   1634 			d->rr_len[0] = newtargetlen + sizeof(uint16_t);
   1635 			packed_rrset_ptr_fixup(d);
   1636 			d->rr_ttl[0] = d->ttl;
   1637 			sldns_write_uint16(d->rr_data[0], newtargetlen);
   1638 			/* write qname */
   1639 			memmove(d->rr_data[0] + sizeof(uint16_t), qinfo->qname,
   1640 				qinfo->qname_len - 1);
   1641 			/* write cname target wildcard label */
   1642 			memmove(d->rr_data[0] + sizeof(uint16_t) +
   1643 				qinfo->qname_len - 1, ctarget + 2,
   1644 				ctargetlen - 2);
   1645 		}
   1646 		return 1;
   1647 	}
   1648 	if(lz_type == local_zone_redirect ||
   1649 		lz_type == local_zone_inform_redirect) {
   1650 		/* convert rrset name to query name; like a wildcard */
   1651 		struct ub_packed_rrset_key r = *lr->rrset;
   1652 		r.rk.dname = qinfo->qname;
   1653 		r.rk.dname_len = qinfo->qname_len;
   1654 		return local_encode(qinfo, env, edns, repinfo, buf, temp, &r, 1,
   1655 			LDNS_RCODE_NOERROR);
   1656 	}
   1657 	return local_encode(qinfo, env, edns, repinfo, buf, temp, lr->rrset, 1,
   1658 		LDNS_RCODE_NOERROR);
   1659 }
   1660 
   1661 /**
   1662  * See if the local zone does not cover the name, eg. the name is not
   1663  * in the zone and the zone is transparent */
   1664 static int
   1665 local_zone_does_not_cover(struct local_zone* z, struct query_info* qinfo,
   1666 	int labs)
   1667 {
   1668 	struct local_data key;
   1669 	struct local_data* ld = NULL;
   1670 	struct local_rrset* lr = NULL;
   1671 	if(z->type == local_zone_always_transparent || z->type == local_zone_block_a || z->type == local_zone_block_aaaa)
   1672 		return 1;
   1673 	if(z->type != local_zone_transparent
   1674 		&& z->type != local_zone_typetransparent
   1675 		&& z->type != local_zone_inform)
   1676 		return 0;
   1677 	key.node.key = &key;
   1678 	key.name = qinfo->qname;
   1679 	key.namelen = qinfo->qname_len;
   1680 	key.namelabs = labs;
   1681 	ld = (struct local_data*)rbtree_search(&z->data, &key.node);
   1682 	if(z->type == local_zone_transparent || z->type == local_zone_inform
   1683 		|| z->type == local_zone_block_a_wdata
   1684 		|| z->type == local_zone_block_aaaa_wdata)
   1685 		return (ld == NULL);
   1686 	if(ld)
   1687 		lr = local_data_find_type(ld, qinfo->qtype, 1);
   1688 	/* local_zone_typetransparent */
   1689 	return (lr == NULL);
   1690 }
   1691 
   1692 static inline int
   1693 local_zone_is_udp_query(struct comm_reply* repinfo) {
   1694 	return repinfo != NULL
   1695 			? (repinfo->c != NULL
   1696 				? repinfo->c->type == comm_udp
   1697 				: 0)
   1698 			: 0;
   1699 }
   1700 
   1701 int
   1702 local_zones_zone_answer(struct local_zone* z, struct module_env* env,
   1703 	struct query_info* qinfo, struct edns_data* edns,
   1704 	struct comm_reply* repinfo, sldns_buffer* buf, struct regional* temp,
   1705 	struct local_data* ld, enum localzone_type lz_type)
   1706 {
   1707 	if(lz_type == local_zone_deny ||
   1708 		lz_type == local_zone_always_deny ||
   1709 		lz_type == local_zone_inform_deny) {
   1710 		/** no reply at all, signal caller by clearing buffer. */
   1711 		sldns_buffer_clear(buf);
   1712 		sldns_buffer_flip(buf);
   1713 		return 1;
   1714 	} else if(lz_type == local_zone_refuse
   1715 		|| lz_type == local_zone_always_refuse) {
   1716 		local_error_encode(qinfo, env, edns, repinfo, buf, temp,
   1717 			LDNS_RCODE_REFUSED, (LDNS_RCODE_REFUSED|BIT_AA),
   1718 			LDNS_EDE_NONE, NULL);
   1719 		return 1;
   1720 	} else if(lz_type == local_zone_static ||
   1721 		lz_type == local_zone_redirect ||
   1722 		lz_type == local_zone_inform_redirect ||
   1723 		lz_type == local_zone_always_nxdomain ||
   1724 		lz_type == local_zone_always_nodata ||
   1725 		(lz_type == local_zone_truncate
   1726 			&& local_zone_is_udp_query(repinfo))) {
   1727 		/* for static, reply nodata or nxdomain
   1728 		 * for redirect, reply nodata */
   1729 		/* no additional section processing,
   1730 		 * cname, dname or wildcard processing,
   1731 		 * or using closest match for NSEC.
