369 matches found
CVE-2024-27363
A vulnerability was discovered in Samsung Mobile Processor Exynos 850, Exynos 9610, Exynos 980, Exynos 1280, Exynos 1380, Exynos 1330, Exynos W920, and Exynos W930 where it does not properly check a pointer address, which can lead to a Information disclosure...
SAMSUNG Mobile Processor, Wearable Processor and Modems Security Vulnerability
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...
CVE-2024-27363
VULNERABILITY SUMMARY: Samsung Mobile Processor Exynos 850, 9610, 980, 1280, 1380, 1330, W920, and W930 have a flaw where a pointer address is not properly checked, which can allow information disclosure. Root cause: improper pointer validation. Impact: information disclosure (no broader impact o...
SAMSUNG Mobile Processor Security Vulnerability
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor that stems from a lack of input validation checks that could result in a heap overwrite...
SAMSUNG Mobile Processor Security Vulnerability
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 stems from the presence of a competitive condition that could lead to a denial of service...
SAMSUNG Mobile Processor and Wearable Processor Security Vulnerability
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 Security Vulnerability
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor that stems from not properly checking the length of data, which could result in a denial of service...
PT-2024-21849 · Samsung · Samsung Mobile Processor Exynos
Name of the Vulnerable Software and Affected Versions: Samsung Mobile Processor Exynos versions 980 through 2400 Description: A time-of-check to time-of-use TOCTOU race condition was discovered, which can lead to a Denial of Service. This issue affects various Samsung Mobile Processor Exynos...
SAMSUNG Mobile Processor and Wearable Processor Security Vulnerability
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 Security Vulnerability
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 lack of validation checks on local handles, and could lead to a denial-of-service attack by unmapping invalid lengths...
PT-2024-22249 · Samsung · Exynos 9820 +6
Name of the Vulnerable Software and Affected Versions: Samsung Mobile Processor, Wearable Processor, and Modems versions Exynos 9820 through Exynos 2400 Samsung Mobile Processor, Wearable Processor, and Modems versions Exynos 9110, Exynos W920, Exynos W930 Samsung Mobile Processor, Wearable...
SAMSUNG Mobile Processor Security Vulnerability
SAMSUNG Mobile Processor is a series of mobile processors from the South Korean company Samsung SAMSUNG. A security vulnerability exists in SAMSUNG Mobile Processor that stems from not properly checking the length of data, which could lead to information disclosure...
SAMSUNG Mobile Processor Security Vulnerability
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor that stems from a lack of input validation checks that could lead to a heap overwrite...
SAMSUNG Mobile Processor, Wearable Processor and Modems Security Vulnerability
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 Security Vulnerability
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor that stems from a lack of proper length checking, which could result in out-of-bounds writes...
SAMSUNG Mobile Processor Security Vulnerability
SAMSUNG Mobile Processor is a family of mobile processors from Samsung South Korea. A security vulnerability exists in SAMSUNG Mobile Processor that stems from a lack of proper buffer length checking, which could result in out-of-bounds writes...
CVE-2024-32503
An issue was discovered in Samsung Mobile Processor and Wearable Processor Exynos 850, Exynos 1080, Exynos 2100, Exynos 1280, Exynos 1380, Exynos 1330, Exynos W920, Exynos W930. The mobile processor lacks proper memory deallocation checking, which can result in a UAF Use-After-Free vulnerability...
Samsung Mobile Processor Security Vulnerability
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 stems from a lack of proper memory release checking, which could lead to a post-release reuse vulnerability...
PT-2024-24319 · Samsung · Exynos
Name of the Vulnerable Software and Affected Versions: Samsung Mobile Processor Exynos versions 2200, 1480, 2400 Description: An issue was discovered in Samsung Mobile Processor Exynos, which lacks a check for the validation of native handles. This can result in an Out-of-Bounds Write...