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      1 /*
      2  * validator/val_nsec.c - validator NSEC denial of existence functions.
      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 helper functions for the validator module.
     40  * The functions help with NSEC checking, the different NSEC proofs
     41  * for denial of existence, and proofs for presence of types.
     42  */
     43 #include "config.h"
     44 #include "validator/val_nsec.h"
     45 #include "validator/val_utils.h"
     46 #include "util/data/msgreply.h"
     47 #include "util/data/dname.h"
     48 #include "util/net_help.h"
     49 #include "util/module.h"
     50 #include "services/cache/rrset.h"
     51 
     52 /** get ttl of rrset */
     53 static uint32_t
     54 rrset_get_ttl(struct ub_packed_rrset_key* k)
     55 {
     56 	struct packed_rrset_data* d = (struct packed_rrset_data*)k->entry.data;
     57 	return d->ttl;
     58 }
     59 
     60 int
     61 nsecbitmap_has_type_rdata(uint8_t* bitmap, size_t len, uint16_t type)
     62 {
     63 	/* Check type present in NSEC typemap with bitmap arg */
     64 	/* bitmasks for determining type-lowerbits presence */
     65 	uint8_t masks[8] = {0x80, 0x40, 0x20, 0x10, 0x08, 0x04, 0x02, 0x01};
     66 	uint8_t type_window = type>>8;
     67 	uint8_t type_low = type&0xff;
     68 	uint8_t win, winlen;
     69 	/* read each of the type bitmap windows and see if the searched
     70 	 * type is amongst it */
     71 	while(len > 0) {
     72 		if(len < 3) /* bad window, at least window# winlen bitmap */
     73 			return 0;
     74 		win = *bitmap++;
     75 		winlen = *bitmap++;
     76 		len -= 2;
     77 		if(len < winlen || winlen < 1 || winlen > 32)
     78 			return 0;	/* bad window length */
     79 		if(win == type_window) {
     80 			/* search window bitmap for the correct byte */
     81 			/* mybyte is 0 if we need the first byte */
     82 			size_t mybyte = type_low>>3;
     83 			if(winlen <= mybyte)
     84 				return 0; /* window too short */
     85 			return (int)(bitmap[mybyte] & masks[type_low&0x7]);
     86 		} else {
     87 			/* not the window we are looking for */
     88 			bitmap += winlen;
     89 			len -= winlen;
     90 		}
     91 	}
     92 	/* end of bitmap reached, no type found */
     93 	return 0;
     94 }
     95 
     96 int
     97 nsec_has_type(struct ub_packed_rrset_key* nsec, uint16_t type)
     98 {
     99 	struct packed_rrset_data* d = (struct packed_rrset_data*)nsec->
    100 		entry.data;
    101 	size_t len;
    102 	if(!d || d->count == 0 || d->rr_len[0] < 2+1)
    103 		return 0;
    104 	len = dname_valid(d->rr_data[0]+2, d->rr_len[0]-2);
    105 	if(!len)
    106 		return 0;
    107 	return nsecbitmap_has_type_rdata(d->rr_data[0]+2+len,
    108 		d->rr_len[0]-2-len, type);
    109 }
    110 
    111 /**
    112  * Get next owner name from nsec record
    113  * @param nsec: the nsec RRset.
    114  *	If there are multiple RRs, then this will only return one of them.
    115  * @param nm: the next name is returned.
    116  * @param ln: length of nm is returned.
    117  * @return false on a bad NSEC RR (too short, malformed dname).
    118  */
    119 static int
    120 nsec_get_next(struct ub_packed_rrset_key* nsec, uint8_t** nm, size_t* ln)
    121 {
    122 	struct packed_rrset_data* d = (struct packed_rrset_data*)nsec->
    123 		entry.data;
    124 	if(!d || d->count == 0 || d->rr_len[0] < 2+1) {
    125 		*nm = 0;
    126 		*ln = 0;
    127 		return 0;
    128 	}
    129 	*nm = d->rr_data[0]+2;
    130 	*ln = dname_valid(*nm, d->rr_len[0]-2);
    131 	if(!*ln) {
    132 		*nm = 0;
    133 		*ln = 0;
    134 		return 0;
    135 	}
    136 	return 1;
    137 }
    138 
    139 /**
    140  * For an NSEC that matches the DS queried for, check absence of DS type.
