🛡️ USN-6347-1 — linux-azure-fde-5.15

⚪ Unknown ✅ No Known Exploit OSV
N/A
CVSS Score
0 Low4 Medium7 High9 Critical10

Description

linux-azure-fde-5.15 vulnerabilities

William Zhao discovered that the Traffic Control (TC) subsystem in the

Linux kernel did not properly handle network packet retransmission in

certain situations. A local attacker could use this to cause a denial of

service (kernel deadlock). (CVE-2022-4269)

It was discovered that the NTFS file system implementation in the Linux

kernel did not properly check buffer indexes in certain situations, leading

to an out-of-bounds read vulnerability. A local attacker could possibly use

this to expose sensitive information (kernel memory). (CVE-2022-48502)

Seth Jenkins discovered that the Linux kernel did not properly perform

address randomization for a per-cpu memory management structure. A local

attacker could use this to expose sensitive information (kernel memory) or

in conjunction with another kernel vulnerability. (CVE-2023-0597)

It was discovered that a race condition existed in the btrfs file system

implementation in the Linux kernel, leading to a use-after-free

vulnerability. A local attacker could use this to cause a denial of service

(system crash) or possibly expose sensitive information. (CVE-2023-1611)

It was discovered that the APM X-Gene SoC hardware monitoring driver in the

Linux kernel contained a race condition, leading to a use-after-free

vulnerability. A local attacker could use this to cause a denial of service

(system crash) or expose sensitive information (kernel memory).

(CVE-2023-1855)

It was discovered that the ST NCI NFC driver did not properly handle device

removal events. A physically proximate attacker could use this to cause a

denial of service (system crash). (CVE-2023-1990)

Ruihan Li discovered that the bluetooth subsystem in the Linux kernel did

not properly perform permissions checks when handling HCI sockets. A

physically proximate attacker could use this to cause a denial of service

(bluetooth communication). (CVE-2023-2002)

It was discovered that the XFS file system implementation in the Linux

kernel did not properly perform metadata validation when mounting certain

images. An attacker could use this to specially craft a file system image

that, when mounted, could cause a denial of service (system crash).

(CVE-2023-2124)

Juan Jose Lopez Jaimez, Meador Inge, Simon Scannell, and Nenad Stojanovski

discovered that the BPF verifier in the Linux kernel did not properly mark

registers for precision tracking in certain situations, leading to an out-

of-bounds access vulnerability. A local attacker could use this to cause a

denial of service (system crash) or possibly execute arbitrary code.

(CVE-2023-2163)

It was discovered that the SLIMpro I2C device driver in the Linux kernel

did not properly validate user-supplied data in some situations, leading to

an out-of-bounds write vulnerability. A privileged attacker could use this

to cause a denial of service (system crash) or possibly execute arbitrary

code. (CVE-2023-2194)

It was discovered that the perf subsystem in the Linux kernel contained a

use-after-free vulnerability. A privileged local attacker could possibly

use this to cause a denial of service (system crash) or possibly execute

arbitrary code. (CVE-2023-2235)

Zheng Zhang discovered that the device-mapper implementation in the Linux

kernel did not properly handle locking during table_clear() operations. A

local attacker could use this to cause a denial of service (kernel

deadlock). (CVE-2023-2269)

It was discovered that the ARM Mali Display Processor driver implementation

in the Linux kernel did not properly handle certain error conditions. A

local attacker could possibly use this to cause a denial of service (system

crash). (CVE-2023-23004)

It was discovered that a race condition existed in the TLS subsystem in the

Linux kernel, leading to a use-after-free or a null pointer dereference

vulnerability. A local attacker could use this to cause a denial of service

(system crash) or possibly execute arbitrary code. (CVE-2023-28466)

It was discovered that the DA9150 charger driver in the Linux kernel did

not properly handle device removal, leading to a user-after free

vulnerability. A physically proximate attacker could use this to cause a

denial of service (system crash) or possibly execute arbitrary code.

(CVE-2023-30772)

It was discovered that the Ricoh R5C592 MemoryStick card reader driver in

the Linux kernel contained a race condition during module unload, leading

to a use-after-free vulnerability. A local attacker could use this to cause

a denial of service (system crash) or possibly execute arbitrary code.

(CVE-2023-3141)

Quentin Minster discovered that the KSMBD implementation in the Linux

kernel did not properly validate pointers in some situations, leading to a

null pointer dereference vulnerability. A remote attacker could use this to

cause a denial of service (system crash). (CVE-2023-32248)

It was discovered that the kernel->user space relay implementation in the

Linux kernel did not properly perform certain buffer cal

Affected software

USN-6347-1 is recorded against 1 package.

  • linux-azure-fde-5.15 (fixed in 5.15.0-1043.50~20.04.1.1)

Timeline and source

Published on 6 September 2023 and last revised on 3 June 2026. No public exploit is currently recorded for this entry. Record sourced from OSV.

References

ubuntu.com (Advisory)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)
ubuntu.com (Report)

Details

Severity Unknown
CVSS Score N/A
CVSS Vector N/A
CWE N/A
Public Exploit ✅ No
Source OSV
Published 2023-09-06
Updated 2026-08-12
Modified 2026-06-03
Fix URL N/A

Affected Packages

Software From version Fixed in
linux-azure-fde-5.15 5.15.0-1043.50~20.04.1.1

References

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