CVE-2018-15329
https://notcve.org/view.php?id=CVE-2018-15329
On BIG-IP 14.0.0-14.0.0.2, 13.0.0-13.1.1.1, or 12.1.0-12.1.3.7, or Enterprise Manager 3.1.1, when authenticated administrative users run commands in the Traffic Management User Interface (TMUI), also referred to as the BIG-IP Configuration utility, restrictions on allowed commands may not be enforced. En BIG-IP 14.0.0-14.0.0.2, 13.0.0-13.1.1.1, o 12.1.0-12.1.3.7; o Enterprise Manager 3.1.1, cuando los usuarios administrativos autenticados ejecutan comandos en el TMUI (Traffic Management User Interface), también llamado utilidad BIG-IP Configuration, podrían no aplicarse las restricciones sobre los comandos permitidos. • https://support.f5.com/csp/article/K61620494 • CWE-862: Missing Authorization •
CVE-2018-15328
https://notcve.org/view.php?id=CVE-2018-15328
On BIG-IP 14.0.x, 13.x, 12.x, and 11.x, Enterprise Manager 3.1.1, BIG-IQ 6.x, 5.x, and 4.x, and iWorkflow 2.x, the passphrases for SNMPv3 users and trap destinations that are used for authentication and privacy are not handled by the BIG-IP system Secure Vault feature; they are written in the clear to the various configuration files. En BIG-IP 14.0.x, 13.x, 12.x y 11.x, Enterprise Manager 3.1.1, BIG-IQ 6.x, 5.x y 4.x, e iWorkflow 2.x, las frases de contraseña para los usuarios SNMPv3 y destinos de captura que se emplean para la autenticación y la privacidad no son gestionados por la característica del sistema Secure Vault de BIG-IP; están escritos en claro en los diferentes archivos de configuración. • http://www.securityfocus.com/bid/106258 https://support.f5.com/csp/article/K42027747 • CWE-200: Exposure of Sensitive Information to an Unauthorized Actor •
CVE-2018-5391 – The Linux kernel, versions 3.9+, IP implementation is vulnerable to denial of service conditions with low rates of specially modified packets
https://notcve.org/view.php?id=CVE-2018-5391
The Linux kernel, versions 3.9+, is vulnerable to a denial of service attack with low rates of specially modified packets targeting IP fragment re-assembly. An attacker may cause a denial of service condition by sending specially crafted IP fragments. Various vulnerabilities in IP fragmentation have been discovered and fixed over the years. The current vulnerability (CVE-2018-5391) became exploitable in the Linux kernel with the increase of the IP fragment reassembly queue size. El kernel de Linux en versiones a partir de la 3.9 es vulnerable a un ataque de denegación de servicio (DoS) con tasas bajas de paquetes especialmente modificados que apuntan hacia el reensamblado de fragmentos de IP. • http://www.arubanetworks.com/assets/alert/ARUBA-PSA-2018-004.txt http://www.huawei.com/en/psirt/security-advisories/huawei-sa-20200115-01-linux-en http://www.openwall.com/lists/oss-security/2019/06/28/2 http://www.openwall.com/lists/oss-security/2019/07/06/3 http://www.openwall.com/lists/oss-security/2019/07/06/4 http://www.securityfocus.com/bid/105108 http://www.securitytracker.com/id/1041476 http://www.securitytracker.com/id/1041637 https://access.redhat.co • CWE-20: Improper Input Validation CWE-400: Uncontrolled Resource Consumption •
CVE-2018-5390 – Linux kernel versions 4.9+ can be forced to make very expensive calls to tcp_collapse_ofo_queue() and tcp_prune_ofo_queue() for every incoming packet which can lead to a denial of service
https://notcve.org/view.php?id=CVE-2018-5390
Linux kernel versions 4.9+ can be forced to make very expensive calls to tcp_collapse_ofo_queue() and tcp_prune_ofo_queue() for every incoming packet which can lead to a denial of service. El kernel de Linux en versiones 4.9 y siguientes pueden forzarse a realizar llamadas muy caras a tcp_collapse_ofo_queue() y tcp_prune_ofo_queue() para cada paquete entrante, lo que puede conducir a una denegación de servicio. A flaw named SegmentSmack was found in the way the Linux kernel handled specially crafted TCP packets. A remote attacker could use this flaw to trigger time and calculation expensive calls to tcp_collapse_ofo_queue() and tcp_prune_ofo_queue() functions by sending specially modified packets within ongoing TCP sessions which could lead to a CPU saturation and hence a denial of service on the system. Maintaining the denial of service condition requires continuous two-way TCP sessions to a reachable open port, thus the attacks cannot be performed using spoofed IP addresses. • http://www.arubanetworks.com/assets/alert/ARUBA-PSA-2018-004.txt http://www.huawei.com/en/psirt/security-advisories/huawei-sa-20181031-02-linux-en http://www.openwall.com/lists/oss-security/2019/06/28/2 http://www.openwall.com/lists/oss-security/2019/07/06/3 http://www.openwall.com/lists/oss-security/2019/07/06/4 http://www.securityfocus.com/bid/104976 http://www.securitytracker.com/id/1041424 http://www.securitytracker.com/id/1041434 https://access.redhat.co • CWE-400: Uncontrolled Resource Consumption •
CVE-2018-5535
https://notcve.org/view.php?id=CVE-2018-5535
On F5 BIG-IP 14.0.0, 13.0.0-13.1.0, 12.1.0-12.1.3, or 11.5.1-11.6.3 specifically crafted HTTP responses, when processed by a Virtual Server with an associated QoE profile that has Video enabled, may cause TMM to incorrectly buffer response data causing the TMM to restart resulting in a Denial of Service. En F5 BIG-IP 14.0.0, 13.0.0-13.1.0, 12.1.0-12.1.3 o 11.5.1-11.6.3, las respuestas HTTP específicamente manipuladas, al ser procesadas por un servidor virtual con un perfil QoE asociado que tiene el vídeo habilitado, podrían provocar que el TMM almacene en el búfer incorrectamente respuestas de datos. Esto provocaría el reinicio del TMM y una denegación de servicio (DoS). • http://www.securitytracker.com/id/1041344 https://support.f5.com/csp/article/K19634255 • CWE-20: Improper Input Validation •