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cpe:2.3:o:freebsd:freebsd:13.1:rc1-p1:*:*:*:*:*:*

part: o version: 13.1 update: rc1-p1

VendorFreebsd (1e86ea60-a74f-5f45-ac35-3eb819c9e064)
ProductFreebsd (be9b20ed-2a20-5a94-a224-b1a6fdcacb17)
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NotesImported from NVD CPE 2.0 feed

PURL mappings

PURLSourceLast updated
pkg:github/freebsd/freebsd-src purl2cpe 2026-06-01 10:12:45.165381

Vulnerability references

IdentifiercpeApplicabilitySubmitteddb.gcve.eu detailsRationale
CVE:CVE-2023-3494 vulnerable 2026-06-08 06:09:39.725347 bhyve privileged guest escape via fwctl
The fwctl driver implements a state machine which is executed when a bhyve guest accesses certain x86 I/O ports. The interface lets the guest copy a string into a buffer resident in the bhyve process' memory. A bug in the state machine implementation can result in a buffer overflowing when copying this string. Malicious, privileged software running in a guest VM can exploit the buffer overflow to achieve code execution on the host in the bhyve userspace process, which typically runs as root, mitigated by the capabilities assigned through the Capsicum sandbox available to the bhyve process.
Published: 2023-08-01T22:13:21.634Z
Updated: 2025-02-13T16:55:41.138Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2023-3326 vulnerable 2026-06-08 06:09:39.145421 Network authentication attack via pam_krb5
pam_krb5 authenticates a user by essentially running kinit with the password, getting a ticket-granting ticket (tgt) from the Kerberos KDC (Key Distribution Center) over the network, as a way to verify the password. However, if a keytab is not provisioned on the system, pam_krb5 has no way to validate the response from the KDC, and essentially trusts the tgt provided over the network as being valid. In a non-default FreeBSD installation that leverages pam_krb5 for authentication and does not have a keytab provisioned, an attacker that is able to control both the password and the KDC responses can return a valid tgt, allowing authentication to occur for any user on the system.
Published: 2023-06-22T16:37:51.360Z
Updated: 2024-12-05T17:45:19.729Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2023-3107 vulnerable 2026-06-08 06:09:38.555025 Remote denial of service in IPv6 fragment reassembly
A set of carefully crafted ipv6 packets can trigger an integer overflow in the calculation of a fragment reassembled packet's payload length field. This allows an attacker to trigger a kernel panic, resulting in a denial of service.
Published: 2023-08-01T22:01:07.584Z
Updated: 2025-07-09T13:45:34.790Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2023-0751 vulnerable 2026-06-08 05:52:32.529670 GELI silently omits the keyfile if read from stdin
When GELI reads a key file from standard input, it does not reuse the key file to initialize multiple providers at once resulting in the second and subsequent devices silently using a NULL key as the user key file. If a user only uses a key file without a user passphrase, the master key is encrypted with an empty key file allowing trivial recovery of the master key.
Published: 2023-02-08T19:25:01.118Z
Updated: 2025-03-25T13:47:39.852Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2022-23093 vulnerable 2026-06-08 05:40:56.297492 Stack overflow in ping(8)
ping reads raw IP packets from the network to process responses in the pr_pack() function. As part of processing a response ping has to reconstruct the IP header, the ICMP header and if present a "quoted packet," which represents the packet that generated an ICMP error. The quoted packet again has an IP header and an ICMP header. The pr_pack() copies received IP and ICMP headers into stack buffers for further processing. In so doing, it fails to take into account the possible presence of IP option headers following the IP header in either the response or the quoted packet. When IP options are present, pr_pack() overflows the destination buffer by up to 40 bytes. The memory safety bugs described above can be triggered by a remote host, causing the ping program to crash. The ping process runs in a capability mode sandbox on all affected versions of FreeBSD and is thus very constrained in how it can interact with the rest of the system at the point where the bug can occur.
Published: 2024-02-15T05:18:44.628Z
Updated: 2024-10-28T18:30:58.278Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2022-23092 vulnerable 2026-06-08 05:40:56.282463 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2022-23091 vulnerable 2026-06-08 05:40:56.281148 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2022-23089 vulnerable 2026-06-08 05:40:56.278156 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data

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