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fstec логотип

BDU:2025-11992

Опубликовано: 06 мар. 2025
Источник: fstec
CVSS3: 4.7
CVSS2: 3.8
EPSS Низкий

Описание

Уязвимость комопнента mm ядра операционной системы Linux связана с одновременным выполнением с использованием общего ресурса с неправильной синхронизацией. Эксплуатация уязвимости может позволить нарушителю вызвать отказ в обслуживании

Вендор

ООО «РусБИТех-Астра»
Сообщество свободного программного обеспечения

Наименование ПО

Astra Linux Special Edition
Linux

Версия ПО

1.8 (Astra Linux Special Edition)
от 6.13 до 6.13.8 (Linux)
от 6.8 до 6.12.20 (Linux)

Тип ПО

Операционная система

Операционные системы и аппаратные платформы

ООО «РусБИТех-Астра» Astra Linux Special Edition 1.8
Сообщество свободного программного обеспечения Linux от 6.13 до 6.13.8
Сообщество свободного программного обеспечения Linux от 6.8 до 6.12.20

Уровень опасности уязвимости

Низкий уровень опасности (базовая оценка CVSS 2.0 составляет 3,8)
Средний уровень опасности (базовая оценка CVSS 3.1 составляет 4,7)

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://github.com/torvalds/linux/commit/c50f8e6053b0503375c2975bf47f182445aebb4c
Для ОС Astra Linux:
обновить пакет linux-6.12 до 6.12.34-1.astra1+ci2 или более высокой версии, используя рекомендации производителя: https://wiki.astralinux.ru/astra-linux-se18-bulletin-2025-0811SE18

Статус уязвимости

Подтверждена производителем

Наличие эксплойта

Данные уточняются

Информация об устранении

Уязвимость устранена

Идентификаторы других систем описаний уязвимостей

EPSS

Процентиль: 1%
0.0001
Низкий

4.7 Medium

CVSS3

3.8 Low

CVSS2

Связанные уязвимости

CVSS3: 4.7
ubuntu
7 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: mm: fix kernel BUG when userfaultfd_move encounters swapcache userfaultfd_move() checks whether the PTE entry is present or a swap entry. - If the PTE entry is present, move_present_pte() handles folio migration by setting: src_folio->index = linear_page_index(dst_vma, dst_addr); - If the PTE entry is a swap entry, move_swap_pte() simply copies the PTE to the new dst_addr. This approach is incorrect because, even if the PTE is a swap entry, it can still reference a folio that remains in the swap cache. This creates a race window between steps 2 and 4. 1. add_to_swap: The folio is added to the swapcache. 2. try_to_unmap: PTEs are converted to swap entries. 3. pageout: The folio is written back. 4. Swapcache is cleared. If userfaultfd_move() occurs in the window between steps 2 and 4, after the swap PTE has been moved to the destination, accessing the destination triggers do_swap_page(), which may locate the folio in ...

CVSS3: 4.7
redhat
7 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: mm: fix kernel BUG when userfaultfd_move encounters swapcache userfaultfd_move() checks whether the PTE entry is present or a swap entry. - If the PTE entry is present, move_present_pte() handles folio migration by setting: src_folio->index = linear_page_index(dst_vma, dst_addr); - If the PTE entry is a swap entry, move_swap_pte() simply copies the PTE to the new dst_addr. This approach is incorrect because, even if the PTE is a swap entry, it can still reference a folio that remains in the swap cache. This creates a race window between steps 2 and 4. 1. add_to_swap: The folio is added to the swapcache. 2. try_to_unmap: PTEs are converted to swap entries. 3. pageout: The folio is written back. 4. Swapcache is cleared. If userfaultfd_move() occurs in the window between steps 2 and 4, after the swap PTE has been moved to the destination, accessing the destination triggers do_swap_page(), which may locate the folio in ...

CVSS3: 4.7
nvd
7 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: mm: fix kernel BUG when userfaultfd_move encounters swapcache userfaultfd_move() checks whether the PTE entry is present or a swap entry. - If the PTE entry is present, move_present_pte() handles folio migration by setting: src_folio->index = linear_page_index(dst_vma, dst_addr); - If the PTE entry is a swap entry, move_swap_pte() simply copies the PTE to the new dst_addr. This approach is incorrect because, even if the PTE is a swap entry, it can still reference a folio that remains in the swap cache. This creates a race window between steps 2 and 4. 1. add_to_swap: The folio is added to the swapcache. 2. try_to_unmap: PTEs are converted to swap entries. 3. pageout: The folio is written back. 4. Swapcache is cleared. If userfaultfd_move() occurs in the window between steps 2 and 4, after the swap PTE has been moved to the destination, accessing the destination triggers do_swap_page(), which may locate

CVSS3: 4.7
debian
7 месяцев назад

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

CVSS3: 4.7
github
7 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: mm: fix kernel BUG when userfaultfd_move encounters swapcache userfaultfd_move() checks whether the PTE entry is present or a swap entry. - If the PTE entry is present, move_present_pte() handles folio migration by setting: src_folio->index = linear_page_index(dst_vma, dst_addr); - If the PTE entry is a swap entry, move_swap_pte() simply copies the PTE to the new dst_addr. This approach is incorrect because, even if the PTE is a swap entry, it can still reference a folio that remains in the swap cache. This creates a race window between steps 2 and 4. 1. add_to_swap: The folio is added to the swapcache. 2. try_to_unmap: PTEs are converted to swap entries. 3. pageout: The folio is written back. 4. Swapcache is cleared. If userfaultfd_move() occurs in the window between steps 2 and 4, after the swap PTE has been moved to the destination, accessing the destination triggers do_swap_page(), which may loc...

EPSS

Процентиль: 1%
0.0001
Низкий

4.7 Medium

CVSS3

3.8 Low

CVSS2