ALT-BU-2017-3568-1
Branch p8 update bulletin.
Package kernel-image-std-def updated to version 4.9.70-alt0.M80P.1 for branch p8 in task 196927.
Closed vulnerabilities
BDU:2019-00974
Уязвимость обработчика RAW-сокетов AF_PACKET ядра Linux, позволяющая нарушителю оказать воздействие на конфиденциальность, целостность и доступность защищаемой информации
Modified: 2024-11-21
CVE-2018-18559
In the Linux kernel through 4.19, a use-after-free can occur due to a race condition between fanout_add from setsockopt and bind on an AF_PACKET socket. This issue exists because of the 15fe076edea787807a7cdc168df832544b58eba6 incomplete fix for a race condition. The code mishandles a certain multithreaded case involving a packet_do_bind unregister action followed by a packet_notifier register action. Later, packet_release operates on only one of the two applicable linked lists. The attacker can achieve Program Counter control.
- RHBA-2019:0327
- RHBA-2019:0327
- RHSA-2019:0163
- RHSA-2019:0163
- RHSA-2019:0188
- RHSA-2019:0188
- RHSA-2019:1170
- RHSA-2019:1170
- RHSA-2019:1190
- RHSA-2019:1190
- RHSA-2019:3967
- RHSA-2019:3967
- RHSA-2019:4159
- RHSA-2019:4159
- RHSA-2020:0174
- RHSA-2020:0174
- https://blogs.securiteam.com/index.php/archives/3731
- https://blogs.securiteam.com/index.php/archives/3731
Package kernel-image-std-pae updated to version 4.4.106-alt0.M80P.1 for branch p8 in task 196928.
Closed vulnerabilities
Modified: 2024-11-21
CVE-2017-0861
Use-after-free vulnerability in the snd_pcm_info function in the ALSA subsystem in the Linux kernel allows attackers to gain privileges via unspecified vectors.
- [secure-testing-commits] 20171206 r58306 - data/CVE
- [secure-testing-commits] 20171206 r58306 - data/CVE
- 102329
- 102329
- RHSA-2018:2390
- RHSA-2018:2390
- RHSA-2018:3083
- RHSA-2018:3083
- RHSA-2018:3096
- RHSA-2018:3096
- RHSA-2020:0036
- RHSA-2020:0036
- https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/commit/?id=362bca57f5d78220f8b5907b875961af9436e229
- https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/commit/?id=362bca57f5d78220f8b5907b875961af9436e229
- https://help.ecostruxureit.com/display/public/UADCE725/Security+fixes+in+StruxureWare+Data+Center+Expert+v7.6.0
- https://help.ecostruxureit.com/display/public/UADCE725/Security+fixes+in+StruxureWare+Data+Center+Expert+v7.6.0
- [debian-lts-announce] 20180502 [SECURITY] [DLA 1369-1] linux security update
- [debian-lts-announce] 20180502 [SECURITY] [DLA 1369-1] linux security update
- https://security-tracker.debian.org/tracker/CVE-2017-0861
- https://security-tracker.debian.org/tracker/CVE-2017-0861
- https://source.android.com/security/bulletin/pixel/2017-11-01
- https://source.android.com/security/bulletin/pixel/2017-11-01
- USN-3583-1
- USN-3583-1
- USN-3583-2
- USN-3583-2
- USN-3617-1
- USN-3617-1
- USN-3617-2
- USN-3617-2
- USN-3617-3
- USN-3617-3
- USN-3619-1
- USN-3619-1
- USN-3619-2
- USN-3619-2
- USN-3632-1
- USN-3632-1
- DSA-4187
- DSA-4187
- https://www.oracle.com/security-alerts/cpujul2020.html
- https://www.oracle.com/security-alerts/cpujul2020.html
- https://www.oracle.com/technetwork/security-advisory/cpuapr2019-5072813.html
- https://www.oracle.com/technetwork/security-advisory/cpuapr2019-5072813.html
Modified: 2024-11-21
CVE-2017-1000407
The Linux Kernel 2.6.32 and later are affected by a denial of service, by flooding the diagnostic port 0x80 an exception can be triggered leading to a kernel panic.
