| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| The Single RAN baseband OAM service is intended to run as an unprivileged service. However, it initially starts with root privileges and assigns certain capabilities before dropping to an unprivileged level. The capabilities retained from the root period are considered extensive after the privilege drop and, in theory, could potentially allow actions beyond the intended scope of the OAM service. These actions could include gaining root privileges, accessing root-owned files, modifying them as the file owner, and then returning them to root ownership. This issue has been corrected starting from release 24R1-SR 0.2 MP and later.
Beginning with release 24R1-SR 0.2 MP, the OAM service software capabilities are restricted to the minimum necessary. |
| A privilege escalation vulnerability may enable a service account to elevate its privileges.
The sudo rules configured for a local service account were excessively permissive, potentially allowing administrative access if a malicious actor could execute arbitrary commands as that account.
It is important to note that no such vector has been identified in this instance. |
| On IROAD v9 devices, the dashcam has hardcoded default credentials ("qwertyuiop") that cannot be changed by the user. This allows an attacker within Wi-Fi range to connect to the device's network to perform sniffing. |
| A vulnerability has been found in E-Lins H685, H685f, H700, H720, H750, H820, H820Q, H820Q0 and H900 up to 3.2 and classified as critical. This vulnerability affects unknown code of the component OEM Backend. The manipulation leads to hard-coded credentials. The attack can be initiated remotely. The exploit has been disclosed to the public and may be used. It is recommended to change the configuration settings. The vendor was contacted early about this disclosure but did not respond in any way. |
| Asseco InfoMedica is a comprehensive solution used to manage both administrative and medical tasks in the healthcare sector. Passwords of all users are stored in a database in an encoded format. An attacker in possession of these encoded passwords is able to decode them by using an algorithm embedded in the client-side part of the software.
This vulnerability has been fixed in versions 4.50.1 and 5.38.0 |
| A vulnerability was found in SGAI Space1 NAS N1211DS up to 1.0.915. This issue affects the function GET_FACTORY_INFO/GET_USER_INFO of the file /cgi-bin/JSONAPI of the component gsaiagent. The manipulation results in unprotected storage of credentials. The attack can be launched remotely. The exploit has been made public and could be used. The vendor was contacted early about this disclosure but did not respond in any way. |
| A use of hard-coded password vulnerability may allow authentication abuse.This issue affects ELI 380 Resting Electrocardiograph:
Versions 2.6.0 and prior; ELI 280/BUR280/MLBUR 280 Resting Electrocardiograph:
Versions 2.3.1 and prior; ELI 250c/BUR 250c Resting Electrocardiograph:
Versions 2.1.2 and prior; ELI 150c/BUR 150c/MLBUR 150c Resting Electrocardiograph:
Versions 2.2.0 and prior. |
| A flaw was found in how Quay's database is stored in plain-text in mirror-registry on the jinja's config.yaml file. This flaw allows a malicious actor with access to this file to gain access to Quay's database. |
| Authenticated command injection in the filename of a <redacted>.exe request leads to remote code execution as the root user.
This issue affects Iocharger firmware for AC models before version 24120701.
Likelihood: Moderate – This action is not a common place for command injection vulnerabilities to occur. Thus, an attacker will likely only be able to find this vulnerability by reverse-engineering the firmware or trying it on all <redacted> fields. The attacker will also need a (low privilege) account to gain access to the <redacted> binary, or convince a user with such access to execute a payload.
Impact: Critical – The attacker has full control over the charging station as the root user, and can arbitrarily add, modify and delete files and services.
CVSS clarification: This attack can be performed over any network conenction serving the web interfacr (AV:N), and there are not additional mitigating measures that need to be circumvented (AC:L) or other prerequisites (AT:N). The attack does require privileges, but the level does not matter (PR:L), there is no user interaction required (UI:N). The attack leeds to a full compromised of the charger (VC:H/VI:H/VA:H) and a compromised charger can be used to "pivot" to networks that should normally not be reachable (SC:L/SI:L/SA:H). Because this is an EV chargers with significant pwoer, there is a potential safety imp0act (S:P). THis attack can be automated (AU:Y). |
| SAP NetWeaver AS for Java allows an authorized attacker to obtain sensitive information. The attacker could obtain the username and password when creating an RFC destination. After successful exploitation, an attacker can read the sensitive information but cannot modify or delete the data. |
| setuid() does not affect libuv's internal io_uring operations if initialized before the call to setuid().
This allows the process to perform privileged operations despite presumably having dropped such privileges through a call to setuid().
This vulnerability affects all users using version greater or equal than Node.js 18.18.0, Node.js 20.4.0 and Node.js 21. |
|
Franklin Fueling System EVO 550 and EVO 5000 are vulnerable to a Path Traversal vulnerability that could allow an attacker to access sensitive files on the system.
