| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| A flaw was found in operator-sdk-builder. Due to an oversight in the Containerfile configuration, the final built container image runs with root privileges by default. This increases the attack surface of the container, as any process executed within it will have elevated permissions. If a malicious actor compromises the container, they could leverage these root privileges to perform unauthorized actions, potentially leading to a broader system compromise. |
| A flaw was found in operator-foundry. GitHub Actions and reusable workflows within the component are referenced using mutable tags (e.g., `@v0`, `@v4`) instead of fixed commit SHAs. This allows an attacker to potentially alter the code executed in the Continuous Integration (CI) pipeline through an upstream compromise or by re-pointing a tag, leading to unauthorized code execution or manipulation. |
| A flaw was found in operator-foundry. Untrusted external actors can exploit over-permissive GitHub access tokens and Google Cloud Platform (GCP) Workload Identity Federation credentials granted to a third-party reusable workflow. By invoking this workflow on untrusted-triggerable events without sufficient authorization checks, an attacker could gain highly privileged access to GitHub and cloud resources, potentially leading to unauthorized control. |
| A flaw was found in konflux-operator-tasks. GitHub Actions within this component are configured to use mutable tags or branches instead of specific, immutable commit SHAs. This vulnerability could allow a remote attacker to introduce malicious code into the build process if they compromise the referenced mutable tag or branch. Such a compromise could lead to unauthorized code execution or integrity issues within the affected system. |
| A flaw was found in olm-operator-konflux-sample. The build pipelines use mutable floating tags to reference runtime base images instead of immutable SHA256 digests. This configuration allows for the content of the base images to be altered without detection, potentially leading to the introduction of malicious code or unexpected changes in the build process. An attacker could exploit this to compromise the integrity of the software supply chain. |
| A flaw was found in operator-sdk-builder. The repository lacks automated dependency-update configurations for its git submodules, Containerfile base image, and Tekton bundle references. This absence prevents the automatic flagging of stale or vulnerable dependencies. Consequently, this could lead to the inclusion of known vulnerable components in the build process, increasing the risk of security exposures. |
| A flaw was found in operator-sdk-builder. The containers-policy.json configuration file defaults to insecureAcceptAnything for container image registries that are not explicitly listed. This default setting causes signature verification to be entirely skipped for images pulled from these unlisted registries, which could allow for the use of untrusted or malicious container images. |
| A flaw was found in operator-foundry. The path-containment check, designed to restrict file access within a build context, only performs string-based validation. It fails to resolve symbolic links (symlinks), allowing an attacker to create a symlink within the build context that points to files or directories outside of it. This could enable unauthorized access to files beyond the intended confinement. |
| An issue discovered in provectus kafka-ui 0.4.0 through 0.7.2 allows remote attackers to execute arbitrary code via the q parameter of /api/clusters/local/topics/{topic}/messages. No fixed release is available; the project has had no commit since 2024-04-08. |
| A flaw in the libcurl SASL negotiation for LDAP authentication allows an
incomplete handshake sequence to be misinterpreted as a successful
cryptographic verification. An attacker executing a Man-in-the-Middle (MITM)
attack can inject a premature or shortcut response that bypasses complete peer
validation. |
| A flaw in libcurl makes it wrongly reuse an HTTP connection setup for a given
hostname using Negotiate authentication, when the initial request is done
using empty credentials. This can make user B's request get sent over user A's
previously authenticated connection. |
| A improper validation of certificate with host mismatch vulnerability in Fortinet FortiOS 7.6.1 through 7.6.6, FortiProxy 7.6.2 through 7.6.6 may allow attacker to information disclosure via <insert attack vector here> |
| A NULL Pointer Dereference vulnerability [CWE-476] vulnerability in Fortinet FortiOS 7.4 all versions, FortiOS 7.2 all versions, FortiPAM 1.9.0, FortiPAM 1.8 all versions, FortiPAM 1.7 all versions, FortiPAM 1.6 all versions, FortiPAM 1.5 all versions, FortiPAM 1.4 all versions, FortiPAM 1.3 all versions, FortiPAM 1.2 all versions, FortiPAM 1.1 all versions, FortiPAM 1.0 all versions, FortiProxy 7.6.0 through 7.6.6, FortiProxy 7.4 all versions, FortiProxy 7.2 all versions may allow an authenticated attacker to crash the httpsd daemon via crafted HTTP requests. |
| An improper access control vulnerability in Fortinet FortiManager 7.6.0 through 7.6.4, FortiManager 7.4.0 through 7.4.10, FortiManager 7.2 all versions, FortiManager Cloud 7.6.2 through 7.6.4, FortiManager Cloud 7.4.1 through 7.4.10, FortiManager Cloud 7.2 all versions may allow an administrator to bypass the approval process for workflow sessions via crafted HTTP or HTTPs requests. |
| A improper access control vulnerability in Fortinet FortiSOAR PaaS 7.6.0 through 7.6.6, FortiSOAR PaaS 7.5.0 through 7.5.3, FortiSOAR PaaS 7.4 all versions, FortiSOAR PaaS 7.3 all versions, FortiSOAR on-premise 7.6.0 through 7.6.6, FortiSOAR on-premise 7.5.0 through 7.5.3, FortiSOAR on-premise 7.4 all versions, FortiSOAR on-premise 7.3 all versions may allow attacker to escalation of privilege via <insert attack vector here> |
| A improper neutralization of special elements used in a command ('command injection') vulnerability in Fortinet FortiSandbox 5.2.0, FortiSandbox 5.0.0 through 5.0.6, FortiSandbox 4.4.0 through 4.4.9 may allow attacker to execute unauthorized code or commands via <insert attack vector here> |
| Improper neutralization of input during web page generation ('cross-site scripting') in Skype for Business allows an unauthorized attacker to perform spoofing over a network. |
| Improper Limitation of a Pathname to a Restricted Directory ('Path Traversal') (CWE-22) in Elastic Maps Server can lead to information disclosure via Path Traversal (CAPEC-126). An unauthenticated attacker able to reach the service over the network could cause it to return the contents of files outside its intended content directory that are readable by the server process. |
| ** REJECT ** DO NOT USE THIS CANDIDATE NUMBER. Reason: This candidate was issued in error. Notes: All references and descriptions in this candidate have been removed to prevent accidental usage. |
| Nango before 0.71.6 contains a missing authentication vulnerability in the runner tRPC server that allows unauthenticated attackers to execute arbitrary JavaScript code by invoking the exposed start procedure without credentials. Attackers with network access to the runner port can send requests to the unauthenticated start procedure, bypassing the unenforced RUNNER_SECRET_KEY environment variable, to achieve remote code execution within the runner process. |