unbound-1.16.2-5.14.el8_10.4
エラータID: AXSA:2026-1917:14
The unbound packages provide a validating, recursive, and caching DNS or DNSSEC resolver.
Security Fix(es):
* unbound: Unbound: Remote Code Execution Vulnerability in CNAME Synthesis (CVE-2026-82717)
* unbound: Unbound: Heap buffer overflow via malicious DNSSEC response (CVE-2026-81634)
* unbound: Unbound: Heap buffer overflow and possible Remote Code Execution when digesting DNSKEY (CVE-2026-81642)
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-2026-81634
In NLnet Labs Unbound up to and including 1.26.0, a 255 length query name with a large TCP response can lead to a heap buffer overflow during the RRSet canonicalisation routine. This is caused by missing to add the first owner name into the buffer length check. A malicious actor operating a malicious name server or tampering with an incoming response to Unbound (canonicalisation happens before DNSSEC validation), can trigger the vulnerability.
CVE-2026-81642
In NLnet Labs Unbound up to and including 1.26.0, a vulnerability was found in the DNSSEC validator that enables denial of service and possible remote code execution as a result of digesting DNSKEYs. A DNSKEY with an owner compression pointer to its own RDATA can overflow the digest buffer. Remote code execution is possible through attacker controlled data. An adversary can exploit the vulnerability by controlling a malicious zone and querying a vulnerable Unbound.
CVE-2026-82717
In NLnet Labs Unbound up to and including 1.26.0, a vulnerability was found in that can progressively corrupt heap memory and under certain systems and compilation options could lead to remote code execution. The vulnerability starts when CNAME synthesis during an upstream response needs to enforce(rewrite) a max TTL value in the packet buffer. Coupled with a compression pointer that points to the overwritten value and invalidates the domain name, it leads to an error path that does not properly move the buffer position and allows for the heap buffer overflow. Since this is heavily reliant on heap memory layout, results are memory corruption that eventually leads to a crash and under specific systems and compilation options remote code execution.
Update packages.
In NLnet Labs Unbound up to and including 1.26.0, a 255 length query name with a large TCP response can lead to a heap buffer overflow during the RRSet canonicalisation routine. This is caused by missing to add the first owner name into the buffer length check. A malicious actor operating a malicious name server or tampering with an incoming response to Unbound (canonicalisation happens before DNSSEC validation), can trigger the vulnerability.
In NLnet Labs Unbound up to and including 1.26.0, a vulnerability was found in the DNSSEC validator that enables denial of service and possible remote code execution as a result of digesting DNSKEYs. A DNSKEY with an owner compression pointer to its own RDATA can overflow the digest buffer. Remote code execution is possible through attacker controlled data. An adversary can exploit the vulnerability by controlling a malicious zone and querying a vulnerable Unbound.
In NLnet Labs Unbound up to and including 1.26.0, a vulnerability was found in that can progressively corrupt heap memory and under certain systems and compilation options could lead to remote code execution. The vulnerability starts when CNAME synthesis during an upstream response needs to enforce(rewrite) a max TTL value in the packet buffer. Coupled with a compression pointer that points to the overwritten value and invalidates the domain name, it leads to an error path that does not properly move the buffer position and allows for the heap buffer overflow. Since this is heavily reliant on heap memory layout, results are memory corruption that eventually leads to a crash and under specific systems and compilation options remote code execution.
N/A
SRPMS
- unbound-1.16.2-5.14.el8_10.4.src.rpm
MD5: 35d5391d6d2d9232a6363a2254741345
SHA-256: 8ed052eacbed91efd1b4e35b7081bd001b79719035ab5d54c710d615e5dbc27e
Size: 6.05 MB
Asianux Server 8 for x86_64
- python3-unbound-1.16.2-5.14.el8_10.4.x86_64.rpm
MD5: c5289aac791141f165c28bcd5523f1ca
SHA-256: 1e2812ba13a1744a9dcc250bd6cfc26c17dfda3f55971b81bc0b25b7fb2081a5
Size: 130.37 kB - unbound-1.16.2-5.14.el8_10.4.x86_64.rpm
MD5: 0c7621431a11ad96ad83e848597ca867
SHA-256: b3201ba6fa38fa2f7f7beb9a17c340bc187ec0a244afa49091014ff65469dbd5
Size: 1.01 MB - unbound-devel-1.16.2-5.14.el8_10.4.i686.rpm
MD5: d42c1f6fa00ff6bd4cc8fe57955506ec
SHA-256: 91b810a91c0b71109d668d7f1777bdbba99cb7a71da538f145b21c556e343039
Size: 57.99 kB - unbound-devel-1.16.2-5.14.el8_10.4.x86_64.rpm
MD5: 1fab9bb294baf07ee9a90121cbd8e85e
SHA-256: 365edd23c80265984e3bcd8b5d31d79f9c81499b8de90ddd4d60d618bdb069f3
Size: 57.97 kB - unbound-libs-1.16.2-5.14.el8_10.4.i686.rpm
MD5: 504b8bf4ed4253ea1303379a7ae005a4
SHA-256: 1a00f84f7b33f07fcb35e7259692912b7ccd9dd0dd544b08f451c075f0f8b289
Size: 621.29 kB - unbound-libs-1.16.2-5.14.el8_10.4.x86_64.rpm
MD5: 30cc70009a8afa727e2b3999237332a7
SHA-256: e7f266444c03ddf048d4636ff034cb5f28a587efd4f0f7b403d17387339460aa
Size: 580.57 kB