123 matches found
CVE-2019-13179
Calamares versions 3.1 through 3.2.10 copies a LUKS encryption keyfile from /cryptokeyfile.bin mode 0600 owned by root to /boot within a globally readable initramfs image with insecure permissions, which allows this originally protected file to be read by any user, thereby disclosing decryption...
CVE-2019-13179
Calamares versions 3.1 through 3.2.10 copies a LUKS encryption keyfile from /cryptokeyfile.bin mode 0600 owned by root to /boot within a globally readable initramfs image with insecure permissions, which allows this originally protected file to be read by any user, thereby disclosing decryption...
CVE-2019-13179
Calamares versions 3.1 through 3.2.10 copies a LUKS encryption keyfile from /cryptokeyfile.bin mode 0600 owned by root to /boot within a globally readable initramfs image with insecure permissions, which allows this originally protected file to be read by any user, thereby disclosing decryption...
CVE-2019-13179
Calamares versions 3.1 through 3.2.10 copies a LUKS encryption keyfile from /cryptokeyfile.bin mode 0600 owned by root to /boot within a globally readable initramfs image with insecure permissions, which allows this originally protected file to be read by any user, thereby disclosing decryption...
CVE-2019-13179
Calamares versions 3.1 through 3.2.10 copies a LUKS encryption keyfile from /cryptokeyfile.bin mode 0600 owned by root to /boot within a globally readable initramfs image with insecure permissions, which allows this originally protected file to be read by any user, thereby disclosing decryption...
CVE-2019-13179
CVE-2019-13179 affects Calamares versions 3.1 to 3.2.10. The root cause is that Calamares copies the LUKS keyfile at /crypto_keyfile.bin (mode 0600, root-owned) into /boot inside a globally readable initramfs image, making the key accessible to any user and exposing decryption keys for LUKS conta...
CVE-2019-13179: Insufficiently Protected Credentials
Calamares versions 3.1 through 3.2.10 copies a LUKS encryption keyfile from /cryptokeyfile.bin mode 0600 owned by root to /boot within a globally readable initramfs image with insecure permissions, which allows this originally protected file to be read by any user, thereby disclosing decryption...
CVE-2019-6481
Abine Blur 7.8.2431 allows remote attackers to conduct "Second-Factor Auth Bypass" attacks by using the "Perform a right-click operation to access a forgotten dev menu to insert user passwords that otherwise would require the user to accept a second-factor request in a mobile app." approach,...
Design/Logic Flaw
Abine Blur 7.8.2431 allows remote attackers to conduct "Second-Factor Auth Bypass" attacks by using the "Perform a right-click operation to access a forgotten dev menu to insert user passwords that otherwise would require the user to accept a second-factor request in a mobile app." approach,...
CVE-2019-6481
CVE-2019-6481 affects Abine Blur 7.8.2431 via the Affected Chrome Plugin component, enabling a remote attacker to bypass second‑factor authentication by using a right‑click sequence to access a forgotten dev menu to insert user passwords that would normally require MFA approval. This mirrors the ...
CVE-2019-6481
Abine Blur 7.8.2431 allows remote attackers to conduct "Second-Factor Auth Bypass" attacks by using the "Perform a right-click operation to access a forgotten dev menu to insert user passwords that otherwise would require the user to accept a second-factor request in a mobile app." approach,...
CVE-2019-6481: Improper Authentication
Abine Blur 7.8.2431 allows remote attackers to conduct "Second-Factor Auth Bypass" attacks by using the "Perform a right-click operation to access a forgotten dev menu to insert user passwords that otherwise would require the user to accept a second-factor request in a mobile app." approach,...
CVE-2014-10047
Technical details about CVE-2014-10047 are not publicly available in the provided connected documents. The Initial Description notes an information leak when writing the Full Disk Encryption key on Qualcomm Snapdragon devices prior to 2018-04-05, but no deeper specifics are given.
CVE-2014-10047
In Android before 2018-04-05 or earlier security patch level on Qualcomm Snapdragon Mobile SD 400 and SD 800, when writing the Full Disk Encryption key to crypto engine, information leak could occur...
CVE-2014-10047: Exposure of Sensitive Information to an Unauthorized Actor
In Android before 2018-04-05 or earlier security patch level on Qualcomm Snapdragon Mobile SD 400 and SD 800, when writing the Full Disk Encryption key to crypto engine, information leak could occur...
The vulnerability of the Full Disk Encryption component of the Android operating system from the CAF repository allows a hacker to trigger a system reboot.
The vulnerability of the Full Disk Encryption component of the Android operating system from the CAF repository is related to weak encryption. Exploiting this vulnerability could allow a malicious actor to remotely cause the system to crash...
Google Android Qualcomm Component Unauthorized Operation Vulnerability (CNVD-2017-26640)
Android is a Linux-based open-source operating system developed by Google and the Open Handheld Alliance OHA, and Qualcomm closed-source components are among the closed-source components developed by Qualcomm. A security vulnerability exists in Full Disk Encryption in the Qualcomm closed-source...
Design/Logic Flaw
In all Qualcomm products with Android releases from CAF using the Linux kernel, a rollback vulnerability potentially exists in Full Disk Encryption...
CVE-2014-9975
In all Qualcomm products with Android releases from CAF using the Linux kernel, a rollback vulnerability potentially exists in Full Disk Encryption...
CVE-2014-9975
CVE-2014-9975 describes a rollback vulnerability in the Full Disk Encryption (FDE) component affecting Qualcomm closed‑source code used in Android CAF/Linux kernel builds. The issue is documented across multiple sources (NVD/CVE pages) as related to Qualcomm FDE, with a high‑severity impact profi...