| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause SQL injection. A successful exploit of this vulnerability might lead to code execution, data tampering, denial of service, and information disclosure. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause missing authentication for a critical function. A successful exploit of this vulnerability might lead to data tampering, denial of service, and information disclosure. |
| A vulnerability was found in CRI-O related to the container checkpoint and restore feature. When CRI-O is configured to restore containers from checkpoint archives, insufficient validation of restore metadata may allow a user with sufficient privileges to perform unintended operations on the host filesystem. Successful exploitation requires that container checkpoint and restore functionality is enabled, which is not the default configuration. An attacker must also be able to trigger restoration of a container from untrusted checkpoint content. |
| A heap out-of-bounds write vulnerability was found in the Linux kernel's RPC-over-RDMA server reply path in net/sunrpc/xprtrdma/svc_rdma_sendto.c. When a crafted RPC-over-RDMA client sends a large NFS READ request with an empty Write list and no Reply chunk, the server linearizes the entire multi-page reply into a fixed-size 4096-byte heap buffer without bounds checking, resulting in a kernel heap overflow. This can lead to denial of service via kernel crash or potential code execution through corruption of adjacent kernel heap objects. |
| NVIDIA NeMo Speech for all platforms contains a vulnerability in the speech data explorer component, where malicious data created by an attacker could cause remote code execution. A successful exploit of this vulnerability might lead to code execution, escalation of privileges, information disclosure, and data tampering. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause uncontrolled resource consumption. A successful exploit of this vulnerability might lead to denial of service. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause use of a hard-coded password. A successful exploit of this vulnerability might lead to data tampering, denial of service, and information disclosure. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause an improper authentication issue. A successful exploit of this vulnerability might lead to escalation of privileges, information disclosure, and data tampering. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause an XML injection. A successful exploit of this vulnerability might lead to data tampering and denial of service. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause external control of a file name or path. A successful exploit of this vulnerability might lead to code execution, escalation of privileges, data tampering, and denial of service. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause improper certificate validation. A successful exploit of this vulnerability might lead to information disclosure, data tampering, and denial of service. |
| NVIDIA Infrastructure Controller for Linux contains a vulnerability where an attacker could cause OS command injection. A successful exploit of this vulnerability might lead to code execution, data tampering, denial of service, and information disclosure. |
| NVIDIA NeMo contains a vulnerability in its dataset-loading workflow where a maliciously crafted model_config.yaml can inject unsafe parameters. A successful exploit of this vulnerability may lead to code execution, data tampering, denial of service, and information disclosure. |
| NVIDIA NeMo contains a vulnerability in the TabularTokenizer class where it deserializes an untrusted, attacker-controlled .pkl file via pickle.load() without validation. A successful exploit of this vulnerability may lead to code execution, data tampering, denial of service, and information disclosure. |
| SAP Fiori Launchpad does not sufficiently validate certain user-controlled input. An unauthenticated attacker could craft a malicious link that, when clicked by an authenticated user, causes the browser to load attacker-controlled content from an external location. This could be used to exfiltrate sensitive information from the victim's session, resulting in a high impact on confidentiality. There is no impact on integrity and availability. |
| A flaw was found in rpcbind. This vulnerability allows a remote, unauthenticated attacker to cause a Denial of Service (DoS) by sending a large number of unique requests. The rpcbind service records previously unseen RPC (Remote Procedure Call) statistics in unbounded in-memory lists, leading to persistent memory growth and increased CPU usage. This can degrade or exhaust service availability. |
| A heap-based buffer overflow was found in the DHCPv6 and TFTP response builders of libslirp. When the host is configured with a small interface MTU, a guest-supplied DHCPv6 CLIENTID option or TFTP blksize option can overflow the reply buffer with attacker-controlled content and length, resulting in denial of service and potentially arbitrary code execution in the host process. The default interface MTU is not affected. |
| Privilege escalation due to weak configuration while temporary file handling. |
| Improper authorization leads to Remote Code Execution via SocketIO interface. |
| Transient DOS when processing authentication frames with invalid FILS information element header lengths. |