Rocky Linux 9.6 [TuxCare] 安全更新:kernel / kernel-abi-stablelists / kernel-core / 等多个漏洞 (ALMALINUX9.6:CLSA-2026:1786352940)

high Nessus 插件 ID 360569

简介

Rocky Linux 主机缺少一个或多个安全更新。

描述

Rocky Linux 9.6 主机上存在安装的程序包,该程序包受到 TuxCare ALMALINUX9.6:CLSA-2026:1786352940公告中提及的多个漏洞的影响。

- 已修复 Linux 内核中的下列漏洞:serial: imx: fix tx statemachine deadlock When using the serial port as RS485 port, the tx statemachine is used to control the RTS pin to drive the RS485 transceiver TX_EN pin. When the TTY port is closed in the middle of a transmission (for instance during userland application crash), imx_uart_shutdown disables the interface and disables the Transmission Complete interrupt. afer that, imx_uart_stop_tx bails on an incomplete transmission, to be retriggered by the TC interrupt. This interrupt is disabled and therefore the tx statemachine never transitions out of SEND. The statemachine is in deadlock now, and the TX_EN remains low, making the interface useless. imx_uart_stop_tx now checks for incomplete transmission AND whether TC interrupts are enabled before bailing to be retriggered. This makes sure the state machine handling is reached, and is properly set to WAIT_AFTER_SEND. (CVE-2023-52456)

- 已修复 Linux 内核中的下列漏洞:kdb: Fix buffer overflow during tab-complete Currently, when the user attempts symbol completion with the Tab key, kdb will use strncpy() to insert the completed symbol into the command buffer. Unfortunately it passes the size of the source buffer rather than the destination to strncpy() with predictably horrible results. Most obviously if the command buffer is already full but cp, the cursor position, is in the middle of the buffer, then we will write past the end of the supplied buffer. Fix this by replacing the dubious strncpy() calls with memmove()/memcpy() calls plus explicit boundary checks to make sure we have enough space before we start moving characters around. (CVE-2024-39480)

- 已修复 Linux 内核中的下列漏洞:Fix userfaultfd_api to return EINVAL as expected Currently if we request a feature that is not set in the Kernel config we fail silently and return all the available features. However, the man page indicates we should return an EINVAL. We need to fix this issue since we can end up with a Kernel warning should a program request the feature UFFD_FEATURE_WP_UNPOPULATED on a kernel with the config not set with this feature. [ 200.812896] WARNING:
CPU: 91 PID: 13634 at mm/memory.c:1660 zap_pte_range+0x43d/0x660 [ 200.820738] Modules linked in: [200.869387] CPU: 91 PID: 13634 Comm: userfaultfd Kdump: loaded Not tainted 6.9.0-rc5+ #8 [ 200.877477] Hardware name: Dell Inc. PowerEdge R6525/0N7YGH, BIOS 2.7.3 03/30/2022 [ 200.885052] RIP:
0010:zap_pte_range+0x43d/0x660 (CVE-2024-41027)

- 已修复 Linux 内核中的下列漏洞:mlxsw: core_linecards: Fix double memory deallocation in case of invalid INI file In case of invalid INI file mlxsw_linecard_types_init() deallocates memory but doesn't reset pointer to NULL and returns 0. In case of any error occurred after mlxsw_linecard_types_init() call, mlxsw_linecards_init() calls mlxsw_linecard_types_fini() which performs memory deallocation again. Add pointer reset to NULL. Found by Linux Verification Center (linuxtesting.org) with SVACE. (CVE-2024-42138)

- 已修复 Linux 内核中的下列漏洞:x86/tdx: Fix data leak in mmio_read() The mmio_read() function makes a TDVMCALL to retrieve MMIO data for an address from the VMM. Sean noticed that mmio_read() unintentionally exposes the value of an initialized variable (val) on the stack to the VMM. This variable is only needed as an output value. It did not need to be passed to the VMM in the first place. Do not send the original value of *val to the VMM. [ dhansen: clarify what 'val' is used for. ] (CVE-2024-46794)

请注意,Nessus 尚未测试这些问题,而是只依据应用程序自我报告的版本号进行判断。

解决方案

根据 TuxCare 公告 ALMALINUX9.6:CLSA-2026:1786352940 中的指南更新受影响的程序包。

另见

https://cve.tuxcare.com/els/releases/CLSA-2026:1786352940

http://www.nessus.org/u?3535afaf

插件详情

严重性: High

ID: 360569

文件名: tuxcare_rocky_linux_9.6_CLSA-2026-1786352940.nasl

版本: 1.1

类型: Local

发布时间: 2026/10/1

最近更新时间: 2026/10/1

支持的传感器: Continuous Assessment, Nessus Agent, Tenable Cloud Security, Tenable Self-Hosted Container Security, Nessus

