Windows 11 Version 24H2
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Privilege escalation to SYSTEM level is achievable in Windows Spaceport.sys - the kernel-mode Storage Spaces port driver - across a wide range of Windows 10, Windows 11, and Windows Server releases, when an attacker has physical access to the target machine. An integer overflow or wraparound in the driver's arithmetic logic (CWE-190) can corrupt kernel memory structures, enabling full compromise of confidentiality, integrity, and availability. No public exploit identified at time of analysis, and SSVC confirms exploitation status as none, but the Technical Impact rating is total, meaning successful exploitation fully compromises the affected system.
Local privilege escalation in the Windows MIDI Service Module on Windows 11 (versions 24H2, 25H2, and 26H1) lets an already-authenticated local user gain elevated privileges by abusing improper access control (CWE-284). Because the CVSS scope is changed (S:C), a successful attack breaks out of the service's context to compromise confidentiality, integrity, and availability of the broader system, effectively yielding SYSTEM-level control. Microsoft has released a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local information disclosure in Windows DirectX exposes sensitive data to unauthorized local actors across a broad range of Windows 10, Windows 11, and Windows Server versions. The vulnerability (CWE-200) achieves high confidentiality impact per the CVSS vector while producing no integrity or availability impact, meaning an attacker gains read access to protected data without disrupting system operation. No public exploit has been identified at time of analysis; EPSS at 0.38% (30th percentile) and SSVC exploitation status of 'none' collectively indicate low near-term exploitation probability despite the wide affected surface.
Local privilege escalation in the Windows Audio Compression Manager (ACM) allows a low-privileged authenticated user to elevate to higher privileges (CVSS 7.8, CWE-284 improper access control). It affects a broad Windows fleet spanning Windows 10 (1607 through 22H2), Windows 11 (24H2/25H2/26H1), and Windows Server 2012 through 2025. Reported by Microsoft with a patch available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in Microsoft Windows Resilient File System (ReFS) allows an authenticated low-privileged user to gain elevated (SYSTEM-level) privileges by triggering a stack-based buffer overflow (CWE-121) in the ReFS driver. The flaw affects a broad range of Windows client and server releases, from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. Microsoft has released a patch; there is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV.
Local privilege escalation in Windows Runtime (WinRT) on Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 allows an authenticated local user to gain higher privileges by exploiting a use-after-free memory-corruption flaw (CWE-416). Successful exploitation yields high confidentiality, integrity, and availability impact, effectively enabling escalation to SYSTEM-level control on the host. There is no public exploit identified at time of analysis, and the flaw is not listed in CISA KEV; the elevated attack complexity (AC:H) indicates exploitation requires winning a race or meeting specific timing/heap conditions.
Local privilege escalation in the Windows AppX Deployment Service (AppXSvc) lets an already-authenticated, low-privileged user win a race condition to elevate to higher privileges across a broad range of Windows client and server builds (Windows 10 1607 through Windows 11 26H1, and Windows Server 2012 through 2025). The flaw stems from improper synchronization of a shared resource, and successful exploitation yields full confidentiality, integrity, and availability impact on the host. It is reported by Microsoft with a vendor patch available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Win32K kernel-mode subsystem allows an already-authenticated low-privileged user to elevate to SYSTEM through an improper access-control flaw. The issue affects a broad range of Windows client and server releases, from Windows 10 1607 and Windows Server 2012 through Windows 11 26H1 and Windows Server 2025. Microsoft has released a patch; there is no public exploit identified at time of analysis, and the flaw is not listed in CISA KEV.
Local privilege escalation in the Windows USB Print Driver affects Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025, where a race condition (improper synchronization of a shared resource) lets an already-authenticated local user win a timing window to execute code at elevated privilege. Reported by Microsoft with a patch available; no public exploit identified at time of analysis and it is not on CISA KEV. The high CVSS attack complexity (AC:H) reflects that the attacker must reliably win a narrow race, which tempers real-world exploitability.
Local privilege escalation in the Windows USB Print Driver on Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 allows an already-authenticated local user to win a timing race and elevate to SYSTEM-level privileges. The flaw is a race condition (CWE-362) reported by Microsoft; a vendor patch is available, and there is no public exploit identified at time of analysis. Exploitation is constrained by high attack complexity (winning the race window) but yields full confidentiality, integrity, and availability impact once achieved.
Uninitialized memory disclosure in the Windows SMB implementation enables a locally authenticated, low-privileged attacker to read sensitive contents from uninitialized kernel or heap buffers, achieving high confidentiality impact within the affected system. The vulnerability spans Windows 10 (from version 1607 through 22H2), Windows 11 (versions 24H2 through 26H1), and Windows Server 2012 through 2025 across both full and Server Core installation types. No public exploit code has been identified and CISA SSVC assesses exploitation status as none, placing this firmly in the patch-and-monitor category rather than emergency response.
Local privilege escalation in the Windows Spaceport.sys Storage Spaces driver lets an already-authenticated low-privileged user gain SYSTEM-level control across Windows 10, Windows 11, and Windows Server 2016 through 2025. The flaw stems from a missing authentication check on a critical driver function (CWE-306), and Microsoft has released a patch; no public exploit has been identified at time of analysis. With CVSS 7.8 (local, low-privilege) and full confidentiality, integrity, and availability impact, it is a strong candidate for chaining after an initial foothold.
Windows Kernel information disclosure across a broad range of Microsoft Windows desktop and server editions allows a local, unprivileged attacker to read sensitive kernel memory or system state not intended for user-space access. The CVSS:3.1 vector AV:L/AC:L/PR:N/UI:N confirms local code execution with no special privileges is sufficient to trigger the flaw. EPSS sits at 0.38% (30th percentile) with no CISA KEV listing and SSVC exploitation status of 'none,' indicating no confirmed or publicly observed active exploitation at time of analysis; however, kernel information leaks of this class are routinely used to stage ASLR-bypass steps in multi-stage privilege escalation chains.
Privilege escalation to SYSTEM level is achievable in the Windows USB Video Class (UVC) driver across a broad swath of Windows 10, 11, and Server editions via physical connection of a malicious USB device. The heap-based buffer overflow (CWE-122) is triggered when the driver processes attacker-controlled UVC descriptors from a crafted device, corrupting kernel heap memory. No active exploitation is confirmed (absent from CISA KEV, SSVC exploitation=none), and EPSS sits at 0.37% (29th percentile), consistent with the physical access barrier that makes mass exploitation impractical.
Elevation of privilege in Microsoft Windows (Server 2012 through 2025 and Windows 10/11 clients) lets a low-privileged local user gain SYSTEM-level rights by abusing an improper access control (CWE-284) weakness. The flaw was reported by Microsoft with a patch available, and CVSS 3.1 rates it 7.8 (High) with local vector and low privileges required. No public exploit identified at time of analysis and it is not listed in CISA KEV, so this is a patch-worthy but not emergency issue absent evidence of active exploitation.
Local code execution in the Microsoft Windows NTFS file-system driver lets an attacker run arbitrary code by inducing a victim to interact with a specially crafted NTFS artifact (e.g., a malicious volume, VHD, or file). The flaw stems from an integer underflow (CWE-191) and spans a broad range of Windows client and server builds from Windows Server 2012 through Windows Server 2025 and Windows 10/11. Microsoft has released a patch; there is no public exploit identified at time of analysis and the issue is not listed in CISA KEV.
LSASS denial-of-service in Microsoft Windows enables authenticated network attackers to exhaust resources in the Local Security Authority Subsystem Service, crashing it and forcing a system reboot across a wide range of Windows 10, 11, and Server releases spanning Windows Server 2012 through Server 2025. Microsoft has released patched builds via its standard update cycle; no public exploit code exists and CISA has not listed this in KEV. Despite the broad product footprint, EPSS of 0.79% and SSVC exploitation status of 'none' indicate low current threat activity, though domain controllers represent elevated-risk targets due to LSASS's role as the authentication hub.
Local privilege escalation in the Windows Web Proxy Auto-Discovery Protocol (WPAD) component lets an already-authenticated local user run code with SYSTEM-level rights by triggering an integer overflow (CWE-190). The flaw affects a broad range of Windows client and server builds, from Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 through 2025. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, but the low attack complexity and high triad impact make it a meaningful patch-tier issue.
Integer overflow in Windows Storage Spaces Direct enables an unauthenticated attacker with physical access to execute arbitrary code on affected Windows client and server platforms. The CVSS vector (AV:P/AC:L/PR:N/UI:N, C:H/I:H/A:H) confirms that no credentials are required but direct physical presence at the target hardware is mandatory, substantially narrowing the realistic attacker pool. No public exploit identified at time of analysis; SSVC rates exploitation as 'none' and EPSS stands at 0.33% (26th percentile), consistent with a physical-vector vulnerability not currently observed in opportunistic campaigns.
Local privilege escalation in the Microsoft Windows Kernel allows an unauthorized attacker to gain elevated (SYSTEM-level) privileges by triggering a use-after-free condition (CWE-416) in kernel memory. The flaw affects a broad range of supported Windows client and server releases, from Windows 10 1607 and Windows Server 2012 through Windows 11 26H1 and Windows Server 2025. Microsoft has released a patch; there is no public exploit identified at time of analysis and the issue is not listed in CISA KEV.
Local code execution in the Windows NTFS driver (CVE-2026-49797) allows an attacker with local access to run arbitrary code by tricking a user into interacting with a maliciously crafted NTFS artifact, exploiting a heap-based buffer overflow (CWE-122). The flaw affects a broad range of Windows client and server releases from Windows 10 1607 and Server 2012 through Windows 11 26H1 and Server 2025. Microsoft has released a patch; no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Kernel lets an already-authenticated attacker corrupt kernel memory via a use-after-free (CWE-416) and gain full control of the host. The CVSS 3.1 vector (AV:L/PR:L, scope-changed with C:H/I:H/A:H) reflects a low-privileged local user escalating to SYSTEM-level compromise across a broad range of Windows 10, Windows 11, and Windows Server builds. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, but Microsoft has released a patch.
Local code execution in Windows GDI+ (the Graphics Device Interface Plus rendering component) affects a broad range of Microsoft Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. An attacker who convinces a user to open or preview a specially crafted image or document triggers a heap-based buffer overflow (CWE-122) during graphics parsing, yielding arbitrary code execution in the context of the current user. The CVSS 3.1 base score is 7.8 (AV:L/AC:L/PR:N/UI:R); there is no public exploit identified at time of analysis and it is not listed in CISA KEV, but GDI+ image-parsing flaws are historically attractive to attackers.