    141  *
    142  * @param nsec: NSEC for proof, must be trusted.
    143  * @param qinfo: what is queried for.
    144  * @return if secure the nsec proves that no DS is present, or
    145  *	insecure if it proves it is not a delegation point.
    146  *	or bogus if something was wrong.
    147  */
    148 static enum sec_status
    149 val_nsec_proves_no_ds(struct ub_packed_rrset_key* nsec,
    150 	struct query_info* qinfo)
    151 {
    152 	log_assert(qinfo->qtype == LDNS_RR_TYPE_DS);
    153 	log_assert(ntohs(nsec->rk.type) == LDNS_RR_TYPE_NSEC);
    154 
    155 	if(nsec_has_type(nsec, LDNS_RR_TYPE_SOA) && qinfo->qname_len != 1) {
    156 		/* SOA present means that this is the NSEC from the child,
    157 		 * not the parent (so it is the wrong one). */
    158 		return sec_status_bogus;
    159 	}
    160 	if(nsec_has_type(nsec, LDNS_RR_TYPE_DS)) {
    161 		/* DS present means that there should have been a positive
    162 		 * response to the DS query, so there is something wrong. */
    163 		return sec_status_bogus;
    164 	}
    165 
    166 	if(!nsec_has_type(nsec, LDNS_RR_TYPE_NS)) {
    167 		/* If there is no NS at this point at all, then this
    168 		 * doesn't prove anything one way or the other. */
    169 		return sec_status_insecure;
    170 	}
    171 	/* Otherwise, this proves no DS. */
    172 	return sec_status_secure;
    173 }
    174 
    175 /** check security status from cache or verify rrset, returns true if secure */
    176 static int
    177 nsec_verify_rrset(struct module_env* env, struct val_env* ve,
    178 	struct ub_packed_rrset_key* nsec, struct key_entry_key* kkey,
    179 	char** reason, sldns_ede_code* reason_bogus,
    180 	struct module_qstate* qstate, struct val_qstate* vq, char* reasonbuf,
    181 	size_t reasonlen)
    182 {
    183 	struct packed_rrset_data* d = (struct packed_rrset_data*)
    184 		nsec->entry.data;
    185 	int verified = 0;
    186 	if(!d) return 0;
    187 	if(d->security == sec_status_secure)
    188 		return 1;
    189 	rrset_check_sec_status(env->rrset_cache, nsec, *env->now);
    190 	if(d->security == sec_status_secure)
    191 		return 1;
    192 	d->security = val_verify_rrset_entry(env, ve, nsec, kkey, reason,
    193 		reason_bogus, LDNS_SECTION_AUTHORITY, qstate, vq, &verified,
    194 		reasonbuf, reasonlen);
    195 	if(d->security == sec_status_secure) {
    196 		rrset_update_sec_status(env->rrset_cache, nsec, *env->now);
    197 		return 1;
    198 	}
    199 	return 0;
    200 }
    201 
    202 enum sec_status
    203 val_nsec_prove_nodata_dsreply(struct module_env* env, struct val_env* ve,
    204 	struct query_info* qinfo, struct reply_info* rep,
    205 	struct key_entry_key* kkey, time_t* proof_ttl, char** reason,
    206 	sldns_ede_code* reason_bogus, struct module_qstate* qstate,
    207 	struct val_qstate* vq, char* reasonbuf, size_t reasonlen)
    208 {
    209 	struct ub_packed_rrset_key* nsec = reply_find_rrset_section_ns(
    210 		rep, qinfo->qname, qinfo->qname_len, LDNS_RR_TYPE_NSEC,
    211 		qinfo->qclass);
    212 	enum sec_status sec;
    213 	size_t i;
    214 	uint8_t* wc = NULL, *ce = NULL;
    215 	int valid_nsec = 0;
    216 	struct ub_packed_rrset_key* wc_nsec = NULL;
    217 
    218 	/* If we have a NSEC at the same name, it must prove one
    219 	 * of two things
    220 	 * --
    221 	 * 1) this is a delegation point and there is no DS
    222 	 * 2) this is not a delegation point */
    223 	if(nsec) {
