var-201910-0902
Vulnerability from variot
A use-after-free in binder.c allows an elevation of privilege from an application to the Linux Kernel. No user interaction is required to exploit this vulnerability, however exploitation does require either the installation of a malicious local application or a separate vulnerability in a network facing application.Product: AndroidAndroid ID: A-141720095. Android Contains a vulnerability in the use of freed memory. This vulnerability Android ID: A-141720095 It is published asInformation is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
[slackware-security] Slackware 14.2 kernel (SSA:2019-311-01)
New kernel packages are available for Slackware 14.2 to fix security issues.
Here are the details from the Slackware 14.2 ChangeLog: +--------------------------+ patches/packages/linux-4.4.199/: Upgraded. These updates fix various bugs and security issues. Be sure to upgrade your initrd after upgrading the kernel packages. If you use lilo to boot your machine, be sure lilo.conf points to the correct kernel and initrd and run lilo as root to update the bootloader. If you use elilo to boot your machine, you should run eliloconfig to copy the kernel and initrd to the EFI System Partition. For more information, see: Fixed in 4.4.191: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-3900 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15118 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-10906 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-10905 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-10638 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15117 Fixed in 4.4.193: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14835 Fixed in 4.4.194: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14816 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14814 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15505 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14821 Fixed in 4.4.195: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17053 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17052 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17056 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17055 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17054 Fixed in 4.4.196: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-2215 Fixed in 4.4.197: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-16746 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2018-20976 Fixed in 4.4.198: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17075 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17133 Fixed in 4.4.199: https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15098 ( Security fix *) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated packages for Slackware 14.2: ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-generic-4.4.199-i586-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-generic-smp-4.4.199_smp-i686-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-headers-4.4.199_smp-x86-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-huge-4.4.199-i586-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-huge-smp-4.4.199_smp-i686-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-modules-4.4.199-i586-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-modules-smp-4.4.199_smp-i686-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-source-4.4.199_smp-noarch-1.txz
Updated packages for Slackware x86_64 14.2: ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-generic-4.4.199-x86_64-1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-headers-4.4.199-x86-1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-huge-4.4.199-x86_64-1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-modules-4.4.199-x86_64-1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-source-4.4.199-noarch-1.txz
MD5 signatures: +-------------+
Slackware 14.2 packages:
0e523f42e759ecc2399f36e37672f110 kernel-generic-4.4.199-i586-1.txz ee6451f5362008b46fee2e08e3077b21 kernel-generic-smp-4.4.199_smp-i686-1.txz a8338ef88f2e3ea9c74d564c36ccd420 kernel-headers-4.4.199_smp-x86-1.txz cd9e9c241e4eec2fba1dae658a28870e kernel-huge-4.4.199-i586-1.txz 842030890a424023817d42a83a86a7f4 kernel-huge-smp-4.4.199_smp-i686-1.txz 257db024bb4501548ac9118dbd2d9ae6 kernel-modules-4.4.199-i586-1.txz 96377cbaf7bca55aaca70358c63151a7 kernel-modules-smp-4.4.199_smp-i686-1.txz 0673e86466f9e624964d95107cf6712f kernel-source-4.4.199_smp-noarch-1.txz
Slackware x86_64 14.2 packages: 6d1ff428e7cad6caa8860acc402447a1 kernel-generic-4.4.199-x86_64-1.txz dadc091dc725b8227e0d1e35098d6416 kernel-headers-4.4.199-x86-1.txz f5f4c034203f44dd1513ad3504c42515 kernel-huge-4.4.199-x86_64-1.txz a5337cd8b2ca80d4d93b9e9688e42b03 kernel-modules-4.4.199-x86_64-1.txz 5dd6e46c04f37b97062dc9e52cc38add kernel-source-4.4.199-noarch-1.txz
Installation instructions: +------------------------+
Upgrade the packages as root:
upgradepkg kernel-*.txz
If you are using an initrd, you'll need to rebuild it.
