| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Information exposure vulnerability in the MRW plugin, in its 5.4.3 version, affecting the "mrw_log" functionality. This vulnerability could allow a remote attacker to obtain other customers' order information and access sensitive information such as name and phone number. This vulnerability also allows an attacker to create or overwrite shipping labels. |
| CORSAIR iCUE 5.9.105 with iCUE Murals on Windows allows unprivileged users to insert DLL files in the cuepkg-1.2.6 subdirectory of the installation directory. |
| Exposure of Sensitive Information to an Unauthorized Actor vulnerability in LWS LWS Hide Login allows Accessing Functionality Not Properly Constrained by ACLs.This issue affects LWS Hide Login: from n/a through 2.1.8. |
| fuels-ts is a library for interacting with Fuel v2. The typescript SDK has no awareness of to-be-spent transactions causing some transactions to fail or silently get pruned as they are funded with already used UTXOs. The problem occurs, because the `fund` function in `fuels-ts/packages/account/src/account.ts` gets the needed ressources statelessly with the function `getResourcesToSpend` without taking into consideration already used UTXOs. This issue will lead to unexpected SDK behaviour, such as a transaction not getting included in the `txpool` / in a block or a previous transaction silently getting removed from the `txpool` and replaced with a new one. |
| Observable timing discrepancy in some Intel(R) QAT Engine for OpenSSL software before version v1.6.1 may allow information disclosure via network access. |
| Inadequate input validation exposes the system to potential remote code execution (RCE) risks. Attackers can exploit this vulnerability by appending shell commands to the Speed-Measurement feature, enabling unauthorized code execution. |
| The WP Encryption – One Click Free SSL Certificate & SSL / HTTPS Redirect to Force HTTPS, SSL Score plugin for WordPress is vulnerable to Sensitive Information Exposure in all versions up to, and including, 7.0 via exposed Private key files. This makes it possible for unauthenticated attackers to extract sensitive data including TLS Certificate Private Keys |
| Some parameters of the alarm clock module are improperly stored, leaking some sensitive information. |
| Senstar Symphony FetchStoredLicense Information Disclosure Vulnerability. This vulnerability allows remote attackers to disclose sensitive information on affected installations of Senstar Symphony. Authentication is not required to exploit this vulnerability.
The specific flaw exists within the implementation of FetchStoredLicense method. The issue results from the exposure of sensitive information. An attacker can leverage this vulnerability to disclose stored credentials, leading to further compromise. Was ZDI-CAN-26908. |
| An issue discovered in OpenWrt 18.06, 19.07, 21.02, 22.03, and beyond allows off-path attackers to hijack TCP sessions, which could lead to a denial of service, impersonating the client to the server (e.g., for access to files over FTP), and impersonating the server to the client (e.g., to deliver false information from a finance website). This occurs because nf_conntrack_tcp_no_window_check is true by default. |
| The Content Control – The Ultimate Content Restriction Plugin! Restrict Content, Create Conditional Blocks & More plugin for WordPress is vulnerable to Sensitive Information Exposure in all versions up to, and including, 2.1.0 via the API. This makes it possible for unauthenticated attackers to extract post titles, IDs, slugs, statuses and other information including post content. This includes published content only. |
| pwn.college is an education platform to learn about, and practice, core cybersecurity concepts in a hands-on fashion. Incorrect symlink checks on user specified dojos allows for users (admin not required) to perform an LFI from the CTFd container. When a user clones or updates repositories, a check is performed to see if the repository had contained any symlinks. A malicious user could craft a repository with symlinks pointed to sensitive files and then retrieve them using the CTFd website. |
| The GenerateBlocks plugin for WordPress is vulnerable to Sensitive Information Exposure in all versions up to, and including, 1.9.1 via the 'get_image_description' function. This makes it possible for authenticated attackers, with Contributor-level access and above, to extract sensitive data including the content of private, draft, and scheduled posts and pages. |
