2599 matches found
CVE-2015-7890
Multiple buffer overflows in the esawrite function in /dev/seirenin the Exynos Seiren Audio driver, as used in Samsung S6 Edge, allow local users to cause a denial of service memory corruption via a large 1 buffer or 2 size parameter...
Buffer overflow
Multiple buffer overflows in the esawrite function in /dev/seirenin the Exynos Seiren Audio driver, as used in Samsung S6 Edge, allow local users to cause a denial of service memory corruption via a large 1 buffer or 2 size parameter...
CVE-2015-7890
Multiple buffer overflows in the esawrite function in /dev/seirenin the Exynos Seiren Audio driver, as used in Samsung S6 Edge, allow local users to cause a denial of service memory corruption via a large 1 buffer or 2 size parameter...
CVE-2015-7890
CVE-2015-7890 affects the Exynos Seiren Audio driver (esignated /dev/seiren) on Samsung Galaxy S6 Edge. The vulnerability is described as multiple buffer overflows in the esa_write function, leading to local memory corruption and potential denial of service; Project Zero notes it can enable kerne...
PT-2020-7898
Name of the Vulnerable Software and Affected Versions: Exynos Seiren Audio driver affected versions not specified Description: The issue concerns multiple buffer overflows in the esa write function, located in /dev/seiren, which is part of the Exynos Seiren Audio driver used in devices such as th...
CVE-2015-7890: Buffer Copy without Checking Size of Input
Multiple buffer overflows in the esawrite function in /dev/seirenin the Exynos Seiren Audio driver, as used in Samsung S6 Edge, allow local users to cause a denial of service memory corruption via a large 1 buffer or 2 size parameter...
CVE-2019-19273
On Samsung mobile devices with O8.0 and P9.0 software and an Exynos 8895 chipset, RKP aka the Samsung Hypervisor EL2 implementation allows arbitrary memory write operations. The Samsung ID is SVE-2019-16265...
CVE-2019-19273
On Samsung mobile devices with O8.0 and P9.0 software and an Exynos 8895 chipset, RKP aka the Samsung Hypervisor EL2 implementation allows arbitrary memory write operations. The Samsung ID is SVE-2019-16265...
Code injection
On Samsung mobile devices with O8.0 and P9.0 software and an Exynos 8895 chipset, RKP aka the Samsung Hypervisor EL2 implementation allows arbitrary memory write operations. The Samsung ID is SVE-2019-16265...
CVE-2019-19273
On Samsung mobile devices with O8.0 and P9.0 software and an Exynos 8895 chipset, RKP aka the Samsung Hypervisor EL2 implementation allows arbitrary memory write operations. The Samsung ID is SVE-2019-16265...
CVE-2019-19273
The CVE-2019-19273 entry concerns Samsung devices with O(8.0)/P(9.0) and Exynos 8895 where RKP (Samsung Hypervisor EL2) permits arbitrary memory write operations. The affected component is the Samsung Hypervisor EL2 implementation (RKP) running on vulnerable Exynos-based Android variants. Underly...
PT-2020-10118
Name of the Vulnerable Software and Affected Versions Samsung mobile devices with O8.0 and P9.0 software and an Exynos 8895 chipset Description The issue allows arbitrary memory write operations due to a problem in RKP, also known as the Samsung Hypervisor EL2 implementation. Recommendations For...
CVE-2019-19273: Out-of-bounds Write
On Samsung mobile devices with O8.0 and P9.0 software and an Exynos 8895 chipset, RKP aka the Samsung Hypervisor EL2 implementation allows arbitrary memory write operations. The Samsung ID is SVE-2019-16265...
CVE-2019-16400
Samsung Galaxy S8 plus Android version: 8.0.0, Build Number: R16NW.G955USQU5CRG3, Baseband Vendor: Qualcomm Snapdragon 835, Baseband: G955USQU5CRG3, Samsung Galaxy S3 Android version: 4.3, Build Number: JSS15J.I9300XXUGND5, Baseband Vendor: Samsung Exynos 4412, Baseband: I9300XXUGNA8, and Samsung...
Google Patches 11 Critical RCE Android Vulnerabilities
Remote code-execution RCE vulnerabilities dominated Google’s December Android Security Bulletin. The flaws are part of a total of 53 unique bugs patched by the Android security team, with a total number of 11 critical bugs – six of which are RCE flaws tied to the operating system’s Media Framewor...
The vulnerability of the Trustlet component of Samsung’s microsoftware and Exynos chips allows a hacker to execute arbitrary code within the Trusted Execution Environment (TEE) and gain access to protected information.
The vulnerability of the Trustlet microprogramming system in Samsung Mobile devices and Exynos chips is related to buffer overflow attacks on the stack. Exploiting this vulnerability allows a remote attacker to execute arbitrary code in the TEE Trusted Execution Environment and gain access to...
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...
Code injection
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
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-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...