ID KB4467706 Type mskb Reporter Microsoft Modified 2018-12-11T18:55:51
Description
<html><body><p>Learn more about update KB4467706, including improvements and fixes, any known issues, and how to get the update.</p><h2>Improvements and fixes</h2><div><p>This security update includes improvements and fixes that were a part of update <a data-content-id="4463105" data-content-type="article" href="" managed-link="" target="_blank">KB4463105</a> (released October 18, 2018) and addresses the following issues:</p><ul><li>Addresses an issue that causes high CPU usage that results in performance degradation on some systems with Family 15h and 16h AMD processors. This issue occurs after installing the July 2018 Windows updates from Microsoft and the AMD microcode updates that address Spectre Variant 2 (<a data-content-id="" data-content-type="" href="https://na01.safelinks.protection.outlook.com/?url=https%3A%2F%2Fportal.msrc.microsoft.com%2Fen-US%2Fsecurity-guidance%2Fadvisory%2FADV180002&data=02%7C01%7Cv-shros%40microsoft.com%7C5d87d9af06654ddfae0908d643dadab2%7C72f988bf86f141af91ab2d7cd011db47%7C1%7C0%7C636771004591566004&sdata=t3gCgQzlSzPOFeS9LVwFasstSPbaJ%2BbxvSsOLd5JNJs%3D&reserved=0" managed-link="" target="_blank">CVE-2017-5715</a> – Branch Target Injection).</li><li>Security updates to Windows App Platform and Frameworks, Windows Graphics, Windows Wireless Networking , and Windows Kernel.</li></ul><p>For more information about the resolved security vulnerabilities, please refer to the <a data-content-id="" data-content-type="" href="https://portal.msrc.microsoft.com/security-guidance" managed-link="" target="_blank">Security Update Guide</a>.</p></div><h2>Known issues in this update</h2><table class="table"><tbody><tr><td>Symptom</td><td>Workaround</td></tr><tr><td>After installing this update, users may not be able to use the <strong>Seek Bar</strong> in Windows Media Player when playing specific files. This issue does not affect normal playback.</td><td><p><span><span>This issue is resolved in <a data-content-id="4471325" data-content-type="article" href="" managed-link="" target="_blank">KB4471325</a>.</span></span></p></td></tr></tbody></table><h2>How to get this update</h2><div><p>This update will be downloaded and installed automatically from Windows Update. To get the stand-alone package for this update, go to the <a data-content-id="" data-content-type="" href="http://catalog.update.microsoft.com/v7/site/Search.aspx?q=KB4467706" managed-link="" target="_blank">Microsoft Update Catalog</a> website.</p><p><strong>File information</strong></p><p>For a list of the files that are provided in this update, download the <a data-content-id="" data-content-type="" href="http://download.microsoft.com/download/D/1/8/D1863195-067F-49F1-B13A-325ADBE98186/4467706.csv" managed-link="" target="_blank">file information for update 4467706</a>.</p></div></body></html>
{"id": "KB4467706", "bulletinFamily": "microsoft", "title": "November 13, 2018\u2014KB4467706 (Monthly Rollup)", "description": "<html><body><p>Learn more about update KB4467706, including improvements and fixes, any known issues, and how to get the update.</p><h2>Improvements and fixes</h2><div><p>This security update includes improvements and fixes that were a part of update <a data-content-id=\"4463105\" data-content-type=\"article\" href=\"\" managed-link=\"\" target=\"_blank\">KB4463105</a> (released October 18, 2018) and addresses the following issues:</p><ul><li>Addresses an issue that causes high CPU usage that results in performance degradation on some systems with Family 15h and 16h AMD processors. This issue occurs after installing the July 2018 Windows updates from Microsoft and the AMD microcode updates that address Spectre Variant 2 (<a data-content-id=\"\" data-content-type=\"\" href=\"https://na01.safelinks.protection.outlook.com/?url=https%3A%2F%2Fportal.msrc.microsoft.com%2Fen-US%2Fsecurity-guidance%2Fadvisory%2FADV180002&data=02%7C01%7Cv-shros%40microsoft.com%7C5d87d9af06654ddfae0908d643dadab2%7C72f988bf86f141af91ab2d7cd011db47%7C1%7C0%7C636771004591566004&sdata=t3gCgQzlSzPOFeS9LVwFasstSPbaJ%2BbxvSsOLd5JNJs%3D&reserved=0\" managed-link=\"\" target=\"_blank\">CVE-2017-5715</a> \u2013 Branch Target Injection).</li><li>Security updates to Windows App Platform and Frameworks, Windows Graphics, Windows Wireless Networking , and Windows Kernel.</li></ul><p>For more information about the resolved security vulnerabilities, please refer to the <a data-content-id=\"\" data-content-type=\"\" href=\"https://portal.msrc.microsoft.com/security-guidance\" managed-link=\"\" target=\"_blank\">Security Update Guide</a>.</p></div><h2>Known issues in this update</h2><table class=\"table\"><tbody><tr><td>Symptom</td><td>Workaround</td></tr><tr><td>After installing this update, users may not be able to use the <strong>Seek Bar</strong> in Windows Media Player when playing specific files.\u00a0This issue does not affect normal playback.</td><td><p><span><span>This issue is resolved in <a data-content-id=\"4471325\" data-content-type=\"article\" href=\"\" managed-link=\"\" target=\"_blank\">KB4471325</a>.</span></span></p></td></tr></tbody></table><h2>How to get this update</h2><div><p>This update will be downloaded and installed automatically from Windows Update. To get the stand-alone package for this update, go to the\u00a0<a data-content-id=\"\" data-content-type=\"\" href=\"http://catalog.update.microsoft.com/v7/site/Search.aspx?q=KB4467706\" managed-link=\"\" target=\"_blank\">Microsoft Update Catalog</a>\u00a0website.</p><p><strong>File information</strong></p><p>For a list of the files that are provided in this update, download the\u00a0<a data-content-id=\"\" data-content-type=\"\" href=\"http://download.microsoft.com/download/D/1/8/D1863195-067F-49F1-B13A-325ADBE98186/4467706.csv\" managed-link=\"\" target=\"_blank\">file information for\u00a0update 4467706</a>.</p></div></body></html>", "published": "2018-11-13T00:00:00", "modified": "2018-12-11T18:55:51", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}, "href": "https://support.microsoft.com/en-us/help/4467706/", "reporter": "Microsoft", "references": [], "cvelist": ["CVE-2017-5715"], "type": "mskb", "lastseen": "2021-01-01T22:47:38", "edition": 15, "viewCount": 13, "enchantments": {"dependencies": {"references": [{"type": "cve", "idList": ["CVE-2017-5715"]}, {"type": "openvas", "idList": ["OPENVAS:1361412562311220181016", "OPENVAS:1361412562310851674", "OPENVAS:1361412562310812678", "OPENVAS:1361412562310851716", "OPENVAS:1361412562310812605", "OPENVAS:1361412562310704179", "OPENVAS:1361412562310882824", "OPENVAS:1361412562310851680", "OPENVAS:1361412562310910000", "OPENVAS:1361412562310843442"]}, {"type": "citrix", "idList": ["CTX231399"]}, {"type": "f5", "idList": ["F5:K91229003"]}, {"type": "centos", "idList": ["CESA-2018:0094", "CESA-2018:0023"]}, {"type": "nessus", "idList": ["UBUNTU_USN-3561-1.NASL", "REDHAT-RHSA-2018-0028.NASL", "REDHAT-RHSA-2018-0015.NASL", "RANCHEROS_1_1_4.NASL", "SUSE_SU-2018-1498-1.NASL", "DEBIAN_DLA-2148.NASL", "CENTOS_RHSA-2018-0030.NASL", "SUSE_SU-2018-0757-1.NASL", "REDHAT-RHSA-2018-0039.NASL", "NEWSTART_CGSL_NS-SA-2019-0016_DRACUT.NASL"]}, {"type": "suse", "idList": ["SUSE-SU-2018:0067-1", "SUSE-SU-2018:0006-1", 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["THREATPOST:66600F3B128B00AC1B1B38670F93DE04"]}], "modified": "2021-01-01T22:47:38", "rev": 2}, "score": {"value": 6.9, "vector": "NONE", "modified": "2021-01-01T22:47:38", "rev": 2}, "vulnersScore": 6.9}, "kb": "KB4467706", "msrc": "", "mscve": "", "msfamily": "", "msplatform": "", "msproducts": [], "supportAreaPaths": ["9dcd1ae8-74ee-a4f0-82ad-4736ad0727f7"], "supportAreaPathNodes": [{"id": "9dcd1ae8-74ee-a4f0-82ad-4736ad0727f7", "name": "Windows Server 2008 Service Pack 2", "parent": "4d83ba0e-5ad3-1b00-4303-1863823d2178", "tree": [], "type": "productversion"}], "primarySupportAreaPath": [{"id": "4d83ba0e-5ad3-1b00-4303-1863823d2178", "name": "Windows Server 2008", "parent": "7ff57180-2b05-67aa-2c03-ab46c7848b89", "tree": [], "type": "productname"}, {"id": "9dcd1ae8-74ee-a4f0-82ad-4736ad0727f7", "name": "Windows Server 2008 Service Pack 2", "parent": "4d83ba0e-5ad3-1b00-4303-1863823d2178", "tree": [], "type": "productversion"}, {"id": "7ff57180-2b05-67aa-2c03-ab46c7848b89", "name": 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{"cve": [{"lastseen": "2020-10-03T13:07:45", "description": "Systems with microprocessors utilizing speculative execution and indirect branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis.", "edition": 12, "cvss3": {"exploitabilityScore": 1.1, "cvssV3": {"baseSeverity": "MEDIUM", "confidentialityImpact": "HIGH", "attackComplexity": "HIGH", "scope": "CHANGED", "attackVector": "LOCAL", "availabilityImpact": "NONE", "integrityImpact": "NONE", "baseScore": 5.6, "privilegesRequired": "LOW", "vectorString": "CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N", "userInteraction": "NONE", "version": "3.0"}, "impactScore": 4.0}, "published": "2018-01-04T13:29:00", "title": "CVE-2017-5715", "type": "cve", "cwe": ["CWE-200"], "bulletinFamily": "NVD", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.4, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "COMPLETE", "availabilityImpact": "NONE", "integrityImpact": "NONE", "baseScore": 4.7, "vectorString": "AV:L/AC:M/Au:N/C:C/I:N/A:N", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "obtainUserPrivilege": false}, "cvelist": ["CVE-2017-5715"], "modified": "2020-05-05T11:31:00", "cpe": ["cpe:/h:intel:core_i3:4330t", "cpe:/h:intel:core_i7:840qm", "cpe:/h:intel:core_i3:530", "cpe:/h:intel:celeron_n:n4000", "cpe:/h:intel:core_i5:4200u", "cpe:/h:intel:core_i5:2405s", "cpe:/h:intel:xeon_e3_1225_v3:-", "cpe:/h:intel:core_i7:4710hq", "cpe:/h:intel:xeon_phi:7230f", "cpe:/h:intel:xeon_e5:2680", "cpe:/h:intel:xeon:e5520", "cpe:/h:intel:xeon_e5_2407_v2:-", "cpe:/h:intel:pentium_n:n3520", "cpe:/h:intel:core_i7:875k", "cpe:/h:intel:atom_z:z3735e", "cpe:/h:intel:core_i3:6098p", "cpe:/h:intel:xeon_e5_2448l:-", "cpe:/h:intel:core_i7:870s", "cpe:/h:intel:core_i7:4610m", "cpe:/h:intel:core_i7:2675qm", 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There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks.(CVE-2017-5715)\");\n\n script_tag(name:\"affected\", value:\"'qemu-kvm' package(s) on Huawei EulerOS V2.0SP1.\");\n\n script_tag(name:\"solution\", value:\"Please install the updated package(s).\");\n\n script_tag(name:\"solution_type\", value:\"VendorFix\");\n script_tag(name:\"qod_type\", value:\"package\");\n\n exit(0);\n}\n\ninclude(\"revisions-lib.inc\");\ninclude(\"pkg-lib-rpm.inc\");\n\nrelease = rpm_get_ssh_release();\nif(!release)\n exit(0);\n\nres = \"\";\nreport = \"\";\n\nif(release == \"EULEROS-2.0SP1\") {\n\n if(!isnull(res = isrpmvuln(pkg:\"qemu-img\", rpm:\"qemu-img~1.5.3~141.6.h2\", rls:\"EULEROS-2.0SP1\"))) {\n report += res;\n }\n\n if(report != \"\") {\n security_message(data:report);\n } else if (__pkg_match) {\n exit(99);\n }\n exit(0);\n}\n\nexit(0);", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "citrix": [{"lastseen": "2020-11-18T15:29:36", "bulletinFamily": "software", "cvelist": ["CVE-2017-5753", "CVE-2017-5754", "CVE-2017-5715"], "description": "<section class=\"article-content\" data-swapid=\"ArticleContent\">\n<div class=\"content-block\" data-swapid=\"ContentBlock\"><div>\n<div>\n<h2> Overview</h2>\n<div>\n<div>\n<div>\n<p>A new class of issues has been identified in common CPU architectures. The presently known issues could allow unprivileged code to read privileged memory locations.