| Playloom Engine is an open-source, high-performance game development engine. Engine Beta v0.0.1 has a security vulnerability related to data storage, specifically when using the collaboration features. When collaborating with another user, they may have access to personal information you have entered into the software. This poses a risk to user privacy. The maintainers of Playloom Engine have temporarily disabled the collaboration feature until a fix can be implemented. When Engine Beta v0.0.2 is released, it is expected to contain a patch addressing this issue. Users should refrain from using the collaboration feature in the meantime. |
| Observable discrepancy in some Intel(R) QAT Engine for OpenSSL software before version v1.6.1 may allow information disclosure via network access. |
| A security issue was discovered in Kubernetes where users may be able to launch containers that bypass the mountable secrets policy enforced by the ServiceAccount admission plugin when using containers, init containers, and ephemeral containers with the envFrom field populated. The policy ensures pods running with a service account may only reference secrets specified in the service account’s secrets field. Kubernetes clusters are only affected if the ServiceAccount admission plugin and the kubernetes.io/enforce-mountable-secrets annotation are used together with containers, init containers, and ephemeral containers with the envFrom field populated. |
| Certain software builds for the Nokia C200 and Nokia C100 Android devices contain a vulnerable, pre-installed app with a package name of com.tracfone.tfstatus (versionCode='31', versionName='12') that allows local third-party apps to execute arbitrary AT commands in its context (radio user) via AT command injection due to inadequate access control and inadequate input filtering. No permissions or special privileges are necessary to exploit the vulnerability in the com.tracfone.tfstatus app. No user interaction is required beyond installing and running a third-party app. The software build fingerprints for each confirmed vulnerable device are as follows: Nokia C200 (Nokia/Drake_02US/DRK:12/SP1A.210812.016/02US_1_080:user/release-keys and Nokia/Drake_02US/DRK:12/SP1A.210812.016/02US_1_040:user/release-keys) and Nokia C100 (Nokia/DrakeLite_02US/DKT:12/SP1A.210812.016/02US_1_270:user/release-keys, Nokia/DrakeLite_02US/DKT:12/SP1A.210812.016/02US_1_190:user/release-keys, Nokia/DrakeLite_02US/DKT:12/SP1A.210812.016/02US_1_130:user/release-keys, Nokia/DrakeLite_02US/DKT:12/SP1A.210812.016/02US_1_110:user/release-keys, Nokia/DrakeLite_02US/DKT:12/SP1A.210812.016/02US_1_080:user/release-keys, and Nokia/DrakeLite_02US/DKT:12/SP1A.210812.016/02US_1_050:user/release-keys). This malicious app sends a broadcast Intent to the receiver component named com.tracfone.tfstatus/.TFStatus. This broadcast receiver extracts a string from the Intent and uses it as an extra when it starts the com.tracfone.tfstatus/.TFStatusActivity activity component which uses the externally controlled string as an input to execute an AT command. There are two different injection techniques to successfully inject arbitrary AT commands to execute. |
| A security vulnerability was discovered in the local status page functionality of Cisco Meraki’s MX67 and MX68 security appliance models that may allow unauthenticated individuals to access and download logs containing sensitive, privileged device information. The vulnerability is due to improper access control to the files holding debugging and maintenance information, and is only exploitable when the local status page is enabled on the device. An attacker exploiting this vulnerability may obtain access to wireless pre-shared keys, Site-to-Site VPN key and other sensitive information. Under certain circumstances, this information may allow an attacker to obtain administrative-level access to the device. |
| i2p before 2.3.0 (Java) allows de-anonymizing the public IPv4 and IPv6 addresses of i2p hidden services (aka eepsites) via a correlation attack across the IPv4 and IPv6 addresses that occurs when a tunneled, replayed message has a behavior discrepancy (it may be dropped, or may result in a Wrong Destination response). An attack would take days to complete. |
| A certain software build for the Orbic Maui device (Orbic/RC545L/RC545L:10/ORB545L_V1.4.2_BVZPP/230106:user/release-keys) leaks the IMEI and the ICCID to system properties that can be accessed by any local app on the device without any permissions or special privileges. Google restricted third-party apps from directly obtaining non-resettable device identifiers in Android 10 and higher, but in this instance they are leaked by a high-privilege process and can be obtained indirectly. This malicious app reads from the "persist.sys.verizon_test_plan_imei" system property to indirectly obtain the IMEI and reads the "persist.sys.verizon_test_plan_iccid" system property to obtain the ICCID. |