Out-of-bounds read in the Windows USB Audio Class driver (usbaudio.sys) enables physical attackers to disclose kernel memory contents across a broad range of Windows 10, Windows 11, and Windows Server releases. Exploitation requires plugging a crafted USB audio device into the target machine, making remote attack impossible by design. No public exploit exists and SSVC exploitation status is confirmed as none, though the High confidentiality impact rating reflects that kernel memory disclosure can expose sensitive in-memory data if triggered.
Local privilege escalation via arbitrary code execution in Microsoft Windows Resilient File System (ReFS) affects a broad range of Windows 10, Windows 11, and Windows Server (2016-2025) builds. An authorized (low-privileged) attacker who can trigger the vulnerable heap allocation path can corrupt heap memory (CWE-122) to run code in the security context of the ReFS driver, yielding full confidentiality, integrity, and availability impact. No public exploit identified at time of analysis, and the flaw is not on the CISA KEV list.
Local code execution in Microsoft's Resilient File System (ReFS) driver allows an authorized (low-privileged) attacker to run arbitrary code with elevated context via a numeric truncation flaw. The bug affects the ReFS component shipped with Windows 10, Windows 11, and Windows Server 2016 through 2025. There is no public exploit identified at time of analysis and it is not listed in CISA KEV; note that the CVE's own tags label it 'Information Disclosure' while the description and CVSS impact (C:H/I:H/A:H) describe full code execution - the code-execution reading should be treated as authoritative.
Local privilege escalation in the Windows Routing and Remote Access Service (RRAS) lets an already-authenticated low-privileged user (PR:L) abuse a symbolic-link/junction resolution flaw (CWE-59) to redirect a privileged file operation and gain SYSTEM-level control on affected Windows 10, Windows 11, and Windows Server 2012-2025 hosts. Microsoft has released patches; there is no public exploit identified at time of analysis and the flaw is not in CISA KEV, with a low EPSS of 0.28% (20th percentile). SSVC rates technical impact as total but marks exploitation as none and not automatable, consistent with a hands-on local escalation rather than a mass-exploitable remote bug.
Local privilege escalation in the Microsoft Windows Universal Disk Format File System driver (udfs.sys) lets an authenticated low-privileged user gain SYSTEM-level control by triggering an integer underflow (CWE-191) while parsing a malicious UDF-formatted volume. It affects a broad Windows footprint from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. Currently there is no public exploit identified at time of analysis, EPSS is low (0.31%), and CISA SSVC rates exploitation as none, though the technical impact is total.
Local privilege escalation in the Microsoft Windows NTFS driver lets an already-authenticated attacker overflow a stack buffer (CWE-121) to run code with full system-level privileges. It affects a broad swath of supported Windows client and server builds, from Windows 10 1607 and Server 2012 through Windows 11 26H1 and Server 2025. No public exploit identified at time of analysis, and CISA's SSVC framework currently rates exploitation as none; EPSS is low at 0.34% (26th percentile), so this is a patch-on-schedule elevation-of-privilege bug rather than an emergency.
Denial of service in the Windows HTTP/2 network stack allows a remote, unauthenticated attacker to exhaust server resources and render affected services unavailable across a broad range of Windows client and server releases (Windows 10/11 and Windows Server 2016 through 2025). Reported by Microsoft with a vendor patch available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV. The 7.5 CVSS reflects high availability impact with no confidentiality or integrity loss.
Denial of service in Microsoft Windows HTTP.sys allows remote unauthenticated attackers to exhaust system resources and make affected hosts unresponsive over the network. The flaw stems from missing resource limits/throttling (CWE-770) in the kernel-mode HTTP protocol stack, affecting a broad range of Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. No public exploit identified at time of analysis, and the issue is not listed in CISA KEV; a vendor patch is available via MSRC.
Security feature bypass in Windows Secure Boot (CWE-358) allows a locally authenticated attacker on affected Windows 10, Windows 11, and Windows Server (2016 through 2025) systems to defeat the boot-integrity trust chain due to an improperly implemented standard security check. Because Secure Boot is the gate that blocks unsigned/tampered bootloaders and rootkits, a successful bypass can enable pre-OS persistence and undermine downstream protections such as BitLocker and Measured Boot. There is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV; Microsoft has published a patch via its update guide.
Local privilege escalation in the Windows Clipboard Server (Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 through 2025) allows an already-authenticated low-privileged user to win a race condition and gain higher privileges on the host. Microsoft credits its own researchers and has shipped a fix; there is no public exploit identified at time of analysis and the CVSS base score is 7.0 (High). The high attack complexity reflects the timing precision needed to exploit the race, which meaningfully limits reliable weaponization.
Local privilege escalation in the Windows NTFS filesystem driver (CWE-122 heap-based buffer overflow) lets a locally authenticated attacker corrupt kernel heap memory and execute arbitrary code, per Microsoft's CVSS 3.1 vector (AV:L/PR:L). Affected builds span Windows 10 (1607 through 22H2), Windows 11 (24H2/25H2/26H1), and Windows Server 2012 through 2025. There is no public exploit identified at time of analysis and CISA SSVC rates current exploitation as 'none', with a low EPSS score of 0.29% (21st percentile), though the technical impact is rated 'total'.
Link-following vulnerability in Windows upnp.dll (Universal Plug and Play) enables a locally authenticated attacker with standard user privileges to read files outside intended access boundaries by planting symbolic links or junction points that the service resolves without proper validation. Affected scope spans Windows 10 (versions 1607-22H2), Windows 11 (versions 24H2-26H1), and Windows Server 2012 through 2025. No public exploit has been identified at time of analysis; EPSS of 0.27% (19th percentile) and CISA SSVC exploitation status of 'none' collectively indicate low near-term exploitation probability.
Remote code execution in Microsoft Active Directory Domain Services (AD DS) allows an authenticated network attacker to run arbitrary code on domain controllers by triggering a heap-based buffer overflow (CWE-122). Affected platforms span Windows Server 2012 through 2025 (including Server Core) and Windows 10/11 clients acting in AD roles, with Microsoft-issued patches available. There is no public exploit identified at time of analysis and it is not on CISA KEV, but the CVSS 8.8 rating and the sensitivity of the domain-controller attack surface make this a high-priority patch.
Local privilege escalation in the Windows Push Notifications component (WPN) affects Windows 11 (23H2, 24H2, 25H2, 26H1) and Windows Server 2025 including Server Core, where a race condition (CWE-362) lets an authorized local user win a timing window on a shared resource to run code at a higher privilege level. Microsoft reported the issue and has released a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV. Note a signal conflict: the description and CVSS impact frame this as privilege elevation, while the vendor tags also list 'Information Disclosure' - the primary impact should be treated as EoP pending vendor clarification.
Denial of service in the Windows Local Security Authority Subsystem Service (LSASS) allows a remote, unauthenticated attacker to crash the service and disrupt authentication across all supported Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. The flaw stems from an excessive-size memory allocation (CWE-789) triggerable over the network with no privileges or user interaction, and while a vendor patch is available, there is no public exploit identified at time of analysis and it is not listed in CISA KEV. Impact is limited to availability (A:H) with no confidentiality or integrity loss, but LSASS failure can force system instability or reboots, affecting domain authentication and logon.
Denial of service in Windows Cryptographic Services affects a broad sweep of supported Microsoft platforms, from Windows 10 (1607) and Server 2012 through Windows 11 26H1 and Server 2025. A memory-leak flaw (CWE-401) lets a remote, unauthenticated attacker send network traffic that fails to release memory over time, degrading or exhausting the affected service until availability is impacted. There is no public exploit identified at time of analysis, exploitation is not yet observed (SSVC: none), and EPSS is low (0.78%), but a vendor patch is available and Automatable is 'yes', warranting prompt patching.
Windows Event Logging Service across a wide range of Windows 10, Windows 11, and Windows Server versions fails to enforce its intended protection mechanisms, permitting any authenticated low-privileged network user to read information that should be access-controlled. The CVSS vector (AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N) confirms exploitation requires only a valid low-privilege account and network connectivity, with no user interaction and no elevated rights - making it a practical post-compromise lateral-movement or reconnaissance tool. No public exploit code has been identified and this CVE is not listed in CISA KEV at time of analysis, but the ubiquitous deployment footprint across the Windows ecosystem elevates organizational exposure.
Remote code execution in Windows PowerShell allows an authenticated attacker with low privileges to run arbitrary code across a network by exploiting a relative path traversal (CWE-23) flaw, provided a victim is induced to interact (UI:R). Affecting supported Windows 10/11 clients and Windows Server 2012 through 2025, the issue carries a CVSS 8.0 with full confidentiality, integrity, and availability impact, and a vendor patch is available via MSRC. There is no public exploit identified at time of analysis, and the CVE is not listed in CISA KEV.
Windows File Explorer on affected Microsoft Windows 10, Windows 11, and Windows Server platforms exposes sensitive information to locally authenticated low-privilege users without authorization. The CWE-200 root cause indicates inadequate access restrictions within the File Explorer shell component, enabling a user to read data beyond their authorization boundary. No public exploit exists and SSVC confirms no observed exploitation activity, but the broad Windows deployment footprint and high confidentiality impact (C:H) make this relevant for shared-access environments, terminal servers, and organizations with insider-threat concerns.
Windows File Explorer across a broad range of Windows 10, Windows 11, and Windows Server releases contains a use-of-uninitialized-resource flaw (CWE-908) that allows a low-privileged local attacker to read stale memory contents and disclose potentially sensitive information. The vulnerability is locally constrained (AV:L, PR:L) with no integrity or availability impact, and SSVC signals no known exploitation and no automatable attack path. EPSS at 0.31% (22nd percentile) and the absence of a CISA KEV entry collectively indicate low near-term exploitation likelihood despite the wide deployment footprint of the affected OS.
Windows Audio Service on multiple Windows desktop and server versions improperly exposes sensitive information to locally authenticated standard users, enabling information disclosure without requiring elevated privileges. Affecting Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 (with Server 2022 and 2025 referenced in tags), the flaw is exploitable post-foothold by any low-privileged local account, making it a realistic post-exploitation pivot rather than an initial access vector. No public exploit code has been identified at time of analysis, and a vendor-released patch is confirmed available via the Microsoft Security Response Center.
Windows File Explorer on virtually all supported Microsoft Windows desktop and server editions leaks sensitive information to locally authenticated low-privileged users, classified under CWE-200. The flaw allows a local attacker holding only a standard account to access data that should be restricted to higher-privileged processes - with no user interaction required (UI:N) and low attack complexity (AC:L). Despite the high confidentiality impact in the CVSS vector, EPSS sits at just 0.36% (28th percentile) and SSVC confirms exploitation as 'none' and the attack as not automatable, placing this firmly in the category of a patch-cycle priority rather than an emergency response. No public exploit has been identified at time of analysis.