- [oss-security] 20171204 CVE-2017-1000407 Kernel: KVM: DoS via write flood to I/O port 0x80
- [oss-security] 20171204 CVE-2017-1000407 Kernel: KVM: DoS via write flood to I/O port 0x80
- 102038
- 102038
- RHSA-2018:0676
- RHSA-2018:0676
- RHSA-2018:1062
- RHSA-2018:1062
- RHSA-2019:1170
- RHSA-2019:1170
- https://access.redhat.com/security/cve/cve-2017-1000407
- https://access.redhat.com/security/cve/cve-2017-1000407
- [debian-lts-announce] 20171210 [SECURITY] [DLA 1200-1] linux security update
- [debian-lts-announce] 20171210 [SECURITY] [DLA 1200-1] linux security update
- USN-3583-1
- USN-3583-1
- USN-3583-2
- USN-3583-2
- USN-3617-1
- USN-3617-1
- USN-3617-2
- USN-3617-2
- USN-3619-1
- USN-3619-1
- USN-3619-2
- USN-3619-2
- USN-3632-1
- USN-3632-1
- DSA-4073
- DSA-4073
- DSA-4082
- DSA-4082
- [kvm] 20171201 [PATCH 1/2] KVM: VMX: remove I/O port 0x80 bypass on Intel hosts
- [kvm] 20171201 [PATCH 1/2] KVM: VMX: remove I/O port 0x80 bypass on Intel hosts
Closed vulnerabilities
BDU:2019-00765
Уязвимость программного обеспечения криптографической библиотеки OpenSSL, связанная с некорректной работой механизма «error state», позволяющая нарушителю передавать незашифрованные конфиденциальные данные по сети
BDU:2021-03037
Уязвимость процедуры AVX2 Montgomery библиотеки OpenSSL, позволяющая нарушителю получить несанкционированный доступ к защищаемой информации
Modified: 2024-11-21
CVE-2017-3737
OpenSSL 1.0.2 (starting from version 1.0.2b) introduced an "error state" mechanism. The intent was that if a fatal error occurred during a handshake then OpenSSL would move into the error state and would immediately fail if you attempted to continue the handshake. This works as designed for the explicit handshake functions (SSL_do_handshake(), SSL_accept() and SSL_connect()), however due to a bug it does not work correctly if SSL_read() or SSL_write() is called directly. In that scenario, if the handshake fails then a fatal error will be returned in the initial function call. If SSL_read()/SSL_write() is subsequently called by the application for the same SSL object then it will succeed and the data is passed without being decrypted/encrypted directly from the SSL/TLS record layer. In order to exploit this issue an application bug would have to be present that resulted in a call to SSL_read()/SSL_write() being issued after having already received a fatal error. OpenSSL version 1.0.2b-1.0.2m are affected. Fixed in OpenSSL 1.0.2n. OpenSSL 1.1.0 is not affected.
- http://www.oracle.com/technetwork/security-advisory/cpuapr2018-3678067.html
- http://www.oracle.com/technetwork/security-advisory/cpuapr2018-3678067.html
- http://www.oracle.com/technetwork/security-advisory/cpujan2018-3236628.html
- http://www.oracle.com/technetwork/security-advisory/cpujan2018-3236628.html
- http://www.oracle.com/technetwork/security-advisory/cpujul2018-4258247.html
- http://www.oracle.com/technetwork/security-advisory/cpujul2018-4258247.html
- 102103
- 102103
- 1039978
- 1039978
- RHSA-2018:0998
- RHSA-2018:0998
- RHSA-2018:2185
- RHSA-2018:2185
- RHSA-2018:2186
- RHSA-2018:2186
- RHSA-2018:2187
- RHSA-2018:2187
- https://cert-portal.siemens.com/productcert/pdf/ssa-179516.pdf
- https://cert-portal.siemens.com/productcert/pdf/ssa-179516.pdf
- https://github.com/openssl/openssl/commit/898fb884b706aaeb283de4812340bb0bde8476dc
- https://github.com/openssl/openssl/commit/898fb884b706aaeb283de4812340bb0bde8476dc
- FreeBSD-SA-17:12
- FreeBSD-SA-17:12
- GLSA-201712-03
- GLSA-201712-03
- https://security.netapp.com/advisory/ntap-20171208-0001/
- https://security.netapp.com/advisory/ntap-20171208-0001/
- https://security.netapp.com/advisory/ntap-20180117-0002/
- https://security.netapp.com/advisory/ntap-20180117-0002/
- https://security.netapp.com/advisory/ntap-20180419-0002/
- https://security.netapp.com/advisory/ntap-20180419-0002/
- DSA-4065
- DSA-4065
- https://www.digitalmunition.me/2017/12/cve-2017-3737-openssl-security-bypass-vulnerability/
- https://www.digitalmunition.me/2017/12/cve-2017-3737-openssl-security-bypass-vulnerability/
- https://www.openssl.org/news/secadv/20171207.txt
- https://www.openssl.org/news/secadv/20171207.txt
- https://www.oracle.com/technetwork/security-advisory/cpujul2019-5072835.html
- https://www.oracle.com/technetwork/security-advisory/cpujul2019-5072835.html
- https://www.tenable.com/security/tns-2017-16
- https://www.tenable.com/security/tns-2017-16
Modified: 2024-11-21
CVE-2017-3738
There is an overflow bug in the AVX2 Montgomery multiplication procedure used in exponentiation with 1024-bit moduli. 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 DH1024 are considered just feasible, 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 significant. However, for an attack on TLS to be meaningful, the server would have to share the DH1024 private key among multiple clients, which is no longer an option since CVE-2016-0701. This only affects processors that support the AVX2 but not ADX extensions like Intel Haswell (4th generation). Note: The impact from this issue is similar to CVE-2017-3736, CVE-2017-3732 and CVE-2015-3193. OpenSSL version 1.0.2-1.0.2m and 1.1.0-1.1.0g are affected. Fixed in OpenSSL 1.0.2n. Due to the low severity of this issue we are not issuing a new release of OpenSSL 1.1.0 at this time. The fix will be included in OpenSSL 1.1.0h when it becomes available. The fix is also available in commit e502cc86d in the OpenSSL git repository.
