Beispiel #1
0
/** return name and class and rdata of rr; parses string */
static int
get_rr_content(const char* str, uint8_t** nm, uint16_t* type,
	uint16_t* dclass, time_t* ttl, uint8_t* rr, size_t len,
	uint8_t** rdata, size_t* rdata_len)
{
	size_t dname_len = 0;
	int e = sldns_str2wire_rr_buf(str, rr, &len, &dname_len, 3600,
		NULL, 0, NULL, 0);
	if(e) {
		log_err("error parsing local-data at %d: '%s': %s",
			LDNS_WIREPARSE_OFFSET(e), str,
			sldns_get_errorstr_parse(e));
		return 0;
	}
	*nm = memdup(rr, dname_len);
	if(!*nm) {
		log_err("out of memory");
		return 0;
	}
	*dclass = sldns_wirerr_get_class(rr, len, dname_len);
	*type = sldns_wirerr_get_type(rr, len, dname_len);
	*ttl = (time_t)sldns_wirerr_get_ttl(rr, len, dname_len);
	*rdata = sldns_wirerr_get_rdatawl(rr, len, dname_len);
	*rdata_len = sldns_wirerr_get_rdatalen(rr, len, dname_len)+2;
	return 1;
}
Beispiel #2
0
/**
 * Add new RR. It converts ldns RR to wire format.
 * @param anchors: anchor storage.
 * @param rr: the wirerr.
 * @param rl: length of rr.
 * @param dl: length of dname.
 * @return NULL on error, else the trust anchor.
 */
static struct trust_anchor*
anchor_store_new_rr(struct val_anchors* anchors, uint8_t* rr, size_t rl,
	size_t dl)
{
	struct trust_anchor* ta;
	if(!(ta=anchor_store_new_key(anchors, rr,
		sldns_wirerr_get_type(rr, rl, dl),
		sldns_wirerr_get_class(rr, rl, dl),
		sldns_wirerr_get_rdatawl(rr, rl, dl),
		sldns_wirerr_get_rdatalen(rr, rl, dl)+2))) {
		return NULL;
	}
	log_nametypeclass(VERB_QUERY, "adding trusted key",
		rr, sldns_wirerr_get_type(rr, rl, dl),
		sldns_wirerr_get_class(rr, rl, dl));
	return ta;
}
Beispiel #3
0
/** load an RR into rrset */
static int
load_rr(SSL* ssl, sldns_buffer* buf, struct regional* region,
	struct ub_packed_rrset_key* rk, struct packed_rrset_data* d,
	unsigned int i, int is_rrsig, int* go_on, time_t now)
{
	uint8_t rr[LDNS_RR_BUF_SIZE];
	size_t rr_len = sizeof(rr), dname_len = 0;
	int status;

	/* read the line */
	if(!ssl_read_buf(ssl, buf))
		return 0;
	if(strncmp((char*)sldns_buffer_begin(buf), "BADRR\n", 6) == 0) {
		*go_on = 0;
		return 1;
	}
	status = sldns_str2wire_rr_buf((char*)sldns_buffer_begin(buf), rr,
		&rr_len, &dname_len, 3600, NULL, 0, NULL, 0);
	if(status != 0) {
		log_warn("error cannot parse rr: %s: %s",
			sldns_get_errorstr_parse(status),
			(char*)sldns_buffer_begin(buf));
		return 0;
	}
	if(is_rrsig && sldns_wirerr_get_type(rr, rr_len, dname_len)
		!= LDNS_RR_TYPE_RRSIG) {
		log_warn("error expected rrsig but got %s",
			(char*)sldns_buffer_begin(buf));
		return 0;
	}

	/* convert ldns rr into packed_rr */
	d->rr_ttl[i] = (time_t)sldns_wirerr_get_ttl(rr, rr_len, dname_len) + now;
	sldns_buffer_clear(buf);
	d->rr_len[i] = sldns_wirerr_get_rdatalen(rr, rr_len, dname_len)+2;
	d->rr_data[i] = (uint8_t*)regional_alloc_init(region, 
		sldns_wirerr_get_rdatawl(rr, rr_len, dname_len), d->rr_len[i]);
	if(!d->rr_data[i]) {
		log_warn("error out of memory");
		return 0;
	}

	/* if first entry, fill the key structure */
	if(i==0) {
		rk->rk.type = htons(sldns_wirerr_get_type(rr, rr_len, dname_len));
		rk->rk.rrset_class = htons(sldns_wirerr_get_class(rr, rr_len, dname_len));
		rk->rk.dname_len = dname_len;
		rk->rk.dname = regional_alloc_init(region, rr, dname_len);
		if(!rk->rk.dname) {
			log_warn("error out of memory");
			return 0;
		}
	}

	return 1;
}
Beispiel #4
0
/** return name and class of rr; parses string */
static int
get_rr_nameclass(const char* str, uint8_t** nm, uint16_t* dclass)
{
	uint8_t rr[LDNS_RR_BUF_SIZE];
	size_t len = sizeof(rr), dname_len = 0;
	int s = sldns_str2wire_rr_buf(str, rr, &len, &dname_len, 3600,
		NULL, 0, NULL, 0);
	if(s != 0) {
		log_err("error parsing local-data at %d '%s': %s",
			LDNS_WIREPARSE_OFFSET(s), str,
			sldns_get_errorstr_parse(s));
		return 0;
	}
	*nm = memdup(rr, dname_len);
	*dclass = sldns_wirerr_get_class(rr, len, dname_len);
	if(!*nm) {
		log_err("out of memory");
		return 0;
	}
	return 1;
}
Beispiel #5
0
/** read qinfo from next three words */
static char*
load_qinfo(char* str, struct query_info* qinfo, struct regional* region)
{
	/* s is part of the buf */
	char* s = str;
	uint8_t rr[LDNS_RR_BUF_SIZE];
	size_t rr_len = sizeof(rr), dname_len = 0;
	int status;

