Rocky Linux 9.6 [TuxCare] セキュリティ更新プログラム:kernel/kernel-abi-stablelists/kernel-core/etcの複数の脆弱性(ALMALINUX9.6:CLSA-2026:1788168285)

high Nessus プラグイン ID 360902

概要

Rocky Linuxホストに1つ以上のセキュリティ更新プログラムがありません。

説明

Rocky Linux 9.6 ホストには、TuxCare ALMALINUX9.6:CLSA-2026:1788168285アドバイザリに記載されている複数の脆弱性の影響を受けるパッケージがインストールされています。

- Linux カーネルでは、以下の脆弱性が解決されています: tracing/histogram: Fix a potential memory leak for kstrdup() kfree() is missing on an error path to free the memory allocated by kstrdup(): p = param = kstrdup(data->params[i], GFP_KERNEL); So it is better to free it via kfree(p). (CVE-2022-48768)

- Linux カーネルでは、以下の脆弱性が解決されています: can: af_can: fix NULL pointer dereference in can_rx_register() It causes NULL pointer dereference when testing as following: (a) use syscall(__NR_socket, 0x10ul, 3ul, 0) to create netlink socket. (b) use syscall(__NR_sendmsg, ...) to create bond link device and vxcan link device, and bind vxcan device to bond device (can also use ifenslave command to bind vxcan device to bond device). (c) use syscall(__NR_socket, 0x1dul, 3ul, 1) to create CAN socket. (d) use syscall(__NR_bind, ...) to bind the bond device to CAN socket. The bond device invokes the can-raw protocol registration interface to receive CAN packets. However, ml_priv is not allocated to the dev, dev_rcv_lists is assigned to NULL in can_rx_register(). In this case, it will occur the NULL pointer dereference issue. The following is the stack information: BUG: kernel NULL pointer dereference, address: 0000000000000008 PGD 122a4067 P4D 122a4067 PUD 1223c067 PMD 0 Oops: 0000 [#1] PREEMPT SMP RIP: 0010:can_rx_register+0x12d/0x1e0 Call Trace: <TASK> raw_enable_filters+0x8d/0x120 raw_enable_allfilters+0x3b/0x130 raw_bind+0x118/0x4f0 __sys_bind+0x163/0x1a0 __x64_sys_bind+0x1e/0x30 do_syscall_64+0x35/0x80 entry_SYSCALL_64_after_hwframe+0x63/0xcd </TASK> (CVE-2022-49863)

- Linux カーネルでは、以下の脆弱性が解決されています: net/tipc: fix slab-use-after-free Read in tipc_aead_encrypt_done Syzbot reported a slab-use-after-free with the following call trace:
================================================================== BUG: KASAN: slab-use-after-free in tipc_aead_encrypt_done+0x4bd/0x510 net/tipc/crypto.c:840 Read of size 8 at addr ffff88807a733000 by task kworker/1:0/25 Call Trace: kasan_report+0xd9/0x110 mm/kasan/report.c:601 tipc_aead_encrypt_done+0x4bd/0x510 net/tipc/crypto.c:840 crypto_request_complete include/crypto/algapi.h:266 aead_request_complete include/crypto/internal/aead.h:85 cryptd_aead_crypt+0x3b8/0x750 crypto/cryptd.c:772 crypto_request_complete include/crypto/algapi.h:266 cryptd_queue_worker+0x131/0x200 crypto/cryptd.c:181 process_one_work+0x9fb/0x1b60 kernel/workqueue.c:3231 Allocated by task 8355: kzalloc_noprof include/linux/slab.h:778 tipc_crypto_start+0xcc/0x9e0 net/tipc/crypto.c:1466 tipc_init_net+0x2dd/0x430 net/tipc/core.c:72 ops_init+0xb9/0x650 net/core/net_namespace.c:139 setup_net+0x435/0xb40 net/core/net_namespace.c:343 copy_net_ns+0x2f0/0x670 net/core/net_namespace.c:508 create_new_namespaces+0x3ea/0xb10 kernel/nsproxy.c:110 unshare_nsproxy_namespaces+0xc0/0x1f0 kernel/nsproxy.c:228 ksys_unshare+0x419/0x970 kernel/fork.c:3323
__do_sys_unshare kernel/fork.c:3394 Freed by task 63: kfree+0x12a/0x3b0 mm/slub.c:4557 tipc_crypto_stop+0x23c/0x500 net/tipc/crypto.c:1539 tipc_exit_net+0x8c/0x110 net/tipc/core.c:119 ops_exit_list+0xb0/0x180 net/core/net_namespace.c:173 cleanup_net+0x5b7/0xbf0 net/core/net_namespace.c:640 process_one_work+0x9fb/0x1b60 kernel/workqueue.c:3231 After freed the tipc_crypto tx by delete namespace, tipc_aead_encrypt_done may still visit it in cryptd_queue_worker workqueue. I reproduce this issue by: ip netns add ns1 ip link add veth1 type veth peer name veth2 ip link set veth1 netns ns1 ip netns exec ns1 tipc bearer enable media eth dev veth1 ip netns exec ns1 tipc node set key this_is_a_master_key master ip netns exec ns1 tipc bearer disable media eth dev veth1 ip netns del ns1 The key of reproduction is that, simd_aead_encrypt is interrupted, leading to crypto_simd_usable() return false. Thus, the cryptd_queue_worker is triggered, and the tipc_crypto tx will be visited. tipc_disc_timeout tipc_bearer_xmit_skb tipc_crypto_xmit tipc_aead_encrypt crypto_aead_encrypt // encrypt() simd_aead_encrypt // crypto_simd_usable() is false child = &ctx->cryptd_tfm->base; simd_aead_encrypt crypto_aead_encrypt // encrypt() cryptd_aead_encrypt_enqueue cryptd_aead_enqueue cryptd_enqueue_request // trigger cryptd_queue_worker queue_work_on(smp_processor_id(), cryptd_wq, &cpu_queue->work) Fix this by holding net reference count before encrypt. (CVE-2025-38052)