For a 32-bit SMP machine, use this command (substitute the appropriate kernel version if you are not running Slackware 14.2):
/usr/share/mkinitrd/mkinitrd_command_generator.sh -k 4.4.199-smp | bash
For a 64-bit machine, or a 32-bit uniprocessor machine, use this command (substitute the appropriate kernel version if you are not running Slackware 14.2):
/usr/share/mkinitrd/mkinitrd_command_generator.sh -k 4.4.199 | bash
Please note that "uniprocessor" has to do with the kernel you are running, not with the CPU. Most systems should run the SMP kernel (if they can) regardless of the number of cores the CPU has. If you aren't sure which kernel you are running, run "uname -a". If you see SMP there, you are running the SMP kernel and should use the 4.4.199-smp version when running mkinitrd_command_generator. Note that this is only for 32-bit -- 64-bit systems should always use 4.4.199 as the version.
If you are using lilo or elilo to boot the machine, you'll need to ensure that the machine is properly prepared before rebooting.
If using LILO: By default, lilo.conf contains an image= line that references a symlink that always points to the correct kernel. No editing should be required unless your machine uses a custom lilo.conf. If that is the case, be sure that the image= line references the correct kernel file. Either way, you'll need to run "lilo" as root to reinstall the boot loader.
If using elilo: Ensure that the /boot/vmlinuz symlink is pointing to the kernel you wish to use, and then run eliloconfig to update the EFI System Partition.
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address. | +------------------------------------------------------------------------+ -----BEGIN PGP SIGNATURE-----
iEYEARECAAYFAl3Ej4wACgkQakRjwEAQIjPBGgCbBvQSowDI1fl2+9FnjAuXifIV qp4AoIBHeQ0arALUOqrVAfv+sZvRsiwu =/1NF -----END PGP SIGNATURE----- . ========================================================================== Ubuntu Security Notice USN-4186-3 November 13, 2019
linux vulnerability
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 16.04 LTS
Summary:
Several security issues were fixed in the Linux kernel. It was discovered that the kernel fix for CVE-2019-0155 (i915 missing Blitter Command Streamer check) was incomplete on 64-bit Intel x86 systems. This update addresses the issue.
We apologize for the inconvenience.
Original advisory details:
Stephan van Schaik, Alyssa Milburn, Sebastian \xd6sterlund, Pietro Frigo, Kaveh Razavi, Herbert Bos, Cristiano Giuffrida, Giorgi Maisuradze, Moritz Lipp, Michael Schwarz, Daniel Gruss, and Jo Van Bulck discovered that Intel processors using Transactional Synchronization Extensions (TSX) could expose memory contents previously stored in microarchitectural buffers to a malicious process that is executing on the same CPU core. A local attacker could use this to expose sensitive information. (CVE-2019-11135)
It was discovered that the Intel i915 graphics chipsets allowed userspace to modify page table entries via writes to MMIO from the Blitter Command Streamer and expose kernel memory information. A local attacker could use this to expose sensitive information or possibly elevate privileges. (CVE-2019-0155)
Deepak Gupta discovered that on certain Intel processors, the Linux kernel did not properly perform invalidation on page table updates by virtual guest operating systems. A local attacker in a guest VM could use this to cause a denial of service (host system crash). (CVE-2018-12207)
It was discovered that the Intel i915 graphics chipsets could cause a system hang when userspace performed a read from GT memory mapped input output (MMIO) when the product is in certain low power states. A local attacker could use this to cause a denial of service. (CVE-2019-0154)
Hui Peng discovered that the Atheros AR6004 USB Wi-Fi device driver for the Linux kernel did not properly validate endpoint descriptors returned by the device. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2019-15098)
It was discovered that a buffer overflow existed in the 802.11 Wi-Fi configuration interface for the Linux kernel when handling beacon settings. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-16746)
