9945 matches found
kernel: net: qcom/emac: race condition leading to use-after-free in emac_remove()
A race condition vulnerability was found in the Linux kernel's Qualcomm EMAC Gigabit Ethernet Controller when the user physically removes the device before cleanup in the emacremove function. This flaw can eventually result in a use-after-free issue, possibly leading to a system crash or other...
The vulnerability of embedded Qualcomm microprogramming software, related to reading data outside the buffer in memory, allows a hacker to execute arbitrary code.
The vulnerability of embedded Qualcomm software relates to reading data beyond the buffer in memory. Exploiting this vulnerability can allow a remote attacker to execute arbitrary code...
kernel: net: qcom/emac: race condition leading to use-after-free in emac_remove()
A race condition vulnerability was found in the Linux kernel's Qualcomm EMAC Gigabit Ethernet Controller when the user physically removes the device before cleanup in the emacremove function. This flaw can eventually result in a use-after-free issue, possibly leading to a system crash or other...
Qualcomm WLAN October 2023 Security Update
Potential vulnerabilities were identified in the Qualcomm WLAN Driver for certain HP PC products, which might allow arbitrary code execution or information disclosure. Qualcomm has released updates to mitigate the potential vulnerabilities. HP has identified affected platforms and corresponding...
The vulnerabilities of microprogramming software in AMD, Qualcomm, and Imagination allow attackers to extract data from the local memory of GPUs.
The vulnerabilities of microprogramming software for AMD, Qualcomm, and Imagination relate to insufficient isolation of the GPU’s local memory, as well as the lack of cleanup after processes are executed on the GPU. Exploiting these vulnerabilities can allow attackers to extract data from the GPU...
A Flaw in Millions of Apple, AMD, and Qualcomm GPUs Could Expose AI Data
Patching every device affected by the LeftoverLocals vulnerability—which includes some iPhones, iPads, and Macs—may prove difficult...
GPU kernel implementations susceptible to memory leak
Overview General-purpose graphics processing unit GPGPU platforms from AMD, Apple, and Qualcomm fail to adequately isolate process memory, thereby enabling a local attacker to read memory from other processes. An attacker with access to GPU capabilities using a vulnerable GPU's programmable...
PT-2024-1106
Name of the Vulnerable Software and Affected Versions GPU vendors and host devices affected, including Apple, AMD, Qualcomm, and Imagination GPUs. Specific affected versions are not specified, but it is mentioned that the issue affects various architectures and devices, including some iPhone, iPa...
Synology RT6600ax Qualcomm LDB Service Improper Input Validation Remote Code Execution Vulnerability
This vulnerability allows network-adjacent attackers to execute arbitrary code on affected installations of Synology RT6600ax routers. Authentication is not required to exploit this vulnerability. The specific flaw exists within the Qualcomm LDB service. The issue results from the lack of proper...
CVE-2023-43512 Buffer Over-read in Qualcomm ESL
Transient DOS while parsing GATT service data when the total amount of memory that is required by the multiple services is greater than the actual size of the services buffer...
CVE-2023-43512 Buffer Over-read in Qualcomm ESL
Transient DOS while parsing GATT service data when the total amount of memory that is required by the multiple services is greater than the actual size of the services buffer...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated USA. A security vulnerability exists in Qualcomm Chipsets that originates from a memory corruption that occurs in audio during playback with speaker protection...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated USA. The Qualcomm Chipsets have a security vulnerability that stems from an encryption issue in the car when unpacking the key secs2d and using RPMB data for authentication...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated. A security vulnerability exists in Qualcomm Chipsets that originates from a denial of service when the WLAN firmware receives a reassoc response frame containing a RICDATA element...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated. A security vulnerability exists in Qualcomm Chipsets that originates from a denial of service when parsing ieee80211parsemscsie in the WIN WLAN driver...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated. A security vulnerability exists in Qualcomm Chipsets due to a denial of service vulnerability in the WLAN firmware when parsing BTM requests...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated USA. A security vulnerability exists in Qualcomm Chipsets that originates from a memory corruption in the HLOS while running a use case...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated USA. A security vulnerability exists in Qualcomm Chipsets that originates from memory corruption in audio during sequential execution of memory mapping commands in ADSP...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated USA. A security vulnerability exists in Qualcomm Chipsets that originates from a memory corruption that occurs when the resource manager sends a reply message containing multiple fragments to the host kernel...
Qualcomm Chipsets Security Vulnerability
Qualcomm Chipsets are a family of chipsets from Qualcomm Incorporated USA. The Qualcomm Chipsets contain a security vulnerability that originates from a denial of service vulnerability in the data modem during the DTLS handshake...