Количество 74
Количество 74

CVE-2018-8897
A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that t...

CVE-2018-8897
A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that t...

CVE-2018-8897
A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that tran

CVE-2018-8897
Windows Kernel Elevation of Privilege Vulnerability
CVE-2018-8897
A statement in the System Programming Guide of the Intel 64 and IA-32 ...
GHSA-j2cv-h77g-5p95
A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that t...
ELSA-2018-4219
ELSA-2018-4219: kernel security update (IMPORTANT)
ELSA-2018-4098
ELSA-2018-4098: Unbreakable Enterprise kernel security update (IMPORTANT)
ELSA-2018-4097
ELSA-2018-4097: Unbreakable Enterprise kernel security update (IMPORTANT)

BDU:2020-00048
Уязвимость ядра операционных систем Linux, Windows, Ubuntu, Debian GNU/Linux, Red Hat Enterprise Linux, macOS, EulerOS, позволяющая нарушителю повысить свои привилегии

SUSE-SU-2018:1539-1
Security update for the Linux Kernel (Live Patch 33 for SLE 12)

SUSE-SU-2018:1513-1
Security update for the Linux Kernel (Live Patch 26 for SLE 12 SP1)
ELSA-2018-4096
ELSA-2018-4096: Unbreakable Enterprise kernel security update (IMPORTANT)

SUSE-SU-2018:1636-1
Security update for the Linux Kernel (Live Patch 10 for SLE 12 SP3)

SUSE-SU-2018:1549-1
Security update for the Linux Kernel (Live Patch 27 for SLE 12)

SUSE-SU-2018:1546-1
Security update for the Linux Kernel (Live Patch 21 for SLE 12 SP1)

SUSE-SU-2018:1543-1
Security update for the Linux Kernel (Live Patch 31 for SLE 12)

SUSE-SU-2018:1541-1
Security update for the Linux Kernel (Live Patch 20 for SLE 12 SP1)

SUSE-SU-2018:1540-1
Security update for the Linux Kernel (Live Patch 25 for SLE 12)

SUSE-SU-2018:1538-1
Security update for the Linux Kernel (Live Patch 28 for SLE 12)
Уязвимостей на страницу
Уязвимость | CVSS | EPSS | Опубликовано | |
---|---|---|---|---|
![]() | CVE-2018-8897 A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that t... | CVSS3: 7.8 | 20% Средний | около 7 лет назад |
![]() | CVE-2018-8897 A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that t... | CVSS3: 6.5 | 20% Средний | около 7 лет назад |
![]() | CVE-2018-8897 A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that tran | CVSS3: 7.8 | 20% Средний | около 7 лет назад |
![]() | CVE-2018-8897 Windows Kernel Elevation of Privilege Vulnerability | CVSS3: 7 | 20% Средний | около 7 лет назад |
CVE-2018-8897 A statement in the System Programming Guide of the Intel 64 and IA-32 ... | CVSS3: 7.8 | 20% Средний | около 7 лет назад | |
GHSA-j2cv-h77g-5p95 A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that t... | CVSS3: 7.8 | 20% Средний | около 3 лет назад | |
ELSA-2018-4219 ELSA-2018-4219: kernel security update (IMPORTANT) | почти 7 лет назад | |||
ELSA-2018-4098 ELSA-2018-4098: Unbreakable Enterprise kernel security update (IMPORTANT) | около 7 лет назад | |||
ELSA-2018-4097 ELSA-2018-4097: Unbreakable Enterprise kernel security update (IMPORTANT) | около 7 лет назад | |||
![]() | BDU:2020-00048 Уязвимость ядра операционных систем Linux, Windows, Ubuntu, Debian GNU/Linux, Red Hat Enterprise Linux, macOS, EulerOS, позволяющая нарушителю повысить свои привилегии | CVSS3: 7.8 | 20% Средний | около 7 лет назад |
![]() | SUSE-SU-2018:1539-1 Security update for the Linux Kernel (Live Patch 33 for SLE 12) | около 7 лет назад | ||
![]() | SUSE-SU-2018:1513-1 Security update for the Linux Kernel (Live Patch 26 for SLE 12 SP1) | около 7 лет назад | ||
ELSA-2018-4096 ELSA-2018-4096: Unbreakable Enterprise kernel security update (IMPORTANT) | около 7 лет назад | |||
![]() | SUSE-SU-2018:1636-1 Security update for the Linux Kernel (Live Patch 10 for SLE 12 SP3) | около 7 лет назад | ||
![]() | SUSE-SU-2018:1549-1 Security update for the Linux Kernel (Live Patch 27 for SLE 12) | около 7 лет назад | ||
![]() | SUSE-SU-2018:1546-1 Security update for the Linux Kernel (Live Patch 21 for SLE 12 SP1) | около 7 лет назад | ||
![]() | SUSE-SU-2018:1543-1 Security update for the Linux Kernel (Live Patch 31 for SLE 12) | около 7 лет назад | ||
![]() | SUSE-SU-2018:1541-1 Security update for the Linux Kernel (Live Patch 20 for SLE 12 SP1) | около 7 лет назад | ||
![]() | SUSE-SU-2018:1540-1 Security update for the Linux Kernel (Live Patch 25 for SLE 12) | около 7 лет назад | ||
![]() | SUSE-SU-2018:1538-1 Security update for the Linux Kernel (Live Patch 28 for SLE 12) | около 7 лет назад |
Уязвимостей на страницу