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CVE-2026-50031 ipmi-oem in FreeIPMI before 1.6.18 has exploitable buffer overflows on response messages. The Intelligent Platform Management Interface (IPMI) specification defines a set of interfaces for platform management. It is implemented by a large number of hardware manufacturers to support system management. It is most commonly used for sensor reading (e.g., CPU temperatures through the ipmi-sensors command within FreeIPMI) and remote power control (the ipmipower command). The ipmi-oem client command implements a set of a IPMI OEM commands for specific hardware vendors. If a user has supported hardware, they may wish to use the ipmi-oem command to send a request to a server to retrieve specific information. Two subcommands "ipmi-oem dell get-active-directory-config" and "ipmi-oem fujitsu get-sel-entry-long-text" were found to have exploitable buffer overflows on response messages.

Information published.

EPSS 0.00 CVE-2026-50031 FreeIPMI US

Microsoft Security ·

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CVE-2024-30896 InfluxDB OSS 2.x through 2.7.11 stores the administrative operator token under the default organization which allows authorized users with read access to the authorization resource of the default organization to retrieve the operator token. InfluxDB OSS 1.x, Enterprise, Cloud, Cloud Dedicated and Clustered are not affected. NOTE: The researcher states that InfluxDB allows allAccess administrators to retrieve all raw tokens via an "influx auth ls" command. The supplier indicates that the organizations feature is operating as intended and that users may choose to add users to non-default organizations. A future release of InfluxDB 2.x will remove the ability to retrieve tokens from the API.

Information published.

EPSS 0.05 CVE-2024-30896 InfluxDB US

Microsoft Security ·

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CVE-2017-3736 There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL before 1.0.2m and 1.1.0 before 1.1.0g. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. This only affects processors that support the BMI1, BMI2 and ADX extensions like Intel Broadwell (5th generation) and later or AMD Ryzen.

Information published.

EPSS 0.10 CVE-2017-3736 OpenSSL US

Microsoft Security ·