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The vulnerability of the Android operating system, allowing a hacker to execute arbitrary code
The vulnerability of the Qualcomm Android operating system’s audio driver is related to deficiencies in access control. Exploiting this vulnerability allows a remote attacker to execute arbitrary malicious code within the kernel context. This issue is considered “high” because it requires...
The vulnerability of the Qualcomm operating system Android component, which allows a hacker to exert indefinite influence
The vulnerability of the Qualcomm operating system Android is related to errors in the code. Exploiting this vulnerability can allow a remote attacker to cause unpredictable effects...
Unspecified vulnerability in Google Android Qualcomm component (CNVD-2017-11066)
Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance OHA in the U.S. Qualcomm is one of the Qualcomm components used in Qualcomm devices. A security vulnerability exists in the Qualcomm component in versions of Android prior to 7.1.1. Th...
Unspecified vulnerability in Google Android Qualcomm component (CNVD-2017-11068)
Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance OHA in the U.S. Qualcomm is one of the Qualcomm components used in Qualcomm devices. A security vulnerability exists in the Qualcomm component in versions of Android prior to 7.1.1. Th...
Unspecified vulnerability in Google Android Qualcomm component (CNVD-2017-11064)
Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance OHA in the U.S. Qualcomm is one of the Qualcomm components used in Qualcomm devices. A security vulnerability exists in the Qualcomm component in versions of Android prior to 7.1.1. Th...
Unspecified vulnerability in Google Android Qualcomm component (CNVD-2017-11063)
Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance OHA in the U.S. Qualcomm is one of the Qualcomm components used in Qualcomm devices. A security vulnerability exists in the Qualcomm component in versions of Android prior to 7.1.1. Th...
Unspecified vulnerability in Google Android Qualcomm component (CNVD-2017-11062)
Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance OHA in the U.S. Qualcomm is one of the Qualcomm components used in Qualcomm devices. A security vulnerability exists in the Qualcomm component in versions of Android prior to 7.1.1. Th...
Unspecified vulnerability in Google Android Qualcomm component (CNVD-2017-11067)
Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance OHA in the U.S. Qualcomm is one of the Qualcomm components used in Qualcomm devices. A security vulnerability exists in the Qualcomm component in versions of Android prior to 7.1.1. Th...
Unspecified vulnerability in Google Android Qualcomm component (CNVD-2017-11065)
Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance OHA in the U.S. Qualcomm is one of the Qualcomm components used in Qualcomm devices. A security vulnerability exists in the Qualcomm component in versions of Android prior to 7.1.1. Th...
The vulnerability of the OEM microprogramming software component of Qualcomm Secure Execution Environment allows a perpetrator to trigger a service failure or exert other effects on the system.
The vulnerability of the OEM microprogramming software component of Qualcomm Secure Execution Environment for Android, originating from the CAF repository, is related to buffer overflow attacks. Exploiting this vulnerability can allow a malicious actor to trigger service failures or cause other...
The vulnerability of Qualcomm Secure Execution Environment’s microprogramming software allows a perpetrator to circumvent existing access control policies.
The vulnerability of Qualcomm Secure Execution Environment for Android, found in the CAF repository, is related to deficiencies in access control. Exploiting this vulnerability allows a malicious actor to circumvent existing access control policies through improper page alignment...
The vulnerability of Qualcomm’s TrustZone microprogramming software technology allows a hacker to gain access to local files.
The vulnerability of the TrustZone technology a DRM sub-program of Qualcomm’s Secure Execution Environment for Android from the CAF repository is related to pointer dereferencing errors. Exploiting this vulnerability could allow a remote attacker to gain access to local files...
The vulnerability of the HLOS component of Qualcomm Secure Execution Environment allows a perpetrator to gain access to kernel modules beyond their authorized scope.
The vulnerability of the HLOS microprogramming software component of Qualcomm Secure Execution Environment for Android exists due to insufficient testing of input data. Exploiting this vulnerability can allow an attacker, operating remotely, to gain access to kernel modules beyond their authorize...
The vulnerability of Qualcomm’s TrustZone microprogramming software technology, which allows attackers to circumvent existing access control policies.
The vulnerability of Qualcomm’s TrustZone microprogramming software lies in a numerical overflow condition that causes an operation to escape outside the buffer in memory. Exploiting this vulnerability could allow a malicious actor to bypass existing access control policies...
The vulnerability of Qualcomm Secure Execution Environment’s microprogramming software allows a perpetrator to gain access to the protected memory of the trusted application.
The vulnerability of Qualcomm Secure Execution Environment for Android, originating from the CAF repository, arises from the lack of use of the HLOS mechanism during the transfer of general content to secure memory. Exploiting this vulnerability can allow a malicious actor, operating remotely, to...
The vulnerability of Qualcomm’s TrustZone microprogramming software technology allows attackers to enhance their privileges.
The vulnerability of Qualcomm’s TrustZone microprogramming software’s Android Secure Execution Environment from the CAF repository is related to errors in cryptographic transformations. Exploiting this vulnerability could allow a malicious actor to gain increased privileges remotely...
The vulnerability of Qualcomm’s TrustZone microprogramming software technology allows a intruder to trigger a service failure or exert other effects on the system.
The vulnerability of the TrustZone technology a DRM sub-program of Qualcomm’s Secure Execution Environment for Android, as found in the CAF repository, stems from buffer overflow attacks. Exploiting this vulnerability could allow a malicious actor to cause system failures or other adverse effects...
The vulnerability of Qualcomm’s TrustZone microprogramming software technology allows a intruder to trigger a service failure or exert other effects on the system.
The vulnerability of Qualcomm’s TrustZone microprogramming software’s Android Secure Execution Environment from the CAF repository is due to a numerical overflow. Exploiting this vulnerability could allow an attacker to cause a system failure or otherwise affect the system...
The vulnerability of the TrustZone component of Qualcomm Secure Execution Environment allows attackers to compromise the confidentiality, integrity, and accessibility of the protected information.
The vulnerability of Qualcomm’s TrustZone microprogramming software’s Android Secure Execution Environment from the CAF repository is due to a numerical overflow. Exploiting this vulnerability could allow an attacker, operating remotely, to compromise the confidentiality, integrity, and...
The vulnerability of Qualcomm’s TrustZone microprogramming software technology allows a intruder to trigger a service failure or exert other effects on the system.
The vulnerability of the TrustZone technology a part of the DRM subsystem of Qualcomm’s Secure Execution Environment for Android, as provided in the CAF repository, is due to a numerical overflow condition. Exploiting this vulnerability could allow an attacker to cause a system failure or exert...