    224 		if(!nsec_verify_rrset(env, ve, nsec, kkey, reason,
    225 			reason_bogus, qstate, vq, reasonbuf, reasonlen)) {
    226 			verbose(VERB_ALGO, "NSEC RRset for the "
    227 				"referral did not verify.");
    228 			return sec_status_bogus;
    229 		}
    230 		/* If the NSEC was a wildcard, the verify rewrites the
    231 		 * owner to '*.zone'. Check the NSEC owner matches. */
    232 		if(query_dname_compare(nsec->rk.dname, qinfo->qname) == 0) {
    233 			sec = val_nsec_proves_no_ds(nsec, qinfo);
    234 			if(sec == sec_status_bogus) {
    235 				/* something was wrong. */
    236 				*reason = "NSEC does not prove absence of DS";
    237 				*reason_bogus = LDNS_EDE_DNSSEC_BOGUS;
    238 				return sec;
    239 			} else if(sec == sec_status_insecure) {
    240 				/* this wasn't a delegation point. */
    241 				return sec;
    242 			} else if(sec == sec_status_secure) {
    243 				/* this proved no DS. */
    244 				*proof_ttl = ub_packed_rrset_ttl(nsec);
    245 				return sec;
    246 			}
    247 		}
    248 		/* if unchecked, fall through to next proof */
    249 		/* For *.closest-encloser NSEC, there is a closer-match
    250 		 * check for the wildcard below. */
    251 	}
    252 
    253 	/* Otherwise, there is no NSEC at qname. This could be an ENT.
    254 	 * (ENT=empty non terminal). If not, this is broken. */
    255 
    256 	/* verify NSEC rrsets in auth section */
    257 	for(i=rep->an_numrrsets; i < rep->an_numrrsets+rep->ns_numrrsets;
    258 		i++) {
    259 		if(rep->rrsets[i]->rk.type != htons(LDNS_RR_TYPE_NSEC))
    260 			continue;
    261 		if(!nsec_verify_rrset(env, ve, rep->rrsets[i], kkey, reason,
    262 			reason_bogus, qstate, vq, reasonbuf, reasonlen)) {
    263 			verbose(VERB_ALGO, "NSEC for empty non-terminal "
    264 				"did not verify.");
    265 			*reason = "NSEC for empty non-terminal "
    266 				"did not verify.";
    267 			return sec_status_bogus;
    268 		}
    269 		if(nsec_proves_nodata(rep->rrsets[i], qinfo, &wc)) {
    270 			verbose(VERB_ALGO, "NSEC for empty non-terminal "
    271 				"proved no DS.");
    272 			*proof_ttl = rrset_get_ttl(rep->rrsets[i]);
    273 			if(wc && dname_is_wild(rep->rrsets[i]->rk.dname))
    274 				wc_nsec = rep->rrsets[i];
    275 			valid_nsec = 1;
    276 		}
    277 		if(val_nsec_proves_name_error(rep->rrsets[i], qinfo->qname)) {
    278 			ce = nsec_closest_encloser(qinfo->qname,
    279 				rep->rrsets[i]);
    280 		}
    281 	}
    282 	if(wc && !ce)
    283 		valid_nsec = 0;
    284 	else if(wc && ce) {
    285 		/* ce and wc must match */
    286 		if(query_dname_compare(wc, ce) != 0)
    287 			valid_nsec = 0;
    288 		else if(!wc_nsec)
    289 			valid_nsec = 0;
    290 	}
    291 	if(valid_nsec) {
    292 		if(wc) {
    293 			/* check if this is a delegation */
    294 			*reason = "NSEC for wildcard does not prove absence of DS";
    295 			return val_nsec_proves_no_ds(wc_nsec, qinfo);
    296 		}
    297 		/* valid nsec proves empty nonterminal */
    298 		return sec_status_insecure;
    299 	}
    300 
    301 	/* NSEC proof did not conclusively point to DS or no DS */
    302 	return sec_status_unchecked;
    303 }
    304 
    305 int nsec_proves_nodata(struct ub_packed_rrset_key* nsec,
    306 	struct query_info* qinfo, uint8_t** wc)
    307 {
    308 	log_assert(wc);
    309 	if(query_dname_compare(nsec->rk.dname, qinfo->qname) != 0) {
    310 		uint8_t* nm;
    311 		size_t ln;
    312 
    313 		/* empty-non-terminal checking.
