[UPDATE] [high] Linux Kernel: Multiple vulnerabilities
An attacker can exploit multiple vulnerabilities in the Linux Kernel to cause a Denial of Service state or unspecified effects.
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An attacker can exploit multiple vulnerabilities in the Linux Kernel to cause a Denial of Service state or unspecified effects.
A remote anonymous attacker can exploit multiple vulnerabilities in the Linux Kernel to create a Denial of Service state or perform other unspecified attacks.
An attacker can exploit multiple vulnerabilities in the Linux Kernel to create a Denial of Service state or perform unspecified attacks.
A remote, anonymous attacker can exploit multiple vulnerabilities in the Linux Kernel to conduct a denial of service attack or achieve unspecified effects.
An attacker can exploit a vulnerability in the Linux Kernel to conduct an unspecified attack.
An attacker can exploit multiple vulnerabilities in Linux Kernel to conduct a denial of service attack and achieve unspecified effects.
A local attacker can exploit multiple vulnerabilities in Linux Kernel to manipulate files or escalate privileges.
An attacker can exploit multiple vulnerabilities in Linux Kernel to cause a denial of service state or other unspecified effects.
A local attacker can exploit multiple vulnerabilities in the Linux Kernel to carry out a denial-of-service attack or cause other unspecified impacts.
A local attacker can exploit a vulnerability in Linux Kernel to conduct a denial of service attack.
A local attacker can exploit multiple vulnerabilities in Linux Kernel to conduct a denial of service attack.
An attacker can exploit multiple vulnerabilities in Linux Kernel to bring about a denial of service state or conduct an unspecified attack.
An attacker can exploit multiple vulnerabilities in Linux Kernel to conduct a denial of service attack or achieve unspecified effects.
A local attacker can exploit multiple vulnerabilities in the Linux Kernel to carry out a denial of service attack.
A local attacker can exploit multiple vulnerabilities in the Linux Kernel to manipulate data or cause a denial of service.
An attacker can exploit multiple vulnerabilities in the Linux Kernel to carry out a denial of service attack and other unspecified attacks.
An attacker can exploit multiple vulnerabilities in the Linux Kernel to carry out a denial of service attack or achieve unspecified effects.
A remote, anonymous attacker can exploit a vulnerability in OpenSSH GSSAPI and Ubuntu Linux to trigger undefined behavior or a potential denial-of-service attack.
An attacker can exploit multiple vulnerabilities in the Linux Kernel to carry out a denial of service attack or achieve unspecified effects.
An attacker can exploit multiple vulnerabilities in cURL to bypass security measures, disclose confidential information, or manipulate data.
A local attacker can exploit multiple vulnerabilities in the Linux Kernel to carry out a denial of service attack, escalate their privileges, or carry out an unspecified attack.
An attacker can exploit multiple vulnerabilities in OpenSSH to disclose information.
A local attacker can exploit multiple vulnerabilities in OpenSSH to bypass security measures or cause a denial of service state.
A local attacker can exploit a vulnerability in OpenSSH to elevate their privileges.
An attacker from an adjacent network can exploit multiple vulnerabilities in DENX U-Boot to perform a denial of service attack and execute arbitrary code.
An attacker can exploit multiple vulnerabilities in Apache Airflow to bypass security measures and elevate their privileges.
An attacker can exploit multiple vulnerabilities in Gitea to execute arbitrary code, gain elevated permissions, bypass security measures, manipulate data, disclose sensitive information, hijack or reuse sessions, or trigger a denial-of-service state.
An attacker can exploit a vulnerability in Mozilla Firefox to manipulate files.
A remote, anonymous attacker can exploit a vulnerability in HCL BigFix to manipulate data.
A remote, anonymous attacker can exploit a vulnerability in Ollama to perform a denial of service attack.
A local attacker can exploit multiple vulnerabilities in binutils to conduct a denial of service attack or execute code.
A remote, anonymous attacker can exploit a vulnerability in binutils to conduct a denial of service attack.
A local attacker can exploit a vulnerability in libexif to execute potentially arbitrary code, cause a denial-of-service condition, or disclose sensitive information.
A local attacker can exploit multiple vulnerabilities in binutils to disclose confidential information or cause a denial-of-service condition.
A local attacker can exploit multiple vulnerabilities in binutils to conduct a denial of service attack or execute arbitrary code.
A remote, anonymous attacker can exploit multiple vulnerabilities in Django to conduct a denial of service attack or disclose confidential information.
A remote, anonymous attacker can exploit multiple vulnerabilities in Django to conduct a denial of service attack, manipulate files, and disclose confidential information.
A remote anonymous attacker can exploit multiple vulnerabilities in Django to create a denial-of-service condition or disclose confidential information.
A remote, anonymous attacker can exploit a vulnerability in Django to conduct a denial of service attack.
A remote, anonymous attacker can exploit a vulnerability in Django to conduct a denial of service attack.
A remote, anonymous attacker can exploit a vulnerability in Django to conduct a denial of service attack.
A remote, anonymous attacker can exploit a vulnerability in Django and Ubuntu Linux to conduct a denial of service attack.
A remote, anonymous attacker can exploit a vulnerability in Django to conduct a denial of service attack.
A remote, anonymous attacker can exploit a vulnerability in Django to bypass security measures.
A remote, anonymous attacker can exploit multiple vulnerabilities in Adobe ColdFusion to execute arbitrary code, gain elevated permissions, bypass security measures, conduct cross-site scripting attacks, manipulate data, or disclose confidential information.
An attacker can exploit multiple vulnerabilities in RabbitMQ to cause a denial-of-service condition, bypass security measures, manipulate data, or disclose confidential information, potentially enabling further attacks.
An attacker can exploit multiple vulnerabilities in RabbitMQ to perform a cross-site scripting attack, manipulate data, disclose information, and conduct a denial of service attack.
An attacker can exploit multiple vulnerabilities in Mattermost to carry out an unspecified attack.
Heap-based buffer overflow in Microsoft Windows Media Foundation allows an unauthorized attacker to execute code over a network.
CVSSv3 Score: 5.3 An Improper Neutralization of Script-Related HTML Tags in a Web Page (Basic XSS) vulnerability [CWE-80] in FortiSIEM may allow a privileged administrator to execute unauthorized commands via crafted requests. Revised on 2026-07-14 00:00:00