Local privilege escalation via a heap-based buffer overflow in the Windows NTFS driver allows an authenticated attacker with low privileges to execute arbitrary code and gain full SYSTEM-level control. It affects a broad range of Windows client and server releases, from Windows 10 1607 and Windows Server 2012 through Windows 11 26H1 and Windows Server 2025. No public exploit identified at time of analysis, and SSVC records no observed exploitation; EPSS is low at 0.29% (21st percentile).
Local privilege escalation in Microsoft Windows Narrator (the built-in screen reader) arises from improper neutralization of special elements in its Braille support component, allowing an already-authenticated local attacker (PR:L) to inject and execute OS commands that run with elevated privileges. All supported Windows client and server builds from Windows 10 1809 through Windows 11 26H1 and Windows Server 2019-2025 are affected, and Microsoft has released a patch. There is no public exploit identified at time of analysis and the CVE is not in CISA KEV, so exploitation is not confirmed as active.
Out-of-bounds read in the Windows Kernel (CWE-125) enables a locally authenticated attacker with standard user privileges to bypass a kernel security feature and read kernel memory contents. Confirmed by Microsoft (MSRC) across Windows 10, Windows 11, and Windows Server 2012 through 2025 editions, with patches available for all affected builds. No public exploit code and no CISA KEV listing exist at time of analysis; EPSS at 0.29% (20th percentile) and SSVC exploitation status of 'none' together signal low current exploitation activity, though the kernel memory disclosure primitive is a classic KASLR-defeat building block in chained exploits.
Local code execution in Microsoft Windows Media Foundation lets an attacker run arbitrary code in the context of the victim after luring them to open a maliciously crafted media file. The flaw (CVE-2026-58610, CWE-122 heap-based buffer overflow) affects a broad range of Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. CVSS is 7.8 (AV:L/AC:L/PR:N/UI:R) with full confidentiality, integrity, and availability impact; there is no public exploit identified at time of analysis and it is not on CISA KEV.
Local code execution in the Microsoft Graphics Component affects a broad range of supported Windows client and server releases (Windows 10 1607 through Windows 11 26H1, and Windows Server 2012 through Server 2025). An attacker who convinces a user to open a specially crafted file or content triggers an out-of-bounds read (CWE-125) that Microsoft rates as enabling code execution with high confidentiality, integrity, and availability impact. There is no public exploit identified at time of analysis and it is not listed in CISA KEV; exploitation requires local access plus user interaction, making it a standard patch-cycle priority rather than an emergency.
Remote code execution in the Windows Print Spooler components stems from an improperly synchronized race condition (CWE-362) that an authenticated, network-adjacent attacker can win to run code with full system impact. Microsoft (the reporter) has shipped fixes across the entire supported Windows and Windows Server line, but exploitation requires low privileges and a hard-to-hit timing window, so this is a real-but-non-trivial priority rather than a drop-everything emergency. There is no public exploit identified at time of analysis, EPSS is low at 0.53% (41st percentile), and CISA SSVC scores exploitation as none.
Local privilege escalation in the Windows Kernel Mode Driver affects Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025, where a use-after-free (CWE-416) lets an already-authenticated local attacker corrupt kernel memory and elevate to SYSTEM. Reported by Microsoft with a patch already available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV. The CVSS 7.8 (AV:L/PR:L) reflects a high-impact but locally-scoped flaw requiring an existing foothold on the host.
Local privilege escalation in the Windows Virtual Hard Disk (VHD) Miniport Driver lets an authenticated low-privileged user corrupt kernel heap memory and gain SYSTEM-level control. The flaw (CWE-122 heap-based buffer overflow, CVSS 7.8) affects a broad range of Windows 10, Windows 11, and Windows Server builds and was reported by Microsoft. There is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Storage component affects a broad range of Windows client and server builds (Windows 10 1809 through Windows 11 26H1, and Windows Server 2019 through 2025). By exploiting a use-after-free memory-corruption flaw (CWE-416), an already-authenticated local attacker can elevate to SYSTEM-level privileges. Reported by Microsoft with a patch available; there is no public exploit identified at time of analysis, EPSS is low (0.15%), and CISA SSVC records exploitation status as none.
Information disclosure in the Windows Remote Desktop Protocol (RDP) stack across Windows 10, Windows 11, and Windows Server 2012 R2 through 2025 lets a remote, unauthenticated attacker read memory beyond intended bounds and leak sensitive data over the network. Microsoft has published a patch and CVSS 3.1 rates it 7.5 (high) for the confidentiality-only impact. There is no public exploit identified at time of analysis, and CISA's SSVC framework marks exploitation as 'none' with only partial technical impact, so this is a patch-on-schedule issue rather than an emergency.
Null pointer dereference in Windows Active Directory Domain Services (AD DS) enables a low-privileged authenticated attacker to crash the service remotely, causing denial of service across the affected domain. The flaw spans a wide range of Windows client and server releases, from Windows 10 version 1607 through Windows 11 version 26H1 and Windows Server 2012 through 2025. No public exploit code has been identified and this vulnerability is not listed in the CISA Known Exploited Vulnerabilities catalog at time of analysis, though the network-accessible attack surface and low privilege requirement lower the bar for abuse in environments with broad domain user access.
Security feature bypass in Microsoft XML (MSXML) across Windows 10, Windows 11, and Windows Server 2012 through 2025 requires an attacker with physical access to the target device to exploit an untrusted search path condition. The vulnerability allows an unauthorized attacker to subvert the library or executable resolution order, enabling them to load attacker-controlled code that circumvents Windows security controls. No public exploit has been identified at time of analysis, and SSVC assessment confirms zero observed exploitation, though the technical impact if successfully executed is rated total (full compromise of confidentiality, integrity, and availability).
Local privilege escalation in Microsoft Windows Hyper-V (Windows 11 24H2/25H2/26H1 and Windows Server 2022/2025) stems from a use-after-free memory-corruption condition that lets an attacker with a local foothold execute code at elevated, potentially SYSTEM/hypervisor-level privilege. Microsoft rates it CVSS 8.4 with total confidentiality, integrity, and availability impact, and there is no public exploit identified at time of analysis. EPSS is low (0.24%, 16th percentile) and CISA SSVC lists exploitation status as none, so this is a high-severity patch-on-cycle item rather than an actively exploited emergency.
Remote code execution in Microsoft Windows Secure Socket Tunneling Protocol (SSTP) allows an unauthorized network attacker to run arbitrary code by triggering a use-after-free (CWE-416) memory-corruption condition. The flaw affects a broad range of Windows client and server releases from Windows 10 1607 and Server 2012 through Windows 11 26H1 and Server 2025, and per its CVSS 9.8 vector requires no authentication or user interaction. There is no public exploit identified at time of analysis, and the EPSS probability is modest (0.61%), so despite the critical score exploitation is not yet observed.
Local tampering in Windows CryptoAPI (Crypt32) on Windows 11 (24H2/25H2/26H1) and Windows Server 2022/2025 stems from a missing cryptographic step, letting an authenticated local attacker undermine the integrity and confidentiality of cryptographically protected data. Microsoft rates it 7.1 (High) with high confidentiality and integrity impact; there is no public exploit identified at time of analysis and it is not on the CISA KEV list. A vendor patch is available through the MSRC update guide.
Local code execution in Microsoft Windows GDI+ (the graphics rendering component) via a heap-based buffer overflow (CWE-122), affecting a broad range of Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Server 2012 through Server 2025. Per the supplied CVSS vector (PR:N), an unauthorized attacker who gets the vulnerable component to process crafted graphics data can achieve high-impact code execution (C:H/I:H/A:H) on the local system. Microsoft has published a patch; there is no public exploit identified at time of analysis and the issue is not listed in CISA KEV.
Remote code execution in the Windows Reliable Multicast Transport Driver (RMCAST) lets an unauthenticated network attacker trigger a use-after-free (CWE-416) and run arbitrary code on a broad range of Windows 10, Windows 11, and Windows Server systems (Server 2012 through Server 2025). Rated CVSS 8.1, the flaw carries high impact to confidentiality, integrity, and availability but requires winning a race condition (AC:H), and no public exploit identified at time of analysis. Reported by Microsoft with a vendor patch available.
Windows Remote Desktop Protocol (RDP) client leaks sensitive memory contents due to use of an uninitialized resource (CWE-908), allowing a network-accessible attacker to disclose potentially high-value information from a victim's system. Exploitation requires user interaction - a victim must connect to an attacker-controlled RDP endpoint - making this a client-side information disclosure attack affecting Windows 10 (all supported versions from 1607 through 22H2), Windows 11 (24H2 through 26H1), and Windows Server 2012 through 2025. No public exploit code has been identified and no active exploitation is confirmed; however, the CVSS confidentiality impact is rated High, meaning exposed memory could include credentials or session tokens.
Remote code execution in the Microsoft Windows TCP/IP networking stack allows an unauthenticated attacker on the same physical or logical network segment to win a race condition and run arbitrary code on the target. The flaw spans a broad range of desktop and server builds from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. There is no public exploit identified at time of analysis, but Microsoft has confirmed the issue and shipped a patch, and the high CVSS (8.8) plus network-facing kernel component make it a priority to remediate.
Information disclosure via uninitialized memory in the Windows SMB driver stack affects a broad range of Windows 10, Windows 11, and Windows Server versions. A locally authenticated, low-privileged attacker can trigger a code path that reads from uninitialized memory within the SMB subsystem, potentially leaking sensitive kernel or heap memory contents. No public exploit code or active exploitation has been identified at the time of analysis; Microsoft has released a patch via MSRC.
Denial of service in Windows Active Directory (spanning Windows 10, Windows 11, and Windows Server 2012 through 2025) lets a remote, unauthenticated attacker send crafted network traffic that drives an AD service into an infinite loop, exhausting CPU and rendering domain services unavailable. Because the CVSS vector is AV:N/AC:L/PR:N/UI:N with high availability impact and no confidentiality or integrity loss, this is a pure availability threat against domain controllers. Microsoft has released a patch; there is no public exploit identified at time of analysis and no CISA KEV listing.
Local privilege escalation in the Windows USB Print Driver affecting Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 lets an already-authenticated, low-privileged user win a race condition (CWE-362) in the driver to gain higher privileges. Microsoft has released a patch and reported the flaw itself; there is no public exploit identified at time of analysis. The high attack complexity (AC:H) reflects the timing-dependent nature of exploiting the shared-resource synchronization defect.
Local privilege escalation in Microsoft Windows Win32K (the kernel-mode GUI subsystem) allows an authenticated local user to elevate to SYSTEM by triggering a use-after-free (CWE-416) memory corruption condition. The flaw affects a broad range of supported builds spanning Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 through 2025, including Server Core installations. Microsoft has released a patch; there is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV.
