| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Missing Authentication for Critical Function vulnerability in Mitsubishi Electric Corporation G-50 all versions, G-50-W all versions, G-50A all versions, GB-50 all versions, GB-50A all versions, GB-24A all versions, G-150AD all versions, AG-150A-A all versions, AG-150A-J all versions, GB-50AD all versions, GB-50ADA-A all versions, GB-50ADA-J all versions, EB-50GU-A all versions, EB-50GU-J all versions, AE-200J all versions, AE-200A all versions, AE-200E all versions, AE-50J all versions, AE-50A all versions, AE-50E all versions, EW-50J all versions, EW-50A all versions, EW-50E all versions, TE-200A all versions, TE-50A all versions, TW-50A all versions, and CMS-RMD-J all versions allows a remote unauthenticated attacker to bypass authentication and then control the air conditioning systems illegally, or disclose information in them by exploiting this vulnerability. In addition, the attacker may tamper with firmware for them using the disclosed information. |
| Spring Security Aspects may not correctly locate method security annotations on private methods. This can cause an authorization bypass.
Your application may be affected by this if the following are true:
* You are using @EnableMethodSecurity(mode=ASPECTJ) and spring-security-aspects, and
* You have Spring Security method annotations on a private method
In that case, the target method may be able to be invoked without proper authorization.
You are not affected if:
* You are not using @EnableMethodSecurity(mode=ASPECTJ) or spring-security-aspects, or
* You have no Spring Security-annotated private methods |
| The SAP Internet Communication Framework does not conduct any authentication checks for features that need user identification allowing an attacker to reuse authorization tokens, violating secure authentication practices causing low impact on Confidentiality, Integrity and Availability of the application. |
| Burk Technology ARC Solo's password change mechanism can be utilized without proper
authentication procedures, allowing an attacker to take over the device.
A password change request can be sent directly to the device's HTTP
endpoint without providing valid credentials. The system does not
enforce proper authentication or session validation, allowing the
password change to proceed without verifying the request's legitimacy. |
| E2 Facility Management Systems use a proprietary protocol that allows for unauthenticated file operations on any file in the file system. |
| The Control-M/Agent is vulnerable to unauthenticated remote code execution, arbitrary file read and write and similar unauthorized actions when mutual SSL/TLS authentication is not enabled (i.e. in the default configuration).
NOTE:
* The vendor believes that this vulnerability only occurs when documented security best practices are not followed. BMC has always strongly recommended to use security best practices such as configuring SSL/TLS between Control-M Server and Agent.
* The vendor notifies that Control-M/Agent is not impacted in Control-M SaaS |
| On the exos 9300 server, a SOAP API is reachable on port 8002. This API does not require any authentication prior to sending requests. Therefore, network access to the exos server allows e.g. the creation of arbitrary access log events as well as querying the 2FA PINs associated with the enrolled chip cards. |
| The exos 9300 application can be used to configure Access Managers (e.g. 92xx, 9230 and 9290). The configuration is done in a graphical user interface on the dormakaba exos server. As soon as the save button is clicked in exos 9300, the whole configuration is sent to the selected Access Manager via SOAP. The SOAP request is sent without any prior authentication or authorization by default. Though authentication and authorization can be configured using IPsec for 92xx-K5 devices and mTLS for 92xx-K7 devices, it is not enabled by default and must therefore be activated with additional steps.
