Количество 18
Количество 18

CVE-2019-19338
A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability.

CVE-2019-19338
A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability.

CVE-2019-19338
A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability.

CVE-2019-19338
CVE-2019-19338
A flaw was found in the fix for CVE-2019-11135, in the Linux upstream ...
GHSA-qv7j-3q84-2q98
A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability.
ELSA-2020-0834
ELSA-2020-0834: kernel security, bug fix, and enhancement update (IMPORTANT)
ELSA-2020-0339
ELSA-2020-0339: kernel security and bug fix update (IMPORTANT)

SUSE-SU-2019:3389-1
Security update for the Linux Kernel

SUSE-SU-2019:3379-1
Security update for the Linux Kernel

SUSE-SU-2020:0511-1
Security update for the Linux Kernel

openSUSE-SU-2020:0336-1
Security update for the Linux Kernel

SUSE-SU-2020:0560-1
Security update for the Linux Kernel

SUSE-SU-2020:0584-1
Security update for the Linux Kernel

SUSE-SU-2019:3316-1
Security update for the Linux Kernel

SUSE-SU-2019:3381-1
Security update for the Linux Kernel

SUSE-SU-2020:0599-1
Security update for the Linux Kernel

SUSE-SU-2020:0093-1
Security update for the Linux Kernel
Уязвимостей на страницу
Уязвимость | CVSS | EPSS | Опубликовано | |
---|---|---|---|---|
![]() | CVE-2019-19338 A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability. | CVSS3: 5.5 | 0% Низкий | около 5 лет назад |
![]() | CVE-2019-19338 A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability. | CVSS3: 5.5 | 0% Низкий | больше 5 лет назад |
![]() | CVE-2019-19338 A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability. | CVSS3: 5.5 | 0% Низкий | около 5 лет назад |
![]() | CVSS3: 5.5 | 0% Низкий | почти 5 лет назад | |
CVE-2019-19338 A flaw was found in the fix for CVE-2019-11135, in the Linux upstream ... | CVSS3: 5.5 | 0% Низкий | около 5 лет назад | |
GHSA-qv7j-3q84-2q98 A flaw was found in the fix for CVE-2019-11135, in the Linux upstream kernel versions before 5.5 where, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. Confidentiality of data is the highest threat associated with this vulnerability. | 0% Низкий | около 3 лет назад | ||
ELSA-2020-0834 ELSA-2020-0834: kernel security, bug fix, and enhancement update (IMPORTANT) | больше 5 лет назад | |||
ELSA-2020-0339 ELSA-2020-0339: kernel security and bug fix update (IMPORTANT) | больше 5 лет назад | |||
![]() | SUSE-SU-2019:3389-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2019:3379-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2020:0511-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | openSUSE-SU-2020:0336-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2020:0560-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2020:0584-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2019:3316-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2019:3381-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2020:0599-1 Security update for the Linux Kernel | больше 5 лет назад | ||
![]() | SUSE-SU-2020:0093-1 Security update for the Linux Kernel | больше 5 лет назад |
Уязвимостей на страницу