| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| General Industrial Controls Lynx+ Gateway is vulnerable to a cleartext transmission vulnerability that could allow
an attacker to observe network traffic to obtain sensitive information,
including plaintext credentials. |
| The OpenAI ChatGPT app before 2024-07-05 for macOS opts out of the sandbox, and stores conversations in cleartext in a location accessible to other apps. |
| An flaw was found in the OpenStack Platform (RHOSP) director, a toolset for installing and managing a complete RHOSP environment. Plaintext passwords may be stored in log files, which can expose sensitive information to anyone with access to the logs. |
| A security issue was discovered within the legacy Ansible playbook component of Verve Asset Manager, caused by plaintext secrets incorrectly stored when a playbook is running. This component has been retired and has been optional since the 1.36 release in 2024. |
| Insufficient encryption vulnerability in the mobile application (com.transsion.aivoiceassistant) may lead to the risk of sensitive information leakage. |
| A vulnerability was reported in version 1.0 of the Bluetooth Transmission Alliance protocol adopted by Motorola Smart Connect Android Application that could allow a nearby attacker within the Bluetooth interaction range to intercept files when transferred to a device not paired in Smart Connect. |
| Obsidian GitHub Copilot Plugin versions prior to 1.1.7 store Github API token in cleartext form. As a result, an attacker may perform unauthorized operations on the linked Github account. |
| Cleartext storage of sensitive information was discovered in Click Programming Software version v3.60. The vulnerability can be exploited by a local user with access to the file system, while an administrator session is active, to steal credentials stored in clear text. |
| This vulnerability exists in TP-Link Tapo H200 V1 IoT Smart Hub due to storage of Wi-Fi credentials in plain text within the device firmware. An attacker with physical access could exploit this by extracting the firmware and analyzing the binary data to obtain the Wi-Fi credentials stored on the vulnerable device. |
| Puwell Cloud Tech Co, Ltd 360Eyes Pro v3.9.5.16(3090516) was discovered to transmit sensitive information in cleartext. This vulnerability allows attackers to intercept and access sensitive information, including users' credentials and password change requests. |
| Cleartext storage of sensitive information in the Zoom Jenkins Marketplace plugin before version 1.4 may allow an authenticated user to conduct a disclosure of information via network access. |
| A problem with the implementation of the MACsec protocol in Palo Alto Networks PAN-OS® results in the cleartext exposure of the connectivity association key (CAK). This issue is only applicable to PA-7500 Series devices which are in an NGFW cluster.
A user who possesses this key can read messages being sent between devices in a NGFW Cluster. There is no impact in non-clustered firewalls or clusters of firewalls that do not enable MACsec. |
| The Temporal api-go library prior to version 1.44.1 did not send `update response` information to Data Converter when the proxy package within the api-go module was used in a gRPC proxy prior to transmission. This resulted in information contained within the `update response` field not having Data Converter transformations (e.g. encryption) applied. This is an issue only when using the UpdateWorkflowExecution APIs (released on 13th January 2025) with a proxy leveraging the api-go library before version 1.44.1.
Other data fields were correctly sent to Data Converter. This issue does not impact the Data Converter server. Data was encrypted in transit. Temporal Cloud services are not impacted. |
| A sensitive information disclosure vulnerability in Palo Alto Networks Prisma® Browser allows a locally authenticated non-admin user to retrieve sensitive data from Prisma Browser.
Browser self-protection should be enabled to mitigate this issue. |
| The web server of the device performs exchanges of sensitive information in clear text through an insecure protocol. |
| Cleartext transmission of sensitive information for some BigDL software maintained by Intel(R) before version 2.5.0 may allow an authenticated user to potentially enable denial of service via adjacent access. |
| Let's Encrypt client and ACME library written in Go (Lego). In versions 4.25.1 and below, the github.com/go-acme/lego/v4/acme/api package (thus the lego library and the lego cli as well) don't enforce HTTPS when talking to CAs as an ACME client. Unlike the http-01 challenge which solves an ACME challenge over unencrypted HTTP, the ACME protocol requires HTTPS when a client communicates with the CA to performs ACME functions. However, the library fails to enforce HTTPS both in the original discover URL (configured by the library user) and in the subsequent addresses returned by the CAs in the directory and order objects. If users input HTTP URLs or CAs misconfigure endpoints, protocol operations occur over HTTP instead of HTTPS. This compromises privacy by exposing request/response details like account and request identifiers to network attackers. This was fixed in version 4.25.2. |
| Cognex In-Sight Explorer and In-Sight Camera Firmware expose
a proprietary protocol on TCP port 1069 to perform management operations
such as modifying system properties. The user management functionality
handles sensitive data such as registered usernames and passwords over
an unencrypted channel, allowing an adjacent attacker to intercept valid
credentials to gain access to the device. |
| Oxide before 6 has unencrypted Control Plane datastores. |
| A vulnerability in the Palo Alto Networks PAN-OS® software enables unlicensed administrators to view clear-text data captured using the packet capture feature https://docs.paloaltonetworks.com/pan-os/11-0/pan-os-admin/monitoring/take-packet-captures/take-a-custom-packet-capture in decrypted HTTP/2 data streams traversing network interfaces on the firewall. HTTP/1.1 data streams are not impacted.
In normal conditions, decrypted packet captures are available to firewall administrators after they obtain and install a free Decryption Port Mirror license. The license requirement ensures that this feature can only be used after approved personnel purposefully activate the license. For more information, review how to configure decryption port mirroring https://docs.paloaltonetworks.com/network-security/decryption/administration/monitoring-decryption/configure-decryption-port-mirroring .
The administrator must obtain network access to the management interface (web, SSH, console, or telnet) and successfully authenticate to exploit this issue. Risk of this issue can be greatly reduced by restricting access to the management interface to only trusted administrators and from only internal IP addresses according to our recommended critical deployment guidelines https://live.paloaltonetworks.com/t5/community-blogs/tips-amp-tricks-how-to-secure-the-management-access-of-your-palo/ba-p/464431 .
Customer firewall administrators do not have access to the packet capture feature in Cloud NGFW. This feature is available only to authorized Palo Alto Networks personnel permitted to perform troubleshooting.
Prisma® Access is not impacted by this vulnerability. |