Remote code execution in the Windows Reliable Multicast Transport Driver (RMCAST) lets an unauthenticated attacker on the same network segment run arbitrary code by triggering an integer underflow (CWE-191) during multicast message processing. All supported Windows client and server builds from Windows Server 2012 through Windows Server 2025 and Windows 10 1607 through Windows 11 26H1 are affected. There is no public exploit identified at time of analysis, but the CVSS 8.8 adjacent-network unauthenticated profile and Microsoft's own reporting make this a high-priority patch.
Local privilege escalation to code execution in the Windows Resilient File System (ReFS) driver affects a broad range of Windows 10/11 and Windows Server 2016 through 2025 releases, where an integer overflow (CWE-190) in filesystem processing lets an already-authenticated local user run arbitrary code in an elevated context. The CVSS 3.1 vector (AV:L/PR:L) confirms low-privileged local access is required rather than remote exploitation, and there is no public exploit identified at time of analysis. Microsoft has released a patch via MSRC.
Local privilege escalation via heap-based buffer overflow in the Windows Message Queuing (MSMQ) Queue Manager component lets an authenticated local attacker corrupt heap memory and execute arbitrary code, gaining total control (SYSTEM-level) of the affected host. It impacts a broad range of Windows client and server builds from Windows Server 2012 through Windows 11 25H2/26H1 and Windows Server 2025. Microsoft has released patches; publicly available exploit code exists, though SSVC lists exploitation status as none and EPSS probability is low (0.39%).
Local privilege escalation in the Microsoft Printer Drivers component across Windows 10, Windows 11 (through 26H1), and Windows Server 2012 through 2025 lets an already-authenticated attacker corrupt kernel-adjacent memory to gain higher privileges. The flaw is a double free (CWE-415) triggered locally by a low-privileged user, yielding high confidentiality, integrity, and availability impact (CVSS 7.8). No public exploit identified at time of analysis, and it is not listed in CISA KEV.
Local privilege escalation in the Windows Win32K kernel-mode subsystem allows an already-authenticated attacker to win a race condition (CWE-362) and elevate to SYSTEM-level privileges across supported Windows 10, Windows 11, and Windows Server 2019-2025 builds. Reported by Microsoft with a vendor patch available; there is no public exploit identified at time of analysis and EPSS is low (0.16%, 5th percentile). CVSS 7.0 reflects high attack complexity (AC:H) driven by the timing-window nature of the flaw and the requirement for existing low-privilege access (PR:L).
Local code execution in Microsoft Windows Media Foundation lets an unauthorized attacker run arbitrary code by luring a user into opening a specially crafted media file. The flaw affects a broad range of Windows 10, Windows 11, and Windows Server builds (from 1809 through Windows 11 26H1 and Server 2025), and Microsoft has released patches. No public exploit identified at time of analysis, but the low attack complexity and full C/I/A impact make it a standard Patch-Tuesday priority.
Local privilege escalation in Microsoft Windows Win32K (the kernel-mode GUI subsystem) lets an already-authenticated low-privilege user corrupt kernel heap memory via a heap-based buffer overflow (CWE-122) to gain SYSTEM-level control. The flaw affects a broad range of client and server builds (Windows 10 1607 through Windows 11 26H1, and Windows Server 2016 through 2025). Microsoft has released a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Win32K kernel-mode subsystem allows an authenticated low-privileged user to win a race condition and elevate to SYSTEM across Windows 10, Windows 11 (through 26H1), and Windows Server 2012 through 2025. Reported by Microsoft with a patch available, it carries CVSS 7.0 but a high attack complexity (AC:H) reflecting the timing-sensitive nature of the flaw. There is no public exploit identified at time of analysis, and EPSS is low (0.19%, 9th percentile), consistent with CISA SSVC rating exploitation as 'none.'
Heap-based buffer overflow in the Windows Kernel (CWE-122) enables an unauthenticated attacker with physical access to escalate privileges to SYSTEM level across a broad range of Windows 10, Windows 11, and Windows Server editions. The physical attack vector (AV:P) constrains the threat surface significantly, and SSVC rates exploitation as none with no public exploit identified at time of analysis. Despite total technical impact potential confirmed by both CVSS C:H/I:H/A:H metrics and SSVC technical impact rating, real-world risk is concentrated in physically accessible deployment scenarios such as kiosks, field laptops, or shared terminals.
Local privilege escalation in the Windows USB Print Driver affects Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025, where a race condition (CWE-362) in the handling of a shared resource lets an already-authenticated local user win a timing window to execute code at higher privilege. Rated CVSS 7.0 with high attack complexity, it requires low privileges and no user interaction, yielding full confidentiality, integrity, and availability impact. There is no public exploit identified at time of analysis, SSVC exploitation status is 'none', and EPSS is low at 0.19% (9th percentile), consistent with a Microsoft-reported, patch-first disclosure.
Local privilege escalation in the Windows USB Print Driver on Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 lets an already-authenticated low-privileged user win a timing race in the driver to gain elevated privileges. Reported by Microsoft with a patch available; no public exploit identified at time of analysis and it is not listed in CISA KEV. The high attack complexity (must reliably win a race window) tempers real-world exploitability despite full confidentiality, integrity, and availability impact.
Privilege escalation via use-after-free in the Windows USB Print Driver affects Windows 11 (versions 24H2, 25H2, 26H1) and Windows Server 2025, requiring physical access to exploit. An attacker with hands-on access to a target machine can trigger a memory corruption condition through the USB print subsystem to achieve full local privilege escalation - High confidentiality, integrity, and availability impact per CVSS. No public exploit code has been identified at time of analysis, and this vulnerability is not listed in the CISA KEV catalog.
Local privilege escalation in the Windows Common Log File System (CLFS) Driver allows an already-authenticated, low-privileged user to elevate to SYSTEM on a wide range of Windows client and server releases. Microsoft classifies the root cause as exposure of sensitive information (CWE-200), but the CVSS impact profile (C:H/I:H/A:H) reflects that the leaked kernel data enables full local privilege escalation. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, though CLFS has historically been a heavily exploited elevation-of-privilege target in Windows.
Remote code execution in the Windows Remote Desktop Client (RDP client on Windows 11 24H2/25H2/26H1 and Windows Server 2025) allows an unauthorized attacker to run arbitrary code by coercing a victim into connecting to a malicious or attacker-controlled RDP server, which returns crafted data that overflows a heap buffer. Reported by Microsoft with a vendor patch available, it carries CVSS 8.8 and requires user interaction (initiating the connection). EPSS is modest (0.67%, 48th percentile) and there is no public exploit identified at time of analysis, though SSVC rates it automatable with total technical impact.
Network denial of service in the Windows Internet Key Exchange (IKE) protocol implementation allows an unauthenticated remote attacker to crash affected systems by triggering a heap-based buffer overflow. All impact is to availability only (CVSS 7.5, A:H, no confidentiality or integrity loss), making this a reliability/uptime threat against IPsec/VPN-facing Windows 10, Windows 11, and Windows Server hosts rather than a code-execution vulnerability. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, but the low attack complexity and lack of authentication make it a meaningful patching priority for internet-exposed IPsec endpoints.
Local privilege escalation in the Windows Overlay Filter (WOF) driver allows an authenticated low-privileged user to elevate to SYSTEM by triggering a heap-based buffer overflow (CWE-122). The flaw spans a broad range of client and server SKUs from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 R2 through Server 2025. Microsoft has shipped a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Quality Windows Audio/Video Experience (QWAVE) service across virtually all supported Windows client and server builds (Windows 10 1607 through Windows 11 26H1, Windows Server 2012 through 2025) allows an authenticated local attacker to gain SYSTEM-level control by triggering a use-after-free condition. Microsoft rates the impact as total (full confidentiality, integrity, and availability loss) with CVSS 7.8. There is no public exploit identified at time of analysis, and the low EPSS score (0.20%, 10th percentile) plus CISA SSVC 'Exploitation: none' indicate no observed exploitation yet.
Local privilege escalation in Microsoft Windows Hyper-V (affecting Windows 10, Windows 11, and Windows Server 2019 through 2025) allows an authenticated local attacker to elevate to SYSTEM by exploiting a use-after-free (CWE-416) memory corruption condition in the hypervisor stack. Microsoft reported the issue and has shipped fixes; there is no public exploit identified at time of analysis, and the low EPSS score (0.20%, 10th percentile) plus CISA SSVC 'Exploitation: none' indicate no observed exploitation yet. The total technical impact (full C/I/A compromise) makes it a meaningful patch priority on any Hyper-V-enabled host despite the local attack vector.
Denial of service in Microsoft Active Directory Federation Services (AD FS) allows a remote, unauthenticated attacker to crash the service by triggering a stack-based buffer overflow over the network (CVSS 7.5, availability-only impact). Because AD FS brokers single sign-on and federated authentication, a successful attack can knock out login for every downstream application that relies on it. No public exploit has been identified at time of analysis, and it is not listed in CISA KEV.
Denial of service in Microsoft Active Directory Federation Services (AD FS) lets a remote, unauthenticated attacker crash the service by triggering a stack-based buffer overflow (CWE-121) over the network. The flaw affects AD FS as shipped across a broad range of Windows client and server builds (Windows 10/11 and Windows Server 2012 through 2025). Microsoft - the reporting party - has released a patch; there is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV.
Local privilege escalation in the Microsoft Windows App Store component (Windows 10 1607 through Windows 11 26H1, and Windows Server 2016 through 2025) allows an authorized low-privileged attacker to win a race condition on an improperly synchronized shared resource and gain higher privileges. Exploitation is local-only and high-complexity because it depends on reliably hitting a narrow timing window, and no public exploit has been identified at time of analysis. A vendor patch is available via Microsoft's MSRC update guide.
Out-of-bounds read in the Windows TCP/IP stack exposes kernel or process memory to locally authenticated low-privileged users across a broad range of Windows 10, Windows 11, and Windows Server releases spanning from Server 2012 through Server 2025. The CWE-125 root cause allows an authorized local attacker with standard user credentials to read memory regions outside allocated buffer boundaries in the TCP/IP component, yielding high-confidentiality-impact information disclosure with no integrity or availability consequence. No public exploit code exists and no active exploitation has been identified (EPSS: 0.31%, 22nd percentile; SSVC exploitation status: none), placing this in a lower-priority remediation tier despite its exceptionally broad product footprint.
Privilege escalation to SYSTEM level is achievable in Windows Spaceport.sys - the kernel-mode Storage Spaces port driver - across a wide range of Windows 10, Windows 11, and Windows Server releases, when an attacker has physical access to the target machine. An integer overflow or wraparound in the driver's arithmetic logic (CWE-190) can corrupt kernel memory structures, enabling full compromise of confidentiality, integrity, and availability. No public exploit identified at time of analysis, and SSVC confirms exploitation status as none, but the Technical Impact rating is total, meaning successful exploitation fully compromises the affected system.