	/* skip three words */
	s = strchr(str, ' ');
	if(s) s = strchr(s+1, ' ');
	if(s) s = strchr(s+1, ' ');
	if(!s) {
		log_warn("error line too short, %s", str);
		return NULL;
	}
	s[0] = 0;
	s++;

	/* parse them */
	status = sldns_str2wire_rr_question_buf(str, rr, &rr_len, &dname_len,
		NULL, 0, NULL, 0);
	if(status != 0) {
		log_warn("error cannot parse: %s %s",
			sldns_get_errorstr_parse(status), str);
		return NULL;
	}
	qinfo->qtype = sldns_wirerr_get_type(rr, rr_len, dname_len);
	qinfo->qclass = sldns_wirerr_get_class(rr, rr_len, dname_len);
	qinfo->qname_len = dname_len;
	qinfo->qname = (uint8_t*)regional_alloc_init(region, rr, dname_len);
	qinfo->local_alias = NULL;
	if(!qinfo->qname) {
		log_warn("error out of memory");
		return NULL;
	}

	return s;
}
Beispiel #6
0
/** read root hints from file */
static int 
read_root_hints(struct iter_hints* hints, char* fname)
{
	struct sldns_file_parse_state pstate;
	struct delegpt* dp;
	uint8_t rr[LDNS_RR_BUF_SIZE];
	size_t rr_len, dname_len;
	int status;
	uint16_t c = LDNS_RR_CLASS_IN;
	FILE* f = fopen(fname, "r");
	if(!f) {
		log_err("could not read root hints %s: %s",
			fname, strerror(errno));
		return 0;
	}
	dp = delegpt_create_mlc(NULL);
	if(!dp) {
		log_err("out of memory reading root hints");
		fclose(f);
		return 0;
	}
	verbose(VERB_QUERY, "Reading root hints from %s", fname);
	memset(&pstate, 0, sizeof(pstate));
	pstate.lineno = 1;
	dp->has_parent_side_NS = 1;
	while(!feof(f)) {
		rr_len = sizeof(rr);
		dname_len = 0;
		status = sldns_fp2wire_rr_buf(f, rr, &rr_len, &dname_len,
			&pstate);
		if(status != 0) {
			log_err("reading root hints %s %d:%d: %s", fname,
				pstate.lineno, LDNS_WIREPARSE_OFFSET(status),
				sldns_get_errorstr_parse(status));
			goto stop_read;
		}
		if(rr_len == 0)
			continue; /* EMPTY line, TTL or ORIGIN */
		if(sldns_wirerr_get_type(rr, rr_len, dname_len)
			== LDNS_RR_TYPE_NS) {
			if(!delegpt_add_ns_mlc(dp, sldns_wirerr_get_rdata(rr,
				rr_len, dname_len), 0)) {
				log_err("out of memory reading root hints");
				goto stop_read;
			}
			c = sldns_wirerr_get_class(rr, rr_len, dname_len);
			if(!dp->name) {
				if(!delegpt_set_name_mlc(dp, rr)) {
					log_err("out of memory.");
					goto stop_read;
				}
			}
		} else if(sldns_wirerr_get_type(rr, rr_len, dname_len)
			== LDNS_RR_TYPE_A && sldns_wirerr_get_rdatalen(rr,
			rr_len, dname_len) == INET_SIZE) {
			struct sockaddr_in sa;
			socklen_t len = (socklen_t)sizeof(sa);
			memset(&sa, 0, len);
			sa.sin_family = AF_INET;
			sa.sin_port = (in_port_t)htons(UNBOUND_DNS_PORT);
			memmove(&sa.sin_addr, 
				sldns_wirerr_get_rdata(rr, rr_len, dname_len),
				INET_SIZE);
			if(!delegpt_add_target_mlc(dp, rr, dname_len,
					(struct sockaddr_storage*)&sa, len, 
					0, 0)) {
				log_err("out of memory reading root hints");
				goto stop_read;
			}
		} else if(sldns_wirerr_get_type(rr, rr_len, dname_len)
			== LDNS_RR_TYPE_AAAA && sldns_wirerr_get_rdatalen(rr,
			rr_len, dname_len) == INET6_SIZE) {
			struct sockaddr_in6 sa;
			socklen_t len = (socklen_t)sizeof(sa);
			memset(&sa, 0, len);
			sa.sin6_family = AF_INET6;
			sa.sin6_port = (in_port_t)htons(UNBOUND_DNS_PORT);
			memmove(&sa.sin6_addr, 
				sldns_wirerr_get_rdata(rr, rr_len, dname_len),
				INET6_SIZE);
			if(!delegpt_add_target_mlc(dp, rr, dname_len,
					(struct sockaddr_storage*)&sa, len,
					0, 0)) {
				log_err("out of memory reading root hints");
				goto stop_read;
			}
		} else {
			char buf[17];
			sldns_wire2str_type_buf(sldns_wirerr_get_type(rr,
				rr_len, dname_len), buf, sizeof(buf));
			log_warn("root hints %s:%d skipping type %s",
				fname, pstate.lineno, buf);
		}
	}
	fclose(f);
	if(!dp->name) {
		log_warn("root hints %s: no NS content", fname);
		delegpt_free_mlc(dp);
		return 1;
	}
	if(!hints_insert(hints, c, dp, 0)) {
		return 0;
	}
	delegpt_log(VERB_QUERY, dp);
	return 1;

stop_read:
	delegpt_free_mlc(dp);
	fclose(f);
	return 0;
}