    314 		 * Done before wildcard, because this is an exact match,
    315 		 * and would prevent a wildcard from matching. */
    316 
    317 		/* If the nsec is proving that qname is an ENT, the nsec owner
    318 		 * will be less than qname, and the next name will be a child
    319 		 * domain of the qname. */
    320 		if(!nsec_get_next(nsec, &nm, &ln))
    321 			return 0; /* bad nsec */
    322 		if(dname_strict_subdomain_c(nm, qinfo->qname) &&
    323 			dname_canonical_compare(nsec->rk.dname,
    324 				qinfo->qname) < 0) {
    325 			return 1; /* proves ENT */
    326 		}
    327 
    328 		/* wildcard checking. */
    329 
    330 		/* If this is a wildcard NSEC, make sure that a) it was
    331 		 * possible to have generated qname from the wildcard and
    332 		 * b) the type map does not contain qtype. Note that this
    333 		 * does NOT prove that this wildcard was the applicable
    334 		 * wildcard. */
    335 		if(dname_is_wild(nsec->rk.dname)) {
    336 			/* the purported closest encloser. */
    337 			uint8_t* ce = nsec->rk.dname;
    338 			size_t ce_len = nsec->rk.dname_len;
    339 			dname_remove_label(&ce, &ce_len);
    340 
    341 			/* The qname must be a strict subdomain of the
    342 			 * closest encloser, for the wildcard to apply
    343 			 */
    344 			if(dname_strict_subdomain_c(qinfo->qname, ce)) {
    345 				/* here we have a matching NSEC for the qname,
    346 				 * perform matching NSEC checks */
    347 				if(nsec_has_type(nsec, LDNS_RR_TYPE_CNAME)) {
    348 				   /* should have gotten the wildcard CNAME */
    349 					return 0;
    350 				}
    351 				if(nsec_has_type(nsec, LDNS_RR_TYPE_NS) &&
    352 				   !nsec_has_type(nsec, LDNS_RR_TYPE_SOA)) {
    353 				   /* wrong parentside (wildcard) NSEC used */
    354 					return 0;
    355 				}
    356 				if(nsec_has_type(nsec, qinfo->qtype)) {
    357 					return 0;
    358 				}
    359 				*wc = ce;
    360 				return 1;
    361 			}
    362 		} else {
    363 			/* See if the next owner name covers a wildcard
    364 			 * empty non-terminal. */
    365 			while (dname_canonical_compare(nsec->rk.dname, nm) < 0) {
    366 				/* wildcard does not apply if qname below
    367 				 * the name that exists under the '*' */
    368 				if (dname_subdomain_c(qinfo->qname, nm))
    369 					break;
    370 				/* but if it is a wildcard and qname is below
    371 				 * it, then the wildcard applies. The wildcard
    372 				 * is an empty nonterminal. nodata proven. */
    373 				if (dname_is_wild(nm)) {
    374 					size_t ce_len = ln;
    375 					uint8_t* ce = nm;
    376 					dname_remove_label(&ce, &ce_len);
    377 					if(dname_strict_subdomain_c(qinfo->qname, ce)) {
    378 						*wc = ce;
    379 						return 1;
    380 					}
    381 				}
    382 				dname_remove_label(&nm, &ln);
    383 			}
    384 		}
    385 
    386 		/* Otherwise, this NSEC does not prove ENT and is not a
    387 		 * wildcard, so it does not prove NODATA. */
    388 		return 0;
    389 	}
    390 
    391 	/* If the qtype exists, then we should have gotten it. */
    392 	if(nsec_has_type(nsec, qinfo->qtype)) {
    393 		return 0;
    394 	}
    395 
    396 	/* if the name is a CNAME node, then we should have gotten the CNAME*/
    397 	if(nsec_has_type(nsec, LDNS_RR_TYPE_CNAME)) {
    398 		return 0;
    399 	}
    400 
    401 	/* If an NS set exists at this name, and NOT a SOA (so this is a
    402 	 * zone cut, not a zone apex), then we should have gotten a
    403 	 * referral (or we just got the wrong NSEC).