- http://www.oracle.com/technetwork/security-advisory/cpuapr2018-3678067.html
- http://www.oracle.com/technetwork/security-advisory/cpuapr2018-3678067.html
- http://www.oracle.com/technetwork/security-advisory/cpujan2018-3236628.html
- http://www.oracle.com/technetwork/security-advisory/cpujan2018-3236628.html
- http://www.oracle.com/technetwork/security-advisory/cpujul2018-4258247.html
- http://www.oracle.com/technetwork/security-advisory/cpujul2018-4258247.html
- http://www.oracle.com/technetwork/security-advisory/cpuoct2018-4428296.html
- http://www.oracle.com/technetwork/security-advisory/cpuoct2018-4428296.html
- 102118
- 102118
- 1039978
- 1039978
- RHSA-2018:0998
- RHSA-2018:0998
- RHSA-2018:2185
- RHSA-2018:2185
- RHSA-2018:2186
- RHSA-2018:2186
- RHSA-2018:2187
- RHSA-2018:2187
- https://github.com/openssl/openssl/commit/e502cc86df9dafded1694fceb3228ee34d11c11a
- https://github.com/openssl/openssl/commit/e502cc86df9dafded1694fceb3228ee34d11c11a
- https://nodejs.org/en/blog/vulnerability/december-2017-security-releases/
- https://nodejs.org/en/blog/vulnerability/december-2017-security-releases/
- FreeBSD-SA-17:12
- FreeBSD-SA-17:12
- GLSA-201712-03
- GLSA-201712-03
- https://security.netapp.com/advisory/ntap-20171208-0001/
- https://security.netapp.com/advisory/ntap-20171208-0001/
- https://support.hpe.com/hpsc/doc/public/display?docLocale=en_US&docId=emr_na-hpesbst03881en_us
- https://support.hpe.com/hpsc/doc/public/display?docLocale=en_US&docId=emr_na-hpesbst03881en_us
- DSA-4065
- DSA-4065
- DSA-4157
- DSA-4157
- https://www.openssl.org/news/secadv/20171207.txt
- https://www.openssl.org/news/secadv/20171207.txt
- https://www.openssl.org/news/secadv/20180327.txt
- https://www.openssl.org/news/secadv/20180327.txt
- https://www.oracle.com/technetwork/security-advisory/cpuapr2019-5072813.html
- https://www.oracle.com/technetwork/security-advisory/cpuapr2019-5072813.html
- https://www.oracle.com/technetwork/security-advisory/cpujan2019-5072801.html
- https://www.oracle.com/technetwork/security-advisory/cpujan2019-5072801.html
- https://www.oracle.com/technetwork/security-advisory/cpujul2019-5072835.html
- https://www.oracle.com/technetwork/security-advisory/cpujul2019-5072835.html
- https://www.tenable.com/security/tns-2017-16
- https://www.tenable.com/security/tns-2017-16
- https://www.tenable.com/security/tns-2018-04
- https://www.tenable.com/security/tns-2018-04
- https://www.tenable.com/security/tns-2018-06
- https://www.tenable.com/security/tns-2018-06
- https://www.tenable.com/security/tns-2018-07
- https://www.tenable.com/security/tns-2018-07