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| Improper Neutralization of Special Elements used in a Command ('Command Injection') vulnerability in Iocharger firmware for AC models allows OS Command Injection as root
This issue affects all Iocharger AC EV charger models on a firmware version before 25010801.
Likelihood: Moderate – The <redacted> binary does not seem to be used by the web interface, so it might be more difficult to find. It seems to be largely the same binary as used by the Iocharger Pedestal charging station, however. The attacker will also need a (low privilege) account to gain access to the <redacted> binary, or convince a user with such access to execute a crafted HTTP request.
Impact: Critical – The attacker has full control over the charging station as the root user, and can arbitrarily add, modify and delete
files and services.
CVSS clarification: Any network interface serving the web ui is vulnerable (AV:N) and there are not additional security measures to circumvent (AC:L), nor does the attack require and existing preconditions (AT:N). The attack is authenticated, but the level of authentication does not matter (PR:L), nor is any user interaction required (UI:N). The attack leads to a full compromised (VC:H/VI:H/VA:H), and compromised devices can be used to pivot into networks that should potentially not be accessible (SC:L/SI:L/SA:H). Becuase this is an EV charger handing significant power, there is a potential safety impact (S:P). This attack can be automated (AU:Y). |
| Improper Neutralization of Special Elements used in a Command ('Command Injection') vulnerability allows OS Command Injection as root
This issue affects Iocharger firmware for AC models before version 241207101
Likelihood: Moderate – The <redacted> binary does not seem to be used by the web interface, so it might be more difficult to find. It seems to be largely the same binary as used by the Iocharger Pedestal charging station, however. The attacker will also need a (low privilege) account to gain access to the <redacted> binary, or convince a user with such access to execute a crafted HTTP request.
Impact: Critical – The attacker has full control over the charging station as the root user, and can arbitrarily add, modify and delete files and services.
CVSS clarification: Any network connection serving the web interface is vulnerable (AV:N) and there are no additional measures to circumvent (AC:L) nor does the attack require special conditions to be present (AT:N). The attack requires authentication, but the level does not matter (PR:L), nor is user interaction required (UI:N). The attack leads to a full compromised (VC:H/VI:H/VA:H) and a compromised device can be used to potentially "pivot" into a network that should nopt be reachable (SC:L/SI:L/SA:H). Because this is an EV charger handing significant power, there is a potential safety impact (S:P). THe attack can be autometed (AU:Y). |
| The Chirp Access app contains a hard-coded password, BEACON_PASSWORD. An attacker within Bluetooth range could change configuration settings within the Bluetooth beacon, effectively disabling the application's ability to notify users when they are near a Beacon-enabled access point. This variable cannot be used to change the configuration settings of the door readers or locksets and does not affect the ability for authorized users of the mobile application to lock or unlock access points. |
| Smart Parking Management System from Honding Technology has an Exposure of Sensitive Information vulnerability, allowing unauthenticated remote attackers to access a specific page and obtain plaintext administrator credentials. |
| Smart-tab Android app installed April 2023 or earlier contains an issue with plaintext storage of a password. If this vulnerability is exploited, an attacker with physical access to the device may retrieve the credential information and spoof the device to access the related external service. |
| Certain hybrid DVR models ((HBF-09KD and HBF-16NK)) from Hunt Electronic have an Exposure of Sensitive Information vulnerability, allowing unauthenticated remote attackers to directly access a system configuration file and obtain plaintext administrator credentials. |
| Improper Neutralization of Special Elements used in a Command ('Command Injection') vulnerability in Iocharger firmware for AC models allows OS Command Injection as root
This issue affects firmware versions before 24120701.
Likelihood: Moderate – The <redacted> binary does not seem to be used by the web interface, so it might be more difficult to find. It seems to be largely the same binary as used by the Iocharger Pedestal charging station, however. The attacker will also need a (low privilege) account to gain access to the <redacted> binary, or convince a user with such access to execute a crafted HTTP request.
Impact: Critical – The attacker has full control over the charging station as the root user, and can arbitrarily add, modify and delete
files and services.
CVSS clarification: The attack can be executed over any network connection serving the web interface (AV:N). There are no additional measures that need to be circumvented (AC:L) or attack preconditions (AT:N). THe attack is privileged, but the level does not matter (PR:L) and does not require user interaction (UI:N). Attack leads to full system compromised (VC:H/VI:H/VA:H) and compromised devices can be used to "pivot" to other networks that should be unreachable (SC:L/SI:L/SA:H). Because this an EV charger using high power, there is a potential safety impact (S:P). The attack can be automated (AU:Y). |
| Beward Intercom 2.3.1 contains a credentials disclosure vulnerability that allows local attackers to access plain-text authentication credentials stored in an unencrypted database file. Attackers can read the BEWARD.INTERCOM.FDB file to extract usernames and passwords, enabling unauthorized access to IP cameras and door stations. |