    404 	 * The reverse of this check is used when qtype is DS, since that
    405 	 * must use the NSEC from above the zone cut. */
    406 	if(qinfo->qtype != LDNS_RR_TYPE_DS &&
    407 		nsec_has_type(nsec, LDNS_RR_TYPE_NS) &&
    408 		!nsec_has_type(nsec, LDNS_RR_TYPE_SOA)) {
    409 		return 0;
    410 	} else if(qinfo->qtype == LDNS_RR_TYPE_DS &&
    411 		nsec_has_type(nsec, LDNS_RR_TYPE_SOA) &&
    412 		!dname_is_root(qinfo->qname)) {
    413 		return 0;
    414 	}
    415 
    416 	return 1;
    417 }
    418 
    419 int
    420 val_nsec_proves_name_error(struct ub_packed_rrset_key* nsec, uint8_t* qname)
    421 {
    422 	uint8_t* owner = nsec->rk.dname;
    423 	uint8_t* next;
    424 	size_t nlen;
    425 	if(!nsec_get_next(nsec, &next, &nlen))
    426 		return 0;
    427 
    428 	/* If NSEC owner == qname, then this NSEC proves that qname exists. */
    429 	if(query_dname_compare(qname, owner) == 0) {
    430 		return 0;
    431 	}
    432 
    433 	/* If NSEC is a parent of qname, we need to check the type map
    434 	 * If the parent name has a DNAME or is a delegation point, then
    435 	 * this NSEC is being misused. */
    436 	if(dname_subdomain_c(qname, owner) &&
    437 		(nsec_has_type(nsec, LDNS_RR_TYPE_DNAME) ||
    438 		(nsec_has_type(nsec, LDNS_RR_TYPE_NS)
    439 			&& !nsec_has_type(nsec, LDNS_RR_TYPE_SOA))
    440 		)) {
    441 		return 0;
    442 	}
    443 
    444 	if(query_dname_compare(owner, next) == 0) {
    445 		/* this nsec is the only nsec */
    446 		/* zone.name NSEC zone.name, disproves everything else */
    447 		/* but only for subdomains of that zone */
    448 		if(dname_strict_subdomain_c(qname, next))
    449 			return 1;
    450 	}
    451 	else if(dname_canonical_compare(owner, next) > 0) {
    452 		/* this is the last nsec, ....(bigger) NSEC zonename(smaller) */
    453 		/* the names after the last (owner) name do not exist
    454 		 * there are no names before the zone name in the zone
    455 		 * but the qname must be a subdomain of the zone name(next). */
    456 		if(dname_canonical_compare(owner, qname) < 0 &&
    457 			dname_strict_subdomain_c(qname, next))
    458 			return 1;
    459 	} else {
    460 		/* regular NSEC, (smaller) NSEC (larger) */
    461 		if(dname_canonical_compare(owner, qname) < 0 &&
    462 		   dname_canonical_compare(qname, next) < 0) {
    463 			return 1;
    464 		}
    465 	}
    466 	return 0;
    467 }
    468 
    469 int val_nsec_proves_insecuredelegation(struct ub_packed_rrset_key* nsec,
    470 	struct query_info* qinfo)
    471 {
    472 	if(nsec_has_type(nsec, LDNS_RR_TYPE_NS) &&
    473 		!nsec_has_type(nsec, LDNS_RR_TYPE_DS) &&
    474 		!nsec_has_type(nsec, LDNS_RR_TYPE_SOA)) {
    475 		/* see if nsec signals an insecure delegation */
    476 		if(qinfo->qtype == LDNS_RR_TYPE_DS) {
    477 			/* if type is DS and qname is equal to nsec, then it