This insecure default allows an attacker with network level access to completely control the whole environment. An attacker is for example easily able to conduct the following tasks without prior authentication:
- Re-configure Access Managers (e.g. remove alarming system requirements)
- Freely re-configure the inputs and outputs
- Open all connected doors permanently
- Open all doors for a defined time interval
- Change the admin password
- and many more
Network level access can be gained due to an insufficient network segmentation as well as missing LAN firewalls. Devices with an insecure configuration have been identified to be directly exposed to the internet. |
| General Industrial Controls Lynx+ Gateway is missing critical authentication in the embedded web server which
could allow an attacker to send GET requests to obtain sensitive device
information. |
| Unitree Go2, G1, H1, and B2 devices through 2025-09-20 accept any handshake secret with the unitree substring. |
| Karapace is an open-source implementation of Kafka REST and Schema Registry. Versions 5.0.0 and 5.0.1 contain an authentication bypass vulnerability when configured to use OAuth 2.0 Bearer Token authentication. If a request is sent without an Authorization header, the token validation logic is skipped entirely, allowing an unauthenticated user to read and write to Schema Registry endpoints that should otherwise be protected. This effectively renders the OAuth authentication mechanism ineffective. This issue is fixed in version 5.0.2. |
| Akka.NET is a .NET port of the Akka project from the Scala / Java community. In all versions of Akka.Remote from v1.2.0 to v1.5.51, TLS could be enabled via our `akka.remote.dot-netty.tcp` transport and this would correctly enforce private key validation on the server-side of inbound connections. Akka.Remote, however, never asked the outbound-connecting client to present ITS certificate - therefore it's possible for untrusted parties to connect to a private key'd Akka.NET cluster and begin communicating with it without any certificate. The issue here is that for certificate-based authentication to work properly, ensuring that all members of the Akka.Remote network are secured with the same private key, Akka.Remote needed to implement mutual TLS. This was not the case before Akka.NET v1.5.52. Those who run Akka.NET inside a private network that they fully control or who were never using TLS in the first place are now affected by the bug. However, those who use TLS to secure their networks must upgrade to Akka.NET V1.5.52 or later. One patch forces "fail fast" semantics if TLS is enabled but the private key is missing or invalid. Previous versions would only check that once connection attempts occurred. The second patch, a critical fix, enforces mutual TLS (mTLS) by default, so both parties must be keyed using the same certificate. As a workaround, avoid exposing the application publicly to avoid the vulnerability having a practical impact on one's application. However, upgrading to version 1.5.52 is still recommended by the maintainers. |
| The affected products allow unauthenticated access to Open Network Video Interface Forum (ONVIF) services, which may allow an attacker unauthorized access to camera configuration information. |
| A vulnerability was found in rowboatlabs rowboat up to 8096eaf63b5a0732edd8f812bee05b78e214ee97. It has been rated as critical. Affected by this issue is the function PUT of the file apps/rowboat/app/api/uploads/[fileId]/route.ts of the component Session Handler. The manipulation of the argument params leads to missing authentication. The attack may be launched remotely. Continious delivery with rolling releases is used by this product. Therefore, no version details of affected nor updated releases are available. It is expected that this issue will be fixed in the near future. |
| Missing Authentication for Critical Function vulnerability in Mitsubishi Electric Corporation MELSEC iQ-F Series CPU module allows a remote unauthenticated attacker to read or write the device values of the product and stop the operation of the programs, since MODBUS/TCP in the products does not have authentication features. |
| Improper Access Control issue in the Workflow component of Fortra's FileCatalyst allows unauthenticated users to upload arbitrary files via the order forms page. |
| Missing Authentication for Critical Function vulnerability in ABB ALS-mini-s4 IP, ABB ALS-mini-s8 IP.This issue affects .
All firmware versions with the Serial Number from 2000 to 5166 |
| microCLAUDIA in v3.2.0 and prior has an improper access control vulnerability.
This flaw allows an authenticated user to perform unauthorized actions on other organizations' systems by sending direct API requests. To do so, the attacker can use organization identifiers obtained through a compromised endpoint or deduced manually.
This vulnerability allows access between tenants, enabling an attacker to list and manage remote assets, uninstall agents, and even delete vaccines configurations. |
| An authentication bypass vulnerability exists in the WordPress Pie Register plugin ≤ 3.7.1.4 that allows unauthenticated attackers to impersonate arbitrary users by submitting a crafted POST request to the login endpoint. By setting social_site=true and manipulating the user_id_social_site parameter, an attacker can generate a valid WordPress session cookie for any user ID, including administrators. Once authenticated, the attacker may exploit plugin upload functionality to install a malicious plugin containing arbitrary PHP code, resulting in remote code execution on the underlying server. |
| FLIR Thermal Camera F/FC/PT/D Stream firmware version 8.0.0.64 contains an unauthenticated vulnerability that allows remote attackers to access live camera streams without credentials. Attackers can exploit the vulnerability to view unauthorized thermal camera video feeds across multiple camera series without requiring any authentication. |