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Search Results (14589 CVEs found)

CVE Vendors Products Updated CVSS v3.1
CVE-2025-12052 1 Insyde 1 Insydeh2o 2026-04-15 7.8 High
The drivers in the tool packages use RTL_QUERY_REGISTRY_DIRECT flag to read a registry value to which an untrusted user-mode application may be able to cause a buffer overflow.
CVE-2025-26403 1 Intel 2 Xeon, Xeon Processors 2026-04-15 7.2 High
Out-of-bounds write in the memory subsystem for some Intel(R) Xeon(R) 6 processors when using Intel(R) SGX or Intel(R) TDX may allow a privileged user to potentially enable escalation of privilege via local access.
CVE-2025-53367 2026-04-15 N/A
DjVuLibre is a GPL implementation of DjVu, a web-centric format for distributing documents and images. Prior to version 3.5.29, the MMRDecoder::scanruns method is affected by an OOB-write vulnerability, because it does not check that the xr pointer stays within the bounds of the allocated buffer. This can lead to writes beyond the allocated memory, resulting in a heap corruption condition. An out-of-bounds read with pr is also possible for the same reason. This issue has been patched in version 3.5.29.
CVE-2024-41928 1 Freebsd 1 Freebsd 2026-04-15 8.4 High
Malicious software running in a guest VM can exploit the buffer overflow to achieve code execution on the host in the bhyve userspace process, which typically runs as root. Note that bhyve runs in a Capsicum sandbox, so malicious code is constrained by the capabilities available to the bhyve process.
CVE-2025-41413 2026-04-15 7.8 High
Fuji Electric Smart Editor is vulnerable to an out-of-bounds write, which may allow an attacker to execute arbitrary code.
CVE-2024-43688 2 Openbsd, Vixie 2 Openbsd, Cron 2026-04-15 7.3 High
cron/entry.c in vixie cron before 9cc8ab1, as used in OpenBSD 7.4 and 7.5, allows a heap-based buffer underflow and memory corruption. NOTE: this issue was introduced during a May 2023 refactoring.
CVE-2025-48518 1 Amd 9 Radeon Pro V710, Radeon Pro W7000 Series, Radeon Rx 7000 Series and 6 more 2026-04-15 N/A
Improper input validation in AMD Graphics Driver could allow a local attacker to write out of bounds, potentially resulting in loss of integrity or denial of service.
CVE-2021-46772 2026-04-15 3.9 Low
Insufficient input validation in the ABL may allow a privileged attacker with access to the BIOS menu or UEFI shell to tamper with the structure headers in SPI ROM causing an out of bounds memory read and write, potentially resulting in memory corruption or denial of service.
CVE-2024-21972 2026-04-15 5.3 Medium
An out of bounds write vulnerability in the AMD Radeon™ user mode driver for DirectX® 11 could allow an attacker with access to a malformed shader to potentially achieve arbitrary code execution.
CVE-2025-59730 1 Ffmpeg 1 Ffmpeg 2026-04-15 6.5 Medium
When decoding a frame for a SANM file (ANIM v0 variant), the decoded data can be larger than the buffer allocated for it. Frames encoded with codec 48 can specify their resolution (width x height). A buffer of appropriate size is allocated depending on the resolution. This codec can encode the frame contents using a run-length encoding algorithm. There are no checks that the decoded frame fits in the allocated buffer, leading to a heap-buffer-overflow. process_frame_obj initializes the buffers based on the frame resolution: We recommend upgrading to version 8.0 or beyond.
CVE-2025-12053 1 Insyde 1 Insydeh2o 2026-04-15 7.8 High
The drivers in the tool packages use RTL_QUERY_REGISTRY_DIRECT flag to read a registry value to which an untrusted user-mode application may be able to cause a buffer overflow.
CVE-2021-47781 1 Cmder 1 Cmder 2026-04-15 9.8 Critical
Cmder Console Emulator 1.3.18 contains a buffer overflow vulnerability that allows attackers to trigger a denial of service condition through a maliciously crafted .cmd file. Attackers can create a specially constructed .cmd file with repeated characters to overwhelm the console emulator's buffer and crash the application.
CVE-2025-12050 1 Insyde 1 Insydeh2o 2026-04-15 7.8 High
The drivers in the tool packages use RTL_QUERY_REGISTRY_DIRECT flag to read a registry value to which an untrusted user-mode application may be able to cause a buffer overflow.
CVE-2025-0234 2026-04-15 5.3 Medium
Out-of-bounds vulnerability in curve segmentation processing of Generic PCL6 V4 Printer Driver / Generic UFR II V4 Printer Driver / Generic LIPSLX V4 Printer Driver.
CVE-2023-5912 1 Lenovo 1 Notebook 2026-04-15 6.7 Medium
A potential memory leakage vulnerability was reported in some Lenovo Notebook products that may allow a local attacker with elevated privileges to write to NVRAM variables.
CVE-2023-47282 2026-04-15 3.9 Low
Out-of-bounds write in Intel(R) Media SDK all versions and some Intel(R) oneVPL software before version 23.3.5 may allow an authenticated user to potentially enable escalation of privilege via local access.
CVE-2025-12051 1 Insyde 1 Insydeh2o 2026-04-15 7.8 High
The drivers in the tool packages use RTL_QUERY_REGISTRY_DIRECT flag to read a registry value to which an untrusted user-mode application may be able to cause a buffer overflow.
CVE-2024-38665 2026-04-15 8.4 High
Out-of-bounds write in some Intel(R) Graphics Drivers may allow an authenticated user to potentially enable escalation of privilege via local access.
CVE-2025-0236 2026-04-15 5.3 Medium
Out-of-bounds vulnerability in slope processing during curve rendering in Generic PCL6 V4 Printer Driver / Generic UFR II V4 Printer Driver / Generic LIPSLX V4 Printer Driver.
CVE-2025-35971 2 Intel, Microsoft 4 Proset, Proset/wireless, Proset/wireless Software and 1 more 2026-04-15 8.2 High
Out-of-bounds write for some Intel(R) PROSet/Wireless WiFi Software for Windows before version 23.160 within Ring 2: Device Drivers may allow a denial of service. Unprivileged software adversary with an unauthenticated user combined with a low complexity attack may enable denial of service. This result may potentially occur via adjacent access when attack requirements are not present without special internal knowledge and requires no user interaction. The potential vulnerability may impact the confidentiality (none), integrity (low) and availability (high) of the vulnerable system, resulting in subsequent system confidentiality (none), integrity (none) and availability (high) impacts.