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cpe:2.3:o:freebsd:freebsd:12.4:p4:*:*:*:*:*:*

part: o version: 12.4 update: p4

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

PURL mappings

PURLSourceLast updated
pkg:github/freebsd/freebsd-src purl2cpe 2026-06-01 10:12:45.165320

Vulnerability references

IdentifiercpeApplicabilitySubmitteddb.gcve.eu detailsRationale
CVE:CVE-2023-6534 vulnerable 2026-06-08 06:19:47.565197 TCP spoofing vulnerability in pf(4)
In versions of FreeBSD 14.0-RELEASE before 14-RELEASE-p2, FreeBSD 13.2-RELEASE before 13.2-RELEASE-p7 and FreeBSD 12.4-RELEASE before 12.4-RELEASE-p9, the pf(4) packet filter incorrectly validates TCP sequence numbers.  This could allow a malicious actor to execute a denial-of-service attack against hosts behind the firewall.
Published: 2023-12-13T08:12:14.616Z
Updated: 2025-02-13T17:26:26.737Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2023-5941 vulnerable 2026-06-08 06:19:45.165022 libc stdio buffer overflow
In versions of FreeBSD 12.4-RELEASE prior to 12.4-RELEASE-p7 and FreeBSD 13.2-RELEASE prior to 13.2-RELEASE-p5 the __sflush() stdio function in libc does not correctly update FILE objects' write space members for write-buffered streams when the write(2) system call returns an error.  Depending on the nature of an application that calls libc's stdio functions and the presence of errors returned from the write(2) system call (or an overridden stdio write routine) a heap buffer overflow may occur. Such overflows may lead to data corruption or the execution of arbitrary code at the privilege level of the calling program.
Published: 2023-11-08T08:52:26.564Z
Updated: 2025-02-13T17:25:58.008Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2023-5368 vulnerable 2026-06-08 06:19:43.426917 msdosfs data disclosure
On an msdosfs filesystem, the 'truncate' or 'ftruncate' system calls under certain circumstances populate the additional space in the file with unallocated data from the underlying disk device, rather than zero bytes. This may permit a user with write access to files on a msdosfs filesystem to read unintended data (e.g. from a previously deleted file).
Published: 2023-10-04T03:38:09.357Z
Updated: 2024-08-02T07:59:43.658Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2023-4809 vulnerable 2026-06-08 06:16:14.621875 pf incorrectly handles multiple IPv6 fragment headers
In pf packet processing with a 'scrub fragment reassemble' rule, a packet containing multiple IPv6 fragment headers would be reassembled, and then immediately processed. That is, a packet with multiple fragment extension headers would not be recognized as the correct ultimate payload. Instead a packet with multiple IPv6 fragment headers would unexpectedly be interpreted as a fragmented packet, rather than as whatever the real payload is. As a result, IPv6 fragments may bypass pf firewall rules written on the assumption all fragments have been reassembled and, as a result, be forwarded or processed by the host.
Published: 2023-09-06T19:26:45.833Z
Updated: 2025-02-13T17:18:10.982Z
Reference links
Imported from gcve-enriched-dumps CVE data

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