1015 matches found
DEBIAN-CVE-2024-45751
tgt aka Linux target framework before 1.0.93 attempts to achieve entropy by calling rand without srand. The PRNG seed is always 1, and thus the sequence of challenges is always identical...
UBUNTU-CVE-2024-45751
tgt aka Linux target framework before 1.0.93 attempts to achieve entropy by calling rand without srand. The PRNG seed is always 1, and thus the sequence of challenges is always identical...
CVE-2024-45751
tgt aka Linux target framework before 1.0.93 attempts to achieve entropy by calling rand without srand. The PRNG seed is always 1, and thus the sequence of challenges is always identical...
CVE-2024-45751
tgt aka Linux target framework before 1.0.93 attempts to achieve entropy by calling rand without srand. The PRNG seed is always 1, and thus the sequence of challenges is always identical...
CVE-2024-45751
CVE-2024-45751 affects the tgt (Linux target framework). The vulnerability is caused by using rand without srand in entropy gathering, making the PRNG seed always 1 and producing identical challenge sequences. Affected versions are tgt before 1.0.93. The documented remediation is to upgrade to 1....
Linux target framework 安全漏洞
tgt Linux target framework is a user-space SCSI target framework by the individual developer FUJITA Tomonori. It supports iSCSI and iSER transport protocols. A security vulnerability exists in versions of Linux target framework tgt prior to 1.0.93, which stems from the use of the rand function...
PT-2024-31748
Name of the Vulnerable Software and Affected Versions: tgt versions prior to 1.0.93 Description: The issue is related to the Linux target framework tgt attempting to generate random numbers by using rand without srand, resulting in a predictable PRNG seed. This causes the sequence of challenges t...
Let’s All Agree to Use Seeds as ML-KEM Keys
Last week, NIST published the final version of the ML-KEM1 specification, FIPS 203. One change from the draft is that the final document explicitly allows storing the private decapsulation key as a seed. This is a plea to the cryptography engineering community: let’s all agree to only use seeds a...
CVE-2024-6348
Predictable seed generation in the security access mechanism of UDS in the Blind Spot Protection Sensor ECU in Nissan Altima 2022 allows attackers to predict the requested seeds and bypass security controls via repeated ECU resets and seed requests...
CVE-2024-6348 Predictable seed generation after ECU reset
Predictable seed generation in the security access mechanism of UDS in the Blind Spot Protection Sensor ECU in Nissan Altima 2022 allows attackers to predict the requested seeds and bypass security controls via repeated ECU resets and seed requests...
CVE-2024-6348
CVE-2024-6348 affects the Nissan Altima 2022 Blind Spot Protection Sensor ECU, specifically the UDS security access seed generation. The root cause is predictable seed generation, enabling an attacker to forecast the requested seeds and bypass security controls by repeatedly resetting the ECU and...
CVE-2024-6348 Predictable seed generation after ECU reset
Predictable seed generation in the security access mechanism of UDS in the Blind Spot Protection Sensor ECU in Nissan Altima 2022 allows attackers to predict the requested seeds and bypass security controls via repeated ECU resets and seed requests...
Nissan Altima Blind Spot Detection Sensor ECU 安全漏洞
The Nissan Altima Blind Spot Detection Sensor ECU is a blind spot detection sensor from Nissan Japan. A security vulnerability exists in the Nissan Altima Blind Spot Detection Sensor ECU that stems from predictable seed generation in the security access mechanism of the UDS, allowing an attacker ...
PT-2024-37557 · Nissan · Nissan Altima Blind Spot Protection Sensor Ecu
Name of the Vulnerable Software and Affected Versions: Nissan Altima 2022 Blind Spot Protection Sensor ECU Description: The issue concerns predictable seed generation in the security access mechanism of UDS in the Blind Spot Protection Sensor ECU. This predictability allows attackers to forecast...
CVE-2024-21980
Improper restriction of write operations in SNP firmware could allow a malicious hypervisor to potentially overwrite a guest's memory or UMC seed resulting in loss of confidentiality and integrity...
CVE-2023-31355
Improper restriction of write operations in SNP firmware could allow a malicious hypervisor to overwrite a guest's UMC seed potentially allowing reading of memory from a decommissioned guest...
CVE-2023-31355
Improper restriction of write operations in SNP firmware could allow a malicious hypervisor to overwrite a guest's UMC seed potentially allowing reading of memory from a decommissioned guest...
CVE-2024-21980
Improper restriction of write operations in SNP firmware could allow a malicious hypervisor to potentially overwrite a guest's memory or UMC seed resulting in loss of confidentiality and integrity...