   1732 		 * or using closest match for returning delegation downwards
   1733 		 */
   1734 		int rcode = (ld || lz_type == local_zone_redirect ||
   1735 			lz_type == local_zone_inform_redirect ||
   1736 			lz_type == local_zone_always_nodata ||
   1737 			lz_type == local_zone_truncate)?
   1738 			LDNS_RCODE_NOERROR:LDNS_RCODE_NXDOMAIN;
   1739 		rcode = (lz_type == local_zone_truncate ? (rcode|BIT_TC) : rcode);
   1740 		if(z != NULL && z->soa && z->soa_negative)
   1741 			return local_encode(qinfo, env, edns, repinfo, buf, temp,
   1742 				z->soa_negative, 0, rcode);
   1743 		local_error_encode(qinfo, env, edns, repinfo, buf, temp,
   1744 			rcode, (rcode|BIT_AA), LDNS_EDE_NONE, NULL);
   1745 		return 1;
   1746 	} else if(lz_type == local_zone_typetransparent
   1747 		|| lz_type == local_zone_always_transparent) {
   1748 		/* no NODATA or NXDOMAINS for this zone type */
   1749 		return 0;
   1750 	} else if(lz_type == local_zone_block_a ||
   1751 		lz_type == local_zone_block_a_wdata) {
   1752 		/* Return NODATA for all A queries */
   1753 		if(qinfo->qtype == LDNS_RR_TYPE_A) {
   1754 			local_error_encode(qinfo, env, edns, repinfo, buf, temp,
   1755 				LDNS_RCODE_NOERROR, (LDNS_RCODE_NOERROR|BIT_AA),
   1756 				LDNS_EDE_NONE, NULL);
   1757 				return 1;
   1758 		}
   1759 
   1760 		return 0;
   1761 	} else if(lz_type == local_zone_block_aaaa ||
   1762 		lz_type == local_zone_block_aaaa_wdata) {
   1763 		/* Return NODATA for all AAAA queries */
   1764 		if(qinfo->qtype == LDNS_RR_TYPE_AAAA) {
   1765 			local_error_encode(qinfo, env, edns, repinfo, buf, temp,
   1766 				LDNS_RCODE_NOERROR, (LDNS_RCODE_NOERROR|BIT_AA),
   1767 				LDNS_EDE_NONE, NULL);
   1768 				return 1;
   1769 		}
   1770 
   1771 		return 0;
   1772 	} else if(lz_type == local_zone_always_null) {
   1773 		/* 0.0.0.0 or ::0 or noerror/nodata for this zone type,
   1774 		 * used for blocklists. */
   1775 		if(qinfo->qtype == LDNS_RR_TYPE_A ||
   1776 			qinfo->qtype == LDNS_RR_TYPE_AAAA) {
   1777 			struct ub_packed_rrset_key lrr;
   1778 			struct packed_rrset_data d;
   1779 			time_t rr_ttl = 3600;
   1780 			size_t rr_len = 0;
   1781 			uint8_t rr_data[2+16] = {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0};
   1782 			uint8_t* rr_datas = rr_data;
   1783 			memset(&lrr, 0, sizeof(lrr));
   1784 			memset(&d, 0, sizeof(d));
   1785 			lrr.entry.data = &d;
   1786 			lrr.rk.dname = qinfo->qname;
   1787 			lrr.rk.dname_len = qinfo->qname_len;
   1788 			lrr.rk.type = htons(qinfo->qtype);
   1789 			lrr.rk.rrset_class = htons(qinfo->qclass);
   1790 			if(qinfo->qtype == LDNS_RR_TYPE_A) {
   1791 				rr_len = 4;
   1792 				sldns_write_uint16(rr_data, rr_len);
   1793 				rr_len += 2;
   1794 			} else {
   1795 				rr_len = 16;
   1796 				sldns_write_uint16(rr_data, rr_len);
   1797 				rr_len += 2;
   1798 			}
   1799 			d.ttl = rr_ttl;
   1800 			d.count = 1;
   1801 			d.rr_len = &rr_len;
   1802 			d.rr_data = &rr_datas;
   1803 			d.rr_ttl = &rr_ttl;
   1804 			return local_encode(qinfo, env, edns, repinfo, buf, temp,
   1805 				&lrr, 1, LDNS_RCODE_NOERROR);