Ori Nimron discovered that the AX25 network protocol implementation in the Linux kernel did not properly perform permissions checks. A local attacker could use this to create a raw socket. (CVE-2019-17052)
Ori Nimron discovered that the IEEE 802.15.4 Low-Rate Wireless network protocol implementation in the Linux kernel did not properly perform permissions checks. A local attacker could use this to create a raw socket. (CVE-2019-17053)
Ori Nimron discovered that the Appletalk network protocol implementation in the Linux kernel did not properly perform permissions checks. A local attacker could use this to create a raw socket. (CVE-2019-17054)
Ori Nimron discovered that the modular ISDN network protocol implementation in the Linux kernel did not properly perform permissions checks. A local attacker could use this to create a raw socket. (CVE-2019-17055)
Ori Nimron discovered that the Near field Communication (NFC) network protocol implementation in the Linux kernel did not properly perform permissions checks. A local attacker could use this to create a raw socket. (CVE-2019-17056)
Nico Waisman discovered that a buffer overflow existed in the Realtek Wi-Fi driver for the Linux kernel when handling Notice of Absence frames. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-17666)
Maddie Stone discovered that the Binder IPC Driver implementation in the Linux kernel contained a use-after-free vulnerability. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-2215)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 16.04 LTS: linux-image-4.4.0-169-generic 4.4.0-169.198 linux-image-4.4.0-169-generic-lpae 4.4.0-169.198 linux-image-4.4.0-169-lowlatency 4.4.0-169.198 linux-image-generic 4.4.0.169.177 linux-image-generic-lpae 4.4.0.169.177 linux-image-lowlatency 4.4.0.169.177 linux-image-virtual 4.4.0.169.177
Please note that mitigating the TSX (CVE-2019-11135) and i915 (CVE-2019-0154) issues requires corresponding microcode and graphics firmware updates respectively.
After a standard system update you need to reboot your computer to make all the necessary changes.
ATTENTION: Due to an unavoidable ABI change the kernel updates have been given a new version number, which requires you to recompile and reinstall all third party kernel modules you might have installed. Unless you manually uninstalled the standard kernel metapackages (e.g. linux-generic, linux-generic-lts-RELEASE, linux-virtual, linux-powerpc), a standard system upgrade will automatically perform this as well.
References: https://usn.ubuntu.com/4186-3 https://usn.ubuntu.com/4186-1 CVE-2019-0155, https://bugs.launchpad.net/bugs/1852141
Package Information: https://launchpad.net/ubuntu/+source/linux/4.4.0-169.198
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"trust": 1.0, "vendor": "netapp", "version": null }, { "model": "figo-al00a", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.130\\(c00e115r2p8t8\\)" }, { "model": "rhone-al00", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "8.0.0.376\\(c00\\)" }, { "model": "neo-al00d", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.321\\(c786e320r1p1t8\\)" }, { "model": "florida-tl10b", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.128\\(c01e112r1p6t8\\)" }, { "model": "aff baseboard management controller", "scope": "eq", "trust": 1.0, "vendor": "netapp", "version": null }, { "model": "leland-tl10b", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.130\\(c01e112r2p10t8\\)" }, { "model": "bla-tl00b", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "10.0.0.170\\(c01e170r1p4\\)" }, { "model": "hci management node", "scope": "eq", "trust": 1.0, "vendor": "netapp", "version": null }, { "model": "yale-l21a", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "10.1.0.231\\(c10e3r3p2\\)" }, { "model": "leland-tl10c", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.130\\(c01e112r2p10t8\\)" }, { "model": "lelandp-al00c", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.130\\(c00e112r2p10t8\\)" }, { "model": "tony-tl00b", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "10.0.0.175\\(c01e59r2p11\\)" }, { "model": "yale-al00a", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "10.1.0.160\\(c00e160r8p12\\)" }, { "model": "lelandp-l22c", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.156\\(c636e5r1p5t8\\)" }, { "model": "berkeley-tl10", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.333\\(c01e333r1p1t8\\)" }, { "model": "ubuntu