- Linux カーネルでは、以下の脆弱性が解決されています: Bluetooth: eir: Fix possible crashes on eir_create_adv_data eir_create_adv_data may attempt to add EIR_FLAGS and EIR_TX_POWER without checking if that would fit. (CVE-2025-38303)

- Linux カーネルでは、以下の脆弱性が解決されています: gve: prevent ethtool ops after shutdown A crash can occur if an ethtool operation is invoked after shutdown() is called. shutdown() is invoked during system shutdown to stop DMA operations without performing expensive deallocations. It is discouraged to unregister the netdev in this path, so the device may still be visible to userspace and kernel helpers. In gve, shutdown() tears down most internal data structures. If an ethtool operation is dispatched after shutdown(), it will dereference freed or NULL pointers, leading to a kernel panic. While graceful shutdown normally quiesces userspace before invoking the reboot syscall, forced shutdowns (as observed on GCP VMs) can still trigger this path. Fix by calling netif_device_detach() in shutdown(). This marks the device as detached so the ethtool ioctl handler will skip dispatching operations to the driver.
(CVE-2025-38735)

Nessus はこれらの問題をテストしておらず、代わりにアプリケーションが自己報告するバージョン番号にのみ依存していることに注意してください。

ソリューション

TuxCareアドバイザリALMALINUX9.6:CLSA-2026:1788168285のガイダンスに基づいて、影響を受けるパッケージを更新してください。

参考資料

https://cve.tuxcare.com/els/releases/CLSA-2026:1788168285

http://www.nessus.org/u?dc418a4f

プラグインの詳細

深刻度: High

ID: 360902

ファイル名: tuxcare_rocky_linux_9.6_CLSA-2026-1788168285.nasl

バージョン: 1.1

タイプ: Local

公開日: 2026/10/1

更新日: 2026/10/1

サポートされているセンサー: Continuous Assessment, Nessus Agent, Tenable Cloud Security, Tenable Self-Hosted Container Security, Nessus

リスク情報

VPR

リスクファクター: High

スコア: 7.9

パーセンタイル: 99.36

Vendor

Vendor Severity: Important

CVSS v2

リスクファクター: High

基本値: 7.2

現状値: 5.6

ベクトル: CVSS2#AV:L/AC:L/Au:N/C:C/I:C/A:C

CVSS スコアのソース: CVE-2026-53196

CVSS v3

リスクファクター: High

基本値: 7.8

現状値: 7

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

現状ベクトル: CVSS:3.0/E:P/RL:O/RC:C

CVSS スコアのソース: CVE-2026-53195

脆弱性情報

必要な KB アイテム: Host/OS/extended-third-party, Host/local_checks_enabled, Host/RockyLinux/release, Host/RockyLinux/rpm-list, Host/cpu