   1806 		} else {
   1807 			/* NODATA: No EDE needed */
   1808 			local_error_encode(qinfo, env, edns, repinfo, buf,
   1809 				temp, LDNS_RCODE_NOERROR,
   1810 				(LDNS_RCODE_NOERROR|BIT_AA), -1, NULL);
   1811 		}
   1812 		return 1;
   1813 	}
   1814 	/* else lz_type == local_zone_transparent */
   1815 
   1816 	/* if the zone is transparent and the name exists, but the type
   1817 	 * does not, then we should make this noerror/nodata */
   1818 	if(ld && ld->rrsets) {
   1819 		int rcode = LDNS_RCODE_NOERROR;
   1820 		if(z != NULL && z->soa && z->soa_negative)
   1821 			return local_encode(qinfo, env, edns, repinfo, buf, temp,
   1822 				z->soa_negative, 0, rcode);
   1823 		/* NODATA: No EDE needed */
   1824 		local_error_encode(qinfo, env, edns, repinfo, buf, temp, rcode,
   1825 			(rcode|BIT_AA), LDNS_EDE_NONE, NULL);
   1826 		return 1;
   1827 	}
   1828 
   1829 	/* stop here, and resolve further on */
   1830 	return 0;
   1831 }
   1832 
   1833 /** print log information for an inform zone query */
   1834 static void
   1835 lz_inform_print(struct local_zone* z, struct query_info* qinfo,
   1836 	struct sockaddr_storage* addr, socklen_t addrlen)
   1837 {
   1838 	char ip[128], txt[512];
   1839 	char zname[LDNS_MAX_DOMAINLEN];
   1840 	uint16_t port = ntohs(((struct sockaddr_in*)addr)->sin_port);
   1841 	dname_str(z->name, zname);
   1842 	addr_to_str(addr, addrlen, ip, sizeof(ip));
   1843 	snprintf(txt, sizeof(txt), "%s %s %s@%u", zname, local_zone_type2str(z->type), ip,
   1844 		(unsigned)port);
   1845 	log_nametypeclass(NO_VERBOSE, txt, qinfo->qname, qinfo->qtype, qinfo->qclass);
   1846 }
   1847 
   1848 static enum localzone_type
   1849 lz_type(uint8_t *taglist, size_t taglen, uint8_t *taglist2, size_t taglen2,
   1850 	uint8_t *tagactions, size_t tagactionssize, enum localzone_type lzt,
   1851 	struct comm_reply* repinfo, struct rbtree_type* override_tree,
   1852 	int* tag, char** tagname, int num_tags)
   1853 {
   1854 	struct local_zone_override* lzo;
   1855 	if(repinfo && override_tree) {
   1856 		lzo = (struct local_zone_override*)addr_tree_lookup(
   1857 			override_tree, &repinfo->client_addr,
   1858 			repinfo->client_addrlen);
   1859 		if(lzo && lzo->type) {
   1860 			verbose(VERB_ALGO, "local zone override to type %s",
   1861 				local_zone_type2str(lzo->type));
   1862 			return lzo->type;
   1863 		}
   1864 	}
   1865 	if(!taglist || !taglist2)
   1866 		return lzt;
   1867 	return local_data_find_tag_action(taglist, taglen, taglist2, taglen2,
   1868 		tagactions, tagactionssize, lzt, tag, tagname, num_tags);
   1869 }
   1870 
   1871 enum localzone_type
   1872 local_data_find_tag_action(const uint8_t* taglist, size_t taglen,
   1873 	const uint8_t* taglist2, size_t taglen2, const uint8_t* tagactions,
   1874 	size_t tagactionssize, enum localzone_type lzt, int* tag,
   1875 	char* const* tagname, int num_tags)
   1876 {
   1877 	size_t i, j;
   1878 	uint8_t tagmatch;
   1879 
   1880 	for(i=0; i<taglen && i<taglen2; i++) {
   1881 		tagmatch = (taglist[i] & taglist2[i]);
   1882 		for(j=0; j<8 && tagmatch>0; j++) {