Local privilege escalation in the Windows MIDI Service Module on Windows 11 (versions 24H2, 25H2, and 26H1) lets an already-authenticated local user gain elevated privileges by abusing improper access control (CWE-284). Because the CVSS scope is changed (S:C), a successful attack breaks out of the service's context to compromise confidentiality, integrity, and availability of the broader system, effectively yielding SYSTEM-level control. Microsoft has released a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local information disclosure in Windows DirectX exposes sensitive data to unauthorized local actors across a broad range of Windows 10, Windows 11, and Windows Server versions. The vulnerability (CWE-200) achieves high confidentiality impact per the CVSS vector while producing no integrity or availability impact, meaning an attacker gains read access to protected data without disrupting system operation. No public exploit has been identified at time of analysis; EPSS at 0.38% (30th percentile) and SSVC exploitation status of 'none' collectively indicate low near-term exploitation probability despite the wide affected surface.
Local privilege escalation in the Windows Audio Compression Manager (ACM) allows a low-privileged authenticated user to elevate to higher privileges (CVSS 7.8, CWE-284 improper access control). It affects a broad Windows fleet spanning Windows 10 (1607 through 22H2), Windows 11 (24H2/25H2/26H1), and Windows Server 2012 through 2025. Reported by Microsoft with a patch available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in Microsoft Windows Resilient File System (ReFS) allows an authenticated low-privileged user to gain elevated (SYSTEM-level) privileges by triggering a stack-based buffer overflow (CWE-121) in the ReFS driver. The flaw affects a broad range of Windows client and server releases, from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. Microsoft has released a patch; there is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV.
Local privilege escalation in Windows Runtime (WinRT) on Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 allows an authenticated local user to gain higher privileges by exploiting a use-after-free memory-corruption flaw (CWE-416). Successful exploitation yields high confidentiality, integrity, and availability impact, effectively enabling escalation to SYSTEM-level control on the host. There is no public exploit identified at time of analysis, and the flaw is not listed in CISA KEV; the elevated attack complexity (AC:H) indicates exploitation requires winning a race or meeting specific timing/heap conditions.
Local privilege escalation in the Windows AppX Deployment Service (AppXSvc) lets an already-authenticated, low-privileged user win a race condition to elevate to higher privileges across a broad range of Windows client and server builds (Windows 10 1607 through Windows 11 26H1, and Windows Server 2012 through 2025). The flaw stems from improper synchronization of a shared resource, and successful exploitation yields full confidentiality, integrity, and availability impact on the host. It is reported by Microsoft with a vendor patch available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Win32K kernel-mode subsystem allows an already-authenticated low-privileged user to elevate to SYSTEM through an improper access-control flaw. The issue affects a broad range of Windows client and server releases, from Windows 10 1607 and Windows Server 2012 through Windows 11 26H1 and Windows Server 2025. Microsoft has released a patch; there is no public exploit identified at time of analysis, and the flaw is not listed in CISA KEV.
Local privilege escalation in the Windows USB Print Driver affects Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025, where a race condition (improper synchronization of a shared resource) lets an already-authenticated local user win a timing window to execute code at elevated privilege. Reported by Microsoft with a patch available; no public exploit identified at time of analysis and it is not on CISA KEV. The high CVSS attack complexity (AC:H) reflects that the attacker must reliably win a narrow race, which tempers real-world exploitability.
Local privilege escalation in the Windows USB Print Driver on Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 allows an already-authenticated local user to win a timing race and elevate to SYSTEM-level privileges. The flaw is a race condition (CWE-362) reported by Microsoft; a vendor patch is available, and there is no public exploit identified at time of analysis. Exploitation is constrained by high attack complexity (winning the race window) but yields full confidentiality, integrity, and availability impact once achieved.
Uninitialized memory disclosure in the Windows SMB implementation enables a locally authenticated, low-privileged attacker to read sensitive contents from uninitialized kernel or heap buffers, achieving high confidentiality impact within the affected system. The vulnerability spans Windows 10 (from version 1607 through 22H2), Windows 11 (versions 24H2 through 26H1), and Windows Server 2012 through 2025 across both full and Server Core installation types. No public exploit code has been identified and CISA SSVC assesses exploitation status as none, placing this firmly in the patch-and-monitor category rather than emergency response.
Local privilege escalation in the Windows Spaceport.sys Storage Spaces driver lets an already-authenticated low-privileged user gain SYSTEM-level control across Windows 10, Windows 11, and Windows Server 2016 through 2025. The flaw stems from a missing authentication check on a critical driver function (CWE-306), and Microsoft has released a patch; no public exploit has been identified at time of analysis. With CVSS 7.8 (local, low-privilege) and full confidentiality, integrity, and availability impact, it is a strong candidate for chaining after an initial foothold.
Windows Kernel information disclosure across a broad range of Microsoft Windows desktop and server editions allows a local, unprivileged attacker to read sensitive kernel memory or system state not intended for user-space access. The CVSS:3.1 vector AV:L/AC:L/PR:N/UI:N confirms local code execution with no special privileges is sufficient to trigger the flaw. EPSS sits at 0.38% (30th percentile) with no CISA KEV listing and SSVC exploitation status of 'none,' indicating no confirmed or publicly observed active exploitation at time of analysis; however, kernel information leaks of this class are routinely used to stage ASLR-bypass steps in multi-stage privilege escalation chains.
Privilege escalation to SYSTEM level is achievable in the Windows USB Video Class (UVC) driver across a broad swath of Windows 10, 11, and Server editions via physical connection of a malicious USB device. The heap-based buffer overflow (CWE-122) is triggered when the driver processes attacker-controlled UVC descriptors from a crafted device, corrupting kernel heap memory. No active exploitation is confirmed (absent from CISA KEV, SSVC exploitation=none), and EPSS sits at 0.37% (29th percentile), consistent with the physical access barrier that makes mass exploitation impractical.
Elevation of privilege in Microsoft Windows (Server 2012 through 2025 and Windows 10/11 clients) lets a low-privileged local user gain SYSTEM-level rights by abusing an improper access control (CWE-284) weakness. The flaw was reported by Microsoft with a patch available, and CVSS 3.1 rates it 7.8 (High) with local vector and low privileges required. No public exploit identified at time of analysis and it is not listed in CISA KEV, so this is a patch-worthy but not emergency issue absent evidence of active exploitation.
Local code execution in the Microsoft Windows NTFS file-system driver lets an attacker run arbitrary code by inducing a victim to interact with a specially crafted NTFS artifact (e.g., a malicious volume, VHD, or file). The flaw stems from an integer underflow (CWE-191) and spans a broad range of Windows client and server builds from Windows Server 2012 through Windows Server 2025 and Windows 10/11. Microsoft has released a patch; there is no public exploit identified at time of analysis and the issue is not listed in CISA KEV.
LSASS denial-of-service in Microsoft Windows enables authenticated network attackers to exhaust resources in the Local Security Authority Subsystem Service, crashing it and forcing a system reboot across a wide range of Windows 10, 11, and Server releases spanning Windows Server 2012 through Server 2025. Microsoft has released patched builds via its standard update cycle; no public exploit code exists and CISA has not listed this in KEV. Despite the broad product footprint, EPSS of 0.79% and SSVC exploitation status of 'none' indicate low current threat activity, though domain controllers represent elevated-risk targets due to LSASS's role as the authentication hub.
Local privilege escalation in the Windows Web Proxy Auto-Discovery Protocol (WPAD) component lets an already-authenticated local user run code with SYSTEM-level rights by triggering an integer overflow (CWE-190). The flaw affects a broad range of Windows client and server builds, from Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 through 2025. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, but the low attack complexity and high triad impact make it a meaningful patch-tier issue.
Integer overflow in Windows Storage Spaces Direct enables an unauthenticated attacker with physical access to execute arbitrary code on affected Windows client and server platforms. The CVSS vector (AV:P/AC:L/PR:N/UI:N, C:H/I:H/A:H) confirms that no credentials are required but direct physical presence at the target hardware is mandatory, substantially narrowing the realistic attacker pool. No public exploit identified at time of analysis; SSVC rates exploitation as 'none' and EPSS stands at 0.33% (26th percentile), consistent with a physical-vector vulnerability not currently observed in opportunistic campaigns.
Local privilege escalation in the Microsoft Windows Kernel allows an unauthorized attacker to gain elevated (SYSTEM-level) privileges by triggering a use-after-free condition (CWE-416) in kernel memory. The flaw affects a broad range of supported Windows client and server releases, from Windows 10 1607 and Windows Server 2012 through Windows 11 26H1 and Windows Server 2025. Microsoft has released a patch; there is no public exploit identified at time of analysis and the issue is not listed in CISA KEV.
Local code execution in the Windows NTFS driver (CVE-2026-49797) allows an attacker with local access to run arbitrary code by tricking a user into interacting with a maliciously crafted NTFS artifact, exploiting a heap-based buffer overflow (CWE-122). The flaw affects a broad range of Windows client and server releases from Windows 10 1607 and Server 2012 through Windows 11 26H1 and Server 2025. Microsoft has released a patch; no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Kernel lets an already-authenticated attacker corrupt kernel memory via a use-after-free (CWE-416) and gain full control of the host. The CVSS 3.1 vector (AV:L/PR:L, scope-changed with C:H/I:H/A:H) reflects a low-privileged local user escalating to SYSTEM-level compromise across a broad range of Windows 10, Windows 11, and Windows Server builds. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, but Microsoft has released a patch.
Local code execution in Windows GDI+ (the Graphics Device Interface Plus rendering component) affects a broad range of Microsoft Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. An attacker who convinces a user to open or preview a specially crafted image or document triggers a heap-based buffer overflow (CWE-122) during graphics parsing, yielding arbitrary code execution in the context of the current user. The CVSS 3.1 base score is 7.8 (AV:L/AC:L/PR:N/UI:R); there is no public exploit identified at time of analysis and it is not listed in CISA KEV, but GDI+ image-parsing flaws are historically attractive to attackers.
Out-of-bounds read in the Windows USB Audio Class driver (usbaudio.sys) enables physical attackers to disclose kernel memory contents across a broad range of Windows 10, Windows 11, and Windows Server releases. Exploitation requires plugging a crafted USB audio device into the target machine, making remote attack impossible by design. No public exploit exists and SSVC exploitation status is confirmed as none, though the High confidentiality impact rating reflects that kernel memory disclosure can expose sensitive in-memory data if triggered.
