Privilege escalation via heap-based buffer overflow in the Windows Biometric Service (WinBio) affects all major Windows 10, Windows 11, and Windows Server editions from version 1607 through Server 2025. An authenticated local attacker exploiting this vulnerability can corrupt heap structures within the privileged WinBio process to execute arbitrary code at SYSTEM level. No public exploit has been identified at time of analysis, and Microsoft has released patches across all fifteen affected version and edition combinations.
Heap-based buffer overflow in Microsoft Windows Speech (CWE-122) allows a local low-privileged attacker to escalate to SYSTEM-level privileges with no user interaction required. The vulnerability spans the entire modern Windows platform - Windows 10 (versions 1607 through 22H2), Windows 11 (versions 23H2 through 26H1), and Windows Server 2016 through 2025 - making the attack surface exceptionally broad. No public exploit code or CISA KEV entry has been identified at time of analysis; however, the vendor patch is confirmed available via MSRC.
Heap-based buffer overflow in Microsoft Windows Speech enables local privilege escalation across Windows 10, Windows 11, and Windows Server platforms from 2016 through 2025. An authorized local attacker holding only a standard user account can exploit the CWE-122 flaw without user interaction to obtain full system compromise (C:H/I:H/A:H), effectively achieving SYSTEM-level privileges. Vendor-supplied patches are available via MSRC; no public exploit code has been identified at time of analysis.
Local privilege escalation in the Windows Device Association Service allows a low-privileged authenticated local user to gain SYSTEM-level control across a broad range of Windows 10, Windows 11, and Windows Server releases. The root cause is CWE-763 (Release of Invalid Pointer or Reference) - a memory-safety defect in the service's pointer lifecycle management that, when triggered, enables code execution at elevated privilege. No public exploit code or active exploitation has been identified at time of analysis, but the zero-interaction, low-complexity CVSS vector makes this a high-priority patching target for any organization running unpatched Windows endpoints or servers.
Stack-based buffer overflow in the Microsoft Graphics Component enables a locally authenticated attacker with standard user privileges to escalate to full system control across Windows 10 and Windows 11. The flaw (CWE-121) is triggered locally with low complexity and no user interaction, yielding high confidentiality, integrity, and availability impact per the CVSS:3.1 vector. No public exploit code or CISA KEV listing is identified at time of analysis, but the low-privilege requirement and zero interaction needed make this a realistic post-compromise escalation primitive.
Stack-based buffer overflow in Microsoft's Local Security Authority Server (lsasrv.dll) enables a locally authenticated attacker with standard user privileges to escalate to SYSTEM-level access on affected Windows systems. The flaw spans the entire modern Windows ecosystem - from Windows Server 2012 through Windows 11 26H1 and Windows Server 2025 - making it broadly applicable in enterprise environments. No public exploit code or CISA KEV listing has been identified at time of analysis, but the patch is vendor-released and should be prioritized given lsasrv's privileged role in Windows authentication infrastructure.
Use-after-free code execution in Microsoft Excel allows a local unauthenticated attacker to execute arbitrary code at the privilege level of the victim user by enticing them to open a specially crafted workbook file. Affected products span the full current Office portfolio: Excel 2016, Office 2016/2019, Office LTSC 2021/2024 (Windows and Mac), and Microsoft 365 Apps for Enterprise. No public exploit or CISA KEV listing is identified at time of analysis, but Microsoft has released patches addressing all affected version lines.
Heap-based buffer overflow in Microsoft Office Excel enables local code execution across nine distinct Office SKUs ranging from Excel 2016 through Microsoft 365 Apps for Enterprise. Exploitation requires a victim to open a specially crafted Excel file, making phishing and malicious-document delivery the primary attack vectors. Microsoft has released patched builds for all affected Windows variants; Mac-platform fixed builds should be confirmed via the MSRC advisory. No public exploit or CISA KEV listing has been identified at time of analysis.