   1883 			if((tagmatch & 0x1)) {
   1884 				*tag = (int)(i*8+j);
   1885 				verbose(VERB_ALGO, "matched tag [%d] %s",
   1886 					*tag, (*tag<num_tags?tagname[*tag]:"null"));
   1887 				/* does this tag have a tag action? */
   1888 				if(i*8+j < tagactionssize && tagactions
   1889 				   && tagactions[i*8+j] != 0) {
   1890 				  verbose(VERB_ALGO, "tag action [%d] %s to type %s",
   1891 					*tag, (*tag<num_tags?tagname[*tag]:"null"),
   1892 				  	local_zone_type2str(
   1893 					(enum localzone_type)
   1894 					tagactions[i*8+j]));
   1895 				  return (enum localzone_type)tagactions[i*8+j];
   1896 				}
   1897 				return lzt;
   1898 			}
   1899 			tagmatch >>= 1;
   1900 		}
   1901 	}
   1902 	return lzt;
   1903 }
   1904 
   1905 int
   1906 local_zones_answer(struct local_zones* zones, struct module_env* env,
   1907 	struct query_info* qinfo, struct edns_data* edns, sldns_buffer* buf,
   1908 	struct regional* temp, struct comm_reply* repinfo, uint8_t* taglist,
   1909 	size_t taglen, uint8_t* tagactions, size_t tagactionssize,
   1910 	struct config_strlist** tag_datas, size_t tag_datas_size,
   1911 	char** tagname, int num_tags, struct view* view)
   1912 {
   1913 	/* see if query is covered by a zone,
   1914 	 * 	if so:	- try to match (exact) local data
   1915 	 * 		- look at zone type for negative response. */
   1916 	int labs = dname_count_labels(qinfo->qname);
   1917 	struct local_data* ld = NULL;
   1918 	struct local_zone* z = NULL;
   1919 	enum localzone_type lzt = local_zone_transparent;
   1920 	int r, tag = -1;
   1921 
   1922 	if(view) {
   1923 		lock_rw_rdlock(&view->lock);
   1924 		if(view->local_zones &&
   1925 			(z = local_zones_lookup(view->local_zones,
   1926 			qinfo->qname, qinfo->qname_len, labs,
   1927 			qinfo->qclass, qinfo->qtype, 0))) {
   1928 			lock_rw_rdlock(&z->lock);
   1929 			lzt = z->type;
   1930 		}
   1931 		if(lzt == local_zone_noview) {
   1932 			lock_rw_unlock(&z->lock);
   1933 			z = NULL;
   1934 		}
   1935 		if(z && (lzt == local_zone_transparent ||
   1936 			lzt == local_zone_typetransparent ||
   1937 			lzt == local_zone_inform ||
   1938 			lzt == local_zone_always_transparent ||
   1939 			lzt == local_zone_block_a ||
   1940 			lzt == local_zone_block_aaaa ||
   1941 			lzt == local_zone_block_a_wdata ||
   1942 			lzt == local_zone_block_aaaa_wdata) &&
   1943 			local_zone_does_not_cover(z, qinfo, labs)) {
   1944 			lock_rw_unlock(&z->lock);
   1945 			z = NULL;
   1946 		}
   1947 		if(view->local_zones && !z && !view->isfirst){
   1948 			lock_rw_unlock(&view->lock);
   1949 			return 0;
   1950 		}
   1951 		if(z && verbosity >= VERB_ALGO) {
   1952 			char zname[LDNS_MAX_DOMAINLEN];
   1953 			dname_str(z->name, zname);
   1954 			verbose(VERB_ALGO, "using localzone %s %s from view %s",
   1955 				zname, local_zone_type2str(lzt), view->name);
   1956 		}
   1957 		lock_rw_unlock(&view->lock);
   1958 	}
   1959 	if(!z) {
   1960 		/* try global local_zones tree */
   1961 		lock_rw_rdlock(&zones->lock);
   1962 		if(!(z = local_zones_tags_lookup(zones, qinfo->qname,
