369 matches found
CVE-2024-46919
An issue was discovered in Samsung Mobile Processor Exynos 9820, 9825, 980, 990, 850, 1080, 2100, and 1280. Lack of a length check leads to a stack out-of-bounds write at loadOutputBuffers...
CVE-2024-46921
The CVE-2024-46921 issue affects Samsung Mobile Processor and Modem lines (Exynos 9820/9825/980/990/1080/2100/1280/2200/1330/1380/1480/2400/9110/W1000 and Modem 5123/5300/5400). The vulnerability is that the UE does not throttle the number of attempts for the 5G SA RRC Setup procedure, which can ...
CVE-2024-48883
An issue was discovered in Samsung Mobile Processor, Wearable Processor, and Modem Exynos 9820, 9825, 980, 990, 850, 1080, 2100, 1280, 2200, 1330, 1380, 1480, 2400, 9110, W920, W930, W1000, Modem 5123, and Modem 5300. The UE incorrectly handles a malformed uplink scheduling message, resulting in ...
CVE-2024-46920
The CVE-2024-46920 issue affects Samsung Mobile Processor Exynos 9820, 9825, 980, 990, 850, 1080, 2100, and 1280. Root cause: a missing length check causes a stack out-of-bounds write at loadInputBuffers. This has been consistently reported across multiple feeds (NVD/Red Hat/CNNVD) with no explic...
CVE-2024-39890
An issue was discovered in Samsung Mobile Processor, Wearable Processor, and Modem Exynos 9820, 9825, 980, 990, 850, 1080, 2100, 1280, 2200, 1330, 1380, 1480, 2400, 9110, W920, W930, W1000, Modem 5123, Modem 5300. The baseband software does not properly check the length specified by the CC Call...
SAMSUNG Mobile Processor 安全漏洞
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor, which results in a denial of service due to the baseband software not properly checking the length specified by the MM module...
Samsung Mobile Processor 安全漏洞
SAMSUNG Mobile Processor is a family of mobile processors from the South Korean company Samsung SAMSUNG. A security vulnerability exists in Samsung Mobile Processor that originates from the baseband software not properly checking the length of the CC designation, which can lead to out-of-bounds...
CVE-2024-45185
An issue was discovered in Samsung Mobile Processor, Wearable Processor, and Modem Exynos 9820, 9825, 980, 990, 850, 1080, 2100, 1280, 2200, 1330, 1380, 1480, 2400, 9110, W920, W930, Modem 5123, Modem 5300. There is an out-of-bounds write due to a heap overflow in the GPRS protocol...
CVE-2024-45185
CVE-2024-45185 affects Samsung Exynos family: Samsung Mobile Processor, Wearable Processor, and Modem Exynos devices. Root cause is a heap overflow in the GPRS protocol leading to an out-of-bounds write. Affected versions include Samsung Mobile Processor, Wearable Processor, and Modem Exynos vers...
CVE-2024-31960
An issue was discovered in Samsung Mobile Processor Exynos 1480, Exynos 2400. The xclipse amdgpu driver has a reference count bug. This can lead to a use after free...
SAMSUNG Mobile Processor 安全漏洞
SAMSUNG Mobile Processor is a family of mobile processors from the South Korean company Samsung SAMSUNG. A security vulnerability exists in SAMSUNG Mobile Processor, which originates from a reference counting error in the xclipse amdgpu driver, resulting in memory reuse after release...
CVE-2024-27366
An issue was discovered in Samsung Mobile Processor, Wearable Processor Exynos Exynos 980, Exynos 850, Exynos 1080, Exynos 1280, Exynos 1380, Exynos 1330, Exynos 1480, Exynos W920, Exynos W930. In the function slsirxscandoneind, there is no input validation check on a length coming from userspace...
SAMSUNG Mobile Processor和SAMSUNG Wearable Processor 安全漏洞
SAMSUNG Mobile Processor and SAMSUNG Wearable Processor are both products of the South Korean company Samsung.SAMSUNG Mobile Processor is a series of mobile processors.SAMSUNG Wearable Processor is a series of wearable processors. SAMSUNG Mobile Processor is a series of mobile processors. A...
SAMSUNG Mobile Processor多款产品 安全漏洞
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in various SAMSUNG Mobile Processor products, which stems from a lack of input validation checking for a length from user space in the function slsirxscanind, which could lead to an...
SAMSUNG Mobile Processor 安全漏洞
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor, which stems from the function slsirxrangedoneind not performing an input validation check on rttid from userspace, resulting in a heap overwrite. The...
CVE-2024-27368
An issue was discovered in Samsung Mobile Processor Exynos Mobile Processor, Wearable Processor Exynos 980, Exynos 850, Exynos 1080, Exynos 1280, Exynos 1380, Exynos 1330, Exynos 1480, Exynos W920, Exynos W930. In the function slsirxreceivedframeind, there is no input validation check on a length...
SAMSUNG Mobile Processor 安全漏洞
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor, which stems from a heap overwrite in the function slsigetscanextraies that does not perform an input validation check on defaulties from userspace. The...
SAMSUNG Mobile Processor和SAMSUNG Wearable Processor 安全漏洞
SAMSUNG Mobile Processor and SAMSUNG Wearable Processor are both products of the South Korean company Samsung.SAMSUNG Mobile Processor is a series of mobile processors.SAMSUNG Wearable Processor is a series of wearable processors. SAMSUNG Mobile Processor is a series of mobile processors. A...
SAMSUNG Mobile Processor多款产品 安全漏洞
SAMSUNG Mobile Processor is a family of mobile processors from Samsung, South Korea. A security vulnerability exists in various SAMSUNG Mobile Processor products, which stems from a lack of input validation checking for a length from user space in the function slsirxblockackind, which could lead ...
CVE-2024-27385
A vulnerability was discovered in the slsihandlenanrxeventlogind function in Samsung Mobile Processor Exynos 1380 and Exynos 1480 related to no input validation check on taglen for rx coming from userspace, which can lead to heap overwrite...