| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| System environment variables are recorded in Docker Desktop diagnostic logs, when using shell auto-completion. This leads to unintentional disclosure of sensitive information such as api keys, passwords, etc.
A malicious actor with read access to these logs could obtain secrets and further use them to gain unauthorized access to other systems. Starting with version 4.43.0 Docker Desktop no longer logs system environment variables as part of diagnostics log collection. |
| apko is an apk-based OCI image builder. apko exposures HTTP basic auth credentials from repository and keyring URLs in log output. This vulnerability is fixed in v0.14.5. |
| Hitachi Ops Center Common Services within Hitachi Ops Center OVA contains an information exposure vulnerability.
This issue affects Hitachi Ops Center Common Services: from 11.0.3-00 before 11.0.4-00. |
| A problem with the Palo Alto Networks Cortex XDR Microsoft 365 Defender Pack can result in exposure of user credentials in application logs. Normally, these application logs are only viewable by local users and are included when generating logs for troubleshooting purposes. This means that these credentials are exposed to recipients of the application logs. |
| The AuthKit library for Remix provides convenient helpers for authentication and session management using WorkOS & AuthKit with Remix. In affected versions refresh tokens are logged to the console when the disabled by default `debug` flag, is enabled. This issue has been patched in version 0.4.1. All users are advised to upgrade. There are no known workarounds for this vulnerability. |
| The SAP NetWeaver Application Server ABAP and ABAP Platform Internet Communication Manager (ICM) permits authorized users with admin privileges and local access to log files to read sensitive information, resulting in information disclosure. This leads to high impact on the confidentiality of the application, with no impact on integrity or availability. |
| Versions of the package ray before 2.43.0 are vulnerable to Insertion of Sensitive Information into Log File where the redis password is being logged in the standard logging. If the redis password is passed as an argument, it will be logged and could potentially leak the password.
This is only exploitable if:
1) Logging is enabled;
2) Redis is using password authentication;
3) Those logs are accessible to an attacker, who can reach that redis instance.
**Note:**
It is recommended that anyone who is running in this configuration should update to the latest version of Ray, then rotate their redis password. |
| Okta On-Premises Provisioning (OPP) agents log certain user data during administrator-initiated password resets. This vulnerability allows an attacker with access to the local servers running OPP agents to retrieve user personal information and temporary passwords created during password reset. You are affected by this vulnerability if the following preconditions are met: Local server running OPP agent with versions >=2.2.1 and <= 2.3.0, and User account has had an administrator-initiated password reset while using the affected versions. |
| The source-controller is a Kubernetes operator, specialised in artifacts acquisition from external sources such as Git, OCI, Helm repositories and S3-compatible buckets. The source-controller implements the source.toolkit.fluxcd.io API and is a core component of the GitOps toolkit. Prior to version 1.2.5, when source-controller was configured to use an Azure SAS token when connecting to Azure Blob Storage, the token was logged along with the Azure URL when the controller encountered a connection error. An attacker with access to the source-controller logs could use the token to gain access to the Azure Blob Storage until the token expires. This vulnerability was fixed in source-controller v1.2.5. There is no workaround for this vulnerability except for using a different auth mechanism such as Azure Workload Identity. |
| Sentry is a developer-first error tracking and performance monitoring platform. Sentry's Slack integration incorrectly records the incoming request body in logs. This request data can contain sensitive information, including the deprecated Slack verification token. With this verification token, it is possible under specific configurations, an attacker can forge requests and act as the Slack integration. The request body is leaked in log entries matching `event == "slack.*" && name == "sentry.integrations.slack" && request_data == *`. The deprecated slack verification token, will be found in the `request_data.token` key. **SaaS users** do not need to take any action. **Self-hosted users** should upgrade to version 24.5.0 or higher, rotate their Slack verification token, and use the Slack Signing Secret instead of the verification token. For users only using the `slack.signing-secret` in their self-hosted configuration, the legacy verification token is not used to verify the webhook payload. It is ignored. Users unable to upgrade should either set the `slack.signing-secret` instead of `slack.verification-token`. The signing secret is Slack's recommended way of authenticating webhooks. By having `slack.singing-secret` set, Sentry self-hosted will no longer use the verification token for authentication of the webhooks, regardless of whether `slack.verification-token` is set or not. Alternatively if the self-hosted instance is unable to be upgraded or re-configured to use the `slack.signing-secret`, the logging configuration can be adjusted to not generate logs from the integration. The default logging configuration can be found in `src/sentry/conf/server.py`. **Services should be restarted once the configuration change is saved.**