   1963 			qinfo->qname_len, labs, qinfo->qclass, qinfo->qtype,
   1964 			taglist, taglen, 0, 0))) {
   1965 			lock_rw_unlock(&zones->lock);
   1966 			return 0;
   1967 		}
   1968 		lock_rw_rdlock(&z->lock);
   1969 		lzt = lz_type(taglist, taglen, z->taglist, z->taglen,
   1970 			tagactions, tagactionssize, z->type, repinfo,
   1971 			z->override_tree, &tag, tagname, num_tags);
   1972 		lock_rw_unlock(&zones->lock);
   1973 		if(z && verbosity >= VERB_ALGO) {
   1974 			char zname[LDNS_MAX_DOMAINLEN];
   1975 			dname_str(z->name, zname);
   1976 			verbose(VERB_ALGO, "using localzone %s %s", zname,
   1977 				local_zone_type2str(lzt));
   1978 		}
   1979 	}
   1980 	if((env->cfg->log_local_actions ||
   1981 			lzt == local_zone_inform ||
   1982 			lzt == local_zone_inform_deny ||
   1983 			lzt == local_zone_inform_redirect)
   1984 			&& repinfo)
   1985 		lz_inform_print(z, qinfo, &repinfo->client_addr,
   1986 			repinfo->client_addrlen);
   1987 
   1988 	if(lzt != local_zone_always_refuse
   1989 		&& lzt != local_zone_always_transparent
   1990 		&& lzt != local_zone_block_a
   1991 		&& lzt != local_zone_block_aaaa
   1992 		&& lzt != local_zone_always_nxdomain
   1993 		&& lzt != local_zone_always_nodata
   1994 		&& lzt != local_zone_always_deny
   1995 		&& local_data_answer(z, env, qinfo, edns, repinfo, buf, temp, labs,
   1996 			&ld, lzt, tag, tag_datas, tag_datas_size, tagname, num_tags)) {
   1997 		lock_rw_unlock(&z->lock);
   1998 		/* We should tell the caller that encode is deferred if we found
   1999 		 * a local alias. */
   2000 		return !qinfo->local_alias;
   2001 	}
   2002 	r = local_zones_zone_answer(z, env, qinfo, edns, repinfo, buf, temp, ld, lzt);
   2003 	lock_rw_unlock(&z->lock);
   2004 	return r && !qinfo->local_alias; /* see above */
   2005 }
   2006 
   2007 const char* local_zone_type2str(enum localzone_type t)
   2008 {
   2009 	switch(t) {
   2010 		case local_zone_unset: return "unset";
   2011 		case local_zone_deny: return "deny";
   2012 		case local_zone_refuse: return "refuse";
   2013 		case local_zone_redirect: return "redirect";
   2014 		case local_zone_transparent: return "transparent";
   2015 		case local_zone_typetransparent: return "typetransparent";
   2016 		case local_zone_static: return "static";
   2017 		case local_zone_nodefault: return "nodefault";
   2018 		case local_zone_inform: return "inform";
   2019 		case local_zone_inform_deny: return "inform_deny";
   2020 		case local_zone_inform_redirect: return "inform_redirect";
   2021 		case local_zone_always_transparent: return "always_transparent";
   2022 		case local_zone_block_a: return "block_a";
   2023 		case local_zone_block_aaaa: return "block_aaaa";
   2024 		case local_zone_block_a_wdata: return "block_a_wdata";
   2025 		case local_zone_block_aaaa_wdata: return "block_aaaa_wdata";
   2026 		case local_zone_always_refuse: return "always_refuse";
   2027 		case local_zone_always_nxdomain: return "always_nxdomain";
   2028 		case local_zone_always_nodata: return "always_nodata";
   2029 		case local_zone_always_deny: return "always_deny";
   2030 		case local_zone_always_null: return "always_null";