</p>\n<p>Citrix is analysing the potential impact of these issues across its product range. This bulletin will be updated as further information becomes available on the impacts of these issues and their variants.</p>\n<p>Please note that, although these are issues in the underlying processor hardware, Citrix intends to provide software updates, together with our partners, to mitigate these issues where practical.</p>\n<p>Please review the following sections for information on your specific Citrix products. This bulletin will be updated as more information becomes available. Customers can receive e-mail notifications about updated or new security bulletins by subscribing at the following address: <a href=\"https://support.citrix.com/user/alerts\">https://support.citrix.com/user/alerts</a> </p>\n</div>\n</div>\n</div>\n</div>\n<div>\n<h2> Products that we believe are not impacted:</h2>\n<div>\n<div>\n<div>\n<ul>\n<li>Citrix XenMobile Server: Citrix believes that currently supported versions of Citrix XenMobile Server are not impacted by the presently known variants of these issues.</li>\n<li>Citrix XenMobile MDX Toolkit and SDK: Citrix believes that currently supported versions of Citrix XenMobile MDX Toolkit and SDK are not impacted by the presently known variants of these issues.<br/> </li>\n<li>Citrix NetScaler (MPX/VPX): Citrix believes that currently supported versions of Citrix NetScaler MPX and VPX are not impacted by the presently known variants of these issues.</li>\n<li>Citrix NetScaler AppFirewall Platforms: Citrix believes that currently supported versions of Citrix NetScaler AppFirewall Platforms are not impacted by the presently known variants of these issues.<br/> </li>\n<li>Citrix NetScaler Management Analytics Service (MAS): Citrix believes that currently supported versions of the Citrix NetScaler Management Analytics Service are not impacted by presently known variants of these issues.</li>\n<li>Citrix Command Center: Citrix believes that currently supported versions of the Citrix Command Center, both hardware and software components, are not impacted by presently known variants of these issues.</li>\n<li>Citrix NetScaler Insight Center: Citrix believes that currently supported versions of Citrix NetScaler Insight Center are not impacted by the presently known variants of these issues.<br/> </li>\n<li>Citrix NetScaler SD-WAN (Standard. Enterprise, WAN Optimization (except 1000WS/2000WS platform) editions) / SD-WAN Center: Citrix believes that currently supported versions of Citrix NetScaler SD-WAN are not impacted by the presently known variants of these issues.</li>\n<li>Citrix ShareFile StorageZones Controller: Citrix believes that currently supported versions of Citrix ShareFile StorageZones Controller are not impacted by the presently known variants of these issues.</li>\n<li>Citrix License Server: Citrix believes that currently supported versions of Citrix License Server are not impacted by the presently known variants of these issues.<br/> </li>\n<li>Citrix StoreFront: Citrix believes that currently supported versions of Citrix StoreFront are not impacted by the presently known variants of these issues.<br/> </li>\n<li>Citrix App Orchestration: Citrix believes that currently supported versions of Citrix App Orchestration are not impacted by the presently known variants of these issues.<br/> </li>\n<li>Citrix App Layering: Citrix believes that currently supported versions of Citrix App Layering are not impacted by the presently known variants of these issues.<br/> </li>\n</ul>\n</div>\n</div>\n</div>\n</div>\n<div>\n<h2> Products that may require Third Party updates:</h2>\n<div>\n<div>\n<div>\n<ul>\n<li>Citrix XenApp/XenDesktop: Citrix believes that currently supported versions of the core Citrix XenApp and XenDesktop products are not impacted by presently known variants of these issues. However, it is probable that the underlying operating system, drivers and CPU firmware will require updating. Citrix strongly recommends that customers contact their operating system and hardware vendors for information on how to obtain these updates.</li>\n<li>Citrix Provisioning Services: Citrix believes that currently supported versions of Citrix Provisioning Services products are not impacted by presently known variants of these issues. However, it is probable that the underlying operating system, drivers and CPU firmware will require updating. Citrix strongly recommends that customers contact their operating system and hardware vendors for information on how to obtain these updates.</li>\n<li>Citrix AppDNA: Citrix believes that currently supported versions of Citrix AppDNA are not impacted by presently known variants of these issues. However, it is probable that the underlying operating system, drivers and CPU firmware will require updating. Citrix strongly recommends that customers contact their operating system and hardware vendors for information on how to obtain these updates.</li>\n<li>Citrix Linux VDA: Citrix believes that currently supported versions of Citrix Linux VDA are not impacted by presently known variants of these issues. However, it is probable that the underlying operating system, drivers and CPU firmware will require updating. Citrix strongly recommends that customers contact their operating system and hardware vendors for information on how to obtain these updates.</li>\n<li>Citrix XenMobile Apps: Citrix believes that currently supported versions of Citrix XenMobile Apps are not impacted by presently known variants of these issues. However, it is probable that the underlying operating system, drivers and CPU firmware will require updating. Citrix strongly recommends that customers contact their operating system and hardware vendors for information on how to obtain these updates.</li>\n<li>Citrix ShareFile Clients on Desktop and Mobile: Citrix believes that currently supported versions Citrix ShareFile Clients are not impacted by presently known variants of these issues. However, it is probable that the underlying operating system, drivers and CPU firmware will require updating. Citrix strongly recommends that customers contact their operating system and hardware vendors for information on how to obtain these updates.</li>\n<li>Citrix Receivers for Desktop and Mobile: Citrix believes that currently supported versions of Citrix Receivers are not impacted by presently known variants of these issues. However, it is probable that the underlying operating system, drivers and CPU firmware will require updating. Citrix strongly recommends that customers contact their operating system and hardware vendors for information on how to obtain these updates.</li>\n<li>ByteMobile products: When deployed in line with Citrix recommendations, Citrix believes that currently supported versions of ByteMobile products are not impacted by the presently known variants of these issues. However, Citrix strongly recommends that customers using virtualized installations of ByteMobile products contact their Citrix ByteMobile Telco Support contact for potential mitigations steps and further information.</li>\n</ul>\n<p> </p>\n</div>\n</div>\n</div>\n</div>\n<div>\n<h2> Products that we believe are impacted:</h2>\n<div>\n<div>\n<div>\n<ul>\n<li>Citrix NetScaler SDX: Citrix believes that currently supported versions of Citrix NetScaler SDX are not at risk from malicious network traffic. However, in light of these issues, Citrix strongly recommends that customers only deploy NetScaler instances on Citrix NetScaler SDX where the NetScaler admins are trusted.</li>\n<li>Citrix NetScaler SD-WAN (WANOpt1000WS/2000WS): When deployed in environments with only trusted administrators, Citrix believes that currently supported WAN Optimization versions of Citrix SD-WAN on 1000WS/2000WS platforms are not at risk from malicious network traffic. Citrix strongly recommends that Citrix SD-WAN 1000WS and 2000WS administrators ensure that access to the Citrix supplied Windows VM is limited to trusted administrators only</li>\n<li>Citrix XenServer: Please see <a href=\"https://support.citrix.com/article/ctx231390\">https://support.citrix.com/article/ctx231390</a> for information on Citrix XenServer</li>\n</ul>\n</div>\n</div>\n</div>\n</div>\n<div>\n<h2> What Citrix Is Doing</h2>\n<div>\n<div>\n<div>\n<div>\n<div>\n<p>Citrix is notifying customers and channel partners about this potential security issue. This article is also available from the Citrix Knowledge Center at <u> <a href=\"http://support.citrix.com/\">http://support.citrix.com/</a></u>.</p>\n</div>\n</div>\n</div>\n</div>\n</div>\n</div>\n<div>\n<h2> Obtaining Support on This Issue</h2>\n<div>\n<div>\n<div>\n<div>\n<div>\n<p>If you require technical assistance with this issue, please contact Citrix Technical Support. Contact details for Citrix Technical Support are available at <u> <a href=\"https://www.citrix.com/support/open-a-support-case.html\">https://www.citrix.com/support/open-a-support-case.html</a></u>. </p>\n</div>\n</div>\n</div>\n</div>\n</div>\n</div>\n<div>\n<h2> Reporting Security Vulnerabilities</h2>\n<div>\n<div>\n<div>\n<div>\n<div>\n<p>Citrix welcomes input regarding the security of its products and considers any and all potential vulnerabilities seriously. For guidance on how to report security-related issues to Citrix, please see the following document: CTX081743 \u2013 <a href=\"http://support.citrix.com/article/CTX081743\">Reporting Security Issues to Citrix</a></p>\n</div>\n</div>\n</div>\n</div>\n</div>\n</div>\n<div>\n<h2> Changelog</h2>\n<div>\n<div>\n<div>\n<table width=\"100%\">\n<tbody>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">Date </td>\n<td colspan=\"1\" rowspan=\"1\">Change</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">3rd January 2018 </td>\n<td colspan=\"1\" rowspan=\"1\">Initial publishing</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">3rd January 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Updated immediately after embargo expiry</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">4th January 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Updated to include XenServer</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">5th January 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Expanded product coverage</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">9th January 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Updated product coverage</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">11th January 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Added information for ByteMobile products</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">14th January 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Added information for NetScaler SD-WAN</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">1st February 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Added information for NetScaler MAS and Command Center</td>\n</tr>\n<tr>\n<td colspan=\"1\" rowspan=\"1\">6th February 2018</td>\n<td colspan=\"1\" rowspan=\"1\">Updated naming for XenMobile client components</td>\n</tr>\n</tbody>\n</table>\n</div>\n</div>\n</div>\n</div>\n</div></div>\n</section>", "edition": 2, "modified": "2018-02-06T04:00:00", "published": "2018-01-03T04:00:00", "id": "CTX231399", "href": "https://support.citrix.com/article/CTX231399", "title": "Citrix Security Updates for CVE-2017-5715, CVE-2017-5753, CVE-2017-5754", "type": "citrix", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "f5": [{"lastseen": "2020-04-06T22:39:55", "bulletinFamily": "software", "cvelist": ["CVE-2017-5753", "CVE-2017-5754", "CVE-2017-5715"], "description": "\nF5 Product Development has assigned IDs 698651, 701445, 701447, 704490, and 704483 (BIG-IP); 702233, 702236, and 702237 (BIG-IQ); 702353, 702354, and 702355 (Enterprise Manager); 702355, 702377, and 702378 (iWorkflow); CPF-24782, CPF-24783, and CPF-24784 (Traffix); LRS-65859, LRS-65860, and LRS-65861 (LineRate) to this vulnerability. Additionally, [BIG-IP iHealth](<https://www.f5.com/support/support-tools/big-ip-ihealth>) may list Heuristic H91229003 on the **Diagnostics** > **Identified** > **Medium** page.