By severity
High-severity vulnerabilities
CVEs rated High by CVSS, with SEC.co remediation and prioritization guidance.
1713 published vulnerabilities · page 18 of 18
- CVE-2026-45597HIGH 7.0
A race condition vulnerability in Windows UI Automation Manager allows an authorized local user to escalate privileges on affected systems. The flaw arises from improper synchronization when multiple processes access shared resources simultaneously. An attacker with existing local access can exploit timing windows to gain system-level privileges. This is not a remote vulnerability and requires prior authentication or local access, which narrows but does not eliminate the risk in shared computing environments.
- CVE-2026-45598HIGH 7.0
A race condition in Windows' Ancillary Function Driver for WinSock (AFD.sys) allows an attacker who already has local access to a system to escalate their privileges to a higher level. The vulnerability stems from improper synchronization when the driver handles shared resources, meaning that under specific timing conditions, an attacker can exploit the flaw to gain elevated permissions. This is not a remote attack—the attacker must already have a foothold on the machine, such as a low-privileged user account or compromised application context.
- CVE-2026-45601HIGH 7.0
A race condition in the Windows Ancillary Function Driver for WinSock allows someone already logged into a Windows system to escalate their privileges to a higher level of access. The vulnerability arises from improper synchronization of shared resources, meaning two processes can interfere with each other when accessing the same data simultaneously. An attacker with local user privileges can exploit this timing-dependent flaw to gain elevated system rights, though doing so requires specific conditions and is not trivial to reproduce reliably.
- CVE-2026-45603HIGH 7.0
A race condition vulnerability exists in Windows' Ancillary Function Driver for WinSock (AFD) that allows an authorized local user to escalate privileges to a higher level on the system. The flaw arises from improper synchronization when multiple processes access a shared resource simultaneously, creating a narrow window of opportunity for an attacker to manipulate the driver's behavior. An authenticated user with basic local access can exploit this to gain elevated privileges, potentially achieving full system compromise. This is not a remote vulnerability and requires the attacker already has some level of access to the target machine.
- CVE-2026-45640HIGH 7.0
A use-after-free vulnerability in the Windows Bluetooth Port Driver permits a user with local system access to escalate their privileges to a higher level. The flaw exists because the driver fails to properly manage memory when Bluetooth port operations conclude, leaving a freed memory region accessible for malicious manipulation. An attacker must already have some level of local authentication and user rights to exploit this issue, but successful exploitation grants full system control.
- CVE-2026-45653HIGH 7.0
A heap-based buffer overflow vulnerability in the Windows Kernel allows a user with local system access to overflow a memory buffer, enabling them to execute code with elevated privileges. The attack requires an authenticated user account and moderate technical effort to exploit, but if successful grants attacker control over the affected system. This is a local privilege escalation issue, not a remote attack vector.
- CVE-2026-46154HIGH 7.0
A race condition exists in the Linux kernel's scheduler extension (sched_ext) cgroup interface that can lead to use-after-free memory access. When system administrators adjust cgroup scheduling parameters like weight, idle status, or bandwidth, the kernel reads a pointer to the scheduler without proper synchronization. If another process simultaneously disables and re-enables a different scheduler, the cached pointer becomes stale and points to freed memory. When the original operation tries to use this pointer, it dereferences already-freed kernel memory, potentially allowing local privilege escalation.
- CVE-2026-46164HIGH 7.0
A memory management bug in the Linux kernel's Btrfs filesystem can cause the same memory region to be freed twice when a sysfs initialization step fails. This double-free condition can lead to memory corruption and potentially allow an attacker with local access to crash the system or execute code with elevated privileges. The issue occurs in error handling code that wasn't properly coordinated between two layers of the filesystem's initialization logic.
- CVE-2026-46299HIGH 7.0
CVE-2026-46299 is a lock-handling bug in the Linux kernel's HFS+ filesystem driver that can allow a local attacker with moderate privileges to crash the system or potentially escalate privileges. The vulnerability occurs during filesystem mount when the code acquires a lock but fails to release it properly if certain filename validation steps fail. This causes the system to detect a memory leak while a critical lock is still held, triggering a kernel warning and potential system instability.
- CVE-2026-46309HIGH 7.0
CVE-2026-46309 is a memory access control flaw in the Linux kernel's GPU driver (xe) that can leak sensitive data. When a privileged process uses a low-coherency GPU memory mode on CPU-cached buffers, the GPU can bypass CPU caches and read stale data directly from RAM—including sensitive information from previously freed memory of other processes. The fix validates GPU memory configuration requests to prevent this dangerous combination.
- CVE-2026-47293HIGH 7.0
A use-after-free vulnerability exists in Microsoft Office's Click-To-Run installation and update mechanism. An attacker with valid credentials on a local machine can exploit a memory management flaw to gain elevated (administrator) privileges. This is not a remote vulnerability—it requires an authorized user account and local access—but the privilege escalation risk makes it a meaningful threat in environments where credential compromise or insider activity is a concern.
- CVE-2026-47648HIGH 7.0
CVE-2026-47648 is a privilege escalation vulnerability in Windows Storage that affects multiple versions of Windows 10, Windows 11, and Windows Server. An authorized local user can exploit an untrusted search path flaw to gain elevated privileges on a compromised system. The vulnerability requires local access and user interaction is not needed, but exploitation depends on specific system conditions. With a CVSS score of 7.0 (HIGH), this poses a meaningful risk to environments where local account compromise is plausible.
- CVE-2026-6090HIGH 7.0
CVE-2026-6090 is a HIGH severity authentication bypass vulnerability in Lenovo Smart Connect for Windows that allows an authenticated local user to gain elevated system privileges and run arbitrary code. An attacker already logged into the system could exploit this to escalate their access and take full control of the machine. The vulnerability requires local access and some specific conditions to trigger, making it a meaningful risk for shared systems or environments where user accounts are provisioned broadly.