Количество 17
Количество 17

BDU:2020-02910
Уязвимость реализации алгоритма возведения в квадратичную форму Монтгомери библиотеки OpenSSL, связанная с ошибкой переноса разряда на платформе x86_64 , позволяющая нарушителю получить несанкционированный доступ к информации

CVE-2017-3732
There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate probl...

CVE-2017-3732
There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate probl...

CVE-2017-3732
There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate problem.
CVE-2017-3732
There is a carry propagating bug in the x86_64 Montgomery squaring pro ...
GHSA-5hg3-8gvm-5294
There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate probl...

openSUSE-SU-2017:0941-1
Security update for nodejs4

openSUSE-SU-2017:0527-1
Security update for nodejs

openSUSE-SU-2017:0481-1
Security update for openssl

SUSE-SU-2017:0855-1
Security update for nodejs4

SUSE-SU-2017:0441-1
Security update for openssl

SUSE-SU-2017:0431-1
Security update for nodejs6

SUSE-SU-2018:3082-1
Security update for java-1_8_0-ibm

SUSE-SU-2018:2839-2
Security update for java-1_8_0-ibm

SUSE-SU-2018:2839-1
Security update for java-1_8_0-ibm

openSUSE-SU-2017:2011-1
Security update for mysql-community-server

openSUSE-SU-2018:0458-1
Security update for openssl-steam
Уязвимостей на страницу
Уязвимость | CVSS | EPSS | Опубликовано | |
---|---|---|---|---|
![]() | BDU:2020-02910 Уязвимость реализации алгоритма возведения в квадратичную форму Монтгомери библиотеки OpenSSL, связанная с ошибкой переноса разряда на платформе x86_64 , позволяющая нарушителю получить несанкционированный доступ к информации | CVSS3: 5.9 | 5% Низкий | около 8 лет назад |
![]() | CVE-2017-3732 There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate probl... | CVSS3: 5.9 | 5% Низкий | около 8 лет назад |
![]() | CVE-2017-3732 There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate probl... | CVSS3: 5.9 | 5% Низкий | больше 8 лет назад |
![]() | CVE-2017-3732 There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate problem. | CVSS3: 5.9 | 5% Низкий | около 8 лет назад |
CVE-2017-3732 There is a carry propagating bug in the x86_64 Montgomery squaring pro ... | CVSS3: 5.9 | 5% Низкий | около 8 лет назад | |
GHSA-5hg3-8gvm-5294 There is a carry propagating bug in the x86_64 Montgomery squaring procedure in OpenSSL 1.0.2 before 1.0.2k and 1.1.0 before 1.1.0d. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH are considered just feasible (although very difficult) because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be very significant and likely only accessible to a limited number of attackers. An attacker would additionally need online access to an unpatched system using the target private key in a scenario with persistent DH parameters and a private key that is shared between multiple clients. For example this can occur by default in OpenSSL DHE based SSL/TLS ciphersuites. Note: This issue is very similar to CVE-2015-3193 but must be treated as a separate probl... | CVSS3: 5.9 | 5% Низкий | около 3 лет назад | |
![]() | openSUSE-SU-2017:0941-1 Security update for nodejs4 | около 8 лет назад | ||
![]() | openSUSE-SU-2017:0527-1 Security update for nodejs | больше 8 лет назад | ||
![]() | openSUSE-SU-2017:0481-1 Security update for openssl | больше 8 лет назад | ||
![]() | SUSE-SU-2017:0855-1 Security update for nodejs4 | около 8 лет назад | ||
![]() | SUSE-SU-2017:0441-1 Security update for openssl | больше 8 лет назад | ||
![]() | SUSE-SU-2017:0431-1 Security update for nodejs6 | больше 8 лет назад | ||
![]() | SUSE-SU-2018:3082-1 Security update for java-1_8_0-ibm | больше 6 лет назад | ||
![]() | SUSE-SU-2018:2839-2 Security update for java-1_8_0-ibm | больше 6 лет назад | ||
![]() | SUSE-SU-2018:2839-1 Security update for java-1_8_0-ibm | почти 7 лет назад | ||
![]() | openSUSE-SU-2017:2011-1 Security update for mysql-community-server | почти 8 лет назад | ||
![]() | openSUSE-SU-2018:0458-1 Security update for openssl-steam | больше 7 лет назад |
Уязвимостей на страницу