linux", "scope": "eq", "trust": 1.0, "vendor": "canonical", "version": "16.04" }, { "model": "bla-l29c", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.300\\(c432e4r1p11t8\\)" }, { "model": "solidfire baseboard management controller", "scope": "eq", "trust": 1.0, "vendor": "netapp", "version": null }, { "model": "columbia-l29d", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.325\\(c432e4r1p12t8\\)" }, { "model": "leland-al10b", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.130\\(c00e112r2p10t8\\)" }, { "model": "stanford-l09", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.211\\(c635e2r1p4t8\\)" }, { "model": "nova 3e", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.201\\(zafc185e4r1p8t8\\)" }, { "model": "jakarta-al00a", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.260\\(c00e120r2p2\\)" }, { "model": "florida-l22", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.150\\(c636e6r1p5t8\\)" }, { "model": "h700s", "scope": "eq", "trust": 1.0, "vendor": "netapp", "version": null }, { "model": "p20 lite", "scope": "lt", "trust": 1.0, "vendor": "huawei", "version": "9.1.0.201\\(zafc185e4r1p8t8\\)" }, { "model": "fas2750", "scope": "eq", "trust": 1.0, "vendor": "netapp", "version": null }, { "model": "android", "scope": null, "trust": 0.8, "vendor": "google", "version": null } ], "sources": [ { "db": "JVNDB", "id": "JVNDB-2019-010672" }, { "db": "NVD", "id": "CVE-2019-2215" } ] }, "configurations": { "@context": { "@vocab": "https://www.variotdbs.pl/ref/configurations#", "children": { "@container": "@list" }, "cpe_match": { "@container": "@list" }, "data": { "@container": "@list" }, "nodes": { "@container": "@list" } }, "data": [ { "CVE_data_version": "4.0", "nodes": [ { "cpe_match": [ { "cpe22Uri": "cpe:/o:google:android", "vulnerable": true } ], "operator": "OR" } ] } ], "sources": [ { "db": "JVNDB", "id": "JVNDB-2019-010672" } ] }, "credits": { "@context": { "@vocab": "https://www.variotdbs.pl/ref/credits#", "sources": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/ref/sources#" } } }, "data": "Ubuntu", "sources": [ { "db": "PACKETSTORM", "id": "155309" }, { "db": "PACKETSTORM", "id": "155335" } ], "trust": 0.2 }, "cve": "CVE-2019-2215", "cvss": { "@context": { "cvssV2": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/ref/cvss/cvssV2#" }, "@id": "https://www.variotdbs.pl/ref/cvss/cvssV2" }, "cvssV3": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/ref/cvss/cvssV3#" }, "@id": "https://www.variotdbs.pl/ref/cvss/cvssV3/" }, "severity": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/cvss/severity#" }, "@id": "https://www.variotdbs.pl/ref/cvss/severity" }, "sources": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/ref/sources#" }, "@id": "https://www.variotdbs.pl/ref/sources" } }, "data": [ { "cvssV2": [ { "accessComplexity": "LOW", "accessVector": "LOCAL", "authentication": "NONE", "author": "nvd@nist.gov", "availabilityImpact": "PARTIAL", "baseScore": 4.6, "confidentialityImpact": "PARTIAL", "exploitabilityScore": 3.9, "id": "CVE-2019-2215", "impactScore": 6.4, "integrityImpact": "PARTIAL", "severity": "MEDIUM", "trust": 1.9, "vectorString": "AV:L/AC:L/Au:N/C:P/I:P/A:P", "version": "2.0" } ], "cvssV3": [ { "attackComplexity": "LOW", "attackVector": "LOCAL", "author": "nvd@nist.gov", "availabilityImpact": "HIGH", "baseScore": 7.8, "baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "exploitabilityScore": 1.8, "id": "CVE-2019-2215", "impactScore": 5.9, "integrityImpact": "HIGH", "privilegesRequired": "LOW", "scope": "UNCHANGED", "trust": 1.0, "userInteraction": "NONE", "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1" }, { "attackComplexity": "Low", "attackVector": "Local", "author": "NVD", "availabilityImpact": "High", "baseScore": 7.8, "baseSeverity": "High", "confidentialityImpact": "High", "exploitabilityScore": null, "id": "CVE-2019-2215", "impactScore": null, "integrityImpact": "High", "privilegesRequired": "Low", "scope": "Unchanged", "trust": 0.8, "userInteraction": "None", "vectorString": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.0" } ], "severity": [ { "author": "nvd@nist.gov", "id": "CVE-2019-2215", "trust": 1.0, "value": "HIGH" }, { "author": "NVD", "id": "CVE-2019-2215", "trust": 0.8, "value": "High" }, { "author": "CNNVD", "id": "CNNVD-201910-198", "trust": 0.6, "value": "HIGH" }, { "author": "VULMON", "id": "CVE-2019-2215", "trust": 0.1, "value": "MEDIUM" } ] } ], "sources": [ { "db": "VULMON", "id": "CVE-2019-2215" }, { "db": "JVNDB", "id": "JVNDB-2019-010672" }, { "db": "CNNVD", "id": "CNNVD-201910-198" }, { "db": "NVD", "id": "CVE-2019-2215" } ] }, "description": { "@context": { "@vocab": "https://www.variotdbs.pl/ref/description#", "sources": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/ref/sources#" } } }, "data": "A use-after-free in binder.c allows an elevation of privilege from an application to the Linux Kernel. No user interaction is required to exploit this vulnerability, however exploitation does require either the installation of a malicious local application or a separate vulnerability in a network facing application.Product: AndroidAndroid ID: A-141720095. Android Contains a vulnerability in the use of freed memory. This vulnerability Android ID: A-141720095 It is published asInformation is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n[slackware-security] Slackware 14.2 kernel (SSA:2019-311-01)\n\nNew kernel packages are available for Slackware 14.2 to fix security issues. \n\n\nHere are the details from the Slackware 14.2 ChangeLog:\n+--------------------------+\npatches/packages/linux-4.4.199/*: Upgraded. \n These updates fix various bugs and security issues. \n Be sure to upgrade your initrd after upgrading the kernel packages. \n If you use lilo to boot your machine, be sure lilo.conf points to the correct\n kernel and initrd and run lilo as root to update the bootloader. \n If you use elilo to boot your machine, you should run eliloconfig to copy the\n kernel and initrd to the EFI System Partition. \n For more information, see:\n Fixed in 4.4.191:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-3900\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15118\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-10906\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-10905\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-10638\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15117\n Fixed in 4.4.193:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14835\n Fixed in 4.4.194:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14816\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14814\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15505\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-14821\n Fixed in 4.4.195:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17053\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17052\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17056\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17055\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17054\n Fixed in 4.4.196:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-2215\n Fixed in 4.4.197:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-16746\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2018-20976\n Fixed in 4.4.198:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17075\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-17133\n Fixed in 4.4.199:\n https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2019-15098\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated packages for Slackware 14.2:\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-generic-4.4.199-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-generic-smp-4.4.199_smp-i686-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-headers-4.4.199_smp-x86-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-huge-4.4.199-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-huge-smp-4.4.199_smp-i686-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-modules-4.4.199-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-modules-smp-4.4.199_smp-i686-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.199/kernel-source-4.4.199_smp-noarch-1.txz\n\nUpdated packages for Slackware x86_64 