Heap-based buffer overflow in the Microsoft Windows Codecs Library (HEVC Video Extensions) enables local privilege escalation on Windows systems. Three distinct Store app variants - the base edition, the licensed-application edition, and the device-manufacturer-bundled edition - are all affected across specific version ranges. An attacker who can deliver a specially crafted HEVC media file and induce a local user to open it gains full C:H/I:H/A:H impact, effectively achieving code execution at an elevated privilege level. No public exploit code or CISA KEV listing has been identified at time of analysis.
Heap-based buffer overflow in the Windows Local Security Authority Server (lsasrv.dll) enables an authenticated local attacker to escalate privileges to SYSTEM on affected Windows Server 2025 and Windows 11 systems. The vulnerability resides in a core authentication and security-policy component running under the lsass.exe process, making successful exploitation effectively equivalent to full system compromise. No public exploit identified at time of analysis; vendor patch is available via Microsoft Update.
Heap-based buffer overflow in Microsoft HEVC Video Extensions (Windows Codecs Library) enables local code execution with the full privileges of the targeted user when a victim opens or previews a specially crafted HEVC/H.265 video file. Three distinct distribution variants of the codec are affected - the standalone Store app, the device-manufacturer-bundled version, and the licensed-applications edition - all requiring upgrade to their respective patched releases. No public exploit code or CISA KEV listing has been identified at time of analysis, but the user-interaction trigger (opening a video file) creates a viable social engineering vector.
Stack-based buffer overflow in the Windows Broker Infrastructure Service (CWE-121) allows a locally authenticated low-privileged attacker to elevate privileges to SYSTEM on a wide range of Windows client and server editions. The vulnerability affects Windows 10 (versions 1607 through 22H2), Windows 11 (versions 23H2 through 26H1), and Windows Server 2016 through 2025, including Server Core installations. Microsoft has released patches across all affected branches; no public exploit or CISA KEV listing has been identified at time of analysis.
Heap-based buffer overflow in the Windows Biometric Service (WBioSrvc) enables a locally authenticated low-privileged attacker to escalate to SYSTEM-level privileges with no user interaction required. The vulnerability spans Windows 10 (versions 1607 through 22H2), Windows 11 (versions 23H2 through 26H1), and Windows Server 2016 through 2025, making it one of the broadest-scope local privilege escalation issues in the current patch cycle. Microsoft has released patches across all affected branches; no public exploit code or CISA KEV active exploitation entry has been identified at time of analysis.
Heap-based buffer overflow in Windows Biometric Service (WbioSrvc) enables a local attacker with low-privilege code execution to escalate to SYSTEM-level privileges across a broad range of Windows 10, Windows 11, and Windows Server releases. Exploitation requires no user interaction and no elevated starting privileges beyond a standard user session. No public exploit code or CISA KEV listing has been identified at time of analysis; Microsoft has released patches for all affected versions via the update guide at msrc.microsoft.com.
Local privilege escalation via heap-based buffer overflow (CWE-122) in the Windows Biometric Service (WBioSrvc) affects Windows 10, Windows 11, and Windows Server 2016 through 2025 across a broad range of build versions. An authorized local attacker with low privileges can trigger the overflow to corrupt heap memory and achieve SYSTEM-level access, yielding full confidentiality, integrity, and availability impact on the local machine. Microsoft has released patches through the standard Patch Tuesday cycle; no active exploitation or public proof-of-concept has been identified at time of analysis.
Heap-based buffer overflow in Windows Biometric Service (WinBio) enables a locally authenticated attacker with standard user privileges to escalate to SYSTEM-level access across a broad swath of Windows 10, Windows 11, and Windows Server editions. The vulnerability is rooted in CWE-122 (heap buffer overflow) within the service that manages biometric devices such as fingerprint readers and Windows Hello. Microsoft has released patches via the MSRC update guide; no public exploit or CISA KEV listing has been identified at time of analysis.
