unbound-1.24.2-3.el9_8.6
エラータID: AXSA:2026-1876:12
The unbound packages provide a validating, recursive, and caching DNS or DNSSEC resolver.
Security Fix(es):
* unbound: Unbound: DNS cache poisoning via UDP source port predictability (CVE-2026-50252)
For more details about the security issue(s), including the impact, a CVSS score, acknowledgments, and other related information, refer to the CVE page(s) listed in the References section.
CVE-2026-50252
In NLnet Labs Unbound 1.4.22 up to and including 1.25.1, UDP source port is randomized and intended to serve as a secret value that increases the entropy of DNS transactions. When resolver load balancing policies depend on the source port while their outcome is revealed this secrecy is undermined. The vulnerability arises when the load balancing policy is consistent with respect to the incoming source UDP port and IP address while heavily depending on the incoming source UDP port as a randomization source. When the SO_REUSEPORT configuration option is enabled ('so-reuseport: yes') in Unbound (by default), it meets these conditions, making it vulnerable for DNS cache poisoning attacks. Upon startup, Unbound randomly partitions the available UDP source port space into disjoint subsets of (almost) equal size, assigning each subset to a specific worker thread. When an incoming DNS query is received, the kernel’s SO_REUSEPORT load balancing mechanism deterministically assigns the query to a socket associated with a particular thread. All outgoing DNS queries generated during the resolution of that request use source ports selected exclusively from the port subset assigned to the corresponding thread. Since these port subsets are disjoint across threads, the source port observed in a resolver’s outgoing query to an authoritative name server serves as a reliable indicator of the worker thread that processed the original client query. A malicious actor can acquire the mapping between incoming UDP source ports (for a given fixed source IP address) and Unbound worker threads and leverage it to conduct DNS cache poisoning attacks by effectively lowering the random port population per thread.
Update packages.
In NLnet Labs Unbound 1.4.22 up to and including 1.25.1, UDP source port is randomized and intended to serve as a secret value that increases the entropy of DNS transactions. When resolver load balancing policies depend on the source port while their outcome is revealed this secrecy is undermined. The vulnerability arises when the load balancing policy is consistent with respect to the incoming source UDP port and IP address while heavily depending on the incoming source UDP port as a randomization source. When the SO_REUSEPORT configuration option is enabled ('so-reuseport: yes') in Unbound (by default), it meets these conditions, making it vulnerable for DNS cache poisoning attacks. Upon startup, Unbound randomly partitions the available UDP source port space into disjoint subsets of (almost) equal size, assigning each subset to a specific worker thread. When an incoming DNS query is received, the kernel’s SO_REUSEPORT load balancing mechanism deterministically assigns the query to a socket associated with a particular thread. All outgoing DNS queries generated during the resolution of that request use source ports selected exclusively from the port subset assigned to the corresponding thread. Since these port subsets are disjoint across threads, the source port observed in a resolver’s outgoing query to an authoritative name server serves as a reliable indicator of the worker thread that processed the original client query. A malicious actor can acquire the mapping between incoming UDP source ports (for a given fixed source IP address) and Unbound worker threads and leverage it to conduct DNS cache poisoning attacks by effectively lowering the random port population per thread.
N/A
SRPMS
- unbound-1.24.2-3.el9_8.6.src.rpm
MD5: d5a5e3f5626d504630ea87a4a296a0b5
SHA-256: 7dede8a64f2b4250bc5d51f5f87598b76a7abadc41a005b958bd2bc115405864
Size: 6.70 MB
Asianux Server 9 for x86_64
- python3-unbound-1.24.2-3.el9_8.6.x86_64.rpm
MD5: 742d2035c3adf1d63e65e445a922e322
SHA-256: af08237199e70dead03e95843716650365b7a866eb7353a8a59753dfb1c0faf3
Size: 107.09 kB - unbound-1.24.2-3.el9_8.6.x86_64.rpm
MD5: b70495c8c630d305c99cf63f60bf0632
SHA-256: 76fd92998a2aab224fbb4a5c5dd96531eec152469e22216f73caef8410a9f42a
Size: 1.05 MB - unbound-devel-1.24.2-3.el9_8.6.i686.rpm
MD5: 858f35e9f7220958caae02f02189324a
SHA-256: 04ea1edfb9e7787a211b371857f21d018c83b7eaa5857082bd483a13541604c0
Size: 37.29 kB - unbound-devel-1.24.2-3.el9_8.6.x86_64.rpm
MD5: 873b47eff3a94de1d8bd4973ea8e356a
SHA-256: 66c95683533948041fc7768d1368b77ea998f0a768adac2aae1444f141c1d126
Size: 37.29 kB - unbound-dracut-1.24.2-3.el9_8.6.x86_64.rpm
MD5: c66e3bc0bac2f6ea08f28d453f4d6a47
SHA-256: 904458bf39140148aa921fb5a616721610ed6c982200bbb5eafd49029682047f
Size: 8.15 kB - unbound-libs-1.24.2-3.el9_8.6.i686.rpm
MD5: 72fccecb8630e7387a4797764211608b
SHA-256: 4346bef664635ecd3b4516d8315bfdee85a4d39bac3240f4ae81d99773a8712d
Size: 609.06 kB - unbound-libs-1.24.2-3.el9_8.6.x86_64.rpm
MD5: 551ec8efccfeba967cdc45babf21daec
SHA-256: 875da43a3afe9cbb2c8a34a6f01c63a0fc6de055fff565fdf3d48eae6c785bac
Size: 583.27 kB