14.2:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-generic-4.4.199-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-headers-4.4.199-x86-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-huge-4.4.199-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-modules-4.4.199-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.199/kernel-source-4.4.199-noarch-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.2 packages:\n\n0e523f42e759ecc2399f36e37672f110 kernel-generic-4.4.199-i586-1.txz\nee6451f5362008b46fee2e08e3077b21 kernel-generic-smp-4.4.199_smp-i686-1.txz\na8338ef88f2e3ea9c74d564c36ccd420 kernel-headers-4.4.199_smp-x86-1.txz\ncd9e9c241e4eec2fba1dae658a28870e kernel-huge-4.4.199-i586-1.txz\n842030890a424023817d42a83a86a7f4 kernel-huge-smp-4.4.199_smp-i686-1.txz\n257db024bb4501548ac9118dbd2d9ae6 kernel-modules-4.4.199-i586-1.txz\n96377cbaf7bca55aaca70358c63151a7 kernel-modules-smp-4.4.199_smp-i686-1.txz\n0673e86466f9e624964d95107cf6712f kernel-source-4.4.199_smp-noarch-1.txz\n\nSlackware x86_64 14.2 packages:\n6d1ff428e7cad6caa8860acc402447a1 kernel-generic-4.4.199-x86_64-1.txz\ndadc091dc725b8227e0d1e35098d6416 kernel-headers-4.4.199-x86-1.txz\nf5f4c034203f44dd1513ad3504c42515 kernel-huge-4.4.199-x86_64-1.txz\na5337cd8b2ca80d4d93b9e9688e42b03 kernel-modules-4.4.199-x86_64-1.txz\n5dd6e46c04f37b97062dc9e52cc38add kernel-source-4.4.199-noarch-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the packages as root:\n# upgradepkg kernel-*.txz\n\nIf you are using an initrd, you\u0027ll need to rebuild it. \n\nFor a 32-bit SMP machine, use this command (substitute the appropriate\nkernel version if you are not running Slackware 14.2):\n# /usr/share/mkinitrd/mkinitrd_command_generator.sh -k 4.4.199-smp | bash\n\nFor a 64-bit machine, or a 32-bit uniprocessor machine, use this command\n(substitute the appropriate kernel version if you are not running\nSlackware 14.2):\n# /usr/share/mkinitrd/mkinitrd_command_generator.sh -k 4.4.199 | bash\n\nPlease note that \"uniprocessor\" has to do with the kernel you are running,\nnot with the CPU. Most systems should run the SMP kernel (if they can)\nregardless of the number of cores the CPU has. If you aren\u0027t sure which\nkernel you are running, run \"uname -a\". If you see SMP there, you are\nrunning the SMP kernel and should use the 4.4.199-smp version when running\nmkinitrd_command_generator. Note that this is only for 32-bit -- 64-bit\nsystems should always use 4.4.199 as the version. \n\nIf you are using lilo or elilo to boot the machine, you\u0027ll need to ensure\nthat the machine is properly prepared before rebooting. \n\nIf using LILO:\nBy default, lilo.conf contains an image= line that references a symlink\nthat always points to the correct kernel. No editing should be required\nunless your machine uses a custom lilo.conf. If that is the case, be sure\nthat the image= line references the correct kernel file. Either way,\nyou\u0027ll need to run \"lilo\" as root to reinstall the boot loader. \n\nIf using elilo:\nEnsure that the /boot/vmlinuz symlink is pointing to the kernel you wish\nto use, and then run eliloconfig to update the EFI System Partition. \n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. |\n+------------------------------------------------------------------------+\n-----BEGIN PGP SIGNATURE-----\n\niEYEARECAAYFAl3Ej4wACgkQakRjwEAQIjPBGgCbBvQSowDI1fl2+9FnjAuXifIV\nqp4AoIBHeQ0arALUOqrVAfv+sZvRsiwu\n=/1NF\n-----END PGP SIGNATURE-----\n. ==========================================================================\nUbuntu Security Notice USN-4186-3\nNovember 13, 2019\n\nlinux vulnerability\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 16.