2043 matches found
CVE-2019-20540
CVE-2019-20540 affects Samsung mobile devices running N(7.x), O(8.x), and P(9.0) Exynos software. The issue is a buffer over-read in the core touch screen driver that can lead to a possible information leak. Connected sources corroborate the same description; no explicit patch/version details or ...
CVE-2019-20540
An issue was discovered on Samsung mobile devices with N7.x, O8.x, and P9.0 Exynos chipsets software. There is a buffer over-read and possible information leak in the core touch screen driver. The Samsung ID is SVE-2019-14942 November 2019...
CVE-2019-20531
CVE-2019-20531 affects Samsung mobile devices running Android P (9.0) on Exynos chipsets, with a vulnerability in the Wi‑Fi kernel drivers that permits an out-of-bounds read. Related Samsung identifiers: SVE-2019-15692, SVE-2019-15693. CVSS data indicate a High impact on confidentiality and avail...
CVE-2019-20531
An issue was discovered on Samsung mobile devices with P9.0 Exynos chipsets software. The Wi-Fi kernel drivers have an out-of-bounds Read. The Samsung IDs are SVE-2019-15692, SVE-2019-15693 December 2019...
CVE-2020-10850
An issue was discovered on Samsung mobile devices with O8.x, P9.0, and Q10.0 Exynos chipsets software. The secure bootloade has a buffer overflow of the USB buffer, leading to arbitrary code execution. The Samsung ID is SVE-2019-15872 January 2020...
CVE-2020-10850
The CVE-2020-10850 entry describes a buffer overflow in the secure bootloader USB path on Samsung mobile devices with Exynos SoCs (Android O[8.x], P[9.0], Q[10.0]), enabling arbitrary code execution. The issue is tied to the secure bootloader’s handling of USB buffers (root cause: buffer overflow...
CVE-2020-10848
An issue was discovered on Samsung mobile devices with O8.x, P9.0, and Q10.0 Exynos 9810 chipsets software. Arbitrary memory mapping exists in TEE. The Samsung ID is SVE-2019-16665 February 2020...
CVE-2020-10848
CVE-2020-10848 affects Samsung mobile devices running O(8.x), P(9.0) and Q(10.0) with Exynos 9810; the issue is an arbitrary memory mapping in the TrustZone/T EE. Root cause: memory mapping flaw in TEE. Impact per CVSS: HIGH across confidentiality, integrity, and availability. Affected Samsung de...
CVE-2020-10841
CVE-2020-10841 affects Samsung mobile devices with P(9.0)/Q(10.0) on Exynos 9610; root cause is an arbitrary kfree in the vipx and vertex drivers. Red Hat/NVD entries corroborate a kernel-free issue with potential high impact (CVE notes partial/confidentiality/availability risks, CVSSv3.1 base 7....
CVE-2020-10841
An issue was discovered on Samsung mobile devices with P9.0 and Q10.0 Exynos 9610 chipsets software. There is an arbitrary kfree in the vipx and vertex drivers. The Samsung ID is SVE-2019-16294 February 2020...
CVE-2020-10840
Summary: CVE-2020-10840 describes a kernel pointer leak in the vipx driver affecting Samsung mobile devices with Exynos 9610 (P9.0 and Q10.0). The Samsung internal ID is SVE-2019-16293 (February 2020). The Red Hat entry reiterates the same description. What is affected: Samsung mobile devices wit...
CVE-2020-10840
An issue was discovered on Samsung mobile devices with P9.0 and Q10.0 Exynos 9610 chipsets software. There is a kernel pointer leak in the vipx driver. The Samsung ID is SVE-2019-16293 February 2020...
CVE-2020-10836
CVE-2020-10836 affects Samsung mobile devices with Exynos (O(8.x), P(9.0), Q(10.0)). The Widevine Trustlet permits read/write access to arbitrary memory, indicating a memory-safety/Trustlet isolation flaw. CVSSv3.1 base score 9.8 (CRITICAL); access is network-based with no authentication required...
CVE-2020-10835
An issue was discovered on Samsung mobile devices with any before February 2020 for Exynos modem chipsets software. There is a buffer overflow in baseband CP message decoding. The Samsung IDs are SVE-2019-15816 and SVE-2019-15817 February 2020...
CVE-2020-10832
An issue was discovered on Samsung mobile devices with P9.0 Exynos chipsets software. Kernel Wi-Fi drivers allow out-of-bounds Read or Write operations e.g., a buffer overflow. The Samsung IDs are SVE-2019-16125, SVE-2019-16134, SVE-2019-16158, SVE-2019-16159, SVE-2019-16319, SVE-2019-16320,...
CVE-2020-10832
The CVE-2020-10832 entry describes a vulnerability in Samsung mobile devices with P(9.0) Exynos chipsets where Kernel Wi-Fi drivers allow out-of-bounds Read/Write operations (buffer overflow). This affects the kernel Wi-Fi subsystem and is tied to several Samsung internal IDs (SVE-2019-16125, 161...
CVE-2020-8860
This vulnerability allows remote attackers to execute arbitrary code on affected installations of Samsung Galaxy S10 Firmware G973FXXS3ASJA, O8.x, P9.0, Q10.0 devices with Exynos chipsets. User interaction is required to exploit this vulnerability in that the target must answer a phone call. The...
Stack overflow
This vulnerability allows remote attackers to execute arbitrary code on affected installations of Samsung Galaxy S10 Firmware G973FXXS3ASJA, O8.x, P9.0, Q10.0 devices with Exynos chipsets. User interaction is required to exploit this vulnerability in that the target must answer a phone call. The...
CVE-2020-8860
This vulnerability allows remote attackers to execute arbitrary code on affected installations of Samsung Galaxy S10 Firmware G973FXXS3ASJA, O8.x, P9.0, Q10.0 devices with Exynos chipsets. User interaction is required to exploit this vulnerability in that the target must answer a phone call. The...
CVE-2020-8860
This vulnerability allows remote attackers to execute arbitrary code on affected installations of Samsung Galaxy S10 Firmware G973FXXS3ASJA, O8.x, P9.0, Q10.0 devices with Exynos chipsets. User interaction is required to exploit this vulnerability in that the target must answer a phone call. The...