| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Budget Control Gateway acts as an entry point for incoming requests and routes them to the appropriate microservices for Budget Control. Budget Control Gateway does not properly validate auth tokens, which allows attackers to bypass intended restrictions. This vulnerability is fixed in 1.5.2. |
| Legacy Vivotek Device firmware uses default credetials for the root and user login accounts. |
| conda-forge infrastructure holds common configurations and settings for key pieces of the conda-forge infrastructure.
Between 2025-02-10 and 2025-04-01, conda-forge infrastructure used the wrong token for Azure's cf-staging access. This bug meant that any feedstock maintainer could upload a package to the conda-forge channel, bypassing our feedstock-token + upload process. The security logs on anaconda.org were check for any packages that were not copied from the cf-staging to the conda-forge channel and none were found. |
| An Improper Certificate Validation vulnerability in the OPC-UA client and ANSL over TLS client used in Automation Studio versions before 6.5 could allow an unauthenticated attacker on the network to position themselves to intercept and interfere with data exchanges. |
| An OS Command Injection vulnerability exists within myPRO Manager. A parameter within a command can be exploited by an unauthenticated remote attacker to inject arbitrary operating system commands. |
| Django-Unicorn adds modern reactive component functionality to Django templates. Affected versions of Django-Unicorn are vulnerable to python class pollution vulnerability. The vulnerability arises from the core functionality `set_property_value`, which can be remotely triggered by users by crafting appropriate component requests and feeding in values of second and third parameter to the vulnerable function, leading to arbitrary changes to the python runtime status. With this finding at least five ways of vulnerability exploitation have been observed, stably resulting in Cross-Site Scripting (XSS), Denial of Service (DoS), and Authentication Bypass attacks in almost every Django-Unicorn-based application. This issue has been addressed in version 0.62.0 and all users are advised to upgrade. There are no known workarounds for this vulnerability. |
| A valid, authenticated user with sufficient privileges and who is aware of Continuous Compliance’s internal database configurations can leverage the application’s built-in Connector functionality to access Continuous Compliance’s internal database. This allows the user to explore the internal database schema and export its data, including the properties of Connecters and Rule Sets. |
| A vulnerability in the handling of verify_mode = CERT_REQUIRED in the wolfssl Python package (wolfssl-py) causes client certificate requirements to not be fully enforced.
Because the WOLFSSL_VERIFY_FAIL_IF_NO_PEER_CERT flag was not included, the behavior effectively matched CERT_OPTIONAL: a peer certificate was verified if presented, but connections were incorrectly authenticated when no client certificate was provided.
This results in improper authentication, allowing attackers to bypass mutual TLS (mTLS) client authentication by omitting a client certificate during the TLS handshake.
The issue affects versions up to and including 5.8.2. |
| 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). |
| 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). |
| 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). |
| UsersController::edit in Cerebrate before 1.30 allows an authenticated non-privileged user to escalate their privileges (e.g., obtain a higher role such as admin) via the user-edit endpoint by supplying or modifying role_id or organisation_id fields in the edit request. |
| Omni Secure Files plugin versions prior to 0.1.14 contain an arbitrary file upload vulnerability in the bundled plupload example endpoint. The /wp-content/plugins/omni-secure-files/plupload/examples/upload.php handler allows unauthenticated uploads without enforcing safe file type restrictions, enabling an attacker to place attacker-controlled files under the plugin's uploads directory. This can lead to remote code execution if a server-executable file type is uploaded and subsequently accessed. |
| EGallery version 1.2 contains an unauthenticated arbitrary file upload vulnerability in the uploadify.php script. The application fails to validate file types or enforce authentication, allowing remote attackers to upload malicious PHP files directly into the web-accessible egallery/ directory. This results in full remote code execution under the web server context. |
| Dover Fueling Solutions ProGauge MagLink LX4 Devices have default root credentials that cannot be changed through standard
administrative means. An attacker with network access to the device can
gain administrative access to the system. |
| An improper input validation allows an unauthenticated attacker to achieve remote command execution on the affected PAM system by sending a specially crafted HTTP request. |
| An OS command injection vulnerability in user interface in Western Digital My Cloud firmware prior to 5.31.108 on NAS platforms allows remote attackers to execute arbitrary system commands via a specially crafted HTTP POST. |
| Os command injection vulnerability in e-solutions e-management. This vulnerability allows an attacker to execute arbitrary commands on the server via the ‘client’ parameter in the /data/apache/e-management/api/api3.php endpoint. |
| Jupyter Remote Desktop Proxy allows you to run a Linux Desktop on a JupyterHub. jupyter-remote-desktop-proxy was meant to rely on UNIX sockets readable only by the current user since version 3.0.0, but when used with TigerVNC, the VNC server started by jupyter-remote-desktop-proxy were still accessible via the network. This vulnerability does not affect users having TurboVNC as the vncserver executable. This issue is fixed in 3.0.1. |
| TSA developed by Changing has a Missing Authentication vulnerability, allowing unauthenticated remote attackers to read, modify, and delete database contents. |