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-rw-r--r--src/resolve/resolved-dns-dnssec.c6
1 files changed, 3 insertions, 3 deletions
diff --git a/src/resolve/resolved-dns-dnssec.c b/src/resolve/resolved-dns-dnssec.c
index 7123d2d3a8..7aea9cb653 100644
--- a/src/resolve/resolved-dns-dnssec.c
+++ b/src/resolve/resolved-dns-dnssec.c
@@ -635,9 +635,9 @@ int dnssec_verify_rrset(
assert(rrsig->key->type == DNS_TYPE_RRSIG);
assert(dnskey->key->type == DNS_TYPE_DNSKEY);
- /* Verifies the the RRSet matching the specified "key" in "a",
+ /* Verifies that the RRSet matches the specified "key" in "a",
* using the signature "rrsig" and the key "dnskey". It's
- * assumed the RRSIG and DNSKEY match. */
+ * assumed that RRSIG and DNSKEY match. */
md_algorithm = algorithm_to_gcrypt_md(rrsig->rrsig.algorithm);
if (md_algorithm == -EOPNOTSUPP) {
@@ -1989,7 +1989,7 @@ static int dnssec_test_positive_wildcard_nsec3(
/* Run a positive NSEC3 wildcard proof. Specifically:
*
- * A proof that the the "next closer" of the generating wildcard does not exist.
+ * A proof that the "next closer" of the generating wildcard does not exist.
*
* Note a key difference between the NSEC3 and NSEC versions of the proof. NSEC RRs don't have to exist for
* empty non-transients. NSEC3 RRs however have to. This means it's sufficient to check if the next closer name