\n\nTo determine if your product and version have been evaluated for this vulnerability, refer to the **Applies to (see versions)** box. To determine if your release is known to be vulnerable, the components or features that are affected by the vulnerability, and for information about releases or hotfixes that address the vulnerability, refer to the following table.\n\nProduct | Branch | Versions known to be vulnerable | Fixes introduced in | Severity | CVSSv3 score1 | Vulnerable component or feature \n---|---|---|---|---|---|--- \nBIG-IP (LTM, AAM, AFM, Analytics, APM, ASM, DNS, Edge Gateway, GTM, Link Controller, PEM, WebAccelerator, WebSafe) | 15.x | None | 15.0.0 | Medium (CVE-2017-5715) \nMedium (CVE-2017-5753) \nMedium (CVE-2017-5754) | [6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5715 \n[5.3](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N/E:P/RL:U/RC:C>) CVE-2017-5753 \n[6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5754 | CPU, BIOS, and kernel \n14.x | None | 14.0.02 \n13.x | 13.0.0 - 13.1.0 | 13.1.0.42 \n13.0.12 \n12.x | 12.1.0 - 12.1.3 | 12.1.3.32 \n11.x | 11.6.1 - 11.6.3 \n11.5.1 - 11.5.5 \n11.2.1 | 11.6.3.12 \n11.5.62 \nEnterprise Manager | 3.x | 3.1.1 | None | Medium (CVE-2017-5715) \nMedium (CVE-2017-5753) \nMedium (CVE-2017-5754) | [6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5715 \n[5.3](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N/E:P/RL:U/RC:C>) CVE-2017-5753 \n[6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5754 | CPU, BIOS, and kernel \nBIG-IQ (Cloud, Device, Security, ADC) | 4.x | 4.5.0 | None | Medium (CVE-2017-5715) \nMedium (CVE-2017-5753) \nMedium (CVE-2017-5754) | [6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5715 \n[5.3](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N/E:P/RL:U/RC:C>) CVE-2017-5753 \n[6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5754 | CPU, BIOS, and kernel \nBIG-IQ Centralized Management | 6.x | 6.0.0 | 6.0.12 | Medium (CVE-2017-5715) \nMedium (CVE-2017-5753) \nMedium (CVE-2017-5754) | [6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5715 \n[5.3](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N/E:P/RL:U/RC:C>) CVE-2017-5753 \n[6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5754 | CPU, BIOS, and kernel \n5.x | 5.0.0 - 5.4.0 | None \n4.x | 4.6.0 | None \nBIG-IQ Cloud and Orchestration | 1.x | 1.0.0 | None | Medium (CVE-2017-5715) \nMedium (CVE-2017-5753) \nMedium (CVE-2017-5754) | [6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5715 \n[5.3](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N/E:P/RL:U/RC:C>) CVE-2017-5753 \n[6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5754 | CPU, BIOS, and kernel \nF5 iWorkflow | 2.x | 2.3.0 \n2.2.0 \n2.1.0 \n2.0.1 - 2.0.2 | None | Medium (CVE-2017-5715) \nMedium (CVE-2017-5753) \nMedium (CVE-2017-5754) | [6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5715 \n[5.3](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N/E:P/RL:U/RC:C>) CVE-2017-5753 \n[6.4](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:N/A:N/E:F/RL:U/RC:C>) CVE-2017-5754 | CPU, BIOS, and kernel \nLineRate | 2.x | 2.6.0 | None | Medium | ** | CPU, BIOS, and kernel \nTraffix SDC | 5.x | 5.0.0 - 5.1.0 | Security bulletin build 93 (5.1.0) \nSecurity bulletin build 32 (5.0.0) | Medium (CVE-2017-5715) \nHigh (CVE-2017-5753) \nHigh (CVE-2017-5754) | [6.7](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:H/UI:N/S:C/C:H/I:L/A:N>) (CVE-2017-5715) \n[8.2](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:C/C:H/I:L/A:N>) (CVE-2017-5753) \n[7.9](<https://www.first.org/cvss/calculator/3.0#CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:C/C:H/I:L/A:N>) (CVE-2017-5754) | CPU, BIOS, and kernel \n4.x | 4.0.0 - 4.4.0 | Security bulletin build 14 (4.4.0) \n \n1The CVSSv3 score link takes you to a resource outside of AskF5, and it is possible that the document may be removed without our knowledge.\n\n2Notes about fixes for CVE-2017-5753 (Spectre-PHT) and CVE-2017-5754 (Meltdown-US):\n\n**Important**: F5 does not plan to release an official fix for CVE-2017-5715 (Spectre-BTB) that is based on Intel's microcode updates. The rationale for this decision is based on significant performance degradation when enabling Intel's microcode fixes in our platforms. During testing of the microcode fix, F5 has observed from 10 percent to more than 50 percent performance degradation for many workloads.\n\n**Important**: Only CVE-2017-5754 (Meltdown-US) is fixed in BIG-IQ.\n\n * Performance impact: \n * CVE-2017-5753 (Spectre-PHT)\n\nF5 does not anticipate a performance impact as a result of the fix for CVE-2017-5753 Spectre-PHT.\n\n * CVE-2017-5754 (Meltdown-US)\n\nIn most scenarios, the fix for Meltdown-US has a negligible performance impact. F5 recommends testing the performance impact before deploying the fix in a production environment, or testing the fix during a maintenance window with consideration to the possible impact on your specific environment. If you encounter unacceptable performance issues in testing and choose to disable the Meltdown-US fix, you can do so by typing the following command:\n\ntmsh modify sys db kernel.pti value disable\n\n**Note:** This database variable change is applied without requirement for a reboot.\n\n**Important:** If you choose to disable the Meltdown-US fix, the system will be vulnerable to the Meltdown-US vulnerability. However, in order to take advantage of this vulnerability, the attacker must already possess the ability to run arbitrary code on the system. For non-vCMP systems, good access controls and keeping your system up-to-date with security fixes will mitigate this risk. For vCMP systems with multiple tenants, F5 recommends that you leave the Meltdown-US fix enabled.\n\n * Virtual F5 products/vCMP guests:\n\nThe Meltdown-US and Spectre-PHT fixes block the ability for those exploits to be executed on the patched OS. If the exploit allows cross-VM boundary information leaks, then a fixed VM is still vulnerable to attacks from a non-fixed VM or the host. Therefore, it is important to apply fixes to both guest VMs and the host that runs them.\n\n * Known issues:\n\nDue to a known issue with the Meltdown-US fix on BIG-IP platforms equipped with an AMD processor, the system may spontaneously reboot. Refer to the table in the **Impact** section for information about which BIG-IP platforms have an AMD processor. F5 Product Development has assigned ID 719711 to this issue. To work around the issue, you can disable the Meltdown-US fix (BIG-IP platforms with an AMD processor are not vulnerable to Meltdown-US per the table in the** Impact** section). To do so, perform the following procedure:\n\n**Note**: Performing the procedure to disable kernel page-table isolation does not disable the Spectre-PHT fix.\n\n 1. Log in to the BIG-IP command line.\n 2. 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No new operating system features are being introduced in this update. Key changes include:</p><ul><li>Addresses an issue that causes high CPU usage that results in performance degradation on some systems with Family 15h and 16h AMD processors. This issue occurs after installing the July 2018 Windows updates from Microsoft and the AMD microcode updates that address Spectre Variant 2 (<a data-content-id=\"\" data-content-type=\"\" href=\"https://na01.safelinks.protection.outlook.com/?url=https%3A%2F%2Fportal.msrc.microsoft.com%2Fen-US%2Fsecurity-guidance%2Fadvisory%2FADV180002&data=02%7C01%7Cv-shros%40microsoft.com%7C5d87d9af06654ddfae0908d643dadab2%7C72f988bf86f141af91ab2d7cd011db47%7C1%7C0%7C636771004591566004&sdata=t3gCgQzlSzPOFeS9LVwFasstSPbaJ%2BbxvSsOLd5JNJs%3D&reserved=0\" managed-link=\"\" target=\"_blank\">CVE-2017-5715</a> \u2013 Branch Target Injection).</li><li>Security updates to Windows App Platform and Frameworks, Windows Graphics, Internet Explorer, Windows Wireless Networking, Windows Kernel, and Windows Server.</li></ul><p>For more information about the resolved security vulnerabilities, please refer to the <a data-content-id=\"\" data-content-type=\"\" href=\"https://portal.msrc.microsoft.com/security-guidance\" managed-link=\"\" target=\"_blank\">Security Update Guide</a>.</p><h2>Known issues in this update</h2><table class=\"table\"><tbody><tr><td>Symptom</td><td>Workaround</td></tr><tr><td>After installing this update, users may not be able to use the <strong>Seek Bar</strong> in Windows Media Player when playing specific files.\u00a0This issue does not affect normal playback.</td><td>This issue is resolved in <a data-content-id=\"4471322\" data-content-type=\"article\" href=\"\" managed-link=\"\" target=\"_blank\">KB4471322</a>.</td></tr></tbody></table><h2>How to get this update</h2><p>This update is now available for installation through WSUS. To get the stand-alone package for this update, go to the <a data-content-id=\"\" data-content-type=\"\" href=\"http://catalog.update.microsoft.com/v7/site/Search.aspx?q=KB4467703\" managed-link=\"\" target=\"_blank\">Microsoft Update Catalog</a> website.</p><p><strong>File information</strong></p><p>For a list of the files that are provided in this update, download the <a data-content-id=\"\" data-content-type=\"\" href=\"http://download.microsoft.com/download/C/C/2/CC2F2BC4-6B3A-4860-8386-6939FD0ADB87/4467703.csv\" managed-link=\"\" target=\"_blank\">file information for update 4467703</a>.</p></body></html>", "edition": 2, "modified": "2019-03-13T01:26:17", "id": "KB4467703", "href": "https://support.microsoft.com/en-us/help/4467703/", "published": "2018-11-13T00:00:00", "title": "November 13, 2018\u2014KB4467703 (Security-only update)", "type": "mskb", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2021-01-01T22:44:09", "bulletinFamily": "microsoft", "cvelist": ["CVE-2017-5715"], "description": "<html><body><p>Learn more about update KB4093112, including improvements and fixes, any known issues, and how to get the update.