エクスプロイトが利用可能: true

エクスプロイトの容易さ: Exploits are available

パッチ公開日: 2026/8/31

脆弱性公開日: 2021/7/21

参照情報

CVE: CVE-2022-48768, CVE-2022-49863, CVE-2022-50231, CVE-2025-21705, CVE-2025-38052, CVE-2025-38289, CVE-2025-38303, CVE-2025-38559, CVE-2025-38735, CVE-2025-40250, CVE-2025-40320, CVE-2025-68206, CVE-2025-68208, CVE-2026-23244, CVE-2026-31393, CVE-2026-31675, CVE-2026-43023, CVE-2026-43060, CVE-2026-43062, CVE-2026-43112, CVE-2026-43130, CVE-2026-43206, CVE-2026-43414, CVE-2026-43501, CVE-2026-45838, CVE-2026-45839, CVE-2026-45840, CVE-2026-45841, CVE-2026-45842, CVE-2026-45847, CVE-2026-45850, CVE-2026-45856, CVE-2026-45862, CVE-2026-45886, CVE-2026-45910, CVE-2026-45915, CVE-2026-45948, CVE-2026-45964, CVE-2026-45969, CVE-2026-45983, CVE-2026-45987, CVE-2026-45991, CVE-2026-46015, CVE-2026-46018, CVE-2026-46023, CVE-2026-46033, CVE-2026-46038, CVE-2026-46040, CVE-2026-46049, CVE-2026-46051, CVE-2026-46056, CVE-2026-46069, CVE-2026-46082, CVE-2026-46088, CVE-2026-46101, CVE-2026-46114, CVE-2026-46119, CVE-2026-46125, CVE-2026-46128, CVE-2026-46132, CVE-2026-46145, CVE-2026-46151, CVE-2026-46152, CVE-2026-46161, CVE-2026-46162, CVE-2026-46166, CVE-2026-46167, CVE-2026-46172, CVE-2026-46180, CVE-2026-46184, CVE-2026-46185, CVE-2026-46189, CVE-2026-46191, CVE-2026-46195, CVE-2026-46214, CVE-2026-46218, CVE-2026-46220, CVE-2026-46229, CVE-2026-46234, CVE-2026-46235, CVE-2026-46244, CVE-2026-46249, CVE-2026-46259, CVE-2026-46274, CVE-2026-46292, CVE-2026-46294, CVE-2026-46319, CVE-2026-46322, CVE-2026-52920, CVE-2026-52923, CVE-2026-52933, CVE-2026-52935, CVE-2026-52947, CVE-2026-52948, CVE-2026-52955, CVE-2026-52957, CVE-2026-52962, CVE-2026-52963, CVE-2026-52969, CVE-2026-52970, CVE-2026-52972, CVE-2026-52984, CVE-2026-52985, CVE-2026-52993, CVE-2026-53011, CVE-2026-53012, CVE-2026-53016, CVE-2026-53021, CVE-2026-53031, CVE-2026-53037, CVE-2026-53071, CVE-2026-53072, CVE-2026-53075, CVE-2026-53103, CVE-2026-53135, CVE-2026-53136, CVE-2026-53176, CVE-2026-53177, CVE-2026-53181, CVE-2026-53182, CVE-2026-53192, CVE-2026-53195, CVE-2026-53196, CVE-2026-53202, CVE-2026-53212, CVE-2026-53218, CVE-2026-53219, CVE-2026-53223, CVE-2026-53227, CVE-2026-53236, CVE-2026-53238, CVE-2026-53239, CVE-2026-53245, CVE-2026-53249, CVE-2026-53254, CVE-2026-53255, CVE-2026-53256, CVE-2026-53263, CVE-2026-53269, CVE-2026-53287, CVE-2026-53295, CVE-2026-53304, CVE-2026-53306, CVE-2026-53317, CVE-2026-53329, CVE-2026-53330, CVE-2026-53384, CVE-2026-53391, CVE-2026-53397, CVE-2026-63800, CVE-2026-63802, CVE-2026-63928, CVE-2026-64174, CVE-2026-64219, CVE-2026-64268, CVE-2026-64572, CVE-2026-64574, CVE-2026-64576, CVE-2026-64579, CVE-2026-64582, CVE-2026-68125, CVE-2026-68133, CVE-2026-68136, CVE-2026-68175, CVE-2026-68186, CVE-2026-68189, CVE-2026-68197, CVE-2026-68287, CVE-2026-68297, CVE-2026-68304, CVE-2026-68311, CVE-2026-68313, CVE-2026-68315, CVE-2026-68338, CVE-2026-68339, CVE-2026-68355, CVE-2026-68363, CVE-2026-68386, CVE-2026-68388, CVE-2026-68414, CVE-2026-68428, CVE-2026-68429

CLSA: 2026:1788168285