Heap-based buffer overflow in the Windows Biometric Service (wbiosrvc) enables any authenticated local user to elevate privileges to SYSTEM across a broad range of Windows 10, Windows 11, and Windows Server releases. The CVSS 7.8 vector (AV:L/AC:L/PR:L/UI:N) reflects straightforward exploitation conditions - no complex setup or user interaction required - with full confidentiality, integrity, and availability impact on the host. Microsoft has released patches across all affected build lines; no public exploit code or CISA KEV listing has been identified at time of analysis.
Privilege escalation in Windows Biometric Service (WbioSrvc) affects every major Windows desktop and server release from Windows 10 1607 through Windows 11 26H1. An authenticated local user with standard (low-privilege) access can trigger a heap-based buffer overflow in the biometric service process, elevating execution to SYSTEM level and achieving full C:H/I:H/A:H compromise of the host. Microsoft has released patched builds across all affected version branches; no public exploit code or CISA KEV listing has been identified at time of analysis, but the enormous footprint of affected Windows versions across both workstation and server estates makes this a high-urgency patch candidate.
Local privilege escalation in Windows Biometric Service (WBioSrvc) allows a low-privileged authenticated local user to achieve full system compromise through a heap-based buffer overflow. The flaw affects a wide range of Windows 10, Windows 11, and Windows Server releases (2016 through 2025), making it broadly relevant across enterprise environments. No public exploit code or active exploitation (CISA KEV) has been identified at time of analysis, but the low attack complexity and minimal privilege requirement make this a meaningful post-exploitation stepping stone.
Heap-based buffer overflow in the Windows Biometric Service (WbioSrvc) enables a low-privileged local attacker to escalate privileges to SYSTEM without user interaction. The flaw spans virtually every supported Windows release - from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025 - making the attack surface exceptionally broad. Microsoft has released patches for all affected builds; no public exploit code or CISA KEV listing has been identified at time of analysis.
Privilege escalation in Windows Biometric Service via use-after-free (CWE-416) allows a low-privileged, locally authenticated attacker to gain SYSTEM-level access across a broad range of Windows client and server releases. The vulnerability spans Windows 10 through Windows 11 (multiple feature releases) and Windows Server 2016 through 2025, placing it among the widest-footprint Microsoft patch-Tuesday EoP issues. Microsoft has released fixed builds; no public exploit identified at time of analysis.
Heap-based buffer overflow in the Windows Biometric Service (WbioSrvc) enables a locally authenticated low-privilege attacker to escalate to full SYSTEM-level privileges across fifteen distinct Windows 10, Windows 11, and Windows Server build configurations. The flaw (CWE-122) resides in the service's heap memory management and, given the CVSS AC:L rating, is considered straightforward to exploit once local or RDP access is established. Vendor-released patches are available for all affected build lines; no public exploit code and no CISA KEV listing have been identified at the time of analysis.
Heap-based buffer overflow in the Windows Biometric Service (WinBioSrvc) allows a locally authenticated low-privileged attacker to escalate privileges to SYSTEM level across a broad range of Windows desktop and server releases. The flaw (CWE-122) exists in a high-privilege Windows service, making it a reliable local privilege escalation primitive for post-exploitation scenarios. No public exploit identified at time of analysis, and no CISA KEV listing; Microsoft has released patches across all affected version branches.
Heap-based buffer overflow in the Windows Biometric Service (WbioSrvc) enables local privilege escalation to SYSTEM on a broad range of Windows client and server platforms. An authenticated low-privileged user can trigger the overflow without user interaction, yielding full confidentiality, integrity, and availability compromise of the affected system. No public exploit code or CISA KEV listing has been identified at time of analysis, but the wide version footprint across Windows 10 through Windows 11 and Server 2016-2025 makes this a significant enterprise patching priority.
Heap-based buffer overflow in the Windows Biometric Service (WbioSrvc) enables a low-privileged local attacker to escalate privileges to SYSTEM on affected Windows hosts. The CVSS 3.1 vector (AV:L/AC:L/PR:L/UI:N) confirms low-complexity local exploitation with full confidentiality, integrity, and availability impact, consistent with a service-level privilege escalation. No public exploit code or active exploitation has been identified at time of analysis; a vendor-released patch is available via Microsoft's July 2026 security update.