   2031 		case local_zone_noview: return "noview";
   2032 		case local_zone_truncate: return "truncate";
   2033 		case local_zone_invalid: return "invalid";
   2034 	}
   2035 	return "badtyped";
   2036 }
   2037 
   2038 int local_zone_str2type(const char* type, enum localzone_type* t)
   2039 {
   2040 	if(strcmp(type, "deny") == 0)
   2041 		*t = local_zone_deny;
   2042 	else if(strcmp(type, "refuse") == 0)
   2043 		*t = local_zone_refuse;
   2044 	else if(strcmp(type, "static") == 0)
   2045 		*t = local_zone_static;
   2046 	else if(strcmp(type, "transparent") == 0)
   2047 		*t = local_zone_transparent;
   2048 	else if(strcmp(type, "typetransparent") == 0)
   2049 		*t = local_zone_typetransparent;
   2050 	else if(strcmp(type, "redirect") == 0)
   2051 		*t = local_zone_redirect;
   2052 	else if(strcmp(type, "inform") == 0)
   2053 		*t = local_zone_inform;
   2054 	else if(strcmp(type, "inform_deny") == 0)
   2055 		*t = local_zone_inform_deny;
   2056 	else if(strcmp(type, "inform_redirect") == 0)
   2057 		*t = local_zone_inform_redirect;
   2058 	else if(strcmp(type, "always_transparent") == 0)
   2059 		*t = local_zone_always_transparent;
   2060 	else if(strcmp(type, "block_a") == 0)
   2061 		*t = local_zone_block_a;
   2062 	else if(strcmp(type, "block_aaaa") == 0)
   2063 		*t = local_zone_block_aaaa;
   2064 	else if(strcmp(type, "block_a_wdata") == 0)
   2065 		*t = local_zone_block_a_wdata;
   2066 	else if(strcmp(type, "block_aaaa_wdata") == 0)
   2067 		*t = local_zone_block_aaaa_wdata;
   2068 	else if(strcmp(type, "always_refuse") == 0)
   2069 		*t = local_zone_always_refuse;
   2070 	else if(strcmp(type, "always_nxdomain") == 0)
   2071 		*t = local_zone_always_nxdomain;
   2072 	else if(strcmp(type, "always_nodata") == 0)
   2073 		*t = local_zone_always_nodata;
   2074 	else if(strcmp(type, "always_deny") == 0)
   2075 		*t = local_zone_always_deny;
   2076 	else if(strcmp(type, "always_null") == 0)
   2077 		*t = local_zone_always_null;
   2078 	else if(strcmp(type, "noview") == 0)
   2079 		*t = local_zone_noview;
   2080 	else if(strcmp(type, "truncate") == 0)
   2081 		*t = local_zone_truncate;
   2082 	else if(strcmp(type, "nodefault") == 0)
   2083 		*t = local_zone_nodefault;
   2084 	else return 0;
   2085 	return 1;
   2086 }
   2087 
   2088 /** iterate over the kiddies of the given name and set their parent ptr */
   2089 static void
   2090 set_kiddo_parents(struct local_zone* z, struct local_zone* match,
   2091 	struct local_zone* newp)
   2092 {
   2093 	/* both zones and z are locked already */
   2094 	/* in the sorted rbtree, the kiddies of z are located after z */
   2095 	/* z must be present in the tree */
   2096 	struct local_zone* p = z;
   2097 	p = (struct local_zone*)rbtree_next(&p->node);
   2098 	while(p!=(struct local_zone*)RBTREE_NULL &&
   2099 		p->dclass == z->dclass && dname_strict_subdomain(p->name,
   2100 		p->namelabs, z->name, z->namelabs)) {
   2101 		/* update parent ptr */
   2102 		/* only when matches with existing parent pointer, so that
   2103 		 * deeper child structures are not touched, i.e.