</p><h2>Improvements and fixes</h2><div><p>This update includes quality improvements. No new operating system features are being introduced in this update. Key changes include:</p><ul><li><p><span>Provides\u00a0support to control usage of Indirect Branch Prediction Barrier (IBPB) within</span><span> <span>some AMD processors (CPUs)</span><span> for mitigating </span><span>CVE-2017-5715, </span><span>Spectre Variant 2 when switching from user context to kernel context (See <a href=\"https://developer.amd.com/wp-content/resources/Architecture_Guidelines_Update_Indirect_Branch_Control.pdf\">AMD Architecture Guidelines around Indirect Branch Control</a> and <a href=\"https://www.amd.com/en/corporate/security-updates\">AMD Security Updates</a> for more details). Follow instructions outlined in <a data-content-id=\"4073119\" data-content-type=\"article\" href=\"\" managed-link=\"\" target=\"_blank\">KB4073119</a></span>\u00a0for Windows Client (IT Pro) guidance <span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span>and </span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><span><a href=\"https://support.microsoft.com/en-us/help/4072698/windows-server-guidance-to-protect-against-the-speculative-execution\"><u>KB4072698</u></a> for Windows Server guidance </span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span><span><span><span><span><span><span><span><span></span></span></span></span></span></span></span></span>to enable usage of IBPB <span>within</span> <span>some AMD processors (CPUs) </span>for <span>mitigating </span>Spectre Variant 2 <span>when switching from user context to kernel context</span>.</span></p></li><li><p>Addresses an issue that causes an access violation in Internet Explorer when it runs on the Microsoft Application Virtualization platform.</p></li><li><p>Addresses an issue in Enterprise Mode related to redirects in Internet Explorer and Microsoft Edge.</p></li><li><p>Addresses an issue that generates an access violation on certain pages in Internet Explorer when it renders SVGs under a high load.</p></li><li><p>Addresses additional issues with updated time zone information.</p></li><li><p>Addresses an issue that might cause the App-V service to stop working on an RDS server that hosts many\u00a0users.</p></li><li><p>Addresses an issue where user accounts are locked when applications are moved to a shared platform using App-V (e.g., XenApp 7.15+ with Windows Server 2016, where Kerberos authentication isn't available).</p></li><li><p>Addresses an issue with printing content generated by ActiveX in Internet Explorer.</p></li><li><p>Addresses an issue that causes <strong>document.execCommand(\"copy\")</strong>\u00a0to always return\u00a0False\u00a0in Internet Explorer.</p></li><li><p>Addresses an issue that, in some instances, prevents Internet Explorer from identifying custom controls.</p></li><li>Security updates to Internet Explorer, Microsoft Edge, Windows kpp platform and frameworks, Microsoft scripting engine, Windows graphics, Windows Server, Windows kernel, Windows datacenter networking, Windows wireless networking, Windows virtualization and Kernel, and Windows Hyper-V.</li></ul><p>If you installed earlier updates, only the new fixes in this package will be downloaded and installed on your device.</p><p><span><span><span><span>For more information about the resolved security vulnerabilities, see the </span></span></span></span><span><span><span><a href=\"https://portal.msrc.microsoft.com/security-guidance\">Security Update Guide</a>.</span></span></span></p></div><h2>Known issues in this update</h2><table class=\"table\"><tbody><tr><td>Symptom</td><td>Workaround</td></tr><tr><td><span>After applying this update, some users may experience unexpected panning or scrolling in <span>certain</span> apps while using the pen. </span></td><td><p>This issue is resolved in <a data-content-id=\"4093105\" data-content-type=\"article\" href=\"\" managed-link=\"\" target=\"_blank\">KB4093105</a>.</p></td></tr></tbody></table><p>\u00a0</p><h2>How to get this update</h2><div><p>This update will be downloaded and installed automatically from Windows Update. To get the stand-alone package for this update, go to the\u00a0<a href=\"http://catalog.update.microsoft.com/v7/site/Search.aspx?q=KB4093112 \">Microsoft Update Catalog</a>\u00a0website.</p><p><strong>Important</strong> When you\u00a0install\u00a0both the servicing stack update (SSU) (<a data-content-id=\"4099989\" data-content-type=\"article\" href=\"\" managed-link=\"\" target=\"_blank\">KB4099989</a>) and the latest cumulative update\u00a0(LCU)\u00a0from the Microsoft Update Catalog, install the SSU before installing the LCU.</p><p><strong>File information</strong></p><p>For a list of the files that are provided in this update, download the\u00a0<a data-content-id=\"\" data-content-type=\"\" href=\"http://download.microsoft.com/download/A/A/0/AA0657D3-EA97-44CB-98FA-C926102E1C59/4093112.csv\" target=\"\">file information for cumulative update 4093112 </a>.</p></div></body></html>", "edition": 17, "modified": "2018-05-08T17:00:13", "id": "KB4093112", "href": "https://support.microsoft.com/en-us/help/4093112/", "published": "2018-04-10T00:00:00", "title": "April 10, 2018\u2014KB4093112 (OS Build 16299.371)", "type": "mskb", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2021-01-01T22:41:30", "bulletinFamily": "microsoft", "cvelist": ["CVE-2017-5715"], "description": "<html><body><p>Learn more about update KB4467700, including improvements and fixes, any known issues, and how to get the update.</p><h2>Improvements and fixes</h2><div><p>This security update includes quality improvements. No new operating system features are being introduced in this update. Key changes include:</p><ul><li>Addresses an issue that causes high CPU usage that results in performance degradation on some systems with Family 15h and 16h AMD processors. This issue occurs after installing the July 2018 Windows updates from Microsoft and the AMD microcode updates that address Spectre Variant 2 (<a data-content-id=\"\" data-content-type=\"\" href=\"https://na01.safelinks.protection.outlook.com/?url=https%3A%2F%2Fportal.msrc.microsoft.com%2Fen-US%2Fsecurity-guidance%2Fadvisory%2FADV180002&data=02%7C01%7Cv-shros%40microsoft.com%7C5d87d9af06654ddfae0908d643dadab2%7C72f988bf86f141af91ab2d7cd011db47%7C1%7C0%7C636771004591566004&sdata=t3gCgQzlSzPOFeS9LVwFasstSPbaJ%2BbxvSsOLd5JNJs%3D&reserved=0\" managed-link=\"\" target=\"_blank\">CVE-2017-5715</a> \u2013 Branch Target Injection).</li><li>Security updates to Windows App Platform and Frameworks, Windows Graphics, Windows Wireless Networking , and Windows Kernel.</li></ul><p>For more information about the resolved security vulnerabilities, please refer to the <a data-content-id=\"\" data-content-type=\"\" href=\"https://portal.msrc.microsoft.com/security-guidance\" managed-link=\"\" target=\"_blank\">Security Update Guide</a>.</p></div><h2>Known issues in this update</h2><table class=\"table\"><tbody><tr><td>Symptom</td><td>Workaround</td></tr><tr><td>After installing this update, users may not be able to use the <strong>Seek Bar</strong> in Windows Media Player when playing specific files.\u00a0This issue does not affect normal playback.</td><td>This issue is resolved in <a data-content-id=\"4471319\" data-content-type=\"article\" href=\"\" managed-link=\"\" target=\"_blank\">KB4471319</a>.</td></tr></tbody></table><h2>How to get this update</h2><div><p>This update is now available for installation through WSUS. To get the stand-alone package for this update, go to the\u00a0<a data-content-id=\"\" data-content-type=\"\" href=\"http://catalog.update.microsoft.com/v7/site/Search.aspx?q=KB4467700\" managed-link=\"\" target=\"_blank\">Microsoft Update Catalog</a>\u00a0website.</p><p><strong>File information</strong></p><p>For a list of the files that are provided in this update, download the\u00a0<a data-content-id=\"\" data-content-type=\"\" href=\"http://download.microsoft.com/download/B/3/3/B3343404-F4C0-4B00-900D-06991FC0BC11/4467700.csv\" managed-link=\"\" target=\"_blank\">file information for\u00a0update 4467700</a>.\u00a0</p></div></body></html>", "edition": 2, "modified": "2018-12-11T18:58:18", "id": "KB4467700", "href": "https://support.microsoft.com/en-us/help/4467700/", "published": "2018-11-13T00:00:00", "title": "November 13, 2018\u2014KB4467700 (Security-only update)", "type": "mskb", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "suse": [{"lastseen": "2018-01-04T21:04:56", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for qemu fixes the following issues:\n\n A mitigation for a security flaw has been applied:\n\n - CVE-2017-5715: QEMU was updated to allow passing through new MSR and\n CPUID flags from the host VM to the CPU, to allow enabling/disabling\n branch prediction features in the Intel CPU. (bsc#1068032)\n\n", "edition": 1, "modified": "2018-01-04T18:10:48", "published": "2018-01-04T18:10:48", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-01/msg00013.html", "id": "SUSE-SU-2018:0020-1", "title": "Security update for qemu (important)", "type": "suse", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2018-03-16T20:36:15", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for ucode-intel fixes the following issues:\n\n The Intel CPU microcode version was updated to version 20180312.\n\n This update enables the IBPB+IBRS based mitigations of the Spectre v2\n flaws (boo#1085207 CVE-2017-5715)\n\n - New Platforms\n\n - BDX-DE EGW A0 6-56-5:10 e000009\n - SKX B1 6-55-3:97 1000140\n\n - Updates\n\n - SNB D2 6-2a-7:12 29->2d\n - JKT C1 6-2d-6:6d 619->61c\n - JKT C2 6-2d-7:6d 710->713\n - IVB E2 6-3a-9:12 1c->1f\n - IVT C0 6-3e-4:ed 428->42c\n - IVT D1 6-3e-7:ed 70d->713\n - HSW Cx/Dx 6-3c-3:32 22->24\n - HSW-ULT Cx/Dx 6-45-1:72 20->23\n - CRW Cx 6-46-1:32 17->19\n - HSX C0 6-3f-2:6f 3a->3c\n - HSX-EX E0 6-3f-4:80 0f->11\n - BDW-U/Y E/F 6-3d-4:c0 25->2a\n - BDW-H E/G 6-47-1:22 17->1d\n - BDX-DE V0/V1 6-56-2:10 0f->15\n - BDW-DE V2 6-56-3:10 700000d->7000012\n - BDW-DE Y0 6-56-4:10 f00000a->f000011\n - SKL-U/Y D0 6-4e-3:c0 ba->c2\n - SKL R0 6-5e-3:36 ba->c2\n - KBL-U/Y H0 6-8e-9:c0 62->84\n - KBL B0 6-9e-9:2a 5e->84\n - CFL D0 6-8e-a:c0 70->84\n - CFL U0 6-9e-a:22 70->84\n - CFL B0 6-9e-b:02 72->84\n - SKX H0 6-55-4:b7 2000035->2000043\n\n", "edition": 1, "modified": "2018-03-16T18:09:28", "published": "2018-03-16T18:09:28", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-03/msg00045.html", "id": "OPENSUSE-SU-2018:0710-1", "title": "Security update for ucode-intel (important)", "type": "suse", "cvss": {"score": 4.7, "vector": "AV:LOCAL/AC:MEDIUM/Au:NONE/C:COMPLETE/I:NONE/A:NONE/"}}, {"lastseen": "2018-01-04T06:50:58", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for qemu fixes the following issues:\n\n A new feature was added:\n\n - Support EPYC vCPU type (bsc#1052825 fate#324038)\n\n Also a mitigation for a security problem has been applied:\n\n - CVE-2017-5715: QEMU was updated to allow passing through new MSR and\n CPUID flags from the host VM to the CPU, to allow enabling/disabling\n branch prediction features in the Intel CPU. (bsc#1068032)\n\n", "edition": 1, "modified": "2018-01-04T03:07:43", "published": "2018-01-04T03:07:43", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-01/msg00003.html", "id": "SUSE-SU-2018:0007-1", "title": "Security update for qemu (important)", "type": "suse", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2018-01-08T18:56:47", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for qemu fixes the following issues:\n\n This update for qemu fixes the following issues:\n\n A mitigation for a security flaw has been applied:\n\n - CVE-2017-5715: QEMU was updated to allow passing through new MSR and\n CPUID flags from the host VM to the CPU, to allow enabling/disabling\n branch prediction features in the Intel CPU. (bsc#1068032)\n\n", "edition": 1, "modified": "2018-01-08T15:07:50", "published": "2018-01-08T15:07:50", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-01/msg00021.html", "id": "SUSE-SU-2018:0036-1", "title": "Security update for qemu (important)", "type": "suse", "cvss": {"score": 4.7, "vector": "AV:LOCAL/AC:MEDIUM/Au:NONE/C:COMPLETE/I:NONE/A:NONE/"}}, {"lastseen": "2018-01-11T22:52:40", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for ucode-intel fixes the following issues:\n\n Updated to Intel CPU Microcode version 20180108 (bsc#1075262)\n\n The pre-released microcode fixing some important security issues is now\n officially published (and included in the added tarball).