Heap-based buffer overflow in the Windows Biometric Framework Service enables an authenticated local attacker to escalate privileges to SYSTEM level across a broad range of Windows 10, Windows 11, and Windows Server versions. The CVSS vector (AV:L/AC:L/PR:L/UI:N) confirms the flaw is straightforward to trigger with only a low-privileged local account and no user interaction, making it an effective post-compromise escalation primitive. No public exploit or CISA KEV listing is identified at time of analysis; Microsoft has released patches for all affected builds.
Heap-based buffer overflow in Windows Biometric Service (WBioSrvc) enables a low-privileged local attacker to escalate to SYSTEM-level privileges across a broad range of Windows 10, Windows 11, and Windows Server releases. The vulnerability (CWE-122) requires only a valid local account and no user interaction, making it a reliable post-exploitation stepping stone for attackers who have already obtained initial access. Microsoft has released patches across all affected build branches; no public exploit code or active exploitation has been identified at time of analysis.
Heap-based buffer overflow in the Windows Biometric Service (WbioSrvc) enables local privilege escalation to SYSTEM on a wide range of Windows 10, Windows 11, and Windows Server releases. Exploitation requires an authorized, low-privileged local account, after which the attacker achieves full confidentiality, integrity, and availability impact (C:H/I:H/A:H). Microsoft has released patches across all affected version branches; no public exploit has been identified at time of analysis.
Local privilege escalation in Windows Biometric Service affects a broad sweep of Windows 10, Windows 11, and Windows Server versions through a use-after-free memory corruption condition. An authorized local attacker with standard (low-privilege) credentials can exploit the UAF to elevate to SYSTEM-level access, achieving full confidentiality, integrity, and availability impact on the host. No public exploit or active exploitation has been identified at time of analysis, but the extensive Windows footprint and confirmed vendor patch make timely deployment a clear priority.
Heap-based buffer overflow in the Windows Biometric Service (wbiosrvc) enables a locally authenticated, low-privileged attacker to escalate privileges to SYSTEM-level on a wide range of Windows desktop and server releases, from Windows 10 Version 1607 and Server 2016 through Windows 11 Version 26H1 and Server 2025. The CVSS vector (AV:L/AC:L/PR:L/UI:N) confirms the attack requires only a standard user session with no user interaction and no special complexity, making this a reliable post-exploitation LPE primitive. No public exploit code and no CISA KEV listing have been identified at time of analysis; a vendor-released patch is available via Microsoft Security Response Center.
Heap-based buffer overflow in the Windows Biometric Service (WbioSrvc) enables a locally authenticated low-privileged attacker to achieve SYSTEM-level privilege escalation on any unpatched supported Windows endpoint or server. The vulnerability exists in a default-enabled service present across all supported Windows 10, Windows 11, and Windows Server 2016-2025 builds, making the affected surface essentially every managed Windows environment. No public exploit or CISA KEV listing has been identified at time of analysis; however, AC:L indicates straightforward exploitation once triggered, making this a high-priority patch target given its ubiquitous footprint and value as a post-exploitation escalation primitive.
Heap-based buffer overflow in the Windows Work Folders synchronization component allows a locally authenticated low-privileged user to escalate privileges to SYSTEM level across Windows 10 and Windows 11. The vulnerability (CWE-122) stems from improper bounds checking in a privileged Work Folders process and requires only a standard user account with no secondary user interaction. Microsoft has released cumulative updates addressing the flaw; no public exploit or CISA KEV listing has been identified at time of analysis.
Local privilege escalation in Windows Biometric Service (WbioSrvc) allows any low-privileged authenticated user to gain SYSTEM-level access via a null pointer dereference (CWE-476) in the Windows Biometric Framework. Affecting Windows 10 through Windows 11 26H1 and Windows Server 2016 through 2025, the flaw is present across virtually the entire modern Windows ecosystem. No public exploit identified at time of analysis; Microsoft has released patches across all affected branches.
