16237 matches found
CVE-2022-40512
CVE-2022-40512 describes a transient DoS in WLAN firmware caused by a buffer over-read while processing probe responses or beacons. The vulnerability affects Qualcomm WLAN firmware/module (closed-source components) and is characterized by network-based exposure with no user interaction. The CVSS ...
CVE-2022-34145
CVE-2022-34145: Transient Denial of Service caused by a buffer over-read in the WLAN Host when parsing frame information on Qualcomm WLAN hardware. The issue is exploitable over the network without user interaction or privileges; impact is Availability (high) with no confidentiality/integrity imp...
CVE-2022-34145 Buffer over-read in WLAN Host
Transient DOS due to buffer over-read in WLAN Host while parsing frame information...
CVE-2022-34145 Buffer over-read in WLAN Host
Transient DOS due to buffer over-read in WLAN Host while parsing frame information...
CVE-2022-33306 Buffer over-read in WLAN
Transient DOS due to buffer over-read in WLAN while processing an incoming management frame with incorrectly filled IEs...
CVE-2022-33306
CVE-2022-33306 affects the WLAN/IEEE processing path in Qualcomm chipsets, where a transient DoS arises from a buffer over-read while handling an incoming management frame with incorrectly filled IEs. Public references consolidate this as a buffer-over-read in WLAN leading to Denial of Service. E...
CVE-2022-33271
CVE-2022-33271 describes an information disclosure caused by a buffer over-read in WLAN when parsing NMF frames. The vulnerability is associated with Qualcomm’s WLAN/NMF handling; the available sources in the provided documents do not specify affected product versions, exact user impact, or remed...
CVE-2022-33271 Buffer over-read in WLAN
Information disclosure due to buffer over-read in WLAN while parsing NMF frame...
CVE-2022-33271 Buffer over-read in WLAN
Information disclosure due to buffer over-read in WLAN while parsing NMF frame...
CVE-2022-33229 Buffer over-read in Modem
Information disclosure due to buffer over-read in Modem while using static array to process IPv4 packets...
CVE-2022-33229
CVE-2022-33229 describes an information disclosure due to a buffer over-read in the Modem when processing IPv4 packets using a static array. Affected software/hardware: Modem, tied to Qualcomm chipsets. Root cause: buffer over-read in the Modem’s IPv4 packet handling. Impact: confidentiality expo...
CVE-2022-33229 Buffer over-read in Modem
Information disclosure due to buffer over-read in Modem while using static array to process IPv4 packets...
CVE-2022-33221
CVE-2022-33221 describes an information disclosure via a buffer over-read in the Trusted Execution Environment when processing metadata verification requests. Multiple connected sources attribute the issue to Qualcomm closed-source components/T EE; impact is confidentiality loss with potential lo...
CVE-2022-33221 Buffer over-read in Trusted Execution Environment
Information disclosure in Trusted Execution Environment due to buffer over-read while processing metadata verification requests...
CVE-2022-25738 Buffer Over-read in MODEM
Information disclosure in modem due to buffer over-red while performing checksum of packet received...
CVE-2022-25732 Buffer Over-read in MODEM
Information disclosure in modem due to buffer over read in dns client due to missing length check...
CVE-2022-25732 Buffer Over-read in MODEM
Information disclosure in modem due to buffer over read in dns client due to missing length check...
CVE-2022-25728 Buffer Over-read in MODEM
Information disclosure in modem due to buffer over-read while processing response from DNS server...
CVE-2022-25728 Buffer Over-read in MODEM
Information disclosure in modem due to buffer over-read while processing response from DNS server...
CVE-2022-25728
CVE-2022-25728 describes an information disclosure in the modem component caused by a buffer over-read while processing a DNS server response. The issue affects the modem’s handling of DNS responses and is categorized with high impact on confidentiality (per CVSS notes). Exploit details, affected...