\n\n New firmware updates since last version (20170707) are avail for these\n Intel processors:\n\n - IVT C0 (06-3e-04:ed) 428->42a\n - SKL-U/Y D0 (06-4e-03:c0) ba->c2\n - BDW-U/Y E/F (06-3d-04:c0) 25->28\n - HSW-ULT Cx/Dx (06-45-01:72) 20->21\n - Crystalwell Cx (06-46-01:32) 17->18\n - BDW-H E/G (06-47-01:22) 17->1b\n - HSX-EX E0 (06-3f-04:80) 0f->10\n - SKL-H/S R0 (06-5e-03:36) ba->c2\n - HSW Cx/Dx (06-3c-03:32) 22->23\n - HSX C0 (06-3f-02:6f) 3a->3b\n - BDX-DE V0/V1 (06-56-02:10) 0f->14\n - BDX-DE V2 (06-56-03:10) 700000d->7000011\n - KBL-U/Y H0 (06-8e-09:c0) 62->80\n - KBL Y0 / CFL D0 (06-8e-0a:c0) 70->80\n - KBL-H/S B0 (06-9e-09:2a) 5e->80\n - CFL U0 (06-9e-0a:22) 70->80\n - CFL B0 (06-9e-0b:02) 72->80\n - SKX H0 (06-55-04:b7) 2000035->200003c\n - GLK B0 (06-7a-01:01) 1e->22\n\n", "edition": 1, "modified": "2018-01-11T18:09:25", "published": "2018-01-11T18:09:25", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-01/msg00032.html", "id": "SUSE-SU-2018:0067-1", "type": "suse", "title": "Security update for ucode-intel (important)", "cvss": {"score": 4.7, "vector": "AV:LOCAL/AC:MEDIUM/Au:NONE/C:COMPLETE/I:NONE/A:NONE/"}}, {"lastseen": "2018-01-10T00:51:40", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for qemu fixes the following issues:\n\n A mitigation for a security flaw has been applied:\n\n - CVE-2017-5715: QEMU was updated to allow passing through new MSR and\n CPUID flags from the host VM to the CPU, to allow enabling/disabling\n branch prediction features in the Intel CPU. (bsc#1068032)\n\n", "edition": 1, "modified": "2018-01-09T21:23:53", "published": "2018-01-09T21:23:53", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-01/msg00027.html", "id": "SUSE-SU-2018:0056-1", "type": "suse", "title": "Security update for qemu (important)", "cvss": {"score": 4.7, "vector": "AV:LOCAL/AC:MEDIUM/Au:NONE/C:COMPLETE/I:NONE/A:NONE/"}}, {"lastseen": "2018-01-05T20:51:08", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for kernel-firmware fixes the following issues:\n\n - Add microcode_amd_fam17h.bin (bsc#1068032 CVE-2017-5715)\n\n This new firmware disables branch prediction on AMD family 17h processor\n to mitigate an attack on the branch predictor that could lead to\n information disclosure from e.g. kernel memory (bsc#1068032 CVE-2017-5715).\n\n This update was imported from the SUSE:SLE-12-SP2:Update update project.\n\n", "edition": 1, "modified": "2018-01-05T18:09:20", "published": "2018-01-05T18:09:20", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-01/msg00018.html", "id": "OPENSUSE-SU-2018:0026-1", "type": "suse", "title": "Security update for kernel-firmware (important)", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2018-06-09T16:34:18", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for kernel-firmware fixes the following issues:\n\n This security issue was fixed:\n\n - CVE-2017-5715: Prevent unauthorized disclosure of information to an\n attacker with local user access caused by speculative execution and\n indirect branch prediction (bsc#1095735)\n\n This update was imported from the SUSE:SLE-12-SP2:Update update project.\n\n", "edition": 1, "modified": "2018-06-09T15:12:47", "published": "2018-06-09T15:12:47", "id": "OPENSUSE-SU-2018:1631-1", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-06/msg00020.html", "title": "Security update for kernel-firmware (moderate)", "type": "suse", "cvss": {"score": 4.7, "vector": "AV:LOCAL/AC:MEDIUM/Au:NONE/C:COMPLETE/I:NONE/A:NONE/"}}, {"lastseen": "2018-01-05T20:51:08", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for qemu fixes the following issues:\n\n A new feature was added:\n\n - Support EPYC vCPU type (bsc#1052825 fate#324038)\n\n Also a mitigation for a security problem has been applied:\n\n - CVE-2017-5715: QEMU was updated to allow passing through new MSR and\n CPUID flags from the host VM to the CPU, to allow enabling/disabling\n branch prediction features in the Intel CPU. (bsc#1068032)\n\n This update was imported from the SUSE:SLE-12-SP3:Update update project.\n\n", "edition": 1, "modified": "2018-01-05T18:10:57", "published": "2018-01-05T18:10:57", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-01/msg00019.html", "id": "OPENSUSE-SU-2018:0030-1", "type": "suse", "title": "Security update for qemu (important)", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2018-03-16T20:36:15", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "This update for ucode-intel fixes the following issues:\n\n The Intel CPU microcode version was updated to version 20180312.\n\n This update enables the IBPB+IBRS based mitigations of the Spectre v2\n flaws (boo#1085207 CVE-2017-5715)\n\n - New Platforms\n\n - BDX-DE EGW A0 6-56-5:10 e000009\n - SKX B1 6-55-3:97 1000140\n\n - Updates\n\n - SNB D2 6-2a-7:12 29->2d\n - JKT C1 6-2d-6:6d 619->61c\n - JKT C2 6-2d-7:6d 710->713\n - IVB E2 6-3a-9:12 1c->1f\n - IVT C0 6-3e-4:ed 428->42c\n - IVT D1 6-3e-7:ed 70d->713\n - HSW Cx/Dx 6-3c-3:32 22->24\n - HSW-ULT Cx/Dx 6-45-1:72 20->23\n - CRW Cx 6-46-1:32 17->19\n - HSX C0 6-3f-2:6f 3a->3c\n - HSX-EX E0 6-3f-4:80 0f->11\n - BDW-U/Y E/F 6-3d-4:c0 25->2a\n - BDW-H E/G 6-47-1:22 17->1d\n - BDX-DE V0/V1 6-56-2:10 0f->15\n - BDW-DE V2 6-56-3:10 700000d->7000012\n - BDW-DE Y0 6-56-4:10 f00000a->f000011\n - SKL-U/Y D0 6-4e-3:c0 ba->c2\n - SKL R0 6-5e-3:36 ba->c2\n - KBL-U/Y H0 6-8e-9:c0 62->84\n - KBL B0 6-9e-9:2a 5e->84\n - CFL D0 6-8e-a:c0 70->84\n - CFL U0 6-9e-a:22 70->84\n - CFL B0 6-9e-b:02 72->84\n - SKX H0 6-55-4:b7 2000035->2000043\n\n", "edition": 1, "modified": "2018-03-16T18:09:03", "published": "2018-03-16T18:09:03", "href": "http://lists.opensuse.org/opensuse-security-announce/2018-03/msg00044.html", "id": "SUSE-SU-2018:0708-1", "title": "Security update for ucode-intel (important)", "type": "suse", "cvss": {"score": 4.7, "vector": "AV:LOCAL/AC:MEDIUM/Au:NONE/C:COMPLETE/I:NONE/A:NONE/"}}], "centos": [{"lastseen": "2020-12-08T03:37:59", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "**CentOS Errata and Security Advisory** CESA-2018:0030\n\n\nThe libvirt library contains a C API for managing and interacting with the virtualization capabilities of Linux and other operating systems. In addition, libvirt provides tools for remote management of virtualized systems.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the libvirt side of the CVE-2017-5715 mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.\n\n**Merged security bulletin from advisories:**\nhttp://lists.centos.org/pipermail/centos-announce/2018-January/034741.html\n\n**Affected packages:**\nlibvirt\nlibvirt-client\nlibvirt-devel\nlibvirt-lock-sanlock\nlibvirt-python\n\n**Upstream details at:**\n", "edition": 5, "modified": "2018-01-04T19:54:04", "published": "2018-01-04T19:54:04", "href": "http://lists.centos.org/pipermail/centos-announce/2018-January/034741.html", "id": "CESA-2018:0030", "type": "centos", "title": "libvirt security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "redhat": [{"lastseen": "2019-08-13T18:45:05", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "The microcode_ctl packages provide microcode updates for Intel and AMD processors.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the microcode counterpart of the CVE-2017-5715 kernel mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-01-04T23:30:17", "published": "2018-01-04T23:28:21", "id": "RHSA-2018:0034", "href": "https://access.redhat.com/errata/RHSA-2018:0034", "type": "redhat", "title": "(RHSA-2018:0034) Important: microcode_ctl security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:45:22", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "KVM (Kernel-based Virtual Machine) is a full virtualization solution for Linux on a variety of architectures. The qemu-kvm-rhev packages provide the user-space component for running virtual machines that use KVM in environments managed by Red Hat products.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the qemu-kvm-rhev side of the CVE-2017-5715 mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-03-19T16:29:45", "published": "2018-01-04T21:06:15", "id": "RHSA-2018:0025", "href": "https://access.redhat.com/errata/RHSA-2018:0025", "type": "redhat", "title": "(RHSA-2018:0025) Important: qemu-kvm-rhev security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-09-05T08:48:24", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "The kernel packages contain the Linux kernel, the core of any Linux operating system.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715, Important, x86 and x86-64)\n\nRed Hat would like to thank Google Project Zero for reporting this issue.\n\nBug Fix(es):\n\n* The Return Trampolines (Retpolines) mechanism is a software construct that leverages specific knowledge of the underlying hardware to mitigate the branch target injection, also known as Spectre variant 2 vulnerability described in CVE-2017-5715. With this update, the support for Retpolines has been implemented into the Red Hat Enterprise Linux kernel. (BZ#1535650)", "modified": "2019-09-05T11:37:29", "published": "2018-04-23T16:27:20", "id": "RHSA-2018:1196", "href": "https://access.redhat.com/errata/RHSA-2018:1196", "type": "redhat", "title": "(RHSA-2018:1196) Important: kernel security and bug fix update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:44:55", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "The linux-firmware packages contain all of the firmware files that are required by various devices to operate.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the microcode counterpart of the CVE-2017-5715 kernel mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-01-04T05:48:46", "published": "2018-01-04T05:45:44", "id": "RHSA-2018:0015", "href": "https://access.redhat.com/errata/RHSA-2018:0015", "type": "redhat", "title": "(RHSA-2018:0015) Important: linux-firmware security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:44:36", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "The rhevm-setup-plugins package adds functionality exclusive only to Red Hat Virtualization Manager, and is not available for the upstream ovirt-engine. It includes the configuration of the Red Hat Support plugin, copying downstream-only artifacts to the ISO domain, and links to the knowledgebase and other support material.