Heap-based buffer overflow in the Windows Biometric Service (WbioSrvc) allows a locally authenticated low-privileged attacker to escalate privileges to SYSTEM on affected Windows 10, Windows 11, and Windows Server 2016 through 2025 installations. The vulnerability is exploitable with no user interaction beyond local code execution rights, and affects virtually the entire supported Windows ecosystem - from Windows 10 version 1607 through Windows 11 26H1 and all major Server SKUs. No public exploit code or CISA KEV listing has been identified at time of analysis, but a vendor-released patch is available.
Heap-based buffer overflow in the Windows Biometric Service (WBF) enables a locally authenticated attacker to escalate privileges to SYSTEM on a wide range of Windows desktop and server versions. The flaw (CWE-122) is reachable by any standard user account and requires no user interaction, yielding full confidentiality, integrity, and availability compromise on the vulnerable host. Patch is available via Microsoft's Patch Tuesday update cycle; SSVC assessment indicates no exploitation observed and the attack is not automatable.
Local privilege escalation in Windows Biometric Service (WinBio) allows an authenticated low-privileged user to gain full system control via a heap-based buffer overflow. The flaw spans a broad surface - Windows 10 versions 1607 through 22H2, Windows 11 versions 23H2 through 26H1, and Windows Server 2016 through 2025 - all pre-patched builds are affected. Microsoft has released security updates addressing the overflow; no public exploit code or active exploitation (CISA KEV) has been identified at time of analysis.
Heap-based buffer overflow in the Windows Biometric Service enables local privilege escalation to SYSTEM-level access across a wide range of Windows client and server releases. Any low-privileged, authorized local user can trigger the overflow without user interaction, yielding full confidentiality, integrity, and availability compromise of the affected host. Vendor patch is available from Microsoft; no public exploit has been identified at time of analysis.
Privilege escalation via heap-based buffer overflow in the Windows Biometric Service (wbiosrvc) affects the full current Windows ecosystem, from Windows 10 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. An authenticated local user can trigger the overflow to achieve full SYSTEM-level code execution, with complete confidentiality, integrity, and availability impact on the local machine. No public exploit code has been identified at time of analysis, and Microsoft has released patches across all affected build branches via the standard update guide.
Heap-based buffer overflow in the Windows Biometric Service (WinBioSrv) enables a locally authenticated standard user to escalate privileges to SYSTEM on affected Windows endpoints and servers. The vulnerability spans virtually every currently supported Windows release - from Windows 10 1607 and Server 2016 through Windows 11 26H1 and Server 2025 - making organizational exposure exceptionally broad. Microsoft has released patched builds via the standard Patch Tuesday cycle; no public exploit code or CISA KEV listing has been identified at time of analysis.
Heap-based buffer overflow in Windows Biometric Service (wbiosrvc.exe) enables a low-privileged local attacker to escalate to SYSTEM-level privileges across all major Windows 10, Windows 11, and Windows Server 2016 through 2025 releases. The flaw (CWE-122) can be triggered with low complexity and no user interaction, yielding full confidentiality, integrity, and availability impact over the affected host. No public exploit has been identified at time of analysis; Microsoft has released patches covering all affected build lines.
Heap-based buffer overflow in the Windows Network Connection Broker service enables a locally authenticated, low-privileged attacker to escalate privileges to SYSTEM on affected Windows endpoints and servers. The vulnerability spans an exceptionally wide range of Microsoft platforms - from Windows Server 2012 through Windows Server 2025 and Windows 10/11 across multiple feature updates - making it a broad-surface local privilege escalation risk. No public exploit or CISA KEV listing has been identified at time of analysis, but Microsoft has released patches via the standard Patch Tuesday update cycle.
Privilege escalation via heap-based buffer overflow in the Windows USB driver stack allows a low-privileged local attacker to gain SYSTEM-level access on affected Windows 10, Windows 11, and Windows Server versions. The vulnerability (CWE-122) resides in kernel-mode USB driver handling, where malformed or malicious USB-related input can corrupt heap memory and redirect execution. No public exploit code has been identified at time of analysis, and the flaw is not listed in CISA KEV; however, the low attack complexity and broad Windows footprint make this a meaningful post-exploitation and insider-threat vector.
