Filtered by vendor Samsung Subscriptions
Filtered by product Exynos 980 Subscriptions
Total 59 CVE
CVE Vendors Products Updated CVSS v3.1
CVE-2023-26498 1 Samsung 10 Exynos 1080, Exynos 1080 Firmware, Exynos 980 and 7 more 2023-03-24 9.8 Critical
An issue was discovered in Samsung Baseband Modem Chipset for Exynos Modem 5123, Exynos Modem 5300, Exynos 980, Exynos 1080, Exynos Auto T5126. Memory corruption can occur due to improper checking of the number of properties while parsing the chatroom attribute in the SDP (Session Description Protocol) module.
CVE-2023-26496 1 Samsung 10 Exynos 1080, Exynos 1080 Firmware, Exynos 980 and 7 more 2023-03-24 9.8 Critical
An issue was discovered in Samsung Baseband Modem Chipset for Exynos Modem 5123, Exynos Modem 5300, Exynos 980, Exynos 1080, and Exynos Auto T5124. Memory corruption can occur due to improper checking of the parameter length while parsing the fmtp attribute in the SDP (Session Description Protocol) module.
CVE-2023-26075 1 Samsung 18 Exynos 1080, Exynos 1080 Firmware, Exynos 1280 and 15 more 2023-03-17 9.8 Critical
An issue was discovered in Samsung Mobile Chipset and Baseband Modem Chipset for Exynos 850, Exynos 980, Exynos 1080, Exynos 1280, Exynos 2200, Exynos Modem 5123, Exynos Modem 5300, and Exynos Auto T5123. An intra-object overflow in the 5G MM message codec can occur due to insufficient parameter validation when decoding the Service Area List.
CVE-2023-26074 1 Samsung 18 Exynos 1080, Exynos 1080 Firmware, Exynos 1280 and 15 more 2023-03-17 9.8 Critical
An issue was discovered in Samsung Mobile Chipset and Baseband Modem Chipset for Exynos 850, Exynos 980, Exynos 1080, Exynos 1280, Exynos 2200, Exynos Modem 5123, Exynos Modem 5300, and Exynos Auto T5123.. A heap-based buffer overflow in the 5G MM message codec can occur due to insufficient parameter validation when decoding operator-defined access category definitions.
CVE-2023-26073 1 Samsung 18 Exynos 1080, Exynos 1080 Firmware, Exynos 1280 and 15 more 2023-03-17 9.8 Critical
An issue was discovered in Samsung Mobile Chipset and Baseband Modem Chipset for Exynos 850, Exynos 980, Exynos 1080, Exynos 1280, Exynos 2200, Exynos Modem 5123, Exynos Modem 5300, and Exynos Auto T5123. A heap-based buffer overflow in the 5G MM message codec can occur due to insufficient parameter validation when decoding the extended emergency number list.
CVE-2023-26072 1 Samsung 18 Exynos 1080, Exynos 1080 Firmware, Exynos 1280 and 15 more 2023-03-17 9.8 Critical
An issue was discovered in Samsung Mobile Chipset and Baseband Modem Chipset for Exynos 850, Exynos 980, Exynos 1080, Exynos 1280, Exynos 2200, Exynos Modem 5123, Exynos Modem 5300, and Exynos Auto T5123. A heap-based buffer overflow in the 5G MM message codec can occur due to insufficient parameter validation when decoding the Emergency number list.
CVE-2021-25500 2 Google, Samsung 5 Android, Exynos 2100, Exynos 980 and 2 more 2022-08-01 4.4 Medium
A missing input validation in HDCP LDFW prior to SMR Nov-2021 Release 1 allows attackers to overwrite TZASC allowing TEE compromise.
CVE-2022-27834 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2022-04-18 7.0 High
Use after free vulnerability in dsp_context_unload_graph function of DSP driver prior to SMR Apr-2022 Release 1 allows attackers to perform malicious actions.
CVE-2022-27833 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2022-04-18 7.8 High
Improper input validation in DSP driver prior to SMR Apr-2022 Release 1 allows out-of-bounds write by integer overflow.
CVE-2021-25467 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2021-10-14 6.7 Medium
Assuming system privilege is gained, possible buffer overflow vulnerabilities in the Vision DSP kernel driver prior to SMR Oct-2021 Release 1 allows privilege escalation to Root by hijacking loaded library.
CVE-2021-25475 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2021-10-13 6.7 Medium
A possible heap-based buffer overflow vulnerability in DSP kernel driver prior to SMR Oct-2021 Release 1 allows arbitrary memory write and code execution.
CVE-2021-25452 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2021-09-23 5.5 Medium
An improper input validation vulnerability in loading graph file in DSP driver prior to SMR Sep-2021 Release 1 allows attackers to perform permanent denial of service on the device.
CVE-2021-25457 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2021-09-22 3.3 Low
An improper input validation vulnerability in DSP driver prior to SMR Sep-2021 Release 1 allows local attackers to get a limited kernel memory information.
CVE-2021-25407 2 Google, Samsung 5 Android, Exynos 2100, Exynos 980 and 2 more 2021-09-21 7.8 High
A possible out of bounds write vulnerability in NPU driver prior to SMR JUN-2021 Release 1 allows arbitrary memory write.
CVE-2021-25408 2 Google, Samsung 5 Android, Exynos 2100, Exynos 980 and 2 more 2021-06-16 7.8 High
A possible buffer overflow vulnerability in NPU driver prior to SMR JUN-2021 Release 1 allows arbitrary memory write and code execution.
CVE-2021-25396 2 Google, Samsung 5 Android, Exynos 2100, Exynos 980 and 2 more 2021-06-16 6.7 Medium
An improper input validation vulnerability in NPU firmware prior to SMR MAY-2021 Release 1 allows arbitrary memory write and code execution.
CVE-2021-25371 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2021-04-01 6.7 Medium
A vulnerability in DSP driver prior to SMR Mar-2021 Release 1 allows attackers load arbitrary ELF libraries inside DSP.
CVE-2021-25372 2 Google, Samsung 4 Android, Exynos 2100, Exynos 980 and 1 more 2021-04-01 6.7 Medium
An improper boundary check in DSP driver prior to SMR Mar-2021 Release 1 allows out of bounds memory access.
CVE-2020-28343 2 Google, Samsung 4 Android, Exynos 980, Exynos 9820 and 1 more 2020-11-10 7.8 High
An issue was discovered on Samsung mobile devices with P(9.0) and Q(10.0) (Exynos 980, 9820, and 9830 chipsets) software. The NPU driver allows attackers to execute arbitrary code because of unintended write and read operations on memory. The Samsung ID is SVE-2020-18610 (November 2020).