Local privilege escalation via arbitrary code execution in Microsoft Windows Resilient File System (ReFS) affects a broad range of Windows 10, Windows 11, and Windows Server (2016-2025) builds. An authorized (low-privileged) attacker who can trigger the vulnerable heap allocation path can corrupt heap memory (CWE-122) to run code in the security context of the ReFS driver, yielding full confidentiality, integrity, and availability impact. No public exploit identified at time of analysis, and the flaw is not on the CISA KEV list.
Local code execution in Microsoft's Resilient File System (ReFS) driver allows an authorized (low-privileged) attacker to run arbitrary code with elevated context via a numeric truncation flaw. The bug affects the ReFS component shipped with Windows 10, Windows 11, and Windows Server 2016 through 2025. There is no public exploit identified at time of analysis and it is not listed in CISA KEV; note that the CVE's own tags label it 'Information Disclosure' while the description and CVSS impact (C:H/I:H/A:H) describe full code execution - the code-execution reading should be treated as authoritative.
Local privilege escalation in the Windows Routing and Remote Access Service (RRAS) lets an already-authenticated low-privileged user (PR:L) abuse a symbolic-link/junction resolution flaw (CWE-59) to redirect a privileged file operation and gain SYSTEM-level control on affected Windows 10, Windows 11, and Windows Server 2012-2025 hosts. Microsoft has released patches; there is no public exploit identified at time of analysis and the flaw is not in CISA KEV, with a low EPSS of 0.28% (20th percentile). SSVC rates technical impact as total but marks exploitation as none and not automatable, consistent with a hands-on local escalation rather than a mass-exploitable remote bug.
Local privilege escalation in the Microsoft Windows Universal Disk Format File System driver (udfs.sys) lets an authenticated low-privileged user gain SYSTEM-level control by triggering an integer underflow (CWE-191) while parsing a malicious UDF-formatted volume. It affects a broad Windows footprint from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. Currently there is no public exploit identified at time of analysis, EPSS is low (0.31%), and CISA SSVC rates exploitation as none, though the technical impact is total.
Local privilege escalation in the Microsoft Windows NTFS driver lets an already-authenticated attacker overflow a stack buffer (CWE-121) to run code with full system-level privileges. It affects a broad swath of supported Windows client and server builds, from Windows 10 1607 and Server 2012 through Windows 11 26H1 and Server 2025. No public exploit identified at time of analysis, and CISA's SSVC framework currently rates exploitation as none; EPSS is low at 0.34% (26th percentile), so this is a patch-on-schedule elevation-of-privilege bug rather than an emergency.
Denial of service in the Windows HTTP/2 network stack allows a remote, unauthenticated attacker to exhaust server resources and render affected services unavailable across a broad range of Windows client and server releases (Windows 10/11 and Windows Server 2016 through 2025). Reported by Microsoft with a vendor patch available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV. The 7.5 CVSS reflects high availability impact with no confidentiality or integrity loss.
Denial of service in Microsoft Windows HTTP.sys allows remote unauthenticated attackers to exhaust system resources and make affected hosts unresponsive over the network. The flaw stems from missing resource limits/throttling (CWE-770) in the kernel-mode HTTP protocol stack, affecting a broad range of Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. No public exploit identified at time of analysis, and the issue is not listed in CISA KEV; a vendor patch is available via MSRC.
Security feature bypass in Windows Secure Boot (CWE-358) allows a locally authenticated attacker on affected Windows 10, Windows 11, and Windows Server (2016 through 2025) systems to defeat the boot-integrity trust chain due to an improperly implemented standard security check. Because Secure Boot is the gate that blocks unsigned/tampered bootloaders and rootkits, a successful bypass can enable pre-OS persistence and undermine downstream protections such as BitLocker and Measured Boot. There is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV; Microsoft has published a patch via its update guide.
Local privilege escalation in the Windows Clipboard Server (Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 through 2025) allows an already-authenticated low-privileged user to win a race condition and gain higher privileges on the host. Microsoft credits its own researchers and has shipped a fix; there is no public exploit identified at time of analysis and the CVSS base score is 7.0 (High). The high attack complexity reflects the timing precision needed to exploit the race, which meaningfully limits reliable weaponization.
Local privilege escalation in the Windows NTFS filesystem driver (CWE-122 heap-based buffer overflow) lets a locally authenticated attacker corrupt kernel heap memory and execute arbitrary code, per Microsoft's CVSS 3.1 vector (AV:L/PR:L). Affected builds span Windows 10 (1607 through 22H2), Windows 11 (24H2/25H2/26H1), and Windows Server 2012 through 2025. There is no public exploit identified at time of analysis and CISA SSVC rates current exploitation as 'none', with a low EPSS score of 0.29% (21st percentile), though the technical impact is rated 'total'.
Link-following vulnerability in Windows upnp.dll (Universal Plug and Play) enables a locally authenticated attacker with standard user privileges to read files outside intended access boundaries by planting symbolic links or junction points that the service resolves without proper validation. Affected scope spans Windows 10 (versions 1607-22H2), Windows 11 (versions 24H2-26H1), and Windows Server 2012 through 2025. No public exploit has been identified at time of analysis; EPSS of 0.27% (19th percentile) and CISA SSVC exploitation status of 'none' collectively indicate low near-term exploitation probability.
Remote code execution in Microsoft Active Directory Domain Services (AD DS) allows an authenticated network attacker to run arbitrary code on domain controllers by triggering a heap-based buffer overflow (CWE-122). Affected platforms span Windows Server 2012 through 2025 (including Server Core) and Windows 10/11 clients acting in AD roles, with Microsoft-issued patches available. There is no public exploit identified at time of analysis and it is not on CISA KEV, but the CVSS 8.8 rating and the sensitivity of the domain-controller attack surface make this a high-priority patch.
Local privilege escalation in the Windows Push Notifications component (WPN) affects Windows 11 (23H2, 24H2, 25H2, 26H1) and Windows Server 2025 including Server Core, where a race condition (CWE-362) lets an authorized local user win a timing window on a shared resource to run code at a higher privilege level. Microsoft reported the issue and has released a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV. Note a signal conflict: the description and CVSS impact frame this as privilege elevation, while the vendor tags also list 'Information Disclosure' - the primary impact should be treated as EoP pending vendor clarification.
Denial of service in the Windows Local Security Authority Subsystem Service (LSASS) allows a remote, unauthenticated attacker to crash the service and disrupt authentication across all supported Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. The flaw stems from an excessive-size memory allocation (CWE-789) triggerable over the network with no privileges or user interaction, and while a vendor patch is available, there is no public exploit identified at time of analysis and it is not listed in CISA KEV. Impact is limited to availability (A:H) with no confidentiality or integrity loss, but LSASS failure can force system instability or reboots, affecting domain authentication and logon.
Denial of service in Windows Cryptographic Services affects a broad sweep of supported Microsoft platforms, from Windows 10 (1607) and Server 2012 through Windows 11 26H1 and Server 2025. A memory-leak flaw (CWE-401) lets a remote, unauthenticated attacker send network traffic that fails to release memory over time, degrading or exhausting the affected service until availability is impacted. There is no public exploit identified at time of analysis, exploitation is not yet observed (SSVC: none), and EPSS is low (0.78%), but a vendor patch is available and Automatable is 'yes', warranting prompt patching.
Windows Event Logging Service across a wide range of Windows 10, Windows 11, and Windows Server versions fails to enforce its intended protection mechanisms, permitting any authenticated low-privileged network user to read information that should be access-controlled. The CVSS vector (AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N) confirms exploitation requires only a valid low-privilege account and network connectivity, with no user interaction and no elevated rights - making it a practical post-compromise lateral-movement or reconnaissance tool. No public exploit code has been identified and this CVE is not listed in CISA KEV at time of analysis, but the ubiquitous deployment footprint across the Windows ecosystem elevates organizational exposure.
Remote code execution in Windows PowerShell allows an authenticated attacker with low privileges to run arbitrary code across a network by exploiting a relative path traversal (CWE-23) flaw, provided a victim is induced to interact (UI:R). Affecting supported Windows 10/11 clients and Windows Server 2012 through 2025, the issue carries a CVSS 8.0 with full confidentiality, integrity, and availability impact, and a vendor patch is available via MSRC. There is no public exploit identified at time of analysis, and the CVE is not listed in CISA KEV.
Windows File Explorer on affected Microsoft Windows 10, Windows 11, and Windows Server platforms exposes sensitive information to locally authenticated low-privilege users without authorization. The CWE-200 root cause indicates inadequate access restrictions within the File Explorer shell component, enabling a user to read data beyond their authorization boundary. No public exploit exists and SSVC confirms no observed exploitation activity, but the broad Windows deployment footprint and high confidentiality impact (C:H) make this relevant for shared-access environments, terminal servers, and organizations with insider-threat concerns.
Windows File Explorer across a broad range of Windows 10, Windows 11, and Windows Server releases contains a use-of-uninitialized-resource flaw (CWE-908) that allows a low-privileged local attacker to read stale memory contents and disclose potentially sensitive information. The vulnerability is locally constrained (AV:L, PR:L) with no integrity or availability impact, and SSVC signals no known exploitation and no automatable attack path. EPSS at 0.31% (22nd percentile) and the absence of a CISA KEV entry collectively indicate low near-term exploitation likelihood despite the wide deployment footprint of the affected OS.
Windows Audio Service on multiple Windows desktop and server versions improperly exposes sensitive information to locally authenticated standard users, enabling information disclosure without requiring elevated privileges. Affecting Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 (with Server 2022 and 2025 referenced in tags), the flaw is exploitable post-foothold by any low-privileged local account, making it a realistic post-exploitation pivot rather than an initial access vector. No public exploit code has been identified at time of analysis, and a vendor-released patch is confirmed available via the Microsoft Security Response Center.
Windows File Explorer on virtually all supported Microsoft Windows desktop and server editions leaks sensitive information to locally authenticated low-privileged users, classified under CWE-200. The flaw allows a local attacker holding only a standard account to access data that should be restricted to higher-privileged processes - with no user interaction required (UI:N) and low attack complexity (AC:L). Despite the high confidentiality impact in the CVSS vector, EPSS sits at just 0.36% (28th percentile) and SSVC confirms exploitation as 'none' and the attack as not automatable, placing this firmly in the category of a patch-cycle priority rather than an emergency response. No public exploit has been identified at time of analysis.
Local privilege escalation via a heap-based buffer overflow in the Windows NTFS driver allows an authenticated attacker with low privileges to execute arbitrary code and gain full SYSTEM-level control. It affects a broad range of Windows client and server releases, from Windows 10 1607 and Windows Server 2012 through Windows 11 26H1 and Windows Server 2025. No public exploit identified at time of analysis, and SSVC records no observed exploitation; EPSS is low at 0.29% (21st percentile).