\n\nThe following packages have been upgraded to a later upstream version: rhevm-setup-plugins (3.6.6). (BZ#1527109)\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the rhevm-setup-plugins side of the CVE-2017-5715 mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-01-05T20:47:32", "published": "2018-01-05T20:46:32", "id": "RHSA-2018:0052", "href": "https://access.redhat.com/errata/RHSA-2018:0052", "type": "redhat", "title": "(RHSA-2018:0052) Important: rhevm-setup-plugins security, bug fix, and enhancement update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:45:49", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "KVM (Kernel-based Virtual Machine) is a full virtualization solution for Linux on a variety of architectures. The qemu-kvm-rhev packages provide the user-space component for running virtual machines that use KVM in environments managed by Red Hat products.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the qemu-kvm-rhev side of the CVE-2017-5715 mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-01-04T21:25:08", "published": "2018-01-04T21:09:48", "id": "RHSA-2018:0028", "href": "https://access.redhat.com/errata/RHSA-2018:0028", "type": "redhat", "title": "(RHSA-2018:0028) Important: qemu-kvm-rhev security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:46:40", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "The libvirt library contains a C API for managing and interacting with the virtualization capabilities of Linux and other operating systems. In addition, libvirt provides tools for remote management of virtualized systems.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the libvirt side of the CVE-2017-5715 mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-01-22T15:18:20", "published": "2018-01-22T15:06:03", "id": "RHSA-2018:0110", "href": "https://access.redhat.com/errata/RHSA-2018:0110", "type": "redhat", "title": "(RHSA-2018:0110) Important: libvirt security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:46:52", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "Kernel-based Virtual Machine (KVM) is a full virtualization solution for Linux on a variety of architectures. The qemu-kvm-rhev packages provide the user-space component for running virtual machines that use KVM in environments managed by Red Hat products.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the qemu-kvm-rhev side of the CVE-2017-5715 mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-01-05T23:14:39", "published": "2018-01-05T23:11:09", "id": "RHSA-2018:0059", "href": "https://access.redhat.com/errata/RHSA-2018:0059", "type": "redhat", "title": "(RHSA-2018:0059) Important: qemu-kvm-rhev security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:46:00", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "The microcode_ctl packages provide microcode updates for Intel and AMD processors.\n\nThis update supersedes microcode provided by Red Hat with the CVE-2017-5715 (\u201cSpectre\u201d) CPU branch injection vulnerability mitigation. (Historically, Red Hat has provided updated microcode, developed by our microprocessor partners, as a customer convenience.) Further testing has uncovered problems with the microcode provided along with the \u201cSpectre\u201d mitigation that could lead to system instabilities. As a result, Red Hat is providing an microcode update that reverts to the last known good microcode version dated before 03 January 2018. Red Hat strongly recommends that customers contact their hardware provider for the latest microcode updates.\n\nIMPORTANT: Customers using Intel Skylake-, Broadwell-, and Haswell-based platforms must obtain and install updated microcode from their hardware vendor immediately. The \"Spectre\" mitigation requires both an updated kernel from Red Hat and updated microcode from your hardware vendor.", "modified": "2018-06-07T18:22:56", "published": "2018-01-17T01:01:46", "id": "RHSA-2018:0093", "href": "https://access.redhat.com/errata/RHSA-2018:0093", "type": "redhat", "title": "(RHSA-2018:0093) Important: microcode_ctl security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-08-13T18:47:06", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "The VDSM service is required by a Virtualization Manager to manage the Linux hosts. VDSM manages and monitors the host's storage, memory and networks as well as virtual machine creation, other host administration tasks, statistics gathering, and log collection.\n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715)\n\nNote: This is the vdsm side of the CVE-2017-5715 mitigation.\n\nRed Hat would like to thank Google Project Zero for reporting this issue.", "modified": "2018-01-05T20:37:30", "published": "2018-01-05T20:36:14", "id": "RHSA-2018:0048", "href": "https://access.redhat.com/errata/RHSA-2018:0048", "type": "redhat", "title": "(RHSA-2018:0048) Important: vdsm security update", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "amazon": [{"lastseen": "2020-11-10T12:35:58", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "**Issue Overview:**\n\nAn industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant [CVE-2017-5715 __](<https://access.redhat.com/security/cve/CVE-2017-5715>) triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. ([CVE-2017-5715 __](<https://access.redhat.com/security/cve/CVE-2017-5715>)) \n\n\n \n**Affected Packages:** \n\n\nqemu-kvm\n\n \n**Issue Correction:** \nRun _yum update qemu-kvm_ to update your system. \n\n\n \n\n\n**New Packages:**\n \n \n src: \n qemu-kvm-1.5.3-141.amzn2.5.3.src \n \n x86_64: \n qemu-kvm-1.5.3-141.amzn2.5.3.x86_64 \n qemu-img-1.5.3-141.amzn2.5.3.x86_64 \n qemu-kvm-common-1.5.3-141.amzn2.5.3.x86_64 \n qemu-kvm-tools-1.5.3-141.amzn2.5.3.x86_64 \n qemu-kvm-debuginfo-1.5.3-141.amzn2.5.3.x86_64 \n \n \n", "edition": 1, "modified": "2018-02-07T18:49:00", "published": "2018-02-07T18:49:00", "id": "ALAS2-2018-942", "href": "https://alas.aws.amazon.com/AL2/ALAS-2018-942.html", "title": "Important: qemu-kvm", "type": "amazon", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "oraclelinux": [{"lastseen": "2020-12-30T19:23:22", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "kernel\n[2.6.18-419.0.0.0.10]\n- Backport CVE-2017-5715 to RHCK/OL5 [orabug 27787723]\n[2.6.18-419.0.0.0.9]\n- rebuild with retpoline compiler", "edition": 5, "modified": "2018-08-03T00:00:00", "published": "2018-08-03T00:00:00", "id": "ELSA-2018-1196-1", "href": "http://linux.oracle.com/errata/ELSA-2018-1196-1.html", "title": "kernel security and bug fix update", "type": "oraclelinux", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2019-05-29T18:35:05", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "[2.1-22.5.0.3]\n- Revert Intel 20180108 microcode for CPUIDs: {CVE-2017-5715}\n 306c3 (06-3c-03 rev 0x23, Haswell);\n 306d4 (06-3d-04 rev 0x28, Broadwell);\n 306f2 (06-3f-02 rev 0x3b, Haswell);\n 306f4 (06-3f-04 rev 0x10, Haswell);\n 306e4 (06-3e-04 rev 0x42a, Ivy Bridge);\n 40651 (06-45-01 rev 0x21, Haswell);\n 40661 (06-46-01 rev 0x18, Haswell);\n 40671 (06-47-01 rev 0x1b, Broadwell);\n 406e3 (06-4e-03 rev 0xc2, Skylake);\n 406f1 (06-4f-01 rev 0xb000025, Broadwell);\n 50654 (06-55-04 rev 0x200003c, Skylake);\n 50662 (06-56-02 rev 0x14, Broadwell);\n 50663 (06-56-03 rev 0x7000011, Broadwell);\n 506e3 (06-5e-03 rev 0xc2, Skylake);\n 706a1 (06-7a-01 rev 0x22);\n 806e9 (06-8e-09 rev 0x80, Kaby Lake);\n 806ea (06-8e-0a rev 0x80);\n 906e9 (06-9e-09 rev 0x80, Kaby Lake)\n 906ea (06-9e-0a rev 0x80);\n 906eb (06-9e-0b rev 0x80)", "edition": 4, "modified": "2018-01-20T00:00:00", "published": "2018-01-20T00:00:00", "id": "ELSA-2018-4018", "href": "http://linux.oracle.com/errata/ELSA-2018-4018.html", "title": "microcode_ctl security update", "type": "oraclelinux", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "threatpost": [{"lastseen": "2019-04-25T05:50:32", "bulletinFamily": "info", "cvelist": ["CVE-2017-5715"], "description": "Intel has halted patches for an array of older chips that would protect them against the Spectre vulnerability, according to a recent microcode update.\n\nThe microcode [update](<https://newsroom.intel.com/wp-content/uploads/sites/11/2018/04/microcode-update-guidance.pdf>) shows that its older products \u2013 including Wolfdale, Bloomfield, Clarksfield, Gulftown, Harpertown, Jasper Forest, SoFIA 3GR, and Yorkfield \u2013 will no longer receive patches.\n\n\u201cWe\u2019ve now completed release of microcode updates for Intel microprocessor products launched in the last 9+ years that required protection against the side-channel vulnerabilities discovered by Google Project Zero,\u201d said Intel in a statement to Threatpost. \u201cHowever, as indicated in our latest microcode revision guidance, we will not be providing updated microcode for a select number of older platforms for several reasons, including limited ecosystem support and customer feedback.\u201d\n\nAccording to the Intel\u2019s microcode update, \u201cafter a comprehensive investigation of the microarchitectures and microcode capabilities for\u2026 products, Intel has determined to not release microcode updates for these products for one or more reasons.\u201d\n\nSome of these possible reasons, according to Intel\u2019s microcode update, include:\n\n\u2022 Micro-architectural characteristics that preclude a practical implementation of features mitigating Variant 2 (CVE-2017-5715)\n\n\u2022 Limited Commercially Available System Software support\n\n\u2022 Based on customer inputs, most of these products are implemented as \u201cclosed systems\u201d and therefore are expected to have a lower likelihood of exposure to these vulnerabilities.\n\nThe Spectre and Meltdown defects, which account for three variants of a side-channel analysis security issue in server and desktop processors, were identified earlier this year and could potentially allow hackers to access users\u2019 protected data. Meltdown breaks down the mechanism keeping applications from accessing arbitrary system memory, while Spectre tricks other applications into accessing arbitrary locations in their memory.\n\nIntel has been pushing out patches for its chips over the past few months after the vulnerabilities were revealed. As of this week the rest of Intel\u2019s chips in its microcode update \u2013 beyond its older chips that won\u2019t receive patches \u2013 are listed as in \u201cProduction,\u201d meaning that patches have been issued for them \u2013 with the exception of Intel\u2019s Coffee Lake lineup, which is listed as a \u201cProduction Candidate.\u201d\n\nTim Woods, VP of technology alliances at FireMon, told Threatpost that Intel may have ceased plans to patch these chips due to the inability of its partners to push out updates, as well as architectural challenges that block practical implementation of an update.