|
| Microsoft Identity Web is a library which contains a set of reusable classes used in conjunction with ASP.NET Core for integrating with the Microsoft identity platform (formerly Azure AD v2.0 endpoint) and AAD B2C. This vulnerability affects confidential client applications, including daemons, web apps, and web APIs. Under specific circumstances, sensitive information such as client secrets or certificate details may be exposed in the service logs of these applications. Service logs are intended to be handled securely. Service logs generated at the information level or credential descriptions containing local file paths with passwords, Base64 encoded values, or Client secret. Additionally, logs of services using Base64 encoded certificates or certificate paths with password credential descriptions are also affected if the certificates are invalid or expired, regardless of the log level. Note that these credentials are not usable due to their invalid or expired status. To mitigate this vulnerability, update to Microsoft.Identity.Web 3.8.2 or Microsoft.Identity.Abstractions 9.0.0. |
| An information disclosure vulnerability exists in Yugabyte Anywhere, where the LDAP bind password is logged in plaintext within application logs. This flaw results in the unintentional exposure of sensitive information in Yugabyte Anywhere logs, potentially allowing unauthorized users with access to these logs to view the LDAP bind password. An attacker with log access could exploit this vulnerability to gain unauthorized access to the LDAP server, leading to potential exposure or compromise of LDAP-managed resources
This issue affects YugabyteDB Anywhere: from 2.20.0.0 before 2.20.7.0, from 2.23.0.0 before 2.23.1.0, from 2024.1.0.0 before 2024.1.3.0. |
| SAP Web Dispatcher and Internet Communication Manager allow an attacker with administrative privileges to enable debugging trace mode with a specific parameter value. This exposes unencrypted passwords in the logs, causing a high impact on the confidentiality of the application. There is no impact on integrity or availability. |
| An information disclosure vulnerability exists in the backup configuration process where the SAS token is not masked in the configuration response. This oversight results in sensitive information leakage within the yb_backup log files, exposing the SAS token in plaintext. The leakage occurs during the backup procedure, leading to potential unauthorized access to resources associated with the SAS token. This issue affects YugabyteDB Anywhere: from 2.20.0.0 before 2.20.7.0, from 2.23.0.0 before 2.23.1.0, from 2024.1.0.0 before 2024.1.3.0. |
| The matrix-sdk-crypto crate, part of the Matrix Rust SDK project, is an implementation of a Matrix end-to-end encryption state machine in Rust. In Matrix, the server-side `key backup` stores encrypted copies of Matrix message keys. This facilitates key sharing between a user's devices and provides a redundant copy in case all devices are lost. The key backup uses asymmetric
cryptography, with each server-side key backup assigned a unique public-private key pair. Due to a logic bug introduced in commit 71136e44c03c79f80d6d1a2446673bc4d53a2067, matrix-sdk-crypto version 0.7.0 will sometimes log the private part of the backup key pair to Rust debug logs (using the `tracing` crate). This issue has been resolved in matrix-sdk-crypto version 0.7.1. No known workarounds are available. |
| AnyDesk through 8.1.0 on Windows, when Allow Direct Connections is enabled, inadvertently exposes a public IP address within network traffic. The attacker must know the victim's AnyDesk ID. |
| NVIDIA Cumulus Linux and NVOS products contain a vulnerability, where hashed user passwords are not properly suppressed in log files, potentially disclosing information to unauthorized users. |
| Passwords are stored in clear-text logs. An attacker can retrieve passwords. As for the affected products/models/versions, see the reference URL. |
| Insertion of Sensitive Information into Log File vulnerability in Hitachi Ops Center Administrator allows local users to gain sensitive information.This issue affects Hitachi Ops Center Administrator: before 11.0.1.
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| The sessions are stored in clear-text logs. An attacker can retrieve authentication sessions. A remote attacker can retrieve the credentials and bypass the authentication mechanism. As for the affected products/models/versions, see the reference URL. |