   2104 		 * update of x, and a.x, b.x, f.b.x, g.b.x, c.x, y
   2105 		 * gets to update a.x, b.x and c.x */
   2106 		lock_rw_wrlock(&p->lock);
   2107 		if(p->parent == match)
   2108 			p->parent = newp;
   2109 		lock_rw_unlock(&p->lock);
   2110 		p = (struct local_zone*)rbtree_next(&p->node);
   2111 	}
   2112 }
   2113 
   2114 struct local_zone* local_zones_add_zone(struct local_zones* zones,
   2115 	uint8_t* name, size_t len, int labs, uint16_t dclass,
   2116 	enum localzone_type tp)
   2117 {
   2118 	int exact;
   2119 	/* create */
   2120 	struct local_zone *prev;
   2121 	struct local_zone* z = local_zone_create(name, len, labs, tp, dclass);
   2122 	if(!z) {
   2123 		free(name);
   2124 		return NULL;
   2125 	}
   2126 	lock_rw_wrlock(&z->lock);
   2127 
   2128 	/* find the closest parent */
   2129 	prev = local_zones_find_le(zones, name, len, labs, dclass, &exact);
   2130 	if(!exact)
   2131 		z->parent = find_closest_parent(z, prev);
   2132 
   2133 	/* insert into the tree */
   2134 	if(exact||!rbtree_insert(&zones->ztree, &z->node)) {
   2135 		/* duplicate entry! */
   2136 		lock_rw_unlock(&z->lock);
   2137 		local_zone_delete(z);
   2138 		log_err("internal: duplicate entry in local_zones_add_zone");
   2139 		return NULL;
   2140 	}
   2141 
   2142 	/* set parent pointers right */
   2143 	set_kiddo_parents(z, z->parent, z);
   2144 
   2145 	lock_rw_unlock(&z->lock);
   2146 	return z;
   2147 }
   2148 
   2149 void local_zones_del_zone(struct local_zones* zones, struct local_zone* z)
   2150 {
   2151 	/* fix up parents in tree */
   2152 	lock_rw_wrlock(&z->lock);
   2153 	set_kiddo_parents(z, z, z->parent);
   2154 
   2155 	/* remove from tree */
   2156 	(void)rbtree_delete(&zones->ztree, z);
   2157 
   2158 	/* delete the zone */
   2159 	lock_rw_unlock(&z->lock);
   2160 	local_zone_delete(z);
   2161 }
   2162 
   2163 int
   2164 local_zones_add_RR(struct local_zones* zones, const char* rr)
   2165 {
   2166 	uint8_t* rr_name;
   2167 	uint16_t rr_class, rr_type;
   2168 	size_t len;
   2169 	int labs;
   2170 	struct local_zone* z;
   2171 	int r;
   2172 	if(!get_rr_nameclass(rr, &rr_name, &rr_class, &rr_type)) {
   2173 		return 0;
   2174 	}
   2175 	labs = dname_count_size_labels(rr_name, &len);
   2176 	/* could first try readlock then get writelock if zone does not exist,
   2177 	 * but we do not add enough RRs (from multiple threads) to optimize */
   2178 	lock_rw_wrlock(&zones->lock);
   2179 	z = local_zones_lookup(zones, rr_name, len, labs, rr_class, rr_type,
   2180 		1);
   2181 	if(!z) {
   2182 		z = local_zones_add_zone(zones, rr_name, len, labs, rr_class,
   2183 			local_zone_transparent);
   2184 		if(!z) {
   2185 			lock_rw_unlock(&zones->lock);
   2186 			return 0;
   2187 		}
   2188 	} else {
   2189 		free(rr_name);
   2190 	}
   2191 	lock_rw_wrlock(&z->lock);
   2192 	lock_rw_unlock(&zones->lock);
   2193 	r = lz_enter_rr_into_zone(z, rr);
   2194 	lock_rw_unlock(&z->lock);
   2195 	return r;
   2196 }
   2197 
   2198 /** returns true if the node is terminal so no deeper domain names exist */
   2199 static int
   2200 is_terminal(struct local_data* d)
   2201 {
   2202 	/* for empty nonterminals, the deeper domain names are sorted
   2203 	 * right after them, so simply check the next name in the tree
   2204 	 */
   2205 	struct local_data* n = (struct local_data*)rbtree_next(&d->node);
   2206 	if(n == (struct local_data*)RBTREE_NULL)
   2207 		return 1; /* last in tree, no deeper node */
   2208 	if(dname_strict_subdomain(n->name, n->namelabs, d->name, d->namelabs))
   2209 		return 0; /* there is a deeper node */
   2210 	return 1;
   2211 }
   2212 
   2213 /** delete empty terminals from tree when final data is deleted */
