2599 matches found
CVE-2017-18020
On Samsung mobile devices with L5.x, M6.x, and N7.x software and Exynos chipsets, attackers can execute arbitrary code in the bootloader because S Boot omits a size check during a copy of ramfs data to memory. The Samsung ID is SVE-2017-10598...
Stack overflow
On Samsung mobile devices with N7.x software and Exynos chipsets, attackers can conduct a Trustlet stack overflow attack for arbitrary TEE code execution, in conjunction with a brute-force attack to discover unlock information PIN, password, or pattern. The Samsung ID is SVE-2017-10733...
CVE-2017-18020
On Samsung mobile devices with L5.x, M6.x, and N7.x software and Exynos chipsets, attackers can execute arbitrary code in the bootloader because S Boot omits a size check during a copy of ramfs data to memory. The Samsung ID is SVE-2017-10598...
CVE-2017-18020
CVE-2017-18020 affects Samsung mobile devices running Android L/M/N on Exynos SoCs. The flaw is in S Boot, which omits a size check when copying ramfs data to memory, enabling local arbitrary code execution in the bootloader. Impact is high (boot-time compromise) per NVD entries (CVSS v2/v3). A S...
CVE-2018-5210
On Samsung mobile devices with N7.x software and Exynos chipsets, attackers can conduct a Trustlet stack overflow attack for arbitrary TEE code execution, in conjunction with a brute-force attack to discover unlock information PIN, password, or pattern. The Samsung ID is SVE-2017-10733...
PT-2018-1070
Name of the Vulnerable Software and Affected Versions Samsung Mobile devices with N7.x software and Exynos chipsets Description The issue is related to a stack buffer overflow in the Trustlet component of Samsung Mobile microprogram software and Exynos chipsets. This can be exploited by a remote...
Samsung Mobile Device Buffer Overflow Vulnerability
Samsung mobile devices are smart mobile devices manufactured by Samsung in South Korea.Android L, M, and N are a set of different versions of the Linux-based open source operating system developed by Google and the Open Handset Alliance OHA.Exynos Exynos chipsets are processors designed and...
Samsung Mobile Device Arbitrary Code Execution Vulnerability
Samsung mobile devices are smart mobile devices manufactured by Samsung in South Korea.Android L, M, and N are a set of different versions of the Linux-based open source operating system developed by Google and the Open Handset Alliance OHA.Exynos Exynos chipsets are processors designed and...
CVE-2018-5210: Out-of-bounds Write
On Samsung mobile devices with N7.x software and Exynos chipsets, attackers can conduct a Trustlet stack overflow attack for arbitrary TEE code execution, in conjunction with a brute-force attack to discover unlock information PIN, password, or pattern. The Samsung ID is SVE-2017-10733...
CVE-2017-18020: Improper Input Validation
On Samsung mobile devices with L5.x, M6.x, and N7.x software and Exynos chipsets, attackers can execute arbitrary code in the bootloader because S Boot omits a size check during a copy of ramfs data to memory. The Samsung ID is SVE-2017-10598...
The vulnerability of the fimg2d driver for the Samsung Exynos 7420 Android operating system, which allows a hacker to compromise data confidentiality, integrity, and accessibility.
The vulnerability of the fimg2d driver for the Samsung Exynos 7420 Android operating system is related to pointer assignment errors. Exploiting this vulnerability allows a remote attacker to compromise data confidentiality, integrity, and accessibility...
Security update for the Linux Kernel (important)
The openSUSE Leap 42.2 kernel was updated to 4.4.92 to receive various security and bugfixes. The following security bugs were fixed: - CVE-2017-13080: Wi-Fi Protected Access WPA and WPA2 allowed reinstallation of the Group Temporal Key GTK during the group key handshake, allowing an attacker...
CVE-2017-5538
The kbasedispatch function in arm/t7xx/r5p0/malikbasecorelinux.c in the GPU driver on Samsung devices with M6.0 and N7.0 software and Exynos AP chipsets allows attackers to have unspecified impact via unknown vectors, which trigger an out-of-bounds read, aka SVE-2016-6362...
Out-of-bounds
The kbasedispatch function in arm/t7xx/r5p0/malikbasecorelinux.c in the GPU driver on Samsung devices with M6.0 and N7.0 software and Exynos AP chipsets allows attackers to have unspecified impact via unknown vectors, which trigger an out-of-bounds read, aka SVE-2016-6362...
CVE-2017-5538
The kbasedispatch function in arm/t7xx/r5p0/malikbasecorelinux.c in the GPU driver on Samsung devices with M6.0 and N7.0 software and Exynos AP chipsets allows attackers to have unspecified impact via unknown vectors, which trigger an out-of-bounds read, aka SVE-2016-6362...
CVE-2017-5538
The kbasedispatch function in arm/t7xx/r5p0/malikbasecorelinux.c in the GPU driver on Samsung devices with M6.0 and N7.0 software and Exynos AP chipsets allows attackers to have unspecified impact via unknown vectors, which trigger an out-of-bounds read, aka SVE-2016-6362...
CVE-2017-5538
CVE-2017-5538 affects Samsung devices running M(6.0)/N(7.0) with Exynos AP; vulnerable component is the GPU driver Mali kernel code (kbase_dispatch in arm/t7xx/r5p0/mali_kbase_core_linux.c). The issue is an out-of-bounds read triggered via unknown vectors, with unspecified impact. Exploitation de...
PT-2017-1610
Name of the Vulnerable Software and Affected Versions Samsung Mobile GPU driver versions with M6.0 and N7.0 software and Exynos AP chipsets Description The issue is related to an out-of-bounds read in the kbase dispatch function, located in the arm/t7xx/r5p0/mali kbase core linux.c file of the GP...
CVE-2017-5538: Out-of-bounds Read
The kbasedispatch function in arm/t7xx/r5p0/malikbasecorelinux.c in the GPU driver on Samsung devices with M6.0 and N7.0 software and Exynos AP chipsets allows attackers to have unspecified impact via unknown vectors, which trigger an out-of-bounds read, aka SVE-2016-6362...
Samsung Exynos fimg2d driver for Android NULL pointer reference denial of service vulnerability
Samsung Exynos fimg2d driver for Android is a graphics device driver for Exynos chipset based on Android platform from Samsung, Korea. A security vulnerability exists in the Samsung Exynos fimg2d driver for Samsung phones using Android L 5.0/5.1 and M 6.0 versions. An attacker can exploit the...