\n\n\u201cRegardless of Intel\u2019s reason, their posture underscores the critical importance of an organization to take ownership of the security of their infrastructure,\u201d he said. \u201cThis entails looking at physical security, cloud-based assets, network, server, and desktop assets. In the case of Intel\u2019s resistance to finding a suitable patch for the Spectre vulnerability, it may be that those affected systems must be replaced.\u201d\n\nThe Spectre and Meltdown security flaws were first disclosed by Google Project Zero in early January and impact an array of processors on the market, including those from Intel, ARM and AMD. Intel, for its part, has issued several microcode updates to help safeguard its chips from the security flaws. In [February](<https://threatpost.com/intel-releases-updated-spectre-fixes-for-broadwell-and-haswell-chips/130144/>), the Santa Clara, Calif.-based company issued these patches for both newer chip platforms, like Kaby Lake, Coffee Lake and Skylake; as well as older processors, including Broadwell and Haswell chips.\n\nMeanwhile, in [March](<https://threatpost.com/intel-details-cpu-virtual-fences-fix-as-safeguard-against-spectre-meltdown-flaws/130501/>), Intel introduced hardware-based protections to its new chips to protect against the Spectre and Meltdown flaws that rocked the silicon industry when the vulnerabilities were made public in early 2018. Intel said designed a new set of CPU design features that work with the operating system to install \u201cvirtual fences\u201d protecting the system from speculative execution attacks that could exploit a variant of the Spectre flaw.\n\n\u201cWe have redesigned parts of the processor to introduce new levels of protection through partitioning that will protect against both Variants 2 and 3,\u201d Brian Krzanich, CEO of Intel, said in a recent March blog [post](<https://newsroom.intel.com/editorials/advancing-security-silicon-level/>). \u201cThink of this partitioning as additional \u201cprotective walls\u201d between applications and user privilege levels to create an obstacle for bad actors.\u201d\n", "modified": "2018-04-04T15:18:47", "published": "2018-04-04T15:18:47", "id": "THREATPOST:4F13E380B1984CDEA728722B169027FB", "href": "https://threatpost.com/intel-halts-spectre-fixes-on-older-chips-citing-limited-ecosystem-support/130965/", "type": "threatpost", "title": "Intel Halts Spectre Fixes On Older Chips, Citing Limited Ecosystem Support", "cvss": {"score": 4.7, "vector": "AV:LOCAL/AC:MEDIUM/Au:NONE/C:COMPLETE/I:NONE/A:NONE/"}}, {"lastseen": "2019-05-30T05:51:59", "bulletinFamily": "info", "cvelist": ["CVE-2017-5715"], "description": "Researchers have discovered yet another speculative execution side-channel flaw enabling attackers to access sensitive data at the CPU level.\n\nThe new Spectre-class exploit, dubbed SpectreRSB, was detailed by researchers from the University of California at Riverside in a [research paper](<https://arxiv.org/pdf/1807.07940.pdf>) on Friday. While the flaw still targets the process of speculative execution, unlike other variants, it manipulates a new part of the process called the return stack buffer.\n\n\u201cIn this paper, we introduce a new attack vector for Spectre-like attacks that are not prevented by deployed defenses,\u201d researcher Nael Abu-Ghazaleh wrote in the paper. \u201cSpecifically, the attacks exploit the return stack buffer (RSB) to cause speculative execution of the payload gadget that reads and exposes sensitive information.\u201d\n\nRSB is a common \u201cpredictor structure\u201d in CPUs used to predict return addresses during the speculative execution process. It does so by pushing the return address from a call instruction on an internal hardware stack; thus supporting speculation with very high accuracy.\n\nSpeculative execution is used in microprocessors so that memory can read before the addresses of all prior memory writes are known. This enables an attacker with local user access using a side-channel analysis to gain unauthorized disclosure of information. Since the disclosure of Spectre in January, various variants have consequently been disclosed by researchers \u2013 however, these have all targeted the branch predictor unit or cache within the CPU.\n\n\u201cThe RSB can be thought of as another branch predictor used for the return instructions (whereas the primary branch predictor is used for branch instructions)\u2026 So, this attack is similar to Spectre, but with a different entry point that has some different properties,\u201d Abu-Ghazaleh told Threatpost via email.\n\nRSB can be manipulated through user code and \u201cdirect pollution of the RSB,\u201d where a bad actor could insert a call instruction as a value pushed to the RSB and the software stack. The stack is subsequently manipulated by the user so that the return address no longer matches the RSB \u2013 allowing the attacker to recover data running on the CPU.\n\n\u201cTo launch the attack, the attacker should poison the RSB (a different and arguably easier process than poisoning the branch predictor) and then cause a return instruction without a preceding call instruction in the victim (which is arguably more difficult than finding an indirect branch),\u201d Abu-Ghazaleh told us. He said SpectreRSB should be thought of as a variant of Spectre, with about the same order of difficulty and capabilities as the original attack.\n\nSpectreRSB also enables an attack against the SGX compartment, where a malicious OS pollutes the RSB to cause a misspeculation that exposes data outside an SGX compartment. This attack bypasses all software and microcode patches on the SGX machine.\n\nResearchers said they have reported SpectreRSB to Intel, AMD and ARM \u2013 all of which use RSBs to predict return addresses. AMD and ARM did not respond to a request for comment from Threatpost.\n\n## RSB Stuffing and Patches\n\nResearchers alleged that the new flaw is not prevented by any of the previous known defenses against Spectre, including Google\u2019s software fix, [Retpoline](<https://threatpost.com/intel-issues-updated-spectre-firmware-fixes-for-newer-processors/130025/>), and Intel\u2019s microcode patches.\n\nHowever, in a statement to Threatpost, Intel argued that this is not the case: \u201cSpectreRSB is related to branch target injection (CVE-2017-5715), and we expect that the exploits described in this paper are mitigated in the same manner,\u201d an Intel spokesperson said via email. \u201cWe have already published guidance for developers in the whitepaper, [Speculative Execution Side Channel Mitigations](<https://software.intel.com/sites/default/files/managed/c5/63/336996-Speculative-Execution-Side-Channel-Mitigations.pdf>). We are thankful for the ongoing work of the research community as we collectively work to help protect customers.\u201d\n\nRegardless of other patches, the UC-Riverside researchers said that a defense does exist to mitigate against SpectreRSB, dubbed \u201cRSB stuffing.\u201d This currently exists on Intel\u2019s Core i7 processors (starting from its Skylake lineup).\n\nWith RSB stuffing (a.k.a. RSB refilling), every time there is a switch into the kernel, the RSB is intentionally filled with the address of a benign delay gadget to avoid the possibility of misspeculation.\n\n\u201cFor some of the more dangerous attacks, the attack starts from the user code, but its trying to get the OS to do the return to the poisoned address,\u201d Abu-Ghazaleh told Threatpost. \u201cRefilling overwrites the entries in the RSB whenever we switch to the kernel (for example, at the same points where the KPTI patch remaps the kernel addresses). So, the user cannot get the kernel to return to its poisoned addresses in the RSB.\u201d\n\n## More Spectre Variants\n\nSince the two original side-channel analysis vulnerabilities, Meltdown and Spectre, were found [earlier this year ](<https://threatpost.com/vendors-share-patch-updates-on-spectre-and-meltdown-mitigation-efforts/129307/>)in Intel server and desktop processors, [more Spectre-like flaws have popped up](<https://threatpost.com/spectre-will-haunt-us-for-a-long-time/134298/>).\n\nIn just one example, in May, a [new vulnerability was found called Variant 4](<https://threatpost.com/intels-virtual-fences-spectre-fix-wont-protect-against-variant-4/132246/>), disclosed by Google Project Zero and Microsoft\u2019s Security Response Center; researchers said it potentially enables attackers to read privileged data across trust boundaries.\n\nAbu-Ghazaleh said that he guesses other Spectre-types of attacks specifically targeting RSB may crop up in the future: \u201cVariants on other processors and other operating systems are likely to appear,\u201d he said. \u201cWe also could not get some attacks to work completely due to some challenges that other researchers may try to work through.\u201d\n", "modified": "2018-07-23T18:27:20", "published": "2018-07-23T18:27:20", "id": "THREATPOST:66600F3B128B00AC1B1B38670F93DE04", "href": "https://threatpost.com/new-spectre-level-flaw-targets-return-stack-buffer/134299/", "type": "threatpost", "title": "New Spectre-Level Flaw Targets Return Stack Buffer", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "vmware": [{"lastseen": "2019-11-06T16:05:23", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "**New speculative-execution control mechanism for Virtual Machines \n**\n\nUpdates of vCenter Server, ESXi, Workstation and Fusion virtualize the new speculative-execution control mechanism for Virtual Machines (VMs). As a result, a patched Guest Operating System (Guest OS) can remediate the Branch Target Injection issue (CVE-2017-5715). This issue may allow for information disclosure between processes within the VM.\n\n \nTo remediate CVE-2017-5715 in the Guest OS the following VMware and third party requirements must be met. Please note that these points are meant to be a brief overview. For a more in-depth explaination of the mitigation process please see [VMware Knowledge Base Article 52085](<https://kb.vmware.com/kb/52085>).\n\n_VMware Requirements_ \n\n\n * Deploy the updated version of vCenter Server listed in the table (if vCenter Server is used).\n * Deploy the ESXi patches and/or the new versions for Workstation or Fusion listed in the table.\n * Ensure that your VMs are using Hardware Version 9 or higher. For best performance, Hardware Version 11 or higher is recommended. [VMware Knowledge Base Article 1010675](<https://kb.vmware.com/kb/1010675>) discusses Hardware Versions.\n\n_Third party Requirements_\n\n * Deploy the Guest OS patches for CVE-2017-5715. These patches are to be obtained from your OS vendor.\n * Update the CPU microcode. Additional microcode is needed for your CPU to be able to expose the new MSRs that are used by the patched Guest OS. This microcode should be available from your hardware platform vendor.