   2214 static void
   2215 del_empty_term(struct local_zone* z, struct local_data* d,
   2216 	uint8_t* name, size_t len, int labs)
   2217 {
   2218 	while(d && d->rrsets == NULL && is_terminal(d)) {
   2219 		/* is this empty nonterminal? delete */
   2220 		/* note, no memory recycling in zone region */
   2221 		(void)rbtree_delete(&z->data, d);
   2222 
   2223 		/* go up and to the next label */
   2224 		if(dname_is_root(name))
   2225 			return;
   2226 		dname_remove_label(&name, &len);
   2227 		labs--;
   2228 		d = local_zone_find_data(z, name, len, labs);
   2229 	}
   2230 }
   2231 
   2232 /** find and remove type from list in domain struct */
   2233 static void
   2234 del_local_rrset(struct local_data* d, uint16_t dtype)
   2235 {
   2236 	struct local_rrset* prev=NULL, *p=d->rrsets;
   2237 	while(p && ntohs(p->rrset->rk.type) != dtype) {
   2238 		prev = p;
   2239 		p = p->next;
   2240 	}
   2241 	if(!p)
   2242 		return; /* rrset type not found */
   2243 	/* unlink it */
   2244 	if(prev) prev->next = p->next;
   2245 	else d->rrsets = p->next;
   2246 	/* no memory recycling for zone deletions ... */
   2247 }
   2248 
   2249 void local_zones_del_data(struct local_zones* zones,
   2250 	uint8_t* name, size_t len, int labs, uint16_t dclass)
   2251 {
   2252 	/* find zone */
   2253 	struct local_zone* z;
   2254 	struct local_data* d;
   2255 
   2256 	/* remove DS */
   2257 	lock_rw_rdlock(&zones->lock);
   2258 	z = local_zones_lookup(zones, name, len, labs, dclass, LDNS_RR_TYPE_DS,
   2259 		1);
   2260 	if(z) {
   2261 		lock_rw_wrlock(&z->lock);
   2262 		d = local_zone_find_data(z, name, len, labs);
   2263 		if(d) {
   2264 			del_local_rrset(d, LDNS_RR_TYPE_DS);
   2265 			del_empty_term(z, d, name, len, labs);
   2266 		}
   2267 		lock_rw_unlock(&z->lock);
   2268 	}
   2269 	lock_rw_unlock(&zones->lock);
   2270 
   2271 	/* remove other types */
   2272 	lock_rw_rdlock(&zones->lock);
   2273 	z = local_zones_lookup(zones, name, len, labs, dclass, 0, 1);
   2274 	if(!z) {
   2275 		/* no such zone, we're done */
   2276 		lock_rw_unlock(&zones->lock);
   2277 		return;
   2278 	}
   2279 	lock_rw_wrlock(&z->lock);
   2280 	lock_rw_unlock(&zones->lock);
   2281 
   2282 	/* find the domain */
   2283 	d = local_zone_find_data(z, name, len, labs);
   2284 	if(d) {
   2285 		/* no memory recycling for zone deletions ... */
   2286 		d->rrsets = NULL;
   2287 		/* did we delete the soa record ? */
   2288 		if(query_dname_compare(d->name, z->name) == 0) {
   2289 			z->soa = NULL;
   2290 			z->soa_negative = NULL;
   2291 		}
   2292 
   2293 		/* cleanup the empty nonterminals for this name */
   2294 		del_empty_term(z, d, name, len, labs);
   2295 	}
   2296 
   2297 	lock_rw_unlock(&z->lock);
   2298 }
   2299 
   2300 /** Get memory usage for local_zone */
   2301 static size_t
   2302 local_zone_get_mem(struct local_zone* z)
   2303 {
   2304 	size_t m = sizeof(*z);
   2305 	lock_rw_rdlock(&z->lock);
   2306 	m += z->namelen + z->taglen + regional_get_mem(z->region);
   2307 	lock_rw_unlock(&z->lock);
   2308 	return m;
   2309 }
   2310 
   2311 size_t local_zones_get_mem(struct local_zones* zones)
   2312 {
   2313 	struct local_zone* z;
   2314 	size_t m;
   2315 	if(!zones) return 0;
   2316 	m = sizeof(*zones);
   2317 	lock_rw_rdlock(&zones->lock);
   2318 	RBTREE_FOR(z, struct local_zone*, &zones->ztree) {
   2319 		m += local_zone_get_mem(z);
   2320 	}
   2321 	lock_rw_unlock(&zones->lock);
   2322 	return m;
   2323 }
   2324 
   2325 void local_zones_swap_tree(struct local_zones* zones, struct local_zones* data)
   2326 {
   2327 	rbtree_type oldtree = zones->ztree;
   2328 	zones->ztree = data->ztree;
   2329 	data->ztree = oldtree;
   2330 }
   2331