风险信息

VPR

风险因素: High

分数: 8

百分位: 99.68

Vendor

Vendor Severity: Important

CVSS v2

风险因素: Medium

基本分数: 6.8

时间分数: 5.3

矢量: CVSS2#AV:L/AC:L/Au:S/C:C/I:C/A:C

CVSS 分数来源: CVE-2026-53112

CVSS v3

风险因素: High

基本分数: 7.8

时间分数: 7

矢量: CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H

时间矢量: CVSS:3.0/E:P/RL:O/RC:C

漏洞信息

必需的 KB 项: Host/OS/extended-third-party, Host/local_checks_enabled, Host/RockyLinux/release, Host/RockyLinux/rpm-list, Host/cpu

可利用: true

易利用性: Exploits are available

补丁发布日期: 2026/8/10

漏洞发布日期: 2021/7/21

参考资料信息

CVE: CVE-2022-49388, CVE-2023-52456, CVE-2023-53271, CVE-2024-39480, CVE-2024-41027, CVE-2024-42138, CVE-2024-46794, CVE-2024-53202, CVE-2024-56372, CVE-2024-56625, CVE-2024-56632, CVE-2024-56745, CVE-2024-57917, CVE-2024-58093, CVE-2025-21645, CVE-2025-21716, CVE-2025-21770, CVE-2025-21783, CVE-2025-21810, CVE-2025-21874, CVE-2025-21890, CVE-2025-21906, CVE-2025-21916, CVE-2025-21970, CVE-2025-21973, CVE-2025-21978, CVE-2025-22016, CVE-2025-22050, CVE-2025-22117, CVE-2025-22128, CVE-2025-23134, CVE-2025-23151, CVE-2025-37793, CVE-2025-37912, CVE-2025-37957, CVE-2025-38020, CVE-2025-38113, CVE-2025-38239, CVE-2025-38543, CVE-2025-38557, CVE-2025-38632, CVE-2025-38676, CVE-2025-39701, CVE-2025-39811, CVE-2025-39860, CVE-2025-39861, CVE-2025-39877, CVE-2025-39922, CVE-2025-39944, CVE-2025-39957, CVE-2025-39963, CVE-2025-40030, CVE-2025-40035, CVE-2025-40070, CVE-2025-40085, CVE-2025-40115, CVE-2025-40171, CVE-2025-40211, CVE-2025-40264, CVE-2025-40275, CVE-2025-40325, CVE-2025-68229, CVE-2025-68288, CVE-2025-68372, CVE-2025-68782, CVE-2025-71064, CVE-2025-71229, CVE-2025-71231, CVE-2025-71234, CVE-2025-71305, CVE-2026-23129, CVE-2026-23135, CVE-2026-23148, CVE-2026-23160, CVE-2026-23173, CVE-2026-23187, CVE-2026-23242, CVE-2026-23260, CVE-2026-23317, CVE-2026-23359, CVE-2026-23363, CVE-2026-23412, CVE-2026-23413, CVE-2026-23418, CVE-2026-31430, CVE-2026-31469, CVE-2026-31520, CVE-2026-31522, CVE-2026-31604, CVE-2026-31614, CVE-2026-31649, CVE-2026-31655, CVE-2026-31697, CVE-2026-31758, CVE-2026-43047, CVE-2026-43056, CVE-2026-43111, CVE-2026-43114, CVE-2026-43120, CVE-2026-43133, CVE-2026-43180, CVE-2026-43233, CVE-2026-43260, CVE-2026-43304, CVE-2026-43329, CVE-2026-43334, CVE-2026-43339, CVE-2026-43346, CVE-2026-43370, CVE-2026-43432, CVE-2026-43459, CVE-2026-43466, CVE-2026-43473, CVE-2026-43488, CVE-2026-45851, CVE-2026-45872, CVE-2026-45922, CVE-2026-45982, CVE-2026-45997, CVE-2026-46006, CVE-2026-46070, CVE-2026-46079, CVE-2026-46089, CVE-2026-46092, CVE-2026-46094, CVE-2026-46107, CVE-2026-46136, CVE-2026-46140, CVE-2026-46146, CVE-2026-46320, CVE-2026-52964, CVE-2026-53088, CVE-2026-53093, CVE-2026-53102, CVE-2026-53105, CVE-2026-53112, CVE-2026-53113, CVE-2026-53146, CVE-2026-53147, CVE-2026-53190, CVE-2026-53229, CVE-2026-53241, CVE-2026-53318, CVE-2026-53337, CVE-2026-53347, CVE-2026-64561

CLSA: 2026:1786352940