\n\nColumn 5 of the following table lists the action required to remediate the vulnerability in each release, if a solution is available. \n\n", "edition": 7, "modified": "2018-03-20T00:00:00", "published": "2018-01-09T00:00:00", "id": "VMSA-2018-0004", "href": "https://www.vmware.com/security/advisories/VMSA-2018-0004.html", "title": "VMware vSphere, Workstation and Fusion updates add Hypervisor-Assisted Guest Mitigations for speculative execution issue.", "type": "vmware", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "ubuntu": [{"lastseen": "2020-07-02T11:43:46", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "It was discovered that microprocessors utilizing speculative execution \nand branch prediction may allow unauthorized memory reads via sidechannel \nattacks. This flaw is known as Spectre. An attacker in the guest could use \nthis to expose sensitive guest information, including kernel memory.\n\nThis update allows libvirt to expose new CPU features added by microcode \nupdates to guests. On amd64 and i386, new CPU models that match the updated \nmicrocode features were added with an -IBRS suffix. Certain environments \nwill require guests to be switched manually to the new CPU models after \nmicrocode updates have been applied to the host.", "edition": 5, "modified": "2018-02-07T00:00:00", "published": "2018-02-07T00:00:00", "id": "USN-3561-1", "href": "https://ubuntu.com/security/notices/USN-3561-1", "title": "libvirt update", "type": "ubuntu", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}, {"lastseen": "2020-07-02T11:40:00", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "USN-3690-1 provided updated microcode for AMD processors to address \nCVE-2017-5715 (aka Spectre). Unfortunately, the update caused some \nsystems to fail to boot. This update reverts the update for Ubuntu \n14.04 LTS.\n\nWe apologize for the inconvenience.\n\nOriginal advisory details:\n\nJann Horn discovered that microprocessors utilizing speculative execution \nand branch prediction may allow unauthorized memory reads via sidechannel \nattacks. This flaw is known as Spectre. A local attacker could use this to \nexpose sensitive information, including kernel memory.\n\nThis update provides the microcode updates for AMD 17H family \nprocessors required for the corresponding Linux kernel updates.", "edition": 5, "modified": "2018-07-05T00:00:00", "published": "2018-07-05T00:00:00", "id": "USN-3690-2", "href": "https://ubuntu.com/security/notices/USN-3690-2", "title": "AMD Microcode regression", "type": "ubuntu", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "archlinux": [{"lastseen": "2020-09-22T18:36:42", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "Arch Linux Security Advisory ASA-201801-10\n==========================================\n\nSeverity: High\nDate : 2018-01-10\nCVE-ID : CVE-2017-5715\nPackage : intel-ucode\nType : access restriction bypass\nRemote : No\nLink : https://security.archlinux.org/AVG-582\n\nSummary\n=======\n\nThe package intel-ucode before version 20180108-1 is vulnerable to\naccess restriction bypass.\n\nResolution\n==========\n\nUpgrade to 20180108-1.\n\n# pacman -Syu \"intel-ucode>=20180108-1\"\n\nThe problem has been fixed upstream in version 20180108.\n\nWorkaround\n==========\n\nNone.\n\nDescription\n===========\n\nAn industry-wide issue was found in the way many modern microprocessor\ndesigns have implemented speculative execution of instructions (a\ncommonly used performance optimization).\nThis variant triggers the speculative execution by utilizing branch\ntarget injection. It relies on the presence of a precisely-defined\ninstruction sequence in the privileged code as well as the fact that\nmemory accesses may cause allocation into the microprocessor's data\ncache even for speculatively executed instructions that never actually\ncommit (retire). As a result, an unprivileged attacker could use this\nflaw to cross the syscall and guest/host boundaries and read privileged\nmemory by conducting targeted cache side-channel attacks.\n\nImpact\n======\n\nA local unprivileged attacker is able to cross the syscall and\nguest/host boundaries and read privileged memory by conducting targeted\ncache side-channel attacks.\n\nReferences\n==========\n\nhttps://googleprojectzero.blogspot.com/2018/01/reading-privileged-memory-with-side.html\nhttps://spectreattack.com\nhttps://www.kb.cert.org/vuls/id/584653\nhttps://xenbits.xen.org/xsa/advisory-254.html\nhttps://security-center.intel.com/advisory.aspx?intelid=INTEL-SA-00088&languageid=en-fr\nhttps://newsroom.intel.com/wp-content/uploads/sites/11/2018/01/Intel-Analysis-of-Speculative-Execution-Side-Channels.pdf\nhttps://security.archlinux.org/CVE-2017-5715", "modified": "2018-01-10T00:00:00", "published": "2018-01-10T00:00:00", "id": "ASA-201801-10", "href": "https://security.archlinux.org/ASA-201801-10", "type": "archlinux", "title": "[ASA-201801-10] intel-ucode: access restriction bypass", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "cloudfoundry": [{"lastseen": "2019-05-29T18:32:50", "bulletinFamily": "software", "cvelist": ["CVE-2017-5715"], "description": "# \n\n# Vendor\n\nCanonical Ubuntu\n\n# Versions Affected\n\n * Canonical Ubuntu 14.04\n\n# Description\n\nUSN-3690-1 provided updated microcode for AMD processors to address CVE-2017-5715 (aka Spectre). Unfortunately, the update caused some systems to fail to boot. This update reverts the update for Ubuntu 14.04 LTS.\n\nWe apologize for the inconvenience.\n\nOriginal advisory details:\n\nJann Horn discovered that microprocessors utilizing speculative execution and branch prediction may allow unauthorized memory reads via sidechannel attacks. This flaw is known as Spectre. A local attacker could use this to expose sensitive information, including kernel memory.\n\nThis update provides the microcode updates for AMD 17H family processors required for the corresponding Linux kernel updates.\n\n# Affected Cloud Foundry Products and Versions\n\n * Cloud Foundry BOSH stemcells are vulnerable, including: \n * 3363.x versions prior to 3363.68\n * 3421.x versions prior to 3421.69\n * 3445.x versions prior to 3445.54\n * 3468.x versions prior to 3468.54\n * 3541.x versions prior to 3541.36\n * 3586.x versions prior to 3586.26\n * All other stemcells not listed.\n\n# Mitigation\n\nOSS users are strongly encouraged to follow one of the mitigations below:\n\n * The Cloud Foundry project recommends upgrading the following BOSH stemcells: \n * Upgrade 3363.x versions to 3363.68\n * Upgrade 3421.x versions to 3421.69\n * Upgrade 3445.x versions to 3445.54\n * Upgrade 3468.x versions to 3468.54\n * Upgrade 3541.x versions to 3541.36\n * Upgrade 3586.x versions to 3586.26\n * All other stemcells should be upgraded to the latest version available on [bosh.io](<https://bosh.io>).\n\n# References\n\n * [USN-3690-2](<https://usn.ubuntu.com/3690-2/>)\n", "edition": 5, "modified": "2018-07-19T00:00:00", "published": "2018-07-19T00:00:00", "id": "CFOUNDRY:F862BE9A087FA6B59D4299BADF8089DC", "href": "https://www.cloudfoundry.org/blog/usn-3690-2/", "title": "USN-3690-2: AMD Microcode regression | Cloud Foundry", "type": "cloudfoundry", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}], "slackware": [{"lastseen": "2020-10-25T16:36:29", "bulletinFamily": "unix", "cvelist": ["CVE-2017-5715"], "description": "New kernel packages are available for Slackware 14.2 to mitigate the\nspeculative side channel attack known as Spectre variant 2.\n\n\nHere are the details from the Slackware 14.2 ChangeLog:\n\npatches/packages/linux-4.4.115/*: Upgraded.\n This kernel includes full retpoline mitigation for the Spectre (variant 2)\n speculative side channel attack.\n Please note that this kernel was compiled with gcc-5.5.0, also provided as\n an update for Slackware 14.2. You'll need to install the updated gcc in order\n to compile kernel modules that will load into this updated kernel.\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 https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2017-5715\n (* Security fix *)\n\nWhere to find the new packages:\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-4.4.115/kernel-firmware-20180201_2aa2ac2-noarch-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-generic-4.4.115-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-generic-smp-4.4.115_smp-i686-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-headers-4.4.115_smp-x86-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-huge-4.4.115-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-huge-smp-4.4.115_smp-i686-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-modules-4.4.115-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-modules-smp-4.4.115_smp-i686-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/linux-4.4.115/kernel-source-4.4.115_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-4.4.115/kernel-firmware-20180201_2aa2ac2-noarch-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.115/kernel-generic-4.4.115-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.115/kernel-headers-4.4.115-x86-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.115/kernel-huge-4.4.115-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.115/kernel-modules-4.4.115-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/linux-4.4.115/kernel-source-4.4.115-noarch-1.txz\n\n\nMD5 signatures:\n\nSlackware 14.2 packages:\n1ea8df1a6e5a76e8cb875aba9f42993b kernel-firmware-20180201_2aa2ac2-noarch-1.txz\n65ae3758100bf107ff3c23897ef1b5f9 kernel-generic-4.4.115-i586-1.txz\nc683178111756209c6dc1755e525e833 kernel-generic-smp-4.4.115_smp-i686-1.txz\n0c5cca7eb08d4887f88b615a4a832e6e kernel-headers-4.4.115_smp-x86-1.txz\n45397272b94b844c25ae3d13b9409f91 kernel-huge-4.4.115-i586-1.txz\nb326f2b6d30671f5917f7d1e9a00511b kernel-huge-smp-4.4.115_smp-i686-1.txz\n6a1a72436299fdd149fabd67e5db9a00 kernel-modules-4.4.115-i586-1.txz\nbd1e7630fb6dd94f84d317fa55cb60f5 kernel-modules-smp-4.4.115_smp-i686-1.txz\n74e80a52b163efde642a826e12f3ee0a kernel-source-4.4.115_smp-noarch-1.txz\n\nSlackware x86_64 14.2 packages:\n1ea8df1a6e5a76e8cb875aba9f42993b kernel-firmware-20180201_2aa2ac2-noarch-1.txz\nbe30a72f8fda706d0a36e11e71652301 kernel-generic-4.4.115-x86_64-1.txz\n2e6dd637df1bbc83dab278c0fb9a1ffc kernel-headers-4.4.115-x86-1.txz\n8d00477072ed624b4000e5ff9f260d57 kernel-huge-4.4.115-x86_64-1.txz\ne60a0f4aa1a8cc031db89b1d68b4e366 kernel-modules-4.4.115-x86_64-1.txz\nc4f92ddedc88105adcf4eafe863c2de6 kernel-source-4.4.115-noarch-1.txz\n\n\nInstallation instructions:\n\nUpgrade the packages as root:\n > upgradepkg kernel-*.txz\n\nIf you are using an initrd, you'll 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 4.4.115-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 4.4.115 | 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't sure which\nkernel you are running, run \"uname -a\". If you see SMP there, you are\nrunning the SMP kernel and should use the 4.4.115-smp version when running\nmkinitrd_command_generator. Note that this is only for 32-bit -- 64-bit\nsystems should always use 4.4.115 as the version.\n\nIf you are using lilo or elilo to boot the machine, you'll 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'll 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.", "modified": "2018-02-07T06:34:12", "published": "2018-02-07T06:34:12", "id": "SSA-2018-037-01", "href": "http://www.slackware.com/security/viewer.php?l=slackware-security&y=2018&m=slackware-security.701978", "type": "slackware", "title": "[slackware-security] Slackware 14.2 kernel", "cvss": {"score": 4.7, "vector": "AV:L/AC:M/Au:N/C:C/I:N/A:N"}}]}