9933 matches found
DEBIAN-CVE-2025-37901
In the Linux kernel, the following vulnerability has been resolved: irqchip/qcom-mpm: Prevent crash when trying to handle non-wake GPIOs On Qualcomm chipsets not all GPIOs are wakeup capable. Those GPIOs do not have a corresponding MPM pin and should not be handled inside the MPM driver. The IRQ...
UBUNTU-CVE-2025-37901
In the Linux kernel, the following vulnerability has been resolved: irqchip/qcom-mpm: Prevent crash when trying to handle non-wake GPIOs On Qualcomm chipsets not all GPIOs are wakeup capable. Those GPIOs do not have a corresponding MPM pin and should not be handled inside the MPM driver. The IRQ...
CVE-2025-37901 irqchip/qcom-mpm: Prevent crash when trying to handle non-wake GPIOs
In the Linux kernel, the following vulnerability has been resolved: irqchip/qcom-mpm: Prevent crash when trying to handle non-wake GPIOs On Qualcomm chipsets not all GPIOs are wakeup capable. Those GPIOs do not have a corresponding MPM pin and should not be handled inside the MPM driver. The IRQ...
CVE-2025-37901
The CVE-2025-37901 issue affects the Linux kernel irqchip/qcom-mpm driver. On Qualcomm chipsets, some GPIOs are not wake-capable and lack a corresponding MPM pin; the IRQ domain hierarchy is still applied unless explicitly disconnected. This caused crashes when setting up interrupts for non-wake ...
CVE-2025-37901 irqchip/qcom-mpm: Prevent crash when trying to handle non-wake GPIOs
In the Linux kernel, the following vulnerability has been resolved: irqchip/qcom-mpm: Prevent crash when trying to handle non-wake GPIOs On Qualcomm chipsets not all GPIOs are wakeup capable. Those GPIOs do not have a corresponding MPM pin and should not be handled inside the MPM driver. The IRQ...
Linux kernel 安全漏洞
Linux kernel is the kernel used by Linux, the open source operating system of the Linux Foundation in the United States. A security vulnerability exists in the Linux kernel that stems from the btusb module incorrectly returning a 0 when processing a QCA firmware crash dump, which could result in ...
Linux kernel 安全漏洞
Linux kernel is the kernel used by Linux, the open source operating system of the Linux Foundation in the United States. A security vulnerability exists in the Linux kernel that stems from irqchip/qcom-mpm not handling a non-wakeup GPIO situation, which could cause the kernel to crash...
USN-7516-1 linux, linux-azure-5.4, linux-gcp, linux-gcp-5.4, linux-oracle vulnerabilities
Several security issues were discovered in the Linux kernel. An attacker could possibly use these to compromise the system. This update corrects flaws in the following subsystems: - ARM64 architecture; - PowerPC architecture; - Block layer subsystem; - Drivers core; - Network block device driver;...
The vulnerability of Qualcomm’s security microprogramming software, related to unvalidated array indexing, allows attackers to influence the integrity, accessibility, and confidentiality of protected information.
The vulnerability of Qualcomm’s security microprogramming software relates to unverified array indexing. Exploiting this vulnerability could allow attackers to influence the integrity, accessibility, and confidentiality of the protected information...
The vulnerability of embedded software developed by Qualcomm, related to the swapping of a non-trustworthy pointer, allows a perpetrator to trigger a service failure.
The vulnerability of embedded software developed by Qualcomm relates to the use of an unreliable pointer. Exploiting this vulnerability can allow attackers to cause system failures...
The vulnerability of embedded software developed by Qualcomm, related to synchronization errors when using common resources (“Race Situation”), allows a violator to trigger a service failure.
The vulnerability of embedded Qualcomm software programs is related to synchronization errors when using a common resource “Race Situation”. Exploiting this vulnerability can allow an attacker to cause a service failure...
The vulnerability of embedded software developed by Qualcomm, related to unvalidated array indexing, allows attackers to influence the integrity, accessibility, and confidentiality of protected information.
The vulnerability of microprogramming software in embedded Qualcomm chips is related to unverified array indexing. Exploiting this vulnerability can allow attackers to influence the integrity, accessibility, and confidentiality of the protected information...
The vulnerability of microprogramming software in embedded Qualcomm chips, related to insufficient verification of input data, allows a hacker to execute arbitrary code.
The vulnerability of embedded software developed by Qualcomm relates to insufficient validation of input data. Exploiting this vulnerability can allow attackers to execute arbitrary code...
The vulnerability of embedded software developed by Qualcomm, related to the execution of operations outside the buffer in memory, allows attackers to disclose protected information.
The vulnerability of embedded software developed for Qualcomm chips lies in the fact that operations are performed outside of the buffer in memory. Exploiting this vulnerability can allow attackers to disclose protected information...
The vulnerability of embedded software developed by Qualcomm, related to the pointer shifting beyond the allocated memory space, allows a malicious actor to cause a system failure.
The vulnerability of embedded software developed by Qualcomm relates to the pointer being moved beyond the allocated memory space. Exploiting this vulnerability could allow an attacker to cause a system failure...
The vulnerability of embedded software developed by Qualcomm, related to unvalidated array indexing, allows attackers to influence the integrity, accessibility, and confidentiality of protected information.
The vulnerability of microprogramming software in embedded Qualcomm chips is related to unverified array indexing. Exploiting this vulnerability can allow attackers to influence the integrity, accessibility, and confidentiality of the protected information...
The vulnerability of the EXTN Element ID Parser component in Qualcomm’s embedded software allows a hacker to execute arbitrary code.
The vulnerability of the EXTN Element ID Parser component in Qualcomm’s embedded software lies in its ability to read data beyond the permitted range of memory. Exploiting this vulnerability could allow an attacker to execute arbitrary code...
The vulnerability of embedded software developed by Qualcomm, related to the possibility of using memory after release, allows a hacker to execute arbitrary code.
The vulnerability of embedded software developed for Qualcomm chips lies in the possibility of exploiting memory after it is freed. Exploiting this vulnerability could allow a hacker to execute arbitrary code...
The vulnerability of embedded software developed by Qualcomm, related to the execution of operations outside the buffer in memory, allows attackers to disclose protected information.
The vulnerability of embedded software developed for Qualcomm chips lies in the fact that operations are performed outside of the buffer in memory. Exploiting this vulnerability can allow attackers to disclose protected information...
The vulnerability of embedded software developed by Qualcomm, related to unvalidated array indexing, allows attackers to influence the integrity, accessibility, and confidentiality of protected information.
The vulnerability of microprogramming software in embedded Qualcomm chips is related to unverified array indexing. Exploiting this vulnerability can allow attackers to influence the integrity, accessibility, and confidentiality of the protected information...