Количество 9
Количество 9
BDU:2026-13672
Уязвимость алгоритма аутентификации TSIG сервера coredns, позволяющая нарушителю повысить свои привилегии
CVE-2026-35579
CoreDNS is a DNS server written in Go. In versions prior to 1.14.3, the gRPC, QUIC, DoH, and DoH3 transport implementations incorrectly handle TSIG authentication. For gRPC and QUIC, the server checks whether the TSIG key name exists in the configuration but never calls dns.TsigVerify() to validate the HMAC. If the key name matches a configured key, the tsigStatus field remains nil and the tsig plugin treats the request as successfully authenticated regardless of the MAC value. For DoH and DoH3, the issue is more severe: the DoHWriter.TsigStatus() method unconditionally returns nil, and the server never inspects the TSIG record at all. Any request containing a TSIG record is treated as authenticated over DoH and DoH3, even if the key name is invalid and the MAC is arbitrary. An unauthenticated network attacker can exploit this to bypass TSIG-protected functionality such as AXFR/IXFR zone transfers, dynamic DNS updates, or other TSIG-gated plugin behavior. The DoH and DoH3 variants h...
CVE-2026-35579
CoreDNS is a DNS server written in Go. In versions prior to 1.14.3, the gRPC, QUIC, DoH, and DoH3 transport implementations incorrectly handle TSIG authentication. For gRPC and QUIC, the server checks whether the TSIG key name exists in the configuration but never calls dns.TsigVerify() to validate the HMAC. If the key name matches a configured key, the tsigStatus field remains nil and the tsig plugin treats the request as successfully authenticated regardless of the MAC value. For DoH and DoH3, the issue is more severe: the DoHWriter.TsigStatus() method unconditionally returns nil, and the server never inspects the TSIG record at all. Any request containing a TSIG record is treated as authenticated over DoH and DoH3, even if the key name is invalid and the MAC is arbitrary. An unauthenticated network attacker can exploit this to bypass TSIG-protected functionality such as AXFR/IXFR zone transfers, dynamic DNS updates, or other TSIG-gated plugin behavior. The DoH and DoH3 variants hav
CVE-2026-35579
CoreDNS TSIG authentication bypass on gRPC, QUIC, DoH, and DoH3 transports
CVE-2026-35579
CoreDNS is a DNS server written in Go. In versions prior to 1.14.3, th ...
ROS-20260729-80-0044
Уязвимость coredns
ROS-20260729-73-0033
Уязвимость coredns
GHSA-vp29-5652-4fw9
CoreDNS has TSIG authentication bypass on gRPC and QUIC transports
openSUSE-SU-2026:20703-1
Security update for coredns
Уязвимостей на страницу
Уязвимость | CVSS | EPSS | Опубликовано | |
|---|---|---|---|---|
BDU:2026-13672 Уязвимость алгоритма аутентификации TSIG сервера coredns, позволяющая нарушителю повысить свои привилегии | CVSS3: 9.8 | 1% Низкий | 5 месяцев назад | |
CVE-2026-35579 CoreDNS is a DNS server written in Go. In versions prior to 1.14.3, the gRPC, QUIC, DoH, and DoH3 transport implementations incorrectly handle TSIG authentication. For gRPC and QUIC, the server checks whether the TSIG key name exists in the configuration but never calls dns.TsigVerify() to validate the HMAC. If the key name matches a configured key, the tsigStatus field remains nil and the tsig plugin treats the request as successfully authenticated regardless of the MAC value. For DoH and DoH3, the issue is more severe: the DoHWriter.TsigStatus() method unconditionally returns nil, and the server never inspects the TSIG record at all. Any request containing a TSIG record is treated as authenticated over DoH and DoH3, even if the key name is invalid and the MAC is arbitrary. An unauthenticated network attacker can exploit this to bypass TSIG-protected functionality such as AXFR/IXFR zone transfers, dynamic DNS updates, or other TSIG-gated plugin behavior. The DoH and DoH3 variants h... | CVSS3: 7.5 | 1% Низкий | 5 месяцев назад | |
CVE-2026-35579 CoreDNS is a DNS server written in Go. In versions prior to 1.14.3, the gRPC, QUIC, DoH, and DoH3 transport implementations incorrectly handle TSIG authentication. For gRPC and QUIC, the server checks whether the TSIG key name exists in the configuration but never calls dns.TsigVerify() to validate the HMAC. If the key name matches a configured key, the tsigStatus field remains nil and the tsig plugin treats the request as successfully authenticated regardless of the MAC value. For DoH and DoH3, the issue is more severe: the DoHWriter.TsigStatus() method unconditionally returns nil, and the server never inspects the TSIG record at all. Any request containing a TSIG record is treated as authenticated over DoH and DoH3, even if the key name is invalid and the MAC is arbitrary. An unauthenticated network attacker can exploit this to bypass TSIG-protected functionality such as AXFR/IXFR zone transfers, dynamic DNS updates, or other TSIG-gated plugin behavior. The DoH and DoH3 variants hav | CVSS3: 9.8 | 1% Низкий | 5 месяцев назад | |
CVE-2026-35579 CoreDNS TSIG authentication bypass on gRPC, QUIC, DoH, and DoH3 transports | 1% Низкий | 5 месяцев назад | ||
CVE-2026-35579 CoreDNS is a DNS server written in Go. In versions prior to 1.14.3, th ... | CVSS3: 9.8 | 1% Низкий | 5 месяцев назад | |
ROS-20260729-80-0044 Уязвимость coredns | CVSS3: 7.5 | 1% Низкий | около 2 месяцев назад | |
ROS-20260729-73-0033 Уязвимость coredns | CVSS3: 7.5 | 1% Низкий | около 2 месяцев назад | |
GHSA-vp29-5652-4fw9 CoreDNS has TSIG authentication bypass on gRPC and QUIC transports | CVSS3: 7.5 | 1% Низкий | 5 месяцев назад | |
openSUSE-SU-2026:20703-1 Security update for coredns | 5 месяцев назад |
Уязвимостей на страницу