Local privilege escalation in Microsoft Windows Narrator (the built-in screen reader) arises from improper neutralization of special elements in its Braille support component, allowing an already-authenticated local attacker (PR:L) to inject and execute OS commands that run with elevated privileges. All supported Windows client and server builds from Windows 10 1809 through Windows 11 26H1 and Windows Server 2019-2025 are affected, and Microsoft has released a patch. There is no public exploit identified at time of analysis and the CVE is not in CISA KEV, so exploitation is not confirmed as active.
Out-of-bounds read in the Windows Kernel (CWE-125) enables a locally authenticated attacker with standard user privileges to bypass a kernel security feature and read kernel memory contents. Confirmed by Microsoft (MSRC) across Windows 10, Windows 11, and Windows Server 2012 through 2025 editions, with patches available for all affected builds. No public exploit code and no CISA KEV listing exist at time of analysis; EPSS at 0.29% (20th percentile) and SSVC exploitation status of 'none' together signal low current exploitation activity, though the kernel memory disclosure primitive is a classic KASLR-defeat building block in chained exploits.
Local code execution in Microsoft Windows Media Foundation lets an attacker run arbitrary code in the context of the victim after luring them to open a maliciously crafted media file. The flaw (CVE-2026-58610, CWE-122 heap-based buffer overflow) affects a broad range of Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. CVSS is 7.8 (AV:L/AC:L/PR:N/UI:R) with full confidentiality, integrity, and availability impact; there is no public exploit identified at time of analysis and it is not on CISA KEV.
Local code execution in the Microsoft Graphics Component affects a broad range of supported Windows client and server releases (Windows 10 1607 through Windows 11 26H1, and Windows Server 2012 through Server 2025). An attacker who convinces a user to open a specially crafted file or content triggers an out-of-bounds read (CWE-125) that Microsoft rates as enabling code execution with high confidentiality, integrity, and availability impact. There is no public exploit identified at time of analysis and it is not listed in CISA KEV; exploitation requires local access plus user interaction, making it a standard patch-cycle priority rather than an emergency.
Remote code execution in the Windows Print Spooler components stems from an improperly synchronized race condition (CWE-362) that an authenticated, network-adjacent attacker can win to run code with full system impact. Microsoft (the reporter) has shipped fixes across the entire supported Windows and Windows Server line, but exploitation requires low privileges and a hard-to-hit timing window, so this is a real-but-non-trivial priority rather than a drop-everything emergency. There is no public exploit identified at time of analysis, EPSS is low at 0.53% (41st percentile), and CISA SSVC scores exploitation as none.
Local privilege escalation in the Windows Kernel Mode Driver affects Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025, where a use-after-free (CWE-416) lets an already-authenticated local attacker corrupt kernel memory and elevate to SYSTEM. Reported by Microsoft with a patch already available; there is no public exploit identified at time of analysis and it is not listed in CISA KEV. The CVSS 7.8 (AV:L/PR:L) reflects a high-impact but locally-scoped flaw requiring an existing foothold on the host.
Local privilege escalation in the Windows Virtual Hard Disk (VHD) Miniport Driver lets an authenticated low-privileged user corrupt kernel heap memory and gain SYSTEM-level control. The flaw (CWE-122 heap-based buffer overflow, CVSS 7.8) affects a broad range of Windows 10, Windows 11, and Windows Server builds and was reported by Microsoft. There is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Storage component affects a broad range of Windows client and server builds (Windows 10 1809 through Windows 11 26H1, and Windows Server 2019 through 2025). By exploiting a use-after-free memory-corruption flaw (CWE-416), an already-authenticated local attacker can elevate to SYSTEM-level privileges. Reported by Microsoft with a patch available; there is no public exploit identified at time of analysis, EPSS is low (0.15%), and CISA SSVC records exploitation status as none.
Information disclosure in the Windows Remote Desktop Protocol (RDP) stack across Windows 10, Windows 11, and Windows Server 2012 R2 through 2025 lets a remote, unauthenticated attacker read memory beyond intended bounds and leak sensitive data over the network. Microsoft has published a patch and CVSS 3.1 rates it 7.5 (high) for the confidentiality-only impact. There is no public exploit identified at time of analysis, and CISA's SSVC framework marks exploitation as 'none' with only partial technical impact, so this is a patch-on-schedule issue rather than an emergency.
Null pointer dereference in Windows Active Directory Domain Services (AD DS) enables a low-privileged authenticated attacker to crash the service remotely, causing denial of service across the affected domain. The flaw spans a wide range of Windows client and server releases, from Windows 10 version 1607 through Windows 11 version 26H1 and Windows Server 2012 through 2025. No public exploit code has been identified and this vulnerability is not listed in the CISA Known Exploited Vulnerabilities catalog at time of analysis, though the network-accessible attack surface and low privilege requirement lower the bar for abuse in environments with broad domain user access.
Security feature bypass in Microsoft XML (MSXML) across Windows 10, Windows 11, and Windows Server 2012 through 2025 requires an attacker with physical access to the target device to exploit an untrusted search path condition. The vulnerability allows an unauthorized attacker to subvert the library or executable resolution order, enabling them to load attacker-controlled code that circumvents Windows security controls. No public exploit has been identified at time of analysis, and SSVC assessment confirms zero observed exploitation, though the technical impact if successfully executed is rated total (full compromise of confidentiality, integrity, and availability).
Local privilege escalation in Microsoft Windows Hyper-V (Windows 11 24H2/25H2/26H1 and Windows Server 2022/2025) stems from a use-after-free memory-corruption condition that lets an attacker with a local foothold execute code at elevated, potentially SYSTEM/hypervisor-level privilege. Microsoft rates it CVSS 8.4 with total confidentiality, integrity, and availability impact, and there is no public exploit identified at time of analysis. EPSS is low (0.24%, 16th percentile) and CISA SSVC lists exploitation status as none, so this is a high-severity patch-on-cycle item rather than an actively exploited emergency.
Remote code execution in Microsoft Windows Secure Socket Tunneling Protocol (SSTP) allows an unauthorized network attacker to run arbitrary code by triggering a use-after-free (CWE-416) memory-corruption condition. The flaw affects a broad range of Windows client and server releases from Windows 10 1607 and Server 2012 through Windows 11 26H1 and Server 2025, and per its CVSS 9.8 vector requires no authentication or user interaction. There is no public exploit identified at time of analysis, and the EPSS probability is modest (0.61%), so despite the critical score exploitation is not yet observed.
Local tampering in Windows CryptoAPI (Crypt32) on Windows 11 (24H2/25H2/26H1) and Windows Server 2022/2025 stems from a missing cryptographic step, letting an authenticated local attacker undermine the integrity and confidentiality of cryptographically protected data. Microsoft rates it 7.1 (High) with high confidentiality and integrity impact; there is no public exploit identified at time of analysis and it is not on the CISA KEV list. A vendor patch is available through the MSRC update guide.
Local code execution in Microsoft Windows GDI+ (the graphics rendering component) via a heap-based buffer overflow (CWE-122), affecting a broad range of Windows client and server releases from Windows 10 1607 through Windows 11 26H1 and Server 2012 through Server 2025. Per the supplied CVSS vector (PR:N), an unauthorized attacker who gets the vulnerable component to process crafted graphics data can achieve high-impact code execution (C:H/I:H/A:H) on the local system. Microsoft has published a patch; there is no public exploit identified at time of analysis and the issue is not listed in CISA KEV.
Remote code execution in the Windows Reliable Multicast Transport Driver (RMCAST) lets an unauthenticated network attacker trigger a use-after-free (CWE-416) and run arbitrary code on a broad range of Windows 10, Windows 11, and Windows Server systems (Server 2012 through Server 2025). Rated CVSS 8.1, the flaw carries high impact to confidentiality, integrity, and availability but requires winning a race condition (AC:H), and no public exploit identified at time of analysis. Reported by Microsoft with a vendor patch available.
Windows Remote Desktop Protocol (RDP) client leaks sensitive memory contents due to use of an uninitialized resource (CWE-908), allowing a network-accessible attacker to disclose potentially high-value information from a victim's system. Exploitation requires user interaction - a victim must connect to an attacker-controlled RDP endpoint - making this a client-side information disclosure attack affecting Windows 10 (all supported versions from 1607 through 22H2), Windows 11 (24H2 through 26H1), and Windows Server 2012 through 2025. No public exploit code has been identified and no active exploitation is confirmed; however, the CVSS confidentiality impact is rated High, meaning exposed memory could include credentials or session tokens.
Remote code execution in the Microsoft Windows TCP/IP networking stack allows an unauthenticated attacker on the same physical or logical network segment to win a race condition and run arbitrary code on the target. The flaw spans a broad range of desktop and server builds from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 through Server 2025. There is no public exploit identified at time of analysis, but Microsoft has confirmed the issue and shipped a patch, and the high CVSS (8.8) plus network-facing kernel component make it a priority to remediate.
Information disclosure via uninitialized memory in the Windows SMB driver stack affects a broad range of Windows 10, Windows 11, and Windows Server versions. A locally authenticated, low-privileged attacker can trigger a code path that reads from uninitialized memory within the SMB subsystem, potentially leaking sensitive kernel or heap memory contents. No public exploit code or active exploitation has been identified at the time of analysis; Microsoft has released a patch via MSRC.
Denial of service in Windows Active Directory (spanning Windows 10, Windows 11, and Windows Server 2012 through 2025) lets a remote, unauthenticated attacker send crafted network traffic that drives an AD service into an infinite loop, exhausting CPU and rendering domain services unavailable. Because the CVSS vector is AV:N/AC:L/PR:N/UI:N with high availability impact and no confidentiality or integrity loss, this is a pure availability threat against domain controllers. Microsoft has released a patch; there is no public exploit identified at time of analysis and no CISA KEV listing.
Local privilege escalation in the Windows USB Print Driver affecting Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 lets an already-authenticated, low-privileged user win a race condition (CWE-362) in the driver to gain higher privileges. Microsoft has released a patch and reported the flaw itself; there is no public exploit identified at time of analysis. The high attack complexity (AC:H) reflects the timing-dependent nature of exploiting the shared-resource synchronization defect.
Local privilege escalation in Microsoft Windows Win32K (the kernel-mode GUI subsystem) allows an authenticated local user to elevate to SYSTEM by triggering a use-after-free (CWE-416) memory corruption condition. The flaw affects a broad range of supported builds spanning Windows 10 1809 through Windows 11 26H1 and Windows Server 2019 through 2025, including Server Core installations. Microsoft has released a patch; there is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV.