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in the Linux kernel. It was discovered\nthat the kernel fix for CVE-2019-0155 (i915 missing Blitter Command\nStreamer check) was incomplete on 64-bit Intel x86 systems. This\nupdate addresses the issue. \n\nWe apologize for the inconvenience. \n\nOriginal advisory details:\n\n Stephan van Schaik, Alyssa Milburn, Sebastian \\xd6sterlund, Pietro Frigo,\n Kaveh Razavi, Herbert Bos, Cristiano Giuffrida, Giorgi Maisuradze, Moritz\n Lipp, Michael Schwarz, Daniel Gruss, and Jo Van Bulck discovered that Intel\n processors using Transactional Synchronization Extensions (TSX) could\n expose memory contents previously stored in microarchitectural buffers to a\n malicious process that is executing on the same CPU core. A local attacker\n could use this to expose sensitive information. (CVE-2019-11135)\n\n It was discovered that the Intel i915 graphics chipsets allowed userspace\n to modify page table entries via writes to MMIO from the Blitter Command\n Streamer and expose kernel memory information. A local attacker could use\n this to expose sensitive information or possibly elevate privileges. \n (CVE-2019-0155)\n\n Deepak Gupta discovered that on certain Intel processors, the Linux kernel\n did not properly perform invalidation on page table updates by virtual\n guest operating systems. A local attacker in a guest VM could use this to\n cause a denial of service (host system crash). (CVE-2018-12207)\n\n It was discovered that the Intel i915 graphics chipsets could cause a\n system hang when userspace performed a read from GT memory mapped input\n output (MMIO) when the product is in certain low power states. A local\n attacker could use this to cause a denial of service. (CVE-2019-0154)\n\n Hui Peng discovered that the Atheros AR6004 USB Wi-Fi device driver for the\n Linux kernel did not properly validate endpoint descriptors returned by the\n device. A physically proximate attacker could use this to cause a denial of\n service (system crash). (CVE-2019-15098)\n\n It was discovered that a buffer overflow existed in the 802.11 Wi-Fi\n configuration interface for the Linux kernel when handling beacon settings. \n A local attacker could use this to cause a denial of service (system crash)\n or possibly execute arbitrary code. (CVE-2019-16746)\n\n Ori Nimron discovered that the AX25 network protocol implementation in the\n Linux kernel did not properly perform permissions checks. A local attacker\n could use this to create a raw socket. (CVE-2019-17052)\n\n Ori Nimron discovered that the IEEE 802.15.4 Low-Rate Wireless network\n protocol implementation in the Linux kernel did not properly perform\n permissions checks. A local attacker could use this to create a raw socket. \n (CVE-2019-17053)\n\n Ori Nimron discovered that the Appletalk network protocol implementation in\n the Linux kernel did not properly perform permissions checks. A local\n attacker could use this to create a raw socket. (CVE-2019-17054)\n\n Ori Nimron discovered that the modular ISDN network protocol implementation\n in the Linux kernel did not properly perform permissions checks. A local\n attacker could use this to create a raw socket. (CVE-2019-17055)\n\n Ori Nimron discovered that the Near field Communication (NFC) network\n protocol implementation in the Linux kernel did not properly perform\n permissions checks. A local attacker could use this to create a raw socket. \n (CVE-2019-17056)\n\n Nico Waisman discovered that a buffer overflow existed in the Realtek Wi-Fi\n driver for the Linux kernel when handling Notice of Absence frames. A\n physically proximate attacker could use this to cause a denial of service\n (system crash) or possibly execute arbitrary code. (CVE-2019-17666)\n\n Maddie Stone discovered that the Binder IPC Driver implementation in the\n Linux kernel contained a use-after-free vulnerability. A local attacker\n could use this to cause a denial of service (system crash) or possibly\n execute arbitrary code. 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Sightings
Author | Source | Type | Date |
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Nomenclature
- Seen: The vulnerability was mentioned, discussed, or seen somewhere by the user.
- Confirmed: The vulnerability is confirmed from an analyst perspective.
- Exploited: This vulnerability was exploited and seen by the user reporting the sighting.
- Patched: This vulnerability was successfully patched by the user reporting the sighting.
- Not exploited: This vulnerability was not exploited or seen by the user reporting the sighting.
- Not confirmed: The user expresses doubt about the veracity of the vulnerability.
- Not patched: This vulnerability was not successfully patched by the user reporting the sighting.