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ubuntu логотип

CVE-2026-64515

7 дней назад

In the Linux kernel, the following vulnerability has been resolved: wifi: mac80211: fix MLE defragmentation If either reconf or EPCS multi-link element (MLE) is contained in a non-transmitted profile, the defragmentation routine is called with a pointer to the defragmented copy, but the original elements. This is incorrect for two reasons: - if the original defragmentation was needed, it will not find the correct data - if the original frame is at a higher address, the parsing will potentially overrun the heap data (though given the layout of the buffers, only into the new defragmentation buffer, and then it has to stop and fail once that's filled with copied data. Fix it by tracking the container along with the pointer and in doing so also unify the two almost identical defragmentation routines.

CVSS3: 8.3
EPSS: Низкий
redhat логотип

CVE-2026-64515

8 дней назад

A flaw was found in the Linux kernel's mac80211 Wi-Fi subsystem. This vulnerability arises from incorrect handling of Multi-Link Element (MLE) defragmentation. When a reconf or EPCS (Enhanced Power Save) MLE is present in a non-transmitted profile, the defragmentation routine uses an incorrect pointer. This can lead to a heap data overrun, which is a form of memory corruption that may result in system instability or unexpected behavior.

CVSS3: 7
EPSS: Низкий
nvd логотип

CVE-2026-64515

7 дней назад

In the Linux kernel, the following vulnerability has been resolved: wifi: mac80211: fix MLE defragmentation If either reconf or EPCS multi-link element (MLE) is contained in a non-transmitted profile, the defragmentation routine is called with a pointer to the defragmented copy, but the original elements. This is incorrect for two reasons: - if the original defragmentation was needed, it will not find the correct data - if the original frame is at a higher address, the parsing will potentially overrun the heap data (though given the layout of the buffers, only into the new defragmentation buffer, and then it has to stop and fail once that's filled with copied data. Fix it by tracking the container along with the pointer and in doing so also unify the two almost identical defragmentation routines.

CVSS3: 8.3
EPSS: Низкий
debian логотип

CVE-2026-64515

7 дней назад

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

CVSS3: 8.3
EPSS: Низкий
github логотип

GHSA-x6wq-gx7f-g22h

7 дней назад

In the Linux kernel, the following vulnerability has been resolved: wifi: mac80211: fix MLE defragmentation If either reconf or EPCS multi-link element (MLE) is contained in a non-transmitted profile, the defragmentation routine is called with a pointer to the defragmented copy, but the original elements. This is incorrect for two reasons: - if the original defragmentation was needed, it will not find the correct data - if the original frame is at a higher address, the parsing will potentially overrun the heap data (though given the layout of the buffers, only into the new defragmentation buffer, and then it has to stop and fail once that's filled with copied data. Fix it by tracking the container along with the pointer and in doing so also unify the two almost identical defragmentation routines.

CVSS3: 8.3
EPSS: Низкий

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Уязвимость
CVSS
EPSS
Опубликовано
ubuntu логотип
CVE-2026-64515

In the Linux kernel, the following vulnerability has been resolved: wifi: mac80211: fix MLE defragmentation If either reconf or EPCS multi-link element (MLE) is contained in a non-transmitted profile, the defragmentation routine is called with a pointer to the defragmented copy, but the original elements. This is incorrect for two reasons: - if the original defragmentation was needed, it will not find the correct data - if the original frame is at a higher address, the parsing will potentially overrun the heap data (though given the layout of the buffers, only into the new defragmentation buffer, and then it has to stop and fail once that's filled with copied data. Fix it by tracking the container along with the pointer and in doing so also unify the two almost identical defragmentation routines.

CVSS3: 8.3
0%
Низкий
7 дней назад
redhat логотип
CVE-2026-64515

A flaw was found in the Linux kernel's mac80211 Wi-Fi subsystem. This vulnerability arises from incorrect handling of Multi-Link Element (MLE) defragmentation. When a reconf or EPCS (Enhanced Power Save) MLE is present in a non-transmitted profile, the defragmentation routine uses an incorrect pointer. This can lead to a heap data overrun, which is a form of memory corruption that may result in system instability or unexpected behavior.

CVSS3: 7
0%
Низкий
8 дней назад
nvd логотип
CVE-2026-64515

In the Linux kernel, the following vulnerability has been resolved: wifi: mac80211: fix MLE defragmentation If either reconf or EPCS multi-link element (MLE) is contained in a non-transmitted profile, the defragmentation routine is called with a pointer to the defragmented copy, but the original elements. This is incorrect for two reasons: - if the original defragmentation was needed, it will not find the correct data - if the original frame is at a higher address, the parsing will potentially overrun the heap data (though given the layout of the buffers, only into the new defragmentation buffer, and then it has to stop and fail once that's filled with copied data. Fix it by tracking the container along with the pointer and in doing so also unify the two almost identical defragmentation routines.

CVSS3: 8.3
0%
Низкий
7 дней назад
debian логотип
CVE-2026-64515

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

CVSS3: 8.3
0%
Низкий
7 дней назад
github логотип
GHSA-x6wq-gx7f-g22h

In the Linux kernel, the following vulnerability has been resolved: wifi: mac80211: fix MLE defragmentation If either reconf or EPCS multi-link element (MLE) is contained in a non-transmitted profile, the defragmentation routine is called with a pointer to the defragmented copy, but the original elements. This is incorrect for two reasons: - if the original defragmentation was needed, it will not find the correct data - if the original frame is at a higher address, the parsing will potentially overrun the heap data (though given the layout of the buffers, only into the new defragmentation buffer, and then it has to stop and fail once that's filled with copied data. Fix it by tracking the container along with the pointer and in doing so also unify the two almost identical defragmentation routines.

CVSS3: 8.3
0%
Низкий
7 дней назад

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