    478 			 * is an exact match nsec, result not insecure */
    479 			if(dname_strict_subdomain_c(qinfo->qname,
    480 				nsec->rk.dname))
    481 				return 1;
    482 		} else {
    483 			if(dname_subdomain_c(qinfo->qname, nsec->rk.dname))
    484 				return 1;
    485 		}
    486 	}
    487 	return 0;
    488 }
    489 
    490 uint8_t*
    491 nsec_closest_encloser(uint8_t* qname, struct ub_packed_rrset_key* nsec)
    492 {
    493 	uint8_t* next;
    494 	size_t nlen;
    495 	uint8_t* common1, *common2;
    496 	if(!nsec_get_next(nsec, &next, &nlen))
    497 		return NULL;
    498 	/* longest common with owner or next name */
    499 	common1 = dname_get_shared_topdomain(nsec->rk.dname, qname);
    500 	common2 = dname_get_shared_topdomain(next, qname);
    501 	if(dname_count_labels(common1) > dname_count_labels(common2))
    502 		return common1;
    503 	return common2;
    504 }
    505 
    506 int val_nsec_proves_positive_wildcard(struct ub_packed_rrset_key* nsec,
    507 	struct query_info* qinf, uint8_t* wc)
    508 {
    509 	uint8_t* ce;
    510 	/*  1) prove that qname doesn't exist and
    511 	 *  2) that the correct wildcard was used
    512 	 *  nsec has been verified already. */
    513 	if(!val_nsec_proves_name_error(nsec, qinf->qname))
    514 		return 0;
    515 	/* check wildcard name */
    516 	ce = nsec_closest_encloser(qinf->qname, nsec);
    517 	if(!ce)
    518 		return 0;
    519 	if(query_dname_compare(wc, ce) != 0) {
    520 		return 0;
    521 	}
    522 	return 1;
    523 }
    524 
    525 int
    526 val_nsec_proves_no_wc(struct ub_packed_rrset_key* nsec, uint8_t* qname,
    527 	size_t qnamelen)
    528 {
    529 	/* Determine if a NSEC record proves the non-existence of a
    530 	 * wildcard that could have produced qname. */
    531 	int labs;
    532 	uint8_t* ce = nsec_closest_encloser(qname, nsec);
    533 	uint8_t* strip;
    534 	size_t striplen;
    535 	uint8_t buf[LDNS_MAX_DOMAINLEN+3];
    536 	if(!ce)
    537 		return 0;
    538 	/* we can subtract the closest encloser count - since that is the
    539 	 * largest shared topdomain with owner and next NSEC name,
    540 	 * because the NSEC is no proof for names shorter than the owner
    541 	 * and next names. */
    542 	labs = dname_count_labels(qname) - dname_count_labels(ce);
    543 
    544 	if(labs > 0) {
    545 		/* i is number of labels to strip off qname, prepend * wild */
    546 		strip = qname;
    547 		striplen = qnamelen;
    548 		dname_remove_labels(&strip, &striplen, labs);
    549 		if(striplen > LDNS_MAX_DOMAINLEN-2)
    550 			return 0; /* too long to prepend wildcard */
    551 		buf[0] = 1;
    552 		buf[1] = (uint8_t)'*';
    553 		memmove(buf+2, strip, striplen);
    554 		if(val_nsec_proves_name_error(nsec, buf)) {
    555 			return 1;
    556 		}
    557 	}
    558 	return 0;
    559 }
    560