Remote code execution in the Windows Reliable Multicast Transport Driver (RMCAST) lets an unauthenticated attacker on the same network segment run arbitrary code by triggering an integer underflow (CWE-191) during multicast message processing. All supported Windows client and server builds from Windows Server 2012 through Windows Server 2025 and Windows 10 1607 through Windows 11 26H1 are affected. There is no public exploit identified at time of analysis, but the CVSS 8.8 adjacent-network unauthenticated profile and Microsoft's own reporting make this a high-priority patch.
Local privilege escalation to code execution in the Windows Resilient File System (ReFS) driver affects a broad range of Windows 10/11 and Windows Server 2016 through 2025 releases, where an integer overflow (CWE-190) in filesystem processing lets an already-authenticated local user run arbitrary code in an elevated context. The CVSS 3.1 vector (AV:L/PR:L) confirms low-privileged local access is required rather than remote exploitation, and there is no public exploit identified at time of analysis. Microsoft has released a patch via MSRC.
Local privilege escalation via heap-based buffer overflow in the Windows Message Queuing (MSMQ) Queue Manager component lets an authenticated local attacker corrupt heap memory and execute arbitrary code, gaining total control (SYSTEM-level) of the affected host. It impacts a broad range of Windows client and server builds from Windows Server 2012 through Windows 11 25H2/26H1 and Windows Server 2025. Microsoft has released patches; publicly available exploit code exists, though SSVC lists exploitation status as none and EPSS probability is low (0.39%).
Local privilege escalation in the Microsoft Printer Drivers component across Windows 10, Windows 11 (through 26H1), and Windows Server 2012 through 2025 lets an already-authenticated attacker corrupt kernel-adjacent memory to gain higher privileges. The flaw is a double free (CWE-415) triggered locally by a low-privileged user, yielding high confidentiality, integrity, and availability impact (CVSS 7.8). No public exploit identified at time of analysis, and it is not listed in CISA KEV.
Local privilege escalation in the Windows Win32K kernel-mode subsystem allows an already-authenticated attacker to win a race condition (CWE-362) and elevate to SYSTEM-level privileges across supported Windows 10, Windows 11, and Windows Server 2019-2025 builds. Reported by Microsoft with a vendor patch available; there is no public exploit identified at time of analysis and EPSS is low (0.16%, 5th percentile). CVSS 7.0 reflects high attack complexity (AC:H) driven by the timing-window nature of the flaw and the requirement for existing low-privilege access (PR:L).
Local code execution in Microsoft Windows Media Foundation lets an unauthorized attacker run arbitrary code by luring a user into opening a specially crafted media file. The flaw affects a broad range of Windows 10, Windows 11, and Windows Server builds (from 1809 through Windows 11 26H1 and Server 2025), and Microsoft has released patches. No public exploit identified at time of analysis, but the low attack complexity and full C/I/A impact make it a standard Patch-Tuesday priority.
Local privilege escalation in Microsoft Windows Win32K (the kernel-mode GUI subsystem) lets an already-authenticated low-privilege user corrupt kernel heap memory via a heap-based buffer overflow (CWE-122) to gain SYSTEM-level control. The flaw affects a broad range of client and server builds (Windows 10 1607 through Windows 11 26H1, and Windows Server 2016 through 2025). Microsoft has released a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Windows Win32K kernel-mode subsystem allows an authenticated low-privileged user to win a race condition and elevate to SYSTEM across Windows 10, Windows 11 (through 26H1), and Windows Server 2012 through 2025. Reported by Microsoft with a patch available, it carries CVSS 7.0 but a high attack complexity (AC:H) reflecting the timing-sensitive nature of the flaw. There is no public exploit identified at time of analysis, and EPSS is low (0.19%, 9th percentile), consistent with CISA SSVC rating exploitation as 'none.'
Heap-based buffer overflow in the Windows Kernel (CWE-122) enables an unauthenticated attacker with physical access to escalate privileges to SYSTEM level across a broad range of Windows 10, Windows 11, and Windows Server editions. The physical attack vector (AV:P) constrains the threat surface significantly, and SSVC rates exploitation as none with no public exploit identified at time of analysis. Despite total technical impact potential confirmed by both CVSS C:H/I:H/A:H metrics and SSVC technical impact rating, real-world risk is concentrated in physically accessible deployment scenarios such as kiosks, field laptops, or shared terminals.
Local privilege escalation in the Windows USB Print Driver affects Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025, where a race condition (CWE-362) in the handling of a shared resource lets an already-authenticated local user win a timing window to execute code at higher privilege. Rated CVSS 7.0 with high attack complexity, it requires low privileges and no user interaction, yielding full confidentiality, integrity, and availability impact. There is no public exploit identified at time of analysis, SSVC exploitation status is 'none', and EPSS is low at 0.19% (9th percentile), consistent with a Microsoft-reported, patch-first disclosure.
Local privilege escalation in the Windows USB Print Driver on Windows 11 (24H2, 25H2, 26H1) and Windows Server 2025 lets an already-authenticated low-privileged user win a timing race in the driver to gain elevated privileges. Reported by Microsoft with a patch available; no public exploit identified at time of analysis and it is not listed in CISA KEV. The high attack complexity (must reliably win a race window) tempers real-world exploitability despite full confidentiality, integrity, and availability impact.
Privilege escalation via use-after-free in the Windows USB Print Driver affects Windows 11 (versions 24H2, 25H2, 26H1) and Windows Server 2025, requiring physical access to exploit. An attacker with hands-on access to a target machine can trigger a memory corruption condition through the USB print subsystem to achieve full local privilege escalation - High confidentiality, integrity, and availability impact per CVSS. No public exploit code has been identified at time of analysis, and this vulnerability is not listed in the CISA KEV catalog.
Local privilege escalation in the Windows Common Log File System (CLFS) Driver allows an already-authenticated, low-privileged user to elevate to SYSTEM on a wide range of Windows client and server releases. Microsoft classifies the root cause as exposure of sensitive information (CWE-200), but the CVSS impact profile (C:H/I:H/A:H) reflects that the leaked kernel data enables full local privilege escalation. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, though CLFS has historically been a heavily exploited elevation-of-privilege target in Windows.
Remote code execution in the Windows Remote Desktop Client (RDP client on Windows 11 24H2/25H2/26H1 and Windows Server 2025) allows an unauthorized attacker to run arbitrary code by coercing a victim into connecting to a malicious or attacker-controlled RDP server, which returns crafted data that overflows a heap buffer. Reported by Microsoft with a vendor patch available, it carries CVSS 8.8 and requires user interaction (initiating the connection). EPSS is modest (0.67%, 48th percentile) and there is no public exploit identified at time of analysis, though SSVC rates it automatable with total technical impact.
Network denial of service in the Windows Internet Key Exchange (IKE) protocol implementation allows an unauthenticated remote attacker to crash affected systems by triggering a heap-based buffer overflow. All impact is to availability only (CVSS 7.5, A:H, no confidentiality or integrity loss), making this a reliability/uptime threat against IPsec/VPN-facing Windows 10, Windows 11, and Windows Server hosts rather than a code-execution vulnerability. There is no public exploit identified at time of analysis and it is not listed in CISA KEV, but the low attack complexity and lack of authentication make it a meaningful patching priority for internet-exposed IPsec endpoints.
Local privilege escalation in the Windows Overlay Filter (WOF) driver allows an authenticated low-privileged user to elevate to SYSTEM by triggering a heap-based buffer overflow (CWE-122). The flaw spans a broad range of client and server SKUs from Windows 10 1607 through Windows 11 26H1 and Windows Server 2012 R2 through Server 2025. Microsoft has shipped a patch; there is no public exploit identified at time of analysis and it is not listed in CISA KEV.
Local privilege escalation in the Quality Windows Audio/Video Experience (QWAVE) service across virtually all supported Windows client and server builds (Windows 10 1607 through Windows 11 26H1, Windows Server 2012 through 2025) allows an authenticated local attacker to gain SYSTEM-level control by triggering a use-after-free condition. Microsoft rates the impact as total (full confidentiality, integrity, and availability loss) with CVSS 7.8. There is no public exploit identified at time of analysis, and the low EPSS score (0.20%, 10th percentile) plus CISA SSVC 'Exploitation: none' indicate no observed exploitation yet.
Local privilege escalation in Microsoft Windows Hyper-V (affecting Windows 10, Windows 11, and Windows Server 2019 through 2025) allows an authenticated local attacker to elevate to SYSTEM by exploiting a use-after-free (CWE-416) memory corruption condition in the hypervisor stack. Microsoft reported the issue and has shipped fixes; there is no public exploit identified at time of analysis, and the low EPSS score (0.20%, 10th percentile) plus CISA SSVC 'Exploitation: none' indicate no observed exploitation yet. The total technical impact (full C/I/A compromise) makes it a meaningful patch priority on any Hyper-V-enabled host despite the local attack vector.
Denial of service in Microsoft Active Directory Federation Services (AD FS) allows a remote, unauthenticated attacker to crash the service by triggering a stack-based buffer overflow over the network (CVSS 7.5, availability-only impact). Because AD FS brokers single sign-on and federated authentication, a successful attack can knock out login for every downstream application that relies on it. No public exploit has been identified at time of analysis, and it is not listed in CISA KEV.
Denial of service in Microsoft Active Directory Federation Services (AD FS) lets a remote, unauthenticated attacker crash the service by triggering a stack-based buffer overflow (CWE-121) over the network. The flaw affects AD FS as shipped across a broad range of Windows client and server builds (Windows 10/11 and Windows Server 2012 through 2025). Microsoft - the reporting party - has released a patch; there is no public exploit identified at time of analysis and the CVE is not listed in CISA KEV.
Local privilege escalation in the Microsoft Windows App Store component (Windows 10 1607 through Windows 11 26H1, and Windows Server 2016 through 2025) allows an authorized low-privileged attacker to win a race condition on an improperly synchronized shared resource and gain higher privileges. Exploitation is local-only and high-complexity because it depends on reliably hitting a narrow timing window, and no public exploit has been identified at time of analysis. A vendor patch is available via Microsoft's MSRC update guide.
Out-of-bounds read in the Windows TCP/IP stack exposes kernel or process memory to locally authenticated low-privileged users across a broad range of Windows 10, Windows 11, and Windows Server releases spanning from Server 2012 through Server 2025. The CWE-125 root cause allows an authorized local attacker with standard user credentials to read memory regions outside allocated buffer boundaries in the TCP/IP component, yielding high-confidentiality-impact information disclosure with no integrity or availability consequence. No public exploit code exists and no active exploitation has been identified (EPSS: 0.31%, 22nd percentile; SSVC exploitation status: none), placing this in a lower-priority remediation tier despite its exceptionally broad product footprint.