Heap-based buffer overflow in the Windows Storage Port Driver enables local privilege escalation on Windows 11 and Windows Server 2025. An authenticated low-privilege local attacker can exploit the overflow to achieve full C:H/I:H/A:H impact, effectively gaining SYSTEM-level access. No public exploit identified at time of analysis, and the flaw is not listed in the CISA KEV catalog; Microsoft has released patches resolving the issue.
Local privilege escalation via heap-based buffer overflow in Windows Biometric Service (WbioSrvc) enables any authorized low-privileged user to achieve full SYSTEM-level compromise across a broad range of Windows desktop and server releases. The CVSS:3.1 vector (AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H) confirms low-complexity local exploitation with no user interaction, yielding complete confidentiality, integrity, and availability impact. No public exploit or active exploitation (CISA KEV) has been identified at time of analysis; vendor-released patches are available.
Privilege escalation via stack-based buffer overflow in the Windows Storage Management Provider affects Windows 10, Windows 11, and Windows Server 2022/2025 across multiple build versions. A locally authenticated attacker with low privileges can exploit CWE-121 to overflow a stack buffer within the Storage Management Provider component, achieving full SYSTEM-level privilege escalation with no user interaction required. No public exploit code or CISA KEV listing has been identified at time of analysis, but the low attack complexity and broad version coverage across both client and server Windows editions make patching a priority.
Privilege escalation in the Windows Biometric Service (WBioSrvc) allows a locally authenticated attacker to elevate from standard user to SYSTEM-level privileges via an integer overflow or wraparound condition. The flaw spans a wide range of Windows 10, 11, and Server editions (1607 through 25H2/Server 2025), making it applicable across the majority of actively managed Windows fleets. With a CVSS 7.8 score (AV:L/AC:L/PR:L/UI:N) and low attack complexity once local access is established, this vulnerability is a realistic post-exploitation escalation primitive; no public exploit code or KEV listing has been identified at time of analysis.
Privilege escalation via out-of-bounds read in the Windows Virtual Hard Disk (VHD) Miniport Driver affects a broad range of Windows 10, Windows 11, and Windows Server releases from Server 2012 through Server 2025. An authorized local attacker exploiting this CWE-125 flaw can achieve full control of the affected system - gaining high confidentiality, integrity, and availability impact - by reading kernel memory beyond legitimate buffer boundaries within the driver. No public exploit code has been identified at time of analysis, but the breadth of affected Windows builds and low attack complexity make this a significant enterprise patching priority.
Privilege escalation to SYSTEM in Windows Biometric Service (wbiosrvc) allows a locally authenticated low-privileged user to fully compromise the affected Windows host via an integer overflow (CWE-190) in the biometric framework's internal processing. The flaw spans a broad surface of Microsoft Windows client and server editions from Windows 10 Version 1607 through Windows 11 26H1 and Windows Server 2016 through 2025. Microsoft has released patches for all affected versions; no public exploit code and no CISA KEV listing have been identified at time of analysis.
Heap-based buffer overflow in the Windows Encrypting File System (EFS) component enables a locally authenticated attacker to escalate privileges to SYSTEM level. The vulnerability spans virtually the entire modern Windows ecosystem - from Windows 10 1607 and Windows Server 2012 through Windows 11 26H1 and Windows Server 2025. No public exploit code or CISA KEV listing has been identified at time of analysis; vendor patch is available via MSRC.
Heap-based buffer overflow in Windows Credential Providers enables a locally authenticated, low-privileged user to escalate to SYSTEM-level privileges across a broad range of Windows 10, 11, and Windows Server releases. The CWE-122 flaw resides in the credential provider subsystem, requiring no user interaction and no elevated starting privileges, making it a reliable post-compromise escalation primitive for multi-stage attacks. No public exploit code or active exploitation has been confirmed at time of analysis; a vendor patch from Microsoft is available covering all affected branches.