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fstec логотип

BDU:2026-02835

Опубликовано: 08 дек. 2025
Источник: fstec
CVSS3: 7
CVSS2: 6
EPSS Низкий

Описание

Уязвимость ядра операционной системы Linux связана с использованием памяти после её освобождения. Эксплуатация уязвимости позволяет нарушителю получить доступ к конфиденциальным данным, нарушить их целостность, а также вызвать отказ в обслуживании

Вендор

ООО «РусБИТех-Астра»
Сообщество свободного программного обеспечения

Наименование ПО

Astra Linux Special Edition
Linux

Версия ПО

1.7 (Astra Linux Special Edition)
от 6.13 до 6.17.8 (Linux)
от 6.2 до 6.6.117 (Linux)
от 6.7 до 6.12.58 (Linux)
от 5.18 до 6.1.159 (Linux)

Тип ПО

Операционная система

Операционные системы и аппаратные платформы

ООО «РусБИТех-Астра» Astra Linux Special Edition 1.7
Сообщество свободного программного обеспечения Linux от 6.13 до 6.17.8
Сообщество свободного программного обеспечения Linux от 6.2 до 6.6.117
Сообщество свободного программного обеспечения Linux от 6.7 до 6.12.58
Сообщество свободного программного обеспечения Linux от 5.18 до 6.1.159

Уровень опасности уязвимости

Средний уровень опасности (базовая оценка CVSS 2.0 составляет 6)
Высокий уровень опасности (базовая оценка CVSS 3.1 составляет 7)

Возможные меры по устранению уязвимости

В условиях отсутствия обновлений безопасности от производителя рекомендуется придерживаться "Рекомендаций по безопасной настройке операционных систем LINUX", изложенных в методическом документе ФСТЭК России, утверждённом 25 декабря 2022 года.
Использование рекомендаций:
Для Linux:
https://git.kernel.org/linus/991fbe1680cd41a5f97c92cd3a3496315df36e4b
Для ОС Astra Linux:
- обновить пакет linux-5.10 до 5.10.142-1.astra6+ci24 или более высокой версии, используя рекомендации производителя: https://wiki.astralinux.ru/astra-linux-se17-bulletin-2026-0302SE17MD
- обновить пакет linux-6.1 до 6.1.161-1.astra1 или более высокой версии, используя рекомендации производителя: https://wiki.astralinux.ru/astra-linux-se17-bulletin-2026-0302SE17MD

Статус уязвимости

Подтверждена производителем

Наличие эксплойта

Данные уточняются

Информация об устранении

Уязвимость устранена

Идентификаторы других систем описаний уязвимостей

EPSS

Процентиль: 12%
0.00039
Низкий

7 High

CVSS3

6 Medium

CVSS2

Связанные уязвимости

ubuntu
4 месяца назад

In the Linux kernel, the following vulnerability has been resolved: net: bridge: fix use-after-free due to MST port state bypass syzbot reported[1] a use-after-free when deleting an expired fdb. It is due to a race condition between learning still happening and a port being deleted, after all its fdbs have been flushed. The port's state has been toggled to disabled so no learning should happen at that time, but if we have MST enabled, it will bypass the port's state, that together with VLAN filtering disabled can lead to fdb learning at a time when it shouldn't happen while the port is being deleted. VLAN filtering must be disabled because we flush the port VLANs when it's being deleted which will stop learning. This fix adds a check for the port's vlan group which is initialized to NULL when the port is getting deleted, that avoids the port state bypass. When MST is enabled there would be a minimal new overhead in the fast-path because the port's vlan group pointer is cache-hot. [1...

CVSS3: 5.5
redhat
4 месяца назад

In the Linux kernel, the following vulnerability has been resolved: net: bridge: fix use-after-free due to MST port state bypass syzbot reported[1] a use-after-free when deleting an expired fdb. It is due to a race condition between learning still happening and a port being deleted, after all its fdbs have been flushed. The port's state has been toggled to disabled so no learning should happen at that time, but if we have MST enabled, it will bypass the port's state, that together with VLAN filtering disabled can lead to fdb learning at a time when it shouldn't happen while the port is being deleted. VLAN filtering must be disabled because we flush the port VLANs when it's being deleted which will stop learning. This fix adds a check for the port's vlan group which is initialized to NULL when the port is getting deleted, that avoids the port state bypass. When MST is enabled there would be a minimal new overhead in the fast-path because the port's vlan group pointer is cache-hot. [1...

nvd
4 месяца назад

In the Linux kernel, the following vulnerability has been resolved: net: bridge: fix use-after-free due to MST port state bypass syzbot reported[1] a use-after-free when deleting an expired fdb. It is due to a race condition between learning still happening and a port being deleted, after all its fdbs have been flushed. The port's state has been toggled to disabled so no learning should happen at that time, but if we have MST enabled, it will bypass the port's state, that together with VLAN filtering disabled can lead to fdb learning at a time when it shouldn't happen while the port is being deleted. VLAN filtering must be disabled because we flush the port VLANs when it's being deleted which will stop learning. This fix adds a check for the port's vlan group which is initialized to NULL when the port is getting deleted, that avoids the port state bypass. When MST is enabled there would be a minimal new overhead in the fast-path because the port's vlan group pointer is cache-hot. [1

CVSS3: 7
msrc
4 месяца назад

net: bridge: fix use-after-free due to MST port state bypass

debian
4 месяца назад

In the Linux kernel, the following vulnerability has been resolved: n ...

EPSS

Процентиль: 12%
0.00039
Низкий

7 High

CVSS3

6 Medium

CVSS2